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Jim Cownie5e8470a2013-09-27 10:38:44 +00001/*
2 * kmp_tasking.c -- OpenMP 3.0 tasking support.
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"
17#include "kmp_i18n.h"
18#include "kmp_itt.h"
Jim Cownie4cc4bb42014-10-07 16:25:50 +000019#include "kmp_wait_release.h"
Jonathan Peyton45be4502015-08-11 21:36:41 +000020#include "kmp_stats.h"
Jim Cownie5e8470a2013-09-27 10:38:44 +000021
Andrey Churbanove5f44922015-04-29 16:22:07 +000022#if OMPT_SUPPORT
23#include "ompt-specific.h"
24#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +000025
Jim Cownie5e8470a2013-09-27 10:38:44 +000026
27/* ------------------------------------------------------------------------ */
28/* ------------------------------------------------------------------------ */
29
30
31/* forward declaration */
32static void __kmp_enable_tasking( kmp_task_team_t *task_team, kmp_info_t *this_thr );
33static void __kmp_alloc_task_deque( kmp_info_t *thread, kmp_thread_data_t *thread_data );
34static int __kmp_realloc_task_threads_data( kmp_info_t *thread, kmp_task_team_t *task_team );
35
Andrey Churbanov535b6fa2015-05-07 17:41:51 +000036#ifdef OMP_41_ENABLED
37static void __kmp_bottom_half_finish_proxy( kmp_int32 gtid, kmp_task_t * ptask );
38#endif
39
Jim Cownie4cc4bb42014-10-07 16:25:50 +000040static inline void __kmp_null_resume_wrapper(int gtid, volatile void *flag) {
Jonathan Peytona0e159f2015-10-08 18:23:38 +000041 if (!flag) return;
Jim Cownie4cc4bb42014-10-07 16:25:50 +000042 switch (((kmp_flag_64 *)flag)->get_type()) {
43 case flag32: __kmp_resume_32(gtid, NULL); break;
44 case flag64: __kmp_resume_64(gtid, NULL); break;
45 case flag_oncore: __kmp_resume_oncore(gtid, NULL); break;
46 }
Jim Cownie5e8470a2013-09-27 10:38:44 +000047}
48
49#ifdef BUILD_TIED_TASK_STACK
50
51//---------------------------------------------------------------------------
52// __kmp_trace_task_stack: print the tied tasks from the task stack in order
53// from top do bottom
54//
55// gtid: global thread identifier for thread containing stack
56// thread_data: thread data for task team thread containing stack
57// threshold: value above which the trace statement triggers
58// location: string identifying call site of this function (for trace)
59
60static void
61__kmp_trace_task_stack( kmp_int32 gtid, kmp_thread_data_t *thread_data, int threshold, char *location )
62{
63 kmp_task_stack_t *task_stack = & thread_data->td.td_susp_tied_tasks;
64 kmp_taskdata_t **stack_top = task_stack -> ts_top;
65 kmp_int32 entries = task_stack -> ts_entries;
66 kmp_taskdata_t *tied_task;
67
68 KA_TRACE(threshold, ("__kmp_trace_task_stack(start): location = %s, gtid = %d, entries = %d, "
69 "first_block = %p, stack_top = %p \n",
70 location, gtid, entries, task_stack->ts_first_block, stack_top ) );
71
72 KMP_DEBUG_ASSERT( stack_top != NULL );
73 KMP_DEBUG_ASSERT( entries > 0 );
74
75 while ( entries != 0 )
76 {
77 KMP_DEBUG_ASSERT( stack_top != & task_stack->ts_first_block.sb_block[0] );
78 // fix up ts_top if we need to pop from previous block
79 if ( entries & TASK_STACK_INDEX_MASK == 0 )
80 {
81 kmp_stack_block_t *stack_block = (kmp_stack_block_t *) (stack_top) ;
82
83 stack_block = stack_block -> sb_prev;
84 stack_top = & stack_block -> sb_block[TASK_STACK_BLOCK_SIZE];
85 }
86
87 // finish bookkeeping
88 stack_top--;
89 entries--;
90
91 tied_task = * stack_top;
92
93 KMP_DEBUG_ASSERT( tied_task != NULL );
94 KMP_DEBUG_ASSERT( tied_task -> td_flags.tasktype == TASK_TIED );
95
96 KA_TRACE(threshold, ("__kmp_trace_task_stack(%s): gtid=%d, entry=%d, "
97 "stack_top=%p, tied_task=%p\n",
98 location, gtid, entries, stack_top, tied_task ) );
99 }
100 KMP_DEBUG_ASSERT( stack_top == & task_stack->ts_first_block.sb_block[0] );
101
102 KA_TRACE(threshold, ("__kmp_trace_task_stack(exit): location = %s, gtid = %d\n",
103 location, gtid ) );
104}
105
106//---------------------------------------------------------------------------
107// __kmp_init_task_stack: initialize the task stack for the first time
108// after a thread_data structure is created.
109// It should not be necessary to do this again (assuming the stack works).
110//
111// gtid: global thread identifier of calling thread
112// thread_data: thread data for task team thread containing stack
113
114static void
115__kmp_init_task_stack( kmp_int32 gtid, kmp_thread_data_t *thread_data )
116{
117 kmp_task_stack_t *task_stack = & thread_data->td.td_susp_tied_tasks;
118 kmp_stack_block_t *first_block;
119
120 // set up the first block of the stack
121 first_block = & task_stack -> ts_first_block;
122 task_stack -> ts_top = (kmp_taskdata_t **) first_block;
123 memset( (void *) first_block, '\0', TASK_STACK_BLOCK_SIZE * sizeof(kmp_taskdata_t *));
124
125 // initialize the stack to be empty
126 task_stack -> ts_entries = TASK_STACK_EMPTY;
127 first_block -> sb_next = NULL;
128 first_block -> sb_prev = NULL;
129}
130
131
132//---------------------------------------------------------------------------
133// __kmp_free_task_stack: free the task stack when thread_data is destroyed.
134//
135// gtid: global thread identifier for calling thread
136// thread_data: thread info for thread containing stack
137
138static void
139__kmp_free_task_stack( kmp_int32 gtid, kmp_thread_data_t *thread_data )
140{
141 kmp_task_stack_t *task_stack = & thread_data->td.td_susp_tied_tasks;
142 kmp_stack_block_t *stack_block = & task_stack -> ts_first_block;
143
144 KMP_DEBUG_ASSERT( task_stack -> ts_entries == TASK_STACK_EMPTY );
145 // free from the second block of the stack
146 while ( stack_block != NULL ) {
147 kmp_stack_block_t *next_block = (stack_block) ? stack_block -> sb_next : NULL;
148
149 stack_block -> sb_next = NULL;
150 stack_block -> sb_prev = NULL;
151 if (stack_block != & task_stack -> ts_first_block) {
152 __kmp_thread_free( thread, stack_block ); // free the block, if not the first
153 }
154 stack_block = next_block;
155 }
156 // initialize the stack to be empty
157 task_stack -> ts_entries = 0;
158 task_stack -> ts_top = NULL;
159}
160
161
162//---------------------------------------------------------------------------
163// __kmp_push_task_stack: Push the tied task onto the task stack.
164// Grow the stack if necessary by allocating another block.
165//
166// gtid: global thread identifier for calling thread
167// thread: thread info for thread containing stack
168// tied_task: the task to push on the stack
169
170static void
171__kmp_push_task_stack( kmp_int32 gtid, kmp_info_t *thread, kmp_taskdata_t * tied_task )
172{
173 // GEH - need to consider what to do if tt_threads_data not allocated yet
174 kmp_thread_data_t *thread_data = & thread -> th.th_task_team ->
175 tt.tt_threads_data[ __kmp_tid_from_gtid( gtid ) ];
176 kmp_task_stack_t *task_stack = & thread_data->td.td_susp_tied_tasks ;
177
178 if ( tied_task->td_flags.team_serial || tied_task->td_flags.tasking_ser ) {
179 return; // Don't push anything on stack if team or team tasks are serialized
180 }
181
182 KMP_DEBUG_ASSERT( tied_task -> td_flags.tasktype == TASK_TIED );
183 KMP_DEBUG_ASSERT( task_stack -> ts_top != NULL );
184
185 KA_TRACE(20, ("__kmp_push_task_stack(enter): GTID: %d; THREAD: %p; TASK: %p\n",
186 gtid, thread, tied_task ) );
187 // Store entry
188 * (task_stack -> ts_top) = tied_task;
189
190 // Do bookkeeping for next push
191 task_stack -> ts_top++;
192 task_stack -> ts_entries++;
193
194 if ( task_stack -> ts_entries & TASK_STACK_INDEX_MASK == 0 )
195 {
196 // Find beginning of this task block
197 kmp_stack_block_t *stack_block =
198 (kmp_stack_block_t *) (task_stack -> ts_top - TASK_STACK_BLOCK_SIZE);
199
200 // Check if we already have a block
201 if ( stack_block -> sb_next != NULL )
202 { // reset ts_top to beginning of next block
203 task_stack -> ts_top = & stack_block -> sb_next -> sb_block[0];
204 }
205 else
206 { // Alloc new block and link it up
207 kmp_stack_block_t *new_block = (kmp_stack_block_t *)
208 __kmp_thread_calloc(thread, sizeof(kmp_stack_block_t));
209
210 task_stack -> ts_top = & new_block -> sb_block[0];
211 stack_block -> sb_next = new_block;
212 new_block -> sb_prev = stack_block;
213 new_block -> sb_next = NULL;
214
215 KA_TRACE(30, ("__kmp_push_task_stack(): GTID: %d; TASK: %p; Alloc new block: %p\n",
216 gtid, tied_task, new_block ) );
217 }
218 }
219 KA_TRACE(20, ("__kmp_push_task_stack(exit): GTID: %d; TASK: %p\n", gtid, tied_task ) );
220}
221
222//---------------------------------------------------------------------------
223// __kmp_pop_task_stack: Pop the tied task from the task stack. Don't return
224// the task, just check to make sure it matches the ending task passed in.
225//
226// gtid: global thread identifier for the calling thread
227// thread: thread info structure containing stack
228// tied_task: the task popped off the stack
229// ending_task: the task that is ending (should match popped task)
230
231static void
232__kmp_pop_task_stack( kmp_int32 gtid, kmp_info_t *thread, kmp_taskdata_t *ending_task )
233{
234 // GEH - need to consider what to do if tt_threads_data not allocated yet
235 kmp_thread_data_t *thread_data = & thread -> th.th_task_team -> tt_threads_data[ __kmp_tid_from_gtid( gtid ) ];
236 kmp_task_stack_t *task_stack = & thread_data->td.td_susp_tied_tasks ;
237 kmp_taskdata_t *tied_task;
238
239 if ( ending_task->td_flags.team_serial || ending_task->td_flags.tasking_ser ) {
240 return; // Don't pop anything from stack if team or team tasks are serialized
241 }
242
243 KMP_DEBUG_ASSERT( task_stack -> ts_top != NULL );
244 KMP_DEBUG_ASSERT( task_stack -> ts_entries > 0 );
245
246 KA_TRACE(20, ("__kmp_pop_task_stack(enter): GTID: %d; THREAD: %p\n", gtid, thread ) );
247
248 // fix up ts_top if we need to pop from previous block
249 if ( task_stack -> ts_entries & TASK_STACK_INDEX_MASK == 0 )
250 {
251 kmp_stack_block_t *stack_block =
252 (kmp_stack_block_t *) (task_stack -> ts_top) ;
253
254 stack_block = stack_block -> sb_prev;
255 task_stack -> ts_top = & stack_block -> sb_block[TASK_STACK_BLOCK_SIZE];
256 }
257
258 // finish bookkeeping
259 task_stack -> ts_top--;
260 task_stack -> ts_entries--;
261
262 tied_task = * (task_stack -> ts_top );
263
264 KMP_DEBUG_ASSERT( tied_task != NULL );
265 KMP_DEBUG_ASSERT( tied_task -> td_flags.tasktype == TASK_TIED );
266 KMP_DEBUG_ASSERT( tied_task == ending_task ); // If we built the stack correctly
267
268 KA_TRACE(20, ("__kmp_pop_task_stack(exit): GTID: %d; TASK: %p\n", gtid, tied_task ) );
269 return;
270}
271#endif /* BUILD_TIED_TASK_STACK */
272
273//---------------------------------------------------
274// __kmp_push_task: Add a task to the thread's deque
275
276static kmp_int32
277__kmp_push_task(kmp_int32 gtid, kmp_task_t * task )
278{
279 kmp_info_t * thread = __kmp_threads[ gtid ];
280 kmp_taskdata_t * taskdata = KMP_TASK_TO_TASKDATA(task);
281 kmp_task_team_t * task_team = thread->th.th_task_team;
282 kmp_int32 tid = __kmp_tid_from_gtid( gtid );
283 kmp_thread_data_t * thread_data;
284
285 KA_TRACE(20, ("__kmp_push_task: T#%d trying to push task %p.\n", gtid, taskdata ) );
286
287 // The first check avoids building task_team thread data if serialized
288 if ( taskdata->td_flags.task_serial ) {
289 KA_TRACE(20, ( "__kmp_push_task: T#%d team serialized; returning TASK_NOT_PUSHED for task %p\n",
290 gtid, taskdata ) );
291 return TASK_NOT_PUSHED;
292 }
293
294 // Now that serialized tasks have returned, we can assume that we are not in immediate exec mode
295 KMP_DEBUG_ASSERT( __kmp_tasking_mode != tskm_immediate_exec );
Andrey Churbanov6d224db2015-02-10 18:37:43 +0000296 if ( ! KMP_TASKING_ENABLED(task_team) ) {
Jim Cownie5e8470a2013-09-27 10:38:44 +0000297 __kmp_enable_tasking( task_team, thread );
298 }
299 KMP_DEBUG_ASSERT( TCR_4(task_team -> tt.tt_found_tasks) == TRUE );
300 KMP_DEBUG_ASSERT( TCR_PTR(task_team -> tt.tt_threads_data) != NULL );
301
302 // Find tasking deque specific to encountering thread
303 thread_data = & task_team -> tt.tt_threads_data[ tid ];
304
305 // No lock needed since only owner can allocate
306 if (thread_data -> td.td_deque == NULL ) {
307 __kmp_alloc_task_deque( thread, thread_data );
308 }
309
310 // Check if deque is full
311 if ( TCR_4(thread_data -> td.td_deque_ntasks) >= TASK_DEQUE_SIZE )
312 {
313 KA_TRACE(20, ( "__kmp_push_task: T#%d deque is full; returning TASK_NOT_PUSHED for task %p\n",
314 gtid, taskdata ) );
315 return TASK_NOT_PUSHED;
316 }
317
318 // Lock the deque for the task push operation
319 __kmp_acquire_bootstrap_lock( & thread_data -> td.td_deque_lock );
320
Andrey Churbanov535b6fa2015-05-07 17:41:51 +0000321#if OMP_41_ENABLED
322 // Need to recheck as we can get a proxy task from a thread outside of OpenMP
323 if ( TCR_4(thread_data -> td.td_deque_ntasks) >= TASK_DEQUE_SIZE )
324 {
325 __kmp_release_bootstrap_lock( & thread_data -> td.td_deque_lock );
326 KA_TRACE(20, ( "__kmp_push_task: T#%d deque is full on 2nd check; returning TASK_NOT_PUSHED for task %p\n",
327 gtid, taskdata ) );
328 return TASK_NOT_PUSHED;
329 }
330#else
Jim Cownie5e8470a2013-09-27 10:38:44 +0000331 // Must have room since no thread can add tasks but calling thread
332 KMP_DEBUG_ASSERT( TCR_4(thread_data -> td.td_deque_ntasks) < TASK_DEQUE_SIZE );
Andrey Churbanov535b6fa2015-05-07 17:41:51 +0000333#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +0000334
335 thread_data -> td.td_deque[ thread_data -> td.td_deque_tail ] = taskdata; // Push taskdata
336 // Wrap index.
337 thread_data -> td.td_deque_tail = ( thread_data -> td.td_deque_tail + 1 ) & TASK_DEQUE_MASK;
338 TCW_4(thread_data -> td.td_deque_ntasks, TCR_4(thread_data -> td.td_deque_ntasks) + 1); // Adjust task count
339
340 __kmp_release_bootstrap_lock( & thread_data -> td.td_deque_lock );
341
342 KA_TRACE(20, ("__kmp_push_task: T#%d returning TASK_SUCCESSFULLY_PUSHED: "
343 "task=%p ntasks=%d head=%u tail=%u\n",
344 gtid, taskdata, thread_data->td.td_deque_ntasks,
345 thread_data->td.td_deque_tail, thread_data->td.td_deque_head) );
346
347 return TASK_SUCCESSFULLY_PUSHED;
348}
349
350
351//-----------------------------------------------------------------------------------------
352// __kmp_pop_current_task_from_thread: set up current task from called thread when team ends
353// this_thr: thread structure to set current_task in.
354
355void
356__kmp_pop_current_task_from_thread( kmp_info_t *this_thr )
357{
358 KF_TRACE( 10, ("__kmp_pop_current_task_from_thread(enter): T#%d this_thread=%p, curtask=%p, "
359 "curtask_parent=%p\n",
360 0, this_thr, this_thr -> th.th_current_task,
361 this_thr -> th.th_current_task -> td_parent ) );
362
363 this_thr -> th.th_current_task = this_thr -> th.th_current_task -> td_parent;
364
365 KF_TRACE( 10, ("__kmp_pop_current_task_from_thread(exit): T#%d this_thread=%p, curtask=%p, "
366 "curtask_parent=%p\n",
367 0, this_thr, this_thr -> th.th_current_task,
368 this_thr -> th.th_current_task -> td_parent ) );
369}
370
371
372//---------------------------------------------------------------------------------------
373// __kmp_push_current_task_to_thread: set up current task in called thread for a new team
374// this_thr: thread structure to set up
375// team: team for implicit task data
376// tid: thread within team to set up
377
378void
379__kmp_push_current_task_to_thread( kmp_info_t *this_thr, kmp_team_t *team, int tid )
380{
381 // current task of the thread is a parent of the new just created implicit tasks of new team
382 KF_TRACE( 10, ( "__kmp_push_current_task_to_thread(enter): T#%d this_thread=%p curtask=%p "
383 "parent_task=%p\n",
384 tid, this_thr, this_thr->th.th_current_task,
385 team->t.t_implicit_task_taskdata[tid].td_parent ) );
386
387 KMP_DEBUG_ASSERT (this_thr != NULL);
388
389 if( tid == 0 ) {
390 if( this_thr->th.th_current_task != & team -> t.t_implicit_task_taskdata[ 0 ] ) {
391 team -> t.t_implicit_task_taskdata[ 0 ].td_parent = this_thr->th.th_current_task;
392 this_thr->th.th_current_task = & team -> t.t_implicit_task_taskdata[ 0 ];
393 }
394 } else {
395 team -> t.t_implicit_task_taskdata[ tid ].td_parent = team -> t.t_implicit_task_taskdata[ 0 ].td_parent;
396 this_thr->th.th_current_task = & team -> t.t_implicit_task_taskdata[ tid ];
397 }
398
399 KF_TRACE( 10, ( "__kmp_push_current_task_to_thread(exit): T#%d this_thread=%p curtask=%p "
400 "parent_task=%p\n",
401 tid, this_thr, this_thr->th.th_current_task,
402 team->t.t_implicit_task_taskdata[tid].td_parent ) );
403}
404
405
406//----------------------------------------------------------------------
407// __kmp_task_start: bookkeeping for a task starting execution
408// GTID: global thread id of calling thread
409// task: task starting execution
410// current_task: task suspending
411
412static void
413__kmp_task_start( kmp_int32 gtid, kmp_task_t * task, kmp_taskdata_t * current_task )
414{
415 kmp_taskdata_t * taskdata = KMP_TASK_TO_TASKDATA(task);
416 kmp_info_t * thread = __kmp_threads[ gtid ];
417
418 KA_TRACE(10, ("__kmp_task_start(enter): T#%d starting task %p: current_task=%p\n",
419 gtid, taskdata, current_task) );
420
421 KMP_DEBUG_ASSERT( taskdata -> td_flags.tasktype == TASK_EXPLICIT );
422
423 // mark currently executing task as suspended
424 // TODO: GEH - make sure root team implicit task is initialized properly.
425 // KMP_DEBUG_ASSERT( current_task -> td_flags.executing == 1 );
426 current_task -> td_flags.executing = 0;
427
428 // Add task to stack if tied
429#ifdef BUILD_TIED_TASK_STACK
430 if ( taskdata -> td_flags.tiedness == TASK_TIED )
431 {
432 __kmp_push_task_stack( gtid, thread, taskdata );
433 }
434#endif /* BUILD_TIED_TASK_STACK */
435
436 // mark starting task as executing and as current task
437 thread -> th.th_current_task = taskdata;
438
439 KMP_DEBUG_ASSERT( taskdata -> td_flags.started == 0 );
440 KMP_DEBUG_ASSERT( taskdata -> td_flags.executing == 0 );
441 taskdata -> td_flags.started = 1;
442 taskdata -> td_flags.executing = 1;
443 KMP_DEBUG_ASSERT( taskdata -> td_flags.complete == 0 );
444 KMP_DEBUG_ASSERT( taskdata -> td_flags.freed == 0 );
445
446 // GEH TODO: shouldn't we pass some sort of location identifier here?
447 // APT: yes, we will pass location here.
448 // need to store current thread state (in a thread or taskdata structure)
449 // before setting work_state, otherwise wrong state is set after end of task
450
451 KA_TRACE(10, ("__kmp_task_start(exit): T#%d task=%p\n",
452 gtid, taskdata ) );
453
Andrey Churbanovd7d088f2015-04-29 16:42:24 +0000454#if OMPT_SUPPORT
Jonathan Peytonb68a85d2015-09-21 18:11:22 +0000455 if (ompt_enabled &&
Andrey Churbanovd7d088f2015-04-29 16:42:24 +0000456 ompt_callbacks.ompt_callback(ompt_event_task_begin)) {
457 kmp_taskdata_t *parent = taskdata->td_parent;
458 ompt_callbacks.ompt_callback(ompt_event_task_begin)(
459 parent ? parent->ompt_task_info.task_id : ompt_task_id_none,
460 parent ? &(parent->ompt_task_info.frame) : NULL,
461 taskdata->ompt_task_info.task_id,
462 taskdata->ompt_task_info.function);
463 }
464#endif
465
Jim Cownie5e8470a2013-09-27 10:38:44 +0000466 return;
467}
468
469
470//----------------------------------------------------------------------
471// __kmpc_omp_task_begin_if0: report that a given serialized task has started execution
472// loc_ref: source location information; points to beginning of task block.
473// gtid: global thread number.
474// task: task thunk for the started task.
475
476void
477__kmpc_omp_task_begin_if0( ident_t *loc_ref, kmp_int32 gtid, kmp_task_t * task )
478{
479 kmp_taskdata_t * taskdata = KMP_TASK_TO_TASKDATA(task);
480 kmp_taskdata_t * current_task = __kmp_threads[ gtid ] -> th.th_current_task;
481
482 KA_TRACE(10, ("__kmpc_omp_task_begin_if0(enter): T#%d loc=%p task=%p current_task=%p\n",
483 gtid, loc_ref, taskdata, current_task ) );
484
485 taskdata -> td_flags.task_serial = 1; // Execute this task immediately, not deferred.
486 __kmp_task_start( gtid, task, current_task );
487
488 KA_TRACE(10, ("__kmpc_omp_task_begin_if0(exit): T#%d loc=%p task=%p,\n",
489 gtid, loc_ref, taskdata ) );
490
491 return;
492}
493
494#ifdef TASK_UNUSED
495//----------------------------------------------------------------------
496// __kmpc_omp_task_begin: report that a given task has started execution
497// NEVER GENERATED BY COMPILER, DEPRECATED!!!
498
499void
500__kmpc_omp_task_begin( ident_t *loc_ref, kmp_int32 gtid, kmp_task_t * task )
501{
502 kmp_taskdata_t * current_task = __kmp_threads[ gtid ] -> th.th_current_task;
503
504 KA_TRACE(10, ("__kmpc_omp_task_begin(enter): T#%d loc=%p task=%p current_task=%p\n",
505 gtid, loc_ref, KMP_TASK_TO_TASKDATA(task), current_task ) );
506
507 __kmp_task_start( gtid, task, current_task );
508
509 KA_TRACE(10, ("__kmpc_omp_task_begin(exit): T#%d loc=%p task=%p,\n",
510 gtid, loc_ref, KMP_TASK_TO_TASKDATA(task) ) );
511
512 return;
513}
514#endif // TASK_UNUSED
515
516
517//-------------------------------------------------------------------------------------
518// __kmp_free_task: free the current task space and the space for shareds
519// gtid: Global thread ID of calling thread
520// taskdata: task to free
521// thread: thread data structure of caller
522
523static void
524__kmp_free_task( kmp_int32 gtid, kmp_taskdata_t * taskdata, kmp_info_t * thread )
525{
526 KA_TRACE(30, ("__kmp_free_task: T#%d freeing data from task %p\n",
527 gtid, taskdata) );
528
529 // Check to make sure all flags and counters have the correct values
530 KMP_DEBUG_ASSERT( taskdata->td_flags.tasktype == TASK_EXPLICIT );
531 KMP_DEBUG_ASSERT( taskdata->td_flags.executing == 0 );
532 KMP_DEBUG_ASSERT( taskdata->td_flags.complete == 1 );
533 KMP_DEBUG_ASSERT( taskdata->td_flags.freed == 0 );
534 KMP_DEBUG_ASSERT( TCR_4(taskdata->td_allocated_child_tasks) == 0 || taskdata->td_flags.task_serial == 1);
535 KMP_DEBUG_ASSERT( TCR_4(taskdata->td_incomplete_child_tasks) == 0 );
536
537 taskdata->td_flags.freed = 1;
538 // deallocate the taskdata and shared variable blocks associated with this task
539 #if USE_FAST_MEMORY
540 __kmp_fast_free( thread, taskdata );
541 #else /* ! USE_FAST_MEMORY */
542 __kmp_thread_free( thread, taskdata );
543 #endif
544
545 KA_TRACE(20, ("__kmp_free_task: T#%d freed task %p\n",
546 gtid, taskdata) );
547}
548
549//-------------------------------------------------------------------------------------
550// __kmp_free_task_and_ancestors: free the current task and ancestors without children
551//
552// gtid: Global thread ID of calling thread
553// taskdata: task to free
554// thread: thread data structure of caller
555
556static void
557__kmp_free_task_and_ancestors( kmp_int32 gtid, kmp_taskdata_t * taskdata, kmp_info_t * thread )
558{
559 kmp_int32 children = 0;
560 kmp_int32 team_or_tasking_serialized = taskdata -> td_flags.team_serial || taskdata -> td_flags.tasking_ser;
561
562 KMP_DEBUG_ASSERT( taskdata -> td_flags.tasktype == TASK_EXPLICIT );
563
564 if ( !team_or_tasking_serialized ) {
565 children = KMP_TEST_THEN_DEC32( (kmp_int32 *)(& taskdata -> td_allocated_child_tasks) ) - 1;
566 KMP_DEBUG_ASSERT( children >= 0 );
567 }
568
569 // Now, go up the ancestor tree to see if any ancestors can now be freed.
570 while ( children == 0 )
571 {
572 kmp_taskdata_t * parent_taskdata = taskdata -> td_parent;
573
574 KA_TRACE(20, ("__kmp_free_task_and_ancestors(enter): T#%d task %p complete "
575 "and freeing itself\n", gtid, taskdata) );
576
577 // --- Deallocate my ancestor task ---
578 __kmp_free_task( gtid, taskdata, thread );
579
580 taskdata = parent_taskdata;
581
582 // Stop checking ancestors at implicit task or if tasking serialized
583 // instead of walking up ancestor tree to avoid premature deallocation of ancestors.
584 if ( team_or_tasking_serialized || taskdata -> td_flags.tasktype == TASK_IMPLICIT )
585 return;
586
587 if ( !team_or_tasking_serialized ) {
588 // Predecrement simulated by "- 1" calculation
589 children = KMP_TEST_THEN_DEC32( (kmp_int32 *)(& taskdata -> td_allocated_child_tasks) ) - 1;
590 KMP_DEBUG_ASSERT( children >= 0 );
591 }
592 }
593
594 KA_TRACE(20, ("__kmp_free_task_and_ancestors(exit): T#%d task %p has %d children; "
595 "not freeing it yet\n", gtid, taskdata, children) );
596}
597
598//---------------------------------------------------------------------
599// __kmp_task_finish: bookkeeping to do when a task finishes execution
600// gtid: global thread ID for calling thread
601// task: task to be finished
602// resumed_task: task to be resumed. (may be NULL if task is serialized)
603
604static void
605__kmp_task_finish( kmp_int32 gtid, kmp_task_t *task, kmp_taskdata_t *resumed_task )
606{
607 kmp_taskdata_t * taskdata = KMP_TASK_TO_TASKDATA(task);
608 kmp_info_t * thread = __kmp_threads[ gtid ];
609 kmp_int32 children = 0;
610
Andrey Churbanovd7d088f2015-04-29 16:42:24 +0000611#if OMPT_SUPPORT
Jonathan Peytonb68a85d2015-09-21 18:11:22 +0000612 if (ompt_enabled &&
Andrey Churbanovd7d088f2015-04-29 16:42:24 +0000613 ompt_callbacks.ompt_callback(ompt_event_task_end)) {
614 kmp_taskdata_t *parent = taskdata->td_parent;
615 ompt_callbacks.ompt_callback(ompt_event_task_end)(
616 taskdata->ompt_task_info.task_id);
617 }
618#endif
619
Jim Cownie5e8470a2013-09-27 10:38:44 +0000620 KA_TRACE(10, ("__kmp_task_finish(enter): T#%d finishing task %p and resuming task %p\n",
621 gtid, taskdata, resumed_task) );
622
623 KMP_DEBUG_ASSERT( taskdata -> td_flags.tasktype == TASK_EXPLICIT );
624
625 // Pop task from stack if tied
626#ifdef BUILD_TIED_TASK_STACK
627 if ( taskdata -> td_flags.tiedness == TASK_TIED )
628 {
629 __kmp_pop_task_stack( gtid, thread, taskdata );
630 }
631#endif /* BUILD_TIED_TASK_STACK */
632
Jim Cownie5e8470a2013-09-27 10:38:44 +0000633 KMP_DEBUG_ASSERT( taskdata -> td_flags.complete == 0 );
Jim Cownie5e8470a2013-09-27 10:38:44 +0000634 taskdata -> td_flags.complete = 1; // mark the task as completed
635 KMP_DEBUG_ASSERT( taskdata -> td_flags.started == 1 );
636 KMP_DEBUG_ASSERT( taskdata -> td_flags.freed == 0 );
637
638 // Only need to keep track of count if team parallel and tasking not serialized
639 if ( !( taskdata -> td_flags.team_serial || taskdata -> td_flags.tasking_ser ) ) {
640 // Predecrement simulated by "- 1" calculation
641 children = KMP_TEST_THEN_DEC32( (kmp_int32 *)(& taskdata -> td_parent -> td_incomplete_child_tasks) ) - 1;
642 KMP_DEBUG_ASSERT( children >= 0 );
643#if OMP_40_ENABLED
644 if ( taskdata->td_taskgroup )
645 KMP_TEST_THEN_DEC32( (kmp_int32 *)(& taskdata->td_taskgroup->count) );
Jim Cownie181b4bb2013-12-23 17:28:57 +0000646 __kmp_release_deps(gtid,taskdata);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000647#endif
648 }
649
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000650 // td_flags.executing must be marked as 0 after __kmp_release_deps has been called
651 // Othertwise, if a task is executed immediately from the release_deps code
652 // the flag will be reset to 1 again by this same function
653 KMP_DEBUG_ASSERT( taskdata -> td_flags.executing == 1 );
654 taskdata -> td_flags.executing = 0; // suspend the finishing task
655
Jim Cownie5e8470a2013-09-27 10:38:44 +0000656 KA_TRACE(20, ("__kmp_task_finish: T#%d finished task %p, %d incomplete children\n",
657 gtid, taskdata, children) );
658
Jim Cownie181b4bb2013-12-23 17:28:57 +0000659#if OMP_40_ENABLED
660 /* If the tasks' destructor thunk flag has been set, we need to invoke the
661 destructor thunk that has been generated by the compiler.
662 The code is placed here, since at this point other tasks might have been released
663 hence overlapping the destructor invokations with some other work in the
664 released tasks. The OpenMP spec is not specific on when the destructors are
665 invoked, so we should be free to choose.
666 */
667 if (taskdata->td_flags.destructors_thunk) {
668 kmp_routine_entry_t destr_thunk = task->destructors;
669 KMP_ASSERT(destr_thunk);
670 destr_thunk(gtid, task);
671 }
672#endif // OMP_40_ENABLED
673
Jim Cownie5e8470a2013-09-27 10:38:44 +0000674 // bookkeeping for resuming task:
675 // GEH - note tasking_ser => task_serial
676 KMP_DEBUG_ASSERT( (taskdata->td_flags.tasking_ser || taskdata->td_flags.task_serial) ==
677 taskdata->td_flags.task_serial);
678 if ( taskdata->td_flags.task_serial )
679 {
680 if (resumed_task == NULL) {
681 resumed_task = taskdata->td_parent; // In a serialized task, the resumed task is the parent
682 }
683 else {
684 // verify resumed task passed in points to parent
685 KMP_DEBUG_ASSERT( resumed_task == taskdata->td_parent );
686 }
687 }
688 else {
689 KMP_DEBUG_ASSERT( resumed_task != NULL ); // verify that resumed task is passed as arguemnt
690 }
691
692 // Free this task and then ancestor tasks if they have no children.
693 __kmp_free_task_and_ancestors(gtid, taskdata, thread);
694
Andrey Churbanovd7d088f2015-04-29 16:42:24 +0000695 // FIXME johnmc: I this statement should be before the last one so if an
696 // asynchronous inquiry peers into the runtime system it doesn't see the freed
697 // task as the current task
Jim Cownie5e8470a2013-09-27 10:38:44 +0000698 __kmp_threads[ gtid ] -> th.th_current_task = resumed_task; // restore current_task
699
700 // TODO: GEH - make sure root team implicit task is initialized properly.
701 // KMP_DEBUG_ASSERT( resumed_task->td_flags.executing == 0 );
702 resumed_task->td_flags.executing = 1; // resume previous task
703
704 KA_TRACE(10, ("__kmp_task_finish(exit): T#%d finished task %p, resuming task %p\n",
705 gtid, taskdata, resumed_task) );
706
707 return;
708}
709
710//---------------------------------------------------------------------
711// __kmpc_omp_task_complete_if0: report that a task has completed execution
712// loc_ref: source location information; points to end of task block.
713// gtid: global thread number.
714// task: task thunk for the completed task.
715
716void
717__kmpc_omp_task_complete_if0( ident_t *loc_ref, kmp_int32 gtid, kmp_task_t *task )
718{
719 KA_TRACE(10, ("__kmpc_omp_task_complete_if0(enter): T#%d loc=%p task=%p\n",
720 gtid, loc_ref, KMP_TASK_TO_TASKDATA(task) ) );
721
722 __kmp_task_finish( gtid, task, NULL ); // this routine will provide task to resume
723
724 KA_TRACE(10, ("__kmpc_omp_task_complete_if0(exit): T#%d loc=%p task=%p\n",
725 gtid, loc_ref, KMP_TASK_TO_TASKDATA(task) ) );
726
727 return;
728}
729
730#ifdef TASK_UNUSED
731//---------------------------------------------------------------------
732// __kmpc_omp_task_complete: report that a task has completed execution
733// NEVER GENERATED BY COMPILER, DEPRECATED!!!
734
735void
736__kmpc_omp_task_complete( ident_t *loc_ref, kmp_int32 gtid, kmp_task_t *task )
737{
738 KA_TRACE(10, ("__kmpc_omp_task_complete(enter): T#%d loc=%p task=%p\n",
739 gtid, loc_ref, KMP_TASK_TO_TASKDATA(task) ) );
740
741 __kmp_task_finish( gtid, task, NULL ); // Not sure how to find task to resume
742
743 KA_TRACE(10, ("__kmpc_omp_task_complete(exit): T#%d loc=%p task=%p\n",
744 gtid, loc_ref, KMP_TASK_TO_TASKDATA(task) ) );
745 return;
746}
747#endif // TASK_UNUSED
748
749
Andrey Churbanove5f44922015-04-29 16:22:07 +0000750#if OMPT_SUPPORT
751//----------------------------------------------------------------------------------------------------
752// __kmp_task_init_ompt:
Jonathan Peytonb401db62015-10-09 17:38:05 +0000753// Initialize OMPT fields maintained by a task. This will only be called after
754// ompt_tool, so we already know whether ompt is enabled or not.
Andrey Churbanove5f44922015-04-29 16:22:07 +0000755
Jonathan Peytonb401db62015-10-09 17:38:05 +0000756static inline void
757__kmp_task_init_ompt( kmp_taskdata_t * task, int tid, void * function )
Andrey Churbanove5f44922015-04-29 16:22:07 +0000758{
Jonathan Peytonb401db62015-10-09 17:38:05 +0000759 if (ompt_enabled) {
760 task->ompt_task_info.task_id = __ompt_task_id_new(tid);
761 task->ompt_task_info.function = function;
762 task->ompt_task_info.frame.exit_runtime_frame = NULL;
763 task->ompt_task_info.frame.reenter_runtime_frame = NULL;
764 }
Andrey Churbanove5f44922015-04-29 16:22:07 +0000765}
766#endif
767
768
Jim Cownie5e8470a2013-09-27 10:38:44 +0000769//----------------------------------------------------------------------------------------------------
770// __kmp_init_implicit_task: Initialize the appropriate fields in the implicit task for a given thread
771//
772// loc_ref: reference to source location of parallel region
773// this_thr: thread data structure corresponding to implicit task
774// team: team for this_thr
775// tid: thread id of given thread within team
776// set_curr_task: TRUE if need to push current task to thread
777// NOTE: Routine does not set up the implicit task ICVS. This is assumed to have already been done elsewhere.
778// TODO: Get better loc_ref. Value passed in may be NULL
779
780void
781__kmp_init_implicit_task( ident_t *loc_ref, kmp_info_t *this_thr, kmp_team_t *team, int tid, int set_curr_task )
782{
783 kmp_taskdata_t * task = & team->t.t_implicit_task_taskdata[ tid ];
784
785 KF_TRACE(10, ("__kmp_init_implicit_task(enter): T#:%d team=%p task=%p, reinit=%s\n",
786 tid, team, task, set_curr_task ? "TRUE" : "FALSE" ) );
787
788 task->td_task_id = KMP_GEN_TASK_ID();
789 task->td_team = team;
790// task->td_parent = NULL; // fix for CQ230101 (broken parent task info in debugger)
791 task->td_ident = loc_ref;
792 task->td_taskwait_ident = NULL;
793 task->td_taskwait_counter = 0;
794 task->td_taskwait_thread = 0;
795
796 task->td_flags.tiedness = TASK_TIED;
797 task->td_flags.tasktype = TASK_IMPLICIT;
Andrey Churbanov535b6fa2015-05-07 17:41:51 +0000798#if OMP_41_ENABLED
799 task->td_flags.proxy = TASK_FULL;
800#endif
801
Jim Cownie5e8470a2013-09-27 10:38:44 +0000802 // All implicit tasks are executed immediately, not deferred
803 task->td_flags.task_serial = 1;
804 task->td_flags.tasking_ser = ( __kmp_tasking_mode == tskm_immediate_exec );
805 task->td_flags.team_serial = ( team->t.t_serialized ) ? 1 : 0;
806
807 task->td_flags.started = 1;
808 task->td_flags.executing = 1;
809 task->td_flags.complete = 0;
810 task->td_flags.freed = 0;
811
Jim Cownie181b4bb2013-12-23 17:28:57 +0000812#if OMP_40_ENABLED
Jim Cownie5e8470a2013-09-27 10:38:44 +0000813 task->td_dephash = NULL;
814 task->td_depnode = NULL;
Jim Cownie181b4bb2013-12-23 17:28:57 +0000815#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +0000816
817 if (set_curr_task) { // only do this initialization the first time a thread is created
818 task->td_incomplete_child_tasks = 0;
819 task->td_allocated_child_tasks = 0; // Not used because do not need to deallocate implicit task
820#if OMP_40_ENABLED
821 task->td_taskgroup = NULL; // An implicit task does not have taskgroup
822#endif
823 __kmp_push_current_task_to_thread( this_thr, team, tid );
824 } else {
825 KMP_DEBUG_ASSERT(task->td_incomplete_child_tasks == 0);
826 KMP_DEBUG_ASSERT(task->td_allocated_child_tasks == 0);
827 }
828
Andrey Churbanovd7d088f2015-04-29 16:42:24 +0000829#if OMPT_SUPPORT
Jonathan Peytonb401db62015-10-09 17:38:05 +0000830 __kmp_task_init_ompt(task, tid, NULL);
Andrey Churbanovd7d088f2015-04-29 16:42:24 +0000831#endif
832
Jim Cownie5e8470a2013-09-27 10:38:44 +0000833 KF_TRACE(10, ("__kmp_init_implicit_task(exit): T#:%d team=%p task=%p\n",
834 tid, team, task ) );
835}
836
837// Round up a size to a power of two specified by val
838// Used to insert padding between structures co-allocated using a single malloc() call
839static size_t
840__kmp_round_up_to_val( size_t size, size_t val ) {
841 if ( size & ( val - 1 ) ) {
842 size &= ~ ( val - 1 );
843 if ( size <= KMP_SIZE_T_MAX - val ) {
844 size += val; // Round up if there is no overflow.
845 }; // if
846 }; // if
847 return size;
848} // __kmp_round_up_to_va
849
850
851//---------------------------------------------------------------------------------
852// __kmp_task_alloc: Allocate the taskdata and task data structures for a task
853//
854// loc_ref: source location information
855// gtid: global thread number.
856// flags: include tiedness & task type (explicit vs. implicit) of the ''new'' task encountered.
857// Converted from kmp_int32 to kmp_tasking_flags_t in routine.
858// sizeof_kmp_task_t: Size in bytes of kmp_task_t data structure including private vars accessed in task.
859// sizeof_shareds: Size in bytes of array of pointers to shared vars accessed in task.
860// task_entry: Pointer to task code entry point generated by compiler.
861// returns: a pointer to the allocated kmp_task_t structure (task).
862
863kmp_task_t *
864__kmp_task_alloc( ident_t *loc_ref, kmp_int32 gtid, kmp_tasking_flags_t *flags,
865 size_t sizeof_kmp_task_t, size_t sizeof_shareds,
866 kmp_routine_entry_t task_entry )
867{
868 kmp_task_t *task;
869 kmp_taskdata_t *taskdata;
870 kmp_info_t *thread = __kmp_threads[ gtid ];
871 kmp_team_t *team = thread->th.th_team;
872 kmp_taskdata_t *parent_task = thread->th.th_current_task;
873 size_t shareds_offset;
874
875 KA_TRACE(10, ("__kmp_task_alloc(enter): T#%d loc=%p, flags=(0x%x) "
876 "sizeof_task=%ld sizeof_shared=%ld entry=%p\n",
877 gtid, loc_ref, *((kmp_int32 *)flags), sizeof_kmp_task_t,
878 sizeof_shareds, task_entry) );
879
880 if ( parent_task->td_flags.final ) {
881 if (flags->merged_if0) {
882 }
883 flags->final = 1;
884 }
885
Andrey Churbanov535b6fa2015-05-07 17:41:51 +0000886#if OMP_41_ENABLED
887 if ( flags->proxy == TASK_PROXY ) {
888 flags->tiedness = TASK_UNTIED;
889 flags->merged_if0 = 1;
890
891 /* are we running in a sequential parallel or tskm_immediate_exec... we need tasking support enabled */
892 if ( (thread->th.th_task_team) == NULL ) {
893 /* This should only happen if the team is serialized
894 setup a task team and propagate it to the thread
895 */
896 KMP_DEBUG_ASSERT(team->t.t_serialized);
897 KA_TRACE(30,("T#%d creating task team in __kmp_task_alloc for proxy task\n", gtid));
898 __kmp_task_team_setup(thread,team,0,1); // 0,1 indicates only setup the current team regardless of nthreads
899 thread->th.th_task_team = team->t.t_task_team[thread->th.th_task_state];
900 }
901 kmp_task_team_t * task_team = thread->th.th_task_team;
902
903 /* tasking must be enabled now as the task might not be pushed */
904 if ( !KMP_TASKING_ENABLED( task_team ) ) {
905 KA_TRACE(30,("T#%d enabling tasking in __kmp_task_alloc for proxy task\n", gtid));
906 __kmp_enable_tasking( task_team, thread );
907 kmp_int32 tid = thread->th.th_info.ds.ds_tid;
908 kmp_thread_data_t * thread_data = & task_team -> tt.tt_threads_data[ tid ];
909 // No lock needed since only owner can allocate
910 if (thread_data -> td.td_deque == NULL ) {
911 __kmp_alloc_task_deque( thread, thread_data );
912 }
913 }
914
915 if ( task_team->tt.tt_found_proxy_tasks == FALSE )
916 TCW_4(task_team -> tt.tt_found_proxy_tasks, TRUE);
917 }
918#endif
919
Jim Cownie5e8470a2013-09-27 10:38:44 +0000920 // Calculate shared structure offset including padding after kmp_task_t struct
921 // to align pointers in shared struct
922 shareds_offset = sizeof( kmp_taskdata_t ) + sizeof_kmp_task_t;
923 shareds_offset = __kmp_round_up_to_val( shareds_offset, sizeof( void * ));
924
925 // Allocate a kmp_taskdata_t block and a kmp_task_t block.
926 KA_TRACE(30, ("__kmp_task_alloc: T#%d First malloc size: %ld\n",
927 gtid, shareds_offset) );
928 KA_TRACE(30, ("__kmp_task_alloc: T#%d Second malloc size: %ld\n",
929 gtid, sizeof_shareds) );
930
931 // Avoid double allocation here by combining shareds with taskdata
932 #if USE_FAST_MEMORY
933 taskdata = (kmp_taskdata_t *) __kmp_fast_allocate( thread, shareds_offset + sizeof_shareds );
934 #else /* ! USE_FAST_MEMORY */
935 taskdata = (kmp_taskdata_t *) __kmp_thread_malloc( thread, shareds_offset + sizeof_shareds );
936 #endif /* USE_FAST_MEMORY */
937
938 task = KMP_TASKDATA_TO_TASK(taskdata);
939
940 // Make sure task & taskdata are aligned appropriately
Andrey Churbanovd1c55042015-01-19 18:29:35 +0000941#if KMP_ARCH_X86 || KMP_ARCH_PPC64 || !KMP_HAVE_QUAD
Jim Cownie5e8470a2013-09-27 10:38:44 +0000942 KMP_DEBUG_ASSERT( ( ((kmp_uintptr_t)taskdata) & (sizeof(double)-1) ) == 0 );
943 KMP_DEBUG_ASSERT( ( ((kmp_uintptr_t)task) & (sizeof(double)-1) ) == 0 );
944#else
945 KMP_DEBUG_ASSERT( ( ((kmp_uintptr_t)taskdata) & (sizeof(_Quad)-1) ) == 0 );
946 KMP_DEBUG_ASSERT( ( ((kmp_uintptr_t)task) & (sizeof(_Quad)-1) ) == 0 );
947#endif
948 if (sizeof_shareds > 0) {
949 // Avoid double allocation here by combining shareds with taskdata
950 task->shareds = & ((char *) taskdata)[ shareds_offset ];
951 // Make sure shareds struct is aligned to pointer size
952 KMP_DEBUG_ASSERT( ( ((kmp_uintptr_t)task->shareds) & (sizeof(void *)-1) ) == 0 );
953 } else {
954 task->shareds = NULL;
955 }
956 task->routine = task_entry;
957 task->part_id = 0; // AC: Always start with 0 part id
958
959 taskdata->td_task_id = KMP_GEN_TASK_ID();
960 taskdata->td_team = team;
Jim Cownie181b4bb2013-12-23 17:28:57 +0000961 taskdata->td_alloc_thread = thread;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000962 taskdata->td_parent = parent_task;
963 taskdata->td_level = parent_task->td_level + 1; // increment nesting level
964 taskdata->td_ident = loc_ref;
965 taskdata->td_taskwait_ident = NULL;
966 taskdata->td_taskwait_counter = 0;
967 taskdata->td_taskwait_thread = 0;
968 KMP_DEBUG_ASSERT( taskdata->td_parent != NULL );
Andrey Churbanov535b6fa2015-05-07 17:41:51 +0000969#if OMP_41_ENABLED
970 // avoid copying icvs for proxy tasks
971 if ( flags->proxy == TASK_FULL )
972#endif
973 copy_icvs( &taskdata->td_icvs, &taskdata->td_parent->td_icvs );
Jim Cownie5e8470a2013-09-27 10:38:44 +0000974
975 taskdata->td_flags.tiedness = flags->tiedness;
976 taskdata->td_flags.final = flags->final;
977 taskdata->td_flags.merged_if0 = flags->merged_if0;
Jim Cownie181b4bb2013-12-23 17:28:57 +0000978#if OMP_40_ENABLED
979 taskdata->td_flags.destructors_thunk = flags->destructors_thunk;
980#endif // OMP_40_ENABLED
Andrey Churbanov535b6fa2015-05-07 17:41:51 +0000981#if OMP_41_ENABLED
982 taskdata->td_flags.proxy = flags->proxy;
983#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +0000984 taskdata->td_flags.tasktype = TASK_EXPLICIT;
985
986 // GEH - TODO: fix this to copy parent task's value of tasking_ser flag
987 taskdata->td_flags.tasking_ser = ( __kmp_tasking_mode == tskm_immediate_exec );
988
989 // GEH - TODO: fix this to copy parent task's value of team_serial flag
990 taskdata->td_flags.team_serial = ( team->t.t_serialized ) ? 1 : 0;
991
992 // GEH - Note we serialize the task if the team is serialized to make sure implicit parallel region
993 // tasks are not left until program termination to execute. Also, it helps locality to execute
994 // immediately.
Jonathan Peyton7881aa12015-05-21 21:16:38 +0000995 taskdata->td_flags.task_serial = ( parent_task->td_flags.final
Jim Cownie5e8470a2013-09-27 10:38:44 +0000996 || taskdata->td_flags.team_serial || taskdata->td_flags.tasking_ser );
997
998 taskdata->td_flags.started = 0;
999 taskdata->td_flags.executing = 0;
1000 taskdata->td_flags.complete = 0;
1001 taskdata->td_flags.freed = 0;
1002
1003 taskdata->td_flags.native = flags->native;
1004
1005 taskdata->td_incomplete_child_tasks = 0;
1006 taskdata->td_allocated_child_tasks = 1; // start at one because counts current task and children
1007#if OMP_40_ENABLED
1008 taskdata->td_taskgroup = parent_task->td_taskgroup; // task inherits the taskgroup from the parent task
1009 taskdata->td_dephash = NULL;
1010 taskdata->td_depnode = NULL;
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001011#endif
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001012
1013 // Only need to keep track of child task counts if team parallel and tasking not serialized or if it is a proxy task
1014#if OMP_41_ENABLED
1015 if ( flags->proxy == TASK_PROXY || !( taskdata -> td_flags.team_serial || taskdata -> td_flags.tasking_ser ) )
1016#else
1017 if ( !( taskdata -> td_flags.team_serial || taskdata -> td_flags.tasking_ser ) )
1018#endif
1019 {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001020 KMP_TEST_THEN_INC32( (kmp_int32 *)(& parent_task->td_incomplete_child_tasks) );
1021#if OMP_40_ENABLED
1022 if ( parent_task->td_taskgroup )
1023 KMP_TEST_THEN_INC32( (kmp_int32 *)(& parent_task->td_taskgroup->count) );
1024#endif
1025 // Only need to keep track of allocated child tasks for explicit tasks since implicit not deallocated
1026 if ( taskdata->td_parent->td_flags.tasktype == TASK_EXPLICIT ) {
1027 KMP_TEST_THEN_INC32( (kmp_int32 *)(& taskdata->td_parent->td_allocated_child_tasks) );
1028 }
1029 }
1030
1031 KA_TRACE(20, ("__kmp_task_alloc(exit): T#%d created task %p parent=%p\n",
1032 gtid, taskdata, taskdata->td_parent) );
1033
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001034#if OMPT_SUPPORT
Jonathan Peytonb401db62015-10-09 17:38:05 +00001035 __kmp_task_init_ompt(taskdata, gtid, (void*) task_entry);
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001036#endif
1037
Jim Cownie5e8470a2013-09-27 10:38:44 +00001038 return task;
1039}
1040
1041
1042kmp_task_t *
1043__kmpc_omp_task_alloc( ident_t *loc_ref, kmp_int32 gtid, kmp_int32 flags,
1044 size_t sizeof_kmp_task_t, size_t sizeof_shareds,
1045 kmp_routine_entry_t task_entry )
1046{
1047 kmp_task_t *retval;
1048 kmp_tasking_flags_t *input_flags = (kmp_tasking_flags_t *) & flags;
1049
1050 input_flags->native = FALSE;
1051 // __kmp_task_alloc() sets up all other runtime flags
1052
Jonathan Peyton1c9e6432015-06-03 18:24:02 +00001053#if OMP_41_ENABLED
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001054 KA_TRACE(10, ("__kmpc_omp_task_alloc(enter): T#%d loc=%p, flags=(%s %s) "
Jim Cownie5e8470a2013-09-27 10:38:44 +00001055 "sizeof_task=%ld sizeof_shared=%ld entry=%p\n",
1056 gtid, loc_ref, input_flags->tiedness ? "tied " : "untied",
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001057 input_flags->proxy ? "proxy" : "",
Jim Cownie5e8470a2013-09-27 10:38:44 +00001058 sizeof_kmp_task_t, sizeof_shareds, task_entry) );
Jonathan Peyton1c9e6432015-06-03 18:24:02 +00001059#else
1060 KA_TRACE(10, ("__kmpc_omp_task_alloc(enter): T#%d loc=%p, flags=(%s) "
1061 "sizeof_task=%ld sizeof_shared=%ld entry=%p\n",
1062 gtid, loc_ref, input_flags->tiedness ? "tied " : "untied",
1063 sizeof_kmp_task_t, sizeof_shareds, task_entry) );
1064#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001065
1066 retval = __kmp_task_alloc( loc_ref, gtid, input_flags, sizeof_kmp_task_t,
1067 sizeof_shareds, task_entry );
1068
1069 KA_TRACE(20, ("__kmpc_omp_task_alloc(exit): T#%d retval %p\n", gtid, retval) );
1070
1071 return retval;
1072}
1073
1074//-----------------------------------------------------------
1075// __kmp_invoke_task: invoke the specified task
1076//
1077// gtid: global thread ID of caller
1078// task: the task to invoke
1079// current_task: the task to resume after task invokation
1080
1081static void
1082__kmp_invoke_task( kmp_int32 gtid, kmp_task_t *task, kmp_taskdata_t * current_task )
1083{
1084 kmp_taskdata_t * taskdata = KMP_TASK_TO_TASKDATA(task);
Jim Cownie181b4bb2013-12-23 17:28:57 +00001085#if OMP_40_ENABLED
1086 int discard = 0 /* false */;
1087#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001088 KA_TRACE(30, ("__kmp_invoke_task(enter): T#%d invoking task %p, current_task=%p\n",
1089 gtid, taskdata, current_task) );
Jonathan Peytone03b62f2015-10-08 18:49:40 +00001090 KMP_DEBUG_ASSERT(task);
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001091#if OMP_41_ENABLED
1092 if ( taskdata->td_flags.proxy == TASK_PROXY &&
1093 taskdata->td_flags.complete == 1)
1094 {
1095 // This is a proxy task that was already completed but it needs to run
1096 // its bottom-half finish
1097 KA_TRACE(30, ("__kmp_invoke_task: T#%d running bottom finish for proxy task %p\n",
1098 gtid, taskdata) );
1099
1100 __kmp_bottom_half_finish_proxy(gtid,task);
1101
1102 KA_TRACE(30, ("__kmp_invoke_task(exit): T#%d completed bottom finish for proxy task %p, resuming task %p\n", gtid, taskdata, current_task) );
1103
1104 return;
1105 }
1106#endif
1107
1108#if OMP_41_ENABLED
1109 // Proxy tasks are not handled by the runtime
1110 if ( taskdata->td_flags.proxy != TASK_PROXY )
1111#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001112 __kmp_task_start( gtid, task, current_task );
1113
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001114#if OMPT_SUPPORT
1115 ompt_thread_info_t oldInfo;
1116 kmp_info_t * thread;
Jonathan Peytonb68a85d2015-09-21 18:11:22 +00001117 if (ompt_enabled) {
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001118 // Store the threads states and restore them after the task
1119 thread = __kmp_threads[ gtid ];
1120 oldInfo = thread->th.ompt_thread_info;
1121 thread->th.ompt_thread_info.wait_id = 0;
1122 thread->th.ompt_thread_info.state = ompt_state_work_parallel;
1123 taskdata->ompt_task_info.frame.exit_runtime_frame = __builtin_frame_address(0);
1124 }
1125#endif
1126
Jim Cownie181b4bb2013-12-23 17:28:57 +00001127#if OMP_40_ENABLED
1128 // TODO: cancel tasks if the parallel region has also been cancelled
1129 // TODO: check if this sequence can be hoisted above __kmp_task_start
1130 // if cancellation has been enabled for this run ...
1131 if (__kmp_omp_cancellation) {
1132 kmp_info_t *this_thr = __kmp_threads [ gtid ];
1133 kmp_team_t * this_team = this_thr->th.th_team;
1134 kmp_taskgroup_t * taskgroup = taskdata->td_taskgroup;
1135 if ((taskgroup && taskgroup->cancel_request) || (this_team->t.t_cancel_request == cancel_parallel)) {
Jonathan Peyton45be4502015-08-11 21:36:41 +00001136 KMP_COUNT_BLOCK(TASK_cancelled);
Jim Cownie181b4bb2013-12-23 17:28:57 +00001137 // this task belongs to a task group and we need to cancel it
1138 discard = 1 /* true */;
1139 }
1140 }
1141
Jim Cownie5e8470a2013-09-27 10:38:44 +00001142 //
1143 // Invoke the task routine and pass in relevant data.
1144 // Thunks generated by gcc take a different argument list.
1145 //
Jim Cownie181b4bb2013-12-23 17:28:57 +00001146 if (!discard) {
Jonathan Peyton45be4502015-08-11 21:36:41 +00001147 KMP_COUNT_BLOCK(TASK_executed);
1148 KMP_TIME_BLOCK (TASK_execution);
Jim Cownie181b4bb2013-12-23 17:28:57 +00001149#endif // OMP_40_ENABLED
Jim Cownie5e8470a2013-09-27 10:38:44 +00001150#ifdef KMP_GOMP_COMPAT
Jim Cownie181b4bb2013-12-23 17:28:57 +00001151 if (taskdata->td_flags.native) {
1152 ((void (*)(void *))(*(task->routine)))(task->shareds);
1153 }
1154 else
Jim Cownie5e8470a2013-09-27 10:38:44 +00001155#endif /* KMP_GOMP_COMPAT */
Jim Cownie181b4bb2013-12-23 17:28:57 +00001156 {
1157 (*(task->routine))(gtid, task);
1158 }
1159#if OMP_40_ENABLED
Jim Cownie5e8470a2013-09-27 10:38:44 +00001160 }
Jim Cownie181b4bb2013-12-23 17:28:57 +00001161#endif // OMP_40_ENABLED
Jim Cownie5e8470a2013-09-27 10:38:44 +00001162
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001163
1164#if OMPT_SUPPORT
Jonathan Peytonb68a85d2015-09-21 18:11:22 +00001165 if (ompt_enabled) {
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001166 thread->th.ompt_thread_info = oldInfo;
1167 taskdata->ompt_task_info.frame.exit_runtime_frame = 0;
1168 }
1169#endif
1170
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001171#if OMP_41_ENABLED
1172 // Proxy tasks are not handled by the runtime
1173 if ( taskdata->td_flags.proxy != TASK_PROXY )
1174#endif
1175 __kmp_task_finish( gtid, task, current_task );
Jim Cownie5e8470a2013-09-27 10:38:44 +00001176
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001177 KA_TRACE(30, ("__kmp_invoke_task(exit): T#%d completed task %p, resuming task %p\n",
Jim Cownie5e8470a2013-09-27 10:38:44 +00001178 gtid, taskdata, current_task) );
1179 return;
1180}
1181
1182//-----------------------------------------------------------------------
1183// __kmpc_omp_task_parts: Schedule a thread-switchable task for execution
1184//
1185// loc_ref: location of original task pragma (ignored)
1186// gtid: Global Thread ID of encountering thread
1187// new_task: task thunk allocated by __kmp_omp_task_alloc() for the ''new task''
1188// Returns:
1189// TASK_CURRENT_NOT_QUEUED (0) if did not suspend and queue current task to be resumed later.
1190// TASK_CURRENT_QUEUED (1) if suspended and queued the current task to be resumed later.
1191
1192kmp_int32
1193__kmpc_omp_task_parts( ident_t *loc_ref, kmp_int32 gtid, kmp_task_t * new_task)
1194{
1195 kmp_taskdata_t * new_taskdata = KMP_TASK_TO_TASKDATA(new_task);
1196
1197 KA_TRACE(10, ("__kmpc_omp_task_parts(enter): T#%d loc=%p task=%p\n",
1198 gtid, loc_ref, new_taskdata ) );
1199
1200 /* Should we execute the new task or queue it? For now, let's just always try to
1201 queue it. If the queue fills up, then we'll execute it. */
1202
1203 if ( __kmp_push_task( gtid, new_task ) == TASK_NOT_PUSHED ) // if cannot defer
1204 { // Execute this task immediately
1205 kmp_taskdata_t * current_task = __kmp_threads[ gtid ] -> th.th_current_task;
1206 new_taskdata->td_flags.task_serial = 1;
1207 __kmp_invoke_task( gtid, new_task, current_task );
1208 }
1209
1210 KA_TRACE(10, ("__kmpc_omp_task_parts(exit): T#%d returning TASK_CURRENT_NOT_QUEUED: "
1211 "loc=%p task=%p, return: TASK_CURRENT_NOT_QUEUED\n", gtid, loc_ref,
1212 new_taskdata ) );
1213
1214 return TASK_CURRENT_NOT_QUEUED;
1215}
1216
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001217//---------------------------------------------------------------------
1218// __kmp_omp_task: Schedule a non-thread-switchable task for execution
1219// gtid: Global Thread ID of encountering thread
1220// new_task: non-thread-switchable task thunk allocated by __kmp_omp_task_alloc()
1221// serialize_immediate: if TRUE then if the task is executed immediately its execution will be serialized
1222// returns:
1223//
1224// TASK_CURRENT_NOT_QUEUED (0) if did not suspend and queue current task to be resumed later.
1225// TASK_CURRENT_QUEUED (1) if suspended and queued the current task to be resumed later.
1226kmp_int32
1227__kmp_omp_task( kmp_int32 gtid, kmp_task_t * new_task, bool serialize_immediate )
1228{
1229 kmp_taskdata_t * new_taskdata = KMP_TASK_TO_TASKDATA(new_task);
1230
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001231#if OMPT_SUPPORT
Jonathan Peytonb68a85d2015-09-21 18:11:22 +00001232 if (ompt_enabled) {
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001233 new_taskdata->ompt_task_info.frame.reenter_runtime_frame =
1234 __builtin_frame_address(0);
1235 }
1236#endif
1237
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001238 /* Should we execute the new task or queue it? For now, let's just always try to
1239 queue it. If the queue fills up, then we'll execute it. */
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001240#if OMP_41_ENABLED
1241 if ( new_taskdata->td_flags.proxy == TASK_PROXY || __kmp_push_task( gtid, new_task ) == TASK_NOT_PUSHED ) // if cannot defer
1242#else
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001243 if ( __kmp_push_task( gtid, new_task ) == TASK_NOT_PUSHED ) // if cannot defer
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001244#endif
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001245 { // Execute this task immediately
1246 kmp_taskdata_t * current_task = __kmp_threads[ gtid ] -> th.th_current_task;
1247 if ( serialize_immediate )
1248 new_taskdata -> td_flags.task_serial = 1;
1249 __kmp_invoke_task( gtid, new_task, current_task );
1250 }
1251
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001252#if OMPT_SUPPORT
Jonathan Peytonb68a85d2015-09-21 18:11:22 +00001253 if (ompt_enabled) {
Andrey Churbanovd7d088f2015-04-29 16:42:24 +00001254 new_taskdata->ompt_task_info.frame.reenter_runtime_frame = 0;
1255 }
1256#endif
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001257
1258 return TASK_CURRENT_NOT_QUEUED;
1259}
Jim Cownie5e8470a2013-09-27 10:38:44 +00001260
1261//---------------------------------------------------------------------
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001262// __kmpc_omp_task: Wrapper around __kmp_omp_task to schedule a non-thread-switchable task from
1263// the parent thread only!
Jim Cownie5e8470a2013-09-27 10:38:44 +00001264// loc_ref: location of original task pragma (ignored)
1265// gtid: Global Thread ID of encountering thread
1266// new_task: non-thread-switchable task thunk allocated by __kmp_omp_task_alloc()
1267// returns:
1268//
1269// TASK_CURRENT_NOT_QUEUED (0) if did not suspend and queue current task to be resumed later.
1270// TASK_CURRENT_QUEUED (1) if suspended and queued the current task to be resumed later.
1271
1272kmp_int32
1273__kmpc_omp_task( ident_t *loc_ref, kmp_int32 gtid, kmp_task_t * new_task)
1274{
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001275 kmp_int32 res;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001276
Jonathan Peytond2eb3c72015-08-26 20:02:21 +00001277#if KMP_DEBUG
1278 kmp_taskdata_t * new_taskdata = KMP_TASK_TO_TASKDATA(new_task);
1279#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001280 KA_TRACE(10, ("__kmpc_omp_task(enter): T#%d loc=%p task=%p\n",
1281 gtid, loc_ref, new_taskdata ) );
1282
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001283 res = __kmp_omp_task(gtid,new_task,true);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001284
1285 KA_TRACE(10, ("__kmpc_omp_task(exit): T#%d returning TASK_CURRENT_NOT_QUEUED: loc=%p task=%p\n",
1286 gtid, loc_ref, new_taskdata ) );
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001287 return res;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001288}
1289
Jim Cownie5e8470a2013-09-27 10:38:44 +00001290//-------------------------------------------------------------------------------------
1291// __kmpc_omp_taskwait: Wait until all tasks generated by the current task are complete
1292
1293kmp_int32
1294__kmpc_omp_taskwait( ident_t *loc_ref, kmp_int32 gtid )
1295{
1296 kmp_taskdata_t * taskdata;
1297 kmp_info_t * thread;
1298 int thread_finished = FALSE;
1299
1300 KA_TRACE(10, ("__kmpc_omp_taskwait(enter): T#%d loc=%p\n",
1301 gtid, loc_ref) );
1302
1303 if ( __kmp_tasking_mode != tskm_immediate_exec ) {
1304 // GEH TODO: shouldn't we have some sort of OMPRAP API calls here to mark begin wait?
1305
1306 thread = __kmp_threads[ gtid ];
1307 taskdata = thread -> th.th_current_task;
1308#if USE_ITT_BUILD
1309 // Note: These values are used by ITT events as well.
1310#endif /* USE_ITT_BUILD */
1311 taskdata->td_taskwait_counter += 1;
1312 taskdata->td_taskwait_ident = loc_ref;
1313 taskdata->td_taskwait_thread = gtid + 1;
1314
1315#if USE_ITT_BUILD
1316 void * itt_sync_obj = __kmp_itt_taskwait_object( gtid );
1317 if ( itt_sync_obj != NULL )
1318 __kmp_itt_taskwait_starting( gtid, itt_sync_obj );
1319#endif /* USE_ITT_BUILD */
1320
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001321#if OMP_41_ENABLED
1322 if ( ! taskdata->td_flags.team_serial || (thread->th.th_task_team != NULL && thread->th.th_task_team->tt.tt_found_proxy_tasks) )
1323#else
1324 if ( ! taskdata->td_flags.team_serial )
1325#endif
Jonathan Peyton1bd61b42015-10-08 19:44:16 +00001326 {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001327 // GEH: if team serialized, avoid reading the volatile variable below.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001328 kmp_flag_32 flag(&(taskdata->td_incomplete_child_tasks), 0U);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001329 while ( TCR_4(taskdata -> td_incomplete_child_tasks) != 0 ) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001330 flag.execute_tasks(thread, gtid, FALSE, &thread_finished
1331 USE_ITT_BUILD_ARG(itt_sync_obj), __kmp_task_stealing_constraint );
Jim Cownie5e8470a2013-09-27 10:38:44 +00001332 }
1333 }
1334#if USE_ITT_BUILD
1335 if ( itt_sync_obj != NULL )
1336 __kmp_itt_taskwait_finished( gtid, itt_sync_obj );
1337#endif /* USE_ITT_BUILD */
1338
1339 // GEH TODO: shouldn't we have some sort of OMPRAP API calls here to mark end of wait?
1340 taskdata->td_taskwait_thread = - taskdata->td_taskwait_thread;
1341 }
1342
1343 KA_TRACE(10, ("__kmpc_omp_taskwait(exit): T#%d task %p finished waiting, "
1344 "returning TASK_CURRENT_NOT_QUEUED\n", gtid, taskdata) );
1345
1346 return TASK_CURRENT_NOT_QUEUED;
1347}
1348
1349
1350//-------------------------------------------------
1351// __kmpc_omp_taskyield: switch to a different task
1352
1353kmp_int32
1354__kmpc_omp_taskyield( ident_t *loc_ref, kmp_int32 gtid, int end_part )
1355{
1356 kmp_taskdata_t * taskdata;
1357 kmp_info_t * thread;
1358 int thread_finished = FALSE;
1359
Jonathan Peyton45be4502015-08-11 21:36:41 +00001360 KMP_COUNT_BLOCK(OMP_TASKYIELD);
1361
Jim Cownie5e8470a2013-09-27 10:38:44 +00001362 KA_TRACE(10, ("__kmpc_omp_taskyield(enter): T#%d loc=%p end_part = %d\n",
1363 gtid, loc_ref, end_part) );
1364
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001365 if ( __kmp_tasking_mode != tskm_immediate_exec && __kmp_init_parallel ) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001366 // GEH TODO: shouldn't we have some sort of OMPRAP API calls here to mark begin wait?
1367
1368 thread = __kmp_threads[ gtid ];
1369 taskdata = thread -> th.th_current_task;
1370 // Should we model this as a task wait or not?
1371#if USE_ITT_BUILD
1372 // Note: These values are used by ITT events as well.
1373#endif /* USE_ITT_BUILD */
1374 taskdata->td_taskwait_counter += 1;
1375 taskdata->td_taskwait_ident = loc_ref;
1376 taskdata->td_taskwait_thread = gtid + 1;
1377
1378#if USE_ITT_BUILD
1379 void * itt_sync_obj = __kmp_itt_taskwait_object( gtid );
1380 if ( itt_sync_obj != NULL )
1381 __kmp_itt_taskwait_starting( gtid, itt_sync_obj );
1382#endif /* USE_ITT_BUILD */
1383 if ( ! taskdata->td_flags.team_serial ) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001384 kmp_task_team_t * task_team = thread->th.th_task_team;
1385 if (task_team != NULL) {
Andrey Churbanov6d224db2015-02-10 18:37:43 +00001386 if (KMP_TASKING_ENABLED(task_team)) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001387 __kmp_execute_tasks_32( thread, gtid, NULL, FALSE, &thread_finished
1388 USE_ITT_BUILD_ARG(itt_sync_obj), __kmp_task_stealing_constraint );
1389 }
1390 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001391 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001392#if USE_ITT_BUILD
1393 if ( itt_sync_obj != NULL )
1394 __kmp_itt_taskwait_finished( gtid, itt_sync_obj );
1395#endif /* USE_ITT_BUILD */
1396
1397 // GEH TODO: shouldn't we have some sort of OMPRAP API calls here to mark end of wait?
1398 taskdata->td_taskwait_thread = - taskdata->td_taskwait_thread;
1399 }
1400
1401 KA_TRACE(10, ("__kmpc_omp_taskyield(exit): T#%d task %p resuming, "
1402 "returning TASK_CURRENT_NOT_QUEUED\n", gtid, taskdata) );
1403
1404 return TASK_CURRENT_NOT_QUEUED;
1405}
1406
1407
1408#if OMP_40_ENABLED
1409//-------------------------------------------------------------------------------------
1410// __kmpc_taskgroup: Start a new taskgroup
1411
1412void
Jim Cownie181b4bb2013-12-23 17:28:57 +00001413__kmpc_taskgroup( ident_t* loc, int gtid )
Jim Cownie5e8470a2013-09-27 10:38:44 +00001414{
1415 kmp_info_t * thread = __kmp_threads[ gtid ];
1416 kmp_taskdata_t * taskdata = thread->th.th_current_task;
1417 kmp_taskgroup_t * tg_new =
1418 (kmp_taskgroup_t *)__kmp_thread_malloc( thread, sizeof( kmp_taskgroup_t ) );
1419 KA_TRACE(10, ("__kmpc_taskgroup: T#%d loc=%p group=%p\n", gtid, loc, tg_new) );
1420 tg_new->count = 0;
Jim Cownie181b4bb2013-12-23 17:28:57 +00001421 tg_new->cancel_request = cancel_noreq;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001422 tg_new->parent = taskdata->td_taskgroup;
1423 taskdata->td_taskgroup = tg_new;
1424}
1425
1426
1427//-------------------------------------------------------------------------------------
1428// __kmpc_end_taskgroup: Wait until all tasks generated by the current task
1429// and its descendants are complete
1430
1431void
Jim Cownie181b4bb2013-12-23 17:28:57 +00001432__kmpc_end_taskgroup( ident_t* loc, int gtid )
Jim Cownie5e8470a2013-09-27 10:38:44 +00001433{
1434 kmp_info_t * thread = __kmp_threads[ gtid ];
1435 kmp_taskdata_t * taskdata = thread->th.th_current_task;
1436 kmp_taskgroup_t * taskgroup = taskdata->td_taskgroup;
1437 int thread_finished = FALSE;
1438
1439 KA_TRACE(10, ("__kmpc_end_taskgroup(enter): T#%d loc=%p\n", gtid, loc) );
1440 KMP_DEBUG_ASSERT( taskgroup != NULL );
1441
1442 if ( __kmp_tasking_mode != tskm_immediate_exec ) {
1443#if USE_ITT_BUILD
1444 // For ITT the taskgroup wait is similar to taskwait until we need to distinguish them
1445 void * itt_sync_obj = __kmp_itt_taskwait_object( gtid );
1446 if ( itt_sync_obj != NULL )
1447 __kmp_itt_taskwait_starting( gtid, itt_sync_obj );
1448#endif /* USE_ITT_BUILD */
1449
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001450#if OMP_41_ENABLED
1451 if ( ! taskdata->td_flags.team_serial || (thread->th.th_task_team != NULL && thread->th.th_task_team->tt.tt_found_proxy_tasks) )
1452#else
1453 if ( ! taskdata->td_flags.team_serial )
1454#endif
Jonathan Peyton1bd61b42015-10-08 19:44:16 +00001455 {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001456 kmp_flag_32 flag(&(taskgroup->count), 0U);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001457 while ( TCR_4(taskgroup->count) != 0 ) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001458 flag.execute_tasks(thread, gtid, FALSE, &thread_finished
1459 USE_ITT_BUILD_ARG(itt_sync_obj), __kmp_task_stealing_constraint );
Jim Cownie5e8470a2013-09-27 10:38:44 +00001460 }
1461 }
1462
1463#if USE_ITT_BUILD
1464 if ( itt_sync_obj != NULL )
1465 __kmp_itt_taskwait_finished( gtid, itt_sync_obj );
1466#endif /* USE_ITT_BUILD */
1467 }
1468 KMP_DEBUG_ASSERT( taskgroup->count == 0 );
1469
1470 // Restore parent taskgroup for the current task
1471 taskdata->td_taskgroup = taskgroup->parent;
1472 __kmp_thread_free( thread, taskgroup );
1473
1474 KA_TRACE(10, ("__kmpc_end_taskgroup(exit): T#%d task %p finished waiting\n", gtid, taskdata) );
1475}
1476#endif
1477
1478
1479//------------------------------------------------------
1480// __kmp_remove_my_task: remove a task from my own deque
1481
1482static kmp_task_t *
1483__kmp_remove_my_task( kmp_info_t * thread, kmp_int32 gtid, kmp_task_team_t *task_team,
1484 kmp_int32 is_constrained )
1485{
1486 kmp_task_t * task;
1487 kmp_taskdata_t * taskdata;
1488 kmp_thread_data_t *thread_data;
1489 kmp_uint32 tail;
1490
1491 KMP_DEBUG_ASSERT( __kmp_tasking_mode != tskm_immediate_exec );
1492 KMP_DEBUG_ASSERT( task_team -> tt.tt_threads_data != NULL ); // Caller should check this condition
1493
1494 thread_data = & task_team -> tt.tt_threads_data[ __kmp_tid_from_gtid( gtid ) ];
1495
1496 KA_TRACE(10, ("__kmp_remove_my_task(enter): T#%d ntasks=%d head=%u tail=%u\n",
1497 gtid, thread_data->td.td_deque_ntasks, thread_data->td.td_deque_head,
1498 thread_data->td.td_deque_tail) );
1499
1500 if (TCR_4(thread_data -> td.td_deque_ntasks) == 0) {
1501 KA_TRACE(10, ("__kmp_remove_my_task(exit #1): T#%d No tasks to remove: ntasks=%d head=%u tail=%u\n",
1502 gtid, thread_data->td.td_deque_ntasks, thread_data->td.td_deque_head,
1503 thread_data->td.td_deque_tail) );
1504 return NULL;
1505 }
1506
1507 __kmp_acquire_bootstrap_lock( & thread_data -> td.td_deque_lock );
1508
1509 if (TCR_4(thread_data -> td.td_deque_ntasks) == 0) {
1510 __kmp_release_bootstrap_lock( & thread_data -> td.td_deque_lock );
1511 KA_TRACE(10, ("__kmp_remove_my_task(exit #2): T#%d No tasks to remove: ntasks=%d head=%u tail=%u\n",
1512 gtid, thread_data->td.td_deque_ntasks, thread_data->td.td_deque_head,
1513 thread_data->td.td_deque_tail) );
1514 return NULL;
1515 }
1516
1517 tail = ( thread_data -> td.td_deque_tail - 1 ) & TASK_DEQUE_MASK; // Wrap index.
1518 taskdata = thread_data -> td.td_deque[ tail ];
1519
1520 if (is_constrained) {
1521 // we need to check if the candidate obeys task scheduling constraint:
1522 // only child of current task can be scheduled
1523 kmp_taskdata_t * current = thread->th.th_current_task;
1524 kmp_int32 level = current->td_level;
1525 kmp_taskdata_t * parent = taskdata->td_parent;
1526 while ( parent != current && parent->td_level > level ) {
1527 parent = parent->td_parent; // check generation up to the level of the current task
1528 KMP_DEBUG_ASSERT(parent != NULL);
1529 }
1530 if ( parent != current ) {
1531 // If the tail task is not a child, then no other childs can appear in the deque.
1532 __kmp_release_bootstrap_lock( & thread_data -> td.td_deque_lock );
1533 KA_TRACE(10, ("__kmp_remove_my_task(exit #2): T#%d No tasks to remove: ntasks=%d head=%u tail=%u\n",
1534 gtid, thread_data->td.td_deque_ntasks, thread_data->td.td_deque_head,
1535 thread_data->td.td_deque_tail) );
1536 return NULL;
1537 }
1538 }
1539
1540 thread_data -> td.td_deque_tail = tail;
1541 TCW_4(thread_data -> td.td_deque_ntasks, thread_data -> td.td_deque_ntasks - 1);
1542
1543 __kmp_release_bootstrap_lock( & thread_data->td.td_deque_lock );
1544
1545 KA_TRACE(10, ("__kmp_remove_my_task(exit #2): T#%d task %p removed: ntasks=%d head=%u tail=%u\n",
1546 gtid, taskdata, thread_data->td.td_deque_ntasks, thread_data->td.td_deque_head,
1547 thread_data->td.td_deque_tail) );
1548
1549 task = KMP_TASKDATA_TO_TASK( taskdata );
1550 return task;
1551}
1552
1553
1554//-----------------------------------------------------------
1555// __kmp_steal_task: remove a task from another thread's deque
1556// Assume that calling thread has already checked existence of
1557// task_team thread_data before calling this routine.
1558
1559static kmp_task_t *
1560__kmp_steal_task( kmp_info_t *victim, kmp_int32 gtid, kmp_task_team_t *task_team,
1561 volatile kmp_uint32 *unfinished_threads, int *thread_finished,
1562 kmp_int32 is_constrained )
1563{
1564 kmp_task_t * task;
1565 kmp_taskdata_t * taskdata;
1566 kmp_thread_data_t *victim_td, *threads_data;
Jonathan Peyton7c4d66d2015-06-08 20:01:14 +00001567 kmp_int32 victim_tid;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001568
1569 KMP_DEBUG_ASSERT( __kmp_tasking_mode != tskm_immediate_exec );
1570
1571 threads_data = task_team -> tt.tt_threads_data;
1572 KMP_DEBUG_ASSERT( threads_data != NULL ); // Caller should check this condition
1573
1574 victim_tid = victim->th.th_info.ds.ds_tid;
1575 victim_td = & threads_data[ victim_tid ];
1576
1577 KA_TRACE(10, ("__kmp_steal_task(enter): T#%d try to steal from T#%d: task_team=%p ntasks=%d "
1578 "head=%u tail=%u\n",
1579 gtid, __kmp_gtid_from_thread( victim ), task_team, victim_td->td.td_deque_ntasks,
1580 victim_td->td.td_deque_head, victim_td->td.td_deque_tail) );
1581
1582 if ( (TCR_4(victim_td -> td.td_deque_ntasks) == 0) || // Caller should not check this condition
1583 (TCR_PTR(victim->th.th_task_team) != task_team)) // GEH: why would this happen?
1584 {
1585 KA_TRACE(10, ("__kmp_steal_task(exit #1): T#%d could not steal from T#%d: task_team=%p "
1586 "ntasks=%d head=%u tail=%u\n",
1587 gtid, __kmp_gtid_from_thread( victim ), task_team, victim_td->td.td_deque_ntasks,
1588 victim_td->td.td_deque_head, victim_td->td.td_deque_tail) );
1589 return NULL;
1590 }
1591
1592 __kmp_acquire_bootstrap_lock( & victim_td -> td.td_deque_lock );
1593
1594 // Check again after we acquire the lock
1595 if ( (TCR_4(victim_td -> td.td_deque_ntasks) == 0) ||
1596 (TCR_PTR(victim->th.th_task_team) != task_team)) // GEH: why would this happen?
1597 {
1598 __kmp_release_bootstrap_lock( & victim_td -> td.td_deque_lock );
1599 KA_TRACE(10, ("__kmp_steal_task(exit #2): T#%d could not steal from T#%d: task_team=%p "
1600 "ntasks=%d head=%u tail=%u\n",
1601 gtid, __kmp_gtid_from_thread( victim ), task_team, victim_td->td.td_deque_ntasks,
1602 victim_td->td.td_deque_head, victim_td->td.td_deque_tail) );
1603 return NULL;
1604 }
1605
1606 KMP_DEBUG_ASSERT( victim_td -> td.td_deque != NULL );
1607
1608 if ( !is_constrained ) {
1609 taskdata = victim_td -> td.td_deque[ victim_td -> td.td_deque_head ];
1610 // Bump head pointer and Wrap.
1611 victim_td -> td.td_deque_head = ( victim_td -> td.td_deque_head + 1 ) & TASK_DEQUE_MASK;
1612 } else {
1613 // While we have postponed tasks let's steal from tail of the deque (smaller tasks)
1614 kmp_int32 tail = ( victim_td -> td.td_deque_tail - 1 ) & TASK_DEQUE_MASK; // Wrap index.
1615 taskdata = victim_td -> td.td_deque[ tail ];
1616 // we need to check if the candidate obeys task scheduling constraint:
1617 // only child of current task can be scheduled
1618 kmp_taskdata_t * current = __kmp_threads[ gtid ]->th.th_current_task;
1619 kmp_int32 level = current->td_level;
1620 kmp_taskdata_t * parent = taskdata->td_parent;
1621 while ( parent != current && parent->td_level > level ) {
1622 parent = parent->td_parent; // check generation up to the level of the current task
1623 KMP_DEBUG_ASSERT(parent != NULL);
1624 }
1625 if ( parent != current ) {
1626 // If the tail task is not a child, then no other childs can appear in the deque (?).
1627 __kmp_release_bootstrap_lock( & victim_td -> td.td_deque_lock );
1628 KA_TRACE(10, ("__kmp_steal_task(exit #2): T#%d could not steal from T#%d: task_team=%p "
1629 "ntasks=%d head=%u tail=%u\n",
1630 gtid, __kmp_gtid_from_thread( threads_data[victim_tid].td.td_thr ),
1631 task_team, victim_td->td.td_deque_ntasks,
1632 victim_td->td.td_deque_head, victim_td->td.td_deque_tail) );
1633 return NULL;
1634 }
1635 victim_td -> td.td_deque_tail = tail;
1636 }
1637 if (*thread_finished) {
1638 // We need to un-mark this victim as a finished victim. This must be done before
1639 // releasing the lock, or else other threads (starting with the master victim)
1640 // might be prematurely released from the barrier!!!
Jonathan Peytone8104ad2015-06-08 18:56:33 +00001641 kmp_uint32 count;
1642
1643 count = KMP_TEST_THEN_INC32( (kmp_int32 *)unfinished_threads );
Jim Cownie5e8470a2013-09-27 10:38:44 +00001644
1645 KA_TRACE(20, ("__kmp_steal_task: T#%d inc unfinished_threads to %d: task_team=%p\n",
1646 gtid, count + 1, task_team) );
1647
1648 *thread_finished = FALSE;
1649 }
1650 TCW_4(victim_td -> td.td_deque_ntasks, TCR_4(victim_td -> td.td_deque_ntasks) - 1);
1651
1652 __kmp_release_bootstrap_lock( & victim_td -> td.td_deque_lock );
1653
Jonathan Peyton45be4502015-08-11 21:36:41 +00001654 KMP_COUNT_BLOCK(TASK_stolen);
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001655 KA_TRACE(10, ("__kmp_steal_task(exit #3): T#%d stole task %p from T#%d: task_team=%p "
Jim Cownie5e8470a2013-09-27 10:38:44 +00001656 "ntasks=%d head=%u tail=%u\n",
1657 gtid, taskdata, __kmp_gtid_from_thread( victim ), task_team,
1658 victim_td->td.td_deque_ntasks, victim_td->td.td_deque_head,
1659 victim_td->td.td_deque_tail) );
1660
1661 task = KMP_TASKDATA_TO_TASK( taskdata );
1662 return task;
1663}
1664
1665
1666//-----------------------------------------------------------------------------
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001667// __kmp_execute_tasks_template: Choose and execute tasks until either the condition
Jim Cownie5e8470a2013-09-27 10:38:44 +00001668// is statisfied (return true) or there are none left (return false).
1669// final_spin is TRUE if this is the spin at the release barrier.
1670// thread_finished indicates whether the thread is finished executing all
1671// the tasks it has on its deque, and is at the release barrier.
1672// spinner is the location on which to spin.
1673// spinner == NULL means only execute a single task and return.
1674// checker is the value to check to terminate the spin.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001675template <class C>
1676static inline int __kmp_execute_tasks_template(kmp_info_t *thread, kmp_int32 gtid, C *flag, int final_spin,
1677 int *thread_finished
1678 USE_ITT_BUILD_ARG(void * itt_sync_obj), kmp_int32 is_constrained)
Jim Cownie5e8470a2013-09-27 10:38:44 +00001679{
1680 kmp_task_team_t * task_team;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001681 kmp_thread_data_t * threads_data;
1682 kmp_task_t * task;
1683 kmp_taskdata_t * current_task = thread -> th.th_current_task;
1684 volatile kmp_uint32 * unfinished_threads;
1685 kmp_int32 nthreads, last_stolen, k, tid;
1686
1687 KMP_DEBUG_ASSERT( __kmp_tasking_mode != tskm_immediate_exec );
1688 KMP_DEBUG_ASSERT( thread == __kmp_threads[ gtid ] );
1689
1690 task_team = thread -> th.th_task_team;
1691 KMP_DEBUG_ASSERT( task_team != NULL );
1692
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001693 KA_TRACE(15, ("__kmp_execute_tasks_template(enter): T#%d final_spin=%d *thread_finished=%d\n",
Jim Cownie5e8470a2013-09-27 10:38:44 +00001694 gtid, final_spin, *thread_finished) );
1695
1696 threads_data = (kmp_thread_data_t *)TCR_PTR(task_team -> tt.tt_threads_data);
1697 KMP_DEBUG_ASSERT( threads_data != NULL );
1698
1699 nthreads = task_team -> tt.tt_nproc;
1700 unfinished_threads = &(task_team -> tt.tt_unfinished_threads);
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001701#if OMP_41_ENABLED
1702 KMP_DEBUG_ASSERT( nthreads > 1 || task_team->tt.tt_found_proxy_tasks);
1703#else
Jim Cownie5e8470a2013-09-27 10:38:44 +00001704 KMP_DEBUG_ASSERT( nthreads > 1 );
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001705#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001706 KMP_DEBUG_ASSERT( TCR_4((int)*unfinished_threads) >= 0 );
1707
1708 // Choose tasks from our own work queue.
1709 start:
1710 while (( task = __kmp_remove_my_task( thread, gtid, task_team, is_constrained )) != NULL ) {
1711#if USE_ITT_BUILD && USE_ITT_NOTIFY
1712 if ( __itt_sync_create_ptr || KMP_ITT_DEBUG ) {
1713 if ( itt_sync_obj == NULL ) {
1714 // we are at fork barrier where we could not get the object reliably
1715 itt_sync_obj = __kmp_itt_barrier_object( gtid, bs_forkjoin_barrier );
1716 }
1717 __kmp_itt_task_starting( itt_sync_obj );
1718 }
1719#endif /* USE_ITT_BUILD && USE_ITT_NOTIFY */
1720 __kmp_invoke_task( gtid, task, current_task );
1721#if USE_ITT_BUILD
1722 if ( itt_sync_obj != NULL )
1723 __kmp_itt_task_finished( itt_sync_obj );
1724#endif /* USE_ITT_BUILD */
1725
1726 // If this thread is only partway through the barrier and the condition
1727 // is met, then return now, so that the barrier gather/release pattern can proceed.
1728 // If this thread is in the last spin loop in the barrier, waiting to be
1729 // released, we know that the termination condition will not be satisified,
1730 // so don't waste any cycles checking it.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001731 if (flag == NULL || (!final_spin && flag->done_check())) {
1732 KA_TRACE(15, ("__kmp_execute_tasks_template(exit #1): T#%d spin condition satisfied\n", gtid) );
Jim Cownie5e8470a2013-09-27 10:38:44 +00001733 return TRUE;
1734 }
1735 KMP_YIELD( __kmp_library == library_throughput ); // Yield before executing next task
1736 }
1737
1738 // This thread's work queue is empty. If we are in the final spin loop
1739 // of the barrier, check and see if the termination condition is satisfied.
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001740#if OMP_41_ENABLED
1741 // The work queue may be empty but there might be proxy tasks still executing
1742 if (final_spin && TCR_4(current_task -> td_incomplete_child_tasks) == 0)
1743#else
1744 if (final_spin)
1745#endif
1746 {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001747 // First, decrement the #unfinished threads, if that has not already
1748 // been done. This decrement might be to the spin location, and
1749 // result in the termination condition being satisfied.
1750 if (! *thread_finished) {
Jonathan Peytone8104ad2015-06-08 18:56:33 +00001751 kmp_uint32 count;
1752
1753 count = KMP_TEST_THEN_DEC32( (kmp_int32 *)unfinished_threads ) - 1;
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001754 KA_TRACE(20, ("__kmp_execute_tasks_template(dec #1): T#%d dec unfinished_threads to %d task_team=%p\n",
Jim Cownie5e8470a2013-09-27 10:38:44 +00001755 gtid, count, task_team) );
1756 *thread_finished = TRUE;
1757 }
1758
1759 // It is now unsafe to reference thread->th.th_team !!!
1760 // Decrementing task_team->tt.tt_unfinished_threads can allow the master
1761 // thread to pass through the barrier, where it might reset each thread's
1762 // th.th_team field for the next parallel region.
1763 // If we can steal more work, we know that this has not happened yet.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001764 if (flag != NULL && flag->done_check()) {
1765 KA_TRACE(15, ("__kmp_execute_tasks_template(exit #2): T#%d spin condition satisfied\n", gtid) );
Jim Cownie5e8470a2013-09-27 10:38:44 +00001766 return TRUE;
1767 }
1768 }
1769
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001770#if OMP_41_ENABLED
1771 // check if there are other threads to steal from, otherwise go back
1772 if ( nthreads == 1 )
1773 goto start;
1774#endif
1775
Jim Cownie5e8470a2013-09-27 10:38:44 +00001776 // Try to steal from the last place I stole from successfully.
1777 tid = thread -> th.th_info.ds.ds_tid;//__kmp_tid_from_gtid( gtid );
1778 last_stolen = threads_data[ tid ].td.td_deque_last_stolen;
1779
1780 if (last_stolen != -1) {
1781 kmp_info_t *other_thread = threads_data[last_stolen].td.td_thr;
1782
1783 while ((task = __kmp_steal_task( other_thread, gtid, task_team, unfinished_threads,
1784 thread_finished, is_constrained )) != NULL)
1785 {
1786#if USE_ITT_BUILD && USE_ITT_NOTIFY
1787 if ( __itt_sync_create_ptr || KMP_ITT_DEBUG ) {
1788 if ( itt_sync_obj == NULL ) {
1789 // we are at fork barrier where we could not get the object reliably
1790 itt_sync_obj = __kmp_itt_barrier_object( gtid, bs_forkjoin_barrier );
1791 }
1792 __kmp_itt_task_starting( itt_sync_obj );
1793 }
1794#endif /* USE_ITT_BUILD && USE_ITT_NOTIFY */
1795 __kmp_invoke_task( gtid, task, current_task );
1796#if USE_ITT_BUILD
1797 if ( itt_sync_obj != NULL )
1798 __kmp_itt_task_finished( itt_sync_obj );
1799#endif /* USE_ITT_BUILD */
1800
1801 // Check to see if this thread can proceed.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001802 if (flag == NULL || (!final_spin && flag->done_check())) {
1803 KA_TRACE(15, ("__kmp_execute_tasks_template(exit #3): T#%d spin condition satisfied\n",
Jim Cownie5e8470a2013-09-27 10:38:44 +00001804 gtid) );
1805 return TRUE;
1806 }
1807
1808 KMP_YIELD( __kmp_library == library_throughput ); // Yield before executing next task
1809 // If the execution of the stolen task resulted in more tasks being
1810 // placed on our run queue, then restart the whole process.
1811 if (TCR_4(threads_data[ tid ].td.td_deque_ntasks) != 0) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001812 KA_TRACE(20, ("__kmp_execute_tasks_template: T#%d stolen task spawned other tasks, restart\n",
Jim Cownie5e8470a2013-09-27 10:38:44 +00001813 gtid) );
1814 goto start;
1815 }
1816 }
1817
1818 // Don't give priority to stealing from this thread anymore.
1819 threads_data[ tid ].td.td_deque_last_stolen = -1;
1820
1821 // The victims's work queue is empty. If we are in the final spin loop
1822 // of the barrier, check and see if the termination condition is satisfied.
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001823#if OMP_41_ENABLED
1824 // The work queue may be empty but there might be proxy tasks still executing
1825 if (final_spin && TCR_4(current_task -> td_incomplete_child_tasks) == 0)
1826#else
1827 if (final_spin)
1828#endif
Jonathan Peyton1bd61b42015-10-08 19:44:16 +00001829 {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001830 // First, decrement the #unfinished threads, if that has not already
1831 // been done. This decrement might be to the spin location, and
1832 // result in the termination condition being satisfied.
1833 if (! *thread_finished) {
Jonathan Peytone8104ad2015-06-08 18:56:33 +00001834 kmp_uint32 count;
1835
1836 count = KMP_TEST_THEN_DEC32( (kmp_int32 *)unfinished_threads ) - 1;
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001837 KA_TRACE(20, ("__kmp_execute_tasks_template(dec #2): T#%d dec unfinished_threads to %d "
Jim Cownie5e8470a2013-09-27 10:38:44 +00001838 "task_team=%p\n", gtid, count, task_team) );
1839 *thread_finished = TRUE;
1840 }
1841
1842 // If __kmp_tasking_mode != tskm_immediate_exec
1843 // then it is now unsafe to reference thread->th.th_team !!!
1844 // Decrementing task_team->tt.tt_unfinished_threads can allow the master
1845 // thread to pass through the barrier, where it might reset each thread's
1846 // th.th_team field for the next parallel region.
1847 // If we can steal more work, we know that this has not happened yet.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001848 if (flag != NULL && flag->done_check()) {
1849 KA_TRACE(15, ("__kmp_execute_tasks_template(exit #4): T#%d spin condition satisfied\n",
Jim Cownie5e8470a2013-09-27 10:38:44 +00001850 gtid) );
1851 return TRUE;
1852 }
1853 }
1854 }
1855
1856 // Find a different thread to steal work from. Pick a random thread.
1857 // My initial plan was to cycle through all the threads, and only return
1858 // if we tried to steal from every thread, and failed. Arch says that's
1859 // not such a great idea.
1860 // GEH - need yield code in this loop for throughput library mode?
1861 new_victim:
1862 k = __kmp_get_random( thread ) % (nthreads - 1);
1863 if ( k >= thread -> th.th_info.ds.ds_tid ) {
1864 ++k; // Adjusts random distribution to exclude self
1865 }
1866 {
1867 kmp_info_t *other_thread = threads_data[k].td.td_thr;
1868 int first;
1869
1870 // There is a slight chance that __kmp_enable_tasking() did not wake up
1871 // all threads waiting at the barrier. If this thread is sleeping, then
Jonathan Peyton1bd61b42015-10-08 19:44:16 +00001872 // wake it up. Since we were going to pay the cache miss penalty
1873 // for referencing another thread's kmp_info_t struct anyway, the check
Jim Cownie5e8470a2013-09-27 10:38:44 +00001874 // shouldn't cost too much performance at this point.
1875 // In extra barrier mode, tasks do not sleep at the separate tasking
1876 // barrier, so this isn't a problem.
1877 if ( ( __kmp_tasking_mode == tskm_task_teams ) &&
1878 (__kmp_dflt_blocktime != KMP_MAX_BLOCKTIME) &&
1879 (TCR_PTR(other_thread->th.th_sleep_loc) != NULL))
1880 {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001881 __kmp_null_resume_wrapper(__kmp_gtid_from_thread(other_thread), other_thread->th.th_sleep_loc);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001882 // A sleeping thread should not have any tasks on it's queue.
Alp Toker8f2d3f02014-02-24 10:40:15 +00001883 // There is a slight possibility that it resumes, steals a task from
Jonathan Peyton1bd61b42015-10-08 19:44:16 +00001884 // another thread, which spawns more tasks, all in the time that it takes
Jim Cownie5e8470a2013-09-27 10:38:44 +00001885 // this thread to check => don't write an assertion that the victim's
1886 // queue is empty. Try stealing from a different thread.
1887 goto new_victim;
1888 }
1889
1890 // Now try to steal work from the selected thread
1891 first = TRUE;
1892 while ((task = __kmp_steal_task( other_thread, gtid, task_team, unfinished_threads,
1893 thread_finished, is_constrained )) != NULL)
1894 {
1895#if USE_ITT_BUILD && USE_ITT_NOTIFY
1896 if ( __itt_sync_create_ptr || KMP_ITT_DEBUG ) {
1897 if ( itt_sync_obj == NULL ) {
1898 // we are at fork barrier where we could not get the object reliably
1899 itt_sync_obj = __kmp_itt_barrier_object( gtid, bs_forkjoin_barrier );
1900 }
1901 __kmp_itt_task_starting( itt_sync_obj );
1902 }
1903#endif /* USE_ITT_BUILD && USE_ITT_NOTIFY */
1904 __kmp_invoke_task( gtid, task, current_task );
1905#if USE_ITT_BUILD
1906 if ( itt_sync_obj != NULL )
1907 __kmp_itt_task_finished( itt_sync_obj );
1908#endif /* USE_ITT_BUILD */
1909
1910 // Try stealing from this victim again, in the future.
1911 if (first) {
1912 threads_data[ tid ].td.td_deque_last_stolen = k;
1913 first = FALSE;
1914 }
1915
1916 // Check to see if this thread can proceed.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001917 if (flag == NULL || (!final_spin && flag->done_check())) {
1918 KA_TRACE(15, ("__kmp_execute_tasks_template(exit #5): T#%d spin condition satisfied\n",
Jim Cownie5e8470a2013-09-27 10:38:44 +00001919 gtid) );
1920 return TRUE;
1921 }
1922 KMP_YIELD( __kmp_library == library_throughput ); // Yield before executing next task
1923
1924 // If the execution of the stolen task resulted in more tasks being
1925 // placed on our run queue, then restart the whole process.
1926 if (TCR_4(threads_data[ tid ].td.td_deque_ntasks) != 0) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001927 KA_TRACE(20, ("__kmp_execute_tasks_template: T#%d stolen task spawned other tasks, restart\n",
Jim Cownie5e8470a2013-09-27 10:38:44 +00001928 gtid) );
1929 goto start;
1930 }
1931 }
1932
1933 // The victims's work queue is empty. If we are in the final spin loop
1934 // of the barrier, check and see if the termination condition is satisfied.
1935 // Going on and finding a new victim to steal from is expensive, as it
1936 // involves a lot of cache misses, so we definitely want to re-check the
1937 // termination condition before doing that.
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00001938#if OMP_41_ENABLED
1939 // The work queue may be empty but there might be proxy tasks still executing
1940 if (final_spin && TCR_4(current_task -> td_incomplete_child_tasks) == 0)
1941#else
1942 if (final_spin)
1943#endif
Jonathan Peyton1bd61b42015-10-08 19:44:16 +00001944 {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001945 // First, decrement the #unfinished threads, if that has not already
1946 // been done. This decrement might be to the spin location, and
1947 // result in the termination condition being satisfied.
1948 if (! *thread_finished) {
Jonathan Peytone8104ad2015-06-08 18:56:33 +00001949 kmp_uint32 count;
1950
1951 count = KMP_TEST_THEN_DEC32( (kmp_int32 *)unfinished_threads ) - 1;
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001952 KA_TRACE(20, ("__kmp_execute_tasks_template(dec #3): T#%d dec unfinished_threads to %d; "
Jim Cownie5e8470a2013-09-27 10:38:44 +00001953 "task_team=%p\n",
1954 gtid, count, task_team) );
1955 *thread_finished = TRUE;
1956 }
1957
1958 // If __kmp_tasking_mode != tskm_immediate_exec,
1959 // then it is now unsafe to reference thread->th.th_team !!!
1960 // Decrementing task_team->tt.tt_unfinished_threads can allow the master
1961 // thread to pass through the barrier, where it might reset each thread's
1962 // th.th_team field for the next parallel region.
1963 // If we can steal more work, we know that this has not happened yet.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001964 if (flag != NULL && flag->done_check()) {
1965 KA_TRACE(15, ("__kmp_execute_tasks_template(exit #6): T#%d spin condition satisfied\n", gtid) );
Jim Cownie5e8470a2013-09-27 10:38:44 +00001966 return TRUE;
1967 }
1968 }
1969 }
1970
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001971 KA_TRACE(15, ("__kmp_execute_tasks_template(exit #7): T#%d can't find work\n", gtid) );
Jim Cownie5e8470a2013-09-27 10:38:44 +00001972 return FALSE;
1973}
1974
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001975int __kmp_execute_tasks_32(kmp_info_t *thread, kmp_int32 gtid, kmp_flag_32 *flag, int final_spin,
1976 int *thread_finished
1977 USE_ITT_BUILD_ARG(void * itt_sync_obj), kmp_int32 is_constrained)
1978{
1979 return __kmp_execute_tasks_template(thread, gtid, flag, final_spin, thread_finished
1980 USE_ITT_BUILD_ARG(itt_sync_obj), is_constrained);
1981}
1982
1983int __kmp_execute_tasks_64(kmp_info_t *thread, kmp_int32 gtid, kmp_flag_64 *flag, int final_spin,
1984 int *thread_finished
1985 USE_ITT_BUILD_ARG(void * itt_sync_obj), kmp_int32 is_constrained)
1986{
1987 return __kmp_execute_tasks_template(thread, gtid, flag, final_spin, thread_finished
1988 USE_ITT_BUILD_ARG(itt_sync_obj), is_constrained);
1989}
1990
1991int __kmp_execute_tasks_oncore(kmp_info_t *thread, kmp_int32 gtid, kmp_flag_oncore *flag, int final_spin,
1992 int *thread_finished
1993 USE_ITT_BUILD_ARG(void * itt_sync_obj), kmp_int32 is_constrained)
1994{
1995 return __kmp_execute_tasks_template(thread, gtid, flag, final_spin, thread_finished
1996 USE_ITT_BUILD_ARG(itt_sync_obj), is_constrained);
1997}
1998
1999
Jim Cownie5e8470a2013-09-27 10:38:44 +00002000
2001//-----------------------------------------------------------------------------
2002// __kmp_enable_tasking: Allocate task team and resume threads sleeping at the
2003// next barrier so they can assist in executing enqueued tasks.
2004// First thread in allocates the task team atomically.
2005
2006static void
2007__kmp_enable_tasking( kmp_task_team_t *task_team, kmp_info_t *this_thr )
2008{
Jim Cownie5e8470a2013-09-27 10:38:44 +00002009 kmp_thread_data_t *threads_data;
2010 int nthreads, i, is_init_thread;
2011
2012 KA_TRACE( 10, ( "__kmp_enable_tasking(enter): T#%d\n",
2013 __kmp_gtid_from_thread( this_thr ) ) );
2014
2015 KMP_DEBUG_ASSERT(task_team != NULL);
Jonathan Peytonfe9a1d72015-08-26 19:58:48 +00002016 KMP_DEBUG_ASSERT(this_thr->th.th_team != NULL);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002017
2018 nthreads = task_team->tt.tt_nproc;
2019 KMP_DEBUG_ASSERT(nthreads > 0);
Jonathan Peytonfe9a1d72015-08-26 19:58:48 +00002020 KMP_DEBUG_ASSERT(nthreads == this_thr->th.th_team->t.t_nproc);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002021
2022 // Allocate or increase the size of threads_data if necessary
2023 is_init_thread = __kmp_realloc_task_threads_data( this_thr, task_team );
2024
2025 if (!is_init_thread) {
2026 // Some other thread already set up the array.
2027 KA_TRACE( 20, ( "__kmp_enable_tasking(exit): T#%d: threads array already set up.\n",
2028 __kmp_gtid_from_thread( this_thr ) ) );
2029 return;
2030 }
2031 threads_data = (kmp_thread_data_t *)TCR_PTR(task_team -> tt.tt_threads_data);
2032 KMP_DEBUG_ASSERT( threads_data != NULL );
2033
2034 if ( ( __kmp_tasking_mode == tskm_task_teams ) &&
2035 ( __kmp_dflt_blocktime != KMP_MAX_BLOCKTIME ) )
2036 {
2037 // Release any threads sleeping at the barrier, so that they can steal
2038 // tasks and execute them. In extra barrier mode, tasks do not sleep
2039 // at the separate tasking barrier, so this isn't a problem.
2040 for (i = 0; i < nthreads; i++) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002041 volatile void *sleep_loc;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002042 kmp_info_t *thread = threads_data[i].td.td_thr;
2043
2044 if (i == this_thr->th.th_info.ds.ds_tid) {
2045 continue;
2046 }
2047 // Since we haven't locked the thread's suspend mutex lock at this
2048 // point, there is a small window where a thread might be putting
2049 // itself to sleep, but hasn't set the th_sleep_loc field yet.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002050 // To work around this, __kmp_execute_tasks_template() periodically checks
Jim Cownie5e8470a2013-09-27 10:38:44 +00002051 // see if other threads are sleeping (using the same random
2052 // mechanism that is used for task stealing) and awakens them if
2053 // they are.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002054 if ( ( sleep_loc = TCR_PTR( thread -> th.th_sleep_loc) ) != NULL )
Jim Cownie5e8470a2013-09-27 10:38:44 +00002055 {
2056 KF_TRACE( 50, ( "__kmp_enable_tasking: T#%d waking up thread T#%d\n",
2057 __kmp_gtid_from_thread( this_thr ),
2058 __kmp_gtid_from_thread( thread ) ) );
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002059 __kmp_null_resume_wrapper(__kmp_gtid_from_thread(thread), sleep_loc);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002060 }
2061 else {
2062 KF_TRACE( 50, ( "__kmp_enable_tasking: T#%d don't wake up thread T#%d\n",
2063 __kmp_gtid_from_thread( this_thr ),
2064 __kmp_gtid_from_thread( thread ) ) );
2065 }
2066 }
2067 }
2068
2069 KA_TRACE( 10, ( "__kmp_enable_tasking(exit): T#%d\n",
2070 __kmp_gtid_from_thread( this_thr ) ) );
2071}
2072
2073
2074/* ------------------------------------------------------------------------ */
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002075/* // TODO: Check the comment consistency
Jim Cownie5e8470a2013-09-27 10:38:44 +00002076 * Utility routines for "task teams". A task team (kmp_task_t) is kind of
2077 * like a shadow of the kmp_team_t data struct, with a different lifetime.
2078 * After a child * thread checks into a barrier and calls __kmp_release() from
2079 * the particular variant of __kmp_<barrier_kind>_barrier_gather(), it can no
2080 * longer assume that the kmp_team_t structure is intact (at any moment, the
2081 * master thread may exit the barrier code and free the team data structure,
2082 * and return the threads to the thread pool).
2083 *
2084 * This does not work with the the tasking code, as the thread is still
2085 * expected to participate in the execution of any tasks that may have been
2086 * spawned my a member of the team, and the thread still needs access to all
2087 * to each thread in the team, so that it can steal work from it.
2088 *
2089 * Enter the existence of the kmp_task_team_t struct. It employs a reference
2090 * counting mechanims, and is allocated by the master thread before calling
2091 * __kmp_<barrier_kind>_release, and then is release by the last thread to
2092 * exit __kmp_<barrier_kind>_release at the next barrier. I.e. the lifetimes
2093 * of the kmp_task_team_t structs for consecutive barriers can overlap
2094 * (and will, unless the master thread is the last thread to exit the barrier
2095 * release phase, which is not typical).
2096 *
2097 * The existence of such a struct is useful outside the context of tasking,
2098 * but for now, I'm trying to keep it specific to the OMP_30_ENABLED macro,
2099 * so that any performance differences show up when comparing the 2.5 vs. 3.0
2100 * libraries.
2101 *
2102 * We currently use the existence of the threads array as an indicator that
2103 * tasks were spawned since the last barrier. If the structure is to be
2104 * useful outside the context of tasking, then this will have to change, but
2105 * not settting the field minimizes the performance impact of tasking on
2106 * barriers, when no explicit tasks were spawned (pushed, actually).
2107 */
2108
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002109
Jim Cownie5e8470a2013-09-27 10:38:44 +00002110static kmp_task_team_t *__kmp_free_task_teams = NULL; // Free list for task_team data structures
2111// Lock for task team data structures
2112static kmp_bootstrap_lock_t __kmp_task_team_lock = KMP_BOOTSTRAP_LOCK_INITIALIZER( __kmp_task_team_lock );
2113
2114
2115//------------------------------------------------------------------------------
2116// __kmp_alloc_task_deque:
2117// Allocates a task deque for a particular thread, and initialize the necessary
2118// data structures relating to the deque. This only happens once per thread
2119// per task team since task teams are recycled.
2120// No lock is needed during allocation since each thread allocates its own
2121// deque.
2122
2123static void
2124__kmp_alloc_task_deque( kmp_info_t *thread, kmp_thread_data_t *thread_data )
2125{
2126 __kmp_init_bootstrap_lock( & thread_data -> td.td_deque_lock );
2127 KMP_DEBUG_ASSERT( thread_data -> td.td_deque == NULL );
2128
2129 // Initialize last stolen task field to "none"
2130 thread_data -> td.td_deque_last_stolen = -1;
2131
2132 KMP_DEBUG_ASSERT( TCR_4(thread_data -> td.td_deque_ntasks) == 0 );
2133 KMP_DEBUG_ASSERT( thread_data -> td.td_deque_head == 0 );
2134 KMP_DEBUG_ASSERT( thread_data -> td.td_deque_tail == 0 );
2135
2136 KE_TRACE( 10, ( "__kmp_alloc_task_deque: T#%d allocating deque[%d] for thread_data %p\n",
2137 __kmp_gtid_from_thread( thread ), TASK_DEQUE_SIZE, thread_data ) );
2138 // Allocate space for task deque, and zero the deque
2139 // Cannot use __kmp_thread_calloc() because threads not around for
2140 // kmp_reap_task_team( ).
2141 thread_data -> td.td_deque = (kmp_taskdata_t **)
2142 __kmp_allocate( TASK_DEQUE_SIZE * sizeof(kmp_taskdata_t *));
2143}
2144
2145
2146//------------------------------------------------------------------------------
2147// __kmp_free_task_deque:
2148// Deallocates a task deque for a particular thread.
2149// Happens at library deallocation so don't need to reset all thread data fields.
2150
2151static void
2152__kmp_free_task_deque( kmp_thread_data_t *thread_data )
2153{
2154 __kmp_acquire_bootstrap_lock( & thread_data -> td.td_deque_lock );
2155
2156 if ( thread_data -> td.td_deque != NULL ) {
2157 TCW_4(thread_data -> td.td_deque_ntasks, 0);
2158 __kmp_free( thread_data -> td.td_deque );
2159 thread_data -> td.td_deque = NULL;
2160 }
2161 __kmp_release_bootstrap_lock( & thread_data -> td.td_deque_lock );
2162
2163#ifdef BUILD_TIED_TASK_STACK
2164 // GEH: Figure out what to do here for td_susp_tied_tasks
2165 if ( thread_data -> td.td_susp_tied_tasks.ts_entries != TASK_STACK_EMPTY ) {
2166 __kmp_free_task_stack( __kmp_thread_from_gtid( gtid ), thread_data );
2167 }
2168#endif // BUILD_TIED_TASK_STACK
2169}
2170
2171
2172//------------------------------------------------------------------------------
2173// __kmp_realloc_task_threads_data:
2174// Allocates a threads_data array for a task team, either by allocating an initial
2175// array or enlarging an existing array. Only the first thread to get the lock
2176// allocs or enlarges the array and re-initializes the array eleemnts.
2177// That thread returns "TRUE", the rest return "FALSE".
2178// Assumes that the new array size is given by task_team -> tt.tt_nproc.
2179// The current size is given by task_team -> tt.tt_max_threads.
2180
2181static int
2182__kmp_realloc_task_threads_data( kmp_info_t *thread, kmp_task_team_t *task_team )
2183{
2184 kmp_thread_data_t ** threads_data_p;
2185 kmp_int32 nthreads, maxthreads;
2186 int is_init_thread = FALSE;
2187
2188 if ( TCR_4(task_team -> tt.tt_found_tasks) ) {
2189 // Already reallocated and initialized.
2190 return FALSE;
2191 }
2192
2193 threads_data_p = & task_team -> tt.tt_threads_data;
2194 nthreads = task_team -> tt.tt_nproc;
2195 maxthreads = task_team -> tt.tt_max_threads;
2196
2197 // All threads must lock when they encounter the first task of the implicit task
2198 // region to make sure threads_data fields are (re)initialized before used.
2199 __kmp_acquire_bootstrap_lock( & task_team -> tt.tt_threads_lock );
2200
2201 if ( ! TCR_4(task_team -> tt.tt_found_tasks) ) {
2202 // first thread to enable tasking
2203 kmp_team_t *team = thread -> th.th_team;
2204 int i;
2205
2206 is_init_thread = TRUE;
2207 if ( maxthreads < nthreads ) {
2208
2209 if ( *threads_data_p != NULL ) {
2210 kmp_thread_data_t *old_data = *threads_data_p;
2211 kmp_thread_data_t *new_data = NULL;
2212
2213 KE_TRACE( 10, ( "__kmp_realloc_task_threads_data: T#%d reallocating "
2214 "threads data for task_team %p, new_size = %d, old_size = %d\n",
2215 __kmp_gtid_from_thread( thread ), task_team,
2216 nthreads, maxthreads ) );
2217 // Reallocate threads_data to have more elements than current array
2218 // Cannot use __kmp_thread_realloc() because threads not around for
2219 // kmp_reap_task_team( ). Note all new array entries are initialized
2220 // to zero by __kmp_allocate().
2221 new_data = (kmp_thread_data_t *)
2222 __kmp_allocate( nthreads * sizeof(kmp_thread_data_t) );
2223 // copy old data to new data
Andrey Churbanov74bf17b2015-04-02 13:27:08 +00002224 KMP_MEMCPY_S( (void *) new_data, nthreads * sizeof(kmp_thread_data_t),
Jonathan Peyton1bd61b42015-10-08 19:44:16 +00002225 (void *) old_data,
2226 maxthreads * sizeof(kmp_taskdata_t *) );
Jim Cownie5e8470a2013-09-27 10:38:44 +00002227
2228#ifdef BUILD_TIED_TASK_STACK
2229 // GEH: Figure out if this is the right thing to do
2230 for (i = maxthreads; i < nthreads; i++) {
2231 kmp_thread_data_t *thread_data = & (*threads_data_p)[i];
2232 __kmp_init_task_stack( __kmp_gtid_from_thread( thread ), thread_data );
2233 }
2234#endif // BUILD_TIED_TASK_STACK
2235 // Install the new data and free the old data
2236 (*threads_data_p) = new_data;
2237 __kmp_free( old_data );
2238 }
2239 else {
2240 KE_TRACE( 10, ( "__kmp_realloc_task_threads_data: T#%d allocating "
2241 "threads data for task_team %p, size = %d\n",
2242 __kmp_gtid_from_thread( thread ), task_team, nthreads ) );
2243 // Make the initial allocate for threads_data array, and zero entries
2244 // Cannot use __kmp_thread_calloc() because threads not around for
2245 // kmp_reap_task_team( ).
2246 *threads_data_p = (kmp_thread_data_t *)
2247 __kmp_allocate( nthreads * sizeof(kmp_thread_data_t) );
2248#ifdef BUILD_TIED_TASK_STACK
2249 // GEH: Figure out if this is the right thing to do
2250 for (i = 0; i < nthreads; i++) {
2251 kmp_thread_data_t *thread_data = & (*threads_data_p)[i];
2252 __kmp_init_task_stack( __kmp_gtid_from_thread( thread ), thread_data );
2253 }
2254#endif // BUILD_TIED_TASK_STACK
2255 }
2256 task_team -> tt.tt_max_threads = nthreads;
2257 }
2258 else {
2259 // If array has (more than) enough elements, go ahead and use it
2260 KMP_DEBUG_ASSERT( *threads_data_p != NULL );
2261 }
2262
2263 // initialize threads_data pointers back to thread_info structures
2264 for (i = 0; i < nthreads; i++) {
2265 kmp_thread_data_t *thread_data = & (*threads_data_p)[i];
2266 thread_data -> td.td_thr = team -> t.t_threads[i];
2267
2268 if ( thread_data -> td.td_deque_last_stolen >= nthreads) {
2269 // The last stolen field survives across teams / barrier, and the number
2270 // of threads may have changed. It's possible (likely?) that a new
2271 // parallel region will exhibit the same behavior as the previous region.
2272 thread_data -> td.td_deque_last_stolen = -1;
2273 }
2274 }
2275
2276 KMP_MB();
2277 TCW_SYNC_4(task_team -> tt.tt_found_tasks, TRUE);
2278 }
2279
2280 __kmp_release_bootstrap_lock( & task_team -> tt.tt_threads_lock );
2281 return is_init_thread;
2282}
2283
2284
2285//------------------------------------------------------------------------------
2286// __kmp_free_task_threads_data:
2287// Deallocates a threads_data array for a task team, including any attached
2288// tasking deques. Only occurs at library shutdown.
2289
2290static void
2291__kmp_free_task_threads_data( kmp_task_team_t *task_team )
2292{
2293 __kmp_acquire_bootstrap_lock( & task_team -> tt.tt_threads_lock );
2294 if ( task_team -> tt.tt_threads_data != NULL ) {
2295 int i;
2296 for (i = 0; i < task_team->tt.tt_max_threads; i++ ) {
2297 __kmp_free_task_deque( & task_team -> tt.tt_threads_data[i] );
2298 }
2299 __kmp_free( task_team -> tt.tt_threads_data );
2300 task_team -> tt.tt_threads_data = NULL;
2301 }
2302 __kmp_release_bootstrap_lock( & task_team -> tt.tt_threads_lock );
2303}
2304
2305
2306//------------------------------------------------------------------------------
2307// __kmp_allocate_task_team:
2308// Allocates a task team associated with a specific team, taking it from
2309// the global task team free list if possible. Also initializes data structures.
2310
2311static kmp_task_team_t *
2312__kmp_allocate_task_team( kmp_info_t *thread, kmp_team_t *team )
2313{
2314 kmp_task_team_t *task_team = NULL;
2315 int nthreads;
2316
2317 KA_TRACE( 20, ( "__kmp_allocate_task_team: T#%d entering; team = %p\n",
2318 (thread ? __kmp_gtid_from_thread( thread ) : -1), team ) );
2319
2320 if (TCR_PTR(__kmp_free_task_teams) != NULL) {
2321 // Take a task team from the task team pool
2322 __kmp_acquire_bootstrap_lock( &__kmp_task_team_lock );
2323 if (__kmp_free_task_teams != NULL) {
2324 task_team = __kmp_free_task_teams;
2325 TCW_PTR(__kmp_free_task_teams, task_team -> tt.tt_next);
2326 task_team -> tt.tt_next = NULL;
2327 }
2328 __kmp_release_bootstrap_lock( &__kmp_task_team_lock );
2329 }
2330
2331 if (task_team == NULL) {
2332 KE_TRACE( 10, ( "__kmp_allocate_task_team: T#%d allocating "
2333 "task team for team %p\n",
2334 __kmp_gtid_from_thread( thread ), team ) );
2335 // Allocate a new task team if one is not available.
2336 // Cannot use __kmp_thread_malloc() because threads not around for
2337 // kmp_reap_task_team( ).
2338 task_team = (kmp_task_team_t *) __kmp_allocate( sizeof(kmp_task_team_t) );
2339 __kmp_init_bootstrap_lock( & task_team -> tt.tt_threads_lock );
2340 //task_team -> tt.tt_threads_data = NULL; // AC: __kmp_allocate zeroes returned memory
2341 //task_team -> tt.tt_max_threads = 0;
2342 //task_team -> tt.tt_next = NULL;
2343 }
2344
2345 TCW_4(task_team -> tt.tt_found_tasks, FALSE);
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00002346#if OMP_41_ENABLED
2347 TCW_4(task_team -> tt.tt_found_proxy_tasks, FALSE);
2348#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00002349 task_team -> tt.tt_nproc = nthreads = team->t.t_nproc;
2350
Jim Cownie5e8470a2013-09-27 10:38:44 +00002351 TCW_4( task_team -> tt.tt_unfinished_threads, nthreads );
2352 TCW_4( task_team -> tt.tt_active, TRUE );
2353 TCW_4( task_team -> tt.tt_ref_ct, nthreads - 1);
2354
2355 KA_TRACE( 20, ( "__kmp_allocate_task_team: T#%d exiting; task_team = %p\n",
2356 (thread ? __kmp_gtid_from_thread( thread ) : -1), task_team ) );
2357 return task_team;
2358}
2359
2360
2361//------------------------------------------------------------------------------
2362// __kmp_free_task_team:
2363// Frees the task team associated with a specific thread, and adds it
2364// to the global task team free list.
2365//
2366
2367static void
2368__kmp_free_task_team( kmp_info_t *thread, kmp_task_team_t *task_team )
2369{
2370 KA_TRACE( 20, ( "__kmp_free_task_team: T#%d task_team = %p\n",
2371 thread ? __kmp_gtid_from_thread( thread ) : -1, task_team ) );
2372
2373 KMP_DEBUG_ASSERT( TCR_4(task_team -> tt.tt_ref_ct) == 0 );
2374
2375 // Put task team back on free list
2376 __kmp_acquire_bootstrap_lock( & __kmp_task_team_lock );
2377
2378 KMP_DEBUG_ASSERT( task_team -> tt.tt_next == NULL );
2379 task_team -> tt.tt_next = __kmp_free_task_teams;
2380 TCW_4(task_team -> tt.tt_found_tasks, FALSE);
2381 TCW_PTR(__kmp_free_task_teams, task_team);
2382
2383 __kmp_release_bootstrap_lock( & __kmp_task_team_lock );
2384}
2385
2386
2387//------------------------------------------------------------------------------
2388// __kmp_reap_task_teams:
2389// Free all the task teams on the task team free list.
2390// Should only be done during library shutdown.
2391// Cannot do anything that needs a thread structure or gtid since they are already gone.
2392
2393void
2394__kmp_reap_task_teams( void )
2395{
2396 kmp_task_team_t *task_team;
2397
2398 if ( TCR_PTR(__kmp_free_task_teams) != NULL ) {
2399 // Free all task_teams on the free list
2400 __kmp_acquire_bootstrap_lock( &__kmp_task_team_lock );
2401 while ( ( task_team = __kmp_free_task_teams ) != NULL ) {
2402 __kmp_free_task_teams = task_team -> tt.tt_next;
2403 task_team -> tt.tt_next = NULL;
2404
2405 // Free threads_data if necessary
2406 if ( task_team -> tt.tt_threads_data != NULL ) {
2407 __kmp_free_task_threads_data( task_team );
2408 }
2409 __kmp_free( task_team );
2410 }
2411 __kmp_release_bootstrap_lock( &__kmp_task_team_lock );
2412 }
2413}
2414
2415
2416//------------------------------------------------------------------------------
2417// __kmp_unref_task_teams:
2418// Remove one thread from referencing the task team structure by
2419// decreasing the reference count and deallocate task team if no more
2420// references to it.
2421//
2422void
2423__kmp_unref_task_team( kmp_task_team_t *task_team, kmp_info_t *thread )
2424{
2425 kmp_uint ref_ct;
2426
2427 ref_ct = KMP_TEST_THEN_DEC32( (kmp_int32 *)(& task_team->tt.tt_ref_ct) ) - 1;
2428
2429 KA_TRACE( 20, ( "__kmp_unref_task_team: T#%d task_team = %p ref_ct = %d\n",
2430 __kmp_gtid_from_thread( thread ), task_team, ref_ct ) );
2431
2432
2433 if ( ref_ct == 0 ) {
2434 __kmp_free_task_team( thread, task_team );
2435 }
2436
2437 TCW_PTR( *((volatile kmp_task_team_t **)(&thread->th.th_task_team)), NULL );
2438}
2439
2440
2441//------------------------------------------------------------------------------
2442// __kmp_wait_to_unref_task_teams:
2443// Some threads could still be in the fork barrier release code, possibly
2444// trying to steal tasks. Wait for each thread to unreference its task team.
2445//
2446void
2447__kmp_wait_to_unref_task_teams(void)
2448{
2449 kmp_info_t *thread;
2450 kmp_uint32 spins;
2451 int done;
2452
2453 KMP_INIT_YIELD( spins );
2454
2455
2456 for (;;) {
2457 done = TRUE;
2458
2459 // TODO: GEH - this may be is wrong because some sync would be necessary
2460 // in case threads are added to the pool during the traversal.
2461 // Need to verify that lock for thread pool is held when calling
2462 // this routine.
2463 for (thread = (kmp_info_t *)__kmp_thread_pool;
2464 thread != NULL;
2465 thread = thread->th.th_next_pool)
2466 {
Jim Cownie5e8470a2013-09-27 10:38:44 +00002467#if KMP_OS_WINDOWS
2468 DWORD exit_val;
2469#endif
2470 if ( TCR_PTR(thread->th.th_task_team) == NULL ) {
2471 KA_TRACE( 10, ("__kmp_wait_to_unref_task_team: T#%d task_team == NULL\n",
2472 __kmp_gtid_from_thread( thread ) ) );
2473 continue;
2474 }
2475#if KMP_OS_WINDOWS
2476 // TODO: GEH - add this check for Linux* OS / OS X* as well?
2477 if (!__kmp_is_thread_alive(thread, &exit_val)) {
2478 if (TCR_PTR(thread->th.th_task_team) != NULL) {
2479 __kmp_unref_task_team( thread->th.th_task_team, thread );
2480 }
2481 continue;
2482 }
2483#endif
2484
2485 done = FALSE; // Because th_task_team pointer is not NULL for this thread
2486
2487 KA_TRACE( 10, ("__kmp_wait_to_unref_task_team: Waiting for T#%d to unreference task_team\n",
2488 __kmp_gtid_from_thread( thread ) ) );
2489
2490 if ( __kmp_dflt_blocktime != KMP_MAX_BLOCKTIME ) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002491 volatile void *sleep_loc;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002492 // If the thread is sleeping, awaken it.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002493 if ( ( sleep_loc = TCR_PTR( thread->th.th_sleep_loc) ) != NULL ) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00002494 KA_TRACE( 10, ( "__kmp_wait_to_unref_task_team: T#%d waking up thread T#%d\n",
2495 __kmp_gtid_from_thread( thread ), __kmp_gtid_from_thread( thread ) ) );
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002496 __kmp_null_resume_wrapper(__kmp_gtid_from_thread(thread), sleep_loc);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002497 }
2498 }
2499 }
2500 if (done) {
2501 break;
2502 }
2503
2504 // If we are oversubscribed,
2505 // or have waited a bit (and library mode is throughput), yield.
2506 // Pause is in the following code.
2507 KMP_YIELD( TCR_4(__kmp_nth) > __kmp_avail_proc );
2508 KMP_YIELD_SPIN( spins ); // Yields only if KMP_LIBRARY=throughput
2509 }
2510
2511
2512}
2513
2514
2515//------------------------------------------------------------------------------
2516// __kmp_task_team_setup: Create a task_team for the current team, but use
2517// an already created, unused one if it already exists.
2518// This may be called by any thread, but only for teams with # threads >1.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002519void
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00002520__kmp_task_team_setup( kmp_info_t *this_thr, kmp_team_t *team, int both, int always )
Jim Cownie5e8470a2013-09-27 10:38:44 +00002521{
2522 KMP_DEBUG_ASSERT( __kmp_tasking_mode != tskm_immediate_exec );
2523
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00002524 if ( ( team->t.t_task_team[this_thr->th.th_task_state] == NULL ) && ( always || team->t.t_nproc > 1 ) ) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00002525 // Allocate a new task team, which will be propagated to
2526 // all of the worker threads after the barrier. As they
2527 // spin in the barrier release phase, then will continue
2528 // to use the previous task team struct, until they receive
2529 // the signal to stop checking for tasks (they can't safely
2530 // reference the kmp_team_t struct, which could be reallocated
2531 // by the master thread).
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002532 team->t.t_task_team[this_thr->th.th_task_state] = __kmp_allocate_task_team( this_thr, team );
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002533 KA_TRACE(20, ("__kmp_task_team_setup: Master T#%d created new task_team %p for team %d at parity=%d\n",
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002534 __kmp_gtid_from_thread(this_thr), team->t.t_task_team[this_thr->th.th_task_state],
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002535 ((team != NULL) ? team->t.t_id : -1), this_thr->th.th_task_state));
Jim Cownie5e8470a2013-09-27 10:38:44 +00002536 }
Jonathan Peytona0e159f2015-10-08 18:23:38 +00002537 // else: Either all threads have reported in, and no tasks were spawned for this release->gather region
2538 // Leave the old task team struct in place for the upcoming region.
2539 // No task teams are formed for serialized teams.
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002540 if (both) {
2541 int other_team = 1 - this_thr->th.th_task_state;
2542 if ( ( team->t.t_task_team[other_team] == NULL ) && ( team->t.t_nproc > 1 ) ) { // setup other team as well
2543 team->t.t_task_team[other_team] = __kmp_allocate_task_team( this_thr, team );
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002544 KA_TRACE(20, ("__kmp_task_team_setup: Master T#%d created second new task_team %p for team %d at parity=%d\n",
2545 __kmp_gtid_from_thread( this_thr ), team->t.t_task_team[other_team],
2546 ((team != NULL) ? team->t.t_id : -1), other_team ));
2547 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00002548 }
2549}
2550
2551
2552//------------------------------------------------------------------------------
2553// __kmp_task_team_sync: Propagation of task team data from team to threads
2554// which happens just after the release phase of a team barrier. This may be
2555// called by any thread, but only for teams with # threads > 1.
2556
2557void
2558__kmp_task_team_sync( kmp_info_t *this_thr, kmp_team_t *team )
2559{
2560 KMP_DEBUG_ASSERT( __kmp_tasking_mode != tskm_immediate_exec );
2561
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002562 // In case this thread never saw that the task team was no longer active, unref/deallocate it now.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002563 if ( this_thr->th.th_task_team != NULL ) {
2564 if ( ! TCR_SYNC_4( this_thr->th.th_task_team->tt.tt_active ) ) {
2565 KMP_DEBUG_ASSERT( ! KMP_MASTER_TID( __kmp_tid_from_gtid( __kmp_gtid_from_thread( this_thr ) ) ) );
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002566 KA_TRACE(20, ("__kmp_task_team_sync: Thread T#%d task team (%p)is not active, unrefing\n",
2567 __kmp_gtid_from_thread( this_thr ), this_thr->th.th_task_team));
Jim Cownie5e8470a2013-09-27 10:38:44 +00002568 __kmp_unref_task_team( this_thr->th.th_task_team, this_thr );
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002569 }
2570#if KMP_DEBUG
2571 else { // We are re-using a task team that was never enabled.
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002572 KMP_DEBUG_ASSERT(this_thr->th.th_task_team == team->t.t_task_team[this_thr->th.th_task_state]);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002573 }
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002574#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00002575 }
2576
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002577 // Toggle the th_task_state field, to switch which task_team this thread refers to
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002578 this_thr->th.th_task_state = 1 - this_thr->th.th_task_state;
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002579 // It is now safe to propagate the task team pointer from the team struct to the current thread.
2580 TCW_PTR(this_thr->th.th_task_team, team->t.t_task_team[this_thr->th.th_task_state]);
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002581 KA_TRACE(20, ("__kmp_task_team_sync: Thread T#%d task team switched to %p from Team #%d task team (parity=%d)\n",
2582 __kmp_gtid_from_thread( this_thr ), this_thr->th.th_task_team,
2583 ((team != NULL) ? team->t.t_id : -1), this_thr->th.th_task_state));
Jim Cownie5e8470a2013-09-27 10:38:44 +00002584}
2585
2586
Jonathan Peyton1bd61b42015-10-08 19:44:16 +00002587//--------------------------------------------------------------------------------------------
2588// __kmp_task_team_wait: Master thread waits for outstanding tasks after the barrier gather
2589// phase. Only called by master thread if #threads in team > 1 or if proxy tasks were created
Jim Cownie5e8470a2013-09-27 10:38:44 +00002590void
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002591__kmp_task_team_wait( kmp_info_t *this_thr, kmp_team_t *team
Jim Cownie181b4bb2013-12-23 17:28:57 +00002592 USE_ITT_BUILD_ARG(void * itt_sync_obj)
Jim Cownie5e8470a2013-09-27 10:38:44 +00002593 )
2594{
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002595 kmp_task_team_t *task_team = team->t.t_task_team[this_thr->th.th_task_state];
Jim Cownie5e8470a2013-09-27 10:38:44 +00002596
2597 KMP_DEBUG_ASSERT( __kmp_tasking_mode != tskm_immediate_exec );
2598 KMP_DEBUG_ASSERT( task_team == this_thr->th.th_task_team );
2599
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002600 if ( ( task_team != NULL ) && KMP_TASKING_ENABLED(task_team) ) {
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002601 KA_TRACE(20, ("__kmp_task_team_wait: Master T#%d waiting for all tasks (for unfinished_threads to reach 0) on task_team = %p\n",
2602 __kmp_gtid_from_thread(this_thr), task_team));
2603 // Worker threads may have dropped through to release phase, but could still be executing tasks. Wait
2604 // here for tasks to complete. To avoid memory contention, only master thread checks termination condition.
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002605 kmp_flag_32 flag(&task_team->tt.tt_unfinished_threads, 0U);
2606 flag.wait(this_thr, TRUE
2607 USE_ITT_BUILD_ARG(itt_sync_obj));
Jim Cownie5e8470a2013-09-27 10:38:44 +00002608
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002609 // Kill the old task team, so that the worker threads will stop referencing it while spinning.
2610 // They will deallocate it when the reference count reaches zero.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002611 // The master thread is not included in the ref count.
Jonathan Peytone03b62f2015-10-08 18:49:40 +00002612 KA_TRACE(20, ("__kmp_task_team_wait: Master T#%d deactivating task_team %p: setting active to false, setting local and team's pointer to NULL\n",
2613 __kmp_gtid_from_thread(this_thr), task_team));
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00002614#if OMP_41_ENABLED
2615 KMP_DEBUG_ASSERT( task_team->tt.tt_nproc > 1 || task_team->tt.tt_found_proxy_tasks == TRUE );
2616 TCW_SYNC_4( task_team->tt.tt_found_proxy_tasks, FALSE );
2617#else
Jim Cownie5e8470a2013-09-27 10:38:44 +00002618 KMP_DEBUG_ASSERT( task_team->tt.tt_nproc > 1 );
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00002619#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00002620 TCW_SYNC_4( task_team->tt.tt_active, FALSE );
2621 KMP_MB();
2622
2623 TCW_PTR(this_thr->th.th_task_team, NULL);
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002624 team->t.t_task_team[this_thr->th.th_task_state] = NULL;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002625 }
2626}
2627
2628
2629//------------------------------------------------------------------------------
2630// __kmp_tasking_barrier:
Jonathan Peyton1bd61b42015-10-08 19:44:16 +00002631// This routine may only called when __kmp_tasking_mode == tskm_extra_barrier.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002632// Internal function to execute all tasks prior to a regular barrier or a
2633// join barrier. It is a full barrier itself, which unfortunately turns
2634// regular barriers into double barriers and join barriers into 1 1/2
2635// barriers.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002636void
2637__kmp_tasking_barrier( kmp_team_t *team, kmp_info_t *thread, int gtid )
2638{
Andrey Churbanov6d224db2015-02-10 18:37:43 +00002639 volatile kmp_uint32 *spin = &team->t.t_task_team[thread->th.th_task_state]->tt.tt_unfinished_threads;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002640 int flag = FALSE;
2641 KMP_DEBUG_ASSERT( __kmp_tasking_mode == tskm_extra_barrier );
2642
2643#if USE_ITT_BUILD
2644 KMP_FSYNC_SPIN_INIT( spin, (kmp_uint32*) NULL );
2645#endif /* USE_ITT_BUILD */
Jim Cownie4cc4bb42014-10-07 16:25:50 +00002646 kmp_flag_32 spin_flag(spin, 0U);
2647 while (! spin_flag.execute_tasks(thread, gtid, TRUE, &flag
2648 USE_ITT_BUILD_ARG(NULL), 0 ) ) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00002649#if USE_ITT_BUILD
2650 // TODO: What about itt_sync_obj??
2651 KMP_FSYNC_SPIN_PREPARE( spin );
2652#endif /* USE_ITT_BUILD */
2653
2654 if( TCR_4(__kmp_global.g.g_done) ) {
2655 if( __kmp_global.g.g_abort )
2656 __kmp_abort_thread( );
2657 break;
2658 }
2659 KMP_YIELD( TRUE ); // GH: We always yield here
2660 }
2661#if USE_ITT_BUILD
2662 KMP_FSYNC_SPIN_ACQUIRED( (void*) spin );
2663#endif /* USE_ITT_BUILD */
2664}
2665
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00002666
2667#if OMP_41_ENABLED
2668
2669/* __kmp_give_task puts a task into a given thread queue if:
2670 - the queue for that thread it was created
2671 - there's space in that queue
2672
2673 Because of this, __kmp_push_task needs to check if there's space after getting the lock
2674 */
2675static bool __kmp_give_task ( kmp_info_t *thread, kmp_int32 tid, kmp_task_t * task )
2676{
2677 kmp_task_team_t * task_team = thread->th.th_task_team;
2678 kmp_thread_data_t * thread_data = & task_team -> tt.tt_threads_data[ tid ];
2679 kmp_taskdata_t * taskdata = KMP_TASK_TO_TASKDATA(task);
2680 bool result = false;
2681
2682 KA_TRACE(20, ("__kmp_give_task: trying to give task %p to thread %d.\n", taskdata, tid ) );
2683
2684 // assert tasking is enabled? what if not?
2685 KMP_DEBUG_ASSERT( task_team != NULL );
2686
2687 if (thread_data -> td.td_deque == NULL ) {
2688 // There's no queue in this thread, go find another one
2689 // We're guaranteed that at least one thread has a queue
2690 KA_TRACE(30, ("__kmp_give_task: thread %d has no queue while giving task %p.\n", tid, taskdata ) );
2691 return result;
2692 }
2693
2694 if ( TCR_4(thread_data -> td.td_deque_ntasks) >= TASK_DEQUE_SIZE )
2695 {
2696 KA_TRACE(30, ("__kmp_give_task: queue is full while giving task %p to thread %d.\n", taskdata, tid ) );
2697 return result;
2698 }
2699
2700 __kmp_acquire_bootstrap_lock( & thread_data-> td.td_deque_lock );
2701
2702 if ( TCR_4(thread_data -> td.td_deque_ntasks) >= TASK_DEQUE_SIZE )
2703 {
2704 KA_TRACE(30, ("__kmp_give_task: queue is full while giving task %p to thread %d.\n", taskdata, tid ) );
2705 goto release_and_exit;
2706 }
2707
2708 thread_data -> td.td_deque[ thread_data -> td.td_deque_tail ] = taskdata;
2709 // Wrap index.
2710 thread_data -> td.td_deque_tail = ( thread_data -> td.td_deque_tail + 1 ) & TASK_DEQUE_MASK;
2711 TCW_4(thread_data -> td.td_deque_ntasks, TCR_4(thread_data -> td.td_deque_ntasks) + 1);
2712
2713 result = true;
Jonathan Peyton1406f012015-05-22 22:35:51 +00002714 KA_TRACE(30, ("__kmp_give_task: successfully gave task %p to thread %d.\n", taskdata, tid ) );
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00002715
2716release_and_exit:
2717 __kmp_release_bootstrap_lock( & thread_data-> td.td_deque_lock );
2718
2719 return result;
2720}
2721
2722
2723/* The finish of the a proxy tasks is divided in two pieces:
2724 - the top half is the one that can be done from a thread outside the team
2725 - the bottom half must be run from a them within the team
2726
2727 In order to run the bottom half the task gets queued back into one of the threads of the team.
2728 Once the td_incomplete_child_task counter of the parent is decremented the threads can leave the barriers.
2729 So, the bottom half needs to be queued before the counter is decremented. The top half is therefore divided in two parts:
2730 - things that can be run before queuing the bottom half
2731 - things that must be run after queuing the bottom half
2732
2733 This creates a second race as the bottom half can free the task before the second top half is executed. To avoid this
2734 we use the td_incomplete_child_task of the proxy task to synchronize the top and bottom half.
2735*/
2736
2737static void __kmp_first_top_half_finish_proxy( kmp_taskdata_t * taskdata )
2738{
2739 KMP_DEBUG_ASSERT( taskdata -> td_flags.tasktype == TASK_EXPLICIT );
2740 KMP_DEBUG_ASSERT( taskdata -> td_flags.proxy == TASK_PROXY );
2741 KMP_DEBUG_ASSERT( taskdata -> td_flags.complete == 0 );
2742 KMP_DEBUG_ASSERT( taskdata -> td_flags.freed == 0 );
2743
2744 taskdata -> td_flags.complete = 1; // mark the task as completed
2745
2746 if ( taskdata->td_taskgroup )
2747 KMP_TEST_THEN_DEC32( (kmp_int32 *)(& taskdata->td_taskgroup->count) );
2748
2749 // Create an imaginary children for this task so the bottom half cannot release the task before we have completed the second top half
2750 TCR_4(taskdata->td_incomplete_child_tasks++);
2751}
2752
2753static void __kmp_second_top_half_finish_proxy( kmp_taskdata_t * taskdata )
2754{
2755 kmp_int32 children = 0;
2756
2757 // Predecrement simulated by "- 1" calculation
2758 children = KMP_TEST_THEN_DEC32( (kmp_int32 *)(& taskdata -> td_parent -> td_incomplete_child_tasks) ) - 1;
2759 KMP_DEBUG_ASSERT( children >= 0 );
2760
2761 // Remove the imaginary children
2762 TCR_4(taskdata->td_incomplete_child_tasks--);
2763}
2764
2765static void __kmp_bottom_half_finish_proxy( kmp_int32 gtid, kmp_task_t * ptask )
2766{
2767 kmp_taskdata_t * taskdata = KMP_TASK_TO_TASKDATA(ptask);
2768 kmp_info_t * thread = __kmp_threads[ gtid ];
2769
2770 KMP_DEBUG_ASSERT( taskdata -> td_flags.proxy == TASK_PROXY );
2771 KMP_DEBUG_ASSERT( taskdata -> td_flags.complete == 1 ); // top half must run before bottom half
2772
2773 // We need to wait to make sure the top half is finished
2774 // Spinning here should be ok as this should happen quickly
2775 while ( TCR_4(taskdata->td_incomplete_child_tasks) > 0 ) ;
2776
2777 __kmp_release_deps(gtid,taskdata);
2778 __kmp_free_task_and_ancestors(gtid, taskdata, thread);
2779}
2780
2781/*!
2782@ingroup TASKING
2783@param gtid Global Thread ID of encountering thread
2784@param ptask Task which execution is completed
2785
2786Execute the completation of a proxy task from a thread of that is part of the team. Run first and bottom halves directly.
2787*/
2788void __kmpc_proxy_task_completed( kmp_int32 gtid, kmp_task_t *ptask )
2789{
2790 KMP_DEBUG_ASSERT( ptask != NULL );
2791 kmp_taskdata_t * taskdata = KMP_TASK_TO_TASKDATA(ptask);
2792 KA_TRACE(10, ("__kmp_proxy_task_completed(enter): T#%d proxy task %p completing\n", gtid, taskdata ) );
2793
2794 KMP_DEBUG_ASSERT( taskdata->td_flags.proxy == TASK_PROXY );
2795
2796 __kmp_first_top_half_finish_proxy(taskdata);
2797 __kmp_second_top_half_finish_proxy(taskdata);
2798 __kmp_bottom_half_finish_proxy(gtid,ptask);
2799
2800 KA_TRACE(10, ("__kmp_proxy_task_completed(exit): T#%d proxy task %p completing\n", gtid, taskdata ) );
2801}
2802
2803/*!
2804@ingroup TASKING
2805@param ptask Task which execution is completed
2806
2807Execute the completation of a proxy task from a thread that could not belong to the team.
2808*/
2809void __kmpc_proxy_task_completed_ooo ( kmp_task_t *ptask )
2810{
2811 KMP_DEBUG_ASSERT( ptask != NULL );
2812 kmp_taskdata_t * taskdata = KMP_TASK_TO_TASKDATA(ptask);
2813
2814 KA_TRACE(10, ("__kmp_proxy_task_completed_ooo(enter): proxy task completing ooo %p\n", taskdata ) );
2815
2816 KMP_DEBUG_ASSERT( taskdata->td_flags.proxy == TASK_PROXY );
2817
2818 __kmp_first_top_half_finish_proxy(taskdata);
2819
2820 // Enqueue task to complete bottom half completation from a thread within the corresponding team
2821 kmp_team_t * team = taskdata->td_team;
2822 kmp_int32 nthreads = team->t.t_nproc;
2823 kmp_info_t *thread;
2824 kmp_int32 k = 0;
2825
2826 do {
Jonathan Peyton1406f012015-05-22 22:35:51 +00002827 //This should be similar to k = __kmp_get_random( thread ) % nthreads but we cannot use __kmp_get_random here
Andrey Churbanov535b6fa2015-05-07 17:41:51 +00002828 //For now we're just linearly trying to find a thread
2829 k = (k+1) % nthreads;
2830 thread = team->t.t_threads[k];
2831 } while ( !__kmp_give_task( thread, k, ptask ) );
2832
2833 __kmp_second_top_half_finish_proxy(taskdata);
2834
2835 KA_TRACE(10, ("__kmp_proxy_task_completed_ooo(exit): proxy task completing ooo %p\n", taskdata ) );
2836}
2837
2838#endif