source: mainline/kernel/generic/src/proc/task.c@ 9c26ef0

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 9c26ef0 was aab5e46, checked in by Jiri Svoboda <jiri@…>, 7 years ago

Thread and task iterator functions.

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1/*
2 * Copyright (c) 2010 Jakub Jermar
3 * Copyright (c) 2018 Jiri Svoboda
4 * All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 *
10 * - Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * - Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * - The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29
30/** @addtogroup kernel_generic_proc
31 * @{
32 */
33
34/**
35 * @file
36 * @brief Task management.
37 */
38
39#include <assert.h>
40#include <proc/thread.h>
41#include <proc/task.h>
42#include <mm/as.h>
43#include <mm/slab.h>
44#include <atomic.h>
45#include <synch/futex.h>
46#include <synch/spinlock.h>
47#include <synch/waitq.h>
48#include <arch.h>
49#include <barrier.h>
50#include <adt/btree.h>
51#include <adt/list.h>
52#include <adt/odict.h>
53#include <cap/cap.h>
54#include <ipc/ipc.h>
55#include <ipc/ipcrsc.h>
56#include <ipc/event.h>
57#include <stdio.h>
58#include <errno.h>
59#include <halt.h>
60#include <str.h>
61#include <syscall/copy.h>
62#include <macros.h>
63
64/** Spinlock protecting the @c tasks ordered dictionary. */
65IRQ_SPINLOCK_INITIALIZE(tasks_lock);
66
67/** Ordered dictionary of active tasks.
68 *
69 * The task is guaranteed to exist after it was found in the @c tasks
70 * dictionary as long as:
71 *
72 * @li the tasks_lock is held,
73 * @li the task's lock is held when task's lock is acquired before releasing
74 * tasks_lock or
75 * @li the task's refcount is greater than 0
76 *
77 */
78odict_t tasks;
79
80static task_id_t task_counter = 0;
81
82static slab_cache_t *task_cache;
83
84/* Forward declarations. */
85static void task_kill_internal(task_t *);
86static errno_t tsk_constructor(void *, unsigned int);
87static size_t tsk_destructor(void *);
88
89static void *tasks_getkey(odlink_t *);
90static int tasks_cmp(void *, void *);
91
92/** Initialize kernel tasks support.
93 *
94 */
95void task_init(void)
96{
97 TASK = NULL;
98 odict_initialize(&tasks, tasks_getkey, tasks_cmp);
99 task_cache = slab_cache_create("task_t", sizeof(task_t), 0,
100 tsk_constructor, tsk_destructor, 0);
101}
102
103/** Kill all tasks except the current task.
104 *
105 */
106void task_done(void)
107{
108 size_t tasks_left;
109 task_t *task;
110
111 if (ipc_box_0) {
112 task_t *task_0 = ipc_box_0->task;
113 ipc_box_0 = NULL;
114 /*
115 * The first task is held by kinit(), we need to release it or
116 * it will never finish cleanup.
117 */
118 task_release(task_0);
119 }
120
121 /* Repeat until there are any tasks except TASK */
122 do {
123#ifdef CONFIG_DEBUG
124 printf("Killing tasks... ");
125#endif
126 irq_spinlock_lock(&tasks_lock, true);
127 tasks_left = 0;
128
129 task = task_first();
130 while (task != NULL) {
131 if (task != TASK) {
132 tasks_left++;
133#ifdef CONFIG_DEBUG
134 printf("[%" PRIu64 "] ", task->taskid);
135#endif
136 task_kill_internal(task);
137 }
138
139 task = task_next(task);
140 }
141
142 irq_spinlock_unlock(&tasks_lock, true);
143
144 thread_sleep(1);
145
146#ifdef CONFIG_DEBUG
147 printf("\n");
148#endif
149 } while (tasks_left > 0);
150}
151
152errno_t tsk_constructor(void *obj, unsigned int kmflags)
153{
154 task_t *task = (task_t *) obj;
155
156 errno_t rc = caps_task_alloc(task);
157 if (rc != EOK)
158 return rc;
159
160 atomic_store(&task->refcount, 0);
161 atomic_store(&task->lifecount, 0);
162
163 irq_spinlock_initialize(&task->lock, "task_t_lock");
164
165 list_initialize(&task->threads);
166
167 ipc_answerbox_init(&task->answerbox, task);
168
169 spinlock_initialize(&task->active_calls_lock, "active_calls_lock");
170 list_initialize(&task->active_calls);
171
172#ifdef CONFIG_UDEBUG
173 /* Init kbox stuff */
174 task->kb.thread = NULL;
175 ipc_answerbox_init(&task->kb.box, task);
176 mutex_initialize(&task->kb.cleanup_lock, MUTEX_PASSIVE);
177#endif
178
179 return EOK;
180}
181
182size_t tsk_destructor(void *obj)
183{
184 task_t *task = (task_t *) obj;
185
186 caps_task_free(task);
187 return 0;
188}
189
190/** Create new task with no threads.
191 *
192 * @param as Task's address space.
193 * @param name Symbolic name (a copy is made).
194 *
195 * @return New task's structure.
196 *
197 */
198task_t *task_create(as_t *as, const char *name)
199{
200 task_t *task = (task_t *) slab_alloc(task_cache, 0);
201 if (task == NULL) {
202 return NULL;
203 }
204
205 task_create_arch(task);
206
207 task->as = as;
208 str_cpy(task->name, TASK_NAME_BUFLEN, name);
209
210 task->container = CONTAINER;
211 task->perms = 0;
212 task->ucycles = 0;
213 task->kcycles = 0;
214
215 caps_task_init(task);
216
217 task->ipc_info.call_sent = 0;
218 task->ipc_info.call_received = 0;
219 task->ipc_info.answer_sent = 0;
220 task->ipc_info.answer_received = 0;
221 task->ipc_info.irq_notif_received = 0;
222 task->ipc_info.forwarded = 0;
223
224 event_task_init(task);
225
226 task->answerbox.active = true;
227
228#ifdef CONFIG_UDEBUG
229 /* Init debugging stuff */
230 udebug_task_init(&task->udebug);
231
232 /* Init kbox stuff */
233 task->kb.box.active = true;
234 task->kb.finished = false;
235#endif
236
237 if ((ipc_box_0) &&
238 (container_check(ipc_box_0->task->container, task->container))) {
239 cap_phone_handle_t phone_handle;
240 errno_t rc = phone_alloc(task, true, &phone_handle, NULL);
241 if (rc != EOK) {
242 task->as = NULL;
243 task_destroy_arch(task);
244 slab_free(task_cache, task);
245 return NULL;
246 }
247
248 kobject_t *phone_obj = kobject_get(task, phone_handle,
249 KOBJECT_TYPE_PHONE);
250 (void) ipc_phone_connect(phone_obj->phone, ipc_box_0);
251 }
252
253 futex_task_init(task);
254
255 /*
256 * Get a reference to the address space.
257 */
258 as_hold(task->as);
259
260 irq_spinlock_lock(&tasks_lock, true);
261
262 task->taskid = ++task_counter;
263 odlink_initialize(&task->ltasks);
264 odict_insert(&task->ltasks, &tasks, NULL);
265
266 irq_spinlock_unlock(&tasks_lock, true);
267
268 return task;
269}
270
271/** Destroy task.
272 *
273 * @param task Task to be destroyed.
274 *
275 */
276void task_destroy(task_t *task)
277{
278 /*
279 * Remove the task from the task B+tree.
280 */
281 irq_spinlock_lock(&tasks_lock, true);
282 odict_remove(&task->ltasks);
283 irq_spinlock_unlock(&tasks_lock, true);
284
285 /*
286 * Perform architecture specific task destruction.
287 */
288 task_destroy_arch(task);
289
290 /*
291 * Free up dynamically allocated state.
292 */
293 futex_task_deinit(task);
294
295 /*
296 * Drop our reference to the address space.
297 */
298 as_release(task->as);
299
300 slab_free(task_cache, task);
301}
302
303/** Hold a reference to a task.
304 *
305 * Holding a reference to a task prevents destruction of that task.
306 *
307 * @param task Task to be held.
308 *
309 */
310void task_hold(task_t *task)
311{
312 atomic_inc(&task->refcount);
313}
314
315/** Release a reference to a task.
316 *
317 * The last one to release a reference to a task destroys the task.
318 *
319 * @param task Task to be released.
320 *
321 */
322void task_release(task_t *task)
323{
324 if ((atomic_predec(&task->refcount)) == 0)
325 task_destroy(task);
326}
327
328#ifdef __32_BITS__
329
330/** Syscall for reading task ID from userspace (32 bits)
331 *
332 * @param uspace_taskid Pointer to user-space buffer
333 * where to store current task ID.
334 *
335 * @return Zero on success or an error code from @ref errno.h.
336 *
337 */
338sys_errno_t sys_task_get_id(sysarg64_t *uspace_taskid)
339{
340 /*
341 * No need to acquire lock on TASK because taskid remains constant for
342 * the lifespan of the task.
343 */
344 return (sys_errno_t) copy_to_uspace(uspace_taskid, &TASK->taskid,
345 sizeof(TASK->taskid));
346}
347
348#endif /* __32_BITS__ */
349
350#ifdef __64_BITS__
351
352/** Syscall for reading task ID from userspace (64 bits)
353 *
354 * @return Current task ID.
355 *
356 */
357sysarg_t sys_task_get_id(void)
358{
359 /*
360 * No need to acquire lock on TASK because taskid remains constant for
361 * the lifespan of the task.
362 */
363 return TASK->taskid;
364}
365
366#endif /* __64_BITS__ */
367
368/** Syscall for setting the task name.
369 *
370 * The name simplifies identifying the task in the task list.
371 *
372 * @param name The new name for the task. (typically the same
373 * as the command used to execute it).
374 *
375 * @return 0 on success or an error code from @ref errno.h.
376 *
377 */
378sys_errno_t sys_task_set_name(const char *uspace_name, size_t name_len)
379{
380 char namebuf[TASK_NAME_BUFLEN];
381
382 /* Cap length of name and copy it from userspace. */
383 if (name_len > TASK_NAME_BUFLEN - 1)
384 name_len = TASK_NAME_BUFLEN - 1;
385
386 errno_t rc = copy_from_uspace(namebuf, uspace_name, name_len);
387 if (rc != EOK)
388 return (sys_errno_t) rc;
389
390 namebuf[name_len] = '\0';
391
392 /*
393 * As the task name is referenced also from the
394 * threads, lock the threads' lock for the course
395 * of the update.
396 */
397
398 irq_spinlock_lock(&tasks_lock, true);
399 irq_spinlock_lock(&TASK->lock, false);
400 irq_spinlock_lock(&threads_lock, false);
401
402 /* Set task name */
403 str_cpy(TASK->name, TASK_NAME_BUFLEN, namebuf);
404
405 irq_spinlock_unlock(&threads_lock, false);
406 irq_spinlock_unlock(&TASK->lock, false);
407 irq_spinlock_unlock(&tasks_lock, true);
408
409 return EOK;
410}
411
412/** Syscall to forcefully terminate a task
413 *
414 * @param uspace_taskid Pointer to task ID in user space.
415 *
416 * @return 0 on success or an error code from @ref errno.h.
417 *
418 */
419sys_errno_t sys_task_kill(task_id_t *uspace_taskid)
420{
421 task_id_t taskid;
422 errno_t rc = copy_from_uspace(&taskid, uspace_taskid, sizeof(taskid));
423 if (rc != EOK)
424 return (sys_errno_t) rc;
425
426 return (sys_errno_t) task_kill(taskid);
427}
428
429/** Find task structure corresponding to task ID.
430 *
431 * The tasks_lock must be already held by the caller of this function and
432 * interrupts must be disabled.
433 *
434 * @param id Task ID.
435 *
436 * @return Task structure address or NULL if there is no such task ID.
437 *
438 */
439task_t *task_find_by_id(task_id_t id)
440{
441 assert(interrupts_disabled());
442 assert(irq_spinlock_locked(&tasks_lock));
443
444 odlink_t *odlink = odict_find_eq(&tasks, &id, NULL);
445 if (odlink != NULL)
446 return odict_get_instance(odlink, task_t, ltasks);
447
448 return NULL;
449}
450
451/** Get count of tasks.
452 *
453 * @return Number of tasks in the system
454 */
455size_t task_count(void)
456{
457 assert(interrupts_disabled());
458 assert(irq_spinlock_locked(&tasks_lock));
459
460 return odict_count(&tasks);
461}
462
463/** Get first task (task with lowest ID).
464 *
465 * @return Pointer to first task or @c NULL if there are none.
466 */
467task_t *task_first(void)
468{
469 odlink_t *odlink;
470
471 assert(interrupts_disabled());
472 assert(irq_spinlock_locked(&tasks_lock));
473
474 odlink = odict_first(&tasks);
475 if (odlink == NULL)
476 return NULL;
477
478 return odict_get_instance(odlink, task_t, ltasks);
479}
480
481/** Get next task (with higher task ID).
482 *
483 * @param cur Current task
484 * @return Pointer to next task or @c NULL if there are no more tasks.
485 */
486task_t *task_next(task_t *cur)
487{
488 odlink_t *odlink;
489
490 assert(interrupts_disabled());
491 assert(irq_spinlock_locked(&tasks_lock));
492
493 odlink = odict_next(&cur->ltasks, &tasks);
494 if (odlink == NULL)
495 return NULL;
496
497 return odict_get_instance(odlink, task_t, ltasks);
498}
499
500/** Get accounting data of given task.
501 *
502 * Note that task lock of 'task' must be already held and interrupts must be
503 * already disabled.
504 *
505 * @param task Pointer to the task.
506 * @param ucycles Out pointer to sum of all user cycles.
507 * @param kcycles Out pointer to sum of all kernel cycles.
508 *
509 */
510void task_get_accounting(task_t *task, uint64_t *ucycles, uint64_t *kcycles)
511{
512 assert(interrupts_disabled());
513 assert(irq_spinlock_locked(&task->lock));
514
515 /* Accumulated values of task */
516 uint64_t uret = task->ucycles;
517 uint64_t kret = task->kcycles;
518
519 /* Current values of threads */
520 list_foreach(task->threads, th_link, thread_t, thread) {
521 irq_spinlock_lock(&thread->lock, false);
522
523 /* Process only counted threads */
524 if (!thread->uncounted) {
525 if (thread == THREAD) {
526 /* Update accounting of current thread */
527 thread_update_accounting(false);
528 }
529
530 uret += thread->ucycles;
531 kret += thread->kcycles;
532 }
533
534 irq_spinlock_unlock(&thread->lock, false);
535 }
536
537 *ucycles = uret;
538 *kcycles = kret;
539}
540
541static void task_kill_internal(task_t *task)
542{
543 irq_spinlock_lock(&task->lock, false);
544 irq_spinlock_lock(&threads_lock, false);
545
546 /*
547 * Interrupt all threads.
548 */
549
550 list_foreach(task->threads, th_link, thread_t, thread) {
551 bool sleeping = false;
552
553 irq_spinlock_lock(&thread->lock, false);
554
555 thread->interrupted = true;
556 if (thread->state == Sleeping)
557 sleeping = true;
558
559 irq_spinlock_unlock(&thread->lock, false);
560
561 if (sleeping)
562 waitq_interrupt_sleep(thread);
563 }
564
565 irq_spinlock_unlock(&threads_lock, false);
566 irq_spinlock_unlock(&task->lock, false);
567}
568
569/** Kill task.
570 *
571 * This function is idempotent.
572 * It signals all the task's threads to bail it out.
573 *
574 * @param id ID of the task to be killed.
575 *
576 * @return Zero on success or an error code from errno.h.
577 *
578 */
579errno_t task_kill(task_id_t id)
580{
581 if (id == 1)
582 return EPERM;
583
584 irq_spinlock_lock(&tasks_lock, true);
585
586 task_t *task = task_find_by_id(id);
587 if (!task) {
588 irq_spinlock_unlock(&tasks_lock, true);
589 return ENOENT;
590 }
591
592 task_kill_internal(task);
593 irq_spinlock_unlock(&tasks_lock, true);
594
595 return EOK;
596}
597
598/** Kill the currently running task.
599 *
600 * @param notify Send out fault notifications.
601 *
602 * @return Zero on success or an error code from errno.h.
603 *
604 */
605void task_kill_self(bool notify)
606{
607 /*
608 * User space can subscribe for FAULT events to take action
609 * whenever a task faults (to take a dump, run a debugger, etc.).
610 * The notification is always available, but unless udebug is enabled,
611 * that's all you get.
612 */
613 if (notify) {
614 /* Notify the subscriber that a fault occurred. */
615 if (event_notify_3(EVENT_FAULT, false, LOWER32(TASK->taskid),
616 UPPER32(TASK->taskid), (sysarg_t) THREAD) == EOK) {
617#ifdef CONFIG_UDEBUG
618 /* Wait for a debugging session. */
619 udebug_thread_fault();
620#endif
621 }
622 }
623
624 irq_spinlock_lock(&tasks_lock, true);
625 task_kill_internal(TASK);
626 irq_spinlock_unlock(&tasks_lock, true);
627
628 thread_exit();
629}
630
631/** Process syscall to terminate the current task.
632 *
633 * @param notify Send out fault notifications.
634 *
635 */
636sys_errno_t sys_task_exit(sysarg_t notify)
637{
638 task_kill_self(notify);
639
640 /* Unreachable */
641 return EOK;
642}
643
644static void task_print(task_t *task, bool additional)
645{
646 irq_spinlock_lock(&task->lock, false);
647
648 uint64_t ucycles;
649 uint64_t kcycles;
650 char usuffix, ksuffix;
651 task_get_accounting(task, &ucycles, &kcycles);
652 order_suffix(ucycles, &ucycles, &usuffix);
653 order_suffix(kcycles, &kcycles, &ksuffix);
654
655#ifdef __32_BITS__
656 if (additional)
657 printf("%-8" PRIu64 " %9zu", task->taskid,
658 atomic_load(&task->refcount));
659 else
660 printf("%-8" PRIu64 " %-14s %-5" PRIu32 " %10p %10p"
661 " %9" PRIu64 "%c %9" PRIu64 "%c\n", task->taskid,
662 task->name, task->container, task, task->as,
663 ucycles, usuffix, kcycles, ksuffix);
664#endif
665
666#ifdef __64_BITS__
667 if (additional)
668 printf("%-8" PRIu64 " %9" PRIu64 "%c %9" PRIu64 "%c "
669 "%9zu\n", task->taskid, ucycles, usuffix, kcycles,
670 ksuffix, atomic_load(&task->refcount));
671 else
672 printf("%-8" PRIu64 " %-14s %-5" PRIu32 " %18p %18p\n",
673 task->taskid, task->name, task->container, task, task->as);
674#endif
675
676 irq_spinlock_unlock(&task->lock, false);
677}
678
679/** Print task list
680 *
681 * @param additional Print additional information.
682 *
683 */
684void task_print_list(bool additional)
685{
686 /* Messing with task structures, avoid deadlock */
687 irq_spinlock_lock(&tasks_lock, true);
688
689#ifdef __32_BITS__
690 if (additional)
691 printf("[id ] [threads] [calls] [callee\n");
692 else
693 printf("[id ] [name ] [ctn] [address ] [as ]"
694 " [ucycles ] [kcycles ]\n");
695#endif
696
697#ifdef __64_BITS__
698 if (additional)
699 printf("[id ] [ucycles ] [kcycles ] [threads] [calls]"
700 " [callee\n");
701 else
702 printf("[id ] [name ] [ctn] [address ]"
703 " [as ]\n");
704#endif
705
706 task_t *task;
707
708 task = task_first();
709 while (task != NULL) {
710 task_print(task, additional);
711 task = task_next(task);
712 }
713
714 irq_spinlock_unlock(&tasks_lock, true);
715}
716
717/** Get key function for the @c tasks ordered dictionary.
718 *
719 * @param odlink Link
720 * @return Pointer to task ID cast as 'void *'
721 */
722static void *tasks_getkey(odlink_t *odlink)
723{
724 task_t *task = odict_get_instance(odlink, task_t, ltasks);
725 return (void *) &task->taskid;
726}
727
728/** Key comparison function for the @c tasks ordered dictionary.
729 *
730 * @param a Pointer to thread A ID
731 * @param b Pointer to thread B ID
732 * @return -1, 0, 1 iff ID A is less than, equal to, greater than B
733 */
734static int tasks_cmp(void *a, void *b)
735{
736 task_id_t ida = *(task_id_t *)a;
737 task_id_t idb = *(task_id_t *)b;
738
739 if (ida < idb)
740 return -1;
741 else if (ida == idb)
742 return 0;
743 else
744 return +1;
745}
746
747/** @}
748 */
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