source: mainline/kernel/generic/src/proc/thread.c@ 137691a

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 137691a was 137691a, checked in by Martin Decky <martin@…>, 15 years ago

remove unused variables and operations (as suggested by Clang static analyzer)

  • Property mode set to 100644
File size: 18.9 KB
Line 
1/*
2 * Copyright (c) 2001-2004 Jakub Jermar
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup genericproc
30 * @{
31 */
32
33/**
34 * @file
35 * @brief Thread management functions.
36 */
37
38#include <proc/scheduler.h>
39#include <proc/thread.h>
40#include <proc/task.h>
41#include <proc/uarg.h>
42#include <mm/frame.h>
43#include <mm/page.h>
44#include <arch/asm.h>
45#include <arch/cycle.h>
46#include <arch.h>
47#include <synch/synch.h>
48#include <synch/spinlock.h>
49#include <synch/waitq.h>
50#include <synch/rwlock.h>
51#include <cpu.h>
52#include <func.h>
53#include <context.h>
54#include <adt/avl.h>
55#include <adt/list.h>
56#include <time/clock.h>
57#include <time/timeout.h>
58#include <config.h>
59#include <arch/interrupt.h>
60#include <smp/ipi.h>
61#include <arch/faddr.h>
62#include <atomic.h>
63#include <memstr.h>
64#include <print.h>
65#include <mm/slab.h>
66#include <debug.h>
67#include <main/uinit.h>
68#include <syscall/copy.h>
69#include <errno.h>
70
71
72#ifndef LOADED_PROG_STACK_PAGES_NO
73#define LOADED_PROG_STACK_PAGES_NO 1
74#endif
75
76
77/** Thread states */
78const char *thread_states[] = {
79 "Invalid",
80 "Running",
81 "Sleeping",
82 "Ready",
83 "Entering",
84 "Exiting",
85 "Lingering"
86};
87
88/** Lock protecting the threads_tree AVL tree.
89 *
90 * For locking rules, see declaration thereof.
91 */
92SPINLOCK_INITIALIZE(threads_lock);
93
94/** AVL tree of all threads.
95 *
96 * When a thread is found in the threads_tree AVL tree, it is guaranteed to
97 * exist as long as the threads_lock is held.
98 */
99avltree_t threads_tree;
100
101SPINLOCK_INITIALIZE(tidlock);
102thread_id_t last_tid = 0;
103
104static slab_cache_t *thread_slab;
105#ifdef CONFIG_FPU
106slab_cache_t *fpu_context_slab;
107#endif
108
109/** Thread wrapper.
110 *
111 * This wrapper is provided to ensure that every thread makes a call to
112 * thread_exit() when its implementing function returns.
113 *
114 * interrupts_disable() is assumed.
115 *
116 */
117static void cushion(void)
118{
119 void (*f)(void *) = THREAD->thread_code;
120 void *arg = THREAD->thread_arg;
121 THREAD->last_cycle = get_cycle();
122
123 /* This is where each thread wakes up after its creation */
124 spinlock_unlock(&THREAD->lock);
125 interrupts_enable();
126
127 f(arg);
128
129 /* Accumulate accounting to the task */
130 ipl_t ipl = interrupts_disable();
131
132 spinlock_lock(&THREAD->lock);
133 if (!THREAD->uncounted) {
134 thread_update_accounting();
135 uint64_t cycles = THREAD->cycles;
136 THREAD->cycles = 0;
137 spinlock_unlock(&THREAD->lock);
138
139 spinlock_lock(&TASK->lock);
140 TASK->cycles += cycles;
141 spinlock_unlock(&TASK->lock);
142 } else
143 spinlock_unlock(&THREAD->lock);
144
145 interrupts_restore(ipl);
146
147 thread_exit();
148 /* not reached */
149}
150
151/** Initialization and allocation for thread_t structure */
152static int thr_constructor(void *obj, int kmflags)
153{
154 thread_t *t = (thread_t *) obj;
155
156 spinlock_initialize(&t->lock, "thread_t_lock");
157 link_initialize(&t->rq_link);
158 link_initialize(&t->wq_link);
159 link_initialize(&t->th_link);
160
161 /* call the architecture-specific part of the constructor */
162 thr_constructor_arch(t);
163
164#ifdef CONFIG_FPU
165#ifdef CONFIG_FPU_LAZY
166 t->saved_fpu_context = NULL;
167#else
168 t->saved_fpu_context = slab_alloc(fpu_context_slab, kmflags);
169 if (!t->saved_fpu_context)
170 return -1;
171#endif
172#endif
173
174 t->kstack = (uint8_t *) frame_alloc(STACK_FRAMES, FRAME_KA | kmflags);
175 if (!t->kstack) {
176#ifdef CONFIG_FPU
177 if (t->saved_fpu_context)
178 slab_free(fpu_context_slab, t->saved_fpu_context);
179#endif
180 return -1;
181 }
182
183#ifdef CONFIG_UDEBUG
184 mutex_initialize(&t->udebug.lock, MUTEX_PASSIVE);
185#endif
186
187 return 0;
188}
189
190/** Destruction of thread_t object */
191static int thr_destructor(void *obj)
192{
193 thread_t *t = (thread_t *) obj;
194
195 /* call the architecture-specific part of the destructor */
196 thr_destructor_arch(t);
197
198 frame_free(KA2PA(t->kstack));
199#ifdef CONFIG_FPU
200 if (t->saved_fpu_context)
201 slab_free(fpu_context_slab, t->saved_fpu_context);
202#endif
203 return 1; /* One page freed */
204}
205
206/** Initialize threads
207 *
208 * Initialize kernel threads support.
209 *
210 */
211void thread_init(void)
212{
213 THREAD = NULL;
214 atomic_set(&nrdy, 0);
215 thread_slab = slab_cache_create("thread_slab", sizeof(thread_t), 0,
216 thr_constructor, thr_destructor, 0);
217
218#ifdef CONFIG_FPU
219 fpu_context_slab = slab_cache_create("fpu_slab", sizeof(fpu_context_t),
220 FPU_CONTEXT_ALIGN, NULL, NULL, 0);
221#endif
222
223 avltree_create(&threads_tree);
224}
225
226/** Make thread ready
227 *
228 * Switch thread t to the ready state.
229 *
230 * @param t Thread to make ready.
231 *
232 */
233void thread_ready(thread_t *t)
234{
235 cpu_t *cpu;
236 runq_t *r;
237 ipl_t ipl;
238 int i, avg;
239
240 ipl = interrupts_disable();
241
242 spinlock_lock(&t->lock);
243
244 ASSERT(!(t->state == Ready));
245
246 i = (t->priority < RQ_COUNT - 1) ? ++t->priority : t->priority;
247
248 cpu = CPU;
249 if (t->flags & THREAD_FLAG_WIRED) {
250 ASSERT(t->cpu != NULL);
251 cpu = t->cpu;
252 }
253 t->state = Ready;
254 spinlock_unlock(&t->lock);
255
256 /*
257 * Append t to respective ready queue on respective processor.
258 */
259 r = &cpu->rq[i];
260 spinlock_lock(&r->lock);
261 list_append(&t->rq_link, &r->rq_head);
262 r->n++;
263 spinlock_unlock(&r->lock);
264
265 atomic_inc(&nrdy);
266 // FIXME: Why is the avg value never read?
267 avg = atomic_get(&nrdy) / config.cpu_active;
268 atomic_inc(&cpu->nrdy);
269
270 interrupts_restore(ipl);
271}
272
273/** Create new thread
274 *
275 * Create a new thread.
276 *
277 * @param func Thread's implementing function.
278 * @param arg Thread's implementing function argument.
279 * @param task Task to which the thread belongs. The caller must
280 * guarantee that the task won't cease to exist during the
281 * call. The task's lock may not be held.
282 * @param flags Thread flags.
283 * @param name Symbolic name (a copy is made).
284 * @param uncounted Thread's accounting doesn't affect accumulated task
285 * accounting.
286 *
287 * @return New thread's structure on success, NULL on failure.
288 *
289 */
290thread_t *thread_create(void (* func)(void *), void *arg, task_t *task,
291 int flags, const char *name, bool uncounted)
292{
293 thread_t *t;
294 ipl_t ipl;
295
296 t = (thread_t *) slab_alloc(thread_slab, 0);
297 if (!t)
298 return NULL;
299
300 /* Not needed, but good for debugging */
301 memsetb(t->kstack, THREAD_STACK_SIZE * 1 << STACK_FRAMES, 0);
302
303 ipl = interrupts_disable();
304 spinlock_lock(&tidlock);
305 t->tid = ++last_tid;
306 spinlock_unlock(&tidlock);
307 interrupts_restore(ipl);
308
309 context_save(&t->saved_context);
310 context_set(&t->saved_context, FADDR(cushion), (uintptr_t) t->kstack,
311 THREAD_STACK_SIZE);
312
313 the_initialize((the_t *) t->kstack);
314
315 ipl = interrupts_disable();
316 t->saved_context.ipl = interrupts_read();
317 interrupts_restore(ipl);
318
319 memcpy(t->name, name, THREAD_NAME_BUFLEN);
320 t->name[THREAD_NAME_BUFLEN - 1] = 0;
321
322 t->thread_code = func;
323 t->thread_arg = arg;
324 t->ticks = -1;
325 t->cycles = 0;
326 t->uncounted = uncounted;
327 t->priority = -1; /* start in rq[0] */
328 t->cpu = NULL;
329 t->flags = flags;
330 t->state = Entering;
331 t->call_me = NULL;
332 t->call_me_with = NULL;
333
334 timeout_initialize(&t->sleep_timeout);
335 t->sleep_interruptible = false;
336 t->sleep_queue = NULL;
337 t->timeout_pending = 0;
338
339 t->in_copy_from_uspace = false;
340 t->in_copy_to_uspace = false;
341
342 t->interrupted = false;
343 t->detached = false;
344 waitq_initialize(&t->join_wq);
345
346 t->rwlock_holder_type = RWLOCK_NONE;
347
348 t->task = task;
349
350 t->fpu_context_exists = 0;
351 t->fpu_context_engaged = 0;
352
353 avltree_node_initialize(&t->threads_tree_node);
354 t->threads_tree_node.key = (uintptr_t) t;
355
356#ifdef CONFIG_UDEBUG
357 /* Init debugging stuff */
358 udebug_thread_initialize(&t->udebug);
359#endif
360
361 /* might depend on previous initialization */
362 thread_create_arch(t);
363
364 if (!(flags & THREAD_FLAG_NOATTACH))
365 thread_attach(t, task);
366
367 return t;
368}
369
370/** Destroy thread memory structure
371 *
372 * Detach thread from all queues, cpus etc. and destroy it.
373 *
374 * Assume thread->lock is held!!
375 */
376void thread_destroy(thread_t *t)
377{
378 ASSERT(t->state == Exiting || t->state == Lingering);
379 ASSERT(t->task);
380 ASSERT(t->cpu);
381
382 spinlock_lock(&t->cpu->lock);
383 if (t->cpu->fpu_owner == t)
384 t->cpu->fpu_owner = NULL;
385 spinlock_unlock(&t->cpu->lock);
386
387 spinlock_unlock(&t->lock);
388
389 spinlock_lock(&threads_lock);
390 avltree_delete(&threads_tree, &t->threads_tree_node);
391 spinlock_unlock(&threads_lock);
392
393 /*
394 * Detach from the containing task.
395 */
396 spinlock_lock(&t->task->lock);
397 list_remove(&t->th_link);
398 spinlock_unlock(&t->task->lock);
399
400 /*
401 * t is guaranteed to be the very last thread of its task.
402 * It is safe to destroy the task.
403 */
404 if (atomic_predec(&t->task->refcount) == 0)
405 task_destroy(t->task);
406
407 slab_free(thread_slab, t);
408}
409
410/** Make the thread visible to the system.
411 *
412 * Attach the thread structure to the current task and make it visible in the
413 * threads_tree.
414 *
415 * @param t Thread to be attached to the task.
416 * @param task Task to which the thread is to be attached.
417 */
418void thread_attach(thread_t *t, task_t *task)
419{
420 ipl_t ipl;
421
422 /*
423 * Attach to the specified task.
424 */
425 ipl = interrupts_disable();
426 spinlock_lock(&task->lock);
427
428 atomic_inc(&task->refcount);
429
430 /* Must not count kbox thread into lifecount */
431 if (t->flags & THREAD_FLAG_USPACE)
432 atomic_inc(&task->lifecount);
433
434 list_append(&t->th_link, &task->th_head);
435 spinlock_unlock(&task->lock);
436
437 /*
438 * Register this thread in the system-wide list.
439 */
440 spinlock_lock(&threads_lock);
441 avltree_insert(&threads_tree, &t->threads_tree_node);
442 spinlock_unlock(&threads_lock);
443
444 interrupts_restore(ipl);
445}
446
447/** Terminate thread.
448 *
449 * End current thread execution and switch it to the exiting state. All pending
450 * timeouts are executed.
451 */
452void thread_exit(void)
453{
454 ipl_t ipl;
455
456 if (THREAD->flags & THREAD_FLAG_USPACE) {
457#ifdef CONFIG_UDEBUG
458 /* Generate udebug THREAD_E event */
459 udebug_thread_e_event();
460#endif
461 if (atomic_predec(&TASK->lifecount) == 0) {
462 /*
463 * We are the last userspace thread in the task that
464 * still has not exited. With the exception of the
465 * moment the task was created, new userspace threads
466 * can only be created by threads of the same task.
467 * We are safe to perform cleanup.
468 */
469 ipc_cleanup();
470 futex_cleanup();
471 LOG("Cleanup of task %" PRIu64" completed.", TASK->taskid);
472 }
473 }
474
475restart:
476 ipl = interrupts_disable();
477 spinlock_lock(&THREAD->lock);
478 if (THREAD->timeout_pending) {
479 /* busy waiting for timeouts in progress */
480 spinlock_unlock(&THREAD->lock);
481 interrupts_restore(ipl);
482 goto restart;
483 }
484
485 THREAD->state = Exiting;
486 spinlock_unlock(&THREAD->lock);
487 scheduler();
488
489 /* Not reached */
490 while (1)
491 ;
492}
493
494
495/** Thread sleep
496 *
497 * Suspend execution of the current thread.
498 *
499 * @param sec Number of seconds to sleep.
500 *
501 */
502void thread_sleep(uint32_t sec)
503{
504 /* Sleep in 1000 second steps to support
505 full argument range */
506 while (sec > 0) {
507 uint32_t period = (sec > 1000) ? 1000 : sec;
508
509 thread_usleep(period * 1000000);
510 sec -= period;
511 }
512}
513
514/** Wait for another thread to exit.
515 *
516 * @param t Thread to join on exit.
517 * @param usec Timeout in microseconds.
518 * @param flags Mode of operation.
519 *
520 * @return An error code from errno.h or an error code from synch.h.
521 */
522int thread_join_timeout(thread_t *t, uint32_t usec, int flags)
523{
524 ipl_t ipl;
525 int rc;
526
527 if (t == THREAD)
528 return EINVAL;
529
530 /*
531 * Since thread join can only be called once on an undetached thread,
532 * the thread pointer is guaranteed to be still valid.
533 */
534
535 ipl = interrupts_disable();
536 spinlock_lock(&t->lock);
537 ASSERT(!t->detached);
538 spinlock_unlock(&t->lock);
539 interrupts_restore(ipl);
540
541 rc = waitq_sleep_timeout(&t->join_wq, usec, flags);
542
543 return rc;
544}
545
546/** Detach thread.
547 *
548 * Mark the thread as detached, if the thread is already in the Lingering
549 * state, deallocate its resources.
550 *
551 * @param t Thread to be detached.
552 */
553void thread_detach(thread_t *t)
554{
555 ipl_t ipl;
556
557 /*
558 * Since the thread is expected not to be already detached,
559 * pointer to it must be still valid.
560 */
561 ipl = interrupts_disable();
562 spinlock_lock(&t->lock);
563 ASSERT(!t->detached);
564 if (t->state == Lingering) {
565 thread_destroy(t); /* unlocks &t->lock */
566 interrupts_restore(ipl);
567 return;
568 } else {
569 t->detached = true;
570 }
571 spinlock_unlock(&t->lock);
572 interrupts_restore(ipl);
573}
574
575/** Thread usleep
576 *
577 * Suspend execution of the current thread.
578 *
579 * @param usec Number of microseconds to sleep.
580 *
581 */
582void thread_usleep(uint32_t usec)
583{
584 waitq_t wq;
585
586 waitq_initialize(&wq);
587
588 (void) waitq_sleep_timeout(&wq, usec, SYNCH_FLAGS_NON_BLOCKING);
589}
590
591/** Register thread out-of-context invocation
592 *
593 * Register a function and its argument to be executed
594 * on next context switch to the current thread.
595 *
596 * @param call_me Out-of-context function.
597 * @param call_me_with Out-of-context function argument.
598 *
599 */
600void thread_register_call_me(void (* call_me)(void *), void *call_me_with)
601{
602 ipl_t ipl;
603
604 ipl = interrupts_disable();
605 spinlock_lock(&THREAD->lock);
606 THREAD->call_me = call_me;
607 THREAD->call_me_with = call_me_with;
608 spinlock_unlock(&THREAD->lock);
609 interrupts_restore(ipl);
610}
611
612static bool thread_walker(avltree_node_t *node, void *arg)
613{
614 thread_t *t = avltree_get_instance(node, thread_t, threads_tree_node);
615
616 uint64_t cycles;
617 char suffix;
618 order(t->cycles, &cycles, &suffix);
619
620#ifdef __32_BITS__
621 printf("%-6" PRIu64" %-10s %10p %-8s %10p %-3" PRIu32 " %10p %10p %9" PRIu64 "%c ",
622 t->tid, t->name, t, thread_states[t->state], t->task,
623 t->task->context, t->thread_code, t->kstack, cycles, suffix);
624#endif
625
626#ifdef __64_BITS__
627 printf("%-6" PRIu64" %-10s %18p %-8s %18p %-3" PRIu32 " %18p %18p %9" PRIu64 "%c ",
628 t->tid, t->name, t, thread_states[t->state], t->task,
629 t->task->context, t->thread_code, t->kstack, cycles, suffix);
630#endif
631
632 if (t->cpu)
633 printf("%-4u", t->cpu->id);
634 else
635 printf("none");
636
637 if (t->state == Sleeping) {
638#ifdef __32_BITS__
639 printf(" %10p", t->sleep_queue);
640#endif
641
642#ifdef __64_BITS__
643 printf(" %18p", t->sleep_queue);
644#endif
645 }
646
647 printf("\n");
648
649 return true;
650}
651
652/** Print list of threads debug info */
653void thread_print_list(void)
654{
655 ipl_t ipl;
656
657 /* Messing with thread structures, avoid deadlock */
658 ipl = interrupts_disable();
659 spinlock_lock(&threads_lock);
660
661#ifdef __32_BITS__
662 printf("tid name address state task "
663 "ctx code stack cycles cpu "
664 "waitqueue\n");
665 printf("------ ---------- ---------- -------- ---------- "
666 "--- ---------- ---------- ---------- ---- "
667 "----------\n");
668#endif
669
670#ifdef __64_BITS__
671 printf("tid name address state task "
672 "ctx code stack cycles cpu "
673 "waitqueue\n");
674 printf("------ ---------- ------------------ -------- ------------------ "
675 "--- ------------------ ------------------ ---------- ---- "
676 "------------------\n");
677#endif
678
679 avltree_walk(&threads_tree, thread_walker, NULL);
680
681 spinlock_unlock(&threads_lock);
682 interrupts_restore(ipl);
683}
684
685/** Check whether thread exists.
686 *
687 * Note that threads_lock must be already held and
688 * interrupts must be already disabled.
689 *
690 * @param t Pointer to thread.
691 *
692 * @return True if thread t is known to the system, false otherwise.
693 */
694bool thread_exists(thread_t *t)
695{
696 avltree_node_t *node;
697
698 node = avltree_search(&threads_tree, (avltree_key_t) ((uintptr_t) t));
699
700 return node != NULL;
701}
702
703/** Update accounting of current thread.
704 *
705 * Note that thread_lock on THREAD must be already held and
706 * interrupts must be already disabled.
707 *
708 */
709void thread_update_accounting(void)
710{
711 uint64_t time = get_cycle();
712 THREAD->cycles += time - THREAD->last_cycle;
713 THREAD->last_cycle = time;
714}
715
716/** Process syscall to create new thread.
717 *
718 */
719unative_t sys_thread_create(uspace_arg_t *uspace_uarg, char *uspace_name,
720 size_t name_len, thread_id_t *uspace_thread_id)
721{
722 thread_t *t;
723 char namebuf[THREAD_NAME_BUFLEN];
724 uspace_arg_t *kernel_uarg;
725 int rc;
726
727 if (name_len > THREAD_NAME_BUFLEN - 1)
728 name_len = THREAD_NAME_BUFLEN - 1;
729
730 rc = copy_from_uspace(namebuf, uspace_name, name_len);
731 if (rc != 0)
732 return (unative_t) rc;
733
734 namebuf[name_len] = 0;
735
736 /*
737 * In case of failure, kernel_uarg will be deallocated in this function.
738 * In case of success, kernel_uarg will be freed in uinit().
739 */
740 kernel_uarg = (uspace_arg_t *) malloc(sizeof(uspace_arg_t), 0);
741
742 rc = copy_from_uspace(kernel_uarg, uspace_uarg, sizeof(uspace_arg_t));
743 if (rc != 0) {
744 free(kernel_uarg);
745 return (unative_t) rc;
746 }
747
748 t = thread_create(uinit, kernel_uarg, TASK,
749 THREAD_FLAG_USPACE | THREAD_FLAG_NOATTACH, namebuf, false);
750 if (t) {
751 if (uspace_thread_id != NULL) {
752 int rc;
753
754 rc = copy_to_uspace(uspace_thread_id, &t->tid,
755 sizeof(t->tid));
756 if (rc != 0) {
757 /*
758 * We have encountered a failure, but the thread
759 * has already been created. We need to undo its
760 * creation now.
761 */
762
763 /*
764 * The new thread structure is initialized, but
765 * is still not visible to the system.
766 * We can safely deallocate it.
767 */
768 slab_free(thread_slab, t);
769 free(kernel_uarg);
770
771 return (unative_t) rc;
772 }
773 }
774#ifdef CONFIG_UDEBUG
775 /*
776 * Generate udebug THREAD_B event and attach the thread.
777 * This must be done atomically (with the debug locks held),
778 * otherwise we would either miss some thread or receive
779 * THREAD_B events for threads that already existed
780 * and could be detected with THREAD_READ before.
781 */
782 udebug_thread_b_event_attach(t, TASK);
783#else
784 thread_attach(t, TASK);
785#endif
786 thread_ready(t);
787
788 return 0;
789 } else
790 free(kernel_uarg);
791
792 return (unative_t) ENOMEM;
793}
794
795/** Process syscall to terminate thread.
796 *
797 */
798unative_t sys_thread_exit(int uspace_status)
799{
800 thread_exit();
801 /* Unreachable */
802 return 0;
803}
804
805/** Syscall for getting TID.
806 *
807 * @param uspace_thread_id Userspace address of 8-byte buffer where to store
808 * current thread ID.
809 *
810 * @return 0 on success or an error code from @ref errno.h.
811 */
812unative_t sys_thread_get_id(thread_id_t *uspace_thread_id)
813{
814 /*
815 * No need to acquire lock on THREAD because tid
816 * remains constant for the lifespan of the thread.
817 */
818 return (unative_t) copy_to_uspace(uspace_thread_id, &THREAD->tid,
819 sizeof(THREAD->tid));
820}
821
822/** Syscall wrapper for sleeping. */
823unative_t sys_thread_usleep(uint32_t usec)
824{
825 thread_usleep(usec);
826 return 0;
827}
828
829/** @}
830 */
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