source: mainline/kernel/generic/src/ipc/ipc.c@ a36f442

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since a36f442 was a36f442, checked in by Jakub Jermar <jakub@…>, 7 years ago

Account the active call to callerbox if it exists

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File size: 25.6 KB
Line 
1/*
2 * Copyright (c) 2006 Ondrej Palkovsky
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 genericipc
30 * @{
31 */
32/** @file
33 */
34
35/* Lock ordering
36 *
37 * First the answerbox, then the phone.
38 */
39
40#include <assert.h>
41#include <synch/spinlock.h>
42#include <synch/mutex.h>
43#include <synch/waitq.h>
44#include <ipc/ipc.h>
45#include <ipc/ipcrsc.h>
46#include <abi/ipc/methods.h>
47#include <ipc/kbox.h>
48#include <ipc/event.h>
49#include <ipc/sysipc_ops.h>
50#include <ipc/sysipc_priv.h>
51#include <errno.h>
52#include <mm/slab.h>
53#include <arch.h>
54#include <proc/task.h>
55#include <mem.h>
56#include <print.h>
57#include <console/console.h>
58#include <proc/thread.h>
59#include <arch/interrupt.h>
60#include <ipc/irq.h>
61#include <cap/cap.h>
62
63static void ipc_forget_call(call_t *);
64
65/** Answerbox that new tasks are automatically connected to */
66answerbox_t *ipc_box_0 = NULL;
67
68static slab_cache_t *call_cache;
69static slab_cache_t *answerbox_cache;
70
71slab_cache_t *phone_cache = NULL;
72
73/** Initialize a call structure.
74 *
75 * @param call Call structure to be initialized.
76 *
77 */
78static void _ipc_call_init(call_t *call)
79{
80 memsetb(call, sizeof(*call), 0);
81 spinlock_initialize(&call->forget_lock, "forget_lock");
82 call->active = false;
83 call->forget = false;
84 call->sender = NULL;
85 call->callerbox = NULL;
86 call->buffer = NULL;
87}
88
89static void call_destroy(void *arg)
90{
91 call_t *call = (call_t *) arg;
92
93 if (call->buffer)
94 free(call->buffer);
95 if (call->caller_phone)
96 kobject_put(call->caller_phone->kobject);
97 slab_free(call_cache, call);
98}
99
100static kobject_ops_t call_kobject_ops = {
101 .destroy = call_destroy
102};
103
104/** Allocate and initialize a call structure.
105 *
106 * The call is initialized, so that the reply will be directed to
107 * TASK->answerbox.
108 *
109 * @param flags Parameters for slab_alloc (e.g FRAME_ATOMIC).
110 *
111 * @return If flags permit it, return NULL, or initialized kernel
112 * call structure with one reference.
113 *
114 */
115call_t *ipc_call_alloc(unsigned int flags)
116{
117 call_t *call = slab_alloc(call_cache, flags);
118 if (!call)
119 return NULL;
120 kobject_t *kobj = (kobject_t *) malloc(sizeof(kobject_t), flags);
121 if (!kobj) {
122 slab_free(call_cache, call);
123 return NULL;
124 }
125
126 _ipc_call_init(call);
127 kobject_initialize(kobj, KOBJECT_TYPE_CALL, call, &call_kobject_ops);
128 call->kobject = kobj;
129
130 return call;
131}
132
133/** Initialize an answerbox structure.
134 *
135 * @param box Answerbox structure to be initialized.
136 * @param task Task to which the answerbox belongs.
137 *
138 */
139void ipc_answerbox_init(answerbox_t *box, task_t *task)
140{
141 irq_spinlock_initialize(&box->lock, "ipc.box.lock");
142 irq_spinlock_initialize(&box->irq_lock, "ipc.box.irqlock");
143 waitq_initialize(&box->wq);
144 list_initialize(&box->connected_phones);
145 list_initialize(&box->calls);
146 list_initialize(&box->dispatched_calls);
147 list_initialize(&box->answers);
148 list_initialize(&box->irq_notifs);
149 atomic_set(&box->active_calls, 0);
150 box->task = task;
151}
152
153/** Connect a phone to an answerbox.
154 *
155 * This function must be passed a reference to phone->kobject.
156 *
157 * @param phone Initialized phone structure.
158 * @param box Initialized answerbox structure.
159 * @return True if the phone was connected, false otherwise.
160 */
161bool ipc_phone_connect(phone_t *phone, answerbox_t *box)
162{
163 bool connected;
164
165 mutex_lock(&phone->lock);
166 irq_spinlock_lock(&box->lock, true);
167
168 connected = box->active && (phone->state == IPC_PHONE_CONNECTING);
169 if (connected) {
170 phone->state = IPC_PHONE_CONNECTED;
171 phone->callee = box;
172 /* Pass phone->kobject reference to box->connected_phones */
173 list_append(&phone->link, &box->connected_phones);
174 }
175
176 irq_spinlock_unlock(&box->lock, true);
177 mutex_unlock(&phone->lock);
178
179 if (!connected) {
180 /* We still have phone->kobject's reference; drop it */
181 kobject_put(phone->kobject);
182 }
183
184 return connected;
185}
186
187/** Initialize a phone structure.
188 *
189 * @param phone Phone structure to be initialized.
190 * @param caller Owning task.
191 *
192 */
193void ipc_phone_init(phone_t *phone, task_t *caller)
194{
195 mutex_initialize(&phone->lock, MUTEX_PASSIVE);
196 phone->caller = caller;
197 phone->callee = NULL;
198 phone->state = IPC_PHONE_FREE;
199 atomic_set(&phone->active_calls, 0);
200 phone->kobject = NULL;
201}
202
203/** Helper function to facilitate synchronous calls.
204 *
205 * @param phone Destination kernel phone structure.
206 * @param request Call structure with request.
207 *
208 * @return EOK on success or an error code.
209 *
210 */
211errno_t ipc_call_sync(phone_t *phone, call_t *request)
212{
213 answerbox_t *mybox = slab_alloc(answerbox_cache, 0);
214 ipc_answerbox_init(mybox, TASK);
215
216 /* We will receive data in a special box. */
217 request->callerbox = mybox;
218
219 errno_t rc = ipc_call(phone, request);
220 if (rc != EOK) {
221 slab_free(answerbox_cache, mybox);
222 return rc;
223 }
224
225 call_t *answer = ipc_wait_for_call(mybox, SYNCH_NO_TIMEOUT,
226 SYNCH_FLAGS_INTERRUPTIBLE);
227 if (!answer) {
228
229 /*
230 * The sleep was interrupted.
231 *
232 * There are two possibilities now:
233 * 1) the call gets answered before we manage to forget it
234 * 2) we manage to forget the call before it gets answered
235 */
236
237 spinlock_lock(&request->forget_lock);
238 spinlock_lock(&TASK->active_calls_lock);
239
240 assert(!request->forget);
241
242 bool answered = !request->active;
243 if (!answered) {
244 /*
245 * The call is not yet answered and we won the race to
246 * forget it.
247 */
248 ipc_forget_call(request); /* releases locks */
249 rc = EINTR;
250
251 } else {
252 spinlock_unlock(&TASK->active_calls_lock);
253 spinlock_unlock(&request->forget_lock);
254 }
255
256 if (answered) {
257 /*
258 * The other side won the race to answer the call.
259 * It is safe to wait for the answer uninterruptibly
260 * now.
261 */
262 answer = ipc_wait_for_call(mybox, SYNCH_NO_TIMEOUT,
263 SYNCH_FLAGS_NONE);
264 }
265 }
266 assert(!answer || request == answer);
267
268 slab_free(answerbox_cache, mybox);
269 return rc;
270}
271
272/** Answer a message which was not dispatched and is not listed in any queue.
273 *
274 * @param call Call structure to be answered.
275 * @param selflocked If true, then TASK->answebox is locked.
276 *
277 */
278void _ipc_answer_free_call(call_t *call, bool selflocked)
279{
280 /* Count sent answer */
281 irq_spinlock_lock(&TASK->lock, true);
282 TASK->ipc_info.answer_sent++;
283 irq_spinlock_unlock(&TASK->lock, true);
284
285 spinlock_lock(&call->forget_lock);
286 if (call->forget) {
287 /* This is a forgotten call and call->sender is not valid. */
288 spinlock_unlock(&call->forget_lock);
289 kobject_put(call->kobject);
290 return;
291 } else {
292 /*
293 * If the call is still active, i.e. it was answered
294 * in a non-standard way, remove the call from the
295 * sender's active call list.
296 */
297 if (call->active) {
298 spinlock_lock(&call->sender->active_calls_lock);
299 list_remove(&call->ta_link);
300 spinlock_unlock(&call->sender->active_calls_lock);
301 }
302 }
303 spinlock_unlock(&call->forget_lock);
304
305 answerbox_t *callerbox = call->callerbox ? call->callerbox :
306 &call->sender->answerbox;
307 bool do_lock = ((!selflocked) || (callerbox != &TASK->answerbox));
308
309 call->flags |= IPC_CALL_ANSWERED;
310
311 call->data.task_id = TASK->taskid;
312
313 if (do_lock)
314 irq_spinlock_lock(&callerbox->lock, true);
315
316 list_append(&call->ab_link, &callerbox->answers);
317
318 if (do_lock)
319 irq_spinlock_unlock(&callerbox->lock, true);
320
321 waitq_wakeup(&callerbox->wq, WAKEUP_FIRST);
322}
323
324/** Answer a message which is in a callee queue.
325 *
326 * @param box Answerbox that is answering the message.
327 * @param call Modified request that is being sent back.
328 *
329 */
330void ipc_answer(answerbox_t *box, call_t *call)
331{
332 /* Remove from active box */
333 irq_spinlock_lock(&box->lock, true);
334 list_remove(&call->ab_link);
335 irq_spinlock_unlock(&box->lock, true);
336
337 /* Send back answer */
338 _ipc_answer_free_call(call, false);
339}
340
341static void _ipc_call_actions_internal(phone_t *phone, call_t *call,
342 bool preforget)
343{
344 task_t *caller = phone->caller;
345
346 call->caller_phone = phone;
347 kobject_add_ref(phone->kobject);
348
349 if (preforget) {
350 call->forget = true;
351 } else {
352 atomic_inc(&phone->active_calls);
353 if (call->callerbox)
354 atomic_inc(&call->callerbox->active_calls);
355 else
356 atomic_inc(&caller->answerbox.active_calls);
357 kobject_add_ref(phone->kobject);
358 call->sender = caller;
359 call->active = true;
360 spinlock_lock(&caller->active_calls_lock);
361 list_append(&call->ta_link, &caller->active_calls);
362 spinlock_unlock(&caller->active_calls_lock);
363 }
364
365 call->data.phone = phone;
366 call->data.task_id = caller->taskid;
367}
368
369/** Simulate sending back a message.
370 *
371 * Most errors are better handled by forming a normal backward
372 * message and sending it as a normal answer.
373 *
374 * @param phone Phone structure the call should appear to come from.
375 * @param call Call structure to be answered.
376 * @param err Return value to be used for the answer.
377 *
378 */
379void ipc_backsend_err(phone_t *phone, call_t *call, errno_t err)
380{
381 _ipc_call_actions_internal(phone, call, false);
382 IPC_SET_RETVAL(call->data, err);
383 _ipc_answer_free_call(call, false);
384}
385
386/** Unsafe unchecking version of ipc_call.
387 *
388 * @param phone Phone structure the call comes from.
389 * @param box Destination answerbox structure.
390 * @param call Call structure with request.
391 * @param preforget If true, the call will be delivered already forgotten.
392 *
393 */
394static void _ipc_call(phone_t *phone, answerbox_t *box, call_t *call,
395 bool preforget)
396{
397 task_t *caller = phone->caller;
398
399 /* Count sent ipc call */
400 irq_spinlock_lock(&caller->lock, true);
401 caller->ipc_info.call_sent++;
402 irq_spinlock_unlock(&caller->lock, true);
403
404 if (!(call->flags & IPC_CALL_FORWARDED))
405 _ipc_call_actions_internal(phone, call, preforget);
406
407 irq_spinlock_lock(&box->lock, true);
408 list_append(&call->ab_link, &box->calls);
409 irq_spinlock_unlock(&box->lock, true);
410
411 waitq_wakeup(&box->wq, WAKEUP_FIRST);
412}
413
414/** Send an asynchronous request using a phone to an answerbox.
415 *
416 * @param phone Phone structure the call comes from and which is
417 * connected to the destination answerbox.
418 * @param call Call structure with request.
419 *
420 * @return Return 0 on success, ENOENT on error.
421 *
422 */
423errno_t ipc_call(phone_t *phone, call_t *call)
424{
425 mutex_lock(&phone->lock);
426 if (phone->state != IPC_PHONE_CONNECTED) {
427 mutex_unlock(&phone->lock);
428 if (!(call->flags & IPC_CALL_FORWARDED)) {
429 if (phone->state == IPC_PHONE_HUNGUP)
430 ipc_backsend_err(phone, call, EHANGUP);
431 else
432 ipc_backsend_err(phone, call, ENOENT);
433 }
434
435 return ENOENT;
436 }
437
438 answerbox_t *box = phone->callee;
439 _ipc_call(phone, box, call, false);
440
441 mutex_unlock(&phone->lock);
442 return 0;
443}
444
445/** Disconnect phone from answerbox.
446 *
447 * This call leaves the phone in the hung-up state. The phone is destroyed when
448 * its last active call is answered and there are no references to it.
449 *
450 * @param phone Phone structure to be hung up.
451 *
452 * @return EOK if the phone is disconnected.
453 * @return EINVAL if the phone was already disconnected.
454 *
455 */
456errno_t ipc_phone_hangup(phone_t *phone)
457{
458 mutex_lock(&phone->lock);
459 if (phone->state == IPC_PHONE_FREE ||
460 phone->state == IPC_PHONE_HUNGUP ||
461 phone->state == IPC_PHONE_CONNECTING) {
462 mutex_unlock(&phone->lock);
463 return EINVAL;
464 }
465
466 answerbox_t *box = phone->callee;
467 if (phone->state != IPC_PHONE_SLAMMED) {
468 /* Remove myself from answerbox */
469 irq_spinlock_lock(&box->lock, true);
470 list_remove(&phone->link);
471 irq_spinlock_unlock(&box->lock, true);
472
473 /* Drop the answerbox reference */
474 kobject_put(phone->kobject);
475
476 call_t *call = ipc_call_alloc(0);
477 IPC_SET_IMETHOD(call->data, IPC_M_PHONE_HUNGUP);
478 call->request_method = IPC_M_PHONE_HUNGUP;
479 call->flags |= IPC_CALL_DISCARD_ANSWER;
480 _ipc_call(phone, box, call, false);
481 }
482
483 phone->state = IPC_PHONE_HUNGUP;
484 mutex_unlock(&phone->lock);
485
486 return EOK;
487}
488
489/** Forwards call from one answerbox to another one.
490 *
491 * @param call Call structure to be redirected.
492 * @param newphone Phone structure to target answerbox.
493 * @param oldbox Old answerbox structure.
494 * @param mode Flags that specify mode of the forward operation.
495 *
496 * @return 0 if forwarding succeeded or an error code if
497 * there was an error.
498 *
499 * The return value serves only as an information for the forwarder,
500 * the original caller is notified automatically with EFORWARD.
501 *
502 */
503errno_t ipc_forward(call_t *call, phone_t *newphone, answerbox_t *oldbox,
504 unsigned int mode)
505{
506 /* Count forwarded calls */
507 irq_spinlock_lock(&TASK->lock, true);
508 TASK->ipc_info.forwarded++;
509 irq_spinlock_pass(&TASK->lock, &oldbox->lock);
510 list_remove(&call->ab_link);
511 irq_spinlock_unlock(&oldbox->lock, true);
512
513 if (mode & IPC_FF_ROUTE_FROM_ME) {
514 call->data.phone = newphone;
515 call->data.task_id = TASK->taskid;
516 }
517
518 return ipc_call(newphone, call);
519}
520
521
522/** Wait for a phone call.
523 *
524 * @param box Answerbox expecting the call.
525 * @param usec Timeout in microseconds. See documentation for
526 * waitq_sleep_timeout() for decription of its special
527 * meaning.
528 * @param flags Select mode of sleep operation. See documentation for
529 * waitq_sleep_timeout() for description of its special
530 * meaning.
531 *
532 * @return Recived call structure or NULL.
533 *
534 * To distinguish between a call and an answer, have a look at call->flags.
535 *
536 */
537call_t *ipc_wait_for_call(answerbox_t *box, uint32_t usec, unsigned int flags)
538{
539 call_t *request;
540 uint64_t irq_cnt = 0;
541 uint64_t answer_cnt = 0;
542 uint64_t call_cnt = 0;
543 errno_t rc;
544
545restart:
546 rc = waitq_sleep_timeout(&box->wq, usec, flags, NULL);
547 if (rc != EOK)
548 return NULL;
549
550 irq_spinlock_lock(&box->lock, true);
551 if (!list_empty(&box->irq_notifs)) {
552 /* Count received IRQ notification */
553 irq_cnt++;
554
555 irq_spinlock_lock(&box->irq_lock, false);
556
557 request = list_get_instance(list_first(&box->irq_notifs),
558 call_t, ab_link);
559 list_remove(&request->ab_link);
560
561 irq_spinlock_unlock(&box->irq_lock, false);
562 } else if (!list_empty(&box->answers)) {
563 /* Count received answer */
564 answer_cnt++;
565
566 /* Handle asynchronous answers */
567 request = list_get_instance(list_first(&box->answers),
568 call_t, ab_link);
569 list_remove(&request->ab_link);
570 atomic_dec(&request->caller_phone->active_calls);
571 atomic_dec(&box->active_calls);
572 kobject_put(request->caller_phone->kobject);
573 } else if (!list_empty(&box->calls)) {
574 /* Count received call */
575 call_cnt++;
576
577 /* Handle requests */
578 request = list_get_instance(list_first(&box->calls),
579 call_t, ab_link);
580 list_remove(&request->ab_link);
581
582 /* Append request to dispatch queue */
583 list_append(&request->ab_link, &box->dispatched_calls);
584 } else {
585 /* This can happen regularly after ipc_cleanup */
586 irq_spinlock_unlock(&box->lock, true);
587 goto restart;
588 }
589
590 irq_spinlock_pass(&box->lock, &TASK->lock);
591
592 TASK->ipc_info.irq_notif_received += irq_cnt;
593 TASK->ipc_info.answer_received += answer_cnt;
594 TASK->ipc_info.call_received += call_cnt;
595
596 irq_spinlock_unlock(&TASK->lock, true);
597
598 return request;
599}
600
601/** Answer all calls from list with EHANGUP answer.
602 *
603 * @param box Answerbox with the list.
604 * @param lst Head of the list to be cleaned up.
605 */
606void ipc_cleanup_call_list(answerbox_t *box, list_t *lst)
607{
608 irq_spinlock_lock(&box->lock, true);
609 while (!list_empty(lst)) {
610 call_t *call = list_get_instance(list_first(lst), call_t,
611 ab_link);
612
613 list_remove(&call->ab_link);
614
615 irq_spinlock_unlock(&box->lock, true);
616
617 if (lst == &box->calls)
618 SYSIPC_OP(request_process, call, box);
619
620 ipc_data_t old = call->data;
621 IPC_SET_RETVAL(call->data, EHANGUP);
622 answer_preprocess(call, &old);
623 _ipc_answer_free_call(call, true);
624
625 irq_spinlock_lock(&box->lock, true);
626 }
627 irq_spinlock_unlock(&box->lock, true);
628}
629
630/** Disconnects all phones connected to an answerbox.
631 *
632 * @param box Answerbox to disconnect phones from.
633 * @param notify_box If true, the answerbox will get a hangup message for
634 * each disconnected phone.
635 *
636 */
637void ipc_answerbox_slam_phones(answerbox_t *box, bool notify_box)
638{
639 phone_t *phone;
640 DEADLOCK_PROBE_INIT(p_phonelck);
641
642 /* Disconnect all phones connected to our answerbox */
643restart_phones:
644 irq_spinlock_lock(&box->lock, true);
645 while (!list_empty(&box->connected_phones)) {
646 phone = list_get_instance(list_first(&box->connected_phones),
647 phone_t, link);
648 if (mutex_trylock(&phone->lock) != EOK) {
649 irq_spinlock_unlock(&box->lock, true);
650 DEADLOCK_PROBE(p_phonelck, DEADLOCK_THRESHOLD);
651 goto restart_phones;
652 }
653
654 /* Disconnect phone */
655 assert(phone->state == IPC_PHONE_CONNECTED);
656
657 list_remove(&phone->link);
658 phone->state = IPC_PHONE_SLAMMED;
659
660 if (notify_box) {
661 task_hold(phone->caller);
662 mutex_unlock(&phone->lock);
663 irq_spinlock_unlock(&box->lock, true);
664
665 /*
666 * Send one call to the answerbox for each phone.
667 * Used to make sure the kbox thread wakes up after
668 * the last phone has been disconnected. The call is
669 * forgotten upon sending, so the "caller" may cease
670 * to exist as soon as we release it.
671 */
672 call_t *call = ipc_call_alloc(0);
673 IPC_SET_IMETHOD(call->data, IPC_M_PHONE_HUNGUP);
674 call->request_method = IPC_M_PHONE_HUNGUP;
675 call->flags |= IPC_CALL_DISCARD_ANSWER;
676 _ipc_call(phone, box, call, true);
677
678 task_release(phone->caller);
679
680 kobject_put(phone->kobject);
681
682 /* Must start again */
683 goto restart_phones;
684 }
685
686 mutex_unlock(&phone->lock);
687 kobject_put(phone->kobject);
688 }
689
690 irq_spinlock_unlock(&box->lock, true);
691}
692
693static void ipc_forget_call(call_t *call)
694{
695 assert(spinlock_locked(&TASK->active_calls_lock));
696 assert(spinlock_locked(&call->forget_lock));
697
698 /*
699 * Forget the call and donate it to the task which holds up the answer.
700 */
701
702 call->forget = true;
703 call->sender = NULL;
704 list_remove(&call->ta_link);
705
706 /*
707 * The call may be freed by _ipc_answer_free_call() before we are done
708 * with it; to avoid working with a destroyed call_t structure, we
709 * must hold a reference to it.
710 */
711 kobject_add_ref(call->kobject);
712
713 spinlock_unlock(&call->forget_lock);
714 spinlock_unlock(&TASK->active_calls_lock);
715
716 atomic_dec(&call->caller_phone->active_calls);
717 atomic_dec(&TASK->answerbox.active_calls);
718 kobject_put(call->caller_phone->kobject);
719
720 SYSIPC_OP(request_forget, call);
721
722 kobject_put(call->kobject);
723}
724
725static void ipc_forget_all_active_calls(void)
726{
727 call_t *call;
728
729restart:
730 spinlock_lock(&TASK->active_calls_lock);
731 if (list_empty(&TASK->active_calls)) {
732 /*
733 * We are done, there are no more active calls.
734 * Nota bene: there may still be answers waiting for pick up.
735 */
736 spinlock_unlock(&TASK->active_calls_lock);
737 return;
738 }
739
740 call = list_get_instance(list_first(&TASK->active_calls), call_t,
741 ta_link);
742
743 if (!spinlock_trylock(&call->forget_lock)) {
744 /*
745 * Avoid deadlock and let async_answer() or
746 * _ipc_answer_free_call() win the race to dequeue the first
747 * call on the list.
748 */
749 spinlock_unlock(&TASK->active_calls_lock);
750 goto restart;
751 }
752
753 ipc_forget_call(call);
754
755 goto restart;
756}
757
758static bool phone_cap_cleanup_cb(cap_t *cap, void *arg)
759{
760 ipc_phone_hangup(cap->kobject->phone);
761 kobject_t *kobj = cap_unpublish(cap->task, cap->handle,
762 KOBJECT_TYPE_PHONE);
763 kobject_put(kobj);
764 cap_free(cap->task, cap->handle);
765 return true;
766}
767
768/** Wait for all answers to asynchronous calls to arrive. */
769static void ipc_wait_for_all_answered_calls(void)
770{
771 while (atomic_get(&TASK->answerbox.active_calls) != 0) {
772 call_t *call = ipc_wait_for_call(&TASK->answerbox,
773 SYNCH_NO_TIMEOUT, SYNCH_FLAGS_NONE);
774 assert(call->flags & (IPC_CALL_ANSWERED | IPC_CALL_NOTIF));
775
776 SYSIPC_OP(answer_process, call);
777
778 kobject_put(call->kobject);
779
780 /*
781 * Now there may be some new phones and new hangup calls to
782 * immediately forget.
783 */
784 caps_apply_to_kobject_type(TASK, KOBJECT_TYPE_PHONE,
785 phone_cap_cleanup_cb, NULL);
786 ipc_forget_all_active_calls();
787 }
788}
789
790static bool irq_cap_cleanup_cb(cap_t *cap, void *arg)
791{
792 ipc_irq_unsubscribe(&TASK->answerbox, cap->handle);
793 return true;
794}
795
796static bool call_cap_cleanup_cb(cap_t *cap, void *arg)
797{
798 /*
799 * Here we just free the capability and release the kobject.
800 * The kernel answers the remaining calls elsewhere in ipc_cleanup().
801 */
802 kobject_t *kobj = cap_unpublish(cap->task, cap->handle,
803 KOBJECT_TYPE_CALL);
804 kobject_put(kobj);
805 cap_free(cap->task, cap->handle);
806 return true;
807}
808
809/** Clean up all IPC communication of the current task.
810 *
811 * Note: ipc_hangup sets returning answerbox to TASK->answerbox, you
812 * have to change it as well if you want to cleanup other tasks than TASK.
813 *
814 */
815void ipc_cleanup(void)
816{
817 /*
818 * Mark the answerbox as inactive.
819 *
820 * The main purpose for doing this is to prevent any pending callback
821 * connections from getting established beyond this point.
822 */
823 irq_spinlock_lock(&TASK->answerbox.lock, true);
824 TASK->answerbox.active = false;
825 irq_spinlock_unlock(&TASK->answerbox.lock, true);
826
827 /* Hangup all phones and destroy all phone capabilities */
828 caps_apply_to_kobject_type(TASK, KOBJECT_TYPE_PHONE,
829 phone_cap_cleanup_cb, NULL);
830
831 /* Unsubscribe from any event notifications */
832 event_cleanup_answerbox(&TASK->answerbox);
833
834 /* Disconnect all connected IRQs */
835 caps_apply_to_kobject_type(TASK, KOBJECT_TYPE_IRQ, irq_cap_cleanup_cb,
836 NULL);
837
838 /* Disconnect all phones connected to our regular answerbox */
839 ipc_answerbox_slam_phones(&TASK->answerbox, false);
840
841#ifdef CONFIG_UDEBUG
842 /* Clean up kbox thread and communications */
843 ipc_kbox_cleanup();
844#endif
845
846 /* Destroy all call capabilities */
847 caps_apply_to_kobject_type(TASK, KOBJECT_TYPE_CALL, call_cap_cleanup_cb,
848 NULL);
849
850 /* Answer all messages in 'calls' and 'dispatched_calls' queues */
851 ipc_cleanup_call_list(&TASK->answerbox, &TASK->answerbox.calls);
852 ipc_cleanup_call_list(&TASK->answerbox,
853 &TASK->answerbox.dispatched_calls);
854
855 ipc_forget_all_active_calls();
856 ipc_wait_for_all_answered_calls();
857
858 assert(atomic_get(&TASK->answerbox.active_calls) == 0);
859}
860
861/** Initilize IPC subsystem
862 *
863 */
864void ipc_init(void)
865{
866 call_cache = slab_cache_create("call_t", sizeof(call_t), 0, NULL,
867 NULL, 0);
868 phone_cache = slab_cache_create("phone_t", sizeof(phone_t), 0, NULL,
869 NULL, 0);
870 answerbox_cache = slab_cache_create("answerbox_t", sizeof(answerbox_t),
871 0, NULL, NULL, 0);
872}
873
874
875static void ipc_print_call_list(list_t *list)
876{
877 list_foreach(*list, ab_link, call_t, call) {
878#ifdef __32_BITS__
879 printf("%10p ", call);
880#endif
881
882#ifdef __64_BITS__
883 printf("%18p ", call);
884#endif
885
886 spinlock_lock(&call->forget_lock);
887
888 printf("%-8" PRIun " %-6" PRIun " %-6" PRIun " %-6" PRIun
889 " %-6" PRIun " %-6" PRIun " %-7x",
890 IPC_GET_IMETHOD(call->data), IPC_GET_ARG1(call->data),
891 IPC_GET_ARG2(call->data), IPC_GET_ARG3(call->data),
892 IPC_GET_ARG4(call->data), IPC_GET_ARG5(call->data),
893 call->flags);
894
895 if (call->forget) {
896 printf(" ? (call forgotten)\n");
897 } else {
898 printf(" %" PRIu64 " (%s)\n",
899 call->sender->taskid, call->sender->name);
900 }
901
902 spinlock_unlock(&call->forget_lock);
903 }
904}
905
906static bool print_task_phone_cb(cap_t *cap, void *arg)
907{
908 phone_t *phone = cap->kobject->phone;
909
910 mutex_lock(&phone->lock);
911 if (phone->state != IPC_PHONE_FREE) {
912 printf("%-11d %7" PRIun " ", cap->handle,
913 atomic_get(&phone->active_calls));
914
915 switch (phone->state) {
916 case IPC_PHONE_CONNECTING:
917 printf("connecting");
918 break;
919 case IPC_PHONE_CONNECTED:
920 printf("connected to %" PRIu64 " (%s)",
921 phone->callee->task->taskid,
922 phone->callee->task->name);
923 break;
924 case IPC_PHONE_SLAMMED:
925 printf("slammed by %p", phone->callee);
926 break;
927 case IPC_PHONE_HUNGUP:
928 printf("hung up to %p", phone->callee);
929 break;
930 default:
931 break;
932 }
933
934 printf("\n");
935 }
936 mutex_unlock(&phone->lock);
937
938 return true;
939}
940
941/** List answerbox contents.
942 *
943 * @param taskid Task ID.
944 *
945 */
946void ipc_print_task(task_id_t taskid)
947{
948 irq_spinlock_lock(&tasks_lock, true);
949 task_t *task = task_find_by_id(taskid);
950 if (!task) {
951 irq_spinlock_unlock(&tasks_lock, true);
952 return;
953 }
954 task_hold(task);
955 irq_spinlock_unlock(&tasks_lock, true);
956
957 printf("[phone cap] [calls] [state\n");
958
959 caps_apply_to_kobject_type(task, KOBJECT_TYPE_PHONE,
960 print_task_phone_cb, NULL);
961
962 irq_spinlock_lock(&task->lock, true);
963 irq_spinlock_lock(&task->answerbox.lock, false);
964
965 printf("Active calls: %" PRIun "\n",
966 atomic_get(&task->answerbox.active_calls));
967
968#ifdef __32_BITS__
969 printf("[call id ] [method] [arg1] [arg2] [arg3] [arg4] [arg5]"
970 " [flags] [sender\n");
971#endif
972
973#ifdef __64_BITS__
974 printf("[call id ] [method] [arg1] [arg2] [arg3] [arg4]"
975 " [arg5] [flags] [sender\n");
976#endif
977
978 printf(" --- incomming calls ---\n");
979 ipc_print_call_list(&task->answerbox.calls);
980 printf(" --- dispatched calls ---\n");
981 ipc_print_call_list(&task->answerbox.dispatched_calls);
982 printf(" --- incoming answers ---\n");
983 ipc_print_call_list(&task->answerbox.answers);
984
985 irq_spinlock_unlock(&task->answerbox.lock, false);
986 irq_spinlock_unlock(&task->lock, true);
987
988 task_release(task);
989}
990
991/** @}
992 */
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