xref: /xnu-8796.141.3/osfmk/ipc/ipc_port.c (revision 1b191cb58250d0705d8a51287127505aa4bc0789)
1 /*
2  * Copyright (c) 2000-2019 Apple Inc. All rights reserved.
3  *
4  * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5  *
6  * This file contains Original Code and/or Modifications of Original Code
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8  * Version 2.0 (the 'License'). You may not use this file except in
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10  * may not be used to create, or enable the creation or redistribution of,
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15  * Please obtain a copy of the License at
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28 /*
29  * @OSF_FREE_COPYRIGHT@
30  */
31 /*
32  * Mach Operating System
33  * Copyright (c) 1991,1990,1989 Carnegie Mellon University
34  * All Rights Reserved.
35  *
36  * Permission to use, copy, modify and distribute this software and its
37  * documentation is hereby granted, provided that both the copyright
38  * notice and this permission notice appear in all copies of the
39  * software, derivative works or modified versions, and any portions
40  * thereof, and that both notices appear in supporting documentation.
41  *
42  * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
43  * CONDITION.  CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
44  * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
45  *
46  * Carnegie Mellon requests users of this software to return to
47  *
48  *  Software Distribution Coordinator  or  [email protected]
49  *  School of Computer Science
50  *  Carnegie Mellon University
51  *  Pittsburgh PA 15213-3890
52  *
53  * any improvements or extensions that they make and grant Carnegie Mellon
54  * the rights to redistribute these changes.
55  */
56 /*
57  * NOTICE: This file was modified by McAfee Research in 2004 to introduce
58  * support for mandatory and extensible security protections.  This notice
59  * is included in support of clause 2.2 (b) of the Apple Public License,
60  * Version 2.0.
61  */
62 /*
63  */
64 /*
65  *	File:	ipc/ipc_port.c
66  *	Author:	Rich Draves
67  *	Date:	1989
68  *
69  *	Functions to manipulate IPC ports.
70  */
71 
72 #include <mach_assert.h>
73 
74 #include <mach/port.h>
75 #include <mach/kern_return.h>
76 #include <kern/backtrace.h>
77 #include <kern/debug.h>
78 #include <kern/ipc_kobject.h>
79 #include <kern/kcdata.h>
80 #include <kern/misc_protos.h>
81 #include <kern/policy_internal.h>
82 #include <kern/thread.h>
83 #include <kern/waitq.h>
84 #include <kern/host_notify.h>
85 #include <ipc/ipc_entry.h>
86 #include <ipc/ipc_space.h>
87 #include <ipc/ipc_object.h>
88 #include <ipc/ipc_right.h>
89 #include <ipc/ipc_port.h>
90 #include <ipc/ipc_pset.h>
91 #include <ipc/ipc_kmsg.h>
92 #include <ipc/ipc_mqueue.h>
93 #include <ipc/ipc_notify.h>
94 #include <ipc/ipc_importance.h>
95 #include <machine/limits.h>
96 #include <kern/task.h>
97 #include <kern/turnstile.h>
98 #include <kern/machine.h>
99 
100 #include <security/mac_mach_internal.h>
101 #include <ipc/ipc_service_port.h>
102 
103 #include <string.h>
104 
105 typedef struct proc *proc_t;
106 extern boolean_t proc_is_simulated(const proc_t p);
107 extern struct proc *current_proc(void);
108 
109 static TUNABLE(bool, prioritize_launch, "prioritize_launch", true);
110 TUNABLE_WRITEABLE(int, ipc_portbt, "ipc_portbt", false);
111 
112 extern zone_t ipc_kobject_label_zone;
113 
114 LCK_SPIN_DECLARE_ATTR(ipc_port_multiple_lock_data, &ipc_lck_grp, &ipc_lck_attr);
115 ipc_port_timestamp_t ipc_port_timestamp_data;
116 
117 KALLOC_ARRAY_TYPE_DEFINE(ipc_port_request_table,
118     struct ipc_port_request, KT_DEFAULT);
119 
120 #if     MACH_ASSERT
121 static void ipc_port_init_debug(ipc_port_t, void *fp);
122 #endif  /* MACH_ASSERT */
123 
124 void __abortlike
__ipc_port_inactive_panic(ipc_port_t port)125 __ipc_port_inactive_panic(ipc_port_t port)
126 {
127 	panic("Using inactive port %p", port);
128 }
129 
130 static __abortlike void
__ipc_port_translate_receive_panic(ipc_space_t space,ipc_port_t port)131 __ipc_port_translate_receive_panic(ipc_space_t space, ipc_port_t port)
132 {
133 	panic("found receive right in space %p for port %p owned by space %p",
134 	    space, port, ip_get_receiver(port));
135 }
136 
137 __abortlike void
__ipc_right_delta_overflow_panic(ipc_port_t port,natural_t * field,int delta)138 __ipc_right_delta_overflow_panic(ipc_port_t port, natural_t *field, int delta)
139 {
140 	const char *what;
141 	if (field == &port->ip_srights) {
142 		what = "send right";
143 	} else {
144 		what = "send-once right";
145 	}
146 	panic("port %p %s count overflow (delta: %d)", port, what, delta);
147 }
148 
149 static void
150 ipc_port_send_turnstile_recompute_push_locked(
151 	ipc_port_t port);
152 
153 static thread_t
154 ipc_port_get_watchport_inheritor(
155 	ipc_port_t port);
156 
157 static kern_return_t
158 ipc_port_update_qos_n_iotier(
159 	ipc_port_t port,
160 	uint8_t    qos,
161 	uint8_t    iotier);
162 
163 void
ipc_port_release(ipc_port_t port)164 ipc_port_release(ipc_port_t port)
165 {
166 	ip_release(port);
167 }
168 
169 void
ipc_port_reference(ipc_port_t port)170 ipc_port_reference(ipc_port_t port)
171 {
172 	ip_validate(port);
173 	ip_reference(port);
174 }
175 
176 /*
177  *	Routine:	ipc_port_timestamp
178  *	Purpose:
179  *		Retrieve a timestamp value.
180  */
181 
182 ipc_port_timestamp_t
ipc_port_timestamp(void)183 ipc_port_timestamp(void)
184 {
185 	return OSIncrementAtomic(&ipc_port_timestamp_data);
186 }
187 
188 
189 /*
190  *	Routine:	ipc_port_translate_send
191  *	Purpose:
192  *		Look up a send right in a space.
193  *	Conditions:
194  *		Nothing locked before.  If successful, the object
195  *		is returned active and locked.  The caller doesn't get a ref.
196  *	Returns:
197  *		KERN_SUCCESS		Object returned locked.
198  *		KERN_INVALID_TASK	The space is dead.
199  *		KERN_INVALID_NAME	The name doesn't denote a right
200  *		KERN_INVALID_RIGHT	Name doesn't denote the correct right
201  */
202 kern_return_t
ipc_port_translate_send(ipc_space_t space,mach_port_name_t name,ipc_port_t * portp)203 ipc_port_translate_send(
204 	ipc_space_t                     space,
205 	mach_port_name_t                name,
206 	ipc_port_t                     *portp)
207 {
208 	ipc_port_t port = IP_NULL;
209 	ipc_object_t object;
210 	kern_return_t kr;
211 
212 	kr = ipc_object_translate(space, name, MACH_PORT_RIGHT_SEND, &object);
213 	if (kr == KERN_SUCCESS) {
214 		port = ip_object_to_port(object);
215 	}
216 	*portp = port;
217 	return kr;
218 }
219 
220 
221 /*
222  *	Routine:	ipc_port_translate_receive
223  *	Purpose:
224  *		Look up a receive right in a space.
225  *		Performs some minimal security checks against tampering.
226  *	Conditions:
227  *		Nothing locked before.  If successful, the object
228  *		is returned active and locked.  The caller doesn't get a ref.
229  *	Returns:
230  *		KERN_SUCCESS		Object returned locked.
231  *		KERN_INVALID_TASK	The space is dead.
232  *		KERN_INVALID_NAME	The name doesn't denote a right
233  *		KERN_INVALID_RIGHT	Name doesn't denote the correct right
234  */
235 kern_return_t
ipc_port_translate_receive(ipc_space_t space,mach_port_name_t name,ipc_port_t * portp)236 ipc_port_translate_receive(
237 	ipc_space_t                     space,
238 	mach_port_name_t                name,
239 	ipc_port_t                     *portp)
240 {
241 	ipc_port_t port = IP_NULL;
242 	ipc_object_t object;
243 	kern_return_t kr;
244 
245 	kr = ipc_object_translate(space, name, MACH_PORT_RIGHT_RECEIVE, &object);
246 	if (kr == KERN_SUCCESS) {
247 		/* object is locked */
248 		port = ip_object_to_port(object);
249 		if (!ip_in_space(port, space)) {
250 			__ipc_port_translate_receive_panic(space, port);
251 		}
252 	}
253 	*portp = port;
254 	return kr;
255 }
256 
257 
258 /*
259  *	Routine:	ipc_port_request_alloc
260  *	Purpose:
261  *		Try to allocate a request slot.
262  *		If successful, returns the request index.
263  *		Otherwise returns zero.
264  *	Conditions:
265  *		The port is locked and active.
266  *	Returns:
267  *		KERN_SUCCESS		A request index was found.
268  *		KERN_NO_SPACE		No index allocated.
269  */
270 
271 kern_return_t
ipc_port_request_alloc(ipc_port_t port,mach_port_name_t name,ipc_port_t soright,ipc_port_request_opts_t options,ipc_port_request_index_t * indexp)272 ipc_port_request_alloc(
273 	ipc_port_t                      port,
274 	mach_port_name_t                name,
275 	ipc_port_t                      soright,
276 	ipc_port_request_opts_t         options,
277 	ipc_port_request_index_t        *indexp)
278 {
279 	ipc_port_request_table_t table;
280 	ipc_port_request_index_t index;
281 	ipc_port_request_t ipr, base;
282 
283 	require_ip_active(port);
284 	assert(name != MACH_PORT_NULL);
285 	assert(soright != IP_NULL);
286 
287 	table = port->ip_requests;
288 	if (table == NULL) {
289 		return KERN_NO_SPACE;
290 	}
291 
292 	base  = ipc_port_request_table_base(table);
293 	index = base->ipr_next;
294 	if (index == 0) {
295 		return KERN_NO_SPACE;
296 	}
297 
298 	ipr = ipc_port_request_table_get(table, index);
299 	assert(ipr->ipr_soright == IP_NULL);
300 
301 	base->ipr_next = ipr->ipr_next;
302 	ipr->ipr_name = name;
303 	ipr->ipr_soright = IPR_SOR_MAKE(soright, options);
304 
305 	if (options == (IPR_SOR_SPARM_MASK | IPR_SOR_SPREQ_MASK) &&
306 	    port->ip_sprequests == 0) {
307 		port->ip_sprequests = 1;
308 	}
309 
310 	*indexp = index;
311 
312 	return KERN_SUCCESS;
313 }
314 
315 
316 /*
317  *	Routine:	ipc_port_request_hnotify_alloc
318  *	Purpose:
319  *		Try to allocate a request slot.
320  *		If successful, returns the request index.
321  *		Otherwise returns zero.
322  *	Conditions:
323  *		The port is locked and active.
324  *	Returns:
325  *		KERN_SUCCESS		A request index was found.
326  *		KERN_NO_SPACE		No index allocated.
327  */
328 
329 kern_return_t
ipc_port_request_hnotify_alloc(ipc_port_t port,struct host_notify_entry * hnotify,ipc_port_request_index_t * indexp)330 ipc_port_request_hnotify_alloc(
331 	ipc_port_t                      port,
332 	struct host_notify_entry       *hnotify,
333 	ipc_port_request_index_t       *indexp)
334 {
335 	ipc_port_request_table_t table;
336 	ipc_port_request_index_t index;
337 	ipc_port_request_t ipr, base;
338 
339 	require_ip_active(port);
340 
341 	table = port->ip_requests;
342 	if (table == NULL) {
343 		return KERN_NO_SPACE;
344 	}
345 
346 	base  = ipc_port_request_table_base(table);
347 	index = base->ipr_next;
348 	if (index == 0) {
349 		return KERN_NO_SPACE;
350 	}
351 
352 	ipr = ipc_port_request_table_get(table, index);
353 	assert(ipr->ipr_soright == IP_NULL);
354 
355 	base->ipr_next = ipr->ipr_next;
356 	ipr->ipr_name = IPR_HOST_NOTIFY;
357 	ipr->ipr_hnotify = hnotify;
358 
359 	*indexp = index;
360 
361 	return KERN_SUCCESS;
362 }
363 
364 /*
365  *	Routine:	ipc_port_request_grow
366  *	Purpose:
367  *		Grow a port's table of requests.
368  *	Conditions:
369  *		The port must be locked and active.
370  *		Nothing else locked; will allocate memory.
371  *		Upon return the port is unlocked.
372  *	Returns:
373  *		KERN_SUCCESS		Grew the table.
374  *		KERN_SUCCESS		Somebody else grew the table.
375  *		KERN_SUCCESS		The port died.
376  *		KERN_RESOURCE_SHORTAGE	Couldn't allocate new table.
377  *		KERN_NO_SPACE		Couldn't grow to desired size
378  */
379 
380 kern_return_t
ipc_port_request_grow(ipc_port_t port)381 ipc_port_request_grow(
382 	ipc_port_t              port)
383 {
384 	ipc_port_request_table_t otable, ntable;
385 	uint32_t osize, nsize;
386 	uint32_t ocount, ncount;
387 
388 	require_ip_active(port);
389 
390 	otable = port->ip_requests;
391 	if (otable) {
392 		osize = ipc_port_request_table_size(otable);
393 	} else {
394 		osize = 0;
395 	}
396 	nsize = ipc_port_request_table_next_size(2, osize, 16);
397 	if (nsize > CONFIG_IPC_TABLE_REQUEST_SIZE_MAX) {
398 		nsize = CONFIG_IPC_TABLE_REQUEST_SIZE_MAX;
399 	}
400 	if (nsize == osize) {
401 		return KERN_RESOURCE_SHORTAGE;
402 	}
403 
404 	ip_reference(port);
405 	ip_mq_unlock(port);
406 
407 	ntable = ipc_port_request_table_alloc_by_size(nsize, Z_WAITOK | Z_ZERO);
408 	if (ntable == NULL) {
409 		ip_release(port);
410 		return KERN_RESOURCE_SHORTAGE;
411 	}
412 
413 	ip_mq_lock(port);
414 
415 	/*
416 	 *	Check that port is still active and that nobody else
417 	 *	has slipped in and grown the table on us.  Note that
418 	 *	just checking if the current table pointer == otable
419 	 *	isn't sufficient; must check ipr_size.
420 	 */
421 
422 	ocount = ipc_port_request_table_size_to_count(osize);
423 	ncount = ipc_port_request_table_size_to_count(nsize);
424 
425 	if (ip_active(port) && port->ip_requests == otable) {
426 		ipc_port_request_index_t free, i;
427 
428 		/* copy old table to new table */
429 
430 		if (otable != NULL) {
431 			memcpy(ipc_port_request_table_base(ntable),
432 			    ipc_port_request_table_base(otable),
433 			    osize);
434 		} else {
435 			ocount = 1;
436 			free   = 0;
437 		}
438 
439 		/* add new elements to the new table's free list */
440 
441 		for (i = ocount; i < ncount; i++) {
442 			ipc_port_request_table_get_nocheck(ntable, i)->ipr_next = free;
443 			free = i;
444 		}
445 
446 		ipc_port_request_table_base(ntable)->ipr_next = free;
447 		port->ip_requests = ntable;
448 		ip_mq_unlock(port);
449 		ip_release(port);
450 
451 		if (otable != NULL) {
452 			ipc_port_request_table_free(&otable);
453 		}
454 	} else {
455 		ip_mq_unlock(port);
456 		ip_release(port);
457 		ipc_port_request_table_free(&ntable);
458 	}
459 
460 	return KERN_SUCCESS;
461 }
462 
463 /*
464  *	Routine:	ipc_port_request_sparm
465  *	Purpose:
466  *		Arm delayed send-possible request.
467  *	Conditions:
468  *		The port must be locked and active.
469  *
470  *		Returns TRUE if the request was armed
471  *		(or armed with importance in that version).
472  */
473 
474 boolean_t
ipc_port_request_sparm(ipc_port_t port,__assert_only mach_port_name_t name,ipc_port_request_index_t index,mach_msg_option_t option,mach_msg_priority_t priority)475 ipc_port_request_sparm(
476 	ipc_port_t                      port,
477 	__assert_only mach_port_name_t  name,
478 	ipc_port_request_index_t        index,
479 	mach_msg_option_t               option,
480 	mach_msg_priority_t             priority)
481 {
482 	if (index != IE_REQ_NONE) {
483 		ipc_port_request_table_t table;
484 		ipc_port_request_t ipr;
485 
486 		require_ip_active(port);
487 
488 		table = port->ip_requests;
489 		assert(table != NULL);
490 
491 		ipr = ipc_port_request_table_get(table, index);
492 		assert(ipr->ipr_name == name);
493 
494 		/* Is there a valid destination? */
495 		if (IPR_SOR_SPREQ(ipr->ipr_soright)) {
496 			ipr->ipr_soright = IPR_SOR_MAKE(ipr->ipr_soright, IPR_SOR_SPARM_MASK);
497 			port->ip_sprequests = 1;
498 
499 			if (option & MACH_SEND_OVERRIDE) {
500 				/* apply override to message queue */
501 				mach_msg_qos_t qos_ovr;
502 				if (mach_msg_priority_is_pthread_priority(priority)) {
503 					qos_ovr = _pthread_priority_thread_qos(priority);
504 				} else {
505 					qos_ovr = mach_msg_priority_overide_qos(priority);
506 				}
507 				if (qos_ovr) {
508 					ipc_mqueue_override_send_locked(&port->ip_messages, qos_ovr);
509 				}
510 			}
511 
512 #if IMPORTANCE_INHERITANCE
513 			if (((option & MACH_SEND_NOIMPORTANCE) == 0) &&
514 			    (port->ip_impdonation != 0) &&
515 			    (port->ip_spimportant == 0) &&
516 			    (((option & MACH_SEND_IMPORTANCE) != 0) ||
517 			    (task_is_importance_donor(current_task())))) {
518 				return TRUE;
519 			}
520 #else
521 			return TRUE;
522 #endif /* IMPORTANCE_INHERITANCE */
523 		}
524 	}
525 	return FALSE;
526 }
527 
528 /*
529  *	Routine:	ipc_port_request_type
530  *	Purpose:
531  *		Determine the type(s) of port requests enabled for a name.
532  *	Conditions:
533  *		The port must be locked or inactive (to avoid table growth).
534  *		The index must not be IE_REQ_NONE and for the name in question.
535  */
536 mach_port_type_t
ipc_port_request_type(ipc_port_t port,__assert_only mach_port_name_t name,ipc_port_request_index_t index)537 ipc_port_request_type(
538 	ipc_port_t                      port,
539 	__assert_only mach_port_name_t  name,
540 	ipc_port_request_index_t        index)
541 {
542 	ipc_port_request_table_t table;
543 	ipc_port_request_t ipr;
544 	mach_port_type_t type = 0;
545 
546 	table = port->ip_requests;
547 	assert(table != NULL);
548 
549 	assert(index != IE_REQ_NONE);
550 	ipr = ipc_port_request_table_get(table, index);
551 	assert(ipr->ipr_name == name);
552 
553 	if (IP_VALID(IPR_SOR_PORT(ipr->ipr_soright))) {
554 		type |= MACH_PORT_TYPE_DNREQUEST;
555 
556 		if (IPR_SOR_SPREQ(ipr->ipr_soright)) {
557 			type |= MACH_PORT_TYPE_SPREQUEST;
558 
559 			if (!IPR_SOR_SPARMED(ipr->ipr_soright)) {
560 				type |= MACH_PORT_TYPE_SPREQUEST_DELAYED;
561 			}
562 		}
563 	}
564 	return type;
565 }
566 
567 /*
568  *	Routine:	ipc_port_request_cancel
569  *	Purpose:
570  *		Cancel a dead-name/send-possible request and return the send-once right.
571  *	Conditions:
572  *		The port must be locked and active.
573  *		The index must not be IPR_REQ_NONE and must correspond with name.
574  */
575 
576 ipc_port_t
ipc_port_request_cancel(ipc_port_t port,__assert_only mach_port_name_t name,ipc_port_request_index_t index)577 ipc_port_request_cancel(
578 	ipc_port_t                      port,
579 	__assert_only mach_port_name_t  name,
580 	ipc_port_request_index_t        index)
581 {
582 	ipc_port_request_table_t table;
583 	ipc_port_request_t base, ipr;
584 	ipc_port_t request = IP_NULL;
585 
586 	require_ip_active(port);
587 	table = port->ip_requests;
588 	base  = ipc_port_request_table_base(table);
589 	assert(table != NULL);
590 
591 	assert(index != IE_REQ_NONE);
592 	ipr = ipc_port_request_table_get(table, index);
593 	assert(ipr->ipr_name == name);
594 	request = IPR_SOR_PORT(ipr->ipr_soright);
595 
596 	/* return ipr to the free list inside the table */
597 	ipr->ipr_next = base->ipr_next;
598 	ipr->ipr_soright = IP_NULL;
599 	base->ipr_next = index;
600 
601 	return request;
602 }
603 
604 
605 /*
606  *	Routine:	ipc_port_nsrequest
607  *	Purpose:
608  *		Make a no-senders request, returning the
609  *		previously registered send-once right.
610  *		Just cancels the previous request if notify is IP_NULL.
611  *	Conditions:
612  *		The port is locked and active.  It is unlocked.
613  *		Consumes a ref for notify (if non-null), and
614  *		returns previous with a ref (if non-null).
615  */
616 
617 void
ipc_port_nsrequest(ipc_port_t port,mach_port_mscount_t sync,ipc_port_t notify,ipc_port_t * previousp)618 ipc_port_nsrequest(
619 	ipc_port_t              port,
620 	mach_port_mscount_t     sync,
621 	ipc_port_t              notify,
622 	ipc_port_t              *previousp)
623 {
624 	ipc_port_t previous;
625 	mach_port_mscount_t mscount;
626 	require_ip_active(port);
627 
628 	assert(!ip_in_space(port, ipc_space_kernel));
629 	assert(port->ip_nsrequest != IP_KOBJECT_NSREQUEST_ARMED);
630 
631 	previous = port->ip_nsrequest;
632 	mscount = port->ip_mscount;
633 
634 	if ((port->ip_srights == 0) && (sync <= mscount) &&
635 	    (notify != IP_NULL)) {
636 		port->ip_nsrequest = IP_NULL;
637 		ip_mq_unlock(port);
638 		ipc_notify_no_senders(notify, mscount, /* kobject */ false);
639 	} else {
640 		port->ip_nsrequest = notify;
641 		ip_mq_unlock(port);
642 	}
643 
644 	*previousp = previous;
645 }
646 
647 
648 /*
649  *	Routine:	ipc_port_clear_receiver
650  *	Purpose:
651  *		Prepares a receive right for transmission/destruction,
652  *		optionally performs mqueue destruction (with port lock held)
653  *
654  *	Conditions:
655  *		The port is locked and active.
656  *	Returns:
657  *		If should_destroy is TRUE, then the return value indicates
658  *		whether the caller needs to reap kmsg structures that should
659  *		be destroyed (by calling ipc_kmsg_reap_delayed)
660  *
661  *              If should_destroy is FALSE, this always returns FALSE
662  */
663 
664 boolean_t
ipc_port_clear_receiver(ipc_port_t port,boolean_t should_destroy,waitq_link_list_t * free_l)665 ipc_port_clear_receiver(
666 	ipc_port_t          port,
667 	boolean_t           should_destroy,
668 	waitq_link_list_t  *free_l)
669 {
670 	ipc_mqueue_t    mqueue = &port->ip_messages;
671 	boolean_t       reap_messages = FALSE;
672 
673 	/*
674 	 * Pull ourselves out of any sets to which we belong.
675 	 * We hold the write space lock or the receive entry has
676 	 * been deleted, so even though this acquires and releases
677 	 * the port lock, we know we won't be added to any other sets.
678 	 */
679 	if (ip_in_pset(port)) {
680 		waitq_unlink_all_locked(&port->ip_waitq, NULL, free_l);
681 		assert(!ip_in_pset(port));
682 	}
683 
684 	/*
685 	 * Send anyone waiting on the port's queue directly away.
686 	 * Also clear the mscount, seqno, guard bits
687 	 */
688 	if (ip_in_a_space(port)) {
689 		ipc_mqueue_changed(ip_get_receiver(port), &port->ip_waitq);
690 	} else {
691 		ipc_mqueue_changed(NULL, &port->ip_waitq);
692 	}
693 	port->ip_mscount = 0;
694 	mqueue->imq_seqno = 0;
695 	port->ip_context = port->ip_guarded = port->ip_strict_guard = 0;
696 
697 	/*
698 	 * clear the immovable bit so the port can move back to anyone listening
699 	 * for the port destroy notification.
700 	 */
701 	port->ip_immovable_receive = 0;
702 
703 	if (should_destroy) {
704 		/*
705 		 * Mark the port and mqueue invalid, preventing further send/receive
706 		 * operations from succeeding. It's important for this to be
707 		 * done under the same lock hold as the ipc_mqueue_changed
708 		 * call to avoid additional threads blocking on an mqueue
709 		 * that's being destroyed.
710 		 *
711 		 * The port active bit needs to be guarded under mqueue lock for
712 		 * turnstiles
713 		 */
714 
715 		/* port transitions to INACTIVE state */
716 		io_bits_andnot(ip_to_object(port), IO_BITS_ACTIVE);
717 		port->ip_receiver_name = MACH_PORT_NULL;
718 		port->ip_timestamp = ipc_port_timestamp();
719 
720 		reap_messages = ipc_mqueue_destroy_locked(mqueue, free_l);
721 	} else {
722 		/* port transtions to IN-LIMBO state */
723 		port->ip_receiver_name = MACH_PORT_NULL;
724 		port->ip_destination = IP_NULL;
725 	}
726 
727 	return reap_messages;
728 }
729 
730 /*
731  *	Routine:	ipc_port_init
732  *	Purpose:
733  *		Initializes a newly-allocated port.
734  *
735  *		The memory is expected to be zero initialized (allocated with Z_ZERO).
736  */
737 
738 void
ipc_port_init(ipc_port_t port,ipc_space_t space,ipc_port_init_flags_t flags,mach_port_name_t name)739 ipc_port_init(
740 	ipc_port_t              port,
741 	ipc_space_t             space,
742 	ipc_port_init_flags_t   flags,
743 	mach_port_name_t        name)
744 {
745 	int policy = SYNC_POLICY_FIFO;
746 	task_t task = TASK_NULL;
747 
748 	/* the port has been 0 initialized when called */
749 
750 	if (flags & IPC_PORT_INIT_FILTER_MESSAGE) {
751 		io_bits_or(ip_to_object(port), IP_BIT_FILTER_MSG);
752 	}
753 	if (flags & IPC_PORT_INIT_LOCKED) {
754 		policy |= SYNC_POLICY_INIT_LOCKED;
755 	}
756 
757 	/* must be done first, many ip_* bits live inside the waitq */
758 	waitq_init(&port->ip_waitq, WQT_PORT, policy);
759 	if (flags & IPC_PORT_INIT_TG_BLOCK_TRACKING) {
760 		port->ip_tg_block_tracking = true;
761 	}
762 	if (flags & IPC_PORT_INIT_SPECIAL_REPLY) {
763 		port->ip_specialreply = true;
764 	}
765 	if ((flags & IPC_PORT_INIT_REPLY) || (flags & IPC_PORT_INIT_SPECIAL_REPLY)) {
766 		task = current_task_early();
767 
768 		/* Strict enforcement of reply port semantics are disabled for 3p - rdar://97441265. */
769 		if (task && task_get_platform_binary(task)) {
770 			port->ip_immovable_receive = true;
771 			ip_mark_reply_port(port);
772 		} else {
773 			ip_mark_provisional_reply_port(port);
774 		}
775 	}
776 	if (flags & IPC_PORT_ENFORCE_REPLY_PORT_SEMANTICS) {
777 		ip_enforce_reply_port_semantics(port);
778 	}
779 	if (flags & IPC_PORT_ENFORCE_STRICT_REPLY_PORT_SEMANTICS) {
780 		ip_enforce_strict_reply_port_semantics(port);
781 	}
782 	if (flags & IPC_PORT_INIT_PROVISIONAL_REPLY) {
783 		ip_mark_provisional_reply_port(port);
784 	}
785 
786 	port->ip_kernel_qos_override = THREAD_QOS_UNSPECIFIED;
787 	port->ip_kernel_iotier_override = THROTTLE_LEVEL_END;
788 
789 	ipc_mqueue_init(&port->ip_messages);
790 #if MACH_ASSERT
791 	ipc_port_init_debug(port, __builtin_frame_address(0));
792 #endif  /* MACH_ASSERT */
793 
794 	/* port transitions to IN-SPACE state */
795 	port->ip_receiver_name = name;
796 	port->ip_receiver = space;
797 
798 	if (flags & IPC_PORT_INIT_MAKE_SEND_RIGHT) {
799 		port->ip_srights = 1;
800 		port->ip_mscount = 1;
801 	}
802 }
803 
804 /*
805  *	Routine:	ipc_port_alloc
806  *	Purpose:
807  *		Allocate a port.
808  *	Conditions:
809  *		Nothing locked.  If successful, the port is returned
810  *		locked.  (The caller doesn't have a reference.)
811  *	Returns:
812  *		KERN_SUCCESS		The port is allocated.
813  *		KERN_INVALID_TASK	The space is dead.
814  *		KERN_NO_SPACE		No room for an entry in the space.
815  *		KERN_RESOURCE_SHORTAGE	Couldn't allocate memory.
816  */
817 
818 kern_return_t
ipc_port_alloc(ipc_space_t space,ipc_port_init_flags_t flags,mach_port_name_t * namep,ipc_port_t * portp)819 ipc_port_alloc(
820 	ipc_space_t             space,
821 	ipc_port_init_flags_t   flags,
822 	mach_port_name_t        *namep,
823 	ipc_port_t              *portp)
824 {
825 	ipc_port_t port;
826 	mach_port_name_t name;
827 	kern_return_t kr;
828 	mach_port_type_t type = MACH_PORT_TYPE_RECEIVE;
829 	mach_port_urefs_t urefs = 0;
830 
831 	if (flags & IPC_PORT_INIT_MAKE_SEND_RIGHT) {
832 		type |= MACH_PORT_TYPE_SEND;
833 		urefs = 1;
834 	}
835 	kr = ipc_object_alloc(space, IOT_PORT, type, urefs,
836 	    &name, (ipc_object_t *) &port);
837 	if (kr != KERN_SUCCESS) {
838 		return kr;
839 	}
840 
841 	/* space is locked */
842 	ipc_port_init(port, space, flags | IPC_PORT_INIT_LOCKED, name);
843 	/* port is locked */
844 #if MACH_ASSERT
845 	ipc_port_init_debug(port, __builtin_frame_address(0));
846 #endif  /* MACH_ASSERT */
847 
848 	/* unlock space after init */
849 	is_write_unlock(space);
850 
851 	*namep = name;
852 	*portp = port;
853 
854 	return KERN_SUCCESS;
855 }
856 
857 /*
858  *	Routine:	ipc_port_alloc_name
859  *	Purpose:
860  *		Allocate a port, with a specific name.
861  *	Conditions:
862  *		Nothing locked.  If successful, the port is returned
863  *		locked.  (The caller doesn't have a reference.)
864  *	Returns:
865  *		KERN_SUCCESS		The port is allocated.
866  *		KERN_INVALID_TASK	The space is dead.
867  *		KERN_NAME_EXISTS	The name already denotes a right.
868  *		KERN_RESOURCE_SHORTAGE	Couldn't allocate memory.
869  */
870 
871 kern_return_t
ipc_port_alloc_name(ipc_space_t space,ipc_port_init_flags_t flags,mach_port_name_t name,ipc_port_t * portp)872 ipc_port_alloc_name(
873 	ipc_space_t             space,
874 	ipc_port_init_flags_t   flags,
875 	mach_port_name_t        name,
876 	ipc_port_t              *portp)
877 {
878 	mach_port_type_t type = MACH_PORT_TYPE_RECEIVE;
879 	mach_port_urefs_t urefs = 0;
880 
881 	if (flags & IPC_PORT_INIT_MAKE_SEND_RIGHT) {
882 		type |= MACH_PORT_TYPE_SEND;
883 		urefs = 1;
884 	}
885 	flags |= IPC_PORT_INIT_LOCKED;
886 
887 	return ipc_object_alloc_name(space, IOT_PORT, type, urefs,
888 	           name, (ipc_object_t *)portp, ^(ipc_object_t object){
889 		ipc_port_init(ip_object_to_port(object), space, flags, name);
890 	});
891 }
892 
893 /*
894  *      Routine:	ipc_port_spnotify
895  *	Purpose:
896  *		Generate send-possible port notifications.
897  *	Conditions:
898  *		Nothing locked, reference held on port.
899  */
900 void
ipc_port_spnotify(ipc_port_t port)901 ipc_port_spnotify(
902 	ipc_port_t      port)
903 {
904 	ipc_port_request_index_t index = 0;
905 	ipc_table_elems_t size = 0;
906 
907 	/*
908 	 * If the port has no send-possible request
909 	 * armed, don't bother to lock the port.
910 	 */
911 	if (port->ip_sprequests == 0) {
912 		return;
913 	}
914 
915 	ip_mq_lock(port);
916 
917 #if IMPORTANCE_INHERITANCE
918 	if (port->ip_spimportant != 0) {
919 		port->ip_spimportant = 0;
920 		if (ipc_port_importance_delta(port, IPID_OPTION_NORMAL, -1) == TRUE) {
921 			ip_mq_lock(port);
922 		}
923 	}
924 #endif /* IMPORTANCE_INHERITANCE */
925 
926 	if (port->ip_sprequests == 0) {
927 		ip_mq_unlock(port);
928 		return;
929 	}
930 	port->ip_sprequests = 0;
931 
932 revalidate:
933 	if (ip_active(port)) {
934 		ipc_port_request_table_t requests;
935 
936 		/* table may change each time port unlocked (reload) */
937 		requests = port->ip_requests;
938 		assert(requests != NULL);
939 
940 		/*
941 		 * no need to go beyond table size when first
942 		 * we entered - those are future notifications.
943 		 */
944 		if (size == 0) {
945 			size = ipc_port_request_table_count(requests);
946 		}
947 
948 		/* no need to backtrack either */
949 		while (++index < size) {
950 			ipc_port_request_t ipr = ipc_port_request_table_get_nocheck(requests, index);
951 			mach_port_name_t name = ipr->ipr_name;
952 			ipc_port_t soright = IPR_SOR_PORT(ipr->ipr_soright);
953 			boolean_t armed = IPR_SOR_SPARMED(ipr->ipr_soright);
954 
955 			if (MACH_PORT_VALID(name) && armed && IP_VALID(soright)) {
956 				/* claim send-once right - slot still inuse */
957 				assert(name != IPR_HOST_NOTIFY);
958 				ipr->ipr_soright = IP_NULL;
959 				ip_mq_unlock(port);
960 
961 				ipc_notify_send_possible(soright, name);
962 
963 				ip_mq_lock(port);
964 				goto revalidate;
965 			}
966 		}
967 	}
968 	ip_mq_unlock(port);
969 	return;
970 }
971 
972 /*
973  *      Routine:	ipc_port_dnnotify
974  *	Purpose:
975  *		Generate dead name notifications for
976  *		all outstanding dead-name and send-
977  *		possible requests.
978  *	Conditions:
979  *		Nothing locked.
980  *		Port must be inactive.
981  *		Reference held on port.
982  */
983 void
ipc_port_dnnotify(ipc_port_t port)984 ipc_port_dnnotify(
985 	ipc_port_t      port)
986 {
987 	ipc_port_request_table_t requests = port->ip_requests;
988 
989 	assert(!ip_active(port));
990 	if (requests != NULL) {
991 		ipc_port_request_t ipr = ipc_port_request_table_base(requests);
992 
993 		while ((ipr = ipc_port_request_table_next_elem(requests, ipr))) {
994 			mach_port_name_t name = ipr->ipr_name;
995 			ipc_port_t soright;
996 
997 			switch (name) {
998 			case MACH_PORT_DEAD:
999 			case MACH_PORT_NULL:
1000 				break;
1001 			case IPR_HOST_NOTIFY:
1002 				host_notify_cancel(ipr->ipr_hnotify);
1003 				break;
1004 			default:
1005 				soright = IPR_SOR_PORT(ipr->ipr_soright);
1006 				if (IP_VALID(soright)) {
1007 					ipc_notify_dead_name(soright, name);
1008 				}
1009 				break;
1010 			}
1011 		}
1012 	}
1013 }
1014 
1015 /*
1016  *	Routine:	ipc_port_destroy
1017  *	Purpose:
1018  *		Destroys a port.  Cleans up queued messages.
1019  *
1020  *		If the port has a backup, it doesn't get destroyed,
1021  *		but is sent in a port-destroyed notification to the backup.
1022  *	Conditions:
1023  *		The port is locked and alive; nothing else locked.
1024  *		The caller has a reference, which is consumed.
1025  *		Afterwards, the port is unlocked and dead.
1026  */
1027 
1028 void
ipc_port_destroy(ipc_port_t port)1029 ipc_port_destroy(ipc_port_t port)
1030 {
1031 	bool special_reply = port->ip_specialreply;
1032 	bool service_port  = port->ip_service_port;
1033 	bool reap_msgs;
1034 
1035 	ipc_port_t pdrequest = IP_NULL;
1036 	struct task_watchport_elem *twe = NULL;
1037 	waitq_link_list_t free_l = { };
1038 
1039 #if IMPORTANCE_INHERITANCE
1040 	ipc_importance_task_t release_imp_task = IIT_NULL;
1041 	thread_t self = current_thread();
1042 	boolean_t top = (self->ith_assertions == 0);
1043 	natural_t assertcnt = 0;
1044 #endif /* IMPORTANCE_INHERITANCE */
1045 
1046 	require_ip_active(port);
1047 	/* port->ip_receiver_name is garbage */
1048 	/* port->ip_receiver/port->ip_destination is garbage */
1049 
1050 	/* clear any reply-port context */
1051 	port->ip_reply_context = 0;
1052 
1053 	/* must be done before we access ip_pdrequest */
1054 	twe = ipc_port_clear_watchport_elem_internal(port);
1055 	assert(!port->ip_has_watchport);
1056 
1057 	if (!special_reply) {
1058 		/* we assume the ref for pdrequest */
1059 		pdrequest = port->ip_pdrequest;
1060 		port->ip_pdrequest = IP_NULL;
1061 	} else if (port->ip_tempowner) {
1062 		panic("ipc_port_destroy: invalid state");
1063 	}
1064 
1065 #if IMPORTANCE_INHERITANCE
1066 	/* determine how many assertions to drop and from whom */
1067 	if (port->ip_tempowner != 0) {
1068 		assert(top);
1069 		release_imp_task = ip_get_imp_task(port);
1070 		if (IIT_NULL != release_imp_task) {
1071 			port->ip_imp_task = IIT_NULL;
1072 			assertcnt = port->ip_impcount;
1073 		}
1074 		/* Otherwise, nothing to drop */
1075 	} else {
1076 		assertcnt = port->ip_impcount;
1077 		if (pdrequest != IP_NULL) {
1078 			/* mark in limbo for the journey */
1079 			port->ip_tempowner = 1;
1080 		}
1081 	}
1082 
1083 	if (top) {
1084 		self->ith_assertions = assertcnt;
1085 	}
1086 #endif /* IMPORTANCE_INHERITANCE */
1087 
1088 	/*
1089 	 * If no port-destroyed notification is armed, calling
1090 	 * ipc_port_clear_receiver() will mark the port inactive
1091 	 * and will wakeup any threads which may be blocked receiving on it.
1092 	 */
1093 	reap_msgs = ipc_port_clear_receiver(port, pdrequest == IP_NULL, &free_l);
1094 	assert(!ip_in_pset(port));
1095 	assert(port->ip_mscount == 0);
1096 
1097 	/*
1098 	 * Handle port-destroyed notification
1099 	 */
1100 	if (pdrequest != IP_NULL) {
1101 		assert(reap_msgs == false);
1102 
1103 		if (service_port) {
1104 			assert(port->ip_splabel != NULL);
1105 			if (ipc_service_port_label_is_special_pdrequest((ipc_service_port_label_t)port->ip_splabel)) {
1106 				ipc_service_port_label_set_flag(port->ip_splabel, ISPL_FLAGS_SEND_PD_NOTIFICATION);
1107 			}
1108 		}
1109 
1110 		ipc_port_send_turnstile_recompute_push_locked(port);
1111 		/* port unlocked */
1112 
1113 		/* consumes our refs for port and pdrequest */
1114 		ipc_notify_port_destroyed(pdrequest, port);
1115 	} else {
1116 		ipc_service_port_label_t splabel = NULL;
1117 		ipc_notify_nsenders_t nsrequest;
1118 
1119 		nsrequest = ipc_notify_no_senders_prepare(port);
1120 
1121 		if (!ip_is_kolabeled(port)) {
1122 			splabel = port->ip_splabel;
1123 			port->ip_splabel = NULL;
1124 			port->ip_service_port = false;
1125 		}
1126 
1127 		ipc_port_send_turnstile_recompute_push_locked(port);
1128 		/* port unlocked */
1129 
1130 		/* unlink the kmsg from special reply port */
1131 		if (special_reply) {
1132 			ipc_port_adjust_special_reply_port(port,
1133 			    IPC_PORT_ADJUST_SR_ALLOW_SYNC_LINKAGE);
1134 		}
1135 
1136 		/* Deallocate the service/connection port label */
1137 		if (splabel) {
1138 			ipc_service_port_label_dealloc(splabel, service_port);
1139 			splabel = NULL;
1140 		}
1141 
1142 		if (reap_msgs) {
1143 			ipc_kmsg_reap_delayed();
1144 		}
1145 
1146 		if (nsrequest.ns_notify) {
1147 			/*
1148 			 * ipc_notify_no_senders_prepare will consume
1149 			 * the reference for kobjects.
1150 			 */
1151 			assert(!nsrequest.ns_is_kobject);
1152 			ip_mq_lock(nsrequest.ns_notify);
1153 			ipc_notify_send_once_and_unlock(nsrequest.ns_notify); /* consumes ref */
1154 		}
1155 
1156 		/* generate dead-name notifications */
1157 		ipc_port_dnnotify(port);
1158 
1159 		ipc_kobject_destroy(port);
1160 
1161 		ip_release(port); /* consume caller's ref */
1162 	}
1163 
1164 	if (twe) {
1165 		task_watchport_elem_deallocate(twe);
1166 		twe = NULL;
1167 	}
1168 
1169 	waitq_link_free_list(WQT_PORT_SET, &free_l);
1170 
1171 #if IMPORTANCE_INHERITANCE
1172 	if (release_imp_task != IIT_NULL) {
1173 		if (assertcnt > 0) {
1174 			assert(top);
1175 			self->ith_assertions = 0;
1176 			assert(ipc_importance_task_is_any_receiver_type(release_imp_task));
1177 			ipc_importance_task_drop_internal_assertion(release_imp_task, assertcnt);
1178 		}
1179 		ipc_importance_task_release(release_imp_task);
1180 	} else if (assertcnt > 0) {
1181 		if (top) {
1182 			self->ith_assertions = 0;
1183 			release_imp_task = current_task()->task_imp_base;
1184 			if (ipc_importance_task_is_any_receiver_type(release_imp_task)) {
1185 				ipc_importance_task_drop_internal_assertion(release_imp_task, assertcnt);
1186 			}
1187 		}
1188 	}
1189 #endif /* IMPORTANCE_INHERITANCE */
1190 }
1191 
1192 /*
1193  *	Routine:	ipc_port_destination_chain_lock
1194  *	Purpose:
1195  *		Search for the end of the chain (a port not in transit),
1196  *		acquiring locks along the way, and return it in `base`.
1197  *
1198  *		Returns true if a reference was taken on `base`
1199  *
1200  *	Conditions:
1201  *		No ports locked.
1202  *		ipc_port_multiple_lock held.
1203  */
1204 boolean_t
ipc_port_destination_chain_lock(ipc_port_t port,ipc_port_t * base)1205 ipc_port_destination_chain_lock(
1206 	ipc_port_t port,
1207 	ipc_port_t *base)
1208 {
1209 	for (;;) {
1210 		ip_mq_lock(port);
1211 
1212 		if (!ip_active(port)) {
1213 			/*
1214 			 * Active ports that are ip_mq_lock()ed cannot go away.
1215 			 *
1216 			 * But inactive ports at the end of walking
1217 			 * an ip_destination chain are only protected
1218 			 * from space termination cleanup while the entire
1219 			 * chain of ports leading to them is held.
1220 			 *
1221 			 * Callers of this code tend to unlock the chain
1222 			 * in the same order than this walk which doesn't
1223 			 * protect `base` properly when it's inactive.
1224 			 *
1225 			 * In that case, take a reference that the caller
1226 			 * is responsible for releasing.
1227 			 */
1228 			ip_reference(port);
1229 			*base = port;
1230 			return true;
1231 		}
1232 
1233 		/* port is active */
1234 		if (!ip_in_transit(port)) {
1235 			*base = port;
1236 			return false;
1237 		}
1238 
1239 		port = ip_get_destination(port);
1240 	}
1241 }
1242 
1243 
1244 /*
1245  *	Routine:	ipc_port_check_circularity
1246  *	Purpose:
1247  *		Check if queueing "port" in a message for "dest"
1248  *		would create a circular group of ports and messages.
1249  *
1250  *		If no circularity (FALSE returned), then "port"
1251  *		is changed from "in limbo" to "in transit".
1252  *
1253  *		That is, we want to set port->ip_destination == dest,
1254  *		but guaranteeing that this doesn't create a circle
1255  *		port->ip_destination->ip_destination->... == port
1256  *
1257  *	Conditions:
1258  *		No ports locked.  References held for "port" and "dest".
1259  */
1260 
1261 boolean_t
ipc_port_check_circularity(ipc_port_t port,ipc_port_t dest)1262 ipc_port_check_circularity(
1263 	ipc_port_t      port,
1264 	ipc_port_t      dest)
1265 {
1266 #if IMPORTANCE_INHERITANCE
1267 	/* adjust importance counts at the same time */
1268 	return ipc_importance_check_circularity(port, dest);
1269 #else
1270 	ipc_port_t base;
1271 	struct task_watchport_elem *watchport_elem = NULL;
1272 	bool took_base_ref = false;
1273 
1274 	assert(port != IP_NULL);
1275 	assert(dest != IP_NULL);
1276 
1277 	if (port == dest) {
1278 		return TRUE;
1279 	}
1280 	base = dest;
1281 
1282 	/* Check if destination needs a turnstile */
1283 	ipc_port_send_turnstile_prepare(dest);
1284 
1285 	/*
1286 	 *	First try a quick check that can run in parallel.
1287 	 *	No circularity if dest is not in transit.
1288 	 */
1289 	ip_mq_lock(port);
1290 	if (ip_mq_lock_try(dest)) {
1291 		if (!ip_in_transit(dest)) {
1292 			goto not_circular;
1293 		}
1294 
1295 		/* dest is in transit; further checking necessary */
1296 
1297 		ip_mq_unlock(dest);
1298 	}
1299 	ip_mq_unlock(port);
1300 
1301 	ipc_port_multiple_lock(); /* massive serialization */
1302 
1303 	/*
1304 	 *	Search for the end of the chain (a port not in transit),
1305 	 *	acquiring locks along the way.
1306 	 */
1307 
1308 	took_base_ref = ipc_port_destination_chain_lock(dest, &base);
1309 	/* all ports in chain from dest to base, inclusive, are locked */
1310 
1311 	if (port == base) {
1312 		/* circularity detected! */
1313 
1314 		ipc_port_multiple_unlock();
1315 
1316 		/* port (== base) is in limbo */
1317 		require_ip_active(port);
1318 		assert(ip_in_limbo(port));
1319 		assert(!took_base_ref);
1320 
1321 		base = dest;
1322 		while (base != IP_NULL) {
1323 			ipc_port_t next;
1324 
1325 			/* dest is in transit or in limbo */
1326 			require_ip_active(base);
1327 			assert(!ip_in_a_space(base));
1328 
1329 			next = ip_get_destination(base);
1330 			ip_mq_unlock(base);
1331 			base = next;
1332 		}
1333 
1334 		ipc_port_send_turnstile_complete(dest);
1335 		return TRUE;
1336 	}
1337 
1338 	/*
1339 	 *	The guarantee:  lock port while the entire chain is locked.
1340 	 *	Once port is locked, we can take a reference to dest,
1341 	 *	add port to the chain, and unlock everything.
1342 	 */
1343 
1344 	ip_mq_lock(port);
1345 	ipc_port_multiple_unlock();
1346 
1347 not_circular:
1348 	require_ip_active(port);
1349 	assert(ip_in_limbo(port));
1350 
1351 	/* Clear the watchport boost */
1352 	watchport_elem = ipc_port_clear_watchport_elem_internal(port);
1353 
1354 	/* Check if the port is being enqueued as a part of sync bootstrap checkin */
1355 	if (dest->ip_specialreply && dest->ip_sync_bootstrap_checkin) {
1356 		port->ip_sync_bootstrap_checkin = 1;
1357 	}
1358 
1359 	ip_reference(dest);
1360 
1361 	/* port transitions to IN-TRANSIT state */
1362 	assert(port->ip_receiver_name == MACH_PORT_NULL);
1363 	port->ip_destination = dest;
1364 
1365 	/* Setup linkage for source port if it has sync ipc push */
1366 	struct turnstile *send_turnstile = TURNSTILE_NULL;
1367 	if (port_send_turnstile(port)) {
1368 		send_turnstile = turnstile_prepare((uintptr_t)port,
1369 		    port_send_turnstile_address(port),
1370 		    TURNSTILE_NULL, TURNSTILE_SYNC_IPC);
1371 
1372 		/*
1373 		 * What ipc_port_adjust_port_locked would do,
1374 		 * but we need to also drop even more locks before
1375 		 * calling turnstile_update_inheritor_complete().
1376 		 */
1377 		ipc_port_adjust_sync_link_state_locked(port, PORT_SYNC_LINK_ANY, NULL);
1378 
1379 		turnstile_update_inheritor(send_turnstile, port_send_turnstile(dest),
1380 		    (TURNSTILE_INHERITOR_TURNSTILE | TURNSTILE_IMMEDIATE_UPDATE));
1381 
1382 		/* update complete and turnstile complete called after dropping all locks */
1383 	}
1384 	/* now unlock chain */
1385 
1386 	ip_mq_unlock(port);
1387 
1388 	for (;;) {
1389 		ipc_port_t next;
1390 
1391 		if (dest == base) {
1392 			break;
1393 		}
1394 
1395 		/* port is IN-TRANSIT */
1396 		require_ip_active(dest);
1397 		assert(ip_in_transit(dest));
1398 
1399 		next = ip_get_destination(dest);
1400 		ip_mq_unlock(dest);
1401 		dest = next;
1402 	}
1403 
1404 	/* base is not IN-TRANSIT */
1405 	assert(!ip_in_transit(base));
1406 
1407 	ip_mq_unlock(base);
1408 	if (took_base_ref) {
1409 		ip_release(base);
1410 	}
1411 
1412 	/* All locks dropped, call turnstile_update_inheritor_complete for source port's turnstile */
1413 	if (send_turnstile) {
1414 		turnstile_update_inheritor_complete(send_turnstile, TURNSTILE_INTERLOCK_NOT_HELD);
1415 
1416 		/* Take the mq lock to call turnstile complete */
1417 		ip_mq_lock(port);
1418 		turnstile_complete((uintptr_t)port, port_send_turnstile_address(port), NULL, TURNSTILE_SYNC_IPC);
1419 		send_turnstile = TURNSTILE_NULL;
1420 		ip_mq_unlock(port);
1421 		turnstile_cleanup();
1422 	}
1423 
1424 	if (watchport_elem) {
1425 		task_watchport_elem_deallocate(watchport_elem);
1426 	}
1427 
1428 	return FALSE;
1429 #endif /* !IMPORTANCE_INHERITANCE */
1430 }
1431 
1432 /*
1433  *	Routine:	ipc_port_watchport_elem
1434  *	Purpose:
1435  *		Get the port's watchport elem field
1436  *
1437  *	Conditions:
1438  *		port locked
1439  */
1440 static struct task_watchport_elem *
ipc_port_watchport_elem(ipc_port_t port)1441 ipc_port_watchport_elem(ipc_port_t port)
1442 {
1443 	if (port->ip_has_watchport) {
1444 		assert(!port->ip_specialreply);
1445 		return port->ip_twe;
1446 	}
1447 	return NULL;
1448 }
1449 
1450 /*
1451  *	Routine:	ipc_port_update_watchport_elem
1452  *	Purpose:
1453  *		Set the port's watchport elem field
1454  *
1455  *	Conditions:
1456  *		port locked and is not a special reply port.
1457  */
1458 static inline struct task_watchport_elem *
ipc_port_update_watchport_elem(ipc_port_t port,struct task_watchport_elem * we)1459 ipc_port_update_watchport_elem(ipc_port_t port, struct task_watchport_elem *we)
1460 {
1461 	struct task_watchport_elem *old_we;
1462 	ipc_port_t pdrequest;
1463 
1464 	assert(!port->ip_specialreply);
1465 
1466 	/*
1467 	 * Note: ip_pdrequest and ip_twe are unioned.
1468 	 *       and ip_has_watchport controls the union "type"
1469 	 */
1470 	if (port->ip_has_watchport) {
1471 		old_we = port->ip_twe;
1472 		pdrequest = old_we->twe_pdrequest;
1473 		old_we->twe_pdrequest = IP_NULL;
1474 	} else {
1475 		old_we = NULL;
1476 		pdrequest = port->ip_pdrequest;
1477 	}
1478 
1479 	if (we) {
1480 		port->ip_has_watchport = true;
1481 		we->twe_pdrequest = pdrequest;
1482 		port->ip_twe = we;
1483 	} else {
1484 		port->ip_has_watchport = false;
1485 		port->ip_pdrequest = pdrequest;
1486 	}
1487 
1488 	return old_we;
1489 }
1490 
1491 /*
1492  *	Routine:	ipc_special_reply_stash_pid_locked
1493  *	Purpose:
1494  *		Set the pid of process that copied out send once right to special reply port.
1495  *
1496  *	Conditions:
1497  *		port locked
1498  */
1499 static inline void
ipc_special_reply_stash_pid_locked(ipc_port_t port,int pid)1500 ipc_special_reply_stash_pid_locked(ipc_port_t port, int pid)
1501 {
1502 	assert(port->ip_specialreply);
1503 	port->ip_pid = pid;
1504 }
1505 
1506 /*
1507  *	Routine:	ipc_special_reply_get_pid_locked
1508  *	Purpose:
1509  *		Get the pid of process that copied out send once right to special reply port.
1510  *
1511  *	Conditions:
1512  *		port locked
1513  */
1514 int
ipc_special_reply_get_pid_locked(ipc_port_t port)1515 ipc_special_reply_get_pid_locked(ipc_port_t port)
1516 {
1517 	assert(port->ip_specialreply);
1518 	return port->ip_pid;
1519 }
1520 
1521 /*
1522  * Update the recv turnstile inheritor for a port.
1523  *
1524  * Sync IPC through the port receive turnstile only happens for the special
1525  * reply port case. It has three sub-cases:
1526  *
1527  * 1. a send-once right is in transit, and pushes on the send turnstile of its
1528  *    destination mqueue.
1529  *
1530  * 2. a send-once right has been stashed on a knote it was copied out "through",
1531  *    as the first such copied out port.
1532  *
1533  * 3. a send-once right has been stashed on a knote it was copied out "through",
1534  *    as the second or more copied out port.
1535  */
1536 void
ipc_port_recv_update_inheritor(ipc_port_t port,struct turnstile * rcv_turnstile,turnstile_update_flags_t flags)1537 ipc_port_recv_update_inheritor(
1538 	ipc_port_t port,
1539 	struct turnstile *rcv_turnstile,
1540 	turnstile_update_flags_t flags)
1541 {
1542 	struct turnstile *inheritor = TURNSTILE_NULL;
1543 	struct knote *kn;
1544 
1545 	if (ip_active(port) && port->ip_specialreply) {
1546 		ip_mq_lock_held(port);
1547 
1548 		switch (port->ip_sync_link_state) {
1549 		case PORT_SYNC_LINK_PORT:
1550 			if (port->ip_sync_inheritor_port != NULL) {
1551 				inheritor = port_send_turnstile(port->ip_sync_inheritor_port);
1552 			}
1553 			break;
1554 
1555 		case PORT_SYNC_LINK_WORKLOOP_KNOTE:
1556 			kn = port->ip_sync_inheritor_knote;
1557 			inheritor = filt_ipc_kqueue_turnstile(kn);
1558 			break;
1559 
1560 		case PORT_SYNC_LINK_WORKLOOP_STASH:
1561 			inheritor = port->ip_sync_inheritor_ts;
1562 			break;
1563 		}
1564 	}
1565 
1566 	turnstile_update_inheritor(rcv_turnstile, inheritor,
1567 	    flags | TURNSTILE_INHERITOR_TURNSTILE);
1568 }
1569 
1570 /*
1571  * Update the send turnstile inheritor for a port.
1572  *
1573  * Sync IPC through the port send turnstile has 7 possible reasons to be linked:
1574  *
1575  * 1. a special reply port is part of sync ipc for bootstrap checkin and needs
1576  *    to push on thread doing the sync ipc.
1577  *
1578  * 2. a receive right is in transit, and pushes on the send turnstile of its
1579  *    destination mqueue.
1580  *
1581  * 3. port was passed as an exec watchport and port is pushing on main thread
1582  *    of the task.
1583  *
1584  * 4. a receive right has been stashed on a knote it was copied out "through",
1585  *    as the first such copied out port (same as PORT_SYNC_LINK_WORKLOOP_KNOTE
1586  *    for the special reply port)
1587  *
1588  * 5. a receive right has been stashed on a knote it was copied out "through",
1589  *    as the second or more copied out port (same as
1590  *    PORT_SYNC_LINK_WORKLOOP_STASH for the special reply port)
1591  *
1592  * 6. a receive right has been copied out as a part of sync bootstrap checkin
1593  *    and needs to push on thread doing the sync bootstrap checkin.
1594  *
1595  * 7. the receive right is monitored by a knote, and pushes on any that is
1596  *    registered on a workloop. filt_machport makes sure that if such a knote
1597  *    exists, it is kept as the first item in the knote list, so we never need
1598  *    to walk.
1599  */
1600 void
ipc_port_send_update_inheritor(ipc_port_t port,struct turnstile * send_turnstile,turnstile_update_flags_t flags)1601 ipc_port_send_update_inheritor(
1602 	ipc_port_t port,
1603 	struct turnstile *send_turnstile,
1604 	turnstile_update_flags_t flags)
1605 {
1606 	ipc_mqueue_t mqueue = &port->ip_messages;
1607 	turnstile_inheritor_t inheritor = TURNSTILE_INHERITOR_NULL;
1608 	struct knote *kn;
1609 	turnstile_update_flags_t inheritor_flags = TURNSTILE_INHERITOR_TURNSTILE;
1610 
1611 	ip_mq_lock_held(port);
1612 
1613 	if (!ip_active(port)) {
1614 		/* this port is no longer active, it should not push anywhere */
1615 	} else if (port->ip_specialreply) {
1616 		/* Case 1. */
1617 		if (port->ip_sync_bootstrap_checkin && prioritize_launch) {
1618 			inheritor = port->ip_messages.imq_srp_owner_thread;
1619 			inheritor_flags = TURNSTILE_INHERITOR_THREAD;
1620 		}
1621 	} else if (ip_in_transit(port)) {
1622 		/* Case 2. */
1623 		inheritor = port_send_turnstile(ip_get_destination(port));
1624 	} else if (port->ip_has_watchport) {
1625 		/* Case 3. */
1626 		if (prioritize_launch) {
1627 			assert(port->ip_sync_link_state == PORT_SYNC_LINK_ANY);
1628 			inheritor = ipc_port_get_watchport_inheritor(port);
1629 			inheritor_flags = TURNSTILE_INHERITOR_THREAD;
1630 		}
1631 	} else if (port->ip_sync_link_state == PORT_SYNC_LINK_WORKLOOP_KNOTE) {
1632 		/* Case 4. */
1633 		inheritor = filt_ipc_kqueue_turnstile(mqueue->imq_inheritor_knote);
1634 	} else if (port->ip_sync_link_state == PORT_SYNC_LINK_WORKLOOP_STASH) {
1635 		/* Case 5. */
1636 		inheritor = mqueue->imq_inheritor_turnstile;
1637 	} else if (port->ip_sync_link_state == PORT_SYNC_LINK_RCV_THREAD) {
1638 		/* Case 6. */
1639 		if (prioritize_launch) {
1640 			inheritor = port->ip_messages.imq_inheritor_thread_ref;
1641 			inheritor_flags = TURNSTILE_INHERITOR_THREAD;
1642 		}
1643 	} else if ((kn = SLIST_FIRST(&port->ip_klist))) {
1644 		/* Case 7. Push on a workloop that is interested */
1645 		if (filt_machport_kqueue_has_turnstile(kn)) {
1646 			assert(port->ip_sync_link_state == PORT_SYNC_LINK_ANY);
1647 			inheritor = filt_ipc_kqueue_turnstile(kn);
1648 		}
1649 	}
1650 
1651 	turnstile_update_inheritor(send_turnstile, inheritor,
1652 	    flags | inheritor_flags);
1653 }
1654 
1655 /*
1656  *	Routine:	ipc_port_send_turnstile_prepare
1657  *	Purpose:
1658  *		Get a reference on port's send turnstile, if
1659  *		port does not have a send turnstile then allocate one.
1660  *
1661  *	Conditions:
1662  *		Nothing is locked.
1663  */
1664 void
ipc_port_send_turnstile_prepare(ipc_port_t port)1665 ipc_port_send_turnstile_prepare(ipc_port_t port)
1666 {
1667 	struct turnstile *turnstile = TURNSTILE_NULL;
1668 	struct turnstile *send_turnstile = TURNSTILE_NULL;
1669 
1670 retry_alloc:
1671 	ip_mq_lock(port);
1672 
1673 	if (port_send_turnstile(port) == NULL ||
1674 	    port_send_turnstile(port)->ts_prim_count == 0) {
1675 		if (turnstile == TURNSTILE_NULL) {
1676 			ip_mq_unlock(port);
1677 			turnstile = turnstile_alloc();
1678 			goto retry_alloc;
1679 		}
1680 
1681 		send_turnstile = turnstile_prepare((uintptr_t)port,
1682 		    port_send_turnstile_address(port),
1683 		    turnstile, TURNSTILE_SYNC_IPC);
1684 		turnstile = TURNSTILE_NULL;
1685 
1686 		ipc_port_send_update_inheritor(port, send_turnstile,
1687 		    TURNSTILE_IMMEDIATE_UPDATE);
1688 
1689 		/* turnstile complete will be called in ipc_port_send_turnstile_complete */
1690 	}
1691 
1692 	/* Increment turnstile counter */
1693 	port_send_turnstile(port)->ts_prim_count++;
1694 	ip_mq_unlock(port);
1695 
1696 	if (send_turnstile) {
1697 		turnstile_update_inheritor_complete(send_turnstile,
1698 		    TURNSTILE_INTERLOCK_NOT_HELD);
1699 	}
1700 	if (turnstile != TURNSTILE_NULL) {
1701 		turnstile_deallocate(turnstile);
1702 	}
1703 }
1704 
1705 
1706 /*
1707  *	Routine:	ipc_port_send_turnstile_complete
1708  *	Purpose:
1709  *		Drop a ref on the port's send turnstile, if the
1710  *		ref becomes zero, deallocate the turnstile.
1711  *
1712  *	Conditions:
1713  *		The space might be locked, use safe deallocate.
1714  */
1715 void
ipc_port_send_turnstile_complete(ipc_port_t port)1716 ipc_port_send_turnstile_complete(ipc_port_t port)
1717 {
1718 	struct turnstile *turnstile = TURNSTILE_NULL;
1719 
1720 	/* Drop turnstile count on dest port */
1721 	ip_mq_lock(port);
1722 
1723 	port_send_turnstile(port)->ts_prim_count--;
1724 	if (port_send_turnstile(port)->ts_prim_count == 0) {
1725 		turnstile_complete((uintptr_t)port, port_send_turnstile_address(port),
1726 		    &turnstile, TURNSTILE_SYNC_IPC);
1727 		assert(turnstile != TURNSTILE_NULL);
1728 	}
1729 	ip_mq_unlock(port);
1730 	turnstile_cleanup();
1731 
1732 	if (turnstile != TURNSTILE_NULL) {
1733 		turnstile_deallocate_safe(turnstile);
1734 		turnstile = TURNSTILE_NULL;
1735 	}
1736 }
1737 
1738 /*
1739  *	Routine:	ipc_port_rcv_turnstile
1740  *	Purpose:
1741  *		Get the port's receive turnstile
1742  *
1743  *	Conditions:
1744  *		mqueue locked or thread waiting on turnstile is locked.
1745  */
1746 static struct turnstile *
ipc_port_rcv_turnstile(ipc_port_t port)1747 ipc_port_rcv_turnstile(ipc_port_t port)
1748 {
1749 	return *port_rcv_turnstile_address(port);
1750 }
1751 
1752 
1753 /*
1754  *	Routine:	ipc_port_link_special_reply_port
1755  *	Purpose:
1756  *		Link the special reply port with the destination port.
1757  *              Allocates turnstile to dest port.
1758  *
1759  *	Conditions:
1760  *		Nothing is locked.
1761  */
1762 void
ipc_port_link_special_reply_port(ipc_port_t special_reply_port,ipc_port_t dest_port,boolean_t sync_bootstrap_checkin)1763 ipc_port_link_special_reply_port(
1764 	ipc_port_t special_reply_port,
1765 	ipc_port_t dest_port,
1766 	boolean_t sync_bootstrap_checkin)
1767 {
1768 	boolean_t drop_turnstile_ref = FALSE;
1769 	boolean_t special_reply = FALSE;
1770 
1771 	/* Check if dest_port needs a turnstile */
1772 	ipc_port_send_turnstile_prepare(dest_port);
1773 
1774 	/* Lock the special reply port and establish the linkage */
1775 	ip_mq_lock(special_reply_port);
1776 
1777 	special_reply = special_reply_port->ip_specialreply;
1778 
1779 	if (sync_bootstrap_checkin && special_reply) {
1780 		special_reply_port->ip_sync_bootstrap_checkin = 1;
1781 	}
1782 
1783 	/* Check if we need to drop the acquired turnstile ref on dest port */
1784 	if (!special_reply ||
1785 	    special_reply_port->ip_sync_link_state != PORT_SYNC_LINK_ANY ||
1786 	    special_reply_port->ip_sync_inheritor_port != IPC_PORT_NULL) {
1787 		drop_turnstile_ref = TRUE;
1788 	} else {
1789 		/* take a reference on dest_port */
1790 		ip_reference(dest_port);
1791 		special_reply_port->ip_sync_inheritor_port = dest_port;
1792 		special_reply_port->ip_sync_link_state = PORT_SYNC_LINK_PORT;
1793 	}
1794 
1795 	ip_mq_unlock(special_reply_port);
1796 
1797 	if (special_reply) {
1798 		/*
1799 		 * For special reply ports, if the destination port is
1800 		 * marked with the thread group blocked tracking flag,
1801 		 * callout to the performance controller.
1802 		 */
1803 		ipc_port_thread_group_blocked(dest_port);
1804 	}
1805 
1806 	if (drop_turnstile_ref) {
1807 		ipc_port_send_turnstile_complete(dest_port);
1808 	}
1809 
1810 	return;
1811 }
1812 
1813 /*
1814  *	Routine:	ipc_port_thread_group_blocked
1815  *	Purpose:
1816  *		Call thread_group_blocked callout if the port
1817  *	        has ip_tg_block_tracking bit set and the thread
1818  *	        has not made this callout already.
1819  *
1820  *	Conditions:
1821  *		Nothing is locked.
1822  */
1823 void
ipc_port_thread_group_blocked(ipc_port_t port __unused)1824 ipc_port_thread_group_blocked(ipc_port_t port __unused)
1825 {
1826 #if CONFIG_THREAD_GROUPS
1827 	bool port_tg_block_tracking = false;
1828 	thread_t self = current_thread();
1829 
1830 	if (self->thread_group == NULL ||
1831 	    (self->options & TH_OPT_IPC_TG_BLOCKED)) {
1832 		return;
1833 	}
1834 
1835 	port_tg_block_tracking = port->ip_tg_block_tracking;
1836 	if (!port_tg_block_tracking) {
1837 		return;
1838 	}
1839 
1840 	machine_thread_group_blocked(self->thread_group, NULL,
1841 	    PERFCONTROL_CALLOUT_BLOCKING_TG_RENDER_SERVER, self);
1842 
1843 	self->options |= TH_OPT_IPC_TG_BLOCKED;
1844 #endif
1845 }
1846 
1847 /*
1848  *	Routine:	ipc_port_thread_group_unblocked
1849  *	Purpose:
1850  *		Call thread_group_unblocked callout if the
1851  *		thread had previously made a thread_group_blocked
1852  *		callout before (indicated by TH_OPT_IPC_TG_BLOCKED
1853  *		flag on the thread).
1854  *
1855  *	Conditions:
1856  *		Nothing is locked.
1857  */
1858 void
ipc_port_thread_group_unblocked(void)1859 ipc_port_thread_group_unblocked(void)
1860 {
1861 #if CONFIG_THREAD_GROUPS
1862 	thread_t self = current_thread();
1863 
1864 	if (!(self->options & TH_OPT_IPC_TG_BLOCKED)) {
1865 		return;
1866 	}
1867 
1868 	machine_thread_group_unblocked(self->thread_group, NULL,
1869 	    PERFCONTROL_CALLOUT_BLOCKING_TG_RENDER_SERVER, self);
1870 
1871 	self->options &= ~TH_OPT_IPC_TG_BLOCKED;
1872 #endif
1873 }
1874 
1875 #if DEVELOPMENT || DEBUG
1876 inline void
ipc_special_reply_port_bits_reset(ipc_port_t special_reply_port)1877 ipc_special_reply_port_bits_reset(ipc_port_t special_reply_port)
1878 {
1879 	special_reply_port->ip_srp_lost_link = 0;
1880 	special_reply_port->ip_srp_msg_sent = 0;
1881 }
1882 
1883 static inline void
ipc_special_reply_port_msg_sent_reset(ipc_port_t special_reply_port)1884 ipc_special_reply_port_msg_sent_reset(ipc_port_t special_reply_port)
1885 {
1886 	if (special_reply_port->ip_specialreply == 1) {
1887 		special_reply_port->ip_srp_msg_sent = 0;
1888 	}
1889 }
1890 
1891 inline void
ipc_special_reply_port_msg_sent(ipc_port_t special_reply_port)1892 ipc_special_reply_port_msg_sent(ipc_port_t special_reply_port)
1893 {
1894 	if (special_reply_port->ip_specialreply == 1) {
1895 		special_reply_port->ip_srp_msg_sent = 1;
1896 	}
1897 }
1898 
1899 static inline void
ipc_special_reply_port_lost_link(ipc_port_t special_reply_port)1900 ipc_special_reply_port_lost_link(ipc_port_t special_reply_port)
1901 {
1902 	if (special_reply_port->ip_specialreply == 1 && special_reply_port->ip_srp_msg_sent == 0) {
1903 		special_reply_port->ip_srp_lost_link = 1;
1904 	}
1905 }
1906 
1907 #else /* DEVELOPMENT || DEBUG */
1908 inline void
ipc_special_reply_port_bits_reset(__unused ipc_port_t special_reply_port)1909 ipc_special_reply_port_bits_reset(__unused ipc_port_t special_reply_port)
1910 {
1911 	return;
1912 }
1913 
1914 static inline void
ipc_special_reply_port_msg_sent_reset(__unused ipc_port_t special_reply_port)1915 ipc_special_reply_port_msg_sent_reset(__unused ipc_port_t special_reply_port)
1916 {
1917 	return;
1918 }
1919 
1920 inline void
ipc_special_reply_port_msg_sent(__unused ipc_port_t special_reply_port)1921 ipc_special_reply_port_msg_sent(__unused ipc_port_t special_reply_port)
1922 {
1923 	return;
1924 }
1925 
1926 static inline void
ipc_special_reply_port_lost_link(__unused ipc_port_t special_reply_port)1927 ipc_special_reply_port_lost_link(__unused ipc_port_t special_reply_port)
1928 {
1929 	return;
1930 }
1931 #endif /* DEVELOPMENT || DEBUG */
1932 
1933 /*
1934  *	Routine:	ipc_port_adjust_special_reply_port_locked
1935  *	Purpose:
1936  *		If the special port has a turnstile, update its inheritor.
1937  *	Condition:
1938  *		Special reply port locked on entry.
1939  *		Special reply port unlocked on return.
1940  *		The passed in port is a special reply port.
1941  *	Returns:
1942  *		None.
1943  */
1944 void
ipc_port_adjust_special_reply_port_locked(ipc_port_t special_reply_port,struct knote * kn,uint8_t flags,boolean_t get_turnstile)1945 ipc_port_adjust_special_reply_port_locked(
1946 	ipc_port_t special_reply_port,
1947 	struct knote *kn,
1948 	uint8_t flags,
1949 	boolean_t get_turnstile)
1950 {
1951 	ipc_port_t dest_port = IPC_PORT_NULL;
1952 	int sync_link_state = PORT_SYNC_LINK_NO_LINKAGE;
1953 	turnstile_inheritor_t inheritor = TURNSTILE_INHERITOR_NULL;
1954 	struct turnstile *ts = TURNSTILE_NULL;
1955 	struct turnstile *port_stashed_turnstile = TURNSTILE_NULL;
1956 
1957 	ip_mq_lock_held(special_reply_port); // ip_sync_link_state is touched
1958 
1959 	if (!special_reply_port->ip_specialreply) {
1960 		// only mach_msg_receive_results_complete() calls this with any port
1961 		assert(get_turnstile);
1962 		goto not_special;
1963 	}
1964 
1965 	if (flags & IPC_PORT_ADJUST_SR_RECEIVED_MSG) {
1966 		ipc_special_reply_port_msg_sent_reset(special_reply_port);
1967 	}
1968 
1969 	if (flags & IPC_PORT_ADJUST_UNLINK_THREAD) {
1970 		special_reply_port->ip_messages.imq_srp_owner_thread = NULL;
1971 	}
1972 
1973 	if (flags & IPC_PORT_ADJUST_RESET_BOOSTRAP_CHECKIN) {
1974 		special_reply_port->ip_sync_bootstrap_checkin = 0;
1975 	}
1976 
1977 	/* Check if the special reply port is marked non-special */
1978 	if (special_reply_port->ip_sync_link_state == PORT_SYNC_LINK_ANY) {
1979 not_special:
1980 		if (get_turnstile) {
1981 			turnstile_complete((uintptr_t)special_reply_port,
1982 			    port_rcv_turnstile_address(special_reply_port), NULL, TURNSTILE_SYNC_IPC);
1983 		}
1984 		ip_mq_unlock(special_reply_port);
1985 		if (get_turnstile) {
1986 			turnstile_cleanup();
1987 		}
1988 		return;
1989 	}
1990 
1991 	if (flags & IPC_PORT_ADJUST_SR_LINK_WORKLOOP) {
1992 		if (ITH_KNOTE_VALID(kn, MACH_MSG_TYPE_PORT_SEND_ONCE)) {
1993 			inheritor = filt_machport_stash_port(kn, special_reply_port,
1994 			    &sync_link_state);
1995 		}
1996 	} else if (flags & IPC_PORT_ADJUST_SR_ALLOW_SYNC_LINKAGE) {
1997 		sync_link_state = PORT_SYNC_LINK_ANY;
1998 	}
1999 
2000 	/* Check if need to break linkage */
2001 	if (!get_turnstile && sync_link_state == PORT_SYNC_LINK_NO_LINKAGE &&
2002 	    special_reply_port->ip_sync_link_state == PORT_SYNC_LINK_NO_LINKAGE) {
2003 		ip_mq_unlock(special_reply_port);
2004 		return;
2005 	}
2006 
2007 	switch (special_reply_port->ip_sync_link_state) {
2008 	case PORT_SYNC_LINK_PORT:
2009 		dest_port = special_reply_port->ip_sync_inheritor_port;
2010 		special_reply_port->ip_sync_inheritor_port = IPC_PORT_NULL;
2011 		break;
2012 	case PORT_SYNC_LINK_WORKLOOP_KNOTE:
2013 		special_reply_port->ip_sync_inheritor_knote = NULL;
2014 		break;
2015 	case PORT_SYNC_LINK_WORKLOOP_STASH:
2016 		port_stashed_turnstile = special_reply_port->ip_sync_inheritor_ts;
2017 		special_reply_port->ip_sync_inheritor_ts = NULL;
2018 		break;
2019 	}
2020 
2021 	/*
2022 	 * Stash (or unstash) the server's PID in the ip_sorights field of the
2023 	 * special reply port, so that stackshot can later retrieve who the client
2024 	 * is blocked on.
2025 	 */
2026 	if (special_reply_port->ip_sync_link_state == PORT_SYNC_LINK_PORT &&
2027 	    sync_link_state == PORT_SYNC_LINK_NO_LINKAGE) {
2028 		ipc_special_reply_stash_pid_locked(special_reply_port, pid_from_task(current_task()));
2029 	} else if (special_reply_port->ip_sync_link_state == PORT_SYNC_LINK_NO_LINKAGE &&
2030 	    sync_link_state == PORT_SYNC_LINK_ANY) {
2031 		/* If we are resetting the special reply port, remove the stashed pid. */
2032 		ipc_special_reply_stash_pid_locked(special_reply_port, 0);
2033 	}
2034 
2035 	special_reply_port->ip_sync_link_state = sync_link_state;
2036 
2037 	switch (sync_link_state) {
2038 	case PORT_SYNC_LINK_WORKLOOP_KNOTE:
2039 		special_reply_port->ip_sync_inheritor_knote = kn;
2040 		break;
2041 	case PORT_SYNC_LINK_WORKLOOP_STASH:
2042 		turnstile_reference(inheritor);
2043 		special_reply_port->ip_sync_inheritor_ts = inheritor;
2044 		break;
2045 	case PORT_SYNC_LINK_NO_LINKAGE:
2046 		if (flags & IPC_PORT_ADJUST_SR_ENABLE_EVENT) {
2047 			ipc_special_reply_port_lost_link(special_reply_port);
2048 		}
2049 		break;
2050 	}
2051 
2052 	/* Get thread's turnstile donated to special reply port */
2053 	if (get_turnstile) {
2054 		turnstile_complete((uintptr_t)special_reply_port,
2055 		    port_rcv_turnstile_address(special_reply_port), NULL, TURNSTILE_SYNC_IPC);
2056 	} else {
2057 		ts = ipc_port_rcv_turnstile(special_reply_port);
2058 		if (ts) {
2059 			turnstile_reference(ts);
2060 			ipc_port_recv_update_inheritor(special_reply_port, ts,
2061 			    TURNSTILE_IMMEDIATE_UPDATE);
2062 		}
2063 	}
2064 
2065 	ip_mq_unlock(special_reply_port);
2066 
2067 	if (get_turnstile) {
2068 		turnstile_cleanup();
2069 	} else if (ts) {
2070 		/* Call turnstile cleanup after dropping the interlock */
2071 		turnstile_update_inheritor_complete(ts, TURNSTILE_INTERLOCK_NOT_HELD);
2072 		turnstile_deallocate_safe(ts);
2073 	}
2074 
2075 	if (port_stashed_turnstile) {
2076 		turnstile_deallocate_safe(port_stashed_turnstile);
2077 	}
2078 
2079 	/* Release the ref on the dest port and its turnstile */
2080 	if (dest_port) {
2081 		ipc_port_send_turnstile_complete(dest_port);
2082 		/* release the reference on the dest port, space lock might be held */
2083 		ip_release_safe(dest_port);
2084 	}
2085 }
2086 
2087 /*
2088  *	Routine:	ipc_port_adjust_special_reply_port
2089  *	Purpose:
2090  *		If the special port has a turnstile, update its inheritor.
2091  *	Condition:
2092  *		Nothing locked.
2093  *	Returns:
2094  *		None.
2095  */
2096 void
ipc_port_adjust_special_reply_port(ipc_port_t port,uint8_t flags)2097 ipc_port_adjust_special_reply_port(
2098 	ipc_port_t port,
2099 	uint8_t flags)
2100 {
2101 	if (port->ip_specialreply) {
2102 		ip_mq_lock(port);
2103 		ipc_port_adjust_special_reply_port_locked(port, NULL, flags, FALSE);
2104 	}
2105 }
2106 
2107 /*
2108  *	Routine:	ipc_port_adjust_sync_link_state_locked
2109  *	Purpose:
2110  *		Update the sync link state of the port and the
2111  *		turnstile inheritor.
2112  *	Condition:
2113  *		Port locked on entry.
2114  *		Port locked on return.
2115  *	Returns:
2116  *              None.
2117  */
2118 void
ipc_port_adjust_sync_link_state_locked(ipc_port_t port,int sync_link_state,turnstile_inheritor_t inheritor)2119 ipc_port_adjust_sync_link_state_locked(
2120 	ipc_port_t port,
2121 	int sync_link_state,
2122 	turnstile_inheritor_t inheritor)
2123 {
2124 	switch (port->ip_sync_link_state) {
2125 	case PORT_SYNC_LINK_RCV_THREAD:
2126 		/* deallocate the thread reference for the inheritor */
2127 		thread_deallocate_safe(port->ip_messages.imq_inheritor_thread_ref);
2128 		break;
2129 	case PORT_SYNC_LINK_WORKLOOP_STASH:
2130 		/* deallocate the turnstile reference for the inheritor */
2131 		turnstile_deallocate_safe(port->ip_messages.imq_inheritor_turnstile);
2132 		break;
2133 	}
2134 
2135 	klist_init(&port->ip_klist);
2136 
2137 	switch (sync_link_state) {
2138 	case PORT_SYNC_LINK_WORKLOOP_KNOTE:
2139 		port->ip_messages.imq_inheritor_knote = inheritor;
2140 		break;
2141 	case PORT_SYNC_LINK_WORKLOOP_STASH:
2142 		/* knote can be deleted by userspace, take a reference on turnstile */
2143 		turnstile_reference(inheritor);
2144 		port->ip_messages.imq_inheritor_turnstile = inheritor;
2145 		break;
2146 	case PORT_SYNC_LINK_RCV_THREAD:
2147 		/* The thread could exit without clearing port state, take a thread ref */
2148 		thread_reference((thread_t)inheritor);
2149 		port->ip_messages.imq_inheritor_thread_ref = inheritor;
2150 		break;
2151 	default:
2152 		klist_init(&port->ip_klist);
2153 		sync_link_state = PORT_SYNC_LINK_ANY;
2154 	}
2155 
2156 	port->ip_sync_link_state = sync_link_state;
2157 }
2158 
2159 
2160 /*
2161  *	Routine:	ipc_port_adjust_port_locked
2162  *	Purpose:
2163  *		If the port has a turnstile, update its inheritor.
2164  *	Condition:
2165  *		Port locked on entry.
2166  *		Port unlocked on return.
2167  *	Returns:
2168  *		None.
2169  */
2170 void
ipc_port_adjust_port_locked(ipc_port_t port,struct knote * kn,boolean_t sync_bootstrap_checkin)2171 ipc_port_adjust_port_locked(
2172 	ipc_port_t port,
2173 	struct knote *kn,
2174 	boolean_t sync_bootstrap_checkin)
2175 {
2176 	int sync_link_state = PORT_SYNC_LINK_ANY;
2177 	turnstile_inheritor_t inheritor = TURNSTILE_INHERITOR_NULL;
2178 
2179 	ip_mq_lock_held(port); // ip_sync_link_state is touched
2180 	assert(!port->ip_specialreply);
2181 
2182 	if (kn) {
2183 		inheritor = filt_machport_stash_port(kn, port, &sync_link_state);
2184 		if (sync_link_state == PORT_SYNC_LINK_WORKLOOP_KNOTE) {
2185 			inheritor = kn;
2186 		}
2187 	} else if (sync_bootstrap_checkin) {
2188 		inheritor = current_thread();
2189 		sync_link_state = PORT_SYNC_LINK_RCV_THREAD;
2190 	}
2191 
2192 	ipc_port_adjust_sync_link_state_locked(port, sync_link_state, inheritor);
2193 	port->ip_sync_bootstrap_checkin = 0;
2194 
2195 	ipc_port_send_turnstile_recompute_push_locked(port);
2196 	/* port unlocked */
2197 }
2198 
2199 /*
2200  *	Routine:	ipc_port_clear_sync_rcv_thread_boost_locked
2201  *	Purpose:
2202  *		If the port is pushing on rcv thread, clear it.
2203  *	Condition:
2204  *		Port locked on entry
2205  *		Port unlocked on return.
2206  *	Returns:
2207  *		None.
2208  */
2209 void
ipc_port_clear_sync_rcv_thread_boost_locked(ipc_port_t port)2210 ipc_port_clear_sync_rcv_thread_boost_locked(
2211 	ipc_port_t port)
2212 {
2213 	ip_mq_lock_held(port); // ip_sync_link_state is touched
2214 
2215 	if (port->ip_sync_link_state != PORT_SYNC_LINK_RCV_THREAD) {
2216 		ip_mq_unlock(port);
2217 		return;
2218 	}
2219 
2220 	ipc_port_adjust_sync_link_state_locked(port, PORT_SYNC_LINK_ANY, NULL);
2221 
2222 	ipc_port_send_turnstile_recompute_push_locked(port);
2223 	/* port unlocked */
2224 }
2225 
2226 /*
2227  *	Routine:	ipc_port_has_prdrequest
2228  *	Purpose:
2229  *		Returns whether a port has a port-destroyed request armed
2230  *	Condition:
2231  *		Port is locked.
2232  */
2233 bool
ipc_port_has_prdrequest(ipc_port_t port)2234 ipc_port_has_prdrequest(
2235 	ipc_port_t port)
2236 {
2237 	if (port->ip_specialreply) {
2238 		return false;
2239 	}
2240 	if (port->ip_has_watchport) {
2241 		return port->ip_twe->twe_pdrequest != IP_NULL;
2242 	}
2243 	return port->ip_pdrequest != IP_NULL;
2244 }
2245 
2246 /*
2247  *	Routine:	ipc_port_add_watchport_elem_locked
2248  *	Purpose:
2249  *		Transfer the turnstile boost of watchport to task calling exec.
2250  *	Condition:
2251  *		Port locked on entry.
2252  *		Port unlocked on return.
2253  *	Returns:
2254  *		KERN_SUCESS on success.
2255  *		KERN_FAILURE otherwise.
2256  */
2257 kern_return_t
ipc_port_add_watchport_elem_locked(ipc_port_t port,struct task_watchport_elem * watchport_elem,struct task_watchport_elem ** old_elem)2258 ipc_port_add_watchport_elem_locked(
2259 	ipc_port_t                 port,
2260 	struct task_watchport_elem *watchport_elem,
2261 	struct task_watchport_elem **old_elem)
2262 {
2263 	ip_mq_lock_held(port);
2264 
2265 	/* Watchport boost only works for non-special active ports mapped in an ipc space */
2266 	if (!ip_active(port) || port->ip_specialreply || !ip_in_a_space(port)) {
2267 		ip_mq_unlock(port);
2268 		return KERN_FAILURE;
2269 	}
2270 
2271 	if (port->ip_sync_link_state != PORT_SYNC_LINK_ANY) {
2272 		/* Sever the linkage if the port was pushing on knote */
2273 		ipc_port_adjust_sync_link_state_locked(port, PORT_SYNC_LINK_ANY, NULL);
2274 	}
2275 
2276 	*old_elem = ipc_port_update_watchport_elem(port, watchport_elem);
2277 
2278 	ipc_port_send_turnstile_recompute_push_locked(port);
2279 	/* port unlocked */
2280 	return KERN_SUCCESS;
2281 }
2282 
2283 /*
2284  *	Routine:	ipc_port_clear_watchport_elem_internal_conditional_locked
2285  *	Purpose:
2286  *		Remove the turnstile boost of watchport and recompute the push.
2287  *	Condition:
2288  *		Port locked on entry.
2289  *		Port unlocked on return.
2290  *	Returns:
2291  *		KERN_SUCESS on success.
2292  *		KERN_FAILURE otherwise.
2293  */
2294 kern_return_t
ipc_port_clear_watchport_elem_internal_conditional_locked(ipc_port_t port,struct task_watchport_elem * watchport_elem)2295 ipc_port_clear_watchport_elem_internal_conditional_locked(
2296 	ipc_port_t                 port,
2297 	struct task_watchport_elem *watchport_elem)
2298 {
2299 	ip_mq_lock_held(port);
2300 
2301 	if (ipc_port_watchport_elem(port) != watchport_elem) {
2302 		ip_mq_unlock(port);
2303 		return KERN_FAILURE;
2304 	}
2305 
2306 	ipc_port_clear_watchport_elem_internal(port);
2307 	ipc_port_send_turnstile_recompute_push_locked(port);
2308 	/* port unlocked */
2309 	return KERN_SUCCESS;
2310 }
2311 
2312 /*
2313  *	Routine:	ipc_port_replace_watchport_elem_conditional_locked
2314  *	Purpose:
2315  *		Replace the turnstile boost of watchport and recompute the push.
2316  *	Condition:
2317  *		Port locked on entry.
2318  *		Port unlocked on return.
2319  *	Returns:
2320  *		KERN_SUCESS on success.
2321  *		KERN_FAILURE otherwise.
2322  */
2323 kern_return_t
ipc_port_replace_watchport_elem_conditional_locked(ipc_port_t port,struct task_watchport_elem * old_watchport_elem,struct task_watchport_elem * new_watchport_elem)2324 ipc_port_replace_watchport_elem_conditional_locked(
2325 	ipc_port_t                 port,
2326 	struct task_watchport_elem *old_watchport_elem,
2327 	struct task_watchport_elem *new_watchport_elem)
2328 {
2329 	ip_mq_lock_held(port);
2330 
2331 	if (port->ip_specialreply ||
2332 	    ipc_port_watchport_elem(port) != old_watchport_elem) {
2333 		ip_mq_unlock(port);
2334 		return KERN_FAILURE;
2335 	}
2336 
2337 	ipc_port_update_watchport_elem(port, new_watchport_elem);
2338 	ipc_port_send_turnstile_recompute_push_locked(port);
2339 	/* port unlocked */
2340 	return KERN_SUCCESS;
2341 }
2342 
2343 /*
2344  *	Routine:	ipc_port_clear_watchport_elem_internal
2345  *	Purpose:
2346  *		Remove the turnstile boost of watchport.
2347  *	Condition:
2348  *		Port locked on entry.
2349  *		Port locked on return.
2350  *	Returns:
2351  *		Old task_watchport_elem returned.
2352  */
2353 struct task_watchport_elem *
ipc_port_clear_watchport_elem_internal(ipc_port_t port)2354 ipc_port_clear_watchport_elem_internal(
2355 	ipc_port_t                 port)
2356 {
2357 	ip_mq_lock_held(port);
2358 
2359 	if (!port->ip_has_watchport) {
2360 		return NULL;
2361 	}
2362 
2363 	return ipc_port_update_watchport_elem(port, NULL);
2364 }
2365 
2366 /*
2367  *	Routine:	ipc_port_send_turnstile_recompute_push_locked
2368  *	Purpose:
2369  *		Update send turnstile inheritor of port and recompute the push.
2370  *	Condition:
2371  *		Port locked on entry.
2372  *		Port unlocked on return.
2373  *	Returns:
2374  *		None.
2375  */
2376 static void
ipc_port_send_turnstile_recompute_push_locked(ipc_port_t port)2377 ipc_port_send_turnstile_recompute_push_locked(
2378 	ipc_port_t port)
2379 {
2380 	struct turnstile *send_turnstile = port_send_turnstile(port);
2381 	if (send_turnstile) {
2382 		turnstile_reference(send_turnstile);
2383 		ipc_port_send_update_inheritor(port, send_turnstile,
2384 		    TURNSTILE_IMMEDIATE_UPDATE);
2385 	}
2386 	ip_mq_unlock(port);
2387 
2388 	if (send_turnstile) {
2389 		turnstile_update_inheritor_complete(send_turnstile,
2390 		    TURNSTILE_INTERLOCK_NOT_HELD);
2391 		turnstile_deallocate_safe(send_turnstile);
2392 	}
2393 }
2394 
2395 /*
2396  *	Routine:	ipc_port_get_watchport_inheritor
2397  *	Purpose:
2398  *		Returns inheritor for watchport.
2399  *
2400  *	Conditions:
2401  *		mqueue locked.
2402  *	Returns:
2403  *		watchport inheritor.
2404  */
2405 static thread_t
ipc_port_get_watchport_inheritor(ipc_port_t port)2406 ipc_port_get_watchport_inheritor(
2407 	ipc_port_t port)
2408 {
2409 	ip_mq_lock_held(port);
2410 	return ipc_port_watchport_elem(port)->twe_task->watchports->tw_thread;
2411 }
2412 
2413 /*
2414  *	Routine:	ipc_port_get_receiver_task
2415  *	Purpose:
2416  *		Returns receiver task pointer and its pid (if any) for port.
2417  *
2418  *	Conditions:
2419  *		Assumes the port is locked.
2420  */
2421 pid_t
ipc_port_get_receiver_task_locked(ipc_port_t port,uintptr_t * task)2422 ipc_port_get_receiver_task_locked(ipc_port_t port, uintptr_t *task)
2423 {
2424 	task_t receiver = TASK_NULL;
2425 	pid_t pid = -1;
2426 
2427 	if (!port) {
2428 		goto out;
2429 	}
2430 
2431 	if (ip_in_a_space(port) &&
2432 	    !ip_in_space(port, ipc_space_kernel) &&
2433 	    !ip_in_space(port, ipc_space_reply)) {
2434 		receiver = port->ip_receiver->is_task;
2435 		pid = task_pid(receiver);
2436 	}
2437 
2438 out:
2439 	if (task) {
2440 		*task = (uintptr_t)receiver;
2441 	}
2442 	return pid;
2443 }
2444 
2445 /*
2446  *	Routine:	ipc_port_get_receiver_task
2447  *	Purpose:
2448  *		Returns receiver task pointer and its pid (if any) for port.
2449  *
2450  *	Conditions:
2451  *		Nothing locked. The routine takes port lock.
2452  */
2453 pid_t
ipc_port_get_receiver_task(ipc_port_t port,uintptr_t * task)2454 ipc_port_get_receiver_task(ipc_port_t port, uintptr_t *task)
2455 {
2456 	pid_t pid = -1;
2457 
2458 	if (!port) {
2459 		if (task) {
2460 			*task = (uintptr_t)TASK_NULL;
2461 		}
2462 		return pid;
2463 	}
2464 
2465 	ip_mq_lock(port);
2466 	pid = ipc_port_get_receiver_task_locked(port, task);
2467 	ip_mq_unlock(port);
2468 
2469 	return pid;
2470 }
2471 
2472 /*
2473  *	Routine:	ipc_port_impcount_delta
2474  *	Purpose:
2475  *		Adjust only the importance count associated with a port.
2476  *		If there are any adjustments to be made to receiver task,
2477  *		those are handled elsewhere.
2478  *
2479  *		For now, be defensive during deductions to make sure the
2480  *		impcount for the port doesn't underflow zero.  This will
2481  *		go away when the port boost addition is made atomic (see
2482  *		note in ipc_port_importance_delta()).
2483  *	Conditions:
2484  *		The port is referenced and locked.
2485  *		Nothing else is locked.
2486  */
2487 mach_port_delta_t
ipc_port_impcount_delta(ipc_port_t port,mach_port_delta_t delta,ipc_port_t __unused base)2488 ipc_port_impcount_delta(
2489 	ipc_port_t        port,
2490 	mach_port_delta_t delta,
2491 	ipc_port_t        __unused base)
2492 {
2493 	mach_port_delta_t absdelta;
2494 
2495 	if (!ip_active(port)) {
2496 		return 0;
2497 	}
2498 
2499 	/* adding/doing nothing is easy */
2500 	if (delta >= 0) {
2501 		port->ip_impcount += delta;
2502 		return delta;
2503 	}
2504 
2505 	absdelta = 0 - delta;
2506 	if (port->ip_impcount >= absdelta) {
2507 		port->ip_impcount -= absdelta;
2508 		return delta;
2509 	}
2510 
2511 #if (DEVELOPMENT || DEBUG)
2512 	if (ip_in_a_space(port)) {
2513 		task_t target_task = port->ip_receiver->is_task;
2514 		ipc_importance_task_t target_imp = target_task->task_imp_base;
2515 		const char *target_procname;
2516 		int target_pid;
2517 
2518 		if (target_imp != IIT_NULL) {
2519 			target_procname = target_imp->iit_procname;
2520 			target_pid = target_imp->iit_bsd_pid;
2521 		} else {
2522 			target_procname = "unknown";
2523 			target_pid = -1;
2524 		}
2525 		printf("Over-release of importance assertions for port 0x%x receiver pid %d (%s), "
2526 		    "dropping %d assertion(s) but port only has %d remaining.\n",
2527 		    ip_get_receiver_name(port),
2528 		    target_pid, target_procname,
2529 		    absdelta, port->ip_impcount);
2530 	} else if (base != IP_NULL) {
2531 		assert(ip_in_a_space(base));
2532 		task_t target_task = base->ip_receiver->is_task;
2533 		ipc_importance_task_t target_imp = target_task->task_imp_base;
2534 		const char *target_procname;
2535 		int target_pid;
2536 
2537 		if (target_imp != IIT_NULL) {
2538 			target_procname = target_imp->iit_procname;
2539 			target_pid = target_imp->iit_bsd_pid;
2540 		} else {
2541 			target_procname = "unknown";
2542 			target_pid = -1;
2543 		}
2544 		printf("Over-release of importance assertions for port 0x%lx "
2545 		    "enqueued on port 0x%x with receiver pid %d (%s), "
2546 		    "dropping %d assertion(s) but port only has %d remaining.\n",
2547 		    (unsigned long)VM_KERNEL_UNSLIDE_OR_PERM((uintptr_t)port),
2548 		    ip_get_receiver_name(base),
2549 		    target_pid, target_procname,
2550 		    absdelta, port->ip_impcount);
2551 	}
2552 #endif
2553 
2554 	delta = 0 - port->ip_impcount;
2555 	port->ip_impcount = 0;
2556 	return delta;
2557 }
2558 
2559 /*
2560  *	Routine:	ipc_port_importance_delta_internal
2561  *	Purpose:
2562  *		Adjust the importance count through the given port.
2563  *		If the port is in transit, apply the delta throughout
2564  *		the chain. Determine if the there is a task at the
2565  *		base of the chain that wants/needs to be adjusted,
2566  *		and if so, apply the delta.
2567  *	Conditions:
2568  *		The port is referenced and locked on entry.
2569  *		Importance may be locked.
2570  *		Nothing else is locked.
2571  *		The lock may be dropped on exit.
2572  *		Returns TRUE if lock was dropped.
2573  */
2574 #if IMPORTANCE_INHERITANCE
2575 
2576 boolean_t
ipc_port_importance_delta_internal(ipc_port_t port,natural_t options,mach_port_delta_t * deltap,ipc_importance_task_t * imp_task)2577 ipc_port_importance_delta_internal(
2578 	ipc_port_t              port,
2579 	natural_t               options,
2580 	mach_port_delta_t       *deltap,
2581 	ipc_importance_task_t   *imp_task)
2582 {
2583 	ipc_port_t next, base;
2584 	bool dropped = false;
2585 	bool took_base_ref = false;
2586 
2587 	*imp_task = IIT_NULL;
2588 
2589 	if (*deltap == 0) {
2590 		return FALSE;
2591 	}
2592 
2593 	assert(options == IPID_OPTION_NORMAL || options == IPID_OPTION_SENDPOSSIBLE);
2594 
2595 	base = port;
2596 
2597 	/* if port is in transit, have to search for end of chain */
2598 	if (ip_in_transit(port)) {
2599 		dropped = true;
2600 
2601 
2602 		ip_mq_unlock(port);
2603 		ipc_port_multiple_lock(); /* massive serialization */
2604 
2605 		took_base_ref = ipc_port_destination_chain_lock(port, &base);
2606 		/* all ports in chain from port to base, inclusive, are locked */
2607 
2608 		ipc_port_multiple_unlock();
2609 	}
2610 
2611 	/*
2612 	 * If the port lock is dropped b/c the port is in transit, there is a
2613 	 * race window where another thread can drain messages and/or fire a
2614 	 * send possible notification before we get here.
2615 	 *
2616 	 * We solve this race by checking to see if our caller armed the send
2617 	 * possible notification, whether or not it's been fired yet, and
2618 	 * whether or not we've already set the port's ip_spimportant bit. If
2619 	 * we don't need a send-possible boost, then we'll just apply a
2620 	 * harmless 0-boost to the port.
2621 	 */
2622 	if (options & IPID_OPTION_SENDPOSSIBLE) {
2623 		assert(*deltap == 1);
2624 		if (port->ip_sprequests && port->ip_spimportant == 0) {
2625 			port->ip_spimportant = 1;
2626 		} else {
2627 			*deltap = 0;
2628 		}
2629 	}
2630 
2631 	/* unlock down to the base, adjusting boost(s) at each level */
2632 	for (;;) {
2633 		*deltap = ipc_port_impcount_delta(port, *deltap, base);
2634 
2635 		if (port == base) {
2636 			break;
2637 		}
2638 
2639 		/* port is in transit */
2640 		assert(port->ip_tempowner == 0);
2641 		assert(ip_in_transit(port));
2642 		next = ip_get_destination(port);
2643 		ip_mq_unlock(port);
2644 		port = next;
2645 	}
2646 
2647 	/* find the task (if any) to boost according to the base */
2648 	if (ip_active(base)) {
2649 		if (base->ip_tempowner != 0) {
2650 			if (IIT_NULL != ip_get_imp_task(base)) {
2651 				*imp_task = ip_get_imp_task(base);
2652 			}
2653 			/* otherwise don't boost */
2654 		} else if (ip_in_a_space(base)) {
2655 			ipc_space_t space = ip_get_receiver(base);
2656 
2657 			/* only spaces with boost-accepting tasks */
2658 			if (space->is_task != TASK_NULL &&
2659 			    ipc_importance_task_is_any_receiver_type(space->is_task->task_imp_base)) {
2660 				*imp_task = space->is_task->task_imp_base;
2661 			}
2662 		}
2663 	}
2664 
2665 	/*
2666 	 * Only the base is locked.  If we have to hold or drop task
2667 	 * importance assertions, we'll have to drop that lock as well.
2668 	 */
2669 	if (*imp_task != IIT_NULL) {
2670 		/* take a reference before unlocking base */
2671 		ipc_importance_task_reference(*imp_task);
2672 	}
2673 
2674 	if (dropped) {
2675 		ip_mq_unlock(base);
2676 		if (took_base_ref) {
2677 			/* importance lock might be held */
2678 			ip_release_safe(base);
2679 		}
2680 	}
2681 
2682 	return dropped;
2683 }
2684 #endif /* IMPORTANCE_INHERITANCE */
2685 
2686 /*
2687  *	Routine:	ipc_port_importance_delta
2688  *	Purpose:
2689  *		Adjust the importance count through the given port.
2690  *		If the port is in transit, apply the delta throughout
2691  *		the chain.
2692  *
2693  *		If there is a task at the base of the chain that wants/needs
2694  *		to be adjusted, apply the delta.
2695  *	Conditions:
2696  *		The port is referenced and locked on entry.
2697  *		Nothing else is locked.
2698  *		The lock may be dropped on exit.
2699  *		Returns TRUE if lock was dropped.
2700  */
2701 #if IMPORTANCE_INHERITANCE
2702 
2703 boolean_t
ipc_port_importance_delta(ipc_port_t port,natural_t options,mach_port_delta_t delta)2704 ipc_port_importance_delta(
2705 	ipc_port_t              port,
2706 	natural_t               options,
2707 	mach_port_delta_t       delta)
2708 {
2709 	ipc_importance_task_t imp_task = IIT_NULL;
2710 	boolean_t dropped;
2711 
2712 	dropped = ipc_port_importance_delta_internal(port, options, &delta, &imp_task);
2713 
2714 	if (IIT_NULL == imp_task || delta == 0) {
2715 		return dropped;
2716 	}
2717 
2718 	if (!dropped) {
2719 		ip_mq_unlock(port);
2720 	}
2721 
2722 	assert(ipc_importance_task_is_any_receiver_type(imp_task));
2723 
2724 	if (delta > 0) {
2725 		ipc_importance_task_hold_internal_assertion(imp_task, delta);
2726 	} else {
2727 		ipc_importance_task_drop_internal_assertion(imp_task, -delta);
2728 	}
2729 
2730 	ipc_importance_task_release(imp_task);
2731 	return TRUE;
2732 }
2733 #endif /* IMPORTANCE_INHERITANCE */
2734 
2735 ipc_port_t
ipc_port_make_send_any_locked(ipc_port_t port)2736 ipc_port_make_send_any_locked(
2737 	ipc_port_t      port)
2738 {
2739 	require_ip_active(port);
2740 	port->ip_mscount++;
2741 	ip_srights_inc(port);
2742 	ip_reference(port);
2743 	return port;
2744 }
2745 
2746 ipc_port_t
ipc_port_make_send_any(ipc_port_t port)2747 ipc_port_make_send_any(
2748 	ipc_port_t      port)
2749 {
2750 	ipc_port_t sright = port;
2751 
2752 	if (IP_VALID(port)) {
2753 		ip_mq_lock(port);
2754 		if (ip_active(port)) {
2755 			ipc_port_make_send_any_locked(port);
2756 		} else {
2757 			sright = IP_DEAD;
2758 		}
2759 		ip_mq_unlock(port);
2760 	}
2761 
2762 	return sright;
2763 }
2764 
2765 ipc_port_t
ipc_port_make_send_mqueue(ipc_port_t port)2766 ipc_port_make_send_mqueue(
2767 	ipc_port_t      port)
2768 {
2769 	ipc_port_t sright = port;
2770 	ipc_kobject_type_t kotype;
2771 
2772 	if (IP_VALID(port)) {
2773 		kotype = ip_kotype(port);
2774 
2775 		ip_mq_lock(port);
2776 		if (__improbable(!ip_active(port))) {
2777 			sright = IP_DEAD;
2778 		} else if (kotype == IKOT_NONE) {
2779 			ipc_port_make_send_any_locked(port);
2780 		} else if (kotype == IKOT_TIMER) {
2781 			ipc_kobject_mktimer_require_locked(port);
2782 			ipc_port_make_send_any_locked(port);
2783 		} else {
2784 			sright = IP_NULL;
2785 		}
2786 		ip_mq_unlock(port);
2787 	}
2788 
2789 	return sright;
2790 }
2791 
2792 void
ipc_port_copy_send_any_locked(ipc_port_t port)2793 ipc_port_copy_send_any_locked(
2794 	ipc_port_t      port)
2795 {
2796 	assert(port->ip_srights > 0);
2797 	ip_srights_inc(port);
2798 	ip_reference(port);
2799 }
2800 
2801 ipc_port_t
ipc_port_copy_send_any(ipc_port_t port)2802 ipc_port_copy_send_any(
2803 	ipc_port_t      port)
2804 {
2805 	ipc_port_t sright = port;
2806 
2807 	if (IP_VALID(port)) {
2808 		ip_mq_lock(port);
2809 		if (ip_active(port)) {
2810 			ipc_port_copy_send_any_locked(port);
2811 		} else {
2812 			sright = IP_DEAD;
2813 		}
2814 		ip_mq_unlock(port);
2815 	}
2816 
2817 	return sright;
2818 }
2819 
2820 ipc_port_t
ipc_port_copy_send_mqueue(ipc_port_t port)2821 ipc_port_copy_send_mqueue(
2822 	ipc_port_t      port)
2823 {
2824 	ipc_port_t sright = port;
2825 	ipc_kobject_type_t kotype;
2826 
2827 	if (IP_VALID(port)) {
2828 		kotype = ip_kotype(port);
2829 
2830 		ip_mq_lock(port);
2831 		if (__improbable(!ip_active(port))) {
2832 			sright = IP_DEAD;
2833 		} else if (kotype == IKOT_NONE) {
2834 			ipc_port_copy_send_any_locked(port);
2835 		} else if (kotype == IKOT_TIMER) {
2836 			ipc_kobject_mktimer_require_locked(port);
2837 			ipc_port_copy_send_any_locked(port);
2838 		} else {
2839 			sright = IP_NULL;
2840 		}
2841 		ip_mq_unlock(port);
2842 	}
2843 
2844 	return sright;
2845 }
2846 
2847 /*
2848  *	Routine:	ipc_port_copyout_send
2849  *	Purpose:
2850  *		Copyout a naked send right (possibly null/dead),
2851  *		or if that fails, destroy the right.
2852  *	Conditions:
2853  *		Nothing locked.
2854  */
2855 
2856 static mach_port_name_t
ipc_port_copyout_send_internal(ipc_port_t sright,ipc_space_t space,ipc_object_copyout_flags_t flags)2857 ipc_port_copyout_send_internal(
2858 	ipc_port_t      sright,
2859 	ipc_space_t     space,
2860 	ipc_object_copyout_flags_t flags)
2861 {
2862 	mach_port_name_t name;
2863 
2864 	if (IP_VALID(sright)) {
2865 		kern_return_t kr;
2866 
2867 		kr = ipc_object_copyout(space, ip_to_object(sright),
2868 		    MACH_MSG_TYPE_PORT_SEND, flags, NULL, NULL, &name);
2869 		if (kr != KERN_SUCCESS) {
2870 			if (kr == KERN_INVALID_CAPABILITY) {
2871 				name = MACH_PORT_DEAD;
2872 			} else {
2873 				name = MACH_PORT_NULL;
2874 			}
2875 		}
2876 	} else {
2877 		name = CAST_MACH_PORT_TO_NAME(sright);
2878 	}
2879 
2880 	return name;
2881 }
2882 
2883 mach_port_name_t
ipc_port_copyout_send(ipc_port_t sright,ipc_space_t space)2884 ipc_port_copyout_send(
2885 	ipc_port_t      sright, /* can be invalid */
2886 	ipc_space_t     space)
2887 {
2888 	return ipc_port_copyout_send_internal(sright, space, IPC_OBJECT_COPYOUT_FLAGS_NONE);
2889 }
2890 
2891 /* Used by pthread kext to copyout thread port only */
2892 mach_port_name_t
ipc_port_copyout_send_pinned(ipc_port_t sright,ipc_space_t space)2893 ipc_port_copyout_send_pinned(
2894 	ipc_port_t      sright, /* can be invalid */
2895 	ipc_space_t     space)
2896 {
2897 	assert(space->is_task != TASK_NULL);
2898 
2899 	if (IP_VALID(sright)) {
2900 		assert(ip_kotype(sright) == IKOT_THREAD_CONTROL);
2901 	}
2902 
2903 	if (task_is_pinned(space->is_task)) {
2904 		return ipc_port_copyout_send_internal(sright, space, IPC_OBJECT_COPYOUT_FLAGS_PINNED);
2905 	} else {
2906 		return ipc_port_copyout_send_internal(sright, space, IPC_OBJECT_COPYOUT_FLAGS_NONE);
2907 	}
2908 }
2909 
2910 /*
2911  *	Routine:	ipc_port_release_send_and_unlock
2912  *	Purpose:
2913  *		Release a naked send right.
2914  *		Consumes a ref for the port.
2915  *	Conditions:
2916  *		Port is valid and locked on entry
2917  *		Port is unlocked on exit.
2918  */
2919 void
ipc_port_release_send_and_unlock(ipc_port_t port)2920 ipc_port_release_send_and_unlock(
2921 	ipc_port_t      port)
2922 {
2923 	ipc_notify_nsenders_t nsrequest = { };
2924 
2925 	ip_srights_dec(port);
2926 
2927 	if (ip_active(port) && port->ip_srights == 0) {
2928 		nsrequest = ipc_notify_no_senders_prepare(port);
2929 	}
2930 
2931 	ip_mq_unlock(port);
2932 	ip_release(port);
2933 
2934 	ipc_notify_no_senders_emit(nsrequest);
2935 }
2936 
2937 /*
2938  *	Routine:	ipc_port_release_send
2939  *	Purpose:
2940  *		Release a naked send right.
2941  *		Consumes a ref for the port.
2942  *	Conditions:
2943  *		Nothing locked.
2944  */
2945 
2946 __attribute__((flatten, noinline))
2947 void
ipc_port_release_send(ipc_port_t port)2948 ipc_port_release_send(
2949 	ipc_port_t      port)
2950 {
2951 	if (IP_VALID(port)) {
2952 		ip_mq_lock(port);
2953 		ipc_port_release_send_and_unlock(port);
2954 	}
2955 }
2956 
2957 /*
2958  *	Routine:	ipc_port_make_sonce_locked
2959  *	Purpose:
2960  *		Make a naked send-once right from a receive right.
2961  *	Conditions:
2962  *		The port is locked and active.
2963  */
2964 
2965 ipc_port_t
ipc_port_make_sonce_locked(ipc_port_t port)2966 ipc_port_make_sonce_locked(
2967 	ipc_port_t      port)
2968 {
2969 	require_ip_active(port);
2970 	ip_sorights_inc(port);
2971 	ip_reference(port);
2972 	return port;
2973 }
2974 
2975 /*
2976  *	Routine:	ipc_port_make_sonce
2977  *	Purpose:
2978  *		Make a naked send-once right from a receive right.
2979  *	Conditions:
2980  *		The port is not locked.
2981  */
2982 
2983 ipc_port_t
ipc_port_make_sonce(ipc_port_t port)2984 ipc_port_make_sonce(
2985 	ipc_port_t      port)
2986 {
2987 	if (!IP_VALID(port)) {
2988 		return port;
2989 	}
2990 
2991 	ip_mq_lock(port);
2992 	if (ip_active(port)) {
2993 		ipc_port_make_sonce_locked(port);
2994 		ip_mq_unlock(port);
2995 		return port;
2996 	}
2997 	ip_mq_unlock(port);
2998 	return IP_DEAD;
2999 }
3000 
3001 /*
3002  *	Routine:	ipc_port_release_sonce
3003  *	Purpose:
3004  *		Release a naked send-once right.
3005  *		Consumes a ref for the port.
3006  *
3007  *		In normal situations, this is never used.
3008  *		Send-once rights are only consumed when
3009  *		a message (possibly a send-once notification)
3010  *		is sent to them.
3011  *	Conditions:
3012  *		The port is locked, possibly a space too.
3013  */
3014 void
ipc_port_release_sonce_and_unlock(ipc_port_t port)3015 ipc_port_release_sonce_and_unlock(
3016 	ipc_port_t      port)
3017 {
3018 	ip_mq_lock_held(port);
3019 
3020 	ip_sorights_dec(port);
3021 
3022 	if (port->ip_specialreply) {
3023 		ipc_port_adjust_special_reply_port_locked(port, NULL,
3024 		    IPC_PORT_ADJUST_RESET_BOOSTRAP_CHECKIN, FALSE);
3025 	} else {
3026 		ip_mq_unlock(port);
3027 	}
3028 
3029 	ip_release(port);
3030 }
3031 
3032 /*
3033  *	Routine:	ipc_port_release_sonce
3034  *	Purpose:
3035  *		Release a naked send-once right.
3036  *		Consumes a ref for the port.
3037  *
3038  *		In normal situations, this is never used.
3039  *		Send-once rights are only consumed when
3040  *		a message (possibly a send-once notification)
3041  *		is sent to them.
3042  *	Conditions:
3043  *		Nothing locked except possibly a space.
3044  */
3045 void
ipc_port_release_sonce(ipc_port_t port)3046 ipc_port_release_sonce(
3047 	ipc_port_t      port)
3048 {
3049 	if (IP_VALID(port)) {
3050 		ip_mq_lock(port);
3051 		ipc_port_release_sonce_and_unlock(port);
3052 	}
3053 }
3054 
3055 /*
3056  *	Routine:	ipc_port_release_receive
3057  *	Purpose:
3058  *		Release a naked (in limbo or in transit) receive right.
3059  *		Consumes a ref for the port; destroys the port.
3060  *	Conditions:
3061  *		Nothing locked.
3062  */
3063 
3064 void
ipc_port_release_receive(ipc_port_t port)3065 ipc_port_release_receive(
3066 	ipc_port_t      port)
3067 {
3068 	ipc_port_t dest;
3069 
3070 	if (!IP_VALID(port)) {
3071 		return;
3072 	}
3073 
3074 	ip_mq_lock(port);
3075 	require_ip_active(port);
3076 	assert(!ip_in_a_space(port));
3077 	dest = ip_get_destination(port);
3078 
3079 	ipc_port_destroy(port); /* consumes ref, unlocks */
3080 
3081 	if (dest != IP_NULL) {
3082 		ipc_port_send_turnstile_complete(dest);
3083 		ip_release(dest);
3084 	}
3085 }
3086 
3087 /*
3088  *	Routine:	ipc_port_alloc_special
3089  *	Purpose:
3090  *		Allocate a port in a special space.
3091  *		The new port is returned with one ref.
3092  *		If unsuccessful, IP_NULL is returned.
3093  *	Conditions:
3094  *		Nothing locked.
3095  */
3096 
3097 ipc_port_t
ipc_port_alloc_special(ipc_space_t space,ipc_port_init_flags_t flags)3098 ipc_port_alloc_special(
3099 	ipc_space_t             space,
3100 	ipc_port_init_flags_t   flags)
3101 {
3102 	ipc_port_t port;
3103 
3104 	port = ip_object_to_port(io_alloc(IOT_PORT, Z_WAITOK | Z_ZERO));
3105 	if (port == IP_NULL) {
3106 		return IP_NULL;
3107 	}
3108 
3109 	os_atomic_init(&port->ip_object.io_bits, io_makebits(IOT_PORT));
3110 	os_atomic_init(&port->ip_object.io_references, 1);
3111 
3112 	ipc_port_init(port, space, flags, MACH_PORT_SPECIAL_DEFAULT);
3113 	return port;
3114 }
3115 
3116 /*
3117  *	Routine:	ipc_port_dealloc_special_and_unlock
3118  *	Purpose:
3119  *		Deallocate a port in a special space.
3120  *		Consumes one ref for the port.
3121  *	Conditions:
3122  *		Port is locked.
3123  */
3124 
3125 void
ipc_port_dealloc_special_and_unlock(ipc_port_t port,__assert_only ipc_space_t space)3126 ipc_port_dealloc_special_and_unlock(
3127 	ipc_port_t                      port,
3128 	__assert_only ipc_space_t       space)
3129 {
3130 	require_ip_active(port);
3131 //	assert(port->ip_receiver_name != MACH_PORT_NULL);
3132 	assert(ip_in_space(port, space));
3133 
3134 	/*
3135 	 *	We clear ip_receiver_name and ip_receiver to simplify
3136 	 *	the ipc_space_kernel check in ipc_mqueue_send.
3137 	 */
3138 
3139 	/* port transtions to IN-LIMBO state */
3140 	port->ip_receiver_name = MACH_PORT_NULL;
3141 	port->ip_receiver = IS_NULL;
3142 
3143 	/* relevant part of ipc_port_clear_receiver */
3144 	port->ip_mscount = 0;
3145 	port->ip_messages.imq_seqno = 0;
3146 
3147 	ipc_port_destroy(port);
3148 }
3149 
3150 /*
3151  *	Routine:	ipc_port_dealloc_special
3152  *	Purpose:
3153  *		Deallocate a port in a special space.
3154  *		Consumes one ref for the port.
3155  *	Conditions:
3156  *		Nothing locked.
3157  */
3158 
3159 void
ipc_port_dealloc_special(ipc_port_t port,ipc_space_t space)3160 ipc_port_dealloc_special(
3161 	ipc_port_t        port,
3162 	ipc_space_t       space)
3163 {
3164 	ip_mq_lock(port);
3165 	ipc_port_dealloc_special_and_unlock(port, space);
3166 }
3167 
3168 /*
3169  *	Routine:	ipc_port_finalize
3170  *	Purpose:
3171  *		Called on last reference deallocate to
3172  *		free any remaining data associated with the
3173  *		port.
3174  *	Conditions:
3175  *		Nothing locked.
3176  */
3177 void
ipc_port_finalize(ipc_port_t port)3178 ipc_port_finalize(
3179 	ipc_port_t              port)
3180 {
3181 	ipc_port_request_table_t requests = port->ip_requests;
3182 
3183 	assert(port_send_turnstile(port) == TURNSTILE_NULL);
3184 
3185 	if (waitq_type(&port->ip_waitq) == WQT_PORT) {
3186 		assert(ipc_port_rcv_turnstile(port) == TURNSTILE_NULL);
3187 	}
3188 
3189 	if (ip_active(port)) {
3190 		panic("Trying to free an active port. port %p", port);
3191 	}
3192 
3193 	if (requests) {
3194 		port->ip_requests = NULL;
3195 		ipc_port_request_table_free_noclear(requests);
3196 	}
3197 
3198 	/*
3199 	 * (81997111) now it is safe to deallocate the prealloc message.
3200 	 * Keep the IP_BIT_PREALLOC bit, it has to be sticky as the turnstile
3201 	 * code looks at it without holding locks.
3202 	 */
3203 	if (IP_PREALLOC(port)) {
3204 		ipc_kmsg_t kmsg = port->ip_premsg;
3205 
3206 		if (kmsg == IKM_NULL || ikm_prealloc_inuse_port(kmsg)) {
3207 			panic("port(%p, %p): prealloc message in an invalid state",
3208 			    port, kmsg);
3209 		}
3210 
3211 		port->ip_premsg = IKM_NULL;
3212 		ipc_kmsg_free(kmsg);
3213 	}
3214 
3215 	waitq_deinit(&port->ip_waitq);
3216 #if MACH_ASSERT
3217 	if (port->ip_made_bt) {
3218 		btref_put(port->ip_made_bt);
3219 	}
3220 #endif
3221 }
3222 
3223 /*
3224  *	Routine:	kdp_mqueue_send_find_owner
3225  *	Purpose:
3226  *		Discover the owner of the ipc object that contains the input
3227  *		waitq object. The thread blocked on the waitq should be
3228  *		waiting for an IPC_MQUEUE_FULL event.
3229  *	Conditions:
3230  *		The 'waitinfo->wait_type' value should already be set to
3231  *		kThreadWaitPortSend.
3232  *	Note:
3233  *		If we find out that the containing port is actually in
3234  *		transit, we reset the wait_type field to reflect this.
3235  */
3236 void
kdp_mqueue_send_find_owner(struct waitq * waitq,__assert_only event64_t event,thread_waitinfo_v2_t * waitinfo,struct ipc_service_port_label ** isplp)3237 kdp_mqueue_send_find_owner(
3238 	struct waitq                   *waitq,
3239 	__assert_only event64_t         event,
3240 	thread_waitinfo_v2_t           *waitinfo,
3241 	struct ipc_service_port_label **isplp)
3242 {
3243 	struct turnstile *turnstile;
3244 	assert(waitinfo->wait_type == kThreadWaitPortSend);
3245 	assert(event == IPC_MQUEUE_FULL);
3246 	assert(waitq_type(waitq) == WQT_TURNSTILE);
3247 
3248 	turnstile = waitq_to_turnstile(waitq);
3249 	ipc_port_t port = (ipc_port_t)turnstile->ts_proprietor; /* we are blocking on send */
3250 
3251 	zone_id_require(ZONE_ID_IPC_PORT, sizeof(struct ipc_port), port);
3252 
3253 	waitinfo->owner = 0;
3254 	waitinfo->context  = VM_KERNEL_UNSLIDE_OR_PERM(port);
3255 	if (ip_mq_lock_held_kdp(port)) {
3256 		/*
3257 		 * someone has the port locked: it may be in an
3258 		 * inconsistent state: bail
3259 		 */
3260 		waitinfo->owner = STACKSHOT_WAITOWNER_PORT_LOCKED;
3261 		return;
3262 	}
3263 
3264 	/* now we are the only one accessing the port */
3265 	if (ip_active(port)) {
3266 		/*
3267 		 * In kdp context, port must be left unlocked throughout.
3268 		 * Therefore can't use union field accessor helpers, manually strip PAC
3269 		 * and compare raw pointer.
3270 		 */
3271 		void *raw_ptr = ip_get_receiver_ptr_noauth(port);
3272 
3273 		if (port->ip_tempowner) {
3274 			ipc_importance_task_t imp_task = ip_get_imp_task(port);
3275 			if (imp_task != IIT_NULL && imp_task->iit_task != NULL) {
3276 				/* port is held by a tempowner */
3277 				waitinfo->owner = pid_from_task(port->ip_imp_task->iit_task);
3278 			} else {
3279 				waitinfo->owner = STACKSHOT_WAITOWNER_INTRANSIT;
3280 			}
3281 		} else if (ip_in_a_space(port)) { /* no port lock needed */
3282 			if ((ipc_space_t)raw_ptr == ipc_space_kernel) { /* access union field as ip_receiver */
3283 				/*
3284 				 * The kernel pid is 0, make this
3285 				 * distinguishable from no-owner and
3286 				 * inconsistent port state.
3287 				 */
3288 				waitinfo->owner = STACKSHOT_WAITOWNER_KERNEL;
3289 			} else {
3290 				waitinfo->owner = pid_from_task(((ipc_space_t)raw_ptr)->is_task);
3291 			}
3292 		} else if ((ipc_port_t)raw_ptr != IP_NULL) { /* access union field as ip_destination */
3293 			waitinfo->wait_type = kThreadWaitPortSendInTransit;
3294 			waitinfo->owner     = VM_KERNEL_UNSLIDE_OR_PERM((ipc_port_t)raw_ptr);
3295 		}
3296 		if (port->ip_service_port && port->ip_splabel != NULL) {
3297 			*isplp = (struct ipc_service_port_label *)port->ip_splabel;
3298 		}
3299 	}
3300 }
3301 
3302 /*
3303  *	Routine:	kdp_mqueue_recv_find_owner
3304  *	Purpose:
3305  *		Discover the "owner" of the ipc object that contains the input
3306  *		waitq object. The thread blocked on the waitq is trying to
3307  *		receive on the mqueue.
3308  *	Conditions:
3309  *		The 'waitinfo->wait_type' value should already be set to
3310  *		kThreadWaitPortReceive.
3311  *	Note:
3312  *		If we find that we are actualy waiting on a port set, we reset
3313  *		the wait_type field to reflect this.
3314  */
3315 void
kdp_mqueue_recv_find_owner(struct waitq * waitq,__assert_only event64_t event,thread_waitinfo_v2_t * waitinfo,struct ipc_service_port_label ** isplp)3316 kdp_mqueue_recv_find_owner(
3317 	struct waitq                   *waitq,
3318 	__assert_only event64_t         event,
3319 	thread_waitinfo_v2_t           *waitinfo,
3320 	struct ipc_service_port_label **isplp)
3321 {
3322 	assert(waitinfo->wait_type == kThreadWaitPortReceive);
3323 	assert(event == IPC_MQUEUE_RECEIVE);
3324 
3325 	waitinfo->owner = 0;
3326 
3327 	if (waitq_type(waitq) == WQT_PORT_SET) {
3328 		ipc_pset_t set = ips_from_waitq(waitq);
3329 
3330 		zone_id_require(ZONE_ID_IPC_PORT_SET, sizeof(struct ipc_pset), set);
3331 
3332 		/* Reset wait type to specify waiting on port set receive */
3333 		waitinfo->wait_type = kThreadWaitPortSetReceive;
3334 		waitinfo->context   = VM_KERNEL_UNSLIDE_OR_PERM(set);
3335 		if (ips_mq_lock_held_kdp(set)) {
3336 			waitinfo->owner = STACKSHOT_WAITOWNER_PSET_LOCKED;
3337 		}
3338 		/* There is no specific owner "at the other end" of a port set, so leave unset. */
3339 	} else if (waitq_type(waitq) == WQT_PORT) {
3340 		ipc_port_t port = ip_from_waitq(waitq);
3341 
3342 		zone_id_require(ZONE_ID_IPC_PORT, sizeof(struct ipc_port), port);
3343 
3344 		waitinfo->context = VM_KERNEL_UNSLIDE_OR_PERM(port);
3345 		if (ip_mq_lock_held_kdp(port)) {
3346 			waitinfo->owner = STACKSHOT_WAITOWNER_PORT_LOCKED;
3347 			return;
3348 		}
3349 
3350 		if (ip_active(port)) {
3351 			if (ip_in_a_space(port)) { /* no port lock needed */
3352 				waitinfo->owner = ip_get_receiver_name(port);
3353 			} else {
3354 				waitinfo->owner = STACKSHOT_WAITOWNER_INTRANSIT;
3355 			}
3356 			if (port->ip_specialreply) {
3357 				waitinfo->wait_flags |= STACKSHOT_WAITINFO_FLAGS_SPECIALREPLY;
3358 			}
3359 			if (port->ip_splabel != NULL) {
3360 				*isplp = (struct ipc_service_port_label *)port->ip_splabel;
3361 			}
3362 		}
3363 	}
3364 }
3365 
3366 void
ipc_port_set_label(ipc_port_t port,ipc_label_t label)3367 ipc_port_set_label(
3368 	ipc_port_t              port,
3369 	ipc_label_t             label)
3370 {
3371 	ipc_kobject_label_t labelp;
3372 
3373 	assert(!ip_is_kolabeled(port));
3374 
3375 	labelp = zalloc_flags(ipc_kobject_label_zone, Z_WAITOK | Z_ZERO | Z_NOFAIL);
3376 	labelp->ikol_label = label;
3377 
3378 	port->ip_kolabel = labelp;
3379 	io_bits_or(ip_to_object(port), IO_BITS_KOLABEL);
3380 }
3381 
3382 kern_return_t
ipc_port_reset_thread_attr(ipc_port_t port)3383 ipc_port_reset_thread_attr(
3384 	ipc_port_t port)
3385 {
3386 	uint8_t iotier = THROTTLE_LEVEL_END;
3387 	uint8_t qos = THREAD_QOS_UNSPECIFIED;
3388 
3389 	return ipc_port_update_qos_n_iotier(port, qos, iotier);
3390 }
3391 
3392 kern_return_t
ipc_port_propagate_thread_attr(ipc_port_t port,struct thread_attr_for_ipc_propagation attr)3393 ipc_port_propagate_thread_attr(
3394 	ipc_port_t port,
3395 	struct thread_attr_for_ipc_propagation attr)
3396 {
3397 	uint8_t iotier = attr.tafip_iotier;
3398 	uint8_t qos = attr.tafip_qos;
3399 
3400 	return ipc_port_update_qos_n_iotier(port, qos, iotier);
3401 }
3402 
3403 static kern_return_t
ipc_port_update_qos_n_iotier(ipc_port_t port,uint8_t qos,uint8_t iotier)3404 ipc_port_update_qos_n_iotier(
3405 	ipc_port_t port,
3406 	uint8_t    qos,
3407 	uint8_t    iotier)
3408 {
3409 	if (port == IPC_PORT_NULL) {
3410 		return KERN_INVALID_ARGUMENT;
3411 	}
3412 
3413 	ip_mq_lock(port);
3414 
3415 	if (!ip_active(port)) {
3416 		ip_mq_unlock(port);
3417 		return KERN_TERMINATED;
3418 	}
3419 
3420 	if (port->ip_specialreply) {
3421 		ip_mq_unlock(port);
3422 		return KERN_INVALID_ARGUMENT;
3423 	}
3424 
3425 	port->ip_kernel_iotier_override = iotier;
3426 	port->ip_kernel_qos_override = qos;
3427 
3428 	if (ip_in_a_space(port) &&
3429 	    is_active(ip_get_receiver(port)) &&
3430 	    ipc_port_has_klist(port)) {
3431 		KNOTE(&port->ip_klist, 0);
3432 	}
3433 
3434 	ip_mq_unlock(port);
3435 	return KERN_SUCCESS;
3436 }
3437 
3438 boolean_t
__ip_strict_reply_port_semantics_violation(void)3439 __ip_strict_reply_port_semantics_violation(void)
3440 {
3441 	return task_get_platform_binary(current_task())
3442 #if CONFIG_ROSETTA
3443 	       && !task_is_translated(current_task()) /* ignore rosetta violators */
3444 #endif
3445 	       && !proc_is_simulated(current_proc());
3446 }
3447 
3448 #if MACH_ASSERT
3449 #include <kern/machine.h>
3450 
3451 unsigned long   port_count = 0;
3452 unsigned long   port_count_warning = 20000;
3453 unsigned long   port_timestamp = 0;
3454 
3455 void            db_port_stack_trace(
3456 	ipc_port_t      port);
3457 void            db_ref(
3458 	int             refs);
3459 int             db_port_walk(
3460 	unsigned int    verbose,
3461 	unsigned int    display,
3462 	unsigned int    ref_search,
3463 	unsigned int    ref_target);
3464 
3465 #ifdef MACH_BSD
3466 extern int proc_pid(struct proc*);
3467 #endif /* MACH_BSD */
3468 
3469 /*
3470  *	Initialize all of the debugging state in a port.
3471  *	Insert the port into a global list of all allocated ports.
3472  */
3473 void
ipc_port_init_debug(ipc_port_t port,void * fp)3474 ipc_port_init_debug(ipc_port_t port, void *fp)
3475 {
3476 	port->ip_timetrack = port_timestamp++;
3477 
3478 	if (ipc_portbt) {
3479 		port->ip_made_bt = btref_get(fp, 0);
3480 	}
3481 
3482 #ifdef MACH_BSD
3483 	task_t task = current_task_early();
3484 	if (task != TASK_NULL) {
3485 		struct proc *proc = get_bsdtask_info(task);
3486 		if (proc) {
3487 			port->ip_made_pid = proc_pid(proc);
3488 		}
3489 	}
3490 #endif /* MACH_BSD */
3491 }
3492 
3493 #endif  /* MACH_ASSERT */
3494