blob: c414beed8e16d63b440959b6f4b20b2e5adda7a1 [file] [log] [blame]
Jeenu Viswambharan04e3a7f2017-10-16 08:43:14 +01001/*
2 * Copyright (c) 2017, ARM Limited and Contributors. All rights reserved.
3 *
4 * SPDX-License-Identifier: BSD-3-Clause
5 */
6
7#include <arch_helpers.h>
8#include <assert.h>
9#include <bl31.h>
10#include <bl_common.h>
11#include <cassert.h>
12#include <context.h>
13#include <context_mgmt.h>
14#include <debug.h>
15#include <ehf.h>
16#include <interrupt_mgmt.h>
17#include <platform.h>
18#include <pubsub.h>
19#include <runtime_svc.h>
20#include <sdei.h>
21#include <stddef.h>
22#include <string.h>
23#include <utils.h>
24#include "sdei_private.h"
25
26#define MAJOR_VERSION 1
27#define MINOR_VERSION 0
28#define VENDOR_VERSION 0
29
30#define MAKE_SDEI_VERSION(_major, _minor, _vendor) \
31 ((((unsigned long long)(_major)) << 48) | \
32 (((unsigned long long)(_minor)) << 32) | \
33 (_vendor))
34
35#define LOWEST_INTR_PRIORITY 0xff
36
37#define is_valid_affinity(_mpidr) (plat_core_pos_by_mpidr(_mpidr) >= 0)
38
39CASSERT(PLAT_SDEI_CRITICAL_PRI < PLAT_SDEI_NORMAL_PRI,
40 sdei_critical_must_have_higher_priority);
41
42static unsigned int num_dyn_priv_slots, num_dyn_shrd_slots;
43
44/* Initialise SDEI map entries */
45static void init_map(sdei_ev_map_t *map)
46{
47 map->reg_count = 0;
48}
49
50/* Convert mapping to SDEI class */
51sdei_class_t map_to_class(sdei_ev_map_t *map)
52{
53 return is_event_critical(map) ? SDEI_CRITICAL : SDEI_NORMAL;
54}
55
56/* Clear SDEI event entries except state */
57static void clear_event_entries(sdei_entry_t *se)
58{
59 se->ep = 0;
60 se->arg = 0;
61 se->affinity = 0;
62 se->reg_flags = 0;
63}
64
65/* Perform CPU-specific state initialisation */
66static void *sdei_cpu_on_init(const void *arg)
67{
68 int i;
69 sdei_ev_map_t *map;
70 sdei_entry_t *se;
71
72 /* Initialize private mappings on this CPU */
73 for_each_private_map(i, map) {
74 se = get_event_entry(map);
75 clear_event_entries(se);
76 se->state = 0;
77 }
78
79 SDEI_LOG("Private events initialized on %lx\n", read_mpidr_el1());
80
81 /* All PEs start with SDEI events masked */
82 sdei_pe_mask();
83
84 return 0;
85}
86
87/* Initialise an SDEI class */
88void sdei_class_init(sdei_class_t class)
89{
90 unsigned int i, zero_found __unused = 0;
91 int ev_num_so_far __unused;
92 sdei_ev_map_t *map;
93
94 /* Sanity check and configuration of shared events */
95 ev_num_so_far = -1;
96 for_each_shared_map(i, map) {
97#if ENABLE_ASSERTIONS
98 /* Ensure mappings are sorted */
99 assert((ev_num_so_far < 0) || (map->ev_num > ev_num_so_far));
100
101 ev_num_so_far = map->ev_num;
102
103 /* Event 0 must not be shared */
104 assert(map->ev_num != SDEI_EVENT_0);
105
106 /* Check for valid event */
107 assert(map->ev_num >= 0);
108
109 /* Make sure it's a shared event */
110 assert(is_event_shared(map));
111
112 /* No shared mapping should have signalable property */
113 assert(!is_event_signalable(map));
114#endif
115
116 /* Skip initializing the wrong priority */
117 if (map_to_class(map) != class)
118 continue;
119
120 /* Platform events are always bound, so set the bound flag */
121 if (is_map_dynamic(map)) {
122 assert(map->intr == SDEI_DYN_IRQ);
123 num_dyn_shrd_slots++;
124 } else {
125 /* Shared mappings must be bound to shared interrupt */
126 assert(plat_ic_is_spi(map->intr));
127 set_map_bound(map);
128 }
129
130 init_map(map);
131 }
132
133 /* Sanity check and configuration of private events for this CPU */
134 ev_num_so_far = -1;
135 for_each_private_map(i, map) {
136#if ENABLE_ASSERTIONS
137 /* Ensure mappings are sorted */
138 assert((ev_num_so_far < 0) || (map->ev_num > ev_num_so_far));
139
140 ev_num_so_far = map->ev_num;
141
142 if (map->ev_num == SDEI_EVENT_0) {
143 zero_found = 1;
144
145 /* Event 0 must be a Secure SGI */
146 assert(is_secure_sgi(map->intr));
147
148 /*
149 * Event 0 can have only have signalable flag (apart
150 * from being private
151 */
152 assert(map->map_flags == (SDEI_MAPF_SIGNALABLE |
153 SDEI_MAPF_PRIVATE));
154 } else {
155 /* No other mapping should have signalable property */
156 assert(!is_event_signalable(map));
157 }
158
159 /* Check for valid event */
160 assert(map->ev_num >= 0);
161
162 /* Make sure it's a private event */
163 assert(is_event_private(map));
164#endif
165
166 /* Skip initializing the wrong priority */
167 if (map_to_class(map) != class)
168 continue;
169
170 /* Platform events are always bound, so set the bound flag */
171 if (map->ev_num != SDEI_EVENT_0) {
172 if (is_map_dynamic(map)) {
173 assert(map->intr == SDEI_DYN_IRQ);
174 num_dyn_priv_slots++;
175 } else {
176 /*
177 * Private mappings must be bound to private
178 * interrupt.
179 */
180 assert(plat_ic_is_ppi(map->intr));
181 set_map_bound(map);
182 }
183 }
184
185 init_map(map);
186 }
187
188 /* Ensure event 0 is in the mapping */
189 assert(zero_found);
190
191 sdei_cpu_on_init(NULL);
192}
193
194/* SDEI dispatcher initialisation */
195void sdei_init(void)
196{
197 sdei_class_init(SDEI_CRITICAL);
198 sdei_class_init(SDEI_NORMAL);
199
200 /* Register priority level handlers */
201 ehf_register_priority_handler(PLAT_SDEI_CRITICAL_PRI,
202 sdei_intr_handler);
203 ehf_register_priority_handler(PLAT_SDEI_NORMAL_PRI,
204 sdei_intr_handler);
205}
206
207/* Populate SDEI event entry */
208static void set_sdei_entry(sdei_entry_t *se, uint64_t ep, uint64_t arg,
209 unsigned int flags, uint64_t affinity)
210{
211 assert(se != NULL);
212
213 se->ep = ep;
214 se->arg = arg;
215 se->affinity = (affinity & MPIDR_AFFINITY_MASK);
216 se->reg_flags = flags;
217}
218
219static unsigned long long sdei_version(void)
220{
221 return MAKE_SDEI_VERSION(MAJOR_VERSION, MINOR_VERSION, VENDOR_VERSION);
222}
223
224/* Validate flags and MPIDR values for REGISTER and ROUTING_SET calls */
225static int validate_flags(uint64_t flags, uint64_t mpidr)
226{
227 /* Validate flags */
228 switch (flags) {
229 case SDEI_REGF_RM_PE:
230 if (!is_valid_affinity(mpidr))
231 return SDEI_EINVAL;
232 break;
233 case SDEI_REGF_RM_ANY:
234 break;
235 default:
236 /* Unknown flags */
237 return SDEI_EINVAL;
238 }
239
240 return 0;
241}
242
243/* Set routing of an SDEI event */
244static int sdei_event_routing_set(int ev_num, uint64_t flags, uint64_t mpidr)
245{
246 int ret, routing;
247 sdei_ev_map_t *map;
248 sdei_entry_t *se;
249
250 ret = validate_flags(flags, mpidr);
251 if (ret)
252 return ret;
253
254 /* Check if valid event number */
255 map = find_event_map(ev_num);
256 if (!map)
257 return SDEI_EINVAL;
258
259 /* The event must not be private */
260 if (is_event_private(map))
261 return SDEI_EINVAL;
262
263 se = get_event_entry(map);
264
265 sdei_map_lock(map);
266
267 if (!is_map_bound(map) || is_event_private(map)) {
268 ret = SDEI_EINVAL;
269 goto finish;
270 }
271
272 if (!can_sdei_state_trans(se, DO_ROUTING)) {
273 ret = SDEI_EDENY;
274 goto finish;
275 }
276
277 /* Choose appropriate routing */
278 routing = (flags == SDEI_REGF_RM_ANY) ? INTR_ROUTING_MODE_ANY :
279 INTR_ROUTING_MODE_PE;
280
281 /* Update event registration flag */
282 se->reg_flags = flags;
283
284 /*
285 * ROUTING_SET is permissible only when event composite state is
286 * 'registered, disabled, and not running'. This means that the
287 * interrupt is currently disabled, and not active.
288 */
289 plat_ic_set_spi_routing(map->intr, routing, (u_register_t) mpidr);
290
291finish:
292 sdei_map_unlock(map);
293
294 return ret;
295}
296
297/* Register handler and argument for an SDEI event */
298static int sdei_event_register(int ev_num, uint64_t ep, uint64_t arg,
299 uint64_t flags, uint64_t mpidr)
300{
301 int ret;
302 sdei_entry_t *se;
303 sdei_ev_map_t *map;
304 sdei_state_t backup_state;
305
306 if (!ep || (plat_sdei_validate_entry_point(ep, sdei_client_el()) != 0))
307 return SDEI_EINVAL;
308
309 ret = validate_flags(flags, mpidr);
310 if (ret)
311 return ret;
312
313 /* Check if valid event number */
314 map = find_event_map(ev_num);
315 if (!map)
316 return SDEI_EINVAL;
317
318 /* Private events always target the PE */
319 if (is_event_private(map))
320 flags = SDEI_REGF_RM_PE;
321
322 se = get_event_entry(map);
323
324 /*
325 * Even though register operation is per-event (additionally for private
326 * events, registration is required individually), it has to be
327 * serialised with respect to bind/release, which are global operations.
328 * So we hold the lock throughout, unconditionally.
329 */
330 sdei_map_lock(map);
331
332 backup_state = se->state;
333 if (!can_sdei_state_trans(se, DO_REGISTER))
334 goto fallback;
335
336 /*
337 * When registering for dynamic events, make sure it's been bound
338 * already. This has to be the case as, without binding, the client
339 * can't know about the event number to register for.
340 */
341 if (is_map_dynamic(map) && !is_map_bound(map))
342 goto fallback;
343
344 if (is_event_private(map)) {
345 /* Multiple calls to register are possible for private events */
346 assert(map->reg_count >= 0);
347 } else {
348 /* Only single call to register is possible for shared events */
349 assert(map->reg_count == 0);
350 }
351
352 if (is_map_bound(map)) {
353 /* Meanwhile, did any PE ACK the interrupt? */
354 if (plat_ic_get_interrupt_active(map->intr))
355 goto fallback;
356
357 /* The interrupt must currently owned by Non-secure */
358 if (plat_ic_get_interrupt_type(map->intr) != INTR_TYPE_NS)
359 goto fallback;
360
361 /*
362 * Disable forwarding of new interrupt triggers to CPU
363 * interface.
364 */
365 plat_ic_disable_interrupt(map->intr);
366
367 /*
368 * Any events that are triggered after register and before
369 * enable should remain pending. Clear any previous interrupt
370 * triggers which are pending (except for SGIs). This has no
371 * affect on level-triggered interrupts.
372 */
373 if (ev_num != SDEI_EVENT_0)
374 plat_ic_clear_interrupt_pending(map->intr);
375
376 /* Map interrupt to EL3 and program the correct priority */
377 plat_ic_set_interrupt_type(map->intr, INTR_TYPE_EL3);
378
379 /* Program the appropriate interrupt priority */
380 plat_ic_set_interrupt_priority(map->intr, sdei_event_priority(map));
381
382 /*
383 * Set the routing mode for shared event as requested. We
384 * already ensure that shared events get bound to SPIs.
385 */
386 if (is_event_shared(map)) {
387 plat_ic_set_spi_routing(map->intr,
388 ((flags == SDEI_REGF_RM_ANY) ?
389 INTR_ROUTING_MODE_ANY :
390 INTR_ROUTING_MODE_PE),
391 (u_register_t) mpidr);
392 }
393 }
394
395 /* Populate event entries */
396 set_sdei_entry(se, ep, arg, flags, mpidr);
397
398 /* Increment register count */
399 map->reg_count++;
400
401 sdei_map_unlock(map);
402
403 return 0;
404
405fallback:
406 /* Reinstate previous state */
407 se->state = backup_state;
408
409 sdei_map_unlock(map);
410
411 return SDEI_EDENY;
412}
413
414/* Enable SDEI event */
415static int sdei_event_enable(int ev_num)
416{
417 sdei_ev_map_t *map;
418 sdei_entry_t *se;
419 int ret, before, after;
420
421 /* Check if valid event number */
422 map = find_event_map(ev_num);
423 if (!map)
424 return SDEI_EINVAL;
425
426 se = get_event_entry(map);
427 ret = SDEI_EDENY;
428
429 if (is_event_shared(map))
430 sdei_map_lock(map);
431
432 before = GET_EV_STATE(se, ENABLED);
433 if (!can_sdei_state_trans(se, DO_ENABLE))
434 goto finish;
435 after = GET_EV_STATE(se, ENABLED);
436
437 /*
438 * Enable interrupt for bound events only if there's a change in enabled
439 * state.
440 */
441 if (is_map_bound(map) && (!before && after))
442 plat_ic_enable_interrupt(map->intr);
443
444 ret = 0;
445
446finish:
447 if (is_event_shared(map))
448 sdei_map_unlock(map);
449
450 return ret;
451}
452
453/* Disable SDEI event */
454static int sdei_event_disable(int ev_num)
455{
456 sdei_ev_map_t *map;
457 sdei_entry_t *se;
458 int ret, before, after;
459
460 /* Check if valid event number */
461 map = find_event_map(ev_num);
462 if (!map)
463 return SDEI_EINVAL;
464
465 se = get_event_entry(map);
466 ret = SDEI_EDENY;
467
468 if (is_event_shared(map))
469 sdei_map_lock(map);
470
471 before = GET_EV_STATE(se, ENABLED);
472 if (!can_sdei_state_trans(se, DO_DISABLE))
473 goto finish;
474 after = GET_EV_STATE(se, ENABLED);
475
476 /*
477 * Disable interrupt for bound events only if there's a change in
478 * enabled state.
479 */
480 if (is_map_bound(map) && (before && !after))
481 plat_ic_disable_interrupt(map->intr);
482
483 ret = 0;
484
485finish:
486 if (is_event_shared(map))
487 sdei_map_unlock(map);
488
489 return ret;
490}
491
492/* Query SDEI event information */
493static uint64_t sdei_event_get_info(int ev_num, int info)
494{
495 sdei_entry_t *se;
496 sdei_ev_map_t *map;
497
498 unsigned int flags, registered;
499 uint64_t affinity;
500
501 /* Check if valid event number */
502 map = find_event_map(ev_num);
503 if (!map)
504 return SDEI_EINVAL;
505
506 se = get_event_entry(map);
507
508 if (is_event_shared(map))
509 sdei_map_lock(map);
510
511 /* Sample state under lock */
512 registered = GET_EV_STATE(se, REGISTERED);
513 flags = se->reg_flags;
514 affinity = se->affinity;
515
516 if (is_event_shared(map))
517 sdei_map_unlock(map);
518
519 switch (info) {
520 case SDEI_INFO_EV_TYPE:
521 return is_event_shared(map);
522
523 case SDEI_INFO_EV_NOT_SIGNALED:
524 return !is_event_signalable(map);
525
526 case SDEI_INFO_EV_PRIORITY:
527 return is_event_critical(map);
528
529 case SDEI_INFO_EV_ROUTING_MODE:
530 if (!is_event_shared(map))
531 return SDEI_EINVAL;
532 if (!registered)
533 return SDEI_EDENY;
534 return (flags == SDEI_REGF_RM_PE);
535
536 case SDEI_INFO_EV_ROUTING_AFF:
537 if (!is_event_shared(map))
538 return SDEI_EINVAL;
539 if (!registered)
540 return SDEI_EDENY;
541 if (flags != SDEI_REGF_RM_PE)
542 return SDEI_EINVAL;
543 return affinity;
544
545 default:
546 return SDEI_EINVAL;
547 }
548}
549
550/* Unregister an SDEI event */
551static int sdei_event_unregister(int ev_num)
552{
553 int ret = 0;
554 sdei_entry_t *se;
555 sdei_ev_map_t *map;
556
557 /* Check if valid event number */
558 map = find_event_map(ev_num);
559 if (!map)
560 return SDEI_EINVAL;
561
562 se = get_event_entry(map);
563
564 /*
565 * Even though unregister operation is per-event (additionally for
566 * private events, unregistration is required individually), it has to
567 * be serialised with respect to bind/release, which are global
568 * operations. So we hold the lock throughout, unconditionally.
569 */
570 sdei_map_lock(map);
571
572 if (!can_sdei_state_trans(se, DO_UNREGISTER)) {
573 /*
574 * Even if the call is invalid, and the handler is running (for
575 * example, having unregistered from a running handler earlier),
576 * return pending error code; otherwise, return deny.
577 */
578 ret = GET_EV_STATE(se, RUNNING) ? SDEI_EPEND : SDEI_EDENY;
579
580 goto finish;
581 }
582
583 map->reg_count--;
584 if (is_event_private(map)) {
585 /* Multiple calls to register are possible for private events */
586 assert(map->reg_count >= 0);
587 } else {
588 /* Only single call to register is possible for shared events */
589 assert(map->reg_count == 0);
590 }
591
592 if (is_map_bound(map)) {
593 plat_ic_disable_interrupt(map->intr);
594
595 /*
596 * Clear pending interrupt. Skip for SGIs as they may not be
597 * cleared on interrupt controllers.
598 */
599 if (ev_num != SDEI_EVENT_0)
600 plat_ic_clear_interrupt_pending(map->intr);
601
602 assert(plat_ic_get_interrupt_type(map->intr) == INTR_TYPE_EL3);
603 plat_ic_set_interrupt_type(map->intr, INTR_TYPE_NS);
604 plat_ic_set_interrupt_priority(map->intr, LOWEST_INTR_PRIORITY);
605 }
606
607 clear_event_entries(se);
608
609 /*
610 * If the handler is running at the time of unregister, return the
611 * pending error code.
612 */
613 if (GET_EV_STATE(se, RUNNING))
614 ret = SDEI_EPEND;
615
616finish:
617 sdei_map_unlock(map);
618
619 return ret;
620}
621
622/* Query status of an SDEI event */
623static int sdei_event_status(int ev_num)
624{
625 sdei_ev_map_t *map;
626 sdei_entry_t *se;
627 sdei_state_t state;
628
629 /* Check if valid event number */
630 map = find_event_map(ev_num);
631 if (!map)
632 return SDEI_EINVAL;
633
634 se = get_event_entry(map);
635
636 if (is_event_shared(map))
637 sdei_map_lock(map);
638
639 /* State value directly maps to the expected return format */
640 state = se->state;
641
642 if (is_event_shared(map))
643 sdei_map_unlock(map);
644
645 return state;
646}
647
648/* Bind an SDEI event to an interrupt */
649static int sdei_interrupt_bind(int intr_num)
650{
651 sdei_ev_map_t *map;
652 int retry = 1, shared_mapping;
653
654 /* SGIs are not allowed to be bound */
655 if (plat_ic_is_sgi(intr_num))
656 return SDEI_EINVAL;
657
658 shared_mapping = plat_ic_is_spi(intr_num);
659 do {
660 /*
661 * Bail out if there is already an event for this interrupt,
662 * either platform-defined or dynamic.
663 */
664 map = find_event_map_by_intr(intr_num, shared_mapping);
665 if (map) {
666 if (is_map_dynamic(map)) {
667 if (is_map_bound(map)) {
668 /*
669 * Dynamic event, already bound. Return
670 * event number.
671 */
672 return map->ev_num;
673 }
674 } else {
675 /* Binding non-dynamic event */
676 return SDEI_EINVAL;
677 }
678 }
679
680 /*
681 * The interrupt is not bound yet. Try to find a free slot to
682 * bind it. Free dynamic mappings have their interrupt set as
683 * SDEI_DYN_IRQ.
684 */
685 map = find_event_map_by_intr(SDEI_DYN_IRQ, shared_mapping);
686 if (!map)
687 return SDEI_ENOMEM;
688
689 /* The returned mapping must be dynamic */
690 assert(is_map_dynamic(map));
691
692 /*
693 * We cannot assert for bound maps here, as we might be racing
694 * with another bind.
695 */
696
697 /* The requested interrupt must already belong to NS */
698 if (plat_ic_get_interrupt_type(intr_num) != INTR_TYPE_NS)
699 return SDEI_EDENY;
700
701 /*
702 * Interrupt programming and ownership transfer are deferred
703 * until register.
704 */
705
706 sdei_map_lock(map);
707 if (!is_map_bound(map)) {
708 map->intr = intr_num;
709 set_map_bound(map);
710 retry = 0;
711 }
712 sdei_map_unlock(map);
713 } while (retry);
714
715 return map->ev_num;
716}
717
718/* Release a bound SDEI event previously to an interrupt */
719static int sdei_interrupt_release(int ev_num)
720{
721 int ret = 0;
722 sdei_ev_map_t *map;
723 sdei_entry_t *se;
724
725 /* Check if valid event number */
726 map = find_event_map(ev_num);
727 if (!map)
728 return SDEI_EINVAL;
729
730 if (!is_map_dynamic(map))
731 return SDEI_EINVAL;
732
733 se = get_event_entry(map);
734
735 sdei_map_lock(map);
736
737 /* Event must have been unregistered before release */
738 if (map->reg_count != 0) {
739 ret = SDEI_EDENY;
740 goto finish;
741 }
742
743 /*
744 * Interrupt release never causes the state to change. We only check
745 * whether it's permissible or not.
746 */
747 if (!can_sdei_state_trans(se, DO_RELEASE)) {
748 ret = SDEI_EDENY;
749 goto finish;
750 }
751
752 if (is_map_bound(map)) {
753 /*
754 * Deny release if the interrupt is active, which means it's
755 * probably being acknowledged and handled elsewhere.
756 */
757 if (plat_ic_get_interrupt_active(map->intr)) {
758 ret = SDEI_EDENY;
759 goto finish;
760 }
761
762 /*
763 * Interrupt programming and ownership transfer are already done
764 * during unregister.
765 */
766
767 map->intr = SDEI_DYN_IRQ;
768 clr_map_bound(map);
769 } else {
770 SDEI_LOG("Error release bound:%d cnt:%d\n", is_map_bound(map),
771 map->reg_count);
772 ret = SDEI_EINVAL;
773 }
774
775finish:
776 sdei_map_unlock(map);
777
778 return ret;
779}
780
781/* Perform reset of private SDEI events */
782static int sdei_private_reset(void)
783{
784 sdei_ev_map_t *map;
785 int ret = 0, final_ret = 0, i;
786
787 /* Unregister all private events */
788 for_each_private_map(i, map) {
789 /*
790 * The unregister can fail if the event is not registered, which
791 * is allowed, and a deny will be returned. But if the event is
792 * running or unregister pending, the call fails.
793 */
794 ret = sdei_event_unregister(map->ev_num);
795 if ((ret == SDEI_EPEND) && (final_ret == 0))
796 final_ret = ret;
797 }
798
799 return final_ret;
800}
801
802/* Perform reset of shared SDEI events */
803static int sdei_shared_reset(void)
804{
805 const sdei_mapping_t *mapping;
806 sdei_ev_map_t *map;
807 int ret = 0, final_ret = 0, i, j;
808
809 /* Unregister all shared events */
810 for_each_shared_map(i, map) {
811 /*
812 * The unregister can fail if the event is not registered, which
813 * is allowed, and a deny will be returned. But if the event is
814 * running or unregister pending, the call fails.
815 */
816 ret = sdei_event_unregister(map->ev_num);
817 if ((ret == SDEI_EPEND) && (final_ret == 0))
818 final_ret = ret;
819 }
820
821 if (final_ret != 0)
822 return final_ret;
823
824 /*
825 * Loop through both private and shared mappings, and release all
826 * bindings.
827 */
828 for_each_mapping_type(i, mapping) {
829 iterate_mapping(mapping, j, map) {
830 /*
831 * Release bindings for mappings that are dynamic and
832 * bound.
833 */
834 if (is_map_dynamic(map) && is_map_bound(map)) {
835 /*
836 * Any failure to release would mean there is at
837 * least a PE registered for the event.
838 */
839 ret = sdei_interrupt_release(map->ev_num);
840 if ((ret != 0) && (final_ret == 0))
841 final_ret = ret;
842 }
843 }
844 }
845
846 return final_ret;
847}
848
849/* Send a signal to another SDEI client PE */
850int sdei_signal(int event, uint64_t target_pe)
851{
852 sdei_ev_map_t *map;
853
854 /* Only event 0 can be signalled */
855 if (event != SDEI_EVENT_0)
856 return SDEI_EINVAL;
857
858 /* Find mapping for event 0 */
859 map = find_event_map(SDEI_EVENT_0);
860 if (!map)
861 return SDEI_EINVAL;
862
863 /* The event must be signalable */
864 if (!is_event_signalable(map))
865 return SDEI_EINVAL;
866
867 /* Validate target */
868 if (plat_core_pos_by_mpidr(target_pe) < 0)
869 return SDEI_EINVAL;
870
871 /* Raise SGI. Platform will validate target_pe */
872 plat_ic_raise_el3_sgi(map->intr, (u_register_t) target_pe);
873
874 return 0;
875}
876
877/* Query SDEI dispatcher features */
878uint64_t sdei_features(unsigned int feature)
879{
880 if (feature == SDEI_FEATURE_BIND_SLOTS) {
881 return FEATURE_BIND_SLOTS(num_dyn_priv_slots,
882 num_dyn_shrd_slots);
883 }
884
885 return SDEI_EINVAL;
886}
887
888/* SDEI top level handler for servicing SMCs */
889uint64_t sdei_smc_handler(uint32_t smc_fid,
890 uint64_t x1,
891 uint64_t x2,
892 uint64_t x3,
893 uint64_t x4,
894 void *cookie,
895 void *handle,
896 uint64_t flags)
897{
898
899 uint64_t x5;
900 int ss = get_interrupt_src_ss(flags);
901 int64_t ret;
902 unsigned int resume = 0;
903
904 if (ss != NON_SECURE)
905 SMC_RET1(handle, SMC_UNK);
906
907 /* Verify the caller EL */
908 if (GET_EL(read_spsr_el3()) != sdei_client_el())
909 SMC_RET1(handle, SMC_UNK);
910
911 switch (smc_fid) {
912 case SDEI_VERSION:
913 SDEI_LOG("> VER\n");
914 ret = sdei_version();
915 SDEI_LOG("< VER:%lx\n", ret);
916 SMC_RET1(handle, ret);
917 break;
918
919 case SDEI_EVENT_REGISTER:
920 x5 = SMC_GET_GP(handle, CTX_GPREG_X5);
921 SDEI_LOG("> REG(n:%d e:%lx a:%lx f:%x m:%lx)\n", (int) x1,
922 x2, x3, (int) x4, x5);
923 ret = sdei_event_register(x1, x2, x3, x4, x5);
924 SDEI_LOG("< REG:%ld\n", ret);
925 SMC_RET1(handle, ret);
926 break;
927
928 case SDEI_EVENT_ENABLE:
929 SDEI_LOG("> ENABLE(n:%d)\n", (int) x1);
930 ret = sdei_event_enable(x1);
931 SDEI_LOG("< ENABLE:%ld\n", ret);
932 SMC_RET1(handle, ret);
933 break;
934
935 case SDEI_EVENT_DISABLE:
936 SDEI_LOG("> DISABLE(n:%d)\n", (int) x1);
937 ret = sdei_event_disable(x1);
938 SDEI_LOG("< DISABLE:%ld\n", ret);
939 SMC_RET1(handle, ret);
940 break;
941
942 case SDEI_EVENT_CONTEXT:
943 SDEI_LOG("> CTX(p:%d):%lx\n", (int) x1, read_mpidr_el1());
944 ret = sdei_event_context(handle, x1);
945 SDEI_LOG("< CTX:%ld\n", ret);
946 SMC_RET1(handle, ret);
947 break;
948
949 case SDEI_EVENT_COMPLETE_AND_RESUME:
950 resume = 1;
951 /* Fall through */
952
953 case SDEI_EVENT_COMPLETE:
954 SDEI_LOG("> COMPLETE(r:%d sta/ep:%lx):%lx\n", resume, x1,
955 read_mpidr_el1());
956 ret = sdei_event_complete(resume, x1);
957 SDEI_LOG("< COMPLETE:%lx\n", ret);
958
959 /*
960 * Set error code only if the call failed. If the call
961 * succeeded, we discard the dispatched context, and restore the
962 * interrupted context to a pristine condition, and therefore
963 * shouldn't be modified. We don't return to the caller in this
964 * case anyway.
965 */
966 if (ret)
967 SMC_RET1(handle, ret);
968
969 SMC_RET0(handle);
970 break;
971
972 case SDEI_EVENT_STATUS:
973 SDEI_LOG("> STAT(n:%d)\n", (int) x1);
974 ret = sdei_event_status(x1);
975 SDEI_LOG("< STAT:%ld\n", ret);
976 SMC_RET1(handle, ret);
977 break;
978
979 case SDEI_EVENT_GET_INFO:
980 SDEI_LOG("> INFO(n:%d, %d)\n", (int) x1, (int) x2);
981 ret = sdei_event_get_info(x1, x2);
982 SDEI_LOG("< INFO:%ld\n", ret);
983 SMC_RET1(handle, ret);
984 break;
985
986 case SDEI_EVENT_UNREGISTER:
987 SDEI_LOG("> UNREG(n:%d)\n", (int) x1);
988 ret = sdei_event_unregister(x1);
989 SDEI_LOG("< UNREG:%ld\n", ret);
990 SMC_RET1(handle, ret);
991 break;
992
993 case SDEI_PE_UNMASK:
994 SDEI_LOG("> UNMASK:%lx\n", read_mpidr_el1());
995 sdei_pe_unmask();
996 SDEI_LOG("< UNMASK:%ld\n", 0);
997 SMC_RET1(handle, 0);
998 break;
999
1000 case SDEI_PE_MASK:
1001 SDEI_LOG("> MASK:%lx\n", read_mpidr_el1());
1002 ret = sdei_pe_mask();
1003 SDEI_LOG("< MASK:%ld\n", ret);
1004 SMC_RET1(handle, ret);
1005 break;
1006
1007 case SDEI_INTERRUPT_BIND:
1008 SDEI_LOG("> BIND(%d)\n", (int) x1);
1009 ret = sdei_interrupt_bind(x1);
1010 SDEI_LOG("< BIND:%ld\n", ret);
1011 SMC_RET1(handle, ret);
1012 break;
1013
1014 case SDEI_INTERRUPT_RELEASE:
1015 SDEI_LOG("> REL(%d)\n", (int) x1);
1016 ret = sdei_interrupt_release(x1);
1017 SDEI_LOG("< REL:%ld\n", ret);
1018 SMC_RET1(handle, ret);
1019 break;
1020
1021 case SDEI_SHARED_RESET:
1022 SDEI_LOG("> S_RESET():%lx\n", read_mpidr_el1());
1023 ret = sdei_shared_reset();
1024 SDEI_LOG("< S_RESET:%ld\n", ret);
1025 SMC_RET1(handle, ret);
1026 break;
1027
1028 case SDEI_PRIVATE_RESET:
1029 SDEI_LOG("> P_RESET():%lx\n", read_mpidr_el1());
1030 ret = sdei_private_reset();
1031 SDEI_LOG("< P_RESET:%ld\n", ret);
1032 SMC_RET1(handle, ret);
1033 break;
1034
1035 case SDEI_EVENT_ROUTING_SET:
1036 SDEI_LOG("> ROUTE_SET(n:%d f:%lx aff:%lx)\n", (int) x1, x2, x3);
1037 ret = sdei_event_routing_set(x1, x2, x3);
1038 SDEI_LOG("< ROUTE_SET:%ld\n", ret);
1039 SMC_RET1(handle, ret);
1040 break;
1041
1042 case SDEI_FEATURES:
1043 SDEI_LOG("> FTRS(f:%lx)\n", x1);
1044 ret = sdei_features(x1);
1045 SDEI_LOG("< FTRS:%lx\n", ret);
1046 SMC_RET1(handle, ret);
1047 break;
1048
1049 case SDEI_EVENT_SIGNAL:
1050 SDEI_LOG("> SIGNAL(e:%lx t:%lx)\n", x1, x2);
1051 ret = sdei_signal(x1, x2);
1052 SDEI_LOG("< SIGNAL:%ld\n", ret);
1053 SMC_RET1(handle, ret);
1054 break;
1055 default:
1056 break;
1057 }
1058
1059 WARN("Unimplemented SDEI Call: 0x%x\n", smc_fid);
1060 SMC_RET1(handle, SMC_UNK);
1061}
1062
1063/* Subscribe to PSCI CPU on to initialize per-CPU SDEI configuration */
1064SUBSCRIBE_TO_EVENT(psci_cpu_on_finish, sdei_cpu_on_init);