1 /*
2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
4 * for more details.
5 *
6 * Copyright (c) 2008-2009 Silicon Graphics, Inc. All Rights Reserved.
7 */
8
9 /*
10 * Cross Partition Communication (XPC) uv-based functions.
11 *
12 * Architecture specific implementation of common functions.
13 *
14 */
15
16 #include <linux/kernel.h>
17 #include <linux/mm.h>
18 #include <linux/interrupt.h>
19 #include <linux/delay.h>
20 #include <linux/device.h>
21 #include <linux/cpu.h>
22 #include <linux/module.h>
23 #include <linux/err.h>
24 #include <linux/slab.h>
25 #include <linux/numa.h>
26 #include <asm/uv/uv_hub.h>
27 #include <asm/uv/bios.h>
28 #include <asm/uv/uv_irq.h>
29 #include "../sgi-gru/gru.h"
30 #include "../sgi-gru/grukservices.h"
31 #include "xpc.h"
32
33 static struct xpc_heartbeat_uv *xpc_heartbeat_uv;
34
35 #define XPC_ACTIVATE_MSG_SIZE_UV (1 * GRU_CACHE_LINE_BYTES)
36 #define XPC_ACTIVATE_MQ_SIZE_UV (4 * XP_MAX_NPARTITIONS_UV * \
37 XPC_ACTIVATE_MSG_SIZE_UV)
38 #define XPC_ACTIVATE_IRQ_NAME "xpc_activate"
39
40 #define XPC_NOTIFY_MSG_SIZE_UV (2 * GRU_CACHE_LINE_BYTES)
41 #define XPC_NOTIFY_MQ_SIZE_UV (4 * XP_MAX_NPARTITIONS_UV * \
42 XPC_NOTIFY_MSG_SIZE_UV)
43 #define XPC_NOTIFY_IRQ_NAME "xpc_notify"
44
45 static int xpc_mq_node = NUMA_NO_NODE;
46
47 static struct xpc_gru_mq_uv *xpc_activate_mq_uv;
48 static struct xpc_gru_mq_uv *xpc_notify_mq_uv;
49
50 static int
xpc_setup_partitions_uv(void)51 xpc_setup_partitions_uv(void)
52 {
53 short partid;
54 struct xpc_partition_uv *part_uv;
55
56 for (partid = 0; partid < XP_MAX_NPARTITIONS_UV; partid++) {
57 part_uv = &xpc_partitions[partid].sn.uv;
58
59 mutex_init(&part_uv->cached_activate_gru_mq_desc_mutex);
60 spin_lock_init(&part_uv->flags_lock);
61 part_uv->remote_act_state = XPC_P_AS_INACTIVE;
62 }
63 return 0;
64 }
65
66 static void
xpc_teardown_partitions_uv(void)67 xpc_teardown_partitions_uv(void)
68 {
69 short partid;
70 struct xpc_partition_uv *part_uv;
71 unsigned long irq_flags;
72
73 for (partid = 0; partid < XP_MAX_NPARTITIONS_UV; partid++) {
74 part_uv = &xpc_partitions[partid].sn.uv;
75
76 if (part_uv->cached_activate_gru_mq_desc != NULL) {
77 mutex_lock(&part_uv->cached_activate_gru_mq_desc_mutex);
78 spin_lock_irqsave(&part_uv->flags_lock, irq_flags);
79 part_uv->flags &= ~XPC_P_CACHED_ACTIVATE_GRU_MQ_DESC_UV;
80 spin_unlock_irqrestore(&part_uv->flags_lock, irq_flags);
81 kfree(part_uv->cached_activate_gru_mq_desc);
82 part_uv->cached_activate_gru_mq_desc = NULL;
83 mutex_unlock(&part_uv->
84 cached_activate_gru_mq_desc_mutex);
85 }
86 }
87 }
88
89 static int
xpc_get_gru_mq_irq_uv(struct xpc_gru_mq_uv * mq,int cpu,char * irq_name)90 xpc_get_gru_mq_irq_uv(struct xpc_gru_mq_uv *mq, int cpu, char *irq_name)
91 {
92 int mmr_pnode = uv_blade_to_pnode(mq->mmr_blade);
93
94 mq->irq = uv_setup_irq(irq_name, cpu, mq->mmr_blade, mq->mmr_offset,
95 UV_AFFINITY_CPU);
96 if (mq->irq < 0)
97 return mq->irq;
98
99 mq->mmr_value = uv_read_global_mmr64(mmr_pnode, mq->mmr_offset);
100
101 return 0;
102 }
103
104 static void
xpc_release_gru_mq_irq_uv(struct xpc_gru_mq_uv * mq)105 xpc_release_gru_mq_irq_uv(struct xpc_gru_mq_uv *mq)
106 {
107 uv_teardown_irq(mq->irq);
108 }
109
110 static int
xpc_gru_mq_watchlist_alloc_uv(struct xpc_gru_mq_uv * mq)111 xpc_gru_mq_watchlist_alloc_uv(struct xpc_gru_mq_uv *mq)
112 {
113 int ret;
114
115 ret = uv_bios_mq_watchlist_alloc(uv_gpa(mq->address),
116 mq->order, &mq->mmr_offset);
117 if (ret < 0) {
118 dev_err(xpc_part, "uv_bios_mq_watchlist_alloc() failed, "
119 "ret=%d\n", ret);
120 return ret;
121 }
122
123 mq->watchlist_num = ret;
124 return 0;
125 }
126
127 static void
xpc_gru_mq_watchlist_free_uv(struct xpc_gru_mq_uv * mq)128 xpc_gru_mq_watchlist_free_uv(struct xpc_gru_mq_uv *mq)
129 {
130 int ret;
131 int mmr_pnode = uv_blade_to_pnode(mq->mmr_blade);
132
133 ret = uv_bios_mq_watchlist_free(mmr_pnode, mq->watchlist_num);
134 BUG_ON(ret != BIOS_STATUS_SUCCESS);
135 }
136
137 static struct xpc_gru_mq_uv *
xpc_create_gru_mq_uv(unsigned int mq_size,int cpu,char * irq_name,irq_handler_t irq_handler)138 xpc_create_gru_mq_uv(unsigned int mq_size, int cpu, char *irq_name,
139 irq_handler_t irq_handler)
140 {
141 enum xp_retval xp_ret;
142 int ret;
143 int nid;
144 int nasid;
145 int pg_order;
146 struct page *page;
147 struct xpc_gru_mq_uv *mq;
148 struct uv_IO_APIC_route_entry *mmr_value;
149
150 mq = kmalloc_obj(struct xpc_gru_mq_uv);
151 if (mq == NULL) {
152 dev_err(xpc_part, "xpc_create_gru_mq_uv() failed to kmalloc() "
153 "a xpc_gru_mq_uv structure\n");
154 ret = -ENOMEM;
155 goto out_0;
156 }
157
158 mq->gru_mq_desc = kzalloc_obj(struct gru_message_queue_desc);
159 if (mq->gru_mq_desc == NULL) {
160 dev_err(xpc_part, "xpc_create_gru_mq_uv() failed to kmalloc() "
161 "a gru_message_queue_desc structure\n");
162 ret = -ENOMEM;
163 goto out_1;
164 }
165
166 pg_order = get_order(mq_size);
167 mq->order = pg_order + PAGE_SHIFT;
168 mq_size = 1UL << mq->order;
169
170 mq->mmr_blade = uv_cpu_to_blade_id(cpu);
171
172 nid = cpu_to_node(cpu);
173 page = __alloc_pages_node(nid,
174 GFP_KERNEL | __GFP_ZERO | __GFP_THISNODE,
175 pg_order);
176 if (page == NULL) {
177 dev_err(xpc_part, "xpc_create_gru_mq_uv() failed to alloc %d "
178 "bytes of memory on nid=%d for GRU mq\n", mq_size, nid);
179 ret = -ENOMEM;
180 goto out_2;
181 }
182 mq->address = page_address(page);
183
184 /* enable generation of irq when GRU mq operation occurs to this mq */
185 ret = xpc_gru_mq_watchlist_alloc_uv(mq);
186 if (ret != 0)
187 goto out_3;
188
189 ret = xpc_get_gru_mq_irq_uv(mq, cpu, irq_name);
190 if (ret != 0)
191 goto out_4;
192
193 ret = request_irq(mq->irq, irq_handler, 0, irq_name, NULL);
194 if (ret != 0) {
195 dev_err(xpc_part, "request_irq(irq=%d) returned error=%d\n",
196 mq->irq, -ret);
197 goto out_5;
198 }
199
200 nasid = UV_PNODE_TO_NASID(uv_cpu_to_pnode(cpu));
201
202 mmr_value = (struct uv_IO_APIC_route_entry *)&mq->mmr_value;
203 ret = gru_create_message_queue(mq->gru_mq_desc, mq->address, mq_size,
204 nasid, mmr_value->vector, mmr_value->dest);
205 if (ret != 0) {
206 dev_err(xpc_part, "gru_create_message_queue() returned "
207 "error=%d\n", ret);
208 ret = -EINVAL;
209 goto out_6;
210 }
211
212 /* allow other partitions to access this GRU mq */
213 xp_ret = xp_expand_memprotect(xp_pa(mq->address), mq_size);
214 if (xp_ret != xpSuccess) {
215 ret = -EACCES;
216 goto out_6;
217 }
218
219 return mq;
220
221 /* something went wrong */
222 out_6:
223 free_irq(mq->irq, NULL);
224 out_5:
225 xpc_release_gru_mq_irq_uv(mq);
226 out_4:
227 xpc_gru_mq_watchlist_free_uv(mq);
228 out_3:
229 free_pages((unsigned long)mq->address, pg_order);
230 out_2:
231 kfree(mq->gru_mq_desc);
232 out_1:
233 kfree(mq);
234 out_0:
235 return ERR_PTR(ret);
236 }
237
238 static void
xpc_destroy_gru_mq_uv(struct xpc_gru_mq_uv * mq)239 xpc_destroy_gru_mq_uv(struct xpc_gru_mq_uv *mq)
240 {
241 unsigned int mq_size;
242 int pg_order;
243 int ret;
244
245 /* disallow other partitions to access GRU mq */
246 mq_size = 1UL << mq->order;
247 ret = xp_restrict_memprotect(xp_pa(mq->address), mq_size);
248 BUG_ON(ret != xpSuccess);
249
250 /* unregister irq handler and release mq irq/vector mapping */
251 free_irq(mq->irq, NULL);
252 xpc_release_gru_mq_irq_uv(mq);
253
254 /* disable generation of irq when GRU mq op occurs to this mq */
255 xpc_gru_mq_watchlist_free_uv(mq);
256
257 pg_order = mq->order - PAGE_SHIFT;
258 free_pages((unsigned long)mq->address, pg_order);
259
260 kfree(mq);
261 }
262
263 static enum xp_retval
xpc_send_gru_msg(struct gru_message_queue_desc * gru_mq_desc,void * msg,size_t msg_size)264 xpc_send_gru_msg(struct gru_message_queue_desc *gru_mq_desc, void *msg,
265 size_t msg_size)
266 {
267 enum xp_retval xp_ret;
268 int ret;
269
270 while (1) {
271 ret = gru_send_message_gpa(gru_mq_desc, msg, msg_size);
272 if (ret == MQE_OK) {
273 xp_ret = xpSuccess;
274 break;
275 }
276
277 if (ret == MQE_QUEUE_FULL) {
278 dev_dbg(xpc_chan, "gru_send_message_gpa() returned "
279 "error=MQE_QUEUE_FULL\n");
280 /* !!! handle QLimit reached; delay & try again */
281 /* ??? Do we add a limit to the number of retries? */
282 (void)msleep_interruptible(10);
283 } else if (ret == MQE_CONGESTION) {
284 dev_dbg(xpc_chan, "gru_send_message_gpa() returned "
285 "error=MQE_CONGESTION\n");
286 /* !!! handle LB Overflow; simply try again */
287 /* ??? Do we add a limit to the number of retries? */
288 } else {
289 /* !!! Currently this is MQE_UNEXPECTED_CB_ERR */
290 dev_err(xpc_chan, "gru_send_message_gpa() returned "
291 "error=%d\n", ret);
292 xp_ret = xpGruSendMqError;
293 break;
294 }
295 }
296 return xp_ret;
297 }
298
299 static void
xpc_process_activate_IRQ_rcvd_uv(void)300 xpc_process_activate_IRQ_rcvd_uv(void)
301 {
302 unsigned long irq_flags;
303 short partid;
304 struct xpc_partition *part;
305 u8 act_state_req;
306
307 DBUG_ON(xpc_activate_IRQ_rcvd == 0);
308
309 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
310 for (partid = 0; partid < XP_MAX_NPARTITIONS_UV; partid++) {
311 part = &xpc_partitions[partid];
312
313 if (part->sn.uv.act_state_req == 0)
314 continue;
315
316 xpc_activate_IRQ_rcvd--;
317 BUG_ON(xpc_activate_IRQ_rcvd < 0);
318
319 act_state_req = part->sn.uv.act_state_req;
320 part->sn.uv.act_state_req = 0;
321 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
322
323 if (act_state_req == XPC_P_ASR_ACTIVATE_UV) {
324 if (part->act_state == XPC_P_AS_INACTIVE)
325 xpc_activate_partition(part);
326 else if (part->act_state == XPC_P_AS_DEACTIVATING)
327 XPC_DEACTIVATE_PARTITION(part, xpReactivating);
328
329 } else if (act_state_req == XPC_P_ASR_REACTIVATE_UV) {
330 if (part->act_state == XPC_P_AS_INACTIVE)
331 xpc_activate_partition(part);
332 else
333 XPC_DEACTIVATE_PARTITION(part, xpReactivating);
334
335 } else if (act_state_req == XPC_P_ASR_DEACTIVATE_UV) {
336 XPC_DEACTIVATE_PARTITION(part, part->sn.uv.reason);
337
338 } else {
339 BUG();
340 }
341
342 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
343 if (xpc_activate_IRQ_rcvd == 0)
344 break;
345 }
346 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
347
348 }
349
350 static void
xpc_handle_activate_mq_msg_uv(struct xpc_partition * part,struct xpc_activate_mq_msghdr_uv * msg_hdr,int part_setup,int * wakeup_hb_checker)351 xpc_handle_activate_mq_msg_uv(struct xpc_partition *part,
352 struct xpc_activate_mq_msghdr_uv *msg_hdr,
353 int part_setup,
354 int *wakeup_hb_checker)
355 {
356 unsigned long irq_flags;
357 struct xpc_partition_uv *part_uv = &part->sn.uv;
358 struct xpc_openclose_args *args;
359
360 part_uv->remote_act_state = msg_hdr->act_state;
361
362 switch (msg_hdr->type) {
363 case XPC_ACTIVATE_MQ_MSG_SYNC_ACT_STATE_UV:
364 /* syncing of remote_act_state was just done above */
365 break;
366
367 case XPC_ACTIVATE_MQ_MSG_ACTIVATE_REQ_UV: {
368 struct xpc_activate_mq_msg_activate_req_uv *msg;
369
370 /*
371 * ??? Do we deal here with ts_jiffies being different
372 * ??? if act_state != XPC_P_AS_INACTIVE instead of
373 * ??? below?
374 */
375 msg = container_of(msg_hdr, struct
376 xpc_activate_mq_msg_activate_req_uv, hdr);
377
378 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
379 if (part_uv->act_state_req == 0)
380 xpc_activate_IRQ_rcvd++;
381 part_uv->act_state_req = XPC_P_ASR_ACTIVATE_UV;
382 part->remote_rp_pa = msg->rp_gpa; /* !!! _pa is _gpa */
383 part->remote_rp_ts_jiffies = msg_hdr->rp_ts_jiffies;
384 part_uv->heartbeat_gpa = msg->heartbeat_gpa;
385
386 if (msg->activate_gru_mq_desc_gpa !=
387 part_uv->activate_gru_mq_desc_gpa) {
388 spin_lock(&part_uv->flags_lock);
389 part_uv->flags &= ~XPC_P_CACHED_ACTIVATE_GRU_MQ_DESC_UV;
390 spin_unlock(&part_uv->flags_lock);
391 part_uv->activate_gru_mq_desc_gpa =
392 msg->activate_gru_mq_desc_gpa;
393 }
394 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
395
396 (*wakeup_hb_checker)++;
397 break;
398 }
399 case XPC_ACTIVATE_MQ_MSG_DEACTIVATE_REQ_UV: {
400 struct xpc_activate_mq_msg_deactivate_req_uv *msg;
401
402 msg = container_of(msg_hdr, struct
403 xpc_activate_mq_msg_deactivate_req_uv, hdr);
404
405 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
406 if (part_uv->act_state_req == 0)
407 xpc_activate_IRQ_rcvd++;
408 part_uv->act_state_req = XPC_P_ASR_DEACTIVATE_UV;
409 part_uv->reason = msg->reason;
410 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
411
412 (*wakeup_hb_checker)++;
413 return;
414 }
415 case XPC_ACTIVATE_MQ_MSG_CHCTL_CLOSEREQUEST_UV: {
416 struct xpc_activate_mq_msg_chctl_closerequest_uv *msg;
417
418 if (!part_setup)
419 break;
420
421 msg = container_of(msg_hdr, struct
422 xpc_activate_mq_msg_chctl_closerequest_uv,
423 hdr);
424 args = &part->remote_openclose_args[msg->ch_number];
425 args->reason = msg->reason;
426
427 spin_lock_irqsave(&part->chctl_lock, irq_flags);
428 part->chctl.flags[msg->ch_number] |= XPC_CHCTL_CLOSEREQUEST;
429 spin_unlock_irqrestore(&part->chctl_lock, irq_flags);
430
431 xpc_wakeup_channel_mgr(part);
432 break;
433 }
434 case XPC_ACTIVATE_MQ_MSG_CHCTL_CLOSEREPLY_UV: {
435 struct xpc_activate_mq_msg_chctl_closereply_uv *msg;
436
437 if (!part_setup)
438 break;
439
440 msg = container_of(msg_hdr, struct
441 xpc_activate_mq_msg_chctl_closereply_uv,
442 hdr);
443
444 spin_lock_irqsave(&part->chctl_lock, irq_flags);
445 part->chctl.flags[msg->ch_number] |= XPC_CHCTL_CLOSEREPLY;
446 spin_unlock_irqrestore(&part->chctl_lock, irq_flags);
447
448 xpc_wakeup_channel_mgr(part);
449 break;
450 }
451 case XPC_ACTIVATE_MQ_MSG_CHCTL_OPENREQUEST_UV: {
452 struct xpc_activate_mq_msg_chctl_openrequest_uv *msg;
453
454 if (!part_setup)
455 break;
456
457 msg = container_of(msg_hdr, struct
458 xpc_activate_mq_msg_chctl_openrequest_uv,
459 hdr);
460 args = &part->remote_openclose_args[msg->ch_number];
461 args->entry_size = msg->entry_size;
462 args->local_nentries = msg->local_nentries;
463
464 spin_lock_irqsave(&part->chctl_lock, irq_flags);
465 part->chctl.flags[msg->ch_number] |= XPC_CHCTL_OPENREQUEST;
466 spin_unlock_irqrestore(&part->chctl_lock, irq_flags);
467
468 xpc_wakeup_channel_mgr(part);
469 break;
470 }
471 case XPC_ACTIVATE_MQ_MSG_CHCTL_OPENREPLY_UV: {
472 struct xpc_activate_mq_msg_chctl_openreply_uv *msg;
473
474 if (!part_setup)
475 break;
476
477 msg = container_of(msg_hdr, struct
478 xpc_activate_mq_msg_chctl_openreply_uv, hdr);
479 args = &part->remote_openclose_args[msg->ch_number];
480 args->remote_nentries = msg->remote_nentries;
481 args->local_nentries = msg->local_nentries;
482 args->local_msgqueue_pa = msg->notify_gru_mq_desc_gpa;
483
484 spin_lock_irqsave(&part->chctl_lock, irq_flags);
485 part->chctl.flags[msg->ch_number] |= XPC_CHCTL_OPENREPLY;
486 spin_unlock_irqrestore(&part->chctl_lock, irq_flags);
487
488 xpc_wakeup_channel_mgr(part);
489 break;
490 }
491 case XPC_ACTIVATE_MQ_MSG_CHCTL_OPENCOMPLETE_UV: {
492 struct xpc_activate_mq_msg_chctl_opencomplete_uv *msg;
493
494 if (!part_setup)
495 break;
496
497 msg = container_of(msg_hdr, struct
498 xpc_activate_mq_msg_chctl_opencomplete_uv, hdr);
499 spin_lock_irqsave(&part->chctl_lock, irq_flags);
500 part->chctl.flags[msg->ch_number] |= XPC_CHCTL_OPENCOMPLETE;
501 spin_unlock_irqrestore(&part->chctl_lock, irq_flags);
502
503 xpc_wakeup_channel_mgr(part);
504 }
505 fallthrough;
506 case XPC_ACTIVATE_MQ_MSG_MARK_ENGAGED_UV:
507 spin_lock_irqsave(&part_uv->flags_lock, irq_flags);
508 part_uv->flags |= XPC_P_ENGAGED_UV;
509 spin_unlock_irqrestore(&part_uv->flags_lock, irq_flags);
510 break;
511
512 case XPC_ACTIVATE_MQ_MSG_MARK_DISENGAGED_UV:
513 spin_lock_irqsave(&part_uv->flags_lock, irq_flags);
514 part_uv->flags &= ~XPC_P_ENGAGED_UV;
515 spin_unlock_irqrestore(&part_uv->flags_lock, irq_flags);
516 break;
517
518 default:
519 dev_err(xpc_part, "received unknown activate_mq msg type=%d "
520 "from partition=%d\n", msg_hdr->type, XPC_PARTID(part));
521
522 /* get hb checker to deactivate from the remote partition */
523 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
524 if (part_uv->act_state_req == 0)
525 xpc_activate_IRQ_rcvd++;
526 part_uv->act_state_req = XPC_P_ASR_DEACTIVATE_UV;
527 part_uv->reason = xpBadMsgType;
528 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
529
530 (*wakeup_hb_checker)++;
531 return;
532 }
533
534 if (msg_hdr->rp_ts_jiffies != part->remote_rp_ts_jiffies &&
535 part->remote_rp_ts_jiffies != 0) {
536 /*
537 * ??? Does what we do here need to be sensitive to
538 * ??? act_state or remote_act_state?
539 */
540 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
541 if (part_uv->act_state_req == 0)
542 xpc_activate_IRQ_rcvd++;
543 part_uv->act_state_req = XPC_P_ASR_REACTIVATE_UV;
544 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
545
546 (*wakeup_hb_checker)++;
547 }
548 }
549
550 static irqreturn_t
xpc_handle_activate_IRQ_uv(int irq,void * dev_id)551 xpc_handle_activate_IRQ_uv(int irq, void *dev_id)
552 {
553 struct xpc_activate_mq_msghdr_uv *msg_hdr;
554 short partid;
555 struct xpc_partition *part;
556 int wakeup_hb_checker = 0;
557 int part_referenced;
558
559 while (1) {
560 msg_hdr = gru_get_next_message(xpc_activate_mq_uv->gru_mq_desc);
561 if (msg_hdr == NULL)
562 break;
563
564 partid = msg_hdr->partid;
565 if (partid < 0 || partid >= XP_MAX_NPARTITIONS_UV) {
566 dev_err(xpc_part, "xpc_handle_activate_IRQ_uv() "
567 "received invalid partid=0x%x in message\n",
568 partid);
569 } else {
570 part = &xpc_partitions[partid];
571
572 part_referenced = xpc_part_ref(part);
573 xpc_handle_activate_mq_msg_uv(part, msg_hdr,
574 part_referenced,
575 &wakeup_hb_checker);
576 if (part_referenced)
577 xpc_part_deref(part);
578 }
579
580 gru_free_message(xpc_activate_mq_uv->gru_mq_desc, msg_hdr);
581 }
582
583 if (wakeup_hb_checker)
584 wake_up_interruptible(&xpc_activate_IRQ_wq);
585
586 return IRQ_HANDLED;
587 }
588
589 static enum xp_retval
xpc_cache_remote_gru_mq_desc_uv(struct gru_message_queue_desc * gru_mq_desc,unsigned long gru_mq_desc_gpa)590 xpc_cache_remote_gru_mq_desc_uv(struct gru_message_queue_desc *gru_mq_desc,
591 unsigned long gru_mq_desc_gpa)
592 {
593 enum xp_retval ret;
594
595 ret = xp_remote_memcpy(uv_gpa(gru_mq_desc), gru_mq_desc_gpa,
596 sizeof(struct gru_message_queue_desc));
597 if (ret == xpSuccess)
598 gru_mq_desc->mq = NULL;
599
600 return ret;
601 }
602
603 static enum xp_retval
xpc_send_activate_IRQ_uv(struct xpc_partition * part,void * msg,size_t msg_size,int msg_type)604 xpc_send_activate_IRQ_uv(struct xpc_partition *part, void *msg, size_t msg_size,
605 int msg_type)
606 {
607 struct xpc_activate_mq_msghdr_uv *msg_hdr = msg;
608 struct xpc_partition_uv *part_uv = &part->sn.uv;
609 struct gru_message_queue_desc *gru_mq_desc;
610 unsigned long irq_flags;
611 enum xp_retval ret;
612
613 DBUG_ON(msg_size > XPC_ACTIVATE_MSG_SIZE_UV);
614
615 msg_hdr->type = msg_type;
616 msg_hdr->partid = xp_partition_id;
617 msg_hdr->act_state = part->act_state;
618 msg_hdr->rp_ts_jiffies = xpc_rsvd_page->ts_jiffies;
619
620 mutex_lock(&part_uv->cached_activate_gru_mq_desc_mutex);
621 again:
622 if (!(part_uv->flags & XPC_P_CACHED_ACTIVATE_GRU_MQ_DESC_UV)) {
623 gru_mq_desc = part_uv->cached_activate_gru_mq_desc;
624 if (gru_mq_desc == NULL) {
625 gru_mq_desc = kmalloc_obj(struct gru_message_queue_desc,
626 GFP_ATOMIC);
627 if (gru_mq_desc == NULL) {
628 ret = xpNoMemory;
629 goto done;
630 }
631 part_uv->cached_activate_gru_mq_desc = gru_mq_desc;
632 }
633
634 ret = xpc_cache_remote_gru_mq_desc_uv(gru_mq_desc,
635 part_uv->
636 activate_gru_mq_desc_gpa);
637 if (ret != xpSuccess)
638 goto done;
639
640 spin_lock_irqsave(&part_uv->flags_lock, irq_flags);
641 part_uv->flags |= XPC_P_CACHED_ACTIVATE_GRU_MQ_DESC_UV;
642 spin_unlock_irqrestore(&part_uv->flags_lock, irq_flags);
643 }
644
645 /* ??? Is holding a spin_lock (ch->lock) during this call a bad idea? */
646 ret = xpc_send_gru_msg(part_uv->cached_activate_gru_mq_desc, msg,
647 msg_size);
648 if (ret != xpSuccess) {
649 smp_rmb(); /* ensure a fresh copy of part_uv->flags */
650 if (!(part_uv->flags & XPC_P_CACHED_ACTIVATE_GRU_MQ_DESC_UV))
651 goto again;
652 }
653 done:
654 mutex_unlock(&part_uv->cached_activate_gru_mq_desc_mutex);
655 return ret;
656 }
657
658 static void
xpc_send_activate_IRQ_part_uv(struct xpc_partition * part,void * msg,size_t msg_size,int msg_type)659 xpc_send_activate_IRQ_part_uv(struct xpc_partition *part, void *msg,
660 size_t msg_size, int msg_type)
661 {
662 enum xp_retval ret;
663
664 ret = xpc_send_activate_IRQ_uv(part, msg, msg_size, msg_type);
665 if (unlikely(ret != xpSuccess))
666 XPC_DEACTIVATE_PARTITION(part, ret);
667 }
668
669 static void
xpc_send_activate_IRQ_ch_uv(struct xpc_channel * ch,unsigned long * irq_flags,void * msg,size_t msg_size,int msg_type)670 xpc_send_activate_IRQ_ch_uv(struct xpc_channel *ch, unsigned long *irq_flags,
671 void *msg, size_t msg_size, int msg_type)
672 {
673 struct xpc_partition *part = &xpc_partitions[ch->partid];
674 enum xp_retval ret;
675
676 ret = xpc_send_activate_IRQ_uv(part, msg, msg_size, msg_type);
677 if (unlikely(ret != xpSuccess)) {
678 if (irq_flags != NULL)
679 spin_unlock_irqrestore(&ch->lock, *irq_flags);
680
681 XPC_DEACTIVATE_PARTITION(part, ret);
682
683 if (irq_flags != NULL)
684 spin_lock_irqsave(&ch->lock, *irq_flags);
685 }
686 }
687
688 static void
xpc_send_local_activate_IRQ_uv(struct xpc_partition * part,int act_state_req)689 xpc_send_local_activate_IRQ_uv(struct xpc_partition *part, int act_state_req)
690 {
691 unsigned long irq_flags;
692 struct xpc_partition_uv *part_uv = &part->sn.uv;
693
694 /*
695 * !!! Make our side think that the remote partition sent an activate
696 * !!! mq message our way by doing what the activate IRQ handler would
697 * !!! do had one really been sent.
698 */
699
700 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
701 if (part_uv->act_state_req == 0)
702 xpc_activate_IRQ_rcvd++;
703 part_uv->act_state_req = act_state_req;
704 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
705
706 wake_up_interruptible(&xpc_activate_IRQ_wq);
707 }
708
709 static enum xp_retval
xpc_get_partition_rsvd_page_pa_uv(void * buf,u64 * cookie,unsigned long * rp_pa,size_t * len)710 xpc_get_partition_rsvd_page_pa_uv(void *buf, u64 *cookie, unsigned long *rp_pa,
711 size_t *len)
712 {
713 s64 status;
714 enum xp_retval ret;
715
716 status = uv_bios_reserved_page_pa((u64)buf, cookie, (u64 *)rp_pa,
717 (u64 *)len);
718 if (status == BIOS_STATUS_SUCCESS)
719 ret = xpSuccess;
720 else if (status == BIOS_STATUS_MORE_PASSES)
721 ret = xpNeedMoreInfo;
722 else
723 ret = xpBiosError;
724
725 return ret;
726 }
727
728 static int
xpc_setup_rsvd_page_uv(struct xpc_rsvd_page * rp)729 xpc_setup_rsvd_page_uv(struct xpc_rsvd_page *rp)
730 {
731 xpc_heartbeat_uv =
732 &xpc_partitions[sn_partition_id].sn.uv.cached_heartbeat;
733 rp->sn.uv.heartbeat_gpa = uv_gpa(xpc_heartbeat_uv);
734 rp->sn.uv.activate_gru_mq_desc_gpa =
735 uv_gpa(xpc_activate_mq_uv->gru_mq_desc);
736 return 0;
737 }
738
739 static void
xpc_allow_hb_uv(short partid)740 xpc_allow_hb_uv(short partid)
741 {
742 }
743
744 static void
xpc_disallow_hb_uv(short partid)745 xpc_disallow_hb_uv(short partid)
746 {
747 }
748
749 static void
xpc_disallow_all_hbs_uv(void)750 xpc_disallow_all_hbs_uv(void)
751 {
752 }
753
754 static void
xpc_increment_heartbeat_uv(void)755 xpc_increment_heartbeat_uv(void)
756 {
757 xpc_heartbeat_uv->value++;
758 }
759
760 static void
xpc_offline_heartbeat_uv(void)761 xpc_offline_heartbeat_uv(void)
762 {
763 xpc_increment_heartbeat_uv();
764 xpc_heartbeat_uv->offline = 1;
765 }
766
767 static void
xpc_online_heartbeat_uv(void)768 xpc_online_heartbeat_uv(void)
769 {
770 xpc_increment_heartbeat_uv();
771 xpc_heartbeat_uv->offline = 0;
772 }
773
774 static void
xpc_heartbeat_init_uv(void)775 xpc_heartbeat_init_uv(void)
776 {
777 xpc_heartbeat_uv->value = 1;
778 xpc_heartbeat_uv->offline = 0;
779 }
780
781 static void
xpc_heartbeat_exit_uv(void)782 xpc_heartbeat_exit_uv(void)
783 {
784 xpc_offline_heartbeat_uv();
785 }
786
787 static enum xp_retval
xpc_get_remote_heartbeat_uv(struct xpc_partition * part)788 xpc_get_remote_heartbeat_uv(struct xpc_partition *part)
789 {
790 struct xpc_partition_uv *part_uv = &part->sn.uv;
791 enum xp_retval ret;
792
793 ret = xp_remote_memcpy(uv_gpa(&part_uv->cached_heartbeat),
794 part_uv->heartbeat_gpa,
795 sizeof(struct xpc_heartbeat_uv));
796 if (ret != xpSuccess)
797 return ret;
798
799 if (part_uv->cached_heartbeat.value == part->last_heartbeat &&
800 !part_uv->cached_heartbeat.offline) {
801
802 ret = xpNoHeartbeat;
803 } else {
804 part->last_heartbeat = part_uv->cached_heartbeat.value;
805 }
806 return ret;
807 }
808
809 static void
xpc_request_partition_activation_uv(struct xpc_rsvd_page * remote_rp,unsigned long remote_rp_gpa,int nasid)810 xpc_request_partition_activation_uv(struct xpc_rsvd_page *remote_rp,
811 unsigned long remote_rp_gpa, int nasid)
812 {
813 short partid = remote_rp->SAL_partid;
814 struct xpc_partition *part = &xpc_partitions[partid];
815 struct xpc_activate_mq_msg_activate_req_uv msg;
816
817 part->remote_rp_pa = remote_rp_gpa; /* !!! _pa here is really _gpa */
818 part->remote_rp_ts_jiffies = remote_rp->ts_jiffies;
819 part->sn.uv.heartbeat_gpa = remote_rp->sn.uv.heartbeat_gpa;
820 part->sn.uv.activate_gru_mq_desc_gpa =
821 remote_rp->sn.uv.activate_gru_mq_desc_gpa;
822
823 /*
824 * ??? Is it a good idea to make this conditional on what is
825 * ??? potentially stale state information?
826 */
827 if (part->sn.uv.remote_act_state == XPC_P_AS_INACTIVE) {
828 msg.rp_gpa = uv_gpa(xpc_rsvd_page);
829 msg.heartbeat_gpa = xpc_rsvd_page->sn.uv.heartbeat_gpa;
830 msg.activate_gru_mq_desc_gpa =
831 xpc_rsvd_page->sn.uv.activate_gru_mq_desc_gpa;
832 xpc_send_activate_IRQ_part_uv(part, &msg, sizeof(msg),
833 XPC_ACTIVATE_MQ_MSG_ACTIVATE_REQ_UV);
834 }
835
836 if (part->act_state == XPC_P_AS_INACTIVE)
837 xpc_send_local_activate_IRQ_uv(part, XPC_P_ASR_ACTIVATE_UV);
838 }
839
840 static void
xpc_request_partition_reactivation_uv(struct xpc_partition * part)841 xpc_request_partition_reactivation_uv(struct xpc_partition *part)
842 {
843 xpc_send_local_activate_IRQ_uv(part, XPC_P_ASR_ACTIVATE_UV);
844 }
845
846 static void
xpc_request_partition_deactivation_uv(struct xpc_partition * part)847 xpc_request_partition_deactivation_uv(struct xpc_partition *part)
848 {
849 struct xpc_activate_mq_msg_deactivate_req_uv msg;
850
851 /*
852 * ??? Is it a good idea to make this conditional on what is
853 * ??? potentially stale state information?
854 */
855 if (part->sn.uv.remote_act_state != XPC_P_AS_DEACTIVATING &&
856 part->sn.uv.remote_act_state != XPC_P_AS_INACTIVE) {
857
858 msg.reason = part->reason;
859 xpc_send_activate_IRQ_part_uv(part, &msg, sizeof(msg),
860 XPC_ACTIVATE_MQ_MSG_DEACTIVATE_REQ_UV);
861 }
862 }
863
864 static void
xpc_cancel_partition_deactivation_request_uv(struct xpc_partition * part)865 xpc_cancel_partition_deactivation_request_uv(struct xpc_partition *part)
866 {
867 /* nothing needs to be done */
868 return;
869 }
870
871 static void
xpc_init_fifo_uv(struct xpc_fifo_head_uv * head)872 xpc_init_fifo_uv(struct xpc_fifo_head_uv *head)
873 {
874 head->first = NULL;
875 head->last = NULL;
876 spin_lock_init(&head->lock);
877 head->n_entries = 0;
878 }
879
880 static void *
xpc_get_fifo_entry_uv(struct xpc_fifo_head_uv * head)881 xpc_get_fifo_entry_uv(struct xpc_fifo_head_uv *head)
882 {
883 unsigned long irq_flags;
884 struct xpc_fifo_entry_uv *first;
885
886 spin_lock_irqsave(&head->lock, irq_flags);
887 first = head->first;
888 if (head->first != NULL) {
889 head->first = first->next;
890 if (head->first == NULL)
891 head->last = NULL;
892
893 head->n_entries--;
894 BUG_ON(head->n_entries < 0);
895
896 first->next = NULL;
897 }
898 spin_unlock_irqrestore(&head->lock, irq_flags);
899 return first;
900 }
901
902 static void
xpc_put_fifo_entry_uv(struct xpc_fifo_head_uv * head,struct xpc_fifo_entry_uv * last)903 xpc_put_fifo_entry_uv(struct xpc_fifo_head_uv *head,
904 struct xpc_fifo_entry_uv *last)
905 {
906 unsigned long irq_flags;
907
908 last->next = NULL;
909 spin_lock_irqsave(&head->lock, irq_flags);
910 if (head->last != NULL)
911 head->last->next = last;
912 else
913 head->first = last;
914 head->last = last;
915 head->n_entries++;
916 spin_unlock_irqrestore(&head->lock, irq_flags);
917 }
918
919 static int
xpc_n_of_fifo_entries_uv(struct xpc_fifo_head_uv * head)920 xpc_n_of_fifo_entries_uv(struct xpc_fifo_head_uv *head)
921 {
922 return head->n_entries;
923 }
924
925 /*
926 * Setup the channel structures that are uv specific.
927 */
928 static enum xp_retval
xpc_setup_ch_structures_uv(struct xpc_partition * part)929 xpc_setup_ch_structures_uv(struct xpc_partition *part)
930 {
931 struct xpc_channel_uv *ch_uv;
932 int ch_number;
933
934 for (ch_number = 0; ch_number < part->nchannels; ch_number++) {
935 ch_uv = &part->channels[ch_number].sn.uv;
936
937 xpc_init_fifo_uv(&ch_uv->msg_slot_free_list);
938 xpc_init_fifo_uv(&ch_uv->recv_msg_list);
939 }
940
941 return xpSuccess;
942 }
943
944 /*
945 * Teardown the channel structures that are uv specific.
946 */
947 static void
xpc_teardown_ch_structures_uv(struct xpc_partition * part)948 xpc_teardown_ch_structures_uv(struct xpc_partition *part)
949 {
950 /* nothing needs to be done */
951 return;
952 }
953
954 static enum xp_retval
xpc_make_first_contact_uv(struct xpc_partition * part)955 xpc_make_first_contact_uv(struct xpc_partition *part)
956 {
957 struct xpc_activate_mq_msg_uv msg;
958
959 /*
960 * We send a sync msg to get the remote partition's remote_act_state
961 * updated to our current act_state which at this point should
962 * be XPC_P_AS_ACTIVATING.
963 */
964 xpc_send_activate_IRQ_part_uv(part, &msg, sizeof(msg),
965 XPC_ACTIVATE_MQ_MSG_SYNC_ACT_STATE_UV);
966
967 while (!((part->sn.uv.remote_act_state == XPC_P_AS_ACTIVATING) ||
968 (part->sn.uv.remote_act_state == XPC_P_AS_ACTIVE))) {
969
970 dev_dbg(xpc_part, "waiting to make first contact with "
971 "partition %d\n", XPC_PARTID(part));
972
973 /* wait a 1/4 of a second or so */
974 (void)msleep_interruptible(250);
975
976 if (part->act_state == XPC_P_AS_DEACTIVATING)
977 return part->reason;
978 }
979
980 return xpSuccess;
981 }
982
983 static u64
xpc_get_chctl_all_flags_uv(struct xpc_partition * part)984 xpc_get_chctl_all_flags_uv(struct xpc_partition *part)
985 {
986 unsigned long irq_flags;
987 union xpc_channel_ctl_flags chctl;
988
989 spin_lock_irqsave(&part->chctl_lock, irq_flags);
990 chctl = part->chctl;
991 if (chctl.all_flags != 0)
992 part->chctl.all_flags = 0;
993
994 spin_unlock_irqrestore(&part->chctl_lock, irq_flags);
995 return chctl.all_flags;
996 }
997
998 static enum xp_retval
xpc_allocate_send_msg_slot_uv(struct xpc_channel * ch)999 xpc_allocate_send_msg_slot_uv(struct xpc_channel *ch)
1000 {
1001 struct xpc_channel_uv *ch_uv = &ch->sn.uv;
1002 struct xpc_send_msg_slot_uv *msg_slot;
1003 unsigned long irq_flags;
1004 int nentries;
1005 int entry;
1006 size_t nbytes;
1007
1008 for (nentries = ch->local_nentries; nentries > 0; nentries--) {
1009 nbytes = nentries * sizeof(struct xpc_send_msg_slot_uv);
1010 ch_uv->send_msg_slots = kzalloc(nbytes, GFP_KERNEL);
1011 if (ch_uv->send_msg_slots == NULL)
1012 continue;
1013
1014 for (entry = 0; entry < nentries; entry++) {
1015 msg_slot = &ch_uv->send_msg_slots[entry];
1016
1017 msg_slot->msg_slot_number = entry;
1018 xpc_put_fifo_entry_uv(&ch_uv->msg_slot_free_list,
1019 &msg_slot->next);
1020 }
1021
1022 spin_lock_irqsave(&ch->lock, irq_flags);
1023 if (nentries < ch->local_nentries)
1024 ch->local_nentries = nentries;
1025 spin_unlock_irqrestore(&ch->lock, irq_flags);
1026 return xpSuccess;
1027 }
1028
1029 return xpNoMemory;
1030 }
1031
1032 static enum xp_retval
xpc_allocate_recv_msg_slot_uv(struct xpc_channel * ch)1033 xpc_allocate_recv_msg_slot_uv(struct xpc_channel *ch)
1034 {
1035 struct xpc_channel_uv *ch_uv = &ch->sn.uv;
1036 struct xpc_notify_mq_msg_uv *msg_slot;
1037 unsigned long irq_flags;
1038 int nentries;
1039 int entry;
1040 size_t nbytes;
1041
1042 for (nentries = ch->remote_nentries; nentries > 0; nentries--) {
1043 nbytes = nentries * ch->entry_size;
1044 ch_uv->recv_msg_slots = kzalloc(nbytes, GFP_KERNEL);
1045 if (ch_uv->recv_msg_slots == NULL)
1046 continue;
1047
1048 for (entry = 0; entry < nentries; entry++) {
1049 msg_slot = ch_uv->recv_msg_slots +
1050 entry * ch->entry_size;
1051
1052 msg_slot->hdr.msg_slot_number = entry;
1053 }
1054
1055 spin_lock_irqsave(&ch->lock, irq_flags);
1056 if (nentries < ch->remote_nentries)
1057 ch->remote_nentries = nentries;
1058 spin_unlock_irqrestore(&ch->lock, irq_flags);
1059 return xpSuccess;
1060 }
1061
1062 return xpNoMemory;
1063 }
1064
1065 /*
1066 * Allocate msg_slots associated with the channel.
1067 */
1068 static enum xp_retval
xpc_setup_msg_structures_uv(struct xpc_channel * ch)1069 xpc_setup_msg_structures_uv(struct xpc_channel *ch)
1070 {
1071 static enum xp_retval ret;
1072 struct xpc_channel_uv *ch_uv = &ch->sn.uv;
1073
1074 DBUG_ON(ch->flags & XPC_C_SETUP);
1075
1076 ch_uv->cached_notify_gru_mq_desc = kmalloc_obj(struct gru_message_queue_desc);
1077 if (ch_uv->cached_notify_gru_mq_desc == NULL)
1078 return xpNoMemory;
1079
1080 ret = xpc_allocate_send_msg_slot_uv(ch);
1081 if (ret == xpSuccess) {
1082
1083 ret = xpc_allocate_recv_msg_slot_uv(ch);
1084 if (ret != xpSuccess) {
1085 kfree(ch_uv->send_msg_slots);
1086 xpc_init_fifo_uv(&ch_uv->msg_slot_free_list);
1087 }
1088 }
1089 return ret;
1090 }
1091
1092 /*
1093 * Free up msg_slots and clear other stuff that were setup for the specified
1094 * channel.
1095 */
1096 static void
xpc_teardown_msg_structures_uv(struct xpc_channel * ch)1097 xpc_teardown_msg_structures_uv(struct xpc_channel *ch)
1098 {
1099 struct xpc_channel_uv *ch_uv = &ch->sn.uv;
1100
1101 lockdep_assert_held(&ch->lock);
1102
1103 kfree(ch_uv->cached_notify_gru_mq_desc);
1104 ch_uv->cached_notify_gru_mq_desc = NULL;
1105
1106 if (ch->flags & XPC_C_SETUP) {
1107 xpc_init_fifo_uv(&ch_uv->msg_slot_free_list);
1108 kfree(ch_uv->send_msg_slots);
1109 xpc_init_fifo_uv(&ch_uv->recv_msg_list);
1110 kfree(ch_uv->recv_msg_slots);
1111 }
1112 }
1113
1114 static void
xpc_send_chctl_closerequest_uv(struct xpc_channel * ch,unsigned long * irq_flags)1115 xpc_send_chctl_closerequest_uv(struct xpc_channel *ch, unsigned long *irq_flags)
1116 {
1117 struct xpc_activate_mq_msg_chctl_closerequest_uv msg;
1118
1119 msg.ch_number = ch->number;
1120 msg.reason = ch->reason;
1121 xpc_send_activate_IRQ_ch_uv(ch, irq_flags, &msg, sizeof(msg),
1122 XPC_ACTIVATE_MQ_MSG_CHCTL_CLOSEREQUEST_UV);
1123 }
1124
1125 static void
xpc_send_chctl_closereply_uv(struct xpc_channel * ch,unsigned long * irq_flags)1126 xpc_send_chctl_closereply_uv(struct xpc_channel *ch, unsigned long *irq_flags)
1127 {
1128 struct xpc_activate_mq_msg_chctl_closereply_uv msg;
1129
1130 msg.ch_number = ch->number;
1131 xpc_send_activate_IRQ_ch_uv(ch, irq_flags, &msg, sizeof(msg),
1132 XPC_ACTIVATE_MQ_MSG_CHCTL_CLOSEREPLY_UV);
1133 }
1134
1135 static void
xpc_send_chctl_openrequest_uv(struct xpc_channel * ch,unsigned long * irq_flags)1136 xpc_send_chctl_openrequest_uv(struct xpc_channel *ch, unsigned long *irq_flags)
1137 {
1138 struct xpc_activate_mq_msg_chctl_openrequest_uv msg;
1139
1140 msg.ch_number = ch->number;
1141 msg.entry_size = ch->entry_size;
1142 msg.local_nentries = ch->local_nentries;
1143 xpc_send_activate_IRQ_ch_uv(ch, irq_flags, &msg, sizeof(msg),
1144 XPC_ACTIVATE_MQ_MSG_CHCTL_OPENREQUEST_UV);
1145 }
1146
1147 static void
xpc_send_chctl_openreply_uv(struct xpc_channel * ch,unsigned long * irq_flags)1148 xpc_send_chctl_openreply_uv(struct xpc_channel *ch, unsigned long *irq_flags)
1149 {
1150 struct xpc_activate_mq_msg_chctl_openreply_uv msg;
1151
1152 msg.ch_number = ch->number;
1153 msg.local_nentries = ch->local_nentries;
1154 msg.remote_nentries = ch->remote_nentries;
1155 msg.notify_gru_mq_desc_gpa = uv_gpa(xpc_notify_mq_uv->gru_mq_desc);
1156 xpc_send_activate_IRQ_ch_uv(ch, irq_flags, &msg, sizeof(msg),
1157 XPC_ACTIVATE_MQ_MSG_CHCTL_OPENREPLY_UV);
1158 }
1159
1160 static void
xpc_send_chctl_opencomplete_uv(struct xpc_channel * ch,unsigned long * irq_flags)1161 xpc_send_chctl_opencomplete_uv(struct xpc_channel *ch, unsigned long *irq_flags)
1162 {
1163 struct xpc_activate_mq_msg_chctl_opencomplete_uv msg;
1164
1165 msg.ch_number = ch->number;
1166 xpc_send_activate_IRQ_ch_uv(ch, irq_flags, &msg, sizeof(msg),
1167 XPC_ACTIVATE_MQ_MSG_CHCTL_OPENCOMPLETE_UV);
1168 }
1169
1170 static void
xpc_send_chctl_local_msgrequest_uv(struct xpc_partition * part,int ch_number)1171 xpc_send_chctl_local_msgrequest_uv(struct xpc_partition *part, int ch_number)
1172 {
1173 unsigned long irq_flags;
1174
1175 spin_lock_irqsave(&part->chctl_lock, irq_flags);
1176 part->chctl.flags[ch_number] |= XPC_CHCTL_MSGREQUEST;
1177 spin_unlock_irqrestore(&part->chctl_lock, irq_flags);
1178
1179 xpc_wakeup_channel_mgr(part);
1180 }
1181
1182 static enum xp_retval
xpc_save_remote_msgqueue_pa_uv(struct xpc_channel * ch,unsigned long gru_mq_desc_gpa)1183 xpc_save_remote_msgqueue_pa_uv(struct xpc_channel *ch,
1184 unsigned long gru_mq_desc_gpa)
1185 {
1186 struct xpc_channel_uv *ch_uv = &ch->sn.uv;
1187
1188 DBUG_ON(ch_uv->cached_notify_gru_mq_desc == NULL);
1189 return xpc_cache_remote_gru_mq_desc_uv(ch_uv->cached_notify_gru_mq_desc,
1190 gru_mq_desc_gpa);
1191 }
1192
1193 static void
xpc_indicate_partition_engaged_uv(struct xpc_partition * part)1194 xpc_indicate_partition_engaged_uv(struct xpc_partition *part)
1195 {
1196 struct xpc_activate_mq_msg_uv msg;
1197
1198 xpc_send_activate_IRQ_part_uv(part, &msg, sizeof(msg),
1199 XPC_ACTIVATE_MQ_MSG_MARK_ENGAGED_UV);
1200 }
1201
1202 static void
xpc_indicate_partition_disengaged_uv(struct xpc_partition * part)1203 xpc_indicate_partition_disengaged_uv(struct xpc_partition *part)
1204 {
1205 struct xpc_activate_mq_msg_uv msg;
1206
1207 xpc_send_activate_IRQ_part_uv(part, &msg, sizeof(msg),
1208 XPC_ACTIVATE_MQ_MSG_MARK_DISENGAGED_UV);
1209 }
1210
1211 static void
xpc_assume_partition_disengaged_uv(short partid)1212 xpc_assume_partition_disengaged_uv(short partid)
1213 {
1214 struct xpc_partition_uv *part_uv = &xpc_partitions[partid].sn.uv;
1215 unsigned long irq_flags;
1216
1217 spin_lock_irqsave(&part_uv->flags_lock, irq_flags);
1218 part_uv->flags &= ~XPC_P_ENGAGED_UV;
1219 spin_unlock_irqrestore(&part_uv->flags_lock, irq_flags);
1220 }
1221
1222 static int
xpc_partition_engaged_uv(short partid)1223 xpc_partition_engaged_uv(short partid)
1224 {
1225 return (xpc_partitions[partid].sn.uv.flags & XPC_P_ENGAGED_UV) != 0;
1226 }
1227
1228 static int
xpc_any_partition_engaged_uv(void)1229 xpc_any_partition_engaged_uv(void)
1230 {
1231 struct xpc_partition_uv *part_uv;
1232 short partid;
1233
1234 for (partid = 0; partid < XP_MAX_NPARTITIONS_UV; partid++) {
1235 part_uv = &xpc_partitions[partid].sn.uv;
1236 if ((part_uv->flags & XPC_P_ENGAGED_UV) != 0)
1237 return 1;
1238 }
1239 return 0;
1240 }
1241
1242 static enum xp_retval
xpc_allocate_msg_slot_uv(struct xpc_channel * ch,u32 flags,struct xpc_send_msg_slot_uv ** address_of_msg_slot)1243 xpc_allocate_msg_slot_uv(struct xpc_channel *ch, u32 flags,
1244 struct xpc_send_msg_slot_uv **address_of_msg_slot)
1245 {
1246 enum xp_retval ret;
1247 struct xpc_send_msg_slot_uv *msg_slot;
1248 struct xpc_fifo_entry_uv *entry;
1249
1250 while (1) {
1251 entry = xpc_get_fifo_entry_uv(&ch->sn.uv.msg_slot_free_list);
1252 if (entry != NULL)
1253 break;
1254
1255 if (flags & XPC_NOWAIT)
1256 return xpNoWait;
1257
1258 ret = xpc_allocate_msg_wait(ch);
1259 if (ret != xpInterrupted && ret != xpTimeout)
1260 return ret;
1261 }
1262
1263 msg_slot = container_of(entry, struct xpc_send_msg_slot_uv, next);
1264 *address_of_msg_slot = msg_slot;
1265 return xpSuccess;
1266 }
1267
1268 static void
xpc_free_msg_slot_uv(struct xpc_channel * ch,struct xpc_send_msg_slot_uv * msg_slot)1269 xpc_free_msg_slot_uv(struct xpc_channel *ch,
1270 struct xpc_send_msg_slot_uv *msg_slot)
1271 {
1272 xpc_put_fifo_entry_uv(&ch->sn.uv.msg_slot_free_list, &msg_slot->next);
1273
1274 /* wakeup anyone waiting for a free msg slot */
1275 if (atomic_read(&ch->n_on_msg_allocate_wq) > 0)
1276 wake_up(&ch->msg_allocate_wq);
1277 }
1278
1279 static void
xpc_notify_sender_uv(struct xpc_channel * ch,struct xpc_send_msg_slot_uv * msg_slot,enum xp_retval reason)1280 xpc_notify_sender_uv(struct xpc_channel *ch,
1281 struct xpc_send_msg_slot_uv *msg_slot,
1282 enum xp_retval reason)
1283 {
1284 xpc_notify_func func = msg_slot->func;
1285
1286 if (func != NULL && cmpxchg(&msg_slot->func, func, NULL) == func) {
1287
1288 atomic_dec(&ch->n_to_notify);
1289
1290 dev_dbg(xpc_chan, "msg_slot->func() called, msg_slot=0x%p "
1291 "msg_slot_number=%d partid=%d channel=%d\n", msg_slot,
1292 msg_slot->msg_slot_number, ch->partid, ch->number);
1293
1294 func(reason, ch->partid, ch->number, msg_slot->key);
1295
1296 dev_dbg(xpc_chan, "msg_slot->func() returned, msg_slot=0x%p "
1297 "msg_slot_number=%d partid=%d channel=%d\n", msg_slot,
1298 msg_slot->msg_slot_number, ch->partid, ch->number);
1299 }
1300 }
1301
1302 static void
xpc_handle_notify_mq_ack_uv(struct xpc_channel * ch,struct xpc_notify_mq_msg_uv * msg)1303 xpc_handle_notify_mq_ack_uv(struct xpc_channel *ch,
1304 struct xpc_notify_mq_msg_uv *msg)
1305 {
1306 struct xpc_send_msg_slot_uv *msg_slot;
1307 int entry = msg->hdr.msg_slot_number % ch->local_nentries;
1308
1309 msg_slot = &ch->sn.uv.send_msg_slots[entry];
1310
1311 BUG_ON(msg_slot->msg_slot_number != msg->hdr.msg_slot_number);
1312 msg_slot->msg_slot_number += ch->local_nentries;
1313
1314 if (msg_slot->func != NULL)
1315 xpc_notify_sender_uv(ch, msg_slot, xpMsgDelivered);
1316
1317 xpc_free_msg_slot_uv(ch, msg_slot);
1318 }
1319
1320 static void
xpc_handle_notify_mq_msg_uv(struct xpc_partition * part,struct xpc_notify_mq_msg_uv * msg)1321 xpc_handle_notify_mq_msg_uv(struct xpc_partition *part,
1322 struct xpc_notify_mq_msg_uv *msg)
1323 {
1324 struct xpc_partition_uv *part_uv = &part->sn.uv;
1325 struct xpc_channel *ch;
1326 struct xpc_channel_uv *ch_uv;
1327 struct xpc_notify_mq_msg_uv *msg_slot;
1328 unsigned long irq_flags;
1329 int ch_number = msg->hdr.ch_number;
1330
1331 if (unlikely(ch_number >= part->nchannels)) {
1332 dev_err(xpc_part, "xpc_handle_notify_IRQ_uv() received invalid "
1333 "channel number=0x%x in message from partid=%d\n",
1334 ch_number, XPC_PARTID(part));
1335
1336 /* get hb checker to deactivate from the remote partition */
1337 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
1338 if (part_uv->act_state_req == 0)
1339 xpc_activate_IRQ_rcvd++;
1340 part_uv->act_state_req = XPC_P_ASR_DEACTIVATE_UV;
1341 part_uv->reason = xpBadChannelNumber;
1342 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
1343
1344 wake_up_interruptible(&xpc_activate_IRQ_wq);
1345 return;
1346 }
1347
1348 ch = &part->channels[ch_number];
1349 xpc_msgqueue_ref(ch);
1350
1351 if (!(ch->flags & XPC_C_CONNECTED)) {
1352 xpc_msgqueue_deref(ch);
1353 return;
1354 }
1355
1356 /* see if we're really dealing with an ACK for a previously sent msg */
1357 if (msg->hdr.size == 0) {
1358 xpc_handle_notify_mq_ack_uv(ch, msg);
1359 xpc_msgqueue_deref(ch);
1360 return;
1361 }
1362
1363 /* we're dealing with a normal message sent via the notify_mq */
1364 ch_uv = &ch->sn.uv;
1365
1366 msg_slot = ch_uv->recv_msg_slots +
1367 (msg->hdr.msg_slot_number % ch->remote_nentries) * ch->entry_size;
1368
1369 BUG_ON(msg_slot->hdr.size != 0);
1370
1371 memcpy(msg_slot, msg, msg->hdr.size);
1372
1373 xpc_put_fifo_entry_uv(&ch_uv->recv_msg_list, &msg_slot->hdr.u.next);
1374
1375 if (ch->flags & XPC_C_CONNECTEDCALLOUT_MADE) {
1376 /*
1377 * If there is an existing idle kthread get it to deliver
1378 * the payload, otherwise we'll have to get the channel mgr
1379 * for this partition to create a kthread to do the delivery.
1380 */
1381 if (atomic_read(&ch->kthreads_idle) > 0)
1382 wake_up_nr(&ch->idle_wq, 1);
1383 else
1384 xpc_send_chctl_local_msgrequest_uv(part, ch->number);
1385 }
1386 xpc_msgqueue_deref(ch);
1387 }
1388
1389 static irqreturn_t
xpc_handle_notify_IRQ_uv(int irq,void * dev_id)1390 xpc_handle_notify_IRQ_uv(int irq, void *dev_id)
1391 {
1392 struct xpc_notify_mq_msg_uv *msg;
1393 short partid;
1394 struct xpc_partition *part;
1395
1396 while ((msg = gru_get_next_message(xpc_notify_mq_uv->gru_mq_desc)) !=
1397 NULL) {
1398
1399 partid = msg->hdr.partid;
1400 if (partid < 0 || partid >= XP_MAX_NPARTITIONS_UV) {
1401 dev_err(xpc_part, "xpc_handle_notify_IRQ_uv() received "
1402 "invalid partid=0x%x in message\n", partid);
1403 } else {
1404 part = &xpc_partitions[partid];
1405
1406 if (xpc_part_ref(part)) {
1407 xpc_handle_notify_mq_msg_uv(part, msg);
1408 xpc_part_deref(part);
1409 }
1410 }
1411
1412 gru_free_message(xpc_notify_mq_uv->gru_mq_desc, msg);
1413 }
1414
1415 return IRQ_HANDLED;
1416 }
1417
1418 static int
xpc_n_of_deliverable_payloads_uv(struct xpc_channel * ch)1419 xpc_n_of_deliverable_payloads_uv(struct xpc_channel *ch)
1420 {
1421 return xpc_n_of_fifo_entries_uv(&ch->sn.uv.recv_msg_list);
1422 }
1423
1424 static void
xpc_process_msg_chctl_flags_uv(struct xpc_partition * part,int ch_number)1425 xpc_process_msg_chctl_flags_uv(struct xpc_partition *part, int ch_number)
1426 {
1427 struct xpc_channel *ch = &part->channels[ch_number];
1428 int ndeliverable_payloads;
1429
1430 xpc_msgqueue_ref(ch);
1431
1432 ndeliverable_payloads = xpc_n_of_deliverable_payloads_uv(ch);
1433
1434 if (ndeliverable_payloads > 0 &&
1435 (ch->flags & XPC_C_CONNECTED) &&
1436 (ch->flags & XPC_C_CONNECTEDCALLOUT_MADE)) {
1437
1438 xpc_activate_kthreads(ch, ndeliverable_payloads);
1439 }
1440
1441 xpc_msgqueue_deref(ch);
1442 }
1443
1444 static enum xp_retval
xpc_send_payload_uv(struct xpc_channel * ch,u32 flags,void * payload,u16 payload_size,u8 notify_type,xpc_notify_func func,void * key)1445 xpc_send_payload_uv(struct xpc_channel *ch, u32 flags, void *payload,
1446 u16 payload_size, u8 notify_type, xpc_notify_func func,
1447 void *key)
1448 {
1449 enum xp_retval ret = xpSuccess;
1450 struct xpc_send_msg_slot_uv *msg_slot = NULL;
1451 struct xpc_notify_mq_msg_uv *msg;
1452 u8 msg_buffer[XPC_NOTIFY_MSG_SIZE_UV];
1453 size_t msg_size;
1454
1455 DBUG_ON(notify_type != XPC_N_CALL);
1456
1457 msg_size = sizeof(struct xpc_notify_mq_msghdr_uv) + payload_size;
1458 if (msg_size > ch->entry_size)
1459 return xpPayloadTooBig;
1460
1461 xpc_msgqueue_ref(ch);
1462
1463 if (ch->flags & XPC_C_DISCONNECTING) {
1464 ret = ch->reason;
1465 goto out_1;
1466 }
1467 if (!(ch->flags & XPC_C_CONNECTED)) {
1468 ret = xpNotConnected;
1469 goto out_1;
1470 }
1471
1472 ret = xpc_allocate_msg_slot_uv(ch, flags, &msg_slot);
1473 if (ret != xpSuccess)
1474 goto out_1;
1475
1476 if (func != NULL) {
1477 atomic_inc(&ch->n_to_notify);
1478
1479 msg_slot->key = key;
1480 smp_wmb(); /* a non-NULL func must hit memory after the key */
1481 msg_slot->func = func;
1482
1483 if (ch->flags & XPC_C_DISCONNECTING) {
1484 ret = ch->reason;
1485 goto out_2;
1486 }
1487 }
1488
1489 msg = (struct xpc_notify_mq_msg_uv *)&msg_buffer;
1490 msg->hdr.partid = xp_partition_id;
1491 msg->hdr.ch_number = ch->number;
1492 msg->hdr.size = msg_size;
1493 msg->hdr.msg_slot_number = msg_slot->msg_slot_number;
1494 memcpy(&msg->payload, payload, payload_size);
1495
1496 ret = xpc_send_gru_msg(ch->sn.uv.cached_notify_gru_mq_desc, msg,
1497 msg_size);
1498 if (ret == xpSuccess)
1499 goto out_1;
1500
1501 XPC_DEACTIVATE_PARTITION(&xpc_partitions[ch->partid], ret);
1502 out_2:
1503 if (func != NULL) {
1504 /*
1505 * Try to NULL the msg_slot's func field. If we fail, then
1506 * xpc_notify_senders_of_disconnect_uv() beat us to it, in which
1507 * case we need to pretend we succeeded to send the message
1508 * since the user will get a callout for the disconnect error
1509 * by xpc_notify_senders_of_disconnect_uv(), and to also get an
1510 * error returned here will confuse them. Additionally, since
1511 * in this case the channel is being disconnected we don't need
1512 * to put the msg_slot back on the free list.
1513 */
1514 if (cmpxchg(&msg_slot->func, func, NULL) != func) {
1515 ret = xpSuccess;
1516 goto out_1;
1517 }
1518
1519 msg_slot->key = NULL;
1520 atomic_dec(&ch->n_to_notify);
1521 }
1522 xpc_free_msg_slot_uv(ch, msg_slot);
1523 out_1:
1524 xpc_msgqueue_deref(ch);
1525 return ret;
1526 }
1527
1528 /*
1529 * Tell the callers of xpc_send_notify() that the status of their payloads
1530 * is unknown because the channel is now disconnecting.
1531 *
1532 * We don't worry about putting these msg_slots on the free list since the
1533 * msg_slots themselves are about to be kfree'd.
1534 */
1535 static void
xpc_notify_senders_of_disconnect_uv(struct xpc_channel * ch)1536 xpc_notify_senders_of_disconnect_uv(struct xpc_channel *ch)
1537 {
1538 struct xpc_send_msg_slot_uv *msg_slot;
1539 int entry;
1540
1541 DBUG_ON(!(ch->flags & XPC_C_DISCONNECTING));
1542
1543 for (entry = 0; entry < ch->local_nentries; entry++) {
1544
1545 if (atomic_read(&ch->n_to_notify) == 0)
1546 break;
1547
1548 msg_slot = &ch->sn.uv.send_msg_slots[entry];
1549 if (msg_slot->func != NULL)
1550 xpc_notify_sender_uv(ch, msg_slot, ch->reason);
1551 }
1552 }
1553
1554 /*
1555 * Get the next deliverable message's payload.
1556 */
1557 static void *
xpc_get_deliverable_payload_uv(struct xpc_channel * ch)1558 xpc_get_deliverable_payload_uv(struct xpc_channel *ch)
1559 {
1560 struct xpc_fifo_entry_uv *entry;
1561 struct xpc_notify_mq_msg_uv *msg;
1562 void *payload = NULL;
1563
1564 if (!(ch->flags & XPC_C_DISCONNECTING)) {
1565 entry = xpc_get_fifo_entry_uv(&ch->sn.uv.recv_msg_list);
1566 if (entry != NULL) {
1567 msg = container_of(entry, struct xpc_notify_mq_msg_uv,
1568 hdr.u.next);
1569 payload = &msg->payload;
1570 }
1571 }
1572 return payload;
1573 }
1574
1575 static void
xpc_received_payload_uv(struct xpc_channel * ch,void * payload)1576 xpc_received_payload_uv(struct xpc_channel *ch, void *payload)
1577 {
1578 struct xpc_notify_mq_msg_uv *msg;
1579 enum xp_retval ret;
1580
1581 msg = container_of(payload, struct xpc_notify_mq_msg_uv, payload);
1582
1583 /* return an ACK to the sender of this message */
1584
1585 msg->hdr.partid = xp_partition_id;
1586 msg->hdr.size = 0; /* size of zero indicates this is an ACK */
1587
1588 ret = xpc_send_gru_msg(ch->sn.uv.cached_notify_gru_mq_desc, msg,
1589 sizeof(struct xpc_notify_mq_msghdr_uv));
1590 if (ret != xpSuccess)
1591 XPC_DEACTIVATE_PARTITION(&xpc_partitions[ch->partid], ret);
1592 }
1593
1594 static const struct xpc_arch_operations xpc_arch_ops_uv = {
1595 .setup_partitions = xpc_setup_partitions_uv,
1596 .teardown_partitions = xpc_teardown_partitions_uv,
1597 .process_activate_IRQ_rcvd = xpc_process_activate_IRQ_rcvd_uv,
1598 .get_partition_rsvd_page_pa = xpc_get_partition_rsvd_page_pa_uv,
1599 .setup_rsvd_page = xpc_setup_rsvd_page_uv,
1600
1601 .allow_hb = xpc_allow_hb_uv,
1602 .disallow_hb = xpc_disallow_hb_uv,
1603 .disallow_all_hbs = xpc_disallow_all_hbs_uv,
1604 .increment_heartbeat = xpc_increment_heartbeat_uv,
1605 .offline_heartbeat = xpc_offline_heartbeat_uv,
1606 .online_heartbeat = xpc_online_heartbeat_uv,
1607 .heartbeat_init = xpc_heartbeat_init_uv,
1608 .heartbeat_exit = xpc_heartbeat_exit_uv,
1609 .get_remote_heartbeat = xpc_get_remote_heartbeat_uv,
1610
1611 .request_partition_activation =
1612 xpc_request_partition_activation_uv,
1613 .request_partition_reactivation =
1614 xpc_request_partition_reactivation_uv,
1615 .request_partition_deactivation =
1616 xpc_request_partition_deactivation_uv,
1617 .cancel_partition_deactivation_request =
1618 xpc_cancel_partition_deactivation_request_uv,
1619
1620 .setup_ch_structures = xpc_setup_ch_structures_uv,
1621 .teardown_ch_structures = xpc_teardown_ch_structures_uv,
1622
1623 .make_first_contact = xpc_make_first_contact_uv,
1624
1625 .get_chctl_all_flags = xpc_get_chctl_all_flags_uv,
1626 .send_chctl_closerequest = xpc_send_chctl_closerequest_uv,
1627 .send_chctl_closereply = xpc_send_chctl_closereply_uv,
1628 .send_chctl_openrequest = xpc_send_chctl_openrequest_uv,
1629 .send_chctl_openreply = xpc_send_chctl_openreply_uv,
1630 .send_chctl_opencomplete = xpc_send_chctl_opencomplete_uv,
1631 .process_msg_chctl_flags = xpc_process_msg_chctl_flags_uv,
1632
1633 .save_remote_msgqueue_pa = xpc_save_remote_msgqueue_pa_uv,
1634
1635 .setup_msg_structures = xpc_setup_msg_structures_uv,
1636 .teardown_msg_structures = xpc_teardown_msg_structures_uv,
1637
1638 .indicate_partition_engaged = xpc_indicate_partition_engaged_uv,
1639 .indicate_partition_disengaged = xpc_indicate_partition_disengaged_uv,
1640 .assume_partition_disengaged = xpc_assume_partition_disengaged_uv,
1641 .partition_engaged = xpc_partition_engaged_uv,
1642 .any_partition_engaged = xpc_any_partition_engaged_uv,
1643
1644 .n_of_deliverable_payloads = xpc_n_of_deliverable_payloads_uv,
1645 .send_payload = xpc_send_payload_uv,
1646 .get_deliverable_payload = xpc_get_deliverable_payload_uv,
1647 .received_payload = xpc_received_payload_uv,
1648 .notify_senders_of_disconnect = xpc_notify_senders_of_disconnect_uv,
1649 };
1650
1651 static int
xpc_init_mq_node(int nid)1652 xpc_init_mq_node(int nid)
1653 {
1654 int cpu;
1655
1656 cpus_read_lock();
1657
1658 for_each_cpu(cpu, cpumask_of_node(nid)) {
1659 xpc_activate_mq_uv =
1660 xpc_create_gru_mq_uv(XPC_ACTIVATE_MQ_SIZE_UV, nid,
1661 XPC_ACTIVATE_IRQ_NAME,
1662 xpc_handle_activate_IRQ_uv);
1663 if (!IS_ERR(xpc_activate_mq_uv))
1664 break;
1665 }
1666 if (IS_ERR(xpc_activate_mq_uv)) {
1667 cpus_read_unlock();
1668 return PTR_ERR(xpc_activate_mq_uv);
1669 }
1670
1671 for_each_cpu(cpu, cpumask_of_node(nid)) {
1672 xpc_notify_mq_uv =
1673 xpc_create_gru_mq_uv(XPC_NOTIFY_MQ_SIZE_UV, nid,
1674 XPC_NOTIFY_IRQ_NAME,
1675 xpc_handle_notify_IRQ_uv);
1676 if (!IS_ERR(xpc_notify_mq_uv))
1677 break;
1678 }
1679 if (IS_ERR(xpc_notify_mq_uv)) {
1680 xpc_destroy_gru_mq_uv(xpc_activate_mq_uv);
1681 cpus_read_unlock();
1682 return PTR_ERR(xpc_notify_mq_uv);
1683 }
1684
1685 cpus_read_unlock();
1686 return 0;
1687 }
1688
1689 int
xpc_init_uv(void)1690 xpc_init_uv(void)
1691 {
1692 int nid;
1693 int ret = 0;
1694
1695 xpc_arch_ops = xpc_arch_ops_uv;
1696
1697 if (sizeof(struct xpc_notify_mq_msghdr_uv) > XPC_MSG_HDR_MAX_SIZE) {
1698 dev_err(xpc_part, "xpc_notify_mq_msghdr_uv is larger than %d\n",
1699 XPC_MSG_HDR_MAX_SIZE);
1700 return -E2BIG;
1701 }
1702
1703 if (xpc_mq_node < 0)
1704 for_each_online_node(nid) {
1705 ret = xpc_init_mq_node(nid);
1706
1707 if (!ret)
1708 break;
1709 }
1710 else
1711 ret = xpc_init_mq_node(xpc_mq_node);
1712
1713 if (ret < 0)
1714 dev_err(xpc_part, "xpc_init_mq_node() returned error=%d\n",
1715 -ret);
1716
1717 return ret;
1718 }
1719
1720 void
xpc_exit_uv(void)1721 xpc_exit_uv(void)
1722 {
1723 xpc_destroy_gru_mq_uv(xpc_notify_mq_uv);
1724 xpc_destroy_gru_mq_uv(xpc_activate_mq_uv);
1725 }
1726
1727 module_param(xpc_mq_node, int, 0);
1728 MODULE_PARM_DESC(xpc_mq_node, "Node number on which to allocate message queues.");
1729