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sgi-xpc: ensure flags are updated before bte_copy
[net-next-2.6.git] / drivers / misc / sgi-xp / xpc_sn2.c
CommitLineData
94bd2708
DN
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 Silicon Graphics, Inc. All Rights Reserved.
7 */
8
9/*
10 * Cross Partition Communication (XPC) sn2-based functions.
11 *
12 * Architecture specific implementation of common functions.
13 *
14 */
15
e17d416b 16#include <linux/delay.h>
94bd2708 17#include <asm/uncached.h>
261f3b49 18#include <asm/sn/mspec.h>
94bd2708
DN
19#include <asm/sn/sn_sal.h>
20#include "xpc.h"
21
ee6665e3
DN
22/*
23 * Define the number of u64s required to represent all the C-brick nasids
24 * as a bitmap. The cross-partition kernel modules deal only with
25 * C-brick nasids, thus the need for bitmaps which don't account for
26 * odd-numbered (non C-brick) nasids.
27 */
28#define XPC_MAX_PHYSNODES_SN2 (MAX_NUMALINK_NODES / 2)
29#define XP_NASID_MASK_BYTES_SN2 ((XPC_MAX_PHYSNODES_SN2 + 7) / 8)
30#define XP_NASID_MASK_WORDS_SN2 ((XPC_MAX_PHYSNODES_SN2 + 63) / 64)
31
32/*
33 * Memory for XPC's amo variables is allocated by the MSPEC driver. These
34 * pages are located in the lowest granule. The lowest granule uses 4k pages
35 * for cached references and an alternate TLB handler to never provide a
36 * cacheable mapping for the entire region. This will prevent speculative
37 * reading of cached copies of our lines from being issued which will cause
38 * a PI FSB Protocol error to be generated by the SHUB. For XPC, we need 64
39 * amo variables (based on XP_MAX_NPARTITIONS_SN2) to identify the senders of
40 * NOTIFY IRQs, 128 amo variables (based on XP_NASID_MASK_WORDS_SN2) to identify
41 * the senders of ACTIVATE IRQs, 1 amo variable to identify which remote
42 * partitions (i.e., XPCs) consider themselves currently engaged with the
43 * local XPC and 1 amo variable to request partition deactivation.
44 */
45#define XPC_NOTIFY_IRQ_AMOS_SN2 0
46#define XPC_ACTIVATE_IRQ_AMOS_SN2 (XPC_NOTIFY_IRQ_AMOS_SN2 + \
47 XP_MAX_NPARTITIONS_SN2)
48#define XPC_ENGAGED_PARTITIONS_AMO_SN2 (XPC_ACTIVATE_IRQ_AMOS_SN2 + \
49 XP_NASID_MASK_WORDS_SN2)
50#define XPC_DEACTIVATE_REQUEST_AMO_SN2 (XPC_ENGAGED_PARTITIONS_AMO_SN2 + 1)
51
52/*
53 * Buffer used to store a local copy of portions of a remote partition's
54 * reserved page (either its header and part_nasids mask, or its vars).
55 */
ee6665e3 56static void *xpc_remote_copy_buffer_base_sn2;
5b8669df 57static char *xpc_remote_copy_buffer_sn2;
ee6665e3 58
8e85c23e
DN
59static struct xpc_vars_sn2 *xpc_vars_sn2;
60static struct xpc_vars_part_sn2 *xpc_vars_part_sn2;
94bd2708 61
5b8669df
DN
62static int
63xpc_setup_partitions_sn_sn2(void)
64{
65 /* nothing needs to be done */
66 return 0;
67}
68
6e41017a 69/* SH_IPI_ACCESS shub register value on startup */
8e85c23e
DN
70static u64 xpc_sh1_IPI_access_sn2;
71static u64 xpc_sh2_IPI_access0_sn2;
72static u64 xpc_sh2_IPI_access1_sn2;
73static u64 xpc_sh2_IPI_access2_sn2;
74static u64 xpc_sh2_IPI_access3_sn2;
6e41017a
DN
75
76/*
77 * Change protections to allow IPI operations.
78 */
79static void
80xpc_allow_IPI_ops_sn2(void)
81{
82 int node;
83 int nasid;
84
ea57f80c 85 /* !!! The following should get moved into SAL. */
6e41017a 86 if (is_shub2()) {
8e85c23e 87 xpc_sh2_IPI_access0_sn2 =
6e41017a 88 (u64)HUB_L((u64 *)LOCAL_MMR_ADDR(SH2_IPI_ACCESS0));
8e85c23e 89 xpc_sh2_IPI_access1_sn2 =
6e41017a 90 (u64)HUB_L((u64 *)LOCAL_MMR_ADDR(SH2_IPI_ACCESS1));
8e85c23e 91 xpc_sh2_IPI_access2_sn2 =
6e41017a 92 (u64)HUB_L((u64 *)LOCAL_MMR_ADDR(SH2_IPI_ACCESS2));
8e85c23e 93 xpc_sh2_IPI_access3_sn2 =
6e41017a
DN
94 (u64)HUB_L((u64 *)LOCAL_MMR_ADDR(SH2_IPI_ACCESS3));
95
96 for_each_online_node(node) {
97 nasid = cnodeid_to_nasid(node);
98 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH2_IPI_ACCESS0),
99 -1UL);
100 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH2_IPI_ACCESS1),
101 -1UL);
102 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH2_IPI_ACCESS2),
103 -1UL);
104 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH2_IPI_ACCESS3),
105 -1UL);
106 }
107 } else {
8e85c23e 108 xpc_sh1_IPI_access_sn2 =
6e41017a
DN
109 (u64)HUB_L((u64 *)LOCAL_MMR_ADDR(SH1_IPI_ACCESS));
110
111 for_each_online_node(node) {
112 nasid = cnodeid_to_nasid(node);
113 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH1_IPI_ACCESS),
114 -1UL);
115 }
116 }
117}
118
119/*
120 * Restrict protections to disallow IPI operations.
121 */
122static void
123xpc_disallow_IPI_ops_sn2(void)
124{
125 int node;
126 int nasid;
127
ea57f80c 128 /* !!! The following should get moved into SAL. */
6e41017a
DN
129 if (is_shub2()) {
130 for_each_online_node(node) {
131 nasid = cnodeid_to_nasid(node);
132 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH2_IPI_ACCESS0),
8e85c23e 133 xpc_sh2_IPI_access0_sn2);
6e41017a 134 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH2_IPI_ACCESS1),
8e85c23e 135 xpc_sh2_IPI_access1_sn2);
6e41017a 136 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH2_IPI_ACCESS2),
8e85c23e 137 xpc_sh2_IPI_access2_sn2);
6e41017a 138 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH2_IPI_ACCESS3),
8e85c23e 139 xpc_sh2_IPI_access3_sn2);
6e41017a
DN
140 }
141 } else {
142 for_each_online_node(node) {
143 nasid = cnodeid_to_nasid(node);
144 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid, SH1_IPI_ACCESS),
8e85c23e 145 xpc_sh1_IPI_access_sn2);
6e41017a
DN
146 }
147 }
148}
149
33ba3c77 150/*
7fb5e59d
DN
151 * The following set of functions are used for the sending and receiving of
152 * IRQs (also known as IPIs). There are two flavors of IRQs, one that is
153 * associated with partition activity (SGI_XPC_ACTIVATE) and the other that
154 * is associated with channel activity (SGI_XPC_NOTIFY).
33ba3c77
DN
155 */
156
157static u64
c39838ce 158xpc_receive_IRQ_amo_sn2(struct amo *amo)
33ba3c77
DN
159{
160 return FETCHOP_LOAD_OP(TO_AMO((u64)&amo->variable), FETCHOP_CLEAR);
161}
162
163static enum xp_retval
c39838ce
DN
164xpc_send_IRQ_sn2(struct amo *amo, u64 flag, int nasid, int phys_cpuid,
165 int vector)
33ba3c77
DN
166{
167 int ret = 0;
168 unsigned long irq_flags;
169
170 local_irq_save(irq_flags);
171
172 FETCHOP_STORE_OP(TO_AMO((u64)&amo->variable), FETCHOP_OR, flag);
173 sn_send_IPI_phys(nasid, phys_cpuid, vector, 0);
174
175 /*
176 * We must always use the nofault function regardless of whether we
177 * are on a Shub 1.1 system or a Shub 1.2 slice 0xc processor. If we
178 * didn't, we'd never know that the other partition is down and would
c39838ce 179 * keep sending IRQs and amos to it until the heartbeat times out.
33ba3c77
DN
180 */
181 ret = xp_nofault_PIOR((u64 *)GLOBAL_MMR_ADDR(NASID_GET(&amo->variable),
182 xp_nofault_PIOR_target));
183
184 local_irq_restore(irq_flags);
185
261f3b49 186 return (ret == 0) ? xpSuccess : xpPioReadError;
33ba3c77
DN
187}
188
c39838ce 189static struct amo *
7fb5e59d 190xpc_init_IRQ_amo_sn2(int index)
33ba3c77 191{
8e85c23e 192 struct amo *amo = xpc_vars_sn2->amos_page + index;
33ba3c77 193
c39838ce 194 (void)xpc_receive_IRQ_amo_sn2(amo); /* clear amo variable */
33ba3c77
DN
195 return amo;
196}
197
198/*
7fb5e59d 199 * Functions associated with SGI_XPC_ACTIVATE IRQ.
33ba3c77
DN
200 */
201
6e41017a
DN
202/*
203 * Notify the heartbeat check thread that an activate IRQ has been received.
204 */
205static irqreturn_t
206xpc_handle_activate_IRQ_sn2(int irq, void *dev_id)
207{
5b8669df
DN
208 unsigned long irq_flags;
209
210 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
211 xpc_activate_IRQ_rcvd++;
212 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
213
6e41017a
DN
214 wake_up_interruptible(&xpc_activate_IRQ_wq);
215 return IRQ_HANDLED;
216}
217
33ba3c77 218/*
c39838ce 219 * Flag the appropriate amo variable and send an IRQ to the specified node.
33ba3c77
DN
220 */
221static void
a812dcc3
DN
222xpc_send_activate_IRQ_sn2(unsigned long amos_page_pa, int from_nasid,
223 int to_nasid, int to_phys_cpuid)
33ba3c77 224{
c39838ce 225 struct amo *amos = (struct amo *)__va(amos_page_pa +
ee6665e3 226 (XPC_ACTIVATE_IRQ_AMOS_SN2 *
c39838ce 227 sizeof(struct amo)));
33ba3c77 228
04de7418
DN
229 (void)xpc_send_IRQ_sn2(&amos[BIT_WORD(from_nasid / 2)],
230 BIT_MASK(from_nasid / 2), to_nasid,
33ba3c77
DN
231 to_phys_cpuid, SGI_XPC_ACTIVATE);
232}
233
234static void
7fb5e59d 235xpc_send_local_activate_IRQ_sn2(int from_nasid)
33ba3c77 236{
5b8669df 237 unsigned long irq_flags;
8e85c23e 238 struct amo *amos = (struct amo *)__va(xpc_vars_sn2->amos_page_pa +
ee6665e3 239 (XPC_ACTIVATE_IRQ_AMOS_SN2 *
c39838ce 240 sizeof(struct amo)));
33ba3c77
DN
241
242 /* fake the sending and receipt of an activate IRQ from remote nasid */
04de7418
DN
243 FETCHOP_STORE_OP(TO_AMO((u64)&amos[BIT_WORD(from_nasid / 2)].variable),
244 FETCHOP_OR, BIT_MASK(from_nasid / 2));
245
5b8669df
DN
246 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
247 xpc_activate_IRQ_rcvd++;
248 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
249
6e41017a 250 wake_up_interruptible(&xpc_activate_IRQ_wq);
33ba3c77
DN
251}
252
a47d5dac 253/*
7fb5e59d 254 * Functions associated with SGI_XPC_NOTIFY IRQ.
a47d5dac 255 */
33ba3c77 256
a47d5dac 257/*
7fb5e59d 258 * Check to see if any chctl flags were sent from the specified partition.
a47d5dac 259 */
33ba3c77 260static void
7fb5e59d 261xpc_check_for_sent_chctl_flags_sn2(struct xpc_partition *part)
33ba3c77 262{
7fb5e59d 263 union xpc_channel_ctl_flags chctl;
a47d5dac 264 unsigned long irq_flags;
33ba3c77 265
7fb5e59d
DN
266 chctl.all_flags = xpc_receive_IRQ_amo_sn2(part->sn.sn2.
267 local_chctl_amo_va);
268 if (chctl.all_flags == 0)
a47d5dac
DN
269 return;
270
7fb5e59d
DN
271 spin_lock_irqsave(&part->chctl_lock, irq_flags);
272 part->chctl.all_flags |= chctl.all_flags;
273 spin_unlock_irqrestore(&part->chctl_lock, irq_flags);
a47d5dac 274
7fb5e59d
DN
275 dev_dbg(xpc_chan, "received notify IRQ from partid=%d, chctl.all_flags="
276 "0x%lx\n", XPC_PARTID(part), chctl.all_flags);
a47d5dac
DN
277
278 xpc_wakeup_channel_mgr(part);
33ba3c77
DN
279}
280
a47d5dac
DN
281/*
282 * Handle the receipt of a SGI_XPC_NOTIFY IRQ by seeing whether the specified
283 * partition actually sent it. Since SGI_XPC_NOTIFY IRQs may be shared by more
c39838ce 284 * than one partition, we use an amo structure per partition to indicate
7fb5e59d 285 * whether a partition has sent an IRQ or not. If it has, then wake up the
a47d5dac
DN
286 * associated kthread to handle it.
287 *
7fb5e59d 288 * All SGI_XPC_NOTIFY IRQs received by XPC are the result of IRQs sent by XPC
a47d5dac
DN
289 * running on other partitions.
290 *
291 * Noteworthy Arguments:
292 *
293 * irq - Interrupt ReQuest number. NOT USED.
294 *
7fb5e59d 295 * dev_id - partid of IRQ's potential sender.
a47d5dac
DN
296 */
297static irqreturn_t
298xpc_handle_notify_IRQ_sn2(int irq, void *dev_id)
33ba3c77 299{
a47d5dac
DN
300 short partid = (short)(u64)dev_id;
301 struct xpc_partition *part = &xpc_partitions[partid];
302
261f3b49 303 DBUG_ON(partid < 0 || partid >= XP_MAX_NPARTITIONS_SN2);
a47d5dac
DN
304
305 if (xpc_part_ref(part)) {
7fb5e59d 306 xpc_check_for_sent_chctl_flags_sn2(part);
a47d5dac
DN
307
308 xpc_part_deref(part);
309 }
310 return IRQ_HANDLED;
33ba3c77
DN
311}
312
313/*
7fb5e59d
DN
314 * Check to see if xpc_handle_notify_IRQ_sn2() dropped any IRQs on the floor
315 * because the write to their associated amo variable completed after the IRQ
a47d5dac 316 * was received.
33ba3c77 317 */
a47d5dac 318static void
7fb5e59d 319xpc_check_for_dropped_notify_IRQ_sn2(struct xpc_partition *part)
a47d5dac
DN
320{
321 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
322
323 if (xpc_part_ref(part)) {
7fb5e59d 324 xpc_check_for_sent_chctl_flags_sn2(part);
a47d5dac
DN
325
326 part_sn2->dropped_notify_IRQ_timer.expires = jiffies +
7fb5e59d 327 XPC_DROPPED_NOTIFY_IRQ_WAIT_INTERVAL;
a47d5dac
DN
328 add_timer(&part_sn2->dropped_notify_IRQ_timer);
329 xpc_part_deref(part);
330 }
331}
33ba3c77
DN
332
333/*
7fb5e59d 334 * Send a notify IRQ to the remote partition that is associated with the
33ba3c77
DN
335 * specified channel.
336 */
337static void
7fb5e59d
DN
338xpc_send_notify_IRQ_sn2(struct xpc_channel *ch, u8 chctl_flag,
339 char *chctl_flag_string, unsigned long *irq_flags)
33ba3c77
DN
340{
341 struct xpc_partition *part = &xpc_partitions[ch->partid];
a47d5dac 342 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
7fb5e59d 343 union xpc_channel_ctl_flags chctl = { 0 };
33ba3c77
DN
344 enum xp_retval ret;
345
83469b55 346 if (likely(part->act_state != XPC_P_AS_DEACTIVATING)) {
7fb5e59d
DN
347 chctl.flags[ch->number] = chctl_flag;
348 ret = xpc_send_IRQ_sn2(part_sn2->remote_chctl_amo_va,
349 chctl.all_flags,
350 part_sn2->notify_IRQ_nasid,
351 part_sn2->notify_IRQ_phys_cpuid,
33ba3c77
DN
352 SGI_XPC_NOTIFY);
353 dev_dbg(xpc_chan, "%s sent to partid=%d, channel=%d, ret=%d\n",
7fb5e59d 354 chctl_flag_string, ch->partid, ch->number, ret);
33ba3c77
DN
355 if (unlikely(ret != xpSuccess)) {
356 if (irq_flags != NULL)
357 spin_unlock_irqrestore(&ch->lock, *irq_flags);
358 XPC_DEACTIVATE_PARTITION(part, ret);
359 if (irq_flags != NULL)
360 spin_lock_irqsave(&ch->lock, *irq_flags);
361 }
362 }
363}
364
7fb5e59d
DN
365#define XPC_SEND_NOTIFY_IRQ_SN2(_ch, _ipi_f, _irq_f) \
366 xpc_send_notify_IRQ_sn2(_ch, _ipi_f, #_ipi_f, _irq_f)
33ba3c77
DN
367
368/*
369 * Make it look like the remote partition, which is associated with the
7fb5e59d
DN
370 * specified channel, sent us a notify IRQ. This faked IRQ will be handled
371 * by xpc_check_for_dropped_notify_IRQ_sn2().
33ba3c77
DN
372 */
373static void
7fb5e59d
DN
374xpc_send_local_notify_IRQ_sn2(struct xpc_channel *ch, u8 chctl_flag,
375 char *chctl_flag_string)
33ba3c77
DN
376{
377 struct xpc_partition *part = &xpc_partitions[ch->partid];
7fb5e59d 378 union xpc_channel_ctl_flags chctl = { 0 };
33ba3c77 379
7fb5e59d
DN
380 chctl.flags[ch->number] = chctl_flag;
381 FETCHOP_STORE_OP(TO_AMO((u64)&part->sn.sn2.local_chctl_amo_va->
382 variable), FETCHOP_OR, chctl.all_flags);
33ba3c77 383 dev_dbg(xpc_chan, "%s sent local from partid=%d, channel=%d\n",
7fb5e59d 384 chctl_flag_string, ch->partid, ch->number);
33ba3c77
DN
385}
386
7fb5e59d
DN
387#define XPC_SEND_LOCAL_NOTIFY_IRQ_SN2(_ch, _ipi_f) \
388 xpc_send_local_notify_IRQ_sn2(_ch, _ipi_f, #_ipi_f)
33ba3c77
DN
389
390static void
7fb5e59d
DN
391xpc_send_chctl_closerequest_sn2(struct xpc_channel *ch,
392 unsigned long *irq_flags)
33ba3c77 393{
5b8669df 394 struct xpc_openclose_args *args = ch->sn.sn2.local_openclose_args;
33ba3c77
DN
395
396 args->reason = ch->reason;
7fb5e59d 397 XPC_SEND_NOTIFY_IRQ_SN2(ch, XPC_CHCTL_CLOSEREQUEST, irq_flags);
33ba3c77
DN
398}
399
400static void
7fb5e59d 401xpc_send_chctl_closereply_sn2(struct xpc_channel *ch, unsigned long *irq_flags)
33ba3c77 402{
7fb5e59d 403 XPC_SEND_NOTIFY_IRQ_SN2(ch, XPC_CHCTL_CLOSEREPLY, irq_flags);
33ba3c77
DN
404}
405
406static void
7fb5e59d 407xpc_send_chctl_openrequest_sn2(struct xpc_channel *ch, unsigned long *irq_flags)
33ba3c77 408{
5b8669df 409 struct xpc_openclose_args *args = ch->sn.sn2.local_openclose_args;
33ba3c77 410
bd3e64c1 411 args->entry_size = ch->entry_size;
33ba3c77 412 args->local_nentries = ch->local_nentries;
7fb5e59d 413 XPC_SEND_NOTIFY_IRQ_SN2(ch, XPC_CHCTL_OPENREQUEST, irq_flags);
33ba3c77
DN
414}
415
416static void
7fb5e59d 417xpc_send_chctl_openreply_sn2(struct xpc_channel *ch, unsigned long *irq_flags)
33ba3c77 418{
5b8669df 419 struct xpc_openclose_args *args = ch->sn.sn2.local_openclose_args;
33ba3c77
DN
420
421 args->remote_nentries = ch->remote_nentries;
422 args->local_nentries = ch->local_nentries;
5b8669df 423 args->local_msgqueue_pa = xp_pa(ch->sn.sn2.local_msgqueue);
7fb5e59d 424 XPC_SEND_NOTIFY_IRQ_SN2(ch, XPC_CHCTL_OPENREPLY, irq_flags);
33ba3c77
DN
425}
426
427static void
7fb5e59d 428xpc_send_chctl_msgrequest_sn2(struct xpc_channel *ch)
33ba3c77 429{
7fb5e59d 430 XPC_SEND_NOTIFY_IRQ_SN2(ch, XPC_CHCTL_MSGREQUEST, NULL);
33ba3c77
DN
431}
432
433static void
7fb5e59d 434xpc_send_chctl_local_msgrequest_sn2(struct xpc_channel *ch)
33ba3c77 435{
7fb5e59d 436 XPC_SEND_LOCAL_NOTIFY_IRQ_SN2(ch, XPC_CHCTL_MSGREQUEST);
33ba3c77
DN
437}
438
5b8669df
DN
439static void
440xpc_save_remote_msgqueue_pa_sn2(struct xpc_channel *ch,
441 unsigned long msgqueue_pa)
442{
443 ch->sn.sn2.remote_msgqueue_pa = msgqueue_pa;
444}
445
33ba3c77
DN
446/*
447 * This next set of functions are used to keep track of when a partition is
448 * potentially engaged in accessing memory belonging to another partition.
449 */
450
451static void
a47d5dac 452xpc_indicate_partition_engaged_sn2(struct xpc_partition *part)
33ba3c77
DN
453{
454 unsigned long irq_flags;
c39838ce 455 struct amo *amo = (struct amo *)__va(part->sn.sn2.remote_amos_page_pa +
ee6665e3 456 (XPC_ENGAGED_PARTITIONS_AMO_SN2 *
c39838ce 457 sizeof(struct amo)));
33ba3c77
DN
458
459 local_irq_save(irq_flags);
460
c39838ce 461 /* set bit corresponding to our partid in remote partition's amo */
33ba3c77 462 FETCHOP_STORE_OP(TO_AMO((u64)&amo->variable), FETCHOP_OR,
04de7418
DN
463 BIT(sn_partition_id));
464
33ba3c77
DN
465 /*
466 * We must always use the nofault function regardless of whether we
467 * are on a Shub 1.1 system or a Shub 1.2 slice 0xc processor. If we
468 * didn't, we'd never know that the other partition is down and would
c39838ce 469 * keep sending IRQs and amos to it until the heartbeat times out.
33ba3c77
DN
470 */
471 (void)xp_nofault_PIOR((u64 *)GLOBAL_MMR_ADDR(NASID_GET(&amo->
472 variable),
473 xp_nofault_PIOR_target));
474
475 local_irq_restore(irq_flags);
476}
477
478static void
a47d5dac 479xpc_indicate_partition_disengaged_sn2(struct xpc_partition *part)
33ba3c77 480{
a47d5dac 481 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
33ba3c77 482 unsigned long irq_flags;
c39838ce 483 struct amo *amo = (struct amo *)__va(part_sn2->remote_amos_page_pa +
ee6665e3 484 (XPC_ENGAGED_PARTITIONS_AMO_SN2 *
c39838ce 485 sizeof(struct amo)));
33ba3c77
DN
486
487 local_irq_save(irq_flags);
488
c39838ce 489 /* clear bit corresponding to our partid in remote partition's amo */
33ba3c77 490 FETCHOP_STORE_OP(TO_AMO((u64)&amo->variable), FETCHOP_AND,
04de7418
DN
491 ~BIT(sn_partition_id));
492
33ba3c77
DN
493 /*
494 * We must always use the nofault function regardless of whether we
495 * are on a Shub 1.1 system or a Shub 1.2 slice 0xc processor. If we
496 * didn't, we'd never know that the other partition is down and would
c39838ce 497 * keep sending IRQs and amos to it until the heartbeat times out.
33ba3c77
DN
498 */
499 (void)xp_nofault_PIOR((u64 *)GLOBAL_MMR_ADDR(NASID_GET(&amo->
500 variable),
501 xp_nofault_PIOR_target));
502
503 local_irq_restore(irq_flags);
33ba3c77 504
33ba3c77 505 /*
a47d5dac 506 * Send activate IRQ to get other side to see that we've cleared our
c39838ce 507 * bit in their engaged partitions amo.
33ba3c77 508 */
7fb5e59d 509 xpc_send_activate_IRQ_sn2(part_sn2->remote_amos_page_pa,
a47d5dac
DN
510 cnodeid_to_nasid(0),
511 part_sn2->activate_IRQ_nasid,
512 part_sn2->activate_IRQ_phys_cpuid);
33ba3c77
DN
513}
514
5b8669df
DN
515static void
516xpc_assume_partition_disengaged_sn2(short partid)
517{
518 struct amo *amo = xpc_vars_sn2->amos_page +
519 XPC_ENGAGED_PARTITIONS_AMO_SN2;
520
521 /* clear bit(s) based on partid mask in our partition's amo */
522 FETCHOP_STORE_OP(TO_AMO((u64)&amo->variable), FETCHOP_AND,
523 ~BIT(partid));
524}
525
a47d5dac
DN
526static int
527xpc_partition_engaged_sn2(short partid)
33ba3c77 528{
8e85c23e
DN
529 struct amo *amo = xpc_vars_sn2->amos_page +
530 XPC_ENGAGED_PARTITIONS_AMO_SN2;
33ba3c77 531
c39838ce 532 /* our partition's amo variable ANDed with partid mask */
33ba3c77 533 return (FETCHOP_LOAD_OP(TO_AMO((u64)&amo->variable), FETCHOP_LOAD) &
04de7418 534 BIT(partid)) != 0;
33ba3c77
DN
535}
536
a47d5dac
DN
537static int
538xpc_any_partition_engaged_sn2(void)
33ba3c77 539{
8e85c23e
DN
540 struct amo *amo = xpc_vars_sn2->amos_page +
541 XPC_ENGAGED_PARTITIONS_AMO_SN2;
33ba3c77 542
c39838ce 543 /* our partition's amo variable */
a47d5dac 544 return FETCHOP_LOAD_OP(TO_AMO((u64)&amo->variable), FETCHOP_LOAD) != 0;
33ba3c77
DN
545}
546
6e41017a
DN
547/* original protection values for each node */
548static u64 xpc_prot_vec_sn2[MAX_NUMNODES];
549
550/*
c39838ce 551 * Change protections to allow amo operations on non-Shub 1.1 systems.
6e41017a
DN
552 */
553static enum xp_retval
c39838ce 554xpc_allow_amo_ops_sn2(struct amo *amos_page)
6e41017a 555{
6c1c325d 556 enum xp_retval ret = xpSuccess;
6e41017a
DN
557
558 /*
559 * On SHUB 1.1, we cannot call sn_change_memprotect() since the BIST
560 * collides with memory operations. On those systems we call
c39838ce 561 * xpc_allow_amo_ops_shub_wars_1_1_sn2() instead.
6e41017a 562 */
6c1c325d
DN
563 if (!enable_shub_wars_1_1())
564 ret = xp_expand_memprotect(ia64_tpa((u64)amos_page), PAGE_SIZE);
565
566 return ret;
6e41017a
DN
567}
568
569/*
c39838ce 570 * Change protections to allow amo operations on Shub 1.1 systems.
6e41017a
DN
571 */
572static void
c39838ce 573xpc_allow_amo_ops_shub_wars_1_1_sn2(void)
6e41017a
DN
574{
575 int node;
576 int nasid;
577
578 if (!enable_shub_wars_1_1())
579 return;
580
581 for_each_online_node(node) {
582 nasid = cnodeid_to_nasid(node);
583 /* save current protection values */
584 xpc_prot_vec_sn2[node] =
585 (u64)HUB_L((u64 *)GLOBAL_MMR_ADDR(nasid,
586 SH1_MD_DQLP_MMR_DIR_PRIVEC0));
587 /* open up everything */
588 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid,
589 SH1_MD_DQLP_MMR_DIR_PRIVEC0),
590 -1UL);
591 HUB_S((u64 *)GLOBAL_MMR_ADDR(nasid,
592 SH1_MD_DQRP_MMR_DIR_PRIVEC0),
593 -1UL);
594 }
595}
596
261f3b49 597static enum xp_retval
a812dcc3 598xpc_get_partition_rsvd_page_pa_sn2(void *buf, u64 *cookie, unsigned long *rp_pa,
261f3b49
DN
599 size_t *len)
600{
601 s64 status;
602 enum xp_retval ret;
603
a812dcc3 604 status = sn_partition_reserved_page_pa((u64)buf, cookie, rp_pa, len);
261f3b49
DN
605 if (status == SALRET_OK)
606 ret = xpSuccess;
607 else if (status == SALRET_MORE_PASSES)
608 ret = xpNeedMoreInfo;
609 else
610 ret = xpSalError;
611
612 return ret;
613}
614
615
5b8669df
DN
616static int
617xpc_setup_rsvd_page_sn_sn2(struct xpc_rsvd_page *rp)
94bd2708 618{
c39838ce 619 struct amo *amos_page;
94bd2708
DN
620 int i;
621 int ret;
622
8e85c23e 623 xpc_vars_sn2 = XPC_RP_VARS(rp);
94bd2708 624
a812dcc3 625 rp->sn.vars_pa = xp_pa(xpc_vars_sn2);
94bd2708 626
e17d416b 627 /* vars_part array follows immediately after vars */
8e85c23e
DN
628 xpc_vars_part_sn2 = (struct xpc_vars_part_sn2 *)((u8 *)XPC_RP_VARS(rp) +
629 XPC_RP_VARS_SIZE);
e17d416b 630
94bd2708 631 /*
8e85c23e
DN
632 * Before clearing xpc_vars_sn2, see if a page of amos had been
633 * previously allocated. If not we'll need to allocate one and set
634 * permissions so that cross-partition amos are allowed.
94bd2708 635 *
c39838ce 636 * The allocated amo page needs MCA reporting to remain disabled after
94bd2708 637 * XPC has unloaded. To make this work, we keep a copy of the pointer
8e85c23e 638 * to this page (i.e., amos_page) in the struct xpc_vars_sn2 structure,
94bd2708 639 * which is pointed to by the reserved page, and re-use that saved copy
c39838ce 640 * on subsequent loads of XPC. This amo page is never freed, and its
94bd2708
DN
641 * memory protections are never restricted.
642 */
8e85c23e 643 amos_page = xpc_vars_sn2->amos_page;
94bd2708 644 if (amos_page == NULL) {
c39838ce 645 amos_page = (struct amo *)TO_AMO(uncached_alloc_page(0, 1));
94bd2708 646 if (amos_page == NULL) {
c39838ce 647 dev_err(xpc_part, "can't allocate page of amos\n");
5b8669df 648 return -ENOMEM;
94bd2708
DN
649 }
650
651 /*
c39838ce
DN
652 * Open up amo-R/W to cpu. This is done on Shub 1.1 systems
653 * when xpc_allow_amo_ops_shub_wars_1_1_sn2() is called.
94bd2708 654 */
c39838ce 655 ret = xpc_allow_amo_ops_sn2(amos_page);
6e41017a 656 if (ret != xpSuccess) {
c39838ce 657 dev_err(xpc_part, "can't allow amo operations\n");
6e41017a
DN
658 uncached_free_page(__IA64_UNCACHED_OFFSET |
659 TO_PHYS((u64)amos_page), 1);
5b8669df 660 return -EPERM;
94bd2708
DN
661 }
662 }
663
8e85c23e
DN
664 /* clear xpc_vars_sn2 */
665 memset(xpc_vars_sn2, 0, sizeof(struct xpc_vars_sn2));
94bd2708 666
8e85c23e
DN
667 xpc_vars_sn2->version = XPC_V_VERSION;
668 xpc_vars_sn2->activate_IRQ_nasid = cpuid_to_nasid(0);
669 xpc_vars_sn2->activate_IRQ_phys_cpuid = cpu_physical_id(0);
a812dcc3 670 xpc_vars_sn2->vars_part_pa = xp_pa(xpc_vars_part_sn2);
8e85c23e
DN
671 xpc_vars_sn2->amos_page_pa = ia64_tpa((u64)amos_page);
672 xpc_vars_sn2->amos_page = amos_page; /* save for next load of XPC */
94bd2708 673
8e85c23e
DN
674 /* clear xpc_vars_part_sn2 */
675 memset((u64 *)xpc_vars_part_sn2, 0, sizeof(struct xpc_vars_part_sn2) *
261f3b49 676 XP_MAX_NPARTITIONS_SN2);
94bd2708 677
c39838ce 678 /* initialize the activate IRQ related amo variables */
04de7418 679 for (i = 0; i < xpc_nasid_mask_nlongs; i++)
ee6665e3 680 (void)xpc_init_IRQ_amo_sn2(XPC_ACTIVATE_IRQ_AMOS_SN2 + i);
94bd2708 681
c39838ce 682 /* initialize the engaged remote partitions related amo variables */
ee6665e3
DN
683 (void)xpc_init_IRQ_amo_sn2(XPC_ENGAGED_PARTITIONS_AMO_SN2);
684 (void)xpc_init_IRQ_amo_sn2(XPC_DEACTIVATE_REQUEST_AMO_SN2);
33ba3c77 685
5b8669df 686 return 0;
33ba3c77
DN
687}
688
689static void
690xpc_increment_heartbeat_sn2(void)
691{
8e85c23e 692 xpc_vars_sn2->heartbeat++;
33ba3c77
DN
693}
694
695static void
696xpc_offline_heartbeat_sn2(void)
697{
698 xpc_increment_heartbeat_sn2();
8e85c23e 699 xpc_vars_sn2->heartbeat_offline = 1;
33ba3c77
DN
700}
701
702static void
703xpc_online_heartbeat_sn2(void)
704{
705 xpc_increment_heartbeat_sn2();
8e85c23e 706 xpc_vars_sn2->heartbeat_offline = 0;
33ba3c77
DN
707}
708
709static void
710xpc_heartbeat_init_sn2(void)
711{
8e85c23e 712 DBUG_ON(xpc_vars_sn2 == NULL);
33ba3c77 713
8e85c23e
DN
714 bitmap_zero(xpc_vars_sn2->heartbeating_to_mask, XP_MAX_NPARTITIONS_SN2);
715 xpc_heartbeating_to_mask = &xpc_vars_sn2->heartbeating_to_mask[0];
33ba3c77
DN
716 xpc_online_heartbeat_sn2();
717}
718
719static void
720xpc_heartbeat_exit_sn2(void)
721{
722 xpc_offline_heartbeat_sn2();
723}
724
61deb86e
DN
725static enum xp_retval
726xpc_get_remote_heartbeat_sn2(struct xpc_partition *part)
33ba3c77
DN
727{
728 struct xpc_vars_sn2 *remote_vars;
33ba3c77
DN
729 enum xp_retval ret;
730
ee6665e3 731 remote_vars = (struct xpc_vars_sn2 *)xpc_remote_copy_buffer_sn2;
33ba3c77 732
61deb86e
DN
733 /* pull the remote vars structure that contains the heartbeat */
734 ret = xp_remote_memcpy(xp_pa(remote_vars),
735 part->sn.sn2.remote_vars_pa,
736 XPC_RP_VARS_SIZE);
737 if (ret != xpSuccess)
738 return ret;
33ba3c77 739
61deb86e
DN
740 dev_dbg(xpc_part, "partid=%d, heartbeat=%ld, last_heartbeat=%ld, "
741 "heartbeat_offline=%ld, HB_mask[0]=0x%lx\n", XPC_PARTID(part),
742 remote_vars->heartbeat, part->last_heartbeat,
743 remote_vars->heartbeat_offline,
744 remote_vars->heartbeating_to_mask[0]);
745
746 if ((remote_vars->heartbeat == part->last_heartbeat &&
747 remote_vars->heartbeat_offline == 0) ||
748 !xpc_hb_allowed(sn_partition_id,
749 &remote_vars->heartbeating_to_mask)) {
750 ret = xpNoHeartbeat;
751 } else {
33ba3c77
DN
752 part->last_heartbeat = remote_vars->heartbeat;
753 }
61deb86e
DN
754
755 return ret;
33ba3c77
DN
756}
757
758/*
759 * Get a copy of the remote partition's XPC variables from the reserved page.
760 *
761 * remote_vars points to a buffer that is cacheline aligned for BTE copies and
762 * assumed to be of size XPC_RP_VARS_SIZE.
763 */
764static enum xp_retval
a812dcc3
DN
765xpc_get_remote_vars_sn2(unsigned long remote_vars_pa,
766 struct xpc_vars_sn2 *remote_vars)
33ba3c77
DN
767{
768 enum xp_retval ret;
769
770 if (remote_vars_pa == 0)
771 return xpVarsNotSet;
772
773 /* pull over the cross partition variables */
a812dcc3 774 ret = xp_remote_memcpy(xp_pa(remote_vars), remote_vars_pa,
33ba3c77
DN
775 XPC_RP_VARS_SIZE);
776 if (ret != xpSuccess)
777 return ret;
778
779 if (XPC_VERSION_MAJOR(remote_vars->version) !=
780 XPC_VERSION_MAJOR(XPC_V_VERSION)) {
781 return xpBadVersion;
782 }
94bd2708
DN
783
784 return xpSuccess;
785}
786
33ba3c77 787static void
a47d5dac 788xpc_request_partition_activation_sn2(struct xpc_rsvd_page *remote_rp,
a812dcc3 789 unsigned long remote_rp_pa, int nasid)
33ba3c77 790{
7fb5e59d 791 xpc_send_local_activate_IRQ_sn2(nasid);
a47d5dac
DN
792}
793
794static void
795xpc_request_partition_reactivation_sn2(struct xpc_partition *part)
796{
7fb5e59d 797 xpc_send_local_activate_IRQ_sn2(part->sn.sn2.activate_IRQ_nasid);
a47d5dac
DN
798}
799
800static void
801xpc_request_partition_deactivation_sn2(struct xpc_partition *part)
802{
803 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
804 unsigned long irq_flags;
c39838ce 805 struct amo *amo = (struct amo *)__va(part_sn2->remote_amos_page_pa +
ee6665e3 806 (XPC_DEACTIVATE_REQUEST_AMO_SN2 *
c39838ce 807 sizeof(struct amo)));
a47d5dac
DN
808
809 local_irq_save(irq_flags);
810
c39838ce 811 /* set bit corresponding to our partid in remote partition's amo */
a47d5dac 812 FETCHOP_STORE_OP(TO_AMO((u64)&amo->variable), FETCHOP_OR,
04de7418
DN
813 BIT(sn_partition_id));
814
a47d5dac
DN
815 /*
816 * We must always use the nofault function regardless of whether we
817 * are on a Shub 1.1 system or a Shub 1.2 slice 0xc processor. If we
818 * didn't, we'd never know that the other partition is down and would
c39838ce 819 * keep sending IRQs and amos to it until the heartbeat times out.
a47d5dac
DN
820 */
821 (void)xp_nofault_PIOR((u64 *)GLOBAL_MMR_ADDR(NASID_GET(&amo->
822 variable),
823 xp_nofault_PIOR_target));
824
825 local_irq_restore(irq_flags);
826
827 /*
828 * Send activate IRQ to get other side to see that we've set our
c39838ce 829 * bit in their deactivate request amo.
a47d5dac 830 */
7fb5e59d 831 xpc_send_activate_IRQ_sn2(part_sn2->remote_amos_page_pa,
a47d5dac
DN
832 cnodeid_to_nasid(0),
833 part_sn2->activate_IRQ_nasid,
834 part_sn2->activate_IRQ_phys_cpuid);
835}
836
837static void
838xpc_cancel_partition_deactivation_request_sn2(struct xpc_partition *part)
839{
840 unsigned long irq_flags;
c39838ce 841 struct amo *amo = (struct amo *)__va(part->sn.sn2.remote_amos_page_pa +
ee6665e3 842 (XPC_DEACTIVATE_REQUEST_AMO_SN2 *
c39838ce 843 sizeof(struct amo)));
a47d5dac
DN
844
845 local_irq_save(irq_flags);
846
c39838ce 847 /* clear bit corresponding to our partid in remote partition's amo */
a47d5dac 848 FETCHOP_STORE_OP(TO_AMO((u64)&amo->variable), FETCHOP_AND,
04de7418
DN
849 ~BIT(sn_partition_id));
850
a47d5dac
DN
851 /*
852 * We must always use the nofault function regardless of whether we
853 * are on a Shub 1.1 system or a Shub 1.2 slice 0xc processor. If we
854 * didn't, we'd never know that the other partition is down and would
c39838ce 855 * keep sending IRQs and amos to it until the heartbeat times out.
a47d5dac
DN
856 */
857 (void)xp_nofault_PIOR((u64 *)GLOBAL_MMR_ADDR(NASID_GET(&amo->
858 variable),
859 xp_nofault_PIOR_target));
860
861 local_irq_restore(irq_flags);
862}
863
864static int
865xpc_partition_deactivation_requested_sn2(short partid)
866{
8e85c23e
DN
867 struct amo *amo = xpc_vars_sn2->amos_page +
868 XPC_DEACTIVATE_REQUEST_AMO_SN2;
a47d5dac 869
c39838ce 870 /* our partition's amo variable ANDed with partid mask */
a47d5dac 871 return (FETCHOP_LOAD_OP(TO_AMO((u64)&amo->variable), FETCHOP_LOAD) &
04de7418 872 BIT(partid)) != 0;
33ba3c77
DN
873}
874
875/*
876 * Update the remote partition's info.
877 */
878static void
879xpc_update_partition_info_sn2(struct xpc_partition *part, u8 remote_rp_version,
81fe7883 880 unsigned long *remote_rp_ts_jiffies,
a812dcc3
DN
881 unsigned long remote_rp_pa,
882 unsigned long remote_vars_pa,
33ba3c77
DN
883 struct xpc_vars_sn2 *remote_vars)
884{
a47d5dac
DN
885 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
886
33ba3c77
DN
887 part->remote_rp_version = remote_rp_version;
888 dev_dbg(xpc_part, " remote_rp_version = 0x%016x\n",
889 part->remote_rp_version);
890
81fe7883
DN
891 part->remote_rp_ts_jiffies = *remote_rp_ts_jiffies;
892 dev_dbg(xpc_part, " remote_rp_ts_jiffies = 0x%016lx\n",
893 part->remote_rp_ts_jiffies);
33ba3c77
DN
894
895 part->remote_rp_pa = remote_rp_pa;
896 dev_dbg(xpc_part, " remote_rp_pa = 0x%016lx\n", part->remote_rp_pa);
897
a47d5dac 898 part_sn2->remote_vars_pa = remote_vars_pa;
33ba3c77 899 dev_dbg(xpc_part, " remote_vars_pa = 0x%016lx\n",
a47d5dac 900 part_sn2->remote_vars_pa);
33ba3c77 901
158bc69e 902 part->last_heartbeat = remote_vars->heartbeat - 1;
33ba3c77
DN
903 dev_dbg(xpc_part, " last_heartbeat = 0x%016lx\n",
904 part->last_heartbeat);
905
a47d5dac 906 part_sn2->remote_vars_part_pa = remote_vars->vars_part_pa;
33ba3c77 907 dev_dbg(xpc_part, " remote_vars_part_pa = 0x%016lx\n",
a47d5dac 908 part_sn2->remote_vars_part_pa);
33ba3c77 909
a47d5dac
DN
910 part_sn2->activate_IRQ_nasid = remote_vars->activate_IRQ_nasid;
911 dev_dbg(xpc_part, " activate_IRQ_nasid = 0x%x\n",
912 part_sn2->activate_IRQ_nasid);
33ba3c77 913
a47d5dac
DN
914 part_sn2->activate_IRQ_phys_cpuid =
915 remote_vars->activate_IRQ_phys_cpuid;
916 dev_dbg(xpc_part, " activate_IRQ_phys_cpuid = 0x%x\n",
917 part_sn2->activate_IRQ_phys_cpuid);
33ba3c77 918
a47d5dac 919 part_sn2->remote_amos_page_pa = remote_vars->amos_page_pa;
33ba3c77 920 dev_dbg(xpc_part, " remote_amos_page_pa = 0x%lx\n",
a47d5dac 921 part_sn2->remote_amos_page_pa);
33ba3c77 922
a47d5dac 923 part_sn2->remote_vars_version = remote_vars->version;
33ba3c77 924 dev_dbg(xpc_part, " remote_vars_version = 0x%x\n",
a47d5dac 925 part_sn2->remote_vars_version);
33ba3c77
DN
926}
927
928/*
7fb5e59d
DN
929 * Prior code has determined the nasid which generated a activate IRQ.
930 * Inspect that nasid to determine if its partition needs to be activated
931 * or deactivated.
33ba3c77 932 *
7fb5e59d 933 * A partition is considered "awaiting activation" if our partition
33ba3c77
DN
934 * flags indicate it is not active and it has a heartbeat. A
935 * partition is considered "awaiting deactivation" if our partition
936 * flags indicate it is active but it has no heartbeat or it is not
937 * sending its heartbeat to us.
938 *
939 * To determine the heartbeat, the remote nasid must have a properly
940 * initialized reserved page.
941 */
942static void
6e41017a 943xpc_identify_activate_IRQ_req_sn2(int nasid)
33ba3c77
DN
944{
945 struct xpc_rsvd_page *remote_rp;
946 struct xpc_vars_sn2 *remote_vars;
a812dcc3
DN
947 unsigned long remote_rp_pa;
948 unsigned long remote_vars_pa;
33ba3c77
DN
949 int remote_rp_version;
950 int reactivate = 0;
81fe7883 951 unsigned long remote_rp_ts_jiffies = 0;
33ba3c77
DN
952 short partid;
953 struct xpc_partition *part;
a47d5dac 954 struct xpc_partition_sn2 *part_sn2;
33ba3c77
DN
955 enum xp_retval ret;
956
957 /* pull over the reserved page structure */
958
ee6665e3 959 remote_rp = (struct xpc_rsvd_page *)xpc_remote_copy_buffer_sn2;
33ba3c77
DN
960
961 ret = xpc_get_remote_rp(nasid, NULL, remote_rp, &remote_rp_pa);
962 if (ret != xpSuccess) {
963 dev_warn(xpc_part, "unable to get reserved page from nasid %d, "
964 "which sent interrupt, reason=%d\n", nasid, ret);
965 return;
966 }
967
968 remote_vars_pa = remote_rp->sn.vars_pa;
969 remote_rp_version = remote_rp->version;
81fe7883 970 remote_rp_ts_jiffies = remote_rp->ts_jiffies;
33ba3c77
DN
971
972 partid = remote_rp->SAL_partid;
973 part = &xpc_partitions[partid];
a47d5dac 974 part_sn2 = &part->sn.sn2;
33ba3c77
DN
975
976 /* pull over the cross partition variables */
977
ee6665e3 978 remote_vars = (struct xpc_vars_sn2 *)xpc_remote_copy_buffer_sn2;
33ba3c77
DN
979
980 ret = xpc_get_remote_vars_sn2(remote_vars_pa, remote_vars);
981 if (ret != xpSuccess) {
33ba3c77
DN
982 dev_warn(xpc_part, "unable to get XPC variables from nasid %d, "
983 "which sent interrupt, reason=%d\n", nasid, ret);
984
985 XPC_DEACTIVATE_PARTITION(part, ret);
986 return;
987 }
988
6e41017a 989 part->activate_IRQ_rcvd++;
33ba3c77
DN
990
991 dev_dbg(xpc_part, "partid for nasid %d is %d; IRQs = %d; HB = "
6e41017a 992 "%ld:0x%lx\n", (int)nasid, (int)partid, part->activate_IRQ_rcvd,
33ba3c77
DN
993 remote_vars->heartbeat, remote_vars->heartbeating_to_mask[0]);
994
995 if (xpc_partition_disengaged(part) &&
83469b55 996 part->act_state == XPC_P_AS_INACTIVE) {
33ba3c77
DN
997
998 xpc_update_partition_info_sn2(part, remote_rp_version,
81fe7883
DN
999 &remote_rp_ts_jiffies,
1000 remote_rp_pa, remote_vars_pa,
1001 remote_vars);
33ba3c77 1002
a47d5dac
DN
1003 if (xpc_partition_deactivation_requested_sn2(partid)) {
1004 /*
1005 * Other side is waiting on us to deactivate even though
1006 * we already have.
1007 */
1008 return;
33ba3c77
DN
1009 }
1010
1011 xpc_activate_partition(part);
1012 return;
1013 }
1014
1015 DBUG_ON(part->remote_rp_version == 0);
a47d5dac 1016 DBUG_ON(part_sn2->remote_vars_version == 0);
33ba3c77 1017
81fe7883 1018 if (remote_rp_ts_jiffies != part->remote_rp_ts_jiffies) {
33ba3c77 1019
a47d5dac 1020 /* the other side rebooted */
33ba3c77 1021
a47d5dac
DN
1022 DBUG_ON(xpc_partition_engaged_sn2(partid));
1023 DBUG_ON(xpc_partition_deactivation_requested_sn2(partid));
33ba3c77
DN
1024
1025 xpc_update_partition_info_sn2(part, remote_rp_version,
81fe7883
DN
1026 &remote_rp_ts_jiffies,
1027 remote_rp_pa, remote_vars_pa,
1028 remote_vars);
33ba3c77 1029 reactivate = 1;
33ba3c77
DN
1030 }
1031
a47d5dac 1032 if (part->disengage_timeout > 0 && !xpc_partition_disengaged(part)) {
33ba3c77
DN
1033 /* still waiting on other side to disengage from us */
1034 return;
1035 }
1036
a47d5dac 1037 if (reactivate)
33ba3c77 1038 XPC_DEACTIVATE_PARTITION(part, xpReactivating);
a47d5dac 1039 else if (xpc_partition_deactivation_requested_sn2(partid))
33ba3c77 1040 XPC_DEACTIVATE_PARTITION(part, xpOtherGoingDown);
33ba3c77
DN
1041}
1042
1043/*
c39838ce 1044 * Loop through the activation amo variables and process any bits
33ba3c77
DN
1045 * which are set. Each bit indicates a nasid sending a partition
1046 * activation or deactivation request.
1047 *
1048 * Return #of IRQs detected.
1049 */
1050int
6e41017a 1051xpc_identify_activate_IRQ_sender_sn2(void)
33ba3c77 1052{
04de7418
DN
1053 int l;
1054 int b;
1055 unsigned long nasid_mask_long;
33ba3c77
DN
1056 u64 nasid; /* remote nasid */
1057 int n_IRQs_detected = 0;
c39838ce 1058 struct amo *act_amos;
33ba3c77 1059
8e85c23e 1060 act_amos = xpc_vars_sn2->amos_page + XPC_ACTIVATE_IRQ_AMOS_SN2;
33ba3c77 1061
04de7418
DN
1062 /* scan through activate amo variables looking for non-zero entries */
1063 for (l = 0; l < xpc_nasid_mask_nlongs; l++) {
33ba3c77
DN
1064
1065 if (xpc_exiting)
1066 break;
1067
04de7418
DN
1068 nasid_mask_long = xpc_receive_IRQ_amo_sn2(&act_amos[l]);
1069
1070 b = find_first_bit(&nasid_mask_long, BITS_PER_LONG);
1071 if (b >= BITS_PER_LONG) {
1072 /* no IRQs from nasids in this amo variable */
33ba3c77
DN
1073 continue;
1074 }
1075
04de7418
DN
1076 dev_dbg(xpc_part, "amo[%d] gave back 0x%lx\n", l,
1077 nasid_mask_long);
33ba3c77
DN
1078
1079 /*
1080 * If this nasid has been added to the machine since
1081 * our partition was reset, this will retain the
1082 * remote nasid in our reserved pages machine mask.
1083 * This is used in the event of module reload.
1084 */
04de7418 1085 xpc_mach_nasids[l] |= nasid_mask_long;
33ba3c77
DN
1086
1087 /* locate the nasid(s) which sent interrupts */
1088
04de7418
DN
1089 do {
1090 n_IRQs_detected++;
1091 nasid = (l * BITS_PER_LONG + b) * 2;
1092 dev_dbg(xpc_part, "interrupt from nasid %ld\n", nasid);
1093 xpc_identify_activate_IRQ_req_sn2(nasid);
1094
1095 b = find_next_bit(&nasid_mask_long, BITS_PER_LONG,
1096 b + 1);
1097 } while (b < BITS_PER_LONG);
33ba3c77
DN
1098 }
1099 return n_IRQs_detected;
1100}
1101
1102static void
5b8669df 1103xpc_process_activate_IRQ_rcvd_sn2(void)
33ba3c77 1104{
5b8669df
DN
1105 unsigned long irq_flags;
1106 int n_IRQs_expected;
33ba3c77
DN
1107 int n_IRQs_detected;
1108
5b8669df
DN
1109 DBUG_ON(xpc_activate_IRQ_rcvd == 0);
1110
1111 spin_lock_irqsave(&xpc_activate_IRQ_rcvd_lock, irq_flags);
1112 n_IRQs_expected = xpc_activate_IRQ_rcvd;
1113 xpc_activate_IRQ_rcvd = 0;
1114 spin_unlock_irqrestore(&xpc_activate_IRQ_rcvd_lock, irq_flags);
1115
6e41017a 1116 n_IRQs_detected = xpc_identify_activate_IRQ_sender_sn2();
33ba3c77 1117 if (n_IRQs_detected < n_IRQs_expected) {
c39838ce 1118 /* retry once to help avoid missing amo */
6e41017a 1119 (void)xpc_identify_activate_IRQ_sender_sn2();
33ba3c77
DN
1120 }
1121}
1122
185c3a1b 1123/*
5b8669df 1124 * Setup the channel structures that are sn2 specific.
e17d416b
DN
1125 */
1126static enum xp_retval
5b8669df 1127xpc_setup_ch_structures_sn_sn2(struct xpc_partition *part)
e17d416b 1128{
a47d5dac 1129 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
5b8669df 1130 struct xpc_channel_sn2 *ch_sn2;
e17d416b
DN
1131 enum xp_retval retval;
1132 int ret;
1133 int cpuid;
1134 int ch_number;
e17d416b
DN
1135 struct timer_list *timer;
1136 short partid = XPC_PARTID(part);
1137
e17d416b
DN
1138 /* allocate all the required GET/PUT values */
1139
185c3a1b 1140 part_sn2->local_GPs =
5b8669df
DN
1141 xpc_kzalloc_cacheline_aligned(XPC_GP_SIZE, GFP_KERNEL,
1142 &part_sn2->local_GPs_base);
a47d5dac 1143 if (part_sn2->local_GPs == NULL) {
e17d416b
DN
1144 dev_err(xpc_chan, "can't get memory for local get/put "
1145 "values\n");
5b8669df 1146 return xpNoMemory;
e17d416b
DN
1147 }
1148
185c3a1b 1149 part_sn2->remote_GPs =
5b8669df
DN
1150 xpc_kzalloc_cacheline_aligned(XPC_GP_SIZE, GFP_KERNEL,
1151 &part_sn2->remote_GPs_base);
a47d5dac 1152 if (part_sn2->remote_GPs == NULL) {
e17d416b
DN
1153 dev_err(xpc_chan, "can't get memory for remote get/put "
1154 "values\n");
1155 retval = xpNoMemory;
5b8669df 1156 goto out_1;
e17d416b
DN
1157 }
1158
a47d5dac 1159 part_sn2->remote_GPs_pa = 0;
e17d416b
DN
1160
1161 /* allocate all the required open and close args */
1162
5b8669df
DN
1163 part_sn2->local_openclose_args =
1164 xpc_kzalloc_cacheline_aligned(XPC_OPENCLOSE_ARGS_SIZE,
1165 GFP_KERNEL, &part_sn2->
1166 local_openclose_args_base);
1167 if (part_sn2->local_openclose_args == NULL) {
e17d416b
DN
1168 dev_err(xpc_chan, "can't get memory for local connect args\n");
1169 retval = xpNoMemory;
5b8669df 1170 goto out_2;
e17d416b
DN
1171 }
1172
a47d5dac 1173 part_sn2->remote_openclose_args_pa = 0;
e17d416b 1174
7fb5e59d 1175 part_sn2->local_chctl_amo_va = xpc_init_IRQ_amo_sn2(partid);
e17d416b 1176
7fb5e59d
DN
1177 part_sn2->notify_IRQ_nasid = 0;
1178 part_sn2->notify_IRQ_phys_cpuid = 0;
1179 part_sn2->remote_chctl_amo_va = NULL;
e17d416b 1180
7fb5e59d 1181 sprintf(part_sn2->notify_IRQ_owner, "xpc%02d", partid);
a47d5dac 1182 ret = request_irq(SGI_XPC_NOTIFY, xpc_handle_notify_IRQ_sn2,
7fb5e59d 1183 IRQF_SHARED, part_sn2->notify_IRQ_owner,
a47d5dac 1184 (void *)(u64)partid);
e17d416b
DN
1185 if (ret != 0) {
1186 dev_err(xpc_chan, "can't register NOTIFY IRQ handler, "
1187 "errno=%d\n", -ret);
1188 retval = xpLackOfResources;
5b8669df 1189 goto out_3;
e17d416b
DN
1190 }
1191
7fb5e59d 1192 /* Setup a timer to check for dropped notify IRQs */
a47d5dac 1193 timer = &part_sn2->dropped_notify_IRQ_timer;
e17d416b 1194 init_timer(timer);
a47d5dac 1195 timer->function =
7fb5e59d 1196 (void (*)(unsigned long))xpc_check_for_dropped_notify_IRQ_sn2;
e17d416b 1197 timer->data = (unsigned long)part;
7fb5e59d 1198 timer->expires = jiffies + XPC_DROPPED_NOTIFY_IRQ_WAIT_INTERVAL;
e17d416b
DN
1199 add_timer(timer);
1200
e17d416b 1201 for (ch_number = 0; ch_number < part->nchannels; ch_number++) {
5b8669df 1202 ch_sn2 = &part->channels[ch_number].sn.sn2;
e17d416b 1203
5b8669df
DN
1204 ch_sn2->local_GP = &part_sn2->local_GPs[ch_number];
1205 ch_sn2->local_openclose_args =
1206 &part_sn2->local_openclose_args[ch_number];
e17d416b 1207
5b8669df 1208 mutex_init(&ch_sn2->msg_to_pull_mutex);
e17d416b
DN
1209 }
1210
e17d416b
DN
1211 /*
1212 * Setup the per partition specific variables required by the
1213 * remote partition to establish channel connections with us.
1214 *
1215 * The setting of the magic # indicates that these per partition
1216 * specific variables are ready to be used.
1217 */
a812dcc3 1218 xpc_vars_part_sn2[partid].GPs_pa = xp_pa(part_sn2->local_GPs);
8e85c23e 1219 xpc_vars_part_sn2[partid].openclose_args_pa =
5b8669df 1220 xp_pa(part_sn2->local_openclose_args);
8e85c23e 1221 xpc_vars_part_sn2[partid].chctl_amo_pa =
a812dcc3 1222 xp_pa(part_sn2->local_chctl_amo_va);
e17d416b 1223 cpuid = raw_smp_processor_id(); /* any CPU in this partition will do */
8e85c23e
DN
1224 xpc_vars_part_sn2[partid].notify_IRQ_nasid = cpuid_to_nasid(cpuid);
1225 xpc_vars_part_sn2[partid].notify_IRQ_phys_cpuid =
1226 cpu_physical_id(cpuid);
1227 xpc_vars_part_sn2[partid].nchannels = part->nchannels;
5b8669df 1228 xpc_vars_part_sn2[partid].magic = XPC_VP_MAGIC1_SN2;
e17d416b
DN
1229
1230 return xpSuccess;
1231
5b8669df 1232 /* setup of ch structures failed */
e17d416b 1233out_3:
5b8669df
DN
1234 kfree(part_sn2->local_openclose_args_base);
1235 part_sn2->local_openclose_args = NULL;
1236out_2:
a47d5dac
DN
1237 kfree(part_sn2->remote_GPs_base);
1238 part_sn2->remote_GPs = NULL;
5b8669df 1239out_1:
a47d5dac
DN
1240 kfree(part_sn2->local_GPs_base);
1241 part_sn2->local_GPs = NULL;
e17d416b
DN
1242 return retval;
1243}
1244
1245/*
5b8669df 1246 * Teardown the channel structures that are sn2 specific.
e17d416b
DN
1247 */
1248static void
5b8669df 1249xpc_teardown_ch_structures_sn_sn2(struct xpc_partition *part)
e17d416b 1250{
a47d5dac 1251 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
e17d416b
DN
1252 short partid = XPC_PARTID(part);
1253
1254 /*
5b8669df
DN
1255 * Indicate that the variables specific to the remote partition are no
1256 * longer available for its use.
e17d416b 1257 */
8e85c23e 1258 xpc_vars_part_sn2[partid].magic = 0;
e17d416b 1259
e17d416b 1260 /* in case we've still got outstanding timers registered... */
a47d5dac 1261 del_timer_sync(&part_sn2->dropped_notify_IRQ_timer);
5b8669df 1262 free_irq(SGI_XPC_NOTIFY, (void *)(u64)partid);
e17d416b 1263
5b8669df
DN
1264 kfree(part_sn2->local_openclose_args_base);
1265 part_sn2->local_openclose_args = NULL;
a47d5dac
DN
1266 kfree(part_sn2->remote_GPs_base);
1267 part_sn2->remote_GPs = NULL;
1268 kfree(part_sn2->local_GPs_base);
1269 part_sn2->local_GPs = NULL;
7fb5e59d 1270 part_sn2->local_chctl_amo_va = NULL;
e17d416b
DN
1271}
1272
1273/*
1274 * Create a wrapper that hides the underlying mechanism for pulling a cacheline
1275 * (or multiple cachelines) from a remote partition.
1276 *
a812dcc3 1277 * src_pa must be a cacheline aligned physical address on the remote partition.
e17d416b
DN
1278 * dst must be a cacheline aligned virtual address on this partition.
1279 * cnt must be cacheline sized
1280 */
ea57f80c 1281/* ??? Replace this function by call to xp_remote_memcpy() or bte_copy()? */
e17d416b
DN
1282static enum xp_retval
1283xpc_pull_remote_cachelines_sn2(struct xpc_partition *part, void *dst,
a812dcc3 1284 const unsigned long src_pa, size_t cnt)
e17d416b
DN
1285{
1286 enum xp_retval ret;
1287
a812dcc3
DN
1288 DBUG_ON(src_pa != L1_CACHE_ALIGN(src_pa));
1289 DBUG_ON((unsigned long)dst != L1_CACHE_ALIGN((unsigned long)dst));
e17d416b
DN
1290 DBUG_ON(cnt != L1_CACHE_ALIGN(cnt));
1291
83469b55 1292 if (part->act_state == XPC_P_AS_DEACTIVATING)
e17d416b
DN
1293 return part->reason;
1294
a812dcc3 1295 ret = xp_remote_memcpy(xp_pa(dst), src_pa, cnt);
e17d416b
DN
1296 if (ret != xpSuccess) {
1297 dev_dbg(xpc_chan, "xp_remote_memcpy() from partition %d failed,"
1298 " ret=%d\n", XPC_PARTID(part), ret);
1299 }
1300 return ret;
1301}
1302
1303/*
1304 * Pull the remote per partition specific variables from the specified
1305 * partition.
1306 */
1307static enum xp_retval
1308xpc_pull_remote_vars_part_sn2(struct xpc_partition *part)
1309{
a47d5dac 1310 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
e17d416b
DN
1311 u8 buffer[L1_CACHE_BYTES * 2];
1312 struct xpc_vars_part_sn2 *pulled_entry_cacheline =
1313 (struct xpc_vars_part_sn2 *)L1_CACHE_ALIGN((u64)buffer);
1314 struct xpc_vars_part_sn2 *pulled_entry;
a812dcc3
DN
1315 unsigned long remote_entry_cacheline_pa;
1316 unsigned long remote_entry_pa;
e17d416b
DN
1317 short partid = XPC_PARTID(part);
1318 enum xp_retval ret;
1319
1320 /* pull the cacheline that contains the variables we're interested in */
1321
a47d5dac
DN
1322 DBUG_ON(part_sn2->remote_vars_part_pa !=
1323 L1_CACHE_ALIGN(part_sn2->remote_vars_part_pa));
e17d416b
DN
1324 DBUG_ON(sizeof(struct xpc_vars_part_sn2) != L1_CACHE_BYTES / 2);
1325
a47d5dac 1326 remote_entry_pa = part_sn2->remote_vars_part_pa +
e17d416b
DN
1327 sn_partition_id * sizeof(struct xpc_vars_part_sn2);
1328
1329 remote_entry_cacheline_pa = (remote_entry_pa & ~(L1_CACHE_BYTES - 1));
1330
1331 pulled_entry = (struct xpc_vars_part_sn2 *)((u64)pulled_entry_cacheline
1332 + (remote_entry_pa &
1333 (L1_CACHE_BYTES - 1)));
1334
1335 ret = xpc_pull_remote_cachelines_sn2(part, pulled_entry_cacheline,
a812dcc3 1336 remote_entry_cacheline_pa,
e17d416b
DN
1337 L1_CACHE_BYTES);
1338 if (ret != xpSuccess) {
1339 dev_dbg(xpc_chan, "failed to pull XPC vars_part from "
1340 "partition %d, ret=%d\n", partid, ret);
1341 return ret;
1342 }
1343
1344 /* see if they've been set up yet */
1345
5b8669df
DN
1346 if (pulled_entry->magic != XPC_VP_MAGIC1_SN2 &&
1347 pulled_entry->magic != XPC_VP_MAGIC2_SN2) {
e17d416b
DN
1348
1349 if (pulled_entry->magic != 0) {
1350 dev_dbg(xpc_chan, "partition %d's XPC vars_part for "
1351 "partition %d has bad magic value (=0x%lx)\n",
1352 partid, sn_partition_id, pulled_entry->magic);
1353 return xpBadMagic;
1354 }
1355
1356 /* they've not been initialized yet */
1357 return xpRetry;
1358 }
1359
5b8669df 1360 if (xpc_vars_part_sn2[partid].magic == XPC_VP_MAGIC1_SN2) {
e17d416b
DN
1361
1362 /* validate the variables */
1363
1364 if (pulled_entry->GPs_pa == 0 ||
1365 pulled_entry->openclose_args_pa == 0 ||
7fb5e59d 1366 pulled_entry->chctl_amo_pa == 0) {
e17d416b
DN
1367
1368 dev_err(xpc_chan, "partition %d's XPC vars_part for "
1369 "partition %d are not valid\n", partid,
1370 sn_partition_id);
1371 return xpInvalidAddress;
1372 }
1373
1374 /* the variables we imported look to be valid */
1375
a47d5dac
DN
1376 part_sn2->remote_GPs_pa = pulled_entry->GPs_pa;
1377 part_sn2->remote_openclose_args_pa =
e17d416b 1378 pulled_entry->openclose_args_pa;
7fb5e59d 1379 part_sn2->remote_chctl_amo_va =
c39838ce 1380 (struct amo *)__va(pulled_entry->chctl_amo_pa);
7fb5e59d
DN
1381 part_sn2->notify_IRQ_nasid = pulled_entry->notify_IRQ_nasid;
1382 part_sn2->notify_IRQ_phys_cpuid =
1383 pulled_entry->notify_IRQ_phys_cpuid;
e17d416b
DN
1384
1385 if (part->nchannels > pulled_entry->nchannels)
1386 part->nchannels = pulled_entry->nchannels;
1387
1388 /* let the other side know that we've pulled their variables */
1389
5b8669df 1390 xpc_vars_part_sn2[partid].magic = XPC_VP_MAGIC2_SN2;
e17d416b
DN
1391 }
1392
5b8669df 1393 if (pulled_entry->magic == XPC_VP_MAGIC1_SN2)
e17d416b
DN
1394 return xpRetry;
1395
1396 return xpSuccess;
1397}
1398
1399/*
1400 * Establish first contact with the remote partititon. This involves pulling
1401 * the XPC per partition variables from the remote partition and waiting for
1402 * the remote partition to pull ours.
1403 */
1404static enum xp_retval
1405xpc_make_first_contact_sn2(struct xpc_partition *part)
1406{
a47d5dac 1407 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
e17d416b
DN
1408 enum xp_retval ret;
1409
33ba3c77 1410 /*
c39838ce 1411 * Register the remote partition's amos with SAL so it can handle
33ba3c77
DN
1412 * and cleanup errors within that address range should the remote
1413 * partition go down. We don't unregister this range because it is
1414 * difficult to tell when outstanding writes to the remote partition
1415 * are finished and thus when it is safe to unregister. This should
1416 * not result in wasted space in the SAL xp_addr_region table because
1417 * we should get the same page for remote_amos_page_pa after module
1418 * reloads and system reboots.
1419 */
a47d5dac 1420 if (sn_register_xp_addr_region(part_sn2->remote_amos_page_pa,
33ba3c77
DN
1421 PAGE_SIZE, 1) < 0) {
1422 dev_warn(xpc_part, "xpc_activating(%d) failed to register "
1423 "xp_addr region\n", XPC_PARTID(part));
1424
1425 ret = xpPhysAddrRegFailed;
1426 XPC_DEACTIVATE_PARTITION(part, ret);
1427 return ret;
1428 }
1429
a47d5dac
DN
1430 /*
1431 * Send activate IRQ to get other side to activate if they've not
1432 * already begun to do so.
1433 */
7fb5e59d 1434 xpc_send_activate_IRQ_sn2(part_sn2->remote_amos_page_pa,
a47d5dac
DN
1435 cnodeid_to_nasid(0),
1436 part_sn2->activate_IRQ_nasid,
1437 part_sn2->activate_IRQ_phys_cpuid);
33ba3c77 1438
e17d416b
DN
1439 while ((ret = xpc_pull_remote_vars_part_sn2(part)) != xpSuccess) {
1440 if (ret != xpRetry) {
1441 XPC_DEACTIVATE_PARTITION(part, ret);
1442 return ret;
1443 }
1444
1445 dev_dbg(xpc_part, "waiting to make first contact with "
1446 "partition %d\n", XPC_PARTID(part));
1447
1448 /* wait a 1/4 of a second or so */
1449 (void)msleep_interruptible(250);
1450
83469b55 1451 if (part->act_state == XPC_P_AS_DEACTIVATING)
e17d416b
DN
1452 return part->reason;
1453 }
1454
1455 return xpSuccess;
1456}
1457
1458/*
7fb5e59d 1459 * Get the chctl flags and pull the openclose args and/or remote GPs as needed.
e17d416b
DN
1460 */
1461static u64
7fb5e59d 1462xpc_get_chctl_all_flags_sn2(struct xpc_partition *part)
e17d416b 1463{
a47d5dac 1464 struct xpc_partition_sn2 *part_sn2 = &part->sn.sn2;
e17d416b 1465 unsigned long irq_flags;
7fb5e59d 1466 union xpc_channel_ctl_flags chctl;
e17d416b
DN
1467 enum xp_retval ret;
1468
1469 /*
7fb5e59d 1470 * See if there are any chctl flags to be handled.
e17d416b
DN
1471 */
1472
7fb5e59d
DN
1473 spin_lock_irqsave(&part->chctl_lock, irq_flags);
1474 chctl = part->chctl;
1475 if (chctl.all_flags != 0)
1476 part->chctl.all_flags = 0;
e17d416b 1477
7fb5e59d 1478 spin_unlock_irqrestore(&part->chctl_lock, irq_flags);
e17d416b 1479
7fb5e59d 1480 if (xpc_any_openclose_chctl_flags_set(&chctl)) {
a47d5dac
DN
1481 ret = xpc_pull_remote_cachelines_sn2(part, part->
1482 remote_openclose_args,
a812dcc3 1483 part_sn2->
e17d416b
DN
1484 remote_openclose_args_pa,
1485 XPC_OPENCLOSE_ARGS_SIZE);
1486 if (ret != xpSuccess) {
1487 XPC_DEACTIVATE_PARTITION(part, ret);
1488
1489 dev_dbg(xpc_chan, "failed to pull openclose args from "
1490 "partition %d, ret=%d\n", XPC_PARTID(part),
1491 ret);
1492
7fb5e59d
DN
1493 /* don't bother processing chctl flags anymore */
1494 chctl.all_flags = 0;
e17d416b
DN
1495 }
1496 }
1497
7fb5e59d 1498 if (xpc_any_msg_chctl_flags_set(&chctl)) {
a47d5dac 1499 ret = xpc_pull_remote_cachelines_sn2(part, part_sn2->remote_GPs,
a812dcc3 1500 part_sn2->remote_GPs_pa,
e17d416b
DN
1501 XPC_GP_SIZE);
1502 if (ret != xpSuccess) {
1503 XPC_DEACTIVATE_PARTITION(part, ret);
1504
1505 dev_dbg(xpc_chan, "failed to pull GPs from partition "
1506 "%d, ret=%d\n", XPC_PARTID(part), ret);
1507
7fb5e59d
DN
1508 /* don't bother processing chctl flags anymore */
1509 chctl.all_flags = 0;
e17d416b
DN
1510 }
1511 }
1512
7fb5e59d 1513 return chctl.all_flags;
e17d416b
DN
1514}
1515
185c3a1b
DN
1516/*
1517 * Allocate the local message queue and the notify queue.
1518 */
1519static enum xp_retval
1520xpc_allocate_local_msgqueue_sn2(struct xpc_channel *ch)
1521{
5b8669df 1522 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
185c3a1b
DN
1523 unsigned long irq_flags;
1524 int nentries;
1525 size_t nbytes;
1526
1527 for (nentries = ch->local_nentries; nentries > 0; nentries--) {
1528
bd3e64c1 1529 nbytes = nentries * ch->entry_size;
5b8669df
DN
1530 ch_sn2->local_msgqueue =
1531 xpc_kzalloc_cacheline_aligned(nbytes, GFP_KERNEL,
1532 &ch_sn2->local_msgqueue_base);
1533 if (ch_sn2->local_msgqueue == NULL)
185c3a1b
DN
1534 continue;
1535
bd3e64c1 1536 nbytes = nentries * sizeof(struct xpc_notify_sn2);
5b8669df
DN
1537 ch_sn2->notify_queue = kzalloc(nbytes, GFP_KERNEL);
1538 if (ch_sn2->notify_queue == NULL) {
1539 kfree(ch_sn2->local_msgqueue_base);
1540 ch_sn2->local_msgqueue = NULL;
185c3a1b
DN
1541 continue;
1542 }
1543
1544 spin_lock_irqsave(&ch->lock, irq_flags);
1545 if (nentries < ch->local_nentries) {
1546 dev_dbg(xpc_chan, "nentries=%d local_nentries=%d, "
1547 "partid=%d, channel=%d\n", nentries,
1548 ch->local_nentries, ch->partid, ch->number);
1549
1550 ch->local_nentries = nentries;
1551 }
1552 spin_unlock_irqrestore(&ch->lock, irq_flags);
1553 return xpSuccess;
1554 }
1555
1556 dev_dbg(xpc_chan, "can't get memory for local message queue and notify "
1557 "queue, partid=%d, channel=%d\n", ch->partid, ch->number);
1558 return xpNoMemory;
1559}
1560
1561/*
1562 * Allocate the cached remote message queue.
1563 */
1564static enum xp_retval
1565xpc_allocate_remote_msgqueue_sn2(struct xpc_channel *ch)
1566{
5b8669df 1567 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
185c3a1b
DN
1568 unsigned long irq_flags;
1569 int nentries;
1570 size_t nbytes;
1571
1572 DBUG_ON(ch->remote_nentries <= 0);
1573
1574 for (nentries = ch->remote_nentries; nentries > 0; nentries--) {
1575
bd3e64c1 1576 nbytes = nentries * ch->entry_size;
5b8669df
DN
1577 ch_sn2->remote_msgqueue =
1578 xpc_kzalloc_cacheline_aligned(nbytes, GFP_KERNEL, &ch_sn2->
1579 remote_msgqueue_base);
1580 if (ch_sn2->remote_msgqueue == NULL)
185c3a1b
DN
1581 continue;
1582
1583 spin_lock_irqsave(&ch->lock, irq_flags);
1584 if (nentries < ch->remote_nentries) {
1585 dev_dbg(xpc_chan, "nentries=%d remote_nentries=%d, "
1586 "partid=%d, channel=%d\n", nentries,
1587 ch->remote_nentries, ch->partid, ch->number);
1588
1589 ch->remote_nentries = nentries;
1590 }
1591 spin_unlock_irqrestore(&ch->lock, irq_flags);
1592 return xpSuccess;
1593 }
1594
1595 dev_dbg(xpc_chan, "can't get memory for cached remote message queue, "
1596 "partid=%d, channel=%d\n", ch->partid, ch->number);
1597 return xpNoMemory;
1598}
1599
1600/*
1601 * Allocate message queues and other stuff associated with a channel.
1602 *
1603 * Note: Assumes all of the channel sizes are filled in.
1604 */
1605static enum xp_retval
5b8669df 1606xpc_setup_msg_structures_sn2(struct xpc_channel *ch)
185c3a1b 1607{
5b8669df 1608 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
185c3a1b
DN
1609 enum xp_retval ret;
1610
1611 DBUG_ON(ch->flags & XPC_C_SETUP);
1612
1613 ret = xpc_allocate_local_msgqueue_sn2(ch);
1614 if (ret == xpSuccess) {
1615
1616 ret = xpc_allocate_remote_msgqueue_sn2(ch);
1617 if (ret != xpSuccess) {
5b8669df
DN
1618 kfree(ch_sn2->local_msgqueue_base);
1619 ch_sn2->local_msgqueue = NULL;
1620 kfree(ch_sn2->notify_queue);
1621 ch_sn2->notify_queue = NULL;
185c3a1b
DN
1622 }
1623 }
1624 return ret;
1625}
1626
1627/*
1628 * Free up message queues and other stuff that were allocated for the specified
1629 * channel.
185c3a1b
DN
1630 */
1631static void
5b8669df 1632xpc_teardown_msg_structures_sn2(struct xpc_channel *ch)
185c3a1b
DN
1633{
1634 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
1635
1636 DBUG_ON(!spin_is_locked(&ch->lock));
185c3a1b 1637
5b8669df 1638 ch_sn2->remote_msgqueue_pa = 0;
185c3a1b
DN
1639
1640 ch_sn2->local_GP->get = 0;
1641 ch_sn2->local_GP->put = 0;
1642 ch_sn2->remote_GP.get = 0;
1643 ch_sn2->remote_GP.put = 0;
1644 ch_sn2->w_local_GP.get = 0;
1645 ch_sn2->w_local_GP.put = 0;
1646 ch_sn2->w_remote_GP.get = 0;
1647 ch_sn2->w_remote_GP.put = 0;
1648 ch_sn2->next_msg_to_pull = 0;
1649
1650 if (ch->flags & XPC_C_SETUP) {
1651 dev_dbg(xpc_chan, "ch->flags=0x%x, partid=%d, channel=%d\n",
1652 ch->flags, ch->partid, ch->number);
1653
5b8669df
DN
1654 kfree(ch_sn2->local_msgqueue_base);
1655 ch_sn2->local_msgqueue = NULL;
1656 kfree(ch_sn2->remote_msgqueue_base);
1657 ch_sn2->remote_msgqueue = NULL;
1658 kfree(ch_sn2->notify_queue);
1659 ch_sn2->notify_queue = NULL;
185c3a1b
DN
1660 }
1661}
1662
a47d5dac
DN
1663/*
1664 * Notify those who wanted to be notified upon delivery of their message.
1665 */
1666static void
1667xpc_notify_senders_sn2(struct xpc_channel *ch, enum xp_retval reason, s64 put)
1668{
bd3e64c1 1669 struct xpc_notify_sn2 *notify;
a47d5dac
DN
1670 u8 notify_type;
1671 s64 get = ch->sn.sn2.w_remote_GP.get - 1;
1672
1673 while (++get < put && atomic_read(&ch->n_to_notify) > 0) {
1674
5b8669df 1675 notify = &ch->sn.sn2.notify_queue[get % ch->local_nentries];
a47d5dac
DN
1676
1677 /*
1678 * See if the notify entry indicates it was associated with
1679 * a message who's sender wants to be notified. It is possible
1680 * that it is, but someone else is doing or has done the
1681 * notification.
1682 */
1683 notify_type = notify->type;
1684 if (notify_type == 0 ||
1685 cmpxchg(&notify->type, notify_type, 0) != notify_type) {
1686 continue;
1687 }
1688
1689 DBUG_ON(notify_type != XPC_N_CALL);
1690
1691 atomic_dec(&ch->n_to_notify);
1692
1693 if (notify->func != NULL) {
bd3e64c1
DN
1694 dev_dbg(xpc_chan, "notify->func() called, notify=0x%p "
1695 "msg_number=%ld partid=%d channel=%d\n",
a47d5dac
DN
1696 (void *)notify, get, ch->partid, ch->number);
1697
1698 notify->func(reason, ch->partid, ch->number,
1699 notify->key);
1700
bd3e64c1
DN
1701 dev_dbg(xpc_chan, "notify->func() returned, notify=0x%p"
1702 " msg_number=%ld partid=%d channel=%d\n",
1703 (void *)notify, get, ch->partid, ch->number);
a47d5dac
DN
1704 }
1705 }
1706}
1707
1708static void
1709xpc_notify_senders_of_disconnect_sn2(struct xpc_channel *ch)
1710{
1711 xpc_notify_senders_sn2(ch, ch->reason, ch->sn.sn2.w_local_GP.put);
1712}
1713
1714/*
1715 * Clear some of the msg flags in the local message queue.
1716 */
1717static inline void
1718xpc_clear_local_msgqueue_flags_sn2(struct xpc_channel *ch)
1719{
1720 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
bd3e64c1 1721 struct xpc_msg_sn2 *msg;
a47d5dac
DN
1722 s64 get;
1723
1724 get = ch_sn2->w_remote_GP.get;
1725 do {
bd3e64c1
DN
1726 msg = (struct xpc_msg_sn2 *)((u64)ch_sn2->local_msgqueue +
1727 (get % ch->local_nentries) *
1728 ch->entry_size);
a47d5dac
DN
1729 msg->flags = 0;
1730 } while (++get < ch_sn2->remote_GP.get);
1731}
1732
1733/*
1734 * Clear some of the msg flags in the remote message queue.
1735 */
1736static inline void
1737xpc_clear_remote_msgqueue_flags_sn2(struct xpc_channel *ch)
1738{
1739 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
bd3e64c1 1740 struct xpc_msg_sn2 *msg;
a47d5dac
DN
1741 s64 put;
1742
1743 put = ch_sn2->w_remote_GP.put;
1744 do {
bd3e64c1
DN
1745 msg = (struct xpc_msg_sn2 *)((u64)ch_sn2->remote_msgqueue +
1746 (put % ch->remote_nentries) *
1747 ch->entry_size);
a47d5dac
DN
1748 msg->flags = 0;
1749 } while (++put < ch_sn2->remote_GP.put);
1750}
1751
bd3e64c1
DN
1752static int
1753xpc_n_of_deliverable_payloads_sn2(struct xpc_channel *ch)
1754{
1755 return ch->sn.sn2.w_remote_GP.put - ch->sn.sn2.w_local_GP.get;
1756}
1757
a47d5dac 1758static void
7fb5e59d 1759xpc_process_msg_chctl_flags_sn2(struct xpc_partition *part, int ch_number)
a47d5dac
DN
1760{
1761 struct xpc_channel *ch = &part->channels[ch_number];
1762 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
bd3e64c1 1763 int npayloads_sent;
a47d5dac
DN
1764
1765 ch_sn2->remote_GP = part->sn.sn2.remote_GPs[ch_number];
1766
1767 /* See what, if anything, has changed for each connected channel */
1768
1769 xpc_msgqueue_ref(ch);
1770
1771 if (ch_sn2->w_remote_GP.get == ch_sn2->remote_GP.get &&
1772 ch_sn2->w_remote_GP.put == ch_sn2->remote_GP.put) {
1773 /* nothing changed since GPs were last pulled */
1774 xpc_msgqueue_deref(ch);
1775 return;
1776 }
1777
1778 if (!(ch->flags & XPC_C_CONNECTED)) {
1779 xpc_msgqueue_deref(ch);
1780 return;
1781 }
1782
1783 /*
1784 * First check to see if messages recently sent by us have been
1785 * received by the other side. (The remote GET value will have
1786 * changed since we last looked at it.)
1787 */
1788
1789 if (ch_sn2->w_remote_GP.get != ch_sn2->remote_GP.get) {
1790
1791 /*
1792 * We need to notify any senders that want to be notified
1793 * that their sent messages have been received by their
1794 * intended recipients. We need to do this before updating
1795 * w_remote_GP.get so that we don't allocate the same message
1796 * queue entries prematurely (see xpc_allocate_msg()).
1797 */
1798 if (atomic_read(&ch->n_to_notify) > 0) {
1799 /*
1800 * Notify senders that messages sent have been
1801 * received and delivered by the other side.
1802 */
1803 xpc_notify_senders_sn2(ch, xpMsgDelivered,
1804 ch_sn2->remote_GP.get);
1805 }
1806
1807 /*
1808 * Clear msg->flags in previously sent messages, so that
1809 * they're ready for xpc_allocate_msg().
1810 */
1811 xpc_clear_local_msgqueue_flags_sn2(ch);
1812
1813 ch_sn2->w_remote_GP.get = ch_sn2->remote_GP.get;
1814
1815 dev_dbg(xpc_chan, "w_remote_GP.get changed to %ld, partid=%d, "
1816 "channel=%d\n", ch_sn2->w_remote_GP.get, ch->partid,
1817 ch->number);
1818
1819 /*
1820 * If anyone was waiting for message queue entries to become
1821 * available, wake them up.
1822 */
1823 if (atomic_read(&ch->n_on_msg_allocate_wq) > 0)
1824 wake_up(&ch->msg_allocate_wq);
1825 }
1826
1827 /*
1828 * Now check for newly sent messages by the other side. (The remote
1829 * PUT value will have changed since we last looked at it.)
1830 */
1831
1832 if (ch_sn2->w_remote_GP.put != ch_sn2->remote_GP.put) {
1833 /*
1834 * Clear msg->flags in previously received messages, so that
bd3e64c1 1835 * they're ready for xpc_get_deliverable_payload_sn2().
a47d5dac
DN
1836 */
1837 xpc_clear_remote_msgqueue_flags_sn2(ch);
1838
69b3bb65 1839 smp_wmb(); /* ensure flags have been cleared before bte_copy */
a47d5dac
DN
1840 ch_sn2->w_remote_GP.put = ch_sn2->remote_GP.put;
1841
1842 dev_dbg(xpc_chan, "w_remote_GP.put changed to %ld, partid=%d, "
1843 "channel=%d\n", ch_sn2->w_remote_GP.put, ch->partid,
1844 ch->number);
1845
bd3e64c1
DN
1846 npayloads_sent = xpc_n_of_deliverable_payloads_sn2(ch);
1847 if (npayloads_sent > 0) {
a47d5dac
DN
1848 dev_dbg(xpc_chan, "msgs waiting to be copied and "
1849 "delivered=%d, partid=%d, channel=%d\n",
bd3e64c1 1850 npayloads_sent, ch->partid, ch->number);
a47d5dac
DN
1851
1852 if (ch->flags & XPC_C_CONNECTEDCALLOUT_MADE)
bd3e64c1 1853 xpc_activate_kthreads(ch, npayloads_sent);
a47d5dac
DN
1854 }
1855 }
1856
1857 xpc_msgqueue_deref(ch);
1858}
1859
bd3e64c1 1860static struct xpc_msg_sn2 *
e17d416b
DN
1861xpc_pull_remote_msg_sn2(struct xpc_channel *ch, s64 get)
1862{
1863 struct xpc_partition *part = &xpc_partitions[ch->partid];
a47d5dac 1864 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
a812dcc3 1865 unsigned long remote_msg_pa;
bd3e64c1 1866 struct xpc_msg_sn2 *msg;
a812dcc3
DN
1867 u32 msg_index;
1868 u32 nmsgs;
e17d416b
DN
1869 u64 msg_offset;
1870 enum xp_retval ret;
1871
a47d5dac 1872 if (mutex_lock_interruptible(&ch_sn2->msg_to_pull_mutex) != 0) {
e17d416b
DN
1873 /* we were interrupted by a signal */
1874 return NULL;
1875 }
1876
a47d5dac 1877 while (get >= ch_sn2->next_msg_to_pull) {
e17d416b
DN
1878
1879 /* pull as many messages as are ready and able to be pulled */
1880
a47d5dac 1881 msg_index = ch_sn2->next_msg_to_pull % ch->remote_nentries;
e17d416b 1882
a47d5dac
DN
1883 DBUG_ON(ch_sn2->next_msg_to_pull >= ch_sn2->w_remote_GP.put);
1884 nmsgs = ch_sn2->w_remote_GP.put - ch_sn2->next_msg_to_pull;
e17d416b
DN
1885 if (msg_index + nmsgs > ch->remote_nentries) {
1886 /* ignore the ones that wrap the msg queue for now */
1887 nmsgs = ch->remote_nentries - msg_index;
1888 }
1889
bd3e64c1
DN
1890 msg_offset = msg_index * ch->entry_size;
1891 msg = (struct xpc_msg_sn2 *)((u64)ch_sn2->remote_msgqueue +
5b8669df
DN
1892 msg_offset);
1893 remote_msg_pa = ch_sn2->remote_msgqueue_pa + msg_offset;
e17d416b 1894
a812dcc3 1895 ret = xpc_pull_remote_cachelines_sn2(part, msg, remote_msg_pa,
bd3e64c1 1896 nmsgs * ch->entry_size);
e17d416b
DN
1897 if (ret != xpSuccess) {
1898
1899 dev_dbg(xpc_chan, "failed to pull %d msgs starting with"
1900 " msg %ld from partition %d, channel=%d, "
a47d5dac 1901 "ret=%d\n", nmsgs, ch_sn2->next_msg_to_pull,
e17d416b
DN
1902 ch->partid, ch->number, ret);
1903
1904 XPC_DEACTIVATE_PARTITION(part, ret);
1905
a47d5dac 1906 mutex_unlock(&ch_sn2->msg_to_pull_mutex);
e17d416b
DN
1907 return NULL;
1908 }
1909
a47d5dac 1910 ch_sn2->next_msg_to_pull += nmsgs;
e17d416b
DN
1911 }
1912
a47d5dac 1913 mutex_unlock(&ch_sn2->msg_to_pull_mutex);
e17d416b
DN
1914
1915 /* return the message we were looking for */
bd3e64c1
DN
1916 msg_offset = (get % ch->remote_nentries) * ch->entry_size;
1917 msg = (struct xpc_msg_sn2 *)((u64)ch_sn2->remote_msgqueue + msg_offset);
e17d416b
DN
1918
1919 return msg;
1920}
1921
1922/*
bd3e64c1 1923 * Get the next deliverable message's payload.
e17d416b 1924 */
bd3e64c1
DN
1925static void *
1926xpc_get_deliverable_payload_sn2(struct xpc_channel *ch)
e17d416b 1927{
a47d5dac 1928 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
bd3e64c1
DN
1929 struct xpc_msg_sn2 *msg;
1930 void *payload = NULL;
e17d416b
DN
1931 s64 get;
1932
1933 do {
1934 if (ch->flags & XPC_C_DISCONNECTING)
1935 break;
1936
a47d5dac 1937 get = ch_sn2->w_local_GP.get;
69b3bb65 1938 smp_rmb(); /* guarantee that .get loads before .put */
a47d5dac 1939 if (get == ch_sn2->w_remote_GP.put)
e17d416b
DN
1940 break;
1941
1942 /* There are messages waiting to be pulled and delivered.
1943 * We need to try to secure one for ourselves. We'll do this
1944 * by trying to increment w_local_GP.get and hope that no one
1945 * else beats us to it. If they do, we'll we'll simply have
1946 * to try again for the next one.
1947 */
1948
a47d5dac 1949 if (cmpxchg(&ch_sn2->w_local_GP.get, get, get + 1) == get) {
e17d416b
DN
1950 /* we got the entry referenced by get */
1951
1952 dev_dbg(xpc_chan, "w_local_GP.get changed to %ld, "
1953 "partid=%d, channel=%d\n", get + 1,
1954 ch->partid, ch->number);
1955
1956 /* pull the message from the remote partition */
1957
1958 msg = xpc_pull_remote_msg_sn2(ch, get);
1959
1960 DBUG_ON(msg != NULL && msg->number != get);
bd3e64c1
DN
1961 DBUG_ON(msg != NULL && (msg->flags & XPC_M_SN2_DONE));
1962 DBUG_ON(msg != NULL && !(msg->flags & XPC_M_SN2_READY));
e17d416b 1963
bd3e64c1 1964 payload = &msg->payload;
e17d416b
DN
1965 break;
1966 }
1967
1968 } while (1);
1969
bd3e64c1 1970 return payload;
e17d416b
DN
1971}
1972
33ba3c77
DN
1973/*
1974 * Now we actually send the messages that are ready to be sent by advancing
7fb5e59d
DN
1975 * the local message queue's Put value and then send a chctl msgrequest to the
1976 * recipient partition.
33ba3c77
DN
1977 */
1978static void
1979xpc_send_msgs_sn2(struct xpc_channel *ch, s64 initial_put)
1980{
a47d5dac 1981 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
bd3e64c1 1982 struct xpc_msg_sn2 *msg;
33ba3c77 1983 s64 put = initial_put + 1;
7fb5e59d 1984 int send_msgrequest = 0;
33ba3c77
DN
1985
1986 while (1) {
1987
1988 while (1) {
a47d5dac 1989 if (put == ch_sn2->w_local_GP.put)
33ba3c77
DN
1990 break;
1991
bd3e64c1
DN
1992 msg = (struct xpc_msg_sn2 *)((u64)ch_sn2->
1993 local_msgqueue + (put %
1994 ch->local_nentries) *
1995 ch->entry_size);
33ba3c77 1996
bd3e64c1 1997 if (!(msg->flags & XPC_M_SN2_READY))
33ba3c77
DN
1998 break;
1999
2000 put++;
2001 }
2002
2003 if (put == initial_put) {
2004 /* nothing's changed */
2005 break;
2006 }
2007
a47d5dac 2008 if (cmpxchg_rel(&ch_sn2->local_GP->put, initial_put, put) !=
33ba3c77
DN
2009 initial_put) {
2010 /* someone else beat us to it */
a47d5dac 2011 DBUG_ON(ch_sn2->local_GP->put < initial_put);
33ba3c77
DN
2012 break;
2013 }
2014
2015 /* we just set the new value of local_GP->put */
2016
2017 dev_dbg(xpc_chan, "local_GP->put changed to %ld, partid=%d, "
2018 "channel=%d\n", put, ch->partid, ch->number);
2019
7fb5e59d 2020 send_msgrequest = 1;
33ba3c77
DN
2021
2022 /*
2023 * We need to ensure that the message referenced by
bd3e64c1 2024 * local_GP->put is not XPC_M_SN2_READY or that local_GP->put
33ba3c77
DN
2025 * equals w_local_GP.put, so we'll go have a look.
2026 */
2027 initial_put = put;
2028 }
2029
7fb5e59d
DN
2030 if (send_msgrequest)
2031 xpc_send_chctl_msgrequest_sn2(ch);
33ba3c77
DN
2032}
2033
2034/*
2035 * Allocate an entry for a message from the message queue associated with the
2036 * specified channel.
2037 */
2038static enum xp_retval
2039xpc_allocate_msg_sn2(struct xpc_channel *ch, u32 flags,
bd3e64c1 2040 struct xpc_msg_sn2 **address_of_msg)
33ba3c77 2041{
a47d5dac 2042 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
bd3e64c1 2043 struct xpc_msg_sn2 *msg;
33ba3c77
DN
2044 enum xp_retval ret;
2045 s64 put;
2046
33ba3c77
DN
2047 /*
2048 * Get the next available message entry from the local message queue.
2049 * If none are available, we'll make sure that we grab the latest
2050 * GP values.
2051 */
2052 ret = xpTimeout;
2053
2054 while (1) {
2055
a47d5dac 2056 put = ch_sn2->w_local_GP.put;
69b3bb65 2057 smp_rmb(); /* guarantee that .put loads before .get */
a47d5dac 2058 if (put - ch_sn2->w_remote_GP.get < ch->local_nentries) {
33ba3c77
DN
2059
2060 /* There are available message entries. We need to try
2061 * to secure one for ourselves. We'll do this by trying
2062 * to increment w_local_GP.put as long as someone else
2063 * doesn't beat us to it. If they do, we'll have to
2064 * try again.
2065 */
a47d5dac
DN
2066 if (cmpxchg(&ch_sn2->w_local_GP.put, put, put + 1) ==
2067 put) {
33ba3c77
DN
2068 /* we got the entry referenced by put */
2069 break;
2070 }
2071 continue; /* try again */
2072 }
2073
2074 /*
2075 * There aren't any available msg entries at this time.
2076 *
2077 * In waiting for a message entry to become available,
7fb5e59d
DN
2078 * we set a timeout in case the other side is not sending
2079 * completion interrupts. This lets us fake a notify IRQ
2080 * that will cause the notify IRQ handler to fetch the latest
2081 * GP values as if an interrupt was sent by the other side.
33ba3c77
DN
2082 */
2083 if (ret == xpTimeout)
7fb5e59d 2084 xpc_send_chctl_local_msgrequest_sn2(ch);
33ba3c77 2085
97bf1aa1 2086 if (flags & XPC_NOWAIT)
33ba3c77 2087 return xpNoWait;
33ba3c77
DN
2088
2089 ret = xpc_allocate_msg_wait(ch);
97bf1aa1 2090 if (ret != xpInterrupted && ret != xpTimeout)
33ba3c77 2091 return ret;
33ba3c77
DN
2092 }
2093
2094 /* get the message's address and initialize it */
bd3e64c1
DN
2095 msg = (struct xpc_msg_sn2 *)((u64)ch_sn2->local_msgqueue +
2096 (put % ch->local_nentries) *
2097 ch->entry_size);
33ba3c77
DN
2098
2099 DBUG_ON(msg->flags != 0);
2100 msg->number = put;
2101
2102 dev_dbg(xpc_chan, "w_local_GP.put changed to %ld; msg=0x%p, "
2103 "msg_number=%ld, partid=%d, channel=%d\n", put + 1,
2104 (void *)msg, msg->number, ch->partid, ch->number);
2105
2106 *address_of_msg = msg;
33ba3c77
DN
2107 return xpSuccess;
2108}
2109
2110/*
2111 * Common code that does the actual sending of the message by advancing the
7fb5e59d
DN
2112 * local message queue's Put value and sends a chctl msgrequest to the
2113 * partition the message is being sent to.
33ba3c77
DN
2114 */
2115static enum xp_retval
bd3e64c1
DN
2116xpc_send_payload_sn2(struct xpc_channel *ch, u32 flags, void *payload,
2117 u16 payload_size, u8 notify_type, xpc_notify_func func,
2118 void *key)
33ba3c77
DN
2119{
2120 enum xp_retval ret = xpSuccess;
5b8669df 2121 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
bd3e64c1
DN
2122 struct xpc_msg_sn2 *msg = msg;
2123 struct xpc_notify_sn2 *notify = notify;
97bf1aa1
DN
2124 s64 msg_number;
2125 s64 put;
33ba3c77
DN
2126
2127 DBUG_ON(notify_type == XPC_N_CALL && func == NULL);
97bf1aa1 2128
bd3e64c1 2129 if (XPC_MSG_SIZE(payload_size) > ch->entry_size)
97bf1aa1
DN
2130 return xpPayloadTooBig;
2131
2132 xpc_msgqueue_ref(ch);
33ba3c77
DN
2133
2134 if (ch->flags & XPC_C_DISCONNECTING) {
97bf1aa1
DN
2135 ret = ch->reason;
2136 goto out_1;
2137 }
2138 if (!(ch->flags & XPC_C_CONNECTED)) {
2139 ret = xpNotConnected;
2140 goto out_1;
33ba3c77
DN
2141 }
2142
97bf1aa1
DN
2143 ret = xpc_allocate_msg_sn2(ch, flags, &msg);
2144 if (ret != xpSuccess)
2145 goto out_1;
2146
2147 msg_number = msg->number;
2148
33ba3c77
DN
2149 if (notify_type != 0) {
2150 /*
2151 * Tell the remote side to send an ACK interrupt when the
2152 * message has been delivered.
2153 */
bd3e64c1 2154 msg->flags |= XPC_M_SN2_INTERRUPT;
33ba3c77
DN
2155
2156 atomic_inc(&ch->n_to_notify);
2157
5b8669df 2158 notify = &ch_sn2->notify_queue[msg_number % ch->local_nentries];
33ba3c77
DN
2159 notify->func = func;
2160 notify->key = key;
2161 notify->type = notify_type;
2162
ea57f80c 2163 /* ??? Is a mb() needed here? */
33ba3c77
DN
2164
2165 if (ch->flags & XPC_C_DISCONNECTING) {
2166 /*
2167 * An error occurred between our last error check and
2168 * this one. We will try to clear the type field from
2169 * the notify entry. If we succeed then
2170 * xpc_disconnect_channel() didn't already process
2171 * the notify entry.
2172 */
2173 if (cmpxchg(&notify->type, notify_type, 0) ==
2174 notify_type) {
2175 atomic_dec(&ch->n_to_notify);
2176 ret = ch->reason;
2177 }
97bf1aa1 2178 goto out_1;
33ba3c77
DN
2179 }
2180 }
2181
97bf1aa1
DN
2182 memcpy(&msg->payload, payload, payload_size);
2183
bd3e64c1 2184 msg->flags |= XPC_M_SN2_READY;
33ba3c77
DN
2185
2186 /*
2187 * The preceding store of msg->flags must occur before the following
a47d5dac 2188 * load of local_GP->put.
33ba3c77 2189 */
69b3bb65 2190 smp_mb();
33ba3c77
DN
2191
2192 /* see if the message is next in line to be sent, if so send it */
2193
5b8669df 2194 put = ch_sn2->local_GP->put;
33ba3c77
DN
2195 if (put == msg_number)
2196 xpc_send_msgs_sn2(ch, put);
2197
97bf1aa1 2198out_1:
33ba3c77
DN
2199 xpc_msgqueue_deref(ch);
2200 return ret;
2201}
2202
2203/*
2204 * Now we actually acknowledge the messages that have been delivered and ack'd
2205 * by advancing the cached remote message queue's Get value and if requested
7fb5e59d 2206 * send a chctl msgrequest to the message sender's partition.
bd3e64c1
DN
2207 *
2208 * If a message has XPC_M_SN2_INTERRUPT set, send an interrupt to the partition
2209 * that sent the message.
33ba3c77
DN
2210 */
2211static void
2212xpc_acknowledge_msgs_sn2(struct xpc_channel *ch, s64 initial_get, u8 msg_flags)
2213{
a47d5dac 2214 struct xpc_channel_sn2 *ch_sn2 = &ch->sn.sn2;
bd3e64c1 2215 struct xpc_msg_sn2 *msg;
33ba3c77 2216 s64 get = initial_get + 1;
7fb5e59d 2217 int send_msgrequest = 0;
33ba3c77
DN
2218
2219 while (1) {
2220
2221 while (1) {
a47d5dac 2222 if (get == ch_sn2->w_local_GP.get)
33ba3c77
DN
2223 break;
2224
bd3e64c1
DN
2225 msg = (struct xpc_msg_sn2 *)((u64)ch_sn2->
2226 remote_msgqueue + (get %
2227 ch->remote_nentries) *
2228 ch->entry_size);
33ba3c77 2229
bd3e64c1 2230 if (!(msg->flags & XPC_M_SN2_DONE))
33ba3c77
DN
2231 break;
2232
2233 msg_flags |= msg->flags;
2234 get++;
2235 }
2236
2237 if (get == initial_get) {
2238 /* nothing's changed */
2239 break;
2240 }
2241
a47d5dac 2242 if (cmpxchg_rel(&ch_sn2->local_GP->get, initial_get, get) !=
33ba3c77
DN
2243 initial_get) {
2244 /* someone else beat us to it */
a47d5dac 2245 DBUG_ON(ch_sn2->local_GP->get <= initial_get);
33ba3c77
DN
2246 break;
2247 }
2248
2249 /* we just set the new value of local_GP->get */
2250
2251 dev_dbg(xpc_chan, "local_GP->get changed to %ld, partid=%d, "
2252 "channel=%d\n", get, ch->partid, ch->number);
2253
bd3e64c1 2254 send_msgrequest = (msg_flags & XPC_M_SN2_INTERRUPT);
33ba3c77
DN
2255
2256 /*
2257 * We need to ensure that the message referenced by
bd3e64c1 2258 * local_GP->get is not XPC_M_SN2_DONE or that local_GP->get
33ba3c77
DN
2259 * equals w_local_GP.get, so we'll go have a look.
2260 */
2261 initial_get = get;
2262 }
2263
7fb5e59d
DN
2264 if (send_msgrequest)
2265 xpc_send_chctl_msgrequest_sn2(ch);
33ba3c77
DN
2266}
2267
2268static void
bd3e64c1 2269xpc_received_payload_sn2(struct xpc_channel *ch, void *payload)
33ba3c77 2270{
bd3e64c1
DN
2271 struct xpc_msg_sn2 *msg;
2272 s64 msg_number;
33ba3c77 2273 s64 get;
bd3e64c1
DN
2274
2275 msg = container_of(payload, struct xpc_msg_sn2, payload);
2276 msg_number = msg->number;
33ba3c77
DN
2277
2278 dev_dbg(xpc_chan, "msg=0x%p, msg_number=%ld, partid=%d, channel=%d\n",
2279 (void *)msg, msg_number, ch->partid, ch->number);
2280
bd3e64c1 2281 DBUG_ON((((u64)msg - (u64)ch->remote_msgqueue) / ch->entry_size) !=
33ba3c77 2282 msg_number % ch->remote_nentries);
bd3e64c1 2283 DBUG_ON(msg->flags & XPC_M_SN2_DONE);
33ba3c77 2284
bd3e64c1 2285 msg->flags |= XPC_M_SN2_DONE;
33ba3c77
DN
2286
2287 /*
2288 * The preceding store of msg->flags must occur before the following
a47d5dac 2289 * load of local_GP->get.
33ba3c77 2290 */
69b3bb65 2291 smp_mb();
33ba3c77
DN
2292
2293 /*
2294 * See if this message is next in line to be acknowledged as having
2295 * been delivered.
2296 */
a47d5dac 2297 get = ch->sn.sn2.local_GP->get;
33ba3c77
DN
2298 if (get == msg_number)
2299 xpc_acknowledge_msgs_sn2(ch, get, msg->flags);
2300}
2301
6e41017a 2302int
94bd2708
DN
2303xpc_init_sn2(void)
2304{
6e41017a 2305 int ret;
ee6665e3 2306 size_t buf_size;
6e41017a 2307
5b8669df 2308 xpc_setup_partitions_sn = xpc_setup_partitions_sn_sn2;
261f3b49 2309 xpc_get_partition_rsvd_page_pa = xpc_get_partition_rsvd_page_pa_sn2;
5b8669df 2310 xpc_setup_rsvd_page_sn = xpc_setup_rsvd_page_sn_sn2;
33ba3c77
DN
2311 xpc_increment_heartbeat = xpc_increment_heartbeat_sn2;
2312 xpc_offline_heartbeat = xpc_offline_heartbeat_sn2;
2313 xpc_online_heartbeat = xpc_online_heartbeat_sn2;
2314 xpc_heartbeat_init = xpc_heartbeat_init_sn2;
2315 xpc_heartbeat_exit = xpc_heartbeat_exit_sn2;
61deb86e 2316 xpc_get_remote_heartbeat = xpc_get_remote_heartbeat_sn2;
33ba3c77 2317
a47d5dac
DN
2318 xpc_request_partition_activation = xpc_request_partition_activation_sn2;
2319 xpc_request_partition_reactivation =
2320 xpc_request_partition_reactivation_sn2;
2321 xpc_request_partition_deactivation =
2322 xpc_request_partition_deactivation_sn2;
2323 xpc_cancel_partition_deactivation_request =
2324 xpc_cancel_partition_deactivation_request_sn2;
2325
6e41017a 2326 xpc_process_activate_IRQ_rcvd = xpc_process_activate_IRQ_rcvd_sn2;
5b8669df
DN
2327 xpc_setup_ch_structures_sn = xpc_setup_ch_structures_sn_sn2;
2328 xpc_teardown_ch_structures_sn = xpc_teardown_ch_structures_sn_sn2;
e17d416b 2329 xpc_make_first_contact = xpc_make_first_contact_sn2;
5b8669df 2330
7fb5e59d 2331 xpc_get_chctl_all_flags = xpc_get_chctl_all_flags_sn2;
5b8669df
DN
2332 xpc_send_chctl_closerequest = xpc_send_chctl_closerequest_sn2;
2333 xpc_send_chctl_closereply = xpc_send_chctl_closereply_sn2;
2334 xpc_send_chctl_openrequest = xpc_send_chctl_openrequest_sn2;
2335 xpc_send_chctl_openreply = xpc_send_chctl_openreply_sn2;
2336
2337 xpc_save_remote_msgqueue_pa = xpc_save_remote_msgqueue_pa_sn2;
2338
2339 xpc_setup_msg_structures = xpc_setup_msg_structures_sn2;
2340 xpc_teardown_msg_structures = xpc_teardown_msg_structures_sn2;
2341
a47d5dac 2342 xpc_notify_senders_of_disconnect = xpc_notify_senders_of_disconnect_sn2;
7fb5e59d 2343 xpc_process_msg_chctl_flags = xpc_process_msg_chctl_flags_sn2;
bd3e64c1
DN
2344 xpc_n_of_deliverable_payloads = xpc_n_of_deliverable_payloads_sn2;
2345 xpc_get_deliverable_payload = xpc_get_deliverable_payload_sn2;
33ba3c77 2346
a47d5dac 2347 xpc_indicate_partition_engaged = xpc_indicate_partition_engaged_sn2;
a47d5dac
DN
2348 xpc_indicate_partition_disengaged =
2349 xpc_indicate_partition_disengaged_sn2;
5b8669df
DN
2350 xpc_partition_engaged = xpc_partition_engaged_sn2;
2351 xpc_any_partition_engaged = xpc_any_partition_engaged_sn2;
a47d5dac
DN
2352 xpc_assume_partition_disengaged = xpc_assume_partition_disengaged_sn2;
2353
bd3e64c1
DN
2354 xpc_send_payload = xpc_send_payload_sn2;
2355 xpc_received_payload = xpc_received_payload_sn2;
2356
2357 if (offsetof(struct xpc_msg_sn2, payload) > XPC_MSG_HDR_MAX_SIZE) {
2358 dev_err(xpc_part, "header portion of struct xpc_msg_sn2 is "
2359 "larger than %d\n", XPC_MSG_HDR_MAX_SIZE);
2360 return -E2BIG;
2361 }
6e41017a 2362
ee6665e3
DN
2363 buf_size = max(XPC_RP_VARS_SIZE,
2364 XPC_RP_HEADER_SIZE + XP_NASID_MASK_BYTES_SN2);
2365 xpc_remote_copy_buffer_sn2 = xpc_kmalloc_cacheline_aligned(buf_size,
2366 GFP_KERNEL,
2367 &xpc_remote_copy_buffer_base_sn2);
2368 if (xpc_remote_copy_buffer_sn2 == NULL) {
2369 dev_err(xpc_part, "can't get memory for remote copy buffer\n");
2370 return -ENOMEM;
2371 }
2372
c39838ce 2373 /* open up protections for IPI and [potentially] amo operations */
6e41017a 2374 xpc_allow_IPI_ops_sn2();
c39838ce 2375 xpc_allow_amo_ops_shub_wars_1_1_sn2();
6e41017a
DN
2376
2377 /*
2378 * This is safe to do before the xpc_hb_checker thread has started
2379 * because the handler releases a wait queue. If an interrupt is
2380 * received before the thread is waiting, it will not go to sleep,
2381 * but rather immediately process the interrupt.
2382 */
2383 ret = request_irq(SGI_XPC_ACTIVATE, xpc_handle_activate_IRQ_sn2, 0,
2384 "xpc hb", NULL);
2385 if (ret != 0) {
2386 dev_err(xpc_part, "can't register ACTIVATE IRQ handler, "
2387 "errno=%d\n", -ret);
2388 xpc_disallow_IPI_ops_sn2();
ee6665e3 2389 kfree(xpc_remote_copy_buffer_base_sn2);
6e41017a
DN
2390 }
2391 return ret;
94bd2708
DN
2392}
2393
2394void
2395xpc_exit_sn2(void)
2396{
6e41017a
DN
2397 free_irq(SGI_XPC_ACTIVATE, NULL);
2398 xpc_disallow_IPI_ops_sn2();
ee6665e3 2399 kfree(xpc_remote_copy_buffer_base_sn2);
94bd2708 2400}