sysctl: Drop & in front of every proc_handler.
[linux-2.6-block.git] / drivers / misc / sgi-xp / xpc_main.c
CommitLineData
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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 *
a374c57b 6 * Copyright (c) 2004-2009 Silicon Graphics, Inc. All Rights Reserved.
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7 */
8
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9/*
10 * Cross Partition Communication (XPC) support - standard version.
11 *
12 * XPC provides a message passing capability that crosses partition
13 * boundaries. This module is made up of two parts:
14 *
15 * partition This part detects the presence/absence of other
16 * partitions. It provides a heartbeat and monitors
17 * the heartbeats of other partitions.
18 *
19 * channel This part manages the channels and sends/receives
20 * messages across them to/from other partitions.
21 *
22 * There are a couple of additional functions residing in XP, which
23 * provide an interface to XPC for its users.
24 *
25 *
26 * Caveats:
27 *
7fb5e59d 28 * . Currently on sn2, we have no way to determine which nasid an IRQ
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29 * came from. Thus, xpc_send_IRQ_sn2() does a remote amo write
30 * followed by an IPI. The amo indicates where data is to be pulled
31 * from, so after the IPI arrives, the remote partition checks the amo
32 * word. The IPI can actually arrive before the amo however, so other
33 * code must periodically check for this case. Also, remote amo
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34 * operations do not reliably time out. Thus we do a remote PIO read
35 * solely to know whether the remote partition is down and whether we
36 * should stop sending IPIs to it. This remote PIO read operation is
37 * set up in a special nofault region so SAL knows to ignore (and
c39838ce 38 * cleanup) any errors due to the remote amo write, PIO read, and/or
7fb5e59d 39 * PIO write operations.
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40 *
41 * If/when new hardware solves this IPI problem, we should abandon
42 * the current approach.
43 *
44 */
45
89eb8eb9 46#include <linux/module.h>
261f3b49
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47#include <linux/sysctl.h>
48#include <linux/device.h>
69913927 49#include <linux/delay.h>
a607c389 50#include <linux/reboot.h>
1eeb66a1 51#include <linux/kdebug.h>
2c2b94f9 52#include <linux/kthread.h>
45d9ca49 53#include "xpc.h"
89eb8eb9 54
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55/* define two XPC debug device structures to be used with dev_dbg() et al */
56
57struct device_driver xpc_dbg_name = {
58 .name = "xpc"
59};
60
61struct device xpc_part_dbg_subname = {
bb0dc43e 62 .init_name = "", /* set to "part" at xpc_init() time */
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63 .driver = &xpc_dbg_name
64};
65
66struct device xpc_chan_dbg_subname = {
bb0dc43e 67 .init_name = "", /* set to "chan" at xpc_init() time */
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68 .driver = &xpc_dbg_name
69};
70
71struct device *xpc_part = &xpc_part_dbg_subname;
72struct device *xpc_chan = &xpc_chan_dbg_subname;
73
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74static int xpc_kdebug_ignore;
75
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76/* systune related variables for /proc/sys directories */
77
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78static int xpc_hb_interval = XPC_HB_DEFAULT_INTERVAL;
79static int xpc_hb_min_interval = 1;
80static int xpc_hb_max_interval = 10;
89eb8eb9 81
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82static int xpc_hb_check_interval = XPC_HB_CHECK_DEFAULT_INTERVAL;
83static int xpc_hb_check_min_interval = 10;
84static int xpc_hb_check_max_interval = 120;
89eb8eb9 85
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86int xpc_disengage_timelimit = XPC_DISENGAGE_DEFAULT_TIMELIMIT;
87static int xpc_disengage_min_timelimit; /* = 0 */
88static int xpc_disengage_max_timelimit = 120;
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89
90static ctl_table xpc_sys_xpc_hb_dir[] = {
91 {
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92 .procname = "hb_interval",
93 .data = &xpc_hb_interval,
94 .maxlen = sizeof(int),
95 .mode = 0644,
6d456111 96 .proc_handler = proc_dointvec_minmax,
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97 .extra1 = &xpc_hb_min_interval,
98 .extra2 = &xpc_hb_max_interval},
89eb8eb9 99 {
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100 .procname = "hb_check_interval",
101 .data = &xpc_hb_check_interval,
102 .maxlen = sizeof(int),
103 .mode = 0644,
6d456111 104 .proc_handler = proc_dointvec_minmax,
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105 .extra1 = &xpc_hb_check_min_interval,
106 .extra2 = &xpc_hb_check_max_interval},
68cbf075 107 {}
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108};
109static ctl_table xpc_sys_xpc_dir[] = {
110 {
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111 .procname = "hb",
112 .mode = 0555,
113 .child = xpc_sys_xpc_hb_dir},
e54af724 114 {
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115 .procname = "disengage_timelimit",
116 .data = &xpc_disengage_timelimit,
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117 .maxlen = sizeof(int),
118 .mode = 0644,
6d456111 119 .proc_handler = proc_dointvec_minmax,
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120 .extra1 = &xpc_disengage_min_timelimit,
121 .extra2 = &xpc_disengage_max_timelimit},
68cbf075 122 {}
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123};
124static ctl_table xpc_sys_dir[] = {
125 {
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126 .procname = "xpc",
127 .mode = 0555,
128 .child = xpc_sys_xpc_dir},
68cbf075 129 {}
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130};
131static struct ctl_table_header *xpc_sysctl;
132
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133/* non-zero if any remote partition disengage was timed out */
134int xpc_disengage_timedout;
89eb8eb9 135
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136/* #of activate IRQs received and not yet processed */
137int xpc_activate_IRQ_rcvd;
138DEFINE_SPINLOCK(xpc_activate_IRQ_rcvd_lock);
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139
140/* IRQ handler notifies this wait queue on receipt of an IRQ */
6e41017a 141DECLARE_WAIT_QUEUE_HEAD(xpc_activate_IRQ_wq);
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142
143static unsigned long xpc_hb_check_timeout;
33ba3c77 144static struct timer_list xpc_hb_timer;
89eb8eb9 145
e54af724 146/* notification that the xpc_hb_checker thread has exited */
f9e505a9 147static DECLARE_COMPLETION(xpc_hb_checker_exited);
89eb8eb9 148
e54af724 149/* notification that the xpc_discovery thread has exited */
f9e505a9 150static DECLARE_COMPLETION(xpc_discovery_exited);
89eb8eb9 151
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152static void xpc_kthread_waitmsgs(struct xpc_partition *, struct xpc_channel *);
153
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154static int xpc_system_reboot(struct notifier_block *, unsigned long, void *);
155static struct notifier_block xpc_reboot_notifier = {
156 .notifier_call = xpc_system_reboot,
157};
158
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159static int xpc_system_die(struct notifier_block *, unsigned long, void *);
160static struct notifier_block xpc_die_notifier = {
161 .notifier_call = xpc_system_die,
162};
163
a7665b0a 164struct xpc_arch_operations xpc_arch_ops;
94bd2708 165
a607c389 166/*
a47d5dac 167 * Timer function to enforce the timelimit on the partition disengage.
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168 */
169static void
a47d5dac 170xpc_timeout_partition_disengage(unsigned long data)
a607c389 171{
35190506 172 struct xpc_partition *part = (struct xpc_partition *)data;
a607c389 173
a47d5dac 174 DBUG_ON(time_is_after_jiffies(part->disengage_timeout));
a607c389 175
35190506 176 (void)xpc_partition_disengaged(part);
a607c389 177
a47d5dac 178 DBUG_ON(part->disengage_timeout != 0);
a7665b0a 179 DBUG_ON(xpc_arch_ops.partition_engaged(XPC_PARTID(part)));
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180}
181
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182/*
183 * Timer to produce the heartbeat. The timer structures function is
184 * already set when this is initially called. A tunable is used to
185 * specify when the next timeout should occur.
186 */
187static void
188xpc_hb_beater(unsigned long dummy)
189{
a7665b0a 190 xpc_arch_ops.increment_heartbeat();
89eb8eb9 191
aaa3cd69 192 if (time_is_before_eq_jiffies(xpc_hb_check_timeout))
6e41017a 193 wake_up_interruptible(&xpc_activate_IRQ_wq);
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194
195 xpc_hb_timer.expires = jiffies + (xpc_hb_interval * HZ);
196 add_timer(&xpc_hb_timer);
197}
198
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199static void
200xpc_start_hb_beater(void)
201{
a7665b0a 202 xpc_arch_ops.heartbeat_init();
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203 init_timer(&xpc_hb_timer);
204 xpc_hb_timer.function = xpc_hb_beater;
205 xpc_hb_beater(0);
206}
207
208static void
209xpc_stop_hb_beater(void)
210{
211 del_timer_sync(&xpc_hb_timer);
a7665b0a 212 xpc_arch_ops.heartbeat_exit();
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213}
214
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215/*
216 * At periodic intervals, scan through all active partitions and ensure
217 * their heartbeat is still active. If not, the partition is deactivated.
218 */
219static void
220xpc_check_remote_hb(void)
221{
222 struct xpc_partition *part;
223 short partid;
224 enum xp_retval ret;
225
226 for (partid = 0; partid < xp_max_npartitions; partid++) {
227
228 if (xpc_exiting)
229 break;
230
231 if (partid == xp_partition_id)
232 continue;
233
234 part = &xpc_partitions[partid];
235
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236 if (part->act_state == XPC_P_AS_INACTIVE ||
237 part->act_state == XPC_P_AS_DEACTIVATING) {
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238 continue;
239 }
240
a7665b0a 241 ret = xpc_arch_ops.get_remote_heartbeat(part);
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242 if (ret != xpSuccess)
243 XPC_DEACTIVATE_PARTITION(part, ret);
244 }
245}
246
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247/*
248 * This thread is responsible for nearly all of the partition
249 * activation/deactivation.
250 */
251static int
252xpc_hb_checker(void *ignore)
253{
35190506 254 int force_IRQ = 0;
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255
256 /* this thread was marked active by xpc_hb_init() */
257
f7df8ed1 258 set_cpus_allowed_ptr(current, cpumask_of(XPC_HB_CHECK_CPU));
89eb8eb9 259
4c013f5c 260 /* set our heartbeating to other partitions into motion */
89eb8eb9 261 xpc_hb_check_timeout = jiffies + (xpc_hb_check_interval * HZ);
33ba3c77 262 xpc_start_hb_beater();
89eb8eb9 263
2c2b94f9 264 while (!xpc_exiting) {
89eb8eb9 265
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266 dev_dbg(xpc_part, "woke up with %d ticks rem; %d IRQs have "
267 "been received\n",
35190506 268 (int)(xpc_hb_check_timeout - jiffies),
5b8669df 269 xpc_activate_IRQ_rcvd);
89eb8eb9 270
89eb8eb9 271 /* checking of remote heartbeats is skewed by IRQ handling */
aaa3cd69 272 if (time_is_before_eq_jiffies(xpc_hb_check_timeout)) {
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273 xpc_hb_check_timeout = jiffies +
274 (xpc_hb_check_interval * HZ);
275
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276 dev_dbg(xpc_part, "checking remote heartbeats\n");
277 xpc_check_remote_hb();
278
279 /*
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280 * On sn2 we need to periodically recheck to ensure no
281 * IRQ/amo pairs have been missed.
89eb8eb9 282 */
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283 if (is_shub())
284 force_IRQ = 1;
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285 }
286
a607c389 287 /* check for outstanding IRQs */
5b8669df 288 if (xpc_activate_IRQ_rcvd > 0 || force_IRQ != 0) {
89eb8eb9 289 force_IRQ = 0;
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290 dev_dbg(xpc_part, "processing activate IRQs "
291 "received\n");
a7665b0a 292 xpc_arch_ops.process_activate_IRQ_rcvd();
89eb8eb9 293 }
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294
295 /* wait for IRQ or timeout */
6e41017a 296 (void)wait_event_interruptible(xpc_activate_IRQ_wq,
5b8669df 297 (time_is_before_eq_jiffies(
aaa3cd69 298 xpc_hb_check_timeout) ||
5b8669df 299 xpc_activate_IRQ_rcvd > 0 ||
2c2b94f9 300 xpc_exiting));
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301 }
302
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303 xpc_stop_hb_beater();
304
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305 dev_dbg(xpc_part, "heartbeat checker is exiting\n");
306
e54af724 307 /* mark this thread as having exited */
f9e505a9 308 complete(&xpc_hb_checker_exited);
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309 return 0;
310}
311
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312/*
313 * This thread will attempt to discover other partitions to activate
314 * based on info provided by SAL. This new thread is short lived and
315 * will exit once discovery is complete.
316 */
317static int
318xpc_initiate_discovery(void *ignore)
319{
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320 xpc_discovery();
321
322 dev_dbg(xpc_part, "discovery thread is exiting\n");
323
e54af724 324 /* mark this thread as having exited */
f9e505a9 325 complete(&xpc_discovery_exited);
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326 return 0;
327}
328
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329/*
330 * The first kthread assigned to a newly activated partition is the one
e17d416b 331 * created by XPC HB with which it calls xpc_activating(). XPC hangs on to
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332 * that kthread until the partition is brought down, at which time that kthread
333 * returns back to XPC HB. (The return of that kthread will signify to XPC HB
334 * that XPC has dismantled all communication infrastructure for the associated
335 * partition.) This kthread becomes the channel manager for that partition.
336 *
337 * Each active partition has a channel manager, who, besides connecting and
338 * disconnecting channels, will ensure that each of the partition's connected
339 * channels has the required number of assigned kthreads to get the work done.
340 */
341static void
342xpc_channel_mgr(struct xpc_partition *part)
343{
83469b55 344 while (part->act_state != XPC_P_AS_DEACTIVATING ||
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345 atomic_read(&part->nchannels_active) > 0 ||
346 !xpc_partition_disengaged(part)) {
89eb8eb9 347
7fb5e59d 348 xpc_process_sent_chctl_flags(part);
89eb8eb9 349
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350 /*
351 * Wait until we've been requested to activate kthreads or
352 * all of the channel's message queues have been torn down or
353 * a signal is pending.
354 *
355 * The channel_mgr_requests is set to 1 after being awakened,
356 * This is done to prevent the channel mgr from making one pass
357 * through the loop for each request, since he will
358 * be servicing all the requests in one pass. The reason it's
359 * set to 1 instead of 0 is so that other kthreads will know
360 * that the channel mgr is running and won't bother trying to
361 * wake him up.
362 */
363 atomic_dec(&part->channel_mgr_requests);
35190506 364 (void)wait_event_interruptible(part->channel_mgr_wq,
2c2b94f9 365 (atomic_read(&part->channel_mgr_requests) > 0 ||
7fb5e59d 366 part->chctl.all_flags != 0 ||
83469b55 367 (part->act_state == XPC_P_AS_DEACTIVATING &&
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368 atomic_read(&part->nchannels_active) == 0 &&
369 xpc_partition_disengaged(part))));
89eb8eb9 370 atomic_set(&part->channel_mgr_requests, 1);
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371 }
372}
373
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374/*
375 * Guarantee that the kzalloc'd memory is cacheline aligned.
376 */
377void *
378xpc_kzalloc_cacheline_aligned(size_t size, gfp_t flags, void **base)
379{
380 /* see if kzalloc will give us cachline aligned memory by default */
381 *base = kzalloc(size, flags);
382 if (*base == NULL)
383 return NULL;
384
385 if ((u64)*base == L1_CACHE_ALIGN((u64)*base))
386 return *base;
387
388 kfree(*base);
389
390 /* nope, we'll have to do it ourselves */
391 *base = kzalloc(size + L1_CACHE_BYTES, flags);
392 if (*base == NULL)
393 return NULL;
394
395 return (void *)L1_CACHE_ALIGN((u64)*base);
396}
397
398/*
399 * Setup the channel structures necessary to support XPartition Communication
400 * between the specified remote partition and the local one.
401 */
402static enum xp_retval
403xpc_setup_ch_structures(struct xpc_partition *part)
404{
405 enum xp_retval ret;
406 int ch_number;
407 struct xpc_channel *ch;
408 short partid = XPC_PARTID(part);
409
410 /*
411 * Allocate all of the channel structures as a contiguous chunk of
412 * memory.
413 */
414 DBUG_ON(part->channels != NULL);
415 part->channels = kzalloc(sizeof(struct xpc_channel) * XPC_MAX_NCHANNELS,
416 GFP_KERNEL);
417 if (part->channels == NULL) {
418 dev_err(xpc_chan, "can't get memory for channels\n");
419 return xpNoMemory;
420 }
421
422 /* allocate the remote open and close args */
423
424 part->remote_openclose_args =
425 xpc_kzalloc_cacheline_aligned(XPC_OPENCLOSE_ARGS_SIZE,
426 GFP_KERNEL, &part->
427 remote_openclose_args_base);
428 if (part->remote_openclose_args == NULL) {
429 dev_err(xpc_chan, "can't get memory for remote connect args\n");
430 ret = xpNoMemory;
431 goto out_1;
432 }
433
434 part->chctl.all_flags = 0;
435 spin_lock_init(&part->chctl_lock);
436
437 atomic_set(&part->channel_mgr_requests, 1);
438 init_waitqueue_head(&part->channel_mgr_wq);
439
440 part->nchannels = XPC_MAX_NCHANNELS;
441
442 atomic_set(&part->nchannels_active, 0);
443 atomic_set(&part->nchannels_engaged, 0);
444
445 for (ch_number = 0; ch_number < part->nchannels; ch_number++) {
446 ch = &part->channels[ch_number];
447
448 ch->partid = partid;
449 ch->number = ch_number;
450 ch->flags = XPC_C_DISCONNECTED;
451
452 atomic_set(&ch->kthreads_assigned, 0);
453 atomic_set(&ch->kthreads_idle, 0);
454 atomic_set(&ch->kthreads_active, 0);
455
456 atomic_set(&ch->references, 0);
457 atomic_set(&ch->n_to_notify, 0);
458
459 spin_lock_init(&ch->lock);
460 init_completion(&ch->wdisconnect_wait);
461
462 atomic_set(&ch->n_on_msg_allocate_wq, 0);
463 init_waitqueue_head(&ch->msg_allocate_wq);
464 init_waitqueue_head(&ch->idle_wq);
465 }
466
a7665b0a 467 ret = xpc_arch_ops.setup_ch_structures(part);
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468 if (ret != xpSuccess)
469 goto out_2;
470
471 /*
472 * With the setting of the partition setup_state to XPC_P_SS_SETUP,
473 * we're declaring that this partition is ready to go.
474 */
475 part->setup_state = XPC_P_SS_SETUP;
476
477 return xpSuccess;
478
479 /* setup of ch structures failed */
480out_2:
481 kfree(part->remote_openclose_args_base);
482 part->remote_openclose_args = NULL;
483out_1:
484 kfree(part->channels);
485 part->channels = NULL;
486 return ret;
487}
488
489/*
490 * Teardown the channel structures necessary to support XPartition Communication
491 * between the specified remote partition and the local one.
492 */
493static void
494xpc_teardown_ch_structures(struct xpc_partition *part)
495{
496 DBUG_ON(atomic_read(&part->nchannels_engaged) != 0);
497 DBUG_ON(atomic_read(&part->nchannels_active) != 0);
498
499 /*
500 * Make this partition inaccessible to local processes by marking it
501 * as no longer setup. Then wait before proceeding with the teardown
502 * until all existing references cease.
503 */
504 DBUG_ON(part->setup_state != XPC_P_SS_SETUP);
505 part->setup_state = XPC_P_SS_WTEARDOWN;
506
507 wait_event(part->teardown_wq, (atomic_read(&part->references) == 0));
508
509 /* now we can begin tearing down the infrastructure */
510
a7665b0a 511 xpc_arch_ops.teardown_ch_structures(part);
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512
513 kfree(part->remote_openclose_args_base);
514 part->remote_openclose_args = NULL;
515 kfree(part->channels);
516 part->channels = NULL;
517
518 part->setup_state = XPC_P_SS_TORNDOWN;
519}
520
89eb8eb9
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521/*
522 * When XPC HB determines that a partition has come up, it will create a new
523 * kthread and that kthread will call this function to attempt to set up the
524 * basic infrastructure used for Cross Partition Communication with the newly
525 * upped partition.
526 *
527 * The kthread that was created by XPC HB and which setup the XPC
e17d416b
DN
528 * infrastructure will remain assigned to the partition becoming the channel
529 * manager for that partition until the partition is deactivating, at which
530 * time the kthread will teardown the XPC infrastructure and then exit.
89eb8eb9 531 */
89eb8eb9
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532static int
533xpc_activating(void *__partid)
534{
64d032ba 535 short partid = (u64)__partid;
89eb8eb9
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536 struct xpc_partition *part = &xpc_partitions[partid];
537 unsigned long irq_flags;
89eb8eb9 538
bc63d387 539 DBUG_ON(partid < 0 || partid >= xp_max_npartitions);
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540
541 spin_lock_irqsave(&part->act_lock, irq_flags);
542
83469b55
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543 if (part->act_state == XPC_P_AS_DEACTIVATING) {
544 part->act_state = XPC_P_AS_INACTIVE;
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545 spin_unlock_irqrestore(&part->act_lock, irq_flags);
546 part->remote_rp_pa = 0;
547 return 0;
548 }
549
550 /* indicate the thread is activating */
83469b55
DN
551 DBUG_ON(part->act_state != XPC_P_AS_ACTIVATION_REQ);
552 part->act_state = XPC_P_AS_ACTIVATING;
89eb8eb9
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553
554 XPC_SET_REASON(part, 0, 0);
555 spin_unlock_irqrestore(&part->act_lock, irq_flags);
556
e17d416b 557 dev_dbg(xpc_part, "activating partition %d\n", partid);
89eb8eb9 558
a7665b0a 559 xpc_arch_ops.allow_hb(partid);
89eb8eb9 560
5b8669df 561 if (xpc_setup_ch_structures(part) == xpSuccess) {
e17d416b
DN
562 (void)xpc_part_ref(part); /* this will always succeed */
563
a7665b0a 564 if (xpc_arch_ops.make_first_contact(part) == xpSuccess) {
e17d416b
DN
565 xpc_mark_partition_active(part);
566 xpc_channel_mgr(part);
567 /* won't return until partition is deactivating */
568 }
569
570 xpc_part_deref(part);
5b8669df 571 xpc_teardown_ch_structures(part);
e17d416b 572 }
89eb8eb9 573
a7665b0a 574 xpc_arch_ops.disallow_hb(partid);
89eb8eb9
DN
575 xpc_mark_partition_inactive(part);
576
65c17b80 577 if (part->reason == xpReactivating) {
89eb8eb9 578 /* interrupting ourselves results in activating partition */
a7665b0a 579 xpc_arch_ops.request_partition_reactivation(part);
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580 }
581
582 return 0;
583}
584
89eb8eb9
DN
585void
586xpc_activate_partition(struct xpc_partition *part)
587{
64d032ba 588 short partid = XPC_PARTID(part);
89eb8eb9 589 unsigned long irq_flags;
2c2b94f9 590 struct task_struct *kthread;
89eb8eb9 591
89eb8eb9
DN
592 spin_lock_irqsave(&part->act_lock, irq_flags);
593
83469b55 594 DBUG_ON(part->act_state != XPC_P_AS_INACTIVE);
89eb8eb9 595
83469b55 596 part->act_state = XPC_P_AS_ACTIVATION_REQ;
65c17b80 597 XPC_SET_REASON(part, xpCloneKThread, __LINE__);
89eb8eb9
DN
598
599 spin_unlock_irqrestore(&part->act_lock, irq_flags);
7c6c6636 600
2c2b94f9
DN
601 kthread = kthread_run(xpc_activating, (void *)((u64)partid), "xpc%02d",
602 partid);
603 if (IS_ERR(kthread)) {
7c6c6636 604 spin_lock_irqsave(&part->act_lock, irq_flags);
83469b55 605 part->act_state = XPC_P_AS_INACTIVE;
65c17b80 606 XPC_SET_REASON(part, xpCloneKThreadFailed, __LINE__);
7c6c6636
RH
607 spin_unlock_irqrestore(&part->act_lock, irq_flags);
608 }
89eb8eb9
DN
609}
610
89eb8eb9
DN
611void
612xpc_activate_kthreads(struct xpc_channel *ch, int needed)
613{
614 int idle = atomic_read(&ch->kthreads_idle);
615 int assigned = atomic_read(&ch->kthreads_assigned);
616 int wakeup;
617
89eb8eb9
DN
618 DBUG_ON(needed <= 0);
619
620 if (idle > 0) {
621 wakeup = (needed > idle) ? idle : needed;
622 needed -= wakeup;
623
624 dev_dbg(xpc_chan, "wakeup %d idle kthreads, partid=%d, "
625 "channel=%d\n", wakeup, ch->partid, ch->number);
626
627 /* only wakeup the requested number of kthreads */
628 wake_up_nr(&ch->idle_wq, wakeup);
629 }
630
2c2b94f9 631 if (needed <= 0)
89eb8eb9 632 return;
89eb8eb9
DN
633
634 if (needed + assigned > ch->kthreads_assigned_limit) {
635 needed = ch->kthreads_assigned_limit - assigned;
2c2b94f9 636 if (needed <= 0)
89eb8eb9 637 return;
89eb8eb9
DN
638 }
639
640 dev_dbg(xpc_chan, "create %d new kthreads, partid=%d, channel=%d\n",
641 needed, ch->partid, ch->number);
642
a460ef8d 643 xpc_create_kthreads(ch, needed, 0);
89eb8eb9
DN
644}
645
89eb8eb9
DN
646/*
647 * This function is where XPC's kthreads wait for messages to deliver.
648 */
649static void
650xpc_kthread_waitmsgs(struct xpc_partition *part, struct xpc_channel *ch)
651{
a7665b0a
RH
652 int (*n_of_deliverable_payloads) (struct xpc_channel *) =
653 xpc_arch_ops.n_of_deliverable_payloads;
654
89eb8eb9
DN
655 do {
656 /* deliver messages to their intended recipients */
657
a7665b0a 658 while (n_of_deliverable_payloads(ch) > 0 &&
2c2b94f9 659 !(ch->flags & XPC_C_DISCONNECTING)) {
bd3e64c1 660 xpc_deliver_payload(ch);
89eb8eb9
DN
661 }
662
663 if (atomic_inc_return(&ch->kthreads_idle) >
35190506 664 ch->kthreads_idle_limit) {
89eb8eb9
DN
665 /* too many idle kthreads on this channel */
666 atomic_dec(&ch->kthreads_idle);
667 break;
668 }
669
670 dev_dbg(xpc_chan, "idle kthread calling "
671 "wait_event_interruptible_exclusive()\n");
672
35190506 673 (void)wait_event_interruptible_exclusive(ch->idle_wq,
a7665b0a 674 (n_of_deliverable_payloads(ch) > 0 ||
2c2b94f9 675 (ch->flags & XPC_C_DISCONNECTING)));
89eb8eb9
DN
676
677 atomic_dec(&ch->kthreads_idle);
678
2c2b94f9 679 } while (!(ch->flags & XPC_C_DISCONNECTING));
89eb8eb9
DN
680}
681
89eb8eb9 682static int
2c2b94f9 683xpc_kthread_start(void *args)
89eb8eb9 684{
64d032ba 685 short partid = XPC_UNPACK_ARG1(args);
89eb8eb9
DN
686 u16 ch_number = XPC_UNPACK_ARG2(args);
687 struct xpc_partition *part = &xpc_partitions[partid];
688 struct xpc_channel *ch;
689 int n_needed;
e54af724 690 unsigned long irq_flags;
a7665b0a
RH
691 int (*n_of_deliverable_payloads) (struct xpc_channel *) =
692 xpc_arch_ops.n_of_deliverable_payloads;
89eb8eb9 693
89eb8eb9
DN
694 dev_dbg(xpc_chan, "kthread starting, partid=%d, channel=%d\n",
695 partid, ch_number);
696
697 ch = &part->channels[ch_number];
698
699 if (!(ch->flags & XPC_C_DISCONNECTING)) {
89eb8eb9
DN
700
701 /* let registerer know that connection has been established */
702
e54af724 703 spin_lock_irqsave(&ch->lock, irq_flags);
4c2cd966
DN
704 if (!(ch->flags & XPC_C_CONNECTEDCALLOUT)) {
705 ch->flags |= XPC_C_CONNECTEDCALLOUT;
e54af724
DN
706 spin_unlock_irqrestore(&ch->lock, irq_flags);
707
89eb8eb9
DN
708 xpc_connected_callout(ch);
709
4c2cd966
DN
710 spin_lock_irqsave(&ch->lock, irq_flags);
711 ch->flags |= XPC_C_CONNECTEDCALLOUT_MADE;
712 spin_unlock_irqrestore(&ch->lock, irq_flags);
713
89eb8eb9
DN
714 /*
715 * It is possible that while the callout was being
716 * made that the remote partition sent some messages.
717 * If that is the case, we may need to activate
718 * additional kthreads to help deliver them. We only
719 * need one less than total #of messages to deliver.
720 */
a7665b0a 721 n_needed = n_of_deliverable_payloads(ch) - 1;
2c2b94f9 722 if (n_needed > 0 && !(ch->flags & XPC_C_DISCONNECTING))
89eb8eb9 723 xpc_activate_kthreads(ch, n_needed);
2c2b94f9 724
e54af724
DN
725 } else {
726 spin_unlock_irqrestore(&ch->lock, irq_flags);
89eb8eb9
DN
727 }
728
729 xpc_kthread_waitmsgs(part, ch);
730 }
731
a460ef8d 732 /* let registerer know that connection is disconnecting */
e54af724 733
a460ef8d
DN
734 spin_lock_irqsave(&ch->lock, irq_flags);
735 if ((ch->flags & XPC_C_CONNECTEDCALLOUT_MADE) &&
35190506 736 !(ch->flags & XPC_C_DISCONNECTINGCALLOUT)) {
a460ef8d 737 ch->flags |= XPC_C_DISCONNECTINGCALLOUT;
4c2cd966 738 spin_unlock_irqrestore(&ch->lock, irq_flags);
a460ef8d 739
65c17b80 740 xpc_disconnect_callout(ch, xpDisconnecting);
a460ef8d
DN
741
742 spin_lock_irqsave(&ch->lock, irq_flags);
743 ch->flags |= XPC_C_DISCONNECTINGCALLOUT_MADE;
744 }
745 spin_unlock_irqrestore(&ch->lock, irq_flags);
746
a47d5dac
DN
747 if (atomic_dec_return(&ch->kthreads_assigned) == 0 &&
748 atomic_dec_return(&part->nchannels_engaged) == 0) {
a7665b0a 749 xpc_arch_ops.indicate_partition_disengaged(part);
89eb8eb9
DN
750 }
751
89eb8eb9
DN
752 xpc_msgqueue_deref(ch);
753
754 dev_dbg(xpc_chan, "kthread exiting, partid=%d, channel=%d\n",
755 partid, ch_number);
756
757 xpc_part_deref(part);
758 return 0;
759}
760
89eb8eb9
DN
761/*
762 * For each partition that XPC has established communications with, there is
763 * a minimum of one kernel thread assigned to perform any operation that
764 * may potentially sleep or block (basically the callouts to the asynchronous
765 * functions registered via xpc_connect()).
766 *
767 * Additional kthreads are created and destroyed by XPC as the workload
768 * demands.
769 *
770 * A kthread is assigned to one of the active channels that exists for a given
771 * partition.
772 */
773void
a460ef8d 774xpc_create_kthreads(struct xpc_channel *ch, int needed,
35190506 775 int ignore_disconnecting)
89eb8eb9
DN
776{
777 unsigned long irq_flags;
89eb8eb9 778 u64 args = XPC_PACK_ARGS(ch->partid, ch->number);
a607c389 779 struct xpc_partition *part = &xpc_partitions[ch->partid];
2c2b94f9 780 struct task_struct *kthread;
a7665b0a
RH
781 void (*indicate_partition_disengaged) (struct xpc_partition *) =
782 xpc_arch_ops.indicate_partition_disengaged;
89eb8eb9 783
89eb8eb9 784 while (needed-- > 0) {
e54af724
DN
785
786 /*
787 * The following is done on behalf of the newly created
788 * kthread. That kthread is responsible for doing the
789 * counterpart to the following before it exits.
790 */
a460ef8d
DN
791 if (ignore_disconnecting) {
792 if (!atomic_inc_not_zero(&ch->kthreads_assigned)) {
793 /* kthreads assigned had gone to zero */
794 BUG_ON(!(ch->flags &
35190506 795 XPC_C_DISCONNECTINGCALLOUT_MADE));
a460ef8d
DN
796 break;
797 }
798
799 } else if (ch->flags & XPC_C_DISCONNECTING) {
800 break;
801
a47d5dac
DN
802 } else if (atomic_inc_return(&ch->kthreads_assigned) == 1 &&
803 atomic_inc_return(&part->nchannels_engaged) == 1) {
a7665b0a 804 xpc_arch_ops.indicate_partition_engaged(part);
a460ef8d 805 }
35190506 806 (void)xpc_part_ref(part);
e54af724 807 xpc_msgqueue_ref(ch);
e54af724 808
2c2b94f9
DN
809 kthread = kthread_run(xpc_kthread_start, (void *)args,
810 "xpc%02dc%d", ch->partid, ch->number);
811 if (IS_ERR(kthread)) {
89eb8eb9 812 /* the fork failed */
a460ef8d
DN
813
814 /*
815 * NOTE: if (ignore_disconnecting &&
816 * !(ch->flags & XPC_C_DISCONNECTINGCALLOUT)) is true,
817 * then we'll deadlock if all other kthreads assigned
818 * to this channel are blocked in the channel's
819 * registerer, because the only thing that will unblock
65c17b80 820 * them is the xpDisconnecting callout that this
2c2b94f9 821 * failed kthread_run() would have made.
a460ef8d
DN
822 */
823
e54af724
DN
824 if (atomic_dec_return(&ch->kthreads_assigned) == 0 &&
825 atomic_dec_return(&part->nchannels_engaged) == 0) {
a7665b0a 826 indicate_partition_disengaged(part);
e54af724
DN
827 }
828 xpc_msgqueue_deref(ch);
829 xpc_part_deref(part);
89eb8eb9
DN
830
831 if (atomic_read(&ch->kthreads_assigned) <
35190506 832 ch->kthreads_idle_limit) {
89eb8eb9
DN
833 /*
834 * Flag this as an error only if we have an
835 * insufficient #of kthreads for the channel
836 * to function.
89eb8eb9
DN
837 */
838 spin_lock_irqsave(&ch->lock, irq_flags);
65c17b80 839 XPC_DISCONNECT_CHANNEL(ch, xpLackOfResources,
35190506 840 &irq_flags);
89eb8eb9
DN
841 spin_unlock_irqrestore(&ch->lock, irq_flags);
842 }
843 break;
844 }
89eb8eb9
DN
845 }
846}
847
89eb8eb9
DN
848void
849xpc_disconnect_wait(int ch_number)
850{
a607c389 851 unsigned long irq_flags;
64d032ba 852 short partid;
89eb8eb9
DN
853 struct xpc_partition *part;
854 struct xpc_channel *ch;
e54af724 855 int wakeup_channel_mgr;
89eb8eb9 856
89eb8eb9 857 /* now wait for all callouts to the caller's function to cease */
bc63d387 858 for (partid = 0; partid < xp_max_npartitions; partid++) {
89eb8eb9
DN
859 part = &xpc_partitions[partid];
860
2c2b94f9 861 if (!xpc_part_ref(part))
e54af724 862 continue;
89eb8eb9 863
e54af724 864 ch = &part->channels[ch_number];
89eb8eb9 865
e54af724 866 if (!(ch->flags & XPC_C_WDISCONNECT)) {
89eb8eb9 867 xpc_part_deref(part);
e54af724 868 continue;
89eb8eb9 869 }
e54af724 870
f9e505a9 871 wait_for_completion(&ch->wdisconnect_wait);
e54af724
DN
872
873 spin_lock_irqsave(&ch->lock, irq_flags);
874 DBUG_ON(!(ch->flags & XPC_C_DISCONNECTED));
875 wakeup_channel_mgr = 0;
876
7fb5e59d 877 if (ch->delayed_chctl_flags) {
83469b55 878 if (part->act_state != XPC_P_AS_DEACTIVATING) {
7fb5e59d
DN
879 spin_lock(&part->chctl_lock);
880 part->chctl.flags[ch->number] |=
881 ch->delayed_chctl_flags;
882 spin_unlock(&part->chctl_lock);
e54af724
DN
883 wakeup_channel_mgr = 1;
884 }
7fb5e59d 885 ch->delayed_chctl_flags = 0;
89eb8eb9 886 }
e54af724
DN
887
888 ch->flags &= ~XPC_C_WDISCONNECT;
889 spin_unlock_irqrestore(&ch->lock, irq_flags);
890
2c2b94f9 891 if (wakeup_channel_mgr)
e54af724 892 xpc_wakeup_channel_mgr(part);
e54af724
DN
893
894 xpc_part_deref(part);
89eb8eb9
DN
895 }
896}
897
5b8669df
DN
898static int
899xpc_setup_partitions(void)
900{
901 short partid;
902 struct xpc_partition *part;
903
904 xpc_partitions = kzalloc(sizeof(struct xpc_partition) *
905 xp_max_npartitions, GFP_KERNEL);
906 if (xpc_partitions == NULL) {
907 dev_err(xpc_part, "can't get memory for partition structure\n");
908 return -ENOMEM;
909 }
910
911 /*
912 * The first few fields of each entry of xpc_partitions[] need to
913 * be initialized now so that calls to xpc_connect() and
914 * xpc_disconnect() can be made prior to the activation of any remote
915 * partition. NOTE THAT NONE OF THE OTHER FIELDS BELONGING TO THESE
916 * ENTRIES ARE MEANINGFUL UNTIL AFTER AN ENTRY'S CORRESPONDING
917 * PARTITION HAS BEEN ACTIVATED.
918 */
919 for (partid = 0; partid < xp_max_npartitions; partid++) {
920 part = &xpc_partitions[partid];
921
922 DBUG_ON((u64)part != L1_CACHE_ALIGN((u64)part));
923
924 part->activate_IRQ_rcvd = 0;
925 spin_lock_init(&part->act_lock);
926 part->act_state = XPC_P_AS_INACTIVE;
927 XPC_SET_REASON(part, 0, 0);
928
929 init_timer(&part->disengage_timer);
930 part->disengage_timer.function =
931 xpc_timeout_partition_disengage;
932 part->disengage_timer.data = (unsigned long)part;
933
934 part->setup_state = XPC_P_SS_UNSET;
935 init_waitqueue_head(&part->teardown_wq);
936 atomic_set(&part->references, 0);
937 }
938
a7665b0a 939 return xpc_arch_ops.setup_partitions();
5b8669df
DN
940}
941
942static void
943xpc_teardown_partitions(void)
944{
a7665b0a 945 xpc_arch_ops.teardown_partitions();
5b8669df
DN
946 kfree(xpc_partitions);
947}
948
89eb8eb9 949static void
65c17b80 950xpc_do_exit(enum xp_retval reason)
89eb8eb9 951{
64d032ba 952 short partid;
1ecaded8 953 int active_part_count, printed_waiting_msg = 0;
89eb8eb9 954 struct xpc_partition *part;
a47d5dac 955 unsigned long printmsg_time, disengage_timeout = 0;
89eb8eb9 956
a607c389
DN
957 /* a 'rmmod XPC' and a 'reboot' cannot both end up here together */
958 DBUG_ON(xpc_exiting == 1);
89eb8eb9
DN
959
960 /*
a607c389
DN
961 * Let the heartbeat checker thread and the discovery thread
962 * (if one is running) know that they should exit. Also wake up
963 * the heartbeat checker thread in case it's sleeping.
89eb8eb9
DN
964 */
965 xpc_exiting = 1;
6e41017a 966 wake_up_interruptible(&xpc_activate_IRQ_wq);
89eb8eb9 967
e54af724 968 /* wait for the discovery thread to exit */
f9e505a9 969 wait_for_completion(&xpc_discovery_exited);
89eb8eb9 970
e54af724 971 /* wait for the heartbeat checker thread to exit */
f9e505a9 972 wait_for_completion(&xpc_hb_checker_exited);
89eb8eb9 973
a607c389 974 /* sleep for a 1/3 of a second or so */
35190506 975 (void)msleep_interruptible(300);
89eb8eb9
DN
976
977 /* wait for all partitions to become inactive */
978
a47d5dac
DN
979 printmsg_time = jiffies + (XPC_DEACTIVATE_PRINTMSG_INTERVAL * HZ);
980 xpc_disengage_timedout = 0;
a607c389 981
89eb8eb9
DN
982 do {
983 active_part_count = 0;
984
bc63d387 985 for (partid = 0; partid < xp_max_npartitions; partid++) {
89eb8eb9 986 part = &xpc_partitions[partid];
89eb8eb9 987
a607c389 988 if (xpc_partition_disengaged(part) &&
83469b55 989 part->act_state == XPC_P_AS_INACTIVE) {
a607c389 990 continue;
89eb8eb9 991 }
a607c389
DN
992
993 active_part_count++;
994
995 XPC_DEACTIVATE_PARTITION(part, reason);
89eb8eb9 996
a47d5dac
DN
997 if (part->disengage_timeout > disengage_timeout)
998 disengage_timeout = part->disengage_timeout;
a607c389 999 }
89eb8eb9 1000
a7665b0a 1001 if (xpc_arch_ops.any_partition_engaged()) {
aaa3cd69 1002 if (time_is_before_jiffies(printmsg_time)) {
1ecaded8 1003 dev_info(xpc_part, "waiting for remote "
a47d5dac
DN
1004 "partitions to deactivate, timeout in "
1005 "%ld seconds\n", (disengage_timeout -
1006 jiffies) / HZ);
1ecaded8 1007 printmsg_time = jiffies +
a47d5dac 1008 (XPC_DEACTIVATE_PRINTMSG_INTERVAL * HZ);
1ecaded8
DN
1009 printed_waiting_msg = 1;
1010 }
1011
1012 } else if (active_part_count > 0) {
1013 if (printed_waiting_msg) {
1014 dev_info(xpc_part, "waiting for local partition"
a47d5dac 1015 " to deactivate\n");
1ecaded8
DN
1016 printed_waiting_msg = 0;
1017 }
1018
1019 } else {
a47d5dac 1020 if (!xpc_disengage_timedout) {
1ecaded8 1021 dev_info(xpc_part, "all partitions have "
a47d5dac 1022 "deactivated\n");
1ecaded8
DN
1023 }
1024 break;
89eb8eb9
DN
1025 }
1026
a607c389 1027 /* sleep for a 1/3 of a second or so */
35190506 1028 (void)msleep_interruptible(300);
a607c389
DN
1029
1030 } while (1);
1031
a7665b0a 1032 DBUG_ON(xpc_arch_ops.any_partition_engaged());
a607c389 1033
5b8669df 1034 xpc_teardown_rsvd_page();
a607c389 1035
65c17b80 1036 if (reason == xpUnloading) {
35190506 1037 (void)unregister_die_notifier(&xpc_die_notifier);
bc63d387 1038 (void)unregister_reboot_notifier(&xpc_reboot_notifier);
0752c670 1039 }
780d09e8 1040
89eb8eb9
DN
1041 /* clear the interface to XPC's functions */
1042 xpc_clear_interface();
1043
2c2b94f9 1044 if (xpc_sysctl)
89eb8eb9 1045 unregister_sysctl_table(xpc_sysctl);
7682a4c6 1046
5b8669df 1047 xpc_teardown_partitions();
6e41017a
DN
1048
1049 if (is_shub())
1050 xpc_exit_sn2();
b7f7b074 1051 else if (is_uv())
6e41017a 1052 xpc_exit_uv();
89eb8eb9
DN
1053}
1054
780d09e8 1055/*
d6ad033a
DN
1056 * This function is called when the system is being rebooted.
1057 */
1058static int
1059xpc_system_reboot(struct notifier_block *nb, unsigned long event, void *unused)
1060{
65c17b80 1061 enum xp_retval reason;
d6ad033a 1062
d6ad033a
DN
1063 switch (event) {
1064 case SYS_RESTART:
65c17b80 1065 reason = xpSystemReboot;
d6ad033a
DN
1066 break;
1067 case SYS_HALT:
65c17b80 1068 reason = xpSystemHalt;
d6ad033a
DN
1069 break;
1070 case SYS_POWER_OFF:
65c17b80 1071 reason = xpSystemPoweroff;
d6ad033a
DN
1072 break;
1073 default:
65c17b80 1074 reason = xpSystemGoingDown;
d6ad033a
DN
1075 }
1076
1077 xpc_do_exit(reason);
1078 return NOTIFY_DONE;
1079}
1080
d6ad033a 1081/*
a47d5dac
DN
1082 * Notify other partitions to deactivate from us by first disengaging from all
1083 * references to our memory.
780d09e8
DN
1084 */
1085static void
a47d5dac 1086xpc_die_deactivate(void)
780d09e8
DN
1087{
1088 struct xpc_partition *part;
64d032ba 1089 short partid;
a47d5dac 1090 int any_engaged;
261f3b49
DN
1091 long keep_waiting;
1092 long wait_to_print;
780d09e8 1093
780d09e8
DN
1094 /* keep xpc_hb_checker thread from doing anything (just in case) */
1095 xpc_exiting = 1;
1096
a7665b0a 1097 xpc_arch_ops.disallow_all_hbs(); /*indicate we're deactivated */
780d09e8 1098
bc63d387 1099 for (partid = 0; partid < xp_max_npartitions; partid++) {
780d09e8
DN
1100 part = &xpc_partitions[partid];
1101
a7665b0a 1102 if (xpc_arch_ops.partition_engaged(partid) ||
83469b55 1103 part->act_state != XPC_P_AS_INACTIVE) {
a7665b0a
RH
1104 xpc_arch_ops.request_partition_deactivation(part);
1105 xpc_arch_ops.indicate_partition_disengaged(part);
780d09e8
DN
1106 }
1107 }
1108
a47d5dac
DN
1109 /*
1110 * Though we requested that all other partitions deactivate from us,
261f3b49
DN
1111 * we only wait until they've all disengaged or we've reached the
1112 * defined timelimit.
1113 *
1114 * Given that one iteration through the following while-loop takes
1115 * approximately 200 microseconds, calculate the #of loops to take
1116 * before bailing and the #of loops before printing a waiting message.
a47d5dac 1117 */
261f3b49
DN
1118 keep_waiting = xpc_disengage_timelimit * 1000 * 5;
1119 wait_to_print = XPC_DEACTIVATE_PRINTMSG_INTERVAL * 1000 * 5;
780d09e8 1120
1ecaded8 1121 while (1) {
a7665b0a 1122 any_engaged = xpc_arch_ops.any_partition_engaged();
a47d5dac
DN
1123 if (!any_engaged) {
1124 dev_info(xpc_part, "all partitions have deactivated\n");
1ecaded8
DN
1125 break;
1126 }
780d09e8 1127
261f3b49 1128 if (!keep_waiting--) {
bc63d387
DN
1129 for (partid = 0; partid < xp_max_npartitions;
1130 partid++) {
a7665b0a 1131 if (xpc_arch_ops.partition_engaged(partid)) {
a47d5dac 1132 dev_info(xpc_part, "deactivate from "
35190506
DN
1133 "remote partition %d timed "
1134 "out\n", partid);
1ecaded8
DN
1135 }
1136 }
1137 break;
1138 }
1139
261f3b49 1140 if (!wait_to_print--) {
780d09e8 1141 dev_info(xpc_part, "waiting for remote partitions to "
a47d5dac 1142 "deactivate, timeout in %ld seconds\n",
261f3b49
DN
1143 keep_waiting / (1000 * 5));
1144 wait_to_print = XPC_DEACTIVATE_PRINTMSG_INTERVAL *
1145 1000 * 5;
780d09e8 1146 }
261f3b49
DN
1147
1148 udelay(200);
780d09e8 1149 }
780d09e8
DN
1150}
1151
780d09e8 1152/*
1f4674b2
DN
1153 * This function is called when the system is being restarted or halted due
1154 * to some sort of system failure. If this is the case we need to notify the
1155 * other partitions to disengage from all references to our memory.
1156 * This function can also be called when our heartbeater could be offlined
1157 * for a time. In this case we need to notify other partitions to not worry
1158 * about the lack of a heartbeat.
780d09e8
DN
1159 */
1160static int
1161xpc_system_die(struct notifier_block *nb, unsigned long event, void *unused)
1162{
261f3b49 1163#ifdef CONFIG_IA64 /* !!! temporary kludge */
780d09e8
DN
1164 switch (event) {
1165 case DIE_MACHINE_RESTART:
1166 case DIE_MACHINE_HALT:
a47d5dac 1167 xpc_die_deactivate();
780d09e8 1168 break;
1f4674b2
DN
1169
1170 case DIE_KDEBUG_ENTER:
1171 /* Should lack of heartbeat be ignored by other partitions? */
2c2b94f9 1172 if (!xpc_kdebug_ignore)
1f4674b2 1173 break;
2c2b94f9 1174
1f4674b2 1175 /* fall through */
780d09e8
DN
1176 case DIE_MCA_MONARCH_ENTER:
1177 case DIE_INIT_MONARCH_ENTER:
a7665b0a 1178 xpc_arch_ops.offline_heartbeat();
780d09e8 1179 break;
1f4674b2
DN
1180
1181 case DIE_KDEBUG_LEAVE:
1182 /* Is lack of heartbeat being ignored by other partitions? */
2c2b94f9 1183 if (!xpc_kdebug_ignore)
1f4674b2 1184 break;
2c2b94f9 1185
1f4674b2 1186 /* fall through */
780d09e8
DN
1187 case DIE_MCA_MONARCH_LEAVE:
1188 case DIE_INIT_MONARCH_LEAVE:
a7665b0a 1189 xpc_arch_ops.online_heartbeat();
780d09e8
DN
1190 break;
1191 }
261f3b49
DN
1192#else
1193 xpc_die_deactivate();
1194#endif
780d09e8
DN
1195
1196 return NOTIFY_DONE;
1197}
1198
89eb8eb9
DN
1199int __init
1200xpc_init(void)
1201{
1202 int ret;
2c2b94f9 1203 struct task_struct *kthread;
ee6665e3 1204
bb0dc43e
KS
1205 dev_set_name(xpc_part, "part");
1206 dev_set_name(xpc_chan, "chan");
89eb8eb9 1207
94bd2708
DN
1208 if (is_shub()) {
1209 /*
1210 * The ia64-sn2 architecture supports at most 64 partitions.
c39838ce 1211 * And the inability to unregister remote amos restricts us
94bd2708
DN
1212 * further to only support exactly 64 partitions on this
1213 * architecture, no less.
1214 */
5b8669df
DN
1215 if (xp_max_npartitions != 64) {
1216 dev_err(xpc_part, "max #of partitions not set to 64\n");
1217 ret = -EINVAL;
1218 } else {
1219 ret = xpc_init_sn2();
1220 }
94bd2708
DN
1221
1222 } else if (is_uv()) {
5b8669df 1223 ret = xpc_init_uv();
94bd2708
DN
1224
1225 } else {
5b8669df 1226 ret = -ENODEV;
94bd2708 1227 }
408865ce 1228
5b8669df
DN
1229 if (ret != 0)
1230 return ret;
1231
1232 ret = xpc_setup_partitions();
1233 if (ret != 0) {
bc63d387 1234 dev_err(xpc_part, "can't get memory for partition structure\n");
ee6665e3 1235 goto out_1;
bc63d387 1236 }
89eb8eb9 1237
bc63d387
DN
1238 xpc_sysctl = register_sysctl_table(xpc_sys_dir);
1239
89eb8eb9
DN
1240 /*
1241 * Fill the partition reserved page with the information needed by
1242 * other partitions to discover we are alive and establish initial
1243 * communications.
1244 */
5b8669df
DN
1245 ret = xpc_setup_rsvd_page();
1246 if (ret != 0) {
bc63d387 1247 dev_err(xpc_part, "can't setup our reserved page\n");
ee6665e3 1248 goto out_2;
89eb8eb9
DN
1249 }
1250
a607c389
DN
1251 /* add ourselves to the reboot_notifier_list */
1252 ret = register_reboot_notifier(&xpc_reboot_notifier);
2c2b94f9 1253 if (ret != 0)
a607c389 1254 dev_warn(xpc_part, "can't register reboot notifier\n");
a607c389 1255
1eeb66a1 1256 /* add ourselves to the die_notifier list */
780d09e8 1257 ret = register_die_notifier(&xpc_die_notifier);
2c2b94f9 1258 if (ret != 0)
780d09e8 1259 dev_warn(xpc_part, "can't register die notifier\n");
780d09e8 1260
89eb8eb9
DN
1261 /*
1262 * The real work-horse behind xpc. This processes incoming
1263 * interrupts and monitors remote heartbeats.
1264 */
2c2b94f9
DN
1265 kthread = kthread_run(xpc_hb_checker, NULL, XPC_HB_CHECK_THREAD_NAME);
1266 if (IS_ERR(kthread)) {
89eb8eb9 1267 dev_err(xpc_part, "failed while forking hb check thread\n");
bc63d387 1268 ret = -EBUSY;
ee6665e3 1269 goto out_3;
89eb8eb9
DN
1270 }
1271
89eb8eb9
DN
1272 /*
1273 * Startup a thread that will attempt to discover other partitions to
1274 * activate based on info provided by SAL. This new thread is short
1275 * lived and will exit once discovery is complete.
1276 */
2c2b94f9
DN
1277 kthread = kthread_run(xpc_initiate_discovery, NULL,
1278 XPC_DISCOVERY_THREAD_NAME);
1279 if (IS_ERR(kthread)) {
89eb8eb9
DN
1280 dev_err(xpc_part, "failed while forking discovery thread\n");
1281
1282 /* mark this new thread as a non-starter */
f9e505a9 1283 complete(&xpc_discovery_exited);
89eb8eb9 1284
65c17b80 1285 xpc_do_exit(xpUnloading);
89eb8eb9
DN
1286 return -EBUSY;
1287 }
1288
89eb8eb9
DN
1289 /* set the interface to point at XPC's functions */
1290 xpc_set_interface(xpc_initiate_connect, xpc_initiate_disconnect,
97bf1aa1
DN
1291 xpc_initiate_send, xpc_initiate_send_notify,
1292 xpc_initiate_received, xpc_initiate_partid_to_nasids);
89eb8eb9
DN
1293
1294 return 0;
bc63d387
DN
1295
1296 /* initialization was not successful */
ee6665e3 1297out_3:
5b8669df 1298 xpc_teardown_rsvd_page();
94bd2708 1299
bc63d387
DN
1300 (void)unregister_die_notifier(&xpc_die_notifier);
1301 (void)unregister_reboot_notifier(&xpc_reboot_notifier);
ee6665e3 1302out_2:
bc63d387
DN
1303 if (xpc_sysctl)
1304 unregister_sysctl_table(xpc_sysctl);
5b8669df
DN
1305
1306 xpc_teardown_partitions();
6e41017a
DN
1307out_1:
1308 if (is_shub())
1309 xpc_exit_sn2();
b7f7b074 1310 else if (is_uv())
6e41017a 1311 xpc_exit_uv();
bc63d387 1312 return ret;
89eb8eb9 1313}
89eb8eb9 1314
35190506 1315module_init(xpc_init);
89eb8eb9
DN
1316
1317void __exit
1318xpc_exit(void)
1319{
65c17b80 1320 xpc_do_exit(xpUnloading);
89eb8eb9 1321}
89eb8eb9 1322
35190506 1323module_exit(xpc_exit);
89eb8eb9
DN
1324
1325MODULE_AUTHOR("Silicon Graphics, Inc.");
1326MODULE_DESCRIPTION("Cross Partition Communication (XPC) support");
1327MODULE_LICENSE("GPL");
1328
1329module_param(xpc_hb_interval, int, 0);
1330MODULE_PARM_DESC(xpc_hb_interval, "Number of seconds between "
35190506 1331 "heartbeat increments.");
89eb8eb9
DN
1332
1333module_param(xpc_hb_check_interval, int, 0);
1334MODULE_PARM_DESC(xpc_hb_check_interval, "Number of seconds between "
35190506 1335 "heartbeat checks.");
89eb8eb9 1336
a47d5dac
DN
1337module_param(xpc_disengage_timelimit, int, 0);
1338MODULE_PARM_DESC(xpc_disengage_timelimit, "Number of seconds to wait "
1339 "for disengage to complete.");
e54af724 1340
1f4674b2
DN
1341module_param(xpc_kdebug_ignore, int, 0);
1342MODULE_PARM_DESC(xpc_kdebug_ignore, "Should lack of heartbeat be ignored by "
35190506 1343 "other partitions when dropping into kdebug.");