1 /*
2 * pseries CPU Hotplug infrastructure.
3 *
4 * Split out from arch/powerpc/platforms/pseries/setup.c
5 * arch/powerpc/kernel/rtas.c, and arch/powerpc/platforms/pseries/smp.c
6 *
7 * Peter Bergner, IBM March 2001.
8 * Copyright (C) 2001 IBM.
9 * Dave Engebretsen, Peter Bergner, and
10 * Mike Corrigan {engebret|bergner|mikec}@us.ibm.com
11 * Plus various changes from other IBM teams...
12 *
13 * Copyright (C) 2006 Michael Ellerman, IBM Corporation
14 *
15 * This program is free software; you can redistribute it and/or
16 * modify it under the terms of the GNU General Public License
17 * as published by the Free Software Foundation; either version
18 * 2 of the License, or (at your option) any later version.
19 */
20
21 #define pr_fmt(fmt) "pseries-hotplug-cpu: " fmt
22
23 #include <linux/kernel.h>
24 #include <linux/interrupt.h>
25 #include <linux/delay.h>
26 #include <linux/sched.h> /* for idle_task_exit */
27 #include <linux/sched/hotplug.h>
28 #include <linux/cpu.h>
29 #include <linux/of.h>
30 #include <linux/slab.h>
31 #include <asm/prom.h>
32 #include <asm/rtas.h>
33 #include <asm/firmware.h>
34 #include <asm/machdep.h>
35 #include <asm/vdso_datapage.h>
36 #include <asm/xics.h>
37 #include <asm/xive.h>
38 #include <asm/plpar_wrappers.h>
39 #include <asm/topology.h>
40
41 #include "pseries.h"
42 #include "offline_states.h"
43
44 /* This version can't take the spinlock, because it never returns */
45 static int rtas_stop_self_token = RTAS_UNKNOWN_SERVICE;
46
47 static DEFINE_PER_CPU(enum cpu_state_vals, preferred_offline_state) =
48 CPU_STATE_OFFLINE;
49 static DEFINE_PER_CPU(enum cpu_state_vals, current_state) = CPU_STATE_OFFLINE;
50
51 static enum cpu_state_vals default_offline_state = CPU_STATE_OFFLINE;
52
53 static bool cede_offline_enabled __read_mostly = true;
54
55 /*
56 * Enable/disable cede_offline when available.
57 */
setup_cede_offline(char * str)58 static int __init setup_cede_offline(char *str)
59 {
60 return (kstrtobool(str, &cede_offline_enabled) == 0);
61 }
62
63 __setup("cede_offline=", setup_cede_offline);
64
get_cpu_current_state(int cpu)65 enum cpu_state_vals get_cpu_current_state(int cpu)
66 {
67 return per_cpu(current_state, cpu);
68 }
69
set_cpu_current_state(int cpu,enum cpu_state_vals state)70 void set_cpu_current_state(int cpu, enum cpu_state_vals state)
71 {
72 per_cpu(current_state, cpu) = state;
73 }
74
get_preferred_offline_state(int cpu)75 enum cpu_state_vals get_preferred_offline_state(int cpu)
76 {
77 return per_cpu(preferred_offline_state, cpu);
78 }
79
set_preferred_offline_state(int cpu,enum cpu_state_vals state)80 void set_preferred_offline_state(int cpu, enum cpu_state_vals state)
81 {
82 per_cpu(preferred_offline_state, cpu) = state;
83 }
84
set_default_offline_state(int cpu)85 void set_default_offline_state(int cpu)
86 {
87 per_cpu(preferred_offline_state, cpu) = default_offline_state;
88 }
89
rtas_stop_self(void)90 static void rtas_stop_self(void)
91 {
92 static struct rtas_args args;
93
94 local_irq_disable();
95
96 BUG_ON(rtas_stop_self_token == RTAS_UNKNOWN_SERVICE);
97
98 printk("cpu %u (hwid %u) Ready to die...\n",
99 smp_processor_id(), hard_smp_processor_id());
100
101 rtas_call_unlocked(&args, rtas_stop_self_token, 0, 1, NULL);
102
103 panic("Alas, I survived.\n");
104 }
105
pseries_mach_cpu_die(void)106 static void pseries_mach_cpu_die(void)
107 {
108 unsigned int cpu = smp_processor_id();
109 unsigned int hwcpu = hard_smp_processor_id();
110 u8 cede_latency_hint = 0;
111
112 local_irq_disable();
113 idle_task_exit();
114 if (xive_enabled())
115 xive_teardown_cpu();
116 else
117 xics_teardown_cpu();
118
119 if (get_preferred_offline_state(cpu) == CPU_STATE_INACTIVE) {
120 set_cpu_current_state(cpu, CPU_STATE_INACTIVE);
121 if (ppc_md.suspend_disable_cpu)
122 ppc_md.suspend_disable_cpu();
123
124 cede_latency_hint = 2;
125
126 get_lppaca()->idle = 1;
127 if (!lppaca_shared_proc(get_lppaca()))
128 get_lppaca()->donate_dedicated_cpu = 1;
129
130 while (get_preferred_offline_state(cpu) == CPU_STATE_INACTIVE) {
131 while (!prep_irq_for_idle()) {
132 local_irq_enable();
133 local_irq_disable();
134 }
135
136 extended_cede_processor(cede_latency_hint);
137 }
138
139 local_irq_disable();
140
141 if (!lppaca_shared_proc(get_lppaca()))
142 get_lppaca()->donate_dedicated_cpu = 0;
143 get_lppaca()->idle = 0;
144
145 if (get_preferred_offline_state(cpu) == CPU_STATE_ONLINE) {
146 unregister_slb_shadow(hwcpu);
147
148 hard_irq_disable();
149 /*
150 * Call to start_secondary_resume() will not return.
151 * Kernel stack will be reset and start_secondary()
152 * will be called to continue the online operation.
153 */
154 start_secondary_resume();
155 }
156 }
157
158 /* Requested state is CPU_STATE_OFFLINE at this point */
159 WARN_ON(get_preferred_offline_state(cpu) != CPU_STATE_OFFLINE);
160
161 set_cpu_current_state(cpu, CPU_STATE_OFFLINE);
162 unregister_slb_shadow(hwcpu);
163 rtas_stop_self();
164
165 /* Should never get here... */
166 BUG();
167 for(;;);
168 }
169
pseries_cpu_disable(void)170 static int pseries_cpu_disable(void)
171 {
172 int cpu = smp_processor_id();
173
174 set_cpu_online(cpu, false);
175 vdso_data->processorCount--;
176
177 /*fix boot_cpuid here*/
178 if (cpu == boot_cpuid)
179 boot_cpuid = cpumask_any(cpu_online_mask);
180
181 /* FIXME: abstract this to not be platform specific later on */
182 if (xive_enabled())
183 xive_smp_disable_cpu();
184 else
185 xics_migrate_irqs_away();
186 return 0;
187 }
188
189 /*
190 * pseries_cpu_die: Wait for the cpu to die.
191 * @cpu: logical processor id of the CPU whose death we're awaiting.
192 *
193 * This function is called from the context of the thread which is performing
194 * the cpu-offline. Here we wait for long enough to allow the cpu in question
195 * to self-destroy so that the cpu-offline thread can send the CPU_DEAD
196 * notifications.
197 *
198 * OTOH, pseries_mach_cpu_die() is called by the @cpu when it wants to
199 * self-destruct.
200 */
pseries_cpu_die(unsigned int cpu)201 static void pseries_cpu_die(unsigned int cpu)
202 {
203 int tries;
204 int cpu_status = 1;
205 unsigned int pcpu = get_hard_smp_processor_id(cpu);
206
207 if (get_preferred_offline_state(cpu) == CPU_STATE_INACTIVE) {
208 cpu_status = 1;
209 for (tries = 0; tries < 5000; tries++) {
210 if (get_cpu_current_state(cpu) == CPU_STATE_INACTIVE) {
211 cpu_status = 0;
212 break;
213 }
214 msleep(1);
215 }
216 } else if (get_preferred_offline_state(cpu) == CPU_STATE_OFFLINE) {
217
218 for (tries = 0; tries < 25; tries++) {
219 cpu_status = smp_query_cpu_stopped(pcpu);
220 if (cpu_status == QCSS_STOPPED ||
221 cpu_status == QCSS_HARDWARE_ERROR)
222 break;
223 cpu_relax();
224 }
225 }
226
227 if (cpu_status != 0) {
228 printk("Querying DEAD? cpu %i (%i) shows %i\n",
229 cpu, pcpu, cpu_status);
230 }
231
232 /* Isolation and deallocation are definitely done by
233 * drslot_chrp_cpu. If they were not they would be
234 * done here. Change isolate state to Isolate and
235 * change allocation-state to Unusable.
236 */
237 paca[cpu].cpu_start = 0;
238 }
239
240 /*
241 * Update cpu_present_mask and paca(s) for a new cpu node. The wrinkle
242 * here is that a cpu device node may represent up to two logical cpus
243 * in the SMT case. We must honor the assumption in other code that
244 * the logical ids for sibling SMT threads x and y are adjacent, such
245 * that x^1 == y and y^1 == x.
246 */
pseries_add_processor(struct device_node * np)247 static int pseries_add_processor(struct device_node *np)
248 {
249 unsigned int cpu;
250 cpumask_var_t candidate_mask, tmp;
251 int err = -ENOSPC, len, nthreads, i;
252 const __be32 *intserv;
253
254 intserv = of_get_property(np, "ibm,ppc-interrupt-server#s", &len);
255 if (!intserv)
256 return 0;
257
258 zalloc_cpumask_var(&candidate_mask, GFP_KERNEL);
259 zalloc_cpumask_var(&tmp, GFP_KERNEL);
260
261 nthreads = len / sizeof(u32);
262 for (i = 0; i < nthreads; i++)
263 cpumask_set_cpu(i, tmp);
264
265 cpu_maps_update_begin();
266
267 BUG_ON(!cpumask_subset(cpu_present_mask, cpu_possible_mask));
268
269 /* Get a bitmap of unoccupied slots. */
270 cpumask_xor(candidate_mask, cpu_possible_mask, cpu_present_mask);
271 if (cpumask_empty(candidate_mask)) {
272 /* If we get here, it most likely means that NR_CPUS is
273 * less than the partition's max processors setting.
274 */
275 printk(KERN_ERR "Cannot add cpu %pOF; this system configuration"
276 " supports %d logical cpus.\n", np,
277 num_possible_cpus());
278 goto out_unlock;
279 }
280
281 while (!cpumask_empty(tmp))
282 if (cpumask_subset(tmp, candidate_mask))
283 /* Found a range where we can insert the new cpu(s) */
284 break;
285 else
286 cpumask_shift_left(tmp, tmp, nthreads);
287
288 if (cpumask_empty(tmp)) {
289 printk(KERN_ERR "Unable to find space in cpu_present_mask for"
290 " processor %s with %d thread(s)\n", np->name,
291 nthreads);
292 goto out_unlock;
293 }
294
295 for_each_cpu(cpu, tmp) {
296 BUG_ON(cpu_present(cpu));
297 set_cpu_present(cpu, true);
298 set_hard_smp_processor_id(cpu, be32_to_cpu(*intserv++));
299 }
300 err = 0;
301 out_unlock:
302 cpu_maps_update_done();
303 free_cpumask_var(candidate_mask);
304 free_cpumask_var(tmp);
305 return err;
306 }
307
308 /*
309 * Update the present map for a cpu node which is going away, and set
310 * the hard id in the paca(s) to -1 to be consistent with boot time
311 * convention for non-present cpus.
312 */
pseries_remove_processor(struct device_node * np)313 static void pseries_remove_processor(struct device_node *np)
314 {
315 unsigned int cpu;
316 int len, nthreads, i;
317 const __be32 *intserv;
318 u32 thread;
319
320 intserv = of_get_property(np, "ibm,ppc-interrupt-server#s", &len);
321 if (!intserv)
322 return;
323
324 nthreads = len / sizeof(u32);
325
326 cpu_maps_update_begin();
327 for (i = 0; i < nthreads; i++) {
328 thread = be32_to_cpu(intserv[i]);
329 for_each_present_cpu(cpu) {
330 if (get_hard_smp_processor_id(cpu) != thread)
331 continue;
332 BUG_ON(cpu_online(cpu));
333 set_cpu_present(cpu, false);
334 set_hard_smp_processor_id(cpu, -1);
335 update_numa_cpu_lookup_table(cpu, -1);
336 break;
337 }
338 if (cpu >= nr_cpu_ids)
339 printk(KERN_WARNING "Could not find cpu to remove "
340 "with physical id 0x%x\n", thread);
341 }
342 cpu_maps_update_done();
343 }
344
dlpar_online_cpu(struct device_node * dn)345 static int dlpar_online_cpu(struct device_node *dn)
346 {
347 int rc = 0;
348 unsigned int cpu;
349 int len, nthreads, i;
350 const __be32 *intserv;
351 u32 thread;
352
353 intserv = of_get_property(dn, "ibm,ppc-interrupt-server#s", &len);
354 if (!intserv)
355 return -EINVAL;
356
357 nthreads = len / sizeof(u32);
358
359 cpu_maps_update_begin();
360 for (i = 0; i < nthreads; i++) {
361 thread = be32_to_cpu(intserv[i]);
362 for_each_present_cpu(cpu) {
363 if (get_hard_smp_processor_id(cpu) != thread)
364 continue;
365 BUG_ON(get_cpu_current_state(cpu)
366 != CPU_STATE_OFFLINE);
367 cpu_maps_update_done();
368 rc = device_online(get_cpu_device(cpu));
369 if (rc)
370 goto out;
371 cpu_maps_update_begin();
372
373 break;
374 }
375 if (cpu == num_possible_cpus())
376 printk(KERN_WARNING "Could not find cpu to online "
377 "with physical id 0x%x\n", thread);
378 }
379 cpu_maps_update_done();
380
381 out:
382 return rc;
383
384 }
385
dlpar_cpu_exists(struct device_node * parent,u32 drc_index)386 static bool dlpar_cpu_exists(struct device_node *parent, u32 drc_index)
387 {
388 struct device_node *child = NULL;
389 u32 my_drc_index;
390 bool found;
391 int rc;
392
393 /* Assume cpu doesn't exist */
394 found = false;
395
396 for_each_child_of_node(parent, child) {
397 rc = of_property_read_u32(child, "ibm,my-drc-index",
398 &my_drc_index);
399 if (rc)
400 continue;
401
402 if (my_drc_index == drc_index) {
403 of_node_put(child);
404 found = true;
405 break;
406 }
407 }
408
409 return found;
410 }
411
valid_cpu_drc_index(struct device_node * parent,u32 drc_index)412 static bool valid_cpu_drc_index(struct device_node *parent, u32 drc_index)
413 {
414 bool found = false;
415 int rc, index;
416
417 index = 0;
418 while (!found) {
419 u32 drc;
420
421 rc = of_property_read_u32_index(parent, "ibm,drc-indexes",
422 index++, &drc);
423 if (rc)
424 break;
425
426 if (drc == drc_index)
427 found = true;
428 }
429
430 return found;
431 }
432
dlpar_cpu_add(u32 drc_index)433 static ssize_t dlpar_cpu_add(u32 drc_index)
434 {
435 struct device_node *dn, *parent;
436 int rc, saved_rc;
437
438 pr_debug("Attempting to add CPU, drc index: %x\n", drc_index);
439
440 parent = of_find_node_by_path("/cpus");
441 if (!parent) {
442 pr_warn("Failed to find CPU root node \"/cpus\"\n");
443 return -ENODEV;
444 }
445
446 if (dlpar_cpu_exists(parent, drc_index)) {
447 of_node_put(parent);
448 pr_warn("CPU with drc index %x already exists\n", drc_index);
449 return -EINVAL;
450 }
451
452 if (!valid_cpu_drc_index(parent, drc_index)) {
453 of_node_put(parent);
454 pr_warn("Cannot find CPU (drc index %x) to add.\n", drc_index);
455 return -EINVAL;
456 }
457
458 rc = dlpar_acquire_drc(drc_index);
459 if (rc) {
460 pr_warn("Failed to acquire DRC, rc: %d, drc index: %x\n",
461 rc, drc_index);
462 of_node_put(parent);
463 return -EINVAL;
464 }
465
466 dn = dlpar_configure_connector(cpu_to_be32(drc_index), parent);
467 if (!dn) {
468 pr_warn("Failed call to configure-connector, drc index: %x\n",
469 drc_index);
470 dlpar_release_drc(drc_index);
471 of_node_put(parent);
472 return -EINVAL;
473 }
474
475 rc = dlpar_attach_node(dn, parent);
476
477 /* Regardless we are done with parent now */
478 of_node_put(parent);
479
480 if (rc) {
481 saved_rc = rc;
482 pr_warn("Failed to attach node %s, rc: %d, drc index: %x\n",
483 dn->name, rc, drc_index);
484
485 rc = dlpar_release_drc(drc_index);
486 if (!rc)
487 dlpar_free_cc_nodes(dn);
488
489 return saved_rc;
490 }
491
492 rc = dlpar_online_cpu(dn);
493 if (rc) {
494 saved_rc = rc;
495 pr_warn("Failed to online cpu %s, rc: %d, drc index: %x\n",
496 dn->name, rc, drc_index);
497
498 rc = dlpar_detach_node(dn);
499 if (!rc)
500 dlpar_release_drc(drc_index);
501
502 return saved_rc;
503 }
504
505 pr_debug("Successfully added CPU %s, drc index: %x\n", dn->name,
506 drc_index);
507 return rc;
508 }
509
dlpar_offline_cpu(struct device_node * dn)510 static int dlpar_offline_cpu(struct device_node *dn)
511 {
512 int rc = 0;
513 unsigned int cpu;
514 int len, nthreads, i;
515 const __be32 *intserv;
516 u32 thread;
517
518 intserv = of_get_property(dn, "ibm,ppc-interrupt-server#s", &len);
519 if (!intserv)
520 return -EINVAL;
521
522 nthreads = len / sizeof(u32);
523
524 cpu_maps_update_begin();
525 for (i = 0; i < nthreads; i++) {
526 thread = be32_to_cpu(intserv[i]);
527 for_each_present_cpu(cpu) {
528 if (get_hard_smp_processor_id(cpu) != thread)
529 continue;
530
531 if (get_cpu_current_state(cpu) == CPU_STATE_OFFLINE)
532 break;
533
534 if (get_cpu_current_state(cpu) == CPU_STATE_ONLINE) {
535 set_preferred_offline_state(cpu,
536 CPU_STATE_OFFLINE);
537 cpu_maps_update_done();
538 rc = device_offline(get_cpu_device(cpu));
539 if (rc)
540 goto out;
541 cpu_maps_update_begin();
542 break;
543
544 }
545
546 /*
547 * The cpu is in CPU_STATE_INACTIVE.
548 * Upgrade it's state to CPU_STATE_OFFLINE.
549 */
550 set_preferred_offline_state(cpu, CPU_STATE_OFFLINE);
551 BUG_ON(plpar_hcall_norets(H_PROD, thread)
552 != H_SUCCESS);
553 __cpu_die(cpu);
554 break;
555 }
556 if (cpu == num_possible_cpus())
557 printk(KERN_WARNING "Could not find cpu to offline with physical id 0x%x\n", thread);
558 }
559 cpu_maps_update_done();
560
561 out:
562 return rc;
563
564 }
565
dlpar_cpu_remove(struct device_node * dn,u32 drc_index)566 static ssize_t dlpar_cpu_remove(struct device_node *dn, u32 drc_index)
567 {
568 int rc;
569
570 pr_debug("Attempting to remove CPU %s, drc index: %x\n",
571 dn->name, drc_index);
572
573 rc = dlpar_offline_cpu(dn);
574 if (rc) {
575 pr_warn("Failed to offline CPU %s, rc: %d\n", dn->name, rc);
576 return -EINVAL;
577 }
578
579 rc = dlpar_release_drc(drc_index);
580 if (rc) {
581 pr_warn("Failed to release drc (%x) for CPU %s, rc: %d\n",
582 drc_index, dn->name, rc);
583 dlpar_online_cpu(dn);
584 return rc;
585 }
586
587 rc = dlpar_detach_node(dn);
588 if (rc) {
589 int saved_rc = rc;
590
591 pr_warn("Failed to detach CPU %s, rc: %d", dn->name, rc);
592
593 rc = dlpar_acquire_drc(drc_index);
594 if (!rc)
595 dlpar_online_cpu(dn);
596
597 return saved_rc;
598 }
599
600 pr_debug("Successfully removed CPU, drc index: %x\n", drc_index);
601 return 0;
602 }
603
cpu_drc_index_to_dn(u32 drc_index)604 static struct device_node *cpu_drc_index_to_dn(u32 drc_index)
605 {
606 struct device_node *dn;
607 u32 my_index;
608 int rc;
609
610 for_each_node_by_type(dn, "cpu") {
611 rc = of_property_read_u32(dn, "ibm,my-drc-index", &my_index);
612 if (rc)
613 continue;
614
615 if (my_index == drc_index)
616 break;
617 }
618
619 return dn;
620 }
621
dlpar_cpu_remove_by_index(u32 drc_index)622 static int dlpar_cpu_remove_by_index(u32 drc_index)
623 {
624 struct device_node *dn;
625 int rc;
626
627 dn = cpu_drc_index_to_dn(drc_index);
628 if (!dn) {
629 pr_warn("Cannot find CPU (drc index %x) to remove\n",
630 drc_index);
631 return -ENODEV;
632 }
633
634 rc = dlpar_cpu_remove(dn, drc_index);
635 of_node_put(dn);
636 return rc;
637 }
638
find_dlpar_cpus_to_remove(u32 * cpu_drcs,int cpus_to_remove)639 static int find_dlpar_cpus_to_remove(u32 *cpu_drcs, int cpus_to_remove)
640 {
641 struct device_node *dn;
642 int cpus_found = 0;
643 int rc;
644
645 /* We want to find cpus_to_remove + 1 CPUs to ensure we do not
646 * remove the last CPU.
647 */
648 for_each_node_by_type(dn, "cpu") {
649 cpus_found++;
650
651 if (cpus_found > cpus_to_remove) {
652 of_node_put(dn);
653 break;
654 }
655
656 /* Note that cpus_found is always 1 ahead of the index
657 * into the cpu_drcs array, so we use cpus_found - 1
658 */
659 rc = of_property_read_u32(dn, "ibm,my-drc-index",
660 &cpu_drcs[cpus_found - 1]);
661 if (rc) {
662 pr_warn("Error occurred getting drc-index for %s\n",
663 dn->name);
664 of_node_put(dn);
665 return -1;
666 }
667 }
668
669 if (cpus_found < cpus_to_remove) {
670 pr_warn("Failed to find enough CPUs (%d of %d) to remove\n",
671 cpus_found, cpus_to_remove);
672 } else if (cpus_found == cpus_to_remove) {
673 pr_warn("Cannot remove all CPUs\n");
674 }
675
676 return cpus_found;
677 }
678
dlpar_cpu_remove_by_count(u32 cpus_to_remove)679 static int dlpar_cpu_remove_by_count(u32 cpus_to_remove)
680 {
681 u32 *cpu_drcs;
682 int cpus_found;
683 int cpus_removed = 0;
684 int i, rc;
685
686 pr_debug("Attempting to hot-remove %d CPUs\n", cpus_to_remove);
687
688 cpu_drcs = kcalloc(cpus_to_remove, sizeof(*cpu_drcs), GFP_KERNEL);
689 if (!cpu_drcs)
690 return -EINVAL;
691
692 cpus_found = find_dlpar_cpus_to_remove(cpu_drcs, cpus_to_remove);
693 if (cpus_found <= cpus_to_remove) {
694 kfree(cpu_drcs);
695 return -EINVAL;
696 }
697
698 for (i = 0; i < cpus_to_remove; i++) {
699 rc = dlpar_cpu_remove_by_index(cpu_drcs[i]);
700 if (rc)
701 break;
702
703 cpus_removed++;
704 }
705
706 if (cpus_removed != cpus_to_remove) {
707 pr_warn("CPU hot-remove failed, adding back removed CPUs\n");
708
709 for (i = 0; i < cpus_removed; i++)
710 dlpar_cpu_add(cpu_drcs[i]);
711
712 rc = -EINVAL;
713 } else {
714 rc = 0;
715 }
716
717 kfree(cpu_drcs);
718 return rc;
719 }
720
find_dlpar_cpus_to_add(u32 * cpu_drcs,u32 cpus_to_add)721 static int find_dlpar_cpus_to_add(u32 *cpu_drcs, u32 cpus_to_add)
722 {
723 struct device_node *parent;
724 int cpus_found = 0;
725 int index, rc;
726
727 parent = of_find_node_by_path("/cpus");
728 if (!parent) {
729 pr_warn("Could not find CPU root node in device tree\n");
730 kfree(cpu_drcs);
731 return -1;
732 }
733
734 /* Search the ibm,drc-indexes array for possible CPU drcs to
735 * add. Note that the format of the ibm,drc-indexes array is
736 * the number of entries in the array followed by the array
737 * of drc values so we start looking at index = 1.
738 */
739 index = 1;
740 while (cpus_found < cpus_to_add) {
741 u32 drc;
742
743 rc = of_property_read_u32_index(parent, "ibm,drc-indexes",
744 index++, &drc);
745 if (rc)
746 break;
747
748 if (dlpar_cpu_exists(parent, drc))
749 continue;
750
751 cpu_drcs[cpus_found++] = drc;
752 }
753
754 of_node_put(parent);
755 return cpus_found;
756 }
757
dlpar_cpu_add_by_count(u32 cpus_to_add)758 static int dlpar_cpu_add_by_count(u32 cpus_to_add)
759 {
760 u32 *cpu_drcs;
761 int cpus_added = 0;
762 int cpus_found;
763 int i, rc;
764
765 pr_debug("Attempting to hot-add %d CPUs\n", cpus_to_add);
766
767 cpu_drcs = kcalloc(cpus_to_add, sizeof(*cpu_drcs), GFP_KERNEL);
768 if (!cpu_drcs)
769 return -EINVAL;
770
771 cpus_found = find_dlpar_cpus_to_add(cpu_drcs, cpus_to_add);
772 if (cpus_found < cpus_to_add) {
773 pr_warn("Failed to find enough CPUs (%d of %d) to add\n",
774 cpus_found, cpus_to_add);
775 kfree(cpu_drcs);
776 return -EINVAL;
777 }
778
779 for (i = 0; i < cpus_to_add; i++) {
780 rc = dlpar_cpu_add(cpu_drcs[i]);
781 if (rc)
782 break;
783
784 cpus_added++;
785 }
786
787 if (cpus_added < cpus_to_add) {
788 pr_warn("CPU hot-add failed, removing any added CPUs\n");
789
790 for (i = 0; i < cpus_added; i++)
791 dlpar_cpu_remove_by_index(cpu_drcs[i]);
792
793 rc = -EINVAL;
794 } else {
795 rc = 0;
796 }
797
798 kfree(cpu_drcs);
799 return rc;
800 }
801
dlpar_cpu_readd(int cpu)802 int dlpar_cpu_readd(int cpu)
803 {
804 struct device_node *dn;
805 struct device *dev;
806 u32 drc_index;
807 int rc;
808
809 dev = get_cpu_device(cpu);
810 dn = dev->of_node;
811
812 rc = of_property_read_u32(dn, "ibm,my-drc-index", &drc_index);
813
814 rc = dlpar_cpu_remove_by_index(drc_index);
815 if (!rc)
816 rc = dlpar_cpu_add(drc_index);
817
818 return rc;
819 }
820
dlpar_cpu(struct pseries_hp_errorlog * hp_elog)821 int dlpar_cpu(struct pseries_hp_errorlog *hp_elog)
822 {
823 u32 count, drc_index;
824 int rc;
825
826 count = hp_elog->_drc_u.drc_count;
827 drc_index = hp_elog->_drc_u.drc_index;
828
829 lock_device_hotplug();
830
831 switch (hp_elog->action) {
832 case PSERIES_HP_ELOG_ACTION_REMOVE:
833 if (hp_elog->id_type == PSERIES_HP_ELOG_ID_DRC_COUNT)
834 rc = dlpar_cpu_remove_by_count(count);
835 else if (hp_elog->id_type == PSERIES_HP_ELOG_ID_DRC_INDEX)
836 rc = dlpar_cpu_remove_by_index(drc_index);
837 else
838 rc = -EINVAL;
839 break;
840 case PSERIES_HP_ELOG_ACTION_ADD:
841 if (hp_elog->id_type == PSERIES_HP_ELOG_ID_DRC_COUNT)
842 rc = dlpar_cpu_add_by_count(count);
843 else if (hp_elog->id_type == PSERIES_HP_ELOG_ID_DRC_INDEX)
844 rc = dlpar_cpu_add(drc_index);
845 else
846 rc = -EINVAL;
847 break;
848 default:
849 pr_err("Invalid action (%d) specified\n", hp_elog->action);
850 rc = -EINVAL;
851 break;
852 }
853
854 unlock_device_hotplug();
855 return rc;
856 }
857
858 #ifdef CONFIG_ARCH_CPU_PROBE_RELEASE
859
dlpar_cpu_probe(const char * buf,size_t count)860 static ssize_t dlpar_cpu_probe(const char *buf, size_t count)
861 {
862 u32 drc_index;
863 int rc;
864
865 rc = kstrtou32(buf, 0, &drc_index);
866 if (rc)
867 return -EINVAL;
868
869 rc = dlpar_cpu_add(drc_index);
870
871 return rc ? rc : count;
872 }
873
dlpar_cpu_release(const char * buf,size_t count)874 static ssize_t dlpar_cpu_release(const char *buf, size_t count)
875 {
876 struct device_node *dn;
877 u32 drc_index;
878 int rc;
879
880 dn = of_find_node_by_path(buf);
881 if (!dn)
882 return -EINVAL;
883
884 rc = of_property_read_u32(dn, "ibm,my-drc-index", &drc_index);
885 if (rc) {
886 of_node_put(dn);
887 return -EINVAL;
888 }
889
890 rc = dlpar_cpu_remove(dn, drc_index);
891 of_node_put(dn);
892
893 return rc ? rc : count;
894 }
895
896 #endif /* CONFIG_ARCH_CPU_PROBE_RELEASE */
897
pseries_smp_notifier(struct notifier_block * nb,unsigned long action,void * data)898 static int pseries_smp_notifier(struct notifier_block *nb,
899 unsigned long action, void *data)
900 {
901 struct of_reconfig_data *rd = data;
902 int err = 0;
903
904 switch (action) {
905 case OF_RECONFIG_ATTACH_NODE:
906 err = pseries_add_processor(rd->dn);
907 break;
908 case OF_RECONFIG_DETACH_NODE:
909 pseries_remove_processor(rd->dn);
910 break;
911 }
912 return notifier_from_errno(err);
913 }
914
915 static struct notifier_block pseries_smp_nb = {
916 .notifier_call = pseries_smp_notifier,
917 };
918
919 #define MAX_CEDE_LATENCY_LEVELS 4
920 #define CEDE_LATENCY_PARAM_LENGTH 10
921 #define CEDE_LATENCY_PARAM_MAX_LENGTH \
922 (MAX_CEDE_LATENCY_LEVELS * CEDE_LATENCY_PARAM_LENGTH * sizeof(char))
923 #define CEDE_LATENCY_TOKEN 45
924
925 static char cede_parameters[CEDE_LATENCY_PARAM_MAX_LENGTH];
926
parse_cede_parameters(void)927 static int parse_cede_parameters(void)
928 {
929 memset(cede_parameters, 0, CEDE_LATENCY_PARAM_MAX_LENGTH);
930 return rtas_call(rtas_token("ibm,get-system-parameter"), 3, 1,
931 NULL,
932 CEDE_LATENCY_TOKEN,
933 __pa(cede_parameters),
934 CEDE_LATENCY_PARAM_MAX_LENGTH);
935 }
936
pseries_cpu_hotplug_init(void)937 static int __init pseries_cpu_hotplug_init(void)
938 {
939 int cpu;
940 int qcss_tok;
941
942 #ifdef CONFIG_ARCH_CPU_PROBE_RELEASE
943 ppc_md.cpu_probe = dlpar_cpu_probe;
944 ppc_md.cpu_release = dlpar_cpu_release;
945 #endif /* CONFIG_ARCH_CPU_PROBE_RELEASE */
946
947 rtas_stop_self_token = rtas_token("stop-self");
948 qcss_tok = rtas_token("query-cpu-stopped-state");
949
950 if (rtas_stop_self_token == RTAS_UNKNOWN_SERVICE ||
951 qcss_tok == RTAS_UNKNOWN_SERVICE) {
952 printk(KERN_INFO "CPU Hotplug not supported by firmware "
953 "- disabling.\n");
954 return 0;
955 }
956
957 ppc_md.cpu_die = pseries_mach_cpu_die;
958 smp_ops->cpu_disable = pseries_cpu_disable;
959 smp_ops->cpu_die = pseries_cpu_die;
960
961 /* Processors can be added/removed only on LPAR */
962 if (firmware_has_feature(FW_FEATURE_LPAR)) {
963 of_reconfig_notifier_register(&pseries_smp_nb);
964 cpu_maps_update_begin();
965 if (cede_offline_enabled && parse_cede_parameters() == 0) {
966 default_offline_state = CPU_STATE_INACTIVE;
967 for_each_online_cpu(cpu)
968 set_default_offline_state(cpu);
969 }
970 cpu_maps_update_done();
971 }
972
973 return 0;
974 }
975 machine_arch_initcall(pseries, pseries_cpu_hotplug_init);
976