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989d42e8 1// SPDX-License-Identifier: GPL-2.0
1da177e4 2/*
8a25a2fd 3 * CPU subsystem support
1da177e4
LT
4 */
5
024f7846 6#include <linux/kernel.h>
1da177e4
LT
7#include <linux/module.h>
8#include <linux/init.h>
f6a57033 9#include <linux/sched.h>
1da177e4
LT
10#include <linux/cpu.h>
11#include <linux/topology.h>
12#include <linux/device.h>
76b67ed9 13#include <linux/node.h>
5a0e3ad6 14#include <linux/gfp.h>
fad12ac8 15#include <linux/slab.h>
9f13a1fd 16#include <linux/percpu.h>
ac212b69 17#include <linux/acpi.h>
f86e4718 18#include <linux/of.h>
67bad2fd 19#include <linux/cpufeature.h>
6570a9a1 20#include <linux/tick.h>
37efa4b4 21#include <linux/pm_qos.h>
edb93821 22#include <linux/sched/isolation.h>
1da177e4 23
a1bdc7aa 24#include "base.h"
1da177e4 25
8a25a2fd 26static DEFINE_PER_CPU(struct device *, cpu_sys_devices);
ad74557a 27
ac212b69
RW
28static int cpu_subsys_match(struct device *dev, struct device_driver *drv)
29{
30 /* ACPI style match is the only one that may succeed. */
31 if (acpi_driver_match_device(dev, drv))
32 return 1;
33
34 return 0;
35}
36
1da177e4 37#ifdef CONFIG_HOTPLUG_CPU
34640468
YI
38static void change_cpu_under_node(struct cpu *cpu,
39 unsigned int from_nid, unsigned int to_nid)
40{
41 int cpuid = cpu->dev.id;
42 unregister_cpu_under_node(cpuid, from_nid);
43 register_cpu_under_node(cpuid, to_nid);
44 cpu->node_id = to_nid;
45}
46
eda5867b 47static int cpu_subsys_online(struct device *dev)
1da177e4 48{
8a25a2fd 49 struct cpu *cpu = container_of(dev, struct cpu, dev);
0902a904
RW
50 int cpuid = dev->id;
51 int from_nid, to_nid;
6dedcca6 52 int ret;
1da177e4 53
0902a904 54 from_nid = cpu_to_node(cpuid);
c7991b0b 55 if (from_nid == NUMA_NO_NODE)
6dedcca6 56 return -ENODEV;
c7991b0b 57
33c3736e 58 ret = cpu_device_up(dev);
0902a904
RW
59 /*
60 * When hot adding memory to memoryless node and enabling a cpu
61 * on the node, node number of the cpu may internally change.
62 */
63 to_nid = cpu_to_node(cpuid);
64 if (from_nid != to_nid)
65 change_cpu_under_node(cpu, from_nid, to_nid);
1da177e4 66
0902a904 67 return ret;
1da177e4
LT
68}
69
0902a904 70static int cpu_subsys_offline(struct device *dev)
1da177e4 71{
33c3736e 72 return cpu_device_down(dev);
1da177e4 73}
1c4e2d70 74
76b67ed9 75void unregister_cpu(struct cpu *cpu)
1da177e4 76{
8a25a2fd 77 int logical_cpu = cpu->dev.id;
1da177e4 78
76b67ed9
KH
79 unregister_cpu_under_node(logical_cpu, cpu_to_node(logical_cpu));
80
8a25a2fd 81 device_unregister(&cpu->dev);
e37d05da 82 per_cpu(cpu_sys_devices, logical_cpu) = NULL;
1da177e4
LT
83 return;
84}
12633e80
NF
85
86#ifdef CONFIG_ARCH_CPU_PROBE_RELEASE
8a25a2fd
KS
87static ssize_t cpu_probe_store(struct device *dev,
88 struct device_attribute *attr,
67fc233f 89 const char *buf,
12633e80
NF
90 size_t count)
91{
574b851e
TK
92 ssize_t cnt;
93 int ret;
94
95 ret = lock_device_hotplug_sysfs();
96 if (ret)
97 return ret;
98
99 cnt = arch_cpu_probe(buf, count);
100
101 unlock_device_hotplug();
102 return cnt;
12633e80
NF
103}
104
8a25a2fd
KS
105static ssize_t cpu_release_store(struct device *dev,
106 struct device_attribute *attr,
67fc233f 107 const char *buf,
12633e80
NF
108 size_t count)
109{
574b851e
TK
110 ssize_t cnt;
111 int ret;
112
113 ret = lock_device_hotplug_sysfs();
114 if (ret)
115 return ret;
116
117 cnt = arch_cpu_release(buf, count);
118
119 unlock_device_hotplug();
120 return cnt;
12633e80
NF
121}
122
8a25a2fd
KS
123static DEVICE_ATTR(probe, S_IWUSR, NULL, cpu_probe_store);
124static DEVICE_ATTR(release, S_IWUSR, NULL, cpu_release_store);
12633e80 125#endif /* CONFIG_ARCH_CPU_PROBE_RELEASE */
1da177e4
LT
126#endif /* CONFIG_HOTPLUG_CPU */
127
0902a904
RW
128struct bus_type cpu_subsys = {
129 .name = "cpu",
130 .dev_name = "cpu",
ac212b69 131 .match = cpu_subsys_match,
0902a904
RW
132#ifdef CONFIG_HOTPLUG_CPU
133 .online = cpu_subsys_online,
134 .offline = cpu_subsys_offline,
135#endif
136};
137EXPORT_SYMBOL_GPL(cpu_subsys);
138
51be5606
VG
139#ifdef CONFIG_KEXEC
140#include <linux/kexec.h>
141
8a25a2fd 142static ssize_t show_crash_notes(struct device *dev, struct device_attribute *attr,
4a0b2b4d 143 char *buf)
51be5606 144{
8a25a2fd 145 struct cpu *cpu = container_of(dev, struct cpu, dev);
51be5606
VG
146 ssize_t rc;
147 unsigned long long addr;
148 int cpunum;
149
8a25a2fd 150 cpunum = cpu->dev.id;
51be5606
VG
151
152 /*
153 * Might be reading other cpu's data based on which cpu read thread
154 * has been scheduled. But cpu data (memory) is allocated once during
155 * boot up and this data does not change there after. Hence this
156 * operation should be safe. No locking required.
157 */
3b034b0d 158 addr = per_cpu_ptr_to_phys(per_cpu_ptr(crash_notes, cpunum));
51be5606 159 rc = sprintf(buf, "%Lx\n", addr);
51be5606
VG
160 return rc;
161}
8a25a2fd 162static DEVICE_ATTR(crash_notes, 0400, show_crash_notes, NULL);
eca4549f
ZY
163
164static ssize_t show_crash_notes_size(struct device *dev,
165 struct device_attribute *attr,
166 char *buf)
167{
168 ssize_t rc;
169
bcfb87fb 170 rc = sprintf(buf, "%zu\n", sizeof(note_buf_t));
eca4549f
ZY
171 return rc;
172}
173static DEVICE_ATTR(crash_notes_size, 0400, show_crash_notes_size, NULL);
c055da9f
IM
174
175static struct attribute *crash_note_cpu_attrs[] = {
176 &dev_attr_crash_notes.attr,
177 &dev_attr_crash_notes_size.attr,
178 NULL
179};
180
181static struct attribute_group crash_note_cpu_attr_group = {
182 .attrs = crash_note_cpu_attrs,
183};
184#endif
185
186static const struct attribute_group *common_cpu_attr_groups[] = {
187#ifdef CONFIG_KEXEC
188 &crash_note_cpu_attr_group,
51be5606 189#endif
c055da9f
IM
190 NULL
191};
51be5606 192
1c4e2d70
IM
193static const struct attribute_group *hotplugable_cpu_attr_groups[] = {
194#ifdef CONFIG_KEXEC
195 &crash_note_cpu_attr_group,
1c4e2d70
IM
196#endif
197 NULL
198};
199
9d1fe323
MT
200/*
201 * Print cpu online, possible, present, and system maps
202 */
265d2e2e
AK
203
204struct cpu_attr {
8a25a2fd 205 struct device_attribute attr;
848e2391 206 const struct cpumask *const map;
265d2e2e
AK
207};
208
8a25a2fd
KS
209static ssize_t show_cpus_attr(struct device *dev,
210 struct device_attribute *attr,
265d2e2e 211 char *buf)
9d1fe323 212{
265d2e2e 213 struct cpu_attr *ca = container_of(attr, struct cpu_attr, attr);
9d1fe323 214
848e2391 215 return cpumap_print_to_pagebuf(true, buf, ca->map);
9d1fe323
MT
216}
217
8a25a2fd
KS
218#define _CPU_ATTR(name, map) \
219 { __ATTR(name, 0444, show_cpus_attr, NULL), map }
9d1fe323 220
8a25a2fd 221/* Keep in sync with cpu_subsys_attrs */
265d2e2e 222static struct cpu_attr cpu_attrs[] = {
848e2391
RV
223 _CPU_ATTR(online, &__cpu_online_mask),
224 _CPU_ATTR(possible, &__cpu_possible_mask),
225 _CPU_ATTR(present, &__cpu_present_mask),
265d2e2e 226};
9d1fe323 227
e057d7ae
MT
228/*
229 * Print values for NR_CPUS and offlined cpus
230 */
8a25a2fd
KS
231static ssize_t print_cpus_kernel_max(struct device *dev,
232 struct device_attribute *attr, char *buf)
e057d7ae 233{
847e3386 234 return sprintf(buf, "%d\n", NR_CPUS - 1);
e057d7ae 235}
8a25a2fd 236static DEVICE_ATTR(kernel_max, 0444, print_cpus_kernel_max, NULL);
e057d7ae
MT
237
238/* arch-optional setting to enable display of offline cpus >= nr_cpu_ids */
239unsigned int total_cpus;
240
8a25a2fd
KS
241static ssize_t print_cpus_offline(struct device *dev,
242 struct device_attribute *attr, char *buf)
e057d7ae
MT
243{
244 int n = 0, len = PAGE_SIZE-2;
245 cpumask_var_t offline;
246
247 /* display offline cpus < nr_cpu_ids */
248 if (!alloc_cpumask_var(&offline, GFP_KERNEL))
249 return -ENOMEM;
cdc6e3d3 250 cpumask_andnot(offline, cpu_possible_mask, cpu_online_mask);
f799b1a7 251 n = scnprintf(buf, len, "%*pbl", cpumask_pr_args(offline));
e057d7ae
MT
252 free_cpumask_var(offline);
253
254 /* display offline cpus >= nr_cpu_ids */
255 if (total_cpus && nr_cpu_ids < total_cpus) {
256 if (n && n < len)
257 buf[n++] = ',';
258
259 if (nr_cpu_ids == total_cpus-1)
4636a046 260 n += scnprintf(&buf[n], len - n, "%u", nr_cpu_ids);
e057d7ae 261 else
4636a046 262 n += scnprintf(&buf[n], len - n, "%u-%d",
e057d7ae
MT
263 nr_cpu_ids, total_cpus-1);
264 }
265
4636a046 266 n += scnprintf(&buf[n], len - n, "\n");
e057d7ae
MT
267 return n;
268}
8a25a2fd 269static DEVICE_ATTR(offline, 0444, print_cpus_offline, NULL);
e057d7ae 270
59f30abe
RR
271static ssize_t print_cpus_isolated(struct device *dev,
272 struct device_attribute *attr, char *buf)
273{
847e3386 274 int n;
edb93821 275 cpumask_var_t isolated;
59f30abe 276
edb93821
FW
277 if (!alloc_cpumask_var(&isolated, GFP_KERNEL))
278 return -ENOMEM;
279
280 cpumask_andnot(isolated, cpu_possible_mask,
281 housekeeping_cpumask(HK_FLAG_DOMAIN));
847e3386 282 n = sprintf(buf, "%*pbl\n", cpumask_pr_args(isolated));
edb93821
FW
283
284 free_cpumask_var(isolated);
59f30abe
RR
285
286 return n;
287}
288static DEVICE_ATTR(isolated, 0444, print_cpus_isolated, NULL);
289
6570a9a1
RR
290#ifdef CONFIG_NO_HZ_FULL
291static ssize_t print_cpus_nohz_full(struct device *dev,
292 struct device_attribute *attr, char *buf)
293{
847e3386 294 return sprintf(buf, "%*pbl\n", cpumask_pr_args(tick_nohz_full_mask));
6570a9a1
RR
295}
296static DEVICE_ATTR(nohz_full, 0444, print_cpus_nohz_full, NULL);
297#endif
298
2885e25c
GKH
299static void cpu_device_release(struct device *dev)
300{
301 /*
302 * This is an empty function to prevent the driver core from spitting a
303 * warning at us. Yes, I know this is directly opposite of what the
304 * documentation for the driver core and kobjects say, and the author
305 * of this code has already been publically ridiculed for doing
306 * something as foolish as this. However, at this point in time, it is
307 * the only way to handle the issue of statically allocated cpu
308 * devices. The different architectures will have their cpu device
309 * code reworked to properly handle this in the near future, so this
310 * function will then be changed to correctly free up the memory held
311 * by the cpu device.
312 *
313 * Never copy this way of doing things, or you too will be made fun of
30a4840a 314 * on the linux-kernel list, you have been warned.
2885e25c
GKH
315 */
316}
317
67bad2fd
AB
318#ifdef CONFIG_GENERIC_CPU_AUTOPROBE
319static ssize_t print_cpu_modalias(struct device *dev,
320 struct device_attribute *attr,
321 char *buf)
322{
323 ssize_t n;
324 u32 i;
325
326 n = sprintf(buf, "cpu:type:" CPU_FEATURE_TYPEFMT ":feature:",
327 CPU_FEATURE_TYPEVAL);
328
329 for (i = 0; i < MAX_CPU_FEATURES; i++)
330 if (cpu_have_feature(i)) {
331 if (PAGE_SIZE < n + sizeof(",XXXX\n")) {
332 WARN(1, "CPU features overflow page\n");
333 break;
334 }
335 n += sprintf(&buf[n], ",%04X", i);
336 }
337 buf[n++] = '\n';
338 return n;
339}
67bad2fd
AB
340
341static int cpu_uevent(struct device *dev, struct kobj_uevent_env *env)
342{
343 char *buf = kzalloc(PAGE_SIZE, GFP_KERNEL);
344 if (buf) {
345 print_cpu_modalias(NULL, NULL, buf);
346 add_uevent_var(env, "MODALIAS=%s", buf);
347 kfree(buf);
348 }
349 return 0;
350}
351#endif
352
1da177e4 353/*
405ae7d3 354 * register_cpu - Setup a sysfs device for a CPU.
72486f1f
SS
355 * @cpu - cpu->hotpluggable field set to 1 will generate a control file in
356 * sysfs for this CPU.
1da177e4
LT
357 * @num - CPU number to use when creating the device.
358 *
359 * Initialize and register the CPU device.
360 */
a83048eb 361int register_cpu(struct cpu *cpu, int num)
1da177e4
LT
362{
363 int error;
76b67ed9 364
8a25a2fd 365 cpu->node_id = cpu_to_node(num);
29bb5d4f 366 memset(&cpu->dev, 0x00, sizeof(struct device));
8a25a2fd
KS
367 cpu->dev.id = num;
368 cpu->dev.bus = &cpu_subsys;
2885e25c 369 cpu->dev.release = cpu_device_release;
0902a904 370 cpu->dev.offline_disabled = !cpu->hotpluggable;
1001b4d4 371 cpu->dev.offline = !cpu_online(num);
f86e4718 372 cpu->dev.of_node = of_get_cpu_node(num, NULL);
2b9c1f03 373#ifdef CONFIG_GENERIC_CPU_AUTOPROBE
67bad2fd 374 cpu->dev.bus->uevent = cpu_uevent;
fad12ac8 375#endif
c055da9f 376 cpu->dev.groups = common_cpu_attr_groups;
1c4e2d70
IM
377 if (cpu->hotpluggable)
378 cpu->dev.groups = hotplugable_cpu_attr_groups;
8a25a2fd 379 error = device_register(&cpu->dev);
3aaba245
AY
380 if (error) {
381 put_device(&cpu->dev);
59fffa34 382 return error;
3aaba245 383 }
51be5606 384
59fffa34
AS
385 per_cpu(cpu_sys_devices, num) = &cpu->dev;
386 register_cpu_under_node(num, cpu_to_node(num));
0759e80b
RW
387 dev_pm_qos_expose_latency_limit(&cpu->dev,
388 PM_QOS_RESUME_LATENCY_NO_CONSTRAINT);
59fffa34
AS
389
390 return 0;
1da177e4
LT
391}
392
8a25a2fd 393struct device *get_cpu_device(unsigned cpu)
ad74557a 394{
e37d05da
MT
395 if (cpu < nr_cpu_ids && cpu_possible(cpu))
396 return per_cpu(cpu_sys_devices, cpu);
ad74557a
AR
397 else
398 return NULL;
399}
8a25a2fd
KS
400EXPORT_SYMBOL_GPL(get_cpu_device);
401
3d52943b
SH
402static void device_create_release(struct device *dev)
403{
404 kfree(dev);
405}
406
fa548d79 407__printf(4, 0)
3d52943b
SH
408static struct device *
409__cpu_device_create(struct device *parent, void *drvdata,
410 const struct attribute_group **groups,
411 const char *fmt, va_list args)
412{
413 struct device *dev = NULL;
414 int retval = -ENODEV;
415
416 dev = kzalloc(sizeof(*dev), GFP_KERNEL);
417 if (!dev) {
418 retval = -ENOMEM;
419 goto error;
420 }
421
422 device_initialize(dev);
423 dev->parent = parent;
424 dev->groups = groups;
425 dev->release = device_create_release;
85945c28 426 device_set_pm_not_required(dev);
3d52943b
SH
427 dev_set_drvdata(dev, drvdata);
428
429 retval = kobject_set_name_vargs(&dev->kobj, fmt, args);
430 if (retval)
431 goto error;
432
433 retval = device_add(dev);
434 if (retval)
435 goto error;
436
437 return dev;
438
439error:
440 put_device(dev);
441 return ERR_PTR(retval);
442}
443
444struct device *cpu_device_create(struct device *parent, void *drvdata,
445 const struct attribute_group **groups,
446 const char *fmt, ...)
447{
448 va_list vargs;
449 struct device *dev;
450
451 va_start(vargs, fmt);
452 dev = __cpu_device_create(parent, drvdata, groups, fmt, vargs);
453 va_end(vargs);
454 return dev;
455}
456EXPORT_SYMBOL_GPL(cpu_device_create);
457
2b9c1f03 458#ifdef CONFIG_GENERIC_CPU_AUTOPROBE
67bad2fd 459static DEVICE_ATTR(modalias, 0444, print_cpu_modalias, NULL);
fad12ac8
TR
460#endif
461
8a25a2fd
KS
462static struct attribute *cpu_root_attrs[] = {
463#ifdef CONFIG_ARCH_CPU_PROBE_RELEASE
464 &dev_attr_probe.attr,
465 &dev_attr_release.attr,
466#endif
467 &cpu_attrs[0].attr.attr,
468 &cpu_attrs[1].attr.attr,
469 &cpu_attrs[2].attr.attr,
470 &dev_attr_kernel_max.attr,
471 &dev_attr_offline.attr,
59f30abe 472 &dev_attr_isolated.attr,
6570a9a1
RR
473#ifdef CONFIG_NO_HZ_FULL
474 &dev_attr_nohz_full.attr,
475#endif
2b9c1f03 476#ifdef CONFIG_GENERIC_CPU_AUTOPROBE
fad12ac8
TR
477 &dev_attr_modalias.attr,
478#endif
8a25a2fd
KS
479 NULL
480};
481
482static struct attribute_group cpu_root_attr_group = {
483 .attrs = cpu_root_attrs,
484};
485
486static const struct attribute_group *cpu_root_attr_groups[] = {
487 &cpu_root_attr_group,
488 NULL,
489};
1da177e4 490
2987557f
JT
491bool cpu_is_hotpluggable(unsigned cpu)
492{
7affca35
LT
493 struct device *dev = get_cpu_device(cpu);
494 return dev && container_of(dev, struct cpu, dev)->hotpluggable;
2987557f
JT
495}
496EXPORT_SYMBOL_GPL(cpu_is_hotpluggable);
497
9f13a1fd
BH
498#ifdef CONFIG_GENERIC_CPU_DEVICES
499static DEFINE_PER_CPU(struct cpu, cpu_devices);
500#endif
501
502static void __init cpu_dev_register_generic(void)
503{
504#ifdef CONFIG_GENERIC_CPU_DEVICES
505 int i;
506
507 for_each_possible_cpu(i) {
508 if (register_cpu(&per_cpu(cpu_devices, i), i))
509 panic("Failed to register CPU device");
510 }
511#endif
512}
513
87590ce6
TG
514#ifdef CONFIG_GENERIC_CPU_VULNERABILITIES
515
516ssize_t __weak cpu_show_meltdown(struct device *dev,
517 struct device_attribute *attr, char *buf)
518{
519 return sprintf(buf, "Not affected\n");
520}
521
522ssize_t __weak cpu_show_spectre_v1(struct device *dev,
523 struct device_attribute *attr, char *buf)
524{
525 return sprintf(buf, "Not affected\n");
526}
527
528ssize_t __weak cpu_show_spectre_v2(struct device *dev,
529 struct device_attribute *attr, char *buf)
530{
531 return sprintf(buf, "Not affected\n");
532}
533
c456442c
KRW
534ssize_t __weak cpu_show_spec_store_bypass(struct device *dev,
535 struct device_attribute *attr, char *buf)
536{
537 return sprintf(buf, "Not affected\n");
538}
539
17dbca11
AK
540ssize_t __weak cpu_show_l1tf(struct device *dev,
541 struct device_attribute *attr, char *buf)
542{
543 return sprintf(buf, "Not affected\n");
544}
545
8a4b06d3
TG
546ssize_t __weak cpu_show_mds(struct device *dev,
547 struct device_attribute *attr, char *buf)
548{
549 return sprintf(buf, "Not affected\n");
550}
551
6608b45a
PG
552ssize_t __weak cpu_show_tsx_async_abort(struct device *dev,
553 struct device_attribute *attr,
554 char *buf)
555{
556 return sprintf(buf, "Not affected\n");
557}
558
db4d30fb
VT
559ssize_t __weak cpu_show_itlb_multihit(struct device *dev,
560 struct device_attribute *attr, char *buf)
561{
562 return sprintf(buf, "Not affected\n");
563}
564
87590ce6
TG
565static DEVICE_ATTR(meltdown, 0444, cpu_show_meltdown, NULL);
566static DEVICE_ATTR(spectre_v1, 0444, cpu_show_spectre_v1, NULL);
567static DEVICE_ATTR(spectre_v2, 0444, cpu_show_spectre_v2, NULL);
c456442c 568static DEVICE_ATTR(spec_store_bypass, 0444, cpu_show_spec_store_bypass, NULL);
17dbca11 569static DEVICE_ATTR(l1tf, 0444, cpu_show_l1tf, NULL);
8a4b06d3 570static DEVICE_ATTR(mds, 0444, cpu_show_mds, NULL);
6608b45a 571static DEVICE_ATTR(tsx_async_abort, 0444, cpu_show_tsx_async_abort, NULL);
db4d30fb 572static DEVICE_ATTR(itlb_multihit, 0444, cpu_show_itlb_multihit, NULL);
87590ce6
TG
573
574static struct attribute *cpu_root_vulnerabilities_attrs[] = {
575 &dev_attr_meltdown.attr,
576 &dev_attr_spectre_v1.attr,
577 &dev_attr_spectre_v2.attr,
c456442c 578 &dev_attr_spec_store_bypass.attr,
17dbca11 579 &dev_attr_l1tf.attr,
8a4b06d3 580 &dev_attr_mds.attr,
6608b45a 581 &dev_attr_tsx_async_abort.attr,
db4d30fb 582 &dev_attr_itlb_multihit.attr,
87590ce6
TG
583 NULL
584};
585
586static const struct attribute_group cpu_root_vulnerabilities_group = {
587 .name = "vulnerabilities",
588 .attrs = cpu_root_vulnerabilities_attrs,
589};
590
591static void __init cpu_register_vulnerabilities(void)
592{
593 if (sysfs_create_group(&cpu_subsys.dev_root->kobj,
594 &cpu_root_vulnerabilities_group))
595 pr_err("Unable to register CPU vulnerabilities\n");
596}
597
598#else
599static inline void cpu_register_vulnerabilities(void) { }
600#endif
601
024f7846 602void __init cpu_dev_init(void)
1da177e4 603{
024f7846
BH
604 if (subsys_system_register(&cpu_subsys, cpu_root_attr_groups))
605 panic("Failed to register CPU subsystem");
8a25a2fd 606
9f13a1fd 607 cpu_dev_register_generic();
87590ce6 608 cpu_register_vulnerabilities();
1da177e4 609}