1 /*
2 * Hypervisor supplied "24x7" performance counter support
3 *
4 * Author: Cody P Schafer <cody@linux.vnet.ibm.com>
5 * Copyright 2014 IBM Corporation.
6 *
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License
9 * as published by the Free Software Foundation; either version
10 * 2 of the License, or (at your option) any later version.
11 */
12
13 #define pr_fmt(fmt) "hv-24x7: " fmt
14
15 #include <linux/perf_event.h>
16 #include <linux/rbtree.h>
17 #include <linux/module.h>
18 #include <linux/slab.h>
19 #include <linux/vmalloc.h>
20
21 #include <asm/firmware.h>
22 #include <asm/hvcall.h>
23 #include <asm/io.h>
24 #include <linux/byteorder/generic.h>
25
26 #include "hv-24x7.h"
27 #include "hv-24x7-catalog.h"
28 #include "hv-common.h"
29
event_domain_suffix(unsigned domain)30 static const char *event_domain_suffix(unsigned domain)
31 {
32 switch (domain) {
33 #define DOMAIN(n, v, x, c) \
34 case HV_PERF_DOMAIN_##n: \
35 return "__" #n;
36 #include "hv-24x7-domains.h"
37 #undef DOMAIN
38 default:
39 WARN(1, "unknown domain %d\n", domain);
40 return "__UNKNOWN_DOMAIN_SUFFIX";
41 }
42 }
43
domain_is_valid(unsigned domain)44 static bool domain_is_valid(unsigned domain)
45 {
46 switch (domain) {
47 #define DOMAIN(n, v, x, c) \
48 case HV_PERF_DOMAIN_##n: \
49 /* fall through */
50 #include "hv-24x7-domains.h"
51 #undef DOMAIN
52 return true;
53 default:
54 return false;
55 }
56 }
57
is_physical_domain(unsigned domain)58 static bool is_physical_domain(unsigned domain)
59 {
60 switch (domain) {
61 #define DOMAIN(n, v, x, c) \
62 case HV_PERF_DOMAIN_##n: \
63 return c;
64 #include "hv-24x7-domains.h"
65 #undef DOMAIN
66 default:
67 return false;
68 }
69 }
70
catalog_entry_domain_is_valid(unsigned domain)71 static bool catalog_entry_domain_is_valid(unsigned domain)
72 {
73 return is_physical_domain(domain);
74 }
75
76 /*
77 * TODO: Merging events:
78 * - Think of the hcall as an interface to a 4d array of counters:
79 * - x = domains
80 * - y = indexes in the domain (core, chip, vcpu, node, etc)
81 * - z = offset into the counter space
82 * - w = lpars (guest vms, "logical partitions")
83 * - A single request is: x,y,y_last,z,z_last,w,w_last
84 * - this means we can retrieve a rectangle of counters in y,z for a single x.
85 *
86 * - Things to consider (ignoring w):
87 * - input cost_per_request = 16
88 * - output cost_per_result(ys,zs) = 8 + 8 * ys + ys * zs
89 * - limited number of requests per hcall (must fit into 4K bytes)
90 * - 4k = 16 [buffer header] - 16 [request size] * request_count
91 * - 255 requests per hcall
92 * - sometimes it will be more efficient to read extra data and discard
93 */
94
95 /*
96 * Example usage:
97 * perf stat -e 'hv_24x7/domain=2,offset=8,vcpu=0,lpar=0xffffffff/'
98 */
99
100 /* u3 0-6, one of HV_24X7_PERF_DOMAIN */
101 EVENT_DEFINE_RANGE_FORMAT(domain, config, 0, 3);
102 /* u16 */
103 EVENT_DEFINE_RANGE_FORMAT(core, config, 16, 31);
104 EVENT_DEFINE_RANGE_FORMAT(vcpu, config, 16, 31);
105 /* u32, see "data_offset" */
106 EVENT_DEFINE_RANGE_FORMAT(offset, config, 32, 63);
107 /* u16 */
108 EVENT_DEFINE_RANGE_FORMAT(lpar, config1, 0, 15);
109
110 EVENT_DEFINE_RANGE(reserved1, config, 4, 15);
111 EVENT_DEFINE_RANGE(reserved2, config1, 16, 63);
112 EVENT_DEFINE_RANGE(reserved3, config2, 0, 63);
113
114 static struct attribute *format_attrs[] = {
115 &format_attr_domain.attr,
116 &format_attr_offset.attr,
117 &format_attr_core.attr,
118 &format_attr_vcpu.attr,
119 &format_attr_lpar.attr,
120 NULL,
121 };
122
123 static struct attribute_group format_group = {
124 .name = "format",
125 .attrs = format_attrs,
126 };
127
128 static struct attribute_group event_group = {
129 .name = "events",
130 /* .attrs is set in init */
131 };
132
133 static struct attribute_group event_desc_group = {
134 .name = "event_descs",
135 /* .attrs is set in init */
136 };
137
138 static struct attribute_group event_long_desc_group = {
139 .name = "event_long_descs",
140 /* .attrs is set in init */
141 };
142
143 static struct kmem_cache *hv_page_cache;
144
145 /*
146 * request_buffer and result_buffer are not required to be 4k aligned,
147 * but are not allowed to cross any 4k boundary. Aligning them to 4k is
148 * the simplest way to ensure that.
149 */
150 #define H24x7_DATA_BUFFER_SIZE 4096
151 DEFINE_PER_CPU(char, hv_24x7_reqb[H24x7_DATA_BUFFER_SIZE]) __aligned(4096);
152 DEFINE_PER_CPU(char, hv_24x7_resb[H24x7_DATA_BUFFER_SIZE]) __aligned(4096);
153
event_name(struct hv_24x7_event_data * ev,int * len)154 static char *event_name(struct hv_24x7_event_data *ev, int *len)
155 {
156 *len = be16_to_cpu(ev->event_name_len) - 2;
157 return (char *)ev->remainder;
158 }
159
event_desc(struct hv_24x7_event_data * ev,int * len)160 static char *event_desc(struct hv_24x7_event_data *ev, int *len)
161 {
162 unsigned nl = be16_to_cpu(ev->event_name_len);
163 __be16 *desc_len = (__be16 *)(ev->remainder + nl - 2);
164
165 *len = be16_to_cpu(*desc_len) - 2;
166 return (char *)ev->remainder + nl;
167 }
168
event_long_desc(struct hv_24x7_event_data * ev,int * len)169 static char *event_long_desc(struct hv_24x7_event_data *ev, int *len)
170 {
171 unsigned nl = be16_to_cpu(ev->event_name_len);
172 __be16 *desc_len_ = (__be16 *)(ev->remainder + nl - 2);
173 unsigned desc_len = be16_to_cpu(*desc_len_);
174 __be16 *long_desc_len = (__be16 *)(ev->remainder + nl + desc_len - 2);
175
176 *len = be16_to_cpu(*long_desc_len) - 2;
177 return (char *)ev->remainder + nl + desc_len;
178 }
179
event_fixed_portion_is_within(struct hv_24x7_event_data * ev,void * end)180 static bool event_fixed_portion_is_within(struct hv_24x7_event_data *ev,
181 void *end)
182 {
183 void *start = ev;
184
185 return (start + offsetof(struct hv_24x7_event_data, remainder)) < end;
186 }
187
188 /*
189 * Things we don't check:
190 * - padding for desc, name, and long/detailed desc is required to be '\0'
191 * bytes.
192 *
193 * Return NULL if we pass end,
194 * Otherwise return the address of the byte just following the event.
195 */
event_end(struct hv_24x7_event_data * ev,void * end)196 static void *event_end(struct hv_24x7_event_data *ev, void *end)
197 {
198 void *start = ev;
199 __be16 *dl_, *ldl_;
200 unsigned dl, ldl;
201 unsigned nl = be16_to_cpu(ev->event_name_len);
202
203 if (nl < 2) {
204 pr_debug("%s: name length too short: %d", __func__, nl);
205 return NULL;
206 }
207
208 if (start + nl > end) {
209 pr_debug("%s: start=%p + nl=%u > end=%p",
210 __func__, start, nl, end);
211 return NULL;
212 }
213
214 dl_ = (__be16 *)(ev->remainder + nl - 2);
215 if (!IS_ALIGNED((uintptr_t)dl_, 2))
216 pr_warn("desc len not aligned %p", dl_);
217 dl = be16_to_cpu(*dl_);
218 if (dl < 2) {
219 pr_debug("%s: desc len too short: %d", __func__, dl);
220 return NULL;
221 }
222
223 if (start + nl + dl > end) {
224 pr_debug("%s: (start=%p + nl=%u + dl=%u)=%p > end=%p",
225 __func__, start, nl, dl, start + nl + dl, end);
226 return NULL;
227 }
228
229 ldl_ = (__be16 *)(ev->remainder + nl + dl - 2);
230 if (!IS_ALIGNED((uintptr_t)ldl_, 2))
231 pr_warn("long desc len not aligned %p", ldl_);
232 ldl = be16_to_cpu(*ldl_);
233 if (ldl < 2) {
234 pr_debug("%s: long desc len too short (ldl=%u)",
235 __func__, ldl);
236 return NULL;
237 }
238
239 if (start + nl + dl + ldl > end) {
240 pr_debug("%s: start=%p + nl=%u + dl=%u + ldl=%u > end=%p",
241 __func__, start, nl, dl, ldl, end);
242 return NULL;
243 }
244
245 return start + nl + dl + ldl;
246 }
247
h_get_24x7_catalog_page_(unsigned long phys_4096,unsigned long version,unsigned long index)248 static unsigned long h_get_24x7_catalog_page_(unsigned long phys_4096,
249 unsigned long version,
250 unsigned long index)
251 {
252 pr_devel("h_get_24x7_catalog_page(0x%lx, %lu, %lu)",
253 phys_4096, version, index);
254
255 WARN_ON(!IS_ALIGNED(phys_4096, 4096));
256
257 return plpar_hcall_norets(H_GET_24X7_CATALOG_PAGE,
258 phys_4096, version, index);
259 }
260
h_get_24x7_catalog_page(char page[],u64 version,u32 index)261 static unsigned long h_get_24x7_catalog_page(char page[],
262 u64 version, u32 index)
263 {
264 return h_get_24x7_catalog_page_(virt_to_phys(page),
265 version, index);
266 }
267
268 static unsigned core_domains[] = {
269 HV_PERF_DOMAIN_PHYS_CORE,
270 HV_PERF_DOMAIN_VCPU_HOME_CORE,
271 HV_PERF_DOMAIN_VCPU_HOME_CHIP,
272 HV_PERF_DOMAIN_VCPU_HOME_NODE,
273 HV_PERF_DOMAIN_VCPU_REMOTE_NODE,
274 };
275 /* chip event data always yeilds a single event, core yeilds multiple */
276 #define MAX_EVENTS_PER_EVENT_DATA ARRAY_SIZE(core_domains)
277
event_fmt(struct hv_24x7_event_data * event,unsigned domain)278 static char *event_fmt(struct hv_24x7_event_data *event, unsigned domain)
279 {
280 const char *sindex;
281 const char *lpar;
282
283 if (is_physical_domain(domain)) {
284 lpar = "0x0";
285 sindex = "core";
286 } else {
287 lpar = "?";
288 sindex = "vcpu";
289 }
290
291 return kasprintf(GFP_KERNEL,
292 "domain=0x%x,offset=0x%x,%s=?,lpar=%s",
293 domain,
294 be16_to_cpu(event->event_counter_offs) +
295 be16_to_cpu(event->event_group_record_offs),
296 sindex,
297 lpar);
298 }
299
300 /* Avoid trusting fw to NUL terminate strings */
memdup_to_str(char * maybe_str,int max_len,gfp_t gfp)301 static char *memdup_to_str(char *maybe_str, int max_len, gfp_t gfp)
302 {
303 return kasprintf(gfp, "%.*s", max_len, maybe_str);
304 }
305
device_show_string(struct device * dev,struct device_attribute * attr,char * buf)306 static ssize_t device_show_string(struct device *dev,
307 struct device_attribute *attr, char *buf)
308 {
309 struct dev_ext_attribute *d;
310
311 d = container_of(attr, struct dev_ext_attribute, attr);
312
313 return sprintf(buf, "%s\n", (char *)d->var);
314 }
315
device_str_attr_create_(char * name,char * str)316 static struct attribute *device_str_attr_create_(char *name, char *str)
317 {
318 struct dev_ext_attribute *attr = kzalloc(sizeof(*attr), GFP_KERNEL);
319
320 if (!attr)
321 return NULL;
322
323 attr->var = str;
324 attr->attr.attr.name = name;
325 attr->attr.attr.mode = 0444;
326 attr->attr.show = device_show_string;
327
328 return &attr->attr.attr;
329 }
330
device_str_attr_create(char * name,int name_max,int name_nonce,char * str,size_t str_max)331 static struct attribute *device_str_attr_create(char *name, int name_max,
332 int name_nonce,
333 char *str, size_t str_max)
334 {
335 char *n;
336 char *s = memdup_to_str(str, str_max, GFP_KERNEL);
337 struct attribute *a;
338
339 if (!s)
340 return NULL;
341
342 if (!name_nonce)
343 n = kasprintf(GFP_KERNEL, "%.*s", name_max, name);
344 else
345 n = kasprintf(GFP_KERNEL, "%.*s__%d", name_max, name,
346 name_nonce);
347 if (!n)
348 goto out_s;
349
350 a = device_str_attr_create_(n, s);
351 if (!a)
352 goto out_n;
353
354 return a;
355 out_n:
356 kfree(n);
357 out_s:
358 kfree(s);
359 return NULL;
360 }
361
device_str_attr_destroy(struct attribute * attr)362 static void device_str_attr_destroy(struct attribute *attr)
363 {
364 struct dev_ext_attribute *d;
365
366 d = container_of(attr, struct dev_ext_attribute, attr.attr);
367 kfree(d->var);
368 kfree(d->attr.attr.name);
369 kfree(d);
370 }
371
event_to_attr(unsigned ix,struct hv_24x7_event_data * event,unsigned domain,int nonce)372 static struct attribute *event_to_attr(unsigned ix,
373 struct hv_24x7_event_data *event,
374 unsigned domain,
375 int nonce)
376 {
377 int event_name_len;
378 char *ev_name, *a_ev_name, *val;
379 const char *ev_suffix;
380 struct attribute *attr;
381
382 if (!domain_is_valid(domain)) {
383 pr_warn("catalog event %u has invalid domain %u\n",
384 ix, domain);
385 return NULL;
386 }
387
388 val = event_fmt(event, domain);
389 if (!val)
390 return NULL;
391
392 ev_suffix = event_domain_suffix(domain);
393 ev_name = event_name(event, &event_name_len);
394 if (!nonce)
395 a_ev_name = kasprintf(GFP_KERNEL, "%.*s%s",
396 (int)event_name_len, ev_name, ev_suffix);
397 else
398 a_ev_name = kasprintf(GFP_KERNEL, "%.*s%s__%d",
399 (int)event_name_len, ev_name, ev_suffix, nonce);
400
401 if (!a_ev_name)
402 goto out_val;
403
404 attr = device_str_attr_create_(a_ev_name, val);
405 if (!attr)
406 goto out_name;
407
408 return attr;
409 out_name:
410 kfree(a_ev_name);
411 out_val:
412 kfree(val);
413 return NULL;
414 }
415
event_to_desc_attr(struct hv_24x7_event_data * event,int nonce)416 static struct attribute *event_to_desc_attr(struct hv_24x7_event_data *event,
417 int nonce)
418 {
419 int nl, dl;
420 char *name = event_name(event, &nl);
421 char *desc = event_desc(event, &dl);
422
423 /* If there isn't a description, don't create the sysfs file */
424 if (!dl)
425 return NULL;
426
427 return device_str_attr_create(name, nl, nonce, desc, dl);
428 }
429
430 static struct attribute *
event_to_long_desc_attr(struct hv_24x7_event_data * event,int nonce)431 event_to_long_desc_attr(struct hv_24x7_event_data *event, int nonce)
432 {
433 int nl, dl;
434 char *name = event_name(event, &nl);
435 char *desc = event_long_desc(event, &dl);
436
437 /* If there isn't a description, don't create the sysfs file */
438 if (!dl)
439 return NULL;
440
441 return device_str_attr_create(name, nl, nonce, desc, dl);
442 }
443
event_data_to_attrs(unsigned ix,struct attribute ** attrs,struct hv_24x7_event_data * event,int nonce)444 static ssize_t event_data_to_attrs(unsigned ix, struct attribute **attrs,
445 struct hv_24x7_event_data *event, int nonce)
446 {
447 unsigned i;
448
449 switch (event->domain) {
450 case HV_PERF_DOMAIN_PHYS_CHIP:
451 *attrs = event_to_attr(ix, event, event->domain, nonce);
452 return 1;
453 case HV_PERF_DOMAIN_PHYS_CORE:
454 for (i = 0; i < ARRAY_SIZE(core_domains); i++) {
455 attrs[i] = event_to_attr(ix, event, core_domains[i],
456 nonce);
457 if (!attrs[i]) {
458 pr_warn("catalog event %u: individual attr %u "
459 "creation failure\n", ix, i);
460 for (; i; i--)
461 device_str_attr_destroy(attrs[i - 1]);
462 return -1;
463 }
464 }
465 return i;
466 default:
467 pr_warn("catalog event %u: domain %u is not allowed in the "
468 "catalog\n", ix, event->domain);
469 return -1;
470 }
471 }
472
event_to_attr_ct(struct hv_24x7_event_data * event)473 static size_t event_to_attr_ct(struct hv_24x7_event_data *event)
474 {
475 switch (event->domain) {
476 case HV_PERF_DOMAIN_PHYS_CHIP:
477 return 1;
478 case HV_PERF_DOMAIN_PHYS_CORE:
479 return ARRAY_SIZE(core_domains);
480 default:
481 return 0;
482 }
483 }
484
vmalloc_to_phys(void * v)485 static unsigned long vmalloc_to_phys(void *v)
486 {
487 struct page *p = vmalloc_to_page(v);
488
489 BUG_ON(!p);
490 return page_to_phys(p) + offset_in_page(v);
491 }
492
493 /* */
494 struct event_uniq {
495 struct rb_node node;
496 const char *name;
497 int nl;
498 unsigned ct;
499 unsigned domain;
500 };
501
memord(const void * d1,size_t s1,const void * d2,size_t s2)502 static int memord(const void *d1, size_t s1, const void *d2, size_t s2)
503 {
504 if (s1 < s2)
505 return 1;
506 if (s2 > s1)
507 return -1;
508
509 return memcmp(d1, d2, s1);
510 }
511
ev_uniq_ord(const void * v1,size_t s1,unsigned d1,const void * v2,size_t s2,unsigned d2)512 static int ev_uniq_ord(const void *v1, size_t s1, unsigned d1, const void *v2,
513 size_t s2, unsigned d2)
514 {
515 int r = memord(v1, s1, v2, s2);
516
517 if (r)
518 return r;
519 if (d1 > d2)
520 return 1;
521 if (d2 > d1)
522 return -1;
523 return 0;
524 }
525
event_uniq_add(struct rb_root * root,const char * name,int nl,unsigned domain)526 static int event_uniq_add(struct rb_root *root, const char *name, int nl,
527 unsigned domain)
528 {
529 struct rb_node **new = &(root->rb_node), *parent = NULL;
530 struct event_uniq *data;
531
532 /* Figure out where to put new node */
533 while (*new) {
534 struct event_uniq *it;
535 int result;
536
537 it = container_of(*new, struct event_uniq, node);
538 result = ev_uniq_ord(name, nl, domain, it->name, it->nl,
539 it->domain);
540
541 parent = *new;
542 if (result < 0)
543 new = &((*new)->rb_left);
544 else if (result > 0)
545 new = &((*new)->rb_right);
546 else {
547 it->ct++;
548 pr_info("found a duplicate event %.*s, ct=%u\n", nl,
549 name, it->ct);
550 return it->ct;
551 }
552 }
553
554 data = kmalloc(sizeof(*data), GFP_KERNEL);
555 if (!data)
556 return -ENOMEM;
557
558 *data = (struct event_uniq) {
559 .name = name,
560 .nl = nl,
561 .ct = 0,
562 .domain = domain,
563 };
564
565 /* Add new node and rebalance tree. */
566 rb_link_node(&data->node, parent, new);
567 rb_insert_color(&data->node, root);
568
569 /* data->ct */
570 return 0;
571 }
572
event_uniq_destroy(struct rb_root * root)573 static void event_uniq_destroy(struct rb_root *root)
574 {
575 /*
576 * the strings we point to are in the giant block of memory filled by
577 * the catalog, and are freed separately.
578 */
579 struct event_uniq *pos, *n;
580
581 rbtree_postorder_for_each_entry_safe(pos, n, root, node)
582 kfree(pos);
583 }
584
585
586 /*
587 * ensure the event structure's sizes are self consistent and don't cause us to
588 * read outside of the event
589 *
590 * On success, return the event length in bytes.
591 * Otherwise, return -1 (and print as appropriate).
592 */
catalog_event_len_validate(struct hv_24x7_event_data * event,size_t event_idx,size_t event_data_bytes,size_t event_entry_count,size_t offset,void * end)593 static ssize_t catalog_event_len_validate(struct hv_24x7_event_data *event,
594 size_t event_idx,
595 size_t event_data_bytes,
596 size_t event_entry_count,
597 size_t offset, void *end)
598 {
599 ssize_t ev_len;
600 void *ev_end, *calc_ev_end;
601
602 if (offset >= event_data_bytes)
603 return -1;
604
605 if (event_idx >= event_entry_count) {
606 pr_devel("catalog event data has %zu bytes of padding after last event\n",
607 event_data_bytes - offset);
608 return -1;
609 }
610
611 if (!event_fixed_portion_is_within(event, end)) {
612 pr_warn("event %zu fixed portion is not within range\n",
613 event_idx);
614 return -1;
615 }
616
617 ev_len = be16_to_cpu(event->length);
618
619 if (ev_len % 16)
620 pr_info("event %zu has length %zu not divisible by 16: event=%pK\n",
621 event_idx, ev_len, event);
622
623 ev_end = (__u8 *)event + ev_len;
624 if (ev_end > end) {
625 pr_warn("event %zu has .length=%zu, ends after buffer end: ev_end=%pK > end=%pK, offset=%zu\n",
626 event_idx, ev_len, ev_end, end,
627 offset);
628 return -1;
629 }
630
631 calc_ev_end = event_end(event, end);
632 if (!calc_ev_end) {
633 pr_warn("event %zu has a calculated length which exceeds buffer length %zu: event=%pK end=%pK, offset=%zu\n",
634 event_idx, event_data_bytes, event, end,
635 offset);
636 return -1;
637 }
638
639 if (calc_ev_end > ev_end) {
640 pr_warn("event %zu exceeds it's own length: event=%pK, end=%pK, offset=%zu, calc_ev_end=%pK\n",
641 event_idx, event, ev_end, offset, calc_ev_end);
642 return -1;
643 }
644
645 return ev_len;
646 }
647
648 #define MAX_4K (SIZE_MAX / 4096)
649
create_events_from_catalog(struct attribute *** events_,struct attribute *** event_descs_,struct attribute *** event_long_descs_)650 static int create_events_from_catalog(struct attribute ***events_,
651 struct attribute ***event_descs_,
652 struct attribute ***event_long_descs_)
653 {
654 unsigned long hret;
655 size_t catalog_len, catalog_page_len, event_entry_count,
656 event_data_len, event_data_offs,
657 event_data_bytes, junk_events, event_idx, event_attr_ct, i,
658 attr_max, event_idx_last, desc_ct, long_desc_ct;
659 ssize_t ct, ev_len;
660 uint32_t catalog_version_num;
661 struct attribute **events, **event_descs, **event_long_descs;
662 struct hv_24x7_catalog_page_0 *page_0 =
663 kmem_cache_alloc(hv_page_cache, GFP_KERNEL);
664 void *page = page_0;
665 void *event_data, *end;
666 struct hv_24x7_event_data *event;
667 struct rb_root ev_uniq = RB_ROOT;
668 int ret = 0;
669
670 if (!page) {
671 ret = -ENOMEM;
672 goto e_out;
673 }
674
675 hret = h_get_24x7_catalog_page(page, 0, 0);
676 if (hret) {
677 ret = -EIO;
678 goto e_free;
679 }
680
681 catalog_version_num = be64_to_cpu(page_0->version);
682 catalog_page_len = be32_to_cpu(page_0->length);
683
684 if (MAX_4K < catalog_page_len) {
685 pr_err("invalid page count: %zu\n", catalog_page_len);
686 ret = -EIO;
687 goto e_free;
688 }
689
690 catalog_len = catalog_page_len * 4096;
691
692 event_entry_count = be16_to_cpu(page_0->event_entry_count);
693 event_data_offs = be16_to_cpu(page_0->event_data_offs);
694 event_data_len = be16_to_cpu(page_0->event_data_len);
695
696 pr_devel("cv %zu cl %zu eec %zu edo %zu edl %zu\n",
697 (size_t)catalog_version_num, catalog_len,
698 event_entry_count, event_data_offs, event_data_len);
699
700 if ((MAX_4K < event_data_len)
701 || (MAX_4K < event_data_offs)
702 || (MAX_4K - event_data_offs < event_data_len)) {
703 pr_err("invalid event data offs %zu and/or len %zu\n",
704 event_data_offs, event_data_len);
705 ret = -EIO;
706 goto e_free;
707 }
708
709 if ((event_data_offs + event_data_len) > catalog_page_len) {
710 pr_err("event data %zu-%zu does not fit inside catalog 0-%zu\n",
711 event_data_offs,
712 event_data_offs + event_data_len,
713 catalog_page_len);
714 ret = -EIO;
715 goto e_free;
716 }
717
718 if (SIZE_MAX / MAX_EVENTS_PER_EVENT_DATA - 1 < event_entry_count) {
719 pr_err("event_entry_count %zu is invalid\n",
720 event_entry_count);
721 ret = -EIO;
722 goto e_free;
723 }
724
725 event_data_bytes = event_data_len * 4096;
726
727 /*
728 * event data can span several pages, events can cross between these
729 * pages. Use vmalloc to make this easier.
730 */
731 event_data = vmalloc(event_data_bytes);
732 if (!event_data) {
733 pr_err("could not allocate event data\n");
734 ret = -ENOMEM;
735 goto e_free;
736 }
737
738 end = event_data + event_data_bytes;
739
740 /*
741 * using vmalloc_to_phys() like this only works if PAGE_SIZE is
742 * divisible by 4096
743 */
744 BUILD_BUG_ON(PAGE_SIZE % 4096);
745
746 for (i = 0; i < event_data_len; i++) {
747 hret = h_get_24x7_catalog_page_(
748 vmalloc_to_phys(event_data + i * 4096),
749 catalog_version_num,
750 i + event_data_offs);
751 if (hret) {
752 pr_err("failed to get event data in page %zu\n",
753 i + event_data_offs);
754 ret = -EIO;
755 goto e_event_data;
756 }
757 }
758
759 /*
760 * scan the catalog to determine the number of attributes we need, and
761 * verify it at the same time.
762 */
763 for (junk_events = 0, event = event_data, event_idx = 0, attr_max = 0;
764 ;
765 event_idx++, event = (void *)event + ev_len) {
766 size_t offset = (void *)event - (void *)event_data;
767 char *name;
768 int nl;
769
770 ev_len = catalog_event_len_validate(event, event_idx,
771 event_data_bytes,
772 event_entry_count,
773 offset, end);
774 if (ev_len < 0)
775 break;
776
777 name = event_name(event, &nl);
778
779 if (event->event_group_record_len == 0) {
780 pr_devel("invalid event %zu (%.*s): group_record_len == 0, skipping\n",
781 event_idx, nl, name);
782 junk_events++;
783 continue;
784 }
785
786 if (!catalog_entry_domain_is_valid(event->domain)) {
787 pr_info("event %zu (%.*s) has invalid domain %d\n",
788 event_idx, nl, name, event->domain);
789 junk_events++;
790 continue;
791 }
792
793 attr_max += event_to_attr_ct(event);
794 }
795
796 event_idx_last = event_idx;
797 if (event_idx_last != event_entry_count)
798 pr_warn("event buffer ended before listed # of events were parsed (got %zu, wanted %zu, junk %zu)\n",
799 event_idx_last, event_entry_count, junk_events);
800
801 events = kmalloc_array(attr_max + 1, sizeof(*events), GFP_KERNEL);
802 if (!events) {
803 ret = -ENOMEM;
804 goto e_event_data;
805 }
806
807 event_descs = kmalloc_array(event_idx + 1, sizeof(*event_descs),
808 GFP_KERNEL);
809 if (!event_descs) {
810 ret = -ENOMEM;
811 goto e_event_attrs;
812 }
813
814 event_long_descs = kmalloc_array(event_idx + 1,
815 sizeof(*event_long_descs), GFP_KERNEL);
816 if (!event_long_descs) {
817 ret = -ENOMEM;
818 goto e_event_descs;
819 }
820
821 /* Iterate over the catalog filling in the attribute vector */
822 for (junk_events = 0, event_attr_ct = 0, desc_ct = 0, long_desc_ct = 0,
823 event = event_data, event_idx = 0;
824 event_idx < event_idx_last;
825 event_idx++, ev_len = be16_to_cpu(event->length),
826 event = (void *)event + ev_len) {
827 char *name;
828 int nl;
829 int nonce;
830 /*
831 * these are the only "bad" events that are intermixed and that
832 * we can ignore without issue. make sure to skip them here
833 */
834 if (event->event_group_record_len == 0)
835 continue;
836 if (!catalog_entry_domain_is_valid(event->domain))
837 continue;
838
839 name = event_name(event, &nl);
840 nonce = event_uniq_add(&ev_uniq, name, nl, event->domain);
841 ct = event_data_to_attrs(event_idx, events + event_attr_ct,
842 event, nonce);
843 if (ct <= 0) {
844 pr_warn("event %zu (%.*s) creation failure, skipping\n",
845 event_idx, nl, name);
846 junk_events++;
847 } else {
848 event_attr_ct += ct;
849 event_descs[desc_ct] = event_to_desc_attr(event, nonce);
850 if (event_descs[desc_ct])
851 desc_ct++;
852 event_long_descs[long_desc_ct] =
853 event_to_long_desc_attr(event, nonce);
854 if (event_long_descs[long_desc_ct])
855 long_desc_ct++;
856 }
857 }
858
859 pr_info("read %zu catalog entries, created %zu event attrs (%zu failures), %zu descs\n",
860 event_idx, event_attr_ct, junk_events, desc_ct);
861
862 events[event_attr_ct] = NULL;
863 event_descs[desc_ct] = NULL;
864 event_long_descs[long_desc_ct] = NULL;
865
866 event_uniq_destroy(&ev_uniq);
867 vfree(event_data);
868 kmem_cache_free(hv_page_cache, page);
869
870 *events_ = events;
871 *event_descs_ = event_descs;
872 *event_long_descs_ = event_long_descs;
873 return 0;
874
875 e_event_descs:
876 kfree(event_descs);
877 e_event_attrs:
878 kfree(events);
879 e_event_data:
880 vfree(event_data);
881 e_free:
882 kmem_cache_free(hv_page_cache, page);
883 e_out:
884 *events_ = NULL;
885 *event_descs_ = NULL;
886 *event_long_descs_ = NULL;
887 return ret;
888 }
889
catalog_read(struct file * filp,struct kobject * kobj,struct bin_attribute * bin_attr,char * buf,loff_t offset,size_t count)890 static ssize_t catalog_read(struct file *filp, struct kobject *kobj,
891 struct bin_attribute *bin_attr, char *buf,
892 loff_t offset, size_t count)
893 {
894 unsigned long hret;
895 ssize_t ret = 0;
896 size_t catalog_len = 0, catalog_page_len = 0;
897 loff_t page_offset = 0;
898 loff_t offset_in_page;
899 size_t copy_len;
900 uint64_t catalog_version_num = 0;
901 void *page = kmem_cache_alloc(hv_page_cache, GFP_USER);
902 struct hv_24x7_catalog_page_0 *page_0 = page;
903
904 if (!page)
905 return -ENOMEM;
906
907 hret = h_get_24x7_catalog_page(page, 0, 0);
908 if (hret) {
909 ret = -EIO;
910 goto e_free;
911 }
912
913 catalog_version_num = be64_to_cpu(page_0->version);
914 catalog_page_len = be32_to_cpu(page_0->length);
915 catalog_len = catalog_page_len * 4096;
916
917 page_offset = offset / 4096;
918 offset_in_page = offset % 4096;
919
920 if (page_offset >= catalog_page_len)
921 goto e_free;
922
923 if (page_offset != 0) {
924 hret = h_get_24x7_catalog_page(page, catalog_version_num,
925 page_offset);
926 if (hret) {
927 ret = -EIO;
928 goto e_free;
929 }
930 }
931
932 copy_len = 4096 - offset_in_page;
933 if (copy_len > count)
934 copy_len = count;
935
936 memcpy(buf, page+offset_in_page, copy_len);
937 ret = copy_len;
938
939 e_free:
940 if (hret)
941 pr_err("h_get_24x7_catalog_page(ver=%lld, page=%lld) failed:"
942 " rc=%ld\n",
943 catalog_version_num, page_offset, hret);
944 kmem_cache_free(hv_page_cache, page);
945
946 pr_devel("catalog_read: offset=%lld(%lld) count=%zu "
947 "catalog_len=%zu(%zu) => %zd\n", offset, page_offset,
948 count, catalog_len, catalog_page_len, ret);
949
950 return ret;
951 }
952
953 #define PAGE_0_ATTR(_name, _fmt, _expr) \
954 static ssize_t _name##_show(struct device *dev, \
955 struct device_attribute *dev_attr, \
956 char *buf) \
957 { \
958 unsigned long hret; \
959 ssize_t ret = 0; \
960 void *page = kmem_cache_alloc(hv_page_cache, GFP_USER); \
961 struct hv_24x7_catalog_page_0 *page_0 = page; \
962 if (!page) \
963 return -ENOMEM; \
964 hret = h_get_24x7_catalog_page(page, 0, 0); \
965 if (hret) { \
966 ret = -EIO; \
967 goto e_free; \
968 } \
969 ret = sprintf(buf, _fmt, _expr); \
970 e_free: \
971 kmem_cache_free(hv_page_cache, page); \
972 return ret; \
973 } \
974 static DEVICE_ATTR_RO(_name)
975
976 PAGE_0_ATTR(catalog_version, "%lld\n",
977 (unsigned long long)be64_to_cpu(page_0->version));
978 PAGE_0_ATTR(catalog_len, "%lld\n",
979 (unsigned long long)be32_to_cpu(page_0->length) * 4096);
980 static BIN_ATTR_RO(catalog, 0/* real length varies */);
981
982 static struct bin_attribute *if_bin_attrs[] = {
983 &bin_attr_catalog,
984 NULL,
985 };
986
987 static struct attribute *if_attrs[] = {
988 &dev_attr_catalog_len.attr,
989 &dev_attr_catalog_version.attr,
990 NULL,
991 };
992
993 static struct attribute_group if_group = {
994 .name = "interface",
995 .bin_attrs = if_bin_attrs,
996 .attrs = if_attrs,
997 };
998
999 static const struct attribute_group *attr_groups[] = {
1000 &format_group,
1001 &event_group,
1002 &event_desc_group,
1003 &event_long_desc_group,
1004 &if_group,
1005 NULL,
1006 };
1007
log_24x7_hcall(struct hv_24x7_request_buffer * request_buffer,struct hv_24x7_data_result_buffer * result_buffer,unsigned long ret)1008 static void log_24x7_hcall(struct hv_24x7_request_buffer *request_buffer,
1009 struct hv_24x7_data_result_buffer *result_buffer,
1010 unsigned long ret)
1011 {
1012 struct hv_24x7_request *req;
1013
1014 req = &request_buffer->requests[0];
1015 pr_notice_ratelimited("hcall failed: [%d %#x %#x %d] => "
1016 "ret 0x%lx (%ld) detail=0x%x failing ix=%x\n",
1017 req->performance_domain, req->data_offset,
1018 req->starting_ix, req->starting_lpar_ix, ret, ret,
1019 result_buffer->detailed_rc,
1020 result_buffer->failing_request_ix);
1021 }
1022
1023 /*
1024 * Start the process for a new H_GET_24x7_DATA hcall.
1025 */
init_24x7_request(struct hv_24x7_request_buffer * request_buffer,struct hv_24x7_data_result_buffer * result_buffer)1026 static void init_24x7_request(struct hv_24x7_request_buffer *request_buffer,
1027 struct hv_24x7_data_result_buffer *result_buffer)
1028 {
1029
1030 memset(request_buffer, 0, 4096);
1031 memset(result_buffer, 0, 4096);
1032
1033 request_buffer->interface_version = HV_24X7_IF_VERSION_CURRENT;
1034 /* memset above set request_buffer->num_requests to 0 */
1035 }
1036
1037 /*
1038 * Commit (i.e perform) the H_GET_24x7_DATA hcall using the data collected
1039 * by 'init_24x7_request()' and 'add_event_to_24x7_request()'.
1040 */
make_24x7_request(struct hv_24x7_request_buffer * request_buffer,struct hv_24x7_data_result_buffer * result_buffer)1041 static int make_24x7_request(struct hv_24x7_request_buffer *request_buffer,
1042 struct hv_24x7_data_result_buffer *result_buffer)
1043 {
1044 unsigned long ret;
1045
1046 /*
1047 * NOTE: Due to variable number of array elements in request and
1048 * result buffer(s), sizeof() is not reliable. Use the actual
1049 * allocated buffer size, H24x7_DATA_BUFFER_SIZE.
1050 */
1051 ret = plpar_hcall_norets(H_GET_24X7_DATA,
1052 virt_to_phys(request_buffer), H24x7_DATA_BUFFER_SIZE,
1053 virt_to_phys(result_buffer), H24x7_DATA_BUFFER_SIZE);
1054
1055 if (ret)
1056 log_24x7_hcall(request_buffer, result_buffer, ret);
1057
1058 return ret;
1059 }
1060
1061 /*
1062 * Add the given @event to the next slot in the 24x7 request_buffer.
1063 *
1064 * Note that H_GET_24X7_DATA hcall allows reading several counters'
1065 * values in a single HCALL. We expect the caller to add events to the
1066 * request buffer one by one, make the HCALL and process the results.
1067 */
add_event_to_24x7_request(struct perf_event * event,struct hv_24x7_request_buffer * request_buffer)1068 static int add_event_to_24x7_request(struct perf_event *event,
1069 struct hv_24x7_request_buffer *request_buffer)
1070 {
1071 u16 idx;
1072 int i;
1073 struct hv_24x7_request *req;
1074
1075 if (request_buffer->num_requests > 254) {
1076 pr_devel("Too many requests for 24x7 HCALL %d\n",
1077 request_buffer->num_requests);
1078 return -EINVAL;
1079 }
1080
1081 if (is_physical_domain(event_get_domain(event)))
1082 idx = event_get_core(event);
1083 else
1084 idx = event_get_vcpu(event);
1085
1086 i = request_buffer->num_requests++;
1087 req = &request_buffer->requests[i];
1088
1089 req->performance_domain = event_get_domain(event);
1090 req->data_size = cpu_to_be16(8);
1091 req->data_offset = cpu_to_be32(event_get_offset(event));
1092 req->starting_lpar_ix = cpu_to_be16(event_get_lpar(event)),
1093 req->max_num_lpars = cpu_to_be16(1);
1094 req->starting_ix = cpu_to_be16(idx);
1095 req->max_ix = cpu_to_be16(1);
1096
1097 return 0;
1098 }
1099
single_24x7_request(struct perf_event * event,u64 * count)1100 static unsigned long single_24x7_request(struct perf_event *event, u64 *count)
1101 {
1102 unsigned long ret;
1103 struct hv_24x7_request_buffer *request_buffer;
1104 struct hv_24x7_data_result_buffer *result_buffer;
1105 struct hv_24x7_result *resb;
1106
1107 BUILD_BUG_ON(sizeof(*request_buffer) > 4096);
1108 BUILD_BUG_ON(sizeof(*result_buffer) > 4096);
1109
1110 request_buffer = (void *)get_cpu_var(hv_24x7_reqb);
1111 result_buffer = (void *)get_cpu_var(hv_24x7_resb);
1112
1113 init_24x7_request(request_buffer, result_buffer);
1114
1115 ret = add_event_to_24x7_request(event, request_buffer);
1116 if (ret)
1117 goto out;
1118
1119 ret = make_24x7_request(request_buffer, result_buffer);
1120 if (ret) {
1121 log_24x7_hcall(request_buffer, result_buffer, ret);
1122 goto out;
1123 }
1124
1125 /* process result from hcall */
1126 resb = &result_buffer->results[0];
1127 *count = be64_to_cpu(resb->elements[0].element_data[0]);
1128
1129 out:
1130 put_cpu_var(hv_24x7_reqb);
1131 put_cpu_var(hv_24x7_resb);
1132 return ret;
1133 }
1134
1135
h_24x7_event_init(struct perf_event * event)1136 static int h_24x7_event_init(struct perf_event *event)
1137 {
1138 struct hv_perf_caps caps;
1139 unsigned domain;
1140 unsigned long hret;
1141 u64 ct;
1142
1143 /* Not our event */
1144 if (event->attr.type != event->pmu->type)
1145 return -ENOENT;
1146
1147 /* Unused areas must be 0 */
1148 if (event_get_reserved1(event) ||
1149 event_get_reserved2(event) ||
1150 event_get_reserved3(event)) {
1151 pr_devel("reserved set when forbidden 0x%llx(0x%llx) 0x%llx(0x%llx) 0x%llx(0x%llx)\n",
1152 event->attr.config,
1153 event_get_reserved1(event),
1154 event->attr.config1,
1155 event_get_reserved2(event),
1156 event->attr.config2,
1157 event_get_reserved3(event));
1158 return -EINVAL;
1159 }
1160
1161 /* unsupported modes and filters */
1162 if (event->attr.exclude_user ||
1163 event->attr.exclude_kernel ||
1164 event->attr.exclude_hv ||
1165 event->attr.exclude_idle ||
1166 event->attr.exclude_host ||
1167 event->attr.exclude_guest)
1168 return -EINVAL;
1169
1170 /* no branch sampling */
1171 if (has_branch_stack(event))
1172 return -EOPNOTSUPP;
1173
1174 /* offset must be 8 byte aligned */
1175 if (event_get_offset(event) % 8) {
1176 pr_devel("bad alignment\n");
1177 return -EINVAL;
1178 }
1179
1180 /* Domains above 6 are invalid */
1181 domain = event_get_domain(event);
1182 if (domain > 6) {
1183 pr_devel("invalid domain %d\n", domain);
1184 return -EINVAL;
1185 }
1186
1187 hret = hv_perf_caps_get(&caps);
1188 if (hret) {
1189 pr_devel("could not get capabilities: rc=%ld\n", hret);
1190 return -EIO;
1191 }
1192
1193 /* Physical domains & other lpars require extra capabilities */
1194 if (!caps.collect_privileged && (is_physical_domain(domain) ||
1195 (event_get_lpar(event) != event_get_lpar_max()))) {
1196 pr_devel("hv permissions disallow: is_physical_domain:%d, lpar=0x%llx\n",
1197 is_physical_domain(domain),
1198 event_get_lpar(event));
1199 return -EACCES;
1200 }
1201
1202 /* see if the event complains */
1203 if (single_24x7_request(event, &ct)) {
1204 pr_devel("test hcall failed\n");
1205 return -EIO;
1206 }
1207
1208 return 0;
1209 }
1210
h_24x7_get_value(struct perf_event * event)1211 static u64 h_24x7_get_value(struct perf_event *event)
1212 {
1213 unsigned long ret;
1214 u64 ct;
1215 ret = single_24x7_request(event, &ct);
1216 if (ret)
1217 /* We checked this in event init, shouldn't fail here... */
1218 return 0;
1219
1220 return ct;
1221 }
1222
update_event_count(struct perf_event * event,u64 now)1223 static void update_event_count(struct perf_event *event, u64 now)
1224 {
1225 s64 prev;
1226
1227 prev = local64_xchg(&event->hw.prev_count, now);
1228 local64_add(now - prev, &event->count);
1229 }
1230
h_24x7_event_read(struct perf_event * event)1231 static void h_24x7_event_read(struct perf_event *event)
1232 {
1233 u64 now;
1234
1235 now = h_24x7_get_value(event);
1236 update_event_count(event, now);
1237 }
1238
h_24x7_event_start(struct perf_event * event,int flags)1239 static void h_24x7_event_start(struct perf_event *event, int flags)
1240 {
1241 if (flags & PERF_EF_RELOAD)
1242 local64_set(&event->hw.prev_count, h_24x7_get_value(event));
1243 }
1244
h_24x7_event_stop(struct perf_event * event,int flags)1245 static void h_24x7_event_stop(struct perf_event *event, int flags)
1246 {
1247 h_24x7_event_read(event);
1248 }
1249
h_24x7_event_add(struct perf_event * event,int flags)1250 static int h_24x7_event_add(struct perf_event *event, int flags)
1251 {
1252 if (flags & PERF_EF_START)
1253 h_24x7_event_start(event, flags);
1254
1255 return 0;
1256 }
1257
1258 static struct pmu h_24x7_pmu = {
1259 .task_ctx_nr = perf_invalid_context,
1260
1261 .name = "hv_24x7",
1262 .attr_groups = attr_groups,
1263 .event_init = h_24x7_event_init,
1264 .add = h_24x7_event_add,
1265 .del = h_24x7_event_stop,
1266 .start = h_24x7_event_start,
1267 .stop = h_24x7_event_stop,
1268 .read = h_24x7_event_read,
1269 };
1270
hv_24x7_init(void)1271 static int hv_24x7_init(void)
1272 {
1273 int r;
1274 unsigned long hret;
1275 struct hv_perf_caps caps;
1276
1277 if (!firmware_has_feature(FW_FEATURE_LPAR)) {
1278 pr_debug("not a virtualized system, not enabling\n");
1279 return -ENODEV;
1280 }
1281
1282 hret = hv_perf_caps_get(&caps);
1283 if (hret) {
1284 pr_debug("could not obtain capabilities, not enabling, rc=%ld\n",
1285 hret);
1286 return -ENODEV;
1287 }
1288
1289 hv_page_cache = kmem_cache_create("hv-page-4096", 4096, 4096, 0, NULL);
1290 if (!hv_page_cache)
1291 return -ENOMEM;
1292
1293 /* sampling not supported */
1294 h_24x7_pmu.capabilities |= PERF_PMU_CAP_NO_INTERRUPT;
1295
1296 r = create_events_from_catalog(&event_group.attrs,
1297 &event_desc_group.attrs,
1298 &event_long_desc_group.attrs);
1299
1300 if (r)
1301 return r;
1302
1303 r = perf_pmu_register(&h_24x7_pmu, h_24x7_pmu.name, -1);
1304 if (r)
1305 return r;
1306
1307 return 0;
1308 }
1309
1310 device_initcall(hv_24x7_init);
1311