1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * System Control and Management Interface (SCMI) Performance Protocol
4 *
5 * Copyright (C) 2018-2023 ARM Ltd.
6 */
7
8 #define pr_fmt(fmt) "SCMI Notifications PERF - " fmt
9
10 #include <linux/bits.h>
11 #include <linux/hashtable.h>
12 #include <linux/io.h>
13 #include <linux/log2.h>
14 #include <linux/module.h>
15 #include <linux/of.h>
16 #include <linux/platform_device.h>
17 #include <linux/pm_opp.h>
18 #include <linux/scmi_protocol.h>
19 #include <linux/sort.h>
20 #include <linux/xarray.h>
21
22 #include <trace/events/scmi.h>
23
24 #include "protocols.h"
25 #include "notify.h"
26
27 /* Updated only after ALL the mandatory features for that version are merged */
28 #define SCMI_PROTOCOL_SUPPORTED_VERSION 0x40000
29
30 #define MAX_OPPS 32
31
32 enum scmi_performance_protocol_cmd {
33 PERF_DOMAIN_ATTRIBUTES = 0x3,
34 PERF_DESCRIBE_LEVELS = 0x4,
35 PERF_LIMITS_SET = 0x5,
36 PERF_LIMITS_GET = 0x6,
37 PERF_LEVEL_SET = 0x7,
38 PERF_LEVEL_GET = 0x8,
39 PERF_NOTIFY_LIMITS = 0x9,
40 PERF_NOTIFY_LEVEL = 0xa,
41 PERF_DESCRIBE_FASTCHANNEL = 0xb,
42 PERF_DOMAIN_NAME_GET = 0xc,
43 };
44
45 enum {
46 PERF_FC_LEVEL,
47 PERF_FC_LIMIT,
48 PERF_FC_MAX,
49 };
50
51 struct scmi_opp {
52 u32 perf;
53 u32 power;
54 u32 trans_latency_us;
55 u32 indicative_freq;
56 u32 level_index;
57 struct hlist_node hash;
58 };
59
60 struct scmi_msg_resp_perf_attributes {
61 __le16 num_domains;
62 __le16 flags;
63 #define POWER_SCALE_IN_MILLIWATT(x) ((x) & BIT(0))
64 #define POWER_SCALE_IN_MICROWATT(x) ((x) & BIT(1))
65 __le32 stats_addr_low;
66 __le32 stats_addr_high;
67 __le32 stats_size;
68 };
69
70 struct scmi_msg_resp_perf_domain_attributes {
71 __le32 flags;
72 #define SUPPORTS_SET_LIMITS(x) ((x) & BIT(31))
73 #define SUPPORTS_SET_PERF_LVL(x) ((x) & BIT(30))
74 #define SUPPORTS_PERF_LIMIT_NOTIFY(x) ((x) & BIT(29))
75 #define SUPPORTS_PERF_LEVEL_NOTIFY(x) ((x) & BIT(28))
76 #define SUPPORTS_PERF_FASTCHANNELS(x) ((x) & BIT(27))
77 #define SUPPORTS_EXTENDED_NAMES(x) ((x) & BIT(26))
78 #define SUPPORTS_LEVEL_INDEXING(x) ((x) & BIT(25))
79 __le32 rate_limit_us;
80 __le32 sustained_freq_khz;
81 __le32 sustained_perf_level;
82 u8 name[SCMI_SHORT_NAME_MAX_SIZE];
83 };
84
85 struct scmi_msg_perf_describe_levels {
86 __le32 domain;
87 __le32 level_index;
88 };
89
90 struct scmi_perf_set_limits {
91 __le32 domain;
92 __le32 max_level;
93 __le32 min_level;
94 };
95
96 struct scmi_perf_get_limits {
97 __le32 max_level;
98 __le32 min_level;
99 };
100
101 struct scmi_perf_set_level {
102 __le32 domain;
103 __le32 level;
104 };
105
106 struct scmi_perf_notify_level_or_limits {
107 __le32 domain;
108 __le32 notify_enable;
109 };
110
111 struct scmi_perf_limits_notify_payld {
112 __le32 agent_id;
113 __le32 domain_id;
114 __le32 range_max;
115 __le32 range_min;
116 };
117
118 struct scmi_perf_level_notify_payld {
119 __le32 agent_id;
120 __le32 domain_id;
121 __le32 performance_level;
122 };
123
124 struct scmi_msg_resp_perf_describe_levels {
125 __le16 num_returned;
126 __le16 num_remaining;
127 struct {
128 __le32 perf_val;
129 __le32 power;
130 __le16 transition_latency_us;
131 __le16 reserved;
132 } opp[];
133 };
134
135 struct scmi_msg_resp_perf_describe_levels_v4 {
136 __le16 num_returned;
137 __le16 num_remaining;
138 struct {
139 __le32 perf_val;
140 __le32 power;
141 __le16 transition_latency_us;
142 __le16 reserved;
143 __le32 indicative_freq;
144 __le32 level_index;
145 } opp[];
146 };
147
148 struct perf_dom_info {
149 u32 id;
150 bool set_limits;
151 bool perf_limit_notify;
152 bool perf_level_notify;
153 bool perf_fastchannels;
154 bool level_indexing_mode;
155 u32 opp_count;
156 u32 sustained_freq_khz;
157 u32 sustained_perf_level;
158 unsigned long mult_factor;
159 struct scmi_perf_domain_info info;
160 struct scmi_opp opp[MAX_OPPS];
161 struct scmi_fc_info *fc_info;
162 struct xarray opps_by_idx;
163 struct xarray opps_by_lvl;
164 DECLARE_HASHTABLE(opps_by_freq, ilog2(MAX_OPPS));
165 };
166
167 #define LOOKUP_BY_FREQ(__htp, __freq) \
168 ({ \
169 /* u32 cast is needed to pick right hash func */ \
170 u32 f_ = (u32)(__freq); \
171 struct scmi_opp *_opp; \
172 \
173 hash_for_each_possible((__htp), _opp, hash, f_) \
174 if (_opp->indicative_freq == f_) \
175 break; \
176 _opp; \
177 })
178
179 struct scmi_perf_info {
180 u32 version;
181 u16 num_domains;
182 enum scmi_power_scale power_scale;
183 u64 stats_addr;
184 u32 stats_size;
185 struct perf_dom_info *dom_info;
186 };
187
188 static enum scmi_performance_protocol_cmd evt_2_cmd[] = {
189 PERF_NOTIFY_LIMITS,
190 PERF_NOTIFY_LEVEL,
191 };
192
scmi_perf_attributes_get(const struct scmi_protocol_handle * ph,struct scmi_perf_info * pi)193 static int scmi_perf_attributes_get(const struct scmi_protocol_handle *ph,
194 struct scmi_perf_info *pi)
195 {
196 int ret;
197 struct scmi_xfer *t;
198 struct scmi_msg_resp_perf_attributes *attr;
199
200 ret = ph->xops->xfer_get_init(ph, PROTOCOL_ATTRIBUTES, 0,
201 sizeof(*attr), &t);
202 if (ret)
203 return ret;
204
205 attr = t->rx.buf;
206
207 ret = ph->xops->do_xfer(ph, t);
208 if (!ret) {
209 u16 flags = le16_to_cpu(attr->flags);
210
211 pi->num_domains = le16_to_cpu(attr->num_domains);
212
213 if (POWER_SCALE_IN_MILLIWATT(flags))
214 pi->power_scale = SCMI_POWER_MILLIWATTS;
215 if (PROTOCOL_REV_MAJOR(pi->version) >= 0x3)
216 if (POWER_SCALE_IN_MICROWATT(flags))
217 pi->power_scale = SCMI_POWER_MICROWATTS;
218
219 pi->stats_addr = le32_to_cpu(attr->stats_addr_low) |
220 (u64)le32_to_cpu(attr->stats_addr_high) << 32;
221 pi->stats_size = le32_to_cpu(attr->stats_size);
222 }
223
224 ph->xops->xfer_put(ph, t);
225 return ret;
226 }
227
scmi_perf_xa_destroy(void * data)228 static void scmi_perf_xa_destroy(void *data)
229 {
230 int domain;
231 struct scmi_perf_info *pinfo = data;
232
233 for (domain = 0; domain < pinfo->num_domains; domain++) {
234 xa_destroy(&((pinfo->dom_info + domain)->opps_by_idx));
235 xa_destroy(&((pinfo->dom_info + domain)->opps_by_lvl));
236 }
237 }
238
239 static int
scmi_perf_domain_attributes_get(const struct scmi_protocol_handle * ph,struct perf_dom_info * dom_info,u32 version)240 scmi_perf_domain_attributes_get(const struct scmi_protocol_handle *ph,
241 struct perf_dom_info *dom_info,
242 u32 version)
243 {
244 int ret;
245 u32 flags;
246 struct scmi_xfer *t;
247 struct scmi_msg_resp_perf_domain_attributes *attr;
248
249 ret = ph->xops->xfer_get_init(ph, PERF_DOMAIN_ATTRIBUTES,
250 sizeof(dom_info->id), sizeof(*attr), &t);
251 if (ret)
252 return ret;
253
254 put_unaligned_le32(dom_info->id, t->tx.buf);
255 attr = t->rx.buf;
256
257 ret = ph->xops->do_xfer(ph, t);
258 if (!ret) {
259 flags = le32_to_cpu(attr->flags);
260
261 dom_info->set_limits = SUPPORTS_SET_LIMITS(flags);
262 dom_info->info.set_perf = SUPPORTS_SET_PERF_LVL(flags);
263 dom_info->perf_limit_notify = SUPPORTS_PERF_LIMIT_NOTIFY(flags);
264 dom_info->perf_level_notify = SUPPORTS_PERF_LEVEL_NOTIFY(flags);
265 dom_info->perf_fastchannels = SUPPORTS_PERF_FASTCHANNELS(flags);
266 if (PROTOCOL_REV_MAJOR(version) >= 0x4)
267 dom_info->level_indexing_mode =
268 SUPPORTS_LEVEL_INDEXING(flags);
269 dom_info->sustained_freq_khz =
270 le32_to_cpu(attr->sustained_freq_khz);
271 dom_info->sustained_perf_level =
272 le32_to_cpu(attr->sustained_perf_level);
273 if (!dom_info->sustained_freq_khz ||
274 !dom_info->sustained_perf_level ||
275 dom_info->level_indexing_mode)
276 /* CPUFreq converts to kHz, hence default 1000 */
277 dom_info->mult_factor = 1000;
278 else
279 dom_info->mult_factor =
280 (dom_info->sustained_freq_khz * 1000UL)
281 / dom_info->sustained_perf_level;
282 strscpy(dom_info->info.name, attr->name,
283 SCMI_SHORT_NAME_MAX_SIZE);
284 }
285
286 ph->xops->xfer_put(ph, t);
287
288 /*
289 * If supported overwrite short name with the extended one;
290 * on error just carry on and use already provided short name.
291 */
292 if (!ret && PROTOCOL_REV_MAJOR(version) >= 0x3 &&
293 SUPPORTS_EXTENDED_NAMES(flags))
294 ph->hops->extended_name_get(ph, PERF_DOMAIN_NAME_GET,
295 dom_info->id, NULL, dom_info->info.name,
296 SCMI_MAX_STR_SIZE);
297
298 if (dom_info->level_indexing_mode) {
299 xa_init(&dom_info->opps_by_idx);
300 xa_init(&dom_info->opps_by_lvl);
301 hash_init(dom_info->opps_by_freq);
302 }
303
304 return ret;
305 }
306
opp_cmp_func(const void * opp1,const void * opp2)307 static int opp_cmp_func(const void *opp1, const void *opp2)
308 {
309 const struct scmi_opp *t1 = opp1, *t2 = opp2;
310
311 return t1->perf - t2->perf;
312 }
313
314 struct scmi_perf_ipriv {
315 u32 version;
316 struct perf_dom_info *perf_dom;
317 };
318
iter_perf_levels_prepare_message(void * message,unsigned int desc_index,const void * priv)319 static void iter_perf_levels_prepare_message(void *message,
320 unsigned int desc_index,
321 const void *priv)
322 {
323 struct scmi_msg_perf_describe_levels *msg = message;
324 const struct scmi_perf_ipriv *p = priv;
325
326 msg->domain = cpu_to_le32(p->perf_dom->id);
327 /* Set the number of OPPs to be skipped/already read */
328 msg->level_index = cpu_to_le32(desc_index);
329 }
330
iter_perf_levels_update_state(struct scmi_iterator_state * st,const void * response,void * priv)331 static int iter_perf_levels_update_state(struct scmi_iterator_state *st,
332 const void *response, void *priv)
333 {
334 const struct scmi_msg_resp_perf_describe_levels *r = response;
335
336 st->num_returned = le16_to_cpu(r->num_returned);
337 st->num_remaining = le16_to_cpu(r->num_remaining);
338
339 return 0;
340 }
341
342 static inline void
process_response_opp(struct scmi_opp * opp,unsigned int loop_idx,const struct scmi_msg_resp_perf_describe_levels * r)343 process_response_opp(struct scmi_opp *opp, unsigned int loop_idx,
344 const struct scmi_msg_resp_perf_describe_levels *r)
345 {
346 opp->perf = le32_to_cpu(r->opp[loop_idx].perf_val);
347 opp->power = le32_to_cpu(r->opp[loop_idx].power);
348 opp->trans_latency_us =
349 le16_to_cpu(r->opp[loop_idx].transition_latency_us);
350 }
351
352 static inline void
process_response_opp_v4(struct device * dev,struct perf_dom_info * dom,struct scmi_opp * opp,unsigned int loop_idx,const struct scmi_msg_resp_perf_describe_levels_v4 * r)353 process_response_opp_v4(struct device *dev, struct perf_dom_info *dom,
354 struct scmi_opp *opp, unsigned int loop_idx,
355 const struct scmi_msg_resp_perf_describe_levels_v4 *r)
356 {
357 opp->perf = le32_to_cpu(r->opp[loop_idx].perf_val);
358 opp->power = le32_to_cpu(r->opp[loop_idx].power);
359 opp->trans_latency_us =
360 le16_to_cpu(r->opp[loop_idx].transition_latency_us);
361
362 /* Note that PERF v4 reports always five 32-bit words */
363 opp->indicative_freq = le32_to_cpu(r->opp[loop_idx].indicative_freq);
364 if (dom->level_indexing_mode) {
365 int ret;
366
367 opp->level_index = le32_to_cpu(r->opp[loop_idx].level_index);
368
369 ret = xa_insert(&dom->opps_by_idx, opp->level_index, opp,
370 GFP_KERNEL);
371 if (ret)
372 dev_warn(dev,
373 "Failed to add opps_by_idx at %d - ret:%d\n",
374 opp->level_index, ret);
375
376 ret = xa_insert(&dom->opps_by_lvl, opp->perf, opp, GFP_KERNEL);
377 if (ret)
378 dev_warn(dev,
379 "Failed to add opps_by_lvl at %d - ret:%d\n",
380 opp->perf, ret);
381
382 hash_add(dom->opps_by_freq, &opp->hash, opp->indicative_freq);
383 }
384 }
385
386 static int
iter_perf_levels_process_response(const struct scmi_protocol_handle * ph,const void * response,struct scmi_iterator_state * st,void * priv)387 iter_perf_levels_process_response(const struct scmi_protocol_handle *ph,
388 const void *response,
389 struct scmi_iterator_state *st, void *priv)
390 {
391 struct scmi_opp *opp;
392 struct scmi_perf_ipriv *p = priv;
393
394 opp = &p->perf_dom->opp[st->desc_index + st->loop_idx];
395 if (PROTOCOL_REV_MAJOR(p->version) <= 0x3)
396 process_response_opp(opp, st->loop_idx, response);
397 else
398 process_response_opp_v4(ph->dev, p->perf_dom, opp, st->loop_idx,
399 response);
400 p->perf_dom->opp_count++;
401
402 dev_dbg(ph->dev, "Level %d Power %d Latency %dus Ifreq %d Index %d\n",
403 opp->perf, opp->power, opp->trans_latency_us,
404 opp->indicative_freq, opp->level_index);
405
406 return 0;
407 }
408
409 static int
scmi_perf_describe_levels_get(const struct scmi_protocol_handle * ph,struct perf_dom_info * perf_dom,u32 version)410 scmi_perf_describe_levels_get(const struct scmi_protocol_handle *ph,
411 struct perf_dom_info *perf_dom, u32 version)
412 {
413 int ret;
414 void *iter;
415 struct scmi_iterator_ops ops = {
416 .prepare_message = iter_perf_levels_prepare_message,
417 .update_state = iter_perf_levels_update_state,
418 .process_response = iter_perf_levels_process_response,
419 };
420 struct scmi_perf_ipriv ppriv = {
421 .version = version,
422 .perf_dom = perf_dom,
423 };
424
425 iter = ph->hops->iter_response_init(ph, &ops, MAX_OPPS,
426 PERF_DESCRIBE_LEVELS,
427 sizeof(struct scmi_msg_perf_describe_levels),
428 &ppriv);
429 if (IS_ERR(iter))
430 return PTR_ERR(iter);
431
432 ret = ph->hops->iter_response_run(iter);
433 if (ret)
434 return ret;
435
436 if (perf_dom->opp_count)
437 sort(perf_dom->opp, perf_dom->opp_count,
438 sizeof(struct scmi_opp), opp_cmp_func, NULL);
439
440 return ret;
441 }
442
scmi_perf_num_domains_get(const struct scmi_protocol_handle * ph)443 static int scmi_perf_num_domains_get(const struct scmi_protocol_handle *ph)
444 {
445 struct scmi_perf_info *pi = ph->get_priv(ph);
446
447 return pi->num_domains;
448 }
449
450 static inline struct perf_dom_info *
scmi_perf_domain_lookup(const struct scmi_protocol_handle * ph,u32 domain)451 scmi_perf_domain_lookup(const struct scmi_protocol_handle *ph, u32 domain)
452 {
453 struct scmi_perf_info *pi = ph->get_priv(ph);
454
455 if (domain >= pi->num_domains)
456 return ERR_PTR(-EINVAL);
457
458 return pi->dom_info + domain;
459 }
460
461 static const struct scmi_perf_domain_info *
scmi_perf_info_get(const struct scmi_protocol_handle * ph,u32 domain)462 scmi_perf_info_get(const struct scmi_protocol_handle *ph, u32 domain)
463 {
464 struct perf_dom_info *dom;
465
466 dom = scmi_perf_domain_lookup(ph, domain);
467 if (IS_ERR(dom))
468 return ERR_PTR(-EINVAL);
469
470 return &dom->info;
471 }
472
scmi_perf_msg_limits_set(const struct scmi_protocol_handle * ph,u32 domain,u32 max_perf,u32 min_perf)473 static int scmi_perf_msg_limits_set(const struct scmi_protocol_handle *ph,
474 u32 domain, u32 max_perf, u32 min_perf)
475 {
476 int ret;
477 struct scmi_xfer *t;
478 struct scmi_perf_set_limits *limits;
479
480 ret = ph->xops->xfer_get_init(ph, PERF_LIMITS_SET,
481 sizeof(*limits), 0, &t);
482 if (ret)
483 return ret;
484
485 limits = t->tx.buf;
486 limits->domain = cpu_to_le32(domain);
487 limits->max_level = cpu_to_le32(max_perf);
488 limits->min_level = cpu_to_le32(min_perf);
489
490 ret = ph->xops->do_xfer(ph, t);
491
492 ph->xops->xfer_put(ph, t);
493 return ret;
494 }
495
__scmi_perf_limits_set(const struct scmi_protocol_handle * ph,struct perf_dom_info * dom,u32 max_perf,u32 min_perf)496 static int __scmi_perf_limits_set(const struct scmi_protocol_handle *ph,
497 struct perf_dom_info *dom, u32 max_perf,
498 u32 min_perf)
499 {
500 if (dom->fc_info && dom->fc_info[PERF_FC_LIMIT].set_addr) {
501 struct scmi_fc_info *fci = &dom->fc_info[PERF_FC_LIMIT];
502
503 trace_scmi_fc_call(SCMI_PROTOCOL_PERF, PERF_LIMITS_SET,
504 dom->id, min_perf, max_perf);
505 iowrite32(max_perf, fci->set_addr);
506 iowrite32(min_perf, fci->set_addr + 4);
507 ph->hops->fastchannel_db_ring(fci->set_db);
508 return 0;
509 }
510
511 return scmi_perf_msg_limits_set(ph, dom->id, max_perf, min_perf);
512 }
513
scmi_perf_limits_set(const struct scmi_protocol_handle * ph,u32 domain,u32 max_perf,u32 min_perf)514 static int scmi_perf_limits_set(const struct scmi_protocol_handle *ph,
515 u32 domain, u32 max_perf, u32 min_perf)
516 {
517 struct scmi_perf_info *pi = ph->get_priv(ph);
518 struct perf_dom_info *dom;
519
520 dom = scmi_perf_domain_lookup(ph, domain);
521 if (IS_ERR(dom))
522 return PTR_ERR(dom);
523
524 if (!dom->set_limits)
525 return -EOPNOTSUPP;
526
527 if (PROTOCOL_REV_MAJOR(pi->version) >= 0x3 && !max_perf && !min_perf)
528 return -EINVAL;
529
530 if (dom->level_indexing_mode) {
531 struct scmi_opp *opp;
532
533 if (min_perf) {
534 opp = xa_load(&dom->opps_by_lvl, min_perf);
535 if (!opp)
536 return -EIO;
537
538 min_perf = opp->level_index;
539 }
540
541 if (max_perf) {
542 opp = xa_load(&dom->opps_by_lvl, max_perf);
543 if (!opp)
544 return -EIO;
545
546 max_perf = opp->level_index;
547 }
548 }
549
550 return __scmi_perf_limits_set(ph, dom, max_perf, min_perf);
551 }
552
scmi_perf_msg_limits_get(const struct scmi_protocol_handle * ph,u32 domain,u32 * max_perf,u32 * min_perf)553 static int scmi_perf_msg_limits_get(const struct scmi_protocol_handle *ph,
554 u32 domain, u32 *max_perf, u32 *min_perf)
555 {
556 int ret;
557 struct scmi_xfer *t;
558 struct scmi_perf_get_limits *limits;
559
560 ret = ph->xops->xfer_get_init(ph, PERF_LIMITS_GET,
561 sizeof(__le32), 0, &t);
562 if (ret)
563 return ret;
564
565 put_unaligned_le32(domain, t->tx.buf);
566
567 ret = ph->xops->do_xfer(ph, t);
568 if (!ret) {
569 limits = t->rx.buf;
570
571 *max_perf = le32_to_cpu(limits->max_level);
572 *min_perf = le32_to_cpu(limits->min_level);
573 }
574
575 ph->xops->xfer_put(ph, t);
576 return ret;
577 }
578
__scmi_perf_limits_get(const struct scmi_protocol_handle * ph,struct perf_dom_info * dom,u32 * max_perf,u32 * min_perf)579 static int __scmi_perf_limits_get(const struct scmi_protocol_handle *ph,
580 struct perf_dom_info *dom, u32 *max_perf,
581 u32 *min_perf)
582 {
583 if (dom->fc_info && dom->fc_info[PERF_FC_LIMIT].get_addr) {
584 struct scmi_fc_info *fci = &dom->fc_info[PERF_FC_LIMIT];
585
586 *max_perf = ioread32(fci->get_addr);
587 *min_perf = ioread32(fci->get_addr + 4);
588 trace_scmi_fc_call(SCMI_PROTOCOL_PERF, PERF_LIMITS_GET,
589 dom->id, *min_perf, *max_perf);
590 return 0;
591 }
592
593 return scmi_perf_msg_limits_get(ph, dom->id, max_perf, min_perf);
594 }
595
scmi_perf_limits_get(const struct scmi_protocol_handle * ph,u32 domain,u32 * max_perf,u32 * min_perf)596 static int scmi_perf_limits_get(const struct scmi_protocol_handle *ph,
597 u32 domain, u32 *max_perf, u32 *min_perf)
598 {
599 int ret;
600 struct perf_dom_info *dom;
601
602 dom = scmi_perf_domain_lookup(ph, domain);
603 if (IS_ERR(dom))
604 return PTR_ERR(dom);
605
606 ret = __scmi_perf_limits_get(ph, dom, max_perf, min_perf);
607 if (ret)
608 return ret;
609
610 if (dom->level_indexing_mode) {
611 struct scmi_opp *opp;
612
613 opp = xa_load(&dom->opps_by_idx, *min_perf);
614 if (!opp)
615 return -EIO;
616
617 *min_perf = opp->perf;
618
619 opp = xa_load(&dom->opps_by_idx, *max_perf);
620 if (!opp)
621 return -EIO;
622
623 *max_perf = opp->perf;
624 }
625
626 return 0;
627 }
628
scmi_perf_msg_level_set(const struct scmi_protocol_handle * ph,u32 domain,u32 level,bool poll)629 static int scmi_perf_msg_level_set(const struct scmi_protocol_handle *ph,
630 u32 domain, u32 level, bool poll)
631 {
632 int ret;
633 struct scmi_xfer *t;
634 struct scmi_perf_set_level *lvl;
635
636 ret = ph->xops->xfer_get_init(ph, PERF_LEVEL_SET, sizeof(*lvl), 0, &t);
637 if (ret)
638 return ret;
639
640 t->hdr.poll_completion = poll;
641 lvl = t->tx.buf;
642 lvl->domain = cpu_to_le32(domain);
643 lvl->level = cpu_to_le32(level);
644
645 ret = ph->xops->do_xfer(ph, t);
646
647 ph->xops->xfer_put(ph, t);
648 return ret;
649 }
650
__scmi_perf_level_set(const struct scmi_protocol_handle * ph,struct perf_dom_info * dom,u32 level,bool poll)651 static int __scmi_perf_level_set(const struct scmi_protocol_handle *ph,
652 struct perf_dom_info *dom, u32 level,
653 bool poll)
654 {
655 if (dom->fc_info && dom->fc_info[PERF_FC_LEVEL].set_addr) {
656 struct scmi_fc_info *fci = &dom->fc_info[PERF_FC_LEVEL];
657
658 trace_scmi_fc_call(SCMI_PROTOCOL_PERF, PERF_LEVEL_SET,
659 dom->id, level, 0);
660 iowrite32(level, fci->set_addr);
661 ph->hops->fastchannel_db_ring(fci->set_db);
662 return 0;
663 }
664
665 return scmi_perf_msg_level_set(ph, dom->id, level, poll);
666 }
667
scmi_perf_level_set(const struct scmi_protocol_handle * ph,u32 domain,u32 level,bool poll)668 static int scmi_perf_level_set(const struct scmi_protocol_handle *ph,
669 u32 domain, u32 level, bool poll)
670 {
671 struct perf_dom_info *dom;
672
673 dom = scmi_perf_domain_lookup(ph, domain);
674 if (IS_ERR(dom))
675 return PTR_ERR(dom);
676
677 if (!dom->info.set_perf)
678 return -EOPNOTSUPP;
679
680 if (dom->level_indexing_mode) {
681 struct scmi_opp *opp;
682
683 opp = xa_load(&dom->opps_by_lvl, level);
684 if (!opp)
685 return -EIO;
686
687 level = opp->level_index;
688 }
689
690 return __scmi_perf_level_set(ph, dom, level, poll);
691 }
692
scmi_perf_msg_level_get(const struct scmi_protocol_handle * ph,u32 domain,u32 * level,bool poll)693 static int scmi_perf_msg_level_get(const struct scmi_protocol_handle *ph,
694 u32 domain, u32 *level, bool poll)
695 {
696 int ret;
697 struct scmi_xfer *t;
698
699 ret = ph->xops->xfer_get_init(ph, PERF_LEVEL_GET,
700 sizeof(u32), sizeof(u32), &t);
701 if (ret)
702 return ret;
703
704 t->hdr.poll_completion = poll;
705 put_unaligned_le32(domain, t->tx.buf);
706
707 ret = ph->xops->do_xfer(ph, t);
708 if (!ret)
709 *level = get_unaligned_le32(t->rx.buf);
710
711 ph->xops->xfer_put(ph, t);
712 return ret;
713 }
714
__scmi_perf_level_get(const struct scmi_protocol_handle * ph,struct perf_dom_info * dom,u32 * level,bool poll)715 static int __scmi_perf_level_get(const struct scmi_protocol_handle *ph,
716 struct perf_dom_info *dom, u32 *level,
717 bool poll)
718 {
719 if (dom->fc_info && dom->fc_info[PERF_FC_LEVEL].get_addr) {
720 *level = ioread32(dom->fc_info[PERF_FC_LEVEL].get_addr);
721 trace_scmi_fc_call(SCMI_PROTOCOL_PERF, PERF_LEVEL_GET,
722 dom->id, *level, 0);
723 return 0;
724 }
725
726 return scmi_perf_msg_level_get(ph, dom->id, level, poll);
727 }
728
scmi_perf_level_get(const struct scmi_protocol_handle * ph,u32 domain,u32 * level,bool poll)729 static int scmi_perf_level_get(const struct scmi_protocol_handle *ph,
730 u32 domain, u32 *level, bool poll)
731 {
732 int ret;
733 struct perf_dom_info *dom;
734
735 dom = scmi_perf_domain_lookup(ph, domain);
736 if (IS_ERR(dom))
737 return PTR_ERR(dom);
738
739 ret = __scmi_perf_level_get(ph, dom, level, poll);
740 if (ret)
741 return ret;
742
743 if (dom->level_indexing_mode) {
744 struct scmi_opp *opp;
745
746 opp = xa_load(&dom->opps_by_idx, *level);
747 if (!opp)
748 return -EIO;
749
750 *level = opp->perf;
751 }
752
753 return 0;
754 }
755
scmi_perf_level_limits_notify(const struct scmi_protocol_handle * ph,u32 domain,int message_id,bool enable)756 static int scmi_perf_level_limits_notify(const struct scmi_protocol_handle *ph,
757 u32 domain, int message_id,
758 bool enable)
759 {
760 int ret;
761 struct scmi_xfer *t;
762 struct scmi_perf_notify_level_or_limits *notify;
763
764 ret = ph->xops->xfer_get_init(ph, message_id, sizeof(*notify), 0, &t);
765 if (ret)
766 return ret;
767
768 notify = t->tx.buf;
769 notify->domain = cpu_to_le32(domain);
770 notify->notify_enable = enable ? cpu_to_le32(BIT(0)) : 0;
771
772 ret = ph->xops->do_xfer(ph, t);
773
774 ph->xops->xfer_put(ph, t);
775 return ret;
776 }
777
scmi_perf_domain_init_fc(const struct scmi_protocol_handle * ph,struct perf_dom_info * dom)778 static void scmi_perf_domain_init_fc(const struct scmi_protocol_handle *ph,
779 struct perf_dom_info *dom)
780 {
781 struct scmi_fc_info *fc;
782
783 fc = devm_kcalloc(ph->dev, PERF_FC_MAX, sizeof(*fc), GFP_KERNEL);
784 if (!fc)
785 return;
786
787 ph->hops->fastchannel_init(ph, PERF_DESCRIBE_FASTCHANNEL,
788 PERF_LEVEL_GET, 4, dom->id,
789 &fc[PERF_FC_LEVEL].get_addr, NULL);
790
791 ph->hops->fastchannel_init(ph, PERF_DESCRIBE_FASTCHANNEL,
792 PERF_LIMITS_GET, 8, dom->id,
793 &fc[PERF_FC_LIMIT].get_addr, NULL);
794
795 if (dom->info.set_perf)
796 ph->hops->fastchannel_init(ph, PERF_DESCRIBE_FASTCHANNEL,
797 PERF_LEVEL_SET, 4, dom->id,
798 &fc[PERF_FC_LEVEL].set_addr,
799 &fc[PERF_FC_LEVEL].set_db);
800
801 if (dom->set_limits)
802 ph->hops->fastchannel_init(ph, PERF_DESCRIBE_FASTCHANNEL,
803 PERF_LIMITS_SET, 8, dom->id,
804 &fc[PERF_FC_LIMIT].set_addr,
805 &fc[PERF_FC_LIMIT].set_db);
806
807 dom->fc_info = fc;
808 }
809
scmi_dvfs_device_opps_add(const struct scmi_protocol_handle * ph,struct device * dev,u32 domain)810 static int scmi_dvfs_device_opps_add(const struct scmi_protocol_handle *ph,
811 struct device *dev, u32 domain)
812 {
813 int idx, ret;
814 unsigned long freq;
815 struct dev_pm_opp_data data = {};
816 struct perf_dom_info *dom;
817
818 dom = scmi_perf_domain_lookup(ph, domain);
819 if (IS_ERR(dom))
820 return PTR_ERR(dom);
821
822 for (idx = 0; idx < dom->opp_count; idx++) {
823 if (!dom->level_indexing_mode)
824 freq = dom->opp[idx].perf * dom->mult_factor;
825 else
826 freq = dom->opp[idx].indicative_freq * dom->mult_factor;
827
828 data.level = dom->opp[idx].perf;
829 data.freq = freq;
830
831 ret = dev_pm_opp_add_dynamic(dev, &data);
832 if (ret) {
833 dev_warn(dev, "failed to add opp %luHz\n", freq);
834 dev_pm_opp_remove_all_dynamic(dev);
835 return ret;
836 }
837
838 dev_dbg(dev, "[%d][%s]:: Registered OPP[%d] %lu\n",
839 domain, dom->info.name, idx, freq);
840 }
841 return 0;
842 }
843
844 static int
scmi_dvfs_transition_latency_get(const struct scmi_protocol_handle * ph,u32 domain)845 scmi_dvfs_transition_latency_get(const struct scmi_protocol_handle *ph,
846 u32 domain)
847 {
848 struct perf_dom_info *dom;
849
850 dom = scmi_perf_domain_lookup(ph, domain);
851 if (IS_ERR(dom))
852 return PTR_ERR(dom);
853
854 /* uS to nS */
855 return dom->opp[dom->opp_count - 1].trans_latency_us * 1000;
856 }
857
scmi_dvfs_freq_set(const struct scmi_protocol_handle * ph,u32 domain,unsigned long freq,bool poll)858 static int scmi_dvfs_freq_set(const struct scmi_protocol_handle *ph, u32 domain,
859 unsigned long freq, bool poll)
860 {
861 unsigned int level;
862 struct perf_dom_info *dom;
863
864 dom = scmi_perf_domain_lookup(ph, domain);
865 if (IS_ERR(dom))
866 return PTR_ERR(dom);
867
868 if (!dom->level_indexing_mode) {
869 level = freq / dom->mult_factor;
870 } else {
871 struct scmi_opp *opp;
872
873 opp = LOOKUP_BY_FREQ(dom->opps_by_freq,
874 freq / dom->mult_factor);
875 if (!opp)
876 return -EIO;
877
878 level = opp->level_index;
879 }
880
881 return __scmi_perf_level_set(ph, dom, level, poll);
882 }
883
scmi_dvfs_freq_get(const struct scmi_protocol_handle * ph,u32 domain,unsigned long * freq,bool poll)884 static int scmi_dvfs_freq_get(const struct scmi_protocol_handle *ph, u32 domain,
885 unsigned long *freq, bool poll)
886 {
887 int ret;
888 u32 level;
889 struct perf_dom_info *dom;
890
891 dom = scmi_perf_domain_lookup(ph, domain);
892 if (IS_ERR(dom))
893 return PTR_ERR(dom);
894
895 ret = __scmi_perf_level_get(ph, dom, &level, poll);
896 if (ret)
897 return ret;
898
899 if (!dom->level_indexing_mode) {
900 *freq = level * dom->mult_factor;
901 } else {
902 struct scmi_opp *opp;
903
904 opp = xa_load(&dom->opps_by_idx, level);
905 if (!opp)
906 return -EIO;
907
908 *freq = opp->indicative_freq * dom->mult_factor;
909 }
910
911 return ret;
912 }
913
scmi_dvfs_est_power_get(const struct scmi_protocol_handle * ph,u32 domain,unsigned long * freq,unsigned long * power)914 static int scmi_dvfs_est_power_get(const struct scmi_protocol_handle *ph,
915 u32 domain, unsigned long *freq,
916 unsigned long *power)
917 {
918 struct perf_dom_info *dom;
919 unsigned long opp_freq;
920 int idx, ret = -EINVAL;
921 struct scmi_opp *opp;
922
923 dom = scmi_perf_domain_lookup(ph, domain);
924 if (IS_ERR(dom))
925 return PTR_ERR(dom);
926
927 for (opp = dom->opp, idx = 0; idx < dom->opp_count; idx++, opp++) {
928 if (!dom->level_indexing_mode)
929 opp_freq = opp->perf * dom->mult_factor;
930 else
931 opp_freq = opp->indicative_freq * dom->mult_factor;
932
933 if (opp_freq < *freq)
934 continue;
935
936 *freq = opp_freq;
937 *power = opp->power;
938 ret = 0;
939 break;
940 }
941
942 return ret;
943 }
944
scmi_fast_switch_possible(const struct scmi_protocol_handle * ph,u32 domain)945 static bool scmi_fast_switch_possible(const struct scmi_protocol_handle *ph,
946 u32 domain)
947 {
948 struct perf_dom_info *dom;
949
950 dom = scmi_perf_domain_lookup(ph, domain);
951 if (IS_ERR(dom))
952 return false;
953
954 return dom->fc_info && dom->fc_info[PERF_FC_LEVEL].set_addr;
955 }
956
957 static enum scmi_power_scale
scmi_power_scale_get(const struct scmi_protocol_handle * ph)958 scmi_power_scale_get(const struct scmi_protocol_handle *ph)
959 {
960 struct scmi_perf_info *pi = ph->get_priv(ph);
961
962 return pi->power_scale;
963 }
964
965 static const struct scmi_perf_proto_ops perf_proto_ops = {
966 .num_domains_get = scmi_perf_num_domains_get,
967 .info_get = scmi_perf_info_get,
968 .limits_set = scmi_perf_limits_set,
969 .limits_get = scmi_perf_limits_get,
970 .level_set = scmi_perf_level_set,
971 .level_get = scmi_perf_level_get,
972 .transition_latency_get = scmi_dvfs_transition_latency_get,
973 .device_opps_add = scmi_dvfs_device_opps_add,
974 .freq_set = scmi_dvfs_freq_set,
975 .freq_get = scmi_dvfs_freq_get,
976 .est_power_get = scmi_dvfs_est_power_get,
977 .fast_switch_possible = scmi_fast_switch_possible,
978 .power_scale_get = scmi_power_scale_get,
979 };
980
scmi_perf_set_notify_enabled(const struct scmi_protocol_handle * ph,u8 evt_id,u32 src_id,bool enable)981 static int scmi_perf_set_notify_enabled(const struct scmi_protocol_handle *ph,
982 u8 evt_id, u32 src_id, bool enable)
983 {
984 int ret, cmd_id;
985
986 if (evt_id >= ARRAY_SIZE(evt_2_cmd))
987 return -EINVAL;
988
989 cmd_id = evt_2_cmd[evt_id];
990 ret = scmi_perf_level_limits_notify(ph, src_id, cmd_id, enable);
991 if (ret)
992 pr_debug("FAIL_ENABLED - evt[%X] dom[%d] - ret:%d\n",
993 evt_id, src_id, ret);
994
995 return ret;
996 }
997
scmi_perf_fill_custom_report(const struct scmi_protocol_handle * ph,u8 evt_id,ktime_t timestamp,const void * payld,size_t payld_sz,void * report,u32 * src_id)998 static void *scmi_perf_fill_custom_report(const struct scmi_protocol_handle *ph,
999 u8 evt_id, ktime_t timestamp,
1000 const void *payld, size_t payld_sz,
1001 void *report, u32 *src_id)
1002 {
1003 void *rep = NULL;
1004
1005 switch (evt_id) {
1006 case SCMI_EVENT_PERFORMANCE_LIMITS_CHANGED:
1007 {
1008 const struct scmi_perf_limits_notify_payld *p = payld;
1009 struct scmi_perf_limits_report *r = report;
1010
1011 if (sizeof(*p) != payld_sz)
1012 break;
1013
1014 r->timestamp = timestamp;
1015 r->agent_id = le32_to_cpu(p->agent_id);
1016 r->domain_id = le32_to_cpu(p->domain_id);
1017 r->range_max = le32_to_cpu(p->range_max);
1018 r->range_min = le32_to_cpu(p->range_min);
1019 *src_id = r->domain_id;
1020 rep = r;
1021 break;
1022 }
1023 case SCMI_EVENT_PERFORMANCE_LEVEL_CHANGED:
1024 {
1025 const struct scmi_perf_level_notify_payld *p = payld;
1026 struct scmi_perf_level_report *r = report;
1027
1028 if (sizeof(*p) != payld_sz)
1029 break;
1030
1031 r->timestamp = timestamp;
1032 r->agent_id = le32_to_cpu(p->agent_id);
1033 r->domain_id = le32_to_cpu(p->domain_id);
1034 r->performance_level = le32_to_cpu(p->performance_level);
1035 *src_id = r->domain_id;
1036 rep = r;
1037 break;
1038 }
1039 default:
1040 break;
1041 }
1042
1043 return rep;
1044 }
1045
scmi_perf_get_num_sources(const struct scmi_protocol_handle * ph)1046 static int scmi_perf_get_num_sources(const struct scmi_protocol_handle *ph)
1047 {
1048 struct scmi_perf_info *pi = ph->get_priv(ph);
1049
1050 if (!pi)
1051 return -EINVAL;
1052
1053 return pi->num_domains;
1054 }
1055
1056 static const struct scmi_event perf_events[] = {
1057 {
1058 .id = SCMI_EVENT_PERFORMANCE_LIMITS_CHANGED,
1059 .max_payld_sz = sizeof(struct scmi_perf_limits_notify_payld),
1060 .max_report_sz = sizeof(struct scmi_perf_limits_report),
1061 },
1062 {
1063 .id = SCMI_EVENT_PERFORMANCE_LEVEL_CHANGED,
1064 .max_payld_sz = sizeof(struct scmi_perf_level_notify_payld),
1065 .max_report_sz = sizeof(struct scmi_perf_level_report),
1066 },
1067 };
1068
1069 static const struct scmi_event_ops perf_event_ops = {
1070 .get_num_sources = scmi_perf_get_num_sources,
1071 .set_notify_enabled = scmi_perf_set_notify_enabled,
1072 .fill_custom_report = scmi_perf_fill_custom_report,
1073 };
1074
1075 static const struct scmi_protocol_events perf_protocol_events = {
1076 .queue_sz = SCMI_PROTO_QUEUE_SZ,
1077 .ops = &perf_event_ops,
1078 .evts = perf_events,
1079 .num_events = ARRAY_SIZE(perf_events),
1080 };
1081
scmi_perf_protocol_init(const struct scmi_protocol_handle * ph)1082 static int scmi_perf_protocol_init(const struct scmi_protocol_handle *ph)
1083 {
1084 int domain, ret;
1085 u32 version;
1086 struct scmi_perf_info *pinfo;
1087
1088 ret = ph->xops->version_get(ph, &version);
1089 if (ret)
1090 return ret;
1091
1092 dev_dbg(ph->dev, "Performance Version %d.%d\n",
1093 PROTOCOL_REV_MAJOR(version), PROTOCOL_REV_MINOR(version));
1094
1095 pinfo = devm_kzalloc(ph->dev, sizeof(*pinfo), GFP_KERNEL);
1096 if (!pinfo)
1097 return -ENOMEM;
1098
1099 pinfo->version = version;
1100
1101 ret = scmi_perf_attributes_get(ph, pinfo);
1102 if (ret)
1103 return ret;
1104
1105 pinfo->dom_info = devm_kcalloc(ph->dev, pinfo->num_domains,
1106 sizeof(*pinfo->dom_info), GFP_KERNEL);
1107 if (!pinfo->dom_info)
1108 return -ENOMEM;
1109
1110 for (domain = 0; domain < pinfo->num_domains; domain++) {
1111 struct perf_dom_info *dom = pinfo->dom_info + domain;
1112
1113 dom->id = domain;
1114 scmi_perf_domain_attributes_get(ph, dom, version);
1115 scmi_perf_describe_levels_get(ph, dom, version);
1116
1117 if (dom->perf_fastchannels)
1118 scmi_perf_domain_init_fc(ph, dom);
1119 }
1120
1121 ret = devm_add_action_or_reset(ph->dev, scmi_perf_xa_destroy, pinfo);
1122 if (ret)
1123 return ret;
1124
1125 return ph->set_priv(ph, pinfo, version);
1126 }
1127
1128 static const struct scmi_protocol scmi_perf = {
1129 .id = SCMI_PROTOCOL_PERF,
1130 .owner = THIS_MODULE,
1131 .instance_init = &scmi_perf_protocol_init,
1132 .ops = &perf_proto_ops,
1133 .events = &perf_protocol_events,
1134 .supported_version = SCMI_PROTOCOL_SUPPORTED_VERSION,
1135 };
1136
1137 DEFINE_SCMI_PROTOCOL_REGISTER_UNREGISTER(perf, scmi_perf)
1138