1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * HiSilicon uncore frequency scaling driver
4 *
5 * Copyright (c) 2025 HiSilicon Co., Ltd
6 */
7
8 #include <linux/acpi.h>
9 #include <linux/bits.h>
10 #include <linux/cleanup.h>
11 #include <linux/devfreq.h>
12 #include <linux/devfreq-governor.h>
13 #include <linux/device.h>
14 #include <linux/dev_printk.h>
15 #include <linux/errno.h>
16 #include <linux/iopoll.h>
17 #include <linux/kernel.h>
18 #include <linux/ktime.h>
19 #include <linux/mailbox_client.h>
20 #include <linux/module.h>
21 #include <linux/mutex.h>
22 #include <linux/platform_device.h>
23 #include <linux/pm_opp.h>
24 #include <linux/property.h>
25 #include <linux/topology.h>
26 #include <linux/units.h>
27 #include <acpi/pcc.h>
28
29 struct hisi_uncore_pcc_data {
30 u16 status;
31 u16 resv;
32 u32 data;
33 };
34
35 struct hisi_uncore_pcc_shmem {
36 struct acpi_pcct_shared_memory head;
37 struct hisi_uncore_pcc_data pcc_data;
38 };
39
40 enum hisi_uncore_pcc_cmd_type {
41 HUCF_PCC_CMD_GET_CAP = 0,
42 HUCF_PCC_CMD_GET_FREQ,
43 HUCF_PCC_CMD_SET_FREQ,
44 HUCF_PCC_CMD_GET_MODE,
45 HUCF_PCC_CMD_SET_MODE,
46 HUCF_PCC_CMD_GET_PLAT_FREQ_NUM,
47 HUCF_PCC_CMD_GET_PLAT_FREQ_BY_IDX,
48 HUCF_PCC_CMD_MAX = 256
49 };
50
51 static int hisi_platform_gov_usage;
52 static DEFINE_MUTEX(hisi_platform_gov_usage_lock);
53
54 enum hisi_uncore_freq_mode {
55 HUCF_MODE_PLATFORM = 0,
56 HUCF_MODE_OS,
57 HUCF_MODE_MAX
58 };
59
60 #define HUCF_CAP_PLATFORM_CTRL BIT(0)
61
62 /**
63 * struct hisi_uncore_freq - hisi uncore frequency scaling device data
64 * @dev: device of this frequency scaling driver
65 * @cl: mailbox client object
66 * @pchan: PCC mailbox channel
67 * @chan_id: PCC channel ID
68 * @last_cmd_cmpl_time: timestamp of the last completed PCC command
69 * @pcc_lock: PCC channel lock
70 * @devfreq: devfreq data of this hisi_uncore_freq device
71 * @related_cpus: CPUs whose performance is majorly affected by this
72 * uncore frequency domain
73 * @cap: capability flag
74 */
75 struct hisi_uncore_freq {
76 struct device *dev;
77 struct mbox_client cl;
78 struct pcc_mbox_chan *pchan;
79 int chan_id;
80 ktime_t last_cmd_cmpl_time;
81 struct mutex pcc_lock;
82 struct devfreq *devfreq;
83 struct cpumask related_cpus;
84 u32 cap;
85 };
86
87 /* PCC channel timeout = PCC nominal latency * NUM */
88 #define HUCF_PCC_POLL_TIMEOUT_NUM 1000
89 #define HUCF_PCC_POLL_INTERVAL_US 5
90
91 /* Default polling interval in ms for devfreq governors*/
92 #define HUCF_DEFAULT_POLLING_MS 100
93
hisi_uncore_free_pcc_chan(struct hisi_uncore_freq * uncore)94 static void hisi_uncore_free_pcc_chan(struct hisi_uncore_freq *uncore)
95 {
96 guard(mutex)(&uncore->pcc_lock);
97 pcc_mbox_free_channel(uncore->pchan);
98 uncore->pchan = NULL;
99 }
100
devm_hisi_uncore_free_pcc_chan(void * data)101 static void devm_hisi_uncore_free_pcc_chan(void *data)
102 {
103 hisi_uncore_free_pcc_chan(data);
104 }
105
hisi_uncore_request_pcc_chan(struct hisi_uncore_freq * uncore)106 static int hisi_uncore_request_pcc_chan(struct hisi_uncore_freq *uncore)
107 {
108 struct device *dev = uncore->dev;
109 struct pcc_mbox_chan *pcc_chan;
110
111 uncore->cl = (struct mbox_client) {
112 .dev = dev,
113 .tx_block = false,
114 .knows_txdone = true,
115 };
116
117 pcc_chan = pcc_mbox_request_channel(&uncore->cl, uncore->chan_id);
118 if (IS_ERR(pcc_chan))
119 return dev_err_probe(dev, PTR_ERR(pcc_chan),
120 "Failed to request PCC channel %u\n", uncore->chan_id);
121
122 if (!pcc_chan->shmem_base_addr) {
123 pcc_mbox_free_channel(pcc_chan);
124 return dev_err_probe(dev, -EINVAL,
125 "Invalid PCC shared memory address\n");
126 }
127
128 if (pcc_chan->shmem_size < sizeof(struct hisi_uncore_pcc_shmem)) {
129 pcc_mbox_free_channel(pcc_chan);
130 return dev_err_probe(dev, -EINVAL,
131 "Invalid PCC shared memory size (%lluB)\n",
132 pcc_chan->shmem_size);
133 }
134
135 uncore->pchan = pcc_chan;
136
137 return devm_add_action_or_reset(uncore->dev,
138 devm_hisi_uncore_free_pcc_chan, uncore);
139 }
140
hisi_uncore_pcc_reg_scan(struct acpi_resource * res,void * ctx)141 static acpi_status hisi_uncore_pcc_reg_scan(struct acpi_resource *res,
142 void *ctx)
143 {
144 struct acpi_resource_generic_register *reg;
145 struct hisi_uncore_freq *uncore;
146
147 if (!res || res->type != ACPI_RESOURCE_TYPE_GENERIC_REGISTER)
148 return AE_OK;
149
150 reg = &res->data.generic_reg;
151 if (reg->space_id != ACPI_ADR_SPACE_PLATFORM_COMM)
152 return AE_OK;
153
154 if (!ctx)
155 return AE_ERROR;
156
157 uncore = ctx;
158 /* PCC subspace ID stored in Access Size */
159 uncore->chan_id = reg->access_size;
160
161 return AE_CTRL_TERMINATE;
162 }
163
hisi_uncore_init_pcc_chan(struct hisi_uncore_freq * uncore)164 static int hisi_uncore_init_pcc_chan(struct hisi_uncore_freq *uncore)
165 {
166 acpi_handle handle = ACPI_HANDLE(uncore->dev);
167 acpi_status status;
168 int rc;
169
170 uncore->chan_id = -1;
171 status = acpi_walk_resources(handle, METHOD_NAME__CRS,
172 hisi_uncore_pcc_reg_scan, uncore);
173 if (ACPI_FAILURE(status) || uncore->chan_id < 0)
174 return dev_err_probe(uncore->dev, -ENODEV,
175 "Failed to get a PCC channel\n");
176
177
178 rc = devm_mutex_init(uncore->dev, &uncore->pcc_lock);
179 if (rc)
180 return rc;
181
182 return hisi_uncore_request_pcc_chan(uncore);
183 }
184
hisi_uncore_cmd_send(struct hisi_uncore_freq * uncore,u8 cmd,u32 * data)185 static int hisi_uncore_cmd_send(struct hisi_uncore_freq *uncore,
186 u8 cmd, u32 *data)
187 {
188 struct hisi_uncore_pcc_shmem __iomem *addr;
189 struct hisi_uncore_pcc_shmem shmem;
190 struct pcc_mbox_chan *pchan;
191 unsigned int mrtt;
192 s64 time_delta;
193 u16 status;
194 int rc;
195
196 guard(mutex)(&uncore->pcc_lock);
197
198 pchan = uncore->pchan;
199 if (!pchan)
200 return -ENODEV;
201
202 addr = (struct hisi_uncore_pcc_shmem __iomem *)pchan->shmem;
203 if (!addr)
204 return -EINVAL;
205
206 /* Handle the Minimum Request Turnaround Time (MRTT) */
207 mrtt = pchan->min_turnaround_time;
208 time_delta = ktime_us_delta(ktime_get(), uncore->last_cmd_cmpl_time);
209 if (mrtt > time_delta)
210 udelay(mrtt - time_delta);
211
212 /* Copy data */
213 shmem.head = (struct acpi_pcct_shared_memory) {
214 .signature = PCC_SIGNATURE | uncore->chan_id,
215 .command = cmd,
216 };
217 shmem.pcc_data.data = *data;
218 memcpy_toio(addr, &shmem, sizeof(shmem));
219
220 /* Ring doorbell */
221 rc = mbox_send_message(pchan->mchan, &cmd);
222 if (rc < 0) {
223 dev_err(uncore->dev, "Failed to send mbox message, %d\n", rc);
224 return rc;
225 }
226
227 /* Wait status */
228 rc = readw_poll_timeout(&addr->head.status, status,
229 status & (PCC_STATUS_CMD_COMPLETE |
230 PCC_STATUS_ERROR),
231 HUCF_PCC_POLL_INTERVAL_US,
232 pchan->latency * HUCF_PCC_POLL_TIMEOUT_NUM);
233 if (rc) {
234 dev_err(uncore->dev, "PCC channel response timeout, cmd=%u\n", cmd);
235 } else if (status & PCC_STATUS_ERROR) {
236 dev_err(uncore->dev, "PCC cmd error, cmd=%u\n", cmd);
237 rc = -EIO;
238 }
239
240 uncore->last_cmd_cmpl_time = ktime_get();
241
242 /* Copy data back */
243 memcpy_fromio(data, &addr->pcc_data.data, sizeof(*data));
244
245 /* Clear mailbox active req */
246 mbox_client_txdone(pchan->mchan, rc);
247
248 return rc;
249 }
250
hisi_uncore_target(struct device * dev,unsigned long * freq,u32 flags)251 static int hisi_uncore_target(struct device *dev, unsigned long *freq,
252 u32 flags)
253 {
254 struct hisi_uncore_freq *uncore = dev_get_drvdata(dev);
255 struct dev_pm_opp *opp;
256 u32 data;
257
258 if (WARN_ON(!uncore || !uncore->pchan))
259 return -ENODEV;
260
261 opp = devfreq_recommended_opp(dev, freq, flags);
262 if (IS_ERR(opp)) {
263 dev_err(dev, "Failed to get opp for freq %lu hz\n", *freq);
264 return PTR_ERR(opp);
265 }
266
267 data = (u32)(dev_pm_opp_get_freq(opp) / HZ_PER_MHZ);
268
269 dev_pm_opp_put(opp);
270
271 return hisi_uncore_cmd_send(uncore, HUCF_PCC_CMD_SET_FREQ, &data);
272 }
273
hisi_uncore_get_dev_status(struct device * dev,struct devfreq_dev_status * stat)274 static int hisi_uncore_get_dev_status(struct device *dev,
275 struct devfreq_dev_status *stat)
276 {
277 /* Not used */
278 return 0;
279 }
280
hisi_uncore_get_cur_freq(struct device * dev,unsigned long * freq)281 static int hisi_uncore_get_cur_freq(struct device *dev, unsigned long *freq)
282 {
283 struct hisi_uncore_freq *uncore = dev_get_drvdata(dev);
284 u32 data = 0;
285 int rc;
286
287 if (WARN_ON(!uncore || !uncore->pchan))
288 return -ENODEV;
289
290 rc = hisi_uncore_cmd_send(uncore, HUCF_PCC_CMD_GET_FREQ, &data);
291
292 /*
293 * Upon a failure, 'data' remains 0 and 'freq' is set to 0 rather than a
294 * random value. devfreq shouldn't use 'freq' in that case though.
295 */
296 *freq = data * HZ_PER_MHZ;
297
298 return rc;
299 }
300
devm_hisi_uncore_remove_opp(void * data)301 static void devm_hisi_uncore_remove_opp(void *data)
302 {
303 struct hisi_uncore_freq *uncore = data;
304
305 dev_pm_opp_remove_all_dynamic(uncore->dev);
306 }
307
hisi_uncore_init_opp(struct hisi_uncore_freq * uncore)308 static int hisi_uncore_init_opp(struct hisi_uncore_freq *uncore)
309 {
310 struct device *dev = uncore->dev;
311 unsigned long freq_mhz;
312 u32 num, index;
313 u32 data = 0;
314 int rc;
315
316 rc = hisi_uncore_cmd_send(uncore, HUCF_PCC_CMD_GET_PLAT_FREQ_NUM,
317 &data);
318 if (rc)
319 return dev_err_probe(dev, rc, "Failed to get plat freq num\n");
320
321 num = data;
322
323 for (index = 0; index < num; index++) {
324 data = index;
325 rc = hisi_uncore_cmd_send(uncore,
326 HUCF_PCC_CMD_GET_PLAT_FREQ_BY_IDX,
327 &data);
328 if (rc) {
329 dev_pm_opp_remove_all_dynamic(dev);
330 return dev_err_probe(dev, rc,
331 "Failed to get plat freq at index %u\n", index);
332 }
333 freq_mhz = data;
334
335 /* Don't care OPP voltage, take 1V as default */
336 rc = dev_pm_opp_add(dev, freq_mhz * HZ_PER_MHZ, 1000000);
337 if (rc) {
338 dev_pm_opp_remove_all_dynamic(dev);
339 return dev_err_probe(dev, rc,
340 "Add OPP %lu failed\n", freq_mhz);
341 }
342 }
343
344 return devm_add_action_or_reset(dev, devm_hisi_uncore_remove_opp,
345 uncore);
346 }
347
hisi_platform_gov_func(struct devfreq * df,unsigned long * freq)348 static int hisi_platform_gov_func(struct devfreq *df, unsigned long *freq)
349 {
350 /*
351 * Platform-controlled mode doesn't care the frequency issued from
352 * devfreq, so just pick the max freq.
353 */
354 *freq = DEVFREQ_MAX_FREQ;
355
356 return 0;
357 }
358
hisi_platform_gov_handler(struct devfreq * df,unsigned int event,void * val)359 static int hisi_platform_gov_handler(struct devfreq *df, unsigned int event,
360 void *val)
361 {
362 struct hisi_uncore_freq *uncore = dev_get_drvdata(df->dev.parent);
363 int rc = 0;
364 u32 data;
365
366 if (WARN_ON(!uncore || !uncore->pchan))
367 return -ENODEV;
368
369 switch (event) {
370 case DEVFREQ_GOV_START:
371 data = HUCF_MODE_PLATFORM;
372 rc = hisi_uncore_cmd_send(uncore, HUCF_PCC_CMD_SET_MODE, &data);
373 if (rc)
374 dev_err(uncore->dev, "Failed to set platform mode (%d)\n", rc);
375 break;
376 case DEVFREQ_GOV_STOP:
377 data = HUCF_MODE_OS;
378 rc = hisi_uncore_cmd_send(uncore, HUCF_PCC_CMD_SET_MODE, &data);
379 if (rc)
380 dev_err(uncore->dev, "Failed to set os mode (%d)\n", rc);
381 break;
382 default:
383 break;
384 }
385
386 return rc;
387 }
388
389 /*
390 * In the platform-controlled mode, the platform decides the uncore frequency
391 * and ignores the frequency issued from the driver.
392 * Thus, create a pseudo 'hisi_platform' governor that stops devfreq monitor
393 * from working so as to save meaningless overhead.
394 */
395 static struct devfreq_governor hisi_platform_governor = {
396 .name = "hisi_platform",
397 /*
398 * Set interrupt_driven to skip the devfreq monitor mechanism, though
399 * this governor is not interrupt-driven.
400 */
401 .flags = DEVFREQ_GOV_FLAG_IRQ_DRIVEN,
402 .get_target_freq = hisi_platform_gov_func,
403 .event_handler = hisi_platform_gov_handler,
404 };
405
hisi_uncore_remove_platform_gov(struct hisi_uncore_freq * uncore)406 static void hisi_uncore_remove_platform_gov(struct hisi_uncore_freq *uncore)
407 {
408 u32 data = HUCF_MODE_PLATFORM;
409 int rc;
410
411 if (!(uncore->cap & HUCF_CAP_PLATFORM_CTRL))
412 return;
413
414 guard(mutex)(&hisi_platform_gov_usage_lock);
415
416 if (--hisi_platform_gov_usage == 0) {
417 rc = devfreq_remove_governor(&hisi_platform_governor);
418 if (rc)
419 dev_err(uncore->dev, "Failed to remove hisi_platform gov (%d)\n", rc);
420 }
421
422 /*
423 * Set to the platform-controlled mode on exit if supported, so as to
424 * have a certain behaviour when the driver is detached.
425 */
426 rc = hisi_uncore_cmd_send(uncore, HUCF_PCC_CMD_SET_MODE, &data);
427 if (rc)
428 dev_err(uncore->dev, "Failed to set platform mode on exit (%d)\n", rc);
429 }
430
devm_hisi_uncore_remove_platform_gov(void * data)431 static void devm_hisi_uncore_remove_platform_gov(void *data)
432 {
433 hisi_uncore_remove_platform_gov(data);
434 }
435
hisi_uncore_add_platform_gov(struct hisi_uncore_freq * uncore)436 static int hisi_uncore_add_platform_gov(struct hisi_uncore_freq *uncore)
437 {
438 if (!(uncore->cap & HUCF_CAP_PLATFORM_CTRL))
439 return 0;
440
441 guard(mutex)(&hisi_platform_gov_usage_lock);
442
443 if (hisi_platform_gov_usage == 0) {
444 int rc = devfreq_add_governor(&hisi_platform_governor);
445 if (rc)
446 return rc;
447 }
448 hisi_platform_gov_usage++;
449
450 return devm_add_action_or_reset(uncore->dev,
451 devm_hisi_uncore_remove_platform_gov,
452 uncore);
453 }
454
455 /*
456 * Returns:
457 * 0 if success, uncore->related_cpus is set.
458 * -EINVAL if property not found, or property found but without elements in it,
459 * or invalid arguments received in any of the subroutine.
460 * Other error codes if it goes wrong.
461 */
hisi_uncore_mark_related_cpus(struct hisi_uncore_freq * uncore,char * property,int (* get_topo_id)(int cpu),const struct cpumask * (* get_cpumask)(int cpu))462 static int hisi_uncore_mark_related_cpus(struct hisi_uncore_freq *uncore,
463 char *property, int (*get_topo_id)(int cpu),
464 const struct cpumask *(*get_cpumask)(int cpu))
465 {
466 unsigned int i, cpu;
467 size_t len;
468 int rc;
469
470 rc = device_property_count_u32(uncore->dev, property);
471 if (rc < 0)
472 return rc;
473 if (rc == 0)
474 return -EINVAL;
475
476 len = rc;
477 u32 *num __free(kfree) = kzalloc_objs(*num, len);
478 if (!num)
479 return -ENOMEM;
480
481 rc = device_property_read_u32_array(uncore->dev, property, num, len);
482 if (rc)
483 return rc;
484
485 for (i = 0; i < len; i++) {
486 for_each_possible_cpu(cpu) {
487 if (get_topo_id(cpu) != num[i])
488 continue;
489
490 cpumask_or(&uncore->related_cpus,
491 &uncore->related_cpus, get_cpumask(cpu));
492 break;
493 }
494 }
495
496 return 0;
497 }
498
get_package_id(int cpu)499 static int get_package_id(int cpu)
500 {
501 return topology_physical_package_id(cpu);
502 }
503
get_package_cpumask(int cpu)504 static const struct cpumask *get_package_cpumask(int cpu)
505 {
506 return topology_core_cpumask(cpu);
507 }
508
get_cluster_id(int cpu)509 static int get_cluster_id(int cpu)
510 {
511 return topology_cluster_id(cpu);
512 }
513
get_cluster_cpumask(int cpu)514 static const struct cpumask *get_cluster_cpumask(int cpu)
515 {
516 return topology_cluster_cpumask(cpu);
517 }
518
hisi_uncore_mark_related_cpus_wrap(struct hisi_uncore_freq * uncore)519 static int hisi_uncore_mark_related_cpus_wrap(struct hisi_uncore_freq *uncore)
520 {
521 int rc;
522
523 cpumask_clear(&uncore->related_cpus);
524
525 rc = hisi_uncore_mark_related_cpus(uncore, "related-package",
526 get_package_id,
527 get_package_cpumask);
528 /* Success, or firmware probably broken */
529 if (!rc || rc != -EINVAL)
530 return rc;
531
532 /* Try another property name if rc == -EINVAL */
533 return hisi_uncore_mark_related_cpus(uncore, "related-cluster",
534 get_cluster_id,
535 get_cluster_cpumask);
536 }
537
related_cpus_show(struct device * dev,struct device_attribute * attr,char * buf)538 static ssize_t related_cpus_show(struct device *dev,
539 struct device_attribute *attr, char *buf)
540 {
541 struct hisi_uncore_freq *uncore = dev_get_drvdata(dev->parent);
542
543 return sysfs_emit(buf, "%*pbl\n", cpumask_pr_args(&uncore->related_cpus));
544 }
545
546 static DEVICE_ATTR_RO(related_cpus);
547
548 static struct attribute *hisi_uncore_freq_attrs[] = {
549 &dev_attr_related_cpus.attr,
550 NULL
551 };
552 ATTRIBUTE_GROUPS(hisi_uncore_freq);
553
hisi_uncore_devfreq_register(struct hisi_uncore_freq * uncore)554 static int hisi_uncore_devfreq_register(struct hisi_uncore_freq *uncore)
555 {
556 struct devfreq_dev_profile *profile;
557 struct device *dev = uncore->dev;
558 unsigned long freq;
559 u32 data;
560 int rc;
561
562 rc = hisi_uncore_get_cur_freq(dev, &freq);
563 if (rc)
564 return dev_err_probe(dev, rc, "Failed to get plat init freq\n");
565
566 profile = devm_kzalloc(dev, sizeof(*profile), GFP_KERNEL);
567 if (!profile)
568 return -ENOMEM;
569
570 *profile = (struct devfreq_dev_profile) {
571 .initial_freq = freq,
572 .polling_ms = HUCF_DEFAULT_POLLING_MS,
573 .timer = DEVFREQ_TIMER_DELAYED,
574 .target = hisi_uncore_target,
575 .get_dev_status = hisi_uncore_get_dev_status,
576 .get_cur_freq = hisi_uncore_get_cur_freq,
577 .dev_groups = hisi_uncore_freq_groups,
578 };
579
580 rc = hisi_uncore_cmd_send(uncore, HUCF_PCC_CMD_GET_MODE, &data);
581 if (rc)
582 return dev_err_probe(dev, rc, "Failed to get operate mode\n");
583
584 if (data == HUCF_MODE_PLATFORM)
585 uncore->devfreq = devm_devfreq_add_device(dev, profile,
586 hisi_platform_governor.name, NULL);
587 else
588 uncore->devfreq = devm_devfreq_add_device(dev, profile,
589 DEVFREQ_GOV_PERFORMANCE, NULL);
590 if (IS_ERR(uncore->devfreq))
591 return dev_err_probe(dev, PTR_ERR(uncore->devfreq),
592 "Failed to add devfreq device\n");
593
594 return 0;
595 }
596
hisi_uncore_freq_probe(struct platform_device * pdev)597 static int hisi_uncore_freq_probe(struct platform_device *pdev)
598 {
599 struct hisi_uncore_freq *uncore;
600 struct device *dev = &pdev->dev;
601 u32 cap;
602 int rc;
603
604 uncore = devm_kzalloc(dev, sizeof(*uncore), GFP_KERNEL);
605 if (!uncore)
606 return -ENOMEM;
607
608 uncore->dev = dev;
609 platform_set_drvdata(pdev, uncore);
610
611 rc = hisi_uncore_init_pcc_chan(uncore);
612 if (rc)
613 return dev_err_probe(dev, rc, "Failed to init PCC channel\n");
614
615 rc = hisi_uncore_init_opp(uncore);
616 if (rc)
617 return dev_err_probe(dev, rc, "Failed to init OPP\n");
618
619 rc = hisi_uncore_cmd_send(uncore, HUCF_PCC_CMD_GET_CAP, &cap);
620 if (rc)
621 return dev_err_probe(dev, rc, "Failed to get capability\n");
622
623 uncore->cap = cap;
624
625 rc = hisi_uncore_add_platform_gov(uncore);
626 if (rc)
627 return dev_err_probe(dev, rc, "Failed to add hisi_platform governor\n");
628
629 rc = hisi_uncore_mark_related_cpus_wrap(uncore);
630 if (rc)
631 return dev_err_probe(dev, rc, "Failed to mark related cpus\n");
632
633 rc = hisi_uncore_devfreq_register(uncore);
634 if (rc)
635 return dev_err_probe(dev, rc, "Failed to register devfreq\n");
636
637 return 0;
638 }
639
640 static const struct acpi_device_id hisi_uncore_freq_acpi_match[] = {
641 { "HISI04F1", },
642 { }
643 };
644 MODULE_DEVICE_TABLE(acpi, hisi_uncore_freq_acpi_match);
645
646 static struct platform_driver hisi_uncore_freq_drv = {
647 .probe = hisi_uncore_freq_probe,
648 .driver = {
649 .name = "hisi_uncore_freq",
650 .acpi_match_table = hisi_uncore_freq_acpi_match,
651 },
652 };
653 module_platform_driver(hisi_uncore_freq_drv);
654
655 MODULE_DESCRIPTION("HiSilicon uncore frequency scaling driver");
656 MODULE_AUTHOR("Jie Zhan <zhanjie9@hisilicon.com>");
657 MODULE_LICENSE("GPL");
658