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d2912cb1 | 1 | // SPDX-License-Identifier: GPL-2.0-only |
f47b72a1 VK |
2 | /* |
3 | * Generic OPP OF helpers | |
4 | * | |
5 | * Copyright (C) 2009-2010 Texas Instruments Incorporated. | |
6 | * Nishanth Menon | |
7 | * Romit Dasgupta | |
8 | * Kevin Hilman | |
f47b72a1 VK |
9 | */ |
10 | ||
11 | #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt | |
12 | ||
13 | #include <linux/cpu.h> | |
14 | #include <linux/errno.h> | |
15 | #include <linux/device.h> | |
9867999f | 16 | #include <linux/of_device.h> |
3ba98324 | 17 | #include <linux/pm_domain.h> |
dfbe4678 | 18 | #include <linux/slab.h> |
f47b72a1 | 19 | #include <linux/export.h> |
a4f342b9 | 20 | #include <linux/energy_model.h> |
f47b72a1 VK |
21 | |
22 | #include "opp.h" | |
23 | ||
f06ed90e VK |
24 | /* |
25 | * Returns opp descriptor node for a device node, caller must | |
26 | * do of_node_put(). | |
27 | */ | |
28 | static struct device_node *_opp_of_get_opp_desc_node(struct device_node *np, | |
29 | int index) | |
30 | { | |
31 | /* "operating-points-v2" can be an array for power domain providers */ | |
32 | return of_parse_phandle(np, "operating-points-v2", index); | |
33 | } | |
34 | ||
35 | /* Returns opp descriptor node for a device, caller must do of_node_put() */ | |
36 | struct device_node *dev_pm_opp_of_get_opp_desc_node(struct device *dev) | |
37 | { | |
38 | return _opp_of_get_opp_desc_node(dev->of_node, 0); | |
39 | } | |
40 | EXPORT_SYMBOL_GPL(dev_pm_opp_of_get_opp_desc_node); | |
41 | ||
283d55e6 | 42 | struct opp_table *_managed_opp(struct device *dev, int index) |
f47b72a1 | 43 | { |
b83c1899 | 44 | struct opp_table *opp_table, *managed_table = NULL; |
283d55e6 | 45 | struct device_node *np; |
b83c1899 | 46 | |
283d55e6 VK |
47 | np = _opp_of_get_opp_desc_node(dev->of_node, index); |
48 | if (!np) | |
49 | return NULL; | |
f47b72a1 | 50 | |
052c6f19 | 51 | list_for_each_entry(opp_table, &opp_tables, node) { |
f47b72a1 VK |
52 | if (opp_table->np == np) { |
53 | /* | |
54 | * Multiple devices can point to the same OPP table and | |
55 | * so will have same node-pointer, np. | |
56 | * | |
57 | * But the OPPs will be considered as shared only if the | |
58 | * OPP table contains a "opp-shared" property. | |
59 | */ | |
b83c1899 VK |
60 | if (opp_table->shared_opp == OPP_TABLE_ACCESS_SHARED) { |
61 | _get_opp_table_kref(opp_table); | |
62 | managed_table = opp_table; | |
63 | } | |
79ee2e8f | 64 | |
b83c1899 | 65 | break; |
f47b72a1 VK |
66 | } |
67 | } | |
68 | ||
283d55e6 | 69 | of_node_put(np); |
b83c1899 VK |
70 | |
71 | return managed_table; | |
f47b72a1 VK |
72 | } |
73 | ||
5d6d106f VK |
74 | /* The caller must call dev_pm_opp_put() after the OPP is used */ |
75 | static struct dev_pm_opp *_find_opp_of_np(struct opp_table *opp_table, | |
76 | struct device_node *opp_np) | |
77 | { | |
78 | struct dev_pm_opp *opp; | |
79 | ||
5d6d106f VK |
80 | mutex_lock(&opp_table->lock); |
81 | ||
82 | list_for_each_entry(opp, &opp_table->opp_list, node) { | |
83 | if (opp->np == opp_np) { | |
84 | dev_pm_opp_get(opp); | |
85 | mutex_unlock(&opp_table->lock); | |
86 | return opp; | |
87 | } | |
88 | } | |
89 | ||
90 | mutex_unlock(&opp_table->lock); | |
91 | ||
92 | return NULL; | |
93 | } | |
94 | ||
95 | static struct device_node *of_parse_required_opp(struct device_node *np, | |
96 | int index) | |
97 | { | |
98 | struct device_node *required_np; | |
99 | ||
100 | required_np = of_parse_phandle(np, "required-opps", index); | |
101 | if (unlikely(!required_np)) { | |
102 | pr_err("%s: Unable to parse required-opps: %pOF, index: %d\n", | |
103 | __func__, np, index); | |
104 | } | |
105 | ||
106 | return required_np; | |
107 | } | |
108 | ||
109 | /* The caller must call dev_pm_opp_put_opp_table() after the table is used */ | |
110 | static struct opp_table *_find_table_of_opp_np(struct device_node *opp_np) | |
111 | { | |
112 | struct opp_table *opp_table; | |
699e21e4 | 113 | struct device_node *opp_table_np; |
5d6d106f VK |
114 | |
115 | lockdep_assert_held(&opp_table_lock); | |
116 | ||
699e21e4 VK |
117 | opp_table_np = of_get_parent(opp_np); |
118 | if (!opp_table_np) | |
119 | goto err; | |
120 | ||
121 | /* It is safe to put the node now as all we need now is its address */ | |
122 | of_node_put(opp_table_np); | |
123 | ||
5d6d106f | 124 | list_for_each_entry(opp_table, &opp_tables, node) { |
699e21e4 | 125 | if (opp_table_np == opp_table->np) { |
5d6d106f VK |
126 | _get_opp_table_kref(opp_table); |
127 | return opp_table; | |
128 | } | |
129 | } | |
130 | ||
699e21e4 | 131 | err: |
5d6d106f VK |
132 | return ERR_PTR(-ENODEV); |
133 | } | |
134 | ||
135 | /* Free resources previously acquired by _opp_table_alloc_required_tables() */ | |
136 | static void _opp_table_free_required_tables(struct opp_table *opp_table) | |
137 | { | |
138 | struct opp_table **required_opp_tables = opp_table->required_opp_tables; | |
139 | int i; | |
140 | ||
141 | if (!required_opp_tables) | |
142 | return; | |
143 | ||
144 | for (i = 0; i < opp_table->required_opp_count; i++) { | |
145 | if (IS_ERR_OR_NULL(required_opp_tables[i])) | |
146 | break; | |
147 | ||
148 | dev_pm_opp_put_opp_table(required_opp_tables[i]); | |
149 | } | |
150 | ||
151 | kfree(required_opp_tables); | |
152 | ||
153 | opp_table->required_opp_count = 0; | |
154 | opp_table->required_opp_tables = NULL; | |
155 | } | |
156 | ||
157 | /* | |
158 | * Populate all devices and opp tables which are part of "required-opps" list. | |
159 | * Checking only the first OPP node should be enough. | |
160 | */ | |
161 | static void _opp_table_alloc_required_tables(struct opp_table *opp_table, | |
162 | struct device *dev, | |
163 | struct device_node *opp_np) | |
164 | { | |
165 | struct opp_table **required_opp_tables; | |
166 | struct device_node *required_np, *np; | |
c0ab9e08 | 167 | int count, i; |
5d6d106f VK |
168 | |
169 | /* Traversing the first OPP node is all we need */ | |
170 | np = of_get_next_available_child(opp_np, NULL); | |
171 | if (!np) { | |
172 | dev_err(dev, "Empty OPP table\n"); | |
173 | return; | |
174 | } | |
175 | ||
176 | count = of_count_phandle_with_args(np, "required-opps", NULL); | |
177 | if (!count) | |
178 | goto put_np; | |
179 | ||
180 | required_opp_tables = kcalloc(count, sizeof(*required_opp_tables), | |
181 | GFP_KERNEL); | |
c0ab9e08 | 182 | if (!required_opp_tables) |
5d6d106f VK |
183 | goto put_np; |
184 | ||
185 | opp_table->required_opp_tables = required_opp_tables; | |
186 | opp_table->required_opp_count = count; | |
187 | ||
188 | for (i = 0; i < count; i++) { | |
189 | required_np = of_parse_required_opp(np, i); | |
190 | if (!required_np) | |
191 | goto free_required_tables; | |
192 | ||
193 | required_opp_tables[i] = _find_table_of_opp_np(required_np); | |
194 | of_node_put(required_np); | |
195 | ||
196 | if (IS_ERR(required_opp_tables[i])) | |
197 | goto free_required_tables; | |
198 | ||
199 | /* | |
200 | * We only support genpd's OPPs in the "required-opps" for now, | |
201 | * as we don't know how much about other cases. Error out if the | |
202 | * required OPP doesn't belong to a genpd. | |
203 | */ | |
204 | if (!required_opp_tables[i]->is_genpd) { | |
205 | dev_err(dev, "required-opp doesn't belong to genpd: %pOF\n", | |
206 | required_np); | |
207 | goto free_required_tables; | |
208 | } | |
209 | } | |
210 | ||
211 | goto put_np; | |
212 | ||
213 | free_required_tables: | |
214 | _opp_table_free_required_tables(opp_table); | |
215 | put_np: | |
216 | of_node_put(np); | |
217 | } | |
218 | ||
eb7c8743 VK |
219 | void _of_init_opp_table(struct opp_table *opp_table, struct device *dev, |
220 | int index) | |
f47b72a1 | 221 | { |
f06ed90e VK |
222 | struct device_node *np, *opp_np; |
223 | u32 val; | |
f47b72a1 VK |
224 | |
225 | /* | |
226 | * Only required for backward compatibility with v1 bindings, but isn't | |
227 | * harmful for other cases. And so we do it unconditionally. | |
228 | */ | |
229 | np = of_node_get(dev->of_node); | |
f06ed90e VK |
230 | if (!np) |
231 | return; | |
232 | ||
233 | if (!of_property_read_u32(np, "clock-latency", &val)) | |
234 | opp_table->clock_latency_ns_max = val; | |
235 | of_property_read_u32(np, "voltage-tolerance", | |
236 | &opp_table->voltage_tolerance_v1); | |
237 | ||
61d8e7c7 VK |
238 | if (of_find_property(np, "#power-domain-cells", NULL)) |
239 | opp_table->is_genpd = true; | |
240 | ||
f06ed90e VK |
241 | /* Get OPP table node */ |
242 | opp_np = _opp_of_get_opp_desc_node(np, index); | |
243 | of_node_put(np); | |
244 | ||
245 | if (!opp_np) | |
246 | return; | |
247 | ||
248 | if (of_property_read_bool(opp_np, "opp-shared")) | |
249 | opp_table->shared_opp = OPP_TABLE_ACCESS_SHARED; | |
250 | else | |
251 | opp_table->shared_opp = OPP_TABLE_ACCESS_EXCLUSIVE; | |
252 | ||
253 | opp_table->np = opp_np; | |
254 | ||
5d6d106f | 255 | _opp_table_alloc_required_tables(opp_table, dev, opp_np); |
f06ed90e | 256 | of_node_put(opp_np); |
f47b72a1 VK |
257 | } |
258 | ||
5d6d106f VK |
259 | void _of_clear_opp_table(struct opp_table *opp_table) |
260 | { | |
261 | _opp_table_free_required_tables(opp_table); | |
262 | } | |
263 | ||
da544b61 VK |
264 | /* |
265 | * Release all resources previously acquired with a call to | |
266 | * _of_opp_alloc_required_opps(). | |
267 | */ | |
268 | void _of_opp_free_required_opps(struct opp_table *opp_table, | |
269 | struct dev_pm_opp *opp) | |
270 | { | |
271 | struct dev_pm_opp **required_opps = opp->required_opps; | |
272 | int i; | |
273 | ||
274 | if (!required_opps) | |
275 | return; | |
276 | ||
277 | for (i = 0; i < opp_table->required_opp_count; i++) { | |
278 | if (!required_opps[i]) | |
279 | break; | |
280 | ||
281 | /* Put the reference back */ | |
282 | dev_pm_opp_put(required_opps[i]); | |
283 | } | |
284 | ||
285 | kfree(required_opps); | |
286 | opp->required_opps = NULL; | |
287 | } | |
288 | ||
289 | /* Populate all required OPPs which are part of "required-opps" list */ | |
290 | static int _of_opp_alloc_required_opps(struct opp_table *opp_table, | |
291 | struct dev_pm_opp *opp) | |
292 | { | |
293 | struct dev_pm_opp **required_opps; | |
294 | struct opp_table *required_table; | |
295 | struct device_node *np; | |
296 | int i, ret, count = opp_table->required_opp_count; | |
297 | ||
298 | if (!count) | |
299 | return 0; | |
300 | ||
301 | required_opps = kcalloc(count, sizeof(*required_opps), GFP_KERNEL); | |
302 | if (!required_opps) | |
303 | return -ENOMEM; | |
304 | ||
305 | opp->required_opps = required_opps; | |
306 | ||
307 | for (i = 0; i < count; i++) { | |
308 | required_table = opp_table->required_opp_tables[i]; | |
309 | ||
310 | np = of_parse_required_opp(opp->np, i); | |
311 | if (unlikely(!np)) { | |
312 | ret = -ENODEV; | |
313 | goto free_required_opps; | |
314 | } | |
315 | ||
316 | required_opps[i] = _find_opp_of_np(required_table, np); | |
317 | of_node_put(np); | |
318 | ||
319 | if (!required_opps[i]) { | |
320 | pr_err("%s: Unable to find required OPP node: %pOF (%d)\n", | |
321 | __func__, opp->np, i); | |
322 | ret = -ENODEV; | |
323 | goto free_required_opps; | |
324 | } | |
325 | } | |
326 | ||
327 | return 0; | |
328 | ||
329 | free_required_opps: | |
330 | _of_opp_free_required_opps(opp_table, opp); | |
331 | ||
332 | return ret; | |
333 | } | |
334 | ||
45679f9b SS |
335 | static int _bandwidth_supported(struct device *dev, struct opp_table *opp_table) |
336 | { | |
337 | struct device_node *np, *opp_np; | |
338 | struct property *prop; | |
339 | ||
340 | if (!opp_table) { | |
341 | np = of_node_get(dev->of_node); | |
342 | if (!np) | |
343 | return -ENODEV; | |
344 | ||
345 | opp_np = _opp_of_get_opp_desc_node(np, 0); | |
346 | of_node_put(np); | |
347 | } else { | |
348 | opp_np = of_node_get(opp_table->np); | |
349 | } | |
350 | ||
351 | /* Lets not fail in case we are parsing opp-v1 bindings */ | |
352 | if (!opp_np) | |
353 | return 0; | |
354 | ||
355 | /* Checking only first OPP is sufficient */ | |
356 | np = of_get_next_available_child(opp_np, NULL); | |
357 | if (!np) { | |
358 | dev_err(dev, "OPP table empty\n"); | |
359 | return -EINVAL; | |
360 | } | |
361 | of_node_put(opp_np); | |
362 | ||
363 | prop = of_find_property(np, "opp-peak-kBps", NULL); | |
364 | of_node_put(np); | |
365 | ||
366 | if (!prop || !prop->length) | |
367 | return 0; | |
368 | ||
369 | return 1; | |
370 | } | |
371 | ||
6d3f922c GD |
372 | int dev_pm_opp_of_find_icc_paths(struct device *dev, |
373 | struct opp_table *opp_table) | |
374 | { | |
375 | struct device_node *np; | |
45679f9b | 376 | int ret, i, count, num_paths; |
6d3f922c GD |
377 | struct icc_path **paths; |
378 | ||
45679f9b SS |
379 | ret = _bandwidth_supported(dev, opp_table); |
380 | if (ret <= 0) | |
381 | return ret; | |
382 | ||
383 | ret = 0; | |
384 | ||
6d3f922c GD |
385 | np = of_node_get(dev->of_node); |
386 | if (!np) | |
387 | return 0; | |
388 | ||
389 | count = of_count_phandle_with_args(np, "interconnects", | |
390 | "#interconnect-cells"); | |
391 | of_node_put(np); | |
392 | if (count < 0) | |
393 | return 0; | |
394 | ||
395 | /* two phandles when #interconnect-cells = <1> */ | |
396 | if (count % 2) { | |
397 | dev_err(dev, "%s: Invalid interconnects values\n", __func__); | |
398 | return -EINVAL; | |
399 | } | |
400 | ||
401 | num_paths = count / 2; | |
402 | paths = kcalloc(num_paths, sizeof(*paths), GFP_KERNEL); | |
403 | if (!paths) | |
404 | return -ENOMEM; | |
405 | ||
406 | for (i = 0; i < num_paths; i++) { | |
407 | paths[i] = of_icc_get_by_index(dev, i); | |
408 | if (IS_ERR(paths[i])) { | |
409 | ret = PTR_ERR(paths[i]); | |
410 | if (ret != -EPROBE_DEFER) { | |
411 | dev_err(dev, "%s: Unable to get path%d: %d\n", | |
412 | __func__, i, ret); | |
413 | } | |
414 | goto err; | |
415 | } | |
416 | } | |
417 | ||
418 | if (opp_table) { | |
419 | opp_table->paths = paths; | |
420 | opp_table->path_count = num_paths; | |
421 | return 0; | |
422 | } | |
423 | ||
424 | err: | |
425 | while (i--) | |
426 | icc_put(paths[i]); | |
427 | ||
428 | kfree(paths); | |
429 | ||
430 | return ret; | |
431 | } | |
432 | EXPORT_SYMBOL_GPL(dev_pm_opp_of_find_icc_paths); | |
433 | ||
f47b72a1 VK |
434 | static bool _opp_is_supported(struct device *dev, struct opp_table *opp_table, |
435 | struct device_node *np) | |
436 | { | |
0ff25c99 VK |
437 | unsigned int levels = opp_table->supported_hw_count; |
438 | int count, versions, ret, i, j; | |
439 | u32 val; | |
f47b72a1 | 440 | |
a4ee4545 DG |
441 | if (!opp_table->supported_hw) { |
442 | /* | |
443 | * In the case that no supported_hw has been set by the | |
444 | * platform but there is an opp-supported-hw value set for | |
445 | * an OPP then the OPP should not be enabled as there is | |
446 | * no way to see if the hardware supports it. | |
447 | */ | |
448 | if (of_find_property(np, "opp-supported-hw", NULL)) | |
449 | return false; | |
450 | else | |
451 | return true; | |
452 | } | |
f47b72a1 | 453 | |
0ff25c99 VK |
454 | count = of_property_count_u32_elems(np, "opp-supported-hw"); |
455 | if (count <= 0 || count % levels) { | |
456 | dev_err(dev, "%s: Invalid opp-supported-hw property (%d)\n", | |
457 | __func__, count); | |
458 | return false; | |
459 | } | |
460 | ||
461 | versions = count / levels; | |
462 | ||
463 | /* All levels in at least one of the versions should match */ | |
464 | for (i = 0; i < versions; i++) { | |
465 | bool supported = true; | |
466 | ||
467 | for (j = 0; j < levels; j++) { | |
468 | ret = of_property_read_u32_index(np, "opp-supported-hw", | |
469 | i * levels + j, &val); | |
470 | if (ret) { | |
471 | dev_warn(dev, "%s: failed to read opp-supported-hw property at index %d: %d\n", | |
472 | __func__, i * levels + j, ret); | |
473 | return false; | |
474 | } | |
475 | ||
476 | /* Check if the level is supported */ | |
477 | if (!(val & opp_table->supported_hw[j])) { | |
478 | supported = false; | |
479 | break; | |
480 | } | |
f47b72a1 VK |
481 | } |
482 | ||
0ff25c99 VK |
483 | if (supported) |
484 | return true; | |
f47b72a1 VK |
485 | } |
486 | ||
0ff25c99 | 487 | return false; |
f47b72a1 VK |
488 | } |
489 | ||
f47b72a1 VK |
490 | static int opp_parse_supplies(struct dev_pm_opp *opp, struct device *dev, |
491 | struct opp_table *opp_table) | |
492 | { | |
dfbe4678 | 493 | u32 *microvolt, *microamp = NULL; |
46f48aca | 494 | int supplies = opp_table->regulator_count, vcount, icount, ret, i, j; |
f47b72a1 VK |
495 | struct property *prop = NULL; |
496 | char name[NAME_MAX]; | |
497 | ||
498 | /* Search for "opp-microvolt-<name>" */ | |
499 | if (opp_table->prop_name) { | |
500 | snprintf(name, sizeof(name), "opp-microvolt-%s", | |
501 | opp_table->prop_name); | |
502 | prop = of_find_property(opp->np, name, NULL); | |
503 | } | |
504 | ||
505 | if (!prop) { | |
506 | /* Search for "opp-microvolt" */ | |
507 | sprintf(name, "opp-microvolt"); | |
508 | prop = of_find_property(opp->np, name, NULL); | |
509 | ||
510 | /* Missing property isn't a problem, but an invalid entry is */ | |
688a48b0 | 511 | if (!prop) { |
46f48aca VK |
512 | if (unlikely(supplies == -1)) { |
513 | /* Initialize regulator_count */ | |
514 | opp_table->regulator_count = 0; | |
515 | return 0; | |
516 | } | |
517 | ||
518 | if (!supplies) | |
688a48b0 VK |
519 | return 0; |
520 | ||
521 | dev_err(dev, "%s: opp-microvolt missing although OPP managing regulators\n", | |
522 | __func__); | |
523 | return -EINVAL; | |
524 | } | |
f47b72a1 VK |
525 | } |
526 | ||
46f48aca VK |
527 | if (unlikely(supplies == -1)) { |
528 | /* Initialize regulator_count */ | |
529 | supplies = opp_table->regulator_count = 1; | |
530 | } else if (unlikely(!supplies)) { | |
531 | dev_err(dev, "%s: opp-microvolt wasn't expected\n", __func__); | |
532 | return -EINVAL; | |
533 | } | |
534 | ||
dfbe4678 VK |
535 | vcount = of_property_count_u32_elems(opp->np, name); |
536 | if (vcount < 0) { | |
f47b72a1 | 537 | dev_err(dev, "%s: Invalid %s property (%d)\n", |
dfbe4678 VK |
538 | __func__, name, vcount); |
539 | return vcount; | |
f47b72a1 VK |
540 | } |
541 | ||
dfbe4678 VK |
542 | /* There can be one or three elements per supply */ |
543 | if (vcount != supplies && vcount != supplies * 3) { | |
544 | dev_err(dev, "%s: Invalid number of elements in %s property (%d) with supplies (%d)\n", | |
545 | __func__, name, vcount, supplies); | |
f47b72a1 VK |
546 | return -EINVAL; |
547 | } | |
548 | ||
dfbe4678 VK |
549 | microvolt = kmalloc_array(vcount, sizeof(*microvolt), GFP_KERNEL); |
550 | if (!microvolt) | |
551 | return -ENOMEM; | |
552 | ||
553 | ret = of_property_read_u32_array(opp->np, name, microvolt, vcount); | |
f47b72a1 VK |
554 | if (ret) { |
555 | dev_err(dev, "%s: error parsing %s: %d\n", __func__, name, ret); | |
dfbe4678 VK |
556 | ret = -EINVAL; |
557 | goto free_microvolt; | |
f47b72a1 VK |
558 | } |
559 | ||
560 | /* Search for "opp-microamp-<name>" */ | |
561 | prop = NULL; | |
562 | if (opp_table->prop_name) { | |
563 | snprintf(name, sizeof(name), "opp-microamp-%s", | |
564 | opp_table->prop_name); | |
565 | prop = of_find_property(opp->np, name, NULL); | |
566 | } | |
567 | ||
568 | if (!prop) { | |
569 | /* Search for "opp-microamp" */ | |
570 | sprintf(name, "opp-microamp"); | |
571 | prop = of_find_property(opp->np, name, NULL); | |
572 | } | |
573 | ||
dfbe4678 VK |
574 | if (prop) { |
575 | icount = of_property_count_u32_elems(opp->np, name); | |
576 | if (icount < 0) { | |
577 | dev_err(dev, "%s: Invalid %s property (%d)\n", __func__, | |
578 | name, icount); | |
579 | ret = icount; | |
580 | goto free_microvolt; | |
581 | } | |
f47b72a1 | 582 | |
dfbe4678 VK |
583 | if (icount != supplies) { |
584 | dev_err(dev, "%s: Invalid number of elements in %s property (%d) with supplies (%d)\n", | |
585 | __func__, name, icount, supplies); | |
586 | ret = -EINVAL; | |
587 | goto free_microvolt; | |
588 | } | |
589 | ||
590 | microamp = kmalloc_array(icount, sizeof(*microamp), GFP_KERNEL); | |
591 | if (!microamp) { | |
592 | ret = -EINVAL; | |
593 | goto free_microvolt; | |
594 | } | |
595 | ||
596 | ret = of_property_read_u32_array(opp->np, name, microamp, | |
597 | icount); | |
598 | if (ret) { | |
599 | dev_err(dev, "%s: error parsing %s: %d\n", __func__, | |
600 | name, ret); | |
601 | ret = -EINVAL; | |
602 | goto free_microamp; | |
603 | } | |
604 | } | |
605 | ||
606 | for (i = 0, j = 0; i < supplies; i++) { | |
607 | opp->supplies[i].u_volt = microvolt[j++]; | |
608 | ||
609 | if (vcount == supplies) { | |
610 | opp->supplies[i].u_volt_min = opp->supplies[i].u_volt; | |
611 | opp->supplies[i].u_volt_max = opp->supplies[i].u_volt; | |
612 | } else { | |
613 | opp->supplies[i].u_volt_min = microvolt[j++]; | |
614 | opp->supplies[i].u_volt_max = microvolt[j++]; | |
615 | } | |
616 | ||
617 | if (microamp) | |
618 | opp->supplies[i].u_amp = microamp[i]; | |
619 | } | |
620 | ||
621 | free_microamp: | |
622 | kfree(microamp); | |
623 | free_microvolt: | |
624 | kfree(microvolt); | |
625 | ||
626 | return ret; | |
f47b72a1 VK |
627 | } |
628 | ||
629 | /** | |
630 | * dev_pm_opp_of_remove_table() - Free OPP table entries created from static DT | |
631 | * entries | |
632 | * @dev: device pointer used to lookup OPP table. | |
633 | * | |
634 | * Free OPPs created using static entries present in DT. | |
f47b72a1 VK |
635 | */ |
636 | void dev_pm_opp_of_remove_table(struct device *dev) | |
637 | { | |
8aaf6264 | 638 | dev_pm_opp_remove_table(dev); |
f47b72a1 VK |
639 | } |
640 | EXPORT_SYMBOL_GPL(dev_pm_opp_of_remove_table); | |
641 | ||
120e117b GD |
642 | static int _read_bw(struct dev_pm_opp *new_opp, struct opp_table *table, |
643 | struct device_node *np, bool peak) | |
6d3f922c GD |
644 | { |
645 | const char *name = peak ? "opp-peak-kBps" : "opp-avg-kBps"; | |
646 | struct property *prop; | |
647 | int i, count, ret; | |
648 | u32 *bw; | |
649 | ||
650 | prop = of_find_property(np, name, NULL); | |
651 | if (!prop) | |
652 | return -ENODEV; | |
653 | ||
654 | count = prop->length / sizeof(u32); | |
120e117b GD |
655 | if (table->path_count != count) { |
656 | pr_err("%s: Mismatch between %s and paths (%d %d)\n", | |
657 | __func__, name, count, table->path_count); | |
658 | return -EINVAL; | |
659 | } | |
660 | ||
6d3f922c GD |
661 | bw = kmalloc_array(count, sizeof(*bw), GFP_KERNEL); |
662 | if (!bw) | |
663 | return -ENOMEM; | |
664 | ||
665 | ret = of_property_read_u32_array(np, name, bw, count); | |
666 | if (ret) { | |
667 | pr_err("%s: Error parsing %s: %d\n", __func__, name, ret); | |
668 | goto out; | |
669 | } | |
670 | ||
671 | for (i = 0; i < count; i++) { | |
672 | if (peak) | |
673 | new_opp->bandwidth[i].peak = kBps_to_icc(bw[i]); | |
674 | else | |
675 | new_opp->bandwidth[i].avg = kBps_to_icc(bw[i]); | |
676 | } | |
677 | ||
678 | out: | |
679 | kfree(bw); | |
680 | return ret; | |
681 | } | |
682 | ||
120e117b GD |
683 | static int _read_opp_key(struct dev_pm_opp *new_opp, struct opp_table *table, |
684 | struct device_node *np, bool *rate_not_available) | |
6c591eec | 685 | { |
6d3f922c | 686 | bool found = false; |
6c591eec SK |
687 | u64 rate; |
688 | int ret; | |
689 | ||
690 | ret = of_property_read_u64(np, "opp-hz", &rate); | |
691 | if (!ret) { | |
692 | /* | |
693 | * Rate is defined as an unsigned long in clk API, and so | |
694 | * casting explicitly to its type. Must be fixed once rate is 64 | |
695 | * bit guaranteed in clk API. | |
696 | */ | |
697 | new_opp->rate = (unsigned long)rate; | |
6d3f922c | 698 | found = true; |
6c591eec SK |
699 | } |
700 | *rate_not_available = !!ret; | |
701 | ||
6d3f922c GD |
702 | /* |
703 | * Bandwidth consists of peak and average (optional) values: | |
704 | * opp-peak-kBps = <path1_value path2_value>; | |
705 | * opp-avg-kBps = <path1_value path2_value>; | |
706 | */ | |
120e117b | 707 | ret = _read_bw(new_opp, table, np, true); |
6d3f922c GD |
708 | if (!ret) { |
709 | found = true; | |
120e117b | 710 | ret = _read_bw(new_opp, table, np, false); |
6d3f922c GD |
711 | } |
712 | ||
713 | /* The properties were found but we failed to parse them */ | |
714 | if (ret && ret != -ENODEV) | |
715 | return ret; | |
716 | ||
717 | if (!of_property_read_u32(np, "opp-level", &new_opp->level)) | |
718 | found = true; | |
719 | ||
720 | if (found) | |
721 | return 0; | |
6c591eec SK |
722 | |
723 | return ret; | |
724 | } | |
725 | ||
f47b72a1 VK |
726 | /** |
727 | * _opp_add_static_v2() - Allocate static OPPs (As per 'v2' DT bindings) | |
8cd2f6e8 | 728 | * @opp_table: OPP table |
f47b72a1 VK |
729 | * @dev: device for which we do this operation |
730 | * @np: device node | |
731 | * | |
732 | * This function adds an opp definition to the opp table and returns status. The | |
733 | * opp can be controlled using dev_pm_opp_enable/disable functions and may be | |
734 | * removed by dev_pm_opp_remove. | |
735 | * | |
f47b72a1 | 736 | * Return: |
deac8703 DG |
737 | * Valid OPP pointer: |
738 | * On success | |
739 | * NULL: | |
f47b72a1 | 740 | * Duplicate OPPs (both freq and volt are same) and opp->available |
deac8703 DG |
741 | * OR if the OPP is not supported by hardware. |
742 | * ERR_PTR(-EEXIST): | |
743 | * Freq are same and volt are different OR | |
f47b72a1 | 744 | * Duplicate OPPs (both freq and volt are same) and !opp->available |
deac8703 DG |
745 | * ERR_PTR(-ENOMEM): |
746 | * Memory allocation failure | |
747 | * ERR_PTR(-EINVAL): | |
748 | * Failed parsing the OPP node | |
f47b72a1 | 749 | */ |
deac8703 DG |
750 | static struct dev_pm_opp *_opp_add_static_v2(struct opp_table *opp_table, |
751 | struct device *dev, struct device_node *np) | |
f47b72a1 | 752 | { |
f47b72a1 | 753 | struct dev_pm_opp *new_opp; |
6a89e012 | 754 | u64 rate = 0; |
f47b72a1 VK |
755 | u32 val; |
756 | int ret; | |
a1e8c136 | 757 | bool rate_not_available = false; |
f47b72a1 | 758 | |
8cd2f6e8 VK |
759 | new_opp = _opp_allocate(opp_table); |
760 | if (!new_opp) | |
deac8703 | 761 | return ERR_PTR(-ENOMEM); |
f47b72a1 | 762 | |
120e117b | 763 | ret = _read_opp_key(new_opp, opp_table, np, &rate_not_available); |
6c591eec SK |
764 | if (ret < 0 && !opp_table->is_genpd) { |
765 | dev_err(dev, "%s: opp key field not found\n", __func__); | |
766 | goto free_opp; | |
f47b72a1 VK |
767 | } |
768 | ||
769 | /* Check if the OPP supports hardware's hierarchy of versions or not */ | |
770 | if (!_opp_is_supported(dev, opp_table, np)) { | |
771 | dev_dbg(dev, "OPP not supported by hardware: %llu\n", rate); | |
772 | goto free_opp; | |
773 | } | |
774 | ||
f47b72a1 VK |
775 | new_opp->turbo = of_property_read_bool(np, "turbo-mode"); |
776 | ||
777 | new_opp->np = np; | |
778 | new_opp->dynamic = false; | |
779 | new_opp->available = true; | |
780 | ||
da544b61 VK |
781 | ret = _of_opp_alloc_required_opps(opp_table, new_opp); |
782 | if (ret) | |
783 | goto free_opp; | |
784 | ||
f47b72a1 VK |
785 | if (!of_property_read_u32(np, "clock-latency-ns", &val)) |
786 | new_opp->clock_latency_ns = val; | |
787 | ||
788 | ret = opp_parse_supplies(new_opp, dev, opp_table); | |
789 | if (ret) | |
da544b61 | 790 | goto free_required_opps; |
f47b72a1 | 791 | |
ca1b5d77 VK |
792 | if (opp_table->is_genpd) |
793 | new_opp->pstate = pm_genpd_opp_to_performance_state(dev, new_opp); | |
f47b72a1 | 794 | |
a1e8c136 | 795 | ret = _opp_add(dev, new_opp, opp_table, rate_not_available); |
7f8538eb VK |
796 | if (ret) { |
797 | /* Don't return error for duplicate OPPs */ | |
798 | if (ret == -EBUSY) | |
799 | ret = 0; | |
da544b61 | 800 | goto free_required_opps; |
7f8538eb | 801 | } |
f47b72a1 VK |
802 | |
803 | /* OPP to select on device suspend */ | |
804 | if (of_property_read_bool(np, "opp-suspend")) { | |
805 | if (opp_table->suspend_opp) { | |
45275517 AH |
806 | /* Pick the OPP with higher rate as suspend OPP */ |
807 | if (new_opp->rate > opp_table->suspend_opp->rate) { | |
808 | opp_table->suspend_opp->suspend = false; | |
809 | new_opp->suspend = true; | |
810 | opp_table->suspend_opp = new_opp; | |
811 | } | |
f47b72a1 VK |
812 | } else { |
813 | new_opp->suspend = true; | |
814 | opp_table->suspend_opp = new_opp; | |
815 | } | |
816 | } | |
817 | ||
818 | if (new_opp->clock_latency_ns > opp_table->clock_latency_ns_max) | |
819 | opp_table->clock_latency_ns_max = new_opp->clock_latency_ns; | |
820 | ||
f47b72a1 | 821 | pr_debug("%s: turbo:%d rate:%lu uv:%lu uvmin:%lu uvmax:%lu latency:%lu\n", |
0f0fe7e0 | 822 | __func__, new_opp->turbo, new_opp->rate, |
dfbe4678 VK |
823 | new_opp->supplies[0].u_volt, new_opp->supplies[0].u_volt_min, |
824 | new_opp->supplies[0].u_volt_max, new_opp->clock_latency_ns); | |
f47b72a1 VK |
825 | |
826 | /* | |
827 | * Notify the changes in the availability of the operable | |
828 | * frequency/voltage list. | |
829 | */ | |
052c6f19 | 830 | blocking_notifier_call_chain(&opp_table->head, OPP_EVENT_ADD, new_opp); |
deac8703 | 831 | return new_opp; |
f47b72a1 | 832 | |
da544b61 VK |
833 | free_required_opps: |
834 | _of_opp_free_required_opps(opp_table, new_opp); | |
f47b72a1 | 835 | free_opp: |
8cd2f6e8 VK |
836 | _opp_free(new_opp); |
837 | ||
deac8703 | 838 | return ERR_PTR(ret); |
f47b72a1 VK |
839 | } |
840 | ||
841 | /* Initializes OPP tables based on new bindings */ | |
5ed4cecd | 842 | static int _of_add_opp_table_v2(struct device *dev, struct opp_table *opp_table) |
f47b72a1 VK |
843 | { |
844 | struct device_node *np; | |
a5663c9b | 845 | int ret, count = 0; |
3ba98324 | 846 | struct dev_pm_opp *opp; |
f47b72a1 | 847 | |
283d55e6 | 848 | /* OPP table is already initialized for the device */ |
03758d60 | 849 | mutex_lock(&opp_table->lock); |
283d55e6 | 850 | if (opp_table->parsed_static_opps) { |
03758d60 VK |
851 | opp_table->parsed_static_opps++; |
852 | mutex_unlock(&opp_table->lock); | |
283d55e6 VK |
853 | return 0; |
854 | } | |
855 | ||
03758d60 VK |
856 | opp_table->parsed_static_opps = 1; |
857 | mutex_unlock(&opp_table->lock); | |
b19c2355 | 858 | |
f47b72a1 | 859 | /* We have opp-table node now, iterate over it and add OPPs */ |
5ed4cecd | 860 | for_each_available_child_of_node(opp_table->np, np) { |
deac8703 DG |
861 | opp = _opp_add_static_v2(opp_table, dev, np); |
862 | if (IS_ERR(opp)) { | |
863 | ret = PTR_ERR(opp); | |
f47b72a1 VK |
864 | dev_err(dev, "%s: Failed to add OPP, %d\n", __func__, |
865 | ret); | |
7978db34 | 866 | of_node_put(np); |
03758d60 | 867 | goto remove_static_opp; |
deac8703 DG |
868 | } else if (opp) { |
869 | count++; | |
f47b72a1 VK |
870 | } |
871 | } | |
872 | ||
873 | /* There should be one of more OPP defined */ | |
ba003319 VK |
874 | if (WARN_ON(!count)) { |
875 | ret = -ENOENT; | |
03758d60 | 876 | goto remove_static_opp; |
ba003319 | 877 | } |
f47b72a1 | 878 | |
a5663c9b VK |
879 | list_for_each_entry(opp, &opp_table->opp_list, node) { |
880 | /* Any non-zero performance state would enable the feature */ | |
881 | if (opp->pstate) { | |
882 | opp_table->genpd_performance_state = true; | |
883 | break; | |
884 | } | |
3ba98324 VK |
885 | } |
886 | ||
cdd6ed90 | 887 | return 0; |
ba003319 | 888 | |
03758d60 VK |
889 | remove_static_opp: |
890 | _opp_remove_all_static(opp_table); | |
ba003319 VK |
891 | |
892 | return ret; | |
f47b72a1 VK |
893 | } |
894 | ||
895 | /* Initializes OPP tables based on old-deprecated bindings */ | |
5ed4cecd | 896 | static int _of_add_opp_table_v1(struct device *dev, struct opp_table *opp_table) |
f47b72a1 VK |
897 | { |
898 | const struct property *prop; | |
899 | const __be32 *val; | |
8cd2f6e8 | 900 | int nr, ret = 0; |
f47b72a1 | 901 | |
90d46d71 VK |
902 | mutex_lock(&opp_table->lock); |
903 | if (opp_table->parsed_static_opps) { | |
904 | opp_table->parsed_static_opps++; | |
905 | mutex_unlock(&opp_table->lock); | |
906 | return 0; | |
907 | } | |
908 | ||
909 | opp_table->parsed_static_opps = 1; | |
910 | mutex_unlock(&opp_table->lock); | |
911 | ||
f47b72a1 | 912 | prop = of_find_property(dev->of_node, "operating-points", NULL); |
90d46d71 VK |
913 | if (!prop) { |
914 | ret = -ENODEV; | |
915 | goto remove_static_opp; | |
916 | } | |
917 | if (!prop->value) { | |
918 | ret = -ENODATA; | |
919 | goto remove_static_opp; | |
920 | } | |
f47b72a1 VK |
921 | |
922 | /* | |
923 | * Each OPP is a set of tuples consisting of frequency and | |
924 | * voltage like <freq-kHz vol-uV>. | |
925 | */ | |
926 | nr = prop->length / sizeof(u32); | |
927 | if (nr % 2) { | |
928 | dev_err(dev, "%s: Invalid OPP table\n", __func__); | |
90d46d71 VK |
929 | ret = -EINVAL; |
930 | goto remove_static_opp; | |
f47b72a1 VK |
931 | } |
932 | ||
933 | val = prop->value; | |
934 | while (nr) { | |
935 | unsigned long freq = be32_to_cpup(val++) * 1000; | |
936 | unsigned long volt = be32_to_cpup(val++); | |
937 | ||
8cd2f6e8 | 938 | ret = _opp_add_v1(opp_table, dev, freq, volt, false); |
04a86a84 VK |
939 | if (ret) { |
940 | dev_err(dev, "%s: Failed to add OPP %ld (%d)\n", | |
941 | __func__, freq, ret); | |
90d46d71 | 942 | goto remove_static_opp; |
04a86a84 | 943 | } |
f47b72a1 VK |
944 | nr -= 2; |
945 | } | |
946 | ||
90d46d71 VK |
947 | remove_static_opp: |
948 | _opp_remove_all_static(opp_table); | |
949 | ||
8cd2f6e8 | 950 | return ret; |
f47b72a1 VK |
951 | } |
952 | ||
953 | /** | |
954 | * dev_pm_opp_of_add_table() - Initialize opp table from device tree | |
955 | * @dev: device pointer used to lookup OPP table. | |
956 | * | |
957 | * Register the initial OPP table with the OPP library for given device. | |
958 | * | |
f47b72a1 VK |
959 | * Return: |
960 | * 0 On success OR | |
961 | * Duplicate OPPs (both freq and volt are same) and opp->available | |
962 | * -EEXIST Freq are same and volt are different OR | |
963 | * Duplicate OPPs (both freq and volt are same) and !opp->available | |
964 | * -ENOMEM Memory allocation failure | |
965 | * -ENODEV when 'operating-points' property is not found or is invalid data | |
966 | * in device node. | |
967 | * -ENODATA when empty 'operating-points' property is found | |
968 | * -EINVAL when invalid entries are found in opp-v2 table | |
969 | */ | |
970 | int dev_pm_opp_of_add_table(struct device *dev) | |
971 | { | |
5ed4cecd | 972 | struct opp_table *opp_table; |
f47b72a1 VK |
973 | int ret; |
974 | ||
5ed4cecd | 975 | opp_table = dev_pm_opp_get_opp_table_indexed(dev, 0); |
dd461cd9 SG |
976 | if (IS_ERR(opp_table)) |
977 | return PTR_ERR(opp_table); | |
5ed4cecd | 978 | |
f47b72a1 | 979 | /* |
5ed4cecd VK |
980 | * OPPs have two version of bindings now. Also try the old (v1) |
981 | * bindings for backward compatibility with older dtbs. | |
f47b72a1 | 982 | */ |
5ed4cecd VK |
983 | if (opp_table->np) |
984 | ret = _of_add_opp_table_v2(dev, opp_table); | |
985 | else | |
986 | ret = _of_add_opp_table_v1(dev, opp_table); | |
f47b72a1 | 987 | |
5ed4cecd VK |
988 | if (ret) |
989 | dev_pm_opp_put_opp_table(opp_table); | |
f47b72a1 VK |
990 | |
991 | return ret; | |
992 | } | |
993 | EXPORT_SYMBOL_GPL(dev_pm_opp_of_add_table); | |
994 | ||
fa9b274f VK |
995 | /** |
996 | * dev_pm_opp_of_add_table_indexed() - Initialize indexed opp table from device tree | |
997 | * @dev: device pointer used to lookup OPP table. | |
998 | * @index: Index number. | |
999 | * | |
1000 | * Register the initial OPP table with the OPP library for given device only | |
1001 | * using the "operating-points-v2" property. | |
1002 | * | |
1003 | * Return: | |
1004 | * 0 On success OR | |
1005 | * Duplicate OPPs (both freq and volt are same) and opp->available | |
1006 | * -EEXIST Freq are same and volt are different OR | |
1007 | * Duplicate OPPs (both freq and volt are same) and !opp->available | |
1008 | * -ENOMEM Memory allocation failure | |
1009 | * -ENODEV when 'operating-points' property is not found or is invalid data | |
1010 | * in device node. | |
1011 | * -ENODATA when empty 'operating-points' property is found | |
1012 | * -EINVAL when invalid entries are found in opp-v2 table | |
1013 | */ | |
1014 | int dev_pm_opp_of_add_table_indexed(struct device *dev, int index) | |
1015 | { | |
5ed4cecd | 1016 | struct opp_table *opp_table; |
8a352fd8 | 1017 | int ret, count; |
fa9b274f | 1018 | |
5ed4cecd | 1019 | if (index) { |
8a352fd8 VK |
1020 | /* |
1021 | * If only one phandle is present, then the same OPP table | |
1022 | * applies for all index requests. | |
1023 | */ | |
1024 | count = of_count_phandle_with_args(dev->of_node, | |
1025 | "operating-points-v2", NULL); | |
3e27c79c VK |
1026 | if (count == 1) |
1027 | index = 0; | |
8a352fd8 | 1028 | } |
fa9b274f | 1029 | |
5ed4cecd | 1030 | opp_table = dev_pm_opp_get_opp_table_indexed(dev, index); |
dd461cd9 SG |
1031 | if (IS_ERR(opp_table)) |
1032 | return PTR_ERR(opp_table); | |
5ed4cecd VK |
1033 | |
1034 | ret = _of_add_opp_table_v2(dev, opp_table); | |
1035 | if (ret) | |
1036 | dev_pm_opp_put_opp_table(opp_table); | |
fa9b274f VK |
1037 | |
1038 | return ret; | |
1039 | } | |
1040 | EXPORT_SYMBOL_GPL(dev_pm_opp_of_add_table_indexed); | |
1041 | ||
f47b72a1 VK |
1042 | /* CPU device specific helpers */ |
1043 | ||
1044 | /** | |
1045 | * dev_pm_opp_of_cpumask_remove_table() - Removes OPP table for @cpumask | |
1046 | * @cpumask: cpumask for which OPP table needs to be removed | |
1047 | * | |
1048 | * This removes the OPP tables for CPUs present in the @cpumask. | |
1049 | * This should be used only to remove static entries created from DT. | |
f47b72a1 VK |
1050 | */ |
1051 | void dev_pm_opp_of_cpumask_remove_table(const struct cpumask *cpumask) | |
1052 | { | |
2a4eb735 | 1053 | _dev_pm_opp_cpumask_remove_table(cpumask, -1); |
f47b72a1 VK |
1054 | } |
1055 | EXPORT_SYMBOL_GPL(dev_pm_opp_of_cpumask_remove_table); | |
1056 | ||
1057 | /** | |
1058 | * dev_pm_opp_of_cpumask_add_table() - Adds OPP table for @cpumask | |
1059 | * @cpumask: cpumask for which OPP table needs to be added. | |
1060 | * | |
1061 | * This adds the OPP tables for CPUs present in the @cpumask. | |
f47b72a1 VK |
1062 | */ |
1063 | int dev_pm_opp_of_cpumask_add_table(const struct cpumask *cpumask) | |
1064 | { | |
1065 | struct device *cpu_dev; | |
50b6b87c | 1066 | int cpu, ret; |
f47b72a1 | 1067 | |
50b6b87c VK |
1068 | if (WARN_ON(cpumask_empty(cpumask))) |
1069 | return -ENODEV; | |
f47b72a1 VK |
1070 | |
1071 | for_each_cpu(cpu, cpumask) { | |
1072 | cpu_dev = get_cpu_device(cpu); | |
1073 | if (!cpu_dev) { | |
1074 | pr_err("%s: failed to get cpu%d device\n", __func__, | |
1075 | cpu); | |
50b6b87c VK |
1076 | ret = -ENODEV; |
1077 | goto remove_table; | |
f47b72a1 VK |
1078 | } |
1079 | ||
1080 | ret = dev_pm_opp_of_add_table(cpu_dev); | |
1081 | if (ret) { | |
5b60697c VK |
1082 | /* |
1083 | * OPP may get registered dynamically, don't print error | |
1084 | * message here. | |
1085 | */ | |
1086 | pr_debug("%s: couldn't find opp table for cpu:%d, %d\n", | |
1087 | __func__, cpu, ret); | |
f47b72a1 | 1088 | |
50b6b87c | 1089 | goto remove_table; |
f47b72a1 VK |
1090 | } |
1091 | } | |
1092 | ||
50b6b87c VK |
1093 | return 0; |
1094 | ||
1095 | remove_table: | |
1096 | /* Free all other OPPs */ | |
1097 | _dev_pm_opp_cpumask_remove_table(cpumask, cpu); | |
1098 | ||
f47b72a1 VK |
1099 | return ret; |
1100 | } | |
1101 | EXPORT_SYMBOL_GPL(dev_pm_opp_of_cpumask_add_table); | |
1102 | ||
1103 | /* | |
1104 | * Works only for OPP v2 bindings. | |
1105 | * | |
1106 | * Returns -ENOENT if operating-points-v2 bindings aren't supported. | |
1107 | */ | |
1108 | /** | |
1109 | * dev_pm_opp_of_get_sharing_cpus() - Get cpumask of CPUs sharing OPPs with | |
1110 | * @cpu_dev using operating-points-v2 | |
1111 | * bindings. | |
1112 | * | |
1113 | * @cpu_dev: CPU device for which we do this operation | |
1114 | * @cpumask: cpumask to update with information of sharing CPUs | |
1115 | * | |
1116 | * This updates the @cpumask with CPUs that are sharing OPPs with @cpu_dev. | |
1117 | * | |
1118 | * Returns -ENOENT if operating-points-v2 isn't present for @cpu_dev. | |
f47b72a1 VK |
1119 | */ |
1120 | int dev_pm_opp_of_get_sharing_cpus(struct device *cpu_dev, | |
1121 | struct cpumask *cpumask) | |
1122 | { | |
76279291 | 1123 | struct device_node *np, *tmp_np, *cpu_np; |
f47b72a1 VK |
1124 | int cpu, ret = 0; |
1125 | ||
1126 | /* Get OPP descriptor node */ | |
0764c604 | 1127 | np = dev_pm_opp_of_get_opp_desc_node(cpu_dev); |
f47b72a1 | 1128 | if (!np) { |
349aa92e | 1129 | dev_dbg(cpu_dev, "%s: Couldn't find opp node.\n", __func__); |
f47b72a1 VK |
1130 | return -ENOENT; |
1131 | } | |
1132 | ||
1133 | cpumask_set_cpu(cpu_dev->id, cpumask); | |
1134 | ||
1135 | /* OPPs are shared ? */ | |
1136 | if (!of_property_read_bool(np, "opp-shared")) | |
1137 | goto put_cpu_node; | |
1138 | ||
1139 | for_each_possible_cpu(cpu) { | |
1140 | if (cpu == cpu_dev->id) | |
1141 | continue; | |
1142 | ||
9867999f | 1143 | cpu_np = of_cpu_device_node_get(cpu); |
76279291 WR |
1144 | if (!cpu_np) { |
1145 | dev_err(cpu_dev, "%s: failed to get cpu%d node\n", | |
f47b72a1 | 1146 | __func__, cpu); |
76279291 | 1147 | ret = -ENOENT; |
f47b72a1 VK |
1148 | goto put_cpu_node; |
1149 | } | |
1150 | ||
1151 | /* Get OPP descriptor node */ | |
fa9b274f | 1152 | tmp_np = _opp_of_get_opp_desc_node(cpu_np, 0); |
9867999f | 1153 | of_node_put(cpu_np); |
f47b72a1 | 1154 | if (!tmp_np) { |
76279291 | 1155 | pr_err("%pOF: Couldn't find opp node\n", cpu_np); |
f47b72a1 VK |
1156 | ret = -ENOENT; |
1157 | goto put_cpu_node; | |
1158 | } | |
1159 | ||
1160 | /* CPUs are sharing opp node */ | |
1161 | if (np == tmp_np) | |
1162 | cpumask_set_cpu(cpu, cpumask); | |
1163 | ||
1164 | of_node_put(tmp_np); | |
1165 | } | |
1166 | ||
1167 | put_cpu_node: | |
1168 | of_node_put(np); | |
1169 | return ret; | |
1170 | } | |
1171 | EXPORT_SYMBOL_GPL(dev_pm_opp_of_get_sharing_cpus); | |
a88bd2a5 VK |
1172 | |
1173 | /** | |
4c6a343e | 1174 | * of_get_required_opp_performance_state() - Search for required OPP and return its performance state. |
a88bd2a5 | 1175 | * @np: Node that contains the "required-opps" property. |
4c6a343e | 1176 | * @index: Index of the phandle to parse. |
a88bd2a5 | 1177 | * |
4c6a343e VK |
1178 | * Returns the performance state of the OPP pointed out by the "required-opps" |
1179 | * property at @index in @np. | |
a88bd2a5 | 1180 | * |
2feb5a89 VK |
1181 | * Return: Zero or positive performance state on success, otherwise negative |
1182 | * value on errors. | |
a88bd2a5 | 1183 | */ |
2feb5a89 | 1184 | int of_get_required_opp_performance_state(struct device_node *np, int index) |
a88bd2a5 | 1185 | { |
4c6a343e | 1186 | struct dev_pm_opp *opp; |
a88bd2a5 VK |
1187 | struct device_node *required_np; |
1188 | struct opp_table *opp_table; | |
2feb5a89 | 1189 | int pstate = -EINVAL; |
a88bd2a5 | 1190 | |
4c6a343e VK |
1191 | required_np = of_parse_required_opp(np, index); |
1192 | if (!required_np) | |
2feb5a89 | 1193 | return -EINVAL; |
a88bd2a5 | 1194 | |
4c6a343e VK |
1195 | opp_table = _find_table_of_opp_np(required_np); |
1196 | if (IS_ERR(opp_table)) { | |
1197 | pr_err("%s: Failed to find required OPP table %pOF: %ld\n", | |
1198 | __func__, np, PTR_ERR(opp_table)); | |
1199 | goto put_required_np; | |
a88bd2a5 VK |
1200 | } |
1201 | ||
4c6a343e VK |
1202 | opp = _find_opp_of_np(opp_table, required_np); |
1203 | if (opp) { | |
1204 | pstate = opp->pstate; | |
1205 | dev_pm_opp_put(opp); | |
a88bd2a5 VK |
1206 | } |
1207 | ||
4c6a343e | 1208 | dev_pm_opp_put_opp_table(opp_table); |
a88bd2a5 | 1209 | |
4c6a343e | 1210 | put_required_np: |
a88bd2a5 | 1211 | of_node_put(required_np); |
a88bd2a5 | 1212 | |
4c6a343e | 1213 | return pstate; |
a88bd2a5 | 1214 | } |
4c6a343e | 1215 | EXPORT_SYMBOL_GPL(of_get_required_opp_performance_state); |
e2f4b5f8 VK |
1216 | |
1217 | /** | |
1218 | * dev_pm_opp_get_of_node() - Gets the DT node corresponding to an opp | |
1219 | * @opp: opp for which DT node has to be returned for | |
1220 | * | |
1221 | * Return: DT node corresponding to the opp, else 0 on success. | |
1222 | * | |
1223 | * The caller needs to put the node with of_node_put() after using it. | |
1224 | */ | |
1225 | struct device_node *dev_pm_opp_get_of_node(struct dev_pm_opp *opp) | |
1226 | { | |
1227 | if (IS_ERR_OR_NULL(opp)) { | |
1228 | pr_err("%s: Invalid parameters\n", __func__); | |
1229 | return NULL; | |
1230 | } | |
1231 | ||
1232 | return of_node_get(opp->np); | |
1233 | } | |
1234 | EXPORT_SYMBOL_GPL(dev_pm_opp_get_of_node); | |
a4f342b9 QP |
1235 | |
1236 | /* | |
1237 | * Callback function provided to the Energy Model framework upon registration. | |
0e0ffa85 | 1238 | * This computes the power estimated by @dev at @kHz if it is the frequency |
a4f342b9 QP |
1239 | * of an existing OPP, or at the frequency of the first OPP above @kHz otherwise |
1240 | * (see dev_pm_opp_find_freq_ceil()). This function updates @kHz to the ceiled | |
1241 | * frequency and @mW to the associated power. The power is estimated as | |
0e0ffa85 LL |
1242 | * P = C * V^2 * f with C being the device's capacitance and V and f |
1243 | * respectively the voltage and frequency of the OPP. | |
a4f342b9 | 1244 | * |
0e0ffa85 LL |
1245 | * Returns -EINVAL if the power calculation failed because of missing |
1246 | * parameters, 0 otherwise. | |
a4f342b9 | 1247 | */ |
0e0ffa85 LL |
1248 | static int __maybe_unused _get_power(unsigned long *mW, unsigned long *kHz, |
1249 | struct device *dev) | |
a4f342b9 | 1250 | { |
a4f342b9 QP |
1251 | struct dev_pm_opp *opp; |
1252 | struct device_node *np; | |
1253 | unsigned long mV, Hz; | |
1254 | u32 cap; | |
1255 | u64 tmp; | |
1256 | int ret; | |
1257 | ||
0e0ffa85 | 1258 | np = of_node_get(dev->of_node); |
a4f342b9 QP |
1259 | if (!np) |
1260 | return -EINVAL; | |
1261 | ||
1262 | ret = of_property_read_u32(np, "dynamic-power-coefficient", &cap); | |
1263 | of_node_put(np); | |
1264 | if (ret) | |
1265 | return -EINVAL; | |
1266 | ||
1267 | Hz = *kHz * 1000; | |
0e0ffa85 | 1268 | opp = dev_pm_opp_find_freq_ceil(dev, &Hz); |
a4f342b9 QP |
1269 | if (IS_ERR(opp)) |
1270 | return -EINVAL; | |
1271 | ||
1272 | mV = dev_pm_opp_get_voltage(opp) / 1000; | |
1273 | dev_pm_opp_put(opp); | |
1274 | if (!mV) | |
1275 | return -EINVAL; | |
1276 | ||
1277 | tmp = (u64)cap * mV * mV * (Hz / 1000000); | |
1278 | do_div(tmp, 1000000000); | |
1279 | ||
1280 | *mW = (unsigned long)tmp; | |
1281 | *kHz = Hz / 1000; | |
1282 | ||
1283 | return 0; | |
1284 | } | |
1285 | ||
1286 | /** | |
1287 | * dev_pm_opp_of_register_em() - Attempt to register an Energy Model | |
0e0ffa85 LL |
1288 | * @dev : Device for which an Energy Model has to be registered |
1289 | * @cpus : CPUs for which an Energy Model has to be registered. For | |
1290 | * other type of devices it should be set to NULL. | |
a4f342b9 QP |
1291 | * |
1292 | * This checks whether the "dynamic-power-coefficient" devicetree property has | |
1293 | * been specified, and tries to register an Energy Model with it if it has. | |
0e0ffa85 LL |
1294 | * Having this property means the voltages are known for OPPs and the EM |
1295 | * might be calculated. | |
a4f342b9 | 1296 | */ |
0e0ffa85 | 1297 | int dev_pm_opp_of_register_em(struct device *dev, struct cpumask *cpus) |
a4f342b9 | 1298 | { |
0e0ffa85 | 1299 | struct em_data_callback em_cb = EM_DATA_CB(_get_power); |
a4f342b9 | 1300 | struct device_node *np; |
0e0ffa85 | 1301 | int ret, nr_opp; |
a4f342b9 QP |
1302 | u32 cap; |
1303 | ||
0e0ffa85 LL |
1304 | if (IS_ERR_OR_NULL(dev)) { |
1305 | ret = -EINVAL; | |
1306 | goto failed; | |
1307 | } | |
a4f342b9 | 1308 | |
0e0ffa85 LL |
1309 | nr_opp = dev_pm_opp_get_opp_count(dev); |
1310 | if (nr_opp <= 0) { | |
1311 | ret = -EINVAL; | |
1312 | goto failed; | |
1313 | } | |
a4f342b9 | 1314 | |
0e0ffa85 LL |
1315 | np = of_node_get(dev->of_node); |
1316 | if (!np) { | |
1317 | ret = -EINVAL; | |
1318 | goto failed; | |
1319 | } | |
a4f342b9 QP |
1320 | |
1321 | /* | |
1322 | * Register an EM only if the 'dynamic-power-coefficient' property is | |
1323 | * set in devicetree. It is assumed the voltage values are known if that | |
1324 | * property is set since it is useless otherwise. If voltages are not | |
1325 | * known, just let the EM registration fail with an error to alert the | |
1326 | * user about the inconsistent configuration. | |
1327 | */ | |
1328 | ret = of_property_read_u32(np, "dynamic-power-coefficient", &cap); | |
1329 | of_node_put(np); | |
0e0ffa85 LL |
1330 | if (ret || !cap) { |
1331 | dev_dbg(dev, "Couldn't find proper 'dynamic-power-coefficient' in DT\n"); | |
1332 | ret = -EINVAL; | |
1333 | goto failed; | |
1334 | } | |
a4f342b9 | 1335 | |
0e0ffa85 LL |
1336 | ret = em_dev_register_perf_domain(dev, nr_opp, &em_cb, cpus); |
1337 | if (ret) | |
1338 | goto failed; | |
a4f342b9 | 1339 | |
0e0ffa85 LL |
1340 | return 0; |
1341 | ||
1342 | failed: | |
1343 | dev_dbg(dev, "Couldn't register Energy Model %d\n", ret); | |
1344 | return ret; | |
a4f342b9 QP |
1345 | } |
1346 | EXPORT_SYMBOL_GPL(dev_pm_opp_of_register_em); |