1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * PSCI CPU idle driver.
4 *
5 * Copyright (C) 2019 ARM Ltd.
6 * Author: Lorenzo Pieralisi <lorenzo.pieralisi@arm.com>
7 */
8
9 #define pr_fmt(fmt) "CPUidle PSCI: " fmt
10
11 #include <linux/cpuhotplug.h>
12 #include <linux/cpu_cooling.h>
13 #include <linux/cpuidle.h>
14 #include <linux/cpumask.h>
15 #include <linux/cpu_pm.h>
16 #include <linux/kernel.h>
17 #include <linux/module.h>
18 #include <linux/of.h>
19 #include <linux/device/faux.h>
20 #include <linux/psci.h>
21 #include <linux/pm_domain.h>
22 #include <linux/pm_runtime.h>
23 #include <linux/slab.h>
24 #include <linux/string.h>
25 #include <linux/syscore_ops.h>
26
27 #include <asm/cpuidle.h>
28 #include <trace/events/power.h>
29
30 #include "cpuidle-psci.h"
31 #include "dt_idle_states.h"
32 #include "dt_idle_genpd.h"
33
34 struct psci_cpuidle_data {
35 u32 *psci_states;
36 struct device *dev;
37 };
38
39 struct psci_cpuidle_domain_state {
40 struct generic_pm_domain *pd;
41 unsigned int state_idx;
42 u32 state;
43 };
44
45 static DEFINE_PER_CPU_READ_MOSTLY(struct psci_cpuidle_data, psci_cpuidle_data);
46 static DEFINE_PER_CPU(struct psci_cpuidle_domain_state, psci_domain_state);
47 static bool psci_cpuidle_use_syscore;
48 static bool psci_cpuidle_use_cpuhp;
49
psci_set_domain_state(struct generic_pm_domain * pd,unsigned int state_idx,u32 state)50 void psci_set_domain_state(struct generic_pm_domain *pd, unsigned int state_idx,
51 u32 state)
52 {
53 struct psci_cpuidle_domain_state *ds = this_cpu_ptr(&psci_domain_state);
54
55 ds->pd = pd;
56 ds->state_idx = state_idx;
57 ds->state = state;
58 }
59
psci_clear_domain_state(void)60 static inline void psci_clear_domain_state(void)
61 {
62 __this_cpu_write(psci_domain_state.state, 0);
63 }
64
__psci_enter_domain_idle_state(struct cpuidle_device * dev,struct cpuidle_driver * drv,int idx,bool s2idle)65 static __cpuidle int __psci_enter_domain_idle_state(struct cpuidle_device *dev,
66 struct cpuidle_driver *drv, int idx,
67 bool s2idle)
68 {
69 struct psci_cpuidle_data *data = this_cpu_ptr(&psci_cpuidle_data);
70 u32 *states = data->psci_states;
71 struct device *pd_dev = data->dev;
72 struct psci_cpuidle_domain_state *ds;
73 u32 state = states[idx];
74 int ret;
75
76 ret = cpu_pm_enter();
77 if (ret)
78 return -1;
79
80 /* Do runtime PM to manage a hierarchical CPU toplogy. */
81 if (s2idle)
82 dev_pm_genpd_suspend(pd_dev);
83 else
84 pm_runtime_put_sync_suspend(pd_dev);
85
86 ds = this_cpu_ptr(&psci_domain_state);
87 if (ds->state)
88 state = ds->state;
89
90 trace_psci_domain_idle_enter(dev->cpu, state, s2idle);
91 ret = psci_cpu_suspend_enter(state) ? -1 : idx;
92 trace_psci_domain_idle_exit(dev->cpu, state, s2idle);
93
94 if (s2idle)
95 dev_pm_genpd_resume(pd_dev);
96 else
97 pm_runtime_get_sync(pd_dev);
98
99 cpu_pm_exit();
100
101 /* Correct domain-idlestate statistics if we failed to enter. */
102 if (ret == -1 && ds->state)
103 pm_genpd_inc_rejected(ds->pd, ds->state_idx);
104
105 /* Clear the domain state to start fresh when back from idle. */
106 psci_clear_domain_state();
107 return ret;
108 }
109
psci_enter_domain_idle_state(struct cpuidle_device * dev,struct cpuidle_driver * drv,int idx)110 static int psci_enter_domain_idle_state(struct cpuidle_device *dev,
111 struct cpuidle_driver *drv, int idx)
112 {
113 return __psci_enter_domain_idle_state(dev, drv, idx, false);
114 }
115
psci_enter_s2idle_domain_idle_state(struct cpuidle_device * dev,struct cpuidle_driver * drv,int idx)116 static int psci_enter_s2idle_domain_idle_state(struct cpuidle_device *dev,
117 struct cpuidle_driver *drv,
118 int idx)
119 {
120 return __psci_enter_domain_idle_state(dev, drv, idx, true);
121 }
122
psci_idle_cpuhp_up(unsigned int cpu)123 static int psci_idle_cpuhp_up(unsigned int cpu)
124 {
125 struct device *pd_dev = __this_cpu_read(psci_cpuidle_data.dev);
126
127 if (pd_dev)
128 pm_runtime_get_sync(pd_dev);
129
130 return 0;
131 }
132
psci_idle_cpuhp_down(unsigned int cpu)133 static int psci_idle_cpuhp_down(unsigned int cpu)
134 {
135 struct device *pd_dev = __this_cpu_read(psci_cpuidle_data.dev);
136
137 if (pd_dev) {
138 pm_runtime_put_sync(pd_dev);
139 /* Clear domain state to start fresh at next online. */
140 psci_clear_domain_state();
141 }
142
143 return 0;
144 }
145
psci_idle_syscore_switch(bool suspend)146 static void psci_idle_syscore_switch(bool suspend)
147 {
148 bool cleared = false;
149 struct device *dev;
150 int cpu;
151
152 for_each_possible_cpu(cpu) {
153 dev = per_cpu_ptr(&psci_cpuidle_data, cpu)->dev;
154
155 if (dev && suspend) {
156 dev_pm_genpd_suspend(dev);
157 } else if (dev) {
158 dev_pm_genpd_resume(dev);
159
160 /* Account for userspace having offlined a CPU. */
161 if (pm_runtime_status_suspended(dev))
162 pm_runtime_set_active(dev);
163
164 /* Clear domain state to re-start fresh. */
165 if (!cleared) {
166 psci_clear_domain_state();
167 cleared = true;
168 }
169 }
170 }
171 }
172
psci_idle_syscore_suspend(void)173 static int psci_idle_syscore_suspend(void)
174 {
175 psci_idle_syscore_switch(true);
176 return 0;
177 }
178
psci_idle_syscore_resume(void)179 static void psci_idle_syscore_resume(void)
180 {
181 psci_idle_syscore_switch(false);
182 }
183
184 static struct syscore_ops psci_idle_syscore_ops = {
185 .suspend = psci_idle_syscore_suspend,
186 .resume = psci_idle_syscore_resume,
187 };
188
psci_idle_init_syscore(void)189 static void psci_idle_init_syscore(void)
190 {
191 if (psci_cpuidle_use_syscore)
192 register_syscore_ops(&psci_idle_syscore_ops);
193 }
194
psci_idle_init_cpuhp(void)195 static void psci_idle_init_cpuhp(void)
196 {
197 int err;
198
199 if (!psci_cpuidle_use_cpuhp)
200 return;
201
202 err = cpuhp_setup_state_nocalls(CPUHP_AP_CPU_PM_STARTING,
203 "cpuidle/psci:online",
204 psci_idle_cpuhp_up,
205 psci_idle_cpuhp_down);
206 if (err)
207 pr_warn("Failed %d while setup cpuhp state\n", err);
208 }
209
psci_enter_idle_state(struct cpuidle_device * dev,struct cpuidle_driver * drv,int idx)210 static __cpuidle int psci_enter_idle_state(struct cpuidle_device *dev,
211 struct cpuidle_driver *drv, int idx)
212 {
213 u32 *state = __this_cpu_read(psci_cpuidle_data.psci_states);
214
215 return CPU_PM_CPU_IDLE_ENTER_PARAM_RCU(psci_cpu_suspend_enter, idx, state[idx]);
216 }
217
218 static const struct of_device_id psci_idle_state_match[] = {
219 { .compatible = "arm,idle-state",
220 .data = psci_enter_idle_state },
221 { },
222 };
223
psci_dt_parse_state_node(struct device_node * np,u32 * state)224 int psci_dt_parse_state_node(struct device_node *np, u32 *state)
225 {
226 int err = of_property_read_u32(np, "arm,psci-suspend-param", state);
227
228 if (err) {
229 pr_warn("%pOF missing arm,psci-suspend-param property\n", np);
230 return err;
231 }
232
233 if (!psci_power_state_is_valid(*state)) {
234 pr_warn("Invalid PSCI power state %#x\n", *state);
235 return -EINVAL;
236 }
237
238 return 0;
239 }
240
psci_dt_cpu_init_topology(struct cpuidle_driver * drv,struct psci_cpuidle_data * data,unsigned int state_count,int cpu)241 static int psci_dt_cpu_init_topology(struct cpuidle_driver *drv,
242 struct psci_cpuidle_data *data,
243 unsigned int state_count, int cpu)
244 {
245 /* Currently limit the hierarchical topology to be used in OSI mode. */
246 if (!psci_has_osi_support())
247 return 0;
248
249 data->dev = dt_idle_attach_cpu(cpu, "psci");
250 if (IS_ERR_OR_NULL(data->dev))
251 return PTR_ERR_OR_ZERO(data->dev);
252
253 psci_cpuidle_use_syscore = true;
254
255 /*
256 * Using the deepest state for the CPU to trigger a potential selection
257 * of a shared state for the domain, assumes the domain states are all
258 * deeper states. On PREEMPT_RT the hierarchical topology is limited to
259 * s2ram and s2idle.
260 */
261 drv->states[state_count - 1].enter_s2idle = psci_enter_s2idle_domain_idle_state;
262 if (!IS_ENABLED(CONFIG_PREEMPT_RT)) {
263 drv->states[state_count - 1].enter = psci_enter_domain_idle_state;
264 psci_cpuidle_use_cpuhp = true;
265 }
266
267 return 0;
268 }
269
psci_dt_cpu_init_idle(struct device * dev,struct cpuidle_driver * drv,struct device_node * cpu_node,unsigned int state_count,int cpu)270 static int psci_dt_cpu_init_idle(struct device *dev, struct cpuidle_driver *drv,
271 struct device_node *cpu_node,
272 unsigned int state_count, int cpu)
273 {
274 int i, ret = 0;
275 u32 *psci_states;
276 struct device_node *state_node;
277 struct psci_cpuidle_data *data = per_cpu_ptr(&psci_cpuidle_data, cpu);
278
279 state_count++; /* Add WFI state too */
280 psci_states = devm_kcalloc(dev, state_count, sizeof(*psci_states),
281 GFP_KERNEL);
282 if (!psci_states)
283 return -ENOMEM;
284
285 for (i = 1; i < state_count; i++) {
286 state_node = of_get_cpu_state_node(cpu_node, i - 1);
287 if (!state_node)
288 break;
289
290 ret = psci_dt_parse_state_node(state_node, &psci_states[i]);
291 of_node_put(state_node);
292
293 if (ret)
294 return ret;
295
296 pr_debug("psci-power-state %#x index %d\n", psci_states[i], i);
297 }
298
299 if (i != state_count)
300 return -ENODEV;
301
302 /* Initialize optional data, used for the hierarchical topology. */
303 ret = psci_dt_cpu_init_topology(drv, data, state_count, cpu);
304 if (ret < 0)
305 return ret;
306
307 /* Idle states parsed correctly, store them in the per-cpu struct. */
308 data->psci_states = psci_states;
309 return 0;
310 }
311
psci_cpu_init_idle(struct device * dev,struct cpuidle_driver * drv,unsigned int cpu,unsigned int state_count)312 static int psci_cpu_init_idle(struct device *dev, struct cpuidle_driver *drv,
313 unsigned int cpu, unsigned int state_count)
314 {
315 struct device_node *cpu_node;
316 int ret;
317
318 /*
319 * If the PSCI cpu_suspend function hook has not been initialized
320 * idle states must not be enabled, so bail out
321 */
322 if (!psci_ops.cpu_suspend)
323 return -EOPNOTSUPP;
324
325 cpu_node = of_cpu_device_node_get(cpu);
326 if (!cpu_node)
327 return -ENODEV;
328
329 ret = psci_dt_cpu_init_idle(dev, drv, cpu_node, state_count, cpu);
330
331 of_node_put(cpu_node);
332
333 return ret;
334 }
335
psci_cpu_deinit_idle(int cpu)336 static void psci_cpu_deinit_idle(int cpu)
337 {
338 struct psci_cpuidle_data *data = per_cpu_ptr(&psci_cpuidle_data, cpu);
339
340 dt_idle_detach_cpu(data->dev);
341 psci_cpuidle_use_syscore = false;
342 psci_cpuidle_use_cpuhp = false;
343 }
344
psci_idle_init_cpu(struct device * dev,int cpu)345 static int psci_idle_init_cpu(struct device *dev, int cpu)
346 {
347 struct cpuidle_driver *drv;
348 struct device_node *cpu_node;
349 const char *enable_method;
350 int ret = 0;
351
352 cpu_node = of_cpu_device_node_get(cpu);
353 if (!cpu_node)
354 return -ENODEV;
355
356 /*
357 * Check whether the enable-method for the cpu is PSCI, fail
358 * if it is not.
359 */
360 enable_method = of_get_property(cpu_node, "enable-method", NULL);
361 if (!enable_method || (strcmp(enable_method, "psci")))
362 ret = -ENODEV;
363
364 of_node_put(cpu_node);
365 if (ret)
366 return ret;
367
368 drv = devm_kzalloc(dev, sizeof(*drv), GFP_KERNEL);
369 if (!drv)
370 return -ENOMEM;
371
372 drv->name = "psci_idle";
373 drv->owner = THIS_MODULE;
374 drv->cpumask = (struct cpumask *)cpumask_of(cpu);
375
376 /*
377 * PSCI idle states relies on architectural WFI to be represented as
378 * state index 0.
379 */
380 drv->states[0].enter = psci_enter_idle_state;
381 drv->states[0].exit_latency = 1;
382 drv->states[0].target_residency = 1;
383 drv->states[0].power_usage = UINT_MAX;
384 strcpy(drv->states[0].name, "WFI");
385 strcpy(drv->states[0].desc, "ARM WFI");
386
387 /*
388 * If no DT idle states are detected (ret == 0) let the driver
389 * initialization fail accordingly since there is no reason to
390 * initialize the idle driver if only wfi is supported, the
391 * default archictectural back-end already executes wfi
392 * on idle entry.
393 */
394 ret = dt_init_idle_driver(drv, psci_idle_state_match, 1);
395 if (ret <= 0)
396 return ret ? : -ENODEV;
397
398 /*
399 * Initialize PSCI idle states.
400 */
401 ret = psci_cpu_init_idle(dev, drv, cpu, ret);
402 if (ret) {
403 pr_err("CPU %d failed to PSCI idle\n", cpu);
404 return ret;
405 }
406
407 ret = cpuidle_register(drv, NULL);
408 if (ret)
409 goto deinit;
410
411 cpuidle_cooling_register(drv);
412
413 return 0;
414 deinit:
415 psci_cpu_deinit_idle(cpu);
416 return ret;
417 }
418
419 /*
420 * psci_idle_probe - Initializes PSCI cpuidle driver
421 *
422 * Initializes PSCI cpuidle driver for all present CPUs, if any CPU fails
423 * to register cpuidle driver then rollback to cancel all CPUs
424 * registration.
425 */
psci_cpuidle_probe(struct faux_device * fdev)426 static int psci_cpuidle_probe(struct faux_device *fdev)
427 {
428 int cpu, ret;
429 struct cpuidle_driver *drv;
430 struct cpuidle_device *dev;
431
432 for_each_present_cpu(cpu) {
433 ret = psci_idle_init_cpu(&fdev->dev, cpu);
434 if (ret)
435 goto out_fail;
436 }
437
438 psci_idle_init_syscore();
439 psci_idle_init_cpuhp();
440 return 0;
441
442 out_fail:
443 while (--cpu >= 0) {
444 dev = per_cpu(cpuidle_devices, cpu);
445 drv = cpuidle_get_cpu_driver(dev);
446 cpuidle_unregister(drv);
447 psci_cpu_deinit_idle(cpu);
448 }
449
450 return ret;
451 }
452
453 static struct faux_device_ops psci_cpuidle_ops = {
454 .probe = psci_cpuidle_probe,
455 };
456
dt_idle_state_present(void)457 static bool __init dt_idle_state_present(void)
458 {
459 struct device_node *cpu_node __free(device_node) =
460 of_cpu_device_node_get(cpumask_first(cpu_possible_mask));
461 if (!cpu_node)
462 return false;
463
464 struct device_node *state_node __free(device_node) =
465 of_get_cpu_state_node(cpu_node, 0);
466 if (!state_node)
467 return false;
468
469 return !!of_match_node(psci_idle_state_match, state_node);
470 }
471
psci_idle_init(void)472 static int __init psci_idle_init(void)
473 {
474 struct faux_device *fdev;
475
476 if (!dt_idle_state_present())
477 return 0;
478
479 fdev = faux_device_create("psci-cpuidle", NULL, &psci_cpuidle_ops);
480 if (!fdev) {
481 pr_err("Failed to create psci-cpuidle device\n");
482 return -ENODEV;
483 }
484
485 return 0;
486 }
487 device_initcall(psci_idle_init);
488