Merge tag 'mfd-next-4.18' of git://git.kernel.org/pub/scm/linux/kernel/git/lee/mfd
[sfrench/cifs-2.6.git] / drivers / cpuidle / cpuidle-powernv.c
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  *  cpuidle-powernv - idle state cpuidle driver.
4  *  Adapted from drivers/cpuidle/cpuidle-pseries
5  *
6  */
7
8 #include <linux/kernel.h>
9 #include <linux/module.h>
10 #include <linux/init.h>
11 #include <linux/moduleparam.h>
12 #include <linux/cpuidle.h>
13 #include <linux/cpu.h>
14 #include <linux/notifier.h>
15 #include <linux/clockchips.h>
16 #include <linux/of.h>
17 #include <linux/slab.h>
18
19 #include <asm/machdep.h>
20 #include <asm/firmware.h>
21 #include <asm/opal.h>
22 #include <asm/runlatch.h>
23 #include <asm/cpuidle.h>
24
25 /*
26  * Expose only those Hardware idle states via the cpuidle framework
27  * that have latency value below POWERNV_THRESHOLD_LATENCY_NS.
28  */
29 #define POWERNV_THRESHOLD_LATENCY_NS 200000
30
31 static struct cpuidle_driver powernv_idle_driver = {
32         .name             = "powernv_idle",
33         .owner            = THIS_MODULE,
34 };
35
36 static int max_idle_state __read_mostly;
37 static struct cpuidle_state *cpuidle_state_table __read_mostly;
38
39 struct stop_psscr_table {
40         u64 val;
41         u64 mask;
42 };
43
44 static struct stop_psscr_table stop_psscr_table[CPUIDLE_STATE_MAX] __read_mostly;
45
46 static u64 default_snooze_timeout __read_mostly;
47 static bool snooze_timeout_en __read_mostly;
48
49 static u64 get_snooze_timeout(struct cpuidle_device *dev,
50                               struct cpuidle_driver *drv,
51                               int index)
52 {
53         int i;
54
55         if (unlikely(!snooze_timeout_en))
56                 return default_snooze_timeout;
57
58         for (i = index + 1; i < drv->state_count; i++) {
59                 struct cpuidle_state *s = &drv->states[i];
60                 struct cpuidle_state_usage *su = &dev->states_usage[i];
61
62                 if (s->disabled || su->disable)
63                         continue;
64
65                 return s->target_residency * tb_ticks_per_usec;
66         }
67
68         return default_snooze_timeout;
69 }
70
71 static int snooze_loop(struct cpuidle_device *dev,
72                         struct cpuidle_driver *drv,
73                         int index)
74 {
75         u64 snooze_exit_time;
76
77         set_thread_flag(TIF_POLLING_NRFLAG);
78
79         local_irq_enable();
80
81         snooze_exit_time = get_tb() + get_snooze_timeout(dev, drv, index);
82         ppc64_runlatch_off();
83         HMT_very_low();
84         while (!need_resched()) {
85                 if (likely(snooze_timeout_en) && get_tb() > snooze_exit_time) {
86                         /*
87                          * Task has not woken up but we are exiting the polling
88                          * loop anyway. Require a barrier after polling is
89                          * cleared to order subsequent test of need_resched().
90                          */
91                         clear_thread_flag(TIF_POLLING_NRFLAG);
92                         smp_mb();
93                         break;
94                 }
95         }
96
97         HMT_medium();
98         ppc64_runlatch_on();
99         clear_thread_flag(TIF_POLLING_NRFLAG);
100
101         local_irq_disable();
102
103         return index;
104 }
105
106 static int nap_loop(struct cpuidle_device *dev,
107                         struct cpuidle_driver *drv,
108                         int index)
109 {
110         power7_idle_type(PNV_THREAD_NAP);
111
112         return index;
113 }
114
115 /* Register for fastsleep only in oneshot mode of broadcast */
116 #ifdef CONFIG_TICK_ONESHOT
117 static int fastsleep_loop(struct cpuidle_device *dev,
118                                 struct cpuidle_driver *drv,
119                                 int index)
120 {
121         unsigned long old_lpcr = mfspr(SPRN_LPCR);
122         unsigned long new_lpcr;
123
124         if (unlikely(system_state < SYSTEM_RUNNING))
125                 return index;
126
127         new_lpcr = old_lpcr;
128         /* Do not exit powersave upon decrementer as we've setup the timer
129          * offload.
130          */
131         new_lpcr &= ~LPCR_PECE1;
132
133         mtspr(SPRN_LPCR, new_lpcr);
134
135         power7_idle_type(PNV_THREAD_SLEEP);
136
137         mtspr(SPRN_LPCR, old_lpcr);
138
139         return index;
140 }
141 #endif
142
143 static int stop_loop(struct cpuidle_device *dev,
144                      struct cpuidle_driver *drv,
145                      int index)
146 {
147         power9_idle_type(stop_psscr_table[index].val,
148                          stop_psscr_table[index].mask);
149         return index;
150 }
151
152 /*
153  * States for dedicated partition case.
154  */
155 static struct cpuidle_state powernv_states[CPUIDLE_STATE_MAX] = {
156         { /* Snooze */
157                 .name = "snooze",
158                 .desc = "snooze",
159                 .exit_latency = 0,
160                 .target_residency = 0,
161                 .enter = snooze_loop },
162 };
163
164 static int powernv_cpuidle_cpu_online(unsigned int cpu)
165 {
166         struct cpuidle_device *dev = per_cpu(cpuidle_devices, cpu);
167
168         if (dev && cpuidle_get_driver()) {
169                 cpuidle_pause_and_lock();
170                 cpuidle_enable_device(dev);
171                 cpuidle_resume_and_unlock();
172         }
173         return 0;
174 }
175
176 static int powernv_cpuidle_cpu_dead(unsigned int cpu)
177 {
178         struct cpuidle_device *dev = per_cpu(cpuidle_devices, cpu);
179
180         if (dev && cpuidle_get_driver()) {
181                 cpuidle_pause_and_lock();
182                 cpuidle_disable_device(dev);
183                 cpuidle_resume_and_unlock();
184         }
185         return 0;
186 }
187
188 /*
189  * powernv_cpuidle_driver_init()
190  */
191 static int powernv_cpuidle_driver_init(void)
192 {
193         int idle_state;
194         struct cpuidle_driver *drv = &powernv_idle_driver;
195
196         drv->state_count = 0;
197
198         for (idle_state = 0; idle_state < max_idle_state; ++idle_state) {
199                 /* Is the state not enabled? */
200                 if (cpuidle_state_table[idle_state].enter == NULL)
201                         continue;
202
203                 drv->states[drv->state_count] = /* structure copy */
204                         cpuidle_state_table[idle_state];
205
206                 drv->state_count += 1;
207         }
208
209         /*
210          * On the PowerNV platform cpu_present may be less than cpu_possible in
211          * cases when firmware detects the CPU, but it is not available to the
212          * OS.  If CONFIG_HOTPLUG_CPU=n, then such CPUs are not hotplugable at
213          * run time and hence cpu_devices are not created for those CPUs by the
214          * generic topology_init().
215          *
216          * drv->cpumask defaults to cpu_possible_mask in
217          * __cpuidle_driver_init().  This breaks cpuidle on PowerNV where
218          * cpu_devices are not created for CPUs in cpu_possible_mask that
219          * cannot be hot-added later at run time.
220          *
221          * Trying cpuidle_register_device() on a CPU without a cpu_device is
222          * incorrect, so pass a correct CPU mask to the generic cpuidle driver.
223          */
224
225         drv->cpumask = (struct cpumask *)cpu_present_mask;
226
227         return 0;
228 }
229
230 static inline void add_powernv_state(int index, const char *name,
231                                      unsigned int flags,
232                                      int (*idle_fn)(struct cpuidle_device *,
233                                                     struct cpuidle_driver *,
234                                                     int),
235                                      unsigned int target_residency,
236                                      unsigned int exit_latency,
237                                      u64 psscr_val, u64 psscr_mask)
238 {
239         strlcpy(powernv_states[index].name, name, CPUIDLE_NAME_LEN);
240         strlcpy(powernv_states[index].desc, name, CPUIDLE_NAME_LEN);
241         powernv_states[index].flags = flags;
242         powernv_states[index].target_residency = target_residency;
243         powernv_states[index].exit_latency = exit_latency;
244         powernv_states[index].enter = idle_fn;
245         stop_psscr_table[index].val = psscr_val;
246         stop_psscr_table[index].mask = psscr_mask;
247 }
248
249 /*
250  * Returns 0 if prop1_len == prop2_len. Else returns -1
251  */
252 static inline int validate_dt_prop_sizes(const char *prop1, int prop1_len,
253                                          const char *prop2, int prop2_len)
254 {
255         if (prop1_len == prop2_len)
256                 return 0;
257
258         pr_warn("cpuidle-powernv: array sizes don't match for %s and %s\n",
259                 prop1, prop2);
260         return -1;
261 }
262
263 extern u32 pnv_get_supported_cpuidle_states(void);
264 static int powernv_add_idle_states(void)
265 {
266         struct device_node *power_mgt;
267         int nr_idle_states = 1; /* Snooze */
268         int dt_idle_states, count;
269         u32 latency_ns[CPUIDLE_STATE_MAX];
270         u32 residency_ns[CPUIDLE_STATE_MAX];
271         u32 flags[CPUIDLE_STATE_MAX];
272         u64 psscr_val[CPUIDLE_STATE_MAX];
273         u64 psscr_mask[CPUIDLE_STATE_MAX];
274         const char *names[CPUIDLE_STATE_MAX];
275         u32 has_stop_states = 0;
276         int i, rc;
277         u32 supported_flags = pnv_get_supported_cpuidle_states();
278
279
280         /* Currently we have snooze statically defined */
281
282         power_mgt = of_find_node_by_path("/ibm,opal/power-mgt");
283         if (!power_mgt) {
284                 pr_warn("opal: PowerMgmt Node not found\n");
285                 goto out;
286         }
287
288         /* Read values of any property to determine the num of idle states */
289         dt_idle_states = of_property_count_u32_elems(power_mgt, "ibm,cpu-idle-state-flags");
290         if (dt_idle_states < 0) {
291                 pr_warn("cpuidle-powernv: no idle states found in the DT\n");
292                 goto out;
293         }
294
295         count = of_property_count_u32_elems(power_mgt,
296                                             "ibm,cpu-idle-state-latencies-ns");
297
298         if (validate_dt_prop_sizes("ibm,cpu-idle-state-flags", dt_idle_states,
299                                    "ibm,cpu-idle-state-latencies-ns",
300                                    count) != 0)
301                 goto out;
302
303         count = of_property_count_strings(power_mgt,
304                                           "ibm,cpu-idle-state-names");
305         if (validate_dt_prop_sizes("ibm,cpu-idle-state-flags", dt_idle_states,
306                                    "ibm,cpu-idle-state-names",
307                                    count) != 0)
308                 goto out;
309
310         /*
311          * Since snooze is used as first idle state, max idle states allowed is
312          * CPUIDLE_STATE_MAX -1
313          */
314         if (dt_idle_states > CPUIDLE_STATE_MAX - 1) {
315                 pr_warn("cpuidle-powernv: discovered idle states more than allowed");
316                 dt_idle_states = CPUIDLE_STATE_MAX - 1;
317         }
318
319         if (of_property_read_u32_array(power_mgt,
320                         "ibm,cpu-idle-state-flags", flags, dt_idle_states)) {
321                 pr_warn("cpuidle-powernv : missing ibm,cpu-idle-state-flags in DT\n");
322                 goto out;
323         }
324
325         if (of_property_read_u32_array(power_mgt,
326                 "ibm,cpu-idle-state-latencies-ns", latency_ns,
327                 dt_idle_states)) {
328                 pr_warn("cpuidle-powernv: missing ibm,cpu-idle-state-latencies-ns in DT\n");
329                 goto out;
330         }
331         if (of_property_read_string_array(power_mgt,
332                 "ibm,cpu-idle-state-names", names, dt_idle_states) < 0) {
333                 pr_warn("cpuidle-powernv: missing ibm,cpu-idle-state-names in DT\n");
334                 goto out;
335         }
336
337         /*
338          * If the idle states use stop instruction, probe for psscr values
339          * and psscr mask which are necessary to specify required stop level.
340          */
341         has_stop_states = (flags[0] &
342                            (OPAL_PM_STOP_INST_FAST | OPAL_PM_STOP_INST_DEEP));
343         if (has_stop_states) {
344                 count = of_property_count_u64_elems(power_mgt,
345                                                     "ibm,cpu-idle-state-psscr");
346                 if (validate_dt_prop_sizes("ibm,cpu-idle-state-flags",
347                                            dt_idle_states,
348                                            "ibm,cpu-idle-state-psscr",
349                                            count) != 0)
350                         goto out;
351
352                 count = of_property_count_u64_elems(power_mgt,
353                                                     "ibm,cpu-idle-state-psscr-mask");
354                 if (validate_dt_prop_sizes("ibm,cpu-idle-state-flags",
355                                            dt_idle_states,
356                                            "ibm,cpu-idle-state-psscr-mask",
357                                            count) != 0)
358                         goto out;
359
360                 if (of_property_read_u64_array(power_mgt,
361                     "ibm,cpu-idle-state-psscr", psscr_val, dt_idle_states)) {
362                         pr_warn("cpuidle-powernv: missing ibm,cpu-idle-state-psscr in DT\n");
363                         goto out;
364                 }
365
366                 if (of_property_read_u64_array(power_mgt,
367                                                "ibm,cpu-idle-state-psscr-mask",
368                                                 psscr_mask, dt_idle_states)) {
369                         pr_warn("cpuidle-powernv:Missing ibm,cpu-idle-state-psscr-mask in DT\n");
370                         goto out;
371                 }
372         }
373
374         count = of_property_count_u32_elems(power_mgt,
375                                             "ibm,cpu-idle-state-residency-ns");
376
377         if (count < 0) {
378                 rc = count;
379         } else if (validate_dt_prop_sizes("ibm,cpu-idle-state-flags",
380                                           dt_idle_states,
381                                           "ibm,cpu-idle-state-residency-ns",
382                                           count) != 0) {
383                 goto out;
384         } else {
385                 rc = of_property_read_u32_array(power_mgt,
386                                                 "ibm,cpu-idle-state-residency-ns",
387                                                 residency_ns, dt_idle_states);
388         }
389
390         for (i = 0; i < dt_idle_states; i++) {
391                 unsigned int exit_latency, target_residency;
392                 bool stops_timebase = false;
393
394                 /*
395                  * Skip the platform idle state whose flag isn't in
396                  * the supported_cpuidle_states flag mask.
397                  */
398                 if ((flags[i] & supported_flags) != flags[i])
399                         continue;
400                 /*
401                  * If an idle state has exit latency beyond
402                  * POWERNV_THRESHOLD_LATENCY_NS then don't use it
403                  * in cpu-idle.
404                  */
405                 if (latency_ns[i] > POWERNV_THRESHOLD_LATENCY_NS)
406                         continue;
407                 /*
408                  * Firmware passes residency and latency values in ns.
409                  * cpuidle expects it in us.
410                  */
411                 exit_latency = DIV_ROUND_UP(latency_ns[i], 1000);
412                 if (!rc)
413                         target_residency = DIV_ROUND_UP(residency_ns[i], 1000);
414                 else
415                         target_residency = 0;
416
417                 if (has_stop_states) {
418                         int err = validate_psscr_val_mask(&psscr_val[i],
419                                                           &psscr_mask[i],
420                                                           flags[i]);
421                         if (err) {
422                                 report_invalid_psscr_val(psscr_val[i], err);
423                                 continue;
424                         }
425                 }
426
427                 if (flags[i] & OPAL_PM_TIMEBASE_STOP)
428                         stops_timebase = true;
429
430                 /*
431                  * For nap and fastsleep, use default target_residency
432                  * values if f/w does not expose it.
433                  */
434                 if (flags[i] & OPAL_PM_NAP_ENABLED) {
435                         if (!rc)
436                                 target_residency = 100;
437                         /* Add NAP state */
438                         add_powernv_state(nr_idle_states, "Nap",
439                                           CPUIDLE_FLAG_NONE, nap_loop,
440                                           target_residency, exit_latency, 0, 0);
441                 } else if (has_stop_states && !stops_timebase) {
442                         add_powernv_state(nr_idle_states, names[i],
443                                           CPUIDLE_FLAG_NONE, stop_loop,
444                                           target_residency, exit_latency,
445                                           psscr_val[i], psscr_mask[i]);
446                 }
447
448                 /*
449                  * All cpuidle states with CPUIDLE_FLAG_TIMER_STOP set must come
450                  * within this config dependency check.
451                  */
452 #ifdef CONFIG_TICK_ONESHOT
453                 else if (flags[i] & OPAL_PM_SLEEP_ENABLED ||
454                          flags[i] & OPAL_PM_SLEEP_ENABLED_ER1) {
455                         if (!rc)
456                                 target_residency = 300000;
457                         /* Add FASTSLEEP state */
458                         add_powernv_state(nr_idle_states, "FastSleep",
459                                           CPUIDLE_FLAG_TIMER_STOP,
460                                           fastsleep_loop,
461                                           target_residency, exit_latency, 0, 0);
462                 } else if (has_stop_states && stops_timebase) {
463                         add_powernv_state(nr_idle_states, names[i],
464                                           CPUIDLE_FLAG_TIMER_STOP, stop_loop,
465                                           target_residency, exit_latency,
466                                           psscr_val[i], psscr_mask[i]);
467                 }
468 #endif
469                 else
470                         continue;
471                 nr_idle_states++;
472         }
473 out:
474         return nr_idle_states;
475 }
476
477 /*
478  * powernv_idle_probe()
479  * Choose state table for shared versus dedicated partition
480  */
481 static int powernv_idle_probe(void)
482 {
483         if (cpuidle_disable != IDLE_NO_OVERRIDE)
484                 return -ENODEV;
485
486         if (firmware_has_feature(FW_FEATURE_OPAL)) {
487                 cpuidle_state_table = powernv_states;
488                 /* Device tree can indicate more idle states */
489                 max_idle_state = powernv_add_idle_states();
490                 default_snooze_timeout = TICK_USEC * tb_ticks_per_usec;
491                 if (max_idle_state > 1)
492                         snooze_timeout_en = true;
493         } else
494                 return -ENODEV;
495
496         return 0;
497 }
498
499 static int __init powernv_processor_idle_init(void)
500 {
501         int retval;
502
503         retval = powernv_idle_probe();
504         if (retval)
505                 return retval;
506
507         powernv_cpuidle_driver_init();
508         retval = cpuidle_register(&powernv_idle_driver, NULL);
509         if (retval) {
510                 printk(KERN_DEBUG "Registration of powernv driver failed.\n");
511                 return retval;
512         }
513
514         retval = cpuhp_setup_state_nocalls(CPUHP_AP_ONLINE_DYN,
515                                            "cpuidle/powernv:online",
516                                            powernv_cpuidle_cpu_online, NULL);
517         WARN_ON(retval < 0);
518         retval = cpuhp_setup_state_nocalls(CPUHP_CPUIDLE_DEAD,
519                                            "cpuidle/powernv:dead", NULL,
520                                            powernv_cpuidle_cpu_dead);
521         WARN_ON(retval < 0);
522         printk(KERN_DEBUG "powernv_idle_driver registered\n");
523         return 0;
524 }
525
526 device_initcall(powernv_processor_idle_init);