1 // SPDX-License-Identifier: GPL-2.0
3 * cpuidle-powernv - idle state cpuidle driver.
4 * Adapted from drivers/cpuidle/cpuidle-pseries
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>
17 #include <linux/slab.h>
19 #include <asm/machdep.h>
20 #include <asm/firmware.h>
22 #include <asm/runlatch.h>
23 #include <asm/cpuidle.h>
26 * Expose only those Hardware idle states via the cpuidle framework
27 * that have latency value below POWERNV_THRESHOLD_LATENCY_NS.
29 #define POWERNV_THRESHOLD_LATENCY_NS 200000
31 static struct cpuidle_driver powernv_idle_driver
= {
32 .name
= "powernv_idle",
36 static int max_idle_state __read_mostly
;
37 static struct cpuidle_state
*cpuidle_state_table __read_mostly
;
39 struct stop_psscr_table
{
44 static struct stop_psscr_table stop_psscr_table
[CPUIDLE_STATE_MAX
] __read_mostly
;
46 static u64 default_snooze_timeout __read_mostly
;
47 static bool snooze_timeout_en __read_mostly
;
49 static u64
get_snooze_timeout(struct cpuidle_device
*dev
,
50 struct cpuidle_driver
*drv
,
55 if (unlikely(!snooze_timeout_en
))
56 return default_snooze_timeout
;
58 for (i
= index
+ 1; i
< drv
->state_count
; i
++) {
59 if (dev
->states_usage
[i
].disable
)
62 return drv
->states
[i
].target_residency
* tb_ticks_per_usec
;
65 return default_snooze_timeout
;
68 static int snooze_loop(struct cpuidle_device
*dev
,
69 struct cpuidle_driver
*drv
,
74 set_thread_flag(TIF_POLLING_NRFLAG
);
78 snooze_exit_time
= get_tb() + get_snooze_timeout(dev
, drv
, index
);
81 while (!need_resched()) {
82 if (likely(snooze_timeout_en
) && get_tb() > snooze_exit_time
) {
84 * Task has not woken up but we are exiting the polling
85 * loop anyway. Require a barrier after polling is
86 * cleared to order subsequent test of need_resched().
88 clear_thread_flag(TIF_POLLING_NRFLAG
);
96 clear_thread_flag(TIF_POLLING_NRFLAG
);
103 static int nap_loop(struct cpuidle_device
*dev
,
104 struct cpuidle_driver
*drv
,
107 power7_idle_type(PNV_THREAD_NAP
);
112 /* Register for fastsleep only in oneshot mode of broadcast */
113 #ifdef CONFIG_TICK_ONESHOT
114 static int fastsleep_loop(struct cpuidle_device
*dev
,
115 struct cpuidle_driver
*drv
,
118 unsigned long old_lpcr
= mfspr(SPRN_LPCR
);
119 unsigned long new_lpcr
;
121 if (unlikely(system_state
< SYSTEM_RUNNING
))
125 /* Do not exit powersave upon decrementer as we've setup the timer
128 new_lpcr
&= ~LPCR_PECE1
;
130 mtspr(SPRN_LPCR
, new_lpcr
);
132 power7_idle_type(PNV_THREAD_SLEEP
);
134 mtspr(SPRN_LPCR
, old_lpcr
);
140 static int stop_loop(struct cpuidle_device
*dev
,
141 struct cpuidle_driver
*drv
,
144 arch300_idle_type(stop_psscr_table
[index
].val
,
145 stop_psscr_table
[index
].mask
);
150 * States for dedicated partition case.
152 static struct cpuidle_state powernv_states
[CPUIDLE_STATE_MAX
] = {
157 .target_residency
= 0,
158 .enter
= snooze_loop
},
161 static int powernv_cpuidle_cpu_online(unsigned int cpu
)
163 struct cpuidle_device
*dev
= per_cpu(cpuidle_devices
, cpu
);
165 if (dev
&& cpuidle_get_driver()) {
166 cpuidle_pause_and_lock();
167 cpuidle_enable_device(dev
);
168 cpuidle_resume_and_unlock();
173 static int powernv_cpuidle_cpu_dead(unsigned int cpu
)
175 struct cpuidle_device
*dev
= per_cpu(cpuidle_devices
, cpu
);
177 if (dev
&& cpuidle_get_driver()) {
178 cpuidle_pause_and_lock();
179 cpuidle_disable_device(dev
);
180 cpuidle_resume_and_unlock();
186 * powernv_cpuidle_driver_init()
188 static int powernv_cpuidle_driver_init(void)
191 struct cpuidle_driver
*drv
= &powernv_idle_driver
;
193 drv
->state_count
= 0;
195 for (idle_state
= 0; idle_state
< max_idle_state
; ++idle_state
) {
196 /* Is the state not enabled? */
197 if (cpuidle_state_table
[idle_state
].enter
== NULL
)
200 drv
->states
[drv
->state_count
] = /* structure copy */
201 cpuidle_state_table
[idle_state
];
203 drv
->state_count
+= 1;
207 * On the PowerNV platform cpu_present may be less than cpu_possible in
208 * cases when firmware detects the CPU, but it is not available to the
209 * OS. If CONFIG_HOTPLUG_CPU=n, then such CPUs are not hotplugable at
210 * run time and hence cpu_devices are not created for those CPUs by the
211 * generic topology_init().
213 * drv->cpumask defaults to cpu_possible_mask in
214 * __cpuidle_driver_init(). This breaks cpuidle on PowerNV where
215 * cpu_devices are not created for CPUs in cpu_possible_mask that
216 * cannot be hot-added later at run time.
218 * Trying cpuidle_register_device() on a CPU without a cpu_device is
219 * incorrect, so pass a correct CPU mask to the generic cpuidle driver.
222 drv
->cpumask
= (struct cpumask
*)cpu_present_mask
;
227 static inline void add_powernv_state(int index
, const char *name
,
229 int (*idle_fn
)(struct cpuidle_device
*,
230 struct cpuidle_driver
*,
232 unsigned int target_residency
,
233 unsigned int exit_latency
,
234 u64 psscr_val
, u64 psscr_mask
)
236 strlcpy(powernv_states
[index
].name
, name
, CPUIDLE_NAME_LEN
);
237 strlcpy(powernv_states
[index
].desc
, name
, CPUIDLE_NAME_LEN
);
238 powernv_states
[index
].flags
= flags
;
239 powernv_states
[index
].target_residency
= target_residency
;
240 powernv_states
[index
].exit_latency
= exit_latency
;
241 powernv_states
[index
].enter
= idle_fn
;
242 /* For power8 and below psscr_* will be 0 */
243 stop_psscr_table
[index
].val
= psscr_val
;
244 stop_psscr_table
[index
].mask
= psscr_mask
;
247 extern u32
pnv_get_supported_cpuidle_states(void);
248 static int powernv_add_idle_states(void)
250 int nr_idle_states
= 1; /* Snooze */
252 u32 has_stop_states
= 0;
254 u32 supported_flags
= pnv_get_supported_cpuidle_states();
257 /* Currently we have snooze statically defined */
258 if (nr_pnv_idle_states
<= 0) {
259 pr_warn("cpuidle-powernv : Only Snooze is available\n");
263 /* TODO: Count only states which are eligible for cpuidle */
264 dt_idle_states
= nr_pnv_idle_states
;
267 * Since snooze is used as first idle state, max idle states allowed is
268 * CPUIDLE_STATE_MAX -1
270 if (nr_pnv_idle_states
> CPUIDLE_STATE_MAX
- 1) {
271 pr_warn("cpuidle-powernv: discovered idle states more than allowed");
272 dt_idle_states
= CPUIDLE_STATE_MAX
- 1;
276 * If the idle states use stop instruction, probe for psscr values
277 * and psscr mask which are necessary to specify required stop level.
279 has_stop_states
= (pnv_idle_states
[0].flags
&
280 (OPAL_PM_STOP_INST_FAST
| OPAL_PM_STOP_INST_DEEP
));
282 for (i
= 0; i
< dt_idle_states
; i
++) {
283 unsigned int exit_latency
, target_residency
;
284 bool stops_timebase
= false;
285 struct pnv_idle_states_t
*state
= &pnv_idle_states
[i
];
288 * Skip the platform idle state whose flag isn't in
289 * the supported_cpuidle_states flag mask.
291 if ((state
->flags
& supported_flags
) != state
->flags
)
294 * If an idle state has exit latency beyond
295 * POWERNV_THRESHOLD_LATENCY_NS then don't use it
298 if (state
->latency_ns
> POWERNV_THRESHOLD_LATENCY_NS
)
301 * Firmware passes residency and latency values in ns.
302 * cpuidle expects it in us.
304 exit_latency
= DIV_ROUND_UP(state
->latency_ns
, 1000);
305 target_residency
= DIV_ROUND_UP(state
->residency_ns
, 1000);
307 if (has_stop_states
&& !(state
->valid
))
310 if (state
->flags
& OPAL_PM_TIMEBASE_STOP
)
311 stops_timebase
= true;
313 if (state
->flags
& OPAL_PM_NAP_ENABLED
) {
315 add_powernv_state(nr_idle_states
, "Nap",
316 CPUIDLE_FLAG_NONE
, nap_loop
,
317 target_residency
, exit_latency
, 0, 0);
318 } else if (has_stop_states
&& !stops_timebase
) {
319 add_powernv_state(nr_idle_states
, state
->name
,
320 CPUIDLE_FLAG_NONE
, stop_loop
,
321 target_residency
, exit_latency
,
327 * All cpuidle states with CPUIDLE_FLAG_TIMER_STOP set must come
328 * within this config dependency check.
330 #ifdef CONFIG_TICK_ONESHOT
331 else if (state
->flags
& OPAL_PM_SLEEP_ENABLED
||
332 state
->flags
& OPAL_PM_SLEEP_ENABLED_ER1
) {
333 /* Add FASTSLEEP state */
334 add_powernv_state(nr_idle_states
, "FastSleep",
335 CPUIDLE_FLAG_TIMER_STOP
,
337 target_residency
, exit_latency
, 0, 0);
338 } else if (has_stop_states
&& stops_timebase
) {
339 add_powernv_state(nr_idle_states
, state
->name
,
340 CPUIDLE_FLAG_TIMER_STOP
, stop_loop
,
341 target_residency
, exit_latency
,
351 return nr_idle_states
;
355 * powernv_idle_probe()
356 * Choose state table for shared versus dedicated partition
358 static int powernv_idle_probe(void)
360 if (cpuidle_disable
!= IDLE_NO_OVERRIDE
)
363 if (firmware_has_feature(FW_FEATURE_OPAL
)) {
364 cpuidle_state_table
= powernv_states
;
365 /* Device tree can indicate more idle states */
366 max_idle_state
= powernv_add_idle_states();
367 default_snooze_timeout
= TICK_USEC
* tb_ticks_per_usec
;
368 if (max_idle_state
> 1)
369 snooze_timeout_en
= true;
376 static int __init
powernv_processor_idle_init(void)
380 retval
= powernv_idle_probe();
384 powernv_cpuidle_driver_init();
385 retval
= cpuidle_register(&powernv_idle_driver
, NULL
);
387 printk(KERN_DEBUG
"Registration of powernv driver failed.\n");
391 retval
= cpuhp_setup_state_nocalls(CPUHP_AP_ONLINE_DYN
,
392 "cpuidle/powernv:online",
393 powernv_cpuidle_cpu_online
, NULL
);
395 retval
= cpuhp_setup_state_nocalls(CPUHP_CPUIDLE_DEAD
,
396 "cpuidle/powernv:dead", NULL
,
397 powernv_cpuidle_cpu_dead
);
399 printk(KERN_DEBUG
"powernv_idle_driver registered\n");
403 device_initcall(powernv_processor_idle_init
);