Power management updates for 5.19-rc1

- Update the Energy Model support code to allow the Energy Model to be
    artificial, which means that the power values may not be on a uniform
    scale with other devices providing power information, and update the
    cpufreq_cooling and devfreq_cooling thermal drivers to support
    artificial Energy Models (Lukasz Luba).
 
  - Make DTPM check the Energy Model type (Lukasz Luba).
 
  - Fix policy counter decrementation in cpufreq if Energy Model is in
    use (Pierre Gondois).
 
  - Add CPU-based scaling support to passive devfreq governor (Saravana
    Kannan, Chanwoo Choi).
 
  - Update the rk3399_dmc devfreq driver (Brian Norris).
 
  - Export dev_pm_ops instead of suspend() and resume() in the IIO
    chemical scd30 driver (Jonathan Cameron).
 
  - Add namespace variants of EXPORT[_GPL]_SIMPLE_DEV_PM_OPS and
    PM-runtime counterparts (Jonathan Cameron).
 
  - Move symbol exports in the IIO chemical scd30 driver into the
    IIO_SCD30 namespace (Jonathan Cameron).
 
  - Avoid device PM-runtime usage count underflows (Rafael Wysocki).
 
  - Allow dynamic debug to control printing of PM messages  (David
    Cohen).
 
  - Fix some kernel-doc comments in hibernation code (Yang Li, Haowen
    Bai).
 
  - Preserve ACPI-table override during hibernation (Amadeusz Sławiński).
 
  - Improve support for suspend-to-RAM for PSCI OSI mode (Ulf Hansson).
 
  - Make Intel RAPL power capping driver support the RaptorLake and
    AlderLake N processors (Zhang Rui, Sumeet Pawnikar).
 
  - Remove redundant store to value after multiply in the RAPL power
    capping driver (Colin Ian King).
 
  - Add AlderLake processor support to the intel_idle driver (Zhang Rui).
 
  - Fix regression leading to no genpd governor in the PSCI cpuidle
    driver and fix the riscv-sbi cpuidle driver to allow a genpd
    governor to be used (Ulf Hansson).
 
  - Fix cpufreq governor clean up code to avoid using kfree() directly
    to free kobject-based items (Kevin Hao).
 
  - Prepare cpufreq for powerpc's asm/prom.h cleanup (Christophe Leroy).
 
  - Make intel_pstate notify frequency invariance code when no_turbo is
    turned on and off (Chen Yu).
 
  - Add Sapphire Rapids OOB mode support to intel_pstate (Srinivas
    Pandruvada).
 
  - Make cpufreq avoid unnecessary frequency updates due to mismatch
    between hardware and the frequency table (Viresh Kumar).
 
  - Make remove_cpu_dev_symlink() clear the real_cpus mask to simplify
    code (Viresh Kumar).
 
  - Rearrange cpufreq_offline() and cpufreq_remove_dev() to make the
    calling convention for some driver callbacks consistent (Rafael
    Wysocki).
 
  - Avoid accessing half-initialized cpufreq policies from the show()
    and store() sysfs functions (Schspa Shi).
 
  - Rearrange cpufreq_offline() to make the calling convention for some
    driver callbacks consistent (Schspa Shi).
 
  - Update CPPC handling in cpufreq (Pierre Gondois).
 
  - Extend dev_pm_domain_detach() doc (Krzysztof Kozlowski).
 
  - Move genpd's time-accounting to ktime_get_mono_fast_ns() (Ulf
    Hansson).
 
  - Improve the way genpd deals with its governors (Ulf Hansson).
 
  - Update the turbostat utility to version 2022.04.16 (Len Brown,
    Dan Merillat, Sumeet Pawnikar, Zephaniah E. Loss-Cutler-Hull, Chen
    Yu).
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Merge tag 'pm-5.19-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael/linux-pm

Pull power management updates from Rafael Wysocki:
 "These add support for 'artificial' Energy Models in which power
  numbers for different entities may be in different scales, add support
  for some new hardware, fix bugs and clean up code in multiple places.

  Specifics:

   - Update the Energy Model support code to allow the Energy Model to
     be artificial, which means that the power values may not be on a
     uniform scale with other devices providing power information, and
     update the cpufreq_cooling and devfreq_cooling thermal drivers to
     support artificial Energy Models (Lukasz Luba).

   - Make DTPM check the Energy Model type (Lukasz Luba).

   - Fix policy counter decrementation in cpufreq if Energy Model is in
     use (Pierre Gondois).

   - Add CPU-based scaling support to passive devfreq governor (Saravana
     Kannan, Chanwoo Choi).

   - Update the rk3399_dmc devfreq driver (Brian Norris).

   - Export dev_pm_ops instead of suspend() and resume() in the IIO
     chemical scd30 driver (Jonathan Cameron).

   - Add namespace variants of EXPORT[_GPL]_SIMPLE_DEV_PM_OPS and
     PM-runtime counterparts (Jonathan Cameron).

   - Move symbol exports in the IIO chemical scd30 driver into the
     IIO_SCD30 namespace (Jonathan Cameron).

   - Avoid device PM-runtime usage count underflows (Rafael Wysocki).

   - Allow dynamic debug to control printing of PM messages (David
     Cohen).

   - Fix some kernel-doc comments in hibernation code (Yang Li, Haowen
     Bai).

   - Preserve ACPI-table override during hibernation (Amadeusz
     Sławiński).

   - Improve support for suspend-to-RAM for PSCI OSI mode (Ulf Hansson).

   - Make Intel RAPL power capping driver support the RaptorLake and
     AlderLake N processors (Zhang Rui, Sumeet Pawnikar).

   - Remove redundant store to value after multiply in the RAPL power
     capping driver (Colin Ian King).

   - Add AlderLake processor support to the intel_idle driver (Zhang
     Rui).

   - Fix regression leading to no genpd governor in the PSCI cpuidle
     driver and fix the riscv-sbi cpuidle driver to allow a genpd
     governor to be used (Ulf Hansson).

   - Fix cpufreq governor clean up code to avoid using kfree() directly
     to free kobject-based items (Kevin Hao).

   - Prepare cpufreq for powerpc's asm/prom.h cleanup (Christophe
     Leroy).

   - Make intel_pstate notify frequency invariance code when no_turbo is
     turned on and off (Chen Yu).

   - Add Sapphire Rapids OOB mode support to intel_pstate (Srinivas
     Pandruvada).

   - Make cpufreq avoid unnecessary frequency updates due to mismatch
     between hardware and the frequency table (Viresh Kumar).

   - Make remove_cpu_dev_symlink() clear the real_cpus mask to simplify
     code (Viresh Kumar).

   - Rearrange cpufreq_offline() and cpufreq_remove_dev() to make the
     calling convention for some driver callbacks consistent (Rafael
     Wysocki).

   - Avoid accessing half-initialized cpufreq policies from the show()
     and store() sysfs functions (Schspa Shi).

   - Rearrange cpufreq_offline() to make the calling convention for some
     driver callbacks consistent (Schspa Shi).

   - Update CPPC handling in cpufreq (Pierre Gondois).

   - Extend dev_pm_domain_detach() doc (Krzysztof Kozlowski).

   - Move genpd's time-accounting to ktime_get_mono_fast_ns() (Ulf
     Hansson).

   - Improve the way genpd deals with its governors (Ulf Hansson).

   - Update the turbostat utility to version 2022.04.16 (Len Brown, Dan
     Merillat, Sumeet Pawnikar, Zephaniah E. Loss-Cutler-Hull, Chen Yu)"

* tag 'pm-5.19-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael/linux-pm: (94 commits)
  PM: domains: Trust domain-idle-states from DT to be correct by genpd
  PM: domains: Measure power-on/off latencies in genpd based on a governor
  PM: domains: Allocate governor data dynamically based on a genpd governor
  PM: domains: Clean up some code in pm_genpd_init() and genpd_remove()
  PM: domains: Fix initialization of genpd's next_wakeup
  PM: domains: Fixup QoS latency measurements for IRQ safe devices in genpd
  PM: domains: Measure suspend/resume latencies in genpd based on governor
  PM: domains: Move the next_wakeup variable into the struct gpd_timing_data
  PM: domains: Allocate gpd_timing_data dynamically based on governor
  PM: domains: Skip another warning in irq_safe_dev_in_sleep_domain()
  PM: domains: Rename irq_safe_dev_in_no_sleep_domain() in genpd
  PM: domains: Don't check PM_QOS_FLAG_NO_POWER_OFF in genpd
  PM: domains: Drop redundant code for genpd always-on governor
  PM: domains: Add GENPD_FLAG_RPM_ALWAYS_ON for the always-on governor
  powercap: intel_rapl: remove redundant store to value after multiply
  cpufreq: CPPC: Enable dvfs_possible_from_any_cpu
  cpufreq: CPPC: Enable fast_switch
  ACPI: CPPC: Assume no transition latency if no PCCT
  ACPI: bus: Set CPPC _OSC bits for all and when CPPC_LIB is supported
  ACPI: CPPC: Check _OSC for flexible address space
  ...
This commit is contained in:
Linus Torvalds 2022-05-24 16:04:25 -07:00
commit 09583dfed2
60 changed files with 2469 additions and 1011 deletions

View file

@ -574,6 +574,7 @@ acpi_status acpi_run_osc(acpi_handle handle, struct acpi_osc_context *context);
#define OSC_SB_OSLPI_SUPPORT 0x00000100
#define OSC_SB_CPC_DIVERSE_HIGH_SUPPORT 0x00001000
#define OSC_SB_GENERIC_INITIATOR_SUPPORT 0x00002000
#define OSC_SB_CPC_FLEXIBLE_ADR_SPACE 0x00004000
#define OSC_SB_NATIVE_USB4_SUPPORT 0x00040000
#define OSC_SB_PRM_SUPPORT 0x00200000
@ -581,6 +582,7 @@ extern bool osc_sb_apei_support_acked;
extern bool osc_pc_lpi_support_confirmed;
extern bool osc_sb_native_usb4_support_confirmed;
extern bool osc_sb_cppc_not_supported;
extern bool osc_cpc_flexible_adr_space_confirmed;
/* USB4 Capabilities */
#define OSC_USB_USB3_TUNNELING 0x00000001

View file

@ -38,6 +38,7 @@ enum devfreq_timer {
struct devfreq;
struct devfreq_governor;
struct devfreq_cpu_data;
struct thermal_cooling_device;
/**
@ -288,6 +289,11 @@ struct devfreq_simple_ondemand_data {
#endif
#if IS_ENABLED(CONFIG_DEVFREQ_GOV_PASSIVE)
enum devfreq_parent_dev_type {
DEVFREQ_PARENT_DEV,
CPUFREQ_PARENT_DEV,
};
/**
* struct devfreq_passive_data - ``void *data`` fed to struct devfreq
* and devfreq_add_device
@ -299,8 +305,11 @@ struct devfreq_simple_ondemand_data {
* using governors except for passive governor.
* If the devfreq device has the specific method to decide
* the next frequency, should use this callback.
* @this: the devfreq instance of own device.
* @nb: the notifier block for DEVFREQ_TRANSITION_NOTIFIER list
* @parent_type: the parent type of the device.
* @this: the devfreq instance of own device.
* @nb: the notifier block for DEVFREQ_TRANSITION_NOTIFIER or
* CPUFREQ_TRANSITION_NOTIFIER list.
* @cpu_data_list: the list of cpu frequency data for all cpufreq_policy.
*
* The devfreq_passive_data have to set the devfreq instance of parent
* device with governors except for the passive governor. But, don't need to
@ -314,9 +323,13 @@ struct devfreq_passive_data {
/* Optional callback to decide the next frequency of passvice device */
int (*get_target_freq)(struct devfreq *this, unsigned long *freq);
/* Should set the type of parent device */
enum devfreq_parent_dev_type parent_type;
/* For passive governor's internal use. Don't need to set them */
struct devfreq *this;
struct notifier_block nb;
struct list_head cpu_data_list;
};
#endif

View file

@ -67,11 +67,16 @@ struct em_perf_domain {
*
* EM_PERF_DOMAIN_SKIP_INEFFICIENCIES: Skip inefficient states when estimating
* energy consumption.
*
* EM_PERF_DOMAIN_ARTIFICIAL: The power values are artificial and might be
* created by platform missing real power information
*/
#define EM_PERF_DOMAIN_MILLIWATTS BIT(0)
#define EM_PERF_DOMAIN_SKIP_INEFFICIENCIES BIT(1)
#define EM_PERF_DOMAIN_ARTIFICIAL BIT(2)
#define em_span_cpus(em) (to_cpumask((em)->cpus))
#define em_is_artificial(em) ((em)->flags & EM_PERF_DOMAIN_ARTIFICIAL)
#ifdef CONFIG_ENERGY_MODEL
#define EM_MAX_POWER 0xFFFF
@ -96,11 +101,11 @@ struct em_data_callback {
/**
* active_power() - Provide power at the next performance state of
* a device
* @dev : Device for which we do this operation (can be a CPU)
* @power : Active power at the performance state
* (modified)
* @freq : Frequency at the performance state in kHz
* (modified)
* @dev : Device for which we do this operation (can be a CPU)
*
* active_power() must find the lowest performance state of 'dev' above
* 'freq' and update 'power' and 'freq' to the matching active power
@ -112,11 +117,32 @@ struct em_data_callback {
*
* Return 0 on success.
*/
int (*active_power)(unsigned long *power, unsigned long *freq,
struct device *dev);
int (*active_power)(struct device *dev, unsigned long *power,
unsigned long *freq);
/**
* get_cost() - Provide the cost at the given performance state of
* a device
* @dev : Device for which we do this operation (can be a CPU)
* @freq : Frequency at the performance state in kHz
* @cost : The cost value for the performance state
* (modified)
*
* In case of CPUs, the cost is the one of a single CPU in the domain.
* It is expected to fit in the [0, EM_MAX_POWER] range due to internal
* usage in EAS calculation.
*
* Return 0 on success, or appropriate error value in case of failure.
*/
int (*get_cost)(struct device *dev, unsigned long freq,
unsigned long *cost);
};
#define EM_DATA_CB(_active_power_cb) { .active_power = &_active_power_cb }
#define EM_SET_ACTIVE_POWER_CB(em_cb, cb) ((em_cb).active_power = cb)
#define EM_ADV_DATA_CB(_active_power_cb, _cost_cb) \
{ .active_power = _active_power_cb, \
.get_cost = _cost_cb }
#define EM_DATA_CB(_active_power_cb) \
EM_ADV_DATA_CB(_active_power_cb, NULL)
struct em_perf_domain *em_cpu_get(int cpu);
struct em_perf_domain *em_pd_get(struct device *dev);
@ -264,6 +290,7 @@ static inline int em_pd_nr_perf_states(struct em_perf_domain *pd)
#else
struct em_data_callback {};
#define EM_ADV_DATA_CB(_active_power_cb, _cost_cb) { }
#define EM_DATA_CB(_active_power_cb) { }
#define EM_SET_ACTIVE_POWER_CB(em_cb, cb) do { } while (0)

View file

@ -368,13 +368,13 @@ const struct dev_pm_ops name = { \
#ifdef CONFIG_PM
#define _EXPORT_DEV_PM_OPS(name, suspend_fn, resume_fn, runtime_suspend_fn, \
runtime_resume_fn, idle_fn, sec) \
runtime_resume_fn, idle_fn, sec, ns) \
_DEFINE_DEV_PM_OPS(name, suspend_fn, resume_fn, runtime_suspend_fn, \
runtime_resume_fn, idle_fn); \
_EXPORT_SYMBOL(name, sec)
__EXPORT_SYMBOL(name, sec, ns)
#else
#define _EXPORT_DEV_PM_OPS(name, suspend_fn, resume_fn, runtime_suspend_fn, \
runtime_resume_fn, idle_fn, sec) \
runtime_resume_fn, idle_fn, sec, ns) \
static __maybe_unused _DEFINE_DEV_PM_OPS(__static_##name, suspend_fn, \
resume_fn, runtime_suspend_fn, \
runtime_resume_fn, idle_fn)
@ -391,9 +391,13 @@ static __maybe_unused _DEFINE_DEV_PM_OPS(__static_##name, suspend_fn, \
_DEFINE_DEV_PM_OPS(name, suspend_fn, resume_fn, NULL, NULL, NULL)
#define EXPORT_SIMPLE_DEV_PM_OPS(name, suspend_fn, resume_fn) \
_EXPORT_DEV_PM_OPS(name, suspend_fn, resume_fn, NULL, NULL, NULL, "")
_EXPORT_DEV_PM_OPS(name, suspend_fn, resume_fn, NULL, NULL, NULL, "", "")
#define EXPORT_GPL_SIMPLE_DEV_PM_OPS(name, suspend_fn, resume_fn) \
_EXPORT_DEV_PM_OPS(name, suspend_fn, resume_fn, NULL, NULL, NULL, "_gpl")
_EXPORT_DEV_PM_OPS(name, suspend_fn, resume_fn, NULL, NULL, NULL, "_gpl", "")
#define EXPORT_NS_SIMPLE_DEV_PM_OPS(name, suspend_fn, resume_fn, ns) \
_EXPORT_DEV_PM_OPS(name, suspend_fn, resume_fn, NULL, NULL, NULL, "", #ns)
#define EXPORT_NS_GPL_SIMPLE_DEV_PM_OPS(name, suspend_fn, resume_fn, ns) \
_EXPORT_DEV_PM_OPS(name, suspend_fn, resume_fn, NULL, NULL, NULL, "_gpl", #ns)
/* Deprecated. Use DEFINE_SIMPLE_DEV_PM_OPS() instead. */
#define SIMPLE_DEV_PM_OPS(name, suspend_fn, resume_fn) \

View file

@ -91,6 +91,14 @@ struct gpd_dev_ops {
int (*stop)(struct device *dev);
};
struct genpd_governor_data {
s64 max_off_time_ns;
bool max_off_time_changed;
ktime_t next_wakeup;
bool cached_power_down_ok;
bool cached_power_down_state_idx;
};
struct genpd_power_state {
s64 power_off_latency_ns;
s64 power_on_latency_ns;
@ -98,7 +106,7 @@ struct genpd_power_state {
u64 usage;
u64 rejected;
struct fwnode_handle *fwnode;
ktime_t idle_time;
u64 idle_time;
void *data;
};
@ -114,6 +122,7 @@ struct generic_pm_domain {
struct list_head child_links; /* Links with PM domain as a child */
struct list_head dev_list; /* List of devices */
struct dev_power_governor *gov;
struct genpd_governor_data *gd; /* Data used by a genpd governor. */
struct work_struct power_off_work;
struct fwnode_handle *provider; /* Identity of the domain provider */
bool has_provider;
@ -134,11 +143,6 @@ struct generic_pm_domain {
int (*set_performance_state)(struct generic_pm_domain *genpd,
unsigned int state);
struct gpd_dev_ops dev_ops;
s64 max_off_time_ns; /* Maximum allowed "suspended" time. */
ktime_t next_wakeup; /* Maintained by the domain governor */
bool max_off_time_changed;
bool cached_power_down_ok;
bool cached_power_down_state_idx;
int (*attach_dev)(struct generic_pm_domain *domain,
struct device *dev);
void (*detach_dev)(struct generic_pm_domain *domain,
@ -149,8 +153,8 @@ struct generic_pm_domain {
unsigned int state_count);
unsigned int state_count; /* number of states */
unsigned int state_idx; /* state that genpd will go to when off */
ktime_t on_time;
ktime_t accounting_time;
u64 on_time;
u64 accounting_time;
const struct genpd_lock_ops *lock_ops;
union {
struct mutex mlock;
@ -182,6 +186,7 @@ struct gpd_timing_data {
s64 suspend_latency_ns;
s64 resume_latency_ns;
s64 effective_constraint_ns;
ktime_t next_wakeup;
bool constraint_changed;
bool cached_suspend_ok;
};
@ -193,14 +198,13 @@ struct pm_domain_data {
struct generic_pm_domain_data {
struct pm_domain_data base;
struct gpd_timing_data td;
struct gpd_timing_data *td;
struct notifier_block nb;
struct notifier_block *power_nb;
int cpu;
unsigned int performance_state;
unsigned int default_pstate;
unsigned int rpm_pstate;
ktime_t next_wakeup;
void *data;
};

View file

@ -41,10 +41,16 @@
#define EXPORT_RUNTIME_DEV_PM_OPS(name, suspend_fn, resume_fn, idle_fn) \
_EXPORT_DEV_PM_OPS(name, pm_runtime_force_suspend, pm_runtime_force_resume, \
suspend_fn, resume_fn, idle_fn, "")
suspend_fn, resume_fn, idle_fn, "", "")
#define EXPORT_GPL_RUNTIME_DEV_PM_OPS(name, suspend_fn, resume_fn, idle_fn) \
_EXPORT_DEV_PM_OPS(name, pm_runtime_force_suspend, pm_runtime_force_resume, \
suspend_fn, resume_fn, idle_fn, "_gpl")
suspend_fn, resume_fn, idle_fn, "_gpl", "")
#define EXPORT_NS_RUNTIME_DEV_PM_OPS(name, suspend_fn, resume_fn, idle_fn, ns) \
_EXPORT_DEV_PM_OPS(name, pm_runtime_force_suspend, pm_runtime_force_resume, \
suspend_fn, resume_fn, idle_fn, "", #ns)
#define EXPORT_NS_GPL_RUNTIME_DEV_PM_OPS(name, suspend_fn, resume_fn, idle_fn, ns) \
_EXPORT_DEV_PM_OPS(name, pm_runtime_force_suspend, pm_runtime_force_resume, \
suspend_fn, resume_fn, idle_fn, "_gpl", #ns)
#ifdef CONFIG_PM
extern struct workqueue_struct *pm_wq;

View file

@ -542,22 +542,56 @@ static inline void unlock_system_sleep(void) {}
#ifdef CONFIG_PM_SLEEP_DEBUG
extern bool pm_print_times_enabled;
extern bool pm_debug_messages_on;
extern __printf(2, 3) void __pm_pr_dbg(bool defer, const char *fmt, ...);
static inline int pm_dyn_debug_messages_on(void)
{
#ifdef CONFIG_DYNAMIC_DEBUG
return 1;
#else
return 0;
#endif
}
#ifndef pr_fmt
#define pr_fmt(fmt) "PM: " fmt
#endif
#define __pm_pr_dbg(fmt, ...) \
do { \
if (pm_debug_messages_on) \
printk(KERN_DEBUG pr_fmt(fmt), ##__VA_ARGS__); \
else if (pm_dyn_debug_messages_on()) \
pr_debug(fmt, ##__VA_ARGS__); \
} while (0)
#define __pm_deferred_pr_dbg(fmt, ...) \
do { \
if (pm_debug_messages_on) \
printk_deferred(KERN_DEBUG pr_fmt(fmt), ##__VA_ARGS__); \
} while (0)
#else
#define pm_print_times_enabled (false)
#define pm_debug_messages_on (false)
#include <linux/printk.h>
#define __pm_pr_dbg(defer, fmt, ...) \
no_printk(KERN_DEBUG fmt, ##__VA_ARGS__)
#define __pm_pr_dbg(fmt, ...) \
no_printk(KERN_DEBUG pr_fmt(fmt), ##__VA_ARGS__)
#define __pm_deferred_pr_dbg(fmt, ...) \
no_printk(KERN_DEBUG pr_fmt(fmt), ##__VA_ARGS__)
#endif
/**
* pm_pr_dbg - print pm sleep debug messages
*
* If pm_debug_messages_on is enabled, print message.
* If pm_debug_messages_on is disabled and CONFIG_DYNAMIC_DEBUG is enabled,
* print message only from instances explicitly enabled on dynamic debug's
* control.
* If pm_debug_messages_on is disabled and CONFIG_DYNAMIC_DEBUG is disabled,
* don't print message.
*/
#define pm_pr_dbg(fmt, ...) \
__pm_pr_dbg(false, fmt, ##__VA_ARGS__)
__pm_pr_dbg(fmt, ##__VA_ARGS__)
#define pm_deferred_pr_dbg(fmt, ...) \
__pm_pr_dbg(true, fmt, ##__VA_ARGS__)
__pm_deferred_pr_dbg(fmt, ##__VA_ARGS__)
#ifdef CONFIG_PM_AUTOSLEEP