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Dirk Brandewie93f08222013-02-06 09:02:13 -08001/*
Srinivas Pandruvadad1b68482013-04-09 22:38:18 +00002 * intel_pstate.c: Native P state management for Intel processors
Dirk Brandewie93f08222013-02-06 09:02:13 -08003 *
4 * (C) Copyright 2012 Intel Corporation
5 * Author: Dirk Brandewie <dirk.j.brandewie@intel.com>
6 *
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License
9 * as published by the Free Software Foundation; version 2
10 * of the License.
11 */
12
Joe Perches4836df12016-04-05 13:28:23 -070013#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
14
Dirk Brandewie93f08222013-02-06 09:02:13 -080015#include <linux/kernel.h>
16#include <linux/kernel_stat.h>
17#include <linux/module.h>
18#include <linux/ktime.h>
19#include <linux/hrtimer.h>
20#include <linux/tick.h>
21#include <linux/slab.h>
22#include <linux/sched.h>
23#include <linux/list.h>
24#include <linux/cpu.h>
25#include <linux/cpufreq.h>
26#include <linux/sysfs.h>
27#include <linux/types.h>
28#include <linux/fs.h>
29#include <linux/debugfs.h>
Adrian Huangfbbcdc02013-10-31 23:24:05 +080030#include <linux/acpi.h>
Stephen Rothwelld6472302015-06-02 19:01:38 +100031#include <linux/vmalloc.h>
Dirk Brandewie93f08222013-02-06 09:02:13 -080032#include <trace/events/power.h>
33
34#include <asm/div64.h>
35#include <asm/msr.h>
36#include <asm/cpu_device_id.h>
Borislav Petkov64df1fd2015-04-03 15:19:53 +020037#include <asm/cpufeature.h>
Dave Hansen5b20c942016-06-02 17:19:45 -070038#include <asm/intel-family.h>
Dirk Brandewie93f08222013-02-06 09:02:13 -080039
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +010040#define INTEL_CPUFREQ_TRANSITION_LATENCY 20000
41
Philippe Longepe938d21a2015-11-09 17:40:46 -080042#define ATOM_RATIOS 0x66a
43#define ATOM_VIDS 0x66b
44#define ATOM_TURBO_RATIOS 0x66c
45#define ATOM_TURBO_VIDS 0x66d
Dirk Brandewie61d8d2a2014-02-12 10:01:07 -080046
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -070047#ifdef CONFIG_ACPI
48#include <acpi/processor.h>
Rafael J. Wysocki17669002016-11-22 12:24:00 -080049#include <acpi/cppc_acpi.h>
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -070050#endif
51
Dirk Brandewief0fe3cd2014-05-29 09:32:23 -070052#define FRAC_BITS 8
Dirk Brandewie93f08222013-02-06 09:02:13 -080053#define int_tofp(X) ((int64_t)(X) << FRAC_BITS)
54#define fp_toint(X) ((X) >> FRAC_BITS)
Dirk Brandewief0fe3cd2014-05-29 09:32:23 -070055
Rafael J. Wysockia1c97872016-05-11 19:09:12 +020056#define EXT_BITS 6
57#define EXT_FRAC_BITS (EXT_BITS + FRAC_BITS)
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -080058#define fp_ext_toint(X) ((X) >> EXT_FRAC_BITS)
59#define int_ext_tofp(X) ((int64_t)(X) << EXT_FRAC_BITS)
Rafael J. Wysockia1c97872016-05-11 19:09:12 +020060
Dirk Brandewie93f08222013-02-06 09:02:13 -080061static inline int32_t mul_fp(int32_t x, int32_t y)
62{
63 return ((int64_t)x * (int64_t)y) >> FRAC_BITS;
64}
65
Prarit Bhargava7180ddd2015-06-15 13:43:29 -040066static inline int32_t div_fp(s64 x, s64 y)
Dirk Brandewie93f08222013-02-06 09:02:13 -080067{
Prarit Bhargava7180ddd2015-06-15 13:43:29 -040068 return div64_s64((int64_t)x << FRAC_BITS, y);
Dirk Brandewie93f08222013-02-06 09:02:13 -080069}
70
Dirk Brandewied022a652014-10-13 08:37:44 -070071static inline int ceiling_fp(int32_t x)
72{
73 int mask, ret;
74
75 ret = fp_toint(x);
76 mask = (1 << FRAC_BITS) - 1;
77 if (x & mask)
78 ret += 1;
79 return ret;
80}
81
Rafael J. Wysockia1c97872016-05-11 19:09:12 +020082static inline u64 mul_ext_fp(u64 x, u64 y)
83{
84 return (x * y) >> EXT_FRAC_BITS;
85}
86
87static inline u64 div_ext_fp(u64 x, u64 y)
88{
89 return div64_u64(x << EXT_FRAC_BITS, y);
90}
91
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -070092/**
93 * struct sample - Store performance sample
Rafael J. Wysockia1c97872016-05-11 19:09:12 +020094 * @core_avg_perf: Ratio of APERF/MPERF which is the actual average
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -070095 * performance during last sample period
96 * @busy_scaled: Scaled busy value which is used to calculate next
Rafael J. Wysockia1c97872016-05-11 19:09:12 +020097 * P state. This can be different than core_avg_perf
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -070098 * to account for cpu idle period
99 * @aperf: Difference of actual performance frequency clock count
100 * read from APERF MSR between last and current sample
101 * @mperf: Difference of maximum performance frequency clock count
102 * read from MPERF MSR between last and current sample
103 * @tsc: Difference of time stamp counter between last and
104 * current sample
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700105 * @time: Current time from scheduler
106 *
107 * This structure is used in the cpudata structure to store performance sample
108 * data for choosing next P State.
109 */
Dirk Brandewie93f08222013-02-06 09:02:13 -0800110struct sample {
Rafael J. Wysockia1c97872016-05-11 19:09:12 +0200111 int32_t core_avg_perf;
Philippe Longepe157386b2015-12-04 17:40:30 +0100112 int32_t busy_scaled;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800113 u64 aperf;
114 u64 mperf;
Doug Smythies4055fad2015-04-11 21:10:26 -0700115 u64 tsc;
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +0100116 u64 time;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800117};
118
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700119/**
120 * struct pstate_data - Store P state data
121 * @current_pstate: Current requested P state
122 * @min_pstate: Min P state possible for this platform
123 * @max_pstate: Max P state possible for this platform
124 * @max_pstate_physical:This is physical Max P state for a processor
125 * This can be higher than the max_pstate which can
126 * be limited by platform thermal design power limits
127 * @scaling: Scaling factor to convert frequency to cpufreq
128 * frequency units
129 * @turbo_pstate: Max Turbo P state possible for this platform
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +0100130 * @max_freq: @max_pstate frequency in cpufreq units
131 * @turbo_freq: @turbo_pstate frequency in cpufreq units
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700132 *
133 * Stores the per cpu model P state limits and current P state.
134 */
Dirk Brandewie93f08222013-02-06 09:02:13 -0800135struct pstate_data {
136 int current_pstate;
137 int min_pstate;
138 int max_pstate;
Srinivas Pandruvada3bcc6fa2015-10-14 16:12:00 -0700139 int max_pstate_physical;
Dirk Brandewieb27580b2014-10-13 08:37:43 -0700140 int scaling;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800141 int turbo_pstate;
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +0100142 unsigned int max_freq;
143 unsigned int turbo_freq;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800144};
145
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700146/**
147 * struct vid_data - Stores voltage information data
148 * @min: VID data for this platform corresponding to
149 * the lowest P state
150 * @max: VID data corresponding to the highest P State.
151 * @turbo: VID data for turbo P state
152 * @ratio: Ratio of (vid max - vid min) /
153 * (max P state - Min P State)
154 *
155 * Stores the voltage data for DVFS (Dynamic Voltage and Frequency Scaling)
156 * This data is used in Atom platforms, where in addition to target P state,
157 * the voltage data needs to be specified to select next P State.
158 */
Dirk Brandewie007bea02013-12-18 10:32:39 -0800159struct vid_data {
Dirk Brandewie21855ff2014-05-08 12:57:23 -0700160 int min;
161 int max;
162 int turbo;
Dirk Brandewie007bea02013-12-18 10:32:39 -0800163 int32_t ratio;
164};
165
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700166/**
167 * struct _pid - Stores PID data
168 * @setpoint: Target set point for busyness or performance
169 * @integral: Storage for accumulated error values
170 * @p_gain: PID proportional gain
171 * @i_gain: PID integral gain
172 * @d_gain: PID derivative gain
173 * @deadband: PID deadband
174 * @last_err: Last error storage for integral part of PID calculation
175 *
176 * Stores PID coefficients and last error for PID controller.
177 */
Dirk Brandewie93f08222013-02-06 09:02:13 -0800178struct _pid {
179 int setpoint;
180 int32_t integral;
181 int32_t p_gain;
182 int32_t i_gain;
183 int32_t d_gain;
184 int deadband;
Brennan Shacklettd253d2a2013-10-21 09:20:32 -0700185 int32_t last_err;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800186};
187
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700188/**
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700189 * struct perf_limits - Store user and policy limits
190 * @no_turbo: User requested turbo state from intel_pstate sysfs
191 * @turbo_disabled: Platform turbo status either from msr
192 * MSR_IA32_MISC_ENABLE or when maximum available pstate
193 * matches the maximum turbo pstate
194 * @max_perf_pct: Effective maximum performance limit in percentage, this
195 * is minimum of either limits enforced by cpufreq policy
196 * or limits from user set limits via intel_pstate sysfs
197 * @min_perf_pct: Effective minimum performance limit in percentage, this
198 * is maximum of either limits enforced by cpufreq policy
199 * or limits from user set limits via intel_pstate sysfs
200 * @max_perf: This is a scaled value between 0 to 255 for max_perf_pct
201 * This value is used to limit max pstate
202 * @min_perf: This is a scaled value between 0 to 255 for min_perf_pct
203 * This value is used to limit min pstate
204 * @max_policy_pct: The maximum performance in percentage enforced by
205 * cpufreq setpolicy interface
206 * @max_sysfs_pct: The maximum performance in percentage enforced by
207 * intel pstate sysfs interface, unused when per cpu
208 * controls are enforced
209 * @min_policy_pct: The minimum performance in percentage enforced by
210 * cpufreq setpolicy interface
211 * @min_sysfs_pct: The minimum performance in percentage enforced by
212 * intel pstate sysfs interface, unused when per cpu
213 * controls are enforced
214 *
215 * Storage for user and policy defined limits.
216 */
217struct perf_limits {
218 int no_turbo;
219 int turbo_disabled;
220 int max_perf_pct;
221 int min_perf_pct;
222 int32_t max_perf;
223 int32_t min_perf;
224 int max_policy_pct;
225 int max_sysfs_pct;
226 int min_policy_pct;
227 int min_sysfs_pct;
228};
229
230/**
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700231 * struct cpudata - Per CPU instance data storage
232 * @cpu: CPU number for this instance data
Rafael J. Wysocki2f1d4072016-10-24 23:20:25 +0200233 * @policy: CPUFreq policy value
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700234 * @update_util: CPUFreq utility callback information
Chen Yu4578ee7e2016-05-11 14:33:08 +0800235 * @update_util_set: CPUFreq utility callback is set
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +0200236 * @iowait_boost: iowait-related boost fraction
237 * @last_update: Time of the last update.
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700238 * @pstate: Stores P state limits for this CPU
239 * @vid: Stores VID limits for this CPU
240 * @pid: Stores PID parameters for this CPU
241 * @last_sample_time: Last Sample time
242 * @prev_aperf: Last APERF value read from APERF MSR
243 * @prev_mperf: Last MPERF value read from MPERF MSR
244 * @prev_tsc: Last timestamp counter (TSC) value
245 * @prev_cummulative_iowait: IO Wait time difference from last and
246 * current sample
247 * @sample: Storage for storing last Sample data
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700248 * @perf_limits: Pointer to perf_limit unique to this CPU
249 * Not all field in the structure are applicable
250 * when per cpu controls are enforced
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700251 * @acpi_perf_data: Stores ACPI perf information read from _PSS
252 * @valid_pss_table: Set to true for valid ACPI _PSS entries found
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800253 * @epp_powersave: Last saved HWP energy performance preference
254 * (EPP) or energy performance bias (EPB),
255 * when policy switched to performance
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800256 * @epp_policy: Last saved policy used to set EPP/EPB
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800257 * @epp_default: Power on default HWP energy performance
258 * preference/bias
259 * @epp_saved: Saved EPP/EPB during system suspend or CPU offline
260 * operation
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700261 *
262 * This structure stores per CPU instance data for all CPUs.
263 */
Dirk Brandewie93f08222013-02-06 09:02:13 -0800264struct cpudata {
265 int cpu;
266
Rafael J. Wysocki2f1d4072016-10-24 23:20:25 +0200267 unsigned int policy;
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +0100268 struct update_util_data update_util;
Chen Yu4578ee7e2016-05-11 14:33:08 +0800269 bool update_util_set;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800270
Dirk Brandewie93f08222013-02-06 09:02:13 -0800271 struct pstate_data pstate;
Dirk Brandewie007bea02013-12-18 10:32:39 -0800272 struct vid_data vid;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800273 struct _pid pid;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800274
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +0200275 u64 last_update;
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +0100276 u64 last_sample_time;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800277 u64 prev_aperf;
278 u64 prev_mperf;
Doug Smythies4055fad2015-04-11 21:10:26 -0700279 u64 prev_tsc;
Philippe Longepe63d1d652015-12-04 17:40:35 +0100280 u64 prev_cummulative_iowait;
Dirk Brandewied37e2b72014-02-12 10:01:04 -0800281 struct sample sample;
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700282 struct perf_limits *perf_limits;
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700283#ifdef CONFIG_ACPI
284 struct acpi_processor_performance acpi_perf_data;
285 bool valid_pss_table;
286#endif
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +0200287 unsigned int iowait_boost;
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800288 s16 epp_powersave;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800289 s16 epp_policy;
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800290 s16 epp_default;
291 s16 epp_saved;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800292};
293
294static struct cpudata **all_cpu_data;
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700295
296/**
Rafael J. Wysocki39545172016-10-11 23:07:38 +0200297 * struct pstate_adjust_policy - Stores static PID configuration data
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700298 * @sample_rate_ms: PID calculation sample rate in ms
299 * @sample_rate_ns: Sample rate calculation in ns
300 * @deadband: PID deadband
301 * @setpoint: PID Setpoint
302 * @p_gain_pct: PID proportional gain
303 * @i_gain_pct: PID integral gain
304 * @d_gain_pct: PID derivative gain
305 *
306 * Stores per CPU model static PID configuration data.
307 */
Dirk Brandewie93f08222013-02-06 09:02:13 -0800308struct pstate_adjust_policy {
309 int sample_rate_ms;
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +0100310 s64 sample_rate_ns;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800311 int deadband;
312 int setpoint;
313 int p_gain_pct;
314 int d_gain_pct;
315 int i_gain_pct;
316};
317
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700318/**
319 * struct pstate_funcs - Per CPU model specific callbacks
320 * @get_max: Callback to get maximum non turbo effective P state
321 * @get_max_physical: Callback to get maximum non turbo physical P state
322 * @get_min: Callback to get minimum P state
323 * @get_turbo: Callback to get turbo P state
324 * @get_scaling: Callback to get frequency scaling factor
325 * @get_val: Callback to convert P state to actual MSR write value
326 * @get_vid: Callback to get VID data for Atom platforms
327 * @get_target_pstate: Callback to a function to calculate next P state to use
328 *
329 * Core and Atom CPU models have different way to get P State limits. This
330 * structure is used to store those callbacks.
331 */
Dirk Brandewie016c8152013-10-21 09:20:34 -0700332struct pstate_funcs {
333 int (*get_max)(void);
Srinivas Pandruvada3bcc6fa2015-10-14 16:12:00 -0700334 int (*get_max_physical)(void);
Dirk Brandewie016c8152013-10-21 09:20:34 -0700335 int (*get_min)(void);
336 int (*get_turbo)(void);
Dirk Brandewieb27580b2014-10-13 08:37:43 -0700337 int (*get_scaling)(void);
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +0100338 u64 (*get_val)(struct cpudata*, int pstate);
Dirk Brandewie007bea02013-12-18 10:32:39 -0800339 void (*get_vid)(struct cpudata *);
Philippe Longepe157386b2015-12-04 17:40:30 +0100340 int32_t (*get_target_pstate)(struct cpudata *);
Dirk Brandewie93f08222013-02-06 09:02:13 -0800341};
342
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700343/**
344 * struct cpu_defaults- Per CPU model default config data
345 * @pid_policy: PID config data
346 * @funcs: Callback function data
347 */
Dirk Brandewie016c8152013-10-21 09:20:34 -0700348struct cpu_defaults {
349 struct pstate_adjust_policy pid_policy;
350 struct pstate_funcs funcs;
351};
352
Philippe Longepe157386b2015-12-04 17:40:30 +0100353static inline int32_t get_target_pstate_use_performance(struct cpudata *cpu);
Philippe Longepee70eed22015-12-04 17:40:32 +0100354static inline int32_t get_target_pstate_use_cpu_load(struct cpudata *cpu);
Philippe Longepe157386b2015-12-04 17:40:30 +0100355
Jisheng Zhang4a7cb7a2016-06-27 18:07:18 +0800356static struct pstate_adjust_policy pid_params __read_mostly;
357static struct pstate_funcs pstate_funcs __read_mostly;
358static int hwp_active __read_mostly;
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700359static bool per_cpu_limits __read_mostly;
Dirk Brandewie016c8152013-10-21 09:20:34 -0700360
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +0100361static bool driver_registered __read_mostly;
362
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700363#ifdef CONFIG_ACPI
364static bool acpi_ppc;
365#endif
Srinivas Pandruvada13ad7702016-04-03 13:06:46 -0700366
Prarit Bhargava51443fb2015-10-15 07:34:15 -0400367static struct perf_limits performance_limits = {
368 .no_turbo = 0,
369 .turbo_disabled = 0,
370 .max_perf_pct = 100,
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -0800371 .max_perf = int_ext_tofp(1),
Prarit Bhargava51443fb2015-10-15 07:34:15 -0400372 .min_perf_pct = 100,
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -0800373 .min_perf = int_ext_tofp(1),
Prarit Bhargava51443fb2015-10-15 07:34:15 -0400374 .max_policy_pct = 100,
375 .max_sysfs_pct = 100,
376 .min_policy_pct = 0,
377 .min_sysfs_pct = 0,
378};
379
380static struct perf_limits powersave_limits = {
Dirk Brandewie93f08222013-02-06 09:02:13 -0800381 .no_turbo = 0,
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -0700382 .turbo_disabled = 0,
Dirk Brandewie93f08222013-02-06 09:02:13 -0800383 .max_perf_pct = 100,
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -0800384 .max_perf = int_ext_tofp(1),
Dirk Brandewie93f08222013-02-06 09:02:13 -0800385 .min_perf_pct = 0,
386 .min_perf = 0,
Dirk Brandewied8f469e2013-05-07 08:20:26 -0700387 .max_policy_pct = 100,
388 .max_sysfs_pct = 100,
Kristen Carlson Accardia0475992015-01-29 13:03:52 -0800389 .min_policy_pct = 0,
390 .min_sysfs_pct = 0,
Dirk Brandewie93f08222013-02-06 09:02:13 -0800391};
392
Prarit Bhargava51443fb2015-10-15 07:34:15 -0400393#ifdef CONFIG_CPU_FREQ_DEFAULT_GOV_PERFORMANCE
394static struct perf_limits *limits = &performance_limits;
395#else
396static struct perf_limits *limits = &powersave_limits;
397#endif
398
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +0100399static DEFINE_MUTEX(intel_pstate_driver_lock);
Srinivas Pandruvadaa410c032016-10-28 10:44:52 -0700400static DEFINE_MUTEX(intel_pstate_limits_lock);
401
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700402#ifdef CONFIG_ACPI
Srinivas Pandruvada2b3ec762016-04-27 15:48:08 -0700403
404static bool intel_pstate_get_ppc_enable_status(void)
405{
406 if (acpi_gbl_FADT.preferred_profile == PM_ENTERPRISE_SERVER ||
407 acpi_gbl_FADT.preferred_profile == PM_PERFORMANCE_SERVER)
408 return true;
409
410 return acpi_ppc;
411}
412
Rafael J. Wysocki17669002016-11-22 12:24:00 -0800413#ifdef CONFIG_ACPI_CPPC_LIB
414
415/* The work item is needed to avoid CPU hotplug locking issues */
416static void intel_pstste_sched_itmt_work_fn(struct work_struct *work)
417{
418 sched_set_itmt_support();
419}
420
421static DECLARE_WORK(sched_itmt_work, intel_pstste_sched_itmt_work_fn);
422
423static void intel_pstate_set_itmt_prio(int cpu)
424{
425 struct cppc_perf_caps cppc_perf;
426 static u32 max_highest_perf = 0, min_highest_perf = U32_MAX;
427 int ret;
428
429 ret = cppc_get_perf_caps(cpu, &cppc_perf);
430 if (ret)
431 return;
432
433 /*
434 * The priorities can be set regardless of whether or not
435 * sched_set_itmt_support(true) has been called and it is valid to
436 * update them at any time after it has been called.
437 */
438 sched_set_itmt_core_prio(cppc_perf.highest_perf, cpu);
439
440 if (max_highest_perf <= min_highest_perf) {
441 if (cppc_perf.highest_perf > max_highest_perf)
442 max_highest_perf = cppc_perf.highest_perf;
443
444 if (cppc_perf.highest_perf < min_highest_perf)
445 min_highest_perf = cppc_perf.highest_perf;
446
447 if (max_highest_perf > min_highest_perf) {
448 /*
449 * This code can be run during CPU online under the
450 * CPU hotplug locks, so sched_set_itmt_support()
451 * cannot be called from here. Queue up a work item
452 * to invoke it.
453 */
454 schedule_work(&sched_itmt_work);
455 }
456 }
457}
458#else
459static void intel_pstate_set_itmt_prio(int cpu)
460{
461}
462#endif
463
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700464static void intel_pstate_init_acpi_perf_limits(struct cpufreq_policy *policy)
465{
466 struct cpudata *cpu;
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700467 int ret;
468 int i;
469
Rafael J. Wysocki17669002016-11-22 12:24:00 -0800470 if (hwp_active) {
471 intel_pstate_set_itmt_prio(policy->cpu);
Srinivas Pandruvadae59a8f72016-05-04 15:07:34 -0700472 return;
Rafael J. Wysocki17669002016-11-22 12:24:00 -0800473 }
Srinivas Pandruvadae59a8f72016-05-04 15:07:34 -0700474
Srinivas Pandruvada2b3ec762016-04-27 15:48:08 -0700475 if (!intel_pstate_get_ppc_enable_status())
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700476 return;
477
478 cpu = all_cpu_data[policy->cpu];
479
480 ret = acpi_processor_register_performance(&cpu->acpi_perf_data,
481 policy->cpu);
482 if (ret)
483 return;
484
485 /*
486 * Check if the control value in _PSS is for PERF_CTL MSR, which should
487 * guarantee that the states returned by it map to the states in our
488 * list directly.
489 */
490 if (cpu->acpi_perf_data.control_register.space_id !=
491 ACPI_ADR_SPACE_FIXED_HARDWARE)
492 goto err;
493
494 /*
495 * If there is only one entry _PSS, simply ignore _PSS and continue as
496 * usual without taking _PSS into account
497 */
498 if (cpu->acpi_perf_data.state_count < 2)
499 goto err;
500
501 pr_debug("CPU%u - ACPI _PSS perf data\n", policy->cpu);
502 for (i = 0; i < cpu->acpi_perf_data.state_count; i++) {
503 pr_debug(" %cP%d: %u MHz, %u mW, 0x%x\n",
504 (i == cpu->acpi_perf_data.state ? '*' : ' '), i,
505 (u32) cpu->acpi_perf_data.states[i].core_frequency,
506 (u32) cpu->acpi_perf_data.states[i].power,
507 (u32) cpu->acpi_perf_data.states[i].control);
508 }
509
510 /*
511 * The _PSS table doesn't contain whole turbo frequency range.
512 * This just contains +1 MHZ above the max non turbo frequency,
513 * with control value corresponding to max turbo ratio. But
514 * when cpufreq set policy is called, it will call with this
515 * max frequency, which will cause a reduced performance as
516 * this driver uses real max turbo frequency as the max
517 * frequency. So correct this frequency in _PSS table to
Srinivas Pandruvadab00345d2016-06-14 23:12:59 -0700518 * correct max turbo frequency based on the turbo state.
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700519 * Also need to convert to MHz as _PSS freq is in MHz.
520 */
Srinivas Pandruvadab00345d2016-06-14 23:12:59 -0700521 if (!limits->turbo_disabled)
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700522 cpu->acpi_perf_data.states[0].core_frequency =
523 policy->cpuinfo.max_freq / 1000;
524 cpu->valid_pss_table = true;
Srinivas Pandruvada6cacd112016-05-29 23:31:23 -0700525 pr_debug("_PPC limits will be enforced\n");
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700526
527 return;
528
529 err:
530 cpu->valid_pss_table = false;
531 acpi_processor_unregister_performance(policy->cpu);
532}
533
534static void intel_pstate_exit_perf_limits(struct cpufreq_policy *policy)
535{
536 struct cpudata *cpu;
537
538 cpu = all_cpu_data[policy->cpu];
539 if (!cpu->valid_pss_table)
540 return;
541
542 acpi_processor_unregister_performance(policy->cpu);
543}
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700544#else
Arnd Bergmann7a3ba762016-11-25 17:50:20 +0100545static inline void intel_pstate_init_acpi_perf_limits(struct cpufreq_policy *policy)
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700546{
547}
548
Arnd Bergmann7a3ba762016-11-25 17:50:20 +0100549static inline void intel_pstate_exit_perf_limits(struct cpufreq_policy *policy)
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -0700550{
551}
552#endif
553
Dirk Brandewie93f08222013-02-06 09:02:13 -0800554static inline void pid_reset(struct _pid *pid, int setpoint, int busy,
Stratos Karafotisc4108332014-07-18 08:37:23 -0700555 int deadband, int integral) {
Philippe Longepeb54a0df2016-03-08 10:31:14 +0100556 pid->setpoint = int_tofp(setpoint);
557 pid->deadband = int_tofp(deadband);
Dirk Brandewie93f08222013-02-06 09:02:13 -0800558 pid->integral = int_tofp(integral);
Dirk Brandewied98d0992014-02-12 10:01:05 -0800559 pid->last_err = int_tofp(setpoint) - int_tofp(busy);
Dirk Brandewie93f08222013-02-06 09:02:13 -0800560}
561
562static inline void pid_p_gain_set(struct _pid *pid, int percent)
563{
Rafael J. Wysocki22590ef2016-04-09 01:25:58 +0200564 pid->p_gain = div_fp(percent, 100);
Dirk Brandewie93f08222013-02-06 09:02:13 -0800565}
566
567static inline void pid_i_gain_set(struct _pid *pid, int percent)
568{
Rafael J. Wysocki22590ef2016-04-09 01:25:58 +0200569 pid->i_gain = div_fp(percent, 100);
Dirk Brandewie93f08222013-02-06 09:02:13 -0800570}
571
572static inline void pid_d_gain_set(struct _pid *pid, int percent)
573{
Rafael J. Wysocki22590ef2016-04-09 01:25:58 +0200574 pid->d_gain = div_fp(percent, 100);
Dirk Brandewie93f08222013-02-06 09:02:13 -0800575}
576
Brennan Shacklettd253d2a2013-10-21 09:20:32 -0700577static signed int pid_calc(struct _pid *pid, int32_t busy)
Dirk Brandewie93f08222013-02-06 09:02:13 -0800578{
Brennan Shacklettd253d2a2013-10-21 09:20:32 -0700579 signed int result;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800580 int32_t pterm, dterm, fp_error;
581 int32_t integral_limit;
582
Philippe Longepeb54a0df2016-03-08 10:31:14 +0100583 fp_error = pid->setpoint - busy;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800584
Philippe Longepeb54a0df2016-03-08 10:31:14 +0100585 if (abs(fp_error) <= pid->deadband)
Dirk Brandewie93f08222013-02-06 09:02:13 -0800586 return 0;
587
588 pterm = mul_fp(pid->p_gain, fp_error);
589
590 pid->integral += fp_error;
591
Kristen Carlson Accardie0d4c8f2014-12-10 12:39:38 -0800592 /*
593 * We limit the integral here so that it will never
594 * get higher than 30. This prevents it from becoming
595 * too large an input over long periods of time and allows
596 * it to get factored out sooner.
597 *
598 * The value of 30 was chosen through experimentation.
599 */
Dirk Brandewie93f08222013-02-06 09:02:13 -0800600 integral_limit = int_tofp(30);
601 if (pid->integral > integral_limit)
602 pid->integral = integral_limit;
603 if (pid->integral < -integral_limit)
604 pid->integral = -integral_limit;
605
Brennan Shacklettd253d2a2013-10-21 09:20:32 -0700606 dterm = mul_fp(pid->d_gain, fp_error - pid->last_err);
607 pid->last_err = fp_error;
Dirk Brandewie93f08222013-02-06 09:02:13 -0800608
609 result = pterm + mul_fp(pid->integral, pid->i_gain) + dterm;
Doug Smythies51d211e2014-06-17 13:36:10 -0700610 result = result + (1 << (FRAC_BITS-1));
Dirk Brandewie93f08222013-02-06 09:02:13 -0800611 return (signed int)fp_toint(result);
612}
613
614static inline void intel_pstate_busy_pid_reset(struct cpudata *cpu)
615{
Dirk Brandewie016c8152013-10-21 09:20:34 -0700616 pid_p_gain_set(&cpu->pid, pid_params.p_gain_pct);
617 pid_d_gain_set(&cpu->pid, pid_params.d_gain_pct);
618 pid_i_gain_set(&cpu->pid, pid_params.i_gain_pct);
Dirk Brandewie93f08222013-02-06 09:02:13 -0800619
Stratos Karafotis2d8d1f12014-07-18 08:37:20 -0700620 pid_reset(&cpu->pid, pid_params.setpoint, 100, pid_params.deadband, 0);
Dirk Brandewie93f08222013-02-06 09:02:13 -0800621}
622
Dirk Brandewie93f08222013-02-06 09:02:13 -0800623static inline void intel_pstate_reset_all_pid(void)
624{
625 unsigned int cpu;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -0700626
Dirk Brandewie93f08222013-02-06 09:02:13 -0800627 for_each_online_cpu(cpu) {
628 if (all_cpu_data[cpu])
629 intel_pstate_busy_pid_reset(all_cpu_data[cpu]);
630 }
631}
632
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -0700633static inline void update_turbo_state(void)
634{
635 u64 misc_en;
636 struct cpudata *cpu;
637
638 cpu = all_cpu_data[0];
639 rdmsrl(MSR_IA32_MISC_ENABLE, misc_en);
Prarit Bhargava51443fb2015-10-15 07:34:15 -0400640 limits->turbo_disabled =
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -0700641 (misc_en & MSR_IA32_MISC_ENABLE_TURBO_DISABLE ||
642 cpu->pstate.max_pstate == cpu->pstate.turbo_pstate);
643}
644
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800645static s16 intel_pstate_get_epb(struct cpudata *cpu_data)
646{
647 u64 epb;
648 int ret;
649
650 if (!static_cpu_has(X86_FEATURE_EPB))
651 return -ENXIO;
652
653 ret = rdmsrl_on_cpu(cpu_data->cpu, MSR_IA32_ENERGY_PERF_BIAS, &epb);
654 if (ret)
655 return (s16)ret;
656
657 return (s16)(epb & 0x0f);
658}
659
660static s16 intel_pstate_get_epp(struct cpudata *cpu_data, u64 hwp_req_data)
661{
662 s16 epp;
663
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800664 if (static_cpu_has(X86_FEATURE_HWP_EPP)) {
665 /*
666 * When hwp_req_data is 0, means that caller didn't read
667 * MSR_HWP_REQUEST, so need to read and get EPP.
668 */
669 if (!hwp_req_data) {
670 epp = rdmsrl_on_cpu(cpu_data->cpu, MSR_HWP_REQUEST,
671 &hwp_req_data);
672 if (epp)
673 return epp;
674 }
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800675 epp = (hwp_req_data >> 24) & 0xff;
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800676 } else {
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800677 /* When there is no EPP present, HWP uses EPB settings */
678 epp = intel_pstate_get_epb(cpu_data);
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800679 }
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800680
681 return epp;
682}
683
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800684static int intel_pstate_set_epb(int cpu, s16 pref)
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800685{
686 u64 epb;
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800687 int ret;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800688
689 if (!static_cpu_has(X86_FEATURE_EPB))
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800690 return -ENXIO;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800691
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800692 ret = rdmsrl_on_cpu(cpu, MSR_IA32_ENERGY_PERF_BIAS, &epb);
693 if (ret)
694 return ret;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800695
696 epb = (epb & ~0x0f) | pref;
697 wrmsrl_on_cpu(cpu, MSR_IA32_ENERGY_PERF_BIAS, epb);
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800698
699 return 0;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800700}
701
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800702/*
703 * EPP/EPB display strings corresponding to EPP index in the
704 * energy_perf_strings[]
705 * index String
706 *-------------------------------------
707 * 0 default
708 * 1 performance
709 * 2 balance_performance
710 * 3 balance_power
711 * 4 power
712 */
713static const char * const energy_perf_strings[] = {
714 "default",
715 "performance",
716 "balance_performance",
717 "balance_power",
718 "power",
719 NULL
720};
721
722static int intel_pstate_get_energy_pref_index(struct cpudata *cpu_data)
723{
724 s16 epp;
725 int index = -EINVAL;
726
727 epp = intel_pstate_get_epp(cpu_data, 0);
728 if (epp < 0)
729 return epp;
730
731 if (static_cpu_has(X86_FEATURE_HWP_EPP)) {
732 /*
733 * Range:
734 * 0x00-0x3F : Performance
735 * 0x40-0x7F : Balance performance
736 * 0x80-0xBF : Balance power
737 * 0xC0-0xFF : Power
738 * The EPP is a 8 bit value, but our ranges restrict the
739 * value which can be set. Here only using top two bits
740 * effectively.
741 */
742 index = (epp >> 6) + 1;
743 } else if (static_cpu_has(X86_FEATURE_EPB)) {
744 /*
745 * Range:
746 * 0x00-0x03 : Performance
747 * 0x04-0x07 : Balance performance
748 * 0x08-0x0B : Balance power
749 * 0x0C-0x0F : Power
750 * The EPB is a 4 bit value, but our ranges restrict the
751 * value which can be set. Here only using top two bits
752 * effectively.
753 */
754 index = (epp >> 2) + 1;
755 }
756
757 return index;
758}
759
760static int intel_pstate_set_energy_pref_index(struct cpudata *cpu_data,
761 int pref_index)
762{
763 int epp = -EINVAL;
764 int ret;
765
766 if (!pref_index)
767 epp = cpu_data->epp_default;
768
769 mutex_lock(&intel_pstate_limits_lock);
770
771 if (static_cpu_has(X86_FEATURE_HWP_EPP)) {
772 u64 value;
773
774 ret = rdmsrl_on_cpu(cpu_data->cpu, MSR_HWP_REQUEST, &value);
775 if (ret)
776 goto return_pref;
777
778 value &= ~GENMASK_ULL(31, 24);
779
780 /*
781 * If epp is not default, convert from index into
782 * energy_perf_strings to epp value, by shifting 6
783 * bits left to use only top two bits in epp.
784 * The resultant epp need to shifted by 24 bits to
785 * epp position in MSR_HWP_REQUEST.
786 */
787 if (epp == -EINVAL)
788 epp = (pref_index - 1) << 6;
789
790 value |= (u64)epp << 24;
791 ret = wrmsrl_on_cpu(cpu_data->cpu, MSR_HWP_REQUEST, value);
792 } else {
793 if (epp == -EINVAL)
794 epp = (pref_index - 1) << 2;
795 ret = intel_pstate_set_epb(cpu_data->cpu, epp);
796 }
797return_pref:
798 mutex_unlock(&intel_pstate_limits_lock);
799
800 return ret;
801}
802
803static ssize_t show_energy_performance_available_preferences(
804 struct cpufreq_policy *policy, char *buf)
805{
806 int i = 0;
807 int ret = 0;
808
809 while (energy_perf_strings[i] != NULL)
810 ret += sprintf(&buf[ret], "%s ", energy_perf_strings[i++]);
811
812 ret += sprintf(&buf[ret], "\n");
813
814 return ret;
815}
816
817cpufreq_freq_attr_ro(energy_performance_available_preferences);
818
819static ssize_t store_energy_performance_preference(
820 struct cpufreq_policy *policy, const char *buf, size_t count)
821{
822 struct cpudata *cpu_data = all_cpu_data[policy->cpu];
823 char str_preference[21];
824 int ret, i = 0;
825
826 ret = sscanf(buf, "%20s", str_preference);
827 if (ret != 1)
828 return -EINVAL;
829
830 while (energy_perf_strings[i] != NULL) {
831 if (!strcmp(str_preference, energy_perf_strings[i])) {
832 intel_pstate_set_energy_pref_index(cpu_data, i);
833 return count;
834 }
835 ++i;
836 }
837
838 return -EINVAL;
839}
840
841static ssize_t show_energy_performance_preference(
842 struct cpufreq_policy *policy, char *buf)
843{
844 struct cpudata *cpu_data = all_cpu_data[policy->cpu];
845 int preference;
846
847 preference = intel_pstate_get_energy_pref_index(cpu_data);
848 if (preference < 0)
849 return preference;
850
851 return sprintf(buf, "%s\n", energy_perf_strings[preference]);
852}
853
854cpufreq_freq_attr_rw(energy_performance_preference);
855
856static struct freq_attr *hwp_cpufreq_attrs[] = {
857 &energy_performance_preference,
858 &energy_performance_available_preferences,
859 NULL,
860};
861
Rafael J. Wysocki111b8b32016-12-30 15:58:21 +0100862static void intel_pstate_hwp_set(struct cpufreq_policy *policy)
Dirk Brandewie2f86dc42014-11-06 09:40:47 -0800863{
Kristen Carlson Accardi74da56c2015-09-09 11:41:22 -0700864 int min, hw_min, max, hw_max, cpu, range, adj_range;
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700865 struct perf_limits *perf_limits = limits;
Kristen Carlson Accardi74da56c2015-09-09 11:41:22 -0700866 u64 value, cap;
867
Rafael J. Wysocki111b8b32016-12-30 15:58:21 +0100868 for_each_cpu(cpu, policy->cpus) {
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700869 int max_perf_pct, min_perf_pct;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800870 struct cpudata *cpu_data = all_cpu_data[cpu];
871 s16 epp;
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700872
873 if (per_cpu_limits)
874 perf_limits = all_cpu_data[cpu]->perf_limits;
875
Srinivas Pandruvadaf9f48722016-10-08 12:42:38 -0700876 rdmsrl_on_cpu(cpu, MSR_HWP_CAPABILITIES, &cap);
877 hw_min = HWP_LOWEST_PERF(cap);
878 hw_max = HWP_HIGHEST_PERF(cap);
879 range = hw_max - hw_min;
880
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700881 max_perf_pct = perf_limits->max_perf_pct;
882 min_perf_pct = perf_limits->min_perf_pct;
883
Dirk Brandewie2f86dc42014-11-06 09:40:47 -0800884 rdmsrl_on_cpu(cpu, MSR_HWP_REQUEST, &value);
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700885 adj_range = min_perf_pct * range / 100;
Kristen Carlson Accardi74da56c2015-09-09 11:41:22 -0700886 min = hw_min + adj_range;
Dirk Brandewie2f86dc42014-11-06 09:40:47 -0800887 value &= ~HWP_MIN_PERF(~0L);
888 value |= HWP_MIN_PERF(min);
889
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -0700890 adj_range = max_perf_pct * range / 100;
Kristen Carlson Accardi74da56c2015-09-09 11:41:22 -0700891 max = hw_min + adj_range;
Prarit Bhargava51443fb2015-10-15 07:34:15 -0400892 if (limits->no_turbo) {
Kristen Carlson Accardi74da56c2015-09-09 11:41:22 -0700893 hw_max = HWP_GUARANTEED_PERF(cap);
894 if (hw_max < max)
895 max = hw_max;
Dirk Brandewie2f86dc42014-11-06 09:40:47 -0800896 }
897
898 value &= ~HWP_MAX_PERF(~0L);
899 value |= HWP_MAX_PERF(max);
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800900
901 if (cpu_data->epp_policy == cpu_data->policy)
902 goto skip_epp;
903
904 cpu_data->epp_policy = cpu_data->policy;
905
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800906 if (cpu_data->epp_saved >= 0) {
907 epp = cpu_data->epp_saved;
908 cpu_data->epp_saved = -EINVAL;
909 goto update_epp;
910 }
911
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800912 if (cpu_data->policy == CPUFREQ_POLICY_PERFORMANCE) {
913 epp = intel_pstate_get_epp(cpu_data, value);
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800914 cpu_data->epp_powersave = epp;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800915 /* If EPP read was failed, then don't try to write */
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800916 if (epp < 0)
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800917 goto skip_epp;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800918
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800919
920 epp = 0;
921 } else {
922 /* skip setting EPP, when saved value is invalid */
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800923 if (cpu_data->epp_powersave < 0)
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800924 goto skip_epp;
925
926 /*
927 * No need to restore EPP when it is not zero. This
928 * means:
929 * - Policy is not changed
930 * - user has manually changed
931 * - Error reading EPB
932 */
933 epp = intel_pstate_get_epp(cpu_data, value);
934 if (epp)
935 goto skip_epp;
936
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800937 epp = cpu_data->epp_powersave;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800938 }
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800939update_epp:
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800940 if (static_cpu_has(X86_FEATURE_HWP_EPP)) {
941 value &= ~GENMASK_ULL(31, 24);
942 value |= (u64)epp << 24;
943 } else {
944 intel_pstate_set_epb(cpu, epp);
945 }
946skip_epp:
Dirk Brandewie2f86dc42014-11-06 09:40:47 -0800947 wrmsrl_on_cpu(cpu, MSR_HWP_REQUEST, value);
948 }
Viresh Kumar41cfd642016-02-22 10:27:46 +0530949}
Dirk Brandewie2f86dc42014-11-06 09:40:47 -0800950
Rafael J. Wysockiba41e1b2016-05-02 02:27:19 +0200951static int intel_pstate_hwp_set_policy(struct cpufreq_policy *policy)
952{
953 if (hwp_active)
Rafael J. Wysocki111b8b32016-12-30 15:58:21 +0100954 intel_pstate_hwp_set(policy);
Rafael J. Wysockiba41e1b2016-05-02 02:27:19 +0200955
956 return 0;
957}
958
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -0800959static int intel_pstate_hwp_save_state(struct cpufreq_policy *policy)
960{
961 struct cpudata *cpu_data = all_cpu_data[policy->cpu];
962
963 if (!hwp_active)
964 return 0;
965
966 cpu_data->epp_saved = intel_pstate_get_epp(cpu_data, 0);
967
968 return 0;
969}
970
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800971static int intel_pstate_resume(struct cpufreq_policy *policy)
972{
Rafael J. Wysockiaa439242016-12-30 15:56:14 +0100973 int ret;
974
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800975 if (!hwp_active)
976 return 0;
977
Rafael J. Wysockiaa439242016-12-30 15:56:14 +0100978 mutex_lock(&intel_pstate_limits_lock);
979
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800980 all_cpu_data[policy->cpu]->epp_policy = 0;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800981
Rafael J. Wysockiaa439242016-12-30 15:56:14 +0100982 ret = intel_pstate_hwp_set_policy(policy);
983
984 mutex_unlock(&intel_pstate_limits_lock);
985
986 return ret;
Srinivas Pandruvada84428852016-11-24 16:07:10 -0800987}
988
Rafael J. Wysocki111b8b32016-12-30 15:58:21 +0100989static void intel_pstate_update_policies(void)
Viresh Kumar41cfd642016-02-22 10:27:46 +0530990{
Rafael J. Wysocki111b8b32016-12-30 15:58:21 +0100991 int cpu;
992
993 for_each_possible_cpu(cpu)
994 cpufreq_update_policy(cpu);
Dirk Brandewie2f86dc42014-11-06 09:40:47 -0800995}
996
Dirk Brandewie93f08222013-02-06 09:02:13 -0800997/************************** debugfs begin ************************/
998static int pid_param_set(void *data, u64 val)
999{
1000 *(u32 *)data = val;
1001 intel_pstate_reset_all_pid();
1002 return 0;
1003}
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001004
Dirk Brandewie93f08222013-02-06 09:02:13 -08001005static int pid_param_get(void *data, u64 *val)
1006{
1007 *val = *(u32 *)data;
1008 return 0;
1009}
Stratos Karafotis2d8d1f12014-07-18 08:37:20 -07001010DEFINE_SIMPLE_ATTRIBUTE(fops_pid_param, pid_param_get, pid_param_set, "%llu\n");
Dirk Brandewie93f08222013-02-06 09:02:13 -08001011
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001012static struct dentry *debugfs_parent;
1013
Dirk Brandewie93f08222013-02-06 09:02:13 -08001014struct pid_param {
1015 char *name;
1016 void *value;
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001017 struct dentry *dentry;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001018};
1019
1020static struct pid_param pid_files[] = {
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001021 {"sample_rate_ms", &pid_params.sample_rate_ms, },
1022 {"d_gain_pct", &pid_params.d_gain_pct, },
1023 {"i_gain_pct", &pid_params.i_gain_pct, },
1024 {"deadband", &pid_params.deadband, },
1025 {"setpoint", &pid_params.setpoint, },
1026 {"p_gain_pct", &pid_params.p_gain_pct, },
1027 {NULL, NULL, }
Dirk Brandewie93f08222013-02-06 09:02:13 -08001028};
1029
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001030static void intel_pstate_debug_expose_params(void)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001031{
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001032 int i;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001033
1034 debugfs_parent = debugfs_create_dir("pstate_snb", NULL);
1035 if (IS_ERR_OR_NULL(debugfs_parent))
1036 return;
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001037
1038 for (i = 0; pid_files[i].name; i++) {
1039 struct dentry *dentry;
1040
1041 dentry = debugfs_create_file(pid_files[i].name, 0660,
1042 debugfs_parent, pid_files[i].value,
1043 &fops_pid_param);
1044 if (!IS_ERR(dentry))
1045 pid_files[i].dentry = dentry;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001046 }
1047}
1048
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001049static void intel_pstate_debug_hide_params(void)
1050{
1051 int i;
1052
1053 if (IS_ERR_OR_NULL(debugfs_parent))
1054 return;
1055
1056 for (i = 0; pid_files[i].name; i++) {
1057 debugfs_remove(pid_files[i].dentry);
1058 pid_files[i].dentry = NULL;
1059 }
1060
1061 debugfs_remove(debugfs_parent);
1062 debugfs_parent = NULL;
1063}
1064
Dirk Brandewie93f08222013-02-06 09:02:13 -08001065/************************** debugfs end ************************/
1066
1067/************************** sysfs begin ************************/
1068#define show_one(file_name, object) \
1069 static ssize_t show_##file_name \
1070 (struct kobject *kobj, struct attribute *attr, char *buf) \
1071 { \
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001072 return sprintf(buf, "%u\n", limits->object); \
Dirk Brandewie93f08222013-02-06 09:02:13 -08001073 }
1074
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001075static ssize_t intel_pstate_show_status(char *buf);
1076static int intel_pstate_update_status(const char *buf, size_t size);
1077
1078static ssize_t show_status(struct kobject *kobj,
1079 struct attribute *attr, char *buf)
1080{
1081 ssize_t ret;
1082
1083 mutex_lock(&intel_pstate_driver_lock);
1084 ret = intel_pstate_show_status(buf);
1085 mutex_unlock(&intel_pstate_driver_lock);
1086
1087 return ret;
1088}
1089
1090static ssize_t store_status(struct kobject *a, struct attribute *b,
1091 const char *buf, size_t count)
1092{
1093 char *p = memchr(buf, '\n', count);
1094 int ret;
1095
1096 mutex_lock(&intel_pstate_driver_lock);
1097 ret = intel_pstate_update_status(buf, p ? p - buf : count);
1098 mutex_unlock(&intel_pstate_driver_lock);
1099
1100 return ret < 0 ? ret : count;
1101}
1102
Kristen Carlson Accardid01b1f42015-01-28 15:03:27 -08001103static ssize_t show_turbo_pct(struct kobject *kobj,
1104 struct attribute *attr, char *buf)
1105{
1106 struct cpudata *cpu;
1107 int total, no_turbo, turbo_pct;
1108 uint32_t turbo_fp;
1109
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001110 mutex_lock(&intel_pstate_driver_lock);
1111
1112 if (!driver_registered) {
1113 mutex_unlock(&intel_pstate_driver_lock);
1114 return -EAGAIN;
1115 }
1116
Kristen Carlson Accardid01b1f42015-01-28 15:03:27 -08001117 cpu = all_cpu_data[0];
1118
1119 total = cpu->pstate.turbo_pstate - cpu->pstate.min_pstate + 1;
1120 no_turbo = cpu->pstate.max_pstate - cpu->pstate.min_pstate + 1;
Rafael J. Wysocki22590ef2016-04-09 01:25:58 +02001121 turbo_fp = div_fp(no_turbo, total);
Kristen Carlson Accardid01b1f42015-01-28 15:03:27 -08001122 turbo_pct = 100 - fp_toint(mul_fp(turbo_fp, int_tofp(100)));
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001123
1124 mutex_unlock(&intel_pstate_driver_lock);
1125
Kristen Carlson Accardid01b1f42015-01-28 15:03:27 -08001126 return sprintf(buf, "%u\n", turbo_pct);
1127}
1128
Kristen Carlson Accardi05224242015-01-28 15:03:28 -08001129static ssize_t show_num_pstates(struct kobject *kobj,
1130 struct attribute *attr, char *buf)
1131{
1132 struct cpudata *cpu;
1133 int total;
1134
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001135 mutex_lock(&intel_pstate_driver_lock);
1136
1137 if (!driver_registered) {
1138 mutex_unlock(&intel_pstate_driver_lock);
1139 return -EAGAIN;
1140 }
1141
Kristen Carlson Accardi05224242015-01-28 15:03:28 -08001142 cpu = all_cpu_data[0];
1143 total = cpu->pstate.turbo_pstate - cpu->pstate.min_pstate + 1;
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001144
1145 mutex_unlock(&intel_pstate_driver_lock);
1146
Kristen Carlson Accardi05224242015-01-28 15:03:28 -08001147 return sprintf(buf, "%u\n", total);
1148}
1149
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -07001150static ssize_t show_no_turbo(struct kobject *kobj,
1151 struct attribute *attr, char *buf)
1152{
1153 ssize_t ret;
1154
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001155 mutex_lock(&intel_pstate_driver_lock);
1156
1157 if (!driver_registered) {
1158 mutex_unlock(&intel_pstate_driver_lock);
1159 return -EAGAIN;
1160 }
1161
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -07001162 update_turbo_state();
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001163 if (limits->turbo_disabled)
1164 ret = sprintf(buf, "%u\n", limits->turbo_disabled);
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -07001165 else
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001166 ret = sprintf(buf, "%u\n", limits->no_turbo);
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -07001167
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001168 mutex_unlock(&intel_pstate_driver_lock);
1169
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -07001170 return ret;
1171}
1172
Dirk Brandewie93f08222013-02-06 09:02:13 -08001173static ssize_t store_no_turbo(struct kobject *a, struct attribute *b,
Stratos Karafotisc4108332014-07-18 08:37:23 -07001174 const char *buf, size_t count)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001175{
1176 unsigned int input;
1177 int ret;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001178
Dirk Brandewie93f08222013-02-06 09:02:13 -08001179 ret = sscanf(buf, "%u", &input);
1180 if (ret != 1)
1181 return -EINVAL;
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -07001182
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001183 mutex_lock(&intel_pstate_driver_lock);
1184
1185 if (!driver_registered) {
1186 mutex_unlock(&intel_pstate_driver_lock);
1187 return -EAGAIN;
1188 }
1189
Srinivas Pandruvadaa410c032016-10-28 10:44:52 -07001190 mutex_lock(&intel_pstate_limits_lock);
1191
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -07001192 update_turbo_state();
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001193 if (limits->turbo_disabled) {
Joe Perches4836df12016-04-05 13:28:23 -07001194 pr_warn("Turbo disabled by BIOS or unavailable on processor\n");
Srinivas Pandruvadaa410c032016-10-28 10:44:52 -07001195 mutex_unlock(&intel_pstate_limits_lock);
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001196 mutex_unlock(&intel_pstate_driver_lock);
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -07001197 return -EPERM;
Dirk Brandewiedd5fbf72014-06-20 07:27:59 -07001198 }
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08001199
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001200 limits->no_turbo = clamp_t(int, input, 0, 1);
Gabriele Mazzotta4521e1a02014-10-13 08:37:41 -07001201
Srinivas Pandruvadab59fe542016-12-06 13:32:15 -08001202 mutex_unlock(&intel_pstate_limits_lock);
1203
Rafael J. Wysocki111b8b32016-12-30 15:58:21 +01001204 intel_pstate_update_policies();
1205
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001206 mutex_unlock(&intel_pstate_driver_lock);
1207
Dirk Brandewie93f08222013-02-06 09:02:13 -08001208 return count;
1209}
1210
1211static ssize_t store_max_perf_pct(struct kobject *a, struct attribute *b,
Stratos Karafotisc4108332014-07-18 08:37:23 -07001212 const char *buf, size_t count)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001213{
1214 unsigned int input;
1215 int ret;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001216
Dirk Brandewie93f08222013-02-06 09:02:13 -08001217 ret = sscanf(buf, "%u", &input);
1218 if (ret != 1)
1219 return -EINVAL;
1220
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001221 mutex_lock(&intel_pstate_driver_lock);
1222
1223 if (!driver_registered) {
1224 mutex_unlock(&intel_pstate_driver_lock);
1225 return -EAGAIN;
1226 }
1227
Srinivas Pandruvadaa410c032016-10-28 10:44:52 -07001228 mutex_lock(&intel_pstate_limits_lock);
1229
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001230 limits->max_sysfs_pct = clamp_t(int, input, 0 , 100);
1231 limits->max_perf_pct = min(limits->max_policy_pct,
1232 limits->max_sysfs_pct);
1233 limits->max_perf_pct = max(limits->min_policy_pct,
1234 limits->max_perf_pct);
1235 limits->max_perf_pct = max(limits->min_perf_pct,
1236 limits->max_perf_pct);
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -08001237 limits->max_perf = div_ext_fp(limits->max_perf_pct, 100);
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001238
Srinivas Pandruvadab59fe542016-12-06 13:32:15 -08001239 mutex_unlock(&intel_pstate_limits_lock);
1240
Rafael J. Wysocki111b8b32016-12-30 15:58:21 +01001241 intel_pstate_update_policies();
1242
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001243 mutex_unlock(&intel_pstate_driver_lock);
1244
Dirk Brandewie93f08222013-02-06 09:02:13 -08001245 return count;
1246}
1247
1248static ssize_t store_min_perf_pct(struct kobject *a, struct attribute *b,
Stratos Karafotisc4108332014-07-18 08:37:23 -07001249 const char *buf, size_t count)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001250{
1251 unsigned int input;
1252 int ret;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001253
Dirk Brandewie93f08222013-02-06 09:02:13 -08001254 ret = sscanf(buf, "%u", &input);
1255 if (ret != 1)
1256 return -EINVAL;
Kristen Carlson Accardia0475992015-01-29 13:03:52 -08001257
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001258 mutex_lock(&intel_pstate_driver_lock);
1259
1260 if (!driver_registered) {
1261 mutex_unlock(&intel_pstate_driver_lock);
1262 return -EAGAIN;
1263 }
1264
Srinivas Pandruvadaa410c032016-10-28 10:44:52 -07001265 mutex_lock(&intel_pstate_limits_lock);
1266
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001267 limits->min_sysfs_pct = clamp_t(int, input, 0 , 100);
1268 limits->min_perf_pct = max(limits->min_policy_pct,
1269 limits->min_sysfs_pct);
1270 limits->min_perf_pct = min(limits->max_policy_pct,
1271 limits->min_perf_pct);
1272 limits->min_perf_pct = min(limits->max_perf_pct,
1273 limits->min_perf_pct);
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -08001274 limits->min_perf = div_ext_fp(limits->min_perf_pct, 100);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001275
Srinivas Pandruvadab59fe542016-12-06 13:32:15 -08001276 mutex_unlock(&intel_pstate_limits_lock);
1277
Rafael J. Wysocki111b8b32016-12-30 15:58:21 +01001278 intel_pstate_update_policies();
1279
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01001280 mutex_unlock(&intel_pstate_driver_lock);
1281
Dirk Brandewie93f08222013-02-06 09:02:13 -08001282 return count;
1283}
1284
Dirk Brandewie93f08222013-02-06 09:02:13 -08001285show_one(max_perf_pct, max_perf_pct);
1286show_one(min_perf_pct, min_perf_pct);
1287
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001288define_one_global_rw(status);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001289define_one_global_rw(no_turbo);
1290define_one_global_rw(max_perf_pct);
1291define_one_global_rw(min_perf_pct);
Kristen Carlson Accardid01b1f42015-01-28 15:03:27 -08001292define_one_global_ro(turbo_pct);
Kristen Carlson Accardi05224242015-01-28 15:03:28 -08001293define_one_global_ro(num_pstates);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001294
1295static struct attribute *intel_pstate_attributes[] = {
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01001296 &status.attr,
Dirk Brandewie93f08222013-02-06 09:02:13 -08001297 &no_turbo.attr,
Kristen Carlson Accardid01b1f42015-01-28 15:03:27 -08001298 &turbo_pct.attr,
Kristen Carlson Accardi05224242015-01-28 15:03:28 -08001299 &num_pstates.attr,
Dirk Brandewie93f08222013-02-06 09:02:13 -08001300 NULL
1301};
1302
1303static struct attribute_group intel_pstate_attr_group = {
1304 .attrs = intel_pstate_attributes,
1305};
Dirk Brandewie93f08222013-02-06 09:02:13 -08001306
Stratos Karafotis317dd502014-07-18 08:37:17 -07001307static void __init intel_pstate_sysfs_expose_params(void)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001308{
Stratos Karafotis317dd502014-07-18 08:37:17 -07001309 struct kobject *intel_pstate_kobject;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001310 int rc;
1311
1312 intel_pstate_kobject = kobject_create_and_add("intel_pstate",
1313 &cpu_subsys.dev_root->kobj);
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07001314 if (WARN_ON(!intel_pstate_kobject))
1315 return;
1316
Stratos Karafotis2d8d1f12014-07-18 08:37:20 -07001317 rc = sysfs_create_group(intel_pstate_kobject, &intel_pstate_attr_group);
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07001318 if (WARN_ON(rc))
1319 return;
1320
1321 /*
1322 * If per cpu limits are enforced there are no global limits, so
1323 * return without creating max/min_perf_pct attributes
1324 */
1325 if (per_cpu_limits)
1326 return;
1327
1328 rc = sysfs_create_file(intel_pstate_kobject, &max_perf_pct.attr);
1329 WARN_ON(rc);
1330
1331 rc = sysfs_create_file(intel_pstate_kobject, &min_perf_pct.attr);
1332 WARN_ON(rc);
1333
Dirk Brandewie93f08222013-02-06 09:02:13 -08001334}
Dirk Brandewie93f08222013-02-06 09:02:13 -08001335/************************** sysfs end ************************/
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08001336
Kristen Carlson Accardiba88d432015-07-14 09:46:23 -07001337static void intel_pstate_hwp_enable(struct cpudata *cpudata)
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08001338{
Srinivas Pandruvadaf05c9662016-02-25 15:09:31 -08001339 /* First disable HWP notification interrupt as we don't process them */
Srinivas Pandruvadada7de912016-07-19 16:52:01 -07001340 if (static_cpu_has(X86_FEATURE_HWP_NOTIFY))
1341 wrmsrl_on_cpu(cpudata->cpu, MSR_HWP_INTERRUPT, 0x00);
Srinivas Pandruvadaf05c9662016-02-25 15:09:31 -08001342
Kristen Carlson Accardiba88d432015-07-14 09:46:23 -07001343 wrmsrl_on_cpu(cpudata->cpu, MSR_PM_ENABLE, 0x1);
Srinivas Pandruvada84428852016-11-24 16:07:10 -08001344 cpudata->epp_policy = 0;
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -08001345 if (cpudata->epp_default == -EINVAL)
1346 cpudata->epp_default = intel_pstate_get_epp(cpudata, 0);
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08001347}
1348
Philippe Longepe938d21a2015-11-09 17:40:46 -08001349static int atom_get_min_pstate(void)
Dirk Brandewie19e77c22013-10-21 09:20:35 -07001350{
1351 u64 value;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001352
Philippe Longepe938d21a2015-11-09 17:40:46 -08001353 rdmsrl(ATOM_RATIOS, value);
Dirk Brandewiec16ed062014-06-20 07:27:58 -07001354 return (value >> 8) & 0x7F;
Dirk Brandewie19e77c22013-10-21 09:20:35 -07001355}
Dirk Brandewie93f08222013-02-06 09:02:13 -08001356
Philippe Longepe938d21a2015-11-09 17:40:46 -08001357static int atom_get_max_pstate(void)
Dirk Brandewie19e77c22013-10-21 09:20:35 -07001358{
1359 u64 value;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001360
Philippe Longepe938d21a2015-11-09 17:40:46 -08001361 rdmsrl(ATOM_RATIOS, value);
Dirk Brandewiec16ed062014-06-20 07:27:58 -07001362 return (value >> 16) & 0x7F;
Dirk Brandewie19e77c22013-10-21 09:20:35 -07001363}
1364
Philippe Longepe938d21a2015-11-09 17:40:46 -08001365static int atom_get_turbo_pstate(void)
Dirk Brandewie61d8d2a2014-02-12 10:01:07 -08001366{
1367 u64 value;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001368
Philippe Longepe938d21a2015-11-09 17:40:46 -08001369 rdmsrl(ATOM_TURBO_RATIOS, value);
Dirk Brandewiec16ed062014-06-20 07:27:58 -07001370 return value & 0x7F;
Dirk Brandewie61d8d2a2014-02-12 10:01:07 -08001371}
1372
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001373static u64 atom_get_val(struct cpudata *cpudata, int pstate)
Dirk Brandewie007bea02013-12-18 10:32:39 -08001374{
1375 u64 val;
1376 int32_t vid_fp;
1377 u32 vid;
1378
Chen Yu144c8e12015-07-29 23:53:10 +08001379 val = (u64)pstate << 8;
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001380 if (limits->no_turbo && !limits->turbo_disabled)
Dirk Brandewie007bea02013-12-18 10:32:39 -08001381 val |= (u64)1 << 32;
1382
1383 vid_fp = cpudata->vid.min + mul_fp(
1384 int_tofp(pstate - cpudata->pstate.min_pstate),
1385 cpudata->vid.ratio);
1386
1387 vid_fp = clamp_t(int32_t, vid_fp, cpudata->vid.min, cpudata->vid.max);
Dirk Brandewied022a652014-10-13 08:37:44 -07001388 vid = ceiling_fp(vid_fp);
Dirk Brandewie007bea02013-12-18 10:32:39 -08001389
Dirk Brandewie21855ff2014-05-08 12:57:23 -07001390 if (pstate > cpudata->pstate.max_pstate)
1391 vid = cpudata->vid.turbo;
1392
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001393 return val | vid;
Dirk Brandewie007bea02013-12-18 10:32:39 -08001394}
1395
Philippe Longepe1421df62015-11-09 17:40:47 -08001396static int silvermont_get_scaling(void)
Dirk Brandewieb27580b2014-10-13 08:37:43 -07001397{
1398 u64 value;
1399 int i;
Philippe Longepe1421df62015-11-09 17:40:47 -08001400 /* Defined in Table 35-6 from SDM (Sept 2015) */
1401 static int silvermont_freq_table[] = {
1402 83300, 100000, 133300, 116700, 80000};
Dirk Brandewieb27580b2014-10-13 08:37:43 -07001403
1404 rdmsrl(MSR_FSB_FREQ, value);
Philippe Longepe1421df62015-11-09 17:40:47 -08001405 i = value & 0x7;
1406 WARN_ON(i > 4);
Dirk Brandewieb27580b2014-10-13 08:37:43 -07001407
Philippe Longepe1421df62015-11-09 17:40:47 -08001408 return silvermont_freq_table[i];
1409}
Dirk Brandewieb27580b2014-10-13 08:37:43 -07001410
Philippe Longepe1421df62015-11-09 17:40:47 -08001411static int airmont_get_scaling(void)
1412{
1413 u64 value;
1414 int i;
1415 /* Defined in Table 35-10 from SDM (Sept 2015) */
1416 static int airmont_freq_table[] = {
1417 83300, 100000, 133300, 116700, 80000,
1418 93300, 90000, 88900, 87500};
1419
1420 rdmsrl(MSR_FSB_FREQ, value);
1421 i = value & 0xF;
1422 WARN_ON(i > 8);
1423
1424 return airmont_freq_table[i];
Dirk Brandewieb27580b2014-10-13 08:37:43 -07001425}
1426
Philippe Longepe938d21a2015-11-09 17:40:46 -08001427static void atom_get_vid(struct cpudata *cpudata)
Dirk Brandewie007bea02013-12-18 10:32:39 -08001428{
1429 u64 value;
1430
Philippe Longepe938d21a2015-11-09 17:40:46 -08001431 rdmsrl(ATOM_VIDS, value);
Dirk Brandewiec16ed062014-06-20 07:27:58 -07001432 cpudata->vid.min = int_tofp((value >> 8) & 0x7f);
1433 cpudata->vid.max = int_tofp((value >> 16) & 0x7f);
Dirk Brandewie007bea02013-12-18 10:32:39 -08001434 cpudata->vid.ratio = div_fp(
1435 cpudata->vid.max - cpudata->vid.min,
1436 int_tofp(cpudata->pstate.max_pstate -
1437 cpudata->pstate.min_pstate));
Dirk Brandewie21855ff2014-05-08 12:57:23 -07001438
Philippe Longepe938d21a2015-11-09 17:40:46 -08001439 rdmsrl(ATOM_TURBO_VIDS, value);
Dirk Brandewie21855ff2014-05-08 12:57:23 -07001440 cpudata->vid.turbo = value & 0x7f;
Dirk Brandewie007bea02013-12-18 10:32:39 -08001441}
1442
Dirk Brandewie016c8152013-10-21 09:20:34 -07001443static int core_get_min_pstate(void)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001444{
1445 u64 value;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001446
Konrad Rzeszutek Wilk05e99c8cf2013-03-20 14:21:10 +00001447 rdmsrl(MSR_PLATFORM_INFO, value);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001448 return (value >> 40) & 0xFF;
1449}
1450
Srinivas Pandruvada3bcc6fa2015-10-14 16:12:00 -07001451static int core_get_max_pstate_physical(void)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001452{
1453 u64 value;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001454
Konrad Rzeszutek Wilk05e99c8cf2013-03-20 14:21:10 +00001455 rdmsrl(MSR_PLATFORM_INFO, value);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001456 return (value >> 8) & 0xFF;
1457}
1458
Dirk Brandewie93f08222013-02-06 09:02:13 -08001459static int core_get_max_pstate(void)
1460{
Srinivas Pandruvada6a35fc22015-10-14 16:11:59 -07001461 u64 tar;
1462 u64 plat_info;
1463 int max_pstate;
1464 int err;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001465
Srinivas Pandruvada6a35fc22015-10-14 16:11:59 -07001466 rdmsrl(MSR_PLATFORM_INFO, plat_info);
1467 max_pstate = (plat_info >> 8) & 0xFF;
1468
1469 err = rdmsrl_safe(MSR_TURBO_ACTIVATION_RATIO, &tar);
1470 if (!err) {
1471 /* Do some sanity checking for safety */
1472 if (plat_info & 0x600000000) {
1473 u64 tdp_ctrl;
1474 u64 tdp_ratio;
1475 int tdp_msr;
1476
1477 err = rdmsrl_safe(MSR_CONFIG_TDP_CONTROL, &tdp_ctrl);
1478 if (err)
1479 goto skip_tar;
1480
Jan Kiszka5fc8f7072016-07-08 20:42:04 +02001481 tdp_msr = MSR_CONFIG_TDP_NOMINAL + (tdp_ctrl & 0x3);
Srinivas Pandruvada6a35fc22015-10-14 16:11:59 -07001482 err = rdmsrl_safe(tdp_msr, &tdp_ratio);
1483 if (err)
1484 goto skip_tar;
1485
Srinivas Pandruvada1becf032016-04-22 19:53:59 -07001486 /* For level 1 and 2, bits[23:16] contain the ratio */
1487 if (tdp_ctrl)
1488 tdp_ratio >>= 16;
1489
1490 tdp_ratio &= 0xff; /* ratios are only 8 bits long */
Srinivas Pandruvada6a35fc22015-10-14 16:11:59 -07001491 if (tdp_ratio - 1 == tar) {
1492 max_pstate = tar;
1493 pr_debug("max_pstate=TAC %x\n", max_pstate);
1494 } else {
1495 goto skip_tar;
1496 }
1497 }
1498 }
1499
1500skip_tar:
1501 return max_pstate;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001502}
1503
Dirk Brandewie016c8152013-10-21 09:20:34 -07001504static int core_get_turbo_pstate(void)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001505{
1506 u64 value;
1507 int nont, ret;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001508
Srinivas Pandruvada100cf6f2016-07-06 16:07:55 -07001509 rdmsrl(MSR_TURBO_RATIO_LIMIT, value);
Dirk Brandewie016c8152013-10-21 09:20:34 -07001510 nont = core_get_max_pstate();
Stratos Karafotis285cb992014-07-18 08:37:21 -07001511 ret = (value) & 255;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001512 if (ret <= nont)
1513 ret = nont;
1514 return ret;
1515}
1516
Dirk Brandewieb27580b2014-10-13 08:37:43 -07001517static inline int core_get_scaling(void)
1518{
1519 return 100000;
1520}
1521
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001522static u64 core_get_val(struct cpudata *cpudata, int pstate)
Dirk Brandewie016c8152013-10-21 09:20:34 -07001523{
1524 u64 val;
1525
Chen Yu144c8e12015-07-29 23:53:10 +08001526 val = (u64)pstate << 8;
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001527 if (limits->no_turbo && !limits->turbo_disabled)
Dirk Brandewie016c8152013-10-21 09:20:34 -07001528 val |= (u64)1 << 32;
1529
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001530 return val;
Dirk Brandewie016c8152013-10-21 09:20:34 -07001531}
1532
Dasaratharaman Chandramoulib34ef932015-04-10 10:22:18 -07001533static int knl_get_turbo_pstate(void)
1534{
1535 u64 value;
1536 int nont, ret;
1537
Srinivas Pandruvada100cf6f2016-07-06 16:07:55 -07001538 rdmsrl(MSR_TURBO_RATIO_LIMIT, value);
Dasaratharaman Chandramoulib34ef932015-04-10 10:22:18 -07001539 nont = core_get_max_pstate();
1540 ret = (((value) >> 8) & 0xFF);
1541 if (ret <= nont)
1542 ret = nont;
1543 return ret;
1544}
1545
Dirk Brandewie016c8152013-10-21 09:20:34 -07001546static struct cpu_defaults core_params = {
1547 .pid_policy = {
1548 .sample_rate_ms = 10,
1549 .deadband = 0,
1550 .setpoint = 97,
1551 .p_gain_pct = 20,
1552 .d_gain_pct = 0,
1553 .i_gain_pct = 0,
1554 },
1555 .funcs = {
1556 .get_max = core_get_max_pstate,
Srinivas Pandruvada3bcc6fa2015-10-14 16:12:00 -07001557 .get_max_physical = core_get_max_pstate_physical,
Dirk Brandewie016c8152013-10-21 09:20:34 -07001558 .get_min = core_get_min_pstate,
1559 .get_turbo = core_get_turbo_pstate,
Dirk Brandewieb27580b2014-10-13 08:37:43 -07001560 .get_scaling = core_get_scaling,
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001561 .get_val = core_get_val,
Philippe Longepe157386b2015-12-04 17:40:30 +01001562 .get_target_pstate = get_target_pstate_use_performance,
Dirk Brandewie016c8152013-10-21 09:20:34 -07001563 },
1564};
1565
Julia Lawall42ce8922016-09-11 15:06:01 +02001566static const struct cpu_defaults silvermont_params = {
Dirk Brandewie19e77c22013-10-21 09:20:35 -07001567 .pid_policy = {
1568 .sample_rate_ms = 10,
1569 .deadband = 0,
Kristen Carlson Accardi6a82ba62015-04-10 11:06:43 -07001570 .setpoint = 60,
Dirk Brandewie19e77c22013-10-21 09:20:35 -07001571 .p_gain_pct = 14,
1572 .d_gain_pct = 0,
1573 .i_gain_pct = 4,
1574 },
1575 .funcs = {
Philippe Longepe938d21a2015-11-09 17:40:46 -08001576 .get_max = atom_get_max_pstate,
1577 .get_max_physical = atom_get_max_pstate,
1578 .get_min = atom_get_min_pstate,
1579 .get_turbo = atom_get_turbo_pstate,
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001580 .get_val = atom_get_val,
Philippe Longepe1421df62015-11-09 17:40:47 -08001581 .get_scaling = silvermont_get_scaling,
1582 .get_vid = atom_get_vid,
Philippe Longepee70eed22015-12-04 17:40:32 +01001583 .get_target_pstate = get_target_pstate_use_cpu_load,
Philippe Longepe1421df62015-11-09 17:40:47 -08001584 },
1585};
1586
Julia Lawall42ce8922016-09-11 15:06:01 +02001587static const struct cpu_defaults airmont_params = {
Philippe Longepe1421df62015-11-09 17:40:47 -08001588 .pid_policy = {
1589 .sample_rate_ms = 10,
1590 .deadband = 0,
1591 .setpoint = 60,
1592 .p_gain_pct = 14,
1593 .d_gain_pct = 0,
1594 .i_gain_pct = 4,
1595 },
1596 .funcs = {
1597 .get_max = atom_get_max_pstate,
1598 .get_max_physical = atom_get_max_pstate,
1599 .get_min = atom_get_min_pstate,
1600 .get_turbo = atom_get_turbo_pstate,
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001601 .get_val = atom_get_val,
Philippe Longepe1421df62015-11-09 17:40:47 -08001602 .get_scaling = airmont_get_scaling,
Philippe Longepe938d21a2015-11-09 17:40:46 -08001603 .get_vid = atom_get_vid,
Philippe Longepee70eed22015-12-04 17:40:32 +01001604 .get_target_pstate = get_target_pstate_use_cpu_load,
Dirk Brandewie19e77c22013-10-21 09:20:35 -07001605 },
1606};
1607
Julia Lawall42ce8922016-09-11 15:06:01 +02001608static const struct cpu_defaults knl_params = {
Dasaratharaman Chandramoulib34ef932015-04-10 10:22:18 -07001609 .pid_policy = {
1610 .sample_rate_ms = 10,
1611 .deadband = 0,
1612 .setpoint = 97,
1613 .p_gain_pct = 20,
1614 .d_gain_pct = 0,
1615 .i_gain_pct = 0,
1616 },
1617 .funcs = {
1618 .get_max = core_get_max_pstate,
Srinivas Pandruvada3bcc6fa2015-10-14 16:12:00 -07001619 .get_max_physical = core_get_max_pstate_physical,
Dasaratharaman Chandramoulib34ef932015-04-10 10:22:18 -07001620 .get_min = core_get_min_pstate,
1621 .get_turbo = knl_get_turbo_pstate,
Lukasz Anaczkowski69cefc22015-07-21 10:41:13 +02001622 .get_scaling = core_get_scaling,
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001623 .get_val = core_get_val,
Philippe Longepe157386b2015-12-04 17:40:30 +01001624 .get_target_pstate = get_target_pstate_use_performance,
Dasaratharaman Chandramoulib34ef932015-04-10 10:22:18 -07001625 },
1626};
1627
Julia Lawall42ce8922016-09-11 15:06:01 +02001628static const struct cpu_defaults bxt_params = {
Srinivas Pandruvada41bad472016-06-09 15:34:41 -07001629 .pid_policy = {
1630 .sample_rate_ms = 10,
1631 .deadband = 0,
1632 .setpoint = 60,
1633 .p_gain_pct = 14,
1634 .d_gain_pct = 0,
1635 .i_gain_pct = 4,
1636 },
1637 .funcs = {
1638 .get_max = core_get_max_pstate,
1639 .get_max_physical = core_get_max_pstate_physical,
1640 .get_min = core_get_min_pstate,
1641 .get_turbo = core_get_turbo_pstate,
1642 .get_scaling = core_get_scaling,
1643 .get_val = core_get_val,
1644 .get_target_pstate = get_target_pstate_use_cpu_load,
1645 },
1646};
1647
Dirk Brandewie93f08222013-02-06 09:02:13 -08001648static void intel_pstate_get_min_max(struct cpudata *cpu, int *min, int *max)
1649{
1650 int max_perf = cpu->pstate.turbo_pstate;
Dirk Brandewie7244cb62013-10-21 09:20:33 -07001651 int max_perf_adj;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001652 int min_perf;
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07001653 struct perf_limits *perf_limits = limits;
Stratos Karafotis845c1cb2014-07-18 08:37:19 -07001654
Prarit Bhargava51443fb2015-10-15 07:34:15 -04001655 if (limits->no_turbo || limits->turbo_disabled)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001656 max_perf = cpu->pstate.max_pstate;
1657
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07001658 if (per_cpu_limits)
1659 perf_limits = cpu->perf_limits;
1660
Kristen Carlson Accardie0d4c8f2014-12-10 12:39:38 -08001661 /*
1662 * performance can be limited by user through sysfs, by cpufreq
1663 * policy, or by cpu specific default values determined through
1664 * experimentation.
1665 */
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -08001666 max_perf_adj = fp_ext_toint(max_perf * perf_limits->max_perf);
Rafael J. Wysocki799281a2015-11-18 23:29:56 +01001667 *max = clamp_t(int, max_perf_adj,
1668 cpu->pstate.min_pstate, cpu->pstate.turbo_pstate);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001669
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -08001670 min_perf = fp_ext_toint(max_perf * perf_limits->min_perf);
Rafael J. Wysocki799281a2015-11-18 23:29:56 +01001671 *min = clamp_t(int, min_perf, cpu->pstate.min_pstate, max_perf);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001672}
1673
Rafael J. Wysockia6c6ead2016-10-19 02:57:22 +02001674static void intel_pstate_set_pstate(struct cpudata *cpu, int pstate)
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001675{
Rafael J. Wysockibc95a452016-07-19 15:10:37 +02001676 trace_cpu_frequency(pstate * cpu->pstate.scaling, cpu->cpu);
1677 cpu->pstate.current_pstate = pstate;
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001678 /*
1679 * Generally, there is no guarantee that this code will always run on
1680 * the CPU being updated, so force the register update to run on the
1681 * right CPU.
1682 */
1683 wrmsrl_on_cpu(cpu->cpu, MSR_IA32_PERF_CTL,
1684 pstate_funcs.get_val(cpu, pstate));
Dirk Brandewie93f08222013-02-06 09:02:13 -08001685}
1686
Rafael J. Wysockia6c6ead2016-10-19 02:57:22 +02001687static void intel_pstate_set_min_pstate(struct cpudata *cpu)
1688{
1689 intel_pstate_set_pstate(cpu, cpu->pstate.min_pstate);
1690}
1691
1692static void intel_pstate_max_within_limits(struct cpudata *cpu)
1693{
1694 int min_pstate, max_pstate;
1695
1696 update_turbo_state();
1697 intel_pstate_get_min_max(cpu, &min_pstate, &max_pstate);
1698 intel_pstate_set_pstate(cpu, max_pstate);
1699}
1700
Dirk Brandewie93f08222013-02-06 09:02:13 -08001701static void intel_pstate_get_cpu_pstates(struct cpudata *cpu)
1702{
Dirk Brandewie016c8152013-10-21 09:20:34 -07001703 cpu->pstate.min_pstate = pstate_funcs.get_min();
1704 cpu->pstate.max_pstate = pstate_funcs.get_max();
Srinivas Pandruvada3bcc6fa2015-10-14 16:12:00 -07001705 cpu->pstate.max_pstate_physical = pstate_funcs.get_max_physical();
Dirk Brandewie016c8152013-10-21 09:20:34 -07001706 cpu->pstate.turbo_pstate = pstate_funcs.get_turbo();
Dirk Brandewieb27580b2014-10-13 08:37:43 -07001707 cpu->pstate.scaling = pstate_funcs.get_scaling();
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01001708 cpu->pstate.max_freq = cpu->pstate.max_pstate * cpu->pstate.scaling;
1709 cpu->pstate.turbo_freq = cpu->pstate.turbo_pstate * cpu->pstate.scaling;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001710
Dirk Brandewie007bea02013-12-18 10:32:39 -08001711 if (pstate_funcs.get_vid)
1712 pstate_funcs.get_vid(cpu);
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001713
1714 intel_pstate_set_min_pstate(cpu);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001715}
1716
Rafael J. Wysockia1c97872016-05-11 19:09:12 +02001717static inline void intel_pstate_calc_avg_perf(struct cpudata *cpu)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001718{
Stratos Karafotis6b17ddb2014-04-29 20:53:49 +03001719 struct sample *sample = &cpu->sample;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001720
Rafael J. Wysockia1c97872016-05-11 19:09:12 +02001721 sample->core_avg_perf = div_ext_fp(sample->aperf, sample->mperf);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001722}
1723
Rafael J. Wysocki4fec7ad2016-03-10 23:45:19 +01001724static inline bool intel_pstate_sample(struct cpudata *cpu, u64 time)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001725{
Dirk Brandewie93f08222013-02-06 09:02:13 -08001726 u64 aperf, mperf;
Stratos Karafotis4ab60c32014-07-18 08:37:24 -07001727 unsigned long flags;
Doug Smythies4055fad2015-04-11 21:10:26 -07001728 u64 tsc;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001729
Stratos Karafotis4ab60c32014-07-18 08:37:24 -07001730 local_irq_save(flags);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001731 rdmsrl(MSR_IA32_APERF, aperf);
1732 rdmsrl(MSR_IA32_MPERF, mperf);
Philippe Longepee70eed22015-12-04 17:40:32 +01001733 tsc = rdtsc();
Rafael J. Wysocki4fec7ad2016-03-10 23:45:19 +01001734 if (cpu->prev_mperf == mperf || cpu->prev_tsc == tsc) {
Srinivas Pandruvada8e601a92015-10-15 12:34:21 -07001735 local_irq_restore(flags);
Rafael J. Wysocki4fec7ad2016-03-10 23:45:19 +01001736 return false;
Srinivas Pandruvada8e601a92015-10-15 12:34:21 -07001737 }
Stratos Karafotis4ab60c32014-07-18 08:37:24 -07001738 local_irq_restore(flags);
Dirk Brandewieb69880f2014-01-16 10:32:25 -08001739
Dirk Brandewiec4ee8412014-05-29 09:32:24 -07001740 cpu->last_sample_time = cpu->sample.time;
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001741 cpu->sample.time = time;
Dirk Brandewied37e2b72014-02-12 10:01:04 -08001742 cpu->sample.aperf = aperf;
1743 cpu->sample.mperf = mperf;
Doug Smythies4055fad2015-04-11 21:10:26 -07001744 cpu->sample.tsc = tsc;
Dirk Brandewied37e2b72014-02-12 10:01:04 -08001745 cpu->sample.aperf -= cpu->prev_aperf;
1746 cpu->sample.mperf -= cpu->prev_mperf;
Doug Smythies4055fad2015-04-11 21:10:26 -07001747 cpu->sample.tsc -= cpu->prev_tsc;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001748
Dirk Brandewie93f08222013-02-06 09:02:13 -08001749 cpu->prev_aperf = aperf;
1750 cpu->prev_mperf = mperf;
Doug Smythies4055fad2015-04-11 21:10:26 -07001751 cpu->prev_tsc = tsc;
Rafael J. Wysockifebce402016-04-02 01:06:21 +02001752 /*
1753 * First time this function is invoked in a given cycle, all of the
1754 * previous sample data fields are equal to zero or stale and they must
1755 * be populated with meaningful numbers for things to work, so assume
1756 * that sample.time will always be reset before setting the utilization
1757 * update hook and make the caller skip the sample then.
1758 */
1759 return !!cpu->last_sample_time;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001760}
1761
Philippe Longepe8fa520a2016-03-06 08:34:06 +01001762static inline int32_t get_avg_frequency(struct cpudata *cpu)
1763{
Rafael J. Wysockia1c97872016-05-11 19:09:12 +02001764 return mul_ext_fp(cpu->sample.core_avg_perf,
1765 cpu->pstate.max_pstate_physical * cpu->pstate.scaling);
Philippe Longepe8fa520a2016-03-06 08:34:06 +01001766}
1767
Philippe Longepebdcaa232016-04-22 11:46:09 -07001768static inline int32_t get_avg_pstate(struct cpudata *cpu)
1769{
Rafael J. Wysocki8edb0a62016-05-11 19:10:42 +02001770 return mul_ext_fp(cpu->pstate.max_pstate_physical,
1771 cpu->sample.core_avg_perf);
Philippe Longepebdcaa232016-04-22 11:46:09 -07001772}
1773
Philippe Longepee70eed22015-12-04 17:40:32 +01001774static inline int32_t get_target_pstate_use_cpu_load(struct cpudata *cpu)
1775{
1776 struct sample *sample = &cpu->sample;
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +02001777 int32_t busy_frac, boost;
Rafael J. Wysocki0843e832016-10-06 14:07:51 +02001778 int target, avg_pstate;
Philippe Longepee70eed22015-12-04 17:40:32 +01001779
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +02001780 busy_frac = div_fp(sample->mperf, sample->tsc);
Philippe Longepe63d1d652015-12-04 17:40:35 +01001781
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +02001782 boost = cpu->iowait_boost;
1783 cpu->iowait_boost >>= 1;
Philippe Longepe63d1d652015-12-04 17:40:35 +01001784
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +02001785 if (busy_frac < boost)
1786 busy_frac = boost;
Philippe Longepe63d1d652015-12-04 17:40:35 +01001787
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +02001788 sample->busy_scaled = busy_frac * 100;
Rafael J. Wysocki0843e832016-10-06 14:07:51 +02001789
1790 target = limits->no_turbo || limits->turbo_disabled ?
1791 cpu->pstate.max_pstate : cpu->pstate.turbo_pstate;
1792 target += target >> 2;
1793 target = mul_fp(target, busy_frac);
1794 if (target < cpu->pstate.min_pstate)
1795 target = cpu->pstate.min_pstate;
1796
1797 /*
1798 * If the average P-state during the previous cycle was higher than the
1799 * current target, add 50% of the difference to the target to reduce
1800 * possible performance oscillations and offset possible performance
1801 * loss related to moving the workload from one CPU to another within
1802 * a package/module.
1803 */
1804 avg_pstate = get_avg_pstate(cpu);
1805 if (avg_pstate > target)
1806 target += (avg_pstate - target) >> 1;
1807
1808 return target;
Philippe Longepee70eed22015-12-04 17:40:32 +01001809}
1810
Philippe Longepe157386b2015-12-04 17:40:30 +01001811static inline int32_t get_target_pstate_use_performance(struct cpudata *cpu)
Dirk Brandewie93f08222013-02-06 09:02:13 -08001812{
Rafael J. Wysocki1aa7a6e2016-05-11 19:11:26 +02001813 int32_t perf_scaled, max_pstate, current_pstate, sample_ratio;
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001814 u64 duration_ns;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001815
Kristen Carlson Accardie0d4c8f2014-12-10 12:39:38 -08001816 /*
Rafael J. Wysockif00593a2016-09-30 03:13:34 +02001817 * perf_scaled is the ratio of the average P-state during the last
1818 * sampling period to the P-state requested last time (in percent).
1819 *
1820 * That measures the system's response to the previous P-state
1821 * selection.
Kristen Carlson Accardie0d4c8f2014-12-10 12:39:38 -08001822 */
Rafael J. Wysocki22590ef2016-04-09 01:25:58 +02001823 max_pstate = cpu->pstate.max_pstate_physical;
1824 current_pstate = cpu->pstate.current_pstate;
Rafael J. Wysocki1aa7a6e2016-05-11 19:11:26 +02001825 perf_scaled = mul_ext_fp(cpu->sample.core_avg_perf,
Rafael J. Wysockia1c97872016-05-11 19:09:12 +02001826 div_fp(100 * max_pstate, current_pstate));
Dirk Brandewiec4ee8412014-05-29 09:32:24 -07001827
Kristen Carlson Accardie0d4c8f2014-12-10 12:39:38 -08001828 /*
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001829 * Since our utilization update callback will not run unless we are
1830 * in C0, check if the actual elapsed time is significantly greater (3x)
1831 * than our sample interval. If it is, then we were idle for a long
Rafael J. Wysocki1aa7a6e2016-05-11 19:11:26 +02001832 * enough period of time to adjust our performance metric.
Kristen Carlson Accardie0d4c8f2014-12-10 12:39:38 -08001833 */
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001834 duration_ns = cpu->sample.time - cpu->last_sample_time;
Rafael J. Wysockifebce402016-04-02 01:06:21 +02001835 if ((s64)duration_ns > pid_params.sample_rate_ns * 3) {
Rafael J. Wysocki22590ef2016-04-09 01:25:58 +02001836 sample_ratio = div_fp(pid_params.sample_rate_ns, duration_ns);
Rafael J. Wysocki1aa7a6e2016-05-11 19:11:26 +02001837 perf_scaled = mul_fp(perf_scaled, sample_ratio);
Rafael J. Wysockiffb81052016-04-10 05:59:10 +02001838 } else {
1839 sample_ratio = div_fp(100 * cpu->sample.mperf, cpu->sample.tsc);
1840 if (sample_ratio < int_tofp(1))
Rafael J. Wysocki1aa7a6e2016-05-11 19:11:26 +02001841 perf_scaled = 0;
Dirk Brandewiec4ee8412014-05-29 09:32:24 -07001842 }
1843
Rafael J. Wysocki1aa7a6e2016-05-11 19:11:26 +02001844 cpu->sample.busy_scaled = perf_scaled;
1845 return cpu->pstate.current_pstate - pid_calc(&cpu->pid, perf_scaled);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001846}
1847
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01001848static int intel_pstate_prepare_request(struct cpudata *cpu, int pstate)
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001849{
1850 int max_perf, min_perf;
1851
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001852 intel_pstate_get_min_max(cpu, &min_perf, &max_perf);
1853 pstate = clamp_t(int, pstate, min_perf, max_perf);
Rafael J. Wysockibc95a452016-07-19 15:10:37 +02001854 trace_cpu_frequency(pstate * cpu->pstate.scaling, cpu->cpu);
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01001855 return pstate;
1856}
1857
1858static void intel_pstate_update_pstate(struct cpudata *cpu, int pstate)
1859{
1860 pstate = intel_pstate_prepare_request(cpu, pstate);
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001861 if (pstate == cpu->pstate.current_pstate)
1862 return;
1863
Rafael J. Wysockibc95a452016-07-19 15:10:37 +02001864 cpu->pstate.current_pstate = pstate;
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001865 wrmsrl(MSR_IA32_PERF_CTL, pstate_funcs.get_val(cpu, pstate));
1866}
1867
Dirk Brandewie93f08222013-02-06 09:02:13 -08001868static inline void intel_pstate_adjust_busy_pstate(struct cpudata *cpu)
1869{
Philippe Longepe157386b2015-12-04 17:40:30 +01001870 int from, target_pstate;
Doug Smythies4055fad2015-04-11 21:10:26 -07001871 struct sample *sample;
1872
1873 from = cpu->pstate.current_pstate;
Dirk Brandewie93f08222013-02-06 09:02:13 -08001874
Rafael J. Wysocki2f1d4072016-10-24 23:20:25 +02001875 target_pstate = cpu->policy == CPUFREQ_POLICY_PERFORMANCE ?
1876 cpu->pstate.turbo_pstate : pstate_funcs.get_target_pstate(cpu);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001877
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01001878 update_turbo_state();
1879
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01001880 intel_pstate_update_pstate(cpu, target_pstate);
Doug Smythies4055fad2015-04-11 21:10:26 -07001881
1882 sample = &cpu->sample;
Rafael J. Wysockia1c97872016-05-11 19:09:12 +02001883 trace_pstate_sample(mul_ext_fp(100, sample->core_avg_perf),
Philippe Longepe157386b2015-12-04 17:40:30 +01001884 fp_toint(sample->busy_scaled),
Doug Smythies4055fad2015-04-11 21:10:26 -07001885 from,
1886 cpu->pstate.current_pstate,
1887 sample->mperf,
1888 sample->aperf,
1889 sample->tsc,
Srinivas Pandruvada3ba7bca2016-09-13 17:41:33 -07001890 get_avg_frequency(cpu),
1891 fp_toint(cpu->iowait_boost * 100));
Dirk Brandewie93f08222013-02-06 09:02:13 -08001892}
1893
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001894static void intel_pstate_update_util(struct update_util_data *data, u64 time,
Rafael J. Wysocki58919e82016-08-16 22:14:55 +02001895 unsigned int flags)
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08001896{
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001897 struct cpudata *cpu = container_of(data, struct cpudata, update_util);
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +02001898 u64 delta_ns;
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08001899
Rafael J. Wysocki1d298152016-10-19 02:53:26 +02001900 if (pstate_funcs.get_target_pstate == get_target_pstate_use_cpu_load) {
Rafael J. Wysocki09c448d2016-09-14 02:28:13 +02001901 if (flags & SCHED_CPUFREQ_IOWAIT) {
1902 cpu->iowait_boost = int_tofp(1);
1903 } else if (cpu->iowait_boost) {
1904 /* Clear iowait_boost if the CPU may have been idle. */
1905 delta_ns = time - cpu->last_update;
1906 if (delta_ns > TICK_NSEC)
1907 cpu->iowait_boost = 0;
1908 }
1909 cpu->last_update = time;
1910 }
1911
1912 delta_ns = time - cpu->sample.time;
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001913 if ((s64)delta_ns >= pid_params.sample_rate_ns) {
Rafael J. Wysocki4fec7ad2016-03-10 23:45:19 +01001914 bool sample_taken = intel_pstate_sample(cpu, time);
1915
Rafael J. Wysocki6d45b712016-05-04 14:01:10 +02001916 if (sample_taken) {
Rafael J. Wysockia1c97872016-05-11 19:09:12 +02001917 intel_pstate_calc_avg_perf(cpu);
Rafael J. Wysocki6d45b712016-05-04 14:01:10 +02001918 if (!hwp_active)
1919 intel_pstate_adjust_busy_pstate(cpu);
1920 }
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001921 }
Dirk Brandewie93f08222013-02-06 09:02:13 -08001922}
1923
1924#define ICPU(model, policy) \
Dirk Brandewie6cbd7ee2014-01-06 10:59:16 -08001925 { X86_VENDOR_INTEL, 6, model, X86_FEATURE_APERFMPERF,\
1926 (unsigned long)&policy }
Dirk Brandewie93f08222013-02-06 09:02:13 -08001927
1928static const struct x86_cpu_id intel_pstate_cpu_ids[] = {
Dave Hansen5b20c942016-06-02 17:19:45 -07001929 ICPU(INTEL_FAM6_SANDYBRIDGE, core_params),
1930 ICPU(INTEL_FAM6_SANDYBRIDGE_X, core_params),
1931 ICPU(INTEL_FAM6_ATOM_SILVERMONT1, silvermont_params),
1932 ICPU(INTEL_FAM6_IVYBRIDGE, core_params),
1933 ICPU(INTEL_FAM6_HASWELL_CORE, core_params),
1934 ICPU(INTEL_FAM6_BROADWELL_CORE, core_params),
1935 ICPU(INTEL_FAM6_IVYBRIDGE_X, core_params),
1936 ICPU(INTEL_FAM6_HASWELL_X, core_params),
1937 ICPU(INTEL_FAM6_HASWELL_ULT, core_params),
1938 ICPU(INTEL_FAM6_HASWELL_GT3E, core_params),
1939 ICPU(INTEL_FAM6_BROADWELL_GT3E, core_params),
1940 ICPU(INTEL_FAM6_ATOM_AIRMONT, airmont_params),
1941 ICPU(INTEL_FAM6_SKYLAKE_MOBILE, core_params),
1942 ICPU(INTEL_FAM6_BROADWELL_X, core_params),
1943 ICPU(INTEL_FAM6_SKYLAKE_DESKTOP, core_params),
1944 ICPU(INTEL_FAM6_BROADWELL_XEON_D, core_params),
1945 ICPU(INTEL_FAM6_XEON_PHI_KNL, knl_params),
Piotr Luc58bf4542016-10-13 17:31:00 +02001946 ICPU(INTEL_FAM6_XEON_PHI_KNM, knl_params),
Srinivas Pandruvada41bad472016-06-09 15:34:41 -07001947 ICPU(INTEL_FAM6_ATOM_GOLDMONT, bxt_params),
Dirk Brandewie93f08222013-02-06 09:02:13 -08001948 {}
1949};
1950MODULE_DEVICE_TABLE(x86cpu, intel_pstate_cpu_ids);
1951
Jisheng Zhang29327c82016-06-27 18:07:17 +08001952static const struct x86_cpu_id intel_pstate_cpu_oob_ids[] __initconst = {
Dave Hansen5b20c942016-06-02 17:19:45 -07001953 ICPU(INTEL_FAM6_BROADWELL_XEON_D, core_params),
Srinivas Pandruvada65c12622016-07-23 15:12:06 -07001954 ICPU(INTEL_FAM6_BROADWELL_X, core_params),
1955 ICPU(INTEL_FAM6_SKYLAKE_X, core_params),
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08001956 {}
1957};
1958
Dirk Brandewie93f08222013-02-06 09:02:13 -08001959static int intel_pstate_init_cpu(unsigned int cpunum)
1960{
Dirk Brandewie93f08222013-02-06 09:02:13 -08001961 struct cpudata *cpu;
1962
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07001963 cpu = all_cpu_data[cpunum];
1964
1965 if (!cpu) {
1966 unsigned int size = sizeof(struct cpudata);
1967
1968 if (per_cpu_limits)
1969 size += sizeof(struct perf_limits);
1970
1971 cpu = kzalloc(size, GFP_KERNEL);
1972 if (!cpu)
1973 return -ENOMEM;
1974
1975 all_cpu_data[cpunum] = cpu;
1976 if (per_cpu_limits)
1977 cpu->perf_limits = (struct perf_limits *)(cpu + 1);
1978
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -08001979 cpu->epp_default = -EINVAL;
1980 cpu->epp_powersave = -EINVAL;
1981 cpu->epp_saved = -EINVAL;
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07001982 }
Dirk Brandewie93f08222013-02-06 09:02:13 -08001983
1984 cpu = all_cpu_data[cpunum];
1985
Dirk Brandewie93f08222013-02-06 09:02:13 -08001986 cpu->cpu = cpunum;
Kristen Carlson Accardiba88d432015-07-14 09:46:23 -07001987
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001988 if (hwp_active) {
Kristen Carlson Accardiba88d432015-07-14 09:46:23 -07001989 intel_pstate_hwp_enable(cpu);
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01001990 pid_params.sample_rate_ms = 50;
1991 pid_params.sample_rate_ns = 50 * NSEC_PER_MSEC;
1992 }
Kristen Carlson Accardiba88d432015-07-14 09:46:23 -07001993
Vincent Minet179e8472014-07-05 01:51:33 +02001994 intel_pstate_get_cpu_pstates(cpu);
Dirk Brandewie016c8152013-10-21 09:20:34 -07001995
Dirk Brandewie93f08222013-02-06 09:02:13 -08001996 intel_pstate_busy_pid_reset(cpu);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001997
Joe Perches4836df12016-04-05 13:28:23 -07001998 pr_debug("controlling: cpu %d\n", cpunum);
Dirk Brandewie93f08222013-02-06 09:02:13 -08001999
2000 return 0;
2001}
2002
2003static unsigned int intel_pstate_get(unsigned int cpu_num)
2004{
Rafael J. Wysockif96fd0c2016-05-07 02:24:48 +02002005 struct cpudata *cpu = all_cpu_data[cpu_num];
Dirk Brandewie93f08222013-02-06 09:02:13 -08002006
Rafael J. Wysockif96fd0c2016-05-07 02:24:48 +02002007 return cpu ? get_avg_frequency(cpu) : 0;
Dirk Brandewie93f08222013-02-06 09:02:13 -08002008}
2009
Rafael J. Wysockifebce402016-04-02 01:06:21 +02002010static void intel_pstate_set_update_util_hook(unsigned int cpu_num)
Rafael J. Wysockibb6ab522016-03-31 17:42:15 +02002011{
Rafael J. Wysockifebce402016-04-02 01:06:21 +02002012 struct cpudata *cpu = all_cpu_data[cpu_num];
2013
Rafael J. Wysocki5ab666e2016-06-27 23:47:15 +02002014 if (cpu->update_util_set)
2015 return;
2016
Rafael J. Wysockifebce402016-04-02 01:06:21 +02002017 /* Prevent intel_pstate_update_util() from using stale data. */
2018 cpu->sample.time = 0;
Rafael J. Wysocki0bed6122016-04-02 01:08:43 +02002019 cpufreq_add_update_util_hook(cpu_num, &cpu->update_util,
2020 intel_pstate_update_util);
Chen Yu4578ee7e2016-05-11 14:33:08 +08002021 cpu->update_util_set = true;
Rafael J. Wysockibb6ab522016-03-31 17:42:15 +02002022}
2023
2024static void intel_pstate_clear_update_util_hook(unsigned int cpu)
2025{
Chen Yu4578ee7e2016-05-11 14:33:08 +08002026 struct cpudata *cpu_data = all_cpu_data[cpu];
2027
2028 if (!cpu_data->update_util_set)
2029 return;
2030
Rafael J. Wysocki0bed6122016-04-02 01:08:43 +02002031 cpufreq_remove_update_util_hook(cpu);
Chen Yu4578ee7e2016-05-11 14:33:08 +08002032 cpu_data->update_util_set = false;
Rafael J. Wysockibb6ab522016-03-31 17:42:15 +02002033 synchronize_sched();
2034}
2035
Srinivas Pandruvada30a39152016-04-03 19:42:11 -07002036static void intel_pstate_set_performance_limits(struct perf_limits *limits)
2037{
2038 limits->no_turbo = 0;
2039 limits->turbo_disabled = 0;
2040 limits->max_perf_pct = 100;
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -08002041 limits->max_perf = int_ext_tofp(1);
Srinivas Pandruvada30a39152016-04-03 19:42:11 -07002042 limits->min_perf_pct = 100;
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -08002043 limits->min_perf = int_ext_tofp(1);
Srinivas Pandruvada30a39152016-04-03 19:42:11 -07002044 limits->max_policy_pct = 100;
2045 limits->max_sysfs_pct = 100;
2046 limits->min_policy_pct = 0;
2047 limits->min_sysfs_pct = 0;
2048}
2049
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002050static void intel_pstate_update_perf_limits(struct cpufreq_policy *policy,
2051 struct perf_limits *limits)
Dirk Brandewie93f08222013-02-06 09:02:13 -08002052{
Srinivas Pandruvadaa410c032016-10-28 10:44:52 -07002053
Prarit Bhargava8478f532015-11-20 18:47:56 -05002054 limits->max_policy_pct = DIV_ROUND_UP(policy->max * 100,
2055 policy->cpuinfo.max_freq);
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002056 limits->max_policy_pct = clamp_t(int, limits->max_policy_pct, 0, 100);
Srinivas Pandruvada5879f872016-10-25 13:20:41 -07002057 if (policy->max == policy->min) {
2058 limits->min_policy_pct = limits->max_policy_pct;
2059 } else {
Srinivas Pandruvada46992d62016-11-21 16:33:19 -08002060 limits->min_policy_pct = DIV_ROUND_UP(policy->min * 100,
2061 policy->cpuinfo.max_freq);
Srinivas Pandruvada5879f872016-10-25 13:20:41 -07002062 limits->min_policy_pct = clamp_t(int, limits->min_policy_pct,
2063 0, 100);
2064 }
Chen Yu43717aa2015-09-09 18:27:31 +08002065
2066 /* Normalize user input to [min_policy_pct, max_policy_pct] */
Prarit Bhargava51443fb2015-10-15 07:34:15 -04002067 limits->min_perf_pct = max(limits->min_policy_pct,
2068 limits->min_sysfs_pct);
2069 limits->min_perf_pct = min(limits->max_policy_pct,
2070 limits->min_perf_pct);
2071 limits->max_perf_pct = min(limits->max_policy_pct,
2072 limits->max_sysfs_pct);
2073 limits->max_perf_pct = max(limits->min_policy_pct,
2074 limits->max_perf_pct);
Chen Yu43717aa2015-09-09 18:27:31 +08002075
2076 /* Make sure min_perf_pct <= max_perf_pct */
Prarit Bhargava51443fb2015-10-15 07:34:15 -04002077 limits->min_perf_pct = min(limits->max_perf_pct, limits->min_perf_pct);
Chen Yu43717aa2015-09-09 18:27:31 +08002078
Srinivas Pandruvadad5dd33d2016-11-21 16:33:20 -08002079 limits->min_perf = div_ext_fp(limits->min_perf_pct, 100);
2080 limits->max_perf = div_ext_fp(limits->max_perf_pct, 100);
2081 limits->max_perf = round_up(limits->max_perf, EXT_FRAC_BITS);
2082 limits->min_perf = round_up(limits->min_perf, EXT_FRAC_BITS);
Dirk Brandewie93f08222013-02-06 09:02:13 -08002083
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002084 pr_debug("cpu:%d max_perf_pct:%d min_perf_pct:%d\n", policy->cpu,
2085 limits->max_perf_pct, limits->min_perf_pct);
2086}
2087
Dirk Brandewie93f08222013-02-06 09:02:13 -08002088static int intel_pstate_set_policy(struct cpufreq_policy *policy)
2089{
2090 struct cpudata *cpu;
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002091 struct perf_limits *perf_limits = NULL;
Dirk Brandewie93f08222013-02-06 09:02:13 -08002092
2093 if (!policy->cpuinfo.max_freq)
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08002094 return -ENODEV;
2095
2096 pr_debug("set_policy cpuinfo.max %u policy->max %u\n",
Dirk Brandewie93f08222013-02-06 09:02:13 -08002097 policy->cpuinfo.max_freq, policy->max);
2098
2099 cpu = all_cpu_data[policy->cpu];
2100 cpu->policy = policy->policy;
2101
Viresh Kumarbe49e342013-10-02 14:13:19 +05302102 if (cpu->pstate.max_pstate_physical > cpu->pstate.max_pstate &&
Dirk Brandewie93f08222013-02-06 09:02:13 -08002103 policy->max < policy->cpuinfo.max_freq &&
Stratos Karafotis285cb992014-07-18 08:37:21 -07002104 policy->max > cpu->pstate.max_pstate * cpu->pstate.scaling) {
Stratos Karafotisc4108332014-07-18 08:37:23 -07002105 pr_debug("policy->max > max non turbo frequency\n");
Dirk Brandewie93f08222013-02-06 09:02:13 -08002106 policy->max = policy->cpuinfo.max_freq;
2107 }
2108
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002109 if (per_cpu_limits)
2110 perf_limits = cpu->perf_limits;
2111
Srinivas Pandruvadab59fe542016-12-06 13:32:15 -08002112 mutex_lock(&intel_pstate_limits_lock);
2113
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002114 if (policy->policy == CPUFREQ_POLICY_PERFORMANCE) {
2115 if (!perf_limits) {
2116 limits = &performance_limits;
2117 perf_limits = limits;
2118 }
Srinivas Pandruvada1443ebb2017-01-18 10:48:22 -08002119 if (policy->max >= policy->cpuinfo.max_freq &&
2120 !limits->no_turbo) {
Dirk Brandewie93f08222013-02-06 09:02:13 -08002121 pr_debug("set performance\n");
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002122 intel_pstate_set_performance_limits(perf_limits);
Dirk Brandewie93f08222013-02-06 09:02:13 -08002123 goto out;
2124 }
2125 } else {
2126 pr_debug("set powersave\n");
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002127 if (!perf_limits) {
2128 limits = &powersave_limits;
2129 perf_limits = limits;
2130 }
2131
Dirk Brandewie93f08222013-02-06 09:02:13 -08002132 }
2133
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002134 intel_pstate_update_perf_limits(policy, perf_limits);
Rafael J. Wysockibb6ab522016-03-31 17:42:15 +02002135 out:
Rafael J. Wysocki2f1d4072016-10-24 23:20:25 +02002136 if (cpu->policy == CPUFREQ_POLICY_PERFORMANCE) {
Rafael J. Wysockia6c6ead2016-10-19 02:57:22 +02002137 /*
2138 * NOHZ_FULL CPUs need this as the governor callback may not
2139 * be invoked on them.
2140 */
2141 intel_pstate_clear_update_util_hook(policy->cpu);
2142 intel_pstate_max_within_limits(cpu);
2143 }
2144
Rafael J. Wysockibb6ab522016-03-31 17:42:15 +02002145 intel_pstate_set_update_util_hook(policy->cpu);
2146
Rafael J. Wysockiba41e1b2016-05-02 02:27:19 +02002147 intel_pstate_hwp_set_policy(policy);
Dirk Brandewie93f08222013-02-06 09:02:13 -08002148
Srinivas Pandruvadab59fe542016-12-06 13:32:15 -08002149 mutex_unlock(&intel_pstate_limits_lock);
2150
Dirk Brandewie93f08222013-02-06 09:02:13 -08002151 return 0;
2152}
2153
2154static int intel_pstate_verify_policy(struct cpufreq_policy *policy)
2155{
Srinivas Pandruvada7d9a8a92017-01-18 10:48:23 -08002156 struct cpudata *cpu = all_cpu_data[policy->cpu];
2157 struct perf_limits *perf_limits;
2158
2159 if (policy->policy == CPUFREQ_POLICY_PERFORMANCE)
2160 perf_limits = &performance_limits;
2161 else
2162 perf_limits = &powersave_limits;
2163
2164 update_turbo_state();
2165 policy->cpuinfo.max_freq = perf_limits->turbo_disabled ||
2166 perf_limits->no_turbo ?
2167 cpu->pstate.max_freq :
2168 cpu->pstate.turbo_freq;
2169
Dirk Brandewie93f08222013-02-06 09:02:13 -08002170 cpufreq_verify_within_cpu_limits(policy);
2171
2172 if (policy->policy != CPUFREQ_POLICY_POWERSAVE &&
2173 policy->policy != CPUFREQ_POLICY_PERFORMANCE)
2174 return -EINVAL;
2175
Srinivas Pandruvada1443ebb2017-01-18 10:48:22 -08002176 /* When per-CPU limits are used, sysfs limits are not used */
2177 if (!per_cpu_limits) {
2178 unsigned int max_freq, min_freq;
2179
2180 max_freq = policy->cpuinfo.max_freq *
2181 limits->max_sysfs_pct / 100;
2182 min_freq = policy->cpuinfo.max_freq *
2183 limits->min_sysfs_pct / 100;
2184 cpufreq_verify_within_limits(policy, min_freq, max_freq);
2185 }
2186
Dirk Brandewie93f08222013-02-06 09:02:13 -08002187 return 0;
2188}
2189
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002190static void intel_cpufreq_stop_cpu(struct cpufreq_policy *policy)
Dirk Brandewie93f08222013-02-06 09:02:13 -08002191{
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002192 intel_pstate_set_min_pstate(all_cpu_data[policy->cpu]);
Dirk Brandewie93f08222013-02-06 09:02:13 -08002193}
2194
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002195static void intel_pstate_stop_cpu(struct cpufreq_policy *policy)
2196{
2197 pr_debug("CPU %d exiting\n", policy->cpu);
2198
2199 intel_pstate_clear_update_util_hook(policy->cpu);
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -08002200 if (hwp_active)
2201 intel_pstate_hwp_save_state(policy);
2202 else
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002203 intel_cpufreq_stop_cpu(policy);
2204}
2205
2206static int intel_pstate_cpu_exit(struct cpufreq_policy *policy)
2207{
2208 intel_pstate_exit_perf_limits(policy);
2209
2210 policy->fast_switch_possible = false;
2211
2212 return 0;
2213}
2214
2215static int __intel_pstate_cpu_init(struct cpufreq_policy *policy)
Dirk Brandewie93f08222013-02-06 09:02:13 -08002216{
Dirk Brandewie93f08222013-02-06 09:02:13 -08002217 struct cpudata *cpu;
Dirk Brandewie52e0a502013-10-15 11:06:14 -07002218 int rc;
Dirk Brandewie93f08222013-02-06 09:02:13 -08002219
2220 rc = intel_pstate_init_cpu(policy->cpu);
2221 if (rc)
2222 return rc;
2223
2224 cpu = all_cpu_data[policy->cpu];
2225
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002226 /*
2227 * We need sane value in the cpu->perf_limits, so inherit from global
2228 * perf_limits limits, which are seeded with values based on the
2229 * CONFIG_CPU_FREQ_DEFAULT_GOV_*, during boot up.
2230 */
2231 if (per_cpu_limits)
2232 memcpy(cpu->perf_limits, limits, sizeof(struct perf_limits));
Dirk Brandewie93f08222013-02-06 09:02:13 -08002233
Dirk Brandewieb27580b2014-10-13 08:37:43 -07002234 policy->min = cpu->pstate.min_pstate * cpu->pstate.scaling;
2235 policy->max = cpu->pstate.turbo_pstate * cpu->pstate.scaling;
Dirk Brandewie93f08222013-02-06 09:02:13 -08002236
2237 /* cpuinfo and default policy values */
Dirk Brandewieb27580b2014-10-13 08:37:43 -07002238 policy->cpuinfo.min_freq = cpu->pstate.min_pstate * cpu->pstate.scaling;
Srinivas Pandruvada983e6002016-06-07 17:38:53 -07002239 update_turbo_state();
2240 policy->cpuinfo.max_freq = limits->turbo_disabled ?
2241 cpu->pstate.max_pstate : cpu->pstate.turbo_pstate;
2242 policy->cpuinfo.max_freq *= cpu->pstate.scaling;
2243
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -07002244 intel_pstate_init_acpi_perf_limits(policy);
Dirk Brandewie93f08222013-02-06 09:02:13 -08002245 cpumask_set_cpu(policy->cpu, policy->cpus);
2246
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002247 policy->fast_switch_possible = true;
2248
Dirk Brandewie93f08222013-02-06 09:02:13 -08002249 return 0;
2250}
2251
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002252static int intel_pstate_cpu_init(struct cpufreq_policy *policy)
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -07002253{
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002254 int ret = __intel_pstate_cpu_init(policy);
2255
2256 if (ret)
2257 return ret;
2258
2259 policy->cpuinfo.transition_latency = CPUFREQ_ETERNAL;
2260 if (limits->min_perf_pct == 100 && limits->max_perf_pct == 100)
2261 policy->policy = CPUFREQ_POLICY_PERFORMANCE;
2262 else
2263 policy->policy = CPUFREQ_POLICY_POWERSAVE;
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -07002264
2265 return 0;
2266}
2267
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002268static struct cpufreq_driver intel_pstate = {
Dirk Brandewie93f08222013-02-06 09:02:13 -08002269 .flags = CPUFREQ_CONST_LOOPS,
2270 .verify = intel_pstate_verify_policy,
2271 .setpolicy = intel_pstate_set_policy,
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -08002272 .suspend = intel_pstate_hwp_save_state,
Srinivas Pandruvada84428852016-11-24 16:07:10 -08002273 .resume = intel_pstate_resume,
Dirk Brandewie93f08222013-02-06 09:02:13 -08002274 .get = intel_pstate_get,
2275 .init = intel_pstate_cpu_init,
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -07002276 .exit = intel_pstate_cpu_exit,
Dirk Brandewiebb180082014-03-19 08:45:54 -07002277 .stop_cpu = intel_pstate_stop_cpu,
Dirk Brandewie93f08222013-02-06 09:02:13 -08002278 .name = "intel_pstate",
Dirk Brandewie93f08222013-02-06 09:02:13 -08002279};
2280
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002281static int intel_cpufreq_verify_policy(struct cpufreq_policy *policy)
2282{
2283 struct cpudata *cpu = all_cpu_data[policy->cpu];
2284 struct perf_limits *perf_limits = limits;
2285
2286 update_turbo_state();
2287 policy->cpuinfo.max_freq = limits->turbo_disabled ?
2288 cpu->pstate.max_freq : cpu->pstate.turbo_freq;
2289
2290 cpufreq_verify_within_cpu_limits(policy);
2291
2292 if (per_cpu_limits)
2293 perf_limits = cpu->perf_limits;
2294
Rafael J. Wysockicad30462016-12-30 15:57:11 +01002295 mutex_lock(&intel_pstate_limits_lock);
2296
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002297 intel_pstate_update_perf_limits(policy, perf_limits);
2298
Rafael J. Wysockicad30462016-12-30 15:57:11 +01002299 mutex_unlock(&intel_pstate_limits_lock);
2300
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002301 return 0;
2302}
2303
2304static unsigned int intel_cpufreq_turbo_update(struct cpudata *cpu,
2305 struct cpufreq_policy *policy,
2306 unsigned int target_freq)
2307{
2308 unsigned int max_freq;
2309
2310 update_turbo_state();
2311
2312 max_freq = limits->no_turbo || limits->turbo_disabled ?
2313 cpu->pstate.max_freq : cpu->pstate.turbo_freq;
2314 policy->cpuinfo.max_freq = max_freq;
2315 if (policy->max > max_freq)
2316 policy->max = max_freq;
2317
2318 if (target_freq > max_freq)
2319 target_freq = max_freq;
2320
2321 return target_freq;
2322}
2323
2324static int intel_cpufreq_target(struct cpufreq_policy *policy,
2325 unsigned int target_freq,
2326 unsigned int relation)
2327{
2328 struct cpudata *cpu = all_cpu_data[policy->cpu];
2329 struct cpufreq_freqs freqs;
2330 int target_pstate;
2331
2332 freqs.old = policy->cur;
2333 freqs.new = intel_cpufreq_turbo_update(cpu, policy, target_freq);
2334
2335 cpufreq_freq_transition_begin(policy, &freqs);
2336 switch (relation) {
2337 case CPUFREQ_RELATION_L:
2338 target_pstate = DIV_ROUND_UP(freqs.new, cpu->pstate.scaling);
2339 break;
2340 case CPUFREQ_RELATION_H:
2341 target_pstate = freqs.new / cpu->pstate.scaling;
2342 break;
2343 default:
2344 target_pstate = DIV_ROUND_CLOSEST(freqs.new, cpu->pstate.scaling);
2345 break;
2346 }
2347 target_pstate = intel_pstate_prepare_request(cpu, target_pstate);
2348 if (target_pstate != cpu->pstate.current_pstate) {
2349 cpu->pstate.current_pstate = target_pstate;
2350 wrmsrl_on_cpu(policy->cpu, MSR_IA32_PERF_CTL,
2351 pstate_funcs.get_val(cpu, target_pstate));
2352 }
2353 cpufreq_freq_transition_end(policy, &freqs, false);
2354
2355 return 0;
2356}
2357
2358static unsigned int intel_cpufreq_fast_switch(struct cpufreq_policy *policy,
2359 unsigned int target_freq)
2360{
2361 struct cpudata *cpu = all_cpu_data[policy->cpu];
2362 int target_pstate;
2363
2364 target_freq = intel_cpufreq_turbo_update(cpu, policy, target_freq);
2365 target_pstate = DIV_ROUND_UP(target_freq, cpu->pstate.scaling);
2366 intel_pstate_update_pstate(cpu, target_pstate);
2367 return target_freq;
2368}
2369
2370static int intel_cpufreq_cpu_init(struct cpufreq_policy *policy)
2371{
2372 int ret = __intel_pstate_cpu_init(policy);
2373
2374 if (ret)
2375 return ret;
2376
2377 policy->cpuinfo.transition_latency = INTEL_CPUFREQ_TRANSITION_LATENCY;
2378 /* This reflects the intel_pstate_get_cpu_pstates() setting. */
2379 policy->cur = policy->cpuinfo.min_freq;
2380
2381 return 0;
2382}
2383
2384static struct cpufreq_driver intel_cpufreq = {
2385 .flags = CPUFREQ_CONST_LOOPS,
2386 .verify = intel_cpufreq_verify_policy,
2387 .target = intel_cpufreq_target,
2388 .fast_switch = intel_cpufreq_fast_switch,
2389 .init = intel_cpufreq_cpu_init,
2390 .exit = intel_pstate_cpu_exit,
2391 .stop_cpu = intel_cpufreq_stop_cpu,
2392 .name = "intel_cpufreq",
2393};
2394
2395static struct cpufreq_driver *intel_pstate_driver = &intel_pstate;
2396
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01002397static void intel_pstate_driver_cleanup(void)
2398{
2399 unsigned int cpu;
2400
2401 get_online_cpus();
2402 for_each_online_cpu(cpu) {
2403 if (all_cpu_data[cpu]) {
2404 if (intel_pstate_driver == &intel_pstate)
2405 intel_pstate_clear_update_util_hook(cpu);
2406
2407 kfree(all_cpu_data[cpu]);
2408 all_cpu_data[cpu] = NULL;
2409 }
2410 }
2411 put_online_cpus();
2412}
2413
2414static int intel_pstate_register_driver(void)
2415{
2416 int ret;
2417
2418 ret = cpufreq_register_driver(intel_pstate_driver);
2419 if (ret) {
2420 intel_pstate_driver_cleanup();
2421 return ret;
2422 }
2423
2424 mutex_lock(&intel_pstate_limits_lock);
2425 driver_registered = true;
2426 mutex_unlock(&intel_pstate_limits_lock);
2427
2428 if (intel_pstate_driver == &intel_pstate && !hwp_active &&
2429 pstate_funcs.get_target_pstate != get_target_pstate_use_cpu_load)
2430 intel_pstate_debug_expose_params();
2431
2432 return 0;
2433}
2434
2435static int intel_pstate_unregister_driver(void)
2436{
2437 if (hwp_active)
2438 return -EBUSY;
2439
2440 if (intel_pstate_driver == &intel_pstate && !hwp_active &&
2441 pstate_funcs.get_target_pstate != get_target_pstate_use_cpu_load)
2442 intel_pstate_debug_hide_params();
2443
2444 mutex_lock(&intel_pstate_limits_lock);
2445 driver_registered = false;
2446 mutex_unlock(&intel_pstate_limits_lock);
2447
2448 cpufreq_unregister_driver(intel_pstate_driver);
2449 intel_pstate_driver_cleanup();
2450
2451 return 0;
2452}
2453
2454static ssize_t intel_pstate_show_status(char *buf)
2455{
2456 if (!driver_registered)
2457 return sprintf(buf, "off\n");
2458
2459 return sprintf(buf, "%s\n", intel_pstate_driver == &intel_pstate ?
2460 "active" : "passive");
2461}
2462
2463static int intel_pstate_update_status(const char *buf, size_t size)
2464{
2465 int ret;
2466
2467 if (size == 3 && !strncmp(buf, "off", size))
2468 return driver_registered ?
2469 intel_pstate_unregister_driver() : -EINVAL;
2470
2471 if (size == 6 && !strncmp(buf, "active", size)) {
2472 if (driver_registered) {
2473 if (intel_pstate_driver == &intel_pstate)
2474 return 0;
2475
2476 ret = intel_pstate_unregister_driver();
2477 if (ret)
2478 return ret;
2479 }
2480
2481 intel_pstate_driver = &intel_pstate;
2482 return intel_pstate_register_driver();
2483 }
2484
2485 if (size == 7 && !strncmp(buf, "passive", size)) {
2486 if (driver_registered) {
2487 if (intel_pstate_driver != &intel_pstate)
2488 return 0;
2489
2490 ret = intel_pstate_unregister_driver();
2491 if (ret)
2492 return ret;
2493 }
2494
2495 intel_pstate_driver = &intel_cpufreq;
2496 return intel_pstate_register_driver();
2497 }
2498
2499 return -EINVAL;
2500}
2501
Jisheng Zhangeed43602016-06-27 18:07:16 +08002502static int no_load __initdata;
2503static int no_hwp __initdata;
2504static int hwp_only __initdata;
Jisheng Zhang29327c82016-06-27 18:07:17 +08002505static unsigned int force_load __initdata;
Dirk Brandewie6be26492013-02-15 22:55:10 +01002506
Jisheng Zhang29327c82016-06-27 18:07:17 +08002507static int __init intel_pstate_msrs_not_valid(void)
Dirk Brandewieb563b4e2013-03-22 01:29:28 +01002508{
Dirk Brandewie016c8152013-10-21 09:20:34 -07002509 if (!pstate_funcs.get_max() ||
Stratos Karafotisc4108332014-07-18 08:37:23 -07002510 !pstate_funcs.get_min() ||
2511 !pstate_funcs.get_turbo())
Dirk Brandewieb563b4e2013-03-22 01:29:28 +01002512 return -ENODEV;
2513
Dirk Brandewieb563b4e2013-03-22 01:29:28 +01002514 return 0;
2515}
Dirk Brandewie016c8152013-10-21 09:20:34 -07002516
Jisheng Zhang29327c82016-06-27 18:07:17 +08002517static void __init copy_pid_params(struct pstate_adjust_policy *policy)
Dirk Brandewie016c8152013-10-21 09:20:34 -07002518{
2519 pid_params.sample_rate_ms = policy->sample_rate_ms;
Rafael J. Wysockia4675fb2016-02-05 01:45:30 +01002520 pid_params.sample_rate_ns = pid_params.sample_rate_ms * NSEC_PER_MSEC;
Dirk Brandewie016c8152013-10-21 09:20:34 -07002521 pid_params.p_gain_pct = policy->p_gain_pct;
2522 pid_params.i_gain_pct = policy->i_gain_pct;
2523 pid_params.d_gain_pct = policy->d_gain_pct;
2524 pid_params.deadband = policy->deadband;
2525 pid_params.setpoint = policy->setpoint;
2526}
2527
Srinivas Pandruvada7f7a5162016-11-14 10:31:11 -08002528#ifdef CONFIG_ACPI
2529static void intel_pstate_use_acpi_profile(void)
2530{
2531 if (acpi_gbl_FADT.preferred_profile == PM_MOBILE)
2532 pstate_funcs.get_target_pstate =
2533 get_target_pstate_use_cpu_load;
2534}
2535#else
2536static void intel_pstate_use_acpi_profile(void)
2537{
2538}
2539#endif
2540
Jisheng Zhang29327c82016-06-27 18:07:17 +08002541static void __init copy_cpu_funcs(struct pstate_funcs *funcs)
Dirk Brandewie016c8152013-10-21 09:20:34 -07002542{
2543 pstate_funcs.get_max = funcs->get_max;
Srinivas Pandruvada3bcc6fa2015-10-14 16:12:00 -07002544 pstate_funcs.get_max_physical = funcs->get_max_physical;
Dirk Brandewie016c8152013-10-21 09:20:34 -07002545 pstate_funcs.get_min = funcs->get_min;
2546 pstate_funcs.get_turbo = funcs->get_turbo;
Dirk Brandewieb27580b2014-10-13 08:37:43 -07002547 pstate_funcs.get_scaling = funcs->get_scaling;
Rafael J. Wysockifdfdb2b2016-03-18 23:20:02 +01002548 pstate_funcs.get_val = funcs->get_val;
Dirk Brandewie007bea02013-12-18 10:32:39 -08002549 pstate_funcs.get_vid = funcs->get_vid;
Philippe Longepe157386b2015-12-04 17:40:30 +01002550 pstate_funcs.get_target_pstate = funcs->get_target_pstate;
2551
Srinivas Pandruvada7f7a5162016-11-14 10:31:11 -08002552 intel_pstate_use_acpi_profile();
Dirk Brandewie016c8152013-10-21 09:20:34 -07002553}
2554
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -07002555#ifdef CONFIG_ACPI
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002556
Jisheng Zhang29327c82016-06-27 18:07:17 +08002557static bool __init intel_pstate_no_acpi_pss(void)
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002558{
2559 int i;
2560
2561 for_each_possible_cpu(i) {
2562 acpi_status status;
2563 union acpi_object *pss;
2564 struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
2565 struct acpi_processor *pr = per_cpu(processors, i);
2566
2567 if (!pr)
2568 continue;
2569
2570 status = acpi_evaluate_object(pr->handle, "_PSS", NULL, &buffer);
2571 if (ACPI_FAILURE(status))
2572 continue;
2573
2574 pss = buffer.pointer;
2575 if (pss && pss->type == ACPI_TYPE_PACKAGE) {
2576 kfree(pss);
2577 return false;
2578 }
2579
2580 kfree(pss);
2581 }
2582
2583 return true;
2584}
2585
Jisheng Zhang29327c82016-06-27 18:07:17 +08002586static bool __init intel_pstate_has_acpi_ppc(void)
ethan zhao966916e2014-12-01 11:32:08 +09002587{
2588 int i;
2589
2590 for_each_possible_cpu(i) {
2591 struct acpi_processor *pr = per_cpu(processors, i);
2592
2593 if (!pr)
2594 continue;
2595 if (acpi_has_method(pr->handle, "_PPC"))
2596 return true;
2597 }
2598 return false;
2599}
2600
2601enum {
2602 PSS,
2603 PPC,
2604};
2605
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002606struct hw_vendor_info {
2607 u16 valid;
2608 char oem_id[ACPI_OEM_ID_SIZE];
2609 char oem_table_id[ACPI_OEM_TABLE_ID_SIZE];
ethan zhao966916e2014-12-01 11:32:08 +09002610 int oem_pwr_table;
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002611};
2612
2613/* Hardware vendor-specific info that has its own power management modes */
Jisheng Zhang29327c82016-06-27 18:07:17 +08002614static struct hw_vendor_info vendor_info[] __initdata = {
ethan zhao966916e2014-12-01 11:32:08 +09002615 {1, "HP ", "ProLiant", PSS},
2616 {1, "ORACLE", "X4-2 ", PPC},
2617 {1, "ORACLE", "X4-2L ", PPC},
2618 {1, "ORACLE", "X4-2B ", PPC},
2619 {1, "ORACLE", "X3-2 ", PPC},
2620 {1, "ORACLE", "X3-2L ", PPC},
2621 {1, "ORACLE", "X3-2B ", PPC},
2622 {1, "ORACLE", "X4470M2 ", PPC},
2623 {1, "ORACLE", "X4270M3 ", PPC},
2624 {1, "ORACLE", "X4270M2 ", PPC},
2625 {1, "ORACLE", "X4170M2 ", PPC},
Ethan Zhao5aecc3c2015-08-05 09:28:50 +09002626 {1, "ORACLE", "X4170 M3", PPC},
2627 {1, "ORACLE", "X4275 M3", PPC},
2628 {1, "ORACLE", "X6-2 ", PPC},
2629 {1, "ORACLE", "Sudbury ", PPC},
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002630 {0, "", ""},
2631};
2632
Jisheng Zhang29327c82016-06-27 18:07:17 +08002633static bool __init intel_pstate_platform_pwr_mgmt_exists(void)
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002634{
2635 struct acpi_table_header hdr;
2636 struct hw_vendor_info *v_info;
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08002637 const struct x86_cpu_id *id;
2638 u64 misc_pwr;
2639
2640 id = x86_match_cpu(intel_pstate_cpu_oob_ids);
2641 if (id) {
2642 rdmsrl(MSR_MISC_PWR_MGMT, misc_pwr);
2643 if ( misc_pwr & (1 << 8))
2644 return true;
2645 }
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002646
Stratos Karafotisc4108332014-07-18 08:37:23 -07002647 if (acpi_disabled ||
2648 ACPI_FAILURE(acpi_get_table_header(ACPI_SIG_FADT, 0, &hdr)))
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002649 return false;
2650
2651 for (v_info = vendor_info; v_info->valid; v_info++) {
Stratos Karafotisc4108332014-07-18 08:37:23 -07002652 if (!strncmp(hdr.oem_id, v_info->oem_id, ACPI_OEM_ID_SIZE) &&
ethan zhao966916e2014-12-01 11:32:08 +09002653 !strncmp(hdr.oem_table_id, v_info->oem_table_id,
2654 ACPI_OEM_TABLE_ID_SIZE))
2655 switch (v_info->oem_pwr_table) {
2656 case PSS:
2657 return intel_pstate_no_acpi_pss();
2658 case PPC:
Ethan Zhaoaa4ea342014-12-09 10:43:19 +09002659 return intel_pstate_has_acpi_ppc() &&
2660 (!force_load);
ethan zhao966916e2014-12-01 11:32:08 +09002661 }
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002662 }
2663
2664 return false;
2665}
Rafael J. Wysockid0ea59e2016-11-17 22:47:47 +01002666
2667static void intel_pstate_request_control_from_smm(void)
2668{
2669 /*
2670 * It may be unsafe to request P-states control from SMM if _PPC support
2671 * has not been enabled.
2672 */
2673 if (acpi_ppc)
2674 acpi_processor_pstate_control();
2675}
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002676#else /* CONFIG_ACPI not enabled */
2677static inline bool intel_pstate_platform_pwr_mgmt_exists(void) { return false; }
ethan zhao966916e2014-12-01 11:32:08 +09002678static inline bool intel_pstate_has_acpi_ppc(void) { return false; }
Rafael J. Wysockid0ea59e2016-11-17 22:47:47 +01002679static inline void intel_pstate_request_control_from_smm(void) {}
Adrian Huangfbbcdc02013-10-31 23:24:05 +08002680#endif /* CONFIG_ACPI */
2681
Srinivas Pandruvada7791e4a2016-02-25 15:09:19 -08002682static const struct x86_cpu_id hwp_support_ids[] __initconst = {
2683 { X86_VENDOR_INTEL, 6, X86_MODEL_ANY, X86_FEATURE_HWP },
2684 {}
2685};
2686
Dirk Brandewie93f08222013-02-06 09:02:13 -08002687static int __init intel_pstate_init(void)
2688{
Dirk Brandewie93f08222013-02-06 09:02:13 -08002689 const struct x86_cpu_id *id;
Borislav Petkov64df1fd2015-04-03 15:19:53 +02002690 struct cpu_defaults *cpu_def;
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01002691 int rc = 0;
Dirk Brandewie93f08222013-02-06 09:02:13 -08002692
Dirk Brandewie6be26492013-02-15 22:55:10 +01002693 if (no_load)
2694 return -ENODEV;
2695
Srinivas Pandruvada7791e4a2016-02-25 15:09:19 -08002696 if (x86_match_cpu(hwp_support_ids) && !no_hwp) {
2697 copy_cpu_funcs(&core_params.funcs);
2698 hwp_active++;
Srinivas Pandruvada984edbd2016-12-06 13:32:16 -08002699 intel_pstate.attr = hwp_cpufreq_attrs;
Srinivas Pandruvada7791e4a2016-02-25 15:09:19 -08002700 goto hwp_cpu_matched;
2701 }
2702
Dirk Brandewie93f08222013-02-06 09:02:13 -08002703 id = x86_match_cpu(intel_pstate_cpu_ids);
2704 if (!id)
2705 return -ENODEV;
2706
Borislav Petkov64df1fd2015-04-03 15:19:53 +02002707 cpu_def = (struct cpu_defaults *)id->driver_data;
Dirk Brandewie016c8152013-10-21 09:20:34 -07002708
Borislav Petkov64df1fd2015-04-03 15:19:53 +02002709 copy_pid_params(&cpu_def->pid_policy);
2710 copy_cpu_funcs(&cpu_def->funcs);
Dirk Brandewie016c8152013-10-21 09:20:34 -07002711
Dirk Brandewieb563b4e2013-03-22 01:29:28 +01002712 if (intel_pstate_msrs_not_valid())
2713 return -ENODEV;
2714
Srinivas Pandruvada7791e4a2016-02-25 15:09:19 -08002715hwp_cpu_matched:
2716 /*
2717 * The Intel pstate driver will be ignored if the platform
2718 * firmware has its own power management modes.
2719 */
2720 if (intel_pstate_platform_pwr_mgmt_exists())
2721 return -ENODEV;
2722
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01002723 if (!hwp_active && hwp_only)
2724 return -ENOTSUPP;
2725
Joe Perches4836df12016-04-05 13:28:23 -07002726 pr_info("Intel P-state driver initializing\n");
Dirk Brandewie93f08222013-02-06 09:02:13 -08002727
Wei Yongjunb57ffac2013-05-13 08:03:43 +00002728 all_cpu_data = vzalloc(sizeof(void *) * num_possible_cpus());
Dirk Brandewie93f08222013-02-06 09:02:13 -08002729 if (!all_cpu_data)
2730 return -ENOMEM;
Dirk Brandewie93f08222013-02-06 09:02:13 -08002731
Rafael J. Wysockid0ea59e2016-11-17 22:47:47 +01002732 intel_pstate_request_control_from_smm();
2733
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01002734 intel_pstate_sysfs_expose_params();
2735
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01002736 mutex_lock(&intel_pstate_driver_lock);
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01002737 rc = intel_pstate_register_driver();
Rafael J. Wysocki0c30b652017-01-11 04:12:16 +01002738 mutex_unlock(&intel_pstate_driver_lock);
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01002739 if (rc)
2740 return rc;
Rafael J. Wysocki366430b2016-12-24 00:29:56 +01002741
Srinivas Pandruvada7791e4a2016-02-25 15:09:19 -08002742 if (hwp_active)
Joe Perches4836df12016-04-05 13:28:23 -07002743 pr_info("HWP enabled\n");
Srinivas Pandruvada7791e4a2016-02-25 15:09:19 -08002744
Rafael J. Wysockifb1fe102017-01-05 02:53:12 +01002745 return 0;
Dirk Brandewie93f08222013-02-06 09:02:13 -08002746}
2747device_initcall(intel_pstate_init);
2748
Dirk Brandewie6be26492013-02-15 22:55:10 +01002749static int __init intel_pstate_setup(char *str)
2750{
2751 if (!str)
2752 return -EINVAL;
2753
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002754 if (!strcmp(str, "disable")) {
Dirk Brandewie6be26492013-02-15 22:55:10 +01002755 no_load = 1;
Rafael J. Wysocki001c76f2016-11-17 23:34:17 +01002756 } else if (!strcmp(str, "passive")) {
2757 pr_info("Passive mode enabled\n");
2758 intel_pstate_driver = &intel_cpufreq;
2759 no_hwp = 1;
2760 }
Prarit Bhargava539342f2015-10-22 09:43:31 -04002761 if (!strcmp(str, "no_hwp")) {
Joe Perches4836df12016-04-05 13:28:23 -07002762 pr_info("HWP disabled\n");
Dirk Brandewie2f86dc42014-11-06 09:40:47 -08002763 no_hwp = 1;
Prarit Bhargava539342f2015-10-22 09:43:31 -04002764 }
Ethan Zhaoaa4ea342014-12-09 10:43:19 +09002765 if (!strcmp(str, "force"))
2766 force_load = 1;
Kristen Carlson Accardid64c3b02015-02-06 13:41:55 -08002767 if (!strcmp(str, "hwp_only"))
2768 hwp_only = 1;
Srinivas Pandruvadaeae48f02016-10-25 13:20:40 -07002769 if (!strcmp(str, "per_cpu_perf_limits"))
2770 per_cpu_limits = true;
Srinivas Pandruvada9522a2f2016-04-27 15:48:06 -07002771
2772#ifdef CONFIG_ACPI
2773 if (!strcmp(str, "support_acpi_ppc"))
2774 acpi_ppc = true;
2775#endif
2776
Dirk Brandewie6be26492013-02-15 22:55:10 +01002777 return 0;
2778}
2779early_param("intel_pstate", intel_pstate_setup);
2780
Dirk Brandewie93f08222013-02-06 09:02:13 -08002781MODULE_AUTHOR("Dirk Brandewie <dirk.j.brandewie@intel.com>");
2782MODULE_DESCRIPTION("'intel_pstate' - P state driver Intel Core processors");
2783MODULE_LICENSE("GPL");