xref: /openbmc/linux/include/acpi/cppc_acpi.h (revision 0eb2b767)
1 /* SPDX-License-Identifier: GPL-2.0-only */
2 /*
3  * CPPC (Collaborative Processor Performance Control) methods used
4  * by CPUfreq drivers.
5  *
6  * (C) Copyright 2014, 2015 Linaro Ltd.
7  * Author: Ashwin Chaugule <ashwin.chaugule@linaro.org>
8  */
9 
10 #ifndef _CPPC_ACPI_H
11 #define _CPPC_ACPI_H
12 
13 #include <linux/acpi.h>
14 #include <linux/cpufreq.h>
15 #include <linux/types.h>
16 
17 #include <acpi/pcc.h>
18 #include <acpi/processor.h>
19 
20 /* CPPCv2 and CPPCv3 support */
21 #define CPPC_V2_REV	2
22 #define CPPC_V3_REV	3
23 #define CPPC_V2_NUM_ENT	21
24 #define CPPC_V3_NUM_ENT	23
25 
26 #define PCC_CMD_COMPLETE_MASK	(1 << 0)
27 #define PCC_ERROR_MASK		(1 << 2)
28 
29 #define MAX_CPC_REG_ENT 21
30 
31 /* CPPC specific PCC commands. */
32 #define	CMD_READ 0
33 #define	CMD_WRITE 1
34 
35 /* Each register has the folowing format. */
36 struct cpc_reg {
37 	u8 descriptor;
38 	u16 length;
39 	u8 space_id;
40 	u8 bit_width;
41 	u8 bit_offset;
42 	u8 access_width;
43 	u64 address;
44 } __packed;
45 
46 /*
47  * Each entry in the CPC table is either
48  * of type ACPI_TYPE_BUFFER or
49  * ACPI_TYPE_INTEGER.
50  */
51 struct cpc_register_resource {
52 	acpi_object_type type;
53 	u64 __iomem *sys_mem_vaddr;
54 	union {
55 		struct cpc_reg reg;
56 		u64 int_value;
57 	} cpc_entry;
58 };
59 
60 /* Container to hold the CPC details for each CPU */
61 struct cpc_desc {
62 	int num_entries;
63 	int version;
64 	int cpu_id;
65 	int write_cmd_status;
66 	int write_cmd_id;
67 	/* Lock used for RMW operations in cpc_write() */
68 	raw_spinlock_t rmw_lock;
69 	struct cpc_register_resource cpc_regs[MAX_CPC_REG_ENT];
70 	struct acpi_psd_package domain_info;
71 	struct kobject kobj;
72 };
73 
74 /* These are indexes into the per-cpu cpc_regs[]. Order is important. */
75 enum cppc_regs {
76 	HIGHEST_PERF,
77 	NOMINAL_PERF,
78 	LOW_NON_LINEAR_PERF,
79 	LOWEST_PERF,
80 	GUARANTEED_PERF,
81 	DESIRED_PERF,
82 	MIN_PERF,
83 	MAX_PERF,
84 	PERF_REDUC_TOLERANCE,
85 	TIME_WINDOW,
86 	CTR_WRAP_TIME,
87 	REFERENCE_CTR,
88 	DELIVERED_CTR,
89 	PERF_LIMITED,
90 	ENABLE,
91 	AUTO_SEL_ENABLE,
92 	AUTO_ACT_WINDOW,
93 	ENERGY_PERF,
94 	REFERENCE_PERF,
95 	LOWEST_FREQ,
96 	NOMINAL_FREQ,
97 };
98 
99 /*
100  * Categorization of registers as described
101  * in the ACPI v.5.1 spec.
102  * XXX: Only filling up ones which are used by governors
103  * today.
104  */
105 struct cppc_perf_caps {
106 	u32 guaranteed_perf;
107 	u32 highest_perf;
108 	u32 nominal_perf;
109 	u32 lowest_perf;
110 	u32 lowest_nonlinear_perf;
111 	u32 lowest_freq;
112 	u32 nominal_freq;
113 	u32 energy_perf;
114 	bool auto_sel;
115 };
116 
117 struct cppc_perf_ctrls {
118 	u32 max_perf;
119 	u32 min_perf;
120 	u32 desired_perf;
121 	u32 energy_perf;
122 };
123 
124 struct cppc_perf_fb_ctrs {
125 	u64 reference;
126 	u64 delivered;
127 	u64 reference_perf;
128 	u64 wraparound_time;
129 };
130 
131 /* Per CPU container for runtime CPPC management. */
132 struct cppc_cpudata {
133 	struct list_head node;
134 	struct cppc_perf_caps perf_caps;
135 	struct cppc_perf_ctrls perf_ctrls;
136 	struct cppc_perf_fb_ctrs perf_fb_ctrs;
137 	unsigned int shared_type;
138 	cpumask_var_t shared_cpu_map;
139 };
140 
141 #ifdef CONFIG_ACPI_CPPC_LIB
142 extern int cppc_get_desired_perf(int cpunum, u64 *desired_perf);
143 extern int cppc_get_nominal_perf(int cpunum, u64 *nominal_perf);
144 extern int cppc_get_highest_perf(int cpunum, u64 *highest_perf);
145 extern int cppc_get_perf_ctrs(int cpu, struct cppc_perf_fb_ctrs *perf_fb_ctrs);
146 extern int cppc_set_perf(int cpu, struct cppc_perf_ctrls *perf_ctrls);
147 extern int cppc_set_enable(int cpu, bool enable);
148 extern int cppc_get_perf_caps(int cpu, struct cppc_perf_caps *caps);
149 extern bool cppc_perf_ctrs_in_pcc(void);
150 extern unsigned int cppc_perf_to_khz(struct cppc_perf_caps *caps, unsigned int perf);
151 extern unsigned int cppc_khz_to_perf(struct cppc_perf_caps *caps, unsigned int freq);
152 extern bool acpi_cpc_valid(void);
153 extern bool cppc_allow_fast_switch(void);
154 extern int acpi_get_psd_map(unsigned int cpu, struct cppc_cpudata *cpu_data);
155 extern unsigned int cppc_get_transition_latency(int cpu);
156 extern bool cpc_ffh_supported(void);
157 extern bool cpc_supported_by_cpu(void);
158 extern int cpc_read_ffh(int cpunum, struct cpc_reg *reg, u64 *val);
159 extern int cpc_write_ffh(int cpunum, struct cpc_reg *reg, u64 val);
160 extern int cppc_get_epp_perf(int cpunum, u64 *epp_perf);
161 extern int cppc_set_epp_perf(int cpu, struct cppc_perf_ctrls *perf_ctrls, bool enable);
162 extern int cppc_get_auto_sel_caps(int cpunum, struct cppc_perf_caps *perf_caps);
163 extern int cppc_set_auto_sel(int cpu, bool enable);
164 #else /* !CONFIG_ACPI_CPPC_LIB */
cppc_get_desired_perf(int cpunum,u64 * desired_perf)165 static inline int cppc_get_desired_perf(int cpunum, u64 *desired_perf)
166 {
167 	return -ENOTSUPP;
168 }
cppc_get_nominal_perf(int cpunum,u64 * nominal_perf)169 static inline int cppc_get_nominal_perf(int cpunum, u64 *nominal_perf)
170 {
171 	return -ENOTSUPP;
172 }
cppc_get_highest_perf(int cpunum,u64 * highest_perf)173 static inline int cppc_get_highest_perf(int cpunum, u64 *highest_perf)
174 {
175 	return -ENOTSUPP;
176 }
cppc_get_perf_ctrs(int cpu,struct cppc_perf_fb_ctrs * perf_fb_ctrs)177 static inline int cppc_get_perf_ctrs(int cpu, struct cppc_perf_fb_ctrs *perf_fb_ctrs)
178 {
179 	return -ENOTSUPP;
180 }
cppc_set_perf(int cpu,struct cppc_perf_ctrls * perf_ctrls)181 static inline int cppc_set_perf(int cpu, struct cppc_perf_ctrls *perf_ctrls)
182 {
183 	return -ENOTSUPP;
184 }
cppc_set_enable(int cpu,bool enable)185 static inline int cppc_set_enable(int cpu, bool enable)
186 {
187 	return -ENOTSUPP;
188 }
cppc_get_perf_caps(int cpu,struct cppc_perf_caps * caps)189 static inline int cppc_get_perf_caps(int cpu, struct cppc_perf_caps *caps)
190 {
191 	return -ENOTSUPP;
192 }
cppc_perf_ctrs_in_pcc(void)193 static inline bool cppc_perf_ctrs_in_pcc(void)
194 {
195 	return false;
196 }
acpi_cpc_valid(void)197 static inline bool acpi_cpc_valid(void)
198 {
199 	return false;
200 }
cppc_allow_fast_switch(void)201 static inline bool cppc_allow_fast_switch(void)
202 {
203 	return false;
204 }
cppc_get_transition_latency(int cpu)205 static inline unsigned int cppc_get_transition_latency(int cpu)
206 {
207 	return CPUFREQ_ETERNAL;
208 }
cpc_ffh_supported(void)209 static inline bool cpc_ffh_supported(void)
210 {
211 	return false;
212 }
cpc_read_ffh(int cpunum,struct cpc_reg * reg,u64 * val)213 static inline int cpc_read_ffh(int cpunum, struct cpc_reg *reg, u64 *val)
214 {
215 	return -ENOTSUPP;
216 }
cpc_write_ffh(int cpunum,struct cpc_reg * reg,u64 val)217 static inline int cpc_write_ffh(int cpunum, struct cpc_reg *reg, u64 val)
218 {
219 	return -ENOTSUPP;
220 }
cppc_set_epp_perf(int cpu,struct cppc_perf_ctrls * perf_ctrls,bool enable)221 static inline int cppc_set_epp_perf(int cpu, struct cppc_perf_ctrls *perf_ctrls, bool enable)
222 {
223 	return -ENOTSUPP;
224 }
cppc_get_epp_perf(int cpunum,u64 * epp_perf)225 static inline int cppc_get_epp_perf(int cpunum, u64 *epp_perf)
226 {
227 	return -ENOTSUPP;
228 }
cppc_set_auto_sel(int cpu,bool enable)229 static inline int cppc_set_auto_sel(int cpu, bool enable)
230 {
231 	return -ENOTSUPP;
232 }
cppc_get_auto_sel_caps(int cpunum,struct cppc_perf_caps * perf_caps)233 static inline int cppc_get_auto_sel_caps(int cpunum, struct cppc_perf_caps *perf_caps)
234 {
235 	return -ENOTSUPP;
236 }
237 #endif /* !CONFIG_ACPI_CPPC_LIB */
238 
239 #endif /* _CPPC_ACPI_H*/
240