xref: /rk3399_ARM-atf/lib/psci/psci_private.h (revision e40e075f4ddf63aa84d2aaacb807ed40438f1d24)
1 /*
2  * Copyright (c) 2013-2017, ARM Limited and Contributors. All rights reserved.
3  *
4  * Redistribution and use in source and binary forms, with or without
5  * modification, are permitted provided that the following conditions are met:
6  *
7  * Redistributions of source code must retain the above copyright notice, this
8  * list of conditions and the following disclaimer.
9  *
10  * Redistributions in binary form must reproduce the above copyright notice,
11  * this list of conditions and the following disclaimer in the documentation
12  * and/or other materials provided with the distribution.
13  *
14  * Neither the name of ARM nor the names of its contributors may be used
15  * to endorse or promote products derived from this software without specific
16  * prior written permission.
17  *
18  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
19  * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21  * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
22  * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
23  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
24  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
25  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
26  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
27  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28  * POSSIBILITY OF SUCH DAMAGE.
29  */
30 
31 #ifndef __PSCI_PRIVATE_H__
32 #define __PSCI_PRIVATE_H__
33 
34 #include <arch.h>
35 #include <bakery_lock.h>
36 #include <bl_common.h>
37 #include <cpu_data.h>
38 #include <psci.h>
39 #include <spinlock.h>
40 
41 /*
42  * The following helper macros abstract the interface to the Bakery
43  * Lock API.
44  */
45 #define psci_lock_init(non_cpu_pd_node, idx)			\
46 	((non_cpu_pd_node)[(idx)].lock_index = (idx))
47 #define psci_lock_get(non_cpu_pd_node)				\
48 	bakery_lock_get(&psci_locks[(non_cpu_pd_node)->lock_index])
49 #define psci_lock_release(non_cpu_pd_node)			\
50 	bakery_lock_release(&psci_locks[(non_cpu_pd_node)->lock_index])
51 
52 /*
53  * The PSCI capability which are provided by the generic code but does not
54  * depend on the platform or spd capabilities.
55  */
56 #define PSCI_GENERIC_CAP	\
57 			(define_psci_cap(PSCI_VERSION) |		\
58 			define_psci_cap(PSCI_AFFINITY_INFO_AARCH64) |	\
59 			define_psci_cap(PSCI_FEATURES))
60 
61 /*
62  * The PSCI capabilities mask for 64 bit functions.
63  */
64 #define PSCI_CAP_64BIT_MASK	\
65 			(define_psci_cap(PSCI_CPU_SUSPEND_AARCH64) |	\
66 			define_psci_cap(PSCI_CPU_ON_AARCH64) |		\
67 			define_psci_cap(PSCI_AFFINITY_INFO_AARCH64) |	\
68 			define_psci_cap(PSCI_MIG_AARCH64) |		\
69 			define_psci_cap(PSCI_MIG_INFO_UP_CPU_AARCH64) |	\
70 			define_psci_cap(PSCI_NODE_HW_STATE_AARCH64) |	\
71 			define_psci_cap(PSCI_SYSTEM_SUSPEND_AARCH64) |	\
72 			define_psci_cap(PSCI_STAT_RESIDENCY_AARCH64) |	\
73 			define_psci_cap(PSCI_STAT_COUNT_AARCH64))
74 
75 /*
76  * Helper macros to get/set the fields of PSCI per-cpu data.
77  */
78 #define psci_set_aff_info_state(aff_state) \
79 		set_cpu_data(psci_svc_cpu_data.aff_info_state, aff_state)
80 #define psci_get_aff_info_state() \
81 		get_cpu_data(psci_svc_cpu_data.aff_info_state)
82 #define psci_get_aff_info_state_by_idx(idx) \
83 		get_cpu_data_by_index(idx, psci_svc_cpu_data.aff_info_state)
84 #define psci_set_aff_info_state_by_idx(idx, aff_state) \
85 		set_cpu_data_by_index(idx, psci_svc_cpu_data.aff_info_state,\
86 					aff_state)
87 #define psci_get_suspend_pwrlvl() \
88 		get_cpu_data(psci_svc_cpu_data.target_pwrlvl)
89 #define psci_set_suspend_pwrlvl(target_lvl) \
90 		set_cpu_data(psci_svc_cpu_data.target_pwrlvl, target_lvl)
91 #define psci_set_cpu_local_state(state) \
92 		set_cpu_data(psci_svc_cpu_data.local_state, state)
93 #define psci_get_cpu_local_state() \
94 		get_cpu_data(psci_svc_cpu_data.local_state)
95 #define psci_get_cpu_local_state_by_idx(idx) \
96 		get_cpu_data_by_index(idx, psci_svc_cpu_data.local_state)
97 
98 /*
99  * Helper macros for the CPU level spinlocks
100  */
101 #define psci_spin_lock_cpu(idx)	spin_lock(&psci_cpu_pd_nodes[idx].cpu_lock)
102 #define psci_spin_unlock_cpu(idx) spin_unlock(&psci_cpu_pd_nodes[idx].cpu_lock)
103 
104 /* Helper macro to identify a CPU standby request in PSCI Suspend call */
105 #define is_cpu_standby_req(is_power_down_state, retn_lvl) \
106 		(((!(is_power_down_state)) && ((retn_lvl) == 0)) ? 1 : 0)
107 
108 /*******************************************************************************
109  * The following two data structures implement the power domain tree. The tree
110  * is used to track the state of all the nodes i.e. power domain instances
111  * described by the platform. The tree consists of nodes that describe CPU power
112  * domains i.e. leaf nodes and all other power domains which are parents of a
113  * CPU power domain i.e. non-leaf nodes.
114  ******************************************************************************/
115 typedef struct non_cpu_pwr_domain_node {
116 	/*
117 	 * Index of the first CPU power domain node level 0 which has this node
118 	 * as its parent.
119 	 */
120 	unsigned int cpu_start_idx;
121 
122 	/*
123 	 * Number of CPU power domains which are siblings of the domain indexed
124 	 * by 'cpu_start_idx' i.e. all the domains in the range 'cpu_start_idx
125 	 * -> cpu_start_idx + ncpus' have this node as their parent.
126 	 */
127 	unsigned int ncpus;
128 
129 	/*
130 	 * Index of the parent power domain node.
131 	 * TODO: Figure out whether to whether using pointer is more efficient.
132 	 */
133 	unsigned int parent_node;
134 
135 	plat_local_state_t local_state;
136 
137 	unsigned char level;
138 
139 	/* For indexing the psci_lock array*/
140 	unsigned char lock_index;
141 } non_cpu_pd_node_t;
142 
143 typedef struct cpu_pwr_domain_node {
144 	u_register_t mpidr;
145 
146 	/*
147 	 * Index of the parent power domain node.
148 	 * TODO: Figure out whether to whether using pointer is more efficient.
149 	 */
150 	unsigned int parent_node;
151 
152 	/*
153 	 * A CPU power domain does not require state coordination like its
154 	 * parent power domains. Hence this node does not include a bakery
155 	 * lock. A spinlock is required by the CPU_ON handler to prevent a race
156 	 * when multiple CPUs try to turn ON the same target CPU.
157 	 */
158 	spinlock_t cpu_lock;
159 } cpu_pd_node_t;
160 
161 /*******************************************************************************
162  * Data prototypes
163  ******************************************************************************/
164 extern const plat_psci_ops_t *psci_plat_pm_ops;
165 extern non_cpu_pd_node_t psci_non_cpu_pd_nodes[PSCI_NUM_NON_CPU_PWR_DOMAINS];
166 extern cpu_pd_node_t psci_cpu_pd_nodes[PLATFORM_CORE_COUNT];
167 extern unsigned int psci_caps;
168 
169 /* One bakery lock is required for each non-cpu power domain */
170 DECLARE_BAKERY_LOCK(psci_locks[PSCI_NUM_NON_CPU_PWR_DOMAINS]);
171 
172 /*******************************************************************************
173  * SPD's power management hooks registered with PSCI
174  ******************************************************************************/
175 extern const spd_pm_ops_t *psci_spd_pm;
176 
177 /*******************************************************************************
178  * Function prototypes
179  ******************************************************************************/
180 /* Private exported functions from psci_common.c */
181 int psci_validate_power_state(unsigned int power_state,
182 			      psci_power_state_t *state_info);
183 void psci_query_sys_suspend_pwrstate(psci_power_state_t *state_info);
184 int psci_validate_mpidr(u_register_t mpidr);
185 void psci_init_req_local_pwr_states(void);
186 void psci_get_target_local_pwr_states(unsigned int end_pwrlvl,
187 				      psci_power_state_t *target_state);
188 int psci_validate_entry_point(entry_point_info_t *ep,
189 			uintptr_t entrypoint, u_register_t context_id);
190 void psci_get_parent_pwr_domain_nodes(unsigned int cpu_idx,
191 				      unsigned int end_lvl,
192 				      unsigned int node_index[]);
193 void psci_do_state_coordination(unsigned int end_pwrlvl,
194 				psci_power_state_t *state_info);
195 void psci_acquire_pwr_domain_locks(unsigned int end_pwrlvl,
196 				   unsigned int cpu_idx);
197 void psci_release_pwr_domain_locks(unsigned int end_pwrlvl,
198 				   unsigned int cpu_idx);
199 int psci_validate_suspend_req(const psci_power_state_t *state_info,
200 			      unsigned int is_power_down_state_req);
201 unsigned int psci_find_max_off_lvl(const psci_power_state_t *state_info);
202 unsigned int psci_find_target_suspend_lvl(const psci_power_state_t *state_info);
203 void psci_set_pwr_domains_to_run(unsigned int end_pwrlvl);
204 void psci_print_power_domain_map(void);
205 unsigned int psci_is_last_on_cpu(void);
206 int psci_spd_migrate_info(u_register_t *mpidr);
207 
208 /* Private exported functions from psci_on.c */
209 int psci_cpu_on_start(u_register_t target_cpu,
210 		      entry_point_info_t *ep);
211 
212 void psci_cpu_on_finish(unsigned int cpu_idx,
213 			psci_power_state_t *state_info);
214 
215 /* Private exported functions from psci_off.c */
216 int psci_do_cpu_off(unsigned int end_pwrlvl);
217 
218 /* Private exported functions from psci_suspend.c */
219 void psci_cpu_suspend_start(entry_point_info_t *ep,
220 			unsigned int end_pwrlvl,
221 			psci_power_state_t *state_info,
222 			unsigned int is_power_down_state_req);
223 
224 void psci_cpu_suspend_finish(unsigned int cpu_idx,
225 			psci_power_state_t *state_info);
226 
227 /* Private exported functions from psci_helpers.S */
228 void psci_do_pwrdown_cache_maintenance(unsigned int pwr_level);
229 void psci_do_pwrup_cache_maintenance(void);
230 
231 /* Private exported functions from psci_system_off.c */
232 void __dead2 psci_system_off(void);
233 void __dead2 psci_system_reset(void);
234 
235 /* Private exported functions from psci_stat.c */
236 void psci_stats_update_pwr_down(unsigned int end_pwrlvl,
237 			const psci_power_state_t *state_info);
238 void psci_stats_update_pwr_up(unsigned int end_pwrlvl,
239 			const psci_power_state_t *state_info);
240 u_register_t psci_stat_residency(u_register_t target_cpu,
241 			unsigned int power_state);
242 u_register_t psci_stat_count(u_register_t target_cpu,
243 			unsigned int power_state);
244 
245 #endif /* __PSCI_PRIVATE_H__ */
246