Staging: rtl8188eu/core: Coding style fix, avoid line over 80 characters
[linux-2.6/btrfs-unstable.git] / drivers / firmware / psci.c
blobf25cd79c8a79f834f8d3e169684d20ee4ced08e6
1 /*
2 * This program is free software; you can redistribute it and/or modify
3 * it under the terms of the GNU General Public License version 2 as
4 * published by the Free Software Foundation.
6 * This program is distributed in the hope that it will be useful,
7 * but WITHOUT ANY WARRANTY; without even the implied warranty of
8 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
9 * GNU General Public License for more details.
11 * Copyright (C) 2015 ARM Limited
14 #define pr_fmt(fmt) "psci: " fmt
16 #include <linux/arm-smccc.h>
17 #include <linux/errno.h>
18 #include <linux/linkage.h>
19 #include <linux/of.h>
20 #include <linux/pm.h>
21 #include <linux/printk.h>
22 #include <linux/psci.h>
23 #include <linux/reboot.h>
24 #include <linux/suspend.h>
26 #include <uapi/linux/psci.h>
28 #include <asm/cputype.h>
29 #include <asm/system_misc.h>
30 #include <asm/smp_plat.h>
31 #include <asm/suspend.h>
34 * While a 64-bit OS can make calls with SMC32 calling conventions, for some
35 * calls it is necessary to use SMC64 to pass or return 64-bit values.
36 * For such calls PSCI_FN_NATIVE(version, name) will choose the appropriate
37 * (native-width) function ID.
39 #ifdef CONFIG_64BIT
40 #define PSCI_FN_NATIVE(version, name) PSCI_##version##_FN64_##name
41 #else
42 #define PSCI_FN_NATIVE(version, name) PSCI_##version##_FN_##name
43 #endif
46 * The CPU any Trusted OS is resident on. The trusted OS may reject CPU_OFF
47 * calls to its resident CPU, so we must avoid issuing those. We never migrate
48 * a Trusted OS even if it claims to be capable of migration -- doing so will
49 * require cooperation with a Trusted OS driver.
51 static int resident_cpu = -1;
53 bool psci_tos_resident_on(int cpu)
55 return cpu == resident_cpu;
58 struct psci_operations psci_ops;
60 typedef unsigned long (psci_fn)(unsigned long, unsigned long,
61 unsigned long, unsigned long);
62 static psci_fn *invoke_psci_fn;
64 enum psci_function {
65 PSCI_FN_CPU_SUSPEND,
66 PSCI_FN_CPU_ON,
67 PSCI_FN_CPU_OFF,
68 PSCI_FN_MIGRATE,
69 PSCI_FN_MAX,
72 static u32 psci_function_id[PSCI_FN_MAX];
74 #define PSCI_0_2_POWER_STATE_MASK \
75 (PSCI_0_2_POWER_STATE_ID_MASK | \
76 PSCI_0_2_POWER_STATE_TYPE_MASK | \
77 PSCI_0_2_POWER_STATE_AFFL_MASK)
79 #define PSCI_1_0_EXT_POWER_STATE_MASK \
80 (PSCI_1_0_EXT_POWER_STATE_ID_MASK | \
81 PSCI_1_0_EXT_POWER_STATE_TYPE_MASK)
83 static u32 psci_cpu_suspend_feature;
85 static inline bool psci_has_ext_power_state(void)
87 return psci_cpu_suspend_feature &
88 PSCI_1_0_FEATURES_CPU_SUSPEND_PF_MASK;
91 bool psci_power_state_loses_context(u32 state)
93 const u32 mask = psci_has_ext_power_state() ?
94 PSCI_1_0_EXT_POWER_STATE_TYPE_MASK :
95 PSCI_0_2_POWER_STATE_TYPE_MASK;
97 return state & mask;
100 bool psci_power_state_is_valid(u32 state)
102 const u32 valid_mask = psci_has_ext_power_state() ?
103 PSCI_1_0_EXT_POWER_STATE_MASK :
104 PSCI_0_2_POWER_STATE_MASK;
106 return !(state & ~valid_mask);
109 static unsigned long __invoke_psci_fn_hvc(unsigned long function_id,
110 unsigned long arg0, unsigned long arg1,
111 unsigned long arg2)
113 struct arm_smccc_res res;
115 arm_smccc_hvc(function_id, arg0, arg1, arg2, 0, 0, 0, 0, &res);
116 return res.a0;
119 static unsigned long __invoke_psci_fn_smc(unsigned long function_id,
120 unsigned long arg0, unsigned long arg1,
121 unsigned long arg2)
123 struct arm_smccc_res res;
125 arm_smccc_smc(function_id, arg0, arg1, arg2, 0, 0, 0, 0, &res);
126 return res.a0;
129 static int psci_to_linux_errno(int errno)
131 switch (errno) {
132 case PSCI_RET_SUCCESS:
133 return 0;
134 case PSCI_RET_NOT_SUPPORTED:
135 return -EOPNOTSUPP;
136 case PSCI_RET_INVALID_PARAMS:
137 case PSCI_RET_INVALID_ADDRESS:
138 return -EINVAL;
139 case PSCI_RET_DENIED:
140 return -EPERM;
143 return -EINVAL;
146 static u32 psci_get_version(void)
148 return invoke_psci_fn(PSCI_0_2_FN_PSCI_VERSION, 0, 0, 0);
151 static int psci_cpu_suspend(u32 state, unsigned long entry_point)
153 int err;
154 u32 fn;
156 fn = psci_function_id[PSCI_FN_CPU_SUSPEND];
157 err = invoke_psci_fn(fn, state, entry_point, 0);
158 return psci_to_linux_errno(err);
161 static int psci_cpu_off(u32 state)
163 int err;
164 u32 fn;
166 fn = psci_function_id[PSCI_FN_CPU_OFF];
167 err = invoke_psci_fn(fn, state, 0, 0);
168 return psci_to_linux_errno(err);
171 static int psci_cpu_on(unsigned long cpuid, unsigned long entry_point)
173 int err;
174 u32 fn;
176 fn = psci_function_id[PSCI_FN_CPU_ON];
177 err = invoke_psci_fn(fn, cpuid, entry_point, 0);
178 return psci_to_linux_errno(err);
181 static int psci_migrate(unsigned long cpuid)
183 int err;
184 u32 fn;
186 fn = psci_function_id[PSCI_FN_MIGRATE];
187 err = invoke_psci_fn(fn, cpuid, 0, 0);
188 return psci_to_linux_errno(err);
191 static int psci_affinity_info(unsigned long target_affinity,
192 unsigned long lowest_affinity_level)
194 return invoke_psci_fn(PSCI_FN_NATIVE(0_2, AFFINITY_INFO),
195 target_affinity, lowest_affinity_level, 0);
198 static int psci_migrate_info_type(void)
200 return invoke_psci_fn(PSCI_0_2_FN_MIGRATE_INFO_TYPE, 0, 0, 0);
203 static unsigned long psci_migrate_info_up_cpu(void)
205 return invoke_psci_fn(PSCI_FN_NATIVE(0_2, MIGRATE_INFO_UP_CPU),
206 0, 0, 0);
209 static int get_set_conduit_method(struct device_node *np)
211 const char *method;
213 pr_info("probing for conduit method from DT.\n");
215 if (of_property_read_string(np, "method", &method)) {
216 pr_warn("missing \"method\" property\n");
217 return -ENXIO;
220 if (!strcmp("hvc", method)) {
221 invoke_psci_fn = __invoke_psci_fn_hvc;
222 } else if (!strcmp("smc", method)) {
223 invoke_psci_fn = __invoke_psci_fn_smc;
224 } else {
225 pr_warn("invalid \"method\" property: %s\n", method);
226 return -EINVAL;
228 return 0;
231 static void psci_sys_reset(enum reboot_mode reboot_mode, const char *cmd)
233 invoke_psci_fn(PSCI_0_2_FN_SYSTEM_RESET, 0, 0, 0);
236 static void psci_sys_poweroff(void)
238 invoke_psci_fn(PSCI_0_2_FN_SYSTEM_OFF, 0, 0, 0);
241 static int __init psci_features(u32 psci_func_id)
243 return invoke_psci_fn(PSCI_1_0_FN_PSCI_FEATURES,
244 psci_func_id, 0, 0);
247 static int psci_system_suspend(unsigned long unused)
249 return invoke_psci_fn(PSCI_FN_NATIVE(1_0, SYSTEM_SUSPEND),
250 virt_to_phys(cpu_resume), 0, 0);
253 static int psci_system_suspend_enter(suspend_state_t state)
255 return cpu_suspend(0, psci_system_suspend);
258 static const struct platform_suspend_ops psci_suspend_ops = {
259 .valid = suspend_valid_only_mem,
260 .enter = psci_system_suspend_enter,
263 static void __init psci_init_system_suspend(void)
265 int ret;
267 if (!IS_ENABLED(CONFIG_SUSPEND))
268 return;
270 ret = psci_features(PSCI_FN_NATIVE(1_0, SYSTEM_SUSPEND));
272 if (ret != PSCI_RET_NOT_SUPPORTED)
273 suspend_set_ops(&psci_suspend_ops);
276 static void __init psci_init_cpu_suspend(void)
278 int feature = psci_features(psci_function_id[PSCI_FN_CPU_SUSPEND]);
280 if (feature != PSCI_RET_NOT_SUPPORTED)
281 psci_cpu_suspend_feature = feature;
285 * Detect the presence of a resident Trusted OS which may cause CPU_OFF to
286 * return DENIED (which would be fatal).
288 static void __init psci_init_migrate(void)
290 unsigned long cpuid;
291 int type, cpu = -1;
293 type = psci_ops.migrate_info_type();
295 if (type == PSCI_0_2_TOS_MP) {
296 pr_info("Trusted OS migration not required\n");
297 return;
300 if (type == PSCI_RET_NOT_SUPPORTED) {
301 pr_info("MIGRATE_INFO_TYPE not supported.\n");
302 return;
305 if (type != PSCI_0_2_TOS_UP_MIGRATE &&
306 type != PSCI_0_2_TOS_UP_NO_MIGRATE) {
307 pr_err("MIGRATE_INFO_TYPE returned unknown type (%d)\n", type);
308 return;
311 cpuid = psci_migrate_info_up_cpu();
312 if (cpuid & ~MPIDR_HWID_BITMASK) {
313 pr_warn("MIGRATE_INFO_UP_CPU reported invalid physical ID (0x%lx)\n",
314 cpuid);
315 return;
318 cpu = get_logical_index(cpuid);
319 resident_cpu = cpu >= 0 ? cpu : -1;
321 pr_info("Trusted OS resident on physical CPU 0x%lx\n", cpuid);
324 static void __init psci_0_2_set_functions(void)
326 pr_info("Using standard PSCI v0.2 function IDs\n");
327 psci_function_id[PSCI_FN_CPU_SUSPEND] =
328 PSCI_FN_NATIVE(0_2, CPU_SUSPEND);
329 psci_ops.cpu_suspend = psci_cpu_suspend;
331 psci_function_id[PSCI_FN_CPU_OFF] = PSCI_0_2_FN_CPU_OFF;
332 psci_ops.cpu_off = psci_cpu_off;
334 psci_function_id[PSCI_FN_CPU_ON] = PSCI_FN_NATIVE(0_2, CPU_ON);
335 psci_ops.cpu_on = psci_cpu_on;
337 psci_function_id[PSCI_FN_MIGRATE] = PSCI_FN_NATIVE(0_2, MIGRATE);
338 psci_ops.migrate = psci_migrate;
340 psci_ops.affinity_info = psci_affinity_info;
342 psci_ops.migrate_info_type = psci_migrate_info_type;
344 arm_pm_restart = psci_sys_reset;
346 pm_power_off = psci_sys_poweroff;
350 * Probe function for PSCI firmware versions >= 0.2
352 static int __init psci_probe(void)
354 u32 ver = psci_get_version();
356 pr_info("PSCIv%d.%d detected in firmware.\n",
357 PSCI_VERSION_MAJOR(ver),
358 PSCI_VERSION_MINOR(ver));
360 if (PSCI_VERSION_MAJOR(ver) == 0 && PSCI_VERSION_MINOR(ver) < 2) {
361 pr_err("Conflicting PSCI version detected.\n");
362 return -EINVAL;
365 psci_0_2_set_functions();
367 psci_init_migrate();
369 if (PSCI_VERSION_MAJOR(ver) >= 1) {
370 psci_init_cpu_suspend();
371 psci_init_system_suspend();
374 return 0;
377 typedef int (*psci_initcall_t)(const struct device_node *);
380 * PSCI init function for PSCI versions >=0.2
382 * Probe based on PSCI PSCI_VERSION function
384 static int __init psci_0_2_init(struct device_node *np)
386 int err;
388 err = get_set_conduit_method(np);
390 if (err)
391 goto out_put_node;
393 * Starting with v0.2, the PSCI specification introduced a call
394 * (PSCI_VERSION) that allows probing the firmware version, so
395 * that PSCI function IDs and version specific initialization
396 * can be carried out according to the specific version reported
397 * by firmware
399 err = psci_probe();
401 out_put_node:
402 of_node_put(np);
403 return err;
407 * PSCI < v0.2 get PSCI Function IDs via DT.
409 static int __init psci_0_1_init(struct device_node *np)
411 u32 id;
412 int err;
414 err = get_set_conduit_method(np);
416 if (err)
417 goto out_put_node;
419 pr_info("Using PSCI v0.1 Function IDs from DT\n");
421 if (!of_property_read_u32(np, "cpu_suspend", &id)) {
422 psci_function_id[PSCI_FN_CPU_SUSPEND] = id;
423 psci_ops.cpu_suspend = psci_cpu_suspend;
426 if (!of_property_read_u32(np, "cpu_off", &id)) {
427 psci_function_id[PSCI_FN_CPU_OFF] = id;
428 psci_ops.cpu_off = psci_cpu_off;
431 if (!of_property_read_u32(np, "cpu_on", &id)) {
432 psci_function_id[PSCI_FN_CPU_ON] = id;
433 psci_ops.cpu_on = psci_cpu_on;
436 if (!of_property_read_u32(np, "migrate", &id)) {
437 psci_function_id[PSCI_FN_MIGRATE] = id;
438 psci_ops.migrate = psci_migrate;
441 out_put_node:
442 of_node_put(np);
443 return err;
446 static const struct of_device_id const psci_of_match[] __initconst = {
447 { .compatible = "arm,psci", .data = psci_0_1_init},
448 { .compatible = "arm,psci-0.2", .data = psci_0_2_init},
449 { .compatible = "arm,psci-1.0", .data = psci_0_2_init},
453 int __init psci_dt_init(void)
455 struct device_node *np;
456 const struct of_device_id *matched_np;
457 psci_initcall_t init_fn;
459 np = of_find_matching_node_and_match(NULL, psci_of_match, &matched_np);
461 if (!np)
462 return -ENODEV;
464 init_fn = (psci_initcall_t)matched_np->data;
465 return init_fn(np);
468 #ifdef CONFIG_ACPI
470 * We use PSCI 0.2+ when ACPI is deployed on ARM64 and it's
471 * explicitly clarified in SBBR
473 int __init psci_acpi_init(void)
475 if (!acpi_psci_present()) {
476 pr_info("is not implemented in ACPI.\n");
477 return -EOPNOTSUPP;
480 pr_info("probing for conduit method from ACPI.\n");
482 if (acpi_psci_use_hvc())
483 invoke_psci_fn = __invoke_psci_fn_hvc;
484 else
485 invoke_psci_fn = __invoke_psci_fn_smc;
487 return psci_probe();
489 #endif