3 * Procedures for interfacing to the RTAS on CHRP machines.
5 * Peter Bergner, IBM March 2001.
6 * Copyright (C) 2001 IBM.
8 * This program is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU General Public License
10 * as published by the Free Software Foundation; either version
11 * 2 of the License, or (at your option) any later version.
15 #include <linux/kernel.h>
16 #include <linux/types.h>
17 #include <linux/spinlock.h>
18 #include <linux/export.h>
19 #include <linux/init.h>
20 #include <linux/capability.h>
21 #include <linux/delay.h>
22 #include <linux/cpu.h>
23 #include <linux/smp.h>
24 #include <linux/completion.h>
25 #include <linux/cpumask.h>
26 #include <linux/memblock.h>
27 #include <linux/slab.h>
28 #include <linux/reboot.h>
32 #include <asm/hvcall.h>
33 #include <asm/machdep.h>
34 #include <asm/firmware.h>
36 #include <asm/param.h>
37 #include <asm/delay.h>
38 #include <asm/uaccess.h>
40 #include <asm/syscalls.h>
42 #include <linux/atomic.h>
45 #include <asm/topology.h>
47 struct rtas_t rtas
= {
48 .lock
= __ARCH_SPIN_LOCK_UNLOCKED
52 DEFINE_SPINLOCK(rtas_data_buf_lock
);
53 EXPORT_SYMBOL(rtas_data_buf_lock
);
55 char rtas_data_buf
[RTAS_DATA_BUF_SIZE
] __cacheline_aligned
;
56 EXPORT_SYMBOL(rtas_data_buf
);
58 unsigned long rtas_rmo_buf
;
61 * If non-NULL, this gets called when the kernel terminates.
62 * This is done like this so rtas_flash can be a module.
64 void (*rtas_flash_term_hook
)(int);
65 EXPORT_SYMBOL(rtas_flash_term_hook
);
67 /* RTAS use home made raw locking instead of spin_lock_irqsave
68 * because those can be called from within really nasty contexts
69 * such as having the timebase stopped which would lockup with
70 * normal locks and spinlock debugging enabled
72 static unsigned long lock_rtas(void)
76 local_irq_save(flags
);
78 arch_spin_lock_flags(&rtas
.lock
, flags
);
82 static void unlock_rtas(unsigned long flags
)
84 arch_spin_unlock(&rtas
.lock
);
85 local_irq_restore(flags
);
90 * call_rtas_display_status and call_rtas_display_status_delay
91 * are designed only for very early low-level debugging, which
92 * is why the token is hard-coded to 10.
94 static void call_rtas_display_status(unsigned char c
)
96 struct rtas_args
*args
= &rtas
.args
;
103 args
->token
= cpu_to_be32(10);
104 args
->nargs
= cpu_to_be32(1);
105 args
->nret
= cpu_to_be32(1);
106 args
->rets
= &(args
->args
[1]);
107 args
->args
[0] = cpu_to_be32(c
);
109 enter_rtas(__pa(args
));
114 static void call_rtas_display_status_delay(char c
)
116 static int pending_newline
= 0; /* did last write end with unprinted newline? */
117 static int width
= 16;
121 call_rtas_display_status(' ');
126 if (pending_newline
) {
127 call_rtas_display_status('\r');
128 call_rtas_display_status('\n');
132 call_rtas_display_status(c
);
138 void __init
udbg_init_rtas_panel(void)
140 udbg_putc
= call_rtas_display_status_delay
;
143 #ifdef CONFIG_UDBG_RTAS_CONSOLE
145 /* If you think you're dying before early_init_dt_scan_rtas() does its
146 * work, you can hard code the token values for your firmware here and
147 * hardcode rtas.base/entry etc.
149 static unsigned int rtas_putchar_token
= RTAS_UNKNOWN_SERVICE
;
150 static unsigned int rtas_getchar_token
= RTAS_UNKNOWN_SERVICE
;
152 static void udbg_rtascon_putc(char c
)
159 /* Add CRs before LFs */
161 udbg_rtascon_putc('\r');
163 /* if there is more than one character to be displayed, wait a bit */
164 for (tries
= 0; tries
< 16; tries
++) {
165 if (rtas_call(rtas_putchar_token
, 1, 1, NULL
, c
) == 0)
171 static int udbg_rtascon_getc_poll(void)
178 if (rtas_call(rtas_getchar_token
, 0, 2, &c
))
184 static int udbg_rtascon_getc(void)
188 while ((c
= udbg_rtascon_getc_poll()) == -1)
195 void __init
udbg_init_rtas_console(void)
197 udbg_putc
= udbg_rtascon_putc
;
198 udbg_getc
= udbg_rtascon_getc
;
199 udbg_getc_poll
= udbg_rtascon_getc_poll
;
201 #endif /* CONFIG_UDBG_RTAS_CONSOLE */
203 void rtas_progress(char *s
, unsigned short hex
)
205 struct device_node
*root
;
209 static int display_character
, set_indicator
;
210 static int display_width
, display_lines
, form_feed
;
211 static const int *row_width
;
212 static DEFINE_SPINLOCK(progress_lock
);
213 static int current_line
;
214 static int pending_newline
= 0; /* did last write end with unprinted newline? */
219 if (display_width
== 0) {
220 display_width
= 0x10;
221 if ((root
= of_find_node_by_path("/rtas"))) {
222 if ((p
= of_get_property(root
,
223 "ibm,display-line-length", NULL
)))
224 display_width
= be32_to_cpu(*p
);
225 if ((p
= of_get_property(root
,
226 "ibm,form-feed", NULL
)))
227 form_feed
= be32_to_cpu(*p
);
228 if ((p
= of_get_property(root
,
229 "ibm,display-number-of-lines", NULL
)))
230 display_lines
= be32_to_cpu(*p
);
231 row_width
= of_get_property(root
,
232 "ibm,display-truncation-length", NULL
);
235 display_character
= rtas_token("display-character");
236 set_indicator
= rtas_token("set-indicator");
239 if (display_character
== RTAS_UNKNOWN_SERVICE
) {
240 /* use hex display if available */
241 if (set_indicator
!= RTAS_UNKNOWN_SERVICE
)
242 rtas_call(set_indicator
, 3, 1, NULL
, 6, 0, hex
);
246 spin_lock(&progress_lock
);
249 * Last write ended with newline, but we didn't print it since
250 * it would just clear the bottom line of output. Print it now
253 * If no newline is pending and form feed is supported, clear the
254 * display with a form feed; otherwise, print a CR to start output
255 * at the beginning of the line.
257 if (pending_newline
) {
258 rtas_call(display_character
, 1, 1, NULL
, '\r');
259 rtas_call(display_character
, 1, 1, NULL
, '\n');
264 rtas_call(display_character
, 1, 1, NULL
,
267 rtas_call(display_character
, 1, 1, NULL
, '\r');
271 width
= row_width
[current_line
];
273 width
= display_width
;
276 if (*os
== '\n' || *os
== '\r') {
277 /* If newline is the last character, save it
278 * until next call to avoid bumping up the
281 if (*os
== '\n' && !os
[1]) {
284 if (current_line
> display_lines
-1)
285 current_line
= display_lines
-1;
286 spin_unlock(&progress_lock
);
290 /* RTAS wants CR-LF, not just LF */
293 rtas_call(display_character
, 1, 1, NULL
, '\r');
294 rtas_call(display_character
, 1, 1, NULL
, '\n');
296 /* CR might be used to re-draw a line, so we'll
297 * leave it alone and not add LF.
299 rtas_call(display_character
, 1, 1, NULL
, *os
);
303 width
= row_width
[current_line
];
305 width
= display_width
;
308 rtas_call(display_character
, 1, 1, NULL
, *os
);
313 /* if we overwrite the screen length */
315 while ((*os
!= 0) && (*os
!= '\n') && (*os
!= '\r'))
319 spin_unlock(&progress_lock
);
321 EXPORT_SYMBOL(rtas_progress
); /* needed by rtas_flash module */
323 int rtas_token(const char *service
)
326 if (rtas
.dev
== NULL
)
327 return RTAS_UNKNOWN_SERVICE
;
328 tokp
= of_get_property(rtas
.dev
, service
, NULL
);
329 return tokp
? be32_to_cpu(*tokp
) : RTAS_UNKNOWN_SERVICE
;
331 EXPORT_SYMBOL(rtas_token
);
333 int rtas_service_present(const char *service
)
335 return rtas_token(service
) != RTAS_UNKNOWN_SERVICE
;
337 EXPORT_SYMBOL(rtas_service_present
);
339 #ifdef CONFIG_RTAS_ERROR_LOGGING
341 * Return the firmware-specified size of the error log buffer
342 * for all rtas calls that require an error buffer argument.
343 * This includes 'check-exception' and 'rtas-last-error'.
345 int rtas_get_error_log_max(void)
347 static int rtas_error_log_max
;
348 if (rtas_error_log_max
)
349 return rtas_error_log_max
;
351 rtas_error_log_max
= rtas_token ("rtas-error-log-max");
352 if ((rtas_error_log_max
== RTAS_UNKNOWN_SERVICE
) ||
353 (rtas_error_log_max
> RTAS_ERROR_LOG_MAX
)) {
354 printk (KERN_WARNING
"RTAS: bad log buffer size %d\n",
356 rtas_error_log_max
= RTAS_ERROR_LOG_MAX
;
358 return rtas_error_log_max
;
360 EXPORT_SYMBOL(rtas_get_error_log_max
);
363 static char rtas_err_buf
[RTAS_ERROR_LOG_MAX
];
364 static int rtas_last_error_token
;
366 /** Return a copy of the detailed error text associated with the
367 * most recent failed call to rtas. Because the error text
368 * might go stale if there are any other intervening rtas calls,
369 * this routine must be called atomically with whatever produced
370 * the error (i.e. with rtas.lock still held from the previous call).
372 static char *__fetch_rtas_last_error(char *altbuf
)
374 struct rtas_args err_args
, save_args
;
378 if (rtas_last_error_token
== -1)
381 bufsz
= rtas_get_error_log_max();
383 err_args
.token
= cpu_to_be32(rtas_last_error_token
);
384 err_args
.nargs
= cpu_to_be32(2);
385 err_args
.nret
= cpu_to_be32(1);
386 err_args
.args
[0] = cpu_to_be32(__pa(rtas_err_buf
));
387 err_args
.args
[1] = cpu_to_be32(bufsz
);
388 err_args
.args
[2] = 0;
390 save_args
= rtas
.args
;
391 rtas
.args
= err_args
;
393 enter_rtas(__pa(&rtas
.args
));
395 err_args
= rtas
.args
;
396 rtas
.args
= save_args
;
398 /* Log the error in the unlikely case that there was one. */
399 if (unlikely(err_args
.args
[2] == 0)) {
404 if (slab_is_available())
405 buf
= kmalloc(RTAS_ERROR_LOG_MAX
, GFP_ATOMIC
);
408 memcpy(buf
, rtas_err_buf
, RTAS_ERROR_LOG_MAX
);
414 #define get_errorlog_buffer() kmalloc(RTAS_ERROR_LOG_MAX, GFP_KERNEL)
416 #else /* CONFIG_RTAS_ERROR_LOGGING */
417 #define __fetch_rtas_last_error(x) NULL
418 #define get_errorlog_buffer() NULL
421 int rtas_call(int token
, int nargs
, int nret
, int *outputs
, ...)
426 struct rtas_args
*rtas_args
;
427 char *buff_copy
= NULL
;
430 if (!rtas
.entry
|| token
== RTAS_UNKNOWN_SERVICE
)
434 rtas_args
= &rtas
.args
;
436 rtas_args
->token
= cpu_to_be32(token
);
437 rtas_args
->nargs
= cpu_to_be32(nargs
);
438 rtas_args
->nret
= cpu_to_be32(nret
);
439 rtas_args
->rets
= &(rtas_args
->args
[nargs
]);
440 va_start(list
, outputs
);
441 for (i
= 0; i
< nargs
; ++i
)
442 rtas_args
->args
[i
] = cpu_to_be32(va_arg(list
, __u32
));
445 for (i
= 0; i
< nret
; ++i
)
446 rtas_args
->rets
[i
] = 0;
448 enter_rtas(__pa(rtas_args
));
450 /* A -1 return code indicates that the last command couldn't
451 be completed due to a hardware error. */
452 if (be32_to_cpu(rtas_args
->rets
[0]) == -1)
453 buff_copy
= __fetch_rtas_last_error(NULL
);
455 if (nret
> 1 && outputs
!= NULL
)
456 for (i
= 0; i
< nret
-1; ++i
)
457 outputs
[i
] = be32_to_cpu(rtas_args
->rets
[i
+1]);
458 ret
= (nret
> 0)? be32_to_cpu(rtas_args
->rets
[0]): 0;
463 log_error(buff_copy
, ERR_TYPE_RTAS_LOG
, 0);
464 if (slab_is_available())
469 EXPORT_SYMBOL(rtas_call
);
471 /* For RTAS_BUSY (-2), delay for 1 millisecond. For an extended busy status
472 * code of 990n, perform the hinted delay of 10^n (last digit) milliseconds.
474 unsigned int rtas_busy_delay_time(int status
)
479 if (status
== RTAS_BUSY
) {
481 } else if (status
>= RTAS_EXTENDED_DELAY_MIN
&&
482 status
<= RTAS_EXTENDED_DELAY_MAX
) {
483 order
= status
- RTAS_EXTENDED_DELAY_MIN
;
484 for (ms
= 1; order
> 0; order
--)
490 EXPORT_SYMBOL(rtas_busy_delay_time
);
492 /* For an RTAS busy status code, perform the hinted delay. */
493 unsigned int rtas_busy_delay(int status
)
498 ms
= rtas_busy_delay_time(status
);
499 if (ms
&& need_resched())
504 EXPORT_SYMBOL(rtas_busy_delay
);
506 static int rtas_error_rc(int rtas_rc
)
511 case -1: /* Hardware Error */
514 case -3: /* Bad indicator/domain/etc */
517 case -9000: /* Isolation error */
520 case -9001: /* Outstanding TCE/PTE */
523 case -9002: /* No usable slot */
527 printk(KERN_ERR
"%s: unexpected RTAS error %d\n",
535 int rtas_get_power_level(int powerdomain
, int *level
)
537 int token
= rtas_token("get-power-level");
540 if (token
== RTAS_UNKNOWN_SERVICE
)
543 while ((rc
= rtas_call(token
, 1, 2, level
, powerdomain
)) == RTAS_BUSY
)
547 return rtas_error_rc(rc
);
550 EXPORT_SYMBOL(rtas_get_power_level
);
552 int rtas_set_power_level(int powerdomain
, int level
, int *setlevel
)
554 int token
= rtas_token("set-power-level");
557 if (token
== RTAS_UNKNOWN_SERVICE
)
561 rc
= rtas_call(token
, 2, 2, setlevel
, powerdomain
, level
);
562 } while (rtas_busy_delay(rc
));
565 return rtas_error_rc(rc
);
568 EXPORT_SYMBOL(rtas_set_power_level
);
570 int rtas_get_sensor(int sensor
, int index
, int *state
)
572 int token
= rtas_token("get-sensor-state");
575 if (token
== RTAS_UNKNOWN_SERVICE
)
579 rc
= rtas_call(token
, 2, 2, state
, sensor
, index
);
580 } while (rtas_busy_delay(rc
));
583 return rtas_error_rc(rc
);
586 EXPORT_SYMBOL(rtas_get_sensor
);
588 int rtas_get_sensor_fast(int sensor
, int index
, int *state
)
590 int token
= rtas_token("get-sensor-state");
593 if (token
== RTAS_UNKNOWN_SERVICE
)
596 rc
= rtas_call(token
, 2, 2, state
, sensor
, index
);
597 WARN_ON(rc
== RTAS_BUSY
|| (rc
>= RTAS_EXTENDED_DELAY_MIN
&&
598 rc
<= RTAS_EXTENDED_DELAY_MAX
));
601 return rtas_error_rc(rc
);
605 bool rtas_indicator_present(int token
, int *maxindex
)
607 int proplen
, count
, i
;
608 const struct indicator_elem
{
613 indicators
= of_get_property(rtas
.dev
, "rtas-indicators", &proplen
);
617 count
= proplen
/ sizeof(struct indicator_elem
);
619 for (i
= 0; i
< count
; i
++) {
620 if (__be32_to_cpu(indicators
[i
].token
) != token
)
623 *maxindex
= __be32_to_cpu(indicators
[i
].maxindex
);
629 EXPORT_SYMBOL(rtas_indicator_present
);
631 int rtas_set_indicator(int indicator
, int index
, int new_value
)
633 int token
= rtas_token("set-indicator");
636 if (token
== RTAS_UNKNOWN_SERVICE
)
640 rc
= rtas_call(token
, 3, 1, NULL
, indicator
, index
, new_value
);
641 } while (rtas_busy_delay(rc
));
644 return rtas_error_rc(rc
);
647 EXPORT_SYMBOL(rtas_set_indicator
);
650 * Ignoring RTAS extended delay
652 int rtas_set_indicator_fast(int indicator
, int index
, int new_value
)
655 int token
= rtas_token("set-indicator");
657 if (token
== RTAS_UNKNOWN_SERVICE
)
660 rc
= rtas_call(token
, 3, 1, NULL
, indicator
, index
, new_value
);
662 WARN_ON(rc
== RTAS_BUSY
|| (rc
>= RTAS_EXTENDED_DELAY_MIN
&&
663 rc
<= RTAS_EXTENDED_DELAY_MAX
));
666 return rtas_error_rc(rc
);
671 void rtas_restart(char *cmd
)
673 if (rtas_flash_term_hook
)
674 rtas_flash_term_hook(SYS_RESTART
);
675 printk("RTAS system-reboot returned %d\n",
676 rtas_call(rtas_token("system-reboot"), 0, 1, NULL
));
680 void rtas_power_off(void)
682 if (rtas_flash_term_hook
)
683 rtas_flash_term_hook(SYS_POWER_OFF
);
684 /* allow power on only with power button press */
685 printk("RTAS power-off returned %d\n",
686 rtas_call(rtas_token("power-off"), 2, 1, NULL
, -1, -1));
692 if (rtas_flash_term_hook
)
693 rtas_flash_term_hook(SYS_HALT
);
694 /* allow power on only with power button press */
695 printk("RTAS power-off returned %d\n",
696 rtas_call(rtas_token("power-off"), 2, 1, NULL
, -1, -1));
700 /* Must be in the RMO region, so we place it here */
701 static char rtas_os_term_buf
[2048];
703 void rtas_os_term(char *str
)
708 * Firmware with the ibm,extended-os-term property is guaranteed
709 * to always return from an ibm,os-term call. Earlier versions without
710 * this property may terminate the partition which we want to avoid
711 * since it interferes with panic_timeout.
713 if (RTAS_UNKNOWN_SERVICE
== rtas_token("ibm,os-term") ||
714 RTAS_UNKNOWN_SERVICE
== rtas_token("ibm,extended-os-term"))
717 snprintf(rtas_os_term_buf
, 2048, "OS panic: %s", str
);
720 status
= rtas_call(rtas_token("ibm,os-term"), 1, 1, NULL
,
721 __pa(rtas_os_term_buf
));
722 } while (rtas_busy_delay(status
));
725 printk(KERN_EMERG
"ibm,os-term call failed %d\n", status
);
728 static int ibm_suspend_me_token
= RTAS_UNKNOWN_SERVICE
;
729 #ifdef CONFIG_PPC_PSERIES
730 static int __rtas_suspend_last_cpu(struct rtas_suspend_me_data
*data
, int wake_when_done
)
732 u16 slb_size
= mmu_slb_size
;
733 int rc
= H_MULTI_THREADS_ACTIVE
;
736 slb_set_size(SLB_MIN_SIZE
);
737 printk(KERN_DEBUG
"calling ibm,suspend-me on cpu %i\n", smp_processor_id());
739 while (rc
== H_MULTI_THREADS_ACTIVE
&& !atomic_read(&data
->done
) &&
740 !atomic_read(&data
->error
))
741 rc
= rtas_call(data
->token
, 0, 1, NULL
);
743 if (rc
|| atomic_read(&data
->error
)) {
744 printk(KERN_DEBUG
"ibm,suspend-me returned %d\n", rc
);
745 slb_set_size(slb_size
);
748 if (atomic_read(&data
->error
))
749 rc
= atomic_read(&data
->error
);
751 atomic_set(&data
->error
, rc
);
752 pSeries_coalesce_init();
754 if (wake_when_done
) {
755 atomic_set(&data
->done
, 1);
757 for_each_online_cpu(cpu
)
758 plpar_hcall_norets(H_PROD
, get_hard_smp_processor_id(cpu
));
761 if (atomic_dec_return(&data
->working
) == 0)
762 complete(data
->complete
);
767 int rtas_suspend_last_cpu(struct rtas_suspend_me_data
*data
)
769 atomic_inc(&data
->working
);
770 return __rtas_suspend_last_cpu(data
, 0);
773 static int __rtas_suspend_cpu(struct rtas_suspend_me_data
*data
, int wake_when_done
)
776 unsigned long msr_save
;
779 atomic_inc(&data
->working
);
781 /* really need to ensure MSR.EE is off for H_JOIN */
783 mtmsr(msr_save
& ~(MSR_EE
));
785 while (rc
== H_SUCCESS
&& !atomic_read(&data
->done
) && !atomic_read(&data
->error
))
786 rc
= plpar_hcall_norets(H_JOIN
);
790 if (rc
== H_SUCCESS
) {
791 /* This cpu was prodded and the suspend is complete. */
793 } else if (rc
== H_CONTINUE
) {
794 /* All other cpus are in H_JOIN, this cpu does
797 return __rtas_suspend_last_cpu(data
, wake_when_done
);
799 printk(KERN_ERR
"H_JOIN on cpu %i failed with rc = %ld\n",
800 smp_processor_id(), rc
);
801 atomic_set(&data
->error
, rc
);
804 if (wake_when_done
) {
805 atomic_set(&data
->done
, 1);
807 /* This cpu did the suspend or got an error; in either case,
808 * we need to prod all other other cpus out of join state.
809 * Extra prods are harmless.
811 for_each_online_cpu(cpu
)
812 plpar_hcall_norets(H_PROD
, get_hard_smp_processor_id(cpu
));
815 if (atomic_dec_return(&data
->working
) == 0)
816 complete(data
->complete
);
820 int rtas_suspend_cpu(struct rtas_suspend_me_data
*data
)
822 return __rtas_suspend_cpu(data
, 0);
825 static void rtas_percpu_suspend_me(void *info
)
827 __rtas_suspend_cpu((struct rtas_suspend_me_data
*)info
, 1);
830 enum rtas_cpu_state
{
836 static int rtas_cpu_state_change_mask(enum rtas_cpu_state state
,
839 if (!cpumask_empty(cpus
)) {
846 /* On return cpumask will be altered to indicate CPUs changed.
847 * CPUs with states changed will be set in the mask,
848 * CPUs with status unchanged will be unset in the mask. */
849 static int rtas_cpu_state_change_mask(enum rtas_cpu_state state
,
856 if (cpumask_empty(cpus
))
859 for_each_cpu(cpu
, cpus
) {
862 cpuret
= cpu_down(cpu
);
865 cpuret
= cpu_up(cpu
);
869 pr_debug("%s: cpu_%s for cpu#%d returned %d.\n",
871 ((state
== UP
) ? "up" : "down"),
876 /* clear bits for unchanged cpus, return */
877 cpumask_shift_right(cpus
, cpus
, cpu
);
878 cpumask_shift_left(cpus
, cpus
, cpu
);
881 /* clear bit for unchanged cpu, continue */
882 cpumask_clear_cpu(cpu
, cpus
);
891 int rtas_online_cpus_mask(cpumask_var_t cpus
)
895 ret
= rtas_cpu_state_change_mask(UP
, cpus
);
898 cpumask_var_t tmp_mask
;
900 if (!alloc_cpumask_var(&tmp_mask
, GFP_TEMPORARY
))
903 /* Use tmp_mask to preserve cpus mask from first failure */
904 cpumask_copy(tmp_mask
, cpus
);
905 rtas_offline_cpus_mask(tmp_mask
);
906 free_cpumask_var(tmp_mask
);
911 EXPORT_SYMBOL(rtas_online_cpus_mask
);
913 int rtas_offline_cpus_mask(cpumask_var_t cpus
)
915 return rtas_cpu_state_change_mask(DOWN
, cpus
);
917 EXPORT_SYMBOL(rtas_offline_cpus_mask
);
919 int rtas_ibm_suspend_me(u64 handle
)
923 unsigned long retbuf
[PLPAR_HCALL_BUFSIZE
];
924 struct rtas_suspend_me_data data
;
925 DECLARE_COMPLETION_ONSTACK(done
);
926 cpumask_var_t offline_mask
;
929 if (!rtas_service_present("ibm,suspend-me"))
932 /* Make sure the state is valid */
933 rc
= plpar_hcall(H_VASI_STATE
, retbuf
, handle
);
938 printk(KERN_ERR
"rtas_ibm_suspend_me: vasi_state returned %ld\n",rc
);
940 } else if (state
== H_VASI_ENABLED
) {
942 } else if (state
!= H_VASI_SUSPENDING
) {
943 printk(KERN_ERR
"rtas_ibm_suspend_me: vasi_state returned state %ld\n",
948 if (!alloc_cpumask_var(&offline_mask
, GFP_TEMPORARY
))
951 atomic_set(&data
.working
, 0);
952 atomic_set(&data
.done
, 0);
953 atomic_set(&data
.error
, 0);
954 data
.token
= rtas_token("ibm,suspend-me");
955 data
.complete
= &done
;
957 /* All present CPUs must be online */
958 cpumask_andnot(offline_mask
, cpu_present_mask
, cpu_online_mask
);
959 cpuret
= rtas_online_cpus_mask(offline_mask
);
961 pr_err("%s: Could not bring present CPUs online.\n", __func__
);
962 atomic_set(&data
.error
, cpuret
);
966 stop_topology_update();
968 /* Call function on all CPUs. One of us will make the
971 if (on_each_cpu(rtas_percpu_suspend_me
, &data
, 0))
972 atomic_set(&data
.error
, -EINVAL
);
974 wait_for_completion(&done
);
976 if (atomic_read(&data
.error
) != 0)
977 printk(KERN_ERR
"Error doing global join\n");
979 start_topology_update();
981 /* Take down CPUs not online prior to suspend */
982 cpuret
= rtas_offline_cpus_mask(offline_mask
);
984 pr_warn("%s: Could not restore CPUs to offline state.\n",
988 free_cpumask_var(offline_mask
);
989 return atomic_read(&data
.error
);
991 #else /* CONFIG_PPC_PSERIES */
992 int rtas_ibm_suspend_me(u64 handle
)
999 * Find a specific pseries error log in an RTAS extended event log.
1000 * @log: RTAS error/event log
1001 * @section_id: two character section identifier
1003 * Returns a pointer to the specified errorlog or NULL if not found.
1005 struct pseries_errorlog
*get_pseries_errorlog(struct rtas_error_log
*log
,
1006 uint16_t section_id
)
1008 struct rtas_ext_event_log_v6
*ext_log
=
1009 (struct rtas_ext_event_log_v6
*)log
->buffer
;
1010 struct pseries_errorlog
*sect
;
1011 unsigned char *p
, *log_end
;
1012 uint32_t ext_log_length
= rtas_error_extended_log_length(log
);
1013 uint8_t log_format
= rtas_ext_event_log_format(ext_log
);
1014 uint32_t company_id
= rtas_ext_event_company_id(ext_log
);
1016 /* Check that we understand the format */
1017 if (ext_log_length
< sizeof(struct rtas_ext_event_log_v6
) ||
1018 log_format
!= RTAS_V6EXT_LOG_FORMAT_EVENT_LOG
||
1019 company_id
!= RTAS_V6EXT_COMPANY_ID_IBM
)
1022 log_end
= log
->buffer
+ ext_log_length
;
1023 p
= ext_log
->vendor_log
;
1025 while (p
< log_end
) {
1026 sect
= (struct pseries_errorlog
*)p
;
1027 if (pseries_errorlog_id(sect
) == section_id
)
1029 p
+= pseries_errorlog_length(sect
);
1035 /* We assume to be passed big endian arguments */
1036 asmlinkage
int ppc_rtas(struct rtas_args __user
*uargs
)
1038 struct rtas_args args
;
1039 unsigned long flags
;
1040 char *buff_copy
, *errbuf
= NULL
;
1041 int nargs
, nret
, token
;
1043 if (!capable(CAP_SYS_ADMIN
))
1046 if (copy_from_user(&args
, uargs
, 3 * sizeof(u32
)) != 0)
1049 nargs
= be32_to_cpu(args
.nargs
);
1050 nret
= be32_to_cpu(args
.nret
);
1051 token
= be32_to_cpu(args
.token
);
1053 if (nargs
> ARRAY_SIZE(args
.args
)
1054 || nret
> ARRAY_SIZE(args
.args
)
1055 || nargs
+ nret
> ARRAY_SIZE(args
.args
))
1059 if (copy_from_user(args
.args
, uargs
->args
,
1060 nargs
* sizeof(rtas_arg_t
)) != 0)
1063 if (token
== RTAS_UNKNOWN_SERVICE
)
1066 args
.rets
= &args
.args
[nargs
];
1067 memset(args
.rets
, 0, nret
* sizeof(rtas_arg_t
));
1069 /* Need to handle ibm,suspend_me call specially */
1070 if (token
== ibm_suspend_me_token
) {
1073 * rtas_ibm_suspend_me assumes the streamid handle is in cpu
1074 * endian, or at least the hcall within it requires it.
1077 u64 handle
= ((u64
)be32_to_cpu(args
.args
[0]) << 32)
1078 | be32_to_cpu(args
.args
[1]);
1079 rc
= rtas_ibm_suspend_me(handle
);
1081 args
.rets
[0] = cpu_to_be32(RTAS_NOT_SUSPENDABLE
);
1082 else if (rc
== -EIO
)
1083 args
.rets
[0] = cpu_to_be32(-1);
1089 buff_copy
= get_errorlog_buffer();
1091 flags
= lock_rtas();
1094 enter_rtas(__pa(&rtas
.args
));
1097 /* A -1 return code indicates that the last command couldn't
1098 be completed due to a hardware error. */
1099 if (be32_to_cpu(args
.rets
[0]) == -1)
1100 errbuf
= __fetch_rtas_last_error(buff_copy
);
1106 log_error(errbuf
, ERR_TYPE_RTAS_LOG
, 0);
1111 /* Copy out args. */
1112 if (copy_to_user(uargs
->args
+ nargs
,
1114 nret
* sizeof(rtas_arg_t
)) != 0)
1121 * Call early during boot, before mem init, to retrieve the RTAS
1122 * information from the device-tree and allocate the RMO buffer for userland
1125 void __init
rtas_initialize(void)
1127 unsigned long rtas_region
= RTAS_INSTANTIATE_MAX
;
1129 /* Get RTAS dev node and fill up our "rtas" structure with infos
1132 rtas
.dev
= of_find_node_by_name(NULL
, "rtas");
1134 const __be32
*basep
, *entryp
, *sizep
;
1136 basep
= of_get_property(rtas
.dev
, "linux,rtas-base", NULL
);
1137 sizep
= of_get_property(rtas
.dev
, "rtas-size", NULL
);
1138 if (basep
!= NULL
&& sizep
!= NULL
) {
1139 rtas
.base
= __be32_to_cpu(*basep
);
1140 rtas
.size
= __be32_to_cpu(*sizep
);
1141 entryp
= of_get_property(rtas
.dev
,
1142 "linux,rtas-entry", NULL
);
1143 if (entryp
== NULL
) /* Ugh */
1144 rtas
.entry
= rtas
.base
;
1146 rtas
.entry
= __be32_to_cpu(*entryp
);
1153 /* If RTAS was found, allocate the RMO buffer for it and look for
1154 * the stop-self token if any
1157 if (machine_is(pseries
) && firmware_has_feature(FW_FEATURE_LPAR
)) {
1158 rtas_region
= min(ppc64_rma_size
, RTAS_INSTANTIATE_MAX
);
1159 ibm_suspend_me_token
= rtas_token("ibm,suspend-me");
1162 rtas_rmo_buf
= memblock_alloc_base(RTAS_RMOBUF_MAX
, PAGE_SIZE
, rtas_region
);
1164 #ifdef CONFIG_RTAS_ERROR_LOGGING
1165 rtas_last_error_token
= rtas_token("rtas-last-error");
1169 int __init
early_init_dt_scan_rtas(unsigned long node
,
1170 const char *uname
, int depth
, void *data
)
1172 const u32
*basep
, *entryp
, *sizep
;
1174 if (depth
!= 1 || strcmp(uname
, "rtas") != 0)
1177 basep
= of_get_flat_dt_prop(node
, "linux,rtas-base", NULL
);
1178 entryp
= of_get_flat_dt_prop(node
, "linux,rtas-entry", NULL
);
1179 sizep
= of_get_flat_dt_prop(node
, "rtas-size", NULL
);
1181 if (basep
&& entryp
&& sizep
) {
1183 rtas
.entry
= *entryp
;
1187 #ifdef CONFIG_UDBG_RTAS_CONSOLE
1188 basep
= of_get_flat_dt_prop(node
, "put-term-char", NULL
);
1190 rtas_putchar_token
= *basep
;
1192 basep
= of_get_flat_dt_prop(node
, "get-term-char", NULL
);
1194 rtas_getchar_token
= *basep
;
1196 if (rtas_putchar_token
!= RTAS_UNKNOWN_SERVICE
&&
1197 rtas_getchar_token
!= RTAS_UNKNOWN_SERVICE
)
1198 udbg_init_rtas_console();
1206 static arch_spinlock_t timebase_lock
;
1207 static u64 timebase
= 0;
1209 void rtas_give_timebase(void)
1211 unsigned long flags
;
1213 local_irq_save(flags
);
1215 arch_spin_lock(&timebase_lock
);
1216 rtas_call(rtas_token("freeze-time-base"), 0, 1, NULL
);
1217 timebase
= get_tb();
1218 arch_spin_unlock(&timebase_lock
);
1222 rtas_call(rtas_token("thaw-time-base"), 0, 1, NULL
);
1223 local_irq_restore(flags
);
1226 void rtas_take_timebase(void)
1230 arch_spin_lock(&timebase_lock
);
1231 set_tb(timebase
>> 32, timebase
& 0xffffffff);
1233 arch_spin_unlock(&timebase_lock
);