blob: 43e1518653d556f40f6d39cc1c2c751f690c23c8 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 *
3 * Procedures for interfacing to the RTAS on CHRP machines.
4 *
5 * Peter Bergner, IBM March 2001.
6 * Copyright (C) 2001 IBM.
7 *
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.
12 */
13
14#include <stdarg.h>
15#include <linux/kernel.h>
16#include <linux/types.h>
17#include <linux/spinlock.h>
18#include <linux/module.h>
19#include <linux/init.h>
20
21#include <asm/prom.h>
22#include <asm/rtas.h>
23#include <asm/semaphore.h>
24#include <asm/machdep.h>
25#include <asm/page.h>
26#include <asm/param.h>
27#include <asm/system.h>
28#include <asm/abs_addr.h>
29#include <asm/udbg.h>
30#include <asm/delay.h>
31#include <asm/uaccess.h>
32#include <asm/systemcfg.h>
33
34struct flash_block_list_header rtas_firmware_flash_list = {0, NULL};
35
36struct rtas_t rtas = {
37 .lock = SPIN_LOCK_UNLOCKED
38};
39
40EXPORT_SYMBOL(rtas);
41
42char rtas_err_buf[RTAS_ERROR_LOG_MAX];
43
44DEFINE_SPINLOCK(rtas_data_buf_lock);
45char rtas_data_buf[RTAS_DATA_BUF_SIZE]__page_aligned;
46unsigned long rtas_rmo_buf;
47
48void
49call_rtas_display_status(unsigned char c)
50{
51 struct rtas_args *args = &rtas.args;
52 unsigned long s;
53
54 if (!rtas.base)
55 return;
56 spin_lock_irqsave(&rtas.lock, s);
57
58 args->token = 10;
59 args->nargs = 1;
60 args->nret = 1;
61 args->rets = (rtas_arg_t *)&(args->args[1]);
62 args->args[0] = (int)c;
63
64 enter_rtas(__pa(args));
65
66 spin_unlock_irqrestore(&rtas.lock, s);
67}
68
69void
70call_rtas_display_status_delay(unsigned char c)
71{
72 static int pending_newline = 0; /* did last write end with unprinted newline? */
73 static int width = 16;
74
75 if (c == '\n') {
76 while (width-- > 0)
77 call_rtas_display_status(' ');
78 width = 16;
79 udelay(500000);
80 pending_newline = 1;
81 } else {
82 if (pending_newline) {
83 call_rtas_display_status('\r');
84 call_rtas_display_status('\n');
85 }
86 pending_newline = 0;
87 if (width--) {
88 call_rtas_display_status(c);
89 udelay(10000);
90 }
91 }
92}
93
Arnd Bergmann6566c6f2005-06-23 09:43:28 +100094void
95rtas_progress(char *s, unsigned short hex)
96{
97 struct device_node *root;
98 int width, *p;
99 char *os;
100 static int display_character, set_indicator;
101 static int max_width;
102 static DEFINE_SPINLOCK(progress_lock);
103 static int pending_newline = 0; /* did last write end with unprinted newline? */
104
105 if (!rtas.base)
106 return;
107
108 if (max_width == 0) {
109 if ((root = find_path_device("/rtas")) &&
110 (p = (unsigned int *)get_property(root,
111 "ibm,display-line-length",
112 NULL)))
113 max_width = *p;
114 else
115 max_width = 0x10;
116 display_character = rtas_token("display-character");
117 set_indicator = rtas_token("set-indicator");
118 }
119
120 if (display_character == RTAS_UNKNOWN_SERVICE) {
121 /* use hex display if available */
122 if (set_indicator != RTAS_UNKNOWN_SERVICE)
123 rtas_call(set_indicator, 3, 1, NULL, 6, 0, hex);
124 return;
125 }
126
127 spin_lock(&progress_lock);
128
129 /*
130 * Last write ended with newline, but we didn't print it since
131 * it would just clear the bottom line of output. Print it now
132 * instead.
133 *
134 * If no newline is pending, print a CR to start output at the
135 * beginning of the line.
136 */
137 if (pending_newline) {
138 rtas_call(display_character, 1, 1, NULL, '\r');
139 rtas_call(display_character, 1, 1, NULL, '\n');
140 pending_newline = 0;
141 } else {
142 rtas_call(display_character, 1, 1, NULL, '\r');
143 }
144
145 width = max_width;
146 os = s;
147 while (*os) {
148 if (*os == '\n' || *os == '\r') {
149 /* Blank to end of line. */
150 while (width-- > 0)
151 rtas_call(display_character, 1, 1, NULL, ' ');
152
153 /* If newline is the last character, save it
154 * until next call to avoid bumping up the
155 * display output.
156 */
157 if (*os == '\n' && !os[1]) {
158 pending_newline = 1;
159 spin_unlock(&progress_lock);
160 return;
161 }
162
163 /* RTAS wants CR-LF, not just LF */
164
165 if (*os == '\n') {
166 rtas_call(display_character, 1, 1, NULL, '\r');
167 rtas_call(display_character, 1, 1, NULL, '\n');
168 } else {
169 /* CR might be used to re-draw a line, so we'll
170 * leave it alone and not add LF.
171 */
172 rtas_call(display_character, 1, 1, NULL, *os);
173 }
174
175 width = max_width;
176 } else {
177 width--;
178 rtas_call(display_character, 1, 1, NULL, *os);
179 }
180
181 os++;
182
183 /* if we overwrite the screen length */
184 if (width <= 0)
185 while ((*os != 0) && (*os != '\n') && (*os != '\r'))
186 os++;
187 }
188
189 /* Blank to end of line. */
190 while (width-- > 0)
191 rtas_call(display_character, 1, 1, NULL, ' ');
192
193 spin_unlock(&progress_lock);
194}
195
Linus Torvalds1da177e2005-04-16 15:20:36 -0700196int
197rtas_token(const char *service)
198{
199 int *tokp;
200 if (rtas.dev == NULL) {
201 PPCDBG(PPCDBG_RTAS,"\tNo rtas device in device-tree...\n");
202 return RTAS_UNKNOWN_SERVICE;
203 }
204 tokp = (int *) get_property(rtas.dev, service, NULL);
205 return tokp ? *tokp : RTAS_UNKNOWN_SERVICE;
206}
207
208/*
209 * Return the firmware-specified size of the error log buffer
210 * for all rtas calls that require an error buffer argument.
211 * This includes 'check-exception' and 'rtas-last-error'.
212 */
213int rtas_get_error_log_max(void)
214{
215 static int rtas_error_log_max;
216 if (rtas_error_log_max)
217 return rtas_error_log_max;
218
219 rtas_error_log_max = rtas_token ("rtas-error-log-max");
220 if ((rtas_error_log_max == RTAS_UNKNOWN_SERVICE) ||
221 (rtas_error_log_max > RTAS_ERROR_LOG_MAX)) {
222 printk (KERN_WARNING "RTAS: bad log buffer size %d\n", rtas_error_log_max);
223 rtas_error_log_max = RTAS_ERROR_LOG_MAX;
224 }
225 return rtas_error_log_max;
226}
227
228
229/** Return a copy of the detailed error text associated with the
230 * most recent failed call to rtas. Because the error text
231 * might go stale if there are any other intervening rtas calls,
232 * this routine must be called atomically with whatever produced
233 * the error (i.e. with rtas.lock still held from the previous call).
234 */
235static int
236__fetch_rtas_last_error(void)
237{
238 struct rtas_args err_args, save_args;
239 u32 bufsz;
240
241 bufsz = rtas_get_error_log_max();
242
243 err_args.token = rtas_token("rtas-last-error");
244 err_args.nargs = 2;
245 err_args.nret = 1;
246
247 err_args.args[0] = (rtas_arg_t)__pa(rtas_err_buf);
248 err_args.args[1] = bufsz;
249 err_args.args[2] = 0;
250
251 save_args = rtas.args;
252 rtas.args = err_args;
253
254 enter_rtas(__pa(&rtas.args));
255
256 err_args = rtas.args;
257 rtas.args = save_args;
258
259 return err_args.args[2];
260}
261
262int rtas_call(int token, int nargs, int nret, int *outputs, ...)
263{
264 va_list list;
265 int i, logit = 0;
266 unsigned long s;
267 struct rtas_args *rtas_args;
268 char * buff_copy = NULL;
269 int ret;
270
271 PPCDBG(PPCDBG_RTAS, "Entering rtas_call\n");
272 PPCDBG(PPCDBG_RTAS, "\ttoken = 0x%x\n", token);
273 PPCDBG(PPCDBG_RTAS, "\tnargs = %d\n", nargs);
274 PPCDBG(PPCDBG_RTAS, "\tnret = %d\n", nret);
275 PPCDBG(PPCDBG_RTAS, "\t&outputs = 0x%lx\n", outputs);
276 if (token == RTAS_UNKNOWN_SERVICE)
277 return -1;
278
279 /* Gotta do something different here, use global lock for now... */
280 spin_lock_irqsave(&rtas.lock, s);
281 rtas_args = &rtas.args;
282
283 rtas_args->token = token;
284 rtas_args->nargs = nargs;
285 rtas_args->nret = nret;
286 rtas_args->rets = (rtas_arg_t *)&(rtas_args->args[nargs]);
287 va_start(list, outputs);
288 for (i = 0; i < nargs; ++i) {
289 rtas_args->args[i] = va_arg(list, rtas_arg_t);
290 PPCDBG(PPCDBG_RTAS, "\tnarg[%d] = 0x%x\n", i, rtas_args->args[i]);
291 }
292 va_end(list);
293
294 for (i = 0; i < nret; ++i)
295 rtas_args->rets[i] = 0;
296
297 PPCDBG(PPCDBG_RTAS, "\tentering rtas with 0x%lx\n",
298 __pa(rtas_args));
299 enter_rtas(__pa(rtas_args));
300 PPCDBG(PPCDBG_RTAS, "\treturned from rtas ...\n");
301
302 /* A -1 return code indicates that the last command couldn't
303 be completed due to a hardware error. */
304 if (rtas_args->rets[0] == -1)
305 logit = (__fetch_rtas_last_error() == 0);
306
307 ifppcdebug(PPCDBG_RTAS) {
308 for(i=0; i < nret ;i++)
309 udbg_printf("\tnret[%d] = 0x%lx\n", i, (ulong)rtas_args->rets[i]);
310 }
311
312 if (nret > 1 && outputs != NULL)
313 for (i = 0; i < nret-1; ++i)
314 outputs[i] = rtas_args->rets[i+1];
315 ret = (nret > 0)? rtas_args->rets[0]: 0;
316
317 /* Log the error in the unlikely case that there was one. */
318 if (unlikely(logit)) {
319 buff_copy = rtas_err_buf;
320 if (mem_init_done) {
321 buff_copy = kmalloc(RTAS_ERROR_LOG_MAX, GFP_ATOMIC);
322 if (buff_copy)
323 memcpy(buff_copy, rtas_err_buf,
324 RTAS_ERROR_LOG_MAX);
325 }
326 }
327
328 /* Gotta do something different here, use global lock for now... */
329 spin_unlock_irqrestore(&rtas.lock, s);
330
331 if (buff_copy) {
332 log_error(buff_copy, ERR_TYPE_RTAS_LOG, 0);
333 if (mem_init_done)
334 kfree(buff_copy);
335 }
336 return ret;
337}
338
339/* Given an RTAS status code of 990n compute the hinted delay of 10^n
340 * (last digit) milliseconds. For now we bound at n=5 (100 sec).
341 */
342unsigned int
343rtas_extended_busy_delay_time(int status)
344{
345 int order = status - 9900;
346 unsigned long ms;
347
348 if (order < 0)
349 order = 0; /* RTC depends on this for -2 clock busy */
350 else if (order > 5)
351 order = 5; /* bound */
352
353 /* Use microseconds for reasonable accuracy */
354 for (ms=1; order > 0; order--)
355 ms *= 10;
356
357 return ms;
358}
359
360int rtas_error_rc(int rtas_rc)
361{
362 int rc;
363
364 switch (rtas_rc) {
365 case -1: /* Hardware Error */
366 rc = -EIO;
367 break;
368 case -3: /* Bad indicator/domain/etc */
369 rc = -EINVAL;
370 break;
371 case -9000: /* Isolation error */
372 rc = -EFAULT;
373 break;
374 case -9001: /* Outstanding TCE/PTE */
375 rc = -EEXIST;
376 break;
377 case -9002: /* No usable slot */
378 rc = -ENODEV;
379 break;
380 default:
381 printk(KERN_ERR "%s: unexpected RTAS error %d\n",
382 __FUNCTION__, rtas_rc);
383 rc = -ERANGE;
384 break;
385 }
386 return rc;
387}
388
389int rtas_get_power_level(int powerdomain, int *level)
390{
391 int token = rtas_token("get-power-level");
392 int rc;
393
394 if (token == RTAS_UNKNOWN_SERVICE)
395 return -ENOENT;
396
397 while ((rc = rtas_call(token, 1, 2, level, powerdomain)) == RTAS_BUSY)
398 udelay(1);
399
400 if (rc < 0)
401 return rtas_error_rc(rc);
402 return rc;
403}
404
405int rtas_set_power_level(int powerdomain, int level, int *setlevel)
406{
407 int token = rtas_token("set-power-level");
408 unsigned int wait_time;
409 int rc;
410
411 if (token == RTAS_UNKNOWN_SERVICE)
412 return -ENOENT;
413
414 while (1) {
415 rc = rtas_call(token, 2, 2, setlevel, powerdomain, level);
416 if (rc == RTAS_BUSY)
417 udelay(1);
418 else if (rtas_is_extended_busy(rc)) {
419 wait_time = rtas_extended_busy_delay_time(rc);
420 udelay(wait_time * 1000);
421 } else
422 break;
423 }
424
425 if (rc < 0)
426 return rtas_error_rc(rc);
427 return rc;
428}
429
430int rtas_get_sensor(int sensor, int index, int *state)
431{
432 int token = rtas_token("get-sensor-state");
433 unsigned int wait_time;
434 int rc;
435
436 if (token == RTAS_UNKNOWN_SERVICE)
437 return -ENOENT;
438
439 while (1) {
440 rc = rtas_call(token, 2, 2, state, sensor, index);
441 if (rc == RTAS_BUSY)
442 udelay(1);
443 else if (rtas_is_extended_busy(rc)) {
444 wait_time = rtas_extended_busy_delay_time(rc);
445 udelay(wait_time * 1000);
446 } else
447 break;
448 }
449
450 if (rc < 0)
451 return rtas_error_rc(rc);
452 return rc;
453}
454
455int rtas_set_indicator(int indicator, int index, int new_value)
456{
457 int token = rtas_token("set-indicator");
458 unsigned int wait_time;
459 int rc;
460
461 if (token == RTAS_UNKNOWN_SERVICE)
462 return -ENOENT;
463
464 while (1) {
465 rc = rtas_call(token, 3, 1, NULL, indicator, index, new_value);
466 if (rc == RTAS_BUSY)
467 udelay(1);
468 else if (rtas_is_extended_busy(rc)) {
469 wait_time = rtas_extended_busy_delay_time(rc);
470 udelay(wait_time * 1000);
471 }
472 else
473 break;
474 }
475
476 if (rc < 0)
477 return rtas_error_rc(rc);
478 return rc;
479}
480
481#define FLASH_BLOCK_LIST_VERSION (1UL)
482static void
483rtas_flash_firmware(void)
484{
485 unsigned long image_size;
486 struct flash_block_list *f, *next, *flist;
487 unsigned long rtas_block_list;
488 int i, status, update_token;
489
490 update_token = rtas_token("ibm,update-flash-64-and-reboot");
491 if (update_token == RTAS_UNKNOWN_SERVICE) {
492 printk(KERN_ALERT "FLASH: ibm,update-flash-64-and-reboot is not available -- not a service partition?\n");
493 printk(KERN_ALERT "FLASH: firmware will not be flashed\n");
494 return;
495 }
496
497 /* NOTE: the "first" block list is a global var with no data
498 * blocks in the kernel data segment. We do this because
499 * we want to ensure this block_list addr is under 4GB.
500 */
501 rtas_firmware_flash_list.num_blocks = 0;
502 flist = (struct flash_block_list *)&rtas_firmware_flash_list;
503 rtas_block_list = virt_to_abs(flist);
504 if (rtas_block_list >= 4UL*1024*1024*1024) {
505 printk(KERN_ALERT "FLASH: kernel bug...flash list header addr above 4GB\n");
506 return;
507 }
508
509 printk(KERN_ALERT "FLASH: preparing saved firmware image for flash\n");
510 /* Update the block_list in place. */
511 image_size = 0;
512 for (f = flist; f; f = next) {
513 /* Translate data addrs to absolute */
514 for (i = 0; i < f->num_blocks; i++) {
515 f->blocks[i].data = (char *)virt_to_abs(f->blocks[i].data);
516 image_size += f->blocks[i].length;
517 }
518 next = f->next;
519 /* Don't translate NULL pointer for last entry */
520 if (f->next)
521 f->next = (struct flash_block_list *)virt_to_abs(f->next);
522 else
523 f->next = NULL;
524 /* make num_blocks into the version/length field */
525 f->num_blocks = (FLASH_BLOCK_LIST_VERSION << 56) | ((f->num_blocks+1)*16);
526 }
527
528 printk(KERN_ALERT "FLASH: flash image is %ld bytes\n", image_size);
529 printk(KERN_ALERT "FLASH: performing flash and reboot\n");
Arnd Bergmann6566c6f2005-06-23 09:43:28 +1000530 rtas_progress("Flashing \n", 0x0);
531 rtas_progress("Please Wait... ", 0x0);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700532 printk(KERN_ALERT "FLASH: this will take several minutes. Do not power off!\n");
533 status = rtas_call(update_token, 1, 1, NULL, rtas_block_list);
534 switch (status) { /* should only get "bad" status */
535 case 0:
536 printk(KERN_ALERT "FLASH: success\n");
537 break;
538 case -1:
539 printk(KERN_ALERT "FLASH: hardware error. Firmware may not be not flashed\n");
540 break;
541 case -3:
542 printk(KERN_ALERT "FLASH: image is corrupt or not correct for this platform. Firmware not flashed\n");
543 break;
544 case -4:
545 printk(KERN_ALERT "FLASH: flash failed when partially complete. System may not reboot\n");
546 break;
547 default:
548 printk(KERN_ALERT "FLASH: unknown flash return code %d\n", status);
549 break;
550 }
551}
552
553void rtas_flash_bypass_warning(void)
554{
555 printk(KERN_ALERT "FLASH: firmware flash requires a reboot\n");
556 printk(KERN_ALERT "FLASH: the firmware image will NOT be flashed\n");
557}
558
559
560void
561rtas_restart(char *cmd)
562{
563 if (rtas_firmware_flash_list.next)
564 rtas_flash_firmware();
565
566 printk("RTAS system-reboot returned %d\n",
567 rtas_call(rtas_token("system-reboot"), 0, 1, NULL));
568 for (;;);
569}
570
571void
572rtas_power_off(void)
573{
574 if (rtas_firmware_flash_list.next)
575 rtas_flash_bypass_warning();
576 /* allow power on only with power button press */
577 printk("RTAS power-off returned %d\n",
578 rtas_call(rtas_token("power-off"), 2, 1, NULL, -1, -1));
579 for (;;);
580}
581
582void
583rtas_halt(void)
584{
585 if (rtas_firmware_flash_list.next)
586 rtas_flash_bypass_warning();
587 rtas_power_off();
588}
589
590/* Must be in the RMO region, so we place it here */
591static char rtas_os_term_buf[2048];
592
593void rtas_os_term(char *str)
594{
595 int status;
596
597 if (RTAS_UNKNOWN_SERVICE == rtas_token("ibm,os-term"))
598 return;
599
600 snprintf(rtas_os_term_buf, 2048, "OS panic: %s", str);
601
602 do {
603 status = rtas_call(rtas_token("ibm,os-term"), 1, 1, NULL,
604 __pa(rtas_os_term_buf));
605
606 if (status == RTAS_BUSY)
607 udelay(1);
608 else if (status != 0)
609 printk(KERN_EMERG "ibm,os-term call failed %d\n",
610 status);
611 } while (status == RTAS_BUSY);
612}
613
614
615asmlinkage int ppc_rtas(struct rtas_args __user *uargs)
616{
617 struct rtas_args args;
618 unsigned long flags;
619 char * buff_copy;
620 int nargs;
621 int err_rc = 0;
622
623 if (!capable(CAP_SYS_ADMIN))
624 return -EPERM;
625
626 if (copy_from_user(&args, uargs, 3 * sizeof(u32)) != 0)
627 return -EFAULT;
628
629 nargs = args.nargs;
630 if (nargs > ARRAY_SIZE(args.args)
631 || args.nret > ARRAY_SIZE(args.args)
632 || nargs + args.nret > ARRAY_SIZE(args.args))
633 return -EINVAL;
634
635 /* Copy in args. */
636 if (copy_from_user(args.args, uargs->args,
637 nargs * sizeof(rtas_arg_t)) != 0)
638 return -EFAULT;
639
640 buff_copy = kmalloc(RTAS_ERROR_LOG_MAX, GFP_KERNEL);
641
642 spin_lock_irqsave(&rtas.lock, flags);
643
644 rtas.args = args;
645 enter_rtas(__pa(&rtas.args));
646 args = rtas.args;
647
648 args.rets = &args.args[nargs];
649
650 /* A -1 return code indicates that the last command couldn't
651 be completed due to a hardware error. */
652 if (args.rets[0] == -1) {
653 err_rc = __fetch_rtas_last_error();
654 if ((err_rc == 0) && buff_copy) {
655 memcpy(buff_copy, rtas_err_buf, RTAS_ERROR_LOG_MAX);
656 }
657 }
658
659 spin_unlock_irqrestore(&rtas.lock, flags);
660
661 if (buff_copy) {
662 if ((args.rets[0] == -1) && (err_rc == 0)) {
663 log_error(buff_copy, ERR_TYPE_RTAS_LOG, 0);
664 }
665 kfree(buff_copy);
666 }
667
668 /* Copy out args. */
669 if (copy_to_user(uargs->args + nargs,
670 args.args + nargs,
671 args.nret * sizeof(rtas_arg_t)) != 0)
672 return -EFAULT;
673
674 return 0;
675}
676
677/* This version can't take the spinlock, because it never returns */
678
679struct rtas_args rtas_stop_self_args = {
680 /* The token is initialized for real in setup_system() */
681 .token = RTAS_UNKNOWN_SERVICE,
682 .nargs = 0,
683 .nret = 1,
684 .rets = &rtas_stop_self_args.args[0],
685};
686
687void rtas_stop_self(void)
688{
689 struct rtas_args *rtas_args = &rtas_stop_self_args;
690
691 local_irq_disable();
692
693 BUG_ON(rtas_args->token == RTAS_UNKNOWN_SERVICE);
694
695 printk("cpu %u (hwid %u) Ready to die...\n",
696 smp_processor_id(), hard_smp_processor_id());
697 enter_rtas(__pa(rtas_args));
698
699 panic("Alas, I survived.\n");
700}
701
702/*
703 * Call early during boot, before mem init or bootmem, to retreive the RTAS
704 * informations from the device-tree and allocate the RMO buffer for userland
705 * accesses.
706 */
707void __init rtas_initialize(void)
708{
709 /* Get RTAS dev node and fill up our "rtas" structure with infos
710 * about it.
711 */
712 rtas.dev = of_find_node_by_name(NULL, "rtas");
713 if (rtas.dev) {
714 u32 *basep, *entryp;
715 u32 *sizep;
716
717 basep = (u32 *)get_property(rtas.dev, "linux,rtas-base", NULL);
718 sizep = (u32 *)get_property(rtas.dev, "rtas-size", NULL);
719 if (basep != NULL && sizep != NULL) {
720 rtas.base = *basep;
721 rtas.size = *sizep;
722 entryp = (u32 *)get_property(rtas.dev, "linux,rtas-entry", NULL);
723 if (entryp == NULL) /* Ugh */
724 rtas.entry = rtas.base;
725 else
726 rtas.entry = *entryp;
727 } else
728 rtas.dev = NULL;
729 }
730 /* If RTAS was found, allocate the RMO buffer for it and look for
731 * the stop-self token if any
732 */
733 if (rtas.dev) {
734 unsigned long rtas_region = RTAS_INSTANTIATE_MAX;
735 if (systemcfg->platform == PLATFORM_PSERIES_LPAR)
736 rtas_region = min(lmb.rmo_size, RTAS_INSTANTIATE_MAX);
737
738 rtas_rmo_buf = lmb_alloc_base(RTAS_RMOBUF_MAX, PAGE_SIZE,
739 rtas_region);
740
741#ifdef CONFIG_HOTPLUG_CPU
742 rtas_stop_self_args.token = rtas_token("stop-self");
743#endif /* CONFIG_HOTPLUG_CPU */
744 }
745
746}
747
748
749EXPORT_SYMBOL(rtas_firmware_flash_list);
750EXPORT_SYMBOL(rtas_token);
751EXPORT_SYMBOL(rtas_call);
752EXPORT_SYMBOL(rtas_data_buf);
753EXPORT_SYMBOL(rtas_data_buf_lock);
754EXPORT_SYMBOL(rtas_extended_busy_delay_time);
755EXPORT_SYMBOL(rtas_get_sensor);
756EXPORT_SYMBOL(rtas_get_power_level);
757EXPORT_SYMBOL(rtas_set_power_level);
758EXPORT_SYMBOL(rtas_set_indicator);
759EXPORT_SYMBOL(rtas_get_error_log_max);