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14a43e69
BH
1/*
2 * PowerNV OPAL high level interfaces
3 *
4 * Copyright 2011 IBM Corp.
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 */
11
c8742f85 12#define pr_fmt(fmt) "opal: " fmt
14a43e69 13
c8742f85 14#include <linux/printk.h>
14a43e69
BH
15#include <linux/types.h>
16#include <linux/of.h>
26a2056e 17#include <linux/of_fdt.h>
14a43e69 18#include <linux/of_platform.h>
8f95faaa 19#include <linux/of_address.h>
a125e092 20#include <linux/interrupt.h>
1bc98de2 21#include <linux/notifier.h>
73ed148a 22#include <linux/slab.h>
b63a0ffe 23#include <linux/sched.h>
6f68b5e2 24#include <linux/kobject.h>
f7d98d18 25#include <linux/delay.h>
55672ecf 26#include <linux/memblock.h>
3bf57561
BH
27#include <linux/kthread.h>
28#include <linux/freezer.h>
b746e3e0
NP
29#include <linux/printk.h>
30#include <linux/kmsg_dump.h>
31#include <linux/console.h>
32#include <linux/sched/debug.h>
b14726c5
ME
33
34#include <asm/machdep.h>
14a43e69
BH
35#include <asm/opal.h>
36#include <asm/firmware.h>
36df96f8 37#include <asm/mce.h>
8f95faaa 38#include <asm/imc-pmu.h>
6fcd6baa 39#include <asm/bug.h>
14a43e69
BH
40
41#include "powernv.h"
42
6f68b5e2
VH
43/* /sys/firmware/opal */
44struct kobject *opal_kobj;
45
14a43e69
BH
46struct opal {
47 u64 base;
48 u64 entry;
55672ecf 49 u64 size;
14a43e69
BH
50} opal;
51
55672ecf
MS
52struct mcheck_recoverable_range {
53 u64 start_addr;
54 u64 end_addr;
55 u64 recover_addr;
56};
57
58static struct mcheck_recoverable_range *mc_recoverable_range;
59static int mc_recoverable_range_len;
60
bfc36894 61struct device_node *opal_node;
14a43e69 62static DEFINE_SPINLOCK(opal_write_lock);
24366360 63static struct atomic_notifier_head opal_msg_notifier_head[OPAL_MSG_TYPE_MAX];
3bf57561 64static uint32_t opal_heartbeat;
a203658b 65static struct task_struct *kopald_tsk;
14a43e69 66
d3cbff1b 67void opal_configure_cores(void)
4926616c 68{
1c0eaf0f
BH
69 u64 reinit_flags = 0;
70
4926616c
BH
71 /* Do the actual re-init, This will clobber all FPRs, VRs, etc...
72 *
73 * It will preserve non volatile GPRs and HSPRG0/1. It will
74 * also restore HIDs and other SPRs to their original value
75 * but it might clobber a bunch.
76 */
77#ifdef __BIG_ENDIAN__
1c0eaf0f 78 reinit_flags |= OPAL_REINIT_CPUS_HILE_BE;
4926616c 79#else
1c0eaf0f 80 reinit_flags |= OPAL_REINIT_CPUS_HILE_LE;
4926616c 81#endif
d3cbff1b 82
1c0eaf0f
BH
83 /*
84 * POWER9 always support running hash:
85 * ie. Host hash supports hash guests
86 * Host radix supports hash/radix guests
87 */
a70b487b 88 if (early_cpu_has_feature(CPU_FTR_ARCH_300)) {
1c0eaf0f
BH
89 reinit_flags |= OPAL_REINIT_CPUS_MMU_HASH;
90 if (early_radix_enabled())
91 reinit_flags |= OPAL_REINIT_CPUS_MMU_RADIX;
92 }
93
94 opal_reinit_cpus(reinit_flags);
95
d3cbff1b
BH
96 /* Restore some bits */
97 if (cur_cpu_spec->cpu_restore)
98 cur_cpu_spec->cpu_restore();
4926616c
BH
99}
100
14a43e69
BH
101int __init early_init_dt_scan_opal(unsigned long node,
102 const char *uname, int depth, void *data)
103{
55672ecf 104 const void *basep, *entryp, *sizep;
9d0c4dfe 105 int basesz, entrysz, runtimesz;
14a43e69
BH
106
107 if (depth != 1 || strcmp(uname, "ibm,opal") != 0)
108 return 0;
109
110 basep = of_get_flat_dt_prop(node, "opal-base-address", &basesz);
111 entryp = of_get_flat_dt_prop(node, "opal-entry-address", &entrysz);
55672ecf 112 sizep = of_get_flat_dt_prop(node, "opal-runtime-size", &runtimesz);
14a43e69 113
55672ecf 114 if (!basep || !entryp || !sizep)
14a43e69
BH
115 return 1;
116
117 opal.base = of_read_number(basep, basesz/4);
118 opal.entry = of_read_number(entryp, entrysz/4);
55672ecf 119 opal.size = of_read_number(sizep, runtimesz/4);
14a43e69 120
9d0c4dfe 121 pr_debug("OPAL Base = 0x%llx (basep=%p basesz=%d)\n",
14a43e69 122 opal.base, basep, basesz);
9d0c4dfe 123 pr_debug("OPAL Entry = 0x%llx (entryp=%p basesz=%d)\n",
14a43e69 124 opal.entry, entryp, entrysz);
9d0c4dfe 125 pr_debug("OPAL Entry = 0x%llx (sizep=%p runtimesz=%d)\n",
55672ecf 126 opal.size, sizep, runtimesz);
14a43e69 127
75b93da4 128 if (of_flat_dt_is_compatible(node, "ibm,opal-v3")) {
e4d54f71
SS
129 powerpc_firmware_features |= FW_FEATURE_OPAL;
130 pr_info("OPAL detected !\n");
14a43e69 131 } else {
786842b6 132 panic("OPAL != V3 detected, no longer supported.\n");
14a43e69
BH
133 }
134
c4463b37
JK
135 return 1;
136}
137
55672ecf
MS
138int __init early_init_dt_scan_recoverable_ranges(unsigned long node,
139 const char *uname, int depth, void *data)
140{
9d0c4dfe 141 int i, psize, size;
55672ecf
MS
142 const __be32 *prop;
143
144 if (depth != 1 || strcmp(uname, "ibm,opal") != 0)
145 return 0;
146
6e556b47 147 prop = of_get_flat_dt_prop(node, "mcheck-recoverable-ranges", &psize);
55672ecf
MS
148
149 if (!prop)
150 return 1;
151
152 pr_debug("Found machine check recoverable ranges.\n");
153
6e556b47
MS
154 /*
155 * Calculate number of available entries.
156 *
157 * Each recoverable address range entry is (start address, len,
158 * recovery address), 2 cells each for start and recovery address,
159 * 1 cell for len, totalling 5 cells per entry.
160 */
161 mc_recoverable_range_len = psize / (sizeof(*prop) * 5);
162
163 /* Sanity check */
164 if (!mc_recoverable_range_len)
165 return 1;
166
167 /* Size required to hold all the entries. */
168 size = mc_recoverable_range_len *
169 sizeof(struct mcheck_recoverable_range);
170
55672ecf 171 /*
76b42e28 172 * Allocate a buffer to hold the MC recoverable ranges.
55672ecf 173 */
76b42e28 174 mc_recoverable_range =__va(memblock_alloc(size, __alignof__(u64)));
55672ecf
MS
175 memset(mc_recoverable_range, 0, size);
176
6e556b47 177 for (i = 0; i < mc_recoverable_range_len; i++) {
55672ecf
MS
178 mc_recoverable_range[i].start_addr =
179 of_read_number(prop + (i * 5) + 0, 2);
180 mc_recoverable_range[i].end_addr =
181 mc_recoverable_range[i].start_addr +
182 of_read_number(prop + (i * 5) + 2, 1);
183 mc_recoverable_range[i].recover_addr =
184 of_read_number(prop + (i * 5) + 3, 2);
185
186 pr_debug("Machine check recoverable range: %llx..%llx: %llx\n",
187 mc_recoverable_range[i].start_addr,
188 mc_recoverable_range[i].end_addr,
189 mc_recoverable_range[i].recover_addr);
190 }
55672ecf
MS
191 return 1;
192}
193
c4463b37
JK
194static int __init opal_register_exception_handlers(void)
195{
29186097 196#ifdef __BIG_ENDIAN__
c4463b37
JK
197 u64 glue;
198
199 if (!(powerpc_firmware_features & FW_FEATURE_OPAL))
200 return -ENODEV;
201
28446de2
MS
202 /* Hookup some exception handlers except machine check. We use the
203 * fwnmi area at 0x7000 to provide the glue space to OPAL
ed79ba9e
BH
204 */
205 glue = 0x7000;
6507955c
MS
206
207 /*
208 * Check if we are running on newer firmware that exports
209 * OPAL_HANDLE_HMI token. If yes, then don't ask OPAL to patch
210 * the HMI interrupt and we catch it directly in Linux.
211 *
212 * For older firmware (i.e currently released POWER8 System Firmware
213 * as of today <= SV810_087), we fallback to old behavior and let OPAL
214 * patch the HMI vector and handle it inside OPAL firmware.
215 *
216 * For newer firmware (in development/yet to be released) we will
217 * start catching/handling HMI directly in Linux.
218 */
219 if (!opal_check_token(OPAL_HANDLE_HMI)) {
08135139 220 pr_info("Old firmware detected, OPAL handles HMIs.\n");
6507955c
MS
221 opal_register_exception_handler(
222 OPAL_HYPERVISOR_MAINTENANCE_HANDLER,
223 0, glue);
224 glue += 128;
225 }
226
ed79ba9e 227 opal_register_exception_handler(OPAL_SOFTPATCH_HANDLER, 0, glue);
29186097 228#endif
ed79ba9e 229
c4463b37 230 return 0;
14a43e69 231}
b14726c5 232machine_early_initcall(powernv, opal_register_exception_handlers);
c4463b37 233
24366360
MS
234/*
235 * Opal message notifier based on message type. Allow subscribers to get
236 * notified for specific messgae type.
237 */
d7cf83fc 238int opal_message_notifier_register(enum opal_msg_type msg_type,
24366360
MS
239 struct notifier_block *nb)
240{
792f96e9
NG
241 if (!nb || msg_type >= OPAL_MSG_TYPE_MAX) {
242 pr_warning("%s: Invalid arguments, msg_type:%d\n",
24366360
MS
243 __func__, msg_type);
244 return -EINVAL;
245 }
792f96e9 246
24366360
MS
247 return atomic_notifier_chain_register(
248 &opal_msg_notifier_head[msg_type], nb);
249}
594fcb9e 250EXPORT_SYMBOL_GPL(opal_message_notifier_register);
24366360 251
df60f576 252int opal_message_notifier_unregister(enum opal_msg_type msg_type,
b921e902
NG
253 struct notifier_block *nb)
254{
255 return atomic_notifier_chain_unregister(
256 &opal_msg_notifier_head[msg_type], nb);
257}
594fcb9e 258EXPORT_SYMBOL_GPL(opal_message_notifier_unregister);
b921e902 259
24366360
MS
260static void opal_message_do_notify(uint32_t msg_type, void *msg)
261{
262 /* notify subscribers */
263 atomic_notifier_call_chain(&opal_msg_notifier_head[msg_type],
264 msg_type, msg);
265}
266
267static void opal_handle_message(void)
268{
269 s64 ret;
270 /*
271 * TODO: pre-allocate a message buffer depending on opal-msg-size
272 * value in /proc/device-tree.
273 */
274 static struct opal_msg msg;
bb4398e1 275 u32 type;
24366360
MS
276
277 ret = opal_get_msg(__pa(&msg), sizeof(msg));
278 /* No opal message pending. */
279 if (ret == OPAL_RESOURCE)
280 return;
281
282 /* check for errors. */
283 if (ret) {
1a84db56 284 pr_warning("%s: Failed to retrieve opal message, err=%lld\n",
24366360
MS
285 __func__, ret);
286 return;
287 }
288
bb4398e1
AB
289 type = be32_to_cpu(msg.msg_type);
290
24366360 291 /* Sanity check */
792f96e9 292 if (type >= OPAL_MSG_TYPE_MAX) {
98da62b7 293 pr_warn_once("%s: Unknown message type: %u\n", __func__, type);
24366360
MS
294 return;
295 }
bb4398e1 296 opal_message_do_notify(type, (void *)&msg);
24366360
MS
297}
298
a295af24 299static irqreturn_t opal_message_notify(int irq, void *data)
24366360 300{
a295af24
AP
301 opal_handle_message();
302 return IRQ_HANDLED;
24366360
MS
303}
304
24366360
MS
305static int __init opal_message_init(void)
306{
a295af24 307 int ret, i, irq;
24366360
MS
308
309 for (i = 0; i < OPAL_MSG_TYPE_MAX; i++)
310 ATOMIC_INIT_NOTIFIER_HEAD(&opal_msg_notifier_head[i]);
311
a295af24
AP
312 irq = opal_event_request(ilog2(OPAL_EVENT_MSG_PENDING));
313 if (!irq) {
314 pr_err("%s: Can't register OPAL event irq (%d)\n",
315 __func__, irq);
316 return irq;
317 }
318
319 ret = request_irq(irq, opal_message_notify,
320 IRQ_TYPE_LEVEL_HIGH, "opal-msg", NULL);
24366360 321 if (ret) {
a295af24 322 pr_err("%s: Can't request OPAL event irq (%d)\n",
24366360
MS
323 __func__, ret);
324 return ret;
325 }
a295af24 326
24366360
MS
327 return 0;
328}
24366360 329
14a43e69
BH
330int opal_get_chars(uint32_t vtermno, char *buf, int count)
331{
4f89363b
BH
332 s64 rc;
333 __be64 evt, len;
14a43e69
BH
334
335 if (!opal.entry)
daea1175 336 return -ENODEV;
14a43e69 337 opal_poll_events(&evt);
4f89363b 338 if ((be64_to_cpu(evt) & OPAL_EVENT_CONSOLE_INPUT) == 0)
14a43e69 339 return 0;
4f89363b 340 len = cpu_to_be64(count);
9d0c4dfe 341 rc = opal_console_read(vtermno, &len, buf);
14a43e69 342 if (rc == OPAL_SUCCESS)
4f89363b 343 return be64_to_cpu(len);
14a43e69
BH
344 return 0;
345}
346
347int opal_put_chars(uint32_t vtermno, const char *data, int total_len)
348{
349 int written = 0;
4f89363b 350 __be64 olen;
daea1175 351 s64 len, rc;
14a43e69 352 unsigned long flags;
4f89363b 353 __be64 evt;
14a43e69
BH
354
355 if (!opal.entry)
daea1175 356 return -ENODEV;
14a43e69
BH
357
358 /* We want put_chars to be atomic to avoid mangling of hvsi
359 * packets. To do that, we first test for room and return
daea1175
BH
360 * -EAGAIN if there isn't enough.
361 *
362 * Unfortunately, opal_console_write_buffer_space() doesn't
363 * appear to work on opal v1, so we just assume there is
364 * enough room and be done with it
14a43e69
BH
365 */
366 spin_lock_irqsave(&opal_write_lock, flags);
e4d54f71
SS
367 rc = opal_console_write_buffer_space(vtermno, &olen);
368 len = be64_to_cpu(olen);
369 if (rc || len < total_len) {
370 spin_unlock_irqrestore(&opal_write_lock, flags);
371 /* Closed -> drop characters */
372 if (rc)
373 return total_len;
374 opal_poll_events(NULL);
375 return -EAGAIN;
14a43e69
BH
376 }
377
378 /* We still try to handle partial completions, though they
379 * should no longer happen.
380 */
daea1175 381 rc = OPAL_BUSY;
14a43e69
BH
382 while(total_len > 0 && (rc == OPAL_BUSY ||
383 rc == OPAL_BUSY_EVENT || rc == OPAL_SUCCESS)) {
4f89363b
BH
384 olen = cpu_to_be64(total_len);
385 rc = opal_console_write(vtermno, &olen, data);
386 len = be64_to_cpu(olen);
1de1455f
BH
387
388 /* Closed or other error drop */
389 if (rc != OPAL_SUCCESS && rc != OPAL_BUSY &&
390 rc != OPAL_BUSY_EVENT) {
391 written = total_len;
392 break;
393 }
14a43e69
BH
394 if (rc == OPAL_SUCCESS) {
395 total_len -= len;
396 data += len;
397 written += len;
398 }
399 /* This is a bit nasty but we need that for the console to
400 * flush when there aren't any interrupts. We will clean
401 * things a bit later to limit that to synchronous path
402 * such as the kernel console and xmon/udbg
403 */
404 do
405 opal_poll_events(&evt);
4f89363b
BH
406 while(rc == OPAL_SUCCESS &&
407 (be64_to_cpu(evt) & OPAL_EVENT_CONSOLE_OUTPUT));
14a43e69
BH
408 }
409 spin_unlock_irqrestore(&opal_write_lock, flags);
410 return written;
411}
412
b63a0ffe
MS
413static int opal_recover_mce(struct pt_regs *regs,
414 struct machine_check_event *evt)
415{
416 int recovered = 0;
b63a0ffe
MS
417
418 if (!(regs->msr & MSR_RI)) {
419 /* If MSR_RI isn't set, we cannot recover */
c74dd88e 420 pr_err("Machine check interrupt unrecoverable: MSR(RI=0)\n");
b63a0ffe
MS
421 recovered = 0;
422 } else if (evt->disposition == MCE_DISPOSITION_RECOVERED) {
423 /* Platform corrected itself */
424 recovered = 1;
1363875b
NP
425 } else if (evt->severity == MCE_SEV_FATAL) {
426 /* Fatal machine check */
427 pr_err("Machine check interrupt is fatal\n");
428 recovered = 0;
6fcd6baa
NP
429 }
430
431 if (!recovered && evt->severity == MCE_SEV_ERROR_SYNC) {
b63a0ffe 432 /*
6fcd6baa
NP
433 * Try to kill processes if we get a synchronous machine check
434 * (e.g., one caused by execution of this instruction). This
435 * will devolve into a panic if we try to kill init or are in
436 * an interrupt etc.
b63a0ffe
MS
437 *
438 * TODO: Queue up this address for hwpoisioning later.
6fcd6baa
NP
439 * TODO: This is not quite right for d-side machine
440 * checks ->nip is not necessarily the important
441 * address.
b63a0ffe 442 */
6fcd6baa
NP
443 if ((user_mode(regs))) {
444 _exception(SIGBUS, regs, BUS_MCEERR_AR, regs->nip);
445 recovered = 1;
446 } else if (die_will_crash()) {
447 /*
448 * die() would kill the kernel, so better to go via
449 * the platform reboot code that will log the
450 * machine check.
451 */
452 recovered = 0;
453 } else {
454 die("Machine check", regs, SIGBUS);
455 recovered = 1;
456 }
b63a0ffe 457 }
6fcd6baa 458
b63a0ffe
MS
459 return recovered;
460}
461
b746e3e0
NP
462void pnv_platform_error_reboot(struct pt_regs *regs, const char *msg)
463{
464 /*
465 * This is mostly taken from kernel/panic.c, but tries to do
466 * relatively minimal work. Don't use delay functions (TB may
467 * be broken), don't crash dump (need to set a firmware log),
468 * don't run notifiers. We do want to get some information to
469 * Linux console.
470 */
471 console_verbose();
472 bust_spinlocks(1);
473 pr_emerg("Hardware platform error: %s\n", msg);
474 if (regs)
475 show_regs(regs);
476 smp_send_stop();
477 printk_safe_flush_on_panic();
478 kmsg_dump(KMSG_DUMP_PANIC);
479 bust_spinlocks(0);
480 debug_locks_off();
481 console_flush_on_panic();
482
483 /*
484 * Don't bother to shut things down because this will
485 * xstop the system.
486 */
487 if (opal_cec_reboot2(OPAL_REBOOT_PLATFORM_ERROR, msg)
488 == OPAL_UNSUPPORTED) {
489 pr_emerg("Reboot type %d not supported for %s\n",
490 OPAL_REBOOT_PLATFORM_ERROR, msg);
491 }
492
493 /*
494 * We reached here. There can be three possibilities:
495 * 1. We are running on a firmware level that do not support
496 * opal_cec_reboot2()
497 * 2. We are running on a firmware level that do not support
498 * OPAL_REBOOT_PLATFORM_ERROR reboot type.
499 * 3. We are running on FSP based system that does not need
500 * opal to trigger checkstop explicitly for error analysis.
501 * The FSP PRD component would have already got notified
502 * about this error through other channels.
0b201217
BS
503 * 4. We are running on a newer skiboot that by default does
504 * not cause a checkstop, drops us back to the kernel to
505 * extract context and state at the time of the error.
b746e3e0
NP
506 */
507
0b201217 508 panic(msg);
b746e3e0
NP
509}
510
ed79ba9e
BH
511int opal_machine_check(struct pt_regs *regs)
512{
36df96f8 513 struct machine_check_event evt;
ed79ba9e 514
36df96f8
MS
515 if (!get_mce_event(&evt, MCE_EVENT_RELEASE))
516 return 0;
ed79ba9e
BH
517
518 /* Print things out */
36df96f8 519 if (evt.version != MCE_V1) {
ed79ba9e
BH
520 pr_err("Machine Check Exception, Unknown event version %d !\n",
521 evt.version);
522 return 0;
523 }
63f44d65 524 machine_check_print_event_info(&evt, user_mode(regs));
ed79ba9e 525
b63a0ffe
MS
526 if (opal_recover_mce(regs, &evt))
527 return 1;
e784b649 528
b746e3e0 529 pnv_platform_error_reboot(regs, "Unrecoverable Machine Check exception");
ed79ba9e
BH
530}
531
0869b6fd
MS
532/* Early hmi handler called in real mode. */
533int opal_hmi_exception_early(struct pt_regs *regs)
534{
0ef95b41
MS
535 s64 rc;
536
537 /*
538 * call opal hmi handler. Pass paca address as token.
539 * The return value OPAL_SUCCESS is an indication that there is
540 * an HMI event generated waiting to pull by Linux.
541 */
542 rc = opal_handle_hmi();
543 if (rc == OPAL_SUCCESS) {
544 local_paca->hmi_event_available = 1;
545 return 1;
546 }
0869b6fd
MS
547 return 0;
548}
549
550/* HMI exception handler called in virtual mode during check_irq_replay. */
551int opal_handle_hmi_exception(struct pt_regs *regs)
552{
0ef95b41
MS
553 s64 rc;
554 __be64 evt = 0;
555
556 /*
557 * Check if HMI event is available.
558 * if Yes, then call opal_poll_events to pull opal messages and
559 * process them.
560 */
561 if (!local_paca->hmi_event_available)
562 return 0;
563
564 local_paca->hmi_event_available = 0;
565 rc = opal_poll_events(&evt);
81f2f7ce 566 if (rc == OPAL_SUCCESS && evt)
9f0fd049 567 opal_handle_events(be64_to_cpu(evt));
0ef95b41
MS
568
569 return 1;
0869b6fd
MS
570}
571
55672ecf
MS
572static uint64_t find_recovery_address(uint64_t nip)
573{
574 int i;
575
576 for (i = 0; i < mc_recoverable_range_len; i++)
577 if ((nip >= mc_recoverable_range[i].start_addr) &&
578 (nip < mc_recoverable_range[i].end_addr))
579 return mc_recoverable_range[i].recover_addr;
580 return 0;
581}
582
583bool opal_mce_check_early_recovery(struct pt_regs *regs)
584{
585 uint64_t recover_addr = 0;
586
587 if (!opal.base || !opal.size)
588 goto out;
589
590 if ((regs->nip >= opal.base) &&
dc3799bb 591 (regs->nip < (opal.base + opal.size)))
55672ecf
MS
592 recover_addr = find_recovery_address(regs->nip);
593
594 /*
595 * Setup regs->nip to rfi into fixup address.
596 */
597 if (recover_addr)
598 regs->nip = recover_addr;
599
600out:
601 return !!recover_addr;
602}
603
6f68b5e2
VH
604static int opal_sysfs_init(void)
605{
606 opal_kobj = kobject_create_and_add("opal", firmware_kobj);
607 if (!opal_kobj) {
608 pr_warn("kobject_create_and_add opal failed\n");
609 return -ENOMEM;
610 }
611
612 return 0;
613}
614
c8742f85
BH
615static ssize_t symbol_map_read(struct file *fp, struct kobject *kobj,
616 struct bin_attribute *bin_attr,
617 char *buf, loff_t off, size_t count)
618{
619 return memory_read_from_buffer(buf, count, &off, bin_attr->private,
620 bin_attr->size);
621}
622
623static BIN_ATTR_RO(symbol_map, 0);
624
625static void opal_export_symmap(void)
626{
627 const __be64 *syms;
628 unsigned int size;
629 struct device_node *fw;
630 int rc;
631
632 fw = of_find_node_by_path("/ibm,opal/firmware");
633 if (!fw)
634 return;
635 syms = of_get_property(fw, "symbol-map", &size);
636 if (!syms || size != 2 * sizeof(__be64))
637 return;
638
639 /* Setup attributes */
640 bin_attr_symbol_map.private = __va(be64_to_cpu(syms[0]));
641 bin_attr_symbol_map.size = be64_to_cpu(syms[1]);
642
643 rc = sysfs_create_bin_file(opal_kobj, &bin_attr_symbol_map);
644 if (rc)
645 pr_warn("Error %d creating OPAL symbols file\n", rc);
646}
647
11fe909d
MB
648static ssize_t export_attr_read(struct file *fp, struct kobject *kobj,
649 struct bin_attribute *bin_attr, char *buf,
650 loff_t off, size_t count)
651{
652 return memory_read_from_buffer(buf, count, &off, bin_attr->private,
653 bin_attr->size);
654}
655
656/*
657 * opal_export_attrs: creates a sysfs node for each property listed in
658 * the device-tree under /ibm,opal/firmware/exports/
659 * All new sysfs nodes are created under /opal/exports/.
660 * This allows for reserved memory regions (e.g. HDAT) to be read.
661 * The new sysfs nodes are only readable by root.
662 */
663static void opal_export_attrs(void)
664{
665 struct bin_attribute *attr;
666 struct device_node *np;
667 struct property *prop;
668 struct kobject *kobj;
669 u64 vals[2];
670 int rc;
671
672 np = of_find_node_by_path("/ibm,opal/firmware/exports");
673 if (!np)
674 return;
675
676 /* Create new 'exports' directory - /sys/firmware/opal/exports */
677 kobj = kobject_create_and_add("exports", opal_kobj);
678 if (!kobj) {
679 pr_warn("kobject_create_and_add() of exports failed\n");
680 return;
681 }
682
683 for_each_property_of_node(np, prop) {
684 if (!strcmp(prop->name, "name") || !strcmp(prop->name, "phandle"))
685 continue;
686
687 if (of_property_read_u64_array(np, prop->name, &vals[0], 2))
688 continue;
689
83c49190 690 attr = kzalloc(sizeof(*attr), GFP_KERNEL);
11fe909d
MB
691
692 if (attr == NULL) {
693 pr_warn("Failed kmalloc for bin_attribute!");
694 continue;
695 }
696
83c49190 697 sysfs_bin_attr_init(attr);
11fe909d
MB
698 attr->attr.name = kstrdup(prop->name, GFP_KERNEL);
699 attr->attr.mode = 0400;
700 attr->read = export_attr_read;
701 attr->private = __va(vals[0]);
702 attr->size = vals[1];
703
704 if (attr->attr.name == NULL) {
705 pr_warn("Failed kstrdup for bin_attribute attr.name");
706 kfree(attr);
707 continue;
708 }
709
710 rc = sysfs_create_bin_file(kobj, attr);
711 if (rc) {
712 pr_warn("Error %d creating OPAL sysfs exports/%s file\n",
713 rc, prop->name);
714 kfree(attr->attr.name);
715 kfree(attr);
716 }
717 }
718
719 of_node_put(np);
720}
721
b09c2ec4
VH
722static void __init opal_dump_region_init(void)
723{
724 void *addr;
725 uint64_t size;
726 int rc;
727
b962f5a4
SS
728 if (!opal_check_token(OPAL_REGISTER_DUMP_REGION))
729 return;
730
b09c2ec4
VH
731 /* Register kernel log buffer */
732 addr = log_buf_addr_get();
6501ab5e
PK
733 if (addr == NULL)
734 return;
735
b09c2ec4 736 size = log_buf_len_get();
6501ab5e
PK
737 if (size == 0)
738 return;
739
b09c2ec4
VH
740 rc = opal_register_dump_region(OPAL_DUMP_REGION_LOG_BUF,
741 __pa(addr), size);
742 /* Don't warn if this is just an older OPAL that doesn't
743 * know about that call
744 */
745 if (rc && rc != OPAL_UNSUPPORTED)
746 pr_warn("DUMP: Failed to register kernel log buffer. "
747 "rc = %d\n", rc);
748}
608b286d 749
9e4f51bd 750static void opal_pdev_init(const char *compatible)
ed59190e
CB
751{
752 struct device_node *np;
753
9e4f51bd 754 for_each_compatible_node(np, NULL, compatible)
47083450
NG
755 of_platform_device_create(np, NULL, NULL);
756}
757
8f95faaa
MS
758static void __init opal_imc_init_dev(void)
759{
760 struct device_node *np;
761
762 np = of_find_compatible_node(NULL, NULL, IMC_DTB_COMPAT);
763 if (np)
764 of_platform_device_create(np, NULL, NULL);
765}
766
3bf57561
BH
767static int kopald(void *unused)
768{
a203658b 769 unsigned long timeout = msecs_to_jiffies(opal_heartbeat) + 1;
9f0fd049
AP
770 __be64 events;
771
3bf57561
BH
772 set_freezable();
773 do {
774 try_to_freeze();
9f0fd049
AP
775 opal_poll_events(&events);
776 opal_handle_events(be64_to_cpu(events));
a203658b 777 schedule_timeout_interruptible(timeout);
3bf57561
BH
778 } while (!kthread_should_stop());
779
780 return 0;
781}
782
a203658b
BH
783void opal_wake_poller(void)
784{
785 if (kopald_tsk)
786 wake_up_process(kopald_tsk);
787}
788
3bf57561
BH
789static void opal_init_heartbeat(void)
790{
791 /* Old firwmware, we assume the HVC heartbeat is sufficient */
792 if (of_property_read_u32(opal_node, "ibm,heartbeat-ms",
793 &opal_heartbeat) != 0)
794 opal_heartbeat = 0;
795
796 if (opal_heartbeat)
a203658b 797 kopald_tsk = kthread_run(kopald, NULL, "kopald");
3bf57561
BH
798}
799
14a43e69
BH
800static int __init opal_init(void)
801{
c159b596 802 struct device_node *np, *consoles, *leds;
c1c3a526 803 int rc;
14a43e69
BH
804
805 opal_node = of_find_node_by_path("/ibm,opal");
806 if (!opal_node) {
08135139 807 pr_warn("Device node not found\n");
14a43e69
BH
808 return -ENODEV;
809 }
2db29d28
BH
810
811 /* Register OPAL consoles if any ports */
7261aafc 812 consoles = of_find_node_by_path("/ibm,opal/consoles");
2db29d28
BH
813 if (consoles) {
814 for_each_child_of_node(consoles, np) {
815 if (strcmp(np->name, "serial"))
816 continue;
817 of_platform_device_create(np, NULL, NULL);
818 }
819 of_node_put(consoles);
14a43e69 820 }
a125e092 821
96e023e7
AP
822 /* Initialise OPAL messaging system */
823 opal_message_init();
824
825 /* Initialise OPAL asynchronous completion interface */
826 opal_async_comp_init();
827
828 /* Initialise OPAL sensor interface */
829 opal_sensor_init();
830
831 /* Initialise OPAL hypervisor maintainence interrupt handling */
832 opal_hmi_handler_init();
833
47083450 834 /* Create i2c platform devices */
9e4f51bd 835 opal_pdev_init("ibm,opal-i2c");
47083450 836
3bf57561
BH
837 /* Setup a heatbeat thread if requested by OPAL */
838 opal_init_heartbeat();
839
8f95faaa
MS
840 /* Detect In-Memory Collection counters and create devices*/
841 opal_imc_init_dev();
842
c159b596
VH
843 /* Create leds platform devices */
844 leds = of_find_node_by_path("/ibm,opal/leds");
845 if (leds) {
846 of_platform_device_create(leds, "opal_leds", NULL);
847 of_node_put(leds);
848 }
849
9b4fffa1
AD
850 /* Initialise OPAL message log interface */
851 opal_msglog_init();
852
6f68b5e2
VH
853 /* Create "opal" kobject under /sys/firmware */
854 rc = opal_sysfs_init();
50bd6153 855 if (rc == 0) {
c8742f85
BH
856 /* Export symbol map to userspace */
857 opal_export_symmap();
b09c2ec4
VH
858 /* Setup dump region interface */
859 opal_dump_region_init();
774fea1a
SS
860 /* Setup error log interface */
861 rc = opal_elog_init();
50bd6153 862 /* Setup code update interface */
ed59190e 863 opal_flash_update_init();
c7e64b9c
SS
864 /* Setup platform dump extract interface */
865 opal_platform_dump_init();
4029cd66
NG
866 /* Setup system parameters interface */
867 opal_sys_param_init();
9b4fffa1
AD
868 /* Setup message log sysfs interface. */
869 opal_msglog_sysfs_init();
50bd6153 870 }
6f68b5e2 871
11fe909d
MB
872 /* Export all properties */
873 opal_export_attrs();
874
0d7cd855 875 /* Initialize platform devices: IPMI backend, PRD & flash interface */
9e4f51bd
JM
876 opal_pdev_init("ibm,opal-ipmi");
877 opal_pdev_init("ibm,opal-flash");
878 opal_pdev_init("ibm,opal-prd");
ed59190e 879
43a1dd9b 880 /* Initialise platform device: oppanel interface */
9e4f51bd 881 opal_pdev_init("ibm,opal-oppanel");
43a1dd9b 882
affddff6
RC
883 /* Initialise OPAL kmsg dumper for flushing console on panic */
884 opal_kmsg_init();
885
cb8b340d
SB
886 /* Initialise OPAL powercap interface */
887 opal_powercap_init();
888
8e84b2d1
SB
889 /* Initialise OPAL Power-Shifting-Ratio interface */
890 opal_psr_init();
891
bf957155
SB
892 /* Initialise OPAL sensor groups */
893 opal_sensor_groups_init();
894
14a43e69
BH
895 return 0;
896}
b14726c5 897machine_subsys_initcall(powernv, opal_init);
73ed148a
BH
898
899void opal_shutdown(void)
900{
f7d98d18 901 long rc = OPAL_BUSY;
73ed148a 902
9f0fd049 903 opal_event_shutdown();
f7d98d18
VH
904
905 /*
906 * Then sync with OPAL which ensure anything that can
907 * potentially write to our memory has completed such
908 * as an ongoing dump retrieval
909 */
910 while (rc == OPAL_BUSY || rc == OPAL_BUSY_EVENT) {
911 rc = opal_sync_host_reboot();
912 if (rc == OPAL_BUSY)
913 opal_poll_events(NULL);
914 else
915 mdelay(10);
916 }
b09c2ec4
VH
917
918 /* Unregister memory dump region */
b962f5a4
SS
919 if (opal_check_token(OPAL_UNREGISTER_DUMP_REGION))
920 opal_unregister_dump_region(OPAL_DUMP_REGION_LOG_BUF);
73ed148a 921}
e28b05e7
JS
922
923/* Export this so that test modules can use it */
924EXPORT_SYMBOL_GPL(opal_invalid_call);
594fcb9e
JK
925EXPORT_SYMBOL_GPL(opal_xscom_read);
926EXPORT_SYMBOL_GPL(opal_xscom_write);
608b286d
JK
927EXPORT_SYMBOL_GPL(opal_ipmi_send);
928EXPORT_SYMBOL_GPL(opal_ipmi_recv);
ed59190e
CB
929EXPORT_SYMBOL_GPL(opal_flash_read);
930EXPORT_SYMBOL_GPL(opal_flash_write);
931EXPORT_SYMBOL_GPL(opal_flash_erase);
0d7cd855 932EXPORT_SYMBOL_GPL(opal_prd_msg);
47870f49 933EXPORT_SYMBOL_GPL(opal_check_token);
3441f04b
AB
934
935/* Convert a region of vmalloc memory to an opal sg list */
936struct opal_sg_list *opal_vmalloc_to_sg_list(void *vmalloc_addr,
937 unsigned long vmalloc_size)
938{
939 struct opal_sg_list *sg, *first = NULL;
940 unsigned long i = 0;
941
942 sg = kzalloc(PAGE_SIZE, GFP_KERNEL);
943 if (!sg)
944 goto nomem;
945
946 first = sg;
947
948 while (vmalloc_size > 0) {
949 uint64_t data = vmalloc_to_pfn(vmalloc_addr) << PAGE_SHIFT;
950 uint64_t length = min(vmalloc_size, PAGE_SIZE);
951
952 sg->entry[i].data = cpu_to_be64(data);
953 sg->entry[i].length = cpu_to_be64(length);
954 i++;
955
956 if (i >= SG_ENTRIES_PER_NODE) {
957 struct opal_sg_list *next;
958
959 next = kzalloc(PAGE_SIZE, GFP_KERNEL);
960 if (!next)
961 goto nomem;
962
963 sg->length = cpu_to_be64(
964 i * sizeof(struct opal_sg_entry) + 16);
965 i = 0;
966 sg->next = cpu_to_be64(__pa(next));
967 sg = next;
968 }
969
970 vmalloc_addr += length;
971 vmalloc_size -= length;
972 }
973
974 sg->length = cpu_to_be64(i * sizeof(struct opal_sg_entry) + 16);
975
976 return first;
977
978nomem:
979 pr_err("%s : Failed to allocate memory\n", __func__);
980 opal_free_sg_list(first);
981 return NULL;
982}
983
984void opal_free_sg_list(struct opal_sg_list *sg)
985{
986 while (sg) {
987 uint64_t next = be64_to_cpu(sg->next);
988
989 kfree(sg);
990
991 if (next)
992 sg = __va(next);
993 else
994 sg = NULL;
995 }
996}
16b1d26e 997
e3c5c2e0
CLG
998int opal_error_code(int rc)
999{
1000 switch (rc) {
1001 case OPAL_SUCCESS: return 0;
1002
1003 case OPAL_PARAMETER: return -EINVAL;
1004 case OPAL_ASYNC_COMPLETION: return -EINPROGRESS;
77adbd22 1005 case OPAL_BUSY:
e3c5c2e0
CLG
1006 case OPAL_BUSY_EVENT: return -EBUSY;
1007 case OPAL_NO_MEM: return -ENOMEM;
14aae78f 1008 case OPAL_PERMISSION: return -EPERM;
e3c5c2e0
CLG
1009
1010 case OPAL_UNSUPPORTED: return -EIO;
1011 case OPAL_HARDWARE: return -EIO;
1012 case OPAL_INTERNAL_ERROR: return -EIO;
cb8b340d 1013 case OPAL_TIMEOUT: return -ETIMEDOUT;
e3c5c2e0
CLG
1014 default:
1015 pr_err("%s: unexpected OPAL error %d\n", __func__, rc);
1016 return -EIO;
1017 }
1018}
1019
1d0761d2
AP
1020void powernv_set_nmmu_ptcr(unsigned long ptcr)
1021{
1022 int rc;
1023
1024 if (firmware_has_feature(FW_FEATURE_OPAL)) {
1025 rc = opal_nmmu_set_ptcr(-1UL, ptcr);
1026 if (rc != OPAL_SUCCESS && rc != OPAL_UNSUPPORTED)
1027 pr_warn("%s: Unable to set nest mmu ptcr\n", __func__);
1028 }
1029}
1030
16b1d26e
NG
1031EXPORT_SYMBOL_GPL(opal_poll_events);
1032EXPORT_SYMBOL_GPL(opal_rtc_read);
1033EXPORT_SYMBOL_GPL(opal_rtc_write);
1034EXPORT_SYMBOL_GPL(opal_tpo_read);
1035EXPORT_SYMBOL_GPL(opal_tpo_write);
47083450 1036EXPORT_SYMBOL_GPL(opal_i2c_request);
c159b596
VH
1037/* Export these symbols for PowerNV LED class driver */
1038EXPORT_SYMBOL_GPL(opal_leds_get_ind);
1039EXPORT_SYMBOL_GPL(opal_leds_set_ind);
43a1dd9b
SJS
1040/* Export this symbol for PowerNV Operator Panel class driver */
1041EXPORT_SYMBOL_GPL(opal_write_oppanel_async);
ffe6d810
PM
1042/* Export this for KVM */
1043EXPORT_SYMBOL_GPL(opal_int_set_mfrr);
5af50993 1044EXPORT_SYMBOL_GPL(opal_int_eoi);
77adbd22 1045EXPORT_SYMBOL_GPL(opal_error_code);
bc23260c
HM
1046/* Export the below symbol for NX compression */
1047EXPORT_SYMBOL(opal_nx_coproc_init);