blob: 39aae6d83f71f4b9d5e40460e2df6705ff9c6b09 [file] [log] [blame]
Eric Biederman8ca8d762003-04-22 19:02:15 +00001/*
Aaron Durbin7e35efa2013-04-24 15:14:01 -05002 * This file is part of the coreboot project.
3 *
4 * Copyright (C) 2013 Google, Inc.
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; version 2 of the License.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
Eric Biederman8ca8d762003-04-22 19:02:15 +000018 */
19
20
21/*
Stefan Reinauerf8ee1802008-01-18 15:08:58 +000022 * C Bootstrap code for the coreboot
Eric Biederman8ca8d762003-04-22 19:02:15 +000023 */
24
Aaron Durbin7e35efa2013-04-24 15:14:01 -050025#include <bootstate.h>
Eric Biederman8ca8d762003-04-22 19:02:15 +000026#include <console/console.h>
Eric Biederman8ca8d762003-04-22 19:02:15 +000027#include <version.h>
Eric Biederman5899fd82003-04-24 06:25:08 +000028#include <device/device.h>
29#include <device/pci.h>
Eric Biederman9b4336c2003-07-19 04:28:22 +000030#include <delay.h>
Eric Biedermanb78c1972004-10-14 20:54:17 +000031#include <stdlib.h>
Stefan Reinauerde3206a2010-02-22 06:09:43 +000032#include <reset.h>
Stefan Reinauer7e9771c2009-04-22 08:17:38 +000033#include <boot/tables.h>
Eric Biederman8ca8d762003-04-22 19:02:15 +000034#include <boot/elf.h>
Peter Stuge483b7bb2009-04-14 07:40:01 +000035#include <cbfs.h>
Ronald G. Minnich9764d4c2012-06-12 16:29:32 -070036#include <lib.h>
Stefan Reinauer08670622009-06-30 15:17:49 +000037#if CONFIG_HAVE_ACPI_RESUME
Rudolf Mareka572f832009-04-13 17:57:44 +000038#include <arch/acpi.h>
Stefan Reinauer3935b192009-04-14 06:38:15 +000039#endif
Aaron Durbin6b0fb0d2013-04-26 20:54:16 -050040#include <timer.h>
Stefan Reinauerbf729ba2011-11-04 12:31:58 -070041#include <timestamp.h>
Eric Biederman8ca8d762003-04-22 19:02:15 +000042
Aaron Durbin7e35efa2013-04-24 15:14:01 -050043#if BOOT_STATE_DEBUG
44#define BS_DEBUG_LVL BIOS_DEBUG
45#else
46#define BS_DEBUG_LVL BIOS_NEVER
47#endif
Rudolf Mareka572f832009-04-13 17:57:44 +000048
Aaron Durbin7e35efa2013-04-24 15:14:01 -050049static boot_state_t bs_pre_device(void *arg);
50static boot_state_t bs_dev_init_chips(void *arg);
51static boot_state_t bs_dev_enumerate(void *arg);
52static boot_state_t bs_dev_resources(void *arg);
53static boot_state_t bs_dev_eanble(void *arg);
54static boot_state_t bs_dev_init(void *arg);
55static boot_state_t bs_post_device(void *arg);
Aaron Durbin0a6c20a2013-04-24 22:33:08 -050056static boot_state_t bs_os_resume_check(void *arg);
Aaron Durbin7e35efa2013-04-24 15:14:01 -050057static boot_state_t bs_os_resume(void *arg);
58static boot_state_t bs_write_tables(void *arg);
59static boot_state_t bs_payload_load(void *arg);
60static boot_state_t bs_payload_boot(void *arg);
61
Aaron Durbin6b0fb0d2013-04-26 20:54:16 -050062/*
63 * Typically a state will take 4 time samples:
64 * 1. Before state entry callbacks
65 * 2. After state entry callbacks / Before state function.
66 * 3. After state function / Before state exit callbacks.
67 * 4. After state exit callbacks.
68 */
69#define MAX_TIME_SAMPLES 4
70struct boot_state_times {
71 int num_samples;
72 struct mono_time samples[MAX_TIME_SAMPLES];
73};
74
Aaron Durbin0748d302013-05-06 10:50:19 -050075/* The prologue (BS_ON_ENTRY) and epilogue (BS_ON_EXIT) of a state can be
76 * blocked from transitioning to the next (state,seq) pair. When the blockers
77 * field is 0 a transition may occur. */
78struct boot_phase {
79 struct boot_state_callback *callbacks;
80 int blockers;
81};
82
Aaron Durbin7e35efa2013-04-24 15:14:01 -050083struct boot_state {
84 const char *name;
85 boot_state_t id;
Aaron Durbin0748d302013-05-06 10:50:19 -050086 struct boot_phase phases[2];
Aaron Durbin7e35efa2013-04-24 15:14:01 -050087 boot_state_t (*run_state)(void *arg);
88 void *arg;
Aaron Durbin8fc41e12013-04-29 23:22:01 -050089 int complete : 1;
90 int timers_drain : 1;
Aaron Durbin6b0fb0d2013-04-26 20:54:16 -050091#if CONFIG_HAVE_MONOTONIC_TIMER
92 struct boot_state_times times;
93#endif
Aaron Durbin7e35efa2013-04-24 15:14:01 -050094};
95
Aaron Durbin8fc41e12013-04-29 23:22:01 -050096#define BS_INIT(state_, run_func_, drain_timers_) \
97 { \
98 .name = #state_, \
99 .id = state_, \
Aaron Durbin0748d302013-05-06 10:50:19 -0500100 .phases = { { NULL, 0 }, { NULL, 0 } }, \
Aaron Durbin8fc41e12013-04-29 23:22:01 -0500101 .run_state = run_func_, \
102 .arg = NULL, \
103 .complete = 0, \
104 .timers_drain = drain_timers_, \
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500105 }
106#define BS_INIT_ENTRY(state_, run_func_) \
Aaron Durbin8fc41e12013-04-29 23:22:01 -0500107 [state_] = BS_INIT(state_, run_func_, 0)
108#define BS_INIT_ENTRY_DRAIN_TIMERS(state_, run_func_) \
109 [state_] = BS_INIT(state_, run_func_, 1)
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500110
111static struct boot_state boot_states[] = {
112 BS_INIT_ENTRY(BS_PRE_DEVICE, bs_pre_device),
113 BS_INIT_ENTRY(BS_DEV_INIT_CHIPS, bs_dev_init_chips),
114 BS_INIT_ENTRY(BS_DEV_ENUMERATE, bs_dev_enumerate),
115 BS_INIT_ENTRY(BS_DEV_RESOURCES, bs_dev_resources),
116 BS_INIT_ENTRY(BS_DEV_ENABLE, bs_dev_eanble),
117 BS_INIT_ENTRY(BS_DEV_INIT, bs_dev_init),
118 BS_INIT_ENTRY(BS_POST_DEVICE, bs_post_device),
Aaron Durbin0a6c20a2013-04-24 22:33:08 -0500119 BS_INIT_ENTRY(BS_OS_RESUME_CHECK, bs_os_resume_check),
Aaron Durbin8fc41e12013-04-29 23:22:01 -0500120 BS_INIT_ENTRY_DRAIN_TIMERS(BS_OS_RESUME, bs_os_resume),
121 BS_INIT_ENTRY_DRAIN_TIMERS(BS_WRITE_TABLES, bs_write_tables),
122 BS_INIT_ENTRY_DRAIN_TIMERS(BS_PAYLOAD_LOAD, bs_payload_load),
123 BS_INIT_ENTRY_DRAIN_TIMERS(BS_PAYLOAD_BOOT, bs_payload_boot),
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500124};
125
126static boot_state_t bs_pre_device(void *arg)
127{
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500128 return BS_DEV_INIT_CHIPS;
129}
130
131static boot_state_t bs_dev_init_chips(void *arg)
132{
133 timestamp_stash(TS_DEVICE_ENUMERATE);
134
135 /* Initialize chips early, they might disable unused devices. */
136 dev_initialize_chips();
137
138 return BS_DEV_ENUMERATE;
139}
140
141static boot_state_t bs_dev_enumerate(void *arg)
142{
143 /* Find the devices we don't have hard coded knowledge about. */
144 dev_enumerate();
145 post_code(POST_DEVICE_ENUMERATION_COMPLETE);
146
147 return BS_DEV_RESOURCES;
148}
149
150static boot_state_t bs_dev_resources(void *arg)
151{
152 timestamp_stash(TS_DEVICE_CONFIGURE);
153 /* Now compute and assign the bus resources. */
154 dev_configure();
155 post_code(POST_DEVICE_CONFIGURATION_COMPLETE);
156
157 return BS_DEV_ENABLE;
158}
159
160static boot_state_t bs_dev_eanble(void *arg)
161{
162 timestamp_stash(TS_DEVICE_ENABLE);
163 /* Now actually enable devices on the bus */
164 dev_enable();
165 post_code(POST_DEVICES_ENABLED);
166
167 return BS_DEV_INIT;
168}
169
170static boot_state_t bs_dev_init(void *arg)
171{
172 timestamp_stash(TS_DEVICE_INITIALIZE);
173 /* And of course initialize devices on the bus */
174 dev_initialize();
175 post_code(POST_DEVICES_INITIALIZED);
176
177 return BS_POST_DEVICE;
178}
179
180static boot_state_t bs_post_device(void *arg)
181{
182 timestamp_stash(TS_DEVICE_DONE);
183
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500184 timestamp_sync();
185
Aaron Durbin0a6c20a2013-04-24 22:33:08 -0500186 return BS_OS_RESUME_CHECK;
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500187}
188
Aaron Durbin0a6c20a2013-04-24 22:33:08 -0500189static boot_state_t bs_os_resume_check(void *arg)
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500190{
191#if CONFIG_HAVE_ACPI_RESUME
Aaron Durbin0a6c20a2013-04-24 22:33:08 -0500192 void *wake_vector;
193
194 wake_vector = acpi_find_wakeup_vector();
195
196 if (wake_vector != NULL) {
197 boot_states[BS_OS_RESUME].arg = wake_vector;
198 return BS_OS_RESUME;
199 }
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500200 post_code(0x8a);
201#endif
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500202 timestamp_add_now(TS_CBMEM_POST);
203
204 return BS_WRITE_TABLES;
205}
206
Aaron Durbin0a6c20a2013-04-24 22:33:08 -0500207static boot_state_t bs_os_resume(void *wake_vector)
208{
209#if CONFIG_HAVE_ACPI_RESUME
210 acpi_resume(wake_vector);
211#endif
212 return BS_WRITE_TABLES;
213}
214
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500215static boot_state_t bs_write_tables(void *arg)
216{
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500217 timestamp_add_now(TS_WRITE_TABLES);
218
219 /* Now that we have collected all of our information
220 * write our configuration tables.
221 */
222 write_tables();
223
224 return BS_PAYLOAD_LOAD;
225}
226
227static boot_state_t bs_payload_load(void *arg)
228{
229 void *payload;
Aaron Durbin001de1a2013-04-24 22:59:45 -0500230 void *entry;
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500231
232 timestamp_add_now(TS_LOAD_PAYLOAD);
233
234 payload = cbfs_load_payload(CBFS_DEFAULT_MEDIA,
235 CONFIG_CBFS_PREFIX "/payload");
236 if (! payload)
237 die("Could not find a payload\n");
238
Aaron Durbin001de1a2013-04-24 22:59:45 -0500239 entry = selfload(get_lb_mem(), payload);
240
241 if (! entry)
242 die("Could not load payload\n");
243
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500244 /* Pass the payload to the next state. */
Aaron Durbin001de1a2013-04-24 22:59:45 -0500245 boot_states[BS_PAYLOAD_BOOT].arg = entry;
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500246
247 return BS_PAYLOAD_BOOT;
248}
249
Aaron Durbin001de1a2013-04-24 22:59:45 -0500250static boot_state_t bs_payload_boot(void *entry)
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500251{
Aaron Durbin001de1a2013-04-24 22:59:45 -0500252 selfboot(entry);
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500253
254 printk(BIOS_EMERG, "Boot failed");
255 /* Returning from this state will fail because the following signals
256 * return to a completed state. */
257 return BS_PAYLOAD_BOOT;
258}
259
Aaron Durbin6b0fb0d2013-04-26 20:54:16 -0500260#if CONFIG_HAVE_MONOTONIC_TIMER
261static void bs_sample_time(struct boot_state *state)
262{
263 struct mono_time *mt;
264
265 mt = &state->times.samples[state->times.num_samples];
266 timer_monotonic_get(mt);
267 state->times.num_samples++;
268}
269
270static void bs_report_time(struct boot_state *state)
271{
272 struct rela_time entry_time;
273 struct rela_time run_time;
274 struct rela_time exit_time;
275 struct boot_state_times *times;
276
277 times = &state->times;
278 entry_time = mono_time_diff(&times->samples[0], &times->samples[1]);
279 run_time = mono_time_diff(&times->samples[1], &times->samples[2]);
280 exit_time = mono_time_diff(&times->samples[2], &times->samples[3]);
281
282 printk(BIOS_DEBUG, "BS: %s times (us): entry %ld run %ld exit %ld\n",
283 state->name,
284 rela_time_in_microseconds(&entry_time),
285 rela_time_in_microseconds(&run_time),
286 rela_time_in_microseconds(&exit_time));
287}
288#else
289static inline void bs_sample_time(struct boot_state *state) {}
290static inline void bs_report_time(struct boot_state *state) {}
291#endif
292
Aaron Durbin8fc41e12013-04-29 23:22:01 -0500293#if CONFIG_TIMER_QUEUE
294static void bs_run_timers(int drain)
295{
296 /* Drain all timer callbacks until none are left, if directed.
297 * Otherwise run the timers only once. */
298 do {
299 if (!timers_run())
300 break;
301 } while (drain);
302}
303#else
304static void bs_run_timers(int drain) {}
305#endif
306
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500307static void bs_call_callbacks(struct boot_state *state,
308 boot_state_sequence_t seq)
309{
Aaron Durbin0748d302013-05-06 10:50:19 -0500310 struct boot_phase *phase = &state->phases[seq];
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500311
Aaron Durbin0748d302013-05-06 10:50:19 -0500312 while (1) {
313 if (phase->callbacks != NULL) {
314 struct boot_state_callback *bscb;
315
316 /* Remove the first callback. */
317 bscb = phase->callbacks;
318 phase->callbacks = bscb->next;
319 bscb->next = NULL;
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500320
321#if BOOT_STATE_DEBUG
Aaron Durbin0748d302013-05-06 10:50:19 -0500322 printk(BS_DEBUG_LVL, "BS: callback (%p) @ %s.\n",
323 bscb, bscb->location);
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500324#endif
Aaron Durbin0748d302013-05-06 10:50:19 -0500325 bscb->callback(bscb->arg);
326
327 continue;
328 }
329
330 /* All callbacks are complete and there are no blockers for
331 * this state. Therefore, this part of the state is complete. */
332 if (!phase->blockers)
333 break;
334
335 /* Something is blocking this state from transitioning. As
336 * there are no more callbacks a pending timer needs to be
337 * ran to unblock the state. */
338 bs_run_timers(0);
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500339 }
340}
341
Aaron Durbin0748d302013-05-06 10:50:19 -0500342/* Keep track of the current state. */
343static struct state_tracker {
344 boot_state_t state_id;
345 boot_state_sequence_t seq;
346} current_phase = {
347 .state_id = BS_PRE_DEVICE,
348 .seq = BS_ON_ENTRY,
349};
350
351static void bs_walk_state_machine(void)
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500352{
353
354 while (1) {
355 struct boot_state *state;
Aaron Durbin0748d302013-05-06 10:50:19 -0500356 boot_state_t next_id;
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500357
Aaron Durbin0748d302013-05-06 10:50:19 -0500358 state = &boot_states[current_phase.state_id];
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500359
360 if (state->complete) {
361 printk(BIOS_EMERG, "BS: %s state already executed.\n",
362 state->name);
363 break;
364 }
365
366 printk(BS_DEBUG_LVL, "BS: Entering %s state.\n", state->name);
Aaron Durbin6b0fb0d2013-04-26 20:54:16 -0500367
Aaron Durbin8fc41e12013-04-29 23:22:01 -0500368 bs_run_timers(state->timers_drain);
369
Aaron Durbin6b0fb0d2013-04-26 20:54:16 -0500370 bs_sample_time(state);
371
Aaron Durbin0748d302013-05-06 10:50:19 -0500372 bs_call_callbacks(state, current_phase.seq);
373 /* Update the current sequence so that any calls to block the
374 * current state from the run_state() function will place a
375 * block on the correct phase. */
376 current_phase.seq = BS_ON_EXIT;
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500377
Aaron Durbin6b0fb0d2013-04-26 20:54:16 -0500378 bs_sample_time(state);
379
Aaron Durbin0748d302013-05-06 10:50:19 -0500380 next_id = state->run_state(state->arg);
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500381
382 printk(BS_DEBUG_LVL, "BS: Exiting %s state.\n", state->name);
Aaron Durbin6b0fb0d2013-04-26 20:54:16 -0500383
384 bs_sample_time(state);
385
Aaron Durbin0748d302013-05-06 10:50:19 -0500386 bs_call_callbacks(state, current_phase.seq);
387
388 /* Update the current phase with new state id and sequence. */
389 current_phase.state_id = next_id;
390 current_phase.seq = BS_ON_ENTRY;
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500391
Aaron Durbin6b0fb0d2013-04-26 20:54:16 -0500392 bs_sample_time(state);
393
394 bs_report_time(state);
395
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500396 state->complete = 1;
397 }
398}
399
400static int boot_state_sched_callback(struct boot_state *state,
401 struct boot_state_callback *bscb,
402 boot_state_sequence_t seq)
403{
404 if (state->complete) {
405 printk(BIOS_WARNING,
406 "Tried to schedule callback on completed state %s.\n",
407 state->name);
408
409 return -1;
410 }
411
Aaron Durbin0748d302013-05-06 10:50:19 -0500412 bscb->next = state->phases[seq].callbacks;
413 state->phases[seq].callbacks = bscb;
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500414
415 return 0;
416}
417
418int boot_state_sched_on_entry(struct boot_state_callback *bscb,
419 boot_state_t state_id)
420{
421 struct boot_state *state = &boot_states[state_id];
422
423 return boot_state_sched_callback(state, bscb, BS_ON_ENTRY);
424}
425
426int boot_state_sched_on_exit(struct boot_state_callback *bscb,
427 boot_state_t state_id)
428{
429 struct boot_state *state = &boot_states[state_id];
430
431 return boot_state_sched_callback(state, bscb, BS_ON_EXIT);
432}
Maciej Pijankaea921852009-10-27 14:29:29 +0000433
Aaron Durbina4feddf2013-04-24 16:12:52 -0500434static void boot_state_schedule_static_entries(void)
435{
436 extern struct boot_state_init_entry _bs_init_begin;
437 extern struct boot_state_init_entry _bs_init_end;
438 struct boot_state_init_entry *cur;
439
440 cur = &_bs_init_begin;
441
442 while (cur != &_bs_init_end) {
443 if (cur->when == BS_ON_ENTRY)
444 boot_state_sched_on_entry(&cur->bscb, cur->state);
445 else
446 boot_state_sched_on_exit(&cur->bscb, cur->state);
447 cur++;
448 }
449}
450
Eric Biederman8ca8d762003-04-22 19:02:15 +0000451void hardwaremain(int boot_complete)
452{
Stefan Reinauer4221a192012-10-15 15:23:20 -0700453 timestamp_stash(TS_START_RAMSTAGE);
Alexandru Gagniuc5005bb062011-04-11 20:17:22 +0000454 post_code(POST_ENTRY_RAMSTAGE);
Li-Ta Lo6a8745ae2004-05-13 20:39:07 +0000455
Stefan Reinauer3b314022009-10-26 17:04:28 +0000456 /* console_init() MUST PRECEDE ALL printk()! */
Eric Biederman8ca8d762003-04-22 19:02:15 +0000457 console_init();
Stefan Reinauer14e22772010-04-27 06:56:47 +0000458
Alexandru Gagniuc5005bb062011-04-11 20:17:22 +0000459 post_code(POST_CONSOLE_READY);
arch import user (historical)54d6b082005-07-06 17:17:41 +0000460
Stefan Reinauer14e22772010-04-27 06:56:47 +0000461 printk(BIOS_NOTICE, "coreboot-%s%s %s %s...\n",
Stefan Reinauerf8ee1802008-01-18 15:08:58 +0000462 coreboot_version, coreboot_extra_version, coreboot_build,
Li-Ta Lo3a812852004-12-03 22:39:34 +0000463 (boot_complete)?"rebooting":"booting");
Eric Biederman8ca8d762003-04-22 19:02:15 +0000464
Alexandru Gagniuc5005bb062011-04-11 20:17:22 +0000465 post_code(POST_CONSOLE_BOOT_MSG);
Eric Biederman8ca8d762003-04-22 19:02:15 +0000466
Eric Biederman8ca8d762003-04-22 19:02:15 +0000467 /* If we have already booted attempt a hard reboot */
468 if (boot_complete) {
469 hard_reset();
470 }
Li-Ta Loe5266692004-03-23 21:28:05 +0000471
Aaron Durbina4feddf2013-04-24 16:12:52 -0500472 /* Schedule the static boot state entries. */
473 boot_state_schedule_static_entries();
474
Eric Biederman7003ba42004-10-16 06:20:29 +0000475 /* FIXME: Is there a better way to handle this? */
Stefan Reinauer14e22772010-04-27 06:56:47 +0000476 init_timer();
Eric Biederman8ca8d762003-04-22 19:02:15 +0000477
Aaron Durbin0748d302013-05-06 10:50:19 -0500478 bs_walk_state_machine();
479
Aaron Durbin7e35efa2013-04-24 15:14:01 -0500480 die("Boot state machine failure.\n");
Eric Biederman8ca8d762003-04-22 19:02:15 +0000481}
482
Aaron Durbin0748d302013-05-06 10:50:19 -0500483
484int boot_state_block(boot_state_t state, boot_state_sequence_t seq)
485{
486 struct boot_phase *bp;
487
488 /* Blocking a previously ran state is not appropriate. */
489 if (current_phase.state_id > state ||
490 (current_phase.state_id == state && current_phase.seq > seq) ) {
491 printk(BIOS_WARNING,
492 "BS: Completed state (%d, %d) block attempted.\n",
493 state, seq);
494 return -1;
495 }
496
497 bp = &boot_states[state].phases[seq];
498 bp->blockers++;
499
500 return 0;
501}
502
503int boot_state_unblock(boot_state_t state, boot_state_sequence_t seq)
504{
505 struct boot_phase *bp;
506
507 /* Blocking a previously ran state is not appropriate. */
508 if (current_phase.state_id > state ||
509 (current_phase.state_id == state && current_phase.seq > seq) ) {
510 printk(BIOS_WARNING,
511 "BS: Completed state (%d, %d) unblock attempted.\n",
512 state, seq);
513 return -1;
514 }
515
516 bp = &boot_states[state].phases[seq];
517
518 if (bp->blockers == 0) {
519 printk(BIOS_WARNING,
520 "BS: Unblock attempted on non-blocked state (%d, %d).\n",
521 state, seq);
522 return -1;
523 }
524
525 bp->blockers--;
526
527 return 0;
528}
529
530void boot_state_current_block(void)
531{
532 boot_state_block(current_phase.state_id, current_phase.seq);
533}
534
535void boot_state_current_unblock(void)
536{
537 boot_state_unblock(current_phase.state_id, current_phase.seq);
538}