2 * ec.c - ACPI Embedded Controller Driver (v2.1)
10 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
12 * This program is free software; you can redistribute it and/or modify
13 * it under the terms of the GNU General Public License as published by
14 * the Free Software Foundation; either version 2 of the License, or (at
15 * your option) any later version.
17 * This program is distributed in the hope that it will be useful, but
18 * WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 * General Public License for more details.
22 * You should have received a copy of the GNU General Public License along
23 * with this program; if not, write to the Free Software Foundation, Inc.,
24 * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
26 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
29 /* Uncomment next line to get verbose printout */
32 #include <linux/kernel.h>
33 #include <linux/module.h>
34 #include <linux/init.h>
35 #include <linux/types.h>
36 #include <linux/delay.h>
37 #include <linux/proc_fs.h>
38 #include <linux/seq_file.h>
39 #include <linux/interrupt.h>
40 #include <linux/list.h>
41 #include <linux/spinlock.h>
42 #include <linux/slab.h>
44 #include <acpi/acpi_bus.h>
45 #include <acpi/acpi_drivers.h>
46 #include <linux/dmi.h>
48 #define ACPI_EC_CLASS "embedded_controller"
49 #define ACPI_EC_DEVICE_NAME "Embedded Controller"
50 #define ACPI_EC_FILE_INFO "info"
52 #define PREFIX "ACPI: EC: "
54 /* EC status register */
55 #define ACPI_EC_FLAG_OBF 0x01 /* Output buffer full */
56 #define ACPI_EC_FLAG_IBF 0x02 /* Input buffer full */
57 #define ACPI_EC_FLAG_BURST 0x10 /* burst mode */
58 #define ACPI_EC_FLAG_SCI 0x20 /* EC-SCI occurred */
62 ACPI_EC_COMMAND_READ = 0x80,
63 ACPI_EC_COMMAND_WRITE = 0x81,
64 ACPI_EC_BURST_ENABLE = 0x82,
65 ACPI_EC_BURST_DISABLE = 0x83,
66 ACPI_EC_COMMAND_QUERY = 0x84,
69 #define ACPI_EC_DELAY 500 /* Wait 500ms max. during EC ops */
70 #define ACPI_EC_UDELAY_GLK 1000 /* Wait 1ms max. to get global lock */
71 #define ACPI_EC_CDELAY 10 /* Wait 10us before polling EC */
72 #define ACPI_EC_MSI_UDELAY 550 /* Wait 550us for MSI EC */
74 #define ACPI_EC_STORM_THRESHOLD 8 /* number of false interrupts
75 per one transaction */
78 EC_FLAGS_QUERY_PENDING, /* Query is pending */
79 EC_FLAGS_GPE_STORM, /* GPE storm detected */
80 EC_FLAGS_HANDLERS_INSTALLED, /* Handlers for GPE and
81 * OpReg are installed */
82 EC_FLAGS_FROZEN, /* Transactions are suspended */
85 /* If we find an EC via the ECDT, we need to keep a ptr to its context */
86 /* External interfaces use first EC only, so remember */
87 typedef int (*acpi_ec_query_func) (void *data);
89 struct acpi_ec_query_handler {
90 struct list_head node;
91 acpi_ec_query_func func;
100 unsigned short irq_count;
109 static struct acpi_ec {
112 unsigned long command_addr;
113 unsigned long data_addr;
114 unsigned long global_lock;
117 wait_queue_head_t wait;
118 struct list_head list;
119 struct transaction *curr;
120 spinlock_t curr_lock;
121 } *boot_ec, *first_ec;
123 static int EC_FLAGS_MSI; /* Out-of-spec MSI controller */
124 static int EC_FLAGS_VALIDATE_ECDT; /* ASUStec ECDTs need to be validated */
125 static int EC_FLAGS_SKIP_DSDT_SCAN; /* Not all BIOS survive early DSDT scan */
127 /* --------------------------------------------------------------------------
128 Transaction Management
129 -------------------------------------------------------------------------- */
131 static inline u8 acpi_ec_read_status(struct acpi_ec *ec)
133 u8 x = inb(ec->command_addr);
134 pr_debug(PREFIX "---> status = 0x%2.2x\n", x);
138 static inline u8 acpi_ec_read_data(struct acpi_ec *ec)
140 u8 x = inb(ec->data_addr);
141 pr_debug(PREFIX "---> data = 0x%2.2x\n", x);
145 static inline void acpi_ec_write_cmd(struct acpi_ec *ec, u8 command)
147 pr_debug(PREFIX "<--- command = 0x%2.2x\n", command);
148 outb(command, ec->command_addr);
151 static inline void acpi_ec_write_data(struct acpi_ec *ec, u8 data)
153 pr_debug(PREFIX "<--- data = 0x%2.2x\n", data);
154 outb(data, ec->data_addr);
157 static int ec_transaction_done(struct acpi_ec *ec)
161 spin_lock_irqsave(&ec->curr_lock, flags);
162 if (!ec->curr || ec->curr->done)
164 spin_unlock_irqrestore(&ec->curr_lock, flags);
168 static void start_transaction(struct acpi_ec *ec)
170 ec->curr->irq_count = ec->curr->wi = ec->curr->ri = 0;
171 ec->curr->done = false;
172 acpi_ec_write_cmd(ec, ec->curr->command);
175 static void advance_transaction(struct acpi_ec *ec, u8 status)
178 spin_lock_irqsave(&ec->curr_lock, flags);
181 if (ec->curr->wlen > ec->curr->wi) {
182 if ((status & ACPI_EC_FLAG_IBF) == 0)
183 acpi_ec_write_data(ec,
184 ec->curr->wdata[ec->curr->wi++]);
187 } else if (ec->curr->rlen > ec->curr->ri) {
188 if ((status & ACPI_EC_FLAG_OBF) == 1) {
189 ec->curr->rdata[ec->curr->ri++] = acpi_ec_read_data(ec);
190 if (ec->curr->rlen == ec->curr->ri)
191 ec->curr->done = true;
194 } else if (ec->curr->wlen == ec->curr->wi &&
195 (status & ACPI_EC_FLAG_IBF) == 0)
196 ec->curr->done = true;
199 /* false interrupt, state didn't change */
201 ++ec->curr->irq_count;
203 spin_unlock_irqrestore(&ec->curr_lock, flags);
206 static int acpi_ec_sync_query(struct acpi_ec *ec);
208 static int ec_check_sci_sync(struct acpi_ec *ec, u8 state)
210 if (state & ACPI_EC_FLAG_SCI) {
211 if (!test_and_set_bit(EC_FLAGS_QUERY_PENDING, &ec->flags))
212 return acpi_ec_sync_query(ec);
217 static int ec_poll(struct acpi_ec *ec)
220 int repeat = 2; /* number of command restarts */
222 unsigned long delay = jiffies +
223 msecs_to_jiffies(ACPI_EC_DELAY);
225 /* don't sleep with disabled interrupts */
226 if (EC_FLAGS_MSI || irqs_disabled()) {
227 udelay(ACPI_EC_MSI_UDELAY);
228 if (ec_transaction_done(ec))
231 if (wait_event_timeout(ec->wait,
232 ec_transaction_done(ec),
233 msecs_to_jiffies(1)))
236 advance_transaction(ec, acpi_ec_read_status(ec));
237 } while (time_before(jiffies, delay));
238 if (acpi_ec_read_status(ec) & ACPI_EC_FLAG_IBF)
240 pr_debug(PREFIX "controller reset, restart transaction\n");
241 spin_lock_irqsave(&ec->curr_lock, flags);
242 start_transaction(ec);
243 spin_unlock_irqrestore(&ec->curr_lock, flags);
248 static int acpi_ec_transaction_unlocked(struct acpi_ec *ec,
249 struct transaction *t)
254 udelay(ACPI_EC_MSI_UDELAY);
255 /* start transaction */
256 spin_lock_irqsave(&ec->curr_lock, tmp);
257 /* following two actions should be kept atomic */
259 start_transaction(ec);
260 if (ec->curr->command == ACPI_EC_COMMAND_QUERY)
261 clear_bit(EC_FLAGS_QUERY_PENDING, &ec->flags);
262 spin_unlock_irqrestore(&ec->curr_lock, tmp);
264 spin_lock_irqsave(&ec->curr_lock, tmp);
266 spin_unlock_irqrestore(&ec->curr_lock, tmp);
270 static int ec_check_ibf0(struct acpi_ec *ec)
272 u8 status = acpi_ec_read_status(ec);
273 return (status & ACPI_EC_FLAG_IBF) == 0;
276 static int ec_wait_ibf0(struct acpi_ec *ec)
278 unsigned long delay = jiffies + msecs_to_jiffies(ACPI_EC_DELAY);
279 /* interrupt wait manually if GPE mode is not active */
280 while (time_before(jiffies, delay))
281 if (wait_event_timeout(ec->wait, ec_check_ibf0(ec),
282 msecs_to_jiffies(1)))
287 static int acpi_ec_transaction(struct acpi_ec *ec, struct transaction *t)
291 if (!ec || (!t) || (t->wlen && !t->wdata) || (t->rlen && !t->rdata))
294 memset(t->rdata, 0, t->rlen);
295 mutex_lock(&ec->lock);
296 if (test_bit(EC_FLAGS_FROZEN, &ec->flags)) {
300 if (ec->global_lock) {
301 status = acpi_acquire_global_lock(ACPI_EC_UDELAY_GLK, &glk);
302 if (ACPI_FAILURE(status)) {
307 if (ec_wait_ibf0(ec)) {
308 pr_err(PREFIX "input buffer is not empty, "
309 "aborting transaction\n");
313 pr_debug(PREFIX "transaction start\n");
314 /* disable GPE during transaction if storm is detected */
315 if (test_bit(EC_FLAGS_GPE_STORM, &ec->flags)) {
317 * It has to be disabled at the hardware level regardless of the
318 * GPE reference counting, so that it doesn't trigger.
320 acpi_set_gpe(NULL, ec->gpe, ACPI_GPE_DISABLE);
323 status = acpi_ec_transaction_unlocked(ec, t);
325 /* check if we received SCI during transaction */
326 ec_check_sci_sync(ec, acpi_ec_read_status(ec));
327 if (test_bit(EC_FLAGS_GPE_STORM, &ec->flags)) {
330 * It is safe to enable the GPE outside of the transaction. Use
331 * acpi_set_gpe() for that, since we used it to disable the GPE
334 acpi_set_gpe(NULL, ec->gpe, ACPI_GPE_ENABLE);
335 } else if (t->irq_count > ACPI_EC_STORM_THRESHOLD) {
336 pr_info(PREFIX "GPE storm detected, "
337 "transactions will use polling mode\n");
338 set_bit(EC_FLAGS_GPE_STORM, &ec->flags);
340 pr_debug(PREFIX "transaction end\n");
343 acpi_release_global_lock(glk);
345 mutex_unlock(&ec->lock);
349 static int acpi_ec_burst_enable(struct acpi_ec *ec)
352 struct transaction t = {.command = ACPI_EC_BURST_ENABLE,
353 .wdata = NULL, .rdata = &d,
354 .wlen = 0, .rlen = 1};
356 return acpi_ec_transaction(ec, &t);
359 static int acpi_ec_burst_disable(struct acpi_ec *ec)
361 struct transaction t = {.command = ACPI_EC_BURST_DISABLE,
362 .wdata = NULL, .rdata = NULL,
363 .wlen = 0, .rlen = 0};
365 return (acpi_ec_read_status(ec) & ACPI_EC_FLAG_BURST) ?
366 acpi_ec_transaction(ec, &t) : 0;
369 static int acpi_ec_read(struct acpi_ec *ec, u8 address, u8 * data)
373 struct transaction t = {.command = ACPI_EC_COMMAND_READ,
374 .wdata = &address, .rdata = &d,
375 .wlen = 1, .rlen = 1};
377 result = acpi_ec_transaction(ec, &t);
382 static int acpi_ec_write(struct acpi_ec *ec, u8 address, u8 data)
384 u8 wdata[2] = { address, data };
385 struct transaction t = {.command = ACPI_EC_COMMAND_WRITE,
386 .wdata = wdata, .rdata = NULL,
387 .wlen = 2, .rlen = 0};
389 return acpi_ec_transaction(ec, &t);
393 * Externally callable EC access functions. For now, assume 1 EC only
395 int ec_burst_enable(void)
399 return acpi_ec_burst_enable(first_ec);
402 EXPORT_SYMBOL(ec_burst_enable);
404 int ec_burst_disable(void)
408 return acpi_ec_burst_disable(first_ec);
411 EXPORT_SYMBOL(ec_burst_disable);
413 int ec_read(u8 addr, u8 * val)
421 err = acpi_ec_read(first_ec, addr, &temp_data);
430 EXPORT_SYMBOL(ec_read);
432 int ec_write(u8 addr, u8 val)
439 err = acpi_ec_write(first_ec, addr, val);
444 EXPORT_SYMBOL(ec_write);
446 int ec_transaction(u8 command,
447 const u8 * wdata, unsigned wdata_len,
448 u8 * rdata, unsigned rdata_len,
451 struct transaction t = {.command = command,
452 .wdata = wdata, .rdata = rdata,
453 .wlen = wdata_len, .rlen = rdata_len};
457 return acpi_ec_transaction(first_ec, &t);
460 EXPORT_SYMBOL(ec_transaction);
462 void acpi_ec_suspend_transactions(void)
464 struct acpi_ec *ec = first_ec;
469 mutex_lock(&ec->lock);
470 /* Prevent transactions from being carried out */
471 set_bit(EC_FLAGS_FROZEN, &ec->flags);
472 mutex_unlock(&ec->lock);
475 void acpi_ec_resume_transactions(void)
477 struct acpi_ec *ec = first_ec;
482 mutex_lock(&ec->lock);
483 /* Allow transactions to be carried out again */
484 clear_bit(EC_FLAGS_FROZEN, &ec->flags);
485 mutex_unlock(&ec->lock);
488 static int acpi_ec_query_unlocked(struct acpi_ec *ec, u8 * data)
492 struct transaction t = {.command = ACPI_EC_COMMAND_QUERY,
493 .wdata = NULL, .rdata = &d,
494 .wlen = 0, .rlen = 1};
498 * Query the EC to find out which _Qxx method we need to evaluate.
499 * Note that successful completion of the query causes the ACPI_EC_SCI
500 * bit to be cleared (and thus clearing the interrupt source).
502 result = acpi_ec_transaction_unlocked(ec, &t);
511 /* --------------------------------------------------------------------------
513 -------------------------------------------------------------------------- */
514 int acpi_ec_add_query_handler(struct acpi_ec *ec, u8 query_bit,
515 acpi_handle handle, acpi_ec_query_func func,
518 struct acpi_ec_query_handler *handler =
519 kzalloc(sizeof(struct acpi_ec_query_handler), GFP_KERNEL);
523 handler->query_bit = query_bit;
524 handler->handle = handle;
525 handler->func = func;
526 handler->data = data;
527 mutex_lock(&ec->lock);
528 list_add(&handler->node, &ec->list);
529 mutex_unlock(&ec->lock);
533 EXPORT_SYMBOL_GPL(acpi_ec_add_query_handler);
535 void acpi_ec_remove_query_handler(struct acpi_ec *ec, u8 query_bit)
537 struct acpi_ec_query_handler *handler, *tmp;
538 mutex_lock(&ec->lock);
539 list_for_each_entry_safe(handler, tmp, &ec->list, node) {
540 if (query_bit == handler->query_bit) {
541 list_del(&handler->node);
545 mutex_unlock(&ec->lock);
548 EXPORT_SYMBOL_GPL(acpi_ec_remove_query_handler);
550 static void acpi_ec_run(void *cxt)
552 struct acpi_ec_query_handler *handler = cxt;
555 pr_debug(PREFIX "start query execution\n");
557 handler->func(handler->data);
558 else if (handler->handle)
559 acpi_evaluate_object(handler->handle, NULL, NULL, NULL);
560 pr_debug(PREFIX "stop query execution\n");
564 static int acpi_ec_sync_query(struct acpi_ec *ec)
568 struct acpi_ec_query_handler *handler, *copy;
569 if ((status = acpi_ec_query_unlocked(ec, &value)))
571 list_for_each_entry(handler, &ec->list, node) {
572 if (value == handler->query_bit) {
573 /* have custom handler for this bit */
574 copy = kmalloc(sizeof(*handler), GFP_KERNEL);
577 memcpy(copy, handler, sizeof(*copy));
578 pr_debug(PREFIX "push query execution (0x%2x) on queue\n", value);
579 return acpi_os_execute((copy->func) ?
580 OSL_NOTIFY_HANDLER : OSL_GPE_HANDLER,
587 static void acpi_ec_gpe_query(void *ec_cxt)
589 struct acpi_ec *ec = ec_cxt;
592 mutex_lock(&ec->lock);
593 acpi_ec_sync_query(ec);
594 mutex_unlock(&ec->lock);
597 static void acpi_ec_gpe_query(void *ec_cxt);
599 static int ec_check_sci(struct acpi_ec *ec, u8 state)
601 if (state & ACPI_EC_FLAG_SCI) {
602 if (!test_and_set_bit(EC_FLAGS_QUERY_PENDING, &ec->flags)) {
603 pr_debug(PREFIX "push gpe query to the queue\n");
604 return acpi_os_execute(OSL_NOTIFY_HANDLER,
605 acpi_ec_gpe_query, ec);
611 static u32 acpi_ec_gpe_handler(void *data)
613 struct acpi_ec *ec = data;
615 pr_debug(PREFIX "~~~> interrupt\n");
617 advance_transaction(ec, acpi_ec_read_status(ec));
618 if (ec_transaction_done(ec) &&
619 (acpi_ec_read_status(ec) & ACPI_EC_FLAG_IBF) == 0) {
621 ec_check_sci(ec, acpi_ec_read_status(ec));
623 return ACPI_INTERRUPT_HANDLED;
626 /* --------------------------------------------------------------------------
627 Address Space Management
628 -------------------------------------------------------------------------- */
631 acpi_ec_space_handler(u32 function, acpi_physical_address address,
632 u32 bits, u64 *value,
633 void *handler_context, void *region_context)
635 struct acpi_ec *ec = handler_context;
639 if ((address > 0xFF) || !value || !handler_context)
640 return AE_BAD_PARAMETER;
642 if (function != ACPI_READ && function != ACPI_WRITE)
643 return AE_BAD_PARAMETER;
645 if (bits != 8 && acpi_strict)
646 return AE_BAD_PARAMETER;
649 acpi_ec_burst_enable(ec);
651 if (function == ACPI_READ) {
652 result = acpi_ec_read(ec, address, &temp);
655 temp = 0xff & (*value);
656 result = acpi_ec_write(ec, address, temp);
659 for (i = 8; unlikely(bits - i > 0); i += 8) {
661 if (function == ACPI_READ) {
662 result = acpi_ec_read(ec, address, &temp);
663 (*value) |= ((u64)temp) << i;
665 temp = 0xff & ((*value) >> i);
666 result = acpi_ec_write(ec, address, temp);
671 acpi_ec_burst_disable(ec);
675 return AE_BAD_PARAMETER;
688 /* --------------------------------------------------------------------------
690 -------------------------------------------------------------------------- */
692 static struct proc_dir_entry *acpi_ec_dir;
694 static int acpi_ec_read_info(struct seq_file *seq, void *offset)
696 struct acpi_ec *ec = seq->private;
701 seq_printf(seq, "gpe:\t\t\t0x%02x\n", (u32) ec->gpe);
702 seq_printf(seq, "ports:\t\t\t0x%02x, 0x%02x\n",
703 (unsigned)ec->command_addr, (unsigned)ec->data_addr);
704 seq_printf(seq, "use global lock:\t%s\n",
705 ec->global_lock ? "yes" : "no");
710 static int acpi_ec_info_open_fs(struct inode *inode, struct file *file)
712 return single_open(file, acpi_ec_read_info, PDE(inode)->data);
715 static const struct file_operations acpi_ec_info_ops = {
716 .open = acpi_ec_info_open_fs,
719 .release = single_release,
720 .owner = THIS_MODULE,
723 static int acpi_ec_add_fs(struct acpi_device *device)
725 struct proc_dir_entry *entry = NULL;
727 if (!acpi_device_dir(device)) {
728 acpi_device_dir(device) = proc_mkdir(acpi_device_bid(device),
730 if (!acpi_device_dir(device))
734 entry = proc_create_data(ACPI_EC_FILE_INFO, S_IRUGO,
735 acpi_device_dir(device),
736 &acpi_ec_info_ops, acpi_driver_data(device));
742 static int acpi_ec_remove_fs(struct acpi_device *device)
745 if (acpi_device_dir(device)) {
746 remove_proc_entry(ACPI_EC_FILE_INFO, acpi_device_dir(device));
747 remove_proc_entry(acpi_device_bid(device), acpi_ec_dir);
748 acpi_device_dir(device) = NULL;
754 /* --------------------------------------------------------------------------
756 -------------------------------------------------------------------------- */
758 ec_parse_io_ports(struct acpi_resource *resource, void *context);
760 static struct acpi_ec *make_acpi_ec(void)
762 struct acpi_ec *ec = kzalloc(sizeof(struct acpi_ec), GFP_KERNEL);
765 ec->flags = 1 << EC_FLAGS_QUERY_PENDING;
766 mutex_init(&ec->lock);
767 init_waitqueue_head(&ec->wait);
768 INIT_LIST_HEAD(&ec->list);
769 spin_lock_init(&ec->curr_lock);
774 acpi_ec_register_query_methods(acpi_handle handle, u32 level,
775 void *context, void **return_value)
778 struct acpi_buffer buffer = { sizeof(node_name), node_name };
779 struct acpi_ec *ec = context;
783 status = acpi_get_name(handle, ACPI_SINGLE_NAME, &buffer);
785 if (ACPI_SUCCESS(status) && sscanf(node_name, "_Q%x", &value) == 1) {
786 acpi_ec_add_query_handler(ec, value, handle, NULL, NULL);
792 ec_parse_device(acpi_handle handle, u32 Level, void *context, void **retval)
795 unsigned long long tmp = 0;
797 struct acpi_ec *ec = context;
799 /* clear addr values, ec_parse_io_ports depend on it */
800 ec->command_addr = ec->data_addr = 0;
802 status = acpi_walk_resources(handle, METHOD_NAME__CRS,
803 ec_parse_io_ports, ec);
804 if (ACPI_FAILURE(status))
807 /* Get GPE bit assignment (EC events). */
808 /* TODO: Add support for _GPE returning a package */
809 status = acpi_evaluate_integer(handle, "_GPE", NULL, &tmp);
810 if (ACPI_FAILURE(status))
813 /* Use the global lock for all EC transactions? */
815 acpi_evaluate_integer(handle, "_GLK", NULL, &tmp);
816 ec->global_lock = tmp;
818 return AE_CTRL_TERMINATE;
821 static int ec_install_handlers(struct acpi_ec *ec)
824 if (test_bit(EC_FLAGS_HANDLERS_INSTALLED, &ec->flags))
826 status = acpi_install_gpe_handler(NULL, ec->gpe,
827 ACPI_GPE_EDGE_TRIGGERED,
828 &acpi_ec_gpe_handler, ec);
829 if (ACPI_FAILURE(status))
832 acpi_enable_gpe(NULL, ec->gpe, ACPI_GPE_TYPE_RUNTIME);
833 status = acpi_install_address_space_handler(ec->handle,
835 &acpi_ec_space_handler,
837 if (ACPI_FAILURE(status)) {
838 if (status == AE_NOT_FOUND) {
840 * Maybe OS fails in evaluating the _REG object.
841 * The AE_NOT_FOUND error will be ignored and OS
842 * continue to initialize EC.
844 printk(KERN_ERR "Fail in evaluating the _REG object"
845 " of EC device. Broken bios is suspected.\n");
847 acpi_remove_gpe_handler(NULL, ec->gpe,
848 &acpi_ec_gpe_handler);
849 acpi_disable_gpe(NULL, ec->gpe, ACPI_GPE_TYPE_RUNTIME);
854 set_bit(EC_FLAGS_HANDLERS_INSTALLED, &ec->flags);
858 static void ec_remove_handlers(struct acpi_ec *ec)
860 acpi_disable_gpe(NULL, ec->gpe, ACPI_GPE_TYPE_RUNTIME);
861 if (ACPI_FAILURE(acpi_remove_address_space_handler(ec->handle,
862 ACPI_ADR_SPACE_EC, &acpi_ec_space_handler)))
863 pr_err(PREFIX "failed to remove space handler\n");
864 if (ACPI_FAILURE(acpi_remove_gpe_handler(NULL, ec->gpe,
865 &acpi_ec_gpe_handler)))
866 pr_err(PREFIX "failed to remove gpe handler\n");
867 clear_bit(EC_FLAGS_HANDLERS_INSTALLED, &ec->flags);
870 static int acpi_ec_add(struct acpi_device *device)
872 struct acpi_ec *ec = NULL;
875 strcpy(acpi_device_name(device), ACPI_EC_DEVICE_NAME);
876 strcpy(acpi_device_class(device), ACPI_EC_CLASS);
878 /* Check for boot EC */
880 (boot_ec->handle == device->handle ||
881 boot_ec->handle == ACPI_ROOT_OBJECT)) {
889 if (ec_parse_device(device->handle, 0, ec, NULL) !=
895 ec->handle = device->handle;
897 /* Find and register all query methods */
898 acpi_walk_namespace(ACPI_TYPE_METHOD, ec->handle, 1,
899 acpi_ec_register_query_methods, NULL, ec, NULL);
903 device->driver_data = ec;
904 acpi_ec_add_fs(device);
905 pr_info(PREFIX "GPE = 0x%lx, I/O: command/status = 0x%lx, data = 0x%lx\n",
906 ec->gpe, ec->command_addr, ec->data_addr);
908 ret = ec_install_handlers(ec);
910 /* EC is fully operational, allow queries */
911 clear_bit(EC_FLAGS_QUERY_PENDING, &ec->flags);
915 static int acpi_ec_remove(struct acpi_device *device, int type)
918 struct acpi_ec_query_handler *handler, *tmp;
923 ec = acpi_driver_data(device);
924 ec_remove_handlers(ec);
925 mutex_lock(&ec->lock);
926 list_for_each_entry_safe(handler, tmp, &ec->list, node) {
927 list_del(&handler->node);
930 mutex_unlock(&ec->lock);
931 acpi_ec_remove_fs(device);
932 device->driver_data = NULL;
940 ec_parse_io_ports(struct acpi_resource *resource, void *context)
942 struct acpi_ec *ec = context;
944 if (resource->type != ACPI_RESOURCE_TYPE_IO)
948 * The first address region returned is the data port, and
949 * the second address region returned is the status/command
952 if (ec->data_addr == 0)
953 ec->data_addr = resource->data.io.minimum;
954 else if (ec->command_addr == 0)
955 ec->command_addr = resource->data.io.minimum;
957 return AE_CTRL_TERMINATE;
962 int __init acpi_boot_ec_enable(void)
964 if (!boot_ec || test_bit(EC_FLAGS_HANDLERS_INSTALLED, &boot_ec->flags))
966 if (!ec_install_handlers(boot_ec)) {
973 static const struct acpi_device_id ec_device_ids[] = {
978 /* Some BIOS do not survive early DSDT scan, skip it */
979 static int ec_skip_dsdt_scan(const struct dmi_system_id *id)
981 EC_FLAGS_SKIP_DSDT_SCAN = 1;
985 /* ASUStek often supplies us with broken ECDT, validate it */
986 static int ec_validate_ecdt(const struct dmi_system_id *id)
988 EC_FLAGS_VALIDATE_ECDT = 1;
992 /* MSI EC needs special treatment, enable it */
993 static int ec_flag_msi(const struct dmi_system_id *id)
995 printk(KERN_DEBUG PREFIX "Detected MSI hardware, enabling workarounds.\n");
997 EC_FLAGS_VALIDATE_ECDT = 1;
1001 static struct dmi_system_id __initdata ec_dmi_table[] = {
1003 ec_skip_dsdt_scan, "Compal JFL92", {
1004 DMI_MATCH(DMI_BIOS_VENDOR, "COMPAL"),
1005 DMI_MATCH(DMI_BOARD_NAME, "JFL92") }, NULL},
1007 ec_flag_msi, "MSI hardware", {
1008 DMI_MATCH(DMI_BIOS_VENDOR, "Micro-Star")}, NULL},
1010 ec_flag_msi, "MSI hardware", {
1011 DMI_MATCH(DMI_SYS_VENDOR, "Micro-Star")}, NULL},
1013 ec_flag_msi, "MSI hardware", {
1014 DMI_MATCH(DMI_CHASSIS_VENDOR, "MICRO-Star")}, NULL},
1016 ec_validate_ecdt, "ASUS hardware", {
1017 DMI_MATCH(DMI_BIOS_VENDOR, "ASUS") }, NULL},
1022 int __init acpi_ec_ecdt_probe(void)
1025 struct acpi_ec *saved_ec = NULL;
1026 struct acpi_table_ecdt *ecdt_ptr;
1028 boot_ec = make_acpi_ec();
1032 * Generate a boot ec context
1034 dmi_check_system(ec_dmi_table);
1035 status = acpi_get_table(ACPI_SIG_ECDT, 1,
1036 (struct acpi_table_header **)&ecdt_ptr);
1037 if (ACPI_SUCCESS(status)) {
1038 pr_info(PREFIX "EC description table is found, configuring boot EC\n");
1039 boot_ec->command_addr = ecdt_ptr->control.address;
1040 boot_ec->data_addr = ecdt_ptr->data.address;
1041 boot_ec->gpe = ecdt_ptr->gpe;
1042 boot_ec->handle = ACPI_ROOT_OBJECT;
1043 acpi_get_handle(ACPI_ROOT_OBJECT, ecdt_ptr->id, &boot_ec->handle);
1044 /* Don't trust ECDT, which comes from ASUSTek */
1045 if (!EC_FLAGS_VALIDATE_ECDT)
1047 saved_ec = kmalloc(sizeof(struct acpi_ec), GFP_KERNEL);
1050 memcpy(saved_ec, boot_ec, sizeof(struct acpi_ec));
1054 if (EC_FLAGS_SKIP_DSDT_SCAN)
1057 /* This workaround is needed only on some broken machines,
1058 * which require early EC, but fail to provide ECDT */
1059 printk(KERN_DEBUG PREFIX "Look up EC in DSDT\n");
1060 status = acpi_get_devices(ec_device_ids[0].id, ec_parse_device,
1062 /* Check that acpi_get_devices actually find something */
1063 if (ACPI_FAILURE(status) || !boot_ec->handle)
1066 /* try to find good ECDT from ASUSTek */
1067 if (saved_ec->command_addr != boot_ec->command_addr ||
1068 saved_ec->data_addr != boot_ec->data_addr ||
1069 saved_ec->gpe != boot_ec->gpe ||
1070 saved_ec->handle != boot_ec->handle)
1071 pr_info(PREFIX "ASUSTek keeps feeding us with broken "
1072 "ECDT tables, which are very hard to workaround. "
1073 "Trying to use DSDT EC info instead. Please send "
1078 /* We really need to limit this workaround, the only ASUS,
1079 * which needs it, has fake EC._INI method, so use it as flag.
1080 * Keep boot_ec struct as it will be needed soon.
1083 if (!dmi_name_in_vendors("ASUS") ||
1084 ACPI_FAILURE(acpi_get_handle(boot_ec->handle, "_INI",
1089 if (!ec_install_handlers(boot_ec)) {
1099 static int acpi_ec_suspend(struct acpi_device *device, pm_message_t state)
1101 struct acpi_ec *ec = acpi_driver_data(device);
1102 /* Stop using the GPE, but keep it reference counted. */
1103 acpi_set_gpe(NULL, ec->gpe, ACPI_GPE_DISABLE);
1107 static int acpi_ec_resume(struct acpi_device *device)
1109 struct acpi_ec *ec = acpi_driver_data(device);
1110 /* Enable the GPE again, but don't reference count it once more. */
1111 acpi_set_gpe(NULL, ec->gpe, ACPI_GPE_ENABLE);
1115 static struct acpi_driver acpi_ec_driver = {
1117 .class = ACPI_EC_CLASS,
1118 .ids = ec_device_ids,
1121 .remove = acpi_ec_remove,
1122 .suspend = acpi_ec_suspend,
1123 .resume = acpi_ec_resume,
1127 int __init acpi_ec_init(void)
1131 acpi_ec_dir = proc_mkdir(ACPI_EC_CLASS, acpi_root_dir);
1135 /* Now register the driver for the EC */
1136 result = acpi_bus_register_driver(&acpi_ec_driver);
1138 remove_proc_entry(ACPI_EC_CLASS, acpi_root_dir);
1145 /* EC driver currently not unloadable */
1147 static void __exit acpi_ec_exit(void)
1150 acpi_bus_unregister_driver(&acpi_ec_driver);
1152 remove_proc_entry(ACPI_EC_CLASS, acpi_root_dir);