2 * acpi_ec.c - ACPI Embedded Controller Driver ($Revision: 38 $)
4 * Copyright (C) 2004 Luming Yu <luming.yu@intel.com>
5 * Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
6 * Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
8 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2 of the License, or (at
13 * your option) any later version.
15 * This program is distributed in the hope that it will be useful, but
16 * WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * General Public License for more details.
20 * You should have received a copy of the GNU General Public License along
21 * with this program; if not, write to the Free Software Foundation, Inc.,
22 * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
24 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
27 #include <linux/kernel.h>
28 #include <linux/module.h>
29 #include <linux/init.h>
30 #include <linux/types.h>
31 #include <linux/delay.h>
32 #include <linux/proc_fs.h>
33 #include <linux/seq_file.h>
34 #include <linux/interrupt.h>
36 #include <acpi/acpi_bus.h>
37 #include <acpi/acpi_drivers.h>
38 #include <acpi/actypes.h>
40 #define _COMPONENT ACPI_EC_COMPONENT
41 ACPI_MODULE_NAME("acpi_ec")
42 #define ACPI_EC_COMPONENT 0x00100000
43 #define ACPI_EC_CLASS "embedded_controller"
44 #define ACPI_EC_HID "PNP0C09"
45 #define ACPI_EC_DRIVER_NAME "ACPI Embedded Controller Driver"
46 #define ACPI_EC_DEVICE_NAME "Embedded Controller"
47 #define ACPI_EC_FILE_INFO "info"
49 /* EC status register */
50 #define ACPI_EC_FLAG_OBF 0x01 /* Output buffer full */
51 #define ACPI_EC_FLAG_IBF 0x02 /* Input buffer full */
52 #define ACPI_EC_FLAG_BURST 0x10 /* burst mode */
53 #define ACPI_EC_FLAG_SCI 0x20 /* EC-SCI occurred */
56 #define ACPI_EC_COMMAND_READ 0x80
57 #define ACPI_EC_COMMAND_WRITE 0x81
58 #define ACPI_EC_BURST_ENABLE 0x82
59 #define ACPI_EC_BURST_DISABLE 0x83
60 #define ACPI_EC_COMMAND_QUERY 0x84
64 ACPI_EC_EVENT_OBF_1
= 1, /* Output buffer full */
65 ACPI_EC_EVENT_IBF_0
, /* Input buffer empty */
68 #define ACPI_EC_DELAY 50 /* Wait 50ms max. during EC ops */
69 #define ACPI_EC_UDELAY_GLK 1000 /* Wait 1ms max. to get global lock */
70 #define ACPI_EC_UDELAY 100 /* Poll @ 100us increments */
71 #define ACPI_EC_UDELAY_COUNT 1000 /* Wait 10ms max. during EC ops */
74 EC_INTR
= 1, /* Output buffer full */
75 EC_POLL
, /* Input buffer empty */
78 static int acpi_ec_remove(struct acpi_device
*device
, int type
);
79 static int acpi_ec_start(struct acpi_device
*device
);
80 static int acpi_ec_stop(struct acpi_device
*device
, int type
);
81 static int acpi_ec_add(struct acpi_device
*device
);
83 static struct acpi_driver acpi_ec_driver
= {
84 .name
= ACPI_EC_DRIVER_NAME
,
85 .class = ACPI_EC_CLASS
,
89 .remove
= acpi_ec_remove
,
90 .start
= acpi_ec_start
,
95 /* If we find an EC via the ECDT, we need to keep a ptr to its context */
99 unsigned long gpe_bit
;
100 unsigned long command_addr
;
101 unsigned long data_addr
;
102 unsigned long global_lock
;
103 struct semaphore sem
;
104 unsigned int expect_event
;
105 atomic_t leaving_burst
; /* 0 : No, 1 : Yes, 2: abort */
106 wait_queue_head_t wait
;
109 /* External interfaces use first EC only, so remember */
110 static struct acpi_device
*first_ec
;
111 static int acpi_ec_mode
= EC_INTR
;
113 /* --------------------------------------------------------------------------
114 Transaction Management
115 -------------------------------------------------------------------------- */
117 static inline u8
acpi_ec_read_status(struct acpi_ec
*ec
)
119 return inb(ec
->command_addr
);
122 static inline u8
acpi_ec_read_data(struct acpi_ec
*ec
)
124 return inb(ec
->data_addr
);
127 static inline void acpi_ec_write_cmd(struct acpi_ec
*ec
, u8 command
)
129 outb(command
, ec
->command_addr
);
132 static inline void acpi_ec_write_data(struct acpi_ec
*ec
, u8 data
)
134 outb(data
, ec
->data_addr
);
137 static int acpi_ec_check_status(u8 status
, u8 event
)
140 case ACPI_EC_EVENT_OBF_1
:
141 if (status
& ACPI_EC_FLAG_OBF
)
144 case ACPI_EC_EVENT_IBF_0
:
145 if (!(status
& ACPI_EC_FLAG_IBF
))
155 static int acpi_ec_wait(struct acpi_ec
*ec
, u8 event
)
157 int i
= (acpi_ec_mode
== EC_POLL
) ? ACPI_EC_UDELAY_COUNT
: 0;
160 ec
->expect_event
= event
;
161 if (acpi_ec_check_status(acpi_ec_read_status(ec
), event
)) {
162 ec
->expect_event
= 0;
167 if (acpi_ec_mode
== EC_POLL
) {
168 udelay(ACPI_EC_UDELAY
);
170 time_left
= wait_event_timeout(ec
->wait
,
172 msecs_to_jiffies(ACPI_EC_DELAY
));
174 ec
->expect_event
= 0;
178 if (acpi_ec_check_status(acpi_ec_read_status(ec
), event
)) {
179 ec
->expect_event
= 0;
184 ec
->expect_event
= 0;
189 #ifdef ACPI_FUTURE_USAGE
191 * Note: samsung nv5000 doesn't work with ec burst mode.
192 * http://bugzilla.kernel.org/show_bug.cgi?id=4980
194 int acpi_ec_enter_burst_mode(struct acpi_ec
*ec
)
200 status
= acpi_ec_read_status(ec
);
201 if (status
!= -EINVAL
&& !(status
& ACPI_EC_FLAG_BURST
)) {
202 status
= acpi_ec_wait(ec
, ACPI_EC_EVENT_IBF_0
);
205 acpi_ec_write_cmd(ec
, ACPI_EC_BURST_ENABLE
);
206 status
= acpi_ec_wait(ec
, ACPI_EC_EVENT_OBF_1
);
207 tmp
= acpi_ec_read_data(ec
);
208 if (tmp
!= 0x90) { /* Burst ACK byte */
213 atomic_set(&ec
->leaving_burst
, 0);
216 ACPI_EXCEPTION((AE_INFO
, status
, "EC wait, burst mode"));
220 int acpi_ec_leave_burst_mode(struct acpi_ec
*ec
)
225 status
= acpi_ec_read_status(ec
);
226 if (status
!= -EINVAL
&& (status
& ACPI_EC_FLAG_BURST
)){
227 status
= acpi_ec_wait(ec
, ACPI_EC_EVENT_IBF_0
);
230 acpi_ec_write_cmd(ec
, ACPI_EC_BURST_DISABLE
);
231 acpi_ec_wait(ec
, ACPI_EC_EVENT_IBF_0
);
233 atomic_set(&ec
->leaving_burst
, 1);
236 ACPI_EXCEPTION((AE_INFO
, status
, "EC leave burst mode"));
239 #endif /* ACPI_FUTURE_USAGE */
241 static int acpi_ec_transaction_unlocked(struct acpi_ec
*ec
, u8 command
,
242 const u8
*wdata
, unsigned wdata_len
,
243 u8
*rdata
, unsigned rdata_len
)
247 acpi_ec_write_cmd(ec
, command
);
249 for (; wdata_len
> 0; wdata_len
--) {
250 result
= acpi_ec_wait(ec
, ACPI_EC_EVENT_IBF_0
);
253 acpi_ec_write_data(ec
, *(wdata
++));
256 if (command
== ACPI_EC_COMMAND_WRITE
) {
257 result
= acpi_ec_wait(ec
, ACPI_EC_EVENT_IBF_0
);
262 for (; rdata_len
> 0; rdata_len
--) {
263 result
= acpi_ec_wait(ec
, ACPI_EC_EVENT_OBF_1
);
267 *(rdata
++) = acpi_ec_read_data(ec
);
273 static int acpi_ec_transaction(struct acpi_ec
*ec
, u8 command
,
274 const u8
*wdata
, unsigned wdata_len
,
275 u8
*rdata
, unsigned rdata_len
)
280 if (!ec
|| (wdata_len
&& !wdata
) || (rdata_len
&& !rdata
))
284 memset(rdata
, 0, rdata_len
);
286 if (ec
->global_lock
) {
287 status
= acpi_acquire_global_lock(ACPI_EC_UDELAY_GLK
, &glk
);
288 if (ACPI_FAILURE(status
))
293 status
= acpi_ec_wait(ec
, ACPI_EC_EVENT_IBF_0
);
295 printk(KERN_DEBUG PREFIX
"read EC, IB not empty\n");
299 status
= acpi_ec_transaction_unlocked(ec
, command
,
307 acpi_release_global_lock(glk
);
312 static int acpi_ec_read(struct acpi_ec
*ec
, u8 address
, u8
*data
)
317 result
= acpi_ec_transaction(ec
, ACPI_EC_COMMAND_READ
,
323 static int acpi_ec_write(struct acpi_ec
*ec
, u8 address
, u8 data
)
325 u8 wdata
[2] = { address
, data
};
326 return acpi_ec_transaction(ec
, ACPI_EC_COMMAND_WRITE
,
331 * Externally callable EC access functions. For now, assume 1 EC only
333 int ec_read(u8 addr
, u8
*val
)
342 ec
= acpi_driver_data(first_ec
);
344 err
= acpi_ec_read(ec
, addr
, &temp_data
);
353 EXPORT_SYMBOL(ec_read
);
355 int ec_write(u8 addr
, u8 val
)
363 ec
= acpi_driver_data(first_ec
);
365 err
= acpi_ec_write(ec
, addr
, val
);
370 EXPORT_SYMBOL(ec_write
);
372 extern int ec_transaction(u8 command
,
373 const u8
*wdata
, unsigned wdata_len
,
374 u8
*rdata
, unsigned rdata_len
)
381 ec
= acpi_driver_data(first_ec
);
383 return acpi_ec_transaction(ec
, command
, wdata
,
384 wdata_len
, rdata
, rdata_len
);
387 EXPORT_SYMBOL(ec_transaction
);
389 static int acpi_ec_query(struct acpi_ec
*ec
, u8
*data
)
398 * Query the EC to find out which _Qxx method we need to evaluate.
399 * Note that successful completion of the query causes the ACPI_EC_SCI
400 * bit to be cleared (and thus clearing the interrupt source).
403 result
= acpi_ec_transaction(ec
, ACPI_EC_COMMAND_QUERY
, NULL
, 0, &d
, 1);
414 /* --------------------------------------------------------------------------
416 -------------------------------------------------------------------------- */
418 struct acpi_ec_query_data
{
423 static void acpi_ec_gpe_query(void *ec_cxt
)
425 struct acpi_ec
*ec
= (struct acpi_ec
*)ec_cxt
;
427 static char object_name
[8];
432 value
= acpi_ec_read_status(ec
);
434 if (!(value
& ACPI_EC_FLAG_SCI
))
437 if (acpi_ec_query(ec
, &value
))
440 snprintf(object_name
, 8, "_Q%2.2X", value
);
442 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "Evaluating %s", object_name
));
444 acpi_evaluate_object(ec
->handle
, object_name
, NULL
, NULL
);
447 acpi_enable_gpe(NULL
, ec
->gpe_bit
, ACPI_NOT_ISR
);
450 static u32
acpi_ec_gpe_handler(void *data
)
452 acpi_status status
= AE_OK
;
454 struct acpi_ec
*ec
= (struct acpi_ec
*)data
;
456 acpi_clear_gpe(NULL
, ec
->gpe_bit
, ACPI_ISR
);
457 value
= acpi_ec_read_status(ec
);
459 if (acpi_ec_mode
== EC_INTR
) {
460 if (acpi_ec_check_status(value
, ec
->expect_event
)) {
461 ec
->expect_event
= 0;
466 if (value
& ACPI_EC_FLAG_SCI
) {
467 status
= acpi_os_execute(OSL_EC_BURST_HANDLER
, acpi_ec_gpe_query
, ec
);
468 return status
== AE_OK
?
469 ACPI_INTERRUPT_HANDLED
: ACPI_INTERRUPT_NOT_HANDLED
;
471 acpi_enable_gpe(NULL
, ec
->gpe_bit
, ACPI_ISR
);
472 return status
== AE_OK
?
473 ACPI_INTERRUPT_HANDLED
: ACPI_INTERRUPT_NOT_HANDLED
;
476 /* --------------------------------------------------------------------------
477 Address Space Management
478 -------------------------------------------------------------------------- */
481 acpi_ec_space_setup(acpi_handle region_handle
,
482 u32 function
, void *handler_context
, void **return_context
)
485 * The EC object is in the handler context and is needed
486 * when calling the acpi_ec_space_handler.
488 *return_context
= (function
!= ACPI_REGION_DEACTIVATE
) ?
489 handler_context
: NULL
;
495 acpi_ec_space_handler(u32 function
,
496 acpi_physical_address address
,
498 acpi_integer
* value
,
499 void *handler_context
, void *region_context
)
502 struct acpi_ec
*ec
= NULL
;
504 acpi_integer f_v
= 0;
508 if ((address
> 0xFF) || !value
|| !handler_context
)
509 return AE_BAD_PARAMETER
;
511 if (bit_width
!= 8 && acpi_strict
) {
512 return AE_BAD_PARAMETER
;
515 ec
= (struct acpi_ec
*)handler_context
;
521 result
= acpi_ec_read(ec
, (u8
) address
, (u8
*) &temp
);
524 result
= acpi_ec_write(ec
, (u8
) address
, (u8
) temp
);
534 if (function
== ACPI_READ
)
535 f_v
|= temp
<< 8 * i
;
536 if (function
== ACPI_WRITE
)
543 if (function
== ACPI_READ
) {
544 f_v
|= temp
<< 8 * i
;
551 return AE_BAD_PARAMETER
;
564 /* --------------------------------------------------------------------------
566 -------------------------------------------------------------------------- */
568 static struct proc_dir_entry
*acpi_ec_dir
;
570 static int acpi_ec_read_info(struct seq_file
*seq
, void *offset
)
572 struct acpi_ec
*ec
= (struct acpi_ec
*)seq
->private;
578 seq_printf(seq
, "gpe bit: 0x%02x\n",
580 seq_printf(seq
, "ports: 0x%02x, 0x%02x\n",
581 (u32
) ec
->command_addr
,
582 (u32
) ec
->data_addr
);
583 seq_printf(seq
, "use global lock: %s\n",
584 ec
->global_lock
? "yes" : "no");
585 acpi_enable_gpe(NULL
, ec
->gpe_bit
, ACPI_NOT_ISR
);
591 static int acpi_ec_info_open_fs(struct inode
*inode
, struct file
*file
)
593 return single_open(file
, acpi_ec_read_info
, PDE(inode
)->data
);
596 static struct file_operations acpi_ec_info_ops
= {
597 .open
= acpi_ec_info_open_fs
,
600 .release
= single_release
,
601 .owner
= THIS_MODULE
,
604 static int acpi_ec_add_fs(struct acpi_device
*device
)
606 struct proc_dir_entry
*entry
= NULL
;
609 if (!acpi_device_dir(device
)) {
610 acpi_device_dir(device
) = proc_mkdir(acpi_device_bid(device
),
612 if (!acpi_device_dir(device
))
616 entry
= create_proc_entry(ACPI_EC_FILE_INFO
, S_IRUGO
,
617 acpi_device_dir(device
));
621 entry
->proc_fops
= &acpi_ec_info_ops
;
622 entry
->data
= acpi_driver_data(device
);
623 entry
->owner
= THIS_MODULE
;
629 static int acpi_ec_remove_fs(struct acpi_device
*device
)
632 if (acpi_device_dir(device
)) {
633 remove_proc_entry(ACPI_EC_FILE_INFO
, acpi_device_dir(device
));
634 remove_proc_entry(acpi_device_bid(device
), acpi_ec_dir
);
635 acpi_device_dir(device
) = NULL
;
641 /* --------------------------------------------------------------------------
643 -------------------------------------------------------------------------- */
645 static int acpi_ec_add(struct acpi_device
*device
)
648 acpi_status status
= AE_OK
;
649 struct acpi_ec
*ec
= NULL
;
655 ec
= kmalloc(sizeof(struct acpi_ec
), GFP_KERNEL
);
658 memset(ec
, 0, sizeof(struct acpi_ec
));
660 ec
->handle
= device
->handle
;
662 init_MUTEX(&ec
->sem
);
663 if (acpi_ec_mode
== EC_INTR
) {
664 atomic_set(&ec
->leaving_burst
, 1);
665 init_waitqueue_head(&ec
->wait
);
667 strcpy(acpi_device_name(device
), ACPI_EC_DEVICE_NAME
);
668 strcpy(acpi_device_class(device
), ACPI_EC_CLASS
);
669 acpi_driver_data(device
) = ec
;
671 /* Use the global lock for all EC transactions? */
672 acpi_evaluate_integer(ec
->handle
, "_GLK", NULL
,
675 /* XXX we don't test uids, because on some boxes ecdt uid = 0, see:
676 http://bugzilla.kernel.org/show_bug.cgi?id=6111 */
678 acpi_remove_address_space_handler(ACPI_ROOT_OBJECT
,
680 &acpi_ec_space_handler
);
682 acpi_remove_gpe_handler(NULL
, ec_ecdt
->gpe_bit
,
683 &acpi_ec_gpe_handler
);
688 /* Get GPE bit assignment (EC events). */
689 /* TODO: Add support for _GPE returning a package */
691 acpi_evaluate_integer(ec
->handle
, "_GPE", NULL
,
693 if (ACPI_FAILURE(status
)) {
694 ACPI_EXCEPTION((AE_INFO
, status
, "Obtaining GPE bit assignment"));
699 result
= acpi_ec_add_fs(device
);
703 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "%s [%s] (gpe %d) interrupt mode.",
704 acpi_device_name(device
), acpi_device_bid(device
),
717 static int acpi_ec_remove(struct acpi_device
*device
, int type
)
719 struct acpi_ec
*ec
= NULL
;
725 ec
= acpi_driver_data(device
);
727 acpi_ec_remove_fs(device
);
735 acpi_ec_io_ports(struct acpi_resource
*resource
, void *context
)
737 struct acpi_ec
*ec
= (struct acpi_ec
*)context
;
739 if (resource
->type
!= ACPI_RESOURCE_TYPE_IO
) {
744 * The first address region returned is the data port, and
745 * the second address region returned is the status/command
748 if (ec
->data_addr
== 0) {
749 ec
->data_addr
= resource
->data
.io
.minimum
;
750 } else if (ec
->command_addr
== 0) {
751 ec
->command_addr
= resource
->data
.io
.minimum
;
753 return AE_CTRL_TERMINATE
;
759 static int acpi_ec_start(struct acpi_device
*device
)
761 acpi_status status
= AE_OK
;
762 struct acpi_ec
*ec
= NULL
;
768 ec
= acpi_driver_data(device
);
774 * Get I/O port addresses. Convert to GAS format.
776 status
= acpi_walk_resources(ec
->handle
, METHOD_NAME__CRS
,
777 acpi_ec_io_ports
, ec
);
778 if (ACPI_FAILURE(status
) || ec
->command_addr
== 0) {
779 ACPI_EXCEPTION((AE_INFO
, status
,
780 "Error getting I/O port addresses"));
784 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "gpe=0x%02lx, ports=0x%2lx,0x%2lx",
785 ec
->gpe_bit
, ec
->command_addr
, ec
->data_addr
));
788 * Install GPE handler
790 status
= acpi_install_gpe_handler(NULL
, ec
->gpe_bit
,
791 ACPI_GPE_EDGE_TRIGGERED
,
792 &acpi_ec_gpe_handler
, ec
);
793 if (ACPI_FAILURE(status
)) {
796 acpi_set_gpe_type(NULL
, ec
->gpe_bit
, ACPI_GPE_TYPE_RUNTIME
);
797 acpi_enable_gpe(NULL
, ec
->gpe_bit
, ACPI_NOT_ISR
);
799 status
= acpi_install_address_space_handler(ec
->handle
,
801 &acpi_ec_space_handler
,
802 &acpi_ec_space_setup
, ec
);
803 if (ACPI_FAILURE(status
)) {
804 acpi_remove_gpe_handler(NULL
, ec
->gpe_bit
,
805 &acpi_ec_gpe_handler
);
812 static int acpi_ec_stop(struct acpi_device
*device
, int type
)
814 acpi_status status
= AE_OK
;
815 struct acpi_ec
*ec
= NULL
;
821 ec
= acpi_driver_data(device
);
823 status
= acpi_remove_address_space_handler(ec
->handle
,
825 &acpi_ec_space_handler
);
826 if (ACPI_FAILURE(status
))
830 acpi_remove_gpe_handler(NULL
, ec
->gpe_bit
,
831 &acpi_ec_gpe_handler
);
832 if (ACPI_FAILURE(status
))
838 static acpi_status __init
839 acpi_fake_ecdt_callback(acpi_handle handle
,
840 u32 Level
, void *context
, void **retval
)
844 init_MUTEX(&ec_ecdt
->sem
);
845 if (acpi_ec_mode
== EC_INTR
) {
846 init_waitqueue_head(&ec_ecdt
->wait
);
848 status
= acpi_walk_resources(handle
, METHOD_NAME__CRS
,
849 acpi_ec_io_ports
, ec_ecdt
);
850 if (ACPI_FAILURE(status
))
854 acpi_evaluate_integer(handle
, "_UID", NULL
, &ec_ecdt
->uid
);
857 acpi_evaluate_integer(handle
, "_GPE", NULL
,
859 if (ACPI_FAILURE(status
))
861 ec_ecdt
->global_lock
= TRUE
;
862 ec_ecdt
->handle
= handle
;
864 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "GPE=0x%02lx, ports=0x%2lx, 0x%2lx",
865 ec_ecdt
->gpe_bit
, ec_ecdt
->command_addr
, ec_ecdt
->data_addr
));
867 return AE_CTRL_TERMINATE
;
871 * Some BIOS (such as some from Gateway laptops) access EC region very early
872 * such as in BAT0._INI or EC._INI before an EC device is found and
873 * do not provide an ECDT. According to ACPI spec, ECDT isn't mandatorily
874 * required, but if EC regison is accessed early, it is required.
875 * The routine tries to workaround the BIOS bug by pre-scan EC device
876 * It assumes that _CRS, _HID, _GPE, _UID methods of EC don't touch any
877 * op region (since _REG isn't invoked yet). The assumption is true for
880 static int __init
acpi_ec_fake_ecdt(void)
885 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "Try to make an fake ECDT"));
887 ec_ecdt
= kmalloc(sizeof(struct acpi_ec
), GFP_KERNEL
);
892 memset(ec_ecdt
, 0, sizeof(struct acpi_ec
));
894 status
= acpi_get_devices(ACPI_EC_HID
,
895 acpi_fake_ecdt_callback
, NULL
, NULL
);
896 if (ACPI_FAILURE(status
)) {
900 ACPI_EXCEPTION((AE_INFO
, status
, "Can't make an fake ECDT"));
908 static int __init
acpi_ec_get_real_ecdt(void)
911 struct acpi_table_ecdt
*ecdt_ptr
;
913 status
= acpi_get_firmware_table("ECDT", 1, ACPI_LOGICAL_ADDRESSING
,
914 (struct acpi_table_header
**)
916 if (ACPI_FAILURE(status
))
919 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "Found ECDT"));
922 * Generate a temporary ec context to use until the namespace is scanned
924 ec_ecdt
= kmalloc(sizeof(struct acpi_ec
), GFP_KERNEL
);
927 memset(ec_ecdt
, 0, sizeof(struct acpi_ec
));
929 init_MUTEX(&ec_ecdt
->sem
);
930 if (acpi_ec_mode
== EC_INTR
) {
931 init_waitqueue_head(&ec_ecdt
->wait
);
933 ec_ecdt
->command_addr
= ecdt_ptr
->ec_control
.address
;
934 ec_ecdt
->data_addr
= ecdt_ptr
->ec_data
.address
;
935 ec_ecdt
->gpe_bit
= ecdt_ptr
->gpe_bit
;
936 /* use the GL just to be safe */
937 ec_ecdt
->global_lock
= TRUE
;
938 ec_ecdt
->uid
= ecdt_ptr
->uid
;
941 acpi_get_handle(NULL
, ecdt_ptr
->ec_id
, &ec_ecdt
->handle
);
942 if (ACPI_FAILURE(status
)) {
948 ACPI_EXCEPTION((AE_INFO
, status
, "Could not use ECDT"));
955 static int __initdata acpi_fake_ecdt_enabled
;
956 int __init
acpi_ec_ecdt_probe(void)
961 ret
= acpi_ec_get_real_ecdt();
962 /* Try to make a fake ECDT */
963 if (ret
&& acpi_fake_ecdt_enabled
) {
964 ret
= acpi_ec_fake_ecdt();
971 * Install GPE handler
973 status
= acpi_install_gpe_handler(NULL
, ec_ecdt
->gpe_bit
,
974 ACPI_GPE_EDGE_TRIGGERED
,
975 &acpi_ec_gpe_handler
, ec_ecdt
);
976 if (ACPI_FAILURE(status
)) {
979 acpi_set_gpe_type(NULL
, ec_ecdt
->gpe_bit
, ACPI_GPE_TYPE_RUNTIME
);
980 acpi_enable_gpe(NULL
, ec_ecdt
->gpe_bit
, ACPI_NOT_ISR
);
982 status
= acpi_install_address_space_handler(ACPI_ROOT_OBJECT
,
984 &acpi_ec_space_handler
,
985 &acpi_ec_space_setup
,
987 if (ACPI_FAILURE(status
)) {
988 acpi_remove_gpe_handler(NULL
, ec_ecdt
->gpe_bit
,
989 &acpi_ec_gpe_handler
);
996 ACPI_EXCEPTION((AE_INFO
, status
, "Could not use ECDT"));
1003 static int __init
acpi_ec_init(void)
1011 acpi_ec_dir
= proc_mkdir(ACPI_EC_CLASS
, acpi_root_dir
);
1015 /* Now register the driver for the EC */
1016 result
= acpi_bus_register_driver(&acpi_ec_driver
);
1018 remove_proc_entry(ACPI_EC_CLASS
, acpi_root_dir
);
1025 subsys_initcall(acpi_ec_init
);
1027 /* EC driver currently not unloadable */
1029 static void __exit
acpi_ec_exit(void)
1032 acpi_bus_unregister_driver(&acpi_ec_driver
);
1034 remove_proc_entry(ACPI_EC_CLASS
, acpi_root_dir
);
1040 static int __init
acpi_fake_ecdt_setup(char *str
)
1042 acpi_fake_ecdt_enabled
= 1;
1046 __setup("acpi_fake_ecdt", acpi_fake_ecdt_setup
);
1047 static int __init
acpi_ec_set_intr_mode(char *str
)
1051 if (!get_option(&str
, &intr
))
1055 acpi_ec_mode
= EC_INTR
;
1057 acpi_ec_mode
= EC_POLL
;
1059 acpi_ec_driver
.ops
.add
= acpi_ec_add
;
1060 ACPI_DEBUG_PRINT((ACPI_DB_INFO
, "EC %s mode.\n", intr
? "interrupt" : "polling"));
1065 __setup("ec_intr=", acpi_ec_set_intr_mode
);