2 * acpi_osl.c - OS-dependent functions ($Revision: 83 $)
4 * Copyright (C) 2000 Andrew Henroid
5 * Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
6 * Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
7 * Copyright (c) 2008 Intel Corporation
8 * Author: Matthew Wilcox <willy@linux.intel.com>
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
15 * (at your option) any later version.
17 * This program is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 * GNU General Public License for more details.
22 * You should have received a copy of the GNU General Public License
23 * along with this program; if not, write to the Free Software
24 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
26 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
30 #include <linux/module.h>
31 #include <linux/kernel.h>
32 #include <linux/slab.h>
34 #include <linux/highmem.h>
35 #include <linux/pci.h>
36 #include <linux/interrupt.h>
37 #include <linux/kmod.h>
38 #include <linux/delay.h>
39 #include <linux/workqueue.h>
40 #include <linux/nmi.h>
41 #include <linux/acpi.h>
42 #include <linux/acpi_io.h>
43 #include <linux/efi.h>
44 #include <linux/ioport.h>
45 #include <linux/list.h>
46 #include <linux/jiffies.h>
47 #include <linux/semaphore.h>
50 #include <asm/uaccess.h>
52 #include <acpi/acpi.h>
53 #include <acpi/acpi_bus.h>
54 #include <acpi/processor.h>
56 #define _COMPONENT ACPI_OS_SERVICES
57 ACPI_MODULE_NAME("osl");
58 #define PREFIX "ACPI: "
60 acpi_osd_exec_callback function
;
62 struct work_struct work
;
66 #ifdef CONFIG_ACPI_CUSTOM_DSDT
67 #include CONFIG_ACPI_CUSTOM_DSDT_FILE
70 #ifdef ENABLE_DEBUGGER
71 #include <linux/kdb.h>
73 /* stuff for debugger support */
75 EXPORT_SYMBOL(acpi_in_debugger
);
77 extern char line_buf
[80];
78 #endif /*ENABLE_DEBUGGER */
80 static int (*__acpi_os_prepare_sleep
)(u8 sleep_state
, u32 pm1a_ctrl
,
83 static acpi_osd_handler acpi_irq_handler
;
84 static void *acpi_irq_context
;
85 static struct workqueue_struct
*kacpid_wq
;
86 static struct workqueue_struct
*kacpi_notify_wq
;
87 struct workqueue_struct
*kacpi_hotplug_wq
;
88 EXPORT_SYMBOL(kacpi_hotplug_wq
);
91 * This list of permanent mappings is for memory that may be accessed from
92 * interrupt context, where we can't do the ioremap().
95 struct list_head list
;
97 acpi_physical_address phys
;
99 unsigned long refcount
;
102 static LIST_HEAD(acpi_ioremaps
);
103 static DEFINE_MUTEX(acpi_ioremap_lock
);
105 static void __init
acpi_osi_setup_late(void);
108 * The story of _OSI(Linux)
110 * From pre-history through Linux-2.6.22,
111 * Linux responded TRUE upon a BIOS OSI(Linux) query.
113 * Unfortunately, reference BIOS writers got wind of this
114 * and put OSI(Linux) in their example code, quickly exposing
115 * this string as ill-conceived and opening the door to
116 * an un-bounded number of BIOS incompatibilities.
118 * For example, OSI(Linux) was used on resume to re-POST a
119 * video card on one system, because Linux at that time
120 * could not do a speedy restore in its native driver.
121 * But then upon gaining quick native restore capability,
122 * Linux has no way to tell the BIOS to skip the time-consuming
123 * POST -- putting Linux at a permanent performance disadvantage.
124 * On another system, the BIOS writer used OSI(Linux)
125 * to infer native OS support for IPMI! On other systems,
126 * OSI(Linux) simply got in the way of Linux claiming to
127 * be compatible with other operating systems, exposing
128 * BIOS issues such as skipped device initialization.
130 * So "Linux" turned out to be a really poor chose of
131 * OSI string, and from Linux-2.6.23 onward we respond FALSE.
133 * BIOS writers should NOT query _OSI(Linux) on future systems.
134 * Linux will complain on the console when it sees it, and return FALSE.
135 * To get Linux to return TRUE for your system will require
136 * a kernel source update to add a DMI entry,
137 * or boot with "acpi_osi=Linux"
140 static struct osi_linux
{
141 unsigned int enable
:1;
143 unsigned int cmdline
:1;
144 } osi_linux
= {0, 0, 0};
146 static u32
acpi_osi_handler(acpi_string interface
, u32 supported
)
148 if (!strcmp("Linux", interface
)) {
150 printk_once(KERN_NOTICE FW_BUG PREFIX
151 "BIOS _OSI(Linux) query %s%s\n",
152 osi_linux
.enable
? "honored" : "ignored",
153 osi_linux
.cmdline
? " via cmdline" :
154 osi_linux
.dmi
? " via DMI" : "");
160 static void __init
acpi_request_region (struct acpi_generic_address
*gas
,
161 unsigned int length
, char *desc
)
165 /* Handle possible alignment issues */
166 memcpy(&addr
, &gas
->address
, sizeof(addr
));
167 if (!addr
|| !length
)
170 /* Resources are never freed */
171 if (gas
->space_id
== ACPI_ADR_SPACE_SYSTEM_IO
)
172 request_region(addr
, length
, desc
);
173 else if (gas
->space_id
== ACPI_ADR_SPACE_SYSTEM_MEMORY
)
174 request_mem_region(addr
, length
, desc
);
177 static int __init
acpi_reserve_resources(void)
179 acpi_request_region(&acpi_gbl_FADT
.xpm1a_event_block
, acpi_gbl_FADT
.pm1_event_length
,
180 "ACPI PM1a_EVT_BLK");
182 acpi_request_region(&acpi_gbl_FADT
.xpm1b_event_block
, acpi_gbl_FADT
.pm1_event_length
,
183 "ACPI PM1b_EVT_BLK");
185 acpi_request_region(&acpi_gbl_FADT
.xpm1a_control_block
, acpi_gbl_FADT
.pm1_control_length
,
186 "ACPI PM1a_CNT_BLK");
188 acpi_request_region(&acpi_gbl_FADT
.xpm1b_control_block
, acpi_gbl_FADT
.pm1_control_length
,
189 "ACPI PM1b_CNT_BLK");
191 if (acpi_gbl_FADT
.pm_timer_length
== 4)
192 acpi_request_region(&acpi_gbl_FADT
.xpm_timer_block
, 4, "ACPI PM_TMR");
194 acpi_request_region(&acpi_gbl_FADT
.xpm2_control_block
, acpi_gbl_FADT
.pm2_control_length
,
197 /* Length of GPE blocks must be a non-negative multiple of 2 */
199 if (!(acpi_gbl_FADT
.gpe0_block_length
& 0x1))
200 acpi_request_region(&acpi_gbl_FADT
.xgpe0_block
,
201 acpi_gbl_FADT
.gpe0_block_length
, "ACPI GPE0_BLK");
203 if (!(acpi_gbl_FADT
.gpe1_block_length
& 0x1))
204 acpi_request_region(&acpi_gbl_FADT
.xgpe1_block
,
205 acpi_gbl_FADT
.gpe1_block_length
, "ACPI GPE1_BLK");
209 device_initcall(acpi_reserve_resources
);
211 void acpi_os_printf(const char *fmt
, ...)
215 acpi_os_vprintf(fmt
, args
);
219 void acpi_os_vprintf(const char *fmt
, va_list args
)
221 static char buffer
[512];
223 vsprintf(buffer
, fmt
, args
);
225 #ifdef ENABLE_DEBUGGER
226 if (acpi_in_debugger
) {
227 kdb_printf("%s", buffer
);
229 printk(KERN_CONT
"%s", buffer
);
232 printk(KERN_CONT
"%s", buffer
);
237 static unsigned long acpi_rsdp
;
238 static int __init
setup_acpi_rsdp(char *arg
)
240 acpi_rsdp
= simple_strtoul(arg
, NULL
, 16);
243 early_param("acpi_rsdp", setup_acpi_rsdp
);
246 acpi_physical_address __init
acpi_os_get_root_pointer(void)
254 if (efi
.acpi20
!= EFI_INVALID_TABLE_ADDR
)
256 else if (efi
.acpi
!= EFI_INVALID_TABLE_ADDR
)
259 printk(KERN_ERR PREFIX
260 "System description tables not found\n");
264 acpi_physical_address pa
= 0;
266 acpi_find_root_pointer(&pa
);
271 /* Must be called with 'acpi_ioremap_lock' or RCU read lock held. */
272 static struct acpi_ioremap
*
273 acpi_map_lookup(acpi_physical_address phys
, acpi_size size
)
275 struct acpi_ioremap
*map
;
277 list_for_each_entry_rcu(map
, &acpi_ioremaps
, list
)
278 if (map
->phys
<= phys
&&
279 phys
+ size
<= map
->phys
+ map
->size
)
285 /* Must be called with 'acpi_ioremap_lock' or RCU read lock held. */
286 static void __iomem
*
287 acpi_map_vaddr_lookup(acpi_physical_address phys
, unsigned int size
)
289 struct acpi_ioremap
*map
;
291 map
= acpi_map_lookup(phys
, size
);
293 return map
->virt
+ (phys
- map
->phys
);
298 void __iomem
*acpi_os_get_iomem(acpi_physical_address phys
, unsigned int size
)
300 struct acpi_ioremap
*map
;
301 void __iomem
*virt
= NULL
;
303 mutex_lock(&acpi_ioremap_lock
);
304 map
= acpi_map_lookup(phys
, size
);
306 virt
= map
->virt
+ (phys
- map
->phys
);
309 mutex_unlock(&acpi_ioremap_lock
);
312 EXPORT_SYMBOL_GPL(acpi_os_get_iomem
);
314 /* Must be called with 'acpi_ioremap_lock' or RCU read lock held. */
315 static struct acpi_ioremap
*
316 acpi_map_lookup_virt(void __iomem
*virt
, acpi_size size
)
318 struct acpi_ioremap
*map
;
320 list_for_each_entry_rcu(map
, &acpi_ioremaps
, list
)
321 if (map
->virt
<= virt
&&
322 virt
+ size
<= map
->virt
+ map
->size
)
329 #define should_use_kmap(pfn) page_is_ram(pfn)
331 /* ioremap will take care of cache attributes */
332 #define should_use_kmap(pfn) 0
335 static void __iomem
*acpi_map(acpi_physical_address pg_off
, unsigned long pg_sz
)
339 pfn
= pg_off
>> PAGE_SHIFT
;
340 if (should_use_kmap(pfn
)) {
341 if (pg_sz
> PAGE_SIZE
)
343 return (void __iomem __force
*)kmap(pfn_to_page(pfn
));
345 return acpi_os_ioremap(pg_off
, pg_sz
);
348 static void acpi_unmap(acpi_physical_address pg_off
, void __iomem
*vaddr
)
352 pfn
= pg_off
>> PAGE_SHIFT
;
353 if (should_use_kmap(pfn
))
354 kunmap(pfn_to_page(pfn
));
359 void __iomem
*__init_refok
360 acpi_os_map_memory(acpi_physical_address phys
, acpi_size size
)
362 struct acpi_ioremap
*map
;
364 acpi_physical_address pg_off
;
367 if (phys
> ULONG_MAX
) {
368 printk(KERN_ERR PREFIX
"Cannot map memory that high\n");
372 if (!acpi_gbl_permanent_mmap
)
373 return __acpi_map_table((unsigned long)phys
, size
);
375 mutex_lock(&acpi_ioremap_lock
);
376 /* Check if there's a suitable mapping already. */
377 map
= acpi_map_lookup(phys
, size
);
383 map
= kzalloc(sizeof(*map
), GFP_KERNEL
);
385 mutex_unlock(&acpi_ioremap_lock
);
389 pg_off
= round_down(phys
, PAGE_SIZE
);
390 pg_sz
= round_up(phys
+ size
, PAGE_SIZE
) - pg_off
;
391 virt
= acpi_map(pg_off
, pg_sz
);
393 mutex_unlock(&acpi_ioremap_lock
);
398 INIT_LIST_HEAD(&map
->list
);
404 list_add_tail_rcu(&map
->list
, &acpi_ioremaps
);
407 mutex_unlock(&acpi_ioremap_lock
);
408 return map
->virt
+ (phys
- map
->phys
);
410 EXPORT_SYMBOL_GPL(acpi_os_map_memory
);
412 static void acpi_os_drop_map_ref(struct acpi_ioremap
*map
)
414 if (!--map
->refcount
)
415 list_del_rcu(&map
->list
);
418 static void acpi_os_map_cleanup(struct acpi_ioremap
*map
)
420 if (!map
->refcount
) {
422 acpi_unmap(map
->phys
, map
->virt
);
427 void __ref
acpi_os_unmap_memory(void __iomem
*virt
, acpi_size size
)
429 struct acpi_ioremap
*map
;
431 if (!acpi_gbl_permanent_mmap
) {
432 __acpi_unmap_table(virt
, size
);
436 mutex_lock(&acpi_ioremap_lock
);
437 map
= acpi_map_lookup_virt(virt
, size
);
439 mutex_unlock(&acpi_ioremap_lock
);
440 WARN(true, PREFIX
"%s: bad address %p\n", __func__
, virt
);
443 acpi_os_drop_map_ref(map
);
444 mutex_unlock(&acpi_ioremap_lock
);
446 acpi_os_map_cleanup(map
);
448 EXPORT_SYMBOL_GPL(acpi_os_unmap_memory
);
450 void __init
early_acpi_os_unmap_memory(void __iomem
*virt
, acpi_size size
)
452 if (!acpi_gbl_permanent_mmap
)
453 __acpi_unmap_table(virt
, size
);
456 int acpi_os_map_generic_address(struct acpi_generic_address
*gas
)
461 if (gas
->space_id
!= ACPI_ADR_SPACE_SYSTEM_MEMORY
)
464 /* Handle possible alignment issues */
465 memcpy(&addr
, &gas
->address
, sizeof(addr
));
466 if (!addr
|| !gas
->bit_width
)
469 virt
= acpi_os_map_memory(addr
, gas
->bit_width
/ 8);
475 EXPORT_SYMBOL(acpi_os_map_generic_address
);
477 void acpi_os_unmap_generic_address(struct acpi_generic_address
*gas
)
480 struct acpi_ioremap
*map
;
482 if (gas
->space_id
!= ACPI_ADR_SPACE_SYSTEM_MEMORY
)
485 /* Handle possible alignment issues */
486 memcpy(&addr
, &gas
->address
, sizeof(addr
));
487 if (!addr
|| !gas
->bit_width
)
490 mutex_lock(&acpi_ioremap_lock
);
491 map
= acpi_map_lookup(addr
, gas
->bit_width
/ 8);
493 mutex_unlock(&acpi_ioremap_lock
);
496 acpi_os_drop_map_ref(map
);
497 mutex_unlock(&acpi_ioremap_lock
);
499 acpi_os_map_cleanup(map
);
501 EXPORT_SYMBOL(acpi_os_unmap_generic_address
);
503 #ifdef ACPI_FUTURE_USAGE
505 acpi_os_get_physical_address(void *virt
, acpi_physical_address
* phys
)
508 return AE_BAD_PARAMETER
;
510 *phys
= virt_to_phys(virt
);
516 #define ACPI_MAX_OVERRIDE_LEN 100
518 static char acpi_os_name
[ACPI_MAX_OVERRIDE_LEN
];
521 acpi_os_predefined_override(const struct acpi_predefined_names
*init_val
,
522 acpi_string
* new_val
)
524 if (!init_val
|| !new_val
)
525 return AE_BAD_PARAMETER
;
528 if (!memcmp(init_val
->name
, "_OS_", 4) && strlen(acpi_os_name
)) {
529 printk(KERN_INFO PREFIX
"Overriding _OS definition to '%s'\n",
531 *new_val
= acpi_os_name
;
538 acpi_os_table_override(struct acpi_table_header
* existing_table
,
539 struct acpi_table_header
** new_table
)
541 if (!existing_table
|| !new_table
)
542 return AE_BAD_PARAMETER
;
546 #ifdef CONFIG_ACPI_CUSTOM_DSDT
547 if (strncmp(existing_table
->signature
, "DSDT", 4) == 0)
548 *new_table
= (struct acpi_table_header
*)AmlCode
;
550 if (*new_table
!= NULL
) {
551 printk(KERN_WARNING PREFIX
"Override [%4.4s-%8.8s], "
552 "this is unsafe: tainting kernel\n",
553 existing_table
->signature
,
554 existing_table
->oem_table_id
);
555 add_taint(TAINT_OVERRIDDEN_ACPI_TABLE
);
561 acpi_os_physical_table_override(struct acpi_table_header
*existing_table
,
562 acpi_physical_address
* new_address
,
563 u32
*new_table_length
)
569 static irqreturn_t
acpi_irq(int irq
, void *dev_id
)
573 handled
= (*acpi_irq_handler
) (acpi_irq_context
);
579 acpi_irq_not_handled
++;
585 acpi_os_install_interrupt_handler(u32 gsi
, acpi_osd_handler handler
,
590 acpi_irq_stats_init();
593 * ACPI interrupts different from the SCI in our copy of the FADT are
596 if (gsi
!= acpi_gbl_FADT
.sci_interrupt
)
597 return AE_BAD_PARAMETER
;
599 if (acpi_irq_handler
)
600 return AE_ALREADY_ACQUIRED
;
602 if (acpi_gsi_to_irq(gsi
, &irq
) < 0) {
603 printk(KERN_ERR PREFIX
"SCI (ACPI GSI %d) not registered\n",
608 acpi_irq_handler
= handler
;
609 acpi_irq_context
= context
;
610 if (request_threaded_irq(irq
, NULL
, acpi_irq
, IRQF_SHARED
, "acpi",
612 printk(KERN_ERR PREFIX
"SCI (IRQ%d) allocation failed\n", irq
);
613 acpi_irq_handler
= NULL
;
614 return AE_NOT_ACQUIRED
;
620 acpi_status
acpi_os_remove_interrupt_handler(u32 irq
, acpi_osd_handler handler
)
622 if (irq
!= acpi_gbl_FADT
.sci_interrupt
)
623 return AE_BAD_PARAMETER
;
625 free_irq(irq
, acpi_irq
);
626 acpi_irq_handler
= NULL
;
632 * Running in interpreter thread context, safe to sleep
635 void acpi_os_sleep(u64 ms
)
637 schedule_timeout_interruptible(msecs_to_jiffies(ms
));
640 void acpi_os_stall(u32 us
)
648 touch_nmi_watchdog();
654 * Support ACPI 3.0 AML Timer operand
655 * Returns 64-bit free-running, monotonically increasing timer
656 * with 100ns granularity
658 u64
acpi_os_get_timer(void)
663 /* TBD: use HPET if available */
666 #ifdef CONFIG_X86_PM_TIMER
667 /* TBD: default to PM timer if HPET was not available */
670 printk(KERN_ERR PREFIX
"acpi_os_get_timer() TBD\n");
675 acpi_status
acpi_os_read_port(acpi_io_address port
, u32
* value
, u32 width
)
684 *(u8
*) value
= inb(port
);
685 } else if (width
<= 16) {
686 *(u16
*) value
= inw(port
);
687 } else if (width
<= 32) {
688 *(u32
*) value
= inl(port
);
696 EXPORT_SYMBOL(acpi_os_read_port
);
698 acpi_status
acpi_os_write_port(acpi_io_address port
, u32 value
, u32 width
)
702 } else if (width
<= 16) {
704 } else if (width
<= 32) {
713 EXPORT_SYMBOL(acpi_os_write_port
);
716 static inline u64
read64(const volatile void __iomem
*addr
)
721 static inline u64
read64(const volatile void __iomem
*addr
)
726 return l
| (h
<< 32);
731 acpi_os_read_memory(acpi_physical_address phys_addr
, u64
*value
, u32 width
)
733 void __iomem
*virt_addr
;
734 unsigned int size
= width
/ 8;
739 virt_addr
= acpi_map_vaddr_lookup(phys_addr
, size
);
742 virt_addr
= acpi_os_ioremap(phys_addr
, size
);
744 return AE_BAD_ADDRESS
;
753 *(u8
*) value
= readb(virt_addr
);
756 *(u16
*) value
= readw(virt_addr
);
759 *(u32
*) value
= readl(virt_addr
);
762 *(u64
*) value
= read64(virt_addr
);
777 static inline void write64(u64 val
, volatile void __iomem
*addr
)
782 static inline void write64(u64 val
, volatile void __iomem
*addr
)
785 writel(val
>>32, addr
+4);
790 acpi_os_write_memory(acpi_physical_address phys_addr
, u64 value
, u32 width
)
792 void __iomem
*virt_addr
;
793 unsigned int size
= width
/ 8;
797 virt_addr
= acpi_map_vaddr_lookup(phys_addr
, size
);
800 virt_addr
= acpi_os_ioremap(phys_addr
, size
);
802 return AE_BAD_ADDRESS
;
808 writeb(value
, virt_addr
);
811 writew(value
, virt_addr
);
814 writel(value
, virt_addr
);
817 write64(value
, virt_addr
);
832 acpi_os_read_pci_configuration(struct acpi_pci_id
* pci_id
, u32 reg
,
833 u64
*value
, u32 width
)
839 return AE_BAD_PARAMETER
;
855 result
= raw_pci_read(pci_id
->segment
, pci_id
->bus
,
856 PCI_DEVFN(pci_id
->device
, pci_id
->function
),
857 reg
, size
, &value32
);
860 return (result
? AE_ERROR
: AE_OK
);
864 acpi_os_write_pci_configuration(struct acpi_pci_id
* pci_id
, u32 reg
,
865 u64 value
, u32 width
)
883 result
= raw_pci_write(pci_id
->segment
, pci_id
->bus
,
884 PCI_DEVFN(pci_id
->device
, pci_id
->function
),
887 return (result
? AE_ERROR
: AE_OK
);
890 static void acpi_os_execute_deferred(struct work_struct
*work
)
892 struct acpi_os_dpc
*dpc
= container_of(work
, struct acpi_os_dpc
, work
);
895 acpi_os_wait_events_complete(NULL
);
897 dpc
->function(dpc
->context
);
901 /*******************************************************************************
903 * FUNCTION: acpi_os_execute
905 * PARAMETERS: Type - Type of the callback
906 * Function - Function to be executed
907 * Context - Function parameters
911 * DESCRIPTION: Depending on type, either queues function for deferred execution or
912 * immediately executes function on a separate thread.
914 ******************************************************************************/
916 static acpi_status
__acpi_os_execute(acpi_execute_type type
,
917 acpi_osd_exec_callback function
, void *context
, int hp
)
919 acpi_status status
= AE_OK
;
920 struct acpi_os_dpc
*dpc
;
921 struct workqueue_struct
*queue
;
923 ACPI_DEBUG_PRINT((ACPI_DB_EXEC
,
924 "Scheduling function [%p(%p)] for deferred execution.\n",
928 * Allocate/initialize DPC structure. Note that this memory will be
929 * freed by the callee. The kernel handles the work_struct list in a
930 * way that allows us to also free its memory inside the callee.
931 * Because we may want to schedule several tasks with different
932 * parameters we can't use the approach some kernel code uses of
933 * having a static work_struct.
936 dpc
= kmalloc(sizeof(struct acpi_os_dpc
), GFP_ATOMIC
);
940 dpc
->function
= function
;
941 dpc
->context
= context
;
944 * We can't run hotplug code in keventd_wq/kacpid_wq/kacpid_notify_wq
945 * because the hotplug code may call driver .remove() functions,
946 * which invoke flush_scheduled_work/acpi_os_wait_events_complete
947 * to flush these workqueues.
949 queue
= hp
? kacpi_hotplug_wq
:
950 (type
== OSL_NOTIFY_HANDLER
? kacpi_notify_wq
: kacpid_wq
);
951 dpc
->wait
= hp
? 1 : 0;
953 if (queue
== kacpi_hotplug_wq
)
954 INIT_WORK(&dpc
->work
, acpi_os_execute_deferred
);
955 else if (queue
== kacpi_notify_wq
)
956 INIT_WORK(&dpc
->work
, acpi_os_execute_deferred
);
958 INIT_WORK(&dpc
->work
, acpi_os_execute_deferred
);
961 * On some machines, a software-initiated SMI causes corruption unless
962 * the SMI runs on CPU 0. An SMI can be initiated by any AML, but
963 * typically it's done in GPE-related methods that are run via
964 * workqueues, so we can avoid the known corruption cases by always
967 ret
= queue_work_on(0, queue
, &dpc
->work
);
970 printk(KERN_ERR PREFIX
971 "Call to queue_work() failed.\n");
978 acpi_status
acpi_os_execute(acpi_execute_type type
,
979 acpi_osd_exec_callback function
, void *context
)
981 return __acpi_os_execute(type
, function
, context
, 0);
983 EXPORT_SYMBOL(acpi_os_execute
);
985 acpi_status
acpi_os_hotplug_execute(acpi_osd_exec_callback function
,
988 return __acpi_os_execute(0, function
, context
, 1);
991 void acpi_os_wait_events_complete(void *context
)
993 flush_workqueue(kacpid_wq
);
994 flush_workqueue(kacpi_notify_wq
);
997 EXPORT_SYMBOL(acpi_os_wait_events_complete
);
1000 acpi_os_create_semaphore(u32 max_units
, u32 initial_units
, acpi_handle
* handle
)
1002 struct semaphore
*sem
= NULL
;
1004 sem
= acpi_os_allocate(sizeof(struct semaphore
));
1006 return AE_NO_MEMORY
;
1007 memset(sem
, 0, sizeof(struct semaphore
));
1009 sema_init(sem
, initial_units
);
1011 *handle
= (acpi_handle
*) sem
;
1013 ACPI_DEBUG_PRINT((ACPI_DB_MUTEX
, "Creating semaphore[%p|%d].\n",
1014 *handle
, initial_units
));
1020 * TODO: A better way to delete semaphores? Linux doesn't have a
1021 * 'delete_semaphore()' function -- may result in an invalid
1022 * pointer dereference for non-synchronized consumers. Should
1023 * we at least check for blocked threads and signal/cancel them?
1026 acpi_status
acpi_os_delete_semaphore(acpi_handle handle
)
1028 struct semaphore
*sem
= (struct semaphore
*)handle
;
1031 return AE_BAD_PARAMETER
;
1033 ACPI_DEBUG_PRINT((ACPI_DB_MUTEX
, "Deleting semaphore[%p].\n", handle
));
1035 BUG_ON(!list_empty(&sem
->wait_list
));
1043 * TODO: Support for units > 1?
1045 acpi_status
acpi_os_wait_semaphore(acpi_handle handle
, u32 units
, u16 timeout
)
1047 acpi_status status
= AE_OK
;
1048 struct semaphore
*sem
= (struct semaphore
*)handle
;
1052 if (!sem
|| (units
< 1))
1053 return AE_BAD_PARAMETER
;
1058 ACPI_DEBUG_PRINT((ACPI_DB_MUTEX
, "Waiting for semaphore[%p|%d|%d]\n",
1059 handle
, units
, timeout
));
1061 if (timeout
== ACPI_WAIT_FOREVER
)
1062 jiffies
= MAX_SCHEDULE_TIMEOUT
;
1064 jiffies
= msecs_to_jiffies(timeout
);
1066 ret
= down_timeout(sem
, jiffies
);
1070 if (ACPI_FAILURE(status
)) {
1071 ACPI_DEBUG_PRINT((ACPI_DB_MUTEX
,
1072 "Failed to acquire semaphore[%p|%d|%d], %s",
1073 handle
, units
, timeout
,
1074 acpi_format_exception(status
)));
1076 ACPI_DEBUG_PRINT((ACPI_DB_MUTEX
,
1077 "Acquired semaphore[%p|%d|%d]", handle
,
1085 * TODO: Support for units > 1?
1087 acpi_status
acpi_os_signal_semaphore(acpi_handle handle
, u32 units
)
1089 struct semaphore
*sem
= (struct semaphore
*)handle
;
1091 if (!sem
|| (units
< 1))
1092 return AE_BAD_PARAMETER
;
1097 ACPI_DEBUG_PRINT((ACPI_DB_MUTEX
, "Signaling semaphore[%p|%d]\n", handle
,
1105 #ifdef ACPI_FUTURE_USAGE
1106 u32
acpi_os_get_line(char *buffer
)
1109 #ifdef ENABLE_DEBUGGER
1110 if (acpi_in_debugger
) {
1113 kdb_read(buffer
, sizeof(line_buf
));
1115 /* remove the CR kdb includes */
1116 chars
= strlen(buffer
) - 1;
1117 buffer
[chars
] = '\0';
1123 #endif /* ACPI_FUTURE_USAGE */
1125 acpi_status
acpi_os_signal(u32 function
, void *info
)
1128 case ACPI_SIGNAL_FATAL
:
1129 printk(KERN_ERR PREFIX
"Fatal opcode executed\n");
1131 case ACPI_SIGNAL_BREAKPOINT
:
1134 * ACPI spec. says to treat it as a NOP unless
1135 * you are debugging. So if/when we integrate
1136 * AML debugger into the kernel debugger its
1137 * hook will go here. But until then it is
1138 * not useful to print anything on breakpoints.
1148 static int __init
acpi_os_name_setup(char *str
)
1150 char *p
= acpi_os_name
;
1151 int count
= ACPI_MAX_OVERRIDE_LEN
- 1;
1156 for (; count
-- && str
&& *str
; str
++) {
1157 if (isalnum(*str
) || *str
== ' ' || *str
== ':')
1159 else if (*str
== '\'' || *str
== '"')
1170 __setup("acpi_os_name=", acpi_os_name_setup
);
1172 #define OSI_STRING_LENGTH_MAX 64 /* arbitrary */
1173 #define OSI_STRING_ENTRIES_MAX 16 /* arbitrary */
1175 struct osi_setup_entry
{
1176 char string
[OSI_STRING_LENGTH_MAX
];
1180 static struct osi_setup_entry __initdata
1181 osi_setup_entries
[OSI_STRING_ENTRIES_MAX
] = {
1182 {"Module Device", true},
1183 {"Processor Device", true},
1184 {"3.0 _SCP Extensions", true},
1185 {"Processor Aggregator Device", true},
1188 void __init
acpi_osi_setup(char *str
)
1190 struct osi_setup_entry
*osi
;
1194 if (!acpi_gbl_create_osi_method
)
1197 if (str
== NULL
|| *str
== '\0') {
1198 printk(KERN_INFO PREFIX
"_OSI method disabled\n");
1199 acpi_gbl_create_osi_method
= FALSE
;
1208 for (i
= 0; i
< OSI_STRING_ENTRIES_MAX
; i
++) {
1209 osi
= &osi_setup_entries
[i
];
1210 if (!strcmp(osi
->string
, str
)) {
1211 osi
->enable
= enable
;
1213 } else if (osi
->string
[0] == '\0') {
1214 osi
->enable
= enable
;
1215 strncpy(osi
->string
, str
, OSI_STRING_LENGTH_MAX
);
1221 static void __init
set_osi_linux(unsigned int enable
)
1223 if (osi_linux
.enable
!= enable
)
1224 osi_linux
.enable
= enable
;
1226 if (osi_linux
.enable
)
1227 acpi_osi_setup("Linux");
1229 acpi_osi_setup("!Linux");
1234 static void __init
acpi_cmdline_osi_linux(unsigned int enable
)
1236 osi_linux
.cmdline
= 1; /* cmdline set the default and override DMI */
1238 set_osi_linux(enable
);
1243 void __init
acpi_dmi_osi_linux(int enable
, const struct dmi_system_id
*d
)
1245 printk(KERN_NOTICE PREFIX
"DMI detected: %s\n", d
->ident
);
1250 osi_linux
.dmi
= 1; /* DMI knows that this box asks OSI(Linux) */
1251 set_osi_linux(enable
);
1257 * Modify the list of "OS Interfaces" reported to BIOS via _OSI
1259 * empty string disables _OSI
1260 * string starting with '!' disables that string
1261 * otherwise string is added to list, augmenting built-in strings
1263 static void __init
acpi_osi_setup_late(void)
1265 struct osi_setup_entry
*osi
;
1270 for (i
= 0; i
< OSI_STRING_ENTRIES_MAX
; i
++) {
1271 osi
= &osi_setup_entries
[i
];
1277 status
= acpi_install_interface(str
);
1279 if (ACPI_SUCCESS(status
))
1280 printk(KERN_INFO PREFIX
"Added _OSI(%s)\n", str
);
1282 status
= acpi_remove_interface(str
);
1284 if (ACPI_SUCCESS(status
))
1285 printk(KERN_INFO PREFIX
"Deleted _OSI(%s)\n", str
);
1290 static int __init
osi_setup(char *str
)
1292 if (str
&& !strcmp("Linux", str
))
1293 acpi_cmdline_osi_linux(1);
1294 else if (str
&& !strcmp("!Linux", str
))
1295 acpi_cmdline_osi_linux(0);
1297 acpi_osi_setup(str
);
1302 __setup("acpi_osi=", osi_setup
);
1304 /* enable serialization to combat AE_ALREADY_EXISTS errors */
1305 static int __init
acpi_serialize_setup(char *str
)
1307 printk(KERN_INFO PREFIX
"serialize enabled\n");
1309 acpi_gbl_all_methods_serialized
= TRUE
;
1314 __setup("acpi_serialize", acpi_serialize_setup
);
1316 /* Check of resource interference between native drivers and ACPI
1317 * OperationRegions (SystemIO and System Memory only).
1318 * IO ports and memory declared in ACPI might be used by the ACPI subsystem
1319 * in arbitrary AML code and can interfere with legacy drivers.
1320 * acpi_enforce_resources= can be set to:
1322 * - strict (default) (2)
1323 * -> further driver trying to access the resources will not load
1325 * -> further driver trying to access the resources will load, but you
1326 * get a system message that something might go wrong...
1329 * -> ACPI Operation Region resources will not be registered
1332 #define ENFORCE_RESOURCES_STRICT 2
1333 #define ENFORCE_RESOURCES_LAX 1
1334 #define ENFORCE_RESOURCES_NO 0
1336 static unsigned int acpi_enforce_resources
= ENFORCE_RESOURCES_STRICT
;
1338 static int __init
acpi_enforce_resources_setup(char *str
)
1340 if (str
== NULL
|| *str
== '\0')
1343 if (!strcmp("strict", str
))
1344 acpi_enforce_resources
= ENFORCE_RESOURCES_STRICT
;
1345 else if (!strcmp("lax", str
))
1346 acpi_enforce_resources
= ENFORCE_RESOURCES_LAX
;
1347 else if (!strcmp("no", str
))
1348 acpi_enforce_resources
= ENFORCE_RESOURCES_NO
;
1353 __setup("acpi_enforce_resources=", acpi_enforce_resources_setup
);
1355 /* Check for resource conflicts between ACPI OperationRegions and native
1357 int acpi_check_resource_conflict(const struct resource
*res
)
1359 acpi_adr_space_type space_id
;
1364 if (acpi_enforce_resources
== ENFORCE_RESOURCES_NO
)
1366 if (!(res
->flags
& IORESOURCE_IO
) && !(res
->flags
& IORESOURCE_MEM
))
1369 if (res
->flags
& IORESOURCE_IO
)
1370 space_id
= ACPI_ADR_SPACE_SYSTEM_IO
;
1372 space_id
= ACPI_ADR_SPACE_SYSTEM_MEMORY
;
1374 length
= res
->end
- res
->start
+ 1;
1375 if (acpi_enforce_resources
!= ENFORCE_RESOURCES_NO
)
1377 clash
= acpi_check_address_range(space_id
, res
->start
, length
, warn
);
1380 if (acpi_enforce_resources
!= ENFORCE_RESOURCES_NO
) {
1381 if (acpi_enforce_resources
== ENFORCE_RESOURCES_LAX
)
1382 printk(KERN_NOTICE
"ACPI: This conflict may"
1383 " cause random problems and system"
1385 printk(KERN_INFO
"ACPI: If an ACPI driver is available"
1386 " for this device, you should use it instead of"
1387 " the native driver\n");
1389 if (acpi_enforce_resources
== ENFORCE_RESOURCES_STRICT
)
1394 EXPORT_SYMBOL(acpi_check_resource_conflict
);
1396 int acpi_check_region(resource_size_t start
, resource_size_t n
,
1399 struct resource res
= {
1401 .end
= start
+ n
- 1,
1403 .flags
= IORESOURCE_IO
,
1406 return acpi_check_resource_conflict(&res
);
1408 EXPORT_SYMBOL(acpi_check_region
);
1411 * Let drivers know whether the resource checks are effective
1413 int acpi_resources_are_enforced(void)
1415 return acpi_enforce_resources
== ENFORCE_RESOURCES_STRICT
;
1417 EXPORT_SYMBOL(acpi_resources_are_enforced
);
1420 * Deallocate the memory for a spinlock.
1422 void acpi_os_delete_lock(acpi_spinlock handle
)
1428 * Acquire a spinlock.
1430 * handle is a pointer to the spinlock_t.
1433 acpi_cpu_flags
acpi_os_acquire_lock(acpi_spinlock lockp
)
1435 acpi_cpu_flags flags
;
1436 spin_lock_irqsave(lockp
, flags
);
1441 * Release a spinlock. See above.
1444 void acpi_os_release_lock(acpi_spinlock lockp
, acpi_cpu_flags flags
)
1446 spin_unlock_irqrestore(lockp
, flags
);
1449 #ifndef ACPI_USE_LOCAL_CACHE
1451 /*******************************************************************************
1453 * FUNCTION: acpi_os_create_cache
1455 * PARAMETERS: name - Ascii name for the cache
1456 * size - Size of each cached object
1457 * depth - Maximum depth of the cache (in objects) <ignored>
1458 * cache - Where the new cache object is returned
1462 * DESCRIPTION: Create a cache object
1464 ******************************************************************************/
1467 acpi_os_create_cache(char *name
, u16 size
, u16 depth
, acpi_cache_t
** cache
)
1469 *cache
= kmem_cache_create(name
, size
, 0, 0, NULL
);
1476 /*******************************************************************************
1478 * FUNCTION: acpi_os_purge_cache
1480 * PARAMETERS: Cache - Handle to cache object
1484 * DESCRIPTION: Free all objects within the requested cache.
1486 ******************************************************************************/
1488 acpi_status
acpi_os_purge_cache(acpi_cache_t
* cache
)
1490 kmem_cache_shrink(cache
);
1494 /*******************************************************************************
1496 * FUNCTION: acpi_os_delete_cache
1498 * PARAMETERS: Cache - Handle to cache object
1502 * DESCRIPTION: Free all objects within the requested cache and delete the
1505 ******************************************************************************/
1507 acpi_status
acpi_os_delete_cache(acpi_cache_t
* cache
)
1509 kmem_cache_destroy(cache
);
1513 /*******************************************************************************
1515 * FUNCTION: acpi_os_release_object
1517 * PARAMETERS: Cache - Handle to cache object
1518 * Object - The object to be released
1522 * DESCRIPTION: Release an object to the specified cache. If cache is full,
1523 * the object is deleted.
1525 ******************************************************************************/
1527 acpi_status
acpi_os_release_object(acpi_cache_t
* cache
, void *object
)
1529 kmem_cache_free(cache
, object
);
1534 acpi_status __init
acpi_os_initialize(void)
1536 acpi_os_map_generic_address(&acpi_gbl_FADT
.xpm1a_event_block
);
1537 acpi_os_map_generic_address(&acpi_gbl_FADT
.xpm1b_event_block
);
1538 acpi_os_map_generic_address(&acpi_gbl_FADT
.xgpe0_block
);
1539 acpi_os_map_generic_address(&acpi_gbl_FADT
.xgpe1_block
);
1544 acpi_status __init
acpi_os_initialize1(void)
1546 kacpid_wq
= alloc_workqueue("kacpid", 0, 1);
1547 kacpi_notify_wq
= alloc_workqueue("kacpi_notify", 0, 1);
1548 kacpi_hotplug_wq
= alloc_workqueue("kacpi_hotplug", 0, 1);
1550 BUG_ON(!kacpi_notify_wq
);
1551 BUG_ON(!kacpi_hotplug_wq
);
1552 acpi_install_interface_handler(acpi_osi_handler
);
1553 acpi_osi_setup_late();
1557 acpi_status
acpi_os_terminate(void)
1559 if (acpi_irq_handler
) {
1560 acpi_os_remove_interrupt_handler(acpi_gbl_FADT
.sci_interrupt
,
1564 acpi_os_unmap_generic_address(&acpi_gbl_FADT
.xgpe1_block
);
1565 acpi_os_unmap_generic_address(&acpi_gbl_FADT
.xgpe0_block
);
1566 acpi_os_unmap_generic_address(&acpi_gbl_FADT
.xpm1b_event_block
);
1567 acpi_os_unmap_generic_address(&acpi_gbl_FADT
.xpm1a_event_block
);
1569 destroy_workqueue(kacpid_wq
);
1570 destroy_workqueue(kacpi_notify_wq
);
1571 destroy_workqueue(kacpi_hotplug_wq
);
1576 acpi_status
acpi_os_prepare_sleep(u8 sleep_state
, u32 pm1a_control
,
1580 if (__acpi_os_prepare_sleep
)
1581 rc
= __acpi_os_prepare_sleep(sleep_state
,
1582 pm1a_control
, pm1b_control
);
1586 return AE_CTRL_SKIP
;
1591 void acpi_os_set_prepare_sleep(int (*func
)(u8 sleep_state
,
1592 u32 pm1a_ctrl
, u32 pm1b_ctrl
))
1594 __acpi_os_prepare_sleep
= func
;