3 * Provides ACPI support for PATA/SATA.
5 * Copyright (C) 2006 Intel Corp.
6 * Copyright (C) 2006 Randy Dunlap
9 #include <linux/module.h>
10 #include <linux/ata.h>
11 #include <linux/delay.h>
12 #include <linux/device.h>
13 #include <linux/errno.h>
14 #include <linux/kernel.h>
15 #include <linux/acpi.h>
16 #include <linux/libata.h>
17 #include <linux/pci.h>
18 #include <scsi/scsi_device.h>
21 #include <acpi/acpi_bus.h>
22 #include <acpi/acnames.h>
23 #include <acpi/acnamesp.h>
24 #include <acpi/acparser.h>
25 #include <acpi/acexcep.h>
26 #include <acpi/acmacros.h>
27 #include <acpi/actypes.h>
30 ATA_ACPI_FILTER_SETXFER
= 1 << 0,
31 ATA_ACPI_FILTER_LOCK
= 1 << 1,
33 ATA_ACPI_FILTER_DEFAULT
= ATA_ACPI_FILTER_SETXFER
|
37 static unsigned int ata_acpi_gtf_filter
= ATA_ACPI_FILTER_DEFAULT
;
38 module_param_named(acpi_gtf_filter
, ata_acpi_gtf_filter
, int, 0644);
39 MODULE_PARM_DESC(acpi_gtf_filter
, "filter mask for ACPI _GTF commands, set to filter out (0x1=set xfermode, 0x2=lock/freeze lock)");
41 #define NO_PORT_MULT 0xffff
42 #define SATA_ADR(root, pmp) (((root) << 16) | (pmp))
44 #define REGS_PER_GTF 7
46 u8 tf
[REGS_PER_GTF
]; /* regs. 0x1f1 - 0x1f7 */
50 * Helper - belongs in the PCI layer somewhere eventually
52 static int is_pci_dev(struct device
*dev
)
54 return (dev
->bus
== &pci_bus_type
);
57 static void ata_acpi_clear_gtf(struct ata_device
*dev
)
59 kfree(dev
->gtf_cache
);
60 dev
->gtf_cache
= NULL
;
64 * ata_acpi_associate_sata_port - associate SATA port with ACPI objects
65 * @ap: target SATA port
67 * Look up ACPI objects associated with @ap and initialize acpi_handle
68 * fields of @ap, the port and devices accordingly.
74 * 0 on success, -errno on failure.
76 void ata_acpi_associate_sata_port(struct ata_port
*ap
)
78 WARN_ON(!(ap
->flags
& ATA_FLAG_ACPI_SATA
));
80 if (!sata_pmp_attached(ap
)) {
81 acpi_integer adr
= SATA_ADR(ap
->port_no
, NO_PORT_MULT
);
83 ap
->link
.device
->acpi_handle
=
84 acpi_get_child(ap
->host
->acpi_handle
, adr
);
86 struct ata_link
*link
;
88 ap
->link
.device
->acpi_handle
= NULL
;
90 ata_port_for_each_link(link
, ap
) {
91 acpi_integer adr
= SATA_ADR(ap
->port_no
, link
->pmp
);
93 link
->device
->acpi_handle
=
94 acpi_get_child(ap
->host
->acpi_handle
, adr
);
99 static void ata_acpi_associate_ide_port(struct ata_port
*ap
)
103 ap
->acpi_handle
= acpi_get_child(ap
->host
->acpi_handle
, ap
->port_no
);
104 if (!ap
->acpi_handle
)
108 if (ap
->flags
& ATA_FLAG_SLAVE_POSS
)
111 for (i
= 0; i
< max_devices
; i
++) {
112 struct ata_device
*dev
= &ap
->link
.device
[i
];
114 dev
->acpi_handle
= acpi_get_child(ap
->acpi_handle
, i
);
117 if (ata_acpi_gtm(ap
, &ap
->__acpi_init_gtm
) == 0)
118 ap
->pflags
|= ATA_PFLAG_INIT_GTM_VALID
;
121 static void ata_acpi_handle_hotplug(struct ata_port
*ap
, struct ata_device
*dev
,
124 char event_string
[12];
125 char *envp
[] = { event_string
, NULL
};
126 struct ata_eh_info
*ehi
;
127 struct kobject
*kobj
= NULL
;
133 ehi
= &ap
->link
.eh_info
;
135 spin_lock_irqsave(ap
->lock
, flags
);
138 case ACPI_NOTIFY_BUS_CHECK
:
139 case ACPI_NOTIFY_DEVICE_CHECK
:
140 ata_ehi_push_desc(ehi
, "ACPI event");
141 ata_ehi_hotplugged(ehi
);
145 case ACPI_NOTIFY_EJECT_REQUEST
:
146 ata_ehi_push_desc(ehi
, "ACPI event");
148 dev
->flags
|= ATA_DFLAG_DETACH
;
150 struct ata_link
*tlink
;
151 struct ata_device
*tdev
;
153 ata_port_for_each_link(tlink
, ap
)
154 ata_link_for_each_dev(tdev
, tlink
)
155 tdev
->flags
|= ATA_DFLAG_DETACH
;
158 ata_port_schedule_eh(ap
);
165 kobj
= &dev
->sdev
->sdev_gendev
.kobj
;
167 kobj
= &ap
->dev
->kobj
;
170 sprintf(event_string
, "BAY_EVENT=%d", event
);
171 kobject_uevent_env(kobj
, KOBJ_CHANGE
, envp
);
174 spin_unlock_irqrestore(ap
->lock
, flags
);
177 ata_port_wait_eh(ap
);
180 static void ata_acpi_dev_notify(acpi_handle handle
, u32 event
, void *data
)
182 struct ata_device
*dev
= data
;
184 ata_acpi_handle_hotplug(NULL
, dev
, event
);
187 static void ata_acpi_ap_notify(acpi_handle handle
, u32 event
, void *data
)
189 struct ata_port
*ap
= data
;
191 ata_acpi_handle_hotplug(ap
, NULL
, event
);
195 * ata_acpi_associate - associate ATA host with ACPI objects
196 * @host: target ATA host
198 * Look up ACPI objects associated with @host and initialize
199 * acpi_handle fields of @host, its ports and devices accordingly.
205 * 0 on success, -errno on failure.
207 void ata_acpi_associate(struct ata_host
*host
)
211 if (!is_pci_dev(host
->dev
) || libata_noacpi
)
214 host
->acpi_handle
= DEVICE_ACPI_HANDLE(host
->dev
);
215 if (!host
->acpi_handle
)
218 for (i
= 0; i
< host
->n_ports
; i
++) {
219 struct ata_port
*ap
= host
->ports
[i
];
221 if (host
->ports
[0]->flags
& ATA_FLAG_ACPI_SATA
)
222 ata_acpi_associate_sata_port(ap
);
224 ata_acpi_associate_ide_port(ap
);
226 if (ap
->acpi_handle
) {
227 acpi_install_notify_handler(ap
->acpi_handle
,
229 ata_acpi_ap_notify
, ap
);
230 /* we might be on a docking station */
231 register_hotplug_dock_device(ap
->acpi_handle
,
232 ata_acpi_ap_notify
, ap
);
235 for (j
= 0; j
< ata_link_max_devices(&ap
->link
); j
++) {
236 struct ata_device
*dev
= &ap
->link
.device
[j
];
238 if (dev
->acpi_handle
) {
239 acpi_install_notify_handler(dev
->acpi_handle
,
241 ata_acpi_dev_notify
, dev
);
242 /* we might be on a docking station */
243 register_hotplug_dock_device(dev
->acpi_handle
,
244 ata_acpi_dev_notify
, dev
);
251 * ata_acpi_dissociate - dissociate ATA host from ACPI objects
252 * @host: target ATA host
254 * This function is called during driver detach after the whole host
260 void ata_acpi_dissociate(struct ata_host
*host
)
264 /* Restore initial _GTM values so that driver which attaches
265 * afterward can use them too.
267 for (i
= 0; i
< host
->n_ports
; i
++) {
268 struct ata_port
*ap
= host
->ports
[i
];
269 const struct ata_acpi_gtm
*gtm
= ata_acpi_init_gtm(ap
);
271 if (ap
->acpi_handle
&& gtm
)
272 ata_acpi_stm(ap
, gtm
);
277 * ata_acpi_gtm - execute _GTM
278 * @ap: target ATA port
279 * @gtm: out parameter for _GTM result
281 * Evaluate _GTM and store the result in @gtm.
287 * 0 on success, -ENOENT if _GTM doesn't exist, -errno on failure.
289 int ata_acpi_gtm(struct ata_port
*ap
, struct ata_acpi_gtm
*gtm
)
291 struct acpi_buffer output
= { .length
= ACPI_ALLOCATE_BUFFER
};
292 union acpi_object
*out_obj
;
296 status
= acpi_evaluate_object(ap
->acpi_handle
, "_GTM", NULL
, &output
);
299 if (status
== AE_NOT_FOUND
)
303 if (ACPI_FAILURE(status
)) {
304 ata_port_printk(ap
, KERN_ERR
,
305 "ACPI get timing mode failed (AE 0x%x)\n",
310 out_obj
= output
.pointer
;
311 if (out_obj
->type
!= ACPI_TYPE_BUFFER
) {
312 ata_port_printk(ap
, KERN_WARNING
,
313 "_GTM returned unexpected object type 0x%x\n",
319 if (out_obj
->buffer
.length
!= sizeof(struct ata_acpi_gtm
)) {
320 ata_port_printk(ap
, KERN_ERR
,
321 "_GTM returned invalid length %d\n",
322 out_obj
->buffer
.length
);
326 memcpy(gtm
, out_obj
->buffer
.pointer
, sizeof(struct ata_acpi_gtm
));
329 kfree(output
.pointer
);
333 EXPORT_SYMBOL_GPL(ata_acpi_gtm
);
336 * ata_acpi_stm - execute _STM
337 * @ap: target ATA port
338 * @stm: timing parameter to _STM
340 * Evaluate _STM with timing parameter @stm.
346 * 0 on success, -ENOENT if _STM doesn't exist, -errno on failure.
348 int ata_acpi_stm(struct ata_port
*ap
, const struct ata_acpi_gtm
*stm
)
351 struct ata_acpi_gtm stm_buf
= *stm
;
352 struct acpi_object_list input
;
353 union acpi_object in_params
[3];
355 in_params
[0].type
= ACPI_TYPE_BUFFER
;
356 in_params
[0].buffer
.length
= sizeof(struct ata_acpi_gtm
);
357 in_params
[0].buffer
.pointer
= (u8
*)&stm_buf
;
358 /* Buffers for id may need byteswapping ? */
359 in_params
[1].type
= ACPI_TYPE_BUFFER
;
360 in_params
[1].buffer
.length
= 512;
361 in_params
[1].buffer
.pointer
= (u8
*)ap
->link
.device
[0].id
;
362 in_params
[2].type
= ACPI_TYPE_BUFFER
;
363 in_params
[2].buffer
.length
= 512;
364 in_params
[2].buffer
.pointer
= (u8
*)ap
->link
.device
[1].id
;
367 input
.pointer
= in_params
;
369 status
= acpi_evaluate_object(ap
->acpi_handle
, "_STM", &input
, NULL
);
371 if (status
== AE_NOT_FOUND
)
373 if (ACPI_FAILURE(status
)) {
374 ata_port_printk(ap
, KERN_ERR
,
375 "ACPI set timing mode failed (status=0x%x)\n", status
);
381 EXPORT_SYMBOL_GPL(ata_acpi_stm
);
384 * ata_dev_get_GTF - get the drive bootup default taskfile settings
385 * @dev: target ATA device
386 * @gtf: output parameter for buffer containing _GTF taskfile arrays
388 * This applies to both PATA and SATA drives.
390 * The _GTF method has no input parameters.
391 * It returns a variable number of register set values (registers
392 * hex 1F1..1F7, taskfiles).
393 * The <variable number> is not known in advance, so have ACPI-CA
394 * allocate the buffer as needed and return it, then free it later.
400 * Number of taskfiles on success, 0 if _GTF doesn't exist. -EINVAL
401 * if _GTF is invalid.
403 static int ata_dev_get_GTF(struct ata_device
*dev
, struct ata_acpi_gtf
**gtf
)
405 struct ata_port
*ap
= dev
->link
->ap
;
407 struct acpi_buffer output
;
408 union acpi_object
*out_obj
;
411 /* if _GTF is cached, use the cached value */
412 if (dev
->gtf_cache
) {
413 out_obj
= dev
->gtf_cache
;
417 /* set up output buffer */
418 output
.length
= ACPI_ALLOCATE_BUFFER
;
419 output
.pointer
= NULL
; /* ACPI-CA sets this; save/free it later */
421 if (ata_msg_probe(ap
))
422 ata_dev_printk(dev
, KERN_DEBUG
, "%s: ENTER: port#: %d\n",
423 __func__
, ap
->port_no
);
425 /* _GTF has no input parameters */
426 status
= acpi_evaluate_object(dev
->acpi_handle
, "_GTF", NULL
, &output
);
427 out_obj
= dev
->gtf_cache
= output
.pointer
;
429 if (ACPI_FAILURE(status
)) {
430 if (status
!= AE_NOT_FOUND
) {
431 ata_dev_printk(dev
, KERN_WARNING
,
432 "_GTF evaluation failed (AE 0x%x)\n",
439 if (!output
.length
|| !output
.pointer
) {
440 if (ata_msg_probe(ap
))
441 ata_dev_printk(dev
, KERN_DEBUG
, "%s: Run _GTF: "
442 "length or ptr is NULL (0x%llx, 0x%p)\n",
444 (unsigned long long)output
.length
,
450 if (out_obj
->type
!= ACPI_TYPE_BUFFER
) {
451 ata_dev_printk(dev
, KERN_WARNING
,
452 "_GTF unexpected object type 0x%x\n",
458 if (out_obj
->buffer
.length
% REGS_PER_GTF
) {
459 ata_dev_printk(dev
, KERN_WARNING
,
460 "unexpected _GTF length (%d)\n",
461 out_obj
->buffer
.length
);
467 rc
= out_obj
->buffer
.length
/ REGS_PER_GTF
;
469 *gtf
= (void *)out_obj
->buffer
.pointer
;
470 if (ata_msg_probe(ap
))
471 ata_dev_printk(dev
, KERN_DEBUG
,
472 "%s: returning gtf=%p, gtf_count=%d\n",
478 ata_acpi_clear_gtf(dev
);
483 * ata_acpi_gtm_xfermode - determine xfermode from GTM parameter
484 * @dev: target device
485 * @gtm: GTM parameter to use
487 * Determine xfermask for @dev from @gtm.
493 * Determined xfermask.
495 unsigned long ata_acpi_gtm_xfermask(struct ata_device
*dev
,
496 const struct ata_acpi_gtm
*gtm
)
498 unsigned long xfer_mask
= 0;
503 /* we always use the 0 slot for crap hardware */
505 if (!(gtm
->flags
& 0x10))
509 mode
= ata_timing_cycle2mode(ATA_SHIFT_PIO
, gtm
->drive
[unit
].pio
);
510 xfer_mask
|= ata_xfer_mode2mask(mode
);
512 /* See if we have MWDMA or UDMA data. We don't bother with
513 * MWDMA if UDMA is available as this means the BIOS set UDMA
514 * and our error changedown if it works is UDMA to PIO anyway.
516 if (!(gtm
->flags
& (1 << (2 * unit
))))
517 type
= ATA_SHIFT_MWDMA
;
519 type
= ATA_SHIFT_UDMA
;
521 mode
= ata_timing_cycle2mode(type
, gtm
->drive
[unit
].dma
);
522 xfer_mask
|= ata_xfer_mode2mask(mode
);
526 EXPORT_SYMBOL_GPL(ata_acpi_gtm_xfermask
);
529 * ata_acpi_cbl_80wire - Check for 80 wire cable
531 * @gtm: GTM data to use
533 * Return 1 if the @gtm indicates the BIOS selected an 80wire mode.
535 int ata_acpi_cbl_80wire(struct ata_port
*ap
, const struct ata_acpi_gtm
*gtm
)
537 struct ata_device
*dev
;
539 ata_link_for_each_dev(dev
, &ap
->link
) {
540 unsigned long xfer_mask
, udma_mask
;
542 if (!ata_dev_enabled(dev
))
545 xfer_mask
= ata_acpi_gtm_xfermask(dev
, gtm
);
546 ata_unpack_xfermask(xfer_mask
, NULL
, NULL
, &udma_mask
);
548 if (udma_mask
& ~ATA_UDMA_MASK_40C
)
554 EXPORT_SYMBOL_GPL(ata_acpi_cbl_80wire
);
556 static void ata_acpi_gtf_to_tf(struct ata_device
*dev
,
557 const struct ata_acpi_gtf
*gtf
,
558 struct ata_taskfile
*tf
)
560 ata_tf_init(dev
, tf
);
562 tf
->flags
|= ATA_TFLAG_ISADDR
| ATA_TFLAG_DEVICE
;
563 tf
->protocol
= ATA_PROT_NODATA
;
564 tf
->feature
= gtf
->tf
[0]; /* 0x1f1 */
565 tf
->nsect
= gtf
->tf
[1]; /* 0x1f2 */
566 tf
->lbal
= gtf
->tf
[2]; /* 0x1f3 */
567 tf
->lbam
= gtf
->tf
[3]; /* 0x1f4 */
568 tf
->lbah
= gtf
->tf
[4]; /* 0x1f5 */
569 tf
->device
= gtf
->tf
[5]; /* 0x1f6 */
570 tf
->command
= gtf
->tf
[6]; /* 0x1f7 */
573 static int ata_acpi_filter_tf(const struct ata_taskfile
*tf
,
574 const struct ata_taskfile
*ptf
)
576 if (ata_acpi_gtf_filter
& ATA_ACPI_FILTER_SETXFER
) {
577 /* libata doesn't use ACPI to configure transfer mode.
578 * It will only confuse device configuration. Skip.
580 if (tf
->command
== ATA_CMD_SET_FEATURES
&&
581 tf
->feature
== SETFEATURES_XFER
)
585 if (ata_acpi_gtf_filter
& ATA_ACPI_FILTER_LOCK
) {
586 /* BIOS writers, sorry but we don't wanna lock
587 * features unless the user explicitly said so.
590 /* DEVICE CONFIGURATION FREEZE LOCK */
591 if (tf
->command
== ATA_CMD_CONF_OVERLAY
&&
592 tf
->feature
== ATA_DCO_FREEZE_LOCK
)
595 /* SECURITY FREEZE LOCK */
596 if (tf
->command
== ATA_CMD_SEC_FREEZE_LOCK
)
599 /* SET MAX LOCK and SET MAX FREEZE LOCK */
600 if ((!ptf
|| ptf
->command
!= ATA_CMD_READ_NATIVE_MAX
) &&
601 tf
->command
== ATA_CMD_SET_MAX
&&
602 (tf
->feature
== ATA_SET_MAX_LOCK
||
603 tf
->feature
== ATA_SET_MAX_FREEZE_LOCK
))
611 * ata_acpi_run_tf - send taskfile registers to host controller
612 * @dev: target ATA device
613 * @gtf: raw ATA taskfile register set (0x1f1 - 0x1f7)
615 * Outputs ATA taskfile to standard ATA host controller using MMIO
616 * or PIO as indicated by the ATA_FLAG_MMIO flag.
617 * Writes the control, feature, nsect, lbal, lbam, and lbah registers.
618 * Optionally (ATA_TFLAG_LBA48) writes hob_feature, hob_nsect,
619 * hob_lbal, hob_lbam, and hob_lbah.
621 * This function waits for idle (!BUSY and !DRQ) after writing
622 * registers. If the control register has a new value, this
623 * function also waits for idle after writing control and before
624 * writing the remaining registers.
630 * 1 if command is executed successfully. 0 if ignored, rejected or
631 * filtered out, -errno on other errors.
633 static int ata_acpi_run_tf(struct ata_device
*dev
,
634 const struct ata_acpi_gtf
*gtf
,
635 const struct ata_acpi_gtf
*prev_gtf
)
637 struct ata_taskfile
*pptf
= NULL
;
638 struct ata_taskfile tf
, ptf
, rtf
;
639 unsigned int err_mask
;
644 if ((gtf
->tf
[0] == 0) && (gtf
->tf
[1] == 0) && (gtf
->tf
[2] == 0)
645 && (gtf
->tf
[3] == 0) && (gtf
->tf
[4] == 0) && (gtf
->tf
[5] == 0)
646 && (gtf
->tf
[6] == 0))
649 ata_acpi_gtf_to_tf(dev
, gtf
, &tf
);
651 ata_acpi_gtf_to_tf(dev
, prev_gtf
, &ptf
);
655 if (!ata_acpi_filter_tf(&tf
, pptf
)) {
657 err_mask
= ata_exec_internal(dev
, &rtf
, NULL
,
658 DMA_NONE
, NULL
, 0, 0);
663 snprintf(msg
, sizeof(msg
), "succeeded");
669 snprintf(msg
, sizeof(msg
),
670 "rejected by device (Stat=0x%02x Err=0x%02x)",
671 rtf
.command
, rtf
.feature
);
677 snprintf(msg
, sizeof(msg
),
678 "failed (Emask=0x%x Stat=0x%02x Err=0x%02x)",
679 err_mask
, rtf
.command
, rtf
.feature
);
685 snprintf(msg
, sizeof(msg
), "filtered out");
689 ata_dev_printk(dev
, level
,
690 "ACPI cmd %02x/%02x:%02x:%02x:%02x:%02x:%02x %s\n",
691 tf
.command
, tf
.feature
, tf
.nsect
, tf
.lbal
,
692 tf
.lbam
, tf
.lbah
, tf
.device
, msg
);
698 * ata_acpi_exec_tfs - get then write drive taskfile settings
699 * @dev: target ATA device
700 * @nr_executed: out paramter for the number of executed commands
702 * Evaluate _GTF and excute returned taskfiles.
708 * Number of executed taskfiles on success, 0 if _GTF doesn't exist.
709 * -errno on other errors.
711 static int ata_acpi_exec_tfs(struct ata_device
*dev
, int *nr_executed
)
713 struct ata_acpi_gtf
*gtf
= NULL
, *pgtf
= NULL
;
714 int gtf_count
, i
, rc
;
717 rc
= ata_dev_get_GTF(dev
, >f
);
723 for (i
= 0; i
< gtf_count
; i
++, gtf
++) {
724 rc
= ata_acpi_run_tf(dev
, gtf
, pgtf
);
733 ata_acpi_clear_gtf(dev
);
741 * ata_acpi_push_id - send Identify data to drive
742 * @dev: target ATA device
744 * _SDD ACPI object: for SATA mode only
745 * Must be after Identify (Packet) Device -- uses its data
746 * ATM this function never returns a failure. It is an optional
747 * method and if it fails for whatever reason, we should still
754 * 0 on success, -errno on failure.
756 static int ata_acpi_push_id(struct ata_device
*dev
)
758 struct ata_port
*ap
= dev
->link
->ap
;
761 struct acpi_object_list input
;
762 union acpi_object in_params
[1];
764 if (ata_msg_probe(ap
))
765 ata_dev_printk(dev
, KERN_DEBUG
, "%s: ix = %d, port#: %d\n",
766 __func__
, dev
->devno
, ap
->port_no
);
768 /* Give the drive Identify data to the drive via the _SDD method */
769 /* _SDD: set up input parameters */
771 input
.pointer
= in_params
;
772 in_params
[0].type
= ACPI_TYPE_BUFFER
;
773 in_params
[0].buffer
.length
= sizeof(dev
->id
[0]) * ATA_ID_WORDS
;
774 in_params
[0].buffer
.pointer
= (u8
*)dev
->id
;
775 /* Output buffer: _SDD has no output */
777 /* It's OK for _SDD to be missing too. */
778 swap_buf_le16(dev
->id
, ATA_ID_WORDS
);
779 status
= acpi_evaluate_object(dev
->acpi_handle
, "_SDD", &input
, NULL
);
780 swap_buf_le16(dev
->id
, ATA_ID_WORDS
);
782 err
= ACPI_FAILURE(status
) ? -EIO
: 0;
784 ata_dev_printk(dev
, KERN_WARNING
,
785 "ACPI _SDD failed (AE 0x%x)\n", status
);
791 * ata_acpi_on_suspend - ATA ACPI hook called on suspend
792 * @ap: target ATA port
794 * This function is called when @ap is about to be suspended. All
795 * devices are already put to sleep but the port_suspend() callback
796 * hasn't been executed yet. Error return from this function aborts
803 * 0 on success, -errno on failure.
805 int ata_acpi_on_suspend(struct ata_port
*ap
)
812 * ata_acpi_on_resume - ATA ACPI hook called on resume
813 * @ap: target ATA port
815 * This function is called when @ap is resumed - right after port
816 * itself is resumed but before any EH action is taken.
821 void ata_acpi_on_resume(struct ata_port
*ap
)
823 const struct ata_acpi_gtm
*gtm
= ata_acpi_init_gtm(ap
);
824 struct ata_device
*dev
;
826 if (ap
->acpi_handle
&& gtm
) {
829 /* restore timing parameters */
830 ata_acpi_stm(ap
, gtm
);
832 /* _GTF should immediately follow _STM so that it can
833 * use values set by _STM. Cache _GTF result and
836 ata_link_for_each_dev(dev
, &ap
->link
) {
837 ata_acpi_clear_gtf(dev
);
838 if (ata_dev_enabled(dev
) &&
839 ata_dev_get_GTF(dev
, NULL
) >= 0)
840 dev
->flags
|= ATA_DFLAG_ACPI_PENDING
;
843 /* SATA _GTF needs to be evaulated after _SDD and
844 * there's no reason to evaluate IDE _GTF early
845 * without _STM. Clear cache and schedule _GTF.
847 ata_link_for_each_dev(dev
, &ap
->link
) {
848 ata_acpi_clear_gtf(dev
);
849 if (ata_dev_enabled(dev
))
850 dev
->flags
|= ATA_DFLAG_ACPI_PENDING
;
856 * ata_acpi_set_state - set the port power state
857 * @ap: target ATA port
858 * @state: state, on/off
860 * This function executes the _PS0/_PS3 ACPI method to set the power state.
861 * ACPI spec requires _PS0 when IDE power on and _PS3 when power off
863 void ata_acpi_set_state(struct ata_port
*ap
, pm_message_t state
)
865 struct ata_device
*dev
;
867 if (!ap
->acpi_handle
|| (ap
->flags
& ATA_FLAG_ACPI_SATA
))
870 /* channel first and then drives for power on and vica versa
872 if (state
.event
== PM_EVENT_ON
)
873 acpi_bus_set_power(ap
->acpi_handle
, ACPI_STATE_D0
);
875 ata_link_for_each_dev(dev
, &ap
->link
) {
876 if (dev
->acpi_handle
&& ata_dev_enabled(dev
))
877 acpi_bus_set_power(dev
->acpi_handle
,
878 state
.event
== PM_EVENT_ON
?
879 ACPI_STATE_D0
: ACPI_STATE_D3
);
881 if (state
.event
!= PM_EVENT_ON
)
882 acpi_bus_set_power(ap
->acpi_handle
, ACPI_STATE_D3
);
886 * ata_acpi_on_devcfg - ATA ACPI hook called on device donfiguration
887 * @dev: target ATA device
889 * This function is called when @dev is about to be configured.
890 * IDENTIFY data might have been modified after this hook is run.
896 * Positive number if IDENTIFY data needs to be refreshed, 0 if not,
899 int ata_acpi_on_devcfg(struct ata_device
*dev
)
901 struct ata_port
*ap
= dev
->link
->ap
;
902 struct ata_eh_context
*ehc
= &ap
->link
.eh_context
;
903 int acpi_sata
= ap
->flags
& ATA_FLAG_ACPI_SATA
;
907 if (!dev
->acpi_handle
)
910 /* do we need to do _GTF? */
911 if (!(dev
->flags
& ATA_DFLAG_ACPI_PENDING
) &&
912 !(acpi_sata
&& (ehc
->i
.flags
& ATA_EHI_DID_HARDRESET
)))
915 /* do _SDD if SATA */
917 rc
= ata_acpi_push_id(dev
);
923 rc
= ata_acpi_exec_tfs(dev
, &nr_executed
);
927 dev
->flags
&= ~ATA_DFLAG_ACPI_PENDING
;
929 /* refresh IDENTIFY page if any _GTF command has been executed */
931 rc
= ata_dev_reread_id(dev
, 0);
933 ata_dev_printk(dev
, KERN_ERR
, "failed to IDENTIFY "
934 "after ACPI commands\n");
942 /* ignore evaluation failure if we can continue safely */
943 if (rc
== -EINVAL
&& !nr_executed
&& !(ap
->pflags
& ATA_PFLAG_FROZEN
))
946 /* fail and let EH retry once more for unknown IO errors */
947 if (!(dev
->flags
& ATA_DFLAG_ACPI_FAILED
)) {
948 dev
->flags
|= ATA_DFLAG_ACPI_FAILED
;
952 ata_dev_printk(dev
, KERN_WARNING
,
953 "ACPI: failed the second time, disabled\n");
954 dev
->acpi_handle
= NULL
;
956 /* We can safely continue if no _GTF command has been executed
957 * and port is not frozen.
959 if (!nr_executed
&& !(ap
->pflags
& ATA_PFLAG_FROZEN
))
966 * ata_acpi_on_disable - ATA ACPI hook called when a device is disabled
967 * @dev: target ATA device
969 * This function is called when @dev is about to be disabled.
974 void ata_acpi_on_disable(struct ata_device
*dev
)
976 ata_acpi_clear_gtf(dev
);