3 * Purpose: Provide PCI support in ACPI
5 * Copyright (C) 2005 David Shaohua Li <shaohua.li@intel.com>
6 * Copyright (C) 2004 Tom Long Nguyen <tom.l.nguyen@intel.com>
7 * Copyright (C) 2004 Intel Corp.
10 #include <linux/delay.h>
11 #include <linux/init.h>
12 #include <linux/irqdomain.h>
13 #include <linux/pci.h>
14 #include <linux/msi.h>
15 #include <linux/pci_hotplug.h>
16 #include <linux/module.h>
17 #include <linux/pci-aspm.h>
18 #include <linux/pci-acpi.h>
19 #include <linux/pm_runtime.h>
20 #include <linux/pm_qos.h>
24 * The UUID is defined in the PCI Firmware Specification available here:
25 * https://www.pcisig.com/members/downloads/pcifw_r3_1_13Dec10.pdf
27 const u8 pci_acpi_dsm_uuid
[] = {
28 0xd0, 0x37, 0xc9, 0xe5, 0x53, 0x35, 0x7a, 0x4d,
29 0x91, 0x17, 0xea, 0x4d, 0x19, 0xc3, 0x43, 0x4d
32 #if defined(CONFIG_PCI_QUIRKS) && defined(CONFIG_ARM64)
33 static int acpi_get_rc_addr(struct acpi_device
*adev
, struct resource
*res
)
35 struct device
*dev
= &adev
->dev
;
36 struct resource_entry
*entry
;
37 struct list_head list
;
41 INIT_LIST_HEAD(&list
);
42 flags
= IORESOURCE_MEM
;
43 ret
= acpi_dev_get_resources(adev
, &list
,
44 acpi_dev_filter_resource_type_cb
,
47 dev_err(dev
, "failed to parse _CRS method, error code %d\n",
53 dev_err(dev
, "no IO and memory resources present in _CRS\n");
57 entry
= list_first_entry(&list
, struct resource_entry
, node
);
59 acpi_dev_free_resource_list(&list
);
63 static acpi_status
acpi_match_rc(acpi_handle handle
, u32 lvl
, void *context
,
66 u16
*segment
= context
;
67 unsigned long long uid
;
70 status
= acpi_evaluate_integer(handle
, "_UID", NULL
, &uid
);
71 if (ACPI_FAILURE(status
) || uid
!= *segment
)
74 *(acpi_handle
*)retval
= handle
;
75 return AE_CTRL_TERMINATE
;
78 int acpi_get_rc_resources(struct device
*dev
, const char *hid
, u16 segment
,
81 struct acpi_device
*adev
;
86 status
= acpi_get_devices(hid
, acpi_match_rc
, &segment
, &handle
);
87 if (ACPI_FAILURE(status
)) {
88 dev_err(dev
, "can't find _HID %s device to locate resources\n",
93 ret
= acpi_bus_get_device(handle
, &adev
);
97 ret
= acpi_get_rc_addr(adev
, res
);
99 dev_err(dev
, "can't get resource from %s\n",
100 dev_name(&adev
->dev
));
108 phys_addr_t
acpi_pci_root_get_mcfg_addr(acpi_handle handle
)
110 acpi_status status
= AE_NOT_EXIST
;
111 unsigned long long mcfg_addr
;
114 status
= acpi_evaluate_integer(handle
, METHOD_NAME__CBA
,
116 if (ACPI_FAILURE(status
))
119 return (phys_addr_t
)mcfg_addr
;
122 static acpi_status
decode_type0_hpx_record(union acpi_object
*record
,
123 struct hotplug_params
*hpx
)
126 union acpi_object
*fields
= record
->package
.elements
;
127 u32 revision
= fields
[1].integer
.value
;
131 if (record
->package
.count
!= 6)
133 for (i
= 2; i
< 6; i
++)
134 if (fields
[i
].type
!= ACPI_TYPE_INTEGER
)
136 hpx
->t0
= &hpx
->type0_data
;
137 hpx
->t0
->revision
= revision
;
138 hpx
->t0
->cache_line_size
= fields
[2].integer
.value
;
139 hpx
->t0
->latency_timer
= fields
[3].integer
.value
;
140 hpx
->t0
->enable_serr
= fields
[4].integer
.value
;
141 hpx
->t0
->enable_perr
= fields
[5].integer
.value
;
145 "%s: Type 0 Revision %d record not supported\n",
152 static acpi_status
decode_type1_hpx_record(union acpi_object
*record
,
153 struct hotplug_params
*hpx
)
156 union acpi_object
*fields
= record
->package
.elements
;
157 u32 revision
= fields
[1].integer
.value
;
161 if (record
->package
.count
!= 5)
163 for (i
= 2; i
< 5; i
++)
164 if (fields
[i
].type
!= ACPI_TYPE_INTEGER
)
166 hpx
->t1
= &hpx
->type1_data
;
167 hpx
->t1
->revision
= revision
;
168 hpx
->t1
->max_mem_read
= fields
[2].integer
.value
;
169 hpx
->t1
->avg_max_split
= fields
[3].integer
.value
;
170 hpx
->t1
->tot_max_split
= fields
[4].integer
.value
;
174 "%s: Type 1 Revision %d record not supported\n",
181 static acpi_status
decode_type2_hpx_record(union acpi_object
*record
,
182 struct hotplug_params
*hpx
)
185 union acpi_object
*fields
= record
->package
.elements
;
186 u32 revision
= fields
[1].integer
.value
;
190 if (record
->package
.count
!= 18)
192 for (i
= 2; i
< 18; i
++)
193 if (fields
[i
].type
!= ACPI_TYPE_INTEGER
)
195 hpx
->t2
= &hpx
->type2_data
;
196 hpx
->t2
->revision
= revision
;
197 hpx
->t2
->unc_err_mask_and
= fields
[2].integer
.value
;
198 hpx
->t2
->unc_err_mask_or
= fields
[3].integer
.value
;
199 hpx
->t2
->unc_err_sever_and
= fields
[4].integer
.value
;
200 hpx
->t2
->unc_err_sever_or
= fields
[5].integer
.value
;
201 hpx
->t2
->cor_err_mask_and
= fields
[6].integer
.value
;
202 hpx
->t2
->cor_err_mask_or
= fields
[7].integer
.value
;
203 hpx
->t2
->adv_err_cap_and
= fields
[8].integer
.value
;
204 hpx
->t2
->adv_err_cap_or
= fields
[9].integer
.value
;
205 hpx
->t2
->pci_exp_devctl_and
= fields
[10].integer
.value
;
206 hpx
->t2
->pci_exp_devctl_or
= fields
[11].integer
.value
;
207 hpx
->t2
->pci_exp_lnkctl_and
= fields
[12].integer
.value
;
208 hpx
->t2
->pci_exp_lnkctl_or
= fields
[13].integer
.value
;
209 hpx
->t2
->sec_unc_err_sever_and
= fields
[14].integer
.value
;
210 hpx
->t2
->sec_unc_err_sever_or
= fields
[15].integer
.value
;
211 hpx
->t2
->sec_unc_err_mask_and
= fields
[16].integer
.value
;
212 hpx
->t2
->sec_unc_err_mask_or
= fields
[17].integer
.value
;
216 "%s: Type 2 Revision %d record not supported\n",
223 static acpi_status
acpi_run_hpx(acpi_handle handle
, struct hotplug_params
*hpx
)
226 struct acpi_buffer buffer
= {ACPI_ALLOCATE_BUFFER
, NULL
};
227 union acpi_object
*package
, *record
, *fields
;
231 /* Clear the return buffer with zeros */
232 memset(hpx
, 0, sizeof(struct hotplug_params
));
234 status
= acpi_evaluate_object(handle
, "_HPX", NULL
, &buffer
);
235 if (ACPI_FAILURE(status
))
238 package
= (union acpi_object
*)buffer
.pointer
;
239 if (package
->type
!= ACPI_TYPE_PACKAGE
) {
244 for (i
= 0; i
< package
->package
.count
; i
++) {
245 record
= &package
->package
.elements
[i
];
246 if (record
->type
!= ACPI_TYPE_PACKAGE
) {
251 fields
= record
->package
.elements
;
252 if (fields
[0].type
!= ACPI_TYPE_INTEGER
||
253 fields
[1].type
!= ACPI_TYPE_INTEGER
) {
258 type
= fields
[0].integer
.value
;
261 status
= decode_type0_hpx_record(record
, hpx
);
262 if (ACPI_FAILURE(status
))
266 status
= decode_type1_hpx_record(record
, hpx
);
267 if (ACPI_FAILURE(status
))
271 status
= decode_type2_hpx_record(record
, hpx
);
272 if (ACPI_FAILURE(status
))
276 printk(KERN_ERR
"%s: Type %d record not supported\n",
283 kfree(buffer
.pointer
);
287 static acpi_status
acpi_run_hpp(acpi_handle handle
, struct hotplug_params
*hpp
)
290 struct acpi_buffer buffer
= { ACPI_ALLOCATE_BUFFER
, NULL
};
291 union acpi_object
*package
, *fields
;
294 memset(hpp
, 0, sizeof(struct hotplug_params
));
296 status
= acpi_evaluate_object(handle
, "_HPP", NULL
, &buffer
);
297 if (ACPI_FAILURE(status
))
300 package
= (union acpi_object
*) buffer
.pointer
;
301 if (package
->type
!= ACPI_TYPE_PACKAGE
||
302 package
->package
.count
!= 4) {
307 fields
= package
->package
.elements
;
308 for (i
= 0; i
< 4; i
++) {
309 if (fields
[i
].type
!= ACPI_TYPE_INTEGER
) {
315 hpp
->t0
= &hpp
->type0_data
;
316 hpp
->t0
->revision
= 1;
317 hpp
->t0
->cache_line_size
= fields
[0].integer
.value
;
318 hpp
->t0
->latency_timer
= fields
[1].integer
.value
;
319 hpp
->t0
->enable_serr
= fields
[2].integer
.value
;
320 hpp
->t0
->enable_perr
= fields
[3].integer
.value
;
323 kfree(buffer
.pointer
);
329 * @dev - the pci_dev for which we want parameters
330 * @hpp - allocated by the caller
332 int pci_get_hp_params(struct pci_dev
*dev
, struct hotplug_params
*hpp
)
335 acpi_handle handle
, phandle
;
336 struct pci_bus
*pbus
;
338 if (acpi_pci_disabled
)
342 for (pbus
= dev
->bus
; pbus
; pbus
= pbus
->parent
) {
343 handle
= acpi_pci_get_bridge_handle(pbus
);
349 * _HPP settings apply to all child buses, until another _HPP is
350 * encountered. If we don't find an _HPP for the input pci dev,
351 * look for it in the parent device scope since that would apply to
355 status
= acpi_run_hpx(handle
, hpp
);
356 if (ACPI_SUCCESS(status
))
358 status
= acpi_run_hpp(handle
, hpp
);
359 if (ACPI_SUCCESS(status
))
361 if (acpi_is_root_bridge(handle
))
363 status
= acpi_get_parent(handle
, &phandle
);
364 if (ACPI_FAILURE(status
))
370 EXPORT_SYMBOL_GPL(pci_get_hp_params
);
373 * pciehp_is_native - Check whether a hotplug port is handled by the OS
374 * @pdev: Hotplug port to check
376 * Walk up from @pdev to the host bridge, obtain its cached _OSC Control Field
377 * and return the value of the "PCI Express Native Hot Plug control" bit.
378 * On failure to obtain the _OSC Control Field return %false.
380 bool pciehp_is_native(struct pci_dev
*pdev
)
382 struct acpi_pci_root
*root
;
385 handle
= acpi_find_root_bridge_handle(pdev
);
389 root
= acpi_pci_find_root(handle
);
393 return root
->osc_control_set
& OSC_PCI_EXPRESS_NATIVE_HP_CONTROL
;
397 * pci_acpi_wake_bus - Root bus wakeup notification fork function.
398 * @work: Work item to handle.
400 static void pci_acpi_wake_bus(struct work_struct
*work
)
402 struct acpi_device
*adev
;
403 struct acpi_pci_root
*root
;
405 adev
= container_of(work
, struct acpi_device
, wakeup
.context
.work
);
406 root
= acpi_driver_data(adev
);
407 pci_pme_wakeup_bus(root
->bus
);
411 * pci_acpi_wake_dev - PCI device wakeup notification work function.
412 * @handle: ACPI handle of a device the notification is for.
413 * @work: Work item to handle.
415 static void pci_acpi_wake_dev(struct work_struct
*work
)
417 struct acpi_device_wakeup_context
*context
;
418 struct pci_dev
*pci_dev
;
420 context
= container_of(work
, struct acpi_device_wakeup_context
, work
);
421 pci_dev
= to_pci_dev(context
->dev
);
423 if (pci_dev
->pme_poll
)
424 pci_dev
->pme_poll
= false;
426 if (pci_dev
->current_state
== PCI_D3cold
) {
427 pci_wakeup_event(pci_dev
);
428 pm_runtime_resume(&pci_dev
->dev
);
432 /* Clear PME Status if set. */
433 if (pci_dev
->pme_support
)
434 pci_check_pme_status(pci_dev
);
436 pci_wakeup_event(pci_dev
);
437 pm_runtime_resume(&pci_dev
->dev
);
439 pci_pme_wakeup_bus(pci_dev
->subordinate
);
443 * pci_acpi_add_bus_pm_notifier - Register PM notifier for root PCI bus.
444 * @dev: PCI root bridge ACPI device.
446 acpi_status
pci_acpi_add_bus_pm_notifier(struct acpi_device
*dev
)
448 return acpi_add_pm_notifier(dev
, NULL
, pci_acpi_wake_bus
);
452 * pci_acpi_add_pm_notifier - Register PM notifier for given PCI device.
453 * @dev: ACPI device to add the notifier for.
454 * @pci_dev: PCI device to check for the PME status if an event is signaled.
456 acpi_status
pci_acpi_add_pm_notifier(struct acpi_device
*dev
,
457 struct pci_dev
*pci_dev
)
459 return acpi_add_pm_notifier(dev
, &pci_dev
->dev
, pci_acpi_wake_dev
);
463 * _SxD returns the D-state with the highest power
464 * (lowest D-state number) supported in the S-state "x".
466 * If the devices does not have a _PRW
467 * (Power Resources for Wake) supporting system wakeup from "x"
468 * then the OS is free to choose a lower power (higher number
469 * D-state) than the return value from _SxD.
471 * But if _PRW is enabled at S-state "x", the OS
472 * must not choose a power lower than _SxD --
473 * unless the device has an _SxW method specifying
474 * the lowest power (highest D-state number) the device
475 * may enter while still able to wake the system.
477 * ie. depending on global OS policy:
479 * if (_PRW at S-state x)
480 * choose from highest power _SxD to lowest power _SxW
481 * else // no _PRW at S-state x
482 * choose highest power _SxD or any lower power
485 static pci_power_t
acpi_pci_choose_state(struct pci_dev
*pdev
)
487 int acpi_state
, d_max
;
490 d_max
= ACPI_STATE_D3_HOT
;
492 d_max
= ACPI_STATE_D3_COLD
;
493 acpi_state
= acpi_pm_device_sleep_state(&pdev
->dev
, NULL
, d_max
);
495 return PCI_POWER_ERROR
;
497 switch (acpi_state
) {
504 case ACPI_STATE_D3_HOT
:
506 case ACPI_STATE_D3_COLD
:
509 return PCI_POWER_ERROR
;
512 static bool acpi_pci_power_manageable(struct pci_dev
*dev
)
514 struct acpi_device
*adev
= ACPI_COMPANION(&dev
->dev
);
515 return adev
? acpi_device_power_manageable(adev
) : false;
518 static int acpi_pci_set_power_state(struct pci_dev
*dev
, pci_power_t state
)
520 struct acpi_device
*adev
= ACPI_COMPANION(&dev
->dev
);
521 static const u8 state_conv
[] = {
522 [PCI_D0
] = ACPI_STATE_D0
,
523 [PCI_D1
] = ACPI_STATE_D1
,
524 [PCI_D2
] = ACPI_STATE_D2
,
525 [PCI_D3hot
] = ACPI_STATE_D3_HOT
,
526 [PCI_D3cold
] = ACPI_STATE_D3_COLD
,
530 /* If the ACPI device has _EJ0, ignore the device */
531 if (!adev
|| acpi_has_method(adev
->handle
, "_EJ0"))
536 if (dev_pm_qos_flags(&dev
->dev
, PM_QOS_FLAG_NO_POWER_OFF
) ==
545 error
= acpi_device_set_power(adev
, state_conv
[state
]);
549 dev_dbg(&dev
->dev
, "power state changed by ACPI to %s\n",
550 acpi_power_state_string(state_conv
[state
]));
555 static pci_power_t
acpi_pci_get_power_state(struct pci_dev
*dev
)
557 struct acpi_device
*adev
= ACPI_COMPANION(&dev
->dev
);
558 static const pci_power_t state_conv
[] = {
559 [ACPI_STATE_D0
] = PCI_D0
,
560 [ACPI_STATE_D1
] = PCI_D1
,
561 [ACPI_STATE_D2
] = PCI_D2
,
562 [ACPI_STATE_D3_HOT
] = PCI_D3hot
,
563 [ACPI_STATE_D3_COLD
] = PCI_D3cold
,
567 if (!adev
|| !acpi_device_power_manageable(adev
))
570 if (acpi_device_get_power(adev
, &state
) || state
== ACPI_STATE_UNKNOWN
)
573 return state_conv
[state
];
576 static bool acpi_pci_can_wakeup(struct pci_dev
*dev
)
578 struct acpi_device
*adev
= ACPI_COMPANION(&dev
->dev
);
579 return adev
? acpi_device_can_wakeup(adev
) : false;
582 static void acpi_pci_propagate_wakeup_enable(struct pci_bus
*bus
, bool enable
)
584 while (bus
->parent
) {
585 if (!acpi_pm_device_sleep_wake(&bus
->self
->dev
, enable
))
590 /* We have reached the root bus. */
592 acpi_pm_device_sleep_wake(bus
->bridge
, enable
);
595 static int acpi_pci_sleep_wake(struct pci_dev
*dev
, bool enable
)
597 if (acpi_pci_can_wakeup(dev
))
598 return acpi_pm_device_sleep_wake(&dev
->dev
, enable
);
600 acpi_pci_propagate_wakeup_enable(dev
->bus
, enable
);
604 static void acpi_pci_propagate_run_wake(struct pci_bus
*bus
, bool enable
)
606 while (bus
->parent
) {
607 struct pci_dev
*bridge
= bus
->self
;
609 if (bridge
->pme_interrupt
)
611 if (!acpi_pm_device_run_wake(&bridge
->dev
, enable
))
616 /* We have reached the root bus. */
618 acpi_pm_device_run_wake(bus
->bridge
, enable
);
621 static int acpi_pci_run_wake(struct pci_dev
*dev
, bool enable
)
624 * Per PCI Express Base Specification Revision 2.0 section
625 * 5.3.3.2 Link Wakeup, platform support is needed for D3cold
626 * waking up to power on the main link even if there is PME
629 if (dev
->pme_interrupt
&& !dev
->runtime_d3cold
)
632 if (!acpi_pm_device_run_wake(&dev
->dev
, enable
))
635 acpi_pci_propagate_run_wake(dev
->bus
, enable
);
639 static bool acpi_pci_need_resume(struct pci_dev
*dev
)
641 struct acpi_device
*adev
= ACPI_COMPANION(&dev
->dev
);
643 if (!adev
|| !acpi_device_power_manageable(adev
))
646 if (device_may_wakeup(&dev
->dev
) != !!adev
->wakeup
.prepare_count
)
649 if (acpi_target_system_state() == ACPI_STATE_S0
)
652 return !!adev
->power
.flags
.dsw_present
;
655 static const struct pci_platform_pm_ops acpi_pci_platform_pm
= {
656 .is_manageable
= acpi_pci_power_manageable
,
657 .set_state
= acpi_pci_set_power_state
,
658 .get_state
= acpi_pci_get_power_state
,
659 .choose_state
= acpi_pci_choose_state
,
660 .sleep_wake
= acpi_pci_sleep_wake
,
661 .run_wake
= acpi_pci_run_wake
,
662 .need_resume
= acpi_pci_need_resume
,
665 void acpi_pci_add_bus(struct pci_bus
*bus
)
667 union acpi_object
*obj
;
668 struct pci_host_bridge
*bridge
;
670 if (acpi_pci_disabled
|| !bus
->bridge
)
673 acpi_pci_slot_enumerate(bus
);
674 acpiphp_enumerate_slots(bus
);
677 * For a host bridge, check its _DSM for function 8 and if
678 * that is available, mark it in pci_host_bridge.
680 if (!pci_is_root_bus(bus
))
683 obj
= acpi_evaluate_dsm(ACPI_HANDLE(bus
->bridge
), pci_acpi_dsm_uuid
, 3,
684 RESET_DELAY_DSM
, NULL
);
688 if (obj
->type
== ACPI_TYPE_INTEGER
&& obj
->integer
.value
== 1) {
689 bridge
= pci_find_host_bridge(bus
);
690 bridge
->ignore_reset_delay
= 1;
695 void acpi_pci_remove_bus(struct pci_bus
*bus
)
697 if (acpi_pci_disabled
|| !bus
->bridge
)
700 acpiphp_remove_slots(bus
);
701 acpi_pci_slot_remove(bus
);
705 static struct acpi_device
*acpi_pci_find_companion(struct device
*dev
)
707 struct pci_dev
*pci_dev
= to_pci_dev(dev
);
711 check_children
= pci_is_bridge(pci_dev
);
712 /* Please ref to ACPI spec for the syntax of _ADR */
713 addr
= (PCI_SLOT(pci_dev
->devfn
) << 16) | PCI_FUNC(pci_dev
->devfn
);
714 return acpi_find_child_device(ACPI_COMPANION(dev
->parent
), addr
,
719 * pci_acpi_optimize_delay - optimize PCI D3 and D3cold delay from ACPI
720 * @pdev: the PCI device whose delay is to be updated
721 * @handle: ACPI handle of this device
723 * Update the d3_delay and d3cold_delay of a PCI device from the ACPI _DSM
724 * control method of either the device itself or the PCI host bridge.
726 * Function 8, "Reset Delay," applies to the entire hierarchy below a PCI
727 * host bridge. If it returns one, the OS may assume that all devices in
728 * the hierarchy have already completed power-on reset delays.
730 * Function 9, "Device Readiness Durations," applies only to the object
731 * where it is located. It returns delay durations required after various
732 * events if the device requires less time than the spec requires. Delays
733 * from this function take precedence over the Reset Delay function.
735 * These _DSM functions are defined by the draft ECN of January 28, 2014,
736 * titled "ACPI additions for FW latency optimizations."
738 static void pci_acpi_optimize_delay(struct pci_dev
*pdev
,
741 struct pci_host_bridge
*bridge
= pci_find_host_bridge(pdev
->bus
);
743 union acpi_object
*obj
, *elements
;
745 if (bridge
->ignore_reset_delay
)
746 pdev
->d3cold_delay
= 0;
748 obj
= acpi_evaluate_dsm(handle
, pci_acpi_dsm_uuid
, 3,
749 FUNCTION_DELAY_DSM
, NULL
);
753 if (obj
->type
== ACPI_TYPE_PACKAGE
&& obj
->package
.count
== 5) {
754 elements
= obj
->package
.elements
;
755 if (elements
[0].type
== ACPI_TYPE_INTEGER
) {
756 value
= (int)elements
[0].integer
.value
/ 1000;
757 if (value
< PCI_PM_D3COLD_WAIT
)
758 pdev
->d3cold_delay
= value
;
760 if (elements
[3].type
== ACPI_TYPE_INTEGER
) {
761 value
= (int)elements
[3].integer
.value
/ 1000;
762 if (value
< PCI_PM_D3_WAIT
)
763 pdev
->d3_delay
= value
;
769 static void pci_acpi_setup(struct device
*dev
)
771 struct pci_dev
*pci_dev
= to_pci_dev(dev
);
772 struct acpi_device
*adev
= ACPI_COMPANION(dev
);
777 pci_acpi_optimize_delay(pci_dev
, adev
->handle
);
779 pci_acpi_add_pm_notifier(adev
, pci_dev
);
780 if (!adev
->wakeup
.flags
.valid
)
783 device_set_wakeup_capable(dev
, true);
784 acpi_pci_sleep_wake(pci_dev
, false);
785 if (adev
->wakeup
.flags
.run_wake
)
786 device_set_run_wake(dev
, true);
789 static void pci_acpi_cleanup(struct device
*dev
)
791 struct acpi_device
*adev
= ACPI_COMPANION(dev
);
796 pci_acpi_remove_pm_notifier(adev
);
797 if (adev
->wakeup
.flags
.valid
) {
798 device_set_wakeup_capable(dev
, false);
799 device_set_run_wake(dev
, false);
803 static bool pci_acpi_bus_match(struct device
*dev
)
805 return dev_is_pci(dev
);
808 static struct acpi_bus_type acpi_pci_bus
= {
810 .match
= pci_acpi_bus_match
,
811 .find_companion
= acpi_pci_find_companion
,
812 .setup
= pci_acpi_setup
,
813 .cleanup
= pci_acpi_cleanup
,
817 static struct fwnode_handle
*(*pci_msi_get_fwnode_cb
)(struct device
*dev
);
820 * pci_msi_register_fwnode_provider - Register callback to retrieve fwnode
821 * @fn: Callback matching a device to a fwnode that identifies a PCI
824 * This should be called by irqchip driver, which is the parent of
825 * the MSI domain to provide callback interface to query fwnode.
828 pci_msi_register_fwnode_provider(struct fwnode_handle
*(*fn
)(struct device
*))
830 pci_msi_get_fwnode_cb
= fn
;
834 * pci_host_bridge_acpi_msi_domain - Retrieve MSI domain of a PCI host bridge
835 * @bus: The PCI host bridge bus.
837 * This function uses the callback function registered by
838 * pci_msi_register_fwnode_provider() to retrieve the irq_domain with
839 * type DOMAIN_BUS_PCI_MSI of the specified host bridge bus.
840 * This returns NULL on error or when the domain is not found.
842 struct irq_domain
*pci_host_bridge_acpi_msi_domain(struct pci_bus
*bus
)
844 struct fwnode_handle
*fwnode
;
846 if (!pci_msi_get_fwnode_cb
)
849 fwnode
= pci_msi_get_fwnode_cb(&bus
->dev
);
853 return irq_find_matching_fwnode(fwnode
, DOMAIN_BUS_PCI_MSI
);
856 static int __init
acpi_pci_init(void)
860 if (acpi_gbl_FADT
.boot_flags
& ACPI_FADT_NO_MSI
) {
861 pr_info("ACPI FADT declares the system doesn't support MSI, so disable it\n");
865 if (acpi_gbl_FADT
.boot_flags
& ACPI_FADT_NO_ASPM
) {
866 pr_info("ACPI FADT declares the system doesn't support PCIe ASPM, so disable it\n");
870 ret
= register_acpi_bus_type(&acpi_pci_bus
);
874 pci_set_platform_pm(&acpi_pci_platform_pm
);
875 acpi_pci_slot_init();
880 arch_initcall(acpi_pci_init
);