Merge tag 'block-5.16-2021-12-19' of git://git.kernel.dk/linux-block
[linux-2.6-microblaze.git] / drivers / acpi / pci_root.c
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  *  pci_root.c - ACPI PCI Root Bridge Driver ($Revision: 40 $)
4  *
5  *  Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
6  *  Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
7  */
8
9 #define pr_fmt(fmt) "ACPI: " fmt
10
11 #include <linux/kernel.h>
12 #include <linux/module.h>
13 #include <linux/init.h>
14 #include <linux/types.h>
15 #include <linux/mutex.h>
16 #include <linux/pm.h>
17 #include <linux/pm_runtime.h>
18 #include <linux/pci.h>
19 #include <linux/pci-acpi.h>
20 #include <linux/dmar.h>
21 #include <linux/acpi.h>
22 #include <linux/slab.h>
23 #include <linux/dmi.h>
24 #include <linux/platform_data/x86/apple.h>
25 #include <acpi/apei.h>  /* for acpi_hest_init() */
26
27 #include "internal.h"
28
29 #define ACPI_PCI_ROOT_CLASS             "pci_bridge"
30 #define ACPI_PCI_ROOT_DEVICE_NAME       "PCI Root Bridge"
31 static int acpi_pci_root_add(struct acpi_device *device,
32                              const struct acpi_device_id *not_used);
33 static void acpi_pci_root_remove(struct acpi_device *device);
34
35 static int acpi_pci_root_scan_dependent(struct acpi_device *adev)
36 {
37         acpiphp_check_host_bridge(adev);
38         return 0;
39 }
40
41 #define ACPI_PCIE_REQ_SUPPORT (OSC_PCI_EXT_CONFIG_SUPPORT \
42                                 | OSC_PCI_ASPM_SUPPORT \
43                                 | OSC_PCI_CLOCK_PM_SUPPORT \
44                                 | OSC_PCI_MSI_SUPPORT)
45
46 static const struct acpi_device_id root_device_ids[] = {
47         {"PNP0A03", 0},
48         {"", 0},
49 };
50
51 static struct acpi_scan_handler pci_root_handler = {
52         .ids = root_device_ids,
53         .attach = acpi_pci_root_add,
54         .detach = acpi_pci_root_remove,
55         .hotplug = {
56                 .enabled = true,
57                 .scan_dependent = acpi_pci_root_scan_dependent,
58         },
59 };
60
61 /**
62  * acpi_is_root_bridge - determine whether an ACPI CA node is a PCI root bridge
63  * @handle:  the ACPI CA node in question.
64  *
65  * Note: we could make this API take a struct acpi_device * instead, but
66  * for now, it's more convenient to operate on an acpi_handle.
67  */
68 int acpi_is_root_bridge(acpi_handle handle)
69 {
70         int ret;
71         struct acpi_device *device;
72
73         ret = acpi_bus_get_device(handle, &device);
74         if (ret)
75                 return 0;
76
77         ret = acpi_match_device_ids(device, root_device_ids);
78         if (ret)
79                 return 0;
80         else
81                 return 1;
82 }
83 EXPORT_SYMBOL_GPL(acpi_is_root_bridge);
84
85 static acpi_status
86 get_root_bridge_busnr_callback(struct acpi_resource *resource, void *data)
87 {
88         struct resource *res = data;
89         struct acpi_resource_address64 address;
90         acpi_status status;
91
92         status = acpi_resource_to_address64(resource, &address);
93         if (ACPI_FAILURE(status))
94                 return AE_OK;
95
96         if ((address.address.address_length > 0) &&
97             (address.resource_type == ACPI_BUS_NUMBER_RANGE)) {
98                 res->start = address.address.minimum;
99                 res->end = address.address.minimum + address.address.address_length - 1;
100         }
101
102         return AE_OK;
103 }
104
105 static acpi_status try_get_root_bridge_busnr(acpi_handle handle,
106                                              struct resource *res)
107 {
108         acpi_status status;
109
110         res->start = -1;
111         status =
112             acpi_walk_resources(handle, METHOD_NAME__CRS,
113                                 get_root_bridge_busnr_callback, res);
114         if (ACPI_FAILURE(status))
115                 return status;
116         if (res->start == -1)
117                 return AE_ERROR;
118         return AE_OK;
119 }
120
121 struct pci_osc_bit_struct {
122         u32 bit;
123         char *desc;
124 };
125
126 static struct pci_osc_bit_struct pci_osc_support_bit[] = {
127         { OSC_PCI_EXT_CONFIG_SUPPORT, "ExtendedConfig" },
128         { OSC_PCI_ASPM_SUPPORT, "ASPM" },
129         { OSC_PCI_CLOCK_PM_SUPPORT, "ClockPM" },
130         { OSC_PCI_SEGMENT_GROUPS_SUPPORT, "Segments" },
131         { OSC_PCI_MSI_SUPPORT, "MSI" },
132         { OSC_PCI_EDR_SUPPORT, "EDR" },
133         { OSC_PCI_HPX_TYPE_3_SUPPORT, "HPX-Type3" },
134 };
135
136 static struct pci_osc_bit_struct pci_osc_control_bit[] = {
137         { OSC_PCI_EXPRESS_NATIVE_HP_CONTROL, "PCIeHotplug" },
138         { OSC_PCI_SHPC_NATIVE_HP_CONTROL, "SHPCHotplug" },
139         { OSC_PCI_EXPRESS_PME_CONTROL, "PME" },
140         { OSC_PCI_EXPRESS_AER_CONTROL, "AER" },
141         { OSC_PCI_EXPRESS_CAPABILITY_CONTROL, "PCIeCapability" },
142         { OSC_PCI_EXPRESS_LTR_CONTROL, "LTR" },
143         { OSC_PCI_EXPRESS_DPC_CONTROL, "DPC" },
144 };
145
146 static void decode_osc_bits(struct acpi_pci_root *root, char *msg, u32 word,
147                             struct pci_osc_bit_struct *table, int size)
148 {
149         char buf[80];
150         int i, len = 0;
151         struct pci_osc_bit_struct *entry;
152
153         buf[0] = '\0';
154         for (i = 0, entry = table; i < size; i++, entry++)
155                 if (word & entry->bit)
156                         len += scnprintf(buf + len, sizeof(buf) - len, "%s%s",
157                                         len ? " " : "", entry->desc);
158
159         dev_info(&root->device->dev, "_OSC: %s [%s]\n", msg, buf);
160 }
161
162 static void decode_osc_support(struct acpi_pci_root *root, char *msg, u32 word)
163 {
164         decode_osc_bits(root, msg, word, pci_osc_support_bit,
165                         ARRAY_SIZE(pci_osc_support_bit));
166 }
167
168 static void decode_osc_control(struct acpi_pci_root *root, char *msg, u32 word)
169 {
170         decode_osc_bits(root, msg, word, pci_osc_control_bit,
171                         ARRAY_SIZE(pci_osc_control_bit));
172 }
173
174 static u8 pci_osc_uuid_str[] = "33DB4D5B-1FF7-401C-9657-7441C03DD766";
175
176 static acpi_status acpi_pci_run_osc(acpi_handle handle,
177                                     const u32 *capbuf, u32 *retval)
178 {
179         struct acpi_osc_context context = {
180                 .uuid_str = pci_osc_uuid_str,
181                 .rev = 1,
182                 .cap.length = 12,
183                 .cap.pointer = (void *)capbuf,
184         };
185         acpi_status status;
186
187         status = acpi_run_osc(handle, &context);
188         if (ACPI_SUCCESS(status)) {
189                 *retval = *((u32 *)(context.ret.pointer + 8));
190                 kfree(context.ret.pointer);
191         }
192         return status;
193 }
194
195 static acpi_status acpi_pci_query_osc(struct acpi_pci_root *root,
196                                         u32 support,
197                                         u32 *control)
198 {
199         acpi_status status;
200         u32 result, capbuf[3];
201
202         support |= root->osc_support_set;
203
204         capbuf[OSC_QUERY_DWORD] = OSC_QUERY_ENABLE;
205         capbuf[OSC_SUPPORT_DWORD] = support;
206         capbuf[OSC_CONTROL_DWORD] = *control | root->osc_control_set;
207
208         status = acpi_pci_run_osc(root->device->handle, capbuf, &result);
209         if (ACPI_SUCCESS(status)) {
210                 root->osc_support_set = support;
211                 *control = result;
212         }
213         return status;
214 }
215
216 struct acpi_pci_root *acpi_pci_find_root(acpi_handle handle)
217 {
218         struct acpi_pci_root *root;
219         struct acpi_device *device;
220
221         if (acpi_bus_get_device(handle, &device) ||
222             acpi_match_device_ids(device, root_device_ids))
223                 return NULL;
224
225         root = acpi_driver_data(device);
226
227         return root;
228 }
229 EXPORT_SYMBOL_GPL(acpi_pci_find_root);
230
231 struct acpi_handle_node {
232         struct list_head node;
233         acpi_handle handle;
234 };
235
236 /**
237  * acpi_get_pci_dev - convert ACPI CA handle to struct pci_dev
238  * @handle: the handle in question
239  *
240  * Given an ACPI CA handle, the desired PCI device is located in the
241  * list of PCI devices.
242  *
243  * If the device is found, its reference count is increased and this
244  * function returns a pointer to its data structure.  The caller must
245  * decrement the reference count by calling pci_dev_put().
246  * If no device is found, %NULL is returned.
247  */
248 struct pci_dev *acpi_get_pci_dev(acpi_handle handle)
249 {
250         int dev, fn;
251         unsigned long long adr;
252         acpi_status status;
253         acpi_handle phandle;
254         struct pci_bus *pbus;
255         struct pci_dev *pdev = NULL;
256         struct acpi_handle_node *node, *tmp;
257         struct acpi_pci_root *root;
258         LIST_HEAD(device_list);
259
260         /*
261          * Walk up the ACPI CA namespace until we reach a PCI root bridge.
262          */
263         phandle = handle;
264         while (!acpi_is_root_bridge(phandle)) {
265                 node = kzalloc(sizeof(struct acpi_handle_node), GFP_KERNEL);
266                 if (!node)
267                         goto out;
268
269                 INIT_LIST_HEAD(&node->node);
270                 node->handle = phandle;
271                 list_add(&node->node, &device_list);
272
273                 status = acpi_get_parent(phandle, &phandle);
274                 if (ACPI_FAILURE(status))
275                         goto out;
276         }
277
278         root = acpi_pci_find_root(phandle);
279         if (!root)
280                 goto out;
281
282         pbus = root->bus;
283
284         /*
285          * Now, walk back down the PCI device tree until we return to our
286          * original handle. Assumes that everything between the PCI root
287          * bridge and the device we're looking for must be a P2P bridge.
288          */
289         list_for_each_entry(node, &device_list, node) {
290                 acpi_handle hnd = node->handle;
291                 status = acpi_evaluate_integer(hnd, "_ADR", NULL, &adr);
292                 if (ACPI_FAILURE(status))
293                         goto out;
294                 dev = (adr >> 16) & 0xffff;
295                 fn  = adr & 0xffff;
296
297                 pdev = pci_get_slot(pbus, PCI_DEVFN(dev, fn));
298                 if (!pdev || hnd == handle)
299                         break;
300
301                 pbus = pdev->subordinate;
302                 pci_dev_put(pdev);
303
304                 /*
305                  * This function may be called for a non-PCI device that has a
306                  * PCI parent (eg. a disk under a PCI SATA controller).  In that
307                  * case pdev->subordinate will be NULL for the parent.
308                  */
309                 if (!pbus) {
310                         dev_dbg(&pdev->dev, "Not a PCI-to-PCI bridge\n");
311                         pdev = NULL;
312                         break;
313                 }
314         }
315 out:
316         list_for_each_entry_safe(node, tmp, &device_list, node)
317                 kfree(node);
318
319         return pdev;
320 }
321 EXPORT_SYMBOL_GPL(acpi_get_pci_dev);
322
323 /**
324  * acpi_pci_osc_control_set - Request control of PCI root _OSC features.
325  * @handle: ACPI handle of a PCI root bridge (or PCIe Root Complex).
326  * @mask: Mask of _OSC bits to request control of, place to store control mask.
327  * @req: Mask of _OSC bits the control of is essential to the caller.
328  *
329  * Run _OSC query for @mask and if that is successful, compare the returned
330  * mask of control bits with @req.  If all of the @req bits are set in the
331  * returned mask, run _OSC request for it.
332  *
333  * The variable at the @mask address may be modified regardless of whether or
334  * not the function returns success.  On success it will contain the mask of
335  * _OSC bits the BIOS has granted control of, but its contents are meaningless
336  * on failure.
337  **/
338 static acpi_status acpi_pci_osc_control_set(acpi_handle handle, u32 *mask, u32 support)
339 {
340         u32 req = OSC_PCI_EXPRESS_CAPABILITY_CONTROL;
341         struct acpi_pci_root *root;
342         acpi_status status;
343         u32 ctrl, capbuf[3];
344
345         if (!mask)
346                 return AE_BAD_PARAMETER;
347
348         root = acpi_pci_find_root(handle);
349         if (!root)
350                 return AE_NOT_EXIST;
351
352         ctrl   = *mask;
353         *mask |= root->osc_control_set;
354
355         /* Need to check the available controls bits before requesting them. */
356         do {
357                 status = acpi_pci_query_osc(root, support, mask);
358                 if (ACPI_FAILURE(status))
359                         return status;
360                 if (ctrl == *mask)
361                         break;
362                 decode_osc_control(root, "platform does not support",
363                                    ctrl & ~(*mask));
364                 ctrl = *mask;
365         } while (*mask);
366
367         /* No need to request _OSC if the control was already granted. */
368         if ((root->osc_control_set & ctrl) == ctrl)
369                 return AE_OK;
370
371         if ((ctrl & req) != req) {
372                 decode_osc_control(root, "not requesting control; platform does not support",
373                                    req & ~(ctrl));
374                 return AE_SUPPORT;
375         }
376
377         capbuf[OSC_QUERY_DWORD] = 0;
378         capbuf[OSC_SUPPORT_DWORD] = root->osc_support_set;
379         capbuf[OSC_CONTROL_DWORD] = ctrl;
380         status = acpi_pci_run_osc(handle, capbuf, mask);
381         if (ACPI_FAILURE(status))
382                 return status;
383
384         root->osc_control_set = *mask;
385         return AE_OK;
386 }
387
388 static u32 calculate_support(void)
389 {
390         u32 support;
391
392         /*
393          * All supported architectures that use ACPI have support for
394          * PCI domains, so we indicate this in _OSC support capabilities.
395          */
396         support = OSC_PCI_SEGMENT_GROUPS_SUPPORT;
397         support |= OSC_PCI_HPX_TYPE_3_SUPPORT;
398         if (pci_ext_cfg_avail())
399                 support |= OSC_PCI_EXT_CONFIG_SUPPORT;
400         if (pcie_aspm_support_enabled())
401                 support |= OSC_PCI_ASPM_SUPPORT | OSC_PCI_CLOCK_PM_SUPPORT;
402         if (pci_msi_enabled())
403                 support |= OSC_PCI_MSI_SUPPORT;
404         if (IS_ENABLED(CONFIG_PCIE_EDR))
405                 support |= OSC_PCI_EDR_SUPPORT;
406
407         return support;
408 }
409
410 static u32 calculate_control(void)
411 {
412         u32 control;
413
414         control = OSC_PCI_EXPRESS_CAPABILITY_CONTROL
415                 | OSC_PCI_EXPRESS_PME_CONTROL;
416
417         if (IS_ENABLED(CONFIG_PCIEASPM))
418                 control |= OSC_PCI_EXPRESS_LTR_CONTROL;
419
420         if (IS_ENABLED(CONFIG_HOTPLUG_PCI_PCIE))
421                 control |= OSC_PCI_EXPRESS_NATIVE_HP_CONTROL;
422
423         if (IS_ENABLED(CONFIG_HOTPLUG_PCI_SHPC))
424                 control |= OSC_PCI_SHPC_NATIVE_HP_CONTROL;
425
426         if (pci_aer_available())
427                 control |= OSC_PCI_EXPRESS_AER_CONTROL;
428
429         /*
430          * Per the Downstream Port Containment Related Enhancements ECN to
431          * the PCI Firmware Spec, r3.2, sec 4.5.1, table 4-5,
432          * OSC_PCI_EXPRESS_DPC_CONTROL indicates the OS supports both DPC
433          * and EDR.
434          */
435         if (IS_ENABLED(CONFIG_PCIE_DPC) && IS_ENABLED(CONFIG_PCIE_EDR))
436                 control |= OSC_PCI_EXPRESS_DPC_CONTROL;
437
438         return control;
439 }
440
441 static bool os_control_query_checks(struct acpi_pci_root *root, u32 support)
442 {
443         struct acpi_device *device = root->device;
444
445         if (pcie_ports_disabled) {
446                 dev_info(&device->dev, "PCIe port services disabled; not requesting _OSC control\n");
447                 return false;
448         }
449
450         if ((support & ACPI_PCIE_REQ_SUPPORT) != ACPI_PCIE_REQ_SUPPORT) {
451                 decode_osc_support(root, "not requesting OS control; OS requires",
452                                    ACPI_PCIE_REQ_SUPPORT);
453                 return false;
454         }
455
456         return true;
457 }
458
459 static void negotiate_os_control(struct acpi_pci_root *root, int *no_aspm,
460                                  bool is_pcie)
461 {
462         u32 support, control = 0, requested = 0;
463         acpi_status status;
464         struct acpi_device *device = root->device;
465         acpi_handle handle = device->handle;
466
467         /*
468          * Apple always return failure on _OSC calls when _OSI("Darwin") has
469          * been called successfully. We know the feature set supported by the
470          * platform, so avoid calling _OSC at all
471          */
472         if (x86_apple_machine) {
473                 root->osc_control_set = ~OSC_PCI_EXPRESS_PME_CONTROL;
474                 decode_osc_control(root, "OS assumes control of",
475                                    root->osc_control_set);
476                 return;
477         }
478
479         support = calculate_support();
480
481         decode_osc_support(root, "OS supports", support);
482
483         if (os_control_query_checks(root, support))
484                 requested = control = calculate_control();
485
486         status = acpi_pci_osc_control_set(handle, &control, support);
487         if (ACPI_SUCCESS(status)) {
488                 if (control)
489                         decode_osc_control(root, "OS now controls", control);
490
491                 if (acpi_gbl_FADT.boot_flags & ACPI_FADT_NO_ASPM) {
492                         /*
493                          * We have ASPM control, but the FADT indicates that
494                          * it's unsupported. Leave existing configuration
495                          * intact and prevent the OS from touching it.
496                          */
497                         dev_info(&device->dev, "FADT indicates ASPM is unsupported, using BIOS configuration\n");
498                         *no_aspm = 1;
499                 }
500         } else {
501                 /*
502                  * We want to disable ASPM here, but aspm_disabled
503                  * needs to remain in its state from boot so that we
504                  * properly handle PCIe 1.1 devices.  So we set this
505                  * flag here, to defer the action until after the ACPI
506                  * root scan.
507                  */
508                 *no_aspm = 1;
509
510                 /* _OSC is optional for PCI host bridges */
511                 if ((status == AE_NOT_FOUND) && !is_pcie)
512                         return;
513
514                 if (control) {
515                         decode_osc_control(root, "OS requested", requested);
516                         decode_osc_control(root, "platform willing to grant", control);
517                 }
518
519                 dev_info(&device->dev, "_OSC: platform retains control of PCIe features (%s)\n",
520                          acpi_format_exception(status));
521         }
522 }
523
524 static int acpi_pci_root_add(struct acpi_device *device,
525                              const struct acpi_device_id *not_used)
526 {
527         unsigned long long segment, bus;
528         acpi_status status;
529         int result;
530         struct acpi_pci_root *root;
531         acpi_handle handle = device->handle;
532         int no_aspm = 0;
533         bool hotadd = system_state == SYSTEM_RUNNING;
534         bool is_pcie;
535
536         root = kzalloc(sizeof(struct acpi_pci_root), GFP_KERNEL);
537         if (!root)
538                 return -ENOMEM;
539
540         segment = 0;
541         status = acpi_evaluate_integer(handle, METHOD_NAME__SEG, NULL,
542                                        &segment);
543         if (ACPI_FAILURE(status) && status != AE_NOT_FOUND) {
544                 dev_err(&device->dev,  "can't evaluate _SEG\n");
545                 result = -ENODEV;
546                 goto end;
547         }
548
549         /* Check _CRS first, then _BBN.  If no _BBN, default to zero. */
550         root->secondary.flags = IORESOURCE_BUS;
551         status = try_get_root_bridge_busnr(handle, &root->secondary);
552         if (ACPI_FAILURE(status)) {
553                 /*
554                  * We need both the start and end of the downstream bus range
555                  * to interpret _CBA (MMCONFIG base address), so it really is
556                  * supposed to be in _CRS.  If we don't find it there, all we
557                  * can do is assume [_BBN-0xFF] or [0-0xFF].
558                  */
559                 root->secondary.end = 0xFF;
560                 dev_warn(&device->dev,
561                          FW_BUG "no secondary bus range in _CRS\n");
562                 status = acpi_evaluate_integer(handle, METHOD_NAME__BBN,
563                                                NULL, &bus);
564                 if (ACPI_SUCCESS(status))
565                         root->secondary.start = bus;
566                 else if (status == AE_NOT_FOUND)
567                         root->secondary.start = 0;
568                 else {
569                         dev_err(&device->dev, "can't evaluate _BBN\n");
570                         result = -ENODEV;
571                         goto end;
572                 }
573         }
574
575         root->device = device;
576         root->segment = segment & 0xFFFF;
577         strcpy(acpi_device_name(device), ACPI_PCI_ROOT_DEVICE_NAME);
578         strcpy(acpi_device_class(device), ACPI_PCI_ROOT_CLASS);
579         device->driver_data = root;
580
581         if (hotadd && dmar_device_add(handle)) {
582                 result = -ENXIO;
583                 goto end;
584         }
585
586         pr_info("%s [%s] (domain %04x %pR)\n",
587                acpi_device_name(device), acpi_device_bid(device),
588                root->segment, &root->secondary);
589
590         root->mcfg_addr = acpi_pci_root_get_mcfg_addr(handle);
591
592         is_pcie = strcmp(acpi_device_hid(device), "PNP0A08") == 0;
593         negotiate_os_control(root, &no_aspm, is_pcie);
594
595         /*
596          * TBD: Need PCI interface for enumeration/configuration of roots.
597          */
598
599         /*
600          * Scan the Root Bridge
601          * --------------------
602          * Must do this prior to any attempt to bind the root device, as the
603          * PCI namespace does not get created until this call is made (and
604          * thus the root bridge's pci_dev does not exist).
605          */
606         root->bus = pci_acpi_scan_root(root);
607         if (!root->bus) {
608                 dev_err(&device->dev,
609                         "Bus %04x:%02x not present in PCI namespace\n",
610                         root->segment, (unsigned int)root->secondary.start);
611                 device->driver_data = NULL;
612                 result = -ENODEV;
613                 goto remove_dmar;
614         }
615
616         if (no_aspm)
617                 pcie_no_aspm();
618
619         pci_acpi_add_bus_pm_notifier(device);
620         device_set_wakeup_capable(root->bus->bridge, device->wakeup.flags.valid);
621
622         if (hotadd) {
623                 pcibios_resource_survey_bus(root->bus);
624                 pci_assign_unassigned_root_bus_resources(root->bus);
625                 /*
626                  * This is only called for the hotadd case. For the boot-time
627                  * case, we need to wait until after PCI initialization in
628                  * order to deal with IOAPICs mapped in on a PCI BAR.
629                  *
630                  * This is currently x86-specific, because acpi_ioapic_add()
631                  * is an empty function without CONFIG_ACPI_HOTPLUG_IOAPIC.
632                  * And CONFIG_ACPI_HOTPLUG_IOAPIC depends on CONFIG_X86_IO_APIC
633                  * (see drivers/acpi/Kconfig).
634                  */
635                 acpi_ioapic_add(root->device->handle);
636         }
637
638         pci_lock_rescan_remove();
639         pci_bus_add_devices(root->bus);
640         pci_unlock_rescan_remove();
641         return 1;
642
643 remove_dmar:
644         if (hotadd)
645                 dmar_device_remove(handle);
646 end:
647         kfree(root);
648         return result;
649 }
650
651 static void acpi_pci_root_remove(struct acpi_device *device)
652 {
653         struct acpi_pci_root *root = acpi_driver_data(device);
654
655         pci_lock_rescan_remove();
656
657         pci_stop_root_bus(root->bus);
658
659         pci_ioapic_remove(root);
660         device_set_wakeup_capable(root->bus->bridge, false);
661         pci_acpi_remove_bus_pm_notifier(device);
662
663         pci_remove_root_bus(root->bus);
664         WARN_ON(acpi_ioapic_remove(root));
665
666         dmar_device_remove(device->handle);
667
668         pci_unlock_rescan_remove();
669
670         kfree(root);
671 }
672
673 /*
674  * Following code to support acpi_pci_root_create() is copied from
675  * arch/x86/pci/acpi.c and modified so it could be reused by x86, IA64
676  * and ARM64.
677  */
678 static void acpi_pci_root_validate_resources(struct device *dev,
679                                              struct list_head *resources,
680                                              unsigned long type)
681 {
682         LIST_HEAD(list);
683         struct resource *res1, *res2, *root = NULL;
684         struct resource_entry *tmp, *entry, *entry2;
685
686         BUG_ON((type & (IORESOURCE_MEM | IORESOURCE_IO)) == 0);
687         root = (type & IORESOURCE_MEM) ? &iomem_resource : &ioport_resource;
688
689         list_splice_init(resources, &list);
690         resource_list_for_each_entry_safe(entry, tmp, &list) {
691                 bool free = false;
692                 resource_size_t end;
693
694                 res1 = entry->res;
695                 if (!(res1->flags & type))
696                         goto next;
697
698                 /* Exclude non-addressable range or non-addressable portion */
699                 end = min(res1->end, root->end);
700                 if (end <= res1->start) {
701                         dev_info(dev, "host bridge window %pR (ignored, not CPU addressable)\n",
702                                  res1);
703                         free = true;
704                         goto next;
705                 } else if (res1->end != end) {
706                         dev_info(dev, "host bridge window %pR ([%#llx-%#llx] ignored, not CPU addressable)\n",
707                                  res1, (unsigned long long)end + 1,
708                                  (unsigned long long)res1->end);
709                         res1->end = end;
710                 }
711
712                 resource_list_for_each_entry(entry2, resources) {
713                         res2 = entry2->res;
714                         if (!(res2->flags & type))
715                                 continue;
716
717                         /*
718                          * I don't like throwing away windows because then
719                          * our resources no longer match the ACPI _CRS, but
720                          * the kernel resource tree doesn't allow overlaps.
721                          */
722                         if (resource_union(res1, res2, res2)) {
723                                 dev_info(dev, "host bridge window expanded to %pR; %pR ignored\n",
724                                          res2, res1);
725                                 free = true;
726                                 goto next;
727                         }
728                 }
729
730 next:
731                 resource_list_del(entry);
732                 if (free)
733                         resource_list_free_entry(entry);
734                 else
735                         resource_list_add_tail(entry, resources);
736         }
737 }
738
739 static void acpi_pci_root_remap_iospace(struct fwnode_handle *fwnode,
740                         struct resource_entry *entry)
741 {
742 #ifdef PCI_IOBASE
743         struct resource *res = entry->res;
744         resource_size_t cpu_addr = res->start;
745         resource_size_t pci_addr = cpu_addr - entry->offset;
746         resource_size_t length = resource_size(res);
747         unsigned long port;
748
749         if (pci_register_io_range(fwnode, cpu_addr, length))
750                 goto err;
751
752         port = pci_address_to_pio(cpu_addr);
753         if (port == (unsigned long)-1)
754                 goto err;
755
756         res->start = port;
757         res->end = port + length - 1;
758         entry->offset = port - pci_addr;
759
760         if (pci_remap_iospace(res, cpu_addr) < 0)
761                 goto err;
762
763         pr_info("Remapped I/O %pa to %pR\n", &cpu_addr, res);
764         return;
765 err:
766         res->flags |= IORESOURCE_DISABLED;
767 #endif
768 }
769
770 int acpi_pci_probe_root_resources(struct acpi_pci_root_info *info)
771 {
772         int ret;
773         struct list_head *list = &info->resources;
774         struct acpi_device *device = info->bridge;
775         struct resource_entry *entry, *tmp;
776         unsigned long flags;
777
778         flags = IORESOURCE_IO | IORESOURCE_MEM | IORESOURCE_MEM_8AND16BIT;
779         ret = acpi_dev_get_resources(device, list,
780                                      acpi_dev_filter_resource_type_cb,
781                                      (void *)flags);
782         if (ret < 0)
783                 dev_warn(&device->dev,
784                          "failed to parse _CRS method, error code %d\n", ret);
785         else if (ret == 0)
786                 dev_dbg(&device->dev,
787                         "no IO and memory resources present in _CRS\n");
788         else {
789                 resource_list_for_each_entry_safe(entry, tmp, list) {
790                         if (entry->res->flags & IORESOURCE_IO)
791                                 acpi_pci_root_remap_iospace(&device->fwnode,
792                                                 entry);
793
794                         if (entry->res->flags & IORESOURCE_DISABLED)
795                                 resource_list_destroy_entry(entry);
796                         else
797                                 entry->res->name = info->name;
798                 }
799                 acpi_pci_root_validate_resources(&device->dev, list,
800                                                  IORESOURCE_MEM);
801                 acpi_pci_root_validate_resources(&device->dev, list,
802                                                  IORESOURCE_IO);
803         }
804
805         return ret;
806 }
807
808 static void pci_acpi_root_add_resources(struct acpi_pci_root_info *info)
809 {
810         struct resource_entry *entry, *tmp;
811         struct resource *res, *conflict, *root = NULL;
812
813         resource_list_for_each_entry_safe(entry, tmp, &info->resources) {
814                 res = entry->res;
815                 if (res->flags & IORESOURCE_MEM)
816                         root = &iomem_resource;
817                 else if (res->flags & IORESOURCE_IO)
818                         root = &ioport_resource;
819                 else
820                         continue;
821
822                 /*
823                  * Some legacy x86 host bridge drivers use iomem_resource and
824                  * ioport_resource as default resource pool, skip it.
825                  */
826                 if (res == root)
827                         continue;
828
829                 conflict = insert_resource_conflict(root, res);
830                 if (conflict) {
831                         dev_info(&info->bridge->dev,
832                                  "ignoring host bridge window %pR (conflicts with %s %pR)\n",
833                                  res, conflict->name, conflict);
834                         resource_list_destroy_entry(entry);
835                 }
836         }
837 }
838
839 static void __acpi_pci_root_release_info(struct acpi_pci_root_info *info)
840 {
841         struct resource *res;
842         struct resource_entry *entry, *tmp;
843
844         if (!info)
845                 return;
846
847         resource_list_for_each_entry_safe(entry, tmp, &info->resources) {
848                 res = entry->res;
849                 if (res->parent &&
850                     (res->flags & (IORESOURCE_MEM | IORESOURCE_IO)))
851                         release_resource(res);
852                 resource_list_destroy_entry(entry);
853         }
854
855         info->ops->release_info(info);
856 }
857
858 static void acpi_pci_root_release_info(struct pci_host_bridge *bridge)
859 {
860         struct resource *res;
861         struct resource_entry *entry;
862
863         resource_list_for_each_entry(entry, &bridge->windows) {
864                 res = entry->res;
865                 if (res->flags & IORESOURCE_IO)
866                         pci_unmap_iospace(res);
867                 if (res->parent &&
868                     (res->flags & (IORESOURCE_MEM | IORESOURCE_IO)))
869                         release_resource(res);
870         }
871         __acpi_pci_root_release_info(bridge->release_data);
872 }
873
874 struct pci_bus *acpi_pci_root_create(struct acpi_pci_root *root,
875                                      struct acpi_pci_root_ops *ops,
876                                      struct acpi_pci_root_info *info,
877                                      void *sysdata)
878 {
879         int ret, busnum = root->secondary.start;
880         struct acpi_device *device = root->device;
881         int node = acpi_get_node(device->handle);
882         struct pci_bus *bus;
883         struct pci_host_bridge *host_bridge;
884         union acpi_object *obj;
885
886         info->root = root;
887         info->bridge = device;
888         info->ops = ops;
889         INIT_LIST_HEAD(&info->resources);
890         snprintf(info->name, sizeof(info->name), "PCI Bus %04x:%02x",
891                  root->segment, busnum);
892
893         if (ops->init_info && ops->init_info(info))
894                 goto out_release_info;
895         if (ops->prepare_resources)
896                 ret = ops->prepare_resources(info);
897         else
898                 ret = acpi_pci_probe_root_resources(info);
899         if (ret < 0)
900                 goto out_release_info;
901
902         pci_acpi_root_add_resources(info);
903         pci_add_resource(&info->resources, &root->secondary);
904         bus = pci_create_root_bus(NULL, busnum, ops->pci_ops,
905                                   sysdata, &info->resources);
906         if (!bus)
907                 goto out_release_info;
908
909         host_bridge = to_pci_host_bridge(bus->bridge);
910         if (!(root->osc_control_set & OSC_PCI_EXPRESS_NATIVE_HP_CONTROL))
911                 host_bridge->native_pcie_hotplug = 0;
912         if (!(root->osc_control_set & OSC_PCI_SHPC_NATIVE_HP_CONTROL))
913                 host_bridge->native_shpc_hotplug = 0;
914         if (!(root->osc_control_set & OSC_PCI_EXPRESS_AER_CONTROL))
915                 host_bridge->native_aer = 0;
916         if (!(root->osc_control_set & OSC_PCI_EXPRESS_PME_CONTROL))
917                 host_bridge->native_pme = 0;
918         if (!(root->osc_control_set & OSC_PCI_EXPRESS_LTR_CONTROL))
919                 host_bridge->native_ltr = 0;
920         if (!(root->osc_control_set & OSC_PCI_EXPRESS_DPC_CONTROL))
921                 host_bridge->native_dpc = 0;
922
923         /*
924          * Evaluate the "PCI Boot Configuration" _DSM Function.  If it
925          * exists and returns 0, we must preserve any PCI resource
926          * assignments made by firmware for this host bridge.
927          */
928         obj = acpi_evaluate_dsm(ACPI_HANDLE(bus->bridge), &pci_acpi_dsm_guid, 1,
929                                 DSM_PCI_PRESERVE_BOOT_CONFIG, NULL);
930         if (obj && obj->type == ACPI_TYPE_INTEGER && obj->integer.value == 0)
931                 host_bridge->preserve_config = 1;
932         ACPI_FREE(obj);
933
934         pci_scan_child_bus(bus);
935         pci_set_host_bridge_release(host_bridge, acpi_pci_root_release_info,
936                                     info);
937         if (node != NUMA_NO_NODE)
938                 dev_printk(KERN_DEBUG, &bus->dev, "on NUMA node %d\n", node);
939         return bus;
940
941 out_release_info:
942         __acpi_pci_root_release_info(info);
943         return NULL;
944 }
945
946 void __init acpi_pci_root_init(void)
947 {
948         acpi_hest_init();
949         if (acpi_pci_disabled)
950                 return;
951
952         pci_acpi_crs_quirks();
953         acpi_scan_add_handler_with_hotplug(&pci_root_handler, "pci_root");
954 }