x86/efi: Enforce CONFIG_RELOCATABLE for EFI boot stub
[linux/fpc-iii.git] / arch / x86 / pci / mmconfig-shared.c
blob082e88129712b4eb9e2027852c890a02ff31a1c7
1 /*
2 * mmconfig-shared.c - Low-level direct PCI config space access via
3 * MMCONFIG - common code between i386 and x86-64.
5 * This code does:
6 * - known chipset handling
7 * - ACPI decoding and validation
9 * Per-architecture code takes care of the mappings and accesses
10 * themselves.
13 #include <linux/pci.h>
14 #include <linux/init.h>
15 #include <linux/acpi.h>
16 #include <linux/sfi_acpi.h>
17 #include <linux/bitmap.h>
18 #include <linux/dmi.h>
19 #include <linux/slab.h>
20 #include <linux/mutex.h>
21 #include <linux/rculist.h>
22 #include <asm/e820.h>
23 #include <asm/pci_x86.h>
24 #include <asm/acpi.h>
26 #define PREFIX "PCI: "
28 /* Indicate if the mmcfg resources have been placed into the resource table. */
29 static bool pci_mmcfg_running_state;
30 static bool pci_mmcfg_arch_init_failed;
31 static DEFINE_MUTEX(pci_mmcfg_lock);
33 LIST_HEAD(pci_mmcfg_list);
35 static __init void pci_mmconfig_remove(struct pci_mmcfg_region *cfg)
37 if (cfg->res.parent)
38 release_resource(&cfg->res);
39 list_del(&cfg->list);
40 kfree(cfg);
43 static __init void free_all_mmcfg(void)
45 struct pci_mmcfg_region *cfg, *tmp;
47 pci_mmcfg_arch_free();
48 list_for_each_entry_safe(cfg, tmp, &pci_mmcfg_list, list)
49 pci_mmconfig_remove(cfg);
52 static void list_add_sorted(struct pci_mmcfg_region *new)
54 struct pci_mmcfg_region *cfg;
56 /* keep list sorted by segment and starting bus number */
57 list_for_each_entry_rcu(cfg, &pci_mmcfg_list, list) {
58 if (cfg->segment > new->segment ||
59 (cfg->segment == new->segment &&
60 cfg->start_bus >= new->start_bus)) {
61 list_add_tail_rcu(&new->list, &cfg->list);
62 return;
65 list_add_tail_rcu(&new->list, &pci_mmcfg_list);
68 static struct pci_mmcfg_region *pci_mmconfig_alloc(int segment, int start,
69 int end, u64 addr)
71 struct pci_mmcfg_region *new;
72 struct resource *res;
74 if (addr == 0)
75 return NULL;
77 new = kzalloc(sizeof(*new), GFP_KERNEL);
78 if (!new)
79 return NULL;
81 new->address = addr;
82 new->segment = segment;
83 new->start_bus = start;
84 new->end_bus = end;
86 res = &new->res;
87 res->start = addr + PCI_MMCFG_BUS_OFFSET(start);
88 res->end = addr + PCI_MMCFG_BUS_OFFSET(end + 1) - 1;
89 res->flags = IORESOURCE_MEM | IORESOURCE_BUSY;
90 snprintf(new->name, PCI_MMCFG_RESOURCE_NAME_LEN,
91 "PCI MMCONFIG %04x [bus %02x-%02x]", segment, start, end);
92 res->name = new->name;
94 return new;
97 static __init struct pci_mmcfg_region *pci_mmconfig_add(int segment, int start,
98 int end, u64 addr)
100 struct pci_mmcfg_region *new;
102 new = pci_mmconfig_alloc(segment, start, end, addr);
103 if (new) {
104 mutex_lock(&pci_mmcfg_lock);
105 list_add_sorted(new);
106 mutex_unlock(&pci_mmcfg_lock);
108 pr_info(PREFIX
109 "MMCONFIG for domain %04x [bus %02x-%02x] at %pR "
110 "(base %#lx)\n",
111 segment, start, end, &new->res, (unsigned long)addr);
114 return new;
117 struct pci_mmcfg_region *pci_mmconfig_lookup(int segment, int bus)
119 struct pci_mmcfg_region *cfg;
121 list_for_each_entry_rcu(cfg, &pci_mmcfg_list, list)
122 if (cfg->segment == segment &&
123 cfg->start_bus <= bus && bus <= cfg->end_bus)
124 return cfg;
126 return NULL;
129 static const char __init *pci_mmcfg_e7520(void)
131 u32 win;
132 raw_pci_ops->read(0, 0, PCI_DEVFN(0, 0), 0xce, 2, &win);
134 win = win & 0xf000;
135 if (win == 0x0000 || win == 0xf000)
136 return NULL;
138 if (pci_mmconfig_add(0, 0, 255, win << 16) == NULL)
139 return NULL;
141 return "Intel Corporation E7520 Memory Controller Hub";
144 static const char __init *pci_mmcfg_intel_945(void)
146 u32 pciexbar, mask = 0, len = 0;
148 raw_pci_ops->read(0, 0, PCI_DEVFN(0, 0), 0x48, 4, &pciexbar);
150 /* Enable bit */
151 if (!(pciexbar & 1))
152 return NULL;
154 /* Size bits */
155 switch ((pciexbar >> 1) & 3) {
156 case 0:
157 mask = 0xf0000000U;
158 len = 0x10000000U;
159 break;
160 case 1:
161 mask = 0xf8000000U;
162 len = 0x08000000U;
163 break;
164 case 2:
165 mask = 0xfc000000U;
166 len = 0x04000000U;
167 break;
168 default:
169 return NULL;
172 /* Errata #2, things break when not aligned on a 256Mb boundary */
173 /* Can only happen in 64M/128M mode */
175 if ((pciexbar & mask) & 0x0fffffffU)
176 return NULL;
178 /* Don't hit the APIC registers and their friends */
179 if ((pciexbar & mask) >= 0xf0000000U)
180 return NULL;
182 if (pci_mmconfig_add(0, 0, (len >> 20) - 1, pciexbar & mask) == NULL)
183 return NULL;
185 return "Intel Corporation 945G/GZ/P/PL Express Memory Controller Hub";
188 static const char __init *pci_mmcfg_amd_fam10h(void)
190 u32 low, high, address;
191 u64 base, msr;
192 int i;
193 unsigned segnbits = 0, busnbits, end_bus;
195 if (!(pci_probe & PCI_CHECK_ENABLE_AMD_MMCONF))
196 return NULL;
198 address = MSR_FAM10H_MMIO_CONF_BASE;
199 if (rdmsr_safe(address, &low, &high))
200 return NULL;
202 msr = high;
203 msr <<= 32;
204 msr |= low;
206 /* mmconfig is not enable */
207 if (!(msr & FAM10H_MMIO_CONF_ENABLE))
208 return NULL;
210 base = msr & (FAM10H_MMIO_CONF_BASE_MASK<<FAM10H_MMIO_CONF_BASE_SHIFT);
212 busnbits = (msr >> FAM10H_MMIO_CONF_BUSRANGE_SHIFT) &
213 FAM10H_MMIO_CONF_BUSRANGE_MASK;
216 * only handle bus 0 ?
217 * need to skip it
219 if (!busnbits)
220 return NULL;
222 if (busnbits > 8) {
223 segnbits = busnbits - 8;
224 busnbits = 8;
227 end_bus = (1 << busnbits) - 1;
228 for (i = 0; i < (1 << segnbits); i++)
229 if (pci_mmconfig_add(i, 0, end_bus,
230 base + (1<<28) * i) == NULL) {
231 free_all_mmcfg();
232 return NULL;
235 return "AMD Family 10h NB";
238 static bool __initdata mcp55_checked;
239 static const char __init *pci_mmcfg_nvidia_mcp55(void)
241 int bus;
242 int mcp55_mmconf_found = 0;
244 static const u32 extcfg_regnum = 0x90;
245 static const u32 extcfg_regsize = 4;
246 static const u32 extcfg_enable_mask = 1<<31;
247 static const u32 extcfg_start_mask = 0xff<<16;
248 static const int extcfg_start_shift = 16;
249 static const u32 extcfg_size_mask = 0x3<<28;
250 static const int extcfg_size_shift = 28;
251 static const int extcfg_sizebus[] = {0x100, 0x80, 0x40, 0x20};
252 static const u32 extcfg_base_mask[] = {0x7ff8, 0x7ffc, 0x7ffe, 0x7fff};
253 static const int extcfg_base_lshift = 25;
256 * do check if amd fam10h already took over
258 if (!acpi_disabled || !list_empty(&pci_mmcfg_list) || mcp55_checked)
259 return NULL;
261 mcp55_checked = true;
262 for (bus = 0; bus < 256; bus++) {
263 u64 base;
264 u32 l, extcfg;
265 u16 vendor, device;
266 int start, size_index, end;
268 raw_pci_ops->read(0, bus, PCI_DEVFN(0, 0), 0, 4, &l);
269 vendor = l & 0xffff;
270 device = (l >> 16) & 0xffff;
272 if (PCI_VENDOR_ID_NVIDIA != vendor || 0x0369 != device)
273 continue;
275 raw_pci_ops->read(0, bus, PCI_DEVFN(0, 0), extcfg_regnum,
276 extcfg_regsize, &extcfg);
278 if (!(extcfg & extcfg_enable_mask))
279 continue;
281 size_index = (extcfg & extcfg_size_mask) >> extcfg_size_shift;
282 base = extcfg & extcfg_base_mask[size_index];
283 /* base could > 4G */
284 base <<= extcfg_base_lshift;
285 start = (extcfg & extcfg_start_mask) >> extcfg_start_shift;
286 end = start + extcfg_sizebus[size_index] - 1;
287 if (pci_mmconfig_add(0, start, end, base) == NULL)
288 continue;
289 mcp55_mmconf_found++;
292 if (!mcp55_mmconf_found)
293 return NULL;
295 return "nVidia MCP55";
298 struct pci_mmcfg_hostbridge_probe {
299 u32 bus;
300 u32 devfn;
301 u32 vendor;
302 u32 device;
303 const char *(*probe)(void);
306 static struct pci_mmcfg_hostbridge_probe pci_mmcfg_probes[] __initdata = {
307 { 0, PCI_DEVFN(0, 0), PCI_VENDOR_ID_INTEL,
308 PCI_DEVICE_ID_INTEL_E7520_MCH, pci_mmcfg_e7520 },
309 { 0, PCI_DEVFN(0, 0), PCI_VENDOR_ID_INTEL,
310 PCI_DEVICE_ID_INTEL_82945G_HB, pci_mmcfg_intel_945 },
311 { 0, PCI_DEVFN(0x18, 0), PCI_VENDOR_ID_AMD,
312 0x1200, pci_mmcfg_amd_fam10h },
313 { 0xff, PCI_DEVFN(0, 0), PCI_VENDOR_ID_AMD,
314 0x1200, pci_mmcfg_amd_fam10h },
315 { 0, PCI_DEVFN(0, 0), PCI_VENDOR_ID_NVIDIA,
316 0x0369, pci_mmcfg_nvidia_mcp55 },
319 static void __init pci_mmcfg_check_end_bus_number(void)
321 struct pci_mmcfg_region *cfg, *cfgx;
323 /* Fixup overlaps */
324 list_for_each_entry(cfg, &pci_mmcfg_list, list) {
325 if (cfg->end_bus < cfg->start_bus)
326 cfg->end_bus = 255;
328 /* Don't access the list head ! */
329 if (cfg->list.next == &pci_mmcfg_list)
330 break;
332 cfgx = list_entry(cfg->list.next, typeof(*cfg), list);
333 if (cfg->end_bus >= cfgx->start_bus)
334 cfg->end_bus = cfgx->start_bus - 1;
338 static int __init pci_mmcfg_check_hostbridge(void)
340 u32 l;
341 u32 bus, devfn;
342 u16 vendor, device;
343 int i;
344 const char *name;
346 if (!raw_pci_ops)
347 return 0;
349 free_all_mmcfg();
351 for (i = 0; i < ARRAY_SIZE(pci_mmcfg_probes); i++) {
352 bus = pci_mmcfg_probes[i].bus;
353 devfn = pci_mmcfg_probes[i].devfn;
354 raw_pci_ops->read(0, bus, devfn, 0, 4, &l);
355 vendor = l & 0xffff;
356 device = (l >> 16) & 0xffff;
358 name = NULL;
359 if (pci_mmcfg_probes[i].vendor == vendor &&
360 pci_mmcfg_probes[i].device == device)
361 name = pci_mmcfg_probes[i].probe();
363 if (name)
364 pr_info(PREFIX "%s with MMCONFIG support\n", name);
367 /* some end_bus_number is crazy, fix it */
368 pci_mmcfg_check_end_bus_number();
370 return !list_empty(&pci_mmcfg_list);
373 static acpi_status check_mcfg_resource(struct acpi_resource *res, void *data)
375 struct resource *mcfg_res = data;
376 struct acpi_resource_address64 address;
377 acpi_status status;
379 if (res->type == ACPI_RESOURCE_TYPE_FIXED_MEMORY32) {
380 struct acpi_resource_fixed_memory32 *fixmem32 =
381 &res->data.fixed_memory32;
382 if (!fixmem32)
383 return AE_OK;
384 if ((mcfg_res->start >= fixmem32->address) &&
385 (mcfg_res->end < (fixmem32->address +
386 fixmem32->address_length))) {
387 mcfg_res->flags = 1;
388 return AE_CTRL_TERMINATE;
391 if ((res->type != ACPI_RESOURCE_TYPE_ADDRESS32) &&
392 (res->type != ACPI_RESOURCE_TYPE_ADDRESS64))
393 return AE_OK;
395 status = acpi_resource_to_address64(res, &address);
396 if (ACPI_FAILURE(status) ||
397 (address.address_length <= 0) ||
398 (address.resource_type != ACPI_MEMORY_RANGE))
399 return AE_OK;
401 if ((mcfg_res->start >= address.minimum) &&
402 (mcfg_res->end < (address.minimum + address.address_length))) {
403 mcfg_res->flags = 1;
404 return AE_CTRL_TERMINATE;
406 return AE_OK;
409 static acpi_status find_mboard_resource(acpi_handle handle, u32 lvl,
410 void *context, void **rv)
412 struct resource *mcfg_res = context;
414 acpi_walk_resources(handle, METHOD_NAME__CRS,
415 check_mcfg_resource, context);
417 if (mcfg_res->flags)
418 return AE_CTRL_TERMINATE;
420 return AE_OK;
423 static int is_acpi_reserved(u64 start, u64 end, unsigned not_used)
425 struct resource mcfg_res;
427 mcfg_res.start = start;
428 mcfg_res.end = end - 1;
429 mcfg_res.flags = 0;
431 acpi_get_devices("PNP0C01", find_mboard_resource, &mcfg_res, NULL);
433 if (!mcfg_res.flags)
434 acpi_get_devices("PNP0C02", find_mboard_resource, &mcfg_res,
435 NULL);
437 return mcfg_res.flags;
440 typedef int (*check_reserved_t)(u64 start, u64 end, unsigned type);
442 static int __ref is_mmconf_reserved(check_reserved_t is_reserved,
443 struct pci_mmcfg_region *cfg,
444 struct device *dev, int with_e820)
446 u64 addr = cfg->res.start;
447 u64 size = resource_size(&cfg->res);
448 u64 old_size = size;
449 int num_buses;
450 char *method = with_e820 ? "E820" : "ACPI motherboard resources";
452 while (!is_reserved(addr, addr + size, E820_RESERVED)) {
453 size >>= 1;
454 if (size < (16UL<<20))
455 break;
458 if (size < (16UL<<20) && size != old_size)
459 return 0;
461 if (dev)
462 dev_info(dev, "MMCONFIG at %pR reserved in %s\n",
463 &cfg->res, method);
464 else
465 pr_info(PREFIX "MMCONFIG at %pR reserved in %s\n",
466 &cfg->res, method);
468 if (old_size != size) {
469 /* update end_bus */
470 cfg->end_bus = cfg->start_bus + ((size>>20) - 1);
471 num_buses = cfg->end_bus - cfg->start_bus + 1;
472 cfg->res.end = cfg->res.start +
473 PCI_MMCFG_BUS_OFFSET(num_buses) - 1;
474 snprintf(cfg->name, PCI_MMCFG_RESOURCE_NAME_LEN,
475 "PCI MMCONFIG %04x [bus %02x-%02x]",
476 cfg->segment, cfg->start_bus, cfg->end_bus);
478 if (dev)
479 dev_info(dev,
480 "MMCONFIG "
481 "at %pR (base %#lx) (size reduced!)\n",
482 &cfg->res, (unsigned long) cfg->address);
483 else
484 pr_info(PREFIX
485 "MMCONFIG for %04x [bus%02x-%02x] "
486 "at %pR (base %#lx) (size reduced!)\n",
487 cfg->segment, cfg->start_bus, cfg->end_bus,
488 &cfg->res, (unsigned long) cfg->address);
491 return 1;
494 static int __ref pci_mmcfg_check_reserved(struct device *dev,
495 struct pci_mmcfg_region *cfg, int early)
497 if (!early && !acpi_disabled) {
498 if (is_mmconf_reserved(is_acpi_reserved, cfg, dev, 0))
499 return 1;
501 if (dev)
502 dev_info(dev, FW_INFO
503 "MMCONFIG at %pR not reserved in "
504 "ACPI motherboard resources\n",
505 &cfg->res);
506 else
507 pr_info(FW_INFO PREFIX
508 "MMCONFIG at %pR not reserved in "
509 "ACPI motherboard resources\n",
510 &cfg->res);
514 * e820_all_mapped() is marked as __init.
515 * All entries from ACPI MCFG table have been checked at boot time.
516 * For MCFG information constructed from hotpluggable host bridge's
517 * _CBA method, just assume it's reserved.
519 if (pci_mmcfg_running_state)
520 return 1;
522 /* Don't try to do this check unless configuration
523 type 1 is available. how about type 2 ?*/
524 if (raw_pci_ops)
525 return is_mmconf_reserved(e820_all_mapped, cfg, dev, 1);
527 return 0;
530 static void __init pci_mmcfg_reject_broken(int early)
532 struct pci_mmcfg_region *cfg;
534 list_for_each_entry(cfg, &pci_mmcfg_list, list) {
535 if (pci_mmcfg_check_reserved(NULL, cfg, early) == 0) {
536 pr_info(PREFIX "not using MMCONFIG\n");
537 free_all_mmcfg();
538 return;
543 static int __init acpi_mcfg_check_entry(struct acpi_table_mcfg *mcfg,
544 struct acpi_mcfg_allocation *cfg)
546 int year;
548 if (cfg->address < 0xFFFFFFFF)
549 return 0;
551 if (!strncmp(mcfg->header.oem_id, "SGI", 3))
552 return 0;
554 if (mcfg->header.revision >= 1) {
555 if (dmi_get_date(DMI_BIOS_DATE, &year, NULL, NULL) &&
556 year >= 2010)
557 return 0;
560 pr_err(PREFIX "MCFG region for %04x [bus %02x-%02x] at %#llx "
561 "is above 4GB, ignored\n", cfg->pci_segment,
562 cfg->start_bus_number, cfg->end_bus_number, cfg->address);
563 return -EINVAL;
566 static int __init pci_parse_mcfg(struct acpi_table_header *header)
568 struct acpi_table_mcfg *mcfg;
569 struct acpi_mcfg_allocation *cfg_table, *cfg;
570 unsigned long i;
571 int entries;
573 if (!header)
574 return -EINVAL;
576 mcfg = (struct acpi_table_mcfg *)header;
578 /* how many config structures do we have */
579 free_all_mmcfg();
580 entries = 0;
581 i = header->length - sizeof(struct acpi_table_mcfg);
582 while (i >= sizeof(struct acpi_mcfg_allocation)) {
583 entries++;
584 i -= sizeof(struct acpi_mcfg_allocation);
586 if (entries == 0) {
587 pr_err(PREFIX "MMCONFIG has no entries\n");
588 return -ENODEV;
591 cfg_table = (struct acpi_mcfg_allocation *) &mcfg[1];
592 for (i = 0; i < entries; i++) {
593 cfg = &cfg_table[i];
594 if (acpi_mcfg_check_entry(mcfg, cfg)) {
595 free_all_mmcfg();
596 return -ENODEV;
599 if (pci_mmconfig_add(cfg->pci_segment, cfg->start_bus_number,
600 cfg->end_bus_number, cfg->address) == NULL) {
601 pr_warn(PREFIX "no memory for MCFG entries\n");
602 free_all_mmcfg();
603 return -ENOMEM;
607 return 0;
610 static void __init __pci_mmcfg_init(int early)
612 pci_mmcfg_reject_broken(early);
613 if (list_empty(&pci_mmcfg_list))
614 return;
616 if (pcibios_last_bus < 0) {
617 const struct pci_mmcfg_region *cfg;
619 list_for_each_entry(cfg, &pci_mmcfg_list, list) {
620 if (cfg->segment)
621 break;
622 pcibios_last_bus = cfg->end_bus;
626 if (pci_mmcfg_arch_init())
627 pci_probe = (pci_probe & ~PCI_PROBE_MASK) | PCI_PROBE_MMCONF;
628 else {
629 free_all_mmcfg();
630 pci_mmcfg_arch_init_failed = true;
634 static int __initdata known_bridge;
636 void __init pci_mmcfg_early_init(void)
638 if (pci_probe & PCI_PROBE_MMCONF) {
639 if (pci_mmcfg_check_hostbridge())
640 known_bridge = 1;
641 else
642 acpi_sfi_table_parse(ACPI_SIG_MCFG, pci_parse_mcfg);
643 __pci_mmcfg_init(1);
647 void __init pci_mmcfg_late_init(void)
649 /* MMCONFIG disabled */
650 if ((pci_probe & PCI_PROBE_MMCONF) == 0)
651 return;
653 if (known_bridge)
654 return;
656 /* MMCONFIG hasn't been enabled yet, try again */
657 if (pci_probe & PCI_PROBE_MASK & ~PCI_PROBE_MMCONF) {
658 acpi_sfi_table_parse(ACPI_SIG_MCFG, pci_parse_mcfg);
659 __pci_mmcfg_init(0);
663 static int __init pci_mmcfg_late_insert_resources(void)
665 struct pci_mmcfg_region *cfg;
667 pci_mmcfg_running_state = true;
669 /* If we are not using MMCONFIG, don't insert the resources. */
670 if ((pci_probe & PCI_PROBE_MMCONF) == 0)
671 return 1;
674 * Attempt to insert the mmcfg resources but not with the busy flag
675 * marked so it won't cause request errors when __request_region is
676 * called.
678 list_for_each_entry(cfg, &pci_mmcfg_list, list)
679 if (!cfg->res.parent)
680 insert_resource(&iomem_resource, &cfg->res);
682 return 0;
686 * Perform MMCONFIG resource insertion after PCI initialization to allow for
687 * misprogrammed MCFG tables that state larger sizes but actually conflict
688 * with other system resources.
690 late_initcall(pci_mmcfg_late_insert_resources);
692 /* Add MMCFG information for host bridges */
693 int pci_mmconfig_insert(struct device *dev, u16 seg, u8 start, u8 end,
694 phys_addr_t addr)
696 int rc;
697 struct resource *tmp = NULL;
698 struct pci_mmcfg_region *cfg;
700 if (!(pci_probe & PCI_PROBE_MMCONF) || pci_mmcfg_arch_init_failed)
701 return -ENODEV;
703 if (start > end)
704 return -EINVAL;
706 mutex_lock(&pci_mmcfg_lock);
707 cfg = pci_mmconfig_lookup(seg, start);
708 if (cfg) {
709 if (cfg->end_bus < end)
710 dev_info(dev, FW_INFO
711 "MMCONFIG for "
712 "domain %04x [bus %02x-%02x] "
713 "only partially covers this bridge\n",
714 cfg->segment, cfg->start_bus, cfg->end_bus);
715 mutex_unlock(&pci_mmcfg_lock);
716 return -EEXIST;
719 if (!addr) {
720 mutex_unlock(&pci_mmcfg_lock);
721 return -EINVAL;
724 rc = -EBUSY;
725 cfg = pci_mmconfig_alloc(seg, start, end, addr);
726 if (cfg == NULL) {
727 dev_warn(dev, "fail to add MMCONFIG (out of memory)\n");
728 rc = -ENOMEM;
729 } else if (!pci_mmcfg_check_reserved(dev, cfg, 0)) {
730 dev_warn(dev, FW_BUG "MMCONFIG %pR isn't reserved\n",
731 &cfg->res);
732 } else {
733 /* Insert resource if it's not in boot stage */
734 if (pci_mmcfg_running_state)
735 tmp = insert_resource_conflict(&iomem_resource,
736 &cfg->res);
738 if (tmp) {
739 dev_warn(dev,
740 "MMCONFIG %pR conflicts with "
741 "%s %pR\n",
742 &cfg->res, tmp->name, tmp);
743 } else if (pci_mmcfg_arch_map(cfg)) {
744 dev_warn(dev, "fail to map MMCONFIG %pR.\n",
745 &cfg->res);
746 } else {
747 list_add_sorted(cfg);
748 dev_info(dev, "MMCONFIG at %pR (base %#lx)\n",
749 &cfg->res, (unsigned long)addr);
750 cfg = NULL;
751 rc = 0;
755 if (cfg) {
756 if (cfg->res.parent)
757 release_resource(&cfg->res);
758 kfree(cfg);
761 mutex_unlock(&pci_mmcfg_lock);
763 return rc;
766 /* Delete MMCFG information for host bridges */
767 int pci_mmconfig_delete(u16 seg, u8 start, u8 end)
769 struct pci_mmcfg_region *cfg;
771 mutex_lock(&pci_mmcfg_lock);
772 list_for_each_entry_rcu(cfg, &pci_mmcfg_list, list)
773 if (cfg->segment == seg && cfg->start_bus == start &&
774 cfg->end_bus == end) {
775 list_del_rcu(&cfg->list);
776 synchronize_rcu();
777 pci_mmcfg_arch_unmap(cfg);
778 if (cfg->res.parent)
779 release_resource(&cfg->res);
780 mutex_unlock(&pci_mmcfg_lock);
781 kfree(cfg);
782 return 0;
784 mutex_unlock(&pci_mmcfg_lock);
786 return -ENOENT;