PCI: Use kobj_to_dev() instead of open-coding it
[deliverable/linux.git] / drivers / pci / pci-sysfs.c
1 /*
2 * drivers/pci/pci-sysfs.c
3 *
4 * (C) Copyright 2002-2004 Greg Kroah-Hartman <greg@kroah.com>
5 * (C) Copyright 2002-2004 IBM Corp.
6 * (C) Copyright 2003 Matthew Wilcox
7 * (C) Copyright 2003 Hewlett-Packard
8 * (C) Copyright 2004 Jon Smirl <jonsmirl@yahoo.com>
9 * (C) Copyright 2004 Silicon Graphics, Inc. Jesse Barnes <jbarnes@sgi.com>
10 *
11 * File attributes for PCI devices
12 *
13 * Modeled after usb's driverfs.c
14 *
15 */
16
17
18 #include <linux/kernel.h>
19 #include <linux/sched.h>
20 #include <linux/pci.h>
21 #include <linux/stat.h>
22 #include <linux/export.h>
23 #include <linux/topology.h>
24 #include <linux/mm.h>
25 #include <linux/fs.h>
26 #include <linux/capability.h>
27 #include <linux/security.h>
28 #include <linux/pci-aspm.h>
29 #include <linux/slab.h>
30 #include <linux/vgaarb.h>
31 #include <linux/pm_runtime.h>
32 #include <linux/of.h>
33 #include "pci.h"
34
35 static int sysfs_initialized; /* = 0 */
36
37 /* show configuration fields */
38 #define pci_config_attr(field, format_string) \
39 static ssize_t \
40 field##_show(struct device *dev, struct device_attribute *attr, char *buf) \
41 { \
42 struct pci_dev *pdev; \
43 \
44 pdev = to_pci_dev(dev); \
45 return sprintf(buf, format_string, pdev->field); \
46 } \
47 static DEVICE_ATTR_RO(field)
48
49 pci_config_attr(vendor, "0x%04x\n");
50 pci_config_attr(device, "0x%04x\n");
51 pci_config_attr(subsystem_vendor, "0x%04x\n");
52 pci_config_attr(subsystem_device, "0x%04x\n");
53 pci_config_attr(class, "0x%06x\n");
54 pci_config_attr(irq, "%u\n");
55
56 static ssize_t broken_parity_status_show(struct device *dev,
57 struct device_attribute *attr,
58 char *buf)
59 {
60 struct pci_dev *pdev = to_pci_dev(dev);
61 return sprintf(buf, "%u\n", pdev->broken_parity_status);
62 }
63
64 static ssize_t broken_parity_status_store(struct device *dev,
65 struct device_attribute *attr,
66 const char *buf, size_t count)
67 {
68 struct pci_dev *pdev = to_pci_dev(dev);
69 unsigned long val;
70
71 if (kstrtoul(buf, 0, &val) < 0)
72 return -EINVAL;
73
74 pdev->broken_parity_status = !!val;
75
76 return count;
77 }
78 static DEVICE_ATTR_RW(broken_parity_status);
79
80 static ssize_t pci_dev_show_local_cpu(struct device *dev, bool list,
81 struct device_attribute *attr, char *buf)
82 {
83 const struct cpumask *mask;
84
85 #ifdef CONFIG_NUMA
86 mask = (dev_to_node(dev) == -1) ? cpu_online_mask :
87 cpumask_of_node(dev_to_node(dev));
88 #else
89 mask = cpumask_of_pcibus(to_pci_dev(dev)->bus);
90 #endif
91 return cpumap_print_to_pagebuf(list, buf, mask);
92 }
93
94 static ssize_t local_cpus_show(struct device *dev,
95 struct device_attribute *attr, char *buf)
96 {
97 return pci_dev_show_local_cpu(dev, false, attr, buf);
98 }
99 static DEVICE_ATTR_RO(local_cpus);
100
101 static ssize_t local_cpulist_show(struct device *dev,
102 struct device_attribute *attr, char *buf)
103 {
104 return pci_dev_show_local_cpu(dev, true, attr, buf);
105 }
106 static DEVICE_ATTR_RO(local_cpulist);
107
108 /*
109 * PCI Bus Class Devices
110 */
111 static ssize_t cpuaffinity_show(struct device *dev,
112 struct device_attribute *attr, char *buf)
113 {
114 const struct cpumask *cpumask = cpumask_of_pcibus(to_pci_bus(dev));
115
116 return cpumap_print_to_pagebuf(false, buf, cpumask);
117 }
118 static DEVICE_ATTR_RO(cpuaffinity);
119
120 static ssize_t cpulistaffinity_show(struct device *dev,
121 struct device_attribute *attr, char *buf)
122 {
123 const struct cpumask *cpumask = cpumask_of_pcibus(to_pci_bus(dev));
124
125 return cpumap_print_to_pagebuf(true, buf, cpumask);
126 }
127 static DEVICE_ATTR_RO(cpulistaffinity);
128
129 /* show resources */
130 static ssize_t resource_show(struct device *dev, struct device_attribute *attr,
131 char *buf)
132 {
133 struct pci_dev *pci_dev = to_pci_dev(dev);
134 char *str = buf;
135 int i;
136 int max;
137 resource_size_t start, end;
138
139 if (pci_dev->subordinate)
140 max = DEVICE_COUNT_RESOURCE;
141 else
142 max = PCI_BRIDGE_RESOURCES;
143
144 for (i = 0; i < max; i++) {
145 struct resource *res = &pci_dev->resource[i];
146 pci_resource_to_user(pci_dev, i, res, &start, &end);
147 str += sprintf(str, "0x%016llx 0x%016llx 0x%016llx\n",
148 (unsigned long long)start,
149 (unsigned long long)end,
150 (unsigned long long)res->flags);
151 }
152 return (str - buf);
153 }
154 static DEVICE_ATTR_RO(resource);
155
156 static ssize_t modalias_show(struct device *dev, struct device_attribute *attr,
157 char *buf)
158 {
159 struct pci_dev *pci_dev = to_pci_dev(dev);
160
161 return sprintf(buf, "pci:v%08Xd%08Xsv%08Xsd%08Xbc%02Xsc%02Xi%02X\n",
162 pci_dev->vendor, pci_dev->device,
163 pci_dev->subsystem_vendor, pci_dev->subsystem_device,
164 (u8)(pci_dev->class >> 16), (u8)(pci_dev->class >> 8),
165 (u8)(pci_dev->class));
166 }
167 static DEVICE_ATTR_RO(modalias);
168
169 static ssize_t enable_store(struct device *dev, struct device_attribute *attr,
170 const char *buf, size_t count)
171 {
172 struct pci_dev *pdev = to_pci_dev(dev);
173 unsigned long val;
174 ssize_t result = kstrtoul(buf, 0, &val);
175
176 if (result < 0)
177 return result;
178
179 /* this can crash the machine when done on the "wrong" device */
180 if (!capable(CAP_SYS_ADMIN))
181 return -EPERM;
182
183 if (!val) {
184 if (pci_is_enabled(pdev))
185 pci_disable_device(pdev);
186 else
187 result = -EIO;
188 } else
189 result = pci_enable_device(pdev);
190
191 return result < 0 ? result : count;
192 }
193
194 static ssize_t enable_show(struct device *dev, struct device_attribute *attr,
195 char *buf)
196 {
197 struct pci_dev *pdev;
198
199 pdev = to_pci_dev(dev);
200 return sprintf(buf, "%u\n", atomic_read(&pdev->enable_cnt));
201 }
202 static DEVICE_ATTR_RW(enable);
203
204 #ifdef CONFIG_NUMA
205 static ssize_t numa_node_store(struct device *dev,
206 struct device_attribute *attr, const char *buf,
207 size_t count)
208 {
209 struct pci_dev *pdev = to_pci_dev(dev);
210 int node, ret;
211
212 if (!capable(CAP_SYS_ADMIN))
213 return -EPERM;
214
215 ret = kstrtoint(buf, 0, &node);
216 if (ret)
217 return ret;
218
219 if (node >= MAX_NUMNODES || !node_online(node))
220 return -EINVAL;
221
222 add_taint(TAINT_FIRMWARE_WORKAROUND, LOCKDEP_STILL_OK);
223 dev_alert(&pdev->dev, FW_BUG "Overriding NUMA node to %d. Contact your vendor for updates.",
224 node);
225
226 dev->numa_node = node;
227 return count;
228 }
229
230 static ssize_t numa_node_show(struct device *dev, struct device_attribute *attr,
231 char *buf)
232 {
233 return sprintf(buf, "%d\n", dev->numa_node);
234 }
235 static DEVICE_ATTR_RW(numa_node);
236 #endif
237
238 static ssize_t dma_mask_bits_show(struct device *dev,
239 struct device_attribute *attr, char *buf)
240 {
241 struct pci_dev *pdev = to_pci_dev(dev);
242
243 return sprintf(buf, "%d\n", fls64(pdev->dma_mask));
244 }
245 static DEVICE_ATTR_RO(dma_mask_bits);
246
247 static ssize_t consistent_dma_mask_bits_show(struct device *dev,
248 struct device_attribute *attr,
249 char *buf)
250 {
251 return sprintf(buf, "%d\n", fls64(dev->coherent_dma_mask));
252 }
253 static DEVICE_ATTR_RO(consistent_dma_mask_bits);
254
255 static ssize_t msi_bus_show(struct device *dev, struct device_attribute *attr,
256 char *buf)
257 {
258 struct pci_dev *pdev = to_pci_dev(dev);
259 struct pci_bus *subordinate = pdev->subordinate;
260
261 return sprintf(buf, "%u\n", subordinate ?
262 !(subordinate->bus_flags & PCI_BUS_FLAGS_NO_MSI)
263 : !pdev->no_msi);
264 }
265
266 static ssize_t msi_bus_store(struct device *dev, struct device_attribute *attr,
267 const char *buf, size_t count)
268 {
269 struct pci_dev *pdev = to_pci_dev(dev);
270 struct pci_bus *subordinate = pdev->subordinate;
271 unsigned long val;
272
273 if (kstrtoul(buf, 0, &val) < 0)
274 return -EINVAL;
275
276 if (!capable(CAP_SYS_ADMIN))
277 return -EPERM;
278
279 /*
280 * "no_msi" and "bus_flags" only affect what happens when a driver
281 * requests MSI or MSI-X. They don't affect any drivers that have
282 * already requested MSI or MSI-X.
283 */
284 if (!subordinate) {
285 pdev->no_msi = !val;
286 dev_info(&pdev->dev, "MSI/MSI-X %s for future drivers\n",
287 val ? "allowed" : "disallowed");
288 return count;
289 }
290
291 if (val)
292 subordinate->bus_flags &= ~PCI_BUS_FLAGS_NO_MSI;
293 else
294 subordinate->bus_flags |= PCI_BUS_FLAGS_NO_MSI;
295
296 dev_info(&subordinate->dev, "MSI/MSI-X %s for future drivers of devices on this bus\n",
297 val ? "allowed" : "disallowed");
298 return count;
299 }
300 static DEVICE_ATTR_RW(msi_bus);
301
302 static ssize_t bus_rescan_store(struct bus_type *bus, const char *buf,
303 size_t count)
304 {
305 unsigned long val;
306 struct pci_bus *b = NULL;
307
308 if (kstrtoul(buf, 0, &val) < 0)
309 return -EINVAL;
310
311 if (val) {
312 pci_lock_rescan_remove();
313 while ((b = pci_find_next_bus(b)) != NULL)
314 pci_rescan_bus(b);
315 pci_unlock_rescan_remove();
316 }
317 return count;
318 }
319 static BUS_ATTR(rescan, (S_IWUSR|S_IWGRP), NULL, bus_rescan_store);
320
321 static struct attribute *pci_bus_attrs[] = {
322 &bus_attr_rescan.attr,
323 NULL,
324 };
325
326 static const struct attribute_group pci_bus_group = {
327 .attrs = pci_bus_attrs,
328 };
329
330 const struct attribute_group *pci_bus_groups[] = {
331 &pci_bus_group,
332 NULL,
333 };
334
335 static ssize_t dev_rescan_store(struct device *dev,
336 struct device_attribute *attr, const char *buf,
337 size_t count)
338 {
339 unsigned long val;
340 struct pci_dev *pdev = to_pci_dev(dev);
341
342 if (kstrtoul(buf, 0, &val) < 0)
343 return -EINVAL;
344
345 if (val) {
346 pci_lock_rescan_remove();
347 pci_rescan_bus(pdev->bus);
348 pci_unlock_rescan_remove();
349 }
350 return count;
351 }
352 static struct device_attribute dev_rescan_attr = __ATTR(rescan,
353 (S_IWUSR|S_IWGRP),
354 NULL, dev_rescan_store);
355
356 static ssize_t remove_store(struct device *dev, struct device_attribute *attr,
357 const char *buf, size_t count)
358 {
359 unsigned long val;
360
361 if (kstrtoul(buf, 0, &val) < 0)
362 return -EINVAL;
363
364 if (val && device_remove_file_self(dev, attr))
365 pci_stop_and_remove_bus_device_locked(to_pci_dev(dev));
366 return count;
367 }
368 static struct device_attribute dev_remove_attr = __ATTR(remove,
369 (S_IWUSR|S_IWGRP),
370 NULL, remove_store);
371
372 static ssize_t dev_bus_rescan_store(struct device *dev,
373 struct device_attribute *attr,
374 const char *buf, size_t count)
375 {
376 unsigned long val;
377 struct pci_bus *bus = to_pci_bus(dev);
378
379 if (kstrtoul(buf, 0, &val) < 0)
380 return -EINVAL;
381
382 if (val) {
383 pci_lock_rescan_remove();
384 if (!pci_is_root_bus(bus) && list_empty(&bus->devices))
385 pci_rescan_bus_bridge_resize(bus->self);
386 else
387 pci_rescan_bus(bus);
388 pci_unlock_rescan_remove();
389 }
390 return count;
391 }
392 static DEVICE_ATTR(rescan, (S_IWUSR|S_IWGRP), NULL, dev_bus_rescan_store);
393
394 #if defined(CONFIG_PM) && defined(CONFIG_ACPI)
395 static ssize_t d3cold_allowed_store(struct device *dev,
396 struct device_attribute *attr,
397 const char *buf, size_t count)
398 {
399 struct pci_dev *pdev = to_pci_dev(dev);
400 unsigned long val;
401
402 if (kstrtoul(buf, 0, &val) < 0)
403 return -EINVAL;
404
405 pdev->d3cold_allowed = !!val;
406 pm_runtime_resume(dev);
407
408 return count;
409 }
410
411 static ssize_t d3cold_allowed_show(struct device *dev,
412 struct device_attribute *attr, char *buf)
413 {
414 struct pci_dev *pdev = to_pci_dev(dev);
415 return sprintf(buf, "%u\n", pdev->d3cold_allowed);
416 }
417 static DEVICE_ATTR_RW(d3cold_allowed);
418 #endif
419
420 #ifdef CONFIG_OF
421 static ssize_t devspec_show(struct device *dev,
422 struct device_attribute *attr, char *buf)
423 {
424 struct pci_dev *pdev = to_pci_dev(dev);
425 struct device_node *np = pci_device_to_OF_node(pdev);
426
427 if (np == NULL || np->full_name == NULL)
428 return 0;
429 return sprintf(buf, "%s", np->full_name);
430 }
431 static DEVICE_ATTR_RO(devspec);
432 #endif
433
434 #ifdef CONFIG_PCI_IOV
435 static ssize_t sriov_totalvfs_show(struct device *dev,
436 struct device_attribute *attr,
437 char *buf)
438 {
439 struct pci_dev *pdev = to_pci_dev(dev);
440
441 return sprintf(buf, "%u\n", pci_sriov_get_totalvfs(pdev));
442 }
443
444
445 static ssize_t sriov_numvfs_show(struct device *dev,
446 struct device_attribute *attr,
447 char *buf)
448 {
449 struct pci_dev *pdev = to_pci_dev(dev);
450
451 return sprintf(buf, "%u\n", pdev->sriov->num_VFs);
452 }
453
454 /*
455 * num_vfs > 0; number of VFs to enable
456 * num_vfs = 0; disable all VFs
457 *
458 * Note: SRIOV spec doesn't allow partial VF
459 * disable, so it's all or none.
460 */
461 static ssize_t sriov_numvfs_store(struct device *dev,
462 struct device_attribute *attr,
463 const char *buf, size_t count)
464 {
465 struct pci_dev *pdev = to_pci_dev(dev);
466 int ret;
467 u16 num_vfs;
468
469 ret = kstrtou16(buf, 0, &num_vfs);
470 if (ret < 0)
471 return ret;
472
473 if (num_vfs > pci_sriov_get_totalvfs(pdev))
474 return -ERANGE;
475
476 if (num_vfs == pdev->sriov->num_VFs)
477 return count; /* no change */
478
479 /* is PF driver loaded w/callback */
480 if (!pdev->driver || !pdev->driver->sriov_configure) {
481 dev_info(&pdev->dev, "Driver doesn't support SRIOV configuration via sysfs\n");
482 return -ENOSYS;
483 }
484
485 if (num_vfs == 0) {
486 /* disable VFs */
487 ret = pdev->driver->sriov_configure(pdev, 0);
488 if (ret < 0)
489 return ret;
490 return count;
491 }
492
493 /* enable VFs */
494 if (pdev->sriov->num_VFs) {
495 dev_warn(&pdev->dev, "%d VFs already enabled. Disable before enabling %d VFs\n",
496 pdev->sriov->num_VFs, num_vfs);
497 return -EBUSY;
498 }
499
500 ret = pdev->driver->sriov_configure(pdev, num_vfs);
501 if (ret < 0)
502 return ret;
503
504 if (ret != num_vfs)
505 dev_warn(&pdev->dev, "%d VFs requested; only %d enabled\n",
506 num_vfs, ret);
507
508 return count;
509 }
510
511 static struct device_attribute sriov_totalvfs_attr = __ATTR_RO(sriov_totalvfs);
512 static struct device_attribute sriov_numvfs_attr =
513 __ATTR(sriov_numvfs, (S_IRUGO|S_IWUSR|S_IWGRP),
514 sriov_numvfs_show, sriov_numvfs_store);
515 #endif /* CONFIG_PCI_IOV */
516
517 static ssize_t driver_override_store(struct device *dev,
518 struct device_attribute *attr,
519 const char *buf, size_t count)
520 {
521 struct pci_dev *pdev = to_pci_dev(dev);
522 char *driver_override, *old = pdev->driver_override, *cp;
523
524 /* We need to keep extra room for a newline */
525 if (count >= (PAGE_SIZE - 1))
526 return -EINVAL;
527
528 driver_override = kstrndup(buf, count, GFP_KERNEL);
529 if (!driver_override)
530 return -ENOMEM;
531
532 cp = strchr(driver_override, '\n');
533 if (cp)
534 *cp = '\0';
535
536 if (strlen(driver_override)) {
537 pdev->driver_override = driver_override;
538 } else {
539 kfree(driver_override);
540 pdev->driver_override = NULL;
541 }
542
543 kfree(old);
544
545 return count;
546 }
547
548 static ssize_t driver_override_show(struct device *dev,
549 struct device_attribute *attr, char *buf)
550 {
551 struct pci_dev *pdev = to_pci_dev(dev);
552
553 return snprintf(buf, PAGE_SIZE, "%s\n", pdev->driver_override);
554 }
555 static DEVICE_ATTR_RW(driver_override);
556
557 static struct attribute *pci_dev_attrs[] = {
558 &dev_attr_resource.attr,
559 &dev_attr_vendor.attr,
560 &dev_attr_device.attr,
561 &dev_attr_subsystem_vendor.attr,
562 &dev_attr_subsystem_device.attr,
563 &dev_attr_class.attr,
564 &dev_attr_irq.attr,
565 &dev_attr_local_cpus.attr,
566 &dev_attr_local_cpulist.attr,
567 &dev_attr_modalias.attr,
568 #ifdef CONFIG_NUMA
569 &dev_attr_numa_node.attr,
570 #endif
571 &dev_attr_dma_mask_bits.attr,
572 &dev_attr_consistent_dma_mask_bits.attr,
573 &dev_attr_enable.attr,
574 &dev_attr_broken_parity_status.attr,
575 &dev_attr_msi_bus.attr,
576 #if defined(CONFIG_PM) && defined(CONFIG_ACPI)
577 &dev_attr_d3cold_allowed.attr,
578 #endif
579 #ifdef CONFIG_OF
580 &dev_attr_devspec.attr,
581 #endif
582 &dev_attr_driver_override.attr,
583 NULL,
584 };
585
586 static const struct attribute_group pci_dev_group = {
587 .attrs = pci_dev_attrs,
588 };
589
590 const struct attribute_group *pci_dev_groups[] = {
591 &pci_dev_group,
592 NULL,
593 };
594
595 static struct attribute *pcibus_attrs[] = {
596 &dev_attr_rescan.attr,
597 &dev_attr_cpuaffinity.attr,
598 &dev_attr_cpulistaffinity.attr,
599 NULL,
600 };
601
602 static const struct attribute_group pcibus_group = {
603 .attrs = pcibus_attrs,
604 };
605
606 const struct attribute_group *pcibus_groups[] = {
607 &pcibus_group,
608 NULL,
609 };
610
611 static ssize_t boot_vga_show(struct device *dev, struct device_attribute *attr,
612 char *buf)
613 {
614 struct pci_dev *pdev = to_pci_dev(dev);
615 struct pci_dev *vga_dev = vga_default_device();
616
617 if (vga_dev)
618 return sprintf(buf, "%u\n", (pdev == vga_dev));
619
620 return sprintf(buf, "%u\n",
621 !!(pdev->resource[PCI_ROM_RESOURCE].flags &
622 IORESOURCE_ROM_SHADOW));
623 }
624 static struct device_attribute vga_attr = __ATTR_RO(boot_vga);
625
626 static ssize_t pci_read_config(struct file *filp, struct kobject *kobj,
627 struct bin_attribute *bin_attr, char *buf,
628 loff_t off, size_t count)
629 {
630 struct pci_dev *dev = to_pci_dev(kobj_to_dev(kobj));
631 unsigned int size = 64;
632 loff_t init_off = off;
633 u8 *data = (u8 *) buf;
634
635 /* Several chips lock up trying to read undefined config space */
636 if (security_capable(filp->f_cred, &init_user_ns, CAP_SYS_ADMIN) == 0)
637 size = dev->cfg_size;
638 else if (dev->hdr_type == PCI_HEADER_TYPE_CARDBUS)
639 size = 128;
640
641 if (off > size)
642 return 0;
643 if (off + count > size) {
644 size -= off;
645 count = size;
646 } else {
647 size = count;
648 }
649
650 pci_config_pm_runtime_get(dev);
651
652 if ((off & 1) && size) {
653 u8 val;
654 pci_user_read_config_byte(dev, off, &val);
655 data[off - init_off] = val;
656 off++;
657 size--;
658 }
659
660 if ((off & 3) && size > 2) {
661 u16 val;
662 pci_user_read_config_word(dev, off, &val);
663 data[off - init_off] = val & 0xff;
664 data[off - init_off + 1] = (val >> 8) & 0xff;
665 off += 2;
666 size -= 2;
667 }
668
669 while (size > 3) {
670 u32 val;
671 pci_user_read_config_dword(dev, off, &val);
672 data[off - init_off] = val & 0xff;
673 data[off - init_off + 1] = (val >> 8) & 0xff;
674 data[off - init_off + 2] = (val >> 16) & 0xff;
675 data[off - init_off + 3] = (val >> 24) & 0xff;
676 off += 4;
677 size -= 4;
678 }
679
680 if (size >= 2) {
681 u16 val;
682 pci_user_read_config_word(dev, off, &val);
683 data[off - init_off] = val & 0xff;
684 data[off - init_off + 1] = (val >> 8) & 0xff;
685 off += 2;
686 size -= 2;
687 }
688
689 if (size > 0) {
690 u8 val;
691 pci_user_read_config_byte(dev, off, &val);
692 data[off - init_off] = val;
693 off++;
694 --size;
695 }
696
697 pci_config_pm_runtime_put(dev);
698
699 return count;
700 }
701
702 static ssize_t pci_write_config(struct file *filp, struct kobject *kobj,
703 struct bin_attribute *bin_attr, char *buf,
704 loff_t off, size_t count)
705 {
706 struct pci_dev *dev = to_pci_dev(kobj_to_dev(kobj));
707 unsigned int size = count;
708 loff_t init_off = off;
709 u8 *data = (u8 *) buf;
710
711 if (off > dev->cfg_size)
712 return 0;
713 if (off + count > dev->cfg_size) {
714 size = dev->cfg_size - off;
715 count = size;
716 }
717
718 pci_config_pm_runtime_get(dev);
719
720 if ((off & 1) && size) {
721 pci_user_write_config_byte(dev, off, data[off - init_off]);
722 off++;
723 size--;
724 }
725
726 if ((off & 3) && size > 2) {
727 u16 val = data[off - init_off];
728 val |= (u16) data[off - init_off + 1] << 8;
729 pci_user_write_config_word(dev, off, val);
730 off += 2;
731 size -= 2;
732 }
733
734 while (size > 3) {
735 u32 val = data[off - init_off];
736 val |= (u32) data[off - init_off + 1] << 8;
737 val |= (u32) data[off - init_off + 2] << 16;
738 val |= (u32) data[off - init_off + 3] << 24;
739 pci_user_write_config_dword(dev, off, val);
740 off += 4;
741 size -= 4;
742 }
743
744 if (size >= 2) {
745 u16 val = data[off - init_off];
746 val |= (u16) data[off - init_off + 1] << 8;
747 pci_user_write_config_word(dev, off, val);
748 off += 2;
749 size -= 2;
750 }
751
752 if (size) {
753 pci_user_write_config_byte(dev, off, data[off - init_off]);
754 off++;
755 --size;
756 }
757
758 pci_config_pm_runtime_put(dev);
759
760 return count;
761 }
762
763 static ssize_t read_vpd_attr(struct file *filp, struct kobject *kobj,
764 struct bin_attribute *bin_attr, char *buf,
765 loff_t off, size_t count)
766 {
767 struct pci_dev *dev = to_pci_dev(kobj_to_dev(kobj));
768
769 if (off > bin_attr->size)
770 count = 0;
771 else if (count > bin_attr->size - off)
772 count = bin_attr->size - off;
773
774 return pci_read_vpd(dev, off, count, buf);
775 }
776
777 static ssize_t write_vpd_attr(struct file *filp, struct kobject *kobj,
778 struct bin_attribute *bin_attr, char *buf,
779 loff_t off, size_t count)
780 {
781 struct pci_dev *dev = to_pci_dev(kobj_to_dev(kobj));
782
783 if (off > bin_attr->size)
784 count = 0;
785 else if (count > bin_attr->size - off)
786 count = bin_attr->size - off;
787
788 return pci_write_vpd(dev, off, count, buf);
789 }
790
791 #ifdef HAVE_PCI_LEGACY
792 /**
793 * pci_read_legacy_io - read byte(s) from legacy I/O port space
794 * @filp: open sysfs file
795 * @kobj: kobject corresponding to file to read from
796 * @bin_attr: struct bin_attribute for this file
797 * @buf: buffer to store results
798 * @off: offset into legacy I/O port space
799 * @count: number of bytes to read
800 *
801 * Reads 1, 2, or 4 bytes from legacy I/O port space using an arch specific
802 * callback routine (pci_legacy_read).
803 */
804 static ssize_t pci_read_legacy_io(struct file *filp, struct kobject *kobj,
805 struct bin_attribute *bin_attr, char *buf,
806 loff_t off, size_t count)
807 {
808 struct pci_bus *bus = to_pci_bus(kobj_to_dev(kobj));
809
810 /* Only support 1, 2 or 4 byte accesses */
811 if (count != 1 && count != 2 && count != 4)
812 return -EINVAL;
813
814 return pci_legacy_read(bus, off, (u32 *)buf, count);
815 }
816
817 /**
818 * pci_write_legacy_io - write byte(s) to legacy I/O port space
819 * @filp: open sysfs file
820 * @kobj: kobject corresponding to file to read from
821 * @bin_attr: struct bin_attribute for this file
822 * @buf: buffer containing value to be written
823 * @off: offset into legacy I/O port space
824 * @count: number of bytes to write
825 *
826 * Writes 1, 2, or 4 bytes from legacy I/O port space using an arch specific
827 * callback routine (pci_legacy_write).
828 */
829 static ssize_t pci_write_legacy_io(struct file *filp, struct kobject *kobj,
830 struct bin_attribute *bin_attr, char *buf,
831 loff_t off, size_t count)
832 {
833 struct pci_bus *bus = to_pci_bus(kobj_to_dev(kobj));
834
835 /* Only support 1, 2 or 4 byte accesses */
836 if (count != 1 && count != 2 && count != 4)
837 return -EINVAL;
838
839 return pci_legacy_write(bus, off, *(u32 *)buf, count);
840 }
841
842 /**
843 * pci_mmap_legacy_mem - map legacy PCI memory into user memory space
844 * @filp: open sysfs file
845 * @kobj: kobject corresponding to device to be mapped
846 * @attr: struct bin_attribute for this file
847 * @vma: struct vm_area_struct passed to mmap
848 *
849 * Uses an arch specific callback, pci_mmap_legacy_mem_page_range, to mmap
850 * legacy memory space (first meg of bus space) into application virtual
851 * memory space.
852 */
853 static int pci_mmap_legacy_mem(struct file *filp, struct kobject *kobj,
854 struct bin_attribute *attr,
855 struct vm_area_struct *vma)
856 {
857 struct pci_bus *bus = to_pci_bus(kobj_to_dev(kobj));
858
859 return pci_mmap_legacy_page_range(bus, vma, pci_mmap_mem);
860 }
861
862 /**
863 * pci_mmap_legacy_io - map legacy PCI IO into user memory space
864 * @filp: open sysfs file
865 * @kobj: kobject corresponding to device to be mapped
866 * @attr: struct bin_attribute for this file
867 * @vma: struct vm_area_struct passed to mmap
868 *
869 * Uses an arch specific callback, pci_mmap_legacy_io_page_range, to mmap
870 * legacy IO space (first meg of bus space) into application virtual
871 * memory space. Returns -ENOSYS if the operation isn't supported
872 */
873 static int pci_mmap_legacy_io(struct file *filp, struct kobject *kobj,
874 struct bin_attribute *attr,
875 struct vm_area_struct *vma)
876 {
877 struct pci_bus *bus = to_pci_bus(kobj_to_dev(kobj));
878
879 return pci_mmap_legacy_page_range(bus, vma, pci_mmap_io);
880 }
881
882 /**
883 * pci_adjust_legacy_attr - adjustment of legacy file attributes
884 * @b: bus to create files under
885 * @mmap_type: I/O port or memory
886 *
887 * Stub implementation. Can be overridden by arch if necessary.
888 */
889 void __weak pci_adjust_legacy_attr(struct pci_bus *b,
890 enum pci_mmap_state mmap_type)
891 {
892 }
893
894 /**
895 * pci_create_legacy_files - create legacy I/O port and memory files
896 * @b: bus to create files under
897 *
898 * Some platforms allow access to legacy I/O port and ISA memory space on
899 * a per-bus basis. This routine creates the files and ties them into
900 * their associated read, write and mmap files from pci-sysfs.c
901 *
902 * On error unwind, but don't propagate the error to the caller
903 * as it is ok to set up the PCI bus without these files.
904 */
905 void pci_create_legacy_files(struct pci_bus *b)
906 {
907 int error;
908
909 b->legacy_io = kzalloc(sizeof(struct bin_attribute) * 2,
910 GFP_ATOMIC);
911 if (!b->legacy_io)
912 goto kzalloc_err;
913
914 sysfs_bin_attr_init(b->legacy_io);
915 b->legacy_io->attr.name = "legacy_io";
916 b->legacy_io->size = 0xffff;
917 b->legacy_io->attr.mode = S_IRUSR | S_IWUSR;
918 b->legacy_io->read = pci_read_legacy_io;
919 b->legacy_io->write = pci_write_legacy_io;
920 b->legacy_io->mmap = pci_mmap_legacy_io;
921 pci_adjust_legacy_attr(b, pci_mmap_io);
922 error = device_create_bin_file(&b->dev, b->legacy_io);
923 if (error)
924 goto legacy_io_err;
925
926 /* Allocated above after the legacy_io struct */
927 b->legacy_mem = b->legacy_io + 1;
928 sysfs_bin_attr_init(b->legacy_mem);
929 b->legacy_mem->attr.name = "legacy_mem";
930 b->legacy_mem->size = 1024*1024;
931 b->legacy_mem->attr.mode = S_IRUSR | S_IWUSR;
932 b->legacy_mem->mmap = pci_mmap_legacy_mem;
933 pci_adjust_legacy_attr(b, pci_mmap_mem);
934 error = device_create_bin_file(&b->dev, b->legacy_mem);
935 if (error)
936 goto legacy_mem_err;
937
938 return;
939
940 legacy_mem_err:
941 device_remove_bin_file(&b->dev, b->legacy_io);
942 legacy_io_err:
943 kfree(b->legacy_io);
944 b->legacy_io = NULL;
945 kzalloc_err:
946 printk(KERN_WARNING "pci: warning: could not create legacy I/O port and ISA memory resources to sysfs\n");
947 return;
948 }
949
950 void pci_remove_legacy_files(struct pci_bus *b)
951 {
952 if (b->legacy_io) {
953 device_remove_bin_file(&b->dev, b->legacy_io);
954 device_remove_bin_file(&b->dev, b->legacy_mem);
955 kfree(b->legacy_io); /* both are allocated here */
956 }
957 }
958 #endif /* HAVE_PCI_LEGACY */
959
960 #ifdef HAVE_PCI_MMAP
961
962 int pci_mmap_fits(struct pci_dev *pdev, int resno, struct vm_area_struct *vma,
963 enum pci_mmap_api mmap_api)
964 {
965 unsigned long nr, start, size, pci_start;
966
967 if (pci_resource_len(pdev, resno) == 0)
968 return 0;
969 nr = vma_pages(vma);
970 start = vma->vm_pgoff;
971 size = ((pci_resource_len(pdev, resno) - 1) >> PAGE_SHIFT) + 1;
972 pci_start = (mmap_api == PCI_MMAP_PROCFS) ?
973 pci_resource_start(pdev, resno) >> PAGE_SHIFT : 0;
974 if (start >= pci_start && start < pci_start + size &&
975 start + nr <= pci_start + size)
976 return 1;
977 return 0;
978 }
979
980 /**
981 * pci_mmap_resource - map a PCI resource into user memory space
982 * @kobj: kobject for mapping
983 * @attr: struct bin_attribute for the file being mapped
984 * @vma: struct vm_area_struct passed into the mmap
985 * @write_combine: 1 for write_combine mapping
986 *
987 * Use the regular PCI mapping routines to map a PCI resource into userspace.
988 */
989 static int pci_mmap_resource(struct kobject *kobj, struct bin_attribute *attr,
990 struct vm_area_struct *vma, int write_combine)
991 {
992 struct pci_dev *pdev = to_pci_dev(kobj_to_dev(kobj));
993 struct resource *res = attr->private;
994 enum pci_mmap_state mmap_type;
995 resource_size_t start, end;
996 int i;
997
998 for (i = 0; i < PCI_ROM_RESOURCE; i++)
999 if (res == &pdev->resource[i])
1000 break;
1001 if (i >= PCI_ROM_RESOURCE)
1002 return -ENODEV;
1003
1004 if (!pci_mmap_fits(pdev, i, vma, PCI_MMAP_SYSFS)) {
1005 WARN(1, "process \"%s\" tried to map 0x%08lx bytes at page 0x%08lx on %s BAR %d (start 0x%16Lx, size 0x%16Lx)\n",
1006 current->comm, vma->vm_end-vma->vm_start, vma->vm_pgoff,
1007 pci_name(pdev), i,
1008 (u64)pci_resource_start(pdev, i),
1009 (u64)pci_resource_len(pdev, i));
1010 return -EINVAL;
1011 }
1012
1013 /* pci_mmap_page_range() expects the same kind of entry as coming
1014 * from /proc/bus/pci/ which is a "user visible" value. If this is
1015 * different from the resource itself, arch will do necessary fixup.
1016 */
1017 pci_resource_to_user(pdev, i, res, &start, &end);
1018 vma->vm_pgoff += start >> PAGE_SHIFT;
1019 mmap_type = res->flags & IORESOURCE_MEM ? pci_mmap_mem : pci_mmap_io;
1020
1021 if (res->flags & IORESOURCE_MEM && iomem_is_exclusive(start))
1022 return -EINVAL;
1023
1024 return pci_mmap_page_range(pdev, vma, mmap_type, write_combine);
1025 }
1026
1027 static int pci_mmap_resource_uc(struct file *filp, struct kobject *kobj,
1028 struct bin_attribute *attr,
1029 struct vm_area_struct *vma)
1030 {
1031 return pci_mmap_resource(kobj, attr, vma, 0);
1032 }
1033
1034 static int pci_mmap_resource_wc(struct file *filp, struct kobject *kobj,
1035 struct bin_attribute *attr,
1036 struct vm_area_struct *vma)
1037 {
1038 return pci_mmap_resource(kobj, attr, vma, 1);
1039 }
1040
1041 static ssize_t pci_resource_io(struct file *filp, struct kobject *kobj,
1042 struct bin_attribute *attr, char *buf,
1043 loff_t off, size_t count, bool write)
1044 {
1045 struct pci_dev *pdev = to_pci_dev(kobj_to_dev(kobj));
1046 struct resource *res = attr->private;
1047 unsigned long port = off;
1048 int i;
1049
1050 for (i = 0; i < PCI_ROM_RESOURCE; i++)
1051 if (res == &pdev->resource[i])
1052 break;
1053 if (i >= PCI_ROM_RESOURCE)
1054 return -ENODEV;
1055
1056 port += pci_resource_start(pdev, i);
1057
1058 if (port > pci_resource_end(pdev, i))
1059 return 0;
1060
1061 if (port + count - 1 > pci_resource_end(pdev, i))
1062 return -EINVAL;
1063
1064 switch (count) {
1065 case 1:
1066 if (write)
1067 outb(*(u8 *)buf, port);
1068 else
1069 *(u8 *)buf = inb(port);
1070 return 1;
1071 case 2:
1072 if (write)
1073 outw(*(u16 *)buf, port);
1074 else
1075 *(u16 *)buf = inw(port);
1076 return 2;
1077 case 4:
1078 if (write)
1079 outl(*(u32 *)buf, port);
1080 else
1081 *(u32 *)buf = inl(port);
1082 return 4;
1083 }
1084 return -EINVAL;
1085 }
1086
1087 static ssize_t pci_read_resource_io(struct file *filp, struct kobject *kobj,
1088 struct bin_attribute *attr, char *buf,
1089 loff_t off, size_t count)
1090 {
1091 return pci_resource_io(filp, kobj, attr, buf, off, count, false);
1092 }
1093
1094 static ssize_t pci_write_resource_io(struct file *filp, struct kobject *kobj,
1095 struct bin_attribute *attr, char *buf,
1096 loff_t off, size_t count)
1097 {
1098 return pci_resource_io(filp, kobj, attr, buf, off, count, true);
1099 }
1100
1101 /**
1102 * pci_remove_resource_files - cleanup resource files
1103 * @pdev: dev to cleanup
1104 *
1105 * If we created resource files for @pdev, remove them from sysfs and
1106 * free their resources.
1107 */
1108 static void pci_remove_resource_files(struct pci_dev *pdev)
1109 {
1110 int i;
1111
1112 for (i = 0; i < PCI_ROM_RESOURCE; i++) {
1113 struct bin_attribute *res_attr;
1114
1115 res_attr = pdev->res_attr[i];
1116 if (res_attr) {
1117 sysfs_remove_bin_file(&pdev->dev.kobj, res_attr);
1118 kfree(res_attr);
1119 }
1120
1121 res_attr = pdev->res_attr_wc[i];
1122 if (res_attr) {
1123 sysfs_remove_bin_file(&pdev->dev.kobj, res_attr);
1124 kfree(res_attr);
1125 }
1126 }
1127 }
1128
1129 static int pci_create_attr(struct pci_dev *pdev, int num, int write_combine)
1130 {
1131 /* allocate attribute structure, piggyback attribute name */
1132 int name_len = write_combine ? 13 : 10;
1133 struct bin_attribute *res_attr;
1134 int retval;
1135
1136 res_attr = kzalloc(sizeof(*res_attr) + name_len, GFP_ATOMIC);
1137 if (res_attr) {
1138 char *res_attr_name = (char *)(res_attr + 1);
1139
1140 sysfs_bin_attr_init(res_attr);
1141 if (write_combine) {
1142 pdev->res_attr_wc[num] = res_attr;
1143 sprintf(res_attr_name, "resource%d_wc", num);
1144 res_attr->mmap = pci_mmap_resource_wc;
1145 } else {
1146 pdev->res_attr[num] = res_attr;
1147 sprintf(res_attr_name, "resource%d", num);
1148 res_attr->mmap = pci_mmap_resource_uc;
1149 }
1150 if (pci_resource_flags(pdev, num) & IORESOURCE_IO) {
1151 res_attr->read = pci_read_resource_io;
1152 res_attr->write = pci_write_resource_io;
1153 }
1154 res_attr->attr.name = res_attr_name;
1155 res_attr->attr.mode = S_IRUSR | S_IWUSR;
1156 res_attr->size = pci_resource_len(pdev, num);
1157 res_attr->private = &pdev->resource[num];
1158 retval = sysfs_create_bin_file(&pdev->dev.kobj, res_attr);
1159 } else
1160 retval = -ENOMEM;
1161
1162 return retval;
1163 }
1164
1165 /**
1166 * pci_create_resource_files - create resource files in sysfs for @dev
1167 * @pdev: dev in question
1168 *
1169 * Walk the resources in @pdev creating files for each resource available.
1170 */
1171 static int pci_create_resource_files(struct pci_dev *pdev)
1172 {
1173 int i;
1174 int retval;
1175
1176 /* Expose the PCI resources from this device as files */
1177 for (i = 0; i < PCI_ROM_RESOURCE; i++) {
1178
1179 /* skip empty resources */
1180 if (!pci_resource_len(pdev, i))
1181 continue;
1182
1183 retval = pci_create_attr(pdev, i, 0);
1184 /* for prefetchable resources, create a WC mappable file */
1185 if (!retval && pdev->resource[i].flags & IORESOURCE_PREFETCH)
1186 retval = pci_create_attr(pdev, i, 1);
1187
1188 if (retval) {
1189 pci_remove_resource_files(pdev);
1190 return retval;
1191 }
1192 }
1193 return 0;
1194 }
1195 #else /* !HAVE_PCI_MMAP */
1196 int __weak pci_create_resource_files(struct pci_dev *dev) { return 0; }
1197 void __weak pci_remove_resource_files(struct pci_dev *dev) { return; }
1198 #endif /* HAVE_PCI_MMAP */
1199
1200 /**
1201 * pci_write_rom - used to enable access to the PCI ROM display
1202 * @filp: sysfs file
1203 * @kobj: kernel object handle
1204 * @bin_attr: struct bin_attribute for this file
1205 * @buf: user input
1206 * @off: file offset
1207 * @count: number of byte in input
1208 *
1209 * writing anything except 0 enables it
1210 */
1211 static ssize_t pci_write_rom(struct file *filp, struct kobject *kobj,
1212 struct bin_attribute *bin_attr, char *buf,
1213 loff_t off, size_t count)
1214 {
1215 struct pci_dev *pdev = to_pci_dev(kobj_to_dev(kobj));
1216
1217 if ((off == 0) && (*buf == '0') && (count == 2))
1218 pdev->rom_attr_enabled = 0;
1219 else
1220 pdev->rom_attr_enabled = 1;
1221
1222 return count;
1223 }
1224
1225 /**
1226 * pci_read_rom - read a PCI ROM
1227 * @filp: sysfs file
1228 * @kobj: kernel object handle
1229 * @bin_attr: struct bin_attribute for this file
1230 * @buf: where to put the data we read from the ROM
1231 * @off: file offset
1232 * @count: number of bytes to read
1233 *
1234 * Put @count bytes starting at @off into @buf from the ROM in the PCI
1235 * device corresponding to @kobj.
1236 */
1237 static ssize_t pci_read_rom(struct file *filp, struct kobject *kobj,
1238 struct bin_attribute *bin_attr, char *buf,
1239 loff_t off, size_t count)
1240 {
1241 struct pci_dev *pdev = to_pci_dev(kobj_to_dev(kobj));
1242 void __iomem *rom;
1243 size_t size;
1244
1245 if (!pdev->rom_attr_enabled)
1246 return -EINVAL;
1247
1248 rom = pci_map_rom(pdev, &size); /* size starts out as PCI window size */
1249 if (!rom || !size)
1250 return -EIO;
1251
1252 if (off >= size)
1253 count = 0;
1254 else {
1255 if (off + count > size)
1256 count = size - off;
1257
1258 memcpy_fromio(buf, rom + off, count);
1259 }
1260 pci_unmap_rom(pdev, rom);
1261
1262 return count;
1263 }
1264
1265 static struct bin_attribute pci_config_attr = {
1266 .attr = {
1267 .name = "config",
1268 .mode = S_IRUGO | S_IWUSR,
1269 },
1270 .size = PCI_CFG_SPACE_SIZE,
1271 .read = pci_read_config,
1272 .write = pci_write_config,
1273 };
1274
1275 static struct bin_attribute pcie_config_attr = {
1276 .attr = {
1277 .name = "config",
1278 .mode = S_IRUGO | S_IWUSR,
1279 },
1280 .size = PCI_CFG_SPACE_EXP_SIZE,
1281 .read = pci_read_config,
1282 .write = pci_write_config,
1283 };
1284
1285 static ssize_t reset_store(struct device *dev, struct device_attribute *attr,
1286 const char *buf, size_t count)
1287 {
1288 struct pci_dev *pdev = to_pci_dev(dev);
1289 unsigned long val;
1290 ssize_t result = kstrtoul(buf, 0, &val);
1291
1292 if (result < 0)
1293 return result;
1294
1295 if (val != 1)
1296 return -EINVAL;
1297
1298 result = pci_reset_function(pdev);
1299 if (result < 0)
1300 return result;
1301
1302 return count;
1303 }
1304
1305 static struct device_attribute reset_attr = __ATTR(reset, 0200, NULL, reset_store);
1306
1307 static int pci_create_capabilities_sysfs(struct pci_dev *dev)
1308 {
1309 int retval;
1310 struct bin_attribute *attr;
1311
1312 /* If the device has VPD, try to expose it in sysfs. */
1313 if (dev->vpd) {
1314 attr = kzalloc(sizeof(*attr), GFP_ATOMIC);
1315 if (!attr)
1316 return -ENOMEM;
1317
1318 sysfs_bin_attr_init(attr);
1319 attr->size = dev->vpd->len;
1320 attr->attr.name = "vpd";
1321 attr->attr.mode = S_IRUSR | S_IWUSR;
1322 attr->read = read_vpd_attr;
1323 attr->write = write_vpd_attr;
1324 retval = sysfs_create_bin_file(&dev->dev.kobj, attr);
1325 if (retval) {
1326 kfree(attr);
1327 return retval;
1328 }
1329 dev->vpd->attr = attr;
1330 }
1331
1332 /* Active State Power Management */
1333 pcie_aspm_create_sysfs_dev_files(dev);
1334
1335 if (!pci_probe_reset_function(dev)) {
1336 retval = device_create_file(&dev->dev, &reset_attr);
1337 if (retval)
1338 goto error;
1339 dev->reset_fn = 1;
1340 }
1341 return 0;
1342
1343 error:
1344 pcie_aspm_remove_sysfs_dev_files(dev);
1345 if (dev->vpd && dev->vpd->attr) {
1346 sysfs_remove_bin_file(&dev->dev.kobj, dev->vpd->attr);
1347 kfree(dev->vpd->attr);
1348 }
1349
1350 return retval;
1351 }
1352
1353 int __must_check pci_create_sysfs_dev_files(struct pci_dev *pdev)
1354 {
1355 int retval;
1356 int rom_size = 0;
1357 struct bin_attribute *attr;
1358
1359 if (!sysfs_initialized)
1360 return -EACCES;
1361
1362 if (pdev->cfg_size < PCI_CFG_SPACE_EXP_SIZE)
1363 retval = sysfs_create_bin_file(&pdev->dev.kobj, &pci_config_attr);
1364 else
1365 retval = sysfs_create_bin_file(&pdev->dev.kobj, &pcie_config_attr);
1366 if (retval)
1367 goto err;
1368
1369 retval = pci_create_resource_files(pdev);
1370 if (retval)
1371 goto err_config_file;
1372
1373 if (pci_resource_len(pdev, PCI_ROM_RESOURCE))
1374 rom_size = pci_resource_len(pdev, PCI_ROM_RESOURCE);
1375 else if (pdev->resource[PCI_ROM_RESOURCE].flags & IORESOURCE_ROM_SHADOW)
1376 rom_size = 0x20000;
1377
1378 /* If the device has a ROM, try to expose it in sysfs. */
1379 if (rom_size) {
1380 attr = kzalloc(sizeof(*attr), GFP_ATOMIC);
1381 if (!attr) {
1382 retval = -ENOMEM;
1383 goto err_resource_files;
1384 }
1385 sysfs_bin_attr_init(attr);
1386 attr->size = rom_size;
1387 attr->attr.name = "rom";
1388 attr->attr.mode = S_IRUSR | S_IWUSR;
1389 attr->read = pci_read_rom;
1390 attr->write = pci_write_rom;
1391 retval = sysfs_create_bin_file(&pdev->dev.kobj, attr);
1392 if (retval) {
1393 kfree(attr);
1394 goto err_resource_files;
1395 }
1396 pdev->rom_attr = attr;
1397 }
1398
1399 /* add sysfs entries for various capabilities */
1400 retval = pci_create_capabilities_sysfs(pdev);
1401 if (retval)
1402 goto err_rom_file;
1403
1404 pci_create_firmware_label_files(pdev);
1405
1406 return 0;
1407
1408 err_rom_file:
1409 if (rom_size) {
1410 sysfs_remove_bin_file(&pdev->dev.kobj, pdev->rom_attr);
1411 kfree(pdev->rom_attr);
1412 pdev->rom_attr = NULL;
1413 }
1414 err_resource_files:
1415 pci_remove_resource_files(pdev);
1416 err_config_file:
1417 if (pdev->cfg_size < PCI_CFG_SPACE_EXP_SIZE)
1418 sysfs_remove_bin_file(&pdev->dev.kobj, &pci_config_attr);
1419 else
1420 sysfs_remove_bin_file(&pdev->dev.kobj, &pcie_config_attr);
1421 err:
1422 return retval;
1423 }
1424
1425 static void pci_remove_capabilities_sysfs(struct pci_dev *dev)
1426 {
1427 if (dev->vpd && dev->vpd->attr) {
1428 sysfs_remove_bin_file(&dev->dev.kobj, dev->vpd->attr);
1429 kfree(dev->vpd->attr);
1430 }
1431
1432 pcie_aspm_remove_sysfs_dev_files(dev);
1433 if (dev->reset_fn) {
1434 device_remove_file(&dev->dev, &reset_attr);
1435 dev->reset_fn = 0;
1436 }
1437 }
1438
1439 /**
1440 * pci_remove_sysfs_dev_files - cleanup PCI specific sysfs files
1441 * @pdev: device whose entries we should free
1442 *
1443 * Cleanup when @pdev is removed from sysfs.
1444 */
1445 void pci_remove_sysfs_dev_files(struct pci_dev *pdev)
1446 {
1447 int rom_size = 0;
1448
1449 if (!sysfs_initialized)
1450 return;
1451
1452 pci_remove_capabilities_sysfs(pdev);
1453
1454 if (pdev->cfg_size < PCI_CFG_SPACE_EXP_SIZE)
1455 sysfs_remove_bin_file(&pdev->dev.kobj, &pci_config_attr);
1456 else
1457 sysfs_remove_bin_file(&pdev->dev.kobj, &pcie_config_attr);
1458
1459 pci_remove_resource_files(pdev);
1460
1461 if (pci_resource_len(pdev, PCI_ROM_RESOURCE))
1462 rom_size = pci_resource_len(pdev, PCI_ROM_RESOURCE);
1463 else if (pdev->resource[PCI_ROM_RESOURCE].flags & IORESOURCE_ROM_SHADOW)
1464 rom_size = 0x20000;
1465
1466 if (rom_size && pdev->rom_attr) {
1467 sysfs_remove_bin_file(&pdev->dev.kobj, pdev->rom_attr);
1468 kfree(pdev->rom_attr);
1469 }
1470
1471 pci_remove_firmware_label_files(pdev);
1472
1473 }
1474
1475 static int __init pci_sysfs_init(void)
1476 {
1477 struct pci_dev *pdev = NULL;
1478 int retval;
1479
1480 sysfs_initialized = 1;
1481 for_each_pci_dev(pdev) {
1482 retval = pci_create_sysfs_dev_files(pdev);
1483 if (retval) {
1484 pci_dev_put(pdev);
1485 return retval;
1486 }
1487 }
1488
1489 return 0;
1490 }
1491 late_initcall(pci_sysfs_init);
1492
1493 static struct attribute *pci_dev_dev_attrs[] = {
1494 &vga_attr.attr,
1495 NULL,
1496 };
1497
1498 static umode_t pci_dev_attrs_are_visible(struct kobject *kobj,
1499 struct attribute *a, int n)
1500 {
1501 struct device *dev = kobj_to_dev(kobj);
1502 struct pci_dev *pdev = to_pci_dev(dev);
1503
1504 if (a == &vga_attr.attr)
1505 if ((pdev->class >> 8) != PCI_CLASS_DISPLAY_VGA)
1506 return 0;
1507
1508 return a->mode;
1509 }
1510
1511 static struct attribute *pci_dev_hp_attrs[] = {
1512 &dev_remove_attr.attr,
1513 &dev_rescan_attr.attr,
1514 NULL,
1515 };
1516
1517 static umode_t pci_dev_hp_attrs_are_visible(struct kobject *kobj,
1518 struct attribute *a, int n)
1519 {
1520 struct device *dev = kobj_to_dev(kobj);
1521 struct pci_dev *pdev = to_pci_dev(dev);
1522
1523 if (pdev->is_virtfn)
1524 return 0;
1525
1526 return a->mode;
1527 }
1528
1529 static struct attribute_group pci_dev_hp_attr_group = {
1530 .attrs = pci_dev_hp_attrs,
1531 .is_visible = pci_dev_hp_attrs_are_visible,
1532 };
1533
1534 #ifdef CONFIG_PCI_IOV
1535 static struct attribute *sriov_dev_attrs[] = {
1536 &sriov_totalvfs_attr.attr,
1537 &sriov_numvfs_attr.attr,
1538 NULL,
1539 };
1540
1541 static umode_t sriov_attrs_are_visible(struct kobject *kobj,
1542 struct attribute *a, int n)
1543 {
1544 struct device *dev = kobj_to_dev(kobj);
1545
1546 if (!dev_is_pf(dev))
1547 return 0;
1548
1549 return a->mode;
1550 }
1551
1552 static struct attribute_group sriov_dev_attr_group = {
1553 .attrs = sriov_dev_attrs,
1554 .is_visible = sriov_attrs_are_visible,
1555 };
1556 #endif /* CONFIG_PCI_IOV */
1557
1558 static struct attribute_group pci_dev_attr_group = {
1559 .attrs = pci_dev_dev_attrs,
1560 .is_visible = pci_dev_attrs_are_visible,
1561 };
1562
1563 static const struct attribute_group *pci_dev_attr_groups[] = {
1564 &pci_dev_attr_group,
1565 &pci_dev_hp_attr_group,
1566 #ifdef CONFIG_PCI_IOV
1567 &sriov_dev_attr_group,
1568 #endif
1569 NULL,
1570 };
1571
1572 struct device_type pci_dev_type = {
1573 .groups = pci_dev_attr_groups,
1574 };
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