blob: 3d7b9196da3e274547799bbcb1c72556eae6f85b [file] [log] [blame]
b.liue9582032025-04-17 19:18:16 +08001// SPDX-License-Identifier: GPL-2.0
2/*
3 * Copyright (C) 2006 Matthew Wilcox <matthew@wil.cx>
4 * Copyright (C) 2006-2009 Hewlett-Packard Development Company, L.P.
5 * Alex Chiang <achiang@hp.com>
6 */
7
8#include <linux/kobject.h>
9#include <linux/slab.h>
10#include <linux/module.h>
11#include <linux/pci.h>
12#include <linux/err.h>
13#include "pci.h"
14
15struct kset *pci_slots_kset;
16EXPORT_SYMBOL_GPL(pci_slots_kset);
17
18static ssize_t pci_slot_attr_show(struct kobject *kobj,
19 struct attribute *attr, char *buf)
20{
21 struct pci_slot *slot = to_pci_slot(kobj);
22 struct pci_slot_attribute *attribute = to_pci_slot_attr(attr);
23 return attribute->show ? attribute->show(slot, buf) : -EIO;
24}
25
26static ssize_t pci_slot_attr_store(struct kobject *kobj,
27 struct attribute *attr, const char *buf, size_t len)
28{
29 struct pci_slot *slot = to_pci_slot(kobj);
30 struct pci_slot_attribute *attribute = to_pci_slot_attr(attr);
31 return attribute->store ? attribute->store(slot, buf, len) : -EIO;
32}
33
34static const struct sysfs_ops pci_slot_sysfs_ops = {
35 .show = pci_slot_attr_show,
36 .store = pci_slot_attr_store,
37};
38
39static ssize_t address_read_file(struct pci_slot *slot, char *buf)
40{
41 if (slot->number == 0xff)
42 return sprintf(buf, "%04x:%02x\n",
43 pci_domain_nr(slot->bus),
44 slot->bus->number);
45 else
46 return sprintf(buf, "%04x:%02x:%02x\n",
47 pci_domain_nr(slot->bus),
48 slot->bus->number,
49 slot->number);
50}
51
52/* these strings match up with the values in pci_bus_speed */
53static const char *pci_bus_speed_strings[] = {
54 "33 MHz PCI", /* 0x00 */
55 "66 MHz PCI", /* 0x01 */
56 "66 MHz PCI-X", /* 0x02 */
57 "100 MHz PCI-X", /* 0x03 */
58 "133 MHz PCI-X", /* 0x04 */
59 NULL, /* 0x05 */
60 NULL, /* 0x06 */
61 NULL, /* 0x07 */
62 NULL, /* 0x08 */
63 "66 MHz PCI-X 266", /* 0x09 */
64 "100 MHz PCI-X 266", /* 0x0a */
65 "133 MHz PCI-X 266", /* 0x0b */
66 "Unknown AGP", /* 0x0c */
67 "1x AGP", /* 0x0d */
68 "2x AGP", /* 0x0e */
69 "4x AGP", /* 0x0f */
70 "8x AGP", /* 0x10 */
71 "66 MHz PCI-X 533", /* 0x11 */
72 "100 MHz PCI-X 533", /* 0x12 */
73 "133 MHz PCI-X 533", /* 0x13 */
74 "2.5 GT/s PCIe", /* 0x14 */
75 "5.0 GT/s PCIe", /* 0x15 */
76 "8.0 GT/s PCIe", /* 0x16 */
77 "16.0 GT/s PCIe", /* 0x17 */
78 "32.0 GT/s PCIe", /* 0x18 */
79};
80
81static ssize_t bus_speed_read(enum pci_bus_speed speed, char *buf)
82{
83 const char *speed_string;
84
85 if (speed < ARRAY_SIZE(pci_bus_speed_strings))
86 speed_string = pci_bus_speed_strings[speed];
87 else
88 speed_string = "Unknown";
89
90 return sprintf(buf, "%s\n", speed_string);
91}
92
93static ssize_t max_speed_read_file(struct pci_slot *slot, char *buf)
94{
95 return bus_speed_read(slot->bus->max_bus_speed, buf);
96}
97
98static ssize_t cur_speed_read_file(struct pci_slot *slot, char *buf)
99{
100 return bus_speed_read(slot->bus->cur_bus_speed, buf);
101}
102
103static void pci_slot_release(struct kobject *kobj)
104{
105 struct pci_dev *dev;
106 struct pci_slot *slot = to_pci_slot(kobj);
107
108 dev_dbg(&slot->bus->dev, "dev %02x, released physical slot %s\n",
109 slot->number, pci_slot_name(slot));
110
111 down_read(&pci_bus_sem);
112 list_for_each_entry(dev, &slot->bus->devices, bus_list)
113 if (PCI_SLOT(dev->devfn) == slot->number)
114 dev->slot = NULL;
115 up_read(&pci_bus_sem);
116
117 list_del(&slot->list);
118 pci_bus_put(slot->bus);
119
120 kfree(slot);
121}
122
123static struct pci_slot_attribute pci_slot_attr_address =
124 __ATTR(address, S_IRUGO, address_read_file, NULL);
125static struct pci_slot_attribute pci_slot_attr_max_speed =
126 __ATTR(max_bus_speed, S_IRUGO, max_speed_read_file, NULL);
127static struct pci_slot_attribute pci_slot_attr_cur_speed =
128 __ATTR(cur_bus_speed, S_IRUGO, cur_speed_read_file, NULL);
129
130static struct attribute *pci_slot_default_attrs[] = {
131 &pci_slot_attr_address.attr,
132 &pci_slot_attr_max_speed.attr,
133 &pci_slot_attr_cur_speed.attr,
134 NULL,
135};
136
137static struct kobj_type pci_slot_ktype = {
138 .sysfs_ops = &pci_slot_sysfs_ops,
139 .release = &pci_slot_release,
140 .default_attrs = pci_slot_default_attrs,
141};
142
143static char *make_slot_name(const char *name)
144{
145 char *new_name;
146 int len, max, dup;
147
148 new_name = kstrdup(name, GFP_KERNEL);
149 if (!new_name)
150 return NULL;
151
152 /*
153 * Make sure we hit the realloc case the first time through the
154 * loop. 'len' will be strlen(name) + 3 at that point which is
155 * enough space for "name-X" and the trailing NUL.
156 */
157 len = strlen(name) + 2;
158 max = 1;
159 dup = 1;
160
161 for (;;) {
162 struct kobject *dup_slot;
163 dup_slot = kset_find_obj(pci_slots_kset, new_name);
164 if (!dup_slot)
165 break;
166 kobject_put(dup_slot);
167 if (dup == max) {
168 len++;
169 max *= 10;
170 kfree(new_name);
171 new_name = kmalloc(len, GFP_KERNEL);
172 if (!new_name)
173 break;
174 }
175 sprintf(new_name, "%s-%d", name, dup++);
176 }
177
178 return new_name;
179}
180
181static int rename_slot(struct pci_slot *slot, const char *name)
182{
183 int result = 0;
184 char *slot_name;
185
186 if (strcmp(pci_slot_name(slot), name) == 0)
187 return result;
188
189 slot_name = make_slot_name(name);
190 if (!slot_name)
191 return -ENOMEM;
192
193 result = kobject_rename(&slot->kobj, slot_name);
194 kfree(slot_name);
195
196 return result;
197}
198
199void pci_dev_assign_slot(struct pci_dev *dev)
200{
201 struct pci_slot *slot;
202
203 mutex_lock(&pci_slot_mutex);
204 list_for_each_entry(slot, &dev->bus->slots, list)
205 if (PCI_SLOT(dev->devfn) == slot->number)
206 dev->slot = slot;
207 mutex_unlock(&pci_slot_mutex);
208}
209
210static struct pci_slot *get_slot(struct pci_bus *parent, int slot_nr)
211{
212 struct pci_slot *slot;
213
214 /* We already hold pci_slot_mutex */
215 list_for_each_entry(slot, &parent->slots, list)
216 if (slot->number == slot_nr) {
217 kobject_get(&slot->kobj);
218 return slot;
219 }
220
221 return NULL;
222}
223
224/**
225 * pci_create_slot - create or increment refcount for physical PCI slot
226 * @parent: struct pci_bus of parent bridge
227 * @slot_nr: PCI_SLOT(pci_dev->devfn) or -1 for placeholder
228 * @name: user visible string presented in /sys/bus/pci/slots/<name>
229 * @hotplug: set if caller is hotplug driver, NULL otherwise
230 *
231 * PCI slots have first class attributes such as address, speed, width,
232 * and a &struct pci_slot is used to manage them. This interface will
233 * either return a new &struct pci_slot to the caller, or if the pci_slot
234 * already exists, its refcount will be incremented.
235 *
236 * Slots are uniquely identified by a @pci_bus, @slot_nr tuple.
237 *
238 * There are known platforms with broken firmware that assign the same
239 * name to multiple slots. Workaround these broken platforms by renaming
240 * the slots on behalf of the caller. If firmware assigns name N to
241 * multiple slots:
242 *
243 * The first slot is assigned N
244 * The second slot is assigned N-1
245 * The third slot is assigned N-2
246 * etc.
247 *
248 * Placeholder slots:
249 * In most cases, @pci_bus, @slot_nr will be sufficient to uniquely identify
250 * a slot. There is one notable exception - pSeries (rpaphp), where the
251 * @slot_nr cannot be determined until a device is actually inserted into
252 * the slot. In this scenario, the caller may pass -1 for @slot_nr.
253 *
254 * The following semantics are imposed when the caller passes @slot_nr ==
255 * -1. First, we no longer check for an existing %struct pci_slot, as there
256 * may be many slots with @slot_nr of -1. The other change in semantics is
257 * user-visible, which is the 'address' parameter presented in sysfs will
258 * consist solely of a dddd:bb tuple, where dddd is the PCI domain of the
259 * %struct pci_bus and bb is the bus number. In other words, the devfn of
260 * the 'placeholder' slot will not be displayed.
261 */
262struct pci_slot *pci_create_slot(struct pci_bus *parent, int slot_nr,
263 const char *name,
264 struct hotplug_slot *hotplug)
265{
266 struct pci_dev *dev;
267 struct pci_slot *slot;
268 int err = 0;
269 char *slot_name = NULL;
270
271 mutex_lock(&pci_slot_mutex);
272
273 if (slot_nr == -1)
274 goto placeholder;
275
276 /*
277 * Hotplug drivers are allowed to rename an existing slot,
278 * but only if not already claimed.
279 */
280 slot = get_slot(parent, slot_nr);
281 if (slot) {
282 if (hotplug) {
283 if ((err = slot->hotplug ? -EBUSY : 0)
284 || (err = rename_slot(slot, name))) {
285 kobject_put(&slot->kobj);
286 slot = NULL;
287 goto err;
288 }
289 }
290 goto out;
291 }
292
293placeholder:
294 slot = kzalloc(sizeof(*slot), GFP_KERNEL);
295 if (!slot) {
296 err = -ENOMEM;
297 goto err;
298 }
299
300 slot->bus = pci_bus_get(parent);
301 slot->number = slot_nr;
302
303 slot->kobj.kset = pci_slots_kset;
304
305 slot_name = make_slot_name(name);
306 if (!slot_name) {
307 err = -ENOMEM;
308 pci_bus_put(slot->bus);
309 kfree(slot);
310 goto err;
311 }
312
313 INIT_LIST_HEAD(&slot->list);
314 list_add(&slot->list, &parent->slots);
315
316 err = kobject_init_and_add(&slot->kobj, &pci_slot_ktype, NULL,
317 "%s", slot_name);
318 if (err) {
319 kobject_put(&slot->kobj);
320 goto err;
321 }
322
323 down_read(&pci_bus_sem);
324 list_for_each_entry(dev, &parent->devices, bus_list)
325 if (PCI_SLOT(dev->devfn) == slot_nr)
326 dev->slot = slot;
327 up_read(&pci_bus_sem);
328
329 dev_dbg(&parent->dev, "dev %02x, created physical slot %s\n",
330 slot_nr, pci_slot_name(slot));
331
332out:
333 kfree(slot_name);
334 mutex_unlock(&pci_slot_mutex);
335 return slot;
336err:
337 slot = ERR_PTR(err);
338 goto out;
339}
340EXPORT_SYMBOL_GPL(pci_create_slot);
341
342/**
343 * pci_destroy_slot - decrement refcount for physical PCI slot
344 * @slot: struct pci_slot to decrement
345 *
346 * %struct pci_slot is refcounted, so destroying them is really easy; we
347 * just call kobject_put on its kobj and let our release methods do the
348 * rest.
349 */
350void pci_destroy_slot(struct pci_slot *slot)
351{
352 dev_dbg(&slot->bus->dev, "dev %02x, dec refcount to %d\n",
353 slot->number, kref_read(&slot->kobj.kref) - 1);
354
355 mutex_lock(&pci_slot_mutex);
356 kobject_put(&slot->kobj);
357 mutex_unlock(&pci_slot_mutex);
358}
359EXPORT_SYMBOL_GPL(pci_destroy_slot);
360
361#if defined(CONFIG_HOTPLUG_PCI) || defined(CONFIG_HOTPLUG_PCI_MODULE)
362#include <linux/pci_hotplug.h>
363/**
364 * pci_hp_create_link - create symbolic link to the hotplug driver module.
365 * @pci_slot: struct pci_slot
366 *
367 * Helper function for pci_hotplug_core.c to create symbolic link to
368 * the hotplug driver module.
369 */
370void pci_hp_create_module_link(struct pci_slot *pci_slot)
371{
372 struct hotplug_slot *slot = pci_slot->hotplug;
373 struct kobject *kobj = NULL;
374 int ret;
375
376 if (!slot || !slot->ops)
377 return;
378 kobj = kset_find_obj(module_kset, slot->mod_name);
379 if (!kobj)
380 return;
381 ret = sysfs_create_link(&pci_slot->kobj, kobj, "module");
382 if (ret)
383 dev_err(&pci_slot->bus->dev, "Error creating sysfs link (%d)\n",
384 ret);
385 kobject_put(kobj);
386}
387EXPORT_SYMBOL_GPL(pci_hp_create_module_link);
388
389/**
390 * pci_hp_remove_link - remove symbolic link to the hotplug driver module.
391 * @pci_slot: struct pci_slot
392 *
393 * Helper function for pci_hotplug_core.c to remove symbolic link to
394 * the hotplug driver module.
395 */
396void pci_hp_remove_module_link(struct pci_slot *pci_slot)
397{
398 sysfs_remove_link(&pci_slot->kobj, "module");
399}
400EXPORT_SYMBOL_GPL(pci_hp_remove_module_link);
401#endif
402
403static int pci_slot_init(void)
404{
405 struct kset *pci_bus_kset;
406
407 pci_bus_kset = bus_get_kset(&pci_bus_type);
408 pci_slots_kset = kset_create_and_add("slots", NULL,
409 &pci_bus_kset->kobj);
410 if (!pci_slots_kset) {
411 pr_err("PCI: Slot initialization failure\n");
412 return -ENOMEM;
413 }
414 return 0;
415}
416
417subsys_initcall(pci_slot_init);