usb: move children to struct usb_port
[deliverable/linux.git] / include / linux / usb.h
CommitLineData
1da177e4
LT
1#ifndef __LINUX_USB_H
2#define __LINUX_USB_H
3
4#include <linux/mod_devicetable.h>
5f848137 5#include <linux/usb/ch9.h>
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6
7#define USB_MAJOR 180
fbf82fd2 8#define USB_DEVICE_MAJOR 189
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9
10
11#ifdef __KERNEL__
12
1da177e4
LT
13#include <linux/errno.h> /* for -ENODEV */
14#include <linux/delay.h> /* for mdelay() */
15#include <linux/interrupt.h> /* for in_interrupt() */
16#include <linux/list.h> /* for struct list_head */
17#include <linux/kref.h> /* for struct kref */
18#include <linux/device.h> /* for struct device */
19#include <linux/fs.h> /* for struct file_operations */
20#include <linux/completion.h> /* for struct completion */
21#include <linux/sched.h> /* for current && schedule_timeout */
645daaab 22#include <linux/mutex.h> /* for struct mutex */
6ddf27cd 23#include <linux/pm_runtime.h> /* for runtime PM */
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24
25struct usb_device;
26struct usb_driver;
b1d8dfb0 27struct wusb_dev;
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28
29/*-------------------------------------------------------------------------*/
30
31/*
32 * Host-side wrappers for standard USB descriptors ... these are parsed
33 * from the data provided by devices. Parsing turns them from a flat
34 * sequence of descriptors into a hierarchy:
35 *
36 * - devices have one (usually) or more configs;
37 * - configs have one (often) or more interfaces;
38 * - interfaces have one (usually) or more settings;
39 * - each interface setting has zero or (usually) more endpoints.
663c30d0 40 * - a SuperSpeed endpoint has a companion descriptor
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41 *
42 * And there might be other descriptors mixed in with those.
43 *
44 * Devices may also have class-specific or vendor-specific descriptors.
45 */
46
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GKH
47struct ep_device;
48
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49/**
50 * struct usb_host_endpoint - host-side endpoint descriptor and queue
51 * @desc: descriptor for this endpoint, wMaxPacketSize in native byteorder
842f1690 52 * @ss_ep_comp: SuperSpeed companion descriptor for this endpoint
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LT
53 * @urb_list: urbs queued to this endpoint; maintained by usbcore
54 * @hcpriv: for use by HCD; typically holds hardware dma queue head (QH)
55 * with one or more transfer descriptors (TDs) per urb
7fac9a33 56 * @ep_dev: ep_device for sysfs info
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57 * @extra: descriptors following this endpoint in the configuration
58 * @extralen: how many bytes of "extra" are valid
bdd016ba 59 * @enabled: URBs may be submitted to this endpoint
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60 *
61 * USB requests are always queued to a given endpoint, identified by a
62 * descriptor within an active interface in a given USB configuration.
63 */
64struct usb_host_endpoint {
842f1690
AS
65 struct usb_endpoint_descriptor desc;
66 struct usb_ss_ep_comp_descriptor ss_ep_comp;
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67 struct list_head urb_list;
68 void *hcpriv;
812219ab 69 struct ep_device *ep_dev; /* For sysfs info */
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70
71 unsigned char *extra; /* Extra descriptors */
72 int extralen;
bdd016ba 73 int enabled;
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74};
75
76/* host-side wrapper for one interface setting's parsed descriptors */
77struct usb_host_interface {
78 struct usb_interface_descriptor desc;
79
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80 int extralen;
81 unsigned char *extra; /* Extra descriptors */
82
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83 /* array of desc.bNumEndpoint endpoints associated with this
84 * interface setting. these will be in no particular order.
85 */
86 struct usb_host_endpoint *endpoint;
87
88 char *string; /* iInterface string, if present */
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LT
89};
90
91enum usb_interface_condition {
92 USB_INTERFACE_UNBOUND = 0,
93 USB_INTERFACE_BINDING,
94 USB_INTERFACE_BOUND,
95 USB_INTERFACE_UNBINDING,
96};
97
98/**
99 * struct usb_interface - what usb device drivers talk to
100 * @altsetting: array of interface structures, one for each alternate
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101 * setting that may be selected. Each one includes a set of
102 * endpoint configurations. They will be in no particular order.
1da177e4 103 * @cur_altsetting: the current altsetting.
d6d914f5 104 * @num_altsetting: number of altsettings defined.
3f423787 105 * @intf_assoc: interface association descriptor
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106 * @minor: the minor number assigned to this interface, if this
107 * interface is bound to a driver that uses the USB major number.
108 * If this interface does not use the USB major, this field should
109 * be unused. The driver should set this value in the probe()
110 * function of the driver, after it has been assigned a minor
111 * number from the USB core by calling usb_register_dev().
112 * @condition: binding state of the interface: not bound, binding
113 * (in probe()), bound to a driver, or unbinding (in disconnect())
f88ed90d 114 * @sysfs_files_created: sysfs attributes exist
3b23dd6f 115 * @ep_devs_created: endpoint child pseudo-devices exist
352d0263 116 * @unregistering: flag set when the interface is being unregistered
645daaab
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117 * @needs_remote_wakeup: flag set when the driver requires remote-wakeup
118 * capability during autosuspend.
55151d7d
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119 * @needs_altsetting0: flag set when a set-interface request for altsetting 0
120 * has been deferred.
f4f4d587
AS
121 * @needs_binding: flag set when the driver should be re-probed or unbound
122 * following a reset or suspend operation it doesn't support.
1da177e4 123 * @dev: driver model's view of this device
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124 * @usb_dev: if an interface is bound to the USB major, this will point
125 * to the sysfs representation for that device.
9bbdf1e0 126 * @pm_usage_cnt: PM usage counter for this interface
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IPG
127 * @reset_ws: Used for scheduling resets from atomic context.
128 * @reset_running: set to 1 if the interface is currently running a
129 * queued reset so that usb_cancel_queued_reset() doesn't try to
130 * remove from the workqueue when running inside the worker
131 * thread. See __usb_queue_reset_device().
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132 * @resetting_device: USB core reset the device, so use alt setting 0 as
133 * current; needs bandwidth alloc after reset.
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134 *
135 * USB device drivers attach to interfaces on a physical device. Each
136 * interface encapsulates a single high level function, such as feeding
137 * an audio stream to a speaker or reporting a change in a volume control.
138 * Many USB devices only have one interface. The protocol used to talk to
139 * an interface's endpoints can be defined in a usb "class" specification,
140 * or by a product's vendor. The (default) control endpoint is part of
141 * every interface, but is never listed among the interface's descriptors.
142 *
143 * The driver that is bound to the interface can use standard driver model
144 * calls such as dev_get_drvdata() on the dev member of this structure.
145 *
146 * Each interface may have alternate settings. The initial configuration
147 * of a device sets altsetting 0, but the device driver can change
148 * that setting using usb_set_interface(). Alternate settings are often
59c51591 149 * used to control the use of periodic endpoints, such as by having
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LT
150 * different endpoints use different amounts of reserved USB bandwidth.
151 * All standards-conformant USB devices that use isochronous endpoints
152 * will use them in non-default settings.
153 *
154 * The USB specification says that alternate setting numbers must run from
155 * 0 to one less than the total number of alternate settings. But some
156 * devices manage to mess this up, and the structures aren't necessarily
157 * stored in numerical order anyhow. Use usb_altnum_to_altsetting() to
158 * look up an alternate setting in the altsetting array based on its number.
159 */
160struct usb_interface {
161 /* array of alternate settings for this interface,
162 * stored in no particular order */
163 struct usb_host_interface *altsetting;
164
165 struct usb_host_interface *cur_altsetting; /* the currently
166 * active alternate setting */
167 unsigned num_altsetting; /* number of alternate settings */
168
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CN
169 /* If there is an interface association descriptor then it will list
170 * the associated interfaces */
171 struct usb_interface_assoc_descriptor *intf_assoc;
172
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AS
173 int minor; /* minor number this interface is
174 * bound to */
1da177e4 175 enum usb_interface_condition condition; /* state of binding */
7e61559f 176 unsigned sysfs_files_created:1; /* the sysfs attributes exist */
3b23dd6f 177 unsigned ep_devs_created:1; /* endpoint "devices" exist */
352d0263 178 unsigned unregistering:1; /* unregistration is in progress */
645daaab 179 unsigned needs_remote_wakeup:1; /* driver requires remote wakeup */
55151d7d 180 unsigned needs_altsetting0:1; /* switch to altsetting 0 is pending */
78d9a487 181 unsigned needs_binding:1; /* needs delayed unbind/rebind */
dc023dce 182 unsigned reset_running:1;
04a723ea 183 unsigned resetting_device:1; /* true: bandwidth alloc after reset */
4d064c08 184
1da177e4 185 struct device dev; /* interface specific device info */
969ab2ee 186 struct device *usb_dev;
ccf5b801 187 atomic_t pm_usage_cnt; /* usage counter for autosuspend */
dc023dce 188 struct work_struct reset_ws; /* for resets in atomic context */
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LT
189};
190#define to_usb_interface(d) container_of(d, struct usb_interface, dev)
1da177e4 191
969ab2ee 192static inline void *usb_get_intfdata(struct usb_interface *intf)
1da177e4 193{
969ab2ee 194 return dev_get_drvdata(&intf->dev);
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LT
195}
196
969ab2ee 197static inline void usb_set_intfdata(struct usb_interface *intf, void *data)
1da177e4
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198{
199 dev_set_drvdata(&intf->dev, data);
200}
201
202struct usb_interface *usb_get_intf(struct usb_interface *intf);
203void usb_put_intf(struct usb_interface *intf);
204
205/* this maximum is arbitrary */
206#define USB_MAXINTERFACES 32
812219ab 207#define USB_MAXIADS (USB_MAXINTERFACES/2)
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208
209/**
210 * struct usb_interface_cache - long-term representation of a device interface
211 * @num_altsetting: number of altsettings defined.
212 * @ref: reference counter.
213 * @altsetting: variable-length array of interface structures, one for
214 * each alternate setting that may be selected. Each one includes a
215 * set of endpoint configurations. They will be in no particular order.
216 *
217 * These structures persist for the lifetime of a usb_device, unlike
218 * struct usb_interface (which persists only as long as its configuration
219 * is installed). The altsetting arrays can be accessed through these
220 * structures at any time, permitting comparison of configurations and
221 * providing support for the /proc/bus/usb/devices pseudo-file.
222 */
223struct usb_interface_cache {
224 unsigned num_altsetting; /* number of alternate settings */
225 struct kref ref; /* reference counter */
226
227 /* variable-length array of alternate settings for this interface,
228 * stored in no particular order */
229 struct usb_host_interface altsetting[0];
230};
231#define ref_to_usb_interface_cache(r) \
232 container_of(r, struct usb_interface_cache, ref)
233#define altsetting_to_usb_interface_cache(a) \
234 container_of(a, struct usb_interface_cache, altsetting[0])
235
236/**
237 * struct usb_host_config - representation of a device's configuration
238 * @desc: the device's configuration descriptor.
239 * @string: pointer to the cached version of the iConfiguration string, if
240 * present for this configuration.
3f423787 241 * @intf_assoc: list of any interface association descriptors in this config
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LT
242 * @interface: array of pointers to usb_interface structures, one for each
243 * interface in the configuration. The number of interfaces is stored
244 * in desc.bNumInterfaces. These pointers are valid only while the
245 * the configuration is active.
246 * @intf_cache: array of pointers to usb_interface_cache structures, one
247 * for each interface in the configuration. These structures exist
248 * for the entire life of the device.
249 * @extra: pointer to buffer containing all extra descriptors associated
250 * with this configuration (those preceding the first interface
251 * descriptor).
252 * @extralen: length of the extra descriptors buffer.
253 *
254 * USB devices may have multiple configurations, but only one can be active
255 * at any time. Each encapsulates a different operational environment;
256 * for example, a dual-speed device would have separate configurations for
257 * full-speed and high-speed operation. The number of configurations
258 * available is stored in the device descriptor as bNumConfigurations.
259 *
260 * A configuration can contain multiple interfaces. Each corresponds to
261 * a different function of the USB device, and all are available whenever
262 * the configuration is active. The USB standard says that interfaces
263 * are supposed to be numbered from 0 to desc.bNumInterfaces-1, but a lot
264 * of devices get this wrong. In addition, the interface array is not
265 * guaranteed to be sorted in numerical order. Use usb_ifnum_to_if() to
266 * look up an interface entry based on its number.
267 *
268 * Device drivers should not attempt to activate configurations. The choice
269 * of which configuration to install is a policy decision based on such
270 * considerations as available power, functionality provided, and the user's
312c004d 271 * desires (expressed through userspace tools). However, drivers can call
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LT
272 * usb_reset_configuration() to reinitialize the current configuration and
273 * all its interfaces.
274 */
275struct usb_host_config {
276 struct usb_config_descriptor desc;
277
4f62efe6 278 char *string; /* iConfiguration string, if present */
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CN
279
280 /* List of any Interface Association Descriptors in this
281 * configuration. */
282 struct usb_interface_assoc_descriptor *intf_assoc[USB_MAXIADS];
283
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284 /* the interfaces associated with this configuration,
285 * stored in no particular order */
286 struct usb_interface *interface[USB_MAXINTERFACES];
287
288 /* Interface information available even when this is not the
289 * active configuration */
290 struct usb_interface_cache *intf_cache[USB_MAXINTERFACES];
291
292 unsigned char *extra; /* Extra descriptors */
293 int extralen;
294};
295
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AX
296/* USB2.0 and USB3.0 device BOS descriptor set */
297struct usb_host_bos {
298 struct usb_bos_descriptor *desc;
299
300 /* wireless cap descriptor is handled by wusb */
301 struct usb_ext_cap_descriptor *ext_cap;
302 struct usb_ss_cap_descriptor *ss_cap;
303 struct usb_ss_container_id_descriptor *ss_id;
304};
305
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LT
306int __usb_get_extra_descriptor(char *buffer, unsigned size,
307 unsigned char type, void **ptr);
969ab2ee
GKH
308#define usb_get_extra_descriptor(ifpoint, type, ptr) \
309 __usb_get_extra_descriptor((ifpoint)->extra, \
310 (ifpoint)->extralen, \
311 type, (void **)ptr)
1da177e4 312
b724ae77 313/* ----------------------------------------------------------------------- */
1da177e4 314
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LT
315/* USB device number allocation bitmap */
316struct usb_devmap {
317 unsigned long devicemap[128 / (8*sizeof(unsigned long))];
318};
319
320/*
321 * Allocated per bus (tree of devices) we have:
322 */
323struct usb_bus {
324 struct device *controller; /* host/master side hardware */
325 int busnum; /* Bus number (in order of reg) */
1b26da15 326 const char *bus_name; /* stable id (PCI slot_name etc) */
dd990f16 327 u8 uses_dma; /* Does the host controller use DMA? */
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AG
328 u8 uses_pio_for_control; /*
329 * Does the host controller use PIO
330 * for control transfers?
331 */
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LT
332 u8 otg_port; /* 0, or number of OTG/HNP port */
333 unsigned is_b_host:1; /* true during some HNP roleswitches */
334 unsigned b_hnp_enable:1; /* OTG: did A-Host enable HNP? */
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HG
335 unsigned no_stop_on_short:1; /*
336 * Quirk: some controllers don't stop
337 * the ep queue on a short transfer
338 * with the URB_SHORT_NOT_OK flag set.
339 */
4c1bd3d7 340 unsigned sg_tablesize; /* 0 or largest number of sg list entries */
1da177e4 341
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AS
342 int devnum_next; /* Next open device number in
343 * round-robin allocation */
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LT
344
345 struct usb_devmap devmap; /* device address allocation map */
1da177e4 346 struct usb_device *root_hub; /* Root hub */
6d19c009 347 struct usb_bus *hs_companion; /* Companion EHCI bus, if any */
1da177e4 348 struct list_head bus_list; /* list of busses */
1da177e4
LT
349
350 int bandwidth_allocated; /* on this bus: how much of the time
351 * reserved for periodic (intr/iso)
352 * requests is used, on average?
353 * Units: microseconds/frame.
354 * Limits: Full/low speed reserve 90%,
355 * while high speed reserves 80%.
356 */
357 int bandwidth_int_reqs; /* number of Interrupt requests */
358 int bandwidth_isoc_reqs; /* number of Isoc. requests */
359
f150fa1a 360#if defined(CONFIG_USB_MON) || defined(CONFIG_USB_MON_MODULE)
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LT
361 struct mon_bus *mon_bus; /* non-null when associated */
362 int monitored; /* non-zero when monitored */
363#endif
364};
1da177e4 365
b724ae77 366/* ----------------------------------------------------------------------- */
1da177e4
LT
367
368/* This is arbitrary.
369 * From USB 2.0 spec Table 11-13, offset 7, a hub can
370 * have up to 255 ports. The most yet reported is 10.
43705251 371 *
372 * Current Wireless USB host hardware (Intel i1480 for example) allows
373 * up to 22 devices to connect. Upcoming hardware might raise that
374 * limit. Because the arrays need to add a bit for hub status data, we
375 * do 31, so plus one evens out to four bytes.
1da177e4 376 */
43705251 377#define USB_MAXCHILDREN (31)
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LT
378
379struct usb_tt;
380
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MG
381enum usb_device_removable {
382 USB_DEVICE_REMOVABLE_UNKNOWN = 0,
383 USB_DEVICE_REMOVABLE,
384 USB_DEVICE_FIXED,
385};
386
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SS
387/*
388 * USB 3.0 Link Power Management (LPM) parameters.
389 *
390 * PEL and SEL are USB 3.0 Link PM latencies for device-initiated LPM exit.
391 * MEL is the USB 3.0 Link PM latency for host-initiated LPM exit.
392 * All three are stored in nanoseconds.
393 */
394struct usb3_lpm_parameters {
395 /*
396 * Maximum exit latency (MEL) for the host to send a packet to the
397 * device (either a Ping for isoc endpoints, or a data packet for
398 * interrupt endpoints), the hubs to decode the packet, and for all hubs
399 * in the path to transition the links to U0.
400 */
401 unsigned int mel;
402 /*
403 * Maximum exit latency for a device-initiated LPM transition to bring
404 * all links into U0. Abbreviated as "PEL" in section 9.4.12 of the USB
405 * 3.0 spec, with no explanation of what "P" stands for. "Path"?
406 */
407 unsigned int pel;
408
409 /*
410 * The System Exit Latency (SEL) includes PEL, and three other
411 * latencies. After a device initiates a U0 transition, it will take
412 * some time from when the device sends the ERDY to when it will finally
413 * receive the data packet. Basically, SEL should be the worse-case
414 * latency from when a device starts initiating a U0 transition to when
415 * it will get data.
416 */
417 unsigned int sel;
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SS
418 /*
419 * The idle timeout value that is currently programmed into the parent
420 * hub for this device. When the timer counts to zero, the parent hub
421 * will initiate an LPM transition to either U1 or U2.
422 */
423 int timeout;
51e0a012
SS
424};
425
f476fbab 426/**
1da177e4 427 * struct usb_device - kernel's representation of a USB device
f476fbab
RD
428 * @devnum: device number; address on a USB bus
429 * @devpath: device ID string for use in messages (e.g., /port/...)
7206b001 430 * @route: tree topology hex string for use with xHCI
f476fbab
RD
431 * @state: device state: configured, not attached, etc.
432 * @speed: device speed: high/full/low (or error)
433 * @tt: Transaction Translator info; used with low/full speed dev, highspeed hub
434 * @ttport: device port on that tt hub
435 * @toggle: one bit for each endpoint, with ([0] = IN, [1] = OUT) endpoints
436 * @parent: our hub, unless we're the root
437 * @bus: bus we're part of
438 * @ep0: endpoint 0 data (default control pipe)
439 * @dev: generic device interface
440 * @descriptor: USB device descriptor
3148bf04 441 * @bos: USB device BOS descriptor set
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442 * @config: all of the device's configs
443 * @actconfig: the active configuration
444 * @ep_in: array of IN endpoints
445 * @ep_out: array of OUT endpoints
446 * @rawdescriptors: raw descriptors for each config
447 * @bus_mA: Current available from the bus
448 * @portnum: parent port number (origin 1)
449 * @level: number of USB hub ancestors
450 * @can_submit: URBs may be submitted
f476fbab
RD
451 * @persist_enabled: USB_PERSIST enabled for this device
452 * @have_langid: whether string_langid is valid
453 * @authorized: policy has said we can use it;
454 * (user space) policy determines if we authorize this device to be
455 * used or not. By default, wired USB devices are authorized.
456 * WUSB devices are not, until we authorize them from user space.
457 * FIXME -- complete doc
3b52f128 458 * @authenticated: Crypto authentication passed
f476fbab 459 * @wusb: device is Wireless USB
1ff4df56 460 * @lpm_capable: device supports LPM
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461 * @usb2_hw_lpm_capable: device can perform USB2 hardware LPM
462 * @usb2_hw_lpm_enabled: USB2 hardware LPM enabled
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RD
463 * @string_langid: language ID for strings
464 * @product: iProduct string, if present (static)
465 * @manufacturer: iManufacturer string, if present (static)
466 * @serial: iSerialNumber string, if present (static)
467 * @filelist: usbfs files that are open to this device
468 * @usb_classdev: USB class device that was created for usbfs device
469 * access from userspace
470 * @usbfs_dentry: usbfs dentry entry for the device
471 * @maxchild: number of ports if hub
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RD
472 * @quirks: quirks of the whole device
473 * @urbnum: number of URBs submitted for the whole device
474 * @active_duration: total time device is not suspended
f476fbab 475 * @connect_time: time device was first connected
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RD
476 * @do_remote_wakeup: remote wakeup should be enabled
477 * @reset_resume: needs reset instead of resume
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IPG
478 * @wusb_dev: if this is a Wireless USB device, link to the WUSB
479 * specific data for the device.
c6515272 480 * @slot_id: Slot ID assigned by xHCI
0846e7e9 481 * @removable: Device can be physically removed from this port
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SS
482 * @u1_params: exit latencies for USB3 U1 LPM state, and hub-initiated timeout.
483 * @u2_params: exit latencies for USB3 U2 LPM state, and hub-initiated timeout.
484 * @lpm_disable_count: Ref count used by usb_disable_lpm() and usb_enable_lpm()
485 * to keep track of the number of functions that require USB 3.0 Link Power
486 * Management to be disabled for this usb_device. This count should only
487 * be manipulated by those functions, with the bandwidth_mutex is held.
1da177e4 488 *
f476fbab 489 * Notes:
1da177e4
LT
490 * Usbcore drivers should not set usbdev->state directly. Instead use
491 * usb_set_device_state().
492 */
493struct usb_device {
f476fbab 494 int devnum;
812219ab 495 char devpath[16];
7206b001 496 u32 route;
f476fbab
RD
497 enum usb_device_state state;
498 enum usb_device_speed speed;
1da177e4 499
f476fbab
RD
500 struct usb_tt *tt;
501 int ttport;
1da177e4 502
f476fbab 503 unsigned int toggle[2];
1da177e4 504
f476fbab
RD
505 struct usb_device *parent;
506 struct usb_bus *bus;
1da177e4
LT
507 struct usb_host_endpoint ep0;
508
f476fbab 509 struct device dev;
1da177e4 510
f476fbab 511 struct usb_device_descriptor descriptor;
3148bf04 512 struct usb_host_bos *bos;
f476fbab 513 struct usb_host_config *config;
1da177e4 514
f476fbab 515 struct usb_host_config *actconfig;
1da177e4
LT
516 struct usb_host_endpoint *ep_in[16];
517 struct usb_host_endpoint *ep_out[16];
518
f476fbab 519 char **rawdescriptors;
1da177e4 520
f476fbab
RD
521 unsigned short bus_mA;
522 u8 portnum;
523 u8 level;
55c52718 524
f476fbab 525 unsigned can_submit:1;
f476fbab
RD
526 unsigned persist_enabled:1;
527 unsigned have_langid:1;
528 unsigned authorized:1;
812219ab 529 unsigned authenticated:1;
f476fbab 530 unsigned wusb:1;
1ff4df56 531 unsigned lpm_capable:1;
65580b43
AX
532 unsigned usb2_hw_lpm_capable:1;
533 unsigned usb2_hw_lpm_enabled:1;
8306095f 534 unsigned usb3_lpm_enabled:1;
f476fbab 535 int string_langid;
1da177e4 536
4f62efe6 537 /* static strings from the device */
f476fbab
RD
538 char *product;
539 char *manufacturer;
540 char *serial;
4f62efe6 541
1da177e4 542 struct list_head filelist;
1da177e4 543
f476fbab 544 int maxchild;
645daaab 545
f476fbab
RD
546 u32 quirks;
547 atomic_t urbnum;
b5e795f8 548
f476fbab 549 unsigned long active_duration;
15123006 550
645daaab 551#ifdef CONFIG_PM
f476fbab
RD
552 unsigned long connect_time;
553
f476fbab
RD
554 unsigned do_remote_wakeup:1;
555 unsigned reset_resume:1;
645daaab 556#endif
b1d8dfb0 557 struct wusb_dev *wusb_dev;
c6515272 558 int slot_id;
0846e7e9 559 enum usb_device_removable removable;
51e0a012
SS
560 struct usb3_lpm_parameters u1_params;
561 struct usb3_lpm_parameters u2_params;
1ea7e0e8 562 unsigned lpm_disable_count;
1da177e4
LT
563};
564#define to_usb_device(d) container_of(d, struct usb_device, dev)
565
1e429018
MW
566static inline struct usb_device *interface_to_usbdev(struct usb_interface *intf)
567{
568 return to_usb_device(intf->dev.parent);
569}
570
1da177e4
LT
571extern struct usb_device *usb_get_dev(struct usb_device *dev);
572extern void usb_put_dev(struct usb_device *dev);
ff823c79
LT
573extern struct usb_device *usb_hub_find_child(struct usb_device *hdev,
574 int port1);
575
576/**
577 * usb_hub_for_each_child - iterate over all child devices on the hub
578 * @hdev: USB device belonging to the usb hub
579 * @port1: portnum associated with child device
580 * @child: child device pointer
581 */
582#define usb_hub_for_each_child(hdev, port1, child) \
583 for (port1 = 1, child = usb_hub_find_child(hdev, port1); \
584 port1 <= hdev->maxchild; \
585 child = usb_hub_find_child(hdev, ++port1))
1da177e4 586
9ad3d6cc 587/* USB device locking */
8e9394ce
GKH
588#define usb_lock_device(udev) device_lock(&(udev)->dev)
589#define usb_unlock_device(udev) device_unlock(&(udev)->dev)
590#define usb_trylock_device(udev) device_trylock(&(udev)->dev)
1da177e4 591extern int usb_lock_device_for_reset(struct usb_device *udev,
095bc335 592 const struct usb_interface *iface);
1da177e4
LT
593
594/* USB port reset for device reinitialization */
595extern int usb_reset_device(struct usb_device *dev);
dc023dce 596extern void usb_queue_reset_device(struct usb_interface *dev);
1da177e4 597
1da177e4 598
645daaab
AS
599/* USB autosuspend and autoresume */
600#ifdef CONFIG_USB_SUSPEND
9e18c821
AS
601extern void usb_enable_autosuspend(struct usb_device *udev);
602extern void usb_disable_autosuspend(struct usb_device *udev);
088f7fec 603
645daaab
AS
604extern int usb_autopm_get_interface(struct usb_interface *intf);
605extern void usb_autopm_put_interface(struct usb_interface *intf);
9ac39f28
AS
606extern int usb_autopm_get_interface_async(struct usb_interface *intf);
607extern void usb_autopm_put_interface_async(struct usb_interface *intf);
9bbdf1e0
AS
608extern void usb_autopm_get_interface_no_resume(struct usb_interface *intf);
609extern void usb_autopm_put_interface_no_suspend(struct usb_interface *intf);
692a186c 610
1941044a
AS
611static inline void usb_mark_last_busy(struct usb_device *udev)
612{
6ddf27cd 613 pm_runtime_mark_last_busy(&udev->dev);
1941044a
AS
614}
615
645daaab 616#else
645daaab 617
088f7fec
AS
618static inline int usb_enable_autosuspend(struct usb_device *udev)
619{ return 0; }
620static inline int usb_disable_autosuspend(struct usb_device *udev)
621{ return 0; }
622
692a186c
AS
623static inline int usb_autopm_get_interface(struct usb_interface *intf)
624{ return 0; }
9ac39f28
AS
625static inline int usb_autopm_get_interface_async(struct usb_interface *intf)
626{ return 0; }
627
692a186c
AS
628static inline void usb_autopm_put_interface(struct usb_interface *intf)
629{ }
9ac39f28
AS
630static inline void usb_autopm_put_interface_async(struct usb_interface *intf)
631{ }
8e4ceb38
AS
632static inline void usb_autopm_get_interface_no_resume(
633 struct usb_interface *intf)
692a186c 634{ }
8e4ceb38
AS
635static inline void usb_autopm_put_interface_no_suspend(
636 struct usb_interface *intf)
692a186c 637{ }
1941044a
AS
638static inline void usb_mark_last_busy(struct usb_device *udev)
639{ }
692a186c 640#endif
645daaab 641
e9261fb6
SS
642extern int usb_disable_lpm(struct usb_device *udev);
643extern void usb_enable_lpm(struct usb_device *udev);
644/* Same as above, but these functions lock/unlock the bandwidth_mutex. */
645extern int usb_unlocked_disable_lpm(struct usb_device *udev);
646extern void usb_unlocked_enable_lpm(struct usb_device *udev);
647
f74631e3
SS
648extern int usb_disable_ltm(struct usb_device *udev);
649extern void usb_enable_ltm(struct usb_device *udev);
650
024f117c
SS
651static inline bool usb_device_supports_ltm(struct usb_device *udev)
652{
653 if (udev->speed != USB_SPEED_SUPER || !udev->bos || !udev->bos->ss_cap)
654 return false;
655 return udev->bos->ss_cap->bmAttributes & USB_LTM_SUPPORT;
656}
657
658
1da177e4
LT
659/*-------------------------------------------------------------------------*/
660
661/* for drivers using iso endpoints */
969ab2ee 662extern int usb_get_current_frame_number(struct usb_device *usb_dev);
1da177e4 663
eab1cafc
SS
664/* Sets up a group of bulk endpoints to support multiple stream IDs. */
665extern int usb_alloc_streams(struct usb_interface *interface,
666 struct usb_host_endpoint **eps, unsigned int num_eps,
667 unsigned int num_streams, gfp_t mem_flags);
668
669/* Reverts a group of bulk endpoints back to not using stream IDs. */
670extern void usb_free_streams(struct usb_interface *interface,
671 struct usb_host_endpoint **eps, unsigned int num_eps,
672 gfp_t mem_flags);
673
1da177e4
LT
674/* used these for multi-interface device registration */
675extern int usb_driver_claim_interface(struct usb_driver *driver,
969ab2ee 676 struct usb_interface *iface, void *priv);
1da177e4
LT
677
678/**
679 * usb_interface_claimed - returns true iff an interface is claimed
680 * @iface: the interface being checked
681 *
682 * Returns true (nonzero) iff the interface is claimed, else false (zero).
683 * Callers must own the driver model's usb bus readlock. So driver
684 * probe() entries don't need extra locking, but other call contexts
685 * may need to explicitly claim that lock.
686 *
687 */
969ab2ee
GKH
688static inline int usb_interface_claimed(struct usb_interface *iface)
689{
1da177e4
LT
690 return (iface->dev.driver != NULL);
691}
692
693extern void usb_driver_release_interface(struct usb_driver *driver,
694 struct usb_interface *iface);
695const struct usb_device_id *usb_match_id(struct usb_interface *interface,
696 const struct usb_device_id *id);
93bacefc
GKH
697extern int usb_match_one_id(struct usb_interface *interface,
698 const struct usb_device_id *id);
1da177e4
LT
699
700extern struct usb_interface *usb_find_interface(struct usb_driver *drv,
701 int minor);
095bc335 702extern struct usb_interface *usb_ifnum_to_if(const struct usb_device *dev,
1da177e4
LT
703 unsigned ifnum);
704extern struct usb_host_interface *usb_altnum_to_altsetting(
095bc335 705 const struct usb_interface *intf, unsigned int altnum);
91017f9c
SS
706extern struct usb_host_interface *usb_find_alt_setting(
707 struct usb_host_config *config,
708 unsigned int iface_num,
709 unsigned int alt_num);
1da177e4
LT
710
711
712/**
713 * usb_make_path - returns stable device path in the usb tree
714 * @dev: the device whose path is being constructed
715 * @buf: where to put the string
716 * @size: how big is "buf"?
717 *
718 * Returns length of the string (> 0) or negative if size was too small.
719 *
720 * This identifier is intended to be "stable", reflecting physical paths in
721 * hardware such as physical bus addresses for host controllers or ports on
722 * USB hubs. That makes it stay the same until systems are physically
723 * reconfigured, by re-cabling a tree of USB devices or by moving USB host
724 * controllers. Adding and removing devices, including virtual root hubs
25985edc 725 * in host controller driver modules, does not change these path identifiers;
1da177e4
LT
726 * neither does rebooting or re-enumerating. These are more useful identifiers
727 * than changeable ("unstable") ones like bus numbers or device addresses.
728 *
729 * With a partial exception for devices connected to USB 2.0 root hubs, these
730 * identifiers are also predictable. So long as the device tree isn't changed,
731 * plugging any USB device into a given hub port always gives it the same path.
732 * Because of the use of "companion" controllers, devices connected to ports on
733 * USB 2.0 root hubs (EHCI host controllers) will get one path ID if they are
734 * high speed, and a different one if they are full or low speed.
735 */
969ab2ee 736static inline int usb_make_path(struct usb_device *dev, char *buf, size_t size)
1da177e4
LT
737{
738 int actual;
969ab2ee
GKH
739 actual = snprintf(buf, size, "usb-%s-%s", dev->bus->bus_name,
740 dev->devpath);
1da177e4
LT
741 return (actual >= (int)size) ? -1 : actual;
742}
743
744/*-------------------------------------------------------------------------*/
745
b724ae77
AS
746#define USB_DEVICE_ID_MATCH_DEVICE \
747 (USB_DEVICE_ID_MATCH_VENDOR | USB_DEVICE_ID_MATCH_PRODUCT)
748#define USB_DEVICE_ID_MATCH_DEV_RANGE \
749 (USB_DEVICE_ID_MATCH_DEV_LO | USB_DEVICE_ID_MATCH_DEV_HI)
750#define USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION \
751 (USB_DEVICE_ID_MATCH_DEVICE | USB_DEVICE_ID_MATCH_DEV_RANGE)
1da177e4 752#define USB_DEVICE_ID_MATCH_DEV_INFO \
b724ae77
AS
753 (USB_DEVICE_ID_MATCH_DEV_CLASS | \
754 USB_DEVICE_ID_MATCH_DEV_SUBCLASS | \
755 USB_DEVICE_ID_MATCH_DEV_PROTOCOL)
1da177e4 756#define USB_DEVICE_ID_MATCH_INT_INFO \
b724ae77
AS
757 (USB_DEVICE_ID_MATCH_INT_CLASS | \
758 USB_DEVICE_ID_MATCH_INT_SUBCLASS | \
759 USB_DEVICE_ID_MATCH_INT_PROTOCOL)
1da177e4
LT
760
761/**
762 * USB_DEVICE - macro used to describe a specific usb device
763 * @vend: the 16 bit USB Vendor ID
764 * @prod: the 16 bit USB Product ID
765 *
766 * This macro is used to create a struct usb_device_id that matches a
767 * specific device.
768 */
812219ab 769#define USB_DEVICE(vend, prod) \
969ab2ee
GKH
770 .match_flags = USB_DEVICE_ID_MATCH_DEVICE, \
771 .idVendor = (vend), \
772 .idProduct = (prod)
1da177e4 773/**
d0bcabcd 774 * USB_DEVICE_VER - describe a specific usb device with a version range
1da177e4
LT
775 * @vend: the 16 bit USB Vendor ID
776 * @prod: the 16 bit USB Product ID
777 * @lo: the bcdDevice_lo value
778 * @hi: the bcdDevice_hi value
779 *
780 * This macro is used to create a struct usb_device_id that matches a
781 * specific device, with a version range.
782 */
969ab2ee 783#define USB_DEVICE_VER(vend, prod, lo, hi) \
b724ae77 784 .match_flags = USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION, \
969ab2ee
GKH
785 .idVendor = (vend), \
786 .idProduct = (prod), \
787 .bcdDevice_lo = (lo), \
788 .bcdDevice_hi = (hi)
1da177e4 789
f836ac80 790/**
d0bcabcd 791 * USB_DEVICE_INTERFACE_PROTOCOL - describe a usb device with a specific interface protocol
f836ac80
JK
792 * @vend: the 16 bit USB Vendor ID
793 * @prod: the 16 bit USB Product ID
794 * @pr: bInterfaceProtocol value
795 *
796 * This macro is used to create a struct usb_device_id that matches a
797 * specific interface protocol of devices.
798 */
969ab2ee
GKH
799#define USB_DEVICE_INTERFACE_PROTOCOL(vend, prod, pr) \
800 .match_flags = USB_DEVICE_ID_MATCH_DEVICE | \
801 USB_DEVICE_ID_MATCH_INT_PROTOCOL, \
f836ac80
JK
802 .idVendor = (vend), \
803 .idProduct = (prod), \
804 .bInterfaceProtocol = (pr)
805
81df2d59
BM
806/**
807 * USB_DEVICE_INTERFACE_NUMBER - describe a usb device with a specific interface number
808 * @vend: the 16 bit USB Vendor ID
809 * @prod: the 16 bit USB Product ID
810 * @num: bInterfaceNumber value
811 *
812 * This macro is used to create a struct usb_device_id that matches a
813 * specific interface number of devices.
814 */
815#define USB_DEVICE_INTERFACE_NUMBER(vend, prod, num) \
816 .match_flags = USB_DEVICE_ID_MATCH_DEVICE | \
817 USB_DEVICE_ID_MATCH_INT_NUMBER, \
818 .idVendor = (vend), \
819 .idProduct = (prod), \
820 .bInterfaceNumber = (num)
821
1da177e4
LT
822/**
823 * USB_DEVICE_INFO - macro used to describe a class of usb devices
824 * @cl: bDeviceClass value
825 * @sc: bDeviceSubClass value
826 * @pr: bDeviceProtocol value
827 *
828 * This macro is used to create a struct usb_device_id that matches a
829 * specific class of devices.
830 */
969ab2ee
GKH
831#define USB_DEVICE_INFO(cl, sc, pr) \
832 .match_flags = USB_DEVICE_ID_MATCH_DEV_INFO, \
833 .bDeviceClass = (cl), \
834 .bDeviceSubClass = (sc), \
835 .bDeviceProtocol = (pr)
1da177e4
LT
836
837/**
969ab2ee 838 * USB_INTERFACE_INFO - macro used to describe a class of usb interfaces
1da177e4
LT
839 * @cl: bInterfaceClass value
840 * @sc: bInterfaceSubClass value
841 * @pr: bInterfaceProtocol value
842 *
843 * This macro is used to create a struct usb_device_id that matches a
844 * specific class of interfaces.
845 */
969ab2ee
GKH
846#define USB_INTERFACE_INFO(cl, sc, pr) \
847 .match_flags = USB_DEVICE_ID_MATCH_INT_INFO, \
848 .bInterfaceClass = (cl), \
849 .bInterfaceSubClass = (sc), \
850 .bInterfaceProtocol = (pr)
8538f96a
DD
851
852/**
d0bcabcd 853 * USB_DEVICE_AND_INTERFACE_INFO - describe a specific usb device with a class of usb interfaces
8538f96a
DD
854 * @vend: the 16 bit USB Vendor ID
855 * @prod: the 16 bit USB Product ID
856 * @cl: bInterfaceClass value
857 * @sc: bInterfaceSubClass value
858 * @pr: bInterfaceProtocol value
859 *
860 * This macro is used to create a struct usb_device_id that matches a
861 * specific device with a specific class of interfaces.
862 *
863 * This is especially useful when explicitly matching devices that have
864 * vendor specific bDeviceClass values, but standards-compliant interfaces.
865 */
969ab2ee 866#define USB_DEVICE_AND_INTERFACE_INFO(vend, prod, cl, sc, pr) \
8538f96a
DD
867 .match_flags = USB_DEVICE_ID_MATCH_INT_INFO \
868 | USB_DEVICE_ID_MATCH_DEVICE, \
969ab2ee
GKH
869 .idVendor = (vend), \
870 .idProduct = (prod), \
8538f96a 871 .bInterfaceClass = (cl), \
969ab2ee
GKH
872 .bInterfaceSubClass = (sc), \
873 .bInterfaceProtocol = (pr)
1da177e4 874
d81a5d19
GP
875/**
876 * USB_VENDOR_AND_INTERFACE_INFO - describe a specific usb vendor with a class of usb interfaces
877 * @vend: the 16 bit USB Vendor ID
878 * @cl: bInterfaceClass value
879 * @sc: bInterfaceSubClass value
880 * @pr: bInterfaceProtocol value
881 *
882 * This macro is used to create a struct usb_device_id that matches a
883 * specific vendor with a specific class of interfaces.
884 *
885 * This is especially useful when explicitly matching devices that have
886 * vendor specific bDeviceClass values, but standards-compliant interfaces.
887 */
888#define USB_VENDOR_AND_INTERFACE_INFO(vend, cl, sc, pr) \
889 .match_flags = USB_DEVICE_ID_MATCH_INT_INFO \
890 | USB_DEVICE_ID_MATCH_VENDOR, \
891 .idVendor = (vend), \
892 .bInterfaceClass = (cl), \
893 .bInterfaceSubClass = (sc), \
894 .bInterfaceProtocol = (pr)
895
b724ae77 896/* ----------------------------------------------------------------------- */
1da177e4 897
93bacefc 898/* Stuff for dynamic usb ids */
733260ff
GKH
899struct usb_dynids {
900 spinlock_t lock;
901 struct list_head list;
902};
903
93bacefc
GKH
904struct usb_dynid {
905 struct list_head node;
906 struct usb_device_id id;
907};
908
909extern ssize_t usb_store_new_id(struct usb_dynids *dynids,
910 struct device_driver *driver,
911 const char *buf, size_t count);
912
ef206f3f
BM
913extern ssize_t usb_show_dynids(struct usb_dynids *dynids, char *buf);
914
1da177e4 915/**
8bb54ab5
AS
916 * struct usbdrv_wrap - wrapper for driver-model structure
917 * @driver: The driver-model core driver structure.
918 * @for_devices: Non-zero for device drivers, 0 for interface drivers.
919 */
920struct usbdrv_wrap {
921 struct device_driver driver;
922 int for_devices;
923};
924
925/**
926 * struct usb_driver - identifies USB interface driver to usbcore
1da177e4
LT
927 * @name: The driver name should be unique among USB drivers,
928 * and should normally be the same as the module name.
929 * @probe: Called to see if the driver is willing to manage a particular
930 * interface on a device. If it is, probe returns zero and uses
7ef4f060 931 * usb_set_intfdata() to associate driver-specific data with the
1da177e4
LT
932 * interface. It may also use usb_set_interface() to specify the
933 * appropriate altsetting. If unwilling to manage the interface,
25985edc 934 * return -ENODEV, if genuine IO errors occurred, an appropriate
7ef4f060 935 * negative errno value.
1da177e4
LT
936 * @disconnect: Called when the interface is no longer accessible, usually
937 * because its device has been (or is being) disconnected or the
938 * driver module is being unloaded.
a91be2ac 939 * @unlocked_ioctl: Used for drivers that want to talk to userspace through
1da177e4
LT
940 * the "usbfs" filesystem. This lets devices provide ways to
941 * expose information to user space regardless of where they
942 * do (or don't) show up otherwise in the filesystem.
943 * @suspend: Called when the device is going to be suspended by the system.
944 * @resume: Called when the device is being resumed by the system.
f07600cf
AS
945 * @reset_resume: Called when the suspended device has been reset instead
946 * of being resumed.
6498d9db
AS
947 * @pre_reset: Called by usb_reset_device() when the device is about to be
948 * reset. This routine must not return until the driver has no active
949 * URBs for the device, and no more URBs may be submitted until the
950 * post_reset method is called.
742120c6 951 * @post_reset: Called by usb_reset_device() after the device
7ef4f060 952 * has been reset
1da177e4
LT
953 * @id_table: USB drivers use ID table to support hotplugging.
954 * Export this with MODULE_DEVICE_TABLE(usb,...). This must be set
955 * or your driver's probe function will never get called.
733260ff
GKH
956 * @dynids: used internally to hold the list of dynamically added device
957 * ids for this driver.
8bb54ab5 958 * @drvwrap: Driver-model core structure wrapper.
ba9dc657
GKH
959 * @no_dynamic_id: if set to 1, the USB core will not allow dynamic ids to be
960 * added to this driver by preventing the sysfs file from being created.
645daaab
AS
961 * @supports_autosuspend: if set to 0, the USB core will not allow autosuspend
962 * for interfaces bound to this driver.
9da82bd4
AS
963 * @soft_unbind: if set to 1, the USB core will not kill URBs and disable
964 * endpoints before calling the driver's disconnect method.
8afa408c
SS
965 * @disable_hub_initiated_lpm: if set to 0, the USB core will not allow hubs
966 * to initiate lower power link state transitions when an idle timeout
967 * occurs. Device-initiated USB 3.0 link PM will still be allowed.
1da177e4 968 *
8bb54ab5
AS
969 * USB interface drivers must provide a name, probe() and disconnect()
970 * methods, and an id_table. Other driver fields are optional.
1da177e4
LT
971 *
972 * The id_table is used in hotplugging. It holds a set of descriptors,
973 * and specialized data may be associated with each entry. That table
974 * is used by both user and kernel mode hotplugging support.
975 *
976 * The probe() and disconnect() methods are called in a context where
977 * they can sleep, but they should avoid abusing the privilege. Most
978 * work to connect to a device should be done when the device is opened,
979 * and undone at the last close. The disconnect code needs to address
980 * concurrency issues with respect to open() and close() methods, as
981 * well as forcing all pending I/O requests to complete (by unlinking
982 * them as necessary, and blocking until the unlinks complete).
983 */
984struct usb_driver {
1da177e4
LT
985 const char *name;
986
987 int (*probe) (struct usb_interface *intf,
988 const struct usb_device_id *id);
989
990 void (*disconnect) (struct usb_interface *intf);
991
c532b29a 992 int (*unlocked_ioctl) (struct usb_interface *intf, unsigned int code,
b724ae77 993 void *buf);
1da177e4 994
27d72e85 995 int (*suspend) (struct usb_interface *intf, pm_message_t message);
1da177e4 996 int (*resume) (struct usb_interface *intf);
f07600cf 997 int (*reset_resume)(struct usb_interface *intf);
1da177e4 998
f07600cf
AS
999 int (*pre_reset)(struct usb_interface *intf);
1000 int (*post_reset)(struct usb_interface *intf);
79efa097 1001
1da177e4
LT
1002 const struct usb_device_id *id_table;
1003
733260ff 1004 struct usb_dynids dynids;
8bb54ab5 1005 struct usbdrv_wrap drvwrap;
ba9dc657 1006 unsigned int no_dynamic_id:1;
645daaab 1007 unsigned int supports_autosuspend:1;
8afa408c 1008 unsigned int disable_hub_initiated_lpm:1;
9da82bd4 1009 unsigned int soft_unbind:1;
1da177e4 1010};
8bb54ab5
AS
1011#define to_usb_driver(d) container_of(d, struct usb_driver, drvwrap.driver)
1012
1013/**
1014 * struct usb_device_driver - identifies USB device driver to usbcore
1015 * @name: The driver name should be unique among USB drivers,
1016 * and should normally be the same as the module name.
1017 * @probe: Called to see if the driver is willing to manage a particular
1018 * device. If it is, probe returns zero and uses dev_set_drvdata()
1019 * to associate driver-specific data with the device. If unwilling
1020 * to manage the device, return a negative errno value.
1021 * @disconnect: Called when the device is no longer accessible, usually
1022 * because it has been (or is being) disconnected or the driver's
1023 * module is being unloaded.
1024 * @suspend: Called when the device is going to be suspended by the system.
1025 * @resume: Called when the device is being resumed by the system.
1026 * @drvwrap: Driver-model core structure wrapper.
645daaab
AS
1027 * @supports_autosuspend: if set to 0, the USB core will not allow autosuspend
1028 * for devices bound to this driver.
8bb54ab5
AS
1029 *
1030 * USB drivers must provide all the fields listed above except drvwrap.
1031 */
1032struct usb_device_driver {
1033 const char *name;
1034
1035 int (*probe) (struct usb_device *udev);
1036 void (*disconnect) (struct usb_device *udev);
1037
1038 int (*suspend) (struct usb_device *udev, pm_message_t message);
65bfd296 1039 int (*resume) (struct usb_device *udev, pm_message_t message);
8bb54ab5 1040 struct usbdrv_wrap drvwrap;
645daaab 1041 unsigned int supports_autosuspend:1;
8bb54ab5
AS
1042};
1043#define to_usb_device_driver(d) container_of(d, struct usb_device_driver, \
1044 drvwrap.driver)
1da177e4
LT
1045
1046extern struct bus_type usb_bus_type;
1047
1048/**
1049 * struct usb_class_driver - identifies a USB driver that wants to use the USB major number
d6e5bcf4 1050 * @name: the usb class device name for this driver. Will show up in sysfs.
e454cea2 1051 * @devnode: Callback to provide a naming hint for a possible
e376bbbb 1052 * device node to create.
1da177e4 1053 * @fops: pointer to the struct file_operations of this driver.
1da177e4
LT
1054 * @minor_base: the start of the minor range for this driver.
1055 *
1056 * This structure is used for the usb_register_dev() and
1057 * usb_unregister_dev() functions, to consolidate a number of the
1058 * parameters used for them.
1059 */
1060struct usb_class_driver {
1061 char *name;
2c9ede55 1062 char *(*devnode)(struct device *dev, umode_t *mode);
99ac48f5 1063 const struct file_operations *fops;
d6e5bcf4 1064 int minor_base;
1da177e4
LT
1065};
1066
1067/*
1068 * use these in module_init()/module_exit()
1069 * and don't forget MODULE_DEVICE_TABLE(usb, ...)
1070 */
80f745fb
GKH
1071extern int usb_register_driver(struct usb_driver *, struct module *,
1072 const char *);
eb5589a8
PG
1073
1074/* use a define to avoid include chaining to get THIS_MODULE & friends */
1075#define usb_register(driver) \
1076 usb_register_driver(driver, THIS_MODULE, KBUILD_MODNAME)
1077
1da177e4
LT
1078extern void usb_deregister(struct usb_driver *);
1079
f3a6a4b6
GKH
1080/**
1081 * module_usb_driver() - Helper macro for registering a USB driver
1082 * @__usb_driver: usb_driver struct
1083 *
1084 * Helper macro for USB drivers which do not do anything special in module
1085 * init/exit. This eliminates a lot of boilerplate. Each module may only
1086 * use this macro once, and calling it replaces module_init() and module_exit()
1087 */
1088#define module_usb_driver(__usb_driver) \
1089 module_driver(__usb_driver, usb_register, \
1090 usb_deregister)
1091
8bb54ab5
AS
1092extern int usb_register_device_driver(struct usb_device_driver *,
1093 struct module *);
1094extern void usb_deregister_device_driver(struct usb_device_driver *);
1095
1da177e4
LT
1096extern int usb_register_dev(struct usb_interface *intf,
1097 struct usb_class_driver *class_driver);
1098extern void usb_deregister_dev(struct usb_interface *intf,
1099 struct usb_class_driver *class_driver);
1100
1101extern int usb_disabled(void);
1102
b724ae77 1103/* ----------------------------------------------------------------------- */
1da177e4
LT
1104
1105/*
1106 * URB support, for asynchronous request completions
1107 */
1108
1109/*
1110 * urb->transfer_flags:
fea34091
AS
1111 *
1112 * Note: URB_DIR_IN/OUT is automatically set in usb_submit_urb().
1da177e4
LT
1113 */
1114#define URB_SHORT_NOT_OK 0x0001 /* report short reads as errors */
b724ae77
AS
1115#define URB_ISO_ASAP 0x0002 /* iso-only, urb->start_frame
1116 * ignored */
1da177e4 1117#define URB_NO_TRANSFER_DMA_MAP 0x0004 /* urb->transfer_dma valid on submit */
1da177e4 1118#define URB_NO_FSBR 0x0020 /* UHCI-specific */
b724ae77
AS
1119#define URB_ZERO_PACKET 0x0040 /* Finish bulk OUT with short packet */
1120#define URB_NO_INTERRUPT 0x0080 /* HINT: no non-error interrupt
1121 * needed */
8b3b01c8 1122#define URB_FREE_BUFFER 0x0100 /* Free transfer buffer with the URB */
1da177e4 1123
ff9c895f 1124/* The following flags are used internally by usbcore and HCDs */
fea34091
AS
1125#define URB_DIR_IN 0x0200 /* Transfer from device to host */
1126#define URB_DIR_OUT 0
1127#define URB_DIR_MASK URB_DIR_IN
1128
ff9c895f
AS
1129#define URB_DMA_MAP_SINGLE 0x00010000 /* Non-scatter-gather mapping */
1130#define URB_DMA_MAP_PAGE 0x00020000 /* HCD-unsupported S-G */
1131#define URB_DMA_MAP_SG 0x00040000 /* HCD-supported S-G */
1132#define URB_MAP_LOCAL 0x00080000 /* HCD-local-memory mapping */
1133#define URB_SETUP_MAP_SINGLE 0x00100000 /* Setup packet DMA mapped */
1134#define URB_SETUP_MAP_LOCAL 0x00200000 /* HCD-local setup packet */
1135#define URB_DMA_SG_COMBINED 0x00400000 /* S-G entries were combined */
2694a48d 1136#define URB_ALIGNED_TEMP_BUFFER 0x00800000 /* Temp buffer was alloc'd */
ff9c895f 1137
1da177e4
LT
1138struct usb_iso_packet_descriptor {
1139 unsigned int offset;
1140 unsigned int length; /* expected length */
1141 unsigned int actual_length;
d1bbb600 1142 int status;
1da177e4
LT
1143};
1144
1145struct urb;
1da177e4 1146
51a2f077
ON
1147struct usb_anchor {
1148 struct list_head urb_list;
1149 wait_queue_head_t wait;
1150 spinlock_t lock;
6a2839be 1151 unsigned int poisoned:1;
51a2f077
ON
1152};
1153
1154static inline void init_usb_anchor(struct usb_anchor *anchor)
1155{
1156 INIT_LIST_HEAD(&anchor->urb_list);
1157 init_waitqueue_head(&anchor->wait);
1158 spin_lock_init(&anchor->lock);
1159}
1160
7d12e780 1161typedef void (*usb_complete_t)(struct urb *);
1da177e4
LT
1162
1163/**
1164 * struct urb - USB Request Block
1165 * @urb_list: For use by current owner of the URB.
51a2f077
ON
1166 * @anchor_list: membership in the list of an anchor
1167 * @anchor: to anchor URBs to a common mooring
5b653c79
AS
1168 * @ep: Points to the endpoint's data structure. Will eventually
1169 * replace @pipe.
1da177e4
LT
1170 * @pipe: Holds endpoint number, direction, type, and more.
1171 * Create these values with the eight macros available;
1172 * usb_{snd,rcv}TYPEpipe(dev,endpoint), where the TYPE is "ctrl"
1173 * (control), "bulk", "int" (interrupt), or "iso" (isochronous).
1174 * For example usb_sndbulkpipe() or usb_rcvintpipe(). Endpoint
1175 * numbers range from zero to fifteen. Note that "in" endpoint two
1176 * is a different endpoint (and pipe) from "out" endpoint two.
1177 * The current configuration controls the existence, type, and
1178 * maximum packet size of any given endpoint.
c6ba1c2a 1179 * @stream_id: the endpoint's stream ID for bulk streams
1da177e4
LT
1180 * @dev: Identifies the USB device to perform the request.
1181 * @status: This is read in non-iso completion functions to get the
1182 * status of the particular request. ISO requests only use it
1183 * to tell whether the URB was unlinked; detailed status for
1184 * each frame is in the fields of the iso_frame-desc.
1185 * @transfer_flags: A variety of flags may be used to affect how URB
1186 * submission, unlinking, or operation are handled. Different
1187 * kinds of URB can use different flags.
4e9e9200
PZ
1188 * @transfer_buffer: This identifies the buffer to (or from) which the I/O
1189 * request will be performed unless URB_NO_TRANSFER_DMA_MAP is set
1190 * (however, do not leave garbage in transfer_buffer even then).
1191 * This buffer must be suitable for DMA; allocate it with
1da177e4
LT
1192 * kmalloc() or equivalent. For transfers to "in" endpoints, contents
1193 * of this buffer will be modified. This buffer is used for the data
1194 * stage of control transfers.
1195 * @transfer_dma: When transfer_flags includes URB_NO_TRANSFER_DMA_MAP,
1196 * the device driver is saying that it provided this DMA address,
1197 * which the host controller driver should use in preference to the
1198 * transfer_buffer.
e376bbbb 1199 * @sg: scatter gather buffer list
4d922612 1200 * @num_mapped_sgs: (internal) number of mapped sg entries
e376bbbb 1201 * @num_sgs: number of entries in the sg list
1da177e4
LT
1202 * @transfer_buffer_length: How big is transfer_buffer. The transfer may
1203 * be broken up into chunks according to the current maximum packet
1204 * size for the endpoint, which is a function of the configuration
1205 * and is encoded in the pipe. When the length is zero, neither
1206 * transfer_buffer nor transfer_dma is used.
1207 * @actual_length: This is read in non-iso completion functions, and
1208 * it tells how many bytes (out of transfer_buffer_length) were
1209 * transferred. It will normally be the same as requested, unless
1210 * either an error was reported or a short read was performed.
1211 * The URB_SHORT_NOT_OK transfer flag may be used to make such
969ab2ee 1212 * short reads be reported as errors.
1da177e4
LT
1213 * @setup_packet: Only used for control transfers, this points to eight bytes
1214 * of setup data. Control transfers always start by sending this data
1215 * to the device. Then transfer_buffer is read or written, if needed.
85bcb5ee
AS
1216 * @setup_dma: DMA pointer for the setup packet. The caller must not use
1217 * this field; setup_packet must point to a valid buffer.
1da177e4
LT
1218 * @start_frame: Returns the initial frame for isochronous transfers.
1219 * @number_of_packets: Lists the number of ISO transfer buffers.
1220 * @interval: Specifies the polling interval for interrupt or isochronous
411c9403 1221 * transfers. The units are frames (milliseconds) for full and low
f09a15e6
MW
1222 * speed devices, and microframes (1/8 millisecond) for highspeed
1223 * and SuperSpeed devices.
1da177e4
LT
1224 * @error_count: Returns the number of ISO transfers that reported errors.
1225 * @context: For use in completion functions. This normally points to
1226 * request-specific driver context.
1227 * @complete: Completion handler. This URB is passed as the parameter to the
1228 * completion function. The completion function may then do what
1229 * it likes with the URB, including resubmitting or freeing it.
969ab2ee 1230 * @iso_frame_desc: Used to provide arrays of ISO transfer buffers and to
1da177e4
LT
1231 * collect the transfer status for each buffer.
1232 *
1233 * This structure identifies USB transfer requests. URBs must be allocated by
1234 * calling usb_alloc_urb() and freed with a call to usb_free_urb().
1235 * Initialization may be done using various usb_fill_*_urb() functions. URBs
1236 * are submitted using usb_submit_urb(), and pending requests may be canceled
1237 * using usb_unlink_urb() or usb_kill_urb().
1238 *
1239 * Data Transfer Buffers:
1240 *
1241 * Normally drivers provide I/O buffers allocated with kmalloc() or otherwise
1242 * taken from the general page pool. That is provided by transfer_buffer
1243 * (control requests also use setup_packet), and host controller drivers
1244 * perform a dma mapping (and unmapping) for each buffer transferred. Those
1245 * mapping operations can be expensive on some platforms (perhaps using a dma
1246 * bounce buffer or talking to an IOMMU),
1247 * although they're cheap on commodity x86 and ppc hardware.
1248 *
85bcb5ee
AS
1249 * Alternatively, drivers may pass the URB_NO_TRANSFER_DMA_MAP transfer flag,
1250 * which tells the host controller driver that no such mapping is needed for
1251 * the transfer_buffer since
1da177e4 1252 * the device driver is DMA-aware. For example, a device driver might
073900a2 1253 * allocate a DMA buffer with usb_alloc_coherent() or call usb_buffer_map().
85bcb5ee
AS
1254 * When this transfer flag is provided, host controller drivers will
1255 * attempt to use the dma address found in the transfer_dma
1256 * field rather than determining a dma address themselves.
4e9e9200
PZ
1257 *
1258 * Note that transfer_buffer must still be set if the controller
1259 * does not support DMA (as indicated by bus.uses_dma) and when talking
1260 * to root hub. If you have to trasfer between highmem zone and the device
1261 * on such controller, create a bounce buffer or bail out with an error.
1262 * If transfer_buffer cannot be set (is in highmem) and the controller is DMA
1263 * capable, assign NULL to it, so that usbmon knows not to use the value.
1264 * The setup_packet must always be set, so it cannot be located in highmem.
1da177e4
LT
1265 *
1266 * Initialization:
1267 *
1268 * All URBs submitted must initialize the dev, pipe, transfer_flags (may be
b375a049 1269 * zero), and complete fields. All URBs must also initialize
1da177e4
LT
1270 * transfer_buffer and transfer_buffer_length. They may provide the
1271 * URB_SHORT_NOT_OK transfer flag, indicating that short reads are
1272 * to be treated as errors; that flag is invalid for write requests.
1273 *
1274 * Bulk URBs may
1275 * use the URB_ZERO_PACKET transfer flag, indicating that bulk OUT transfers
1276 * should always terminate with a short packet, even if it means adding an
1277 * extra zero length packet.
1278 *
85bcb5ee
AS
1279 * Control URBs must provide a valid pointer in the setup_packet field.
1280 * Unlike the transfer_buffer, the setup_packet may not be mapped for DMA
1281 * beforehand.
1da177e4
LT
1282 *
1283 * Interrupt URBs must provide an interval, saying how often (in milliseconds
1284 * or, for highspeed devices, 125 microsecond units)
1285 * to poll for transfers. After the URB has been submitted, the interval
1286 * field reflects how the transfer was actually scheduled.
1287 * The polling interval may be more frequent than requested.
1288 * For example, some controllers have a maximum interval of 32 milliseconds,
1289 * while others support intervals of up to 1024 milliseconds.
1290 * Isochronous URBs also have transfer intervals. (Note that for isochronous
1291 * endpoints, as well as high speed interrupt endpoints, the encoding of
1292 * the transfer interval in the endpoint descriptor is logarithmic.
1293 * Device drivers must convert that value to linear units themselves.)
1294 *
1295 * Isochronous URBs normally use the URB_ISO_ASAP transfer flag, telling
1296 * the host controller to schedule the transfer as soon as bandwidth
1297 * utilization allows, and then set start_frame to reflect the actual frame
1298 * selected during submission. Otherwise drivers must specify the start_frame
1299 * and handle the case where the transfer can't begin then. However, drivers
1300 * won't know how bandwidth is currently allocated, and while they can
1301 * find the current frame using usb_get_current_frame_number () they can't
1302 * know the range for that frame number. (Ranges for frame counter values
1303 * are HC-specific, and can go from 256 to 65536 frames from "now".)
1304 *
1305 * Isochronous URBs have a different data transfer model, in part because
1306 * the quality of service is only "best effort". Callers provide specially
1307 * allocated URBs, with number_of_packets worth of iso_frame_desc structures
1308 * at the end. Each such packet is an individual ISO transfer. Isochronous
1309 * URBs are normally queued, submitted by drivers to arrange that
1310 * transfers are at least double buffered, and then explicitly resubmitted
1311 * in completion handlers, so
1312 * that data (such as audio or video) streams at as constant a rate as the
1313 * host controller scheduler can support.
1314 *
1315 * Completion Callbacks:
1316 *
1317 * The completion callback is made in_interrupt(), and one of the first
1318 * things that a completion handler should do is check the status field.
1319 * The status field is provided for all URBs. It is used to report
1320 * unlinked URBs, and status for all non-ISO transfers. It should not
1321 * be examined before the URB is returned to the completion handler.
1322 *
1323 * The context field is normally used to link URBs back to the relevant
1324 * driver or request state.
1325 *
1326 * When the completion callback is invoked for non-isochronous URBs, the
1327 * actual_length field tells how many bytes were transferred. This field
1328 * is updated even when the URB terminated with an error or was unlinked.
1329 *
1330 * ISO transfer status is reported in the status and actual_length fields
1331 * of the iso_frame_desc array, and the number of errors is reported in
1332 * error_count. Completion callbacks for ISO transfers will normally
1333 * (re)submit URBs to ensure a constant transfer rate.
719df469
RK
1334 *
1335 * Note that even fields marked "public" should not be touched by the driver
1336 * when the urb is owned by the hcd, that is, since the call to
1337 * usb_submit_urb() till the entry into the completion routine.
1da177e4 1338 */
969ab2ee 1339struct urb {
aeec46b9 1340 /* private: usb core and host controller only fields in the urb */
1da177e4 1341 struct kref kref; /* reference count of the URB */
1da177e4 1342 void *hcpriv; /* private data for host controller */
1da177e4 1343 atomic_t use_count; /* concurrent submissions counter */
49367d8f 1344 atomic_t reject; /* submissions will fail */
eb231054 1345 int unlinked; /* unlink error code */
1da177e4 1346
aeec46b9 1347 /* public: documented fields in the urb that can be used by drivers */
b724ae77
AS
1348 struct list_head urb_list; /* list head for use by the urb's
1349 * current owner */
969ab2ee 1350 struct list_head anchor_list; /* the URB may be anchored */
51a2f077 1351 struct usb_anchor *anchor;
812219ab 1352 struct usb_device *dev; /* (in) pointer to associated device */
969ab2ee 1353 struct usb_host_endpoint *ep; /* (internal) pointer to endpoint */
1da177e4 1354 unsigned int pipe; /* (in) pipe information */
94af1220 1355 unsigned int stream_id; /* (in) stream ID */
1da177e4
LT
1356 int status; /* (return) non-ISO status */
1357 unsigned int transfer_flags; /* (in) URB_SHORT_NOT_OK | ...*/
1358 void *transfer_buffer; /* (in) associated data buffer */
1359 dma_addr_t transfer_dma; /* (in) dma addr for transfer_buffer */
910f8d0c 1360 struct scatterlist *sg; /* (in) scatter gather buffer list */
bc677d5b 1361 int num_mapped_sgs; /* (internal) mapped sg entries */
e04748e3 1362 int num_sgs; /* (in) number of entries in the sg list */
16e2e5f6 1363 u32 transfer_buffer_length; /* (in) data buffer length */
8c209e67 1364 u32 actual_length; /* (return) actual transfer length */
1da177e4
LT
1365 unsigned char *setup_packet; /* (in) setup packet (control only) */
1366 dma_addr_t setup_dma; /* (in) dma addr for setup_packet */
1367 int start_frame; /* (modify) start frame (ISO) */
1368 int number_of_packets; /* (in) number of ISO packets */
b724ae77
AS
1369 int interval; /* (modify) transfer interval
1370 * (INT/ISO) */
1da177e4
LT
1371 int error_count; /* (return) number of ISO errors */
1372 void *context; /* (in) context for completion */
1373 usb_complete_t complete; /* (in) completion routine */
b724ae77
AS
1374 struct usb_iso_packet_descriptor iso_frame_desc[0];
1375 /* (in) ISO ONLY */
1da177e4
LT
1376};
1377
b724ae77 1378/* ----------------------------------------------------------------------- */
1da177e4
LT
1379
1380/**
1381 * usb_fill_control_urb - initializes a control urb
1382 * @urb: pointer to the urb to initialize.
1383 * @dev: pointer to the struct usb_device for this urb.
1384 * @pipe: the endpoint pipe
1385 * @setup_packet: pointer to the setup_packet buffer
1386 * @transfer_buffer: pointer to the transfer buffer
1387 * @buffer_length: length of the transfer buffer
3d5b2510 1388 * @complete_fn: pointer to the usb_complete_t function
1da177e4
LT
1389 * @context: what to set the urb context to.
1390 *
1391 * Initializes a control urb with the proper information needed to submit
1392 * it to a device.
1393 */
969ab2ee
GKH
1394static inline void usb_fill_control_urb(struct urb *urb,
1395 struct usb_device *dev,
1396 unsigned int pipe,
1397 unsigned char *setup_packet,
1398 void *transfer_buffer,
1399 int buffer_length,
1400 usb_complete_t complete_fn,
1401 void *context)
1da177e4 1402{
1da177e4
LT
1403 urb->dev = dev;
1404 urb->pipe = pipe;
1405 urb->setup_packet = setup_packet;
1406 urb->transfer_buffer = transfer_buffer;
1407 urb->transfer_buffer_length = buffer_length;
3d5b2510 1408 urb->complete = complete_fn;
1da177e4
LT
1409 urb->context = context;
1410}
1411
1412/**
1413 * usb_fill_bulk_urb - macro to help initialize a bulk urb
1414 * @urb: pointer to the urb to initialize.
1415 * @dev: pointer to the struct usb_device for this urb.
1416 * @pipe: the endpoint pipe
1417 * @transfer_buffer: pointer to the transfer buffer
1418 * @buffer_length: length of the transfer buffer
3d5b2510 1419 * @complete_fn: pointer to the usb_complete_t function
1da177e4
LT
1420 * @context: what to set the urb context to.
1421 *
1422 * Initializes a bulk urb with the proper information needed to submit it
1423 * to a device.
1424 */
969ab2ee
GKH
1425static inline void usb_fill_bulk_urb(struct urb *urb,
1426 struct usb_device *dev,
1427 unsigned int pipe,
1428 void *transfer_buffer,
1429 int buffer_length,
1430 usb_complete_t complete_fn,
1431 void *context)
1da177e4 1432{
1da177e4
LT
1433 urb->dev = dev;
1434 urb->pipe = pipe;
1435 urb->transfer_buffer = transfer_buffer;
1436 urb->transfer_buffer_length = buffer_length;
3d5b2510 1437 urb->complete = complete_fn;
1da177e4
LT
1438 urb->context = context;
1439}
1440
1441/**
1442 * usb_fill_int_urb - macro to help initialize a interrupt urb
1443 * @urb: pointer to the urb to initialize.
1444 * @dev: pointer to the struct usb_device for this urb.
1445 * @pipe: the endpoint pipe
1446 * @transfer_buffer: pointer to the transfer buffer
1447 * @buffer_length: length of the transfer buffer
3d5b2510 1448 * @complete_fn: pointer to the usb_complete_t function
1da177e4
LT
1449 * @context: what to set the urb context to.
1450 * @interval: what to set the urb interval to, encoded like
1451 * the endpoint descriptor's bInterval value.
1452 *
1453 * Initializes a interrupt urb with the proper information needed to submit
1454 * it to a device.
f09a15e6
MW
1455 *
1456 * Note that High Speed and SuperSpeed interrupt endpoints use a logarithmic
1457 * encoding of the endpoint interval, and express polling intervals in
1458 * microframes (eight per millisecond) rather than in frames (one per
1459 * millisecond).
1460 *
1461 * Wireless USB also uses the logarithmic encoding, but specifies it in units of
1462 * 128us instead of 125us. For Wireless USB devices, the interval is passed
1463 * through to the host controller, rather than being translated into microframe
1464 * units.
1da177e4 1465 */
969ab2ee
GKH
1466static inline void usb_fill_int_urb(struct urb *urb,
1467 struct usb_device *dev,
1468 unsigned int pipe,
1469 void *transfer_buffer,
1470 int buffer_length,
1471 usb_complete_t complete_fn,
1472 void *context,
1473 int interval)
1da177e4 1474{
1da177e4
LT
1475 urb->dev = dev;
1476 urb->pipe = pipe;
1477 urb->transfer_buffer = transfer_buffer;
1478 urb->transfer_buffer_length = buffer_length;
3d5b2510 1479 urb->complete = complete_fn;
1da177e4 1480 urb->context = context;
f09a15e6 1481 if (dev->speed == USB_SPEED_HIGH || dev->speed == USB_SPEED_SUPER)
1da177e4
LT
1482 urb->interval = 1 << (interval - 1);
1483 else
1484 urb->interval = interval;
1485 urb->start_frame = -1;
1486}
1487
1488extern void usb_init_urb(struct urb *urb);
55016f10 1489extern struct urb *usb_alloc_urb(int iso_packets, gfp_t mem_flags);
1da177e4
LT
1490extern void usb_free_urb(struct urb *urb);
1491#define usb_put_urb usb_free_urb
1492extern struct urb *usb_get_urb(struct urb *urb);
55016f10 1493extern int usb_submit_urb(struct urb *urb, gfp_t mem_flags);
1da177e4
LT
1494extern int usb_unlink_urb(struct urb *urb);
1495extern void usb_kill_urb(struct urb *urb);
55b447bf
ON
1496extern void usb_poison_urb(struct urb *urb);
1497extern void usb_unpoison_urb(struct urb *urb);
8815bb09 1498extern void usb_block_urb(struct urb *urb);
51a2f077 1499extern void usb_kill_anchored_urbs(struct usb_anchor *anchor);
6a2839be 1500extern void usb_poison_anchored_urbs(struct usb_anchor *anchor);
856395d6 1501extern void usb_unpoison_anchored_urbs(struct usb_anchor *anchor);
eda76959 1502extern void usb_unlink_anchored_urbs(struct usb_anchor *anchor);
51a2f077
ON
1503extern void usb_anchor_urb(struct urb *urb, struct usb_anchor *anchor);
1504extern void usb_unanchor_urb(struct urb *urb);
1505extern int usb_wait_anchor_empty_timeout(struct usb_anchor *anchor,
1506 unsigned int timeout);
19876252
ON
1507extern struct urb *usb_get_from_anchor(struct usb_anchor *anchor);
1508extern void usb_scuttle_anchored_urbs(struct usb_anchor *anchor);
1509extern int usb_anchor_empty(struct usb_anchor *anchor);
1da177e4 1510
8815bb09
ON
1511#define usb_unblock_urb usb_unpoison_urb
1512
fea34091
AS
1513/**
1514 * usb_urb_dir_in - check if an URB describes an IN transfer
1515 * @urb: URB to be checked
1516 *
1517 * Returns 1 if @urb describes an IN transfer (device-to-host),
1518 * otherwise 0.
1519 */
1520static inline int usb_urb_dir_in(struct urb *urb)
1521{
d617bc83 1522 return (urb->transfer_flags & URB_DIR_MASK) == URB_DIR_IN;
fea34091
AS
1523}
1524
1525/**
1526 * usb_urb_dir_out - check if an URB describes an OUT transfer
1527 * @urb: URB to be checked
1528 *
1529 * Returns 1 if @urb describes an OUT transfer (host-to-device),
1530 * otherwise 0.
1531 */
1532static inline int usb_urb_dir_out(struct urb *urb)
1533{
1534 return (urb->transfer_flags & URB_DIR_MASK) == URB_DIR_OUT;
1535}
1536
073900a2 1537void *usb_alloc_coherent(struct usb_device *dev, size_t size,
55016f10 1538 gfp_t mem_flags, dma_addr_t *dma);
073900a2 1539void usb_free_coherent(struct usb_device *dev, size_t size,
1da177e4
LT
1540 void *addr, dma_addr_t dma);
1541
1542#if 0
969ab2ee
GKH
1543struct urb *usb_buffer_map(struct urb *urb);
1544void usb_buffer_dmasync(struct urb *urb);
1545void usb_buffer_unmap(struct urb *urb);
1da177e4
LT
1546#endif
1547
1548struct scatterlist;
5e60a161 1549int usb_buffer_map_sg(const struct usb_device *dev, int is_in,
095bc335 1550 struct scatterlist *sg, int nents);
1da177e4 1551#if 0
5e60a161 1552void usb_buffer_dmasync_sg(const struct usb_device *dev, int is_in,
095bc335 1553 struct scatterlist *sg, int n_hw_ents);
1da177e4 1554#endif
5e60a161 1555void usb_buffer_unmap_sg(const struct usb_device *dev, int is_in,
095bc335 1556 struct scatterlist *sg, int n_hw_ents);
1da177e4
LT
1557
1558/*-------------------------------------------------------------------*
1559 * SYNCHRONOUS CALL SUPPORT *
1560 *-------------------------------------------------------------------*/
1561
1562extern int usb_control_msg(struct usb_device *dev, unsigned int pipe,
1563 __u8 request, __u8 requesttype, __u16 value, __u16 index,
1564 void *data, __u16 size, int timeout);
782a7a63
GKH
1565extern int usb_interrupt_msg(struct usb_device *usb_dev, unsigned int pipe,
1566 void *data, int len, int *actual_length, int timeout);
1da177e4
LT
1567extern int usb_bulk_msg(struct usb_device *usb_dev, unsigned int pipe,
1568 void *data, int len, int *actual_length,
1569 int timeout);
1570
1da177e4
LT
1571/* wrappers around usb_control_msg() for the most common standard requests */
1572extern int usb_get_descriptor(struct usb_device *dev, unsigned char desctype,
1573 unsigned char descindex, void *buf, int size);
1574extern int usb_get_status(struct usb_device *dev,
1575 int type, int target, void *data);
1da177e4
LT
1576extern int usb_string(struct usb_device *dev, int index,
1577 char *buf, size_t size);
1578
1579/* wrappers that also update important state inside usbcore */
1580extern int usb_clear_halt(struct usb_device *dev, int pipe);
1581extern int usb_reset_configuration(struct usb_device *dev);
1582extern int usb_set_interface(struct usb_device *dev, int ifnum, int alternate);
3444b26a 1583extern void usb_reset_endpoint(struct usb_device *dev, unsigned int epaddr);
1da177e4 1584
088dc270
AS
1585/* this request isn't really synchronous, but it belongs with the others */
1586extern int usb_driver_set_configuration(struct usb_device *udev, int config);
1587
1da177e4
LT
1588/*
1589 * timeouts, in milliseconds, used for sending/receiving control messages
1590 * they typically complete within a few frames (msec) after they're issued
1591 * USB identifies 5 second timeouts, maybe more in a few cases, and a few
1592 * slow devices (like some MGE Ellipse UPSes) actually push that limit.
1593 */
1594#define USB_CTRL_GET_TIMEOUT 5000
1595#define USB_CTRL_SET_TIMEOUT 5000
1596
1597
1598/**
1599 * struct usb_sg_request - support for scatter/gather I/O
1600 * @status: zero indicates success, else negative errno
1601 * @bytes: counts bytes transferred.
1602 *
1603 * These requests are initialized using usb_sg_init(), and then are used
1604 * as request handles passed to usb_sg_wait() or usb_sg_cancel(). Most
1605 * members of the request object aren't for driver access.
1606 *
1607 * The status and bytecount values are valid only after usb_sg_wait()
1608 * returns. If the status is zero, then the bytecount matches the total
1609 * from the request.
1610 *
1611 * After an error completion, drivers may need to clear a halt condition
1612 * on the endpoint.
1613 */
1614struct usb_sg_request {
1615 int status;
1616 size_t bytes;
1617
bf92c190
RD
1618 /* private:
1619 * members below are private to usbcore,
1da177e4
LT
1620 * and are not provided for driver access!
1621 */
1622 spinlock_t lock;
1623
1624 struct usb_device *dev;
1625 int pipe;
1da177e4
LT
1626
1627 int entries;
1628 struct urb **urbs;
1629
1630 int count;
1631 struct completion complete;
1632};
1633
969ab2ee 1634int usb_sg_init(
1da177e4
LT
1635 struct usb_sg_request *io,
1636 struct usb_device *dev,
969ab2ee 1637 unsigned pipe,
1da177e4
LT
1638 unsigned period,
1639 struct scatterlist *sg,
1640 int nents,
1641 size_t length,
55016f10 1642 gfp_t mem_flags
1da177e4 1643);
969ab2ee
GKH
1644void usb_sg_cancel(struct usb_sg_request *io);
1645void usb_sg_wait(struct usb_sg_request *io);
1da177e4
LT
1646
1647
b724ae77 1648/* ----------------------------------------------------------------------- */
1da177e4
LT
1649
1650/*
1651 * For various legacy reasons, Linux has a small cookie that's paired with
1652 * a struct usb_device to identify an endpoint queue. Queue characteristics
1653 * are defined by the endpoint's descriptor. This cookie is called a "pipe",
1654 * an unsigned int encoded as:
1655 *
1656 * - direction: bit 7 (0 = Host-to-Device [Out],
1657 * 1 = Device-to-Host [In] ...
1658 * like endpoint bEndpointAddress)
1659 * - device address: bits 8-14 ... bit positions known to uhci-hcd
1660 * - endpoint: bits 15-18 ... bit positions known to uhci-hcd
1661 * - pipe type: bits 30-31 (00 = isochronous, 01 = interrupt,
1662 * 10 = control, 11 = bulk)
1663 *
1664 * Given the device address and endpoint descriptor, pipes are redundant.
1665 */
1666
1667/* NOTE: these are not the standard USB_ENDPOINT_XFER_* values!! */
1668/* (yet ... they're the values used by usbfs) */
1669#define PIPE_ISOCHRONOUS 0
1670#define PIPE_INTERRUPT 1
1671#define PIPE_CONTROL 2
1672#define PIPE_BULK 3
1673
1674#define usb_pipein(pipe) ((pipe) & USB_DIR_IN)
1675#define usb_pipeout(pipe) (!usb_pipein(pipe))
1676
1677#define usb_pipedevice(pipe) (((pipe) >> 8) & 0x7f)
1678#define usb_pipeendpoint(pipe) (((pipe) >> 15) & 0xf)
1679
1680#define usb_pipetype(pipe) (((pipe) >> 30) & 3)
1681#define usb_pipeisoc(pipe) (usb_pipetype((pipe)) == PIPE_ISOCHRONOUS)
1682#define usb_pipeint(pipe) (usb_pipetype((pipe)) == PIPE_INTERRUPT)
1683#define usb_pipecontrol(pipe) (usb_pipetype((pipe)) == PIPE_CONTROL)
1684#define usb_pipebulk(pipe) (usb_pipetype((pipe)) == PIPE_BULK)
1685
b724ae77
AS
1686static inline unsigned int __create_pipe(struct usb_device *dev,
1687 unsigned int endpoint)
1da177e4
LT
1688{
1689 return (dev->devnum << 8) | (endpoint << 15);
1690}
1691
1692/* Create various pipes... */
812219ab 1693#define usb_sndctrlpipe(dev, endpoint) \
969ab2ee 1694 ((PIPE_CONTROL << 30) | __create_pipe(dev, endpoint))
812219ab 1695#define usb_rcvctrlpipe(dev, endpoint) \
969ab2ee 1696 ((PIPE_CONTROL << 30) | __create_pipe(dev, endpoint) | USB_DIR_IN)
812219ab 1697#define usb_sndisocpipe(dev, endpoint) \
969ab2ee 1698 ((PIPE_ISOCHRONOUS << 30) | __create_pipe(dev, endpoint))
812219ab 1699#define usb_rcvisocpipe(dev, endpoint) \
969ab2ee 1700 ((PIPE_ISOCHRONOUS << 30) | __create_pipe(dev, endpoint) | USB_DIR_IN)
812219ab 1701#define usb_sndbulkpipe(dev, endpoint) \
969ab2ee 1702 ((PIPE_BULK << 30) | __create_pipe(dev, endpoint))
812219ab 1703#define usb_rcvbulkpipe(dev, endpoint) \
969ab2ee 1704 ((PIPE_BULK << 30) | __create_pipe(dev, endpoint) | USB_DIR_IN)
812219ab 1705#define usb_sndintpipe(dev, endpoint) \
969ab2ee 1706 ((PIPE_INTERRUPT << 30) | __create_pipe(dev, endpoint))
812219ab 1707#define usb_rcvintpipe(dev, endpoint) \
969ab2ee 1708 ((PIPE_INTERRUPT << 30) | __create_pipe(dev, endpoint) | USB_DIR_IN)
1da177e4 1709
fe54b058
MW
1710static inline struct usb_host_endpoint *
1711usb_pipe_endpoint(struct usb_device *dev, unsigned int pipe)
1712{
1713 struct usb_host_endpoint **eps;
1714 eps = usb_pipein(pipe) ? dev->ep_in : dev->ep_out;
1715 return eps[usb_pipeendpoint(pipe)];
1716}
1717
1da177e4
LT
1718/*-------------------------------------------------------------------------*/
1719
1720static inline __u16
1721usb_maxpacket(struct usb_device *udev, int pipe, int is_out)
1722{
1723 struct usb_host_endpoint *ep;
1724 unsigned epnum = usb_pipeendpoint(pipe);
1725
1726 if (is_out) {
1727 WARN_ON(usb_pipein(pipe));
1728 ep = udev->ep_out[epnum];
1729 } else {
1730 WARN_ON(usb_pipeout(pipe));
1731 ep = udev->ep_in[epnum];
1732 }
1733 if (!ep)
1734 return 0;
1735
1736 /* NOTE: only 0x07ff bits are for packet size... */
29cc8897 1737 return usb_endpoint_maxp(&ep->desc);
1da177e4
LT
1738}
1739
b724ae77 1740/* ----------------------------------------------------------------------- */
1da177e4 1741
2c4d6bf2
JH
1742/* translate USB error codes to codes user space understands */
1743static inline int usb_translate_errors(int error_code)
1744{
1745 switch (error_code) {
1746 case 0:
1747 case -ENOMEM:
1748 case -ENODEV:
67c88382 1749 case -EOPNOTSUPP:
2c4d6bf2
JH
1750 return error_code;
1751 default:
1752 return -EIO;
1753 }
1754}
1755
3099e75a
GKH
1756/* Events from the usb core */
1757#define USB_DEVICE_ADD 0x0001
1758#define USB_DEVICE_REMOVE 0x0002
1759#define USB_BUS_ADD 0x0003
1760#define USB_BUS_REMOVE 0x0004
1761extern void usb_register_notify(struct notifier_block *nb);
1762extern void usb_unregister_notify(struct notifier_block *nb);
1763
1da177e4 1764#ifdef DEBUG
efcbd3df
JP
1765#define dbg(format, arg...) \
1766 printk(KERN_DEBUG "%s: " format "\n", __FILE__, ##arg)
1da177e4 1767#else
efcbd3df
JP
1768#define dbg(format, arg...) \
1769do { \
1770 if (0) \
1771 printk(KERN_DEBUG "%s: " format "\n", __FILE__, ##arg); \
1772} while (0)
1da177e4
LT
1773#endif
1774
00048b8b
GKH
1775/* debugfs stuff */
1776extern struct dentry *usb_debug_root;
1777
1da177e4
LT
1778#endif /* __KERNEL__ */
1779
1780#endif
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