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40982be5
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1/*
2 * composite.c - infrastructure for Composite USB Gadgets
3 *
4 * Copyright (C) 2006-2008 David Brownell
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
40982be5
DB
10 */
11
12/* #define VERBOSE_DEBUG */
13
14#include <linux/kallsyms.h>
15#include <linux/kernel.h>
16#include <linux/slab.h>
6eb0de82 17#include <linux/module.h>
40982be5 18#include <linux/device.h>
ad1a8102 19#include <linux/utsname.h>
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20
21#include <linux/usb/composite.h>
bdb64d72 22#include <asm/unaligned.h>
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23
24/*
25 * The code in this file is utility code, used to build a gadget driver
26 * from one or more "function" drivers, one or more "configuration"
27 * objects, and a "usb_composite_driver" by gluing them together along
28 * with the relevant device-wide data.
29 */
30
31/* big enough to hold our biggest descriptor */
dd0543ec 32#define USB_BUFSIZ 1024
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DB
33
34static struct usb_composite_driver *composite;
07a18bd7 35static int (*composite_gadget_bind)(struct usb_composite_dev *cdev);
40982be5 36
25985edc 37/* Some systems will need runtime overrides for the product identifiers
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DB
38 * published in the device descriptor, either numbers or strings or both.
39 * String parameters are in UTF-8 (superset of ASCII's 7 bit characters).
40 */
41
42static ushort idVendor;
43module_param(idVendor, ushort, 0);
44MODULE_PARM_DESC(idVendor, "USB Vendor ID");
45
46static ushort idProduct;
47module_param(idProduct, ushort, 0);
48MODULE_PARM_DESC(idProduct, "USB Product ID");
49
50static ushort bcdDevice;
51module_param(bcdDevice, ushort, 0);
52MODULE_PARM_DESC(bcdDevice, "USB Device version (BCD)");
53
54static char *iManufacturer;
55module_param(iManufacturer, charp, 0);
56MODULE_PARM_DESC(iManufacturer, "USB Manufacturer string");
57
58static char *iProduct;
59module_param(iProduct, charp, 0);
60MODULE_PARM_DESC(iProduct, "USB Product string");
61
62static char *iSerialNumber;
63module_param(iSerialNumber, charp, 0);
64MODULE_PARM_DESC(iSerialNumber, "SerialNumber string");
65
ad1a8102
MN
66static char composite_manufacturer[50];
67
40982be5 68/*-------------------------------------------------------------------------*/
48767a4e
TB
69/**
70 * next_ep_desc() - advance to the next EP descriptor
71 * @t: currect pointer within descriptor array
72 *
73 * Return: next EP descriptor or NULL
74 *
75 * Iterate over @t until either EP descriptor found or
76 * NULL (that indicates end of list) encountered
77 */
78static struct usb_descriptor_header**
79next_ep_desc(struct usb_descriptor_header **t)
80{
81 for (; *t; t++) {
82 if ((*t)->bDescriptorType == USB_DT_ENDPOINT)
83 return t;
84 }
85 return NULL;
86}
87
88/*
89 * for_each_ep_desc()- iterate over endpoint descriptors in the
90 * descriptors list
91 * @start: pointer within descriptor array.
92 * @ep_desc: endpoint descriptor to use as the loop cursor
93 */
94#define for_each_ep_desc(start, ep_desc) \
95 for (ep_desc = next_ep_desc(start); \
96 ep_desc; ep_desc = next_ep_desc(ep_desc+1))
97
98/**
99 * config_ep_by_speed() - configures the given endpoint
100 * according to gadget speed.
101 * @g: pointer to the gadget
102 * @f: usb function
103 * @_ep: the endpoint to configure
104 *
105 * Return: error code, 0 on success
106 *
107 * This function chooses the right descriptors for a given
108 * endpoint according to gadget speed and saves it in the
109 * endpoint desc field. If the endpoint already has a descriptor
110 * assigned to it - overwrites it with currently corresponding
111 * descriptor. The endpoint maxpacket field is updated according
112 * to the chosen descriptor.
113 * Note: the supplied function should hold all the descriptors
114 * for supported speeds
115 */
116int config_ep_by_speed(struct usb_gadget *g,
117 struct usb_function *f,
118 struct usb_ep *_ep)
119{
120 struct usb_endpoint_descriptor *chosen_desc = NULL;
121 struct usb_descriptor_header **speed_desc = NULL;
122
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123 struct usb_ss_ep_comp_descriptor *comp_desc = NULL;
124 int want_comp_desc = 0;
125
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126 struct usb_descriptor_header **d_spd; /* cursor for speed desc */
127
128 if (!g || !f || !_ep)
129 return -EIO;
130
131 /* select desired speed */
132 switch (g->speed) {
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133 case USB_SPEED_SUPER:
134 if (gadget_is_superspeed(g)) {
135 speed_desc = f->ss_descriptors;
136 want_comp_desc = 1;
137 break;
138 }
139 /* else: Fall trough */
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140 case USB_SPEED_HIGH:
141 if (gadget_is_dualspeed(g)) {
142 speed_desc = f->hs_descriptors;
143 break;
144 }
145 /* else: fall through */
146 default:
147 speed_desc = f->descriptors;
148 }
149 /* find descriptors */
150 for_each_ep_desc(speed_desc, d_spd) {
151 chosen_desc = (struct usb_endpoint_descriptor *)*d_spd;
152 if (chosen_desc->bEndpointAddress == _ep->address)
153 goto ep_found;
154 }
155 return -EIO;
156
157ep_found:
158 /* commit results */
29cc8897 159 _ep->maxpacket = usb_endpoint_maxp(chosen_desc);
48767a4e 160 _ep->desc = chosen_desc;
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161 _ep->comp_desc = NULL;
162 _ep->maxburst = 0;
163 _ep->mult = 0;
164 if (!want_comp_desc)
165 return 0;
48767a4e 166
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167 /*
168 * Companion descriptor should follow EP descriptor
169 * USB 3.0 spec, #9.6.7
170 */
171 comp_desc = (struct usb_ss_ep_comp_descriptor *)*(++d_spd);
172 if (!comp_desc ||
173 (comp_desc->bDescriptorType != USB_DT_SS_ENDPOINT_COMP))
174 return -EIO;
175 _ep->comp_desc = comp_desc;
176 if (g->speed == USB_SPEED_SUPER) {
177 switch (usb_endpoint_type(_ep->desc)) {
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178 case USB_ENDPOINT_XFER_ISOC:
179 /* mult: bits 1:0 of bmAttributes */
180 _ep->mult = comp_desc->bmAttributes & 0x3;
9e878a6b
PZ
181 case USB_ENDPOINT_XFER_BULK:
182 case USB_ENDPOINT_XFER_INT:
183 _ep->maxburst = comp_desc->bMaxBurst;
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184 break;
185 default:
186 /* Do nothing for control endpoints */
187 break;
188 }
189 }
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190 return 0;
191}
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192
193/**
194 * usb_add_function() - add a function to a configuration
195 * @config: the configuration
196 * @function: the function being added
197 * Context: single threaded during gadget setup
198 *
199 * After initialization, each configuration must have one or more
200 * functions added to it. Adding a function involves calling its @bind()
201 * method to allocate resources such as interface and string identifiers
202 * and endpoints.
203 *
204 * This function returns the value of the function's bind(), which is
205 * zero for success else a negative errno value.
206 */
28824b18 207int usb_add_function(struct usb_configuration *config,
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DB
208 struct usb_function *function)
209{
210 int value = -EINVAL;
211
212 DBG(config->cdev, "adding '%s'/%p to config '%s'/%p\n",
213 function->name, function,
214 config->label, config);
215
216 if (!function->set_alt || !function->disable)
217 goto done;
218
219 function->config = config;
220 list_add_tail(&function->list, &config->functions);
221
222 /* REVISIT *require* function->bind? */
223 if (function->bind) {
224 value = function->bind(config, function);
225 if (value < 0) {
226 list_del(&function->list);
227 function->config = NULL;
228 }
229 } else
230 value = 0;
231
232 /* We allow configurations that don't work at both speeds.
233 * If we run into a lowspeed Linux system, treat it the same
234 * as full speed ... it's the function drivers that will need
235 * to avoid bulk and ISO transfers.
236 */
237 if (!config->fullspeed && function->descriptors)
238 config->fullspeed = true;
239 if (!config->highspeed && function->hs_descriptors)
240 config->highspeed = true;
bdb64d72
TB
241 if (!config->superspeed && function->ss_descriptors)
242 config->superspeed = true;
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DB
243
244done:
245 if (value)
246 DBG(config->cdev, "adding '%s'/%p --> %d\n",
247 function->name, function, value);
248 return value;
249}
250
60beed95
DB
251/**
252 * usb_function_deactivate - prevent function and gadget enumeration
253 * @function: the function that isn't yet ready to respond
254 *
255 * Blocks response of the gadget driver to host enumeration by
256 * preventing the data line pullup from being activated. This is
257 * normally called during @bind() processing to change from the
258 * initial "ready to respond" state, or when a required resource
259 * becomes available.
260 *
261 * For example, drivers that serve as a passthrough to a userspace
262 * daemon can block enumeration unless that daemon (such as an OBEX,
263 * MTP, or print server) is ready to handle host requests.
264 *
265 * Not all systems support software control of their USB peripheral
266 * data pullups.
267 *
268 * Returns zero on success, else negative errno.
269 */
270int usb_function_deactivate(struct usb_function *function)
271{
272 struct usb_composite_dev *cdev = function->config->cdev;
b2bdf3a7 273 unsigned long flags;
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DB
274 int status = 0;
275
b2bdf3a7 276 spin_lock_irqsave(&cdev->lock, flags);
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DB
277
278 if (cdev->deactivations == 0)
279 status = usb_gadget_disconnect(cdev->gadget);
280 if (status == 0)
281 cdev->deactivations++;
282
b2bdf3a7 283 spin_unlock_irqrestore(&cdev->lock, flags);
60beed95
DB
284 return status;
285}
286
287/**
288 * usb_function_activate - allow function and gadget enumeration
289 * @function: function on which usb_function_activate() was called
290 *
291 * Reverses effect of usb_function_deactivate(). If no more functions
292 * are delaying their activation, the gadget driver will respond to
293 * host enumeration procedures.
294 *
295 * Returns zero on success, else negative errno.
296 */
297int usb_function_activate(struct usb_function *function)
298{
299 struct usb_composite_dev *cdev = function->config->cdev;
300 int status = 0;
301
302 spin_lock(&cdev->lock);
303
304 if (WARN_ON(cdev->deactivations == 0))
305 status = -EINVAL;
306 else {
307 cdev->deactivations--;
308 if (cdev->deactivations == 0)
309 status = usb_gadget_connect(cdev->gadget);
310 }
311
312 spin_unlock(&cdev->lock);
313 return status;
314}
315
40982be5
DB
316/**
317 * usb_interface_id() - allocate an unused interface ID
318 * @config: configuration associated with the interface
319 * @function: function handling the interface
320 * Context: single threaded during gadget setup
321 *
322 * usb_interface_id() is called from usb_function.bind() callbacks to
323 * allocate new interface IDs. The function driver will then store that
324 * ID in interface, association, CDC union, and other descriptors. It
25985edc 325 * will also handle any control requests targeted at that interface,
40982be5
DB
326 * particularly changing its altsetting via set_alt(). There may
327 * also be class-specific or vendor-specific requests to handle.
328 *
329 * All interface identifier should be allocated using this routine, to
330 * ensure that for example different functions don't wrongly assign
331 * different meanings to the same identifier. Note that since interface
25985edc 332 * identifiers are configuration-specific, functions used in more than
40982be5
DB
333 * one configuration (or more than once in a given configuration) need
334 * multiple versions of the relevant descriptors.
335 *
336 * Returns the interface ID which was allocated; or -ENODEV if no
337 * more interface IDs can be allocated.
338 */
28824b18 339int usb_interface_id(struct usb_configuration *config,
40982be5
DB
340 struct usb_function *function)
341{
342 unsigned id = config->next_interface_id;
343
344 if (id < MAX_CONFIG_INTERFACES) {
345 config->interface[id] = function;
346 config->next_interface_id = id + 1;
347 return id;
348 }
349 return -ENODEV;
350}
351
352static int config_buf(struct usb_configuration *config,
353 enum usb_device_speed speed, void *buf, u8 type)
354{
355 struct usb_config_descriptor *c = buf;
356 void *next = buf + USB_DT_CONFIG_SIZE;
357 int len = USB_BUFSIZ - USB_DT_CONFIG_SIZE;
358 struct usb_function *f;
359 int status;
360
361 /* write the config descriptor */
362 c = buf;
363 c->bLength = USB_DT_CONFIG_SIZE;
364 c->bDescriptorType = type;
365 /* wTotalLength is written later */
366 c->bNumInterfaces = config->next_interface_id;
367 c->bConfigurationValue = config->bConfigurationValue;
368 c->iConfiguration = config->iConfiguration;
369 c->bmAttributes = USB_CONFIG_ATT_ONE | config->bmAttributes;
36e893d2 370 c->bMaxPower = config->bMaxPower ? : (CONFIG_USB_GADGET_VBUS_DRAW / 2);
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DB
371
372 /* There may be e.g. OTG descriptors */
373 if (config->descriptors) {
374 status = usb_descriptor_fillbuf(next, len,
375 config->descriptors);
376 if (status < 0)
377 return status;
378 len -= status;
379 next += status;
380 }
381
382 /* add each function's descriptors */
383 list_for_each_entry(f, &config->functions, list) {
384 struct usb_descriptor_header **descriptors;
385
bdb64d72
TB
386 switch (speed) {
387 case USB_SPEED_SUPER:
388 descriptors = f->ss_descriptors;
389 break;
390 case USB_SPEED_HIGH:
40982be5 391 descriptors = f->hs_descriptors;
bdb64d72
TB
392 break;
393 default:
40982be5 394 descriptors = f->descriptors;
bdb64d72
TB
395 }
396
40982be5
DB
397 if (!descriptors)
398 continue;
399 status = usb_descriptor_fillbuf(next, len,
400 (const struct usb_descriptor_header **) descriptors);
401 if (status < 0)
402 return status;
403 len -= status;
404 next += status;
405 }
406
407 len = next - buf;
408 c->wTotalLength = cpu_to_le16(len);
409 return len;
410}
411
412static int config_desc(struct usb_composite_dev *cdev, unsigned w_value)
413{
414 struct usb_gadget *gadget = cdev->gadget;
415 struct usb_configuration *c;
416 u8 type = w_value >> 8;
417 enum usb_device_speed speed = USB_SPEED_UNKNOWN;
418
bdb64d72
TB
419 if (gadget->speed == USB_SPEED_SUPER)
420 speed = gadget->speed;
421 else if (gadget_is_dualspeed(gadget)) {
422 int hs = 0;
40982be5
DB
423 if (gadget->speed == USB_SPEED_HIGH)
424 hs = 1;
425 if (type == USB_DT_OTHER_SPEED_CONFIG)
426 hs = !hs;
427 if (hs)
428 speed = USB_SPEED_HIGH;
429
430 }
431
432 /* This is a lookup by config *INDEX* */
433 w_value &= 0xff;
434 list_for_each_entry(c, &cdev->configs, list) {
435 /* ignore configs that won't work at this speed */
bdb64d72
TB
436 switch (speed) {
437 case USB_SPEED_SUPER:
438 if (!c->superspeed)
439 continue;
440 break;
441 case USB_SPEED_HIGH:
40982be5
DB
442 if (!c->highspeed)
443 continue;
bdb64d72
TB
444 break;
445 default:
40982be5
DB
446 if (!c->fullspeed)
447 continue;
448 }
bdb64d72 449
40982be5
DB
450 if (w_value == 0)
451 return config_buf(c, speed, cdev->req->buf, type);
452 w_value--;
453 }
454 return -EINVAL;
455}
456
457static int count_configs(struct usb_composite_dev *cdev, unsigned type)
458{
459 struct usb_gadget *gadget = cdev->gadget;
460 struct usb_configuration *c;
461 unsigned count = 0;
462 int hs = 0;
bdb64d72 463 int ss = 0;
40982be5
DB
464
465 if (gadget_is_dualspeed(gadget)) {
466 if (gadget->speed == USB_SPEED_HIGH)
467 hs = 1;
bdb64d72
TB
468 if (gadget->speed == USB_SPEED_SUPER)
469 ss = 1;
40982be5
DB
470 if (type == USB_DT_DEVICE_QUALIFIER)
471 hs = !hs;
472 }
473 list_for_each_entry(c, &cdev->configs, list) {
474 /* ignore configs that won't work at this speed */
bdb64d72
TB
475 if (ss) {
476 if (!c->superspeed)
477 continue;
478 } else if (hs) {
40982be5
DB
479 if (!c->highspeed)
480 continue;
481 } else {
482 if (!c->fullspeed)
483 continue;
484 }
485 count++;
486 }
487 return count;
488}
489
bdb64d72
TB
490/**
491 * bos_desc() - prepares the BOS descriptor.
492 * @cdev: pointer to usb_composite device to generate the bos
493 * descriptor for
494 *
495 * This function generates the BOS (Binary Device Object)
496 * descriptor and its device capabilities descriptors. The BOS
497 * descriptor should be supported by a SuperSpeed device.
498 */
499static int bos_desc(struct usb_composite_dev *cdev)
500{
501 struct usb_ext_cap_descriptor *usb_ext;
502 struct usb_ss_cap_descriptor *ss_cap;
503 struct usb_dcd_config_params dcd_config_params;
504 struct usb_bos_descriptor *bos = cdev->req->buf;
505
506 bos->bLength = USB_DT_BOS_SIZE;
507 bos->bDescriptorType = USB_DT_BOS;
508
509 bos->wTotalLength = cpu_to_le16(USB_DT_BOS_SIZE);
510 bos->bNumDeviceCaps = 0;
511
512 /*
513 * A SuperSpeed device shall include the USB2.0 extension descriptor
514 * and shall support LPM when operating in USB2.0 HS mode.
515 */
516 usb_ext = cdev->req->buf + le16_to_cpu(bos->wTotalLength);
517 bos->bNumDeviceCaps++;
518 le16_add_cpu(&bos->wTotalLength, USB_DT_USB_EXT_CAP_SIZE);
519 usb_ext->bLength = USB_DT_USB_EXT_CAP_SIZE;
520 usb_ext->bDescriptorType = USB_DT_DEVICE_CAPABILITY;
521 usb_ext->bDevCapabilityType = USB_CAP_TYPE_EXT;
522 usb_ext->bmAttributes = cpu_to_le32(USB_LPM_SUPPORT);
523
524 /*
525 * The Superspeed USB Capability descriptor shall be implemented by all
526 * SuperSpeed devices.
527 */
528 ss_cap = cdev->req->buf + le16_to_cpu(bos->wTotalLength);
529 bos->bNumDeviceCaps++;
530 le16_add_cpu(&bos->wTotalLength, USB_DT_USB_SS_CAP_SIZE);
531 ss_cap->bLength = USB_DT_USB_SS_CAP_SIZE;
532 ss_cap->bDescriptorType = USB_DT_DEVICE_CAPABILITY;
533 ss_cap->bDevCapabilityType = USB_SS_CAP_TYPE;
534 ss_cap->bmAttributes = 0; /* LTM is not supported yet */
535 ss_cap->wSpeedSupported = cpu_to_le16(USB_LOW_SPEED_OPERATION |
536 USB_FULL_SPEED_OPERATION |
537 USB_HIGH_SPEED_OPERATION |
538 USB_5GBPS_OPERATION);
539 ss_cap->bFunctionalitySupport = USB_LOW_SPEED_OPERATION;
540
541 /* Get Controller configuration */
542 if (cdev->gadget->ops->get_config_params)
543 cdev->gadget->ops->get_config_params(&dcd_config_params);
544 else {
089b837a 545 dcd_config_params.bU1devExitLat = USB_DEFAULT_U1_DEV_EXIT_LAT;
bdb64d72 546 dcd_config_params.bU2DevExitLat =
089b837a 547 cpu_to_le16(USB_DEFAULT_U2_DEV_EXIT_LAT);
bdb64d72
TB
548 }
549 ss_cap->bU1devExitLat = dcd_config_params.bU1devExitLat;
550 ss_cap->bU2DevExitLat = dcd_config_params.bU2DevExitLat;
551
552 return le16_to_cpu(bos->wTotalLength);
553}
554
40982be5
DB
555static void device_qual(struct usb_composite_dev *cdev)
556{
557 struct usb_qualifier_descriptor *qual = cdev->req->buf;
558
559 qual->bLength = sizeof(*qual);
560 qual->bDescriptorType = USB_DT_DEVICE_QUALIFIER;
561 /* POLICY: same bcdUSB and device type info at both speeds */
562 qual->bcdUSB = cdev->desc.bcdUSB;
563 qual->bDeviceClass = cdev->desc.bDeviceClass;
564 qual->bDeviceSubClass = cdev->desc.bDeviceSubClass;
565 qual->bDeviceProtocol = cdev->desc.bDeviceProtocol;
566 /* ASSUME same EP0 fifo size at both speeds */
765f5b83 567 qual->bMaxPacketSize0 = cdev->gadget->ep0->maxpacket;
40982be5 568 qual->bNumConfigurations = count_configs(cdev, USB_DT_DEVICE_QUALIFIER);
c24f4227 569 qual->bRESERVED = 0;
40982be5
DB
570}
571
572/*-------------------------------------------------------------------------*/
573
574static void reset_config(struct usb_composite_dev *cdev)
575{
576 struct usb_function *f;
577
578 DBG(cdev, "reset config\n");
579
580 list_for_each_entry(f, &cdev->config->functions, list) {
581 if (f->disable)
582 f->disable(f);
5242658d
LP
583
584 bitmap_zero(f->endpoints, 32);
40982be5
DB
585 }
586 cdev->config = NULL;
587}
588
589static int set_config(struct usb_composite_dev *cdev,
590 const struct usb_ctrlrequest *ctrl, unsigned number)
591{
592 struct usb_gadget *gadget = cdev->gadget;
593 struct usb_configuration *c = NULL;
594 int result = -EINVAL;
595 unsigned power = gadget_is_otg(gadget) ? 8 : 100;
596 int tmp;
597
40982be5
DB
598 if (number) {
599 list_for_each_entry(c, &cdev->configs, list) {
600 if (c->bConfigurationValue == number) {
bdb64d72
TB
601 /*
602 * We disable the FDs of the previous
603 * configuration only if the new configuration
604 * is a valid one
605 */
606 if (cdev->config)
607 reset_config(cdev);
40982be5
DB
608 result = 0;
609 break;
610 }
611 }
612 if (result < 0)
613 goto done;
bdb64d72
TB
614 } else { /* Zero configuration value - need to reset the config */
615 if (cdev->config)
616 reset_config(cdev);
40982be5 617 result = 0;
bdb64d72 618 }
40982be5 619
e538dfda
MN
620 INFO(cdev, "%s config #%d: %s\n",
621 usb_speed_string(gadget->speed),
622 number, c ? c->label : "unconfigured");
40982be5
DB
623
624 if (!c)
625 goto done;
626
627 cdev->config = c;
628
629 /* Initialize all interfaces by setting them to altsetting zero. */
630 for (tmp = 0; tmp < MAX_CONFIG_INTERFACES; tmp++) {
631 struct usb_function *f = c->interface[tmp];
5242658d 632 struct usb_descriptor_header **descriptors;
40982be5
DB
633
634 if (!f)
635 break;
636
5242658d
LP
637 /*
638 * Record which endpoints are used by the function. This is used
639 * to dispatch control requests targeted at that endpoint to the
640 * function's setup callback instead of the current
641 * configuration's setup callback.
642 */
bdb64d72
TB
643 switch (gadget->speed) {
644 case USB_SPEED_SUPER:
645 descriptors = f->ss_descriptors;
646 break;
647 case USB_SPEED_HIGH:
5242658d 648 descriptors = f->hs_descriptors;
bdb64d72
TB
649 break;
650 default:
5242658d 651 descriptors = f->descriptors;
bdb64d72 652 }
5242658d
LP
653
654 for (; *descriptors; ++descriptors) {
655 struct usb_endpoint_descriptor *ep;
656 int addr;
657
658 if ((*descriptors)->bDescriptorType != USB_DT_ENDPOINT)
659 continue;
660
661 ep = (struct usb_endpoint_descriptor *)*descriptors;
662 addr = ((ep->bEndpointAddress & 0x80) >> 3)
663 | (ep->bEndpointAddress & 0x0f);
664 set_bit(addr, f->endpoints);
665 }
666
40982be5
DB
667 result = f->set_alt(f, tmp, 0);
668 if (result < 0) {
669 DBG(cdev, "interface %d (%s/%p) alt 0 --> %d\n",
670 tmp, f->name, f, result);
671
672 reset_config(cdev);
673 goto done;
674 }
1b9ba000
RQ
675
676 if (result == USB_GADGET_DELAYED_STATUS) {
677 DBG(cdev,
678 "%s: interface %d (%s) requested delayed status\n",
679 __func__, tmp, f->name);
680 cdev->delayed_status++;
681 DBG(cdev, "delayed_status count %d\n",
682 cdev->delayed_status);
683 }
40982be5
DB
684 }
685
686 /* when we return, be sure our power usage is valid */
36e893d2 687 power = c->bMaxPower ? (2 * c->bMaxPower) : CONFIG_USB_GADGET_VBUS_DRAW;
40982be5
DB
688done:
689 usb_gadget_vbus_draw(gadget, power);
1b9ba000
RQ
690 if (result >= 0 && cdev->delayed_status)
691 result = USB_GADGET_DELAYED_STATUS;
40982be5
DB
692 return result;
693}
694
695/**
696 * usb_add_config() - add a configuration to a device.
697 * @cdev: wraps the USB gadget
698 * @config: the configuration, with bConfigurationValue assigned
c9bfff9c 699 * @bind: the configuration's bind function
40982be5
DB
700 * Context: single threaded during gadget setup
701 *
c9bfff9c 702 * One of the main tasks of a composite @bind() routine is to
40982be5
DB
703 * add each of the configurations it supports, using this routine.
704 *
c9bfff9c 705 * This function returns the value of the configuration's @bind(), which
40982be5
DB
706 * is zero for success else a negative errno value. Binding configurations
707 * assigns global resources including string IDs, and per-configuration
708 * resources such as interface IDs and endpoints.
709 */
28824b18 710int usb_add_config(struct usb_composite_dev *cdev,
c9bfff9c
UKK
711 struct usb_configuration *config,
712 int (*bind)(struct usb_configuration *))
40982be5
DB
713{
714 int status = -EINVAL;
715 struct usb_configuration *c;
716
717 DBG(cdev, "adding config #%u '%s'/%p\n",
718 config->bConfigurationValue,
719 config->label, config);
720
c9bfff9c 721 if (!config->bConfigurationValue || !bind)
40982be5
DB
722 goto done;
723
724 /* Prevent duplicate configuration identifiers */
725 list_for_each_entry(c, &cdev->configs, list) {
726 if (c->bConfigurationValue == config->bConfigurationValue) {
727 status = -EBUSY;
728 goto done;
729 }
730 }
731
732 config->cdev = cdev;
733 list_add_tail(&config->list, &cdev->configs);
734
735 INIT_LIST_HEAD(&config->functions);
736 config->next_interface_id = 0;
737
c9bfff9c 738 status = bind(config);
40982be5 739 if (status < 0) {
124ef389
YO
740 while (!list_empty(&config->functions)) {
741 struct usb_function *f;
742
743 f = list_first_entry(&config->functions,
744 struct usb_function, list);
745 list_del(&f->list);
746 if (f->unbind) {
747 DBG(cdev, "unbind function '%s'/%p\n",
748 f->name, f);
749 f->unbind(config, f);
750 /* may free memory for "f" */
751 }
752 }
40982be5
DB
753 list_del(&config->list);
754 config->cdev = NULL;
755 } else {
756 unsigned i;
757
bdb64d72 758 DBG(cdev, "cfg %d/%p speeds:%s%s%s\n",
40982be5 759 config->bConfigurationValue, config,
bdb64d72 760 config->superspeed ? " super" : "",
40982be5
DB
761 config->highspeed ? " high" : "",
762 config->fullspeed
763 ? (gadget_is_dualspeed(cdev->gadget)
764 ? " full"
765 : " full/low")
766 : "");
767
768 for (i = 0; i < MAX_CONFIG_INTERFACES; i++) {
769 struct usb_function *f = config->interface[i];
770
771 if (!f)
772 continue;
773 DBG(cdev, " interface %d = %s/%p\n",
774 i, f->name, f);
775 }
776 }
777
c9bfff9c 778 /* set_alt(), or next bind(), sets up
40982be5
DB
779 * ep->driver_data as needed.
780 */
781 usb_ep_autoconfig_reset(cdev->gadget);
782
783done:
784 if (status)
785 DBG(cdev, "added config '%s'/%u --> %d\n", config->label,
786 config->bConfigurationValue, status);
787 return status;
788}
789
790/*-------------------------------------------------------------------------*/
791
792/* We support strings in multiple languages ... string descriptor zero
793 * says which languages are supported. The typical case will be that
794 * only one language (probably English) is used, with I18N handled on
795 * the host side.
796 */
797
798static void collect_langs(struct usb_gadget_strings **sp, __le16 *buf)
799{
800 const struct usb_gadget_strings *s;
801 u16 language;
802 __le16 *tmp;
803
804 while (*sp) {
805 s = *sp;
806 language = cpu_to_le16(s->language);
807 for (tmp = buf; *tmp && tmp < &buf[126]; tmp++) {
808 if (*tmp == language)
809 goto repeat;
810 }
811 *tmp++ = language;
812repeat:
813 sp++;
814 }
815}
816
817static int lookup_string(
818 struct usb_gadget_strings **sp,
819 void *buf,
820 u16 language,
821 int id
822)
823{
824 struct usb_gadget_strings *s;
825 int value;
826
827 while (*sp) {
828 s = *sp++;
829 if (s->language != language)
830 continue;
831 value = usb_gadget_get_string(s, id, buf);
832 if (value > 0)
833 return value;
834 }
835 return -EINVAL;
836}
837
838static int get_string(struct usb_composite_dev *cdev,
839 void *buf, u16 language, int id)
840{
841 struct usb_configuration *c;
842 struct usb_function *f;
843 int len;
ad1a8102 844 const char *str;
40982be5
DB
845
846 /* Yes, not only is USB's I18N support probably more than most
847 * folk will ever care about ... also, it's all supported here.
848 * (Except for UTF8 support for Unicode's "Astral Planes".)
849 */
850
851 /* 0 == report all available language codes */
852 if (id == 0) {
853 struct usb_string_descriptor *s = buf;
854 struct usb_gadget_strings **sp;
855
856 memset(s, 0, 256);
857 s->bDescriptorType = USB_DT_STRING;
858
859 sp = composite->strings;
860 if (sp)
861 collect_langs(sp, s->wData);
862
863 list_for_each_entry(c, &cdev->configs, list) {
864 sp = c->strings;
865 if (sp)
866 collect_langs(sp, s->wData);
867
868 list_for_each_entry(f, &c->functions, list) {
869 sp = f->strings;
870 if (sp)
871 collect_langs(sp, s->wData);
872 }
873 }
874
417b57b3 875 for (len = 0; len <= 126 && s->wData[len]; len++)
40982be5
DB
876 continue;
877 if (!len)
878 return -EINVAL;
879
880 s->bLength = 2 * (len + 1);
881 return s->bLength;
882 }
883
ad1a8102
MN
884 /* Otherwise, look up and return a specified string. First
885 * check if the string has not been overridden.
886 */
887 if (cdev->manufacturer_override == id)
888 str = iManufacturer ?: composite->iManufacturer ?:
889 composite_manufacturer;
890 else if (cdev->product_override == id)
891 str = iProduct ?: composite->iProduct;
892 else if (cdev->serial_override == id)
893 str = iSerialNumber;
894 else
895 str = NULL;
896 if (str) {
897 struct usb_gadget_strings strings = {
898 .language = language,
899 .strings = &(struct usb_string) { 0xff, str }
900 };
901 return usb_gadget_get_string(&strings, 0xff, buf);
902 }
903
904 /* String IDs are device-scoped, so we look up each string
905 * table we're told about. These lookups are infrequent;
906 * simpler-is-better here.
40982be5
DB
907 */
908 if (composite->strings) {
909 len = lookup_string(composite->strings, buf, language, id);
910 if (len > 0)
911 return len;
912 }
913 list_for_each_entry(c, &cdev->configs, list) {
914 if (c->strings) {
915 len = lookup_string(c->strings, buf, language, id);
916 if (len > 0)
917 return len;
918 }
919 list_for_each_entry(f, &c->functions, list) {
920 if (!f->strings)
921 continue;
922 len = lookup_string(f->strings, buf, language, id);
923 if (len > 0)
924 return len;
925 }
926 }
927 return -EINVAL;
928}
929
930/**
931 * usb_string_id() - allocate an unused string ID
932 * @cdev: the device whose string descriptor IDs are being allocated
933 * Context: single threaded during gadget setup
934 *
935 * @usb_string_id() is called from bind() callbacks to allocate
936 * string IDs. Drivers for functions, configurations, or gadgets will
937 * then store that ID in the appropriate descriptors and string table.
938 *
f2adc4f8
MN
939 * All string identifier should be allocated using this,
940 * @usb_string_ids_tab() or @usb_string_ids_n() routine, to ensure
941 * that for example different functions don't wrongly assign different
942 * meanings to the same identifier.
40982be5 943 */
28824b18 944int usb_string_id(struct usb_composite_dev *cdev)
40982be5
DB
945{
946 if (cdev->next_string_id < 254) {
f2adc4f8
MN
947 /* string id 0 is reserved by USB spec for list of
948 * supported languages */
949 /* 255 reserved as well? -- mina86 */
40982be5
DB
950 cdev->next_string_id++;
951 return cdev->next_string_id;
952 }
953 return -ENODEV;
954}
955
f2adc4f8
MN
956/**
957 * usb_string_ids() - allocate unused string IDs in batch
958 * @cdev: the device whose string descriptor IDs are being allocated
959 * @str: an array of usb_string objects to assign numbers to
960 * Context: single threaded during gadget setup
961 *
962 * @usb_string_ids() is called from bind() callbacks to allocate
963 * string IDs. Drivers for functions, configurations, or gadgets will
964 * then copy IDs from the string table to the appropriate descriptors
965 * and string table for other languages.
966 *
967 * All string identifier should be allocated using this,
968 * @usb_string_id() or @usb_string_ids_n() routine, to ensure that for
969 * example different functions don't wrongly assign different meanings
970 * to the same identifier.
971 */
972int usb_string_ids_tab(struct usb_composite_dev *cdev, struct usb_string *str)
973{
974 int next = cdev->next_string_id;
975
976 for (; str->s; ++str) {
977 if (unlikely(next >= 254))
978 return -ENODEV;
979 str->id = ++next;
980 }
981
982 cdev->next_string_id = next;
983
984 return 0;
985}
986
987/**
988 * usb_string_ids_n() - allocate unused string IDs in batch
d187abb9 989 * @c: the device whose string descriptor IDs are being allocated
f2adc4f8
MN
990 * @n: number of string IDs to allocate
991 * Context: single threaded during gadget setup
992 *
993 * Returns the first requested ID. This ID and next @n-1 IDs are now
d187abb9 994 * valid IDs. At least provided that @n is non-zero because if it
f2adc4f8
MN
995 * is, returns last requested ID which is now very useful information.
996 *
997 * @usb_string_ids_n() is called from bind() callbacks to allocate
998 * string IDs. Drivers for functions, configurations, or gadgets will
999 * then store that ID in the appropriate descriptors and string table.
1000 *
1001 * All string identifier should be allocated using this,
1002 * @usb_string_id() or @usb_string_ids_n() routine, to ensure that for
1003 * example different functions don't wrongly assign different meanings
1004 * to the same identifier.
1005 */
1006int usb_string_ids_n(struct usb_composite_dev *c, unsigned n)
1007{
1008 unsigned next = c->next_string_id;
1009 if (unlikely(n > 254 || (unsigned)next + n > 254))
1010 return -ENODEV;
1011 c->next_string_id += n;
1012 return next + 1;
1013}
1014
1015
40982be5
DB
1016/*-------------------------------------------------------------------------*/
1017
1018static void composite_setup_complete(struct usb_ep *ep, struct usb_request *req)
1019{
1020 if (req->status || req->actual != req->length)
1021 DBG((struct usb_composite_dev *) ep->driver_data,
1022 "setup complete --> %d, %d/%d\n",
1023 req->status, req->actual, req->length);
1024}
1025
1026/*
1027 * The setup() callback implements all the ep0 functionality that's
1028 * not handled lower down, in hardware or the hardware driver(like
1029 * device and endpoint feature flags, and their status). It's all
1030 * housekeeping for the gadget function we're implementing. Most of
1031 * the work is in config and function specific setup.
1032 */
1033static int
1034composite_setup(struct usb_gadget *gadget, const struct usb_ctrlrequest *ctrl)
1035{
1036 struct usb_composite_dev *cdev = get_gadget_data(gadget);
1037 struct usb_request *req = cdev->req;
1038 int value = -EOPNOTSUPP;
bdb64d72 1039 int status = 0;
40982be5 1040 u16 w_index = le16_to_cpu(ctrl->wIndex);
08889517 1041 u8 intf = w_index & 0xFF;
40982be5
DB
1042 u16 w_value = le16_to_cpu(ctrl->wValue);
1043 u16 w_length = le16_to_cpu(ctrl->wLength);
1044 struct usb_function *f = NULL;
5242658d 1045 u8 endp;
40982be5
DB
1046
1047 /* partial re-init of the response message; the function or the
1048 * gadget might need to intercept e.g. a control-OUT completion
1049 * when we delegate to it.
1050 */
1051 req->zero = 0;
1052 req->complete = composite_setup_complete;
2edb11cb 1053 req->length = 0;
40982be5
DB
1054 gadget->ep0->driver_data = cdev;
1055
1056 switch (ctrl->bRequest) {
1057
1058 /* we handle all standard USB descriptors */
1059 case USB_REQ_GET_DESCRIPTOR:
1060 if (ctrl->bRequestType != USB_DIR_IN)
1061 goto unknown;
1062 switch (w_value >> 8) {
1063
1064 case USB_DT_DEVICE:
1065 cdev->desc.bNumConfigurations =
1066 count_configs(cdev, USB_DT_DEVICE);
bdb64d72
TB
1067 cdev->desc.bMaxPacketSize0 =
1068 cdev->gadget->ep0->maxpacket;
1069 if (gadget_is_superspeed(gadget)) {
a8f21156 1070 if (gadget->speed >= USB_SPEED_SUPER) {
bdb64d72 1071 cdev->desc.bcdUSB = cpu_to_le16(0x0300);
a8f21156
SAS
1072 cdev->desc.bMaxPacketSize0 = 9;
1073 } else {
bdb64d72 1074 cdev->desc.bcdUSB = cpu_to_le16(0x0210);
a8f21156 1075 }
bdb64d72
TB
1076 }
1077
40982be5
DB
1078 value = min(w_length, (u16) sizeof cdev->desc);
1079 memcpy(req->buf, &cdev->desc, value);
1080 break;
1081 case USB_DT_DEVICE_QUALIFIER:
bdb64d72
TB
1082 if (!gadget_is_dualspeed(gadget) ||
1083 gadget->speed >= USB_SPEED_SUPER)
40982be5
DB
1084 break;
1085 device_qual(cdev);
1086 value = min_t(int, w_length,
1087 sizeof(struct usb_qualifier_descriptor));
1088 break;
1089 case USB_DT_OTHER_SPEED_CONFIG:
bdb64d72
TB
1090 if (!gadget_is_dualspeed(gadget) ||
1091 gadget->speed >= USB_SPEED_SUPER)
40982be5
DB
1092 break;
1093 /* FALLTHROUGH */
1094 case USB_DT_CONFIG:
1095 value = config_desc(cdev, w_value);
1096 if (value >= 0)
1097 value = min(w_length, (u16) value);
1098 break;
1099 case USB_DT_STRING:
1100 value = get_string(cdev, req->buf,
1101 w_index, w_value & 0xff);
1102 if (value >= 0)
1103 value = min(w_length, (u16) value);
1104 break;
bdb64d72
TB
1105 case USB_DT_BOS:
1106 if (gadget_is_superspeed(gadget)) {
1107 value = bos_desc(cdev);
1108 value = min(w_length, (u16) value);
1109 }
1110 break;
40982be5
DB
1111 }
1112 break;
1113
1114 /* any number of configs can work */
1115 case USB_REQ_SET_CONFIGURATION:
1116 if (ctrl->bRequestType != 0)
1117 goto unknown;
1118 if (gadget_is_otg(gadget)) {
1119 if (gadget->a_hnp_support)
1120 DBG(cdev, "HNP available\n");
1121 else if (gadget->a_alt_hnp_support)
1122 DBG(cdev, "HNP on another port\n");
1123 else
1124 VDBG(cdev, "HNP inactive\n");
1125 }
1126 spin_lock(&cdev->lock);
1127 value = set_config(cdev, ctrl, w_value);
1128 spin_unlock(&cdev->lock);
1129 break;
1130 case USB_REQ_GET_CONFIGURATION:
1131 if (ctrl->bRequestType != USB_DIR_IN)
1132 goto unknown;
1133 if (cdev->config)
1134 *(u8 *)req->buf = cdev->config->bConfigurationValue;
1135 else
1136 *(u8 *)req->buf = 0;
1137 value = min(w_length, (u16) 1);
1138 break;
1139
1140 /* function drivers must handle get/set altsetting; if there's
1141 * no get() method, we know only altsetting zero works.
1142 */
1143 case USB_REQ_SET_INTERFACE:
1144 if (ctrl->bRequestType != USB_RECIP_INTERFACE)
1145 goto unknown;
ff085de7 1146 if (!cdev->config || intf >= MAX_CONFIG_INTERFACES)
40982be5 1147 break;
08889517 1148 f = cdev->config->interface[intf];
40982be5
DB
1149 if (!f)
1150 break;
dd4dff8b 1151 if (w_value && !f->set_alt)
40982be5
DB
1152 break;
1153 value = f->set_alt(f, w_index, w_value);
1b9ba000
RQ
1154 if (value == USB_GADGET_DELAYED_STATUS) {
1155 DBG(cdev,
1156 "%s: interface %d (%s) requested delayed status\n",
1157 __func__, intf, f->name);
1158 cdev->delayed_status++;
1159 DBG(cdev, "delayed_status count %d\n",
1160 cdev->delayed_status);
1161 }
40982be5
DB
1162 break;
1163 case USB_REQ_GET_INTERFACE:
1164 if (ctrl->bRequestType != (USB_DIR_IN|USB_RECIP_INTERFACE))
1165 goto unknown;
ff085de7 1166 if (!cdev->config || intf >= MAX_CONFIG_INTERFACES)
40982be5 1167 break;
08889517 1168 f = cdev->config->interface[intf];
40982be5
DB
1169 if (!f)
1170 break;
1171 /* lots of interfaces only need altsetting zero... */
1172 value = f->get_alt ? f->get_alt(f, w_index) : 0;
1173 if (value < 0)
1174 break;
1175 *((u8 *)req->buf) = value;
1176 value = min(w_length, (u16) 1);
1177 break;
bdb64d72
TB
1178
1179 /*
1180 * USB 3.0 additions:
1181 * Function driver should handle get_status request. If such cb
1182 * wasn't supplied we respond with default value = 0
1183 * Note: function driver should supply such cb only for the first
1184 * interface of the function
1185 */
1186 case USB_REQ_GET_STATUS:
1187 if (!gadget_is_superspeed(gadget))
1188 goto unknown;
1189 if (ctrl->bRequestType != (USB_DIR_IN | USB_RECIP_INTERFACE))
1190 goto unknown;
1191 value = 2; /* This is the length of the get_status reply */
1192 put_unaligned_le16(0, req->buf);
1193 if (!cdev->config || intf >= MAX_CONFIG_INTERFACES)
1194 break;
1195 f = cdev->config->interface[intf];
1196 if (!f)
1197 break;
1198 status = f->get_status ? f->get_status(f) : 0;
1199 if (status < 0)
1200 break;
1201 put_unaligned_le16(status & 0x0000ffff, req->buf);
1202 break;
1203 /*
1204 * Function drivers should handle SetFeature/ClearFeature
1205 * (FUNCTION_SUSPEND) request. function_suspend cb should be supplied
1206 * only for the first interface of the function
1207 */
1208 case USB_REQ_CLEAR_FEATURE:
1209 case USB_REQ_SET_FEATURE:
1210 if (!gadget_is_superspeed(gadget))
1211 goto unknown;
1212 if (ctrl->bRequestType != (USB_DIR_OUT | USB_RECIP_INTERFACE))
1213 goto unknown;
1214 switch (w_value) {
1215 case USB_INTRF_FUNC_SUSPEND:
1216 if (!cdev->config || intf >= MAX_CONFIG_INTERFACES)
1217 break;
1218 f = cdev->config->interface[intf];
1219 if (!f)
1220 break;
1221 value = 0;
1222 if (f->func_suspend)
1223 value = f->func_suspend(f, w_index >> 8);
1224 if (value < 0) {
1225 ERROR(cdev,
1226 "func_suspend() returned error %d\n",
1227 value);
1228 value = 0;
1229 }
1230 break;
1231 }
1232 break;
40982be5
DB
1233 default:
1234unknown:
1235 VDBG(cdev,
1236 "non-core control req%02x.%02x v%04x i%04x l%d\n",
1237 ctrl->bRequestType, ctrl->bRequest,
1238 w_value, w_index, w_length);
1239
5242658d
LP
1240 /* functions always handle their interfaces and endpoints...
1241 * punt other recipients (other, WUSB, ...) to the current
40982be5
DB
1242 * configuration code.
1243 *
1244 * REVISIT it could make sense to let the composite device
1245 * take such requests too, if that's ever needed: to work
1246 * in config 0, etc.
1247 */
5242658d
LP
1248 switch (ctrl->bRequestType & USB_RECIP_MASK) {
1249 case USB_RECIP_INTERFACE:
ff085de7 1250 if (!cdev->config || intf >= MAX_CONFIG_INTERFACES)
3c47eb06
MM
1251 break;
1252 f = cdev->config->interface[intf];
5242658d
LP
1253 break;
1254
1255 case USB_RECIP_ENDPOINT:
1256 endp = ((w_index & 0x80) >> 3) | (w_index & 0x0f);
1257 list_for_each_entry(f, &cdev->config->functions, list) {
1258 if (test_bit(endp, f->endpoints))
1259 break;
1260 }
1261 if (&f->list == &cdev->config->functions)
40982be5 1262 f = NULL;
5242658d 1263 break;
40982be5 1264 }
5242658d
LP
1265
1266 if (f && f->setup)
1267 value = f->setup(f, ctrl);
1268 else {
40982be5
DB
1269 struct usb_configuration *c;
1270
1271 c = cdev->config;
1272 if (c && c->setup)
1273 value = c->setup(c, ctrl);
1274 }
1275
1276 goto done;
1277 }
1278
1279 /* respond with data transfer before status phase? */
1b9ba000 1280 if (value >= 0 && value != USB_GADGET_DELAYED_STATUS) {
40982be5
DB
1281 req->length = value;
1282 req->zero = value < w_length;
1283 value = usb_ep_queue(gadget->ep0, req, GFP_ATOMIC);
1284 if (value < 0) {
1285 DBG(cdev, "ep_queue --> %d\n", value);
1286 req->status = 0;
1287 composite_setup_complete(gadget->ep0, req);
1288 }
1b9ba000
RQ
1289 } else if (value == USB_GADGET_DELAYED_STATUS && w_length != 0) {
1290 WARN(cdev,
1291 "%s: Delayed status not supported for w_length != 0",
1292 __func__);
40982be5
DB
1293 }
1294
1295done:
1296 /* device either stalls (value < 0) or reports success */
1297 return value;
1298}
1299
1300static void composite_disconnect(struct usb_gadget *gadget)
1301{
1302 struct usb_composite_dev *cdev = get_gadget_data(gadget);
1303 unsigned long flags;
1304
1305 /* REVISIT: should we have config and device level
1306 * disconnect callbacks?
1307 */
1308 spin_lock_irqsave(&cdev->lock, flags);
1309 if (cdev->config)
1310 reset_config(cdev);
3f3e12d0
MN
1311 if (composite->disconnect)
1312 composite->disconnect(cdev);
40982be5
DB
1313 spin_unlock_irqrestore(&cdev->lock, flags);
1314}
1315
1316/*-------------------------------------------------------------------------*/
1317
f48cf80f
FC
1318static ssize_t composite_show_suspended(struct device *dev,
1319 struct device_attribute *attr,
1320 char *buf)
1321{
1322 struct usb_gadget *gadget = dev_to_usb_gadget(dev);
1323 struct usb_composite_dev *cdev = get_gadget_data(gadget);
1324
1325 return sprintf(buf, "%d\n", cdev->suspended);
1326}
1327
1328static DEVICE_ATTR(suspended, 0444, composite_show_suspended, NULL);
1329
28824b18 1330static void
40982be5
DB
1331composite_unbind(struct usb_gadget *gadget)
1332{
1333 struct usb_composite_dev *cdev = get_gadget_data(gadget);
1334
1335 /* composite_disconnect() must already have been called
1336 * by the underlying peripheral controller driver!
1337 * so there's no i/o concurrency that could affect the
1338 * state protected by cdev->lock.
1339 */
1340 WARN_ON(cdev->config);
1341
1342 while (!list_empty(&cdev->configs)) {
1343 struct usb_configuration *c;
1344
1345 c = list_first_entry(&cdev->configs,
1346 struct usb_configuration, list);
1347 while (!list_empty(&c->functions)) {
1348 struct usb_function *f;
1349
1350 f = list_first_entry(&c->functions,
1351 struct usb_function, list);
1352 list_del(&f->list);
1353 if (f->unbind) {
1354 DBG(cdev, "unbind function '%s'/%p\n",
1355 f->name, f);
1356 f->unbind(c, f);
1357 /* may free memory for "f" */
1358 }
1359 }
1360 list_del(&c->list);
1361 if (c->unbind) {
1362 DBG(cdev, "unbind config '%s'/%p\n", c->label, c);
1363 c->unbind(c);
1364 /* may free memory for "c" */
1365 }
1366 }
1367 if (composite->unbind)
1368 composite->unbind(cdev);
1369
1370 if (cdev->req) {
1371 kfree(cdev->req->buf);
1372 usb_ep_free_request(gadget->ep0, cdev->req);
1373 }
daba5803 1374 device_remove_file(&gadget->dev, &dev_attr_suspended);
40982be5
DB
1375 kfree(cdev);
1376 set_gadget_data(gadget, NULL);
1377 composite = NULL;
1378}
1379
ad1a8102 1380static u8 override_id(struct usb_composite_dev *cdev, u8 *desc)
40982be5 1381{
ad1a8102
MN
1382 if (!*desc) {
1383 int ret = usb_string_id(cdev);
1384 if (unlikely(ret < 0))
1385 WARNING(cdev, "failed to override string ID\n");
1386 else
1387 *desc = ret;
40982be5 1388 }
40982be5 1389
ad1a8102 1390 return *desc;
40982be5
DB
1391}
1392
28824b18 1393static int composite_bind(struct usb_gadget *gadget)
40982be5
DB
1394{
1395 struct usb_composite_dev *cdev;
1396 int status = -ENOMEM;
1397
1398 cdev = kzalloc(sizeof *cdev, GFP_KERNEL);
1399 if (!cdev)
1400 return status;
1401
1402 spin_lock_init(&cdev->lock);
1403 cdev->gadget = gadget;
1404 set_gadget_data(gadget, cdev);
1405 INIT_LIST_HEAD(&cdev->configs);
1406
1407 /* preallocate control response and buffer */
1408 cdev->req = usb_ep_alloc_request(gadget->ep0, GFP_KERNEL);
1409 if (!cdev->req)
1410 goto fail;
1411 cdev->req->buf = kmalloc(USB_BUFSIZ, GFP_KERNEL);
1412 if (!cdev->req->buf)
1413 goto fail;
1414 cdev->req->complete = composite_setup_complete;
1415 gadget->ep0->driver_data = cdev;
1416
1417 cdev->bufsiz = USB_BUFSIZ;
1418 cdev->driver = composite;
1419
37b5801e
PM
1420 /*
1421 * As per USB compliance update, a device that is actively drawing
1422 * more than 100mA from USB must report itself as bus-powered in
1423 * the GetStatus(DEVICE) call.
1424 */
1425 if (CONFIG_USB_GADGET_VBUS_DRAW <= USB_SELF_POWER_VBUS_MAX_DRAW)
1426 usb_gadget_set_selfpowered(gadget);
40982be5
DB
1427
1428 /* interface and string IDs start at zero via kzalloc.
1429 * we force endpoints to start unassigned; few controller
1430 * drivers will zero ep->driver_data.
1431 */
1432 usb_ep_autoconfig_reset(cdev->gadget);
1433
1434 /* composite gadget needs to assign strings for whole device (like
1435 * serial number), register function drivers, potentially update
1436 * power state and consumption, etc
1437 */
07a18bd7 1438 status = composite_gadget_bind(cdev);
40982be5
DB
1439 if (status < 0)
1440 goto fail;
1441
1442 cdev->desc = *composite->dev;
40982be5 1443
dbb442b8
GKH
1444 /* standardized runtime overrides for device ID data */
1445 if (idVendor)
1446 cdev->desc.idVendor = cpu_to_le16(idVendor);
1447 if (idProduct)
1448 cdev->desc.idProduct = cpu_to_le16(idProduct);
1449 if (bcdDevice)
1450 cdev->desc.bcdDevice = cpu_to_le16(bcdDevice);
1451
78bff3c6 1452 /* string overrides */
ad1a8102
MN
1453 if (iManufacturer || !cdev->desc.iManufacturer) {
1454 if (!iManufacturer && !composite->iManufacturer &&
1455 !*composite_manufacturer)
1456 snprintf(composite_manufacturer,
1457 sizeof composite_manufacturer,
1458 "%s %s with %s",
1459 init_utsname()->sysname,
1460 init_utsname()->release,
1461 gadget->name);
1462
1463 cdev->manufacturer_override =
1464 override_id(cdev, &cdev->desc.iManufacturer);
1465 }
1466
1467 if (iProduct || (!cdev->desc.iProduct && composite->iProduct))
1468 cdev->product_override =
1469 override_id(cdev, &cdev->desc.iProduct);
1470
1471 if (iSerialNumber)
1472 cdev->serial_override =
1473 override_id(cdev, &cdev->desc.iSerialNumber);
1474
1475 /* has userspace failed to provide a serial number? */
1476 if (composite->needs_serial && !cdev->desc.iSerialNumber)
1477 WARNING(cdev, "userspace failed to provide iSerialNumber\n");
40982be5 1478
ad1a8102 1479 /* finish up */
f48cf80f
FC
1480 status = device_create_file(&gadget->dev, &dev_attr_suspended);
1481 if (status)
1482 goto fail;
1483
40982be5
DB
1484 INFO(cdev, "%s ready\n", composite->name);
1485 return 0;
1486
1487fail:
1488 composite_unbind(gadget);
1489 return status;
1490}
1491
1492/*-------------------------------------------------------------------------*/
1493
1494static void
1495composite_suspend(struct usb_gadget *gadget)
1496{
1497 struct usb_composite_dev *cdev = get_gadget_data(gadget);
1498 struct usb_function *f;
1499
8942939a 1500 /* REVISIT: should we have config level
40982be5
DB
1501 * suspend/resume callbacks?
1502 */
1503 DBG(cdev, "suspend\n");
1504 if (cdev->config) {
1505 list_for_each_entry(f, &cdev->config->functions, list) {
1506 if (f->suspend)
1507 f->suspend(f);
1508 }
1509 }
8942939a
DB
1510 if (composite->suspend)
1511 composite->suspend(cdev);
f48cf80f
FC
1512
1513 cdev->suspended = 1;
b23f2f94
HW
1514
1515 usb_gadget_vbus_draw(gadget, 2);
40982be5
DB
1516}
1517
1518static void
1519composite_resume(struct usb_gadget *gadget)
1520{
1521 struct usb_composite_dev *cdev = get_gadget_data(gadget);
1522 struct usb_function *f;
b23f2f94 1523 u8 maxpower;
40982be5 1524
8942939a 1525 /* REVISIT: should we have config level
40982be5
DB
1526 * suspend/resume callbacks?
1527 */
1528 DBG(cdev, "resume\n");
8942939a
DB
1529 if (composite->resume)
1530 composite->resume(cdev);
40982be5
DB
1531 if (cdev->config) {
1532 list_for_each_entry(f, &cdev->config->functions, list) {
1533 if (f->resume)
1534 f->resume(f);
1535 }
b23f2f94
HW
1536
1537 maxpower = cdev->config->bMaxPower;
1538
1539 usb_gadget_vbus_draw(gadget, maxpower ?
1540 (2 * maxpower) : CONFIG_USB_GADGET_VBUS_DRAW);
40982be5 1541 }
f48cf80f
FC
1542
1543 cdev->suspended = 0;
40982be5
DB
1544}
1545
1546/*-------------------------------------------------------------------------*/
1547
1548static struct usb_gadget_driver composite_driver = {
bdb64d72 1549#ifdef CONFIG_USB_GADGET_SUPERSPEED
7177aed4 1550 .max_speed = USB_SPEED_SUPER,
bdb64d72 1551#else
7177aed4 1552 .max_speed = USB_SPEED_HIGH,
bdb64d72 1553#endif
40982be5 1554
915c8bef 1555 .unbind = composite_unbind,
40982be5
DB
1556
1557 .setup = composite_setup,
1558 .disconnect = composite_disconnect,
1559
1560 .suspend = composite_suspend,
1561 .resume = composite_resume,
1562
1563 .driver = {
1564 .owner = THIS_MODULE,
1565 },
1566};
1567
1568/**
07a18bd7 1569 * usb_composite_probe() - register a composite driver
40982be5 1570 * @driver: the driver to register
07a18bd7
MN
1571 * @bind: the callback used to allocate resources that are shared across the
1572 * whole device, such as string IDs, and add its configurations using
1573 * @usb_add_config(). This may fail by returning a negative errno
1574 * value; it should return zero on successful initialization.
40982be5
DB
1575 * Context: single threaded during gadget setup
1576 *
1577 * This function is used to register drivers using the composite driver
1578 * framework. The return value is zero, or a negative errno value.
1579 * Those values normally come from the driver's @bind method, which does
1580 * all the work of setting up the driver to match the hardware.
1581 *
1582 * On successful return, the gadget is ready to respond to requests from
1583 * the host, unless one of its components invokes usb_gadget_disconnect()
1584 * while it was binding. That would usually be done in order to wait for
1585 * some userspace participation.
1586 */
05c3eebd 1587int usb_composite_probe(struct usb_composite_driver *driver,
07a18bd7 1588 int (*bind)(struct usb_composite_dev *cdev))
40982be5 1589{
07a18bd7 1590 if (!driver || !driver->dev || !bind || composite)
40982be5
DB
1591 return -EINVAL;
1592
1593 if (!driver->name)
1594 driver->name = "composite";
05c3eebd
JB
1595 if (!driver->iProduct)
1596 driver->iProduct = driver->name;
40982be5
DB
1597 composite_driver.function = (char *) driver->name;
1598 composite_driver.driver.name = driver->name;
7177aed4
MN
1599 composite_driver.max_speed =
1600 min_t(u8, composite_driver.max_speed, driver->max_speed);
40982be5 1601 composite = driver;
07a18bd7 1602 composite_gadget_bind = bind;
40982be5 1603
b0fca50f 1604 return usb_gadget_probe_driver(&composite_driver, composite_bind);
40982be5
DB
1605}
1606
1607/**
1608 * usb_composite_unregister() - unregister a composite driver
1609 * @driver: the driver to unregister
1610 *
1611 * This function is used to unregister drivers using the composite
1612 * driver framework.
1613 */
28824b18 1614void usb_composite_unregister(struct usb_composite_driver *driver)
40982be5
DB
1615{
1616 if (composite != driver)
1617 return;
1618 usb_gadget_unregister_driver(&composite_driver);
1619}
1b9ba000
RQ
1620
1621/**
1622 * usb_composite_setup_continue() - Continue with the control transfer
1623 * @cdev: the composite device who's control transfer was kept waiting
1624 *
1625 * This function must be called by the USB function driver to continue
1626 * with the control transfer's data/status stage in case it had requested to
1627 * delay the data/status stages. A USB function's setup handler (e.g. set_alt())
1628 * can request the composite framework to delay the setup request's data/status
1629 * stages by returning USB_GADGET_DELAYED_STATUS.
1630 */
1631void usb_composite_setup_continue(struct usb_composite_dev *cdev)
1632{
1633 int value;
1634 struct usb_request *req = cdev->req;
1635 unsigned long flags;
1636
1637 DBG(cdev, "%s\n", __func__);
1638 spin_lock_irqsave(&cdev->lock, flags);
1639
1640 if (cdev->delayed_status == 0) {
1641 WARN(cdev, "%s: Unexpected call\n", __func__);
1642
1643 } else if (--cdev->delayed_status == 0) {
1644 DBG(cdev, "%s: Completing delayed status\n", __func__);
1645 req->length = 0;
1646 value = usb_ep_queue(cdev->gadget->ep0, req, GFP_ATOMIC);
1647 if (value < 0) {
1648 DBG(cdev, "ep_queue --> %d\n", value);
1649 req->status = 0;
1650 composite_setup_complete(cdev->gadget->ep0, req);
1651 }
1652 }
1653
1654 spin_unlock_irqrestore(&cdev->lock, flags);
1655}
1656