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usb: Add a speedmask to devices
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CommitLineData
bb36d470
FB
1/*
2 * Linux host USB redirector
3 *
4 * Copyright (c) 2005 Fabrice Bellard
5fafdf24 5 *
64838171
AL
6 * Copyright (c) 2008 Max Krasnyansky
7 * Support for host device auto connect & disconnect
5d0c5750 8 * Major rewrite to support fully async operation
4b096fc9 9 *
0f431527
AL
10 * Copyright 2008 TJ <linux@tjworld.net>
11 * Added flexible support for /dev/bus/usb /sys/bus/usb/devices in addition
12 * to the legacy /proc/bus/usb USB device discovery and handling
13 *
bb36d470
FB
14 * Permission is hereby granted, free of charge, to any person obtaining a copy
15 * of this software and associated documentation files (the "Software"), to deal
16 * in the Software without restriction, including without limitation the rights
17 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
18 * copies of the Software, and to permit persons to whom the Software is
19 * furnished to do so, subject to the following conditions:
20 *
21 * The above copyright notice and this permission notice shall be included in
22 * all copies or substantial portions of the Software.
23 *
24 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
25 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
26 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
27 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
28 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
29 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
30 * THE SOFTWARE.
31 */
446ab128 32
87ecb68b 33#include "qemu-common.h"
1f3870ab 34#include "qemu-timer.h"
376253ec 35#include "monitor.h"
b373a63a 36#include "sysemu.h"
bb36d470 37
bb36d470
FB
38#include <dirent.h>
39#include <sys/ioctl.h>
bb36d470 40
446ab128
AL
41#include <linux/usbdevice_fs.h>
42#include <linux/version.h>
43#include "hw/usb.h"
bb36d470 44
d9cf1578
BS
45/* We redefine it to avoid version problems */
46struct usb_ctrltransfer {
47 uint8_t bRequestType;
48 uint8_t bRequest;
49 uint16_t wValue;
50 uint16_t wIndex;
51 uint16_t wLength;
52 uint32_t timeout;
53 void *data;
54};
55
5557d820 56typedef int USBScanFunc(void *opaque, int bus_num, int addr, char *port,
0f5160d1 57 int class_id, int vendor_id, int product_id,
a594cfbf 58 const char *product_name, int speed);
26a9e82a 59
0745eb1e 60//#define DEBUG
64838171
AL
61
62#ifdef DEBUG
d0f2c4c6 63#define DPRINTF printf
64838171 64#else
d0f2c4c6 65#define DPRINTF(...)
64838171 66#endif
bb36d470 67
5be8e1f2
BS
68#define USBDBG_DEVOPENED "husb: opened %s/devices\n"
69
0f431527 70#define USBPROCBUS_PATH "/proc/bus/usb"
1f6e24e7 71#define PRODUCT_NAME_SZ 32
3a4854b3 72#define MAX_ENDPOINTS 15
5557d820 73#define MAX_PORTLEN 16
0f431527
AL
74#define USBDEVBUS_PATH "/dev/bus/usb"
75#define USBSYSBUS_PATH "/sys/bus/usb"
76
77static char *usb_host_device_path;
78
79#define USB_FS_NONE 0
80#define USB_FS_PROC 1
81#define USB_FS_DEV 2
82#define USB_FS_SYS 3
83
84static int usb_fs_type;
bb36d470 85
b9dc033c 86/* endpoint association data */
060dc841 87#define ISO_FRAME_DESC_PER_URB 32
a0b5fece 88#define INVALID_EP_TYPE 255
060dc841 89
71138531
GH
90/* devio.c limits single requests to 16k */
91#define MAX_USBFS_BUFFER_SIZE 16384
92
060dc841
HG
93typedef struct AsyncURB AsyncURB;
94
b9dc033c
AZ
95struct endp_data {
96 uint8_t type;
64838171 97 uint8_t halted;
bb6d5498 98 uint8_t iso_started;
060dc841
HG
99 AsyncURB *iso_urb;
100 int iso_urb_idx;
bb6d5498 101 int iso_buffer_used;
060dc841 102 int max_packet_size;
82887262 103 int inflight;
b9dc033c
AZ
104};
105
26a9e82a
GH
106struct USBAutoFilter {
107 uint32_t bus_num;
108 uint32_t addr;
9056a297 109 char *port;
26a9e82a
GH
110 uint32_t vendor_id;
111 uint32_t product_id;
112};
113
bb36d470
FB
114typedef struct USBHostDevice {
115 USBDevice dev;
64838171
AL
116 int fd;
117
f8ddbfbc 118 uint8_t descr[8192];
64838171
AL
119 int descr_len;
120 int configuration;
446ab128 121 int ninterfaces;
24772c1e 122 int closing;
b81bcd8a 123 uint32_t iso_urb_count;
b373a63a 124 Notifier exit;
64838171 125
b9dc033c 126 struct endp_data endp_table[MAX_ENDPOINTS];
7a8fc83f 127 QLIST_HEAD(, AsyncURB) aurbs;
4b096fc9 128
4b096fc9
AL
129 /* Host side address */
130 int bus_num;
131 int addr;
5557d820 132 char port[MAX_PORTLEN];
26a9e82a 133 struct USBAutoFilter match;
4b096fc9 134
26a9e82a 135 QTAILQ_ENTRY(USBHostDevice) next;
bb36d470
FB
136} USBHostDevice;
137
26a9e82a
GH
138static QTAILQ_HEAD(, USBHostDevice) hostdevs = QTAILQ_HEAD_INITIALIZER(hostdevs);
139
140static int usb_host_close(USBHostDevice *dev);
141static int parse_filter(const char *spec, struct USBAutoFilter *f);
142static void usb_host_auto_check(void *unused);
2cc59d8c
HG
143static int usb_host_read_file(char *line, size_t line_size,
144 const char *device_file, const char *device_name);
26a9e82a 145
ca3a36cf
GH
146static struct endp_data *get_endp(USBHostDevice *s, int ep)
147{
148 return s->endp_table + ep - 1;
149}
150
64838171
AL
151static int is_isoc(USBHostDevice *s, int ep)
152{
ca3a36cf 153 return get_endp(s, ep)->type == USBDEVFS_URB_TYPE_ISO;
64838171
AL
154}
155
a0b5fece
HG
156static int is_valid(USBHostDevice *s, int ep)
157{
ca3a36cf 158 return get_endp(s, ep)->type != INVALID_EP_TYPE;
a0b5fece
HG
159}
160
64838171
AL
161static int is_halted(USBHostDevice *s, int ep)
162{
ca3a36cf 163 return get_endp(s, ep)->halted;
64838171
AL
164}
165
166static void clear_halt(USBHostDevice *s, int ep)
167{
ca3a36cf 168 get_endp(s, ep)->halted = 0;
64838171
AL
169}
170
171static void set_halt(USBHostDevice *s, int ep)
172{
ca3a36cf 173 get_endp(s, ep)->halted = 1;
64838171
AL
174}
175
bb6d5498
HG
176static int is_iso_started(USBHostDevice *s, int ep)
177{
ca3a36cf 178 return get_endp(s, ep)->iso_started;
bb6d5498
HG
179}
180
181static void clear_iso_started(USBHostDevice *s, int ep)
182{
ca3a36cf 183 get_endp(s, ep)->iso_started = 0;
bb6d5498
HG
184}
185
186static void set_iso_started(USBHostDevice *s, int ep)
187{
82887262
GH
188 struct endp_data *e = get_endp(s, ep);
189 if (!e->iso_started) {
190 e->iso_started = 1;
191 e->inflight = 0;
192 }
193}
194
195static int change_iso_inflight(USBHostDevice *s, int ep, int value)
196{
197 struct endp_data *e = get_endp(s, ep);
198
199 e->inflight += value;
200 return e->inflight;
bb6d5498
HG
201}
202
060dc841
HG
203static void set_iso_urb(USBHostDevice *s, int ep, AsyncURB *iso_urb)
204{
ca3a36cf 205 get_endp(s, ep)->iso_urb = iso_urb;
060dc841
HG
206}
207
208static AsyncURB *get_iso_urb(USBHostDevice *s, int ep)
209{
ca3a36cf 210 return get_endp(s, ep)->iso_urb;
060dc841
HG
211}
212
213static void set_iso_urb_idx(USBHostDevice *s, int ep, int i)
214{
ca3a36cf 215 get_endp(s, ep)->iso_urb_idx = i;
060dc841
HG
216}
217
218static int get_iso_urb_idx(USBHostDevice *s, int ep)
219{
ca3a36cf 220 return get_endp(s, ep)->iso_urb_idx;
060dc841
HG
221}
222
bb6d5498
HG
223static void set_iso_buffer_used(USBHostDevice *s, int ep, int i)
224{
ca3a36cf 225 get_endp(s, ep)->iso_buffer_used = i;
bb6d5498
HG
226}
227
228static int get_iso_buffer_used(USBHostDevice *s, int ep)
229{
ca3a36cf 230 return get_endp(s, ep)->iso_buffer_used;
bb6d5498
HG
231}
232
6dfcdccb
GH
233static void set_max_packet_size(USBHostDevice *s, int ep, uint8_t *descriptor)
234{
235 int raw = descriptor[4] + (descriptor[5] << 8);
236 int size, microframes;
237
238 size = raw & 0x7ff;
239 switch ((raw >> 11) & 3) {
240 case 1: microframes = 2; break;
241 case 2: microframes = 3; break;
242 default: microframes = 1; break;
243 }
ca3a36cf 244 get_endp(s, ep)->max_packet_size = size * microframes;
6dfcdccb
GH
245}
246
060dc841
HG
247static int get_max_packet_size(USBHostDevice *s, int ep)
248{
ca3a36cf 249 return get_endp(s, ep)->max_packet_size;
060dc841
HG
250}
251
2791104c 252/*
64838171 253 * Async URB state.
060dc841 254 * We always allocate iso packet descriptors even for bulk transfers
2791104c 255 * to simplify allocation and casts.
64838171 256 */
060dc841 257struct AsyncURB
64838171
AL
258{
259 struct usbdevfs_urb urb;
060dc841 260 struct usbdevfs_iso_packet_desc isocpd[ISO_FRAME_DESC_PER_URB];
7a8fc83f
GH
261 USBHostDevice *hdev;
262 QLIST_ENTRY(AsyncURB) next;
b9dc033c 263
060dc841 264 /* For regular async urbs */
64838171 265 USBPacket *packet;
71138531 266 int more; /* large transfer, more urbs follow */
060dc841
HG
267
268 /* For buffered iso handling */
269 int iso_frame_idx; /* -1 means in flight */
270};
b9dc033c 271
7a8fc83f 272static AsyncURB *async_alloc(USBHostDevice *s)
b9dc033c 273{
7a8fc83f
GH
274 AsyncURB *aurb = qemu_mallocz(sizeof(AsyncURB));
275 aurb->hdev = s;
276 QLIST_INSERT_HEAD(&s->aurbs, aurb, next);
277 return aurb;
b9dc033c
AZ
278}
279
64838171 280static void async_free(AsyncURB *aurb)
b9dc033c 281{
7a8fc83f 282 QLIST_REMOVE(aurb, next);
64838171
AL
283 qemu_free(aurb);
284}
b9dc033c 285
41c01ee7
GH
286static void do_disconnect(USBHostDevice *s)
287{
288 printf("husb: device %d.%d disconnected\n",
289 s->bus_num, s->addr);
290 usb_host_close(s);
291 usb_host_auto_check(NULL);
292}
293
64838171
AL
294static void async_complete(void *opaque)
295{
296 USBHostDevice *s = opaque;
297 AsyncURB *aurb;
82887262 298 int urbs = 0;
64838171
AL
299
300 while (1) {
2791104c 301 USBPacket *p;
b9dc033c 302
2791104c 303 int r = ioctl(s->fd, USBDEVFS_REAPURBNDELAY, &aurb);
64838171 304 if (r < 0) {
2791104c 305 if (errno == EAGAIN) {
82887262
GH
306 if (urbs > 2) {
307 fprintf(stderr, "husb: %d iso urbs finished at once\n", urbs);
308 }
64838171 309 return;
2791104c 310 }
24772c1e 311 if (errno == ENODEV && !s->closing) {
41c01ee7 312 do_disconnect(s);
64838171
AL
313 return;
314 }
315
d0f2c4c6 316 DPRINTF("husb: async. reap urb failed errno %d\n", errno);
64838171 317 return;
b9dc033c 318 }
64838171 319
2791104c 320 DPRINTF("husb: async completed. aurb %p status %d alen %d\n",
64838171
AL
321 aurb, aurb->urb.status, aurb->urb.actual_length);
322
060dc841
HG
323 /* If this is a buffered iso urb mark it as complete and don't do
324 anything else (it is handled further in usb_host_handle_iso_data) */
325 if (aurb->iso_frame_idx == -1) {
82887262 326 int inflight;
060dc841
HG
327 if (aurb->urb.status == -EPIPE) {
328 set_halt(s, aurb->urb.endpoint & 0xf);
329 }
330 aurb->iso_frame_idx = 0;
82887262
GH
331 urbs++;
332 inflight = change_iso_inflight(s, aurb->urb.endpoint & 0xf, -1);
333 if (inflight == 0 && is_iso_started(s, aurb->urb.endpoint & 0xf)) {
334 fprintf(stderr, "husb: out of buffers for iso stream\n");
335 }
060dc841
HG
336 continue;
337 }
338
339 p = aurb->packet;
340
2791104c 341 if (p) {
64838171
AL
342 switch (aurb->urb.status) {
343 case 0:
71138531 344 p->len += aurb->urb.actual_length;
64838171
AL
345 break;
346
347 case -EPIPE:
348 set_halt(s, p->devep);
2791104c
DA
349 p->len = USB_RET_STALL;
350 break;
dcc7e25f 351
64838171
AL
352 default:
353 p->len = USB_RET_NAK;
354 break;
355 }
356
50b7963e
HG
357 if (aurb->urb.type == USBDEVFS_URB_TYPE_CONTROL) {
358 usb_generic_async_ctrl_complete(&s->dev, p);
71138531 359 } else if (!aurb->more) {
50b7963e
HG
360 usb_packet_complete(&s->dev, p);
361 }
2791104c 362 }
64838171
AL
363
364 async_free(aurb);
b9dc033c 365 }
b9dc033c
AZ
366}
367
eb5e680a 368static void usb_host_async_cancel(USBDevice *dev, USBPacket *p)
b9dc033c 369{
eb5e680a 370 USBHostDevice *s = DO_UPCAST(USBHostDevice, dev, dev);
227ebeb5 371 AsyncURB *aurb;
b9dc033c 372
227ebeb5
GH
373 QLIST_FOREACH(aurb, &s->aurbs, next) {
374 if (p != aurb->packet) {
375 continue;
376 }
64838171 377
227ebeb5 378 DPRINTF("husb: async cancel: packet %p, aurb %p\n", p, aurb);
b9dc033c 379
227ebeb5
GH
380 /* Mark it as dead (see async_complete above) */
381 aurb->packet = NULL;
382
383 int r = ioctl(s->fd, USBDEVFS_DISCARDURB, aurb);
384 if (r < 0) {
385 DPRINTF("husb: async. discard urb failed errno %d\n", errno);
386 }
b9dc033c 387 }
b9dc033c
AZ
388}
389
446ab128 390static int usb_host_claim_interfaces(USBHostDevice *dev, int configuration)
b9dc033c 391{
41c01ee7 392 const char *op = NULL;
b9dc033c 393 int dev_descr_len, config_descr_len;
d4c4e6fd 394 int interface, nb_interfaces;
b9dc033c
AZ
395 int ret, i;
396
397 if (configuration == 0) /* address state - ignore */
398 return 1;
399
d0f2c4c6 400 DPRINTF("husb: claiming interfaces. config %d\n", configuration);
446ab128 401
b9dc033c
AZ
402 i = 0;
403 dev_descr_len = dev->descr[0];
2791104c 404 if (dev_descr_len > dev->descr_len) {
61c1117f
HG
405 fprintf(stderr, "husb: update iface failed. descr too short\n");
406 return 0;
2791104c 407 }
b9dc033c
AZ
408
409 i += dev_descr_len;
410 while (i < dev->descr_len) {
2791104c
DA
411 DPRINTF("husb: i is %d, descr_len is %d, dl %d, dt %d\n",
412 i, dev->descr_len,
b9dc033c 413 dev->descr[i], dev->descr[i+1]);
64838171 414
b9dc033c
AZ
415 if (dev->descr[i+1] != USB_DT_CONFIG) {
416 i += dev->descr[i];
417 continue;
418 }
419 config_descr_len = dev->descr[i];
420
2791104c 421 printf("husb: config #%d need %d\n", dev->descr[i + 5], configuration);
1f3870ab 422
446ab128
AL
423 if (configuration < 0 || configuration == dev->descr[i + 5]) {
424 configuration = dev->descr[i + 5];
b9dc033c 425 break;
446ab128 426 }
b9dc033c
AZ
427
428 i += config_descr_len;
429 }
430
431 if (i >= dev->descr_len) {
2791104c
DA
432 fprintf(stderr,
433 "husb: update iface failed. no matching configuration\n");
61c1117f 434 return 0;
b9dc033c
AZ
435 }
436 nb_interfaces = dev->descr[i + 4];
437
438#ifdef USBDEVFS_DISCONNECT
439 /* earlier Linux 2.4 do not support that */
440 {
441 struct usbdevfs_ioctl ctrl;
442 for (interface = 0; interface < nb_interfaces; interface++) {
443 ctrl.ioctl_code = USBDEVFS_DISCONNECT;
444 ctrl.ifno = interface;
021730f7 445 ctrl.data = 0;
41c01ee7 446 op = "USBDEVFS_DISCONNECT";
b9dc033c
AZ
447 ret = ioctl(dev->fd, USBDEVFS_IOCTL, &ctrl);
448 if (ret < 0 && errno != ENODATA) {
b9dc033c
AZ
449 goto fail;
450 }
451 }
452 }
453#endif
454
455 /* XXX: only grab if all interfaces are free */
456 for (interface = 0; interface < nb_interfaces; interface++) {
41c01ee7 457 op = "USBDEVFS_CLAIMINTERFACE";
b9dc033c
AZ
458 ret = ioctl(dev->fd, USBDEVFS_CLAIMINTERFACE, &interface);
459 if (ret < 0) {
460 if (errno == EBUSY) {
64838171 461 printf("husb: update iface. device already grabbed\n");
b9dc033c 462 } else {
64838171 463 perror("husb: failed to claim interface");
b9dc033c 464 }
41c01ee7 465 goto fail;
b9dc033c
AZ
466 }
467 }
468
64838171 469 printf("husb: %d interfaces claimed for configuration %d\n",
b9dc033c 470 nb_interfaces, configuration);
b9dc033c 471
446ab128
AL
472 dev->ninterfaces = nb_interfaces;
473 dev->configuration = configuration;
474 return 1;
41c01ee7
GH
475
476fail:
477 if (errno == ENODEV) {
478 do_disconnect(dev);
479 }
480 perror(op);
481 return 0;
446ab128
AL
482}
483
484static int usb_host_release_interfaces(USBHostDevice *s)
485{
486 int ret, i;
487
d0f2c4c6 488 DPRINTF("husb: releasing interfaces\n");
446ab128
AL
489
490 for (i = 0; i < s->ninterfaces; i++) {
491 ret = ioctl(s->fd, USBDEVFS_RELEASEINTERFACE, &i);
492 if (ret < 0) {
493 perror("husb: failed to release interface");
494 return 0;
495 }
496 }
497
b9dc033c
AZ
498 return 1;
499}
500
059809e4 501static void usb_host_handle_reset(USBDevice *dev)
bb36d470 502{
26a9e82a 503 USBHostDevice *s = DO_UPCAST(USBHostDevice, dev, dev);
64838171 504
d0f2c4c6 505 DPRINTF("husb: reset device %u.%u\n", s->bus_num, s->addr);
64838171 506
bb36d470 507 ioctl(s->fd, USBDEVFS_RESET);
446ab128
AL
508
509 usb_host_claim_interfaces(s, s->configuration);
5fafdf24 510}
bb36d470 511
059809e4
FB
512static void usb_host_handle_destroy(USBDevice *dev)
513{
514 USBHostDevice *s = (USBHostDevice *)dev;
515
26a9e82a
GH
516 usb_host_close(s);
517 QTAILQ_REMOVE(&hostdevs, s, next);
b373a63a 518 qemu_remove_exit_notifier(&s->exit);
059809e4
FB
519}
520
b9dc033c
AZ
521static int usb_linux_update_endp_table(USBHostDevice *s);
522
060dc841
HG
523/* iso data is special, we need to keep enough urbs in flight to make sure
524 that the controller never runs out of them, otherwise the device will
525 likely suffer a buffer underrun / overrun. */
526static AsyncURB *usb_host_alloc_iso(USBHostDevice *s, uint8_t ep, int in)
527{
528 AsyncURB *aurb;
529 int i, j, len = get_max_packet_size(s, ep);
530
b81bcd8a
GH
531 aurb = qemu_mallocz(s->iso_urb_count * sizeof(*aurb));
532 for (i = 0; i < s->iso_urb_count; i++) {
060dc841
HG
533 aurb[i].urb.endpoint = ep;
534 aurb[i].urb.buffer_length = ISO_FRAME_DESC_PER_URB * len;
535 aurb[i].urb.buffer = qemu_malloc(aurb[i].urb.buffer_length);
536 aurb[i].urb.type = USBDEVFS_URB_TYPE_ISO;
537 aurb[i].urb.flags = USBDEVFS_URB_ISO_ASAP;
538 aurb[i].urb.number_of_packets = ISO_FRAME_DESC_PER_URB;
539 for (j = 0 ; j < ISO_FRAME_DESC_PER_URB; j++)
540 aurb[i].urb.iso_frame_desc[j].length = len;
541 if (in) {
542 aurb[i].urb.endpoint |= 0x80;
543 /* Mark as fully consumed (idle) */
544 aurb[i].iso_frame_idx = ISO_FRAME_DESC_PER_URB;
545 }
546 }
547 set_iso_urb(s, ep, aurb);
548
549 return aurb;
550}
551
552static void usb_host_stop_n_free_iso(USBHostDevice *s, uint8_t ep)
553{
554 AsyncURB *aurb;
555 int i, ret, killed = 0, free = 1;
556
557 aurb = get_iso_urb(s, ep);
558 if (!aurb) {
559 return;
560 }
561
b81bcd8a 562 for (i = 0; i < s->iso_urb_count; i++) {
060dc841
HG
563 /* in flight? */
564 if (aurb[i].iso_frame_idx == -1) {
565 ret = ioctl(s->fd, USBDEVFS_DISCARDURB, &aurb[i]);
566 if (ret < 0) {
567 printf("husb: discard isoc in urb failed errno %d\n", errno);
568 free = 0;
569 continue;
570 }
571 killed++;
572 }
573 }
574
575 /* Make sure any urbs we've killed are reaped before we free them */
576 if (killed) {
577 async_complete(s);
578 }
579
b81bcd8a 580 for (i = 0; i < s->iso_urb_count; i++) {
060dc841
HG
581 qemu_free(aurb[i].urb.buffer);
582 }
583
584 if (free)
585 qemu_free(aurb);
586 else
587 printf("husb: leaking iso urbs because of discard failure\n");
588 set_iso_urb(s, ep, NULL);
bb6d5498
HG
589 set_iso_urb_idx(s, ep, 0);
590 clear_iso_started(s, ep);
060dc841
HG
591}
592
593static int urb_status_to_usb_ret(int status)
594{
595 switch (status) {
596 case -EPIPE:
597 return USB_RET_STALL;
598 default:
599 return USB_RET_NAK;
600 }
601}
602
bb6d5498 603static int usb_host_handle_iso_data(USBHostDevice *s, USBPacket *p, int in)
060dc841
HG
604{
605 AsyncURB *aurb;
bb6d5498 606 int i, j, ret, max_packet_size, offset, len = 0;
975f2998
HG
607
608 max_packet_size = get_max_packet_size(s, p->devep);
609 if (max_packet_size == 0)
610 return USB_RET_NAK;
060dc841
HG
611
612 aurb = get_iso_urb(s, p->devep);
613 if (!aurb) {
bb6d5498 614 aurb = usb_host_alloc_iso(s, p->devep, in);
060dc841
HG
615 }
616
617 i = get_iso_urb_idx(s, p->devep);
618 j = aurb[i].iso_frame_idx;
619 if (j >= 0 && j < ISO_FRAME_DESC_PER_URB) {
bb6d5498
HG
620 if (in) {
621 /* Check urb status */
622 if (aurb[i].urb.status) {
623 len = urb_status_to_usb_ret(aurb[i].urb.status);
624 /* Move to the next urb */
625 aurb[i].iso_frame_idx = ISO_FRAME_DESC_PER_URB - 1;
626 /* Check frame status */
627 } else if (aurb[i].urb.iso_frame_desc[j].status) {
628 len = urb_status_to_usb_ret(
629 aurb[i].urb.iso_frame_desc[j].status);
630 /* Check the frame fits */
631 } else if (aurb[i].urb.iso_frame_desc[j].actual_length > p->len) {
632 printf("husb: received iso data is larger then packet\n");
633 len = USB_RET_NAK;
634 /* All good copy data over */
635 } else {
636 len = aurb[i].urb.iso_frame_desc[j].actual_length;
637 memcpy(p->data,
638 aurb[i].urb.buffer +
639 j * aurb[i].urb.iso_frame_desc[0].length,
640 len);
641 }
060dc841 642 } else {
bb6d5498
HG
643 len = p->len;
644 offset = (j == 0) ? 0 : get_iso_buffer_used(s, p->devep);
645
646 /* Check the frame fits */
647 if (len > max_packet_size) {
648 printf("husb: send iso data is larger then max packet size\n");
649 return USB_RET_NAK;
650 }
651
652 /* All good copy data over */
653 memcpy(aurb[i].urb.buffer + offset, p->data, len);
654 aurb[i].urb.iso_frame_desc[j].length = len;
655 offset += len;
656 set_iso_buffer_used(s, p->devep, offset);
657
658 /* Start the stream once we have buffered enough data */
659 if (!is_iso_started(s, p->devep) && i == 1 && j == 8) {
660 set_iso_started(s, p->devep);
661 }
060dc841
HG
662 }
663 aurb[i].iso_frame_idx++;
664 if (aurb[i].iso_frame_idx == ISO_FRAME_DESC_PER_URB) {
b81bcd8a 665 i = (i + 1) % s->iso_urb_count;
060dc841
HG
666 set_iso_urb_idx(s, p->devep, i);
667 }
bb6d5498
HG
668 } else {
669 if (in) {
670 set_iso_started(s, p->devep);
671 } else {
672 DPRINTF("hubs: iso out error no free buffer, dropping packet\n");
673 }
060dc841
HG
674 }
675
bb6d5498
HG
676 if (is_iso_started(s, p->devep)) {
677 /* (Re)-submit all fully consumed / filled urbs */
b81bcd8a 678 for (i = 0; i < s->iso_urb_count; i++) {
bb6d5498
HG
679 if (aurb[i].iso_frame_idx == ISO_FRAME_DESC_PER_URB) {
680 ret = ioctl(s->fd, USBDEVFS_SUBMITURB, &aurb[i]);
681 if (ret < 0) {
682 printf("husb error submitting iso urb %d: %d\n", i, errno);
683 if (!in || len == 0) {
684 switch(errno) {
685 case ETIMEDOUT:
686 len = USB_RET_NAK;
0225e254 687 break;
bb6d5498
HG
688 case EPIPE:
689 default:
690 len = USB_RET_STALL;
691 }
060dc841 692 }
bb6d5498 693 break;
060dc841 694 }
bb6d5498 695 aurb[i].iso_frame_idx = -1;
82887262 696 change_iso_inflight(s, p->devep, +1);
060dc841 697 }
060dc841
HG
698 }
699 }
700
701 return len;
702}
703
50b7963e 704static int usb_host_handle_data(USBDevice *dev, USBPacket *p)
bb36d470 705{
50b7963e 706 USBHostDevice *s = DO_UPCAST(USBHostDevice, dev, dev);
64838171 707 struct usbdevfs_urb *urb;
446ab128 708 AsyncURB *aurb;
71138531
GH
709 int ret, rem;
710 uint8_t *pbuf;
060dc841 711 uint8_t ep;
b9dc033c 712
a0b5fece
HG
713 if (!is_valid(s, p->devep)) {
714 return USB_RET_NAK;
715 }
716
2791104c 717 if (p->pid == USB_TOKEN_IN) {
060dc841 718 ep = p->devep | 0x80;
2791104c 719 } else {
060dc841 720 ep = p->devep;
2791104c 721 }
64838171
AL
722
723 if (is_halted(s, p->devep)) {
060dc841 724 ret = ioctl(s->fd, USBDEVFS_CLEAR_HALT, &ep);
64838171 725 if (ret < 0) {
2791104c 726 DPRINTF("husb: failed to clear halt. ep 0x%x errno %d\n",
060dc841 727 ep, errno);
bb36d470 728 return USB_RET_NAK;
bb36d470 729 }
64838171 730 clear_halt(s, p->devep);
4d043a09
AZ
731 }
732
bb6d5498
HG
733 if (is_isoc(s, p->devep)) {
734 return usb_host_handle_iso_data(s, p, p->pid == USB_TOKEN_IN);
735 }
060dc841 736
71138531
GH
737 rem = p->len;
738 pbuf = p->data;
739 p->len = 0;
740 while (rem) {
741 aurb = async_alloc(s);
742 aurb->packet = p;
743
744 urb = &aurb->urb;
745 urb->endpoint = ep;
746 urb->type = USBDEVFS_URB_TYPE_BULK;
747 urb->usercontext = s;
748 urb->buffer = pbuf;
749
750 if (rem > MAX_USBFS_BUFFER_SIZE) {
751 urb->buffer_length = MAX_USBFS_BUFFER_SIZE;
752 aurb->more = 1;
753 } else {
754 urb->buffer_length = rem;
755 aurb->more = 0;
756 }
757 pbuf += urb->buffer_length;
758 rem -= urb->buffer_length;
b9dc033c 759
71138531 760 ret = ioctl(s->fd, USBDEVFS_SUBMITURB, urb);
b9dc033c 761
71138531
GH
762 DPRINTF("husb: data submit: ep 0x%x, len %u, more %d, packet %p, aurb %p\n",
763 urb->endpoint, urb->buffer_length, aurb->more, p, aurb);
b9dc033c 764
71138531
GH
765 if (ret < 0) {
766 DPRINTF("husb: submit failed. errno %d\n", errno);
767 async_free(aurb);
b9dc033c 768
71138531
GH
769 switch(errno) {
770 case ETIMEDOUT:
771 return USB_RET_NAK;
772 case EPIPE:
773 default:
774 return USB_RET_STALL;
775 }
b9dc033c
AZ
776 }
777 }
64838171 778
b9dc033c 779 return USB_RET_ASYNC;
b9dc033c
AZ
780}
781
446ab128
AL
782static int ctrl_error(void)
783{
2791104c 784 if (errno == ETIMEDOUT) {
446ab128 785 return USB_RET_NAK;
2791104c 786 } else {
446ab128 787 return USB_RET_STALL;
2791104c 788 }
446ab128
AL
789}
790
791static int usb_host_set_address(USBHostDevice *s, int addr)
792{
d0f2c4c6 793 DPRINTF("husb: ctrl set addr %u\n", addr);
446ab128
AL
794 s->dev.addr = addr;
795 return 0;
796}
797
798static int usb_host_set_config(USBHostDevice *s, int config)
799{
800 usb_host_release_interfaces(s);
801
802 int ret = ioctl(s->fd, USBDEVFS_SETCONFIGURATION, &config);
2791104c 803
d0f2c4c6 804 DPRINTF("husb: ctrl set config %d ret %d errno %d\n", config, ret, errno);
2791104c
DA
805
806 if (ret < 0) {
446ab128 807 return ctrl_error();
2791104c 808 }
446ab128
AL
809 usb_host_claim_interfaces(s, config);
810 return 0;
811}
812
813static int usb_host_set_interface(USBHostDevice *s, int iface, int alt)
814{
815 struct usbdevfs_setinterface si;
060dc841
HG
816 int i, ret;
817
3a4854b3 818 for (i = 1; i <= MAX_ENDPOINTS; i++) {
060dc841
HG
819 if (is_isoc(s, i)) {
820 usb_host_stop_n_free_iso(s, i);
821 }
822 }
446ab128
AL
823
824 si.interface = iface;
825 si.altsetting = alt;
826 ret = ioctl(s->fd, USBDEVFS_SETINTERFACE, &si);
446ab128 827
2791104c
DA
828 DPRINTF("husb: ctrl set iface %d altset %d ret %d errno %d\n",
829 iface, alt, ret, errno);
830
831 if (ret < 0) {
832 return ctrl_error();
833 }
446ab128
AL
834 usb_linux_update_endp_table(s);
835 return 0;
836}
837
50b7963e
HG
838static int usb_host_handle_control(USBDevice *dev, USBPacket *p,
839 int request, int value, int index, int length, uint8_t *data)
446ab128 840{
50b7963e 841 USBHostDevice *s = DO_UPCAST(USBHostDevice, dev, dev);
446ab128
AL
842 struct usbdevfs_urb *urb;
843 AsyncURB *aurb;
50b7963e 844 int ret;
446ab128 845
2791104c 846 /*
446ab128
AL
847 * Process certain standard device requests.
848 * These are infrequent and are processed synchronously.
849 */
446ab128 850
50b7963e 851 /* Note request is (bRequestType << 8) | bRequest */
d0f2c4c6 852 DPRINTF("husb: ctrl type 0x%x req 0x%x val 0x%x index %u len %u\n",
50b7963e 853 request >> 8, request & 0xff, value, index, length);
446ab128 854
50b7963e
HG
855 switch (request) {
856 case DeviceOutRequest | USB_REQ_SET_ADDRESS:
857 return usb_host_set_address(s, value);
446ab128 858
50b7963e
HG
859 case DeviceOutRequest | USB_REQ_SET_CONFIGURATION:
860 return usb_host_set_config(s, value & 0xff);
446ab128 861
50b7963e 862 case InterfaceOutRequest | USB_REQ_SET_INTERFACE:
446ab128 863 return usb_host_set_interface(s, index, value);
2791104c 864 }
446ab128
AL
865
866 /* The rest are asynchronous */
867
50b7963e
HG
868 if (length > sizeof(dev->data_buf)) {
869 fprintf(stderr, "husb: ctrl buffer too small (%d > %zu)\n",
870 length, sizeof(dev->data_buf));
b2e3b6e9 871 return USB_RET_STALL;
c4c0e236
JP
872 }
873
7a8fc83f 874 aurb = async_alloc(s);
446ab128
AL
875 aurb->packet = p;
876
2791104c 877 /*
446ab128
AL
878 * Setup ctrl transfer.
879 *
a0102082 880 * s->ctrl is laid out such that data buffer immediately follows
446ab128 881 * 'req' struct which is exactly what usbdevfs expects.
2791104c 882 */
446ab128
AL
883 urb = &aurb->urb;
884
885 urb->type = USBDEVFS_URB_TYPE_CONTROL;
886 urb->endpoint = p->devep;
887
50b7963e
HG
888 urb->buffer = &dev->setup_buf;
889 urb->buffer_length = length + 8;
446ab128
AL
890
891 urb->usercontext = s;
892
893 ret = ioctl(s->fd, USBDEVFS_SUBMITURB, urb);
894
d0f2c4c6 895 DPRINTF("husb: submit ctrl. len %u aurb %p\n", urb->buffer_length, aurb);
446ab128
AL
896
897 if (ret < 0) {
d0f2c4c6 898 DPRINTF("husb: submit failed. errno %d\n", errno);
446ab128
AL
899 async_free(aurb);
900
901 switch(errno) {
902 case ETIMEDOUT:
903 return USB_RET_NAK;
904 case EPIPE:
905 default:
906 return USB_RET_STALL;
907 }
908 }
909
446ab128
AL
910 return USB_RET_ASYNC;
911}
912
71d71bbd 913static int usb_linux_get_configuration(USBHostDevice *s)
b9dc033c 914{
71d71bbd 915 uint8_t configuration;
e41b3910 916 struct usb_ctrltransfer ct;
71d71bbd 917 int ret;
b9dc033c 918
2cc59d8c
HG
919 if (usb_fs_type == USB_FS_SYS) {
920 char device_name[32], line[1024];
921 int configuration;
922
5557d820 923 sprintf(device_name, "%d-%s", s->bus_num, s->port);
2cc59d8c
HG
924
925 if (!usb_host_read_file(line, sizeof(line), "bConfigurationValue",
926 device_name)) {
927 goto usbdevfs;
928 }
929 if (sscanf(line, "%d", &configuration) != 1) {
930 goto usbdevfs;
931 }
932 return configuration;
933 }
934
935usbdevfs:
b9dc033c
AZ
936 ct.bRequestType = USB_DIR_IN;
937 ct.bRequest = USB_REQ_GET_CONFIGURATION;
938 ct.wValue = 0;
939 ct.wIndex = 0;
940 ct.wLength = 1;
941 ct.data = &configuration;
942 ct.timeout = 50;
943
944 ret = ioctl(s->fd, USBDEVFS_CONTROL, &ct);
945 if (ret < 0) {
71d71bbd
HG
946 perror("usb_linux_get_configuration");
947 return -1;
b9dc033c
AZ
948 }
949
950 /* in address state */
2791104c 951 if (configuration == 0) {
71d71bbd 952 return -1;
2791104c 953 }
b9dc033c 954
71d71bbd
HG
955 return configuration;
956}
957
ed3a328d
HG
958static uint8_t usb_linux_get_alt_setting(USBHostDevice *s,
959 uint8_t configuration, uint8_t interface)
960{
961 uint8_t alt_setting;
962 struct usb_ctrltransfer ct;
963 int ret;
964
c43831fb
HG
965 if (usb_fs_type == USB_FS_SYS) {
966 char device_name[64], line[1024];
967 int alt_setting;
968
5557d820 969 sprintf(device_name, "%d-%s:%d.%d", s->bus_num, s->port,
c43831fb
HG
970 (int)configuration, (int)interface);
971
972 if (!usb_host_read_file(line, sizeof(line), "bAlternateSetting",
973 device_name)) {
974 goto usbdevfs;
975 }
976 if (sscanf(line, "%d", &alt_setting) != 1) {
977 goto usbdevfs;
978 }
979 return alt_setting;
980 }
981
982usbdevfs:
ed3a328d
HG
983 ct.bRequestType = USB_DIR_IN | USB_RECIP_INTERFACE;
984 ct.bRequest = USB_REQ_GET_INTERFACE;
985 ct.wValue = 0;
986 ct.wIndex = interface;
987 ct.wLength = 1;
988 ct.data = &alt_setting;
989 ct.timeout = 50;
990 ret = ioctl(s->fd, USBDEVFS_CONTROL, &ct);
991 if (ret < 0) {
992 /* Assume alt 0 on error */
993 return 0;
994 }
995
996 return alt_setting;
997}
998
71d71bbd
HG
999/* returns 1 on problem encountered or 0 for success */
1000static int usb_linux_update_endp_table(USBHostDevice *s)
1001{
1002 uint8_t *descriptors;
1003 uint8_t devep, type, configuration, alt_interface;
ed3a328d 1004 int interface, length, i;
71d71bbd 1005
a0b5fece
HG
1006 for (i = 0; i < MAX_ENDPOINTS; i++)
1007 s->endp_table[i].type = INVALID_EP_TYPE;
1008
71d71bbd
HG
1009 i = usb_linux_get_configuration(s);
1010 if (i < 0)
1011 return 1;
1012 configuration = i;
1013
b9dc033c
AZ
1014 /* get the desired configuration, interface, and endpoint descriptors
1015 * from device description */
1016 descriptors = &s->descr[18];
1017 length = s->descr_len - 18;
1018 i = 0;
1019
1020 if (descriptors[i + 1] != USB_DT_CONFIG ||
1021 descriptors[i + 5] != configuration) {
d0f2c4c6 1022 DPRINTF("invalid descriptor data - configuration\n");
b9dc033c
AZ
1023 return 1;
1024 }
1025 i += descriptors[i];
1026
1027 while (i < length) {
1028 if (descriptors[i + 1] != USB_DT_INTERFACE ||
1029 (descriptors[i + 1] == USB_DT_INTERFACE &&
1030 descriptors[i + 4] == 0)) {
1031 i += descriptors[i];
1032 continue;
1033 }
1034
1035 interface = descriptors[i + 2];
ed3a328d 1036 alt_interface = usb_linux_get_alt_setting(s, configuration, interface);
b9dc033c
AZ
1037
1038 /* the current interface descriptor is the active interface
1039 * and has endpoints */
1040 if (descriptors[i + 3] != alt_interface) {
1041 i += descriptors[i];
1042 continue;
1043 }
1044
1045 /* advance to the endpoints */
2791104c 1046 while (i < length && descriptors[i +1] != USB_DT_ENDPOINT) {
b9dc033c 1047 i += descriptors[i];
2791104c 1048 }
b9dc033c
AZ
1049
1050 if (i >= length)
1051 break;
1052
1053 while (i < length) {
2791104c 1054 if (descriptors[i + 1] != USB_DT_ENDPOINT) {
b9dc033c 1055 break;
2791104c 1056 }
b9dc033c
AZ
1057
1058 devep = descriptors[i + 2];
130314f8
HG
1059 if ((devep & 0x0f) == 0) {
1060 fprintf(stderr, "usb-linux: invalid ep descriptor, ep == 0\n");
1061 return 1;
1062 }
1063
b9dc033c
AZ
1064 switch (descriptors[i + 3] & 0x3) {
1065 case 0x00:
1066 type = USBDEVFS_URB_TYPE_CONTROL;
1067 break;
1068 case 0x01:
1069 type = USBDEVFS_URB_TYPE_ISO;
6dfcdccb 1070 set_max_packet_size(s, (devep & 0xf), descriptors + i);
b9dc033c
AZ
1071 break;
1072 case 0x02:
1073 type = USBDEVFS_URB_TYPE_BULK;
1074 break;
1075 case 0x03:
1076 type = USBDEVFS_URB_TYPE_INTERRUPT;
1077 break;
ddbda432
AL
1078 default:
1079 DPRINTF("usb_host: malformed endpoint type\n");
1080 type = USBDEVFS_URB_TYPE_BULK;
b9dc033c
AZ
1081 }
1082 s->endp_table[(devep & 0xf) - 1].type = type;
64838171 1083 s->endp_table[(devep & 0xf) - 1].halted = 0;
b9dc033c
AZ
1084
1085 i += descriptors[i];
1086 }
1087 }
1088 return 0;
1089}
1090
26a9e82a 1091static int usb_host_open(USBHostDevice *dev, int bus_num,
3991c35e 1092 int addr, char *port, const char *prod_name, int speed)
bb36d470 1093{
b9dc033c 1094 int fd = -1, ret;
a594cfbf 1095 char buf[1024];
1f3870ab 1096
2791104c 1097 if (dev->fd != -1) {
26a9e82a 1098 goto fail;
2791104c 1099 }
64838171 1100 printf("husb: open device %d.%d\n", bus_num, addr);
3b46e624 1101
0f431527
AL
1102 if (!usb_host_device_path) {
1103 perror("husb: USB Host Device Path not set");
1104 goto fail;
1105 }
1106 snprintf(buf, sizeof(buf), "%s/%03d/%03d", usb_host_device_path,
a594cfbf 1107 bus_num, addr);
b9dc033c 1108 fd = open(buf, O_RDWR | O_NONBLOCK);
bb36d470 1109 if (fd < 0) {
a594cfbf 1110 perror(buf);
1f3870ab 1111 goto fail;
bb36d470 1112 }
d0f2c4c6 1113 DPRINTF("husb: opened %s\n", buf);
bb36d470 1114
806b6024
GH
1115 dev->bus_num = bus_num;
1116 dev->addr = addr;
5557d820 1117 strcpy(dev->port, port);
22f84e73 1118 dev->fd = fd;
806b6024 1119
b9dc033c
AZ
1120 /* read the device description */
1121 dev->descr_len = read(fd, dev->descr, sizeof(dev->descr));
1122 if (dev->descr_len <= 0) {
64838171 1123 perror("husb: reading device data failed");
bb36d470
FB
1124 goto fail;
1125 }
3b46e624 1126
b9dc033c 1127#ifdef DEBUG
868bfe2b 1128 {
b9dc033c
AZ
1129 int x;
1130 printf("=== begin dumping device descriptor data ===\n");
2791104c 1131 for (x = 0; x < dev->descr_len; x++) {
b9dc033c 1132 printf("%02x ", dev->descr[x]);
2791104c 1133 }
b9dc033c 1134 printf("\n=== end dumping device descriptor data ===\n");
bb36d470 1135 }
a594cfbf
FB
1136#endif
1137
b9dc033c 1138
2791104c
DA
1139 /*
1140 * Initial configuration is -1 which makes us claim first
446ab128 1141 * available config. We used to start with 1, which does not
2791104c 1142 * always work. I've seen devices where first config starts
446ab128
AL
1143 * with 2.
1144 */
2791104c 1145 if (!usb_host_claim_interfaces(dev, -1)) {
b9dc033c 1146 goto fail;
2791104c 1147 }
bb36d470 1148
b9dc033c 1149 ret = usb_linux_update_endp_table(dev);
2791104c 1150 if (ret) {
bb36d470 1151 goto fail;
2791104c 1152 }
b9dc033c 1153
3991c35e
HG
1154 if (speed == -1) {
1155 struct usbdevfs_connectinfo ci;
1156
1157 ret = ioctl(fd, USBDEVFS_CONNECTINFO, &ci);
1158 if (ret < 0) {
1159 perror("usb_host_device_open: USBDEVFS_CONNECTINFO");
1160 goto fail;
1161 }
1162
1163 if (ci.slow) {
1164 speed = USB_SPEED_LOW;
1165 } else {
1166 speed = USB_SPEED_HIGH;
1167 }
2791104c 1168 }
3991c35e 1169 dev->dev.speed = speed;
ba3f9bfb 1170 dev->dev.speedmask = (1 << speed);
3991c35e
HG
1171
1172 printf("husb: grabbed usb device %d.%d\n", bus_num, addr);
bb36d470 1173
2791104c 1174 if (!prod_name || prod_name[0] == '\0') {
0fe6d12e 1175 snprintf(dev->dev.product_desc, sizeof(dev->dev.product_desc),
4b096fc9 1176 "host:%d.%d", bus_num, addr);
2791104c 1177 } else {
0fe6d12e 1178 pstrcpy(dev->dev.product_desc, sizeof(dev->dev.product_desc),
4b096fc9 1179 prod_name);
2791104c 1180 }
1f6e24e7 1181
fa19bf83
HG
1182 ret = usb_device_attach(&dev->dev);
1183 if (ret) {
1184 goto fail;
1185 }
1186
64838171
AL
1187 /* USB devio uses 'write' flag to check for async completions */
1188 qemu_set_fd_handler(dev->fd, NULL, async_complete, dev);
1f3870ab 1189
26a9e82a 1190 return 0;
4b096fc9 1191
b9dc033c 1192fail:
1f45a81b
GH
1193 if (dev->fd != -1) {
1194 close(dev->fd);
1195 dev->fd = -1;
2791104c 1196 }
26a9e82a
GH
1197 return -1;
1198}
1199
1200static int usb_host_close(USBHostDevice *dev)
1201{
060dc841
HG
1202 int i;
1203
1f45a81b 1204 if (dev->fd == -1 || !dev->dev.attached) {
26a9e82a 1205 return -1;
2791104c 1206 }
26a9e82a
GH
1207
1208 qemu_set_fd_handler(dev->fd, NULL, NULL, NULL);
1209 dev->closing = 1;
3a4854b3 1210 for (i = 1; i <= MAX_ENDPOINTS; i++) {
060dc841
HG
1211 if (is_isoc(dev, i)) {
1212 usb_host_stop_n_free_iso(dev, i);
1213 }
1214 }
26a9e82a
GH
1215 async_complete(dev);
1216 dev->closing = 0;
1217 usb_device_detach(&dev->dev);
00ff227a 1218 ioctl(dev->fd, USBDEVFS_RESET);
26a9e82a
GH
1219 close(dev->fd);
1220 dev->fd = -1;
1221 return 0;
1222}
1223
b373a63a
SH
1224static void usb_host_exit_notifier(struct Notifier* n)
1225{
1226 USBHostDevice *s = container_of(n, USBHostDevice, exit);
1227
1228 if (s->fd != -1) {
1229 ioctl(s->fd, USBDEVFS_RESET);
1230 }
1231}
1232
26a9e82a
GH
1233static int usb_host_initfn(USBDevice *dev)
1234{
1235 USBHostDevice *s = DO_UPCAST(USBHostDevice, dev, dev);
1236
1237 dev->auto_attach = 0;
1238 s->fd = -1;
1239 QTAILQ_INSERT_TAIL(&hostdevs, s, next);
b373a63a
SH
1240 s->exit.notify = usb_host_exit_notifier;
1241 qemu_add_exit_notifier(&s->exit);
26a9e82a
GH
1242 usb_host_auto_check(NULL);
1243 return 0;
a594cfbf 1244}
bb36d470 1245
806b6024 1246static struct USBDeviceInfo usb_host_dev_info = {
06384698 1247 .product_desc = "USB Host Device",
556cd098 1248 .qdev.name = "usb-host",
806b6024
GH
1249 .qdev.size = sizeof(USBHostDevice),
1250 .init = usb_host_initfn,
50b7963e 1251 .handle_packet = usb_generic_handle_packet,
eb5e680a 1252 .cancel_packet = usb_host_async_cancel,
50b7963e
HG
1253 .handle_data = usb_host_handle_data,
1254 .handle_control = usb_host_handle_control,
806b6024 1255 .handle_reset = usb_host_handle_reset,
806b6024 1256 .handle_destroy = usb_host_handle_destroy,
26a9e82a
GH
1257 .usbdevice_name = "host",
1258 .usbdevice_init = usb_host_device_open,
1259 .qdev.props = (Property[]) {
1260 DEFINE_PROP_UINT32("hostbus", USBHostDevice, match.bus_num, 0),
1261 DEFINE_PROP_UINT32("hostaddr", USBHostDevice, match.addr, 0),
9056a297 1262 DEFINE_PROP_STRING("hostport", USBHostDevice, match.port),
26a9e82a
GH
1263 DEFINE_PROP_HEX32("vendorid", USBHostDevice, match.vendor_id, 0),
1264 DEFINE_PROP_HEX32("productid", USBHostDevice, match.product_id, 0),
b81bcd8a 1265 DEFINE_PROP_UINT32("isobufs", USBHostDevice, iso_urb_count, 4),
26a9e82a
GH
1266 DEFINE_PROP_END_OF_LIST(),
1267 },
806b6024
GH
1268};
1269
1270static void usb_host_register_devices(void)
1271{
1272 usb_qdev_register(&usb_host_dev_info);
1273}
1274device_init(usb_host_register_devices)
1275
4b096fc9
AL
1276USBDevice *usb_host_device_open(const char *devname)
1277{
0745eb1e 1278 struct USBAutoFilter filter;
26a9e82a 1279 USBDevice *dev;
26a9e82a
GH
1280 char *p;
1281
556cd098 1282 dev = usb_create(NULL /* FIXME */, "usb-host");
4b096fc9 1283
5d0c5750 1284 if (strstr(devname, "auto:")) {
2791104c 1285 if (parse_filter(devname, &filter) < 0) {
26a9e82a 1286 goto fail;
2791104c 1287 }
26a9e82a
GH
1288 } else {
1289 if ((p = strchr(devname, '.'))) {
0745eb1e
MA
1290 filter.bus_num = strtoul(devname, NULL, 0);
1291 filter.addr = strtoul(p + 1, NULL, 0);
1292 filter.vendor_id = 0;
1293 filter.product_id = 0;
26a9e82a 1294 } else if ((p = strchr(devname, ':'))) {
0745eb1e
MA
1295 filter.bus_num = 0;
1296 filter.addr = 0;
26a9e82a 1297 filter.vendor_id = strtoul(devname, NULL, 16);
0745eb1e 1298 filter.product_id = strtoul(p + 1, NULL, 16);
26a9e82a
GH
1299 } else {
1300 goto fail;
1301 }
5d0c5750 1302 }
4b096fc9 1303
0745eb1e
MA
1304 qdev_prop_set_uint32(&dev->qdev, "hostbus", filter.bus_num);
1305 qdev_prop_set_uint32(&dev->qdev, "hostaddr", filter.addr);
26a9e82a
GH
1306 qdev_prop_set_uint32(&dev->qdev, "vendorid", filter.vendor_id);
1307 qdev_prop_set_uint32(&dev->qdev, "productid", filter.product_id);
beb6f0de 1308 qdev_init_nofail(&dev->qdev);
26a9e82a 1309 return dev;
5d0c5750 1310
26a9e82a
GH
1311fail:
1312 qdev_free(&dev->qdev);
1313 return NULL;
4b096fc9 1314}
5d0c5750
AL
1315
1316int usb_host_device_close(const char *devname)
1317{
26a9e82a 1318#if 0
5d0c5750
AL
1319 char product_name[PRODUCT_NAME_SZ];
1320 int bus_num, addr;
1321 USBHostDevice *s;
1322
2791104c 1323 if (strstr(devname, "auto:")) {
5d0c5750 1324 return usb_host_auto_del(devname);
2791104c
DA
1325 }
1326 if (usb_host_find_device(&bus_num, &addr, product_name,
1327 sizeof(product_name), devname) < 0) {
5d0c5750 1328 return -1;
2791104c 1329 }
5d0c5750
AL
1330 s = hostdev_find(bus_num, addr);
1331 if (s) {
a5d2f727 1332 usb_device_delete_addr(s->bus_num, s->dev.addr);
5d0c5750
AL
1333 return 0;
1334 }
26a9e82a 1335#endif
5d0c5750
AL
1336
1337 return -1;
1338}
a5d2f727 1339
a594cfbf 1340static int get_tag_value(char *buf, int buf_size,
5fafdf24 1341 const char *str, const char *tag,
a594cfbf
FB
1342 const char *stopchars)
1343{
1344 const char *p;
1345 char *q;
1346 p = strstr(str, tag);
2791104c 1347 if (!p) {
a594cfbf 1348 return -1;
2791104c 1349 }
a594cfbf 1350 p += strlen(tag);
2791104c 1351 while (qemu_isspace(*p)) {
a594cfbf 1352 p++;
2791104c 1353 }
a594cfbf
FB
1354 q = buf;
1355 while (*p != '\0' && !strchr(stopchars, *p)) {
2791104c 1356 if ((q - buf) < (buf_size - 1)) {
a594cfbf 1357 *q++ = *p;
2791104c 1358 }
a594cfbf
FB
1359 p++;
1360 }
1361 *q = '\0';
1362 return q - buf;
bb36d470
FB
1363}
1364
0f431527
AL
1365/*
1366 * Use /proc/bus/usb/devices or /dev/bus/usb/devices file to determine
1367 * host's USB devices. This is legacy support since many distributions
1368 * are moving to /sys/bus/usb
1369 */
1370static int usb_host_scan_dev(void *opaque, USBScanFunc *func)
bb36d470 1371{
660f11be 1372 FILE *f = NULL;
a594cfbf 1373 char line[1024];
bb36d470 1374 char buf[1024];
a594cfbf 1375 int bus_num, addr, speed, device_count, class_id, product_id, vendor_id;
a594cfbf 1376 char product_name[512];
0f431527 1377 int ret = 0;
3b46e624 1378
0f431527
AL
1379 if (!usb_host_device_path) {
1380 perror("husb: USB Host Device Path not set");
1381 goto the_end;
1382 }
1383 snprintf(line, sizeof(line), "%s/devices", usb_host_device_path);
1384 f = fopen(line, "r");
a594cfbf 1385 if (!f) {
0f431527
AL
1386 perror("husb: cannot open devices file");
1387 goto the_end;
a594cfbf 1388 }
0f431527 1389
a594cfbf 1390 device_count = 0;
3991c35e
HG
1391 bus_num = addr = class_id = product_id = vendor_id = 0;
1392 speed = -1; /* Can't get the speed from /[proc|dev]/bus/usb/devices */
bb36d470 1393 for(;;) {
2791104c 1394 if (fgets(line, sizeof(line), f) == NULL) {
bb36d470 1395 break;
2791104c
DA
1396 }
1397 if (strlen(line) > 0) {
a594cfbf 1398 line[strlen(line) - 1] = '\0';
2791104c 1399 }
a594cfbf 1400 if (line[0] == 'T' && line[1] == ':') {
38ca0f6d
PB
1401 if (device_count && (vendor_id || product_id)) {
1402 /* New device. Add the previously discovered device. */
0f5160d1 1403 ret = func(opaque, bus_num, addr, 0, class_id, vendor_id,
a594cfbf 1404 product_id, product_name, speed);
2791104c 1405 if (ret) {
a594cfbf 1406 goto the_end;
2791104c 1407 }
a594cfbf 1408 }
2791104c 1409 if (get_tag_value(buf, sizeof(buf), line, "Bus=", " ") < 0) {
a594cfbf 1410 goto fail;
2791104c 1411 }
a594cfbf 1412 bus_num = atoi(buf);
2791104c 1413 if (get_tag_value(buf, sizeof(buf), line, "Dev#=", " ") < 0) {
a594cfbf 1414 goto fail;
2791104c 1415 }
a594cfbf 1416 addr = atoi(buf);
2791104c 1417 if (get_tag_value(buf, sizeof(buf), line, "Spd=", " ") < 0) {
a594cfbf 1418 goto fail;
2791104c 1419 }
f264cfbf
HG
1420 if (!strcmp(buf, "5000")) {
1421 speed = USB_SPEED_SUPER;
1422 } else if (!strcmp(buf, "480")) {
a594cfbf 1423 speed = USB_SPEED_HIGH;
2791104c 1424 } else if (!strcmp(buf, "1.5")) {
a594cfbf 1425 speed = USB_SPEED_LOW;
2791104c 1426 } else {
a594cfbf 1427 speed = USB_SPEED_FULL;
2791104c 1428 }
a594cfbf
FB
1429 product_name[0] = '\0';
1430 class_id = 0xff;
1431 device_count++;
1432 product_id = 0;
1433 vendor_id = 0;
1434 } else if (line[0] == 'P' && line[1] == ':') {
2791104c 1435 if (get_tag_value(buf, sizeof(buf), line, "Vendor=", " ") < 0) {
a594cfbf 1436 goto fail;
2791104c 1437 }
a594cfbf 1438 vendor_id = strtoul(buf, NULL, 16);
2791104c 1439 if (get_tag_value(buf, sizeof(buf), line, "ProdID=", " ") < 0) {
a594cfbf 1440 goto fail;
2791104c 1441 }
a594cfbf
FB
1442 product_id = strtoul(buf, NULL, 16);
1443 } else if (line[0] == 'S' && line[1] == ':') {
2791104c 1444 if (get_tag_value(buf, sizeof(buf), line, "Product=", "") < 0) {
a594cfbf 1445 goto fail;
2791104c 1446 }
a594cfbf
FB
1447 pstrcpy(product_name, sizeof(product_name), buf);
1448 } else if (line[0] == 'D' && line[1] == ':') {
2791104c 1449 if (get_tag_value(buf, sizeof(buf), line, "Cls=", " (") < 0) {
a594cfbf 1450 goto fail;
2791104c 1451 }
a594cfbf 1452 class_id = strtoul(buf, NULL, 16);
bb36d470 1453 }
a594cfbf
FB
1454 fail: ;
1455 }
38ca0f6d
PB
1456 if (device_count && (vendor_id || product_id)) {
1457 /* Add the last device. */
0f5160d1 1458 ret = func(opaque, bus_num, addr, 0, class_id, vendor_id,
a594cfbf 1459 product_id, product_name, speed);
bb36d470 1460 }
a594cfbf 1461 the_end:
2791104c 1462 if (f) {
0f431527 1463 fclose(f);
2791104c 1464 }
0f431527
AL
1465 return ret;
1466}
1467
1468/*
1469 * Read sys file-system device file
1470 *
1471 * @line address of buffer to put file contents in
1472 * @line_size size of line
1473 * @device_file path to device file (printf format string)
1474 * @device_name device being opened (inserted into device_file)
1475 *
1476 * @return 0 failed, 1 succeeded ('line' contains data)
1477 */
2791104c
DA
1478static int usb_host_read_file(char *line, size_t line_size,
1479 const char *device_file, const char *device_name)
0f431527
AL
1480{
1481 FILE *f;
1482 int ret = 0;
1483 char filename[PATH_MAX];
1484
b4e237aa
BS
1485 snprintf(filename, PATH_MAX, USBSYSBUS_PATH "/devices/%s/%s", device_name,
1486 device_file);
0f431527
AL
1487 f = fopen(filename, "r");
1488 if (f) {
9f99cee7 1489 ret = fgets(line, line_size, f) != NULL;
0f431527 1490 fclose(f);
0f431527
AL
1491 }
1492
1493 return ret;
1494}
1495
1496/*
1497 * Use /sys/bus/usb/devices/ directory to determine host's USB
1498 * devices.
1499 *
1500 * This code is based on Robert Schiele's original patches posted to
1501 * the Novell bug-tracker https://bugzilla.novell.com/show_bug.cgi?id=241950
1502 */
1503static int usb_host_scan_sys(void *opaque, USBScanFunc *func)
1504{
660f11be 1505 DIR *dir = NULL;
0f431527 1506 char line[1024];
5557d820 1507 int bus_num, addr, speed, class_id, product_id, vendor_id;
0f431527 1508 int ret = 0;
5557d820 1509 char port[MAX_PORTLEN];
0f431527
AL
1510 char product_name[512];
1511 struct dirent *de;
1512
1513 dir = opendir(USBSYSBUS_PATH "/devices");
1514 if (!dir) {
1515 perror("husb: cannot open devices directory");
1516 goto the_end;
1517 }
1518
1519 while ((de = readdir(dir))) {
1520 if (de->d_name[0] != '.' && !strchr(de->d_name, ':')) {
5557d820
GH
1521 if (sscanf(de->d_name, "%d-%7[0-9.]", &bus_num, port) < 2) {
1522 continue;
0f5160d1 1523 }
0f431527 1524
2791104c 1525 if (!usb_host_read_file(line, sizeof(line), "devnum", de->d_name)) {
0f431527 1526 goto the_end;
2791104c
DA
1527 }
1528 if (sscanf(line, "%d", &addr) != 1) {
0f431527 1529 goto the_end;
2791104c 1530 }
b4e237aa 1531 if (!usb_host_read_file(line, sizeof(line), "bDeviceClass",
2791104c 1532 de->d_name)) {
0f431527 1533 goto the_end;
2791104c
DA
1534 }
1535 if (sscanf(line, "%x", &class_id) != 1) {
0f431527 1536 goto the_end;
2791104c 1537 }
0f431527 1538
2791104c
DA
1539 if (!usb_host_read_file(line, sizeof(line), "idVendor",
1540 de->d_name)) {
0f431527 1541 goto the_end;
2791104c
DA
1542 }
1543 if (sscanf(line, "%x", &vendor_id) != 1) {
0f431527 1544 goto the_end;
2791104c 1545 }
b4e237aa 1546 if (!usb_host_read_file(line, sizeof(line), "idProduct",
2791104c 1547 de->d_name)) {
0f431527 1548 goto the_end;
2791104c
DA
1549 }
1550 if (sscanf(line, "%x", &product_id) != 1) {
0f431527 1551 goto the_end;
2791104c 1552 }
b4e237aa
BS
1553 if (!usb_host_read_file(line, sizeof(line), "product",
1554 de->d_name)) {
0f431527
AL
1555 *product_name = 0;
1556 } else {
2791104c 1557 if (strlen(line) > 0) {
0f431527 1558 line[strlen(line) - 1] = '\0';
2791104c 1559 }
0f431527
AL
1560 pstrcpy(product_name, sizeof(product_name), line);
1561 }
1562
2791104c 1563 if (!usb_host_read_file(line, sizeof(line), "speed", de->d_name)) {
0f431527 1564 goto the_end;
2791104c 1565 }
f264cfbf
HG
1566 if (!strcmp(line, "5000\n")) {
1567 speed = USB_SPEED_SUPER;
1568 } else if (!strcmp(line, "480\n")) {
0f431527 1569 speed = USB_SPEED_HIGH;
2791104c 1570 } else if (!strcmp(line, "1.5\n")) {
0f431527 1571 speed = USB_SPEED_LOW;
2791104c 1572 } else {
0f431527 1573 speed = USB_SPEED_FULL;
2791104c 1574 }
0f431527 1575
5557d820 1576 ret = func(opaque, bus_num, addr, port, class_id, vendor_id,
0f431527 1577 product_id, product_name, speed);
2791104c 1578 if (ret) {
0f431527 1579 goto the_end;
2791104c 1580 }
0f431527
AL
1581 }
1582 }
1583 the_end:
2791104c 1584 if (dir) {
0f431527 1585 closedir(dir);
2791104c 1586 }
0f431527
AL
1587 return ret;
1588}
1589
1590/*
1591 * Determine how to access the host's USB devices and call the
1592 * specific support function.
1593 */
1594static int usb_host_scan(void *opaque, USBScanFunc *func)
1595{
376253ec 1596 Monitor *mon = cur_mon;
660f11be
BS
1597 FILE *f = NULL;
1598 DIR *dir = NULL;
0f431527 1599 int ret = 0;
0f431527
AL
1600 const char *fs_type[] = {"unknown", "proc", "dev", "sys"};
1601 char devpath[PATH_MAX];
1602
1603 /* only check the host once */
1604 if (!usb_fs_type) {
55496240
MM
1605 dir = opendir(USBSYSBUS_PATH "/devices");
1606 if (dir) {
1607 /* devices found in /dev/bus/usb/ (yes - not a mistake!) */
1608 strcpy(devpath, USBDEVBUS_PATH);
1609 usb_fs_type = USB_FS_SYS;
1610 closedir(dir);
d0f2c4c6 1611 DPRINTF(USBDBG_DEVOPENED, USBSYSBUS_PATH);
55496240
MM
1612 goto found_devices;
1613 }
0f431527
AL
1614 f = fopen(USBPROCBUS_PATH "/devices", "r");
1615 if (f) {
1616 /* devices found in /proc/bus/usb/ */
1617 strcpy(devpath, USBPROCBUS_PATH);
1618 usb_fs_type = USB_FS_PROC;
1619 fclose(f);
d0f2c4c6 1620 DPRINTF(USBDBG_DEVOPENED, USBPROCBUS_PATH);
f16a0db3 1621 goto found_devices;
0f431527
AL
1622 }
1623 /* try additional methods if an access method hasn't been found yet */
1624 f = fopen(USBDEVBUS_PATH "/devices", "r");
f16a0db3 1625 if (f) {
0f431527
AL
1626 /* devices found in /dev/bus/usb/ */
1627 strcpy(devpath, USBDEVBUS_PATH);
1628 usb_fs_type = USB_FS_DEV;
1629 fclose(f);
d0f2c4c6 1630 DPRINTF(USBDBG_DEVOPENED, USBDEVBUS_PATH);
f16a0db3 1631 goto found_devices;
0f431527 1632 }
f16a0db3 1633 found_devices:
22babebb 1634 if (!usb_fs_type) {
2791104c 1635 if (mon) {
eba6fe87 1636 monitor_printf(mon, "husb: unable to access USB devices\n");
2791104c 1637 }
f16a0db3 1638 return -ENOENT;
0f431527
AL
1639 }
1640
1641 /* the module setting (used later for opening devices) */
1642 usb_host_device_path = qemu_mallocz(strlen(devpath)+1);
1eec614b 1643 strcpy(usb_host_device_path, devpath);
2791104c 1644 if (mon) {
eba6fe87
GH
1645 monitor_printf(mon, "husb: using %s file-system with %s\n",
1646 fs_type[usb_fs_type], usb_host_device_path);
2791104c 1647 }
0f431527
AL
1648 }
1649
1650 switch (usb_fs_type) {
1651 case USB_FS_PROC:
1652 case USB_FS_DEV:
1653 ret = usb_host_scan_dev(opaque, func);
1654 break;
1655 case USB_FS_SYS:
1656 ret = usb_host_scan_sys(opaque, func);
1657 break;
f16a0db3
AL
1658 default:
1659 ret = -EINVAL;
1660 break;
0f431527 1661 }
a594cfbf 1662 return ret;
bb36d470
FB
1663}
1664
4b096fc9 1665static QEMUTimer *usb_auto_timer;
4b096fc9 1666
5557d820 1667static int usb_host_auto_scan(void *opaque, int bus_num, int addr, char *port,
26a9e82a
GH
1668 int class_id, int vendor_id, int product_id,
1669 const char *product_name, int speed)
4b096fc9
AL
1670{
1671 struct USBAutoFilter *f;
26a9e82a 1672 struct USBHostDevice *s;
4b096fc9
AL
1673
1674 /* Ignore hubs */
1675 if (class_id == 9)
1676 return 0;
1677
26a9e82a
GH
1678 QTAILQ_FOREACH(s, &hostdevs, next) {
1679 f = &s->match;
1680
2791104c 1681 if (f->bus_num > 0 && f->bus_num != bus_num) {
4b096fc9 1682 continue;
2791104c
DA
1683 }
1684 if (f->addr > 0 && f->addr != addr) {
4b096fc9 1685 continue;
2791104c 1686 }
9056a297
GH
1687 if (f->port != NULL && (port == NULL || strcmp(f->port, port) != 0)) {
1688 continue;
1689 }
4b096fc9 1690
2791104c 1691 if (f->vendor_id > 0 && f->vendor_id != vendor_id) {
4b096fc9 1692 continue;
2791104c 1693 }
4b096fc9 1694
2791104c 1695 if (f->product_id > 0 && f->product_id != product_id) {
4b096fc9 1696 continue;
2791104c 1697 }
4b096fc9
AL
1698 /* We got a match */
1699
33e66b86 1700 /* Already attached ? */
2791104c 1701 if (s->fd != -1) {
4b096fc9 1702 return 0;
2791104c 1703 }
d0f2c4c6 1704 DPRINTF("husb: auto open: bus_num %d addr %d\n", bus_num, addr);
4b096fc9 1705
3991c35e 1706 usb_host_open(s, bus_num, addr, port, product_name, speed);
97f86166 1707 break;
4b096fc9
AL
1708 }
1709
1710 return 0;
1711}
1712
26a9e82a 1713static void usb_host_auto_check(void *unused)
4b096fc9 1714{
26a9e82a
GH
1715 struct USBHostDevice *s;
1716 int unconnected = 0;
1717
4b096fc9 1718 usb_host_scan(NULL, usb_host_auto_scan);
26a9e82a
GH
1719
1720 QTAILQ_FOREACH(s, &hostdevs, next) {
2791104c 1721 if (s->fd == -1) {
26a9e82a 1722 unconnected++;
2791104c 1723 }
26a9e82a
GH
1724 }
1725
1726 if (unconnected == 0) {
1727 /* nothing to watch */
2791104c 1728 if (usb_auto_timer) {
26a9e82a 1729 qemu_del_timer(usb_auto_timer);
2791104c 1730 }
26a9e82a
GH
1731 return;
1732 }
1733
1734 if (!usb_auto_timer) {
7bd427d8 1735 usb_auto_timer = qemu_new_timer_ms(rt_clock, usb_host_auto_check, NULL);
2791104c 1736 if (!usb_auto_timer) {
26a9e82a 1737 return;
2791104c 1738 }
26a9e82a 1739 }
7bd427d8 1740 qemu_mod_timer(usb_auto_timer, qemu_get_clock_ms(rt_clock) + 2000);
4b096fc9
AL
1741}
1742
1743/*
5d0c5750
AL
1744 * Autoconnect filter
1745 * Format:
1746 * auto:bus:dev[:vid:pid]
1747 * auto:bus.dev[:vid:pid]
1748 *
1749 * bus - bus number (dec, * means any)
1750 * dev - device number (dec, * means any)
1751 * vid - vendor id (hex, * means any)
1752 * pid - product id (hex, * means any)
1753 *
1754 * See 'lsusb' output.
4b096fc9 1755 */
5d0c5750 1756static int parse_filter(const char *spec, struct USBAutoFilter *f)
4b096fc9 1757{
5d0c5750
AL
1758 enum { BUS, DEV, VID, PID, DONE };
1759 const char *p = spec;
1760 int i;
1761
0745eb1e
MA
1762 f->bus_num = 0;
1763 f->addr = 0;
1764 f->vendor_id = 0;
1765 f->product_id = 0;
5d0c5750
AL
1766
1767 for (i = BUS; i < DONE; i++) {
2791104c
DA
1768 p = strpbrk(p, ":.");
1769 if (!p) {
1770 break;
1771 }
5d0c5750 1772 p++;
5d0c5750 1773
2791104c
DA
1774 if (*p == '*') {
1775 continue;
1776 }
5d0c5750
AL
1777 switch(i) {
1778 case BUS: f->bus_num = strtol(p, NULL, 10); break;
1779 case DEV: f->addr = strtol(p, NULL, 10); break;
1780 case VID: f->vendor_id = strtol(p, NULL, 16); break;
1781 case PID: f->product_id = strtol(p, NULL, 16); break;
1782 }
1783 }
1784
1785 if (i < DEV) {
1786 fprintf(stderr, "husb: invalid auto filter spec %s\n", spec);
1787 return -1;
1788 }
1789
1790 return 0;
1791}
1792
a594cfbf
FB
1793/**********************/
1794/* USB host device info */
1795
1796struct usb_class_info {
1797 int class;
1798 const char *class_name;
1799};
1800
1801static const struct usb_class_info usb_class_info[] = {
1802 { USB_CLASS_AUDIO, "Audio"},
1803 { USB_CLASS_COMM, "Communication"},
1804 { USB_CLASS_HID, "HID"},
1805 { USB_CLASS_HUB, "Hub" },
1806 { USB_CLASS_PHYSICAL, "Physical" },
1807 { USB_CLASS_PRINTER, "Printer" },
1808 { USB_CLASS_MASS_STORAGE, "Storage" },
1809 { USB_CLASS_CDC_DATA, "Data" },
1810 { USB_CLASS_APP_SPEC, "Application Specific" },
1811 { USB_CLASS_VENDOR_SPEC, "Vendor Specific" },
1812 { USB_CLASS_STILL_IMAGE, "Still Image" },
b9dc033c 1813 { USB_CLASS_CSCID, "Smart Card" },
a594cfbf
FB
1814 { USB_CLASS_CONTENT_SEC, "Content Security" },
1815 { -1, NULL }
1816};
1817
1818static const char *usb_class_str(uint8_t class)
bb36d470 1819{
a594cfbf
FB
1820 const struct usb_class_info *p;
1821 for(p = usb_class_info; p->class != -1; p++) {
2791104c 1822 if (p->class == class) {
a594cfbf 1823 break;
2791104c 1824 }
bb36d470 1825 }
a594cfbf
FB
1826 return p->class_name;
1827}
1828
5557d820
GH
1829static void usb_info_device(Monitor *mon, int bus_num, int addr, char *port,
1830 int class_id, int vendor_id, int product_id,
9596ebb7
PB
1831 const char *product_name,
1832 int speed)
a594cfbf
FB
1833{
1834 const char *class_str, *speed_str;
1835
1836 switch(speed) {
5fafdf24
TS
1837 case USB_SPEED_LOW:
1838 speed_str = "1.5";
a594cfbf 1839 break;
5fafdf24
TS
1840 case USB_SPEED_FULL:
1841 speed_str = "12";
a594cfbf 1842 break;
5fafdf24
TS
1843 case USB_SPEED_HIGH:
1844 speed_str = "480";
a594cfbf 1845 break;
f264cfbf
HG
1846 case USB_SPEED_SUPER:
1847 speed_str = "5000";
1848 break;
a594cfbf 1849 default:
5fafdf24 1850 speed_str = "?";
a594cfbf
FB
1851 break;
1852 }
1853
5557d820
GH
1854 monitor_printf(mon, " Bus %d, Addr %d, Port %s, Speed %s Mb/s\n",
1855 bus_num, addr, port, speed_str);
a594cfbf 1856 class_str = usb_class_str(class_id);
2791104c 1857 if (class_str) {
376253ec 1858 monitor_printf(mon, " %s:", class_str);
2791104c 1859 } else {
376253ec 1860 monitor_printf(mon, " Class %02x:", class_id);
2791104c 1861 }
376253ec 1862 monitor_printf(mon, " USB device %04x:%04x", vendor_id, product_id);
2791104c 1863 if (product_name[0] != '\0') {
376253ec 1864 monitor_printf(mon, ", %s", product_name);
2791104c 1865 }
376253ec 1866 monitor_printf(mon, "\n");
a594cfbf
FB
1867}
1868
5fafdf24 1869static int usb_host_info_device(void *opaque, int bus_num, int addr,
5557d820 1870 char *path, int class_id,
5fafdf24 1871 int vendor_id, int product_id,
a594cfbf
FB
1872 const char *product_name,
1873 int speed)
1874{
179da8af
BS
1875 Monitor *mon = opaque;
1876
5557d820 1877 usb_info_device(mon, bus_num, addr, path, class_id, vendor_id, product_id,
a594cfbf
FB
1878 product_name, speed);
1879 return 0;
1880}
1881
ac4ffb5a 1882static void dec2str(int val, char *str, size_t size)
5d0c5750 1883{
2791104c 1884 if (val == 0) {
ac4ffb5a 1885 snprintf(str, size, "*");
2791104c
DA
1886 } else {
1887 snprintf(str, size, "%d", val);
1888 }
5d0c5750
AL
1889}
1890
ac4ffb5a 1891static void hex2str(int val, char *str, size_t size)
5d0c5750 1892{
2791104c 1893 if (val == 0) {
ac4ffb5a 1894 snprintf(str, size, "*");
2791104c 1895 } else {
26a9e82a 1896 snprintf(str, size, "%04x", val);
2791104c 1897 }
5d0c5750
AL
1898}
1899
376253ec 1900void usb_host_info(Monitor *mon)
a594cfbf 1901{
5d0c5750 1902 struct USBAutoFilter *f;
26a9e82a 1903 struct USBHostDevice *s;
5d0c5750 1904
179da8af 1905 usb_host_scan(mon, usb_host_info_device);
5d0c5750 1906
2791104c 1907 if (QTAILQ_EMPTY(&hostdevs)) {
26a9e82a 1908 return;
2791104c
DA
1909 }
1910
26a9e82a
GH
1911 monitor_printf(mon, " Auto filters:\n");
1912 QTAILQ_FOREACH(s, &hostdevs, next) {
5d0c5750 1913 char bus[10], addr[10], vid[10], pid[10];
26a9e82a 1914 f = &s->match;
ac4ffb5a
AL
1915 dec2str(f->bus_num, bus, sizeof(bus));
1916 dec2str(f->addr, addr, sizeof(addr));
1917 hex2str(f->vendor_id, vid, sizeof(vid));
1918 hex2str(f->product_id, pid, sizeof(pid));
9056a297
GH
1919 monitor_printf(mon, " Bus %s, Addr %s, Port %s, ID %s:%s\n",
1920 bus, addr, f->port ? f->port : "*", vid, pid);
5d0c5750 1921 }
bb36d470 1922}