ef0b27b114c9bdb745051ea648c9bc398faa827d
[rtmpclient.git] / app / src / main / jni / libusb / libusb / os / openbsd_usb.c
1 /*
2  * Copyright © 2011-2013 Martin Pieuchot <mpi@openbsd.org>
3  *
4  * This library is free software; you can redistribute it and/or
5  * modify it under the terms of the GNU Lesser General Public
6  * License as published by the Free Software Foundation; either
7  * version 2.1 of the License, or (at your option) any later version.
8  *
9  * This library is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
12  * Lesser General Public License for more details.
13  *
14  * You should have received a copy of the GNU Lesser General Public
15  * License along with this library; if not, write to the Free Software
16  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
17  */
18
19 #include <sys/time.h>
20 #include <sys/types.h>
21
22 #include <errno.h>
23 #include <fcntl.h>
24 #include <stdio.h>
25 #include <stdlib.h>
26 #include <string.h>
27 #include <unistd.h>
28
29 #include <dev/usb/usb.h>
30
31 #include "libusb.h"
32 #include "libusbi.h"
33
34 struct device_priv {
35         char *devname;                          /* name of the ugen(4) node */
36         int fd;                                 /* device file descriptor */
37
38         unsigned char *cdesc;                   /* active config descriptor */
39         usb_device_descriptor_t ddesc;          /* usb device descriptor */
40 };
41
42 struct handle_priv {
43         int pipe[2];                            /* for event notification */
44         int endpoints[USB_MAX_ENDPOINTS];
45 };
46
47 /*
48  * Backend functions
49  */
50 static int obsd_get_device_list(struct libusb_context *,
51     struct discovered_devs **);
52 static int obsd_open(struct libusb_device_handle *);
53 static void obsd_close(struct libusb_device_handle *);
54
55 static int obsd_get_device_descriptor(struct libusb_device *, unsigned char *,
56     int *);
57 static int obsd_get_active_config_descriptor(struct libusb_device *,
58     unsigned char *, size_t, int *);
59 static int obsd_get_config_descriptor(struct libusb_device *, uint8_t,
60     unsigned char *, size_t, int *);
61
62 static int obsd_get_configuration(struct libusb_device_handle *, int *);
63 static int obsd_set_configuration(struct libusb_device_handle *, int);
64
65 static int obsd_claim_interface(struct libusb_device_handle *, int);
66 static int obsd_release_interface(struct libusb_device_handle *, int);
67
68 static int obsd_set_interface_altsetting(struct libusb_device_handle *, int,
69     int);
70 static int obsd_clear_halt(struct libusb_device_handle *, unsigned char);
71 static int obsd_reset_device(struct libusb_device_handle *);
72 static void obsd_destroy_device(struct libusb_device *);
73
74 static int obsd_submit_transfer(struct usbi_transfer *);
75 static int obsd_cancel_transfer(struct usbi_transfer *);
76 static void obsd_clear_transfer_priv(struct usbi_transfer *);
77 static int obsd_handle_events(struct libusb_context *ctx, struct pollfd *,
78     nfds_t, int);
79 static int obsd_clock_gettime(int, struct timespec *);
80
81 /*
82  * Private functions
83  */
84 static int _errno_to_libusb(int);
85 static int _cache_active_config_descriptor(struct libusb_device *);
86 static int _sync_control_transfer(struct usbi_transfer *);
87 static int _sync_gen_transfer(struct usbi_transfer *);
88 static int _access_endpoint(struct libusb_transfer *);
89
90 static int _bus_open(int);
91
92
93 const struct usbi_os_backend openbsd_backend = {
94         "Synchronous OpenBSD backend",
95         0,
96         NULL,                           /* init() */
97         NULL,                           /* exit() */
98         obsd_get_device_list,
99         NULL,                           /* hotplug_poll */
100         obsd_open,
101         obsd_close,
102
103         obsd_get_device_descriptor,
104         obsd_get_active_config_descriptor,
105         obsd_get_config_descriptor,
106         NULL,                           /* get_config_descriptor_by_value() */
107
108         obsd_get_configuration,
109         obsd_set_configuration,
110
111         obsd_claim_interface,
112         obsd_release_interface,
113
114         obsd_set_interface_altsetting,
115         obsd_clear_halt,
116         obsd_reset_device,
117
118         NULL,                           /* kernel_driver_active() */
119         NULL,                           /* detach_kernel_driver() */
120         NULL,                           /* attach_kernel_driver() */
121
122         obsd_destroy_device,
123
124         obsd_submit_transfer,
125         obsd_cancel_transfer,
126         obsd_clear_transfer_priv,
127
128         obsd_handle_events,
129
130         obsd_clock_gettime,
131         sizeof(struct device_priv),
132         sizeof(struct handle_priv),
133         0,                              /* transfer_priv_size */
134         0,                              /* add_iso_packet_size */
135 };
136
137 #define DEVPATH "/dev/"
138 #define USBDEV  DEVPATH "usb"
139
140 int
141 obsd_get_device_list(struct libusb_context * ctx,
142         struct discovered_devs **discdevs)
143 {
144         struct discovered_devs *ddd;
145         struct libusb_device *dev;
146         struct device_priv *dpriv;
147         struct usb_device_info di;
148         struct usb_device_ddesc dd;
149         unsigned long session_id;
150         char devices[USB_MAX_DEVICES];
151         char busnode[16];
152         char *udevname;
153         int fd, addr, i, j;
154
155         usbi_dbg("");
156
157         for (i = 0; i < 8; i++) {
158                 snprintf(busnode, sizeof(busnode), USBDEV "%d", i);
159
160                 if ((fd = open(busnode, O_RDWR)) < 0) {
161                         if (errno != ENOENT && errno != ENXIO)
162                                 usbi_err(ctx, "could not open %s", busnode);
163                         continue;
164                 }
165
166                 bzero(devices, sizeof(devices));
167                 for (addr = 1; addr < USB_MAX_DEVICES; addr++) {
168                         if (devices[addr])
169                                 continue;
170
171                         di.udi_addr = addr;
172                         if (ioctl(fd, USB_DEVICEINFO, &di) < 0)
173                                 continue;
174
175                         /*
176                          * XXX If ugen(4) is attached to the USB device
177                          * it will be used.
178                          */
179                         udevname = NULL;
180                         for (j = 0; j < USB_MAX_DEVNAMES; j++)
181                                 if (!strncmp("ugen", di.udi_devnames[j], 4)) {
182                                         udevname = strdup(di.udi_devnames[j]);
183                                         break;
184                                 }
185
186                         session_id = (di.udi_bus << 8 | di.udi_addr);
187                         dev = usbi_get_device_by_session_id(ctx, session_id);
188
189                         if (dev == NULL) {
190                                 dev = usbi_alloc_device(ctx, session_id);
191                                 if (dev == NULL) {
192                                         close(fd);
193                                         return (LIBUSB_ERROR_NO_MEM);
194                                 }
195
196                                 dev->bus_number = di.udi_bus;
197                                 dev->device_address = di.udi_addr;
198                                 dev->speed = di.udi_speed;
199
200                                 dpriv = (struct device_priv *)dev->os_priv;
201                                 dpriv->fd = -1;
202                                 dpriv->cdesc = NULL;
203                                 dpriv->devname = udevname;
204
205                                 dd.udd_bus = di.udi_bus;
206                                 dd.udd_addr = di.udi_addr;
207                                 if (ioctl(fd, USB_DEVICE_GET_DDESC, &dd) < 0) {
208                                         libusb_unref_device(dev);
209                                         continue;
210                                 }
211                                 dpriv->ddesc = dd.udd_desc;
212
213                                 if (_cache_active_config_descriptor(dev)) {
214                                         libusb_unref_device(dev);
215                                         continue;
216                                 }
217
218                                 if (usbi_sanitize_device(dev)) {
219                                         libusb_unref_device(dev);
220                                         continue;
221                                 }
222                         }
223
224                         ddd = discovered_devs_append(*discdevs, dev);
225                         if (ddd == NULL) {
226                                 close(fd);
227                                 return (LIBUSB_ERROR_NO_MEM);
228                         }
229                         libusb_unref_device(dev);
230
231                         *discdevs = ddd;
232                         devices[addr] = 1;
233                 }
234
235                 close(fd);
236         }
237
238         return (LIBUSB_SUCCESS);
239 }
240
241 int
242 obsd_open(struct libusb_device_handle *handle)
243 {
244         struct handle_priv *hpriv = (struct handle_priv *)handle->os_priv;
245         struct device_priv *dpriv = (struct device_priv *)handle->dev->os_priv;
246         char devnode[16];
247
248         if (dpriv->devname) {
249                 /*
250                  * Only open ugen(4) attached devices read-write, all
251                  * read-only operations are done through the bus node.
252                  */
253                 snprintf(devnode, sizeof(devnode), DEVPATH "%s.00",
254                     dpriv->devname);
255                 dpriv->fd = open(devnode, O_RDWR);
256                 if (dpriv->fd < 0)
257                         return _errno_to_libusb(errno);
258
259                 usbi_dbg("open %s: fd %d", devnode, dpriv->fd);
260         }
261
262         if (pipe(hpriv->pipe) < 0)
263                 return _errno_to_libusb(errno);
264
265         return usbi_add_pollfd(HANDLE_CTX(handle), hpriv->pipe[0], POLLIN);
266 }
267
268 void
269 obsd_close(struct libusb_device_handle *handle)
270 {
271         struct handle_priv *hpriv = (struct handle_priv *)handle->os_priv;
272         struct device_priv *dpriv = (struct device_priv *)handle->dev->os_priv;
273
274         if (dpriv->devname) {
275                 usbi_dbg("close: fd %d", dpriv->fd);
276
277                 close(dpriv->fd);
278                 dpriv->fd = -1;
279         }
280
281         usbi_remove_pollfd(HANDLE_CTX(handle), hpriv->pipe[0]);
282
283         close(hpriv->pipe[0]);
284         close(hpriv->pipe[1]);
285 }
286
287 int
288 obsd_get_device_descriptor(struct libusb_device *dev, unsigned char *buf,
289     int *host_endian)
290 {
291         struct device_priv *dpriv = (struct device_priv *)dev->os_priv;
292
293         usbi_dbg("");
294
295         memcpy(buf, &dpriv->ddesc, DEVICE_DESC_LENGTH);
296
297         *host_endian = 0;
298
299         return (LIBUSB_SUCCESS);
300 }
301
302 int
303 obsd_get_active_config_descriptor(struct libusb_device *dev,
304     unsigned char *buf, size_t len, int *host_endian)
305 {
306         struct device_priv *dpriv = (struct device_priv *)dev->os_priv;
307         usb_config_descriptor_t *ucd = (usb_config_descriptor_t *)dpriv->cdesc;
308
309         len = MIN(len, UGETW(ucd->wTotalLength));
310
311         usbi_dbg("len %d", len);
312
313         memcpy(buf, dpriv->cdesc, len);
314
315         *host_endian = 0;
316
317         return (len);
318 }
319
320 int
321 obsd_get_config_descriptor(struct libusb_device *dev, uint8_t idx,
322     unsigned char *buf, size_t len, int *host_endian)
323 {
324         struct usb_device_fdesc udf;
325         int fd, err;
326
327         if ((fd = _bus_open(dev->bus_number)) < 0)
328                 return _errno_to_libusb(errno);
329
330         udf.udf_bus = dev->bus_number;
331         udf.udf_addr = dev->device_address;
332         udf.udf_config_index = idx;
333         udf.udf_size = len;
334         udf.udf_data = buf;
335
336         usbi_dbg("index %d, len %d", udf.udf_config_index, len);
337
338         if (ioctl(fd, USB_DEVICE_GET_FDESC, &udf) < 0) {
339                 err = errno;
340                 close(fd);
341                 return _errno_to_libusb(err);
342         }
343         close(fd);
344
345         *host_endian = 0;
346
347         return (len);
348 }
349
350 int
351 obsd_get_configuration(struct libusb_device_handle *handle, int *config)
352 {
353         struct device_priv *dpriv = (struct device_priv *)handle->dev->os_priv;
354         usb_config_descriptor_t *ucd = (usb_config_descriptor_t *)dpriv->cdesc;
355
356         *config = ucd->bConfigurationValue;
357
358         usbi_dbg("bConfigurationValue %d", *config);
359
360         return (LIBUSB_SUCCESS);
361 }
362
363 int
364 obsd_set_configuration(struct libusb_device_handle *handle, int config)
365 {
366         struct device_priv *dpriv = (struct device_priv *)handle->dev->os_priv;
367
368         if (dpriv->devname == NULL)
369                 return (LIBUSB_ERROR_NOT_SUPPORTED);
370
371         usbi_dbg("bConfigurationValue %d", config);
372
373         if (ioctl(dpriv->fd, USB_SET_CONFIG, &config) < 0)
374                 return _errno_to_libusb(errno);
375
376         return _cache_active_config_descriptor(handle->dev);
377 }
378
379 int
380 obsd_claim_interface(struct libusb_device_handle *handle, int iface)
381 {
382         struct handle_priv *hpriv = (struct handle_priv *)handle->os_priv;
383         int i;
384
385         for (i = 0; i < USB_MAX_ENDPOINTS; i++)
386                 hpriv->endpoints[i] = -1;
387
388         return (LIBUSB_SUCCESS);
389 }
390
391 int
392 obsd_release_interface(struct libusb_device_handle *handle, int iface)
393 {
394         struct handle_priv *hpriv = (struct handle_priv *)handle->os_priv;
395         int i;
396
397         for (i = 0; i < USB_MAX_ENDPOINTS; i++)
398                 if (hpriv->endpoints[i] >= 0)
399                         close(hpriv->endpoints[i]);
400
401         return (LIBUSB_SUCCESS);
402 }
403
404 int
405 obsd_set_interface_altsetting(struct libusb_device_handle *handle, int iface,
406     int altsetting)
407 {
408         struct device_priv *dpriv = (struct device_priv *)handle->dev->os_priv;
409         struct usb_alt_interface intf;
410
411         if (dpriv->devname == NULL)
412                 return (LIBUSB_ERROR_NOT_SUPPORTED);
413
414         usbi_dbg("iface %d, setting %d", iface, altsetting);
415
416         memset(&intf, 0, sizeof(intf));
417
418         intf.uai_interface_index = iface;
419         intf.uai_alt_no = altsetting;
420
421         if (ioctl(dpriv->fd, USB_SET_ALTINTERFACE, &intf) < 0)
422                 return _errno_to_libusb(errno);
423
424         return (LIBUSB_SUCCESS);
425 }
426
427 int
428 obsd_clear_halt(struct libusb_device_handle *handle, unsigned char endpoint)
429 {
430         struct usb_ctl_request req;
431         int fd, err;
432
433         if ((fd = _bus_open(handle->dev->bus_number)) < 0)
434                 return _errno_to_libusb(errno);
435
436         usbi_dbg("");
437
438         req.ucr_addr = handle->dev->device_address;
439         req.ucr_request.bmRequestType = UT_WRITE_ENDPOINT;
440         req.ucr_request.bRequest = UR_CLEAR_FEATURE;
441         USETW(req.ucr_request.wValue, UF_ENDPOINT_HALT);
442         USETW(req.ucr_request.wIndex, endpoint);
443         USETW(req.ucr_request.wLength, 0);
444
445         if (ioctl(fd, USB_REQUEST, &req) < 0) {
446                 err = errno;
447                 close(fd);
448                 return _errno_to_libusb(err);
449         }
450         close(fd);
451
452         return (LIBUSB_SUCCESS);
453 }
454
455 int
456 obsd_reset_device(struct libusb_device_handle *handle)
457 {
458         usbi_dbg("");
459
460         return (LIBUSB_ERROR_NOT_SUPPORTED);
461 }
462
463 void
464 obsd_destroy_device(struct libusb_device *dev)
465 {
466         struct device_priv *dpriv = (struct device_priv *)dev->os_priv;
467
468         usbi_dbg("");
469
470         free(dpriv->cdesc);
471         free(dpriv->devname);
472 }
473
474 int
475 obsd_submit_transfer(struct usbi_transfer *itransfer)
476 {
477         struct libusb_transfer *transfer;
478         struct handle_priv *hpriv;
479         int err = 0;
480
481         usbi_dbg("");
482
483         transfer = USBI_TRANSFER_TO_LIBUSB_TRANSFER(itransfer);
484         hpriv = (struct handle_priv *)transfer->dev_handle->os_priv;
485
486         switch (transfer->type) {
487         case LIBUSB_TRANSFER_TYPE_CONTROL:
488                 err = _sync_control_transfer(itransfer);
489                 break;
490         case LIBUSB_TRANSFER_TYPE_ISOCHRONOUS:
491                 if (IS_XFEROUT(transfer)) {
492                         /* Isochronous write is not supported */
493                         err = LIBUSB_ERROR_NOT_SUPPORTED;
494                         break;
495                 }
496                 err = _sync_gen_transfer(itransfer);
497                 break;
498         case LIBUSB_TRANSFER_TYPE_BULK:
499         case LIBUSB_TRANSFER_TYPE_INTERRUPT:
500                 if (IS_XFEROUT(transfer) &&
501                     transfer->flags & LIBUSB_TRANSFER_ADD_ZERO_PACKET) {
502                         err = LIBUSB_ERROR_NOT_SUPPORTED;
503                         break;
504                 }
505                 err = _sync_gen_transfer(itransfer);
506                 break;
507         }
508
509         if (err)
510                 return (err);
511
512         if (write(hpriv->pipe[1], &itransfer, sizeof(itransfer)) < 0)
513                 return _errno_to_libusb(errno);
514
515         return (LIBUSB_SUCCESS);
516 }
517
518 int
519 obsd_cancel_transfer(struct usbi_transfer *itransfer)
520 {
521         usbi_dbg("");
522
523         return (LIBUSB_ERROR_NOT_SUPPORTED);
524 }
525
526 void
527 obsd_clear_transfer_priv(struct usbi_transfer *itransfer)
528 {
529         usbi_dbg("");
530
531         /* Nothing to do */
532 }
533
534 int
535 obsd_handle_events(struct libusb_context *ctx, struct pollfd *fds, nfds_t nfds,
536     int num_ready)
537 {
538         struct libusb_device_handle *handle;
539         struct handle_priv *hpriv = NULL;
540         struct usbi_transfer *itransfer;
541         struct pollfd *pollfd;
542         int i, err = 0;
543
544         usbi_dbg("");
545
546         pthread_mutex_lock(&ctx->open_devs_lock);
547         for (i = 0; i < nfds && num_ready > 0; i++) {
548                 pollfd = &fds[i];
549
550                 if (!pollfd->revents)
551                         continue;
552
553                 hpriv = NULL;
554                 num_ready--;
555                 list_for_each_entry(handle, &ctx->open_devs, list,
556                     struct libusb_device_handle) {
557                         hpriv = (struct handle_priv *)handle->os_priv;
558
559                         if (hpriv->pipe[0] == pollfd->fd)
560                                 break;
561
562                         hpriv = NULL;
563                 }
564
565                 if (NULL == hpriv) {
566                         usbi_dbg("fd %d is not an event pipe!", pollfd->fd);
567                         err = ENOENT;
568                         break;
569                 }
570
571                 if (pollfd->revents & POLLERR) {
572                         usbi_remove_pollfd(HANDLE_CTX(handle), hpriv->pipe[0]);
573                         usbi_handle_disconnect(handle);
574                         continue;
575                 }
576
577                 if (read(hpriv->pipe[0], &itransfer, sizeof(itransfer)) < 0) {
578                         err = errno;
579                         break;
580                 }
581
582                 if ((err = usbi_handle_transfer_completion(itransfer,
583                     LIBUSB_TRANSFER_COMPLETED)))
584                         break;
585         }
586         pthread_mutex_unlock(&ctx->open_devs_lock);
587
588         if (err)
589                 return _errno_to_libusb(err);
590
591         return (LIBUSB_SUCCESS);
592 }
593
594 int
595 obsd_clock_gettime(int clkid, struct timespec *tp)
596 {
597         usbi_dbg("clock %d", clkid);
598
599         if (clkid == USBI_CLOCK_REALTIME)
600                 return clock_gettime(CLOCK_REALTIME, tp);
601
602         if (clkid == USBI_CLOCK_MONOTONIC)
603                 return clock_gettime(CLOCK_MONOTONIC, tp);
604
605         return (LIBUSB_ERROR_INVALID_PARAM);
606 }
607
608 int
609 _errno_to_libusb(int err)
610 {
611         usbi_dbg("error: %s (%d)", strerror(err), err);
612
613         switch (err) {
614         case EIO:
615                 return (LIBUSB_ERROR_IO);
616         case EACCES:
617                 return (LIBUSB_ERROR_ACCESS);
618         case ENOENT:
619                 return (LIBUSB_ERROR_NO_DEVICE);
620         case ENOMEM:
621                 return (LIBUSB_ERROR_NO_MEM);
622         case ETIMEDOUT:
623                 return (LIBUSB_ERROR_TIMEOUT);
624         }
625
626         return (LIBUSB_ERROR_OTHER);
627 }
628
629 int
630 _cache_active_config_descriptor(struct libusb_device *dev)
631 {
632         struct device_priv *dpriv = (struct device_priv *)dev->os_priv;
633         struct usb_device_cdesc udc;
634         struct usb_device_fdesc udf;
635         unsigned char* buf;
636         int fd, len, err;
637
638         if ((fd = _bus_open(dev->bus_number)) < 0)
639                 return _errno_to_libusb(errno);
640
641         usbi_dbg("fd %d, addr %d", fd, dev->device_address);
642
643         udc.udc_bus = dev->bus_number;
644         udc.udc_addr = dev->device_address;
645         udc.udc_config_index = USB_CURRENT_CONFIG_INDEX;
646         if (ioctl(fd, USB_DEVICE_GET_CDESC, &udc) < 0) {
647                 err = errno;
648                 close(fd);
649                 return _errno_to_libusb(errno);
650         }
651
652         usbi_dbg("active bLength %d", udc.udc_desc.bLength);
653
654         len = UGETW(udc.udc_desc.wTotalLength);
655         buf = malloc(len);
656         if (buf == NULL)
657                 return (LIBUSB_ERROR_NO_MEM);
658
659         udf.udf_bus = dev->bus_number;
660         udf.udf_addr = dev->device_address;
661         udf.udf_config_index = udc.udc_config_index;
662         udf.udf_size = len;
663         udf.udf_data = buf;
664
665         usbi_dbg("index %d, len %d", udf.udf_config_index, len);
666
667         if (ioctl(fd, USB_DEVICE_GET_FDESC, &udf) < 0) {
668                 err = errno;
669                 close(fd);
670                 free(buf);
671                 return _errno_to_libusb(err);
672         }
673         close(fd);
674
675         if (dpriv->cdesc)
676                 free(dpriv->cdesc);
677         dpriv->cdesc = buf;
678
679         return (LIBUSB_SUCCESS);
680 }
681
682 int
683 _sync_control_transfer(struct usbi_transfer *itransfer)
684 {
685         struct libusb_transfer *transfer;
686         struct libusb_control_setup *setup;
687         struct device_priv *dpriv;
688         struct usb_ctl_request req;
689
690         transfer = USBI_TRANSFER_TO_LIBUSB_TRANSFER(itransfer);
691         dpriv = (struct device_priv *)transfer->dev_handle->dev->os_priv;
692         setup = (struct libusb_control_setup *)transfer->buffer;
693
694         usbi_dbg("type %x request %x value %x index %d length %d timeout %d",
695             setup->bmRequestType, setup->bRequest,
696             libusb_le16_to_cpu(setup->wValue),
697             libusb_le16_to_cpu(setup->wIndex),
698             libusb_le16_to_cpu(setup->wLength), transfer->timeout);
699
700         req.ucr_addr = transfer->dev_handle->dev->device_address;
701         req.ucr_request.bmRequestType = setup->bmRequestType;
702         req.ucr_request.bRequest = setup->bRequest;
703         /* Don't use USETW, libusb already deals with the endianness */
704         (*(uint16_t *)req.ucr_request.wValue) = setup->wValue;
705         (*(uint16_t *)req.ucr_request.wIndex) = setup->wIndex;
706         (*(uint16_t *)req.ucr_request.wLength) = setup->wLength;
707         req.ucr_data = transfer->buffer + LIBUSB_CONTROL_SETUP_SIZE;
708
709         if ((transfer->flags & LIBUSB_TRANSFER_SHORT_NOT_OK) == 0)
710                 req.ucr_flags = USBD_SHORT_XFER_OK;
711
712         if (dpriv->devname == NULL) {
713                 /*
714                  * XXX If the device is not attached to ugen(4) it is
715                  * XXX still possible to submit a control transfer but
716                  * XXX with the default timeout only.
717                  */
718                 int fd, err;
719
720                 if ((fd = _bus_open(transfer->dev_handle->dev->bus_number)) < 0)
721                         return _errno_to_libusb(errno);
722
723                 if ((ioctl(fd, USB_REQUEST, &req)) < 0) {
724                         err = errno;
725                         close(fd);
726                         return _errno_to_libusb(err);
727                 }
728                 close(fd);
729         } else {
730                 if ((ioctl(dpriv->fd, USB_SET_TIMEOUT, &transfer->timeout)) < 0)
731                         return _errno_to_libusb(errno);
732
733                 if ((ioctl(dpriv->fd, USB_DO_REQUEST, &req)) < 0)
734                         return _errno_to_libusb(errno);
735         }
736
737         itransfer->transferred = req.ucr_actlen;
738
739         usbi_dbg("transferred %d", itransfer->transferred);
740
741         return (0);
742 }
743
744 int
745 _access_endpoint(struct libusb_transfer *transfer)
746 {
747         struct handle_priv *hpriv;
748         struct device_priv *dpriv;
749         char devnode[16];
750         int fd, endpt;
751         mode_t mode;
752
753         hpriv = (struct handle_priv *)transfer->dev_handle->os_priv;
754         dpriv = (struct device_priv *)transfer->dev_handle->dev->os_priv;
755
756         endpt = UE_GET_ADDR(transfer->endpoint);
757         mode = IS_XFERIN(transfer) ? O_RDONLY : O_WRONLY;
758
759         usbi_dbg("endpoint %d mode %d", endpt, mode);
760
761         if (hpriv->endpoints[endpt] < 0) {
762                 /* Pick the right endpoint node */
763                 snprintf(devnode, sizeof(devnode), DEVPATH "%s.%02d",
764                     dpriv->devname, endpt);
765
766                 /* We may need to read/write to the same endpoint later. */
767                 if (((fd = open(devnode, O_RDWR)) < 0) && (errno == ENXIO))
768                         if ((fd = open(devnode, mode)) < 0)
769                                 return (-1);
770
771                 hpriv->endpoints[endpt] = fd;
772         }
773
774         return (hpriv->endpoints[endpt]);
775 }
776
777 int
778 _sync_gen_transfer(struct usbi_transfer *itransfer)
779 {
780         struct libusb_transfer *transfer;
781         struct device_priv *dpriv;
782         int fd, nr = 1;
783
784         transfer = USBI_TRANSFER_TO_LIBUSB_TRANSFER(itransfer);
785         dpriv = (struct device_priv *)transfer->dev_handle->dev->os_priv;
786
787         if (dpriv->devname == NULL)
788                 return (LIBUSB_ERROR_NOT_SUPPORTED);
789
790         /*
791          * Bulk, Interrupt or Isochronous transfer depends on the
792          * endpoint and thus the node to open.
793          */
794         if ((fd = _access_endpoint(transfer)) < 0)
795                 return _errno_to_libusb(errno);
796
797         if ((ioctl(fd, USB_SET_TIMEOUT, &transfer->timeout)) < 0)
798                 return _errno_to_libusb(errno);
799
800         if (IS_XFERIN(transfer)) {
801                 if ((transfer->flags & LIBUSB_TRANSFER_SHORT_NOT_OK) == 0)
802                         if ((ioctl(fd, USB_SET_SHORT_XFER, &nr)) < 0)
803                                 return _errno_to_libusb(errno);
804
805                 nr = read(fd, transfer->buffer, transfer->length);
806         } else {
807                 nr = write(fd, transfer->buffer, transfer->length);
808         }
809
810         if (nr < 0)
811                 return _errno_to_libusb(errno);
812
813         itransfer->transferred = nr;
814
815         return (0);
816 }
817
818 int
819 _bus_open(int number)
820 {
821         char busnode[16];
822
823         snprintf(busnode, sizeof(busnode), USBDEV "%d", number);
824
825         return open(busnode, O_RDWR);
826 }