1 /*
2  * Copyright (C) 2010 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #ifndef _GNU_SOURCE
18 #define _GNU_SOURCE
19 #endif
20 
21 // #define DEBUG 1
22 #if DEBUG
23 
24 #ifdef USE_LIBLOG
25 #define LOG_TAG "usbhost"
26 #include "utils/Log.h"
27 #define D ALOGD
28 #else
29 #define D printf
30 #endif
31 
32 #else
33 #define D(...)
34 #endif
35 
36 #include <stdio.h>
37 #include <stdlib.h>
38 #include <unistd.h>
39 #include <string.h>
40 #include <stddef.h>
41 
42 #include <sys/ioctl.h>
43 #include <sys/types.h>
44 #include <sys/time.h>
45 #include <sys/inotify.h>
46 #include <dirent.h>
47 #include <fcntl.h>
48 #include <errno.h>
49 #include <ctype.h>
50 #include <poll.h>
51 #include <pthread.h>
52 
53 #include <linux/usbdevice_fs.h>
54 #include <asm/byteorder.h>
55 
56 #include "usbhost/usbhost.h"
57 
58 #define DEV_DIR             "/dev"
59 #define DEV_BUS_DIR         DEV_DIR "/bus"
60 #define USB_FS_DIR          DEV_BUS_DIR "/usb"
61 #define USB_FS_ID_SCANNER   USB_FS_DIR "/%d/%d"
62 #define USB_FS_ID_FORMAT    USB_FS_DIR "/%03d/%03d"
63 
64 // Some devices fail to send string descriptors if we attempt reading > 255 bytes
65 #define MAX_STRING_DESCRIPTOR_LENGTH    255
66 
67 // From drivers/usb/core/devio.c
68 // I don't know why this isn't in a kernel header
69 #define MAX_USBFS_BUFFER_SIZE   16384
70 
71 #define MAX_USBFS_WD_COUNT      10
72 
73 struct usb_host_context {
74     int                         fd;
75     usb_device_added_cb         cb_added;
76     usb_device_removed_cb       cb_removed;
77     void                        *data;
78     int                         wds[MAX_USBFS_WD_COUNT];
79     int                         wdd;
80     int                         wddbus;
81 };
82 
83 struct usb_device {
84     char dev_name[64];
85     unsigned char desc[4096];
86     int desc_length;
87     int fd;
88     int writeable;
89 };
90 
badname(const char * name)91 static inline int badname(const char *name)
92 {
93     while(*name) {
94         if(!isdigit(*name++)) return 1;
95     }
96     return 0;
97 }
98 
find_existing_devices_bus(char * busname,usb_device_added_cb added_cb,void * client_data)99 static int find_existing_devices_bus(char *busname,
100                                      usb_device_added_cb added_cb,
101                                      void *client_data)
102 {
103     char devname[32];
104     DIR *devdir;
105     struct dirent *de;
106     int done = 0;
107 
108     devdir = opendir(busname);
109     if(devdir == 0) return 0;
110 
111     while ((de = readdir(devdir)) && !done) {
112         if(badname(de->d_name)) continue;
113 
114         snprintf(devname, sizeof(devname), "%s/%s", busname, de->d_name);
115         done = added_cb(devname, client_data);
116     } // end of devdir while
117     closedir(devdir);
118 
119     return done;
120 }
121 
122 /* returns true if one of the callbacks indicates we are done */
find_existing_devices(usb_device_added_cb added_cb,void * client_data)123 static int find_existing_devices(usb_device_added_cb added_cb,
124                                   void *client_data)
125 {
126     char busname[32];
127     DIR *busdir;
128     struct dirent *de;
129     int done = 0;
130 
131     busdir = opendir(USB_FS_DIR);
132     if(busdir == 0) return 0;
133 
134     while ((de = readdir(busdir)) != 0 && !done) {
135         if(badname(de->d_name)) continue;
136 
137         snprintf(busname, sizeof(busname), USB_FS_DIR "/%s", de->d_name);
138         done = find_existing_devices_bus(busname, added_cb,
139                                          client_data);
140     } //end of busdir while
141     closedir(busdir);
142 
143     return done;
144 }
145 
watch_existing_subdirs(struct usb_host_context * context,int * wds,int wd_count)146 static void watch_existing_subdirs(struct usb_host_context *context,
147                                    int *wds, int wd_count)
148 {
149     char path[100];
150     int i, ret;
151 
152     wds[0] = inotify_add_watch(context->fd, USB_FS_DIR, IN_CREATE | IN_DELETE);
153     if (wds[0] < 0)
154         return;
155 
156     /* watch existing subdirectories of USB_FS_DIR */
157     for (i = 1; i < wd_count; i++) {
158         snprintf(path, sizeof(path), USB_FS_DIR "/%03d", i);
159         ret = inotify_add_watch(context->fd, path, IN_CREATE | IN_DELETE);
160         if (ret >= 0)
161             wds[i] = ret;
162     }
163 }
164 
usb_host_init()165 struct usb_host_context *usb_host_init()
166 {
167     struct usb_host_context *context = calloc(1, sizeof(struct usb_host_context));
168     if (!context) {
169         fprintf(stderr, "out of memory in usb_host_context\n");
170         return NULL;
171     }
172     context->fd = inotify_init();
173     if (context->fd < 0) {
174         fprintf(stderr, "inotify_init failed\n");
175         free(context);
176         return NULL;
177     }
178     return context;
179 }
180 
usb_host_cleanup(struct usb_host_context * context)181 void usb_host_cleanup(struct usb_host_context *context)
182 {
183     close(context->fd);
184     free(context);
185 }
186 
usb_host_get_fd(struct usb_host_context * context)187 int usb_host_get_fd(struct usb_host_context *context)
188 {
189     return context->fd;
190 } /* usb_host_get_fd() */
191 
usb_host_load(struct usb_host_context * context,usb_device_added_cb added_cb,usb_device_removed_cb removed_cb,usb_discovery_done_cb discovery_done_cb,void * client_data)192 int usb_host_load(struct usb_host_context *context,
193                   usb_device_added_cb added_cb,
194                   usb_device_removed_cb removed_cb,
195                   usb_discovery_done_cb discovery_done_cb,
196                   void *client_data)
197 {
198     int done = 0;
199     int i;
200 
201     context->cb_added = added_cb;
202     context->cb_removed = removed_cb;
203     context->data = client_data;
204 
205     D("Created device discovery thread\n");
206 
207     /* watch for files added and deleted within USB_FS_DIR */
208     context->wddbus = -1;
209     for (i = 0; i < MAX_USBFS_WD_COUNT; i++)
210         context->wds[i] = -1;
211 
212     /* watch the root for new subdirectories */
213     context->wdd = inotify_add_watch(context->fd, DEV_DIR, IN_CREATE | IN_DELETE);
214     if (context->wdd < 0) {
215         fprintf(stderr, "inotify_add_watch failed\n");
216         if (discovery_done_cb)
217             discovery_done_cb(client_data);
218         return done;
219     }
220 
221     watch_existing_subdirs(context, context->wds, MAX_USBFS_WD_COUNT);
222 
223     /* check for existing devices first, after we have inotify set up */
224     done = find_existing_devices(added_cb, client_data);
225     if (discovery_done_cb)
226         done |= discovery_done_cb(client_data);
227 
228     return done;
229 } /* usb_host_load() */
230 
usb_host_read_event(struct usb_host_context * context)231 int usb_host_read_event(struct usb_host_context *context)
232 {
233     struct inotify_event* event;
234     char event_buf[512];
235     char path[100];
236     int i, ret, done = 0;
237     int offset = 0;
238     int wd;
239 
240     ret = read(context->fd, event_buf, sizeof(event_buf));
241     if (ret >= (int)sizeof(struct inotify_event)) {
242         while (offset < ret && !done) {
243             event = (struct inotify_event*)&event_buf[offset];
244             done = 0;
245             wd = event->wd;
246             if (wd == context->wdd) {
247                 if ((event->mask & IN_CREATE) && !strcmp(event->name, "bus")) {
248                     context->wddbus = inotify_add_watch(context->fd, DEV_BUS_DIR, IN_CREATE | IN_DELETE);
249                     if (context->wddbus < 0) {
250                         done = 1;
251                     } else {
252                         watch_existing_subdirs(context, context->wds, MAX_USBFS_WD_COUNT);
253                         done = find_existing_devices(context->cb_added, context->data);
254                     }
255                 }
256             } else if (wd == context->wddbus) {
257                 if ((event->mask & IN_CREATE) && !strcmp(event->name, "usb")) {
258                     watch_existing_subdirs(context, context->wds, MAX_USBFS_WD_COUNT);
259                     done = find_existing_devices(context->cb_added, context->data);
260                 } else if ((event->mask & IN_DELETE) && !strcmp(event->name, "usb")) {
261                     for (i = 0; i < MAX_USBFS_WD_COUNT; i++) {
262                         if (context->wds[i] >= 0) {
263                             inotify_rm_watch(context->fd, context->wds[i]);
264                             context->wds[i] = -1;
265                         }
266                     }
267                 }
268             } else if (wd == context->wds[0]) {
269                 i = atoi(event->name);
270                 snprintf(path, sizeof(path), USB_FS_DIR "/%s", event->name);
271                 D("%s subdirectory %s: index: %d\n", (event->mask & IN_CREATE) ?
272                         "new" : "gone", path, i);
273                 if (i > 0 && i < MAX_USBFS_WD_COUNT) {
274                     int local_ret = 0;
275                     if (event->mask & IN_CREATE) {
276                         local_ret = inotify_add_watch(context->fd, path,
277                                 IN_CREATE | IN_DELETE);
278                         if (local_ret >= 0)
279                             context->wds[i] = local_ret;
280                         done = find_existing_devices_bus(path, context->cb_added,
281                                 context->data);
282                     } else if (event->mask & IN_DELETE) {
283                         inotify_rm_watch(context->fd, context->wds[i]);
284                         context->wds[i] = -1;
285                     }
286                 }
287             } else {
288                 for (i = 1; (i < MAX_USBFS_WD_COUNT) && !done; i++) {
289                     if (wd == context->wds[i]) {
290                         snprintf(path, sizeof(path), USB_FS_DIR "/%03d/%s", i, event->name);
291                         if (event->mask == IN_CREATE) {
292                             D("new device %s\n", path);
293                             done = context->cb_added(path, context->data);
294                         } else if (event->mask == IN_DELETE) {
295                             D("gone device %s\n", path);
296                             done = context->cb_removed(path, context->data);
297                         }
298                     }
299                 }
300             }
301 
302             offset += sizeof(struct inotify_event) + event->len;
303         }
304     }
305 
306     return done;
307 } /* usb_host_read_event() */
308 
usb_host_run(struct usb_host_context * context,usb_device_added_cb added_cb,usb_device_removed_cb removed_cb,usb_discovery_done_cb discovery_done_cb,void * client_data)309 void usb_host_run(struct usb_host_context *context,
310                   usb_device_added_cb added_cb,
311                   usb_device_removed_cb removed_cb,
312                   usb_discovery_done_cb discovery_done_cb,
313                   void *client_data)
314 {
315     int done;
316 
317     done = usb_host_load(context, added_cb, removed_cb, discovery_done_cb, client_data);
318 
319     while (!done) {
320 
321         done = usb_host_read_event(context);
322     }
323 } /* usb_host_run() */
324 
usb_device_open(const char * dev_name)325 struct usb_device *usb_device_open(const char *dev_name)
326 {
327     int fd, did_retry = 0, writeable = 1;
328 
329     D("usb_device_open %s\n", dev_name);
330 
331 retry:
332     fd = open(dev_name, O_RDWR);
333     if (fd < 0) {
334         /* if we fail, see if have read-only access */
335         fd = open(dev_name, O_RDONLY);
336         D("usb_device_open open returned %d errno %d\n", fd, errno);
337         if (fd < 0 && (errno == EACCES || errno == ENOENT) && !did_retry) {
338             /* work around race condition between inotify and permissions management */
339             sleep(1);
340             did_retry = 1;
341             goto retry;
342         }
343 
344         if (fd < 0)
345             return NULL;
346         writeable = 0;
347         D("[ usb open read-only %s fd = %d]\n", dev_name, fd);
348     }
349 
350     struct usb_device* result = usb_device_new(dev_name, fd);
351     if (result)
352         result->writeable = writeable;
353     return result;
354 }
355 
usb_device_close(struct usb_device * device)356 void usb_device_close(struct usb_device *device)
357 {
358     close(device->fd);
359     free(device);
360 }
361 
usb_device_new(const char * dev_name,int fd)362 struct usb_device *usb_device_new(const char *dev_name, int fd)
363 {
364     struct usb_device *device = calloc(1, sizeof(struct usb_device));
365     int length;
366 
367     D("usb_device_new %s fd: %d\n", dev_name, fd);
368 
369     if (lseek(fd, 0, SEEK_SET) != 0)
370         goto failed;
371     length = read(fd, device->desc, sizeof(device->desc));
372     D("usb_device_new read returned %d errno %d\n", length, errno);
373     if (length < 0)
374         goto failed;
375 
376     strncpy(device->dev_name, dev_name, sizeof(device->dev_name) - 1);
377     device->fd = fd;
378     device->desc_length = length;
379     // assume we are writeable, since usb_device_get_fd will only return writeable fds
380     device->writeable = 1;
381     return device;
382 
383 failed:
384     close(fd);
385     free(device);
386     return NULL;
387 }
388 
usb_device_reopen_writeable(struct usb_device * device)389 static int usb_device_reopen_writeable(struct usb_device *device)
390 {
391     if (device->writeable)
392         return 1;
393 
394     int fd = open(device->dev_name, O_RDWR);
395     if (fd >= 0) {
396         close(device->fd);
397         device->fd = fd;
398         device->writeable = 1;
399         return 1;
400     }
401     D("usb_device_reopen_writeable failed errno %d\n", errno);
402     return 0;
403 }
404 
usb_device_get_fd(struct usb_device * device)405 int usb_device_get_fd(struct usb_device *device)
406 {
407     if (!usb_device_reopen_writeable(device))
408         return -1;
409     return device->fd;
410 }
411 
usb_device_get_name(struct usb_device * device)412 const char* usb_device_get_name(struct usb_device *device)
413 {
414     return device->dev_name;
415 }
416 
usb_device_get_unique_id(struct usb_device * device)417 int usb_device_get_unique_id(struct usb_device *device)
418 {
419     int bus = 0, dev = 0;
420     sscanf(device->dev_name, USB_FS_ID_SCANNER, &bus, &dev);
421     return bus * 1000 + dev;
422 }
423 
usb_device_get_unique_id_from_name(const char * name)424 int usb_device_get_unique_id_from_name(const char* name)
425 {
426     int bus = 0, dev = 0;
427     sscanf(name, USB_FS_ID_SCANNER, &bus, &dev);
428     return bus * 1000 + dev;
429 }
430 
usb_device_get_name_from_unique_id(int id)431 char* usb_device_get_name_from_unique_id(int id)
432 {
433     int bus = id / 1000;
434     int dev = id % 1000;
435     char* result = (char *)calloc(1, strlen(USB_FS_ID_FORMAT));
436     snprintf(result, strlen(USB_FS_ID_FORMAT) - 1, USB_FS_ID_FORMAT, bus, dev);
437     return result;
438 }
439 
usb_device_get_vendor_id(struct usb_device * device)440 uint16_t usb_device_get_vendor_id(struct usb_device *device)
441 {
442     struct usb_device_descriptor* desc = (struct usb_device_descriptor*)device->desc;
443     return __le16_to_cpu(desc->idVendor);
444 }
445 
usb_device_get_product_id(struct usb_device * device)446 uint16_t usb_device_get_product_id(struct usb_device *device)
447 {
448     struct usb_device_descriptor* desc = (struct usb_device_descriptor*)device->desc;
449     return __le16_to_cpu(desc->idProduct);
450 }
451 
usb_device_get_device_descriptor(struct usb_device * device)452 const struct usb_device_descriptor* usb_device_get_device_descriptor(struct usb_device *device)
453 {
454     return (struct usb_device_descriptor*)device->desc;
455 }
456 
usb_device_get_string(struct usb_device * device,int id,int timeout)457 char* usb_device_get_string(struct usb_device *device, int id, int timeout)
458 {
459     char string[256];
460     __u16 buffer[MAX_STRING_DESCRIPTOR_LENGTH / sizeof(__u16)];
461     __u16 languages[MAX_STRING_DESCRIPTOR_LENGTH / sizeof(__u16)];
462     int i, result;
463     int languageCount = 0;
464 
465     if (id == 0) return NULL;
466 
467     string[0] = 0;
468     memset(languages, 0, sizeof(languages));
469 
470     // read list of supported languages
471     result = usb_device_control_transfer(device,
472             USB_DIR_IN|USB_TYPE_STANDARD|USB_RECIP_DEVICE, USB_REQ_GET_DESCRIPTOR,
473             (USB_DT_STRING << 8) | 0, 0, languages, sizeof(languages),
474             timeout);
475     if (result > 0)
476         languageCount = (result - 2) / 2;
477 
478     for (i = 1; i <= languageCount; i++) {
479         memset(buffer, 0, sizeof(buffer));
480 
481         result = usb_device_control_transfer(device,
482                 USB_DIR_IN|USB_TYPE_STANDARD|USB_RECIP_DEVICE, USB_REQ_GET_DESCRIPTOR,
483                 (USB_DT_STRING << 8) | id, languages[i], buffer, sizeof(buffer),
484                 timeout);
485         if (result > 0) {
486             int i;
487             // skip first word, and copy the rest to the string, changing shorts to bytes.
488             result /= 2;
489             for (i = 1; i < result; i++)
490                 string[i - 1] = buffer[i];
491             string[i - 1] = 0;
492             return strdup(string);
493         }
494     }
495 
496     return NULL;
497 }
498 
usb_device_get_manufacturer_name(struct usb_device * device,int timeout)499 char* usb_device_get_manufacturer_name(struct usb_device *device, int timeout)
500 {
501     struct usb_device_descriptor *desc = (struct usb_device_descriptor *)device->desc;
502     return usb_device_get_string(device, desc->iManufacturer, timeout);
503 }
504 
usb_device_get_product_name(struct usb_device * device,int timeout)505 char* usb_device_get_product_name(struct usb_device *device, int timeout)
506 {
507     struct usb_device_descriptor *desc = (struct usb_device_descriptor *)device->desc;
508     return usb_device_get_string(device, desc->iProduct, timeout);
509 }
510 
usb_device_get_version(struct usb_device * device)511 int usb_device_get_version(struct usb_device *device)
512 {
513     struct usb_device_descriptor *desc = (struct usb_device_descriptor *)device->desc;
514     return desc->bcdUSB;
515 }
516 
usb_device_get_serial(struct usb_device * device,int timeout)517 char* usb_device_get_serial(struct usb_device *device, int timeout)
518 {
519     struct usb_device_descriptor *desc = (struct usb_device_descriptor *)device->desc;
520     return usb_device_get_string(device, desc->iSerialNumber, timeout);
521 }
522 
usb_device_is_writeable(struct usb_device * device)523 int usb_device_is_writeable(struct usb_device *device)
524 {
525     return device->writeable;
526 }
527 
usb_descriptor_iter_init(struct usb_device * device,struct usb_descriptor_iter * iter)528 void usb_descriptor_iter_init(struct usb_device *device, struct usb_descriptor_iter *iter)
529 {
530     iter->config = device->desc;
531     iter->config_end = device->desc + device->desc_length;
532     iter->curr_desc = device->desc;
533 }
534 
usb_descriptor_iter_next(struct usb_descriptor_iter * iter)535 struct usb_descriptor_header *usb_descriptor_iter_next(struct usb_descriptor_iter *iter)
536 {
537     struct usb_descriptor_header* next;
538     if (iter->curr_desc >= iter->config_end)
539         return NULL;
540     next = (struct usb_descriptor_header*)iter->curr_desc;
541     iter->curr_desc += next->bLength;
542     return next;
543 }
544 
usb_device_claim_interface(struct usb_device * device,unsigned int interface)545 int usb_device_claim_interface(struct usb_device *device, unsigned int interface)
546 {
547     return ioctl(device->fd, USBDEVFS_CLAIMINTERFACE, &interface);
548 }
549 
usb_device_release_interface(struct usb_device * device,unsigned int interface)550 int usb_device_release_interface(struct usb_device *device, unsigned int interface)
551 {
552     return ioctl(device->fd, USBDEVFS_RELEASEINTERFACE, &interface);
553 }
554 
usb_device_connect_kernel_driver(struct usb_device * device,unsigned int interface,int connect)555 int usb_device_connect_kernel_driver(struct usb_device *device,
556         unsigned int interface, int connect)
557 {
558     struct usbdevfs_ioctl ctl;
559 
560     ctl.ifno = interface;
561     ctl.ioctl_code = (connect ? USBDEVFS_CONNECT : USBDEVFS_DISCONNECT);
562     ctl.data = NULL;
563     return ioctl(device->fd, USBDEVFS_IOCTL, &ctl);
564 }
565 
usb_device_set_configuration(struct usb_device * device,int configuration)566 int usb_device_set_configuration(struct usb_device *device, int configuration)
567 {
568     return ioctl(device->fd, USBDEVFS_SETCONFIGURATION, &configuration);
569 }
570 
usb_device_set_interface(struct usb_device * device,unsigned int interface,unsigned int alt_setting)571 int usb_device_set_interface(struct usb_device *device, unsigned int interface,
572                             unsigned int alt_setting)
573 {
574     struct usbdevfs_setinterface ctl;
575 
576     ctl.interface = interface;
577     ctl.altsetting = alt_setting;
578     return ioctl(device->fd, USBDEVFS_SETINTERFACE, &ctl);
579 }
580 
usb_device_control_transfer(struct usb_device * device,int requestType,int request,int value,int index,void * buffer,int length,unsigned int timeout)581 int usb_device_control_transfer(struct usb_device *device,
582                             int requestType,
583                             int request,
584                             int value,
585                             int index,
586                             void* buffer,
587                             int length,
588                             unsigned int timeout)
589 {
590     struct usbdevfs_ctrltransfer  ctrl;
591 
592     // this usually requires read/write permission
593     if (!usb_device_reopen_writeable(device))
594         return -1;
595 
596     memset(&ctrl, 0, sizeof(ctrl));
597     ctrl.bRequestType = requestType;
598     ctrl.bRequest = request;
599     ctrl.wValue = value;
600     ctrl.wIndex = index;
601     ctrl.wLength = length;
602     ctrl.data = buffer;
603     ctrl.timeout = timeout;
604     return ioctl(device->fd, USBDEVFS_CONTROL, &ctrl);
605 }
606 
usb_device_bulk_transfer(struct usb_device * device,int endpoint,void * buffer,unsigned int length,unsigned int timeout)607 int usb_device_bulk_transfer(struct usb_device *device,
608                             int endpoint,
609                             void* buffer,
610                             unsigned int length,
611                             unsigned int timeout)
612 {
613     struct usbdevfs_bulktransfer  ctrl;
614 
615     // need to limit request size to avoid EINVAL
616     if (length > MAX_USBFS_BUFFER_SIZE)
617         length = MAX_USBFS_BUFFER_SIZE;
618 
619     memset(&ctrl, 0, sizeof(ctrl));
620     ctrl.ep = endpoint;
621     ctrl.len = length;
622     ctrl.data = buffer;
623     ctrl.timeout = timeout;
624     return ioctl(device->fd, USBDEVFS_BULK, &ctrl);
625 }
626 
usb_device_reset(struct usb_device * device)627 int usb_device_reset(struct usb_device *device)
628 {
629     return ioctl(device->fd, USBDEVFS_RESET);
630 }
631 
usb_request_new(struct usb_device * dev,const struct usb_endpoint_descriptor * ep_desc)632 struct usb_request *usb_request_new(struct usb_device *dev,
633         const struct usb_endpoint_descriptor *ep_desc)
634 {
635     struct usbdevfs_urb *urb = calloc(1, sizeof(struct usbdevfs_urb));
636     if (!urb)
637         return NULL;
638 
639     if ((ep_desc->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) == USB_ENDPOINT_XFER_BULK)
640         urb->type = USBDEVFS_URB_TYPE_BULK;
641     else if ((ep_desc->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) == USB_ENDPOINT_XFER_INT)
642         urb->type = USBDEVFS_URB_TYPE_INTERRUPT;
643     else {
644         D("Unsupported endpoint type %d", ep_desc->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK);
645         free(urb);
646         return NULL;
647     }
648     urb->endpoint = ep_desc->bEndpointAddress;
649 
650     struct usb_request *req = calloc(1, sizeof(struct usb_request));
651     if (!req) {
652         free(urb);
653         return NULL;
654     }
655 
656     req->dev = dev;
657     req->max_packet_size = __le16_to_cpu(ep_desc->wMaxPacketSize);
658     req->private_data = urb;
659     req->endpoint = urb->endpoint;
660     urb->usercontext = req;
661 
662     return req;
663 }
664 
usb_request_free(struct usb_request * req)665 void usb_request_free(struct usb_request *req)
666 {
667     free(req->private_data);
668     free(req);
669 }
670 
usb_request_queue(struct usb_request * req)671 int usb_request_queue(struct usb_request *req)
672 {
673     struct usbdevfs_urb *urb = (struct usbdevfs_urb*)req->private_data;
674     int res;
675 
676     urb->status = -1;
677     urb->buffer = req->buffer;
678     // need to limit request size to avoid EINVAL
679     if (req->buffer_length > MAX_USBFS_BUFFER_SIZE)
680         urb->buffer_length = MAX_USBFS_BUFFER_SIZE;
681     else
682         urb->buffer_length = req->buffer_length;
683 
684     do {
685         res = ioctl(req->dev->fd, USBDEVFS_SUBMITURB, urb);
686     } while((res < 0) && (errno == EINTR));
687 
688     return res;
689 }
690 
usb_request_wait(struct usb_device * dev,int timeoutMillis)691 struct usb_request *usb_request_wait(struct usb_device *dev, int timeoutMillis)
692 {
693     // Poll until a request becomes available if there is a timeout
694     if (timeoutMillis > 0) {
695         struct pollfd p = {.fd = dev->fd, .events = POLLOUT, .revents = 0};
696 
697         int res = poll(&p, 1, timeoutMillis);
698 
699         if (res != 1 || p.revents != POLLOUT) {
700             D("[ poll - event %d, error %d]\n", p.revents, errno);
701             return NULL;
702         }
703     }
704 
705     // Read the request. This should usually succeed as we polled before, but it can fail e.g. when
706     // two threads are reading usb requests at the same time and only a single request is available.
707     struct usbdevfs_urb *urb = NULL;
708     int res = TEMP_FAILURE_RETRY(ioctl(dev->fd, timeoutMillis == -1 ? USBDEVFS_REAPURB :
709                                        USBDEVFS_REAPURBNDELAY, &urb));
710     D("%s returned %d\n", timeoutMillis == -1 ? "USBDEVFS_REAPURB" : "USBDEVFS_REAPURBNDELAY", res);
711 
712     if (res < 0) {
713         D("[ reap urb - error %d]\n", errno);
714         return NULL;
715     } else {
716         D("[ urb @%p status = %d, actual = %d ]\n", urb, urb->status, urb->actual_length);
717 
718         struct usb_request *req = (struct usb_request*)urb->usercontext;
719         req->actual_length = urb->actual_length;
720 
721         return req;
722     }
723 }
724 
usb_request_cancel(struct usb_request * req)725 int usb_request_cancel(struct usb_request *req)
726 {
727     struct usbdevfs_urb *urb = ((struct usbdevfs_urb*)req->private_data);
728     return ioctl(req->dev->fd, USBDEVFS_DISCARDURB, urb);
729 }
730