| The Android Open Source Project | dd7bc33 | 2009-03-03 19:32:55 -0800 | [diff] [blame] | 1 | /* | 
 | 2 |  * Copyright (C) 2007 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 | #include <stdio.h> | 
 | 18 | #include <stdlib.h> | 
 | 19 | #include <unistd.h> | 
 | 20 | #include <string.h> | 
 | 21 |  | 
 | 22 | #include <sys/ioctl.h> | 
 | 23 | #include <sys/types.h> | 
 | 24 | #include <dirent.h> | 
 | 25 | #include <fcntl.h> | 
 | 26 | #include <errno.h> | 
 | 27 | #include <ctype.h> | 
 | 28 |  | 
 | 29 | #include <linux/usbdevice_fs.h> | 
 | 30 | #include <linux/version.h> | 
 | 31 | #if LINUX_VERSION_CODE > KERNEL_VERSION(2, 6, 20) | 
 | 32 | #include <linux/usb/ch9.h> | 
 | 33 | #else | 
 | 34 | #include <linux/usb_ch9.h> | 
 | 35 | #endif | 
 | 36 | #include <asm/byteorder.h> | 
 | 37 |  | 
 | 38 | #include "sysdeps.h" | 
 | 39 |  | 
 | 40 | #define   TRACE_TAG  TRACE_USB | 
 | 41 | #include "adb.h" | 
 | 42 |  | 
 | 43 |  | 
 | 44 | /* usb scan debugging is waaaay too verbose */ | 
 | 45 | #define DBGX(x...) | 
 | 46 |  | 
 | 47 | static adb_mutex_t usb_lock = ADB_MUTEX_INITIALIZER; | 
 | 48 |  | 
 | 49 | struct usb_handle | 
 | 50 | { | 
 | 51 |     usb_handle *prev; | 
 | 52 |     usb_handle *next; | 
 | 53 |  | 
 | 54 |     char fname[64]; | 
 | 55 |     int desc; | 
 | 56 |     unsigned char ep_in; | 
 | 57 |     unsigned char ep_out; | 
 | 58 |  | 
 | 59 |     unsigned zero_mask; | 
 | 60 |  | 
 | 61 |     struct usbdevfs_urb urb_in; | 
 | 62 |     struct usbdevfs_urb urb_out; | 
 | 63 |  | 
 | 64 |     int urb_in_busy; | 
 | 65 |     int urb_out_busy; | 
 | 66 |     int dead; | 
 | 67 |  | 
 | 68 |     adb_cond_t notify; | 
 | 69 |     adb_mutex_t lock; | 
 | 70 |  | 
 | 71 |     // for garbage collecting disconnected devices | 
 | 72 |     int mark; | 
 | 73 |  | 
 | 74 |     // ID of thread currently in REAPURB | 
 | 75 |     pthread_t reaper_thread; | 
 | 76 | }; | 
 | 77 |  | 
 | 78 | static usb_handle handle_list = { | 
 | 79 |     .prev = &handle_list, | 
 | 80 |     .next = &handle_list, | 
 | 81 | }; | 
 | 82 |  | 
 | 83 | static int known_device(const char *dev_name) | 
 | 84 | { | 
 | 85 |     usb_handle *usb; | 
 | 86 |  | 
 | 87 |     adb_mutex_lock(&usb_lock); | 
 | 88 |     for(usb = handle_list.next; usb != &handle_list; usb = usb->next){ | 
 | 89 |         if(!strcmp(usb->fname, dev_name)) { | 
 | 90 |             // set mark flag to indicate this device is still alive | 
 | 91 |             usb->mark = 1; | 
 | 92 |             adb_mutex_unlock(&usb_lock); | 
 | 93 |             return 1; | 
 | 94 |         } | 
 | 95 |     } | 
 | 96 |     adb_mutex_unlock(&usb_lock); | 
 | 97 |     return 0; | 
 | 98 | } | 
 | 99 |  | 
 | 100 | static void kick_disconnected_devices() | 
 | 101 | { | 
 | 102 |     usb_handle *usb; | 
 | 103 |  | 
 | 104 |     adb_mutex_lock(&usb_lock); | 
 | 105 |     // kick any devices in the device list that were not found in the device scan | 
 | 106 |     for(usb = handle_list.next; usb != &handle_list; usb = usb->next){ | 
 | 107 |         if (usb->mark == 0) { | 
 | 108 |             usb_kick(usb); | 
 | 109 |         } else { | 
 | 110 |             usb->mark = 0; | 
 | 111 |         } | 
 | 112 |     } | 
 | 113 |     adb_mutex_unlock(&usb_lock); | 
 | 114 |  | 
 | 115 | } | 
 | 116 |  | 
 | 117 | static void register_device(const char *dev_name, unsigned char ep_in, unsigned char ep_out, | 
 | 118 |                             int ifc, const char *serial, unsigned zero_mask); | 
 | 119 |  | 
 | 120 | static inline int badname(const char *name) | 
 | 121 | { | 
 | 122 |     while(*name) { | 
 | 123 |         if(!isdigit(*name++)) return 1; | 
 | 124 |     } | 
 | 125 |     return 0; | 
 | 126 | } | 
 | 127 |  | 
 | 128 | static int find_usb_device(const char *base, | 
 | 129 |                            void (*register_device_callback) (const char *, unsigned char, unsigned char, int, const char *, unsigned)) | 
 | 130 | { | 
 | 131 |     char busname[32], devname[32]; | 
 | 132 |     unsigned char local_ep_in, local_ep_out; | 
 | 133 |     DIR *busdir , *devdir ; | 
 | 134 |     struct dirent *de; | 
 | 135 |     int fd ; | 
 | 136 |     int found_device = 0; | 
 | 137 |     char serial[256]; | 
 | 138 |  | 
 | 139 |     busdir = opendir(base); | 
 | 140 |     if(busdir == 0) return 0; | 
 | 141 |  | 
 | 142 |     while((de = readdir(busdir)) != 0) { | 
 | 143 |         if(badname(de->d_name)) continue; | 
 | 144 |  | 
 | 145 |         snprintf(busname, sizeof busname, "%s/%s", base, de->d_name); | 
 | 146 |         devdir = opendir(busname); | 
 | 147 |         if(devdir == 0) continue; | 
 | 148 |  | 
 | 149 | //        DBGX("[ scanning %s ]\n", busname); | 
 | 150 |         while((de = readdir(devdir))) { | 
 | 151 |             unsigned char devdesc[256]; | 
 | 152 |             unsigned char* bufptr = devdesc; | 
 | 153 |             struct usb_device_descriptor* device; | 
 | 154 |             struct usb_config_descriptor* config; | 
 | 155 |             struct usb_interface_descriptor* interface; | 
 | 156 |             struct usb_endpoint_descriptor *ep1, *ep2; | 
 | 157 |             unsigned zero_mask = 0; | 
 | 158 |             unsigned vid, pid; | 
 | 159 |             int i, interfaces; | 
 | 160 |             size_t desclength; | 
 | 161 |  | 
 | 162 |             if(badname(de->d_name)) continue; | 
 | 163 |             snprintf(devname, sizeof devname, "%s/%s", busname, de->d_name); | 
 | 164 |  | 
 | 165 |             if(known_device(devname)) { | 
 | 166 |                 DBGX("skipping %s\n", devname); | 
 | 167 |                 continue; | 
 | 168 |             } | 
 | 169 |  | 
 | 170 | //            DBGX("[ scanning %s ]\n", devname); | 
 | 171 |             if((fd = unix_open(devname, O_RDWR)) < 0) { | 
 | 172 |                 continue; | 
 | 173 |             } | 
 | 174 |  | 
 | 175 |             desclength = adb_read(fd, devdesc, sizeof(devdesc)); | 
 | 176 |  | 
 | 177 |                 // should have device and configuration descriptors, and atleast two endpoints | 
 | 178 |             if (desclength < USB_DT_DEVICE_SIZE + USB_DT_CONFIG_SIZE) { | 
 | 179 |                 D("desclength %d is too small\n", desclength); | 
 | 180 |                 adb_close(fd); | 
 | 181 |                 continue; | 
 | 182 |             } | 
 | 183 |  | 
 | 184 |             device = (struct usb_device_descriptor*)bufptr; | 
 | 185 |             bufptr += USB_DT_DEVICE_SIZE; | 
 | 186 |  | 
 | 187 |             if((device->bLength != USB_DT_DEVICE_SIZE) || (device->bDescriptorType != USB_DT_DEVICE)) { | 
 | 188 |                 adb_close(fd); | 
 | 189 |                 continue; | 
 | 190 |             } | 
 | 191 |  | 
 | 192 |             vid = __le16_to_cpu(device->idVendor); | 
 | 193 |             pid = __le16_to_cpu(device->idProduct); | 
 | 194 |             pid = devdesc[10] | (devdesc[11] << 8); | 
 | 195 |             DBGX("[ %s is V:%04x P:%04x ]\n", devname, vid, pid); | 
 | 196 |  | 
 | 197 |                 // should have config descriptor next | 
 | 198 |             config = (struct usb_config_descriptor *)bufptr; | 
 | 199 |             bufptr += USB_DT_CONFIG_SIZE; | 
 | 200 |             if (config->bLength != USB_DT_CONFIG_SIZE || config->bDescriptorType != USB_DT_CONFIG) { | 
 | 201 |                 D("usb_config_descriptor not found\n"); | 
 | 202 |                 adb_close(fd); | 
 | 203 |                 continue; | 
 | 204 |             } | 
 | 205 |  | 
 | 206 |                 // loop through all the interfaces and look for the ADB interface | 
 | 207 |             interfaces = config->bNumInterfaces; | 
 | 208 |             for (i = 0; i < interfaces; i++) { | 
 | 209 |                 if (bufptr + USB_DT_ENDPOINT_SIZE > devdesc + desclength) | 
 | 210 |                     break; | 
 | 211 |  | 
 | 212 |                 interface = (struct usb_interface_descriptor *)bufptr; | 
 | 213 |                 bufptr += USB_DT_INTERFACE_SIZE; | 
 | 214 |                 if (interface->bLength != USB_DT_INTERFACE_SIZE || | 
 | 215 |                     interface->bDescriptorType != USB_DT_INTERFACE) { | 
 | 216 |                     D("usb_interface_descriptor not found\n"); | 
 | 217 |                     break; | 
 | 218 |                 } | 
 | 219 |  | 
 | 220 |                 DBGX("bInterfaceClass: %d,  bInterfaceSubClass: %d," | 
 | 221 |                      "bInterfaceProtocol: %d, bNumEndpoints: %d\n", | 
 | 222 |                      interface->bInterfaceClass, interface->bInterfaceSubClass, | 
 | 223 |                      interface->bInterfaceProtocol, interface->bNumEndpoints); | 
 | 224 |  | 
 | 225 |                 if (interface->bNumEndpoints == 2 && | 
 | 226 |                         is_adb_interface(vid, pid, interface->bInterfaceClass, | 
 | 227 |                         interface->bInterfaceSubClass, interface->bInterfaceProtocol))  { | 
 | 228 |  | 
 | 229 |                     DBGX("looking for bulk endpoints\n"); | 
 | 230 |                         // looks like ADB... | 
 | 231 |                     ep1 = (struct usb_endpoint_descriptor *)bufptr; | 
 | 232 |                     bufptr += USB_DT_ENDPOINT_SIZE; | 
 | 233 |                     ep2 = (struct usb_endpoint_descriptor *)bufptr; | 
 | 234 |                     bufptr += USB_DT_ENDPOINT_SIZE; | 
 | 235 |  | 
 | 236 |                     if (bufptr > devdesc + desclength || | 
 | 237 |                         ep1->bLength != USB_DT_ENDPOINT_SIZE || | 
 | 238 |                         ep1->bDescriptorType != USB_DT_ENDPOINT || | 
 | 239 |                         ep2->bLength != USB_DT_ENDPOINT_SIZE || | 
 | 240 |                         ep2->bDescriptorType != USB_DT_ENDPOINT) { | 
 | 241 |                         D("endpoints not found\n"); | 
 | 242 |                         break; | 
 | 243 |                     } | 
 | 244 |  | 
 | 245 |                         // both endpoints should be bulk | 
 | 246 |                     if (ep1->bmAttributes != USB_ENDPOINT_XFER_BULK || | 
 | 247 |                         ep2->bmAttributes != USB_ENDPOINT_XFER_BULK) { | 
 | 248 |                         D("bulk endpoints not found\n"); | 
 | 249 |                         continue; | 
 | 250 |                     } | 
 | 251 |  | 
 | 252 |                         /* aproto 01 needs 0 termination */ | 
 | 253 |                     if(interface->bInterfaceProtocol == 0x01) { | 
 | 254 |                         zero_mask = ep1->wMaxPacketSize - 1; | 
 | 255 |                     } | 
 | 256 |  | 
 | 257 |                         // we have a match.  now we just need to figure out which is in and which is out. | 
 | 258 |                     if (ep1->bEndpointAddress & USB_ENDPOINT_DIR_MASK) { | 
 | 259 |                         local_ep_in = ep1->bEndpointAddress; | 
 | 260 |                         local_ep_out = ep2->bEndpointAddress; | 
 | 261 |                     } else { | 
 | 262 |                         local_ep_in = ep2->bEndpointAddress; | 
 | 263 |                         local_ep_out = ep1->bEndpointAddress; | 
 | 264 |                     } | 
 | 265 |  | 
 | 266 |                         // read the device's serial number | 
 | 267 |                     serial[0] = 0; | 
 | 268 |                     memset(serial, 0, sizeof(serial)); | 
 | 269 |                     if (device->iSerialNumber) { | 
 | 270 |                         struct usbdevfs_ctrltransfer  ctrl; | 
 | 271 |                         __u16 buffer[128]; | 
 | 272 |                         int result; | 
 | 273 |  | 
 | 274 |                         memset(buffer, 0, sizeof(buffer)); | 
 | 275 |                         memset(&ctrl, 0, sizeof(ctrl)); | 
 | 276 |  | 
 | 277 |                         ctrl.bRequestType = USB_DIR_IN|USB_TYPE_STANDARD|USB_RECIP_DEVICE; | 
 | 278 |                         ctrl.bRequest = USB_REQ_GET_DESCRIPTOR; | 
 | 279 |                         ctrl.wValue = (USB_DT_STRING << 8) | device->iSerialNumber; | 
 | 280 |                         ctrl.wIndex = 0; | 
 | 281 |                         ctrl.wLength = sizeof(buffer); | 
 | 282 |                         ctrl.data = buffer; | 
 | 283 |  | 
 | 284 |                         result = ioctl(fd, USBDEVFS_CONTROL, &ctrl); | 
 | 285 |                         if (result > 0) { | 
 | 286 |                             int i; | 
 | 287 |                                 // skip first word, and copy the rest to the serial string, changing shorts to bytes. | 
 | 288 |                             result /= 2; | 
 | 289 |                             for (i = 1; i < result; i++) | 
 | 290 |                                 serial[i - 1] = buffer[i]; | 
 | 291 |                             serial[i - 1] = 0; | 
 | 292 |                         } | 
 | 293 |                     } | 
 | 294 |  | 
 | 295 |                     register_device_callback(devname, local_ep_in, local_ep_out, | 
 | 296 |                             interface->bInterfaceNumber, serial, zero_mask); | 
 | 297 |  | 
 | 298 |                     found_device = 1; | 
 | 299 |                     break; | 
 | 300 |                 } else { | 
 | 301 |                         // skip to next interface | 
 | 302 |                     bufptr += (interface->bNumEndpoints * USB_DT_ENDPOINT_SIZE); | 
 | 303 |                 } | 
 | 304 |             } // end of for | 
 | 305 |  | 
 | 306 |             adb_close(fd); | 
 | 307 |         } // end of devdir while | 
 | 308 |         closedir(devdir); | 
 | 309 |     } //end of busdir while | 
 | 310 |     closedir(busdir); | 
 | 311 |  | 
 | 312 |     return found_device; | 
 | 313 | } | 
 | 314 |  | 
 | 315 | void usb_cleanup() | 
 | 316 | { | 
 | 317 | } | 
 | 318 |  | 
 | 319 | static int usb_bulk_write(usb_handle *h, const void *data, int len) | 
 | 320 | { | 
 | 321 |     struct usbdevfs_urb *urb = &h->urb_out; | 
 | 322 |     int res; | 
 | 323 |  | 
 | 324 |     memset(urb, 0, sizeof(*urb)); | 
 | 325 |     urb->type = USBDEVFS_URB_TYPE_BULK; | 
 | 326 |     urb->endpoint = h->ep_out; | 
 | 327 |     urb->status = -1; | 
 | 328 |     urb->buffer = (void*) data; | 
 | 329 |     urb->buffer_length = len; | 
 | 330 |  | 
 | 331 |     D("++ write ++\n"); | 
 | 332 |  | 
 | 333 |     adb_mutex_lock(&h->lock); | 
 | 334 |     if(h->dead) { | 
 | 335 |         res = -1; | 
 | 336 |         goto fail; | 
 | 337 |     } | 
 | 338 |     do { | 
 | 339 |         res = ioctl(h->desc, USBDEVFS_SUBMITURB, urb); | 
 | 340 |     } while((res < 0) && (errno == EINTR)); | 
 | 341 |  | 
 | 342 |     if(res < 0) { | 
 | 343 |         goto fail; | 
 | 344 |     } | 
 | 345 |  | 
 | 346 |     res = -1; | 
 | 347 |     h->urb_out_busy = 1; | 
 | 348 |     for(;;) { | 
 | 349 |         adb_cond_wait(&h->notify, &h->lock); | 
 | 350 |         if(h->dead) { | 
 | 351 |             break; | 
 | 352 |         } | 
 | 353 |         if(h->urb_out_busy == 0) { | 
 | 354 |             if(urb->status == 0) { | 
 | 355 |                 res = urb->actual_length; | 
 | 356 |             } | 
 | 357 |             break; | 
 | 358 |         } | 
 | 359 |     } | 
 | 360 | fail: | 
 | 361 |     adb_mutex_unlock(&h->lock); | 
 | 362 |     D("-- write --\n"); | 
 | 363 |     return res; | 
 | 364 | } | 
 | 365 |  | 
 | 366 | static int usb_bulk_read(usb_handle *h, void *data, int len) | 
 | 367 | { | 
 | 368 |     struct usbdevfs_urb *urb = &h->urb_in; | 
 | 369 |     struct usbdevfs_urb *out = NULL; | 
 | 370 |     int res; | 
 | 371 |  | 
 | 372 |     memset(urb, 0, sizeof(*urb)); | 
 | 373 |     urb->type = USBDEVFS_URB_TYPE_BULK; | 
 | 374 |     urb->endpoint = h->ep_in; | 
 | 375 |     urb->status = -1; | 
 | 376 |     urb->buffer = data; | 
 | 377 |     urb->buffer_length = len; | 
 | 378 |  | 
 | 379 |  | 
 | 380 |     adb_mutex_lock(&h->lock); | 
 | 381 |     if(h->dead) { | 
 | 382 |         res = -1; | 
 | 383 |         goto fail; | 
 | 384 |     } | 
 | 385 |     do { | 
 | 386 |         res = ioctl(h->desc, USBDEVFS_SUBMITURB, urb); | 
 | 387 |     } while((res < 0) && (errno == EINTR)); | 
 | 388 |  | 
 | 389 |     if(res < 0) { | 
 | 390 |         goto fail; | 
 | 391 |     } | 
 | 392 |  | 
 | 393 |     h->urb_in_busy = 1; | 
 | 394 |     for(;;) { | 
 | 395 |         D("[ reap urb - wait ]\n"); | 
 | 396 |         h->reaper_thread = pthread_self(); | 
 | 397 |         adb_mutex_unlock(&h->lock); | 
 | 398 |         res = ioctl(h->desc, USBDEVFS_REAPURB, &out); | 
 | 399 |         adb_mutex_lock(&h->lock); | 
 | 400 |         h->reaper_thread = 0; | 
 | 401 |         if(h->dead) { | 
 | 402 |             res = -1; | 
 | 403 |             break; | 
 | 404 |         } | 
 | 405 |         if(res < 0) { | 
 | 406 |             if(errno == EINTR) { | 
 | 407 |                 continue; | 
 | 408 |             } | 
 | 409 |             D("[ reap urb - error ]\n"); | 
 | 410 |             break; | 
 | 411 |         } | 
 | 412 |         D("[ urb @%p status = %d, actual = %d ]\n", | 
 | 413 |             out, out->status, out->actual_length); | 
 | 414 |  | 
 | 415 |         if(out == &h->urb_in) { | 
 | 416 |             D("[ reap urb - IN complete ]\n"); | 
 | 417 |             h->urb_in_busy = 0; | 
 | 418 |             if(urb->status == 0) { | 
 | 419 |                 res = urb->actual_length; | 
 | 420 |             } else { | 
 | 421 |                 res = -1; | 
 | 422 |             } | 
 | 423 |             break; | 
 | 424 |         } | 
 | 425 |         if(out == &h->urb_out) { | 
 | 426 |             D("[ reap urb - OUT compelete ]\n"); | 
 | 427 |             h->urb_out_busy = 0; | 
 | 428 |             adb_cond_broadcast(&h->notify); | 
 | 429 |         } | 
 | 430 |     } | 
 | 431 | fail: | 
 | 432 |     adb_mutex_unlock(&h->lock); | 
 | 433 |     return res; | 
 | 434 | } | 
 | 435 |  | 
 | 436 |  | 
 | 437 | int usb_write(usb_handle *h, const void *_data, int len) | 
 | 438 | { | 
 | 439 |     unsigned char *data = (unsigned char*) _data; | 
 | 440 |     int n; | 
 | 441 |     int need_zero = 0; | 
 | 442 |  | 
 | 443 |     if(h->zero_mask) { | 
 | 444 |             /* if we need 0-markers and our transfer | 
 | 445 |             ** is an even multiple of the packet size, | 
 | 446 |             ** we make note of it | 
 | 447 |             */ | 
 | 448 |         if(!(len & h->zero_mask)) { | 
 | 449 |             need_zero = 1; | 
 | 450 |         } | 
 | 451 |     } | 
 | 452 |  | 
 | 453 |     while(len > 0) { | 
 | 454 |         int xfer = (len > 4096) ? 4096 : len; | 
 | 455 |  | 
 | 456 |         n = usb_bulk_write(h, data, xfer); | 
 | 457 |         if(n != xfer) { | 
 | 458 |             D("ERROR: n = %d, errno = %d (%s)\n", | 
 | 459 |                 n, errno, strerror(errno)); | 
 | 460 |             return -1; | 
 | 461 |         } | 
 | 462 |  | 
 | 463 |         len -= xfer; | 
 | 464 |         data += xfer; | 
 | 465 |     } | 
 | 466 |  | 
 | 467 |     if(need_zero){ | 
 | 468 |         n = usb_bulk_write(h, _data, 0); | 
 | 469 |         return n; | 
 | 470 |     } | 
 | 471 |  | 
 | 472 |     return 0; | 
 | 473 | } | 
 | 474 |  | 
 | 475 | int usb_read(usb_handle *h, void *_data, int len) | 
 | 476 | { | 
 | 477 |     unsigned char *data = (unsigned char*) _data; | 
 | 478 |     int n; | 
 | 479 |  | 
 | 480 |     D("++ usb_read ++\n"); | 
 | 481 |     while(len > 0) { | 
 | 482 |         int xfer = (len > 4096) ? 4096 : len; | 
 | 483 |  | 
 | 484 |         D("[ usb read %d fd = %d], fname=%s\n", xfer, h->desc, h->fname); | 
 | 485 |         n = usb_bulk_read(h, data, xfer); | 
 | 486 |         D("[ usb read %d ] = %d, fname=%s\n", xfer, n, h->fname); | 
 | 487 |         if(n != xfer) { | 
 | 488 |             if((errno == ETIMEDOUT) && (h->desc != -1)) { | 
 | 489 |                 D("[ timeout ]\n"); | 
 | 490 |                 if(n > 0){ | 
 | 491 |                     data += n; | 
 | 492 |                     len -= n; | 
 | 493 |                 } | 
 | 494 |                 continue; | 
 | 495 |             } | 
 | 496 |             D("ERROR: n = %d, errno = %d (%s)\n", | 
 | 497 |                 n, errno, strerror(errno)); | 
 | 498 |             return -1; | 
 | 499 |         } | 
 | 500 |  | 
 | 501 |         len -= xfer; | 
 | 502 |         data += xfer; | 
 | 503 |     } | 
 | 504 |  | 
 | 505 |     D("-- usb_read --\n"); | 
 | 506 |     return 0; | 
 | 507 | } | 
 | 508 |  | 
 | 509 | void usb_kick(usb_handle *h) | 
 | 510 | { | 
 | 511 |     D("[ kicking %p (fd = %d) ]\n", h, h->desc); | 
 | 512 |     adb_mutex_lock(&h->lock); | 
 | 513 |     if(h->dead == 0) { | 
 | 514 |         h->dead = 1; | 
 | 515 |  | 
 | 516 |         /* HACK ALERT! | 
 | 517 |         ** Sometimes we get stuck in ioctl(USBDEVFS_REAPURB). | 
 | 518 |         ** This is a workaround for that problem. | 
 | 519 |         */ | 
 | 520 |         if (h->reaper_thread) { | 
 | 521 |             pthread_kill(h->reaper_thread, SIGALRM); | 
 | 522 |         } | 
 | 523 |  | 
 | 524 |         /* cancel any pending transactions | 
 | 525 |         ** these will quietly fail if the txns are not active, | 
 | 526 |         ** but this ensures that a reader blocked on REAPURB | 
 | 527 |         ** will get unblocked | 
 | 528 |         */ | 
 | 529 |         ioctl(h->desc, USBDEVFS_DISCARDURB, &h->urb_in); | 
 | 530 |         ioctl(h->desc, USBDEVFS_DISCARDURB, &h->urb_out); | 
 | 531 |         h->urb_in.status = -ENODEV; | 
 | 532 |         h->urb_out.status = -ENODEV; | 
 | 533 |         h->urb_in_busy = 0; | 
 | 534 |         h->urb_out_busy = 0; | 
 | 535 |         adb_cond_broadcast(&h->notify); | 
 | 536 |     } | 
 | 537 |     adb_mutex_unlock(&h->lock); | 
 | 538 | } | 
 | 539 |  | 
 | 540 | int usb_close(usb_handle *h) | 
 | 541 | { | 
 | 542 |     D("[ usb close ... ]\n"); | 
 | 543 |     adb_mutex_lock(&usb_lock); | 
 | 544 |     h->next->prev = h->prev; | 
 | 545 |     h->prev->next = h->next; | 
 | 546 |     h->prev = 0; | 
 | 547 |     h->next = 0; | 
 | 548 |  | 
 | 549 |     adb_close(h->desc); | 
 | 550 |     D("[ usb closed %p (fd = %d) ]\n", h, h->desc); | 
 | 551 |     adb_mutex_unlock(&usb_lock); | 
 | 552 |  | 
 | 553 |     free(h); | 
 | 554 |     return 0; | 
 | 555 | } | 
 | 556 |  | 
 | 557 | static void register_device(const char *dev_name, | 
 | 558 |                             unsigned char ep_in, unsigned char ep_out, | 
 | 559 |                             int interface, | 
 | 560 |                             const char *serial, unsigned zero_mask) | 
 | 561 | { | 
 | 562 |     usb_handle* usb = 0; | 
 | 563 |     int n = 0; | 
 | 564 |  | 
 | 565 |         /* Since Linux will not reassign the device ID (and dev_name) | 
 | 566 |         ** as long as the device is open, we can add to the list here | 
 | 567 |         ** once we open it and remove from the list when we're finally | 
 | 568 |         ** closed and everything will work out fine. | 
 | 569 |         ** | 
 | 570 |         ** If we have a usb_handle on the list 'o handles with a matching | 
 | 571 |         ** name, we have no further work to do. | 
 | 572 |         */ | 
 | 573 |     adb_mutex_lock(&usb_lock); | 
 | 574 |     for(usb = handle_list.next; usb != &handle_list; usb = usb->next){ | 
 | 575 |         if(!strcmp(usb->fname, dev_name)) { | 
 | 576 |             adb_mutex_unlock(&usb_lock); | 
 | 577 |             return; | 
 | 578 |         } | 
 | 579 |     } | 
 | 580 |     adb_mutex_unlock(&usb_lock); | 
 | 581 |  | 
 | 582 |     D("[ usb located new device %s (%d/%d/%d) ]\n", | 
 | 583 |         dev_name, ep_in, ep_out, interface); | 
 | 584 |     usb = calloc(1, sizeof(usb_handle)); | 
 | 585 |     strcpy(usb->fname, dev_name); | 
 | 586 |     usb->ep_in = ep_in; | 
 | 587 |     usb->ep_out = ep_out; | 
 | 588 |     usb->zero_mask = zero_mask; | 
 | 589 |  | 
 | 590 |     adb_cond_init(&usb->notify, 0); | 
 | 591 |     adb_mutex_init(&usb->lock, 0); | 
 | 592 |     /* initialize mark to 1 so we don't get garbage collected after the device scan */ | 
 | 593 |     usb->mark = 1; | 
 | 594 |     usb->reaper_thread = 0; | 
 | 595 |  | 
 | 596 |     usb->desc = unix_open(usb->fname, O_RDWR); | 
 | 597 |     if(usb->desc < 0) goto fail; | 
 | 598 |     D("[ usb open %s fd = %d]\n", usb->fname, usb->desc); | 
 | 599 |     n = ioctl(usb->desc, USBDEVFS_CLAIMINTERFACE, &interface); | 
 | 600 |     if(n != 0) goto fail; | 
 | 601 |  | 
 | 602 |         /* add to the end of the active handles */ | 
 | 603 |     adb_mutex_lock(&usb_lock); | 
 | 604 |     usb->next = &handle_list; | 
 | 605 |     usb->prev = handle_list.prev; | 
 | 606 |     usb->prev->next = usb; | 
 | 607 |     usb->next->prev = usb; | 
 | 608 |     adb_mutex_unlock(&usb_lock); | 
 | 609 |  | 
 | 610 |     register_usb_transport(usb, serial); | 
 | 611 |     return; | 
 | 612 |  | 
 | 613 | fail: | 
 | 614 |     D("[ usb open %s error=%d, err_str = %s]\n", | 
 | 615 |         usb->fname,  errno, strerror(errno)); | 
 | 616 |     if(usb->desc >= 0) { | 
 | 617 |         adb_close(usb->desc); | 
 | 618 |     } | 
 | 619 |     free(usb); | 
 | 620 | } | 
 | 621 |  | 
 | 622 | void* device_poll_thread(void* unused) | 
 | 623 | { | 
 | 624 |     D("Created device thread\n"); | 
 | 625 |     for(;;) { | 
 | 626 |             /* XXX use inotify */ | 
 | 627 |         find_usb_device("/dev/bus/usb", register_device); | 
 | 628 |         kick_disconnected_devices(); | 
 | 629 |         sleep(1); | 
 | 630 |     } | 
 | 631 |     return NULL; | 
 | 632 | } | 
 | 633 |  | 
 | 634 | static void sigalrm_handler(int signo) | 
 | 635 | { | 
 | 636 |     // don't need to do anything here | 
 | 637 | } | 
 | 638 |  | 
 | 639 | void usb_init() | 
 | 640 | { | 
 | 641 |     adb_thread_t tid; | 
 | 642 |     struct sigaction    actions; | 
 | 643 |  | 
 | 644 |     memset(&actions, 0, sizeof(actions)); | 
 | 645 |     sigemptyset(&actions.sa_mask); | 
 | 646 |     actions.sa_flags = 0; | 
 | 647 |     actions.sa_handler = sigalrm_handler; | 
 | 648 |     sigaction(SIGALRM,& actions, NULL); | 
 | 649 |  | 
 | 650 |     if(adb_thread_create(&tid, device_poll_thread, NULL)){ | 
 | 651 |         fatal_errno("cannot create input thread"); | 
 | 652 |     } | 
 | 653 | } | 
 | 654 |  |