dev-mtp.c 61 KB

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  1. /*
  2. * Media Transfer Protocol implementation, backed by host filesystem.
  3. *
  4. * Copyright Red Hat, Inc 2014
  5. *
  6. * Author:
  7. * Gerd Hoffmann <kraxel@redhat.com>
  8. *
  9. * This code is licensed under the GPL v2 or later.
  10. */
  11. #include "qemu/osdep.h"
  12. #include "qemu-common.h"
  13. #include "qapi/error.h"
  14. #include "qemu/error-report.h"
  15. #include <wchar.h>
  16. #include <dirent.h>
  17. #include <sys/statvfs.h>
  18. #include "qemu/iov.h"
  19. #include "qemu/module.h"
  20. #include "qemu/filemonitor.h"
  21. #include "trace.h"
  22. #include "hw/qdev-properties.h"
  23. #include "hw/usb.h"
  24. #include "migration/vmstate.h"
  25. #include "desc.h"
  26. #include "qemu/units.h"
  27. /* ----------------------------------------------------------------------- */
  28. enum mtp_container_type {
  29. TYPE_COMMAND = 1,
  30. TYPE_DATA = 2,
  31. TYPE_RESPONSE = 3,
  32. TYPE_EVENT = 4,
  33. };
  34. /* MTP write stage, for internal use only */
  35. enum mtp_write_status {
  36. WRITE_START = 1,
  37. WRITE_CONTINUE = 2,
  38. WRITE_END = 3,
  39. };
  40. enum mtp_code {
  41. /* command codes */
  42. CMD_GET_DEVICE_INFO = 0x1001,
  43. CMD_OPEN_SESSION = 0x1002,
  44. CMD_CLOSE_SESSION = 0x1003,
  45. CMD_GET_STORAGE_IDS = 0x1004,
  46. CMD_GET_STORAGE_INFO = 0x1005,
  47. CMD_GET_NUM_OBJECTS = 0x1006,
  48. CMD_GET_OBJECT_HANDLES = 0x1007,
  49. CMD_GET_OBJECT_INFO = 0x1008,
  50. CMD_GET_OBJECT = 0x1009,
  51. CMD_DELETE_OBJECT = 0x100b,
  52. CMD_SEND_OBJECT_INFO = 0x100c,
  53. CMD_SEND_OBJECT = 0x100d,
  54. CMD_GET_PARTIAL_OBJECT = 0x101b,
  55. CMD_GET_OBJECT_PROPS_SUPPORTED = 0x9801,
  56. CMD_GET_OBJECT_PROP_DESC = 0x9802,
  57. CMD_GET_OBJECT_PROP_VALUE = 0x9803,
  58. /* response codes */
  59. RES_OK = 0x2001,
  60. RES_GENERAL_ERROR = 0x2002,
  61. RES_SESSION_NOT_OPEN = 0x2003,
  62. RES_INVALID_TRANSACTION_ID = 0x2004,
  63. RES_OPERATION_NOT_SUPPORTED = 0x2005,
  64. RES_PARAMETER_NOT_SUPPORTED = 0x2006,
  65. RES_INCOMPLETE_TRANSFER = 0x2007,
  66. RES_INVALID_STORAGE_ID = 0x2008,
  67. RES_INVALID_OBJECT_HANDLE = 0x2009,
  68. RES_INVALID_OBJECT_FORMAT_CODE = 0x200b,
  69. RES_STORE_FULL = 0x200c,
  70. RES_STORE_READ_ONLY = 0x200e,
  71. RES_PARTIAL_DELETE = 0x2012,
  72. RES_STORE_NOT_AVAILABLE = 0x2013,
  73. RES_SPEC_BY_FORMAT_UNSUPPORTED = 0x2014,
  74. RES_INVALID_OBJECTINFO = 0x2015,
  75. RES_DESTINATION_UNSUPPORTED = 0x2020,
  76. RES_INVALID_PARENT_OBJECT = 0x201a,
  77. RES_INVALID_PARAMETER = 0x201d,
  78. RES_SESSION_ALREADY_OPEN = 0x201e,
  79. RES_INVALID_OBJECT_PROP_CODE = 0xA801,
  80. /* format codes */
  81. FMT_UNDEFINED_OBJECT = 0x3000,
  82. FMT_ASSOCIATION = 0x3001,
  83. /* event codes */
  84. EVT_CANCEL_TRANSACTION = 0x4001,
  85. EVT_OBJ_ADDED = 0x4002,
  86. EVT_OBJ_REMOVED = 0x4003,
  87. EVT_OBJ_INFO_CHANGED = 0x4007,
  88. /* object properties */
  89. PROP_STORAGE_ID = 0xDC01,
  90. PROP_OBJECT_FORMAT = 0xDC02,
  91. PROP_OBJECT_COMPRESSED_SIZE = 0xDC04,
  92. PROP_PARENT_OBJECT = 0xDC0B,
  93. PROP_PERSISTENT_UNIQUE_OBJECT_IDENTIFIER = 0xDC41,
  94. PROP_NAME = 0xDC44,
  95. };
  96. enum mtp_data_type {
  97. DATA_TYPE_UINT16 = 0x0004,
  98. DATA_TYPE_UINT32 = 0x0006,
  99. DATA_TYPE_UINT64 = 0x0008,
  100. DATA_TYPE_UINT128 = 0x000a,
  101. DATA_TYPE_STRING = 0xffff,
  102. };
  103. typedef struct {
  104. uint32_t length;
  105. uint16_t type;
  106. uint16_t code;
  107. uint32_t trans;
  108. } QEMU_PACKED mtp_container;
  109. /* ----------------------------------------------------------------------- */
  110. typedef struct MTPState MTPState;
  111. typedef struct MTPControl MTPControl;
  112. typedef struct MTPData MTPData;
  113. typedef struct MTPObject MTPObject;
  114. enum {
  115. EP_DATA_IN = 1,
  116. EP_DATA_OUT,
  117. EP_EVENT,
  118. };
  119. typedef struct MTPMonEntry MTPMonEntry;
  120. struct MTPMonEntry {
  121. uint32_t event;
  122. uint32_t handle;
  123. QTAILQ_ENTRY(MTPMonEntry) next;
  124. };
  125. struct MTPControl {
  126. uint16_t code;
  127. uint32_t trans;
  128. int argc;
  129. uint32_t argv[5];
  130. };
  131. struct MTPData {
  132. uint16_t code;
  133. uint32_t trans;
  134. uint64_t offset;
  135. uint64_t length;
  136. uint64_t alloc;
  137. uint8_t *data;
  138. bool first;
  139. /* Used for >4G file sizes */
  140. bool pending;
  141. int fd;
  142. uint8_t write_status;
  143. /* Internal pointer per every MTP_WRITE_BUF_SZ */
  144. uint64_t data_offset;
  145. };
  146. struct MTPObject {
  147. uint32_t handle;
  148. uint16_t format;
  149. char *name;
  150. char *path;
  151. struct stat stat;
  152. /* file monitor watch id */
  153. int64_t watchid;
  154. MTPObject *parent;
  155. uint32_t nchildren;
  156. QLIST_HEAD(, MTPObject) children;
  157. QLIST_ENTRY(MTPObject) list;
  158. bool have_children;
  159. QTAILQ_ENTRY(MTPObject) next;
  160. };
  161. struct MTPState {
  162. USBDevice dev;
  163. char *root;
  164. char *desc;
  165. uint32_t flags;
  166. MTPData *data_in;
  167. MTPData *data_out;
  168. MTPControl *result;
  169. uint32_t session;
  170. uint32_t next_handle;
  171. bool readonly;
  172. QTAILQ_HEAD(, MTPObject) objects;
  173. QFileMonitor *file_monitor;
  174. QTAILQ_HEAD(, MTPMonEntry) events;
  175. /* Responder is expecting a write operation */
  176. bool write_pending;
  177. struct {
  178. uint32_t parent_handle;
  179. uint16_t format;
  180. uint32_t size;
  181. char *filename;
  182. } dataset;
  183. };
  184. /*
  185. * ObjectInfo dataset received from initiator
  186. * Fields we don't care about are ignored
  187. */
  188. typedef struct {
  189. uint32_t storage_id; /*unused*/
  190. uint16_t format;
  191. uint16_t protection_status; /*unused*/
  192. uint32_t size;
  193. uint16_t thumb_format; /*unused*/
  194. uint32_t thumb_comp_sz; /*unused*/
  195. uint32_t thumb_pix_width; /*unused*/
  196. uint32_t thumb_pix_height; /*unused*/
  197. uint32_t image_pix_width; /*unused*/
  198. uint32_t image_pix_height; /*unused*/
  199. uint32_t image_bit_depth; /*unused*/
  200. uint32_t parent; /*unused*/
  201. uint16_t assoc_type;
  202. uint32_t assoc_desc;
  203. uint32_t seq_no; /*unused*/
  204. uint8_t length; /*part of filename field*/
  205. uint8_t filename[0]; /* UTF-16 encoded */
  206. char date_created[0]; /*unused*/
  207. char date_modified[0]; /*unused*/
  208. char keywords[0]; /*unused*/
  209. /* string and other data follows */
  210. } QEMU_PACKED ObjectInfo;
  211. #define TYPE_USB_MTP "usb-mtp"
  212. #define USB_MTP(obj) OBJECT_CHECK(MTPState, (obj), TYPE_USB_MTP)
  213. #define QEMU_STORAGE_ID 0x00010001
  214. #define MTP_FLAG_WRITABLE 0
  215. #define FLAG_SET(_mtp, _flag) ((_mtp)->flags & (1 << (_flag)))
  216. /* ----------------------------------------------------------------------- */
  217. #define MTP_MANUFACTURER "QEMU"
  218. #define MTP_PRODUCT "QEMU filesharing"
  219. #define MTP_WRITE_BUF_SZ (512 * KiB)
  220. enum {
  221. STR_MANUFACTURER = 1,
  222. STR_PRODUCT,
  223. STR_SERIALNUMBER,
  224. STR_MTP,
  225. STR_CONFIG_FULL,
  226. STR_CONFIG_HIGH,
  227. STR_CONFIG_SUPER,
  228. };
  229. static const USBDescStrings desc_strings = {
  230. [STR_MANUFACTURER] = MTP_MANUFACTURER,
  231. [STR_PRODUCT] = MTP_PRODUCT,
  232. [STR_SERIALNUMBER] = "34617",
  233. [STR_MTP] = "MTP",
  234. [STR_CONFIG_FULL] = "Full speed config (usb 1.1)",
  235. [STR_CONFIG_HIGH] = "High speed config (usb 2.0)",
  236. [STR_CONFIG_SUPER] = "Super speed config (usb 3.0)",
  237. };
  238. static const USBDescIface desc_iface_full = {
  239. .bInterfaceNumber = 0,
  240. .bNumEndpoints = 3,
  241. .bInterfaceClass = USB_CLASS_STILL_IMAGE,
  242. .bInterfaceSubClass = 0x01,
  243. .bInterfaceProtocol = 0x01,
  244. .iInterface = STR_MTP,
  245. .eps = (USBDescEndpoint[]) {
  246. {
  247. .bEndpointAddress = USB_DIR_IN | EP_DATA_IN,
  248. .bmAttributes = USB_ENDPOINT_XFER_BULK,
  249. .wMaxPacketSize = 64,
  250. },{
  251. .bEndpointAddress = USB_DIR_OUT | EP_DATA_OUT,
  252. .bmAttributes = USB_ENDPOINT_XFER_BULK,
  253. .wMaxPacketSize = 64,
  254. },{
  255. .bEndpointAddress = USB_DIR_IN | EP_EVENT,
  256. .bmAttributes = USB_ENDPOINT_XFER_INT,
  257. .wMaxPacketSize = 64,
  258. .bInterval = 0x0a,
  259. },
  260. }
  261. };
  262. static const USBDescDevice desc_device_full = {
  263. .bcdUSB = 0x0200,
  264. .bMaxPacketSize0 = 8,
  265. .bNumConfigurations = 1,
  266. .confs = (USBDescConfig[]) {
  267. {
  268. .bNumInterfaces = 1,
  269. .bConfigurationValue = 1,
  270. .iConfiguration = STR_CONFIG_FULL,
  271. .bmAttributes = USB_CFG_ATT_ONE | USB_CFG_ATT_WAKEUP,
  272. .bMaxPower = 2,
  273. .nif = 1,
  274. .ifs = &desc_iface_full,
  275. },
  276. },
  277. };
  278. static const USBDescIface desc_iface_high = {
  279. .bInterfaceNumber = 0,
  280. .bNumEndpoints = 3,
  281. .bInterfaceClass = USB_CLASS_STILL_IMAGE,
  282. .bInterfaceSubClass = 0x01,
  283. .bInterfaceProtocol = 0x01,
  284. .iInterface = STR_MTP,
  285. .eps = (USBDescEndpoint[]) {
  286. {
  287. .bEndpointAddress = USB_DIR_IN | EP_DATA_IN,
  288. .bmAttributes = USB_ENDPOINT_XFER_BULK,
  289. .wMaxPacketSize = 512,
  290. },{
  291. .bEndpointAddress = USB_DIR_OUT | EP_DATA_OUT,
  292. .bmAttributes = USB_ENDPOINT_XFER_BULK,
  293. .wMaxPacketSize = 512,
  294. },{
  295. .bEndpointAddress = USB_DIR_IN | EP_EVENT,
  296. .bmAttributes = USB_ENDPOINT_XFER_INT,
  297. .wMaxPacketSize = 64,
  298. .bInterval = 0x0a,
  299. },
  300. }
  301. };
  302. static const USBDescDevice desc_device_high = {
  303. .bcdUSB = 0x0200,
  304. .bMaxPacketSize0 = 64,
  305. .bNumConfigurations = 1,
  306. .confs = (USBDescConfig[]) {
  307. {
  308. .bNumInterfaces = 1,
  309. .bConfigurationValue = 1,
  310. .iConfiguration = STR_CONFIG_HIGH,
  311. .bmAttributes = USB_CFG_ATT_ONE | USB_CFG_ATT_WAKEUP,
  312. .bMaxPower = 2,
  313. .nif = 1,
  314. .ifs = &desc_iface_high,
  315. },
  316. },
  317. };
  318. static const USBDescMSOS desc_msos = {
  319. .CompatibleID = "MTP",
  320. .SelectiveSuspendEnabled = true,
  321. };
  322. static const USBDesc desc = {
  323. .id = {
  324. .idVendor = 0x46f4, /* CRC16() of "QEMU" */
  325. .idProduct = 0x0004,
  326. .bcdDevice = 0,
  327. .iManufacturer = STR_MANUFACTURER,
  328. .iProduct = STR_PRODUCT,
  329. .iSerialNumber = STR_SERIALNUMBER,
  330. },
  331. .full = &desc_device_full,
  332. .high = &desc_device_high,
  333. .str = desc_strings,
  334. .msos = &desc_msos,
  335. };
  336. /* ----------------------------------------------------------------------- */
  337. static MTPObject *usb_mtp_object_alloc(MTPState *s, uint32_t handle,
  338. MTPObject *parent, const char *name)
  339. {
  340. MTPObject *o = g_new0(MTPObject, 1);
  341. if (name[0] == '.') {
  342. goto ignore;
  343. }
  344. o->watchid = -1;
  345. o->handle = handle;
  346. o->parent = parent;
  347. o->name = g_strdup(name);
  348. if (parent == NULL) {
  349. o->path = g_strdup(name);
  350. } else {
  351. o->path = g_strdup_printf("%s/%s", parent->path, name);
  352. }
  353. if (lstat(o->path, &o->stat) != 0) {
  354. goto ignore;
  355. }
  356. if (S_ISREG(o->stat.st_mode)) {
  357. o->format = FMT_UNDEFINED_OBJECT;
  358. } else if (S_ISDIR(o->stat.st_mode)) {
  359. o->format = FMT_ASSOCIATION;
  360. } else {
  361. goto ignore;
  362. }
  363. if (access(o->path, R_OK) != 0) {
  364. goto ignore;
  365. }
  366. trace_usb_mtp_object_alloc(s->dev.addr, o->handle, o->path);
  367. QTAILQ_INSERT_TAIL(&s->objects, o, next);
  368. return o;
  369. ignore:
  370. g_free(o->name);
  371. g_free(o->path);
  372. g_free(o);
  373. return NULL;
  374. }
  375. static void usb_mtp_object_free(MTPState *s, MTPObject *o)
  376. {
  377. MTPObject *iter;
  378. if (!o) {
  379. return;
  380. }
  381. trace_usb_mtp_object_free(s->dev.addr, o->handle, o->path);
  382. if (o->watchid != -1 && s->file_monitor) {
  383. qemu_file_monitor_remove_watch(s->file_monitor, o->path, o->watchid);
  384. }
  385. QTAILQ_REMOVE(&s->objects, o, next);
  386. if (o->parent) {
  387. QLIST_REMOVE(o, list);
  388. o->parent->nchildren--;
  389. }
  390. while (!QLIST_EMPTY(&o->children)) {
  391. iter = QLIST_FIRST(&o->children);
  392. usb_mtp_object_free(s, iter);
  393. }
  394. g_free(o->name);
  395. g_free(o->path);
  396. g_free(o);
  397. }
  398. static MTPObject *usb_mtp_object_lookup(MTPState *s, uint32_t handle)
  399. {
  400. MTPObject *o;
  401. QTAILQ_FOREACH(o, &s->objects, next) {
  402. if (o->handle == handle) {
  403. return o;
  404. }
  405. }
  406. return NULL;
  407. }
  408. static MTPObject *usb_mtp_add_child(MTPState *s, MTPObject *o,
  409. const char *name)
  410. {
  411. MTPObject *child =
  412. usb_mtp_object_alloc(s, s->next_handle++, o, name);
  413. if (child) {
  414. trace_usb_mtp_add_child(s->dev.addr, child->handle, child->path);
  415. QLIST_INSERT_HEAD(&o->children, child, list);
  416. o->nchildren++;
  417. if (child->format == FMT_ASSOCIATION) {
  418. QLIST_INIT(&child->children);
  419. }
  420. }
  421. return child;
  422. }
  423. static MTPObject *usb_mtp_object_lookup_name(MTPObject *parent,
  424. const char *name, int len)
  425. {
  426. MTPObject *iter;
  427. if (len == -1) {
  428. len = strlen(name);
  429. }
  430. QLIST_FOREACH(iter, &parent->children, list) {
  431. if (strncmp(iter->name, name, len) == 0) {
  432. return iter;
  433. }
  434. }
  435. return NULL;
  436. }
  437. static MTPObject *usb_mtp_object_lookup_id(MTPState *s, int64_t id)
  438. {
  439. MTPObject *iter;
  440. QTAILQ_FOREACH(iter, &s->objects, next) {
  441. if (iter->watchid == id) {
  442. return iter;
  443. }
  444. }
  445. return NULL;
  446. }
  447. static void file_monitor_event(int64_t id,
  448. QFileMonitorEvent ev,
  449. const char *name,
  450. void *opaque)
  451. {
  452. MTPState *s = opaque;
  453. MTPObject *parent = usb_mtp_object_lookup_id(s, id);
  454. MTPMonEntry *entry = NULL;
  455. MTPObject *o;
  456. if (!parent) {
  457. return;
  458. }
  459. switch (ev) {
  460. case QFILE_MONITOR_EVENT_CREATED:
  461. if (usb_mtp_object_lookup_name(parent, name, -1)) {
  462. /* Duplicate create event */
  463. return;
  464. }
  465. entry = g_new0(MTPMonEntry, 1);
  466. entry->handle = s->next_handle;
  467. entry->event = EVT_OBJ_ADDED;
  468. o = usb_mtp_add_child(s, parent, name);
  469. if (!o) {
  470. g_free(entry);
  471. return;
  472. }
  473. trace_usb_mtp_file_monitor_event(s->dev.addr, name, "Obj Added");
  474. break;
  475. case QFILE_MONITOR_EVENT_DELETED:
  476. /*
  477. * The kernel issues a IN_IGNORED event
  478. * when a dir containing a watchpoint is
  479. * deleted, so we don't have to delete the
  480. * watchpoint
  481. */
  482. o = usb_mtp_object_lookup_name(parent, name, -1);
  483. if (!o) {
  484. return;
  485. }
  486. entry = g_new0(MTPMonEntry, 1);
  487. entry->handle = o->handle;
  488. entry->event = EVT_OBJ_REMOVED;
  489. trace_usb_mtp_file_monitor_event(s->dev.addr, o->path, "Obj Deleted");
  490. usb_mtp_object_free(s, o);
  491. break;
  492. case QFILE_MONITOR_EVENT_MODIFIED:
  493. o = usb_mtp_object_lookup_name(parent, name, -1);
  494. if (!o) {
  495. return;
  496. }
  497. entry = g_new0(MTPMonEntry, 1);
  498. entry->handle = o->handle;
  499. entry->event = EVT_OBJ_INFO_CHANGED;
  500. trace_usb_mtp_file_monitor_event(s->dev.addr, o->path, "Obj Modified");
  501. break;
  502. case QFILE_MONITOR_EVENT_IGNORED:
  503. trace_usb_mtp_file_monitor_event(s->dev.addr, parent->path,
  504. "Obj parent dir ignored");
  505. break;
  506. case QFILE_MONITOR_EVENT_ATTRIBUTES:
  507. break;
  508. default:
  509. g_assert_not_reached();
  510. }
  511. if (entry) {
  512. QTAILQ_INSERT_HEAD(&s->events, entry, next);
  513. }
  514. }
  515. static void usb_mtp_file_monitor_cleanup(MTPState *s)
  516. {
  517. MTPMonEntry *e, *p;
  518. QTAILQ_FOREACH_SAFE(e, &s->events, next, p) {
  519. QTAILQ_REMOVE(&s->events, e, next);
  520. g_free(e);
  521. }
  522. qemu_file_monitor_free(s->file_monitor);
  523. s->file_monitor = NULL;
  524. }
  525. static void usb_mtp_object_readdir(MTPState *s, MTPObject *o)
  526. {
  527. struct dirent *entry;
  528. DIR *dir;
  529. int fd;
  530. Error *err = NULL;
  531. if (o->have_children) {
  532. return;
  533. }
  534. o->have_children = true;
  535. fd = open(o->path, O_DIRECTORY | O_CLOEXEC | O_NOFOLLOW);
  536. if (fd < 0) {
  537. return;
  538. }
  539. dir = fdopendir(fd);
  540. if (!dir) {
  541. close(fd);
  542. return;
  543. }
  544. if (s->file_monitor) {
  545. int64_t id = qemu_file_monitor_add_watch(s->file_monitor, o->path, NULL,
  546. file_monitor_event, s, &err);
  547. if (id == -1) {
  548. error_report("usb-mtp: failed to add watch for %s: %s", o->path,
  549. error_get_pretty(err));
  550. error_free(err);
  551. } else {
  552. trace_usb_mtp_file_monitor_event(s->dev.addr, o->path,
  553. "Watch Added");
  554. o->watchid = id;
  555. }
  556. }
  557. while ((entry = readdir(dir)) != NULL) {
  558. usb_mtp_add_child(s, o, entry->d_name);
  559. }
  560. closedir(dir);
  561. }
  562. /* ----------------------------------------------------------------------- */
  563. static MTPData *usb_mtp_data_alloc(MTPControl *c)
  564. {
  565. MTPData *data = g_new0(MTPData, 1);
  566. data->code = c->code;
  567. data->trans = c->trans;
  568. data->fd = -1;
  569. data->first = true;
  570. return data;
  571. }
  572. static void usb_mtp_data_free(MTPData *data)
  573. {
  574. if (data == NULL) {
  575. return;
  576. }
  577. if (data->fd != -1) {
  578. close(data->fd);
  579. }
  580. g_free(data->data);
  581. g_free(data);
  582. }
  583. static void usb_mtp_realloc(MTPData *data, uint32_t bytes)
  584. {
  585. if (data->length + bytes <= data->alloc) {
  586. return;
  587. }
  588. data->alloc = (data->length + bytes + 0xff) & ~0xff;
  589. data->data = g_realloc(data->data, data->alloc);
  590. }
  591. static void usb_mtp_add_u8(MTPData *data, uint8_t val)
  592. {
  593. usb_mtp_realloc(data, 1);
  594. data->data[data->length++] = val;
  595. }
  596. static void usb_mtp_add_u16(MTPData *data, uint16_t val)
  597. {
  598. usb_mtp_realloc(data, 2);
  599. data->data[data->length++] = (val >> 0) & 0xff;
  600. data->data[data->length++] = (val >> 8) & 0xff;
  601. }
  602. static void usb_mtp_add_u32(MTPData *data, uint32_t val)
  603. {
  604. usb_mtp_realloc(data, 4);
  605. data->data[data->length++] = (val >> 0) & 0xff;
  606. data->data[data->length++] = (val >> 8) & 0xff;
  607. data->data[data->length++] = (val >> 16) & 0xff;
  608. data->data[data->length++] = (val >> 24) & 0xff;
  609. }
  610. static void usb_mtp_add_u64(MTPData *data, uint64_t val)
  611. {
  612. usb_mtp_realloc(data, 8);
  613. data->data[data->length++] = (val >> 0) & 0xff;
  614. data->data[data->length++] = (val >> 8) & 0xff;
  615. data->data[data->length++] = (val >> 16) & 0xff;
  616. data->data[data->length++] = (val >> 24) & 0xff;
  617. data->data[data->length++] = (val >> 32) & 0xff;
  618. data->data[data->length++] = (val >> 40) & 0xff;
  619. data->data[data->length++] = (val >> 48) & 0xff;
  620. data->data[data->length++] = (val >> 56) & 0xff;
  621. }
  622. static void usb_mtp_add_u16_array(MTPData *data, uint32_t len,
  623. const uint16_t *vals)
  624. {
  625. int i;
  626. usb_mtp_add_u32(data, len);
  627. for (i = 0; i < len; i++) {
  628. usb_mtp_add_u16(data, vals[i]);
  629. }
  630. }
  631. static void usb_mtp_add_u32_array(MTPData *data, uint32_t len,
  632. const uint32_t *vals)
  633. {
  634. int i;
  635. usb_mtp_add_u32(data, len);
  636. for (i = 0; i < len; i++) {
  637. usb_mtp_add_u32(data, vals[i]);
  638. }
  639. }
  640. static void usb_mtp_add_wstr(MTPData *data, const wchar_t *str)
  641. {
  642. uint32_t len = wcslen(str);
  643. int i;
  644. if (len > 0) {
  645. len++; /* include terminating L'\0' */
  646. }
  647. usb_mtp_add_u8(data, len);
  648. for (i = 0; i < len; i++) {
  649. usb_mtp_add_u16(data, str[i]);
  650. }
  651. }
  652. static void usb_mtp_add_str(MTPData *data, const char *str)
  653. {
  654. uint32_t len = strlen(str)+1;
  655. wchar_t *wstr = g_new(wchar_t, len);
  656. size_t ret;
  657. ret = mbstowcs(wstr, str, len);
  658. if (ret == -1) {
  659. usb_mtp_add_wstr(data, L"Oops");
  660. } else {
  661. usb_mtp_add_wstr(data, wstr);
  662. }
  663. g_free(wstr);
  664. }
  665. static void usb_mtp_add_time(MTPData *data, time_t time)
  666. {
  667. char buf[16];
  668. struct tm tm;
  669. gmtime_r(&time, &tm);
  670. strftime(buf, sizeof(buf), "%Y%m%dT%H%M%S", &tm);
  671. usb_mtp_add_str(data, buf);
  672. }
  673. /* ----------------------------------------------------------------------- */
  674. static void usb_mtp_queue_result(MTPState *s, uint16_t code, uint32_t trans,
  675. int argc, uint32_t arg0, uint32_t arg1,
  676. uint32_t arg2)
  677. {
  678. MTPControl *c = g_new0(MTPControl, 1);
  679. c->code = code;
  680. c->trans = trans;
  681. c->argc = argc;
  682. if (argc > 0) {
  683. c->argv[0] = arg0;
  684. }
  685. if (argc > 1) {
  686. c->argv[1] = arg1;
  687. }
  688. if (argc > 2) {
  689. c->argv[2] = arg2;
  690. }
  691. assert(s->result == NULL);
  692. s->result = c;
  693. }
  694. /* ----------------------------------------------------------------------- */
  695. static MTPData *usb_mtp_get_device_info(MTPState *s, MTPControl *c)
  696. {
  697. static const uint16_t ops[] = {
  698. CMD_GET_DEVICE_INFO,
  699. CMD_OPEN_SESSION,
  700. CMD_CLOSE_SESSION,
  701. CMD_GET_STORAGE_IDS,
  702. CMD_GET_STORAGE_INFO,
  703. CMD_GET_NUM_OBJECTS,
  704. CMD_GET_OBJECT_HANDLES,
  705. CMD_GET_OBJECT_INFO,
  706. CMD_DELETE_OBJECT,
  707. CMD_SEND_OBJECT_INFO,
  708. CMD_SEND_OBJECT,
  709. CMD_GET_OBJECT,
  710. CMD_GET_PARTIAL_OBJECT,
  711. CMD_GET_OBJECT_PROPS_SUPPORTED,
  712. CMD_GET_OBJECT_PROP_DESC,
  713. CMD_GET_OBJECT_PROP_VALUE,
  714. };
  715. static const uint16_t fmt[] = {
  716. FMT_UNDEFINED_OBJECT,
  717. FMT_ASSOCIATION,
  718. };
  719. MTPData *d = usb_mtp_data_alloc(c);
  720. trace_usb_mtp_op_get_device_info(s->dev.addr);
  721. usb_mtp_add_u16(d, 100);
  722. usb_mtp_add_u32(d, 0x00000006);
  723. usb_mtp_add_u16(d, 0x0064);
  724. usb_mtp_add_wstr(d, L"");
  725. usb_mtp_add_u16(d, 0x0000);
  726. usb_mtp_add_u16_array(d, ARRAY_SIZE(ops), ops);
  727. usb_mtp_add_u16_array(d, 0, NULL);
  728. usb_mtp_add_u16_array(d, 0, NULL);
  729. usb_mtp_add_u16_array(d, 0, NULL);
  730. usb_mtp_add_u16_array(d, ARRAY_SIZE(fmt), fmt);
  731. usb_mtp_add_wstr(d, L"" MTP_MANUFACTURER);
  732. usb_mtp_add_wstr(d, L"" MTP_PRODUCT);
  733. usb_mtp_add_wstr(d, L"0.1");
  734. usb_mtp_add_wstr(d, L"0123456789abcdef0123456789abcdef");
  735. return d;
  736. }
  737. static MTPData *usb_mtp_get_storage_ids(MTPState *s, MTPControl *c)
  738. {
  739. static const uint32_t ids[] = {
  740. QEMU_STORAGE_ID,
  741. };
  742. MTPData *d = usb_mtp_data_alloc(c);
  743. trace_usb_mtp_op_get_storage_ids(s->dev.addr);
  744. usb_mtp_add_u32_array(d, ARRAY_SIZE(ids), ids);
  745. return d;
  746. }
  747. static MTPData *usb_mtp_get_storage_info(MTPState *s, MTPControl *c)
  748. {
  749. MTPData *d = usb_mtp_data_alloc(c);
  750. struct statvfs buf;
  751. int rc;
  752. trace_usb_mtp_op_get_storage_info(s->dev.addr);
  753. if (FLAG_SET(s, MTP_FLAG_WRITABLE)) {
  754. usb_mtp_add_u16(d, 0x0003);
  755. usb_mtp_add_u16(d, 0x0002);
  756. usb_mtp_add_u16(d, 0x0000);
  757. } else {
  758. usb_mtp_add_u16(d, 0x0001);
  759. usb_mtp_add_u16(d, 0x0002);
  760. usb_mtp_add_u16(d, 0x0001);
  761. }
  762. rc = statvfs(s->root, &buf);
  763. if (rc == 0) {
  764. usb_mtp_add_u64(d, (uint64_t)buf.f_frsize * buf.f_blocks);
  765. usb_mtp_add_u64(d, (uint64_t)buf.f_bavail * buf.f_blocks);
  766. usb_mtp_add_u32(d, buf.f_ffree);
  767. } else {
  768. usb_mtp_add_u64(d, 0xffffffff);
  769. usb_mtp_add_u64(d, 0xffffffff);
  770. usb_mtp_add_u32(d, 0xffffffff);
  771. }
  772. usb_mtp_add_str(d, s->desc);
  773. usb_mtp_add_wstr(d, L"123456789abcdef");
  774. return d;
  775. }
  776. static MTPData *usb_mtp_get_object_handles(MTPState *s, MTPControl *c,
  777. MTPObject *o)
  778. {
  779. MTPData *d = usb_mtp_data_alloc(c);
  780. uint32_t i = 0, handles[o->nchildren];
  781. MTPObject *iter;
  782. trace_usb_mtp_op_get_object_handles(s->dev.addr, o->handle, o->path);
  783. QLIST_FOREACH(iter, &o->children, list) {
  784. handles[i++] = iter->handle;
  785. }
  786. assert(i == o->nchildren);
  787. usb_mtp_add_u32_array(d, o->nchildren, handles);
  788. return d;
  789. }
  790. static MTPData *usb_mtp_get_object_info(MTPState *s, MTPControl *c,
  791. MTPObject *o)
  792. {
  793. MTPData *d = usb_mtp_data_alloc(c);
  794. trace_usb_mtp_op_get_object_info(s->dev.addr, o->handle, o->path);
  795. usb_mtp_add_u32(d, QEMU_STORAGE_ID);
  796. usb_mtp_add_u16(d, o->format);
  797. usb_mtp_add_u16(d, 0);
  798. if (o->stat.st_size > 0xFFFFFFFF) {
  799. usb_mtp_add_u32(d, 0xFFFFFFFF);
  800. } else {
  801. usb_mtp_add_u32(d, o->stat.st_size);
  802. }
  803. usb_mtp_add_u16(d, 0);
  804. usb_mtp_add_u32(d, 0);
  805. usb_mtp_add_u32(d, 0);
  806. usb_mtp_add_u32(d, 0);
  807. usb_mtp_add_u32(d, 0);
  808. usb_mtp_add_u32(d, 0);
  809. usb_mtp_add_u32(d, 0);
  810. if (o->parent) {
  811. usb_mtp_add_u32(d, o->parent->handle);
  812. } else {
  813. usb_mtp_add_u32(d, 0);
  814. }
  815. if (o->format == FMT_ASSOCIATION) {
  816. usb_mtp_add_u16(d, 0x0001);
  817. usb_mtp_add_u32(d, 0x00000001);
  818. usb_mtp_add_u32(d, 0);
  819. } else {
  820. usb_mtp_add_u16(d, 0);
  821. usb_mtp_add_u32(d, 0);
  822. usb_mtp_add_u32(d, 0);
  823. }
  824. usb_mtp_add_str(d, o->name);
  825. usb_mtp_add_time(d, o->stat.st_ctime);
  826. usb_mtp_add_time(d, o->stat.st_mtime);
  827. usb_mtp_add_wstr(d, L"");
  828. return d;
  829. }
  830. static MTPData *usb_mtp_get_object(MTPState *s, MTPControl *c,
  831. MTPObject *o)
  832. {
  833. MTPData *d = usb_mtp_data_alloc(c);
  834. trace_usb_mtp_op_get_object(s->dev.addr, o->handle, o->path);
  835. d->fd = open(o->path, O_RDONLY | O_CLOEXEC | O_NOFOLLOW);
  836. if (d->fd == -1) {
  837. usb_mtp_data_free(d);
  838. return NULL;
  839. }
  840. d->length = o->stat.st_size;
  841. d->alloc = 512;
  842. d->data = g_malloc(d->alloc);
  843. return d;
  844. }
  845. static MTPData *usb_mtp_get_partial_object(MTPState *s, MTPControl *c,
  846. MTPObject *o)
  847. {
  848. MTPData *d;
  849. off_t offset;
  850. if (c->argc <= 2) {
  851. return NULL;
  852. }
  853. trace_usb_mtp_op_get_partial_object(s->dev.addr, o->handle, o->path,
  854. c->argv[1], c->argv[2]);
  855. d = usb_mtp_data_alloc(c);
  856. d->fd = open(o->path, O_RDONLY | O_CLOEXEC | O_NOFOLLOW);
  857. if (d->fd == -1) {
  858. usb_mtp_data_free(d);
  859. return NULL;
  860. }
  861. offset = c->argv[1];
  862. if (offset > o->stat.st_size) {
  863. offset = o->stat.st_size;
  864. }
  865. if (lseek(d->fd, offset, SEEK_SET) < 0) {
  866. usb_mtp_data_free(d);
  867. return NULL;
  868. }
  869. d->length = c->argv[2];
  870. if (d->length > o->stat.st_size - offset) {
  871. d->length = o->stat.st_size - offset;
  872. }
  873. return d;
  874. }
  875. static MTPData *usb_mtp_get_object_props_supported(MTPState *s, MTPControl *c)
  876. {
  877. static const uint16_t props[] = {
  878. PROP_STORAGE_ID,
  879. PROP_OBJECT_FORMAT,
  880. PROP_OBJECT_COMPRESSED_SIZE,
  881. PROP_PARENT_OBJECT,
  882. PROP_PERSISTENT_UNIQUE_OBJECT_IDENTIFIER,
  883. PROP_NAME,
  884. };
  885. MTPData *d = usb_mtp_data_alloc(c);
  886. usb_mtp_add_u16_array(d, ARRAY_SIZE(props), props);
  887. return d;
  888. }
  889. static MTPData *usb_mtp_get_object_prop_desc(MTPState *s, MTPControl *c)
  890. {
  891. MTPData *d = usb_mtp_data_alloc(c);
  892. switch (c->argv[0]) {
  893. case PROP_STORAGE_ID:
  894. usb_mtp_add_u16(d, PROP_STORAGE_ID);
  895. usb_mtp_add_u16(d, DATA_TYPE_UINT32);
  896. usb_mtp_add_u8(d, 0x00);
  897. usb_mtp_add_u32(d, 0x00000000);
  898. usb_mtp_add_u32(d, 0x00000000);
  899. usb_mtp_add_u8(d, 0x00);
  900. break;
  901. case PROP_OBJECT_FORMAT:
  902. usb_mtp_add_u16(d, PROP_OBJECT_FORMAT);
  903. usb_mtp_add_u16(d, DATA_TYPE_UINT16);
  904. usb_mtp_add_u8(d, 0x00);
  905. usb_mtp_add_u16(d, 0x0000);
  906. usb_mtp_add_u32(d, 0x00000000);
  907. usb_mtp_add_u8(d, 0x00);
  908. break;
  909. case PROP_OBJECT_COMPRESSED_SIZE:
  910. usb_mtp_add_u16(d, PROP_OBJECT_COMPRESSED_SIZE);
  911. usb_mtp_add_u16(d, DATA_TYPE_UINT64);
  912. usb_mtp_add_u8(d, 0x00);
  913. usb_mtp_add_u64(d, 0x0000000000000000);
  914. usb_mtp_add_u32(d, 0x00000000);
  915. usb_mtp_add_u8(d, 0x00);
  916. break;
  917. case PROP_PARENT_OBJECT:
  918. usb_mtp_add_u16(d, PROP_PARENT_OBJECT);
  919. usb_mtp_add_u16(d, DATA_TYPE_UINT32);
  920. usb_mtp_add_u8(d, 0x00);
  921. usb_mtp_add_u32(d, 0x00000000);
  922. usb_mtp_add_u32(d, 0x00000000);
  923. usb_mtp_add_u8(d, 0x00);
  924. break;
  925. case PROP_PERSISTENT_UNIQUE_OBJECT_IDENTIFIER:
  926. usb_mtp_add_u16(d, PROP_PERSISTENT_UNIQUE_OBJECT_IDENTIFIER);
  927. usb_mtp_add_u16(d, DATA_TYPE_UINT128);
  928. usb_mtp_add_u8(d, 0x00);
  929. usb_mtp_add_u64(d, 0x0000000000000000);
  930. usb_mtp_add_u64(d, 0x0000000000000000);
  931. usb_mtp_add_u32(d, 0x00000000);
  932. usb_mtp_add_u8(d, 0x00);
  933. break;
  934. case PROP_NAME:
  935. usb_mtp_add_u16(d, PROP_NAME);
  936. usb_mtp_add_u16(d, DATA_TYPE_STRING);
  937. usb_mtp_add_u8(d, 0x00);
  938. usb_mtp_add_u8(d, 0x00);
  939. usb_mtp_add_u32(d, 0x00000000);
  940. usb_mtp_add_u8(d, 0x00);
  941. break;
  942. default:
  943. usb_mtp_data_free(d);
  944. return NULL;
  945. }
  946. return d;
  947. }
  948. static MTPData *usb_mtp_get_object_prop_value(MTPState *s, MTPControl *c,
  949. MTPObject *o)
  950. {
  951. MTPData *d = usb_mtp_data_alloc(c);
  952. switch (c->argv[1]) {
  953. case PROP_STORAGE_ID:
  954. usb_mtp_add_u32(d, QEMU_STORAGE_ID);
  955. break;
  956. case PROP_OBJECT_FORMAT:
  957. usb_mtp_add_u16(d, o->format);
  958. break;
  959. case PROP_OBJECT_COMPRESSED_SIZE:
  960. usb_mtp_add_u64(d, o->stat.st_size);
  961. break;
  962. case PROP_PARENT_OBJECT:
  963. if (o->parent == NULL) {
  964. usb_mtp_add_u32(d, 0x00000000);
  965. } else {
  966. usb_mtp_add_u32(d, o->parent->handle);
  967. }
  968. break;
  969. case PROP_PERSISTENT_UNIQUE_OBJECT_IDENTIFIER:
  970. /* Should be persistent between sessions,
  971. * but using our objedt ID is "good enough"
  972. * for now */
  973. usb_mtp_add_u64(d, 0x0000000000000000);
  974. usb_mtp_add_u64(d, o->handle);
  975. break;
  976. case PROP_NAME:
  977. usb_mtp_add_str(d, o->name);
  978. break;
  979. default:
  980. usb_mtp_data_free(d);
  981. return NULL;
  982. }
  983. return d;
  984. }
  985. /*
  986. * Return values when object @o is deleted.
  987. * If at least one of the deletions succeeded,
  988. * DELETE_SUCCESS is set and if at least one
  989. * of the deletions failed, DELETE_FAILURE is
  990. * set. Both bits being set (DELETE_PARTIAL)
  991. * signifies a RES_PARTIAL_DELETE being sent
  992. * back to the initiator.
  993. */
  994. enum {
  995. DELETE_SUCCESS = (1 << 0),
  996. DELETE_FAILURE = (1 << 1),
  997. DELETE_PARTIAL = (DELETE_FAILURE | DELETE_SUCCESS),
  998. };
  999. static int usb_mtp_deletefn(MTPState *s, MTPObject *o, uint32_t trans)
  1000. {
  1001. MTPObject *iter, *iter2;
  1002. int ret = 0;
  1003. /*
  1004. * TODO: Add support for Protection Status
  1005. */
  1006. QLIST_FOREACH(iter, &o->children, list) {
  1007. if (iter->format == FMT_ASSOCIATION) {
  1008. QLIST_FOREACH(iter2, &iter->children, list) {
  1009. ret |= usb_mtp_deletefn(s, iter2, trans);
  1010. }
  1011. }
  1012. }
  1013. if (o->format == FMT_UNDEFINED_OBJECT) {
  1014. if (remove(o->path)) {
  1015. ret |= DELETE_FAILURE;
  1016. } else {
  1017. usb_mtp_object_free(s, o);
  1018. ret |= DELETE_SUCCESS;
  1019. }
  1020. } else if (o->format == FMT_ASSOCIATION) {
  1021. if (rmdir(o->path)) {
  1022. ret |= DELETE_FAILURE;
  1023. } else {
  1024. usb_mtp_object_free(s, o);
  1025. ret |= DELETE_SUCCESS;
  1026. }
  1027. }
  1028. return ret;
  1029. }
  1030. static void usb_mtp_object_delete(MTPState *s, uint32_t handle,
  1031. uint32_t format_code, uint32_t trans)
  1032. {
  1033. MTPObject *o;
  1034. int ret;
  1035. /* Return error if store is read-only */
  1036. if (!FLAG_SET(s, MTP_FLAG_WRITABLE)) {
  1037. usb_mtp_queue_result(s, RES_STORE_READ_ONLY,
  1038. trans, 0, 0, 0, 0);
  1039. return;
  1040. }
  1041. if (format_code != 0) {
  1042. usb_mtp_queue_result(s, RES_SPEC_BY_FORMAT_UNSUPPORTED,
  1043. trans, 0, 0, 0, 0);
  1044. return;
  1045. }
  1046. if (handle == 0xFFFFFFF) {
  1047. o = QTAILQ_FIRST(&s->objects);
  1048. } else {
  1049. o = usb_mtp_object_lookup(s, handle);
  1050. }
  1051. if (o == NULL) {
  1052. usb_mtp_queue_result(s, RES_INVALID_OBJECT_HANDLE,
  1053. trans, 0, 0, 0, 0);
  1054. return;
  1055. }
  1056. ret = usb_mtp_deletefn(s, o, trans);
  1057. switch (ret) {
  1058. case DELETE_SUCCESS:
  1059. usb_mtp_queue_result(s, RES_OK, trans,
  1060. 0, 0, 0, 0);
  1061. break;
  1062. case DELETE_FAILURE:
  1063. usb_mtp_queue_result(s, RES_PARTIAL_DELETE,
  1064. trans, 0, 0, 0, 0);
  1065. break;
  1066. case DELETE_PARTIAL:
  1067. usb_mtp_queue_result(s, RES_PARTIAL_DELETE,
  1068. trans, 0, 0, 0, 0);
  1069. break;
  1070. default:
  1071. g_assert_not_reached();
  1072. }
  1073. return;
  1074. }
  1075. static void usb_mtp_command(MTPState *s, MTPControl *c)
  1076. {
  1077. MTPData *data_in = NULL;
  1078. MTPObject *o = NULL;
  1079. uint32_t nres = 0, res0 = 0;
  1080. Error *err = NULL;
  1081. /* sanity checks */
  1082. if (c->code >= CMD_CLOSE_SESSION && s->session == 0) {
  1083. usb_mtp_queue_result(s, RES_SESSION_NOT_OPEN,
  1084. c->trans, 0, 0, 0, 0);
  1085. return;
  1086. }
  1087. /* process commands */
  1088. switch (c->code) {
  1089. case CMD_GET_DEVICE_INFO:
  1090. data_in = usb_mtp_get_device_info(s, c);
  1091. break;
  1092. case CMD_OPEN_SESSION:
  1093. if (s->session) {
  1094. usb_mtp_queue_result(s, RES_SESSION_ALREADY_OPEN,
  1095. c->trans, 1, s->session, 0, 0);
  1096. return;
  1097. }
  1098. if (c->argv[0] == 0) {
  1099. usb_mtp_queue_result(s, RES_INVALID_PARAMETER,
  1100. c->trans, 0, 0, 0, 0);
  1101. return;
  1102. }
  1103. trace_usb_mtp_op_open_session(s->dev.addr);
  1104. s->session = c->argv[0];
  1105. usb_mtp_object_alloc(s, s->next_handle++, NULL, s->root);
  1106. s->file_monitor = qemu_file_monitor_new(&err);
  1107. if (err) {
  1108. error_report("usb-mtp: file monitoring init failed: %s",
  1109. error_get_pretty(err));
  1110. error_free(err);
  1111. } else {
  1112. QTAILQ_INIT(&s->events);
  1113. }
  1114. break;
  1115. case CMD_CLOSE_SESSION:
  1116. trace_usb_mtp_op_close_session(s->dev.addr);
  1117. s->session = 0;
  1118. s->next_handle = 0;
  1119. usb_mtp_file_monitor_cleanup(s);
  1120. usb_mtp_object_free(s, QTAILQ_FIRST(&s->objects));
  1121. assert(QTAILQ_EMPTY(&s->objects));
  1122. break;
  1123. case CMD_GET_STORAGE_IDS:
  1124. data_in = usb_mtp_get_storage_ids(s, c);
  1125. break;
  1126. case CMD_GET_STORAGE_INFO:
  1127. if (c->argv[0] != QEMU_STORAGE_ID &&
  1128. c->argv[0] != 0xffffffff) {
  1129. usb_mtp_queue_result(s, RES_INVALID_STORAGE_ID,
  1130. c->trans, 0, 0, 0, 0);
  1131. return;
  1132. }
  1133. data_in = usb_mtp_get_storage_info(s, c);
  1134. break;
  1135. case CMD_GET_NUM_OBJECTS:
  1136. case CMD_GET_OBJECT_HANDLES:
  1137. if (c->argv[0] != QEMU_STORAGE_ID &&
  1138. c->argv[0] != 0xffffffff) {
  1139. usb_mtp_queue_result(s, RES_INVALID_STORAGE_ID,
  1140. c->trans, 0, 0, 0, 0);
  1141. return;
  1142. }
  1143. if (c->argv[1] != 0x00000000) {
  1144. usb_mtp_queue_result(s, RES_SPEC_BY_FORMAT_UNSUPPORTED,
  1145. c->trans, 0, 0, 0, 0);
  1146. return;
  1147. }
  1148. if (c->argv[2] == 0x00000000 ||
  1149. c->argv[2] == 0xffffffff) {
  1150. o = QTAILQ_FIRST(&s->objects);
  1151. } else {
  1152. o = usb_mtp_object_lookup(s, c->argv[2]);
  1153. }
  1154. if (o == NULL) {
  1155. usb_mtp_queue_result(s, RES_INVALID_OBJECT_HANDLE,
  1156. c->trans, 0, 0, 0, 0);
  1157. return;
  1158. }
  1159. if (o->format != FMT_ASSOCIATION) {
  1160. usb_mtp_queue_result(s, RES_INVALID_PARENT_OBJECT,
  1161. c->trans, 0, 0, 0, 0);
  1162. return;
  1163. }
  1164. usb_mtp_object_readdir(s, o);
  1165. if (c->code == CMD_GET_NUM_OBJECTS) {
  1166. trace_usb_mtp_op_get_num_objects(s->dev.addr, o->handle, o->path);
  1167. nres = 1;
  1168. res0 = o->nchildren;
  1169. } else {
  1170. data_in = usb_mtp_get_object_handles(s, c, o);
  1171. }
  1172. break;
  1173. case CMD_GET_OBJECT_INFO:
  1174. o = usb_mtp_object_lookup(s, c->argv[0]);
  1175. if (o == NULL) {
  1176. usb_mtp_queue_result(s, RES_INVALID_OBJECT_HANDLE,
  1177. c->trans, 0, 0, 0, 0);
  1178. return;
  1179. }
  1180. data_in = usb_mtp_get_object_info(s, c, o);
  1181. break;
  1182. case CMD_GET_OBJECT:
  1183. o = usb_mtp_object_lookup(s, c->argv[0]);
  1184. if (o == NULL) {
  1185. usb_mtp_queue_result(s, RES_INVALID_OBJECT_HANDLE,
  1186. c->trans, 0, 0, 0, 0);
  1187. return;
  1188. }
  1189. if (o->format == FMT_ASSOCIATION) {
  1190. usb_mtp_queue_result(s, RES_INVALID_OBJECT_HANDLE,
  1191. c->trans, 0, 0, 0, 0);
  1192. return;
  1193. }
  1194. data_in = usb_mtp_get_object(s, c, o);
  1195. if (data_in == NULL) {
  1196. usb_mtp_queue_result(s, RES_GENERAL_ERROR,
  1197. c->trans, 0, 0, 0, 0);
  1198. return;
  1199. }
  1200. break;
  1201. case CMD_DELETE_OBJECT:
  1202. usb_mtp_object_delete(s, c->argv[0], c->argv[1], c->trans);
  1203. return;
  1204. case CMD_GET_PARTIAL_OBJECT:
  1205. o = usb_mtp_object_lookup(s, c->argv[0]);
  1206. if (o == NULL) {
  1207. usb_mtp_queue_result(s, RES_INVALID_OBJECT_HANDLE,
  1208. c->trans, 0, 0, 0, 0);
  1209. return;
  1210. }
  1211. if (o->format == FMT_ASSOCIATION) {
  1212. usb_mtp_queue_result(s, RES_INVALID_OBJECT_HANDLE,
  1213. c->trans, 0, 0, 0, 0);
  1214. return;
  1215. }
  1216. data_in = usb_mtp_get_partial_object(s, c, o);
  1217. if (data_in == NULL) {
  1218. usb_mtp_queue_result(s, RES_GENERAL_ERROR,
  1219. c->trans, 0, 0, 0, 0);
  1220. return;
  1221. }
  1222. nres = 1;
  1223. res0 = data_in->length;
  1224. break;
  1225. case CMD_SEND_OBJECT_INFO:
  1226. /* Return error if store is read-only */
  1227. if (!FLAG_SET(s, MTP_FLAG_WRITABLE)) {
  1228. usb_mtp_queue_result(s, RES_STORE_READ_ONLY,
  1229. c->trans, 0, 0, 0, 0);
  1230. } else if (c->argv[0] && (c->argv[0] != QEMU_STORAGE_ID)) {
  1231. /* First parameter points to storage id or is 0 */
  1232. usb_mtp_queue_result(s, RES_STORE_NOT_AVAILABLE, c->trans,
  1233. 0, 0, 0, 0);
  1234. } else if (c->argv[1] && !c->argv[0]) {
  1235. /* If second parameter is specified, first must also be specified */
  1236. usb_mtp_queue_result(s, RES_DESTINATION_UNSUPPORTED, c->trans,
  1237. 0, 0, 0, 0);
  1238. } else {
  1239. uint32_t handle = c->argv[1];
  1240. if (handle == 0xFFFFFFFF || handle == 0) {
  1241. /* root object */
  1242. o = QTAILQ_FIRST(&s->objects);
  1243. } else {
  1244. o = usb_mtp_object_lookup(s, handle);
  1245. }
  1246. if (o == NULL) {
  1247. usb_mtp_queue_result(s, RES_INVALID_OBJECT_HANDLE, c->trans,
  1248. 0, 0, 0, 0);
  1249. } else if (o->format != FMT_ASSOCIATION) {
  1250. usb_mtp_queue_result(s, RES_INVALID_PARENT_OBJECT, c->trans,
  1251. 0, 0, 0, 0);
  1252. }
  1253. }
  1254. if (o) {
  1255. s->dataset.parent_handle = o->handle;
  1256. }
  1257. s->data_out = usb_mtp_data_alloc(c);
  1258. return;
  1259. case CMD_SEND_OBJECT:
  1260. if (!FLAG_SET(s, MTP_FLAG_WRITABLE)) {
  1261. usb_mtp_queue_result(s, RES_STORE_READ_ONLY,
  1262. c->trans, 0, 0, 0, 0);
  1263. return;
  1264. }
  1265. if (!s->write_pending) {
  1266. usb_mtp_queue_result(s, RES_INVALID_OBJECTINFO,
  1267. c->trans, 0, 0, 0, 0);
  1268. return;
  1269. }
  1270. s->data_out = usb_mtp_data_alloc(c);
  1271. return;
  1272. case CMD_GET_OBJECT_PROPS_SUPPORTED:
  1273. if (c->argv[0] != FMT_UNDEFINED_OBJECT &&
  1274. c->argv[0] != FMT_ASSOCIATION) {
  1275. usb_mtp_queue_result(s, RES_INVALID_OBJECT_FORMAT_CODE,
  1276. c->trans, 0, 0, 0, 0);
  1277. return;
  1278. }
  1279. data_in = usb_mtp_get_object_props_supported(s, c);
  1280. break;
  1281. case CMD_GET_OBJECT_PROP_DESC:
  1282. if (c->argv[1] != FMT_UNDEFINED_OBJECT &&
  1283. c->argv[1] != FMT_ASSOCIATION) {
  1284. usb_mtp_queue_result(s, RES_INVALID_OBJECT_FORMAT_CODE,
  1285. c->trans, 0, 0, 0, 0);
  1286. return;
  1287. }
  1288. data_in = usb_mtp_get_object_prop_desc(s, c);
  1289. if (data_in == NULL) {
  1290. usb_mtp_queue_result(s, RES_INVALID_OBJECT_PROP_CODE,
  1291. c->trans, 0, 0, 0, 0);
  1292. return;
  1293. }
  1294. break;
  1295. case CMD_GET_OBJECT_PROP_VALUE:
  1296. o = usb_mtp_object_lookup(s, c->argv[0]);
  1297. if (o == NULL) {
  1298. usb_mtp_queue_result(s, RES_INVALID_OBJECT_HANDLE,
  1299. c->trans, 0, 0, 0, 0);
  1300. return;
  1301. }
  1302. data_in = usb_mtp_get_object_prop_value(s, c, o);
  1303. if (data_in == NULL) {
  1304. usb_mtp_queue_result(s, RES_INVALID_OBJECT_PROP_CODE,
  1305. c->trans, 0, 0, 0, 0);
  1306. return;
  1307. }
  1308. break;
  1309. default:
  1310. trace_usb_mtp_op_unknown(s->dev.addr, c->code);
  1311. usb_mtp_queue_result(s, RES_OPERATION_NOT_SUPPORTED,
  1312. c->trans, 0, 0, 0, 0);
  1313. return;
  1314. }
  1315. /* return results on success */
  1316. if (data_in) {
  1317. assert(s->data_in == NULL);
  1318. s->data_in = data_in;
  1319. }
  1320. usb_mtp_queue_result(s, RES_OK, c->trans, nres, res0, 0, 0);
  1321. }
  1322. /* ----------------------------------------------------------------------- */
  1323. static void usb_mtp_handle_reset(USBDevice *dev)
  1324. {
  1325. MTPState *s = USB_MTP(dev);
  1326. trace_usb_mtp_reset(s->dev.addr);
  1327. usb_mtp_file_monitor_cleanup(s);
  1328. usb_mtp_object_free(s, QTAILQ_FIRST(&s->objects));
  1329. s->session = 0;
  1330. usb_mtp_data_free(s->data_in);
  1331. s->data_in = NULL;
  1332. usb_mtp_data_free(s->data_out);
  1333. s->data_out = NULL;
  1334. g_free(s->result);
  1335. s->result = NULL;
  1336. }
  1337. static void usb_mtp_handle_control(USBDevice *dev, USBPacket *p,
  1338. int request, int value, int index,
  1339. int length, uint8_t *data)
  1340. {
  1341. int ret;
  1342. MTPState *s = USB_MTP(dev);
  1343. uint16_t *event = (uint16_t *)data;
  1344. switch (request) {
  1345. case ClassInterfaceOutRequest | 0x64:
  1346. if (*event == EVT_CANCEL_TRANSACTION) {
  1347. g_free(s->result);
  1348. s->result = NULL;
  1349. usb_mtp_data_free(s->data_in);
  1350. s->data_in = NULL;
  1351. if (s->write_pending) {
  1352. g_free(s->dataset.filename);
  1353. s->write_pending = false;
  1354. s->dataset.size = 0;
  1355. }
  1356. usb_mtp_data_free(s->data_out);
  1357. s->data_out = NULL;
  1358. } else {
  1359. p->status = USB_RET_STALL;
  1360. }
  1361. break;
  1362. default:
  1363. ret = usb_desc_handle_control(dev, p, request,
  1364. value, index, length, data);
  1365. if (ret >= 0) {
  1366. return;
  1367. }
  1368. }
  1369. trace_usb_mtp_stall(dev->addr, "unknown control request");
  1370. }
  1371. static void usb_mtp_cancel_packet(USBDevice *dev, USBPacket *p)
  1372. {
  1373. /* we don't use async packets, so this should never be called */
  1374. fprintf(stderr, "%s\n", __func__);
  1375. }
  1376. static char *utf16_to_str(uint8_t len, uint8_t *str16)
  1377. {
  1378. wchar_t *wstr = g_new0(wchar_t, len + 1);
  1379. int count, dlen;
  1380. char *dest;
  1381. for (count = 0; count < len; count++) {
  1382. /* FIXME: not working for surrogate pairs */
  1383. wstr[count] = lduw_le_p(str16 + (count * 2));
  1384. }
  1385. wstr[count] = 0;
  1386. dlen = wcstombs(NULL, wstr, 0) + 1;
  1387. dest = g_malloc(dlen);
  1388. wcstombs(dest, wstr, dlen);
  1389. g_free(wstr);
  1390. return dest;
  1391. }
  1392. /* Wrapper around write, returns 0 on failure */
  1393. static uint64_t write_retry(int fd, void *buf, uint64_t size, off_t offset)
  1394. {
  1395. uint64_t ret = 0;
  1396. if (lseek(fd, offset, SEEK_SET) < 0) {
  1397. goto done;
  1398. }
  1399. ret = qemu_write_full(fd, buf, size);
  1400. done:
  1401. return ret;
  1402. }
  1403. static int usb_mtp_update_object(MTPObject *parent, char *name)
  1404. {
  1405. int ret = 0;
  1406. MTPObject *o =
  1407. usb_mtp_object_lookup_name(parent, name, strlen(name));
  1408. if (o) {
  1409. ret = lstat(o->path, &o->stat);
  1410. }
  1411. return ret;
  1412. }
  1413. static void usb_mtp_write_data(MTPState *s, uint32_t handle)
  1414. {
  1415. MTPData *d = s->data_out;
  1416. MTPObject *parent =
  1417. usb_mtp_object_lookup(s, s->dataset.parent_handle);
  1418. char *path = NULL;
  1419. uint64_t rc;
  1420. mode_t mask = 0644;
  1421. int ret = 0;
  1422. assert(d != NULL);
  1423. switch (d->write_status) {
  1424. case WRITE_START:
  1425. if (!parent || !s->write_pending) {
  1426. usb_mtp_queue_result(s, RES_INVALID_OBJECTINFO, d->trans,
  1427. 0, 0, 0, 0);
  1428. return;
  1429. }
  1430. if (s->dataset.filename) {
  1431. path = g_strdup_printf("%s/%s", parent->path, s->dataset.filename);
  1432. if (s->dataset.format == FMT_ASSOCIATION) {
  1433. ret = mkdir(path, mask);
  1434. if (!ret) {
  1435. usb_mtp_queue_result(s, RES_OK, d->trans, 3,
  1436. QEMU_STORAGE_ID,
  1437. s->dataset.parent_handle,
  1438. handle);
  1439. goto close;
  1440. }
  1441. goto done;
  1442. }
  1443. d->fd = open(path, O_CREAT | O_WRONLY |
  1444. O_CLOEXEC | O_NOFOLLOW, mask);
  1445. if (d->fd == -1) {
  1446. ret = 1;
  1447. goto done;
  1448. }
  1449. /* Return success if initiator sent 0 sized data */
  1450. if (!s->dataset.size) {
  1451. goto done;
  1452. }
  1453. if (d->length != MTP_WRITE_BUF_SZ && !d->pending) {
  1454. d->write_status = WRITE_END;
  1455. }
  1456. }
  1457. /* fall through */
  1458. case WRITE_CONTINUE:
  1459. case WRITE_END:
  1460. rc = write_retry(d->fd, d->data, d->data_offset,
  1461. d->offset - d->data_offset);
  1462. if (rc != d->data_offset) {
  1463. ret = 1;
  1464. goto done;
  1465. }
  1466. if (d->write_status != WRITE_END) {
  1467. g_free(path);
  1468. return;
  1469. } else {
  1470. /*
  1471. * Return an incomplete transfer if file size doesn't match
  1472. * for < 4G file or if lstat fails which will result in an incorrect
  1473. * file size
  1474. */
  1475. if ((s->dataset.size != 0xFFFFFFFF &&
  1476. d->offset != s->dataset.size) ||
  1477. usb_mtp_update_object(parent, s->dataset.filename)) {
  1478. usb_mtp_queue_result(s, RES_INCOMPLETE_TRANSFER, d->trans,
  1479. 0, 0, 0, 0);
  1480. goto close;
  1481. }
  1482. }
  1483. }
  1484. done:
  1485. if (ret) {
  1486. usb_mtp_queue_result(s, RES_STORE_FULL, d->trans,
  1487. 0, 0, 0, 0);
  1488. } else {
  1489. usb_mtp_queue_result(s, RES_OK, d->trans,
  1490. 0, 0, 0, 0);
  1491. }
  1492. close:
  1493. /*
  1494. * The write dataset is kept around and freed only
  1495. * on success or if another write request comes in
  1496. */
  1497. if (d->fd != -1) {
  1498. close(d->fd);
  1499. d->fd = -1;
  1500. }
  1501. g_free(s->dataset.filename);
  1502. s->dataset.size = 0;
  1503. g_free(path);
  1504. s->write_pending = false;
  1505. }
  1506. static void usb_mtp_write_metadata(MTPState *s, uint64_t dlen)
  1507. {
  1508. MTPData *d = s->data_out;
  1509. ObjectInfo *dataset = (ObjectInfo *)d->data;
  1510. char *filename;
  1511. MTPObject *o;
  1512. MTPObject *p = usb_mtp_object_lookup(s, s->dataset.parent_handle);
  1513. uint32_t next_handle = s->next_handle;
  1514. size_t filename_chars = dlen - offsetof(ObjectInfo, filename);
  1515. /*
  1516. * filename is utf-16. We're intentionally doing
  1517. * integer division to truncate if malicious guest
  1518. * sent an odd number of bytes.
  1519. */
  1520. filename_chars /= 2;
  1521. assert(!s->write_pending);
  1522. assert(p != NULL);
  1523. filename = utf16_to_str(MIN(dataset->length, filename_chars),
  1524. dataset->filename);
  1525. if (strchr(filename, '/')) {
  1526. usb_mtp_queue_result(s, RES_PARAMETER_NOT_SUPPORTED, d->trans,
  1527. 0, 0, 0, 0);
  1528. g_free(filename);
  1529. return;
  1530. }
  1531. o = usb_mtp_object_lookup_name(p, filename, -1);
  1532. if (o != NULL) {
  1533. next_handle = o->handle;
  1534. }
  1535. s->dataset.filename = filename;
  1536. s->dataset.format = dataset->format;
  1537. s->dataset.size = dataset->size;
  1538. s->write_pending = true;
  1539. if (s->dataset.format == FMT_ASSOCIATION) {
  1540. usb_mtp_write_data(s, next_handle);
  1541. } else {
  1542. usb_mtp_queue_result(s, RES_OK, d->trans, 3, QEMU_STORAGE_ID,
  1543. s->dataset.parent_handle, next_handle);
  1544. }
  1545. }
  1546. static void usb_mtp_get_data(MTPState *s, mtp_container *container,
  1547. USBPacket *p)
  1548. {
  1549. MTPData *d = s->data_out;
  1550. uint64_t dlen;
  1551. uint32_t data_len = p->iov.size;
  1552. uint64_t total_len;
  1553. if (!d) {
  1554. usb_mtp_queue_result(s, RES_INVALID_OBJECTINFO, 0,
  1555. 0, 0, 0, 0);
  1556. return;
  1557. }
  1558. if (d->first) {
  1559. /* Total length of incoming data */
  1560. total_len = cpu_to_le32(container->length) - sizeof(mtp_container);
  1561. /* Length of data in this packet */
  1562. data_len -= sizeof(mtp_container);
  1563. if (total_len < MTP_WRITE_BUF_SZ) {
  1564. usb_mtp_realloc(d, total_len);
  1565. d->length += total_len;
  1566. } else {
  1567. usb_mtp_realloc(d, MTP_WRITE_BUF_SZ - sizeof(mtp_container));
  1568. d->length += MTP_WRITE_BUF_SZ - sizeof(mtp_container);
  1569. }
  1570. d->offset = 0;
  1571. d->first = false;
  1572. d->pending = false;
  1573. d->data_offset = 0;
  1574. d->write_status = WRITE_START;
  1575. }
  1576. if (d->pending) {
  1577. memset(d->data, 0, d->length);
  1578. if (d->length != MTP_WRITE_BUF_SZ) {
  1579. usb_mtp_realloc(d, MTP_WRITE_BUF_SZ - d->length);
  1580. d->length += (MTP_WRITE_BUF_SZ - d->length);
  1581. }
  1582. d->pending = false;
  1583. d->write_status = WRITE_CONTINUE;
  1584. d->data_offset = 0;
  1585. }
  1586. if (d->length - d->data_offset > data_len) {
  1587. dlen = data_len;
  1588. } else {
  1589. dlen = d->length - d->data_offset;
  1590. }
  1591. switch (d->code) {
  1592. case CMD_SEND_OBJECT_INFO:
  1593. usb_packet_copy(p, d->data + d->data_offset, dlen);
  1594. d->offset += dlen;
  1595. d->data_offset += dlen;
  1596. if (d->data_offset == d->length) {
  1597. /* The operation might have already failed */
  1598. if (!s->result) {
  1599. usb_mtp_write_metadata(s, dlen);
  1600. }
  1601. usb_mtp_data_free(s->data_out);
  1602. s->data_out = NULL;
  1603. return;
  1604. }
  1605. break;
  1606. case CMD_SEND_OBJECT:
  1607. usb_packet_copy(p, d->data + d->data_offset, dlen);
  1608. d->offset += dlen;
  1609. d->data_offset += dlen;
  1610. if ((p->iov.size % 64) || !p->iov.size) {
  1611. assert((s->dataset.size == 0xFFFFFFFF) ||
  1612. (s->dataset.size == d->offset));
  1613. if (d->length == MTP_WRITE_BUF_SZ) {
  1614. d->write_status = WRITE_END;
  1615. } else {
  1616. d->write_status = WRITE_START;
  1617. }
  1618. usb_mtp_write_data(s, 0);
  1619. usb_mtp_data_free(s->data_out);
  1620. s->data_out = NULL;
  1621. return;
  1622. }
  1623. if (d->data_offset == d->length) {
  1624. d->pending = true;
  1625. usb_mtp_write_data(s, 0);
  1626. }
  1627. break;
  1628. default:
  1629. p->status = USB_RET_STALL;
  1630. return;
  1631. }
  1632. }
  1633. static void usb_mtp_handle_data(USBDevice *dev, USBPacket *p)
  1634. {
  1635. MTPState *s = USB_MTP(dev);
  1636. MTPControl cmd;
  1637. mtp_container container;
  1638. uint32_t params[5];
  1639. uint16_t container_type;
  1640. int i, rc;
  1641. switch (p->ep->nr) {
  1642. case EP_DATA_IN:
  1643. if (s->data_out != NULL) {
  1644. /* guest bug */
  1645. trace_usb_mtp_stall(s->dev.addr, "awaiting data-out");
  1646. p->status = USB_RET_STALL;
  1647. return;
  1648. }
  1649. if (p->iov.size < sizeof(container)) {
  1650. trace_usb_mtp_stall(s->dev.addr, "packet too small");
  1651. p->status = USB_RET_STALL;
  1652. return;
  1653. }
  1654. if (s->data_in != NULL) {
  1655. MTPData *d = s->data_in;
  1656. uint64_t dlen = d->length - d->offset;
  1657. if (d->first) {
  1658. trace_usb_mtp_data_in(s->dev.addr, d->trans, d->length);
  1659. if (d->length + sizeof(container) > 0xFFFFFFFF) {
  1660. container.length = cpu_to_le32(0xFFFFFFFF);
  1661. } else {
  1662. container.length =
  1663. cpu_to_le32(d->length + sizeof(container));
  1664. }
  1665. container.type = cpu_to_le16(TYPE_DATA);
  1666. container.code = cpu_to_le16(d->code);
  1667. container.trans = cpu_to_le32(d->trans);
  1668. usb_packet_copy(p, &container, sizeof(container));
  1669. d->first = false;
  1670. if (dlen > p->iov.size - sizeof(container)) {
  1671. dlen = p->iov.size - sizeof(container);
  1672. }
  1673. } else {
  1674. if (dlen > p->iov.size) {
  1675. dlen = p->iov.size;
  1676. }
  1677. }
  1678. if (d->fd == -1) {
  1679. usb_packet_copy(p, d->data + d->offset, dlen);
  1680. } else {
  1681. if (d->alloc < p->iov.size) {
  1682. d->alloc = p->iov.size;
  1683. d->data = g_realloc(d->data, d->alloc);
  1684. }
  1685. rc = read(d->fd, d->data, dlen);
  1686. if (rc != dlen) {
  1687. memset(d->data, 0, dlen);
  1688. s->result->code = RES_INCOMPLETE_TRANSFER;
  1689. }
  1690. usb_packet_copy(p, d->data, dlen);
  1691. }
  1692. d->offset += dlen;
  1693. if (d->offset == d->length) {
  1694. usb_mtp_data_free(s->data_in);
  1695. s->data_in = NULL;
  1696. }
  1697. } else if (s->result != NULL) {
  1698. MTPControl *r = s->result;
  1699. int length = sizeof(container) + r->argc * sizeof(uint32_t);
  1700. if (r->code == RES_OK) {
  1701. trace_usb_mtp_success(s->dev.addr, r->trans,
  1702. (r->argc > 0) ? r->argv[0] : 0,
  1703. (r->argc > 1) ? r->argv[1] : 0);
  1704. } else {
  1705. trace_usb_mtp_error(s->dev.addr, r->code, r->trans,
  1706. (r->argc > 0) ? r->argv[0] : 0,
  1707. (r->argc > 1) ? r->argv[1] : 0);
  1708. }
  1709. container.length = cpu_to_le32(length);
  1710. container.type = cpu_to_le16(TYPE_RESPONSE);
  1711. container.code = cpu_to_le16(r->code);
  1712. container.trans = cpu_to_le32(r->trans);
  1713. for (i = 0; i < r->argc; i++) {
  1714. params[i] = cpu_to_le32(r->argv[i]);
  1715. }
  1716. usb_packet_copy(p, &container, sizeof(container));
  1717. usb_packet_copy(p, &params, length - sizeof(container));
  1718. g_free(s->result);
  1719. s->result = NULL;
  1720. }
  1721. break;
  1722. case EP_DATA_OUT:
  1723. if (p->iov.size < sizeof(container)) {
  1724. trace_usb_mtp_stall(s->dev.addr, "packet too small");
  1725. p->status = USB_RET_STALL;
  1726. return;
  1727. }
  1728. if ((s->data_out != NULL) && !s->data_out->first) {
  1729. container_type = TYPE_DATA;
  1730. } else {
  1731. usb_packet_copy(p, &container, sizeof(container));
  1732. container_type = le16_to_cpu(container.type);
  1733. }
  1734. switch (container_type) {
  1735. case TYPE_COMMAND:
  1736. if (s->data_in || s->data_out || s->result) {
  1737. trace_usb_mtp_stall(s->dev.addr, "transaction inflight");
  1738. p->status = USB_RET_STALL;
  1739. return;
  1740. }
  1741. cmd.code = le16_to_cpu(container.code);
  1742. cmd.argc = (le32_to_cpu(container.length) - sizeof(container))
  1743. / sizeof(uint32_t);
  1744. cmd.trans = le32_to_cpu(container.trans);
  1745. if (cmd.argc > ARRAY_SIZE(cmd.argv)) {
  1746. cmd.argc = ARRAY_SIZE(cmd.argv);
  1747. }
  1748. if (p->iov.size < sizeof(container) + cmd.argc * sizeof(uint32_t)) {
  1749. trace_usb_mtp_stall(s->dev.addr, "packet too small");
  1750. p->status = USB_RET_STALL;
  1751. return;
  1752. }
  1753. usb_packet_copy(p, &params, cmd.argc * sizeof(uint32_t));
  1754. for (i = 0; i < cmd.argc; i++) {
  1755. cmd.argv[i] = le32_to_cpu(params[i]);
  1756. }
  1757. trace_usb_mtp_command(s->dev.addr, cmd.code, cmd.trans,
  1758. (cmd.argc > 0) ? cmd.argv[0] : 0,
  1759. (cmd.argc > 1) ? cmd.argv[1] : 0,
  1760. (cmd.argc > 2) ? cmd.argv[2] : 0,
  1761. (cmd.argc > 3) ? cmd.argv[3] : 0,
  1762. (cmd.argc > 4) ? cmd.argv[4] : 0);
  1763. usb_mtp_command(s, &cmd);
  1764. break;
  1765. case TYPE_DATA:
  1766. /* One of the previous transfers has already errored but the
  1767. * responder is still sending data associated with it
  1768. */
  1769. if (s->result != NULL) {
  1770. return;
  1771. }
  1772. usb_mtp_get_data(s, &container, p);
  1773. break;
  1774. default:
  1775. /* not needed as long as the mtp device is read-only */
  1776. p->status = USB_RET_STALL;
  1777. return;
  1778. }
  1779. break;
  1780. case EP_EVENT:
  1781. if (!QTAILQ_EMPTY(&s->events)) {
  1782. struct MTPMonEntry *e = QTAILQ_LAST(&s->events);
  1783. uint32_t handle;
  1784. int len = sizeof(container) + sizeof(uint32_t);
  1785. if (p->iov.size < len) {
  1786. trace_usb_mtp_stall(s->dev.addr,
  1787. "packet too small to send event");
  1788. p->status = USB_RET_STALL;
  1789. return;
  1790. }
  1791. QTAILQ_REMOVE(&s->events, e, next);
  1792. container.length = cpu_to_le32(len);
  1793. container.type = cpu_to_le32(TYPE_EVENT);
  1794. container.code = cpu_to_le16(e->event);
  1795. container.trans = 0; /* no trans specific events */
  1796. handle = cpu_to_le32(e->handle);
  1797. usb_packet_copy(p, &container, sizeof(container));
  1798. usb_packet_copy(p, &handle, sizeof(uint32_t));
  1799. g_free(e);
  1800. return;
  1801. }
  1802. p->status = USB_RET_NAK;
  1803. return;
  1804. default:
  1805. trace_usb_mtp_stall(s->dev.addr, "invalid endpoint");
  1806. p->status = USB_RET_STALL;
  1807. return;
  1808. }
  1809. if (p->actual_length == 0) {
  1810. trace_usb_mtp_nak(s->dev.addr, p->ep->nr);
  1811. p->status = USB_RET_NAK;
  1812. return;
  1813. } else {
  1814. trace_usb_mtp_xfer(s->dev.addr, p->ep->nr, p->actual_length,
  1815. p->iov.size);
  1816. return;
  1817. }
  1818. }
  1819. static void usb_mtp_realize(USBDevice *dev, Error **errp)
  1820. {
  1821. MTPState *s = USB_MTP(dev);
  1822. if ((s->root == NULL) || !g_path_is_absolute(s->root)) {
  1823. error_setg(errp, "usb-mtp: rootdir must be configured and be an absolute path");
  1824. return;
  1825. }
  1826. if (access(s->root, R_OK) != 0) {
  1827. error_setg(errp, "usb-mtp: rootdir does not exist/not readable");
  1828. return;
  1829. } else if (!s->readonly && access(s->root, W_OK) != 0) {
  1830. error_setg(errp, "usb-mtp: rootdir does not have write permissions");
  1831. return;
  1832. }
  1833. /* Mark store as RW */
  1834. if (!s->readonly) {
  1835. s->flags |= (1 << MTP_FLAG_WRITABLE);
  1836. }
  1837. if (s->desc == NULL) {
  1838. /*
  1839. * This does not check if path exists
  1840. * but we have the checks above
  1841. */
  1842. s->desc = g_path_get_basename(s->root);
  1843. }
  1844. usb_desc_create_serial(dev);
  1845. usb_desc_init(dev);
  1846. QTAILQ_INIT(&s->objects);
  1847. }
  1848. static const VMStateDescription vmstate_usb_mtp = {
  1849. .name = "usb-mtp",
  1850. .unmigratable = 1,
  1851. .version_id = 1,
  1852. .minimum_version_id = 1,
  1853. .fields = (VMStateField[]) {
  1854. VMSTATE_USB_DEVICE(dev, MTPState),
  1855. VMSTATE_END_OF_LIST()
  1856. }
  1857. };
  1858. static Property mtp_properties[] = {
  1859. DEFINE_PROP_STRING("rootdir", MTPState, root),
  1860. DEFINE_PROP_STRING("desc", MTPState, desc),
  1861. DEFINE_PROP_BOOL("readonly", MTPState, readonly, true),
  1862. DEFINE_PROP_END_OF_LIST(),
  1863. };
  1864. static void usb_mtp_class_initfn(ObjectClass *klass, void *data)
  1865. {
  1866. DeviceClass *dc = DEVICE_CLASS(klass);
  1867. USBDeviceClass *uc = USB_DEVICE_CLASS(klass);
  1868. uc->realize = usb_mtp_realize;
  1869. uc->product_desc = "QEMU USB MTP";
  1870. uc->usb_desc = &desc;
  1871. uc->cancel_packet = usb_mtp_cancel_packet;
  1872. uc->handle_attach = usb_desc_attach;
  1873. uc->handle_reset = usb_mtp_handle_reset;
  1874. uc->handle_control = usb_mtp_handle_control;
  1875. uc->handle_data = usb_mtp_handle_data;
  1876. set_bit(DEVICE_CATEGORY_STORAGE, dc->categories);
  1877. dc->desc = "USB Media Transfer Protocol device";
  1878. dc->fw_name = "mtp";
  1879. dc->vmsd = &vmstate_usb_mtp;
  1880. dc->props = mtp_properties;
  1881. }
  1882. static TypeInfo mtp_info = {
  1883. .name = TYPE_USB_MTP,
  1884. .parent = TYPE_USB_DEVICE,
  1885. .instance_size = sizeof(MTPState),
  1886. .class_init = usb_mtp_class_initfn,
  1887. };
  1888. static void usb_mtp_register_types(void)
  1889. {
  1890. type_register_static(&mtp_info);
  1891. }
  1892. type_init(usb_mtp_register_types)