fw-cdev.c 25 KB

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  1. /*
  2. * Char device for device raw access
  3. *
  4. * Copyright (C) 2005-2007 Kristian Hoegsberg <krh@bitplanet.net>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software Foundation,
  18. * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  19. */
  20. #include <linux/module.h>
  21. #include <linux/kernel.h>
  22. #include <linux/wait.h>
  23. #include <linux/errno.h>
  24. #include <linux/device.h>
  25. #include <linux/vmalloc.h>
  26. #include <linux/poll.h>
  27. #include <linux/preempt.h>
  28. #include <linux/time.h>
  29. #include <linux/delay.h>
  30. #include <linux/mm.h>
  31. #include <linux/idr.h>
  32. #include <linux/compat.h>
  33. #include <linux/firewire-cdev.h>
  34. #include <asm/system.h>
  35. #include <asm/uaccess.h>
  36. #include "fw-transaction.h"
  37. #include "fw-topology.h"
  38. #include "fw-device.h"
  39. struct client;
  40. struct client_resource {
  41. struct list_head link;
  42. void (*release)(struct client *client, struct client_resource *r);
  43. u32 handle;
  44. };
  45. /*
  46. * dequeue_event() just kfree()'s the event, so the event has to be
  47. * the first field in the struct.
  48. */
  49. struct event {
  50. struct { void *data; size_t size; } v[2];
  51. struct list_head link;
  52. };
  53. struct bus_reset {
  54. struct event event;
  55. struct fw_cdev_event_bus_reset reset;
  56. };
  57. struct response {
  58. struct event event;
  59. struct fw_transaction transaction;
  60. struct client *client;
  61. struct client_resource resource;
  62. struct fw_cdev_event_response response;
  63. };
  64. struct iso_interrupt {
  65. struct event event;
  66. struct fw_cdev_event_iso_interrupt interrupt;
  67. };
  68. struct client {
  69. u32 version;
  70. struct fw_device *device;
  71. spinlock_t lock;
  72. u32 resource_handle;
  73. struct list_head resource_list;
  74. struct list_head event_list;
  75. wait_queue_head_t wait;
  76. u64 bus_reset_closure;
  77. struct fw_iso_context *iso_context;
  78. u64 iso_closure;
  79. struct fw_iso_buffer buffer;
  80. unsigned long vm_start;
  81. struct list_head link;
  82. };
  83. static inline void __user *
  84. u64_to_uptr(__u64 value)
  85. {
  86. return (void __user *)(unsigned long)value;
  87. }
  88. static inline __u64
  89. uptr_to_u64(void __user *ptr)
  90. {
  91. return (__u64)(unsigned long)ptr;
  92. }
  93. static int fw_device_op_open(struct inode *inode, struct file *file)
  94. {
  95. struct fw_device *device;
  96. struct client *client;
  97. unsigned long flags;
  98. device = fw_device_get_by_devt(inode->i_rdev);
  99. if (device == NULL)
  100. return -ENODEV;
  101. if (fw_device_is_shutdown(device)) {
  102. fw_device_put(device);
  103. return -ENODEV;
  104. }
  105. client = kzalloc(sizeof(*client), GFP_KERNEL);
  106. if (client == NULL) {
  107. fw_device_put(device);
  108. return -ENOMEM;
  109. }
  110. client->device = device;
  111. INIT_LIST_HEAD(&client->event_list);
  112. INIT_LIST_HEAD(&client->resource_list);
  113. spin_lock_init(&client->lock);
  114. init_waitqueue_head(&client->wait);
  115. file->private_data = client;
  116. spin_lock_irqsave(&device->card->lock, flags);
  117. list_add_tail(&client->link, &device->client_list);
  118. spin_unlock_irqrestore(&device->card->lock, flags);
  119. return 0;
  120. }
  121. static void queue_event(struct client *client, struct event *event,
  122. void *data0, size_t size0, void *data1, size_t size1)
  123. {
  124. unsigned long flags;
  125. event->v[0].data = data0;
  126. event->v[0].size = size0;
  127. event->v[1].data = data1;
  128. event->v[1].size = size1;
  129. spin_lock_irqsave(&client->lock, flags);
  130. list_add_tail(&event->link, &client->event_list);
  131. spin_unlock_irqrestore(&client->lock, flags);
  132. wake_up_interruptible(&client->wait);
  133. }
  134. static int
  135. dequeue_event(struct client *client, char __user *buffer, size_t count)
  136. {
  137. unsigned long flags;
  138. struct event *event;
  139. size_t size, total;
  140. int i, retval;
  141. retval = wait_event_interruptible(client->wait,
  142. !list_empty(&client->event_list) ||
  143. fw_device_is_shutdown(client->device));
  144. if (retval < 0)
  145. return retval;
  146. if (list_empty(&client->event_list) &&
  147. fw_device_is_shutdown(client->device))
  148. return -ENODEV;
  149. spin_lock_irqsave(&client->lock, flags);
  150. event = container_of(client->event_list.next, struct event, link);
  151. list_del(&event->link);
  152. spin_unlock_irqrestore(&client->lock, flags);
  153. total = 0;
  154. for (i = 0; i < ARRAY_SIZE(event->v) && total < count; i++) {
  155. size = min(event->v[i].size, count - total);
  156. if (copy_to_user(buffer + total, event->v[i].data, size)) {
  157. retval = -EFAULT;
  158. goto out;
  159. }
  160. total += size;
  161. }
  162. retval = total;
  163. out:
  164. kfree(event);
  165. return retval;
  166. }
  167. static ssize_t
  168. fw_device_op_read(struct file *file,
  169. char __user *buffer, size_t count, loff_t *offset)
  170. {
  171. struct client *client = file->private_data;
  172. return dequeue_event(client, buffer, count);
  173. }
  174. static void
  175. fill_bus_reset_event(struct fw_cdev_event_bus_reset *event,
  176. struct client *client)
  177. {
  178. struct fw_card *card = client->device->card;
  179. event->closure = client->bus_reset_closure;
  180. event->type = FW_CDEV_EVENT_BUS_RESET;
  181. event->generation = client->device->generation;
  182. smp_rmb(); /* node_id must not be older than generation */
  183. event->node_id = client->device->node_id;
  184. event->local_node_id = card->local_node->node_id;
  185. event->bm_node_id = 0; /* FIXME: We don't track the BM. */
  186. event->irm_node_id = card->irm_node->node_id;
  187. event->root_node_id = card->root_node->node_id;
  188. }
  189. static void
  190. for_each_client(struct fw_device *device,
  191. void (*callback)(struct client *client))
  192. {
  193. struct fw_card *card = device->card;
  194. struct client *c;
  195. unsigned long flags;
  196. spin_lock_irqsave(&card->lock, flags);
  197. list_for_each_entry(c, &device->client_list, link)
  198. callback(c);
  199. spin_unlock_irqrestore(&card->lock, flags);
  200. }
  201. static void
  202. queue_bus_reset_event(struct client *client)
  203. {
  204. struct bus_reset *bus_reset;
  205. bus_reset = kzalloc(sizeof(*bus_reset), GFP_ATOMIC);
  206. if (bus_reset == NULL) {
  207. fw_notify("Out of memory when allocating bus reset event\n");
  208. return;
  209. }
  210. fill_bus_reset_event(&bus_reset->reset, client);
  211. queue_event(client, &bus_reset->event,
  212. &bus_reset->reset, sizeof(bus_reset->reset), NULL, 0);
  213. }
  214. void fw_device_cdev_update(struct fw_device *device)
  215. {
  216. for_each_client(device, queue_bus_reset_event);
  217. }
  218. static void wake_up_client(struct client *client)
  219. {
  220. wake_up_interruptible(&client->wait);
  221. }
  222. void fw_device_cdev_remove(struct fw_device *device)
  223. {
  224. for_each_client(device, wake_up_client);
  225. }
  226. static int ioctl_get_info(struct client *client, void *buffer)
  227. {
  228. struct fw_cdev_get_info *get_info = buffer;
  229. struct fw_cdev_event_bus_reset bus_reset;
  230. unsigned long ret = 0;
  231. client->version = get_info->version;
  232. get_info->version = FW_CDEV_VERSION;
  233. down_read(&fw_device_rwsem);
  234. if (get_info->rom != 0) {
  235. void __user *uptr = u64_to_uptr(get_info->rom);
  236. size_t want = get_info->rom_length;
  237. size_t have = client->device->config_rom_length * 4;
  238. ret = copy_to_user(uptr, client->device->config_rom,
  239. min(want, have));
  240. }
  241. get_info->rom_length = client->device->config_rom_length * 4;
  242. up_read(&fw_device_rwsem);
  243. if (ret != 0)
  244. return -EFAULT;
  245. client->bus_reset_closure = get_info->bus_reset_closure;
  246. if (get_info->bus_reset != 0) {
  247. void __user *uptr = u64_to_uptr(get_info->bus_reset);
  248. fill_bus_reset_event(&bus_reset, client);
  249. if (copy_to_user(uptr, &bus_reset, sizeof(bus_reset)))
  250. return -EFAULT;
  251. }
  252. get_info->card = client->device->card->index;
  253. return 0;
  254. }
  255. static void
  256. add_client_resource(struct client *client, struct client_resource *resource)
  257. {
  258. unsigned long flags;
  259. spin_lock_irqsave(&client->lock, flags);
  260. list_add_tail(&resource->link, &client->resource_list);
  261. resource->handle = client->resource_handle++;
  262. spin_unlock_irqrestore(&client->lock, flags);
  263. }
  264. static int
  265. release_client_resource(struct client *client, u32 handle,
  266. struct client_resource **resource)
  267. {
  268. struct client_resource *r;
  269. unsigned long flags;
  270. spin_lock_irqsave(&client->lock, flags);
  271. list_for_each_entry(r, &client->resource_list, link) {
  272. if (r->handle == handle) {
  273. list_del(&r->link);
  274. break;
  275. }
  276. }
  277. spin_unlock_irqrestore(&client->lock, flags);
  278. if (&r->link == &client->resource_list)
  279. return -EINVAL;
  280. if (resource)
  281. *resource = r;
  282. else
  283. r->release(client, r);
  284. return 0;
  285. }
  286. static void
  287. release_transaction(struct client *client, struct client_resource *resource)
  288. {
  289. struct response *response =
  290. container_of(resource, struct response, resource);
  291. fw_cancel_transaction(client->device->card, &response->transaction);
  292. }
  293. static void
  294. complete_transaction(struct fw_card *card, int rcode,
  295. void *payload, size_t length, void *data)
  296. {
  297. struct response *response = data;
  298. struct client *client = response->client;
  299. unsigned long flags;
  300. if (length < response->response.length)
  301. response->response.length = length;
  302. if (rcode == RCODE_COMPLETE)
  303. memcpy(response->response.data, payload,
  304. response->response.length);
  305. spin_lock_irqsave(&client->lock, flags);
  306. list_del(&response->resource.link);
  307. spin_unlock_irqrestore(&client->lock, flags);
  308. response->response.type = FW_CDEV_EVENT_RESPONSE;
  309. response->response.rcode = rcode;
  310. queue_event(client, &response->event,
  311. &response->response, sizeof(response->response),
  312. response->response.data, response->response.length);
  313. }
  314. static int ioctl_send_request(struct client *client, void *buffer)
  315. {
  316. struct fw_device *device = client->device;
  317. struct fw_cdev_send_request *request = buffer;
  318. struct response *response;
  319. /* What is the biggest size we'll accept, really? */
  320. if (request->length > 4096)
  321. return -EINVAL;
  322. response = kmalloc(sizeof(*response) + request->length, GFP_KERNEL);
  323. if (response == NULL)
  324. return -ENOMEM;
  325. response->client = client;
  326. response->response.length = request->length;
  327. response->response.closure = request->closure;
  328. if (request->data &&
  329. copy_from_user(response->response.data,
  330. u64_to_uptr(request->data), request->length)) {
  331. kfree(response);
  332. return -EFAULT;
  333. }
  334. response->resource.release = release_transaction;
  335. add_client_resource(client, &response->resource);
  336. fw_send_request(device->card, &response->transaction,
  337. request->tcode & 0x1f,
  338. device->node->node_id,
  339. request->generation,
  340. device->max_speed,
  341. request->offset,
  342. response->response.data, request->length,
  343. complete_transaction, response);
  344. if (request->data)
  345. return sizeof(request) + request->length;
  346. else
  347. return sizeof(request);
  348. }
  349. struct address_handler {
  350. struct fw_address_handler handler;
  351. __u64 closure;
  352. struct client *client;
  353. struct client_resource resource;
  354. };
  355. struct request {
  356. struct fw_request *request;
  357. void *data;
  358. size_t length;
  359. struct client_resource resource;
  360. };
  361. struct request_event {
  362. struct event event;
  363. struct fw_cdev_event_request request;
  364. };
  365. static void
  366. release_request(struct client *client, struct client_resource *resource)
  367. {
  368. struct request *request =
  369. container_of(resource, struct request, resource);
  370. fw_send_response(client->device->card, request->request,
  371. RCODE_CONFLICT_ERROR);
  372. kfree(request);
  373. }
  374. static void
  375. handle_request(struct fw_card *card, struct fw_request *r,
  376. int tcode, int destination, int source,
  377. int generation, int speed,
  378. unsigned long long offset,
  379. void *payload, size_t length, void *callback_data)
  380. {
  381. struct address_handler *handler = callback_data;
  382. struct request *request;
  383. struct request_event *e;
  384. struct client *client = handler->client;
  385. request = kmalloc(sizeof(*request), GFP_ATOMIC);
  386. e = kmalloc(sizeof(*e), GFP_ATOMIC);
  387. if (request == NULL || e == NULL) {
  388. kfree(request);
  389. kfree(e);
  390. fw_send_response(card, r, RCODE_CONFLICT_ERROR);
  391. return;
  392. }
  393. request->request = r;
  394. request->data = payload;
  395. request->length = length;
  396. request->resource.release = release_request;
  397. add_client_resource(client, &request->resource);
  398. e->request.type = FW_CDEV_EVENT_REQUEST;
  399. e->request.tcode = tcode;
  400. e->request.offset = offset;
  401. e->request.length = length;
  402. e->request.handle = request->resource.handle;
  403. e->request.closure = handler->closure;
  404. queue_event(client, &e->event,
  405. &e->request, sizeof(e->request), payload, length);
  406. }
  407. static void
  408. release_address_handler(struct client *client,
  409. struct client_resource *resource)
  410. {
  411. struct address_handler *handler =
  412. container_of(resource, struct address_handler, resource);
  413. fw_core_remove_address_handler(&handler->handler);
  414. kfree(handler);
  415. }
  416. static int ioctl_allocate(struct client *client, void *buffer)
  417. {
  418. struct fw_cdev_allocate *request = buffer;
  419. struct address_handler *handler;
  420. struct fw_address_region region;
  421. handler = kmalloc(sizeof(*handler), GFP_KERNEL);
  422. if (handler == NULL)
  423. return -ENOMEM;
  424. region.start = request->offset;
  425. region.end = request->offset + request->length;
  426. handler->handler.length = request->length;
  427. handler->handler.address_callback = handle_request;
  428. handler->handler.callback_data = handler;
  429. handler->closure = request->closure;
  430. handler->client = client;
  431. if (fw_core_add_address_handler(&handler->handler, &region) < 0) {
  432. kfree(handler);
  433. return -EBUSY;
  434. }
  435. handler->resource.release = release_address_handler;
  436. add_client_resource(client, &handler->resource);
  437. request->handle = handler->resource.handle;
  438. return 0;
  439. }
  440. static int ioctl_deallocate(struct client *client, void *buffer)
  441. {
  442. struct fw_cdev_deallocate *request = buffer;
  443. return release_client_resource(client, request->handle, NULL);
  444. }
  445. static int ioctl_send_response(struct client *client, void *buffer)
  446. {
  447. struct fw_cdev_send_response *request = buffer;
  448. struct client_resource *resource;
  449. struct request *r;
  450. if (release_client_resource(client, request->handle, &resource) < 0)
  451. return -EINVAL;
  452. r = container_of(resource, struct request, resource);
  453. if (request->length < r->length)
  454. r->length = request->length;
  455. if (copy_from_user(r->data, u64_to_uptr(request->data), r->length))
  456. return -EFAULT;
  457. fw_send_response(client->device->card, r->request, request->rcode);
  458. kfree(r);
  459. return 0;
  460. }
  461. static int ioctl_initiate_bus_reset(struct client *client, void *buffer)
  462. {
  463. struct fw_cdev_initiate_bus_reset *request = buffer;
  464. int short_reset;
  465. short_reset = (request->type == FW_CDEV_SHORT_RESET);
  466. return fw_core_initiate_bus_reset(client->device->card, short_reset);
  467. }
  468. struct descriptor {
  469. struct fw_descriptor d;
  470. struct client_resource resource;
  471. u32 data[0];
  472. };
  473. static void release_descriptor(struct client *client,
  474. struct client_resource *resource)
  475. {
  476. struct descriptor *descriptor =
  477. container_of(resource, struct descriptor, resource);
  478. fw_core_remove_descriptor(&descriptor->d);
  479. kfree(descriptor);
  480. }
  481. static int ioctl_add_descriptor(struct client *client, void *buffer)
  482. {
  483. struct fw_cdev_add_descriptor *request = buffer;
  484. struct descriptor *descriptor;
  485. int retval;
  486. if (request->length > 256)
  487. return -EINVAL;
  488. descriptor =
  489. kmalloc(sizeof(*descriptor) + request->length * 4, GFP_KERNEL);
  490. if (descriptor == NULL)
  491. return -ENOMEM;
  492. if (copy_from_user(descriptor->data,
  493. u64_to_uptr(request->data), request->length * 4)) {
  494. kfree(descriptor);
  495. return -EFAULT;
  496. }
  497. descriptor->d.length = request->length;
  498. descriptor->d.immediate = request->immediate;
  499. descriptor->d.key = request->key;
  500. descriptor->d.data = descriptor->data;
  501. retval = fw_core_add_descriptor(&descriptor->d);
  502. if (retval < 0) {
  503. kfree(descriptor);
  504. return retval;
  505. }
  506. descriptor->resource.release = release_descriptor;
  507. add_client_resource(client, &descriptor->resource);
  508. request->handle = descriptor->resource.handle;
  509. return 0;
  510. }
  511. static int ioctl_remove_descriptor(struct client *client, void *buffer)
  512. {
  513. struct fw_cdev_remove_descriptor *request = buffer;
  514. return release_client_resource(client, request->handle, NULL);
  515. }
  516. static void
  517. iso_callback(struct fw_iso_context *context, u32 cycle,
  518. size_t header_length, void *header, void *data)
  519. {
  520. struct client *client = data;
  521. struct iso_interrupt *irq;
  522. irq = kzalloc(sizeof(*irq) + header_length, GFP_ATOMIC);
  523. if (irq == NULL)
  524. return;
  525. irq->interrupt.type = FW_CDEV_EVENT_ISO_INTERRUPT;
  526. irq->interrupt.closure = client->iso_closure;
  527. irq->interrupt.cycle = cycle;
  528. irq->interrupt.header_length = header_length;
  529. memcpy(irq->interrupt.header, header, header_length);
  530. queue_event(client, &irq->event, &irq->interrupt,
  531. sizeof(irq->interrupt) + header_length, NULL, 0);
  532. }
  533. static int ioctl_create_iso_context(struct client *client, void *buffer)
  534. {
  535. struct fw_cdev_create_iso_context *request = buffer;
  536. struct fw_iso_context *context;
  537. /* We only support one context at this time. */
  538. if (client->iso_context != NULL)
  539. return -EBUSY;
  540. if (request->channel > 63)
  541. return -EINVAL;
  542. switch (request->type) {
  543. case FW_ISO_CONTEXT_RECEIVE:
  544. if (request->header_size < 4 || (request->header_size & 3))
  545. return -EINVAL;
  546. break;
  547. case FW_ISO_CONTEXT_TRANSMIT:
  548. if (request->speed > SCODE_3200)
  549. return -EINVAL;
  550. break;
  551. default:
  552. return -EINVAL;
  553. }
  554. context = fw_iso_context_create(client->device->card,
  555. request->type,
  556. request->channel,
  557. request->speed,
  558. request->header_size,
  559. iso_callback, client);
  560. if (IS_ERR(context))
  561. return PTR_ERR(context);
  562. client->iso_closure = request->closure;
  563. client->iso_context = context;
  564. /* We only support one context at this time. */
  565. request->handle = 0;
  566. return 0;
  567. }
  568. /* Macros for decoding the iso packet control header. */
  569. #define GET_PAYLOAD_LENGTH(v) ((v) & 0xffff)
  570. #define GET_INTERRUPT(v) (((v) >> 16) & 0x01)
  571. #define GET_SKIP(v) (((v) >> 17) & 0x01)
  572. #define GET_TAG(v) (((v) >> 18) & 0x02)
  573. #define GET_SY(v) (((v) >> 20) & 0x04)
  574. #define GET_HEADER_LENGTH(v) (((v) >> 24) & 0xff)
  575. static int ioctl_queue_iso(struct client *client, void *buffer)
  576. {
  577. struct fw_cdev_queue_iso *request = buffer;
  578. struct fw_cdev_iso_packet __user *p, *end, *next;
  579. struct fw_iso_context *ctx = client->iso_context;
  580. unsigned long payload, buffer_end, header_length;
  581. u32 control;
  582. int count;
  583. struct {
  584. struct fw_iso_packet packet;
  585. u8 header[256];
  586. } u;
  587. if (ctx == NULL || request->handle != 0)
  588. return -EINVAL;
  589. /*
  590. * If the user passes a non-NULL data pointer, has mmap()'ed
  591. * the iso buffer, and the pointer points inside the buffer,
  592. * we setup the payload pointers accordingly. Otherwise we
  593. * set them both to 0, which will still let packets with
  594. * payload_length == 0 through. In other words, if no packets
  595. * use the indirect payload, the iso buffer need not be mapped
  596. * and the request->data pointer is ignored.
  597. */
  598. payload = (unsigned long)request->data - client->vm_start;
  599. buffer_end = client->buffer.page_count << PAGE_SHIFT;
  600. if (request->data == 0 || client->buffer.pages == NULL ||
  601. payload >= buffer_end) {
  602. payload = 0;
  603. buffer_end = 0;
  604. }
  605. p = (struct fw_cdev_iso_packet __user *)u64_to_uptr(request->packets);
  606. if (!access_ok(VERIFY_READ, p, request->size))
  607. return -EFAULT;
  608. end = (void __user *)p + request->size;
  609. count = 0;
  610. while (p < end) {
  611. if (get_user(control, &p->control))
  612. return -EFAULT;
  613. u.packet.payload_length = GET_PAYLOAD_LENGTH(control);
  614. u.packet.interrupt = GET_INTERRUPT(control);
  615. u.packet.skip = GET_SKIP(control);
  616. u.packet.tag = GET_TAG(control);
  617. u.packet.sy = GET_SY(control);
  618. u.packet.header_length = GET_HEADER_LENGTH(control);
  619. if (ctx->type == FW_ISO_CONTEXT_TRANSMIT) {
  620. header_length = u.packet.header_length;
  621. } else {
  622. /*
  623. * We require that header_length is a multiple of
  624. * the fixed header size, ctx->header_size.
  625. */
  626. if (ctx->header_size == 0) {
  627. if (u.packet.header_length > 0)
  628. return -EINVAL;
  629. } else if (u.packet.header_length % ctx->header_size != 0) {
  630. return -EINVAL;
  631. }
  632. header_length = 0;
  633. }
  634. next = (struct fw_cdev_iso_packet __user *)
  635. &p->header[header_length / 4];
  636. if (next > end)
  637. return -EINVAL;
  638. if (__copy_from_user
  639. (u.packet.header, p->header, header_length))
  640. return -EFAULT;
  641. if (u.packet.skip && ctx->type == FW_ISO_CONTEXT_TRANSMIT &&
  642. u.packet.header_length + u.packet.payload_length > 0)
  643. return -EINVAL;
  644. if (payload + u.packet.payload_length > buffer_end)
  645. return -EINVAL;
  646. if (fw_iso_context_queue(ctx, &u.packet,
  647. &client->buffer, payload))
  648. break;
  649. p = next;
  650. payload += u.packet.payload_length;
  651. count++;
  652. }
  653. request->size -= uptr_to_u64(p) - request->packets;
  654. request->packets = uptr_to_u64(p);
  655. request->data = client->vm_start + payload;
  656. return count;
  657. }
  658. static int ioctl_start_iso(struct client *client, void *buffer)
  659. {
  660. struct fw_cdev_start_iso *request = buffer;
  661. if (client->iso_context == NULL || request->handle != 0)
  662. return -EINVAL;
  663. if (client->iso_context->type == FW_ISO_CONTEXT_RECEIVE) {
  664. if (request->tags == 0 || request->tags > 15)
  665. return -EINVAL;
  666. if (request->sync > 15)
  667. return -EINVAL;
  668. }
  669. return fw_iso_context_start(client->iso_context, request->cycle,
  670. request->sync, request->tags);
  671. }
  672. static int ioctl_stop_iso(struct client *client, void *buffer)
  673. {
  674. struct fw_cdev_stop_iso *request = buffer;
  675. if (client->iso_context == NULL || request->handle != 0)
  676. return -EINVAL;
  677. return fw_iso_context_stop(client->iso_context);
  678. }
  679. static int ioctl_get_cycle_timer(struct client *client, void *buffer)
  680. {
  681. struct fw_cdev_get_cycle_timer *request = buffer;
  682. struct fw_card *card = client->device->card;
  683. unsigned long long bus_time;
  684. struct timeval tv;
  685. unsigned long flags;
  686. preempt_disable();
  687. local_irq_save(flags);
  688. bus_time = card->driver->get_bus_time(card);
  689. do_gettimeofday(&tv);
  690. local_irq_restore(flags);
  691. preempt_enable();
  692. request->local_time = tv.tv_sec * 1000000ULL + tv.tv_usec;
  693. request->cycle_timer = bus_time & 0xffffffff;
  694. return 0;
  695. }
  696. static int (* const ioctl_handlers[])(struct client *client, void *buffer) = {
  697. ioctl_get_info,
  698. ioctl_send_request,
  699. ioctl_allocate,
  700. ioctl_deallocate,
  701. ioctl_send_response,
  702. ioctl_initiate_bus_reset,
  703. ioctl_add_descriptor,
  704. ioctl_remove_descriptor,
  705. ioctl_create_iso_context,
  706. ioctl_queue_iso,
  707. ioctl_start_iso,
  708. ioctl_stop_iso,
  709. ioctl_get_cycle_timer,
  710. };
  711. static int
  712. dispatch_ioctl(struct client *client, unsigned int cmd, void __user *arg)
  713. {
  714. char buffer[256];
  715. int retval;
  716. if (_IOC_TYPE(cmd) != '#' ||
  717. _IOC_NR(cmd) >= ARRAY_SIZE(ioctl_handlers))
  718. return -EINVAL;
  719. if (_IOC_DIR(cmd) & _IOC_WRITE) {
  720. if (_IOC_SIZE(cmd) > sizeof(buffer) ||
  721. copy_from_user(buffer, arg, _IOC_SIZE(cmd)))
  722. return -EFAULT;
  723. }
  724. retval = ioctl_handlers[_IOC_NR(cmd)](client, buffer);
  725. if (retval < 0)
  726. return retval;
  727. if (_IOC_DIR(cmd) & _IOC_READ) {
  728. if (_IOC_SIZE(cmd) > sizeof(buffer) ||
  729. copy_to_user(arg, buffer, _IOC_SIZE(cmd)))
  730. return -EFAULT;
  731. }
  732. return 0;
  733. }
  734. static long
  735. fw_device_op_ioctl(struct file *file,
  736. unsigned int cmd, unsigned long arg)
  737. {
  738. struct client *client = file->private_data;
  739. if (fw_device_is_shutdown(client->device))
  740. return -ENODEV;
  741. return dispatch_ioctl(client, cmd, (void __user *) arg);
  742. }
  743. #ifdef CONFIG_COMPAT
  744. static long
  745. fw_device_op_compat_ioctl(struct file *file,
  746. unsigned int cmd, unsigned long arg)
  747. {
  748. struct client *client = file->private_data;
  749. if (fw_device_is_shutdown(client->device))
  750. return -ENODEV;
  751. return dispatch_ioctl(client, cmd, compat_ptr(arg));
  752. }
  753. #endif
  754. static int fw_device_op_mmap(struct file *file, struct vm_area_struct *vma)
  755. {
  756. struct client *client = file->private_data;
  757. enum dma_data_direction direction;
  758. unsigned long size;
  759. int page_count, retval;
  760. if (fw_device_is_shutdown(client->device))
  761. return -ENODEV;
  762. /* FIXME: We could support multiple buffers, but we don't. */
  763. if (client->buffer.pages != NULL)
  764. return -EBUSY;
  765. if (!(vma->vm_flags & VM_SHARED))
  766. return -EINVAL;
  767. if (vma->vm_start & ~PAGE_MASK)
  768. return -EINVAL;
  769. client->vm_start = vma->vm_start;
  770. size = vma->vm_end - vma->vm_start;
  771. page_count = size >> PAGE_SHIFT;
  772. if (size & ~PAGE_MASK)
  773. return -EINVAL;
  774. if (vma->vm_flags & VM_WRITE)
  775. direction = DMA_TO_DEVICE;
  776. else
  777. direction = DMA_FROM_DEVICE;
  778. retval = fw_iso_buffer_init(&client->buffer, client->device->card,
  779. page_count, direction);
  780. if (retval < 0)
  781. return retval;
  782. retval = fw_iso_buffer_map(&client->buffer, vma);
  783. if (retval < 0)
  784. fw_iso_buffer_destroy(&client->buffer, client->device->card);
  785. return retval;
  786. }
  787. static int fw_device_op_release(struct inode *inode, struct file *file)
  788. {
  789. struct client *client = file->private_data;
  790. struct event *e, *next_e;
  791. struct client_resource *r, *next_r;
  792. unsigned long flags;
  793. if (client->buffer.pages)
  794. fw_iso_buffer_destroy(&client->buffer, client->device->card);
  795. if (client->iso_context)
  796. fw_iso_context_destroy(client->iso_context);
  797. list_for_each_entry_safe(r, next_r, &client->resource_list, link)
  798. r->release(client, r);
  799. /*
  800. * FIXME: We should wait for the async tasklets to stop
  801. * running before freeing the memory.
  802. */
  803. list_for_each_entry_safe(e, next_e, &client->event_list, link)
  804. kfree(e);
  805. spin_lock_irqsave(&client->device->card->lock, flags);
  806. list_del(&client->link);
  807. spin_unlock_irqrestore(&client->device->card->lock, flags);
  808. fw_device_put(client->device);
  809. kfree(client);
  810. return 0;
  811. }
  812. static unsigned int fw_device_op_poll(struct file *file, poll_table * pt)
  813. {
  814. struct client *client = file->private_data;
  815. unsigned int mask = 0;
  816. poll_wait(file, &client->wait, pt);
  817. if (fw_device_is_shutdown(client->device))
  818. mask |= POLLHUP | POLLERR;
  819. if (!list_empty(&client->event_list))
  820. mask |= POLLIN | POLLRDNORM;
  821. return mask;
  822. }
  823. const struct file_operations fw_device_ops = {
  824. .owner = THIS_MODULE,
  825. .open = fw_device_op_open,
  826. .read = fw_device_op_read,
  827. .unlocked_ioctl = fw_device_op_ioctl,
  828. .poll = fw_device_op_poll,
  829. .release = fw_device_op_release,
  830. .mmap = fw_device_op_mmap,
  831. #ifdef CONFIG_COMPAT
  832. .compat_ioctl = fw_device_op_compat_ioctl,
  833. #endif
  834. };