raw1394.c 83 KB

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  1. /*
  2. * IEEE 1394 for Linux
  3. *
  4. * Raw interface to the bus
  5. *
  6. * Copyright (C) 1999, 2000 Andreas E. Bombe
  7. * 2001, 2002 Manfred Weihs <weihs@ict.tuwien.ac.at>
  8. * 2002 Christian Toegel <christian.toegel@gmx.at>
  9. *
  10. * This code is licensed under the GPL. See the file COPYING in the root
  11. * directory of the kernel sources for details.
  12. *
  13. *
  14. * Contributions:
  15. *
  16. * Manfred Weihs <weihs@ict.tuwien.ac.at>
  17. * configuration ROM manipulation
  18. * address range mapping
  19. * adaptation for new (transparent) loopback mechanism
  20. * sending of arbitrary async packets
  21. * Christian Toegel <christian.toegel@gmx.at>
  22. * address range mapping
  23. * lock64 request
  24. * transmit physical packet
  25. * busreset notification control (switch on/off)
  26. * busreset with selection of type (short/long)
  27. * request_reply
  28. */
  29. #include <linux/kernel.h>
  30. #include <linux/list.h>
  31. #include <linux/string.h>
  32. #include <linux/slab.h>
  33. #include <linux/fs.h>
  34. #include <linux/poll.h>
  35. #include <linux/module.h>
  36. #include <linux/init.h>
  37. #include <linux/smp_lock.h>
  38. #include <linux/interrupt.h>
  39. #include <linux/vmalloc.h>
  40. #include <linux/cdev.h>
  41. #include <asm/uaccess.h>
  42. #include <asm/atomic.h>
  43. #include <linux/compat.h>
  44. #include "csr1212.h"
  45. #include "highlevel.h"
  46. #include "hosts.h"
  47. #include "ieee1394.h"
  48. #include "ieee1394_core.h"
  49. #include "ieee1394_hotplug.h"
  50. #include "ieee1394_transactions.h"
  51. #include "ieee1394_types.h"
  52. #include "iso.h"
  53. #include "nodemgr.h"
  54. #include "raw1394.h"
  55. #include "raw1394-private.h"
  56. #define int2ptr(x) ((void __user *)(unsigned long)x)
  57. #define ptr2int(x) ((u64)(unsigned long)(void __user *)x)
  58. #ifdef CONFIG_IEEE1394_VERBOSEDEBUG
  59. #define RAW1394_DEBUG
  60. #endif
  61. #ifdef RAW1394_DEBUG
  62. #define DBGMSG(fmt, args...) \
  63. printk(KERN_INFO "raw1394:" fmt "\n" , ## args)
  64. #else
  65. #define DBGMSG(fmt, args...) do {} while (0)
  66. #endif
  67. static LIST_HEAD(host_info_list);
  68. static int host_count;
  69. static DEFINE_SPINLOCK(host_info_lock);
  70. static atomic_t internal_generation = ATOMIC_INIT(0);
  71. static atomic_t iso_buffer_size;
  72. static const int iso_buffer_max = 4 * 1024 * 1024; /* 4 MB */
  73. static struct hpsb_highlevel raw1394_highlevel;
  74. static int arm_read(struct hpsb_host *host, int nodeid, quadlet_t * buffer,
  75. u64 addr, size_t length, u16 flags);
  76. static int arm_write(struct hpsb_host *host, int nodeid, int destid,
  77. quadlet_t * data, u64 addr, size_t length, u16 flags);
  78. static int arm_lock(struct hpsb_host *host, int nodeid, quadlet_t * store,
  79. u64 addr, quadlet_t data, quadlet_t arg, int ext_tcode,
  80. u16 flags);
  81. static int arm_lock64(struct hpsb_host *host, int nodeid, octlet_t * store,
  82. u64 addr, octlet_t data, octlet_t arg, int ext_tcode,
  83. u16 flags);
  84. static struct hpsb_address_ops arm_ops = {
  85. .read = arm_read,
  86. .write = arm_write,
  87. .lock = arm_lock,
  88. .lock64 = arm_lock64,
  89. };
  90. static void queue_complete_cb(struct pending_request *req);
  91. #include <asm/current.h>
  92. static void print_old_iso_deprecation(void)
  93. {
  94. static pid_t p;
  95. if (p == current->pid)
  96. return;
  97. p = current->pid;
  98. printk(KERN_WARNING "raw1394: WARNING - Program \"%s\" uses unsupported"
  99. " isochronous request types which will be removed in a next"
  100. " kernel release\n", current->comm);
  101. printk(KERN_WARNING "raw1394: Update your software to use libraw1394's"
  102. " newer interface\n");
  103. }
  104. static struct pending_request *__alloc_pending_request(gfp_t flags)
  105. {
  106. struct pending_request *req;
  107. req = kzalloc(sizeof(*req), flags);
  108. if (req)
  109. INIT_LIST_HEAD(&req->list);
  110. return req;
  111. }
  112. static inline struct pending_request *alloc_pending_request(void)
  113. {
  114. return __alloc_pending_request(GFP_KERNEL);
  115. }
  116. static void free_pending_request(struct pending_request *req)
  117. {
  118. if (req->ibs) {
  119. if (atomic_dec_and_test(&req->ibs->refcount)) {
  120. atomic_sub(req->ibs->data_size, &iso_buffer_size);
  121. kfree(req->ibs);
  122. }
  123. } else if (req->free_data) {
  124. kfree(req->data);
  125. }
  126. hpsb_free_packet(req->packet);
  127. kfree(req);
  128. }
  129. /* fi->reqlists_lock must be taken */
  130. static void __queue_complete_req(struct pending_request *req)
  131. {
  132. struct file_info *fi = req->file_info;
  133. list_move_tail(&req->list, &fi->req_complete);
  134. wake_up(&fi->wait_complete);
  135. }
  136. static void queue_complete_req(struct pending_request *req)
  137. {
  138. unsigned long flags;
  139. struct file_info *fi = req->file_info;
  140. spin_lock_irqsave(&fi->reqlists_lock, flags);
  141. __queue_complete_req(req);
  142. spin_unlock_irqrestore(&fi->reqlists_lock, flags);
  143. }
  144. static void queue_complete_cb(struct pending_request *req)
  145. {
  146. struct hpsb_packet *packet = req->packet;
  147. int rcode = (packet->header[1] >> 12) & 0xf;
  148. switch (packet->ack_code) {
  149. case ACKX_NONE:
  150. case ACKX_SEND_ERROR:
  151. req->req.error = RAW1394_ERROR_SEND_ERROR;
  152. break;
  153. case ACKX_ABORTED:
  154. req->req.error = RAW1394_ERROR_ABORTED;
  155. break;
  156. case ACKX_TIMEOUT:
  157. req->req.error = RAW1394_ERROR_TIMEOUT;
  158. break;
  159. default:
  160. req->req.error = (packet->ack_code << 16) | rcode;
  161. break;
  162. }
  163. if (!((packet->ack_code == ACK_PENDING) && (rcode == RCODE_COMPLETE))) {
  164. req->req.length = 0;
  165. }
  166. if ((req->req.type == RAW1394_REQ_ASYNC_READ) ||
  167. (req->req.type == RAW1394_REQ_ASYNC_WRITE) ||
  168. (req->req.type == RAW1394_REQ_ASYNC_STREAM) ||
  169. (req->req.type == RAW1394_REQ_LOCK) ||
  170. (req->req.type == RAW1394_REQ_LOCK64))
  171. hpsb_free_tlabel(packet);
  172. queue_complete_req(req);
  173. }
  174. static void add_host(struct hpsb_host *host)
  175. {
  176. struct host_info *hi;
  177. unsigned long flags;
  178. hi = kmalloc(sizeof(*hi), GFP_KERNEL);
  179. if (hi) {
  180. INIT_LIST_HEAD(&hi->list);
  181. hi->host = host;
  182. INIT_LIST_HEAD(&hi->file_info_list);
  183. spin_lock_irqsave(&host_info_lock, flags);
  184. list_add_tail(&hi->list, &host_info_list);
  185. host_count++;
  186. spin_unlock_irqrestore(&host_info_lock, flags);
  187. }
  188. atomic_inc(&internal_generation);
  189. }
  190. static struct host_info *find_host_info(struct hpsb_host *host)
  191. {
  192. struct host_info *hi;
  193. list_for_each_entry(hi, &host_info_list, list)
  194. if (hi->host == host)
  195. return hi;
  196. return NULL;
  197. }
  198. static void remove_host(struct hpsb_host *host)
  199. {
  200. struct host_info *hi;
  201. unsigned long flags;
  202. spin_lock_irqsave(&host_info_lock, flags);
  203. hi = find_host_info(host);
  204. if (hi != NULL) {
  205. list_del(&hi->list);
  206. host_count--;
  207. /*
  208. FIXME: address ranges should be removed
  209. and fileinfo states should be initialized
  210. (including setting generation to
  211. internal-generation ...)
  212. */
  213. }
  214. spin_unlock_irqrestore(&host_info_lock, flags);
  215. if (hi == NULL) {
  216. printk(KERN_ERR "raw1394: attempt to remove unknown host "
  217. "0x%p\n", host);
  218. return;
  219. }
  220. kfree(hi);
  221. atomic_inc(&internal_generation);
  222. }
  223. static void host_reset(struct hpsb_host *host)
  224. {
  225. unsigned long flags;
  226. struct host_info *hi;
  227. struct file_info *fi;
  228. struct pending_request *req;
  229. spin_lock_irqsave(&host_info_lock, flags);
  230. hi = find_host_info(host);
  231. if (hi != NULL) {
  232. list_for_each_entry(fi, &hi->file_info_list, list) {
  233. if (fi->notification == RAW1394_NOTIFY_ON) {
  234. req = __alloc_pending_request(GFP_ATOMIC);
  235. if (req != NULL) {
  236. req->file_info = fi;
  237. req->req.type = RAW1394_REQ_BUS_RESET;
  238. req->req.generation =
  239. get_hpsb_generation(host);
  240. req->req.misc = (host->node_id << 16)
  241. | host->node_count;
  242. if (fi->protocol_version > 3) {
  243. req->req.misc |=
  244. (NODEID_TO_NODE
  245. (host->irm_id)
  246. << 8);
  247. }
  248. queue_complete_req(req);
  249. }
  250. }
  251. }
  252. }
  253. spin_unlock_irqrestore(&host_info_lock, flags);
  254. }
  255. static void iso_receive(struct hpsb_host *host, int channel, quadlet_t * data,
  256. size_t length)
  257. {
  258. unsigned long flags;
  259. struct host_info *hi;
  260. struct file_info *fi;
  261. struct pending_request *req, *req_next;
  262. struct iso_block_store *ibs = NULL;
  263. LIST_HEAD(reqs);
  264. if ((atomic_read(&iso_buffer_size) + length) > iso_buffer_max) {
  265. HPSB_INFO("dropped iso packet");
  266. return;
  267. }
  268. spin_lock_irqsave(&host_info_lock, flags);
  269. hi = find_host_info(host);
  270. if (hi != NULL) {
  271. list_for_each_entry(fi, &hi->file_info_list, list) {
  272. if (!(fi->listen_channels & (1ULL << channel)))
  273. continue;
  274. req = __alloc_pending_request(GFP_ATOMIC);
  275. if (!req)
  276. break;
  277. if (!ibs) {
  278. ibs = kmalloc(sizeof(*ibs) + length,
  279. GFP_ATOMIC);
  280. if (!ibs) {
  281. kfree(req);
  282. break;
  283. }
  284. atomic_add(length, &iso_buffer_size);
  285. atomic_set(&ibs->refcount, 0);
  286. ibs->data_size = length;
  287. memcpy(ibs->data, data, length);
  288. }
  289. atomic_inc(&ibs->refcount);
  290. req->file_info = fi;
  291. req->ibs = ibs;
  292. req->data = ibs->data;
  293. req->req.type = RAW1394_REQ_ISO_RECEIVE;
  294. req->req.generation = get_hpsb_generation(host);
  295. req->req.misc = 0;
  296. req->req.recvb = ptr2int(fi->iso_buffer);
  297. req->req.length = min(length, fi->iso_buffer_length);
  298. list_add_tail(&req->list, &reqs);
  299. }
  300. }
  301. spin_unlock_irqrestore(&host_info_lock, flags);
  302. list_for_each_entry_safe(req, req_next, &reqs, list)
  303. queue_complete_req(req);
  304. }
  305. static void fcp_request(struct hpsb_host *host, int nodeid, int direction,
  306. int cts, u8 * data, size_t length)
  307. {
  308. unsigned long flags;
  309. struct host_info *hi;
  310. struct file_info *fi;
  311. struct pending_request *req, *req_next;
  312. struct iso_block_store *ibs = NULL;
  313. LIST_HEAD(reqs);
  314. if ((atomic_read(&iso_buffer_size) + length) > iso_buffer_max) {
  315. HPSB_INFO("dropped fcp request");
  316. return;
  317. }
  318. spin_lock_irqsave(&host_info_lock, flags);
  319. hi = find_host_info(host);
  320. if (hi != NULL) {
  321. list_for_each_entry(fi, &hi->file_info_list, list) {
  322. if (!fi->fcp_buffer)
  323. continue;
  324. req = __alloc_pending_request(GFP_ATOMIC);
  325. if (!req)
  326. break;
  327. if (!ibs) {
  328. ibs = kmalloc(sizeof(*ibs) + length,
  329. GFP_ATOMIC);
  330. if (!ibs) {
  331. kfree(req);
  332. break;
  333. }
  334. atomic_add(length, &iso_buffer_size);
  335. atomic_set(&ibs->refcount, 0);
  336. ibs->data_size = length;
  337. memcpy(ibs->data, data, length);
  338. }
  339. atomic_inc(&ibs->refcount);
  340. req->file_info = fi;
  341. req->ibs = ibs;
  342. req->data = ibs->data;
  343. req->req.type = RAW1394_REQ_FCP_REQUEST;
  344. req->req.generation = get_hpsb_generation(host);
  345. req->req.misc = nodeid | (direction << 16);
  346. req->req.recvb = ptr2int(fi->fcp_buffer);
  347. req->req.length = length;
  348. list_add_tail(&req->list, &reqs);
  349. }
  350. }
  351. spin_unlock_irqrestore(&host_info_lock, flags);
  352. list_for_each_entry_safe(req, req_next, &reqs, list)
  353. queue_complete_req(req);
  354. }
  355. #ifdef CONFIG_COMPAT
  356. struct compat_raw1394_req {
  357. __u32 type;
  358. __s32 error;
  359. __u32 misc;
  360. __u32 generation;
  361. __u32 length;
  362. __u64 address;
  363. __u64 tag;
  364. __u64 sendb;
  365. __u64 recvb;
  366. } __attribute__((packed));
  367. static const char __user *raw1394_compat_write(const char __user *buf)
  368. {
  369. struct compat_raw1394_req __user *cr = (typeof(cr)) buf;
  370. struct raw1394_request __user *r;
  371. r = compat_alloc_user_space(sizeof(struct raw1394_request));
  372. #define C(x) __copy_in_user(&r->x, &cr->x, sizeof(r->x))
  373. if (copy_in_user(r, cr, sizeof(struct compat_raw1394_req)) ||
  374. C(address) ||
  375. C(tag) ||
  376. C(sendb) ||
  377. C(recvb))
  378. return ERR_PTR(-EFAULT);
  379. return (const char __user *)r;
  380. }
  381. #undef C
  382. #define P(x) __put_user(r->x, &cr->x)
  383. static int
  384. raw1394_compat_read(const char __user *buf, struct raw1394_request *r)
  385. {
  386. struct compat_raw1394_req __user *cr = (typeof(cr)) r;
  387. if (!access_ok(VERIFY_WRITE, cr, sizeof(struct compat_raw1394_req)) ||
  388. P(type) ||
  389. P(error) ||
  390. P(misc) ||
  391. P(generation) ||
  392. P(length) ||
  393. P(address) ||
  394. P(tag) ||
  395. P(sendb) ||
  396. P(recvb))
  397. return -EFAULT;
  398. return sizeof(struct compat_raw1394_req);
  399. }
  400. #undef P
  401. #endif
  402. /* get next completed request (caller must hold fi->reqlists_lock) */
  403. static inline struct pending_request *__next_complete_req(struct file_info *fi)
  404. {
  405. struct list_head *lh;
  406. struct pending_request *req = NULL;
  407. if (!list_empty(&fi->req_complete)) {
  408. lh = fi->req_complete.next;
  409. list_del(lh);
  410. req = list_entry(lh, struct pending_request, list);
  411. }
  412. return req;
  413. }
  414. /* atomically get next completed request */
  415. static struct pending_request *next_complete_req(struct file_info *fi)
  416. {
  417. unsigned long flags;
  418. struct pending_request *req;
  419. spin_lock_irqsave(&fi->reqlists_lock, flags);
  420. req = __next_complete_req(fi);
  421. spin_unlock_irqrestore(&fi->reqlists_lock, flags);
  422. return req;
  423. }
  424. static ssize_t raw1394_read(struct file *file, char __user * buffer,
  425. size_t count, loff_t * offset_is_ignored)
  426. {
  427. struct file_info *fi = (struct file_info *)file->private_data;
  428. struct pending_request *req;
  429. ssize_t ret;
  430. #ifdef CONFIG_COMPAT
  431. if (count == sizeof(struct compat_raw1394_req)) {
  432. /* ok */
  433. } else
  434. #endif
  435. if (count != sizeof(struct raw1394_request)) {
  436. return -EINVAL;
  437. }
  438. if (!access_ok(VERIFY_WRITE, buffer, count)) {
  439. return -EFAULT;
  440. }
  441. if (file->f_flags & O_NONBLOCK) {
  442. if (!(req = next_complete_req(fi)))
  443. return -EAGAIN;
  444. } else {
  445. /*
  446. * NB: We call the macro wait_event_interruptible() with a
  447. * condition argument with side effect. This is only possible
  448. * because the side effect does not occur until the condition
  449. * became true, and wait_event_interruptible() won't evaluate
  450. * the condition again after that.
  451. */
  452. if (wait_event_interruptible(fi->wait_complete,
  453. (req = next_complete_req(fi))))
  454. return -ERESTARTSYS;
  455. }
  456. if (req->req.length) {
  457. if (copy_to_user(int2ptr(req->req.recvb), req->data,
  458. req->req.length)) {
  459. req->req.error = RAW1394_ERROR_MEMFAULT;
  460. }
  461. }
  462. #ifdef CONFIG_COMPAT
  463. if (count == sizeof(struct compat_raw1394_req) &&
  464. sizeof(struct compat_raw1394_req) !=
  465. sizeof(struct raw1394_request)) {
  466. ret = raw1394_compat_read(buffer, &req->req);
  467. } else
  468. #endif
  469. {
  470. if (copy_to_user(buffer, &req->req, sizeof(req->req))) {
  471. ret = -EFAULT;
  472. goto out;
  473. }
  474. ret = (ssize_t) sizeof(struct raw1394_request);
  475. }
  476. out:
  477. free_pending_request(req);
  478. return ret;
  479. }
  480. static int state_opened(struct file_info *fi, struct pending_request *req)
  481. {
  482. if (req->req.type == RAW1394_REQ_INITIALIZE) {
  483. switch (req->req.misc) {
  484. case RAW1394_KERNELAPI_VERSION:
  485. case 3:
  486. fi->state = initialized;
  487. fi->protocol_version = req->req.misc;
  488. req->req.error = RAW1394_ERROR_NONE;
  489. req->req.generation = atomic_read(&internal_generation);
  490. break;
  491. default:
  492. req->req.error = RAW1394_ERROR_COMPAT;
  493. req->req.misc = RAW1394_KERNELAPI_VERSION;
  494. }
  495. } else {
  496. req->req.error = RAW1394_ERROR_STATE_ORDER;
  497. }
  498. req->req.length = 0;
  499. queue_complete_req(req);
  500. return sizeof(struct raw1394_request);
  501. }
  502. static int state_initialized(struct file_info *fi, struct pending_request *req)
  503. {
  504. unsigned long flags;
  505. struct host_info *hi;
  506. struct raw1394_khost_list *khl;
  507. if (req->req.generation != atomic_read(&internal_generation)) {
  508. req->req.error = RAW1394_ERROR_GENERATION;
  509. req->req.generation = atomic_read(&internal_generation);
  510. req->req.length = 0;
  511. queue_complete_req(req);
  512. return sizeof(struct raw1394_request);
  513. }
  514. switch (req->req.type) {
  515. case RAW1394_REQ_LIST_CARDS:
  516. spin_lock_irqsave(&host_info_lock, flags);
  517. khl = kmalloc(sizeof(*khl) * host_count, GFP_ATOMIC);
  518. if (khl) {
  519. req->req.misc = host_count;
  520. req->data = (quadlet_t *) khl;
  521. list_for_each_entry(hi, &host_info_list, list) {
  522. khl->nodes = hi->host->node_count;
  523. strcpy(khl->name, hi->host->driver->name);
  524. khl++;
  525. }
  526. }
  527. spin_unlock_irqrestore(&host_info_lock, flags);
  528. if (khl) {
  529. req->req.error = RAW1394_ERROR_NONE;
  530. req->req.length = min(req->req.length,
  531. (u32) (sizeof
  532. (struct raw1394_khost_list)
  533. * req->req.misc));
  534. req->free_data = 1;
  535. } else {
  536. return -ENOMEM;
  537. }
  538. break;
  539. case RAW1394_REQ_SET_CARD:
  540. spin_lock_irqsave(&host_info_lock, flags);
  541. if (req->req.misc < host_count) {
  542. list_for_each_entry(hi, &host_info_list, list) {
  543. if (!req->req.misc--)
  544. break;
  545. }
  546. get_device(&hi->host->device); // XXX Need to handle failure case
  547. list_add_tail(&fi->list, &hi->file_info_list);
  548. fi->host = hi->host;
  549. fi->state = connected;
  550. req->req.error = RAW1394_ERROR_NONE;
  551. req->req.generation = get_hpsb_generation(fi->host);
  552. req->req.misc = (fi->host->node_id << 16)
  553. | fi->host->node_count;
  554. if (fi->protocol_version > 3) {
  555. req->req.misc |=
  556. NODEID_TO_NODE(fi->host->irm_id) << 8;
  557. }
  558. } else {
  559. req->req.error = RAW1394_ERROR_INVALID_ARG;
  560. }
  561. spin_unlock_irqrestore(&host_info_lock, flags);
  562. req->req.length = 0;
  563. break;
  564. default:
  565. req->req.error = RAW1394_ERROR_STATE_ORDER;
  566. req->req.length = 0;
  567. break;
  568. }
  569. queue_complete_req(req);
  570. return sizeof(struct raw1394_request);
  571. }
  572. static void handle_iso_listen(struct file_info *fi, struct pending_request *req)
  573. {
  574. int channel = req->req.misc;
  575. if ((channel > 63) || (channel < -64)) {
  576. req->req.error = RAW1394_ERROR_INVALID_ARG;
  577. } else if (channel >= 0) {
  578. /* allocate channel req.misc */
  579. if (fi->listen_channels & (1ULL << channel)) {
  580. req->req.error = RAW1394_ERROR_ALREADY;
  581. } else {
  582. if (hpsb_listen_channel
  583. (&raw1394_highlevel, fi->host, channel)) {
  584. req->req.error = RAW1394_ERROR_ALREADY;
  585. } else {
  586. fi->listen_channels |= 1ULL << channel;
  587. fi->iso_buffer = int2ptr(req->req.recvb);
  588. fi->iso_buffer_length = req->req.length;
  589. }
  590. }
  591. } else {
  592. /* deallocate channel (one's complement neg) req.misc */
  593. channel = ~channel;
  594. if (fi->listen_channels & (1ULL << channel)) {
  595. hpsb_unlisten_channel(&raw1394_highlevel, fi->host,
  596. channel);
  597. fi->listen_channels &= ~(1ULL << channel);
  598. } else {
  599. req->req.error = RAW1394_ERROR_INVALID_ARG;
  600. }
  601. }
  602. req->req.length = 0;
  603. queue_complete_req(req);
  604. }
  605. static void handle_fcp_listen(struct file_info *fi, struct pending_request *req)
  606. {
  607. if (req->req.misc) {
  608. if (fi->fcp_buffer) {
  609. req->req.error = RAW1394_ERROR_ALREADY;
  610. } else {
  611. fi->fcp_buffer = int2ptr(req->req.recvb);
  612. }
  613. } else {
  614. if (!fi->fcp_buffer) {
  615. req->req.error = RAW1394_ERROR_ALREADY;
  616. } else {
  617. fi->fcp_buffer = NULL;
  618. }
  619. }
  620. req->req.length = 0;
  621. queue_complete_req(req);
  622. }
  623. static int handle_async_request(struct file_info *fi,
  624. struct pending_request *req, int node)
  625. {
  626. unsigned long flags;
  627. struct hpsb_packet *packet = NULL;
  628. u64 addr = req->req.address & 0xffffffffffffULL;
  629. switch (req->req.type) {
  630. case RAW1394_REQ_ASYNC_READ:
  631. DBGMSG("read_request called");
  632. packet =
  633. hpsb_make_readpacket(fi->host, node, addr, req->req.length);
  634. if (!packet)
  635. return -ENOMEM;
  636. if (req->req.length == 4)
  637. req->data = &packet->header[3];
  638. else
  639. req->data = packet->data;
  640. break;
  641. case RAW1394_REQ_ASYNC_WRITE:
  642. DBGMSG("write_request called");
  643. packet = hpsb_make_writepacket(fi->host, node, addr, NULL,
  644. req->req.length);
  645. if (!packet)
  646. return -ENOMEM;
  647. if (req->req.length == 4) {
  648. if (copy_from_user
  649. (&packet->header[3], int2ptr(req->req.sendb),
  650. req->req.length))
  651. req->req.error = RAW1394_ERROR_MEMFAULT;
  652. } else {
  653. if (copy_from_user
  654. (packet->data, int2ptr(req->req.sendb),
  655. req->req.length))
  656. req->req.error = RAW1394_ERROR_MEMFAULT;
  657. }
  658. req->req.length = 0;
  659. break;
  660. case RAW1394_REQ_ASYNC_STREAM:
  661. DBGMSG("stream_request called");
  662. packet =
  663. hpsb_make_streampacket(fi->host, NULL, req->req.length,
  664. node & 0x3f /*channel */ ,
  665. (req->req.misc >> 16) & 0x3,
  666. req->req.misc & 0xf);
  667. if (!packet)
  668. return -ENOMEM;
  669. if (copy_from_user(packet->data, int2ptr(req->req.sendb),
  670. req->req.length))
  671. req->req.error = RAW1394_ERROR_MEMFAULT;
  672. req->req.length = 0;
  673. break;
  674. case RAW1394_REQ_LOCK:
  675. DBGMSG("lock_request called");
  676. if ((req->req.misc == EXTCODE_FETCH_ADD)
  677. || (req->req.misc == EXTCODE_LITTLE_ADD)) {
  678. if (req->req.length != 4) {
  679. req->req.error = RAW1394_ERROR_INVALID_ARG;
  680. break;
  681. }
  682. } else {
  683. if (req->req.length != 8) {
  684. req->req.error = RAW1394_ERROR_INVALID_ARG;
  685. break;
  686. }
  687. }
  688. packet = hpsb_make_lockpacket(fi->host, node, addr,
  689. req->req.misc, NULL, 0);
  690. if (!packet)
  691. return -ENOMEM;
  692. if (copy_from_user(packet->data, int2ptr(req->req.sendb),
  693. req->req.length)) {
  694. req->req.error = RAW1394_ERROR_MEMFAULT;
  695. break;
  696. }
  697. req->data = packet->data;
  698. req->req.length = 4;
  699. break;
  700. case RAW1394_REQ_LOCK64:
  701. DBGMSG("lock64_request called");
  702. if ((req->req.misc == EXTCODE_FETCH_ADD)
  703. || (req->req.misc == EXTCODE_LITTLE_ADD)) {
  704. if (req->req.length != 8) {
  705. req->req.error = RAW1394_ERROR_INVALID_ARG;
  706. break;
  707. }
  708. } else {
  709. if (req->req.length != 16) {
  710. req->req.error = RAW1394_ERROR_INVALID_ARG;
  711. break;
  712. }
  713. }
  714. packet = hpsb_make_lock64packet(fi->host, node, addr,
  715. req->req.misc, NULL, 0);
  716. if (!packet)
  717. return -ENOMEM;
  718. if (copy_from_user(packet->data, int2ptr(req->req.sendb),
  719. req->req.length)) {
  720. req->req.error = RAW1394_ERROR_MEMFAULT;
  721. break;
  722. }
  723. req->data = packet->data;
  724. req->req.length = 8;
  725. break;
  726. default:
  727. req->req.error = RAW1394_ERROR_STATE_ORDER;
  728. }
  729. req->packet = packet;
  730. if (req->req.error) {
  731. req->req.length = 0;
  732. queue_complete_req(req);
  733. return sizeof(struct raw1394_request);
  734. }
  735. hpsb_set_packet_complete_task(packet,
  736. (void (*)(void *))queue_complete_cb, req);
  737. spin_lock_irqsave(&fi->reqlists_lock, flags);
  738. list_add_tail(&req->list, &fi->req_pending);
  739. spin_unlock_irqrestore(&fi->reqlists_lock, flags);
  740. packet->generation = req->req.generation;
  741. if (hpsb_send_packet(packet) < 0) {
  742. req->req.error = RAW1394_ERROR_SEND_ERROR;
  743. req->req.length = 0;
  744. hpsb_free_tlabel(packet);
  745. queue_complete_req(req);
  746. }
  747. return sizeof(struct raw1394_request);
  748. }
  749. static int handle_iso_send(struct file_info *fi, struct pending_request *req,
  750. int channel)
  751. {
  752. unsigned long flags;
  753. struct hpsb_packet *packet;
  754. packet = hpsb_make_isopacket(fi->host, req->req.length, channel & 0x3f,
  755. (req->req.misc >> 16) & 0x3,
  756. req->req.misc & 0xf);
  757. if (!packet)
  758. return -ENOMEM;
  759. packet->speed_code = req->req.address & 0x3;
  760. req->packet = packet;
  761. if (copy_from_user(packet->data, int2ptr(req->req.sendb),
  762. req->req.length)) {
  763. req->req.error = RAW1394_ERROR_MEMFAULT;
  764. req->req.length = 0;
  765. queue_complete_req(req);
  766. return sizeof(struct raw1394_request);
  767. }
  768. req->req.length = 0;
  769. hpsb_set_packet_complete_task(packet,
  770. (void (*)(void *))queue_complete_req,
  771. req);
  772. spin_lock_irqsave(&fi->reqlists_lock, flags);
  773. list_add_tail(&req->list, &fi->req_pending);
  774. spin_unlock_irqrestore(&fi->reqlists_lock, flags);
  775. /* Update the generation of the packet just before sending. */
  776. packet->generation = req->req.generation;
  777. if (hpsb_send_packet(packet) < 0) {
  778. req->req.error = RAW1394_ERROR_SEND_ERROR;
  779. queue_complete_req(req);
  780. }
  781. return sizeof(struct raw1394_request);
  782. }
  783. static int handle_async_send(struct file_info *fi, struct pending_request *req)
  784. {
  785. unsigned long flags;
  786. struct hpsb_packet *packet;
  787. int header_length = req->req.misc & 0xffff;
  788. int expect_response = req->req.misc >> 16;
  789. if ((header_length > req->req.length) || (header_length < 12)) {
  790. req->req.error = RAW1394_ERROR_INVALID_ARG;
  791. req->req.length = 0;
  792. queue_complete_req(req);
  793. return sizeof(struct raw1394_request);
  794. }
  795. packet = hpsb_alloc_packet(req->req.length - header_length);
  796. req->packet = packet;
  797. if (!packet)
  798. return -ENOMEM;
  799. if (copy_from_user(packet->header, int2ptr(req->req.sendb),
  800. header_length)) {
  801. req->req.error = RAW1394_ERROR_MEMFAULT;
  802. req->req.length = 0;
  803. queue_complete_req(req);
  804. return sizeof(struct raw1394_request);
  805. }
  806. if (copy_from_user
  807. (packet->data, int2ptr(req->req.sendb) + header_length,
  808. packet->data_size)) {
  809. req->req.error = RAW1394_ERROR_MEMFAULT;
  810. req->req.length = 0;
  811. queue_complete_req(req);
  812. return sizeof(struct raw1394_request);
  813. }
  814. packet->type = hpsb_async;
  815. packet->node_id = packet->header[0] >> 16;
  816. packet->tcode = (packet->header[0] >> 4) & 0xf;
  817. packet->tlabel = (packet->header[0] >> 10) & 0x3f;
  818. packet->host = fi->host;
  819. packet->expect_response = expect_response;
  820. packet->header_size = header_length;
  821. packet->data_size = req->req.length - header_length;
  822. req->req.length = 0;
  823. hpsb_set_packet_complete_task(packet,
  824. (void (*)(void *))queue_complete_cb, req);
  825. spin_lock_irqsave(&fi->reqlists_lock, flags);
  826. list_add_tail(&req->list, &fi->req_pending);
  827. spin_unlock_irqrestore(&fi->reqlists_lock, flags);
  828. /* Update the generation of the packet just before sending. */
  829. packet->generation = req->req.generation;
  830. if (hpsb_send_packet(packet) < 0) {
  831. req->req.error = RAW1394_ERROR_SEND_ERROR;
  832. queue_complete_req(req);
  833. }
  834. return sizeof(struct raw1394_request);
  835. }
  836. static int arm_read(struct hpsb_host *host, int nodeid, quadlet_t * buffer,
  837. u64 addr, size_t length, u16 flags)
  838. {
  839. unsigned long irqflags;
  840. struct pending_request *req;
  841. struct host_info *hi;
  842. struct file_info *fi = NULL;
  843. struct list_head *entry;
  844. struct arm_addr *arm_addr = NULL;
  845. struct arm_request *arm_req = NULL;
  846. struct arm_response *arm_resp = NULL;
  847. int found = 0, size = 0, rcode = -1;
  848. struct arm_request_response *arm_req_resp = NULL;
  849. DBGMSG("arm_read called by node: %X"
  850. "addr: %4.4x %8.8x length: %Zu", nodeid,
  851. (u16) ((addr >> 32) & 0xFFFF), (u32) (addr & 0xFFFFFFFF),
  852. length);
  853. spin_lock_irqsave(&host_info_lock, irqflags);
  854. hi = find_host_info(host); /* search address-entry */
  855. if (hi != NULL) {
  856. list_for_each_entry(fi, &hi->file_info_list, list) {
  857. entry = fi->addr_list.next;
  858. while (entry != &(fi->addr_list)) {
  859. arm_addr =
  860. list_entry(entry, struct arm_addr,
  861. addr_list);
  862. if (((arm_addr->start) <= (addr))
  863. && ((arm_addr->end) >= (addr + length))) {
  864. found = 1;
  865. break;
  866. }
  867. entry = entry->next;
  868. }
  869. if (found) {
  870. break;
  871. }
  872. }
  873. }
  874. rcode = -1;
  875. if (!found) {
  876. printk(KERN_ERR "raw1394: arm_read FAILED addr_entry not found"
  877. " -> rcode_address_error\n");
  878. spin_unlock_irqrestore(&host_info_lock, irqflags);
  879. return (RCODE_ADDRESS_ERROR);
  880. } else {
  881. DBGMSG("arm_read addr_entry FOUND");
  882. }
  883. if (arm_addr->rec_length < length) {
  884. DBGMSG("arm_read blocklength too big -> rcode_data_error");
  885. rcode = RCODE_DATA_ERROR; /* hardware error, data is unavailable */
  886. }
  887. if (rcode == -1) {
  888. if (arm_addr->access_rights & ARM_READ) {
  889. if (!(arm_addr->client_transactions & ARM_READ)) {
  890. memcpy(buffer,
  891. (arm_addr->addr_space_buffer) + (addr -
  892. (arm_addr->
  893. start)),
  894. length);
  895. DBGMSG("arm_read -> (rcode_complete)");
  896. rcode = RCODE_COMPLETE;
  897. }
  898. } else {
  899. rcode = RCODE_TYPE_ERROR; /* function not allowed */
  900. DBGMSG("arm_read -> rcode_type_error (access denied)");
  901. }
  902. }
  903. if (arm_addr->notification_options & ARM_READ) {
  904. DBGMSG("arm_read -> entering notification-section");
  905. req = __alloc_pending_request(GFP_ATOMIC);
  906. if (!req) {
  907. DBGMSG("arm_read -> rcode_conflict_error");
  908. spin_unlock_irqrestore(&host_info_lock, irqflags);
  909. return (RCODE_CONFLICT_ERROR); /* A resource conflict was detected.
  910. The request may be retried */
  911. }
  912. if (rcode == RCODE_COMPLETE) {
  913. size =
  914. sizeof(struct arm_request) +
  915. sizeof(struct arm_response) +
  916. length * sizeof(byte_t) +
  917. sizeof(struct arm_request_response);
  918. } else {
  919. size =
  920. sizeof(struct arm_request) +
  921. sizeof(struct arm_response) +
  922. sizeof(struct arm_request_response);
  923. }
  924. req->data = kmalloc(size, GFP_ATOMIC);
  925. if (!(req->data)) {
  926. free_pending_request(req);
  927. DBGMSG("arm_read -> rcode_conflict_error");
  928. spin_unlock_irqrestore(&host_info_lock, irqflags);
  929. return (RCODE_CONFLICT_ERROR); /* A resource conflict was detected.
  930. The request may be retried */
  931. }
  932. req->free_data = 1;
  933. req->file_info = fi;
  934. req->req.type = RAW1394_REQ_ARM;
  935. req->req.generation = get_hpsb_generation(host);
  936. req->req.misc =
  937. (((length << 16) & (0xFFFF0000)) | (ARM_READ & 0xFF));
  938. req->req.tag = arm_addr->arm_tag;
  939. req->req.recvb = arm_addr->recvb;
  940. req->req.length = size;
  941. arm_req_resp = (struct arm_request_response *)(req->data);
  942. arm_req = (struct arm_request *)((byte_t *) (req->data) +
  943. (sizeof
  944. (struct
  945. arm_request_response)));
  946. arm_resp =
  947. (struct arm_response *)((byte_t *) (arm_req) +
  948. (sizeof(struct arm_request)));
  949. arm_req->buffer = NULL;
  950. arm_resp->buffer = NULL;
  951. if (rcode == RCODE_COMPLETE) {
  952. byte_t *buf =
  953. (byte_t *) arm_resp + sizeof(struct arm_response);
  954. memcpy(buf,
  955. (arm_addr->addr_space_buffer) + (addr -
  956. (arm_addr->
  957. start)),
  958. length);
  959. arm_resp->buffer =
  960. int2ptr((arm_addr->recvb) +
  961. sizeof(struct arm_request_response) +
  962. sizeof(struct arm_request) +
  963. sizeof(struct arm_response));
  964. }
  965. arm_resp->buffer_length =
  966. (rcode == RCODE_COMPLETE) ? length : 0;
  967. arm_resp->response_code = rcode;
  968. arm_req->buffer_length = 0;
  969. arm_req->generation = req->req.generation;
  970. arm_req->extended_transaction_code = 0;
  971. arm_req->destination_offset = addr;
  972. arm_req->source_nodeid = nodeid;
  973. arm_req->destination_nodeid = host->node_id;
  974. arm_req->tlabel = (flags >> 10) & 0x3f;
  975. arm_req->tcode = (flags >> 4) & 0x0f;
  976. arm_req_resp->request = int2ptr((arm_addr->recvb) +
  977. sizeof(struct
  978. arm_request_response));
  979. arm_req_resp->response =
  980. int2ptr((arm_addr->recvb) +
  981. sizeof(struct arm_request_response) +
  982. sizeof(struct arm_request));
  983. queue_complete_req(req);
  984. }
  985. spin_unlock_irqrestore(&host_info_lock, irqflags);
  986. return (rcode);
  987. }
  988. static int arm_write(struct hpsb_host *host, int nodeid, int destid,
  989. quadlet_t * data, u64 addr, size_t length, u16 flags)
  990. {
  991. unsigned long irqflags;
  992. struct pending_request *req;
  993. struct host_info *hi;
  994. struct file_info *fi = NULL;
  995. struct list_head *entry;
  996. struct arm_addr *arm_addr = NULL;
  997. struct arm_request *arm_req = NULL;
  998. struct arm_response *arm_resp = NULL;
  999. int found = 0, size = 0, rcode = -1, length_conflict = 0;
  1000. struct arm_request_response *arm_req_resp = NULL;
  1001. DBGMSG("arm_write called by node: %X"
  1002. "addr: %4.4x %8.8x length: %Zu", nodeid,
  1003. (u16) ((addr >> 32) & 0xFFFF), (u32) (addr & 0xFFFFFFFF),
  1004. length);
  1005. spin_lock_irqsave(&host_info_lock, irqflags);
  1006. hi = find_host_info(host); /* search address-entry */
  1007. if (hi != NULL) {
  1008. list_for_each_entry(fi, &hi->file_info_list, list) {
  1009. entry = fi->addr_list.next;
  1010. while (entry != &(fi->addr_list)) {
  1011. arm_addr =
  1012. list_entry(entry, struct arm_addr,
  1013. addr_list);
  1014. if (((arm_addr->start) <= (addr))
  1015. && ((arm_addr->end) >= (addr + length))) {
  1016. found = 1;
  1017. break;
  1018. }
  1019. entry = entry->next;
  1020. }
  1021. if (found) {
  1022. break;
  1023. }
  1024. }
  1025. }
  1026. rcode = -1;
  1027. if (!found) {
  1028. printk(KERN_ERR "raw1394: arm_write FAILED addr_entry not found"
  1029. " -> rcode_address_error\n");
  1030. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1031. return (RCODE_ADDRESS_ERROR);
  1032. } else {
  1033. DBGMSG("arm_write addr_entry FOUND");
  1034. }
  1035. if (arm_addr->rec_length < length) {
  1036. DBGMSG("arm_write blocklength too big -> rcode_data_error");
  1037. length_conflict = 1;
  1038. rcode = RCODE_DATA_ERROR; /* hardware error, data is unavailable */
  1039. }
  1040. if (rcode == -1) {
  1041. if (arm_addr->access_rights & ARM_WRITE) {
  1042. if (!(arm_addr->client_transactions & ARM_WRITE)) {
  1043. memcpy((arm_addr->addr_space_buffer) +
  1044. (addr - (arm_addr->start)), data,
  1045. length);
  1046. DBGMSG("arm_write -> (rcode_complete)");
  1047. rcode = RCODE_COMPLETE;
  1048. }
  1049. } else {
  1050. rcode = RCODE_TYPE_ERROR; /* function not allowed */
  1051. DBGMSG("arm_write -> rcode_type_error (access denied)");
  1052. }
  1053. }
  1054. if (arm_addr->notification_options & ARM_WRITE) {
  1055. DBGMSG("arm_write -> entering notification-section");
  1056. req = __alloc_pending_request(GFP_ATOMIC);
  1057. if (!req) {
  1058. DBGMSG("arm_write -> rcode_conflict_error");
  1059. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1060. return (RCODE_CONFLICT_ERROR); /* A resource conflict was detected.
  1061. The request my be retried */
  1062. }
  1063. size =
  1064. sizeof(struct arm_request) + sizeof(struct arm_response) +
  1065. (length) * sizeof(byte_t) +
  1066. sizeof(struct arm_request_response);
  1067. req->data = kmalloc(size, GFP_ATOMIC);
  1068. if (!(req->data)) {
  1069. free_pending_request(req);
  1070. DBGMSG("arm_write -> rcode_conflict_error");
  1071. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1072. return (RCODE_CONFLICT_ERROR); /* A resource conflict was detected.
  1073. The request may be retried */
  1074. }
  1075. req->free_data = 1;
  1076. req->file_info = fi;
  1077. req->req.type = RAW1394_REQ_ARM;
  1078. req->req.generation = get_hpsb_generation(host);
  1079. req->req.misc =
  1080. (((length << 16) & (0xFFFF0000)) | (ARM_WRITE & 0xFF));
  1081. req->req.tag = arm_addr->arm_tag;
  1082. req->req.recvb = arm_addr->recvb;
  1083. req->req.length = size;
  1084. arm_req_resp = (struct arm_request_response *)(req->data);
  1085. arm_req = (struct arm_request *)((byte_t *) (req->data) +
  1086. (sizeof
  1087. (struct
  1088. arm_request_response)));
  1089. arm_resp =
  1090. (struct arm_response *)((byte_t *) (arm_req) +
  1091. (sizeof(struct arm_request)));
  1092. arm_resp->buffer = NULL;
  1093. memcpy((byte_t *) arm_resp + sizeof(struct arm_response),
  1094. data, length);
  1095. arm_req->buffer = int2ptr((arm_addr->recvb) +
  1096. sizeof(struct arm_request_response) +
  1097. sizeof(struct arm_request) +
  1098. sizeof(struct arm_response));
  1099. arm_req->buffer_length = length;
  1100. arm_req->generation = req->req.generation;
  1101. arm_req->extended_transaction_code = 0;
  1102. arm_req->destination_offset = addr;
  1103. arm_req->source_nodeid = nodeid;
  1104. arm_req->destination_nodeid = destid;
  1105. arm_req->tlabel = (flags >> 10) & 0x3f;
  1106. arm_req->tcode = (flags >> 4) & 0x0f;
  1107. arm_resp->buffer_length = 0;
  1108. arm_resp->response_code = rcode;
  1109. arm_req_resp->request = int2ptr((arm_addr->recvb) +
  1110. sizeof(struct
  1111. arm_request_response));
  1112. arm_req_resp->response =
  1113. int2ptr((arm_addr->recvb) +
  1114. sizeof(struct arm_request_response) +
  1115. sizeof(struct arm_request));
  1116. queue_complete_req(req);
  1117. }
  1118. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1119. return (rcode);
  1120. }
  1121. static int arm_lock(struct hpsb_host *host, int nodeid, quadlet_t * store,
  1122. u64 addr, quadlet_t data, quadlet_t arg, int ext_tcode,
  1123. u16 flags)
  1124. {
  1125. unsigned long irqflags;
  1126. struct pending_request *req;
  1127. struct host_info *hi;
  1128. struct file_info *fi = NULL;
  1129. struct list_head *entry;
  1130. struct arm_addr *arm_addr = NULL;
  1131. struct arm_request *arm_req = NULL;
  1132. struct arm_response *arm_resp = NULL;
  1133. int found = 0, size = 0, rcode = -1;
  1134. quadlet_t old, new;
  1135. struct arm_request_response *arm_req_resp = NULL;
  1136. if (((ext_tcode & 0xFF) == EXTCODE_FETCH_ADD) ||
  1137. ((ext_tcode & 0xFF) == EXTCODE_LITTLE_ADD)) {
  1138. DBGMSG("arm_lock called by node: %X "
  1139. "addr: %4.4x %8.8x extcode: %2.2X data: %8.8X",
  1140. nodeid, (u16) ((addr >> 32) & 0xFFFF),
  1141. (u32) (addr & 0xFFFFFFFF), ext_tcode & 0xFF,
  1142. be32_to_cpu(data));
  1143. } else {
  1144. DBGMSG("arm_lock called by node: %X "
  1145. "addr: %4.4x %8.8x extcode: %2.2X data: %8.8X arg: %8.8X",
  1146. nodeid, (u16) ((addr >> 32) & 0xFFFF),
  1147. (u32) (addr & 0xFFFFFFFF), ext_tcode & 0xFF,
  1148. be32_to_cpu(data), be32_to_cpu(arg));
  1149. }
  1150. spin_lock_irqsave(&host_info_lock, irqflags);
  1151. hi = find_host_info(host); /* search address-entry */
  1152. if (hi != NULL) {
  1153. list_for_each_entry(fi, &hi->file_info_list, list) {
  1154. entry = fi->addr_list.next;
  1155. while (entry != &(fi->addr_list)) {
  1156. arm_addr =
  1157. list_entry(entry, struct arm_addr,
  1158. addr_list);
  1159. if (((arm_addr->start) <= (addr))
  1160. && ((arm_addr->end) >=
  1161. (addr + sizeof(*store)))) {
  1162. found = 1;
  1163. break;
  1164. }
  1165. entry = entry->next;
  1166. }
  1167. if (found) {
  1168. break;
  1169. }
  1170. }
  1171. }
  1172. rcode = -1;
  1173. if (!found) {
  1174. printk(KERN_ERR "raw1394: arm_lock FAILED addr_entry not found"
  1175. " -> rcode_address_error\n");
  1176. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1177. return (RCODE_ADDRESS_ERROR);
  1178. } else {
  1179. DBGMSG("arm_lock addr_entry FOUND");
  1180. }
  1181. if (rcode == -1) {
  1182. if (arm_addr->access_rights & ARM_LOCK) {
  1183. if (!(arm_addr->client_transactions & ARM_LOCK)) {
  1184. memcpy(&old,
  1185. (arm_addr->addr_space_buffer) + (addr -
  1186. (arm_addr->
  1187. start)),
  1188. sizeof(old));
  1189. switch (ext_tcode) {
  1190. case (EXTCODE_MASK_SWAP):
  1191. new = data | (old & ~arg);
  1192. break;
  1193. case (EXTCODE_COMPARE_SWAP):
  1194. if (old == arg) {
  1195. new = data;
  1196. } else {
  1197. new = old;
  1198. }
  1199. break;
  1200. case (EXTCODE_FETCH_ADD):
  1201. new =
  1202. cpu_to_be32(be32_to_cpu(data) +
  1203. be32_to_cpu(old));
  1204. break;
  1205. case (EXTCODE_LITTLE_ADD):
  1206. new =
  1207. cpu_to_le32(le32_to_cpu(data) +
  1208. le32_to_cpu(old));
  1209. break;
  1210. case (EXTCODE_BOUNDED_ADD):
  1211. if (old != arg) {
  1212. new =
  1213. cpu_to_be32(be32_to_cpu
  1214. (data) +
  1215. be32_to_cpu
  1216. (old));
  1217. } else {
  1218. new = old;
  1219. }
  1220. break;
  1221. case (EXTCODE_WRAP_ADD):
  1222. if (old != arg) {
  1223. new =
  1224. cpu_to_be32(be32_to_cpu
  1225. (data) +
  1226. be32_to_cpu
  1227. (old));
  1228. } else {
  1229. new = data;
  1230. }
  1231. break;
  1232. default:
  1233. rcode = RCODE_TYPE_ERROR; /* function not allowed */
  1234. printk(KERN_ERR
  1235. "raw1394: arm_lock FAILED "
  1236. "ext_tcode not allowed -> rcode_type_error\n");
  1237. break;
  1238. } /*switch */
  1239. if (rcode == -1) {
  1240. DBGMSG("arm_lock -> (rcode_complete)");
  1241. rcode = RCODE_COMPLETE;
  1242. memcpy(store, &old, sizeof(*store));
  1243. memcpy((arm_addr->addr_space_buffer) +
  1244. (addr - (arm_addr->start)),
  1245. &new, sizeof(*store));
  1246. }
  1247. }
  1248. } else {
  1249. rcode = RCODE_TYPE_ERROR; /* function not allowed */
  1250. DBGMSG("arm_lock -> rcode_type_error (access denied)");
  1251. }
  1252. }
  1253. if (arm_addr->notification_options & ARM_LOCK) {
  1254. byte_t *buf1, *buf2;
  1255. DBGMSG("arm_lock -> entering notification-section");
  1256. req = __alloc_pending_request(GFP_ATOMIC);
  1257. if (!req) {
  1258. DBGMSG("arm_lock -> rcode_conflict_error");
  1259. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1260. return (RCODE_CONFLICT_ERROR); /* A resource conflict was detected.
  1261. The request may be retried */
  1262. }
  1263. size = sizeof(struct arm_request) + sizeof(struct arm_response) + 3 * sizeof(*store) + sizeof(struct arm_request_response); /* maximum */
  1264. req->data = kmalloc(size, GFP_ATOMIC);
  1265. if (!(req->data)) {
  1266. free_pending_request(req);
  1267. DBGMSG("arm_lock -> rcode_conflict_error");
  1268. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1269. return (RCODE_CONFLICT_ERROR); /* A resource conflict was detected.
  1270. The request may be retried */
  1271. }
  1272. req->free_data = 1;
  1273. arm_req_resp = (struct arm_request_response *)(req->data);
  1274. arm_req = (struct arm_request *)((byte_t *) (req->data) +
  1275. (sizeof
  1276. (struct
  1277. arm_request_response)));
  1278. arm_resp =
  1279. (struct arm_response *)((byte_t *) (arm_req) +
  1280. (sizeof(struct arm_request)));
  1281. buf1 = (byte_t *) arm_resp + sizeof(struct arm_response);
  1282. buf2 = buf1 + 2 * sizeof(*store);
  1283. if ((ext_tcode == EXTCODE_FETCH_ADD) ||
  1284. (ext_tcode == EXTCODE_LITTLE_ADD)) {
  1285. arm_req->buffer_length = sizeof(*store);
  1286. memcpy(buf1, &data, sizeof(*store));
  1287. } else {
  1288. arm_req->buffer_length = 2 * sizeof(*store);
  1289. memcpy(buf1, &arg, sizeof(*store));
  1290. memcpy(buf1 + sizeof(*store), &data, sizeof(*store));
  1291. }
  1292. if (rcode == RCODE_COMPLETE) {
  1293. arm_resp->buffer_length = sizeof(*store);
  1294. memcpy(buf2, &old, sizeof(*store));
  1295. } else {
  1296. arm_resp->buffer_length = 0;
  1297. }
  1298. req->file_info = fi;
  1299. req->req.type = RAW1394_REQ_ARM;
  1300. req->req.generation = get_hpsb_generation(host);
  1301. req->req.misc = ((((sizeof(*store)) << 16) & (0xFFFF0000)) |
  1302. (ARM_LOCK & 0xFF));
  1303. req->req.tag = arm_addr->arm_tag;
  1304. req->req.recvb = arm_addr->recvb;
  1305. req->req.length = size;
  1306. arm_req->generation = req->req.generation;
  1307. arm_req->extended_transaction_code = ext_tcode;
  1308. arm_req->destination_offset = addr;
  1309. arm_req->source_nodeid = nodeid;
  1310. arm_req->destination_nodeid = host->node_id;
  1311. arm_req->tlabel = (flags >> 10) & 0x3f;
  1312. arm_req->tcode = (flags >> 4) & 0x0f;
  1313. arm_resp->response_code = rcode;
  1314. arm_req_resp->request = int2ptr((arm_addr->recvb) +
  1315. sizeof(struct
  1316. arm_request_response));
  1317. arm_req_resp->response =
  1318. int2ptr((arm_addr->recvb) +
  1319. sizeof(struct arm_request_response) +
  1320. sizeof(struct arm_request));
  1321. arm_req->buffer =
  1322. int2ptr((arm_addr->recvb) +
  1323. sizeof(struct arm_request_response) +
  1324. sizeof(struct arm_request) +
  1325. sizeof(struct arm_response));
  1326. arm_resp->buffer =
  1327. int2ptr((arm_addr->recvb) +
  1328. sizeof(struct arm_request_response) +
  1329. sizeof(struct arm_request) +
  1330. sizeof(struct arm_response) + 2 * sizeof(*store));
  1331. queue_complete_req(req);
  1332. }
  1333. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1334. return (rcode);
  1335. }
  1336. static int arm_lock64(struct hpsb_host *host, int nodeid, octlet_t * store,
  1337. u64 addr, octlet_t data, octlet_t arg, int ext_tcode,
  1338. u16 flags)
  1339. {
  1340. unsigned long irqflags;
  1341. struct pending_request *req;
  1342. struct host_info *hi;
  1343. struct file_info *fi = NULL;
  1344. struct list_head *entry;
  1345. struct arm_addr *arm_addr = NULL;
  1346. struct arm_request *arm_req = NULL;
  1347. struct arm_response *arm_resp = NULL;
  1348. int found = 0, size = 0, rcode = -1;
  1349. octlet_t old, new;
  1350. struct arm_request_response *arm_req_resp = NULL;
  1351. if (((ext_tcode & 0xFF) == EXTCODE_FETCH_ADD) ||
  1352. ((ext_tcode & 0xFF) == EXTCODE_LITTLE_ADD)) {
  1353. DBGMSG("arm_lock64 called by node: %X "
  1354. "addr: %4.4x %8.8x extcode: %2.2X data: %8.8X %8.8X ",
  1355. nodeid, (u16) ((addr >> 32) & 0xFFFF),
  1356. (u32) (addr & 0xFFFFFFFF),
  1357. ext_tcode & 0xFF,
  1358. (u32) ((be64_to_cpu(data) >> 32) & 0xFFFFFFFF),
  1359. (u32) (be64_to_cpu(data) & 0xFFFFFFFF));
  1360. } else {
  1361. DBGMSG("arm_lock64 called by node: %X "
  1362. "addr: %4.4x %8.8x extcode: %2.2X data: %8.8X %8.8X arg: "
  1363. "%8.8X %8.8X ",
  1364. nodeid, (u16) ((addr >> 32) & 0xFFFF),
  1365. (u32) (addr & 0xFFFFFFFF),
  1366. ext_tcode & 0xFF,
  1367. (u32) ((be64_to_cpu(data) >> 32) & 0xFFFFFFFF),
  1368. (u32) (be64_to_cpu(data) & 0xFFFFFFFF),
  1369. (u32) ((be64_to_cpu(arg) >> 32) & 0xFFFFFFFF),
  1370. (u32) (be64_to_cpu(arg) & 0xFFFFFFFF));
  1371. }
  1372. spin_lock_irqsave(&host_info_lock, irqflags);
  1373. hi = find_host_info(host); /* search addressentry in file_info's for host */
  1374. if (hi != NULL) {
  1375. list_for_each_entry(fi, &hi->file_info_list, list) {
  1376. entry = fi->addr_list.next;
  1377. while (entry != &(fi->addr_list)) {
  1378. arm_addr =
  1379. list_entry(entry, struct arm_addr,
  1380. addr_list);
  1381. if (((arm_addr->start) <= (addr))
  1382. && ((arm_addr->end) >=
  1383. (addr + sizeof(*store)))) {
  1384. found = 1;
  1385. break;
  1386. }
  1387. entry = entry->next;
  1388. }
  1389. if (found) {
  1390. break;
  1391. }
  1392. }
  1393. }
  1394. rcode = -1;
  1395. if (!found) {
  1396. printk(KERN_ERR
  1397. "raw1394: arm_lock64 FAILED addr_entry not found"
  1398. " -> rcode_address_error\n");
  1399. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1400. return (RCODE_ADDRESS_ERROR);
  1401. } else {
  1402. DBGMSG("arm_lock64 addr_entry FOUND");
  1403. }
  1404. if (rcode == -1) {
  1405. if (arm_addr->access_rights & ARM_LOCK) {
  1406. if (!(arm_addr->client_transactions & ARM_LOCK)) {
  1407. memcpy(&old,
  1408. (arm_addr->addr_space_buffer) + (addr -
  1409. (arm_addr->
  1410. start)),
  1411. sizeof(old));
  1412. switch (ext_tcode) {
  1413. case (EXTCODE_MASK_SWAP):
  1414. new = data | (old & ~arg);
  1415. break;
  1416. case (EXTCODE_COMPARE_SWAP):
  1417. if (old == arg) {
  1418. new = data;
  1419. } else {
  1420. new = old;
  1421. }
  1422. break;
  1423. case (EXTCODE_FETCH_ADD):
  1424. new =
  1425. cpu_to_be64(be64_to_cpu(data) +
  1426. be64_to_cpu(old));
  1427. break;
  1428. case (EXTCODE_LITTLE_ADD):
  1429. new =
  1430. cpu_to_le64(le64_to_cpu(data) +
  1431. le64_to_cpu(old));
  1432. break;
  1433. case (EXTCODE_BOUNDED_ADD):
  1434. if (old != arg) {
  1435. new =
  1436. cpu_to_be64(be64_to_cpu
  1437. (data) +
  1438. be64_to_cpu
  1439. (old));
  1440. } else {
  1441. new = old;
  1442. }
  1443. break;
  1444. case (EXTCODE_WRAP_ADD):
  1445. if (old != arg) {
  1446. new =
  1447. cpu_to_be64(be64_to_cpu
  1448. (data) +
  1449. be64_to_cpu
  1450. (old));
  1451. } else {
  1452. new = data;
  1453. }
  1454. break;
  1455. default:
  1456. printk(KERN_ERR
  1457. "raw1394: arm_lock64 FAILED "
  1458. "ext_tcode not allowed -> rcode_type_error\n");
  1459. rcode = RCODE_TYPE_ERROR; /* function not allowed */
  1460. break;
  1461. } /*switch */
  1462. if (rcode == -1) {
  1463. DBGMSG
  1464. ("arm_lock64 -> (rcode_complete)");
  1465. rcode = RCODE_COMPLETE;
  1466. memcpy(store, &old, sizeof(*store));
  1467. memcpy((arm_addr->addr_space_buffer) +
  1468. (addr - (arm_addr->start)),
  1469. &new, sizeof(*store));
  1470. }
  1471. }
  1472. } else {
  1473. rcode = RCODE_TYPE_ERROR; /* function not allowed */
  1474. DBGMSG
  1475. ("arm_lock64 -> rcode_type_error (access denied)");
  1476. }
  1477. }
  1478. if (arm_addr->notification_options & ARM_LOCK) {
  1479. byte_t *buf1, *buf2;
  1480. DBGMSG("arm_lock64 -> entering notification-section");
  1481. req = __alloc_pending_request(GFP_ATOMIC);
  1482. if (!req) {
  1483. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1484. DBGMSG("arm_lock64 -> rcode_conflict_error");
  1485. return (RCODE_CONFLICT_ERROR); /* A resource conflict was detected.
  1486. The request may be retried */
  1487. }
  1488. size = sizeof(struct arm_request) + sizeof(struct arm_response) + 3 * sizeof(*store) + sizeof(struct arm_request_response); /* maximum */
  1489. req->data = kmalloc(size, GFP_ATOMIC);
  1490. if (!(req->data)) {
  1491. free_pending_request(req);
  1492. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1493. DBGMSG("arm_lock64 -> rcode_conflict_error");
  1494. return (RCODE_CONFLICT_ERROR); /* A resource conflict was detected.
  1495. The request may be retried */
  1496. }
  1497. req->free_data = 1;
  1498. arm_req_resp = (struct arm_request_response *)(req->data);
  1499. arm_req = (struct arm_request *)((byte_t *) (req->data) +
  1500. (sizeof
  1501. (struct
  1502. arm_request_response)));
  1503. arm_resp =
  1504. (struct arm_response *)((byte_t *) (arm_req) +
  1505. (sizeof(struct arm_request)));
  1506. buf1 = (byte_t *) arm_resp + sizeof(struct arm_response);
  1507. buf2 = buf1 + 2 * sizeof(*store);
  1508. if ((ext_tcode == EXTCODE_FETCH_ADD) ||
  1509. (ext_tcode == EXTCODE_LITTLE_ADD)) {
  1510. arm_req->buffer_length = sizeof(*store);
  1511. memcpy(buf1, &data, sizeof(*store));
  1512. } else {
  1513. arm_req->buffer_length = 2 * sizeof(*store);
  1514. memcpy(buf1, &arg, sizeof(*store));
  1515. memcpy(buf1 + sizeof(*store), &data, sizeof(*store));
  1516. }
  1517. if (rcode == RCODE_COMPLETE) {
  1518. arm_resp->buffer_length = sizeof(*store);
  1519. memcpy(buf2, &old, sizeof(*store));
  1520. } else {
  1521. arm_resp->buffer_length = 0;
  1522. }
  1523. req->file_info = fi;
  1524. req->req.type = RAW1394_REQ_ARM;
  1525. req->req.generation = get_hpsb_generation(host);
  1526. req->req.misc = ((((sizeof(*store)) << 16) & (0xFFFF0000)) |
  1527. (ARM_LOCK & 0xFF));
  1528. req->req.tag = arm_addr->arm_tag;
  1529. req->req.recvb = arm_addr->recvb;
  1530. req->req.length = size;
  1531. arm_req->generation = req->req.generation;
  1532. arm_req->extended_transaction_code = ext_tcode;
  1533. arm_req->destination_offset = addr;
  1534. arm_req->source_nodeid = nodeid;
  1535. arm_req->destination_nodeid = host->node_id;
  1536. arm_req->tlabel = (flags >> 10) & 0x3f;
  1537. arm_req->tcode = (flags >> 4) & 0x0f;
  1538. arm_resp->response_code = rcode;
  1539. arm_req_resp->request = int2ptr((arm_addr->recvb) +
  1540. sizeof(struct
  1541. arm_request_response));
  1542. arm_req_resp->response =
  1543. int2ptr((arm_addr->recvb) +
  1544. sizeof(struct arm_request_response) +
  1545. sizeof(struct arm_request));
  1546. arm_req->buffer =
  1547. int2ptr((arm_addr->recvb) +
  1548. sizeof(struct arm_request_response) +
  1549. sizeof(struct arm_request) +
  1550. sizeof(struct arm_response));
  1551. arm_resp->buffer =
  1552. int2ptr((arm_addr->recvb) +
  1553. sizeof(struct arm_request_response) +
  1554. sizeof(struct arm_request) +
  1555. sizeof(struct arm_response) + 2 * sizeof(*store));
  1556. queue_complete_req(req);
  1557. }
  1558. spin_unlock_irqrestore(&host_info_lock, irqflags);
  1559. return (rcode);
  1560. }
  1561. static int arm_register(struct file_info *fi, struct pending_request *req)
  1562. {
  1563. int retval;
  1564. struct arm_addr *addr;
  1565. struct host_info *hi;
  1566. struct file_info *fi_hlp = NULL;
  1567. struct list_head *entry;
  1568. struct arm_addr *arm_addr = NULL;
  1569. int same_host, another_host;
  1570. unsigned long flags;
  1571. DBGMSG("arm_register called "
  1572. "addr(Offset): %8.8x %8.8x length: %u "
  1573. "rights: %2.2X notify: %2.2X "
  1574. "max_blk_len: %4.4X",
  1575. (u32) ((req->req.address >> 32) & 0xFFFF),
  1576. (u32) (req->req.address & 0xFFFFFFFF),
  1577. req->req.length, ((req->req.misc >> 8) & 0xFF),
  1578. (req->req.misc & 0xFF), ((req->req.misc >> 16) & 0xFFFF));
  1579. /* check addressrange */
  1580. if ((((req->req.address) & ~(0xFFFFFFFFFFFFULL)) != 0) ||
  1581. (((req->req.address + req->req.length) & ~(0xFFFFFFFFFFFFULL)) !=
  1582. 0)) {
  1583. req->req.length = 0;
  1584. return (-EINVAL);
  1585. }
  1586. /* addr-list-entry for fileinfo */
  1587. addr = kmalloc(sizeof(*addr), GFP_KERNEL);
  1588. if (!addr) {
  1589. req->req.length = 0;
  1590. return (-ENOMEM);
  1591. }
  1592. /* allocation of addr_space_buffer */
  1593. addr->addr_space_buffer = vmalloc(req->req.length);
  1594. if (!(addr->addr_space_buffer)) {
  1595. kfree(addr);
  1596. req->req.length = 0;
  1597. return (-ENOMEM);
  1598. }
  1599. /* initialization of addr_space_buffer */
  1600. if ((req->req.sendb) == (unsigned long)NULL) {
  1601. /* init: set 0 */
  1602. memset(addr->addr_space_buffer, 0, req->req.length);
  1603. } else {
  1604. /* init: user -> kernel */
  1605. if (copy_from_user
  1606. (addr->addr_space_buffer, int2ptr(req->req.sendb),
  1607. req->req.length)) {
  1608. vfree(addr->addr_space_buffer);
  1609. kfree(addr);
  1610. return (-EFAULT);
  1611. }
  1612. }
  1613. INIT_LIST_HEAD(&addr->addr_list);
  1614. addr->arm_tag = req->req.tag;
  1615. addr->start = req->req.address;
  1616. addr->end = req->req.address + req->req.length;
  1617. addr->access_rights = (u8) (req->req.misc & 0x0F);
  1618. addr->notification_options = (u8) ((req->req.misc >> 4) & 0x0F);
  1619. addr->client_transactions = (u8) ((req->req.misc >> 8) & 0x0F);
  1620. addr->access_rights |= addr->client_transactions;
  1621. addr->notification_options |= addr->client_transactions;
  1622. addr->recvb = req->req.recvb;
  1623. addr->rec_length = (u16) ((req->req.misc >> 16) & 0xFFFF);
  1624. spin_lock_irqsave(&host_info_lock, flags);
  1625. hi = find_host_info(fi->host);
  1626. same_host = 0;
  1627. another_host = 0;
  1628. /* same host with address-entry containing same addressrange ? */
  1629. list_for_each_entry(fi_hlp, &hi->file_info_list, list) {
  1630. entry = fi_hlp->addr_list.next;
  1631. while (entry != &(fi_hlp->addr_list)) {
  1632. arm_addr =
  1633. list_entry(entry, struct arm_addr, addr_list);
  1634. if ((arm_addr->start == addr->start)
  1635. && (arm_addr->end == addr->end)) {
  1636. DBGMSG("same host ownes same "
  1637. "addressrange -> EALREADY");
  1638. same_host = 1;
  1639. break;
  1640. }
  1641. entry = entry->next;
  1642. }
  1643. if (same_host) {
  1644. break;
  1645. }
  1646. }
  1647. if (same_host) {
  1648. /* addressrange occupied by same host */
  1649. spin_unlock_irqrestore(&host_info_lock, flags);
  1650. vfree(addr->addr_space_buffer);
  1651. kfree(addr);
  1652. return (-EALREADY);
  1653. }
  1654. /* another host with valid address-entry containing same addressrange */
  1655. list_for_each_entry(hi, &host_info_list, list) {
  1656. if (hi->host != fi->host) {
  1657. list_for_each_entry(fi_hlp, &hi->file_info_list, list) {
  1658. entry = fi_hlp->addr_list.next;
  1659. while (entry != &(fi_hlp->addr_list)) {
  1660. arm_addr =
  1661. list_entry(entry, struct arm_addr,
  1662. addr_list);
  1663. if ((arm_addr->start == addr->start)
  1664. && (arm_addr->end == addr->end)) {
  1665. DBGMSG
  1666. ("another host ownes same "
  1667. "addressrange");
  1668. another_host = 1;
  1669. break;
  1670. }
  1671. entry = entry->next;
  1672. }
  1673. if (another_host) {
  1674. break;
  1675. }
  1676. }
  1677. }
  1678. }
  1679. spin_unlock_irqrestore(&host_info_lock, flags);
  1680. if (another_host) {
  1681. DBGMSG("another hosts entry is valid -> SUCCESS");
  1682. if (copy_to_user(int2ptr(req->req.recvb),
  1683. &addr->start, sizeof(u64))) {
  1684. printk(KERN_ERR "raw1394: arm_register failed "
  1685. " address-range-entry is invalid -> EFAULT !!!\n");
  1686. vfree(addr->addr_space_buffer);
  1687. kfree(addr);
  1688. return (-EFAULT);
  1689. }
  1690. free_pending_request(req); /* immediate success or fail */
  1691. /* INSERT ENTRY */
  1692. spin_lock_irqsave(&host_info_lock, flags);
  1693. list_add_tail(&addr->addr_list, &fi->addr_list);
  1694. spin_unlock_irqrestore(&host_info_lock, flags);
  1695. return sizeof(struct raw1394_request);
  1696. }
  1697. retval =
  1698. hpsb_register_addrspace(&raw1394_highlevel, fi->host, &arm_ops,
  1699. req->req.address,
  1700. req->req.address + req->req.length);
  1701. if (retval) {
  1702. /* INSERT ENTRY */
  1703. spin_lock_irqsave(&host_info_lock, flags);
  1704. list_add_tail(&addr->addr_list, &fi->addr_list);
  1705. spin_unlock_irqrestore(&host_info_lock, flags);
  1706. } else {
  1707. DBGMSG("arm_register failed errno: %d \n", retval);
  1708. vfree(addr->addr_space_buffer);
  1709. kfree(addr);
  1710. return (-EALREADY);
  1711. }
  1712. free_pending_request(req); /* immediate success or fail */
  1713. return sizeof(struct raw1394_request);
  1714. }
  1715. static int arm_unregister(struct file_info *fi, struct pending_request *req)
  1716. {
  1717. int found = 0;
  1718. int retval = 0;
  1719. struct list_head *entry;
  1720. struct arm_addr *addr = NULL;
  1721. struct host_info *hi;
  1722. struct file_info *fi_hlp = NULL;
  1723. struct arm_addr *arm_addr = NULL;
  1724. int another_host;
  1725. unsigned long flags;
  1726. DBGMSG("arm_Unregister called addr(Offset): "
  1727. "%8.8x %8.8x",
  1728. (u32) ((req->req.address >> 32) & 0xFFFF),
  1729. (u32) (req->req.address & 0xFFFFFFFF));
  1730. spin_lock_irqsave(&host_info_lock, flags);
  1731. /* get addr */
  1732. entry = fi->addr_list.next;
  1733. while (entry != &(fi->addr_list)) {
  1734. addr = list_entry(entry, struct arm_addr, addr_list);
  1735. if (addr->start == req->req.address) {
  1736. found = 1;
  1737. break;
  1738. }
  1739. entry = entry->next;
  1740. }
  1741. if (!found) {
  1742. DBGMSG("arm_Unregister addr not found");
  1743. spin_unlock_irqrestore(&host_info_lock, flags);
  1744. return (-EINVAL);
  1745. }
  1746. DBGMSG("arm_Unregister addr found");
  1747. another_host = 0;
  1748. /* another host with valid address-entry containing
  1749. same addressrange */
  1750. list_for_each_entry(hi, &host_info_list, list) {
  1751. if (hi->host != fi->host) {
  1752. list_for_each_entry(fi_hlp, &hi->file_info_list, list) {
  1753. entry = fi_hlp->addr_list.next;
  1754. while (entry != &(fi_hlp->addr_list)) {
  1755. arm_addr = list_entry(entry,
  1756. struct arm_addr,
  1757. addr_list);
  1758. if (arm_addr->start == addr->start) {
  1759. DBGMSG("another host ownes "
  1760. "same addressrange");
  1761. another_host = 1;
  1762. break;
  1763. }
  1764. entry = entry->next;
  1765. }
  1766. if (another_host) {
  1767. break;
  1768. }
  1769. }
  1770. }
  1771. }
  1772. if (another_host) {
  1773. DBGMSG("delete entry from list -> success");
  1774. list_del(&addr->addr_list);
  1775. spin_unlock_irqrestore(&host_info_lock, flags);
  1776. vfree(addr->addr_space_buffer);
  1777. kfree(addr);
  1778. free_pending_request(req); /* immediate success or fail */
  1779. return sizeof(struct raw1394_request);
  1780. }
  1781. retval =
  1782. hpsb_unregister_addrspace(&raw1394_highlevel, fi->host,
  1783. addr->start);
  1784. if (!retval) {
  1785. printk(KERN_ERR "raw1394: arm_Unregister failed -> EINVAL\n");
  1786. spin_unlock_irqrestore(&host_info_lock, flags);
  1787. return (-EINVAL);
  1788. }
  1789. DBGMSG("delete entry from list -> success");
  1790. list_del(&addr->addr_list);
  1791. spin_unlock_irqrestore(&host_info_lock, flags);
  1792. vfree(addr->addr_space_buffer);
  1793. kfree(addr);
  1794. free_pending_request(req); /* immediate success or fail */
  1795. return sizeof(struct raw1394_request);
  1796. }
  1797. /* Copy data from ARM buffer(s) to user buffer. */
  1798. static int arm_get_buf(struct file_info *fi, struct pending_request *req)
  1799. {
  1800. struct arm_addr *arm_addr = NULL;
  1801. unsigned long flags;
  1802. unsigned long offset;
  1803. struct list_head *entry;
  1804. DBGMSG("arm_get_buf "
  1805. "addr(Offset): %04X %08X length: %u",
  1806. (u32) ((req->req.address >> 32) & 0xFFFF),
  1807. (u32) (req->req.address & 0xFFFFFFFF), (u32) req->req.length);
  1808. spin_lock_irqsave(&host_info_lock, flags);
  1809. entry = fi->addr_list.next;
  1810. while (entry != &(fi->addr_list)) {
  1811. arm_addr = list_entry(entry, struct arm_addr, addr_list);
  1812. if ((arm_addr->start <= req->req.address) &&
  1813. (arm_addr->end > req->req.address)) {
  1814. if (req->req.address + req->req.length <= arm_addr->end) {
  1815. offset = req->req.address - arm_addr->start;
  1816. spin_unlock_irqrestore(&host_info_lock, flags);
  1817. DBGMSG
  1818. ("arm_get_buf copy_to_user( %08X, %p, %u )",
  1819. (u32) req->req.recvb,
  1820. arm_addr->addr_space_buffer + offset,
  1821. (u32) req->req.length);
  1822. if (copy_to_user
  1823. (int2ptr(req->req.recvb),
  1824. arm_addr->addr_space_buffer + offset,
  1825. req->req.length))
  1826. return (-EFAULT);
  1827. /* We have to free the request, because we
  1828. * queue no response, and therefore nobody
  1829. * will free it. */
  1830. free_pending_request(req);
  1831. return sizeof(struct raw1394_request);
  1832. } else {
  1833. DBGMSG("arm_get_buf request exceeded mapping");
  1834. spin_unlock_irqrestore(&host_info_lock, flags);
  1835. return (-EINVAL);
  1836. }
  1837. }
  1838. entry = entry->next;
  1839. }
  1840. spin_unlock_irqrestore(&host_info_lock, flags);
  1841. return (-EINVAL);
  1842. }
  1843. /* Copy data from user buffer to ARM buffer(s). */
  1844. static int arm_set_buf(struct file_info *fi, struct pending_request *req)
  1845. {
  1846. struct arm_addr *arm_addr = NULL;
  1847. unsigned long flags;
  1848. unsigned long offset;
  1849. struct list_head *entry;
  1850. DBGMSG("arm_set_buf "
  1851. "addr(Offset): %04X %08X length: %u",
  1852. (u32) ((req->req.address >> 32) & 0xFFFF),
  1853. (u32) (req->req.address & 0xFFFFFFFF), (u32) req->req.length);
  1854. spin_lock_irqsave(&host_info_lock, flags);
  1855. entry = fi->addr_list.next;
  1856. while (entry != &(fi->addr_list)) {
  1857. arm_addr = list_entry(entry, struct arm_addr, addr_list);
  1858. if ((arm_addr->start <= req->req.address) &&
  1859. (arm_addr->end > req->req.address)) {
  1860. if (req->req.address + req->req.length <= arm_addr->end) {
  1861. offset = req->req.address - arm_addr->start;
  1862. spin_unlock_irqrestore(&host_info_lock, flags);
  1863. DBGMSG
  1864. ("arm_set_buf copy_from_user( %p, %08X, %u )",
  1865. arm_addr->addr_space_buffer + offset,
  1866. (u32) req->req.sendb,
  1867. (u32) req->req.length);
  1868. if (copy_from_user
  1869. (arm_addr->addr_space_buffer + offset,
  1870. int2ptr(req->req.sendb),
  1871. req->req.length))
  1872. return (-EFAULT);
  1873. /* We have to free the request, because we
  1874. * queue no response, and therefore nobody
  1875. * will free it. */
  1876. free_pending_request(req);
  1877. return sizeof(struct raw1394_request);
  1878. } else {
  1879. DBGMSG("arm_set_buf request exceeded mapping");
  1880. spin_unlock_irqrestore(&host_info_lock, flags);
  1881. return (-EINVAL);
  1882. }
  1883. }
  1884. entry = entry->next;
  1885. }
  1886. spin_unlock_irqrestore(&host_info_lock, flags);
  1887. return (-EINVAL);
  1888. }
  1889. static int reset_notification(struct file_info *fi, struct pending_request *req)
  1890. {
  1891. DBGMSG("reset_notification called - switch %s ",
  1892. (req->req.misc == RAW1394_NOTIFY_OFF) ? "OFF" : "ON");
  1893. if ((req->req.misc == RAW1394_NOTIFY_OFF) ||
  1894. (req->req.misc == RAW1394_NOTIFY_ON)) {
  1895. fi->notification = (u8) req->req.misc;
  1896. free_pending_request(req); /* we have to free the request, because we queue no response, and therefore nobody will free it */
  1897. return sizeof(struct raw1394_request);
  1898. }
  1899. /* error EINVAL (22) invalid argument */
  1900. return (-EINVAL);
  1901. }
  1902. static int write_phypacket(struct file_info *fi, struct pending_request *req)
  1903. {
  1904. struct hpsb_packet *packet = NULL;
  1905. int retval = 0;
  1906. quadlet_t data;
  1907. unsigned long flags;
  1908. data = be32_to_cpu((u32) req->req.sendb);
  1909. DBGMSG("write_phypacket called - quadlet 0x%8.8x ", data);
  1910. packet = hpsb_make_phypacket(fi->host, data);
  1911. if (!packet)
  1912. return -ENOMEM;
  1913. req->req.length = 0;
  1914. req->packet = packet;
  1915. hpsb_set_packet_complete_task(packet,
  1916. (void (*)(void *))queue_complete_cb, req);
  1917. spin_lock_irqsave(&fi->reqlists_lock, flags);
  1918. list_add_tail(&req->list, &fi->req_pending);
  1919. spin_unlock_irqrestore(&fi->reqlists_lock, flags);
  1920. packet->generation = req->req.generation;
  1921. retval = hpsb_send_packet(packet);
  1922. DBGMSG("write_phypacket send_packet called => retval: %d ", retval);
  1923. if (retval < 0) {
  1924. req->req.error = RAW1394_ERROR_SEND_ERROR;
  1925. req->req.length = 0;
  1926. queue_complete_req(req);
  1927. }
  1928. return sizeof(struct raw1394_request);
  1929. }
  1930. static int get_config_rom(struct file_info *fi, struct pending_request *req)
  1931. {
  1932. int ret = sizeof(struct raw1394_request);
  1933. quadlet_t *data = kmalloc(req->req.length, GFP_KERNEL);
  1934. int status;
  1935. if (!data)
  1936. return -ENOMEM;
  1937. status =
  1938. csr1212_read(fi->host->csr.rom, CSR1212_CONFIG_ROM_SPACE_OFFSET,
  1939. data, req->req.length);
  1940. if (copy_to_user(int2ptr(req->req.recvb), data, req->req.length))
  1941. ret = -EFAULT;
  1942. if (copy_to_user
  1943. (int2ptr(req->req.tag), &fi->host->csr.rom->cache_head->len,
  1944. sizeof(fi->host->csr.rom->cache_head->len)))
  1945. ret = -EFAULT;
  1946. if (copy_to_user(int2ptr(req->req.address), &fi->host->csr.generation,
  1947. sizeof(fi->host->csr.generation)))
  1948. ret = -EFAULT;
  1949. if (copy_to_user(int2ptr(req->req.sendb), &status, sizeof(status)))
  1950. ret = -EFAULT;
  1951. kfree(data);
  1952. if (ret >= 0) {
  1953. free_pending_request(req); /* we have to free the request, because we queue no response, and therefore nobody will free it */
  1954. }
  1955. return ret;
  1956. }
  1957. static int update_config_rom(struct file_info *fi, struct pending_request *req)
  1958. {
  1959. int ret = sizeof(struct raw1394_request);
  1960. quadlet_t *data = kmalloc(req->req.length, GFP_KERNEL);
  1961. if (!data)
  1962. return -ENOMEM;
  1963. if (copy_from_user(data, int2ptr(req->req.sendb), req->req.length)) {
  1964. ret = -EFAULT;
  1965. } else {
  1966. int status = hpsb_update_config_rom(fi->host,
  1967. data, req->req.length,
  1968. (unsigned char)req->req.
  1969. misc);
  1970. if (copy_to_user
  1971. (int2ptr(req->req.recvb), &status, sizeof(status)))
  1972. ret = -ENOMEM;
  1973. }
  1974. kfree(data);
  1975. if (ret >= 0) {
  1976. free_pending_request(req); /* we have to free the request, because we queue no response, and therefore nobody will free it */
  1977. fi->cfgrom_upd = 1;
  1978. }
  1979. return ret;
  1980. }
  1981. static int modify_config_rom(struct file_info *fi, struct pending_request *req)
  1982. {
  1983. struct csr1212_keyval *kv;
  1984. struct csr1212_csr_rom_cache *cache;
  1985. struct csr1212_dentry *dentry;
  1986. u32 dr;
  1987. int ret = 0;
  1988. if (req->req.misc == ~0) {
  1989. if (req->req.length == 0)
  1990. return -EINVAL;
  1991. /* Find an unused slot */
  1992. for (dr = 0;
  1993. dr < RAW1394_MAX_USER_CSR_DIRS && fi->csr1212_dirs[dr];
  1994. dr++) ;
  1995. if (dr == RAW1394_MAX_USER_CSR_DIRS)
  1996. return -ENOMEM;
  1997. fi->csr1212_dirs[dr] =
  1998. csr1212_new_directory(CSR1212_KV_ID_VENDOR);
  1999. if (!fi->csr1212_dirs[dr])
  2000. return -ENOMEM;
  2001. } else {
  2002. dr = req->req.misc;
  2003. if (!fi->csr1212_dirs[dr])
  2004. return -EINVAL;
  2005. /* Delete old stuff */
  2006. for (dentry =
  2007. fi->csr1212_dirs[dr]->value.directory.dentries_head;
  2008. dentry; dentry = dentry->next) {
  2009. csr1212_detach_keyval_from_directory(fi->host->csr.rom->
  2010. root_kv,
  2011. dentry->kv);
  2012. }
  2013. if (req->req.length == 0) {
  2014. csr1212_release_keyval(fi->csr1212_dirs[dr]);
  2015. fi->csr1212_dirs[dr] = NULL;
  2016. hpsb_update_config_rom_image(fi->host);
  2017. free_pending_request(req);
  2018. return sizeof(struct raw1394_request);
  2019. }
  2020. }
  2021. cache = csr1212_rom_cache_malloc(0, req->req.length);
  2022. if (!cache) {
  2023. csr1212_release_keyval(fi->csr1212_dirs[dr]);
  2024. fi->csr1212_dirs[dr] = NULL;
  2025. return -ENOMEM;
  2026. }
  2027. cache->filled_head = kmalloc(sizeof(*cache->filled_head), GFP_KERNEL);
  2028. if (!cache->filled_head) {
  2029. csr1212_release_keyval(fi->csr1212_dirs[dr]);
  2030. fi->csr1212_dirs[dr] = NULL;
  2031. CSR1212_FREE(cache);
  2032. return -ENOMEM;
  2033. }
  2034. cache->filled_tail = cache->filled_head;
  2035. if (copy_from_user(cache->data, int2ptr(req->req.sendb),
  2036. req->req.length)) {
  2037. csr1212_release_keyval(fi->csr1212_dirs[dr]);
  2038. fi->csr1212_dirs[dr] = NULL;
  2039. ret = -EFAULT;
  2040. } else {
  2041. cache->len = req->req.length;
  2042. cache->filled_head->offset_start = 0;
  2043. cache->filled_head->offset_end = cache->size - 1;
  2044. cache->layout_head = cache->layout_tail = fi->csr1212_dirs[dr];
  2045. ret = CSR1212_SUCCESS;
  2046. /* parse all the items */
  2047. for (kv = cache->layout_head; ret == CSR1212_SUCCESS && kv;
  2048. kv = kv->next) {
  2049. ret = csr1212_parse_keyval(kv, cache);
  2050. }
  2051. /* attach top level items to the root directory */
  2052. for (dentry =
  2053. fi->csr1212_dirs[dr]->value.directory.dentries_head;
  2054. ret == CSR1212_SUCCESS && dentry; dentry = dentry->next) {
  2055. ret =
  2056. csr1212_attach_keyval_to_directory(fi->host->csr.
  2057. rom->root_kv,
  2058. dentry->kv);
  2059. }
  2060. if (ret == CSR1212_SUCCESS) {
  2061. ret = hpsb_update_config_rom_image(fi->host);
  2062. if (ret >= 0 && copy_to_user(int2ptr(req->req.recvb),
  2063. &dr, sizeof(dr))) {
  2064. ret = -ENOMEM;
  2065. }
  2066. }
  2067. }
  2068. kfree(cache->filled_head);
  2069. CSR1212_FREE(cache);
  2070. if (ret >= 0) {
  2071. /* we have to free the request, because we queue no response,
  2072. * and therefore nobody will free it */
  2073. free_pending_request(req);
  2074. return sizeof(struct raw1394_request);
  2075. } else {
  2076. for (dentry =
  2077. fi->csr1212_dirs[dr]->value.directory.dentries_head;
  2078. dentry; dentry = dentry->next) {
  2079. csr1212_detach_keyval_from_directory(fi->host->csr.rom->
  2080. root_kv,
  2081. dentry->kv);
  2082. }
  2083. csr1212_release_keyval(fi->csr1212_dirs[dr]);
  2084. fi->csr1212_dirs[dr] = NULL;
  2085. return ret;
  2086. }
  2087. }
  2088. static int state_connected(struct file_info *fi, struct pending_request *req)
  2089. {
  2090. int node = req->req.address >> 48;
  2091. req->req.error = RAW1394_ERROR_NONE;
  2092. switch (req->req.type) {
  2093. case RAW1394_REQ_ECHO:
  2094. queue_complete_req(req);
  2095. return sizeof(struct raw1394_request);
  2096. case RAW1394_REQ_ISO_SEND:
  2097. print_old_iso_deprecation();
  2098. return handle_iso_send(fi, req, node);
  2099. case RAW1394_REQ_ARM_REGISTER:
  2100. return arm_register(fi, req);
  2101. case RAW1394_REQ_ARM_UNREGISTER:
  2102. return arm_unregister(fi, req);
  2103. case RAW1394_REQ_ARM_SET_BUF:
  2104. return arm_set_buf(fi, req);
  2105. case RAW1394_REQ_ARM_GET_BUF:
  2106. return arm_get_buf(fi, req);
  2107. case RAW1394_REQ_RESET_NOTIFY:
  2108. return reset_notification(fi, req);
  2109. case RAW1394_REQ_ISO_LISTEN:
  2110. print_old_iso_deprecation();
  2111. handle_iso_listen(fi, req);
  2112. return sizeof(struct raw1394_request);
  2113. case RAW1394_REQ_FCP_LISTEN:
  2114. handle_fcp_listen(fi, req);
  2115. return sizeof(struct raw1394_request);
  2116. case RAW1394_REQ_RESET_BUS:
  2117. if (req->req.misc == RAW1394_LONG_RESET) {
  2118. DBGMSG("busreset called (type: LONG)");
  2119. hpsb_reset_bus(fi->host, LONG_RESET);
  2120. free_pending_request(req); /* we have to free the request, because we queue no response, and therefore nobody will free it */
  2121. return sizeof(struct raw1394_request);
  2122. }
  2123. if (req->req.misc == RAW1394_SHORT_RESET) {
  2124. DBGMSG("busreset called (type: SHORT)");
  2125. hpsb_reset_bus(fi->host, SHORT_RESET);
  2126. free_pending_request(req); /* we have to free the request, because we queue no response, and therefore nobody will free it */
  2127. return sizeof(struct raw1394_request);
  2128. }
  2129. /* error EINVAL (22) invalid argument */
  2130. return (-EINVAL);
  2131. case RAW1394_REQ_GET_ROM:
  2132. return get_config_rom(fi, req);
  2133. case RAW1394_REQ_UPDATE_ROM:
  2134. return update_config_rom(fi, req);
  2135. case RAW1394_REQ_MODIFY_ROM:
  2136. return modify_config_rom(fi, req);
  2137. }
  2138. if (req->req.generation != get_hpsb_generation(fi->host)) {
  2139. req->req.error = RAW1394_ERROR_GENERATION;
  2140. req->req.generation = get_hpsb_generation(fi->host);
  2141. req->req.length = 0;
  2142. queue_complete_req(req);
  2143. return sizeof(struct raw1394_request);
  2144. }
  2145. switch (req->req.type) {
  2146. case RAW1394_REQ_PHYPACKET:
  2147. return write_phypacket(fi, req);
  2148. case RAW1394_REQ_ASYNC_SEND:
  2149. return handle_async_send(fi, req);
  2150. }
  2151. if (req->req.length == 0) {
  2152. req->req.error = RAW1394_ERROR_INVALID_ARG;
  2153. queue_complete_req(req);
  2154. return sizeof(struct raw1394_request);
  2155. }
  2156. return handle_async_request(fi, req, node);
  2157. }
  2158. static ssize_t raw1394_write(struct file *file, const char __user * buffer,
  2159. size_t count, loff_t * offset_is_ignored)
  2160. {
  2161. struct file_info *fi = (struct file_info *)file->private_data;
  2162. struct pending_request *req;
  2163. ssize_t retval = 0;
  2164. #ifdef CONFIG_COMPAT
  2165. if (count == sizeof(struct compat_raw1394_req) &&
  2166. sizeof(struct compat_raw1394_req) !=
  2167. sizeof(struct raw1394_request)) {
  2168. buffer = raw1394_compat_write(buffer);
  2169. if (IS_ERR(buffer))
  2170. return PTR_ERR(buffer);
  2171. } else
  2172. #endif
  2173. if (count != sizeof(struct raw1394_request)) {
  2174. return -EINVAL;
  2175. }
  2176. req = alloc_pending_request();
  2177. if (req == NULL) {
  2178. return -ENOMEM;
  2179. }
  2180. req->file_info = fi;
  2181. if (copy_from_user(&req->req, buffer, sizeof(struct raw1394_request))) {
  2182. free_pending_request(req);
  2183. return -EFAULT;
  2184. }
  2185. switch (fi->state) {
  2186. case opened:
  2187. retval = state_opened(fi, req);
  2188. break;
  2189. case initialized:
  2190. retval = state_initialized(fi, req);
  2191. break;
  2192. case connected:
  2193. retval = state_connected(fi, req);
  2194. break;
  2195. }
  2196. if (retval < 0) {
  2197. free_pending_request(req);
  2198. }
  2199. return retval;
  2200. }
  2201. /* rawiso operations */
  2202. /* check if any RAW1394_REQ_RAWISO_ACTIVITY event is already in the
  2203. * completion queue (reqlists_lock must be taken) */
  2204. static inline int __rawiso_event_in_queue(struct file_info *fi)
  2205. {
  2206. struct pending_request *req;
  2207. list_for_each_entry(req, &fi->req_complete, list)
  2208. if (req->req.type == RAW1394_REQ_RAWISO_ACTIVITY)
  2209. return 1;
  2210. return 0;
  2211. }
  2212. /* put a RAWISO_ACTIVITY event in the queue, if one isn't there already */
  2213. static void queue_rawiso_event(struct file_info *fi)
  2214. {
  2215. unsigned long flags;
  2216. spin_lock_irqsave(&fi->reqlists_lock, flags);
  2217. /* only one ISO activity event may be in the queue */
  2218. if (!__rawiso_event_in_queue(fi)) {
  2219. struct pending_request *req =
  2220. __alloc_pending_request(GFP_ATOMIC);
  2221. if (req) {
  2222. req->file_info = fi;
  2223. req->req.type = RAW1394_REQ_RAWISO_ACTIVITY;
  2224. req->req.generation = get_hpsb_generation(fi->host);
  2225. __queue_complete_req(req);
  2226. } else {
  2227. /* on allocation failure, signal an overflow */
  2228. if (fi->iso_handle) {
  2229. atomic_inc(&fi->iso_handle->overflows);
  2230. }
  2231. }
  2232. }
  2233. spin_unlock_irqrestore(&fi->reqlists_lock, flags);
  2234. }
  2235. static void rawiso_activity_cb(struct hpsb_iso *iso)
  2236. {
  2237. unsigned long flags;
  2238. struct host_info *hi;
  2239. struct file_info *fi;
  2240. spin_lock_irqsave(&host_info_lock, flags);
  2241. hi = find_host_info(iso->host);
  2242. if (hi != NULL) {
  2243. list_for_each_entry(fi, &hi->file_info_list, list) {
  2244. if (fi->iso_handle == iso)
  2245. queue_rawiso_event(fi);
  2246. }
  2247. }
  2248. spin_unlock_irqrestore(&host_info_lock, flags);
  2249. }
  2250. /* helper function - gather all the kernel iso status bits for returning to user-space */
  2251. static void raw1394_iso_fill_status(struct hpsb_iso *iso,
  2252. struct raw1394_iso_status *stat)
  2253. {
  2254. stat->config.data_buf_size = iso->buf_size;
  2255. stat->config.buf_packets = iso->buf_packets;
  2256. stat->config.channel = iso->channel;
  2257. stat->config.speed = iso->speed;
  2258. stat->config.irq_interval = iso->irq_interval;
  2259. stat->n_packets = hpsb_iso_n_ready(iso);
  2260. stat->overflows = atomic_read(&iso->overflows);
  2261. stat->xmit_cycle = iso->xmit_cycle;
  2262. }
  2263. static int raw1394_iso_xmit_init(struct file_info *fi, void __user * uaddr)
  2264. {
  2265. struct raw1394_iso_status stat;
  2266. if (!fi->host)
  2267. return -EINVAL;
  2268. if (copy_from_user(&stat, uaddr, sizeof(stat)))
  2269. return -EFAULT;
  2270. fi->iso_handle = hpsb_iso_xmit_init(fi->host,
  2271. stat.config.data_buf_size,
  2272. stat.config.buf_packets,
  2273. stat.config.channel,
  2274. stat.config.speed,
  2275. stat.config.irq_interval,
  2276. rawiso_activity_cb);
  2277. if (!fi->iso_handle)
  2278. return -ENOMEM;
  2279. fi->iso_state = RAW1394_ISO_XMIT;
  2280. raw1394_iso_fill_status(fi->iso_handle, &stat);
  2281. if (copy_to_user(uaddr, &stat, sizeof(stat)))
  2282. return -EFAULT;
  2283. /* queue an event to get things started */
  2284. rawiso_activity_cb(fi->iso_handle);
  2285. return 0;
  2286. }
  2287. static int raw1394_iso_recv_init(struct file_info *fi, void __user * uaddr)
  2288. {
  2289. struct raw1394_iso_status stat;
  2290. if (!fi->host)
  2291. return -EINVAL;
  2292. if (copy_from_user(&stat, uaddr, sizeof(stat)))
  2293. return -EFAULT;
  2294. fi->iso_handle = hpsb_iso_recv_init(fi->host,
  2295. stat.config.data_buf_size,
  2296. stat.config.buf_packets,
  2297. stat.config.channel,
  2298. stat.config.dma_mode,
  2299. stat.config.irq_interval,
  2300. rawiso_activity_cb);
  2301. if (!fi->iso_handle)
  2302. return -ENOMEM;
  2303. fi->iso_state = RAW1394_ISO_RECV;
  2304. raw1394_iso_fill_status(fi->iso_handle, &stat);
  2305. if (copy_to_user(uaddr, &stat, sizeof(stat)))
  2306. return -EFAULT;
  2307. return 0;
  2308. }
  2309. static int raw1394_iso_get_status(struct file_info *fi, void __user * uaddr)
  2310. {
  2311. struct raw1394_iso_status stat;
  2312. struct hpsb_iso *iso = fi->iso_handle;
  2313. raw1394_iso_fill_status(fi->iso_handle, &stat);
  2314. if (copy_to_user(uaddr, &stat, sizeof(stat)))
  2315. return -EFAULT;
  2316. /* reset overflow counter */
  2317. atomic_set(&iso->overflows, 0);
  2318. return 0;
  2319. }
  2320. /* copy N packet_infos out of the ringbuffer into user-supplied array */
  2321. static int raw1394_iso_recv_packets(struct file_info *fi, void __user * uaddr)
  2322. {
  2323. struct raw1394_iso_packets upackets;
  2324. unsigned int packet = fi->iso_handle->first_packet;
  2325. int i;
  2326. if (copy_from_user(&upackets, uaddr, sizeof(upackets)))
  2327. return -EFAULT;
  2328. if (upackets.n_packets > hpsb_iso_n_ready(fi->iso_handle))
  2329. return -EINVAL;
  2330. /* ensure user-supplied buffer is accessible and big enough */
  2331. if (!access_ok(VERIFY_WRITE, upackets.infos,
  2332. upackets.n_packets *
  2333. sizeof(struct raw1394_iso_packet_info)))
  2334. return -EFAULT;
  2335. /* copy the packet_infos out */
  2336. for (i = 0; i < upackets.n_packets; i++) {
  2337. if (__copy_to_user(&upackets.infos[i],
  2338. &fi->iso_handle->infos[packet],
  2339. sizeof(struct raw1394_iso_packet_info)))
  2340. return -EFAULT;
  2341. packet = (packet + 1) % fi->iso_handle->buf_packets;
  2342. }
  2343. return 0;
  2344. }
  2345. /* copy N packet_infos from user to ringbuffer, and queue them for transmission */
  2346. static int raw1394_iso_send_packets(struct file_info *fi, void __user * uaddr)
  2347. {
  2348. struct raw1394_iso_packets upackets;
  2349. int i, rv;
  2350. if (copy_from_user(&upackets, uaddr, sizeof(upackets)))
  2351. return -EFAULT;
  2352. if (upackets.n_packets >= fi->iso_handle->buf_packets)
  2353. return -EINVAL;
  2354. if (upackets.n_packets >= hpsb_iso_n_ready(fi->iso_handle))
  2355. return -EAGAIN;
  2356. /* ensure user-supplied buffer is accessible and big enough */
  2357. if (!access_ok(VERIFY_READ, upackets.infos,
  2358. upackets.n_packets *
  2359. sizeof(struct raw1394_iso_packet_info)))
  2360. return -EFAULT;
  2361. /* copy the infos structs in and queue the packets */
  2362. for (i = 0; i < upackets.n_packets; i++) {
  2363. struct raw1394_iso_packet_info info;
  2364. if (__copy_from_user(&info, &upackets.infos[i],
  2365. sizeof(struct raw1394_iso_packet_info)))
  2366. return -EFAULT;
  2367. rv = hpsb_iso_xmit_queue_packet(fi->iso_handle, info.offset,
  2368. info.len, info.tag, info.sy);
  2369. if (rv)
  2370. return rv;
  2371. }
  2372. return 0;
  2373. }
  2374. static void raw1394_iso_shutdown(struct file_info *fi)
  2375. {
  2376. if (fi->iso_handle)
  2377. hpsb_iso_shutdown(fi->iso_handle);
  2378. fi->iso_handle = NULL;
  2379. fi->iso_state = RAW1394_ISO_INACTIVE;
  2380. }
  2381. /* mmap the rawiso xmit/recv buffer */
  2382. static int raw1394_mmap(struct file *file, struct vm_area_struct *vma)
  2383. {
  2384. struct file_info *fi = file->private_data;
  2385. if (fi->iso_state == RAW1394_ISO_INACTIVE)
  2386. return -EINVAL;
  2387. return dma_region_mmap(&fi->iso_handle->data_buf, file, vma);
  2388. }
  2389. /* ioctl is only used for rawiso operations */
  2390. static int raw1394_ioctl(struct inode *inode, struct file *file,
  2391. unsigned int cmd, unsigned long arg)
  2392. {
  2393. struct file_info *fi = file->private_data;
  2394. void __user *argp = (void __user *)arg;
  2395. switch (fi->iso_state) {
  2396. case RAW1394_ISO_INACTIVE:
  2397. switch (cmd) {
  2398. case RAW1394_IOC_ISO_XMIT_INIT:
  2399. return raw1394_iso_xmit_init(fi, argp);
  2400. case RAW1394_IOC_ISO_RECV_INIT:
  2401. return raw1394_iso_recv_init(fi, argp);
  2402. default:
  2403. break;
  2404. }
  2405. break;
  2406. case RAW1394_ISO_RECV:
  2407. switch (cmd) {
  2408. case RAW1394_IOC_ISO_RECV_START:{
  2409. /* copy args from user-space */
  2410. int args[3];
  2411. if (copy_from_user
  2412. (&args[0], argp, sizeof(args)))
  2413. return -EFAULT;
  2414. return hpsb_iso_recv_start(fi->iso_handle,
  2415. args[0], args[1],
  2416. args[2]);
  2417. }
  2418. case RAW1394_IOC_ISO_XMIT_RECV_STOP:
  2419. hpsb_iso_stop(fi->iso_handle);
  2420. return 0;
  2421. case RAW1394_IOC_ISO_RECV_LISTEN_CHANNEL:
  2422. return hpsb_iso_recv_listen_channel(fi->iso_handle,
  2423. arg);
  2424. case RAW1394_IOC_ISO_RECV_UNLISTEN_CHANNEL:
  2425. return hpsb_iso_recv_unlisten_channel(fi->iso_handle,
  2426. arg);
  2427. case RAW1394_IOC_ISO_RECV_SET_CHANNEL_MASK:{
  2428. /* copy the u64 from user-space */
  2429. u64 mask;
  2430. if (copy_from_user(&mask, argp, sizeof(mask)))
  2431. return -EFAULT;
  2432. return hpsb_iso_recv_set_channel_mask(fi->
  2433. iso_handle,
  2434. mask);
  2435. }
  2436. case RAW1394_IOC_ISO_GET_STATUS:
  2437. return raw1394_iso_get_status(fi, argp);
  2438. case RAW1394_IOC_ISO_RECV_PACKETS:
  2439. return raw1394_iso_recv_packets(fi, argp);
  2440. case RAW1394_IOC_ISO_RECV_RELEASE_PACKETS:
  2441. return hpsb_iso_recv_release_packets(fi->iso_handle,
  2442. arg);
  2443. case RAW1394_IOC_ISO_RECV_FLUSH:
  2444. return hpsb_iso_recv_flush(fi->iso_handle);
  2445. case RAW1394_IOC_ISO_SHUTDOWN:
  2446. raw1394_iso_shutdown(fi);
  2447. return 0;
  2448. case RAW1394_IOC_ISO_QUEUE_ACTIVITY:
  2449. queue_rawiso_event(fi);
  2450. return 0;
  2451. }
  2452. break;
  2453. case RAW1394_ISO_XMIT:
  2454. switch (cmd) {
  2455. case RAW1394_IOC_ISO_XMIT_START:{
  2456. /* copy two ints from user-space */
  2457. int args[2];
  2458. if (copy_from_user
  2459. (&args[0], argp, sizeof(args)))
  2460. return -EFAULT;
  2461. return hpsb_iso_xmit_start(fi->iso_handle,
  2462. args[0], args[1]);
  2463. }
  2464. case RAW1394_IOC_ISO_XMIT_SYNC:
  2465. return hpsb_iso_xmit_sync(fi->iso_handle);
  2466. case RAW1394_IOC_ISO_XMIT_RECV_STOP:
  2467. hpsb_iso_stop(fi->iso_handle);
  2468. return 0;
  2469. case RAW1394_IOC_ISO_GET_STATUS:
  2470. return raw1394_iso_get_status(fi, argp);
  2471. case RAW1394_IOC_ISO_XMIT_PACKETS:
  2472. return raw1394_iso_send_packets(fi, argp);
  2473. case RAW1394_IOC_ISO_SHUTDOWN:
  2474. raw1394_iso_shutdown(fi);
  2475. return 0;
  2476. case RAW1394_IOC_ISO_QUEUE_ACTIVITY:
  2477. queue_rawiso_event(fi);
  2478. return 0;
  2479. }
  2480. break;
  2481. default:
  2482. break;
  2483. }
  2484. return -EINVAL;
  2485. }
  2486. static unsigned int raw1394_poll(struct file *file, poll_table * pt)
  2487. {
  2488. struct file_info *fi = file->private_data;
  2489. unsigned int mask = POLLOUT | POLLWRNORM;
  2490. unsigned long flags;
  2491. poll_wait(file, &fi->wait_complete, pt);
  2492. spin_lock_irqsave(&fi->reqlists_lock, flags);
  2493. if (!list_empty(&fi->req_complete)) {
  2494. mask |= POLLIN | POLLRDNORM;
  2495. }
  2496. spin_unlock_irqrestore(&fi->reqlists_lock, flags);
  2497. return mask;
  2498. }
  2499. static int raw1394_open(struct inode *inode, struct file *file)
  2500. {
  2501. struct file_info *fi;
  2502. fi = kzalloc(sizeof(*fi), GFP_KERNEL);
  2503. if (!fi)
  2504. return -ENOMEM;
  2505. fi->notification = (u8) RAW1394_NOTIFY_ON; /* busreset notification */
  2506. INIT_LIST_HEAD(&fi->list);
  2507. fi->state = opened;
  2508. INIT_LIST_HEAD(&fi->req_pending);
  2509. INIT_LIST_HEAD(&fi->req_complete);
  2510. spin_lock_init(&fi->reqlists_lock);
  2511. init_waitqueue_head(&fi->wait_complete);
  2512. INIT_LIST_HEAD(&fi->addr_list);
  2513. file->private_data = fi;
  2514. return 0;
  2515. }
  2516. static int raw1394_release(struct inode *inode, struct file *file)
  2517. {
  2518. struct file_info *fi = file->private_data;
  2519. struct list_head *lh;
  2520. struct pending_request *req;
  2521. int i, fail;
  2522. int retval = 0;
  2523. struct list_head *entry;
  2524. struct arm_addr *addr = NULL;
  2525. struct host_info *hi;
  2526. struct file_info *fi_hlp = NULL;
  2527. struct arm_addr *arm_addr = NULL;
  2528. int another_host;
  2529. int csr_mod = 0;
  2530. unsigned long flags;
  2531. if (fi->iso_state != RAW1394_ISO_INACTIVE)
  2532. raw1394_iso_shutdown(fi);
  2533. for (i = 0; i < 64; i++) {
  2534. if (fi->listen_channels & (1ULL << i)) {
  2535. hpsb_unlisten_channel(&raw1394_highlevel, fi->host, i);
  2536. }
  2537. }
  2538. spin_lock_irqsave(&host_info_lock, flags);
  2539. fi->listen_channels = 0;
  2540. fail = 0;
  2541. /* set address-entries invalid */
  2542. while (!list_empty(&fi->addr_list)) {
  2543. another_host = 0;
  2544. lh = fi->addr_list.next;
  2545. addr = list_entry(lh, struct arm_addr, addr_list);
  2546. /* another host with valid address-entry containing
  2547. same addressrange? */
  2548. list_for_each_entry(hi, &host_info_list, list) {
  2549. if (hi->host != fi->host) {
  2550. list_for_each_entry(fi_hlp, &hi->file_info_list,
  2551. list) {
  2552. entry = fi_hlp->addr_list.next;
  2553. while (entry != &(fi_hlp->addr_list)) {
  2554. arm_addr = list_entry(entry, struct
  2555. arm_addr,
  2556. addr_list);
  2557. if (arm_addr->start ==
  2558. addr->start) {
  2559. DBGMSG
  2560. ("raw1394_release: "
  2561. "another host ownes "
  2562. "same addressrange");
  2563. another_host = 1;
  2564. break;
  2565. }
  2566. entry = entry->next;
  2567. }
  2568. if (another_host) {
  2569. break;
  2570. }
  2571. }
  2572. }
  2573. }
  2574. if (!another_host) {
  2575. DBGMSG("raw1394_release: call hpsb_arm_unregister");
  2576. retval =
  2577. hpsb_unregister_addrspace(&raw1394_highlevel,
  2578. fi->host, addr->start);
  2579. if (!retval) {
  2580. ++fail;
  2581. printk(KERN_ERR
  2582. "raw1394_release arm_Unregister failed\n");
  2583. }
  2584. }
  2585. DBGMSG("raw1394_release: delete addr_entry from list");
  2586. list_del(&addr->addr_list);
  2587. vfree(addr->addr_space_buffer);
  2588. kfree(addr);
  2589. } /* while */
  2590. spin_unlock_irqrestore(&host_info_lock, flags);
  2591. if (fail > 0) {
  2592. printk(KERN_ERR "raw1394: during addr_list-release "
  2593. "error(s) occurred \n");
  2594. }
  2595. for (;;) {
  2596. /* This locked section guarantees that neither
  2597. * complete nor pending requests exist once i!=0 */
  2598. spin_lock_irqsave(&fi->reqlists_lock, flags);
  2599. while ((req = __next_complete_req(fi)))
  2600. free_pending_request(req);
  2601. i = list_empty(&fi->req_pending);
  2602. spin_unlock_irqrestore(&fi->reqlists_lock, flags);
  2603. if (i)
  2604. break;
  2605. /*
  2606. * Sleep until more requests can be freed.
  2607. *
  2608. * NB: We call the macro wait_event() with a condition argument
  2609. * with side effect. This is only possible because the side
  2610. * effect does not occur until the condition became true, and
  2611. * wait_event() won't evaluate the condition again after that.
  2612. */
  2613. wait_event(fi->wait_complete, (req = next_complete_req(fi)));
  2614. free_pending_request(req);
  2615. }
  2616. /* Remove any sub-trees left by user space programs */
  2617. for (i = 0; i < RAW1394_MAX_USER_CSR_DIRS; i++) {
  2618. struct csr1212_dentry *dentry;
  2619. if (!fi->csr1212_dirs[i])
  2620. continue;
  2621. for (dentry =
  2622. fi->csr1212_dirs[i]->value.directory.dentries_head; dentry;
  2623. dentry = dentry->next) {
  2624. csr1212_detach_keyval_from_directory(fi->host->csr.rom->
  2625. root_kv,
  2626. dentry->kv);
  2627. }
  2628. csr1212_release_keyval(fi->csr1212_dirs[i]);
  2629. fi->csr1212_dirs[i] = NULL;
  2630. csr_mod = 1;
  2631. }
  2632. if ((csr_mod || fi->cfgrom_upd)
  2633. && hpsb_update_config_rom_image(fi->host) < 0)
  2634. HPSB_ERR
  2635. ("Failed to generate Configuration ROM image for host %d",
  2636. fi->host->id);
  2637. if (fi->state == connected) {
  2638. spin_lock_irqsave(&host_info_lock, flags);
  2639. list_del(&fi->list);
  2640. spin_unlock_irqrestore(&host_info_lock, flags);
  2641. put_device(&fi->host->device);
  2642. }
  2643. kfree(fi);
  2644. return 0;
  2645. }
  2646. /*** HOTPLUG STUFF **********************************************************/
  2647. /*
  2648. * Export information about protocols/devices supported by this driver.
  2649. */
  2650. static struct ieee1394_device_id raw1394_id_table[] = {
  2651. {
  2652. .match_flags = IEEE1394_MATCH_SPECIFIER_ID | IEEE1394_MATCH_VERSION,
  2653. .specifier_id = AVC_UNIT_SPEC_ID_ENTRY & 0xffffff,
  2654. .version = AVC_SW_VERSION_ENTRY & 0xffffff},
  2655. {
  2656. .match_flags = IEEE1394_MATCH_SPECIFIER_ID | IEEE1394_MATCH_VERSION,
  2657. .specifier_id = CAMERA_UNIT_SPEC_ID_ENTRY & 0xffffff,
  2658. .version = CAMERA_SW_VERSION_ENTRY & 0xffffff},
  2659. {
  2660. .match_flags = IEEE1394_MATCH_SPECIFIER_ID | IEEE1394_MATCH_VERSION,
  2661. .specifier_id = CAMERA_UNIT_SPEC_ID_ENTRY & 0xffffff,
  2662. .version = (CAMERA_SW_VERSION_ENTRY + 1) & 0xffffff},
  2663. {
  2664. .match_flags = IEEE1394_MATCH_SPECIFIER_ID | IEEE1394_MATCH_VERSION,
  2665. .specifier_id = CAMERA_UNIT_SPEC_ID_ENTRY & 0xffffff,
  2666. .version = (CAMERA_SW_VERSION_ENTRY + 2) & 0xffffff},
  2667. {}
  2668. };
  2669. MODULE_DEVICE_TABLE(ieee1394, raw1394_id_table);
  2670. static struct hpsb_protocol_driver raw1394_driver = {
  2671. .name = "raw1394",
  2672. .id_table = raw1394_id_table,
  2673. };
  2674. /******************************************************************************/
  2675. static struct hpsb_highlevel raw1394_highlevel = {
  2676. .name = RAW1394_DEVICE_NAME,
  2677. .add_host = add_host,
  2678. .remove_host = remove_host,
  2679. .host_reset = host_reset,
  2680. .iso_receive = iso_receive,
  2681. .fcp_request = fcp_request,
  2682. };
  2683. static struct cdev raw1394_cdev;
  2684. static struct file_operations raw1394_fops = {
  2685. .owner = THIS_MODULE,
  2686. .read = raw1394_read,
  2687. .write = raw1394_write,
  2688. .mmap = raw1394_mmap,
  2689. .ioctl = raw1394_ioctl,
  2690. // .compat_ioctl = ... someone needs to do this
  2691. .poll = raw1394_poll,
  2692. .open = raw1394_open,
  2693. .release = raw1394_release,
  2694. };
  2695. static int __init init_raw1394(void)
  2696. {
  2697. int ret = 0;
  2698. hpsb_register_highlevel(&raw1394_highlevel);
  2699. if (IS_ERR
  2700. (class_device_create
  2701. (hpsb_protocol_class, NULL,
  2702. MKDEV(IEEE1394_MAJOR, IEEE1394_MINOR_BLOCK_RAW1394 * 16), NULL,
  2703. RAW1394_DEVICE_NAME))) {
  2704. ret = -EFAULT;
  2705. goto out_unreg;
  2706. }
  2707. cdev_init(&raw1394_cdev, &raw1394_fops);
  2708. raw1394_cdev.owner = THIS_MODULE;
  2709. kobject_set_name(&raw1394_cdev.kobj, RAW1394_DEVICE_NAME);
  2710. ret = cdev_add(&raw1394_cdev, IEEE1394_RAW1394_DEV, 1);
  2711. if (ret) {
  2712. HPSB_ERR("raw1394 failed to register minor device block");
  2713. goto out_dev;
  2714. }
  2715. HPSB_INFO("raw1394: /dev/%s device initialized", RAW1394_DEVICE_NAME);
  2716. ret = hpsb_register_protocol(&raw1394_driver);
  2717. if (ret) {
  2718. HPSB_ERR("raw1394: failed to register protocol");
  2719. cdev_del(&raw1394_cdev);
  2720. goto out_dev;
  2721. }
  2722. goto out;
  2723. out_dev:
  2724. class_device_destroy(hpsb_protocol_class,
  2725. MKDEV(IEEE1394_MAJOR,
  2726. IEEE1394_MINOR_BLOCK_RAW1394 * 16));
  2727. out_unreg:
  2728. hpsb_unregister_highlevel(&raw1394_highlevel);
  2729. out:
  2730. return ret;
  2731. }
  2732. static void __exit cleanup_raw1394(void)
  2733. {
  2734. class_device_destroy(hpsb_protocol_class,
  2735. MKDEV(IEEE1394_MAJOR,
  2736. IEEE1394_MINOR_BLOCK_RAW1394 * 16));
  2737. cdev_del(&raw1394_cdev);
  2738. hpsb_unregister_highlevel(&raw1394_highlevel);
  2739. hpsb_unregister_protocol(&raw1394_driver);
  2740. }
  2741. module_init(init_raw1394);
  2742. module_exit(cleanup_raw1394);
  2743. MODULE_LICENSE("GPL");