chsc_sch.c 23 KB

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  1. /*
  2. * Driver for s390 chsc subchannels
  3. *
  4. * Copyright IBM Corp. 2008, 2011
  5. *
  6. * Author(s): Cornelia Huck <cornelia.huck@de.ibm.com>
  7. *
  8. */
  9. #include <linux/slab.h>
  10. #include <linux/compat.h>
  11. #include <linux/device.h>
  12. #include <linux/module.h>
  13. #include <linux/uaccess.h>
  14. #include <linux/miscdevice.h>
  15. #include <linux/kernel_stat.h>
  16. #include <asm/compat.h>
  17. #include <asm/cio.h>
  18. #include <asm/chsc.h>
  19. #include <asm/isc.h>
  20. #include "cio.h"
  21. #include "cio_debug.h"
  22. #include "css.h"
  23. #include "chsc_sch.h"
  24. #include "ioasm.h"
  25. static debug_info_t *chsc_debug_msg_id;
  26. static debug_info_t *chsc_debug_log_id;
  27. static struct chsc_request *on_close_request;
  28. static struct chsc_async_area *on_close_chsc_area;
  29. static DEFINE_MUTEX(on_close_mutex);
  30. #define CHSC_MSG(imp, args...) do { \
  31. debug_sprintf_event(chsc_debug_msg_id, imp , ##args); \
  32. } while (0)
  33. #define CHSC_LOG(imp, txt) do { \
  34. debug_text_event(chsc_debug_log_id, imp , txt); \
  35. } while (0)
  36. static void CHSC_LOG_HEX(int level, void *data, int length)
  37. {
  38. while (length > 0) {
  39. debug_event(chsc_debug_log_id, level, data, length);
  40. length -= chsc_debug_log_id->buf_size;
  41. data += chsc_debug_log_id->buf_size;
  42. }
  43. }
  44. MODULE_AUTHOR("IBM Corporation");
  45. MODULE_DESCRIPTION("driver for s390 chsc subchannels");
  46. MODULE_LICENSE("GPL");
  47. static void chsc_subchannel_irq(struct subchannel *sch)
  48. {
  49. struct chsc_private *private = dev_get_drvdata(&sch->dev);
  50. struct chsc_request *request = private->request;
  51. struct irb *irb = this_cpu_ptr(&cio_irb);
  52. CHSC_LOG(4, "irb");
  53. CHSC_LOG_HEX(4, irb, sizeof(*irb));
  54. inc_irq_stat(IRQIO_CSC);
  55. /* Copy irb to provided request and set done. */
  56. if (!request) {
  57. CHSC_MSG(0, "Interrupt on sch 0.%x.%04x with no request\n",
  58. sch->schid.ssid, sch->schid.sch_no);
  59. return;
  60. }
  61. private->request = NULL;
  62. memcpy(&request->irb, irb, sizeof(*irb));
  63. cio_update_schib(sch);
  64. complete(&request->completion);
  65. put_device(&sch->dev);
  66. }
  67. static int chsc_subchannel_probe(struct subchannel *sch)
  68. {
  69. struct chsc_private *private;
  70. int ret;
  71. CHSC_MSG(6, "Detected chsc subchannel 0.%x.%04x\n",
  72. sch->schid.ssid, sch->schid.sch_no);
  73. sch->isc = CHSC_SCH_ISC;
  74. private = kzalloc(sizeof(*private), GFP_KERNEL);
  75. if (!private)
  76. return -ENOMEM;
  77. dev_set_drvdata(&sch->dev, private);
  78. ret = cio_enable_subchannel(sch, (u32)(unsigned long)sch);
  79. if (ret) {
  80. CHSC_MSG(0, "Failed to enable 0.%x.%04x: %d\n",
  81. sch->schid.ssid, sch->schid.sch_no, ret);
  82. dev_set_drvdata(&sch->dev, NULL);
  83. kfree(private);
  84. } else {
  85. if (dev_get_uevent_suppress(&sch->dev)) {
  86. dev_set_uevent_suppress(&sch->dev, 0);
  87. kobject_uevent(&sch->dev.kobj, KOBJ_ADD);
  88. }
  89. }
  90. return ret;
  91. }
  92. static int chsc_subchannel_remove(struct subchannel *sch)
  93. {
  94. struct chsc_private *private;
  95. cio_disable_subchannel(sch);
  96. private = dev_get_drvdata(&sch->dev);
  97. dev_set_drvdata(&sch->dev, NULL);
  98. if (private->request) {
  99. complete(&private->request->completion);
  100. put_device(&sch->dev);
  101. }
  102. kfree(private);
  103. return 0;
  104. }
  105. static void chsc_subchannel_shutdown(struct subchannel *sch)
  106. {
  107. cio_disable_subchannel(sch);
  108. }
  109. static int chsc_subchannel_prepare(struct subchannel *sch)
  110. {
  111. int cc;
  112. struct schib schib;
  113. /*
  114. * Don't allow suspend while the subchannel is not idle
  115. * since we don't have a way to clear the subchannel and
  116. * cannot disable it with a request running.
  117. */
  118. cc = stsch_err(sch->schid, &schib);
  119. if (!cc && scsw_stctl(&schib.scsw))
  120. return -EAGAIN;
  121. return 0;
  122. }
  123. static int chsc_subchannel_freeze(struct subchannel *sch)
  124. {
  125. return cio_disable_subchannel(sch);
  126. }
  127. static int chsc_subchannel_restore(struct subchannel *sch)
  128. {
  129. return cio_enable_subchannel(sch, (u32)(unsigned long)sch);
  130. }
  131. static struct css_device_id chsc_subchannel_ids[] = {
  132. { .match_flags = 0x1, .type =SUBCHANNEL_TYPE_CHSC, },
  133. { /* end of list */ },
  134. };
  135. MODULE_DEVICE_TABLE(css, chsc_subchannel_ids);
  136. static struct css_driver chsc_subchannel_driver = {
  137. .drv = {
  138. .owner = THIS_MODULE,
  139. .name = "chsc_subchannel",
  140. },
  141. .subchannel_type = chsc_subchannel_ids,
  142. .irq = chsc_subchannel_irq,
  143. .probe = chsc_subchannel_probe,
  144. .remove = chsc_subchannel_remove,
  145. .shutdown = chsc_subchannel_shutdown,
  146. .prepare = chsc_subchannel_prepare,
  147. .freeze = chsc_subchannel_freeze,
  148. .thaw = chsc_subchannel_restore,
  149. .restore = chsc_subchannel_restore,
  150. };
  151. static int __init chsc_init_dbfs(void)
  152. {
  153. chsc_debug_msg_id = debug_register("chsc_msg", 8, 1, 4 * sizeof(long));
  154. if (!chsc_debug_msg_id)
  155. goto out;
  156. debug_register_view(chsc_debug_msg_id, &debug_sprintf_view);
  157. debug_set_level(chsc_debug_msg_id, 2);
  158. chsc_debug_log_id = debug_register("chsc_log", 16, 1, 16);
  159. if (!chsc_debug_log_id)
  160. goto out;
  161. debug_register_view(chsc_debug_log_id, &debug_hex_ascii_view);
  162. debug_set_level(chsc_debug_log_id, 2);
  163. return 0;
  164. out:
  165. if (chsc_debug_msg_id)
  166. debug_unregister(chsc_debug_msg_id);
  167. return -ENOMEM;
  168. }
  169. static void chsc_remove_dbfs(void)
  170. {
  171. debug_unregister(chsc_debug_log_id);
  172. debug_unregister(chsc_debug_msg_id);
  173. }
  174. static int __init chsc_init_sch_driver(void)
  175. {
  176. return css_driver_register(&chsc_subchannel_driver);
  177. }
  178. static void chsc_cleanup_sch_driver(void)
  179. {
  180. css_driver_unregister(&chsc_subchannel_driver);
  181. }
  182. static DEFINE_SPINLOCK(chsc_lock);
  183. static int chsc_subchannel_match_next_free(struct device *dev, void *data)
  184. {
  185. struct subchannel *sch = to_subchannel(dev);
  186. return sch->schib.pmcw.ena && !scsw_fctl(&sch->schib.scsw);
  187. }
  188. static struct subchannel *chsc_get_next_subchannel(struct subchannel *sch)
  189. {
  190. struct device *dev;
  191. dev = driver_find_device(&chsc_subchannel_driver.drv,
  192. sch ? &sch->dev : NULL, NULL,
  193. chsc_subchannel_match_next_free);
  194. return dev ? to_subchannel(dev) : NULL;
  195. }
  196. /**
  197. * chsc_async() - try to start a chsc request asynchronously
  198. * @chsc_area: request to be started
  199. * @request: request structure to associate
  200. *
  201. * Tries to start a chsc request on one of the existing chsc subchannels.
  202. * Returns:
  203. * %0 if the request was performed synchronously
  204. * %-EINPROGRESS if the request was successfully started
  205. * %-EBUSY if all chsc subchannels are busy
  206. * %-ENODEV if no chsc subchannels are available
  207. * Context:
  208. * interrupts disabled, chsc_lock held
  209. */
  210. static int chsc_async(struct chsc_async_area *chsc_area,
  211. struct chsc_request *request)
  212. {
  213. int cc;
  214. struct chsc_private *private;
  215. struct subchannel *sch = NULL;
  216. int ret = -ENODEV;
  217. char dbf[10];
  218. chsc_area->header.key = PAGE_DEFAULT_KEY >> 4;
  219. while ((sch = chsc_get_next_subchannel(sch))) {
  220. spin_lock(sch->lock);
  221. private = dev_get_drvdata(&sch->dev);
  222. if (private->request) {
  223. spin_unlock(sch->lock);
  224. ret = -EBUSY;
  225. continue;
  226. }
  227. chsc_area->header.sid = sch->schid;
  228. CHSC_LOG(2, "schid");
  229. CHSC_LOG_HEX(2, &sch->schid, sizeof(sch->schid));
  230. cc = chsc(chsc_area);
  231. snprintf(dbf, sizeof(dbf), "cc:%d", cc);
  232. CHSC_LOG(2, dbf);
  233. switch (cc) {
  234. case 0:
  235. ret = 0;
  236. break;
  237. case 1:
  238. sch->schib.scsw.cmd.fctl |= SCSW_FCTL_START_FUNC;
  239. ret = -EINPROGRESS;
  240. private->request = request;
  241. break;
  242. case 2:
  243. ret = -EBUSY;
  244. break;
  245. default:
  246. ret = -ENODEV;
  247. }
  248. spin_unlock(sch->lock);
  249. CHSC_MSG(2, "chsc on 0.%x.%04x returned cc=%d\n",
  250. sch->schid.ssid, sch->schid.sch_no, cc);
  251. if (ret == -EINPROGRESS)
  252. return -EINPROGRESS;
  253. put_device(&sch->dev);
  254. if (ret == 0)
  255. return 0;
  256. }
  257. return ret;
  258. }
  259. static void chsc_log_command(void *chsc_area)
  260. {
  261. char dbf[10];
  262. snprintf(dbf, sizeof(dbf), "CHSC:%x", ((uint16_t *)chsc_area)[1]);
  263. CHSC_LOG(0, dbf);
  264. CHSC_LOG_HEX(0, chsc_area, 32);
  265. }
  266. static int chsc_examine_irb(struct chsc_request *request)
  267. {
  268. int backed_up;
  269. if (!(scsw_stctl(&request->irb.scsw) & SCSW_STCTL_STATUS_PEND))
  270. return -EIO;
  271. backed_up = scsw_cstat(&request->irb.scsw) & SCHN_STAT_CHAIN_CHECK;
  272. request->irb.scsw.cmd.cstat &= ~SCHN_STAT_CHAIN_CHECK;
  273. if (scsw_cstat(&request->irb.scsw) == 0)
  274. return 0;
  275. if (!backed_up)
  276. return 0;
  277. if (scsw_cstat(&request->irb.scsw) & SCHN_STAT_PROG_CHECK)
  278. return -EIO;
  279. if (scsw_cstat(&request->irb.scsw) & SCHN_STAT_PROT_CHECK)
  280. return -EPERM;
  281. if (scsw_cstat(&request->irb.scsw) & SCHN_STAT_CHN_DATA_CHK)
  282. return -EAGAIN;
  283. if (scsw_cstat(&request->irb.scsw) & SCHN_STAT_CHN_CTRL_CHK)
  284. return -EAGAIN;
  285. return -EIO;
  286. }
  287. static int chsc_ioctl_start(void __user *user_area)
  288. {
  289. struct chsc_request *request;
  290. struct chsc_async_area *chsc_area;
  291. int ret;
  292. char dbf[10];
  293. if (!css_general_characteristics.dynio)
  294. /* It makes no sense to try. */
  295. return -EOPNOTSUPP;
  296. chsc_area = (void *)get_zeroed_page(GFP_DMA | GFP_KERNEL);
  297. if (!chsc_area)
  298. return -ENOMEM;
  299. request = kzalloc(sizeof(*request), GFP_KERNEL);
  300. if (!request) {
  301. ret = -ENOMEM;
  302. goto out_free;
  303. }
  304. init_completion(&request->completion);
  305. if (copy_from_user(chsc_area, user_area, PAGE_SIZE)) {
  306. ret = -EFAULT;
  307. goto out_free;
  308. }
  309. chsc_log_command(chsc_area);
  310. spin_lock_irq(&chsc_lock);
  311. ret = chsc_async(chsc_area, request);
  312. spin_unlock_irq(&chsc_lock);
  313. if (ret == -EINPROGRESS) {
  314. wait_for_completion(&request->completion);
  315. ret = chsc_examine_irb(request);
  316. }
  317. /* copy area back to user */
  318. if (!ret)
  319. if (copy_to_user(user_area, chsc_area, PAGE_SIZE))
  320. ret = -EFAULT;
  321. out_free:
  322. snprintf(dbf, sizeof(dbf), "ret:%d", ret);
  323. CHSC_LOG(0, dbf);
  324. kfree(request);
  325. free_page((unsigned long)chsc_area);
  326. return ret;
  327. }
  328. static int chsc_ioctl_on_close_set(void __user *user_area)
  329. {
  330. char dbf[13];
  331. int ret;
  332. mutex_lock(&on_close_mutex);
  333. if (on_close_chsc_area) {
  334. ret = -EBUSY;
  335. goto out_unlock;
  336. }
  337. on_close_request = kzalloc(sizeof(*on_close_request), GFP_KERNEL);
  338. if (!on_close_request) {
  339. ret = -ENOMEM;
  340. goto out_unlock;
  341. }
  342. on_close_chsc_area = (void *)get_zeroed_page(GFP_DMA | GFP_KERNEL);
  343. if (!on_close_chsc_area) {
  344. ret = -ENOMEM;
  345. goto out_free_request;
  346. }
  347. if (copy_from_user(on_close_chsc_area, user_area, PAGE_SIZE)) {
  348. ret = -EFAULT;
  349. goto out_free_chsc;
  350. }
  351. ret = 0;
  352. goto out_unlock;
  353. out_free_chsc:
  354. free_page((unsigned long)on_close_chsc_area);
  355. on_close_chsc_area = NULL;
  356. out_free_request:
  357. kfree(on_close_request);
  358. on_close_request = NULL;
  359. out_unlock:
  360. mutex_unlock(&on_close_mutex);
  361. snprintf(dbf, sizeof(dbf), "ocsret:%d", ret);
  362. CHSC_LOG(0, dbf);
  363. return ret;
  364. }
  365. static int chsc_ioctl_on_close_remove(void)
  366. {
  367. char dbf[13];
  368. int ret;
  369. mutex_lock(&on_close_mutex);
  370. if (!on_close_chsc_area) {
  371. ret = -ENOENT;
  372. goto out_unlock;
  373. }
  374. free_page((unsigned long)on_close_chsc_area);
  375. on_close_chsc_area = NULL;
  376. kfree(on_close_request);
  377. on_close_request = NULL;
  378. ret = 0;
  379. out_unlock:
  380. mutex_unlock(&on_close_mutex);
  381. snprintf(dbf, sizeof(dbf), "ocrret:%d", ret);
  382. CHSC_LOG(0, dbf);
  383. return ret;
  384. }
  385. static int chsc_ioctl_start_sync(void __user *user_area)
  386. {
  387. struct chsc_sync_area *chsc_area;
  388. int ret, ccode;
  389. chsc_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
  390. if (!chsc_area)
  391. return -ENOMEM;
  392. if (copy_from_user(chsc_area, user_area, PAGE_SIZE)) {
  393. ret = -EFAULT;
  394. goto out_free;
  395. }
  396. if (chsc_area->header.code & 0x4000) {
  397. ret = -EINVAL;
  398. goto out_free;
  399. }
  400. chsc_log_command(chsc_area);
  401. ccode = chsc(chsc_area);
  402. if (ccode != 0) {
  403. ret = -EIO;
  404. goto out_free;
  405. }
  406. if (copy_to_user(user_area, chsc_area, PAGE_SIZE))
  407. ret = -EFAULT;
  408. else
  409. ret = 0;
  410. out_free:
  411. free_page((unsigned long)chsc_area);
  412. return ret;
  413. }
  414. static int chsc_ioctl_info_channel_path(void __user *user_cd)
  415. {
  416. struct chsc_chp_cd *cd;
  417. int ret, ccode;
  418. struct {
  419. struct chsc_header request;
  420. u32 : 2;
  421. u32 m : 1;
  422. u32 : 1;
  423. u32 fmt1 : 4;
  424. u32 cssid : 8;
  425. u32 : 8;
  426. u32 first_chpid : 8;
  427. u32 : 24;
  428. u32 last_chpid : 8;
  429. u32 : 32;
  430. struct chsc_header response;
  431. u8 data[PAGE_SIZE - 20];
  432. } __attribute__ ((packed)) *scpcd_area;
  433. scpcd_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
  434. if (!scpcd_area)
  435. return -ENOMEM;
  436. cd = kzalloc(sizeof(*cd), GFP_KERNEL);
  437. if (!cd) {
  438. ret = -ENOMEM;
  439. goto out_free;
  440. }
  441. if (copy_from_user(cd, user_cd, sizeof(*cd))) {
  442. ret = -EFAULT;
  443. goto out_free;
  444. }
  445. scpcd_area->request.length = 0x0010;
  446. scpcd_area->request.code = 0x0028;
  447. scpcd_area->m = cd->m;
  448. scpcd_area->fmt1 = cd->fmt;
  449. scpcd_area->cssid = cd->chpid.cssid;
  450. scpcd_area->first_chpid = cd->chpid.id;
  451. scpcd_area->last_chpid = cd->chpid.id;
  452. ccode = chsc(scpcd_area);
  453. if (ccode != 0) {
  454. ret = -EIO;
  455. goto out_free;
  456. }
  457. if (scpcd_area->response.code != 0x0001) {
  458. ret = -EIO;
  459. CHSC_MSG(0, "scpcd: response code=%x\n",
  460. scpcd_area->response.code);
  461. goto out_free;
  462. }
  463. memcpy(&cd->cpcb, &scpcd_area->response, scpcd_area->response.length);
  464. if (copy_to_user(user_cd, cd, sizeof(*cd)))
  465. ret = -EFAULT;
  466. else
  467. ret = 0;
  468. out_free:
  469. kfree(cd);
  470. free_page((unsigned long)scpcd_area);
  471. return ret;
  472. }
  473. static int chsc_ioctl_info_cu(void __user *user_cd)
  474. {
  475. struct chsc_cu_cd *cd;
  476. int ret, ccode;
  477. struct {
  478. struct chsc_header request;
  479. u32 : 2;
  480. u32 m : 1;
  481. u32 : 1;
  482. u32 fmt1 : 4;
  483. u32 cssid : 8;
  484. u32 : 8;
  485. u32 first_cun : 8;
  486. u32 : 24;
  487. u32 last_cun : 8;
  488. u32 : 32;
  489. struct chsc_header response;
  490. u8 data[PAGE_SIZE - 20];
  491. } __attribute__ ((packed)) *scucd_area;
  492. scucd_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
  493. if (!scucd_area)
  494. return -ENOMEM;
  495. cd = kzalloc(sizeof(*cd), GFP_KERNEL);
  496. if (!cd) {
  497. ret = -ENOMEM;
  498. goto out_free;
  499. }
  500. if (copy_from_user(cd, user_cd, sizeof(*cd))) {
  501. ret = -EFAULT;
  502. goto out_free;
  503. }
  504. scucd_area->request.length = 0x0010;
  505. scucd_area->request.code = 0x0028;
  506. scucd_area->m = cd->m;
  507. scucd_area->fmt1 = cd->fmt;
  508. scucd_area->cssid = cd->cssid;
  509. scucd_area->first_cun = cd->cun;
  510. scucd_area->last_cun = cd->cun;
  511. ccode = chsc(scucd_area);
  512. if (ccode != 0) {
  513. ret = -EIO;
  514. goto out_free;
  515. }
  516. if (scucd_area->response.code != 0x0001) {
  517. ret = -EIO;
  518. CHSC_MSG(0, "scucd: response code=%x\n",
  519. scucd_area->response.code);
  520. goto out_free;
  521. }
  522. memcpy(&cd->cucb, &scucd_area->response, scucd_area->response.length);
  523. if (copy_to_user(user_cd, cd, sizeof(*cd)))
  524. ret = -EFAULT;
  525. else
  526. ret = 0;
  527. out_free:
  528. kfree(cd);
  529. free_page((unsigned long)scucd_area);
  530. return ret;
  531. }
  532. static int chsc_ioctl_info_sch_cu(void __user *user_cud)
  533. {
  534. struct chsc_sch_cud *cud;
  535. int ret, ccode;
  536. struct {
  537. struct chsc_header request;
  538. u32 : 2;
  539. u32 m : 1;
  540. u32 : 5;
  541. u32 fmt1 : 4;
  542. u32 : 2;
  543. u32 ssid : 2;
  544. u32 first_sch : 16;
  545. u32 : 8;
  546. u32 cssid : 8;
  547. u32 last_sch : 16;
  548. u32 : 32;
  549. struct chsc_header response;
  550. u8 data[PAGE_SIZE - 20];
  551. } __attribute__ ((packed)) *sscud_area;
  552. sscud_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
  553. if (!sscud_area)
  554. return -ENOMEM;
  555. cud = kzalloc(sizeof(*cud), GFP_KERNEL);
  556. if (!cud) {
  557. ret = -ENOMEM;
  558. goto out_free;
  559. }
  560. if (copy_from_user(cud, user_cud, sizeof(*cud))) {
  561. ret = -EFAULT;
  562. goto out_free;
  563. }
  564. sscud_area->request.length = 0x0010;
  565. sscud_area->request.code = 0x0006;
  566. sscud_area->m = cud->schid.m;
  567. sscud_area->fmt1 = cud->fmt;
  568. sscud_area->ssid = cud->schid.ssid;
  569. sscud_area->first_sch = cud->schid.sch_no;
  570. sscud_area->cssid = cud->schid.cssid;
  571. sscud_area->last_sch = cud->schid.sch_no;
  572. ccode = chsc(sscud_area);
  573. if (ccode != 0) {
  574. ret = -EIO;
  575. goto out_free;
  576. }
  577. if (sscud_area->response.code != 0x0001) {
  578. ret = -EIO;
  579. CHSC_MSG(0, "sscud: response code=%x\n",
  580. sscud_area->response.code);
  581. goto out_free;
  582. }
  583. memcpy(&cud->scub, &sscud_area->response, sscud_area->response.length);
  584. if (copy_to_user(user_cud, cud, sizeof(*cud)))
  585. ret = -EFAULT;
  586. else
  587. ret = 0;
  588. out_free:
  589. kfree(cud);
  590. free_page((unsigned long)sscud_area);
  591. return ret;
  592. }
  593. static int chsc_ioctl_conf_info(void __user *user_ci)
  594. {
  595. struct chsc_conf_info *ci;
  596. int ret, ccode;
  597. struct {
  598. struct chsc_header request;
  599. u32 : 2;
  600. u32 m : 1;
  601. u32 : 1;
  602. u32 fmt1 : 4;
  603. u32 cssid : 8;
  604. u32 : 6;
  605. u32 ssid : 2;
  606. u32 : 8;
  607. u64 : 64;
  608. struct chsc_header response;
  609. u8 data[PAGE_SIZE - 20];
  610. } __attribute__ ((packed)) *sci_area;
  611. sci_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
  612. if (!sci_area)
  613. return -ENOMEM;
  614. ci = kzalloc(sizeof(*ci), GFP_KERNEL);
  615. if (!ci) {
  616. ret = -ENOMEM;
  617. goto out_free;
  618. }
  619. if (copy_from_user(ci, user_ci, sizeof(*ci))) {
  620. ret = -EFAULT;
  621. goto out_free;
  622. }
  623. sci_area->request.length = 0x0010;
  624. sci_area->request.code = 0x0012;
  625. sci_area->m = ci->id.m;
  626. sci_area->fmt1 = ci->fmt;
  627. sci_area->cssid = ci->id.cssid;
  628. sci_area->ssid = ci->id.ssid;
  629. ccode = chsc(sci_area);
  630. if (ccode != 0) {
  631. ret = -EIO;
  632. goto out_free;
  633. }
  634. if (sci_area->response.code != 0x0001) {
  635. ret = -EIO;
  636. CHSC_MSG(0, "sci: response code=%x\n",
  637. sci_area->response.code);
  638. goto out_free;
  639. }
  640. memcpy(&ci->scid, &sci_area->response, sci_area->response.length);
  641. if (copy_to_user(user_ci, ci, sizeof(*ci)))
  642. ret = -EFAULT;
  643. else
  644. ret = 0;
  645. out_free:
  646. kfree(ci);
  647. free_page((unsigned long)sci_area);
  648. return ret;
  649. }
  650. static int chsc_ioctl_conf_comp_list(void __user *user_ccl)
  651. {
  652. struct chsc_comp_list *ccl;
  653. int ret, ccode;
  654. struct {
  655. struct chsc_header request;
  656. u32 ctype : 8;
  657. u32 : 4;
  658. u32 fmt : 4;
  659. u32 : 16;
  660. u64 : 64;
  661. u32 list_parm[2];
  662. u64 : 64;
  663. struct chsc_header response;
  664. u8 data[PAGE_SIZE - 36];
  665. } __attribute__ ((packed)) *sccl_area;
  666. struct {
  667. u32 m : 1;
  668. u32 : 31;
  669. u32 cssid : 8;
  670. u32 : 16;
  671. u32 chpid : 8;
  672. } __attribute__ ((packed)) *chpid_parm;
  673. struct {
  674. u32 f_cssid : 8;
  675. u32 l_cssid : 8;
  676. u32 : 16;
  677. u32 res;
  678. } __attribute__ ((packed)) *cssids_parm;
  679. sccl_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
  680. if (!sccl_area)
  681. return -ENOMEM;
  682. ccl = kzalloc(sizeof(*ccl), GFP_KERNEL);
  683. if (!ccl) {
  684. ret = -ENOMEM;
  685. goto out_free;
  686. }
  687. if (copy_from_user(ccl, user_ccl, sizeof(*ccl))) {
  688. ret = -EFAULT;
  689. goto out_free;
  690. }
  691. sccl_area->request.length = 0x0020;
  692. sccl_area->request.code = 0x0030;
  693. sccl_area->fmt = ccl->req.fmt;
  694. sccl_area->ctype = ccl->req.ctype;
  695. switch (sccl_area->ctype) {
  696. case CCL_CU_ON_CHP:
  697. case CCL_IOP_CHP:
  698. chpid_parm = (void *)&sccl_area->list_parm;
  699. chpid_parm->m = ccl->req.chpid.m;
  700. chpid_parm->cssid = ccl->req.chpid.chp.cssid;
  701. chpid_parm->chpid = ccl->req.chpid.chp.id;
  702. break;
  703. case CCL_CSS_IMG:
  704. case CCL_CSS_IMG_CONF_CHAR:
  705. cssids_parm = (void *)&sccl_area->list_parm;
  706. cssids_parm->f_cssid = ccl->req.cssids.f_cssid;
  707. cssids_parm->l_cssid = ccl->req.cssids.l_cssid;
  708. break;
  709. }
  710. ccode = chsc(sccl_area);
  711. if (ccode != 0) {
  712. ret = -EIO;
  713. goto out_free;
  714. }
  715. if (sccl_area->response.code != 0x0001) {
  716. ret = -EIO;
  717. CHSC_MSG(0, "sccl: response code=%x\n",
  718. sccl_area->response.code);
  719. goto out_free;
  720. }
  721. memcpy(&ccl->sccl, &sccl_area->response, sccl_area->response.length);
  722. if (copy_to_user(user_ccl, ccl, sizeof(*ccl)))
  723. ret = -EFAULT;
  724. else
  725. ret = 0;
  726. out_free:
  727. kfree(ccl);
  728. free_page((unsigned long)sccl_area);
  729. return ret;
  730. }
  731. static int chsc_ioctl_chpd(void __user *user_chpd)
  732. {
  733. struct chsc_scpd *scpd_area;
  734. struct chsc_cpd_info *chpd;
  735. int ret;
  736. chpd = kzalloc(sizeof(*chpd), GFP_KERNEL);
  737. scpd_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
  738. if (!scpd_area || !chpd) {
  739. ret = -ENOMEM;
  740. goto out_free;
  741. }
  742. if (copy_from_user(chpd, user_chpd, sizeof(*chpd))) {
  743. ret = -EFAULT;
  744. goto out_free;
  745. }
  746. ret = chsc_determine_channel_path_desc(chpd->chpid, chpd->fmt,
  747. chpd->rfmt, chpd->c, chpd->m,
  748. scpd_area);
  749. if (ret)
  750. goto out_free;
  751. memcpy(&chpd->chpdb, &scpd_area->response, scpd_area->response.length);
  752. if (copy_to_user(user_chpd, chpd, sizeof(*chpd)))
  753. ret = -EFAULT;
  754. out_free:
  755. kfree(chpd);
  756. free_page((unsigned long)scpd_area);
  757. return ret;
  758. }
  759. static int chsc_ioctl_dcal(void __user *user_dcal)
  760. {
  761. struct chsc_dcal *dcal;
  762. int ret, ccode;
  763. struct {
  764. struct chsc_header request;
  765. u32 atype : 8;
  766. u32 : 4;
  767. u32 fmt : 4;
  768. u32 : 16;
  769. u32 res0[2];
  770. u32 list_parm[2];
  771. u32 res1[2];
  772. struct chsc_header response;
  773. u8 data[PAGE_SIZE - 36];
  774. } __attribute__ ((packed)) *sdcal_area;
  775. sdcal_area = (void *)get_zeroed_page(GFP_KERNEL | GFP_DMA);
  776. if (!sdcal_area)
  777. return -ENOMEM;
  778. dcal = kzalloc(sizeof(*dcal), GFP_KERNEL);
  779. if (!dcal) {
  780. ret = -ENOMEM;
  781. goto out_free;
  782. }
  783. if (copy_from_user(dcal, user_dcal, sizeof(*dcal))) {
  784. ret = -EFAULT;
  785. goto out_free;
  786. }
  787. sdcal_area->request.length = 0x0020;
  788. sdcal_area->request.code = 0x0034;
  789. sdcal_area->atype = dcal->req.atype;
  790. sdcal_area->fmt = dcal->req.fmt;
  791. memcpy(&sdcal_area->list_parm, &dcal->req.list_parm,
  792. sizeof(sdcal_area->list_parm));
  793. ccode = chsc(sdcal_area);
  794. if (ccode != 0) {
  795. ret = -EIO;
  796. goto out_free;
  797. }
  798. if (sdcal_area->response.code != 0x0001) {
  799. ret = -EIO;
  800. CHSC_MSG(0, "sdcal: response code=%x\n",
  801. sdcal_area->response.code);
  802. goto out_free;
  803. }
  804. memcpy(&dcal->sdcal, &sdcal_area->response,
  805. sdcal_area->response.length);
  806. if (copy_to_user(user_dcal, dcal, sizeof(*dcal)))
  807. ret = -EFAULT;
  808. else
  809. ret = 0;
  810. out_free:
  811. kfree(dcal);
  812. free_page((unsigned long)sdcal_area);
  813. return ret;
  814. }
  815. static long chsc_ioctl(struct file *filp, unsigned int cmd,
  816. unsigned long arg)
  817. {
  818. void __user *argp;
  819. CHSC_MSG(2, "chsc_ioctl called, cmd=%x\n", cmd);
  820. if (is_compat_task())
  821. argp = compat_ptr(arg);
  822. else
  823. argp = (void __user *)arg;
  824. switch (cmd) {
  825. case CHSC_START:
  826. return chsc_ioctl_start(argp);
  827. case CHSC_START_SYNC:
  828. return chsc_ioctl_start_sync(argp);
  829. case CHSC_INFO_CHANNEL_PATH:
  830. return chsc_ioctl_info_channel_path(argp);
  831. case CHSC_INFO_CU:
  832. return chsc_ioctl_info_cu(argp);
  833. case CHSC_INFO_SCH_CU:
  834. return chsc_ioctl_info_sch_cu(argp);
  835. case CHSC_INFO_CI:
  836. return chsc_ioctl_conf_info(argp);
  837. case CHSC_INFO_CCL:
  838. return chsc_ioctl_conf_comp_list(argp);
  839. case CHSC_INFO_CPD:
  840. return chsc_ioctl_chpd(argp);
  841. case CHSC_INFO_DCAL:
  842. return chsc_ioctl_dcal(argp);
  843. case CHSC_ON_CLOSE_SET:
  844. return chsc_ioctl_on_close_set(argp);
  845. case CHSC_ON_CLOSE_REMOVE:
  846. return chsc_ioctl_on_close_remove();
  847. default: /* unknown ioctl number */
  848. return -ENOIOCTLCMD;
  849. }
  850. }
  851. static atomic_t chsc_ready_for_use = ATOMIC_INIT(1);
  852. static int chsc_open(struct inode *inode, struct file *file)
  853. {
  854. if (!atomic_dec_and_test(&chsc_ready_for_use)) {
  855. atomic_inc(&chsc_ready_for_use);
  856. return -EBUSY;
  857. }
  858. return nonseekable_open(inode, file);
  859. }
  860. static int chsc_release(struct inode *inode, struct file *filp)
  861. {
  862. char dbf[13];
  863. int ret;
  864. mutex_lock(&on_close_mutex);
  865. if (!on_close_chsc_area)
  866. goto out_unlock;
  867. init_completion(&on_close_request->completion);
  868. CHSC_LOG(0, "on_close");
  869. chsc_log_command(on_close_chsc_area);
  870. spin_lock_irq(&chsc_lock);
  871. ret = chsc_async(on_close_chsc_area, on_close_request);
  872. spin_unlock_irq(&chsc_lock);
  873. if (ret == -EINPROGRESS) {
  874. wait_for_completion(&on_close_request->completion);
  875. ret = chsc_examine_irb(on_close_request);
  876. }
  877. snprintf(dbf, sizeof(dbf), "relret:%d", ret);
  878. CHSC_LOG(0, dbf);
  879. free_page((unsigned long)on_close_chsc_area);
  880. on_close_chsc_area = NULL;
  881. kfree(on_close_request);
  882. on_close_request = NULL;
  883. out_unlock:
  884. mutex_unlock(&on_close_mutex);
  885. atomic_inc(&chsc_ready_for_use);
  886. return 0;
  887. }
  888. static const struct file_operations chsc_fops = {
  889. .owner = THIS_MODULE,
  890. .open = chsc_open,
  891. .release = chsc_release,
  892. .unlocked_ioctl = chsc_ioctl,
  893. .compat_ioctl = chsc_ioctl,
  894. .llseek = no_llseek,
  895. };
  896. static struct miscdevice chsc_misc_device = {
  897. .minor = MISC_DYNAMIC_MINOR,
  898. .name = "chsc",
  899. .fops = &chsc_fops,
  900. };
  901. static int __init chsc_misc_init(void)
  902. {
  903. return misc_register(&chsc_misc_device);
  904. }
  905. static void chsc_misc_cleanup(void)
  906. {
  907. misc_deregister(&chsc_misc_device);
  908. }
  909. static int __init chsc_sch_init(void)
  910. {
  911. int ret;
  912. ret = chsc_init_dbfs();
  913. if (ret)
  914. return ret;
  915. isc_register(CHSC_SCH_ISC);
  916. ret = chsc_init_sch_driver();
  917. if (ret)
  918. goto out_dbf;
  919. ret = chsc_misc_init();
  920. if (ret)
  921. goto out_driver;
  922. return ret;
  923. out_driver:
  924. chsc_cleanup_sch_driver();
  925. out_dbf:
  926. isc_unregister(CHSC_SCH_ISC);
  927. chsc_remove_dbfs();
  928. return ret;
  929. }
  930. static void __exit chsc_sch_exit(void)
  931. {
  932. chsc_misc_cleanup();
  933. chsc_cleanup_sch_driver();
  934. isc_unregister(CHSC_SCH_ISC);
  935. chsc_remove_dbfs();
  936. }
  937. module_init(chsc_sch_init);
  938. module_exit(chsc_sch_exit);