smscoreapi.c 42 KB

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  1. /*
  2. * Siano core API module
  3. *
  4. * This file contains implementation for the interface to sms core component
  5. *
  6. * author: Uri Shkolnik
  7. *
  8. * Copyright (c), 2005-2008 Siano Mobile Silicon, Inc.
  9. *
  10. * This program is free software; you can redistribute it and/or modify
  11. * it under the terms of the GNU General Public License version 2 as
  12. * published by the Free Software Foundation;
  13. *
  14. * Software distributed under the License is distributed on an "AS IS"
  15. * basis, WITHOUT WARRANTY OF ANY KIND, either express or implied.
  16. *
  17. * See the GNU General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program; if not, write to the Free Software
  21. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  22. */
  23. #include <linux/kernel.h>
  24. #include <linux/init.h>
  25. #include <linux/module.h>
  26. #include <linux/moduleparam.h>
  27. #include <linux/dma-mapping.h>
  28. #include <linux/delay.h>
  29. #include <linux/io.h>
  30. #include <linux/firmware.h>
  31. #include <linux/wait.h>
  32. #include <asm/byteorder.h>
  33. #include "smscoreapi.h"
  34. #include "sms-cards.h"
  35. #include "smsir.h"
  36. #include "smsendian.h"
  37. static int sms_dbg;
  38. module_param_named(debug, sms_dbg, int, 0644);
  39. MODULE_PARM_DESC(debug, "set debug level (info=1, adv=2 (or-able))");
  40. struct smscore_device_notifyee_t {
  41. struct list_head entry;
  42. hotplug_t hotplug;
  43. };
  44. struct smscore_idlist_t {
  45. struct list_head entry;
  46. int id;
  47. int data_type;
  48. };
  49. struct smscore_client_t {
  50. struct list_head entry;
  51. struct smscore_device_t *coredev;
  52. void *context;
  53. struct list_head idlist;
  54. onresponse_t onresponse_handler;
  55. onremove_t onremove_handler;
  56. };
  57. void smscore_set_board_id(struct smscore_device_t *core, int id)
  58. {
  59. core->board_id = id;
  60. }
  61. int smscore_led_state(struct smscore_device_t *core, int led)
  62. {
  63. if (led >= 0)
  64. core->led_state = led;
  65. return core->led_state;
  66. }
  67. EXPORT_SYMBOL_GPL(smscore_set_board_id);
  68. int smscore_get_board_id(struct smscore_device_t *core)
  69. {
  70. return core->board_id;
  71. }
  72. EXPORT_SYMBOL_GPL(smscore_get_board_id);
  73. struct smscore_registry_entry_t {
  74. struct list_head entry;
  75. char devpath[32];
  76. int mode;
  77. enum sms_device_type_st type;
  78. };
  79. static struct list_head g_smscore_notifyees;
  80. static struct list_head g_smscore_devices;
  81. static struct mutex g_smscore_deviceslock;
  82. static struct list_head g_smscore_registry;
  83. static struct mutex g_smscore_registrylock;
  84. static int default_mode = 4;
  85. module_param(default_mode, int, 0644);
  86. MODULE_PARM_DESC(default_mode, "default firmware id (device mode)");
  87. static struct smscore_registry_entry_t *smscore_find_registry(char *devpath)
  88. {
  89. struct smscore_registry_entry_t *entry;
  90. struct list_head *next;
  91. kmutex_lock(&g_smscore_registrylock);
  92. for (next = g_smscore_registry.next;
  93. next != &g_smscore_registry;
  94. next = next->next) {
  95. entry = (struct smscore_registry_entry_t *) next;
  96. if (!strcmp(entry->devpath, devpath)) {
  97. kmutex_unlock(&g_smscore_registrylock);
  98. return entry;
  99. }
  100. }
  101. entry = (struct smscore_registry_entry_t *)
  102. kmalloc(sizeof(struct smscore_registry_entry_t),
  103. GFP_KERNEL);
  104. if (entry) {
  105. entry->mode = default_mode;
  106. strcpy(entry->devpath, devpath);
  107. list_add(&entry->entry, &g_smscore_registry);
  108. } else
  109. sms_err("failed to create smscore_registry.");
  110. kmutex_unlock(&g_smscore_registrylock);
  111. return entry;
  112. }
  113. int smscore_registry_getmode(char *devpath)
  114. {
  115. struct smscore_registry_entry_t *entry;
  116. entry = smscore_find_registry(devpath);
  117. if (entry)
  118. return entry->mode;
  119. else
  120. sms_err("No registry found.");
  121. return default_mode;
  122. }
  123. EXPORT_SYMBOL_GPL(smscore_registry_getmode);
  124. static enum sms_device_type_st smscore_registry_gettype(char *devpath)
  125. {
  126. struct smscore_registry_entry_t *entry;
  127. entry = smscore_find_registry(devpath);
  128. if (entry)
  129. return entry->type;
  130. else
  131. sms_err("No registry found.");
  132. return -1;
  133. }
  134. void smscore_registry_setmode(char *devpath, int mode)
  135. {
  136. struct smscore_registry_entry_t *entry;
  137. entry = smscore_find_registry(devpath);
  138. if (entry)
  139. entry->mode = mode;
  140. else
  141. sms_err("No registry found.");
  142. }
  143. static void smscore_registry_settype(char *devpath,
  144. enum sms_device_type_st type)
  145. {
  146. struct smscore_registry_entry_t *entry;
  147. entry = smscore_find_registry(devpath);
  148. if (entry)
  149. entry->type = type;
  150. else
  151. sms_err("No registry found.");
  152. }
  153. static void list_add_locked(struct list_head *new, struct list_head *head,
  154. spinlock_t *lock)
  155. {
  156. unsigned long flags;
  157. spin_lock_irqsave(lock, flags);
  158. list_add(new, head);
  159. spin_unlock_irqrestore(lock, flags);
  160. }
  161. /**
  162. * register a client callback that called when device plugged in/unplugged
  163. * NOTE: if devices exist callback is called immediately for each device
  164. *
  165. * @param hotplug callback
  166. *
  167. * @return 0 on success, <0 on error.
  168. */
  169. int smscore_register_hotplug(hotplug_t hotplug)
  170. {
  171. struct smscore_device_notifyee_t *notifyee;
  172. struct list_head *next, *first;
  173. int rc = 0;
  174. kmutex_lock(&g_smscore_deviceslock);
  175. notifyee = kmalloc(sizeof(struct smscore_device_notifyee_t),
  176. GFP_KERNEL);
  177. if (notifyee) {
  178. /* now notify callback about existing devices */
  179. first = &g_smscore_devices;
  180. for (next = first->next;
  181. next != first && !rc;
  182. next = next->next) {
  183. struct smscore_device_t *coredev =
  184. (struct smscore_device_t *) next;
  185. rc = hotplug(coredev, coredev->device, 1);
  186. }
  187. if (rc >= 0) {
  188. notifyee->hotplug = hotplug;
  189. list_add(&notifyee->entry, &g_smscore_notifyees);
  190. } else
  191. kfree(notifyee);
  192. } else
  193. rc = -ENOMEM;
  194. kmutex_unlock(&g_smscore_deviceslock);
  195. return rc;
  196. }
  197. EXPORT_SYMBOL_GPL(smscore_register_hotplug);
  198. /**
  199. * unregister a client callback that called when device plugged in/unplugged
  200. *
  201. * @param hotplug callback
  202. *
  203. */
  204. void smscore_unregister_hotplug(hotplug_t hotplug)
  205. {
  206. struct list_head *next, *first;
  207. kmutex_lock(&g_smscore_deviceslock);
  208. first = &g_smscore_notifyees;
  209. for (next = first->next; next != first;) {
  210. struct smscore_device_notifyee_t *notifyee =
  211. (struct smscore_device_notifyee_t *) next;
  212. next = next->next;
  213. if (notifyee->hotplug == hotplug) {
  214. list_del(&notifyee->entry);
  215. kfree(notifyee);
  216. }
  217. }
  218. kmutex_unlock(&g_smscore_deviceslock);
  219. }
  220. EXPORT_SYMBOL_GPL(smscore_unregister_hotplug);
  221. static void smscore_notify_clients(struct smscore_device_t *coredev)
  222. {
  223. struct smscore_client_t *client;
  224. /* the client must call smscore_unregister_client from remove handler */
  225. while (!list_empty(&coredev->clients)) {
  226. client = (struct smscore_client_t *) coredev->clients.next;
  227. client->onremove_handler(client->context);
  228. }
  229. }
  230. static int smscore_notify_callbacks(struct smscore_device_t *coredev,
  231. struct device *device, int arrival)
  232. {
  233. struct list_head *next, *first;
  234. int rc = 0;
  235. /* note: must be called under g_deviceslock */
  236. first = &g_smscore_notifyees;
  237. for (next = first->next; next != first; next = next->next) {
  238. rc = ((struct smscore_device_notifyee_t *) next)->
  239. hotplug(coredev, device, arrival);
  240. if (rc < 0)
  241. break;
  242. }
  243. return rc;
  244. }
  245. static struct
  246. smscore_buffer_t *smscore_createbuffer(u8 *buffer, void *common_buffer,
  247. dma_addr_t common_buffer_phys)
  248. {
  249. struct smscore_buffer_t *cb =
  250. kmalloc(sizeof(struct smscore_buffer_t), GFP_KERNEL);
  251. if (!cb) {
  252. sms_info("kmalloc(...) failed");
  253. return NULL;
  254. }
  255. cb->p = buffer;
  256. cb->offset_in_common = buffer - (u8 *) common_buffer;
  257. cb->phys = common_buffer_phys + cb->offset_in_common;
  258. return cb;
  259. }
  260. /**
  261. * creates coredev object for a device, prepares buffers,
  262. * creates buffer mappings, notifies registered hotplugs about new device.
  263. *
  264. * @param params device pointer to struct with device specific parameters
  265. * and handlers
  266. * @param coredev pointer to a value that receives created coredev object
  267. *
  268. * @return 0 on success, <0 on error.
  269. */
  270. int smscore_register_device(struct smsdevice_params_t *params,
  271. struct smscore_device_t **coredev)
  272. {
  273. struct smscore_device_t *dev;
  274. u8 *buffer;
  275. dev = kzalloc(sizeof(struct smscore_device_t), GFP_KERNEL);
  276. if (!dev) {
  277. sms_info("kzalloc(...) failed");
  278. return -ENOMEM;
  279. }
  280. /* init list entry so it could be safe in smscore_unregister_device */
  281. INIT_LIST_HEAD(&dev->entry);
  282. /* init queues */
  283. INIT_LIST_HEAD(&dev->clients);
  284. INIT_LIST_HEAD(&dev->buffers);
  285. /* init locks */
  286. spin_lock_init(&dev->clientslock);
  287. spin_lock_init(&dev->bufferslock);
  288. /* init completion events */
  289. init_completion(&dev->version_ex_done);
  290. init_completion(&dev->data_download_done);
  291. init_completion(&dev->trigger_done);
  292. init_completion(&dev->init_device_done);
  293. init_completion(&dev->reload_start_done);
  294. init_completion(&dev->resume_done);
  295. init_completion(&dev->gpio_configuration_done);
  296. init_completion(&dev->gpio_set_level_done);
  297. init_completion(&dev->gpio_get_level_done);
  298. init_completion(&dev->ir_init_done);
  299. /* Buffer management */
  300. init_waitqueue_head(&dev->buffer_mng_waitq);
  301. /* alloc common buffer */
  302. dev->common_buffer_size = params->buffer_size * params->num_buffers;
  303. dev->common_buffer = dma_alloc_coherent(NULL, dev->common_buffer_size,
  304. &dev->common_buffer_phys,
  305. GFP_KERNEL | GFP_DMA);
  306. if (!dev->common_buffer) {
  307. smscore_unregister_device(dev);
  308. return -ENOMEM;
  309. }
  310. /* prepare dma buffers */
  311. for (buffer = dev->common_buffer;
  312. dev->num_buffers < params->num_buffers;
  313. dev->num_buffers++, buffer += params->buffer_size) {
  314. struct smscore_buffer_t *cb =
  315. smscore_createbuffer(buffer, dev->common_buffer,
  316. dev->common_buffer_phys);
  317. if (!cb) {
  318. smscore_unregister_device(dev);
  319. return -ENOMEM;
  320. }
  321. smscore_putbuffer(dev, cb);
  322. }
  323. sms_info("allocated %d buffers", dev->num_buffers);
  324. dev->mode = DEVICE_MODE_NONE;
  325. dev->context = params->context;
  326. dev->device = params->device;
  327. dev->setmode_handler = params->setmode_handler;
  328. dev->detectmode_handler = params->detectmode_handler;
  329. dev->sendrequest_handler = params->sendrequest_handler;
  330. dev->preload_handler = params->preload_handler;
  331. dev->postload_handler = params->postload_handler;
  332. dev->device_flags = params->flags;
  333. strcpy(dev->devpath, params->devpath);
  334. smscore_registry_settype(dev->devpath, params->device_type);
  335. /* add device to devices list */
  336. kmutex_lock(&g_smscore_deviceslock);
  337. list_add(&dev->entry, &g_smscore_devices);
  338. kmutex_unlock(&g_smscore_deviceslock);
  339. *coredev = dev;
  340. sms_info("device %p created", dev);
  341. return 0;
  342. }
  343. EXPORT_SYMBOL_GPL(smscore_register_device);
  344. static int smscore_sendrequest_and_wait(struct smscore_device_t *coredev,
  345. void *buffer, size_t size, struct completion *completion) {
  346. int rc = coredev->sendrequest_handler(coredev->context, buffer, size);
  347. if (rc < 0) {
  348. sms_info("sendrequest returned error %d", rc);
  349. return rc;
  350. }
  351. return wait_for_completion_timeout(completion,
  352. msecs_to_jiffies(SMS_PROTOCOL_MAX_RAOUNDTRIP_MS)) ?
  353. 0 : -ETIME;
  354. }
  355. /**
  356. * Starts & enables IR operations
  357. *
  358. * @return 0 on success, < 0 on error.
  359. */
  360. static int smscore_init_ir(struct smscore_device_t *coredev)
  361. {
  362. int ir_io;
  363. int rc;
  364. void *buffer;
  365. coredev->ir.input_dev = NULL;
  366. ir_io = sms_get_board(smscore_get_board_id(coredev))->board_cfg.ir;
  367. if (ir_io) {/* only if IR port exist we use IR sub-module */
  368. sms_info("IR loading");
  369. rc = sms_ir_init(coredev);
  370. if (rc != 0)
  371. sms_err("Error initialization DTV IR sub-module");
  372. else {
  373. buffer = kmalloc(sizeof(struct SmsMsgData_ST2) +
  374. SMS_DMA_ALIGNMENT,
  375. GFP_KERNEL | GFP_DMA);
  376. if (buffer) {
  377. struct SmsMsgData_ST2 *msg =
  378. (struct SmsMsgData_ST2 *)
  379. SMS_ALIGN_ADDRESS(buffer);
  380. SMS_INIT_MSG(&msg->xMsgHeader,
  381. MSG_SMS_START_IR_REQ,
  382. sizeof(struct SmsMsgData_ST2));
  383. msg->msgData[0] = coredev->ir.controller;
  384. msg->msgData[1] = coredev->ir.timeout;
  385. smsendian_handle_tx_message(
  386. (struct SmsMsgHdr_ST2 *)msg);
  387. rc = smscore_sendrequest_and_wait(coredev, msg,
  388. msg->xMsgHeader. msgLength,
  389. &coredev->ir_init_done);
  390. kfree(buffer);
  391. } else
  392. sms_err
  393. ("Sending IR initialization message failed");
  394. }
  395. } else
  396. sms_info("IR port has not been detected");
  397. return 0;
  398. }
  399. /**
  400. * sets initial device mode and notifies client hotplugs that device is ready
  401. *
  402. * @param coredev pointer to a coredev object returned by
  403. * smscore_register_device
  404. *
  405. * @return 0 on success, <0 on error.
  406. */
  407. int smscore_start_device(struct smscore_device_t *coredev)
  408. {
  409. int rc = smscore_set_device_mode(
  410. coredev, smscore_registry_getmode(coredev->devpath));
  411. if (rc < 0) {
  412. sms_info("set device mode faile , rc %d", rc);
  413. return rc;
  414. }
  415. kmutex_lock(&g_smscore_deviceslock);
  416. rc = smscore_notify_callbacks(coredev, coredev->device, 1);
  417. smscore_init_ir(coredev);
  418. sms_info("device %p started, rc %d", coredev, rc);
  419. kmutex_unlock(&g_smscore_deviceslock);
  420. return rc;
  421. }
  422. EXPORT_SYMBOL_GPL(smscore_start_device);
  423. static int smscore_load_firmware_family2(struct smscore_device_t *coredev,
  424. void *buffer, size_t size)
  425. {
  426. struct SmsFirmware_ST *firmware = (struct SmsFirmware_ST *) buffer;
  427. struct SmsMsgHdr_ST *msg;
  428. u32 mem_address;
  429. u8 *payload = firmware->Payload;
  430. int rc = 0;
  431. firmware->StartAddress = le32_to_cpu(firmware->StartAddress);
  432. firmware->Length = le32_to_cpu(firmware->Length);
  433. mem_address = firmware->StartAddress;
  434. sms_info("loading FW to addr 0x%x size %d",
  435. mem_address, firmware->Length);
  436. if (coredev->preload_handler) {
  437. rc = coredev->preload_handler(coredev->context);
  438. if (rc < 0)
  439. return rc;
  440. }
  441. /* PAGE_SIZE buffer shall be enough and dma aligned */
  442. msg = kmalloc(PAGE_SIZE, GFP_KERNEL | GFP_DMA);
  443. if (!msg)
  444. return -ENOMEM;
  445. if (coredev->mode != DEVICE_MODE_NONE) {
  446. sms_debug("sending reload command.");
  447. SMS_INIT_MSG(msg, MSG_SW_RELOAD_START_REQ,
  448. sizeof(struct SmsMsgHdr_ST));
  449. rc = smscore_sendrequest_and_wait(coredev, msg,
  450. msg->msgLength,
  451. &coredev->reload_start_done);
  452. mem_address = *(u32 *) &payload[20];
  453. }
  454. while (size && rc >= 0) {
  455. struct SmsDataDownload_ST *DataMsg =
  456. (struct SmsDataDownload_ST *) msg;
  457. int payload_size = min((int) size, SMS_MAX_PAYLOAD_SIZE);
  458. SMS_INIT_MSG(msg, MSG_SMS_DATA_DOWNLOAD_REQ,
  459. (u16)(sizeof(struct SmsMsgHdr_ST) +
  460. sizeof(u32) + payload_size));
  461. DataMsg->MemAddr = mem_address;
  462. memcpy(DataMsg->Payload, payload, payload_size);
  463. if ((coredev->device_flags & SMS_ROM_NO_RESPONSE) &&
  464. (coredev->mode == DEVICE_MODE_NONE))
  465. rc = coredev->sendrequest_handler(
  466. coredev->context, DataMsg,
  467. DataMsg->xMsgHeader.msgLength);
  468. else
  469. rc = smscore_sendrequest_and_wait(
  470. coredev, DataMsg,
  471. DataMsg->xMsgHeader.msgLength,
  472. &coredev->data_download_done);
  473. payload += payload_size;
  474. size -= payload_size;
  475. mem_address += payload_size;
  476. }
  477. if (rc >= 0) {
  478. if (coredev->mode == DEVICE_MODE_NONE) {
  479. struct SmsMsgData_ST *TriggerMsg =
  480. (struct SmsMsgData_ST *) msg;
  481. SMS_INIT_MSG(msg, MSG_SMS_SWDOWNLOAD_TRIGGER_REQ,
  482. sizeof(struct SmsMsgHdr_ST) +
  483. sizeof(u32) * 5);
  484. TriggerMsg->msgData[0] = firmware->StartAddress;
  485. /* Entry point */
  486. TriggerMsg->msgData[1] = 5; /* Priority */
  487. TriggerMsg->msgData[2] = 0x200; /* Stack size */
  488. TriggerMsg->msgData[3] = 0; /* Parameter */
  489. TriggerMsg->msgData[4] = 4; /* Task ID */
  490. if (coredev->device_flags & SMS_ROM_NO_RESPONSE) {
  491. rc = coredev->sendrequest_handler(
  492. coredev->context, TriggerMsg,
  493. TriggerMsg->xMsgHeader.msgLength);
  494. msleep(100);
  495. } else
  496. rc = smscore_sendrequest_and_wait(
  497. coredev, TriggerMsg,
  498. TriggerMsg->xMsgHeader.msgLength,
  499. &coredev->trigger_done);
  500. } else {
  501. SMS_INIT_MSG(msg, MSG_SW_RELOAD_EXEC_REQ,
  502. sizeof(struct SmsMsgHdr_ST));
  503. rc = coredev->sendrequest_handler(coredev->context,
  504. msg, msg->msgLength);
  505. }
  506. msleep(500);
  507. }
  508. sms_debug("rc=%d, postload=%p ", rc,
  509. coredev->postload_handler);
  510. kfree(msg);
  511. return ((rc >= 0) && coredev->postload_handler) ?
  512. coredev->postload_handler(coredev->context) :
  513. rc;
  514. }
  515. /**
  516. * loads specified firmware into a buffer and calls device loadfirmware_handler
  517. *
  518. * @param coredev pointer to a coredev object returned by
  519. * smscore_register_device
  520. * @param filename null-terminated string specifies firmware file name
  521. * @param loadfirmware_handler device handler that loads firmware
  522. *
  523. * @return 0 on success, <0 on error.
  524. */
  525. static int smscore_load_firmware_from_file(struct smscore_device_t *coredev,
  526. char *filename,
  527. loadfirmware_t loadfirmware_handler)
  528. {
  529. int rc = -ENOENT;
  530. const struct firmware *fw;
  531. u8 *fw_buffer;
  532. if (loadfirmware_handler == NULL && !(coredev->device_flags &
  533. SMS_DEVICE_FAMILY2))
  534. return -EINVAL;
  535. rc = request_firmware(&fw, filename, coredev->device);
  536. if (rc < 0) {
  537. sms_info("failed to open \"%s\"", filename);
  538. return rc;
  539. }
  540. sms_info("read FW %s, size=%zd", filename, fw->size);
  541. fw_buffer = kmalloc(ALIGN(fw->size, SMS_ALLOC_ALIGNMENT),
  542. GFP_KERNEL | GFP_DMA);
  543. if (fw_buffer) {
  544. memcpy(fw_buffer, fw->data, fw->size);
  545. rc = (coredev->device_flags & SMS_DEVICE_FAMILY2) ?
  546. smscore_load_firmware_family2(coredev,
  547. fw_buffer,
  548. fw->size) :
  549. loadfirmware_handler(coredev->context,
  550. fw_buffer, fw->size);
  551. kfree(fw_buffer);
  552. } else {
  553. sms_info("failed to allocate firmware buffer");
  554. rc = -ENOMEM;
  555. }
  556. release_firmware(fw);
  557. return rc;
  558. }
  559. /**
  560. * notifies all clients registered with the device, notifies hotplugs,
  561. * frees all buffers and coredev object
  562. *
  563. * @param coredev pointer to a coredev object returned by
  564. * smscore_register_device
  565. *
  566. * @return 0 on success, <0 on error.
  567. */
  568. void smscore_unregister_device(struct smscore_device_t *coredev)
  569. {
  570. struct smscore_buffer_t *cb;
  571. int num_buffers = 0;
  572. int retry = 0;
  573. kmutex_lock(&g_smscore_deviceslock);
  574. /* Release input device (IR) resources */
  575. sms_ir_exit(coredev);
  576. smscore_notify_clients(coredev);
  577. smscore_notify_callbacks(coredev, NULL, 0);
  578. /* at this point all buffers should be back
  579. * onresponse must no longer be called */
  580. while (1) {
  581. while (!list_empty(&coredev->buffers)) {
  582. cb = (struct smscore_buffer_t *) coredev->buffers.next;
  583. list_del(&cb->entry);
  584. kfree(cb);
  585. num_buffers++;
  586. }
  587. if (num_buffers == coredev->num_buffers)
  588. break;
  589. if (++retry > 10) {
  590. sms_info("exiting although "
  591. "not all buffers released.");
  592. break;
  593. }
  594. sms_info("waiting for %d buffer(s)",
  595. coredev->num_buffers - num_buffers);
  596. msleep(100);
  597. }
  598. sms_info("freed %d buffers", num_buffers);
  599. if (coredev->common_buffer)
  600. dma_free_coherent(NULL, coredev->common_buffer_size,
  601. coredev->common_buffer, coredev->common_buffer_phys);
  602. if (coredev->fw_buf != NULL)
  603. kfree(coredev->fw_buf);
  604. list_del(&coredev->entry);
  605. kfree(coredev);
  606. kmutex_unlock(&g_smscore_deviceslock);
  607. sms_info("device %p destroyed", coredev);
  608. }
  609. EXPORT_SYMBOL_GPL(smscore_unregister_device);
  610. static int smscore_detect_mode(struct smscore_device_t *coredev)
  611. {
  612. void *buffer = kmalloc(sizeof(struct SmsMsgHdr_ST) + SMS_DMA_ALIGNMENT,
  613. GFP_KERNEL | GFP_DMA);
  614. struct SmsMsgHdr_ST *msg =
  615. (struct SmsMsgHdr_ST *) SMS_ALIGN_ADDRESS(buffer);
  616. int rc;
  617. if (!buffer)
  618. return -ENOMEM;
  619. SMS_INIT_MSG(msg, MSG_SMS_GET_VERSION_EX_REQ,
  620. sizeof(struct SmsMsgHdr_ST));
  621. rc = smscore_sendrequest_and_wait(coredev, msg, msg->msgLength,
  622. &coredev->version_ex_done);
  623. if (rc == -ETIME) {
  624. sms_err("MSG_SMS_GET_VERSION_EX_REQ failed first try");
  625. if (wait_for_completion_timeout(&coredev->resume_done,
  626. msecs_to_jiffies(5000))) {
  627. rc = smscore_sendrequest_and_wait(
  628. coredev, msg, msg->msgLength,
  629. &coredev->version_ex_done);
  630. if (rc < 0)
  631. sms_err("MSG_SMS_GET_VERSION_EX_REQ failed "
  632. "second try, rc %d", rc);
  633. } else
  634. rc = -ETIME;
  635. }
  636. kfree(buffer);
  637. return rc;
  638. }
  639. static char *smscore_fw_lkup[][SMS_NUM_OF_DEVICE_TYPES] = {
  640. /*Stellar NOVA A0 Nova B0 VEGA*/
  641. /*DVBT*/
  642. {"none", "dvb_nova_12mhz.inp", "dvb_nova_12mhz_b0.inp", "none"},
  643. /*DVBH*/
  644. {"none", "dvb_nova_12mhz.inp", "dvb_nova_12mhz_b0.inp", "none"},
  645. /*TDMB*/
  646. {"none", "tdmb_nova_12mhz.inp", "tdmb_nova_12mhz_b0.inp", "none"},
  647. /*DABIP*/
  648. {"none", "none", "none", "none"},
  649. /*BDA*/
  650. {"none", "dvb_nova_12mhz.inp", "dvb_nova_12mhz_b0.inp", "none"},
  651. /*ISDBT*/
  652. {"none", "isdbt_nova_12mhz.inp", "isdbt_nova_12mhz_b0.inp", "none"},
  653. /*ISDBTBDA*/
  654. {"none", "isdbt_nova_12mhz.inp", "isdbt_nova_12mhz_b0.inp", "none"},
  655. /*CMMB*/
  656. {"none", "none", "none", "cmmb_vega_12mhz.inp"}
  657. };
  658. static inline char *sms_get_fw_name(struct smscore_device_t *coredev,
  659. int mode, enum sms_device_type_st type)
  660. {
  661. char **fw = sms_get_board(smscore_get_board_id(coredev))->fw;
  662. return (fw && fw[mode]) ? fw[mode] : smscore_fw_lkup[mode][type];
  663. }
  664. /**
  665. * calls device handler to change mode of operation
  666. * NOTE: stellar/usb may disconnect when changing mode
  667. *
  668. * @param coredev pointer to a coredev object returned by
  669. * smscore_register_device
  670. * @param mode requested mode of operation
  671. *
  672. * @return 0 on success, <0 on error.
  673. */
  674. int smscore_set_device_mode(struct smscore_device_t *coredev, int mode)
  675. {
  676. void *buffer;
  677. int rc = 0;
  678. enum sms_device_type_st type;
  679. sms_debug("set device mode to %d", mode);
  680. if (coredev->device_flags & SMS_DEVICE_FAMILY2) {
  681. if (mode < DEVICE_MODE_DVBT || mode >= DEVICE_MODE_RAW_TUNER) {
  682. sms_err("invalid mode specified %d", mode);
  683. return -EINVAL;
  684. }
  685. smscore_registry_setmode(coredev->devpath, mode);
  686. if (!(coredev->device_flags & SMS_DEVICE_NOT_READY)) {
  687. rc = smscore_detect_mode(coredev);
  688. if (rc < 0) {
  689. sms_err("mode detect failed %d", rc);
  690. return rc;
  691. }
  692. }
  693. if (coredev->mode == mode) {
  694. sms_info("device mode %d already set", mode);
  695. return 0;
  696. }
  697. if (!(coredev->modes_supported & (1 << mode))) {
  698. char *fw_filename;
  699. type = smscore_registry_gettype(coredev->devpath);
  700. fw_filename = sms_get_fw_name(coredev, mode, type);
  701. rc = smscore_load_firmware_from_file(coredev,
  702. fw_filename, NULL);
  703. if (rc < 0) {
  704. sms_warn("error %d loading firmware: %s, "
  705. "trying again with default firmware",
  706. rc, fw_filename);
  707. /* try again with the default firmware */
  708. fw_filename = smscore_fw_lkup[mode][type];
  709. rc = smscore_load_firmware_from_file(coredev,
  710. fw_filename, NULL);
  711. if (rc < 0) {
  712. sms_warn("error %d loading "
  713. "firmware: %s", rc,
  714. fw_filename);
  715. return rc;
  716. }
  717. }
  718. sms_log("firmware download success: %s", fw_filename);
  719. } else
  720. sms_info("mode %d supported by running "
  721. "firmware", mode);
  722. buffer = kmalloc(sizeof(struct SmsMsgData_ST) +
  723. SMS_DMA_ALIGNMENT, GFP_KERNEL | GFP_DMA);
  724. if (buffer) {
  725. struct SmsMsgData_ST *msg =
  726. (struct SmsMsgData_ST *)
  727. SMS_ALIGN_ADDRESS(buffer);
  728. SMS_INIT_MSG(&msg->xMsgHeader, MSG_SMS_INIT_DEVICE_REQ,
  729. sizeof(struct SmsMsgData_ST));
  730. msg->msgData[0] = mode;
  731. rc = smscore_sendrequest_and_wait(
  732. coredev, msg, msg->xMsgHeader.msgLength,
  733. &coredev->init_device_done);
  734. kfree(buffer);
  735. } else {
  736. sms_err("Could not allocate buffer for "
  737. "init device message.");
  738. rc = -ENOMEM;
  739. }
  740. } else {
  741. if (mode < DEVICE_MODE_DVBT || mode > DEVICE_MODE_DVBT_BDA) {
  742. sms_err("invalid mode specified %d", mode);
  743. return -EINVAL;
  744. }
  745. smscore_registry_setmode(coredev->devpath, mode);
  746. if (coredev->detectmode_handler)
  747. coredev->detectmode_handler(coredev->context,
  748. &coredev->mode);
  749. if (coredev->mode != mode && coredev->setmode_handler)
  750. rc = coredev->setmode_handler(coredev->context, mode);
  751. }
  752. if (rc >= 0) {
  753. coredev->mode = mode;
  754. coredev->device_flags &= ~SMS_DEVICE_NOT_READY;
  755. }
  756. if (rc < 0)
  757. sms_err("return error code %d.", rc);
  758. return rc;
  759. }
  760. /**
  761. * calls device handler to get current mode of operation
  762. *
  763. * @param coredev pointer to a coredev object returned by
  764. * smscore_register_device
  765. *
  766. * @return current mode
  767. */
  768. int smscore_get_device_mode(struct smscore_device_t *coredev)
  769. {
  770. return coredev->mode;
  771. }
  772. EXPORT_SYMBOL_GPL(smscore_get_device_mode);
  773. /**
  774. * find client by response id & type within the clients list.
  775. * return client handle or NULL.
  776. *
  777. * @param coredev pointer to a coredev object returned by
  778. * smscore_register_device
  779. * @param data_type client data type (SMS_DONT_CARE for all types)
  780. * @param id client id (SMS_DONT_CARE for all id)
  781. *
  782. */
  783. static struct
  784. smscore_client_t *smscore_find_client(struct smscore_device_t *coredev,
  785. int data_type, int id)
  786. {
  787. struct smscore_client_t *client = NULL;
  788. struct list_head *next, *first;
  789. unsigned long flags;
  790. struct list_head *firstid, *nextid;
  791. spin_lock_irqsave(&coredev->clientslock, flags);
  792. first = &coredev->clients;
  793. for (next = first->next;
  794. (next != first) && !client;
  795. next = next->next) {
  796. firstid = &((struct smscore_client_t *)next)->idlist;
  797. for (nextid = firstid->next;
  798. nextid != firstid;
  799. nextid = nextid->next) {
  800. if ((((struct smscore_idlist_t *)nextid)->id == id) &&
  801. (((struct smscore_idlist_t *)nextid)->data_type == data_type ||
  802. (((struct smscore_idlist_t *)nextid)->data_type == 0))) {
  803. client = (struct smscore_client_t *) next;
  804. break;
  805. }
  806. }
  807. }
  808. spin_unlock_irqrestore(&coredev->clientslock, flags);
  809. return client;
  810. }
  811. /**
  812. * find client by response id/type, call clients onresponse handler
  813. * return buffer to pool on error
  814. *
  815. * @param coredev pointer to a coredev object returned by
  816. * smscore_register_device
  817. * @param cb pointer to response buffer descriptor
  818. *
  819. */
  820. void smscore_onresponse(struct smscore_device_t *coredev,
  821. struct smscore_buffer_t *cb) {
  822. struct SmsMsgHdr_ST *phdr = (struct SmsMsgHdr_ST *) ((u8 *) cb->p
  823. + cb->offset);
  824. struct smscore_client_t *client;
  825. int rc = -EBUSY;
  826. static unsigned long last_sample_time; /* = 0; */
  827. static int data_total; /* = 0; */
  828. unsigned long time_now = jiffies_to_msecs(jiffies);
  829. if (!last_sample_time)
  830. last_sample_time = time_now;
  831. if (time_now - last_sample_time > 10000) {
  832. sms_debug("\ndata rate %d bytes/secs",
  833. (int)((data_total * 1000) /
  834. (time_now - last_sample_time)));
  835. last_sample_time = time_now;
  836. data_total = 0;
  837. }
  838. data_total += cb->size;
  839. /* Do we need to re-route? */
  840. if ((phdr->msgType == MSG_SMS_HO_PER_SLICES_IND) ||
  841. (phdr->msgType == MSG_SMS_TRANSMISSION_IND)) {
  842. if (coredev->mode == DEVICE_MODE_DVBT_BDA)
  843. phdr->msgDstId = DVBT_BDA_CONTROL_MSG_ID;
  844. }
  845. client = smscore_find_client(coredev, phdr->msgType, phdr->msgDstId);
  846. /* If no client registered for type & id,
  847. * check for control client where type is not registered */
  848. if (client)
  849. rc = client->onresponse_handler(client->context, cb);
  850. if (rc < 0) {
  851. switch (phdr->msgType) {
  852. case MSG_SMS_GET_VERSION_EX_RES:
  853. {
  854. struct SmsVersionRes_ST *ver =
  855. (struct SmsVersionRes_ST *) phdr;
  856. sms_debug("MSG_SMS_GET_VERSION_EX_RES "
  857. "id %d prots 0x%x ver %d.%d",
  858. ver->FirmwareId, ver->SupportedProtocols,
  859. ver->RomVersionMajor, ver->RomVersionMinor);
  860. coredev->mode = ver->FirmwareId == 255 ?
  861. DEVICE_MODE_NONE : ver->FirmwareId;
  862. coredev->modes_supported = ver->SupportedProtocols;
  863. complete(&coredev->version_ex_done);
  864. break;
  865. }
  866. case MSG_SMS_INIT_DEVICE_RES:
  867. sms_debug("MSG_SMS_INIT_DEVICE_RES");
  868. complete(&coredev->init_device_done);
  869. break;
  870. case MSG_SW_RELOAD_START_RES:
  871. sms_debug("MSG_SW_RELOAD_START_RES");
  872. complete(&coredev->reload_start_done);
  873. break;
  874. case MSG_SMS_DATA_DOWNLOAD_RES:
  875. complete(&coredev->data_download_done);
  876. break;
  877. case MSG_SW_RELOAD_EXEC_RES:
  878. sms_debug("MSG_SW_RELOAD_EXEC_RES");
  879. break;
  880. case MSG_SMS_SWDOWNLOAD_TRIGGER_RES:
  881. sms_debug("MSG_SMS_SWDOWNLOAD_TRIGGER_RES");
  882. complete(&coredev->trigger_done);
  883. break;
  884. case MSG_SMS_SLEEP_RESUME_COMP_IND:
  885. complete(&coredev->resume_done);
  886. break;
  887. case MSG_SMS_GPIO_CONFIG_EX_RES:
  888. sms_debug("MSG_SMS_GPIO_CONFIG_EX_RES");
  889. complete(&coredev->gpio_configuration_done);
  890. break;
  891. case MSG_SMS_GPIO_SET_LEVEL_RES:
  892. sms_debug("MSG_SMS_GPIO_SET_LEVEL_RES");
  893. complete(&coredev->gpio_set_level_done);
  894. break;
  895. case MSG_SMS_GPIO_GET_LEVEL_RES:
  896. {
  897. u32 *msgdata = (u32 *) phdr;
  898. coredev->gpio_get_res = msgdata[1];
  899. sms_debug("MSG_SMS_GPIO_GET_LEVEL_RES gpio level %d",
  900. coredev->gpio_get_res);
  901. complete(&coredev->gpio_get_level_done);
  902. break;
  903. }
  904. case MSG_SMS_START_IR_RES:
  905. complete(&coredev->ir_init_done);
  906. break;
  907. case MSG_SMS_IR_SAMPLES_IND:
  908. sms_ir_event(coredev,
  909. (const char *)
  910. ((char *)phdr
  911. + sizeof(struct SmsMsgHdr_ST)),
  912. (int)phdr->msgLength
  913. - sizeof(struct SmsMsgHdr_ST));
  914. break;
  915. default:
  916. break;
  917. }
  918. smscore_putbuffer(coredev, cb);
  919. }
  920. }
  921. EXPORT_SYMBOL_GPL(smscore_onresponse);
  922. /**
  923. * return pointer to next free buffer descriptor from core pool
  924. *
  925. * @param coredev pointer to a coredev object returned by
  926. * smscore_register_device
  927. *
  928. * @return pointer to descriptor on success, NULL on error.
  929. */
  930. struct smscore_buffer_t *smscore_getbuffer(struct smscore_device_t *coredev)
  931. {
  932. struct smscore_buffer_t *cb = NULL;
  933. unsigned long flags;
  934. DEFINE_WAIT(wait);
  935. spin_lock_irqsave(&coredev->bufferslock, flags);
  936. /* This function must return a valid buffer, since the buffer list is
  937. * finite, we check that there is an available buffer, if not, we wait
  938. * until such buffer become available.
  939. */
  940. prepare_to_wait(&coredev->buffer_mng_waitq, &wait, TASK_INTERRUPTIBLE);
  941. if (list_empty(&coredev->buffers))
  942. schedule();
  943. finish_wait(&coredev->buffer_mng_waitq, &wait);
  944. cb = (struct smscore_buffer_t *) coredev->buffers.next;
  945. list_del(&cb->entry);
  946. spin_unlock_irqrestore(&coredev->bufferslock, flags);
  947. return cb;
  948. }
  949. EXPORT_SYMBOL_GPL(smscore_getbuffer);
  950. /**
  951. * return buffer descriptor to a pool
  952. *
  953. * @param coredev pointer to a coredev object returned by
  954. * smscore_register_device
  955. * @param cb pointer buffer descriptor
  956. *
  957. */
  958. void smscore_putbuffer(struct smscore_device_t *coredev,
  959. struct smscore_buffer_t *cb) {
  960. wake_up_interruptible(&coredev->buffer_mng_waitq);
  961. list_add_locked(&cb->entry, &coredev->buffers, &coredev->bufferslock);
  962. }
  963. EXPORT_SYMBOL_GPL(smscore_putbuffer);
  964. static int smscore_validate_client(struct smscore_device_t *coredev,
  965. struct smscore_client_t *client,
  966. int data_type, int id)
  967. {
  968. struct smscore_idlist_t *listentry;
  969. struct smscore_client_t *registered_client;
  970. if (!client) {
  971. sms_err("bad parameter.");
  972. return -EFAULT;
  973. }
  974. registered_client = smscore_find_client(coredev, data_type, id);
  975. if (registered_client == client)
  976. return 0;
  977. if (registered_client) {
  978. sms_err("The msg ID already registered to another client.");
  979. return -EEXIST;
  980. }
  981. listentry = kzalloc(sizeof(struct smscore_idlist_t), GFP_KERNEL);
  982. if (!listentry) {
  983. sms_err("Can't allocate memory for client id.");
  984. return -ENOMEM;
  985. }
  986. listentry->id = id;
  987. listentry->data_type = data_type;
  988. list_add_locked(&listentry->entry, &client->idlist,
  989. &coredev->clientslock);
  990. return 0;
  991. }
  992. /**
  993. * creates smsclient object, check that id is taken by another client
  994. *
  995. * @param coredev pointer to a coredev object from clients hotplug
  996. * @param initial_id all messages with this id would be sent to this client
  997. * @param data_type all messages of this type would be sent to this client
  998. * @param onresponse_handler client handler that is called to
  999. * process incoming messages
  1000. * @param onremove_handler client handler that is called when device is removed
  1001. * @param context client-specific context
  1002. * @param client pointer to a value that receives created smsclient object
  1003. *
  1004. * @return 0 on success, <0 on error.
  1005. */
  1006. int smscore_register_client(struct smscore_device_t *coredev,
  1007. struct smsclient_params_t *params,
  1008. struct smscore_client_t **client)
  1009. {
  1010. struct smscore_client_t *newclient;
  1011. /* check that no other channel with same parameters exists */
  1012. if (smscore_find_client(coredev, params->data_type,
  1013. params->initial_id)) {
  1014. sms_err("Client already exist.");
  1015. return -EEXIST;
  1016. }
  1017. newclient = kzalloc(sizeof(struct smscore_client_t), GFP_KERNEL);
  1018. if (!newclient) {
  1019. sms_err("Failed to allocate memory for client.");
  1020. return -ENOMEM;
  1021. }
  1022. INIT_LIST_HEAD(&newclient->idlist);
  1023. newclient->coredev = coredev;
  1024. newclient->onresponse_handler = params->onresponse_handler;
  1025. newclient->onremove_handler = params->onremove_handler;
  1026. newclient->context = params->context;
  1027. list_add_locked(&newclient->entry, &coredev->clients,
  1028. &coredev->clientslock);
  1029. smscore_validate_client(coredev, newclient, params->data_type,
  1030. params->initial_id);
  1031. *client = newclient;
  1032. sms_debug("%p %d %d", params->context, params->data_type,
  1033. params->initial_id);
  1034. return 0;
  1035. }
  1036. EXPORT_SYMBOL_GPL(smscore_register_client);
  1037. /**
  1038. * frees smsclient object and all subclients associated with it
  1039. *
  1040. * @param client pointer to smsclient object returned by
  1041. * smscore_register_client
  1042. *
  1043. */
  1044. void smscore_unregister_client(struct smscore_client_t *client)
  1045. {
  1046. struct smscore_device_t *coredev = client->coredev;
  1047. unsigned long flags;
  1048. spin_lock_irqsave(&coredev->clientslock, flags);
  1049. while (!list_empty(&client->idlist)) {
  1050. struct smscore_idlist_t *identry =
  1051. (struct smscore_idlist_t *) client->idlist.next;
  1052. list_del(&identry->entry);
  1053. kfree(identry);
  1054. }
  1055. sms_info("%p", client->context);
  1056. list_del(&client->entry);
  1057. kfree(client);
  1058. spin_unlock_irqrestore(&coredev->clientslock, flags);
  1059. }
  1060. EXPORT_SYMBOL_GPL(smscore_unregister_client);
  1061. /**
  1062. * verifies that source id is not taken by another client,
  1063. * calls device handler to send requests to the device
  1064. *
  1065. * @param client pointer to smsclient object returned by
  1066. * smscore_register_client
  1067. * @param buffer pointer to a request buffer
  1068. * @param size size (in bytes) of request buffer
  1069. *
  1070. * @return 0 on success, <0 on error.
  1071. */
  1072. int smsclient_sendrequest(struct smscore_client_t *client,
  1073. void *buffer, size_t size)
  1074. {
  1075. struct smscore_device_t *coredev;
  1076. struct SmsMsgHdr_ST *phdr = (struct SmsMsgHdr_ST *) buffer;
  1077. int rc;
  1078. if (client == NULL) {
  1079. sms_err("Got NULL client");
  1080. return -EINVAL;
  1081. }
  1082. coredev = client->coredev;
  1083. /* check that no other channel with same id exists */
  1084. if (coredev == NULL) {
  1085. sms_err("Got NULL coredev");
  1086. return -EINVAL;
  1087. }
  1088. rc = smscore_validate_client(client->coredev, client, 0,
  1089. phdr->msgSrcId);
  1090. if (rc < 0)
  1091. return rc;
  1092. return coredev->sendrequest_handler(coredev->context, buffer, size);
  1093. }
  1094. EXPORT_SYMBOL_GPL(smsclient_sendrequest);
  1095. /* old GPIO managments implementation */
  1096. int smscore_configure_gpio(struct smscore_device_t *coredev, u32 pin,
  1097. struct smscore_config_gpio *pinconfig)
  1098. {
  1099. struct {
  1100. struct SmsMsgHdr_ST hdr;
  1101. u32 data[6];
  1102. } msg;
  1103. if (coredev->device_flags & SMS_DEVICE_FAMILY2) {
  1104. msg.hdr.msgSrcId = DVBT_BDA_CONTROL_MSG_ID;
  1105. msg.hdr.msgDstId = HIF_TASK;
  1106. msg.hdr.msgFlags = 0;
  1107. msg.hdr.msgType = MSG_SMS_GPIO_CONFIG_EX_REQ;
  1108. msg.hdr.msgLength = sizeof(msg);
  1109. msg.data[0] = pin;
  1110. msg.data[1] = pinconfig->pullupdown;
  1111. /* Convert slew rate for Nova: Fast(0) = 3 / Slow(1) = 0; */
  1112. msg.data[2] = pinconfig->outputslewrate == 0 ? 3 : 0;
  1113. switch (pinconfig->outputdriving) {
  1114. case SMS_GPIO_OUTPUTDRIVING_16mA:
  1115. msg.data[3] = 7; /* Nova - 16mA */
  1116. break;
  1117. case SMS_GPIO_OUTPUTDRIVING_12mA:
  1118. msg.data[3] = 5; /* Nova - 11mA */
  1119. break;
  1120. case SMS_GPIO_OUTPUTDRIVING_8mA:
  1121. msg.data[3] = 3; /* Nova - 7mA */
  1122. break;
  1123. case SMS_GPIO_OUTPUTDRIVING_4mA:
  1124. default:
  1125. msg.data[3] = 2; /* Nova - 4mA */
  1126. break;
  1127. }
  1128. msg.data[4] = pinconfig->direction;
  1129. msg.data[5] = 0;
  1130. } else /* TODO: SMS_DEVICE_FAMILY1 */
  1131. return -EINVAL;
  1132. return coredev->sendrequest_handler(coredev->context,
  1133. &msg, sizeof(msg));
  1134. }
  1135. int smscore_set_gpio(struct smscore_device_t *coredev, u32 pin, int level)
  1136. {
  1137. struct {
  1138. struct SmsMsgHdr_ST hdr;
  1139. u32 data[3];
  1140. } msg;
  1141. if (pin > MAX_GPIO_PIN_NUMBER)
  1142. return -EINVAL;
  1143. msg.hdr.msgSrcId = DVBT_BDA_CONTROL_MSG_ID;
  1144. msg.hdr.msgDstId = HIF_TASK;
  1145. msg.hdr.msgFlags = 0;
  1146. msg.hdr.msgType = MSG_SMS_GPIO_SET_LEVEL_REQ;
  1147. msg.hdr.msgLength = sizeof(msg);
  1148. msg.data[0] = pin;
  1149. msg.data[1] = level ? 1 : 0;
  1150. msg.data[2] = 0;
  1151. return coredev->sendrequest_handler(coredev->context,
  1152. &msg, sizeof(msg));
  1153. }
  1154. /* new GPIO management implementation */
  1155. static int GetGpioPinParams(u32 PinNum, u32 *pTranslatedPinNum,
  1156. u32 *pGroupNum, u32 *pGroupCfg) {
  1157. *pGroupCfg = 1;
  1158. if (PinNum <= 1) {
  1159. *pTranslatedPinNum = 0;
  1160. *pGroupNum = 9;
  1161. *pGroupCfg = 2;
  1162. } else if (PinNum >= 2 && PinNum <= 6) {
  1163. *pTranslatedPinNum = 2;
  1164. *pGroupNum = 0;
  1165. *pGroupCfg = 2;
  1166. } else if (PinNum >= 7 && PinNum <= 11) {
  1167. *pTranslatedPinNum = 7;
  1168. *pGroupNum = 1;
  1169. } else if (PinNum >= 12 && PinNum <= 15) {
  1170. *pTranslatedPinNum = 12;
  1171. *pGroupNum = 2;
  1172. *pGroupCfg = 3;
  1173. } else if (PinNum == 16) {
  1174. *pTranslatedPinNum = 16;
  1175. *pGroupNum = 23;
  1176. } else if (PinNum >= 17 && PinNum <= 24) {
  1177. *pTranslatedPinNum = 17;
  1178. *pGroupNum = 3;
  1179. } else if (PinNum == 25) {
  1180. *pTranslatedPinNum = 25;
  1181. *pGroupNum = 6;
  1182. } else if (PinNum >= 26 && PinNum <= 28) {
  1183. *pTranslatedPinNum = 26;
  1184. *pGroupNum = 4;
  1185. } else if (PinNum == 29) {
  1186. *pTranslatedPinNum = 29;
  1187. *pGroupNum = 5;
  1188. *pGroupCfg = 2;
  1189. } else if (PinNum == 30) {
  1190. *pTranslatedPinNum = 30;
  1191. *pGroupNum = 8;
  1192. } else if (PinNum == 31) {
  1193. *pTranslatedPinNum = 31;
  1194. *pGroupNum = 17;
  1195. } else
  1196. return -1;
  1197. *pGroupCfg <<= 24;
  1198. return 0;
  1199. }
  1200. int smscore_gpio_configure(struct smscore_device_t *coredev, u8 PinNum,
  1201. struct smscore_gpio_config *pGpioConfig) {
  1202. u32 totalLen;
  1203. u32 TranslatedPinNum = 0;
  1204. u32 GroupNum = 0;
  1205. u32 ElectricChar;
  1206. u32 groupCfg;
  1207. void *buffer;
  1208. int rc;
  1209. struct SetGpioMsg {
  1210. struct SmsMsgHdr_ST xMsgHeader;
  1211. u32 msgData[6];
  1212. } *pMsg;
  1213. if (PinNum > MAX_GPIO_PIN_NUMBER)
  1214. return -EINVAL;
  1215. if (pGpioConfig == NULL)
  1216. return -EINVAL;
  1217. totalLen = sizeof(struct SmsMsgHdr_ST) + (sizeof(u32) * 6);
  1218. buffer = kmalloc(totalLen + SMS_DMA_ALIGNMENT,
  1219. GFP_KERNEL | GFP_DMA);
  1220. if (!buffer)
  1221. return -ENOMEM;
  1222. pMsg = (struct SetGpioMsg *) SMS_ALIGN_ADDRESS(buffer);
  1223. pMsg->xMsgHeader.msgSrcId = DVBT_BDA_CONTROL_MSG_ID;
  1224. pMsg->xMsgHeader.msgDstId = HIF_TASK;
  1225. pMsg->xMsgHeader.msgFlags = 0;
  1226. pMsg->xMsgHeader.msgLength = (u16) totalLen;
  1227. pMsg->msgData[0] = PinNum;
  1228. if (!(coredev->device_flags & SMS_DEVICE_FAMILY2)) {
  1229. pMsg->xMsgHeader.msgType = MSG_SMS_GPIO_CONFIG_REQ;
  1230. if (GetGpioPinParams(PinNum, &TranslatedPinNum, &GroupNum,
  1231. &groupCfg) != 0)
  1232. return -EINVAL;
  1233. pMsg->msgData[1] = TranslatedPinNum;
  1234. pMsg->msgData[2] = GroupNum;
  1235. ElectricChar = (pGpioConfig->PullUpDown)
  1236. | (pGpioConfig->InputCharacteristics << 2)
  1237. | (pGpioConfig->OutputSlewRate << 3)
  1238. | (pGpioConfig->OutputDriving << 4);
  1239. pMsg->msgData[3] = ElectricChar;
  1240. pMsg->msgData[4] = pGpioConfig->Direction;
  1241. pMsg->msgData[5] = groupCfg;
  1242. } else {
  1243. pMsg->xMsgHeader.msgType = MSG_SMS_GPIO_CONFIG_EX_REQ;
  1244. pMsg->msgData[1] = pGpioConfig->PullUpDown;
  1245. pMsg->msgData[2] = pGpioConfig->OutputSlewRate;
  1246. pMsg->msgData[3] = pGpioConfig->OutputDriving;
  1247. pMsg->msgData[4] = pGpioConfig->Direction;
  1248. pMsg->msgData[5] = 0;
  1249. }
  1250. smsendian_handle_tx_message((struct SmsMsgHdr_ST *)pMsg);
  1251. rc = smscore_sendrequest_and_wait(coredev, pMsg, totalLen,
  1252. &coredev->gpio_configuration_done);
  1253. if (rc != 0) {
  1254. if (rc == -ETIME)
  1255. sms_err("smscore_gpio_configure timeout");
  1256. else
  1257. sms_err("smscore_gpio_configure error");
  1258. }
  1259. kfree(buffer);
  1260. return rc;
  1261. }
  1262. int smscore_gpio_set_level(struct smscore_device_t *coredev, u8 PinNum,
  1263. u8 NewLevel) {
  1264. u32 totalLen;
  1265. int rc;
  1266. void *buffer;
  1267. struct SetGpioMsg {
  1268. struct SmsMsgHdr_ST xMsgHeader;
  1269. u32 msgData[3]; /* keep it 3 ! */
  1270. } *pMsg;
  1271. if ((NewLevel > 1) || (PinNum > MAX_GPIO_PIN_NUMBER) ||
  1272. (PinNum > MAX_GPIO_PIN_NUMBER))
  1273. return -EINVAL;
  1274. totalLen = sizeof(struct SmsMsgHdr_ST) +
  1275. (3 * sizeof(u32)); /* keep it 3 ! */
  1276. buffer = kmalloc(totalLen + SMS_DMA_ALIGNMENT,
  1277. GFP_KERNEL | GFP_DMA);
  1278. if (!buffer)
  1279. return -ENOMEM;
  1280. pMsg = (struct SetGpioMsg *) SMS_ALIGN_ADDRESS(buffer);
  1281. pMsg->xMsgHeader.msgSrcId = DVBT_BDA_CONTROL_MSG_ID;
  1282. pMsg->xMsgHeader.msgDstId = HIF_TASK;
  1283. pMsg->xMsgHeader.msgFlags = 0;
  1284. pMsg->xMsgHeader.msgType = MSG_SMS_GPIO_SET_LEVEL_REQ;
  1285. pMsg->xMsgHeader.msgLength = (u16) totalLen;
  1286. pMsg->msgData[0] = PinNum;
  1287. pMsg->msgData[1] = NewLevel;
  1288. /* Send message to SMS */
  1289. smsendian_handle_tx_message((struct SmsMsgHdr_ST *)pMsg);
  1290. rc = smscore_sendrequest_and_wait(coredev, pMsg, totalLen,
  1291. &coredev->gpio_set_level_done);
  1292. if (rc != 0) {
  1293. if (rc == -ETIME)
  1294. sms_err("smscore_gpio_set_level timeout");
  1295. else
  1296. sms_err("smscore_gpio_set_level error");
  1297. }
  1298. kfree(buffer);
  1299. return rc;
  1300. }
  1301. int smscore_gpio_get_level(struct smscore_device_t *coredev, u8 PinNum,
  1302. u8 *level) {
  1303. u32 totalLen;
  1304. int rc;
  1305. void *buffer;
  1306. struct SetGpioMsg {
  1307. struct SmsMsgHdr_ST xMsgHeader;
  1308. u32 msgData[2];
  1309. } *pMsg;
  1310. if (PinNum > MAX_GPIO_PIN_NUMBER)
  1311. return -EINVAL;
  1312. totalLen = sizeof(struct SmsMsgHdr_ST) + (2 * sizeof(u32));
  1313. buffer = kmalloc(totalLen + SMS_DMA_ALIGNMENT,
  1314. GFP_KERNEL | GFP_DMA);
  1315. if (!buffer)
  1316. return -ENOMEM;
  1317. pMsg = (struct SetGpioMsg *) SMS_ALIGN_ADDRESS(buffer);
  1318. pMsg->xMsgHeader.msgSrcId = DVBT_BDA_CONTROL_MSG_ID;
  1319. pMsg->xMsgHeader.msgDstId = HIF_TASK;
  1320. pMsg->xMsgHeader.msgFlags = 0;
  1321. pMsg->xMsgHeader.msgType = MSG_SMS_GPIO_GET_LEVEL_REQ;
  1322. pMsg->xMsgHeader.msgLength = (u16) totalLen;
  1323. pMsg->msgData[0] = PinNum;
  1324. pMsg->msgData[1] = 0;
  1325. /* Send message to SMS */
  1326. smsendian_handle_tx_message((struct SmsMsgHdr_ST *)pMsg);
  1327. rc = smscore_sendrequest_and_wait(coredev, pMsg, totalLen,
  1328. &coredev->gpio_get_level_done);
  1329. if (rc != 0) {
  1330. if (rc == -ETIME)
  1331. sms_err("smscore_gpio_get_level timeout");
  1332. else
  1333. sms_err("smscore_gpio_get_level error");
  1334. }
  1335. kfree(buffer);
  1336. /* Its a race between other gpio_get_level() and the copy of the single
  1337. * global 'coredev->gpio_get_res' to the function's variable 'level'
  1338. */
  1339. *level = coredev->gpio_get_res;
  1340. return rc;
  1341. }
  1342. static int __init smscore_module_init(void)
  1343. {
  1344. int rc = 0;
  1345. INIT_LIST_HEAD(&g_smscore_notifyees);
  1346. INIT_LIST_HEAD(&g_smscore_devices);
  1347. kmutex_init(&g_smscore_deviceslock);
  1348. INIT_LIST_HEAD(&g_smscore_registry);
  1349. kmutex_init(&g_smscore_registrylock);
  1350. return rc;
  1351. }
  1352. static void __exit smscore_module_exit(void)
  1353. {
  1354. kmutex_lock(&g_smscore_deviceslock);
  1355. while (!list_empty(&g_smscore_notifyees)) {
  1356. struct smscore_device_notifyee_t *notifyee =
  1357. (struct smscore_device_notifyee_t *)
  1358. g_smscore_notifyees.next;
  1359. list_del(&notifyee->entry);
  1360. kfree(notifyee);
  1361. }
  1362. kmutex_unlock(&g_smscore_deviceslock);
  1363. kmutex_lock(&g_smscore_registrylock);
  1364. while (!list_empty(&g_smscore_registry)) {
  1365. struct smscore_registry_entry_t *entry =
  1366. (struct smscore_registry_entry_t *)
  1367. g_smscore_registry.next;
  1368. list_del(&entry->entry);
  1369. kfree(entry);
  1370. }
  1371. kmutex_unlock(&g_smscore_registrylock);
  1372. sms_debug("");
  1373. }
  1374. module_init(smscore_module_init);
  1375. module_exit(smscore_module_exit);
  1376. MODULE_DESCRIPTION("Siano MDTV Core module");
  1377. MODULE_AUTHOR("Siano Mobile Silicon, Inc. (uris@siano-ms.com)");
  1378. MODULE_LICENSE("GPL");