ti_wilink_st.h 13 KB

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  1. /*
  2. * Shared Transport Header file
  3. * To be included by the protocol stack drivers for
  4. * Texas Instruments BT,FM and GPS combo chip drivers
  5. * and also serves the sub-modules of the shared transport driver.
  6. *
  7. * Copyright (C) 2009-2010 Texas Instruments
  8. * Author: Pavan Savoy <pavan_savoy@ti.com>
  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. * This program is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. * 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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  22. *
  23. */
  24. #ifndef TI_WILINK_ST_H
  25. #define TI_WILINK_ST_H
  26. /**
  27. * enum proto-type - The protocol on WiLink chips which share a
  28. * common physical interface like UART.
  29. */
  30. enum proto_type {
  31. ST_BT,
  32. ST_FM,
  33. ST_GPS,
  34. ST_MAX_CHANNELS = 16,
  35. };
  36. /**
  37. * struct st_proto_s - Per Protocol structure from BT/FM/GPS to ST
  38. * @type: type of the protocol being registered among the
  39. * available proto_type(BT, FM, GPS the protocol which share TTY).
  40. * @recv: the receiver callback pointing to a function in the
  41. * protocol drivers called by the ST driver upon receiving
  42. * relevant data.
  43. * @match_packet: reserved for future use, to make ST more generic
  44. * @reg_complete_cb: callback handler pointing to a function in protocol
  45. * handler called by ST when the pending registrations are complete.
  46. * The registrations are marked pending, in situations when fw
  47. * download is in progress.
  48. * @write: pointer to function in ST provided to protocol drivers from ST,
  49. * to be made use when protocol drivers have data to send to TTY.
  50. * @priv_data: privdate data holder for the protocol drivers, sent
  51. * from the protocol drivers during registration, and sent back on
  52. * reg_complete_cb and recv.
  53. * @chnl_id: channel id the protocol driver is interested in, the channel
  54. * id is nothing but the 1st byte of the packet in UART frame.
  55. * @max_frame_size: size of the largest frame the protocol can receive.
  56. * @hdr_len: length of the header structure of the protocol.
  57. * @offset_len_in_hdr: this provides the offset of the length field in the
  58. * header structure of the protocol header, to assist ST to know
  59. * how much to receive, if the data is split across UART frames.
  60. * @len_size: whether the length field inside the header is 2 bytes
  61. * or 1 byte.
  62. * @reserve: the number of bytes ST needs to reserve in the skb being
  63. * prepared for the protocol driver.
  64. */
  65. struct st_proto_s {
  66. enum proto_type type;
  67. long (*recv) (void *, struct sk_buff *);
  68. unsigned char (*match_packet) (const unsigned char *data);
  69. void (*reg_complete_cb) (void *, char data);
  70. long (*write) (struct sk_buff *skb);
  71. void *priv_data;
  72. unsigned char chnl_id;
  73. unsigned short max_frame_size;
  74. unsigned char hdr_len;
  75. unsigned char offset_len_in_hdr;
  76. unsigned char len_size;
  77. unsigned char reserve;
  78. };
  79. extern long st_register(struct st_proto_s *);
  80. extern long st_unregister(struct st_proto_s *);
  81. /*
  82. * header information used by st_core.c
  83. */
  84. /* states of protocol list */
  85. #define ST_NOTEMPTY 1
  86. #define ST_EMPTY 0
  87. /*
  88. * possible st_states
  89. */
  90. #define ST_INITIALIZING 1
  91. #define ST_REG_IN_PROGRESS 2
  92. #define ST_REG_PENDING 3
  93. #define ST_WAITING_FOR_RESP 4
  94. /**
  95. * struct st_data_s - ST core internal structure
  96. * @st_state: different states of ST like initializing, registration
  97. * in progress, this is mainly used to return relevant err codes
  98. * when protocol drivers are registering. It is also used to track
  99. * the recv function, as in during fw download only HCI events
  100. * can occur , where as during other times other events CH8, CH9
  101. * can occur.
  102. * @tty: tty provided by the TTY core for line disciplines.
  103. * @tx_skb: If for some reason the tty's write returns lesser bytes written
  104. * then to maintain the rest of data to be written on next instance.
  105. * This needs to be protected, hence the lock inside wakeup func.
  106. * @tx_state: if the data is being written onto the TTY and protocol driver
  107. * wants to send more, queue up data and mark that there is
  108. * more data to send.
  109. * @list: the list of protocols registered, only MAX can exist, one protocol
  110. * can register only once.
  111. * @rx_state: states to be maintained inside st's tty receive
  112. * @rx_count: count to be maintained inside st's tty receieve
  113. * @rx_skb: the skb where all data for a protocol gets accumulated,
  114. * since tty might not call receive when a complete event packet
  115. * is received, the states, count and the skb needs to be maintained.
  116. * @rx_chnl: the channel ID for which the data is getting accumalated for.
  117. * @txq: the list of skbs which needs to be sent onto the TTY.
  118. * @tx_waitq: if the chip is not in AWAKE state, the skbs needs to be queued
  119. * up in here, PM(WAKEUP_IND) data needs to be sent and then the skbs
  120. * from waitq can be moved onto the txq.
  121. * Needs locking too.
  122. * @lock: the lock to protect skbs, queues, and ST states.
  123. * @protos_registered: count of the protocols registered, also when 0 the
  124. * chip enable gpio can be toggled, and when it changes to 1 the fw
  125. * needs to be downloaded to initialize chip side ST.
  126. * @ll_state: the various PM states the chip can be, the states are notified
  127. * to us, when the chip sends relevant PM packets(SLEEP_IND, WAKE_IND).
  128. * @kim_data: reference to the parent encapsulating structure.
  129. *
  130. */
  131. struct st_data_s {
  132. unsigned long st_state;
  133. struct tty_struct *tty;
  134. struct sk_buff *tx_skb;
  135. #define ST_TX_SENDING 1
  136. #define ST_TX_WAKEUP 2
  137. unsigned long tx_state;
  138. struct st_proto_s *list[ST_MAX_CHANNELS];
  139. unsigned long rx_state;
  140. unsigned long rx_count;
  141. struct sk_buff *rx_skb;
  142. unsigned char rx_chnl;
  143. struct sk_buff_head txq, tx_waitq;
  144. spinlock_t lock;
  145. unsigned char protos_registered;
  146. unsigned long ll_state;
  147. void *kim_data;
  148. };
  149. /*
  150. * wrapper around tty->ops->write_room to check
  151. * availability during firmware download
  152. */
  153. int st_get_uart_wr_room(struct st_data_s *st_gdata);
  154. /**
  155. * st_int_write -
  156. * point this to tty->driver->write or tty->ops->write
  157. * depending upon the kernel version
  158. */
  159. int st_int_write(struct st_data_s*, const unsigned char*, int);
  160. /**
  161. * st_write -
  162. * internal write function, passed onto protocol drivers
  163. * via the write function ptr of protocol struct
  164. */
  165. long st_write(struct sk_buff *);
  166. /* function to be called from ST-LL */
  167. void st_ll_send_frame(enum proto_type, struct sk_buff *);
  168. /* internal wake up function */
  169. void st_tx_wakeup(struct st_data_s *st_data);
  170. /* init, exit entry funcs called from KIM */
  171. int st_core_init(struct st_data_s **);
  172. void st_core_exit(struct st_data_s *);
  173. /* ask for reference from KIM */
  174. void st_kim_ref(struct st_data_s **, int);
  175. #define GPS_STUB_TEST
  176. #ifdef GPS_STUB_TEST
  177. int gps_chrdrv_stub_write(const unsigned char*, int);
  178. void gps_chrdrv_stub_init(void);
  179. #endif
  180. /*
  181. * header information used by st_kim.c
  182. */
  183. /* time in msec to wait for
  184. * line discipline to be installed
  185. */
  186. #define LDISC_TIME 1000
  187. #define CMD_RESP_TIME 800
  188. #define CMD_WR_TIME 5000
  189. #define MAKEWORD(a, b) ((unsigned short)(((unsigned char)(a)) \
  190. | ((unsigned short)((unsigned char)(b))) << 8))
  191. #define GPIO_HIGH 1
  192. #define GPIO_LOW 0
  193. /* the Power-On-Reset logic, requires to attempt
  194. * to download firmware onto chip more than once
  195. * since the self-test for chip takes a while
  196. */
  197. #define POR_RETRY_COUNT 5
  198. /**
  199. * struct chip_version - save the chip version
  200. */
  201. struct chip_version {
  202. unsigned short full;
  203. unsigned short chip;
  204. unsigned short min_ver;
  205. unsigned short maj_ver;
  206. };
  207. #define UART_DEV_NAME_LEN 32
  208. /**
  209. * struct kim_data_s - the KIM internal data, embedded as the
  210. * platform's drv data. One for each ST device in the system.
  211. * @uim_pid: KIM needs to communicate with UIM to request to install
  212. * the ldisc by opening UART when protocol drivers register.
  213. * @kim_pdev: the platform device added in one of the board-XX.c file
  214. * in arch/XX/ directory, 1 for each ST device.
  215. * @kim_rcvd: completion handler to notify when data was received,
  216. * mainly used during fw download, which involves multiple send/wait
  217. * for each of the HCI-VS commands.
  218. * @ldisc_installed: completion handler to notify that the UIM accepted
  219. * the request to install ldisc, notify from tty_open which suggests
  220. * the ldisc was properly installed.
  221. * @resp_buffer: data buffer for the .bts fw file name.
  222. * @fw_entry: firmware class struct to request/release the fw.
  223. * @rx_state: the rx state for kim's receive func during fw download.
  224. * @rx_count: the rx count for the kim's receive func during fw download.
  225. * @rx_skb: all of fw data might not come at once, and hence data storage for
  226. * whole of the fw response, only HCI_EVENTs and hence diff from ST's
  227. * response.
  228. * @core_data: ST core's data, which mainly is the tty's disc_data
  229. * @version: chip version available via a sysfs entry.
  230. *
  231. */
  232. struct kim_data_s {
  233. long uim_pid;
  234. struct platform_device *kim_pdev;
  235. struct completion kim_rcvd, ldisc_installed;
  236. char resp_buffer[30];
  237. const struct firmware *fw_entry;
  238. long nshutdown;
  239. unsigned long rx_state;
  240. unsigned long rx_count;
  241. struct sk_buff *rx_skb;
  242. struct st_data_s *core_data;
  243. struct chip_version version;
  244. unsigned char ldisc_install;
  245. unsigned char dev_name[UART_DEV_NAME_LEN];
  246. unsigned char flow_cntrl;
  247. unsigned long baud_rate;
  248. };
  249. /**
  250. * functions called when 1 of the protocol drivers gets
  251. * registered, these need to communicate with UIM to request
  252. * ldisc installed, read chip_version, download relevant fw
  253. */
  254. long st_kim_start(void *);
  255. long st_kim_stop(void *);
  256. void st_kim_recv(void *, const unsigned char *, long count);
  257. void st_kim_complete(void *);
  258. void kim_st_list_protocols(struct st_data_s *, void *);
  259. /*
  260. * BTS headers
  261. */
  262. #define ACTION_SEND_COMMAND 1
  263. #define ACTION_WAIT_EVENT 2
  264. #define ACTION_SERIAL 3
  265. #define ACTION_DELAY 4
  266. #define ACTION_RUN_SCRIPT 5
  267. #define ACTION_REMARKS 6
  268. /**
  269. * struct bts_header - the fw file is NOT binary which can
  270. * be sent onto TTY as is. The .bts is more a script
  271. * file which has different types of actions.
  272. * Each such action needs to be parsed by the KIM and
  273. * relevant procedure to be called.
  274. */
  275. struct bts_header {
  276. u32 magic;
  277. u32 version;
  278. u8 future[24];
  279. u8 actions[0];
  280. } __attribute__ ((packed));
  281. /**
  282. * struct bts_action - Each .bts action has its own type of
  283. * data.
  284. */
  285. struct bts_action {
  286. u16 type;
  287. u16 size;
  288. u8 data[0];
  289. } __attribute__ ((packed));
  290. struct bts_action_send {
  291. u8 data[0];
  292. } __attribute__ ((packed));
  293. struct bts_action_wait {
  294. u32 msec;
  295. u32 size;
  296. u8 data[0];
  297. } __attribute__ ((packed));
  298. struct bts_action_delay {
  299. u32 msec;
  300. } __attribute__ ((packed));
  301. struct bts_action_serial {
  302. u32 baud;
  303. u32 flow_control;
  304. } __attribute__ ((packed));
  305. /**
  306. * struct hci_command - the HCI-VS for intrepreting
  307. * the change baud rate of host-side UART, which
  308. * needs to be ignored, since UIM would do that
  309. * when it receives request from KIM for ldisc installation.
  310. */
  311. struct hci_command {
  312. u8 prefix;
  313. u16 opcode;
  314. u8 plen;
  315. u32 speed;
  316. } __attribute__ ((packed));
  317. /*
  318. * header information used by st_ll.c
  319. */
  320. /* ST LL receiver states */
  321. #define ST_W4_PACKET_TYPE 0
  322. #define ST_W4_HEADER 1
  323. #define ST_W4_DATA 2
  324. /* ST LL state machines */
  325. #define ST_LL_ASLEEP 0
  326. #define ST_LL_ASLEEP_TO_AWAKE 1
  327. #define ST_LL_AWAKE 2
  328. #define ST_LL_AWAKE_TO_ASLEEP 3
  329. #define ST_LL_INVALID 4
  330. /* different PM notifications coming from chip */
  331. #define LL_SLEEP_IND 0x30
  332. #define LL_SLEEP_ACK 0x31
  333. #define LL_WAKE_UP_IND 0x32
  334. #define LL_WAKE_UP_ACK 0x33
  335. /* initialize and de-init ST LL */
  336. long st_ll_init(struct st_data_s *);
  337. long st_ll_deinit(struct st_data_s *);
  338. /**
  339. * enable/disable ST LL along with KIM start/stop
  340. * called by ST Core
  341. */
  342. void st_ll_enable(struct st_data_s *);
  343. void st_ll_disable(struct st_data_s *);
  344. /**
  345. * various funcs used by ST core to set/get the various PM states
  346. * of the chip.
  347. */
  348. unsigned long st_ll_getstate(struct st_data_s *);
  349. unsigned long st_ll_sleep_state(struct st_data_s *, unsigned char);
  350. void st_ll_wakeup(struct st_data_s *);
  351. /*
  352. * header information used by st_core.c for FM and GPS
  353. * packet parsing, the bluetooth headers are already available
  354. * at net/bluetooth/
  355. */
  356. struct fm_event_hdr {
  357. u8 plen;
  358. } __attribute__ ((packed));
  359. #define FM_MAX_FRAME_SIZE 0xFF /* TODO: */
  360. #define FM_EVENT_HDR_SIZE 1 /* size of fm_event_hdr */
  361. #define ST_FM_CH8_PKT 0x8
  362. /* gps stuff */
  363. struct gps_event_hdr {
  364. u8 opcode;
  365. u16 plen;
  366. } __attribute__ ((packed));
  367. /* platform data */
  368. struct ti_st_plat_data {
  369. long nshutdown_gpio;
  370. unsigned char dev_name[UART_DEV_NAME_LEN]; /* uart name */
  371. unsigned char flow_cntrl; /* flow control flag */
  372. unsigned long baud_rate;
  373. int (*suspend)(struct platform_device *, pm_message_t);
  374. int (*resume)(struct platform_device *);
  375. };
  376. #endif /* TI_WILINK_ST_H */