ev-layer.c 52 KB

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  1. /*
  2. * Stuff used by all variants of the driver
  3. *
  4. * Copyright (c) 2001 by Stefan Eilers,
  5. * Hansjoerg Lipp <hjlipp@web.de>,
  6. * Tilman Schmidt <tilman@imap.cc>.
  7. *
  8. * =====================================================================
  9. * This program is free software; you can redistribute it and/or
  10. * modify it under the terms of the GNU General Public License as
  11. * published by the Free Software Foundation; either version 2 of
  12. * the License, or (at your option) any later version.
  13. * =====================================================================
  14. */
  15. #include "gigaset.h"
  16. /* ========================================================== */
  17. /* bit masks for pending commands */
  18. #define PC_DIAL 0x001
  19. #define PC_HUP 0x002
  20. #define PC_INIT 0x004
  21. #define PC_DLE0 0x008
  22. #define PC_DLE1 0x010
  23. #define PC_SHUTDOWN 0x020
  24. #define PC_ACCEPT 0x040
  25. #define PC_CID 0x080
  26. #define PC_NOCID 0x100
  27. #define PC_CIDMODE 0x200
  28. #define PC_UMMODE 0x400
  29. /* types of modem responses */
  30. #define RT_NOTHING 0
  31. #define RT_ZSAU 1
  32. #define RT_RING 2
  33. #define RT_NUMBER 3
  34. #define RT_STRING 4
  35. #define RT_HEX 5
  36. #define RT_ZCAU 6
  37. /* Possible ASCII responses */
  38. #define RSP_OK 0
  39. //#define RSP_BUSY 1
  40. //#define RSP_CONNECT 2
  41. #define RSP_ZGCI 3
  42. #define RSP_RING 4
  43. #define RSP_ZAOC 5
  44. #define RSP_ZCSTR 6
  45. #define RSP_ZCFGT 7
  46. #define RSP_ZCFG 8
  47. #define RSP_ZCCR 9
  48. #define RSP_EMPTY 10
  49. #define RSP_ZLOG 11
  50. #define RSP_ZCAU 12
  51. #define RSP_ZMWI 13
  52. #define RSP_ZABINFO 14
  53. #define RSP_ZSMLSTCHG 15
  54. #define RSP_VAR 100
  55. #define RSP_ZSAU (RSP_VAR + VAR_ZSAU)
  56. #define RSP_ZDLE (RSP_VAR + VAR_ZDLE)
  57. #define RSP_ZVLS (RSP_VAR + VAR_ZVLS)
  58. #define RSP_ZCTP (RSP_VAR + VAR_ZCTP)
  59. #define RSP_STR (RSP_VAR + VAR_NUM)
  60. #define RSP_NMBR (RSP_STR + STR_NMBR)
  61. #define RSP_ZCPN (RSP_STR + STR_ZCPN)
  62. #define RSP_ZCON (RSP_STR + STR_ZCON)
  63. #define RSP_ZBC (RSP_STR + STR_ZBC)
  64. #define RSP_ZHLC (RSP_STR + STR_ZHLC)
  65. #define RSP_ERROR -1 /* ERROR */
  66. #define RSP_WRONG_CID -2 /* unknown cid in cmd */
  67. //#define RSP_EMPTY -3
  68. #define RSP_UNKNOWN -4 /* unknown response */
  69. #define RSP_FAIL -5 /* internal error */
  70. #define RSP_INVAL -6 /* invalid response */
  71. #define RSP_NONE -19
  72. #define RSP_STRING -20
  73. #define RSP_NULL -21
  74. //#define RSP_RETRYFAIL -22
  75. //#define RSP_RETRY -23
  76. //#define RSP_SKIP -24
  77. #define RSP_INIT -27
  78. #define RSP_ANY -26
  79. #define RSP_LAST -28
  80. #define RSP_NODEV -9
  81. /* actions for process_response */
  82. #define ACT_NOTHING 0
  83. #define ACT_SETDLE1 1
  84. #define ACT_SETDLE0 2
  85. #define ACT_FAILINIT 3
  86. #define ACT_HUPMODEM 4
  87. #define ACT_CONFIGMODE 5
  88. #define ACT_INIT 6
  89. #define ACT_DLE0 7
  90. #define ACT_DLE1 8
  91. #define ACT_FAILDLE0 9
  92. #define ACT_FAILDLE1 10
  93. #define ACT_RING 11
  94. #define ACT_CID 12
  95. #define ACT_FAILCID 13
  96. #define ACT_SDOWN 14
  97. #define ACT_FAILSDOWN 15
  98. #define ACT_DEBUG 16
  99. #define ACT_WARN 17
  100. #define ACT_DIALING 18
  101. #define ACT_ABORTDIAL 19
  102. #define ACT_DISCONNECT 20
  103. #define ACT_CONNECT 21
  104. #define ACT_REMOTEREJECT 22
  105. #define ACT_CONNTIMEOUT 23
  106. #define ACT_REMOTEHUP 24
  107. #define ACT_ABORTHUP 25
  108. #define ACT_ICALL 26
  109. #define ACT_ACCEPTED 27
  110. #define ACT_ABORTACCEPT 28
  111. #define ACT_TIMEOUT 29
  112. #define ACT_GETSTRING 30
  113. #define ACT_SETVER 31
  114. #define ACT_FAILVER 32
  115. #define ACT_GOTVER 33
  116. #define ACT_TEST 34
  117. #define ACT_ERROR 35
  118. #define ACT_ABORTCID 36
  119. #define ACT_ZCAU 37
  120. #define ACT_NOTIFY_BC_DOWN 38
  121. #define ACT_NOTIFY_BC_UP 39
  122. #define ACT_DIAL 40
  123. #define ACT_ACCEPT 41
  124. #define ACT_PROTO_L2 42
  125. #define ACT_HUP 43
  126. #define ACT_IF_LOCK 44
  127. #define ACT_START 45
  128. #define ACT_STOP 46
  129. #define ACT_FAKEDLE0 47
  130. #define ACT_FAKEHUP 48
  131. #define ACT_FAKESDOWN 49
  132. #define ACT_SHUTDOWN 50
  133. #define ACT_PROC_CIDMODE 51
  134. #define ACT_UMODESET 52
  135. #define ACT_FAILUMODE 53
  136. #define ACT_CMODESET 54
  137. #define ACT_FAILCMODE 55
  138. #define ACT_IF_VER 56
  139. #define ACT_CMD 100
  140. /* at command sequences */
  141. #define SEQ_NONE 0
  142. #define SEQ_INIT 100
  143. #define SEQ_DLE0 200
  144. #define SEQ_DLE1 250
  145. #define SEQ_CID 300
  146. #define SEQ_NOCID 350
  147. #define SEQ_HUP 400
  148. #define SEQ_DIAL 600
  149. #define SEQ_ACCEPT 720
  150. #define SEQ_SHUTDOWN 500
  151. #define SEQ_CIDMODE 10
  152. #define SEQ_UMMODE 11
  153. // 100: init, 200: dle0, 250:dle1, 300: get cid (dial), 350: "hup" (no cid), 400: hup, 500: reset, 600: dial, 700: ring
  154. struct reply_t gigaset_tab_nocid[] =
  155. {
  156. /* resp_code, min_ConState, max_ConState, parameter, new_ConState, timeout, action, command */
  157. /* initialize device, set cid mode if possible */
  158. //{RSP_INIT, -1, -1,100, 900, 0, {ACT_TEST}},
  159. //{RSP_ERROR, 900,900, -1, 0, 0, {ACT_FAILINIT}},
  160. //{RSP_OK, 900,900, -1, 100, INIT_TIMEOUT,
  161. // {ACT_TIMEOUT}},
  162. {RSP_INIT, -1, -1,SEQ_INIT, 100, INIT_TIMEOUT,
  163. {ACT_TIMEOUT}}, /* wait until device is ready */
  164. {EV_TIMEOUT, 100,100, -1, 101, 3, {0}, "Z\r"}, /* device in transparent mode? try to initialize it. */
  165. {RSP_OK, 101,103, -1, 120, 5, {ACT_GETSTRING}, "+GMR\r"}, /* get version */
  166. {EV_TIMEOUT, 101,101, -1, 102, 5, {0}, "Z\r"}, /* timeout => try once again. */
  167. {RSP_ERROR, 101,101, -1, 102, 5, {0}, "Z\r"}, /* error => try once again. */
  168. {EV_TIMEOUT, 102,102, -1, 108, 5, {ACT_SETDLE1}, "^SDLE=0\r"}, /* timeout => try again in DLE mode. */
  169. {RSP_OK, 108,108, -1, 104,-1},
  170. {RSP_ZDLE, 104,104, 0, 103, 5, {0}, "Z\r"},
  171. {EV_TIMEOUT, 104,104, -1, 0, 0, {ACT_FAILINIT}},
  172. {RSP_ERROR, 108,108, -1, 0, 0, {ACT_FAILINIT}},
  173. {EV_TIMEOUT, 108,108, -1, 105, 2, {ACT_SETDLE0,
  174. ACT_HUPMODEM,
  175. ACT_TIMEOUT}}, /* still timeout => connection in unimodem mode? */
  176. {EV_TIMEOUT, 105,105, -1, 103, 5, {0}, "Z\r"},
  177. {RSP_ERROR, 102,102, -1, 107, 5, {0}, "^GETPRE\r"}, /* ERROR on ATZ => maybe in config mode? */
  178. {RSP_OK, 107,107, -1, 0, 0, {ACT_CONFIGMODE}},
  179. {RSP_ERROR, 107,107, -1, 0, 0, {ACT_FAILINIT}},
  180. {EV_TIMEOUT, 107,107, -1, 0, 0, {ACT_FAILINIT}},
  181. {RSP_ERROR, 103,103, -1, 0, 0, {ACT_FAILINIT}},
  182. {EV_TIMEOUT, 103,103, -1, 0, 0, {ACT_FAILINIT}},
  183. {RSP_STRING, 120,120, -1, 121,-1, {ACT_SETVER}},
  184. {EV_TIMEOUT, 120,121, -1, 0, 0, {ACT_FAILVER, ACT_INIT}},
  185. {RSP_ERROR, 120,121, -1, 0, 0, {ACT_FAILVER, ACT_INIT}},
  186. {RSP_OK, 121,121, -1, 0, 0, {ACT_GOTVER, ACT_INIT}},
  187. /* leave dle mode */
  188. {RSP_INIT, 0, 0,SEQ_DLE0, 201, 5, {0}, "^SDLE=0\r"},
  189. {RSP_OK, 201,201, -1, 202,-1},
  190. {RSP_ZDLE, 202,202, 0, 0, 0, {ACT_DLE0}},
  191. {RSP_NODEV, 200,249, -1, 0, 0, {ACT_FAKEDLE0}},
  192. {RSP_ERROR, 200,249, -1, 0, 0, {ACT_FAILDLE0}},
  193. {EV_TIMEOUT, 200,249, -1, 0, 0, {ACT_FAILDLE0}},
  194. /* enter dle mode */
  195. {RSP_INIT, 0, 0,SEQ_DLE1, 251, 5, {0}, "^SDLE=1\r"},
  196. {RSP_OK, 251,251, -1, 252,-1},
  197. {RSP_ZDLE, 252,252, 1, 0, 0, {ACT_DLE1}},
  198. {RSP_ERROR, 250,299, -1, 0, 0, {ACT_FAILDLE1}},
  199. {EV_TIMEOUT, 250,299, -1, 0, 0, {ACT_FAILDLE1}},
  200. /* incoming call */
  201. {RSP_RING, -1, -1, -1, -1,-1, {ACT_RING}},
  202. /* get cid */
  203. //{RSP_INIT, 0, 0,300, 901, 0, {ACT_TEST}},
  204. //{RSP_ERROR, 901,901, -1, 0, 0, {ACT_FAILCID}},
  205. //{RSP_OK, 901,901, -1, 301, 5, {0}, "^SGCI?\r"},
  206. {RSP_INIT, 0, 0,SEQ_CID, 301, 5, {0}, "^SGCI?\r"},
  207. {RSP_OK, 301,301, -1, 302,-1},
  208. {RSP_ZGCI, 302,302, -1, 0, 0, {ACT_CID}},
  209. {RSP_ERROR, 301,349, -1, 0, 0, {ACT_FAILCID}},
  210. {EV_TIMEOUT, 301,349, -1, 0, 0, {ACT_FAILCID}},
  211. /* enter cid mode */
  212. {RSP_INIT, 0, 0,SEQ_CIDMODE, 150, 5, {0}, "^SGCI=1\r"},
  213. {RSP_OK, 150,150, -1, 0, 0, {ACT_CMODESET}},
  214. {RSP_ERROR, 150,150, -1, 0, 0, {ACT_FAILCMODE}},
  215. {EV_TIMEOUT, 150,150, -1, 0, 0, {ACT_FAILCMODE}},
  216. /* leave cid mode */
  217. //{RSP_INIT, 0, 0,SEQ_UMMODE, 160, 5, {0}, "^SGCI=0\r"},
  218. {RSP_INIT, 0, 0,SEQ_UMMODE, 160, 5, {0}, "Z\r"},
  219. {RSP_OK, 160,160, -1, 0, 0, {ACT_UMODESET}},
  220. {RSP_ERROR, 160,160, -1, 0, 0, {ACT_FAILUMODE}},
  221. {EV_TIMEOUT, 160,160, -1, 0, 0, {ACT_FAILUMODE}},
  222. /* abort getting cid */
  223. {RSP_INIT, 0, 0,SEQ_NOCID, 0, 0, {ACT_ABORTCID}},
  224. /* reset */
  225. {RSP_INIT, 0, 0,SEQ_SHUTDOWN, 504, 5, {0}, "Z\r"},
  226. {RSP_OK, 504,504, -1, 0, 0, {ACT_SDOWN}},
  227. {RSP_ERROR, 501,599, -1, 0, 0, {ACT_FAILSDOWN}},
  228. {EV_TIMEOUT, 501,599, -1, 0, 0, {ACT_FAILSDOWN}},
  229. {RSP_NODEV, 501,599, -1, 0, 0, {ACT_FAKESDOWN}},
  230. {EV_PROC_CIDMODE,-1, -1, -1, -1,-1, {ACT_PROC_CIDMODE}}, //FIXME
  231. {EV_IF_LOCK, -1, -1, -1, -1,-1, {ACT_IF_LOCK}}, //FIXME
  232. {EV_IF_VER, -1, -1, -1, -1,-1, {ACT_IF_VER}}, //FIXME
  233. {EV_START, -1, -1, -1, -1,-1, {ACT_START}}, //FIXME
  234. {EV_STOP, -1, -1, -1, -1,-1, {ACT_STOP}}, //FIXME
  235. {EV_SHUTDOWN, -1, -1, -1, -1,-1, {ACT_SHUTDOWN}}, //FIXME
  236. /* misc. */
  237. {RSP_ERROR, -1, -1, -1, -1, -1, {ACT_ERROR} },
  238. {RSP_EMPTY, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  239. {RSP_ZCFGT, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  240. {RSP_ZCFG, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  241. {RSP_ZLOG, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  242. {RSP_ZMWI, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  243. {RSP_ZABINFO, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  244. {RSP_ZSMLSTCHG,-1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  245. {RSP_ZCAU, -1, -1, -1, -1,-1, {ACT_ZCAU}},
  246. {RSP_NONE, -1, -1, -1, -1,-1, {ACT_DEBUG}},
  247. {RSP_ANY, -1, -1, -1, -1,-1, {ACT_WARN}},
  248. {RSP_LAST}
  249. };
  250. // 600: start dialing, 650: dial in progress, 800: connection is up, 700: ring, 400: hup, 750: accepted icall
  251. struct reply_t gigaset_tab_cid[] =
  252. {
  253. /* resp_code, min_ConState, max_ConState, parameter, new_ConState, timeout, action, command */
  254. /* dial */
  255. {EV_DIAL, -1, -1, -1, -1,-1, {ACT_DIAL}}, //FIXME
  256. {RSP_INIT, 0, 0,SEQ_DIAL, 601, 5, {ACT_CMD+AT_BC}},
  257. {RSP_OK, 601,601, -1, 602, 5, {ACT_CMD+AT_HLC}},
  258. {RSP_NULL, 602,602, -1, 603, 5, {ACT_CMD+AT_PROTO}},
  259. {RSP_OK, 602,602, -1, 603, 5, {ACT_CMD+AT_PROTO}},
  260. {RSP_OK, 603,603, -1, 604, 5, {ACT_CMD+AT_TYPE}},
  261. {RSP_OK, 604,604, -1, 605, 5, {ACT_CMD+AT_MSN}},
  262. {RSP_OK, 605,605, -1, 606, 5, {ACT_CMD+AT_ISO}},
  263. {RSP_NULL, 605,605, -1, 606, 5, {ACT_CMD+AT_ISO}},
  264. {RSP_OK, 606,606, -1, 607, 5, {0}, "+VLS=17\r"},
  265. {RSP_OK, 607,607, -1, 608,-1},
  266. {RSP_ZSAU, 608,608,ZSAU_PROCEEDING, 609, 5, {ACT_CMD+AT_DIAL}},
  267. {RSP_OK, 609,609, -1, 650, 0, {ACT_DIALING}},
  268. {RSP_ERROR, 601,609, -1, 0, 0, {ACT_ABORTDIAL}},
  269. {EV_TIMEOUT, 601,609, -1, 0, 0, {ACT_ABORTDIAL}},
  270. /* optional dialing responses */
  271. {EV_BC_OPEN, 650,650, -1, 651,-1},
  272. {RSP_ZVLS, 608,651, 17, -1,-1, {ACT_DEBUG}},
  273. {RSP_ZCTP, 609,651, -1, -1,-1, {ACT_DEBUG}},
  274. {RSP_ZCPN, 609,651, -1, -1,-1, {ACT_DEBUG}},
  275. {RSP_ZSAU, 650,651,ZSAU_CALL_DELIVERED, -1,-1, {ACT_DEBUG}},
  276. /* connect */
  277. {RSP_ZSAU, 650,650,ZSAU_ACTIVE, 800,-1, {ACT_CONNECT}},
  278. {RSP_ZSAU, 651,651,ZSAU_ACTIVE, 800,-1, {ACT_CONNECT,
  279. ACT_NOTIFY_BC_UP}},
  280. {RSP_ZSAU, 750,750,ZSAU_ACTIVE, 800,-1, {ACT_CONNECT}},
  281. {RSP_ZSAU, 751,751,ZSAU_ACTIVE, 800,-1, {ACT_CONNECT,
  282. ACT_NOTIFY_BC_UP}},
  283. {EV_BC_OPEN, 800,800, -1, 800,-1, {ACT_NOTIFY_BC_UP}},
  284. /* remote hangup */
  285. {RSP_ZSAU, 650,651,ZSAU_DISCONNECT_IND, 0, 0, {ACT_REMOTEREJECT}},
  286. {RSP_ZSAU, 750,751,ZSAU_DISCONNECT_IND, 0, 0, {ACT_REMOTEHUP}},
  287. {RSP_ZSAU, 800,800,ZSAU_DISCONNECT_IND, 0, 0, {ACT_REMOTEHUP}},
  288. /* hangup */
  289. {EV_HUP, -1, -1, -1, -1,-1, {ACT_HUP}}, //FIXME
  290. {RSP_INIT, -1, -1,SEQ_HUP, 401, 5, {0}, "+VLS=0\r"}, /* hang up */ //-1,-1?
  291. {RSP_OK, 401,401, -1, 402, 5},
  292. {RSP_ZVLS, 402,402, 0, 403, 5},
  293. {RSP_ZSAU, 403, 403, ZSAU_DISCONNECT_REQ, -1, -1, {ACT_DEBUG} },
  294. {RSP_ZSAU, 403, 403, ZSAU_NULL, 0, 0, {ACT_DISCONNECT} },
  295. {RSP_NODEV, 401, 403, -1, 0, 0, {ACT_FAKEHUP} },
  296. {RSP_ERROR, 401,401, -1, 0, 0, {ACT_ABORTHUP}},
  297. {EV_TIMEOUT, 401,403, -1, 0, 0, {ACT_ABORTHUP}},
  298. {EV_BC_CLOSED, 0, 0, -1, 0,-1, {ACT_NOTIFY_BC_DOWN}}, //FIXME new constate + timeout
  299. /* ring */
  300. {RSP_ZBC, 700,700, -1, -1,-1, {0}},
  301. {RSP_ZHLC, 700,700, -1, -1,-1, {0}},
  302. {RSP_NMBR, 700,700, -1, -1,-1, {0}},
  303. {RSP_ZCPN, 700,700, -1, -1,-1, {0}},
  304. {RSP_ZCTP, 700,700, -1, -1,-1, {0}},
  305. {EV_TIMEOUT, 700,700, -1, 720,720, {ACT_ICALL}},
  306. {EV_BC_CLOSED,720,720, -1, 0,-1, {ACT_NOTIFY_BC_DOWN}},
  307. /*accept icall*/
  308. {EV_ACCEPT, -1, -1, -1, -1,-1, {ACT_ACCEPT}}, //FIXME
  309. {RSP_INIT, 720,720,SEQ_ACCEPT, 721, 5, {ACT_CMD+AT_PROTO}},
  310. {RSP_OK, 721,721, -1, 722, 5, {ACT_CMD+AT_ISO}},
  311. {RSP_OK, 722,722, -1, 723, 5, {0}, "+VLS=17\r"}, /* set "Endgeraetemodus" */
  312. {RSP_OK, 723,723, -1, 724, 5, {0}},
  313. {RSP_ZVLS, 724,724, 17, 750,50, {ACT_ACCEPTED}},
  314. {RSP_ERROR, 721,729, -1, 0, 0, {ACT_ABORTACCEPT}},
  315. {EV_TIMEOUT, 721,729, -1, 0, 0, {ACT_ABORTACCEPT}},
  316. {RSP_ZSAU, 700,729,ZSAU_NULL, 0, 0, {ACT_ABORTACCEPT}},
  317. {RSP_ZSAU, 700,729,ZSAU_ACTIVE, 0, 0, {ACT_ABORTACCEPT}},
  318. {RSP_ZSAU, 700,729,ZSAU_DISCONNECT_IND, 0, 0, {ACT_ABORTACCEPT}},
  319. {EV_BC_OPEN, 750,750, -1, 751,-1},
  320. {EV_TIMEOUT, 750,751, -1, 0, 0, {ACT_CONNTIMEOUT}},
  321. /* B channel closed (general case) */
  322. {EV_BC_CLOSED, -1, -1, -1, -1,-1, {ACT_NOTIFY_BC_DOWN}}, //FIXME
  323. /* misc. */
  324. {EV_PROTO_L2, -1, -1, -1, -1,-1, {ACT_PROTO_L2}}, //FIXME
  325. {RSP_ZCON, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  326. {RSP_ZCCR, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  327. {RSP_ZAOC, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  328. {RSP_ZCSTR, -1, -1, -1, -1,-1, {ACT_DEBUG}}, //FIXME
  329. {RSP_ZCAU, -1, -1, -1, -1,-1, {ACT_ZCAU}},
  330. {RSP_NONE, -1, -1, -1, -1,-1, {ACT_DEBUG}},
  331. {RSP_ANY, -1, -1, -1, -1,-1, {ACT_WARN}},
  332. {RSP_LAST}
  333. };
  334. static const struct resp_type_t resp_type[] =
  335. {
  336. /*{"", RSP_EMPTY, RT_NOTHING},*/
  337. {"OK", RSP_OK, RT_NOTHING},
  338. {"ERROR", RSP_ERROR, RT_NOTHING},
  339. {"ZSAU", RSP_ZSAU, RT_ZSAU},
  340. {"ZCAU", RSP_ZCAU, RT_ZCAU},
  341. {"RING", RSP_RING, RT_RING},
  342. {"ZGCI", RSP_ZGCI, RT_NUMBER},
  343. {"ZVLS", RSP_ZVLS, RT_NUMBER},
  344. {"ZCTP", RSP_ZCTP, RT_NUMBER},
  345. {"ZDLE", RSP_ZDLE, RT_NUMBER},
  346. {"ZCFGT", RSP_ZCFGT, RT_NUMBER},
  347. {"ZCCR", RSP_ZCCR, RT_NUMBER},
  348. {"ZMWI", RSP_ZMWI, RT_NUMBER},
  349. {"ZHLC", RSP_ZHLC, RT_STRING},
  350. {"ZBC", RSP_ZBC, RT_STRING},
  351. {"NMBR", RSP_NMBR, RT_STRING},
  352. {"ZCPN", RSP_ZCPN, RT_STRING},
  353. {"ZCON", RSP_ZCON, RT_STRING},
  354. {"ZAOC", RSP_ZAOC, RT_STRING},
  355. {"ZCSTR", RSP_ZCSTR, RT_STRING},
  356. {"ZCFG", RSP_ZCFG, RT_HEX},
  357. {"ZLOG", RSP_ZLOG, RT_NOTHING},
  358. {"ZABINFO", RSP_ZABINFO, RT_NOTHING},
  359. {"ZSMLSTCHG", RSP_ZSMLSTCHG, RT_NOTHING},
  360. {NULL,0,0}
  361. };
  362. /*
  363. * Get integer from char-pointer
  364. */
  365. static int isdn_getnum(char *p)
  366. {
  367. int v = -1;
  368. gig_dbg(DEBUG_TRANSCMD, "string: %s", p);
  369. while (*p >= '0' && *p <= '9')
  370. v = ((v < 0) ? 0 : (v * 10)) + (int) ((*p++) - '0');
  371. if (*p)
  372. v = -1; /* invalid Character */
  373. return v;
  374. }
  375. /*
  376. * Get integer from char-pointer
  377. */
  378. static int isdn_gethex(char *p)
  379. {
  380. int v = 0;
  381. int c;
  382. gig_dbg(DEBUG_TRANSCMD, "string: %s", p);
  383. if (!*p)
  384. return -1;
  385. do {
  386. if (v > (INT_MAX - 15) / 16)
  387. return -1;
  388. c = *p;
  389. if (c >= '0' && c <= '9')
  390. c -= '0';
  391. else if (c >= 'a' && c <= 'f')
  392. c -= 'a' - 10;
  393. else if (c >= 'A' && c <= 'F')
  394. c -= 'A' - 10;
  395. else
  396. return -1;
  397. v = v * 16 + c;
  398. } while (*++p);
  399. return v;
  400. }
  401. /* retrieve CID from parsed response
  402. * returns 0 if no CID, -1 if invalid CID, or CID value 1..65535
  403. */
  404. static int cid_of_response(char *s)
  405. {
  406. int cid;
  407. if (s[-1] != ';')
  408. return 0; /* no CID separator */
  409. cid = isdn_getnum(s);
  410. if (cid < 0)
  411. return 0; /* CID not numeric */
  412. if (cid < 1 || cid > 65535)
  413. return -1; /* CID out of range */
  414. return cid;
  415. //FIXME is ;<digit>+ at end of non-CID response really impossible?
  416. }
  417. /**
  418. * gigaset_handle_modem_response() - process received modem response
  419. * @cs: device descriptor structure.
  420. *
  421. * Called by asyncdata/isocdata if a block of data received from the
  422. * device must be processed as a modem command response. The data is
  423. * already in the cs structure.
  424. */
  425. void gigaset_handle_modem_response(struct cardstate *cs)
  426. {
  427. unsigned char *argv[MAX_REC_PARAMS + 1];
  428. int params;
  429. int i, j;
  430. const struct resp_type_t *rt;
  431. int curarg;
  432. unsigned long flags;
  433. unsigned next, tail, head;
  434. struct event_t *event;
  435. int resp_code;
  436. int param_type;
  437. int abort;
  438. size_t len;
  439. int cid;
  440. int rawstring;
  441. len = cs->cbytes;
  442. if (!len) {
  443. /* ignore additional LFs/CRs (M10x config mode or cx100) */
  444. gig_dbg(DEBUG_MCMD, "skipped EOL [%02X]", cs->respdata[len]);
  445. return;
  446. }
  447. cs->respdata[len] = 0;
  448. gig_dbg(DEBUG_TRANSCMD, "raw string: '%s'", cs->respdata);
  449. argv[0] = cs->respdata;
  450. params = 1;
  451. if (cs->at_state.getstring) {
  452. /* getstring only allowed without cid at the moment */
  453. cs->at_state.getstring = 0;
  454. rawstring = 1;
  455. cid = 0;
  456. } else {
  457. /* parse line */
  458. for (i = 0; i < len; i++)
  459. switch (cs->respdata[i]) {
  460. case ';':
  461. case ',':
  462. case '=':
  463. if (params > MAX_REC_PARAMS) {
  464. dev_warn(cs->dev,
  465. "too many parameters in response\n");
  466. /* need last parameter (might be CID) */
  467. params--;
  468. }
  469. argv[params++] = cs->respdata + i + 1;
  470. }
  471. rawstring = 0;
  472. cid = params > 1 ? cid_of_response(argv[params-1]) : 0;
  473. if (cid < 0) {
  474. gigaset_add_event(cs, &cs->at_state, RSP_INVAL,
  475. NULL, 0, NULL);
  476. return;
  477. }
  478. for (j = 1; j < params; ++j)
  479. argv[j][-1] = 0;
  480. gig_dbg(DEBUG_TRANSCMD, "CMD received: %s", argv[0]);
  481. if (cid) {
  482. --params;
  483. gig_dbg(DEBUG_TRANSCMD, "CID: %s", argv[params]);
  484. }
  485. gig_dbg(DEBUG_TRANSCMD, "available params: %d", params - 1);
  486. for (j = 1; j < params; j++)
  487. gig_dbg(DEBUG_TRANSCMD, "param %d: %s", j, argv[j]);
  488. }
  489. spin_lock_irqsave(&cs->ev_lock, flags);
  490. head = cs->ev_head;
  491. tail = cs->ev_tail;
  492. abort = 1;
  493. curarg = 0;
  494. while (curarg < params) {
  495. next = (tail + 1) % MAX_EVENTS;
  496. if (unlikely(next == head)) {
  497. dev_err(cs->dev, "event queue full\n");
  498. break;
  499. }
  500. event = cs->events + tail;
  501. event->at_state = NULL;
  502. event->cid = cid;
  503. event->ptr = NULL;
  504. event->arg = NULL;
  505. tail = next;
  506. if (rawstring) {
  507. resp_code = RSP_STRING;
  508. param_type = RT_STRING;
  509. } else {
  510. for (rt = resp_type; rt->response; ++rt)
  511. if (!strcmp(argv[curarg], rt->response))
  512. break;
  513. if (!rt->response) {
  514. event->type = RSP_UNKNOWN;
  515. dev_warn(cs->dev,
  516. "unknown modem response: %s\n",
  517. argv[curarg]);
  518. break;
  519. }
  520. resp_code = rt->resp_code;
  521. param_type = rt->type;
  522. ++curarg;
  523. }
  524. event->type = resp_code;
  525. switch (param_type) {
  526. case RT_NOTHING:
  527. break;
  528. case RT_RING:
  529. if (!cid) {
  530. dev_err(cs->dev,
  531. "received RING without CID!\n");
  532. event->type = RSP_INVAL;
  533. abort = 1;
  534. } else {
  535. event->cid = 0;
  536. event->parameter = cid;
  537. abort = 0;
  538. }
  539. break;
  540. case RT_ZSAU:
  541. if (curarg >= params) {
  542. event->parameter = ZSAU_NONE;
  543. break;
  544. }
  545. if (!strcmp(argv[curarg], "OUTGOING_CALL_PROCEEDING"))
  546. event->parameter = ZSAU_OUTGOING_CALL_PROCEEDING;
  547. else if (!strcmp(argv[curarg], "CALL_DELIVERED"))
  548. event->parameter = ZSAU_CALL_DELIVERED;
  549. else if (!strcmp(argv[curarg], "ACTIVE"))
  550. event->parameter = ZSAU_ACTIVE;
  551. else if (!strcmp(argv[curarg], "DISCONNECT_IND"))
  552. event->parameter = ZSAU_DISCONNECT_IND;
  553. else if (!strcmp(argv[curarg], "NULL"))
  554. event->parameter = ZSAU_NULL;
  555. else if (!strcmp(argv[curarg], "DISCONNECT_REQ"))
  556. event->parameter = ZSAU_DISCONNECT_REQ;
  557. else {
  558. event->parameter = ZSAU_UNKNOWN;
  559. dev_warn(cs->dev,
  560. "%s: unknown parameter %s after ZSAU\n",
  561. __func__, argv[curarg]);
  562. }
  563. ++curarg;
  564. break;
  565. case RT_STRING:
  566. if (curarg < params) {
  567. event->ptr = kstrdup(argv[curarg], GFP_ATOMIC);
  568. if (!event->ptr)
  569. dev_err(cs->dev, "out of memory\n");
  570. ++curarg;
  571. }
  572. gig_dbg(DEBUG_CMD, "string==%s",
  573. event->ptr ? (char *) event->ptr : "NULL");
  574. break;
  575. case RT_ZCAU:
  576. event->parameter = -1;
  577. if (curarg + 1 < params) {
  578. i = isdn_gethex(argv[curarg]);
  579. j = isdn_gethex(argv[curarg + 1]);
  580. if (i >= 0 && i < 256 && j >= 0 && j < 256)
  581. event->parameter = (unsigned) i << 8
  582. | j;
  583. curarg += 2;
  584. } else
  585. curarg = params - 1;
  586. break;
  587. case RT_NUMBER:
  588. case RT_HEX:
  589. if (curarg < params) {
  590. if (param_type == RT_HEX)
  591. event->parameter =
  592. isdn_gethex(argv[curarg]);
  593. else
  594. event->parameter =
  595. isdn_getnum(argv[curarg]);
  596. ++curarg;
  597. } else
  598. event->parameter = -1;
  599. gig_dbg(DEBUG_CMD, "parameter==%d", event->parameter);
  600. break;
  601. }
  602. if (resp_code == RSP_ZDLE)
  603. cs->dle = event->parameter;
  604. if (abort)
  605. break;
  606. }
  607. cs->ev_tail = tail;
  608. spin_unlock_irqrestore(&cs->ev_lock, flags);
  609. if (curarg != params)
  610. gig_dbg(DEBUG_ANY,
  611. "invalid number of processed parameters: %d/%d",
  612. curarg, params);
  613. }
  614. EXPORT_SYMBOL_GPL(gigaset_handle_modem_response);
  615. /* disconnect
  616. * process closing of connection associated with given AT state structure
  617. */
  618. static void disconnect(struct at_state_t **at_state_p)
  619. {
  620. unsigned long flags;
  621. struct bc_state *bcs = (*at_state_p)->bcs;
  622. struct cardstate *cs = (*at_state_p)->cs;
  623. spin_lock_irqsave(&cs->lock, flags);
  624. ++(*at_state_p)->seq_index;
  625. /* revert to selected idle mode */
  626. if (!cs->cidmode) {
  627. cs->at_state.pending_commands |= PC_UMMODE;
  628. cs->commands_pending = 1;
  629. gig_dbg(DEBUG_CMD, "Scheduling PC_UMMODE");
  630. }
  631. spin_unlock_irqrestore(&cs->lock, flags);
  632. if (bcs) {
  633. /* B channel assigned: invoke hardware specific handler */
  634. cs->ops->close_bchannel(bcs);
  635. /* notify LL */
  636. if (bcs->chstate & (CHS_D_UP | CHS_NOTIFY_LL)) {
  637. bcs->chstate &= ~(CHS_D_UP | CHS_NOTIFY_LL);
  638. gigaset_i4l_channel_cmd(bcs, ISDN_STAT_DHUP);
  639. }
  640. } else {
  641. /* no B channel assigned: just deallocate */
  642. spin_lock_irqsave(&cs->lock, flags);
  643. list_del(&(*at_state_p)->list);
  644. kfree(*at_state_p);
  645. *at_state_p = NULL;
  646. spin_unlock_irqrestore(&cs->lock, flags);
  647. }
  648. }
  649. /* get_free_channel
  650. * get a free AT state structure: either one of those associated with the
  651. * B channels of the Gigaset device, or if none of those is available,
  652. * a newly allocated one with bcs=NULL
  653. * The structure should be freed by calling disconnect() after use.
  654. */
  655. static inline struct at_state_t *get_free_channel(struct cardstate *cs,
  656. int cid)
  657. /* cids: >0: siemens-cid
  658. 0: without cid
  659. -1: no cid assigned yet
  660. */
  661. {
  662. unsigned long flags;
  663. int i;
  664. struct at_state_t *ret;
  665. for (i = 0; i < cs->channels; ++i)
  666. if (gigaset_get_channel(cs->bcs + i)) {
  667. ret = &cs->bcs[i].at_state;
  668. ret->cid = cid;
  669. return ret;
  670. }
  671. spin_lock_irqsave(&cs->lock, flags);
  672. ret = kmalloc(sizeof(struct at_state_t), GFP_ATOMIC);
  673. if (ret) {
  674. gigaset_at_init(ret, NULL, cs, cid);
  675. list_add(&ret->list, &cs->temp_at_states);
  676. }
  677. spin_unlock_irqrestore(&cs->lock, flags);
  678. return ret;
  679. }
  680. static void init_failed(struct cardstate *cs, int mode)
  681. {
  682. int i;
  683. struct at_state_t *at_state;
  684. cs->at_state.pending_commands &= ~PC_INIT;
  685. cs->mode = mode;
  686. cs->mstate = MS_UNINITIALIZED;
  687. gigaset_free_channels(cs);
  688. for (i = 0; i < cs->channels; ++i) {
  689. at_state = &cs->bcs[i].at_state;
  690. if (at_state->pending_commands & PC_CID) {
  691. at_state->pending_commands &= ~PC_CID;
  692. at_state->pending_commands |= PC_NOCID;
  693. cs->commands_pending = 1;
  694. }
  695. }
  696. }
  697. static void schedule_init(struct cardstate *cs, int state)
  698. {
  699. if (cs->at_state.pending_commands & PC_INIT) {
  700. gig_dbg(DEBUG_CMD, "not scheduling PC_INIT again");
  701. return;
  702. }
  703. cs->mstate = state;
  704. cs->mode = M_UNKNOWN;
  705. gigaset_block_channels(cs);
  706. cs->at_state.pending_commands |= PC_INIT;
  707. cs->commands_pending = 1;
  708. gig_dbg(DEBUG_CMD, "Scheduling PC_INIT");
  709. }
  710. /* Add "AT" to a command, add the cid, dle encode it, send the result to the
  711. hardware. */
  712. static void send_command(struct cardstate *cs, const char *cmd, int cid,
  713. int dle, gfp_t kmallocflags)
  714. {
  715. size_t cmdlen, buflen;
  716. char *cmdpos, *cmdbuf, *cmdtail;
  717. cmdlen = strlen(cmd);
  718. buflen = 11 + cmdlen;
  719. if (unlikely(buflen <= cmdlen)) {
  720. dev_err(cs->dev, "integer overflow in buflen\n");
  721. return;
  722. }
  723. cmdbuf = kmalloc(buflen, kmallocflags);
  724. if (unlikely(!cmdbuf)) {
  725. dev_err(cs->dev, "out of memory\n");
  726. return;
  727. }
  728. cmdpos = cmdbuf + 9;
  729. cmdtail = cmdpos + cmdlen;
  730. memcpy(cmdpos, cmd, cmdlen);
  731. if (cid > 0 && cid <= 65535) {
  732. do {
  733. *--cmdpos = '0' + cid % 10;
  734. cid /= 10;
  735. ++cmdlen;
  736. } while (cid);
  737. }
  738. cmdlen += 2;
  739. *--cmdpos = 'T';
  740. *--cmdpos = 'A';
  741. if (dle) {
  742. cmdlen += 4;
  743. *--cmdpos = '(';
  744. *--cmdpos = 0x10;
  745. *cmdtail++ = 0x10;
  746. *cmdtail++ = ')';
  747. }
  748. cs->ops->write_cmd(cs, cmdpos, cmdlen, NULL);
  749. kfree(cmdbuf);
  750. }
  751. static struct at_state_t *at_state_from_cid(struct cardstate *cs, int cid)
  752. {
  753. struct at_state_t *at_state;
  754. int i;
  755. unsigned long flags;
  756. if (cid == 0)
  757. return &cs->at_state;
  758. for (i = 0; i < cs->channels; ++i)
  759. if (cid == cs->bcs[i].at_state.cid)
  760. return &cs->bcs[i].at_state;
  761. spin_lock_irqsave(&cs->lock, flags);
  762. list_for_each_entry(at_state, &cs->temp_at_states, list)
  763. if (cid == at_state->cid) {
  764. spin_unlock_irqrestore(&cs->lock, flags);
  765. return at_state;
  766. }
  767. spin_unlock_irqrestore(&cs->lock, flags);
  768. return NULL;
  769. }
  770. static void bchannel_down(struct bc_state *bcs)
  771. {
  772. if (bcs->chstate & CHS_B_UP) {
  773. bcs->chstate &= ~CHS_B_UP;
  774. gigaset_i4l_channel_cmd(bcs, ISDN_STAT_BHUP);
  775. }
  776. if (bcs->chstate & (CHS_D_UP | CHS_NOTIFY_LL)) {
  777. bcs->chstate &= ~(CHS_D_UP | CHS_NOTIFY_LL);
  778. gigaset_i4l_channel_cmd(bcs, ISDN_STAT_DHUP);
  779. }
  780. gigaset_free_channel(bcs);
  781. gigaset_bcs_reinit(bcs);
  782. }
  783. static void bchannel_up(struct bc_state *bcs)
  784. {
  785. if (bcs->chstate & CHS_B_UP) {
  786. dev_notice(bcs->cs->dev, "%s: B channel already up\n",
  787. __func__);
  788. return;
  789. }
  790. bcs->chstate |= CHS_B_UP;
  791. gigaset_i4l_channel_cmd(bcs, ISDN_STAT_BCONN);
  792. }
  793. static void start_dial(struct at_state_t *at_state, void *data, unsigned seq_index)
  794. {
  795. struct bc_state *bcs = at_state->bcs;
  796. struct cardstate *cs = at_state->cs;
  797. int retval;
  798. unsigned long flags;
  799. bcs->chstate |= CHS_NOTIFY_LL;
  800. spin_lock_irqsave(&cs->lock, flags);
  801. if (at_state->seq_index != seq_index) {
  802. spin_unlock_irqrestore(&cs->lock, flags);
  803. goto error;
  804. }
  805. spin_unlock_irqrestore(&cs->lock, flags);
  806. retval = gigaset_isdn_setup_dial(at_state, data);
  807. if (retval != 0)
  808. goto error;
  809. at_state->pending_commands |= PC_CID;
  810. gig_dbg(DEBUG_CMD, "Scheduling PC_CID");
  811. cs->commands_pending = 1;
  812. return;
  813. error:
  814. at_state->pending_commands |= PC_NOCID;
  815. gig_dbg(DEBUG_CMD, "Scheduling PC_NOCID");
  816. cs->commands_pending = 1;
  817. return;
  818. }
  819. static void start_accept(struct at_state_t *at_state)
  820. {
  821. struct cardstate *cs = at_state->cs;
  822. int retval;
  823. retval = gigaset_isdn_setup_accept(at_state);
  824. if (retval == 0) {
  825. at_state->pending_commands |= PC_ACCEPT;
  826. gig_dbg(DEBUG_CMD, "Scheduling PC_ACCEPT");
  827. cs->commands_pending = 1;
  828. } else {
  829. /* error reset */
  830. at_state->pending_commands |= PC_HUP;
  831. gig_dbg(DEBUG_CMD, "Scheduling PC_HUP");
  832. cs->commands_pending = 1;
  833. }
  834. }
  835. static void do_start(struct cardstate *cs)
  836. {
  837. gigaset_free_channels(cs);
  838. if (cs->mstate != MS_LOCKED)
  839. schedule_init(cs, MS_INIT);
  840. cs->isdn_up = 1;
  841. gigaset_i4l_cmd(cs, ISDN_STAT_RUN);
  842. // FIXME: not in locked mode
  843. // FIXME 2: only after init sequence
  844. cs->waiting = 0;
  845. wake_up(&cs->waitqueue);
  846. }
  847. static void finish_shutdown(struct cardstate *cs)
  848. {
  849. if (cs->mstate != MS_LOCKED) {
  850. cs->mstate = MS_UNINITIALIZED;
  851. cs->mode = M_UNKNOWN;
  852. }
  853. /* Tell the LL that the device is not available .. */
  854. if (cs->isdn_up) {
  855. cs->isdn_up = 0;
  856. gigaset_i4l_cmd(cs, ISDN_STAT_STOP);
  857. }
  858. /* The rest is done by cleanup_cs () in user mode. */
  859. cs->cmd_result = -ENODEV;
  860. cs->waiting = 0;
  861. wake_up(&cs->waitqueue);
  862. }
  863. static void do_shutdown(struct cardstate *cs)
  864. {
  865. gigaset_block_channels(cs);
  866. if (cs->mstate == MS_READY) {
  867. cs->mstate = MS_SHUTDOWN;
  868. cs->at_state.pending_commands |= PC_SHUTDOWN;
  869. cs->commands_pending = 1;
  870. gig_dbg(DEBUG_CMD, "Scheduling PC_SHUTDOWN");
  871. } else
  872. finish_shutdown(cs);
  873. }
  874. static void do_stop(struct cardstate *cs)
  875. {
  876. unsigned long flags;
  877. spin_lock_irqsave(&cs->lock, flags);
  878. cs->connected = 0;
  879. spin_unlock_irqrestore(&cs->lock, flags);
  880. do_shutdown(cs);
  881. }
  882. /* Entering cid mode or getting a cid failed:
  883. * try to initialize the device and try again.
  884. *
  885. * channel >= 0: getting cid for the channel failed
  886. * channel < 0: entering cid mode failed
  887. *
  888. * returns 0 on failure
  889. */
  890. static int reinit_and_retry(struct cardstate *cs, int channel)
  891. {
  892. int i;
  893. if (--cs->retry_count <= 0)
  894. return 0;
  895. for (i = 0; i < cs->channels; ++i)
  896. if (cs->bcs[i].at_state.cid > 0)
  897. return 0;
  898. if (channel < 0)
  899. dev_warn(cs->dev,
  900. "Could not enter cid mode. Reinit device and try again.\n");
  901. else {
  902. dev_warn(cs->dev,
  903. "Could not get a call id. Reinit device and try again.\n");
  904. cs->bcs[channel].at_state.pending_commands |= PC_CID;
  905. }
  906. schedule_init(cs, MS_INIT);
  907. return 1;
  908. }
  909. static int at_state_invalid(struct cardstate *cs,
  910. struct at_state_t *test_ptr)
  911. {
  912. unsigned long flags;
  913. unsigned channel;
  914. struct at_state_t *at_state;
  915. int retval = 0;
  916. spin_lock_irqsave(&cs->lock, flags);
  917. if (test_ptr == &cs->at_state)
  918. goto exit;
  919. list_for_each_entry(at_state, &cs->temp_at_states, list)
  920. if (at_state == test_ptr)
  921. goto exit;
  922. for (channel = 0; channel < cs->channels; ++channel)
  923. if (&cs->bcs[channel].at_state == test_ptr)
  924. goto exit;
  925. retval = 1;
  926. exit:
  927. spin_unlock_irqrestore(&cs->lock, flags);
  928. return retval;
  929. }
  930. static void handle_icall(struct cardstate *cs, struct bc_state *bcs,
  931. struct at_state_t **p_at_state)
  932. {
  933. int retval;
  934. struct at_state_t *at_state = *p_at_state;
  935. retval = gigaset_isdn_icall(at_state);
  936. switch (retval) {
  937. case ICALL_ACCEPT:
  938. break;
  939. default:
  940. dev_err(cs->dev, "internal error: disposition=%d\n", retval);
  941. /* --v-- fall through --v-- */
  942. case ICALL_IGNORE:
  943. case ICALL_REJECT:
  944. /* hang up actively
  945. * Device doc says that would reject the call.
  946. * In fact it doesn't.
  947. */
  948. at_state->pending_commands |= PC_HUP;
  949. cs->commands_pending = 1;
  950. break;
  951. }
  952. }
  953. static int do_lock(struct cardstate *cs)
  954. {
  955. int mode;
  956. int i;
  957. switch (cs->mstate) {
  958. case MS_UNINITIALIZED:
  959. case MS_READY:
  960. if (cs->cur_at_seq || !list_empty(&cs->temp_at_states) ||
  961. cs->at_state.pending_commands)
  962. return -EBUSY;
  963. for (i = 0; i < cs->channels; ++i)
  964. if (cs->bcs[i].at_state.pending_commands)
  965. return -EBUSY;
  966. if (!gigaset_get_channels(cs))
  967. return -EBUSY;
  968. break;
  969. case MS_LOCKED:
  970. //retval = -EACCES;
  971. break;
  972. default:
  973. return -EBUSY;
  974. }
  975. mode = cs->mode;
  976. cs->mstate = MS_LOCKED;
  977. cs->mode = M_UNKNOWN;
  978. return mode;
  979. }
  980. static int do_unlock(struct cardstate *cs)
  981. {
  982. if (cs->mstate != MS_LOCKED)
  983. return -EINVAL;
  984. cs->mstate = MS_UNINITIALIZED;
  985. cs->mode = M_UNKNOWN;
  986. gigaset_free_channels(cs);
  987. if (cs->connected)
  988. schedule_init(cs, MS_INIT);
  989. return 0;
  990. }
  991. static void do_action(int action, struct cardstate *cs,
  992. struct bc_state *bcs,
  993. struct at_state_t **p_at_state, char **pp_command,
  994. int *p_genresp, int *p_resp_code,
  995. struct event_t *ev)
  996. {
  997. struct at_state_t *at_state = *p_at_state;
  998. struct at_state_t *at_state2;
  999. unsigned long flags;
  1000. int channel;
  1001. unsigned char *s, *e;
  1002. int i;
  1003. unsigned long val;
  1004. switch (action) {
  1005. case ACT_NOTHING:
  1006. break;
  1007. case ACT_TIMEOUT:
  1008. at_state->waiting = 1;
  1009. break;
  1010. case ACT_INIT:
  1011. cs->at_state.pending_commands &= ~PC_INIT;
  1012. cs->cur_at_seq = SEQ_NONE;
  1013. cs->mode = M_UNIMODEM;
  1014. spin_lock_irqsave(&cs->lock, flags);
  1015. if (!cs->cidmode) {
  1016. spin_unlock_irqrestore(&cs->lock, flags);
  1017. gigaset_free_channels(cs);
  1018. cs->mstate = MS_READY;
  1019. break;
  1020. }
  1021. spin_unlock_irqrestore(&cs->lock, flags);
  1022. cs->at_state.pending_commands |= PC_CIDMODE;
  1023. cs->commands_pending = 1;
  1024. gig_dbg(DEBUG_CMD, "Scheduling PC_CIDMODE");
  1025. break;
  1026. case ACT_FAILINIT:
  1027. dev_warn(cs->dev, "Could not initialize the device.\n");
  1028. cs->dle = 0;
  1029. init_failed(cs, M_UNKNOWN);
  1030. cs->cur_at_seq = SEQ_NONE;
  1031. break;
  1032. case ACT_CONFIGMODE:
  1033. init_failed(cs, M_CONFIG);
  1034. cs->cur_at_seq = SEQ_NONE;
  1035. break;
  1036. case ACT_SETDLE1:
  1037. cs->dle = 1;
  1038. /* cs->inbuf[0].inputstate |= INS_command | INS_DLE_command; */
  1039. cs->inbuf[0].inputstate &=
  1040. ~(INS_command | INS_DLE_command);
  1041. break;
  1042. case ACT_SETDLE0:
  1043. cs->dle = 0;
  1044. cs->inbuf[0].inputstate =
  1045. (cs->inbuf[0].inputstate & ~INS_DLE_command)
  1046. | INS_command;
  1047. break;
  1048. case ACT_CMODESET:
  1049. if (cs->mstate == MS_INIT || cs->mstate == MS_RECOVER) {
  1050. gigaset_free_channels(cs);
  1051. cs->mstate = MS_READY;
  1052. }
  1053. cs->mode = M_CID;
  1054. cs->cur_at_seq = SEQ_NONE;
  1055. break;
  1056. case ACT_UMODESET:
  1057. cs->mode = M_UNIMODEM;
  1058. cs->cur_at_seq = SEQ_NONE;
  1059. break;
  1060. case ACT_FAILCMODE:
  1061. cs->cur_at_seq = SEQ_NONE;
  1062. if (cs->mstate == MS_INIT || cs->mstate == MS_RECOVER) {
  1063. init_failed(cs, M_UNKNOWN);
  1064. break;
  1065. }
  1066. if (!reinit_and_retry(cs, -1))
  1067. schedule_init(cs, MS_RECOVER);
  1068. break;
  1069. case ACT_FAILUMODE:
  1070. cs->cur_at_seq = SEQ_NONE;
  1071. schedule_init(cs, MS_RECOVER);
  1072. break;
  1073. case ACT_HUPMODEM:
  1074. /* send "+++" (hangup in unimodem mode) */
  1075. if (cs->connected)
  1076. cs->ops->write_cmd(cs, "+++", 3, NULL);
  1077. break;
  1078. case ACT_RING:
  1079. /* get fresh AT state structure for new CID */
  1080. at_state2 = get_free_channel(cs, ev->parameter);
  1081. if (!at_state2) {
  1082. dev_warn(cs->dev,
  1083. "RING ignored: could not allocate channel structure\n");
  1084. break;
  1085. }
  1086. /* initialize AT state structure
  1087. * note that bcs may be NULL if no B channel is free
  1088. */
  1089. at_state2->ConState = 700;
  1090. kfree(at_state2->str_var[STR_NMBR]);
  1091. at_state2->str_var[STR_NMBR] = NULL;
  1092. kfree(at_state2->str_var[STR_ZCPN]);
  1093. at_state2->str_var[STR_ZCPN] = NULL;
  1094. kfree(at_state2->str_var[STR_ZBC]);
  1095. at_state2->str_var[STR_ZBC] = NULL;
  1096. kfree(at_state2->str_var[STR_ZHLC]);
  1097. at_state2->str_var[STR_ZHLC] = NULL;
  1098. at_state2->int_var[VAR_ZCTP] = -1;
  1099. spin_lock_irqsave(&cs->lock, flags);
  1100. at_state2->timer_expires = RING_TIMEOUT;
  1101. at_state2->timer_active = 1;
  1102. spin_unlock_irqrestore(&cs->lock, flags);
  1103. break;
  1104. case ACT_ICALL:
  1105. handle_icall(cs, bcs, p_at_state);
  1106. break;
  1107. case ACT_FAILSDOWN:
  1108. dev_warn(cs->dev, "Could not shut down the device.\n");
  1109. /* fall through */
  1110. case ACT_FAKESDOWN:
  1111. case ACT_SDOWN:
  1112. cs->cur_at_seq = SEQ_NONE;
  1113. finish_shutdown(cs);
  1114. break;
  1115. case ACT_CONNECT:
  1116. if (cs->onechannel) {
  1117. at_state->pending_commands |= PC_DLE1;
  1118. cs->commands_pending = 1;
  1119. break;
  1120. }
  1121. bcs->chstate |= CHS_D_UP;
  1122. gigaset_i4l_channel_cmd(bcs, ISDN_STAT_DCONN);
  1123. cs->ops->init_bchannel(bcs);
  1124. break;
  1125. case ACT_DLE1:
  1126. cs->cur_at_seq = SEQ_NONE;
  1127. bcs = cs->bcs + cs->curchannel;
  1128. bcs->chstate |= CHS_D_UP;
  1129. gigaset_i4l_channel_cmd(bcs, ISDN_STAT_DCONN);
  1130. cs->ops->init_bchannel(bcs);
  1131. break;
  1132. case ACT_FAKEHUP:
  1133. at_state->int_var[VAR_ZSAU] = ZSAU_NULL;
  1134. /* fall through */
  1135. case ACT_DISCONNECT:
  1136. cs->cur_at_seq = SEQ_NONE;
  1137. at_state->cid = -1;
  1138. if (bcs && cs->onechannel && cs->dle) {
  1139. /* Check for other open channels not needed:
  1140. * DLE only used for M10x with one B channel.
  1141. */
  1142. at_state->pending_commands |= PC_DLE0;
  1143. cs->commands_pending = 1;
  1144. } else
  1145. disconnect(p_at_state);
  1146. break;
  1147. case ACT_FAKEDLE0:
  1148. at_state->int_var[VAR_ZDLE] = 0;
  1149. cs->dle = 0;
  1150. /* fall through */
  1151. case ACT_DLE0:
  1152. cs->cur_at_seq = SEQ_NONE;
  1153. at_state2 = &cs->bcs[cs->curchannel].at_state;
  1154. disconnect(&at_state2);
  1155. break;
  1156. case ACT_ABORTHUP:
  1157. cs->cur_at_seq = SEQ_NONE;
  1158. dev_warn(cs->dev, "Could not hang up.\n");
  1159. at_state->cid = -1;
  1160. if (bcs && cs->onechannel)
  1161. at_state->pending_commands |= PC_DLE0;
  1162. else
  1163. disconnect(p_at_state);
  1164. schedule_init(cs, MS_RECOVER);
  1165. break;
  1166. case ACT_FAILDLE0:
  1167. cs->cur_at_seq = SEQ_NONE;
  1168. dev_warn(cs->dev, "Could not leave DLE mode.\n");
  1169. at_state2 = &cs->bcs[cs->curchannel].at_state;
  1170. disconnect(&at_state2);
  1171. schedule_init(cs, MS_RECOVER);
  1172. break;
  1173. case ACT_FAILDLE1:
  1174. cs->cur_at_seq = SEQ_NONE;
  1175. dev_warn(cs->dev,
  1176. "Could not enter DLE mode. Trying to hang up.\n");
  1177. channel = cs->curchannel;
  1178. cs->bcs[channel].at_state.pending_commands |= PC_HUP;
  1179. cs->commands_pending = 1;
  1180. break;
  1181. case ACT_CID: /* got cid; start dialing */
  1182. cs->cur_at_seq = SEQ_NONE;
  1183. channel = cs->curchannel;
  1184. if (ev->parameter > 0 && ev->parameter <= 65535) {
  1185. cs->bcs[channel].at_state.cid = ev->parameter;
  1186. cs->bcs[channel].at_state.pending_commands |=
  1187. PC_DIAL;
  1188. cs->commands_pending = 1;
  1189. break;
  1190. }
  1191. /* fall through */
  1192. case ACT_FAILCID:
  1193. cs->cur_at_seq = SEQ_NONE;
  1194. channel = cs->curchannel;
  1195. if (!reinit_and_retry(cs, channel)) {
  1196. dev_warn(cs->dev,
  1197. "Could not get a call ID. Cannot dial.\n");
  1198. at_state2 = &cs->bcs[channel].at_state;
  1199. disconnect(&at_state2);
  1200. }
  1201. break;
  1202. case ACT_ABORTCID:
  1203. cs->cur_at_seq = SEQ_NONE;
  1204. at_state2 = &cs->bcs[cs->curchannel].at_state;
  1205. disconnect(&at_state2);
  1206. break;
  1207. case ACT_DIALING:
  1208. case ACT_ACCEPTED:
  1209. cs->cur_at_seq = SEQ_NONE;
  1210. break;
  1211. case ACT_ABORTACCEPT: /* hangup/error/timeout during ICALL processing */
  1212. disconnect(p_at_state);
  1213. break;
  1214. case ACT_ABORTDIAL: /* error/timeout during dial preparation */
  1215. cs->cur_at_seq = SEQ_NONE;
  1216. at_state->pending_commands |= PC_HUP;
  1217. cs->commands_pending = 1;
  1218. break;
  1219. case ACT_REMOTEREJECT: /* DISCONNECT_IND after dialling */
  1220. case ACT_CONNTIMEOUT: /* timeout waiting for ZSAU=ACTIVE */
  1221. case ACT_REMOTEHUP: /* DISCONNECT_IND with established connection */
  1222. at_state->pending_commands |= PC_HUP;
  1223. cs->commands_pending = 1;
  1224. break;
  1225. case ACT_GETSTRING: /* warning: RING, ZDLE, ...
  1226. are not handled properly anymore */
  1227. at_state->getstring = 1;
  1228. break;
  1229. case ACT_SETVER:
  1230. if (!ev->ptr) {
  1231. *p_genresp = 1;
  1232. *p_resp_code = RSP_ERROR;
  1233. break;
  1234. }
  1235. s = ev->ptr;
  1236. if (!strcmp(s, "OK")) {
  1237. *p_genresp = 1;
  1238. *p_resp_code = RSP_ERROR;
  1239. break;
  1240. }
  1241. for (i = 0; i < 4; ++i) {
  1242. val = simple_strtoul(s, (char **) &e, 10);
  1243. if (val > INT_MAX || e == s)
  1244. break;
  1245. if (i == 3) {
  1246. if (*e)
  1247. break;
  1248. } else if (*e != '.')
  1249. break;
  1250. else
  1251. s = e + 1;
  1252. cs->fwver[i] = val;
  1253. }
  1254. if (i != 4) {
  1255. *p_genresp = 1;
  1256. *p_resp_code = RSP_ERROR;
  1257. break;
  1258. }
  1259. /*at_state->getstring = 1;*/
  1260. cs->gotfwver = 0;
  1261. break;
  1262. case ACT_GOTVER:
  1263. if (cs->gotfwver == 0) {
  1264. cs->gotfwver = 1;
  1265. gig_dbg(DEBUG_ANY,
  1266. "firmware version %02d.%03d.%02d.%02d",
  1267. cs->fwver[0], cs->fwver[1],
  1268. cs->fwver[2], cs->fwver[3]);
  1269. break;
  1270. }
  1271. /* fall through */
  1272. case ACT_FAILVER:
  1273. cs->gotfwver = -1;
  1274. dev_err(cs->dev, "could not read firmware version.\n");
  1275. break;
  1276. case ACT_ERROR:
  1277. gig_dbg(DEBUG_ANY, "%s: ERROR response in ConState %d",
  1278. __func__, at_state->ConState);
  1279. cs->cur_at_seq = SEQ_NONE;
  1280. break;
  1281. #ifdef CONFIG_GIGASET_DEBUG
  1282. case ACT_TEST:
  1283. {
  1284. static int count = 3; //2; //1;
  1285. *p_genresp = 1;
  1286. *p_resp_code = count ? RSP_ERROR : RSP_OK;
  1287. if (count > 0)
  1288. --count;
  1289. }
  1290. break;
  1291. #endif
  1292. case ACT_DEBUG:
  1293. gig_dbg(DEBUG_ANY, "%s: resp_code %d in ConState %d",
  1294. __func__, ev->type, at_state->ConState);
  1295. break;
  1296. case ACT_WARN:
  1297. dev_warn(cs->dev, "%s: resp_code %d in ConState %d!\n",
  1298. __func__, ev->type, at_state->ConState);
  1299. break;
  1300. case ACT_ZCAU:
  1301. dev_warn(cs->dev, "cause code %04x in connection state %d.\n",
  1302. ev->parameter, at_state->ConState);
  1303. break;
  1304. /* events from the LL */
  1305. case ACT_DIAL:
  1306. start_dial(at_state, ev->ptr, ev->parameter);
  1307. break;
  1308. case ACT_ACCEPT:
  1309. start_accept(at_state);
  1310. break;
  1311. case ACT_PROTO_L2:
  1312. gig_dbg(DEBUG_CMD, "set protocol to %u",
  1313. (unsigned) ev->parameter);
  1314. at_state->bcs->proto2 = ev->parameter;
  1315. break;
  1316. case ACT_HUP:
  1317. at_state->pending_commands |= PC_HUP;
  1318. cs->commands_pending = 1;
  1319. gig_dbg(DEBUG_CMD, "Scheduling PC_HUP");
  1320. break;
  1321. /* hotplug events */
  1322. case ACT_STOP:
  1323. do_stop(cs);
  1324. break;
  1325. case ACT_START:
  1326. do_start(cs);
  1327. break;
  1328. /* events from the interface */ // FIXME without ACT_xxxx?
  1329. case ACT_IF_LOCK:
  1330. cs->cmd_result = ev->parameter ? do_lock(cs) : do_unlock(cs);
  1331. cs->waiting = 0;
  1332. wake_up(&cs->waitqueue);
  1333. break;
  1334. case ACT_IF_VER:
  1335. if (ev->parameter != 0)
  1336. cs->cmd_result = -EINVAL;
  1337. else if (cs->gotfwver != 1) {
  1338. cs->cmd_result = -ENOENT;
  1339. } else {
  1340. memcpy(ev->arg, cs->fwver, sizeof cs->fwver);
  1341. cs->cmd_result = 0;
  1342. }
  1343. cs->waiting = 0;
  1344. wake_up(&cs->waitqueue);
  1345. break;
  1346. /* events from the proc file system */ // FIXME without ACT_xxxx?
  1347. case ACT_PROC_CIDMODE:
  1348. spin_lock_irqsave(&cs->lock, flags);
  1349. if (ev->parameter != cs->cidmode) {
  1350. cs->cidmode = ev->parameter;
  1351. if (ev->parameter) {
  1352. cs->at_state.pending_commands |= PC_CIDMODE;
  1353. gig_dbg(DEBUG_CMD, "Scheduling PC_CIDMODE");
  1354. } else {
  1355. cs->at_state.pending_commands |= PC_UMMODE;
  1356. gig_dbg(DEBUG_CMD, "Scheduling PC_UMMODE");
  1357. }
  1358. cs->commands_pending = 1;
  1359. }
  1360. spin_unlock_irqrestore(&cs->lock, flags);
  1361. cs->waiting = 0;
  1362. wake_up(&cs->waitqueue);
  1363. break;
  1364. /* events from the hardware drivers */
  1365. case ACT_NOTIFY_BC_DOWN:
  1366. bchannel_down(bcs);
  1367. break;
  1368. case ACT_NOTIFY_BC_UP:
  1369. bchannel_up(bcs);
  1370. break;
  1371. case ACT_SHUTDOWN:
  1372. do_shutdown(cs);
  1373. break;
  1374. default:
  1375. if (action >= ACT_CMD && action < ACT_CMD + AT_NUM) {
  1376. *pp_command = at_state->bcs->commands[action - ACT_CMD];
  1377. if (!*pp_command) {
  1378. *p_genresp = 1;
  1379. *p_resp_code = RSP_NULL;
  1380. }
  1381. } else
  1382. dev_err(cs->dev, "%s: action==%d!\n", __func__, action);
  1383. }
  1384. }
  1385. /* State machine to do the calling and hangup procedure */
  1386. static void process_event(struct cardstate *cs, struct event_t *ev)
  1387. {
  1388. struct bc_state *bcs;
  1389. char *p_command = NULL;
  1390. struct reply_t *rep;
  1391. int rcode;
  1392. int genresp = 0;
  1393. int resp_code = RSP_ERROR;
  1394. int sendcid;
  1395. struct at_state_t *at_state;
  1396. int index;
  1397. int curact;
  1398. unsigned long flags;
  1399. if (ev->cid >= 0) {
  1400. at_state = at_state_from_cid(cs, ev->cid);
  1401. if (!at_state) {
  1402. gigaset_add_event(cs, &cs->at_state, RSP_WRONG_CID,
  1403. NULL, 0, NULL);
  1404. return;
  1405. }
  1406. } else {
  1407. at_state = ev->at_state;
  1408. if (at_state_invalid(cs, at_state)) {
  1409. gig_dbg(DEBUG_ANY, "event for invalid at_state %p",
  1410. at_state);
  1411. return;
  1412. }
  1413. }
  1414. gig_dbg(DEBUG_CMD, "connection state %d, event %d",
  1415. at_state->ConState, ev->type);
  1416. bcs = at_state->bcs;
  1417. sendcid = at_state->cid;
  1418. /* Setting the pointer to the dial array */
  1419. rep = at_state->replystruct;
  1420. spin_lock_irqsave(&cs->lock, flags);
  1421. if (ev->type == EV_TIMEOUT) {
  1422. if (ev->parameter != at_state->timer_index
  1423. || !at_state->timer_active) {
  1424. ev->type = RSP_NONE; /* old timeout */
  1425. gig_dbg(DEBUG_ANY, "old timeout");
  1426. } else if (!at_state->waiting)
  1427. gig_dbg(DEBUG_ANY, "timeout occurred");
  1428. else
  1429. gig_dbg(DEBUG_ANY, "stopped waiting");
  1430. }
  1431. spin_unlock_irqrestore(&cs->lock, flags);
  1432. /* if the response belongs to a variable in at_state->int_var[VAR_XXXX]
  1433. or at_state->str_var[STR_XXXX], set it */
  1434. if (ev->type >= RSP_VAR && ev->type < RSP_VAR + VAR_NUM) {
  1435. index = ev->type - RSP_VAR;
  1436. at_state->int_var[index] = ev->parameter;
  1437. } else if (ev->type >= RSP_STR && ev->type < RSP_STR + STR_NUM) {
  1438. index = ev->type - RSP_STR;
  1439. kfree(at_state->str_var[index]);
  1440. at_state->str_var[index] = ev->ptr;
  1441. ev->ptr = NULL; /* prevent process_events() from
  1442. deallocating ptr */
  1443. }
  1444. if (ev->type == EV_TIMEOUT || ev->type == RSP_STRING)
  1445. at_state->getstring = 0;
  1446. /* Search row in dial array which matches modem response and current
  1447. constate */
  1448. for (;; rep++) {
  1449. rcode = rep->resp_code;
  1450. if (rcode == RSP_LAST) {
  1451. /* found nothing...*/
  1452. dev_warn(cs->dev, "%s: rcode=RSP_LAST: "
  1453. "resp_code %d in ConState %d!\n",
  1454. __func__, ev->type, at_state->ConState);
  1455. return;
  1456. }
  1457. if ((rcode == RSP_ANY || rcode == ev->type)
  1458. && ((int) at_state->ConState >= rep->min_ConState)
  1459. && (rep->max_ConState < 0
  1460. || (int) at_state->ConState <= rep->max_ConState)
  1461. && (rep->parameter < 0 || rep->parameter == ev->parameter))
  1462. break;
  1463. }
  1464. p_command = rep->command;
  1465. at_state->waiting = 0;
  1466. for (curact = 0; curact < MAXACT; ++curact) {
  1467. /* The row tells us what we should do ..
  1468. */
  1469. do_action(rep->action[curact], cs, bcs, &at_state, &p_command, &genresp, &resp_code, ev);
  1470. if (!at_state)
  1471. break; /* may be freed after disconnect */
  1472. }
  1473. if (at_state) {
  1474. /* Jump to the next con-state regarding the array */
  1475. if (rep->new_ConState >= 0)
  1476. at_state->ConState = rep->new_ConState;
  1477. if (genresp) {
  1478. spin_lock_irqsave(&cs->lock, flags);
  1479. at_state->timer_expires = 0; //FIXME
  1480. at_state->timer_active = 0; //FIXME
  1481. spin_unlock_irqrestore(&cs->lock, flags);
  1482. gigaset_add_event(cs, at_state, resp_code, NULL, 0, NULL);
  1483. } else {
  1484. /* Send command to modem if not NULL... */
  1485. if (p_command/*rep->command*/) {
  1486. if (cs->connected)
  1487. send_command(cs, p_command,
  1488. sendcid, cs->dle,
  1489. GFP_ATOMIC);
  1490. else
  1491. gigaset_add_event(cs, at_state,
  1492. RSP_NODEV,
  1493. NULL, 0, NULL);
  1494. }
  1495. spin_lock_irqsave(&cs->lock, flags);
  1496. if (!rep->timeout) {
  1497. at_state->timer_expires = 0;
  1498. at_state->timer_active = 0;
  1499. } else if (rep->timeout > 0) { /* new timeout */
  1500. at_state->timer_expires = rep->timeout * 10;
  1501. at_state->timer_active = 1;
  1502. ++at_state->timer_index;
  1503. }
  1504. spin_unlock_irqrestore(&cs->lock, flags);
  1505. }
  1506. }
  1507. }
  1508. static void schedule_sequence(struct cardstate *cs,
  1509. struct at_state_t *at_state, int sequence)
  1510. {
  1511. cs->cur_at_seq = sequence;
  1512. gigaset_add_event(cs, at_state, RSP_INIT, NULL, sequence, NULL);
  1513. }
  1514. static void process_command_flags(struct cardstate *cs)
  1515. {
  1516. struct at_state_t *at_state = NULL;
  1517. struct bc_state *bcs;
  1518. int i;
  1519. int sequence;
  1520. unsigned long flags;
  1521. cs->commands_pending = 0;
  1522. if (cs->cur_at_seq) {
  1523. gig_dbg(DEBUG_CMD, "not searching scheduled commands: busy");
  1524. return;
  1525. }
  1526. gig_dbg(DEBUG_CMD, "searching scheduled commands");
  1527. sequence = SEQ_NONE;
  1528. /* clear pending_commands and hangup channels on shutdown */
  1529. if (cs->at_state.pending_commands & PC_SHUTDOWN) {
  1530. cs->at_state.pending_commands &= ~PC_CIDMODE;
  1531. for (i = 0; i < cs->channels; ++i) {
  1532. bcs = cs->bcs + i;
  1533. at_state = &bcs->at_state;
  1534. at_state->pending_commands &=
  1535. ~(PC_DLE1 | PC_ACCEPT | PC_DIAL);
  1536. if (at_state->cid > 0)
  1537. at_state->pending_commands |= PC_HUP;
  1538. if (at_state->pending_commands & PC_CID) {
  1539. at_state->pending_commands |= PC_NOCID;
  1540. at_state->pending_commands &= ~PC_CID;
  1541. }
  1542. }
  1543. }
  1544. /* clear pending_commands and hangup channels on reset */
  1545. if (cs->at_state.pending_commands & PC_INIT) {
  1546. cs->at_state.pending_commands &= ~PC_CIDMODE;
  1547. for (i = 0; i < cs->channels; ++i) {
  1548. bcs = cs->bcs + i;
  1549. at_state = &bcs->at_state;
  1550. at_state->pending_commands &=
  1551. ~(PC_DLE1 | PC_ACCEPT | PC_DIAL);
  1552. if (at_state->cid > 0)
  1553. at_state->pending_commands |= PC_HUP;
  1554. if (cs->mstate == MS_RECOVER) {
  1555. if (at_state->pending_commands & PC_CID) {
  1556. at_state->pending_commands |= PC_NOCID;
  1557. at_state->pending_commands &= ~PC_CID;
  1558. }
  1559. }
  1560. }
  1561. }
  1562. /* only switch back to unimodem mode, if no commands are pending and no channels are up */
  1563. spin_lock_irqsave(&cs->lock, flags);
  1564. if (cs->at_state.pending_commands == PC_UMMODE
  1565. && !cs->cidmode
  1566. && list_empty(&cs->temp_at_states)
  1567. && cs->mode == M_CID) {
  1568. sequence = SEQ_UMMODE;
  1569. at_state = &cs->at_state;
  1570. for (i = 0; i < cs->channels; ++i) {
  1571. bcs = cs->bcs + i;
  1572. if (bcs->at_state.pending_commands ||
  1573. bcs->at_state.cid > 0) {
  1574. sequence = SEQ_NONE;
  1575. break;
  1576. }
  1577. }
  1578. }
  1579. spin_unlock_irqrestore(&cs->lock, flags);
  1580. cs->at_state.pending_commands &= ~PC_UMMODE;
  1581. if (sequence != SEQ_NONE) {
  1582. schedule_sequence(cs, at_state, sequence);
  1583. return;
  1584. }
  1585. for (i = 0; i < cs->channels; ++i) {
  1586. bcs = cs->bcs + i;
  1587. if (bcs->at_state.pending_commands & PC_HUP) {
  1588. bcs->at_state.pending_commands &= ~PC_HUP;
  1589. if (bcs->at_state.pending_commands & PC_CID) {
  1590. /* not yet dialing: PC_NOCID is sufficient */
  1591. bcs->at_state.pending_commands |= PC_NOCID;
  1592. bcs->at_state.pending_commands &= ~PC_CID;
  1593. } else {
  1594. schedule_sequence(cs, &bcs->at_state, SEQ_HUP);
  1595. return;
  1596. }
  1597. }
  1598. if (bcs->at_state.pending_commands & PC_NOCID) {
  1599. bcs->at_state.pending_commands &= ~PC_NOCID;
  1600. cs->curchannel = bcs->channel;
  1601. schedule_sequence(cs, &cs->at_state, SEQ_NOCID);
  1602. return;
  1603. } else if (bcs->at_state.pending_commands & PC_DLE0) {
  1604. bcs->at_state.pending_commands &= ~PC_DLE0;
  1605. cs->curchannel = bcs->channel;
  1606. schedule_sequence(cs, &cs->at_state, SEQ_DLE0);
  1607. return;
  1608. }
  1609. }
  1610. list_for_each_entry(at_state, &cs->temp_at_states, list)
  1611. if (at_state->pending_commands & PC_HUP) {
  1612. at_state->pending_commands &= ~PC_HUP;
  1613. schedule_sequence(cs, at_state, SEQ_HUP);
  1614. return;
  1615. }
  1616. if (cs->at_state.pending_commands & PC_INIT) {
  1617. cs->at_state.pending_commands &= ~PC_INIT;
  1618. cs->dle = 0; //FIXME
  1619. cs->inbuf->inputstate = INS_command;
  1620. //FIXME reset card state (or -> LOCK0)?
  1621. schedule_sequence(cs, &cs->at_state, SEQ_INIT);
  1622. return;
  1623. }
  1624. if (cs->at_state.pending_commands & PC_SHUTDOWN) {
  1625. cs->at_state.pending_commands &= ~PC_SHUTDOWN;
  1626. schedule_sequence(cs, &cs->at_state, SEQ_SHUTDOWN);
  1627. return;
  1628. }
  1629. if (cs->at_state.pending_commands & PC_CIDMODE) {
  1630. cs->at_state.pending_commands &= ~PC_CIDMODE;
  1631. if (cs->mode == M_UNIMODEM) {
  1632. cs->retry_count = 1;
  1633. schedule_sequence(cs, &cs->at_state, SEQ_CIDMODE);
  1634. return;
  1635. }
  1636. }
  1637. for (i = 0; i < cs->channels; ++i) {
  1638. bcs = cs->bcs + i;
  1639. if (bcs->at_state.pending_commands & PC_DLE1) {
  1640. bcs->at_state.pending_commands &= ~PC_DLE1;
  1641. cs->curchannel = bcs->channel;
  1642. schedule_sequence(cs, &cs->at_state, SEQ_DLE1);
  1643. return;
  1644. }
  1645. if (bcs->at_state.pending_commands & PC_ACCEPT) {
  1646. bcs->at_state.pending_commands &= ~PC_ACCEPT;
  1647. schedule_sequence(cs, &bcs->at_state, SEQ_ACCEPT);
  1648. return;
  1649. }
  1650. if (bcs->at_state.pending_commands & PC_DIAL) {
  1651. bcs->at_state.pending_commands &= ~PC_DIAL;
  1652. schedule_sequence(cs, &bcs->at_state, SEQ_DIAL);
  1653. return;
  1654. }
  1655. if (bcs->at_state.pending_commands & PC_CID) {
  1656. switch (cs->mode) {
  1657. case M_UNIMODEM:
  1658. cs->at_state.pending_commands |= PC_CIDMODE;
  1659. gig_dbg(DEBUG_CMD, "Scheduling PC_CIDMODE");
  1660. cs->commands_pending = 1;
  1661. return;
  1662. #ifdef GIG_MAYINITONDIAL
  1663. case M_UNKNOWN:
  1664. schedule_init(cs, MS_INIT);
  1665. return;
  1666. #endif
  1667. }
  1668. bcs->at_state.pending_commands &= ~PC_CID;
  1669. cs->curchannel = bcs->channel;
  1670. #ifdef GIG_RETRYCID
  1671. cs->retry_count = 2;
  1672. #else
  1673. cs->retry_count = 1;
  1674. #endif
  1675. schedule_sequence(cs, &cs->at_state, SEQ_CID);
  1676. return;
  1677. }
  1678. }
  1679. }
  1680. static void process_events(struct cardstate *cs)
  1681. {
  1682. struct event_t *ev;
  1683. unsigned head, tail;
  1684. int i;
  1685. int check_flags = 0;
  1686. int was_busy;
  1687. unsigned long flags;
  1688. spin_lock_irqsave(&cs->ev_lock, flags);
  1689. head = cs->ev_head;
  1690. for (i = 0; i < 2 * MAX_EVENTS; ++i) {
  1691. tail = cs->ev_tail;
  1692. if (tail == head) {
  1693. if (!check_flags && !cs->commands_pending)
  1694. break;
  1695. check_flags = 0;
  1696. spin_unlock_irqrestore(&cs->ev_lock, flags);
  1697. process_command_flags(cs);
  1698. spin_lock_irqsave(&cs->ev_lock, flags);
  1699. tail = cs->ev_tail;
  1700. if (tail == head) {
  1701. if (!cs->commands_pending)
  1702. break;
  1703. continue;
  1704. }
  1705. }
  1706. ev = cs->events + head;
  1707. was_busy = cs->cur_at_seq != SEQ_NONE;
  1708. spin_unlock_irqrestore(&cs->ev_lock, flags);
  1709. process_event(cs, ev);
  1710. spin_lock_irqsave(&cs->ev_lock, flags);
  1711. kfree(ev->ptr);
  1712. ev->ptr = NULL;
  1713. if (was_busy && cs->cur_at_seq == SEQ_NONE)
  1714. check_flags = 1;
  1715. head = (head + 1) % MAX_EVENTS;
  1716. cs->ev_head = head;
  1717. }
  1718. spin_unlock_irqrestore(&cs->ev_lock, flags);
  1719. if (i == 2 * MAX_EVENTS) {
  1720. dev_err(cs->dev,
  1721. "infinite loop in process_events; aborting.\n");
  1722. }
  1723. }
  1724. /* tasklet scheduled on any event received from the Gigaset device
  1725. * parameter:
  1726. * data ISDN controller state structure
  1727. */
  1728. void gigaset_handle_event(unsigned long data)
  1729. {
  1730. struct cardstate *cs = (struct cardstate *) data;
  1731. /* handle incoming data on control/common channel */
  1732. if (cs->inbuf->head != cs->inbuf->tail) {
  1733. gig_dbg(DEBUG_INTR, "processing new data");
  1734. cs->ops->handle_input(cs->inbuf);
  1735. }
  1736. process_events(cs);
  1737. }