elsa.c 33 KB

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  1. /* $Id: elsa.c,v 2.32.2.4 2004/01/24 20:47:21 keil Exp $
  2. *
  3. * low level stuff for Elsa isdn cards
  4. *
  5. * Author Karsten Keil
  6. * Copyright by Karsten Keil <keil@isdn4linux.de>
  7. *
  8. * This software may be used and distributed according to the terms
  9. * of the GNU General Public License, incorporated herein by reference.
  10. *
  11. * For changes and modifications please read
  12. * Documentation/isdn/HiSax.cert
  13. *
  14. * Thanks to Elsa GmbH for documents and information
  15. *
  16. * Klaus Lichtenwalder (Klaus.Lichtenwalder@WebForum.DE)
  17. * for ELSA PCMCIA support
  18. *
  19. */
  20. #include <linux/init.h>
  21. #include <linux/config.h>
  22. #include "hisax.h"
  23. #include "arcofi.h"
  24. #include "isac.h"
  25. #include "ipac.h"
  26. #include "hscx.h"
  27. #include "isdnl1.h"
  28. #include <linux/pci.h>
  29. #include <linux/isapnp.h>
  30. #include <linux/serial.h>
  31. #include <linux/serial_reg.h>
  32. extern const char *CardType[];
  33. static const char *Elsa_revision = "$Revision: 2.32.2.4 $";
  34. static const char *Elsa_Types[] =
  35. {"None", "PC", "PCC-8", "PCC-16", "PCF", "PCF-Pro",
  36. "PCMCIA", "QS 1000", "QS 3000", "Microlink PCI", "QS 3000 PCI",
  37. "PCMCIA-IPAC" };
  38. static const char *ITACVer[] =
  39. {"?0?", "?1?", "?2?", "?3?", "?4?", "V2.2",
  40. "B1", "A1"};
  41. #define byteout(addr,val) outb(val,addr)
  42. #define bytein(addr) inb(addr)
  43. #define ELSA_ISAC 0
  44. #define ELSA_ISAC_PCM 1
  45. #define ELSA_ITAC 1
  46. #define ELSA_HSCX 2
  47. #define ELSA_ALE 3
  48. #define ELSA_ALE_PCM 4
  49. #define ELSA_CONTROL 4
  50. #define ELSA_CONFIG 5
  51. #define ELSA_START_TIMER 6
  52. #define ELSA_TRIG_IRQ 7
  53. #define ELSA_PC 1
  54. #define ELSA_PCC8 2
  55. #define ELSA_PCC16 3
  56. #define ELSA_PCF 4
  57. #define ELSA_PCFPRO 5
  58. #define ELSA_PCMCIA 6
  59. #define ELSA_QS1000 7
  60. #define ELSA_QS3000 8
  61. #define ELSA_QS1000PCI 9
  62. #define ELSA_QS3000PCI 10
  63. #define ELSA_PCMCIA_IPAC 11
  64. /* PCI stuff */
  65. #define ELSA_PCI_IRQ_MASK 0x04
  66. /* ITAC Registeradressen (only Microlink PC) */
  67. #define ITAC_SYS 0x34
  68. #define ITAC_ISEN 0x48
  69. #define ITAC_RFIE 0x4A
  70. #define ITAC_XFIE 0x4C
  71. #define ITAC_SCIE 0x4E
  72. #define ITAC_STIE 0x46
  73. /*** ***
  74. *** Makros als Befehle fuer die Kartenregister ***
  75. *** (mehrere Befehle werden durch Bit-Oderung kombiniert) ***
  76. *** ***/
  77. /* Config-Register (Read) */
  78. #define ELSA_TIMER_RUN 0x02 /* Bit 1 des Config-Reg */
  79. #define ELSA_TIMER_RUN_PCC8 0x01 /* Bit 0 des Config-Reg bei PCC */
  80. #define ELSA_IRQ_IDX 0x38 /* Bit 3,4,5 des Config-Reg */
  81. #define ELSA_IRQ_IDX_PCC8 0x30 /* Bit 4,5 des Config-Reg */
  82. #define ELSA_IRQ_IDX_PC 0x0c /* Bit 2,3 des Config-Reg */
  83. /* Control-Register (Write) */
  84. #define ELSA_LINE_LED 0x02 /* Bit 1 Gelbe LED */
  85. #define ELSA_STAT_LED 0x08 /* Bit 3 Gruene LED */
  86. #define ELSA_ISDN_RESET 0x20 /* Bit 5 Reset-Leitung */
  87. #define ELSA_ENA_TIMER_INT 0x80 /* Bit 7 Freigabe Timer Interrupt */
  88. /* ALE-Register (Read) */
  89. #define ELSA_HW_RELEASE 0x07 /* Bit 0-2 Hardwarerkennung */
  90. #define ELSA_S0_POWER_BAD 0x08 /* Bit 3 S0-Bus Spannung fehlt */
  91. /* Status Flags */
  92. #define ELSA_TIMER_AKTIV 1
  93. #define ELSA_BAD_PWR 2
  94. #define ELSA_ASSIGN 4
  95. #define RS_ISR_PASS_LIMIT 256
  96. #define FLG_MODEM_ACTIVE 1
  97. /* IPAC AUX */
  98. #define ELSA_IPAC_LINE_LED 0x40 /* Bit 6 Gelbe LED */
  99. #define ELSA_IPAC_STAT_LED 0x80 /* Bit 7 Gruene LED */
  100. #if ARCOFI_USE
  101. static struct arcofi_msg ARCOFI_XOP_F =
  102. {NULL,0,2,{0xa1,0x3f,0,0,0,0,0,0,0,0}}; /* Normal OP */
  103. static struct arcofi_msg ARCOFI_XOP_1 =
  104. {&ARCOFI_XOP_F,0,2,{0xa1,0x31,0,0,0,0,0,0,0,0}}; /* PWR UP */
  105. static struct arcofi_msg ARCOFI_SOP_F =
  106. {&ARCOFI_XOP_1,0,10,{0xa1,0x1f,0x00,0x50,0x10,0x00,0x00,0x80,0x02,0x12}};
  107. static struct arcofi_msg ARCOFI_COP_9 =
  108. {&ARCOFI_SOP_F,0,10,{0xa1,0x29,0x80,0xcb,0xe9,0x88,0x00,0xc8,0xd8,0x80}}; /* RX */
  109. static struct arcofi_msg ARCOFI_COP_8 =
  110. {&ARCOFI_COP_9,0,10,{0xa1,0x28,0x49,0x31,0x8,0x13,0x6e,0x88,0x2a,0x61}}; /* TX */
  111. static struct arcofi_msg ARCOFI_COP_7 =
  112. {&ARCOFI_COP_8,0,4,{0xa1,0x27,0x80,0x80,0,0,0,0,0,0}}; /* GZ */
  113. static struct arcofi_msg ARCOFI_COP_6 =
  114. {&ARCOFI_COP_7,0,6,{0xa1,0x26,0,0,0x82,0x7c,0,0,0,0}}; /* GRL GRH */
  115. static struct arcofi_msg ARCOFI_COP_5 =
  116. {&ARCOFI_COP_6,0,4,{0xa1,0x25,0xbb,0x4a,0,0,0,0,0,0}}; /* GTX */
  117. static struct arcofi_msg ARCOFI_VERSION =
  118. {NULL,1,2,{0xa0,0,0,0,0,0,0,0,0,0}};
  119. static struct arcofi_msg ARCOFI_XOP_0 =
  120. {NULL,0,2,{0xa1,0x30,0,0,0,0,0,0,0,0}}; /* PWR Down */
  121. static void set_arcofi(struct IsdnCardState *cs, int bc);
  122. #include "elsa_ser.c"
  123. #endif /* ARCOFI_USE */
  124. static inline u_char
  125. readreg(unsigned int ale, unsigned int adr, u_char off)
  126. {
  127. register u_char ret;
  128. byteout(ale, off);
  129. ret = bytein(adr);
  130. return (ret);
  131. }
  132. static inline void
  133. readfifo(unsigned int ale, unsigned int adr, u_char off, u_char * data, int size)
  134. {
  135. byteout(ale, off);
  136. insb(adr, data, size);
  137. }
  138. static inline void
  139. writereg(unsigned int ale, unsigned int adr, u_char off, u_char data)
  140. {
  141. byteout(ale, off);
  142. byteout(adr, data);
  143. }
  144. static inline void
  145. writefifo(unsigned int ale, unsigned int adr, u_char off, u_char * data, int size)
  146. {
  147. byteout(ale, off);
  148. outsb(adr, data, size);
  149. }
  150. /* Interface functions */
  151. static u_char
  152. ReadISAC(struct IsdnCardState *cs, u_char offset)
  153. {
  154. return (readreg(cs->hw.elsa.ale, cs->hw.elsa.isac, offset));
  155. }
  156. static void
  157. WriteISAC(struct IsdnCardState *cs, u_char offset, u_char value)
  158. {
  159. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, offset, value);
  160. }
  161. static void
  162. ReadISACfifo(struct IsdnCardState *cs, u_char * data, int size)
  163. {
  164. readfifo(cs->hw.elsa.ale, cs->hw.elsa.isac, 0, data, size);
  165. }
  166. static void
  167. WriteISACfifo(struct IsdnCardState *cs, u_char * data, int size)
  168. {
  169. writefifo(cs->hw.elsa.ale, cs->hw.elsa.isac, 0, data, size);
  170. }
  171. static u_char
  172. ReadISAC_IPAC(struct IsdnCardState *cs, u_char offset)
  173. {
  174. return (readreg(cs->hw.elsa.ale, cs->hw.elsa.isac, offset+0x80));
  175. }
  176. static void
  177. WriteISAC_IPAC(struct IsdnCardState *cs, u_char offset, u_char value)
  178. {
  179. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, offset|0x80, value);
  180. }
  181. static void
  182. ReadISACfifo_IPAC(struct IsdnCardState *cs, u_char * data, int size)
  183. {
  184. readfifo(cs->hw.elsa.ale, cs->hw.elsa.isac, 0x80, data, size);
  185. }
  186. static void
  187. WriteISACfifo_IPAC(struct IsdnCardState *cs, u_char * data, int size)
  188. {
  189. writefifo(cs->hw.elsa.ale, cs->hw.elsa.isac, 0x80, data, size);
  190. }
  191. static u_char
  192. ReadHSCX(struct IsdnCardState *cs, int hscx, u_char offset)
  193. {
  194. return (readreg(cs->hw.elsa.ale,
  195. cs->hw.elsa.hscx, offset + (hscx ? 0x40 : 0)));
  196. }
  197. static void
  198. WriteHSCX(struct IsdnCardState *cs, int hscx, u_char offset, u_char value)
  199. {
  200. writereg(cs->hw.elsa.ale,
  201. cs->hw.elsa.hscx, offset + (hscx ? 0x40 : 0), value);
  202. }
  203. static inline u_char
  204. readitac(struct IsdnCardState *cs, u_char off)
  205. {
  206. register u_char ret;
  207. byteout(cs->hw.elsa.ale, off);
  208. ret = bytein(cs->hw.elsa.itac);
  209. return (ret);
  210. }
  211. static inline void
  212. writeitac(struct IsdnCardState *cs, u_char off, u_char data)
  213. {
  214. byteout(cs->hw.elsa.ale, off);
  215. byteout(cs->hw.elsa.itac, data);
  216. }
  217. static inline int
  218. TimerRun(struct IsdnCardState *cs)
  219. {
  220. register u_char v;
  221. v = bytein(cs->hw.elsa.cfg);
  222. if ((cs->subtyp == ELSA_QS1000) || (cs->subtyp == ELSA_QS3000))
  223. return (0 == (v & ELSA_TIMER_RUN));
  224. else if (cs->subtyp == ELSA_PCC8)
  225. return (v & ELSA_TIMER_RUN_PCC8);
  226. return (v & ELSA_TIMER_RUN);
  227. }
  228. /*
  229. * fast interrupt HSCX stuff goes here
  230. */
  231. #define READHSCX(cs, nr, reg) readreg(cs->hw.elsa.ale, \
  232. cs->hw.elsa.hscx, reg + (nr ? 0x40 : 0))
  233. #define WRITEHSCX(cs, nr, reg, data) writereg(cs->hw.elsa.ale, \
  234. cs->hw.elsa.hscx, reg + (nr ? 0x40 : 0), data)
  235. #define READHSCXFIFO(cs, nr, ptr, cnt) readfifo(cs->hw.elsa.ale, \
  236. cs->hw.elsa.hscx, (nr ? 0x40 : 0), ptr, cnt)
  237. #define WRITEHSCXFIFO(cs, nr, ptr, cnt) writefifo(cs->hw.elsa.ale, \
  238. cs->hw.elsa.hscx, (nr ? 0x40 : 0), ptr, cnt)
  239. #include "hscx_irq.c"
  240. static irqreturn_t
  241. elsa_interrupt(int intno, void *dev_id, struct pt_regs *regs)
  242. {
  243. struct IsdnCardState *cs = dev_id;
  244. u_long flags;
  245. u_char val;
  246. int icnt=5;
  247. if ((cs->typ == ISDN_CTYPE_ELSA_PCMCIA) && (*cs->busy_flag == 1)) {
  248. /* The card tends to generate interrupts while being removed
  249. causing us to just crash the kernel. bad. */
  250. printk(KERN_WARNING "Elsa: card not available!\n");
  251. return IRQ_NONE;
  252. }
  253. spin_lock_irqsave(&cs->lock, flags);
  254. #if ARCOFI_USE
  255. if (cs->hw.elsa.MFlag) {
  256. val = serial_inp(cs, UART_IIR);
  257. if (!(val & UART_IIR_NO_INT)) {
  258. debugl1(cs,"IIR %02x", val);
  259. rs_interrupt_elsa(intno, cs);
  260. }
  261. }
  262. #endif
  263. val = readreg(cs->hw.elsa.ale, cs->hw.elsa.hscx, HSCX_ISTA + 0x40);
  264. Start_HSCX:
  265. if (val) {
  266. hscx_int_main(cs, val);
  267. }
  268. val = readreg(cs->hw.elsa.ale, cs->hw.elsa.isac, ISAC_ISTA);
  269. Start_ISAC:
  270. if (val) {
  271. isac_interrupt(cs, val);
  272. }
  273. val = readreg(cs->hw.elsa.ale, cs->hw.elsa.hscx, HSCX_ISTA + 0x40);
  274. if (val && icnt) {
  275. if (cs->debug & L1_DEB_HSCX)
  276. debugl1(cs, "HSCX IntStat after IntRoutine");
  277. icnt--;
  278. goto Start_HSCX;
  279. }
  280. val = readreg(cs->hw.elsa.ale, cs->hw.elsa.isac, ISAC_ISTA);
  281. if (val && icnt) {
  282. if (cs->debug & L1_DEB_ISAC)
  283. debugl1(cs, "ISAC IntStat after IntRoutine");
  284. icnt--;
  285. goto Start_ISAC;
  286. }
  287. if (!icnt)
  288. printk(KERN_WARNING"ELSA IRQ LOOP\n");
  289. writereg(cs->hw.elsa.ale, cs->hw.elsa.hscx, HSCX_MASK, 0xFF);
  290. writereg(cs->hw.elsa.ale, cs->hw.elsa.hscx, HSCX_MASK + 0x40, 0xFF);
  291. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, ISAC_MASK, 0xFF);
  292. if (cs->hw.elsa.status & ELSA_TIMER_AKTIV) {
  293. if (!TimerRun(cs)) {
  294. /* Timer Restart */
  295. byteout(cs->hw.elsa.timer, 0);
  296. cs->hw.elsa.counter++;
  297. }
  298. }
  299. #if ARCOFI_USE
  300. if (cs->hw.elsa.MFlag) {
  301. val = serial_inp(cs, UART_MCR);
  302. val ^= 0x8;
  303. serial_outp(cs, UART_MCR, val);
  304. val = serial_inp(cs, UART_MCR);
  305. val ^= 0x8;
  306. serial_outp(cs, UART_MCR, val);
  307. }
  308. #endif
  309. if (cs->hw.elsa.trig)
  310. byteout(cs->hw.elsa.trig, 0x00);
  311. writereg(cs->hw.elsa.ale, cs->hw.elsa.hscx, HSCX_MASK, 0x0);
  312. writereg(cs->hw.elsa.ale, cs->hw.elsa.hscx, HSCX_MASK + 0x40, 0x0);
  313. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, ISAC_MASK, 0x0);
  314. spin_unlock_irqrestore(&cs->lock, flags);
  315. return IRQ_HANDLED;
  316. }
  317. static irqreturn_t
  318. elsa_interrupt_ipac(int intno, void *dev_id, struct pt_regs *regs)
  319. {
  320. struct IsdnCardState *cs = dev_id;
  321. u_long flags;
  322. u_char ista,val;
  323. int icnt=5;
  324. spin_lock_irqsave(&cs->lock, flags);
  325. if (cs->subtyp == ELSA_QS1000PCI || cs->subtyp == ELSA_QS3000PCI) {
  326. val = bytein(cs->hw.elsa.cfg + 0x4c); /* PCI IRQ */
  327. if (!(val & ELSA_PCI_IRQ_MASK)) {
  328. spin_unlock_irqrestore(&cs->lock, flags);
  329. return IRQ_NONE;
  330. }
  331. }
  332. #if ARCOFI_USE
  333. if (cs->hw.elsa.MFlag) {
  334. val = serial_inp(cs, UART_IIR);
  335. if (!(val & UART_IIR_NO_INT)) {
  336. debugl1(cs,"IIR %02x", val);
  337. rs_interrupt_elsa(intno, cs);
  338. }
  339. }
  340. #endif
  341. ista = readreg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ISTA);
  342. Start_IPAC:
  343. if (cs->debug & L1_DEB_IPAC)
  344. debugl1(cs, "IPAC ISTA %02X", ista);
  345. if (ista & 0x0f) {
  346. val = readreg(cs->hw.elsa.ale, cs->hw.elsa.hscx, HSCX_ISTA + 0x40);
  347. if (ista & 0x01)
  348. val |= 0x01;
  349. if (ista & 0x04)
  350. val |= 0x02;
  351. if (ista & 0x08)
  352. val |= 0x04;
  353. if (val)
  354. hscx_int_main(cs, val);
  355. }
  356. if (ista & 0x20) {
  357. val = 0xfe & readreg(cs->hw.elsa.ale, cs->hw.elsa.isac, ISAC_ISTA + 0x80);
  358. if (val) {
  359. isac_interrupt(cs, val);
  360. }
  361. }
  362. if (ista & 0x10) {
  363. val = 0x01;
  364. isac_interrupt(cs, val);
  365. }
  366. ista = readreg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ISTA);
  367. if ((ista & 0x3f) && icnt) {
  368. icnt--;
  369. goto Start_IPAC;
  370. }
  371. if (!icnt)
  372. printk(KERN_WARNING "ELSA IRQ LOOP\n");
  373. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_MASK, 0xFF);
  374. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_MASK, 0xC0);
  375. spin_unlock_irqrestore(&cs->lock, flags);
  376. return IRQ_HANDLED;
  377. }
  378. static void
  379. release_io_elsa(struct IsdnCardState *cs)
  380. {
  381. int bytecnt = 8;
  382. del_timer(&cs->hw.elsa.tl);
  383. #if ARCOFI_USE
  384. clear_arcofi(cs);
  385. #endif
  386. if (cs->hw.elsa.ctrl)
  387. byteout(cs->hw.elsa.ctrl, 0); /* LEDs Out */
  388. if (cs->subtyp == ELSA_QS1000PCI) {
  389. byteout(cs->hw.elsa.cfg + 0x4c, 0x01); /* disable IRQ */
  390. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ATX, 0xff);
  391. bytecnt = 2;
  392. release_region(cs->hw.elsa.cfg, 0x80);
  393. }
  394. if (cs->subtyp == ELSA_QS3000PCI) {
  395. byteout(cs->hw.elsa.cfg + 0x4c, 0x03); /* disable ELSA PCI IRQ */
  396. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ATX, 0xff);
  397. release_region(cs->hw.elsa.cfg, 0x80);
  398. }
  399. if (cs->subtyp == ELSA_PCMCIA_IPAC) {
  400. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ATX, 0xff);
  401. }
  402. if ((cs->subtyp == ELSA_PCFPRO) ||
  403. (cs->subtyp == ELSA_QS3000) ||
  404. (cs->subtyp == ELSA_PCF) ||
  405. (cs->subtyp == ELSA_QS3000PCI)) {
  406. bytecnt = 16;
  407. #if ARCOFI_USE
  408. release_modem(cs);
  409. #endif
  410. }
  411. if (cs->hw.elsa.base)
  412. release_region(cs->hw.elsa.base, bytecnt);
  413. }
  414. static void
  415. reset_elsa(struct IsdnCardState *cs)
  416. {
  417. if (cs->hw.elsa.timer) {
  418. /* Wait 1 Timer */
  419. byteout(cs->hw.elsa.timer, 0);
  420. while (TimerRun(cs));
  421. cs->hw.elsa.ctrl_reg |= 0x50;
  422. cs->hw.elsa.ctrl_reg &= ~ELSA_ISDN_RESET; /* Reset On */
  423. byteout(cs->hw.elsa.ctrl, cs->hw.elsa.ctrl_reg);
  424. /* Wait 1 Timer */
  425. byteout(cs->hw.elsa.timer, 0);
  426. while (TimerRun(cs));
  427. cs->hw.elsa.ctrl_reg |= ELSA_ISDN_RESET; /* Reset Off */
  428. byteout(cs->hw.elsa.ctrl, cs->hw.elsa.ctrl_reg);
  429. /* Wait 1 Timer */
  430. byteout(cs->hw.elsa.timer, 0);
  431. while (TimerRun(cs));
  432. if (cs->hw.elsa.trig)
  433. byteout(cs->hw.elsa.trig, 0xff);
  434. }
  435. if ((cs->subtyp == ELSA_QS1000PCI) || (cs->subtyp == ELSA_QS3000PCI) || (cs->subtyp == ELSA_PCMCIA_IPAC)) {
  436. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_POTA2, 0x20);
  437. mdelay(10);
  438. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_POTA2, 0x00);
  439. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_MASK, 0xc0);
  440. mdelay(10);
  441. if (cs->subtyp != ELSA_PCMCIA_IPAC) {
  442. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ACFG, 0x0);
  443. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_AOE, 0x3c);
  444. } else {
  445. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_PCFG, 0x10);
  446. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ACFG, 0x4);
  447. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_AOE, 0xf8);
  448. }
  449. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ATX, 0xff);
  450. if (cs->subtyp == ELSA_QS1000PCI)
  451. byteout(cs->hw.elsa.cfg + 0x4c, 0x41); /* enable ELSA PCI IRQ */
  452. else if (cs->subtyp == ELSA_QS3000PCI)
  453. byteout(cs->hw.elsa.cfg + 0x4c, 0x43); /* enable ELSA PCI IRQ */
  454. }
  455. }
  456. #if ARCOFI_USE
  457. static void
  458. set_arcofi(struct IsdnCardState *cs, int bc) {
  459. cs->dc.isac.arcofi_bc = bc;
  460. arcofi_fsm(cs, ARCOFI_START, &ARCOFI_COP_5);
  461. interruptible_sleep_on(&cs->dc.isac.arcofi_wait);
  462. }
  463. static int
  464. check_arcofi(struct IsdnCardState *cs)
  465. {
  466. int arcofi_present = 0;
  467. char tmp[40];
  468. char *t;
  469. u_char *p;
  470. if (!cs->dc.isac.mon_tx)
  471. if (!(cs->dc.isac.mon_tx=kmalloc(MAX_MON_FRAME, GFP_ATOMIC))) {
  472. if (cs->debug & L1_DEB_WARN)
  473. debugl1(cs, "ISAC MON TX out of buffers!");
  474. return(0);
  475. }
  476. cs->dc.isac.arcofi_bc = 0;
  477. arcofi_fsm(cs, ARCOFI_START, &ARCOFI_VERSION);
  478. interruptible_sleep_on(&cs->dc.isac.arcofi_wait);
  479. if (!test_and_clear_bit(FLG_ARCOFI_ERROR, &cs->HW_Flags)) {
  480. debugl1(cs, "Arcofi response received %d bytes", cs->dc.isac.mon_rxp);
  481. p = cs->dc.isac.mon_rx;
  482. t = tmp;
  483. t += sprintf(tmp, "Arcofi data");
  484. QuickHex(t, p, cs->dc.isac.mon_rxp);
  485. debugl1(cs, tmp);
  486. if ((cs->dc.isac.mon_rxp == 2) && (cs->dc.isac.mon_rx[0] == 0xa0)) {
  487. switch(cs->dc.isac.mon_rx[1]) {
  488. case 0x80:
  489. debugl1(cs, "Arcofi 2160 detected");
  490. arcofi_present = 1;
  491. break;
  492. case 0x82:
  493. debugl1(cs, "Arcofi 2165 detected");
  494. arcofi_present = 2;
  495. break;
  496. case 0x84:
  497. debugl1(cs, "Arcofi 2163 detected");
  498. arcofi_present = 3;
  499. break;
  500. default:
  501. debugl1(cs, "unknown Arcofi response");
  502. break;
  503. }
  504. } else
  505. debugl1(cs, "undefined Monitor response");
  506. cs->dc.isac.mon_rxp = 0;
  507. } else if (cs->dc.isac.mon_tx) {
  508. debugl1(cs, "Arcofi not detected");
  509. }
  510. if (arcofi_present) {
  511. if (cs->subtyp==ELSA_QS1000) {
  512. cs->subtyp = ELSA_QS3000;
  513. printk(KERN_INFO
  514. "Elsa: %s detected modem at 0x%lx\n",
  515. Elsa_Types[cs->subtyp],
  516. cs->hw.elsa.base+8);
  517. release_region(cs->hw.elsa.base, 8);
  518. if (!request_region(cs->hw.elsa.base, 16, "elsa isdn modem")) {
  519. printk(KERN_WARNING
  520. "HiSax: %s config port %lx-%lx already in use\n",
  521. Elsa_Types[cs->subtyp],
  522. cs->hw.elsa.base + 8,
  523. cs->hw.elsa.base + 16);
  524. }
  525. } else if (cs->subtyp==ELSA_PCC16) {
  526. cs->subtyp = ELSA_PCF;
  527. printk(KERN_INFO
  528. "Elsa: %s detected modem at 0x%lx\n",
  529. Elsa_Types[cs->subtyp],
  530. cs->hw.elsa.base+8);
  531. release_region(cs->hw.elsa.base, 8);
  532. if (!request_region(cs->hw.elsa.base, 16, "elsa isdn modem")) {
  533. printk(KERN_WARNING
  534. "HiSax: %s config port %lx-%lx already in use\n",
  535. Elsa_Types[cs->subtyp],
  536. cs->hw.elsa.base + 8,
  537. cs->hw.elsa.base + 16);
  538. }
  539. } else
  540. printk(KERN_INFO
  541. "Elsa: %s detected modem at 0x%lx\n",
  542. Elsa_Types[cs->subtyp],
  543. cs->hw.elsa.base+8);
  544. arcofi_fsm(cs, ARCOFI_START, &ARCOFI_XOP_0);
  545. interruptible_sleep_on(&cs->dc.isac.arcofi_wait);
  546. return(1);
  547. }
  548. return(0);
  549. }
  550. #endif /* ARCOFI_USE */
  551. static void
  552. elsa_led_handler(struct IsdnCardState *cs)
  553. {
  554. int blink = 0;
  555. if (cs->subtyp == ELSA_PCMCIA || cs->subtyp == ELSA_PCMCIA_IPAC)
  556. return;
  557. del_timer(&cs->hw.elsa.tl);
  558. if (cs->hw.elsa.status & ELSA_ASSIGN)
  559. cs->hw.elsa.ctrl_reg |= ELSA_STAT_LED;
  560. else if (cs->hw.elsa.status & ELSA_BAD_PWR)
  561. cs->hw.elsa.ctrl_reg &= ~ELSA_STAT_LED;
  562. else {
  563. cs->hw.elsa.ctrl_reg ^= ELSA_STAT_LED;
  564. blink = 250;
  565. }
  566. if (cs->hw.elsa.status & 0xf000)
  567. cs->hw.elsa.ctrl_reg |= ELSA_LINE_LED;
  568. else if (cs->hw.elsa.status & 0x0f00) {
  569. cs->hw.elsa.ctrl_reg ^= ELSA_LINE_LED;
  570. blink = 500;
  571. } else
  572. cs->hw.elsa.ctrl_reg &= ~ELSA_LINE_LED;
  573. if ((cs->subtyp == ELSA_QS1000PCI) ||
  574. (cs->subtyp == ELSA_QS3000PCI)) {
  575. u_char led = 0xff;
  576. if (cs->hw.elsa.ctrl_reg & ELSA_LINE_LED)
  577. led ^= ELSA_IPAC_LINE_LED;
  578. if (cs->hw.elsa.ctrl_reg & ELSA_STAT_LED)
  579. led ^= ELSA_IPAC_STAT_LED;
  580. writereg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ATX, led);
  581. } else
  582. byteout(cs->hw.elsa.ctrl, cs->hw.elsa.ctrl_reg);
  583. if (blink) {
  584. init_timer(&cs->hw.elsa.tl);
  585. cs->hw.elsa.tl.expires = jiffies + ((blink * HZ) / 1000);
  586. add_timer(&cs->hw.elsa.tl);
  587. }
  588. }
  589. static int
  590. Elsa_card_msg(struct IsdnCardState *cs, int mt, void *arg)
  591. {
  592. int ret = 0;
  593. u_long flags;
  594. switch (mt) {
  595. case CARD_RESET:
  596. spin_lock_irqsave(&cs->lock, flags);
  597. reset_elsa(cs);
  598. spin_unlock_irqrestore(&cs->lock, flags);
  599. return(0);
  600. case CARD_RELEASE:
  601. release_io_elsa(cs);
  602. return(0);
  603. case CARD_INIT:
  604. spin_lock_irqsave(&cs->lock, flags);
  605. cs->debug |= L1_DEB_IPAC;
  606. reset_elsa(cs);
  607. inithscxisac(cs, 1);
  608. if ((cs->subtyp == ELSA_QS1000) ||
  609. (cs->subtyp == ELSA_QS3000))
  610. {
  611. byteout(cs->hw.elsa.timer, 0);
  612. }
  613. if (cs->hw.elsa.trig)
  614. byteout(cs->hw.elsa.trig, 0xff);
  615. inithscxisac(cs, 2);
  616. spin_unlock_irqrestore(&cs->lock, flags);
  617. return(0);
  618. case CARD_TEST:
  619. if ((cs->subtyp == ELSA_PCMCIA) ||
  620. (cs->subtyp == ELSA_PCMCIA_IPAC) ||
  621. (cs->subtyp == ELSA_QS1000PCI)) {
  622. return(0);
  623. } else if (cs->subtyp == ELSA_QS3000PCI) {
  624. ret = 0;
  625. } else {
  626. spin_lock_irqsave(&cs->lock, flags);
  627. cs->hw.elsa.counter = 0;
  628. cs->hw.elsa.ctrl_reg |= ELSA_ENA_TIMER_INT;
  629. cs->hw.elsa.status |= ELSA_TIMER_AKTIV;
  630. byteout(cs->hw.elsa.ctrl, cs->hw.elsa.ctrl_reg);
  631. byteout(cs->hw.elsa.timer, 0);
  632. spin_unlock_irqrestore(&cs->lock, flags);
  633. msleep(110);
  634. spin_lock_irqsave(&cs->lock, flags);
  635. cs->hw.elsa.ctrl_reg &= ~ELSA_ENA_TIMER_INT;
  636. byteout(cs->hw.elsa.ctrl, cs->hw.elsa.ctrl_reg);
  637. cs->hw.elsa.status &= ~ELSA_TIMER_AKTIV;
  638. spin_unlock_irqrestore(&cs->lock, flags);
  639. printk(KERN_INFO "Elsa: %d timer tics in 110 msek\n",
  640. cs->hw.elsa.counter);
  641. if ((cs->hw.elsa.counter > 10) &&
  642. (cs->hw.elsa.counter < 16)) {
  643. printk(KERN_INFO "Elsa: timer and irq OK\n");
  644. ret = 0;
  645. } else {
  646. printk(KERN_WARNING
  647. "Elsa: timer tic problem (%d/12) maybe an IRQ(%d) conflict\n",
  648. cs->hw.elsa.counter, cs->irq);
  649. ret = 1;
  650. }
  651. }
  652. #if ARCOFI_USE
  653. if (check_arcofi(cs)) {
  654. init_modem(cs);
  655. }
  656. #endif
  657. elsa_led_handler(cs);
  658. return(ret);
  659. case (MDL_REMOVE | REQUEST):
  660. cs->hw.elsa.status &= 0;
  661. break;
  662. case (MDL_ASSIGN | REQUEST):
  663. cs->hw.elsa.status |= ELSA_ASSIGN;
  664. break;
  665. case MDL_INFO_SETUP:
  666. if ((long) arg)
  667. cs->hw.elsa.status |= 0x0200;
  668. else
  669. cs->hw.elsa.status |= 0x0100;
  670. break;
  671. case MDL_INFO_CONN:
  672. if ((long) arg)
  673. cs->hw.elsa.status |= 0x2000;
  674. else
  675. cs->hw.elsa.status |= 0x1000;
  676. break;
  677. case MDL_INFO_REL:
  678. if ((long) arg) {
  679. cs->hw.elsa.status &= ~0x2000;
  680. cs->hw.elsa.status &= ~0x0200;
  681. } else {
  682. cs->hw.elsa.status &= ~0x1000;
  683. cs->hw.elsa.status &= ~0x0100;
  684. }
  685. break;
  686. #if ARCOFI_USE
  687. case CARD_AUX_IND:
  688. if (cs->hw.elsa.MFlag) {
  689. int len;
  690. u_char *msg;
  691. if (!arg)
  692. return(0);
  693. msg = arg;
  694. len = *msg;
  695. msg++;
  696. modem_write_cmd(cs, msg, len);
  697. }
  698. break;
  699. #endif
  700. }
  701. if (cs->typ == ISDN_CTYPE_ELSA) {
  702. int pwr = bytein(cs->hw.elsa.ale);
  703. if (pwr & 0x08)
  704. cs->hw.elsa.status |= ELSA_BAD_PWR;
  705. else
  706. cs->hw.elsa.status &= ~ELSA_BAD_PWR;
  707. }
  708. elsa_led_handler(cs);
  709. return(ret);
  710. }
  711. static unsigned char
  712. probe_elsa_adr(unsigned int adr, int typ)
  713. {
  714. int i, in1, in2, p16_1 = 0, p16_2 = 0, p8_1 = 0, p8_2 = 0, pc_1 = 0,
  715. pc_2 = 0, pfp_1 = 0, pfp_2 = 0;
  716. /* In case of the elsa pcmcia card, this region is in use,
  717. reserved for us by the card manager. So we do not check it
  718. here, it would fail. */
  719. if (typ != ISDN_CTYPE_ELSA_PCMCIA) {
  720. if (request_region(adr, 8, "elsa card")) {
  721. release_region(adr, 8);
  722. } else {
  723. printk(KERN_WARNING
  724. "Elsa: Probing Port 0x%x: already in use\n", adr);
  725. return (0);
  726. }
  727. }
  728. for (i = 0; i < 16; i++) {
  729. in1 = inb(adr + ELSA_CONFIG); /* 'toggelt' bei */
  730. in2 = inb(adr + ELSA_CONFIG); /* jedem Zugriff */
  731. p16_1 += 0x04 & in1;
  732. p16_2 += 0x04 & in2;
  733. p8_1 += 0x02 & in1;
  734. p8_2 += 0x02 & in2;
  735. pc_1 += 0x01 & in1;
  736. pc_2 += 0x01 & in2;
  737. pfp_1 += 0x40 & in1;
  738. pfp_2 += 0x40 & in2;
  739. }
  740. printk(KERN_INFO "Elsa: Probing IO 0x%x", adr);
  741. if (65 == ++p16_1 * ++p16_2) {
  742. printk(" PCC-16/PCF found\n");
  743. return (ELSA_PCC16);
  744. } else if (1025 == ++pfp_1 * ++pfp_2) {
  745. printk(" PCF-Pro found\n");
  746. return (ELSA_PCFPRO);
  747. } else if (33 == ++p8_1 * ++p8_2) {
  748. printk(" PCC8 found\n");
  749. return (ELSA_PCC8);
  750. } else if (17 == ++pc_1 * ++pc_2) {
  751. printk(" PC found\n");
  752. return (ELSA_PC);
  753. } else {
  754. printk(" failed\n");
  755. return (0);
  756. }
  757. }
  758. static unsigned int
  759. probe_elsa(struct IsdnCardState *cs)
  760. {
  761. int i;
  762. unsigned int CARD_portlist[] =
  763. {0x160, 0x170, 0x260, 0x360, 0};
  764. for (i = 0; CARD_portlist[i]; i++) {
  765. if ((cs->subtyp = probe_elsa_adr(CARD_portlist[i], cs->typ)))
  766. break;
  767. }
  768. return (CARD_portlist[i]);
  769. }
  770. static struct pci_dev *dev_qs1000 __devinitdata = NULL;
  771. static struct pci_dev *dev_qs3000 __devinitdata = NULL;
  772. #ifdef __ISAPNP__
  773. static struct isapnp_device_id elsa_ids[] __devinitdata = {
  774. { ISAPNP_VENDOR('E', 'L', 'S'), ISAPNP_FUNCTION(0x0133),
  775. ISAPNP_VENDOR('E', 'L', 'S'), ISAPNP_FUNCTION(0x0133),
  776. (unsigned long) "Elsa QS1000" },
  777. { ISAPNP_VENDOR('E', 'L', 'S'), ISAPNP_FUNCTION(0x0134),
  778. ISAPNP_VENDOR('E', 'L', 'S'), ISAPNP_FUNCTION(0x0134),
  779. (unsigned long) "Elsa QS3000" },
  780. { 0, }
  781. };
  782. static struct isapnp_device_id *ipid __devinitdata = &elsa_ids[0];
  783. static struct pnp_card *pnp_c __devinitdata = NULL;
  784. #endif
  785. int __devinit
  786. setup_elsa(struct IsdnCard *card)
  787. {
  788. int bytecnt;
  789. u_char val;
  790. struct IsdnCardState *cs = card->cs;
  791. char tmp[64];
  792. strcpy(tmp, Elsa_revision);
  793. printk(KERN_INFO "HiSax: Elsa driver Rev. %s\n", HiSax_getrev(tmp));
  794. cs->hw.elsa.ctrl_reg = 0;
  795. cs->hw.elsa.status = 0;
  796. cs->hw.elsa.MFlag = 0;
  797. cs->subtyp = 0;
  798. if (cs->typ == ISDN_CTYPE_ELSA) {
  799. cs->hw.elsa.base = card->para[0];
  800. printk(KERN_INFO "Elsa: Microlink IO probing\n");
  801. if (cs->hw.elsa.base) {
  802. if (!(cs->subtyp = probe_elsa_adr(cs->hw.elsa.base,
  803. cs->typ))) {
  804. printk(KERN_WARNING
  805. "Elsa: no Elsa Microlink at %#lx\n",
  806. cs->hw.elsa.base);
  807. return (0);
  808. }
  809. } else
  810. cs->hw.elsa.base = probe_elsa(cs);
  811. if (cs->hw.elsa.base) {
  812. cs->hw.elsa.cfg = cs->hw.elsa.base + ELSA_CONFIG;
  813. cs->hw.elsa.ctrl = cs->hw.elsa.base + ELSA_CONTROL;
  814. cs->hw.elsa.ale = cs->hw.elsa.base + ELSA_ALE;
  815. cs->hw.elsa.isac = cs->hw.elsa.base + ELSA_ISAC;
  816. cs->hw.elsa.itac = cs->hw.elsa.base + ELSA_ITAC;
  817. cs->hw.elsa.hscx = cs->hw.elsa.base + ELSA_HSCX;
  818. cs->hw.elsa.trig = cs->hw.elsa.base + ELSA_TRIG_IRQ;
  819. cs->hw.elsa.timer = cs->hw.elsa.base + ELSA_START_TIMER;
  820. val = bytein(cs->hw.elsa.cfg);
  821. if (cs->subtyp == ELSA_PC) {
  822. const u_char CARD_IrqTab[8] =
  823. {7, 3, 5, 9, 0, 0, 0, 0};
  824. cs->irq = CARD_IrqTab[(val & ELSA_IRQ_IDX_PC) >> 2];
  825. } else if (cs->subtyp == ELSA_PCC8) {
  826. const u_char CARD_IrqTab[8] =
  827. {7, 3, 5, 9, 0, 0, 0, 0};
  828. cs->irq = CARD_IrqTab[(val & ELSA_IRQ_IDX_PCC8) >> 4];
  829. } else {
  830. const u_char CARD_IrqTab[8] =
  831. {15, 10, 15, 3, 11, 5, 11, 9};
  832. cs->irq = CARD_IrqTab[(val & ELSA_IRQ_IDX) >> 3];
  833. }
  834. val = bytein(cs->hw.elsa.ale) & ELSA_HW_RELEASE;
  835. if (val < 3)
  836. val |= 8;
  837. val += 'A' - 3;
  838. if (val == 'B' || val == 'C')
  839. val ^= 1;
  840. if ((cs->subtyp == ELSA_PCFPRO) && (val = 'G'))
  841. val = 'C';
  842. printk(KERN_INFO
  843. "Elsa: %s found at %#lx Rev.:%c IRQ %d\n",
  844. Elsa_Types[cs->subtyp],
  845. cs->hw.elsa.base,
  846. val, cs->irq);
  847. val = bytein(cs->hw.elsa.ale) & ELSA_S0_POWER_BAD;
  848. if (val) {
  849. printk(KERN_WARNING
  850. "Elsa: Microlink S0 bus power bad\n");
  851. cs->hw.elsa.status |= ELSA_BAD_PWR;
  852. }
  853. } else {
  854. printk(KERN_WARNING
  855. "No Elsa Microlink found\n");
  856. return (0);
  857. }
  858. } else if (cs->typ == ISDN_CTYPE_ELSA_PNP) {
  859. #ifdef __ISAPNP__
  860. if (!card->para[1] && isapnp_present()) {
  861. struct pnp_dev *pnp_d;
  862. while(ipid->card_vendor) {
  863. if ((pnp_c = pnp_find_card(ipid->card_vendor,
  864. ipid->card_device, pnp_c))) {
  865. pnp_d = NULL;
  866. if ((pnp_d = pnp_find_dev(pnp_c,
  867. ipid->vendor, ipid->function, pnp_d))) {
  868. int err;
  869. printk(KERN_INFO "HiSax: %s detected\n",
  870. (char *)ipid->driver_data);
  871. pnp_disable_dev(pnp_d);
  872. err = pnp_activate_dev(pnp_d);
  873. if (err<0) {
  874. printk(KERN_WARNING "%s: pnp_activate_dev ret(%d)\n",
  875. __FUNCTION__, err);
  876. return(0);
  877. }
  878. card->para[1] = pnp_port_start(pnp_d, 0);
  879. card->para[0] = pnp_irq(pnp_d, 0);
  880. if (!card->para[0] || !card->para[1]) {
  881. printk(KERN_ERR "Elsa PnP:some resources are missing %ld/%lx\n",
  882. card->para[0], card->para[1]);
  883. pnp_disable_dev(pnp_d);
  884. return(0);
  885. }
  886. if (ipid->function == ISAPNP_FUNCTION(0x133))
  887. cs->subtyp = ELSA_QS1000;
  888. else
  889. cs->subtyp = ELSA_QS3000;
  890. break;
  891. } else {
  892. printk(KERN_ERR "Elsa PnP: PnP error card found, no device\n");
  893. return(0);
  894. }
  895. }
  896. ipid++;
  897. pnp_c=NULL;
  898. }
  899. if (!ipid->card_vendor) {
  900. printk(KERN_INFO "Elsa PnP: no ISAPnP card found\n");
  901. return(0);
  902. }
  903. }
  904. #endif
  905. if (card->para[1] && card->para[0]) {
  906. cs->hw.elsa.base = card->para[1];
  907. cs->irq = card->para[0];
  908. if (!cs->subtyp)
  909. cs->subtyp = ELSA_QS1000;
  910. } else {
  911. printk(KERN_ERR "Elsa PnP: no parameter\n");
  912. }
  913. cs->hw.elsa.cfg = cs->hw.elsa.base + ELSA_CONFIG;
  914. cs->hw.elsa.ale = cs->hw.elsa.base + ELSA_ALE;
  915. cs->hw.elsa.isac = cs->hw.elsa.base + ELSA_ISAC;
  916. cs->hw.elsa.hscx = cs->hw.elsa.base + ELSA_HSCX;
  917. cs->hw.elsa.trig = cs->hw.elsa.base + ELSA_TRIG_IRQ;
  918. cs->hw.elsa.timer = cs->hw.elsa.base + ELSA_START_TIMER;
  919. cs->hw.elsa.ctrl = cs->hw.elsa.base + ELSA_CONTROL;
  920. printk(KERN_INFO
  921. "Elsa: %s defined at %#lx IRQ %d\n",
  922. Elsa_Types[cs->subtyp],
  923. cs->hw.elsa.base,
  924. cs->irq);
  925. } else if (cs->typ == ISDN_CTYPE_ELSA_PCMCIA) {
  926. cs->hw.elsa.base = card->para[1];
  927. cs->irq = card->para[0];
  928. val = readreg(cs->hw.elsa.base + 0, cs->hw.elsa.base + 2, IPAC_ID);
  929. if ((val == 1) || (val == 2)) { /* IPAC version 1.1/1.2 */
  930. cs->subtyp = ELSA_PCMCIA_IPAC;
  931. cs->hw.elsa.ale = cs->hw.elsa.base + 0;
  932. cs->hw.elsa.isac = cs->hw.elsa.base + 2;
  933. cs->hw.elsa.hscx = cs->hw.elsa.base + 2;
  934. test_and_set_bit(HW_IPAC, &cs->HW_Flags);
  935. } else {
  936. cs->subtyp = ELSA_PCMCIA;
  937. cs->hw.elsa.ale = cs->hw.elsa.base + ELSA_ALE_PCM;
  938. cs->hw.elsa.isac = cs->hw.elsa.base + ELSA_ISAC_PCM;
  939. cs->hw.elsa.hscx = cs->hw.elsa.base + ELSA_HSCX;
  940. }
  941. cs->hw.elsa.timer = 0;
  942. cs->hw.elsa.trig = 0;
  943. cs->hw.elsa.ctrl = 0;
  944. cs->irq_flags |= SA_SHIRQ;
  945. printk(KERN_INFO
  946. "Elsa: %s defined at %#lx IRQ %d\n",
  947. Elsa_Types[cs->subtyp],
  948. cs->hw.elsa.base,
  949. cs->irq);
  950. } else if (cs->typ == ISDN_CTYPE_ELSA_PCI) {
  951. #ifdef CONFIG_PCI
  952. cs->subtyp = 0;
  953. if ((dev_qs1000 = pci_find_device(PCI_VENDOR_ID_ELSA,
  954. PCI_DEVICE_ID_ELSA_MICROLINK, dev_qs1000))) {
  955. if (pci_enable_device(dev_qs1000))
  956. return(0);
  957. cs->subtyp = ELSA_QS1000PCI;
  958. cs->irq = dev_qs1000->irq;
  959. cs->hw.elsa.cfg = pci_resource_start(dev_qs1000, 1);
  960. cs->hw.elsa.base = pci_resource_start(dev_qs1000, 3);
  961. } else if ((dev_qs3000 = pci_find_device(PCI_VENDOR_ID_ELSA,
  962. PCI_DEVICE_ID_ELSA_QS3000, dev_qs3000))) {
  963. if (pci_enable_device(dev_qs3000))
  964. return(0);
  965. cs->subtyp = ELSA_QS3000PCI;
  966. cs->irq = dev_qs3000->irq;
  967. cs->hw.elsa.cfg = pci_resource_start(dev_qs3000, 1);
  968. cs->hw.elsa.base = pci_resource_start(dev_qs3000, 3);
  969. } else {
  970. printk(KERN_WARNING "Elsa: No PCI card found\n");
  971. return(0);
  972. }
  973. if (!cs->irq) {
  974. printk(KERN_WARNING "Elsa: No IRQ for PCI card found\n");
  975. return(0);
  976. }
  977. if (!(cs->hw.elsa.base && cs->hw.elsa.cfg)) {
  978. printk(KERN_WARNING "Elsa: No IO-Adr for PCI card found\n");
  979. return(0);
  980. }
  981. if ((cs->hw.elsa.cfg & 0xff) || (cs->hw.elsa.base & 0xf)) {
  982. printk(KERN_WARNING "Elsa: You may have a wrong PCI bios\n");
  983. printk(KERN_WARNING "Elsa: If your system hangs now, read\n");
  984. printk(KERN_WARNING "Elsa: Documentation/isdn/README.HiSax\n");
  985. }
  986. cs->hw.elsa.ale = cs->hw.elsa.base;
  987. cs->hw.elsa.isac = cs->hw.elsa.base +1;
  988. cs->hw.elsa.hscx = cs->hw.elsa.base +1;
  989. test_and_set_bit(HW_IPAC, &cs->HW_Flags);
  990. cs->hw.elsa.timer = 0;
  991. cs->hw.elsa.trig = 0;
  992. cs->irq_flags |= SA_SHIRQ;
  993. printk(KERN_INFO
  994. "Elsa: %s defined at %#lx/0x%x IRQ %d\n",
  995. Elsa_Types[cs->subtyp],
  996. cs->hw.elsa.base,
  997. cs->hw.elsa.cfg,
  998. cs->irq);
  999. #else
  1000. printk(KERN_WARNING "Elsa: Elsa PCI and NO_PCI_BIOS\n");
  1001. printk(KERN_WARNING "Elsa: unable to config Elsa PCI\n");
  1002. return (0);
  1003. #endif /* CONFIG_PCI */
  1004. } else
  1005. return (0);
  1006. switch (cs->subtyp) {
  1007. case ELSA_PC:
  1008. case ELSA_PCC8:
  1009. case ELSA_PCC16:
  1010. case ELSA_QS1000:
  1011. case ELSA_PCMCIA:
  1012. case ELSA_PCMCIA_IPAC:
  1013. bytecnt = 8;
  1014. break;
  1015. case ELSA_PCFPRO:
  1016. case ELSA_PCF:
  1017. case ELSA_QS3000:
  1018. case ELSA_QS3000PCI:
  1019. bytecnt = 16;
  1020. break;
  1021. case ELSA_QS1000PCI:
  1022. bytecnt = 2;
  1023. break;
  1024. default:
  1025. printk(KERN_WARNING
  1026. "Unknown ELSA subtype %d\n", cs->subtyp);
  1027. return (0);
  1028. }
  1029. /* In case of the elsa pcmcia card, this region is in use,
  1030. reserved for us by the card manager. So we do not check it
  1031. here, it would fail. */
  1032. if (cs->typ != ISDN_CTYPE_ELSA_PCMCIA && !request_region(cs->hw.elsa.base, bytecnt, "elsa isdn")) {
  1033. printk(KERN_WARNING
  1034. "HiSax: %s config port %#lx-%#lx already in use\n",
  1035. CardType[card->typ],
  1036. cs->hw.elsa.base,
  1037. cs->hw.elsa.base + bytecnt);
  1038. return (0);
  1039. }
  1040. if ((cs->subtyp == ELSA_QS1000PCI) || (cs->subtyp == ELSA_QS3000PCI)) {
  1041. if (!request_region(cs->hw.elsa.cfg, 0x80, "elsa isdn pci")) {
  1042. printk(KERN_WARNING
  1043. "HiSax: %s pci port %x-%x already in use\n",
  1044. CardType[card->typ],
  1045. cs->hw.elsa.cfg,
  1046. cs->hw.elsa.cfg + 0x80);
  1047. release_region(cs->hw.elsa.base, bytecnt);
  1048. return (0);
  1049. }
  1050. }
  1051. #if ARCOFI_USE
  1052. init_arcofi(cs);
  1053. #endif
  1054. setup_isac(cs);
  1055. cs->hw.elsa.tl.function = (void *) elsa_led_handler;
  1056. cs->hw.elsa.tl.data = (long) cs;
  1057. init_timer(&cs->hw.elsa.tl);
  1058. /* Teste Timer */
  1059. if (cs->hw.elsa.timer) {
  1060. byteout(cs->hw.elsa.trig, 0xff);
  1061. byteout(cs->hw.elsa.timer, 0);
  1062. if (!TimerRun(cs)) {
  1063. byteout(cs->hw.elsa.timer, 0); /* 2. Versuch */
  1064. if (!TimerRun(cs)) {
  1065. printk(KERN_WARNING
  1066. "Elsa: timer do not start\n");
  1067. release_io_elsa(cs);
  1068. return (0);
  1069. }
  1070. }
  1071. HZDELAY((HZ/100) + 1); /* wait >=10 ms */
  1072. if (TimerRun(cs)) {
  1073. printk(KERN_WARNING "Elsa: timer do not run down\n");
  1074. release_io_elsa(cs);
  1075. return (0);
  1076. }
  1077. printk(KERN_INFO "Elsa: timer OK; resetting card\n");
  1078. }
  1079. cs->BC_Read_Reg = &ReadHSCX;
  1080. cs->BC_Write_Reg = &WriteHSCX;
  1081. cs->BC_Send_Data = &hscx_fill_fifo;
  1082. cs->cardmsg = &Elsa_card_msg;
  1083. if ((cs->subtyp == ELSA_QS1000PCI) || (cs->subtyp == ELSA_QS3000PCI) || (cs->subtyp == ELSA_PCMCIA_IPAC)) {
  1084. cs->readisac = &ReadISAC_IPAC;
  1085. cs->writeisac = &WriteISAC_IPAC;
  1086. cs->readisacfifo = &ReadISACfifo_IPAC;
  1087. cs->writeisacfifo = &WriteISACfifo_IPAC;
  1088. cs->irq_func = &elsa_interrupt_ipac;
  1089. val = readreg(cs->hw.elsa.ale, cs->hw.elsa.isac, IPAC_ID);
  1090. printk(KERN_INFO "Elsa: IPAC version %x\n", val);
  1091. } else {
  1092. cs->readisac = &ReadISAC;
  1093. cs->writeisac = &WriteISAC;
  1094. cs->readisacfifo = &ReadISACfifo;
  1095. cs->writeisacfifo = &WriteISACfifo;
  1096. cs->irq_func = &elsa_interrupt;
  1097. ISACVersion(cs, "Elsa:");
  1098. if (HscxVersion(cs, "Elsa:")) {
  1099. printk(KERN_WARNING
  1100. "Elsa: wrong HSCX versions check IO address\n");
  1101. release_io_elsa(cs);
  1102. return (0);
  1103. }
  1104. }
  1105. if (cs->subtyp == ELSA_PC) {
  1106. val = readitac(cs, ITAC_SYS);
  1107. printk(KERN_INFO "Elsa: ITAC version %s\n", ITACVer[val & 7]);
  1108. writeitac(cs, ITAC_ISEN, 0);
  1109. writeitac(cs, ITAC_RFIE, 0);
  1110. writeitac(cs, ITAC_XFIE, 0);
  1111. writeitac(cs, ITAC_SCIE, 0);
  1112. writeitac(cs, ITAC_STIE, 0);
  1113. }
  1114. return (1);
  1115. }