boardergo.c 16 KB

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  1. /* $Id: boardergo.c,v 1.5.6.7 2001/11/06 21:58:19 kai Exp $
  2. *
  3. * Linux driver for HYSDN cards, specific routines for ergo type boards.
  4. *
  5. * Author Werner Cornelius (werner@titro.de) for Hypercope GmbH
  6. * Copyright 1999 by Werner Cornelius (werner@titro.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. * As all Linux supported cards Champ2, Ergo and Metro2/4 use the same
  12. * DPRAM interface and layout with only minor differences all related
  13. * stuff is done here, not in separate modules.
  14. *
  15. */
  16. #include <linux/sched.h>
  17. #include <linux/signal.h>
  18. #include <linux/kernel.h>
  19. #include <linux/ioport.h>
  20. #include <linux/interrupt.h>
  21. #include <linux/vmalloc.h>
  22. #include <linux/delay.h>
  23. #include <asm/io.h>
  24. #include "hysdn_defs.h"
  25. #include "boardergo.h"
  26. #define byteout(addr,val) outb(val,addr)
  27. #define bytein(addr) inb(addr)
  28. /***************************************************/
  29. /* The cards interrupt handler. Called from system */
  30. /***************************************************/
  31. static irqreturn_t
  32. ergo_interrupt(int intno, void *dev_id)
  33. {
  34. hysdn_card *card = dev_id; /* parameter from irq */
  35. tErgDpram *dpr;
  36. unsigned long flags;
  37. unsigned char volatile b;
  38. if (!card)
  39. return IRQ_NONE; /* error -> spurious interrupt */
  40. if (!card->irq_enabled)
  41. return IRQ_NONE; /* other device interrupting or irq switched off */
  42. spin_lock_irqsave(&card->hysdn_lock, flags); /* no further irqs allowed */
  43. if (!(bytein(card->iobase + PCI9050_INTR_REG) & PCI9050_INTR_REG_STAT1)) {
  44. spin_unlock_irqrestore(&card->hysdn_lock, flags); /* restore old state */
  45. return IRQ_NONE; /* no interrupt requested by E1 */
  46. }
  47. /* clear any pending ints on the board */
  48. dpr = card->dpram;
  49. b = dpr->ToPcInt; /* clear for ergo */
  50. b |= dpr->ToPcIntMetro; /* same for metro */
  51. b |= dpr->ToHyInt; /* and for champ */
  52. /* start kernel task immediately after leaving all interrupts */
  53. if (!card->hw_lock)
  54. schedule_work(&card->irq_queue);
  55. spin_unlock_irqrestore(&card->hysdn_lock, flags);
  56. return IRQ_HANDLED;
  57. } /* ergo_interrupt */
  58. /******************************************************************************/
  59. /* ergo_irq_bh is the function called by the immediate kernel task list after */
  60. /* being activated with queue_task and no interrupts active. This task is the */
  61. /* only one handling data transfer from or to the card after booting. The task */
  62. /* may be queued from everywhere (interrupts included). */
  63. /******************************************************************************/
  64. static void
  65. ergo_irq_bh(hysdn_card * card)
  66. {
  67. tErgDpram *dpr;
  68. int again;
  69. unsigned long flags;
  70. if (card->state != CARD_STATE_RUN)
  71. return; /* invalid call */
  72. dpr = card->dpram; /* point to DPRAM */
  73. spin_lock_irqsave(&card->hysdn_lock, flags);
  74. if (card->hw_lock) {
  75. spin_unlock_irqrestore(&card->hysdn_lock, flags); /* hardware currently unavailable */
  76. return;
  77. }
  78. card->hw_lock = 1; /* we now lock the hardware */
  79. do {
  80. sti(); /* reenable other ints */
  81. again = 0; /* assume loop not to be repeated */
  82. if (!dpr->ToHyFlag) {
  83. /* we are able to send a buffer */
  84. if (hysdn_sched_tx(card, dpr->ToHyBuf, &dpr->ToHySize, &dpr->ToHyChannel,
  85. ERG_TO_HY_BUF_SIZE)) {
  86. dpr->ToHyFlag = 1; /* enable tx */
  87. again = 1; /* restart loop */
  88. }
  89. } /* we are able to send a buffer */
  90. if (dpr->ToPcFlag) {
  91. /* a message has arrived for us, handle it */
  92. if (hysdn_sched_rx(card, dpr->ToPcBuf, dpr->ToPcSize, dpr->ToPcChannel)) {
  93. dpr->ToPcFlag = 0; /* we worked the data */
  94. again = 1; /* restart loop */
  95. }
  96. } /* a message has arrived for us */
  97. cli(); /* no further ints */
  98. if (again) {
  99. dpr->ToHyInt = 1;
  100. dpr->ToPcInt = 1; /* interrupt to E1 for all cards */
  101. } else
  102. card->hw_lock = 0; /* free hardware again */
  103. } while (again); /* until nothing more to do */
  104. spin_unlock_irqrestore(&card->hysdn_lock, flags);
  105. } /* ergo_irq_bh */
  106. /*********************************************************/
  107. /* stop the card (hardware reset) and disable interrupts */
  108. /*********************************************************/
  109. static void
  110. ergo_stopcard(hysdn_card * card)
  111. {
  112. unsigned long flags;
  113. unsigned char val;
  114. hysdn_net_release(card); /* first release the net device if existing */
  115. #ifdef CONFIG_HYSDN_CAPI
  116. hycapi_capi_stop(card);
  117. #endif /* CONFIG_HYSDN_CAPI */
  118. spin_lock_irqsave(&card->hysdn_lock, flags);
  119. val = bytein(card->iobase + PCI9050_INTR_REG); /* get actual value */
  120. val &= ~(PCI9050_INTR_REG_ENPCI | PCI9050_INTR_REG_EN1); /* mask irq */
  121. byteout(card->iobase + PCI9050_INTR_REG, val);
  122. card->irq_enabled = 0;
  123. byteout(card->iobase + PCI9050_USER_IO, PCI9050_E1_RESET); /* reset E1 processor */
  124. card->state = CARD_STATE_UNUSED;
  125. card->err_log_state = ERRLOG_STATE_OFF; /* currently no log active */
  126. spin_unlock_irqrestore(&card->hysdn_lock, flags);
  127. } /* ergo_stopcard */
  128. /**************************************************************************/
  129. /* enable or disable the cards error log. The event is queued if possible */
  130. /**************************************************************************/
  131. static void
  132. ergo_set_errlog_state(hysdn_card * card, int on)
  133. {
  134. unsigned long flags;
  135. if (card->state != CARD_STATE_RUN) {
  136. card->err_log_state = ERRLOG_STATE_OFF; /* must be off */
  137. return;
  138. }
  139. spin_lock_irqsave(&card->hysdn_lock, flags);
  140. if (((card->err_log_state == ERRLOG_STATE_OFF) && !on) ||
  141. ((card->err_log_state == ERRLOG_STATE_ON) && on)) {
  142. spin_unlock_irqrestore(&card->hysdn_lock, flags);
  143. return; /* nothing to do */
  144. }
  145. if (on)
  146. card->err_log_state = ERRLOG_STATE_START; /* request start */
  147. else
  148. card->err_log_state = ERRLOG_STATE_STOP; /* request stop */
  149. spin_unlock_irqrestore(&card->hysdn_lock, flags);
  150. schedule_work(&card->irq_queue);
  151. } /* ergo_set_errlog_state */
  152. /******************************************/
  153. /* test the cards RAM and return 0 if ok. */
  154. /******************************************/
  155. static const char TestText[36] = "This Message is filler, why read it";
  156. static int
  157. ergo_testram(hysdn_card * card)
  158. {
  159. tErgDpram *dpr = card->dpram;
  160. memset(dpr->TrapTable, 0, sizeof(dpr->TrapTable)); /* clear all Traps */
  161. dpr->ToHyInt = 1; /* E1 INTR state forced */
  162. memcpy(&dpr->ToHyBuf[ERG_TO_HY_BUF_SIZE - sizeof(TestText)], TestText,
  163. sizeof(TestText));
  164. if (memcmp(&dpr->ToHyBuf[ERG_TO_HY_BUF_SIZE - sizeof(TestText)], TestText,
  165. sizeof(TestText)))
  166. return (-1);
  167. memcpy(&dpr->ToPcBuf[ERG_TO_PC_BUF_SIZE - sizeof(TestText)], TestText,
  168. sizeof(TestText));
  169. if (memcmp(&dpr->ToPcBuf[ERG_TO_PC_BUF_SIZE - sizeof(TestText)], TestText,
  170. sizeof(TestText)))
  171. return (-1);
  172. return (0);
  173. } /* ergo_testram */
  174. /*****************************************************************************/
  175. /* this function is intended to write stage 1 boot image to the cards buffer */
  176. /* this is done in two steps. First the 1024 hi-words are written (offs=0), */
  177. /* then the 1024 lo-bytes are written. The remaining DPRAM is cleared, the */
  178. /* PCI-write-buffers flushed and the card is taken out of reset. */
  179. /* The function then waits for a reaction of the E1 processor or a timeout. */
  180. /* Negative return values are interpreted as errors. */
  181. /*****************************************************************************/
  182. static int
  183. ergo_writebootimg(struct HYSDN_CARD *card, unsigned char *buf,
  184. unsigned long offs)
  185. {
  186. unsigned char *dst;
  187. tErgDpram *dpram;
  188. int cnt = (BOOT_IMG_SIZE >> 2); /* number of words to move and swap (byte order!) */
  189. if (card->debug_flags & LOG_POF_CARD)
  190. hysdn_addlog(card, "ERGO: write bootldr offs=0x%lx ", offs);
  191. dst = card->dpram; /* pointer to start of DPRAM */
  192. dst += (offs + ERG_DPRAM_FILL_SIZE); /* offset in the DPRAM */
  193. while (cnt--) {
  194. *dst++ = *(buf + 1); /* high byte */
  195. *dst++ = *buf; /* low byte */
  196. dst += 2; /* point to next longword */
  197. buf += 2; /* buffer only filled with words */
  198. }
  199. /* if low words (offs = 2) have been written, clear the rest of the DPRAM, */
  200. /* flush the PCI-write-buffer and take the E1 out of reset */
  201. if (offs) {
  202. memset(card->dpram, 0, ERG_DPRAM_FILL_SIZE); /* fill the DPRAM still not cleared */
  203. dpram = card->dpram; /* get pointer to dpram structure */
  204. dpram->ToHyNoDpramErrLog = 0xFF; /* write a dpram register */
  205. while (!dpram->ToHyNoDpramErrLog); /* reread volatile register to flush PCI */
  206. byteout(card->iobase + PCI9050_USER_IO, PCI9050_E1_RUN); /* start E1 processor */
  207. /* the interrupts are still masked */
  208. sti();
  209. msleep_interruptible(20); /* Timeout 20ms */
  210. if (((tDpramBootSpooler *) card->dpram)->Len != DPRAM_SPOOLER_DATA_SIZE) {
  211. if (card->debug_flags & LOG_POF_CARD)
  212. hysdn_addlog(card, "ERGO: write bootldr no answer");
  213. return (-ERR_BOOTIMG_FAIL);
  214. }
  215. } /* start_boot_img */
  216. return (0); /* successful */
  217. } /* ergo_writebootimg */
  218. /********************************************************************************/
  219. /* ergo_writebootseq writes the buffer containing len bytes to the E1 processor */
  220. /* using the boot spool mechanism. If everything works fine 0 is returned. In */
  221. /* case of errors a negative error value is returned. */
  222. /********************************************************************************/
  223. static int
  224. ergo_writebootseq(struct HYSDN_CARD *card, unsigned char *buf, int len)
  225. {
  226. tDpramBootSpooler *sp = (tDpramBootSpooler *) card->dpram;
  227. unsigned char *dst;
  228. unsigned char buflen;
  229. int nr_write;
  230. unsigned char tmp_rdptr;
  231. unsigned char wr_mirror;
  232. int i;
  233. if (card->debug_flags & LOG_POF_CARD)
  234. hysdn_addlog(card, "ERGO: write boot seq len=%d ", len);
  235. dst = sp->Data; /* point to data in spool structure */
  236. buflen = sp->Len; /* maximum len of spooled data */
  237. wr_mirror = sp->WrPtr; /* only once read */
  238. sti();
  239. /* try until all bytes written or error */
  240. i = 0x1000; /* timeout value */
  241. while (len) {
  242. /* first determine the number of bytes that may be buffered */
  243. do {
  244. tmp_rdptr = sp->RdPtr; /* first read the pointer */
  245. i--; /* decrement timeout */
  246. } while (i && (tmp_rdptr != sp->RdPtr)); /* wait for stable pointer */
  247. if (!i) {
  248. if (card->debug_flags & LOG_POF_CARD)
  249. hysdn_addlog(card, "ERGO: write boot seq timeout");
  250. return (-ERR_BOOTSEQ_FAIL); /* value not stable -> timeout */
  251. }
  252. if ((nr_write = tmp_rdptr - wr_mirror - 1) < 0)
  253. nr_write += buflen; /* now we got number of free bytes - 1 in buffer */
  254. if (!nr_write)
  255. continue; /* no free bytes in buffer */
  256. if (nr_write > len)
  257. nr_write = len; /* limit if last few bytes */
  258. i = 0x1000; /* reset timeout value */
  259. /* now we know how much bytes we may put in the puffer */
  260. len -= nr_write; /* we savely could adjust len before output */
  261. while (nr_write--) {
  262. *(dst + wr_mirror) = *buf++; /* output one byte */
  263. if (++wr_mirror >= buflen)
  264. wr_mirror = 0;
  265. sp->WrPtr = wr_mirror; /* announce the next byte to E1 */
  266. } /* while (nr_write) */
  267. } /* while (len) */
  268. return (0);
  269. } /* ergo_writebootseq */
  270. /***********************************************************************************/
  271. /* ergo_waitpofready waits for a maximum of 10 seconds for the completition of the */
  272. /* boot process. If the process has been successful 0 is returned otherwise a */
  273. /* negative error code is returned. */
  274. /***********************************************************************************/
  275. static int
  276. ergo_waitpofready(struct HYSDN_CARD *card)
  277. {
  278. tErgDpram *dpr = card->dpram; /* pointer to DPRAM structure */
  279. int timecnt = 10000 / 50; /* timeout is 10 secs max. */
  280. unsigned long flags;
  281. int msg_size;
  282. int i;
  283. if (card->debug_flags & LOG_POF_CARD)
  284. hysdn_addlog(card, "ERGO: waiting for pof ready");
  285. while (timecnt--) {
  286. /* wait until timeout */
  287. if (dpr->ToPcFlag) {
  288. /* data has arrived */
  289. if ((dpr->ToPcChannel != CHAN_SYSTEM) ||
  290. (dpr->ToPcSize < MIN_RDY_MSG_SIZE) ||
  291. (dpr->ToPcSize > MAX_RDY_MSG_SIZE) ||
  292. ((*(unsigned long *) dpr->ToPcBuf) != RDY_MAGIC))
  293. break; /* an error occurred */
  294. /* Check for additional data delivered during SysReady */
  295. msg_size = dpr->ToPcSize - RDY_MAGIC_SIZE;
  296. if (msg_size > 0)
  297. if (EvalSysrTokData(card, dpr->ToPcBuf + RDY_MAGIC_SIZE, msg_size))
  298. break;
  299. if (card->debug_flags & LOG_POF_RECORD)
  300. hysdn_addlog(card, "ERGO: pof boot success");
  301. spin_lock_irqsave(&card->hysdn_lock, flags);
  302. card->state = CARD_STATE_RUN; /* now card is running */
  303. /* enable the cards interrupt */
  304. byteout(card->iobase + PCI9050_INTR_REG,
  305. bytein(card->iobase + PCI9050_INTR_REG) |
  306. (PCI9050_INTR_REG_ENPCI | PCI9050_INTR_REG_EN1));
  307. card->irq_enabled = 1; /* we are ready to receive interrupts */
  308. dpr->ToPcFlag = 0; /* reset data indicator */
  309. dpr->ToHyInt = 1;
  310. dpr->ToPcInt = 1; /* interrupt to E1 for all cards */
  311. spin_unlock_irqrestore(&card->hysdn_lock, flags);
  312. if ((hynet_enable & (1 << card->myid))
  313. && (i = hysdn_net_create(card)))
  314. {
  315. ergo_stopcard(card);
  316. card->state = CARD_STATE_BOOTERR;
  317. return (i);
  318. }
  319. #ifdef CONFIG_HYSDN_CAPI
  320. if((i = hycapi_capi_create(card))) {
  321. printk(KERN_WARNING "HYSDN: failed to create capi-interface.\n");
  322. }
  323. #endif /* CONFIG_HYSDN_CAPI */
  324. return (0); /* success */
  325. } /* data has arrived */
  326. sti();
  327. msleep_interruptible(50); /* Timeout 50ms */
  328. } /* wait until timeout */
  329. if (card->debug_flags & LOG_POF_CARD)
  330. hysdn_addlog(card, "ERGO: pof boot ready timeout");
  331. return (-ERR_POF_TIMEOUT);
  332. } /* ergo_waitpofready */
  333. /************************************************************************************/
  334. /* release the cards hardware. Before releasing do a interrupt disable and hardware */
  335. /* reset. Also unmap dpram. */
  336. /* Use only during module release. */
  337. /************************************************************************************/
  338. static void
  339. ergo_releasehardware(hysdn_card * card)
  340. {
  341. ergo_stopcard(card); /* first stop the card if not already done */
  342. free_irq(card->irq, card); /* release interrupt */
  343. release_region(card->iobase + PCI9050_INTR_REG, 1); /* release all io ports */
  344. release_region(card->iobase + PCI9050_USER_IO, 1);
  345. iounmap(card->dpram);
  346. card->dpram = NULL; /* release shared mem */
  347. } /* ergo_releasehardware */
  348. /*********************************************************************************/
  349. /* acquire the needed hardware ports and map dpram. If an error occurs a nonzero */
  350. /* value is returned. */
  351. /* Use only during module init. */
  352. /*********************************************************************************/
  353. int
  354. ergo_inithardware(hysdn_card * card)
  355. {
  356. if (!request_region(card->iobase + PCI9050_INTR_REG, 1, "HYSDN"))
  357. return (-1);
  358. if (!request_region(card->iobase + PCI9050_USER_IO, 1, "HYSDN")) {
  359. release_region(card->iobase + PCI9050_INTR_REG, 1);
  360. return (-1); /* ports already in use */
  361. }
  362. card->memend = card->membase + ERG_DPRAM_PAGE_SIZE - 1;
  363. if (!(card->dpram = ioremap(card->membase, ERG_DPRAM_PAGE_SIZE))) {
  364. release_region(card->iobase + PCI9050_INTR_REG, 1);
  365. release_region(card->iobase + PCI9050_USER_IO, 1);
  366. return (-1);
  367. }
  368. ergo_stopcard(card); /* disable interrupts */
  369. if (request_irq(card->irq, ergo_interrupt, IRQF_SHARED, "HYSDN", card)) {
  370. ergo_releasehardware(card); /* return the acquired hardware */
  371. return (-1);
  372. }
  373. /* success, now setup the function pointers */
  374. card->stopcard = ergo_stopcard;
  375. card->releasehardware = ergo_releasehardware;
  376. card->testram = ergo_testram;
  377. card->writebootimg = ergo_writebootimg;
  378. card->writebootseq = ergo_writebootseq;
  379. card->waitpofready = ergo_waitpofready;
  380. card->set_errlog_state = ergo_set_errlog_state;
  381. INIT_WORK(&card->irq_queue, (void *) (void *) ergo_irq_bh, card);
  382. card->hysdn_lock = SPIN_LOCK_UNLOCKED;
  383. return (0);
  384. } /* ergo_inithardware */