socal.c 25 KB

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  1. /* socal.c: Sparc SUNW,socal (SOC+) Fibre Channel Sbus adapter support.
  2. *
  3. * Copyright (C) 1998,1999 Jakub Jelinek (jj@ultra.linux.cz)
  4. *
  5. * Sources:
  6. * Fibre Channel Physical & Signaling Interface (FC-PH), dpANS, 1994
  7. * dpANS Fibre Channel Protocol for SCSI (X3.269-199X), Rev. 012, 1995
  8. * SOC+ Programming Guide 0.1
  9. * Fibre Channel Arbitrated Loop (FC-AL), dpANS rev. 4.5, 1995
  10. *
  11. * Supported hardware:
  12. * On-board SOC+ adapters of Ultra Enterprise servers and sun4d.
  13. */
  14. static char *version =
  15. "socal.c: SOC+ driver v1.1 9/Feb/99 Jakub Jelinek (jj@ultra.linux.cz)\n";
  16. #include <linux/module.h>
  17. #include <linux/kernel.h>
  18. #include <linux/sched.h>
  19. #include <linux/types.h>
  20. #include <linux/fcntl.h>
  21. #include <linux/interrupt.h>
  22. #include <linux/ptrace.h>
  23. #include <linux/ioport.h>
  24. #include <linux/in.h>
  25. #include <linux/slab.h>
  26. #include <linux/string.h>
  27. #include <linux/init.h>
  28. #include <linux/bitops.h>
  29. #include <asm/system.h>
  30. #include <asm/io.h>
  31. #include <asm/dma.h>
  32. #include <linux/errno.h>
  33. #include <asm/byteorder.h>
  34. #include <asm/openprom.h>
  35. #include <asm/oplib.h>
  36. #include <asm/pgtable.h>
  37. #include <asm/irq.h>
  38. /* #define SOCALDEBUG */
  39. /* #define HAVE_SOCAL_UCODE */
  40. /* #define USE_64BIT_MODE */
  41. #include "fcp_impl.h"
  42. #include "socal.h"
  43. #ifdef HAVE_SOCAL_UCODE
  44. #include "socal_asm.h"
  45. #endif
  46. #define socal_printk printk ("socal%d: ", s->socal_no); printk
  47. #ifdef SOCALDEBUG
  48. #define SOD(x) socal_printk x;
  49. #else
  50. #define SOD(x)
  51. #endif
  52. #define for_each_socal(s) for (s = socals; s; s = s->next)
  53. struct socal *socals = NULL;
  54. static void socal_copy_from_xram(void *d, void __iomem *xram, long size)
  55. {
  56. u32 *dp = (u32 *) d;
  57. while (size) {
  58. *dp++ = sbus_readl(xram);
  59. xram += sizeof(u32);
  60. size -= sizeof(u32);
  61. }
  62. }
  63. static void socal_copy_to_xram(void __iomem *xram, void *s, long size)
  64. {
  65. u32 *sp = (u32 *) s;
  66. while (size) {
  67. u32 val = *sp++;
  68. sbus_writel(val, xram);
  69. xram += sizeof(u32);
  70. size -= sizeof(u32);
  71. }
  72. }
  73. #ifdef HAVE_SOCAL_UCODE
  74. static void socal_bzero(unsigned long xram, int size)
  75. {
  76. while (size) {
  77. sbus_writel(0, xram);
  78. xram += sizeof(u32);
  79. size -= sizeof(u32);
  80. }
  81. }
  82. #endif
  83. static inline void socal_disable(struct socal *s)
  84. {
  85. sbus_writel(0, s->regs + IMASK);
  86. sbus_writel(SOCAL_CMD_SOFT_RESET, s->regs + CMD);
  87. }
  88. static inline void socal_enable(struct socal *s)
  89. {
  90. SOD(("enable %08x\n", s->cfg))
  91. sbus_writel(0, s->regs + SAE);
  92. sbus_writel(s->cfg, s->regs + CFG);
  93. sbus_writel(SOCAL_CMD_RSP_QALL, s->regs + CMD);
  94. SOCAL_SETIMASK(s, SOCAL_IMASK_RSP_QALL | SOCAL_IMASK_SAE);
  95. SOD(("imask %08x %08x\n", s->imask, sbus_readl(s->regs + IMASK)));
  96. }
  97. static void socal_reset(fc_channel *fc)
  98. {
  99. socal_port *port = (socal_port *)fc;
  100. struct socal *s = port->s;
  101. /* FIXME */
  102. socal_disable(s);
  103. s->req[0].seqno = 1;
  104. s->req[1].seqno = 1;
  105. s->rsp[0].seqno = 1;
  106. s->rsp[1].seqno = 1;
  107. s->req[0].in = 0;
  108. s->req[1].in = 0;
  109. s->rsp[0].in = 0;
  110. s->rsp[1].in = 0;
  111. s->req[0].out = 0;
  112. s->req[1].out = 0;
  113. s->rsp[0].out = 0;
  114. s->rsp[1].out = 0;
  115. /* FIXME */
  116. socal_enable(s);
  117. }
  118. static inline void socal_solicited(struct socal *s, unsigned long qno)
  119. {
  120. socal_rsp *hwrsp;
  121. socal_cq *sw_cq;
  122. int token;
  123. int status;
  124. fc_channel *fc;
  125. sw_cq = &s->rsp[qno];
  126. /* Finally an improvement against old SOC :) */
  127. sw_cq->in = sbus_readb(s->regs + RESP + qno);
  128. SOD (("socal_solicited, %d packets arrived\n",
  129. (sw_cq->in - sw_cq->out) & sw_cq->last))
  130. for (;;) {
  131. hwrsp = (socal_rsp *)sw_cq->pool + sw_cq->out;
  132. SOD(("hwrsp %p out %d\n", hwrsp, sw_cq->out))
  133. #if defined(SOCALDEBUG) && 0
  134. {
  135. u32 *u = (u32 *)hwrsp;
  136. SOD(("%08x.%08x.%08x.%08x.%08x.%08x.%08x.%08x\n",
  137. u[0],u[1],u[2],u[3],u[4],u[5],u[6],u[7]))
  138. u += 8;
  139. SOD(("%08x.%08x.%08x.%08x.%08x.%08x.%08x.%08x\n",
  140. u[0],u[1],u[2],u[3],u[4],u[5],u[6],u[7]))
  141. u = (u32 *)s->xram;
  142. while (u < ((u32 *)s->regs)) {
  143. if (sbus_readl(&u[0]) == 0x00003000 ||
  144. sbus_readl(&u[0]) == 0x00003801) {
  145. SOD(("Found at %04lx\n",
  146. (unsigned long)u - (unsigned long)s->xram))
  147. SOD((" %08x.%08x.%08x.%08x.%08x.%08x.%08x.%08x\n",
  148. sbus_readl(&u[0]), sbus_readl(&u[1]),
  149. sbus_readl(&u[2]), sbus_readl(&u[3]),
  150. sbus_readl(&u[4]), sbus_readl(&u[5]),
  151. sbus_readl(&u[6]), sbus_readl(&u[7])))
  152. u += 8;
  153. SOD((" %08x.%08x.%08x.%08x.%08x.%08x.%08x.%08x\n",
  154. sbus_readl(&u[0]), sbus_readl(&u[1]),
  155. sbus_readl(&u[2]), sbus_readl(&u[3]),
  156. sbus_readl(&u[4]), sbus_readl(&u[5]),
  157. sbus_readl(&u[6]), sbus_readl(&u[7])))
  158. u -= 8;
  159. }
  160. u++;
  161. }
  162. }
  163. #endif
  164. token = hwrsp->shdr.token;
  165. status = hwrsp->status;
  166. fc = (fc_channel *)(&s->port[(token >> 11) & 1]);
  167. SOD(("Solicited token %08x status %08x\n", token, status))
  168. if (status == SOCAL_OK) {
  169. fcp_receive_solicited(fc, token >> 12,
  170. token & ((1 << 11) - 1),
  171. FC_STATUS_OK, NULL);
  172. } else {
  173. /* We have intentionally defined FC_STATUS_* constants
  174. * to match SOCAL_* constants, otherwise we'd have to
  175. * translate status.
  176. */
  177. fcp_receive_solicited(fc, token >> 12,
  178. token & ((1 << 11) - 1), status, &hwrsp->fchdr);
  179. }
  180. if (++sw_cq->out > sw_cq->last) {
  181. sw_cq->seqno++;
  182. sw_cq->out = 0;
  183. }
  184. if (sw_cq->out == sw_cq->in) {
  185. sw_cq->in = sbus_readb(s->regs + RESP + qno);
  186. if (sw_cq->out == sw_cq->in) {
  187. /* Tell the hardware about it */
  188. sbus_writel((sw_cq->out << 24) |
  189. (SOCAL_CMD_RSP_QALL &
  190. ~(SOCAL_CMD_RSP_Q0 << qno)),
  191. s->regs + CMD);
  192. /* Read it, so that we're sure it has been updated */
  193. sbus_readl(s->regs + CMD);
  194. sw_cq->in = sbus_readb(s->regs + RESP + qno);
  195. if (sw_cq->out == sw_cq->in)
  196. break;
  197. }
  198. }
  199. }
  200. }
  201. static inline void socal_request (struct socal *s, u32 cmd)
  202. {
  203. SOCAL_SETIMASK(s, s->imask & ~(cmd & SOCAL_CMD_REQ_QALL));
  204. SOD(("imask %08x %08x\n", s->imask, sbus_readl(s->regs + IMASK)));
  205. SOD(("Queues available %08x OUT %X\n", cmd, s->regs->reqpr[0]))
  206. if (s->port[s->curr_port].fc.state != FC_STATE_OFFLINE) {
  207. fcp_queue_empty ((fc_channel *)&(s->port[s->curr_port]));
  208. if (((s->req[1].in + 1) & s->req[1].last) != (s->req[1].out))
  209. fcp_queue_empty ((fc_channel *)&(s->port[1 - s->curr_port]));
  210. } else {
  211. fcp_queue_empty ((fc_channel *)&(s->port[1 - s->curr_port]));
  212. }
  213. if (s->port[1 - s->curr_port].fc.state != FC_STATE_OFFLINE)
  214. s->curr_port ^= 1;
  215. }
  216. static inline void socal_unsolicited (struct socal *s, unsigned long qno)
  217. {
  218. socal_rsp *hwrsp, *hwrspc;
  219. socal_cq *sw_cq;
  220. int count;
  221. int status;
  222. int flags;
  223. fc_channel *fc;
  224. sw_cq = &s->rsp[qno];
  225. sw_cq->in = sbus_readb(s->regs + RESP + qno);
  226. SOD (("socal_unsolicited, %d packets arrived, in %d\n",
  227. (sw_cq->in - sw_cq->out) & sw_cq->last, sw_cq->in))
  228. while (sw_cq->in != sw_cq->out) {
  229. /* ...real work per entry here... */
  230. hwrsp = (socal_rsp *)sw_cq->pool + sw_cq->out;
  231. SOD(("hwrsp %p out %d\n", hwrsp, sw_cq->out))
  232. #if defined(SOCALDEBUG) && 0
  233. {
  234. u32 *u = (u32 *)hwrsp;
  235. SOD(("%08x.%08x.%08x.%08x.%08x.%08x.%08x.%08x\n",
  236. u[0],u[1],u[2],u[3],u[4],u[5],u[6],u[7]))
  237. u += 8;
  238. SOD(("%08x.%08x.%08x.%08x.%08x.%08x.%08x.%08x\n",
  239. u[0],u[1],u[2],u[3],u[4],u[5],u[6],u[7]))
  240. }
  241. #endif
  242. hwrspc = NULL;
  243. flags = hwrsp->shdr.flags;
  244. count = hwrsp->count;
  245. fc = (fc_channel *)&s->port[flags & SOCAL_PORT_B];
  246. SOD(("FC %08lx\n", (long)fc))
  247. if (count != 1) {
  248. /* Ugh, continuation entries */
  249. u8 in;
  250. if (count != 2) {
  251. printk("%s: Too many continuations entries %d\n",
  252. fc->name, count);
  253. goto update_out;
  254. }
  255. in = sw_cq->in;
  256. if (in < sw_cq->out)
  257. in += sw_cq->last + 1;
  258. if (in < sw_cq->out + 2) {
  259. /* Ask the hardware if they haven't arrived yet. */
  260. sbus_writel((sw_cq->out << 24) |
  261. (SOCAL_CMD_RSP_QALL &
  262. ~(SOCAL_CMD_RSP_Q0 << qno)),
  263. s->regs + CMD);
  264. /* Read it, so that we're sure it has been updated */
  265. sbus_readl(s->regs + CMD);
  266. sw_cq->in = sbus_readb(s->regs + RESP + qno);
  267. in = sw_cq->in;
  268. if (in < sw_cq->out)
  269. in += sw_cq->last + 1;
  270. if (in < sw_cq->out + 2) /* Nothing came, let us wait */
  271. return;
  272. }
  273. if (sw_cq->out == sw_cq->last)
  274. hwrspc = (socal_rsp *)sw_cq->pool;
  275. else
  276. hwrspc = hwrsp + 1;
  277. }
  278. switch (flags & ~SOCAL_PORT_B) {
  279. case SOCAL_STATUS:
  280. status = hwrsp->status;
  281. switch (status) {
  282. case SOCAL_ONLINE:
  283. SOD(("State change to ONLINE\n"));
  284. fcp_state_change(fc, FC_STATE_ONLINE);
  285. break;
  286. case SOCAL_ONLINE_LOOP:
  287. SOD(("State change to ONLINE_LOOP\n"));
  288. fcp_state_change(fc, FC_STATE_ONLINE);
  289. break;
  290. case SOCAL_OFFLINE:
  291. SOD(("State change to OFFLINE\n"));
  292. fcp_state_change(fc, FC_STATE_OFFLINE);
  293. break;
  294. default:
  295. printk ("%s: Unknown STATUS no %d\n",
  296. fc->name, status);
  297. break;
  298. };
  299. break;
  300. case (SOCAL_UNSOLICITED|SOCAL_FC_HDR):
  301. {
  302. int r_ctl = *((u8 *)&hwrsp->fchdr);
  303. unsigned len;
  304. if ((r_ctl & 0xf0) == R_CTL_EXTENDED_SVC) {
  305. len = hwrsp->shdr.bytecnt;
  306. if (len < 4 || !hwrspc) {
  307. printk ("%s: Invalid R_CTL %02x "
  308. "continuation entries\n",
  309. fc->name, r_ctl);
  310. } else {
  311. if (len > 60)
  312. len = 60;
  313. if (*(u32 *)hwrspc == LS_DISPLAY) {
  314. int i;
  315. for (i = 4; i < len; i++)
  316. if (((u8 *)hwrspc)[i] == '\n')
  317. ((u8 *)hwrspc)[i] = ' ';
  318. ((u8 *)hwrspc)[len] = 0;
  319. printk ("%s message: %s\n",
  320. fc->name, ((u8 *)hwrspc) + 4);
  321. } else {
  322. printk ("%s: Unknown LS_CMD "
  323. "%08x\n", fc->name,
  324. *(u32 *)hwrspc);
  325. }
  326. }
  327. } else {
  328. printk ("%s: Unsolicited R_CTL %02x "
  329. "not handled\n", fc->name, r_ctl);
  330. }
  331. }
  332. break;
  333. default:
  334. printk ("%s: Unexpected flags %08x\n", fc->name, flags);
  335. break;
  336. };
  337. update_out:
  338. if (++sw_cq->out > sw_cq->last) {
  339. sw_cq->seqno++;
  340. sw_cq->out = 0;
  341. }
  342. if (hwrspc) {
  343. if (++sw_cq->out > sw_cq->last) {
  344. sw_cq->seqno++;
  345. sw_cq->out = 0;
  346. }
  347. }
  348. if (sw_cq->out == sw_cq->in) {
  349. sw_cq->in = sbus_readb(s->regs + RESP + qno);
  350. if (sw_cq->out == sw_cq->in) {
  351. /* Tell the hardware about it */
  352. sbus_writel((sw_cq->out << 24) |
  353. (SOCAL_CMD_RSP_QALL &
  354. ~(SOCAL_CMD_RSP_Q0 << qno)),
  355. s->regs + CMD);
  356. /* Read it, so that we're sure it has been updated */
  357. sbus_readl(s->regs + CMD);
  358. sw_cq->in = sbus_readb(s->regs + RESP + qno);
  359. }
  360. }
  361. }
  362. }
  363. static irqreturn_t socal_intr(int irq, void *dev_id, struct pt_regs *regs)
  364. {
  365. u32 cmd;
  366. unsigned long flags;
  367. register struct socal *s = (struct socal *)dev_id;
  368. spin_lock_irqsave(&s->lock, flags);
  369. cmd = sbus_readl(s->regs + CMD);
  370. for (; (cmd = SOCAL_INTR (s, cmd)); cmd = sbus_readl(s->regs + CMD)) {
  371. #ifdef SOCALDEBUG
  372. static int cnt = 0;
  373. if (cnt++ < 50)
  374. printk("soc_intr %08x\n", cmd);
  375. #endif
  376. if (cmd & SOCAL_CMD_RSP_Q2)
  377. socal_unsolicited (s, SOCAL_UNSOLICITED_RSP_Q);
  378. if (cmd & SOCAL_CMD_RSP_Q1)
  379. socal_unsolicited (s, SOCAL_SOLICITED_BAD_RSP_Q);
  380. if (cmd & SOCAL_CMD_RSP_Q0)
  381. socal_solicited (s, SOCAL_SOLICITED_RSP_Q);
  382. if (cmd & SOCAL_CMD_REQ_QALL)
  383. socal_request (s, cmd);
  384. }
  385. spin_unlock_irqrestore(&s->lock, flags);
  386. return IRQ_HANDLED;
  387. }
  388. #define TOKEN(proto, port, token) (((proto)<<12)|(token)|(port))
  389. static int socal_hw_enque (fc_channel *fc, fcp_cmnd *fcmd)
  390. {
  391. socal_port *port = (socal_port *)fc;
  392. struct socal *s = port->s;
  393. unsigned long qno;
  394. socal_cq *sw_cq;
  395. int cq_next_in;
  396. socal_req *request;
  397. fc_hdr *fch;
  398. int i;
  399. if (fcmd->proto == TYPE_SCSI_FCP)
  400. qno = 1;
  401. else
  402. qno = 0;
  403. SOD(("Putting a FCP packet type %d into hw queue %d\n", fcmd->proto, qno))
  404. if (s->imask & (SOCAL_IMASK_REQ_Q0 << qno)) {
  405. SOD(("EIO %08x\n", s->imask))
  406. return -EIO;
  407. }
  408. sw_cq = s->req + qno;
  409. cq_next_in = (sw_cq->in + 1) & sw_cq->last;
  410. if (cq_next_in == sw_cq->out &&
  411. cq_next_in == (sw_cq->out = sbus_readb(s->regs + REQP + qno))) {
  412. SOD(("%d IN %d OUT %d LAST %d\n",
  413. qno, sw_cq->in,
  414. sw_cq->out, sw_cq->last))
  415. SOCAL_SETIMASK(s, s->imask | (SOCAL_IMASK_REQ_Q0 << qno));
  416. SOD(("imask %08x %08x\n", s->imask, sbus_readl(s->regs + IMASK)));
  417. /* If queue is full, just say NO. */
  418. return -EBUSY;
  419. }
  420. request = sw_cq->pool + sw_cq->in;
  421. fch = &request->fchdr;
  422. switch (fcmd->proto) {
  423. case TYPE_SCSI_FCP:
  424. request->shdr.token = TOKEN(TYPE_SCSI_FCP, port->mask, fcmd->token);
  425. request->data[0].base = fc->dma_scsi_cmd + fcmd->token * sizeof(fcp_cmd);
  426. request->data[0].count = sizeof(fcp_cmd);
  427. request->data[1].base = fc->dma_scsi_rsp + fcmd->token * fc->rsp_size;
  428. request->data[1].count = fc->rsp_size;
  429. if (fcmd->data) {
  430. request->shdr.segcnt = 3;
  431. i = fc->scsi_cmd_pool[fcmd->token].fcp_data_len;
  432. request->shdr.bytecnt = i;
  433. request->data[2].base = fcmd->data;
  434. request->data[2].count = i;
  435. request->type = (fc->scsi_cmd_pool[fcmd->token].fcp_cntl & FCP_CNTL_WRITE) ?
  436. SOCAL_CQTYPE_IO_WRITE : SOCAL_CQTYPE_IO_READ;
  437. } else {
  438. request->shdr.segcnt = 2;
  439. request->shdr.bytecnt = 0;
  440. request->data[2].base = 0;
  441. request->data[2].count = 0;
  442. request->type = SOCAL_CQTYPE_SIMPLE;
  443. }
  444. FILL_FCHDR_RCTL_DID(fch, R_CTL_COMMAND, fcmd->did);
  445. FILL_FCHDR_SID(fch, fc->sid);
  446. FILL_FCHDR_TYPE_FCTL(fch, TYPE_SCSI_FCP, F_CTL_FIRST_SEQ | F_CTL_SEQ_INITIATIVE);
  447. FILL_FCHDR_SEQ_DF_SEQ(fch, 0, 0, 0);
  448. FILL_FCHDR_OXRX(fch, 0xffff, 0xffff);
  449. fch->param = 0;
  450. request->shdr.flags = port->flags;
  451. request->shdr.class = fc->posmap ? 3 : 2;
  452. break;
  453. case PROTO_OFFLINE:
  454. memset (request, 0, sizeof(*request));
  455. request->shdr.token = TOKEN(PROTO_OFFLINE, port->mask, fcmd->token);
  456. request->type = SOCAL_CQTYPE_OFFLINE;
  457. FILL_FCHDR_RCTL_DID(fch, R_CTL_COMMAND, fcmd->did);
  458. FILL_FCHDR_SID(fch, fc->sid);
  459. FILL_FCHDR_TYPE_FCTL(fch, TYPE_SCSI_FCP, F_CTL_FIRST_SEQ | F_CTL_SEQ_INITIATIVE);
  460. FILL_FCHDR_SEQ_DF_SEQ(fch, 0, 0, 0);
  461. FILL_FCHDR_OXRX(fch, 0xffff, 0xffff);
  462. request->shdr.flags = port->flags;
  463. break;
  464. case PROTO_REPORT_AL_MAP:
  465. memset (request, 0, sizeof(*request));
  466. request->shdr.token = TOKEN(PROTO_REPORT_AL_MAP, port->mask, fcmd->token);
  467. request->type = SOCAL_CQTYPE_REPORT_MAP;
  468. request->shdr.flags = port->flags;
  469. request->shdr.segcnt = 1;
  470. request->shdr.bytecnt = sizeof(fc_al_posmap);
  471. request->data[0].base = fcmd->cmd;
  472. request->data[0].count = sizeof(fc_al_posmap);
  473. break;
  474. default:
  475. request->shdr.token = TOKEN(fcmd->proto, port->mask, fcmd->token);
  476. request->shdr.class = fc->posmap ? 3 : 2;
  477. request->shdr.flags = port->flags;
  478. memcpy (fch, &fcmd->fch, sizeof(fc_hdr));
  479. request->data[0].count = fcmd->cmdlen;
  480. request->data[1].count = fcmd->rsplen;
  481. request->type = fcmd->class;
  482. switch (fcmd->class) {
  483. case FC_CLASS_OUTBOUND:
  484. request->data[0].base = fcmd->cmd;
  485. request->data[0].count = fcmd->cmdlen;
  486. request->type = SOCAL_CQTYPE_OUTBOUND;
  487. request->shdr.bytecnt = fcmd->cmdlen;
  488. request->shdr.segcnt = 1;
  489. break;
  490. case FC_CLASS_INBOUND:
  491. request->data[0].base = fcmd->rsp;
  492. request->data[0].count = fcmd->rsplen;
  493. request->type = SOCAL_CQTYPE_INBOUND;
  494. request->shdr.bytecnt = 0;
  495. request->shdr.segcnt = 1;
  496. break;
  497. case FC_CLASS_SIMPLE:
  498. request->data[0].base = fcmd->cmd;
  499. request->data[1].base = fcmd->rsp;
  500. request->data[0].count = fcmd->cmdlen;
  501. request->data[1].count = fcmd->rsplen;
  502. request->type = SOCAL_CQTYPE_SIMPLE;
  503. request->shdr.bytecnt = fcmd->cmdlen;
  504. request->shdr.segcnt = 2;
  505. break;
  506. case FC_CLASS_IO_READ:
  507. case FC_CLASS_IO_WRITE:
  508. request->data[0].base = fcmd->cmd;
  509. request->data[1].base = fcmd->rsp;
  510. request->data[0].count = fcmd->cmdlen;
  511. request->data[1].count = fcmd->rsplen;
  512. request->type = (fcmd->class == FC_CLASS_IO_READ) ? SOCAL_CQTYPE_IO_READ : SOCAL_CQTYPE_IO_WRITE;
  513. if (fcmd->data) {
  514. request->data[2].base = fcmd->data;
  515. request->data[2].count = fcmd->datalen;
  516. request->shdr.bytecnt = fcmd->datalen;
  517. request->shdr.segcnt = 3;
  518. } else {
  519. request->shdr.bytecnt = 0;
  520. request->shdr.segcnt = 2;
  521. }
  522. break;
  523. }
  524. break;
  525. }
  526. request->count = 1;
  527. request->flags = 0;
  528. request->seqno = sw_cq->seqno;
  529. SOD(("queueing token %08x\n", request->shdr.token))
  530. /* And now tell the SOCAL about it */
  531. if (++sw_cq->in > sw_cq->last) {
  532. sw_cq->in = 0;
  533. sw_cq->seqno++;
  534. }
  535. SOD(("Putting %08x into cmd\n", SOCAL_CMD_RSP_QALL | (sw_cq->in << 24) | (SOCAL_CMD_REQ_Q0 << qno)))
  536. sbus_writel(SOCAL_CMD_RSP_QALL | (sw_cq->in << 24) | (SOCAL_CMD_REQ_Q0 << qno),
  537. s->regs + CMD);
  538. /* Read so that command is completed */
  539. sbus_readl(s->regs + CMD);
  540. return 0;
  541. }
  542. static inline void socal_download_fw(struct socal *s)
  543. {
  544. #ifdef HAVE_SOCAL_UCODE
  545. SOD(("Loading %ld bytes from %p to %p\n", sizeof(socal_ucode), socal_ucode, s->xram))
  546. socal_copy_to_xram(s->xram, socal_ucode, sizeof(socal_ucode));
  547. SOD(("Clearing the rest of memory\n"))
  548. socal_bzero (s->xram + sizeof(socal_ucode), 65536 - sizeof(socal_ucode));
  549. SOD(("Done\n"))
  550. #endif
  551. }
  552. /* Check for what the best SBUS burst we can use happens
  553. * to be on this machine.
  554. */
  555. static inline void socal_init_bursts(struct socal *s, struct sbus_dev *sdev)
  556. {
  557. int bsizes, bsizes_more;
  558. u32 cfg;
  559. bsizes = (prom_getintdefault(sdev->prom_node,"burst-sizes",0xff) & 0xff);
  560. bsizes_more = (prom_getintdefault(sdev->bus->prom_node, "burst-sizes", 0xff) & 0xff);
  561. bsizes &= bsizes_more;
  562. #ifdef USE_64BIT_MODE
  563. #ifdef __sparc_v9__
  564. mmu_set_sbus64(sdev, bsizes >> 16);
  565. #endif
  566. #endif
  567. if ((bsizes & 0x7f) == 0x7f)
  568. cfg = SOCAL_CFG_BURST_64;
  569. else if ((bsizes & 0x3f) == 0x3f)
  570. cfg = SOCAL_CFG_BURST_32;
  571. else if ((bsizes & 0x1f) == 0x1f)
  572. cfg = SOCAL_CFG_BURST_16;
  573. else
  574. cfg = SOCAL_CFG_BURST_4;
  575. #ifdef USE_64BIT_MODE
  576. #ifdef __sparc_v9__
  577. /* What is BURST_128? -jj */
  578. if ((bsizes & 0x780000) == 0x780000)
  579. cfg |= (SOCAL_CFG_BURST_64 << 8) | SOCAL_CFG_SBUS_ENHANCED;
  580. else if ((bsizes & 0x380000) == 0x380000)
  581. cfg |= (SOCAL_CFG_BURST_32 << 8) | SOCAL_CFG_SBUS_ENHANCED;
  582. else if ((bsizes & 0x180000) == 0x180000)
  583. cfg |= (SOCAL_CFG_BURST_16 << 8) | SOCAL_CFG_SBUS_ENHANCED;
  584. else
  585. cfg |= (SOCAL_CFG_BURST_8 << 8) | SOCAL_CFG_SBUS_ENHANCED;
  586. #endif
  587. #endif
  588. s->cfg = cfg;
  589. }
  590. static inline void socal_init(struct sbus_dev *sdev, int no)
  591. {
  592. unsigned char tmp[60];
  593. int propl;
  594. struct socal *s;
  595. static unsigned version_printed = 0;
  596. socal_hw_cq cq[8];
  597. int size, i;
  598. int irq, node;
  599. s = kzalloc (sizeof (struct socal), GFP_KERNEL);
  600. if (!s) return;
  601. spin_lock_init(&s->lock);
  602. s->socal_no = no;
  603. SOD(("socals %08lx socal_intr %08lx socal_hw_enque %08lx\n",
  604. (long)socals, (long)socal_intr, (long)socal_hw_enque))
  605. if (version_printed++ == 0)
  606. printk (version);
  607. s->port[0].fc.module = THIS_MODULE;
  608. s->port[1].fc.module = THIS_MODULE;
  609. s->next = socals;
  610. socals = s;
  611. s->port[0].fc.dev = sdev;
  612. s->port[1].fc.dev = sdev;
  613. s->port[0].s = s;
  614. s->port[1].s = s;
  615. s->port[0].fc.next = &s->port[1].fc;
  616. /* World Wide Name of SOCAL */
  617. propl = prom_getproperty (sdev->prom_node, "wwn", tmp, sizeof(tmp));
  618. if (propl != sizeof (fc_wwn)) {
  619. s->wwn.naaid = NAAID_IEEE_REG;
  620. s->wwn.nportid = 0x123;
  621. s->wwn.hi = 0x1234;
  622. s->wwn.lo = 0x12345678;
  623. } else
  624. memcpy (&s->wwn, tmp, sizeof (fc_wwn));
  625. memcpy (&s->port[0].fc.wwn_nport, &s->wwn, sizeof (fc_wwn));
  626. s->port[0].fc.wwn_nport.lo++;
  627. memcpy (&s->port[1].fc.wwn_nport, &s->wwn, sizeof (fc_wwn));
  628. s->port[1].fc.wwn_nport.lo+=2;
  629. node = prom_getchild (sdev->prom_node);
  630. while (node && (node = prom_searchsiblings (node, "sf"))) {
  631. int port;
  632. port = prom_getintdefault(node, "port#", -1);
  633. switch (port) {
  634. case 0:
  635. case 1:
  636. if (prom_getproplen(node, "port-wwn") == sizeof (fc_wwn))
  637. prom_getproperty (node, "port-wwn",
  638. (char *)&s->port[port].fc.wwn_nport,
  639. sizeof (fc_wwn));
  640. break;
  641. default:
  642. break;
  643. };
  644. node = prom_getsibling(node);
  645. }
  646. memcpy (&s->port[0].fc.wwn_node, &s->wwn, sizeof (fc_wwn));
  647. memcpy (&s->port[1].fc.wwn_node, &s->wwn, sizeof (fc_wwn));
  648. SOD(("Got wwns %08x%08x ports %08x%08x and %08x%08x\n",
  649. *(u32 *)&s->port[0].fc.wwn_node, s->port[0].fc.wwn_node.lo,
  650. *(u32 *)&s->port[0].fc.wwn_nport, s->port[0].fc.wwn_nport.lo,
  651. *(u32 *)&s->port[1].fc.wwn_nport, s->port[1].fc.wwn_nport.lo))
  652. s->port[0].fc.sid = 1;
  653. s->port[1].fc.sid = 17;
  654. s->port[0].fc.did = 2;
  655. s->port[1].fc.did = 18;
  656. s->port[0].fc.reset = socal_reset;
  657. s->port[1].fc.reset = socal_reset;
  658. if (sdev->num_registers == 1) {
  659. s->eeprom = sbus_ioremap(&sdev->resource[0], 0,
  660. sdev->reg_addrs[0].reg_size, "socal xram");
  661. if (sdev->reg_addrs[0].reg_size > 0x20000)
  662. s->xram = s->eeprom + 0x10000UL;
  663. else
  664. s->xram = s->eeprom;
  665. s->regs = (s->xram + 0x10000UL);
  666. } else {
  667. /* E.g. starfire presents 3 registers for SOCAL */
  668. s->xram = sbus_ioremap(&sdev->resource[1], 0,
  669. sdev->reg_addrs[1].reg_size, "socal xram");
  670. s->regs = sbus_ioremap(&sdev->resource[2], 0,
  671. sdev->reg_addrs[2].reg_size, "socal regs");
  672. }
  673. socal_init_bursts(s, sdev);
  674. SOD(("Disabling SOCAL\n"))
  675. socal_disable (s);
  676. irq = sdev->irqs[0];
  677. if (request_irq (irq, socal_intr, SA_SHIRQ, "SOCAL", (void *)s)) {
  678. socal_printk ("Cannot order irq %d to go\n", irq);
  679. socals = s->next;
  680. return;
  681. }
  682. SOD(("SOCAL uses IRQ %s\n", __irq_itoa(irq)))
  683. s->port[0].fc.irq = irq;
  684. s->port[1].fc.irq = irq;
  685. sprintf (s->port[0].fc.name, "socal%d port A", no);
  686. sprintf (s->port[1].fc.name, "socal%d port B", no);
  687. s->port[0].flags = SOCAL_FC_HDR | SOCAL_PORT_A;
  688. s->port[1].flags = SOCAL_FC_HDR | SOCAL_PORT_B;
  689. s->port[1].mask = (1 << 11);
  690. s->port[0].fc.hw_enque = socal_hw_enque;
  691. s->port[1].fc.hw_enque = socal_hw_enque;
  692. socal_download_fw (s);
  693. SOD(("Downloaded firmware\n"))
  694. /* Now setup xram circular queues */
  695. memset (cq, 0, sizeof(cq));
  696. size = (SOCAL_CQ_REQ0_SIZE + SOCAL_CQ_REQ1_SIZE +
  697. SOCAL_CQ_RSP0_SIZE + SOCAL_CQ_RSP1_SIZE +
  698. SOCAL_CQ_RSP2_SIZE) * sizeof(socal_req);
  699. s->req_cpu = sbus_alloc_consistent(sdev, size, &s->req_dvma);
  700. s->req[0].pool = s->req_cpu;
  701. cq[0].address = s->req_dvma;
  702. s->req[1].pool = s->req[0].pool + SOCAL_CQ_REQ0_SIZE;
  703. s->rsp[0].pool = s->req[1].pool + SOCAL_CQ_REQ1_SIZE;
  704. s->rsp[1].pool = s->rsp[0].pool + SOCAL_CQ_RSP0_SIZE;
  705. s->rsp[2].pool = s->rsp[1].pool + SOCAL_CQ_RSP1_SIZE;
  706. s->req[0].hw_cq = (socal_hw_cq __iomem *)(s->xram + SOCAL_CQ_REQ_OFFSET);
  707. s->req[1].hw_cq = (socal_hw_cq __iomem *)(s->xram + SOCAL_CQ_REQ_OFFSET + sizeof(socal_hw_cq));
  708. s->rsp[0].hw_cq = (socal_hw_cq __iomem *)(s->xram + SOCAL_CQ_RSP_OFFSET);
  709. s->rsp[1].hw_cq = (socal_hw_cq __iomem *)(s->xram + SOCAL_CQ_RSP_OFFSET + sizeof(socal_hw_cq));
  710. s->rsp[2].hw_cq = (socal_hw_cq __iomem *)(s->xram + SOCAL_CQ_RSP_OFFSET + 2 * sizeof(socal_hw_cq));
  711. cq[1].address = cq[0].address + (SOCAL_CQ_REQ0_SIZE * sizeof(socal_req));
  712. cq[4].address = cq[1].address + (SOCAL_CQ_REQ1_SIZE * sizeof(socal_req));
  713. cq[5].address = cq[4].address + (SOCAL_CQ_RSP0_SIZE * sizeof(socal_req));
  714. cq[6].address = cq[5].address + (SOCAL_CQ_RSP1_SIZE * sizeof(socal_req));
  715. cq[0].last = SOCAL_CQ_REQ0_SIZE - 1;
  716. cq[1].last = SOCAL_CQ_REQ1_SIZE - 1;
  717. cq[4].last = SOCAL_CQ_RSP0_SIZE - 1;
  718. cq[5].last = SOCAL_CQ_RSP1_SIZE - 1;
  719. cq[6].last = SOCAL_CQ_RSP2_SIZE - 1;
  720. for (i = 0; i < 8; i++)
  721. cq[i].seqno = 1;
  722. s->req[0].last = SOCAL_CQ_REQ0_SIZE - 1;
  723. s->req[1].last = SOCAL_CQ_REQ1_SIZE - 1;
  724. s->rsp[0].last = SOCAL_CQ_RSP0_SIZE - 1;
  725. s->rsp[1].last = SOCAL_CQ_RSP1_SIZE - 1;
  726. s->rsp[2].last = SOCAL_CQ_RSP2_SIZE - 1;
  727. s->req[0].seqno = 1;
  728. s->req[1].seqno = 1;
  729. s->rsp[0].seqno = 1;
  730. s->rsp[1].seqno = 1;
  731. s->rsp[2].seqno = 1;
  732. socal_copy_to_xram(s->xram + SOCAL_CQ_REQ_OFFSET, cq, sizeof(cq));
  733. SOD(("Setting up params\n"))
  734. /* Make our sw copy of SOCAL service parameters */
  735. socal_copy_from_xram(s->serv_params, s->xram + 0x280, sizeof (s->serv_params));
  736. s->port[0].fc.common_svc = (common_svc_parm *)s->serv_params;
  737. s->port[0].fc.class_svcs = (svc_parm *)(s->serv_params + 0x20);
  738. s->port[1].fc.common_svc = (common_svc_parm *)&s->serv_params;
  739. s->port[1].fc.class_svcs = (svc_parm *)(s->serv_params + 0x20);
  740. socal_enable (s);
  741. SOD(("Enabled SOCAL\n"))
  742. }
  743. static int __init socal_probe(void)
  744. {
  745. struct sbus_bus *sbus;
  746. struct sbus_dev *sdev = NULL;
  747. struct socal *s;
  748. int cards = 0;
  749. for_each_sbus(sbus) {
  750. for_each_sbusdev(sdev, sbus) {
  751. if(!strcmp(sdev->prom_name, "SUNW,socal")) {
  752. socal_init(sdev, cards);
  753. cards++;
  754. }
  755. }
  756. }
  757. if (!cards)
  758. return -EIO;
  759. for_each_socal(s)
  760. if (s->next)
  761. s->port[1].fc.next = &s->next->port[0].fc;
  762. fcp_init (&socals->port[0].fc);
  763. return 0;
  764. }
  765. static void __exit socal_cleanup(void)
  766. {
  767. struct socal *s;
  768. int irq;
  769. struct sbus_dev *sdev;
  770. for_each_socal(s) {
  771. irq = s->port[0].fc.irq;
  772. free_irq (irq, s);
  773. fcp_release(&(s->port[0].fc), 2);
  774. sdev = s->port[0].fc.dev;
  775. if (sdev->num_registers == 1) {
  776. sbus_iounmap(s->eeprom, sdev->reg_addrs[0].reg_size);
  777. } else {
  778. sbus_iounmap(s->xram, sdev->reg_addrs[1].reg_size);
  779. sbus_iounmap(s->regs, sdev->reg_addrs[2].reg_size);
  780. }
  781. sbus_free_consistent(sdev,
  782. (SOCAL_CQ_REQ0_SIZE + SOCAL_CQ_REQ1_SIZE +
  783. SOCAL_CQ_RSP0_SIZE + SOCAL_CQ_RSP1_SIZE +
  784. SOCAL_CQ_RSP2_SIZE) * sizeof(socal_req),
  785. s->req_cpu, s->req_dvma);
  786. }
  787. }
  788. module_init(socal_probe);
  789. module_exit(socal_cleanup);
  790. MODULE_LICENSE("GPL");