blob: a27dd66b6613689cc14d3f19c1b3597bf79e11dd [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * Device driver for the SYMBIOS/LSILOGIC 53C8XX and 53C1010 family
3 * of PCI-SCSI IO processors.
4 *
5 * Copyright (C) 1999-2001 Gerard Roudier <groudier@free.fr>
6 * Copyright (c) 2003-2005 Matthew Wilcox <matthew@wil.cx>
7 *
8 * This driver is derived from the Linux sym53c8xx driver.
9 * Copyright (C) 1998-2000 Gerard Roudier
10 *
11 * The sym53c8xx driver is derived from the ncr53c8xx driver that had been
12 * a port of the FreeBSD ncr driver to Linux-1.2.13.
13 *
14 * The original ncr driver has been written for 386bsd and FreeBSD by
15 * Wolfgang Stanglmeier <wolf@cologne.de>
16 * Stefan Esser <se@mi.Uni-Koeln.de>
17 * Copyright (C) 1994 Wolfgang Stanglmeier
18 *
19 * Other major contributions:
20 *
21 * NVRAM detection and reading.
22 * Copyright (C) 1997 Richard Waltham <dormouse@farsrobt.demon.co.uk>
23 *
24 *-----------------------------------------------------------------------------
25 *
26 * This program is free software; you can redistribute it and/or modify
27 * it under the terms of the GNU General Public License as published by
28 * the Free Software Foundation; either version 2 of the License, or
29 * (at your option) any later version.
30 *
31 * This program is distributed in the hope that it will be useful,
32 * but WITHOUT ANY WARRANTY; without even the implied warranty of
33 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
34 * GNU General Public License for more details.
35 *
36 * You should have received a copy of the GNU General Public License
37 * along with this program; if not, write to the Free Software
38 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
39 */
40#include <linux/ctype.h>
41#include <linux/init.h>
42#include <linux/interrupt.h>
43#include <linux/module.h>
44#include <linux/moduleparam.h>
45#include <linux/spinlock.h>
46#include <scsi/scsi.h>
47#include <scsi/scsi_tcq.h>
48#include <scsi/scsi_device.h>
49#include <scsi/scsi_transport.h>
50
51#include "sym_glue.h"
52#include "sym_nvram.h"
53
54#define NAME53C "sym53c"
55#define NAME53C8XX "sym53c8xx"
56
57/* SPARC just has to be different ... */
58#ifdef __sparc__
59#define IRQ_FMT "%s"
60#define IRQ_PRM(x) __irq_itoa(x)
61#else
62#define IRQ_FMT "%d"
63#define IRQ_PRM(x) (x)
64#endif
65
66struct sym_driver_setup sym_driver_setup = SYM_LINUX_DRIVER_SETUP;
67unsigned int sym_debug_flags = 0;
68
69static char *excl_string;
70static char *safe_string;
71module_param_named(cmd_per_lun, sym_driver_setup.max_tag, ushort, 0);
72module_param_string(tag_ctrl, sym_driver_setup.tag_ctrl, 100, 0);
73module_param_named(burst, sym_driver_setup.burst_order, byte, 0);
74module_param_named(led, sym_driver_setup.scsi_led, byte, 0);
75module_param_named(diff, sym_driver_setup.scsi_diff, byte, 0);
76module_param_named(irqm, sym_driver_setup.irq_mode, byte, 0);
77module_param_named(buschk, sym_driver_setup.scsi_bus_check, byte, 0);
78module_param_named(hostid, sym_driver_setup.host_id, byte, 0);
79module_param_named(verb, sym_driver_setup.verbose, byte, 0);
80module_param_named(debug, sym_debug_flags, uint, 0);
81module_param_named(settle, sym_driver_setup.settle_delay, byte, 0);
82module_param_named(nvram, sym_driver_setup.use_nvram, byte, 0);
83module_param_named(excl, excl_string, charp, 0);
84module_param_named(safe, safe_string, charp, 0);
85
86MODULE_PARM_DESC(cmd_per_lun, "The maximum number of tags to use by default");
87MODULE_PARM_DESC(tag_ctrl, "More detailed control over tags per LUN");
88MODULE_PARM_DESC(burst, "Maximum burst. 0 to disable, 255 to read from registers");
89MODULE_PARM_DESC(led, "Set to 1 to enable LED support");
90MODULE_PARM_DESC(diff, "0 for no differential mode, 1 for BIOS, 2 for always, 3 for not GPIO3");
91MODULE_PARM_DESC(irqm, "0 for open drain, 1 to leave alone, 2 for totem pole");
92MODULE_PARM_DESC(buschk, "0 to not check, 1 for detach on error, 2 for warn on error");
93MODULE_PARM_DESC(hostid, "The SCSI ID to use for the host adapters");
94MODULE_PARM_DESC(verb, "0 for minimal verbosity, 1 for normal, 2 for excessive");
95MODULE_PARM_DESC(debug, "Set bits to enable debugging");
96MODULE_PARM_DESC(settle, "Settle delay in seconds. Default 3");
97MODULE_PARM_DESC(nvram, "Option currently not used");
98MODULE_PARM_DESC(excl, "List ioport addresses here to prevent controllers from being attached");
99MODULE_PARM_DESC(safe, "Set other settings to a \"safe mode\"");
100
101MODULE_LICENSE("GPL");
102MODULE_VERSION(SYM_VERSION);
103MODULE_AUTHOR("Matthew Wilcox <matthew@wil.cx>");
104MODULE_DESCRIPTION("NCR, Symbios and LSI 8xx and 1010 PCI SCSI adapters");
105
106static void sym2_setup_params(void)
107{
108 char *p = excl_string;
109 int xi = 0;
110
111 while (p && (xi < 8)) {
112 char *next_p;
113 int val = (int) simple_strtoul(p, &next_p, 0);
114 sym_driver_setup.excludes[xi++] = val;
115 p = next_p;
116 }
117
118 if (safe_string) {
119 if (*safe_string == 'y') {
120 sym_driver_setup.max_tag = 0;
121 sym_driver_setup.burst_order = 0;
122 sym_driver_setup.scsi_led = 0;
123 sym_driver_setup.scsi_diff = 1;
124 sym_driver_setup.irq_mode = 0;
125 sym_driver_setup.scsi_bus_check = 2;
126 sym_driver_setup.host_id = 7;
127 sym_driver_setup.verbose = 2;
128 sym_driver_setup.settle_delay = 10;
129 sym_driver_setup.use_nvram = 1;
130 } else if (*safe_string != 'n') {
131 printk(KERN_WARNING NAME53C8XX "Ignoring parameter %s"
132 " passed to safe option", safe_string);
133 }
134 }
135}
136
Linus Torvalds1da177e2005-04-16 15:20:36 -0700137static struct scsi_transport_template *sym2_transport_template = NULL;
138
139/*
140 * Used by the eh thread to wait for command completion.
141 * It is allocated on the eh thread stack.
142 */
143struct sym_eh_wait {
144 struct completion done;
145 struct timer_list timer;
146 void (*old_done)(struct scsi_cmnd *);
147 int to_do;
148 int timed_out;
149};
150
151/*
152 * Driver private area in the SCSI command structure.
153 */
154struct sym_ucmd { /* Override the SCSI pointer structure */
155 dma_addr_t data_mapping;
156 u_char data_mapped;
157 struct sym_eh_wait *eh_wait;
158};
159
160#define SYM_UCMD_PTR(cmd) ((struct sym_ucmd *)(&(cmd)->SCp))
161#define SYM_SOFTC_PTR(cmd) sym_get_hcb(cmd->device->host)
162
163static void __unmap_scsi_data(struct pci_dev *pdev, struct scsi_cmnd *cmd)
164{
165 int dma_dir = cmd->sc_data_direction;
166
167 switch(SYM_UCMD_PTR(cmd)->data_mapped) {
168 case 2:
169 pci_unmap_sg(pdev, cmd->buffer, cmd->use_sg, dma_dir);
170 break;
171 case 1:
172 pci_unmap_single(pdev, SYM_UCMD_PTR(cmd)->data_mapping,
173 cmd->request_bufflen, dma_dir);
174 break;
175 }
176 SYM_UCMD_PTR(cmd)->data_mapped = 0;
177}
178
179static dma_addr_t __map_scsi_single_data(struct pci_dev *pdev, struct scsi_cmnd *cmd)
180{
181 dma_addr_t mapping;
182 int dma_dir = cmd->sc_data_direction;
183
184 mapping = pci_map_single(pdev, cmd->request_buffer,
185 cmd->request_bufflen, dma_dir);
186 if (mapping) {
187 SYM_UCMD_PTR(cmd)->data_mapped = 1;
188 SYM_UCMD_PTR(cmd)->data_mapping = mapping;
189 }
190
191 return mapping;
192}
193
194static int __map_scsi_sg_data(struct pci_dev *pdev, struct scsi_cmnd *cmd)
195{
196 int use_sg;
197 int dma_dir = cmd->sc_data_direction;
198
199 use_sg = pci_map_sg(pdev, cmd->buffer, cmd->use_sg, dma_dir);
200 if (use_sg > 0) {
201 SYM_UCMD_PTR(cmd)->data_mapped = 2;
202 SYM_UCMD_PTR(cmd)->data_mapping = use_sg;
203 }
204
205 return use_sg;
206}
207
208#define unmap_scsi_data(np, cmd) \
209 __unmap_scsi_data(np->s.device, cmd)
210#define map_scsi_single_data(np, cmd) \
211 __map_scsi_single_data(np->s.device, cmd)
212#define map_scsi_sg_data(np, cmd) \
213 __map_scsi_sg_data(np->s.device, cmd)
214/*
215 * Complete a pending CAM CCB.
216 */
217void sym_xpt_done(struct sym_hcb *np, struct scsi_cmnd *cmd)
218{
219 unmap_scsi_data(np, cmd);
220 cmd->scsi_done(cmd);
221}
222
223static void sym_xpt_done2(struct sym_hcb *np, struct scsi_cmnd *cmd, int cam_status)
224{
225 sym_set_cam_status(cmd, cam_status);
226 sym_xpt_done(np, cmd);
227}
228
229
230/*
231 * Tell the SCSI layer about a BUS RESET.
232 */
233void sym_xpt_async_bus_reset(struct sym_hcb *np)
234{
235 printf_notice("%s: SCSI BUS has been reset.\n", sym_name(np));
236 np->s.settle_time = jiffies + sym_driver_setup.settle_delay * HZ;
237 np->s.settle_time_valid = 1;
238 if (sym_verbose >= 2)
239 printf_info("%s: command processing suspended for %d seconds\n",
240 sym_name(np), sym_driver_setup.settle_delay);
241}
242
243/*
244 * Tell the SCSI layer about a BUS DEVICE RESET message sent.
245 */
246void sym_xpt_async_sent_bdr(struct sym_hcb *np, int target)
247{
248 printf_notice("%s: TARGET %d has been reset.\n", sym_name(np), target);
249}
250
251/*
252 * Choose the more appropriate CAM status if
253 * the IO encountered an extended error.
254 */
255static int sym_xerr_cam_status(int cam_status, int x_status)
256{
257 if (x_status) {
258 if (x_status & XE_PARITY_ERR)
259 cam_status = DID_PARITY;
260 else if (x_status &(XE_EXTRA_DATA|XE_SODL_UNRUN|XE_SWIDE_OVRUN))
261 cam_status = DID_ERROR;
262 else if (x_status & XE_BAD_PHASE)
263 cam_status = DID_ERROR;
264 else
265 cam_status = DID_ERROR;
266 }
267 return cam_status;
268}
269
270/*
271 * Build CAM result for a failed or auto-sensed IO.
272 */
273void sym_set_cam_result_error(struct sym_hcb *np, struct sym_ccb *cp, int resid)
274{
275 struct scsi_cmnd *cmd = cp->cmd;
276 u_int cam_status, scsi_status, drv_status;
277
278 drv_status = 0;
279 cam_status = DID_OK;
280 scsi_status = cp->ssss_status;
281
282 if (cp->host_flags & HF_SENSE) {
283 scsi_status = cp->sv_scsi_status;
284 resid = cp->sv_resid;
285 if (sym_verbose && cp->sv_xerr_status)
286 sym_print_xerr(cmd, cp->sv_xerr_status);
287 if (cp->host_status == HS_COMPLETE &&
288 cp->ssss_status == S_GOOD &&
289 cp->xerr_status == 0) {
290 cam_status = sym_xerr_cam_status(DID_OK,
291 cp->sv_xerr_status);
292 drv_status = DRIVER_SENSE;
293 /*
294 * Bounce back the sense data to user.
295 */
296 memset(&cmd->sense_buffer, 0, sizeof(cmd->sense_buffer));
297 memcpy(cmd->sense_buffer, cp->sns_bbuf,
298 min(sizeof(cmd->sense_buffer),
299 (size_t)SYM_SNS_BBUF_LEN));
300#if 0
301 /*
302 * If the device reports a UNIT ATTENTION condition
303 * due to a RESET condition, we should consider all
304 * disconnect CCBs for this unit as aborted.
305 */
306 if (1) {
307 u_char *p;
308 p = (u_char *) cmd->sense_data;
309 if (p[0]==0x70 && p[2]==0x6 && p[12]==0x29)
310 sym_clear_tasks(np, DID_ABORT,
311 cp->target,cp->lun, -1);
312 }
313#endif
314 } else {
315 /*
316 * Error return from our internal request sense. This
317 * is bad: we must clear the contingent allegiance
318 * condition otherwise the device will always return
319 * BUSY. Use a big stick.
320 */
321 sym_reset_scsi_target(np, cmd->device->id);
322 cam_status = DID_ERROR;
323 }
324 } else if (cp->host_status == HS_COMPLETE) /* Bad SCSI status */
325 cam_status = DID_OK;
326 else if (cp->host_status == HS_SEL_TIMEOUT) /* Selection timeout */
327 cam_status = DID_NO_CONNECT;
328 else if (cp->host_status == HS_UNEXPECTED) /* Unexpected BUS FREE*/
329 cam_status = DID_ERROR;
330 else { /* Extended error */
331 if (sym_verbose) {
332 sym_print_addr(cmd, "COMMAND FAILED (%x %x %x).\n",
333 cp->host_status, cp->ssss_status,
334 cp->xerr_status);
335 }
336 /*
337 * Set the most appropriate value for CAM status.
338 */
339 cam_status = sym_xerr_cam_status(DID_ERROR, cp->xerr_status);
340 }
341 cmd->resid = resid;
342 cmd->result = (drv_status << 24) + (cam_status << 16) + scsi_status;
343}
344
345
346/*
347 * Build the scatter/gather array for an I/O.
348 */
349
350static int sym_scatter_no_sglist(struct sym_hcb *np, struct sym_ccb *cp, struct scsi_cmnd *cmd)
351{
352 struct sym_tblmove *data = &cp->phys.data[SYM_CONF_MAX_SG-1];
353 int segment;
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100354 unsigned int len = cmd->request_bufflen;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700355
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100356 if (len) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700357 dma_addr_t baddr = map_scsi_single_data(np, cmd);
358 if (baddr) {
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100359 if (len & 1) {
360 struct sym_tcb *tp = &np->target[cp->target];
361 if (tp->head.wval & EWS) {
362 len++;
363 cp->odd_byte_adjustment++;
364 }
365 }
366 cp->data_len = len;
367 sym_build_sge(np, data, baddr, len);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700368 segment = 1;
369 } else {
370 segment = -2;
371 }
372 } else {
373 segment = 0;
374 }
375
376 return segment;
377}
378
379static int sym_scatter(struct sym_hcb *np, struct sym_ccb *cp, struct scsi_cmnd *cmd)
380{
381 int segment;
382 int use_sg = (int) cmd->use_sg;
383
384 cp->data_len = 0;
385
386 if (!use_sg)
387 segment = sym_scatter_no_sglist(np, cp, cmd);
388 else if ((use_sg = map_scsi_sg_data(np, cmd)) > 0) {
389 struct scatterlist *scatter = (struct scatterlist *)cmd->buffer;
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100390 struct sym_tcb *tp = &np->target[cp->target];
Linus Torvalds1da177e2005-04-16 15:20:36 -0700391 struct sym_tblmove *data;
392
393 if (use_sg > SYM_CONF_MAX_SG) {
394 unmap_scsi_data(np, cmd);
395 return -1;
396 }
397
398 data = &cp->phys.data[SYM_CONF_MAX_SG - use_sg];
399
400 for (segment = 0; segment < use_sg; segment++) {
401 dma_addr_t baddr = sg_dma_address(&scatter[segment]);
402 unsigned int len = sg_dma_len(&scatter[segment]);
403
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100404 if ((len & 1) && (tp->head.wval & EWS)) {
405 len++;
406 cp->odd_byte_adjustment++;
407 }
408
Linus Torvalds1da177e2005-04-16 15:20:36 -0700409 sym_build_sge(np, &data[segment], baddr, len);
410 cp->data_len += len;
411 }
412 } else {
413 segment = -2;
414 }
415
416 return segment;
417}
418
419/*
420 * Queue a SCSI command.
421 */
422static int sym_queue_command(struct sym_hcb *np, struct scsi_cmnd *cmd)
423{
424 struct scsi_device *sdev = cmd->device;
425 struct sym_tcb *tp;
426 struct sym_lcb *lp;
427 struct sym_ccb *cp;
428 int order;
429
430 /*
431 * Minimal checkings, so that we will not
432 * go outside our tables.
433 */
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100434 if (sdev->id == np->myaddr) {
435 sym_xpt_done2(np, cmd, DID_NO_CONNECT);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700436 return 0;
437 }
438
439 /*
440 * Retrieve the target descriptor.
441 */
442 tp = &np->target[sdev->id];
443
444 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700445 * Select tagged/untagged.
446 */
447 lp = sym_lp(tp, sdev->lun);
448 order = (lp && lp->s.reqtags) ? M_SIMPLE_TAG : 0;
449
450 /*
451 * Queue the SCSI IO.
452 */
453 cp = sym_get_ccb(np, cmd, order);
454 if (!cp)
455 return 1; /* Means resource shortage */
456 sym_queue_scsiio(np, cmd, cp);
457 return 0;
458}
459
460/*
461 * Setup buffers and pointers that address the CDB.
462 */
463static inline int sym_setup_cdb(struct sym_hcb *np, struct scsi_cmnd *cmd, struct sym_ccb *cp)
464{
Linus Torvalds1da177e2005-04-16 15:20:36 -0700465 memcpy(cp->cdb_buf, cmd->cmnd, cmd->cmd_len);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700466
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100467 cp->phys.cmd.addr = CCB_BA(cp, cdb_buf[0]);
468 cp->phys.cmd.size = cpu_to_scr(cmd->cmd_len);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700469
470 return 0;
471}
472
473/*
474 * Setup pointers that address the data and start the I/O.
475 */
476int sym_setup_data_and_start(struct sym_hcb *np, struct scsi_cmnd *cmd, struct sym_ccb *cp)
477{
Matthew Wilcox44f30b0f2005-11-29 23:08:33 -0500478 u32 lastp, goalp;
479 int dir;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700480
481 /*
482 * Build the CDB.
483 */
484 if (sym_setup_cdb(np, cmd, cp))
485 goto out_abort;
486
487 /*
488 * No direction means no data.
489 */
490 dir = cmd->sc_data_direction;
491 if (dir != DMA_NONE) {
492 cp->segments = sym_scatter(np, cp, cmd);
493 if (cp->segments < 0) {
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100494 sym_set_cam_status(cmd, DID_ERROR);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700495 goto out_abort;
496 }
Matthew Wilcox44f30b0f2005-11-29 23:08:33 -0500497
498 /*
499 * No segments means no data.
500 */
501 if (!cp->segments)
502 dir = DMA_NONE;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700503 } else {
504 cp->data_len = 0;
505 cp->segments = 0;
506 }
507
508 /*
Matthew Wilcox44f30b0f2005-11-29 23:08:33 -0500509 * Set the data pointer.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700510 */
Matthew Wilcox44f30b0f2005-11-29 23:08:33 -0500511 switch (dir) {
512 case DMA_BIDIRECTIONAL:
513 printk("%s: got DMA_BIDIRECTIONAL command", sym_name(np));
514 sym_set_cam_status(cmd, DID_ERROR);
515 goto out_abort;
516 case DMA_TO_DEVICE:
517 goalp = SCRIPTA_BA(np, data_out2) + 8;
518 lastp = goalp - 8 - (cp->segments * (2*4));
519 break;
520 case DMA_FROM_DEVICE:
521 cp->host_flags |= HF_DATA_IN;
522 goalp = SCRIPTA_BA(np, data_in2) + 8;
523 lastp = goalp - 8 - (cp->segments * (2*4));
524 break;
525 case DMA_NONE:
526 default:
527 lastp = goalp = SCRIPTB_BA(np, no_data);
528 break;
529 }
530
531 /*
532 * Set all pointers values needed by SCRIPTS.
533 */
534 cp->phys.head.lastp = cpu_to_scr(lastp);
535 cp->phys.head.savep = cpu_to_scr(lastp);
536 cp->startp = cp->phys.head.savep;
537 cp->goalp = cpu_to_scr(goalp);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700538
539 /*
540 * When `#ifed 1', the code below makes the driver
541 * panic on the first attempt to write to a SCSI device.
542 * It is the first test we want to do after a driver
543 * change that does not seem obviously safe. :)
544 */
545#if 0
546 switch (cp->cdb_buf[0]) {
547 case 0x0A: case 0x2A: case 0xAA:
548 panic("XXXXXXXXXXXXX WRITE NOT YET ALLOWED XXXXXXXXXXXXXX\n");
549 break;
550 default:
551 break;
552 }
553#endif
554
555 /*
556 * activate this job.
557 */
Matthew Wilcox3bea15a2006-03-28 11:03:44 -0500558 sym_put_start_queue(np, cp);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700559 return 0;
560
561out_abort:
562 sym_free_ccb(np, cp);
563 sym_xpt_done(np, cmd);
564 return 0;
565}
566
567
568/*
569 * timer daemon.
570 *
571 * Misused to keep the driver running when
572 * interrupts are not configured correctly.
573 */
574static void sym_timer(struct sym_hcb *np)
575{
576 unsigned long thistime = jiffies;
577
578 /*
579 * Restart the timer.
580 */
581 np->s.timer.expires = thistime + SYM_CONF_TIMER_INTERVAL;
582 add_timer(&np->s.timer);
583
584 /*
585 * If we are resetting the ncr, wait for settle_time before
586 * clearing it. Then command processing will be resumed.
587 */
588 if (np->s.settle_time_valid) {
589 if (time_before_eq(np->s.settle_time, thistime)) {
590 if (sym_verbose >= 2 )
591 printk("%s: command processing resumed\n",
592 sym_name(np));
593 np->s.settle_time_valid = 0;
594 }
595 return;
596 }
597
598 /*
599 * Nothing to do for now, but that may come.
600 */
601 if (np->s.lasttime + 4*HZ < thistime) {
602 np->s.lasttime = thistime;
603 }
604
605#ifdef SYM_CONF_PCIQ_MAY_MISS_COMPLETIONS
606 /*
607 * Some way-broken PCI bridges may lead to
608 * completions being lost when the clearing
609 * of the INTFLY flag by the CPU occurs
610 * concurrently with the chip raising this flag.
611 * If this ever happen, lost completions will
612 * be reaped here.
613 */
614 sym_wakeup_done(np);
615#endif
616}
617
618
619/*
620 * PCI BUS error handler.
621 */
622void sym_log_bus_error(struct sym_hcb *np)
623{
624 u_short pci_sts;
625 pci_read_config_word(np->s.device, PCI_STATUS, &pci_sts);
626 if (pci_sts & 0xf900) {
627 pci_write_config_word(np->s.device, PCI_STATUS, pci_sts);
628 printf("%s: PCI STATUS = 0x%04x\n",
629 sym_name(np), pci_sts & 0xf900);
630 }
631}
632
633/*
634 * queuecommand method. Entered with the host adapter lock held and
635 * interrupts disabled.
636 */
637static int sym53c8xx_queue_command(struct scsi_cmnd *cmd,
638 void (*done)(struct scsi_cmnd *))
639{
640 struct sym_hcb *np = SYM_SOFTC_PTR(cmd);
641 struct sym_ucmd *ucp = SYM_UCMD_PTR(cmd);
642 int sts = 0;
643
644 cmd->scsi_done = done;
645 memset(ucp, 0, sizeof(*ucp));
646
647 /*
648 * Shorten our settle_time if needed for
649 * this command not to time out.
650 */
651 if (np->s.settle_time_valid && cmd->timeout_per_command) {
652 unsigned long tlimit = jiffies + cmd->timeout_per_command;
653 tlimit -= SYM_CONF_TIMER_INTERVAL*2;
654 if (time_after(np->s.settle_time, tlimit)) {
655 np->s.settle_time = tlimit;
656 }
657 }
658
659 if (np->s.settle_time_valid)
660 return SCSI_MLQUEUE_HOST_BUSY;
661
662 sts = sym_queue_command(np, cmd);
663 if (sts)
664 return SCSI_MLQUEUE_HOST_BUSY;
665 return 0;
666}
667
668/*
669 * Linux entry point of the interrupt handler.
670 */
671static irqreturn_t sym53c8xx_intr(int irq, void *dev_id, struct pt_regs * regs)
672{
673 unsigned long flags;
674 struct sym_hcb *np = (struct sym_hcb *)dev_id;
675
676 if (DEBUG_FLAGS & DEBUG_TINY) printf_debug ("[");
677
678 spin_lock_irqsave(np->s.host->host_lock, flags);
679 sym_interrupt(np);
680 spin_unlock_irqrestore(np->s.host->host_lock, flags);
681
682 if (DEBUG_FLAGS & DEBUG_TINY) printf_debug ("]\n");
683
684 return IRQ_HANDLED;
685}
686
687/*
688 * Linux entry point of the timer handler
689 */
690static void sym53c8xx_timer(unsigned long npref)
691{
692 struct sym_hcb *np = (struct sym_hcb *)npref;
693 unsigned long flags;
694
695 spin_lock_irqsave(np->s.host->host_lock, flags);
696 sym_timer(np);
697 spin_unlock_irqrestore(np->s.host->host_lock, flags);
698}
699
700
701/*
702 * What the eh thread wants us to perform.
703 */
704#define SYM_EH_ABORT 0
705#define SYM_EH_DEVICE_RESET 1
706#define SYM_EH_BUS_RESET 2
707#define SYM_EH_HOST_RESET 3
708
709/*
710 * What we will do regarding the involved SCSI command.
711 */
712#define SYM_EH_DO_IGNORE 0
Linus Torvalds1da177e2005-04-16 15:20:36 -0700713#define SYM_EH_DO_WAIT 2
714
715/*
716 * Our general completion handler.
717 */
718static void __sym_eh_done(struct scsi_cmnd *cmd, int timed_out)
719{
720 struct sym_eh_wait *ep = SYM_UCMD_PTR(cmd)->eh_wait;
721 if (!ep)
722 return;
723
724 /* Try to avoid a race here (not 100% safe) */
725 if (!timed_out) {
726 ep->timed_out = 0;
727 if (ep->to_do == SYM_EH_DO_WAIT && !del_timer(&ep->timer))
728 return;
729 }
730
731 /* Revert everything */
732 SYM_UCMD_PTR(cmd)->eh_wait = NULL;
733 cmd->scsi_done = ep->old_done;
734
735 /* Wake up the eh thread if it wants to sleep */
736 if (ep->to_do == SYM_EH_DO_WAIT)
737 complete(&ep->done);
738}
739
740/*
741 * scsi_done() alias when error recovery is in progress.
742 */
743static void sym_eh_done(struct scsi_cmnd *cmd) { __sym_eh_done(cmd, 0); }
744
745/*
746 * Some timeout handler to avoid waiting too long.
747 */
748static void sym_eh_timeout(u_long p) { __sym_eh_done((struct scsi_cmnd *)p, 1); }
749
750/*
751 * Generic method for our eh processing.
752 * The 'op' argument tells what we have to do.
753 */
754static int sym_eh_handler(int op, char *opname, struct scsi_cmnd *cmd)
755{
756 struct sym_hcb *np = SYM_SOFTC_PTR(cmd);
757 SYM_QUEHEAD *qp;
758 int to_do = SYM_EH_DO_IGNORE;
759 int sts = -1;
760 struct sym_eh_wait eh, *ep = &eh;
761
762 dev_warn(&cmd->device->sdev_gendev, "%s operation started.\n", opname);
763
Matthew Wilcoxab19d522006-03-28 11:03:44 -0500764 spin_lock_irq(cmd->device->host->host_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700765 /* This one is queued in some place -> to wait for completion */
766 FOR_EACH_QUEUED_ELEMENT(&np->busy_ccbq, qp) {
767 struct sym_ccb *cp = sym_que_entry(qp, struct sym_ccb, link_ccbq);
768 if (cp->cmd == cmd) {
769 to_do = SYM_EH_DO_WAIT;
Matthew Wilcoxab19d522006-03-28 11:03:44 -0500770 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700771 }
772 }
773
Matthew Wilcoxab19d522006-03-28 11:03:44 -0500774 if (to_do == SYM_EH_DO_WAIT) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700775 init_completion(&ep->done);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700776 ep->old_done = cmd->scsi_done;
777 cmd->scsi_done = sym_eh_done;
778 SYM_UCMD_PTR(cmd)->eh_wait = ep;
779 }
780
781 /* Try to proceed the operation we have been asked for */
782 sts = -1;
783 switch(op) {
784 case SYM_EH_ABORT:
785 sts = sym_abort_scsiio(np, cmd, 1);
786 break;
787 case SYM_EH_DEVICE_RESET:
788 sts = sym_reset_scsi_target(np, cmd->device->id);
789 break;
790 case SYM_EH_BUS_RESET:
791 sym_reset_scsi_bus(np, 1);
792 sts = 0;
793 break;
794 case SYM_EH_HOST_RESET:
795 sym_reset_scsi_bus(np, 0);
796 sym_start_up (np, 1);
797 sts = 0;
798 break;
799 default:
800 break;
801 }
802
803 /* On error, restore everything and cross fingers :) */
804 if (sts) {
805 SYM_UCMD_PTR(cmd)->eh_wait = NULL;
806 cmd->scsi_done = ep->old_done;
807 to_do = SYM_EH_DO_IGNORE;
808 }
809
810 ep->to_do = to_do;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700811
812 /* Wait for completion with locks released, as required by kernel */
813 if (to_do == SYM_EH_DO_WAIT) {
814 init_timer(&ep->timer);
815 ep->timer.expires = jiffies + (5*HZ);
816 ep->timer.function = sym_eh_timeout;
817 ep->timer.data = (u_long)cmd;
818 ep->timed_out = 1; /* Be pessimistic for once :) */
819 add_timer(&ep->timer);
820 spin_unlock_irq(np->s.host->host_lock);
821 wait_for_completion(&ep->done);
822 spin_lock_irq(np->s.host->host_lock);
823 if (ep->timed_out)
824 sts = -2;
825 }
Matthew Wilcoxab19d522006-03-28 11:03:44 -0500826 spin_unlock_irq(cmd->device->host->host_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700827 dev_warn(&cmd->device->sdev_gendev, "%s operation %s.\n", opname,
828 sts==0 ? "complete" :sts==-2 ? "timed-out" : "failed");
829 return sts ? SCSI_FAILED : SCSI_SUCCESS;
830}
831
832
833/*
834 * Error handlers called from the eh thread (one thread per HBA).
835 */
836static int sym53c8xx_eh_abort_handler(struct scsi_cmnd *cmd)
837{
Matthew Wilcoxab19d522006-03-28 11:03:44 -0500838 return sym_eh_handler(SYM_EH_ABORT, "ABORT", cmd);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700839}
840
841static int sym53c8xx_eh_device_reset_handler(struct scsi_cmnd *cmd)
842{
Matthew Wilcoxab19d522006-03-28 11:03:44 -0500843 return sym_eh_handler(SYM_EH_DEVICE_RESET, "DEVICE RESET", cmd);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700844}
845
846static int sym53c8xx_eh_bus_reset_handler(struct scsi_cmnd *cmd)
847{
Matthew Wilcoxab19d522006-03-28 11:03:44 -0500848 return sym_eh_handler(SYM_EH_BUS_RESET, "BUS RESET", cmd);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700849}
850
851static int sym53c8xx_eh_host_reset_handler(struct scsi_cmnd *cmd)
852{
Matthew Wilcoxab19d522006-03-28 11:03:44 -0500853 return sym_eh_handler(SYM_EH_HOST_RESET, "HOST RESET", cmd);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700854}
855
856/*
857 * Tune device queuing depth, according to various limits.
858 */
859static void sym_tune_dev_queuing(struct sym_tcb *tp, int lun, u_short reqtags)
860{
861 struct sym_lcb *lp = sym_lp(tp, lun);
862 u_short oldtags;
863
864 if (!lp)
865 return;
866
867 oldtags = lp->s.reqtags;
868
869 if (reqtags > lp->s.scdev_depth)
870 reqtags = lp->s.scdev_depth;
871
Linus Torvalds1da177e2005-04-16 15:20:36 -0700872 lp->s.reqtags = reqtags;
873
874 if (reqtags != oldtags) {
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100875 dev_info(&tp->starget->dev,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700876 "tagged command queuing %s, command queue depth %d.\n",
Matthew Wilcox3bea15a2006-03-28 11:03:44 -0500877 lp->s.reqtags ? "enabled" : "disabled", reqtags);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700878 }
879}
880
881/*
882 * Linux select queue depths function
883 */
884#define DEF_DEPTH (sym_driver_setup.max_tag)
885#define ALL_TARGETS -2
886#define NO_TARGET -1
887#define ALL_LUNS -2
888#define NO_LUN -1
889
890static int device_queue_depth(struct sym_hcb *np, int target, int lun)
891{
892 int c, h, t, u, v;
893 char *p = sym_driver_setup.tag_ctrl;
894 char *ep;
895
896 h = -1;
897 t = NO_TARGET;
898 u = NO_LUN;
899 while ((c = *p++) != 0) {
900 v = simple_strtoul(p, &ep, 0);
901 switch(c) {
902 case '/':
903 ++h;
904 t = ALL_TARGETS;
905 u = ALL_LUNS;
906 break;
907 case 't':
908 if (t != target)
909 t = (target == v) ? v : NO_TARGET;
910 u = ALL_LUNS;
911 break;
912 case 'u':
913 if (u != lun)
914 u = (lun == v) ? v : NO_LUN;
915 break;
916 case 'q':
917 if (h == np->s.unit &&
918 (t == ALL_TARGETS || t == target) &&
919 (u == ALL_LUNS || u == lun))
920 return v;
921 break;
922 case '-':
923 t = ALL_TARGETS;
924 u = ALL_LUNS;
925 break;
926 default:
927 break;
928 }
929 p = ep;
930 }
931 return DEF_DEPTH;
932}
933
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100934static int sym53c8xx_slave_alloc(struct scsi_device *sdev)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700935{
Matthew Wilcox84e203a2005-11-29 23:08:31 -0500936 struct sym_hcb *np = sym_get_hcb(sdev->host);
937 struct sym_tcb *tp = &np->target[sdev->id];
938 struct sym_lcb *lp;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700939
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100940 if (sdev->id >= SYM_CONF_MAX_TARGET || sdev->lun >= SYM_CONF_MAX_LUN)
941 return -ENXIO;
942
Matthew Wilcox66e8d1c2005-11-29 23:08:46 -0500943 tp->starget = sdev->sdev_target;
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100944 /*
945 * Fail the device init if the device is flagged NOSCAN at BOOT in
946 * the NVRAM. This may speed up boot and maintain coherency with
947 * BIOS device numbering. Clearing the flag allows the user to
948 * rescan skipped devices later. We also return an error for
949 * devices not flagged for SCAN LUNS in the NVRAM since some single
950 * lun devices behave badly when asked for a non zero LUN.
951 */
952
Matthew Wilcox66e8d1c2005-11-29 23:08:46 -0500953 if (tp->usrflags & SYM_SCAN_BOOT_DISABLED) {
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100954 tp->usrflags &= ~SYM_SCAN_BOOT_DISABLED;
Matthew Wilcox66e8d1c2005-11-29 23:08:46 -0500955 starget_printk(KERN_INFO, tp->starget,
956 "Scan at boot disabled in NVRAM\n");
Matthew Wilcox 53222b92005-05-20 19:15:43 +0100957 return -ENXIO;
958 }
959
Matthew Wilcox66e8d1c2005-11-29 23:08:46 -0500960 if (tp->usrflags & SYM_SCAN_LUNS_DISABLED) {
961 if (sdev->lun != 0)
962 return -ENXIO;
963 starget_printk(KERN_INFO, tp->starget,
964 "Multiple LUNs disabled in NVRAM\n");
965 }
966
Matthew Wilcox84e203a2005-11-29 23:08:31 -0500967 lp = sym_alloc_lcb(np, sdev->id, sdev->lun);
968 if (!lp)
969 return -ENOMEM;
970
Matthew Wilcoxb37df482005-11-29 23:08:44 -0500971 spi_min_period(tp->starget) = tp->usr_period;
972 spi_max_width(tp->starget) = tp->usr_width;
973
Linus Torvalds1da177e2005-04-16 15:20:36 -0700974 return 0;
975}
976
Linus Torvalds1da177e2005-04-16 15:20:36 -0700977/*
978 * Linux entry point for device queue sizing.
979 */
Matthew Wilcox84e203a2005-11-29 23:08:31 -0500980static int sym53c8xx_slave_configure(struct scsi_device *sdev)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700981{
Matthew Wilcox84e203a2005-11-29 23:08:31 -0500982 struct sym_hcb *np = sym_get_hcb(sdev->host);
983 struct sym_tcb *tp = &np->target[sdev->id];
984 struct sym_lcb *lp = sym_lp(tp, sdev->lun);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700985 int reqtags, depth_to_use;
986
987 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700988 * Get user flags.
989 */
990 lp->curr_flags = lp->user_flags;
991
992 /*
993 * Select queue depth from driver setup.
994 * Donnot use more than configured by user.
995 * Use at least 2.
996 * Donnot use more than our maximum.
997 */
Matthew Wilcox84e203a2005-11-29 23:08:31 -0500998 reqtags = device_queue_depth(np, sdev->id, sdev->lun);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700999 if (reqtags > tp->usrtags)
1000 reqtags = tp->usrtags;
Matthew Wilcox84e203a2005-11-29 23:08:31 -05001001 if (!sdev->tagged_supported)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001002 reqtags = 0;
1003#if 1 /* Avoid to locally queue commands for no good reasons */
1004 if (reqtags > SYM_CONF_MAX_TAG)
1005 reqtags = SYM_CONF_MAX_TAG;
1006 depth_to_use = (reqtags ? reqtags : 2);
1007#else
1008 depth_to_use = (reqtags ? SYM_CONF_MAX_TAG : 2);
1009#endif
Matthew Wilcox84e203a2005-11-29 23:08:31 -05001010 scsi_adjust_queue_depth(sdev,
1011 (sdev->tagged_supported ?
Linus Torvalds1da177e2005-04-16 15:20:36 -07001012 MSG_SIMPLE_TAG : 0),
1013 depth_to_use);
1014 lp->s.scdev_depth = depth_to_use;
Matthew Wilcox84e203a2005-11-29 23:08:31 -05001015 sym_tune_dev_queuing(tp, sdev->lun, reqtags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001016
Matthew Wilcox84e203a2005-11-29 23:08:31 -05001017 if (!spi_initial_dv(sdev->sdev_target))
1018 spi_dv_device(sdev);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001019
1020 return 0;
1021}
1022
Matthew Wilcox84e203a2005-11-29 23:08:31 -05001023static void sym53c8xx_slave_destroy(struct scsi_device *sdev)
1024{
1025 struct sym_hcb *np = sym_get_hcb(sdev->host);
1026 struct sym_lcb *lp = sym_lp(&np->target[sdev->id], sdev->lun);
1027
1028 if (lp->itlq_tbl)
1029 sym_mfree_dma(lp->itlq_tbl, SYM_CONF_MAX_TASK * 4, "ITLQ_TBL");
1030 kfree(lp->cb_tags);
1031 sym_mfree_dma(lp, sizeof(*lp), "LCB");
1032}
1033
Linus Torvalds1da177e2005-04-16 15:20:36 -07001034/*
1035 * Linux entry point for info() function
1036 */
1037static const char *sym53c8xx_info (struct Scsi_Host *host)
1038{
1039 return SYM_DRIVER_NAME;
1040}
1041
1042
1043#ifdef SYM_LINUX_PROC_INFO_SUPPORT
1044/*
1045 * Proc file system stuff
1046 *
1047 * A read operation returns adapter information.
1048 * A write operation is a control command.
1049 * The string is parsed in the driver code and the command is passed
1050 * to the sym_usercmd() function.
1051 */
1052
1053#ifdef SYM_LINUX_USER_COMMAND_SUPPORT
1054
1055struct sym_usrcmd {
1056 u_long target;
1057 u_long lun;
1058 u_long data;
1059 u_long cmd;
1060};
1061
1062#define UC_SETSYNC 10
1063#define UC_SETTAGS 11
1064#define UC_SETDEBUG 12
1065#define UC_SETWIDE 14
1066#define UC_SETFLAG 15
1067#define UC_SETVERBOSE 17
1068#define UC_RESETDEV 18
1069#define UC_CLEARDEV 19
1070
1071static void sym_exec_user_command (struct sym_hcb *np, struct sym_usrcmd *uc)
1072{
1073 struct sym_tcb *tp;
1074 int t, l;
1075
1076 switch (uc->cmd) {
1077 case 0: return;
1078
1079#ifdef SYM_LINUX_DEBUG_CONTROL_SUPPORT
1080 case UC_SETDEBUG:
1081 sym_debug_flags = uc->data;
1082 break;
1083#endif
1084 case UC_SETVERBOSE:
1085 np->verbose = uc->data;
1086 break;
1087 default:
1088 /*
1089 * We assume that other commands apply to targets.
1090 * This should always be the case and avoid the below
1091 * 4 lines to be repeated 6 times.
1092 */
1093 for (t = 0; t < SYM_CONF_MAX_TARGET; t++) {
1094 if (!((uc->target >> t) & 1))
1095 continue;
1096 tp = &np->target[t];
1097
1098 switch (uc->cmd) {
1099
1100 case UC_SETSYNC:
1101 if (!uc->data || uc->data >= 255) {
1102 tp->tgoal.iu = tp->tgoal.dt =
1103 tp->tgoal.qas = 0;
1104 tp->tgoal.offset = 0;
1105 } else if (uc->data <= 9 && np->minsync_dt) {
1106 if (uc->data < np->minsync_dt)
1107 uc->data = np->minsync_dt;
1108 tp->tgoal.iu = tp->tgoal.dt =
1109 tp->tgoal.qas = 1;
1110 tp->tgoal.width = 1;
1111 tp->tgoal.period = uc->data;
1112 tp->tgoal.offset = np->maxoffs_dt;
1113 } else {
1114 if (uc->data < np->minsync)
1115 uc->data = np->minsync;
1116 tp->tgoal.iu = tp->tgoal.dt =
1117 tp->tgoal.qas = 0;
1118 tp->tgoal.period = uc->data;
1119 tp->tgoal.offset = np->maxoffs;
1120 }
1121 tp->tgoal.check_nego = 1;
1122 break;
1123 case UC_SETWIDE:
1124 tp->tgoal.width = uc->data ? 1 : 0;
1125 tp->tgoal.check_nego = 1;
1126 break;
1127 case UC_SETTAGS:
1128 for (l = 0; l < SYM_CONF_MAX_LUN; l++)
1129 sym_tune_dev_queuing(tp, l, uc->data);
1130 break;
1131 case UC_RESETDEV:
1132 tp->to_reset = 1;
1133 np->istat_sem = SEM;
1134 OUTB(np, nc_istat, SIGP|SEM);
1135 break;
1136 case UC_CLEARDEV:
1137 for (l = 0; l < SYM_CONF_MAX_LUN; l++) {
1138 struct sym_lcb *lp = sym_lp(tp, l);
1139 if (lp) lp->to_clear = 1;
1140 }
1141 np->istat_sem = SEM;
1142 OUTB(np, nc_istat, SIGP|SEM);
1143 break;
1144 case UC_SETFLAG:
1145 tp->usrflags = uc->data;
1146 break;
1147 }
1148 }
1149 break;
1150 }
1151}
1152
1153static int skip_spaces(char *ptr, int len)
1154{
1155 int cnt, c;
1156
1157 for (cnt = len; cnt > 0 && (c = *ptr++) && isspace(c); cnt--);
1158
1159 return (len - cnt);
1160}
1161
1162static int get_int_arg(char *ptr, int len, u_long *pv)
1163{
1164 char *end;
1165
1166 *pv = simple_strtoul(ptr, &end, 10);
1167 return (end - ptr);
1168}
1169
1170static int is_keyword(char *ptr, int len, char *verb)
1171{
1172 int verb_len = strlen(verb);
1173
1174 if (len >= verb_len && !memcmp(verb, ptr, verb_len))
1175 return verb_len;
1176 else
1177 return 0;
1178}
1179
1180#define SKIP_SPACES(ptr, len) \
1181 if ((arg_len = skip_spaces(ptr, len)) < 1) \
1182 return -EINVAL; \
1183 ptr += arg_len; len -= arg_len;
1184
1185#define GET_INT_ARG(ptr, len, v) \
1186 if (!(arg_len = get_int_arg(ptr, len, &(v)))) \
1187 return -EINVAL; \
1188 ptr += arg_len; len -= arg_len;
1189
1190
1191/*
1192 * Parse a control command
1193 */
1194
1195static int sym_user_command(struct sym_hcb *np, char *buffer, int length)
1196{
1197 char *ptr = buffer;
1198 int len = length;
1199 struct sym_usrcmd cmd, *uc = &cmd;
1200 int arg_len;
1201 u_long target;
1202
1203 memset(uc, 0, sizeof(*uc));
1204
1205 if (len > 0 && ptr[len-1] == '\n')
1206 --len;
1207
1208 if ((arg_len = is_keyword(ptr, len, "setsync")) != 0)
1209 uc->cmd = UC_SETSYNC;
1210 else if ((arg_len = is_keyword(ptr, len, "settags")) != 0)
1211 uc->cmd = UC_SETTAGS;
1212 else if ((arg_len = is_keyword(ptr, len, "setverbose")) != 0)
1213 uc->cmd = UC_SETVERBOSE;
1214 else if ((arg_len = is_keyword(ptr, len, "setwide")) != 0)
1215 uc->cmd = UC_SETWIDE;
1216#ifdef SYM_LINUX_DEBUG_CONTROL_SUPPORT
1217 else if ((arg_len = is_keyword(ptr, len, "setdebug")) != 0)
1218 uc->cmd = UC_SETDEBUG;
1219#endif
1220 else if ((arg_len = is_keyword(ptr, len, "setflag")) != 0)
1221 uc->cmd = UC_SETFLAG;
1222 else if ((arg_len = is_keyword(ptr, len, "resetdev")) != 0)
1223 uc->cmd = UC_RESETDEV;
1224 else if ((arg_len = is_keyword(ptr, len, "cleardev")) != 0)
1225 uc->cmd = UC_CLEARDEV;
1226 else
1227 arg_len = 0;
1228
1229#ifdef DEBUG_PROC_INFO
1230printk("sym_user_command: arg_len=%d, cmd=%ld\n", arg_len, uc->cmd);
1231#endif
1232
1233 if (!arg_len)
1234 return -EINVAL;
1235 ptr += arg_len; len -= arg_len;
1236
1237 switch(uc->cmd) {
1238 case UC_SETSYNC:
1239 case UC_SETTAGS:
1240 case UC_SETWIDE:
1241 case UC_SETFLAG:
1242 case UC_RESETDEV:
1243 case UC_CLEARDEV:
1244 SKIP_SPACES(ptr, len);
1245 if ((arg_len = is_keyword(ptr, len, "all")) != 0) {
1246 ptr += arg_len; len -= arg_len;
1247 uc->target = ~0;
1248 } else {
1249 GET_INT_ARG(ptr, len, target);
1250 uc->target = (1<<target);
1251#ifdef DEBUG_PROC_INFO
1252printk("sym_user_command: target=%ld\n", target);
1253#endif
1254 }
1255 break;
1256 }
1257
1258 switch(uc->cmd) {
1259 case UC_SETVERBOSE:
1260 case UC_SETSYNC:
1261 case UC_SETTAGS:
1262 case UC_SETWIDE:
1263 SKIP_SPACES(ptr, len);
1264 GET_INT_ARG(ptr, len, uc->data);
1265#ifdef DEBUG_PROC_INFO
1266printk("sym_user_command: data=%ld\n", uc->data);
1267#endif
1268 break;
1269#ifdef SYM_LINUX_DEBUG_CONTROL_SUPPORT
1270 case UC_SETDEBUG:
1271 while (len > 0) {
1272 SKIP_SPACES(ptr, len);
1273 if ((arg_len = is_keyword(ptr, len, "alloc")))
1274 uc->data |= DEBUG_ALLOC;
1275 else if ((arg_len = is_keyword(ptr, len, "phase")))
1276 uc->data |= DEBUG_PHASE;
1277 else if ((arg_len = is_keyword(ptr, len, "queue")))
1278 uc->data |= DEBUG_QUEUE;
1279 else if ((arg_len = is_keyword(ptr, len, "result")))
1280 uc->data |= DEBUG_RESULT;
1281 else if ((arg_len = is_keyword(ptr, len, "scatter")))
1282 uc->data |= DEBUG_SCATTER;
1283 else if ((arg_len = is_keyword(ptr, len, "script")))
1284 uc->data |= DEBUG_SCRIPT;
1285 else if ((arg_len = is_keyword(ptr, len, "tiny")))
1286 uc->data |= DEBUG_TINY;
1287 else if ((arg_len = is_keyword(ptr, len, "timing")))
1288 uc->data |= DEBUG_TIMING;
1289 else if ((arg_len = is_keyword(ptr, len, "nego")))
1290 uc->data |= DEBUG_NEGO;
1291 else if ((arg_len = is_keyword(ptr, len, "tags")))
1292 uc->data |= DEBUG_TAGS;
1293 else if ((arg_len = is_keyword(ptr, len, "pointer")))
1294 uc->data |= DEBUG_POINTER;
1295 else
1296 return -EINVAL;
1297 ptr += arg_len; len -= arg_len;
1298 }
1299#ifdef DEBUG_PROC_INFO
1300printk("sym_user_command: data=%ld\n", uc->data);
1301#endif
1302 break;
1303#endif /* SYM_LINUX_DEBUG_CONTROL_SUPPORT */
1304 case UC_SETFLAG:
1305 while (len > 0) {
1306 SKIP_SPACES(ptr, len);
1307 if ((arg_len = is_keyword(ptr, len, "no_disc")))
1308 uc->data &= ~SYM_DISC_ENABLED;
1309 else
1310 return -EINVAL;
1311 ptr += arg_len; len -= arg_len;
1312 }
1313 break;
1314 default:
1315 break;
1316 }
1317
1318 if (len)
1319 return -EINVAL;
1320 else {
1321 unsigned long flags;
1322
1323 spin_lock_irqsave(np->s.host->host_lock, flags);
1324 sym_exec_user_command (np, uc);
1325 spin_unlock_irqrestore(np->s.host->host_lock, flags);
1326 }
1327 return length;
1328}
1329
1330#endif /* SYM_LINUX_USER_COMMAND_SUPPORT */
1331
1332
1333#ifdef SYM_LINUX_USER_INFO_SUPPORT
1334/*
1335 * Informations through the proc file system.
1336 */
1337struct info_str {
1338 char *buffer;
1339 int length;
1340 int offset;
1341 int pos;
1342};
1343
1344static void copy_mem_info(struct info_str *info, char *data, int len)
1345{
1346 if (info->pos + len > info->length)
1347 len = info->length - info->pos;
1348
1349 if (info->pos + len < info->offset) {
1350 info->pos += len;
1351 return;
1352 }
1353 if (info->pos < info->offset) {
1354 data += (info->offset - info->pos);
1355 len -= (info->offset - info->pos);
1356 }
1357
1358 if (len > 0) {
1359 memcpy(info->buffer + info->pos, data, len);
1360 info->pos += len;
1361 }
1362}
1363
1364static int copy_info(struct info_str *info, char *fmt, ...)
1365{
1366 va_list args;
1367 char buf[81];
1368 int len;
1369
1370 va_start(args, fmt);
1371 len = vsprintf(buf, fmt, args);
1372 va_end(args);
1373
1374 copy_mem_info(info, buf, len);
1375 return len;
1376}
1377
1378/*
1379 * Copy formatted information into the input buffer.
1380 */
1381static int sym_host_info(struct sym_hcb *np, char *ptr, off_t offset, int len)
1382{
1383 struct info_str info;
1384
1385 info.buffer = ptr;
1386 info.length = len;
1387 info.offset = offset;
1388 info.pos = 0;
1389
1390 copy_info(&info, "Chip " NAME53C "%s, device id 0x%x, "
1391 "revision id 0x%x\n",
1392 np->s.chip_name, np->device_id, np->revision_id);
1393 copy_info(&info, "At PCI address %s, IRQ " IRQ_FMT "\n",
1394 pci_name(np->s.device), IRQ_PRM(np->s.irq));
1395 copy_info(&info, "Min. period factor %d, %s SCSI BUS%s\n",
1396 (int) (np->minsync_dt ? np->minsync_dt : np->minsync),
1397 np->maxwide ? "Wide" : "Narrow",
1398 np->minsync_dt ? ", DT capable" : "");
1399
1400 copy_info(&info, "Max. started commands %d, "
1401 "max. commands per LUN %d\n",
1402 SYM_CONF_MAX_START, SYM_CONF_MAX_TAG);
1403
1404 return info.pos > info.offset? info.pos - info.offset : 0;
1405}
1406#endif /* SYM_LINUX_USER_INFO_SUPPORT */
1407
1408/*
1409 * Entry point of the scsi proc fs of the driver.
1410 * - func = 0 means read (returns adapter infos)
1411 * - func = 1 means write (not yet merget from sym53c8xx)
1412 */
1413static int sym53c8xx_proc_info(struct Scsi_Host *host, char *buffer,
1414 char **start, off_t offset, int length, int func)
1415{
1416 struct sym_hcb *np = sym_get_hcb(host);
1417 int retv;
1418
1419 if (func) {
1420#ifdef SYM_LINUX_USER_COMMAND_SUPPORT
1421 retv = sym_user_command(np, buffer, length);
1422#else
1423 retv = -EINVAL;
1424#endif
1425 } else {
1426 if (start)
1427 *start = buffer;
1428#ifdef SYM_LINUX_USER_INFO_SUPPORT
1429 retv = sym_host_info(np, buffer, offset, length);
1430#else
1431 retv = -EINVAL;
1432#endif
1433 }
1434
1435 return retv;
1436}
1437#endif /* SYM_LINUX_PROC_INFO_SUPPORT */
1438
1439/*
1440 * Free controller resources.
1441 */
1442static void sym_free_resources(struct sym_hcb *np, struct pci_dev *pdev)
1443{
1444 /*
1445 * Free O/S specific resources.
1446 */
1447 if (np->s.irq)
1448 free_irq(np->s.irq, np);
1449 if (np->s.ioaddr)
1450 pci_iounmap(pdev, np->s.ioaddr);
1451 if (np->s.ramaddr)
1452 pci_iounmap(pdev, np->s.ramaddr);
1453 /*
1454 * Free O/S independent resources.
1455 */
1456 sym_hcb_free(np);
1457
1458 sym_mfree_dma(np, sizeof(*np), "HCB");
1459}
1460
1461/*
1462 * Ask/tell the system about DMA addressing.
1463 */
1464static int sym_setup_bus_dma_mask(struct sym_hcb *np)
1465{
1466#if SYM_CONF_DMA_ADDRESSING_MODE > 0
1467#if SYM_CONF_DMA_ADDRESSING_MODE == 1
Matthew Wilcox1e8eb212005-11-29 23:08:36 -05001468#define DMA_DAC_MASK DMA_40BIT_MASK
Linus Torvalds1da177e2005-04-16 15:20:36 -07001469#elif SYM_CONF_DMA_ADDRESSING_MODE == 2
1470#define DMA_DAC_MASK DMA_64BIT_MASK
1471#endif
1472 if ((np->features & FE_DAC) &&
1473 !pci_set_dma_mask(np->s.device, DMA_DAC_MASK)) {
1474 np->use_dac = 1;
1475 return 0;
1476 }
1477#endif
1478
1479 if (!pci_set_dma_mask(np->s.device, DMA_32BIT_MASK))
1480 return 0;
1481
1482 printf_warning("%s: No suitable DMA available\n", sym_name(np));
1483 return -1;
1484}
1485
1486/*
1487 * Host attach and initialisations.
1488 *
1489 * Allocate host data and ncb structure.
1490 * Remap MMIO region.
1491 * Do chip initialization.
1492 * If all is OK, install interrupt handling and
1493 * start the timer daemon.
1494 */
1495static struct Scsi_Host * __devinit sym_attach(struct scsi_host_template *tpnt,
1496 int unit, struct sym_device *dev)
1497{
1498 struct host_data *host_data;
1499 struct sym_hcb *np = NULL;
1500 struct Scsi_Host *instance = NULL;
1501 struct pci_dev *pdev = dev->pdev;
1502 unsigned long flags;
1503 struct sym_fw *fw;
1504
1505 printk(KERN_INFO
1506 "sym%d: <%s> rev 0x%x at pci %s irq " IRQ_FMT "\n",
1507 unit, dev->chip.name, dev->chip.revision_id,
1508 pci_name(pdev), IRQ_PRM(pdev->irq));
1509
1510 /*
1511 * Get the firmware for this chip.
1512 */
1513 fw = sym_find_firmware(&dev->chip);
1514 if (!fw)
1515 goto attach_failed;
1516
1517 /*
1518 * Allocate host_data structure
1519 */
1520 instance = scsi_host_alloc(tpnt, sizeof(*host_data));
1521 if (!instance)
1522 goto attach_failed;
1523 host_data = (struct host_data *) instance->hostdata;
1524
1525 /*
1526 * Allocate immediately the host control block,
1527 * since we are only expecting to succeed. :)
1528 * We keep track in the HCB of all the resources that
1529 * are to be released on error.
1530 */
1531 np = __sym_calloc_dma(&pdev->dev, sizeof(*np), "HCB");
1532 if (!np)
1533 goto attach_failed;
1534 np->s.device = pdev;
1535 np->bus_dmat = &pdev->dev; /* Result in 1 DMA pool per HBA */
1536 host_data->ncb = np;
1537 np->s.host = instance;
1538
1539 pci_set_drvdata(pdev, np);
1540
1541 /*
1542 * Copy some useful infos to the HCB.
1543 */
1544 np->hcb_ba = vtobus(np);
1545 np->verbose = sym_driver_setup.verbose;
1546 np->s.device = pdev;
1547 np->s.unit = unit;
1548 np->device_id = dev->chip.device_id;
1549 np->revision_id = dev->chip.revision_id;
1550 np->features = dev->chip.features;
1551 np->clock_divn = dev->chip.nr_divisor;
1552 np->maxoffs = dev->chip.offset_max;
1553 np->maxburst = dev->chip.burst_max;
1554 np->myaddr = dev->host_id;
1555
1556 /*
1557 * Edit its name.
1558 */
1559 strlcpy(np->s.chip_name, dev->chip.name, sizeof(np->s.chip_name));
1560 sprintf(np->s.inst_name, "sym%d", np->s.unit);
1561
1562 if (sym_setup_bus_dma_mask(np))
1563 goto attach_failed;
1564
1565 /*
1566 * Try to map the controller chip to
1567 * virtual and physical memory.
1568 */
1569 np->mmio_ba = (u32)dev->mmio_base;
1570 np->s.ioaddr = dev->s.ioaddr;
1571 np->s.ramaddr = dev->s.ramaddr;
1572 np->s.io_ws = (np->features & FE_IO256) ? 256 : 128;
1573
1574 /*
1575 * Map on-chip RAM if present and supported.
1576 */
1577 if (!(np->features & FE_RAM))
1578 dev->ram_base = 0;
1579 if (dev->ram_base) {
1580 np->ram_ba = (u32)dev->ram_base;
1581 np->ram_ws = (np->features & FE_RAM8K) ? 8192 : 4096;
1582 }
1583
1584 if (sym_hcb_attach(instance, fw, dev->nvram))
1585 goto attach_failed;
1586
1587 /*
1588 * Install the interrupt handler.
1589 * If we synchonize the C code with SCRIPTS on interrupt,
1590 * we do not want to share the INTR line at all.
1591 */
1592 if (request_irq(pdev->irq, sym53c8xx_intr, SA_SHIRQ, NAME53C8XX, np)) {
1593 printf_err("%s: request irq %d failure\n",
1594 sym_name(np), pdev->irq);
1595 goto attach_failed;
1596 }
1597 np->s.irq = pdev->irq;
1598
1599 /*
1600 * After SCSI devices have been opened, we cannot
1601 * reset the bus safely, so we do it here.
1602 */
1603 spin_lock_irqsave(instance->host_lock, flags);
1604 if (sym_reset_scsi_bus(np, 0))
1605 goto reset_failed;
1606
1607 /*
1608 * Start the SCRIPTS.
1609 */
1610 sym_start_up (np, 1);
1611
1612 /*
1613 * Start the timer daemon
1614 */
1615 init_timer(&np->s.timer);
1616 np->s.timer.data = (unsigned long) np;
1617 np->s.timer.function = sym53c8xx_timer;
1618 np->s.lasttime=0;
1619 sym_timer (np);
1620
1621 /*
1622 * Fill Linux host instance structure
1623 * and return success.
1624 */
1625 instance->max_channel = 0;
1626 instance->this_id = np->myaddr;
1627 instance->max_id = np->maxwide ? 16 : 8;
1628 instance->max_lun = SYM_CONF_MAX_LUN;
1629 instance->unique_id = pci_resource_start(pdev, 0);
1630 instance->cmd_per_lun = SYM_CONF_MAX_TAG;
1631 instance->can_queue = (SYM_CONF_MAX_START-2);
1632 instance->sg_tablesize = SYM_CONF_MAX_SG;
1633 instance->max_cmd_len = 16;
1634 BUG_ON(sym2_transport_template == NULL);
1635 instance->transportt = sym2_transport_template;
1636
1637 spin_unlock_irqrestore(instance->host_lock, flags);
1638
1639 return instance;
1640
1641 reset_failed:
1642 printf_err("%s: FATAL ERROR: CHECK SCSI BUS - CABLES, "
1643 "TERMINATION, DEVICE POWER etc.!\n", sym_name(np));
1644 spin_unlock_irqrestore(instance->host_lock, flags);
1645 attach_failed:
1646 if (!instance)
1647 return NULL;
1648 printf_info("%s: giving up ...\n", sym_name(np));
1649 if (np)
1650 sym_free_resources(np, pdev);
1651 scsi_host_put(instance);
1652
1653 return NULL;
1654 }
1655
1656
1657/*
1658 * Detect and try to read SYMBIOS and TEKRAM NVRAM.
1659 */
1660#if SYM_CONF_NVRAM_SUPPORT
1661static void __devinit sym_get_nvram(struct sym_device *devp, struct sym_nvram *nvp)
1662{
1663 devp->nvram = nvp;
1664 devp->device_id = devp->chip.device_id;
1665 nvp->type = 0;
1666
1667 sym_read_nvram(devp, nvp);
1668}
1669#else
1670static inline void sym_get_nvram(struct sym_device *devp, struct sym_nvram *nvp)
1671{
1672}
1673#endif /* SYM_CONF_NVRAM_SUPPORT */
1674
1675static int __devinit sym_check_supported(struct sym_device *device)
1676{
1677 struct sym_chip *chip;
1678 struct pci_dev *pdev = device->pdev;
1679 u_char revision;
1680 unsigned long io_port = pci_resource_start(pdev, 0);
1681 int i;
1682
1683 /*
1684 * If user excluded this chip, do not initialize it.
1685 * I hate this code so much. Must kill it.
1686 */
1687 if (io_port) {
1688 for (i = 0 ; i < 8 ; i++) {
1689 if (sym_driver_setup.excludes[i] == io_port)
1690 return -ENODEV;
1691 }
1692 }
1693
1694 /*
1695 * Check if the chip is supported. Then copy the chip description
1696 * to our device structure so we can make it match the actual device
1697 * and options.
1698 */
1699 pci_read_config_byte(pdev, PCI_CLASS_REVISION, &revision);
1700 chip = sym_lookup_chip_table(pdev->device, revision);
1701 if (!chip) {
1702 dev_info(&pdev->dev, "device not supported\n");
1703 return -ENODEV;
1704 }
1705 memcpy(&device->chip, chip, sizeof(device->chip));
1706 device->chip.revision_id = revision;
1707
1708 return 0;
1709}
1710
1711/*
1712 * Ignore Symbios chips controlled by various RAID controllers.
1713 * These controllers set value 0x52414944 at RAM end - 16.
1714 */
1715static int __devinit sym_check_raid(struct sym_device *device)
1716{
1717 unsigned int ram_size, ram_val;
1718
1719 if (!device->s.ramaddr)
1720 return 0;
1721
1722 if (device->chip.features & FE_RAM8K)
1723 ram_size = 8192;
1724 else
1725 ram_size = 4096;
1726
1727 ram_val = readl(device->s.ramaddr + ram_size - 16);
1728 if (ram_val != 0x52414944)
1729 return 0;
1730
1731 dev_info(&device->pdev->dev,
1732 "not initializing, driven by RAID controller.\n");
1733 return -ENODEV;
1734}
1735
1736static int __devinit sym_set_workarounds(struct sym_device *device)
1737{
1738 struct sym_chip *chip = &device->chip;
1739 struct pci_dev *pdev = device->pdev;
1740 u_short status_reg;
1741
1742 /*
1743 * (ITEM 12 of a DEL about the 896 I haven't yet).
1744 * We must ensure the chip will use WRITE AND INVALIDATE.
1745 * The revision number limit is for now arbitrary.
1746 */
1747 if (pdev->device == PCI_DEVICE_ID_NCR_53C896 && chip->revision_id < 0x4) {
1748 chip->features |= (FE_WRIE | FE_CLSE);
1749 }
1750
1751 /* If the chip can do Memory Write Invalidate, enable it */
1752 if (chip->features & FE_WRIE) {
1753 if (pci_set_mwi(pdev))
1754 return -ENODEV;
1755 }
1756
1757 /*
1758 * Work around for errant bit in 895A. The 66Mhz
1759 * capable bit is set erroneously. Clear this bit.
1760 * (Item 1 DEL 533)
1761 *
1762 * Make sure Config space and Features agree.
1763 *
1764 * Recall: writes are not normal to status register -
1765 * write a 1 to clear and a 0 to leave unchanged.
1766 * Can only reset bits.
1767 */
1768 pci_read_config_word(pdev, PCI_STATUS, &status_reg);
1769 if (chip->features & FE_66MHZ) {
1770 if (!(status_reg & PCI_STATUS_66MHZ))
1771 chip->features &= ~FE_66MHZ;
1772 } else {
1773 if (status_reg & PCI_STATUS_66MHZ) {
1774 status_reg = PCI_STATUS_66MHZ;
1775 pci_write_config_word(pdev, PCI_STATUS, status_reg);
1776 pci_read_config_word(pdev, PCI_STATUS, &status_reg);
1777 }
1778 }
1779
1780 return 0;
1781}
1782
1783/*
1784 * Read and check the PCI configuration for any detected NCR
1785 * boards and save data for attaching after all boards have
1786 * been detected.
1787 */
1788static void __devinit
1789sym_init_device(struct pci_dev *pdev, struct sym_device *device)
1790{
Matthew Wilcoxb6d105d2006-03-28 11:03:44 -05001791 int i = 2;
1792 struct pci_bus_region bus_addr;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001793
1794 device->host_id = SYM_SETUP_HOST_ID;
1795 device->pdev = pdev;
1796
Matthew Wilcoxb6d105d2006-03-28 11:03:44 -05001797 pcibios_resource_to_bus(pdev, &bus_addr, &pdev->resource[1]);
1798 device->mmio_base = bus_addr.start;
1799
1800 /*
1801 * If the BAR is 64-bit, resource 2 will be occupied by the
1802 * upper 32 bits
1803 */
1804 if (!pdev->resource[i].flags)
1805 i++;
1806 pcibios_resource_to_bus(pdev, &bus_addr, &pdev->resource[i]);
1807 device->ram_base = bus_addr.start;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001808
Matthew Wilcox1f61d822006-03-28 11:03:43 -05001809#ifdef CONFIG_SCSI_SYM53C8XX_MMIO
Linus Torvalds1da177e2005-04-16 15:20:36 -07001810 if (device->mmio_base)
1811 device->s.ioaddr = pci_iomap(pdev, 1,
1812 pci_resource_len(pdev, 1));
1813#endif
1814 if (!device->s.ioaddr)
1815 device->s.ioaddr = pci_iomap(pdev, 0,
1816 pci_resource_len(pdev, 0));
1817 if (device->ram_base)
1818 device->s.ramaddr = pci_iomap(pdev, i,
1819 pci_resource_len(pdev, i));
1820}
1821
1822/*
1823 * The NCR PQS and PDS cards are constructed as a DEC bridge
1824 * behind which sits a proprietary NCR memory controller and
1825 * either four or two 53c875s as separate devices. We can tell
1826 * if an 875 is part of a PQS/PDS or not since if it is, it will
1827 * be on the same bus as the memory controller. In its usual
1828 * mode of operation, the 875s are slaved to the memory
1829 * controller for all transfers. To operate with the Linux
1830 * driver, the memory controller is disabled and the 875s
1831 * freed to function independently. The only wrinkle is that
1832 * the preset SCSI ID (which may be zero) must be read in from
1833 * a special configuration space register of the 875.
1834 */
1835static void sym_config_pqs(struct pci_dev *pdev, struct sym_device *sym_dev)
1836{
1837 int slot;
1838 u8 tmp;
1839
1840 for (slot = 0; slot < 256; slot++) {
1841 struct pci_dev *memc = pci_get_slot(pdev->bus, slot);
1842
1843 if (!memc || memc->vendor != 0x101a || memc->device == 0x0009) {
1844 pci_dev_put(memc);
1845 continue;
1846 }
1847
1848 /* bit 1: allow individual 875 configuration */
1849 pci_read_config_byte(memc, 0x44, &tmp);
1850 if ((tmp & 0x2) == 0) {
1851 tmp |= 0x2;
1852 pci_write_config_byte(memc, 0x44, tmp);
1853 }
1854
1855 /* bit 2: drive individual 875 interrupts to the bus */
1856 pci_read_config_byte(memc, 0x45, &tmp);
1857 if ((tmp & 0x4) == 0) {
1858 tmp |= 0x4;
1859 pci_write_config_byte(memc, 0x45, tmp);
1860 }
1861
1862 pci_dev_put(memc);
1863 break;
1864 }
1865
1866 pci_read_config_byte(pdev, 0x84, &tmp);
1867 sym_dev->host_id = tmp;
1868}
1869
1870/*
1871 * Called before unloading the module.
1872 * Detach the host.
1873 * We have to free resources and halt the NCR chip.
1874 */
1875static int sym_detach(struct sym_hcb *np, struct pci_dev *pdev)
1876{
1877 printk("%s: detaching ...\n", sym_name(np));
1878
1879 del_timer_sync(&np->s.timer);
1880
1881 /*
1882 * Reset NCR chip.
1883 * We should use sym_soft_reset(), but we don't want to do
1884 * so, since we may not be safe if interrupts occur.
1885 */
1886 printk("%s: resetting chip\n", sym_name(np));
1887 OUTB(np, nc_istat, SRST);
Matthew Wilcox 53222b92005-05-20 19:15:43 +01001888 INB(np, nc_mbox1);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001889 udelay(10);
1890 OUTB(np, nc_istat, 0);
1891
1892 sym_free_resources(np, pdev);
1893
1894 return 1;
1895}
1896
1897/*
1898 * Driver host template.
1899 */
1900static struct scsi_host_template sym2_template = {
1901 .module = THIS_MODULE,
1902 .name = "sym53c8xx",
1903 .info = sym53c8xx_info,
1904 .queuecommand = sym53c8xx_queue_command,
1905 .slave_alloc = sym53c8xx_slave_alloc,
1906 .slave_configure = sym53c8xx_slave_configure,
Matthew Wilcox84e203a2005-11-29 23:08:31 -05001907 .slave_destroy = sym53c8xx_slave_destroy,
Linus Torvalds1da177e2005-04-16 15:20:36 -07001908 .eh_abort_handler = sym53c8xx_eh_abort_handler,
1909 .eh_device_reset_handler = sym53c8xx_eh_device_reset_handler,
1910 .eh_bus_reset_handler = sym53c8xx_eh_bus_reset_handler,
1911 .eh_host_reset_handler = sym53c8xx_eh_host_reset_handler,
1912 .this_id = 7,
1913 .use_clustering = DISABLE_CLUSTERING,
1914#ifdef SYM_LINUX_PROC_INFO_SUPPORT
1915 .proc_info = sym53c8xx_proc_info,
1916 .proc_name = NAME53C8XX,
1917#endif
1918};
1919
1920static int attach_count;
1921
1922static int __devinit sym2_probe(struct pci_dev *pdev,
1923 const struct pci_device_id *ent)
1924{
1925 struct sym_device sym_dev;
1926 struct sym_nvram nvram;
1927 struct Scsi_Host *instance;
1928
1929 memset(&sym_dev, 0, sizeof(sym_dev));
1930 memset(&nvram, 0, sizeof(nvram));
1931
1932 if (pci_enable_device(pdev))
1933 goto leave;
1934
1935 pci_set_master(pdev);
1936
1937 if (pci_request_regions(pdev, NAME53C8XX))
1938 goto disable;
1939
1940 sym_init_device(pdev, &sym_dev);
1941 if (sym_check_supported(&sym_dev))
1942 goto free;
1943
1944 if (sym_check_raid(&sym_dev))
1945 goto leave; /* Don't disable the device */
1946
1947 if (sym_set_workarounds(&sym_dev))
1948 goto free;
1949
1950 sym_config_pqs(pdev, &sym_dev);
1951
1952 sym_get_nvram(&sym_dev, &nvram);
1953
1954 instance = sym_attach(&sym2_template, attach_count, &sym_dev);
1955 if (!instance)
1956 goto free;
1957
1958 if (scsi_add_host(instance, &pdev->dev))
1959 goto detach;
1960 scsi_scan_host(instance);
1961
1962 attach_count++;
1963
1964 return 0;
1965
1966 detach:
1967 sym_detach(pci_get_drvdata(pdev), pdev);
1968 free:
1969 pci_release_regions(pdev);
1970 disable:
1971 pci_disable_device(pdev);
1972 leave:
1973 return -ENODEV;
1974}
1975
1976static void __devexit sym2_remove(struct pci_dev *pdev)
1977{
1978 struct sym_hcb *np = pci_get_drvdata(pdev);
1979 struct Scsi_Host *host = np->s.host;
1980
1981 scsi_remove_host(host);
1982 scsi_host_put(host);
1983
1984 sym_detach(np, pdev);
1985
1986 pci_release_regions(pdev);
1987 pci_disable_device(pdev);
1988
1989 attach_count--;
1990}
1991
1992static void sym2_get_signalling(struct Scsi_Host *shost)
1993{
1994 struct sym_hcb *np = sym_get_hcb(shost);
1995 enum spi_signal_type type;
1996
1997 switch (np->scsi_mode) {
1998 case SMODE_SE:
1999 type = SPI_SIGNAL_SE;
2000 break;
2001 case SMODE_LVD:
2002 type = SPI_SIGNAL_LVD;
2003 break;
2004 case SMODE_HVD:
2005 type = SPI_SIGNAL_HVD;
2006 break;
2007 default:
2008 type = SPI_SIGNAL_UNKNOWN;
2009 break;
2010 }
2011 spi_signalling(shost) = type;
2012}
2013
2014static void sym2_set_offset(struct scsi_target *starget, int offset)
2015{
2016 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2017 struct sym_hcb *np = sym_get_hcb(shost);
2018 struct sym_tcb *tp = &np->target[starget->id];
2019
2020 tp->tgoal.offset = offset;
2021 tp->tgoal.check_nego = 1;
2022}
2023
2024static void sym2_set_period(struct scsi_target *starget, int period)
2025{
2026 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2027 struct sym_hcb *np = sym_get_hcb(shost);
2028 struct sym_tcb *tp = &np->target[starget->id];
2029
James Bottomleye4862fe2005-05-06 13:14:48 -05002030 /* have to have DT for these transfers, but DT will also
2031 * set width, so check that this is allowed */
2032 if (period <= np->minsync && spi_width(starget))
Linus Torvalds1da177e2005-04-16 15:20:36 -07002033 tp->tgoal.dt = 1;
2034
2035 tp->tgoal.period = period;
2036 tp->tgoal.check_nego = 1;
2037}
2038
2039static void sym2_set_width(struct scsi_target *starget, int width)
2040{
2041 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2042 struct sym_hcb *np = sym_get_hcb(shost);
2043 struct sym_tcb *tp = &np->target[starget->id];
2044
2045 /* It is illegal to have DT set on narrow transfers. If DT is
2046 * clear, we must also clear IU and QAS. */
2047 if (width == 0)
2048 tp->tgoal.iu = tp->tgoal.dt = tp->tgoal.qas = 0;
2049
2050 tp->tgoal.width = width;
2051 tp->tgoal.check_nego = 1;
2052}
2053
2054static void sym2_set_dt(struct scsi_target *starget, int dt)
2055{
2056 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2057 struct sym_hcb *np = sym_get_hcb(shost);
2058 struct sym_tcb *tp = &np->target[starget->id];
2059
2060 /* We must clear QAS and IU if DT is clear */
2061 if (dt)
2062 tp->tgoal.dt = 1;
2063 else
2064 tp->tgoal.iu = tp->tgoal.dt = tp->tgoal.qas = 0;
2065 tp->tgoal.check_nego = 1;
2066}
2067
Matthew Wilcox8b2f8132005-11-29 23:08:38 -05002068#if 0
Linus Torvalds1da177e2005-04-16 15:20:36 -07002069static void sym2_set_iu(struct scsi_target *starget, int iu)
2070{
2071 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2072 struct sym_hcb *np = sym_get_hcb(shost);
2073 struct sym_tcb *tp = &np->target[starget->id];
2074
2075 if (iu)
2076 tp->tgoal.iu = tp->tgoal.dt = 1;
2077 else
2078 tp->tgoal.iu = 0;
2079 tp->tgoal.check_nego = 1;
2080}
2081
2082static void sym2_set_qas(struct scsi_target *starget, int qas)
2083{
2084 struct Scsi_Host *shost = dev_to_shost(starget->dev.parent);
2085 struct sym_hcb *np = sym_get_hcb(shost);
2086 struct sym_tcb *tp = &np->target[starget->id];
2087
2088 if (qas)
2089 tp->tgoal.dt = tp->tgoal.qas = 1;
2090 else
2091 tp->tgoal.qas = 0;
2092 tp->tgoal.check_nego = 1;
2093}
Matthew Wilcox8b2f8132005-11-29 23:08:38 -05002094#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -07002095
2096static struct spi_function_template sym2_transport_functions = {
2097 .set_offset = sym2_set_offset,
2098 .show_offset = 1,
2099 .set_period = sym2_set_period,
2100 .show_period = 1,
2101 .set_width = sym2_set_width,
2102 .show_width = 1,
2103 .set_dt = sym2_set_dt,
2104 .show_dt = 1,
Matthew Wilcox8b2f8132005-11-29 23:08:38 -05002105#if 0
Linus Torvalds1da177e2005-04-16 15:20:36 -07002106 .set_iu = sym2_set_iu,
2107 .show_iu = 1,
2108 .set_qas = sym2_set_qas,
2109 .show_qas = 1,
Matthew Wilcox8b2f8132005-11-29 23:08:38 -05002110#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -07002111 .get_signalling = sym2_get_signalling,
2112};
2113
2114static struct pci_device_id sym2_id_table[] __devinitdata = {
2115 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C810,
2116 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2117 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C820,
2118 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL }, /* new */
2119 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C825,
2120 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2121 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C815,
2122 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2123 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_LSI_53C810AP,
2124 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL }, /* new */
2125 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C860,
2126 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2127 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_LSI_53C1510,
2128 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2129 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C896,
2130 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2131 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C895,
2132 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2133 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C885,
2134 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2135 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C875,
2136 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2137 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C1510,
2138 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL }, /* new */
2139 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_LSI_53C895A,
2140 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2141 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_LSI_53C875A,
2142 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2143 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_LSI_53C1010_33,
2144 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2145 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_LSI_53C1010_66,
2146 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2147 { PCI_VENDOR_ID_LSI_LOGIC, PCI_DEVICE_ID_NCR_53C875J,
2148 PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0UL },
2149 { 0, }
2150};
2151
2152MODULE_DEVICE_TABLE(pci, sym2_id_table);
2153
2154static struct pci_driver sym2_driver = {
2155 .name = NAME53C8XX,
2156 .id_table = sym2_id_table,
2157 .probe = sym2_probe,
2158 .remove = __devexit_p(sym2_remove),
2159};
2160
2161static int __init sym2_init(void)
2162{
2163 int error;
2164
2165 sym2_setup_params();
2166 sym2_transport_template = spi_attach_transport(&sym2_transport_functions);
2167 if (!sym2_transport_template)
2168 return -ENODEV;
2169
2170 error = pci_register_driver(&sym2_driver);
2171 if (error)
2172 spi_release_transport(sym2_transport_template);
2173 return error;
2174}
2175
2176static void __exit sym2_exit(void)
2177{
2178 pci_unregister_driver(&sym2_driver);
2179 spi_release_transport(sym2_transport_template);
2180}
2181
2182module_init(sym2_init);
2183module_exit(sym2_exit);