1 /* $Id: aha1542.c,v 1.1 1992/07/24 06:27:38 root Exp root $
2 * linux/kernel/aha1542.c
3 *
4 * Copyright (C) 1992 Tommy Thorn
5 * Copyright (C) 1993, 1994, 1995 Eric Youngdale
6 *
7 * Modified by Eric Youngdale
8 * Use request_irq and request_dma to help prevent unexpected conflicts
9 * Set up on-board DMA controller, such that we do not have to
10 * have the bios enabled to use the aha1542.
11 * Modified by David Gentzel
12 * Don't call request_dma if dma mask is 0 (for BusLogic BT-445S VL-Bus
13 * controller).
14 * Modified by Matti Aarnio
15 * Accept parameters from LILO cmd-line. -- 1-Oct-94
16 * Modified by Mike McLagan <mike.mclagan@linux.org>
17 * Recognise extended mode on AHA1542CP, different bit than 1542CF
18 * 1-Jan-97
19 * Modified by Bjorn L. Thordarson and Einar Thor Einarsson
20 * Recognize that DMA0 is valid DMA channel -- 13-Jul-98
21 * Modified by Chris Faulhaber <jedgar@fxp.org>
22 * Added module command-line options
23 * 19-Jul-99
24 * Modified by Adam Fritzler <mid@auk.cx>
25 * Added proper detection of the AHA-1640 (MCA version of AHA-1540)
26 */
27
28 #include <linux/config.h>
29 #include <linux/module.h>
30
31 #include <linux/kernel.h>
32 #include <linux/types.h>
33 #include <linux/string.h>
34 #include <linux/ioport.h>
35 #include <linux/delay.h>
36 #include <linux/sched.h>
37 #include <linux/proc_fs.h>
38 #include <linux/init.h>
39 #include <linux/spinlock.h>
40 #include <linux/pci.h>
41 #include <linux/isapnp.h>
42 #include <asm/dma.h>
43 #include <asm/system.h>
44 #include <asm/io.h>
45 #include <linux/blk.h>
46 #include <linux/mca.h>
47
48 #include "scsi.h"
49 #include "hosts.h"
50
51
52 #include "aha1542.h"
53
54 #define SCSI_PA(address) virt_to_bus(address)
55
BAD_DMA(void * address,unsigned int length)56 static void BAD_DMA(void *address, unsigned int length)
57 {
58 printk(KERN_CRIT "buf vaddress %p paddress 0x%lx length %d\n",
59 address,
60 SCSI_PA(address),
61 length);
62 panic("Buffer at physical address > 16Mb used for aha1542");
63 }
64
BAD_SG_DMA(Scsi_Cmnd * SCpnt,struct scatterlist * sgpnt,int nseg,int badseg)65 static void BAD_SG_DMA(Scsi_Cmnd * SCpnt,
66 struct scatterlist *sgpnt,
67 int nseg,
68 int badseg)
69 {
70 printk(KERN_CRIT "sgpnt[%d:%d] addr %p/0x%lx length %d\n",
71 badseg, nseg,
72 sgpnt[badseg].address,
73 SCSI_PA(sgpnt[badseg].address),
74 sgpnt[badseg].length);
75
76 /*
77 * Not safe to continue.
78 */
79 panic("Buffer at physical address > 16Mb used for aha1542");
80 }
81
82 #include<linux/stat.h>
83
84 #ifdef DEBUG
85 #define DEB(x) x
86 #else
87 #define DEB(x)
88 #endif
89
90 /*
91 static const char RCSid[] = "$Header: /usr/src/linux/kernel/blk_drv/scsi/RCS/aha1542.c,v 1.1 1992/07/24 06:27:38 root Exp root $";
92 */
93
94 /* The adaptec can be configured for quite a number of addresses, but
95 I generally do not want the card poking around at random. We allow
96 two addresses - this allows people to use the Adaptec with a Midi
97 card, which also used 0x330 -- can be overridden with LILO! */
98
99 #define MAXBOARDS 4 /* Increase this and the sizes of the
100 arrays below, if you need more.. */
101
102 /* Boards 3,4 slots are reserved for ISAPnP/MCA scans */
103
104 static unsigned int bases[MAXBOARDS] __initdata = {0x330, 0x334, 0, 0};
105
106 /* set by aha1542_setup according to the command line; they also may
107 be marked __initdata, but require zero initializers then */
108
109 static int setup_called[MAXBOARDS];
110 static int setup_buson[MAXBOARDS];
111 static int setup_busoff[MAXBOARDS];
112 static int setup_dmaspeed[MAXBOARDS] __initdata = { -1, -1, -1, -1 };
113
114 /*
115 * LILO/Module params: aha1542=<PORTBASE>[,<BUSON>,<BUSOFF>[,<DMASPEED>]]
116 *
117 * Where: <PORTBASE> is any of the valid AHA addresses:
118 * 0x130, 0x134, 0x230, 0x234, 0x330, 0x334
119 * <BUSON> is the time (in microsecs) that AHA spends on the AT-bus
120 * when transferring data. 1542A power-on default is 11us,
121 * valid values are in range: 2..15 (decimal)
122 * <BUSOFF> is the time that AHA spends OFF THE BUS after while
123 * it is transferring data (not to monopolize the bus).
124 * Power-on default is 4us, valid range: 1..64 microseconds.
125 * <DMASPEED> Default is jumper selected (1542A: on the J1),
126 * but experimenter can alter it with this.
127 * Valid values: 5, 6, 7, 8, 10 (MB/s)
128 * Factory default is 5 MB/s.
129 */
130
131 #if defined(MODULE)
132 int isapnp = 0;
133 int aha1542[] = {0x330, 11, 4, -1};
134 MODULE_PARM(aha1542, "1-4i");
135 MODULE_PARM(isapnp, "i");
136
137 static struct isapnp_device_id id_table[] __initdata = {
138 {
139 ISAPNP_ANY_ID, ISAPNP_ANY_ID,
140 ISAPNP_VENDOR('A', 'D', 'P'), ISAPNP_FUNCTION(0x1542),
141 0
142 },
143 {0}
144 };
145
146 MODULE_DEVICE_TABLE(isapnp, id_table);
147
148 #else
149 static int isapnp = 1;
150 #endif
151
152 #define BIOS_TRANSLATION_1632 0 /* Used by some old 1542A boards */
153 #define BIOS_TRANSLATION_6432 1 /* Default case these days */
154 #define BIOS_TRANSLATION_25563 2 /* Big disk case */
155
156 struct aha1542_hostdata {
157 /* This will effectively start both of them at the first mailbox */
158 int bios_translation; /* Mapping bios uses - for compatibility */
159 int aha1542_last_mbi_used;
160 int aha1542_last_mbo_used;
161 Scsi_Cmnd *SCint[AHA1542_MAILBOXES];
162 struct mailbox mb[2 * AHA1542_MAILBOXES];
163 struct ccb ccb[AHA1542_MAILBOXES];
164 };
165
166 #define HOSTDATA(host) ((struct aha1542_hostdata *) &host->hostdata)
167
168 static struct Scsi_Host *aha_host[7]; /* One for each IRQ level (9-15) */
169
170
171
172
173 #define WAITnexttimeout 3000000
174
175 static void setup_mailboxes(int base_io, struct Scsi_Host *shpnt);
176 static int aha1542_restart(struct Scsi_Host *shost);
177 static void aha1542_intr_handle(int irq, void *dev_id, struct pt_regs *regs);
178 static void do_aha1542_intr_handle(int irq, void *dev_id, struct pt_regs *regs);
179
180 #define aha1542_intr_reset(base) outb(IRST, CONTROL(base))
181
182 #define WAIT(port, mask, allof, noneof) \
183 { register int WAITbits; \
184 register int WAITtimeout = WAITnexttimeout; \
185 while (1) { \
186 WAITbits = inb(port) & (mask); \
187 if ((WAITbits & (allof)) == (allof) && ((WAITbits & (noneof)) == 0)) \
188 break; \
189 if (--WAITtimeout == 0) goto fail; \
190 } \
191 }
192
193 /* Similar to WAIT, except we use the udelay call to regulate the
194 amount of time we wait. */
195 #define WAITd(port, mask, allof, noneof, timeout) \
196 { register int WAITbits; \
197 register int WAITtimeout = timeout; \
198 while (1) { \
199 WAITbits = inb(port) & (mask); \
200 if ((WAITbits & (allof)) == (allof) && ((WAITbits & (noneof)) == 0)) \
201 break; \
202 mdelay(1); \
203 if (--WAITtimeout == 0) goto fail; \
204 } \
205 }
206
aha1542_stat(void)207 static void aha1542_stat(void)
208 {
209 /* int s = inb(STATUS), i = inb(INTRFLAGS);
210 printk("status=%x intrflags=%x\n", s, i, WAITnexttimeout-WAITtimeout); */
211 }
212
213 /* This is a bit complicated, but we need to make sure that an interrupt
214 routine does not send something out while we are in the middle of this.
215 Fortunately, it is only at boot time that multi-byte messages
216 are ever sent. */
aha1542_out(unsigned int base,unchar * cmdp,int len)217 static int aha1542_out(unsigned int base, unchar * cmdp, int len)
218 {
219 unsigned long flags = 0;
220
221 save_flags(flags);
222 if (len == 1) {
223 while (1 == 1) {
224 WAIT(STATUS(base), CDF, 0, CDF);
225 cli();
226 if (inb(STATUS(base)) & CDF) {
227 restore_flags(flags);
228 continue;
229 }
230 outb(*cmdp, DATA(base));
231 restore_flags(flags);
232 return 0;
233 }
234 } else {
235 cli();
236 while (len--) {
237 WAIT(STATUS(base), CDF, 0, CDF);
238 outb(*cmdp++, DATA(base));
239 }
240 restore_flags(flags);
241 }
242 return 0;
243 fail:
244 restore_flags(flags);
245 printk(KERN_ERR "aha1542_out failed(%d): ", len + 1);
246 aha1542_stat();
247 return 1;
248 }
249
250 /* Only used at boot time, so we do not need to worry about latency as much
251 here */
252
aha1542_in(unsigned int base,unchar * cmdp,int len)253 static int __init aha1542_in(unsigned int base, unchar * cmdp, int len)
254 {
255 unsigned long flags;
256
257 save_flags(flags);
258 cli();
259 while (len--) {
260 WAIT(STATUS(base), DF, DF, 0);
261 *cmdp++ = inb(DATA(base));
262 }
263 restore_flags(flags);
264 return 0;
265 fail:
266 restore_flags(flags);
267 printk(KERN_ERR "aha1542_in failed(%d): ", len + 1);
268 aha1542_stat();
269 return 1;
270 }
271
272 /* Similar to aha1542_in, except that we wait a very short period of time.
273 We use this if we know the board is alive and awake, but we are not sure
274 if the board will respond to the command we are about to send or not */
aha1542_in1(unsigned int base,unchar * cmdp,int len)275 static int __init aha1542_in1(unsigned int base, unchar * cmdp, int len)
276 {
277 unsigned long flags;
278
279 save_flags(flags);
280 cli();
281 while (len--) {
282 WAITd(STATUS(base), DF, DF, 0, 100);
283 *cmdp++ = inb(DATA(base));
284 }
285 restore_flags(flags);
286 return 0;
287 fail:
288 restore_flags(flags);
289 return 1;
290 }
291
makecode(unsigned hosterr,unsigned scsierr)292 static int makecode(unsigned hosterr, unsigned scsierr)
293 {
294 switch (hosterr) {
295 case 0x0:
296 case 0xa: /* Linked command complete without error and linked normally */
297 case 0xb: /* Linked command complete without error, interrupt generated */
298 hosterr = 0;
299 break;
300
301 case 0x11: /* Selection time out-The initiator selection or target
302 reselection was not complete within the SCSI Time out period */
303 hosterr = DID_TIME_OUT;
304 break;
305
306 case 0x12: /* Data overrun/underrun-The target attempted to transfer more data
307 than was allocated by the Data Length field or the sum of the
308 Scatter / Gather Data Length fields. */
309
310 case 0x13: /* Unexpected bus free-The target dropped the SCSI BSY at an unexpected time. */
311
312 case 0x15: /* MBO command was not 00, 01 or 02-The first byte of the CB was
313 invalid. This usually indicates a software failure. */
314
315 case 0x16: /* Invalid CCB Operation Code-The first byte of the CCB was invalid.
316 This usually indicates a software failure. */
317
318 case 0x17: /* Linked CCB does not have the same LUN-A subsequent CCB of a set
319 of linked CCB's does not specify the same logical unit number as
320 the first. */
321 case 0x18: /* Invalid Target Direction received from Host-The direction of a
322 Target Mode CCB was invalid. */
323
324 case 0x19: /* Duplicate CCB Received in Target Mode-More than once CCB was
325 received to service data transfer between the same target LUN
326 and initiator SCSI ID in the same direction. */
327
328 case 0x1a: /* Invalid CCB or Segment List Parameter-A segment list with a zero
329 length segment or invalid segment list boundaries was received.
330 A CCB parameter was invalid. */
331 DEB(printk("Aha1542: %x %x\n", hosterr, scsierr));
332 hosterr = DID_ERROR; /* Couldn't find any better */
333 break;
334
335 case 0x14: /* Target bus phase sequence failure-An invalid bus phase or bus
336 phase sequence was requested by the target. The host adapter
337 will generate a SCSI Reset Condition, notifying the host with
338 a SCRD interrupt */
339 hosterr = DID_RESET;
340 break;
341 default:
342 printk(KERN_ERR "aha1542: makecode: unknown hoststatus %x\n", hosterr);
343 break;
344 }
345 return scsierr | (hosterr << 16);
346 }
347
aha1542_test_port(int bse,struct Scsi_Host * shpnt)348 static int __init aha1542_test_port(int bse, struct Scsi_Host *shpnt)
349 {
350 unchar inquiry_cmd[] = {CMD_INQUIRY};
351 unchar inquiry_result[4];
352 unchar *cmdp;
353 int len;
354 volatile int debug = 0;
355
356 /* Quick and dirty test for presence of the card. */
357 if (inb(STATUS(bse)) == 0xff)
358 return 0;
359
360 /* Reset the adapter. I ought to make a hard reset, but it's not really necessary */
361
362 /* DEB(printk("aha1542_test_port called \n")); */
363
364 /* In case some other card was probing here, reset interrupts */
365 aha1542_intr_reset(bse); /* reset interrupts, so they don't block */
366
367 outb(SRST | IRST /*|SCRST */ , CONTROL(bse));
368
369 mdelay(20); /* Wait a little bit for things to settle down. */
370
371 debug = 1;
372 /* Expect INIT and IDLE, any of the others are bad */
373 WAIT(STATUS(bse), STATMASK, INIT | IDLE, STST | DIAGF | INVDCMD | DF | CDF);
374
375 debug = 2;
376 /* Shouldn't have generated any interrupts during reset */
377 if (inb(INTRFLAGS(bse)) & INTRMASK)
378 goto fail;
379
380
381 /* Perform a host adapter inquiry instead so we do not need to set
382 up the mailboxes ahead of time */
383
384 aha1542_out(bse, inquiry_cmd, 1);
385
386 debug = 3;
387 len = 4;
388 cmdp = &inquiry_result[0];
389
390 while (len--) {
391 WAIT(STATUS(bse), DF, DF, 0);
392 *cmdp++ = inb(DATA(bse));
393 }
394
395 debug = 8;
396 /* Reading port should reset DF */
397 if (inb(STATUS(bse)) & DF)
398 goto fail;
399
400 debug = 9;
401 /* When HACC, command is completed, and we're though testing */
402 WAIT(INTRFLAGS(bse), HACC, HACC, 0);
403 /* now initialize adapter */
404
405 debug = 10;
406 /* Clear interrupts */
407 outb(IRST, CONTROL(bse));
408
409 debug = 11;
410
411 return debug; /* 1 = ok */
412 fail:
413 return 0; /* 0 = not ok */
414 }
415
416 /* A quick wrapper for do_aha1542_intr_handle to grab the spin lock */
do_aha1542_intr_handle(int irq,void * dev_id,struct pt_regs * regs)417 static void do_aha1542_intr_handle(int irq, void *dev_id, struct pt_regs *regs)
418 {
419 unsigned long flags;
420
421 spin_lock_irqsave(&io_request_lock, flags);
422 aha1542_intr_handle(irq, dev_id, regs);
423 spin_unlock_irqrestore(&io_request_lock, flags);
424 }
425
426 /* A "high" level interrupt handler */
aha1542_intr_handle(int irq,void * dev_id,struct pt_regs * regs)427 static void aha1542_intr_handle(int irq, void *dev_id, struct pt_regs *regs)
428 {
429 void (*my_done) (Scsi_Cmnd *) = NULL;
430 int errstatus, mbi, mbo, mbistatus;
431 int number_serviced;
432 unsigned long flags;
433 struct Scsi_Host *shost;
434 Scsi_Cmnd *SCtmp;
435 int flag;
436 int needs_restart;
437 struct mailbox *mb;
438 struct ccb *ccb;
439
440 shost = aha_host[irq - 9];
441 if (!shost)
442 panic("Splunge!");
443
444 mb = HOSTDATA(shost)->mb;
445 ccb = HOSTDATA(shost)->ccb;
446
447 #ifdef DEBUG
448 {
449 flag = inb(INTRFLAGS(shost->io_port));
450 printk(KERN_DEBUG "aha1542_intr_handle: ");
451 if (!(flag & ANYINTR))
452 printk("no interrupt?");
453 if (flag & MBIF)
454 printk("MBIF ");
455 if (flag & MBOA)
456 printk("MBOF ");
457 if (flag & HACC)
458 printk("HACC ");
459 if (flag & SCRD)
460 printk("SCRD ");
461 printk("status %02x\n", inb(STATUS(shost->io_port)));
462 };
463 #endif
464 number_serviced = 0;
465 needs_restart = 0;
466
467 while (1 == 1) {
468 flag = inb(INTRFLAGS(shost->io_port));
469
470 /* Check for unusual interrupts. If any of these happen, we should
471 probably do something special, but for now just printing a message
472 is sufficient. A SCSI reset detected is something that we really
473 need to deal with in some way. */
474 if (flag & ~MBIF) {
475 if (flag & MBOA)
476 printk("MBOF ");
477 if (flag & HACC)
478 printk("HACC ");
479 if (flag & SCRD) {
480 needs_restart = 1;
481 printk("SCRD ");
482 }
483 }
484 aha1542_intr_reset(shost->io_port);
485
486 save_flags(flags);
487 cli();
488 mbi = HOSTDATA(shost)->aha1542_last_mbi_used + 1;
489 if (mbi >= 2 * AHA1542_MAILBOXES)
490 mbi = AHA1542_MAILBOXES;
491
492 do {
493 if (mb[mbi].status != 0)
494 break;
495 mbi++;
496 if (mbi >= 2 * AHA1542_MAILBOXES)
497 mbi = AHA1542_MAILBOXES;
498 } while (mbi != HOSTDATA(shost)->aha1542_last_mbi_used);
499
500 if (mb[mbi].status == 0) {
501 restore_flags(flags);
502 /* Hmm, no mail. Must have read it the last time around */
503 if (!number_serviced && !needs_restart)
504 printk(KERN_WARNING "aha1542.c: interrupt received, but no mail.\n");
505 /* We detected a reset. Restart all pending commands for
506 devices that use the hard reset option */
507 if (needs_restart)
508 aha1542_restart(shost);
509 return;
510 };
511
512 mbo = (scsi2int(mb[mbi].ccbptr) - (SCSI_PA(&ccb[0]))) / sizeof(struct ccb);
513 mbistatus = mb[mbi].status;
514 mb[mbi].status = 0;
515 HOSTDATA(shost)->aha1542_last_mbi_used = mbi;
516 restore_flags(flags);
517
518 #ifdef DEBUG
519 {
520 if (ccb[mbo].tarstat | ccb[mbo].hastat)
521 printk(KERN_DEBUG "aha1542_command: returning %x (status %d)\n",
522 ccb[mbo].tarstat + ((int) ccb[mbo].hastat << 16), mb[mbi].status);
523 };
524 #endif
525
526 if (mbistatus == 3)
527 continue; /* Aborted command not found */
528
529 #ifdef DEBUG
530 printk(KERN_DEBUG "...done %d %d\n", mbo, mbi);
531 #endif
532
533 SCtmp = HOSTDATA(shost)->SCint[mbo];
534
535 if (!SCtmp || !SCtmp->scsi_done) {
536 printk(KERN_WARNING "aha1542_intr_handle: Unexpected interrupt\n");
537 printk(KERN_WARNING "tarstat=%x, hastat=%x idlun=%x ccb#=%d \n", ccb[mbo].tarstat,
538 ccb[mbo].hastat, ccb[mbo].idlun, mbo);
539 return;
540 }
541 my_done = SCtmp->scsi_done;
542 if (SCtmp->host_scribble) {
543 scsi_free(SCtmp->host_scribble, 512);
544 SCtmp->host_scribble = 0;
545 }
546 /* Fetch the sense data, and tuck it away, in the required slot. The
547 Adaptec automatically fetches it, and there is no guarantee that
548 we will still have it in the cdb when we come back */
549 if (ccb[mbo].tarstat == 2)
550 memcpy(SCtmp->sense_buffer, &ccb[mbo].cdb[ccb[mbo].cdblen],
551 sizeof(SCtmp->sense_buffer));
552
553
554 /* is there mail :-) */
555
556 /* more error checking left out here */
557 if (mbistatus != 1)
558 /* This is surely wrong, but I don't know what's right */
559 errstatus = makecode(ccb[mbo].hastat, ccb[mbo].tarstat);
560 else
561 errstatus = 0;
562
563 #ifdef DEBUG
564 if (errstatus)
565 printk(KERN_DEBUG "(aha1542 error:%x %x %x) ", errstatus,
566 ccb[mbo].hastat, ccb[mbo].tarstat);
567 #endif
568
569 if (ccb[mbo].tarstat == 2) {
570 #ifdef DEBUG
571 int i;
572 #endif
573 DEB(printk("aha1542_intr_handle: sense:"));
574 #ifdef DEBUG
575 for (i = 0; i < 12; i++)
576 printk("%02x ", ccb[mbo].cdb[ccb[mbo].cdblen + i]);
577 printk("\n");
578 #endif
579 /*
580 DEB(printk("aha1542_intr_handle: buf:"));
581 for (i = 0; i < bufflen; i++)
582 printk("%02x ", ((unchar *)buff)[i]);
583 printk("\n");
584 */
585 }
586 DEB(if (errstatus) printk("aha1542_intr_handle: returning %6x\n", errstatus));
587 SCtmp->result = errstatus;
588 HOSTDATA(shost)->SCint[mbo] = NULL; /* This effectively frees up the mailbox slot, as
589 far as queuecommand is concerned */
590 my_done(SCtmp);
591 number_serviced++;
592 };
593 }
594
aha1542_queuecommand(Scsi_Cmnd * SCpnt,void (* done)(Scsi_Cmnd *))595 static int aha1542_queuecommand(Scsi_Cmnd * SCpnt, void (*done) (Scsi_Cmnd *))
596 {
597 unchar ahacmd = CMD_START_SCSI;
598 unchar direction;
599 unchar *cmd = (unchar *) SCpnt->cmnd;
600 unchar target = SCpnt->target;
601 unchar lun = SCpnt->lun;
602 unsigned long flags;
603 void *buff = SCpnt->request_buffer;
604 int bufflen = SCpnt->request_bufflen;
605 int mbo;
606 struct mailbox *mb;
607 struct ccb *ccb;
608
609 DEB(int i);
610
611 mb = HOSTDATA(SCpnt->host)->mb;
612 ccb = HOSTDATA(SCpnt->host)->ccb;
613
614 DEB(if (target > 1) {
615 SCpnt->result = DID_TIME_OUT << 16;
616 done(SCpnt); return 0;
617 }
618 );
619
620 if (*cmd == REQUEST_SENSE) {
621 /* Don't do the command - we have the sense data already */
622 #if 0
623 /* scsi_request_sense() provides a buffer of size 256,
624 so there is no reason to expect equality */
625 if (bufflen != sizeof(SCpnt->sense_buffer))
626 printk(KERN_CRIT "aha1542: Wrong buffer length supplied "
627 "for request sense (%d)\n", bufflen);
628 #endif
629 SCpnt->result = 0;
630 done(SCpnt);
631 return 0;
632 }
633 #ifdef DEBUG
634 if (*cmd == READ_10 || *cmd == WRITE_10)
635 i = xscsi2int(cmd + 2);
636 else if (*cmd == READ_6 || *cmd == WRITE_6)
637 i = scsi2int(cmd + 2);
638 else
639 i = -1;
640 if (done)
641 printk(KERN_DEBUG "aha1542_queuecommand: dev %d cmd %02x pos %d len %d ", target, *cmd, i, bufflen);
642 else
643 printk(KERN_DEBUG "aha1542_command: dev %d cmd %02x pos %d len %d ", target, *cmd, i, bufflen);
644 aha1542_stat();
645 printk(KERN_DEBUG "aha1542_queuecommand: dumping scsi cmd:");
646 for (i = 0; i < SCpnt->cmd_len; i++)
647 printk("%02x ", cmd[i]);
648 printk("\n");
649 if (*cmd == WRITE_10 || *cmd == WRITE_6)
650 return 0; /* we are still testing, so *don't* write */
651 #endif
652 /* Use the outgoing mailboxes in a round-robin fashion, because this
653 is how the host adapter will scan for them */
654
655 save_flags(flags);
656 cli();
657 mbo = HOSTDATA(SCpnt->host)->aha1542_last_mbo_used + 1;
658 if (mbo >= AHA1542_MAILBOXES)
659 mbo = 0;
660
661 do {
662 if (mb[mbo].status == 0 && HOSTDATA(SCpnt->host)->SCint[mbo] == NULL)
663 break;
664 mbo++;
665 if (mbo >= AHA1542_MAILBOXES)
666 mbo = 0;
667 } while (mbo != HOSTDATA(SCpnt->host)->aha1542_last_mbo_used);
668
669 if (mb[mbo].status || HOSTDATA(SCpnt->host)->SCint[mbo])
670 panic("Unable to find empty mailbox for aha1542.\n");
671
672 HOSTDATA(SCpnt->host)->SCint[mbo] = SCpnt; /* This will effectively prevent someone else from
673 screwing with this cdb. */
674
675 HOSTDATA(SCpnt->host)->aha1542_last_mbo_used = mbo;
676 restore_flags(flags);
677
678 #ifdef DEBUG
679 printk(KERN_DEBUG "Sending command (%d %x)...", mbo, done);
680 #endif
681
682 any2scsi(mb[mbo].ccbptr, SCSI_PA(&ccb[mbo])); /* This gets trashed for some reason */
683
684 memset(&ccb[mbo], 0, sizeof(struct ccb));
685
686 ccb[mbo].cdblen = SCpnt->cmd_len;
687
688 direction = 0;
689 if (*cmd == READ_10 || *cmd == READ_6)
690 direction = 8;
691 else if (*cmd == WRITE_10 || *cmd == WRITE_6)
692 direction = 16;
693
694 memcpy(ccb[mbo].cdb, cmd, ccb[mbo].cdblen);
695
696 if (SCpnt->use_sg) {
697 struct scatterlist *sgpnt;
698 struct chain *cptr;
699 #ifdef DEBUG
700 unsigned char *ptr;
701 #endif
702 int i;
703 ccb[mbo].op = 2; /* SCSI Initiator Command w/scatter-gather */
704 SCpnt->host_scribble = (unsigned char *) scsi_malloc(512);
705 sgpnt = (struct scatterlist *) SCpnt->request_buffer;
706 cptr = (struct chain *) SCpnt->host_scribble;
707 if (cptr == NULL)
708 panic("aha1542.c: unable to allocate DMA memory\n");
709 for (i = 0; i < SCpnt->use_sg; i++) {
710 if (sgpnt[i].length == 0 || SCpnt->use_sg > 16 ||
711 (((int) sgpnt[i].address) & 1) || (sgpnt[i].length & 1)) {
712 unsigned char *ptr;
713 printk(KERN_CRIT "Bad segment list supplied to aha1542.c (%d, %d)\n", SCpnt->use_sg, i);
714 for (i = 0; i < SCpnt->use_sg; i++) {
715 printk(KERN_CRIT "%d: %p %d\n", i, sgpnt[i].address,
716 sgpnt[i].length);
717 };
718 printk(KERN_CRIT "cptr %x: ", (unsigned int) cptr);
719 ptr = (unsigned char *) &cptr[i];
720 for (i = 0; i < 18; i++)
721 printk("%02x ", ptr[i]);
722 panic("Foooooooood fight!");
723 };
724 any2scsi(cptr[i].dataptr, SCSI_PA(sgpnt[i].address));
725 if (SCSI_PA(sgpnt[i].address + sgpnt[i].length - 1) > ISA_DMA_THRESHOLD)
726 BAD_SG_DMA(SCpnt, sgpnt, SCpnt->use_sg, i);
727 any2scsi(cptr[i].datalen, sgpnt[i].length);
728 };
729 any2scsi(ccb[mbo].datalen, SCpnt->use_sg * sizeof(struct chain));
730 any2scsi(ccb[mbo].dataptr, SCSI_PA(cptr));
731 #ifdef DEBUG
732 printk("cptr %x: ", cptr);
733 ptr = (unsigned char *) cptr;
734 for (i = 0; i < 18; i++)
735 printk("%02x ", ptr[i]);
736 #endif
737 } else {
738 ccb[mbo].op = 0; /* SCSI Initiator Command */
739 SCpnt->host_scribble = NULL;
740 any2scsi(ccb[mbo].datalen, bufflen);
741 if (buff && SCSI_PA(buff + bufflen - 1) > ISA_DMA_THRESHOLD)
742 BAD_DMA(buff, bufflen);
743 any2scsi(ccb[mbo].dataptr, SCSI_PA(buff));
744 };
745 ccb[mbo].idlun = (target & 7) << 5 | direction | (lun & 7); /*SCSI Target Id */
746 ccb[mbo].rsalen = 16;
747 ccb[mbo].linkptr[0] = ccb[mbo].linkptr[1] = ccb[mbo].linkptr[2] = 0;
748 ccb[mbo].commlinkid = 0;
749
750 #ifdef DEBUG
751 {
752 int i;
753 printk(KERN_DEBUG "aha1542_command: sending.. ");
754 for (i = 0; i < sizeof(ccb[mbo]) - 10; i++)
755 printk("%02x ", ((unchar *) & ccb[mbo])[i]);
756 };
757 #endif
758
759 if (done) {
760 DEB(printk("aha1542_queuecommand: now waiting for interrupt ");
761 aha1542_stat());
762 SCpnt->scsi_done = done;
763 mb[mbo].status = 1;
764 aha1542_out(SCpnt->host->io_port, &ahacmd, 1); /* start scsi command */
765 DEB(aha1542_stat());
766 } else
767 printk("aha1542_queuecommand: done can't be NULL\n");
768
769 return 0;
770 }
771
internal_done(Scsi_Cmnd * SCpnt)772 static void internal_done(Scsi_Cmnd * SCpnt)
773 {
774 SCpnt->SCp.Status++;
775 }
776
aha1542_command(Scsi_Cmnd * SCpnt)777 static int aha1542_command(Scsi_Cmnd * SCpnt)
778 {
779 DEB(printk("aha1542_command: ..calling aha1542_queuecommand\n"));
780
781 aha1542_queuecommand(SCpnt, internal_done);
782
783 SCpnt->SCp.Status = 0;
784 while (!SCpnt->SCp.Status)
785 barrier();
786 return SCpnt->result;
787 }
788
789 /* Initialize mailboxes */
setup_mailboxes(int bse,struct Scsi_Host * shpnt)790 static void setup_mailboxes(int bse, struct Scsi_Host *shpnt)
791 {
792 int i;
793 struct mailbox *mb;
794 struct ccb *ccb;
795
796 unchar cmd[5] = { CMD_MBINIT, AHA1542_MAILBOXES, 0, 0, 0};
797
798 mb = HOSTDATA(shpnt)->mb;
799 ccb = HOSTDATA(shpnt)->ccb;
800
801 for (i = 0; i < AHA1542_MAILBOXES; i++) {
802 mb[i].status = mb[AHA1542_MAILBOXES + i].status = 0;
803 any2scsi(mb[i].ccbptr, SCSI_PA(&ccb[i]));
804 };
805 aha1542_intr_reset(bse); /* reset interrupts, so they don't block */
806 any2scsi((cmd + 2), SCSI_PA(mb));
807 aha1542_out(bse, cmd, 5);
808 WAIT(INTRFLAGS(bse), INTRMASK, HACC, 0);
809 while (0) {
810 fail:
811 printk(KERN_ERR "aha1542_detect: failed setting up mailboxes\n");
812 }
813 aha1542_intr_reset(bse);
814 }
815
aha1542_getconfig(int base_io,unsigned char * irq_level,unsigned char * dma_chan,unsigned char * scsi_id)816 static int __init aha1542_getconfig(int base_io, unsigned char *irq_level, unsigned char *dma_chan, unsigned char *scsi_id)
817 {
818 unchar inquiry_cmd[] = {CMD_RETCONF};
819 unchar inquiry_result[3];
820 int i;
821 i = inb(STATUS(base_io));
822 if (i & DF) {
823 i = inb(DATA(base_io));
824 };
825 aha1542_out(base_io, inquiry_cmd, 1);
826 aha1542_in(base_io, inquiry_result, 3);
827 WAIT(INTRFLAGS(base_io), INTRMASK, HACC, 0);
828 while (0) {
829 fail:
830 printk(KERN_ERR "aha1542_detect: query board settings\n");
831 }
832 aha1542_intr_reset(base_io);
833 switch (inquiry_result[0]) {
834 case 0x80:
835 *dma_chan = 7;
836 break;
837 case 0x40:
838 *dma_chan = 6;
839 break;
840 case 0x20:
841 *dma_chan = 5;
842 break;
843 case 0x01:
844 *dma_chan = 0;
845 break;
846 case 0:
847 /* This means that the adapter, although Adaptec 1542 compatible, doesn't use a DMA channel.
848 Currently only aware of the BusLogic BT-445S VL-Bus adapter which needs this. */
849 *dma_chan = 0xFF;
850 break;
851 default:
852 printk(KERN_ERR "Unable to determine Adaptec DMA priority. Disabling board\n");
853 return -1;
854 };
855 switch (inquiry_result[1]) {
856 case 0x40:
857 *irq_level = 15;
858 break;
859 case 0x20:
860 *irq_level = 14;
861 break;
862 case 0x8:
863 *irq_level = 12;
864 break;
865 case 0x4:
866 *irq_level = 11;
867 break;
868 case 0x2:
869 *irq_level = 10;
870 break;
871 case 0x1:
872 *irq_level = 9;
873 break;
874 default:
875 printk(KERN_ERR "Unable to determine Adaptec IRQ level. Disabling board\n");
876 return -1;
877 };
878 *scsi_id = inquiry_result[2] & 7;
879 return 0;
880 }
881
882 /* This function should only be called for 1542C boards - we can detect
883 the special firmware settings and unlock the board */
884
aha1542_mbenable(int base)885 static int __init aha1542_mbenable(int base)
886 {
887 static unchar mbenable_cmd[3];
888 static unchar mbenable_result[2];
889 int retval;
890
891 retval = BIOS_TRANSLATION_6432;
892
893 mbenable_cmd[0] = CMD_EXTBIOS;
894 aha1542_out(base, mbenable_cmd, 1);
895 if (aha1542_in1(base, mbenable_result, 2))
896 return retval;
897 WAITd(INTRFLAGS(base), INTRMASK, HACC, 0, 100);
898 aha1542_intr_reset(base);
899
900 if ((mbenable_result[0] & 0x08) || mbenable_result[1]) {
901 mbenable_cmd[0] = CMD_MBENABLE;
902 mbenable_cmd[1] = 0;
903 mbenable_cmd[2] = mbenable_result[1];
904
905 if ((mbenable_result[0] & 0x08) && (mbenable_result[1] & 0x03))
906 retval = BIOS_TRANSLATION_25563;
907
908 aha1542_out(base, mbenable_cmd, 3);
909 WAIT(INTRFLAGS(base), INTRMASK, HACC, 0);
910 };
911 while (0) {
912 fail:
913 printk(KERN_ERR "aha1542_mbenable: Mailbox init failed\n");
914 }
915 aha1542_intr_reset(base);
916 return retval;
917 }
918
919 /* Query the board to find out if it is a 1542 or a 1740, or whatever. */
aha1542_query(int base_io,int * transl)920 static int __init aha1542_query(int base_io, int *transl)
921 {
922 unchar inquiry_cmd[] = {CMD_INQUIRY};
923 unchar inquiry_result[4];
924 int i;
925 i = inb(STATUS(base_io));
926 if (i & DF) {
927 i = inb(DATA(base_io));
928 };
929 aha1542_out(base_io, inquiry_cmd, 1);
930 aha1542_in(base_io, inquiry_result, 4);
931 WAIT(INTRFLAGS(base_io), INTRMASK, HACC, 0);
932 while (0) {
933 fail:
934 printk(KERN_ERR "aha1542_detect: query card type\n");
935 }
936 aha1542_intr_reset(base_io);
937
938 *transl = BIOS_TRANSLATION_6432; /* Default case */
939
940 /* For an AHA1740 series board, we ignore the board since there is a
941 hardware bug which can lead to wrong blocks being returned if the board
942 is operating in the 1542 emulation mode. Since there is an extended mode
943 driver, we simply ignore the board and let the 1740 driver pick it up.
944 */
945
946 if (inquiry_result[0] == 0x43) {
947 printk(KERN_INFO "aha1542.c: Emulation mode not supported for AHA 174N hardware.\n");
948 return 1;
949 };
950
951 /* Always call this - boards that do not support extended bios translation
952 will ignore the command, and we will set the proper default */
953
954 *transl = aha1542_mbenable(base_io);
955
956 return 0;
957 }
958
959 #ifndef MODULE
960 static int setup_idx = 0;
961 static char *setup_str[MAXBOARDS] __initdata;
962
aha1542_setup(char * str,int * ints)963 void __init aha1542_setup(char *str, int *ints)
964 {
965 const char *ahausage = "aha1542: usage: aha1542=<PORTBASE>[,<BUSON>,<BUSOFF>[,<DMASPEED>]]\n";
966 int setup_portbase;
967
968 if (setup_idx >= MAXBOARDS) {
969 printk(KERN_ERR "aha1542: aha1542_setup called too many times! Bad LILO params ?\n");
970 printk(KERN_ERR " Entryline 1: %s\n", setup_str[0]);
971 printk(KERN_ERR " Entryline 2: %s\n", setup_str[1]);
972 printk(KERN_ERR " This line: %s\n", str);
973 return;
974 }
975 if (ints[0] < 1 || ints[0] > 4) {
976 printk(KERN_ERR "aha1542: %s\n", str);
977 printk(ahausage);
978 printk(KERN_ERR "aha1542: Wrong parameters may cause system malfunction.. We try anyway..\n");
979 }
980 setup_called[setup_idx] = ints[0];
981 setup_str[setup_idx] = str;
982
983 setup_portbase = ints[0] >= 1 ? ints[1] : 0; /* Preserve the default value.. */
984 setup_buson[setup_idx] = ints[0] >= 2 ? ints[2] : 7;
985 setup_busoff[setup_idx] = ints[0] >= 3 ? ints[3] : 5;
986 if (ints[0] >= 4)
987 {
988 int atbt = -1;
989 switch (ints[4]) {
990 case 5:
991 atbt = 0x00;
992 break;
993 case 6:
994 atbt = 0x04;
995 break;
996 case 7:
997 atbt = 0x01;
998 break;
999 case 8:
1000 atbt = 0x02;
1001 break;
1002 case 10:
1003 atbt = 0x03;
1004 break;
1005 default:
1006 printk(KERN_ERR "aha1542: %s\n", str);
1007 printk(ahausage);
1008 printk(KERN_ERR "aha1542: Valid values for DMASPEED are 5-8, 10 MB/s. Using jumper defaults.\n");
1009 break;
1010 }
1011 setup_dmaspeed[setup_idx] = atbt;
1012 }
1013 if (setup_portbase != 0)
1014 bases[setup_idx] = setup_portbase;
1015
1016 ++setup_idx;
1017 }
1018
do_setup(char * str)1019 static int __init do_setup(char *str)
1020 {
1021 int ints[4];
1022
1023 int count=setup_idx;
1024
1025 get_options(str, sizeof(ints)/sizeof(int), ints);
1026 aha1542_setup(str,ints);
1027
1028 return count<setup_idx;
1029 }
1030
1031 __setup("aha1542=",do_setup);
1032 #endif
1033
1034 /* return non-zero on detection */
aha1542_detect(Scsi_Host_Template * tpnt)1035 static int __init aha1542_detect(Scsi_Host_Template * tpnt)
1036 {
1037 unsigned char dma_chan;
1038 unsigned char irq_level;
1039 unsigned char scsi_id;
1040 unsigned long flags;
1041 unsigned int base_io;
1042 int trans;
1043 struct Scsi_Host *shpnt = NULL;
1044 int count = 0;
1045 int indx;
1046
1047 DEB(printk("aha1542_detect: \n"));
1048
1049 tpnt->proc_name = "aha1542";
1050
1051 #ifdef MODULE
1052 bases[0] = aha1542[0];
1053 setup_buson[0] = aha1542[1];
1054 setup_busoff[0] = aha1542[2];
1055 {
1056 int atbt = -1;
1057 switch (aha1542[3]) {
1058 case 5:
1059 atbt = 0x00;
1060 break;
1061 case 6:
1062 atbt = 0x04;
1063 break;
1064 case 7:
1065 atbt = 0x01;
1066 break;
1067 case 8:
1068 atbt = 0x02;
1069 break;
1070 case 10:
1071 atbt = 0x03;
1072 break;
1073 };
1074 setup_dmaspeed[0] = atbt;
1075 }
1076 #endif
1077
1078 /*
1079 * Find MicroChannel cards (AHA1640)
1080 */
1081 #ifdef CONFIG_MCA
1082 if(MCA_bus) {
1083 int slot = 0;
1084 int pos = 0;
1085
1086 for (indx = 0; (slot != MCA_NOTFOUND) &&
1087 (indx < sizeof(bases)/sizeof(bases[0])); indx++) {
1088
1089 if (bases[indx])
1090 continue;
1091
1092 /* Detect only AHA-1640 cards -- MCA ID 0F1F */
1093 slot = mca_find_unused_adapter(0x0f1f, slot);
1094 if (slot == MCA_NOTFOUND)
1095 break;
1096
1097
1098 /* Found one */
1099 pos = mca_read_stored_pos(slot, 3);
1100
1101 /* Decode address */
1102 if (pos & 0x80) {
1103 if (pos & 0x02) {
1104 if (pos & 0x01)
1105 bases[indx] = 0x334;
1106 else
1107 bases[indx] = 0x234;
1108 } else {
1109 if (pos & 0x01)
1110 bases[indx] = 0x134;
1111 }
1112 } else {
1113 if (pos & 0x02) {
1114 if (pos & 0x01)
1115 bases[indx] = 0x330;
1116 else
1117 bases[indx] = 0x230;
1118 } else {
1119 if (pos & 0x01)
1120 bases[indx] = 0x130;
1121 }
1122 }
1123
1124 /* No need to decode IRQ and Arb level -- those are
1125 * read off the card later.
1126 */
1127 printk(KERN_INFO "Found an AHA-1640 in MCA slot %d, I/O 0x%04x\n", slot, bases[indx]);
1128
1129 mca_set_adapter_name(slot, "Adapter AHA-1640");
1130 mca_set_adapter_procfn(slot, NULL, NULL);
1131 mca_mark_as_used(slot);
1132
1133 /* Go on */
1134 slot++;
1135 }
1136
1137 }
1138 #endif
1139
1140 /*
1141 * Hunt for ISA Plug'n'Pray Adaptecs (AHA1535)
1142 */
1143
1144 if(isapnp)
1145 {
1146 struct pci_dev *pdev = NULL;
1147 for(indx = 0; indx <sizeof(bases)/sizeof(bases[0]);indx++)
1148 {
1149 if(bases[indx])
1150 continue;
1151 pdev = isapnp_find_dev(NULL, ISAPNP_VENDOR('A', 'D', 'P'),
1152 ISAPNP_FUNCTION(0x1542), pdev);
1153 if(pdev==NULL)
1154 break;
1155 /*
1156 * Activate the PnP card
1157 */
1158
1159 if(pdev->prepare(pdev)<0)
1160 continue;
1161
1162 if(!(pdev->resource[0].flags&IORESOURCE_IO))
1163 continue;
1164
1165 pdev->resource[0].flags|=IORESOURCE_AUTO;
1166
1167 if(pdev->activate(pdev)<0)
1168 continue;
1169
1170 bases[indx] = pdev->resource[0].start;
1171
1172 /* The card can be queried for its DMA, we have
1173 the DMA set up that is enough */
1174
1175 printk(KERN_INFO "ISAPnP found an AHA1535 at I/O 0x%03X\n", bases[indx]);
1176 }
1177 }
1178 for (indx = 0; indx < sizeof(bases) / sizeof(bases[0]); indx++)
1179 if (bases[indx] != 0 && !check_region(bases[indx], 4)) {
1180 shpnt = scsi_register(tpnt,
1181 sizeof(struct aha1542_hostdata));
1182
1183 if(shpnt==NULL)
1184 continue;
1185 /* For now we do this - until kmalloc is more intelligent
1186 we are resigned to stupid hacks like this */
1187 if (SCSI_PA(shpnt) >= ISA_DMA_THRESHOLD) {
1188 printk(KERN_ERR "Invalid address for shpnt with 1542.\n");
1189 goto unregister;
1190 }
1191 if (!aha1542_test_port(bases[indx], shpnt))
1192 goto unregister;
1193
1194
1195 base_io = bases[indx];
1196
1197 /* Set the Bus on/off-times as not to ruin floppy performance */
1198 {
1199 unchar oncmd[] = {CMD_BUSON_TIME, 7};
1200 unchar offcmd[] = {CMD_BUSOFF_TIME, 5};
1201
1202 if (setup_called[indx]) {
1203 oncmd[1] = setup_buson[indx];
1204 offcmd[1] = setup_busoff[indx];
1205 }
1206 aha1542_intr_reset(base_io);
1207 aha1542_out(base_io, oncmd, 2);
1208 WAIT(INTRFLAGS(base_io), INTRMASK, HACC, 0);
1209 aha1542_intr_reset(base_io);
1210 aha1542_out(base_io, offcmd, 2);
1211 WAIT(INTRFLAGS(base_io), INTRMASK, HACC, 0);
1212 if (setup_dmaspeed[indx] >= 0) {
1213 unchar dmacmd[] = {CMD_DMASPEED, 0};
1214 dmacmd[1] = setup_dmaspeed[indx];
1215 aha1542_intr_reset(base_io);
1216 aha1542_out(base_io, dmacmd, 2);
1217 WAIT(INTRFLAGS(base_io), INTRMASK, HACC, 0);
1218 }
1219 while (0) {
1220 fail:
1221 printk(KERN_ERR "aha1542_detect: setting bus on/off-time failed\n");
1222 }
1223 aha1542_intr_reset(base_io);
1224 }
1225 if (aha1542_query(base_io, &trans))
1226 goto unregister;
1227
1228 if (aha1542_getconfig(base_io, &irq_level, &dma_chan, &scsi_id) == -1)
1229 goto unregister;
1230
1231 printk(KERN_INFO "Configuring Adaptec (SCSI-ID %d) at IO:%x, IRQ %d", scsi_id, base_io, irq_level);
1232 if (dma_chan != 0xFF)
1233 printk(", DMA priority %d", dma_chan);
1234 printk("\n");
1235
1236 DEB(aha1542_stat());
1237 setup_mailboxes(base_io, shpnt);
1238
1239 DEB(aha1542_stat());
1240
1241 DEB(printk("aha1542_detect: enable interrupt channel %d\n", irq_level));
1242 save_flags(flags);
1243 cli();
1244 if (request_irq(irq_level, do_aha1542_intr_handle, 0, "aha1542", NULL)) {
1245 printk(KERN_ERR "Unable to allocate IRQ for adaptec controller.\n");
1246 restore_flags(flags);
1247 goto unregister;
1248 }
1249 if (dma_chan != 0xFF) {
1250 if (request_dma(dma_chan, "aha1542")) {
1251 printk(KERN_ERR "Unable to allocate DMA channel for Adaptec.\n");
1252 free_irq(irq_level, NULL);
1253 restore_flags(flags);
1254 goto unregister;
1255 }
1256 if (dma_chan == 0 || dma_chan >= 5) {
1257 set_dma_mode(dma_chan, DMA_MODE_CASCADE);
1258 enable_dma(dma_chan);
1259 }
1260 }
1261 aha_host[irq_level - 9] = shpnt;
1262 shpnt->this_id = scsi_id;
1263 shpnt->unique_id = base_io;
1264 shpnt->io_port = base_io;
1265 shpnt->n_io_port = 4; /* Number of bytes of I/O space used */
1266 shpnt->dma_channel = dma_chan;
1267 shpnt->irq = irq_level;
1268 HOSTDATA(shpnt)->bios_translation = trans;
1269 if (trans == BIOS_TRANSLATION_25563)
1270 printk(KERN_INFO "aha1542.c: Using extended bios translation\n");
1271 HOSTDATA(shpnt)->aha1542_last_mbi_used = (2 * AHA1542_MAILBOXES - 1);
1272 HOSTDATA(shpnt)->aha1542_last_mbo_used = (AHA1542_MAILBOXES - 1);
1273 memset(HOSTDATA(shpnt)->SCint, 0, sizeof(HOSTDATA(shpnt)->SCint));
1274 restore_flags(flags);
1275 #if 0
1276 DEB(printk(" *** READ CAPACITY ***\n"));
1277
1278 {
1279 unchar buf[8];
1280 static unchar cmd[] = { READ_CAPACITY, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
1281 int i;
1282
1283 for (i = 0; i < sizeof(buf); ++i)
1284 buf[i] = 0x87;
1285 for (i = 0; i < 2; ++i)
1286 if (!aha1542_command(i, cmd, buf, sizeof(buf))) {
1287 printk(KERN_DEBUG "aha_detect: LU %d sector_size %d device_size %d\n",
1288 i, xscsi2int(buf + 4), xscsi2int(buf));
1289 }
1290 }
1291
1292 DEB(printk(" *** NOW RUNNING MY OWN TEST *** \n"));
1293
1294 for (i = 0; i < 4; ++i) {
1295 unsigned char cmd[10];
1296 static buffer[512];
1297
1298 cmd[0] = READ_10;
1299 cmd[1] = 0;
1300 xany2scsi(cmd + 2, i);
1301 cmd[6] = 0;
1302 cmd[7] = 0;
1303 cmd[8] = 1;
1304 cmd[9] = 0;
1305 aha1542_command(0, cmd, buffer, 512);
1306 }
1307 #endif
1308 request_region(bases[indx], 4, "aha1542"); /* Register the IO ports that we use */
1309 count++;
1310 continue;
1311 unregister:
1312 scsi_unregister(shpnt);
1313 continue;
1314
1315 };
1316
1317 return count;
1318 }
1319
aha1542_restart(struct Scsi_Host * shost)1320 static int aha1542_restart(struct Scsi_Host *shost)
1321 {
1322 int i;
1323 int count = 0;
1324 #if 0
1325 unchar ahacmd = CMD_START_SCSI;
1326 #endif
1327
1328 for (i = 0; i < AHA1542_MAILBOXES; i++)
1329 if (HOSTDATA(shost)->SCint[i] &&
1330 !(HOSTDATA(shost)->SCint[i]->device->soft_reset)) {
1331 #if 0
1332 HOSTDATA(shost)->mb[i].status = 1; /* Indicate ready to restart... */
1333 #endif
1334 count++;
1335 }
1336 printk(KERN_DEBUG "Potential to restart %d stalled commands...\n", count);
1337 #if 0
1338 /* start scsi command */
1339 if (count)
1340 aha1542_out(shost->io_port, &ahacmd, 1);
1341 #endif
1342 return 0;
1343 }
1344
aha1542_abort(Scsi_Cmnd * SCpnt)1345 static int aha1542_abort(Scsi_Cmnd * SCpnt)
1346 {
1347
1348 /*
1349 * The abort command does not leave the device in a clean state where
1350 * it is available to be used again. Until this gets worked out, we
1351 * will leave it commented out.
1352 */
1353
1354 printk(KERN_ERR "aha1542.c: Unable to abort command for target %d\n",
1355 SCpnt->target);
1356 return FAILED;
1357 }
1358
1359 /*
1360 * This is a device reset. This is handled by sending a special command
1361 * to the device.
1362 */
aha1542_dev_reset(Scsi_Cmnd * SCpnt)1363 static int aha1542_dev_reset(Scsi_Cmnd * SCpnt)
1364 {
1365 unsigned long flags;
1366 struct mailbox *mb;
1367 unchar target = SCpnt->target;
1368 unchar lun = SCpnt->lun;
1369 int mbo;
1370 struct ccb *ccb;
1371 unchar ahacmd = CMD_START_SCSI;
1372
1373 ccb = HOSTDATA(SCpnt->host)->ccb;
1374 mb = HOSTDATA(SCpnt->host)->mb;
1375
1376 save_flags(flags);
1377 cli();
1378 mbo = HOSTDATA(SCpnt->host)->aha1542_last_mbo_used + 1;
1379 if (mbo >= AHA1542_MAILBOXES)
1380 mbo = 0;
1381
1382 do {
1383 if (mb[mbo].status == 0 && HOSTDATA(SCpnt->host)->SCint[mbo] == NULL)
1384 break;
1385 mbo++;
1386 if (mbo >= AHA1542_MAILBOXES)
1387 mbo = 0;
1388 } while (mbo != HOSTDATA(SCpnt->host)->aha1542_last_mbo_used);
1389
1390 if (mb[mbo].status || HOSTDATA(SCpnt->host)->SCint[mbo])
1391 panic("Unable to find empty mailbox for aha1542.\n");
1392
1393 HOSTDATA(SCpnt->host)->SCint[mbo] = SCpnt; /* This will effectively
1394 prevent someone else from
1395 screwing with this cdb. */
1396
1397 HOSTDATA(SCpnt->host)->aha1542_last_mbo_used = mbo;
1398 restore_flags(flags);
1399
1400 any2scsi(mb[mbo].ccbptr, SCSI_PA(&ccb[mbo])); /* This gets trashed for some reason */
1401
1402 memset(&ccb[mbo], 0, sizeof(struct ccb));
1403
1404 ccb[mbo].op = 0x81; /* BUS DEVICE RESET */
1405
1406 ccb[mbo].idlun = (target & 7) << 5 | (lun & 7); /*SCSI Target Id */
1407
1408 ccb[mbo].linkptr[0] = ccb[mbo].linkptr[1] = ccb[mbo].linkptr[2] = 0;
1409 ccb[mbo].commlinkid = 0;
1410
1411 /*
1412 * Now tell the 1542 to flush all pending commands for this
1413 * target
1414 */
1415 aha1542_out(SCpnt->host->io_port, &ahacmd, 1);
1416
1417 printk(KERN_WARNING "aha1542.c: Trying device reset for target %d\n", SCpnt->target);
1418
1419 return SUCCESS;
1420
1421
1422 #ifdef ERIC_neverdef
1423 /*
1424 * With the 1542 we apparently never get an interrupt to
1425 * acknowledge a device reset being sent. Then again, Leonard
1426 * says we are doing this wrong in the first place...
1427 *
1428 * Take a wait and see attitude. If we get spurious interrupts,
1429 * then the device reset is doing something sane and useful, and
1430 * we will wait for the interrupt to post completion.
1431 */
1432 printk(KERN_WARNING "Sent BUS DEVICE RESET to target %d\n", SCpnt->target);
1433
1434 /*
1435 * Free the command block for all commands running on this
1436 * target...
1437 */
1438 for (i = 0; i < AHA1542_MAILBOXES; i++) {
1439 if (HOSTDATA(SCpnt->host)->SCint[i] &&
1440 HOSTDATA(SCpnt->host)->SCint[i]->target == SCpnt->target) {
1441 Scsi_Cmnd *SCtmp;
1442 SCtmp = HOSTDATA(SCpnt->host)->SCint[i];
1443 if (SCtmp->host_scribble) {
1444 scsi_free(SCtmp->host_scribble, 512);
1445 SCtmp->host_scribble = NULL;
1446 }
1447 HOSTDATA(SCpnt->host)->SCint[i] = NULL;
1448 HOSTDATA(SCpnt->host)->mb[i].status = 0;
1449 }
1450 }
1451 return SUCCESS;
1452
1453 return FAILED;
1454 #endif /* ERIC_neverdef */
1455 }
1456
aha1542_bus_reset(Scsi_Cmnd * SCpnt)1457 static int aha1542_bus_reset(Scsi_Cmnd * SCpnt)
1458 {
1459 int i;
1460
1461 /*
1462 * This does a scsi reset for all devices on the bus.
1463 * In principle, we could also reset the 1542 - should
1464 * we do this? Try this first, and we can add that later
1465 * if it turns out to be useful.
1466 */
1467 outb(SCRST, CONTROL(SCpnt->host->io_port));
1468
1469 /*
1470 * Wait for the thing to settle down a bit. Unfortunately
1471 * this is going to basically lock up the machine while we
1472 * wait for this to complete. To be 100% correct, we need to
1473 * check for timeout, and if we are doing something like this
1474 * we are pretty desperate anyways.
1475 */
1476 spin_unlock_irq(&io_request_lock);
1477 scsi_sleep(4 * HZ);
1478 spin_lock_irq(&io_request_lock);
1479
1480 WAIT(STATUS(SCpnt->host->io_port),
1481 STATMASK, INIT | IDLE, STST | DIAGF | INVDCMD | DF | CDF);
1482
1483 /*
1484 * Now try to pick up the pieces. For all pending commands,
1485 * free any internal data structures, and basically clear things
1486 * out. We do not try and restart any commands or anything -
1487 * the strategy handler takes care of that crap.
1488 */
1489 printk(KERN_WARNING "Sent BUS RESET to scsi host %d\n", SCpnt->host->host_no);
1490
1491 for (i = 0; i < AHA1542_MAILBOXES; i++) {
1492 if (HOSTDATA(SCpnt->host)->SCint[i] != NULL) {
1493 Scsi_Cmnd *SCtmp;
1494 SCtmp = HOSTDATA(SCpnt->host)->SCint[i];
1495
1496
1497 if (SCtmp->device->soft_reset) {
1498 /*
1499 * If this device implements the soft reset option,
1500 * then it is still holding onto the command, and
1501 * may yet complete it. In this case, we don't
1502 * flush the data.
1503 */
1504 continue;
1505 }
1506 if (SCtmp->host_scribble) {
1507 scsi_free(SCtmp->host_scribble, 512);
1508 SCtmp->host_scribble = NULL;
1509 }
1510 HOSTDATA(SCpnt->host)->SCint[i] = NULL;
1511 HOSTDATA(SCpnt->host)->mb[i].status = 0;
1512 }
1513 }
1514
1515 return SUCCESS;
1516
1517 fail:
1518 return FAILED;
1519 }
1520
aha1542_host_reset(Scsi_Cmnd * SCpnt)1521 static int aha1542_host_reset(Scsi_Cmnd * SCpnt)
1522 {
1523 int i;
1524
1525 /*
1526 * This does a scsi reset for all devices on the bus.
1527 * In principle, we could also reset the 1542 - should
1528 * we do this? Try this first, and we can add that later
1529 * if it turns out to be useful.
1530 */
1531 outb(HRST | SCRST, CONTROL(SCpnt->host->io_port));
1532
1533 /*
1534 * Wait for the thing to settle down a bit. Unfortunately
1535 * this is going to basically lock up the machine while we
1536 * wait for this to complete. To be 100% correct, we need to
1537 * check for timeout, and if we are doing something like this
1538 * we are pretty desperate anyways.
1539 */
1540 spin_unlock_irq(&io_request_lock);
1541 scsi_sleep(4 * HZ);
1542 spin_lock_irq(&io_request_lock);
1543
1544 WAIT(STATUS(SCpnt->host->io_port),
1545 STATMASK, INIT | IDLE, STST | DIAGF | INVDCMD | DF | CDF);
1546
1547 /*
1548 * We need to do this too before the 1542 can interact with
1549 * us again.
1550 */
1551 setup_mailboxes(SCpnt->host->io_port, SCpnt->host);
1552
1553 /*
1554 * Now try to pick up the pieces. For all pending commands,
1555 * free any internal data structures, and basically clear things
1556 * out. We do not try and restart any commands or anything -
1557 * the strategy handler takes care of that crap.
1558 */
1559 printk(KERN_WARNING "Sent BUS RESET to scsi host %d\n", SCpnt->host->host_no);
1560
1561 for (i = 0; i < AHA1542_MAILBOXES; i++) {
1562 if (HOSTDATA(SCpnt->host)->SCint[i] != NULL) {
1563 Scsi_Cmnd *SCtmp;
1564 SCtmp = HOSTDATA(SCpnt->host)->SCint[i];
1565
1566 if (SCtmp->device->soft_reset) {
1567 /*
1568 * If this device implements the soft reset option,
1569 * then it is still holding onto the command, and
1570 * may yet complete it. In this case, we don't
1571 * flush the data.
1572 */
1573 continue;
1574 }
1575 if (SCtmp->host_scribble) {
1576 scsi_free(SCtmp->host_scribble, 512);
1577 SCtmp->host_scribble = NULL;
1578 }
1579 HOSTDATA(SCpnt->host)->SCint[i] = NULL;
1580 HOSTDATA(SCpnt->host)->mb[i].status = 0;
1581 }
1582 }
1583
1584 return SUCCESS;
1585
1586 fail:
1587 return FAILED;
1588 }
1589
1590 /*
1591 * These are the old error handling routines. They are only temporarily
1592 * here while we play with the new error handling code.
1593 */
aha1542_old_abort(Scsi_Cmnd * SCpnt)1594 static int aha1542_old_abort(Scsi_Cmnd * SCpnt)
1595 {
1596 #if 0
1597 unchar ahacmd = CMD_START_SCSI;
1598 unsigned long flags;
1599 struct mailbox *mb;
1600 int mbi, mbo, i;
1601
1602 printk(KERN_DEBUG "In aha1542_abort: %x %x\n",
1603 inb(STATUS(SCpnt->host->io_port)),
1604 inb(INTRFLAGS(SCpnt->host->io_port)));
1605
1606 save_flags(flags);
1607 cli();
1608 mb = HOSTDATA(SCpnt->host)->mb;
1609 mbi = HOSTDATA(SCpnt->host)->aha1542_last_mbi_used + 1;
1610 if (mbi >= 2 * AHA1542_MAILBOXES)
1611 mbi = AHA1542_MAILBOXES;
1612
1613 do {
1614 if (mb[mbi].status != 0)
1615 break;
1616 mbi++;
1617 if (mbi >= 2 * AHA1542_MAILBOXES)
1618 mbi = AHA1542_MAILBOXES;
1619 } while (mbi != HOSTDATA(SCpnt->host)->aha1542_last_mbi_used);
1620 restore_flags(flags);
1621
1622 if (mb[mbi].status) {
1623 printk(KERN_ERR "Lost interrupt discovered on irq %d - attempting to recover\n",
1624 SCpnt->host->irq);
1625 aha1542_intr_handle(SCpnt->host->irq, NULL);
1626 return 0;
1627 }
1628 /* OK, no lost interrupt. Try looking to see how many pending commands
1629 we think we have. */
1630
1631 for (i = 0; i < AHA1542_MAILBOXES; i++)
1632 if (HOSTDATA(SCpnt->host)->SCint[i]) {
1633 if (HOSTDATA(SCpnt->host)->SCint[i] == SCpnt) {
1634 printk(KERN_ERR "Timed out command pending for %s\n",
1635 kdevname(SCpnt->request.rq_dev));
1636 if (HOSTDATA(SCpnt->host)->mb[i].status) {
1637 printk(KERN_ERR "OGMB still full - restarting\n");
1638 aha1542_out(SCpnt->host->io_port, &ahacmd, 1);
1639 };
1640 } else
1641 printk(KERN_ERR "Other pending command %s\n",
1642 kdevname(SCpnt->request.rq_dev));
1643 }
1644 #endif
1645
1646 DEB(printk("aha1542_abort\n"));
1647 #if 0
1648 save_flags(flags);
1649 cli();
1650 for (mbo = 0; mbo < AHA1542_MAILBOXES; mbo++)
1651 if (SCpnt == HOSTDATA(SCpnt->host)->SCint[mbo]) {
1652 mb[mbo].status = 2; /* Abort command */
1653 aha1542_out(SCpnt->host->io_port, &ahacmd, 1); /* start scsi command */
1654 restore_flags(flags);
1655 break;
1656 };
1657 #endif
1658 return SCSI_ABORT_SNOOZE;
1659 }
1660
1661 /* We do not implement a reset function here, but the upper level code
1662 assumes that it will get some kind of response for the command in
1663 SCpnt. We must oblige, or the command will hang the scsi system.
1664 For a first go, we assume that the 1542 notifies us with all of the
1665 pending commands (it does implement soft reset, after all). */
1666
aha1542_old_reset(Scsi_Cmnd * SCpnt,unsigned int reset_flags)1667 static int aha1542_old_reset(Scsi_Cmnd * SCpnt, unsigned int reset_flags)
1668 {
1669 unchar ahacmd = CMD_START_SCSI;
1670 int i;
1671
1672 /*
1673 * See if a bus reset was suggested.
1674 */
1675 if (reset_flags & SCSI_RESET_SUGGEST_BUS_RESET) {
1676 /*
1677 * This does a scsi reset for all devices on the bus.
1678 * In principle, we could also reset the 1542 - should
1679 * we do this? Try this first, and we can add that later
1680 * if it turns out to be useful.
1681 */
1682 outb(HRST | SCRST, CONTROL(SCpnt->host->io_port));
1683
1684 /*
1685 * Wait for the thing to settle down a bit. Unfortunately
1686 * this is going to basically lock up the machine while we
1687 * wait for this to complete. To be 100% correct, we need to
1688 * check for timeout, and if we are doing something like this
1689 * we are pretty desperate anyways.
1690 */
1691 WAIT(STATUS(SCpnt->host->io_port),
1692 STATMASK, INIT | IDLE, STST | DIAGF | INVDCMD | DF | CDF);
1693
1694 /*
1695 * We need to do this too before the 1542 can interact with
1696 * us again.
1697 */
1698 setup_mailboxes(SCpnt->host->io_port, SCpnt->host);
1699
1700 /*
1701 * Now try to pick up the pieces. Restart all commands
1702 * that are currently active on the bus, and reset all of
1703 * the datastructures. We have some time to kill while
1704 * things settle down, so print a nice message.
1705 */
1706 printk(KERN_WARNING "Sent BUS RESET to scsi host %d\n", SCpnt->host->host_no);
1707
1708 for (i = 0; i < AHA1542_MAILBOXES; i++)
1709 if (HOSTDATA(SCpnt->host)->SCint[i] != NULL) {
1710 Scsi_Cmnd *SCtmp;
1711 SCtmp = HOSTDATA(SCpnt->host)->SCint[i];
1712 SCtmp->result = DID_RESET << 16;
1713 if (SCtmp->host_scribble) {
1714 scsi_free(SCtmp->host_scribble, 512);
1715 SCtmp->host_scribble = NULL;
1716 }
1717 printk(KERN_WARNING "Sending DID_RESET for target %d\n", SCpnt->target);
1718 SCtmp->scsi_done(SCpnt);
1719
1720 HOSTDATA(SCpnt->host)->SCint[i] = NULL;
1721 HOSTDATA(SCpnt->host)->mb[i].status = 0;
1722 }
1723 /*
1724 * Now tell the mid-level code what we did here. Since
1725 * we have restarted all of the outstanding commands,
1726 * then report SUCCESS.
1727 */
1728 return (SCSI_RESET_SUCCESS | SCSI_RESET_BUS_RESET);
1729 fail:
1730 printk(KERN_CRIT "aha1542.c: Unable to perform hard reset.\n");
1731 printk(KERN_CRIT "Power cycle machine to reset\n");
1732 return (SCSI_RESET_ERROR | SCSI_RESET_BUS_RESET);
1733
1734
1735 } else {
1736 /* This does a selective reset of just the one device */
1737 /* First locate the ccb for this command */
1738 for (i = 0; i < AHA1542_MAILBOXES; i++)
1739 if (HOSTDATA(SCpnt->host)->SCint[i] == SCpnt) {
1740 HOSTDATA(SCpnt->host)->ccb[i].op = 0x81; /* BUS DEVICE RESET */
1741 /* Now tell the 1542 to flush all pending commands for this target */
1742 aha1542_out(SCpnt->host->io_port, &ahacmd, 1);
1743
1744 /* Here is the tricky part. What to do next. Do we get an interrupt
1745 for the commands that we aborted with the specified target, or
1746 do we generate this on our own? Try it without first and see
1747 what happens */
1748 printk(KERN_WARNING "Sent BUS DEVICE RESET to target %d\n", SCpnt->target);
1749
1750 /* If the first does not work, then try the second. I think the
1751 first option is more likely to be correct. Free the command
1752 block for all commands running on this target... */
1753 for (i = 0; i < AHA1542_MAILBOXES; i++)
1754 if (HOSTDATA(SCpnt->host)->SCint[i] &&
1755 HOSTDATA(SCpnt->host)->SCint[i]->target == SCpnt->target) {
1756 Scsi_Cmnd *SCtmp;
1757 SCtmp = HOSTDATA(SCpnt->host)->SCint[i];
1758 SCtmp->result = DID_RESET << 16;
1759 if (SCtmp->host_scribble) {
1760 scsi_free(SCtmp->host_scribble, 512);
1761 SCtmp->host_scribble = NULL;
1762 }
1763 printk(KERN_WARNING "Sending DID_RESET for target %d\n", SCpnt->target);
1764 SCtmp->scsi_done(SCpnt);
1765
1766 HOSTDATA(SCpnt->host)->SCint[i] = NULL;
1767 HOSTDATA(SCpnt->host)->mb[i].status = 0;
1768 }
1769 return SCSI_RESET_SUCCESS;
1770 }
1771 }
1772 /* No active command at this time, so this means that each time we got
1773 some kind of response the last time through. Tell the mid-level code
1774 to request sense information in order to decide what to do next. */
1775 return SCSI_RESET_PUNT;
1776 }
1777
1778 #include "sd.h"
1779
aha1542_biosparam(Scsi_Disk * disk,kdev_t dev,int * ip)1780 static int aha1542_biosparam(Scsi_Disk * disk, kdev_t dev, int *ip)
1781 {
1782 int translation_algorithm;
1783 int size = disk->capacity;
1784
1785 translation_algorithm = HOSTDATA(disk->device->host)->bios_translation;
1786
1787 if ((size >> 11) > 1024 && translation_algorithm == BIOS_TRANSLATION_25563) {
1788 /* Please verify that this is the same as what DOS returns */
1789 ip[0] = 255;
1790 ip[1] = 63;
1791 ip[2] = size / 255 / 63;
1792 } else {
1793 ip[0] = 64;
1794 ip[1] = 32;
1795 ip[2] = size >> 11;
1796 }
1797
1798 return 0;
1799 }
1800 MODULE_LICENSE("GPL");
1801
1802
1803 /* Eventually this will go into an include file, but this will be later */
1804 static Scsi_Host_Template driver_template = AHA1542;
1805
1806 #include "scsi_module.c"
1807