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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/* aha152x.c -- Adaptec AHA-152x driver
2 * Author: Jürgen E. Fischer, fischer@norbit.de
3 * Copyright 1993-2004 Jürgen E. Fischer
4 *
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License as published by the
7 * Free Software Foundation; either version 2, or (at your option) any
8 * later version.
9 *
10 * This program is distributed in the hope that it will be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * General Public License for more details.
14 *
15 *
16 * $Id: aha152x.c,v 2.7 2004/01/24 11:42:59 fischer Exp $
17 *
18 * $Log: aha152x.c,v $
19 * Revision 2.7 2004/01/24 11:42:59 fischer
20 * - gather code that is not used by PCMCIA at the end
21 * - move request_region for !PCMCIA case to detection
22 * - migration to new scsi host api (remove legacy code)
23 * - free host scribble before scsi_done
24 * - fix error handling
25 * - one isapnp device added to id_table
26 *
27 * Revision 2.6 2003/10/30 20:52:47 fischer
28 * - interfaces changes for kernel 2.6
29 * - aha152x_probe_one introduced for pcmcia stub
30 * - fixed pnpdev handling
31 * - instead of allocation a new one, reuse command for request sense after check condition and reset
32 * - fixes race in is_complete
33 *
34 * Revision 2.5 2002/04/14 11:24:53 fischer
35 * - isapnp support
36 * - abort fixed
37 * - 2.5 support
38 *
39 * Revision 2.4 2000/12/16 12:53:56 fischer
40 * - allow REQUEST SENSE to be queued
41 * - handle shared PCI interrupts
42 *
43 * Revision 2.3 2000/11/04 16:40:26 fischer
44 * - handle data overruns
45 * - extend timeout for data phases
46 *
47 * Revision 2.2 2000/08/08 19:54:53 fischer
48 * - minor changes
49 *
50 * Revision 2.1 2000/05/17 16:23:17 fischer
51 * - signature update
52 * - fix for data out w/o scatter gather
53 *
54 * Revision 2.0 1999/12/25 15:07:32 fischer
55 * - interrupt routine completly reworked
56 * - basic support for new eh code
57 *
58 * Revision 1.21 1999/11/10 23:46:36 fischer
59 * - default to synchronous operation
60 * - synchronous negotiation fixed
61 * - added timeout to loops
62 * - debugging output can be controlled through procfs
63 *
64 * Revision 1.20 1999/11/07 18:37:31 fischer
65 * - synchronous operation works
66 * - resid support for sg driver
67 *
68 * Revision 1.19 1999/11/02 22:39:59 fischer
69 * - moved leading comments to README.aha152x
70 * - new additional module parameters
71 * - updates for 2.3
72 * - support for the Tripace TC1550 controller
73 * - interrupt handling changed
74 *
75 * Revision 1.18 1996/09/07 20:10:40 fischer
76 * - fixed can_queue handling (multiple outstanding commands working again)
77 *
78 * Revision 1.17 1996/08/17 16:05:14 fischer
79 * - biosparam improved
80 * - interrupt verification
81 * - updated documentation
82 * - cleanups
83 *
84 * Revision 1.16 1996/06/09 00:04:56 root
85 * - added configuration symbols for insmod (aha152x/aha152x1)
86 *
87 * Revision 1.15 1996/04/30 14:52:06 fischer
88 * - proc info fixed
89 * - support for extended translation for >1GB disks
90 *
91 * Revision 1.14 1996/01/17 15:11:20 fischer
92 * - fixed lockup in MESSAGE IN phase after reconnection
93 *
94 * Revision 1.13 1996/01/09 02:15:53 fischer
95 * - some cleanups
96 * - moved request_irq behind controller initialization
97 * (to avoid spurious interrupts)
98 *
99 * Revision 1.12 1995/12/16 12:26:07 fischer
100 * - barrier()s added
101 * - configurable RESET delay added
102 *
103 * Revision 1.11 1995/12/06 21:18:35 fischer
104 * - some minor updates
105 *
106 * Revision 1.10 1995/07/22 19:18:45 fischer
107 * - support for 2 controllers
108 * - started synchronous data transfers (not working yet)
109 *
110 * Revision 1.9 1995/03/18 09:20:24 root
111 * - patches for PCMCIA and modules
112 *
113 * Revision 1.8 1995/01/21 22:07:19 root
114 * - snarf_region => request_region
115 * - aha152x_intr interface change
116 *
117 * Revision 1.7 1995/01/02 23:19:36 root
118 * - updated COMMAND_SIZE to cmd_len
119 * - changed sti() to restore_flags()
120 * - fixed some #ifdef which generated warnings
121 *
122 * Revision 1.6 1994/11/24 20:35:27 root
123 * - problem with odd number of bytes in fifo fixed
124 *
125 * Revision 1.5 1994/10/30 14:39:56 root
126 * - abort code fixed
127 * - debugging improved
128 *
129 * Revision 1.4 1994/09/12 11:33:01 root
130 * - irqaction to request_irq
131 * - abortion updated
132 *
133 * Revision 1.3 1994/08/04 13:53:05 root
134 * - updates for mid-level-driver changes
135 * - accept unexpected BUSFREE phase as error condition
136 * - parity check now configurable
137 *
138 * Revision 1.2 1994/07/03 12:56:36 root
139 * - cleaned up debugging code
140 * - more tweaking on reset delays
141 * - updated abort/reset code (pretty untested...)
142 *
143 * Revision 1.1 1994/05/28 21:18:49 root
144 * - update for mid-level interface change (abort-reset)
145 * - delays after resets adjusted for some slow devices
146 *
147 * Revision 1.0 1994/03/25 12:52:00 root
148 * - Fixed "more data than expected" problem
149 * - added new BIOS signatures
150 *
151 * Revision 0.102 1994/01/31 20:44:12 root
152 * - minor changes in insw/outsw handling
153 *
154 * Revision 0.101 1993/12/13 01:16:27 root
155 * - fixed STATUS phase (non-GOOD stati were dropped sometimes;
156 * fixes problems with CD-ROM sector size detection & media change)
157 *
158 * Revision 0.100 1993/12/10 16:58:47 root
159 * - fix for unsuccessful selections in case of non-continuous id assignments
160 * on the scsi bus.
161 *
162 * Revision 0.99 1993/10/24 16:19:59 root
163 * - fixed DATA IN (rare read errors gone)
164 *
165 * Revision 0.98 1993/10/17 12:54:44 root
166 * - fixed some recent fixes (shame on me)
167 * - moved initialization of scratch area to aha152x_queue
168 *
169 * Revision 0.97 1993/10/09 18:53:53 root
170 * - DATA IN fixed. Rarely left data in the fifo.
171 *
172 * Revision 0.96 1993/10/03 00:53:59 root
173 * - minor changes on DATA IN
174 *
175 * Revision 0.95 1993/09/24 10:36:01 root
176 * - change handling of MSGI after reselection
177 * - fixed sti/cli
178 * - minor changes
179 *
180 * Revision 0.94 1993/09/18 14:08:22 root
181 * - fixed bug in multiple outstanding command code
182 * - changed detection
183 * - support for kernel command line configuration
184 * - reset corrected
185 * - changed message handling
186 *
187 * Revision 0.93 1993/09/15 20:41:19 root
188 * - fixed bugs with multiple outstanding commands
189 *
190 * Revision 0.92 1993/09/13 02:46:33 root
191 * - multiple outstanding commands work (no problems with IBM drive)
192 *
193 * Revision 0.91 1993/09/12 20:51:46 root
194 * added multiple outstanding commands
195 * (some problem with this $%&? IBM device remain)
196 *
197 * Revision 0.9 1993/09/12 11:11:22 root
198 * - corrected auto-configuration
199 * - changed the auto-configuration (added some '#define's)
200 * - added support for dis-/reconnection
201 *
202 * Revision 0.8 1993/09/06 23:09:39 root
203 * - added support for the drive activity light
204 * - minor changes
205 *
206 * Revision 0.7 1993/09/05 14:30:15 root
207 * - improved phase detection
208 * - now using the new snarf_region code of 0.99pl13
209 *
210 * Revision 0.6 1993/09/02 11:01:38 root
211 * first public release; added some signatures and biosparam()
212 *
213 * Revision 0.5 1993/08/30 10:23:30 root
214 * fixed timing problems with my IBM drive
215 *
216 * Revision 0.4 1993/08/29 14:06:52 root
217 * fixed some problems with timeouts due incomplete commands
218 *
219 * Revision 0.3 1993/08/28 15:55:03 root
220 * writing data works too. mounted and worked on a dos partition
221 *
222 * Revision 0.2 1993/08/27 22:42:07 root
223 * reading data works. Mounted a msdos partition.
224 *
225 * Revision 0.1 1993/08/25 13:38:30 root
226 * first "damn thing doesn't work" version
227 *
228 * Revision 0.0 1993/08/14 19:54:25 root
229 * empty function bodies; detect() works.
230 *
231 *
232 **************************************************************************
233
234 see Documentation/scsi/aha152x.txt for configuration details
235
236 **************************************************************************/
237
238#include <linux/module.h>
239#include <linux/sched.h>
240#include <asm/irq.h>
241#include <asm/io.h>
242#include <linux/blkdev.h>
243#include <asm/system.h>
244#include <linux/errno.h>
245#include <linux/string.h>
246#include <linux/wait.h>
247#include <linux/ioport.h>
248#include <linux/delay.h>
249#include <linux/proc_fs.h>
250#include <linux/interrupt.h>
251#include <linux/init.h>
252#include <linux/kernel.h>
253#include <linux/isapnp.h>
254#include <linux/spinlock.h>
255#include <linux/workqueue.h>
256#include <asm/semaphore.h>
257#include <scsi/scsicam.h>
258
259#include "scsi.h"
db9dff32005-04-03 14:53:59 -0500260#include <scsi/scsi_dbg.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -0700261#include <scsi/scsi_host.h>
Matthew Wilcox1abfd372005-12-15 16:22:01 -0500262#include <scsi/scsi_transport_spi.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -0700263#include "aha152x.h"
264
265
266/* DEFINES */
267
268/* For PCMCIA cards, always use AUTOCONF */
269#if defined(PCMCIA) || defined(MODULE)
270#if !defined(AUTOCONF)
271#define AUTOCONF
272#endif
273#endif
274
275#if !defined(AUTOCONF) && !defined(SETUP0)
276#error define AUTOCONF or SETUP0
277#endif
278
279#if defined(AHA152X_DEBUG)
280#define DEBUG_DEFAULT debug_eh
281
282#define DPRINTK(when,msgs...) \
283 do { if(HOSTDATA(shpnt)->debug & (when)) printk(msgs); } while(0)
284
285#define DO_LOCK(flags) \
286 do { \
287 if(spin_is_locked(&QLOCK)) { \
288 DPRINTK(debug_intr, DEBUG_LEAD "(%s:%d) already locked at %s:%d\n", CMDINFO(CURRENT_SC), __FUNCTION__, __LINE__, QLOCKER, QLOCKERL); \
289 } \
290 DPRINTK(debug_locks, DEBUG_LEAD "(%s:%d) locking\n", CMDINFO(CURRENT_SC), __FUNCTION__, __LINE__); \
291 spin_lock_irqsave(&QLOCK,flags); \
292 DPRINTK(debug_locks, DEBUG_LEAD "(%s:%d) locked\n", CMDINFO(CURRENT_SC), __FUNCTION__, __LINE__); \
293 QLOCKER=__FUNCTION__; \
294 QLOCKERL=__LINE__; \
295 } while(0)
296
297#define DO_UNLOCK(flags) \
298 do { \
299 DPRINTK(debug_locks, DEBUG_LEAD "(%s:%d) unlocking (locked at %s:%d)\n", CMDINFO(CURRENT_SC), __FUNCTION__, __LINE__, QLOCKER, QLOCKERL); \
300 spin_unlock_irqrestore(&QLOCK,flags); \
301 DPRINTK(debug_locks, DEBUG_LEAD "(%s:%d) unlocked\n", CMDINFO(CURRENT_SC), __FUNCTION__, __LINE__); \
302 QLOCKER="(not locked)"; \
303 QLOCKERL=0; \
304 } while(0)
305
306#else
307#define DPRINTK(when,msgs...)
308#define DO_LOCK(flags) spin_lock_irqsave(&QLOCK,flags)
309#define DO_UNLOCK(flags) spin_unlock_irqrestore(&QLOCK,flags)
310#endif
311
312#define LEAD "(scsi%d:%d:%d) "
313#define WARN_LEAD KERN_WARNING LEAD
314#define INFO_LEAD KERN_INFO LEAD
315#define NOTE_LEAD KERN_NOTICE LEAD
316#define ERR_LEAD KERN_ERR LEAD
317#define DEBUG_LEAD KERN_DEBUG LEAD
318#define CMDINFO(cmd) \
319 (cmd) ? ((cmd)->device->host->host_no) : -1, \
320 (cmd) ? ((cmd)->device->id & 0x0f) : -1, \
321 (cmd) ? ((cmd)->device->lun & 0x07) : -1
322
323#define DELAY_DEFAULT 1000
324
325#if defined(PCMCIA)
326#define IRQ_MIN 0
327#define IRQ_MAX 16
328#else
329#define IRQ_MIN 9
330#if defined(__PPC)
331#define IRQ_MAX (NR_IRQS-1)
332#else
333#define IRQ_MAX 12
334#endif
335#endif
336
337enum {
338 not_issued = 0x0001, /* command not yet issued */
339 selecting = 0x0002, /* target is beeing selected */
340 identified = 0x0004, /* IDENTIFY was sent */
341 disconnected = 0x0008, /* target disconnected */
342 completed = 0x0010, /* target sent COMMAND COMPLETE */
343 aborted = 0x0020, /* ABORT was sent */
344 resetted = 0x0040, /* BUS DEVICE RESET was sent */
345 spiordy = 0x0080, /* waiting for SPIORDY to raise */
346 syncneg = 0x0100, /* synchronous negotiation in progress */
347 aborting = 0x0200, /* ABORT is pending */
348 resetting = 0x0400, /* BUS DEVICE RESET is pending */
349 check_condition = 0x0800, /* requesting sense after CHECK CONDITION */
350};
351
352MODULE_AUTHOR("Jürgen Fischer");
353MODULE_DESCRIPTION(AHA152X_REVID);
354MODULE_LICENSE("GPL");
355
356#if !defined(PCMCIA)
357#if defined(MODULE)
358static int io[] = {0, 0};
359module_param_array(io, int, NULL, 0);
360MODULE_PARM_DESC(io,"base io address of controller");
361
362static int irq[] = {0, 0};
363module_param_array(irq, int, NULL, 0);
364MODULE_PARM_DESC(irq,"interrupt for controller");
365
366static int scsiid[] = {7, 7};
367module_param_array(scsiid, int, NULL, 0);
368MODULE_PARM_DESC(scsiid,"scsi id of controller");
369
370static int reconnect[] = {1, 1};
371module_param_array(reconnect, int, NULL, 0);
372MODULE_PARM_DESC(reconnect,"allow targets to disconnect");
373
374static int parity[] = {1, 1};
375module_param_array(parity, int, NULL, 0);
376MODULE_PARM_DESC(parity,"use scsi parity");
377
378static int sync[] = {1, 1};
379module_param_array(sync, int, NULL, 0);
380MODULE_PARM_DESC(sync,"use synchronous transfers");
381
382static int delay[] = {DELAY_DEFAULT, DELAY_DEFAULT};
383module_param_array(delay, int, NULL, 0);
384MODULE_PARM_DESC(delay,"scsi reset delay");
385
386static int exttrans[] = {0, 0};
387module_param_array(exttrans, int, NULL, 0);
388MODULE_PARM_DESC(exttrans,"use extended translation");
389
390#if !defined(AHA152X_DEBUG)
391static int aha152x[] = {0, 11, 7, 1, 1, 0, DELAY_DEFAULT, 0};
392module_param_array(aha152x, int, NULL, 0);
393MODULE_PARM_DESC(aha152x, "parameters for first controller");
394
395static int aha152x1[] = {0, 11, 7, 1, 1, 0, DELAY_DEFAULT, 0};
396module_param_array(aha152x1, int, NULL, 0);
397MODULE_PARM_DESC(aha152x1, "parameters for second controller");
398#else
399static int debug[] = {DEBUG_DEFAULT, DEBUG_DEFAULT};
400module_param_array(debug, int, NULL, 0);
401MODULE_PARM_DESC(debug, "flags for driver debugging");
402
403static int aha152x[] = {0, 11, 7, 1, 1, 1, DELAY_DEFAULT, 0, DEBUG_DEFAULT};
404module_param_array(aha152x, int, NULL, 0);
405MODULE_PARM_DESC(aha152x, "parameters for first controller");
406
407static int aha152x1[] = {0, 11, 7, 1, 1, 1, DELAY_DEFAULT, 0, DEBUG_DEFAULT};
408module_param_array(aha152x1, int, NULL, 0);
409MODULE_PARM_DESC(aha152x1, "parameters for second controller");
410#endif /* !defined(AHA152X_DEBUG) */
411#endif /* MODULE */
412
413#ifdef __ISAPNP__
414static struct isapnp_device_id id_table[] __devinitdata = {
415 { ISAPNP_ANY_ID, ISAPNP_ANY_ID,
416 ISAPNP_VENDOR('A','D','P'), ISAPNP_FUNCTION(0x1505), 0 },
417 { ISAPNP_ANY_ID, ISAPNP_ANY_ID,
418 ISAPNP_VENDOR('A','D','P'), ISAPNP_FUNCTION(0x1530), 0 },
419 { ISAPNP_DEVICE_SINGLE_END, }
420};
421MODULE_DEVICE_TABLE(isapnp, id_table);
422#endif /* ISAPNP */
423
424#endif /* !PCMCIA */
425
426static int registered_count=0;
427static struct Scsi_Host *aha152x_host[2];
Christoph Hellwigd0be4a7d2005-10-31 18:31:40 +0100428static struct scsi_host_template aha152x_driver_template;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700429
430/*
431 * internal states of the host
432 *
433 */
434enum aha152x_state {
435 idle=0,
436 unknown,
437 seldo,
438 seldi,
439 selto,
440 busfree,
441 msgo,
442 cmd,
443 msgi,
444 status,
445 datai,
446 datao,
447 parerr,
448 rsti,
449 maxstate
450};
451
452/*
453 * current state information of the host
454 *
455 */
456struct aha152x_hostdata {
457 Scsi_Cmnd *issue_SC;
458 /* pending commands to issue */
459
460 Scsi_Cmnd *current_SC;
461 /* current command on the bus */
462
463 Scsi_Cmnd *disconnected_SC;
464 /* commands that disconnected */
465
466 Scsi_Cmnd *done_SC;
467 /* command that was completed */
468
469 spinlock_t lock;
470 /* host lock */
471
472#if defined(AHA152X_DEBUG)
473 const char *locker;
474 /* which function has the lock */
475 int lockerl; /* where did it get it */
476
477 int debug; /* current debugging setting */
478#endif
479
480#if defined(AHA152X_STAT)
481 int total_commands;
482 int disconnections;
483 int busfree_without_any_action;
484 int busfree_without_old_command;
485 int busfree_without_new_command;
486 int busfree_without_done_command;
487 int busfree_with_check_condition;
488 int count[maxstate];
489 int count_trans[maxstate];
490 unsigned long time[maxstate];
491#endif
492
493 int commands; /* current number of commands */
494
495 int reconnect; /* disconnection allowed */
496 int parity; /* parity checking enabled */
497 int synchronous; /* synchronous transferes enabled */
498 int delay; /* reset out delay */
499 int ext_trans; /* extended translation enabled */
500
501 int swint; /* software-interrupt was fired during detect() */
502 int service; /* bh needs to be run */
503 int in_intr; /* bh is running */
504
505 /* current state,
506 previous state,
507 last state different from current state */
508 enum aha152x_state state, prevstate, laststate;
509
510 int target;
511 /* reconnecting target */
512
513 unsigned char syncrate[8];
514 /* current synchronous transfer agreements */
515
516 unsigned char syncneg[8];
517 /* 0: no negotiation;
518 * 1: negotiation in progress;
519 * 2: negotiation completed
520 */
521
522 int cmd_i;
523 /* number of sent bytes of current command */
524
525 int msgi_len;
526 /* number of received message bytes */
527 unsigned char msgi[256];
528 /* received message bytes */
529
530 int msgo_i, msgo_len;
531 /* number of sent bytes and length of current messages */
532 unsigned char msgo[256];
533 /* pending messages */
534
535 int data_len;
536 /* number of sent/received bytes in dataphase */
537
538 unsigned long io_port0;
539 unsigned long io_port1;
540
541#ifdef __ISAPNP__
542 struct pnp_dev *pnpdev;
543#endif
544};
545
546
547/*
548 * host specific command extension
549 *
550 */
551struct aha152x_scdata {
552 Scsi_Cmnd *next; /* next sc in queue */
553 struct semaphore *sem; /* semaphore to block on */
Christoph Hellwig5e13cdf2006-07-08 20:39:30 +0200554 unsigned char cmd_len;
555 unsigned char cmnd[MAX_COMMAND_SIZE];
556 unsigned short use_sg;
557 unsigned request_bufflen;
558 void *request_buffer;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700559};
560
561
562/* access macros for hostdata */
563
564#define HOSTDATA(shpnt) ((struct aha152x_hostdata *) &shpnt->hostdata)
565
566#define HOSTNO ((shpnt)->host_no)
567
568#define CURRENT_SC (HOSTDATA(shpnt)->current_SC)
569#define DONE_SC (HOSTDATA(shpnt)->done_SC)
570#define ISSUE_SC (HOSTDATA(shpnt)->issue_SC)
571#define DISCONNECTED_SC (HOSTDATA(shpnt)->disconnected_SC)
572#define QLOCK (HOSTDATA(shpnt)->lock)
573#define QLOCKER (HOSTDATA(shpnt)->locker)
574#define QLOCKERL (HOSTDATA(shpnt)->lockerl)
575
576#define STATE (HOSTDATA(shpnt)->state)
577#define PREVSTATE (HOSTDATA(shpnt)->prevstate)
578#define LASTSTATE (HOSTDATA(shpnt)->laststate)
579
580#define RECONN_TARGET (HOSTDATA(shpnt)->target)
581
582#define CMD_I (HOSTDATA(shpnt)->cmd_i)
583
584#define MSGO(i) (HOSTDATA(shpnt)->msgo[i])
585#define MSGO_I (HOSTDATA(shpnt)->msgo_i)
586#define MSGOLEN (HOSTDATA(shpnt)->msgo_len)
587#define ADDMSGO(x) (MSGOLEN<256 ? (void)(MSGO(MSGOLEN++)=x) : aha152x_error(shpnt,"MSGO overflow"))
588
589#define MSGI(i) (HOSTDATA(shpnt)->msgi[i])
590#define MSGILEN (HOSTDATA(shpnt)->msgi_len)
591#define ADDMSGI(x) (MSGILEN<256 ? (void)(MSGI(MSGILEN++)=x) : aha152x_error(shpnt,"MSGI overflow"))
592
593#define DATA_LEN (HOSTDATA(shpnt)->data_len)
594
595#define SYNCRATE (HOSTDATA(shpnt)->syncrate[CURRENT_SC->device->id])
596#define SYNCNEG (HOSTDATA(shpnt)->syncneg[CURRENT_SC->device->id])
597
598#define DELAY (HOSTDATA(shpnt)->delay)
599#define EXT_TRANS (HOSTDATA(shpnt)->ext_trans)
600#define TC1550 (HOSTDATA(shpnt)->tc1550)
601#define RECONNECT (HOSTDATA(shpnt)->reconnect)
602#define PARITY (HOSTDATA(shpnt)->parity)
603#define SYNCHRONOUS (HOSTDATA(shpnt)->synchronous)
604
605#define HOSTIOPORT0 (HOSTDATA(shpnt)->io_port0)
606#define HOSTIOPORT1 (HOSTDATA(shpnt)->io_port1)
607
608#define SCDATA(SCpnt) ((struct aha152x_scdata *) (SCpnt)->host_scribble)
609#define SCNEXT(SCpnt) SCDATA(SCpnt)->next
610#define SCSEM(SCpnt) SCDATA(SCpnt)->sem
611
612#define SG_ADDRESS(buffer) ((char *) (page_address((buffer)->page)+(buffer)->offset))
613
614/* state handling */
615static void seldi_run(struct Scsi_Host *shpnt);
616static void seldo_run(struct Scsi_Host *shpnt);
617static void selto_run(struct Scsi_Host *shpnt);
618static void busfree_run(struct Scsi_Host *shpnt);
619
620static void msgo_init(struct Scsi_Host *shpnt);
621static void msgo_run(struct Scsi_Host *shpnt);
622static void msgo_end(struct Scsi_Host *shpnt);
623
624static void cmd_init(struct Scsi_Host *shpnt);
625static void cmd_run(struct Scsi_Host *shpnt);
626static void cmd_end(struct Scsi_Host *shpnt);
627
628static void datai_init(struct Scsi_Host *shpnt);
629static void datai_run(struct Scsi_Host *shpnt);
630static void datai_end(struct Scsi_Host *shpnt);
631
632static void datao_init(struct Scsi_Host *shpnt);
633static void datao_run(struct Scsi_Host *shpnt);
634static void datao_end(struct Scsi_Host *shpnt);
635
636static void status_run(struct Scsi_Host *shpnt);
637
638static void msgi_run(struct Scsi_Host *shpnt);
639static void msgi_end(struct Scsi_Host *shpnt);
640
641static void parerr_run(struct Scsi_Host *shpnt);
642static void rsti_run(struct Scsi_Host *shpnt);
643
644static void is_complete(struct Scsi_Host *shpnt);
645
646/*
647 * driver states
648 *
649 */
650static struct {
651 char *name;
652 void (*init)(struct Scsi_Host *);
653 void (*run)(struct Scsi_Host *);
654 void (*end)(struct Scsi_Host *);
655 int spio;
656} states[] = {
657 { "idle", NULL, NULL, NULL, 0},
658 { "unknown", NULL, NULL, NULL, 0},
659 { "seldo", NULL, seldo_run, NULL, 0},
660 { "seldi", NULL, seldi_run, NULL, 0},
661 { "selto", NULL, selto_run, NULL, 0},
662 { "busfree", NULL, busfree_run, NULL, 0},
663 { "msgo", msgo_init, msgo_run, msgo_end, 1},
664 { "cmd", cmd_init, cmd_run, cmd_end, 1},
665 { "msgi", NULL, msgi_run, msgi_end, 1},
666 { "status", NULL, status_run, NULL, 1},
667 { "datai", datai_init, datai_run, datai_end, 0},
668 { "datao", datao_init, datao_run, datao_end, 0},
669 { "parerr", NULL, parerr_run, NULL, 0},
670 { "rsti", NULL, rsti_run, NULL, 0},
671};
672
673/* setup & interrupt */
674static irqreturn_t intr(int irq, void *dev_id, struct pt_regs *);
675static void reset_ports(struct Scsi_Host *shpnt);
676static void aha152x_error(struct Scsi_Host *shpnt, char *msg);
677static void done(struct Scsi_Host *shpnt, int error);
678
679/* diagnostics */
680static void disp_ports(struct Scsi_Host *shpnt);
681static void show_command(Scsi_Cmnd * ptr);
682static void show_queues(struct Scsi_Host *shpnt);
683static void disp_enintr(struct Scsi_Host *shpnt);
684
685
686/*
687 * queue services:
688 *
689 */
690static inline void append_SC(Scsi_Cmnd **SC, Scsi_Cmnd *new_SC)
691{
692 Scsi_Cmnd *end;
693
694 SCNEXT(new_SC) = NULL;
695 if (!*SC)
696 *SC = new_SC;
697 else {
698 for (end = *SC; SCNEXT(end); end = SCNEXT(end))
699 ;
700 SCNEXT(end) = new_SC;
701 }
702}
703
704static inline Scsi_Cmnd *remove_first_SC(Scsi_Cmnd ** SC)
705{
706 Scsi_Cmnd *ptr;
707
708 ptr = *SC;
709 if (ptr) {
710 *SC = SCNEXT(*SC);
711 SCNEXT(ptr)=NULL;
712 }
713 return ptr;
714}
715
716static inline Scsi_Cmnd *remove_lun_SC(Scsi_Cmnd ** SC, int target, int lun)
717{
718 Scsi_Cmnd *ptr, *prev;
719
720 for (ptr = *SC, prev = NULL;
721 ptr && ((ptr->device->id != target) || (ptr->device->lun != lun));
722 prev = ptr, ptr = SCNEXT(ptr))
723 ;
724
725 if (ptr) {
726 if (prev)
727 SCNEXT(prev) = SCNEXT(ptr);
728 else
729 *SC = SCNEXT(ptr);
730
731 SCNEXT(ptr)=NULL;
732 }
733
734 return ptr;
735}
736
737static inline Scsi_Cmnd *remove_SC(Scsi_Cmnd **SC, Scsi_Cmnd *SCp)
738{
739 Scsi_Cmnd *ptr, *prev;
740
741 for (ptr = *SC, prev = NULL;
742 ptr && SCp!=ptr;
743 prev = ptr, ptr = SCNEXT(ptr))
744 ;
745
746 if (ptr) {
747 if (prev)
748 SCNEXT(prev) = SCNEXT(ptr);
749 else
750 *SC = SCNEXT(ptr);
751
752 SCNEXT(ptr)=NULL;
753 }
754
755 return ptr;
756}
757
758static inline struct Scsi_Host *lookup_irq(int irqno)
759{
760 int i;
761
762 for(i=0; i<ARRAY_SIZE(aha152x_host); i++)
763 if(aha152x_host[i] && aha152x_host[i]->irq==irqno)
764 return aha152x_host[i];
765
766 return NULL;
767}
768
769static irqreturn_t swintr(int irqno, void *dev_id, struct pt_regs *regs)
770{
771 struct Scsi_Host *shpnt = lookup_irq(irqno);
772
773 if (!shpnt) {
774 printk(KERN_ERR "aha152x: catched software interrupt %d for unknown controller.\n", irqno);
775 return IRQ_NONE;
776 }
777
778 HOSTDATA(shpnt)->swint++;
779
780 SETPORT(DMACNTRL0, INTEN);
781 return IRQ_HANDLED;
782}
783
784struct Scsi_Host *aha152x_probe_one(struct aha152x_setup *setup)
785{
786 struct Scsi_Host *shpnt;
787
788 shpnt = scsi_host_alloc(&aha152x_driver_template, sizeof(struct aha152x_hostdata));
789 if (!shpnt) {
790 printk(KERN_ERR "aha152x: scsi_host_alloc failed\n");
791 return NULL;
792 }
793
794 /* need to have host registered before triggering any interrupt */
795 aha152x_host[registered_count] = shpnt;
796
797 memset(HOSTDATA(shpnt), 0, sizeof *HOSTDATA(shpnt));
798
799 shpnt->io_port = setup->io_port;
800 shpnt->n_io_port = IO_RANGE;
801 shpnt->irq = setup->irq;
802
803 if (!setup->tc1550) {
804 HOSTIOPORT0 = setup->io_port;
805 HOSTIOPORT1 = setup->io_port;
806 } else {
807 HOSTIOPORT0 = setup->io_port+0x10;
808 HOSTIOPORT1 = setup->io_port-0x10;
809 }
810
811 spin_lock_init(&QLOCK);
812 RECONNECT = setup->reconnect;
813 SYNCHRONOUS = setup->synchronous;
814 PARITY = setup->parity;
815 DELAY = setup->delay;
816 EXT_TRANS = setup->ext_trans;
817
818#if defined(AHA152X_DEBUG)
819 HOSTDATA(shpnt)->debug = setup->debug;
820#endif
821
822 SETPORT(SCSIID, setup->scsiid << 4);
823 shpnt->this_id = setup->scsiid;
824
825 if (setup->reconnect)
826 shpnt->can_queue = AHA152X_MAXQUEUE;
827
828 /* RESET OUT */
829 printk("aha152x: resetting bus...\n");
830 SETPORT(SCSISEQ, SCSIRSTO);
831 mdelay(256);
832 SETPORT(SCSISEQ, 0);
833 mdelay(DELAY);
834
835 reset_ports(shpnt);
836
837 printk(KERN_INFO
838 "aha152x%d%s: "
839 "vital data: rev=%x, "
840 "io=0x%03lx (0x%03lx/0x%03lx), "
841 "irq=%d, "
842 "scsiid=%d, "
843 "reconnect=%s, "
844 "parity=%s, "
845 "synchronous=%s, "
846 "delay=%d, "
847 "extended translation=%s\n",
848 shpnt->host_no, setup->tc1550 ? " (tc1550 mode)" : "",
849 GETPORT(REV) & 0x7,
850 shpnt->io_port, HOSTIOPORT0, HOSTIOPORT1,
851 shpnt->irq,
852 shpnt->this_id,
853 RECONNECT ? "enabled" : "disabled",
854 PARITY ? "enabled" : "disabled",
855 SYNCHRONOUS ? "enabled" : "disabled",
856 DELAY,
857 EXT_TRANS ? "enabled" : "disabled");
858
859 /* not expecting any interrupts */
860 SETPORT(SIMODE0, 0);
861 SETPORT(SIMODE1, 0);
862
Thomas Gleixner1d6f3592006-07-01 19:29:42 -0700863 if( request_irq(shpnt->irq, swintr, IRQF_DISABLED|IRQF_SHARED, "aha152x", shpnt) ) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700864 printk(KERN_ERR "aha152x%d: irq %d busy.\n", shpnt->host_no, shpnt->irq);
865 goto out_host_put;
866 }
867
868 HOSTDATA(shpnt)->swint = 0;
869
870 printk(KERN_INFO "aha152x%d: trying software interrupt, ", shpnt->host_no);
871
872 mb();
873 SETPORT(DMACNTRL0, SWINT|INTEN);
874 mdelay(1000);
875 free_irq(shpnt->irq, shpnt);
876
877 if (!HOSTDATA(shpnt)->swint) {
878 if (TESTHI(DMASTAT, INTSTAT)) {
879 printk("lost.\n");
880 } else {
881 printk("failed.\n");
882 }
883
884 SETPORT(DMACNTRL0, INTEN);
885
886 printk(KERN_ERR "aha152x%d: irq %d possibly wrong. "
887 "Please verify.\n", shpnt->host_no, shpnt->irq);
888 goto out_host_put;
889 }
890 printk("ok.\n");
891
892
893 /* clear interrupts */
894 SETPORT(SSTAT0, 0x7f);
895 SETPORT(SSTAT1, 0xef);
896
Thomas Gleixner1d6f3592006-07-01 19:29:42 -0700897 if ( request_irq(shpnt->irq, intr, IRQF_DISABLED|IRQF_SHARED, "aha152x", shpnt) ) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700898 printk(KERN_ERR "aha152x%d: failed to reassign irq %d.\n", shpnt->host_no, shpnt->irq);
899 goto out_host_put;
900 }
901
902 if( scsi_add_host(shpnt, NULL) ) {
903 free_irq(shpnt->irq, shpnt);
904 printk(KERN_ERR "aha152x%d: failed to add host.\n", shpnt->host_no);
905 goto out_host_put;
906 }
907
908 scsi_scan_host(shpnt);
909
910 registered_count++;
911
912 return shpnt;
913
914out_host_put:
915 aha152x_host[registered_count]=NULL;
916 scsi_host_put(shpnt);
917
918 return NULL;
919}
920
921void aha152x_release(struct Scsi_Host *shpnt)
922{
923 if(!shpnt)
924 return;
925
926 if (shpnt->irq)
927 free_irq(shpnt->irq, shpnt);
928
929#if !defined(PCMCIA)
930 if (shpnt->io_port)
931 release_region(shpnt->io_port, IO_RANGE);
932#endif
933
934#ifdef __ISAPNP__
935 if (HOSTDATA(shpnt)->pnpdev)
936 pnp_device_detach(HOSTDATA(shpnt)->pnpdev);
937#endif
938
939 scsi_remove_host(shpnt);
940 scsi_host_put(shpnt);
941}
942
943
944/*
945 * setup controller to generate interrupts depending
946 * on current state (lock has to be acquired)
947 *
948 */
949static int setup_expected_interrupts(struct Scsi_Host *shpnt)
950{
951 if(CURRENT_SC) {
952 CURRENT_SC->SCp.phase |= 1 << 16;
953
954 if(CURRENT_SC->SCp.phase & selecting) {
955 DPRINTK(debug_intr, DEBUG_LEAD "expecting: (seldo) (seltimo) (seldi)\n", CMDINFO(CURRENT_SC));
956 SETPORT(SSTAT1, SELTO);
957 SETPORT(SIMODE0, ENSELDO | (DISCONNECTED_SC ? ENSELDI : 0));
958 SETPORT(SIMODE1, ENSELTIMO);
959 } else {
960 DPRINTK(debug_intr, DEBUG_LEAD "expecting: (phase change) (busfree) %s\n", CMDINFO(CURRENT_SC), CURRENT_SC->SCp.phase & spiordy ? "(spiordy)" : "");
961 SETPORT(SIMODE0, (CURRENT_SC->SCp.phase & spiordy) ? ENSPIORDY : 0);
962 SETPORT(SIMODE1, ENPHASEMIS | ENSCSIRST | ENSCSIPERR | ENBUSFREE);
963 }
964 } else if(STATE==seldi) {
965 DPRINTK(debug_intr, DEBUG_LEAD "expecting: (phase change) (identify)\n", CMDINFO(CURRENT_SC));
966 SETPORT(SIMODE0, 0);
967 SETPORT(SIMODE1, ENPHASEMIS | ENSCSIRST | ENSCSIPERR | ENBUSFREE);
968 } else {
969 DPRINTK(debug_intr, DEBUG_LEAD "expecting: %s %s\n",
970 CMDINFO(CURRENT_SC),
971 DISCONNECTED_SC ? "(reselection)" : "",
972 ISSUE_SC ? "(busfree)" : "");
973 SETPORT(SIMODE0, DISCONNECTED_SC ? ENSELDI : 0);
974 SETPORT(SIMODE1, ENSCSIRST | ( (ISSUE_SC||DONE_SC) ? ENBUSFREE : 0));
975 }
976
977 if(!HOSTDATA(shpnt)->in_intr)
978 SETBITS(DMACNTRL0, INTEN);
979
980 return TESTHI(DMASTAT, INTSTAT);
981}
982
983
984/*
985 * Queue a command and setup interrupts for a free bus.
986 */
987static int aha152x_internal_queue(Scsi_Cmnd *SCpnt, struct semaphore *sem, int phase, void (*done)(Scsi_Cmnd *))
988{
989 struct Scsi_Host *shpnt = SCpnt->device->host;
990 unsigned long flags;
991
992#if defined(AHA152X_DEBUG)
993 if (HOSTDATA(shpnt)->debug & debug_queue) {
994 printk(INFO_LEAD "queue: %p; cmd_len=%d pieces=%d size=%u cmnd=",
995 CMDINFO(SCpnt), SCpnt, SCpnt->cmd_len, SCpnt->use_sg, SCpnt->request_bufflen);
db9dff32005-04-03 14:53:59 -0500996 __scsi_print_command(SCpnt->cmnd);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700997 }
998#endif
999
1000 SCpnt->scsi_done = done;
1001 SCpnt->resid = SCpnt->request_bufflen;
1002 SCpnt->SCp.phase = not_issued | phase;
1003 SCpnt->SCp.Status = CHECK_CONDITION;
1004 SCpnt->SCp.Message = 0;
1005 SCpnt->SCp.have_data_in = 0;
1006 SCpnt->SCp.sent_command = 0;
1007
1008 if(SCpnt->SCp.phase & (resetting|check_condition)) {
1009 if(SCpnt->host_scribble==0 || SCSEM(SCpnt) || SCNEXT(SCpnt)) {
1010 printk(ERR_LEAD "cannot reuse command\n", CMDINFO(SCpnt));
1011 return FAILED;
1012 }
1013 } else {
Christoph Hellwig5e13cdf2006-07-08 20:39:30 +02001014 struct aha152x_scdata *sc;
1015
Linus Torvalds1da177e2005-04-16 15:20:36 -07001016 SCpnt->host_scribble = kmalloc(sizeof(struct aha152x_scdata), GFP_ATOMIC);
1017 if(SCpnt->host_scribble==0) {
1018 printk(ERR_LEAD "allocation failed\n", CMDINFO(SCpnt));
1019 return FAILED;
1020 }
Christoph Hellwig5e13cdf2006-07-08 20:39:30 +02001021
1022 sc = SCDATA(SCpnt);
1023 memcpy(sc->cmnd, SCpnt->cmnd, sizeof(sc->cmnd));
1024 sc->request_buffer = SCpnt->request_buffer;
1025 sc->request_bufflen = SCpnt->request_bufflen;
1026 sc->use_sg = SCpnt->use_sg;
1027 sc->cmd_len = SCpnt->cmd_len;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001028 }
1029
1030 SCNEXT(SCpnt) = NULL;
1031 SCSEM(SCpnt) = sem;
1032
1033 /* setup scratch area
1034 SCp.ptr : buffer pointer
1035 SCp.this_residual : buffer length
1036 SCp.buffer : next buffer
1037 SCp.buffers_residual : left buffers in list
1038 SCp.phase : current state of the command */
1039 if (SCpnt->use_sg) {
1040 SCpnt->SCp.buffer = (struct scatterlist *) SCpnt->request_buffer;
1041 SCpnt->SCp.ptr = SG_ADDRESS(SCpnt->SCp.buffer);
1042 SCpnt->SCp.this_residual = SCpnt->SCp.buffer->length;
1043 SCpnt->SCp.buffers_residual = SCpnt->use_sg - 1;
1044 } else {
1045 SCpnt->SCp.ptr = (char *) SCpnt->request_buffer;
1046 SCpnt->SCp.this_residual = SCpnt->request_bufflen;
1047 SCpnt->SCp.buffer = NULL;
1048 SCpnt->SCp.buffers_residual = 0;
1049 }
1050
1051 DO_LOCK(flags);
1052
1053#if defined(AHA152X_STAT)
1054 HOSTDATA(shpnt)->total_commands++;
1055#endif
1056
1057 /* Turn led on, when this is the first command. */
1058 HOSTDATA(shpnt)->commands++;
1059 if (HOSTDATA(shpnt)->commands==1)
1060 SETPORT(PORTA, 1);
1061
1062 append_SC(&ISSUE_SC, SCpnt);
1063
1064 if(!HOSTDATA(shpnt)->in_intr)
1065 setup_expected_interrupts(shpnt);
1066
1067 DO_UNLOCK(flags);
1068
1069 return 0;
1070}
1071
1072/*
1073 * queue a command
1074 *
1075 */
1076static int aha152x_queue(Scsi_Cmnd *SCpnt, void (*done)(Scsi_Cmnd *))
1077{
1078#if 0
1079 if(*SCpnt->cmnd == REQUEST_SENSE) {
1080 SCpnt->result = 0;
1081 done(SCpnt);
1082
1083 return 0;
1084 }
1085#endif
1086
1087 return aha152x_internal_queue(SCpnt, NULL, 0, done);
1088}
1089
1090
1091/*
1092 *
1093 *
1094 */
1095static void reset_done(Scsi_Cmnd *SCpnt)
1096{
1097#if 0
1098 struct Scsi_Host *shpnt = SCpnt->host;
1099 DPRINTK(debug_eh, INFO_LEAD "reset_done called\n", CMDINFO(SCpnt));
1100#endif
1101 if(SCSEM(SCpnt)) {
1102 up(SCSEM(SCpnt));
1103 } else {
1104 printk(KERN_ERR "aha152x: reset_done w/o semaphore\n");
1105 }
1106}
1107
1108/*
1109 * Abort a command
1110 *
1111 */
1112static int aha152x_abort(Scsi_Cmnd *SCpnt)
1113{
1114 struct Scsi_Host *shpnt = SCpnt->device->host;
1115 Scsi_Cmnd *ptr;
1116 unsigned long flags;
1117
1118#if defined(AHA152X_DEBUG)
1119 if(HOSTDATA(shpnt)->debug & debug_eh) {
1120 printk(DEBUG_LEAD "abort(%p)", CMDINFO(SCpnt), SCpnt);
1121 show_queues(shpnt);
1122 }
1123#endif
1124
1125 DO_LOCK(flags);
1126
1127 ptr=remove_SC(&ISSUE_SC, SCpnt);
1128
1129 if(ptr) {
1130 DPRINTK(debug_eh, DEBUG_LEAD "not yet issued - SUCCESS\n", CMDINFO(SCpnt));
1131
1132 HOSTDATA(shpnt)->commands--;
1133 if (!HOSTDATA(shpnt)->commands)
1134 SETPORT(PORTA, 0);
1135 DO_UNLOCK(flags);
1136
1137 kfree(SCpnt->host_scribble);
1138 SCpnt->host_scribble=NULL;
1139
1140 return SUCCESS;
1141 }
1142
1143 DO_UNLOCK(flags);
1144
1145 /*
1146 * FIXME:
1147 * for current command: queue ABORT for message out and raise ATN
1148 * for disconnected command: pseudo SC with ABORT message or ABORT on reselection?
1149 *
1150 */
1151
1152 printk(ERR_LEAD "cannot abort running or disconnected command\n", CMDINFO(SCpnt));
1153
1154 return FAILED;
1155}
1156
1157static void timer_expired(unsigned long p)
1158{
1159 Scsi_Cmnd *SCp = (Scsi_Cmnd *)p;
1160 struct semaphore *sem = SCSEM(SCp);
1161 struct Scsi_Host *shpnt = SCp->device->host;
1162 unsigned long flags;
1163
1164 /* remove command from issue queue */
1165 DO_LOCK(flags);
1166 remove_SC(&ISSUE_SC, SCp);
1167 DO_UNLOCK(flags);
1168
1169 up(sem);
1170}
1171
1172/*
1173 * Reset a device
1174 *
1175 */
1176static int aha152x_device_reset(Scsi_Cmnd * SCpnt)
1177{
1178 struct Scsi_Host *shpnt = SCpnt->device->host;
1179 DECLARE_MUTEX_LOCKED(sem);
1180 struct timer_list timer;
1181 int ret, issued, disconnected;
1182 unsigned long flags;
1183
1184#if defined(AHA152X_DEBUG)
1185 if(HOSTDATA(shpnt)->debug & debug_eh) {
1186 printk(INFO_LEAD "aha152x_device_reset(%p)", CMDINFO(SCpnt), SCpnt);
1187 show_queues(shpnt);
1188 }
1189#endif
1190
1191 if(CURRENT_SC==SCpnt) {
1192 printk(ERR_LEAD "cannot reset current device\n", CMDINFO(SCpnt));
1193 return FAILED;
1194 }
1195
1196 DO_LOCK(flags);
1197 issued = remove_SC(&ISSUE_SC, SCpnt)==0;
1198 disconnected = issued && remove_SC(&DISCONNECTED_SC, SCpnt);
1199 DO_UNLOCK(flags);
1200
1201 SCpnt->cmd_len = 0;
1202 SCpnt->use_sg = 0;
1203 SCpnt->request_buffer = NULL;
1204 SCpnt->request_bufflen = 0;
1205
1206 init_timer(&timer);
1207 timer.data = (unsigned long) SCpnt;
1208 timer.expires = jiffies + 100*HZ; /* 10s */
1209 timer.function = (void (*)(unsigned long)) timer_expired;
1210
1211 aha152x_internal_queue(SCpnt, &sem, resetting, reset_done);
1212 add_timer(&timer);
1213 down(&sem);
1214 del_timer(&timer);
1215
1216 SCpnt->cmd_len = SCpnt->old_cmd_len;
1217 SCpnt->use_sg = SCpnt->old_use_sg;
1218 SCpnt->request_buffer = SCpnt->buffer;
1219 SCpnt->request_bufflen = SCpnt->bufflen;
1220
1221 DO_LOCK(flags);
1222
1223 if(SCpnt->SCp.phase & resetted) {
1224 HOSTDATA(shpnt)->commands--;
1225 if (!HOSTDATA(shpnt)->commands)
1226 SETPORT(PORTA, 0);
1227 kfree(SCpnt->host_scribble);
1228 SCpnt->host_scribble=NULL;
1229
1230 ret = SUCCESS;
1231 } else {
1232 /* requeue */
1233 if(!issued) {
1234 append_SC(&ISSUE_SC, SCpnt);
1235 } else if(disconnected) {
1236 append_SC(&DISCONNECTED_SC, SCpnt);
1237 }
1238
1239 ret = FAILED;
1240 }
1241
1242 DO_UNLOCK(flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001243 return ret;
1244}
1245
1246static void free_hard_reset_SCs(struct Scsi_Host *shpnt, Scsi_Cmnd **SCs)
1247{
1248 Scsi_Cmnd *ptr;
1249
1250 ptr=*SCs;
1251 while(ptr) {
1252 Scsi_Cmnd *next;
1253
1254 if(SCDATA(ptr)) {
1255 next = SCNEXT(ptr);
1256 } else {
1257 printk(DEBUG_LEAD "queue corrupted at %p\n", CMDINFO(ptr), ptr);
1258 next = NULL;
1259 }
1260
1261 if (!ptr->device->soft_reset) {
1262 DPRINTK(debug_eh, DEBUG_LEAD "disconnected command %p removed\n", CMDINFO(ptr), ptr);
1263 remove_SC(SCs, ptr);
1264 HOSTDATA(shpnt)->commands--;
1265 kfree(ptr->host_scribble);
1266 ptr->host_scribble=NULL;
1267 }
1268
1269 ptr = next;
1270 }
1271}
1272
1273/*
1274 * Reset the bus
1275 *
1276 */
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001277static int aha152x_bus_reset_host(struct Scsi_Host *shpnt)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001278{
Linus Torvalds1da177e2005-04-16 15:20:36 -07001279 unsigned long flags;
1280
1281 DO_LOCK(flags);
1282
1283#if defined(AHA152X_DEBUG)
1284 if(HOSTDATA(shpnt)->debug & debug_eh) {
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001285 printk(KERN_DEBUG "scsi%d: bus reset", shpnt->host_no);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001286 show_queues(shpnt);
1287 }
1288#endif
1289
1290 free_hard_reset_SCs(shpnt, &ISSUE_SC);
1291 free_hard_reset_SCs(shpnt, &DISCONNECTED_SC);
1292
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001293 DPRINTK(debug_eh, KERN_DEBUG "scsi%d: resetting bus\n", shpnt->host_no);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001294
1295 SETPORT(SCSISEQ, SCSIRSTO);
1296 mdelay(256);
1297 SETPORT(SCSISEQ, 0);
1298 mdelay(DELAY);
1299
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001300 DPRINTK(debug_eh, KERN_DEBUG "scsi%d: bus resetted\n", shpnt->host_no);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001301
1302 setup_expected_interrupts(shpnt);
1303 if(HOSTDATA(shpnt)->commands==0)
1304 SETPORT(PORTA, 0);
1305
1306 DO_UNLOCK(flags);
1307
1308 return SUCCESS;
1309}
1310
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001311/*
1312 * Reset the bus
1313 *
1314 */
1315static int aha152x_bus_reset(Scsi_Cmnd *SCpnt)
1316{
1317 return aha152x_bus_reset_host(SCpnt->device->host);
1318}
Linus Torvalds1da177e2005-04-16 15:20:36 -07001319
1320/*
1321 * Restore default values to the AIC-6260 registers and reset the fifos
1322 *
1323 */
1324static void reset_ports(struct Scsi_Host *shpnt)
1325{
1326 unsigned long flags;
1327
1328 /* disable interrupts */
1329 SETPORT(DMACNTRL0, RSTFIFO);
1330
1331 SETPORT(SCSISEQ, 0);
1332
1333 SETPORT(SXFRCTL1, 0);
1334 SETPORT(SCSISIG, 0);
1335 SETRATE(0);
1336
1337 /* clear all interrupt conditions */
1338 SETPORT(SSTAT0, 0x7f);
1339 SETPORT(SSTAT1, 0xef);
1340
1341 SETPORT(SSTAT4, SYNCERR | FWERR | FRERR);
1342
1343 SETPORT(DMACNTRL0, 0);
1344 SETPORT(DMACNTRL1, 0);
1345
1346 SETPORT(BRSTCNTRL, 0xf1);
1347
1348 /* clear SCSI fifos and transfer count */
1349 SETPORT(SXFRCTL0, CH1|CLRCH1|CLRSTCNT);
1350 SETPORT(SXFRCTL0, CH1);
1351
1352 DO_LOCK(flags);
1353 setup_expected_interrupts(shpnt);
1354 DO_UNLOCK(flags);
1355}
1356
1357/*
1358 * Reset the host (bus and controller)
1359 *
1360 */
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001361int aha152x_host_reset_host(struct Scsi_Host *shpnt)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001362{
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001363 DPRINTK(debug_eh, KERN_DEBUG "scsi%d: host reset\n", shpnt->host_no);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001364
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001365 aha152x_bus_reset_host(shpnt);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001366
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001367 DPRINTK(debug_eh, KERN_DEBUG "scsi%d: resetting ports\n", shpnt->host_no);
1368 reset_ports(shpnt);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001369
1370 return SUCCESS;
1371}
1372
1373/*
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001374 * Reset the host (bus and controller)
1375 *
1376 */
1377static int aha152x_host_reset(Scsi_Cmnd *SCpnt)
1378{
1379 return aha152x_host_reset_host(SCpnt->device->host);
1380}
1381
1382/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001383 * Return the "logical geometry"
1384 *
1385 */
1386static int aha152x_biosparam(struct scsi_device *sdev, struct block_device *bdev,
1387 sector_t capacity, int *info_array)
1388{
1389 struct Scsi_Host *shpnt = sdev->host;
1390
1391 /* try default translation */
1392 info_array[0] = 64;
1393 info_array[1] = 32;
1394 info_array[2] = (unsigned long)capacity / (64 * 32);
1395
1396 /* for disks >1GB do some guessing */
1397 if (info_array[2] >= 1024) {
1398 int info[3];
1399
1400 /* try to figure out the geometry from the partition table */
1401 if (scsicam_bios_param(bdev, capacity, info) < 0 ||
1402 !((info[0] == 64 && info[1] == 32) || (info[0] == 255 && info[1] == 63))) {
1403 if (EXT_TRANS) {
1404 printk(KERN_NOTICE
1405 "aha152x: unable to verify geometry for disk with >1GB.\n"
1406 " using extended translation.\n");
1407 info_array[0] = 255;
1408 info_array[1] = 63;
1409 info_array[2] = (unsigned long)capacity / (255 * 63);
1410 } else {
1411 printk(KERN_NOTICE
1412 "aha152x: unable to verify geometry for disk with >1GB.\n"
1413 " Using default translation. Please verify yourself.\n"
1414 " Perhaps you need to enable extended translation in the driver.\n"
1415 " See Documentation/scsi/aha152x.txt for details.\n");
1416 }
1417 } else {
1418 info_array[0] = info[0];
1419 info_array[1] = info[1];
1420 info_array[2] = info[2];
1421
1422 if (info[0] == 255 && !EXT_TRANS) {
1423 printk(KERN_NOTICE
1424 "aha152x: current partition table is using extended translation.\n"
1425 " using it also, although it's not explicitly enabled.\n");
1426 }
1427 }
1428 }
1429
1430 return 0;
1431}
1432
1433/*
1434 * Internal done function
1435 *
1436 */
1437static void done(struct Scsi_Host *shpnt, int error)
1438{
1439 if (CURRENT_SC) {
1440 if(DONE_SC)
1441 printk(ERR_LEAD "there's already a completed command %p - will cause abort\n", CMDINFO(CURRENT_SC), DONE_SC);
1442
1443 DONE_SC = CURRENT_SC;
1444 CURRENT_SC = NULL;
1445 DONE_SC->result = error;
1446 } else
1447 printk(KERN_ERR "aha152x: done() called outside of command\n");
1448}
1449
1450static struct work_struct aha152x_tq;
1451
1452/*
1453 * Run service completions on the card with interrupts enabled.
1454 *
1455 */
1456static void run(void)
1457{
1458 int i;
1459 for (i = 0; i<ARRAY_SIZE(aha152x_host); i++) {
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001460 is_complete(aha152x_host[i]);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001461 }
1462}
1463
1464/*
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001465 * Interrupt handler
Linus Torvalds1da177e2005-04-16 15:20:36 -07001466 *
1467 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07001468static irqreturn_t intr(int irqno, void *dev_id, struct pt_regs *regs)
1469{
1470 struct Scsi_Host *shpnt = lookup_irq(irqno);
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001471 unsigned long flags;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001472 unsigned char rev, dmacntrl0;
1473
1474 if (!shpnt) {
1475 printk(KERN_ERR "aha152x: catched interrupt %d for unknown controller.\n", irqno);
1476 return IRQ_NONE;
1477 }
1478
1479 /*
1480 * Read a couple of registers that are known to not be all 1's. If
1481 * we read all 1's (-1), that means that either:
1482 *
1483 * a. The host adapter chip has gone bad, and we cannot control it,
1484 * OR
1485 * b. The host adapter is a PCMCIA card that has been ejected
1486 *
1487 * In either case, we cannot do anything with the host adapter at
1488 * this point in time. So just ignore the interrupt and return.
1489 * In the latter case, the interrupt might actually be meant for
1490 * someone else sharing this IRQ, and that driver will handle it.
1491 */
1492 rev = GETPORT(REV);
1493 dmacntrl0 = GETPORT(DMACNTRL0);
1494 if ((rev == 0xFF) && (dmacntrl0 == 0xFF))
1495 return IRQ_NONE;
1496
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001497 if( TESTLO(DMASTAT, INTSTAT) )
1498 return IRQ_NONE;
1499
Linus Torvalds1da177e2005-04-16 15:20:36 -07001500 /* no more interrupts from the controller, while we're busy.
1501 INTEN is restored by the BH handler */
1502 CLRBITS(DMACNTRL0, INTEN);
1503
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001504 DO_LOCK(flags);
1505 if( HOSTDATA(shpnt)->service==0 ) {
1506 HOSTDATA(shpnt)->service=1;
1507
1508 /* Poke the BH handler */
1509 INIT_WORK(&aha152x_tq, (void *) run, NULL);
1510 schedule_work(&aha152x_tq);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001511 }
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01001512 DO_UNLOCK(flags);
1513
Linus Torvalds1da177e2005-04-16 15:20:36 -07001514 return IRQ_HANDLED;
1515}
1516
1517/*
1518 * busfree phase
1519 * - handle completition/disconnection/error of current command
1520 * - start selection for next command (if any)
1521 */
1522static void busfree_run(struct Scsi_Host *shpnt)
1523{
1524 unsigned long flags;
1525#if defined(AHA152X_STAT)
1526 int action=0;
1527#endif
1528
1529 SETPORT(SXFRCTL0, CH1|CLRCH1|CLRSTCNT);
1530 SETPORT(SXFRCTL0, CH1);
1531
1532 SETPORT(SSTAT1, CLRBUSFREE);
1533
1534 if(CURRENT_SC) {
1535#if defined(AHA152X_STAT)
1536 action++;
1537#endif
1538 CURRENT_SC->SCp.phase &= ~syncneg;
1539
1540 if(CURRENT_SC->SCp.phase & completed) {
1541 /* target sent COMMAND COMPLETE */
1542 done(shpnt, (CURRENT_SC->SCp.Status & 0xff) | ((CURRENT_SC->SCp.Message & 0xff) << 8) | (DID_OK << 16));
1543
1544 } else if(CURRENT_SC->SCp.phase & aborted) {
1545 DPRINTK(debug_eh, DEBUG_LEAD "ABORT sent\n", CMDINFO(CURRENT_SC));
1546 done(shpnt, (CURRENT_SC->SCp.Status & 0xff) | ((CURRENT_SC->SCp.Message & 0xff) << 8) | (DID_ABORT << 16));
1547
1548 } else if(CURRENT_SC->SCp.phase & resetted) {
1549 DPRINTK(debug_eh, DEBUG_LEAD "BUS DEVICE RESET sent\n", CMDINFO(CURRENT_SC));
1550 done(shpnt, (CURRENT_SC->SCp.Status & 0xff) | ((CURRENT_SC->SCp.Message & 0xff) << 8) | (DID_RESET << 16));
1551
1552 } else if(CURRENT_SC->SCp.phase & disconnected) {
1553 /* target sent DISCONNECT */
1554 DPRINTK(debug_selection, DEBUG_LEAD "target disconnected at %d/%d\n",
1555 CMDINFO(CURRENT_SC),
1556 CURRENT_SC->resid,
1557 CURRENT_SC->request_bufflen);
1558#if defined(AHA152X_STAT)
1559 HOSTDATA(shpnt)->disconnections++;
1560#endif
1561 append_SC(&DISCONNECTED_SC, CURRENT_SC);
1562 CURRENT_SC->SCp.phase |= 1 << 16;
1563 CURRENT_SC = NULL;
1564
1565 } else {
1566 done(shpnt, DID_ERROR << 16);
1567 }
1568#if defined(AHA152X_STAT)
1569 } else {
1570 HOSTDATA(shpnt)->busfree_without_old_command++;
1571#endif
1572 }
1573
1574 DO_LOCK(flags);
1575
1576 if(DONE_SC) {
1577#if defined(AHA152X_STAT)
1578 action++;
1579#endif
1580
1581 if(DONE_SC->SCp.phase & check_condition) {
Christoph Hellwig5e13cdf2006-07-08 20:39:30 +02001582 struct scsi_cmnd *cmd = HOSTDATA(shpnt)->done_SC;
1583 struct aha152x_scdata *sc = SCDATA(cmd);
1584
Linus Torvalds1da177e2005-04-16 15:20:36 -07001585#if 0
1586 if(HOSTDATA(shpnt)->debug & debug_eh) {
1587 printk(ERR_LEAD "received sense: ", CMDINFO(DONE_SC));
db9dff32005-04-03 14:53:59 -05001588 scsi_print_sense("bh", DONE_SC);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001589 }
1590#endif
1591
1592 /* restore old command */
Christoph Hellwig5e13cdf2006-07-08 20:39:30 +02001593 memcpy(cmd->cmnd, sc->cmnd, sizeof(sc->cmnd));
1594 cmd->request_buffer = sc->request_buffer;
1595 cmd->request_bufflen = sc->request_bufflen;
1596 cmd->use_sg = sc->use_sg;
1597 cmd->cmd_len = sc->cmd_len;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001598
Christoph Hellwig5e13cdf2006-07-08 20:39:30 +02001599 cmd->SCp.Status = 0x02;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001600
1601 HOSTDATA(shpnt)->commands--;
1602 if (!HOSTDATA(shpnt)->commands)
1603 SETPORT(PORTA, 0); /* turn led off */
1604 } else if(DONE_SC->SCp.Status==0x02) {
1605#if defined(AHA152X_STAT)
1606 HOSTDATA(shpnt)->busfree_with_check_condition++;
1607#endif
1608#if 0
1609 DPRINTK(debug_eh, ERR_LEAD "CHECK CONDITION found\n", CMDINFO(DONE_SC));
1610#endif
1611
1612 if(!(DONE_SC->SCp.Status & not_issued)) {
1613 Scsi_Cmnd *ptr = DONE_SC;
1614 DONE_SC=NULL;
1615#if 0
1616 DPRINTK(debug_eh, ERR_LEAD "requesting sense\n", CMDINFO(ptr));
1617#endif
1618
1619 ptr->cmnd[0] = REQUEST_SENSE;
1620 ptr->cmnd[1] = 0;
1621 ptr->cmnd[2] = 0;
1622 ptr->cmnd[3] = 0;
1623 ptr->cmnd[4] = sizeof(ptr->sense_buffer);
1624 ptr->cmnd[5] = 0;
1625 ptr->cmd_len = 6;
1626 ptr->use_sg = 0;
1627 ptr->request_buffer = ptr->sense_buffer;
1628 ptr->request_bufflen = sizeof(ptr->sense_buffer);
1629
1630 DO_UNLOCK(flags);
1631 aha152x_internal_queue(ptr, NULL, check_condition, ptr->scsi_done);
1632 DO_LOCK(flags);
1633#if 0
1634 } else {
1635 DPRINTK(debug_eh, ERR_LEAD "command not issued - CHECK CONDITION ignored\n", CMDINFO(DONE_SC));
1636#endif
1637 }
1638 }
1639
1640 if(DONE_SC && DONE_SC->scsi_done) {
1641#if defined(AHA152X_DEBUG)
1642 int hostno=DONE_SC->device->host->host_no;
1643 int id=DONE_SC->device->id & 0xf;
1644 int lun=DONE_SC->device->lun & 0x7;
1645#endif
1646 Scsi_Cmnd *ptr = DONE_SC;
1647 DONE_SC=NULL;
1648
1649 /* turn led off, when no commands are in the driver */
1650 HOSTDATA(shpnt)->commands--;
1651 if (!HOSTDATA(shpnt)->commands)
1652 SETPORT(PORTA, 0); /* turn led off */
1653
1654 if(ptr->scsi_done != reset_done) {
1655 kfree(ptr->host_scribble);
1656 ptr->host_scribble=NULL;
1657 }
1658
1659 DO_UNLOCK(flags);
1660 DPRINTK(debug_done, DEBUG_LEAD "calling scsi_done(%p)\n", hostno, id, lun, ptr);
1661 ptr->scsi_done(ptr);
1662 DPRINTK(debug_done, DEBUG_LEAD "scsi_done(%p) returned\n", hostno, id, lun, ptr);
1663 DO_LOCK(flags);
1664 }
1665
1666 DONE_SC=NULL;
1667#if defined(AHA152X_STAT)
1668 } else {
1669 HOSTDATA(shpnt)->busfree_without_done_command++;
1670#endif
1671 }
1672
1673 if(ISSUE_SC)
1674 CURRENT_SC = remove_first_SC(&ISSUE_SC);
1675
1676 DO_UNLOCK(flags);
1677
1678 if(CURRENT_SC) {
1679#if defined(AHA152X_STAT)
1680 action++;
1681#endif
1682 CURRENT_SC->SCp.phase |= selecting;
1683
1684 DPRINTK(debug_selection, DEBUG_LEAD "selecting target\n", CMDINFO(CURRENT_SC));
1685
1686 /* clear selection timeout */
1687 SETPORT(SSTAT1, SELTO);
1688
1689 SETPORT(SCSIID, (shpnt->this_id << OID_) | CURRENT_SC->device->id);
1690 SETPORT(SXFRCTL1, (PARITY ? ENSPCHK : 0 ) | ENSTIMER);
1691 SETPORT(SCSISEQ, ENSELO | ENAUTOATNO | (DISCONNECTED_SC ? ENRESELI : 0));
1692 } else {
1693#if defined(AHA152X_STAT)
1694 HOSTDATA(shpnt)->busfree_without_new_command++;
1695#endif
1696 SETPORT(SCSISEQ, DISCONNECTED_SC ? ENRESELI : 0);
1697 }
1698
1699#if defined(AHA152X_STAT)
1700 if(!action)
1701 HOSTDATA(shpnt)->busfree_without_any_action++;
1702#endif
1703}
1704
1705/*
1706 * Selection done (OUT)
1707 * - queue IDENTIFY message and SDTR to selected target for message out
1708 * (ATN asserted automagically via ENAUTOATNO in busfree())
1709 */
1710static void seldo_run(struct Scsi_Host *shpnt)
1711{
1712 SETPORT(SCSISIG, 0);
1713 SETPORT(SSTAT1, CLRBUSFREE);
1714 SETPORT(SSTAT1, CLRPHASECHG);
1715
1716 CURRENT_SC->SCp.phase &= ~(selecting|not_issued);
1717
1718 SETPORT(SCSISEQ, 0);
1719
1720 if (TESTLO(SSTAT0, SELDO)) {
1721 printk(ERR_LEAD "aha152x: passing bus free condition\n", CMDINFO(CURRENT_SC));
1722 done(shpnt, DID_NO_CONNECT << 16);
1723 return;
1724 }
1725
1726 SETPORT(SSTAT0, CLRSELDO);
1727
1728 ADDMSGO(IDENTIFY(RECONNECT, CURRENT_SC->device->lun));
1729
1730 if (CURRENT_SC->SCp.phase & aborting) {
1731 ADDMSGO(ABORT);
1732 } else if (CURRENT_SC->SCp.phase & resetting) {
1733 ADDMSGO(BUS_DEVICE_RESET);
1734 } else if (SYNCNEG==0 && SYNCHRONOUS) {
1735 CURRENT_SC->SCp.phase |= syncneg;
Matthew Wilcox6ea3c0b2006-02-07 07:54:46 -07001736 MSGOLEN += spi_populate_sync_msg(&MSGO(MSGOLEN), 50, 8);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001737 SYNCNEG=1; /* negotiation in progress */
1738 }
1739
1740 SETRATE(SYNCRATE);
1741}
1742
1743/*
1744 * Selection timeout
1745 * - return command to mid-level with failure cause
1746 *
1747 */
1748static void selto_run(struct Scsi_Host *shpnt)
1749{
1750 SETPORT(SCSISEQ, 0);
1751 SETPORT(SSTAT1, CLRSELTIMO);
1752
1753 DPRINTK(debug_selection, DEBUG_LEAD "selection timeout\n", CMDINFO(CURRENT_SC));
1754
1755 if(!CURRENT_SC) {
1756 DPRINTK(debug_selection, DEBUG_LEAD "!CURRENT_SC\n", CMDINFO(CURRENT_SC));
1757 return;
1758 }
1759
1760 CURRENT_SC->SCp.phase &= ~selecting;
1761
1762 if (CURRENT_SC->SCp.phase & aborted) {
1763 DPRINTK(debug_selection, DEBUG_LEAD "aborted\n", CMDINFO(CURRENT_SC));
1764 done(shpnt, DID_ABORT << 16);
1765 } else if (TESTLO(SSTAT0, SELINGO)) {
1766 DPRINTK(debug_selection, DEBUG_LEAD "arbitration not won\n", CMDINFO(CURRENT_SC));
1767 done(shpnt, DID_BUS_BUSY << 16);
1768 } else {
1769 /* ARBITRATION won, but SELECTION failed */
1770 DPRINTK(debug_selection, DEBUG_LEAD "selection failed\n", CMDINFO(CURRENT_SC));
1771 done(shpnt, DID_NO_CONNECT << 16);
1772 }
1773}
1774
1775/*
1776 * Selection in done
1777 * - put current command back to issue queue
1778 * (reconnection of a disconnected nexus instead
1779 * of successful selection out)
1780 *
1781 */
1782static void seldi_run(struct Scsi_Host *shpnt)
1783{
1784 int selid;
1785 int target;
1786 unsigned long flags;
1787
1788 SETPORT(SCSISIG, 0);
1789 SETPORT(SSTAT0, CLRSELDI);
1790 SETPORT(SSTAT1, CLRBUSFREE);
1791 SETPORT(SSTAT1, CLRPHASECHG);
1792
1793 if(CURRENT_SC) {
1794 if(!(CURRENT_SC->SCp.phase & not_issued))
1795 printk(ERR_LEAD "command should not have been issued yet\n", CMDINFO(CURRENT_SC));
1796
1797 DPRINTK(debug_selection, ERR_LEAD "command requeued - reselection\n", CMDINFO(CURRENT_SC));
1798
1799 DO_LOCK(flags);
1800 append_SC(&ISSUE_SC, CURRENT_SC);
1801 DO_UNLOCK(flags);
1802
1803 CURRENT_SC = NULL;
1804 }
1805
1806 if(!DISCONNECTED_SC) {
1807 DPRINTK(debug_selection, DEBUG_LEAD "unexpected SELDI ", CMDINFO(CURRENT_SC));
1808 return;
1809 }
1810
1811 RECONN_TARGET=-1;
1812
1813 selid = GETPORT(SELID) & ~(1 << shpnt->this_id);
1814
1815 if (selid==0) {
1816 printk("aha152x%d: target id unknown (%02x)\n", HOSTNO, selid);
1817 return;
1818 }
1819
1820 for(target=7; !(selid & (1 << target)); target--)
1821 ;
1822
1823 if(selid & ~(1 << target)) {
1824 printk("aha152x%d: multiple targets reconnected (%02x)\n",
1825 HOSTNO, selid);
1826 }
1827
1828
1829 SETPORT(SCSIID, (shpnt->this_id << OID_) | target);
1830 SETPORT(SCSISEQ, 0);
1831
1832 SETRATE(HOSTDATA(shpnt)->syncrate[target]);
1833
1834 RECONN_TARGET=target;
1835 DPRINTK(debug_selection, DEBUG_LEAD "target %d reselected (%02x).\n", CMDINFO(CURRENT_SC), target, selid);
1836}
1837
1838/*
1839 * message in phase
1840 * - handle initial message after reconnection to identify
1841 * reconnecting nexus
1842 * - queue command on DISCONNECTED_SC on DISCONNECT message
1843 * - set completed flag on COMMAND COMPLETE
1844 * (other completition code moved to busfree_run)
1845 * - handle response to SDTR
1846 * - clear synchronous transfer agreements on BUS RESET
1847 *
1848 * FIXME: what about SAVE POINTERS, RESTORE POINTERS?
1849 *
1850 */
1851static void msgi_run(struct Scsi_Host *shpnt)
1852{
1853 for(;;) {
1854 int sstat1 = GETPORT(SSTAT1);
1855
1856 if(sstat1 & (PHASECHG|PHASEMIS|BUSFREE) || !(sstat1 & REQINIT))
1857 return;
1858
1859 if(TESTLO(SSTAT0,SPIORDY)) {
1860 DPRINTK(debug_msgi, DEBUG_LEAD "!SPIORDY\n", CMDINFO(CURRENT_SC));
1861 return;
1862 }
1863
1864 ADDMSGI(GETPORT(SCSIDAT));
1865
1866#if defined(AHA152X_DEBUG)
1867 if (HOSTDATA(shpnt)->debug & debug_msgi) {
1868 printk(INFO_LEAD "inbound message %02x ", CMDINFO(CURRENT_SC), MSGI(0));
Matthew Wilcox1abfd372005-12-15 16:22:01 -05001869 spi_print_msg(&MSGI(0));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001870 printk("\n");
1871 }
1872#endif
1873
1874 if(!CURRENT_SC) {
1875 if(LASTSTATE!=seldi) {
1876 printk(KERN_ERR "aha152x%d: message in w/o current command not after reselection\n", HOSTNO);
1877 }
1878
1879 /*
1880 * Handle reselection
1881 */
1882 if(!(MSGI(0) & IDENTIFY_BASE)) {
1883 printk(KERN_ERR "aha152x%d: target didn't identify after reselection\n", HOSTNO);
1884 continue;
1885 }
1886
1887 CURRENT_SC = remove_lun_SC(&DISCONNECTED_SC, RECONN_TARGET, MSGI(0) & 0x3f);
1888
1889 if (!CURRENT_SC) {
1890 show_queues(shpnt);
1891 printk(KERN_ERR "aha152x%d: no disconnected command for target %d/%d\n", HOSTNO, RECONN_TARGET, MSGI(0) & 0x3f);
1892 continue;
1893 }
1894
1895 DPRINTK(debug_msgi, DEBUG_LEAD "target reconnected\n", CMDINFO(CURRENT_SC));
1896
1897 CURRENT_SC->SCp.Message = MSGI(0);
1898 CURRENT_SC->SCp.phase &= ~disconnected;
1899
1900 MSGILEN=0;
1901
1902 /* next message if any */
1903 continue;
1904 }
1905
1906 CURRENT_SC->SCp.Message = MSGI(0);
1907
1908 switch (MSGI(0)) {
1909 case DISCONNECT:
1910 if (!RECONNECT)
1911 printk(WARN_LEAD "target was not allowed to disconnect\n", CMDINFO(CURRENT_SC));
1912
1913 CURRENT_SC->SCp.phase |= disconnected;
1914 break;
1915
1916 case COMMAND_COMPLETE:
1917 if(CURRENT_SC->SCp.phase & completed)
1918 DPRINTK(debug_msgi, DEBUG_LEAD "again COMMAND COMPLETE\n", CMDINFO(CURRENT_SC));
1919
1920 CURRENT_SC->SCp.phase |= completed;
1921 break;
1922
1923 case MESSAGE_REJECT:
1924 if (SYNCNEG==1) {
1925 printk(INFO_LEAD "Synchronous Data Transfer Request was rejected\n", CMDINFO(CURRENT_SC));
1926 SYNCNEG=2; /* negotiation completed */
1927 } else
1928 printk(INFO_LEAD "inbound message (MESSAGE REJECT)\n", CMDINFO(CURRENT_SC));
1929 break;
1930
1931 case SAVE_POINTERS:
1932 break;
1933
1934 case RESTORE_POINTERS:
1935 break;
1936
1937 case EXTENDED_MESSAGE:
1938 if(MSGILEN<2 || MSGILEN<MSGI(1)+2) {
1939 /* not yet completed */
1940 continue;
1941 }
1942
1943 switch (MSGI(2)) {
1944 case EXTENDED_SDTR:
1945 {
1946 long ticks;
1947
1948 if (MSGI(1) != 3) {
1949 printk(ERR_LEAD "SDTR message length!=3\n", CMDINFO(CURRENT_SC));
1950 break;
1951 }
1952
1953 if (!HOSTDATA(shpnt)->synchronous)
1954 break;
1955
1956 printk(INFO_LEAD, CMDINFO(CURRENT_SC));
Matthew Wilcox1abfd372005-12-15 16:22:01 -05001957 spi_print_msg(&MSGI(0));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001958 printk("\n");
1959
1960 ticks = (MSGI(3) * 4 + 49) / 50;
1961
1962 if (syncneg) {
1963 /* negotiation in progress */
1964 if (ticks > 9 || MSGI(4) < 1 || MSGI(4) > 8) {
1965 ADDMSGO(MESSAGE_REJECT);
1966 printk(INFO_LEAD "received Synchronous Data Transfer Request invalid - rejected\n", CMDINFO(CURRENT_SC));
1967 break;
1968 }
1969
1970 SYNCRATE |= ((ticks - 2) << 4) + MSGI(4);
1971 } else if (ticks <= 9 && MSGI(4) >= 1) {
1972 ADDMSGO(EXTENDED_MESSAGE);
1973 ADDMSGO(3);
1974 ADDMSGO(EXTENDED_SDTR);
1975 if (ticks < 4) {
1976 ticks = 4;
1977 ADDMSGO(50);
1978 } else
1979 ADDMSGO(MSGI(3));
1980
1981 if (MSGI(4) > 8)
1982 MSGI(4) = 8;
1983
1984 ADDMSGO(MSGI(4));
1985
1986 SYNCRATE |= ((ticks - 2) << 4) + MSGI(4);
1987 } else {
1988 /* requested SDTR is too slow, do it asynchronously */
1989 printk(INFO_LEAD "Synchronous Data Transfer Request too slow - Rejecting\n", CMDINFO(CURRENT_SC));
1990 ADDMSGO(MESSAGE_REJECT);
1991 }
1992
1993 SYNCNEG=2; /* negotiation completed */
1994 SETRATE(SYNCRATE);
1995 }
1996 break;
1997
1998 case BUS_DEVICE_RESET:
1999 {
2000 int i;
2001
2002 for(i=0; i<8; i++) {
2003 HOSTDATA(shpnt)->syncrate[i]=0;
2004 HOSTDATA(shpnt)->syncneg[i]=0;
2005 }
2006
2007 }
2008 break;
2009
2010 case EXTENDED_MODIFY_DATA_POINTER:
2011 case EXTENDED_EXTENDED_IDENTIFY:
2012 case EXTENDED_WDTR:
2013 default:
2014 ADDMSGO(MESSAGE_REJECT);
2015 break;
2016 }
2017 break;
2018 }
2019
2020 MSGILEN=0;
2021 }
2022}
2023
2024static void msgi_end(struct Scsi_Host *shpnt)
2025{
2026 if(MSGILEN>0)
2027 printk(WARN_LEAD "target left before message completed (%d)\n", CMDINFO(CURRENT_SC), MSGILEN);
2028
2029 if (MSGOLEN > 0 && !(GETPORT(SSTAT1) & BUSFREE)) {
2030 DPRINTK(debug_msgi, DEBUG_LEAD "msgo pending\n", CMDINFO(CURRENT_SC));
2031 SETPORT(SCSISIG, P_MSGI | SIG_ATNO);
2032 }
2033}
2034
2035/*
2036 * message out phase
2037 *
2038 */
2039static void msgo_init(struct Scsi_Host *shpnt)
2040{
2041 if(MSGOLEN==0) {
2042 if((CURRENT_SC->SCp.phase & syncneg) && SYNCNEG==2 && SYNCRATE==0) {
2043 ADDMSGO(IDENTIFY(RECONNECT, CURRENT_SC->device->lun));
2044 } else {
2045 printk(INFO_LEAD "unexpected MESSAGE OUT phase; rejecting\n", CMDINFO(CURRENT_SC));
2046 ADDMSGO(MESSAGE_REJECT);
2047 }
2048 }
2049
2050#if defined(AHA152X_DEBUG)
2051 if(HOSTDATA(shpnt)->debug & debug_msgo) {
2052 int i;
2053
2054 printk(DEBUG_LEAD "messages( ", CMDINFO(CURRENT_SC));
Matthew Wilcox1abfd372005-12-15 16:22:01 -05002055 for (i=0; i<MSGOLEN; i+=spi_print_msg(&MSGO(i)), printk(" "))
Linus Torvalds1da177e2005-04-16 15:20:36 -07002056 ;
2057 printk(")\n");
2058 }
2059#endif
2060}
2061
2062/*
2063 * message out phase
2064 *
2065 */
2066static void msgo_run(struct Scsi_Host *shpnt)
2067{
2068 if(MSGO_I==MSGOLEN)
2069 DPRINTK(debug_msgo, DEBUG_LEAD "messages all sent (%d/%d)\n", CMDINFO(CURRENT_SC), MSGO_I, MSGOLEN);
2070
2071 while(MSGO_I<MSGOLEN) {
2072 DPRINTK(debug_msgo, DEBUG_LEAD "message byte %02x (%d/%d)\n", CMDINFO(CURRENT_SC), MSGO(MSGO_I), MSGO_I, MSGOLEN);
2073
2074 if(TESTLO(SSTAT0, SPIORDY)) {
2075 DPRINTK(debug_msgo, DEBUG_LEAD "!SPIORDY\n", CMDINFO(CURRENT_SC));
2076 return;
2077 }
2078
2079 if (MSGO_I==MSGOLEN-1) {
2080 /* Leave MESSAGE OUT after transfer */
2081 SETPORT(SSTAT1, CLRATNO);
2082 }
2083
2084
2085 if (MSGO(MSGO_I) & IDENTIFY_BASE)
2086 CURRENT_SC->SCp.phase |= identified;
2087
2088 if (MSGO(MSGO_I)==ABORT)
2089 CURRENT_SC->SCp.phase |= aborted;
2090
2091 if (MSGO(MSGO_I)==BUS_DEVICE_RESET)
2092 CURRENT_SC->SCp.phase |= resetted;
2093
2094 SETPORT(SCSIDAT, MSGO(MSGO_I++));
2095 }
2096}
2097
2098static void msgo_end(struct Scsi_Host *shpnt)
2099{
2100 if(MSGO_I<MSGOLEN) {
2101 printk(ERR_LEAD "message sent incompletely (%d/%d)\n", CMDINFO(CURRENT_SC), MSGO_I, MSGOLEN);
2102 if(SYNCNEG==1) {
2103 printk(INFO_LEAD "Synchronous Data Transfer Request was rejected\n", CMDINFO(CURRENT_SC));
2104 SYNCNEG=2;
2105 }
2106 }
2107
2108 MSGO_I = 0;
2109 MSGOLEN = 0;
2110}
2111
2112/*
2113 * command phase
2114 *
2115 */
2116static void cmd_init(struct Scsi_Host *shpnt)
2117{
2118 if (CURRENT_SC->SCp.sent_command) {
2119 printk(ERR_LEAD "command already sent\n", CMDINFO(CURRENT_SC));
2120 done(shpnt, DID_ERROR << 16);
2121 return;
2122 }
2123
2124#if defined(AHA152X_DEBUG)
2125 if (HOSTDATA(shpnt)->debug & debug_cmd) {
2126 printk(DEBUG_LEAD "cmd_init: ", CMDINFO(CURRENT_SC));
db9dff32005-04-03 14:53:59 -05002127 __scsi_print_command(CURRENT_SC->cmnd);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002128 }
2129#endif
2130
2131 CMD_I=0;
2132}
2133
2134/*
2135 * command phase
2136 *
2137 */
2138static void cmd_run(struct Scsi_Host *shpnt)
2139{
2140 if(CMD_I==CURRENT_SC->cmd_len) {
2141 DPRINTK(debug_cmd, DEBUG_LEAD "command already completely sent (%d/%d)", CMDINFO(CURRENT_SC), CMD_I, CURRENT_SC->cmd_len);
2142 disp_ports(shpnt);
2143 }
2144
2145 while(CMD_I<CURRENT_SC->cmd_len) {
2146 DPRINTK(debug_cmd, DEBUG_LEAD "command byte %02x (%d/%d)\n", CMDINFO(CURRENT_SC), CURRENT_SC->cmnd[CMD_I], CMD_I, CURRENT_SC->cmd_len);
2147
2148 if(TESTLO(SSTAT0, SPIORDY)) {
2149 DPRINTK(debug_cmd, DEBUG_LEAD "!SPIORDY\n", CMDINFO(CURRENT_SC));
2150 return;
2151 }
2152
2153 SETPORT(SCSIDAT, CURRENT_SC->cmnd[CMD_I++]);
2154 }
2155}
2156
2157static void cmd_end(struct Scsi_Host *shpnt)
2158{
2159 if(CMD_I<CURRENT_SC->cmd_len)
2160 printk(ERR_LEAD "command sent incompletely (%d/%d)\n", CMDINFO(CURRENT_SC), CMD_I, CURRENT_SC->cmd_len);
2161 else
2162 CURRENT_SC->SCp.sent_command++;
2163}
2164
2165/*
2166 * status phase
2167 *
2168 */
2169static void status_run(struct Scsi_Host *shpnt)
2170{
2171 if(TESTLO(SSTAT0,SPIORDY)) {
2172 DPRINTK(debug_status, DEBUG_LEAD "!SPIORDY\n", CMDINFO(CURRENT_SC));
2173 return;
2174 }
2175
2176 CURRENT_SC->SCp.Status = GETPORT(SCSIDAT);
2177
2178#if defined(AHA152X_DEBUG)
2179 if (HOSTDATA(shpnt)->debug & debug_status) {
2180 printk(DEBUG_LEAD "inbound status %02x ", CMDINFO(CURRENT_SC), CURRENT_SC->SCp.Status);
db9dff32005-04-03 14:53:59 -05002181 scsi_print_status(CURRENT_SC->SCp.Status);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002182 printk("\n");
2183 }
2184#endif
2185}
2186
2187/*
2188 * data in phase
2189 *
2190 */
2191static void datai_init(struct Scsi_Host *shpnt)
2192{
2193 SETPORT(DMACNTRL0, RSTFIFO);
2194 SETPORT(DMACNTRL0, RSTFIFO|ENDMA);
2195
2196 SETPORT(SXFRCTL0, CH1|CLRSTCNT);
2197 SETPORT(SXFRCTL0, CH1|SCSIEN|DMAEN);
2198
2199 SETPORT(SIMODE0, 0);
2200 SETPORT(SIMODE1, ENSCSIPERR | ENSCSIRST | ENPHASEMIS | ENBUSFREE);
2201
2202 DATA_LEN=0;
2203 DPRINTK(debug_datai,
2204 DEBUG_LEAD "datai_init: request_bufflen=%d resid=%d\n",
2205 CMDINFO(CURRENT_SC), CURRENT_SC->request_bufflen, CURRENT_SC->resid);
2206}
2207
2208static void datai_run(struct Scsi_Host *shpnt)
2209{
2210 unsigned long the_time;
2211 int fifodata, data_count;
2212
2213 /*
2214 * loop while the phase persists or the fifos are not empty
2215 *
2216 */
2217 while(TESTLO(DMASTAT, INTSTAT) || TESTLO(DMASTAT, DFIFOEMP) || TESTLO(SSTAT2, SEMPTY)) {
2218 /* FIXME: maybe this should be done by setting up
2219 * STCNT to trigger ENSWRAP interrupt, instead of
2220 * polling for DFIFOFULL
2221 */
2222 the_time=jiffies + 100*HZ;
2223 while(TESTLO(DMASTAT, DFIFOFULL|INTSTAT) && time_before(jiffies,the_time))
2224 barrier();
2225
2226 if(TESTLO(DMASTAT, DFIFOFULL|INTSTAT)) {
2227 printk(ERR_LEAD "datai timeout", CMDINFO(CURRENT_SC));
2228 disp_ports(shpnt);
2229 break;
2230 }
2231
2232 if(TESTHI(DMASTAT, DFIFOFULL)) {
2233 fifodata = 128;
2234 } else {
2235 the_time=jiffies + 100*HZ;
2236 while(TESTLO(SSTAT2, SEMPTY) && time_before(jiffies,the_time))
2237 barrier();
2238
2239 if(TESTLO(SSTAT2, SEMPTY)) {
2240 printk(ERR_LEAD "datai sempty timeout", CMDINFO(CURRENT_SC));
2241 disp_ports(shpnt);
2242 break;
2243 }
2244
2245 fifodata = GETPORT(FIFOSTAT);
2246 }
2247
2248 if(CURRENT_SC->SCp.this_residual>0) {
2249 while(fifodata>0 && CURRENT_SC->SCp.this_residual>0) {
2250 data_count = fifodata>CURRENT_SC->SCp.this_residual ?
2251 CURRENT_SC->SCp.this_residual :
2252 fifodata;
2253 fifodata -= data_count;
2254
2255 if(data_count & 1) {
2256 DPRINTK(debug_datai, DEBUG_LEAD "8bit\n", CMDINFO(CURRENT_SC));
2257 SETPORT(DMACNTRL0, ENDMA|_8BIT);
2258 *CURRENT_SC->SCp.ptr++ = GETPORT(DATAPORT);
2259 CURRENT_SC->SCp.this_residual--;
2260 DATA_LEN++;
2261 SETPORT(DMACNTRL0, ENDMA);
2262 }
2263
2264 if(data_count > 1) {
2265 DPRINTK(debug_datai, DEBUG_LEAD "16bit(%d)\n", CMDINFO(CURRENT_SC), data_count);
2266 data_count >>= 1;
2267 insw(DATAPORT, CURRENT_SC->SCp.ptr, data_count);
2268 CURRENT_SC->SCp.ptr += 2 * data_count;
2269 CURRENT_SC->SCp.this_residual -= 2 * data_count;
2270 DATA_LEN += 2 * data_count;
2271 }
2272
2273 if(CURRENT_SC->SCp.this_residual==0 && CURRENT_SC->SCp.buffers_residual>0) {
2274 /* advance to next buffer */
2275 CURRENT_SC->SCp.buffers_residual--;
2276 CURRENT_SC->SCp.buffer++;
2277 CURRENT_SC->SCp.ptr = SG_ADDRESS(CURRENT_SC->SCp.buffer);
2278 CURRENT_SC->SCp.this_residual = CURRENT_SC->SCp.buffer->length;
2279 }
2280 }
2281 } else if(fifodata>0) {
2282 printk(ERR_LEAD "no buffers left for %d(%d) bytes (data overrun!?)\n", CMDINFO(CURRENT_SC), fifodata, GETPORT(FIFOSTAT));
2283 SETPORT(DMACNTRL0, ENDMA|_8BIT);
2284 while(fifodata>0) {
2285 int data;
2286 data=GETPORT(DATAPORT);
2287 DPRINTK(debug_datai, DEBUG_LEAD "data=%02x\n", CMDINFO(CURRENT_SC), data);
2288 fifodata--;
2289 DATA_LEN++;
2290 }
2291 SETPORT(DMACNTRL0, ENDMA|_8BIT);
2292 }
2293 }
2294
2295 if(TESTLO(DMASTAT, INTSTAT) ||
2296 TESTLO(DMASTAT, DFIFOEMP) ||
2297 TESTLO(SSTAT2, SEMPTY) ||
2298 GETPORT(FIFOSTAT)>0) {
2299 /*
2300 * something went wrong, if there's something left in the fifos
2301 * or the phase didn't change
2302 */
2303 printk(ERR_LEAD "fifos should be empty and phase should have changed\n", CMDINFO(CURRENT_SC));
2304 disp_ports(shpnt);
2305 }
2306
2307 if(DATA_LEN!=GETSTCNT()) {
2308 printk(ERR_LEAD
2309 "manual transfer count differs from automatic (count=%d;stcnt=%d;diff=%d;fifostat=%d)",
2310 CMDINFO(CURRENT_SC), DATA_LEN, GETSTCNT(), GETSTCNT()-DATA_LEN, GETPORT(FIFOSTAT));
2311 disp_ports(shpnt);
2312 mdelay(10000);
2313 }
2314}
2315
2316static void datai_end(struct Scsi_Host *shpnt)
2317{
2318 CURRENT_SC->resid -= GETSTCNT();
2319
2320 DPRINTK(debug_datai,
2321 DEBUG_LEAD "datai_end: request_bufflen=%d resid=%d stcnt=%d\n",
2322 CMDINFO(CURRENT_SC), CURRENT_SC->request_bufflen, CURRENT_SC->resid, GETSTCNT());
2323
2324 SETPORT(SXFRCTL0, CH1|CLRSTCNT);
2325 SETPORT(DMACNTRL0, 0);
2326}
2327
2328/*
2329 * data out phase
2330 *
2331 */
2332static void datao_init(struct Scsi_Host *shpnt)
2333{
2334 SETPORT(DMACNTRL0, WRITE_READ | RSTFIFO);
2335 SETPORT(DMACNTRL0, WRITE_READ | ENDMA);
2336
2337 SETPORT(SXFRCTL0, CH1|CLRSTCNT);
2338 SETPORT(SXFRCTL0, CH1|SCSIEN|DMAEN);
2339
2340 SETPORT(SIMODE0, 0);
2341 SETPORT(SIMODE1, ENSCSIPERR | ENSCSIRST | ENPHASEMIS | ENBUSFREE );
2342
2343 DATA_LEN = CURRENT_SC->resid;
2344
2345 DPRINTK(debug_datao,
2346 DEBUG_LEAD "datao_init: request_bufflen=%d; resid=%d\n",
2347 CMDINFO(CURRENT_SC), CURRENT_SC->request_bufflen, CURRENT_SC->resid);
2348}
2349
2350static void datao_run(struct Scsi_Host *shpnt)
2351{
2352 unsigned long the_time;
2353 int data_count;
2354
2355 /* until phase changes or all data sent */
2356 while(TESTLO(DMASTAT, INTSTAT) && CURRENT_SC->SCp.this_residual>0) {
2357 data_count = 128;
2358 if(data_count > CURRENT_SC->SCp.this_residual)
2359 data_count=CURRENT_SC->SCp.this_residual;
2360
2361 if(TESTLO(DMASTAT, DFIFOEMP)) {
2362 printk(ERR_LEAD "datao fifo not empty (%d)", CMDINFO(CURRENT_SC), GETPORT(FIFOSTAT));
2363 disp_ports(shpnt);
2364 break;
2365 }
2366
2367 if(data_count & 1) {
2368 SETPORT(DMACNTRL0,WRITE_READ|ENDMA|_8BIT);
2369 SETPORT(DATAPORT, *CURRENT_SC->SCp.ptr++);
2370 CURRENT_SC->SCp.this_residual--;
2371 CURRENT_SC->resid--;
2372 SETPORT(DMACNTRL0,WRITE_READ|ENDMA);
2373 }
2374
2375 if(data_count > 1) {
2376 data_count >>= 1;
2377 outsw(DATAPORT, CURRENT_SC->SCp.ptr, data_count);
2378 CURRENT_SC->SCp.ptr += 2 * data_count;
2379 CURRENT_SC->SCp.this_residual -= 2 * data_count;
2380 CURRENT_SC->resid -= 2 * data_count;
2381 }
2382
2383 if(CURRENT_SC->SCp.this_residual==0 && CURRENT_SC->SCp.buffers_residual>0) {
2384 /* advance to next buffer */
2385 CURRENT_SC->SCp.buffers_residual--;
2386 CURRENT_SC->SCp.buffer++;
2387 CURRENT_SC->SCp.ptr = SG_ADDRESS(CURRENT_SC->SCp.buffer);
2388 CURRENT_SC->SCp.this_residual = CURRENT_SC->SCp.buffer->length;
2389 }
2390
2391 the_time=jiffies + 100*HZ;
2392 while(TESTLO(DMASTAT, DFIFOEMP|INTSTAT) && time_before(jiffies,the_time))
2393 barrier();
2394
2395 if(TESTLO(DMASTAT, DFIFOEMP|INTSTAT)) {
2396 printk(ERR_LEAD "dataout timeout", CMDINFO(CURRENT_SC));
2397 disp_ports(shpnt);
2398 break;
2399 }
2400 }
2401}
2402
2403static void datao_end(struct Scsi_Host *shpnt)
2404{
2405 if(TESTLO(DMASTAT, DFIFOEMP)) {
2406 int data_count = (DATA_LEN - CURRENT_SC->resid) - GETSTCNT();
2407
2408 DPRINTK(debug_datao, DEBUG_LEAD "datao: %d bytes to resend (%d written, %d transferred)\n",
2409 CMDINFO(CURRENT_SC),
2410 data_count,
2411 DATA_LEN-CURRENT_SC->resid,
2412 GETSTCNT());
2413
2414 CURRENT_SC->resid += data_count;
2415
2416 if(CURRENT_SC->use_sg) {
2417 data_count -= CURRENT_SC->SCp.ptr - SG_ADDRESS(CURRENT_SC->SCp.buffer);
2418 while(data_count>0) {
2419 CURRENT_SC->SCp.buffer--;
2420 CURRENT_SC->SCp.buffers_residual++;
2421 data_count -= CURRENT_SC->SCp.buffer->length;
2422 }
2423 CURRENT_SC->SCp.ptr = SG_ADDRESS(CURRENT_SC->SCp.buffer) - data_count;
2424 CURRENT_SC->SCp.this_residual = CURRENT_SC->SCp.buffer->length + data_count;
2425 } else {
2426 CURRENT_SC->SCp.ptr -= data_count;
2427 CURRENT_SC->SCp.this_residual += data_count;
2428 }
2429 }
2430
2431 DPRINTK(debug_datao, DEBUG_LEAD "datao_end: request_bufflen=%d; resid=%d; stcnt=%d\n",
2432 CMDINFO(CURRENT_SC),
2433 CURRENT_SC->request_bufflen,
2434 CURRENT_SC->resid,
2435 GETSTCNT());
2436
2437 SETPORT(SXFRCTL0, CH1|CLRCH1|CLRSTCNT);
2438 SETPORT(SXFRCTL0, CH1);
2439
2440 SETPORT(DMACNTRL0, 0);
2441}
2442
2443/*
2444 * figure out what state we're in
2445 *
2446 */
2447static int update_state(struct Scsi_Host *shpnt)
2448{
2449 int dataphase=0;
2450 unsigned int stat0 = GETPORT(SSTAT0);
2451 unsigned int stat1 = GETPORT(SSTAT1);
2452
2453 PREVSTATE = STATE;
2454 STATE=unknown;
2455
2456 if(stat1 & SCSIRSTI) {
2457 STATE=rsti;
2458 SETPORT(SCSISEQ,0);
2459 SETPORT(SSTAT1,SCSIRSTI);
2460 } else if(stat0 & SELDI && PREVSTATE==busfree) {
2461 STATE=seldi;
2462 } else if(stat0 & SELDO && CURRENT_SC && (CURRENT_SC->SCp.phase & selecting)) {
2463 STATE=seldo;
2464 } else if(stat1 & SELTO) {
2465 STATE=selto;
2466 } else if(stat1 & BUSFREE) {
2467 STATE=busfree;
2468 SETPORT(SSTAT1,BUSFREE);
2469 } else if(stat1 & SCSIPERR) {
2470 STATE=parerr;
2471 SETPORT(SSTAT1,SCSIPERR);
2472 } else if(stat1 & REQINIT) {
2473 switch(GETPORT(SCSISIG) & P_MASK) {
2474 case P_MSGI: STATE=msgi; break;
2475 case P_MSGO: STATE=msgo; break;
2476 case P_DATAO: STATE=datao; break;
2477 case P_DATAI: STATE=datai; break;
2478 case P_STATUS: STATE=status; break;
2479 case P_CMD: STATE=cmd; break;
2480 }
2481 dataphase=1;
2482 }
2483
2484 if((stat0 & SELDI) && STATE!=seldi && !dataphase) {
2485 printk(INFO_LEAD "reselection missed?", CMDINFO(CURRENT_SC));
2486 disp_ports(shpnt);
2487 }
2488
2489 if(STATE!=PREVSTATE) {
2490 LASTSTATE=PREVSTATE;
2491 }
2492
2493 return dataphase;
2494}
2495
2496/*
2497 * handle parity error
2498 *
2499 * FIXME: in which phase?
2500 *
2501 */
2502static void parerr_run(struct Scsi_Host *shpnt)
2503{
2504 printk(ERR_LEAD "parity error\n", CMDINFO(CURRENT_SC));
2505 done(shpnt, DID_PARITY << 16);
2506}
2507
2508/*
2509 * handle reset in
2510 *
2511 */
2512static void rsti_run(struct Scsi_Host *shpnt)
2513{
2514 Scsi_Cmnd *ptr;
2515
2516 printk(KERN_NOTICE "aha152x%d: scsi reset in\n", HOSTNO);
2517
2518 ptr=DISCONNECTED_SC;
2519 while(ptr) {
2520 Scsi_Cmnd *next = SCNEXT(ptr);
2521
2522 if (!ptr->device->soft_reset) {
2523 remove_SC(&DISCONNECTED_SC, ptr);
2524
2525 kfree(ptr->host_scribble);
2526 ptr->host_scribble=NULL;
2527
2528 ptr->result = DID_RESET << 16;
2529 ptr->scsi_done(ptr);
2530 }
2531
2532 ptr = next;
2533 }
2534
2535 if(CURRENT_SC && !CURRENT_SC->device->soft_reset)
2536 done(shpnt, DID_RESET << 16 );
2537}
2538
2539
2540/*
2541 * bottom-half handler
2542 *
2543 */
2544static void is_complete(struct Scsi_Host *shpnt)
2545{
2546 int dataphase;
2547 unsigned long flags;
2548 int pending;
2549
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01002550 if(!shpnt)
2551 return;
2552
Linus Torvalds1da177e2005-04-16 15:20:36 -07002553 DO_LOCK(flags);
Jürgen E. Fischere2482fa2006-02-19 00:31:51 +01002554
2555 if( HOSTDATA(shpnt)->service==0 ) {
2556 DO_UNLOCK(flags);
2557 return;
2558 }
2559
2560 HOSTDATA(shpnt)->service = 0;
2561
Linus Torvalds1da177e2005-04-16 15:20:36 -07002562 if(HOSTDATA(shpnt)->in_intr) {
2563 DO_UNLOCK(flags);
2564 /* aha152x_error never returns.. */
2565 aha152x_error(shpnt, "bottom-half already running!?");
2566 }
2567 HOSTDATA(shpnt)->in_intr++;
2568
2569 /*
2570 * loop while there are interrupt conditions pending
2571 *
2572 */
2573 do {
2574 unsigned long start = jiffies;
2575 DO_UNLOCK(flags);
2576
2577 dataphase=update_state(shpnt);
2578
2579 DPRINTK(debug_phases, LEAD "start %s %s(%s)\n", CMDINFO(CURRENT_SC), states[STATE].name, states[PREVSTATE].name, states[LASTSTATE].name);
2580
2581 /*
2582 * end previous state
2583 *
2584 */
2585 if(PREVSTATE!=STATE && states[PREVSTATE].end)
2586 states[PREVSTATE].end(shpnt);
2587
2588 /*
2589 * disable SPIO mode if previous phase used it
2590 * and this one doesn't
2591 *
2592 */
2593 if(states[PREVSTATE].spio && !states[STATE].spio) {
2594 SETPORT(SXFRCTL0, CH1);
2595 SETPORT(DMACNTRL0, 0);
2596 if(CURRENT_SC)
2597 CURRENT_SC->SCp.phase &= ~spiordy;
2598 }
2599
2600 /*
2601 * accept current dataphase phase
2602 *
2603 */
2604 if(dataphase) {
2605 SETPORT(SSTAT0, REQINIT);
2606 SETPORT(SCSISIG, GETPORT(SCSISIG) & P_MASK);
2607 SETPORT(SSTAT1, PHASECHG);
2608 }
2609
2610 /*
2611 * enable SPIO mode if previous didn't use it
2612 * and this one does
2613 *
2614 */
2615 if(!states[PREVSTATE].spio && states[STATE].spio) {
2616 SETPORT(DMACNTRL0, 0);
2617 SETPORT(SXFRCTL0, CH1|SPIOEN);
2618 if(CURRENT_SC)
2619 CURRENT_SC->SCp.phase |= spiordy;
2620 }
2621
2622 /*
2623 * initialize for new state
2624 *
2625 */
2626 if(PREVSTATE!=STATE && states[STATE].init)
2627 states[STATE].init(shpnt);
2628
2629 /*
2630 * handle current state
2631 *
2632 */
2633 if(states[STATE].run)
2634 states[STATE].run(shpnt);
2635 else
2636 printk(ERR_LEAD "unexpected state (%x)\n", CMDINFO(CURRENT_SC), STATE);
2637
2638 /*
2639 * setup controller to interrupt on
2640 * the next expected condition and
2641 * loop if it's already there
2642 *
2643 */
2644 DO_LOCK(flags);
2645 pending=setup_expected_interrupts(shpnt);
2646#if defined(AHA152X_STAT)
2647 HOSTDATA(shpnt)->count[STATE]++;
2648 if(PREVSTATE!=STATE)
2649 HOSTDATA(shpnt)->count_trans[STATE]++;
2650 HOSTDATA(shpnt)->time[STATE] += jiffies-start;
2651#endif
2652
2653 DPRINTK(debug_phases, LEAD "end %s %s(%s)\n", CMDINFO(CURRENT_SC), states[STATE].name, states[PREVSTATE].name, states[LASTSTATE].name);
2654 } while(pending);
2655
2656 /*
2657 * enable interrupts and leave bottom-half
2658 *
2659 */
2660 HOSTDATA(shpnt)->in_intr--;
2661 SETBITS(DMACNTRL0, INTEN);
2662 DO_UNLOCK(flags);
2663}
2664
2665
2666/*
2667 * Dump the current driver status and panic
2668 */
2669static void aha152x_error(struct Scsi_Host *shpnt, char *msg)
2670{
2671 printk(KERN_EMERG "\naha152x%d: %s\n", HOSTNO, msg);
2672 show_queues(shpnt);
2673 panic("aha152x panic\n");
2674}
2675
2676/*
2677 * Display registers of AIC-6260
2678 */
2679static void disp_ports(struct Scsi_Host *shpnt)
2680{
2681#if defined(AHA152X_DEBUG)
2682 int s;
2683
2684 printk("\n%s: %s(%s) ",
2685 CURRENT_SC ? "busy" : "waiting",
2686 states[STATE].name,
2687 states[PREVSTATE].name);
2688
2689 s = GETPORT(SCSISEQ);
2690 printk("SCSISEQ( ");
2691 if (s & TEMODEO)
2692 printk("TARGET MODE ");
2693 if (s & ENSELO)
2694 printk("SELO ");
2695 if (s & ENSELI)
2696 printk("SELI ");
2697 if (s & ENRESELI)
2698 printk("RESELI ");
2699 if (s & ENAUTOATNO)
2700 printk("AUTOATNO ");
2701 if (s & ENAUTOATNI)
2702 printk("AUTOATNI ");
2703 if (s & ENAUTOATNP)
2704 printk("AUTOATNP ");
2705 if (s & SCSIRSTO)
2706 printk("SCSIRSTO ");
2707 printk(");");
2708
2709 printk(" SCSISIG(");
2710 s = GETPORT(SCSISIG);
2711 switch (s & P_MASK) {
2712 case P_DATAO:
2713 printk("DATA OUT");
2714 break;
2715 case P_DATAI:
2716 printk("DATA IN");
2717 break;
2718 case P_CMD:
2719 printk("COMMAND");
2720 break;
2721 case P_STATUS:
2722 printk("STATUS");
2723 break;
2724 case P_MSGO:
2725 printk("MESSAGE OUT");
2726 break;
2727 case P_MSGI:
2728 printk("MESSAGE IN");
2729 break;
2730 default:
2731 printk("*invalid*");
2732 break;
2733 }
2734
2735 printk("); ");
2736
2737 printk("INTSTAT (%s); ", TESTHI(DMASTAT, INTSTAT) ? "hi" : "lo");
2738
2739 printk("SSTAT( ");
2740 s = GETPORT(SSTAT0);
2741 if (s & TARGET)
2742 printk("TARGET ");
2743 if (s & SELDO)
2744 printk("SELDO ");
2745 if (s & SELDI)
2746 printk("SELDI ");
2747 if (s & SELINGO)
2748 printk("SELINGO ");
2749 if (s & SWRAP)
2750 printk("SWRAP ");
2751 if (s & SDONE)
2752 printk("SDONE ");
2753 if (s & SPIORDY)
2754 printk("SPIORDY ");
2755 if (s & DMADONE)
2756 printk("DMADONE ");
2757
2758 s = GETPORT(SSTAT1);
2759 if (s & SELTO)
2760 printk("SELTO ");
2761 if (s & ATNTARG)
2762 printk("ATNTARG ");
2763 if (s & SCSIRSTI)
2764 printk("SCSIRSTI ");
2765 if (s & PHASEMIS)
2766 printk("PHASEMIS ");
2767 if (s & BUSFREE)
2768 printk("BUSFREE ");
2769 if (s & SCSIPERR)
2770 printk("SCSIPERR ");
2771 if (s & PHASECHG)
2772 printk("PHASECHG ");
2773 if (s & REQINIT)
2774 printk("REQINIT ");
2775 printk("); ");
2776
2777
2778 printk("SSTAT( ");
2779
2780 s = GETPORT(SSTAT0) & GETPORT(SIMODE0);
2781
2782 if (s & TARGET)
2783 printk("TARGET ");
2784 if (s & SELDO)
2785 printk("SELDO ");
2786 if (s & SELDI)
2787 printk("SELDI ");
2788 if (s & SELINGO)
2789 printk("SELINGO ");
2790 if (s & SWRAP)
2791 printk("SWRAP ");
2792 if (s & SDONE)
2793 printk("SDONE ");
2794 if (s & SPIORDY)
2795 printk("SPIORDY ");
2796 if (s & DMADONE)
2797 printk("DMADONE ");
2798
2799 s = GETPORT(SSTAT1) & GETPORT(SIMODE1);
2800
2801 if (s & SELTO)
2802 printk("SELTO ");
2803 if (s & ATNTARG)
2804 printk("ATNTARG ");
2805 if (s & SCSIRSTI)
2806 printk("SCSIRSTI ");
2807 if (s & PHASEMIS)
2808 printk("PHASEMIS ");
2809 if (s & BUSFREE)
2810 printk("BUSFREE ");
2811 if (s & SCSIPERR)
2812 printk("SCSIPERR ");
2813 if (s & PHASECHG)
2814 printk("PHASECHG ");
2815 if (s & REQINIT)
2816 printk("REQINIT ");
2817 printk("); ");
2818
2819 printk("SXFRCTL0( ");
2820
2821 s = GETPORT(SXFRCTL0);
2822 if (s & SCSIEN)
2823 printk("SCSIEN ");
2824 if (s & DMAEN)
2825 printk("DMAEN ");
2826 if (s & CH1)
2827 printk("CH1 ");
2828 if (s & CLRSTCNT)
2829 printk("CLRSTCNT ");
2830 if (s & SPIOEN)
2831 printk("SPIOEN ");
2832 if (s & CLRCH1)
2833 printk("CLRCH1 ");
2834 printk("); ");
2835
2836 printk("SIGNAL( ");
2837
2838 s = GETPORT(SCSISIG);
2839 if (s & SIG_ATNI)
2840 printk("ATNI ");
2841 if (s & SIG_SELI)
2842 printk("SELI ");
2843 if (s & SIG_BSYI)
2844 printk("BSYI ");
2845 if (s & SIG_REQI)
2846 printk("REQI ");
2847 if (s & SIG_ACKI)
2848 printk("ACKI ");
2849 printk("); ");
2850
2851 printk("SELID (%02x), ", GETPORT(SELID));
2852
2853 printk("STCNT (%d), ", GETSTCNT());
2854
2855 printk("SSTAT2( ");
2856
2857 s = GETPORT(SSTAT2);
2858 if (s & SOFFSET)
2859 printk("SOFFSET ");
2860 if (s & SEMPTY)
2861 printk("SEMPTY ");
2862 if (s & SFULL)
2863 printk("SFULL ");
2864 printk("); SFCNT (%d); ", s & (SFULL | SFCNT));
2865
2866 s = GETPORT(SSTAT3);
2867 printk("SCSICNT (%d), OFFCNT(%d), ", (s & 0xf0) >> 4, s & 0x0f);
2868
2869 printk("SSTAT4( ");
2870 s = GETPORT(SSTAT4);
2871 if (s & SYNCERR)
2872 printk("SYNCERR ");
2873 if (s & FWERR)
2874 printk("FWERR ");
2875 if (s & FRERR)
2876 printk("FRERR ");
2877 printk("); ");
2878
2879 printk("DMACNTRL0( ");
2880 s = GETPORT(DMACNTRL0);
2881 printk("%s ", s & _8BIT ? "8BIT" : "16BIT");
2882 printk("%s ", s & DMA ? "DMA" : "PIO");
2883 printk("%s ", s & WRITE_READ ? "WRITE" : "READ");
2884 if (s & ENDMA)
2885 printk("ENDMA ");
2886 if (s & INTEN)
2887 printk("INTEN ");
2888 if (s & RSTFIFO)
2889 printk("RSTFIFO ");
2890 if (s & SWINT)
2891 printk("SWINT ");
2892 printk("); ");
2893
2894 printk("DMASTAT( ");
2895 s = GETPORT(DMASTAT);
2896 if (s & ATDONE)
2897 printk("ATDONE ");
2898 if (s & WORDRDY)
2899 printk("WORDRDY ");
2900 if (s & DFIFOFULL)
2901 printk("DFIFOFULL ");
2902 if (s & DFIFOEMP)
2903 printk("DFIFOEMP ");
2904 printk(")\n");
2905#endif
2906}
2907
2908/*
2909 * display enabled interrupts
2910 */
2911static void disp_enintr(struct Scsi_Host *shpnt)
2912{
2913 int s;
2914
2915 printk(KERN_DEBUG "enabled interrupts ( ");
2916
2917 s = GETPORT(SIMODE0);
2918 if (s & ENSELDO)
2919 printk("ENSELDO ");
2920 if (s & ENSELDI)
2921 printk("ENSELDI ");
2922 if (s & ENSELINGO)
2923 printk("ENSELINGO ");
2924 if (s & ENSWRAP)
2925 printk("ENSWRAP ");
2926 if (s & ENSDONE)
2927 printk("ENSDONE ");
2928 if (s & ENSPIORDY)
2929 printk("ENSPIORDY ");
2930 if (s & ENDMADONE)
2931 printk("ENDMADONE ");
2932
2933 s = GETPORT(SIMODE1);
2934 if (s & ENSELTIMO)
2935 printk("ENSELTIMO ");
2936 if (s & ENATNTARG)
2937 printk("ENATNTARG ");
2938 if (s & ENPHASEMIS)
2939 printk("ENPHASEMIS ");
2940 if (s & ENBUSFREE)
2941 printk("ENBUSFREE ");
2942 if (s & ENSCSIPERR)
2943 printk("ENSCSIPERR ");
2944 if (s & ENPHASECHG)
2945 printk("ENPHASECHG ");
2946 if (s & ENREQINIT)
2947 printk("ENREQINIT ");
2948 printk(")\n");
2949}
2950
2951/*
2952 * Show the command data of a command
2953 */
2954static void show_command(Scsi_Cmnd *ptr)
2955{
Jeff Garzik017560f2005-10-24 18:04:36 -04002956 scmd_printk(KERN_DEBUG, ptr, "%p: cmnd=(", ptr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002957
db9dff32005-04-03 14:53:59 -05002958 __scsi_print_command(ptr->cmnd);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002959
2960 printk(KERN_DEBUG "); request_bufflen=%d; resid=%d; phase |",
2961 ptr->request_bufflen, ptr->resid);
2962
2963 if (ptr->SCp.phase & not_issued)
2964 printk("not issued|");
2965 if (ptr->SCp.phase & selecting)
2966 printk("selecting|");
2967 if (ptr->SCp.phase & identified)
2968 printk("identified|");
2969 if (ptr->SCp.phase & disconnected)
2970 printk("disconnected|");
2971 if (ptr->SCp.phase & completed)
2972 printk("completed|");
2973 if (ptr->SCp.phase & spiordy)
2974 printk("spiordy|");
2975 if (ptr->SCp.phase & syncneg)
2976 printk("syncneg|");
2977 if (ptr->SCp.phase & aborted)
2978 printk("aborted|");
2979 if (ptr->SCp.phase & resetted)
2980 printk("resetted|");
2981 if( SCDATA(ptr) ) {
2982 printk("; next=0x%p\n", SCNEXT(ptr));
2983 } else {
2984 printk("; next=(host scribble NULL)\n");
2985 }
2986}
2987
2988/*
2989 * Dump the queued data
2990 */
2991static void show_queues(struct Scsi_Host *shpnt)
2992{
2993 Scsi_Cmnd *ptr;
2994 unsigned long flags;
2995
2996 DO_LOCK(flags);
2997 printk(KERN_DEBUG "\nqueue status:\nissue_SC:\n");
2998 for (ptr = ISSUE_SC; ptr; ptr = SCNEXT(ptr))
2999 show_command(ptr);
3000 DO_UNLOCK(flags);
3001
3002 printk(KERN_DEBUG "current_SC:\n");
3003 if (CURRENT_SC)
3004 show_command(CURRENT_SC);
3005 else
3006 printk(KERN_DEBUG "none\n");
3007
3008 printk(KERN_DEBUG "disconnected_SC:\n");
3009 for (ptr = DISCONNECTED_SC; ptr; ptr = SCDATA(ptr) ? SCNEXT(ptr) : NULL)
3010 show_command(ptr);
3011
3012 disp_ports(shpnt);
3013 disp_enintr(shpnt);
3014}
3015
3016#undef SPRINTF
3017#define SPRINTF(args...) pos += sprintf(pos, ## args)
3018
3019static int get_command(char *pos, Scsi_Cmnd * ptr)
3020{
3021 char *start = pos;
3022 int i;
3023
3024 SPRINTF("0x%08x: target=%d; lun=%d; cmnd=( ",
3025 (unsigned int) ptr, ptr->device->id, ptr->device->lun);
3026
3027 for (i = 0; i < COMMAND_SIZE(ptr->cmnd[0]); i++)
3028 SPRINTF("0x%02x ", ptr->cmnd[i]);
3029
3030 SPRINTF("); resid=%d; residual=%d; buffers=%d; phase |",
3031 ptr->resid, ptr->SCp.this_residual, ptr->SCp.buffers_residual);
3032
3033 if (ptr->SCp.phase & not_issued)
3034 SPRINTF("not issued|");
3035 if (ptr->SCp.phase & selecting)
3036 SPRINTF("selecting|");
3037 if (ptr->SCp.phase & disconnected)
3038 SPRINTF("disconnected|");
3039 if (ptr->SCp.phase & aborted)
3040 SPRINTF("aborted|");
3041 if (ptr->SCp.phase & identified)
3042 SPRINTF("identified|");
3043 if (ptr->SCp.phase & completed)
3044 SPRINTF("completed|");
3045 if (ptr->SCp.phase & spiordy)
3046 SPRINTF("spiordy|");
3047 if (ptr->SCp.phase & syncneg)
3048 SPRINTF("syncneg|");
3049 SPRINTF("; next=0x%p\n", SCNEXT(ptr));
3050
3051 return (pos - start);
3052}
3053
3054static int get_ports(struct Scsi_Host *shpnt, char *pos)
3055{
3056 char *start = pos;
3057 int s;
3058
3059 SPRINTF("\n%s: %s(%s) ", CURRENT_SC ? "on bus" : "waiting", states[STATE].name, states[PREVSTATE].name);
3060
3061 s = GETPORT(SCSISEQ);
3062 SPRINTF("SCSISEQ( ");
3063 if (s & TEMODEO)
3064 SPRINTF("TARGET MODE ");
3065 if (s & ENSELO)
3066 SPRINTF("SELO ");
3067 if (s & ENSELI)
3068 SPRINTF("SELI ");
3069 if (s & ENRESELI)
3070 SPRINTF("RESELI ");
3071 if (s & ENAUTOATNO)
3072 SPRINTF("AUTOATNO ");
3073 if (s & ENAUTOATNI)
3074 SPRINTF("AUTOATNI ");
3075 if (s & ENAUTOATNP)
3076 SPRINTF("AUTOATNP ");
3077 if (s & SCSIRSTO)
3078 SPRINTF("SCSIRSTO ");
3079 SPRINTF(");");
3080
3081 SPRINTF(" SCSISIG(");
3082 s = GETPORT(SCSISIG);
3083 switch (s & P_MASK) {
3084 case P_DATAO:
3085 SPRINTF("DATA OUT");
3086 break;
3087 case P_DATAI:
3088 SPRINTF("DATA IN");
3089 break;
3090 case P_CMD:
3091 SPRINTF("COMMAND");
3092 break;
3093 case P_STATUS:
3094 SPRINTF("STATUS");
3095 break;
3096 case P_MSGO:
3097 SPRINTF("MESSAGE OUT");
3098 break;
3099 case P_MSGI:
3100 SPRINTF("MESSAGE IN");
3101 break;
3102 default:
3103 SPRINTF("*invalid*");
3104 break;
3105 }
3106
3107 SPRINTF("); ");
3108
3109 SPRINTF("INTSTAT (%s); ", TESTHI(DMASTAT, INTSTAT) ? "hi" : "lo");
3110
3111 SPRINTF("SSTAT( ");
3112 s = GETPORT(SSTAT0);
3113 if (s & TARGET)
3114 SPRINTF("TARGET ");
3115 if (s & SELDO)
3116 SPRINTF("SELDO ");
3117 if (s & SELDI)
3118 SPRINTF("SELDI ");
3119 if (s & SELINGO)
3120 SPRINTF("SELINGO ");
3121 if (s & SWRAP)
3122 SPRINTF("SWRAP ");
3123 if (s & SDONE)
3124 SPRINTF("SDONE ");
3125 if (s & SPIORDY)
3126 SPRINTF("SPIORDY ");
3127 if (s & DMADONE)
3128 SPRINTF("DMADONE ");
3129
3130 s = GETPORT(SSTAT1);
3131 if (s & SELTO)
3132 SPRINTF("SELTO ");
3133 if (s & ATNTARG)
3134 SPRINTF("ATNTARG ");
3135 if (s & SCSIRSTI)
3136 SPRINTF("SCSIRSTI ");
3137 if (s & PHASEMIS)
3138 SPRINTF("PHASEMIS ");
3139 if (s & BUSFREE)
3140 SPRINTF("BUSFREE ");
3141 if (s & SCSIPERR)
3142 SPRINTF("SCSIPERR ");
3143 if (s & PHASECHG)
3144 SPRINTF("PHASECHG ");
3145 if (s & REQINIT)
3146 SPRINTF("REQINIT ");
3147 SPRINTF("); ");
3148
3149
3150 SPRINTF("SSTAT( ");
3151
3152 s = GETPORT(SSTAT0) & GETPORT(SIMODE0);
3153
3154 if (s & TARGET)
3155 SPRINTF("TARGET ");
3156 if (s & SELDO)
3157 SPRINTF("SELDO ");
3158 if (s & SELDI)
3159 SPRINTF("SELDI ");
3160 if (s & SELINGO)
3161 SPRINTF("SELINGO ");
3162 if (s & SWRAP)
3163 SPRINTF("SWRAP ");
3164 if (s & SDONE)
3165 SPRINTF("SDONE ");
3166 if (s & SPIORDY)
3167 SPRINTF("SPIORDY ");
3168 if (s & DMADONE)
3169 SPRINTF("DMADONE ");
3170
3171 s = GETPORT(SSTAT1) & GETPORT(SIMODE1);
3172
3173 if (s & SELTO)
3174 SPRINTF("SELTO ");
3175 if (s & ATNTARG)
3176 SPRINTF("ATNTARG ");
3177 if (s & SCSIRSTI)
3178 SPRINTF("SCSIRSTI ");
3179 if (s & PHASEMIS)
3180 SPRINTF("PHASEMIS ");
3181 if (s & BUSFREE)
3182 SPRINTF("BUSFREE ");
3183 if (s & SCSIPERR)
3184 SPRINTF("SCSIPERR ");
3185 if (s & PHASECHG)
3186 SPRINTF("PHASECHG ");
3187 if (s & REQINIT)
3188 SPRINTF("REQINIT ");
3189 SPRINTF("); ");
3190
3191 SPRINTF("SXFRCTL0( ");
3192
3193 s = GETPORT(SXFRCTL0);
3194 if (s & SCSIEN)
3195 SPRINTF("SCSIEN ");
3196 if (s & DMAEN)
3197 SPRINTF("DMAEN ");
3198 if (s & CH1)
3199 SPRINTF("CH1 ");
3200 if (s & CLRSTCNT)
3201 SPRINTF("CLRSTCNT ");
3202 if (s & SPIOEN)
3203 SPRINTF("SPIOEN ");
3204 if (s & CLRCH1)
3205 SPRINTF("CLRCH1 ");
3206 SPRINTF("); ");
3207
3208 SPRINTF("SIGNAL( ");
3209
3210 s = GETPORT(SCSISIG);
3211 if (s & SIG_ATNI)
3212 SPRINTF("ATNI ");
3213 if (s & SIG_SELI)
3214 SPRINTF("SELI ");
3215 if (s & SIG_BSYI)
3216 SPRINTF("BSYI ");
3217 if (s & SIG_REQI)
3218 SPRINTF("REQI ");
3219 if (s & SIG_ACKI)
3220 SPRINTF("ACKI ");
3221 SPRINTF("); ");
3222
3223 SPRINTF("SELID(%02x), ", GETPORT(SELID));
3224
3225 SPRINTF("STCNT(%d), ", GETSTCNT());
3226
3227 SPRINTF("SSTAT2( ");
3228
3229 s = GETPORT(SSTAT2);
3230 if (s & SOFFSET)
3231 SPRINTF("SOFFSET ");
3232 if (s & SEMPTY)
3233 SPRINTF("SEMPTY ");
3234 if (s & SFULL)
3235 SPRINTF("SFULL ");
3236 SPRINTF("); SFCNT (%d); ", s & (SFULL | SFCNT));
3237
3238 s = GETPORT(SSTAT3);
3239 SPRINTF("SCSICNT (%d), OFFCNT(%d), ", (s & 0xf0) >> 4, s & 0x0f);
3240
3241 SPRINTF("SSTAT4( ");
3242 s = GETPORT(SSTAT4);
3243 if (s & SYNCERR)
3244 SPRINTF("SYNCERR ");
3245 if (s & FWERR)
3246 SPRINTF("FWERR ");
3247 if (s & FRERR)
3248 SPRINTF("FRERR ");
3249 SPRINTF("); ");
3250
3251 SPRINTF("DMACNTRL0( ");
3252 s = GETPORT(DMACNTRL0);
3253 SPRINTF("%s ", s & _8BIT ? "8BIT" : "16BIT");
3254 SPRINTF("%s ", s & DMA ? "DMA" : "PIO");
3255 SPRINTF("%s ", s & WRITE_READ ? "WRITE" : "READ");
3256 if (s & ENDMA)
3257 SPRINTF("ENDMA ");
3258 if (s & INTEN)
3259 SPRINTF("INTEN ");
3260 if (s & RSTFIFO)
3261 SPRINTF("RSTFIFO ");
3262 if (s & SWINT)
3263 SPRINTF("SWINT ");
3264 SPRINTF("); ");
3265
3266 SPRINTF("DMASTAT( ");
3267 s = GETPORT(DMASTAT);
3268 if (s & ATDONE)
3269 SPRINTF("ATDONE ");
3270 if (s & WORDRDY)
3271 SPRINTF("WORDRDY ");
3272 if (s & DFIFOFULL)
3273 SPRINTF("DFIFOFULL ");
3274 if (s & DFIFOEMP)
3275 SPRINTF("DFIFOEMP ");
3276 SPRINTF(")\n");
3277
3278 SPRINTF("enabled interrupts( ");
3279
3280 s = GETPORT(SIMODE0);
3281 if (s & ENSELDO)
3282 SPRINTF("ENSELDO ");
3283 if (s & ENSELDI)
3284 SPRINTF("ENSELDI ");
3285 if (s & ENSELINGO)
3286 SPRINTF("ENSELINGO ");
3287 if (s & ENSWRAP)
3288 SPRINTF("ENSWRAP ");
3289 if (s & ENSDONE)
3290 SPRINTF("ENSDONE ");
3291 if (s & ENSPIORDY)
3292 SPRINTF("ENSPIORDY ");
3293 if (s & ENDMADONE)
3294 SPRINTF("ENDMADONE ");
3295
3296 s = GETPORT(SIMODE1);
3297 if (s & ENSELTIMO)
3298 SPRINTF("ENSELTIMO ");
3299 if (s & ENATNTARG)
3300 SPRINTF("ENATNTARG ");
3301 if (s & ENPHASEMIS)
3302 SPRINTF("ENPHASEMIS ");
3303 if (s & ENBUSFREE)
3304 SPRINTF("ENBUSFREE ");
3305 if (s & ENSCSIPERR)
3306 SPRINTF("ENSCSIPERR ");
3307 if (s & ENPHASECHG)
3308 SPRINTF("ENPHASECHG ");
3309 if (s & ENREQINIT)
3310 SPRINTF("ENREQINIT ");
3311 SPRINTF(")\n");
3312
3313 return (pos - start);
3314}
3315
3316static int aha152x_set_info(char *buffer, int length, struct Scsi_Host *shpnt)
3317{
3318 if(!shpnt || !buffer || length<8 || strncmp("aha152x ", buffer, 8)!=0)
3319 return -EINVAL;
3320
3321#if defined(AHA152X_DEBUG)
3322 if(length>14 && strncmp("debug ", buffer+8, 6)==0) {
3323 int debug = HOSTDATA(shpnt)->debug;
3324
3325 HOSTDATA(shpnt)->debug = simple_strtoul(buffer+14, NULL, 0);
3326
3327 printk(KERN_INFO "aha152x%d: debugging options set to 0x%04x (were 0x%04x)\n", HOSTNO, HOSTDATA(shpnt)->debug, debug);
3328 } else
3329#endif
3330#if defined(AHA152X_STAT)
3331 if(length>13 && strncmp("reset", buffer+8, 5)==0) {
3332 int i;
3333
3334 HOSTDATA(shpnt)->total_commands=0;
3335 HOSTDATA(shpnt)->disconnections=0;
3336 HOSTDATA(shpnt)->busfree_without_any_action=0;
3337 HOSTDATA(shpnt)->busfree_without_old_command=0;
3338 HOSTDATA(shpnt)->busfree_without_new_command=0;
3339 HOSTDATA(shpnt)->busfree_without_done_command=0;
3340 HOSTDATA(shpnt)->busfree_with_check_condition=0;
3341 for (i = idle; i<maxstate; i++) {
3342 HOSTDATA(shpnt)->count[i]=0;
3343 HOSTDATA(shpnt)->count_trans[i]=0;
3344 HOSTDATA(shpnt)->time[i]=0;
3345 }
3346
3347 printk(KERN_INFO "aha152x%d: stats reseted.\n", HOSTNO);
3348
3349 } else
3350#endif
3351 {
3352 return -EINVAL;
3353 }
3354
3355
3356 return length;
3357}
3358
3359#undef SPRINTF
3360#define SPRINTF(args...) \
3361 do { if(pos < buffer + length) pos += sprintf(pos, ## args); } while(0)
3362
3363static int aha152x_proc_info(struct Scsi_Host *shpnt, char *buffer, char **start,
3364 off_t offset, int length, int inout)
3365{
3366 int i;
3367 char *pos = buffer;
3368 Scsi_Cmnd *ptr;
3369 unsigned long flags;
3370 int thislength;
3371
3372 DPRINTK(debug_procinfo,
3373 KERN_DEBUG "aha152x_proc_info: buffer=%p offset=%ld length=%d hostno=%d inout=%d\n",
3374 buffer, offset, length, shpnt->host_no, inout);
3375
3376
3377 if (inout)
3378 return aha152x_set_info(buffer, length, shpnt);
3379
3380 SPRINTF(AHA152X_REVID "\n");
3381
3382 SPRINTF("ioports 0x%04lx to 0x%04lx\n",
3383 shpnt->io_port, shpnt->io_port + shpnt->n_io_port - 1);
3384 SPRINTF("interrupt 0x%02x\n", shpnt->irq);
3385 SPRINTF("disconnection/reconnection %s\n",
3386 RECONNECT ? "enabled" : "disabled");
3387 SPRINTF("parity checking %s\n",
3388 PARITY ? "enabled" : "disabled");
3389 SPRINTF("synchronous transfers %s\n",
3390 SYNCHRONOUS ? "enabled" : "disabled");
3391 SPRINTF("%d commands currently queued\n", HOSTDATA(shpnt)->commands);
3392
3393 if(SYNCHRONOUS) {
3394 SPRINTF("synchronously operating targets (tick=50 ns):\n");
3395 for (i = 0; i < 8; i++)
3396 if (HOSTDATA(shpnt)->syncrate[i] & 0x7f)
3397 SPRINTF("target %d: period %dT/%dns; req/ack offset %d\n",
3398 i,
3399 (((HOSTDATA(shpnt)->syncrate[i] & 0x70) >> 4) + 2),
3400 (((HOSTDATA(shpnt)->syncrate[i] & 0x70) >> 4) + 2) * 50,
3401 HOSTDATA(shpnt)->syncrate[i] & 0x0f);
3402 }
3403#if defined(AHA152X_DEBUG)
3404#define PDEBUG(flags,txt) \
3405 if(HOSTDATA(shpnt)->debug & flags) SPRINTF("(%s) ", txt);
3406
3407 SPRINTF("enabled debugging options: ");
3408
3409 PDEBUG(debug_procinfo, "procinfo");
3410 PDEBUG(debug_queue, "queue");
3411 PDEBUG(debug_intr, "interrupt");
3412 PDEBUG(debug_selection, "selection");
3413 PDEBUG(debug_msgo, "message out");
3414 PDEBUG(debug_msgi, "message in");
3415 PDEBUG(debug_status, "status");
3416 PDEBUG(debug_cmd, "command");
3417 PDEBUG(debug_datai, "data in");
3418 PDEBUG(debug_datao, "data out");
3419 PDEBUG(debug_eh, "eh");
3420 PDEBUG(debug_locks, "locks");
3421 PDEBUG(debug_phases, "phases");
3422
3423 SPRINTF("\n");
3424#endif
3425
3426 SPRINTF("\nqueue status:\n");
3427 DO_LOCK(flags);
3428 if (ISSUE_SC) {
3429 SPRINTF("not yet issued commands:\n");
3430 for (ptr = ISSUE_SC; ptr; ptr = SCNEXT(ptr))
3431 pos += get_command(pos, ptr);
3432 } else
3433 SPRINTF("no not yet issued commands\n");
3434 DO_UNLOCK(flags);
3435
3436 if (CURRENT_SC) {
3437 SPRINTF("current command:\n");
3438 pos += get_command(pos, CURRENT_SC);
3439 } else
3440 SPRINTF("no current command\n");
3441
3442 if (DISCONNECTED_SC) {
3443 SPRINTF("disconnected commands:\n");
3444 for (ptr = DISCONNECTED_SC; ptr; ptr = SCNEXT(ptr))
3445 pos += get_command(pos, ptr);
3446 } else
3447 SPRINTF("no disconnected commands\n");
3448
3449 pos += get_ports(shpnt, pos);
3450
3451#if defined(AHA152X_STAT)
3452 SPRINTF("statistics:\n"
3453 "total commands: %d\n"
3454 "disconnections: %d\n"
3455 "busfree with check condition: %d\n"
3456 "busfree without old command: %d\n"
3457 "busfree without new command: %d\n"
3458 "busfree without done command: %d\n"
3459 "busfree without any action: %d\n"
3460 "state "
3461 "transitions "
3462 "count "
3463 "time\n",
3464 HOSTDATA(shpnt)->total_commands,
3465 HOSTDATA(shpnt)->disconnections,
3466 HOSTDATA(shpnt)->busfree_with_check_condition,
3467 HOSTDATA(shpnt)->busfree_without_old_command,
3468 HOSTDATA(shpnt)->busfree_without_new_command,
3469 HOSTDATA(shpnt)->busfree_without_done_command,
3470 HOSTDATA(shpnt)->busfree_without_any_action);
3471 for(i=0; i<maxstate; i++) {
3472 SPRINTF("%-10s %-12d %-12d %-12ld\n",
3473 states[i].name,
3474 HOSTDATA(shpnt)->count_trans[i],
3475 HOSTDATA(shpnt)->count[i],
3476 HOSTDATA(shpnt)->time[i]);
3477 }
3478#endif
3479
3480 DPRINTK(debug_procinfo, KERN_DEBUG "aha152x_proc_info: pos=%p\n", pos);
3481
3482 thislength = pos - (buffer + offset);
3483 DPRINTK(debug_procinfo, KERN_DEBUG "aha152x_proc_info: length=%d thislength=%d\n", length, thislength);
3484
3485 if(thislength<0) {
3486 DPRINTK(debug_procinfo, KERN_DEBUG "aha152x_proc_info: output too short\n");
3487 *start = NULL;
3488 return 0;
3489 }
3490
3491 thislength = thislength<length ? thislength : length;
3492
3493 DPRINTK(debug_procinfo, KERN_DEBUG "aha152x_proc_info: return %d\n", thislength);
3494
3495 *start = buffer + offset;
3496 return thislength < length ? thislength : length;
3497}
3498
Christoph Hellwigd0be4a7d2005-10-31 18:31:40 +01003499static struct scsi_host_template aha152x_driver_template = {
Linus Torvalds1da177e2005-04-16 15:20:36 -07003500 .module = THIS_MODULE,
3501 .name = AHA152X_REVID,
3502 .proc_name = "aha152x",
3503 .proc_info = aha152x_proc_info,
3504 .queuecommand = aha152x_queue,
3505 .eh_abort_handler = aha152x_abort,
3506 .eh_device_reset_handler = aha152x_device_reset,
3507 .eh_bus_reset_handler = aha152x_bus_reset,
3508 .eh_host_reset_handler = aha152x_host_reset,
3509 .bios_param = aha152x_biosparam,
3510 .can_queue = 1,
3511 .this_id = 7,
3512 .sg_tablesize = SG_ALL,
3513 .cmd_per_lun = 1,
3514 .use_clustering = DISABLE_CLUSTERING,
3515};
3516
3517#if !defined(PCMCIA)
3518static int setup_count;
3519static struct aha152x_setup setup[2];
3520
3521/* possible i/o addresses for the AIC-6260; default first */
3522static unsigned short ports[] = { 0x340, 0x140 };
3523
3524#if !defined(SKIP_BIOSTEST)
3525/* possible locations for the Adaptec BIOS; defaults first */
3526static unsigned int addresses[] =
3527{
3528 0xdc000, /* default first */
3529 0xc8000,
3530 0xcc000,
3531 0xd0000,
3532 0xd4000,
3533 0xd8000,
3534 0xe0000,
3535 0xeb800, /* VTech Platinum SMP */
3536 0xf0000,
3537};
3538
3539/* signatures for various AIC-6[23]60 based controllers.
3540 The point in detecting signatures is to avoid useless and maybe
3541 harmful probes on ports. I'm not sure that all listed boards pass
3542 auto-configuration. For those which fail the BIOS signature is
3543 obsolete, because user intervention to supply the configuration is
3544 needed anyway. May be an information whether or not the BIOS supports
3545 extended translation could be also useful here. */
3546static struct signature {
3547 unsigned char *signature;
3548 int sig_offset;
3549 int sig_length;
3550} signatures[] =
3551{
3552 { "Adaptec AHA-1520 BIOS", 0x102e, 21 },
3553 /* Adaptec 152x */
3554 { "Adaptec AHA-1520B", 0x000b, 17 },
3555 /* Adaptec 152x rev B */
3556 { "Adaptec AHA-1520B", 0x0026, 17 },
3557 /* Iomega Jaz Jet ISA (AIC6370Q) */
3558 { "Adaptec ASW-B626 BIOS", 0x1029, 21 },
3559 /* on-board controller */
3560 { "Adaptec BIOS: ASW-B626", 0x000f, 22 },
3561 /* on-board controller */
3562 { "Adaptec ASW-B626 S2", 0x2e6c, 19 },
3563 /* on-board controller */
3564 { "Adaptec BIOS:AIC-6360", 0x000c, 21 },
3565 /* on-board controller */
3566 { "ScsiPro SP-360 BIOS", 0x2873, 19 },
3567 /* ScsiPro-Controller */
3568 { "GA-400 LOCAL BUS SCSI BIOS", 0x102e, 26 },
3569 /* Gigabyte Local-Bus-SCSI */
3570 { "Adaptec BIOS:AVA-282X", 0x000c, 21 },
3571 /* Adaptec 282x */
3572 { "Adaptec IBM Dock II SCSI", 0x2edd, 24 },
3573 /* IBM Thinkpad Dock II */
3574 { "Adaptec BIOS:AHA-1532P", 0x001c, 22 },
3575 /* IBM Thinkpad Dock II SCSI */
3576 { "DTC3520A Host Adapter BIOS", 0x318a, 26 },
3577 /* DTC 3520A ISA SCSI */
3578};
3579#endif /* !SKIP_BIOSTEST */
3580
3581/*
3582 * Test, if port_base is valid.
3583 *
3584 */
3585static int aha152x_porttest(int io_port)
3586{
3587 int i;
3588
3589 SETPORT(io_port + O_DMACNTRL1, 0); /* reset stack pointer */
3590 for (i = 0; i < 16; i++)
3591 SETPORT(io_port + O_STACK, i);
3592
3593 SETPORT(io_port + O_DMACNTRL1, 0); /* reset stack pointer */
3594 for (i = 0; i < 16 && GETPORT(io_port + O_STACK) == i; i++)
3595 ;
3596
3597 return (i == 16);
3598}
3599
3600static int tc1550_porttest(int io_port)
3601{
3602 int i;
3603
3604 SETPORT(io_port + O_TC_DMACNTRL1, 0); /* reset stack pointer */
3605 for (i = 0; i < 16; i++)
3606 SETPORT(io_port + O_STACK, i);
3607
3608 SETPORT(io_port + O_TC_DMACNTRL1, 0); /* reset stack pointer */
3609 for (i = 0; i < 16 && GETPORT(io_port + O_TC_STACK) == i; i++)
3610 ;
3611
3612 return (i == 16);
3613}
3614
3615
3616static int checksetup(struct aha152x_setup *setup)
3617{
3618 int i;
3619 for (i = 0; i < ARRAY_SIZE(ports) && (setup->io_port != ports[i]); i++)
3620 ;
3621
3622 if (i == ARRAY_SIZE(ports))
3623 return 0;
3624
3625 if ( request_region(setup->io_port, IO_RANGE, "aha152x")==0 ) {
3626 printk(KERN_ERR "aha152x: io port 0x%x busy.\n", setup->io_port);
3627 return 0;
3628 }
3629
3630 if( aha152x_porttest(setup->io_port) ) {
3631 setup->tc1550=0;
3632 } else if( tc1550_porttest(setup->io_port) ) {
3633 setup->tc1550=1;
3634 } else {
3635 release_region(setup->io_port, IO_RANGE);
3636 return 0;
3637 }
3638
3639 release_region(setup->io_port, IO_RANGE);
3640
3641 if ((setup->irq < IRQ_MIN) || (setup->irq > IRQ_MAX))
3642 return 0;
3643
3644 if ((setup->scsiid < 0) || (setup->scsiid > 7))
3645 return 0;
3646
3647 if ((setup->reconnect < 0) || (setup->reconnect > 1))
3648 return 0;
3649
3650 if ((setup->parity < 0) || (setup->parity > 1))
3651 return 0;
3652
3653 if ((setup->synchronous < 0) || (setup->synchronous > 1))
3654 return 0;
3655
3656 if ((setup->ext_trans < 0) || (setup->ext_trans > 1))
3657 return 0;
3658
3659
3660 return 1;
3661}
3662
3663
3664static int __init aha152x_init(void)
3665{
3666 int i, j, ok;
3667#if defined(AUTOCONF)
3668 aha152x_config conf;
3669#endif
3670#ifdef __ISAPNP__
3671 struct pnp_dev *dev=NULL, *pnpdev[2] = {NULL, NULL};
3672#endif
3673
3674 if ( setup_count ) {
3675 printk(KERN_INFO "aha152x: processing commandline: ");
3676
3677 for (i = 0; i<setup_count; i++) {
3678 if (!checksetup(&setup[i])) {
3679 printk(KERN_ERR "\naha152x: %s\n", setup[i].conf);
3680 printk(KERN_ERR "aha152x: invalid line\n");
3681 }
3682 }
3683 printk("ok\n");
3684 }
3685
3686#if defined(SETUP0)
3687 if (setup_count < ARRAY_SIZE(setup)) {
3688 struct aha152x_setup override = SETUP0;
3689
3690 if (setup_count == 0 || (override.io_port != setup[0].io_port)) {
3691 if (!checksetup(&override)) {
3692 printk(KERN_ERR "\naha152x: invalid override SETUP0={0x%x,%d,%d,%d,%d,%d,%d,%d}\n",
3693 override.io_port,
3694 override.irq,
3695 override.scsiid,
3696 override.reconnect,
3697 override.parity,
3698 override.synchronous,
3699 override.delay,
3700 override.ext_trans);
3701 } else
3702 setup[setup_count++] = override;
3703 }
3704 }
3705#endif
3706
3707#if defined(SETUP1)
3708 if (setup_count < ARRAY_SIZE(setup)) {
3709 struct aha152x_setup override = SETUP1;
3710
3711 if (setup_count == 0 || (override.io_port != setup[0].io_port)) {
3712 if (!checksetup(&override)) {
3713 printk(KERN_ERR "\naha152x: invalid override SETUP1={0x%x,%d,%d,%d,%d,%d,%d,%d}\n",
3714 override.io_port,
3715 override.irq,
3716 override.scsiid,
3717 override.reconnect,
3718 override.parity,
3719 override.synchronous,
3720 override.delay,
3721 override.ext_trans);
3722 } else
3723 setup[setup_count++] = override;
3724 }
3725 }
3726#endif
3727
3728#if defined(MODULE)
3729 if (setup_count<ARRAY_SIZE(setup) && (aha152x[0]!=0 || io[0]!=0 || irq[0]!=0)) {
3730 if(aha152x[0]!=0) {
3731 setup[setup_count].conf = "";
3732 setup[setup_count].io_port = aha152x[0];
3733 setup[setup_count].irq = aha152x[1];
3734 setup[setup_count].scsiid = aha152x[2];
3735 setup[setup_count].reconnect = aha152x[3];
3736 setup[setup_count].parity = aha152x[4];
3737 setup[setup_count].synchronous = aha152x[5];
3738 setup[setup_count].delay = aha152x[6];
3739 setup[setup_count].ext_trans = aha152x[7];
3740#if defined(AHA152X_DEBUG)
3741 setup[setup_count].debug = aha152x[8];
3742#endif
3743 } else if(io[0]!=0 || irq[0]!=0) {
3744 if(io[0]!=0) setup[setup_count].io_port = io[0];
3745 if(irq[0]!=0) setup[setup_count].irq = irq[0];
3746
3747 setup[setup_count].scsiid = scsiid[0];
3748 setup[setup_count].reconnect = reconnect[0];
3749 setup[setup_count].parity = parity[0];
3750 setup[setup_count].synchronous = sync[0];
3751 setup[setup_count].delay = delay[0];
3752 setup[setup_count].ext_trans = exttrans[0];
3753#if defined(AHA152X_DEBUG)
3754 setup[setup_count].debug = debug[0];
3755#endif
3756 }
3757
3758 if (checksetup(&setup[setup_count]))
3759 setup_count++;
3760 else
3761 printk(KERN_ERR "aha152x: invalid module params io=0x%x, irq=%d,scsiid=%d,reconnect=%d,parity=%d,sync=%d,delay=%d,exttrans=%d\n",
3762 setup[setup_count].io_port,
3763 setup[setup_count].irq,
3764 setup[setup_count].scsiid,
3765 setup[setup_count].reconnect,
3766 setup[setup_count].parity,
3767 setup[setup_count].synchronous,
3768 setup[setup_count].delay,
3769 setup[setup_count].ext_trans);
3770 }
3771
3772 if (setup_count<ARRAY_SIZE(setup) && (aha152x1[0]!=0 || io[1]!=0 || irq[1]!=0)) {
3773 if(aha152x1[0]!=0) {
3774 setup[setup_count].conf = "";
3775 setup[setup_count].io_port = aha152x1[0];
3776 setup[setup_count].irq = aha152x1[1];
3777 setup[setup_count].scsiid = aha152x1[2];
3778 setup[setup_count].reconnect = aha152x1[3];
3779 setup[setup_count].parity = aha152x1[4];
3780 setup[setup_count].synchronous = aha152x1[5];
3781 setup[setup_count].delay = aha152x1[6];
3782 setup[setup_count].ext_trans = aha152x1[7];
3783#if defined(AHA152X_DEBUG)
3784 setup[setup_count].debug = aha152x1[8];
3785#endif
3786 } else if(io[1]!=0 || irq[1]!=0) {
3787 if(io[1]!=0) setup[setup_count].io_port = io[1];
3788 if(irq[1]!=0) setup[setup_count].irq = irq[1];
3789
3790 setup[setup_count].scsiid = scsiid[1];
3791 setup[setup_count].reconnect = reconnect[1];
3792 setup[setup_count].parity = parity[1];
3793 setup[setup_count].synchronous = sync[1];
3794 setup[setup_count].delay = delay[1];
3795 setup[setup_count].ext_trans = exttrans[1];
3796#if defined(AHA152X_DEBUG)
3797 setup[setup_count].debug = debug[1];
3798#endif
3799 }
3800 if (checksetup(&setup[setup_count]))
3801 setup_count++;
3802 else
3803 printk(KERN_ERR "aha152x: invalid module params io=0x%x, irq=%d,scsiid=%d,reconnect=%d,parity=%d,sync=%d,delay=%d,exttrans=%d\n",
3804 setup[setup_count].io_port,
3805 setup[setup_count].irq,
3806 setup[setup_count].scsiid,
3807 setup[setup_count].reconnect,
3808 setup[setup_count].parity,
3809 setup[setup_count].synchronous,
3810 setup[setup_count].delay,
3811 setup[setup_count].ext_trans);
3812 }
3813#endif
3814
3815#ifdef __ISAPNP__
3816 for(i=0; setup_count<ARRAY_SIZE(setup) && id_table[i].vendor; i++) {
3817 while ( setup_count<ARRAY_SIZE(setup) &&
3818 (dev=pnp_find_dev(NULL, id_table[i].vendor, id_table[i].function, dev)) ) {
3819 if (pnp_device_attach(dev) < 0)
3820 continue;
3821
3822 if (pnp_activate_dev(dev) < 0) {
3823 pnp_device_detach(dev);
3824 continue;
3825 }
3826
3827 if (!pnp_port_valid(dev, 0)) {
3828 pnp_device_detach(dev);
3829 continue;
3830 }
3831
3832 if (setup_count==1 && pnp_port_start(dev, 0)==setup[0].io_port) {
3833 pnp_device_detach(dev);
3834 continue;
3835 }
3836
3837 setup[setup_count].io_port = pnp_port_start(dev, 0);
3838 setup[setup_count].irq = pnp_irq(dev, 0);
3839 setup[setup_count].scsiid = 7;
3840 setup[setup_count].reconnect = 1;
3841 setup[setup_count].parity = 1;
3842 setup[setup_count].synchronous = 1;
3843 setup[setup_count].delay = DELAY_DEFAULT;
3844 setup[setup_count].ext_trans = 0;
3845#if defined(AHA152X_DEBUG)
3846 setup[setup_count].debug = DEBUG_DEFAULT;
3847#endif
3848#if defined(__ISAPNP__)
3849 pnpdev[setup_count] = dev;
3850#endif
3851 printk (KERN_INFO
3852 "aha152x: found ISAPnP adapter at io=0x%03x, irq=%d\n",
3853 setup[setup_count].io_port, setup[setup_count].irq);
3854 setup_count++;
3855 }
3856 }
3857#endif
3858
3859#if defined(AUTOCONF)
3860 if (setup_count<ARRAY_SIZE(setup)) {
3861#if !defined(SKIP_BIOSTEST)
3862 ok = 0;
3863 for (i = 0; i < ARRAY_SIZE(addresses) && !ok; i++) {
3864 void __iomem *p = ioremap(addresses[i], 0x4000);
3865 if (!p)
3866 continue;
3867 for (j = 0; j<ARRAY_SIZE(signatures) && !ok; j++)
3868 ok = check_signature(p + signatures[j].sig_offset,
3869 signatures[j].signature, signatures[j].sig_length);
3870 iounmap(p);
3871 }
3872 if (!ok && setup_count == 0)
3873 return 0;
3874
3875 printk(KERN_INFO "aha152x: BIOS test: passed, ");
3876#else
3877 printk(KERN_INFO "aha152x: ");
3878#endif /* !SKIP_BIOSTEST */
3879
3880 ok = 0;
3881 for (i = 0; i < ARRAY_SIZE(ports) && setup_count < 2; i++) {
3882 if ((setup_count == 1) && (setup[0].io_port == ports[i]))
3883 continue;
3884
3885 if ( request_region(ports[i], IO_RANGE, "aha152x")==0 ) {
3886 printk(KERN_ERR "aha152x: io port 0x%x busy.\n", ports[i]);
3887 continue;
3888 }
3889
3890 if (aha152x_porttest(ports[i])) {
3891 setup[setup_count].tc1550 = 0;
3892
3893 conf.cf_port =
3894 (GETPORT(ports[i] + O_PORTA) << 8) + GETPORT(ports[i] + O_PORTB);
3895 } else if (tc1550_porttest(ports[i])) {
3896 setup[setup_count].tc1550 = 1;
3897
3898 conf.cf_port =
3899 (GETPORT(ports[i] + O_TC_PORTA) << 8) + GETPORT(ports[i] + O_TC_PORTB);
3900 } else {
3901 release_region(ports[i], IO_RANGE);
3902 continue;
3903 }
3904
3905 release_region(ports[i], IO_RANGE);
3906
3907 ok++;
3908 setup[setup_count].io_port = ports[i];
3909 setup[setup_count].irq = IRQ_MIN + conf.cf_irq;
3910 setup[setup_count].scsiid = conf.cf_id;
3911 setup[setup_count].reconnect = conf.cf_tardisc;
3912 setup[setup_count].parity = !conf.cf_parity;
3913 setup[setup_count].synchronous = conf.cf_syncneg;
3914 setup[setup_count].delay = DELAY_DEFAULT;
3915 setup[setup_count].ext_trans = 0;
3916#if defined(AHA152X_DEBUG)
3917 setup[setup_count].debug = DEBUG_DEFAULT;
3918#endif
3919 setup_count++;
3920
3921 }
3922
3923 if (ok)
3924 printk("auto configuration: ok, ");
3925 }
3926#endif
3927
3928 printk("%d controller(s) configured\n", setup_count);
3929
3930 for (i=0; i<setup_count; i++) {
3931 if ( request_region(setup[i].io_port, IO_RANGE, "aha152x") ) {
3932 struct Scsi_Host *shpnt = aha152x_probe_one(&setup[i]);
3933
3934 if( !shpnt ) {
3935 release_region(setup[i].io_port, IO_RANGE);
3936#if defined(__ISAPNP__)
3937 } else if( pnpdev[i] ) {
3938 HOSTDATA(shpnt)->pnpdev=pnpdev[i];
3939 pnpdev[i]=NULL;
3940#endif
3941 }
3942 } else {
3943 printk(KERN_ERR "aha152x: io port 0x%x busy.\n", setup[i].io_port);
3944 }
3945
3946#if defined(__ISAPNP__)
3947 if( pnpdev[i] )
3948 pnp_device_detach(pnpdev[i]);
3949#endif
3950 }
3951
3952 return registered_count>0;
3953}
3954
3955static void __exit aha152x_exit(void)
3956{
3957 int i;
3958
3959 for(i=0; i<ARRAY_SIZE(setup); i++) {
3960 aha152x_release(aha152x_host[i]);
3961 aha152x_host[i]=NULL;
3962 }
3963}
3964
3965module_init(aha152x_init);
3966module_exit(aha152x_exit);
3967
3968#if !defined(MODULE)
3969static int __init aha152x_setup(char *str)
3970{
3971#if defined(AHA152X_DEBUG)
3972 int ints[11];
3973#else
3974 int ints[10];
3975#endif
3976 get_options(str, ARRAY_SIZE(ints), ints);
3977
3978 if(setup_count>=ARRAY_SIZE(setup)) {
3979 printk(KERN_ERR "aha152x: you can only configure up to two controllers\n");
3980 return 1;
3981 }
3982
3983 setup[setup_count].conf = str;
3984 setup[setup_count].io_port = ints[0] >= 1 ? ints[1] : 0x340;
3985 setup[setup_count].irq = ints[0] >= 2 ? ints[2] : 11;
3986 setup[setup_count].scsiid = ints[0] >= 3 ? ints[3] : 7;
3987 setup[setup_count].reconnect = ints[0] >= 4 ? ints[4] : 1;
3988 setup[setup_count].parity = ints[0] >= 5 ? ints[5] : 1;
3989 setup[setup_count].synchronous = ints[0] >= 6 ? ints[6] : 1;
3990 setup[setup_count].delay = ints[0] >= 7 ? ints[7] : DELAY_DEFAULT;
3991 setup[setup_count].ext_trans = ints[0] >= 8 ? ints[8] : 0;
3992#if defined(AHA152X_DEBUG)
3993 setup[setup_count].debug = ints[0] >= 9 ? ints[9] : DEBUG_DEFAULT;
3994 if (ints[0] > 9) {
3995 printk(KERN_NOTICE "aha152x: usage: aha152x=<IOBASE>[,<IRQ>[,<SCSI ID>"
3996 "[,<RECONNECT>[,<PARITY>[,<SYNCHRONOUS>[,<DELAY>[,<EXT_TRANS>[,<DEBUG>]]]]]]]]\n");
3997#else
3998 if (ints[0] > 8) { /*}*/
3999 printk(KERN_NOTICE "aha152x: usage: aha152x=<IOBASE>[,<IRQ>[,<SCSI ID>"
4000 "[,<RECONNECT>[,<PARITY>[,<SYNCHRONOUS>[,<DELAY>[,<EXT_TRANS>]]]]]]]\n");
4001#endif
4002 } else {
4003 setup_count++;
4004 return 0;
4005 }
4006
4007 return 1;
4008}
4009__setup("aha152x=", aha152x_setup);
4010#endif
4011
4012#endif /* !PCMCIA */