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Linux 6.18.37 · SCSI

NCR53C8XX/SYM53C8XX drivers

NCR53C8XX/SYM53C8XX chip 지원, queueing, boot option, troubleshooting, timing과 NVRAM layout을 설명합니다.

Source pathDocumentation/scsi/ncr53c8xx.rst
Source versionLinux v6.18.37
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요약·해설

ncr53c8xx.rst:1-2169

NCR53C8XX/SYM53C8XX chip 지원, queueing, boot option, troubleshooting, timing과 NVRAM layout을 설명합니다.

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1 .. SPDX-License-Identifier: GPL-2.0
2
3 ===========================
4 NCR53C8XX/SYM53C8XX drivers
5 ===========================
6
7 Written by Gerard Roudier <[email protected]>
8
9 21 Rue Carnot
10
11 95170 DEUIL LA BARRE - FRANCE
12
13 29 May 1999
14
15 .. Contents:
16
17 1. Introduction
18 2. Supported chips and SCSI features
19 3. Advantages of the enhanced 896 driver
20 3.1 Optimized SCSI SCRIPTS
21 3.2 New features of the SYM53C896 (64 bit PCI dual LVD SCSI controller)
22 4. Memory mapped I/O versus normal I/O
23 5. Tagged command queueing
24 6. Parity checking
25 7. Profiling information
26 8. Control commands
27 8.1 Set minimum synchronous period
28 8.2 Set wide size
29 8.3 Set maximum number of concurrent tagged commands
30 8.4 Set order type for tagged command
31 8.5 Set debug mode
32 8.6 Clear profile counters
33 8.7 Set flag (no_disc)
34 8.8 Set verbose level
35 8.9 Reset all logical units of a target
36 8.10 Abort all tasks of all logical units of a target
37 9. Configuration parameters
38 10. Boot setup commands
39 10.1 Syntax
40 10.2 Available arguments
41 10.2.1 Master parity checking
42 10.2.2 Scsi parity checking
43 10.2.3 Scsi disconnections
44 10.2.4 Special features
45 10.2.5 Ultra SCSI support
46 10.2.6 Default number of tagged commands
47 10.2.7 Default synchronous period factor
48 10.2.8 Negotiate synchronous with all devices
49 10.2.9 Verbosity level
50 10.2.10 Debug mode
51 10.2.11 Burst max
52 10.2.12 LED support
53 10.2.13 Max wide
54 10.2.14 Differential mode
55 10.2.15 IRQ mode
56 10.2.16 Reverse probe
57 10.2.17 Fix up PCI configuration space
58 10.2.18 Serial NVRAM
59 10.2.19 Check SCSI BUS
60 10.2.20 Exclude a host from being attached
61 10.2.21 Suggest a default SCSI id for hosts
62 10.2.22 Enable use of IMMEDIATE ARBITRATION
63 10.3 Advised boot setup commands
64 10.4 PCI configuration fix-up boot option
65 10.5 Serial NVRAM support boot option
66 10.6 SCSI BUS checking boot option
67 10.7 IMMEDIATE ARBITRATION boot option
68 11. Some constants and flags of the ncr53c8xx.h header file
69 12. Installation
70 13. Architecture dependent features
71 14. Known problems
72 14.1 Tagged commands with Iomega Jaz device
73 14.2 Device names change when another controller is added
74 14.3 Using only 8 bit devices with a WIDE SCSI controller.
75 14.4 Possible data corruption during a Memory Write and Invalidate
76 14.5 IRQ sharing problems
77 15. SCSI problem troubleshooting
78 15.1 Problem tracking
79 15.2 Understanding hardware error reports
80 16. Synchronous transfer negotiation tables
81 16.1 Synchronous timings for 53C875 and 53C860 Ultra-SCSI controllers
82 16.2 Synchronous timings for fast SCSI-2 53C8XX controllers
83 17. Serial NVRAM support (by Richard Waltham)
84 17.1 Features
85 17.2 Symbios NVRAM layout
86 17.3 Tekram NVRAM layout
87 18. Support for Big Endian
88 18.1 Big Endian CPU
89 18.2 NCR chip in Big Endian mode of operations
90
91 1. Introduction
92 ===============
93
94 The initial Linux ncr53c8xx driver has been a port of the ncr driver from
95 FreeBSD that has been achieved in November 1995 by:
96
97 - Gerard Roudier <[email protected]>
98
99 The original driver has been written for 386bsd and FreeBSD by:
100
101 - Wolfgang Stanglmeier <[email protected]>
102 - Stefan Esser <[email protected]>
103
104 It is now available as a bundle of 2 drivers:
105
106 - ncr53c8xx generic driver that supports all the SYM53C8XX family including
107 the earliest 810 rev. 1, the latest 896 (2 channel LVD SCSI controller) and
108 the new 895A (1 channel LVD SCSI controller).
109 - sym53c8xx enhanced driver (a.k.a. 896 drivers) that drops support of oldest
110 chips in order to gain advantage of new features, as LOAD/STORE instructions
111 available since the 810A and hardware phase mismatch available with the
112 896 and the 895A.
113
114 You can find technical information about the NCR 8xx family in the
115 PCI-HOWTO written by Michael Will and in the SCSI-HOWTO written by
116 Drew Eckhardt.
117
118 Information about new chips is available at LSILOGIC web server:
119
120 - http://www.lsilogic.com/
121
122 SCSI standard documentations are available at SYMBIOS ftp server:
123
124 - ftp://ftp.symbios.com/
125
126 Useful SCSI tools written by Eric Youngdale are available at tsx-11:
127
128 - ftp://tsx-11.mit.edu/pub/linux/ALPHA/scsi/scsiinfo-X.Y.tar.gz
129 - ftp://tsx-11.mit.edu/pub/linux/ALPHA/scsi/scsidev-X.Y.tar.gz
130
131 These tools are not ALPHA but quite clean and work quite well.
132 It is essential you have the 'scsiinfo' package.
133
134 This short documentation describes the features of the generic and enhanced
135 drivers, configuration parameters and control commands available through
136 the proc SCSI file system read / write operations.
137
138 This driver has been tested OK with linux/i386, Linux/Alpha and Linux/PPC.
139
140 Latest driver version and patches are available at:
141
142 - ftp://ftp.tux.org/pub/people/gerard-roudier
143
144 or
145
146 - ftp://ftp.symbios.com/mirror/ftp.tux.org/pub/tux/roudier/drivers
147
148 I am not a native speaker of English and there are probably lots of
149 mistakes in this README file. Any help will be welcome.
150
151
152 2. Supported chips and SCSI features
153 ====================================
154
155 The following features are supported for all chips:
156
157 - Synchronous negotiation
158 - Disconnection
159 - Tagged command queuing
160 - SCSI parity checking
161 - Master parity checking
162
163 "Wide negotiation" is supported for chips that allow it. The
164 following table shows some characteristics of NCR 8xx family chips
165 and what drivers support them.
166
167 +--------+-----------+-----+-----------+------------+------------+------------+
168 | | | | | |Supported by|Supported by|
169 | |On board | | | |the generic |the enhanced|
170 |Chip |SDMS BIOS |Wide |SCSI std. | Max. sync |driver |driver |
171 +--------+-----------+-----+-----------+------------+------------+------------+
172 |810 | N | N | FAST10 | 10 MB/s | Y | N |
173 +--------+-----------+-----+-----------+------------+------------+------------+
174 |810A | N | N | FAST10 | 10 MB/s | Y | Y |
175 +--------+-----------+-----+-----------+------------+------------+------------+
176 |815 | Y | N | FAST10 | 10 MB/s | Y | N |
177 +--------+-----------+-----+-----------+------------+------------+------------+
178 |825 | Y | Y | FAST10 | 20 MB/s | Y | N |
179 +--------+-----------+-----+-----------+------------+------------+------------+
180 |825A | Y | Y | FAST10 | 20 MB/s | Y | Y |
181 +--------+-----------+-----+-----------+------------+------------+------------+
182 |860 | N | N | FAST20 | 20 MB/s | Y | Y |
183 +--------+-----------+-----+-----------+------------+------------+------------+
184 |875 | Y | Y | FAST20 | 40 MB/s | Y | Y |
185 +--------+-----------+-----+-----------+------------+------------+------------+
186 |876 | Y | Y | FAST20 | 40 MB/s | Y | Y |
187 +--------+-----------+-----+-----------+------------+------------+------------+
188 |895 | Y | Y | FAST40 | 80 MB/s | Y | Y |
189 +--------+-----------+-----+-----------+------------+------------+------------+
190 |895A | Y | Y | FAST40 | 80 MB/s | Y | Y |
191 +--------+-----------+-----+-----------+------------+------------+------------+
192 |896 | Y | Y | FAST40 | 80 MB/s | Y | Y |
193 +--------+-----------+-----+-----------+------------+------------+------------+
194 |897 | Y | Y | FAST40 | 80 MB/s | Y | Y |
195 +--------+-----------+-----+-----------+------------+------------+------------+
196 |1510D | Y | Y | FAST40 | 80 MB/s | Y | Y |
197 +--------+-----------+-----+-----------+------------+------------+------------+
198 |1010 | Y | Y | FAST80 |160 MB/s | N | Y |
199 +--------+-----------+-----+-----------+------------+------------+------------+
200 |1010_66 | Y | Y | FAST80 |160 MB/s | N | Y |
201 |[1]_ | | | | | | |
202 +--------+-----------+-----+-----------+------------+------------+------------+
203
204 .. [1] Chip supports 33MHz and 66MHz PCI buses.
205
206
207 Summary of other supported features:
208
209 :Module: allow to load the driver
210 :Memory mapped I/O: increases performance
211 :Profiling information: read operations from the proc SCSI file system
212 :Control commands: write operations to the proc SCSI file system
213 :Debugging information: written to syslog (expert only)
214 :Serial NVRAM: Symbios and Tekram formats
215
216 - Scatter / gather
217 - Shared interrupt
218 - Boot setup commands
219
220
221 3. Advantages of the enhanced 896 driver
222 ========================================
223
224 3.1 Optimized SCSI SCRIPTS
225 --------------------------
226
227 The 810A, 825A, 875, 895, 896 and 895A support new SCSI SCRIPTS instructions
228 named LOAD and STORE that allow to move up to 1 DWORD from/to an IO register
229 to/from memory much faster that the MOVE MEMORY instruction that is supported
230 by the 53c7xx and 53c8xx family.
231 The LOAD/STORE instructions support absolute and DSA relative addressing
232 modes. The SCSI SCRIPTS had been entirely rewritten using LOAD/STORE instead
233 of MOVE MEMORY instructions.
234
235 3.2 New features of the SYM53C896 (64 bit PCI dual LVD SCSI controller)
236 -----------------------------------------------------------------------
237
238 The 896 and the 895A allows handling of the phase mismatch context from
239 SCRIPTS (avoids the phase mismatch interrupt that stops the SCSI processor
240 until the C code has saved the context of the transfer).
241 Implementing this without using LOAD/STORE instructions would be painful
242 and I didn't even want to try it.
243
244 The 896 chip supports 64 bit PCI transactions and addressing, while the
245 895A supports 32 bit PCI transactions and 64 bit addressing.
246 The SCRIPTS processor of these chips is not true 64 bit, but uses segment
247 registers for bit 32-63. Another interesting feature is that LOAD/STORE
248 instructions that address the on-chip RAM (8k) remain internal to the chip.
249
250 Due to the use of LOAD/STORE SCRIPTS instructions, this driver does not
251 support the following chips:
252
253 - SYM53C810 revision < 0x10 (16)
254 - SYM53C815 all revisions
255 - SYM53C825 revision < 0x10 (16)
256
257 4. Memory mapped I/O versus normal I/O
258 ======================================
259
260 Memory mapped I/O has less latency than normal I/O. Since
261 linux-1.3.x, memory mapped I/O is used rather than normal I/O. Memory
262 mapped I/O seems to work fine on most hardware configurations, but
263 some poorly designed motherboards may break this feature.
264
265 The configuration option CONFIG_SCSI_NCR53C8XX_IOMAPPED forces the
266 driver to use normal I/O in all cases.
267
268
269 5. Tagged command queueing
270 ==========================
271
272 Queuing more than 1 command at a time to a device allows it to perform
273 optimizations based on actual head positions and its mechanical
274 characteristics. This feature may also reduce average command latency.
275 In order to really gain advantage of this feature, devices must have
276 a reasonable cache size (No miracle is to be expected for a low-end
277 hard disk with 128 KB or less).
278 Some known SCSI devices do not properly support tagged command queuing.
279 Generally, firmware revisions that fix this kind of problems are available
280 at respective vendor web/ftp sites.
281 All I can say is that the hard disks I use on my machines behave well with
282 this driver with tagged command queuing enabled:
283
284 - IBM S12 0662
285 - Conner 1080S
286 - Quantum Atlas I
287 - Quantum Atlas II
288
289 If your controller has NVRAM, you can configure this feature per target
290 from the user setup tool. The Tekram Setup program allows to tune the
291 maximum number of queued commands up to 32. The Symbios Setup only allows
292 to enable or disable this feature.
293
294 The maximum number of simultaneous tagged commands queued to a device
295 is currently set to 8 by default. This value is suitable for most SCSI
296 disks. With large SCSI disks (>= 2GB, cache >= 512KB, average seek time
297 <= 10 ms), using a larger value may give better performances.
298
299 The sym53c8xx driver supports up to 255 commands per device, and the
300 generic ncr53c8xx driver supports up to 64, but using more than 32 is
301 generally not worth-while, unless you are using a very large disk or disk
302 array. It is noticeable that most of recent hard disks seem not to accept
303 more than 64 simultaneous commands. So, using more than 64 queued commands
304 is probably just resource wasting.
305
306 If your controller does not have NVRAM or if it is managed by the SDMS
307 BIOS/SETUP, you can configure tagged queueing feature and device queue
308 depths from the boot command-line. For example::
309
310 ncr53c8xx=tags:4/t2t3q15-t4q7/t1u0q32
311
312 will set tagged commands queue depths as follow:
313
314 - target 2 all luns on controller 0 --> 15
315 - target 3 all luns on controller 0 --> 15
316 - target 4 all luns on controller 0 --> 7
317 - target 1 lun 0 on controller 1 --> 32
318 - all other target/lun --> 4
319
320 In some special conditions, some SCSI disk firmwares may return a
321 QUEUE FULL status for a SCSI command. This behaviour is managed by the
322 driver using the following heuristic:
323
324 - Each time a QUEUE FULL status is returned, tagged queue depth is reduced
325 to the actual number of disconnected commands.
326
327 - Every 1000 successfully completed SCSI commands, if allowed by the
328 current limit, the maximum number of queueable commands is incremented.
329
330 Since QUEUE FULL status reception and handling is resource wasting, the
331 driver notifies by default this problem to user by indicating the actual
332 number of commands used and their status, as well as its decision on the
333 device queue depth change.
334 The heuristic used by the driver in handling QUEUE FULL ensures that the
335 impact on performances is not too bad. You can get rid of the messages by
336 setting verbose level to zero, as follow:
337
338 1st method:
339 boot your system using 'ncr53c8xx=verb:0' option.
340
341 2nd method:
342 apply "setverbose 0" control command to the proc fs entry
343 corresponding to your controller after boot-up.
344
345 6. Parity checking
346 ==================
347
348 The driver supports SCSI parity checking and PCI bus master parity
349 checking. These features must be enabled in order to ensure safe data
350 transfers. However, some flawed devices or mother boards will have
351 problems with parity. You can disable either PCI parity or SCSI parity
352 checking by entering appropriate options from the boot command line.
353 (See 10: Boot setup commands).
354
355 7. Profiling information
356 ========================
357
358 Profiling information is available through the proc SCSI file system.
359 Since gathering profiling information may impact performances, this
360 feature is disabled by default and requires a compilation configuration
361 option to be set to Y.
362
363 The device associated with a host has the following pathname::
364
365 /proc/scsi/ncr53c8xx/N (N=0,1,2 ....)
366
367 Generally, only 1 board is used on hardware configuration, and that device is::
368
369 /proc/scsi/ncr53c8xx/0
370
371 However, if the driver has been made as module, the number of the
372 hosts is incremented each time the driver is loaded.
373
374 In order to display profiling information, just enter::
375
376 cat /proc/scsi/ncr53c8xx/0
377
378 and you will get something like the following text::
379
380 General information:
381 Chip NCR53C810, device id 0x1, revision id 0x2
382 IO port address 0x6000, IRQ number 10
383 Using memory mapped IO at virtual address 0x282c000
384 Synchronous transfer period 25, max commands per lun 4
385 Profiling information:
386 num_trans = 18014
387 num_kbytes = 671314
388 num_disc = 25763
389 num_break = 1673
390 num_int = 1685
391 num_fly = 18038
392 ms_setup = 4940
393 ms_data = 369940
394 ms_disc = 183090
395 ms_post = 1320
396
397 General information is easy to understand. The device ID and the
398 revision ID identify the SCSI chip as follows:
399
400 ======= ============= ===========
401 Chip Device id Revision Id
402 ======= ============= ===========
403 810 0x1 < 0x10
404 810A 0x1 >= 0x10
405 815 0x4
406 825 0x3 < 0x10
407 860 0x6
408 825A 0x3 >= 0x10
409 875 0xf
410 895 0xc
411 ======= ============= ===========
412
413 The profiling information is updated upon completion of SCSI commands.
414 A data structure is allocated and zeroed when the host adapter is
415 attached. So, if the driver is a module, the profile counters are
416 cleared each time the driver is loaded. The "clearprof" command
417 allows you to clear these counters at any time.
418
419 The following counters are available:
420
421 ("num" prefix means "number of",
422 "ms" means milli-seconds)
423
424 num_trans
425 Number of completed commands
426 Example above: 18014 completed commands
427
428 num_kbytes
429 Number of kbytes transferred
430 Example above: 671 MB transferred
431
432 num_disc
433 Number of SCSI disconnections
434 Example above: 25763 SCSI disconnections
435
436 num_break
437 number of script interruptions (phase mismatch)
438 Example above: 1673 script interruptions
439
440 num_int
441 Number of interrupts other than "on the fly"
442 Example above: 1685 interruptions not "on the fly"
443
444 num_fly
445 Number of interrupts "on the fly"
446 Example above: 18038 interruptions "on the fly"
447
448 ms_setup
449 Elapsed time for SCSI commands setups
450 Example above: 4.94 seconds
451
452 ms_data
453 Elapsed time for data transfers
454 Example above: 369.94 seconds spent for data transfer
455
456 ms_disc
457 Elapsed time for SCSI disconnections
458 Example above: 183.09 seconds spent disconnected
459
460 ms_post
461 Elapsed time for command post processing
462 (time from SCSI status get to command completion call)
463 Example above: 1.32 seconds spent for post processing
464
465 Due to the 1/100 second tick of the system clock, "ms_post" time may
466 be wrong.
467
468 In the example above, we got 18038 interrupts "on the fly" and only
469 1673 script breaks generally due to disconnections inside a segment
470 of the scatter list.
471
472
473 8. Control commands
474 ===================
475
476 Control commands can be sent to the driver with write operations to
477 the proc SCSI file system. The generic command syntax is the
478 following::
479
480 echo "<verb> <parameters>" >/proc/scsi/ncr53c8xx/0
481 (assumes controller number is 0)
482
483 Using "all" for "<target>" parameter with the commands below will
484 apply to all targets of the SCSI chain (except the controller).
485
486 Available commands:
487
488 8.1 Set minimum synchronous period factor
489 -----------------------------------------
490
491 setsync <target> <period factor>
492
493 :target: target number
494 :period: minimum synchronous period.
495 Maximum speed = 1000/(4*period factor) except for special
496 cases below.
497
498 Specify a period of 255, to force asynchronous transfer mode.
499
500 - 10 means 25 nano-seconds synchronous period
501 - 11 means 30 nano-seconds synchronous period
502 - 12 means 50 nano-seconds synchronous period
503
504 8.2 Set wide size
505 -----------------
506
507 setwide <target> <size>
508
509 :target: target number
510 :size: 0=8 bits, 1=16bits
511
512 8.3 Set maximum number of concurrent tagged commands
513 ----------------------------------------------------
514
515 settags <target> <tags>
516
517 :target: target number
518 :tags: number of concurrent tagged commands
519 must not be greater than SCSI_NCR_MAX_TAGS (default: 8)
520
521 8.4 Set order type for tagged command
522 -------------------------------------
523
524 setorder <order>
525
526 :order: 3 possible values:
527
528 simple:
529 use SIMPLE TAG for all operations (read and write)
530
531 ordered:
532 use ORDERED TAG for all operations
533
534 default:
535 use default tag type,
536 SIMPLE TAG for read operations
537 ORDERED TAG for write operations
538
539
540 8.5 Set debug mode
541 ------------------
542
543 setdebug <list of debug flags>
544
545 Available debug flags:
546
547 ======== ========================================================
548 alloc print info about memory allocations (ccb, lcb)
549 queue print info about insertions into the command start queue
550 result print sense data on CHECK CONDITION status
551 scatter print info about the scatter process
552 scripts print info about the script binding process
553 tiny print minimal debugging information
554 timing print timing information of the NCR chip
555 nego print information about SCSI negotiations
556 phase print information on script interruptions
557 ======== ========================================================
558
559 Use "setdebug" with no argument to reset debug flags.
560
561
562 8.6 Clear profile counters
563 --------------------------
564
565 clearprof
566
567 The profile counters are automatically cleared when the amount of
568 data transferred reaches 1000 GB in order to avoid overflow.
569 The "clearprof" command allows you to clear these counters at any time.
570
571
572 8.7 Set flag (no_disc)
573 ----------------------
574
575 setflag <target> <flag>
576
577 target: target number
578
579 For the moment, only one flag is available:
580
581 no_disc: not allow target to disconnect.
582
583 Do not specify any flag in order to reset the flag. For example:
584
585 setflag 4
586 will reset no_disc flag for target 4, so will allow it disconnections.
587
588 setflag all
589 will allow disconnection for all devices on the SCSI bus.
590
591
592 8.8 Set verbose level
593 ---------------------
594
595 setverbose #level
596
597 The driver default verbose level is 1. This command allows to change
598 th driver verbose level after boot-up.
599
600 8.9 Reset all logical units of a target
601 ---------------------------------------
602
603 resetdev <target>
604
605 :target: target number
606
607 The driver will try to send a BUS DEVICE RESET message to the target.
608 (Only supported by the SYM53C8XX driver and provided for test purpose)
609
610 8.10 Abort all tasks of all logical units of a target
611 -----------------------------------------------------
612
613 cleardev <target>
614
615 :target: target number
616
617 The driver will try to send a ABORT message to all the logical units
618 of the target.
619
620 (Only supported by the SYM53C8XX driver and provided for test purpose)
621
622
623 9. Configuration parameters
624 ===========================
625
626 If the firmware of all your devices is perfect enough, all the
627 features supported by the driver can be enabled at start-up. However,
628 if only one has a flaw for some SCSI feature, you can disable the
629 support by the driver of this feature at linux start-up and enable
630 this feature after boot-up only for devices that support it safely.
631
632 CONFIG_SCSI_NCR53C8XX_IOMAPPED (default answer: n)
633 Answer "y" if you suspect your mother board to not allow memory mapped I/O.
634
635 May slow down performance a little. This option is required by
636 Linux/PPC and is used no matter what you select here. Linux/PPC
637 suffers no performance loss with this option since all IO is memory
638 mapped anyway.
639
640 CONFIG_SCSI_NCR53C8XX_DEFAULT_TAGS (default answer: 8)
641 Default tagged command queue depth.
642
643 CONFIG_SCSI_NCR53C8XX_MAX_TAGS (default answer: 8)
644 This option allows you to specify the maximum number of tagged commands
645 that can be queued to a device. The maximum supported value is 32.
646
647 CONFIG_SCSI_NCR53C8XX_SYNC (default answer: 5)
648 This option allows you to specify the frequency in MHz the driver
649 will use at boot time for synchronous data transfer negotiations.
650 This frequency can be changed later with the "setsync" control command.
651 0 means "asynchronous data transfers".
652
653 CONFIG_SCSI_NCR53C8XX_FORCE_SYNC_NEGO (default answer: n)
654 Force synchronous negotiation for all SCSI-2 devices.
655
656 Some SCSI-2 devices do not report this feature in byte 7 of inquiry
657 response but do support it properly (TAMARACK scanners for example).
658
659 CONFIG_SCSI_NCR53C8XX_NO_DISCONNECT (default and only reasonable answer: n)
660 If you suspect a device of yours does not properly support disconnections,
661 you can answer "y". Then, all SCSI devices will never disconnect the bus
662 even while performing long SCSI operations.
663
664 CONFIG_SCSI_NCR53C8XX_SYMBIOS_COMPAT
665 Genuine SYMBIOS boards use GPIO0 in output for controller LED and GPIO3
666 bit as a flag indicating singled-ended/differential interface.
667 If all the boards of your system are genuine SYMBIOS boards or use
668 BIOS and drivers from SYMBIOS, you would want to enable this option.
669
670 This option must NOT be enabled if your system has at least one 53C8XX
671 based scsi board with a vendor-specific BIOS.
672 For example, Tekram DC-390/U, DC-390/W and DC-390/F scsi controllers
673 use a vendor-specific BIOS and are known to not use SYMBIOS compatible
674 GPIO wiring. So, this option must not be enabled if your system has
675 such a board installed.
676
677 CONFIG_SCSI_NCR53C8XX_NVRAM_DETECT
678 Enable support for reading the serial NVRAM data on Symbios and
679 some Symbios compatible cards, and Tekram DC390W/U/F cards. Useful for
680 systems with more than one Symbios compatible controller where at least
681 one has a serial NVRAM, or for a system with a mixture of Symbios and
682 Tekram cards. Enables setting the boot order of host adaptors
683 to something other than the default order or "reverse probe" order.
684 Also enables Symbios and Tekram cards to be distinguished so
685 CONFIG_SCSI_NCR53C8XX_SYMBIOS_COMPAT may be set in a system with a
686 mixture of Symbios and Tekram cards so the Symbios cards can make use of
687 the full range of Symbios features, differential, led pin, without
688 causing problems for the Tekram card(s).
689
690 10. Boot setup commands
691 =======================
692
693 10.1 Syntax
694 -----------
695
696 Setup commands can be passed to the driver either at boot time or as a
697 string variable using 'insmod'.
698
699 A boot setup command for the ncr53c8xx (sym53c8xx) driver begins with the
700 driver name "ncr53c8xx="(sym53c8xx). The kernel syntax parser then expects
701 an optional list of integers separated with comma followed by an optional
702 list of comma-separated strings. Example of boot setup command under lilo
703 prompt::
704
705 lilo: linux root=/dev/hda2 ncr53c8xx=tags:4,sync:10,debug:0x200
706
707 - enable tagged commands, up to 4 tagged commands queued.
708 - set synchronous negotiation speed to 10 Mega-transfers / second.
709 - set DEBUG_NEGO flag.
710
711 Since comma seems not to be allowed when defining a string variable using
712 'insmod', the driver also accepts <space> as option separator.
713 The following command will install driver module with the same options as
714 above::
715
716 insmod ncr53c8xx.o ncr53c8xx="tags:4 sync:10 debug:0x200"
717
718 For the moment, the integer list of arguments is discarded by the driver.
719 It will be used in the future in order to allow a per controller setup.
720
721 Each string argument must be specified as "keyword:value". Only lower-case
722 characters and digits are allowed.
723
724 In a system that contains multiple 53C8xx adapters insmod will install the
725 specified driver on each adapter. To exclude a chip use the 'excl' keyword.
726
727 The sequence of commands::
728
729 insmod sym53c8xx sym53c8xx=excl:0x1400
730 insmod ncr53c8xx
731
732 installs the sym53c8xx driver on all adapters except the one at IO port
733 address 0x1400 and then installs the ncr53c8xx driver to the adapter at IO
734 port address 0x1400.
735
736
737 10.2 Available arguments
738 ------------------------
739
740 10.2.1 Master parity checking
741 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
742
743 ====== ========
744 mpar:y enabled
745 mpar:n disabled
746 ====== ========
747
748 10.2.2 Scsi parity checking
749 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^
750
751 ====== ========
752 spar:y enabled
753 spar:n disabled
754 ====== ========
755
756 10.2.3 Scsi disconnections
757 ^^^^^^^^^^^^^^^^^^^^^^^^^^^
758
759 ====== ========
760 disc:y enabled
761 disc:n disabled
762 ====== ========
763
764 10.2.4 Special features
765 ^^^^^^^^^^^^^^^^^^^^^^^^
766
767 Only apply to 810A, 825A, 860, 875 and 895 controllers.
768 Have no effect with other ones.
769
770 ======= =================================================
771 specf:y (or 1) enabled
772 specf:n (or 0) disabled
773 specf:3 enabled except Memory Write And Invalidate
774 ======= =================================================
775
776 The default driver setup is 'specf:3'. As a consequence, option 'specf:y'
777 must be specified in the boot setup command to enable Memory Write And
778 Invalidate.
779
780 10.2.5 Ultra SCSI support
781 ^^^^^^^^^^^^^^^^^^^^^^^^^^
782
783 Only apply to 860, 875, 895, 895a, 896, 1010 and 1010_66 controllers.
784 Have no effect with other ones.
785
786 ======= ========================
787 ultra:n All ultra speeds enabled
788 ultra:2 Ultra2 enabled
789 ultra:1 Ultra enabled
790 ultra:0 Ultra speeds disabled
791 ======= ========================
792
793 10.2.6 Default number of tagged commands
794 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
795
796 ======================= ===============================
797 tags:0 (or tags:1 ) tagged command queuing disabled
798 tags:#tags (#tags > 1) tagged command queuing enabled
799 ======================= ===============================
800
801 #tags will be truncated to the max queued commands configuration parameter.
802 This option also allows to specify a command queue depth for each device
803 that support tagged command queueing.
804
805 Example::
806
807 ncr53c8xx=tags:10/t2t3q16-t5q24/t1u2q32
808
809 will set devices queue depth as follow:
810
811 - controller #0 target #2 and target #3 -> 16 commands,
812 - controller #0 target #5 -> 24 commands,
813 - controller #1 target #1 logical unit #2 -> 32 commands,
814 - all other logical units (all targets, all controllers) -> 10 commands.
815
816 10.2.7 Default synchronous period factor
817 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
818
819 ============ ========================================================
820 sync:255 disabled (asynchronous transfer mode)
821 sync:#factor
822 ============ =======================================
823 #factor = 10 Ultra-2 SCSI 40 Mega-transfers / second
824 #factor = 11 Ultra-2 SCSI 33 Mega-transfers / second
825 #factor < 25 Ultra SCSI 20 Mega-transfers / second
826 #factor < 50 Fast SCSI-2
827 ============ =======================================
828 ============ ========================================================
829
830 In all cases, the driver will use the minimum transfer period supported by
831 controllers according to NCR53C8XX chip type.
832
833 10.2.8 Negotiate synchronous with all devices
834 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
835 (force sync nego)
836
837 ===== =========
838 fsn:y enabled
839 fsn:n disabled
840 ===== =========
841
842 10.2.9 Verbosity level
843 ^^^^^^^^^^^^^^^^^^^^^^^
844
845 ====== =========
846 verb:0 minimal
847 verb:1 normal
848 verb:2 too much
849 ====== =========
850
851 10.2.10 Debug mode
852 ^^^^^^^^^^^^^^^^^^
853
854 ======== ==================================================================
855 debug:0 clear debug flags
856 debug:#x set debug flags
857
858 #x is an integer value combining the following power-of-2 values:
859
860 ============= ======
861 DEBUG_ALLOC 0x1
862 DEBUG_PHASE 0x2
863 DEBUG_POLL 0x4
864 DEBUG_QUEUE 0x8
865 DEBUG_RESULT 0x10
866 DEBUG_SCATTER 0x20
867 DEBUG_SCRIPT 0x40
868 DEBUG_TINY 0x80
869 DEBUG_TIMING 0x100
870 DEBUG_NEGO 0x200
871 DEBUG_TAGS 0x400
872 DEBUG_FREEZE 0x800
873 DEBUG_RESTART 0x1000
874 ============= ======
875 ======== ==================================================================
876
877 You can play safely with DEBUG_NEGO. However, some of these flags may
878 generate bunches of syslog messages.
879
880 10.2.11 Burst max
881 ^^^^^^^^^^^^^^^^^
882
883 ========= ==================================================================
884 burst:0 burst disabled
885 burst:255 get burst length from initial IO register settings.
886 burst:#x burst enabled (1<<#x burst transfers max)
887
888 #x is an integer value which is log base 2 of the burst transfers
889 max.
890
891 The NCR53C875 and NCR53C825A support up to 128 burst transfers
892 (#x = 7).
893
894 Other chips only support up to 16 (#x = 4).
895
896 This is a maximum value. The driver set the burst length according
897 to chip and revision ids. By default the driver uses the maximum
898 value supported by the chip.
899 ========= ==================================================================
900
901 10.2.12 LED support
902 ^^^^^^^^^^^^^^^^^^^
903
904 ===== ===================
905 led:1 enable LED support
906 led:0 disable LED support
907 ===== ===================
908
909 Do not enable LED support if your scsi board does not use SDMS BIOS.
910 (See 'Configuration parameters')
911
912 10.2.13 Max wide
913 ^^^^^^^^^^^^^^^^
914
915 ====== ===================
916 wide:1 wide scsi enabled
917 wide:0 wide scsi disabled
918 ====== ===================
919
920 Some scsi boards use a 875 (ultra wide) and only supply narrow connectors.
921 If you have connected a wide device with a 50 pins to 68 pins cable
922 converter, any accepted wide negotiation will break further data transfers.
923 In such a case, using "wide:0" in the bootup command will be helpful.
924
925 10.2.14 Differential mode
926 ^^^^^^^^^^^^^^^^^^^^^^^^^
927
928 ====== =================================
929 diff:0 never set up diff mode
930 diff:1 set up diff mode if BIOS set it
931 diff:2 always set up diff mode
932 diff:3 set diff mode if GPIO3 is not set
933 ====== =================================
934
935 10.2.15 IRQ mode
936 ^^^^^^^^^^^^^^^^
937
938 ========= ========================================================
939 irqm:0 always open drain
940 irqm:1 same as initial settings (assumed BIOS settings)
941 irqm:2 always totem pole
942 irqm:0x10 driver will not use IRQF_SHARED flag when requesting irq
943 ========= ========================================================
944
945 (Bits 0x10 and 0x20 can be combined with hardware irq mode option)
946
947 10.2.16 Reverse probe
948 ^^^^^^^^^^^^^^^^^^^^^
949
950 ========= ========================================================
951 revprob:n probe chip ids from the PCI configuration in this order:
952 810, 815, 820, 860, 875, 885, 895, 896
953 revprob:y probe chip ids in the reverse order.
954 ========= ========================================================
955
956 10.2.17 Fix up PCI configuration space
957 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
958 pcifix:<option bits>
959
960 Available option bits:
961
962 === ===============================================================
963 0x0 No attempt to fix PCI configuration space registers values.
964 0x1 Set PCI cache-line size register if not set.
965 0x2 Set write and invalidate bit in PCI command register.
966 0x4 Increase if necessary PCI latency timer according to burst max.
967 === ===============================================================
968
969 Use 'pcifix:7' in order to allow the driver to fix up all PCI features.
970
971 10.2.18 Serial NVRAM
972 ^^^^^^^^^^^^^^^^^^^^
973
974 ======= =========================================
975 nvram:n do not look for serial NVRAM
976 nvram:y test controllers for onboard serial NVRAM
977 ======= =========================================
978
979 (alternate binary form)
980 mvram=<bits options>
981
982 ==== =================================================================
983 0x01 look for NVRAM (equivalent to nvram=y)
984 0x02 ignore NVRAM "Synchronous negotiation" parameters for all devices
985 0x04 ignore NVRAM "Wide negotiation" parameter for all devices
986 0x08 ignore NVRAM "Scan at boot time" parameter for all devices
987 0x80 also attach controllers set to OFF in the NVRAM (sym53c8xx only)
988 ==== =================================================================
989
990 10.2.19 Check SCSI BUS
991 ^^^^^^^^^^^^^^^^^^^^^^
992
993 buschk:<option bits>
994
995 Available option bits:
996
997 ==== ================================================
998 0x0: No check.
999 0x1: Check and do not attach the controller on error.
1000 0x2: Check and just warn on error.
1001 0x4: Disable SCSI bus integrity checking.
1002 ==== ================================================
1004 10.2.20 Exclude a host from being attached
1005 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
1007 excl=<io_address>
1009 Prevent host at a given io address from being attached.
1010 For example 'ncr53c8xx=excl:0xb400,excl:0xc000' indicate to the
1011 ncr53c8xx driver not to attach hosts at address 0xb400 and 0xc000.
1013 10.2.21 Suggest a default SCSI id for hosts
1014 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
1016 ========== ==========================================
1017 hostid:255 no id suggested.
1018 hostid:#x (0 < x < 7) x suggested for hosts SCSI id.
1019 ========== ==========================================
1021 If a host SCSI id is available from the NVRAM, the driver will ignore
1022 any value suggested as boot option. Otherwise, if a suggested value
1023 different from 255 has been supplied, it will use it. Otherwise, it will
1024 try to deduce the value previously set in the hardware and use value
1025 7 if the hardware value is zero.
1027 10.2.22 Enable use of IMMEDIATE ARBITRATION
1028 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
1030 (only supported by the sym53c8xx driver. See 10.7 for more details)
1032 ======= =================================================================
1033 iarb:0 do not use this feature.
1034 iarb:#x use this feature according to bit fields as follow:
1036 ========= =======================================================
1037 bit 0 (1) enable IARB each time the initiator has been reselected
1038 when it arbitrated for the SCSI BUS.
1039 (#x >> 4) maximum number of successive settings of IARB if the
1040 initiator win arbitration and it has other commands
1041 to send to a device.
1042 ========= =======================================================
1043 ======= =================================================================
1045 Boot fail safe
1046 safe:y load the following assumed fail safe initial setup
1048 ======================== ====================== ==========
1049 master parity disabled mpar:n
1050 scsi parity enabled spar:y
1051 disconnections not allowed disc:n
1052 special features disabled specf:n
1053 ultra scsi disabled ultra:n
1054 force sync negotiation disabled fsn:n
1055 reverse probe disabled revprob:n
1056 PCI fix up disabled pcifix:0
1057 serial NVRAM enabled nvram:y
1058 verbosity level 2 verb:2
1059 tagged command queuing disabled tags:0
1060 synchronous negotiation disabled sync:255
1061 debug flags none debug:0
1062 burst length from BIOS settings burst:255
1063 LED support disabled led:0
1064 wide support disabled wide:0
1065 settle time 10 seconds settle:10
1066 differential support from BIOS settings diff:1
1067 irq mode from BIOS settings irqm:1
1068 SCSI BUS check do not attach on error buschk:1
1069 immediate arbitration disabled iarb:0
1070 ======================== ====================== ==========
1072 10.3 Advised boot setup commands
1073 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
1075 If the driver has been configured with default options, the equivalent
1076 boot setup is::
1078 ncr53c8xx=mpar:y,spar:y,disc:y,specf:3,fsn:n,ultra:2,fsn:n,revprob:n,verb:1\
1079 tags:0,sync:50,debug:0,burst:7,led:0,wide:1,settle:2,diff:0,irqm:0
1081 For an installation diskette or a safe but not fast system,
1082 boot setup can be::
1084 ncr53c8xx=safe:y,mpar:y,disc:y
1085 ncr53c8xx=safe:y,disc:y
1086 ncr53c8xx=safe:y,mpar:y
1087 ncr53c8xx=safe:y
1089 My personal system works flawlessly with the following equivalent setup::
1091 ncr53c8xx=mpar:y,spar:y,disc:y,specf:1,fsn:n,ultra:2,fsn:n,revprob:n,verb:1\
1092 tags:32,sync:12,debug:0,burst:7,led:1,wide:1,settle:2,diff:0,irqm:0
1094 The driver prints its actual setup when verbosity level is 2. You can try
1095 "ncr53c8xx=verb:2" to get the "static" setup of the driver, or add "verb:2"
1096 to your boot setup command in order to check the actual setup the driver is
1097 using.
1099 10.4 PCI configuration fix-up boot option
1100 -----------------------------------------
1102 pcifix:<option bits>
1104 Available option bits:
1106 === =====================================================
1107 0x1 Set PCI cache-line size register if not set.
1108 0x2 Set write and invalidate bit in PCI command register.
1109 === =====================================================
1111 Use 'pcifix:3' in order to allow the driver to fix both PCI features.
1113 These options only apply to new SYMBIOS chips 810A, 825A, 860, 875
1114 and 895 and are only supported for Pentium and 486 class processors.
1115 Recent SYMBIOS 53C8XX scsi processors are able to use PCI read multiple
1116 and PCI write and invalidate commands. These features require the
1117 cache line size register to be properly set in the PCI configuration
1118 space of the chips. On the other hand, chips will use PCI write and
1119 invalidate commands only if the corresponding bit is set to 1 in the
1120 PCI command register.
1122 Not all PCI bioses set the PCI cache line register and the PCI write and
1123 invalidate bit in the PCI configuration space of 53C8XX chips.
1124 Optimized PCI accesses may be broken for some PCI/memory controllers or
1125 make problems with some PCI boards.
1127 This fix-up worked flawlessly on my previous system.
1128 (MB Triton HX / 53C875 / 53C810A)
1129 I use these options at my own risks as you will do if you decide to
1130 use them too.
1133 10.5 Serial NVRAM support boot option
1134 -------------------------------------
1136 ======= =========================================
1137 nvram:n do not look for serial NVRAM
1138 nvram:y test controllers for onboard serial NVRAM
1139 ======= =========================================
1141 This option can also been entered as an hexadecimal value that allows
1142 to control what information the driver will get from the NVRAM and what
1143 information it will ignore.
1144 For details see '17. Serial NVRAM support'.
1146 When this option is enabled, the driver tries to detect all boards using
1147 a Serial NVRAM. This memory is used to hold user set up parameters.
1149 The parameters the driver is able to get from the NVRAM depend on the
1150 data format used, as follow:
1152 +-------------------------------+------------------+--------------+
1153 | |Tekram format |Symbios format|
1154 +-------------------------------+------------------+--------------+
1155 |General and host parameters | | |
1156 +-------------------------------+------------------+--------------+
1157 | * Boot order | N | Y |
1158 +-------------------------------+------------------+--------------+
1159 | * Host SCSI ID | Y | Y |
1160 +-------------------------------+------------------+--------------+
1161 | * SCSI parity checking | Y | Y |
1162 +-------------------------------+------------------+--------------+
1163 | * Verbose boot messages | N | Y |
1164 +-------------------------------+------------------+--------------+
1165 |SCSI devices parameters |
1166 +-------------------------------+------------------+--------------+
1167 | * Synchronous transfer speed | Y | Y |
1168 +-------------------------------+------------------+--------------+
1169 | * Wide 16 / Narrow | Y | Y |
1170 +-------------------------------+------------------+--------------+
1171 | * Tagged Command Queuing | Y | Y |
1172 | enabled | | |
1173 +-------------------------------+------------------+--------------+
1174 | * Disconnections enabled | Y | Y |
1175 +-------------------------------+------------------+--------------+
1176 | * Scan at boot time | N | Y |
1177 +-------------------------------+------------------+--------------+
1179 In order to speed up the system boot, for each device configured without
1180 the "scan at boot time" option, the driver forces an error on the
1181 first TEST UNIT READY command received for this device.
1183 Some SDMS BIOS revisions seem to be unable to boot cleanly with very fast
1184 hard disks. In such a situation you cannot configure the NVRAM with
1185 optimized parameters value.
1187 The 'nvram' boot option can be entered in hexadecimal form in order
1188 to ignore some options configured in the NVRAM, as follow:
1190 mvram=<bits options>
1192 ==== =================================================================
1193 0x01 look for NVRAM (equivalent to nvram=y)
1194 0x02 ignore NVRAM "Synchronous negotiation" parameters for all devices
1195 0x04 ignore NVRAM "Wide negotiation" parameter for all devices
1196 0x08 ignore NVRAM "Scan at boot time" parameter for all devices
1197 0x80 also attach controllers set to OFF in the NVRAM (sym53c8xx only)
1198 ==== =================================================================
1200 Option 0x80 is only supported by the sym53c8xx driver and is disabled by
1201 default. Result is that, by default (option not set), the sym53c8xx driver
1202 will not attach controllers set to OFF in the NVRAM.
1204 The ncr53c8xx always tries to attach all the controllers. Option 0x80 has
1205 not been added to the ncr53c8xx driver, since it has been reported to
1206 confuse users who use this driver since a long time. If you desire a
1207 controller not to be attached by the ncr53c8xx driver at Linux boot, you
1208 must use the 'excl' driver boot option.
1210 10.6 SCSI BUS checking boot option.
1211 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
1213 When this option is set to a non-zero value, the driver checks SCSI lines
1214 logic state, 100 micro-seconds after having asserted the SCSI RESET line.
1215 The driver just reads SCSI lines and checks all lines read FALSE except RESET.
1216 Since SCSI devices shall release the BUS at most 800 nano-seconds after SCSI
1217 RESET has been asserted, any signal to TRUE may indicate a SCSI BUS problem.
1218 Unfortunately, the following common SCSI BUS problems are not detected:
1220 - Only 1 terminator installed.
1221 - Misplaced terminators.
1222 - Bad quality terminators.
1224 On the other hand, either bad cabling, broken devices, not conformant
1225 devices, ... may cause a SCSI signal to be wrong when the driver reads it.
1227 10.7 IMMEDIATE ARBITRATION boot option
1228 ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
1230 This option is only supported by the SYM53C8XX driver (not by the NCR53C8XX).
1232 SYMBIOS 53C8XX chips are able to arbitrate for the SCSI BUS as soon as they
1233 have detected an expected disconnection (BUS FREE PHASE). For this process
1234 to be started, bit 1 of SCNTL1 IO register must be set when the chip is
1235 connected to the SCSI BUS.
1237 When this feature has been enabled for the current connection, the chip has
1238 every chance to win arbitration if only devices with lower priority are
1239 competing for the SCSI BUS. By the way, when the chip is using SCSI id 7,
1240 then it will for sure win the next SCSI BUS arbitration.
1242 Since, there is no way to know what devices are trying to arbitrate for the
1243 BUS, using this feature can be extremely unfair. So, you are not advised
1244 to enable it, or at most enable this feature for the case the chip lost
1245 the previous arbitration (boot option 'iarb:1').
1247 This feature has the following advantages:
1249 a) Allow the initiator with ID 7 to win arbitration when it wants so.
1250 b) Overlap at least 4 micro-seconds of arbitration time with the execution
1251 of SCRIPTS that deal with the end of the current connection and that
1252 starts the next job.
1254 Hmmm... But (a) may just prevent other devices from reselecting the initiator,
1255 and delay data transfers or status/completions, and (b) may just waste
1256 SCSI BUS bandwidth if the SCRIPTS execution lasts more than 4 micro-seconds.
1258 The use of IARB needs the SCSI_NCR_IARB_SUPPORT option to have been defined
1259 at compile time and the 'iarb' boot option to have been set to a non zero
1260 value at boot time. It is not that useful for real work, but can be used
1261 to stress SCSI devices or for some applications that can gain advantage of
1262 it. By the way, if you experience badnesses like 'unexpected disconnections',
1263 'bad reselections', etc... when using IARB on heavy IO load, you should not
1264 be surprised, because force-feeding anything and blocking its arse at the
1265 same time cannot work for a long time. :-))
1268 11. Some constants and flags of the ncr53c8xx.h header file
1269 ===========================================================
1271 Some of these are defined from the configuration parameters. To
1272 change other "defines", you must edit the header file. Do that only
1273 if you know what you are doing.
1275 SCSI_NCR_SETUP_SPECIAL_FEATURES (default: defined)
1276 If defined, the driver will enable some special features according
1277 to chip and revision id.
1279 For 810A, 860, 825A, 875 and 895 scsi chips, this option enables
1280 support of features that reduce load of PCI bus and memory accesses
1281 during scsi transfer processing: burst op-code fetch, read multiple,
1282 read line, prefetch, cache line, write and invalidate,
1283 burst 128 (875 only), large dma fifo (875 only), offset 16 (875 only).
1284 Can be changed by the following boot setup command::
1286 ncr53c8xx=specf:n
1288 SCSI_NCR_IOMAPPED (default: not defined)
1289 If defined, normal I/O is forced.
1291 SCSI_NCR_SHARE_IRQ (default: defined)
1292 If defined, request shared IRQ.
1294 SCSI_NCR_MAX_TAGS (default: 8)
1295 Maximum number of simultaneous tagged commands to a device.
1297 Can be changed by "settags <target> <maxtags>"
1299 SCSI_NCR_SETUP_DEFAULT_SYNC (default: 50)
1300 Transfer period factor the driver will use at boot time for synchronous
1301 negotiation. 0 means asynchronous.
1303 Can be changed by "setsync <target> <period factor>"
1305 SCSI_NCR_SETUP_DEFAULT_TAGS (default: 8)
1306 Default number of simultaneous tagged commands to a device.
1308 < 1 means tagged command queuing disabled at start-up.
1310 SCSI_NCR_ALWAYS_SIMPLE_TAG (default: defined)
1311 Use SIMPLE TAG for read and write commands.
1313 Can be changed by "setorder <ordered|simple|default>"
1315 SCSI_NCR_SETUP_DISCONNECTION (default: defined)
1316 If defined, targets are allowed to disconnect.
1318 SCSI_NCR_SETUP_FORCE_SYNC_NEGO (default: not defined)
1319 If defined, synchronous negotiation is tried for all SCSI-2 devices.
1321 Can be changed by "setsync <target> <period>"
1323 SCSI_NCR_SETUP_MASTER_PARITY (default: defined)
1324 If defined, master parity checking is enabled.
1326 SCSI_NCR_SETUP_SCSI_PARITY (default: defined)
1327 If defined, SCSI parity checking is enabled.
1329 SCSI_NCR_PROFILE_SUPPORT (default: not defined)
1330 If defined, profiling information is gathered.
1332 SCSI_NCR_MAX_SCATTER (default: 128)
1333 Scatter list size of the driver ccb.
1335 SCSI_NCR_MAX_TARGET (default: 16)
1336 Max number of targets per host.
1338 SCSI_NCR_MAX_HOST (default: 2)
1339 Max number of host controllers.
1341 SCSI_NCR_SETTLE_TIME (default: 2)
1342 Number of seconds the driver will wait after reset.
1344 SCSI_NCR_TIMEOUT_ALERT (default: 3)
1345 If a pending command will time out after this amount of seconds,
1346 an ordered tag is used for the next command.
1348 Avoids timeouts for unordered tagged commands.
1350 SCSI_NCR_CAN_QUEUE (default: 7*SCSI_NCR_MAX_TAGS)
1351 Max number of commands that can be queued to a host.
1353 SCSI_NCR_CMD_PER_LUN (default: SCSI_NCR_MAX_TAGS)
1354 Max number of commands queued to a host for a device.
1356 SCSI_NCR_SG_TABLESIZE (default: SCSI_NCR_MAX_SCATTER-1)
1357 Max size of the Linux scatter/gather list.
1359 SCSI_NCR_MAX_LUN (default: 8)
1360 Max number of LUNs per target.
1363 12. Installation
1364 ================
1366 This driver is part of the linux kernel distribution.
1367 Driver files are located in the sub-directory "drivers/scsi" of the
1368 kernel source tree.
1370 Driver files::
1372 README.ncr53c8xx : this file
1373 ChangeLog.ncr53c8xx : change log
1374 ncr53c8xx.h : definitions
1375 ncr53c8xx.c : the driver code
1377 New driver versions are made available separately in order to allow testing
1378 changes and new features prior to including them into the linux kernel
1379 distribution. The following URL provides information on latest available
1380 patches:
1382 ftp://ftp.tux.org/pub/people/gerard-roudier/README
1385 13. Architecture dependent features
1386 ===================================
1388 <Not yet written>
1391 14. Known problems
1392 ==================
1394 14.1 Tagged commands with Iomega Jaz device
1395 -------------------------------------------
1397 I have not tried this device, however it has been reported to me the
1398 following: This device is capable of Tagged command queuing. However
1399 while spinning up, it rejects Tagged commands. This behaviour is
1400 conforms to 6.8.2 of SCSI-2 specifications. The current behaviour of
1401 the driver in that situation is not satisfying. So do not enable
1402 Tagged command queuing for devices that are able to spin down. The
1403 other problem that may appear is timeouts. The only way to avoid
1404 timeouts seems to edit linux/drivers/scsi/sd.c and to increase the
1405 current timeout values.
1407 14.2 Device names change when another controller is added
1408 ---------------------------------------------------------
1410 When you add a new NCR53C8XX chip based controller to a system that already
1411 has one or more controllers of this family, it may happen that the order
1412 the driver registers them to the kernel causes problems due to device
1413 name changes.
1414 When at least one controller uses NvRAM, SDMS BIOS version 4 allows you to
1415 define the order the BIOS will scan the scsi boards. The driver attaches
1416 controllers according to BIOS information if NvRAM detect option is set.
1418 If your controllers do not have NvRAM, you can:
1420 - Ask the driver to probe chip ids in reverse order from the boot command
1421 line: ncr53c8xx=revprob:y
1422 - Make appropriate changes in the fstab.
1423 - Use the 'scsidev' tool from Eric Youngdale.
1425 14.3 Using only 8 bit devices with a WIDE SCSI controller
1426 ---------------------------------------------------------
1428 When only 8 bit NARROW devices are connected to a 16 bit WIDE SCSI controller,
1429 you must ensure that lines of the wide part of the SCSI BUS are pulled-up.
1430 This can be achieved by ENABLING the WIDE TERMINATOR portion of the SCSI
1431 controller card.
1433 The TYAN 1365 documentation revision 1.2 is not correct about such settings.
1434 (page 10, figure 3.3).
1436 14.4 Possible data corruption during a Memory Write and Invalidate
1437 ------------------------------------------------------------------
1439 This problem is described in SYMBIOS DEL 397, Part Number 69-039241, ITEM 4.
1441 In some complex situations, 53C875 chips revision <= 3 may start a PCI
1442 Write and Invalidate Command at a not cache-line-aligned 4 DWORDS boundary.
1443 This is only possible when Cache Line Size is 8 DWORDS or greater.
1444 Pentium systems use a 8 DWORDS cache line size and so are concerned by
1445 this chip bug, unlike i486 systems that use a 4 DWORDS cache line size.
1447 When this situation occurs, the chip may complete the Write and Invalidate
1448 command after having only filled part of the last cache line involved in
1449 the transfer, leaving to data corruption the remainder of this cache line.
1451 Not using Write And Invalidate obviously gets rid of this chip bug, and so
1452 it is now the default setting of the driver.
1453 However, for people like me who want to enable this feature, I have added
1454 part of a work-around suggested by SYMBIOS. This work-around resets the
1455 addressing logic when the DATA IN phase is entered and so prevents the bug
1456 from being triggered for the first SCSI MOVE of the phase. This work-around
1457 should be enough according to the following:
1459 The only driver internal data structure that is greater than 8 DWORDS and
1460 that is moved by the SCRIPTS processor is the 'CCB header' that contains
1461 the context of the SCSI transfer. This data structure is aligned on 8 DWORDS
1462 boundary (Pentium Cache Line Size), and so is immune to this chip bug, at
1463 least on Pentium systems.
1465 But the conditions of this bug can be met when a SCSI read command is
1466 performed using a buffer that is 4 DWORDS but not cache-line aligned.
1467 This cannot happen under Linux when scatter/gather lists are used since
1468 they only refer to system buffers that are well aligned. So, a work around
1469 may only be needed under Linux when a scatter/gather list is not used and
1470 when the SCSI DATA IN phase is reentered after a phase mismatch.
1472 15. SCSI problem troubleshooting
1473 ================================
1475 15.1 Problem tracking
1476 ---------------------
1478 Most SCSI problems are due to a non conformant SCSI bus or to buggy
1479 devices. If unfortunately you have SCSI problems, you can check the
1480 following things:
1482 - SCSI bus cables
1483 - terminations at both end of the SCSI chain
1484 - linux syslog messages (some of them may help you)
1486 If you do not find the source of problems, you can configure the
1487 driver with no features enabled.
1489 - only asynchronous data transfers
1490 - tagged commands disabled
1491 - disconnections not allowed
1493 Now, if your SCSI bus is ok, your system have every chance to work
1494 with this safe configuration but performances will not be optimal.
1496 If it still fails, then you can send your problem description to
1497 appropriate mailing lists or news-groups. Send me a copy in order to
1498 be sure I will receive it. Obviously, a bug in the driver code is
1499 possible.
1501 My email address: Gerard Roudier <[email protected]>
1503 Allowing disconnections is important if you use several devices on
1504 your SCSI bus but often causes problems with buggy devices.
1505 Synchronous data transfers increases throughput of fast devices like
1506 hard disks. Good SCSI hard disks with a large cache gain advantage of
1507 tagged commands queuing.
1509 Try to enable one feature at a time with control commands. For example:
1511 ::
1513 echo "setsync all 25" >/proc/scsi/ncr53c8xx/0
1515 Will enable fast synchronous data transfer negotiation for all targets.
1517 ::
1519 echo "setflag 3" >/proc/scsi/ncr53c8xx/0
1521 Will reset flags (no_disc) for target 3, and so will allow it to disconnect
1522 the SCSI Bus.
1524 ::
1526 echo "settags 3 8" >/proc/scsi/ncr53c8xx/0
1528 Will enable tagged command queuing for target 3 if that device supports it.
1530 Once you have found the device and the feature that cause problems, just
1531 disable that feature for that device.
1533 15.2 Understanding hardware error reports
1534 -----------------------------------------
1536 When the driver detects an unexpected error condition, it may display a
1537 message of the following pattern::
1539 sym53c876-0:1: ERROR (0:48) (1-21-65) (f/95) @ (script 7c0:19000000).
1540 sym53c876-0: script cmd = 19000000
1541 sym53c876-0: regdump: da 10 80 95 47 0f 01 07 75 01 81 21 80 01 09 00.
1543 Some fields in such a message may help you understand the cause of the
1544 problem, as follows::
1546 sym53c876-0:1: ERROR (0:48) (1-21-65) (f/95) @ (script 7c0:19000000).
1547 ............A.........B.C....D.E..F....G.H.......I.....J...K.......
1549 Field A : target number.
1550 SCSI ID of the device the controller was talking with at the moment the
1551 error occurs.
1553 Field B : DSTAT io register (DMA STATUS)
1554 ======== =============================================================
1555 Bit 0x40 MDPE Master Data Parity Error
1556 Data parity error detected on the PCI BUS.
1557 Bit 0x20 BF Bus Fault
1558 PCI bus fault condition detected
1559 Bit 0x01 IID Illegal Instruction Detected
1560 Set by the chip when it detects an Illegal Instruction format
1561 on some condition that makes an instruction illegal.
1562 Bit 0x80 DFE Dma Fifo Empty
1563 Pure status bit that does not indicate an error.
1564 ======== =============================================================
1566 If the reported DSTAT value contains a combination of MDPE (0x40),
1567 BF (0x20), then the cause may be likely due to a PCI BUS problem.
1569 Field C : SIST io register (SCSI Interrupt Status)
1570 ======== ==================================================================
1571 Bit 0x08 SGE SCSI GROSS ERROR
1572 Indicates that the chip detected a severe error condition
1573 on the SCSI BUS that prevents the SCSI protocol from functioning
1574 properly.
1575 Bit 0x04 UDC Unexpected Disconnection
1576 Indicates that the device released the SCSI BUS when the chip
1577 was not expecting this to happen. A device may behave so to
1578 indicate the SCSI initiator that an error condition not reportable
1579 using the SCSI protocol has occurred.
1580 Bit 0x02 RST SCSI BUS Reset
1581 Generally SCSI targets do not reset the SCSI BUS, although any
1582 device on the BUS can reset it at any time.
1583 Bit 0x01 PAR Parity
1584 SCSI parity error detected.
1585 ======== ==================================================================
1587 On a faulty SCSI BUS, any error condition among SGE (0x08), UDC (0x04) and
1588 PAR (0x01) may be detected by the chip. If your SCSI system sometimes
1589 encounters such error conditions, especially SCSI GROSS ERROR, then a SCSI
1590 BUS problem is likely the cause of these errors.
1592 For fields D,E,F,G and H, you may look into the sym53c8xx_defs.h file
1593 that contains some minimal comments on IO register bits.
1595 Field D : SOCL Scsi Output Control Latch
1596 This register reflects the state of the SCSI control lines the
1597 chip want to drive or compare against.
1599 Field E : SBCL Scsi Bus Control Lines
1600 Actual value of control lines on the SCSI BUS.
1602 Field F : SBDL Scsi Bus Data Lines
1603 Actual value of data lines on the SCSI BUS.
1605 Field G : SXFER SCSI Transfer
1606 Contains the setting of the Synchronous Period for output and
1607 the current Synchronous offset (offset 0 means asynchronous).
1609 Field H : SCNTL3 Scsi Control Register 3
1610 Contains the setting of timing values for both asynchronous and
1611 synchronous data transfers.
1613 Understanding Fields I, J, K and dumps requires to have good knowledge of
1614 SCSI standards, chip cores functionnals and internal driver data structures.
1615 You are not required to decode and understand them, unless you want to help
1616 maintain the driver code.
1618 16. Synchronous transfer negotiation tables
1619 ===========================================
1621 Tables below have been created by calling the routine the driver uses
1622 for synchronisation negotiation timing calculation and chip setting.
1623 The first table corresponds to Ultra chips 53875 and 53C860 with 80 MHz
1624 clock and 5 clock divisors.
1625 The second one has been calculated by setting the scsi clock to 40 Mhz
1626 and using 4 clock divisors and so applies to all NCR53C8XX chips in fast
1627 SCSI-2 mode.
1629 Periods are in nano-seconds and speeds are in Mega-transfers per second.
1630 1 Mega-transfers/second means 1 MB/s with 8 bits SCSI and 2 MB/s with
1631 Wide16 SCSI.
1633 16.1 Synchronous timings for 53C895, 53C875 and 53C860 SCSI controllers
1635 +-----------------------------+--------+-------+--------------+
1636 |Negotiated |NCR settings | |
1637 +-------+--------+------------+--------+-------+ |
1638 |Factor |Period |Speed |Period |Speed | |
1639 +-------+--------+------------+--------+-------+--------------+
1640 |10 | 25 |40.000 | 25 |40.000 | (53C895 only)|
1641 +-------+--------+------------+--------+-------+--------------+
1642 |11 | 30.2 |33.112 | 31.25 |32.000 | (53C895 only)|
1643 +-------+--------+------------+--------+-------+--------------+
1644 |12 | 50 |20.000 | 50 |20.000 | |
1645 +-------+--------+------------+--------+-------+--------------+
1646 |13 | 52 |19.230 | 62 |16.000 | |
1647 +-------+--------+------------+--------+-------+--------------+
1648 |14 | 56 |17.857 | 62 |16.000 | |
1649 +-------+--------+------------+--------+-------+--------------+
1650 |15 | 60 |16.666 | 62 |16.000 | |
1651 +-------+--------+------------+--------+-------+--------------+
1652 |16 | 64 |15.625 | 75 |13.333 | |
1653 +-------+--------+------------+--------+-------+--------------+
1654 |17 | 68 |14.705 | 75 |13.333 | |
1655 +-------+--------+------------+--------+-------+--------------+
1656 |18 | 72 |13.888 | 75 |13.333 | |
1657 +-------+--------+------------+--------+-------+--------------+
1658 |19 | 76 |13.157 | 87 |11.428 | |
1659 +-------+--------+------------+--------+-------+--------------+
1660 |20 | 80 |12.500 | 87 |11.428 | |
1661 +-------+--------+------------+--------+-------+--------------+
1662 |21 | 84 |11.904 | 87 |11.428 | |
1663 +-------+--------+------------+--------+-------+--------------+
1664 |22 | 88 |11.363 | 93 |10.666 | |
1665 +-------+--------+------------+--------+-------+--------------+
1666 |23 | 92 |10.869 | 93 |10.666 | |
1667 +-------+--------+------------+--------+-------+--------------+
1668 |24 | 96 |10.416 |100 |10.000 | |
1669 +-------+--------+------------+--------+-------+--------------+
1670 |25 |100 |10.000 |100 |10.000 | |
1671 +-------+--------+------------+--------+-------+--------------+
1672 |26 |104 | 9.615 |112 | 8.888 | |
1673 +-------+--------+------------+--------+-------+--------------+
1674 |27 |108 | 9.259 |112 | 8.888 | |
1675 +-------+--------+------------+--------+-------+--------------+
1676 |28 |112 | 8.928 |112 | 8.888 | |
1677 +-------+--------+------------+--------+-------+--------------+
1678 |29 |116 | 8.620 |125 | 8.000 | |
1679 +-------+--------+------------+--------+-------+--------------+
1680 |30 |120 | 8.333 |125 | 8.000 | |
1681 +-------+--------+------------+--------+-------+--------------+
1682 |31 |124 | 8.064 |125 | 8.000 | |
1683 +-------+--------+------------+--------+-------+--------------+
1684 |32 |128 | 7.812 |131 | 7.619 | |
1685 +-------+--------+------------+--------+-------+--------------+
1686 |33 |132 | 7.575 |150 | 6.666 | |
1687 +-------+--------+------------+--------+-------+--------------+
1688 |34 |136 | 7.352 |150 | 6.666 | |
1689 +-------+--------+------------+--------+-------+--------------+
1690 |35 |140 | 7.142 |150 | 6.666 | |
1691 +-------+--------+------------+--------+-------+--------------+
1692 |36 |144 | 6.944 |150 | 6.666 | |
1693 +-------+--------+------------+--------+-------+--------------+
1694 |37 |148 | 6.756 |150 | 6.666 | |
1695 +-------+--------+------------+--------+-------+--------------+
1696 |38 |152 | 6.578 |175 | 5.714 | |
1697 +-------+--------+------------+--------+-------+--------------+
1698 |39 |156 | 6.410 |175 | 5.714 | |
1699 +-------+--------+------------+--------+-------+--------------+
1700 |40 |160 | 6.250 |175 | 5.714 | |
1701 +-------+--------+------------+--------+-------+--------------+
1702 |41 |164 | 6.097 |175 | 5.714 | |
1703 +-------+--------+------------+--------+-------+--------------+
1704 |42 |168 | 5.952 |175 | 5.714 | |
1705 +-------+--------+------------+--------+-------+--------------+
1706 |43 |172 | 5.813 |175 | 5.714 | |
1707 +-------+--------+------------+--------+-------+--------------+
1708 |44 |176 | 5.681 |187 | 5.333 | |
1709 +-------+--------+------------+--------+-------+--------------+
1710 |45 |180 | 5.555 |187 | 5.333 | |
1711 +-------+--------+------------+--------+-------+--------------+
1712 |46 |184 | 5.434 |187 | 5.333 | |
1713 +-------+--------+------------+--------+-------+--------------+
1714 |47 |188 | 5.319 |200 | 5.000 | |
1715 +-------+--------+------------+--------+-------+--------------+
1716 |48 |192 | 5.208 |200 | 5.000 | |
1717 +-------+--------+------------+--------+-------+--------------+
1718 |49 |196 | 5.102 |200 | 5.000 | |
1719 +-------+--------+------------+--------+-------+--------------+
1721 16.2 Synchronous timings for fast SCSI-2 53C8XX controllers
1723 +-----------------------------+----------------+
1724 |Negotiated |NCR settings |
1725 +-------+--------+------------+--------+-------+
1726 |Factor |Period |Speed |Period |Speed |
1727 +-------+--------+------------+--------+-------+
1728 |25 |100 |10.000 |100 |10.000 |
1729 +-------+--------+------------+--------+-------+
1730 |26 |104 |9.615 |125 | 8.000 |
1731 +-------+--------+------------+--------+-------+
1732 |27 |108 |9.259 |125 | 8.000 |
1733 +-------+--------+------------+--------+-------+
1734 |28 |112 |8.928 |125 | 8.000 |
1735 +-------+--------+------------+--------+-------+
1736 |29 |116 |8.620 |125 | 8.000 |
1737 +-------+--------+------------+--------+-------+
1738 |30 |120 |8.333 |125 | 8.000 |
1739 +-------+--------+------------+--------+-------+
1740 |31 |124 |8.064 |125 | 8.000 |
1741 +-------+--------+------------+--------+-------+
1742 |32 |128 |7.812 |131 | 7.619 |
1743 +-------+--------+------------+--------+-------+
1744 |33 |132 |7.575 |150 | 6.666 |
1745 +-------+--------+------------+--------+-------+
1746 |34 |136 |7.352 |150 | 6.666 |
1747 +-------+--------+------------+--------+-------+
1748 |35 |140 |7.142 |150 | 6.666 |
1749 +-------+--------+------------+--------+-------+
1750 |36 |144 |6.944 |150 | 6.666 |
1751 +-------+--------+------------+--------+-------+
1752 |37 |148 |6.756 |150 | 6.666 |
1753 +-------+--------+------------+--------+-------+
1754 |38 |152 |6.578 |175 | 5.714 |
1755 +-------+--------+------------+--------+-------+
1756 |39 |156 |6.410 |175 | 5.714 |
1757 +-------+--------+------------+--------+-------+
1758 |40 |160 |6.250 |175 | 5.714 |
1759 +-------+--------+------------+--------+-------+
1760 |41 |164 |6.097 |175 | 5.714 |
1761 +-------+--------+------------+--------+-------+
1762 |42 |168 |5.952 |175 | 5.714 |
1763 +-------+--------+------------+--------+-------+
1764 |43 |172 |5.813 |175 | 5.714 |
1765 +-------+--------+------------+--------+-------+
1766 |44 |176 |5.681 |187 | 5.333 |
1767 +-------+--------+------------+--------+-------+
1768 |45 |180 |5.555 |187 | 5.333 |
1769 +-------+--------+------------+--------+-------+
1770 |46 |184 |5.434 |187 | 5.333 |
1771 +-------+--------+------------+--------+-------+
1772 |47 |188 |5.319 |200 | 5.000 |
1773 +-------+--------+------------+--------+-------+
1774 |48 |192 |5.208 |200 | 5.000 |
1775 +-------+--------+------------+--------+-------+
1776 |49 |196 |5.102 |200 | 5.000 |
1777 +-------+--------+------------+--------+-------+
1780 17. Serial NVRAM
1781 ================
1783 (added by Richard Waltham: [email protected])
1785 17.1 Features
1786 -------------
1788 Enabling serial NVRAM support enables detection of the serial NVRAM included
1789 on Symbios and some Symbios compatible host adaptors, and Tekram boards. The
1790 serial NVRAM is used by Symbios and Tekram to hold set up parameters for the
1791 host adaptor and its attached drives.
1793 The Symbios NVRAM also holds data on the boot order of host adaptors in a
1794 system with more than one host adaptor. This enables the order of scanning
1795 the cards for drives to be changed from the default used during host adaptor
1796 detection.
1798 This can be done to a limited extent at the moment using "reverse probe" but
1799 this only changes the order of detection of different types of cards. The
1800 NVRAM boot order settings can do this as well as change the order the same
1801 types of cards are scanned in, something "reverse probe" cannot do.
1803 Tekram boards using Symbios chips, DC390W/F/U, which have NVRAM are detected
1804 and this is used to distinguish between Symbios compatible and Tekram host
1805 adaptors. This is used to disable the Symbios compatible "diff" setting
1806 incorrectly set on Tekram boards if the CONFIG_SCSI_53C8XX_SYMBIOS_COMPAT
1807 configuration parameter is set enabling both Symbios and Tekram boards to be
1808 used together with the Symbios cards using all their features, including
1809 "diff" support. ("led pin" support for Symbios compatible cards can remain
1810 enabled when using Tekram cards. It does nothing useful for Tekram host
1811 adaptors but does not cause problems either.)
1814 17.2 Symbios NVRAM layout
1815 -------------------------
1817 typical data at NVRAM address 0x100 (53c810a NVRAM)::
1819 00 00
1820 64 01
1821 8e 0b
1823 00 30 00 00 00 00 07 00 00 00 00 00 00 00 07 04 10 04 00 00
1825 04 00 0f 00 00 10 00 50 00 00 01 00 00 62
1826 04 00 03 00 00 10 00 58 00 00 01 00 00 63
1827 04 00 01 00 00 10 00 48 00 00 01 00 00 61
1828 00 00 00 00 00 00 00 00 00 00 00 00 00 00
1830 0f 00 08 08 64 00 0a 00
1831 0f 00 08 08 64 00 0a 00
1832 0f 00 08 08 64 00 0a 00
1833 0f 00 08 08 64 00 0a 00
1834 0f 00 08 08 64 00 0a 00
1835 0f 00 08 08 64 00 0a 00
1836 0f 00 08 08 64 00 0a 00
1837 0f 00 08 08 64 00 0a 00
1839 0f 00 08 08 64 00 0a 00
1840 0f 00 08 08 64 00 0a 00
1841 0f 00 08 08 64 00 0a 00
1842 0f 00 08 08 64 00 0a 00
1843 0f 00 08 08 64 00 0a 00
1844 0f 00 08 08 64 00 0a 00
1845 0f 00 08 08 64 00 0a 00
1846 0f 00 08 08 64 00 0a 00
1848 00 00 00 00 00 00 00 00
1849 00 00 00 00 00 00 00 00
1850 00 00 00 00 00 00 00 00
1851 00 00 00 00 00 00 00 00
1852 00 00 00 00 00 00 00 00
1853 00 00 00 00 00 00 00 00
1854 00 00 00 00 00 00 00 00
1855 00 00 00 00 00 00 00 00
1857 00 00 00 00 00 00 00 00
1858 00 00 00 00 00 00 00 00
1859 00 00 00 00 00 00 00 00
1860 00 00 00 00 00 00 00 00
1861 00 00 00 00 00 00 00 00
1862 00 00 00 00 00 00 00 00
1863 00 00 00 00 00 00 00 00
1864 00 00 00 00 00 00 00 00
1866 00 00 00 00 00 00 00 00
1867 00 00 00 00 00 00 00 00
1868 00 00 00 00 00 00 00 00
1870 fe fe
1871 00 00
1872 00 00
1874 NVRAM layout details
1876 ============= ================
1877 NVRAM Address
1878 ============= ================
1879 0x000-0x0ff not used
1880 0x100-0x26f initialised data
1881 0x270-0x7ff not used
1882 ============= ================
1884 general layout::
1886 header - 6 bytes,
1887 data - 356 bytes (checksum is byte sum of this data)
1888 trailer - 6 bytes
1889 ---
1890 total 368 bytes
1892 data area layout::
1894 controller set up - 20 bytes
1895 boot configuration - 56 bytes (4x14 bytes)
1896 device set up - 128 bytes (16x8 bytes)
1897 unused (spare?) - 152 bytes (19x8 bytes)
1898 ---
1899 total 356 bytes
1901 header::
1903 00 00 - ?? start marker
1904 64 01 - byte count (lsb/msb excludes header/trailer)
1905 8e 0b - checksum (lsb/msb excludes header/trailer)
1907 controller set up::
1909 00 30 00 00 00 00 07 00 00 00 00 00 00 00 07 04 10 04 00 00
1910 | | | |
1911 | | | -- host ID
1912 | | |
1913 | | --Removable Media Support
1914 | | 0x00 = none
1915 | | 0x01 = Bootable Device
1916 | | 0x02 = All with Media
1917 | |
1918 | --flag bits 2
1919 | 0x00000001= scan order hi->low
1920 | (default 0x00 - scan low->hi)
1921 --flag bits 1
1922 0x00000001 scam enable
1923 0x00000010 parity enable
1924 0x00000100 verbose boot msgs
1926 remaining bytes unknown - they do not appear to change in my
1927 current set up for any of the controllers.
1929 default set up is identical for 53c810a and 53c875 NVRAM
1930 (Removable Media added Symbios BIOS version 4.09)
1932 boot configuration
1934 boot order set by order of the devices in this table::
1936 04 00 0f 00 00 10 00 50 00 00 01 00 00 62 -- 1st controller
1937 04 00 03 00 00 10 00 58 00 00 01 00 00 63 2nd controller
1938 04 00 01 00 00 10 00 48 00 00 01 00 00 61 3rd controller
1939 00 00 00 00 00 00 00 00 00 00 00 00 00 00 4th controller
1940 | | | | | | | |
1941 | | | | | | ---- PCI io port adr
1942 | | | | | --0x01 init/scan at boot time
1943 | | | | --PCI device/function number (0xdddddfff)
1944 | | ----- ?? PCI vendor ID (lsb/msb)
1945 ----PCI device ID (lsb/msb)
1947 ?? use of this data is a guess but seems reasonable
1949 remaining bytes unknown - they do not appear to change in my
1950 current set up
1952 default set up is identical for 53c810a and 53c875 NVRAM
1953 --------------------------------------------------------
1955 device set up (up to 16 devices - includes controller)::
1957 0f 00 08 08 64 00 0a 00 - id 0
1958 0f 00 08 08 64 00 0a 00
1959 0f 00 08 08 64 00 0a 00
1960 0f 00 08 08 64 00 0a 00
1961 0f 00 08 08 64 00 0a 00
1962 0f 00 08 08 64 00 0a 00
1963 0f 00 08 08 64 00 0a 00
1964 0f 00 08 08 64 00 0a 00
1966 0f 00 08 08 64 00 0a 00
1967 0f 00 08 08 64 00 0a 00
1968 0f 00 08 08 64 00 0a 00
1969 0f 00 08 08 64 00 0a 00
1970 0f 00 08 08 64 00 0a 00
1971 0f 00 08 08 64 00 0a 00
1972 0f 00 08 08 64 00 0a 00
1973 0f 00 08 08 64 00 0a 00 - id 15
1974 | | | | | |
1975 | | | | ----timeout (lsb/msb)
1976 | | | --synch period (0x?? 40 Mtrans/sec- fast 40) (probably 0x28)
1977 | | | (0x30 20 Mtrans/sec- fast 20)
1978 | | | (0x64 10 Mtrans/sec- fast )
1979 | | | (0xc8 5 Mtrans/sec)
1980 | | | (0x00 asynchronous)
1981 | | -- ?? max sync offset (0x08 in NVRAM on 53c810a)
1982 | | (0x10 in NVRAM on 53c875)
1983 | --device bus width (0x08 narrow)
1984 | (0x10 16 bit wide)
1985 --flag bits
1986 0x00000001 - disconnect enabled
1987 0x00000010 - scan at boot time
1988 0x00000100 - scan luns
1989 0x00001000 - queue tags enabled
1991 remaining bytes unknown - they do not appear to change in my
1992 current set up
1994 ?? use of this data is a guess but seems reasonable
1995 (but it could be max bus width)
1997 default set up for 53c810a NVRAM
1998 default set up for 53c875 NVRAM
2000 - bus width - 0x10
2001 - sync offset ? - 0x10
2002 - sync period - 0x30
2004 ?? spare device space (32 bit bus ??)
2006 ::
2008 00 00 00 00 00 00 00 00 (19x8bytes)
2009 .
2010 .
2011 00 00 00 00 00 00 00 00
2013 default set up is identical for 53c810a and 53c875 NVRAM
2014 --------------------------------------------------------
2016 trailer::
2018 fe fe - ? end marker ?
2019 00 00
2020 00 00
2022 default set up is identical for 53c810a and 53c875 NVRAM
2023 -----------------------------------------------------------
2027 17.3 Tekram NVRAM layout
2028 ------------------------
2030 nvram 64x16 (1024 bit)
2032 Drive settings::
2034 Drive ID 0-15 (addr 0x0yyyy0 = device setup, yyyy = ID)
2035 (addr 0x0yyyy1 = 0x0000)
2037 x x x x x x x x x x x x x x x x
2038 | | | | | | | | |
2039 | | | | | | | | ----- parity check 0 - off
2040 | | | | | | | | 1 - on
2041 | | | | | | | |
2042 | | | | | | | ------- sync neg 0 - off
2043 | | | | | | | 1 - on
2044 | | | | | | |
2045 | | | | | | --------- disconnect 0 - off
2046 | | | | | | 1 - on
2047 | | | | | |
2048 | | | | | ----------- start cmd 0 - off
2049 | | | | | 1 - on
2050 | | | | |
2051 | | | | -------------- tagged cmds 0 - off
2052 | | | | 1 - on
2053 | | | |
2054 | | | ---------------- wide neg 0 - off
2055 | | | 1 - on
2056 | | |
2057 --------------------------- sync rate 0 - 10.0 Mtrans/sec
2058 1 - 8.0
2059 2 - 6.6
2060 3 - 5.7
2061 4 - 5.0
2062 5 - 4.0
2063 6 - 3.0
2064 7 - 2.0
2065 7 - 2.0
2066 8 - 20.0
2067 9 - 16.7
2068 a - 13.9
2069 b - 11.9
2071 Global settings
2073 Host flags 0 (addr 0x100000, 32)::
2075 x x x x x x x x x x x x x x x x
2076 | | | | | | | | | | | |
2077 | | | | | | | | ----------- host ID 0x00 - 0x0f
2078 | | | | | | | |
2079 | | | | | | | ----------------------- support for 0 - off
2080 | | | | | | | > 2 drives 1 - on
2081 | | | | | | |
2082 | | | | | | ------------------------- support drives 0 - off
2083 | | | | | | > 1Gbytes 1 - on
2084 | | | | | |
2085 | | | | | --------------------------- bus reset on 0 - off
2086 | | | | | power on 1 - on
2087 | | | | |
2088 | | | | ----------------------------- active neg 0 - off
2089 | | | | 1 - on
2090 | | | |
2091 | | | -------------------------------- imm seek 0 - off
2092 | | | 1 - on
2093 | | |
2094 | | ---------------------------------- scan luns 0 - off
2095 | | 1 - on
2096 | |
2097 -------------------------------------- removable 0 - disable
2098 as BIOS dev 1 - boot device
2099 2 - all
2101 Host flags 1 (addr 0x100001, 33)::
2103 x x x x x x x x x x x x x x x x
2104 | | | | | |
2105 | | | --------- boot delay 0 - 3 sec
2106 | | | 1 - 5
2107 | | | 2 - 10
2108 | | | 3 - 20
2109 | | | 4 - 30
2110 | | | 5 - 60
2111 | | | 6 - 120
2112 | | |
2113 --------------------------- max tag cmds 0 - 2
2114 1 - 4
2115 2 - 8
2116 3 - 16
2117 4 - 32
2119 Host flags 2 (addr 0x100010, 34)::
2121 x x x x x x x x x x x x x x x x
2122 |
2123 ----- F2/F6 enable 0 - off ???
2124 1 - on ???
2126 checksum (addr 0x111111)
2128 checksum = 0x1234 - (sum addr 0-63)
2130 ----------------------------------------------------------------------------
2132 default nvram data::
2134 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000
2135 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000
2136 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000
2137 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000
2139 0x0f07 0x0400 0x0001 0x0000 0x0000 0x0000 0x0000 0x0000
2140 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000
2141 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000
2142 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0xfbbc
2145 18. Support for Big Endian
2146 ==========================
2148 The PCI local bus has been primarily designed for x86 architecture.
2149 As a consequence, PCI devices generally expect DWORDS using little endian
2150 byte ordering.
2152 18.1 Big Endian CPU
2153 -------------------
2155 In order to support NCR chips on a Big Endian architecture the driver has to
2156 perform byte reordering each time it is needed. This feature has been
2157 added to the driver by Cort <[email protected]> and is available in driver
2158 version 2.5 and later ones. For the moment Big Endian support has only
2159 been tested on Linux/PPC (PowerPC).
2161 18.2 NCR chip in Big Endian mode of operations
2162 ----------------------------------------------
2164 It can be read in SYMBIOS documentation that some chips support a special
2165 Big Endian mode, on paper: 53C815, 53C825A, 53C875, 53C875N, 53C895.
2166 This mode of operations is not software-selectable, but needs pin named
2167 BigLit to be pulled-up. Using this mode, most of byte reorderings should
2168 be avoided when the driver is running on a Big Endian CPU.
2169 Driver version 2.5 is also, in theory, ready for this feature.

3. 한국어 전문 번역

영어 원문의 문단 순서와 의미를 유지한 전체 번역입니다. 코드, 함수명, symbol과 URL은 원문 표기를 유지합니다.

문서 정보와 전체 구성

1-90

이 문서는 Gerard Roudier가 1999년 5월 29일 작성한 NCR53C8XX/SYM53C8XX driver 안내서다. 주소와 연락처는 원문에 보존되어 있다.

내용은 소개, chip과 SCSI feature, enhanced 896 driver, memory mapped I/O, tagged queueing, parity, profiling, proc control command, configuration과 boot option, header constant, 설치, architecture, known problem, troubleshooting, synchronous timing, serial NVRAM, Big Endian 지원의 18개 장으로 구성된다.

문서 구성
주제
1-4소개, chip, enhanced SCRIPTS, I/O 방식
5-8Tagged queue, parity, profiling, control command
9-11Configuration, boot option, header constant
12-15설치, architecture, known problem, troubleshooting
16-18Timing table, serial NVRAM, Big Endian

긴 안내서의 주제를 기능별로 묶었습니다.

.. SPDX-License-Identifier: GPL-2.0

===========================
NCR53C8XX/SYM53C8XX drivers
===========================

Written by Gerard Roudier <[email protected]>

21 Rue Carnot

95170 DEUIL LA BARRE - FRANCE

29 May 1999

.. Contents:

   1.  Introduction
   2.  Supported chips and SCSI features
   3.  Advantages of the enhanced 896 driver
         3.1 Optimized SCSI SCRIPTS
         3.2 New features of the SYM53C896 (64 bit PCI dual LVD SCSI controller)
   4.  Memory mapped I/O versus normal I/O
   5.  Tagged command queueing
   6.  Parity checking
   7.  Profiling information
   8.  Control commands
         8.1  Set minimum synchronous period
         8.2  Set wide size
         8.3  Set maximum number of concurrent tagged commands
         8.4  Set order type for tagged command
         8.5  Set debug mode
         8.6  Clear profile counters
         8.7  Set flag (no_disc)
         8.8  Set verbose level
         8.9  Reset all logical units of a target
         8.10 Abort all tasks of all logical units of a target
   9.  Configuration parameters
   10. Boot setup commands
         10.1 Syntax
         10.2 Available arguments
                10.2.1  Master parity checking
                10.2.2  Scsi parity checking
                10.2.3  Scsi disconnections
                10.2.4  Special features
                10.2.5  Ultra SCSI support
                10.2.6  Default number of tagged commands
                10.2.7  Default synchronous period factor
                10.2.8  Negotiate synchronous with all devices
                10.2.9  Verbosity level
                10.2.10 Debug mode
                10.2.11 Burst max
                10.2.12 LED support
                10.2.13 Max wide
                10.2.14 Differential mode
                10.2.15 IRQ mode
                10.2.16 Reverse probe
                10.2.17 Fix up PCI configuration space
                10.2.18 Serial NVRAM
                10.2.19 Check SCSI BUS
                10.2.20 Exclude a host from being attached
                10.2.21 Suggest a default SCSI id for hosts
                10.2.22 Enable use of IMMEDIATE ARBITRATION
         10.3 Advised boot setup commands
         10.4 PCI configuration fix-up boot option
         10.5 Serial NVRAM support boot option
         10.6 SCSI BUS checking boot option
         10.7 IMMEDIATE ARBITRATION boot option
   11. Some constants and flags of the ncr53c8xx.h header file
   12. Installation
   13. Architecture dependent features
   14. Known problems
         14.1 Tagged commands with Iomega Jaz device
         14.2 Device names change when another controller is added
         14.3 Using only 8 bit devices with a WIDE SCSI controller.
         14.4 Possible data corruption during a Memory Write and Invalidate
         14.5 IRQ sharing problems
   15. SCSI problem troubleshooting
         15.1 Problem tracking
         15.2 Understanding hardware error reports
   16. Synchronous transfer negotiation tables
         16.1 Synchronous timings for 53C875 and 53C860 Ultra-SCSI controllers
         16.2 Synchronous timings for fast SCSI-2 53C8XX controllers
   17. Serial NVRAM support (by Richard Waltham)
         17.1 Features
         17.2 Symbios NVRAM layout
         17.3 Tekram  NVRAM layout
   18. Support for Big Endian
         18.1 Big Endian CPU
         18.2 NCR chip in Big Endian mode of operations

Driver 계보와 적용 범위

91-151

초기 Linux `ncr53c8xx`는 Gerard Roudier가 1995년 11월 FreeBSD의 ncr driver를 port한 것이다. 원 driver는 Wolfgang Stanglmeier와 Stefan Esser가 386bsd와 FreeBSD용으로 작성했다.

현재 bundle은 두 driver로 나뉜다. Generic `ncr53c8xx`는 초기 810 revision 1부터 dual-channel LVD 896과 single-channel LVD 895A까지 SYM53C8XX family 전체를 지원한다. Enhanced `sym53c8xx`, 즉 896 driver는 오래된 chip 지원을 버리고 810A 이후 LOAD/STORE와 896·895A의 hardware phase mismatch 같은 새 기능을 사용한다.

기술 자료는 Michael Will의 PCI-HOWTO, Drew Eckhardt의 SCSI-HOWTO, LSI Logic 웹 서버와 Symbios FTP에서 얻을 수 있다. Eric Youngdale의 `scsiinfo`와 `scsidev` tool도 안내되며 특히 `scsiinfo` package가 필수라고 강조한다.

이 문서는 두 driver의 기능, configuration parameter, proc SCSI filesystem read/write를 통한 control command를 설명한다. Linux/i386, Linux/Alpha, Linux/PPC에서 시험됐고 당시 최신 version과 patch의 FTP 위치도 원문에 기록돼 있다.

1. Introduction
===============

The initial Linux ncr53c8xx driver has been a port of the ncr driver from
FreeBSD that has been achieved in November 1995 by:

        - Gerard Roudier              <[email protected]>

The original driver has been written for 386bsd and FreeBSD by:

        - Wolfgang Stanglmeier        <[email protected]>
        - Stefan Esser                <[email protected]>

It is now available as a bundle of 2 drivers:

- ncr53c8xx generic driver that supports all the SYM53C8XX family including
  the earliest 810 rev. 1, the latest 896 (2 channel LVD SCSI controller) and
  the new 895A (1 channel LVD SCSI controller).
- sym53c8xx enhanced driver (a.k.a. 896 drivers) that drops support of oldest
  chips in order to gain advantage of new features, as LOAD/STORE instructions
  available since the 810A and hardware phase mismatch available with the
  896 and the 895A.

You can find technical information about the NCR 8xx family in the
PCI-HOWTO written by Michael Will and in the SCSI-HOWTO written by
Drew Eckhardt.

Information about new chips is available at LSILOGIC web server:

          - http://www.lsilogic.com/

SCSI standard documentations are available at SYMBIOS ftp server:

          - ftp://ftp.symbios.com/

Useful SCSI tools written by Eric Youngdale are available at tsx-11:

          - ftp://tsx-11.mit.edu/pub/linux/ALPHA/scsi/scsiinfo-X.Y.tar.gz
          - ftp://tsx-11.mit.edu/pub/linux/ALPHA/scsi/scsidev-X.Y.tar.gz

These tools are not ALPHA but quite clean and work quite well.
It is essential you have the 'scsiinfo' package.

This short documentation describes the features of the generic and enhanced
drivers, configuration parameters and control commands available through
the proc SCSI file system read / write operations.

This driver has been tested OK with linux/i386, Linux/Alpha and Linux/PPC.

Latest driver version and patches are available at:

          - ftp://ftp.tux.org/pub/people/gerard-roudier

or

          - ftp://ftp.symbios.com/mirror/ftp.tux.org/pub/tux/roudier/drivers

I am not a native speaker of English and there are probably lots of
mistakes in this README file. Any help will be welcome.

지원 chip과 SCSI feature

152-220

모든 chip에서 synchronous negotiation, disconnection, tagged command queueing, SCSI parity checking, master parity checking을 지원한다. Wide negotiation은 hardware가 허용하는 chip에서만 지원한다.

NCR 8xx 지원표
ChipSDMS BIOSWideSCSI최대 syncGenericEnhanced
810NNFAST1010 MB/sYN
810ANNFAST1010 MB/sYY
815YNFAST1010 MB/sYN
825YYFAST1020 MB/sYN
825AYYFAST1020 MB/sYY
860NNFAST2020 MB/sYY
875YYFAST2040 MB/sYY
876YYFAST2040 MB/sYY
895YYFAST4080 MB/sYY
895AYYFAST4080 MB/sYY
896YYFAST4080 MB/sYY
897YYFAST4080 MB/sYY
1510DYYFAST4080 MB/sYY
1010YYFAST80160 MB/sNY
1010_66YYFAST80160 MB/sNY; PCI 33/66 MHz

SDMS BIOS, bus width, SCSI 규격과 driver 지원을 원문 전체 행으로 옮겼습니다.

그 밖에 module load, 성능을 높이는 memory-mapped I/O, proc read profiling, proc write control command, syslog debug, Symbios·Tekram serial NVRAM, scatter/gather, shared interrupt, boot setup command를 지원한다.

2. Supported chips and SCSI features
====================================

The following features are supported for all chips:

        - Synchronous negotiation
        - Disconnection
        - Tagged command queuing
        - SCSI parity checking
        - Master parity checking

"Wide negotiation" is supported for chips that allow it.  The
following table shows some characteristics of NCR 8xx family chips
and what drivers support them.

+--------+-----------+-----+-----------+------------+------------+------------+
|        |           |     |           |            |Supported by|Supported by|
|        |On board   |     |           |            |the generic |the enhanced|
|Chip    |SDMS BIOS  |Wide |SCSI std.  | Max. sync  |driver      |driver      |
+--------+-----------+-----+-----------+------------+------------+------------+
|810     |  N        | N   |  FAST10   | 10 MB/s    |    Y       |    N       |
+--------+-----------+-----+-----------+------------+------------+------------+
|810A    |  N        | N   |  FAST10   | 10 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|815     |  Y        | N   |  FAST10   | 10 MB/s    |    Y       |    N       |
+--------+-----------+-----+-----------+------------+------------+------------+
|825     |  Y        | Y   |  FAST10   | 20 MB/s    |    Y       |    N       |
+--------+-----------+-----+-----------+------------+------------+------------+
|825A    |  Y        | Y   |  FAST10   | 20 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|860     |  N        | N   |  FAST20   | 20 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|875     |  Y        | Y   |  FAST20   | 40 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|876     |  Y        | Y   |  FAST20   | 40 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|895     |  Y        | Y   |  FAST40   | 80 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|895A    |  Y        | Y   |  FAST40   | 80 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|896     |  Y        | Y   |  FAST40   | 80 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|897     |  Y        | Y   |  FAST40   | 80 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|1510D   |  Y        | Y   |  FAST40   | 80 MB/s    |    Y       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|1010    |  Y        | Y   |  FAST80   |160 MB/s    |    N       |    Y       |
+--------+-----------+-----+-----------+------------+------------+------------+
|1010_66 |  Y        | Y   |  FAST80   |160 MB/s    |    N       |    Y       |
|[1]_    |           |     |           |            |            |            |
+--------+-----------+-----+-----------+------------+------------+------------+

.. [1] Chip supports 33MHz and 66MHz PCI buses.


Summary of other supported features:

:Module:                allow to load the driver
:Memory mapped I/O:     increases performance
:Profiling information: read operations from the proc SCSI file system
:Control commands:      write operations to the proc SCSI file system
:Debugging information: written to syslog (expert only)
:Serial NVRAM:          Symbios and Tekram formats

- Scatter / gather
- Shared interrupt
- Boot setup commands

Enhanced 896 driver의 SCRIPTS 최적화

221-256

810A, 825A, 875, 895, 896, 895A의 LOAD와 STORE SCSI SCRIPTS instruction은 I/O register와 memory 사이에서 최대 1 DWORD를 기존 MOVE MEMORY보다 빠르게 옮기며 absolute와 DSA-relative addressing을 지원한다. Enhanced driver의 SCRIPTS는 이를 사용하도록 전면 재작성됐다.

896과 895A는 phase mismatch context를 SCRIPTS에서 처리해 C code가 context를 저장하는 동안 SCSI processor가 멈추는 interrupt를 피한다. 896은 64-bit PCI transaction과 addressing, 895A는 32-bit transaction과 64-bit addressing을 지원한다. SCRIPTS processor는 segment register로 bit 32-63을 처리하며 on-chip 8K RAM 대상 LOAD/STORE는 chip 내부에서 끝난다.

LOAD/STORE 의존성 때문에 enhanced driver는 revision 0x10 미만 SYM53C810, 모든 SYM53C815, revision 0x10 미만 SYM53C825를 지원하지 않는다.

3. Advantages of the enhanced 896 driver
========================================

3.1 Optimized SCSI SCRIPTS
--------------------------

The 810A, 825A, 875, 895, 896 and 895A support new SCSI SCRIPTS instructions
named LOAD and STORE that allow to move up to 1 DWORD from/to an IO register
to/from memory much faster that the MOVE MEMORY instruction that is supported
by the 53c7xx and 53c8xx family.
The LOAD/STORE instructions support absolute and DSA relative addressing
modes.  The SCSI SCRIPTS had been entirely rewritten using LOAD/STORE instead
of MOVE MEMORY instructions.

3.2 New features of the SYM53C896 (64 bit PCI dual LVD SCSI controller)
-----------------------------------------------------------------------

The 896 and the 895A allows handling of the phase mismatch context from
SCRIPTS (avoids the phase mismatch interrupt that stops the SCSI processor
until the C code has saved the context of the transfer).
Implementing this without using LOAD/STORE instructions would be painful
and I didn't even want to try it.

The 896 chip supports 64 bit PCI transactions and addressing, while the
895A supports 32 bit PCI transactions and 64 bit addressing.
The SCRIPTS processor of these chips is not true 64 bit, but uses segment
registers for bit 32-63. Another interesting feature is that LOAD/STORE
instructions that address the on-chip RAM (8k) remain internal to the chip.

Due to the use of LOAD/STORE SCRIPTS instructions, this driver does not
support the following chips:

- SYM53C810 revision < 0x10 (16)
- SYM53C815 all revisions
- SYM53C825 revision < 0x10 (16)

Memory-mapped I/O와 normal I/O

257-268

Memory-mapped I/O는 normal I/O보다 latency가 낮아 Linux 1.3.x부터 기본으로 사용된다. 대부분의 hardware에서 잘 동작하지만 설계가 좋지 않은 motherboard에서는 실패할 수 있다. `CONFIG_SCSI_NCR53C8XX_IOMAPPED`를 설정하면 항상 normal I/O를 강제한다.

4. Memory mapped I/O versus normal I/O
======================================

Memory mapped I/O has less latency than normal I/O.  Since
linux-1.3.x, memory mapped I/O is used rather than normal I/O.  Memory
mapped I/O seems to work fine on most hardware configurations, but
some poorly designed motherboards may break this feature.

The configuration option CONFIG_SCSI_NCR53C8XX_IOMAPPED forces the
driver to use normal I/O in all cases.

Tagged command queueing과 QUEUE FULL 조절

269-344

Device에 동시에 여러 command를 보내면 실제 head 위치와 기계적 특성에 따라 작업을 최적화하고 평균 latency를 줄일 수 있다. 효과를 내려면 적당한 cache가 필요하며 일부 firmware는 tagged queueing을 잘못 구현하므로 vendor update를 확인해야 한다. 원문에서 정상 동작을 확인한 disk는 IBM S12 0662, Conner 1080S, Quantum Atlas I·II다.

NVRAM이 있으면 target별로 queueing을 설정한다. Tekram Setup은 최대 32까지 depth를 조정하고 Symbios Setup은 enable/disable만 한다. 기본 simultaneous tag 수는 8이다. Generic driver 최대는 64, enhanced driver 최대는 255지만 보통 32 초과는 이점이 적고 최근 disk도 64 초과를 받지 않는 경우가 많다.

Boot option `ncr53c8xx=tags:4/t2t3q15-t4q7/t1u0q32`는 controller 0의 target 2·3을 15, target 4를 7, controller 1 target 1 LUN 0을 32, 나머지를 4로 설정한다.

Firmware가 `QUEUE FULL`을 반환하면 driver는 현재 disconnected command 수로 tagged depth를 낮춘다. 이후 성공한 command 1,000개마다 현재 limit 안에서 최대 depth를 하나 높인다. 이 조정 message는 기본적으로 표시하며 `ncr53c8xx=verb:0` 또는 boot 후 proc entry에 `setverbose 0`을 써서 숨길 수 있다.

QUEUE FULL heuristic
QUEUE FULL 수신Disconnected command 수로 depth 감소성공 1,000회허용 limit 안에서 depth +1

과도한 queue depth를 자동으로 회복합니다.

5. Tagged command queueing
==========================

Queuing more than 1 command at a time to a device allows it to perform
optimizations based on actual head positions and its mechanical
characteristics. This feature may also reduce average command latency.
In order to really gain advantage of this feature, devices must have
a reasonable cache size (No miracle is to be expected for a low-end
hard disk with 128 KB or less).
Some known SCSI devices do not properly support tagged command queuing.
Generally, firmware revisions that fix this kind of problems are available
at respective vendor web/ftp sites.
All I can say is that the hard disks I use on my machines behave well with
this driver with tagged command queuing enabled:

- IBM S12 0662
- Conner 1080S
- Quantum Atlas I
- Quantum Atlas II

If your controller has NVRAM, you can configure this feature per target
from the user setup tool. The Tekram Setup program allows to tune the
maximum number of queued commands up to 32. The Symbios Setup only allows
to enable or disable this feature.

The maximum number of simultaneous tagged commands queued to a device
is currently set to 8 by default.  This value is suitable for most SCSI
disks.  With large SCSI disks (>= 2GB, cache >= 512KB, average seek time
<= 10 ms), using a larger value may give better performances.

The sym53c8xx driver supports up to 255 commands per device, and the
generic ncr53c8xx driver supports up to 64, but using more than 32 is
generally not worth-while, unless you are using a very large disk or disk
array. It is noticeable that most of recent hard disks seem not to accept
more than 64 simultaneous commands. So, using more than 64 queued commands
is probably just resource wasting.

If your controller does not have NVRAM or if it is managed by the SDMS
BIOS/SETUP, you can configure tagged queueing feature and device queue
depths from the boot command-line. For example::

  ncr53c8xx=tags:4/t2t3q15-t4q7/t1u0q32

will set tagged commands queue depths as follow:

- target 2  all luns  on controller 0 --> 15
- target 3  all luns  on controller 0 --> 15
- target 4  all luns  on controller 0 -->  7
- target 1  lun 0     on controller 1 --> 32
- all other target/lun                -->  4

In some special conditions, some SCSI disk firmwares may return a
QUEUE FULL status for a SCSI command. This behaviour is managed by the
driver using the following heuristic:

- Each time a QUEUE FULL status is returned, tagged queue depth is reduced
  to the actual number of disconnected commands.

- Every 1000 successfully completed SCSI commands, if allowed by the
  current limit, the maximum number of queueable commands is incremented.

Since QUEUE FULL status reception and handling is resource wasting, the
driver notifies by default this problem to user by indicating the actual
number of commands used and their status, as well as its decision on the
device queue depth change.
The heuristic used by the driver in handling QUEUE FULL ensures that the
impact on performances is not too bad. You can get rid of the messages by
setting verbose level to zero, as follow:

1st method:
            boot your system using 'ncr53c8xx=verb:0' option.

2nd method:
            apply "setverbose 0" control command to the proc fs entry
            corresponding to your controller after boot-up.

SCSI와 PCI parity

345-354

Driver는 안전한 전송을 위해 SCSI parity와 PCI bus master parity를 지원하며 두 검사를 켜야 한다. 다만 결함 있는 device나 motherboard에서는 문제가 날 수 있어 boot command line option으로 각각 비활성화할 수 있다.

6. Parity checking
==================

The driver supports SCSI parity checking and PCI bus master parity
checking.  These features must be enabled in order to ensure safe data
transfers.  However, some flawed devices or mother boards will have
problems with parity. You can disable either PCI parity or SCSI parity
checking by entering appropriate options from the boot command line.
(See 10: Boot setup commands).

Proc profiling 정보와 counter

355-472

Profiling은 성능에 영향을 줄 수 있어 기본적으로 꺼져 있으며 compile configuration을 Y로 해야 한다. Host N의 path는 `/proc/scsi/ncr53c8xx/N`이고 보통 첫 board는 `/proc/scsi/ncr53c8xx/0`이다. Module을 다시 load할 때마다 host number가 증가할 수 있다.

`cat /proc/scsi/ncr53c8xx/0`은 chip·device/revision ID, I/O port, IRQ, mapped address, sync period, command 수와 profile counter를 표시한다. 예제 ID mapping은 810/810A가 device 0x1에서 revision 0x10 전후, 825/825A가 0x3에서 revision 0x10 전후이며 815=0x4, 860=0x6, 875=0xf, 895=0xc다.

Profile structure는 host attach 때 할당·zero화되므로 module reload 시 counter도 초기화되고 `clearprof`로 언제든 지울 수 있다. `num_trans`는 완료 command, `num_kbytes`는 전송 KB, `num_disc`는 disconnect, `num_break`는 phase mismatch script interruption, `num_int`와 `num_fly`는 일반/on-the-fly interrupt 수다.

`ms_setup`, `ms_data`, `ms_disc`, `ms_post`는 각각 command setup, data transfer, disconnected 상태, SCSI status 수신부터 completion callback까지의 후처리 millisecond다. System clock tick이 1/100초이므로 `ms_post`는 부정확할 수 있다.

Profile counter
Counter의미
num_trans완료 command
num_kbytes전송 KB
num_discSCSI disconnection
num_breakPhase mismatch script break
num_int일반 interrupt
num_flyOn-the-fly interrupt
ms_setupSetup 시간
ms_dataData 전송 시간
ms_discDisconnected 시간
ms_postPost-processing 시간

Proc output의 의미입니다.

7. Profiling information
========================

Profiling information is available through the proc SCSI file system.
Since gathering profiling information may impact performances, this
feature is disabled by default and requires a compilation configuration
option to be set to Y.

The device associated with a host has the following pathname::

          /proc/scsi/ncr53c8xx/N     (N=0,1,2 ....)

Generally, only 1 board is used on hardware configuration, and that device is::

          /proc/scsi/ncr53c8xx/0

However, if the driver has been made as module, the number of the
hosts is incremented each time the driver is loaded.

In order to display profiling information, just enter::

         cat /proc/scsi/ncr53c8xx/0

and you will get something like the following text::

    General information:
    Chip NCR53C810, device id 0x1, revision id 0x2
    IO port address 0x6000, IRQ number 10
    Using memory mapped IO at virtual address 0x282c000
    Synchronous transfer period 25, max commands per lun 4
    Profiling information:
    num_trans    = 18014
    num_kbytes   = 671314
    num_disc     = 25763
    num_break    = 1673
    num_int      = 1685
    num_fly      = 18038
    ms_setup     = 4940
    ms_data      = 369940
    ms_disc      = 183090
    ms_post      = 1320

General information is easy to understand. The device ID and the
revision ID identify the SCSI chip as follows:

======= ============= ===========
Chip    Device id     Revision Id
======= ============= ===========
810       0x1            <  0x10
810A      0x1            >= 0x10
815       0x4
825       0x3            <  0x10
860       0x6
825A      0x3            >= 0x10
875       0xf
895       0xc
======= ============= ===========

The profiling information is updated upon completion of SCSI commands.
A data structure is allocated and zeroed when the host adapter is
attached. So, if the driver is a module, the profile counters are
cleared each time the driver is loaded.  The "clearprof" command
allows you to clear these counters at any time.

The following counters are available:

("num" prefix means "number of",
"ms" means milli-seconds)

num_trans
        Number of completed commands
        Example above: 18014 completed commands

num_kbytes
        Number of kbytes transferred
        Example above: 671 MB transferred

num_disc
        Number of SCSI disconnections
        Example above: 25763 SCSI disconnections

num_break
        number of script interruptions (phase mismatch)
        Example above: 1673 script interruptions

num_int
        Number of interrupts other than "on the fly"
        Example above: 1685 interruptions not "on the fly"

num_fly
        Number of interrupts "on the fly"
        Example above: 18038 interruptions "on the fly"

ms_setup
        Elapsed time for SCSI commands setups
        Example above: 4.94 seconds

ms_data
        Elapsed time for data transfers
        Example above: 369.94 seconds spent for data transfer

ms_disc
        Elapsed time for SCSI disconnections
        Example above: 183.09 seconds spent disconnected

ms_post
        Elapsed time for command post processing
        (time from SCSI status get to command completion call)
        Example above: 1.32 seconds spent for post processing

Due to the 1/100 second tick of the system clock, "ms_post" time may
be wrong.

In the example above, we got 18038 interrupts "on the fly" and only
1673 script breaks generally due to disconnections inside a segment
of the scatter list.

Proc control command

473-622

Control command는 `echo "<verb> <parameters>" >/proc/scsi/ncr53c8xx/0` 형식으로 쓴다. Target 대신 `all`을 주면 controller 자신을 제외한 SCSI chain 전체 target에 적용한다.

`setsync <target> <period factor>`는 최소 synchronous period를 정하며 일반 최대 속도는 `1000/(4*period factor)`다. 255는 asynchronous, 10은 25ns, 11은 30ns, 12는 50ns다. `setwide <target> <size>`에서 0은 8-bit, 1은 16-bit다. `settags <target> <tags>`는 concurrent tag 수를 설정하고 `SCSI_NCR_MAX_TAGS`를 넘을 수 없다.

`setorder`는 `simple`, `ordered`, `default` 중 하나다. Simple은 모든 read/write에 SIMPLE TAG, ordered는 모두 ORDERED TAG, default는 read에 SIMPLE, write에 ORDERED TAG를 쓴다.

`setdebug` flag는 `alloc`, `queue`, `result`, `scatter`, `scripts`, `tiny`, `timing`, `nego`, `phase`이며 인수 없이 호출하면 reset한다. `clearprof`는 counter를 지우고 driver도 전송량 1000GB에서 overflow를 막기 위해 자동으로 지운다.

`setflag <target> no_disc`는 target의 disconnect를 금지하고 flag를 생략하면 해제한다. `setverbose #level`은 boot 후 verbosity를 바꾼다. Enhanced driver의 test 기능인 `resetdev <target>`은 모든 LUN에 BUS DEVICE RESET을, `cleardev <target>`은 모든 LUN task에 ABORT를 보내려 한다.

Proc command
Command기능
setsync최소 sync period
setwide8/16-bit width
settagsTagged depth
setorderTag order
setdebugDebug flag
clearprofProfile reset
setflagno_disc
setverboseVerbosity
resetdevBUS DEVICE RESET
cleardevABORT all tasks

Runtime에서 바꿀 수 있는 driver 동작입니다.

8. Control commands
===================

Control commands can be sent to the driver with write operations to
the proc SCSI file system. The generic command syntax is the
following::

      echo "<verb> <parameters>" >/proc/scsi/ncr53c8xx/0
      (assumes controller number is 0)

Using "all" for "<target>" parameter with the commands below will
apply to all targets of the SCSI chain (except the controller).

Available commands:

8.1 Set minimum synchronous period factor
-----------------------------------------

    setsync <target> <period factor>

    :target:   target number
    :period:   minimum synchronous period.
               Maximum speed = 1000/(4*period factor) except for special
               cases below.

    Specify a period of 255, to force asynchronous transfer mode.

      - 10 means 25 nano-seconds synchronous period
      - 11 means 30 nano-seconds synchronous period
      - 12 means 50 nano-seconds synchronous period

8.2 Set wide size
-----------------

    setwide <target> <size>

    :target:   target number
    :size:     0=8 bits, 1=16bits

8.3 Set maximum number of concurrent tagged commands
----------------------------------------------------

    settags <target> <tags>

    :target:   target number
    :tags:     number of concurrent tagged commands
               must not be greater than SCSI_NCR_MAX_TAGS (default: 8)

8.4 Set order type for tagged command
-------------------------------------

    setorder <order>

    :order:    3 possible values:

               simple:
                        use SIMPLE TAG for all operations (read and write)

               ordered:
                        use ORDERED TAG for all operations

               default:
                        use default tag type,
                        SIMPLE  TAG for read  operations
                        ORDERED TAG for write operations


8.5 Set debug mode
------------------

    setdebug <list of debug flags>

    Available debug flags:

        ======== ========================================================
        alloc    print info about memory allocations (ccb, lcb)
        queue    print info about insertions into the command start queue
        result   print sense data on CHECK CONDITION status
        scatter  print info about the scatter process
        scripts  print info about the script binding process
        tiny     print minimal debugging information
        timing   print timing information of the NCR chip
        nego     print information about SCSI negotiations
        phase    print information on script interruptions
        ======== ========================================================

    Use "setdebug" with no argument to reset debug flags.


8.6 Clear profile counters
--------------------------

    clearprof

    The profile counters are automatically cleared when the amount of
    data transferred reaches 1000 GB in order to avoid overflow.
    The "clearprof" command allows you to clear these counters at any time.


8.7 Set flag (no_disc)
----------------------

    setflag <target> <flag>

    target:    target number

    For the moment, only one flag is available:

        no_disc:   not allow target to disconnect.

    Do not specify any flag in order to reset the flag. For example:

    setflag 4
      will reset no_disc flag for target 4, so will allow it disconnections.

    setflag all
      will allow disconnection for all devices on the SCSI bus.


8.8 Set verbose level
---------------------

    setverbose #level

    The driver default verbose level is 1. This command allows to change
    th driver verbose level after boot-up.

8.9 Reset all logical units of a target
---------------------------------------

    resetdev <target>

    :target:   target number

    The driver will try to send a BUS DEVICE RESET message to the target.
    (Only supported by the SYM53C8XX driver and provided for test purpose)

8.10 Abort all tasks of all logical units of a target
-----------------------------------------------------

    cleardev <target>

    :target:   target number

    The driver will try to send a ABORT message to all the logical units
    of the target.

    (Only supported by the SYM53C8XX driver and provided for test purpose)

Compile-time configuration parameter

623-689

Firmware 결함이 있는 device 때문에 필요한 feature만 boot 후 안전한 device에 선택적으로 enable할 수 있다. `CONFIG_SCSI_NCR53C8XX_IOMAPPED`는 memory-mapped I/O가 의심될 때 normal I/O를 강제한다. Linux/PPC에서는 선택과 무관하게 필요하며 모든 I/O가 원래 mapped이므로 손실이 없다.

`DEFAULT_TAGS` 기본 8은 queue depth, `MAX_TAGS` 기본 8은 device당 최대이며 지원 최대 32다. `SYNC` 기본 5MHz는 boot negotiation frequency이고 0은 asynchronous다. `FORCE_SYNC_NEGO`는 inquiry byte 7에 표시하지 않는 TAMARACK scanner 같은 SCSI-2 device에도 sync negotiation을 강제한다. `NO_DISCONNECT`는 모든 device의 disconnect를 금지한다.

`SYMBIOS_COMPAT`는 genuine Symbios wiring에서 GPIO0 LED와 GPIO3 single-ended/differential flag를 사용한다. Tekram DC-390/U·W·F처럼 vendor BIOS와 비호환 GPIO wiring이 하나라도 있으면 직접 enable하면 안 된다.

`NVRAM_DETECT`는 Symbios-compatible과 Tekram DC390W/U/F serial NVRAM을 읽고 host boot order를 적용한다. 혼합 system에서 card를 구분하므로 `SYMBIOS_COMPAT`를 켜도 Symbios의 differential·LED 기능을 살리면서 Tekram 문제를 피할 수 있다.

9. Configuration parameters
===========================

If the firmware of all your devices is perfect enough, all the
features supported by the driver can be enabled at start-up.  However,
if only one has a flaw for some SCSI feature, you can disable the
support by the driver of this feature at linux start-up and enable
this feature after boot-up only for devices that support it safely.

CONFIG_SCSI_NCR53C8XX_IOMAPPED       (default answer: n)
    Answer "y" if you suspect your mother board to not allow memory mapped I/O.

    May slow down performance a little.  This option is required by
    Linux/PPC and is used no matter what you select here.  Linux/PPC
    suffers no performance loss with this option since all IO is memory
    mapped anyway.

CONFIG_SCSI_NCR53C8XX_DEFAULT_TAGS    (default answer: 8)
    Default tagged command queue depth.

CONFIG_SCSI_NCR53C8XX_MAX_TAGS         (default answer: 8)
    This option allows you to specify the maximum number of tagged commands
    that can be queued to a device. The maximum supported value is 32.

CONFIG_SCSI_NCR53C8XX_SYNC            (default answer: 5)
    This option allows you to specify the frequency in MHz the driver
    will use at boot time for synchronous data transfer negotiations.
    This frequency can be changed later with the "setsync" control command.
    0 means "asynchronous data transfers".

CONFIG_SCSI_NCR53C8XX_FORCE_SYNC_NEGO (default answer: n)
    Force synchronous negotiation for all SCSI-2 devices.

    Some SCSI-2 devices do not report this feature in byte 7 of inquiry
    response but do support it properly (TAMARACK scanners for example).

CONFIG_SCSI_NCR53C8XX_NO_DISCONNECT   (default and only reasonable answer: n)
    If you suspect a device of yours does not properly support disconnections,
    you can answer "y". Then, all SCSI devices will never disconnect the bus
    even while performing long SCSI operations.

CONFIG_SCSI_NCR53C8XX_SYMBIOS_COMPAT
    Genuine SYMBIOS boards use GPIO0 in output for controller LED and GPIO3
    bit as a flag indicating singled-ended/differential interface.
    If all the boards of your system are genuine SYMBIOS boards or use
    BIOS and drivers from SYMBIOS, you would want to enable this option.

    This option must NOT be enabled if your system has at least one 53C8XX
    based scsi board with a vendor-specific BIOS.
    For example, Tekram DC-390/U, DC-390/W and DC-390/F scsi controllers
    use a vendor-specific BIOS and are known to not use SYMBIOS compatible
    GPIO wiring. So, this option must not be enabled if your system has
    such a board installed.

CONFIG_SCSI_NCR53C8XX_NVRAM_DETECT
    Enable support for reading the serial NVRAM data on Symbios and
    some Symbios compatible cards, and Tekram DC390W/U/F cards. Useful for
    systems with more than one Symbios compatible controller where at least
    one has a serial NVRAM, or for a system with a mixture of Symbios and
    Tekram cards. Enables setting the boot order of host adaptors
    to something other than the default order or "reverse probe" order.
    Also enables Symbios and Tekram cards to be distinguished so
    CONFIG_SCSI_NCR53C8XX_SYMBIOS_COMPAT may be set in a system with a
    mixture of Symbios and Tekram cards so the Symbios cards can make use of
    the full range of Symbios features, differential, led pin, without
    causing problems for the Tekram card(s).

Boot와 insmod option 문법

690-736

Boot setup은 driver name 뒤에 `ncr53c8xx=` 또는 `sym53c8xx=`를 붙이고 optional integer list와 comma-separated string list를 준다. 예제 `ncr53c8xx=tags:4,sync:10,debug:0x200`은 tag 4, 10 MT/s sync, `DEBUG_NEGO`를 설정한다.

`insmod` string에서는 comma 대신 space도 separator로 쓸 수 있어 `insmod ncr53c8xx.o ncr53c8xx="tags:4 sync:10 debug:0x200"`가 같은 효과다. 현재 integer list는 무시되며 향후 controller별 설정에 쓰일 예정이다. String은 lower-case letter와 digit만 쓰는 `keyword:value` 형식이다.

여러 adapter에서 `excl`은 특정 I/O address의 chip을 제외한다. 먼저 `insmod sym53c8xx sym53c8xx=excl:0x1400`, 이어 `insmod ncr53c8xx`를 실행하면 0x1400을 제외한 adapter는 enhanced driver가, 0x1400 adapter는 generic driver가 맡는다.

10. Boot setup commands
=======================

10.1 Syntax
-----------

Setup commands can be passed to the driver either at boot time or as a
string variable using 'insmod'.

A boot setup command for the ncr53c8xx (sym53c8xx) driver begins with the
driver name "ncr53c8xx="(sym53c8xx). The kernel syntax parser then expects
an optional list of integers separated with comma followed by an optional
list of comma-separated strings. Example of boot setup command under lilo
prompt::

    lilo: linux root=/dev/hda2 ncr53c8xx=tags:4,sync:10,debug:0x200

- enable tagged commands, up to 4 tagged commands queued.
- set synchronous negotiation speed to 10 Mega-transfers / second.
- set DEBUG_NEGO flag.

Since comma seems not to be allowed when defining a string variable using
'insmod', the driver also accepts <space> as option separator.
The following command will install driver module with the same options as
above::

    insmod ncr53c8xx.o ncr53c8xx="tags:4 sync:10 debug:0x200"

For the moment, the integer list of arguments is discarded by the driver.
It will be used in the future in order to allow a per controller setup.

Each string argument must be specified as "keyword:value". Only lower-case
characters and digits are allowed.

In a system that contains multiple 53C8xx adapters insmod will install the
specified driver on each adapter. To exclude a chip use the 'excl' keyword.

The sequence of commands::

    insmod sym53c8xx sym53c8xx=excl:0x1400
    insmod ncr53c8xx

installs the sym53c8xx driver on all adapters except the one at IO port
address 0x1400 and then installs the ncr53c8xx driver to the adapter at IO
port address 0x1400.

Parity, disconnect, special, Ultra, tags와 sync

737-879

`mpar:y|n`은 PCI master parity, `spar:y|n`은 SCSI parity, `disc:y|n`은 disconnect를 켜거나 끈다. `specf`는 810A·825A·860·875·895에만 적용하며 y/1은 enable, n/0은 disable, 3은 Memory Write And Invalidate만 제외하고 enable한다. 기본은 `specf:3`이다.

`ultra:n`은 모든 ultra speed enable, `ultra:2`는 Ultra2, `ultra:1`은 Ultra, `ultra:0`은 ultra speed disable이며 적용 chip은 860·875·895·895A·896·1010·1010_66이다.

`tags:0` 또는 1은 tagged queueing을 끄고 1보다 큰 값은 켠다. Per-device 문법 `tags:10/t2t3q16-t5q24/t1u2q32`는 controller 0 target 2·3=16, target 5=24, controller 1 target 1 LUN 2=32, 나머지=10이다.

`sync:255`는 asynchronous다. Factor 10은 Ultra2 40 MT/s, 11은 33 MT/s, 25 미만은 Ultra 20 MT/s, 50 미만은 Fast SCSI-2를 뜻하되 driver는 chip이 지원하는 최소 period를 사용한다. `fsn:y|n`은 모든 device와 강제 sync negotiation, `verb:0|1|2`는 minimal·normal·too much verbosity다.

`debug:#x`는 `DEBUG_ALLOC=0x1`, `PHASE=0x2`, `POLL=0x4`, `QUEUE=0x8`, `RESULT=0x10`, `SCATTER=0x20`, `SCRIPT=0x40`, `TINY=0x80`, `TIMING=0x100`, `NEGO=0x200`, `TAGS=0x400`, `FREEZE=0x800`, `RESTART=0x1000`을 OR한다. `debug:0`은 clear하며 NEGO 외 flag는 syslog를 대량 생성할 수 있다.

Boot option 기본 기능
Keyword의미
mpar / sparPCI master / SCSI parity
discDisconnection
specfChip special feature
ultraUltra speed level
tagsQueue depth와 per-device override
syncPeriod factor
fsnForce sync negotiation
verbVerbosity
debugBitmask debug

첫 번째 option 묶음입니다.

10.2 Available arguments
------------------------

10.2.1  Master parity checking
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^

        ======     ========
        mpar:y     enabled
        mpar:n     disabled
        ======     ========

10.2.2  Scsi parity checking
^^^^^^^^^^^^^^^^^^^^^^^^^^^^

        ======     ========
        spar:y     enabled
        spar:n     disabled
        ======     ========

10.2.3  Scsi disconnections
^^^^^^^^^^^^^^^^^^^^^^^^^^^

        ======     ========
        disc:y     enabled
        disc:n     disabled
        ======     ========

10.2.4  Special features
^^^^^^^^^^^^^^^^^^^^^^^^

   Only apply to 810A, 825A, 860, 875 and 895 controllers.
   Have no effect with other ones.

        =======    =================================================
        specf:y    (or 1) enabled
        specf:n    (or 0) disabled
        specf:3           enabled except Memory Write And Invalidate
        =======    =================================================

   The default driver setup is 'specf:3'. As a consequence, option 'specf:y'
   must be specified in the boot setup command to enable Memory Write And
   Invalidate.

10.2.5  Ultra SCSI support
^^^^^^^^^^^^^^^^^^^^^^^^^^

   Only apply to 860, 875, 895, 895a, 896, 1010 and 1010_66 controllers.
   Have no effect with other ones.

        =======    ========================
        ultra:n    All ultra speeds enabled
        ultra:2    Ultra2 enabled
        ultra:1    Ultra enabled
        ultra:0    Ultra speeds disabled
        =======    ========================

10.2.6  Default number of tagged commands
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^

        ======================= ===============================
        tags:0     (or tags:1 ) tagged command queuing disabled
        tags:#tags (#tags  > 1) tagged command queuing enabled
        ======================= ===============================

  #tags will be truncated to the max queued commands configuration parameter.
  This option also allows to specify a command queue depth for each device
  that support tagged command queueing.

  Example::

      ncr53c8xx=tags:10/t2t3q16-t5q24/t1u2q32

  will set devices queue depth as follow:

      - controller #0 target #2 and target #3                  -> 16 commands,
      - controller #0 target #5                                -> 24 commands,
      - controller #1 target #1 logical unit #2                -> 32 commands,
      - all other logical units (all targets, all controllers) -> 10 commands.

10.2.7  Default synchronous period factor
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^

============ ========================================================
sync:255     disabled (asynchronous transfer mode)
sync:#factor
             ============     =======================================
             #factor = 10     Ultra-2 SCSI 40 Mega-transfers / second
             #factor = 11     Ultra-2 SCSI 33 Mega-transfers / second
             #factor < 25     Ultra   SCSI 20 Mega-transfers / second
             #factor < 50     Fast    SCSI-2
             ============     =======================================
============ ========================================================

  In all cases, the driver will use the minimum transfer period supported by
  controllers according to NCR53C8XX chip type.

10.2.8  Negotiate synchronous with all devices
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
        (force sync nego)

        =====      =========
        fsn:y      enabled
        fsn:n      disabled
        =====      =========

10.2.9  Verbosity level
^^^^^^^^^^^^^^^^^^^^^^^

        ======     =========
        verb:0     minimal
        verb:1     normal
        verb:2     too much
        ======     =========

10.2.10 Debug mode
^^^^^^^^^^^^^^^^^^

========   ==================================================================
debug:0    clear debug flags
debug:#x   set debug flags

            #x is an integer value combining the following power-of-2 values:

            =============  ======
            DEBUG_ALLOC       0x1
            DEBUG_PHASE       0x2
            DEBUG_POLL        0x4
            DEBUG_QUEUE       0x8
            DEBUG_RESULT     0x10
            DEBUG_SCATTER    0x20
            DEBUG_SCRIPT     0x40
            DEBUG_TINY       0x80
            DEBUG_TIMING    0x100
            DEBUG_NEGO      0x200
            DEBUG_TAGS      0x400
            DEBUG_FREEZE    0x800
            DEBUG_RESTART  0x1000
            =============  ======
========   ==================================================================

  You can play safely with DEBUG_NEGO. However, some of these flags may
  generate bunches of syslog messages.

Burst, LED, wide, PCI, NVRAM, bus와 host option

880-1026

`burst:0`은 disable, 255는 initial I/O register 값을 사용하고 `burst:#x`는 최대 `1<<#x` transfer다. 875·825A는 128(`#x=7`), 다른 chip은 16(`#x=4`)까지며 driver가 chip/revision에 맞춰 제한한다. `led:1|0`은 SDMS BIOS board에서만 사용한다.

`wide:1|0`은 wide SCSI를 제어한다. 875 board에 narrow connector만 있고 50-to-68 pin converter로 wide device를 연결했다면 wide negotiation이 전송을 깨뜨릴 수 있어 `wide:0`이 필요하다. `diff:0|1|2|3`은 각각 never, BIOS가 설정했을 때, always, GPIO3가 clear일 때 differential mode다.

`irqm:0`은 open drain, 1은 BIOS initial setting, 2는 totem pole, `0x10`은 IRQ request에서 `IRQF_SHARED`를 쓰지 않는다. 0x10과 0x20 bit는 hardware mode option과 조합할 수 있다. `revprob:n`은 810,815,820,860,875,885,895,896 순서, y는 역순 probe다.

`pcifix` bit 0x1은 PCI cache-line size, 0x2는 write-and-invalidate command bit, 0x4는 burst max에 맞춘 latency timer를 보정한다. `pcifix:7`은 모두 허용한다.

`nvram:n|y`는 serial NVRAM probe를 제어한다. Binary `mvram` bit 0x01은 probe, 0x02는 모든 device sync parameter 무시, 0x04는 wide parameter 무시, 0x08은 scan-at-boot 무시, 0x80은 NVRAM에서 OFF인 controller도 attach한다(enhanced only).

`buschk` 0x0은 검사 없음, 0x1은 error 시 attach 금지, 0x2는 warning만, 0x4는 bus integrity 검사 disable이다. `excl:<io_address>`는 해당 host를 제외한다. `hostid:255`는 제안 없음, `hostid:#x`는 0<x<7의 ID를 제안하지만 NVRAM ID가 우선하며 그마저 없으면 hardware 값, hardware가 0이면 7을 쓴다.

Hardware boot option
Keyword핵심 값
burst0, 255, log2 count
led0/1
wide0/1
diff0-3
irqm0,1,2,0x10
revprobn/y
pcifix0x1|0x2|0x4
nvram/mvramNVRAM bitmask
buschk0x0-0x4
exclI/O address
hostid255 또는 1-6

두 번째 option 묶음입니다.

10.2.11 Burst max
^^^^^^^^^^^^^^^^^

=========  ==================================================================
burst:0    burst disabled
burst:255  get burst length from initial IO register settings.
burst:#x   burst enabled (1<<#x burst transfers max)

           #x is an integer value which is log base 2 of the burst transfers
           max.

           The NCR53C875 and NCR53C825A support up to 128 burst transfers
           (#x = 7).

           Other chips only support up to 16 (#x = 4).

           This is a maximum value. The driver set the burst length according
           to chip and revision ids. By default the driver uses the maximum
           value supported by the chip.
=========  ==================================================================

10.2.12 LED support
^^^^^^^^^^^^^^^^^^^

        =====      ===================
        led:1      enable  LED support
        led:0      disable LED support
        =====      ===================

  Do not enable LED support if your scsi board does not use SDMS BIOS.
  (See 'Configuration parameters')

10.2.13 Max wide
^^^^^^^^^^^^^^^^

        ======     ===================
        wide:1      wide scsi enabled
        wide:0      wide scsi disabled
        ======     ===================

  Some scsi boards use a 875 (ultra wide) and only supply narrow connectors.
  If you have connected a wide device with a 50 pins to 68 pins cable
  converter, any accepted wide negotiation will break further data transfers.
  In such a case, using "wide:0" in the bootup command will be helpful.

10.2.14 Differential mode
^^^^^^^^^^^^^^^^^^^^^^^^^

        ======        =================================
        diff:0        never set up diff mode
        diff:1        set up diff mode if BIOS set it
        diff:2        always set up diff mode
        diff:3        set diff mode if GPIO3 is not set
        ======        =================================

10.2.15 IRQ mode
^^^^^^^^^^^^^^^^

        =========  ========================================================
        irqm:0     always open drain
        irqm:1     same as initial settings (assumed BIOS settings)
        irqm:2     always totem pole
        irqm:0x10  driver will not use IRQF_SHARED flag when requesting irq
        =========  ========================================================

    (Bits 0x10 and 0x20 can be combined with hardware irq mode option)

10.2.16 Reverse probe
^^^^^^^^^^^^^^^^^^^^^

        =========   ========================================================
        revprob:n   probe chip ids from the PCI configuration in this order:
                    810, 815, 820, 860, 875, 885, 895, 896
        revprob:y   probe chip ids in the reverse order.
        =========   ========================================================

10.2.17 Fix up PCI configuration space
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
        pcifix:<option bits>

    Available option bits:

        ===    ===============================================================
        0x0    No attempt to fix PCI configuration space registers values.
        0x1    Set PCI cache-line size register if not set.
        0x2    Set write and invalidate bit in PCI command register.
        0x4    Increase if necessary PCI latency timer according to burst max.
        ===    ===============================================================

    Use 'pcifix:7' in order to allow the driver to fix up all PCI features.

10.2.18 Serial NVRAM
^^^^^^^^^^^^^^^^^^^^

        =======     =========================================
        nvram:n     do not look for serial NVRAM
        nvram:y     test controllers for onboard serial NVRAM
        =======     =========================================

        (alternate binary form)
        mvram=<bits options>

        ====   =================================================================
        0x01   look for NVRAM  (equivalent to nvram=y)
        0x02   ignore NVRAM "Synchronous negotiation" parameters for all devices
        0x04   ignore NVRAM "Wide negotiation"  parameter for all devices
        0x08   ignore NVRAM "Scan at boot time" parameter for all devices
        0x80   also attach controllers set to OFF in the NVRAM (sym53c8xx only)
        ====   =================================================================

10.2.19 Check SCSI BUS
^^^^^^^^^^^^^^^^^^^^^^

        buschk:<option bits>

    Available option bits:

        ====   ================================================
        0x0:   No check.
        0x1:   Check and do not attach the controller on error.
        0x2:   Check and just warn on error.
        0x4:   Disable SCSI bus integrity checking.
        ====   ================================================

10.2.20 Exclude a host from being attached
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^

        excl=<io_address>

    Prevent host at a given io address from being attached.
    For example 'ncr53c8xx=excl:0xb400,excl:0xc000' indicate to the
    ncr53c8xx driver not to attach hosts at address 0xb400 and 0xc000.

10.2.21 Suggest a default SCSI id for hosts
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^

        ==========        ==========================================
        hostid:255        no id suggested.
        hostid:#x        (0 < x < 7) x suggested for hosts SCSI id.
        ==========        ==========================================

    If a host SCSI id is available from the NVRAM, the driver will ignore
    any value suggested as boot option. Otherwise, if a suggested value
    different from 255 has been supplied, it will use it. Otherwise, it will
    try to deduce the value previously set in the hardware and use value
    7 if the hardware value is zero.

Immediate arbitration과 fail-safe preset

1027-1071

`iarb`는 enhanced driver만 지원한다. 0은 disable, bit 0은 initiator가 bus arbitration 중 reselect됐을 때마다 IARB를 enable한다. `#x >> 4`는 initiator가 arbitration에서 이기고 보낼 command가 남았을 때 연속 IARB 설정 최대 횟수다.

`safe:y`는 master parity off, SCSI parity on, disconnect off, special/Ultra/force-sync/reverse-probe/PCI-fixup/tag/sync/debug/LED/wide/IARB off, NVRAM on, verbosity 2, BIOS burst·differential·IRQ mode, settle 10초, bus error 시 attach 금지로 구성된 fail-safe 초기 설정을 불러온다.

safe:y preset
항목Option
Master/SCSI parityoff / onmpar:n / spar:y
Disconnect/tags/syncoffdisc:n / tags:0 / sync:255
Special/Ultra/wideoffspecf:n / ultra:n / wide:0
NVRAMonnvram:y
Verbosity2verb:2
Burst/diff/IRQBIOSburst:255 / diff:1 / irqm:1
Settle/bus check10s / rejectsettle:10 / buschk:1
IARBoffiarb:0

Fail-safe 값의 핵심을 보존합니다.

10.2.22 Enable use of IMMEDIATE ARBITRATION
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^

        (only supported by the sym53c8xx driver. See 10.7 for more details)

=======   =================================================================
iarb:0    do not use this feature.
iarb:#x   use this feature according to bit fields as follow:

          ========= =======================================================
          bit 0 (1) enable IARB each time the initiator has been reselected
                    when it arbitrated for the SCSI BUS.
          (#x >> 4) maximum number of successive settings of IARB if the
                    initiator win arbitration and it has other commands
                    to send to a device.
          ========= =======================================================
=======   =================================================================

Boot fail safe
    safe:y        load the following assumed fail safe initial setup

  ========================        ======================        ==========
  master parity                        disabled                mpar:n
  scsi parity                        enabled                        spar:y
  disconnections                not allowed                disc:n
  special features                disabled                specf:n
  ultra scsi                        disabled                ultra:n
  force sync negotiation        disabled                fsn:n
  reverse probe                        disabled                revprob:n
  PCI fix up                    disabled                pcifix:0
  serial NVRAM                  enabled                 nvram:y
  verbosity level                2                        verb:2
  tagged command queuing        disabled                tags:0
  synchronous negotiation        disabled                sync:255
  debug flags                        none                        debug:0
  burst length                        from BIOS settings        burst:255
  LED support                        disabled                led:0
  wide support                        disabled                wide:0
  settle time                        10 seconds                settle:10
  differential support                from BIOS settings        diff:1
  irq mode                        from BIOS settings        irqm:1
  SCSI BUS check                do not attach on error        buschk:1
  immediate arbitration                disabled                iarb:0
  ========================        ======================        ==========

권장 setup과 PCI configuration fix-up

1072-1132

Default compile option과 동등한 full boot string, installation disk용 `safe:y` 조합, 저자의 tags 32·sync 12·LED enabled 설정이 예시로 제공된다. `verb:2`를 주면 driver가 실제 적용한 static setup을 출력해 확인할 수 있다.

`pcifix:1`은 unset cache-line size를 설정하고 `pcifix:2`는 PCI command의 write-and-invalidate bit를 설정하며 `pcifix:3`은 둘 다 허용한다. 810A·825A·860·875·895와 Pentium/486에만 적용된다.

PCI read multiple과 write/invalidate는 cache-line register와 command bit가 맞아야 한다. 모든 PCI BIOS가 이를 설정하지 않으며 일부 PCI/memory controller나 board에서는 최적화 access가 오히려 문제를 만들 수 있으므로 위험을 이해하고 사용한다.

10.3 Advised boot setup commands
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^

If the driver has been configured with default options, the equivalent
boot setup is::

   ncr53c8xx=mpar:y,spar:y,disc:y,specf:3,fsn:n,ultra:2,fsn:n,revprob:n,verb:1\
             tags:0,sync:50,debug:0,burst:7,led:0,wide:1,settle:2,diff:0,irqm:0

For an installation diskette or a safe but not fast system,
boot setup can be::

    ncr53c8xx=safe:y,mpar:y,disc:y
    ncr53c8xx=safe:y,disc:y
    ncr53c8xx=safe:y,mpar:y
    ncr53c8xx=safe:y

My personal system works flawlessly with the following equivalent setup::

   ncr53c8xx=mpar:y,spar:y,disc:y,specf:1,fsn:n,ultra:2,fsn:n,revprob:n,verb:1\
             tags:32,sync:12,debug:0,burst:7,led:1,wide:1,settle:2,diff:0,irqm:0

The driver prints its actual setup when verbosity level is 2. You can try
"ncr53c8xx=verb:2" to get the "static" setup of the driver, or add "verb:2"
to your boot setup command in order to check the actual setup the driver is
using.

10.4 PCI configuration fix-up boot option
-----------------------------------------

pcifix:<option bits>

Available option bits:

    ===      =====================================================
    0x1      Set PCI cache-line size register if not set.
    0x2      Set write and invalidate bit in PCI command register.
    ===      =====================================================

Use 'pcifix:3' in order to allow the driver to fix both PCI features.

These options only apply to new SYMBIOS chips 810A, 825A, 860, 875
and 895 and are only supported for Pentium and 486 class processors.
Recent SYMBIOS 53C8XX scsi processors are able to use PCI read multiple
and PCI write and invalidate commands. These features require the
cache line size register to be properly set in the PCI configuration
space of the chips. On the other hand, chips will use PCI write and
invalidate commands only if the corresponding bit is set to 1 in the
PCI command register.

Not all PCI bioses set the PCI cache line register and the PCI write and
invalidate bit in the PCI configuration space of 53C8XX chips.
Optimized PCI accesses may be broken for some PCI/memory controllers or
make problems with some PCI boards.

This fix-up worked flawlessly on my previous system.
(MB Triton HX / 53C875 / 53C810A)
I use these options at my own risks as you will do if you decide to
use them too.

NVRAM 적용, bus 검사와 IARB 주의

1133-1267

`nvram:y`는 onboard serial NVRAM을 찾아 user setup을 읽는다. Tekram과 Symbios 모두 host ID, parity, sync speed, wide/narrow, tagged queueing, disconnect를 제공한다. Symbios만 boot order, verbose boot message, scan-at-boot도 제공한다.

Scan-at-boot가 꺼진 device는 boot를 빠르게 하기 위해 첫 TEST UNIT READY를 driver가 강제로 실패시킨다. `mvram` bit로 sync·wide·scan 값을 무시할 수 있다. Enhanced driver는 기본적으로 NVRAM에서 OFF인 controller를 attach하지 않으며 0x80으로 포함한다. Generic driver는 항상 attach하므로 제외하려면 `excl`을 쓴다.

`buschk`가 0이 아니면 SCSI RESET assert 100us 뒤 RESET 외 모든 line이 FALSE인지 검사한다. Device는 800ns 안에 bus를 release해야 하므로 TRUE line은 문제 신호다. 단일 terminator, 잘못 놓인 terminator, 품질 불량 terminator는 검출하지 못하지만 bad cable·broken/non-conformant device는 드러날 수 있다.

IARB는 expected disconnect 직후 arbitration을 시작해 ID 7 initiator가 다음 bus를 이기고 최소 4us를 SCRIPTS와 겹칠 수 있다. 그러나 다른 device의 reselect를 막고 bandwidth를 낭비하는 매우 불공정한 기능이다. `SCSI_NCR_IARB_SUPPORT` compile option과 nonzero `iarb`가 모두 필요하며 실작업보다 stress test에 적합하다. Heavy I/O에서 unexpected disconnect나 bad reselect가 나도 이상하지 않다.

NVRAM format 지원
ParameterTekramSymbios
Boot orderNY
Host SCSI IDYY
SCSI parityYY
Verbose bootNY
Sync speedYY
Wide/NarrowYY
Tagged queueYY
DisconnectYY
Scan at bootNY

두 format에서 읽을 수 있는 항목입니다.

10.5 Serial NVRAM support boot option
-------------------------------------

=======     =========================================
nvram:n     do not look for serial NVRAM
nvram:y     test controllers for onboard serial NVRAM
=======     =========================================

This option can also been entered as an hexadecimal value that allows
to control what information the driver will get from the NVRAM and what
information it will ignore.
For details see '17. Serial NVRAM support'.

When this option is enabled, the driver tries to detect all boards using
a Serial NVRAM. This memory is used to hold user set up parameters.

The parameters the driver is able to get from the NVRAM depend on the
data format used, as follow:

+-------------------------------+------------------+--------------+
|                               |Tekram format     |Symbios format|
+-------------------------------+------------------+--------------+
|General and host parameters    |                  |              |
+-------------------------------+------------------+--------------+
|  * Boot order                 |        N         |       Y      |
+-------------------------------+------------------+--------------+
|  * Host SCSI ID               |        Y         |       Y      |
+-------------------------------+------------------+--------------+
|  * SCSI parity checking       |        Y         |       Y      |
+-------------------------------+------------------+--------------+
|  * Verbose boot messages      |        N         |       Y      |
+-------------------------------+------------------+--------------+
|SCSI devices parameters                                          |
+-------------------------------+------------------+--------------+
|  * Synchronous transfer speed |        Y         |       Y      |
+-------------------------------+------------------+--------------+
|  * Wide 16 / Narrow           |        Y         |       Y      |
+-------------------------------+------------------+--------------+
|  * Tagged Command Queuing     |        Y         |       Y      |
|    enabled                    |                  |              |
+-------------------------------+------------------+--------------+
|  * Disconnections enabled     |        Y         |       Y      |
+-------------------------------+------------------+--------------+
|  * Scan at boot time          |        N         |       Y      |
+-------------------------------+------------------+--------------+

In order to speed up the system boot, for each device configured without
the "scan at boot time" option, the driver forces an error on the
first TEST UNIT READY command received for this device.

Some SDMS BIOS revisions seem to be unable to boot cleanly with very fast
hard disks. In such a situation you cannot configure the NVRAM with
optimized parameters value.

The 'nvram' boot option can be entered in hexadecimal form in order
to ignore some options configured in the NVRAM, as follow:

mvram=<bits options>

      ====   =================================================================
      0x01   look for NVRAM  (equivalent to nvram=y)
      0x02   ignore NVRAM "Synchronous negotiation" parameters for all devices
      0x04   ignore NVRAM "Wide negotiation"  parameter for all devices
      0x08   ignore NVRAM "Scan at boot time" parameter for all devices
      0x80   also attach controllers set to OFF in the NVRAM (sym53c8xx only)
      ====   =================================================================

Option 0x80 is only supported by the sym53c8xx driver and is disabled by
default. Result is that, by default (option not set), the sym53c8xx driver
will not attach controllers set to OFF in the NVRAM.

The ncr53c8xx always tries to attach all the controllers. Option 0x80 has
not been added to the ncr53c8xx driver, since it has been reported to
confuse users who use this driver since a long time. If you desire a
controller not to be attached by the ncr53c8xx driver at Linux boot, you
must use the 'excl' driver boot option.

10.6 SCSI BUS checking boot option.
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^

When this option is set to a non-zero value, the driver checks SCSI lines
logic state, 100 micro-seconds after having asserted the SCSI RESET line.
The driver just reads SCSI lines and checks all lines read FALSE except RESET.
Since SCSI devices shall release the BUS at most 800 nano-seconds after SCSI
RESET has been asserted, any signal to TRUE may indicate a SCSI BUS problem.
Unfortunately, the following common SCSI BUS problems are not detected:

- Only 1 terminator installed.
- Misplaced terminators.
- Bad quality terminators.

On the other hand, either bad cabling, broken devices, not conformant
devices, ... may cause a SCSI signal to be wrong when the driver reads it.

10.7 IMMEDIATE ARBITRATION boot option
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^

This option is only supported by the SYM53C8XX driver (not by the NCR53C8XX).

SYMBIOS 53C8XX chips are able to arbitrate for the SCSI BUS as soon as they
have detected an expected disconnection (BUS FREE PHASE). For this process
to be started, bit 1 of SCNTL1 IO register must be set when the chip is
connected to the SCSI BUS.

When this feature has been enabled for the current connection, the chip has
every chance to win arbitration if only devices with lower priority are
competing for the SCSI BUS. By the way, when the chip is using SCSI id 7,
then it will for sure win the next SCSI BUS arbitration.

Since, there is no way to know what devices are trying to arbitrate for the
BUS, using this feature can be extremely unfair. So, you are not advised
to enable it, or at most enable this feature for the case the chip lost
the previous arbitration (boot option 'iarb:1').

This feature has the following advantages:

a) Allow the initiator with ID 7 to win arbitration when it wants so.
b) Overlap at least 4 micro-seconds of arbitration time with the execution
   of SCRIPTS that deal with the end of the current connection and that
   starts the next job.

Hmmm... But (a) may just prevent other devices from reselecting the initiator,
and delay data transfers or status/completions, and (b) may just waste
SCSI BUS bandwidth if the SCRIPTS execution lasts more than 4 micro-seconds.

The use of IARB needs the SCSI_NCR_IARB_SUPPORT option to have been defined
at compile time and the 'iarb' boot option to have been set to a non zero
value at boot time. It is not that useful for real work, but can be used
to stress SCSI devices or for some applications that can gain advantage of
it. By the way, if you experience badnesses like 'unexpected disconnections',
'bad reselections', etc... when using IARB on heavy IO load, you should not
be surprised, because force-feeding anything and blocking its arse at the
same time cannot work for a long time. :-))

ncr53c8xx.h constant와 flag

1268-1362

일부 define은 configuration에서 오지만 나머지는 `ncr53c8xx.h`를 직접 수정해야 하므로 동작을 이해할 때만 바꿔야 한다. `SCSI_NCR_SETUP_SPECIAL_FEATURES`는 chip/revision별 PCI·memory 최적화 기능을 켜고 `specf:n`으로 끌 수 있다. `SCSI_NCR_IOMAPPED`는 normal I/O, `SCSI_NCR_SHARE_IRQ`는 shared IRQ를 강제한다.

`SCSI_NCR_MAX_TAGS=8`, `SETUP_DEFAULT_TAGS=8`, `SETUP_DEFAULT_SYNC=50`은 각각 최대/default tag와 sync period다. Runtime `settags`, `setsync`로 바꿀 수 있다. `ALWAYS_SIMPLE_TAG`는 read/write SIMPLE TAG를 쓰며 `setorder`로 바꾼다. `SETUP_DISCONNECTION`, `FORCE_SYNC_NEGO`, `MASTER_PARITY`, `SCSI_PARITY`, `PROFILE_SUPPORT`가 각 기능을 제어한다.

Resource limit은 `MAX_SCATTER=128`, `MAX_TARGET=16`, `MAX_HOST=2`, `SETTLE_TIME=2`, `TIMEOUT_ALERT=3`, `CAN_QUEUE=7*SCSI_NCR_MAX_TAGS`, `CMD_PER_LUN=SCSI_NCR_MAX_TAGS`, `SG_TABLESIZE=MAX_SCATTER-1`, `MAX_LUN=8`이다. Timeout alert는 unordered tag timeout을 피하려 다음 command에 ordered tag를 사용한다.

주요 compile constant
Constant기본값역할
SCSI_NCR_MAX_TAGS8Device당 tag
SCSI_NCR_MAX_SCATTER128CCB scatter size
SCSI_NCR_MAX_TARGET16Host당 target
SCSI_NCR_MAX_HOST2Host controller
SCSI_NCR_SETTLE_TIME2Reset 후 초
SCSI_NCR_TIMEOUT_ALERT3Ordered tag 전환
SCSI_NCR_CAN_QUEUE7*MAX_TAGSHost queue
SCSI_NCR_MAX_LUN8Target당 LUN

기본값과 역할입니다.

11. Some constants and flags of the ncr53c8xx.h header file
===========================================================

Some of these are defined from the configuration parameters.  To
change other "defines", you must edit the header file.  Do that only
if you know what you are doing.

SCSI_NCR_SETUP_SPECIAL_FEATURES        (default: defined)
        If defined, the driver will enable some special features according
        to chip and revision id.

        For 810A, 860, 825A, 875 and 895 scsi chips, this option enables
        support of features that reduce load of PCI bus and memory accesses
        during  scsi transfer processing: burst op-code fetch, read multiple,
        read line, prefetch, cache line, write and invalidate,
        burst 128 (875 only), large dma fifo (875 only), offset 16 (875 only).
        Can be changed by the following boot setup command::

                ncr53c8xx=specf:n

SCSI_NCR_IOMAPPED                (default: not defined)
        If defined, normal I/O is forced.

SCSI_NCR_SHARE_IRQ                (default: defined)
        If defined, request shared IRQ.

SCSI_NCR_MAX_TAGS                (default: 8)
        Maximum number of simultaneous tagged commands to a device.

        Can be changed by "settags <target> <maxtags>"

SCSI_NCR_SETUP_DEFAULT_SYNC     (default: 50)
        Transfer period factor the driver will use at boot time for synchronous
        negotiation. 0 means asynchronous.

        Can be changed by "setsync <target> <period factor>"

SCSI_NCR_SETUP_DEFAULT_TAGS     (default: 8)
        Default number of simultaneous tagged commands to a device.

        < 1 means tagged command queuing disabled at start-up.

SCSI_NCR_ALWAYS_SIMPLE_TAG        (default: defined)
        Use SIMPLE TAG for read and write commands.

        Can be changed by "setorder <ordered|simple|default>"

SCSI_NCR_SETUP_DISCONNECTION        (default: defined)
        If defined, targets are allowed to disconnect.

SCSI_NCR_SETUP_FORCE_SYNC_NEGO        (default: not defined)
        If defined, synchronous negotiation is tried for all SCSI-2 devices.

        Can be changed by "setsync <target> <period>"

SCSI_NCR_SETUP_MASTER_PARITY        (default: defined)
        If defined, master parity checking is enabled.

SCSI_NCR_SETUP_SCSI_PARITY        (default: defined)
        If defined, SCSI parity checking is enabled.

SCSI_NCR_PROFILE_SUPPORT        (default: not defined)
        If defined, profiling information is gathered.

SCSI_NCR_MAX_SCATTER                (default: 128)
        Scatter list size of the driver ccb.

SCSI_NCR_MAX_TARGET                (default: 16)
        Max number of targets per host.

SCSI_NCR_MAX_HOST                (default: 2)
        Max number of host controllers.

SCSI_NCR_SETTLE_TIME                (default: 2)
        Number of seconds the driver will wait after reset.

SCSI_NCR_TIMEOUT_ALERT                (default: 3)
        If a pending command will time out after this amount of seconds,
        an ordered tag is used for the next command.

        Avoids timeouts for unordered tagged commands.

SCSI_NCR_CAN_QUEUE                (default: 7*SCSI_NCR_MAX_TAGS)
        Max number of commands that can be queued to a host.

SCSI_NCR_CMD_PER_LUN                (default: SCSI_NCR_MAX_TAGS)
        Max number of commands queued to a host for a device.

SCSI_NCR_SG_TABLESIZE                (default: SCSI_NCR_MAX_SCATTER-1)
        Max size of the Linux scatter/gather list.

SCSI_NCR_MAX_LUN        (default: 8)
        Max number of LUNs per target.

설치 파일과 architecture 항목

1363-1390

Driver는 Linux kernel distribution에 포함되며 source tree의 `drivers/scsi`에 있다. 당시 파일은 `README.ncr53c8xx`, `ChangeLog.ncr53c8xx`, definition의 `ncr53c8xx.h`, driver code의 `ncr53c8xx.c`다. Kernel 통합 전 시험을 위한 별도 새 version과 patch 위치도 원문에 있다.

Architecture-dependent feature 절은 아직 작성되지 않았다.

12. Installation
================

This driver is part of the linux kernel distribution.
Driver files are located in the sub-directory "drivers/scsi" of the
kernel source tree.

Driver files::

        README.ncr53c8xx        : this file
        ChangeLog.ncr53c8xx        : change log
        ncr53c8xx.h                : definitions
        ncr53c8xx.c                : the driver code

New driver versions are made available separately in order to allow testing
changes and new features prior to including them into the linux kernel
distribution. The following URL provides information on latest available
patches:

      ftp://ftp.tux.org/pub/people/gerard-roudier/README


13. Architecture dependent features
===================================

<Not yet written>

Jaz, device name, terminator와 53C875 erratum

1391-1471

Iomega Jaz는 tagged queueing을 지원하지만 spin-up 동안 tag command를 거부하며 이는 SCSI-2 6.8.2에 부합한다. Driver 처리가 충분하지 않으므로 spin-down 가능한 device에는 tag queueing을 켜지 않는 것이 좋다. Timeout은 `linux/drivers/scsi/sd.c` 값을 늘리는 수밖에 없다고 설명한다.

Controller 추가로 registration 순서와 device name이 바뀔 수 있다. NVRAM과 SDMS BIOS 4가 있으면 BIOS scan order를 따르고, 없으면 `ncr53c8xx=revprob:y`, `fstab` 수정, Eric Youngdale의 `scsidev`를 사용할 수 있다.

16-bit WIDE controller에 8-bit NARROW device만 연결하면 bus wide 부분 line이 pull-up되도록 controller card의 WIDE TERMINATOR를 enable해야 한다. TYAN 1365 revision 1.2의 page 10 figure 3.3 설명은 잘못됐다.

SYM53C875 revision <=3은 cache line size가 8 DWORD 이상일 때 정렬되지 않은 4-DWORD boundary에서 PCI Write and Invalidate를 시작해 마지막 cache line 일부를 채우지 않고 끝내 data corruption을 일으킬 수 있다. Pentium은 8 DWORD라 영향받지만 i486은 4 DWORD라 해당하지 않는다.

Write And Invalidate를 끄는 것이 기본 해결책이다. 선택적 workaround는 DATA IN 진입 때 addressing logic을 reset한다. 8-DWORD 정렬된 CCB header와 정렬된 scatter/gather system buffer는 안전하므로 Linux에서는 scatter/gather 없이 phase mismatch 후 DATA IN에 재진입할 때만 추가 workaround가 필요할 수 있다.

14. Known problems
==================

14.1 Tagged commands with Iomega Jaz device
-------------------------------------------

I have not tried this device, however it has been reported to me the
following: This device is capable of Tagged command queuing. However
while spinning up, it rejects Tagged commands. This behaviour is
conforms to 6.8.2 of SCSI-2 specifications. The current behaviour of
the driver in that situation is not satisfying. So do not enable
Tagged command queuing for devices that are able to spin down.  The
other problem that may appear is timeouts. The only way to avoid
timeouts seems to edit linux/drivers/scsi/sd.c and to increase the
current timeout values.

14.2 Device names change when another controller is added
---------------------------------------------------------

When you add a new NCR53C8XX chip based controller to a system that already
has one or more controllers of this family, it may happen that the order
the driver registers them to the kernel causes problems due to device
name changes.
When at least one controller uses NvRAM, SDMS BIOS version 4 allows you to
define the order the BIOS will scan the scsi boards. The driver attaches
controllers according to BIOS information if NvRAM detect option is set.

If your controllers do not have NvRAM, you can:

- Ask the driver to probe chip ids in reverse order from the boot command
  line: ncr53c8xx=revprob:y
- Make appropriate changes in the fstab.
- Use the 'scsidev' tool from Eric Youngdale.

14.3 Using only 8 bit devices with a WIDE SCSI controller
---------------------------------------------------------

When only 8 bit NARROW devices are connected to a 16 bit WIDE SCSI controller,
you must ensure that lines of the wide part of the SCSI BUS are pulled-up.
This can be achieved by ENABLING the WIDE TERMINATOR portion of the SCSI
controller card.

The TYAN 1365 documentation revision 1.2 is not correct about such settings.
(page 10, figure 3.3).

14.4 Possible data corruption during a Memory Write and Invalidate
------------------------------------------------------------------

This problem is described in SYMBIOS DEL 397, Part Number 69-039241, ITEM 4.

In some complex situations, 53C875 chips revision <= 3 may start a PCI
Write and Invalidate Command at a not cache-line-aligned 4 DWORDS boundary.
This is only possible when Cache Line Size is 8 DWORDS or greater.
Pentium systems use a 8 DWORDS cache line size and so are concerned by
this chip bug, unlike i486 systems that use a 4 DWORDS cache line size.

When this situation occurs, the chip may complete the Write and Invalidate
command after having only filled part of the last cache line involved in
the transfer, leaving to data corruption the remainder of this cache line.

Not using Write And Invalidate obviously gets rid of this chip bug, and so
it is now the default setting of the driver.
However, for people like me who want to enable this feature, I have added
part of a work-around suggested by SYMBIOS. This work-around resets the
addressing logic when the DATA IN phase is entered and so prevents the bug
from being triggered for the first SCSI MOVE of the phase. This work-around
should be enough according to the following:

The only driver internal data structure that is greater than 8 DWORDS  and
that is moved by the SCRIPTS processor is the 'CCB header' that contains
the context of the SCSI transfer. This data structure is aligned on 8 DWORDS
boundary (Pentium Cache Line Size), and so is immune to this chip bug, at
least on Pentium systems.

But the conditions of this bug can be met when a SCSI read command is
performed using a buffer that is 4 DWORDS but not cache-line aligned.
This cannot happen under Linux when scatter/gather lists are used since
they only refer to system buffers that are well aligned. So, a work around
may only be needed under Linux when a scatter/gather list is not used and
when the SCSI DATA IN phase is reentered after a phase mismatch.

문제 격리와 hardware error report 해석

1472-1617

대부분의 SCSI 문제는 비표준 bus나 buggy device에서 온다. Cable, chain 양끝 termination, syslog를 먼저 확인한다. 원인을 못 찾으면 asynchronous 전송, tags off, disconnect off의 safe configuration으로 시작하고 feature를 하나씩 켠다.

예제 `setsync all 25`는 모든 target fast sync negotiation, `setflag 3`은 target 3의 `no_disc`를 해제, `settags 3 8`은 지원 device의 target 3에 tag depth 8을 켠다. 문제 device와 feature를 찾으면 그 조합만 disable한다.

Error report의 field A는 target SCSI ID다. B의 DSTAT에서 MDPE 0x40은 PCI master data parity, BF 0x20은 bus fault, IID 0x01은 illegal instruction, DFE 0x80은 error가 아닌 DMA FIFO empty status다. MDPE와 BF 조합은 PCI bus 문제 가능성이 높다.

Field C의 SIST에서 SGE 0x08은 protocol을 막는 gross error, UDC 0x04는 unexpected disconnect, RST 0x02는 bus reset, PAR 0x01은 SCSI parity다. Faulty SCSI bus에서 SGE·UDC·PAR가 나타날 수 있으며 특히 SGE는 bus 문제를 강하게 시사한다.

D는 SOCL output control latch, E는 실제 SBCL control line, F는 SBDL data line, G는 SXFER sync period/offset(0이면 async), H는 SCNTL3 async/sync timing이다. I·J·K와 dump는 SCSI standard, chip core와 driver 내부 구조 지식이 필요하며 maintainer가 아니라면 해석할 의무가 없다.

Hardware report field
FieldRegister의미
ATargetSCSI ID
BDSTATPCI/DMA status
CSISTSCSI interrupt status
DSOCL출력 control latch
ESBCL실제 control line
FSBDL실제 data line
GSXFERSync period/offset
HSCNTL3Transfer timing

Error line의 주요 field입니다.

15. SCSI problem troubleshooting
================================

15.1 Problem tracking
---------------------

Most SCSI problems are due to a non conformant SCSI bus or to buggy
devices.  If unfortunately you have SCSI problems, you can check the
following things:

- SCSI bus cables
- terminations at both end of the SCSI chain
- linux syslog messages (some of them may help you)

If you do not find the source of problems, you can configure the
driver with no features enabled.

- only asynchronous data transfers
- tagged commands disabled
- disconnections not allowed

Now, if your SCSI bus is ok, your system have every chance to work
with this safe configuration but performances will not be optimal.

If it still fails, then you can send your problem description to
appropriate mailing lists or news-groups.  Send me a copy in order to
be sure I will receive it.  Obviously, a bug in the driver code is
possible.

     My email address: Gerard Roudier <[email protected]>

Allowing disconnections is important if you use several devices on
your SCSI bus but often causes problems with buggy devices.
Synchronous data transfers increases throughput of fast devices like
hard disks.  Good SCSI hard disks with a large cache gain advantage of
tagged commands queuing.

Try to enable one feature at a time with control commands.  For example:

::

    echo "setsync all 25" >/proc/scsi/ncr53c8xx/0

Will enable fast synchronous data transfer negotiation for all targets.

::

    echo "setflag 3" >/proc/scsi/ncr53c8xx/0

Will reset flags (no_disc) for target 3, and so will allow it to disconnect
the SCSI Bus.

::

    echo "settags 3 8" >/proc/scsi/ncr53c8xx/0

Will enable tagged command queuing for target 3 if that device supports it.

Once you have found the device and the feature that cause problems, just
disable that feature for that device.

15.2 Understanding hardware error reports
-----------------------------------------

When the driver detects an unexpected error condition, it may display a
message of the following pattern::

    sym53c876-0:1: ERROR (0:48) (1-21-65) (f/95) @ (script 7c0:19000000).
    sym53c876-0: script cmd = 19000000
    sym53c876-0: regdump: da 10 80 95 47 0f 01 07 75 01 81 21 80 01 09 00.

Some fields in such a message may help you understand the cause of the
problem, as follows::

    sym53c876-0:1: ERROR (0:48) (1-21-65) (f/95) @ (script 7c0:19000000).
    ............A.........B.C....D.E..F....G.H.......I.....J...K.......

Field A : target number.
  SCSI ID of the device the controller was talking with at the moment the
  error occurs.

Field B : DSTAT io register (DMA STATUS)
  ========   =============================================================
  Bit 0x40   MDPE Master Data Parity Error
             Data parity error detected on the PCI BUS.
  Bit 0x20   BF   Bus Fault
             PCI bus fault condition detected
  Bit 0x01   IID  Illegal Instruction Detected
             Set by the chip when it detects an Illegal Instruction format
             on some condition that makes an instruction illegal.
  Bit 0x80   DFE Dma Fifo Empty
             Pure status bit that does not indicate an error.
  ========   =============================================================

  If the reported DSTAT value contains a combination of MDPE (0x40),
  BF (0x20), then the cause may be likely due to a PCI BUS problem.

Field C : SIST io register (SCSI Interrupt Status)
  ========   ==================================================================
  Bit 0x08   SGE  SCSI GROSS ERROR
             Indicates that the chip detected a severe error condition
             on the SCSI BUS that prevents the SCSI protocol from functioning
             properly.
  Bit 0x04   UDC  Unexpected Disconnection
             Indicates that the device released the SCSI BUS when the chip
             was not expecting this to happen. A device may behave so to
             indicate the SCSI initiator that an error condition not reportable
             using the SCSI protocol has occurred.
  Bit 0x02   RST  SCSI BUS Reset
             Generally SCSI targets do not reset the SCSI BUS, although any
             device on the BUS can reset it at any time.
  Bit 0x01   PAR  Parity
             SCSI parity error detected.
  ========   ==================================================================

  On a faulty SCSI BUS, any error condition among SGE (0x08), UDC (0x04) and
  PAR (0x01) may be detected by the chip. If your SCSI system sometimes
  encounters such error conditions, especially SCSI GROSS ERROR, then a SCSI
  BUS problem is likely the cause of these errors.

For fields D,E,F,G and H, you may look into the sym53c8xx_defs.h file
that contains some minimal comments on IO register bits.

Field D : SOCL  Scsi Output Control Latch
          This register reflects the state of the SCSI control lines the
          chip want to drive or compare against.

Field E : SBCL  Scsi Bus Control Lines
          Actual value of control lines on the SCSI BUS.

Field F : SBDL  Scsi Bus Data Lines
          Actual value of data lines on the SCSI BUS.

Field G : SXFER  SCSI Transfer
          Contains the setting of the Synchronous Period for output and
          the current Synchronous offset (offset 0 means asynchronous).

Field H : SCNTL3 Scsi Control Register 3
          Contains the setting of timing values for both asynchronous and
          synchronous data transfers.

Understanding Fields I, J, K and dumps requires to have good knowledge of
SCSI standards, chip cores functionnals and internal driver data structures.
You are not required to decode and understand them, unless you want to help
maintain the driver code.

Synchronous negotiation timing 표

1618-1779

표는 driver의 sync negotiation timing 계산과 chip setting routine을 호출해 만들었다. 첫 표는 80MHz clock과 divisor 5개를 쓰는 53C895·53C875·53C860, 둘째 표는 40MHz clock과 divisor 4개를 쓰는 모든 NCR53C8XX Fast SCSI-2 mode에 해당한다.

Period 단위는 nanosecond, speed는 Mega-transfer/s다. 1 MT/s는 8-bit SCSI에서 1MB/s, Wide16에서 2MB/s다.

Ultra timing
Factor협상 period협상 MT/sNCR periodNCR MT/s비고
102540.0002540.00053C895 only
1130.233.11231.2532.00053C895 only
125020.0005020.000
135219.2306216.000
145617.8576216.000
156016.6666216.000
166415.6257513.333
176814.7057513.333
187213.8887513.333
197613.1578711.428
208012.5008711.428
218411.9048711.428
228811.3639310.666
239210.8699310.666
249610.41610010.000
2510010.00010010.000
261049.6151128.888
271089.2591128.888
281128.9281128.888
291168.6201258.000
301208.3331258.000
311248.0641258.000
321287.8121317.619
331327.5751506.666
341367.3521506.666
351407.1421506.666
361446.9441506.666
371486.7561506.666
381526.5781755.714
391566.4101755.714
401606.2501755.714
411646.0971755.714
421685.9521755.714
431725.8131755.714
441765.6811875.333
451805.5551875.333
461845.4341875.333
471885.3192005.000
481925.2082005.000
491965.1022005.000

53C895·53C875·53C860의 negotiated 값과 실제 NCR setting 전체입니다.

Fast SCSI-2 timing
Factor협상 period협상 MT/sNCR periodNCR MT/s
2510010.00010010.000
261049.6151258.000
271089.2591258.000
281128.9281258.000
291168.6201258.000
301208.3331258.000
311248.0641258.000
321287.8121317.619
331327.5751506.666
341367.3521506.666
351407.1421506.666
361446.9441506.666
371486.7561506.666
381526.5781755.714
391566.4101755.714
401606.2501755.714
411646.0971755.714
421685.9521755.714
431725.8131755.714
441765.6811875.333
451805.5551875.333
461845.4341875.333
471885.3192005.000
481925.2082005.000
491965.1022005.000

40MHz clock의 전체 factor 25-49입니다.

16. Synchronous transfer negotiation tables
===========================================

Tables below have been created by calling the routine the driver uses
for synchronisation negotiation timing calculation and chip setting.
The first table corresponds to Ultra chips 53875 and 53C860 with 80 MHz
clock and 5 clock divisors.
The second one has been calculated by setting the scsi clock to 40 Mhz
and using 4 clock divisors and so applies to all NCR53C8XX chips in fast
SCSI-2 mode.

Periods are in nano-seconds and speeds are in Mega-transfers per second.
1 Mega-transfers/second means 1 MB/s with 8 bits SCSI and 2 MB/s with
Wide16 SCSI.

16.1 Synchronous timings for 53C895, 53C875 and 53C860 SCSI controllers

+-----------------------------+--------+-------+--------------+
|Negotiated                   |NCR settings    |              |
+-------+--------+------------+--------+-------+              |
|Factor |Period  |Speed       |Period  |Speed  |              |
+-------+--------+------------+--------+-------+--------------+
|10     | 25     |40.000      | 25     |40.000 | (53C895 only)|
+-------+--------+------------+--------+-------+--------------+
|11     | 30.2   |33.112      | 31.25  |32.000 | (53C895 only)|
+-------+--------+------------+--------+-------+--------------+
|12     | 50     |20.000      | 50     |20.000 |              |
+-------+--------+------------+--------+-------+--------------+
|13     | 52     |19.230      | 62     |16.000 |              |
+-------+--------+------------+--------+-------+--------------+
|14     | 56     |17.857      | 62     |16.000 |              |
+-------+--------+------------+--------+-------+--------------+
|15     | 60     |16.666      | 62     |16.000 |              |
+-------+--------+------------+--------+-------+--------------+
|16     | 64     |15.625      | 75     |13.333 |              |
+-------+--------+------------+--------+-------+--------------+
|17     | 68     |14.705      | 75     |13.333 |              |
+-------+--------+------------+--------+-------+--------------+
|18     | 72     |13.888      | 75     |13.333 |              |
+-------+--------+------------+--------+-------+--------------+
|19     | 76     |13.157      | 87     |11.428 |              |
+-------+--------+------------+--------+-------+--------------+
|20     | 80     |12.500      | 87     |11.428 |              |
+-------+--------+------------+--------+-------+--------------+
|21     | 84     |11.904      | 87     |11.428 |              |
+-------+--------+------------+--------+-------+--------------+
|22     | 88     |11.363      | 93     |10.666 |              |
+-------+--------+------------+--------+-------+--------------+
|23     | 92     |10.869      | 93     |10.666 |              |
+-------+--------+------------+--------+-------+--------------+
|24     | 96     |10.416      |100     |10.000 |              |
+-------+--------+------------+--------+-------+--------------+
|25     |100     |10.000      |100     |10.000 |              |
+-------+--------+------------+--------+-------+--------------+
|26     |104     | 9.615      |112     | 8.888 |              |
+-------+--------+------------+--------+-------+--------------+
|27     |108     | 9.259      |112     | 8.888 |              |
+-------+--------+------------+--------+-------+--------------+
|28     |112     | 8.928      |112     | 8.888 |              |
+-------+--------+------------+--------+-------+--------------+
|29     |116     | 8.620      |125     | 8.000 |              |
+-------+--------+------------+--------+-------+--------------+
|30     |120     | 8.333      |125     | 8.000 |              |
+-------+--------+------------+--------+-------+--------------+
|31     |124     | 8.064      |125     | 8.000 |              |
+-------+--------+------------+--------+-------+--------------+
|32     |128     | 7.812      |131     | 7.619 |              |
+-------+--------+------------+--------+-------+--------------+
|33     |132     | 7.575      |150     | 6.666 |              |
+-------+--------+------------+--------+-------+--------------+
|34     |136     | 7.352      |150     | 6.666 |              |
+-------+--------+------------+--------+-------+--------------+
|35     |140     | 7.142      |150     | 6.666 |              |
+-------+--------+------------+--------+-------+--------------+
|36     |144     | 6.944      |150     | 6.666 |              |
+-------+--------+------------+--------+-------+--------------+
|37     |148     | 6.756      |150     | 6.666 |              |
+-------+--------+------------+--------+-------+--------------+
|38     |152     | 6.578      |175     | 5.714 |              |
+-------+--------+------------+--------+-------+--------------+
|39     |156     | 6.410      |175     | 5.714 |              |
+-------+--------+------------+--------+-------+--------------+
|40     |160     | 6.250      |175     | 5.714 |              |
+-------+--------+------------+--------+-------+--------------+
|41     |164     | 6.097      |175     | 5.714 |              |
+-------+--------+------------+--------+-------+--------------+
|42     |168     | 5.952      |175     | 5.714 |              |
+-------+--------+------------+--------+-------+--------------+
|43     |172     | 5.813      |175     | 5.714 |              |
+-------+--------+------------+--------+-------+--------------+
|44     |176     | 5.681      |187     | 5.333 |              |
+-------+--------+------------+--------+-------+--------------+
|45     |180     | 5.555      |187     | 5.333 |              |
+-------+--------+------------+--------+-------+--------------+
|46     |184     | 5.434      |187     | 5.333 |              |
+-------+--------+------------+--------+-------+--------------+
|47     |188     | 5.319      |200     | 5.000 |              |
+-------+--------+------------+--------+-------+--------------+
|48     |192     | 5.208      |200     | 5.000 |              |
+-------+--------+------------+--------+-------+--------------+
|49     |196     | 5.102      |200     | 5.000 |              |
+-------+--------+------------+--------+-------+--------------+

16.2 Synchronous timings for fast SCSI-2 53C8XX controllers

+-----------------------------+----------------+
|Negotiated                   |NCR settings    |
+-------+--------+------------+--------+-------+
|Factor |Period  |Speed       |Period  |Speed  |
+-------+--------+------------+--------+-------+
|25     |100     |10.000      |100     |10.000 |
+-------+--------+------------+--------+-------+
|26     |104     |9.615       |125     | 8.000 |
+-------+--------+------------+--------+-------+
|27     |108     |9.259       |125     | 8.000 |
+-------+--------+------------+--------+-------+
|28     |112     |8.928       |125     | 8.000 |
+-------+--------+------------+--------+-------+
|29     |116     |8.620       |125     | 8.000 |
+-------+--------+------------+--------+-------+
|30     |120     |8.333       |125     | 8.000 |
+-------+--------+------------+--------+-------+
|31     |124     |8.064       |125     | 8.000 |
+-------+--------+------------+--------+-------+
|32     |128     |7.812       |131     | 7.619 |
+-------+--------+------------+--------+-------+
|33     |132     |7.575       |150     | 6.666 |
+-------+--------+------------+--------+-------+
|34     |136     |7.352       |150     | 6.666 |
+-------+--------+------------+--------+-------+
|35     |140     |7.142       |150     | 6.666 |
+-------+--------+------------+--------+-------+
|36     |144     |6.944       |150     | 6.666 |
+-------+--------+------------+--------+-------+
|37     |148     |6.756       |150     | 6.666 |
+-------+--------+------------+--------+-------+
|38     |152     |6.578       |175     | 5.714 |
+-------+--------+------------+--------+-------+
|39     |156     |6.410       |175     | 5.714 |
+-------+--------+------------+--------+-------+
|40     |160     |6.250       |175     | 5.714 |
+-------+--------+------------+--------+-------+
|41     |164     |6.097       |175     | 5.714 |
+-------+--------+------------+--------+-------+
|42     |168     |5.952       |175     | 5.714 |
+-------+--------+------------+--------+-------+
|43     |172     |5.813       |175     | 5.714 |
+-------+--------+------------+--------+-------+
|44     |176     |5.681       |187     | 5.333 |
+-------+--------+------------+--------+-------+
|45     |180     |5.555       |187     | 5.333 |
+-------+--------+------------+--------+-------+
|46     |184     |5.434       |187     | 5.333 |
+-------+--------+------------+--------+-------+
|47     |188     |5.319       |200     | 5.000 |
+-------+--------+------------+--------+-------+
|48     |192     |5.208       |200     | 5.000 |
+-------+--------+------------+--------+-------+
|49     |196     |5.102       |200     | 5.000 |
+-------+--------+------------+--------+-------+

Serial NVRAM 기능과 card 구분

1780-1813

Richard Waltham이 추가한 serial NVRAM 지원은 Symbios·일부 compatible host adapter와 Tekram board의 설정 memory를 감지한다. 이 memory에는 host adapter와 attached drive parameter가 저장된다.

Symbios NVRAM은 여러 host adapter의 boot order도 저장해 default detect 순서와 같은 type card 내부 순서까지 바꾼다. `reverse probe`는 다른 card type 사이 순서만 바꿀 수 있다.

NVRAM이 있는 Tekram DC390W/F/U를 감지해 Symbios-compatible과 구분한다. 혼합 system에서 `CONFIG_SCSI_53C8XX_SYMBIOS_COMPAT`를 켜도 Tekram에 잘못된 `diff` 설정을 적용하지 않고 Symbios의 differential과 LED pin 기능은 유지한다.

17. Serial NVRAM
================

(added by Richard Waltham: [email protected])

17.1 Features
-------------

Enabling serial NVRAM support enables detection of the serial NVRAM included
on Symbios and some Symbios compatible host adaptors, and Tekram boards. The
serial NVRAM is used by Symbios and Tekram to hold set up parameters for the
host adaptor and its attached drives.

The Symbios NVRAM also holds data on the boot order of host adaptors in a
system with more than one host adaptor. This enables the order of scanning
the cards for drives to be changed from the default used during host adaptor
detection.

This can be done to a limited extent at the moment using "reverse probe" but
this only changes the order of detection of different types of cards. The
NVRAM boot order settings can do this as well as change the order the same
types of cards are scanned in, something "reverse probe" cannot do.

Tekram boards using Symbios chips, DC390W/F/U, which have NVRAM are detected
and this is used to distinguish between Symbios compatible and Tekram host
adaptors. This is used to disable the Symbios compatible "diff" setting
incorrectly set on Tekram boards if the CONFIG_SCSI_53C8XX_SYMBIOS_COMPAT
configuration parameter is set enabling both Symbios and Tekram boards to be
used together with the Symbios cards using all their features, including
"diff" support. ("led pin" support for Symbios compatible cards can remain
enabled when using Tekram cards. It does nothing useful for Tekram host
adaptors but does not cause problems either.)

Symbios NVRAM layout

1814-2026

Typical 53C810A NVRAM data는 address `0x100`부터 시작한다. `0x000-0x0ff`와 `0x270-0x7ff`는 미사용, `0x100-0x26f`가 초기화된 368-byte block이다. Block은 6-byte header, checksum 대상 356-byte data, 6-byte trailer다.

Data area는 controller setup 20 byte, boot configuration 56 byte(4x14), device setup 128 byte(16x8), spare 152 byte(19x8)다. Header는 추정 start marker `00 00`, header/trailer를 제외한 byte count `64 01`, checksum `8e 0b`; trailer는 추정 end marker `fe fe` 뒤 zero 4 byte다.

Controller setup에는 host ID, removable media mode(none/bootable/all with media), scan order, SCAM, parity, verbose boot flag가 있다. Boot configuration은 table entry 순서로 controller boot order를 정하며 PCI device/function, boot scan flag, 추정 vendor/device ID와 I/O port address를 담는다. 일부 byte 의미는 원저자도 추정 또는 unknown으로 표시했다.

Device setup은 ID 0-15에 각 8 byte를 둔다. Field는 timeout, sync period, max sync offset 추정값, 8/16-bit width, disconnect·boot scan·LUN scan·queue tag flag다. 53C875 default는 width 0x10, offset 0x10, period 0x30이다.

Symbios NVRAM block
영역크기내용
Header6Marker, length, checksum
Controller setup20Host와 global flag
Boot configuration564 x 14-byte controller
Device setup12816 x 8-byte device
Spare15219 x 8-byte
Trailer6End marker와 zero
합계3680x100-0x26f

ASCII layout을 byte 영역으로 다시 그렸습니다.

Symbios device field
Field
Flagsdisconnect 0x1, boot scan 0x2, LUN scan 0x4, tags 0x8
Bus width0x08 narrow, 0x10 wide
Sync offset810A 0x08, 875 0x10
Sync period0x28? 40, 0x30 20, 0x64 10, 0xc8 5 MT/s, 0 async
TimeoutLSB/MSB

Device 8-byte record의 논리 구조입니다.

17.2 Symbios NVRAM layout
-------------------------

typical data at NVRAM address 0x100 (53c810a NVRAM)::

    00 00
    64 01
    8e 0b

    00 30 00 00 00 00 07 00 00 00 00 00 00 00 07 04 10 04 00 00

    04 00 0f 00 00 10 00 50 00 00 01 00 00 62
    04 00 03 00 00 10 00 58 00 00 01 00 00 63
    04 00 01 00 00 10 00 48 00 00 01 00 00 61
    00 00 00 00 00 00 00 00 00 00 00 00 00 00

    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00

    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00

    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00

    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00

    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00
    00 00 00 00 00 00 00 00

    fe fe
    00 00
    00 00

NVRAM layout details

=============  ================
NVRAM Address
=============  ================
0x000-0x0ff    not used
0x100-0x26f    initialised data
0x270-0x7ff    not used
=============  ================

general layout::

        header  -   6 bytes,
        data    - 356 bytes (checksum is byte sum of this data)
        trailer -   6 bytes
                  ---
        total     368 bytes

data area layout::

        controller set up  -  20 bytes
        boot configuration -  56 bytes (4x14 bytes)
        device set up      - 128 bytes (16x8 bytes)
        unused (spare?)    - 152 bytes (19x8 bytes)
                             ---
        total                356 bytes

header::

    00 00   - ?? start marker
    64 01   - byte count (lsb/msb excludes header/trailer)
    8e 0b   - checksum (lsb/msb excludes header/trailer)

controller set up::

    00 30 00 00 00 00 07 00 00 00 00 00 00 00 07 04 10 04 00 00
                    |     |           |     |
                    |     |           |      -- host ID
                    |     |           |
                    |     |            --Removable Media Support
                    |     |               0x00 = none
                    |     |               0x01 = Bootable Device
                    |     |               0x02 = All with Media
                    |     |
                    |      --flag bits 2
                    |        0x00000001= scan order hi->low
                    |            (default 0x00 - scan low->hi)
                        --flag bits 1
                        0x00000001 scam enable
                        0x00000010 parity enable
                        0x00000100 verbose boot msgs

remaining bytes unknown - they do not appear to change in my
current set up for any of the controllers.

default set up is identical for 53c810a and 53c875 NVRAM
(Removable Media added Symbios BIOS version 4.09)

boot configuration

boot order set by order of the devices in this table::

    04 00 0f 00 00 10 00 50 00 00 01 00 00 62 -- 1st controller
    04 00 03 00 00 10 00 58 00 00 01 00 00 63    2nd controller
    04 00 01 00 00 10 00 48 00 00 01 00 00 61    3rd controller
    00 00 00 00 00 00 00 00 00 00 00 00 00 00    4th controller
        |  |  |  |     |        |     |  |
        |  |  |  |     |        |      ---- PCI io port adr
        |  |  |  |     |         --0x01 init/scan at boot time
        |  |  |  |      --PCI device/function number (0xdddddfff)
        |  |   ----- ?? PCI vendor ID (lsb/msb)
            ----PCI device ID (lsb/msb)

    ?? use of this data is a guess but seems reasonable

remaining bytes unknown - they do not appear to change in my
current set up

default set up is identical for 53c810a and 53c875 NVRAM
--------------------------------------------------------

device set up (up to 16 devices - includes controller)::

    0f 00 08 08 64 00 0a 00 - id 0
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00

    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00
    0f 00 08 08 64 00 0a 00 - id 15
    |     |  |  |     |  |
    |     |  |  |      ----timeout (lsb/msb)
    |     |  |   --synch period (0x?? 40 Mtrans/sec- fast 40) (probably 0x28)
    |     |  |                  (0x30 20 Mtrans/sec- fast 20)
    |     |  |                  (0x64 10 Mtrans/sec- fast )
    |     |  |                  (0xc8  5 Mtrans/sec)
    |     |  |                  (0x00  asynchronous)
    |     |   -- ?? max sync offset (0x08 in NVRAM on 53c810a)
    |     |                         (0x10 in NVRAM on 53c875)
    |      --device bus width (0x08 narrow)
    |                         (0x10 16 bit wide)
    --flag bits
        0x00000001 - disconnect enabled
        0x00000010 - scan at boot time
        0x00000100 - scan luns
        0x00001000 - queue tags enabled

remaining bytes unknown - they do not appear to change in my
current set up

?? use of this data is a guess but seems reasonable
(but it could be max bus width)

default set up for 53c810a NVRAM
default set up for 53c875 NVRAM

                                - bus width     - 0x10
                                - sync offset ? - 0x10
                                - sync period   - 0x30

?? spare device space (32 bit bus ??)

::

    00 00 00 00 00 00 00 00  (19x8bytes)
    .
    .
    00 00 00 00 00 00 00 00

default set up is identical for 53c810a and 53c875 NVRAM
--------------------------------------------------------

trailer::

    fe fe   - ? end marker ?
    00 00
    00 00

default set up is identical for 53c810a and 53c875 NVRAM
-----------------------------------------------------------


Tekram 64x16 NVRAM bitfield

2027-2144

Tekram NVRAM은 64x16, 즉 1024-bit다. Drive ID 0-15의 address `0x0yyyy0`은 device setup이고 `0x0yyyy1`은 0x0000이다. Drive word에는 parity, sync negotiation, disconnect, start command, tagged command, wide negotiation과 sync rate가 들어간다.

Sync rate nibble은 0=10.0, 1=8.0, 2=6.6, 3=5.7, 4=5.0, 5=4.0, 6=3.0, 7=2.0, 8=20.0, 9=16.7, a=13.9, b=11.9 MT/s다.

Host flags 0(address 32)은 host ID, 2개 초과 drive, 1GB 초과 drive, power-on bus reset, active negotiation, immediate seek, LUN scan, removable BIOS mode를 저장한다. Host flags 1(address 33)은 boot delay 3·5·10·20·30·60·120초와 maximum tag 2·4·8·16·32를 저장한다. Host flags 2(address 34)의 F2/F6 enable 의미는 원문도 불확실하다.

Address 63 checksum은 `0x1234 - (sum addr 0-63)`이고 원문은 default 64-word image를 제공한다.

Tekram drive bitfield
Field01 또는 값
Parityoffon
Sync negotiationoffon
Disconnectoffon
Start commandoffon
Tagged commandoffon
Wide negotiationoffon
Sync rate0-78-b code table

ASCII bit diagram을 기능별로 다시 그렸습니다.

Tekram global word
AddressWord내용
32 / 0x100000Host flags 0Host ID, drive capacity support, reset, active neg, seek, LUN scan, removable
33 / 0x100001Host flags 1Boot delay, max tag command
34 / 0x100010Host flags 2F2/F6 enable 추정
63 / 0x111111Checksum0x1234 - sum

Host flag address별 내용입니다.

17.3 Tekram NVRAM layout
------------------------

nvram 64x16 (1024 bit)

Drive settings::

    Drive ID 0-15 (addr 0x0yyyy0 = device setup, yyyy = ID)
                (addr 0x0yyyy1 = 0x0000)

        x x x x  x x x x  x x x x  x x x x
                | | |      | |  | | | |
                | | |      | |  | | |  ----- parity check   0 - off
                | | |      | |  | | |                       1 - on
                | | |      | |  | | |
                | | |      | |  | |  ------- sync neg       0 - off
                | | |      | |  | |                         1 - on
                | | |      | |  | |
                | | |      | |  |  --------- disconnect     0 - off
                | | |      | |  |                           1 - on
                | | |      | |  |
                | | |      | |   ----------- start cmd      0 - off
                | | |      | |                              1 - on
                | | |      | |
                | | |      |  -------------- tagged cmds    0 - off
                | | |      |                                1 - on
                | | |      |
                | | |       ---------------- wide neg       0 - off
                | | |                                       1 - on
                | | |
                    --------------------------- sync rate      0 - 10.0 Mtrans/sec
                                                            1 -  8.0
                                                            2 -  6.6
                                                            3 -  5.7
                                                            4 -  5.0
                                                            5 -  4.0
                                                            6 -  3.0
                                                            7 -  2.0
                                                            7 -  2.0
                                                            8 - 20.0
                                                            9 - 16.7
                                                            a - 13.9
                                                            b - 11.9

Global settings

Host flags 0 (addr 0x100000, 32)::

    x x x x  x x x x  x x x x  x x x x
    | | | |  | | | |           | | | |
    | | | |  | | | |            ----------- host ID    0x00 - 0x0f
    | | | |  | | | |
    | | | |  | | |  ----------------------- support for    0 - off
    | | | |  | | |                          > 2 drives     1 - on
    | | | |  | | |
    | | | |  | |  ------------------------- support drives 0 - off
    | | | |  | |                            > 1Gbytes      1 - on
    | | | |  | |
    | | | |  |  --------------------------- bus reset on   0 - off
    | | | |  |                                power on     1 - on
    | | | |  |
    | | | |   ----------------------------- active neg     0 - off
    | | | |                                                1 - on
    | | | |
    | | |  -------------------------------- imm seek       0 - off
    | | |                                                  1 - on
    | | |
    | |  ---------------------------------- scan luns      0 - off
    | |                                                    1 - on
    | |
     -------------------------------------- removable      0 - disable
                                            as BIOS dev    1 - boot device
                                                           2 - all

Host flags 1 (addr 0x100001, 33)::

    x x x x  x x x x  x x x x  x x x x
               | | |             | | |
               | | |              --------- boot delay     0 -   3 sec
               | | |                                       1 -   5
               | | |                                       2 -  10
               | | |                                       3 -  20
               | | |                                       4 -  30
               | | |                                       5 -  60
               | | |                                       6 - 120
               | | |
                --------------------------- max tag cmds   0 -  2
                                                           1 -  4
                                                           2 -  8
                                                           3 - 16
                                                           4 - 32

Host flags 2 (addr 0x100010, 34)::

    x x x x  x x x x  x x x x  x x x x
                                     |
                                      ----- F2/F6 enable   0 - off ???
                                                           1 - on  ???

checksum (addr 0x111111)

checksum = 0x1234 - (sum addr 0-63)

----------------------------------------------------------------------------

default nvram data::

    0x0037 0x0000 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000
    0x0037 0x0000 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000
    0x0037 0x0000 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000
    0x0037 0x0000 0x0037 0x0000 0x0037 0x0000 0x0037 0x0000

    0x0f07 0x0400 0x0001 0x0000 0x0000 0x0000 0x0000 0x0000
    0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000
    0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000
    0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0x0000 0xfbbc

Big Endian CPU와 chip mode

2145-2169

PCI local bus는 주로 x86용으로 설계되어 device가 DWORD를 little-endian byte order로 기대한다. Big Endian architecture에서 NCR chip을 지원하려면 driver가 필요한 때마다 byte reorder를 수행한다.

Cort가 추가한 이 기능은 driver 2.5 이후에 있고 당시 Linux/PPC에서만 시험됐다. 문서상 53C815, 53C825A, 53C875, 53C875N, 53C895는 BigLit pin pull-up으로 software-selectable하지 않은 special Big Endian mode를 지원한다. 이 mode는 Big Endian CPU의 reorder 대부분을 피하며 driver 2.5도 이론적으로 준비돼 있다.

Endian 변환
Big Endian CPU일반 PCI NCR: driver byte reorderBigLit pull-up NCR mode: reorder 대부분 회피

일반 PCI mode와 special chip mode를 비교합니다.

18. Support for Big Endian
==========================

The PCI local bus has been primarily designed for x86 architecture.
As a consequence, PCI devices generally expect DWORDS using little endian
byte ordering.

18.1 Big Endian CPU
-------------------

In order to support NCR chips on a Big Endian architecture the driver has to
perform byte reordering each time it is needed. This feature has been
added to the driver by Cort <[email protected]> and is available in driver
version 2.5 and later ones. For the moment Big Endian support has only
been tested on Linux/PPC (PowerPC).

18.2 NCR chip in Big Endian mode of operations
----------------------------------------------

It can be read in SYMBIOS documentation that some chips support a special
Big Endian mode, on paper: 53C815, 53C825A, 53C875, 53C875N, 53C895.
This mode of operations is not software-selectable, but needs pin named
BigLit to be pulled-up. Using this mode, most of byte reorderings should
be avoided when the driver is running on a Big Endian CPU.
Driver version 2.5 is also, in theory, ready for this feature.