blob: 24dfd54865ee3811ed804f3f4735343157a1fd9d [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/* -*- mode: c; c-basic-offset: 8 -*- */
2
3/* NCR (or Symbios) 53c700 and 53c700-66 Driver
4 *
5 * Copyright (C) 2001 by James.Bottomley@HansenPartnership.com
6**-----------------------------------------------------------------------------
7**
8** This program is free software; you can redistribute it and/or modify
9** it under the terms of the GNU General Public License as published by
10** the Free Software Foundation; either version 2 of the License, or
11** (at your option) any later version.
12**
13** This program is distributed in the hope that it will be useful,
14** but WITHOUT ANY WARRANTY; without even the implied warranty of
15** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16** GNU General Public License for more details.
17**
18** You should have received a copy of the GNU General Public License
19** along with this program; if not, write to the Free Software
20** Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21**
22**-----------------------------------------------------------------------------
23 */
24
25/* Notes:
26 *
27 * This driver is designed exclusively for these chips (virtually the
28 * earliest of the scripts engine chips). They need their own drivers
29 * because they are missing so many of the scripts and snazzy register
30 * features of their elder brothers (the 710, 720 and 770).
31 *
32 * The 700 is the lowliest of the line, it can only do async SCSI.
33 * The 700-66 can at least do synchronous SCSI up to 10MHz.
34 *
35 * The 700 chip has no host bus interface logic of its own. However,
36 * it is usually mapped to a location with well defined register
37 * offsets. Therefore, if you can determine the base address and the
38 * irq your board incorporating this chip uses, you can probably use
39 * this driver to run it (although you'll probably have to write a
40 * minimal wrapper for the purpose---see the NCR_D700 driver for
41 * details about how to do this).
42 *
43 *
44 * TODO List:
45 *
46 * 1. Better statistics in the proc fs
47 *
48 * 2. Implement message queue (queues SCSI messages like commands) and make
49 * the abort and device reset functions use them.
50 * */
51
52/* CHANGELOG
53 *
54 * Version 2.8
55 *
56 * Fixed bad bug affecting tag starvation processing (previously the
57 * driver would hang the system if too many tags starved. Also fixed
58 * bad bug having to do with 10 byte command processing and REQUEST
59 * SENSE (the command would loop forever getting a transfer length
60 * mismatch in the CMD phase).
61 *
62 * Version 2.7
63 *
64 * Fixed scripts problem which caused certain devices (notably CDRWs)
65 * to hang on initial INQUIRY. Updated NCR_700_readl/writel to use
66 * __raw_readl/writel for parisc compatibility (Thomas
67 * Bogendoerfer). Added missing SCp->request_bufflen initialisation
68 * for sense requests (Ryan Bradetich).
69 *
70 * Version 2.6
71 *
72 * Following test of the 64 bit parisc kernel by Richard Hirst,
73 * several problems have now been corrected. Also adds support for
74 * consistent memory allocation.
75 *
76 * Version 2.5
77 *
78 * More Compatibility changes for 710 (now actually works). Enhanced
79 * support for odd clock speeds which constrain SDTR negotiations.
80 * correct cacheline separation for scsi messages and status for
81 * incoherent architectures. Use of the pci mapping functions on
82 * buffers to begin support for 64 bit drivers.
83 *
84 * Version 2.4
85 *
86 * Added support for the 53c710 chip (in 53c700 emulation mode only---no
87 * special 53c710 instructions or registers are used).
88 *
89 * Version 2.3
90 *
91 * More endianness/cache coherency changes.
92 *
93 * Better bad device handling (handles devices lying about tag
94 * queueing support and devices which fail to provide sense data on
95 * contingent allegiance conditions)
96 *
97 * Many thanks to Richard Hirst <rhirst@linuxcare.com> for patiently
98 * debugging this driver on the parisc architecture and suggesting
99 * many improvements and bug fixes.
100 *
101 * Thanks also go to Linuxcare Inc. for providing several PARISC
102 * machines for me to debug the driver on.
103 *
104 * Version 2.2
105 *
106 * Made the driver mem or io mapped; added endian invariance; added
107 * dma cache flushing operations for architectures which need it;
108 * added support for more varied clocking speeds.
109 *
110 * Version 2.1
111 *
112 * Initial modularisation from the D700. See NCR_D700.c for the rest of
113 * the changelog.
114 * */
115#define NCR_700_VERSION "2.8"
116
117#include <linux/config.h>
118#include <linux/kernel.h>
119#include <linux/types.h>
120#include <linux/string.h>
121#include <linux/ioport.h>
122#include <linux/delay.h>
123#include <linux/spinlock.h>
124#include <linux/completion.h>
125#include <linux/sched.h>
126#include <linux/init.h>
127#include <linux/proc_fs.h>
128#include <linux/blkdev.h>
129#include <linux/module.h>
130#include <linux/interrupt.h>
Jeff Garzik017560f2005-10-24 18:04:36 -0400131#include <linux/device.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -0700132#include <asm/dma.h>
133#include <asm/system.h>
134#include <asm/io.h>
135#include <asm/pgtable.h>
136#include <asm/byteorder.h>
137
138#include <scsi/scsi.h>
139#include <scsi/scsi_cmnd.h>
140#include <scsi/scsi_dbg.h>
141#include <scsi/scsi_eh.h>
142#include <scsi/scsi_host.h>
143#include <scsi/scsi_tcq.h>
144#include <scsi/scsi_transport.h>
145#include <scsi/scsi_transport_spi.h>
146
147#include "53c700.h"
148
149/* NOTE: For 64 bit drivers there are points in the code where we use
150 * a non dereferenceable pointer to point to a structure in dma-able
151 * memory (which is 32 bits) so that we can use all of the structure
152 * operations but take the address at the end. This macro allows us
153 * to truncate the 64 bit pointer down to 32 bits without the compiler
154 * complaining */
155#define to32bit(x) ((__u32)((unsigned long)(x)))
156
157#ifdef NCR_700_DEBUG
158#define STATIC
159#else
160#define STATIC static
161#endif
162
163MODULE_AUTHOR("James Bottomley");
164MODULE_DESCRIPTION("53c700 and 53c700-66 Driver");
165MODULE_LICENSE("GPL");
166
167/* This is the script */
168#include "53c700_d.h"
169
170
171STATIC int NCR_700_queuecommand(struct scsi_cmnd *, void (*done)(struct scsi_cmnd *));
172STATIC int NCR_700_abort(struct scsi_cmnd * SCpnt);
173STATIC int NCR_700_bus_reset(struct scsi_cmnd * SCpnt);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700174STATIC int NCR_700_host_reset(struct scsi_cmnd * SCpnt);
175STATIC void NCR_700_chip_setup(struct Scsi_Host *host);
176STATIC void NCR_700_chip_reset(struct Scsi_Host *host);
James Bottomley0f13fc02006-06-29 13:02:11 -0400177STATIC int NCR_700_slave_alloc(struct scsi_device *SDpnt);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700178STATIC int NCR_700_slave_configure(struct scsi_device *SDpnt);
179STATIC void NCR_700_slave_destroy(struct scsi_device *SDpnt);
180static int NCR_700_change_queue_depth(struct scsi_device *SDpnt, int depth);
181static int NCR_700_change_queue_type(struct scsi_device *SDpnt, int depth);
182
183STATIC struct device_attribute *NCR_700_dev_attrs[];
184
185STATIC struct scsi_transport_template *NCR_700_transport_template = NULL;
186
187static char *NCR_700_phase[] = {
188 "",
189 "after selection",
190 "before command phase",
191 "after command phase",
192 "after status phase",
193 "after data in phase",
194 "after data out phase",
195 "during data phase",
196};
197
198static char *NCR_700_condition[] = {
199 "",
200 "NOT MSG_OUT",
201 "UNEXPECTED PHASE",
202 "NOT MSG_IN",
203 "UNEXPECTED MSG",
204 "MSG_IN",
205 "SDTR_MSG RECEIVED",
206 "REJECT_MSG RECEIVED",
207 "DISCONNECT_MSG RECEIVED",
208 "MSG_OUT",
209 "DATA_IN",
210
211};
212
213static char *NCR_700_fatal_messages[] = {
214 "unexpected message after reselection",
215 "still MSG_OUT after message injection",
216 "not MSG_IN after selection",
217 "Illegal message length received",
218};
219
220static char *NCR_700_SBCL_bits[] = {
221 "IO ",
222 "CD ",
223 "MSG ",
224 "ATN ",
225 "SEL ",
226 "BSY ",
227 "ACK ",
228 "REQ ",
229};
230
231static char *NCR_700_SBCL_to_phase[] = {
232 "DATA_OUT",
233 "DATA_IN",
234 "CMD_OUT",
235 "STATE",
236 "ILLEGAL PHASE",
237 "ILLEGAL PHASE",
238 "MSG OUT",
239 "MSG IN",
240};
241
Linus Torvalds1da177e2005-04-16 15:20:36 -0700242/* This translates the SDTR message offset and period to a value
243 * which can be loaded into the SXFER_REG.
244 *
245 * NOTE: According to SCSI-2, the true transfer period (in ns) is
246 * actually four times this period value */
247static inline __u8
248NCR_700_offset_period_to_sxfer(struct NCR_700_Host_Parameters *hostdata,
249 __u8 offset, __u8 period)
250{
251 int XFERP;
252
253 __u8 min_xferp = (hostdata->chip710
254 ? NCR_710_MIN_XFERP : NCR_700_MIN_XFERP);
255 __u8 max_offset = (hostdata->chip710
256 ? NCR_710_MAX_OFFSET : NCR_700_MAX_OFFSET);
257
258 if(offset == 0)
259 return 0;
260
261 if(period < hostdata->min_period) {
Matthew Wilcox6ea3c0b2006-02-07 07:54:46 -0700262 printk(KERN_WARNING "53c700: Period %dns is less than this chip's minimum, setting to %d\n", period*4, NCR_700_MIN_PERIOD*4);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700263 period = hostdata->min_period;
264 }
265 XFERP = (period*4 * hostdata->sync_clock)/1000 - 4;
266 if(offset > max_offset) {
267 printk(KERN_WARNING "53c700: Offset %d exceeds chip maximum, setting to %d\n",
268 offset, max_offset);
269 offset = max_offset;
270 }
271 if(XFERP < min_xferp) {
272 printk(KERN_WARNING "53c700: XFERP %d is less than minium, setting to %d\n",
273 XFERP, min_xferp);
274 XFERP = min_xferp;
275 }
276 return (offset & 0x0f) | (XFERP & 0x07)<<4;
277}
278
279static inline __u8
280NCR_700_get_SXFER(struct scsi_device *SDp)
281{
282 struct NCR_700_Host_Parameters *hostdata =
283 (struct NCR_700_Host_Parameters *)SDp->host->hostdata[0];
284
285 return NCR_700_offset_period_to_sxfer(hostdata,
286 spi_offset(SDp->sdev_target),
287 spi_period(SDp->sdev_target));
288}
289
290struct Scsi_Host *
291NCR_700_detect(struct scsi_host_template *tpnt,
292 struct NCR_700_Host_Parameters *hostdata, struct device *dev)
293{
294 dma_addr_t pScript, pSlots;
295 __u8 *memory;
296 __u32 *script;
297 struct Scsi_Host *host;
298 static int banner = 0;
299 int j;
300
301 if(tpnt->sdev_attrs == NULL)
302 tpnt->sdev_attrs = NCR_700_dev_attrs;
303
304 memory = dma_alloc_noncoherent(hostdata->dev, TOTAL_MEM_SIZE,
305 &pScript, GFP_KERNEL);
306 if(memory == NULL) {
307 printk(KERN_ERR "53c700: Failed to allocate memory for driver, detatching\n");
308 return NULL;
309 }
310
311 script = (__u32 *)memory;
312 hostdata->msgin = memory + MSGIN_OFFSET;
313 hostdata->msgout = memory + MSGOUT_OFFSET;
314 hostdata->status = memory + STATUS_OFFSET;
315 /* all of these offsets are L1_CACHE_BYTES separated. It is fatal
316 * if this isn't sufficient separation to avoid dma flushing issues */
317 BUG_ON(!dma_is_consistent(pScript) && L1_CACHE_BYTES < dma_get_cache_alignment());
318 hostdata->slots = (struct NCR_700_command_slot *)(memory + SLOTS_OFFSET);
319 hostdata->dev = dev;
Tobias Klauser6391a112006-06-08 22:23:48 -0700320
Linus Torvalds1da177e2005-04-16 15:20:36 -0700321 pSlots = pScript + SLOTS_OFFSET;
322
323 /* Fill in the missing routines from the host template */
324 tpnt->queuecommand = NCR_700_queuecommand;
325 tpnt->eh_abort_handler = NCR_700_abort;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700326 tpnt->eh_bus_reset_handler = NCR_700_bus_reset;
327 tpnt->eh_host_reset_handler = NCR_700_host_reset;
328 tpnt->can_queue = NCR_700_COMMAND_SLOTS_PER_HOST;
329 tpnt->sg_tablesize = NCR_700_SG_SEGMENTS;
330 tpnt->cmd_per_lun = NCR_700_CMD_PER_LUN;
331 tpnt->use_clustering = ENABLE_CLUSTERING;
332 tpnt->slave_configure = NCR_700_slave_configure;
333 tpnt->slave_destroy = NCR_700_slave_destroy;
James Bottomley0f13fc02006-06-29 13:02:11 -0400334 tpnt->slave_alloc = NCR_700_slave_alloc;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700335 tpnt->change_queue_depth = NCR_700_change_queue_depth;
336 tpnt->change_queue_type = NCR_700_change_queue_type;
Tobias Klauser6391a112006-06-08 22:23:48 -0700337
Linus Torvalds1da177e2005-04-16 15:20:36 -0700338 if(tpnt->name == NULL)
339 tpnt->name = "53c700";
340 if(tpnt->proc_name == NULL)
341 tpnt->proc_name = "53c700";
Linus Torvalds1da177e2005-04-16 15:20:36 -0700342
343 host = scsi_host_alloc(tpnt, 4);
344 if (!host)
345 return NULL;
346 memset(hostdata->slots, 0, sizeof(struct NCR_700_command_slot)
347 * NCR_700_COMMAND_SLOTS_PER_HOST);
Tobias Klauser6391a112006-06-08 22:23:48 -0700348 for (j = 0; j < NCR_700_COMMAND_SLOTS_PER_HOST; j++) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700349 dma_addr_t offset = (dma_addr_t)((unsigned long)&hostdata->slots[j].SG[0]
350 - (unsigned long)&hostdata->slots[0].SG[0]);
351 hostdata->slots[j].pSG = (struct NCR_700_SG_List *)((unsigned long)(pSlots + offset));
352 if(j == 0)
353 hostdata->free_list = &hostdata->slots[j];
354 else
355 hostdata->slots[j-1].ITL_forw = &hostdata->slots[j];
356 hostdata->slots[j].state = NCR_700_SLOT_FREE;
357 }
358
Tobias Klauser6391a112006-06-08 22:23:48 -0700359 for (j = 0; j < ARRAY_SIZE(SCRIPT); j++)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700360 script[j] = bS_to_host(SCRIPT[j]);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700361
362 /* adjust all labels to be bus physical */
Tobias Klauser6391a112006-06-08 22:23:48 -0700363 for (j = 0; j < PATCHES; j++)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700364 script[LABELPATCHES[j]] = bS_to_host(pScript + SCRIPT[LABELPATCHES[j]]);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700365 /* now patch up fixed addresses. */
366 script_patch_32(script, MessageLocation,
367 pScript + MSGOUT_OFFSET);
368 script_patch_32(script, StatusAddress,
369 pScript + STATUS_OFFSET);
370 script_patch_32(script, ReceiveMsgAddress,
371 pScript + MSGIN_OFFSET);
372
373 hostdata->script = script;
374 hostdata->pScript = pScript;
375 dma_sync_single_for_device(hostdata->dev, pScript, sizeof(SCRIPT), DMA_TO_DEVICE);
376 hostdata->state = NCR_700_HOST_FREE;
377 hostdata->cmd = NULL;
Hannes Reinecke2b89dad2006-05-23 10:29:28 +0200378 host->max_id = 8;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700379 host->max_lun = NCR_700_MAX_LUNS;
380 BUG_ON(NCR_700_transport_template == NULL);
381 host->transportt = NCR_700_transport_template;
56fece22005-04-03 03:57:48 -0600382 host->unique_id = (unsigned long)hostdata->base;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700383 hostdata->eh_complete = NULL;
384 host->hostdata[0] = (unsigned long)hostdata;
385 /* kick the chip */
386 NCR_700_writeb(0xff, host, CTEST9_REG);
Tobias Klauser6391a112006-06-08 22:23:48 -0700387 if (hostdata->chip710)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700388 hostdata->rev = (NCR_700_readb(host, CTEST8_REG)>>4) & 0x0f;
389 else
390 hostdata->rev = (NCR_700_readb(host, CTEST7_REG)>>4) & 0x0f;
391 hostdata->fast = (NCR_700_readb(host, CTEST9_REG) == 0);
Tobias Klauser6391a112006-06-08 22:23:48 -0700392 if (banner == 0) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700393 printk(KERN_NOTICE "53c700: Version " NCR_700_VERSION " By James.Bottomley@HansenPartnership.com\n");
394 banner = 1;
395 }
396 printk(KERN_NOTICE "scsi%d: %s rev %d %s\n", host->host_no,
Tobias Klauser6391a112006-06-08 22:23:48 -0700397 hostdata->chip710 ? "53c710" :
Linus Torvalds1da177e2005-04-16 15:20:36 -0700398 (hostdata->fast ? "53c700-66" : "53c700"),
399 hostdata->rev, hostdata->differential ?
400 "(Differential)" : "");
401 /* reset the chip */
402 NCR_700_chip_reset(host);
403
404 if (scsi_add_host(host, dev)) {
405 dev_printk(KERN_ERR, dev, "53c700: scsi_add_host failed\n");
406 scsi_host_put(host);
407 return NULL;
408 }
409
410 spi_signalling(host) = hostdata->differential ? SPI_SIGNAL_HVD :
411 SPI_SIGNAL_SE;
412
413 return host;
414}
415
416int
417NCR_700_release(struct Scsi_Host *host)
418{
419 struct NCR_700_Host_Parameters *hostdata =
420 (struct NCR_700_Host_Parameters *)host->hostdata[0];
421
422 dma_free_noncoherent(hostdata->dev, TOTAL_MEM_SIZE,
423 hostdata->script, hostdata->pScript);
424 return 1;
425}
426
427static inline __u8
428NCR_700_identify(int can_disconnect, __u8 lun)
429{
430 return IDENTIFY_BASE |
431 ((can_disconnect) ? 0x40 : 0) |
432 (lun & NCR_700_LUN_MASK);
433}
434
435/*
436 * Function : static int data_residual (Scsi_Host *host)
437 *
438 * Purpose : return residual data count of what's in the chip. If you
439 * really want to know what this function is doing, it's almost a
440 * direct transcription of the algorithm described in the 53c710
441 * guide, except that the DBC and DFIFO registers are only 6 bits
442 * wide on a 53c700.
443 *
444 * Inputs : host - SCSI host */
445static inline int
446NCR_700_data_residual (struct Scsi_Host *host) {
447 struct NCR_700_Host_Parameters *hostdata =
448 (struct NCR_700_Host_Parameters *)host->hostdata[0];
449 int count, synchronous = 0;
450 unsigned int ddir;
451
452 if(hostdata->chip710) {
453 count = ((NCR_700_readb(host, DFIFO_REG) & 0x7f) -
454 (NCR_700_readl(host, DBC_REG) & 0x7f)) & 0x7f;
455 } else {
456 count = ((NCR_700_readb(host, DFIFO_REG) & 0x3f) -
457 (NCR_700_readl(host, DBC_REG) & 0x3f)) & 0x3f;
458 }
459
460 if(hostdata->fast)
461 synchronous = NCR_700_readb(host, SXFER_REG) & 0x0f;
462
463 /* get the data direction */
464 ddir = NCR_700_readb(host, CTEST0_REG) & 0x01;
465
466 if (ddir) {
467 /* Receive */
468 if (synchronous)
469 count += (NCR_700_readb(host, SSTAT2_REG) & 0xf0) >> 4;
470 else
471 if (NCR_700_readb(host, SSTAT1_REG) & SIDL_REG_FULL)
472 ++count;
473 } else {
474 /* Send */
475 __u8 sstat = NCR_700_readb(host, SSTAT1_REG);
476 if (sstat & SODL_REG_FULL)
477 ++count;
478 if (synchronous && (sstat & SODR_REG_FULL))
479 ++count;
480 }
481#ifdef NCR_700_DEBUG
482 if(count)
483 printk("RESIDUAL IS %d (ddir %d)\n", count, ddir);
484#endif
485 return count;
486}
487
488/* print out the SCSI wires and corresponding phase from the SBCL register
489 * in the chip */
490static inline char *
491sbcl_to_string(__u8 sbcl)
492{
493 int i;
494 static char ret[256];
495
496 ret[0]='\0';
497 for(i=0; i<8; i++) {
498 if((1<<i) & sbcl)
499 strcat(ret, NCR_700_SBCL_bits[i]);
500 }
501 strcat(ret, NCR_700_SBCL_to_phase[sbcl & 0x07]);
502 return ret;
503}
504
505static inline __u8
506bitmap_to_number(__u8 bitmap)
507{
508 __u8 i;
509
510 for(i=0; i<8 && !(bitmap &(1<<i)); i++)
511 ;
512 return i;
513}
514
515/* Pull a slot off the free list */
516STATIC struct NCR_700_command_slot *
517find_empty_slot(struct NCR_700_Host_Parameters *hostdata)
518{
519 struct NCR_700_command_slot *slot = hostdata->free_list;
520
521 if(slot == NULL) {
522 /* sanity check */
523 if(hostdata->command_slot_count != NCR_700_COMMAND_SLOTS_PER_HOST)
524 printk(KERN_ERR "SLOTS FULL, but count is %d, should be %d\n", hostdata->command_slot_count, NCR_700_COMMAND_SLOTS_PER_HOST);
525 return NULL;
526 }
527
528 if(slot->state != NCR_700_SLOT_FREE)
529 /* should panic! */
530 printk(KERN_ERR "BUSY SLOT ON FREE LIST!!!\n");
531
532
533 hostdata->free_list = slot->ITL_forw;
534 slot->ITL_forw = NULL;
535
536
537 /* NOTE: set the state to busy here, not queued, since this
538 * indicates the slot is in use and cannot be run by the IRQ
539 * finish routine. If we cannot queue the command when it
540 * is properly build, we then change to NCR_700_SLOT_QUEUED */
541 slot->state = NCR_700_SLOT_BUSY;
James Bottomley67d59df2006-06-13 21:31:19 -0500542 slot->flags = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700543 hostdata->command_slot_count++;
544
545 return slot;
546}
547
548STATIC void
549free_slot(struct NCR_700_command_slot *slot,
550 struct NCR_700_Host_Parameters *hostdata)
551{
552 if((slot->state & NCR_700_SLOT_MASK) != NCR_700_SLOT_MAGIC) {
553 printk(KERN_ERR "53c700: SLOT %p is not MAGIC!!!\n", slot);
554 }
555 if(slot->state == NCR_700_SLOT_FREE) {
556 printk(KERN_ERR "53c700: SLOT %p is FREE!!!\n", slot);
557 }
558
559 slot->resume_offset = 0;
560 slot->cmnd = NULL;
561 slot->state = NCR_700_SLOT_FREE;
562 slot->ITL_forw = hostdata->free_list;
563 hostdata->free_list = slot;
564 hostdata->command_slot_count--;
565}
566
567
568/* This routine really does very little. The command is indexed on
569 the ITL and (if tagged) the ITLQ lists in _queuecommand */
570STATIC void
571save_for_reselection(struct NCR_700_Host_Parameters *hostdata,
572 struct scsi_cmnd *SCp, __u32 dsp)
573{
574 /* Its just possible that this gets executed twice */
575 if(SCp != NULL) {
576 struct NCR_700_command_slot *slot =
577 (struct NCR_700_command_slot *)SCp->host_scribble;
578
579 slot->resume_offset = dsp;
580 }
581 hostdata->state = NCR_700_HOST_FREE;
582 hostdata->cmd = NULL;
583}
584
585STATIC inline void
586NCR_700_unmap(struct NCR_700_Host_Parameters *hostdata, struct scsi_cmnd *SCp,
587 struct NCR_700_command_slot *slot)
588{
589 if(SCp->sc_data_direction != DMA_NONE &&
590 SCp->sc_data_direction != DMA_BIDIRECTIONAL) {
591 if(SCp->use_sg) {
James Bottomley67d59df2006-06-13 21:31:19 -0500592 dma_unmap_sg(hostdata->dev, SCp->request_buffer,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700593 SCp->use_sg, SCp->sc_data_direction);
594 } else {
595 dma_unmap_single(hostdata->dev, slot->dma_handle,
596 SCp->request_bufflen,
597 SCp->sc_data_direction);
598 }
599 }
600}
601
602STATIC inline void
603NCR_700_scsi_done(struct NCR_700_Host_Parameters *hostdata,
604 struct scsi_cmnd *SCp, int result)
605{
606 hostdata->state = NCR_700_HOST_FREE;
607 hostdata->cmd = NULL;
608
609 if(SCp != NULL) {
610 struct NCR_700_command_slot *slot =
611 (struct NCR_700_command_slot *)SCp->host_scribble;
612
James Bottomley0f13fc02006-06-29 13:02:11 -0400613 dma_unmap_single(hostdata->dev, slot->pCmd,
614 sizeof(SCp->cmnd), DMA_TO_DEVICE);
James Bottomley67d59df2006-06-13 21:31:19 -0500615 if (slot->flags == NCR_700_FLAG_AUTOSENSE) {
James Bottomley0f13fc02006-06-29 13:02:11 -0400616 char *cmnd = NCR_700_get_sense_cmnd(SCp->device);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700617#ifdef NCR_700_DEBUG
618 printk(" ORIGINAL CMD %p RETURNED %d, new return is %d sense is\n",
619 SCp, SCp->cmnd[7], result);
620 scsi_print_sense("53c700", SCp);
621
622#endif
James Bottomley67d59df2006-06-13 21:31:19 -0500623 dma_unmap_single(hostdata->dev, slot->dma_handle, sizeof(SCp->sense_buffer), DMA_FROM_DEVICE);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700624 /* restore the old result if the request sense was
625 * successful */
626 if(result == 0)
James Bottomley0f13fc02006-06-29 13:02:11 -0400627 result = cmnd[7];
James Bottomley67d59df2006-06-13 21:31:19 -0500628 } else
James Bottomley0f13fc02006-06-29 13:02:11 -0400629 NCR_700_unmap(hostdata, SCp, slot);
James Bottomley67d59df2006-06-13 21:31:19 -0500630
Linus Torvalds1da177e2005-04-16 15:20:36 -0700631 free_slot(slot, hostdata);
632#ifdef NCR_700_DEBUG
633 if(NCR_700_get_depth(SCp->device) == 0 ||
634 NCR_700_get_depth(SCp->device) > SCp->device->queue_depth)
635 printk(KERN_ERR "Invalid depth in NCR_700_scsi_done(): %d\n",
636 NCR_700_get_depth(SCp->device));
637#endif /* NCR_700_DEBUG */
638 NCR_700_set_depth(SCp->device, NCR_700_get_depth(SCp->device) - 1);
639
640 SCp->host_scribble = NULL;
641 SCp->result = result;
642 SCp->scsi_done(SCp);
643 } else {
644 printk(KERN_ERR "53c700: SCSI DONE HAS NULL SCp\n");
645 }
646}
647
648
649STATIC void
650NCR_700_internal_bus_reset(struct Scsi_Host *host)
651{
652 /* Bus reset */
653 NCR_700_writeb(ASSERT_RST, host, SCNTL1_REG);
654 udelay(50);
655 NCR_700_writeb(0, host, SCNTL1_REG);
656
657}
658
659STATIC void
660NCR_700_chip_setup(struct Scsi_Host *host)
661{
662 struct NCR_700_Host_Parameters *hostdata =
663 (struct NCR_700_Host_Parameters *)host->hostdata[0];
664 __u32 dcntl_extra = 0;
665 __u8 min_period;
666 __u8 min_xferp = (hostdata->chip710 ? NCR_710_MIN_XFERP : NCR_700_MIN_XFERP);
667
668 if(hostdata->chip710) {
669 __u8 burst_disable = hostdata->burst_disable
670 ? BURST_DISABLE : 0;
671 dcntl_extra = COMPAT_700_MODE;
672
673 NCR_700_writeb(dcntl_extra, host, DCNTL_REG);
674 NCR_700_writeb(BURST_LENGTH_8 | hostdata->dmode_extra,
675 host, DMODE_710_REG);
676 NCR_700_writeb(burst_disable | (hostdata->differential ?
677 DIFF : 0), host, CTEST7_REG);
678 NCR_700_writeb(BTB_TIMER_DISABLE, host, CTEST0_REG);
679 NCR_700_writeb(FULL_ARBITRATION | ENABLE_PARITY | PARITY
680 | AUTO_ATN, host, SCNTL0_REG);
681 } else {
682 NCR_700_writeb(BURST_LENGTH_8 | hostdata->dmode_extra,
683 host, DMODE_700_REG);
684 NCR_700_writeb(hostdata->differential ?
685 DIFF : 0, host, CTEST7_REG);
686 if(hostdata->fast) {
687 /* this is for 700-66, does nothing on 700 */
688 NCR_700_writeb(LAST_DIS_ENBL | ENABLE_ACTIVE_NEGATION
689 | GENERATE_RECEIVE_PARITY, host,
690 CTEST8_REG);
691 } else {
692 NCR_700_writeb(FULL_ARBITRATION | ENABLE_PARITY
693 | PARITY | AUTO_ATN, host, SCNTL0_REG);
694 }
695 }
696
697 NCR_700_writeb(1 << host->this_id, host, SCID_REG);
698 NCR_700_writeb(0, host, SBCL_REG);
699 NCR_700_writeb(ASYNC_OPERATION, host, SXFER_REG);
700
701 NCR_700_writeb(PHASE_MM_INT | SEL_TIMEOUT_INT | GROSS_ERR_INT | UX_DISC_INT
702 | RST_INT | PAR_ERR_INT | SELECT_INT, host, SIEN_REG);
703
704 NCR_700_writeb(ABORT_INT | INT_INST_INT | ILGL_INST_INT, host, DIEN_REG);
705 NCR_700_writeb(ENABLE_SELECT, host, SCNTL1_REG);
706 if(hostdata->clock > 75) {
707 printk(KERN_ERR "53c700: Clock speed %dMHz is too high: 75Mhz is the maximum this chip can be driven at\n", hostdata->clock);
708 /* do the best we can, but the async clock will be out
709 * of spec: sync divider 2, async divider 3 */
710 DEBUG(("53c700: sync 2 async 3\n"));
711 NCR_700_writeb(SYNC_DIV_2_0, host, SBCL_REG);
712 NCR_700_writeb(ASYNC_DIV_3_0 | dcntl_extra, host, DCNTL_REG);
713 hostdata->sync_clock = hostdata->clock/2;
714 } else if(hostdata->clock > 50 && hostdata->clock <= 75) {
715 /* sync divider 1.5, async divider 3 */
716 DEBUG(("53c700: sync 1.5 async 3\n"));
717 NCR_700_writeb(SYNC_DIV_1_5, host, SBCL_REG);
718 NCR_700_writeb(ASYNC_DIV_3_0 | dcntl_extra, host, DCNTL_REG);
719 hostdata->sync_clock = hostdata->clock*2;
720 hostdata->sync_clock /= 3;
721
722 } else if(hostdata->clock > 37 && hostdata->clock <= 50) {
723 /* sync divider 1, async divider 2 */
724 DEBUG(("53c700: sync 1 async 2\n"));
725 NCR_700_writeb(SYNC_DIV_1_0, host, SBCL_REG);
726 NCR_700_writeb(ASYNC_DIV_2_0 | dcntl_extra, host, DCNTL_REG);
727 hostdata->sync_clock = hostdata->clock;
728 } else if(hostdata->clock > 25 && hostdata->clock <=37) {
729 /* sync divider 1, async divider 1.5 */
730 DEBUG(("53c700: sync 1 async 1.5\n"));
731 NCR_700_writeb(SYNC_DIV_1_0, host, SBCL_REG);
732 NCR_700_writeb(ASYNC_DIV_1_5 | dcntl_extra, host, DCNTL_REG);
733 hostdata->sync_clock = hostdata->clock;
734 } else {
735 DEBUG(("53c700: sync 1 async 1\n"));
736 NCR_700_writeb(SYNC_DIV_1_0, host, SBCL_REG);
737 NCR_700_writeb(ASYNC_DIV_1_0 | dcntl_extra, host, DCNTL_REG);
738 /* sync divider 1, async divider 1 */
739 hostdata->sync_clock = hostdata->clock;
740 }
741 /* Calculate the actual minimum period that can be supported
742 * by our synchronous clock speed. See the 710 manual for
743 * exact details of this calculation which is based on a
744 * setting of the SXFER register */
745 min_period = 1000*(4+min_xferp)/(4*hostdata->sync_clock);
746 hostdata->min_period = NCR_700_MIN_PERIOD;
747 if(min_period > NCR_700_MIN_PERIOD)
748 hostdata->min_period = min_period;
749}
750
751STATIC void
752NCR_700_chip_reset(struct Scsi_Host *host)
753{
754 struct NCR_700_Host_Parameters *hostdata =
755 (struct NCR_700_Host_Parameters *)host->hostdata[0];
756 if(hostdata->chip710) {
757 NCR_700_writeb(SOFTWARE_RESET_710, host, ISTAT_REG);
758 udelay(100);
759
760 NCR_700_writeb(0, host, ISTAT_REG);
761 } else {
762 NCR_700_writeb(SOFTWARE_RESET, host, DCNTL_REG);
763 udelay(100);
764
765 NCR_700_writeb(0, host, DCNTL_REG);
766 }
767
768 mdelay(1000);
769
770 NCR_700_chip_setup(host);
771}
772
773/* The heart of the message processing engine is that the instruction
774 * immediately after the INT is the normal case (and so must be CLEAR
775 * ACK). If we want to do something else, we call that routine in
776 * scripts and set temp to be the normal case + 8 (skipping the CLEAR
777 * ACK) so that the routine returns correctly to resume its activity
778 * */
779STATIC __u32
780process_extended_message(struct Scsi_Host *host,
781 struct NCR_700_Host_Parameters *hostdata,
782 struct scsi_cmnd *SCp, __u32 dsp, __u32 dsps)
783{
784 __u32 resume_offset = dsp, temp = dsp + 8;
785 __u8 pun = 0xff, lun = 0xff;
786
787 if(SCp != NULL) {
788 pun = SCp->device->id;
789 lun = SCp->device->lun;
790 }
791
792 switch(hostdata->msgin[2]) {
793 case A_SDTR_MSG:
794 if(SCp != NULL && NCR_700_is_flag_set(SCp->device, NCR_700_DEV_BEGIN_SYNC_NEGOTIATION)) {
795 struct scsi_target *starget = SCp->device->sdev_target;
796 __u8 period = hostdata->msgin[3];
797 __u8 offset = hostdata->msgin[4];
798
799 if(offset == 0 || period == 0) {
800 offset = 0;
801 period = 0;
802 }
803
804 spi_offset(starget) = offset;
805 spi_period(starget) = period;
806
807 if(NCR_700_is_flag_set(SCp->device, NCR_700_DEV_PRINT_SYNC_NEGOTIATION)) {
808 spi_display_xfer_agreement(starget);
809 NCR_700_clear_flag(SCp->device, NCR_700_DEV_PRINT_SYNC_NEGOTIATION);
810 }
811
812 NCR_700_set_flag(SCp->device, NCR_700_DEV_NEGOTIATED_SYNC);
813 NCR_700_clear_flag(SCp->device, NCR_700_DEV_BEGIN_SYNC_NEGOTIATION);
814
815 NCR_700_writeb(NCR_700_get_SXFER(SCp->device),
816 host, SXFER_REG);
817
818 } else {
819 /* SDTR message out of the blue, reject it */
Jeff Garzik017560f2005-10-24 18:04:36 -0400820 shost_printk(KERN_WARNING, host,
821 "Unexpected SDTR msg\n");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700822 hostdata->msgout[0] = A_REJECT_MSG;
823 dma_cache_sync(hostdata->msgout, 1, DMA_TO_DEVICE);
824 script_patch_16(hostdata->script, MessageCount, 1);
825 /* SendMsgOut returns, so set up the return
826 * address */
827 resume_offset = hostdata->pScript + Ent_SendMessageWithATN;
828 }
829 break;
830
831 case A_WDTR_MSG:
832 printk(KERN_INFO "scsi%d: (%d:%d), Unsolicited WDTR after CMD, Rejecting\n",
833 host->host_no, pun, lun);
834 hostdata->msgout[0] = A_REJECT_MSG;
835 dma_cache_sync(hostdata->msgout, 1, DMA_TO_DEVICE);
836 script_patch_16(hostdata->script, MessageCount, 1);
837 resume_offset = hostdata->pScript + Ent_SendMessageWithATN;
838
839 break;
840
841 default:
842 printk(KERN_INFO "scsi%d (%d:%d): Unexpected message %s: ",
843 host->host_no, pun, lun,
844 NCR_700_phase[(dsps & 0xf00) >> 8]);
Matthew Wilcox1abfd372005-12-15 16:22:01 -0500845 spi_print_msg(hostdata->msgin);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700846 printk("\n");
847 /* just reject it */
848 hostdata->msgout[0] = A_REJECT_MSG;
849 dma_cache_sync(hostdata->msgout, 1, DMA_TO_DEVICE);
850 script_patch_16(hostdata->script, MessageCount, 1);
851 /* SendMsgOut returns, so set up the return
852 * address */
853 resume_offset = hostdata->pScript + Ent_SendMessageWithATN;
854 }
855 NCR_700_writel(temp, host, TEMP_REG);
856 return resume_offset;
857}
858
859STATIC __u32
860process_message(struct Scsi_Host *host, struct NCR_700_Host_Parameters *hostdata,
861 struct scsi_cmnd *SCp, __u32 dsp, __u32 dsps)
862{
863 /* work out where to return to */
864 __u32 temp = dsp + 8, resume_offset = dsp;
865 __u8 pun = 0xff, lun = 0xff;
866
867 if(SCp != NULL) {
868 pun = SCp->device->id;
869 lun = SCp->device->lun;
870 }
871
872#ifdef NCR_700_DEBUG
873 printk("scsi%d (%d:%d): message %s: ", host->host_no, pun, lun,
874 NCR_700_phase[(dsps & 0xf00) >> 8]);
Matthew Wilcox1abfd372005-12-15 16:22:01 -0500875 spi_print_msg(hostdata->msgin);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700876 printk("\n");
877#endif
878
879 switch(hostdata->msgin[0]) {
880
881 case A_EXTENDED_MSG:
882 resume_offset = process_extended_message(host, hostdata, SCp,
883 dsp, dsps);
884 break;
885
886 case A_REJECT_MSG:
887 if(SCp != NULL && NCR_700_is_flag_set(SCp->device, NCR_700_DEV_BEGIN_SYNC_NEGOTIATION)) {
888 /* Rejected our sync negotiation attempt */
889 spi_period(SCp->device->sdev_target) =
890 spi_offset(SCp->device->sdev_target) = 0;
891 NCR_700_set_flag(SCp->device, NCR_700_DEV_NEGOTIATED_SYNC);
892 NCR_700_clear_flag(SCp->device, NCR_700_DEV_BEGIN_SYNC_NEGOTIATION);
893 } else if(SCp != NULL && NCR_700_get_tag_neg_state(SCp->device) == NCR_700_DURING_TAG_NEGOTIATION) {
894 /* rejected our first simple tag message */
Jeff Garzik017560f2005-10-24 18:04:36 -0400895 scmd_printk(KERN_WARNING, SCp,
896 "Rejected first tag queue attempt, turning off tag queueing\n");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700897 /* we're done negotiating */
898 NCR_700_set_tag_neg_state(SCp->device, NCR_700_FINISHED_TAG_NEGOTIATION);
Jeff Garzik017560f2005-10-24 18:04:36 -0400899 hostdata->tag_negotiated &= ~(1<<scmd_id(SCp));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700900 SCp->device->tagged_supported = 0;
901 scsi_deactivate_tcq(SCp->device, host->cmd_per_lun);
902 } else {
Jeff Garzik017560f2005-10-24 18:04:36 -0400903 shost_printk(KERN_WARNING, host,
904 "(%d:%d) Unexpected REJECT Message %s\n",
905 pun, lun,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700906 NCR_700_phase[(dsps & 0xf00) >> 8]);
907 /* however, just ignore it */
908 }
909 break;
910
911 case A_PARITY_ERROR_MSG:
912 printk(KERN_ERR "scsi%d (%d:%d) Parity Error!\n", host->host_no,
913 pun, lun);
914 NCR_700_internal_bus_reset(host);
915 break;
916 case A_SIMPLE_TAG_MSG:
917 printk(KERN_INFO "scsi%d (%d:%d) SIMPLE TAG %d %s\n", host->host_no,
918 pun, lun, hostdata->msgin[1],
919 NCR_700_phase[(dsps & 0xf00) >> 8]);
920 /* just ignore it */
921 break;
922 default:
923 printk(KERN_INFO "scsi%d (%d:%d): Unexpected message %s: ",
924 host->host_no, pun, lun,
925 NCR_700_phase[(dsps & 0xf00) >> 8]);
926
Matthew Wilcox1abfd372005-12-15 16:22:01 -0500927 spi_print_msg(hostdata->msgin);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700928 printk("\n");
929 /* just reject it */
930 hostdata->msgout[0] = A_REJECT_MSG;
931 dma_cache_sync(hostdata->msgout, 1, DMA_TO_DEVICE);
932 script_patch_16(hostdata->script, MessageCount, 1);
933 /* SendMsgOut returns, so set up the return
934 * address */
935 resume_offset = hostdata->pScript + Ent_SendMessageWithATN;
936
937 break;
938 }
939 NCR_700_writel(temp, host, TEMP_REG);
940 /* set us up to receive another message */
941 dma_cache_sync(hostdata->msgin, MSG_ARRAY_SIZE, DMA_FROM_DEVICE);
942 return resume_offset;
943}
944
945STATIC __u32
946process_script_interrupt(__u32 dsps, __u32 dsp, struct scsi_cmnd *SCp,
947 struct Scsi_Host *host,
948 struct NCR_700_Host_Parameters *hostdata)
949{
950 __u32 resume_offset = 0;
951 __u8 pun = 0xff, lun=0xff;
952
953 if(SCp != NULL) {
954 pun = SCp->device->id;
955 lun = SCp->device->lun;
956 }
957
958 if(dsps == A_GOOD_STATUS_AFTER_STATUS) {
959 DEBUG((" COMMAND COMPLETE, status=%02x\n",
960 hostdata->status[0]));
961 /* OK, if TCQ still under negotiation, we now know it works */
962 if (NCR_700_get_tag_neg_state(SCp->device) == NCR_700_DURING_TAG_NEGOTIATION)
963 NCR_700_set_tag_neg_state(SCp->device,
964 NCR_700_FINISHED_TAG_NEGOTIATION);
965
966 /* check for contingent allegiance contitions */
967 if(status_byte(hostdata->status[0]) == CHECK_CONDITION ||
968 status_byte(hostdata->status[0]) == COMMAND_TERMINATED) {
969 struct NCR_700_command_slot *slot =
970 (struct NCR_700_command_slot *)SCp->host_scribble;
James Bottomley0f13fc02006-06-29 13:02:11 -0400971 if(slot->flags == NCR_700_FLAG_AUTOSENSE) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700972 /* OOPS: bad device, returning another
973 * contingent allegiance condition */
Jeff Garzik017560f2005-10-24 18:04:36 -0400974 scmd_printk(KERN_ERR, SCp,
975 "broken device is looping in contingent allegiance: ignoring\n");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700976 NCR_700_scsi_done(hostdata, SCp, hostdata->status[0]);
977 } else {
James Bottomley0f13fc02006-06-29 13:02:11 -0400978 char *cmnd =
979 NCR_700_get_sense_cmnd(SCp->device);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700980#ifdef NCR_DEBUG
981 scsi_print_command(SCp);
982 printk(" cmd %p has status %d, requesting sense\n",
983 SCp, hostdata->status[0]);
984#endif
985 /* we can destroy the command here
986 * because the contingent allegiance
987 * condition will cause a retry which
988 * will re-copy the command from the
989 * saved data_cmnd. We also unmap any
990 * data associated with the command
991 * here */
992 NCR_700_unmap(hostdata, SCp, slot);
James Bottomley67d59df2006-06-13 21:31:19 -0500993 dma_unmap_single(hostdata->dev, slot->pCmd,
994 sizeof(SCp->cmnd),
995 DMA_TO_DEVICE);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700996
James Bottomley0f13fc02006-06-29 13:02:11 -0400997 cmnd[0] = REQUEST_SENSE;
998 cmnd[1] = (SCp->device->lun & 0x7) << 5;
999 cmnd[2] = 0;
1000 cmnd[3] = 0;
1001 cmnd[4] = sizeof(SCp->sense_buffer);
1002 cmnd[5] = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001003 /* Here's a quiet hack: the
1004 * REQUEST_SENSE command is six bytes,
1005 * so store a flag indicating that
1006 * this was an internal sense request
1007 * and the original status at the end
1008 * of the command */
James Bottomley0f13fc02006-06-29 13:02:11 -04001009 cmnd[6] = NCR_700_INTERNAL_SENSE_MAGIC;
1010 cmnd[7] = hostdata->status[0];
1011 slot->pCmd = dma_map_single(hostdata->dev, cmnd, MAX_COMMAND_SIZE, DMA_TO_DEVICE);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001012 slot->dma_handle = dma_map_single(hostdata->dev, SCp->sense_buffer, sizeof(SCp->sense_buffer), DMA_FROM_DEVICE);
1013 slot->SG[0].ins = bS_to_host(SCRIPT_MOVE_DATA_IN | sizeof(SCp->sense_buffer));
1014 slot->SG[0].pAddr = bS_to_host(slot->dma_handle);
1015 slot->SG[1].ins = bS_to_host(SCRIPT_RETURN);
1016 slot->SG[1].pAddr = 0;
1017 slot->resume_offset = hostdata->pScript;
1018 dma_cache_sync(slot->SG, sizeof(slot->SG[0])*2, DMA_TO_DEVICE);
1019 dma_cache_sync(SCp->sense_buffer, sizeof(SCp->sense_buffer), DMA_FROM_DEVICE);
1020
1021 /* queue the command for reissue */
1022 slot->state = NCR_700_SLOT_QUEUED;
James Bottomley67d59df2006-06-13 21:31:19 -05001023 slot->flags = NCR_700_FLAG_AUTOSENSE;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001024 hostdata->state = NCR_700_HOST_FREE;
1025 hostdata->cmd = NULL;
1026 }
1027 } else {
1028 // Currently rely on the mid layer evaluation
1029 // of the tag queuing capability
1030 //
1031 //if(status_byte(hostdata->status[0]) == GOOD &&
1032 // SCp->cmnd[0] == INQUIRY && SCp->use_sg == 0) {
1033 // /* Piggy back the tag queueing support
1034 // * on this command */
1035 // dma_sync_single_for_cpu(hostdata->dev,
1036 // slot->dma_handle,
1037 // SCp->request_bufflen,
1038 // DMA_FROM_DEVICE);
1039 // if(((char *)SCp->request_buffer)[7] & 0x02) {
Jeff Garzik017560f2005-10-24 18:04:36 -04001040 // scmd_printk(KERN_INFO, SCp,
1041 // "Enabling Tag Command Queuing\n");
1042 // hostdata->tag_negotiated |= (1<<scmd_id(SCp));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001043 // NCR_700_set_flag(SCp->device, NCR_700_DEV_BEGIN_TAG_QUEUEING);
1044 // } else {
1045 // NCR_700_clear_flag(SCp->device, NCR_700_DEV_BEGIN_TAG_QUEUEING);
Jeff Garzik017560f2005-10-24 18:04:36 -04001046 // hostdata->tag_negotiated &= ~(1<<scmd_id(SCp));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001047 // }
1048 //}
1049 NCR_700_scsi_done(hostdata, SCp, hostdata->status[0]);
1050 }
1051 } else if((dsps & 0xfffff0f0) == A_UNEXPECTED_PHASE) {
1052 __u8 i = (dsps & 0xf00) >> 8;
1053
Jeff Garzik017560f2005-10-24 18:04:36 -04001054 scmd_printk(KERN_ERR, SCp, "UNEXPECTED PHASE %s (%s)\n",
Linus Torvalds1da177e2005-04-16 15:20:36 -07001055 NCR_700_phase[i],
1056 sbcl_to_string(NCR_700_readb(host, SBCL_REG)));
Jeff Garzik017560f2005-10-24 18:04:36 -04001057 scmd_printk(KERN_ERR, SCp, " len = %d, cmd =",
1058 SCp->cmd_len);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001059 scsi_print_command(SCp);
1060
1061 NCR_700_internal_bus_reset(host);
1062 } else if((dsps & 0xfffff000) == A_FATAL) {
1063 int i = (dsps & 0xfff);
1064
1065 printk(KERN_ERR "scsi%d: (%d:%d) FATAL ERROR: %s\n",
1066 host->host_no, pun, lun, NCR_700_fatal_messages[i]);
1067 if(dsps == A_FATAL_ILLEGAL_MSG_LENGTH) {
1068 printk(KERN_ERR " msg begins %02x %02x\n",
1069 hostdata->msgin[0], hostdata->msgin[1]);
1070 }
1071 NCR_700_internal_bus_reset(host);
1072 } else if((dsps & 0xfffff0f0) == A_DISCONNECT) {
1073#ifdef NCR_700_DEBUG
1074 __u8 i = (dsps & 0xf00) >> 8;
1075
1076 printk("scsi%d: (%d:%d), DISCONNECTED (%d) %s\n",
1077 host->host_no, pun, lun,
1078 i, NCR_700_phase[i]);
1079#endif
1080 save_for_reselection(hostdata, SCp, dsp);
1081
1082 } else if(dsps == A_RESELECTION_IDENTIFIED) {
1083 __u8 lun;
1084 struct NCR_700_command_slot *slot;
1085 __u8 reselection_id = hostdata->reselection_id;
1086 struct scsi_device *SDp;
1087
1088 lun = hostdata->msgin[0] & 0x1f;
1089
1090 hostdata->reselection_id = 0xff;
1091 DEBUG(("scsi%d: (%d:%d) RESELECTED!\n",
1092 host->host_no, reselection_id, lun));
1093 /* clear the reselection indicator */
1094 SDp = __scsi_device_lookup(host, 0, reselection_id, lun);
1095 if(unlikely(SDp == NULL)) {
1096 printk(KERN_ERR "scsi%d: (%d:%d) HAS NO device\n",
1097 host->host_no, reselection_id, lun);
1098 BUG();
1099 }
1100 if(hostdata->msgin[1] == A_SIMPLE_TAG_MSG) {
1101 struct scsi_cmnd *SCp = scsi_find_tag(SDp, hostdata->msgin[2]);
1102 if(unlikely(SCp == NULL)) {
1103 printk(KERN_ERR "scsi%d: (%d:%d) no saved request for tag %d\n",
1104 host->host_no, reselection_id, lun, hostdata->msgin[2]);
1105 BUG();
1106 }
1107
1108 slot = (struct NCR_700_command_slot *)SCp->host_scribble;
Jeff Garzik017560f2005-10-24 18:04:36 -04001109 DDEBUG(KERN_DEBUG, SDp,
1110 "reselection is tag %d, slot %p(%d)\n",
1111 hostdata->msgin[2], slot, slot->tag);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001112 } else {
1113 struct scsi_cmnd *SCp = scsi_find_tag(SDp, SCSI_NO_TAG);
1114 if(unlikely(SCp == NULL)) {
Jeff Garzik017560f2005-10-24 18:04:36 -04001115 sdev_printk(KERN_ERR, SDp,
1116 "no saved request for untagged cmd\n");
Linus Torvalds1da177e2005-04-16 15:20:36 -07001117 BUG();
1118 }
1119 slot = (struct NCR_700_command_slot *)SCp->host_scribble;
1120 }
1121
1122 if(slot == NULL) {
1123 printk(KERN_ERR "scsi%d: (%d:%d) RESELECTED but no saved command (MSG = %02x %02x %02x)!!\n",
1124 host->host_no, reselection_id, lun,
1125 hostdata->msgin[0], hostdata->msgin[1],
1126 hostdata->msgin[2]);
1127 } else {
1128 if(hostdata->state != NCR_700_HOST_BUSY)
1129 printk(KERN_ERR "scsi%d: FATAL, host not busy during valid reselection!\n",
1130 host->host_no);
1131 resume_offset = slot->resume_offset;
1132 hostdata->cmd = slot->cmnd;
1133
1134 /* re-patch for this command */
1135 script_patch_32_abs(hostdata->script, CommandAddress,
1136 slot->pCmd);
1137 script_patch_16(hostdata->script,
1138 CommandCount, slot->cmnd->cmd_len);
1139 script_patch_32_abs(hostdata->script, SGScriptStartAddress,
1140 to32bit(&slot->pSG[0].ins));
1141
1142 /* Note: setting SXFER only works if we're
1143 * still in the MESSAGE phase, so it is vital
1144 * that ACK is still asserted when we process
1145 * the reselection message. The resume offset
1146 * should therefore always clear ACK */
1147 NCR_700_writeb(NCR_700_get_SXFER(hostdata->cmd->device),
1148 host, SXFER_REG);
1149 dma_cache_sync(hostdata->msgin,
1150 MSG_ARRAY_SIZE, DMA_FROM_DEVICE);
1151 dma_cache_sync(hostdata->msgout,
1152 MSG_ARRAY_SIZE, DMA_TO_DEVICE);
1153 /* I'm just being paranoid here, the command should
1154 * already have been flushed from the cache */
1155 dma_cache_sync(slot->cmnd->cmnd,
1156 slot->cmnd->cmd_len, DMA_TO_DEVICE);
1157
1158
1159
1160 }
1161 } else if(dsps == A_RESELECTED_DURING_SELECTION) {
1162
1163 /* This section is full of debugging code because I've
1164 * never managed to reach it. I think what happens is
1165 * that, because the 700 runs with selection
1166 * interrupts enabled the whole time that we take a
1167 * selection interrupt before we manage to get to the
1168 * reselected script interrupt */
1169
1170 __u8 reselection_id = NCR_700_readb(host, SFBR_REG);
1171 struct NCR_700_command_slot *slot;
1172
1173 /* Take out our own ID */
1174 reselection_id &= ~(1<<host->this_id);
1175
1176 /* I've never seen this happen, so keep this as a printk rather
1177 * than a debug */
1178 printk(KERN_INFO "scsi%d: (%d:%d) RESELECTION DURING SELECTION, dsp=%08x[%04x] state=%d, count=%d\n",
1179 host->host_no, reselection_id, lun, dsp, dsp - hostdata->pScript, hostdata->state, hostdata->command_slot_count);
1180
1181 {
1182 /* FIXME: DEBUGGING CODE */
1183 __u32 SG = (__u32)bS_to_cpu(hostdata->script[A_SGScriptStartAddress_used[0]]);
1184 int i;
1185
1186 for(i=0; i< NCR_700_COMMAND_SLOTS_PER_HOST; i++) {
1187 if(SG >= to32bit(&hostdata->slots[i].pSG[0])
1188 && SG <= to32bit(&hostdata->slots[i].pSG[NCR_700_SG_SEGMENTS]))
1189 break;
1190 }
1191 printk(KERN_INFO "IDENTIFIED SG segment as being %08x in slot %p, cmd %p, slot->resume_offset=%08x\n", SG, &hostdata->slots[i], hostdata->slots[i].cmnd, hostdata->slots[i].resume_offset);
1192 SCp = hostdata->slots[i].cmnd;
1193 }
1194
1195 if(SCp != NULL) {
1196 slot = (struct NCR_700_command_slot *)SCp->host_scribble;
1197 /* change slot from busy to queued to redo command */
1198 slot->state = NCR_700_SLOT_QUEUED;
1199 }
1200 hostdata->cmd = NULL;
1201
1202 if(reselection_id == 0) {
1203 if(hostdata->reselection_id == 0xff) {
1204 printk(KERN_ERR "scsi%d: Invalid reselection during selection!!\n", host->host_no);
1205 return 0;
1206 } else {
1207 printk(KERN_ERR "scsi%d: script reselected and we took a selection interrupt\n",
1208 host->host_no);
1209 reselection_id = hostdata->reselection_id;
1210 }
1211 } else {
1212
1213 /* convert to real ID */
1214 reselection_id = bitmap_to_number(reselection_id);
1215 }
1216 hostdata->reselection_id = reselection_id;
1217 /* just in case we have a stale simple tag message, clear it */
1218 hostdata->msgin[1] = 0;
1219 dma_cache_sync(hostdata->msgin,
1220 MSG_ARRAY_SIZE, DMA_BIDIRECTIONAL);
1221 if(hostdata->tag_negotiated & (1<<reselection_id)) {
1222 resume_offset = hostdata->pScript + Ent_GetReselectionWithTag;
1223 } else {
1224 resume_offset = hostdata->pScript + Ent_GetReselectionData;
1225 }
1226 } else if(dsps == A_COMPLETED_SELECTION_AS_TARGET) {
1227 /* we've just disconnected from the bus, do nothing since
1228 * a return here will re-run the queued command slot
1229 * that may have been interrupted by the initial selection */
1230 DEBUG((" SELECTION COMPLETED\n"));
1231 } else if((dsps & 0xfffff0f0) == A_MSG_IN) {
1232 resume_offset = process_message(host, hostdata, SCp,
1233 dsp, dsps);
1234 } else if((dsps & 0xfffff000) == 0) {
1235 __u8 i = (dsps & 0xf0) >> 4, j = (dsps & 0xf00) >> 8;
1236 printk(KERN_ERR "scsi%d: (%d:%d), unhandled script condition %s %s at %04x\n",
1237 host->host_no, pun, lun, NCR_700_condition[i],
1238 NCR_700_phase[j], dsp - hostdata->pScript);
1239 if(SCp != NULL) {
1240 scsi_print_command(SCp);
1241
1242 if(SCp->use_sg) {
1243 for(i = 0; i < SCp->use_sg + 1; i++) {
James Bottomley67d59df2006-06-13 21:31:19 -05001244 printk(KERN_INFO " SG[%d].length = %d, move_insn=%08x, addr %08x\n", i, ((struct scatterlist *)SCp->request_buffer)[i].length, ((struct NCR_700_command_slot *)SCp->host_scribble)->SG[i].ins, ((struct NCR_700_command_slot *)SCp->host_scribble)->SG[i].pAddr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001245 }
1246 }
1247 }
1248 NCR_700_internal_bus_reset(host);
1249 } else if((dsps & 0xfffff000) == A_DEBUG_INTERRUPT) {
1250 printk(KERN_NOTICE "scsi%d (%d:%d) DEBUG INTERRUPT %d AT %08x[%04x], continuing\n",
1251 host->host_no, pun, lun, dsps & 0xfff, dsp, dsp - hostdata->pScript);
1252 resume_offset = dsp;
1253 } else {
1254 printk(KERN_ERR "scsi%d: (%d:%d), unidentified script interrupt 0x%x at %04x\n",
1255 host->host_no, pun, lun, dsps, dsp - hostdata->pScript);
1256 NCR_700_internal_bus_reset(host);
1257 }
1258 return resume_offset;
1259}
1260
1261/* We run the 53c700 with selection interrupts always enabled. This
1262 * means that the chip may be selected as soon as the bus frees. On a
1263 * busy bus, this can be before the scripts engine finishes its
1264 * processing. Therefore, part of the selection processing has to be
1265 * to find out what the scripts engine is doing and complete the
1266 * function if necessary (i.e. process the pending disconnect or save
1267 * the interrupted initial selection */
1268STATIC inline __u32
1269process_selection(struct Scsi_Host *host, __u32 dsp)
1270{
1271 __u8 id = 0; /* Squash compiler warning */
1272 int count = 0;
1273 __u32 resume_offset = 0;
1274 struct NCR_700_Host_Parameters *hostdata =
1275 (struct NCR_700_Host_Parameters *)host->hostdata[0];
1276 struct scsi_cmnd *SCp = hostdata->cmd;
1277 __u8 sbcl;
1278
1279 for(count = 0; count < 5; count++) {
1280 id = NCR_700_readb(host, hostdata->chip710 ?
1281 CTEST9_REG : SFBR_REG);
1282
1283 /* Take out our own ID */
1284 id &= ~(1<<host->this_id);
1285 if(id != 0)
1286 break;
1287 udelay(5);
1288 }
1289 sbcl = NCR_700_readb(host, SBCL_REG);
1290 if((sbcl & SBCL_IO) == 0) {
1291 /* mark as having been selected rather than reselected */
1292 id = 0xff;
1293 } else {
1294 /* convert to real ID */
1295 hostdata->reselection_id = id = bitmap_to_number(id);
1296 DEBUG(("scsi%d: Reselected by %d\n",
1297 host->host_no, id));
1298 }
1299 if(hostdata->state == NCR_700_HOST_BUSY && SCp != NULL) {
1300 struct NCR_700_command_slot *slot =
1301 (struct NCR_700_command_slot *)SCp->host_scribble;
1302 DEBUG((" ID %d WARNING: RESELECTION OF BUSY HOST, saving cmd %p, slot %p, addr %x [%04x], resume %x!\n", id, hostdata->cmd, slot, dsp, dsp - hostdata->pScript, resume_offset));
1303
1304 switch(dsp - hostdata->pScript) {
1305 case Ent_Disconnect1:
1306 case Ent_Disconnect2:
1307 save_for_reselection(hostdata, SCp, Ent_Disconnect2 + hostdata->pScript);
1308 break;
1309 case Ent_Disconnect3:
1310 case Ent_Disconnect4:
1311 save_for_reselection(hostdata, SCp, Ent_Disconnect4 + hostdata->pScript);
1312 break;
1313 case Ent_Disconnect5:
1314 case Ent_Disconnect6:
1315 save_for_reselection(hostdata, SCp, Ent_Disconnect6 + hostdata->pScript);
1316 break;
1317 case Ent_Disconnect7:
1318 case Ent_Disconnect8:
1319 save_for_reselection(hostdata, SCp, Ent_Disconnect8 + hostdata->pScript);
1320 break;
1321 case Ent_Finish1:
1322 case Ent_Finish2:
1323 process_script_interrupt(A_GOOD_STATUS_AFTER_STATUS, dsp, SCp, host, hostdata);
1324 break;
1325
1326 default:
1327 slot->state = NCR_700_SLOT_QUEUED;
1328 break;
1329 }
1330 }
1331 hostdata->state = NCR_700_HOST_BUSY;
1332 hostdata->cmd = NULL;
1333 /* clear any stale simple tag message */
1334 hostdata->msgin[1] = 0;
1335 dma_cache_sync(hostdata->msgin, MSG_ARRAY_SIZE,
1336 DMA_BIDIRECTIONAL);
1337
1338 if(id == 0xff) {
1339 /* Selected as target, Ignore */
1340 resume_offset = hostdata->pScript + Ent_SelectedAsTarget;
1341 } else if(hostdata->tag_negotiated & (1<<id)) {
1342 resume_offset = hostdata->pScript + Ent_GetReselectionWithTag;
1343 } else {
1344 resume_offset = hostdata->pScript + Ent_GetReselectionData;
1345 }
1346 return resume_offset;
1347}
1348
1349static inline void
1350NCR_700_clear_fifo(struct Scsi_Host *host) {
1351 const struct NCR_700_Host_Parameters *hostdata
1352 = (struct NCR_700_Host_Parameters *)host->hostdata[0];
1353 if(hostdata->chip710) {
1354 NCR_700_writeb(CLR_FIFO_710, host, CTEST8_REG);
1355 } else {
1356 NCR_700_writeb(CLR_FIFO, host, DFIFO_REG);
1357 }
1358}
1359
1360static inline void
1361NCR_700_flush_fifo(struct Scsi_Host *host) {
1362 const struct NCR_700_Host_Parameters *hostdata
1363 = (struct NCR_700_Host_Parameters *)host->hostdata[0];
1364 if(hostdata->chip710) {
1365 NCR_700_writeb(FLUSH_DMA_FIFO_710, host, CTEST8_REG);
1366 udelay(10);
1367 NCR_700_writeb(0, host, CTEST8_REG);
1368 } else {
1369 NCR_700_writeb(FLUSH_DMA_FIFO, host, DFIFO_REG);
1370 udelay(10);
1371 NCR_700_writeb(0, host, DFIFO_REG);
1372 }
1373}
1374
1375
1376/* The queue lock with interrupts disabled must be held on entry to
1377 * this function */
1378STATIC int
1379NCR_700_start_command(struct scsi_cmnd *SCp)
1380{
1381 struct NCR_700_command_slot *slot =
1382 (struct NCR_700_command_slot *)SCp->host_scribble;
1383 struct NCR_700_Host_Parameters *hostdata =
1384 (struct NCR_700_Host_Parameters *)SCp->device->host->hostdata[0];
1385 __u16 count = 1; /* for IDENTIFY message */
1386
1387 if(hostdata->state != NCR_700_HOST_FREE) {
1388 /* keep this inside the lock to close the race window where
1389 * the running command finishes on another CPU while we don't
1390 * change the state to queued on this one */
1391 slot->state = NCR_700_SLOT_QUEUED;
1392
1393 DEBUG(("scsi%d: host busy, queueing command %p, slot %p\n",
1394 SCp->device->host->host_no, slot->cmnd, slot));
1395 return 0;
1396 }
1397 hostdata->state = NCR_700_HOST_BUSY;
1398 hostdata->cmd = SCp;
1399 slot->state = NCR_700_SLOT_BUSY;
1400 /* keep interrupts disabled until we have the command correctly
1401 * set up so we cannot take a selection interrupt */
1402
James Bottomley67d59df2006-06-13 21:31:19 -05001403 hostdata->msgout[0] = NCR_700_identify((SCp->cmnd[0] != REQUEST_SENSE &&
1404 slot->flags != NCR_700_FLAG_AUTOSENSE),
Linus Torvalds1da177e2005-04-16 15:20:36 -07001405 SCp->device->lun);
1406 /* for INQUIRY or REQUEST_SENSE commands, we cannot be sure
1407 * if the negotiated transfer parameters still hold, so
1408 * always renegotiate them */
James Bottomley67d59df2006-06-13 21:31:19 -05001409 if(SCp->cmnd[0] == INQUIRY || SCp->cmnd[0] == REQUEST_SENSE ||
1410 slot->flags == NCR_700_FLAG_AUTOSENSE) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001411 NCR_700_clear_flag(SCp->device, NCR_700_DEV_NEGOTIATED_SYNC);
1412 }
1413
1414 /* REQUEST_SENSE is asking for contingent I_T_L(_Q) status.
1415 * If a contingent allegiance condition exists, the device
1416 * will refuse all tags, so send the request sense as untagged
1417 * */
Jeff Garzik422c0d62005-10-24 18:05:09 -04001418 if((hostdata->tag_negotiated & (1<<scmd_id(SCp)))
James Bottomley67d59df2006-06-13 21:31:19 -05001419 && (slot->tag != SCSI_NO_TAG && SCp->cmnd[0] != REQUEST_SENSE &&
1420 slot->flags != NCR_700_FLAG_AUTOSENSE)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001421 count += scsi_populate_tag_msg(SCp, &hostdata->msgout[count]);
1422 }
1423
1424 if(hostdata->fast &&
1425 NCR_700_is_flag_clear(SCp->device, NCR_700_DEV_NEGOTIATED_SYNC)) {
Matthew Wilcox6ea3c0b2006-02-07 07:54:46 -07001426 count += spi_populate_sync_msg(&hostdata->msgout[count],
1427 spi_period(SCp->device->sdev_target),
1428 spi_offset(SCp->device->sdev_target));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001429 NCR_700_set_flag(SCp->device, NCR_700_DEV_BEGIN_SYNC_NEGOTIATION);
1430 }
1431
1432 script_patch_16(hostdata->script, MessageCount, count);
1433
1434
1435 script_patch_ID(hostdata->script,
Jeff Garzik422c0d62005-10-24 18:05:09 -04001436 Device_ID, 1<<scmd_id(SCp));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001437
1438 script_patch_32_abs(hostdata->script, CommandAddress,
1439 slot->pCmd);
1440 script_patch_16(hostdata->script, CommandCount, SCp->cmd_len);
1441 /* finally plumb the beginning of the SG list into the script
1442 * */
1443 script_patch_32_abs(hostdata->script, SGScriptStartAddress,
1444 to32bit(&slot->pSG[0].ins));
1445 NCR_700_clear_fifo(SCp->device->host);
1446
1447 if(slot->resume_offset == 0)
1448 slot->resume_offset = hostdata->pScript;
1449 /* now perform all the writebacks and invalidates */
1450 dma_cache_sync(hostdata->msgout, count, DMA_TO_DEVICE);
1451 dma_cache_sync(hostdata->msgin, MSG_ARRAY_SIZE,
1452 DMA_FROM_DEVICE);
1453 dma_cache_sync(SCp->cmnd, SCp->cmd_len, DMA_TO_DEVICE);
1454 dma_cache_sync(hostdata->status, 1, DMA_FROM_DEVICE);
1455
1456 /* set the synchronous period/offset */
1457 NCR_700_writeb(NCR_700_get_SXFER(SCp->device),
1458 SCp->device->host, SXFER_REG);
1459 NCR_700_writel(slot->temp, SCp->device->host, TEMP_REG);
1460 NCR_700_writel(slot->resume_offset, SCp->device->host, DSP_REG);
1461
1462 return 1;
1463}
1464
1465irqreturn_t
1466NCR_700_intr(int irq, void *dev_id, struct pt_regs *regs)
1467{
1468 struct Scsi_Host *host = (struct Scsi_Host *)dev_id;
1469 struct NCR_700_Host_Parameters *hostdata =
1470 (struct NCR_700_Host_Parameters *)host->hostdata[0];
1471 __u8 istat;
1472 __u32 resume_offset = 0;
1473 __u8 pun = 0xff, lun = 0xff;
1474 unsigned long flags;
1475 int handled = 0;
1476
1477 /* Use the host lock to serialise acess to the 53c700
1478 * hardware. Note: In future, we may need to take the queue
1479 * lock to enter the done routines. When that happens, we
1480 * need to ensure that for this driver, the host lock and the
1481 * queue lock point to the same thing. */
1482 spin_lock_irqsave(host->host_lock, flags);
1483 if((istat = NCR_700_readb(host, ISTAT_REG))
1484 & (SCSI_INT_PENDING | DMA_INT_PENDING)) {
1485 __u32 dsps;
1486 __u8 sstat0 = 0, dstat = 0;
1487 __u32 dsp;
1488 struct scsi_cmnd *SCp = hostdata->cmd;
1489 enum NCR_700_Host_State state;
1490
1491 handled = 1;
1492 state = hostdata->state;
1493 SCp = hostdata->cmd;
1494
1495 if(istat & SCSI_INT_PENDING) {
1496 udelay(10);
1497
1498 sstat0 = NCR_700_readb(host, SSTAT0_REG);
1499 }
1500
1501 if(istat & DMA_INT_PENDING) {
1502 udelay(10);
1503
1504 dstat = NCR_700_readb(host, DSTAT_REG);
1505 }
1506
1507 dsps = NCR_700_readl(host, DSPS_REG);
1508 dsp = NCR_700_readl(host, DSP_REG);
1509
1510 DEBUG(("scsi%d: istat %02x sstat0 %02x dstat %02x dsp %04x[%08x] dsps 0x%x\n",
1511 host->host_no, istat, sstat0, dstat,
1512 (dsp - (__u32)(hostdata->pScript))/4,
1513 dsp, dsps));
1514
1515 if(SCp != NULL) {
1516 pun = SCp->device->id;
1517 lun = SCp->device->lun;
1518 }
1519
1520 if(sstat0 & SCSI_RESET_DETECTED) {
1521 struct scsi_device *SDp;
1522 int i;
1523
1524 hostdata->state = NCR_700_HOST_BUSY;
1525
1526 printk(KERN_ERR "scsi%d: Bus Reset detected, executing command %p, slot %p, dsp %08x[%04x]\n",
1527 host->host_no, SCp, SCp == NULL ? NULL : SCp->host_scribble, dsp, dsp - hostdata->pScript);
1528
1529 scsi_report_bus_reset(host, 0);
1530
1531 /* clear all the negotiated parameters */
1532 __shost_for_each_device(SDp, host)
James Bottomley0f13fc02006-06-29 13:02:11 -04001533 NCR_700_clear_flag(SDp, ~0);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001534
1535 /* clear all the slots and their pending commands */
1536 for(i = 0; i < NCR_700_COMMAND_SLOTS_PER_HOST; i++) {
1537 struct scsi_cmnd *SCp;
1538 struct NCR_700_command_slot *slot =
1539 &hostdata->slots[i];
1540
1541 if(slot->state == NCR_700_SLOT_FREE)
1542 continue;
1543
1544 SCp = slot->cmnd;
1545 printk(KERN_ERR " failing command because of reset, slot %p, cmnd %p\n",
1546 slot, SCp);
1547 free_slot(slot, hostdata);
1548 SCp->host_scribble = NULL;
1549 NCR_700_set_depth(SCp->device, 0);
1550 /* NOTE: deadlock potential here: we
1551 * rely on mid-layer guarantees that
1552 * scsi_done won't try to issue the
1553 * command again otherwise we'll
1554 * deadlock on the
1555 * hostdata->state_lock */
1556 SCp->result = DID_RESET << 16;
1557 SCp->scsi_done(SCp);
1558 }
1559 mdelay(25);
1560 NCR_700_chip_setup(host);
1561
1562 hostdata->state = NCR_700_HOST_FREE;
1563 hostdata->cmd = NULL;
1564 /* signal back if this was an eh induced reset */
1565 if(hostdata->eh_complete != NULL)
1566 complete(hostdata->eh_complete);
1567 goto out_unlock;
1568 } else if(sstat0 & SELECTION_TIMEOUT) {
1569 DEBUG(("scsi%d: (%d:%d) selection timeout\n",
1570 host->host_no, pun, lun));
1571 NCR_700_scsi_done(hostdata, SCp, DID_NO_CONNECT<<16);
1572 } else if(sstat0 & PHASE_MISMATCH) {
1573 struct NCR_700_command_slot *slot = (SCp == NULL) ? NULL :
1574 (struct NCR_700_command_slot *)SCp->host_scribble;
1575
1576 if(dsp == Ent_SendMessage + 8 + hostdata->pScript) {
1577 /* It wants to reply to some part of
1578 * our message */
1579#ifdef NCR_700_DEBUG
1580 __u32 temp = NCR_700_readl(host, TEMP_REG);
1581 int count = (hostdata->script[Ent_SendMessage/4] & 0xffffff) - ((NCR_700_readl(host, DBC_REG) & 0xffffff) + NCR_700_data_residual(host));
1582 printk("scsi%d (%d:%d) PHASE MISMATCH IN SEND MESSAGE %d remain, return %p[%04x], phase %s\n", host->host_no, pun, lun, count, (void *)temp, temp - hostdata->pScript, sbcl_to_string(NCR_700_readb(host, SBCL_REG)));
1583#endif
1584 resume_offset = hostdata->pScript + Ent_SendMessagePhaseMismatch;
1585 } else if(dsp >= to32bit(&slot->pSG[0].ins) &&
1586 dsp <= to32bit(&slot->pSG[NCR_700_SG_SEGMENTS].ins)) {
1587 int data_transfer = NCR_700_readl(host, DBC_REG) & 0xffffff;
1588 int SGcount = (dsp - to32bit(&slot->pSG[0].ins))/sizeof(struct NCR_700_SG_List);
1589 int residual = NCR_700_data_residual(host);
1590 int i;
1591#ifdef NCR_700_DEBUG
1592 __u32 naddr = NCR_700_readl(host, DNAD_REG);
1593
1594 printk("scsi%d: (%d:%d) Expected phase mismatch in slot->SG[%d], transferred 0x%x\n",
1595 host->host_no, pun, lun,
1596 SGcount, data_transfer);
1597 scsi_print_command(SCp);
1598 if(residual) {
1599 printk("scsi%d: (%d:%d) Expected phase mismatch in slot->SG[%d], transferred 0x%x, residual %d\n",
1600 host->host_no, pun, lun,
1601 SGcount, data_transfer, residual);
1602 }
1603#endif
1604 data_transfer += residual;
1605
1606 if(data_transfer != 0) {
1607 int count;
1608 __u32 pAddr;
1609
1610 SGcount--;
1611
1612 count = (bS_to_cpu(slot->SG[SGcount].ins) & 0x00ffffff);
1613 DEBUG(("DATA TRANSFER MISMATCH, count = %d, transferred %d\n", count, count-data_transfer));
1614 slot->SG[SGcount].ins &= bS_to_host(0xff000000);
1615 slot->SG[SGcount].ins |= bS_to_host(data_transfer);
1616 pAddr = bS_to_cpu(slot->SG[SGcount].pAddr);
1617 pAddr += (count - data_transfer);
1618#ifdef NCR_700_DEBUG
1619 if(pAddr != naddr) {
1620 printk("scsi%d (%d:%d) transfer mismatch pAddr=%lx, naddr=%lx, data_transfer=%d, residual=%d\n", host->host_no, pun, lun, (unsigned long)pAddr, (unsigned long)naddr, data_transfer, residual);
1621 }
1622#endif
1623 slot->SG[SGcount].pAddr = bS_to_host(pAddr);
1624 }
1625 /* set the executed moves to nops */
1626 for(i=0; i<SGcount; i++) {
1627 slot->SG[i].ins = bS_to_host(SCRIPT_NOP);
1628 slot->SG[i].pAddr = 0;
1629 }
1630 dma_cache_sync(slot->SG, sizeof(slot->SG), DMA_TO_DEVICE);
1631 /* and pretend we disconnected after
1632 * the command phase */
1633 resume_offset = hostdata->pScript + Ent_MsgInDuringData;
1634 /* make sure all the data is flushed */
1635 NCR_700_flush_fifo(host);
1636 } else {
1637 __u8 sbcl = NCR_700_readb(host, SBCL_REG);
1638 printk(KERN_ERR "scsi%d: (%d:%d) phase mismatch at %04x, phase %s\n",
1639 host->host_no, pun, lun, dsp - hostdata->pScript, sbcl_to_string(sbcl));
1640 NCR_700_internal_bus_reset(host);
1641 }
1642
1643 } else if(sstat0 & SCSI_GROSS_ERROR) {
1644 printk(KERN_ERR "scsi%d: (%d:%d) GROSS ERROR\n",
1645 host->host_no, pun, lun);
1646 NCR_700_scsi_done(hostdata, SCp, DID_ERROR<<16);
1647 } else if(sstat0 & PARITY_ERROR) {
1648 printk(KERN_ERR "scsi%d: (%d:%d) PARITY ERROR\n",
1649 host->host_no, pun, lun);
1650 NCR_700_scsi_done(hostdata, SCp, DID_ERROR<<16);
1651 } else if(dstat & SCRIPT_INT_RECEIVED) {
1652 DEBUG(("scsi%d: (%d:%d) ====>SCRIPT INTERRUPT<====\n",
1653 host->host_no, pun, lun));
1654 resume_offset = process_script_interrupt(dsps, dsp, SCp, host, hostdata);
1655 } else if(dstat & (ILGL_INST_DETECTED)) {
1656 printk(KERN_ERR "scsi%d: (%d:%d) Illegal Instruction detected at 0x%08x[0x%x]!!!\n"
1657 " Please email James.Bottomley@HansenPartnership.com with the details\n",
1658 host->host_no, pun, lun,
1659 dsp, dsp - hostdata->pScript);
1660 NCR_700_scsi_done(hostdata, SCp, DID_ERROR<<16);
1661 } else if(dstat & (WATCH_DOG_INTERRUPT|ABORTED)) {
1662 printk(KERN_ERR "scsi%d: (%d:%d) serious DMA problem, dstat=%02x\n",
1663 host->host_no, pun, lun, dstat);
1664 NCR_700_scsi_done(hostdata, SCp, DID_ERROR<<16);
1665 }
1666
1667
1668 /* NOTE: selection interrupt processing MUST occur
1669 * after script interrupt processing to correctly cope
1670 * with the case where we process a disconnect and
1671 * then get reselected before we process the
1672 * disconnection */
1673 if(sstat0 & SELECTED) {
1674 /* FIXME: It currently takes at least FOUR
1675 * interrupts to complete a command that
1676 * disconnects: one for the disconnect, one
1677 * for the reselection, one to get the
1678 * reselection data and one to complete the
1679 * command. If we guess the reselected
1680 * command here and prepare it, we only need
1681 * to get a reselection data interrupt if we
1682 * guessed wrongly. Since the interrupt
1683 * overhead is much greater than the command
1684 * setup, this would be an efficient
1685 * optimisation particularly as we probably
1686 * only have one outstanding command on a
1687 * target most of the time */
1688
1689 resume_offset = process_selection(host, dsp);
1690
1691 }
1692
1693 }
1694
1695 if(resume_offset) {
1696 if(hostdata->state != NCR_700_HOST_BUSY) {
1697 printk(KERN_ERR "scsi%d: Driver error: resume at 0x%08x [0x%04x] with non busy host!\n",
1698 host->host_no, resume_offset, resume_offset - hostdata->pScript);
1699 hostdata->state = NCR_700_HOST_BUSY;
1700 }
1701
1702 DEBUG(("Attempting to resume at %x\n", resume_offset));
1703 NCR_700_clear_fifo(host);
1704 NCR_700_writel(resume_offset, host, DSP_REG);
1705 }
1706 /* There is probably a technical no-no about this: If we're a
1707 * shared interrupt and we got this interrupt because the
1708 * other device needs servicing not us, we're still going to
1709 * check our queued commands here---of course, there shouldn't
1710 * be any outstanding.... */
1711 if(hostdata->state == NCR_700_HOST_FREE) {
1712 int i;
1713
1714 for(i = 0; i < NCR_700_COMMAND_SLOTS_PER_HOST; i++) {
1715 /* fairness: always run the queue from the last
1716 * position we left off */
1717 int j = (i + hostdata->saved_slot_position)
1718 % NCR_700_COMMAND_SLOTS_PER_HOST;
1719
1720 if(hostdata->slots[j].state != NCR_700_SLOT_QUEUED)
1721 continue;
1722 if(NCR_700_start_command(hostdata->slots[j].cmnd)) {
1723 DEBUG(("scsi%d: Issuing saved command slot %p, cmd %p\t\n",
1724 host->host_no, &hostdata->slots[j],
1725 hostdata->slots[j].cmnd));
1726 hostdata->saved_slot_position = j + 1;
1727 }
1728
1729 break;
1730 }
1731 }
1732 out_unlock:
1733 spin_unlock_irqrestore(host->host_lock, flags);
1734 return IRQ_RETVAL(handled);
1735}
1736
1737STATIC int
1738NCR_700_queuecommand(struct scsi_cmnd *SCp, void (*done)(struct scsi_cmnd *))
1739{
1740 struct NCR_700_Host_Parameters *hostdata =
1741 (struct NCR_700_Host_Parameters *)SCp->device->host->hostdata[0];
1742 __u32 move_ins;
1743 enum dma_data_direction direction;
1744 struct NCR_700_command_slot *slot;
1745
1746 if(hostdata->command_slot_count >= NCR_700_COMMAND_SLOTS_PER_HOST) {
1747 /* We're over our allocation, this should never happen
1748 * since we report the max allocation to the mid layer */
1749 printk(KERN_WARNING "scsi%d: Command depth has gone over queue depth\n", SCp->device->host->host_no);
1750 return 1;
1751 }
1752 /* check for untagged commands. We cannot have any outstanding
1753 * commands if we accept them. Commands could be untagged because:
1754 *
1755 * - The tag negotiated bitmap is clear
1756 * - The blk layer sent and untagged command
1757 */
1758 if(NCR_700_get_depth(SCp->device) != 0
Jeff Garzik017560f2005-10-24 18:04:36 -04001759 && (!(hostdata->tag_negotiated & (1<<scmd_id(SCp)))
Linus Torvalds1da177e2005-04-16 15:20:36 -07001760 || !blk_rq_tagged(SCp->request))) {
Jeff Garzik017560f2005-10-24 18:04:36 -04001761 CDEBUG(KERN_ERR, SCp, "has non zero depth %d\n",
1762 NCR_700_get_depth(SCp->device));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001763 return SCSI_MLQUEUE_DEVICE_BUSY;
1764 }
1765 if(NCR_700_get_depth(SCp->device) >= SCp->device->queue_depth) {
Jeff Garzik017560f2005-10-24 18:04:36 -04001766 CDEBUG(KERN_ERR, SCp, "has max tag depth %d\n",
1767 NCR_700_get_depth(SCp->device));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001768 return SCSI_MLQUEUE_DEVICE_BUSY;
1769 }
1770 NCR_700_set_depth(SCp->device, NCR_700_get_depth(SCp->device) + 1);
1771
1772 /* begin the command here */
1773 /* no need to check for NULL, test for command_slot_count above
1774 * ensures a slot is free */
1775 slot = find_empty_slot(hostdata);
1776
1777 slot->cmnd = SCp;
1778
1779 SCp->scsi_done = done;
1780 SCp->host_scribble = (unsigned char *)slot;
1781 SCp->SCp.ptr = NULL;
1782 SCp->SCp.buffer = NULL;
1783
1784#ifdef NCR_700_DEBUG
1785 printk("53c700: scsi%d, command ", SCp->device->host->host_no);
1786 scsi_print_command(SCp);
1787#endif
1788 if(blk_rq_tagged(SCp->request)
Jeff Garzik017560f2005-10-24 18:04:36 -04001789 && (hostdata->tag_negotiated &(1<<scmd_id(SCp))) == 0
Linus Torvalds1da177e2005-04-16 15:20:36 -07001790 && NCR_700_get_tag_neg_state(SCp->device) == NCR_700_START_TAG_NEGOTIATION) {
Jeff Garzik017560f2005-10-24 18:04:36 -04001791 scmd_printk(KERN_ERR, SCp, "Enabling Tag Command Queuing\n");
1792 hostdata->tag_negotiated |= (1<<scmd_id(SCp));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001793 NCR_700_set_tag_neg_state(SCp->device, NCR_700_DURING_TAG_NEGOTIATION);
1794 }
1795
1796 /* here we may have to process an untagged command. The gate
1797 * above ensures that this will be the only one outstanding,
1798 * so clear the tag negotiated bit.
1799 *
1800 * FIXME: This will royally screw up on multiple LUN devices
1801 * */
1802 if(!blk_rq_tagged(SCp->request)
Jeff Garzik017560f2005-10-24 18:04:36 -04001803 && (hostdata->tag_negotiated &(1<<scmd_id(SCp)))) {
1804 scmd_printk(KERN_INFO, SCp, "Disabling Tag Command Queuing\n");
1805 hostdata->tag_negotiated &= ~(1<<scmd_id(SCp));
Linus Torvalds1da177e2005-04-16 15:20:36 -07001806 }
1807
Jeff Garzik017560f2005-10-24 18:04:36 -04001808 if((hostdata->tag_negotiated &(1<<scmd_id(SCp)))
Linus Torvalds1da177e2005-04-16 15:20:36 -07001809 && scsi_get_tag_type(SCp->device)) {
1810 slot->tag = SCp->request->tag;
Jeff Garzik017560f2005-10-24 18:04:36 -04001811 CDEBUG(KERN_DEBUG, SCp, "sending out tag %d, slot %p\n",
1812 slot->tag, slot);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001813 } else {
1814 slot->tag = SCSI_NO_TAG;
1815 /* must populate current_cmnd for scsi_find_tag to work */
1816 SCp->device->current_cmnd = SCp;
1817 }
1818 /* sanity check: some of the commands generated by the mid-layer
1819 * have an eccentric idea of their sc_data_direction */
1820 if(!SCp->use_sg && !SCp->request_bufflen
1821 && SCp->sc_data_direction != DMA_NONE) {
1822#ifdef NCR_700_DEBUG
1823 printk("53c700: Command");
1824 scsi_print_command(SCp);
1825 printk("Has wrong data direction %d\n", SCp->sc_data_direction);
1826#endif
1827 SCp->sc_data_direction = DMA_NONE;
1828 }
1829
1830 switch (SCp->cmnd[0]) {
1831 case REQUEST_SENSE:
1832 /* clear the internal sense magic */
1833 SCp->cmnd[6] = 0;
1834 /* fall through */
1835 default:
1836 /* OK, get it from the command */
1837 switch(SCp->sc_data_direction) {
1838 case DMA_BIDIRECTIONAL:
1839 default:
1840 printk(KERN_ERR "53c700: Unknown command for data direction ");
1841 scsi_print_command(SCp);
1842
1843 move_ins = 0;
1844 break;
1845 case DMA_NONE:
1846 move_ins = 0;
1847 break;
1848 case DMA_FROM_DEVICE:
1849 move_ins = SCRIPT_MOVE_DATA_IN;
1850 break;
1851 case DMA_TO_DEVICE:
1852 move_ins = SCRIPT_MOVE_DATA_OUT;
1853 break;
1854 }
1855 }
1856
1857 /* now build the scatter gather list */
1858 direction = SCp->sc_data_direction;
1859 if(move_ins != 0) {
1860 int i;
1861 int sg_count;
1862 dma_addr_t vPtr = 0;
1863 __u32 count = 0;
1864
1865 if(SCp->use_sg) {
James Bottomley67d59df2006-06-13 21:31:19 -05001866 sg_count = dma_map_sg(hostdata->dev,
1867 SCp->request_buffer, SCp->use_sg,
1868 direction);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001869 } else {
1870 vPtr = dma_map_single(hostdata->dev,
1871 SCp->request_buffer,
1872 SCp->request_bufflen,
1873 direction);
1874 count = SCp->request_bufflen;
1875 slot->dma_handle = vPtr;
1876 sg_count = 1;
1877 }
1878
1879
1880 for(i = 0; i < sg_count; i++) {
1881
1882 if(SCp->use_sg) {
James Bottomley67d59df2006-06-13 21:31:19 -05001883 struct scatterlist *sg = SCp->request_buffer;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001884
1885 vPtr = sg_dma_address(&sg[i]);
1886 count = sg_dma_len(&sg[i]);
1887 }
1888
1889 slot->SG[i].ins = bS_to_host(move_ins | count);
1890 DEBUG((" scatter block %d: move %d[%08x] from 0x%lx\n",
1891 i, count, slot->SG[i].ins, (unsigned long)vPtr));
1892 slot->SG[i].pAddr = bS_to_host(vPtr);
1893 }
1894 slot->SG[i].ins = bS_to_host(SCRIPT_RETURN);
1895 slot->SG[i].pAddr = 0;
1896 dma_cache_sync(slot->SG, sizeof(slot->SG), DMA_TO_DEVICE);
1897 DEBUG((" SETTING %08lx to %x\n",
1898 (&slot->pSG[i].ins),
1899 slot->SG[i].ins));
1900 }
1901 slot->resume_offset = 0;
1902 slot->pCmd = dma_map_single(hostdata->dev, SCp->cmnd,
1903 sizeof(SCp->cmnd), DMA_TO_DEVICE);
1904 NCR_700_start_command(SCp);
1905 return 0;
1906}
1907
1908STATIC int
1909NCR_700_abort(struct scsi_cmnd * SCp)
1910{
1911 struct NCR_700_command_slot *slot;
1912
Jeff Garzik017560f2005-10-24 18:04:36 -04001913 scmd_printk(KERN_INFO, SCp,
1914 "New error handler wants to abort command\n\t");
Linus Torvalds1da177e2005-04-16 15:20:36 -07001915 scsi_print_command(SCp);
1916
1917 slot = (struct NCR_700_command_slot *)SCp->host_scribble;
1918
1919 if(slot == NULL)
1920 /* no outstanding command to abort */
1921 return SUCCESS;
1922 if(SCp->cmnd[0] == TEST_UNIT_READY) {
1923 /* FIXME: This is because of a problem in the new
1924 * error handler. When it is in error recovery, it
1925 * will send a TUR to a device it thinks may still be
1926 * showing a problem. If the TUR isn't responded to,
1927 * it will abort it and mark the device off line.
1928 * Unfortunately, it does no other error recovery, so
1929 * this would leave us with an outstanding command
1930 * occupying a slot. Rather than allow this to
1931 * happen, we issue a bus reset to force all
1932 * outstanding commands to terminate here. */
1933 NCR_700_internal_bus_reset(SCp->device->host);
1934 /* still drop through and return failed */
1935 }
1936 return FAILED;
1937
1938}
1939
1940STATIC int
1941NCR_700_bus_reset(struct scsi_cmnd * SCp)
1942{
1943 DECLARE_COMPLETION(complete);
1944 struct NCR_700_Host_Parameters *hostdata =
1945 (struct NCR_700_Host_Parameters *)SCp->device->host->hostdata[0];
1946
Jeff Garzik017560f2005-10-24 18:04:36 -04001947 scmd_printk(KERN_INFO, SCp,
1948 "New error handler wants BUS reset, cmd %p\n\t", SCp);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001949 scsi_print_command(SCp);
Jeff Garzik 68b3aa72005-05-28 07:56:31 -04001950
Linus Torvalds1da177e2005-04-16 15:20:36 -07001951 /* In theory, eh_complete should always be null because the
1952 * eh is single threaded, but just in case we're handling a
1953 * reset via sg or something */
Jeff Garzik 68b3aa72005-05-28 07:56:31 -04001954 spin_lock_irq(SCp->device->host->host_lock);
1955 while (hostdata->eh_complete != NULL) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001956 spin_unlock_irq(SCp->device->host->host_lock);
1957 msleep_interruptible(100);
1958 spin_lock_irq(SCp->device->host->host_lock);
1959 }
Jeff Garzik 68b3aa72005-05-28 07:56:31 -04001960
Linus Torvalds1da177e2005-04-16 15:20:36 -07001961 hostdata->eh_complete = &complete;
1962 NCR_700_internal_bus_reset(SCp->device->host);
Jeff Garzik 68b3aa72005-05-28 07:56:31 -04001963
Linus Torvalds1da177e2005-04-16 15:20:36 -07001964 spin_unlock_irq(SCp->device->host->host_lock);
1965 wait_for_completion(&complete);
1966 spin_lock_irq(SCp->device->host->host_lock);
Jeff Garzik 68b3aa72005-05-28 07:56:31 -04001967
Linus Torvalds1da177e2005-04-16 15:20:36 -07001968 hostdata->eh_complete = NULL;
1969 /* Revalidate the transport parameters of the failing device */
1970 if(hostdata->fast)
1971 spi_schedule_dv_device(SCp->device);
Jeff Garzik 68b3aa72005-05-28 07:56:31 -04001972
1973 spin_unlock_irq(SCp->device->host->host_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001974 return SUCCESS;
1975}
1976
1977STATIC int
Linus Torvalds1da177e2005-04-16 15:20:36 -07001978NCR_700_host_reset(struct scsi_cmnd * SCp)
1979{
Jeff Garzik017560f2005-10-24 18:04:36 -04001980 scmd_printk(KERN_INFO, SCp, "New error handler wants HOST reset\n\t");
Linus Torvalds1da177e2005-04-16 15:20:36 -07001981 scsi_print_command(SCp);
1982
Jeff Garzik df0ae242005-05-28 07:57:14 -04001983 spin_lock_irq(SCp->device->host->host_lock);
1984
Linus Torvalds1da177e2005-04-16 15:20:36 -07001985 NCR_700_internal_bus_reset(SCp->device->host);
1986 NCR_700_chip_reset(SCp->device->host);
Jeff Garzik df0ae242005-05-28 07:57:14 -04001987
1988 spin_unlock_irq(SCp->device->host->host_lock);
1989
Linus Torvalds1da177e2005-04-16 15:20:36 -07001990 return SUCCESS;
1991}
1992
1993STATIC void
1994NCR_700_set_period(struct scsi_target *STp, int period)
1995{
1996 struct Scsi_Host *SHp = dev_to_shost(STp->dev.parent);
1997 struct NCR_700_Host_Parameters *hostdata =
1998 (struct NCR_700_Host_Parameters *)SHp->hostdata[0];
1999
2000 if(!hostdata->fast)
2001 return;
2002
2003 if(period < hostdata->min_period)
2004 period = hostdata->min_period;
2005
2006 spi_period(STp) = period;
2007 spi_flags(STp) &= ~(NCR_700_DEV_NEGOTIATED_SYNC |
2008 NCR_700_DEV_BEGIN_SYNC_NEGOTIATION);
2009 spi_flags(STp) |= NCR_700_DEV_PRINT_SYNC_NEGOTIATION;
2010}
2011
2012STATIC void
2013NCR_700_set_offset(struct scsi_target *STp, int offset)
2014{
2015 struct Scsi_Host *SHp = dev_to_shost(STp->dev.parent);
2016 struct NCR_700_Host_Parameters *hostdata =
2017 (struct NCR_700_Host_Parameters *)SHp->hostdata[0];
2018 int max_offset = hostdata->chip710
2019 ? NCR_710_MAX_OFFSET : NCR_700_MAX_OFFSET;
2020
2021 if(!hostdata->fast)
2022 return;
2023
2024 if(offset > max_offset)
2025 offset = max_offset;
2026
2027 /* if we're currently async, make sure the period is reasonable */
2028 if(spi_offset(STp) == 0 && (spi_period(STp) < hostdata->min_period ||
2029 spi_period(STp) > 0xff))
2030 spi_period(STp) = hostdata->min_period;
2031
2032 spi_offset(STp) = offset;
2033 spi_flags(STp) &= ~(NCR_700_DEV_NEGOTIATED_SYNC |
2034 NCR_700_DEV_BEGIN_SYNC_NEGOTIATION);
2035 spi_flags(STp) |= NCR_700_DEV_PRINT_SYNC_NEGOTIATION;
2036}
2037
James Bottomley0f13fc02006-06-29 13:02:11 -04002038STATIC int
2039NCR_700_slave_alloc(struct scsi_device *SDp)
2040{
2041 SDp->hostdata = kzalloc(sizeof(struct NCR_700_Device_Parameters),
2042 GFP_KERNEL);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002043
James Bottomley0f13fc02006-06-29 13:02:11 -04002044 if (!SDp->hostdata)
2045 return -ENOMEM;
2046
2047 return 0;
2048}
Linus Torvalds1da177e2005-04-16 15:20:36 -07002049
2050STATIC int
2051NCR_700_slave_configure(struct scsi_device *SDp)
2052{
2053 struct NCR_700_Host_Parameters *hostdata =
2054 (struct NCR_700_Host_Parameters *)SDp->host->hostdata[0];
2055
2056 /* to do here: allocate memory; build a queue_full list */
2057 if(SDp->tagged_supported) {
2058 scsi_set_tag_type(SDp, MSG_ORDERED_TAG);
2059 scsi_activate_tcq(SDp, NCR_700_DEFAULT_TAGS);
2060 NCR_700_set_tag_neg_state(SDp, NCR_700_START_TAG_NEGOTIATION);
2061 } else {
2062 /* initialise to default depth */
2063 scsi_adjust_queue_depth(SDp, 0, SDp->host->cmd_per_lun);
2064 }
2065 if(hostdata->fast) {
2066 /* Find the correct offset and period via domain validation */
2067 if (!spi_initial_dv(SDp->sdev_target))
2068 spi_dv_device(SDp);
2069 } else {
2070 spi_offset(SDp->sdev_target) = 0;
2071 spi_period(SDp->sdev_target) = 0;
2072 }
2073 return 0;
2074}
2075
2076STATIC void
2077NCR_700_slave_destroy(struct scsi_device *SDp)
2078{
James Bottomley67d59df2006-06-13 21:31:19 -05002079 kfree(SDp->hostdata);
2080 SDp->hostdata = NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002081}
2082
2083static int
2084NCR_700_change_queue_depth(struct scsi_device *SDp, int depth)
2085{
2086 if (depth > NCR_700_MAX_TAGS)
2087 depth = NCR_700_MAX_TAGS;
2088
2089 scsi_adjust_queue_depth(SDp, scsi_get_tag_type(SDp), depth);
2090 return depth;
2091}
2092
2093static int NCR_700_change_queue_type(struct scsi_device *SDp, int tag_type)
2094{
2095 int change_tag = ((tag_type ==0 && scsi_get_tag_type(SDp) != 0)
2096 || (tag_type != 0 && scsi_get_tag_type(SDp) == 0));
2097 struct NCR_700_Host_Parameters *hostdata =
2098 (struct NCR_700_Host_Parameters *)SDp->host->hostdata[0];
2099
2100 scsi_set_tag_type(SDp, tag_type);
2101
2102 /* We have a global (per target) flag to track whether TCQ is
2103 * enabled, so we'll be turning it off for the entire target here.
2104 * our tag algorithm will fail if we mix tagged and untagged commands,
2105 * so quiesce the device before doing this */
2106 if (change_tag)
2107 scsi_target_quiesce(SDp->sdev_target);
2108
2109 if (!tag_type) {
2110 /* shift back to the default unqueued number of commands
2111 * (the user can still raise this) */
2112 scsi_deactivate_tcq(SDp, SDp->host->cmd_per_lun);
Jeff Garzik422c0d62005-10-24 18:05:09 -04002113 hostdata->tag_negotiated &= ~(1 << sdev_id(SDp));
Linus Torvalds1da177e2005-04-16 15:20:36 -07002114 } else {
2115 /* Here, we cleared the negotiation flag above, so this
2116 * will force the driver to renegotiate */
2117 scsi_activate_tcq(SDp, SDp->queue_depth);
2118 if (change_tag)
2119 NCR_700_set_tag_neg_state(SDp, NCR_700_START_TAG_NEGOTIATION);
2120 }
2121 if (change_tag)
2122 scsi_target_resume(SDp->sdev_target);
2123
2124 return tag_type;
2125}
2126
2127static ssize_t
Yani Ioannou10523b32005-05-17 06:43:37 -04002128NCR_700_show_active_tags(struct device *dev, struct device_attribute *attr, char *buf)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002129{
2130 struct scsi_device *SDp = to_scsi_device(dev);
2131
2132 return snprintf(buf, 20, "%d\n", NCR_700_get_depth(SDp));
2133}
2134
2135static struct device_attribute NCR_700_active_tags_attr = {
2136 .attr = {
2137 .name = "active_tags",
2138 .mode = S_IRUGO,
2139 },
2140 .show = NCR_700_show_active_tags,
2141};
2142
2143STATIC struct device_attribute *NCR_700_dev_attrs[] = {
2144 &NCR_700_active_tags_attr,
2145 NULL,
2146};
2147
2148EXPORT_SYMBOL(NCR_700_detect);
2149EXPORT_SYMBOL(NCR_700_release);
2150EXPORT_SYMBOL(NCR_700_intr);
2151
2152static struct spi_function_template NCR_700_transport_functions = {
2153 .set_period = NCR_700_set_period,
2154 .show_period = 1,
2155 .set_offset = NCR_700_set_offset,
2156 .show_offset = 1,
2157};
2158
2159static int __init NCR_700_init(void)
2160{
2161 NCR_700_transport_template = spi_attach_transport(&NCR_700_transport_functions);
2162 if(!NCR_700_transport_template)
2163 return -ENODEV;
2164 return 0;
2165}
2166
2167static void __exit NCR_700_exit(void)
2168{
2169 spi_release_transport(NCR_700_transport_template);
2170}
2171
2172module_init(NCR_700_init);
2173module_exit(NCR_700_exit);
2174