blob: 747dbd1c3c9c6f60e2591ed0f164f01ccc699491 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * sbp2.c - SBP-2 protocol driver for IEEE-1394
3 *
4 * Copyright (C) 2000 James Goodwin, Filanet Corporation (www.filanet.com)
5 * jamesg@filanet.com (JSG)
6 *
7 * Copyright (C) 2003 Ben Collins <bcollins@debian.org>
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software Foundation,
21 * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
22 */
23
24/*
25 * Brief Description:
26 *
27 * This driver implements the Serial Bus Protocol 2 (SBP-2) over IEEE-1394
28 * under Linux. The SBP-2 driver is implemented as an IEEE-1394 high-level
29 * driver. It also registers as a SCSI lower-level driver in order to accept
30 * SCSI commands for transport using SBP-2.
31 *
32 * You may access any attached SBP-2 storage devices as if they were SCSI
33 * devices (e.g. mount /dev/sda1, fdisk, mkfs, etc.).
34 *
35 * Current Issues:
36 *
37 * - Error Handling: SCSI aborts and bus reset requests are handled somewhat
38 * but the code needs additional debugging.
39 */
40
41#include <linux/config.h>
42#include <linux/kernel.h>
43#include <linux/list.h>
44#include <linux/string.h>
45#include <linux/slab.h>
46#include <linux/interrupt.h>
47#include <linux/fs.h>
48#include <linux/poll.h>
49#include <linux/module.h>
50#include <linux/moduleparam.h>
51#include <linux/types.h>
52#include <linux/delay.h>
53#include <linux/sched.h>
54#include <linux/blkdev.h>
55#include <linux/smp_lock.h>
56#include <linux/init.h>
57#include <linux/pci.h>
58
59#include <asm/current.h>
60#include <asm/uaccess.h>
61#include <asm/io.h>
62#include <asm/byteorder.h>
63#include <asm/atomic.h>
64#include <asm/system.h>
65#include <asm/scatterlist.h>
66
67#include <scsi/scsi.h>
68#include <scsi/scsi_cmnd.h>
69#include <scsi/scsi_dbg.h>
70#include <scsi/scsi_device.h>
71#include <scsi/scsi_host.h>
72
73#include "csr1212.h"
74#include "ieee1394.h"
75#include "ieee1394_types.h"
76#include "ieee1394_core.h"
77#include "nodemgr.h"
78#include "hosts.h"
79#include "highlevel.h"
80#include "ieee1394_transactions.h"
81#include "sbp2.h"
82
83static char version[] __devinitdata =
Ben Collins1934b8b2005-07-09 20:01:23 -040084 "$Rev: 1306 $ Ben Collins <bcollins@debian.org>";
Linus Torvalds1da177e2005-04-16 15:20:36 -070085
86/*
87 * Module load parameter definitions
88 */
89
90/*
91 * Change max_speed on module load if you have a bad IEEE-1394
92 * controller that has trouble running 2KB packets at 400mb.
93 *
94 * NOTE: On certain OHCI parts I have seen short packets on async transmit
95 * (probably due to PCI latency/throughput issues with the part). You can
96 * bump down the speed if you are running into problems.
97 */
98static int max_speed = IEEE1394_SPEED_MAX;
99module_param(max_speed, int, 0644);
Jody McIntyre2bab3592005-09-30 11:59:07 -0700100MODULE_PARM_DESC(max_speed, "Force max speed (3 = 800mb, 2 = 400mb, 1 = 200mb, 0 = 100mb)");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700101
102/*
103 * Set serialize_io to 1 if you'd like only one scsi command sent
104 * down to us at a time (debugging). This might be necessary for very
105 * badly behaved sbp2 devices.
Jody McIntyre2bab3592005-09-30 11:59:07 -0700106 *
107 * TODO: Make this configurable per device.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700108 */
Jody McIntyre2bab3592005-09-30 11:59:07 -0700109static int serialize_io = 1;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700110module_param(serialize_io, int, 0444);
Jody McIntyre2bab3592005-09-30 11:59:07 -0700111MODULE_PARM_DESC(serialize_io, "Serialize I/O coming from scsi drivers (default = 1, faster = 0)");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700112
113/*
114 * Bump up max_sectors if you'd like to support very large sized
115 * transfers. Please note that some older sbp2 bridge chips are broken for
116 * transfers greater or equal to 128KB. Default is a value of 255
117 * sectors, or just under 128KB (at 512 byte sector size). I can note that
118 * the Oxsemi sbp2 chipsets have no problems supporting very large
119 * transfer sizes.
120 */
121static int max_sectors = SBP2_MAX_SECTORS;
122module_param(max_sectors, int, 0444);
123MODULE_PARM_DESC(max_sectors, "Change max sectors per I/O supported (default = 255)");
124
125/*
126 * Exclusive login to sbp2 device? In most cases, the sbp2 driver should
127 * do an exclusive login, as it's generally unsafe to have two hosts
128 * talking to a single sbp2 device at the same time (filesystem coherency,
129 * etc.). If you're running an sbp2 device that supports multiple logins,
130 * and you're either running read-only filesystems or some sort of special
131 * filesystem supporting multiple hosts (one such filesystem is OpenGFS,
132 * see opengfs.sourceforge.net for more info), then set exclusive_login
133 * to zero. Note: The Oxsemi OXFW911 sbp2 chipset supports up to four
134 * concurrent logins.
135 */
136static int exclusive_login = 1;
137module_param(exclusive_login, int, 0644);
138MODULE_PARM_DESC(exclusive_login, "Exclusive login to sbp2 device (default = 1)");
139
140/*
141 * SCSI inquiry hack for really badly behaved sbp2 devices. Turn this on
142 * if your sbp2 device is not properly handling the SCSI inquiry command.
143 * This hack makes the inquiry look more like a typical MS Windows
144 * inquiry.
145 *
146 * If force_inquiry_hack=1 is required for your device to work,
147 * please submit the logged sbp2_firmware_revision value of this device to
148 * the linux1394-devel mailing list.
149 */
Ben Collins1934b8b2005-07-09 20:01:23 -0400150static int force_inquiry_hack;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700151module_param(force_inquiry_hack, int, 0444);
152MODULE_PARM_DESC(force_inquiry_hack, "Force SCSI inquiry hack (default = 0)");
153
154
155/*
156 * Export information about protocols/devices supported by this driver.
157 */
158static struct ieee1394_device_id sbp2_id_table[] = {
159 {
160 .match_flags =IEEE1394_MATCH_SPECIFIER_ID |
161 IEEE1394_MATCH_VERSION,
162 .specifier_id = SBP2_UNIT_SPEC_ID_ENTRY & 0xffffff,
163 .version = SBP2_SW_VERSION_ENTRY & 0xffffff
164 },
165 { }
166};
167
168MODULE_DEVICE_TABLE(ieee1394, sbp2_id_table);
169
170/*
171 * Debug levels, configured via kernel config, or enable here.
172 */
173
Olaf Hering44456d32005-07-27 11:45:17 -0700174#define CONFIG_IEEE1394_SBP2_DEBUG 0
Linus Torvalds1da177e2005-04-16 15:20:36 -0700175/* #define CONFIG_IEEE1394_SBP2_DEBUG_ORBS */
176/* #define CONFIG_IEEE1394_SBP2_DEBUG_DMA */
177/* #define CONFIG_IEEE1394_SBP2_DEBUG 1 */
178/* #define CONFIG_IEEE1394_SBP2_DEBUG 2 */
179/* #define CONFIG_IEEE1394_SBP2_PACKET_DUMP */
180
181#ifdef CONFIG_IEEE1394_SBP2_DEBUG_ORBS
182#define SBP2_ORB_DEBUG(fmt, args...) HPSB_ERR("sbp2(%s): "fmt, __FUNCTION__, ## args)
183static u32 global_outstanding_command_orbs = 0;
184#define outstanding_orb_incr global_outstanding_command_orbs++
185#define outstanding_orb_decr global_outstanding_command_orbs--
186#else
187#define SBP2_ORB_DEBUG(fmt, args...)
188#define outstanding_orb_incr
189#define outstanding_orb_decr
190#endif
191
192#ifdef CONFIG_IEEE1394_SBP2_DEBUG_DMA
193#define SBP2_DMA_ALLOC(fmt, args...) \
194 HPSB_ERR("sbp2(%s)alloc(%d): "fmt, __FUNCTION__, \
195 ++global_outstanding_dmas, ## args)
196#define SBP2_DMA_FREE(fmt, args...) \
197 HPSB_ERR("sbp2(%s)free(%d): "fmt, __FUNCTION__, \
198 --global_outstanding_dmas, ## args)
199static u32 global_outstanding_dmas = 0;
200#else
201#define SBP2_DMA_ALLOC(fmt, args...)
202#define SBP2_DMA_FREE(fmt, args...)
203#endif
204
205#if CONFIG_IEEE1394_SBP2_DEBUG >= 2
206#define SBP2_DEBUG(fmt, args...) HPSB_ERR("sbp2: "fmt, ## args)
207#define SBP2_INFO(fmt, args...) HPSB_ERR("sbp2: "fmt, ## args)
208#define SBP2_NOTICE(fmt, args...) HPSB_ERR("sbp2: "fmt, ## args)
209#define SBP2_WARN(fmt, args...) HPSB_ERR("sbp2: "fmt, ## args)
210#elif CONFIG_IEEE1394_SBP2_DEBUG == 1
211#define SBP2_DEBUG(fmt, args...) HPSB_DEBUG("sbp2: "fmt, ## args)
212#define SBP2_INFO(fmt, args...) HPSB_INFO("sbp2: "fmt, ## args)
213#define SBP2_NOTICE(fmt, args...) HPSB_NOTICE("sbp2: "fmt, ## args)
214#define SBP2_WARN(fmt, args...) HPSB_WARN("sbp2: "fmt, ## args)
215#else
216#define SBP2_DEBUG(fmt, args...)
217#define SBP2_INFO(fmt, args...) HPSB_INFO("sbp2: "fmt, ## args)
218#define SBP2_NOTICE(fmt, args...) HPSB_NOTICE("sbp2: "fmt, ## args)
219#define SBP2_WARN(fmt, args...) HPSB_WARN("sbp2: "fmt, ## args)
220#endif
221
222#define SBP2_ERR(fmt, args...) HPSB_ERR("sbp2: "fmt, ## args)
223
224
225/*
226 * Globals
227 */
228
229static void sbp2scsi_complete_all_commands(struct scsi_id_instance_data *scsi_id,
230 u32 status);
231
232static void sbp2scsi_complete_command(struct scsi_id_instance_data *scsi_id,
233 u32 scsi_status, struct scsi_cmnd *SCpnt,
234 void (*done)(struct scsi_cmnd *));
235
236static struct scsi_host_template scsi_driver_template;
237
238static const u8 sbp2_speedto_max_payload[] = { 0x7, 0x8, 0x9, 0xA, 0xB, 0xC };
239
240static void sbp2_host_reset(struct hpsb_host *host);
241
242static int sbp2_probe(struct device *dev);
243static int sbp2_remove(struct device *dev);
244static int sbp2_update(struct unit_directory *ud);
245
246static struct hpsb_highlevel sbp2_highlevel = {
247 .name = SBP2_DEVICE_NAME,
248 .host_reset = sbp2_host_reset,
249};
250
251static struct hpsb_address_ops sbp2_ops = {
252 .write = sbp2_handle_status_write
253};
254
255#ifdef CONFIG_IEEE1394_SBP2_PHYS_DMA
256static struct hpsb_address_ops sbp2_physdma_ops = {
257 .read = sbp2_handle_physdma_read,
258 .write = sbp2_handle_physdma_write,
259};
260#endif
261
262static struct hpsb_protocol_driver sbp2_driver = {
263 .name = "SBP2 Driver",
264 .id_table = sbp2_id_table,
265 .update = sbp2_update,
266 .driver = {
267 .name = SBP2_DEVICE_NAME,
268 .bus = &ieee1394_bus_type,
269 .probe = sbp2_probe,
270 .remove = sbp2_remove,
271 },
272};
273
274
275/* List of device firmware's that require a forced 36 byte inquiry. */
276static u32 sbp2_broken_inquiry_list[] = {
277 0x00002800, /* Stefan Richter <richtest@bauwesen.tu-cottbus.de> */
278 /* DViCO Momobay CX-1 */
279 0x00000200 /* Andreas Plesch <plesch@fas.harvard.edu> */
280 /* QPS Fire DVDBurner */
281};
282
283#define NUM_BROKEN_INQUIRY_DEVS \
284 (sizeof(sbp2_broken_inquiry_list)/sizeof(*sbp2_broken_inquiry_list))
285
286/**************************************
287 * General utility functions
288 **************************************/
289
290
291#ifndef __BIG_ENDIAN
292/*
293 * Converts a buffer from be32 to cpu byte ordering. Length is in bytes.
294 */
295static __inline__ void sbp2util_be32_to_cpu_buffer(void *buffer, int length)
296{
297 u32 *temp = buffer;
298
299 for (length = (length >> 2); length--; )
300 temp[length] = be32_to_cpu(temp[length]);
301
302 return;
303}
304
305/*
306 * Converts a buffer from cpu to be32 byte ordering. Length is in bytes.
307 */
308static __inline__ void sbp2util_cpu_to_be32_buffer(void *buffer, int length)
309{
310 u32 *temp = buffer;
311
312 for (length = (length >> 2); length--; )
313 temp[length] = cpu_to_be32(temp[length]);
314
315 return;
316}
317#else /* BIG_ENDIAN */
318/* Why waste the cpu cycles? */
319#define sbp2util_be32_to_cpu_buffer(x,y)
320#define sbp2util_cpu_to_be32_buffer(x,y)
321#endif
322
323#ifdef CONFIG_IEEE1394_SBP2_PACKET_DUMP
324/*
325 * Debug packet dump routine. Length is in bytes.
326 */
327static void sbp2util_packet_dump(void *buffer, int length, char *dump_name, u32 dump_phys_addr)
328{
329 int i;
330 unsigned char *dump = buffer;
331
332 if (!dump || !length || !dump_name)
333 return;
334
335 if (dump_phys_addr)
336 printk("[%s, 0x%x]", dump_name, dump_phys_addr);
337 else
338 printk("[%s]", dump_name);
339 for (i = 0; i < length; i++) {
340 if (i > 0x3f) {
341 printk("\n ...");
342 break;
343 }
344 if ((i & 0x3) == 0)
345 printk(" ");
346 if ((i & 0xf) == 0)
347 printk("\n ");
348 printk("%02x ", (int) dump[i]);
349 }
350 printk("\n");
351
352 return;
353}
354#else
355#define sbp2util_packet_dump(w,x,y,z)
356#endif
357
358/*
359 * Goofy routine that basically does a down_timeout function.
360 */
361static int sbp2util_down_timeout(atomic_t *done, int timeout)
362{
363 int i;
364
365 for (i = timeout; (i > 0 && atomic_read(done) == 0); i-= HZ/10) {
366 if (msleep_interruptible(100)) /* 100ms */
367 return(1);
368 }
369 return ((i > 0) ? 0:1);
370}
371
372/* Free's an allocated packet */
373static void sbp2_free_packet(struct hpsb_packet *packet)
374{
375 hpsb_free_tlabel(packet);
376 hpsb_free_packet(packet);
377}
378
379/* This is much like hpsb_node_write(), except it ignores the response
380 * subaction and returns immediately. Can be used from interrupts.
381 */
382static int sbp2util_node_write_no_wait(struct node_entry *ne, u64 addr,
383 quadlet_t *buffer, size_t length)
384{
385 struct hpsb_packet *packet;
386
387 packet = hpsb_make_writepacket(ne->host, ne->nodeid,
388 addr, buffer, length);
389 if (!packet)
390 return -ENOMEM;
391
392 hpsb_set_packet_complete_task(packet, (void (*)(void*))sbp2_free_packet,
393 packet);
394
395 hpsb_node_fill_packet(ne, packet);
396
397 if (hpsb_send_packet(packet) < 0) {
398 sbp2_free_packet(packet);
399 return -EIO;
400 }
401
402 return 0;
403}
404
405/*
406 * This function is called to create a pool of command orbs used for
407 * command processing. It is called when a new sbp2 device is detected.
408 */
409static int sbp2util_create_command_orb_pool(struct scsi_id_instance_data *scsi_id)
410{
411 struct sbp2scsi_host_info *hi = scsi_id->hi;
412 int i;
413 unsigned long flags, orbs;
414 struct sbp2_command_info *command;
415
416 orbs = serialize_io ? 2 : SBP2_MAX_CMDS;
417
418 spin_lock_irqsave(&scsi_id->sbp2_command_orb_lock, flags);
419 for (i = 0; i < orbs; i++) {
420 command = (struct sbp2_command_info *)
421 kmalloc(sizeof(struct sbp2_command_info), GFP_ATOMIC);
422 if (!command) {
423 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
424 return(-ENOMEM);
425 }
426 memset(command, '\0', sizeof(struct sbp2_command_info));
427 command->command_orb_dma =
428 pci_map_single (hi->host->pdev, &command->command_orb,
429 sizeof(struct sbp2_command_orb),
430 PCI_DMA_BIDIRECTIONAL);
431 SBP2_DMA_ALLOC("single command orb DMA");
432 command->sge_dma =
433 pci_map_single (hi->host->pdev, &command->scatter_gather_element,
434 sizeof(command->scatter_gather_element),
435 PCI_DMA_BIDIRECTIONAL);
436 SBP2_DMA_ALLOC("scatter_gather_element");
437 INIT_LIST_HEAD(&command->list);
438 list_add_tail(&command->list, &scsi_id->sbp2_command_orb_completed);
439 }
440 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
441 return 0;
442}
443
444/*
445 * This function is called to delete a pool of command orbs.
446 */
447static void sbp2util_remove_command_orb_pool(struct scsi_id_instance_data *scsi_id)
448{
449 struct hpsb_host *host = scsi_id->hi->host;
450 struct list_head *lh, *next;
451 struct sbp2_command_info *command;
452 unsigned long flags;
453
454 spin_lock_irqsave(&scsi_id->sbp2_command_orb_lock, flags);
455 if (!list_empty(&scsi_id->sbp2_command_orb_completed)) {
456 list_for_each_safe(lh, next, &scsi_id->sbp2_command_orb_completed) {
457 command = list_entry(lh, struct sbp2_command_info, list);
458
459 /* Release our generic DMA's */
460 pci_unmap_single(host->pdev, command->command_orb_dma,
461 sizeof(struct sbp2_command_orb),
462 PCI_DMA_BIDIRECTIONAL);
463 SBP2_DMA_FREE("single command orb DMA");
464 pci_unmap_single(host->pdev, command->sge_dma,
465 sizeof(command->scatter_gather_element),
466 PCI_DMA_BIDIRECTIONAL);
467 SBP2_DMA_FREE("scatter_gather_element");
468
469 kfree(command);
470 }
471 }
472 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
473 return;
474}
475
476/*
477 * This function finds the sbp2_command for a given outstanding command
478 * orb.Only looks at the inuse list.
479 */
480static struct sbp2_command_info *sbp2util_find_command_for_orb(
481 struct scsi_id_instance_data *scsi_id, dma_addr_t orb)
482{
483 struct sbp2_command_info *command;
484 unsigned long flags;
485
486 spin_lock_irqsave(&scsi_id->sbp2_command_orb_lock, flags);
487 if (!list_empty(&scsi_id->sbp2_command_orb_inuse)) {
488 list_for_each_entry(command, &scsi_id->sbp2_command_orb_inuse, list) {
489 if (command->command_orb_dma == orb) {
490 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
491 return (command);
492 }
493 }
494 }
495 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
496
497 SBP2_ORB_DEBUG("could not match command orb %x", (unsigned int)orb);
498
499 return(NULL);
500}
501
502/*
503 * This function finds the sbp2_command for a given outstanding SCpnt.
504 * Only looks at the inuse list.
505 */
506static struct sbp2_command_info *sbp2util_find_command_for_SCpnt(struct scsi_id_instance_data *scsi_id, void *SCpnt)
507{
508 struct sbp2_command_info *command;
509 unsigned long flags;
510
511 spin_lock_irqsave(&scsi_id->sbp2_command_orb_lock, flags);
512 if (!list_empty(&scsi_id->sbp2_command_orb_inuse)) {
513 list_for_each_entry(command, &scsi_id->sbp2_command_orb_inuse, list) {
514 if (command->Current_SCpnt == SCpnt) {
515 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
516 return (command);
517 }
518 }
519 }
520 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
521 return(NULL);
522}
523
524/*
525 * This function allocates a command orb used to send a scsi command.
526 */
527static struct sbp2_command_info *sbp2util_allocate_command_orb(
528 struct scsi_id_instance_data *scsi_id,
529 struct scsi_cmnd *Current_SCpnt,
530 void (*Current_done)(struct scsi_cmnd *))
531{
532 struct list_head *lh;
533 struct sbp2_command_info *command = NULL;
534 unsigned long flags;
535
536 spin_lock_irqsave(&scsi_id->sbp2_command_orb_lock, flags);
537 if (!list_empty(&scsi_id->sbp2_command_orb_completed)) {
538 lh = scsi_id->sbp2_command_orb_completed.next;
539 list_del(lh);
540 command = list_entry(lh, struct sbp2_command_info, list);
541 command->Current_done = Current_done;
542 command->Current_SCpnt = Current_SCpnt;
543 list_add_tail(&command->list, &scsi_id->sbp2_command_orb_inuse);
544 } else {
545 SBP2_ERR("sbp2util_allocate_command_orb - No orbs available!");
546 }
547 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
548 return (command);
549}
550
551/* Free our DMA's */
552static void sbp2util_free_command_dma(struct sbp2_command_info *command)
553{
554 struct scsi_id_instance_data *scsi_id =
555 (struct scsi_id_instance_data *)command->Current_SCpnt->device->host->hostdata[0];
556 struct hpsb_host *host;
557
558 if (!scsi_id) {
559 printk(KERN_ERR "%s: scsi_id == NULL\n", __FUNCTION__);
560 return;
561 }
562
563 host = scsi_id->ud->ne->host;
564
565 if (command->cmd_dma) {
566 if (command->dma_type == CMD_DMA_SINGLE) {
567 pci_unmap_single(host->pdev, command->cmd_dma,
568 command->dma_size, command->dma_dir);
569 SBP2_DMA_FREE("single bulk");
570 } else if (command->dma_type == CMD_DMA_PAGE) {
571 pci_unmap_page(host->pdev, command->cmd_dma,
572 command->dma_size, command->dma_dir);
573 SBP2_DMA_FREE("single page");
574 } /* XXX: Check for CMD_DMA_NONE bug */
575 command->dma_type = CMD_DMA_NONE;
576 command->cmd_dma = 0;
577 }
578
579 if (command->sge_buffer) {
580 pci_unmap_sg(host->pdev, command->sge_buffer,
581 command->dma_size, command->dma_dir);
582 SBP2_DMA_FREE("scatter list");
583 command->sge_buffer = NULL;
584 }
585}
586
587/*
588 * This function moves a command to the completed orb list.
589 */
590static void sbp2util_mark_command_completed(struct scsi_id_instance_data *scsi_id, struct sbp2_command_info *command)
591{
592 unsigned long flags;
593
594 spin_lock_irqsave(&scsi_id->sbp2_command_orb_lock, flags);
595 list_del(&command->list);
596 sbp2util_free_command_dma(command);
597 list_add_tail(&command->list, &scsi_id->sbp2_command_orb_completed);
598 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
599}
600
Jody McIntyreabd559b2005-09-30 11:59:06 -0700601/*
602 * Is scsi_id valid? Is the 1394 node still present?
603 */
604static inline int sbp2util_node_is_available(struct scsi_id_instance_data *scsi_id)
605{
606 return scsi_id && scsi_id->ne && !scsi_id->ne->in_limbo;
607}
608
Linus Torvalds1da177e2005-04-16 15:20:36 -0700609
610
611/*********************************************
612 * IEEE-1394 core driver stack related section
613 *********************************************/
614static struct scsi_id_instance_data *sbp2_alloc_device(struct unit_directory *ud);
615
616static int sbp2_probe(struct device *dev)
617{
618 struct unit_directory *ud;
619 struct scsi_id_instance_data *scsi_id;
620
621 SBP2_DEBUG("sbp2_probe");
622
623 ud = container_of(dev, struct unit_directory, device);
624
625 /* Don't probe UD's that have the LUN flag. We'll probe the LUN(s)
626 * instead. */
627 if (ud->flags & UNIT_DIRECTORY_HAS_LUN_DIRECTORY)
628 return -ENODEV;
629
630 scsi_id = sbp2_alloc_device(ud);
631
632 if (!scsi_id)
633 return -ENOMEM;
634
635 sbp2_parse_unit_directory(scsi_id, ud);
636
637 return sbp2_start_device(scsi_id);
638}
639
640static int sbp2_remove(struct device *dev)
641{
642 struct unit_directory *ud;
643 struct scsi_id_instance_data *scsi_id;
Jody McIntyreabd559b2005-09-30 11:59:06 -0700644 struct scsi_device *sdev;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700645
646 SBP2_DEBUG("sbp2_remove");
647
648 ud = container_of(dev, struct unit_directory, device);
649 scsi_id = ud->device.driver_data;
Jody McIntyreabd559b2005-09-30 11:59:06 -0700650 if (!scsi_id)
651 return 0;
652
653 /* Trigger shutdown functions in scsi's highlevel. */
654 if (scsi_id->scsi_host)
655 scsi_unblock_requests(scsi_id->scsi_host);
656 sdev = scsi_id->sdev;
657 if (sdev) {
658 scsi_id->sdev = NULL;
659 scsi_remove_device(sdev);
660 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700661
662 sbp2_logout_device(scsi_id);
663 sbp2_remove_device(scsi_id);
664
665 return 0;
666}
667
668static int sbp2_update(struct unit_directory *ud)
669{
670 struct scsi_id_instance_data *scsi_id = ud->device.driver_data;
671
672 SBP2_DEBUG("sbp2_update");
673
674 if (sbp2_reconnect_device(scsi_id)) {
675
676 /*
677 * Ok, reconnect has failed. Perhaps we didn't
678 * reconnect fast enough. Try doing a regular login, but
679 * first do a logout just in case of any weirdness.
680 */
681 sbp2_logout_device(scsi_id);
682
683 if (sbp2_login_device(scsi_id)) {
684 /* Login failed too, just fail, and the backend
685 * will call our sbp2_remove for us */
686 SBP2_ERR("Failed to reconnect to sbp2 device!");
687 return -EBUSY;
688 }
689 }
690
691 /* Set max retries to something large on the device. */
692 sbp2_set_busy_timeout(scsi_id);
693
694 /* Do a SBP-2 fetch agent reset. */
695 sbp2_agent_reset(scsi_id, 1);
696
697 /* Get the max speed and packet size that we can use. */
698 sbp2_max_speed_and_size(scsi_id);
699
700 /* Complete any pending commands with busy (so they get
701 * retried) and remove them from our queue
702 */
703 sbp2scsi_complete_all_commands(scsi_id, DID_BUS_BUSY);
704
705 /* Make sure we unblock requests (since this is likely after a bus
706 * reset). */
707 scsi_unblock_requests(scsi_id->scsi_host);
708
709 return 0;
710}
711
712/* This functions is called by the sbp2_probe, for each new device. We now
713 * allocate one scsi host for each scsi_id (unit directory). */
714static struct scsi_id_instance_data *sbp2_alloc_device(struct unit_directory *ud)
715{
716 struct sbp2scsi_host_info *hi;
717 struct Scsi_Host *scsi_host = NULL;
718 struct scsi_id_instance_data *scsi_id = NULL;
719
720 SBP2_DEBUG("sbp2_alloc_device");
721
722 scsi_id = kmalloc(sizeof(*scsi_id), GFP_KERNEL);
723 if (!scsi_id) {
724 SBP2_ERR("failed to create scsi_id");
725 goto failed_alloc;
726 }
727 memset(scsi_id, 0, sizeof(*scsi_id));
728
729 scsi_id->ne = ud->ne;
730 scsi_id->ud = ud;
731 scsi_id->speed_code = IEEE1394_SPEED_100;
732 scsi_id->max_payload_size = sbp2_speedto_max_payload[IEEE1394_SPEED_100];
733 atomic_set(&scsi_id->sbp2_login_complete, 0);
734 INIT_LIST_HEAD(&scsi_id->sbp2_command_orb_inuse);
735 INIT_LIST_HEAD(&scsi_id->sbp2_command_orb_completed);
736 INIT_LIST_HEAD(&scsi_id->scsi_list);
737 spin_lock_init(&scsi_id->sbp2_command_orb_lock);
Ben Collinse309fc62005-11-07 06:31:34 -0500738 scsi_id->sbp2_lun = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700739
740 ud->device.driver_data = scsi_id;
741
742 hi = hpsb_get_hostinfo(&sbp2_highlevel, ud->ne->host);
743 if (!hi) {
744 hi = hpsb_create_hostinfo(&sbp2_highlevel, ud->ne->host, sizeof(*hi));
745 if (!hi) {
746 SBP2_ERR("failed to allocate hostinfo");
747 goto failed_alloc;
748 }
749 SBP2_DEBUG("sbp2_alloc_device: allocated hostinfo");
750 hi->host = ud->ne->host;
751 INIT_LIST_HEAD(&hi->scsi_ids);
752
753 /* Register our sbp2 status address space... */
754 hpsb_register_addrspace(&sbp2_highlevel, ud->ne->host, &sbp2_ops,
755 SBP2_STATUS_FIFO_ADDRESS,
756 SBP2_STATUS_FIFO_ADDRESS +
757 SBP2_STATUS_FIFO_ENTRY_TO_OFFSET(SBP2_MAX_UDS_PER_NODE+1));
758#ifdef CONFIG_IEEE1394_SBP2_PHYS_DMA
759 /* Handle data movement if physical dma is not
760 * enabled/supportedon host controller */
761 hpsb_register_addrspace(&sbp2_highlevel, ud->ne->host, &sbp2_physdma_ops,
762 0x0ULL, 0xfffffffcULL);
763#endif
764 }
765
766 scsi_id->hi = hi;
767
768 list_add_tail(&scsi_id->scsi_list, &hi->scsi_ids);
769
770 /* Register our host with the SCSI stack. */
Alexandre Olivaa2ef79e2005-06-15 22:26:31 -0700771 scsi_host = scsi_host_alloc(&scsi_driver_template,
772 sizeof (unsigned long));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700773 if (!scsi_host) {
774 SBP2_ERR("failed to register scsi host");
775 goto failed_alloc;
776 }
777
778 scsi_host->hostdata[0] = (unsigned long)scsi_id;
779
780 if (!scsi_add_host(scsi_host, &ud->device)) {
781 scsi_id->scsi_host = scsi_host;
782 return scsi_id;
783 }
784
785 SBP2_ERR("failed to add scsi host");
786 scsi_host_put(scsi_host);
787
788failed_alloc:
789 sbp2_remove_device(scsi_id);
790 return NULL;
791}
792
793
794static void sbp2_host_reset(struct hpsb_host *host)
795{
796 struct sbp2scsi_host_info *hi;
797 struct scsi_id_instance_data *scsi_id;
798
799 hi = hpsb_get_hostinfo(&sbp2_highlevel, host);
800
801 if (hi) {
802 list_for_each_entry(scsi_id, &hi->scsi_ids, scsi_list)
803 scsi_block_requests(scsi_id->scsi_host);
804 }
805}
806
807
808/*
809 * This function is where we first pull the node unique ids, and then
810 * allocate memory and register a SBP-2 device.
811 */
812static int sbp2_start_device(struct scsi_id_instance_data *scsi_id)
813{
814 struct sbp2scsi_host_info *hi = scsi_id->hi;
James Bottomley146f7262005-09-10 12:44:09 -0500815 int error;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700816
817 SBP2_DEBUG("sbp2_start_device");
818
819 /* Login FIFO DMA */
820 scsi_id->login_response =
821 pci_alloc_consistent(hi->host->pdev, sizeof(struct sbp2_login_response),
822 &scsi_id->login_response_dma);
823 if (!scsi_id->login_response)
824 goto alloc_fail;
825 SBP2_DMA_ALLOC("consistent DMA region for login FIFO");
826
827 /* Query logins ORB DMA */
828 scsi_id->query_logins_orb =
829 pci_alloc_consistent(hi->host->pdev, sizeof(struct sbp2_query_logins_orb),
830 &scsi_id->query_logins_orb_dma);
831 if (!scsi_id->query_logins_orb)
832 goto alloc_fail;
833 SBP2_DMA_ALLOC("consistent DMA region for query logins ORB");
834
835 /* Query logins response DMA */
836 scsi_id->query_logins_response =
837 pci_alloc_consistent(hi->host->pdev, sizeof(struct sbp2_query_logins_response),
838 &scsi_id->query_logins_response_dma);
839 if (!scsi_id->query_logins_response)
840 goto alloc_fail;
841 SBP2_DMA_ALLOC("consistent DMA region for query logins response");
842
843 /* Reconnect ORB DMA */
844 scsi_id->reconnect_orb =
845 pci_alloc_consistent(hi->host->pdev, sizeof(struct sbp2_reconnect_orb),
846 &scsi_id->reconnect_orb_dma);
847 if (!scsi_id->reconnect_orb)
848 goto alloc_fail;
849 SBP2_DMA_ALLOC("consistent DMA region for reconnect ORB");
850
851 /* Logout ORB DMA */
852 scsi_id->logout_orb =
853 pci_alloc_consistent(hi->host->pdev, sizeof(struct sbp2_logout_orb),
854 &scsi_id->logout_orb_dma);
855 if (!scsi_id->logout_orb)
856 goto alloc_fail;
857 SBP2_DMA_ALLOC("consistent DMA region for logout ORB");
858
859 /* Login ORB DMA */
860 scsi_id->login_orb =
861 pci_alloc_consistent(hi->host->pdev, sizeof(struct sbp2_login_orb),
862 &scsi_id->login_orb_dma);
863 if (!scsi_id->login_orb) {
864alloc_fail:
865 if (scsi_id->query_logins_response) {
866 pci_free_consistent(hi->host->pdev,
867 sizeof(struct sbp2_query_logins_response),
868 scsi_id->query_logins_response,
869 scsi_id->query_logins_response_dma);
870 SBP2_DMA_FREE("query logins response DMA");
871 }
872
873 if (scsi_id->query_logins_orb) {
874 pci_free_consistent(hi->host->pdev,
875 sizeof(struct sbp2_query_logins_orb),
876 scsi_id->query_logins_orb,
877 scsi_id->query_logins_orb_dma);
878 SBP2_DMA_FREE("query logins ORB DMA");
879 }
880
881 if (scsi_id->logout_orb) {
882 pci_free_consistent(hi->host->pdev,
883 sizeof(struct sbp2_logout_orb),
884 scsi_id->logout_orb,
885 scsi_id->logout_orb_dma);
886 SBP2_DMA_FREE("logout ORB DMA");
887 }
888
889 if (scsi_id->reconnect_orb) {
890 pci_free_consistent(hi->host->pdev,
891 sizeof(struct sbp2_reconnect_orb),
892 scsi_id->reconnect_orb,
893 scsi_id->reconnect_orb_dma);
894 SBP2_DMA_FREE("reconnect ORB DMA");
895 }
896
897 if (scsi_id->login_response) {
898 pci_free_consistent(hi->host->pdev,
899 sizeof(struct sbp2_login_response),
900 scsi_id->login_response,
901 scsi_id->login_response_dma);
902 SBP2_DMA_FREE("login FIFO DMA");
903 }
904
905 list_del(&scsi_id->scsi_list);
906
907 kfree(scsi_id);
908
909 SBP2_ERR ("Could not allocate memory for scsi_id");
910
911 return -ENOMEM;
912 }
913 SBP2_DMA_ALLOC("consistent DMA region for login ORB");
914
915 SBP2_DEBUG("New SBP-2 device inserted, SCSI ID = %x", scsi_id->ud->id);
916
917 /*
918 * Create our command orb pool
919 */
920 if (sbp2util_create_command_orb_pool(scsi_id)) {
921 SBP2_ERR("sbp2util_create_command_orb_pool failed!");
922 sbp2_remove_device(scsi_id);
923 return -ENOMEM;
924 }
925
926 /* Schedule a timeout here. The reason is that we may be so close
927 * to a bus reset, that the device is not available for logins.
928 * This can happen when the bus reset is caused by the host
929 * connected to the sbp2 device being removed. That host would
930 * have a certain amount of time to relogin before the sbp2 device
931 * allows someone else to login instead. One second makes sense. */
932 msleep_interruptible(1000);
933 if (signal_pending(current)) {
934 SBP2_WARN("aborting sbp2_start_device due to event");
935 sbp2_remove_device(scsi_id);
936 return -EINTR;
937 }
938
939 /*
940 * Login to the sbp-2 device
941 */
942 if (sbp2_login_device(scsi_id)) {
943 /* Login failed, just remove the device. */
944 sbp2_remove_device(scsi_id);
945 return -EBUSY;
946 }
947
948 /*
949 * Set max retries to something large on the device
950 */
951 sbp2_set_busy_timeout(scsi_id);
952
953 /*
954 * Do a SBP-2 fetch agent reset
955 */
956 sbp2_agent_reset(scsi_id, 1);
957
958 /*
959 * Get the max speed and packet size that we can use
960 */
961 sbp2_max_speed_and_size(scsi_id);
962
963 /* Add this device to the scsi layer now */
James Bottomley146f7262005-09-10 12:44:09 -0500964 error = scsi_add_device(scsi_id->scsi_host, 0, scsi_id->ud->id, 0);
965 if (error) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700966 SBP2_ERR("scsi_add_device failed");
James Bottomley146f7262005-09-10 12:44:09 -0500967 return error;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700968 }
969
970 return 0;
971}
972
973/*
974 * This function removes an sbp2 device from the sbp2scsi_host_info struct.
975 */
976static void sbp2_remove_device(struct scsi_id_instance_data *scsi_id)
977{
978 struct sbp2scsi_host_info *hi;
979
980 SBP2_DEBUG("sbp2_remove_device");
981
982 if (!scsi_id)
983 return;
984
985 hi = scsi_id->hi;
986
987 /* This will remove our scsi device aswell */
988 if (scsi_id->scsi_host) {
989 scsi_remove_host(scsi_id->scsi_host);
990 scsi_host_put(scsi_id->scsi_host);
991 }
992
993 sbp2util_remove_command_orb_pool(scsi_id);
994
995 list_del(&scsi_id->scsi_list);
996
997 if (scsi_id->login_response) {
998 pci_free_consistent(hi->host->pdev,
999 sizeof(struct sbp2_login_response),
1000 scsi_id->login_response,
1001 scsi_id->login_response_dma);
1002 SBP2_DMA_FREE("single login FIFO");
1003 }
1004
1005 if (scsi_id->login_orb) {
1006 pci_free_consistent(hi->host->pdev,
1007 sizeof(struct sbp2_login_orb),
1008 scsi_id->login_orb,
1009 scsi_id->login_orb_dma);
1010 SBP2_DMA_FREE("single login ORB");
1011 }
1012
1013 if (scsi_id->reconnect_orb) {
1014 pci_free_consistent(hi->host->pdev,
1015 sizeof(struct sbp2_reconnect_orb),
1016 scsi_id->reconnect_orb,
1017 scsi_id->reconnect_orb_dma);
1018 SBP2_DMA_FREE("single reconnect orb");
1019 }
1020
1021 if (scsi_id->logout_orb) {
1022 pci_free_consistent(hi->host->pdev,
1023 sizeof(struct sbp2_logout_orb),
1024 scsi_id->logout_orb,
1025 scsi_id->logout_orb_dma);
1026 SBP2_DMA_FREE("single logout orb");
1027 }
1028
1029 if (scsi_id->query_logins_orb) {
1030 pci_free_consistent(hi->host->pdev,
1031 sizeof(struct sbp2_query_logins_orb),
1032 scsi_id->query_logins_orb,
1033 scsi_id->query_logins_orb_dma);
1034 SBP2_DMA_FREE("single query logins orb");
1035 }
1036
1037 if (scsi_id->query_logins_response) {
1038 pci_free_consistent(hi->host->pdev,
1039 sizeof(struct sbp2_query_logins_response),
1040 scsi_id->query_logins_response,
1041 scsi_id->query_logins_response_dma);
1042 SBP2_DMA_FREE("single query logins data");
1043 }
1044
1045 scsi_id->ud->device.driver_data = NULL;
1046
1047 SBP2_DEBUG("SBP-2 device removed, SCSI ID = %d", scsi_id->ud->id);
1048
1049 kfree(scsi_id);
1050}
1051
1052#ifdef CONFIG_IEEE1394_SBP2_PHYS_DMA
1053/*
1054 * This function deals with physical dma write requests (for adapters that do not support
1055 * physical dma in hardware). Mostly just here for debugging...
1056 */
1057static int sbp2_handle_physdma_write(struct hpsb_host *host, int nodeid, int destid, quadlet_t *data,
1058 u64 addr, size_t length, u16 flags)
1059{
1060
1061 /*
1062 * Manually put the data in the right place.
1063 */
1064 memcpy(bus_to_virt((u32)addr), data, length);
1065 sbp2util_packet_dump(data, length, "sbp2 phys dma write by device", (u32)addr);
1066 return(RCODE_COMPLETE);
1067}
1068
1069/*
1070 * This function deals with physical dma read requests (for adapters that do not support
1071 * physical dma in hardware). Mostly just here for debugging...
1072 */
1073static int sbp2_handle_physdma_read(struct hpsb_host *host, int nodeid, quadlet_t *data,
1074 u64 addr, size_t length, u16 flags)
1075{
1076
1077 /*
1078 * Grab data from memory and send a read response.
1079 */
1080 memcpy(data, bus_to_virt((u32)addr), length);
1081 sbp2util_packet_dump(data, length, "sbp2 phys dma read by device", (u32)addr);
1082 return(RCODE_COMPLETE);
1083}
1084#endif
1085
1086
1087/**************************************
1088 * SBP-2 protocol related section
1089 **************************************/
1090
1091/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001092 * This function queries the device for the maximum concurrent logins it
1093 * supports.
1094 */
1095static int sbp2_query_logins(struct scsi_id_instance_data *scsi_id)
1096{
1097 struct sbp2scsi_host_info *hi = scsi_id->hi;
1098 quadlet_t data[2];
1099 int max_logins;
1100 int active_logins;
1101
1102 SBP2_DEBUG("sbp2_query_logins");
1103
1104 scsi_id->query_logins_orb->reserved1 = 0x0;
1105 scsi_id->query_logins_orb->reserved2 = 0x0;
1106
1107 scsi_id->query_logins_orb->query_response_lo = scsi_id->query_logins_response_dma;
1108 scsi_id->query_logins_orb->query_response_hi = ORB_SET_NODE_ID(hi->host->node_id);
1109 SBP2_DEBUG("sbp2_query_logins: query_response_hi/lo initialized");
1110
1111 scsi_id->query_logins_orb->lun_misc = ORB_SET_FUNCTION(SBP2_QUERY_LOGINS_REQUEST);
1112 scsi_id->query_logins_orb->lun_misc |= ORB_SET_NOTIFY(1);
Ben Collinse309fc62005-11-07 06:31:34 -05001113 scsi_id->query_logins_orb->lun_misc |= ORB_SET_LUN(scsi_id->sbp2_lun);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001114 SBP2_DEBUG("sbp2_query_logins: lun_misc initialized");
1115
1116 scsi_id->query_logins_orb->reserved_resp_length =
1117 ORB_SET_QUERY_LOGINS_RESP_LENGTH(sizeof(struct sbp2_query_logins_response));
1118 SBP2_DEBUG("sbp2_query_logins: reserved_resp_length initialized");
1119
1120 scsi_id->query_logins_orb->status_FIFO_lo = SBP2_STATUS_FIFO_ADDRESS_LO +
1121 SBP2_STATUS_FIFO_ENTRY_TO_OFFSET(scsi_id->ud->id);
1122 scsi_id->query_logins_orb->status_FIFO_hi = (ORB_SET_NODE_ID(hi->host->node_id) |
1123 SBP2_STATUS_FIFO_ADDRESS_HI);
1124 SBP2_DEBUG("sbp2_query_logins: status FIFO initialized");
1125
1126 sbp2util_cpu_to_be32_buffer(scsi_id->query_logins_orb, sizeof(struct sbp2_query_logins_orb));
1127
1128 SBP2_DEBUG("sbp2_query_logins: orb byte-swapped");
1129
1130 sbp2util_packet_dump(scsi_id->query_logins_orb, sizeof(struct sbp2_query_logins_orb),
1131 "sbp2 query logins orb", scsi_id->query_logins_orb_dma);
1132
1133 memset(scsi_id->query_logins_response, 0, sizeof(struct sbp2_query_logins_response));
1134 memset(&scsi_id->status_block, 0, sizeof(struct sbp2_status_block));
1135
1136 SBP2_DEBUG("sbp2_query_logins: query_logins_response/status FIFO memset");
1137
1138 data[0] = ORB_SET_NODE_ID(hi->host->node_id);
1139 data[1] = scsi_id->query_logins_orb_dma;
1140 sbp2util_cpu_to_be32_buffer(data, 8);
1141
1142 atomic_set(&scsi_id->sbp2_login_complete, 0);
1143
1144 SBP2_DEBUG("sbp2_query_logins: prepared to write");
1145 hpsb_node_write(scsi_id->ne, scsi_id->sbp2_management_agent_addr, data, 8);
1146 SBP2_DEBUG("sbp2_query_logins: written");
1147
1148 if (sbp2util_down_timeout(&scsi_id->sbp2_login_complete, 2*HZ)) {
1149 SBP2_INFO("Error querying logins to SBP-2 device - timed out");
1150 return(-EIO);
1151 }
1152
1153 if (scsi_id->status_block.ORB_offset_lo != scsi_id->query_logins_orb_dma) {
1154 SBP2_INFO("Error querying logins to SBP-2 device - timed out");
1155 return(-EIO);
1156 }
1157
1158 if (STATUS_GET_RESP(scsi_id->status_block.ORB_offset_hi_misc) ||
1159 STATUS_GET_DEAD_BIT(scsi_id->status_block.ORB_offset_hi_misc) ||
1160 STATUS_GET_SBP_STATUS(scsi_id->status_block.ORB_offset_hi_misc)) {
1161
1162 SBP2_INFO("Error querying logins to SBP-2 device - timed out");
1163 return(-EIO);
1164 }
1165
1166 sbp2util_cpu_to_be32_buffer(scsi_id->query_logins_response, sizeof(struct sbp2_query_logins_response));
1167
1168 SBP2_DEBUG("length_max_logins = %x",
1169 (unsigned int)scsi_id->query_logins_response->length_max_logins);
1170
1171 SBP2_DEBUG("Query logins to SBP-2 device successful");
1172
1173 max_logins = RESPONSE_GET_MAX_LOGINS(scsi_id->query_logins_response->length_max_logins);
1174 SBP2_DEBUG("Maximum concurrent logins supported: %d", max_logins);
1175
1176 active_logins = RESPONSE_GET_ACTIVE_LOGINS(scsi_id->query_logins_response->length_max_logins);
1177 SBP2_DEBUG("Number of active logins: %d", active_logins);
1178
1179 if (active_logins >= max_logins) {
1180 return(-EIO);
1181 }
1182
1183 return 0;
1184}
1185
1186/*
1187 * This function is called in order to login to a particular SBP-2 device,
1188 * after a bus reset.
1189 */
1190static int sbp2_login_device(struct scsi_id_instance_data *scsi_id)
1191{
1192 struct sbp2scsi_host_info *hi = scsi_id->hi;
1193 quadlet_t data[2];
1194
1195 SBP2_DEBUG("sbp2_login_device");
1196
1197 if (!scsi_id->login_orb) {
1198 SBP2_DEBUG("sbp2_login_device: login_orb not alloc'd!");
1199 return(-EIO);
1200 }
1201
1202 if (!exclusive_login) {
1203 if (sbp2_query_logins(scsi_id)) {
1204 SBP2_INFO("Device does not support any more concurrent logins");
1205 return(-EIO);
1206 }
1207 }
1208
1209 /* Set-up login ORB, assume no password */
1210 scsi_id->login_orb->password_hi = 0;
1211 scsi_id->login_orb->password_lo = 0;
1212 SBP2_DEBUG("sbp2_login_device: password_hi/lo initialized");
1213
1214 scsi_id->login_orb->login_response_lo = scsi_id->login_response_dma;
1215 scsi_id->login_orb->login_response_hi = ORB_SET_NODE_ID(hi->host->node_id);
1216 SBP2_DEBUG("sbp2_login_device: login_response_hi/lo initialized");
1217
1218 scsi_id->login_orb->lun_misc = ORB_SET_FUNCTION(SBP2_LOGIN_REQUEST);
1219 scsi_id->login_orb->lun_misc |= ORB_SET_RECONNECT(0); /* One second reconnect time */
1220 scsi_id->login_orb->lun_misc |= ORB_SET_EXCLUSIVE(exclusive_login); /* Exclusive access to device */
1221 scsi_id->login_orb->lun_misc |= ORB_SET_NOTIFY(1); /* Notify us of login complete */
Ben Collinse309fc62005-11-07 06:31:34 -05001222 scsi_id->login_orb->lun_misc |= ORB_SET_LUN(scsi_id->sbp2_lun);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001223 SBP2_DEBUG("sbp2_login_device: lun_misc initialized");
1224
1225 scsi_id->login_orb->passwd_resp_lengths =
1226 ORB_SET_LOGIN_RESP_LENGTH(sizeof(struct sbp2_login_response));
1227 SBP2_DEBUG("sbp2_login_device: passwd_resp_lengths initialized");
1228
1229 scsi_id->login_orb->status_FIFO_lo = SBP2_STATUS_FIFO_ADDRESS_LO +
1230 SBP2_STATUS_FIFO_ENTRY_TO_OFFSET(scsi_id->ud->id);
1231 scsi_id->login_orb->status_FIFO_hi = (ORB_SET_NODE_ID(hi->host->node_id) |
1232 SBP2_STATUS_FIFO_ADDRESS_HI);
1233 SBP2_DEBUG("sbp2_login_device: status FIFO initialized");
1234
1235 /*
1236 * Byte swap ORB if necessary
1237 */
1238 sbp2util_cpu_to_be32_buffer(scsi_id->login_orb, sizeof(struct sbp2_login_orb));
1239
1240 SBP2_DEBUG("sbp2_login_device: orb byte-swapped");
1241
1242 sbp2util_packet_dump(scsi_id->login_orb, sizeof(struct sbp2_login_orb),
1243 "sbp2 login orb", scsi_id->login_orb_dma);
1244
1245 /*
1246 * Initialize login response and status fifo
1247 */
1248 memset(scsi_id->login_response, 0, sizeof(struct sbp2_login_response));
1249 memset(&scsi_id->status_block, 0, sizeof(struct sbp2_status_block));
1250
1251 SBP2_DEBUG("sbp2_login_device: login_response/status FIFO memset");
1252
1253 /*
1254 * Ok, let's write to the target's management agent register
1255 */
1256 data[0] = ORB_SET_NODE_ID(hi->host->node_id);
1257 data[1] = scsi_id->login_orb_dma;
1258 sbp2util_cpu_to_be32_buffer(data, 8);
1259
1260 atomic_set(&scsi_id->sbp2_login_complete, 0);
1261
1262 SBP2_DEBUG("sbp2_login_device: prepared to write to %08x",
1263 (unsigned int)scsi_id->sbp2_management_agent_addr);
1264 hpsb_node_write(scsi_id->ne, scsi_id->sbp2_management_agent_addr, data, 8);
1265 SBP2_DEBUG("sbp2_login_device: written");
1266
1267 /*
1268 * Wait for login status (up to 20 seconds)...
1269 */
1270 if (sbp2util_down_timeout(&scsi_id->sbp2_login_complete, 20*HZ)) {
1271 SBP2_ERR("Error logging into SBP-2 device - login timed-out");
1272 return(-EIO);
1273 }
1274
1275 /*
1276 * Sanity. Make sure status returned matches login orb.
1277 */
1278 if (scsi_id->status_block.ORB_offset_lo != scsi_id->login_orb_dma) {
1279 SBP2_ERR("Error logging into SBP-2 device - login timed-out");
1280 return(-EIO);
1281 }
1282
1283 /*
1284 * Check status
1285 */
1286 if (STATUS_GET_RESP(scsi_id->status_block.ORB_offset_hi_misc) ||
1287 STATUS_GET_DEAD_BIT(scsi_id->status_block.ORB_offset_hi_misc) ||
1288 STATUS_GET_SBP_STATUS(scsi_id->status_block.ORB_offset_hi_misc)) {
1289
1290 SBP2_ERR("Error logging into SBP-2 device - login failed");
1291 return(-EIO);
1292 }
1293
1294 /*
1295 * Byte swap the login response, for use when reconnecting or
1296 * logging out.
1297 */
1298 sbp2util_cpu_to_be32_buffer(scsi_id->login_response, sizeof(struct sbp2_login_response));
1299
1300 /*
1301 * Grab our command block agent address from the login response.
1302 */
1303 SBP2_DEBUG("command_block_agent_hi = %x",
1304 (unsigned int)scsi_id->login_response->command_block_agent_hi);
1305 SBP2_DEBUG("command_block_agent_lo = %x",
1306 (unsigned int)scsi_id->login_response->command_block_agent_lo);
1307
1308 scsi_id->sbp2_command_block_agent_addr =
1309 ((u64)scsi_id->login_response->command_block_agent_hi) << 32;
1310 scsi_id->sbp2_command_block_agent_addr |= ((u64)scsi_id->login_response->command_block_agent_lo);
1311 scsi_id->sbp2_command_block_agent_addr &= 0x0000ffffffffffffULL;
1312
1313 SBP2_INFO("Logged into SBP-2 device");
1314
1315 return(0);
1316
1317}
1318
1319/*
1320 * This function is called in order to logout from a particular SBP-2
1321 * device, usually called during driver unload.
1322 */
1323static int sbp2_logout_device(struct scsi_id_instance_data *scsi_id)
1324{
1325 struct sbp2scsi_host_info *hi = scsi_id->hi;
1326 quadlet_t data[2];
1327 int error;
1328
1329 SBP2_DEBUG("sbp2_logout_device");
1330
1331 /*
1332 * Set-up logout ORB
1333 */
1334 scsi_id->logout_orb->reserved1 = 0x0;
1335 scsi_id->logout_orb->reserved2 = 0x0;
1336 scsi_id->logout_orb->reserved3 = 0x0;
1337 scsi_id->logout_orb->reserved4 = 0x0;
1338
1339 scsi_id->logout_orb->login_ID_misc = ORB_SET_FUNCTION(SBP2_LOGOUT_REQUEST);
1340 scsi_id->logout_orb->login_ID_misc |= ORB_SET_LOGIN_ID(scsi_id->login_response->length_login_ID);
1341
1342 /* Notify us when complete */
1343 scsi_id->logout_orb->login_ID_misc |= ORB_SET_NOTIFY(1);
1344
1345 scsi_id->logout_orb->reserved5 = 0x0;
1346 scsi_id->logout_orb->status_FIFO_lo = SBP2_STATUS_FIFO_ADDRESS_LO +
1347 SBP2_STATUS_FIFO_ENTRY_TO_OFFSET(scsi_id->ud->id);
1348 scsi_id->logout_orb->status_FIFO_hi = (ORB_SET_NODE_ID(hi->host->node_id) |
1349 SBP2_STATUS_FIFO_ADDRESS_HI);
1350
1351 /*
1352 * Byte swap ORB if necessary
1353 */
1354 sbp2util_cpu_to_be32_buffer(scsi_id->logout_orb, sizeof(struct sbp2_logout_orb));
1355
1356 sbp2util_packet_dump(scsi_id->logout_orb, sizeof(struct sbp2_logout_orb),
1357 "sbp2 logout orb", scsi_id->logout_orb_dma);
1358
1359 /*
1360 * Ok, let's write to the target's management agent register
1361 */
1362 data[0] = ORB_SET_NODE_ID(hi->host->node_id);
1363 data[1] = scsi_id->logout_orb_dma;
1364 sbp2util_cpu_to_be32_buffer(data, 8);
1365
1366 atomic_set(&scsi_id->sbp2_login_complete, 0);
1367
1368 error = hpsb_node_write(scsi_id->ne,
1369 scsi_id->sbp2_management_agent_addr,
1370 data, 8);
1371 if (error)
1372 return error;
1373
1374 /* Wait for device to logout...1 second. */
1375 if (sbp2util_down_timeout(&scsi_id->sbp2_login_complete, HZ))
1376 return -EIO;
1377
1378 SBP2_INFO("Logged out of SBP-2 device");
1379
1380 return(0);
1381
1382}
1383
1384/*
1385 * This function is called in order to reconnect to a particular SBP-2
1386 * device, after a bus reset.
1387 */
1388static int sbp2_reconnect_device(struct scsi_id_instance_data *scsi_id)
1389{
1390 struct sbp2scsi_host_info *hi = scsi_id->hi;
1391 quadlet_t data[2];
1392 int error;
1393
1394 SBP2_DEBUG("sbp2_reconnect_device");
1395
1396 /*
1397 * Set-up reconnect ORB
1398 */
1399 scsi_id->reconnect_orb->reserved1 = 0x0;
1400 scsi_id->reconnect_orb->reserved2 = 0x0;
1401 scsi_id->reconnect_orb->reserved3 = 0x0;
1402 scsi_id->reconnect_orb->reserved4 = 0x0;
1403
1404 scsi_id->reconnect_orb->login_ID_misc = ORB_SET_FUNCTION(SBP2_RECONNECT_REQUEST);
1405 scsi_id->reconnect_orb->login_ID_misc |=
1406 ORB_SET_LOGIN_ID(scsi_id->login_response->length_login_ID);
1407
1408 /* Notify us when complete */
1409 scsi_id->reconnect_orb->login_ID_misc |= ORB_SET_NOTIFY(1);
1410
1411 scsi_id->reconnect_orb->reserved5 = 0x0;
1412 scsi_id->reconnect_orb->status_FIFO_lo = SBP2_STATUS_FIFO_ADDRESS_LO +
1413 SBP2_STATUS_FIFO_ENTRY_TO_OFFSET(scsi_id->ud->id);
1414 scsi_id->reconnect_orb->status_FIFO_hi =
1415 (ORB_SET_NODE_ID(hi->host->node_id) | SBP2_STATUS_FIFO_ADDRESS_HI);
1416
1417 /*
1418 * Byte swap ORB if necessary
1419 */
1420 sbp2util_cpu_to_be32_buffer(scsi_id->reconnect_orb, sizeof(struct sbp2_reconnect_orb));
1421
1422 sbp2util_packet_dump(scsi_id->reconnect_orb, sizeof(struct sbp2_reconnect_orb),
1423 "sbp2 reconnect orb", scsi_id->reconnect_orb_dma);
1424
1425 /*
1426 * Initialize status fifo
1427 */
1428 memset(&scsi_id->status_block, 0, sizeof(struct sbp2_status_block));
1429
1430 /*
1431 * Ok, let's write to the target's management agent register
1432 */
1433 data[0] = ORB_SET_NODE_ID(hi->host->node_id);
1434 data[1] = scsi_id->reconnect_orb_dma;
1435 sbp2util_cpu_to_be32_buffer(data, 8);
1436
1437 atomic_set(&scsi_id->sbp2_login_complete, 0);
1438
1439 error = hpsb_node_write(scsi_id->ne,
1440 scsi_id->sbp2_management_agent_addr,
1441 data, 8);
1442 if (error)
1443 return error;
1444
1445 /*
1446 * Wait for reconnect status (up to 1 second)...
1447 */
1448 if (sbp2util_down_timeout(&scsi_id->sbp2_login_complete, HZ)) {
1449 SBP2_ERR("Error reconnecting to SBP-2 device - reconnect timed-out");
1450 return(-EIO);
1451 }
1452
1453 /*
1454 * Sanity. Make sure status returned matches reconnect orb.
1455 */
1456 if (scsi_id->status_block.ORB_offset_lo != scsi_id->reconnect_orb_dma) {
1457 SBP2_ERR("Error reconnecting to SBP-2 device - reconnect timed-out");
1458 return(-EIO);
1459 }
1460
1461 /*
1462 * Check status
1463 */
1464 if (STATUS_GET_RESP(scsi_id->status_block.ORB_offset_hi_misc) ||
1465 STATUS_GET_DEAD_BIT(scsi_id->status_block.ORB_offset_hi_misc) ||
1466 STATUS_GET_SBP_STATUS(scsi_id->status_block.ORB_offset_hi_misc)) {
1467
1468 SBP2_ERR("Error reconnecting to SBP-2 device - reconnect failed");
1469 return(-EIO);
1470 }
1471
1472 HPSB_DEBUG("Reconnected to SBP-2 device");
1473
1474 return(0);
1475
1476}
1477
1478/*
1479 * This function is called in order to set the busy timeout (number of
1480 * retries to attempt) on the sbp2 device.
1481 */
1482static int sbp2_set_busy_timeout(struct scsi_id_instance_data *scsi_id)
1483{
1484 quadlet_t data;
1485
1486 SBP2_DEBUG("sbp2_set_busy_timeout");
1487
1488 /*
1489 * Ok, let's write to the target's busy timeout register
1490 */
1491 data = cpu_to_be32(SBP2_BUSY_TIMEOUT_VALUE);
1492
1493 if (hpsb_node_write(scsi_id->ne, SBP2_BUSY_TIMEOUT_ADDRESS, &data, 4)) {
1494 SBP2_ERR("sbp2_set_busy_timeout error");
1495 }
1496
1497 return(0);
1498}
1499
1500
1501/*
1502 * This function is called to parse sbp2 device's config rom unit
1503 * directory. Used to determine things like sbp2 management agent offset,
1504 * and command set used (SCSI or RBC).
1505 */
1506static void sbp2_parse_unit_directory(struct scsi_id_instance_data *scsi_id,
1507 struct unit_directory *ud)
1508{
1509 struct csr1212_keyval *kv;
1510 struct csr1212_dentry *dentry;
1511 u64 management_agent_addr;
1512 u32 command_set_spec_id, command_set, unit_characteristics,
1513 firmware_revision, workarounds;
1514 int i;
1515
1516 SBP2_DEBUG("sbp2_parse_unit_directory");
1517
1518 management_agent_addr = 0x0;
1519 command_set_spec_id = 0x0;
1520 command_set = 0x0;
1521 unit_characteristics = 0x0;
1522 firmware_revision = 0x0;
1523
1524 /* Handle different fields in the unit directory, based on keys */
1525 csr1212_for_each_dir_entry(ud->ne->csr, kv, ud->ud_kv, dentry) {
1526 switch (kv->key.id) {
1527 case CSR1212_KV_ID_DEPENDENT_INFO:
1528 if (kv->key.type == CSR1212_KV_TYPE_CSR_OFFSET) {
1529 /* Save off the management agent address */
1530 management_agent_addr =
1531 CSR1212_REGISTER_SPACE_BASE +
1532 (kv->value.csr_offset << 2);
1533
1534 SBP2_DEBUG("sbp2_management_agent_addr = %x",
1535 (unsigned int) management_agent_addr);
1536 } else if (kv->key.type == CSR1212_KV_TYPE_IMMEDIATE) {
Ben Collinse309fc62005-11-07 06:31:34 -05001537 scsi_id->sbp2_lun = ORB_SET_LUN(kv->value.immediate);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001538 }
1539 break;
1540
1541 case SBP2_COMMAND_SET_SPEC_ID_KEY:
1542 /* Command spec organization */
1543 command_set_spec_id = kv->value.immediate;
1544 SBP2_DEBUG("sbp2_command_set_spec_id = %x",
1545 (unsigned int) command_set_spec_id);
1546 break;
1547
1548 case SBP2_COMMAND_SET_KEY:
1549 /* Command set used by sbp2 device */
1550 command_set = kv->value.immediate;
1551 SBP2_DEBUG("sbp2_command_set = %x",
1552 (unsigned int) command_set);
1553 break;
1554
1555 case SBP2_UNIT_CHARACTERISTICS_KEY:
1556 /*
1557 * Unit characterisitcs (orb related stuff
1558 * that I'm not yet paying attention to)
1559 */
1560 unit_characteristics = kv->value.immediate;
1561 SBP2_DEBUG("sbp2_unit_characteristics = %x",
1562 (unsigned int) unit_characteristics);
1563 break;
1564
1565 case SBP2_FIRMWARE_REVISION_KEY:
1566 /* Firmware revision */
1567 firmware_revision = kv->value.immediate;
1568 if (force_inquiry_hack)
1569 SBP2_INFO("sbp2_firmware_revision = %x",
1570 (unsigned int) firmware_revision);
1571 else SBP2_DEBUG("sbp2_firmware_revision = %x",
1572 (unsigned int) firmware_revision);
1573 break;
1574
1575 default:
1576 break;
1577 }
1578 }
1579
1580 /* This is the start of our broken device checking. We try to hack
1581 * around oddities and known defects. */
1582 workarounds = 0x0;
1583
1584 /* If the vendor id is 0xa0b8 (Symbios vendor id), then we have a
1585 * bridge with 128KB max transfer size limitation. For sanity, we
1586 * only voice this when the current max_sectors setting
1587 * exceeds the 128k limit. By default, that is not the case.
1588 *
1589 * It would be really nice if we could detect this before the scsi
1590 * host gets initialized. That way we can down-force the
1591 * max_sectors to account for it. That is not currently
1592 * possible. */
1593 if ((firmware_revision & 0xffff00) ==
1594 SBP2_128KB_BROKEN_FIRMWARE &&
1595 (max_sectors * 512) > (128*1024)) {
1596 SBP2_WARN("Node " NODE_BUS_FMT ": Bridge only supports 128KB max transfer size.",
1597 NODE_BUS_ARGS(ud->ne->host, ud->ne->nodeid));
1598 SBP2_WARN("WARNING: Current max_sectors setting is larger than 128KB (%d sectors)!",
1599 max_sectors);
1600 workarounds |= SBP2_BREAKAGE_128K_MAX_TRANSFER;
1601 }
1602
1603 /* Check for a blacklisted set of devices that require us to force
1604 * a 36 byte host inquiry. This can be overriden as a module param
1605 * (to force all hosts). */
1606 for (i = 0; i < NUM_BROKEN_INQUIRY_DEVS; i++) {
1607 if ((firmware_revision & 0xffff00) ==
1608 sbp2_broken_inquiry_list[i]) {
1609 SBP2_WARN("Node " NODE_BUS_FMT ": Using 36byte inquiry workaround",
1610 NODE_BUS_ARGS(ud->ne->host, ud->ne->nodeid));
1611 workarounds |= SBP2_BREAKAGE_INQUIRY_HACK;
1612 break; /* No need to continue. */
1613 }
1614 }
1615
1616 /* If this is a logical unit directory entry, process the parent
1617 * to get the values. */
1618 if (ud->flags & UNIT_DIRECTORY_LUN_DIRECTORY) {
1619 struct unit_directory *parent_ud =
1620 container_of(ud->device.parent, struct unit_directory, device);
1621 sbp2_parse_unit_directory(scsi_id, parent_ud);
1622 } else {
1623 scsi_id->sbp2_management_agent_addr = management_agent_addr;
1624 scsi_id->sbp2_command_set_spec_id = command_set_spec_id;
1625 scsi_id->sbp2_command_set = command_set;
1626 scsi_id->sbp2_unit_characteristics = unit_characteristics;
1627 scsi_id->sbp2_firmware_revision = firmware_revision;
1628 scsi_id->workarounds = workarounds;
1629 if (ud->flags & UNIT_DIRECTORY_HAS_LUN)
Ben Collinse309fc62005-11-07 06:31:34 -05001630 scsi_id->sbp2_lun = ORB_SET_LUN(ud->lun);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001631 }
1632}
1633
1634/*
1635 * This function is called in order to determine the max speed and packet
1636 * size we can use in our ORBs. Note, that we (the driver and host) only
1637 * initiate the transaction. The SBP-2 device actually transfers the data
1638 * (by reading from the DMA area we tell it). This means that the SBP-2
1639 * device decides the actual maximum data it can transfer. We just tell it
1640 * the speed that it needs to use, and the max_rec the host supports, and
1641 * it takes care of the rest.
1642 */
1643static int sbp2_max_speed_and_size(struct scsi_id_instance_data *scsi_id)
1644{
1645 struct sbp2scsi_host_info *hi = scsi_id->hi;
1646
1647 SBP2_DEBUG("sbp2_max_speed_and_size");
1648
1649 /* Initial setting comes from the hosts speed map */
1650 scsi_id->speed_code = hi->host->speed_map[NODEID_TO_NODE(hi->host->node_id) * 64
1651 + NODEID_TO_NODE(scsi_id->ne->nodeid)];
1652
1653 /* Bump down our speed if the user requested it */
1654 if (scsi_id->speed_code > max_speed) {
1655 scsi_id->speed_code = max_speed;
1656 SBP2_ERR("Forcing SBP-2 max speed down to %s",
1657 hpsb_speedto_str[scsi_id->speed_code]);
1658 }
1659
1660 /* Payload size is the lesser of what our speed supports and what
1661 * our host supports. */
1662 scsi_id->max_payload_size = min(sbp2_speedto_max_payload[scsi_id->speed_code],
1663 (u8)(hi->host->csr.max_rec - 1));
1664
1665 HPSB_DEBUG("Node " NODE_BUS_FMT ": Max speed [%s] - Max payload [%u]",
1666 NODE_BUS_ARGS(hi->host, scsi_id->ne->nodeid),
1667 hpsb_speedto_str[scsi_id->speed_code],
1668 1 << ((u32)scsi_id->max_payload_size + 2));
1669
1670 return(0);
1671}
1672
1673/*
1674 * This function is called in order to perform a SBP-2 agent reset.
1675 */
1676static int sbp2_agent_reset(struct scsi_id_instance_data *scsi_id, int wait)
1677{
1678 quadlet_t data;
1679 u64 addr;
1680 int retval;
1681
1682 SBP2_DEBUG("sbp2_agent_reset");
1683
1684 /*
1685 * Ok, let's write to the target's management agent register
1686 */
1687 data = ntohl(SBP2_AGENT_RESET_DATA);
1688 addr = scsi_id->sbp2_command_block_agent_addr + SBP2_AGENT_RESET_OFFSET;
1689
1690 if (wait)
1691 retval = hpsb_node_write(scsi_id->ne, addr, &data, 4);
1692 else
1693 retval = sbp2util_node_write_no_wait(scsi_id->ne, addr, &data, 4);
1694
1695 if (retval < 0) {
1696 SBP2_ERR("hpsb_node_write failed.\n");
1697 return -EIO;
1698 }
1699
1700 /*
1701 * Need to make sure orb pointer is written on next command
1702 */
1703 scsi_id->last_orb = NULL;
1704
1705 return(0);
1706}
1707
1708/*
1709 * This function is called to create the actual command orb and s/g list
1710 * out of the scsi command itself.
1711 */
1712static int sbp2_create_command_orb(struct scsi_id_instance_data *scsi_id,
1713 struct sbp2_command_info *command,
1714 unchar *scsi_cmd,
1715 unsigned int scsi_use_sg,
1716 unsigned int scsi_request_bufflen,
1717 void *scsi_request_buffer,
1718 enum dma_data_direction dma_dir)
1719
1720{
1721 struct sbp2scsi_host_info *hi = scsi_id->hi;
1722 struct scatterlist *sgpnt = (struct scatterlist *) scsi_request_buffer;
1723 struct sbp2_command_orb *command_orb = &command->command_orb;
1724 struct sbp2_unrestricted_page_table *scatter_gather_element =
1725 &command->scatter_gather_element[0];
1726 u32 sg_count, sg_len, orb_direction;
1727 dma_addr_t sg_addr;
1728 int i;
1729
1730 /*
1731 * Set-up our command ORB..
1732 *
1733 * NOTE: We're doing unrestricted page tables (s/g), as this is
1734 * best performance (at least with the devices I have). This means
1735 * that data_size becomes the number of s/g elements, and
1736 * page_size should be zero (for unrestricted).
1737 */
1738 command_orb->next_ORB_hi = ORB_SET_NULL_PTR(1);
1739 command_orb->next_ORB_lo = 0x0;
1740 command_orb->misc = ORB_SET_MAX_PAYLOAD(scsi_id->max_payload_size);
1741 command_orb->misc |= ORB_SET_SPEED(scsi_id->speed_code);
1742 command_orb->misc |= ORB_SET_NOTIFY(1); /* Notify us when complete */
1743
1744 /*
1745 * Get the direction of the transfer. If the direction is unknown, then use our
1746 * goofy table as a back-up.
1747 */
1748 switch (dma_dir) {
1749 case DMA_NONE:
1750 orb_direction = ORB_DIRECTION_NO_DATA_TRANSFER;
1751 break;
1752 case DMA_TO_DEVICE:
1753 orb_direction = ORB_DIRECTION_WRITE_TO_MEDIA;
1754 break;
1755 case DMA_FROM_DEVICE:
1756 orb_direction = ORB_DIRECTION_READ_FROM_MEDIA;
1757 break;
1758 case DMA_BIDIRECTIONAL:
1759 default:
1760 SBP2_ERR("SCSI data transfer direction not specified. "
1761 "Update the SBP2 direction table in sbp2.h if "
1762 "necessary for your application");
1763 __scsi_print_command(scsi_cmd);
1764 orb_direction = sbp2scsi_direction_table[*scsi_cmd];
1765 break;
1766 }
1767
1768 /*
1769 * Set-up our pagetable stuff... unfortunately, this has become
1770 * messier than I'd like. Need to clean this up a bit. ;-)
1771 */
1772 if (orb_direction == ORB_DIRECTION_NO_DATA_TRANSFER) {
1773
1774 SBP2_DEBUG("No data transfer");
1775
1776 /*
1777 * Handle no data transfer
1778 */
1779 command_orb->data_descriptor_hi = 0x0;
1780 command_orb->data_descriptor_lo = 0x0;
1781 command_orb->misc |= ORB_SET_DIRECTION(1);
1782
1783 } else if (scsi_use_sg) {
1784
1785 SBP2_DEBUG("Use scatter/gather");
1786
1787 /*
1788 * Special case if only one element (and less than 64KB in size)
1789 */
1790 if ((scsi_use_sg == 1) && (sgpnt[0].length <= SBP2_MAX_SG_ELEMENT_LENGTH)) {
1791
1792 SBP2_DEBUG("Only one s/g element");
1793 command->dma_dir = dma_dir;
1794 command->dma_size = sgpnt[0].length;
1795 command->dma_type = CMD_DMA_PAGE;
1796 command->cmd_dma = pci_map_page(hi->host->pdev,
1797 sgpnt[0].page,
1798 sgpnt[0].offset,
1799 command->dma_size,
1800 command->dma_dir);
1801 SBP2_DMA_ALLOC("single page scatter element");
1802
1803 command_orb->data_descriptor_hi = ORB_SET_NODE_ID(hi->host->node_id);
1804 command_orb->data_descriptor_lo = command->cmd_dma;
1805 command_orb->misc |= ORB_SET_DATA_SIZE(command->dma_size);
1806 command_orb->misc |= ORB_SET_DIRECTION(orb_direction);
1807
1808 } else {
1809 int count = pci_map_sg(hi->host->pdev, sgpnt, scsi_use_sg, dma_dir);
1810 SBP2_DMA_ALLOC("scatter list");
1811
1812 command->dma_size = scsi_use_sg;
1813 command->dma_dir = dma_dir;
1814 command->sge_buffer = sgpnt;
1815
1816 /* use page tables (s/g) */
1817 command_orb->misc |= ORB_SET_PAGE_TABLE_PRESENT(0x1);
1818 command_orb->misc |= ORB_SET_DIRECTION(orb_direction);
1819 command_orb->data_descriptor_hi = ORB_SET_NODE_ID(hi->host->node_id);
1820 command_orb->data_descriptor_lo = command->sge_dma;
1821
1822 /*
1823 * Loop through and fill out our sbp-2 page tables
1824 * (and split up anything too large)
1825 */
1826 for (i = 0, sg_count = 0 ; i < count; i++, sgpnt++) {
1827 sg_len = sg_dma_len(sgpnt);
1828 sg_addr = sg_dma_address(sgpnt);
1829 while (sg_len) {
1830 scatter_gather_element[sg_count].segment_base_lo = sg_addr;
1831 if (sg_len > SBP2_MAX_SG_ELEMENT_LENGTH) {
1832 scatter_gather_element[sg_count].length_segment_base_hi =
1833 PAGE_TABLE_SET_SEGMENT_LENGTH(SBP2_MAX_SG_ELEMENT_LENGTH);
1834 sg_addr += SBP2_MAX_SG_ELEMENT_LENGTH;
1835 sg_len -= SBP2_MAX_SG_ELEMENT_LENGTH;
1836 } else {
1837 scatter_gather_element[sg_count].length_segment_base_hi =
1838 PAGE_TABLE_SET_SEGMENT_LENGTH(sg_len);
1839 sg_len = 0;
1840 }
1841 sg_count++;
1842 }
1843 }
1844
1845 /* Number of page table (s/g) elements */
1846 command_orb->misc |= ORB_SET_DATA_SIZE(sg_count);
1847
1848 sbp2util_packet_dump(scatter_gather_element,
1849 (sizeof(struct sbp2_unrestricted_page_table)) * sg_count,
1850 "sbp2 s/g list", command->sge_dma);
1851
1852 /*
1853 * Byte swap page tables if necessary
1854 */
1855 sbp2util_cpu_to_be32_buffer(scatter_gather_element,
1856 (sizeof(struct sbp2_unrestricted_page_table)) *
1857 sg_count);
1858
1859 }
1860
1861 } else {
1862
1863 SBP2_DEBUG("No scatter/gather");
1864
1865 command->dma_dir = dma_dir;
1866 command->dma_size = scsi_request_bufflen;
1867 command->dma_type = CMD_DMA_SINGLE;
1868 command->cmd_dma = pci_map_single (hi->host->pdev, scsi_request_buffer,
1869 command->dma_size,
1870 command->dma_dir);
1871 SBP2_DMA_ALLOC("single bulk");
1872
1873 /*
1874 * Handle case where we get a command w/o s/g enabled (but
1875 * check for transfers larger than 64K)
1876 */
1877 if (scsi_request_bufflen <= SBP2_MAX_SG_ELEMENT_LENGTH) {
1878
1879 command_orb->data_descriptor_hi = ORB_SET_NODE_ID(hi->host->node_id);
1880 command_orb->data_descriptor_lo = command->cmd_dma;
1881 command_orb->misc |= ORB_SET_DATA_SIZE(scsi_request_bufflen);
1882 command_orb->misc |= ORB_SET_DIRECTION(orb_direction);
1883
1884 /*
1885 * Sanity, in case our direction table is not
1886 * up-to-date
1887 */
1888 if (!scsi_request_bufflen) {
1889 command_orb->data_descriptor_hi = 0x0;
1890 command_orb->data_descriptor_lo = 0x0;
1891 command_orb->misc |= ORB_SET_DIRECTION(1);
1892 }
1893
1894 } else {
1895 /*
1896 * Need to turn this into page tables, since the
1897 * buffer is too large.
1898 */
1899 command_orb->data_descriptor_hi = ORB_SET_NODE_ID(hi->host->node_id);
1900 command_orb->data_descriptor_lo = command->sge_dma;
1901
1902 /* Use page tables (s/g) */
1903 command_orb->misc |= ORB_SET_PAGE_TABLE_PRESENT(0x1);
1904 command_orb->misc |= ORB_SET_DIRECTION(orb_direction);
1905
1906 /*
1907 * fill out our sbp-2 page tables (and split up
1908 * the large buffer)
1909 */
1910 sg_count = 0;
1911 sg_len = scsi_request_bufflen;
1912 sg_addr = command->cmd_dma;
1913 while (sg_len) {
1914 scatter_gather_element[sg_count].segment_base_lo = sg_addr;
1915 if (sg_len > SBP2_MAX_SG_ELEMENT_LENGTH) {
1916 scatter_gather_element[sg_count].length_segment_base_hi =
1917 PAGE_TABLE_SET_SEGMENT_LENGTH(SBP2_MAX_SG_ELEMENT_LENGTH);
1918 sg_addr += SBP2_MAX_SG_ELEMENT_LENGTH;
1919 sg_len -= SBP2_MAX_SG_ELEMENT_LENGTH;
1920 } else {
1921 scatter_gather_element[sg_count].length_segment_base_hi =
1922 PAGE_TABLE_SET_SEGMENT_LENGTH(sg_len);
1923 sg_len = 0;
1924 }
1925 sg_count++;
1926 }
1927
1928 /* Number of page table (s/g) elements */
1929 command_orb->misc |= ORB_SET_DATA_SIZE(sg_count);
1930
1931 sbp2util_packet_dump(scatter_gather_element,
1932 (sizeof(struct sbp2_unrestricted_page_table)) * sg_count,
1933 "sbp2 s/g list", command->sge_dma);
1934
1935 /*
1936 * Byte swap page tables if necessary
1937 */
1938 sbp2util_cpu_to_be32_buffer(scatter_gather_element,
1939 (sizeof(struct sbp2_unrestricted_page_table)) *
1940 sg_count);
1941
1942 }
1943
1944 }
1945
1946 /*
1947 * Byte swap command ORB if necessary
1948 */
1949 sbp2util_cpu_to_be32_buffer(command_orb, sizeof(struct sbp2_command_orb));
1950
1951 /*
1952 * Put our scsi command in the command ORB
1953 */
1954 memset(command_orb->cdb, 0, 12);
1955 memcpy(command_orb->cdb, scsi_cmd, COMMAND_SIZE(*scsi_cmd));
1956
1957 return(0);
1958}
1959
1960/*
1961 * This function is called in order to begin a regular SBP-2 command.
1962 */
1963static int sbp2_link_orb_command(struct scsi_id_instance_data *scsi_id,
1964 struct sbp2_command_info *command)
1965{
1966 struct sbp2scsi_host_info *hi = scsi_id->hi;
1967 struct sbp2_command_orb *command_orb = &command->command_orb;
1968 struct node_entry *ne = scsi_id->ne;
1969 u64 addr;
1970
1971 outstanding_orb_incr;
1972 SBP2_ORB_DEBUG("sending command orb %p, total orbs = %x",
1973 command_orb, global_outstanding_command_orbs);
1974
1975 pci_dma_sync_single_for_device(hi->host->pdev, command->command_orb_dma,
1976 sizeof(struct sbp2_command_orb),
1977 PCI_DMA_BIDIRECTIONAL);
1978 pci_dma_sync_single_for_device(hi->host->pdev, command->sge_dma,
1979 sizeof(command->scatter_gather_element),
1980 PCI_DMA_BIDIRECTIONAL);
1981 /*
1982 * Check to see if there are any previous orbs to use
1983 */
1984 if (scsi_id->last_orb == NULL) {
1985 quadlet_t data[2];
1986
1987 /*
1988 * Ok, let's write to the target's management agent register
1989 */
1990 addr = scsi_id->sbp2_command_block_agent_addr + SBP2_ORB_POINTER_OFFSET;
1991 data[0] = ORB_SET_NODE_ID(hi->host->node_id);
1992 data[1] = command->command_orb_dma;
1993 sbp2util_cpu_to_be32_buffer(data, 8);
1994
1995 SBP2_ORB_DEBUG("write command agent, command orb %p", command_orb);
1996
1997 if (sbp2util_node_write_no_wait(ne, addr, data, 8) < 0) {
1998 SBP2_ERR("sbp2util_node_write_no_wait failed.\n");
1999 return -EIO;
2000 }
2001
2002 SBP2_ORB_DEBUG("write command agent complete");
2003
2004 scsi_id->last_orb = command_orb;
2005 scsi_id->last_orb_dma = command->command_orb_dma;
2006
2007 } else {
2008 quadlet_t data;
2009
2010 /*
2011 * We have an orb already sent (maybe or maybe not
2012 * processed) that we can append this orb to. So do so,
2013 * and ring the doorbell. Have to be very careful
2014 * modifying these next orb pointers, as they are accessed
2015 * both by the sbp2 device and us.
2016 */
2017 scsi_id->last_orb->next_ORB_lo =
2018 cpu_to_be32(command->command_orb_dma);
2019 /* Tells hardware that this pointer is valid */
2020 scsi_id->last_orb->next_ORB_hi = 0x0;
2021 pci_dma_sync_single_for_device(hi->host->pdev, scsi_id->last_orb_dma,
2022 sizeof(struct sbp2_command_orb),
2023 PCI_DMA_BIDIRECTIONAL);
2024
2025 /*
2026 * Ring the doorbell
2027 */
2028 data = cpu_to_be32(command->command_orb_dma);
2029 addr = scsi_id->sbp2_command_block_agent_addr + SBP2_DOORBELL_OFFSET;
2030
2031 SBP2_ORB_DEBUG("ring doorbell, command orb %p", command_orb);
2032
2033 if (sbp2util_node_write_no_wait(ne, addr, &data, 4) < 0) {
2034 SBP2_ERR("sbp2util_node_write_no_wait failed");
2035 return(-EIO);
2036 }
2037
2038 scsi_id->last_orb = command_orb;
2039 scsi_id->last_orb_dma = command->command_orb_dma;
2040
2041 }
2042 return(0);
2043}
2044
2045/*
2046 * This function is called in order to begin a regular SBP-2 command.
2047 */
2048static int sbp2_send_command(struct scsi_id_instance_data *scsi_id,
2049 struct scsi_cmnd *SCpnt,
2050 void (*done)(struct scsi_cmnd *))
2051{
2052 unchar *cmd = (unchar *) SCpnt->cmnd;
2053 unsigned int request_bufflen = SCpnt->request_bufflen;
2054 struct sbp2_command_info *command;
2055
2056 SBP2_DEBUG("sbp2_send_command");
2057#if (CONFIG_IEEE1394_SBP2_DEBUG >= 2) || defined(CONFIG_IEEE1394_SBP2_PACKET_DUMP)
2058 printk("[scsi command]\n ");
2059 scsi_print_command(SCpnt);
2060#endif
2061 SBP2_DEBUG("SCSI transfer size = %x", request_bufflen);
2062 SBP2_DEBUG("SCSI s/g elements = %x", (unsigned int)SCpnt->use_sg);
2063
2064 /*
2065 * Allocate a command orb and s/g structure
2066 */
2067 command = sbp2util_allocate_command_orb(scsi_id, SCpnt, done);
2068 if (!command) {
2069 return(-EIO);
2070 }
2071
2072 /*
2073 * The scsi stack sends down a request_bufflen which does not match the
2074 * length field in the scsi cdb. This causes some sbp2 devices to
2075 * reject this inquiry command. Fix the request_bufflen.
2076 */
2077 if (*cmd == INQUIRY) {
2078 if (force_inquiry_hack || scsi_id->workarounds & SBP2_BREAKAGE_INQUIRY_HACK)
2079 request_bufflen = cmd[4] = 0x24;
2080 else
2081 request_bufflen = cmd[4];
2082 }
2083
2084 /*
2085 * Now actually fill in the comamnd orb and sbp2 s/g list
2086 */
2087 sbp2_create_command_orb(scsi_id, command, cmd, SCpnt->use_sg,
2088 request_bufflen, SCpnt->request_buffer,
2089 SCpnt->sc_data_direction);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002090
2091 sbp2util_packet_dump(&command->command_orb, sizeof(struct sbp2_command_orb),
2092 "sbp2 command orb", command->command_orb_dma);
2093
2094 /*
2095 * Initialize status fifo
2096 */
2097 memset(&scsi_id->status_block, 0, sizeof(struct sbp2_status_block));
2098
2099 /*
2100 * Link up the orb, and ring the doorbell if needed
2101 */
2102 sbp2_link_orb_command(scsi_id, command);
2103
2104 return(0);
2105}
2106
2107
2108/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002109 * Translates SBP-2 status into SCSI sense data for check conditions
2110 */
2111static unsigned int sbp2_status_to_sense_data(unchar *sbp2_status, unchar *sense_data)
2112{
2113 SBP2_DEBUG("sbp2_status_to_sense_data");
2114
2115 /*
2116 * Ok, it's pretty ugly... ;-)
2117 */
2118 sense_data[0] = 0x70;
2119 sense_data[1] = 0x0;
2120 sense_data[2] = sbp2_status[9];
2121 sense_data[3] = sbp2_status[12];
2122 sense_data[4] = sbp2_status[13];
2123 sense_data[5] = sbp2_status[14];
2124 sense_data[6] = sbp2_status[15];
2125 sense_data[7] = 10;
2126 sense_data[8] = sbp2_status[16];
2127 sense_data[9] = sbp2_status[17];
2128 sense_data[10] = sbp2_status[18];
2129 sense_data[11] = sbp2_status[19];
2130 sense_data[12] = sbp2_status[10];
2131 sense_data[13] = sbp2_status[11];
2132 sense_data[14] = sbp2_status[20];
2133 sense_data[15] = sbp2_status[21];
2134
2135 return(sbp2_status[8] & 0x3f); /* return scsi status */
2136}
2137
2138/*
2139 * This function is called after a command is completed, in order to do any necessary SBP-2
2140 * response data translations for the SCSI stack
2141 */
2142static void sbp2_check_sbp2_response(struct scsi_id_instance_data *scsi_id,
2143 struct scsi_cmnd *SCpnt)
2144{
2145 u8 *scsi_buf = SCpnt->request_buffer;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002146
2147 SBP2_DEBUG("sbp2_check_sbp2_response");
2148
2149 switch (SCpnt->cmnd[0]) {
2150
2151 case INQUIRY:
Linus Torvalds1da177e2005-04-16 15:20:36 -07002152 /*
2153 * Make sure data length is ok. Minimum length is 36 bytes
2154 */
2155 if (scsi_buf[4] == 0) {
2156 scsi_buf[4] = 36 - 5;
2157 }
2158
2159 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002160 * Fix ansi revision and response data format
2161 */
2162 scsi_buf[2] |= 2;
2163 scsi_buf[3] = (scsi_buf[3] & 0xf0) | 2;
2164
2165 break;
2166
Linus Torvalds1da177e2005-04-16 15:20:36 -07002167 default:
2168 break;
2169 }
2170 return;
2171}
2172
2173/*
2174 * This function deals with status writes from the SBP-2 device
2175 */
2176static int sbp2_handle_status_write(struct hpsb_host *host, int nodeid, int destid,
2177 quadlet_t *data, u64 addr, size_t length, u16 fl)
2178{
2179 struct sbp2scsi_host_info *hi;
2180 struct scsi_id_instance_data *scsi_id = NULL, *scsi_id_tmp;
2181 u32 id;
2182 struct scsi_cmnd *SCpnt = NULL;
2183 u32 scsi_status = SBP2_SCSI_STATUS_GOOD;
2184 struct sbp2_command_info *command;
Jody McIntyre79456192005-11-07 06:29:39 -05002185 unsigned long flags;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002186
2187 SBP2_DEBUG("sbp2_handle_status_write");
2188
2189 sbp2util_packet_dump(data, length, "sbp2 status write by device", (u32)addr);
2190
2191 if (!host) {
2192 SBP2_ERR("host is NULL - this is bad!");
2193 return(RCODE_ADDRESS_ERROR);
2194 }
2195
2196 hi = hpsb_get_hostinfo(&sbp2_highlevel, host);
2197
2198 if (!hi) {
2199 SBP2_ERR("host info is NULL - this is bad!");
2200 return(RCODE_ADDRESS_ERROR);
2201 }
2202
2203 /*
2204 * Find our scsi_id structure by looking at the status fifo address written to by
2205 * the sbp2 device.
2206 */
2207 id = SBP2_STATUS_FIFO_OFFSET_TO_ENTRY((u32)(addr - SBP2_STATUS_FIFO_ADDRESS));
2208 list_for_each_entry(scsi_id_tmp, &hi->scsi_ids, scsi_list) {
2209 if (scsi_id_tmp->ne->nodeid == nodeid && scsi_id_tmp->ud->id == id) {
2210 scsi_id = scsi_id_tmp;
2211 break;
2212 }
2213 }
2214
2215 if (!scsi_id) {
2216 SBP2_ERR("scsi_id is NULL - device is gone?");
2217 return(RCODE_ADDRESS_ERROR);
2218 }
2219
2220 /*
2221 * Put response into scsi_id status fifo...
2222 */
2223 memcpy(&scsi_id->status_block, data, length);
2224
2225 /*
2226 * Byte swap first two quadlets (8 bytes) of status for processing
2227 */
2228 sbp2util_be32_to_cpu_buffer(&scsi_id->status_block, 8);
2229
2230 /*
2231 * Handle command ORB status here if necessary. First, need to match status with command.
2232 */
2233 command = sbp2util_find_command_for_orb(scsi_id, scsi_id->status_block.ORB_offset_lo);
2234 if (command) {
2235
2236 SBP2_DEBUG("Found status for command ORB");
2237 pci_dma_sync_single_for_cpu(hi->host->pdev, command->command_orb_dma,
2238 sizeof(struct sbp2_command_orb),
2239 PCI_DMA_BIDIRECTIONAL);
2240 pci_dma_sync_single_for_cpu(hi->host->pdev, command->sge_dma,
2241 sizeof(command->scatter_gather_element),
2242 PCI_DMA_BIDIRECTIONAL);
2243
2244 SBP2_ORB_DEBUG("matched command orb %p", &command->command_orb);
2245 outstanding_orb_decr;
2246
2247 /*
2248 * Matched status with command, now grab scsi command pointers and check status
2249 */
2250 SCpnt = command->Current_SCpnt;
2251 sbp2util_mark_command_completed(scsi_id, command);
2252
2253 if (SCpnt) {
2254
2255 /*
2256 * See if the target stored any scsi status information
2257 */
2258 if (STATUS_GET_LENGTH(scsi_id->status_block.ORB_offset_hi_misc) > 1) {
2259 /*
2260 * Translate SBP-2 status to SCSI sense data
2261 */
2262 SBP2_DEBUG("CHECK CONDITION");
2263 scsi_status = sbp2_status_to_sense_data((unchar *)&scsi_id->status_block, SCpnt->sense_buffer);
2264 }
2265
2266 /*
2267 * Check to see if the dead bit is set. If so, we'll have to initiate
2268 * a fetch agent reset.
2269 */
2270 if (STATUS_GET_DEAD_BIT(scsi_id->status_block.ORB_offset_hi_misc)) {
2271
2272 /*
2273 * Initiate a fetch agent reset.
2274 */
2275 SBP2_DEBUG("Dead bit set - initiating fetch agent reset");
2276 sbp2_agent_reset(scsi_id, 0);
2277 }
2278
2279 SBP2_ORB_DEBUG("completing command orb %p", &command->command_orb);
2280 }
2281
2282 /*
2283 * Check here to see if there are no commands in-use. If there are none, we can
2284 * null out last orb so that next time around we write directly to the orb pointer...
2285 * Quick start saves one 1394 bus transaction.
2286 */
Jody McIntyre79456192005-11-07 06:29:39 -05002287 spin_lock_irqsave(&scsi_id->sbp2_command_orb_lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002288 if (list_empty(&scsi_id->sbp2_command_orb_inuse)) {
2289 scsi_id->last_orb = NULL;
2290 }
Jody McIntyre79456192005-11-07 06:29:39 -05002291 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002292
2293 } else {
2294
2295 /*
2296 * It's probably a login/logout/reconnect status.
2297 */
2298 if ((scsi_id->login_orb_dma == scsi_id->status_block.ORB_offset_lo) ||
2299 (scsi_id->query_logins_orb_dma == scsi_id->status_block.ORB_offset_lo) ||
2300 (scsi_id->reconnect_orb_dma == scsi_id->status_block.ORB_offset_lo) ||
2301 (scsi_id->logout_orb_dma == scsi_id->status_block.ORB_offset_lo)) {
2302 atomic_set(&scsi_id->sbp2_login_complete, 1);
2303 }
2304 }
2305
2306 if (SCpnt) {
2307
2308 /* Complete the SCSI command. */
2309 SBP2_DEBUG("Completing SCSI command");
2310 sbp2scsi_complete_command(scsi_id, scsi_status, SCpnt,
2311 command->Current_done);
2312 SBP2_ORB_DEBUG("command orb completed");
2313 }
2314
2315 return(RCODE_COMPLETE);
2316}
2317
2318
2319/**************************************
2320 * SCSI interface related section
2321 **************************************/
2322
2323/*
2324 * This routine is the main request entry routine for doing I/O. It is
2325 * called from the scsi stack directly.
2326 */
2327static int sbp2scsi_queuecommand(struct scsi_cmnd *SCpnt,
2328 void (*done)(struct scsi_cmnd *))
2329{
2330 struct scsi_id_instance_data *scsi_id =
2331 (struct scsi_id_instance_data *)SCpnt->device->host->hostdata[0];
2332 struct sbp2scsi_host_info *hi;
Jody McIntyreabd559b2005-09-30 11:59:06 -07002333 int result = DID_NO_CONNECT << 16;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002334
2335 SBP2_DEBUG("sbp2scsi_queuecommand");
2336
Jody McIntyreabd559b2005-09-30 11:59:06 -07002337 if (!sbp2util_node_is_available(scsi_id))
2338 goto done;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002339
2340 hi = scsi_id->hi;
2341
2342 if (!hi) {
2343 SBP2_ERR("sbp2scsi_host_info is NULL - this is bad!");
Jody McIntyreabd559b2005-09-30 11:59:06 -07002344 goto done;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002345 }
2346
2347 /*
2348 * Until we handle multiple luns, just return selection time-out
2349 * to any IO directed at non-zero LUNs
2350 */
Jody McIntyreabd559b2005-09-30 11:59:06 -07002351 if (SCpnt->device->lun)
2352 goto done;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002353
2354 /*
2355 * Check for request sense command, and handle it here
2356 * (autorequest sense)
2357 */
2358 if (SCpnt->cmnd[0] == REQUEST_SENSE) {
2359 SBP2_DEBUG("REQUEST_SENSE");
2360 memcpy(SCpnt->request_buffer, SCpnt->sense_buffer, SCpnt->request_bufflen);
2361 memset(SCpnt->sense_buffer, 0, sizeof(SCpnt->sense_buffer));
2362 sbp2scsi_complete_command(scsi_id, SBP2_SCSI_STATUS_GOOD, SCpnt, done);
Jody McIntyreabd559b2005-09-30 11:59:06 -07002363 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002364 }
2365
2366 /*
2367 * Check to see if we are in the middle of a bus reset.
2368 */
2369 if (!hpsb_node_entry_valid(scsi_id->ne)) {
2370 SBP2_ERR("Bus reset in progress - rejecting command");
Jody McIntyreabd559b2005-09-30 11:59:06 -07002371 result = DID_BUS_BUSY << 16;
2372 goto done;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002373 }
2374
2375 /*
2376 * Try and send our SCSI command
2377 */
2378 if (sbp2_send_command(scsi_id, SCpnt, done)) {
2379 SBP2_ERR("Error sending SCSI command");
2380 sbp2scsi_complete_command(scsi_id, SBP2_SCSI_STATUS_SELECTION_TIMEOUT,
2381 SCpnt, done);
2382 }
Jody McIntyreabd559b2005-09-30 11:59:06 -07002383 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002384
Jody McIntyreabd559b2005-09-30 11:59:06 -07002385done:
2386 SCpnt->result = result;
2387 done(SCpnt);
2388 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002389}
2390
2391/*
2392 * This function is called in order to complete all outstanding SBP-2
2393 * commands (in case of resets, etc.).
2394 */
2395static void sbp2scsi_complete_all_commands(struct scsi_id_instance_data *scsi_id,
2396 u32 status)
2397{
2398 struct sbp2scsi_host_info *hi = scsi_id->hi;
2399 struct list_head *lh;
2400 struct sbp2_command_info *command;
Jody McIntyre79456192005-11-07 06:29:39 -05002401 unsigned long flags;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002402
2403 SBP2_DEBUG("sbp2scsi_complete_all_commands");
2404
Jody McIntyre79456192005-11-07 06:29:39 -05002405 spin_lock_irqsave(&scsi_id->sbp2_command_orb_lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002406 while (!list_empty(&scsi_id->sbp2_command_orb_inuse)) {
2407 SBP2_DEBUG("Found pending command to complete");
2408 lh = scsi_id->sbp2_command_orb_inuse.next;
2409 command = list_entry(lh, struct sbp2_command_info, list);
2410 pci_dma_sync_single_for_cpu(hi->host->pdev, command->command_orb_dma,
2411 sizeof(struct sbp2_command_orb),
2412 PCI_DMA_BIDIRECTIONAL);
2413 pci_dma_sync_single_for_cpu(hi->host->pdev, command->sge_dma,
2414 sizeof(command->scatter_gather_element),
2415 PCI_DMA_BIDIRECTIONAL);
2416 sbp2util_mark_command_completed(scsi_id, command);
2417 if (command->Current_SCpnt) {
2418 command->Current_SCpnt->result = status << 16;
2419 command->Current_done(command->Current_SCpnt);
2420 }
2421 }
Jody McIntyre79456192005-11-07 06:29:39 -05002422 spin_unlock_irqrestore(&scsi_id->sbp2_command_orb_lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002423
2424 return;
2425}
2426
2427/*
2428 * This function is called in order to complete a regular SBP-2 command.
2429 *
2430 * This can be called in interrupt context.
2431 */
2432static void sbp2scsi_complete_command(struct scsi_id_instance_data *scsi_id,
2433 u32 scsi_status, struct scsi_cmnd *SCpnt,
2434 void (*done)(struct scsi_cmnd *))
2435{
Linus Torvalds1da177e2005-04-16 15:20:36 -07002436 SBP2_DEBUG("sbp2scsi_complete_command");
2437
2438 /*
2439 * Sanity
2440 */
2441 if (!SCpnt) {
2442 SBP2_ERR("SCpnt is NULL");
2443 return;
2444 }
2445
2446 /*
2447 * If a bus reset is in progress and there was an error, don't
2448 * complete the command, just let it get retried at the end of the
2449 * bus reset.
2450 */
2451 if (!hpsb_node_entry_valid(scsi_id->ne) && (scsi_status != SBP2_SCSI_STATUS_GOOD)) {
2452 SBP2_ERR("Bus reset in progress - retry command later");
2453 return;
2454 }
2455
2456 /*
2457 * Switch on scsi status
2458 */
2459 switch (scsi_status) {
2460 case SBP2_SCSI_STATUS_GOOD:
2461 SCpnt->result = DID_OK;
2462 break;
2463
2464 case SBP2_SCSI_STATUS_BUSY:
2465 SBP2_ERR("SBP2_SCSI_STATUS_BUSY");
2466 SCpnt->result = DID_BUS_BUSY << 16;
2467 break;
2468
2469 case SBP2_SCSI_STATUS_CHECK_CONDITION:
2470 SBP2_DEBUG("SBP2_SCSI_STATUS_CHECK_CONDITION");
2471 SCpnt->result = CHECK_CONDITION << 1;
2472
2473 /*
2474 * Debug stuff
2475 */
2476#if CONFIG_IEEE1394_SBP2_DEBUG >= 1
2477 scsi_print_command(SCpnt);
2478 scsi_print_sense("bh", SCpnt);
2479#endif
2480
2481 break;
2482
2483 case SBP2_SCSI_STATUS_SELECTION_TIMEOUT:
2484 SBP2_ERR("SBP2_SCSI_STATUS_SELECTION_TIMEOUT");
2485 SCpnt->result = DID_NO_CONNECT << 16;
2486 scsi_print_command(SCpnt);
2487 break;
2488
2489 case SBP2_SCSI_STATUS_CONDITION_MET:
2490 case SBP2_SCSI_STATUS_RESERVATION_CONFLICT:
2491 case SBP2_SCSI_STATUS_COMMAND_TERMINATED:
2492 SBP2_ERR("Bad SCSI status = %x", scsi_status);
2493 SCpnt->result = DID_ERROR << 16;
2494 scsi_print_command(SCpnt);
2495 break;
2496
2497 default:
2498 SBP2_ERR("Unsupported SCSI status = %x", scsi_status);
2499 SCpnt->result = DID_ERROR << 16;
2500 }
2501
2502 /*
2503 * Take care of any sbp2 response data mucking here (RBC stuff, etc.)
2504 */
2505 if (SCpnt->result == DID_OK) {
2506 sbp2_check_sbp2_response(scsi_id, SCpnt);
2507 }
2508
2509 /*
2510 * If a bus reset is in progress and there was an error, complete
2511 * the command as busy so that it will get retried.
2512 */
2513 if (!hpsb_node_entry_valid(scsi_id->ne) && (scsi_status != SBP2_SCSI_STATUS_GOOD)) {
2514 SBP2_ERR("Completing command with busy (bus reset)");
2515 SCpnt->result = DID_BUS_BUSY << 16;
2516 }
2517
2518 /*
2519 * If a unit attention occurs, return busy status so it gets
2520 * retried... it could have happened because of a 1394 bus reset
2521 * or hot-plug...
2522 */
2523#if 0
2524 if ((scsi_status == SBP2_SCSI_STATUS_CHECK_CONDITION) &&
2525 (SCpnt->sense_buffer[2] == UNIT_ATTENTION)) {
2526 SBP2_DEBUG("UNIT ATTENTION - return busy");
2527 SCpnt->result = DID_BUS_BUSY << 16;
2528 }
2529#endif
2530
2531 /*
2532 * Tell scsi stack that we're done with this command
2533 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002534 done (SCpnt);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002535}
2536
2537
Jody McIntyreabd559b2005-09-30 11:59:06 -07002538static int sbp2scsi_slave_alloc(struct scsi_device *sdev)
2539{
2540 ((struct scsi_id_instance_data *)sdev->host->hostdata[0])->sdev = sdev;
2541 return 0;
2542}
2543
2544
2545static int sbp2scsi_slave_configure(struct scsi_device *sdev)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002546{
2547 blk_queue_dma_alignment(sdev->request_queue, (512 - 1));
Ben Collins365c7862005-11-07 06:31:24 -05002548 sdev->use_10_for_rw = 1;
2549 sdev->use_10_for_ms = 1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002550 return 0;
2551}
2552
2553
Jody McIntyreabd559b2005-09-30 11:59:06 -07002554static void sbp2scsi_slave_destroy(struct scsi_device *sdev)
2555{
2556 ((struct scsi_id_instance_data *)sdev->host->hostdata[0])->sdev = NULL;
2557 return;
2558}
2559
2560
Linus Torvalds1da177e2005-04-16 15:20:36 -07002561/*
2562 * Called by scsi stack when something has really gone wrong. Usually
2563 * called when a command has timed-out for some reason.
2564 */
2565static int sbp2scsi_abort(struct scsi_cmnd *SCpnt)
2566{
2567 struct scsi_id_instance_data *scsi_id =
2568 (struct scsi_id_instance_data *)SCpnt->device->host->hostdata[0];
2569 struct sbp2scsi_host_info *hi = scsi_id->hi;
2570 struct sbp2_command_info *command;
2571
2572 SBP2_ERR("aborting sbp2 command");
2573 scsi_print_command(SCpnt);
2574
Jody McIntyreabd559b2005-09-30 11:59:06 -07002575 if (sbp2util_node_is_available(scsi_id)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002576
2577 /*
2578 * Right now, just return any matching command structures
2579 * to the free pool.
2580 */
2581 command = sbp2util_find_command_for_SCpnt(scsi_id, SCpnt);
2582 if (command) {
2583 SBP2_DEBUG("Found command to abort");
2584 pci_dma_sync_single_for_cpu(hi->host->pdev,
2585 command->command_orb_dma,
2586 sizeof(struct sbp2_command_orb),
2587 PCI_DMA_BIDIRECTIONAL);
2588 pci_dma_sync_single_for_cpu(hi->host->pdev,
2589 command->sge_dma,
2590 sizeof(command->scatter_gather_element),
2591 PCI_DMA_BIDIRECTIONAL);
2592 sbp2util_mark_command_completed(scsi_id, command);
2593 if (command->Current_SCpnt) {
2594 command->Current_SCpnt->result = DID_ABORT << 16;
2595 command->Current_done(command->Current_SCpnt);
2596 }
2597 }
2598
2599 /*
2600 * Initiate a fetch agent reset.
2601 */
2602 sbp2_agent_reset(scsi_id, 0);
2603 sbp2scsi_complete_all_commands(scsi_id, DID_BUS_BUSY);
2604 }
2605
2606 return(SUCCESS);
2607}
2608
2609/*
2610 * Called by scsi stack when something has really gone wrong.
2611 */
Jody McIntyreabd559b2005-09-30 11:59:06 -07002612static int sbp2scsi_reset(struct scsi_cmnd *SCpnt)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002613{
2614 struct scsi_id_instance_data *scsi_id =
2615 (struct scsi_id_instance_data *)SCpnt->device->host->hostdata[0];
Jody McIntyreabd559b2005-09-30 11:59:06 -07002616 unsigned long flags;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002617
2618 SBP2_ERR("reset requested");
2619
Jody McIntyreabd559b2005-09-30 11:59:06 -07002620 spin_lock_irqsave(SCpnt->device->host->host_lock, flags);
2621
2622 if (sbp2util_node_is_available(scsi_id)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002623 SBP2_ERR("Generating sbp2 fetch agent reset");
2624 sbp2_agent_reset(scsi_id, 0);
2625 }
2626
Jeff Garzik 94d0e7b2005-05-28 07:55:48 -04002627 spin_unlock_irqrestore(SCpnt->device->host->host_lock, flags);
2628
Jody McIntyreabd559b2005-09-30 11:59:06 -07002629 return SUCCESS;
Jeff Garzik 94d0e7b2005-05-28 07:55:48 -04002630}
2631
Linus Torvalds1da177e2005-04-16 15:20:36 -07002632static const char *sbp2scsi_info (struct Scsi_Host *host)
2633{
2634 return "SCSI emulation for IEEE-1394 SBP-2 Devices";
2635}
2636
Yani Ioannoue404e272005-05-17 06:42:58 -04002637static ssize_t sbp2_sysfs_ieee1394_id_show(struct device *dev, struct device_attribute *attr, char *buf)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002638{
2639 struct scsi_device *sdev;
2640 struct scsi_id_instance_data *scsi_id;
2641 int lun;
2642
2643 if (!(sdev = to_scsi_device(dev)))
2644 return 0;
2645
2646 if (!(scsi_id = (struct scsi_id_instance_data *)sdev->host->hostdata[0]))
2647 return 0;
2648
Ben Collinse309fc62005-11-07 06:31:34 -05002649 lun = ORB_SET_LUN(scsi_id->sbp2_lun);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002650
2651 return sprintf(buf, "%016Lx:%d:%d\n", (unsigned long long)scsi_id->ne->guid,
2652 scsi_id->ud->id, lun);
2653}
2654static DEVICE_ATTR(ieee1394_id, S_IRUGO, sbp2_sysfs_ieee1394_id_show, NULL);
2655
2656static struct device_attribute *sbp2_sysfs_sdev_attrs[] = {
2657 &dev_attr_ieee1394_id,
2658 NULL
2659};
2660
2661MODULE_AUTHOR("Ben Collins <bcollins@debian.org>");
2662MODULE_DESCRIPTION("IEEE-1394 SBP-2 protocol driver");
2663MODULE_SUPPORTED_DEVICE(SBP2_DEVICE_NAME);
2664MODULE_LICENSE("GPL");
2665
2666/* SCSI host template */
2667static struct scsi_host_template scsi_driver_template = {
2668 .module = THIS_MODULE,
2669 .name = "SBP-2 IEEE-1394",
2670 .proc_name = SBP2_DEVICE_NAME,
2671 .info = sbp2scsi_info,
2672 .queuecommand = sbp2scsi_queuecommand,
2673 .eh_abort_handler = sbp2scsi_abort,
2674 .eh_device_reset_handler = sbp2scsi_reset,
2675 .eh_bus_reset_handler = sbp2scsi_reset,
2676 .eh_host_reset_handler = sbp2scsi_reset,
Jody McIntyreabd559b2005-09-30 11:59:06 -07002677 .slave_alloc = sbp2scsi_slave_alloc,
Linus Torvalds1da177e2005-04-16 15:20:36 -07002678 .slave_configure = sbp2scsi_slave_configure,
Jody McIntyreabd559b2005-09-30 11:59:06 -07002679 .slave_destroy = sbp2scsi_slave_destroy,
Linus Torvalds1da177e2005-04-16 15:20:36 -07002680 .this_id = -1,
2681 .sg_tablesize = SG_ALL,
2682 .use_clustering = ENABLE_CLUSTERING,
2683 .cmd_per_lun = SBP2_MAX_CMDS,
2684 .can_queue = SBP2_MAX_CMDS,
2685 .emulated = 1,
2686 .sdev_attrs = sbp2_sysfs_sdev_attrs,
2687};
2688
2689static int sbp2_module_init(void)
2690{
2691 int ret;
2692
2693 SBP2_DEBUG("sbp2_module_init");
2694
2695 printk(KERN_INFO "sbp2: %s\n", version);
2696
2697 /* Module load debug option to force one command at a time (serializing I/O) */
2698 if (serialize_io) {
Jody McIntyre2bab3592005-09-30 11:59:07 -07002699 SBP2_INFO("Driver forced to serialize I/O (serialize_io=1)");
2700 SBP2_INFO("Try serialize_io=0 for better performance");
Linus Torvalds1da177e2005-04-16 15:20:36 -07002701 scsi_driver_template.can_queue = 1;
2702 scsi_driver_template.cmd_per_lun = 1;
2703 }
2704
2705 /* Set max sectors (module load option). Default is 255 sectors. */
2706 scsi_driver_template.max_sectors = max_sectors;
2707
2708
2709 /* Register our high level driver with 1394 stack */
2710 hpsb_register_highlevel(&sbp2_highlevel);
2711
2712 ret = hpsb_register_protocol(&sbp2_driver);
2713 if (ret) {
2714 SBP2_ERR("Failed to register protocol");
2715 hpsb_unregister_highlevel(&sbp2_highlevel);
2716 return ret;
2717 }
2718
2719 return 0;
2720}
2721
2722static void __exit sbp2_module_exit(void)
2723{
2724 SBP2_DEBUG("sbp2_module_exit");
2725
2726 hpsb_unregister_protocol(&sbp2_driver);
2727
2728 hpsb_unregister_highlevel(&sbp2_highlevel);
2729}
2730
2731module_init(sbp2_module_init);
2732module_exit(sbp2_module_exit);