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Kristian Høgsbergc781c062007-05-07 20:33:32 -04001/*
2 * SBP2 driver (SCSI over IEEE1394)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05003 *
Kristian Høgsberg27a15e52007-02-06 14:49:39 -05004 * Copyright (C) 2005-2007 Kristian Hoegsberg <krh@bitplanet.net>
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05005 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software Foundation,
18 * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
19 */
20
Kristian Høgsbergc781c062007-05-07 20:33:32 -040021/*
22 * The basic structure of this driver is based on the old storage driver,
Kristian Høgsberg27a15e52007-02-06 14:49:39 -050023 * drivers/ieee1394/sbp2.c, originally written by
24 * James Goodwin <jamesg@filanet.com>
25 * with later contributions and ongoing maintenance from
26 * Ben Collins <bcollins@debian.org>,
27 * Stefan Richter <stefanr@s5r6.in-berlin.de>
28 * and many others.
29 */
30
Stefan Richter7bb6bf72008-02-03 23:12:17 +010031#include <linux/blkdev.h>
Stefan Richter09b12dd2008-08-14 21:47:21 +020032#include <linux/bug.h>
Stefan Richter9220f192008-02-03 23:04:38 +010033#include <linux/delay.h>
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -050034#include <linux/device.h>
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -050035#include <linux/dma-mapping.h>
Stefan Richter7bb6bf72008-02-03 23:12:17 +010036#include <linux/kernel.h>
37#include <linux/mod_devicetable.h>
38#include <linux/module.h>
39#include <linux/moduleparam.h>
40#include <linux/scatterlist.h>
Stefan Richtere7cdf232007-07-01 13:54:57 +020041#include <linux/string.h>
Stefan Richter2df222b2007-08-13 17:48:25 +020042#include <linux/stringify.h>
Kristian Høgsberg1d3d52c2007-02-06 14:49:33 -050043#include <linux/timer.h>
Stefan Richterdf8ec242007-08-12 12:51:18 +020044#include <linux/workqueue.h>
Stefan Richterb5d2a5e2008-01-25 18:57:41 +010045#include <asm/system.h>
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -050046
47#include <scsi/scsi.h>
48#include <scsi/scsi_cmnd.h>
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -050049#include <scsi/scsi_device.h>
50#include <scsi/scsi_host.h>
51
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -050052#include "fw-device.h"
Stefan Richter7bb6bf72008-02-03 23:12:17 +010053#include "fw-topology.h"
54#include "fw-transaction.h"
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -050055
Stefan Richter5cd54c92007-06-17 23:55:41 +020056/*
57 * So far only bridges from Oxford Semiconductor are known to support
58 * concurrent logins. Depending on firmware, four or two concurrent logins
59 * are possible on OXFW911 and newer Oxsemi bridges.
60 *
61 * Concurrent logins are useful together with cluster filesystems.
62 */
63static int sbp2_param_exclusive_login = 1;
64module_param_named(exclusive_login, sbp2_param_exclusive_login, bool, 0644);
65MODULE_PARM_DESC(exclusive_login, "Exclusive login to sbp2 device "
66 "(default = Y, use N for concurrent initiators)");
67
Stefan Richter2df222b2007-08-13 17:48:25 +020068/*
69 * Flags for firmware oddities
70 *
71 * - 128kB max transfer
72 * Limit transfer size. Necessary for some old bridges.
73 *
74 * - 36 byte inquiry
75 * When scsi_mod probes the device, let the inquiry command look like that
76 * from MS Windows.
77 *
78 * - skip mode page 8
79 * Suppress sending of mode_sense for mode page 8 if the device pretends to
80 * support the SCSI Primary Block commands instead of Reduced Block Commands.
81 *
82 * - fix capacity
83 * Tell sd_mod to correct the last sector number reported by read_capacity.
84 * Avoids access beyond actual disk limits on devices with an off-by-one bug.
85 * Don't use this with devices which don't have this bug.
86 *
Stefan Richter9220f192008-02-03 23:04:38 +010087 * - delay inquiry
88 * Wait extra SBP2_INQUIRY_DELAY seconds after login before SCSI inquiry.
89 *
Stefan Richterffcaade2008-05-11 00:35:04 +020090 * - power condition
91 * Set the power condition field in the START STOP UNIT commands sent by
92 * sd_mod on suspend, resume, and shutdown (if manage_start_stop is on).
93 * Some disks need this to spin down or to resume properly.
94 *
Stefan Richter2df222b2007-08-13 17:48:25 +020095 * - override internal blacklist
96 * Instead of adding to the built-in blacklist, use only the workarounds
97 * specified in the module load parameter.
98 * Useful if a blacklist entry interfered with a non-broken device.
99 */
100#define SBP2_WORKAROUND_128K_MAX_TRANS 0x1
101#define SBP2_WORKAROUND_INQUIRY_36 0x2
102#define SBP2_WORKAROUND_MODE_SENSE_8 0x4
103#define SBP2_WORKAROUND_FIX_CAPACITY 0x8
Stefan Richter9220f192008-02-03 23:04:38 +0100104#define SBP2_WORKAROUND_DELAY_INQUIRY 0x10
105#define SBP2_INQUIRY_DELAY 12
Stefan Richterffcaade2008-05-11 00:35:04 +0200106#define SBP2_WORKAROUND_POWER_CONDITION 0x20
Stefan Richter2df222b2007-08-13 17:48:25 +0200107#define SBP2_WORKAROUND_OVERRIDE 0x100
108
109static int sbp2_param_workarounds;
110module_param_named(workarounds, sbp2_param_workarounds, int, 0644);
111MODULE_PARM_DESC(workarounds, "Work around device bugs (default = 0"
112 ", 128kB max transfer = " __stringify(SBP2_WORKAROUND_128K_MAX_TRANS)
113 ", 36 byte inquiry = " __stringify(SBP2_WORKAROUND_INQUIRY_36)
114 ", skip mode page 8 = " __stringify(SBP2_WORKAROUND_MODE_SENSE_8)
115 ", fix capacity = " __stringify(SBP2_WORKAROUND_FIX_CAPACITY)
Stefan Richter9220f192008-02-03 23:04:38 +0100116 ", delay inquiry = " __stringify(SBP2_WORKAROUND_DELAY_INQUIRY)
Stefan Richterffcaade2008-05-11 00:35:04 +0200117 ", set power condition in start stop unit = "
118 __stringify(SBP2_WORKAROUND_POWER_CONDITION)
Stefan Richter2df222b2007-08-13 17:48:25 +0200119 ", override internal blacklist = " __stringify(SBP2_WORKAROUND_OVERRIDE)
120 ", or a combination)");
121
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500122/* I don't know why the SCSI stack doesn't define something like this... */
Kristian Høgsberga98e2712007-05-07 20:33:34 -0400123typedef void (*scsi_done_fn_t)(struct scsi_cmnd *);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500124
125static const char sbp2_driver_name[] = "sbp2";
126
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200127/*
128 * We create one struct sbp2_logical_unit per SBP-2 Logical Unit Number Entry
129 * and one struct scsi_device per sbp2_logical_unit.
130 */
131struct sbp2_logical_unit {
132 struct sbp2_target *tgt;
133 struct list_head link;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500134 struct fw_address_handler address_handler;
135 struct list_head orb_list;
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200136
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500137 u64 command_block_agent_address;
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200138 u16 lun;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500139 int login_id;
140
Kristian Høgsbergc781c062007-05-07 20:33:32 -0400141 /*
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200142 * The generation is updated once we've logged in or reconnected
143 * to the logical unit. Thus, I/O to the device will automatically
144 * fail and get retried if it happens in a window where the device
145 * is not ready, e.g. after a bus reset but before we reconnect.
Kristian Høgsbergc781c062007-05-07 20:33:32 -0400146 */
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500147 int generation;
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500148 int retries;
149 struct delayed_work work;
Stefan Richterf8436152008-02-26 23:30:02 +0100150 bool has_sdev;
Stefan Richter2e2705b2008-02-16 16:37:28 +0100151 bool blocked;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500152};
153
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200154/*
155 * We create one struct sbp2_target per IEEE 1212 Unit Directory
156 * and one struct Scsi_Host per sbp2_target.
157 */
158struct sbp2_target {
159 struct kref kref;
160 struct fw_unit *unit;
Stefan Richter48f18c72008-02-03 23:09:50 +0100161 const char *bus_id;
Stefan Richter05cca7382008-01-26 17:42:45 +0100162 struct list_head lu_list;
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200163
164 u64 management_agent_address;
Stefan Richterc9755e12008-03-24 20:54:28 +0100165 u64 guid;
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200166 int directory_id;
167 int node_id;
168 int address_high;
Stefan Richter05cca7382008-01-26 17:42:45 +0100169 unsigned int workarounds;
Jarod Wilson384170d2008-01-25 23:31:12 -0500170 unsigned int mgt_orb_timeout;
Stefan Richter2e2705b2008-02-16 16:37:28 +0100171
172 int dont_block; /* counter for each logical unit */
173 int blocked; /* ditto */
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200174};
175
Jarod Wilsona4c379c2008-01-19 13:15:05 +0100176/*
177 * Per section 7.4.8 of the SBP-2 spec, a mgt_ORB_timeout value can be
Jarod Wilson384170d2008-01-25 23:31:12 -0500178 * provided in the config rom. Most devices do provide a value, which
179 * we'll use for login management orbs, but with some sane limits.
Jarod Wilsona4c379c2008-01-19 13:15:05 +0100180 */
Jarod Wilson384170d2008-01-25 23:31:12 -0500181#define SBP2_MIN_LOGIN_ORB_TIMEOUT 5000U /* Timeout in ms */
182#define SBP2_MAX_LOGIN_ORB_TIMEOUT 40000U /* Timeout in ms */
Stefan Richter05cca7382008-01-26 17:42:45 +0100183#define SBP2_ORB_TIMEOUT 2000U /* Timeout in ms */
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500184#define SBP2_ORB_NULL 0x80000000
Jarod Wilson17cff9f2008-03-07 01:43:31 -0500185#define SBP2_RETRY_LIMIT 0xf /* 15 retries */
186#define SBP2_CYCLE_LIMIT (0xc8 << 12) /* 200 125us cycles */
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500187
Stefan Richter09b12dd2008-08-14 21:47:21 +0200188/*
189 * The default maximum s/g segment size of a FireWire controller is
190 * usually 0x10000, but SBP-2 only allows 0xffff. Since buffers have to
191 * be quadlet-aligned, we set the length limit to 0xffff & ~3.
192 */
193#define SBP2_MAX_SEG_SIZE 0xfffc
194
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500195/* Unit directory keys */
Jarod Wilson384170d2008-01-25 23:31:12 -0500196#define SBP2_CSR_UNIT_CHARACTERISTICS 0x3a
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200197#define SBP2_CSR_FIRMWARE_REVISION 0x3c
198#define SBP2_CSR_LOGICAL_UNIT_NUMBER 0x14
199#define SBP2_CSR_LOGICAL_UNIT_DIRECTORY 0xd4
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500200
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500201/* Management orb opcodes */
202#define SBP2_LOGIN_REQUEST 0x0
203#define SBP2_QUERY_LOGINS_REQUEST 0x1
204#define SBP2_RECONNECT_REQUEST 0x3
205#define SBP2_SET_PASSWORD_REQUEST 0x4
206#define SBP2_LOGOUT_REQUEST 0x7
207#define SBP2_ABORT_TASK_REQUEST 0xb
208#define SBP2_ABORT_TASK_SET 0xc
209#define SBP2_LOGICAL_UNIT_RESET 0xe
210#define SBP2_TARGET_RESET_REQUEST 0xf
211
212/* Offsets for command block agent registers */
213#define SBP2_AGENT_STATE 0x00
214#define SBP2_AGENT_RESET 0x04
215#define SBP2_ORB_POINTER 0x08
216#define SBP2_DOORBELL 0x10
217#define SBP2_UNSOLICITED_STATUS_ENABLE 0x14
218
219/* Status write response codes */
220#define SBP2_STATUS_REQUEST_COMPLETE 0x0
221#define SBP2_STATUS_TRANSPORT_FAILURE 0x1
222#define SBP2_STATUS_ILLEGAL_REQUEST 0x2
223#define SBP2_STATUS_VENDOR_DEPENDENT 0x3
224
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400225#define STATUS_GET_ORB_HIGH(v) ((v).status & 0xffff)
226#define STATUS_GET_SBP_STATUS(v) (((v).status >> 16) & 0xff)
227#define STATUS_GET_LEN(v) (((v).status >> 24) & 0x07)
228#define STATUS_GET_DEAD(v) (((v).status >> 27) & 0x01)
229#define STATUS_GET_RESPONSE(v) (((v).status >> 28) & 0x03)
230#define STATUS_GET_SOURCE(v) (((v).status >> 30) & 0x03)
231#define STATUS_GET_ORB_LOW(v) ((v).orb_low)
232#define STATUS_GET_DATA(v) ((v).data)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500233
234struct sbp2_status {
235 u32 status;
236 u32 orb_low;
237 u8 data[24];
238};
239
240struct sbp2_pointer {
Stefan Richter71ee9f02008-02-28 20:51:11 +0100241 __be32 high;
242 __be32 low;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500243};
244
245struct sbp2_orb {
246 struct fw_transaction t;
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400247 struct kref kref;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500248 dma_addr_t request_bus;
249 int rcode;
250 struct sbp2_pointer pointer;
Kristian Høgsberga98e2712007-05-07 20:33:34 -0400251 void (*callback)(struct sbp2_orb * orb, struct sbp2_status * status);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500252 struct list_head link;
253};
254
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400255#define MANAGEMENT_ORB_LUN(v) ((v))
256#define MANAGEMENT_ORB_FUNCTION(v) ((v) << 16)
257#define MANAGEMENT_ORB_RECONNECT(v) ((v) << 20)
Stefan Richter5cd54c92007-06-17 23:55:41 +0200258#define MANAGEMENT_ORB_EXCLUSIVE(v) ((v) ? 1 << 28 : 0)
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400259#define MANAGEMENT_ORB_REQUEST_FORMAT(v) ((v) << 29)
260#define MANAGEMENT_ORB_NOTIFY ((1) << 31)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500261
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400262#define MANAGEMENT_ORB_RESPONSE_LENGTH(v) ((v))
263#define MANAGEMENT_ORB_PASSWORD_LENGTH(v) ((v) << 16)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500264
265struct sbp2_management_orb {
266 struct sbp2_orb base;
267 struct {
268 struct sbp2_pointer password;
269 struct sbp2_pointer response;
Stefan Richter71ee9f02008-02-28 20:51:11 +0100270 __be32 misc;
271 __be32 length;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500272 struct sbp2_pointer status_fifo;
273 } request;
274 __be32 response[4];
275 dma_addr_t response_bus;
276 struct completion done;
277 struct sbp2_status status;
278};
279
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500280struct sbp2_login_response {
Stefan Richter71ee9f02008-02-28 20:51:11 +0100281 __be32 misc;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500282 struct sbp2_pointer command_block_agent;
Stefan Richter71ee9f02008-02-28 20:51:11 +0100283 __be32 reconnect_hold;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500284};
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400285#define COMMAND_ORB_DATA_SIZE(v) ((v))
286#define COMMAND_ORB_PAGE_SIZE(v) ((v) << 16)
287#define COMMAND_ORB_PAGE_TABLE_PRESENT ((1) << 19)
288#define COMMAND_ORB_MAX_PAYLOAD(v) ((v) << 20)
289#define COMMAND_ORB_SPEED(v) ((v) << 24)
Stefan Richter0d7dcbf2008-02-28 20:52:02 +0100290#define COMMAND_ORB_DIRECTION ((1) << 27)
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400291#define COMMAND_ORB_REQUEST_FORMAT(v) ((v) << 29)
292#define COMMAND_ORB_NOTIFY ((1) << 31)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500293
294struct sbp2_command_orb {
295 struct sbp2_orb base;
296 struct {
297 struct sbp2_pointer next;
298 struct sbp2_pointer data_descriptor;
Stefan Richter71ee9f02008-02-28 20:51:11 +0100299 __be32 misc;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500300 u8 command_block[12];
301 } request;
302 struct scsi_cmnd *cmd;
303 scsi_done_fn_t done;
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200304 struct sbp2_logical_unit *lu;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500305
Stefan Richter9fb2dd12007-07-01 13:55:31 +0200306 struct sbp2_pointer page_table[SG_ALL] __attribute__((aligned(8)));
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500307 dma_addr_t page_table_bus;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500308};
309
310/*
311 * List of devices with known bugs.
312 *
313 * The firmware_revision field, masked with 0xffff00, is the best
314 * indicator for the type of bridge chip of a device. It yields a few
315 * false positives but this did not break correctly behaving devices
316 * so far. We use ~0 as a wildcard, since the 24 bit values we get
317 * from the config rom can never match that.
318 */
319static const struct {
320 u32 firmware_revision;
321 u32 model;
Stefan Richter05cca7382008-01-26 17:42:45 +0100322 unsigned int workarounds;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500323} sbp2_workarounds_table[] = {
324 /* DViCO Momobay CX-1 with TSB42AA9 bridge */ {
325 .firmware_revision = 0x002800,
326 .model = 0x001010,
327 .workarounds = SBP2_WORKAROUND_INQUIRY_36 |
Stefan Richterffcaade2008-05-11 00:35:04 +0200328 SBP2_WORKAROUND_MODE_SENSE_8 |
329 SBP2_WORKAROUND_POWER_CONDITION,
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500330 },
Stefan Richter9220f192008-02-03 23:04:38 +0100331 /* DViCO Momobay FX-3A with TSB42AA9A bridge */ {
332 .firmware_revision = 0x002800,
333 .model = 0x000000,
Stefan Richterffcaade2008-05-11 00:35:04 +0200334 .workarounds = SBP2_WORKAROUND_DELAY_INQUIRY |
335 SBP2_WORKAROUND_POWER_CONDITION,
Stefan Richter9220f192008-02-03 23:04:38 +0100336 },
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500337 /* Initio bridges, actually only needed for some older ones */ {
338 .firmware_revision = 0x000200,
339 .model = ~0,
340 .workarounds = SBP2_WORKAROUND_INQUIRY_36,
341 },
Stefan Richterffcaade2008-05-11 00:35:04 +0200342 /* PL-3507 bridge with Prolific firmware */ {
343 .firmware_revision = 0x012800,
344 .model = ~0,
345 .workarounds = SBP2_WORKAROUND_POWER_CONDITION,
346 },
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500347 /* Symbios bridge */ {
348 .firmware_revision = 0xa0b800,
349 .model = ~0,
350 .workarounds = SBP2_WORKAROUND_128K_MAX_TRANS,
351 },
Stefan Richter2aa9ff72008-03-11 22:32:03 +0100352 /* Datafab MD2-FW2 with Symbios/LSILogic SYM13FW500 bridge */ {
353 .firmware_revision = 0x002600,
354 .model = ~0,
355 .workarounds = SBP2_WORKAROUND_128K_MAX_TRANS,
356 },
Kristian Høgsbergc781c062007-05-07 20:33:32 -0400357
358 /*
359 * There are iPods (2nd gen, 3rd gen) with model_id == 0, but
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500360 * these iPods do not feature the read_capacity bug according
361 * to one report. Read_capacity behaviour as well as model_id
Kristian Høgsbergc781c062007-05-07 20:33:32 -0400362 * could change due to Apple-supplied firmware updates though.
363 */
364
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500365 /* iPod 4th generation. */ {
366 .firmware_revision = 0x0a2700,
367 .model = 0x000021,
368 .workarounds = SBP2_WORKAROUND_FIX_CAPACITY,
369 },
370 /* iPod mini */ {
371 .firmware_revision = 0x0a2700,
372 .model = 0x000023,
373 .workarounds = SBP2_WORKAROUND_FIX_CAPACITY,
374 },
375 /* iPod Photo */ {
376 .firmware_revision = 0x0a2700,
377 .model = 0x00007e,
378 .workarounds = SBP2_WORKAROUND_FIX_CAPACITY,
379 }
380};
381
382static void
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400383free_orb(struct kref *kref)
384{
385 struct sbp2_orb *orb = container_of(kref, struct sbp2_orb, kref);
386
387 kfree(orb);
388}
389
390static void
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500391sbp2_status_write(struct fw_card *card, struct fw_request *request,
392 int tcode, int destination, int source,
393 int generation, int speed,
394 unsigned long long offset,
395 void *payload, size_t length, void *callback_data)
396{
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200397 struct sbp2_logical_unit *lu = callback_data;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500398 struct sbp2_orb *orb;
399 struct sbp2_status status;
400 size_t header_size;
401 unsigned long flags;
402
403 if (tcode != TCODE_WRITE_BLOCK_REQUEST ||
Kristian Høgsberg2d826cc2007-05-09 19:23:14 -0400404 length == 0 || length > sizeof(status)) {
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500405 fw_send_response(card, request, RCODE_TYPE_ERROR);
406 return;
407 }
408
409 header_size = min(length, 2 * sizeof(u32));
410 fw_memcpy_from_be32(&status, payload, header_size);
411 if (length > header_size)
412 memcpy(status.data, payload + 8, length - header_size);
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400413 if (STATUS_GET_SOURCE(status) == 2 || STATUS_GET_SOURCE(status) == 3) {
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500414 fw_notify("non-orb related status write, not handled\n");
415 fw_send_response(card, request, RCODE_COMPLETE);
416 return;
417 }
418
419 /* Lookup the orb corresponding to this status write. */
420 spin_lock_irqsave(&card->lock, flags);
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200421 list_for_each_entry(orb, &lu->orb_list, link) {
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400422 if (STATUS_GET_ORB_HIGH(status) == 0 &&
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400423 STATUS_GET_ORB_LOW(status) == orb->request_bus) {
424 orb->rcode = RCODE_COMPLETE;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500425 list_del(&orb->link);
426 break;
427 }
428 }
429 spin_unlock_irqrestore(&card->lock, flags);
430
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200431 if (&orb->link != &lu->orb_list)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500432 orb->callback(orb, &status);
433 else
434 fw_error("status write for unknown orb\n");
435
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400436 kref_put(&orb->kref, free_orb);
437
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500438 fw_send_response(card, request, RCODE_COMPLETE);
439}
440
441static void
442complete_transaction(struct fw_card *card, int rcode,
443 void *payload, size_t length, void *data)
444{
445 struct sbp2_orb *orb = data;
446 unsigned long flags;
447
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400448 /*
449 * This is a little tricky. We can get the status write for
450 * the orb before we get this callback. The status write
451 * handler above will assume the orb pointer transaction was
452 * successful and set the rcode to RCODE_COMPLETE for the orb.
453 * So this callback only sets the rcode if it hasn't already
454 * been set and only does the cleanup if the transaction
455 * failed and we didn't already get a status write.
456 */
457 spin_lock_irqsave(&card->lock, flags);
458
459 if (orb->rcode == -1)
460 orb->rcode = rcode;
461 if (orb->rcode != RCODE_COMPLETE) {
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500462 list_del(&orb->link);
Stefan Richter1b34e972007-08-25 10:40:42 +0200463 spin_unlock_irqrestore(&card->lock, flags);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500464 orb->callback(orb, NULL);
Stefan Richter1b34e972007-08-25 10:40:42 +0200465 } else {
466 spin_unlock_irqrestore(&card->lock, flags);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500467 }
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400468
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400469 kref_put(&orb->kref, free_orb);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500470}
471
472static void
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200473sbp2_send_orb(struct sbp2_orb *orb, struct sbp2_logical_unit *lu,
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500474 int node_id, int generation, u64 offset)
475{
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200476 struct fw_device *device = fw_device(lu->tgt->unit->device.parent);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500477 unsigned long flags;
478
479 orb->pointer.high = 0;
Stefan Richter71ee9f02008-02-28 20:51:11 +0100480 orb->pointer.low = cpu_to_be32(orb->request_bus);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500481
482 spin_lock_irqsave(&device->card->lock, flags);
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200483 list_add_tail(&orb->link, &lu->orb_list);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500484 spin_unlock_irqrestore(&device->card->lock, flags);
485
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400486 /* Take a ref for the orb list and for the transaction callback. */
487 kref_get(&orb->kref);
488 kref_get(&orb->kref);
489
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500490 fw_send_request(device->card, &orb->t, TCODE_WRITE_BLOCK_REQUEST,
Stefan Richterf1397492007-06-10 21:31:36 +0200491 node_id, generation, device->max_speed, offset,
Kristian Høgsberg2d826cc2007-05-09 19:23:14 -0400492 &orb->pointer, sizeof(orb->pointer),
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500493 complete_transaction, orb);
494}
495
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200496static int sbp2_cancel_orbs(struct sbp2_logical_unit *lu)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500497{
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200498 struct fw_device *device = fw_device(lu->tgt->unit->device.parent);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500499 struct sbp2_orb *orb, *next;
500 struct list_head list;
501 unsigned long flags;
Kristian Høgsberg2aaad972007-03-07 12:12:47 -0500502 int retval = -ENOENT;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500503
504 INIT_LIST_HEAD(&list);
505 spin_lock_irqsave(&device->card->lock, flags);
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200506 list_splice_init(&lu->orb_list, &list);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500507 spin_unlock_irqrestore(&device->card->lock, flags);
508
509 list_for_each_entry_safe(orb, next, &list, link) {
Kristian Høgsberg2aaad972007-03-07 12:12:47 -0500510 retval = 0;
Kristian Høgsberg730c32f2007-02-06 14:49:32 -0500511 if (fw_cancel_transaction(device->card, &orb->t) == 0)
512 continue;
513
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500514 orb->rcode = RCODE_CANCELLED;
515 orb->callback(orb, NULL);
516 }
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500517
Kristian Høgsberg2aaad972007-03-07 12:12:47 -0500518 return retval;
Kristian Høgsberg1d3d52c2007-02-06 14:49:33 -0500519}
520
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500521static void
522complete_management_orb(struct sbp2_orb *base_orb, struct sbp2_status *status)
523{
524 struct sbp2_management_orb *orb =
Jay Fenlason6f061482007-06-27 16:04:33 -0400525 container_of(base_orb, struct sbp2_management_orb, base);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500526
527 if (status)
Kristian Høgsberg2d826cc2007-05-09 19:23:14 -0400528 memcpy(&orb->status, status, sizeof(*status));
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500529 complete(&orb->done);
530}
531
532static int
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200533sbp2_send_management_orb(struct sbp2_logical_unit *lu, int node_id,
534 int generation, int function, int lun_or_login_id,
535 void *response)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500536{
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200537 struct fw_device *device = fw_device(lu->tgt->unit->device.parent);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500538 struct sbp2_management_orb *orb;
Jarod Wilsona4c379c2008-01-19 13:15:05 +0100539 unsigned int timeout;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500540 int retval = -ENOMEM;
541
Stefan Richterbe6f48b2008-01-27 19:14:44 +0100542 if (function == SBP2_LOGOUT_REQUEST && fw_device_is_shutdown(device))
543 return 0;
544
Kristian Høgsberg2d826cc2007-05-09 19:23:14 -0400545 orb = kzalloc(sizeof(*orb), GFP_ATOMIC);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500546 if (orb == NULL)
547 return -ENOMEM;
548
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400549 kref_init(&orb->base.kref);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500550 orb->response_bus =
551 dma_map_single(device->card->device, &orb->response,
Kristian Høgsberg2d826cc2007-05-09 19:23:14 -0400552 sizeof(orb->response), DMA_FROM_DEVICE);
FUJITA Tomonori8d8bb392008-07-25 19:44:49 -0700553 if (dma_mapping_error(device->card->device, orb->response_bus))
Stefan Richter7aa48482007-07-02 21:04:44 +0200554 goto fail_mapping_response;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500555
Stefan Richter71ee9f02008-02-28 20:51:11 +0100556 orb->request.response.high = 0;
557 orb->request.response.low = cpu_to_be32(orb->response_bus);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500558
Stefan Richter71ee9f02008-02-28 20:51:11 +0100559 orb->request.misc = cpu_to_be32(
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400560 MANAGEMENT_ORB_NOTIFY |
561 MANAGEMENT_ORB_FUNCTION(function) |
Stefan Richter71ee9f02008-02-28 20:51:11 +0100562 MANAGEMENT_ORB_LUN(lun_or_login_id));
563 orb->request.length = cpu_to_be32(
564 MANAGEMENT_ORB_RESPONSE_LENGTH(sizeof(orb->response)));
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500565
Stefan Richter71ee9f02008-02-28 20:51:11 +0100566 orb->request.status_fifo.high =
567 cpu_to_be32(lu->address_handler.offset >> 32);
568 orb->request.status_fifo.low =
569 cpu_to_be32(lu->address_handler.offset);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500570
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500571 if (function == SBP2_LOGIN_REQUEST) {
Stefan Richter14dc9922008-01-20 01:25:31 +0100572 /* Ask for 2^2 == 4 seconds reconnect grace period */
Stefan Richter71ee9f02008-02-28 20:51:11 +0100573 orb->request.misc |= cpu_to_be32(
Stefan Richter14dc9922008-01-20 01:25:31 +0100574 MANAGEMENT_ORB_RECONNECT(2) |
Stefan Richter71ee9f02008-02-28 20:51:11 +0100575 MANAGEMENT_ORB_EXCLUSIVE(sbp2_param_exclusive_login));
Jarod Wilson384170d2008-01-25 23:31:12 -0500576 timeout = lu->tgt->mgt_orb_timeout;
Jarod Wilsona4c379c2008-01-19 13:15:05 +0100577 } else {
578 timeout = SBP2_ORB_TIMEOUT;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500579 }
580
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500581 init_completion(&orb->done);
582 orb->base.callback = complete_management_orb;
Kristian Høgsberg2aaad972007-03-07 12:12:47 -0500583
Stefan Richter7aa48482007-07-02 21:04:44 +0200584 orb->base.request_bus =
585 dma_map_single(device->card->device, &orb->request,
586 sizeof(orb->request), DMA_TO_DEVICE);
FUJITA Tomonori8d8bb392008-07-25 19:44:49 -0700587 if (dma_mapping_error(device->card->device, orb->base.request_bus))
Stefan Richter7aa48482007-07-02 21:04:44 +0200588 goto fail_mapping_request;
589
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200590 sbp2_send_orb(&orb->base, lu, node_id, generation,
591 lu->tgt->management_agent_address);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500592
Jarod Wilsona4c379c2008-01-19 13:15:05 +0100593 wait_for_completion_timeout(&orb->done, msecs_to_jiffies(timeout));
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500594
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500595 retval = -EIO;
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200596 if (sbp2_cancel_orbs(lu) == 0) {
Stefan Richter48f18c72008-02-03 23:09:50 +0100597 fw_error("%s: orb reply timed out, rcode=0x%02x\n",
598 lu->tgt->bus_id, orb->base.rcode);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500599 goto out;
600 }
601
Kristian Høgsberg2aaad972007-03-07 12:12:47 -0500602 if (orb->base.rcode != RCODE_COMPLETE) {
Stefan Richter48f18c72008-02-03 23:09:50 +0100603 fw_error("%s: management write failed, rcode 0x%02x\n",
604 lu->tgt->bus_id, orb->base.rcode);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500605 goto out;
606 }
607
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400608 if (STATUS_GET_RESPONSE(orb->status) != 0 ||
609 STATUS_GET_SBP_STATUS(orb->status) != 0) {
Stefan Richter48f18c72008-02-03 23:09:50 +0100610 fw_error("%s: error status: %d:%d\n", lu->tgt->bus_id,
Kristian Høgsberga77754a2007-05-07 20:33:35 -0400611 STATUS_GET_RESPONSE(orb->status),
612 STATUS_GET_SBP_STATUS(orb->status));
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500613 goto out;
614 }
615
616 retval = 0;
617 out:
618 dma_unmap_single(device->card->device, orb->base.request_bus,
Kristian Høgsberg2d826cc2007-05-09 19:23:14 -0400619 sizeof(orb->request), DMA_TO_DEVICE);
Stefan Richter7aa48482007-07-02 21:04:44 +0200620 fail_mapping_request:
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500621 dma_unmap_single(device->card->device, orb->response_bus,
Kristian Høgsberg2d826cc2007-05-09 19:23:14 -0400622 sizeof(orb->response), DMA_FROM_DEVICE);
Stefan Richter7aa48482007-07-02 21:04:44 +0200623 fail_mapping_response:
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500624 if (response)
Stefan Richter71ee9f02008-02-28 20:51:11 +0100625 memcpy(response, orb->response, sizeof(orb->response));
Kristian Høgsberge57d2012007-08-24 18:59:58 -0400626 kref_put(&orb->base.kref, free_orb);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500627
628 return retval;
629}
630
Stefan Richtere0e60212008-02-03 23:08:58 +0100631static void sbp2_agent_reset(struct sbp2_logical_unit *lu)
632{
633 struct fw_device *device = fw_device(lu->tgt->unit->device.parent);
Jay Fenlason1e119fa2008-07-20 14:20:53 +0200634 __be32 d = 0;
Stefan Richtere0e60212008-02-03 23:08:58 +0100635
Jay Fenlason1e119fa2008-07-20 14:20:53 +0200636 fw_run_transaction(device->card, TCODE_WRITE_QUADLET_REQUEST,
637 lu->tgt->node_id, lu->generation, device->max_speed,
638 lu->command_block_agent_address + SBP2_AGENT_RESET,
639 &d, sizeof(d));
Stefan Richtere0e60212008-02-03 23:08:58 +0100640}
641
642static void
643complete_agent_reset_write_no_wait(struct fw_card *card, int rcode,
644 void *payload, size_t length, void *data)
645{
646 kfree(data);
647}
648
649static void sbp2_agent_reset_no_wait(struct sbp2_logical_unit *lu)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500650{
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200651 struct fw_device *device = fw_device(lu->tgt->unit->device.parent);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500652 struct fw_transaction *t;
Jay Fenlason1e119fa2008-07-20 14:20:53 +0200653 static __be32 d;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500654
Stefan Richtere0e60212008-02-03 23:08:58 +0100655 t = kmalloc(sizeof(*t), GFP_ATOMIC);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500656 if (t == NULL)
Stefan Richtere0e60212008-02-03 23:08:58 +0100657 return;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500658
659 fw_send_request(device->card, t, TCODE_WRITE_QUADLET_REQUEST,
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200660 lu->tgt->node_id, lu->generation, device->max_speed,
661 lu->command_block_agent_address + SBP2_AGENT_RESET,
Jay Fenlason1e119fa2008-07-20 14:20:53 +0200662 &d, sizeof(d), complete_agent_reset_write_no_wait, t);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500663}
664
Stefan Richter2e2705b2008-02-16 16:37:28 +0100665static void sbp2_set_generation(struct sbp2_logical_unit *lu, int generation)
666{
667 struct fw_card *card = fw_device(lu->tgt->unit->device.parent)->card;
668 unsigned long flags;
669
670 /* serialize with comparisons of lu->generation and card->generation */
671 spin_lock_irqsave(&card->lock, flags);
672 lu->generation = generation;
673 spin_unlock_irqrestore(&card->lock, flags);
674}
675
676static inline void sbp2_allow_block(struct sbp2_logical_unit *lu)
677{
678 /*
679 * We may access dont_block without taking card->lock here:
680 * All callers of sbp2_allow_block() and all callers of sbp2_unblock()
681 * are currently serialized against each other.
682 * And a wrong result in sbp2_conditionally_block()'s access of
683 * dont_block is rather harmless, it simply misses its first chance.
684 */
685 --lu->tgt->dont_block;
686}
687
688/*
689 * Blocks lu->tgt if all of the following conditions are met:
690 * - Login, INQUIRY, and high-level SCSI setup of all of the target's
691 * logical units have been finished (indicated by dont_block == 0).
692 * - lu->generation is stale.
693 *
694 * Note, scsi_block_requests() must be called while holding card->lock,
695 * otherwise it might foil sbp2_[conditionally_]unblock()'s attempt to
696 * unblock the target.
697 */
698static void sbp2_conditionally_block(struct sbp2_logical_unit *lu)
699{
700 struct sbp2_target *tgt = lu->tgt;
701 struct fw_card *card = fw_device(tgt->unit->device.parent)->card;
702 struct Scsi_Host *shost =
703 container_of((void *)tgt, struct Scsi_Host, hostdata[0]);
704 unsigned long flags;
705
706 spin_lock_irqsave(&card->lock, flags);
707 if (!tgt->dont_block && !lu->blocked &&
708 lu->generation != card->generation) {
709 lu->blocked = true;
Stefan Richtera5fd9ec2008-02-28 20:53:45 +0100710 if (++tgt->blocked == 1)
Stefan Richter2e2705b2008-02-16 16:37:28 +0100711 scsi_block_requests(shost);
Stefan Richter2e2705b2008-02-16 16:37:28 +0100712 }
713 spin_unlock_irqrestore(&card->lock, flags);
714}
715
716/*
717 * Unblocks lu->tgt as soon as all its logical units can be unblocked.
718 * Note, it is harmless to run scsi_unblock_requests() outside the
719 * card->lock protected section. On the other hand, running it inside
720 * the section might clash with shost->host_lock.
721 */
722static void sbp2_conditionally_unblock(struct sbp2_logical_unit *lu)
723{
724 struct sbp2_target *tgt = lu->tgt;
725 struct fw_card *card = fw_device(tgt->unit->device.parent)->card;
726 struct Scsi_Host *shost =
727 container_of((void *)tgt, struct Scsi_Host, hostdata[0]);
728 unsigned long flags;
729 bool unblock = false;
730
731 spin_lock_irqsave(&card->lock, flags);
732 if (lu->blocked && lu->generation == card->generation) {
733 lu->blocked = false;
734 unblock = --tgt->blocked == 0;
735 }
736 spin_unlock_irqrestore(&card->lock, flags);
737
Stefan Richtera5fd9ec2008-02-28 20:53:45 +0100738 if (unblock)
Stefan Richter2e2705b2008-02-16 16:37:28 +0100739 scsi_unblock_requests(shost);
Stefan Richter2e2705b2008-02-16 16:37:28 +0100740}
741
742/*
743 * Prevents future blocking of tgt and unblocks it.
744 * Note, it is harmless to run scsi_unblock_requests() outside the
745 * card->lock protected section. On the other hand, running it inside
746 * the section might clash with shost->host_lock.
747 */
748static void sbp2_unblock(struct sbp2_target *tgt)
749{
750 struct fw_card *card = fw_device(tgt->unit->device.parent)->card;
751 struct Scsi_Host *shost =
752 container_of((void *)tgt, struct Scsi_Host, hostdata[0]);
753 unsigned long flags;
754
755 spin_lock_irqsave(&card->lock, flags);
756 ++tgt->dont_block;
757 spin_unlock_irqrestore(&card->lock, flags);
758
759 scsi_unblock_requests(shost);
760}
761
Stefan Richterf8436152008-02-26 23:30:02 +0100762static int sbp2_lun2int(u16 lun)
763{
764 struct scsi_lun eight_bytes_lun;
765
766 memset(&eight_bytes_lun, 0, sizeof(eight_bytes_lun));
767 eight_bytes_lun.scsi_lun[0] = (lun >> 8) & 0xff;
768 eight_bytes_lun.scsi_lun[1] = lun & 0xff;
769
770 return scsilun_to_int(&eight_bytes_lun);
771}
772
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200773static void sbp2_release_target(struct kref *kref)
Kristian Høgsbergb3d6e152007-03-14 17:34:58 -0400774{
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200775 struct sbp2_target *tgt = container_of(kref, struct sbp2_target, kref);
776 struct sbp2_logical_unit *lu, *next;
777 struct Scsi_Host *shost =
778 container_of((void *)tgt, struct Scsi_Host, hostdata[0]);
Stefan Richterf8436152008-02-26 23:30:02 +0100779 struct scsi_device *sdev;
Stefan Richter855c6032008-02-27 22:14:27 +0100780 struct fw_device *device = fw_device(tgt->unit->device.parent);
Kristian Høgsbergb3d6e152007-03-14 17:34:58 -0400781
Stefan Richter2e2705b2008-02-16 16:37:28 +0100782 /* prevent deadlocks */
783 sbp2_unblock(tgt);
784
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200785 list_for_each_entry_safe(lu, next, &tgt->lu_list, link) {
Stefan Richterf8436152008-02-26 23:30:02 +0100786 sdev = scsi_device_lookup(shost, 0, 0, sbp2_lun2int(lu->lun));
787 if (sdev) {
788 scsi_remove_device(sdev);
789 scsi_device_put(sdev);
Stefan Richter33f1c6c32008-02-19 09:05:49 +0100790 }
Stefan Richterbe6f48b2008-01-27 19:14:44 +0100791 sbp2_send_management_orb(lu, tgt->node_id, lu->generation,
792 SBP2_LOGOUT_REQUEST, lu->login_id, NULL);
Stefan Richter4dccd022008-01-20 01:24:26 +0100793
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200794 fw_core_remove_address_handler(&lu->address_handler);
795 list_del(&lu->link);
796 kfree(lu);
797 }
798 scsi_remove_host(shost);
Stefan Richterf32ddad2008-04-24 23:17:47 +0200799 fw_notify("released %s, target %d:0:0\n", tgt->bus_id, shost->host_no);
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200800
Stefan Richter1dc3bea2008-02-24 19:01:21 +0100801 fw_unit_put(tgt->unit);
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200802 scsi_host_put(shost);
Stefan Richter855c6032008-02-27 22:14:27 +0100803 fw_device_put(device);
Kristian Høgsbergb3d6e152007-03-14 17:34:58 -0400804}
805
Stefan Richterdf8ec242007-08-12 12:51:18 +0200806static struct workqueue_struct *sbp2_wq;
807
Stefan Richter285838e2007-11-07 01:12:51 +0100808/*
809 * Always get the target's kref when scheduling work on one its units.
810 * Each workqueue job is responsible to call sbp2_target_put() upon return.
811 */
812static void sbp2_queue_work(struct sbp2_logical_unit *lu, unsigned long delay)
813{
814 if (queue_delayed_work(sbp2_wq, &lu->work, delay))
815 kref_get(&lu->tgt->kref);
816}
817
818static void sbp2_target_put(struct sbp2_target *tgt)
819{
820 kref_put(&tgt->kref, sbp2_release_target);
821}
822
Jarod Wilson17cff9f2008-03-07 01:43:31 -0500823/*
824 * Write retransmit retry values into the BUSY_TIMEOUT register.
825 * - The single-phase retry protocol is supported by all SBP-2 devices, but the
826 * default retry_limit value is 0 (i.e. never retry transmission). We write a
827 * saner value after logging into the device.
828 * - The dual-phase retry protocol is optional to implement, and if not
829 * supported, writes to the dual-phase portion of the register will be
830 * ignored. We try to write the original 1394-1995 default here.
831 * - In the case of devices that are also SBP-3-compliant, all writes are
832 * ignored, as the register is read-only, but contains single-phase retry of
833 * 15, which is what we're trying to set for all SBP-2 device anyway, so this
834 * write attempt is safe and yields more consistent behavior for all devices.
835 *
836 * See section 8.3.2.3.5 of the 1394-1995 spec, section 6.2 of the SBP-2 spec,
837 * and section 6.4 of the SBP-3 spec for further details.
838 */
Jarod Wilson51f9dbe2008-03-07 01:43:01 -0500839static void sbp2_set_busy_timeout(struct sbp2_logical_unit *lu)
840{
841 struct fw_device *device = fw_device(lu->tgt->unit->device.parent);
Jay Fenlason1e119fa2008-07-20 14:20:53 +0200842 __be32 d = cpu_to_be32(SBP2_CYCLE_LIMIT | SBP2_RETRY_LIMIT);
Jarod Wilson51f9dbe2008-03-07 01:43:01 -0500843
Jay Fenlason1e119fa2008-07-20 14:20:53 +0200844 fw_run_transaction(device->card, TCODE_WRITE_QUADLET_REQUEST,
845 lu->tgt->node_id, lu->generation, device->max_speed,
846 CSR_REGISTER_BASE + CSR_BUSY_TIMEOUT,
847 &d, sizeof(d));
Jarod Wilson51f9dbe2008-03-07 01:43:01 -0500848}
849
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200850static void sbp2_reconnect(struct work_struct *work);
851
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500852static void sbp2_login(struct work_struct *work)
853{
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200854 struct sbp2_logical_unit *lu =
855 container_of(work, struct sbp2_logical_unit, work.work);
Stefan Richter48f18c72008-02-03 23:09:50 +0100856 struct sbp2_target *tgt = lu->tgt;
857 struct fw_device *device = fw_device(tgt->unit->device.parent);
858 struct Scsi_Host *shost;
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200859 struct scsi_device *sdev;
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500860 struct sbp2_login_response response;
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200861 int generation, node_id, local_node_id;
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500862
Stefan Richterbe6f48b2008-01-27 19:14:44 +0100863 if (fw_device_is_shutdown(device))
864 goto out;
865
Stefan Richter5a8a1bc2008-01-24 01:53:19 +0100866 generation = device->generation;
Stefan Richterb5d2a5e2008-01-25 18:57:41 +0100867 smp_rmb(); /* node_id must not be older than generation */
Stefan Richter5a8a1bc2008-01-24 01:53:19 +0100868 node_id = device->node_id;
869 local_node_id = device->card->node_id;
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500870
Stefan Richterce896d92008-02-03 23:11:39 +0100871 /* If this is a re-login attempt, log out, or we might be rejected. */
Stefan Richterf8436152008-02-26 23:30:02 +0100872 if (lu->has_sdev)
Stefan Richterce896d92008-02-03 23:11:39 +0100873 sbp2_send_management_orb(lu, device->node_id, generation,
874 SBP2_LOGOUT_REQUEST, lu->login_id, NULL);
875
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200876 if (sbp2_send_management_orb(lu, node_id, generation,
877 SBP2_LOGIN_REQUEST, lu->lun, &response) < 0) {
Stefan Richter2e2705b2008-02-16 16:37:28 +0100878 if (lu->retries++ < 5) {
Stefan Richter285838e2007-11-07 01:12:51 +0100879 sbp2_queue_work(lu, DIV_ROUND_UP(HZ, 5));
Stefan Richter2e2705b2008-02-16 16:37:28 +0100880 } else {
Stefan Richter48f18c72008-02-03 23:09:50 +0100881 fw_error("%s: failed to login to LUN %04x\n",
882 tgt->bus_id, lu->lun);
Stefan Richter2e2705b2008-02-16 16:37:28 +0100883 /* Let any waiting I/O fail from now on. */
884 sbp2_unblock(lu->tgt);
885 }
Stefan Richter285838e2007-11-07 01:12:51 +0100886 goto out;
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500887 }
888
Stefan Richter48f18c72008-02-03 23:09:50 +0100889 tgt->node_id = node_id;
890 tgt->address_high = local_node_id << 16;
Stefan Richter2e2705b2008-02-16 16:37:28 +0100891 sbp2_set_generation(lu, generation);
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500892
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200893 lu->command_block_agent_address =
Stefan Richter71ee9f02008-02-28 20:51:11 +0100894 ((u64)(be32_to_cpu(response.command_block_agent.high) & 0xffff)
895 << 32) | be32_to_cpu(response.command_block_agent.low);
896 lu->login_id = be32_to_cpu(response.misc) & 0xffff;
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500897
Stefan Richter48f18c72008-02-03 23:09:50 +0100898 fw_notify("%s: logged in to LUN %04x (%d retries)\n",
899 tgt->bus_id, lu->lun, lu->retries);
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500900
Jarod Wilson51f9dbe2008-03-07 01:43:01 -0500901 /* set appropriate retry limit(s) in BUSY_TIMEOUT register */
902 sbp2_set_busy_timeout(lu);
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500903
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200904 PREPARE_DELAYED_WORK(&lu->work, sbp2_reconnect);
905 sbp2_agent_reset(lu);
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500906
Stefan Richter0fa6dfd2008-02-03 23:10:47 +0100907 /* This was a re-login. */
Stefan Richterf8436152008-02-26 23:30:02 +0100908 if (lu->has_sdev) {
Stefan Richter0fa6dfd2008-02-03 23:10:47 +0100909 sbp2_cancel_orbs(lu);
Stefan Richter2e2705b2008-02-16 16:37:28 +0100910 sbp2_conditionally_unblock(lu);
Stefan Richter0fa6dfd2008-02-03 23:10:47 +0100911 goto out;
912 }
913
Stefan Richter9220f192008-02-03 23:04:38 +0100914 if (lu->tgt->workarounds & SBP2_WORKAROUND_DELAY_INQUIRY)
915 ssleep(SBP2_INQUIRY_DELAY);
916
Stefan Richter48f18c72008-02-03 23:09:50 +0100917 shost = container_of((void *)tgt, struct Scsi_Host, hostdata[0]);
Stefan Richterf8436152008-02-26 23:30:02 +0100918 sdev = __scsi_add_device(shost, 0, 0, sbp2_lun2int(lu->lun), lu);
Stefan Richtere80de372008-02-15 21:29:02 +0100919 /*
920 * FIXME: We are unable to perform reconnects while in sbp2_login().
921 * Therefore __scsi_add_device() will get into trouble if a bus reset
922 * happens in parallel. It will either fail or leave us with an
923 * unusable sdev. As a workaround we check for this and retry the
924 * whole login and SCSI probing.
925 */
Stefan Richter1b9c12b2008-01-26 17:43:23 +0100926
Stefan Richtere80de372008-02-15 21:29:02 +0100927 /* Reported error during __scsi_add_device() */
928 if (IS_ERR(sdev))
929 goto out_logout_login;
930
Stefan Richtere80de372008-02-15 21:29:02 +0100931 /* Unreported error during __scsi_add_device() */
932 smp_rmb(); /* get current card generation */
933 if (generation != device->card->generation) {
934 scsi_remove_device(sdev);
Stefan Richter33f1c6c32008-02-19 09:05:49 +0100935 scsi_device_put(sdev);
Stefan Richtere80de372008-02-15 21:29:02 +0100936 goto out_logout_login;
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500937 }
Stefan Richtere80de372008-02-15 21:29:02 +0100938
939 /* No error during __scsi_add_device() */
Stefan Richterf8436152008-02-26 23:30:02 +0100940 lu->has_sdev = true;
941 scsi_device_put(sdev);
Stefan Richter2e2705b2008-02-16 16:37:28 +0100942 sbp2_allow_block(lu);
Stefan Richtere80de372008-02-15 21:29:02 +0100943 goto out;
944
945 out_logout_login:
946 smp_rmb(); /* generation may have changed */
947 generation = device->generation;
948 smp_rmb(); /* node_id must not be older than generation */
949
950 sbp2_send_management_orb(lu, device->node_id, generation,
951 SBP2_LOGOUT_REQUEST, lu->login_id, NULL);
952 /*
953 * If a bus reset happened, sbp2_update will have requeued
954 * lu->work already. Reset the work from reconnect to login.
955 */
956 PREPARE_DELAYED_WORK(&lu->work, sbp2_login);
Stefan Richter285838e2007-11-07 01:12:51 +0100957 out:
Stefan Richter48f18c72008-02-03 23:09:50 +0100958 sbp2_target_put(tgt);
Kristian Høgsberg7f37c422007-02-06 14:49:34 -0500959}
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -0500960
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200961static int sbp2_add_logical_unit(struct sbp2_target *tgt, int lun_entry)
962{
963 struct sbp2_logical_unit *lu;
964
965 lu = kmalloc(sizeof(*lu), GFP_KERNEL);
966 if (!lu)
967 return -ENOMEM;
968
969 lu->address_handler.length = 0x100;
970 lu->address_handler.address_callback = sbp2_status_write;
971 lu->address_handler.callback_data = lu;
972
973 if (fw_core_add_address_handler(&lu->address_handler,
974 &fw_high_memory_region) < 0) {
975 kfree(lu);
976 return -ENOMEM;
977 }
978
Stefan Richterf8436152008-02-26 23:30:02 +0100979 lu->tgt = tgt;
980 lu->lun = lun_entry & 0xffff;
981 lu->retries = 0;
982 lu->has_sdev = false;
983 lu->blocked = false;
Stefan Richter2e2705b2008-02-16 16:37:28 +0100984 ++tgt->dont_block;
Stefan Richter5a3c2be2007-08-25 14:05:28 +0200985 INIT_LIST_HEAD(&lu->orb_list);
986 INIT_DELAYED_WORK(&lu->work, sbp2_login);
987
988 list_add_tail(&lu->link, &tgt->lu_list);
989 return 0;
990}
991
992static int sbp2_scan_logical_unit_dir(struct sbp2_target *tgt, u32 *directory)
993{
994 struct fw_csr_iterator ci;
995 int key, value;
996
997 fw_csr_iterator_init(&ci, directory);
998 while (fw_csr_iterator_next(&ci, &key, &value))
999 if (key == SBP2_CSR_LOGICAL_UNIT_NUMBER &&
1000 sbp2_add_logical_unit(tgt, value) < 0)
1001 return -ENOMEM;
1002 return 0;
1003}
1004
1005static int sbp2_scan_unit_dir(struct sbp2_target *tgt, u32 *directory,
1006 u32 *model, u32 *firmware_revision)
1007{
1008 struct fw_csr_iterator ci;
1009 int key, value;
Jarod Wilson384170d2008-01-25 23:31:12 -05001010 unsigned int timeout;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001011
1012 fw_csr_iterator_init(&ci, directory);
1013 while (fw_csr_iterator_next(&ci, &key, &value)) {
1014 switch (key) {
1015
1016 case CSR_DEPENDENT_INFO | CSR_OFFSET:
1017 tgt->management_agent_address =
1018 CSR_REGISTER_BASE + 4 * value;
1019 break;
1020
1021 case CSR_DIRECTORY_ID:
1022 tgt->directory_id = value;
1023 break;
1024
1025 case CSR_MODEL:
1026 *model = value;
1027 break;
1028
1029 case SBP2_CSR_FIRMWARE_REVISION:
1030 *firmware_revision = value;
1031 break;
1032
Jarod Wilson384170d2008-01-25 23:31:12 -05001033 case SBP2_CSR_UNIT_CHARACTERISTICS:
1034 /* the timeout value is stored in 500ms units */
1035 timeout = ((unsigned int) value >> 8 & 0xff) * 500;
1036 timeout = max(timeout, SBP2_MIN_LOGIN_ORB_TIMEOUT);
1037 tgt->mgt_orb_timeout =
1038 min(timeout, SBP2_MAX_LOGIN_ORB_TIMEOUT);
1039
1040 if (timeout > tgt->mgt_orb_timeout)
1041 fw_notify("%s: config rom contains %ds "
1042 "management ORB timeout, limiting "
Stefan Richter48f18c72008-02-03 23:09:50 +01001043 "to %ds\n", tgt->bus_id,
Jarod Wilson384170d2008-01-25 23:31:12 -05001044 timeout / 1000,
1045 tgt->mgt_orb_timeout / 1000);
1046 break;
1047
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001048 case SBP2_CSR_LOGICAL_UNIT_NUMBER:
1049 if (sbp2_add_logical_unit(tgt, value) < 0)
1050 return -ENOMEM;
1051 break;
1052
1053 case SBP2_CSR_LOGICAL_UNIT_DIRECTORY:
Richard Sharpe0e3e2ea2008-06-24 19:11:13 -07001054 /* Adjust for the increment in the iterator */
1055 if (sbp2_scan_logical_unit_dir(tgt, ci.p - 1 + value) < 0)
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001056 return -ENOMEM;
1057 break;
1058 }
1059 }
1060 return 0;
1061}
1062
1063static void sbp2_init_workarounds(struct sbp2_target *tgt, u32 model,
1064 u32 firmware_revision)
1065{
1066 int i;
Stefan Richter05cca7382008-01-26 17:42:45 +01001067 unsigned int w = sbp2_param_workarounds;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001068
Stefan Richter2df222b2007-08-13 17:48:25 +02001069 if (w)
1070 fw_notify("Please notify linux1394-devel@lists.sourceforge.net "
1071 "if you need the workarounds parameter for %s\n",
Stefan Richter48f18c72008-02-03 23:09:50 +01001072 tgt->bus_id);
Stefan Richter2df222b2007-08-13 17:48:25 +02001073
1074 if (w & SBP2_WORKAROUND_OVERRIDE)
1075 goto out;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001076
1077 for (i = 0; i < ARRAY_SIZE(sbp2_workarounds_table); i++) {
1078
1079 if (sbp2_workarounds_table[i].firmware_revision !=
1080 (firmware_revision & 0xffffff00))
1081 continue;
1082
1083 if (sbp2_workarounds_table[i].model != model &&
1084 sbp2_workarounds_table[i].model != ~0)
1085 continue;
1086
Stefan Richter2df222b2007-08-13 17:48:25 +02001087 w |= sbp2_workarounds_table[i].workarounds;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001088 break;
1089 }
Stefan Richter2df222b2007-08-13 17:48:25 +02001090 out:
1091 if (w)
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001092 fw_notify("Workarounds for %s: 0x%x "
1093 "(firmware_revision 0x%06x, model_id 0x%06x)\n",
Stefan Richter48f18c72008-02-03 23:09:50 +01001094 tgt->bus_id, w, firmware_revision, model);
Stefan Richter2df222b2007-08-13 17:48:25 +02001095 tgt->workarounds = w;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001096}
1097
1098static struct scsi_host_template scsi_driver_template;
1099
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001100static int sbp2_probe(struct device *dev)
1101{
1102 struct fw_unit *unit = fw_unit(dev);
1103 struct fw_device *device = fw_device(unit->device.parent);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001104 struct sbp2_target *tgt;
1105 struct sbp2_logical_unit *lu;
1106 struct Scsi_Host *shost;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001107 u32 model, firmware_revision;
1108
Stefan Richter09b12dd2008-08-14 21:47:21 +02001109 if (dma_get_max_seg_size(device->card->device) > SBP2_MAX_SEG_SIZE)
1110 BUG_ON(dma_set_max_seg_size(device->card->device,
1111 SBP2_MAX_SEG_SIZE));
1112
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001113 shost = scsi_host_alloc(&scsi_driver_template, sizeof(*tgt));
1114 if (shost == NULL)
1115 return -ENOMEM;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001116
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001117 tgt = (struct sbp2_target *)shost->hostdata;
1118 unit->device.driver_data = tgt;
1119 tgt->unit = unit;
1120 kref_init(&tgt->kref);
1121 INIT_LIST_HEAD(&tgt->lu_list);
Stefan Richter48f18c72008-02-03 23:09:50 +01001122 tgt->bus_id = unit->device.bus_id;
Stefan Richterc9755e12008-03-24 20:54:28 +01001123 tgt->guid = (u64)device->config_rom[3] << 32 | device->config_rom[4];
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001124
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001125 if (fw_device_enable_phys_dma(device) < 0)
1126 goto fail_shost_put;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001127
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001128 if (scsi_add_host(shost, &unit->device) < 0)
1129 goto fail_shost_put;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001130
Stefan Richter855c6032008-02-27 22:14:27 +01001131 fw_device_get(device);
Stefan Richter1dc3bea2008-02-24 19:01:21 +01001132 fw_unit_get(unit);
Stefan Richter855c6032008-02-27 22:14:27 +01001133
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001134 /* Initialize to values that won't match anything in our table. */
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001135 firmware_revision = 0xff000000;
1136 model = 0xff000000;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001137
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001138 /* implicit directory ID */
1139 tgt->directory_id = ((unit->directory - device->config_rom) * 4
1140 + CSR_CONFIG_ROM) & 0xffffff;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001141
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001142 if (sbp2_scan_unit_dir(tgt, unit->directory, &model,
1143 &firmware_revision) < 0)
1144 goto fail_tgt_put;
1145
1146 sbp2_init_workarounds(tgt, model, firmware_revision);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001147
Stefan Richter285838e2007-11-07 01:12:51 +01001148 /* Do the login in a workqueue so we can easily reschedule retries. */
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001149 list_for_each_entry(lu, &tgt->lu_list, link)
Stefan Richter285838e2007-11-07 01:12:51 +01001150 sbp2_queue_work(lu, 0);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001151 return 0;
Kristian Høgsbergad85274f2007-05-09 19:23:07 -04001152
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001153 fail_tgt_put:
Stefan Richter285838e2007-11-07 01:12:51 +01001154 sbp2_target_put(tgt);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001155 return -ENOMEM;
1156
1157 fail_shost_put:
1158 scsi_host_put(shost);
1159 return -ENOMEM;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001160}
1161
1162static int sbp2_remove(struct device *dev)
1163{
1164 struct fw_unit *unit = fw_unit(dev);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001165 struct sbp2_target *tgt = unit->device.driver_data;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001166
Stefan Richter285838e2007-11-07 01:12:51 +01001167 sbp2_target_put(tgt);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001168 return 0;
1169}
1170
1171static void sbp2_reconnect(struct work_struct *work)
1172{
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001173 struct sbp2_logical_unit *lu =
1174 container_of(work, struct sbp2_logical_unit, work.work);
Stefan Richter48f18c72008-02-03 23:09:50 +01001175 struct sbp2_target *tgt = lu->tgt;
1176 struct fw_device *device = fw_device(tgt->unit->device.parent);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001177 int generation, node_id, local_node_id;
1178
Stefan Richterbe6f48b2008-01-27 19:14:44 +01001179 if (fw_device_is_shutdown(device))
1180 goto out;
1181
Stefan Richter5a8a1bc2008-01-24 01:53:19 +01001182 generation = device->generation;
Stefan Richterb5d2a5e2008-01-25 18:57:41 +01001183 smp_rmb(); /* node_id must not be older than generation */
Stefan Richter5a8a1bc2008-01-24 01:53:19 +01001184 node_id = device->node_id;
1185 local_node_id = device->card->node_id;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001186
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001187 if (sbp2_send_management_orb(lu, node_id, generation,
Kristian Høgsberg7f37c422007-02-06 14:49:34 -05001188 SBP2_RECONNECT_REQUEST,
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001189 lu->login_id, NULL) < 0) {
Stefan Richterce896d92008-02-03 23:11:39 +01001190 /*
1191 * If reconnect was impossible even though we are in the
1192 * current generation, fall back and try to log in again.
1193 *
1194 * We could check for "Function rejected" status, but
1195 * looking at the bus generation as simpler and more general.
1196 */
1197 smp_rmb(); /* get current card generation */
1198 if (generation == device->card->generation ||
1199 lu->retries++ >= 5) {
Stefan Richter48f18c72008-02-03 23:09:50 +01001200 fw_error("%s: failed to reconnect\n", tgt->bus_id);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001201 lu->retries = 0;
1202 PREPARE_DELAYED_WORK(&lu->work, sbp2_login);
Kristian Høgsberg7f37c422007-02-06 14:49:34 -05001203 }
Stefan Richter285838e2007-11-07 01:12:51 +01001204 sbp2_queue_work(lu, DIV_ROUND_UP(HZ, 5));
1205 goto out;
Kristian Høgsberg7f37c422007-02-06 14:49:34 -05001206 }
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001207
Stefan Richter48f18c72008-02-03 23:09:50 +01001208 tgt->node_id = node_id;
1209 tgt->address_high = local_node_id << 16;
Stefan Richter2e2705b2008-02-16 16:37:28 +01001210 sbp2_set_generation(lu, generation);
Kristian Høgsberg7f37c422007-02-06 14:49:34 -05001211
Stefan Richter48f18c72008-02-03 23:09:50 +01001212 fw_notify("%s: reconnected to LUN %04x (%d retries)\n",
1213 tgt->bus_id, lu->lun, lu->retries);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001214
1215 sbp2_agent_reset(lu);
1216 sbp2_cancel_orbs(lu);
Stefan Richter2e2705b2008-02-16 16:37:28 +01001217 sbp2_conditionally_unblock(lu);
Stefan Richter285838e2007-11-07 01:12:51 +01001218 out:
Stefan Richter48f18c72008-02-03 23:09:50 +01001219 sbp2_target_put(tgt);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001220}
1221
1222static void sbp2_update(struct fw_unit *unit)
1223{
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001224 struct sbp2_target *tgt = unit->device.driver_data;
1225 struct sbp2_logical_unit *lu;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001226
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001227 fw_device_enable_phys_dma(fw_device(unit->device.parent));
1228
1229 /*
1230 * Fw-core serializes sbp2_update() against sbp2_remove().
1231 * Iteration over tgt->lu_list is therefore safe here.
1232 */
1233 list_for_each_entry(lu, &tgt->lu_list, link) {
Stefan Richter2e2705b2008-02-16 16:37:28 +01001234 sbp2_conditionally_block(lu);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001235 lu->retries = 0;
Stefan Richter285838e2007-11-07 01:12:51 +01001236 sbp2_queue_work(lu, 0);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001237 }
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001238}
1239
1240#define SBP2_UNIT_SPEC_ID_ENTRY 0x0000609e
1241#define SBP2_SW_VERSION_ENTRY 0x00010483
1242
Stefan Richter21ebcd12007-01-14 15:29:07 +01001243static const struct fw_device_id sbp2_id_table[] = {
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001244 {
1245 .match_flags = FW_MATCH_SPECIFIER_ID | FW_MATCH_VERSION,
1246 .specifier_id = SBP2_UNIT_SPEC_ID_ENTRY,
Stefan Richter5af4e5e2007-01-21 20:45:32 +01001247 .version = SBP2_SW_VERSION_ENTRY,
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001248 },
1249 { }
1250};
1251
1252static struct fw_driver sbp2_driver = {
1253 .driver = {
1254 .owner = THIS_MODULE,
1255 .name = sbp2_driver_name,
1256 .bus = &fw_bus_type,
1257 .probe = sbp2_probe,
1258 .remove = sbp2_remove,
1259 },
1260 .update = sbp2_update,
1261 .id_table = sbp2_id_table,
1262};
1263
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001264static unsigned int
1265sbp2_status_to_sense_data(u8 *sbp2_status, u8 *sense_data)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001266{
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001267 int sam_status;
1268
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001269 sense_data[0] = 0x70;
1270 sense_data[1] = 0x0;
1271 sense_data[2] = sbp2_status[1];
1272 sense_data[3] = sbp2_status[4];
1273 sense_data[4] = sbp2_status[5];
1274 sense_data[5] = sbp2_status[6];
1275 sense_data[6] = sbp2_status[7];
1276 sense_data[7] = 10;
1277 sense_data[8] = sbp2_status[8];
1278 sense_data[9] = sbp2_status[9];
1279 sense_data[10] = sbp2_status[10];
1280 sense_data[11] = sbp2_status[11];
1281 sense_data[12] = sbp2_status[2];
1282 sense_data[13] = sbp2_status[3];
1283 sense_data[14] = sbp2_status[12];
1284 sense_data[15] = sbp2_status[13];
1285
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001286 sam_status = sbp2_status[0] & 0x3f;
1287
1288 switch (sam_status) {
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001289 case SAM_STAT_GOOD:
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001290 case SAM_STAT_CHECK_CONDITION:
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001291 case SAM_STAT_CONDITION_MET:
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001292 case SAM_STAT_BUSY:
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001293 case SAM_STAT_RESERVATION_CONFLICT:
1294 case SAM_STAT_COMMAND_TERMINATED:
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001295 return DID_OK << 16 | sam_status;
1296
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001297 default:
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001298 return DID_ERROR << 16;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001299 }
1300}
1301
1302static void
1303complete_command_orb(struct sbp2_orb *base_orb, struct sbp2_status *status)
1304{
Jay Fenlason6f061482007-06-27 16:04:33 -04001305 struct sbp2_command_orb *orb =
1306 container_of(base_orb, struct sbp2_command_orb, base);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001307 struct fw_device *device = fw_device(orb->lu->tgt->unit->device.parent);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001308 int result;
1309
1310 if (status != NULL) {
Kristian Høgsberga77754a2007-05-07 20:33:35 -04001311 if (STATUS_GET_DEAD(*status))
Stefan Richtere0e60212008-02-03 23:08:58 +01001312 sbp2_agent_reset_no_wait(orb->lu);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001313
Kristian Høgsberga77754a2007-05-07 20:33:35 -04001314 switch (STATUS_GET_RESPONSE(*status)) {
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001315 case SBP2_STATUS_REQUEST_COMPLETE:
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001316 result = DID_OK << 16;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001317 break;
1318 case SBP2_STATUS_TRANSPORT_FAILURE:
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001319 result = DID_BUS_BUSY << 16;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001320 break;
1321 case SBP2_STATUS_ILLEGAL_REQUEST:
1322 case SBP2_STATUS_VENDOR_DEPENDENT:
1323 default:
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001324 result = DID_ERROR << 16;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001325 break;
1326 }
1327
Kristian Høgsberga77754a2007-05-07 20:33:35 -04001328 if (result == DID_OK << 16 && STATUS_GET_LEN(*status) > 1)
1329 result = sbp2_status_to_sense_data(STATUS_GET_DATA(*status),
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001330 orb->cmd->sense_buffer);
1331 } else {
Kristian Høgsbergc781c062007-05-07 20:33:32 -04001332 /*
1333 * If the orb completes with status == NULL, something
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001334 * went wrong, typically a bus reset happened mid-orb
Kristian Høgsbergc781c062007-05-07 20:33:32 -04001335 * or when sending the write (less likely).
1336 */
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001337 result = DID_BUS_BUSY << 16;
Stefan Richter2e2705b2008-02-16 16:37:28 +01001338 sbp2_conditionally_block(orb->lu);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001339 }
1340
1341 dma_unmap_single(device->card->device, orb->base.request_bus,
Kristian Høgsberg2d826cc2007-05-09 19:23:14 -04001342 sizeof(orb->request), DMA_TO_DEVICE);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001343
Stefan Richter412edf62007-07-16 21:05:41 +02001344 if (scsi_sg_count(orb->cmd) > 0)
1345 dma_unmap_sg(device->card->device, scsi_sglist(orb->cmd),
1346 scsi_sg_count(orb->cmd),
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001347 orb->cmd->sc_data_direction);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001348
1349 if (orb->page_table_bus != 0)
1350 dma_unmap_single(device->card->device, orb->page_table_bus,
Stefan Richterb4be0162007-07-02 22:07:34 +02001351 sizeof(orb->page_table), DMA_TO_DEVICE);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001352
Kristian Høgsbergfbb54232007-04-10 18:11:18 -04001353 orb->cmd->result = result;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001354 orb->done(orb->cmd);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001355}
1356
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001357static int
1358sbp2_map_scatterlist(struct sbp2_command_orb *orb, struct fw_device *device,
1359 struct sbp2_logical_unit *lu)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001360{
Stefan Richter09b12dd2008-08-14 21:47:21 +02001361 struct scatterlist *sg = scsi_sglist(orb->cmd);
1362 int i, n;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001363
Stefan Richter09b12dd2008-08-14 21:47:21 +02001364 n = dma_map_sg(device->card->device, sg, scsi_sg_count(orb->cmd),
1365 orb->cmd->sc_data_direction);
1366 if (n == 0)
Kristian Høgsberg95ffc5e2007-05-09 19:23:08 -04001367 goto fail;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001368
Kristian Høgsbergc781c062007-05-07 20:33:32 -04001369 /*
1370 * Handle the special case where there is only one element in
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001371 * the scatter list by converting it to an immediate block
1372 * request. This is also a workaround for broken devices such
1373 * as the second generation iPod which doesn't support page
Kristian Høgsbergc781c062007-05-07 20:33:32 -04001374 * tables.
1375 */
Stefan Richter09b12dd2008-08-14 21:47:21 +02001376 if (n == 1) {
Stefan Richter71ee9f02008-02-28 20:51:11 +01001377 orb->request.data_descriptor.high =
1378 cpu_to_be32(lu->tgt->address_high);
1379 orb->request.data_descriptor.low =
1380 cpu_to_be32(sg_dma_address(sg));
1381 orb->request.misc |=
1382 cpu_to_be32(COMMAND_ORB_DATA_SIZE(sg_dma_len(sg)));
Kristian Høgsberg95ffc5e2007-05-09 19:23:08 -04001383 return 0;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001384 }
1385
Stefan Richter09b12dd2008-08-14 21:47:21 +02001386 for_each_sg(sg, sg, n, i) {
1387 orb->page_table[i].high = cpu_to_be32(sg_dma_len(sg) << 16);
1388 orb->page_table[i].low = cpu_to_be32(sg_dma_address(sg));
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001389 }
1390
Stefan Richterb4be0162007-07-02 22:07:34 +02001391 orb->page_table_bus =
1392 dma_map_single(device->card->device, orb->page_table,
1393 sizeof(orb->page_table), DMA_TO_DEVICE);
FUJITA Tomonori8d8bb392008-07-25 19:44:49 -07001394 if (dma_mapping_error(device->card->device, orb->page_table_bus))
Stefan Richterb4be0162007-07-02 22:07:34 +02001395 goto fail_page_table;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001396
Kristian Høgsbergc781c062007-05-07 20:33:32 -04001397 /*
1398 * The data_descriptor pointer is the one case where we need
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001399 * to fill in the node ID part of the address. All other
1400 * pointers assume that the data referenced reside on the
1401 * initiator (i.e. us), but data_descriptor can refer to data
Kristian Høgsbergc781c062007-05-07 20:33:32 -04001402 * on other nodes so we need to put our ID in descriptor.high.
1403 */
Stefan Richter71ee9f02008-02-28 20:51:11 +01001404 orb->request.data_descriptor.high = cpu_to_be32(lu->tgt->address_high);
1405 orb->request.data_descriptor.low = cpu_to_be32(orb->page_table_bus);
1406 orb->request.misc |= cpu_to_be32(COMMAND_ORB_PAGE_TABLE_PRESENT |
Stefan Richter09b12dd2008-08-14 21:47:21 +02001407 COMMAND_ORB_DATA_SIZE(n));
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001408
Kristian Høgsberg95ffc5e2007-05-09 19:23:08 -04001409 return 0;
1410
1411 fail_page_table:
Stefan Richter09b12dd2008-08-14 21:47:21 +02001412 dma_unmap_sg(device->card->device, scsi_sglist(orb->cmd),
1413 scsi_sg_count(orb->cmd), orb->cmd->sc_data_direction);
Kristian Høgsberg95ffc5e2007-05-09 19:23:08 -04001414 fail:
1415 return -ENOMEM;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001416}
1417
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001418/* SCSI stack integration */
1419
1420static int sbp2_scsi_queuecommand(struct scsi_cmnd *cmd, scsi_done_fn_t done)
1421{
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001422 struct sbp2_logical_unit *lu = cmd->device->hostdata;
1423 struct fw_device *device = fw_device(lu->tgt->unit->device.parent);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001424 struct sbp2_command_orb *orb;
Stefan Richter05cca7382008-01-26 17:42:45 +01001425 unsigned int max_payload;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001426 int retval = SCSI_MLQUEUE_HOST_BUSY;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001427
Kristian Høgsbergc781c062007-05-07 20:33:32 -04001428 /*
1429 * Bidirectional commands are not yet implemented, and unknown
1430 * transfer direction not handled.
1431 */
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001432 if (cmd->sc_data_direction == DMA_BIDIRECTIONAL) {
Stefan Richter8a8cea22007-06-09 19:26:22 +02001433 fw_error("Can't handle DMA_BIDIRECTIONAL, rejecting command\n");
Kristian Høgsberge1b68c42007-05-09 19:23:09 -04001434 cmd->result = DID_ERROR << 16;
1435 done(cmd);
1436 return 0;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001437 }
1438
Kristian Høgsberg2d826cc2007-05-09 19:23:14 -04001439 orb = kzalloc(sizeof(*orb), GFP_ATOMIC);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001440 if (orb == NULL) {
1441 fw_notify("failed to alloc orb\n");
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001442 return SCSI_MLQUEUE_HOST_BUSY;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001443 }
1444
Kristian Høgsberg12f26aa2007-04-10 18:11:20 -04001445 /* Initialize rcode to something not RCODE_COMPLETE. */
1446 orb->base.rcode = -1;
Kristian Høgsberge57d2012007-08-24 18:59:58 -04001447 kref_init(&orb->base.kref);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001448
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001449 orb->lu = lu;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001450 orb->done = done;
1451 orb->cmd = cmd;
1452
Stefan Richter71ee9f02008-02-28 20:51:11 +01001453 orb->request.next.high = cpu_to_be32(SBP2_ORB_NULL);
Kristian Høgsbergc781c062007-05-07 20:33:32 -04001454 /*
1455 * At speed 100 we can do 512 bytes per packet, at speed 200,
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001456 * 1024 bytes per packet etc. The SBP-2 max_payload field
1457 * specifies the max payload size as 2 ^ (max_payload + 2), so
Kristian Høgsbergc781c062007-05-07 20:33:32 -04001458 * if we set this to max_speed + 7, we get the right value.
1459 */
Stefan Richter25659f72007-07-21 22:43:05 +02001460 max_payload = min(device->max_speed + 7,
1461 device->card->max_receive - 1);
Stefan Richter71ee9f02008-02-28 20:51:11 +01001462 orb->request.misc = cpu_to_be32(
Stefan Richter25659f72007-07-21 22:43:05 +02001463 COMMAND_ORB_MAX_PAYLOAD(max_payload) |
Stefan Richterf1397492007-06-10 21:31:36 +02001464 COMMAND_ORB_SPEED(device->max_speed) |
Stefan Richter71ee9f02008-02-28 20:51:11 +01001465 COMMAND_ORB_NOTIFY);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001466
1467 if (cmd->sc_data_direction == DMA_FROM_DEVICE)
Stefan Richter0d7dcbf2008-02-28 20:52:02 +01001468 orb->request.misc |= cpu_to_be32(COMMAND_ORB_DIRECTION);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001469
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001470 if (scsi_sg_count(cmd) && sbp2_map_scatterlist(orb, device, lu) < 0)
1471 goto out;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001472
Boaz Harrosh64a87b22008-04-30 11:19:47 +03001473 memcpy(orb->request.command_block, cmd->cmnd, cmd->cmd_len);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001474
1475 orb->base.callback = complete_command_orb;
Stefan Richter85263922007-07-02 21:04:08 +02001476 orb->base.request_bus =
1477 dma_map_single(device->card->device, &orb->request,
1478 sizeof(orb->request), DMA_TO_DEVICE);
FUJITA Tomonori8d8bb392008-07-25 19:44:49 -07001479 if (dma_mapping_error(device->card->device, orb->base.request_bus))
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001480 goto out;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001481
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001482 sbp2_send_orb(&orb->base, lu, lu->tgt->node_id, lu->generation,
1483 lu->command_block_agent_address + SBP2_ORB_POINTER);
1484 retval = 0;
1485 out:
Kristian Høgsberge57d2012007-08-24 18:59:58 -04001486 kref_put(&orb->base.kref, free_orb);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001487 return retval;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001488}
1489
Stefan Richtercfb01382007-01-23 21:20:08 +01001490static int sbp2_scsi_slave_alloc(struct scsi_device *sdev)
1491{
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001492 struct sbp2_logical_unit *lu = sdev->hostdata;
Stefan Richtercfb01382007-01-23 21:20:08 +01001493
Stefan Richter5513c5f2008-02-17 14:56:19 +01001494 /* (Re-)Adding logical units via the SCSI stack is not supported. */
1495 if (!lu)
1496 return -ENOSYS;
1497
Stefan Richtercfb01382007-01-23 21:20:08 +01001498 sdev->allow_restart = 1;
1499
Stefan Richter8ac3a472008-01-27 22:31:27 +01001500 /* SBP-2 requires quadlet alignment of the data buffers. */
1501 blk_queue_update_dma_alignment(sdev->request_queue, 4 - 1);
James Bottomley465ff312008-01-01 10:00:10 -06001502
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001503 if (lu->tgt->workarounds & SBP2_WORKAROUND_INQUIRY_36)
Stefan Richtercfb01382007-01-23 21:20:08 +01001504 sdev->inquiry_len = 36;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001505
Stefan Richtercfb01382007-01-23 21:20:08 +01001506 return 0;
1507}
1508
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001509static int sbp2_scsi_slave_configure(struct scsi_device *sdev)
1510{
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001511 struct sbp2_logical_unit *lu = sdev->hostdata;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001512
Stefan Richtercfb01382007-01-23 21:20:08 +01001513 sdev->use_10_for_rw = 1;
1514
Stefan Richter2635f962008-05-11 00:36:47 +02001515 if (sbp2_param_exclusive_login)
1516 sdev->manage_start_stop = 1;
1517
Stefan Richtercfb01382007-01-23 21:20:08 +01001518 if (sdev->type == TYPE_ROM)
1519 sdev->use_10_for_ms = 1;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001520
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001521 if (sdev->type == TYPE_DISK &&
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001522 lu->tgt->workarounds & SBP2_WORKAROUND_MODE_SENSE_8)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001523 sdev->skip_ms_page_8 = 1;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001524
1525 if (lu->tgt->workarounds & SBP2_WORKAROUND_FIX_CAPACITY)
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001526 sdev->fix_capacity = 1;
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001527
Stefan Richterffcaade2008-05-11 00:35:04 +02001528 if (lu->tgt->workarounds & SBP2_WORKAROUND_POWER_CONDITION)
1529 sdev->start_stop_pwr_cond = 1;
1530
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001531 if (lu->tgt->workarounds & SBP2_WORKAROUND_128K_MAX_TRANS)
Stefan Richtercf47c7a2007-06-17 23:52:08 +02001532 blk_queue_max_sectors(sdev->request_queue, 128 * 1024 / 512);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001533
Stefan Richter09b12dd2008-08-14 21:47:21 +02001534 blk_queue_max_segment_size(sdev->request_queue, SBP2_MAX_SEG_SIZE);
1535
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001536 return 0;
1537}
1538
1539/*
1540 * Called by scsi stack when something has really gone wrong. Usually
1541 * called when a command has timed-out for some reason.
1542 */
1543static int sbp2_scsi_abort(struct scsi_cmnd *cmd)
1544{
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001545 struct sbp2_logical_unit *lu = cmd->device->hostdata;
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001546
Stefan Richter48f18c72008-02-03 23:09:50 +01001547 fw_notify("%s: sbp2_scsi_abort\n", lu->tgt->bus_id);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001548 sbp2_agent_reset(lu);
1549 sbp2_cancel_orbs(lu);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001550
1551 return SUCCESS;
1552}
1553
Stefan Richter14e21982007-05-27 13:18:27 +02001554/*
1555 * Format of /sys/bus/scsi/devices/.../ieee1394_id:
1556 * u64 EUI-64 : u24 directory_ID : u16 LUN (all printed in hexadecimal)
1557 *
1558 * This is the concatenation of target port identifier and logical unit
1559 * identifier as per SAM-2...SAM-4 annex A.
1560 */
1561static ssize_t
1562sbp2_sysfs_ieee1394_id_show(struct device *dev, struct device_attribute *attr,
1563 char *buf)
1564{
1565 struct scsi_device *sdev = to_scsi_device(dev);
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001566 struct sbp2_logical_unit *lu;
Stefan Richter14e21982007-05-27 13:18:27 +02001567
1568 if (!sdev)
1569 return 0;
Stefan Richter14e21982007-05-27 13:18:27 +02001570
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001571 lu = sdev->hostdata;
Stefan Richter14e21982007-05-27 13:18:27 +02001572
Stefan Richterc9755e12008-03-24 20:54:28 +01001573 return sprintf(buf, "%016llx:%06x:%04x\n",
1574 (unsigned long long)lu->tgt->guid,
Stefan Richter5a3c2be2007-08-25 14:05:28 +02001575 lu->tgt->directory_id, lu->lun);
Stefan Richter14e21982007-05-27 13:18:27 +02001576}
1577
1578static DEVICE_ATTR(ieee1394_id, S_IRUGO, sbp2_sysfs_ieee1394_id_show, NULL);
1579
1580static struct device_attribute *sbp2_scsi_sysfs_attrs[] = {
1581 &dev_attr_ieee1394_id,
1582 NULL
1583};
1584
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001585static struct scsi_host_template scsi_driver_template = {
1586 .module = THIS_MODULE,
1587 .name = "SBP-2 IEEE-1394",
Kristian Høgsbergb02b6bc2007-05-09 19:23:12 -04001588 .proc_name = sbp2_driver_name,
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001589 .queuecommand = sbp2_scsi_queuecommand,
Stefan Richtercfb01382007-01-23 21:20:08 +01001590 .slave_alloc = sbp2_scsi_slave_alloc,
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001591 .slave_configure = sbp2_scsi_slave_configure,
1592 .eh_abort_handler = sbp2_scsi_abort,
1593 .this_id = -1,
1594 .sg_tablesize = SG_ALL,
1595 .use_clustering = ENABLE_CLUSTERING,
Stefan Richter02af8e72007-01-21 20:50:11 +01001596 .cmd_per_lun = 1,
1597 .can_queue = 1,
Stefan Richter14e21982007-05-27 13:18:27 +02001598 .sdev_attrs = sbp2_scsi_sysfs_attrs,
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001599};
1600
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001601MODULE_AUTHOR("Kristian Hoegsberg <krh@bitplanet.net>");
1602MODULE_DESCRIPTION("SCSI over IEEE1394");
1603MODULE_LICENSE("GPL");
1604MODULE_DEVICE_TABLE(ieee1394, sbp2_id_table);
1605
Olaf Hering1e4c7b02007-05-05 23:17:13 +02001606/* Provide a module alias so root-on-sbp2 initrds don't break. */
1607#ifndef CONFIG_IEEE1394_SBP2_MODULE
1608MODULE_ALIAS("sbp2");
1609#endif
1610
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001611static int __init sbp2_init(void)
1612{
Stefan Richterdf8ec242007-08-12 12:51:18 +02001613 sbp2_wq = create_singlethread_workqueue(KBUILD_MODNAME);
1614 if (!sbp2_wq)
1615 return -ENOMEM;
1616
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001617 return driver_register(&sbp2_driver.driver);
1618}
1619
1620static void __exit sbp2_cleanup(void)
1621{
1622 driver_unregister(&sbp2_driver.driver);
Stefan Richterdf8ec242007-08-12 12:51:18 +02001623 destroy_workqueue(sbp2_wq);
Kristian Høgsberg9ba136d2006-12-19 19:58:40 -05001624}
1625
1626module_init(sbp2_init);
1627module_exit(sbp2_cleanup);