aacraid: Created new mutex for ioctl path
[linux-2.6-block.git] / drivers / scsi / aacraid / linit.c
CommitLineData
1da177e4
LT
1/*
2 * Adaptec AAC series RAID controller driver
fa195afe 3 * (c) Copyright 2001 Red Hat Inc.
1da177e4
LT
4 *
5 * based on the old aacraid driver that is..
6 * Adaptec aacraid device driver for Linux.
7 *
e8b12f0f
MR
8 * Copyright (c) 2000-2010 Adaptec, Inc.
9 * 2010 PMC-Sierra, Inc. (aacraid@pmc-sierra.com)
1da177e4
LT
10 *
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License as published by
13 * the Free Software Foundation; either version 2, or (at your option)
14 * any later version.
15 *
16 * This program is distributed in the hope that it will be useful,
17 * but WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 * GNU General Public License for more details.
20 *
21 * You should have received a copy of the GNU General Public License
22 * along with this program; see the file COPYING. If not, write to
23 * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
24 *
25 * Module Name:
26 * linit.c
27 *
28 * Abstract: Linux Driver entry module for Adaptec RAID Array Controller
29 */
30
1da177e4
LT
31
32#include <linux/compat.h>
33#include <linux/blkdev.h>
34#include <linux/completion.h>
35#include <linux/init.h>
36#include <linux/interrupt.h>
37#include <linux/kernel.h>
38#include <linux/module.h>
39#include <linux/moduleparam.h>
40#include <linux/pci.h>
5c63f7f7 41#include <linux/aer.h>
cf16123c 42#include <linux/pci-aspm.h>
1da177e4 43#include <linux/slab.h>
c45d15d2 44#include <linux/mutex.h>
1da177e4
LT
45#include <linux/spinlock.h>
46#include <linux/syscalls.h>
1da177e4 47#include <linux/delay.h>
fe27381d 48#include <linux/kthread.h>
1da177e4
LT
49
50#include <scsi/scsi.h>
51#include <scsi/scsi_cmnd.h>
52#include <scsi/scsi_device.h>
53#include <scsi/scsi_host.h>
54#include <scsi/scsi_tcq.h>
55#include <scsi/scsicam.h>
56#include <scsi/scsi_eh.h>
57
58#include "aacraid.h"
59
f20dffc7 60#define AAC_DRIVER_VERSION "1.2-1"
9a72f976
MH
61#ifndef AAC_DRIVER_BRANCH
62#define AAC_DRIVER_BRANCH ""
63#endif
9a72f976
MH
64#define AAC_DRIVERNAME "aacraid"
65
c7f47602
MH
66#ifdef AAC_DRIVER_BUILD
67#define _str(x) #x
68#define str(x) _str(x)
69#define AAC_DRIVER_FULL_VERSION AAC_DRIVER_VERSION "[" str(AAC_DRIVER_BUILD) "]" AAC_DRIVER_BRANCH
70#else
571b16da 71#define AAC_DRIVER_FULL_VERSION AAC_DRIVER_VERSION AAC_DRIVER_BRANCH
c7f47602 72#endif
1da177e4
LT
73
74MODULE_AUTHOR("Red Hat Inc and Adaptec");
75MODULE_DESCRIPTION("Dell PERC2, 2/Si, 3/Si, 3/Di, "
76 "Adaptec Advanced Raid Products, "
1241f359 77 "HP NetRAID-4M, IBM ServeRAID & ICP SCSI driver");
1da177e4 78MODULE_LICENSE("GPL");
c7f47602 79MODULE_VERSION(AAC_DRIVER_FULL_VERSION);
1da177e4 80
c45d15d2 81static DEFINE_MUTEX(aac_mutex);
1da177e4
LT
82static LIST_HEAD(aac_devices);
83static int aac_cfg_major = -1;
c7f47602 84char aac_driver_version[] = AAC_DRIVER_FULL_VERSION;
1da177e4
LT
85
86/*
87 * Because of the way Linux names scsi devices, the order in this table has
88 * become important. Check for on-board Raid first, add-in cards second.
89 *
90 * Note: The last field is used to index into aac_drivers below.
91 */
6f039790 92static const struct pci_device_id aac_pci_tbl[] = {
1da177e4
LT
93 { 0x1028, 0x0001, 0x1028, 0x0001, 0, 0, 0 }, /* PERC 2/Si (Iguana/PERC2Si) */
94 { 0x1028, 0x0002, 0x1028, 0x0002, 0, 0, 1 }, /* PERC 3/Di (Opal/PERC3Di) */
95 { 0x1028, 0x0003, 0x1028, 0x0003, 0, 0, 2 }, /* PERC 3/Si (SlimFast/PERC3Si */
96 { 0x1028, 0x0004, 0x1028, 0x00d0, 0, 0, 3 }, /* PERC 3/Di (Iguana FlipChip/PERC3DiF */
97 { 0x1028, 0x0002, 0x1028, 0x00d1, 0, 0, 4 }, /* PERC 3/Di (Viper/PERC3DiV) */
98 { 0x1028, 0x0002, 0x1028, 0x00d9, 0, 0, 5 }, /* PERC 3/Di (Lexus/PERC3DiL) */
99 { 0x1028, 0x000a, 0x1028, 0x0106, 0, 0, 6 }, /* PERC 3/Di (Jaguar/PERC3DiJ) */
100 { 0x1028, 0x000a, 0x1028, 0x011b, 0, 0, 7 }, /* PERC 3/Di (Dagger/PERC3DiD) */
101 { 0x1028, 0x000a, 0x1028, 0x0121, 0, 0, 8 }, /* PERC 3/Di (Boxster/PERC3DiB) */
102 { 0x9005, 0x0283, 0x9005, 0x0283, 0, 0, 9 }, /* catapult */
103 { 0x9005, 0x0284, 0x9005, 0x0284, 0, 0, 10 }, /* tomcat */
104 { 0x9005, 0x0285, 0x9005, 0x0286, 0, 0, 11 }, /* Adaptec 2120S (Crusader) */
105 { 0x9005, 0x0285, 0x9005, 0x0285, 0, 0, 12 }, /* Adaptec 2200S (Vulcan) */
106 { 0x9005, 0x0285, 0x9005, 0x0287, 0, 0, 13 }, /* Adaptec 2200S (Vulcan-2m) */
107 { 0x9005, 0x0285, 0x17aa, 0x0286, 0, 0, 14 }, /* Legend S220 (Legend Crusader) */
108 { 0x9005, 0x0285, 0x17aa, 0x0287, 0, 0, 15 }, /* Legend S230 (Legend Vulcan) */
109
110 { 0x9005, 0x0285, 0x9005, 0x0288, 0, 0, 16 }, /* Adaptec 3230S (Harrier) */
111 { 0x9005, 0x0285, 0x9005, 0x0289, 0, 0, 17 }, /* Adaptec 3240S (Tornado) */
112 { 0x9005, 0x0285, 0x9005, 0x028a, 0, 0, 18 }, /* ASR-2020ZCR SCSI PCI-X ZCR (Skyhawk) */
113 { 0x9005, 0x0285, 0x9005, 0x028b, 0, 0, 19 }, /* ASR-2025ZCR SCSI SO-DIMM PCI-X ZCR (Terminator) */
114 { 0x9005, 0x0286, 0x9005, 0x028c, 0, 0, 20 }, /* ASR-2230S + ASR-2230SLP PCI-X (Lancer) */
115 { 0x9005, 0x0286, 0x9005, 0x028d, 0, 0, 21 }, /* ASR-2130S (Lancer) */
116 { 0x9005, 0x0286, 0x9005, 0x029b, 0, 0, 22 }, /* AAR-2820SA (Intruder) */
117 { 0x9005, 0x0286, 0x9005, 0x029c, 0, 0, 23 }, /* AAR-2620SA (Intruder) */
118 { 0x9005, 0x0286, 0x9005, 0x029d, 0, 0, 24 }, /* AAR-2420SA (Intruder) */
8e9d58e7
SM
119 { 0x9005, 0x0286, 0x9005, 0x029e, 0, 0, 25 }, /* ICP9024RO (Lancer) */
120 { 0x9005, 0x0286, 0x9005, 0x029f, 0, 0, 26 }, /* ICP9014RO (Lancer) */
84971738
MH
121 { 0x9005, 0x0286, 0x9005, 0x02a0, 0, 0, 27 }, /* ICP9047MA (Lancer) */
122 { 0x9005, 0x0286, 0x9005, 0x02a1, 0, 0, 28 }, /* ICP9087MA (Lancer) */
75c3628d 123 { 0x9005, 0x0286, 0x9005, 0x02a3, 0, 0, 29 }, /* ICP5445AU (Hurricane44) */
84971738
MH
124 { 0x9005, 0x0285, 0x9005, 0x02a4, 0, 0, 30 }, /* ICP9085LI (Marauder-X) */
125 { 0x9005, 0x0285, 0x9005, 0x02a5, 0, 0, 31 }, /* ICP5085BR (Marauder-E) */
8e87c2f1
MH
126 { 0x9005, 0x0286, 0x9005, 0x02a6, 0, 0, 32 }, /* ICP9067MA (Intruder-6) */
127 { 0x9005, 0x0287, 0x9005, 0x0800, 0, 0, 33 }, /* Themisto Jupiter Platform */
128 { 0x9005, 0x0200, 0x9005, 0x0200, 0, 0, 33 }, /* Themisto Jupiter Platform */
129 { 0x9005, 0x0286, 0x9005, 0x0800, 0, 0, 34 }, /* Callisto Jupiter Platform */
130 { 0x9005, 0x0285, 0x9005, 0x028e, 0, 0, 35 }, /* ASR-2020SA SATA PCI-X ZCR (Skyhawk) */
131 { 0x9005, 0x0285, 0x9005, 0x028f, 0, 0, 36 }, /* ASR-2025SA SATA SO-DIMM PCI-X ZCR (Terminator) */
132 { 0x9005, 0x0285, 0x9005, 0x0290, 0, 0, 37 }, /* AAR-2410SA PCI SATA 4ch (Jaguar II) */
133 { 0x9005, 0x0285, 0x1028, 0x0291, 0, 0, 38 }, /* CERC SATA RAID 2 PCI SATA 6ch (DellCorsair) */
134 { 0x9005, 0x0285, 0x9005, 0x0292, 0, 0, 39 }, /* AAR-2810SA PCI SATA 8ch (Corsair-8) */
135 { 0x9005, 0x0285, 0x9005, 0x0293, 0, 0, 40 }, /* AAR-21610SA PCI SATA 16ch (Corsair-16) */
136 { 0x9005, 0x0285, 0x9005, 0x0294, 0, 0, 41 }, /* ESD SO-DIMM PCI-X SATA ZCR (Prowler) */
137 { 0x9005, 0x0285, 0x103C, 0x3227, 0, 0, 42 }, /* AAR-2610SA PCI SATA 6ch */
138 { 0x9005, 0x0285, 0x9005, 0x0296, 0, 0, 43 }, /* ASR-2240S (SabreExpress) */
8e9d58e7 139 { 0x9005, 0x0285, 0x9005, 0x0297, 0, 0, 44 }, /* ASR-4005 */
8e87c2f1
MH
140 { 0x9005, 0x0285, 0x1014, 0x02F2, 0, 0, 45 }, /* IBM 8i (AvonPark) */
141 { 0x9005, 0x0285, 0x1014, 0x0312, 0, 0, 45 }, /* IBM 8i (AvonPark Lite) */
142 { 0x9005, 0x0286, 0x1014, 0x9580, 0, 0, 46 }, /* IBM 8k/8k-l8 (Aurora) */
143 { 0x9005, 0x0286, 0x1014, 0x9540, 0, 0, 47 }, /* IBM 8k/8k-l4 (Aurora Lite) */
8e9d58e7 144 { 0x9005, 0x0285, 0x9005, 0x0298, 0, 0, 48 }, /* ASR-4000 (BlackBird) */
8e87c2f1
MH
145 { 0x9005, 0x0285, 0x9005, 0x0299, 0, 0, 49 }, /* ASR-4800SAS (Marauder-X) */
146 { 0x9005, 0x0285, 0x9005, 0x029a, 0, 0, 50 }, /* ASR-4805SAS (Marauder-E) */
8e9d58e7 147 { 0x9005, 0x0286, 0x9005, 0x02a2, 0, 0, 51 }, /* ASR-3800 (Hurricane44) */
84971738 148
8e87c2f1
MH
149 { 0x9005, 0x0285, 0x1028, 0x0287, 0, 0, 52 }, /* Perc 320/DC*/
150 { 0x1011, 0x0046, 0x9005, 0x0365, 0, 0, 53 }, /* Adaptec 5400S (Mustang)*/
151 { 0x1011, 0x0046, 0x9005, 0x0364, 0, 0, 54 }, /* Adaptec 5400S (Mustang)*/
152 { 0x1011, 0x0046, 0x9005, 0x1364, 0, 0, 55 }, /* Dell PERC2/QC */
153 { 0x1011, 0x0046, 0x103c, 0x10c2, 0, 0, 56 }, /* HP NetRAID-4M */
84971738 154
8e87c2f1
MH
155 { 0x9005, 0x0285, 0x1028, PCI_ANY_ID, 0, 0, 57 }, /* Dell Catchall */
156 { 0x9005, 0x0285, 0x17aa, PCI_ANY_ID, 0, 0, 58 }, /* Legend Catchall */
157 { 0x9005, 0x0285, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 59 }, /* Adaptec Catch All */
158 { 0x9005, 0x0286, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 60 }, /* Adaptec Rocket Catch All */
239eab19 159 { 0x9005, 0x0288, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 61 }, /* Adaptec NEMER/ARK Catch All */
11604612
MR
160 { 0x9005, 0x028b, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 62 }, /* Adaptec PMC Series 6 (Tupelo) */
161 { 0x9005, 0x028c, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 63 }, /* Adaptec PMC Series 7 (Denali) */
162 { 0x9005, 0x028d, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 64 }, /* Adaptec PMC Series 8 */
163 { 0x9005, 0x028f, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 65 }, /* Adaptec PMC Series 9 */
1da177e4
LT
164 { 0,}
165};
166MODULE_DEVICE_TABLE(pci, aac_pci_tbl);
167
168/*
8ce3eca4 169 * dmb - For now we add the number of channels to this structure.
1da177e4
LT
170 * In the future we should add a fib that reports the number of channels
171 * for the card. At that time we can remove the channels from here
172 */
173static struct aac_driver_ident aac_drivers[] = {
94cf6ba1
SM
174 { aac_rx_init, "percraid", "DELL ", "PERCRAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 2/Si (Iguana/PERC2Si) */
175 { aac_rx_init, "percraid", "DELL ", "PERCRAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Opal/PERC3Di) */
176 { aac_rx_init, "percraid", "DELL ", "PERCRAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Si (SlimFast/PERC3Si */
177 { aac_rx_init, "percraid", "DELL ", "PERCRAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Iguana FlipChip/PERC3DiF */
178 { aac_rx_init, "percraid", "DELL ", "PERCRAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Viper/PERC3DiV) */
179 { aac_rx_init, "percraid", "DELL ", "PERCRAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Lexus/PERC3DiL) */
180 { aac_rx_init, "percraid", "DELL ", "PERCRAID ", 1, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Jaguar/PERC3DiJ) */
181 { aac_rx_init, "percraid", "DELL ", "PERCRAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Dagger/PERC3DiD) */
182 { aac_rx_init, "percraid", "DELL ", "PERCRAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Boxster/PERC3DiB) */
183 { aac_rx_init, "aacraid", "ADAPTEC ", "catapult ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* catapult */
184 { aac_rx_init, "aacraid", "ADAPTEC ", "tomcat ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* tomcat */
b21227c5
HG
185 { aac_rx_init, "aacraid", "ADAPTEC ", "Adaptec 2120S ", 1, AAC_QUIRK_31BIT | AAC_QUIRK_34SG }, /* Adaptec 2120S (Crusader) */
186 { aac_rx_init, "aacraid", "ADAPTEC ", "Adaptec 2200S ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG }, /* Adaptec 2200S (Vulcan) */
94cf6ba1
SM
187 { aac_rx_init, "aacraid", "ADAPTEC ", "Adaptec 2200S ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Adaptec 2200S (Vulcan-2m) */
188 { aac_rx_init, "aacraid", "Legend ", "Legend S220 ", 1, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Legend S220 (Legend Crusader) */
189 { aac_rx_init, "aacraid", "Legend ", "Legend S230 ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Legend S230 (Legend Vulcan) */
1da177e4
LT
190
191 { aac_rx_init, "aacraid", "ADAPTEC ", "Adaptec 3230S ", 2 }, /* Adaptec 3230S (Harrier) */
192 { aac_rx_init, "aacraid", "ADAPTEC ", "Adaptec 3240S ", 2 }, /* Adaptec 3240S (Tornado) */
193 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-2020ZCR ", 2 }, /* ASR-2020ZCR SCSI PCI-X ZCR (Skyhawk) */
194 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-2025ZCR ", 2 }, /* ASR-2025ZCR SCSI SO-DIMM PCI-X ZCR (Terminator) */
195 { aac_rkt_init, "aacraid", "ADAPTEC ", "ASR-2230S PCI-X ", 2 }, /* ASR-2230S + ASR-2230SLP PCI-X (Lancer) */
196 { aac_rkt_init, "aacraid", "ADAPTEC ", "ASR-2130S PCI-X ", 1 }, /* ASR-2130S (Lancer) */
197 { aac_rkt_init, "aacraid", "ADAPTEC ", "AAR-2820SA ", 1 }, /* AAR-2820SA (Intruder) */
198 { aac_rkt_init, "aacraid", "ADAPTEC ", "AAR-2620SA ", 1 }, /* AAR-2620SA (Intruder) */
199 { aac_rkt_init, "aacraid", "ADAPTEC ", "AAR-2420SA ", 1 }, /* AAR-2420SA (Intruder) */
8e9d58e7
SM
200 { aac_rkt_init, "aacraid", "ICP ", "ICP9024RO ", 2 }, /* ICP9024RO (Lancer) */
201 { aac_rkt_init, "aacraid", "ICP ", "ICP9014RO ", 1 }, /* ICP9014RO (Lancer) */
84971738
MH
202 { aac_rkt_init, "aacraid", "ICP ", "ICP9047MA ", 1 }, /* ICP9047MA (Lancer) */
203 { aac_rkt_init, "aacraid", "ICP ", "ICP9087MA ", 1 }, /* ICP9087MA (Lancer) */
75c3628d 204 { aac_rkt_init, "aacraid", "ICP ", "ICP5445AU ", 1 }, /* ICP5445AU (Hurricane44) */
8e87c2f1
MH
205 { aac_rx_init, "aacraid", "ICP ", "ICP9085LI ", 1 }, /* ICP9085LI (Marauder-X) */
206 { aac_rx_init, "aacraid", "ICP ", "ICP5085BR ", 1 }, /* ICP5085BR (Marauder-E) */
207 { aac_rkt_init, "aacraid", "ICP ", "ICP9067MA ", 1 }, /* ICP9067MA (Intruder-6) */
84971738 208 { NULL , "aacraid", "ADAPTEC ", "Themisto ", 0, AAC_QUIRK_SLAVE }, /* Jupiter Platform */
1da177e4
LT
209 { aac_rkt_init, "aacraid", "ADAPTEC ", "Callisto ", 2, AAC_QUIRK_MASTER }, /* Jupiter Platform */
210 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-2020SA ", 1 }, /* ASR-2020SA SATA PCI-X ZCR (Skyhawk) */
211 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-2025SA ", 1 }, /* ASR-2025SA SATA SO-DIMM PCI-X ZCR (Terminator) */
db39363c
MH
212 { aac_rx_init, "aacraid", "ADAPTEC ", "AAR-2410SA SATA ", 1, AAC_QUIRK_17SG }, /* AAR-2410SA PCI SATA 4ch (Jaguar II) */
213 { aac_rx_init, "aacraid", "DELL ", "CERC SR2 ", 1, AAC_QUIRK_17SG }, /* CERC SATA RAID 2 PCI SATA 6ch (DellCorsair) */
214 { aac_rx_init, "aacraid", "ADAPTEC ", "AAR-2810SA SATA ", 1, AAC_QUIRK_17SG }, /* AAR-2810SA PCI SATA 8ch (Corsair-8) */
215 { aac_rx_init, "aacraid", "ADAPTEC ", "AAR-21610SA SATA", 1, AAC_QUIRK_17SG }, /* AAR-21610SA PCI SATA 16ch (Corsair-16) */
1da177e4
LT
216 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-2026ZCR ", 1 }, /* ESD SO-DIMM PCI-X SATA ZCR (Prowler) */
217 { aac_rx_init, "aacraid", "ADAPTEC ", "AAR-2610SA ", 1 }, /* SATA 6Ch (Bearcat) */
218 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-2240S ", 1 }, /* ASR-2240S (SabreExpress) */
8e9d58e7 219 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-4005 ", 1 }, /* ASR-4005 */
84971738 220 { aac_rx_init, "ServeRAID","IBM ", "ServeRAID 8i ", 1 }, /* IBM 8i (AvonPark) */
8e87c2f1
MH
221 { aac_rkt_init, "ServeRAID","IBM ", "ServeRAID 8k-l8 ", 1 }, /* IBM 8k/8k-l8 (Aurora) */
222 { aac_rkt_init, "ServeRAID","IBM ", "ServeRAID 8k-l4 ", 1 }, /* IBM 8k/8k-l4 (Aurora Lite) */
8e9d58e7 223 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-4000 ", 1 }, /* ASR-4000 (BlackBird & AvonPark) */
1da177e4
LT
224 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-4800SAS ", 1 }, /* ASR-4800SAS (Marauder-X) */
225 { aac_rx_init, "aacraid", "ADAPTEC ", "ASR-4805SAS ", 1 }, /* ASR-4805SAS (Marauder-E) */
8e9d58e7 226 { aac_rkt_init, "aacraid", "ADAPTEC ", "ASR-3800 ", 1 }, /* ASR-3800 (Hurricane44) */
1da177e4
LT
227
228 { aac_rx_init, "percraid", "DELL ", "PERC 320/DC ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG }, /* Perc 320/DC*/
229 { aac_sa_init, "aacraid", "ADAPTEC ", "Adaptec 5400S ", 4, AAC_QUIRK_34SG }, /* Adaptec 5400S (Mustang)*/
230 { aac_sa_init, "aacraid", "ADAPTEC ", "AAC-364 ", 4, AAC_QUIRK_34SG }, /* Adaptec 5400S (Mustang)*/
b27e66df 231 { aac_sa_init, "percraid", "DELL ", "PERCRAID ", 4, AAC_QUIRK_34SG }, /* Dell PERC2/QC */
1da177e4
LT
232 { aac_sa_init, "hpnraid", "HP ", "NetRAID ", 4, AAC_QUIRK_34SG }, /* HP NetRAID-4M */
233
94cf6ba1
SM
234 { aac_rx_init, "aacraid", "DELL ", "RAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Dell Catchall */
235 { aac_rx_init, "aacraid", "Legend ", "RAID ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Legend Catchall */
b27e66df 236 { aac_rx_init, "aacraid", "ADAPTEC ", "RAID ", 2 }, /* Adaptec Catch All */
239eab19 237 { aac_rkt_init, "aacraid", "ADAPTEC ", "RAID ", 2 }, /* Adaptec Rocket Catch All */
e8b12f0f 238 { aac_nark_init, "aacraid", "ADAPTEC ", "RAID ", 2 }, /* Adaptec NEMER/ARK Catch All */
11604612
MR
239 { aac_src_init, "aacraid", "ADAPTEC ", "RAID ", 2 }, /* Adaptec PMC Series 6 (Tupelo) */
240 { aac_srcv_init, "aacraid", "ADAPTEC ", "RAID ", 2 }, /* Adaptec PMC Series 7 (Denali) */
241 { aac_srcv_init, "aacraid", "ADAPTEC ", "RAID ", 2 }, /* Adaptec PMC Series 8 */
242 { aac_srcv_init, "aacraid", "ADAPTEC ", "RAID ", 2 } /* Adaptec PMC Series 9 */
1da177e4
LT
243};
244
245/**
246 * aac_queuecommand - queue a SCSI command
247 * @cmd: SCSI command to queue
248 * @done: Function to call on command completion
249 *
250 * Queues a command for execution by the associated Host Adapter.
251 *
252 * TODO: unify with aac_scsi_cmd().
8ce3eca4 253 */
1da177e4 254
ef616233
MR
255static int aac_queuecommand(struct Scsi_Host *shost,
256 struct scsi_cmnd *cmd)
1da177e4 257{
ef616233 258 int r = 0;
77d644d4 259 cmd->SCp.phase = AAC_OWNER_LOWLEVEL;
ef616233
MR
260 r = (aac_scsi_cmd(cmd) ? FAILED : 0);
261 return r;
8ce3eca4 262}
1da177e4
LT
263
264/**
265 * aac_info - Returns the host adapter name
266 * @shost: Scsi host to report on
267 *
268 * Returns a static string describing the device in question
269 */
270
4833869e 271static const char *aac_info(struct Scsi_Host *shost)
1da177e4
LT
272{
273 struct aac_dev *dev = (struct aac_dev *)shost->hostdata;
274 return aac_drivers[dev->cardtype].name;
275}
276
277/**
278 * aac_get_driver_ident
8ef22247 279 * @devtype: index into lookup table
1da177e4 280 *
8ef22247 281 * Returns a pointer to the entry in the driver lookup table.
1da177e4
LT
282 */
283
284struct aac_driver_ident* aac_get_driver_ident(int devtype)
285{
286 return &aac_drivers[devtype];
287}
288
289/**
290 * aac_biosparm - return BIOS parameters for disk
291 * @sdev: The scsi device corresponding to the disk
292 * @bdev: the block device corresponding to the disk
293 * @capacity: the sector capacity of the disk
294 * @geom: geometry block to fill in
295 *
8ce3eca4
SM
296 * Return the Heads/Sectors/Cylinders BIOS Disk Parameters for Disk.
297 * The default disk geometry is 64 heads, 32 sectors, and the appropriate
298 * number of cylinders so as not to exceed drive capacity. In order for
1da177e4 299 * disks equal to or larger than 1 GB to be addressable by the BIOS
8ce3eca4
SM
300 * without exceeding the BIOS limitation of 1024 cylinders, Extended
301 * Translation should be enabled. With Extended Translation enabled,
302 * drives between 1 GB inclusive and 2 GB exclusive are given a disk
303 * geometry of 128 heads and 32 sectors, and drives above 2 GB inclusive
304 * are given a disk geometry of 255 heads and 63 sectors. However, if
305 * the BIOS detects that the Extended Translation setting does not match
306 * the geometry in the partition table, then the translation inferred
307 * from the partition table will be used by the BIOS, and a warning may
1da177e4
LT
308 * be displayed.
309 */
8ce3eca4 310
1da177e4
LT
311static int aac_biosparm(struct scsi_device *sdev, struct block_device *bdev,
312 sector_t capacity, int *geom)
313{
314 struct diskparm *param = (struct diskparm *)geom;
315 unsigned char *buf;
316
317 dprintk((KERN_DEBUG "aac_biosparm.\n"));
318
319 /*
320 * Assuming extended translation is enabled - #REVISIT#
321 */
322 if (capacity >= 2 * 1024 * 1024) { /* 1 GB in 512 byte sectors */
323 if(capacity >= 4 * 1024 * 1024) { /* 2 GB in 512 byte sectors */
324 param->heads = 255;
325 param->sectors = 63;
326 } else {
327 param->heads = 128;
328 param->sectors = 32;
329 }
330 } else {
331 param->heads = 64;
332 param->sectors = 32;
333 }
334
335 param->cylinders = cap_to_cyls(capacity, param->heads * param->sectors);
336
8ce3eca4 337 /*
1da177e4
LT
338 * Read the first 1024 bytes from the disk device, if the boot
339 * sector partition table is valid, search for a partition table
8ce3eca4 340 * entry whose end_head matches one of the standard geometry
1da177e4
LT
341 * translations ( 64/32, 128/32, 255/63 ).
342 */
343 buf = scsi_bios_ptable(bdev);
8bdf810f
MH
344 if (!buf)
345 return 0;
56b58712 346 if(*(__le16 *)(buf + 0x40) == cpu_to_le16(0xaa55)) {
1da177e4
LT
347 struct partition *first = (struct partition * )buf;
348 struct partition *entry = first;
349 int saved_cylinders = param->cylinders;
350 int num;
351 unsigned char end_head, end_sec;
352
353 for(num = 0; num < 4; num++) {
354 end_head = entry->end_head;
355 end_sec = entry->end_sector & 0x3f;
356
357 if(end_head == 63) {
358 param->heads = 64;
359 param->sectors = 32;
360 break;
361 } else if(end_head == 127) {
362 param->heads = 128;
363 param->sectors = 32;
364 break;
365 } else if(end_head == 254) {
366 param->heads = 255;
367 param->sectors = 63;
368 break;
369 }
370 entry++;
371 }
372
373 if (num == 4) {
374 end_head = first->end_head;
375 end_sec = first->end_sector & 0x3f;
376 }
377
378 param->cylinders = cap_to_cyls(capacity, param->heads * param->sectors);
379 if (num < 4 && end_sec == param->sectors) {
380 if (param->cylinders != saved_cylinders)
381 dprintk((KERN_DEBUG "Adopting geometry: heads=%d, sectors=%d from partition table %d.\n",
382 param->heads, param->sectors, num));
383 } else if (end_head > 0 || end_sec > 0) {
384 dprintk((KERN_DEBUG "Strange geometry: heads=%d, sectors=%d in partition table %d.\n",
385 end_head + 1, end_sec, num));
386 dprintk((KERN_DEBUG "Using geometry: heads=%d, sectors=%d.\n",
387 param->heads, param->sectors));
388 }
389 }
390 kfree(buf);
391 return 0;
392}
393
394/**
395 * aac_slave_configure - compute queue depths
396 * @sdev: SCSI device we are considering
397 *
398 * Selects queue depths for each target device based on the host adapter's
399 * total capacity and the queue depth supported by the target device.
400 * A queue depth of one automatically disables tagged queueing.
401 */
402
403static int aac_slave_configure(struct scsi_device *sdev)
404{
b18268fc 405 struct aac_dev *aac = (struct aac_dev *)sdev->host->hostdata;
a4576b5d
MS
406 if (aac->jbod && (sdev->type == TYPE_DISK))
407 sdev->removable = 1;
bb08f92e 408 if ((sdev->type == TYPE_DISK) &&
b18268fc 409 (sdev_channel(sdev) != CONTAINER_CHANNEL) &&
cb1042f2 410 (!aac->jbod || sdev->inq_periph_qual) &&
b18268fc 411 (!aac->raid_scsi_mode || (sdev_channel(sdev) != 2))) {
e37ee4be
MH
412 if (expose_physicals == 0)
413 return -ENXIO;
b18268fc
SM
414 if (expose_physicals < 0)
415 sdev->no_uld_attach = 1;
bb08f92e
MH
416 }
417 if (sdev->tagged_supported && (sdev->type == TYPE_DISK) &&
cb1042f2
SM
418 (!aac->raid_scsi_mode || (sdev_channel(sdev) != 2)) &&
419 !sdev->no_uld_attach) {
bb08f92e
MH
420 struct scsi_device * dev;
421 struct Scsi_Host *host = sdev->host;
422 unsigned num_lsu = 0;
423 unsigned num_one = 0;
424 unsigned depth;
b18268fc 425 unsigned cid;
7c00ffa3 426
94cf6ba1
SM
427 /*
428 * Firmware has an individual device recovery time typically
429 * of 35 seconds, give us a margin.
430 */
8fbd64e2
JB
431 if (sdev->request_queue->rq_timeout < (45 * HZ))
432 blk_queue_rq_timeout(sdev->request_queue, 45*HZ);
b18268fc
SM
433 for (cid = 0; cid < aac->maximum_num_containers; ++cid)
434 if (aac->fsa_dev[cid].valid)
435 ++num_lsu;
bb08f92e
MH
436 __shost_for_each_device(dev, host) {
437 if (dev->tagged_supported && (dev->type == TYPE_DISK) &&
cb1042f2
SM
438 (!aac->raid_scsi_mode ||
439 (sdev_channel(sdev) != 2)) &&
440 !dev->no_uld_attach) {
441 if ((sdev_channel(dev) != CONTAINER_CHANNEL)
442 || !aac->fsa_dev[sdev_id(dev)].valid)
b18268fc
SM
443 ++num_lsu;
444 } else
bb08f92e
MH
445 ++num_one;
446 }
447 if (num_lsu == 0)
448 ++num_lsu;
449 depth = (host->can_queue - num_one) / num_lsu;
450 if (depth > 256)
451 depth = 256;
452 else if (depth < 2)
453 depth = 2;
db5ed4df 454 scsi_change_queue_depth(sdev, depth);
bb08f92e 455 } else
db5ed4df 456 scsi_change_queue_depth(sdev, 1);
7c00ffa3 457
6bf3b630
RAR
458 sdev->tagged_supported = 1;
459
1da177e4
LT
460 return 0;
461}
462
5c9cfedd
SM
463/**
464 * aac_change_queue_depth - alter queue depths
465 * @sdev: SCSI device we are considering
466 * @depth: desired queue depth
467 *
468 * Alters queue depths for target device based on the host adapter's
469 * total capacity and the queue depth supported by the target device.
470 */
471
db5ed4df 472static int aac_change_queue_depth(struct scsi_device *sdev, int depth)
5c9cfedd
SM
473{
474 if (sdev->tagged_supported && (sdev->type == TYPE_DISK) &&
475 (sdev_channel(sdev) == CONTAINER_CHANNEL)) {
476 struct scsi_device * dev;
477 struct Scsi_Host *host = sdev->host;
478 unsigned num = 0;
479
480 __shost_for_each_device(dev, host) {
481 if (dev->tagged_supported && (dev->type == TYPE_DISK) &&
482 (sdev_channel(dev) == CONTAINER_CHANNEL))
483 ++num;
484 ++num;
485 }
486 if (num >= host->can_queue)
487 num = host->can_queue - 1;
488 if (depth > (host->can_queue - num))
489 depth = host->can_queue - num;
490 if (depth > 256)
491 depth = 256;
492 else if (depth < 2)
493 depth = 2;
db5ed4df
CH
494 return scsi_change_queue_depth(sdev, depth);
495 }
496
497 return scsi_change_queue_depth(sdev, 1);
5c9cfedd
SM
498}
499
17eaacee
SM
500static ssize_t aac_show_raid_level(struct device *dev, struct device_attribute *attr, char *buf)
501{
95f6fb57
SM
502 struct scsi_device *sdev = to_scsi_device(dev);
503 struct aac_dev *aac = (struct aac_dev *)(sdev->host->hostdata);
17eaacee
SM
504 if (sdev_channel(sdev) != CONTAINER_CHANNEL)
505 return snprintf(buf, PAGE_SIZE, sdev->no_uld_attach
95f6fb57
SM
506 ? "Hidden\n" :
507 ((aac->jbod && (sdev->type == TYPE_DISK)) ? "JBOD\n" : ""));
17eaacee 508 return snprintf(buf, PAGE_SIZE, "%s\n",
95f6fb57 509 get_container_type(aac->fsa_dev[sdev_id(sdev)].type));
17eaacee
SM
510}
511
512static struct device_attribute aac_raid_level_attr = {
513 .attr = {
514 .name = "level",
515 .mode = S_IRUGO,
516 },
517 .show = aac_show_raid_level
518};
519
520static struct device_attribute *aac_dev_attrs[] = {
521 &aac_raid_level_attr,
522 NULL,
523};
524
1da177e4
LT
525static int aac_ioctl(struct scsi_device *sdev, int cmd, void __user * arg)
526{
527 struct aac_dev *dev = (struct aac_dev *)sdev->host->hostdata;
d496f94d
AC
528 if (!capable(CAP_SYS_RAWIO))
529 return -EPERM;
1da177e4
LT
530 return aac_do_ioctl(dev, cmd, arg);
531}
532
03d44337
MH
533static int aac_eh_abort(struct scsi_cmnd* cmd)
534{
802ae2f0
SM
535 struct scsi_device * dev = cmd->device;
536 struct Scsi_Host * host = dev->host;
03d44337
MH
537 struct aac_dev * aac = (struct aac_dev *)host->hostdata;
538 int count;
539 int ret = FAILED;
540
9cb78c16 541 printk(KERN_ERR "%s: Host adapter abort request (%d,%d,%d,%llu)\n",
03d44337 542 AAC_DRIVERNAME,
802ae2f0 543 host->host_no, sdev_channel(dev), sdev_id(dev), dev->lun);
03d44337 544 switch (cmd->cmnd[0]) {
eb846d9f 545 case SERVICE_ACTION_IN_16:
03d44337
MH
546 if (!(aac->raw_io_interface) ||
547 !(aac->raw_io_64) ||
548 ((cmd->cmnd[1] & 0x1f) != SAI_READ_CAPACITY_16))
549 break;
550 case INQUIRY:
551 case READ_CAPACITY:
03d44337
MH
552 /* Mark associated FIB to not complete, eh handler does this */
553 for (count = 0; count < (host->can_queue + AAC_NUM_MGT_FIB); ++count) {
554 struct fib * fib = &aac->fibs[count];
555 if (fib->hw_fib_va->header.XferState &&
b6ef70f3 556 (fib->flags & FIB_CONTEXT_FLAG) &&
03d44337
MH
557 (fib->callback_data == cmd)) {
558 fib->flags |= FIB_CONTEXT_FLAG_TIMED_OUT;
559 cmd->SCp.phase = AAC_OWNER_ERROR_HANDLER;
560 ret = SUCCESS;
561 }
562 }
b6ef70f3
SM
563 break;
564 case TEST_UNIT_READY:
565 /* Mark associated FIB to not complete, eh handler does this */
566 for (count = 0; count < (host->can_queue + AAC_NUM_MGT_FIB); ++count) {
567 struct scsi_cmnd * command;
568 struct fib * fib = &aac->fibs[count];
569 if ((fib->hw_fib_va->header.XferState & cpu_to_le32(Async | NoResponseExpected)) &&
570 (fib->flags & FIB_CONTEXT_FLAG) &&
571 ((command = fib->callback_data)) &&
572 (command->device == cmd->device)) {
573 fib->flags |= FIB_CONTEXT_FLAG_TIMED_OUT;
574 command->SCp.phase = AAC_OWNER_ERROR_HANDLER;
575 if (command == cmd)
576 ret = SUCCESS;
577 }
578 }
03d44337
MH
579 }
580 return ret;
581}
582
1da177e4
LT
583/*
584 * aac_eh_reset - Reset command handling
585 * @scsi_cmd: SCSI command block causing the reset
586 *
587 */
588static int aac_eh_reset(struct scsi_cmnd* cmd)
589{
590 struct scsi_device * dev = cmd->device;
591 struct Scsi_Host * host = dev->host;
592 struct scsi_cmnd * command;
593 int count;
03d44337 594 struct aac_dev * aac = (struct aac_dev *)host->hostdata;
1da177e4
LT
595 unsigned long flags;
596
03d44337
MH
597 /* Mark the associated FIB to not complete, eh handler does this */
598 for (count = 0; count < (host->can_queue + AAC_NUM_MGT_FIB); ++count) {
599 struct fib * fib = &aac->fibs[count];
600 if (fib->hw_fib_va->header.XferState &&
b6ef70f3 601 (fib->flags & FIB_CONTEXT_FLAG) &&
03d44337
MH
602 (fib->callback_data == cmd)) {
603 fib->flags |= FIB_CONTEXT_FLAG_TIMED_OUT;
604 cmd->SCp.phase = AAC_OWNER_ERROR_HANDLER;
605 }
606 }
8ce3eca4 607 printk(KERN_ERR "%s: Host adapter reset request. SCSI hang ?\n",
1da177e4 608 AAC_DRIVERNAME);
8c867b25
MH
609
610 if ((count = aac_check_health(aac)))
611 return count;
1da177e4
LT
612 /*
613 * Wait for all commands to complete to this specific
614 * target (block maximum 60 seconds).
615 */
616 for (count = 60; count; --count) {
8c867b25
MH
617 int active = aac->in_reset;
618
619 if (active == 0)
1da177e4
LT
620 __shost_for_each_device(dev, host) {
621 spin_lock_irqsave(&dev->list_lock, flags);
622 list_for_each_entry(command, &dev->cmd_list, list) {
77d644d4
MH
623 if ((command != cmd) &&
624 (command->SCp.phase == AAC_OWNER_FIRMWARE)) {
1da177e4
LT
625 active++;
626 break;
627 }
628 }
629 spin_unlock_irqrestore(&dev->list_lock, flags);
630 if (active)
631 break;
632
633 }
634 /*
635 * We can exit If all the commands are complete
636 */
637 if (active == 0)
638 return SUCCESS;
1da177e4 639 ssleep(1);
1da177e4
LT
640 }
641 printk(KERN_ERR "%s: SCSI bus appears hung\n", AAC_DRIVERNAME);
29c97684
SM
642 /*
643 * This adapter needs a blind reset, only do so for Adapters that
644 * support a register, instead of a commanded, reset.
645 */
e8b12f0f
MR
646 if (((aac->supplement_adapter_info.SupportedOptions2 &
647 AAC_OPTION_MU_RESET) ||
648 (aac->supplement_adapter_info.SupportedOptions2 &
649 AAC_OPTION_DOORBELL_RESET)) &&
a3940da5
SM
650 aac_check_reset &&
651 ((aac_check_reset != 1) ||
2f7ecc55 652 !(aac->supplement_adapter_info.SupportedOptions2 &
a3940da5 653 AAC_OPTION_IGNORE_RESET)))
29c97684 654 aac_reset_adapter(aac, 2); /* Bypass wait for command quiesce */
03d44337 655 return SUCCESS; /* Cause an immediate retry of the command with a ten second delay after successful tur */
1da177e4
LT
656}
657
658/**
659 * aac_cfg_open - open a configuration file
660 * @inode: inode being opened
661 * @file: file handle attached
662 *
663 * Called when the configuration device is opened. Does the needed
664 * set up on the handle and then returns
665 *
666 * Bugs: This needs extending to check a given adapter is present
667 * so we can support hot plugging, and to ref count adapters.
668 */
669
670static int aac_cfg_open(struct inode *inode, struct file *file)
671{
672 struct aac_dev *aac;
7c00ffa3 673 unsigned minor_number = iminor(inode);
1da177e4
LT
674 int err = -ENODEV;
675
c45d15d2 676 mutex_lock(&aac_mutex); /* BKL pushdown: nothing else protects this list */
1da177e4 677 list_for_each_entry(aac, &aac_devices, entry) {
7c00ffa3 678 if (aac->id == minor_number) {
1da177e4
LT
679 file->private_data = aac;
680 err = 0;
681 break;
682 }
683 }
c45d15d2 684 mutex_unlock(&aac_mutex);
1da177e4 685
036d6184 686 return err;
1da177e4
LT
687}
688
689/**
690 * aac_cfg_ioctl - AAC configuration request
691 * @inode: inode of device
692 * @file: file handle
693 * @cmd: ioctl command code
694 * @arg: argument
695 *
696 * Handles a configuration ioctl. Currently this involves wrapping it
697 * up and feeding it into the nasty windowsalike glue layer.
698 *
699 * Bugs: Needs locking against parallel ioctls lower down
700 * Bugs: Needs to handle hot plugging
701 */
8ce3eca4 702
f4927c45 703static long aac_cfg_ioctl(struct file *file,
1da177e4
LT
704 unsigned int cmd, unsigned long arg)
705{
222a9fb3
RAR
706 struct aac_dev *aac = (struct aac_dev *)file->private_data;
707
f9c42596 708 if (!capable(CAP_SYS_RAWIO) || aac->adapter_shutdown)
60395bb6 709 return -EPERM;
f4927c45 710
222a9fb3 711 return aac_do_ioctl(aac, cmd, (void __user *)arg);
1da177e4
LT
712}
713
714#ifdef CONFIG_COMPAT
715static long aac_compat_do_ioctl(struct aac_dev *dev, unsigned cmd, unsigned long arg)
716{
717 long ret;
8ce3eca4 718 switch (cmd) {
1da177e4
LT
719 case FSACTL_MINIPORT_REV_CHECK:
720 case FSACTL_SENDFIB:
721 case FSACTL_OPEN_GET_ADAPTER_FIB:
722 case FSACTL_CLOSE_GET_ADAPTER_FIB:
723 case FSACTL_SEND_RAW_SRB:
724 case FSACTL_GET_PCI_INFO:
725 case FSACTL_QUERY_DISK:
726 case FSACTL_DELETE_DISK:
727 case FSACTL_FORCE_DELETE_DISK:
8ce3eca4 728 case FSACTL_GET_CONTAINERS:
7c00ffa3 729 case FSACTL_SEND_LARGE_FIB:
1da177e4
LT
730 ret = aac_do_ioctl(dev, cmd, (void __user *)arg);
731 break;
732
733 case FSACTL_GET_NEXT_ADAPTER_FIB: {
734 struct fib_ioctl __user *f;
8ce3eca4 735
1da177e4
LT
736 f = compat_alloc_user_space(sizeof(*f));
737 ret = 0;
821499a8 738 if (clear_user(f, sizeof(*f)))
1da177e4
LT
739 ret = -EFAULT;
740 if (copy_in_user(f, (void __user *)arg, sizeof(struct fib_ioctl) - sizeof(u32)))
741 ret = -EFAULT;
742 if (!ret)
3d2f98a6 743 ret = aac_do_ioctl(dev, cmd, f);
1da177e4
LT
744 break;
745 }
746
747 default:
8ce3eca4 748 ret = -ENOIOCTLCMD;
1da177e4 749 break;
8ce3eca4 750 }
1da177e4
LT
751 return ret;
752}
753
754static int aac_compat_ioctl(struct scsi_device *sdev, int cmd, void __user *arg)
755{
756 struct aac_dev *dev = (struct aac_dev *)sdev->host->hostdata;
f856567b
DC
757 if (!capable(CAP_SYS_RAWIO))
758 return -EPERM;
1da177e4
LT
759 return aac_compat_do_ioctl(dev, cmd, (unsigned long)arg);
760}
761
762static long aac_compat_cfg_ioctl(struct file *file, unsigned cmd, unsigned long arg)
763{
5f78e89b 764 if (!capable(CAP_SYS_RAWIO))
60395bb6 765 return -EPERM;
35df8397 766 return aac_compat_do_ioctl(file->private_data, cmd, arg);
1da177e4
LT
767}
768#endif
769
ee959b00
TJ
770static ssize_t aac_show_model(struct device *device,
771 struct device_attribute *attr, char *buf)
0bb14afe 772{
ee959b00 773 struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
0bb14afe
MH
774 int len;
775
7686f132
MH
776 if (dev->supplement_adapter_info.AdapterTypeText[0]) {
777 char * cp = dev->supplement_adapter_info.AdapterTypeText;
778 while (*cp && *cp != ' ')
779 ++cp;
780 while (*cp == ' ')
781 ++cp;
782 len = snprintf(buf, PAGE_SIZE, "%s\n", cp);
783 } else
784 len = snprintf(buf, PAGE_SIZE, "%s\n",
0bb14afe
MH
785 aac_drivers[dev->cardtype].model);
786 return len;
787}
788
ee959b00
TJ
789static ssize_t aac_show_vendor(struct device *device,
790 struct device_attribute *attr, char *buf)
0bb14afe 791{
ee959b00 792 struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
0bb14afe
MH
793 int len;
794
7686f132
MH
795 if (dev->supplement_adapter_info.AdapterTypeText[0]) {
796 char * cp = dev->supplement_adapter_info.AdapterTypeText;
797 while (*cp && *cp != ' ')
798 ++cp;
799 len = snprintf(buf, PAGE_SIZE, "%.*s\n",
800 (int)(cp - (char *)dev->supplement_adapter_info.AdapterTypeText),
801 dev->supplement_adapter_info.AdapterTypeText);
802 } else
803 len = snprintf(buf, PAGE_SIZE, "%s\n",
0bb14afe
MH
804 aac_drivers[dev->cardtype].vname);
805 return len;
806}
807
ee959b00
TJ
808static ssize_t aac_show_flags(struct device *cdev,
809 struct device_attribute *attr, char *buf)
2ca39c48
SM
810{
811 int len = 0;
ee959b00 812 struct aac_dev *dev = (struct aac_dev*)class_to_shost(cdev)->hostdata;
2ca39c48
SM
813
814 if (nblank(dprintk(x)))
815 len = snprintf(buf, PAGE_SIZE, "dprintk\n");
816#ifdef AAC_DETAILED_STATUS_INFO
817 len += snprintf(buf + len, PAGE_SIZE - len,
818 "AAC_DETAILED_STATUS_INFO\n");
819#endif
820 if (dev->raw_io_interface && dev->raw_io_64)
821 len += snprintf(buf + len, PAGE_SIZE - len,
822 "SAI_READ_CAPACITY_16\n");
cb1042f2
SM
823 if (dev->jbod)
824 len += snprintf(buf + len, PAGE_SIZE - len, "SUPPORTED_JBOD\n");
655d722c
MS
825 if (dev->supplement_adapter_info.SupportedOptions2 &
826 AAC_OPTION_POWER_MANAGEMENT)
827 len += snprintf(buf + len, PAGE_SIZE - len,
828 "SUPPORTED_POWER_MANAGEMENT\n");
829 if (dev->msi)
830 len += snprintf(buf + len, PAGE_SIZE - len, "PCI_HAS_MSI\n");
2ca39c48
SM
831 return len;
832}
833
ee959b00
TJ
834static ssize_t aac_show_kernel_version(struct device *device,
835 struct device_attribute *attr,
836 char *buf)
0bb14afe 837{
ee959b00 838 struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
0bb14afe
MH
839 int len, tmp;
840
841 tmp = le32_to_cpu(dev->adapter_info.kernelrev);
8ce3eca4 842 len = snprintf(buf, PAGE_SIZE, "%d.%d-%d[%d]\n",
0bb14afe
MH
843 tmp >> 24, (tmp >> 16) & 0xff, tmp & 0xff,
844 le32_to_cpu(dev->adapter_info.kernelbuild));
845 return len;
846}
847
ee959b00
TJ
848static ssize_t aac_show_monitor_version(struct device *device,
849 struct device_attribute *attr,
850 char *buf)
0bb14afe 851{
ee959b00 852 struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
0bb14afe
MH
853 int len, tmp;
854
855 tmp = le32_to_cpu(dev->adapter_info.monitorrev);
8ce3eca4 856 len = snprintf(buf, PAGE_SIZE, "%d.%d-%d[%d]\n",
0bb14afe
MH
857 tmp >> 24, (tmp >> 16) & 0xff, tmp & 0xff,
858 le32_to_cpu(dev->adapter_info.monitorbuild));
859 return len;
860}
861
ee959b00
TJ
862static ssize_t aac_show_bios_version(struct device *device,
863 struct device_attribute *attr,
864 char *buf)
0bb14afe 865{
ee959b00 866 struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
0bb14afe
MH
867 int len, tmp;
868
869 tmp = le32_to_cpu(dev->adapter_info.biosrev);
8ce3eca4 870 len = snprintf(buf, PAGE_SIZE, "%d.%d-%d[%d]\n",
0bb14afe
MH
871 tmp >> 24, (tmp >> 16) & 0xff, tmp & 0xff,
872 le32_to_cpu(dev->adapter_info.biosbuild));
873 return len;
874}
875
13a17fde 876static ssize_t aac_show_serial_number(struct device *device,
ee959b00 877 struct device_attribute *attr, char *buf)
0bb14afe 878{
ee959b00 879 struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
0bb14afe
MH
880 int len = 0;
881
882 if (le32_to_cpu(dev->adapter_info.serial[0]) != 0xBAD0)
dc55b827 883 len = snprintf(buf, 16, "%06X\n",
0bb14afe 884 le32_to_cpu(dev->adapter_info.serial[0]));
24f02e1d
SM
885 if (len &&
886 !memcmp(&dev->supplement_adapter_info.MfgPcbaSerialNo[
95f6fb57
SM
887 sizeof(dev->supplement_adapter_info.MfgPcbaSerialNo)-len],
888 buf, len-1))
dc55b827 889 len = snprintf(buf, 16, "%.*s\n",
24f02e1d
SM
890 (int)sizeof(dev->supplement_adapter_info.MfgPcbaSerialNo),
891 dev->supplement_adapter_info.MfgPcbaSerialNo);
dc55b827
DC
892
893 return min(len, 16);
0bb14afe
MH
894}
895
ee959b00
TJ
896static ssize_t aac_show_max_channel(struct device *device,
897 struct device_attribute *attr, char *buf)
d1ad94ad
MH
898{
899 return snprintf(buf, PAGE_SIZE, "%d\n",
ee959b00 900 class_to_shost(device)->max_channel);
d1ad94ad
MH
901}
902
ee959b00
TJ
903static ssize_t aac_show_max_id(struct device *device,
904 struct device_attribute *attr, char *buf)
d1ad94ad
MH
905{
906 return snprintf(buf, PAGE_SIZE, "%d\n",
ee959b00 907 class_to_shost(device)->max_id);
d1ad94ad
MH
908}
909
ee959b00
TJ
910static ssize_t aac_store_reset_adapter(struct device *device,
911 struct device_attribute *attr,
912 const char *buf, size_t count)
29c97684
SM
913{
914 int retval = -EACCES;
915
916 if (!capable(CAP_SYS_ADMIN))
917 return retval;
ee959b00 918 retval = aac_reset_adapter((struct aac_dev*)class_to_shost(device)->hostdata, buf[0] == '!');
29c97684
SM
919 if (retval >= 0)
920 retval = count;
921 return retval;
922}
923
ee959b00
TJ
924static ssize_t aac_show_reset_adapter(struct device *device,
925 struct device_attribute *attr,
926 char *buf)
29c97684 927{
ee959b00 928 struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
29c97684
SM
929 int len, tmp;
930
931 tmp = aac_adapter_check_health(dev);
932 if ((tmp == 0) && dev->in_reset)
933 tmp = -EBUSY;
bbf17d64 934 len = snprintf(buf, PAGE_SIZE, "0x%x\n", tmp);
29c97684
SM
935 return len;
936}
0bb14afe 937
ee959b00 938static struct device_attribute aac_model = {
0bb14afe
MH
939 .attr = {
940 .name = "model",
941 .mode = S_IRUGO,
942 },
943 .show = aac_show_model,
944};
ee959b00 945static struct device_attribute aac_vendor = {
0bb14afe
MH
946 .attr = {
947 .name = "vendor",
948 .mode = S_IRUGO,
949 },
950 .show = aac_show_vendor,
951};
ee959b00 952static struct device_attribute aac_flags = {
2ca39c48
SM
953 .attr = {
954 .name = "flags",
955 .mode = S_IRUGO,
956 },
957 .show = aac_show_flags,
958};
ee959b00 959static struct device_attribute aac_kernel_version = {
0bb14afe
MH
960 .attr = {
961 .name = "hba_kernel_version",
962 .mode = S_IRUGO,
963 },
964 .show = aac_show_kernel_version,
965};
ee959b00 966static struct device_attribute aac_monitor_version = {
0bb14afe
MH
967 .attr = {
968 .name = "hba_monitor_version",
969 .mode = S_IRUGO,
970 },
971 .show = aac_show_monitor_version,
972};
ee959b00 973static struct device_attribute aac_bios_version = {
0bb14afe
MH
974 .attr = {
975 .name = "hba_bios_version",
976 .mode = S_IRUGO,
977 },
978 .show = aac_show_bios_version,
979};
ee959b00 980static struct device_attribute aac_serial_number = {
0bb14afe
MH
981 .attr = {
982 .name = "serial_number",
983 .mode = S_IRUGO,
984 },
985 .show = aac_show_serial_number,
986};
ee959b00 987static struct device_attribute aac_max_channel = {
d1ad94ad
MH
988 .attr = {
989 .name = "max_channel",
990 .mode = S_IRUGO,
991 },
992 .show = aac_show_max_channel,
993};
ee959b00 994static struct device_attribute aac_max_id = {
d1ad94ad
MH
995 .attr = {
996 .name = "max_id",
997 .mode = S_IRUGO,
998 },
999 .show = aac_show_max_id,
1000};
ee959b00 1001static struct device_attribute aac_reset = {
29c97684
SM
1002 .attr = {
1003 .name = "reset_host",
1004 .mode = S_IWUSR|S_IRUGO,
1005 },
1006 .store = aac_store_reset_adapter,
1007 .show = aac_show_reset_adapter,
1008};
0bb14afe 1009
ee959b00 1010static struct device_attribute *aac_attrs[] = {
0bb14afe
MH
1011 &aac_model,
1012 &aac_vendor,
2ca39c48 1013 &aac_flags,
0bb14afe
MH
1014 &aac_kernel_version,
1015 &aac_monitor_version,
1016 &aac_bios_version,
1017 &aac_serial_number,
d1ad94ad
MH
1018 &aac_max_channel,
1019 &aac_max_id,
29c97684 1020 &aac_reset,
0bb14afe
MH
1021 NULL
1022};
1023
ee959b00
TJ
1024ssize_t aac_get_serial_number(struct device *device, char *buf)
1025{
1026 return aac_show_serial_number(device, &aac_serial_number, buf);
1027}
0bb14afe 1028
00977a59 1029static const struct file_operations aac_cfg_fops = {
1da177e4 1030 .owner = THIS_MODULE,
f4927c45 1031 .unlocked_ioctl = aac_cfg_ioctl,
1da177e4
LT
1032#ifdef CONFIG_COMPAT
1033 .compat_ioctl = aac_compat_cfg_ioctl,
1034#endif
1035 .open = aac_cfg_open,
6038f373 1036 .llseek = noop_llseek,
1da177e4
LT
1037};
1038
1039static struct scsi_host_template aac_driver_template = {
1040 .module = THIS_MODULE,
8ef22247 1041 .name = "AAC",
7c00ffa3 1042 .proc_name = AAC_DRIVERNAME,
8ef22247
SM
1043 .info = aac_info,
1044 .ioctl = aac_ioctl,
1da177e4
LT
1045#ifdef CONFIG_COMPAT
1046 .compat_ioctl = aac_compat_ioctl,
1047#endif
8ef22247
SM
1048 .queuecommand = aac_queuecommand,
1049 .bios_param = aac_biosparm,
0bb14afe 1050 .shost_attrs = aac_attrs,
1da177e4 1051 .slave_configure = aac_slave_configure,
5c9cfedd 1052 .change_queue_depth = aac_change_queue_depth,
17eaacee 1053 .sdev_attrs = aac_dev_attrs,
03d44337 1054 .eh_abort_handler = aac_eh_abort,
1da177e4 1055 .eh_host_reset_handler = aac_eh_reset,
8ef22247
SM
1056 .can_queue = AAC_NUM_IO_FIB,
1057 .this_id = MAXIMUM_NUM_CONTAINERS,
1058 .sg_tablesize = 16,
1059 .max_sectors = 128,
1da177e4
LT
1060#if (AAC_NUM_IO_FIB > 256)
1061 .cmd_per_lun = 256,
8ce3eca4 1062#else
8ef22247 1063 .cmd_per_lun = AAC_NUM_IO_FIB,
8ce3eca4 1064#endif
1da177e4 1065 .use_clustering = ENABLE_CLUSTERING,
8ef22247 1066 .emulated = 1,
54b2b50c 1067 .no_write_same = 1,
1da177e4
LT
1068};
1069
94774a3a
SM
1070static void __aac_shutdown(struct aac_dev * aac)
1071{
495c0217 1072 int i;
ef616233 1073 int cpu;
495c0217 1074
361ee9c3
BC
1075 if (aac->aif_thread) {
1076 int i;
1077 /* Clear out events first */
1078 for (i = 0; i < (aac->scsi_host_ptr->can_queue + AAC_NUM_MGT_FIB); i++) {
1079 struct fib *fib = &aac->fibs[i];
1080 if (!(fib->hw_fib_va->header.XferState & cpu_to_le32(NoResponseExpected | Async)) &&
1081 (fib->hw_fib_va->header.XferState & cpu_to_le32(ResponseExpected)))
1082 up(&fib->event_wait);
1083 }
e85fbc59 1084 kthread_stop(aac->thread);
361ee9c3 1085 }
94774a3a
SM
1086 aac_send_shutdown(aac);
1087 aac_adapter_disable_int(aac);
ef616233 1088 cpu = cpumask_first(cpu_online_mask);
495c0217
MR
1089 if (aac->pdev->device == PMC_DEVICE_S6 ||
1090 aac->pdev->device == PMC_DEVICE_S7 ||
1091 aac->pdev->device == PMC_DEVICE_S8 ||
1092 aac->pdev->device == PMC_DEVICE_S9) {
1093 if (aac->max_msix > 1) {
ef616233
MR
1094 for (i = 0; i < aac->max_msix; i++) {
1095 if (irq_set_affinity_hint(
1096 aac->msixentry[i].vector,
1097 NULL)) {
1098 printk(KERN_ERR "%s%d: Failed to reset IRQ affinity for cpu %d\n",
1099 aac->name,
1100 aac->id,
1101 cpu);
1102 }
1103 cpu = cpumask_next(cpu,
1104 cpu_online_mask);
495c0217
MR
1105 free_irq(aac->msixentry[i].vector,
1106 &(aac->aac_msix[i]));
ef616233 1107 }
495c0217
MR
1108 } else {
1109 free_irq(aac->pdev->irq,
1110 &(aac->aac_msix[0]));
1111 }
1112 } else {
1113 free_irq(aac->pdev->irq, aac);
1114 }
8ef22247
SM
1115 if (aac->msi)
1116 pci_disable_msi(aac->pdev);
495c0217
MR
1117 else if (aac->max_msix > 1)
1118 pci_disable_msix(aac->pdev);
94774a3a
SM
1119}
1120
6f039790 1121static int aac_probe_one(struct pci_dev *pdev, const struct pci_device_id *id)
1da177e4
LT
1122{
1123 unsigned index = id->driver_data;
1124 struct Scsi_Host *shost;
1125 struct aac_dev *aac;
1126 struct list_head *insert = &aac_devices;
1127 int error = -ENODEV;
1128 int unique_id = 0;
0dcae66f 1129 u64 dmamask;
11604612 1130 extern int aac_sync_mode;
1da177e4 1131
6b93b7dd
RAR
1132 /*
1133 * Only series 7 needs freset.
1134 */
1135 if (pdev->device == PMC_DEVICE_S7)
1136 pdev->needs_freset = 1;
1137
1da177e4
LT
1138 list_for_each_entry(aac, &aac_devices, entry) {
1139 if (aac->id > unique_id)
1140 break;
1141 insert = &aac->entry;
1142 unique_id++;
1143 }
1144
cf16123c
VA
1145 pci_disable_link_state(pdev, PCIE_LINK_STATE_L0S | PCIE_LINK_STATE_L1 |
1146 PCIE_LINK_STATE_CLKPM);
1147
08efb7b6
MH
1148 error = pci_enable_device(pdev);
1149 if (error)
1da177e4 1150 goto out;
e61b17fd 1151 error = -ENODEV;
1da177e4 1152
1da177e4
LT
1153 /*
1154 * If the quirk31 bit is set, the adapter needs adapter
1155 * to driver communication memory to be allocated below 2gig
1156 */
8ce3eca4 1157 if (aac_drivers[index].quirks & AAC_QUIRK_31BIT)
0dcae66f
REB
1158 dmamask = DMA_BIT_MASK(31);
1159 else
1160 dmamask = DMA_BIT_MASK(32);
1161
1162 if (pci_set_dma_mask(pdev, dmamask) ||
1163 pci_set_consistent_dma_mask(pdev, dmamask))
1164 goto out_disable_pdev;
8ce3eca4 1165
1da177e4
LT
1166 pci_set_master(pdev);
1167
1168 shost = scsi_host_alloc(&aac_driver_template, sizeof(struct aac_dev));
1169 if (!shost)
1170 goto out_disable_pdev;
1171
1172 shost->irq = pdev->irq;
1da177e4 1173 shost->unique_id = unique_id;
7a8cf29d 1174 shost->max_cmd_len = 16;
64bdcbc4 1175 shost->use_cmd_list = 1;
1da177e4
LT
1176
1177 aac = (struct aac_dev *)shost->hostdata;
ff08784b 1178 aac->base_start = pci_resource_start(pdev, 0);
8ce3eca4 1179 aac->scsi_host_ptr = shost;
1da177e4
LT
1180 aac->pdev = pdev;
1181 aac->name = aac_driver_template.name;
1182 aac->id = shost->unique_id;
a4576b5d 1183 aac->cardtype = index;
1da177e4
LT
1184 INIT_LIST_HEAD(&aac->entry);
1185
85d22bbf 1186 aac->fibs = kzalloc(sizeof(struct fib) * (shost->can_queue + AAC_NUM_MGT_FIB), GFP_KERNEL);
1da177e4
LT
1187 if (!aac->fibs)
1188 goto out_free_host;
1189 spin_lock_init(&aac->fib_lock);
1190
222a9fb3 1191 mutex_init(&aac->ioctl_mutex);
8e0c5ebd
MH
1192 /*
1193 * Map in the registers from the adapter.
1194 */
1195 aac->base_size = AAC_MIN_FOOTPRINT_SIZE;
8e0c5ebd
MH
1196 if ((*aac_drivers[index].init)(aac))
1197 goto out_unmap;
1198
11604612
MR
1199 if (aac->sync_mode) {
1200 if (aac_sync_mode)
1201 printk(KERN_INFO "%s%d: Sync. mode enforced "
1202 "by driver parameter. This will cause "
1203 "a significant performance decrease!\n",
1204 aac->name,
1205 aac->id);
1206 else
1207 printk(KERN_INFO "%s%d: Async. mode not supported "
1208 "by current driver, sync. mode enforced."
1209 "\nPlease update driver to get full performance.\n",
1210 aac->name,
1211 aac->id);
1212 }
1213
8e0c5ebd
MH
1214 /*
1215 * Start any kernel threads needed
1216 */
fe27381d
CH
1217 aac->thread = kthread_run(aac_command_thread, aac, AAC_DRIVERNAME);
1218 if (IS_ERR(aac->thread)) {
8e0c5ebd 1219 printk(KERN_ERR "aacraid: Unable to create command thread.\n");
fe27381d 1220 error = PTR_ERR(aac->thread);
361ee9c3 1221 aac->thread = NULL;
8e0c5ebd
MH
1222 goto out_deinit;
1223 }
1da177e4
LT
1224
1225 /*
1226 * If we had set a smaller DMA mask earlier, set it to 4gig
1227 * now since the adapter can dma data to at least a 4gig
1228 * address space.
1229 */
1230 if (aac_drivers[index].quirks & AAC_QUIRK_31BIT)
284901a9 1231 if (pci_set_dma_mask(pdev, DMA_BIT_MASK(32)))
71e0f32f 1232 goto out_deinit;
8ce3eca4 1233
84971738 1234 aac->maximum_num_channels = aac_drivers[index].channels;
08efb7b6
MH
1235 error = aac_get_adapter_info(aac);
1236 if (error < 0)
1237 goto out_deinit;
1da177e4
LT
1238
1239 /*
a4576b5d
MS
1240 * Lets override negotiations and drop the maximum SG limit to 34
1241 */
8ce3eca4 1242 if ((aac_drivers[index].quirks & AAC_QUIRK_34SG) &&
62e9f5c4
SM
1243 (shost->sg_tablesize > 34)) {
1244 shost->sg_tablesize = 34;
1245 shost->max_sectors = (shost->sg_tablesize * 8) + 112;
a4576b5d 1246 }
7c00ffa3 1247
a4576b5d 1248 if ((aac_drivers[index].quirks & AAC_QUIRK_17SG) &&
62e9f5c4
SM
1249 (shost->sg_tablesize > 17)) {
1250 shost->sg_tablesize = 17;
1251 shost->max_sectors = (shost->sg_tablesize * 8) + 112;
a4576b5d 1252 }
db39363c 1253
62e9f5c4
SM
1254 error = pci_set_dma_max_seg_size(pdev,
1255 (aac->adapter_info.options & AAC_OPT_NEW_COMM) ?
1256 (shost->max_sectors << 9) : 65536);
1257 if (error)
1258 goto out_deinit;
1259
7c00ffa3 1260 /*
62e9f5c4 1261 * Firmware printf works only with older firmware.
7c00ffa3 1262 */
8ce3eca4 1263 if (aac_drivers[index].quirks & AAC_QUIRK_34SG)
7c00ffa3
MH
1264 aac->printf_enabled = 1;
1265 else
1266 aac->printf_enabled = 0;
8ce3eca4 1267
a4576b5d 1268 /*
1da177e4 1269 * max channel will be the physical channels plus 1 virtual channel
bb08f92e 1270 * all containers are on the virtual channel 0 (CONTAINER_CHANNEL)
1da177e4
LT
1271 * physical channels are address by their actual physical number+1
1272 */
cb1042f2 1273 if (aac->nondasd_support || expose_physicals || aac->jbod)
95433bad 1274 shost->max_channel = aac->maximum_num_channels;
1da177e4 1275 else
95433bad 1276 shost->max_channel = 0;
1da177e4 1277
8c867b25 1278 aac_get_config_status(aac, 0);
1da177e4
LT
1279 aac_get_containers(aac);
1280 list_add(&aac->entry, insert);
1281
1282 shost->max_id = aac->maximum_num_containers;
84971738
MH
1283 if (shost->max_id < aac->maximum_num_physicals)
1284 shost->max_id = aac->maximum_num_physicals;
1da177e4
LT
1285 if (shost->max_id < MAXIMUM_NUM_CONTAINERS)
1286 shost->max_id = MAXIMUM_NUM_CONTAINERS;
1287 else
1288 shost->this_id = shost->max_id;
1289
1290 /*
1291 * dmb - we may need to move the setting of these parms somewhere else once
1292 * we get a fib that can report the actual numbers
1293 */
1294 shost->max_lun = AAC_MAX_LUN;
1295
1296 pci_set_drvdata(pdev, shost);
1297
1298 error = scsi_add_host(shost, &pdev->dev);
1299 if (error)
1300 goto out_deinit;
1301 scsi_scan_host(shost);
1302
5c63f7f7
RAR
1303 pci_enable_pcie_error_reporting(pdev);
1304 pci_save_state(pdev);
1305
1da177e4
LT
1306 return 0;
1307
bd1aac80 1308 out_deinit:
94774a3a 1309 __aac_shutdown(aac);
8e0c5ebd 1310 out_unmap:
bfb35aa8 1311 aac_fib_map_free(aac);
2b053729
SM
1312 if (aac->comm_addr)
1313 pci_free_consistent(aac->pdev, aac->comm_size, aac->comm_addr,
1314 aac->comm_phys);
1da177e4 1315 kfree(aac->queues);
76a7f8fd 1316 aac_adapter_ioremap(aac, 0);
1da177e4
LT
1317 kfree(aac->fibs);
1318 kfree(aac->fsa_dev);
1319 out_free_host:
1320 scsi_host_put(shost);
1321 out_disable_pdev:
1322 pci_disable_device(pdev);
1323 out:
1324 return error;
1325}
1326
fe0798c5 1327static void aac_release_resources(struct aac_dev *aac)
de665f28
MR
1328{
1329 int i;
1330
1331 aac_adapter_disable_int(aac);
1332 if (aac->pdev->device == PMC_DEVICE_S6 ||
1333 aac->pdev->device == PMC_DEVICE_S7 ||
1334 aac->pdev->device == PMC_DEVICE_S8 ||
1335 aac->pdev->device == PMC_DEVICE_S9) {
1336 if (aac->max_msix > 1) {
1337 for (i = 0; i < aac->max_msix; i++)
1338 free_irq(aac->msixentry[i].vector,
1339 &(aac->aac_msix[i]));
1340 } else {
1341 free_irq(aac->pdev->irq, &(aac->aac_msix[0]));
1342 }
1343 } else {
1344 free_irq(aac->pdev->irq, aac);
1345 }
1346 if (aac->msi)
1347 pci_disable_msi(aac->pdev);
1348 else if (aac->max_msix > 1)
1349 pci_disable_msix(aac->pdev);
1350
1351}
1352
1353static int aac_acquire_resources(struct aac_dev *dev)
1354{
1355 int i, j;
1356 int instance = dev->id;
1357 const char *name = dev->name;
1358 unsigned long status;
1359 /*
1360 * First clear out all interrupts. Then enable the one's that we
1361 * can handle.
1362 */
1363 while (!((status = src_readl(dev, MUnit.OMR)) & KERNEL_UP_AND_RUNNING)
1364 || status == 0xffffffff)
1365 msleep(20);
1366
1367 aac_adapter_disable_int(dev);
1368 aac_adapter_enable_int(dev);
1369
1370
1371 if ((dev->pdev->device == PMC_DEVICE_S7 ||
1372 dev->pdev->device == PMC_DEVICE_S8 ||
1373 dev->pdev->device == PMC_DEVICE_S9))
1374 aac_define_int_mode(dev);
1375
1376 if (dev->msi_enabled)
1377 aac_src_access_devreg(dev, AAC_ENABLE_MSIX);
1378
1379 if (!dev->sync_mode && dev->msi_enabled && dev->max_msix > 1) {
1380 for (i = 0; i < dev->max_msix; i++) {
1381 dev->aac_msix[i].vector_no = i;
1382 dev->aac_msix[i].dev = dev;
1383
1384 if (request_irq(dev->msixentry[i].vector,
1385 dev->a_ops.adapter_intr,
1386 0, "aacraid", &(dev->aac_msix[i]))) {
1387 printk(KERN_ERR "%s%d: Failed to register IRQ for vector %d.\n",
1388 name, instance, i);
1389 for (j = 0 ; j < i ; j++)
1390 free_irq(dev->msixentry[j].vector,
1391 &(dev->aac_msix[j]));
1392 pci_disable_msix(dev->pdev);
1393 goto error_iounmap;
1394 }
1395 }
1396 } else {
1397 dev->aac_msix[0].vector_no = 0;
1398 dev->aac_msix[0].dev = dev;
1399
1400 if (request_irq(dev->pdev->irq, dev->a_ops.adapter_intr,
1401 IRQF_SHARED, "aacraid",
1402 &(dev->aac_msix[0])) < 0) {
1403 if (dev->msi)
1404 pci_disable_msi(dev->pdev);
1405 printk(KERN_ERR "%s%d: Interrupt unavailable.\n",
1406 name, instance);
1407 goto error_iounmap;
1408 }
1409 }
1410
1411 aac_adapter_enable_int(dev);
1412
ecc479e0
RAR
1413 /*max msix may change after EEH
1414 * Re-assign vectors to fibs
1415 */
1416 aac_fib_vector_assign(dev);
1417
1418 if (!dev->sync_mode) {
1419 /* After EEH recovery or suspend resume, max_msix count
1420 * may change, therfore updating in init as well.
1421 */
de665f28 1422 aac_adapter_start(dev);
ecc479e0
RAR
1423 dev->init->Sa_MSIXVectors = cpu_to_le32(dev->max_msix);
1424 }
de665f28
MR
1425 return 0;
1426
1427error_iounmap:
1428 return -1;
1429
1430}
5c63f7f7
RAR
1431
1432#if (defined(CONFIG_PM))
de665f28
MR
1433static int aac_suspend(struct pci_dev *pdev, pm_message_t state)
1434{
1435
1436 struct Scsi_Host *shost = pci_get_drvdata(pdev);
1437 struct aac_dev *aac = (struct aac_dev *)shost->hostdata;
1438
1439 scsi_block_requests(shost);
1440 aac_send_shutdown(aac);
1441
1442 aac_release_resources(aac);
1443
1444 pci_set_drvdata(pdev, shost);
1445 pci_save_state(pdev);
1446 pci_disable_device(pdev);
1447 pci_set_power_state(pdev, pci_choose_state(pdev, state));
1448
1449 return 0;
1450}
1451
1452static int aac_resume(struct pci_dev *pdev)
1453{
1454 struct Scsi_Host *shost = pci_get_drvdata(pdev);
1455 struct aac_dev *aac = (struct aac_dev *)shost->hostdata;
1456 int r;
1457
1458 pci_set_power_state(pdev, PCI_D0);
1459 pci_enable_wake(pdev, PCI_D0, 0);
1460 pci_restore_state(pdev);
1461 r = pci_enable_device(pdev);
1462
1463 if (r)
1464 goto fail_device;
1465
1466 pci_set_master(pdev);
1467 if (aac_acquire_resources(aac))
1468 goto fail_device;
e728f8e3
MR
1469 /*
1470 * reset this flag to unblock ioctl() as it was set at
1471 * aac_send_shutdown() to block ioctls from upperlayer
1472 */
1473 aac->adapter_shutdown = 0;
de665f28
MR
1474 scsi_unblock_requests(shost);
1475
1476 return 0;
1477
1478fail_device:
1479 printk(KERN_INFO "%s%d: resume failed.\n", aac->name, aac->id);
1480 scsi_host_put(shost);
1481 pci_disable_device(pdev);
1482 return -ENODEV;
1483}
1484#endif
1485
bd1aac80
MH
1486static void aac_shutdown(struct pci_dev *dev)
1487{
1488 struct Scsi_Host *shost = pci_get_drvdata(dev);
94774a3a 1489 scsi_block_requests(shost);
c835e372 1490 __aac_shutdown((struct aac_dev *)shost->hostdata);
bd1aac80
MH
1491}
1492
6f039790 1493static void aac_remove_one(struct pci_dev *pdev)
1da177e4
LT
1494{
1495 struct Scsi_Host *shost = pci_get_drvdata(pdev);
1496 struct aac_dev *aac = (struct aac_dev *)shost->hostdata;
1497
1498 scsi_remove_host(shost);
1499
94774a3a 1500 __aac_shutdown(aac);
bfb35aa8 1501 aac_fib_map_free(aac);
1da177e4
LT
1502 pci_free_consistent(aac->pdev, aac->comm_size, aac->comm_addr,
1503 aac->comm_phys);
1504 kfree(aac->queues);
1505
76a7f8fd 1506 aac_adapter_ioremap(aac, 0);
8ce3eca4 1507
1da177e4 1508 kfree(aac->fibs);
8e0c5ebd 1509 kfree(aac->fsa_dev);
8ce3eca4 1510
1da177e4
LT
1511 list_del(&aac->entry);
1512 scsi_host_put(shost);
1513 pci_disable_device(pdev);
90ee3466
MH
1514 if (list_empty(&aac_devices)) {
1515 unregister_chrdev(aac_cfg_major, "aac");
1516 aac_cfg_major = -1;
1517 }
1da177e4
LT
1518}
1519
5c63f7f7
RAR
1520static void aac_flush_ios(struct aac_dev *aac)
1521{
1522 int i;
1523 struct scsi_cmnd *cmd;
1524
1525 for (i = 0; i < aac->scsi_host_ptr->can_queue; i++) {
1526 cmd = (struct scsi_cmnd *)aac->fibs[i].callback_data;
1527 if (cmd && (cmd->SCp.phase == AAC_OWNER_FIRMWARE)) {
1528 scsi_dma_unmap(cmd);
1529
1530 if (aac->handle_pci_error)
1531 cmd->result = DID_NO_CONNECT << 16;
1532 else
1533 cmd->result = DID_RESET << 16;
1534
1535 cmd->scsi_done(cmd);
1536 }
1537 }
1538}
1539
1540static pci_ers_result_t aac_pci_error_detected(struct pci_dev *pdev,
1541 enum pci_channel_state error)
1542{
1543 struct Scsi_Host *shost = pci_get_drvdata(pdev);
1544 struct aac_dev *aac = shost_priv(shost);
1545
1546 dev_err(&pdev->dev, "aacraid: PCI error detected %x\n", error);
1547
1548 switch (error) {
1549 case pci_channel_io_normal:
1550 return PCI_ERS_RESULT_CAN_RECOVER;
1551 case pci_channel_io_frozen:
1552 aac->handle_pci_error = 1;
1553
1554 scsi_block_requests(aac->scsi_host_ptr);
1555 aac_flush_ios(aac);
1556 aac_release_resources(aac);
1557
1558 pci_disable_pcie_error_reporting(pdev);
1559 aac_adapter_ioremap(aac, 0);
1560
1561 return PCI_ERS_RESULT_NEED_RESET;
1562 case pci_channel_io_perm_failure:
1563 aac->handle_pci_error = 1;
1564
1565 aac_flush_ios(aac);
1566 return PCI_ERS_RESULT_DISCONNECT;
1567 }
1568
1569 return PCI_ERS_RESULT_NEED_RESET;
1570}
1571
1572static pci_ers_result_t aac_pci_mmio_enabled(struct pci_dev *pdev)
1573{
1574 dev_err(&pdev->dev, "aacraid: PCI error - mmio enabled\n");
1575 return PCI_ERS_RESULT_NEED_RESET;
1576}
1577
1578static pci_ers_result_t aac_pci_slot_reset(struct pci_dev *pdev)
1579{
1580 dev_err(&pdev->dev, "aacraid: PCI error - slot reset\n");
1581 pci_restore_state(pdev);
1582 if (pci_enable_device(pdev)) {
1583 dev_warn(&pdev->dev,
1584 "aacraid: failed to enable slave\n");
1585 goto fail_device;
1586 }
1587
1588 pci_set_master(pdev);
1589
1590 if (pci_enable_device_mem(pdev)) {
1591 dev_err(&pdev->dev, "pci_enable_device_mem failed\n");
1592 goto fail_device;
1593 }
1594
1595 return PCI_ERS_RESULT_RECOVERED;
1596
1597fail_device:
1598 dev_err(&pdev->dev, "aacraid: PCI error - slot reset failed\n");
1599 return PCI_ERS_RESULT_DISCONNECT;
1600}
1601
1602
1603static void aac_pci_resume(struct pci_dev *pdev)
1604{
1605 struct Scsi_Host *shost = pci_get_drvdata(pdev);
1606 struct scsi_device *sdev = NULL;
1607 struct aac_dev *aac = (struct aac_dev *)shost_priv(shost);
1608
1609 pci_cleanup_aer_uncorrect_error_status(pdev);
1610
1611 if (aac_adapter_ioremap(aac, aac->base_size)) {
1612
1613 dev_err(&pdev->dev, "aacraid: ioremap failed\n");
1614 /* remap failed, go back ... */
1615 aac->comm_interface = AAC_COMM_PRODUCER;
1616 if (aac_adapter_ioremap(aac, AAC_MIN_FOOTPRINT_SIZE)) {
1617 dev_warn(&pdev->dev,
1618 "aacraid: unable to map adapter.\n");
1619
1620 return;
1621 }
1622 }
1623
1624 msleep(10000);
1625
1626 aac_acquire_resources(aac);
1627
1628 /*
1629 * reset this flag to unblock ioctl() as it was set
1630 * at aac_send_shutdown() to block ioctls from upperlayer
1631 */
1632 aac->adapter_shutdown = 0;
1633 aac->handle_pci_error = 0;
1634
1635 shost_for_each_device(sdev, shost)
1636 if (sdev->sdev_state == SDEV_OFFLINE)
1637 sdev->sdev_state = SDEV_RUNNING;
1638 scsi_unblock_requests(aac->scsi_host_ptr);
1639 scsi_scan_host(aac->scsi_host_ptr);
1640 pci_save_state(pdev);
1641
1642 dev_err(&pdev->dev, "aacraid: PCI error - resume\n");
1643}
1644
1645static struct pci_error_handlers aac_pci_err_handler = {
1646 .error_detected = aac_pci_error_detected,
1647 .mmio_enabled = aac_pci_mmio_enabled,
1648 .slot_reset = aac_pci_slot_reset,
1649 .resume = aac_pci_resume,
1650};
1651
1da177e4
LT
1652static struct pci_driver aac_pci_driver = {
1653 .name = AAC_DRIVERNAME,
1654 .id_table = aac_pci_tbl,
1655 .probe = aac_probe_one,
6f039790 1656 .remove = aac_remove_one,
de665f28
MR
1657#if (defined(CONFIG_PM))
1658 .suspend = aac_suspend,
1659 .resume = aac_resume,
1660#endif
8ef22247 1661 .shutdown = aac_shutdown,
5c63f7f7 1662 .err_handler = &aac_pci_err_handler,
1da177e4
LT
1663};
1664
1665static int __init aac_init(void)
1666{
1667 int error;
8ce3eca4 1668
29c97684 1669 printk(KERN_INFO "Adaptec %s driver %s\n",
c7f47602 1670 AAC_DRIVERNAME, aac_driver_version);
1da177e4 1671
08efb7b6
MH
1672 error = pci_register_driver(&aac_pci_driver);
1673 if (error < 0)
1da177e4
LT
1674 return error;
1675
1676 aac_cfg_major = register_chrdev( 0, "aac", &aac_cfg_fops);
1677 if (aac_cfg_major < 0) {
1678 printk(KERN_WARNING
8ef22247 1679 "aacraid: unable to register \"aac\" device.\n");
1da177e4 1680 }
bd1aac80 1681
1da177e4
LT
1682 return 0;
1683}
1684
1685static void __exit aac_exit(void)
1686{
53926274
MH
1687 if (aac_cfg_major > -1)
1688 unregister_chrdev(aac_cfg_major, "aac");
1da177e4
LT
1689 pci_unregister_driver(&aac_pci_driver);
1690}
1691
1692module_init(aac_init);
1693module_exit(aac_exit);