linit.c 57.3 KB
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/*
 *	Adaptec AAC series RAID controller driver
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 *	(c) Copyright 2001 Red Hat Inc.
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 *
 * based on the old aacraid driver that is..
 * Adaptec aacraid device driver for Linux.
 *
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 * Copyright (c) 2000-2010 Adaptec, Inc.
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 *               2010-2015 PMC-Sierra, Inc. (aacraid@pmc-sierra.com)
 *		 2016-2017 Microsemi Corp. (aacraid@microsemi.com)
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 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2, or (at your option)
 * any later version.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; see the file COPYING.  If not, write to
 * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
 *
 * Module Name:
 *   linit.c
 *
 * Abstract: Linux Driver entry module for Adaptec RAID Array Controller
 */


#include <linux/compat.h>
#include <linux/blkdev.h>
#include <linux/completion.h>
#include <linux/init.h>
#include <linux/interrupt.h>
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/moduleparam.h>
#include <linux/pci.h>
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#include <linux/aer.h>
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#include <linux/pci-aspm.h>
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#include <linux/slab.h>
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#include <linux/mutex.h>
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#include <linux/spinlock.h>
#include <linux/syscalls.h>
#include <linux/delay.h>
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#include <linux/kthread.h>
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#include <scsi/scsi.h>
#include <scsi/scsi_cmnd.h>
#include <scsi/scsi_device.h>
#include <scsi/scsi_host.h>
#include <scsi/scsi_tcq.h>
#include <scsi/scsicam.h>
#include <scsi/scsi_eh.h>

#include "aacraid.h"

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#define AAC_DRIVER_VERSION		"1.2.1"
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#ifndef AAC_DRIVER_BRANCH
#define AAC_DRIVER_BRANCH		""
#endif
#define AAC_DRIVERNAME			"aacraid"

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#ifdef AAC_DRIVER_BUILD
#define _str(x) #x
#define str(x) _str(x)
#define AAC_DRIVER_FULL_VERSION	AAC_DRIVER_VERSION "[" str(AAC_DRIVER_BUILD) "]" AAC_DRIVER_BRANCH
#else
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#define AAC_DRIVER_FULL_VERSION	AAC_DRIVER_VERSION AAC_DRIVER_BRANCH
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#endif
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MODULE_AUTHOR("Red Hat Inc and Adaptec");
MODULE_DESCRIPTION("Dell PERC2, 2/Si, 3/Si, 3/Di, "
		   "Adaptec Advanced Raid Products, "
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		   "HP NetRAID-4M, IBM ServeRAID & ICP SCSI driver");
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MODULE_LICENSE("GPL");
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MODULE_VERSION(AAC_DRIVER_FULL_VERSION);
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static DEFINE_MUTEX(aac_mutex);
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static LIST_HEAD(aac_devices);
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static int aac_cfg_major = AAC_CHARDEV_UNREGISTERED;
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char aac_driver_version[] = AAC_DRIVER_FULL_VERSION;
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/*
 * Because of the way Linux names scsi devices, the order in this table has
 * become important.  Check for on-board Raid first, add-in cards second.
 *
 * Note: The last field is used to index into aac_drivers below.
 */
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static const struct pci_device_id aac_pci_tbl[] = {
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	{ 0x1028, 0x0001, 0x1028, 0x0001, 0, 0, 0 }, /* PERC 2/Si (Iguana/PERC2Si) */
	{ 0x1028, 0x0002, 0x1028, 0x0002, 0, 0, 1 }, /* PERC 3/Di (Opal/PERC3Di) */
	{ 0x1028, 0x0003, 0x1028, 0x0003, 0, 0, 2 }, /* PERC 3/Si (SlimFast/PERC3Si */
	{ 0x1028, 0x0004, 0x1028, 0x00d0, 0, 0, 3 }, /* PERC 3/Di (Iguana FlipChip/PERC3DiF */
	{ 0x1028, 0x0002, 0x1028, 0x00d1, 0, 0, 4 }, /* PERC 3/Di (Viper/PERC3DiV) */
	{ 0x1028, 0x0002, 0x1028, 0x00d9, 0, 0, 5 }, /* PERC 3/Di (Lexus/PERC3DiL) */
	{ 0x1028, 0x000a, 0x1028, 0x0106, 0, 0, 6 }, /* PERC 3/Di (Jaguar/PERC3DiJ) */
	{ 0x1028, 0x000a, 0x1028, 0x011b, 0, 0, 7 }, /* PERC 3/Di (Dagger/PERC3DiD) */
	{ 0x1028, 0x000a, 0x1028, 0x0121, 0, 0, 8 }, /* PERC 3/Di (Boxster/PERC3DiB) */
	{ 0x9005, 0x0283, 0x9005, 0x0283, 0, 0, 9 }, /* catapult */
	{ 0x9005, 0x0284, 0x9005, 0x0284, 0, 0, 10 }, /* tomcat */
	{ 0x9005, 0x0285, 0x9005, 0x0286, 0, 0, 11 }, /* Adaptec 2120S (Crusader) */
	{ 0x9005, 0x0285, 0x9005, 0x0285, 0, 0, 12 }, /* Adaptec 2200S (Vulcan) */
	{ 0x9005, 0x0285, 0x9005, 0x0287, 0, 0, 13 }, /* Adaptec 2200S (Vulcan-2m) */
	{ 0x9005, 0x0285, 0x17aa, 0x0286, 0, 0, 14 }, /* Legend S220 (Legend Crusader) */
	{ 0x9005, 0x0285, 0x17aa, 0x0287, 0, 0, 15 }, /* Legend S230 (Legend Vulcan) */

	{ 0x9005, 0x0285, 0x9005, 0x0288, 0, 0, 16 }, /* Adaptec 3230S (Harrier) */
	{ 0x9005, 0x0285, 0x9005, 0x0289, 0, 0, 17 }, /* Adaptec 3240S (Tornado) */
	{ 0x9005, 0x0285, 0x9005, 0x028a, 0, 0, 18 }, /* ASR-2020ZCR SCSI PCI-X ZCR (Skyhawk) */
	{ 0x9005, 0x0285, 0x9005, 0x028b, 0, 0, 19 }, /* ASR-2025ZCR SCSI SO-DIMM PCI-X ZCR (Terminator) */
	{ 0x9005, 0x0286, 0x9005, 0x028c, 0, 0, 20 }, /* ASR-2230S + ASR-2230SLP PCI-X (Lancer) */
	{ 0x9005, 0x0286, 0x9005, 0x028d, 0, 0, 21 }, /* ASR-2130S (Lancer) */
	{ 0x9005, 0x0286, 0x9005, 0x029b, 0, 0, 22 }, /* AAR-2820SA (Intruder) */
	{ 0x9005, 0x0286, 0x9005, 0x029c, 0, 0, 23 }, /* AAR-2620SA (Intruder) */
	{ 0x9005, 0x0286, 0x9005, 0x029d, 0, 0, 24 }, /* AAR-2420SA (Intruder) */
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	{ 0x9005, 0x0286, 0x9005, 0x029e, 0, 0, 25 }, /* ICP9024RO (Lancer) */
	{ 0x9005, 0x0286, 0x9005, 0x029f, 0, 0, 26 }, /* ICP9014RO (Lancer) */
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	{ 0x9005, 0x0286, 0x9005, 0x02a0, 0, 0, 27 }, /* ICP9047MA (Lancer) */
	{ 0x9005, 0x0286, 0x9005, 0x02a1, 0, 0, 28 }, /* ICP9087MA (Lancer) */
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	{ 0x9005, 0x0286, 0x9005, 0x02a3, 0, 0, 29 }, /* ICP5445AU (Hurricane44) */
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	{ 0x9005, 0x0285, 0x9005, 0x02a4, 0, 0, 30 }, /* ICP9085LI (Marauder-X) */
	{ 0x9005, 0x0285, 0x9005, 0x02a5, 0, 0, 31 }, /* ICP5085BR (Marauder-E) */
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	{ 0x9005, 0x0286, 0x9005, 0x02a6, 0, 0, 32 }, /* ICP9067MA (Intruder-6) */
	{ 0x9005, 0x0287, 0x9005, 0x0800, 0, 0, 33 }, /* Themisto Jupiter Platform */
	{ 0x9005, 0x0200, 0x9005, 0x0200, 0, 0, 33 }, /* Themisto Jupiter Platform */
	{ 0x9005, 0x0286, 0x9005, 0x0800, 0, 0, 34 }, /* Callisto Jupiter Platform */
	{ 0x9005, 0x0285, 0x9005, 0x028e, 0, 0, 35 }, /* ASR-2020SA SATA PCI-X ZCR (Skyhawk) */
	{ 0x9005, 0x0285, 0x9005, 0x028f, 0, 0, 36 }, /* ASR-2025SA SATA SO-DIMM PCI-X ZCR (Terminator) */
	{ 0x9005, 0x0285, 0x9005, 0x0290, 0, 0, 37 }, /* AAR-2410SA PCI SATA 4ch (Jaguar II) */
	{ 0x9005, 0x0285, 0x1028, 0x0291, 0, 0, 38 }, /* CERC SATA RAID 2 PCI SATA 6ch (DellCorsair) */
	{ 0x9005, 0x0285, 0x9005, 0x0292, 0, 0, 39 }, /* AAR-2810SA PCI SATA 8ch (Corsair-8) */
	{ 0x9005, 0x0285, 0x9005, 0x0293, 0, 0, 40 }, /* AAR-21610SA PCI SATA 16ch (Corsair-16) */
	{ 0x9005, 0x0285, 0x9005, 0x0294, 0, 0, 41 }, /* ESD SO-DIMM PCI-X SATA ZCR (Prowler) */
	{ 0x9005, 0x0285, 0x103C, 0x3227, 0, 0, 42 }, /* AAR-2610SA PCI SATA 6ch */
	{ 0x9005, 0x0285, 0x9005, 0x0296, 0, 0, 43 }, /* ASR-2240S (SabreExpress) */
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	{ 0x9005, 0x0285, 0x9005, 0x0297, 0, 0, 44 }, /* ASR-4005 */
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	{ 0x9005, 0x0285, 0x1014, 0x02F2, 0, 0, 45 }, /* IBM 8i (AvonPark) */
	{ 0x9005, 0x0285, 0x1014, 0x0312, 0, 0, 45 }, /* IBM 8i (AvonPark Lite) */
	{ 0x9005, 0x0286, 0x1014, 0x9580, 0, 0, 46 }, /* IBM 8k/8k-l8 (Aurora) */
	{ 0x9005, 0x0286, 0x1014, 0x9540, 0, 0, 47 }, /* IBM 8k/8k-l4 (Aurora Lite) */
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	{ 0x9005, 0x0285, 0x9005, 0x0298, 0, 0, 48 }, /* ASR-4000 (BlackBird) */
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	{ 0x9005, 0x0285, 0x9005, 0x0299, 0, 0, 49 }, /* ASR-4800SAS (Marauder-X) */
	{ 0x9005, 0x0285, 0x9005, 0x029a, 0, 0, 50 }, /* ASR-4805SAS (Marauder-E) */
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	{ 0x9005, 0x0286, 0x9005, 0x02a2, 0, 0, 51 }, /* ASR-3800 (Hurricane44) */
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	{ 0x9005, 0x0285, 0x1028, 0x0287, 0, 0, 52 }, /* Perc 320/DC*/
	{ 0x1011, 0x0046, 0x9005, 0x0365, 0, 0, 53 }, /* Adaptec 5400S (Mustang)*/
	{ 0x1011, 0x0046, 0x9005, 0x0364, 0, 0, 54 }, /* Adaptec 5400S (Mustang)*/
	{ 0x1011, 0x0046, 0x9005, 0x1364, 0, 0, 55 }, /* Dell PERC2/QC */
	{ 0x1011, 0x0046, 0x103c, 0x10c2, 0, 0, 56 }, /* HP NetRAID-4M */
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	{ 0x9005, 0x0285, 0x1028, PCI_ANY_ID, 0, 0, 57 }, /* Dell Catchall */
	{ 0x9005, 0x0285, 0x17aa, PCI_ANY_ID, 0, 0, 58 }, /* Legend Catchall */
	{ 0x9005, 0x0285, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 59 }, /* Adaptec Catch All */
	{ 0x9005, 0x0286, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 60 }, /* Adaptec Rocket Catch All */
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	{ 0x9005, 0x0288, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 61 }, /* Adaptec NEMER/ARK Catch All */
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	{ 0x9005, 0x028b, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 62 }, /* Adaptec PMC Series 6 (Tupelo) */
	{ 0x9005, 0x028c, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 63 }, /* Adaptec PMC Series 7 (Denali) */
	{ 0x9005, 0x028d, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 64 }, /* Adaptec PMC Series 8 */
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	{ 0,}
};
MODULE_DEVICE_TABLE(pci, aac_pci_tbl);

/*
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 * dmb - For now we add the number of channels to this structure.
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 * In the future we should add a fib that reports the number of channels
 * for the card.  At that time we can remove the channels from here
 */
static struct aac_driver_ident aac_drivers[] = {
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	{ aac_rx_init, "percraid", "DELL    ", "PERCRAID        ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 2/Si (Iguana/PERC2Si) */
	{ aac_rx_init, "percraid", "DELL    ", "PERCRAID        ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Opal/PERC3Di) */
	{ aac_rx_init, "percraid", "DELL    ", "PERCRAID        ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Si (SlimFast/PERC3Si */
	{ aac_rx_init, "percraid", "DELL    ", "PERCRAID        ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Iguana FlipChip/PERC3DiF */
	{ aac_rx_init, "percraid", "DELL    ", "PERCRAID        ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Viper/PERC3DiV) */
	{ aac_rx_init, "percraid", "DELL    ", "PERCRAID        ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Lexus/PERC3DiL) */
	{ aac_rx_init, "percraid", "DELL    ", "PERCRAID        ", 1, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Jaguar/PERC3DiJ) */
	{ aac_rx_init, "percraid", "DELL    ", "PERCRAID        ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Dagger/PERC3DiD) */
	{ aac_rx_init, "percraid", "DELL    ", "PERCRAID        ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* PERC 3/Di (Boxster/PERC3DiB) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "catapult        ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* catapult */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "tomcat          ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* tomcat */
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	{ aac_rx_init, "aacraid",  "ADAPTEC ", "Adaptec 2120S   ", 1, AAC_QUIRK_31BIT | AAC_QUIRK_34SG },		      /* Adaptec 2120S (Crusader) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "Adaptec 2200S   ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG },		      /* Adaptec 2200S (Vulcan) */
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	{ aac_rx_init, "aacraid",  "ADAPTEC ", "Adaptec 2200S   ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Adaptec 2200S (Vulcan-2m) */
	{ aac_rx_init, "aacraid",  "Legend  ", "Legend S220     ", 1, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Legend S220 (Legend Crusader) */
	{ aac_rx_init, "aacraid",  "Legend  ", "Legend S230     ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Legend S230 (Legend Vulcan) */
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	{ aac_rx_init, "aacraid",  "ADAPTEC ", "Adaptec 3230S   ", 2 }, /* Adaptec 3230S (Harrier) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "Adaptec 3240S   ", 2 }, /* Adaptec 3240S (Tornado) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-2020ZCR     ", 2 }, /* ASR-2020ZCR SCSI PCI-X ZCR (Skyhawk) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-2025ZCR     ", 2 }, /* ASR-2025ZCR SCSI SO-DIMM PCI-X ZCR (Terminator) */
	{ aac_rkt_init, "aacraid",  "ADAPTEC ", "ASR-2230S PCI-X ", 2 }, /* ASR-2230S + ASR-2230SLP PCI-X (Lancer) */
	{ aac_rkt_init, "aacraid",  "ADAPTEC ", "ASR-2130S PCI-X ", 1 }, /* ASR-2130S (Lancer) */
	{ aac_rkt_init, "aacraid",  "ADAPTEC ", "AAR-2820SA      ", 1 }, /* AAR-2820SA (Intruder) */
	{ aac_rkt_init, "aacraid",  "ADAPTEC ", "AAR-2620SA      ", 1 }, /* AAR-2620SA (Intruder) */
	{ aac_rkt_init, "aacraid",  "ADAPTEC ", "AAR-2420SA      ", 1 }, /* AAR-2420SA (Intruder) */
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	{ aac_rkt_init, "aacraid",  "ICP     ", "ICP9024RO       ", 2 }, /* ICP9024RO (Lancer) */
	{ aac_rkt_init, "aacraid",  "ICP     ", "ICP9014RO       ", 1 }, /* ICP9014RO (Lancer) */
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	{ aac_rkt_init, "aacraid",  "ICP     ", "ICP9047MA       ", 1 }, /* ICP9047MA (Lancer) */
	{ aac_rkt_init, "aacraid",  "ICP     ", "ICP9087MA       ", 1 }, /* ICP9087MA (Lancer) */
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	{ aac_rkt_init, "aacraid",  "ICP     ", "ICP5445AU       ", 1 }, /* ICP5445AU (Hurricane44) */
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	{ aac_rx_init, "aacraid",  "ICP     ", "ICP9085LI       ", 1 }, /* ICP9085LI (Marauder-X) */
	{ aac_rx_init, "aacraid",  "ICP     ", "ICP5085BR       ", 1 }, /* ICP5085BR (Marauder-E) */
	{ aac_rkt_init, "aacraid",  "ICP     ", "ICP9067MA       ", 1 }, /* ICP9067MA (Intruder-6) */
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	{ NULL        , "aacraid",  "ADAPTEC ", "Themisto        ", 0, AAC_QUIRK_SLAVE }, /* Jupiter Platform */
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	{ aac_rkt_init, "aacraid",  "ADAPTEC ", "Callisto        ", 2, AAC_QUIRK_MASTER }, /* Jupiter Platform */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-2020SA       ", 1 }, /* ASR-2020SA SATA PCI-X ZCR (Skyhawk) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-2025SA       ", 1 }, /* ASR-2025SA SATA SO-DIMM PCI-X ZCR (Terminator) */
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	{ aac_rx_init, "aacraid",  "ADAPTEC ", "AAR-2410SA SATA ", 1, AAC_QUIRK_17SG }, /* AAR-2410SA PCI SATA 4ch (Jaguar II) */
	{ aac_rx_init, "aacraid",  "DELL    ", "CERC SR2        ", 1, AAC_QUIRK_17SG }, /* CERC SATA RAID 2 PCI SATA 6ch (DellCorsair) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "AAR-2810SA SATA ", 1, AAC_QUIRK_17SG }, /* AAR-2810SA PCI SATA 8ch (Corsair-8) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "AAR-21610SA SATA", 1, AAC_QUIRK_17SG }, /* AAR-21610SA PCI SATA 16ch (Corsair-16) */
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	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-2026ZCR     ", 1 }, /* ESD SO-DIMM PCI-X SATA ZCR (Prowler) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "AAR-2610SA      ", 1 }, /* SATA 6Ch (Bearcat) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-2240S       ", 1 }, /* ASR-2240S (SabreExpress) */
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	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-4005        ", 1 }, /* ASR-4005 */
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	{ aac_rx_init, "ServeRAID","IBM     ", "ServeRAID 8i    ", 1 }, /* IBM 8i (AvonPark) */
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	{ aac_rkt_init, "ServeRAID","IBM     ", "ServeRAID 8k-l8 ", 1 }, /* IBM 8k/8k-l8 (Aurora) */
	{ aac_rkt_init, "ServeRAID","IBM     ", "ServeRAID 8k-l4 ", 1 }, /* IBM 8k/8k-l4 (Aurora Lite) */
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	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-4000        ", 1 }, /* ASR-4000 (BlackBird & AvonPark) */
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	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-4800SAS     ", 1 }, /* ASR-4800SAS (Marauder-X) */
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "ASR-4805SAS     ", 1 }, /* ASR-4805SAS (Marauder-E) */
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	{ aac_rkt_init, "aacraid",  "ADAPTEC ", "ASR-3800        ", 1 }, /* ASR-3800 (Hurricane44) */
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	{ aac_rx_init, "percraid", "DELL    ", "PERC 320/DC     ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG }, /* Perc 320/DC*/
	{ aac_sa_init, "aacraid",  "ADAPTEC ", "Adaptec 5400S   ", 4, AAC_QUIRK_34SG }, /* Adaptec 5400S (Mustang)*/
	{ aac_sa_init, "aacraid",  "ADAPTEC ", "AAC-364         ", 4, AAC_QUIRK_34SG }, /* Adaptec 5400S (Mustang)*/
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	{ aac_sa_init, "percraid", "DELL    ", "PERCRAID        ", 4, AAC_QUIRK_34SG }, /* Dell PERC2/QC */
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	{ aac_sa_init, "hpnraid",  "HP      ", "NetRAID         ", 4, AAC_QUIRK_34SG }, /* HP NetRAID-4M */

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	{ aac_rx_init, "aacraid",  "DELL    ", "RAID            ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Dell Catchall */
	{ aac_rx_init, "aacraid",  "Legend  ", "RAID            ", 2, AAC_QUIRK_31BIT | AAC_QUIRK_34SG | AAC_QUIRK_SCSI_32 }, /* Legend Catchall */
236
	{ aac_rx_init, "aacraid",  "ADAPTEC ", "RAID            ", 2 }, /* Adaptec Catch All */
237
	{ aac_rkt_init, "aacraid", "ADAPTEC ", "RAID            ", 2 }, /* Adaptec Rocket Catch All */
238
	{ aac_nark_init, "aacraid", "ADAPTEC ", "RAID           ", 2 }, /* Adaptec NEMER/ARK Catch All */
239 240 241
	{ aac_src_init, "aacraid", "ADAPTEC ", "RAID            ", 2, AAC_QUIRK_SRC }, /* Adaptec PMC Series 6 (Tupelo) */
	{ aac_srcv_init, "aacraid", "ADAPTEC ", "RAID            ", 2, AAC_QUIRK_SRC }, /* Adaptec PMC Series 7 (Denali) */
	{ aac_srcv_init, "aacraid", "ADAPTEC ", "RAID            ", 2, AAC_QUIRK_SRC }, /* Adaptec PMC Series 8 */
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};

/**
 *	aac_queuecommand	-	queue a SCSI command
 *	@cmd:		SCSI command to queue
 *	@done:		Function to call on command completion
 *
 *	Queues a command for execution by the associated Host Adapter.
 *
 *	TODO: unify with aac_scsi_cmd().
252
 */
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254 255
static int aac_queuecommand(struct Scsi_Host *shost,
			    struct scsi_cmnd *cmd)
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{
257
	int r = 0;
258
	cmd->SCp.phase = AAC_OWNER_LOWLEVEL;
259 260
	r = (aac_scsi_cmd(cmd) ? FAILED : 0);
	return r;
261
}
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/**
 *	aac_info		-	Returns the host adapter name
 *	@shost:		Scsi host to report on
 *
 *	Returns a static string describing the device in question
 */

270
static const char *aac_info(struct Scsi_Host *shost)
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{
	struct aac_dev *dev = (struct aac_dev *)shost->hostdata;
	return aac_drivers[dev->cardtype].name;
}

/**
 *	aac_get_driver_ident
278
 *	@devtype: index into lookup table
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 *
280
 *	Returns a pointer to the entry in the driver lookup table.
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 */

struct aac_driver_ident* aac_get_driver_ident(int devtype)
{
	return &aac_drivers[devtype];
}

/**
 *	aac_biosparm	-	return BIOS parameters for disk
 *	@sdev: The scsi device corresponding to the disk
 *	@bdev: the block device corresponding to the disk
 *	@capacity: the sector capacity of the disk
 *	@geom: geometry block to fill in
 *
295 296 297
 *	Return the Heads/Sectors/Cylinders BIOS Disk Parameters for Disk.
 *	The default disk geometry is 64 heads, 32 sectors, and the appropriate
 *	number of cylinders so as not to exceed drive capacity.  In order for
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 *	disks equal to or larger than 1 GB to be addressable by the BIOS
299 300 301 302 303 304 305 306
 *	without exceeding the BIOS limitation of 1024 cylinders, Extended
 *	Translation should be enabled.   With Extended Translation enabled,
 *	drives between 1 GB inclusive and 2 GB exclusive are given a disk
 *	geometry of 128 heads and 32 sectors, and drives above 2 GB inclusive
 *	are given a disk geometry of 255 heads and 63 sectors.  However, if
 *	the BIOS detects that the Extended Translation setting does not match
 *	the geometry in the partition table, then the translation inferred
 *	from the partition table will be used by the BIOS, and a warning may
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 *	be displayed.
 */
309

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static int aac_biosparm(struct scsi_device *sdev, struct block_device *bdev,
			sector_t capacity, int *geom)
{
	struct diskparm *param = (struct diskparm *)geom;
	unsigned char *buf;

	dprintk((KERN_DEBUG "aac_biosparm.\n"));

	/*
	 *	Assuming extended translation is enabled - #REVISIT#
	 */
	if (capacity >= 2 * 1024 * 1024) { /* 1 GB in 512 byte sectors */
		if(capacity >= 4 * 1024 * 1024) { /* 2 GB in 512 byte sectors */
			param->heads = 255;
			param->sectors = 63;
		} else {
			param->heads = 128;
			param->sectors = 32;
		}
	} else {
		param->heads = 64;
		param->sectors = 32;
	}

	param->cylinders = cap_to_cyls(capacity, param->heads * param->sectors);

336
	/*
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	 *	Read the first 1024 bytes from the disk device, if the boot
	 *	sector partition table is valid, search for a partition table
339
	 *	entry whose end_head matches one of the standard geometry
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	 *	translations ( 64/32, 128/32, 255/63 ).
	 */
	buf = scsi_bios_ptable(bdev);
343 344
	if (!buf)
		return 0;
345
	if(*(__le16 *)(buf + 0x40) == cpu_to_le16(0xaa55)) {
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		struct partition *first = (struct partition * )buf;
		struct partition *entry = first;
		int saved_cylinders = param->cylinders;
		int num;
		unsigned char end_head, end_sec;

		for(num = 0; num < 4; num++) {
			end_head = entry->end_head;
			end_sec = entry->end_sector & 0x3f;

			if(end_head == 63) {
				param->heads = 64;
				param->sectors = 32;
				break;
			} else if(end_head == 127) {
				param->heads = 128;
				param->sectors = 32;
				break;
			} else if(end_head == 254) {
				param->heads = 255;
				param->sectors = 63;
				break;
			}
			entry++;
		}

		if (num == 4) {
			end_head = first->end_head;
			end_sec = first->end_sector & 0x3f;
		}

		param->cylinders = cap_to_cyls(capacity, param->heads * param->sectors);
		if (num < 4 && end_sec == param->sectors) {
			if (param->cylinders != saved_cylinders)
				dprintk((KERN_DEBUG "Adopting geometry: heads=%d, sectors=%d from partition table %d.\n",
					param->heads, param->sectors, num));
		} else if (end_head > 0 || end_sec > 0) {
			dprintk((KERN_DEBUG "Strange geometry: heads=%d, sectors=%d in partition table %d.\n",
				end_head + 1, end_sec, num));
			dprintk((KERN_DEBUG "Using geometry: heads=%d, sectors=%d.\n",
					param->heads, param->sectors));
		}
	}
	kfree(buf);
	return 0;
}

/**
 *	aac_slave_configure		-	compute queue depths
 *	@sdev:	SCSI device we are considering
 *
 *	Selects queue depths for each target device based on the host adapter's
 *	total capacity and the queue depth supported by the target device.
 *	A queue depth of one automatically disables tagged queueing.
 */

static int aac_slave_configure(struct scsi_device *sdev)
{
404
	struct aac_dev *aac = (struct aac_dev *)sdev->host->hostdata;
405 406 407 408 409 410 411 412 413 414 415 416 417 418
	int chn, tid;
	unsigned int depth = 0;
	unsigned int set_timeout = 0;

	chn = aac_logical_to_phys(sdev_channel(sdev));
	tid = sdev_id(sdev);
	if (chn < AAC_MAX_BUSES && tid < AAC_MAX_TARGETS &&
		aac->hba_map[chn][tid].devtype == AAC_DEVTYPE_NATIVE_RAW) {
		depth = aac->hba_map[chn][tid].qd_limit;
		set_timeout = 1;
		goto common_config;
	}


419 420
	if (aac->jbod && (sdev->type == TYPE_DISK))
		sdev->removable = 1;
421 422 423 424 425 426

	if (sdev->type == TYPE_DISK
	 && sdev_channel(sdev) != CONTAINER_CHANNEL
	 && (!aac->jbod || sdev->inq_periph_qual)
	 && (!aac->raid_scsi_mode || (sdev_channel(sdev) != 2))) {

427 428
		if (expose_physicals == 0)
			return -ENXIO;
429

430 431
		if (expose_physicals < 0)
			sdev->no_uld_attach = 1;
432
	}
433 434 435 436 437 438

	if (sdev->tagged_supported
	 &&  sdev->type == TYPE_DISK
	 &&  (!aac->raid_scsi_mode || (sdev_channel(sdev) != 2))
	 && !sdev->no_uld_attach) {

439 440 441 442
		struct scsi_device * dev;
		struct Scsi_Host *host = sdev->host;
		unsigned num_lsu = 0;
		unsigned num_one = 0;
443
		unsigned cid;
444

445 446
		set_timeout = 1;

447 448 449
		for (cid = 0; cid < aac->maximum_num_containers; ++cid)
			if (aac->fsa_dev[cid].valid)
				++num_lsu;
450

451
		__shost_for_each_device(dev, host) {
452 453 454 455
			if (dev->tagged_supported
			 && dev->type == TYPE_DISK
			 && (!aac->raid_scsi_mode || (sdev_channel(sdev) != 2))
			 && !dev->no_uld_attach) {
456
				if ((sdev_channel(dev) != CONTAINER_CHANNEL)
457
				 || !aac->fsa_dev[sdev_id(dev)].valid) {
458
					++num_lsu;
459 460
				}
			} else {
461
				++num_one;
462
			}
463
		}
464

465 466
		if (num_lsu == 0)
			++num_lsu;
467

468
		depth = (host->can_queue - num_one) / num_lsu;
469
	}
470

471 472 473 474 475 476 477 478 479 480 481 482 483 484 485 486 487
common_config:
	/*
	 * Firmware has an individual device recovery time typically
	 * of 35 seconds, give us a margin.
	 */
	if (set_timeout && sdev->request_queue->rq_timeout < (45 * HZ))
		blk_queue_rq_timeout(sdev->request_queue, 45*HZ);

	if (depth > 256)
		depth = 256;
	else if (depth < 1)
		depth = 1;

	scsi_change_queue_depth(sdev, depth);

	sdev->tagged_supported = 1;

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	return 0;
}

491 492 493 494 495 496 497 498 499
/**
 *	aac_change_queue_depth		-	alter queue depths
 *	@sdev:	SCSI device we are considering
 *	@depth:	desired queue depth
 *
 *	Alters queue depths for target device based on the host adapter's
 *	total capacity and the queue depth supported by the target device.
 */

500
static int aac_change_queue_depth(struct scsi_device *sdev, int depth)
501
{
502 503 504 505 506 507 508 509 510
	struct aac_dev *aac = (struct aac_dev *)(sdev->host->hostdata);
	int chn, tid, is_native_device = 0;

	chn = aac_logical_to_phys(sdev_channel(sdev));
	tid = sdev_id(sdev);
	if (chn < AAC_MAX_BUSES && tid < AAC_MAX_TARGETS &&
		aac->hba_map[chn][tid].devtype == AAC_DEVTYPE_NATIVE_RAW)
		is_native_device = 1;

511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527 528 529 530
	if (sdev->tagged_supported && (sdev->type == TYPE_DISK) &&
	    (sdev_channel(sdev) == CONTAINER_CHANNEL)) {
		struct scsi_device * dev;
		struct Scsi_Host *host = sdev->host;
		unsigned num = 0;

		__shost_for_each_device(dev, host) {
			if (dev->tagged_supported && (dev->type == TYPE_DISK) &&
			    (sdev_channel(dev) == CONTAINER_CHANNEL))
				++num;
			++num;
		}
		if (num >= host->can_queue)
			num = host->can_queue - 1;
		if (depth > (host->can_queue - num))
			depth = host->can_queue - num;
		if (depth > 256)
			depth = 256;
		else if (depth < 2)
			depth = 2;
531
		return scsi_change_queue_depth(sdev, depth);
532 533 534 535
	} else if (is_native_device) {
		scsi_change_queue_depth(sdev, aac->hba_map[chn][tid].qd_limit);
	} else {
		scsi_change_queue_depth(sdev, 1);
536
	}
537
	return sdev->queue_depth;
538 539
}

540 541
static ssize_t aac_show_raid_level(struct device *dev, struct device_attribute *attr, char *buf)
{
542 543
	struct scsi_device *sdev = to_scsi_device(dev);
	struct aac_dev *aac = (struct aac_dev *)(sdev->host->hostdata);
544 545
	if (sdev_channel(sdev) != CONTAINER_CHANNEL)
		return snprintf(buf, PAGE_SIZE, sdev->no_uld_attach
546 547
		  ? "Hidden\n" :
		  ((aac->jbod && (sdev->type == TYPE_DISK)) ? "JBOD\n" : ""));
548
	return snprintf(buf, PAGE_SIZE, "%s\n",
549
	  get_container_type(aac->fsa_dev[sdev_id(sdev)].type));
550 551 552 553 554 555 556 557 558 559
}

static struct device_attribute aac_raid_level_attr = {
	.attr = {
		.name = "level",
		.mode = S_IRUGO,
	},
	.show = aac_show_raid_level
};

560 561 562 563 564 565 566 567 568 569 570 571 572
static ssize_t aac_show_unique_id(struct device *dev,
	     struct device_attribute *attr, char *buf)
{
	struct scsi_device *sdev = to_scsi_device(dev);
	struct aac_dev *aac = (struct aac_dev *)(sdev->host->hostdata);
	unsigned char sn[16];

	memset(sn, 0, sizeof(sn));

	if (sdev_channel(sdev) == CONTAINER_CHANNEL)
		memcpy(sn, aac->fsa_dev[sdev_id(sdev)].identifier, sizeof(sn));

	return snprintf(buf, 16 * 2 + 2,
573
		"%02X%02X%02X%02X%02X%02X%02X%02X%02X%02X%02X%02X%02X%02X%02X%02X\n",
574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589
		sn[0], sn[1], sn[2], sn[3],
		sn[4], sn[5], sn[6], sn[7],
		sn[8], sn[9], sn[10], sn[11],
		sn[12], sn[13], sn[14], sn[15]);
}

static struct device_attribute aac_unique_id_attr = {
	.attr = {
		.name = "unique_id",
		.mode = 0444,
	},
	.show = aac_show_unique_id
};



590 591
static struct device_attribute *aac_dev_attrs[] = {
	&aac_raid_level_attr,
592
	&aac_unique_id_attr,
593 594 595
	NULL,
};

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static int aac_ioctl(struct scsi_device *sdev, int cmd, void __user * arg)
{
	struct aac_dev *dev = (struct aac_dev *)sdev->host->hostdata;
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	if (!capable(CAP_SYS_RAWIO))
		return -EPERM;
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	return aac_do_ioctl(dev, cmd, arg);
}

604 605
static int aac_eh_abort(struct scsi_cmnd* cmd)
{
606 607
	struct scsi_device * dev = cmd->device;
	struct Scsi_Host * host = dev->host;
608
	struct aac_dev * aac = (struct aac_dev *)host->hostdata;
609 610
	int count, found;
	u32 bus, cid;
611 612
	int ret = FAILED;

613 614 615 616 617 618 619 620 621 622 623 624 625 626
	bus = aac_logical_to_phys(scmd_channel(cmd));
	cid = scmd_id(cmd);
	if (aac->hba_map[bus][cid].devtype == AAC_DEVTYPE_NATIVE_RAW) {
		struct fib *fib;
		struct aac_hba_tm_req *tmf;
		int status;
		u64 address;
		__le32 managed_request_id;

		pr_err("%s: Host adapter abort request (%d,%d,%d,%d)\n",
		 AAC_DRIVERNAME,
		 host->host_no, sdev_channel(dev), sdev_id(dev), (int)dev->lun);

		found = 0;
627
		for (count = 0; count < (host->can_queue + AAC_NUM_MGT_FIB); ++count) {
628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666
			fib = &aac->fibs[count];
			if (*(u8 *)fib->hw_fib_va != 0 &&
				(fib->flags & FIB_CONTEXT_FLAG_NATIVE_HBA) &&
				(fib->callback_data == cmd)) {
				found = 1;
				managed_request_id = ((struct aac_hba_cmd_req *)
					fib->hw_fib_va)->request_id;
				break;
			}
		}
		if (!found)
			return ret;

		/* start a HBA_TMF_ABORT_TASK TMF request */
		fib = aac_fib_alloc(aac);
		if (!fib)
			return ret;

		tmf = (struct aac_hba_tm_req *)fib->hw_fib_va;
		memset(tmf, 0, sizeof(*tmf));
		tmf->tmf = HBA_TMF_ABORT_TASK;
		tmf->it_nexus = aac->hba_map[bus][cid].rmw_nexus;
		tmf->lun[1] = cmd->device->lun;

		address = (u64)fib->hw_error_pa;
		tmf->error_ptr_hi = cpu_to_le32((u32)(address >> 32));
		tmf->error_ptr_lo = cpu_to_le32((u32)(address & 0xffffffff));
		tmf->error_length = cpu_to_le32(FW_ERROR_BUFFER_SIZE);

		fib->hbacmd_size = sizeof(*tmf);
		cmd->SCp.sent_command = 0;

		status = aac_hba_send(HBA_IU_TYPE_SCSI_TM_REQ, fib,
				  (fib_callback) aac_hba_callback,
				  (void *) cmd);

		/* Wait up to 2 minutes for completion */
		for (count = 0; count < 120; ++count) {
			if (cmd->SCp.sent_command) {
667
				ret = SUCCESS;
668
				break;
669
			}
670
			msleep(1000);
671
		}
672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706

		if (ret != SUCCESS)
			pr_err("%s: Host adapter abort request timed out\n",
			AAC_DRIVERNAME);
	} else {
		pr_err(
			"%s: Host adapter abort request.\n"
			"%s: Outstanding commands on (%d,%d,%d,%d):\n",
			AAC_DRIVERNAME, AAC_DRIVERNAME,
			host->host_no, sdev_channel(dev), sdev_id(dev),
			(int)dev->lun);
		switch (cmd->cmnd[0]) {
		case SERVICE_ACTION_IN_16:
			if (!(aac->raw_io_interface) ||
			    !(aac->raw_io_64) ||
			    ((cmd->cmnd[1] & 0x1f) != SAI_READ_CAPACITY_16))
				break;
		case INQUIRY:
		case READ_CAPACITY:
			/*
			 * Mark associated FIB to not complete,
			 * eh handler does this
			 */
			for (count = 0;
				count < (host->can_queue + AAC_NUM_MGT_FIB);
				++count) {
				struct fib *fib = &aac->fibs[count];

				if (fib->hw_fib_va->header.XferState &&
				(fib->flags & FIB_CONTEXT_FLAG) &&
				(fib->callback_data == cmd)) {
					fib->flags |=
						FIB_CONTEXT_FLAG_TIMED_OUT;
					cmd->SCp.phase =
						AAC_OWNER_ERROR_HANDLER;
707
					ret = SUCCESS;
708
				}
709
			}
710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738
			break;
		case TEST_UNIT_READY:
			/*
			 * Mark associated FIB to not complete,
			 * eh handler does this
			 */
			for (count = 0;
				count < (host->can_queue + AAC_NUM_MGT_FIB);
				++count) {
				struct scsi_cmnd *command;
				struct fib *fib = &aac->fibs[count];

				command = fib->callback_data;

				if ((fib->hw_fib_va->header.XferState &
					cpu_to_le32
					(Async | NoResponseExpected)) &&
					(fib->flags & FIB_CONTEXT_FLAG) &&
					((command)) &&
					(command->device == cmd->device)) {
					fib->flags |=
						FIB_CONTEXT_FLAG_TIMED_OUT;
					command->SCp.phase =
						AAC_OWNER_ERROR_HANDLER;
					if (command == cmd)
						ret = SUCCESS;
				}
			}
			break;
739
		}
740 741 742 743
	}
	return ret;
}

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/*
 *	aac_eh_reset	- Reset command handling
 *	@scsi_cmd:	SCSI command block causing the reset
 *
 */
static int aac_eh_reset(struct scsi_cmnd* cmd)
{
	struct scsi_device * dev = cmd->device;
	struct Scsi_Host * host = dev->host;
753
	struct aac_dev * aac = (struct aac_dev *)host->hostdata;
754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812
	int count;
	u32 bus, cid;
	int ret = FAILED;

	bus = aac_logical_to_phys(scmd_channel(cmd));
	cid = scmd_id(cmd);
	if (bus < AAC_MAX_BUSES && cid < AAC_MAX_TARGETS &&
		aac->hba_map[bus][cid].devtype == AAC_DEVTYPE_NATIVE_RAW) {
		struct fib *fib;
		int status;
		u64 address;
		u8 command;

		pr_err("%s: Host adapter reset request. SCSI hang ?\n",
			AAC_DRIVERNAME);

		fib = aac_fib_alloc(aac);
		if (!fib)
			return ret;


		if (aac->hba_map[bus][cid].reset_state == 0) {
			struct aac_hba_tm_req *tmf;

			/* start a HBA_TMF_LUN_RESET TMF request */
			tmf = (struct aac_hba_tm_req *)fib->hw_fib_va;
			memset(tmf, 0, sizeof(*tmf));
			tmf->tmf = HBA_TMF_LUN_RESET;
			tmf->it_nexus = aac->hba_map[bus][cid].rmw_nexus;
			tmf->lun[1] = cmd->device->lun;

			address = (u64)fib->hw_error_pa;
			tmf->error_ptr_hi = cpu_to_le32
					((u32)(address >> 32));
			tmf->error_ptr_lo = cpu_to_le32
					((u32)(address & 0xffffffff));
			tmf->error_length = cpu_to_le32(FW_ERROR_BUFFER_SIZE);
			fib->hbacmd_size = sizeof(*tmf);

			command = HBA_IU_TYPE_SCSI_TM_REQ;
			aac->hba_map[bus][cid].reset_state++;
		} else if (aac->hba_map[bus][cid].reset_state >= 1) {
			struct aac_hba_reset_req *rst;

			/* already tried, start a hard reset now */
			rst = (struct aac_hba_reset_req *)fib->hw_fib_va;
			memset(rst, 0, sizeof(*rst));
			/* reset_type is already zero... */
			rst->it_nexus = aac->hba_map[bus][cid].rmw_nexus;

			address = (u64)fib->hw_error_pa;
			rst->error_ptr_hi = cpu_to_le32((u32)(address >> 32));
			rst->error_ptr_lo = cpu_to_le32
				((u32)(address & 0xffffffff));
			rst->error_length = cpu_to_le32(FW_ERROR_BUFFER_SIZE);
			fib->hbacmd_size = sizeof(*rst);

			command = HBA_IU_TYPE_SATA_REQ;
			aac->hba_map[bus][cid].reset_state = 0;
813
		}
814
		cmd->SCp.sent_command = 0;
815

816 817 818
		status = aac_hba_send(command, fib,
				  (fib_callback) aac_hba_callback,
				  (void *) cmd);
819

820 821 822 823
		/* Wait up to 2 minutes for completion */
		for (count = 0; count < 120; ++count) {
			if (cmd->SCp.sent_command) {
				ret = SUCCESS;
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				break;
825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877
			}
			msleep(1000);
		}

		if (ret != SUCCESS)
			pr_err("%s: Host adapter reset request timed out\n",
			AAC_DRIVERNAME);
	} else {
		struct scsi_cmnd *command;
		unsigned long flags;

		/* Mark the assoc. FIB to not complete, eh handler does this */
		for (count = 0;
			count < (host->can_queue + AAC_NUM_MGT_FIB);
			++count) {
			struct fib *fib = &aac->fibs[count];

			if (fib->hw_fib_va->header.XferState &&
				(fib->flags & FIB_CONTEXT_FLAG) &&
				(fib->callback_data == cmd)) {
				fib->flags |= FIB_CONTEXT_FLAG_TIMED_OUT;
				cmd->SCp.phase = AAC_OWNER_ERROR_HANDLER;
			}
		}

		pr_err("%s: Host adapter reset request. SCSI hang ?\n",
					AAC_DRIVERNAME);

		count = aac_check_health(aac);
		if (count)
			return count;
		/*
		 * Wait for all commands to complete to this specific
		 * target (block maximum 60 seconds).
		 */
		for (count = 60; count; --count) {
			int active = aac->in_reset;

			if (active == 0)
			__shost_for_each_device(dev, host) {
				spin_lock_irqsave(&dev->list_lock, flags);
				list_for_each_entry(command, &dev->cmd_list,
					list) {
					if ((command != cmd) &&
					(command->SCp.phase ==
					AAC_OWNER_FIRMWARE)) {
						active++;
						break;
					}
				}
				spin_unlock_irqrestore(&dev->list_lock, flags);
				if (active)
					break;
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879 880 881 882 883 884 885
			}
			/*
			 * We can exit If all the commands are complete
			 */
			if (active == 0)
				return SUCCESS;
			ssleep(1);
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		}
887 888
		pr_err("%s: SCSI bus appears hung\n", AAC_DRIVERNAME);

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		/*
890 891 892
		 * This adapter needs a blind reset, only do so for
		 * Adapters that support a register, instead of a commanded,
		 * reset.
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		 */
894
		if (((aac->supplement_adapter_info.supported_options2 &
895
			  AAC_OPTION_MU_RESET) ||
896
			  (aac->supplement_adapter_info.supported_options2 &
897 898 899
			  AAC_OPTION_DOORBELL_RESET)) &&
			  aac_check_reset &&
			  ((aac_check_reset != 1) ||
900
			   !(aac->supplement_adapter_info.supported_options2 &
901 902
			    AAC_OPTION_IGNORE_RESET))) {
			/* Bypass wait for command quiesce */
903
			aac_reset_adapter(aac, 2, IOP_HWSOFT_RESET);
904 905
		}
		ret = SUCCESS;
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	}
907
	/*
908 909
	 * Cause an immediate retry of the command with a ten second delay
	 * after successful tur
910
	 */
911
	return ret;
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}

/**
 *	aac_cfg_open		-	open a configuration file
 *	@inode: inode being opened
 *	@file: file handle attached
 *
 *	Called when the configuration device is opened. Does the needed
 *	set up on the handle and then returns
 *
 *	Bugs: This needs extending to check a given adapter is present
 *	so we can support hot plugging, and to ref count adapters.
 */

static int aac_cfg_open(struct inode *inode, struct file *file)
{
	struct aac_dev *aac;
929
	unsigned minor_number = iminor(inode);
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	int err = -ENODEV;

932
	mutex_lock(&aac_mutex);  /* BKL pushdown: nothing else protects this list */
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	list_for_each_entry(aac, &aac_devices, entry) {
934
		if (aac->id == minor_number) {
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			file->private_data = aac;
			err = 0;
			break;
		}
	}
940
	mutex_unlock(&aac_mutex);
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941

942
	return err;
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}

/**
 *	aac_cfg_ioctl		-	AAC configuration request
 *	@inode: inode of device
 *	@file: file handle
 *	@cmd: ioctl command code
 *	@arg: argument
 *
 *	Handles a configuration ioctl. Currently this involves wrapping it
 *	up and feeding it into the nasty windowsalike glue layer.
 *
 *	Bugs: Needs locking against parallel ioctls lower down
 *	Bugs: Needs to handle hot plugging
 */
958

959
static long aac_cfg_ioctl(struct file *file,
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		unsigned int cmd, unsigned long arg)
{
962 963
	struct aac_dev *aac = (struct aac_dev *)file->private_data;

964
	if (!capable(CAP_SYS_RAWIO))
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		return -EPERM;
966

967
	return aac_do_ioctl(aac, cmd, (void __user *)arg);
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}

#ifdef CONFIG_COMPAT
static long aac_compat_do_ioctl(struct aac_dev *dev, unsigned cmd, unsigned long arg)
{
	long ret;
974
	switch (cmd) {
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	case FSACTL_MINIPORT_REV_CHECK:
	case FSACTL_SENDFIB:
	case FSACTL_OPEN_GET_ADAPTER_FIB:
	case FSACTL_CLOSE_GET_ADAPTER_FIB:
	case FSACTL_SEND_RAW_SRB:
	case FSACTL_GET_PCI_INFO:
	case FSACTL_QUERY_DISK:
	case FSACTL_DELETE_DISK:
	case FSACTL_FORCE_DELETE_DISK:
984
	case FSACTL_GET_CONTAINERS:
985
	case FSACTL_SEND_LARGE_FIB:
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		ret = aac_do_ioctl(dev, cmd, (void __user *)arg);
		break;

	case FSACTL_GET_NEXT_ADAPTER_FIB: {
		struct fib_ioctl __user *f;
991

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992 993
		f = compat_alloc_user_space(sizeof(*f));
		ret = 0;
994
		if (clear_user(f, sizeof(*f)))
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			ret = -EFAULT;
		if (copy_in_user(f, (void __user *)arg, sizeof(struct fib_ioctl) - sizeof(u32)))
			ret = -EFAULT;
		if (!ret)
999
			ret = aac_do_ioctl(dev, cmd, f);
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		break;
	}

	default:
1004
		ret = -ENOIOCTLCMD;
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		break;
1006
	}
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	return ret;
}

static int aac_compat_ioctl(struct scsi_device *sdev, int cmd, void __user *arg)
{
	struct aac_dev *dev = (struct aac_dev *)sdev->host->hostdata;
1013 1014
	if (!capable(CAP_SYS_RAWIO))
		return -EPERM;
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	return aac_compat_do_ioctl(dev, cmd, (unsigned long)arg);
}

static long aac_compat_cfg_ioctl(struct file *file, unsigned cmd, unsigned long arg)
{
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	if (!capable(CAP_SYS_RAWIO))
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1021
		return -EPERM;
1022
	return aac_compat_do_ioctl(file->private_data, cmd, arg);
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}
#endif

1026 1027
static ssize_t aac_show_model(struct device *device,
			      struct device_attribute *attr, char *buf)
1028
{
1029
	struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
1030 1031
	int len;

1032 1033
	if (dev->supplement_adapter_info.adapter_type_text[0]) {
		char *cp = dev->supplement_adapter_info.adapter_type_text;
1034 1035 1036 1037 1038 1039 1040
		while (*cp && *cp != ' ')
			++cp;
		while (*cp == ' ')
			++cp;
		len = snprintf(buf, PAGE_SIZE, "%s\n", cp);
	} else
		len = snprintf(buf, PAGE_SIZE, "%s\n",
1041 1042 1043 1044
		  aac_drivers[dev->cardtype].model);
	return len;
}

1045 1046
static ssize_t aac_show_vendor(struct device *device,
			       struct device_attribute *attr, char *buf)
1047
{
1048
	struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
1049
	struct aac_supplement_adapter_info *sup_adap_info;
1050 1051
	int len;

1052 1053 1054
	sup_adap_info = &dev->supplement_adapter_info;
	if (sup_adap_info->adapter_type_text[0]) {
		char *cp = sup_adap_info->adapter_type_text;
1055 1056 1057
		while (*cp && *cp != ' ')
			++cp;
		len = snprintf(buf, PAGE_SIZE, "%.*s\n",
1058 1059
			(int)(cp - (char *)sup_adap_info->adapter_type_text),
					sup_adap_info->adapter_type_text);
1060 1061
	} else
		len = snprintf(buf, PAGE_SIZE, "%s\n",
1062
			aac_drivers[dev->cardtype].vname);
1063 1064 1065
	return len;
}

1066 1067
static ssize_t aac_show_flags(struct device *cdev,
			      struct device_attribute *attr, char *buf)
1068 1069
{
	int len = 0;
1070
	struct aac_dev *dev = (struct aac_dev*)class_to_shost(cdev)->hostdata;
1071 1072 1073 1074 1075 1076 1077 1078 1079 1080

	if (nblank(dprintk(x)))
		len = snprintf(buf, PAGE_SIZE, "dprintk\n");
#ifdef AAC_DETAILED_STATUS_INFO
	len += snprintf(buf + len, PAGE_SIZE - len,
			"AAC_DETAILED_STATUS_INFO\n");
#endif
	if (dev->raw_io_interface && dev->raw_io_64)
		len += snprintf(buf + len, PAGE_SIZE - len,
				"SAI_READ_CAPACITY_16\n");
1081 1082
	if (dev->jbod)
		len += snprintf(buf + len, PAGE_SIZE - len, "SUPPORTED_JBOD\n");
1083
	if (dev->supplement_adapter_info.supported_options2 &
1084 1085 1086 1087 1088
		AAC_OPTION_POWER_MANAGEMENT)
		len += snprintf(buf + len, PAGE_SIZE - len,
				"SUPPORTED_POWER_MANAGEMENT\n");
	if (dev->msi)
		len += snprintf(buf + len, PAGE_SIZE - len, "PCI_HAS_MSI\n");
1089 1090 1091
	return len;
}

1092 1093 1094
static ssize_t aac_show_kernel_version(struct device *device,
				       struct device_attribute *attr,
				       char *buf)
1095
{
1096
	struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
1097 1098 1099
	int len, tmp;

	tmp = le32_to_cpu(dev->adapter_info.kernelrev);
1100
	len = snprintf(buf, PAGE_SIZE, "%d.%d-%d[%d]\n",
1101 1102 1103 1104 1105
	  tmp >> 24, (tmp >> 16) & 0xff, tmp & 0xff,
	  le32_to_cpu(dev->adapter_info.kernelbuild));
	return len;
}

1106 1107 1108
static ssize_t aac_show_monitor_version(struct device *device,
					struct device_attribute *attr,
					char *buf)
1109
{
1110
	struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
1111 1112 1113
	int len, tmp;

	tmp = le32_to_cpu(dev->adapter_info.monitorrev);
1114
	len = snprintf(buf, PAGE_SIZE, "%d.%d-%d[%d]\n",
1115 1116 1117 1118 1119
	  tmp >> 24, (tmp >> 16) & 0xff, tmp & 0xff,
	  le32_to_cpu(dev->adapter_info.monitorbuild));
	return len;
}

1120 1121 1122
static ssize_t aac_show_bios_version(struct device *device,
				     struct device_attribute *attr,
				     char *buf)
1123
{
1124
	struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
1125 1126 1127
	int len, tmp;

	tmp = le32_to_cpu(dev->adapter_info.biosrev);
1128
	len = snprintf(buf, PAGE_SIZE, "%d.%d-%d[%d]\n",
1129 1130 1131 1132 1133
	  tmp >> 24, (tmp >> 16) & 0xff, tmp & 0xff,
	  le32_to_cpu(dev->adapter_info.biosbuild));
	return len;
}

1134
static ssize_t aac_show_serial_number(struct device *device,
1135
			       struct device_attribute *attr, char *buf)
1136
{
1137
	struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
1138 1139 1140
	int len = 0;

	if (le32_to_cpu(dev->adapter_info.serial[0]) != 0xBAD0)
1141
		len = snprintf(buf, 16, "%06X\n",
1142
		  le32_to_cpu(dev->adapter_info.serial[0]));
1143
	if (len &&
1144 1145
	  !memcmp(&dev->supplement_adapter_info.mfg_pcba_serial_no[
	    sizeof(dev->supplement_adapter_info.mfg_pcba_serial_no)-len],
1146
	  buf, len-1))
1147
		len = snprintf(buf, 16, "%.*s\n",
1148 1149
		  (int)sizeof(dev->supplement_adapter_info.mfg_pcba_serial_no),
		  dev->supplement_adapter_info.mfg_pcba_serial_no);
1150 1151

	return min(len, 16);
1152 1153
}

1154 1155
static ssize_t aac_show_max_channel(struct device *device,
				    struct device_attribute *attr, char *buf)
1156 1157
{
	return snprintf(buf, PAGE_SIZE, "%d\n",
1158
	  class_to_shost(device)->max_channel);
1159 1160
}

1161 1162
static ssize_t aac_show_max_id(struct device *device,
			       struct device_attribute *attr, char *buf)
1163 1164
{
	return snprintf(buf, PAGE_SIZE, "%d\n",
1165
	  class_to_shost(device)->max_id);
1166 1167
}

1168 1169 1170
static ssize_t aac_store_reset_adapter(struct device *device,
				       struct device_attribute *attr,
				       const char *buf, size_t count)
1171 1172
{
	int retval = -EACCES;
1173 1174 1175
	int bled = 0;
	struct aac_dev *aac;

1176 1177 1178

	if (!capable(CAP_SYS_ADMIN))
		return retval;
1179 1180 1181 1182

	aac = (struct aac_dev *)class_to_shost(device)->hostdata;
	bled = buf[0] == '!' ? 1:0;
	retval = aac_reset_adapter(aac, bled, IOP_HWSOFT_RESET);
1183 1184 1185 1186 1187
	if (retval >= 0)
		retval = count;
	return retval;
}

1188 1189 1190
static ssize_t aac_show_reset_adapter(struct device *device,
				      struct device_attribute *attr,
				      char *buf)
1191
{
1192
	struct aac_dev *dev = (struct aac_dev*)class_to_shost(device)->hostdata;
1193 1194 1195 1196 1197
	int len, tmp;

	tmp = aac_adapter_check_health(dev);
	if ((tmp == 0) && dev->in_reset)
		tmp = -EBUSY;
1198
	len = snprintf(buf, PAGE_SIZE, "0x%x\n", tmp);
1199 1200
	return len;
}
1201

1202
static struct device_attribute aac_model = {
1203 1204 1205 1206 1207 1208
	.attr = {
		.name = "model",
		.mode = S_IRUGO,
	},
	.show = aac_show_model,
};
1209
static struct device_attribute aac_vendor = {
1210 1211 1212 1213 1214 1215
	.attr = {
		.name = "vendor",
		.mode = S_IRUGO,
	},
	.show = aac_show_vendor,
};
1216
static struct device_attribute aac_flags = {
1217 1218 1219 1220 1221 1222
	.attr = {
		.name = "flags",
		.mode = S_IRUGO,
	},
	.show = aac_show_flags,
};
1223
static struct device_attribute aac_kernel_version = {
1224 1225 1226 1227 1228 1229
	.attr = {
		.name = "hba_kernel_version",
		.mode = S_IRUGO,
	},
	.show = aac_show_kernel_version,
};
1230
static struct device_attribute aac_monitor_version = {
1231 1232 1233 1234 1235 1236
	.attr = {
		.name = "hba_monitor_version",
		.mode = S_IRUGO,
	},
	.show = aac_show_monitor_version,
};
1237
static struct device_attribute aac_bios_version = {
1238 1239 1240 1241 1242 1243
	.attr = {
		.name = "hba_bios_version",
		.mode = S_IRUGO,
	},
	.show = aac_show_bios_version,
};
1244
static struct device_attribute aac_serial_number = {
1245 1246 1247 1248 1249 1250
	.attr = {
		.name = "serial_number",
		.mode = S_IRUGO,
	},
	.show = aac_show_serial_number,
};
1251
static struct device_attribute aac_max_channel = {
1252 1253 1254 1255 1256 1257
	.attr = {
		.name = "max_channel",
		.mode = S_IRUGO,
	},
	.show = aac_show_max_channel,
};
1258
static struct device_attribute aac_max_id = {
1259 1260 1261 1262 1263 1264
	.attr = {
		.name = "max_id",
		.mode = S_IRUGO,
	},
	.show = aac_show_max_id,
};
1265
static struct device_attribute aac_reset = {
1266 1267 1268 1269 1270 1271 1272
	.attr = {
		.name = "reset_host",
		.mode = S_IWUSR|S_IRUGO,
	},
	.store = aac_store_reset_adapter,
	.show = aac_show_reset_adapter,
};
1273

1274
static struct device_attribute *aac_attrs[] = {
1275 1276
	&aac_model,
	&aac_vendor,
1277
	&aac_flags,
1278 1279 1280 1281
	&aac_kernel_version,
	&aac_monitor_version,
	&aac_bios_version,
	&aac_serial_number,
1282 1283
	&aac_max_channel,
	&aac_max_id,
1284
	&aac_reset,
1285 1286 1287
	NULL
};

1288 1289 1290 1291
ssize_t aac_get_serial_number(struct device *device, char *buf)
{
	return aac_show_serial_number(device, &aac_serial_number, buf);
}
1292

1293
static const struct file_operations aac_cfg_fops = {
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	.owner		= THIS_MODULE,
1295
	.unlocked_ioctl	= aac_cfg_ioctl,
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#ifdef CONFIG_COMPAT
	.compat_ioctl   = aac_compat_cfg_ioctl,
#endif
	.open		= aac_cfg_open,
1300
	.llseek		= noop_llseek,
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};

static struct scsi_host_template aac_driver_template = {
	.module				= THIS_MODULE,
1305
	.name				= "AAC",
1306
	.proc_name			= AAC_DRIVERNAME,
1307 1308
	.info				= aac_info,
	.ioctl				= aac_ioctl,
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#ifdef CONFIG_COMPAT
	.compat_ioctl			= aac_compat_ioctl,
#endif
1312 1313
	.queuecommand			= aac_queuecommand,
	.bios_param			= aac_biosparm,
1314
	.shost_attrs			= aac_attrs,
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	.slave_configure		= aac_slave_configure,
1316
	.change_queue_depth		= aac_change_queue_depth,
1317
	.sdev_attrs			= aac_dev_attrs,
1318
	.eh_abort_handler		= aac_eh_abort,
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	.eh_host_reset_handler		= aac_eh_reset,
1320 1321 1322 1323
	.can_queue			= AAC_NUM_IO_FIB,
	.this_id			= MAXIMUM_NUM_CONTAINERS,
	.sg_tablesize			= 16,
	.max_sectors			= 128,
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#if (AAC_NUM_IO_FIB > 256)
	.cmd_per_lun			= 256,
1326
#else
1327
	.cmd_per_lun			= AAC_NUM_IO_FIB,
1328
#endif
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	.use_clustering			= ENABLE_CLUSTERING,
1330
	.emulated			= 1,
1331
	.no_write_same			= 1,
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};

1334 1335
static void __aac_shutdown(struct aac_dev * aac)
{
M
Mahesh Rajashekhara 已提交
1336 1337
	int i;

1338
	aac->adapter_shutdown = 1;
1339 1340
	aac_send_shutdown(aac);

1341 1342 1343 1344 1345 1346 1347 1348 1349
	if (aac->aif_thread) {
		int i;
		/* Clear out events first */
		for (i = 0; i < (aac->scsi_host_ptr->can_queue + AAC_NUM_MGT_FIB); i++) {
			struct fib *fib = &aac->fibs[i];
			if (!(fib->hw_fib_va->header.XferState & cpu_to_le32(NoResponseExpected | Async)) &&
			    (fib->hw_fib_va->header.XferState & cpu_to_le32(ResponseExpected)))
				up(&fib->event_wait);
		}
1350
		kthread_stop(aac->thread);
1351
	}
1352
	aac_adapter_disable_int(aac);
M
Mahesh Rajashekhara 已提交
1353 1354 1355 1356 1357
	if (aac->pdev->device == PMC_DEVICE_S6 ||
	    aac->pdev->device == PMC_DEVICE_S7 ||
	    aac->pdev->device == PMC_DEVICE_S8 ||
	    aac->pdev->device == PMC_DEVICE_S9) {
		if (aac->max_msix > 1) {
1358
			for (i = 0; i < aac->max_msix; i++) {
1359
				free_irq(pci_irq_vector(aac->pdev, i),
M
Mahesh Rajashekhara 已提交
1360
					 &(aac->aac_msix[i]));
1361
			}
M
Mahesh Rajashekhara 已提交
1362 1363 1364 1365 1366 1367 1368
		} else {
			free_irq(aac->pdev->irq,
				 &(aac->aac_msix[0]));
		}
	} else {
		free_irq(aac->pdev->irq, aac);
	}
1369 1370
	if (aac->msi)
		pci_disable_msi(aac->pdev);
M
Mahesh Rajashekhara 已提交
1371 1372
	else if (aac->max_msix > 1)
		pci_disable_msix(aac->pdev);
1373
}
1374 1375 1376 1377 1378 1379 1380
static void aac_init_char(void)
{
	aac_cfg_major = register_chrdev(0, "aac", &aac_cfg_fops);
	if (aac_cfg_major < 0) {
		pr_err("aacraid: unable to register \"aac\" device.\n");
	}
}
1381

1382
static int aac_probe_one(struct pci_dev *pdev, const struct pci_device_id *id)
L
Linus Torvalds 已提交
1383 1384 1385 1386 1387 1388 1389
{
	unsigned index = id->driver_data;
	struct Scsi_Host *shost;
	struct aac_dev *aac;
	struct list_head *insert = &aac_devices;
	int error = -ENODEV;
	int unique_id = 0;
1390
	u64 dmamask;
1391
	extern int aac_sync_mode;
L
Linus Torvalds 已提交
1392

1393 1394 1395 1396 1397 1398
	/*
	 * Only series 7 needs freset.
	 */
	 if (pdev->device == PMC_DEVICE_S7)
		pdev->needs_freset = 1;

L
Linus Torvalds 已提交
1399 1400 1401 1402 1403 1404 1405
	list_for_each_entry(aac, &aac_devices, entry) {
		if (aac->id > unique_id)
			break;
		insert = &aac->entry;
		unique_id++;
	}

1406 1407 1408
	pci_disable_link_state(pdev, PCIE_LINK_STATE_L0S | PCIE_LINK_STATE_L1 |
			       PCIE_LINK_STATE_CLKPM);

1409 1410
	error = pci_enable_device(pdev);
	if (error)
L
Linus Torvalds 已提交
1411
		goto out;
1412
	error = -ENODEV;
L
Linus Torvalds 已提交
1413 1414 1415 1416 1417

	/*
	 * If the quirk31 bit is set, the adapter needs adapter
	 * to driver communication memory to be allocated below 2gig
	 */
1418
	if (aac_drivers[index].quirks & AAC_QUIRK_31BIT)
1419 1420 1421 1422 1423 1424 1425
		dmamask = DMA_BIT_MASK(31);
	else
		dmamask = DMA_BIT_MASK(32);

	if (pci_set_dma_mask(pdev, dmamask) ||
			pci_set_consistent_dma_mask(pdev, dmamask))
		goto out_disable_pdev;
1426

L
Linus Torvalds 已提交
1427 1428 1429 1430 1431 1432 1433 1434
	pci_set_master(pdev);

	shost = scsi_host_alloc(&aac_driver_template, sizeof(struct aac_dev));
	if (!shost)
		goto out_disable_pdev;

	shost->irq = pdev->irq;
	shost->unique_id = unique_id;
1435
	shost->max_cmd_len = 16;
1436
	shost->use_cmd_list = 1;
L
Linus Torvalds 已提交
1437

1438 1439 1440
	if (aac_cfg_major == AAC_CHARDEV_NEEDS_REINIT)
		aac_init_char();

L
Linus Torvalds 已提交
1441
	aac = (struct aac_dev *)shost->hostdata;
1442
	aac->base_start = pci_resource_start(pdev, 0);
1443
	aac->scsi_host_ptr = shost;
L
Linus Torvalds 已提交
1444 1445 1446
	aac->pdev = pdev;
	aac->name = aac_driver_template.name;
	aac->id = shost->unique_id;
1447
	aac->cardtype = index;
L
Linus Torvalds 已提交
1448 1449
	INIT_LIST_HEAD(&aac->entry);

1450
	aac->fibs = kzalloc(sizeof(struct fib) * (shost->can_queue + AAC_NUM_MGT_FIB), GFP_KERNEL);
L
Linus Torvalds 已提交
1451 1452 1453 1454
	if (!aac->fibs)
		goto out_free_host;
	spin_lock_init(&aac->fib_lock);

1455
	mutex_init(&aac->ioctl_mutex);
1456 1457 1458 1459 1460 1461 1462
	/*
	 *	Map in the registers from the adapter.
	 */
	aac->base_size = AAC_MIN_FOOTPRINT_SIZE;
	if ((*aac_drivers[index].init)(aac))
		goto out_unmap;

1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477
	if (aac->sync_mode) {
		if (aac_sync_mode)
			printk(KERN_INFO "%s%d: Sync. mode enforced "
				"by driver parameter. This will cause "
				"a significant performance decrease!\n",
				aac->name,
				aac->id);
		else
			printk(KERN_INFO "%s%d: Async. mode not supported "
				"by current driver, sync. mode enforced."
				"\nPlease update driver to get full performance.\n",
				aac->name,
				aac->id);
	}

1478 1479 1480
	/*
	 *	Start any kernel threads needed
	 */
1481 1482
	aac->thread = kthread_run(aac_command_thread, aac, AAC_DRIVERNAME);
	if (IS_ERR(aac->thread)) {
1483
		printk(KERN_ERR "aacraid: Unable to create command thread.\n");
1484
		error = PTR_ERR(aac->thread);
1485
		aac->thread = NULL;
1486 1487
		goto out_deinit;
	}
L
Linus Torvalds 已提交
1488 1489 1490 1491 1492 1493 1494

	/*
	 * If we had set a smaller DMA mask earlier, set it to 4gig
	 * now since the adapter can dma data to at least a 4gig
	 * address space.
	 */
	if (aac_drivers[index].quirks & AAC_QUIRK_31BIT)
1495
		if (pci_set_dma_mask(pdev, DMA_BIT_MASK(32)))
1496
			goto out_deinit;
1497

1498
	aac->maximum_num_channels = aac_drivers[index].channels;
1499 1500 1501
	error = aac_get_adapter_info(aac);
	if (error < 0)
		goto out_deinit;
L
Linus Torvalds 已提交
1502 1503

	/*
1504 1505
	 * Lets override negotiations and drop the maximum SG limit to 34
	 */
1506
	if ((aac_drivers[index].quirks & AAC_QUIRK_34SG) &&
1507 1508 1509
			(shost->sg_tablesize > 34)) {
		shost->sg_tablesize = 34;
		shost->max_sectors = (shost->sg_tablesize * 8) + 112;
1510
	}
1511

1512
	if ((aac_drivers[index].quirks & AAC_QUIRK_17SG) &&
1513 1514 1515
			(shost->sg_tablesize > 17)) {
		shost->sg_tablesize = 17;
		shost->max_sectors = (shost->sg_tablesize * 8) + 112;
1516
	}
1517

1518 1519 1520 1521 1522 1523
	error = pci_set_dma_max_seg_size(pdev,
		(aac->adapter_info.options & AAC_OPT_NEW_COMM) ?
			(shost->max_sectors << 9) : 65536);
	if (error)
		goto out_deinit;

1524
	/*
1525
	 * Firmware printf works only with older firmware.
1526
	 */
1527
	if (aac_drivers[index].quirks & AAC_QUIRK_34SG)
1528 1529 1530
		aac->printf_enabled = 1;
	else
		aac->printf_enabled = 0;
1531

1532
	/*
L
Linus Torvalds 已提交
1533
	 * max channel will be the physical channels plus 1 virtual channel
1534
	 * all containers are on the virtual channel 0 (CONTAINER_CHANNEL)
L
Linus Torvalds 已提交
1535 1536
	 * physical channels are address by their actual physical number+1
	 */
1537
	if (aac->nondasd_support || expose_physicals || aac->jbod)
1538
		shost->max_channel = aac->maximum_num_channels;
L
Linus Torvalds 已提交
1539
	else
1540
		shost->max_channel = 0;
L
Linus Torvalds 已提交
1541

1542
	aac_get_config_status(aac, 0);
L
Linus Torvalds 已提交
1543 1544 1545 1546
	aac_get_containers(aac);
	list_add(&aac->entry, insert);

	shost->max_id = aac->maximum_num_containers;
1547 1548
	if (shost->max_id < aac->maximum_num_physicals)
		shost->max_id = aac->maximum_num_physicals;
L
Linus Torvalds 已提交
1549 1550 1551 1552 1553
	if (shost->max_id < MAXIMUM_NUM_CONTAINERS)
		shost->max_id = MAXIMUM_NUM_CONTAINERS;
	else
		shost->this_id = shost->max_id;

1554
	if (!aac->sa_firmware && aac_drivers[index].quirks & AAC_QUIRK_SRC)
1555
		aac_intr_normal(aac, 0, 2, 0, NULL);
1556

L
Linus Torvalds 已提交
1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569
	/*
	 * dmb - we may need to move the setting of these parms somewhere else once
	 * we get a fib that can report the actual numbers
	 */
	shost->max_lun = AAC_MAX_LUN;

	pci_set_drvdata(pdev, shost);

	error = scsi_add_host(shost, &pdev->dev);
	if (error)
		goto out_deinit;
	scsi_scan_host(shost);

1570 1571 1572
	pci_enable_pcie_error_reporting(pdev);
	pci_save_state(pdev);

L
Linus Torvalds 已提交
1573 1574
	return 0;

1575
 out_deinit:
1576
	__aac_shutdown(aac);
1577
 out_unmap:
1578
	aac_fib_map_free(aac);
1579 1580 1581
	if (aac->comm_addr)
		pci_free_consistent(aac->pdev, aac->comm_size, aac->comm_addr,
		  aac->comm_phys);
L
Linus Torvalds 已提交
1582
	kfree(aac->queues);
1583
	aac_adapter_ioremap(aac, 0);
L
Linus Torvalds 已提交
1584 1585 1586 1587 1588 1589 1590 1591 1592 1593
	kfree(aac->fibs);
	kfree(aac->fsa_dev);
 out_free_host:
	scsi_host_put(shost);
 out_disable_pdev:
	pci_disable_device(pdev);
 out:
	return error;
}

1594
static void aac_release_resources(struct aac_dev *aac)
1595 1596
{
	aac_adapter_disable_int(aac);
1597
	aac_free_irq(aac);
1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622
}

static int aac_acquire_resources(struct aac_dev *dev)
{
	unsigned long status;
	/*
	 *	First clear out all interrupts.  Then enable the one's that we
	 *	can handle.
	 */
	while (!((status = src_readl(dev, MUnit.OMR)) & KERNEL_UP_AND_RUNNING)
		|| status == 0xffffffff)
			msleep(20);

	aac_adapter_disable_int(dev);
	aac_adapter_enable_int(dev);


	if ((dev->pdev->device == PMC_DEVICE_S7 ||
	     dev->pdev->device == PMC_DEVICE_S8 ||
	     dev->pdev->device == PMC_DEVICE_S9))
		aac_define_int_mode(dev);

	if (dev->msi_enabled)
		aac_src_access_devreg(dev, AAC_ENABLE_MSIX);

1623 1624
	if (aac_acquire_irq(dev))
		goto error_iounmap;
1625 1626 1627

	aac_adapter_enable_int(dev);

1628 1629 1630 1631 1632 1633 1634 1635 1636
	/*max msix may change  after EEH
	 * Re-assign vectors to fibs
	 */
	aac_fib_vector_assign(dev);

	if (!dev->sync_mode) {
		/* After EEH recovery or suspend resume, max_msix count
		 * may change, therfore updating in init as well.
		 */
1637
		dev->init->r7.no_of_msix_vectors = cpu_to_le32(dev->max_msix);
1638
		aac_adapter_start(dev);
1639
	}
1640 1641 1642 1643 1644 1645
	return 0;

error_iounmap:
	return -1;

}
1646 1647

#if (defined(CONFIG_PM))
1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683
static int aac_suspend(struct pci_dev *pdev, pm_message_t state)
{

	struct Scsi_Host *shost = pci_get_drvdata(pdev);
	struct aac_dev *aac = (struct aac_dev *)shost->hostdata;

	scsi_block_requests(shost);
	aac_send_shutdown(aac);

	aac_release_resources(aac);

	pci_set_drvdata(pdev, shost);
	pci_save_state(pdev);
	pci_disable_device(pdev);
	pci_set_power_state(pdev, pci_choose_state(pdev, state));

	return 0;
}

static int aac_resume(struct pci_dev *pdev)
{
	struct Scsi_Host *shost = pci_get_drvdata(pdev);
	struct aac_dev *aac = (struct aac_dev *)shost->hostdata;
	int r;

	pci_set_power_state(pdev, PCI_D0);
	pci_enable_wake(pdev, PCI_D0, 0);
	pci_restore_state(pdev);
	r = pci_enable_device(pdev);

	if (r)
		goto fail_device;

	pci_set_master(pdev);
	if (aac_acquire_resources(aac))
		goto fail_device;
M
Mahesh Rajashekhara 已提交
1684 1685 1686 1687 1688
	/*
	* reset this flag to unblock ioctl() as it was set at
	* aac_send_shutdown() to block ioctls from upperlayer
	*/
	aac->adapter_shutdown = 0;
1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700
	scsi_unblock_requests(shost);

	return 0;

fail_device:
	printk(KERN_INFO "%s%d: resume failed.\n", aac->name, aac->id);
	scsi_host_put(shost);
	pci_disable_device(pdev);
	return -ENODEV;
}
#endif

1701 1702 1703
static void aac_shutdown(struct pci_dev *dev)
{
	struct Scsi_Host *shost = pci_get_drvdata(dev);
1704
	scsi_block_requests(shost);
1705
	__aac_shutdown((struct aac_dev *)shost->hostdata);
1706 1707
}

1708
static void aac_remove_one(struct pci_dev *pdev)
L
Linus Torvalds 已提交
1709 1710 1711 1712 1713 1714
{
	struct Scsi_Host *shost = pci_get_drvdata(pdev);
	struct aac_dev *aac = (struct aac_dev *)shost->hostdata;

	scsi_remove_host(shost);

1715
	__aac_shutdown(aac);
1716
	aac_fib_map_free(aac);
L
Linus Torvalds 已提交
1717 1718 1719 1720
	pci_free_consistent(aac->pdev, aac->comm_size, aac->comm_addr,
			aac->comm_phys);
	kfree(aac->queues);

1721
	aac_adapter_ioremap(aac, 0);
1722

L
Linus Torvalds 已提交
1723
	kfree(aac->fibs);
1724
	kfree(aac->fsa_dev);
1725

L
Linus Torvalds 已提交
1726 1727 1728
	list_del(&aac->entry);
	scsi_host_put(shost);
	pci_disable_device(pdev);
1729 1730
	if (list_empty(&aac_devices)) {
		unregister_chrdev(aac_cfg_major, "aac");
1731
		aac_cfg_major = AAC_CHARDEV_NEEDS_REINIT;
1732
	}
L
Linus Torvalds 已提交
1733 1734
}

1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866
static void aac_flush_ios(struct aac_dev *aac)
{
	int i;
	struct scsi_cmnd *cmd;

	for (i = 0; i < aac->scsi_host_ptr->can_queue; i++) {
		cmd = (struct scsi_cmnd *)aac->fibs[i].callback_data;
		if (cmd && (cmd->SCp.phase == AAC_OWNER_FIRMWARE)) {
			scsi_dma_unmap(cmd);

			if (aac->handle_pci_error)
				cmd->result = DID_NO_CONNECT << 16;
			else
				cmd->result = DID_RESET << 16;

			cmd->scsi_done(cmd);
		}
	}
}

static pci_ers_result_t aac_pci_error_detected(struct pci_dev *pdev,
					enum pci_channel_state error)
{
	struct Scsi_Host *shost = pci_get_drvdata(pdev);
	struct aac_dev *aac = shost_priv(shost);

	dev_err(&pdev->dev, "aacraid: PCI error detected %x\n", error);

	switch (error) {
	case pci_channel_io_normal:
		return PCI_ERS_RESULT_CAN_RECOVER;
	case pci_channel_io_frozen:
		aac->handle_pci_error = 1;

		scsi_block_requests(aac->scsi_host_ptr);
		aac_flush_ios(aac);
		aac_release_resources(aac);

		pci_disable_pcie_error_reporting(pdev);
		aac_adapter_ioremap(aac, 0);

		return PCI_ERS_RESULT_NEED_RESET;
	case pci_channel_io_perm_failure:
		aac->handle_pci_error = 1;

		aac_flush_ios(aac);
		return PCI_ERS_RESULT_DISCONNECT;
	}

	return PCI_ERS_RESULT_NEED_RESET;
}

static pci_ers_result_t aac_pci_mmio_enabled(struct pci_dev *pdev)
{
	dev_err(&pdev->dev, "aacraid: PCI error - mmio enabled\n");
	return PCI_ERS_RESULT_NEED_RESET;
}

static pci_ers_result_t aac_pci_slot_reset(struct pci_dev *pdev)
{
	dev_err(&pdev->dev, "aacraid: PCI error - slot reset\n");
	pci_restore_state(pdev);
	if (pci_enable_device(pdev)) {
		dev_warn(&pdev->dev,
			"aacraid: failed to enable slave\n");
		goto fail_device;
	}

	pci_set_master(pdev);

	if (pci_enable_device_mem(pdev)) {
		dev_err(&pdev->dev, "pci_enable_device_mem failed\n");
		goto fail_device;
	}

	return PCI_ERS_RESULT_RECOVERED;

fail_device:
	dev_err(&pdev->dev, "aacraid: PCI error - slot reset failed\n");
	return PCI_ERS_RESULT_DISCONNECT;
}


static void aac_pci_resume(struct pci_dev *pdev)
{
	struct Scsi_Host *shost = pci_get_drvdata(pdev);
	struct scsi_device *sdev = NULL;
	struct aac_dev *aac = (struct aac_dev *)shost_priv(shost);

	pci_cleanup_aer_uncorrect_error_status(pdev);

	if (aac_adapter_ioremap(aac, aac->base_size)) {

		dev_err(&pdev->dev, "aacraid: ioremap failed\n");
		/* remap failed, go back ... */
		aac->comm_interface = AAC_COMM_PRODUCER;
		if (aac_adapter_ioremap(aac, AAC_MIN_FOOTPRINT_SIZE)) {
			dev_warn(&pdev->dev,
				"aacraid: unable to map adapter.\n");

			return;
		}
	}

	msleep(10000);

	aac_acquire_resources(aac);

	/*
	 * reset this flag to unblock ioctl() as it was set
	 * at aac_send_shutdown() to block ioctls from upperlayer
	 */
	aac->adapter_shutdown = 0;
	aac->handle_pci_error = 0;

	shost_for_each_device(sdev, shost)
		if (sdev->sdev_state == SDEV_OFFLINE)
			sdev->sdev_state = SDEV_RUNNING;
	scsi_unblock_requests(aac->scsi_host_ptr);
	scsi_scan_host(aac->scsi_host_ptr);
	pci_save_state(pdev);

	dev_err(&pdev->dev, "aacraid: PCI error - resume\n");
}

static struct pci_error_handlers aac_pci_err_handler = {
	.error_detected		= aac_pci_error_detected,
	.mmio_enabled		= aac_pci_mmio_enabled,
	.slot_reset		= aac_pci_slot_reset,
	.resume			= aac_pci_resume,
};

L
Linus Torvalds 已提交
1867 1868 1869 1870
static struct pci_driver aac_pci_driver = {
	.name		= AAC_DRIVERNAME,
	.id_table	= aac_pci_tbl,
	.probe		= aac_probe_one,
1871
	.remove		= aac_remove_one,
1872 1873 1874 1875
#if (defined(CONFIG_PM))
	.suspend	= aac_suspend,
	.resume		= aac_resume,
#endif
1876
	.shutdown	= aac_shutdown,
1877
	.err_handler    = &aac_pci_err_handler,
L
Linus Torvalds 已提交
1878 1879 1880 1881 1882
};

static int __init aac_init(void)
{
	int error;
1883

1884
	printk(KERN_INFO "Adaptec %s driver %s\n",
1885
	  AAC_DRIVERNAME, aac_driver_version);
L
Linus Torvalds 已提交
1886

1887 1888
	error = pci_register_driver(&aac_pci_driver);
	if (error < 0)
L
Linus Torvalds 已提交
1889 1890
		return error;

1891 1892
	aac_init_char();

1893

L
Linus Torvalds 已提交
1894 1895 1896 1897 1898
	return 0;
}

static void __exit aac_exit(void)
{
1899 1900
	if (aac_cfg_major > -1)
		unregister_chrdev(aac_cfg_major, "aac");
L
Linus Torvalds 已提交
1901 1902 1903 1904 1905
	pci_unregister_driver(&aac_pci_driver);
}

module_init(aac_init);
module_exit(aac_exit);