aachba.c 85.3 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) 2000-2007 Adaptec, Inc. (aacraid@adaptec.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.
 *
 */

#include <linux/kernel.h>
#include <linux/init.h>
#include <linux/types.h>
#include <linux/pci.h>
#include <linux/spinlock.h>
#include <linux/slab.h>
#include <linux/completion.h>
#include <linux/blkdev.h>
#include <asm/uaccess.h>
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#include <linux/highmem.h> /* For flush_kernel_dcache_page */
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#include <scsi/scsi.h>
#include <scsi/scsi_cmnd.h>
#include <scsi/scsi_device.h>
#include <scsi/scsi_host.h>

#include "aacraid.h"

/* values for inqd_pdt: Peripheral device type in plain English */
#define	INQD_PDT_DA	0x00	/* Direct-access (DISK) device */
#define	INQD_PDT_PROC	0x03	/* Processor device */
#define	INQD_PDT_CHNGR	0x08	/* Changer (jukebox, scsi2) */
#define	INQD_PDT_COMM	0x09	/* Communication device (scsi2) */
#define	INQD_PDT_NOLUN2 0x1f	/* Unknown Device (scsi2) */
#define	INQD_PDT_NOLUN	0x7f	/* Logical Unit Not Present */

#define	INQD_PDT_DMASK	0x1F	/* Peripheral Device Type Mask */
#define	INQD_PDT_QMASK	0xE0	/* Peripheral Device Qualifer Mask */

/*
 *	Sense codes
 */
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#define SENCODE_NO_SENSE			0x00
#define SENCODE_END_OF_DATA			0x00
#define SENCODE_BECOMING_READY			0x04
#define SENCODE_INIT_CMD_REQUIRED		0x04
#define SENCODE_PARAM_LIST_LENGTH_ERROR		0x1A
#define SENCODE_INVALID_COMMAND			0x20
#define SENCODE_LBA_OUT_OF_RANGE		0x21
#define SENCODE_INVALID_CDB_FIELD		0x24
#define SENCODE_LUN_NOT_SUPPORTED		0x25
#define SENCODE_INVALID_PARAM_FIELD		0x26
#define SENCODE_PARAM_NOT_SUPPORTED		0x26
#define SENCODE_PARAM_VALUE_INVALID		0x26
#define SENCODE_RESET_OCCURRED			0x29
#define SENCODE_LUN_NOT_SELF_CONFIGURED_YET	0x3E
#define SENCODE_INQUIRY_DATA_CHANGED		0x3F
#define SENCODE_SAVING_PARAMS_NOT_SUPPORTED	0x39
#define SENCODE_DIAGNOSTIC_FAILURE		0x40
#define SENCODE_INTERNAL_TARGET_FAILURE		0x44
#define SENCODE_INVALID_MESSAGE_ERROR		0x49
#define SENCODE_LUN_FAILED_SELF_CONFIG		0x4c
#define SENCODE_OVERLAPPED_COMMAND		0x4E
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/*
 *	Additional sense codes
 */
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#define ASENCODE_NO_SENSE			0x00
#define ASENCODE_END_OF_DATA			0x05
#define ASENCODE_BECOMING_READY			0x01
#define ASENCODE_INIT_CMD_REQUIRED		0x02
#define ASENCODE_PARAM_LIST_LENGTH_ERROR	0x00
#define ASENCODE_INVALID_COMMAND		0x00
#define ASENCODE_LBA_OUT_OF_RANGE		0x00
#define ASENCODE_INVALID_CDB_FIELD		0x00
#define ASENCODE_LUN_NOT_SUPPORTED		0x00
#define ASENCODE_INVALID_PARAM_FIELD		0x00
#define ASENCODE_PARAM_NOT_SUPPORTED		0x01
#define ASENCODE_PARAM_VALUE_INVALID		0x02
#define ASENCODE_RESET_OCCURRED			0x00
#define ASENCODE_LUN_NOT_SELF_CONFIGURED_YET	0x00
#define ASENCODE_INQUIRY_DATA_CHANGED		0x03
#define ASENCODE_SAVING_PARAMS_NOT_SUPPORTED	0x00
#define ASENCODE_DIAGNOSTIC_FAILURE		0x80
#define ASENCODE_INTERNAL_TARGET_FAILURE	0x00
#define ASENCODE_INVALID_MESSAGE_ERROR		0x00
#define ASENCODE_LUN_FAILED_SELF_CONFIG		0x00
#define ASENCODE_OVERLAPPED_COMMAND		0x00
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#define BYTE0(x) (unsigned char)(x)
#define BYTE1(x) (unsigned char)((x) >> 8)
#define BYTE2(x) (unsigned char)((x) >> 16)
#define BYTE3(x) (unsigned char)((x) >> 24)

/*------------------------------------------------------------------------------
 *              S T R U C T S / T Y P E D E F S
 *----------------------------------------------------------------------------*/
/* SCSI inquiry data */
struct inquiry_data {
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	u8 inqd_pdt;	/* Peripheral qualifier | Peripheral Device Type */
	u8 inqd_dtq;	/* RMB | Device Type Qualifier */
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	u8 inqd_ver;	/* ISO version | ECMA version | ANSI-approved version */
	u8 inqd_rdf;	/* AENC | TrmIOP | Response data format */
	u8 inqd_len;	/* Additional length (n-4) */
	u8 inqd_pad1[2];/* Reserved - must be zero */
	u8 inqd_pad2;	/* RelAdr | WBus32 | WBus16 |  Sync  | Linked |Reserved| CmdQue | SftRe */
	u8 inqd_vid[8];	/* Vendor ID */
	u8 inqd_pid[16];/* Product ID */
	u8 inqd_prl[4];	/* Product Revision Level */
};

/*
 *              M O D U L E   G L O B A L S
 */
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static unsigned long aac_build_sg(struct scsi_cmnd* scsicmd, struct sgmap* sgmap);
static unsigned long aac_build_sg64(struct scsi_cmnd* scsicmd, struct sgmap64* psg);
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static unsigned long aac_build_sgraw(struct scsi_cmnd* scsicmd, struct sgmapraw* psg);
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static int aac_send_srb_fib(struct scsi_cmnd* scsicmd);
#ifdef AAC_DETAILED_STATUS_INFO
static char *aac_get_status_string(u32 status);
#endif

/*
 *	Non dasd selection is handled entirely in aachba now
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 */

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static int nondasd = -1;
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static int aac_cache = 2;	/* WCE=0 to avoid performance problems */
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static int dacmode = -1;
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int aac_msi;
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int aac_commit = -1;
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int startup_timeout = 180;
int aif_timeout = 120;
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module_param(nondasd, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(nondasd, "Control scanning of hba for nondasd devices."
	" 0=off, 1=on");
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module_param_named(cache, aac_cache, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(cache, "Disable Queue Flush commands:\n"
	"\tbit 0 - Disable FUA in WRITE SCSI commands\n"
	"\tbit 1 - Disable SYNCHRONIZE_CACHE SCSI command\n"
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	"\tbit 2 - Disable only if Battery is protecting Cache");
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module_param(dacmode, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(dacmode, "Control whether dma addressing is using 64 bit DAC."
	" 0=off, 1=on");
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module_param_named(commit, aac_commit, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(commit, "Control whether a COMMIT_CONFIG is issued to the"
	" adapter for foreign arrays.\n"
	"This is typically needed in systems that do not have a BIOS."
	" 0=off, 1=on");
module_param_named(msi, aac_msi, int, S_IRUGO|S_IWUSR);
MODULE_PARM_DESC(msi, "IRQ handling."
	" 0=PIC(default), 1=MSI, 2=MSI-X(unsupported, uses MSI)");
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module_param(startup_timeout, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(startup_timeout, "The duration of time in seconds to wait for"
	" adapter to have it's kernel up and\n"
	"running. This is typically adjusted for large systems that do not"
	" have a BIOS.");
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module_param(aif_timeout, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(aif_timeout, "The duration of time in seconds to wait for"
	" applications to pick up AIFs before\n"
	"deregistering them. This is typically adjusted for heavily burdened"
	" systems.");
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int numacb = -1;
module_param(numacb, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(numacb, "Request a limit to the number of adapter control"
	" blocks (FIB) allocated. Valid values are 512 and down. Default is"
	" to use suggestion from Firmware.");
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int acbsize = -1;
module_param(acbsize, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(acbsize, "Request a specific adapter control block (FIB)"
	" size. Valid values are 512, 2048, 4096 and 8192. Default is to use"
	" suggestion from Firmware.");
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int update_interval = 30 * 60;
module_param(update_interval, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(update_interval, "Interval in seconds between time sync"
	" updates issued to adapter.");
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int check_interval = 24 * 60 * 60;
module_param(check_interval, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(check_interval, "Interval in seconds between adapter health"
	" checks.");
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int aac_check_reset = 1;
module_param_named(check_reset, aac_check_reset, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(check_reset, "If adapter fails health check, reset the"
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	" adapter. a value of -1 forces the reset to adapters programmed to"
	" ignore it.");
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int expose_physicals = -1;
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module_param(expose_physicals, int, S_IRUGO|S_IWUSR);
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MODULE_PARM_DESC(expose_physicals, "Expose physical components of the arrays."
	" -1=protect 0=off, 1=on");
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int aac_reset_devices;
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module_param_named(reset_devices, aac_reset_devices, int, S_IRUGO|S_IWUSR);
MODULE_PARM_DESC(reset_devices, "Force an adapter reset at initialization.");
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int aac_wwn = 1;
module_param_named(wwn, aac_wwn, int, S_IRUGO|S_IWUSR);
MODULE_PARM_DESC(wwn, "Select a WWN type for the arrays:\n"
	"\t0 - Disable\n"
	"\t1 - Array Meta Data Signature (default)\n"
	"\t2 - Adapter Serial Number");


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static inline int aac_valid_context(struct scsi_cmnd *scsicmd,
		struct fib *fibptr) {
	struct scsi_device *device;

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	if (unlikely(!scsicmd || !scsicmd->scsi_done)) {
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		dprintk((KERN_WARNING "aac_valid_context: scsi command corrupt\n"));
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		aac_fib_complete(fibptr);
		aac_fib_free(fibptr);
		return 0;
	}
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	scsicmd->SCp.phase = AAC_OWNER_MIDLEVEL;
	device = scsicmd->device;
	if (unlikely(!device || !scsi_device_online(device))) {
		dprintk((KERN_WARNING "aac_valid_context: scsi device corrupt\n"));
		aac_fib_complete(fibptr);
		aac_fib_free(fibptr);
		return 0;
	}
	return 1;
}

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/**
 *	aac_get_config_status	-	check the adapter configuration
 *	@common: adapter to query
 *
 *	Query config status, and commit the configuration if needed.
 */
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int aac_get_config_status(struct aac_dev *dev, int commit_flag)
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{
	int status = 0;
	struct fib * fibptr;

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	if (!(fibptr = aac_fib_alloc(dev)))
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		return -ENOMEM;

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	aac_fib_init(fibptr);
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	{
		struct aac_get_config_status *dinfo;
		dinfo = (struct aac_get_config_status *) fib_data(fibptr);

		dinfo->command = cpu_to_le32(VM_ContainerConfig);
		dinfo->type = cpu_to_le32(CT_GET_CONFIG_STATUS);
		dinfo->count = cpu_to_le32(sizeof(((struct aac_get_config_status_resp *)NULL)->data));
	}

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	status = aac_fib_send(ContainerCommand,
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			    fibptr,
			    sizeof (struct aac_get_config_status),
			    FsaNormal,
			    1, 1,
			    NULL, NULL);
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	if (status < 0) {
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		printk(KERN_WARNING "aac_get_config_status: SendFIB failed.\n");
	} else {
		struct aac_get_config_status_resp *reply
		  = (struct aac_get_config_status_resp *) fib_data(fibptr);
		dprintk((KERN_WARNING
		  "aac_get_config_status: response=%d status=%d action=%d\n",
		  le32_to_cpu(reply->response),
		  le32_to_cpu(reply->status),
		  le32_to_cpu(reply->data.action)));
		if ((le32_to_cpu(reply->response) != ST_OK) ||
		     (le32_to_cpu(reply->status) != CT_OK) ||
		     (le32_to_cpu(reply->data.action) > CFACT_PAUSE)) {
			printk(KERN_WARNING "aac_get_config_status: Will not issue the Commit Configuration\n");
			status = -EINVAL;
		}
	}
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	/* Do not set XferState to zero unless receives a response from F/W */
	if (status >= 0)
		aac_fib_complete(fibptr);

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	/* Send a CT_COMMIT_CONFIG to enable discovery of devices */
	if (status >= 0) {
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		if ((aac_commit == 1) || commit_flag) {
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			struct aac_commit_config * dinfo;
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			aac_fib_init(fibptr);
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			dinfo = (struct aac_commit_config *) fib_data(fibptr);
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			dinfo->command = cpu_to_le32(VM_ContainerConfig);
			dinfo->type = cpu_to_le32(CT_COMMIT_CONFIG);
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			status = aac_fib_send(ContainerCommand,
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				    fibptr,
				    sizeof (struct aac_commit_config),
				    FsaNormal,
				    1, 1,
				    NULL, NULL);
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			/* Do not set XferState to zero unless
			 * receives a response from F/W */
			if (status >= 0)
				aac_fib_complete(fibptr);
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		} else if (aac_commit == 0) {
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			printk(KERN_WARNING
			  "aac_get_config_status: Foreign device configurations are being ignored\n");
		}
	}
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	/* FIB should be freed only after getting the response from the F/W */
	if (status != -ERESTARTSYS)
		aac_fib_free(fibptr);
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	return status;
}

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static void aac_expose_phy_device(struct scsi_cmnd *scsicmd)
{
	char inq_data;
	scsi_sg_copy_to_buffer(scsicmd,  &inq_data, sizeof(inq_data));
	if ((inq_data & 0x20) && (inq_data & 0x1f) == TYPE_DISK) {
		inq_data &= 0xdf;
		scsi_sg_copy_from_buffer(scsicmd, &inq_data, sizeof(inq_data));
	}
}

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/**
 *	aac_get_containers	-	list containers
 *	@common: adapter to probe
 *
 *	Make a list of all containers on this controller
 */
int aac_get_containers(struct aac_dev *dev)
{
	struct fsa_dev_info *fsa_dev_ptr;
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	u32 index;
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	int status = 0;
	struct fib * fibptr;
	struct aac_get_container_count *dinfo;
	struct aac_get_container_count_resp *dresp;
	int maximum_num_containers = MAXIMUM_NUM_CONTAINERS;

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	if (!(fibptr = aac_fib_alloc(dev)))
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		return -ENOMEM;

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	aac_fib_init(fibptr);
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	dinfo = (struct aac_get_container_count *) fib_data(fibptr);
	dinfo->command = cpu_to_le32(VM_ContainerConfig);
	dinfo->type = cpu_to_le32(CT_GET_CONTAINER_COUNT);

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	status = aac_fib_send(ContainerCommand,
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		    fibptr,
		    sizeof (struct aac_get_container_count),
		    FsaNormal,
		    1, 1,
		    NULL, NULL);
	if (status >= 0) {
		dresp = (struct aac_get_container_count_resp *)fib_data(fibptr);
		maximum_num_containers = le32_to_cpu(dresp->ContainerSwitchEntries);
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		aac_fib_complete(fibptr);
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	}
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	/* FIB should be freed only after getting the response from the F/W */
	if (status != -ERESTARTSYS)
		aac_fib_free(fibptr);
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	if (maximum_num_containers < MAXIMUM_NUM_CONTAINERS)
		maximum_num_containers = MAXIMUM_NUM_CONTAINERS;
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	fsa_dev_ptr = kzalloc(sizeof(*fsa_dev_ptr) * maximum_num_containers,
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			GFP_KERNEL);
	if (!fsa_dev_ptr)
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		return -ENOMEM;

	dev->fsa_dev = fsa_dev_ptr;
	dev->maximum_num_containers = maximum_num_containers;

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	for (index = 0; index < dev->maximum_num_containers; ) {
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		fsa_dev_ptr[index].devname[0] = '\0';

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		status = aac_probe_container(dev, index);
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		if (status < 0) {
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			printk(KERN_WARNING "aac_get_containers: SendFIB failed.\n");
			break;
		}
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		/*
		 *	If there are no more containers, then stop asking.
		 */
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		if (++index >= status)
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			break;
	}
	return status;
}

static void get_container_name_callback(void *context, struct fib * fibptr)
{
	struct aac_get_name_resp * get_name_reply;
	struct scsi_cmnd * scsicmd;

	scsicmd = (struct scsi_cmnd *) context;

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	if (!aac_valid_context(scsicmd, fibptr))
		return;

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	dprintk((KERN_DEBUG "get_container_name_callback[cpu %d]: t = %ld.\n", smp_processor_id(), jiffies));
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	BUG_ON(fibptr == NULL);
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	get_name_reply = (struct aac_get_name_resp *) fib_data(fibptr);
	/* Failure is irrelevant, using default value instead */
	if ((le32_to_cpu(get_name_reply->status) == CT_OK)
	 && (get_name_reply->data[0] != '\0')) {
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		char *sp = get_name_reply->data;
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		sp[sizeof(((struct aac_get_name_resp *)NULL)->data)-1] = '\0';
		while (*sp == ' ')
			++sp;
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		if (*sp) {
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			struct inquiry_data inq;
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			char d[sizeof(((struct inquiry_data *)NULL)->inqd_pid)];
			int count = sizeof(d);
			char *dp = d;
			do {
				*dp++ = (*sp) ? *sp++ : ' ';
			} while (--count > 0);
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			scsi_sg_copy_to_buffer(scsicmd, &inq, sizeof(inq));
			memcpy(inq.inqd_pid, d, sizeof(d));
			scsi_sg_copy_from_buffer(scsicmd, &inq, sizeof(inq));
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		}
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	}
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	scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;

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	aac_fib_complete(fibptr);
	aac_fib_free(fibptr);
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	scsicmd->scsi_done(scsicmd);
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}

/**
 *	aac_get_container_name	-	get container name, none blocking.
 */
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static int aac_get_container_name(struct scsi_cmnd * scsicmd)
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{
	int status;
	struct aac_get_name *dinfo;
	struct fib * cmd_fibcontext;
	struct aac_dev * dev;

	dev = (struct aac_dev *)scsicmd->device->host->hostdata;

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	if (!(cmd_fibcontext = aac_fib_alloc(dev)))
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		return -ENOMEM;

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	aac_fib_init(cmd_fibcontext);
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	dinfo = (struct aac_get_name *) fib_data(cmd_fibcontext);

	dinfo->command = cpu_to_le32(VM_ContainerConfig);
	dinfo->type = cpu_to_le32(CT_READ_NAME);
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	dinfo->cid = cpu_to_le32(scmd_id(scsicmd));
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	dinfo->count = cpu_to_le32(sizeof(((struct aac_get_name_resp *)NULL)->data));

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	status = aac_fib_send(ContainerCommand,
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		  cmd_fibcontext,
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		  sizeof (struct aac_get_name),
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		  FsaNormal,
		  0, 1,
		  (fib_callback)get_container_name_callback,
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		  (void *) scsicmd);
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	/*
	 *	Check that the command queued to the controller
	 */
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	if (status == -EINPROGRESS) {
		scsicmd->SCp.phase = AAC_OWNER_FIRMWARE;
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		return 0;
489
	}
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	printk(KERN_WARNING "aac_get_container_name: aac_fib_send failed with status: %d.\n", status);
	aac_fib_complete(cmd_fibcontext);
	aac_fib_free(cmd_fibcontext);
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	return -1;
}

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static int aac_probe_container_callback2(struct scsi_cmnd * scsicmd)
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{
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	struct fsa_dev_info *fsa_dev_ptr = ((struct aac_dev *)(scsicmd->device->host->hostdata))->fsa_dev;
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501
	if ((fsa_dev_ptr[scmd_id(scsicmd)].valid & 1))
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		return aac_scsi_cmd(scsicmd);
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	scsicmd->result = DID_NO_CONNECT << 16;
	scsicmd->scsi_done(scsicmd);
	return 0;
}

509
static void _aac_probe_container2(void * context, struct fib * fibptr)
510
{
511
	struct fsa_dev_info *fsa_dev_ptr;
512
	int (*callback)(struct scsi_cmnd *);
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	struct scsi_cmnd * scsicmd = (struct scsi_cmnd *)context;


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	if (!aac_valid_context(scsicmd, fibptr))
		return;
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	scsicmd->SCp.Status = 0;
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	fsa_dev_ptr = fibptr->dev->fsa_dev;
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	if (fsa_dev_ptr) {
		struct aac_mount * dresp = (struct aac_mount *) fib_data(fibptr);
		fsa_dev_ptr += scmd_id(scsicmd);

		if ((le32_to_cpu(dresp->status) == ST_OK) &&
		    (le32_to_cpu(dresp->mnt[0].vol) != CT_NONE) &&
		    (le32_to_cpu(dresp->mnt[0].state) != FSCS_HIDDEN)) {
			fsa_dev_ptr->valid = 1;
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			/* sense_key holds the current state of the spin-up */
			if (dresp->mnt[0].state & cpu_to_le32(FSCS_NOT_READY))
				fsa_dev_ptr->sense_data.sense_key = NOT_READY;
			else if (fsa_dev_ptr->sense_data.sense_key == NOT_READY)
				fsa_dev_ptr->sense_data.sense_key = NO_SENSE;
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			fsa_dev_ptr->type = le32_to_cpu(dresp->mnt[0].vol);
			fsa_dev_ptr->size
			  = ((u64)le32_to_cpu(dresp->mnt[0].capacity)) +
			    (((u64)le32_to_cpu(dresp->mnt[0].capacityhigh)) << 32);
			fsa_dev_ptr->ro = ((le32_to_cpu(dresp->mnt[0].state) & FSCS_READONLY) != 0);
		}
		if ((fsa_dev_ptr->valid & 1) == 0)
			fsa_dev_ptr->valid = 0;
		scsicmd->SCp.Status = le32_to_cpu(dresp->count);
	}
	aac_fib_complete(fibptr);
	aac_fib_free(fibptr);
	callback = (int (*)(struct scsi_cmnd *))(scsicmd->SCp.ptr);
	scsicmd->SCp.ptr = NULL;
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	(*callback)(scsicmd);
	return;
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}

552
static void _aac_probe_container1(void * context, struct fib * fibptr)
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{
	struct scsi_cmnd * scsicmd;
	struct aac_mount * dresp;
	struct aac_query_mount *dinfo;
	int status;

	dresp = (struct aac_mount *) fib_data(fibptr);
	dresp->mnt[0].capacityhigh = 0;
	if ((le32_to_cpu(dresp->status) != ST_OK) ||
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	    (le32_to_cpu(dresp->mnt[0].vol) != CT_NONE)) {
		_aac_probe_container2(context, fibptr);
		return;
	}
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	scsicmd = (struct scsi_cmnd *) context;
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	if (!aac_valid_context(scsicmd, fibptr))
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		return;
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	aac_fib_init(fibptr);
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	dinfo = (struct aac_query_mount *)fib_data(fibptr);

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	dinfo->command = cpu_to_le32(VM_NameServe64);
	dinfo->count = cpu_to_le32(scmd_id(scsicmd));
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	dinfo->type = cpu_to_le32(FT_FILESYS);

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	status = aac_fib_send(ContainerCommand,
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			  fibptr,
			  sizeof(struct aac_query_mount),
			  FsaNormal,
			  0, 1,
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			  _aac_probe_container2,
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			  (void *) scsicmd);
	/*
	 *	Check that the command queued to the controller
	 */
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	if (status == -EINPROGRESS)
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		scsicmd->SCp.phase = AAC_OWNER_FIRMWARE;
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	else if (status < 0) {
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		/* Inherit results from VM_NameServe, if any */
		dresp->status = cpu_to_le32(ST_OK);
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		_aac_probe_container2(context, fibptr);
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	}
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}
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static int _aac_probe_container(struct scsi_cmnd * scsicmd, int (*callback)(struct scsi_cmnd *))
{
	struct fib * fibptr;
	int status = -ENOMEM;

	if ((fibptr = aac_fib_alloc((struct aac_dev *)scsicmd->device->host->hostdata))) {
		struct aac_query_mount *dinfo;

		aac_fib_init(fibptr);

		dinfo = (struct aac_query_mount *)fib_data(fibptr);
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		dinfo->command = cpu_to_le32(VM_NameServe);
		dinfo->count = cpu_to_le32(scmd_id(scsicmd));
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		dinfo->type = cpu_to_le32(FT_FILESYS);
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		scsicmd->SCp.ptr = (char *)callback;
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		status = aac_fib_send(ContainerCommand,
			  fibptr,
			  sizeof(struct aac_query_mount),
			  FsaNormal,
			  0, 1,
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			  _aac_probe_container1,
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			  (void *) scsicmd);
		/*
		 *	Check that the command queued to the controller
		 */
		if (status == -EINPROGRESS) {
			scsicmd->SCp.phase = AAC_OWNER_FIRMWARE;
			return 0;
		}
		if (status < 0) {
			scsicmd->SCp.ptr = NULL;
			aac_fib_complete(fibptr);
			aac_fib_free(fibptr);
		}
	}
	if (status < 0) {
		struct fsa_dev_info *fsa_dev_ptr = ((struct aac_dev *)(scsicmd->device->host->hostdata))->fsa_dev;
		if (fsa_dev_ptr) {
			fsa_dev_ptr += scmd_id(scsicmd);
			if ((fsa_dev_ptr->valid & 1) == 0) {
				fsa_dev_ptr->valid = 0;
				return (*callback)(scsicmd);
			}
		}
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	}
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	return status;
}
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/**
 *	aac_probe_container		-	query a logical volume
 *	@dev: device to query
 *	@cid: container identifier
 *
 *	Queries the controller about the given volume. The volume information
 *	is updated in the struct fsa_dev_info structure rather than returned.
 */
static int aac_probe_container_callback1(struct scsi_cmnd * scsicmd)
{
	scsicmd->device = NULL;
	return 0;
}
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int aac_probe_container(struct aac_dev *dev, int cid)
{
	struct scsi_cmnd *scsicmd = kmalloc(sizeof(*scsicmd), GFP_KERNEL);
	struct scsi_device *scsidev = kmalloc(sizeof(*scsidev), GFP_KERNEL);
	int status;

	if (!scsicmd || !scsidev) {
		kfree(scsicmd);
		kfree(scsidev);
		return -ENOMEM;
	}
	scsicmd->list.next = NULL;
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	scsicmd->scsi_done = (void (*)(struct scsi_cmnd*))aac_probe_container_callback1;
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	scsicmd->device = scsidev;
	scsidev->sdev_state = 0;
	scsidev->id = cid;
	scsidev->host = dev->scsi_host_ptr;

	if (_aac_probe_container(scsicmd, aac_probe_container_callback1) == 0)
		while (scsicmd->device == scsidev)
			schedule();
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	kfree(scsidev);
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	status = scsicmd->SCp.Status;
	kfree(scsicmd);
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	return status;
}

/* Local Structure to set SCSI inquiry data strings */
struct scsi_inq {
	char vid[8];         /* Vendor ID */
	char pid[16];        /* Product ID */
	char prl[4];         /* Product Revision Level */
};

/**
 *	InqStrCopy	-	string merge
 *	@a:	string to copy from
 *	@b:	string to copy to
 *
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 *	Copy a String from one location to another
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 *	without copying \0
 */

static void inqstrcpy(char *a, char *b)
{

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	while (*a != (char)0)
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		*b++ = *a++;
}

static char *container_types[] = {
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	"None",
	"Volume",
	"Mirror",
	"Stripe",
	"RAID5",
	"SSRW",
	"SSRO",
	"Morph",
	"Legacy",
	"RAID4",
	"RAID10",
	"RAID00",
	"V-MIRRORS",
	"PSEUDO R4",
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	"RAID50",
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	"RAID5D",
	"RAID5D0",
	"RAID1E",
	"RAID6",
	"RAID60",
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	"Unknown"
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};

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char * get_container_type(unsigned tindex)
{
	if (tindex >= ARRAY_SIZE(container_types))
		tindex = ARRAY_SIZE(container_types) - 1;
	return container_types[tindex];
}
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/* Function: setinqstr
 *
 * Arguments: [1] pointer to void [1] int
 *
 * Purpose: Sets SCSI inquiry data strings for vendor, product
 * and revision level. Allows strings to be set in platform dependant
 * files instead of in OS dependant driver source.
 */

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static void setinqstr(struct aac_dev *dev, void *data, int tindex)
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{
	struct scsi_inq *str;

	str = (struct scsi_inq *)(data); /* cast data to scsi inq block */
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	memset(str, ' ', sizeof(*str));

	if (dev->supplement_adapter_info.AdapterTypeText[0]) {
		char * cp = dev->supplement_adapter_info.AdapterTypeText;
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		int c;
		if ((cp[0] == 'A') && (cp[1] == 'O') && (cp[2] == 'C'))
			inqstrcpy("SMC", str->vid);
		else {
			c = sizeof(str->vid);
			while (*cp && *cp != ' ' && --c)
				++cp;
			c = *cp;
			*cp = '\0';
			inqstrcpy (dev->supplement_adapter_info.AdapterTypeText,
				   str->vid);
			*cp = c;
			while (*cp && *cp != ' ')
				++cp;
		}
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		while (*cp == ' ')
			++cp;
		/* last six chars reserved for vol type */
		c = 0;
		if (strlen(cp) > sizeof(str->pid)) {
			c = cp[sizeof(str->pid)];
			cp[sizeof(str->pid)] = '\0';
		}
		inqstrcpy (cp, str->pid);
		if (c)
			cp[sizeof(str->pid)] = c;
	} else {
		struct aac_driver_ident *mp = aac_get_driver_ident(dev->cardtype);
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		inqstrcpy (mp->vname, str->vid);
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		/* last six chars reserved for vol type */
		inqstrcpy (mp->model, str->pid);
	}
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	if (tindex < ARRAY_SIZE(container_types)){
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		char *findit = str->pid;

		for ( ; *findit != ' '; findit++); /* walk till we find a space */
		/* RAID is superfluous in the context of a RAID device */
		if (memcmp(findit-4, "RAID", 4) == 0)
			*(findit -= 4) = ' ';
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		if (((findit - str->pid) + strlen(container_types[tindex]))
		 < (sizeof(str->pid) + sizeof(str->prl)))
			inqstrcpy (container_types[tindex], findit + 1);
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	}
	inqstrcpy ("V1.0", str->prl);
}

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static void get_container_serial_callback(void *context, struct fib * fibptr)
{
	struct aac_get_serial_resp * get_serial_reply;
	struct scsi_cmnd * scsicmd;

	BUG_ON(fibptr == NULL);

	scsicmd = (struct scsi_cmnd *) context;
	if (!aac_valid_context(scsicmd, fibptr))
		return;

	get_serial_reply = (struct aac_get_serial_resp *) fib_data(fibptr);
	/* Failure is irrelevant, using default value instead */
	if (le32_to_cpu(get_serial_reply->status) == CT_OK) {
		char sp[13];
		/* EVPD bit set */
		sp[0] = INQD_PDT_DA;
		sp[1] = scsicmd->cmnd[2];
		sp[2] = 0;
		sp[3] = snprintf(sp+4, sizeof(sp)-4, "%08X",
		  le32_to_cpu(get_serial_reply->uid));
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		scsi_sg_copy_from_buffer(scsicmd, sp, sizeof(sp));
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	}

	scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;

	aac_fib_complete(fibptr);
	aac_fib_free(fibptr);
	scsicmd->scsi_done(scsicmd);
}

/**
 *	aac_get_container_serial - get container serial, none blocking.
 */
static int aac_get_container_serial(struct scsi_cmnd * scsicmd)
{
	int status;
	struct aac_get_serial *dinfo;
	struct fib * cmd_fibcontext;
	struct aac_dev * dev;

	dev = (struct aac_dev *)scsicmd->device->host->hostdata;

	if (!(cmd_fibcontext = aac_fib_alloc(dev)))
		return -ENOMEM;

	aac_fib_init(cmd_fibcontext);
	dinfo = (struct aac_get_serial *) fib_data(cmd_fibcontext);

	dinfo->command = cpu_to_le32(VM_ContainerConfig);
	dinfo->type = cpu_to_le32(CT_CID_TO_32BITS_UID);
	dinfo->cid = cpu_to_le32(scmd_id(scsicmd));

	status = aac_fib_send(ContainerCommand,
		  cmd_fibcontext,
		  sizeof (struct aac_get_serial),
		  FsaNormal,
		  0, 1,
		  (fib_callback) get_container_serial_callback,
		  (void *) scsicmd);

	/*
	 *	Check that the command queued to the controller
	 */
	if (status == -EINPROGRESS) {
		scsicmd->SCp.phase = AAC_OWNER_FIRMWARE;
		return 0;
	}

	printk(KERN_WARNING "aac_get_container_serial: aac_fib_send failed with status: %d.\n", status);
	aac_fib_complete(cmd_fibcontext);
	aac_fib_free(cmd_fibcontext);
	return -1;
}

/* Function: setinqserial
 *
 * Arguments: [1] pointer to void [1] int
 *
 * Purpose: Sets SCSI Unit Serial number.
 *          This is a fake. We should read a proper
 *          serial number from the container. <SuSE>But
 *          without docs it's quite hard to do it :-)
 *          So this will have to do in the meantime.</SuSE>
 */

static int setinqserial(struct aac_dev *dev, void *data, int cid)
{
	/*
	 *	This breaks array migration.
	 */
	return snprintf((char *)(data), sizeof(struct scsi_inq) - 4, "%08X%02X",
			le32_to_cpu(dev->adapter_info.serial[0]), cid);
}

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static inline void set_sense(struct sense_data *sense_data, u8 sense_key,
	u8 sense_code, u8 a_sense_code, u8 bit_pointer, u16 field_pointer)
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{
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	u8 *sense_buf = (u8 *)sense_data;
	/* Sense data valid, err code 70h */
	sense_buf[0] = 0x70; /* No info field */
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	sense_buf[1] = 0;	/* Segment number, always zero */

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	sense_buf[2] = sense_key;	/* Sense key */
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	sense_buf[12] = sense_code;	/* Additional sense code */
	sense_buf[13] = a_sense_code;	/* Additional sense code qualifier */
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	if (sense_key == ILLEGAL_REQUEST) {
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		sense_buf[7] = 10;	/* Additional sense length */
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		sense_buf[15] = bit_pointer;
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		/* Illegal parameter is in the parameter block */
		if (sense_code == SENCODE_INVALID_CDB_FIELD)
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			sense_buf[15] |= 0xc0;/* Std sense key specific field */
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		/* Illegal parameter is in the CDB block */
		sense_buf[16] = field_pointer >> 8;	/* MSB */
		sense_buf[17] = field_pointer;		/* LSB */
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	} else
		sense_buf[7] = 6;	/* Additional sense length */
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}

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static int aac_bounds_32(struct aac_dev * dev, struct scsi_cmnd * cmd, u64 lba)
{
	if (lba & 0xffffffff00000000LL) {
		int cid = scmd_id(cmd);
		dprintk((KERN_DEBUG "aacraid: Illegal lba\n"));
		cmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 |
			SAM_STAT_CHECK_CONDITION;
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		set_sense(&dev->fsa_dev[cid].sense_data,
		  HARDWARE_ERROR, SENCODE_INTERNAL_TARGET_FAILURE,
		  ASENCODE_INTERNAL_TARGET_FAILURE, 0, 0);
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		memcpy(cmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
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		       min_t(size_t, sizeof(dev->fsa_dev[cid].sense_data),
			     SCSI_SENSE_BUFFERSIZE));
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		cmd->scsi_done(cmd);
		return 1;
	}
	return 0;
}

static int aac_bounds_64(struct aac_dev * dev, struct scsi_cmnd * cmd, u64 lba)
{
	return 0;
}

static void io_callback(void *context, struct fib * fibptr);

static int aac_read_raw_io(struct fib * fib, struct scsi_cmnd * cmd, u64 lba, u32 count)
{
	u16 fibsize;
	struct aac_raw_io *readcmd;
	aac_fib_init(fib);
	readcmd = (struct aac_raw_io *) fib_data(fib);
	readcmd->block[0] = cpu_to_le32((u32)(lba&0xffffffff));
	readcmd->block[1] = cpu_to_le32((u32)((lba&0xffffffff00000000LL)>>32));
	readcmd->count = cpu_to_le32(count<<9);
	readcmd->cid = cpu_to_le16(scmd_id(cmd));
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	readcmd->flags = cpu_to_le16(IO_TYPE_READ);
969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024
	readcmd->bpTotal = 0;
	readcmd->bpComplete = 0;

	aac_build_sgraw(cmd, &readcmd->sg);
	fibsize = sizeof(struct aac_raw_io) + ((le32_to_cpu(readcmd->sg.count) - 1) * sizeof (struct sgentryraw));
	BUG_ON(fibsize > (fib->dev->max_fib_size - sizeof(struct aac_fibhdr)));
	/*
	 *	Now send the Fib to the adapter
	 */
	return aac_fib_send(ContainerRawIo,
			  fib,
			  fibsize,
			  FsaNormal,
			  0, 1,
			  (fib_callback) io_callback,
			  (void *) cmd);
}

static int aac_read_block64(struct fib * fib, struct scsi_cmnd * cmd, u64 lba, u32 count)
{
	u16 fibsize;
	struct aac_read64 *readcmd;
	aac_fib_init(fib);
	readcmd = (struct aac_read64 *) fib_data(fib);
	readcmd->command = cpu_to_le32(VM_CtHostRead64);
	readcmd->cid = cpu_to_le16(scmd_id(cmd));
	readcmd->sector_count = cpu_to_le16(count);
	readcmd->block = cpu_to_le32((u32)(lba&0xffffffff));
	readcmd->pad   = 0;
	readcmd->flags = 0;

	aac_build_sg64(cmd, &readcmd->sg);
	fibsize = sizeof(struct aac_read64) +
		((le32_to_cpu(readcmd->sg.count) - 1) *
		 sizeof (struct sgentry64));
	BUG_ON (fibsize > (fib->dev->max_fib_size -
				sizeof(struct aac_fibhdr)));
	/*
	 *	Now send the Fib to the adapter
	 */
	return aac_fib_send(ContainerCommand64,
			  fib,
			  fibsize,
			  FsaNormal,
			  0, 1,
			  (fib_callback) io_callback,
			  (void *) cmd);
}

static int aac_read_block(struct fib * fib, struct scsi_cmnd * cmd, u64 lba, u32 count)
{
	u16 fibsize;
	struct aac_read *readcmd;
	aac_fib_init(fib);
	readcmd = (struct aac_read *) fib_data(fib);
	readcmd->command = cpu_to_le32(VM_CtBlockRead);
1025
	readcmd->cid = cpu_to_le32(scmd_id(cmd));
1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046
	readcmd->block = cpu_to_le32((u32)(lba&0xffffffff));
	readcmd->count = cpu_to_le32(count * 512);

	aac_build_sg(cmd, &readcmd->sg);
	fibsize = sizeof(struct aac_read) +
			((le32_to_cpu(readcmd->sg.count) - 1) *
			 sizeof (struct sgentry));
	BUG_ON (fibsize > (fib->dev->max_fib_size -
				sizeof(struct aac_fibhdr)));
	/*
	 *	Now send the Fib to the adapter
	 */
	return aac_fib_send(ContainerCommand,
			  fib,
			  fibsize,
			  FsaNormal,
			  0, 1,
			  (fib_callback) io_callback,
			  (void *) cmd);
}

1047
static int aac_write_raw_io(struct fib * fib, struct scsi_cmnd * cmd, u64 lba, u32 count, int fua)
1048 1049 1050 1051 1052 1053 1054 1055 1056
{
	u16 fibsize;
	struct aac_raw_io *writecmd;
	aac_fib_init(fib);
	writecmd = (struct aac_raw_io *) fib_data(fib);
	writecmd->block[0] = cpu_to_le32((u32)(lba&0xffffffff));
	writecmd->block[1] = cpu_to_le32((u32)((lba&0xffffffff00000000LL)>>32));
	writecmd->count = cpu_to_le32(count<<9);
	writecmd->cid = cpu_to_le16(scmd_id(cmd));
1057 1058
	writecmd->flags = (fua && ((aac_cache & 5) != 1) &&
	  (((aac_cache & 5) != 5) || !fib->dev->cache_protected)) ?
1059 1060
		cpu_to_le16(IO_TYPE_WRITE|IO_SUREWRITE) :
		cpu_to_le16(IO_TYPE_WRITE);
1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078
	writecmd->bpTotal = 0;
	writecmd->bpComplete = 0;

	aac_build_sgraw(cmd, &writecmd->sg);
	fibsize = sizeof(struct aac_raw_io) + ((le32_to_cpu(writecmd->sg.count) - 1) * sizeof (struct sgentryraw));
	BUG_ON(fibsize > (fib->dev->max_fib_size - sizeof(struct aac_fibhdr)));
	/*
	 *	Now send the Fib to the adapter
	 */
	return aac_fib_send(ContainerRawIo,
			  fib,
			  fibsize,
			  FsaNormal,
			  0, 1,
			  (fib_callback) io_callback,
			  (void *) cmd);
}

1079
static int aac_write_block64(struct fib * fib, struct scsi_cmnd * cmd, u64 lba, u32 count, int fua)
1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109
{
	u16 fibsize;
	struct aac_write64 *writecmd;
	aac_fib_init(fib);
	writecmd = (struct aac_write64 *) fib_data(fib);
	writecmd->command = cpu_to_le32(VM_CtHostWrite64);
	writecmd->cid = cpu_to_le16(scmd_id(cmd));
	writecmd->sector_count = cpu_to_le16(count);
	writecmd->block = cpu_to_le32((u32)(lba&0xffffffff));
	writecmd->pad	= 0;
	writecmd->flags	= 0;

	aac_build_sg64(cmd, &writecmd->sg);
	fibsize = sizeof(struct aac_write64) +
		((le32_to_cpu(writecmd->sg.count) - 1) *
		 sizeof (struct sgentry64));
	BUG_ON (fibsize > (fib->dev->max_fib_size -
				sizeof(struct aac_fibhdr)));
	/*
	 *	Now send the Fib to the adapter
	 */
	return aac_fib_send(ContainerCommand64,
			  fib,
			  fibsize,
			  FsaNormal,
			  0, 1,
			  (fib_callback) io_callback,
			  (void *) cmd);
}

1110
static int aac_write_block(struct fib * fib, struct scsi_cmnd * cmd, u64 lba, u32 count, int fua)
1111 1112 1113 1114 1115 1116
{
	u16 fibsize;
	struct aac_write *writecmd;
	aac_fib_init(fib);
	writecmd = (struct aac_write *) fib_data(fib);
	writecmd->command = cpu_to_le32(VM_CtBlockWrite);
1117
	writecmd->cid = cpu_to_le32(scmd_id(cmd));
1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169
	writecmd->block = cpu_to_le32((u32)(lba&0xffffffff));
	writecmd->count = cpu_to_le32(count * 512);
	writecmd->sg.count = cpu_to_le32(1);
	/* ->stable is not used - it did mean which type of write */

	aac_build_sg(cmd, &writecmd->sg);
	fibsize = sizeof(struct aac_write) +
		((le32_to_cpu(writecmd->sg.count) - 1) *
		 sizeof (struct sgentry));
	BUG_ON (fibsize > (fib->dev->max_fib_size -
				sizeof(struct aac_fibhdr)));
	/*
	 *	Now send the Fib to the adapter
	 */
	return aac_fib_send(ContainerCommand,
			  fib,
			  fibsize,
			  FsaNormal,
			  0, 1,
			  (fib_callback) io_callback,
			  (void *) cmd);
}

static struct aac_srb * aac_scsi_common(struct fib * fib, struct scsi_cmnd * cmd)
{
	struct aac_srb * srbcmd;
	u32 flag;
	u32 timeout;

	aac_fib_init(fib);
	switch(cmd->sc_data_direction){
	case DMA_TO_DEVICE:
		flag = SRB_DataOut;
		break;
	case DMA_BIDIRECTIONAL:
		flag = SRB_DataIn | SRB_DataOut;
		break;
	case DMA_FROM_DEVICE:
		flag = SRB_DataIn;
		break;
	case DMA_NONE:
	default:	/* shuts up some versions of gcc */
		flag = SRB_NoDataXfer;
		break;
	}

	srbcmd = (struct aac_srb*) fib_data(fib);
	srbcmd->function = cpu_to_le32(SRBF_ExecuteScsi);
	srbcmd->channel  = cpu_to_le32(aac_logical_to_phys(scmd_channel(cmd)));
	srbcmd->id       = cpu_to_le32(scmd_id(cmd));
	srbcmd->lun      = cpu_to_le32(cmd->device->lun);
	srbcmd->flags    = cpu_to_le32(flag);
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	timeout = cmd->request->timeout/HZ;
1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186
	if (timeout == 0)
		timeout = 1;
	srbcmd->timeout  = cpu_to_le32(timeout);  // timeout in seconds
	srbcmd->retry_limit = 0; /* Obsolete parameter */
	srbcmd->cdb_size = cpu_to_le32(cmd->cmd_len);
	return srbcmd;
}

static void aac_srb_callback(void *context, struct fib * fibptr);

static int aac_scsi_64(struct fib * fib, struct scsi_cmnd * cmd)
{
	u16 fibsize;
	struct aac_srb * srbcmd = aac_scsi_common(fib, cmd);

	aac_build_sg64(cmd, (struct sgmap64*) &srbcmd->sg);
1187
	srbcmd->count = cpu_to_le32(scsi_bufflen(cmd));
1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214

	memset(srbcmd->cdb, 0, sizeof(srbcmd->cdb));
	memcpy(srbcmd->cdb, cmd->cmnd, cmd->cmd_len);
	/*
	 *	Build Scatter/Gather list
	 */
	fibsize = sizeof (struct aac_srb) - sizeof (struct sgentry) +
		((le32_to_cpu(srbcmd->sg.count) & 0xff) *
		 sizeof (struct sgentry64));
	BUG_ON (fibsize > (fib->dev->max_fib_size -
				sizeof(struct aac_fibhdr)));

	/*
	 *	Now send the Fib to the adapter
	 */
	return aac_fib_send(ScsiPortCommand64, fib,
				fibsize, FsaNormal, 0, 1,
				  (fib_callback) aac_srb_callback,
				  (void *) cmd);
}

static int aac_scsi_32(struct fib * fib, struct scsi_cmnd * cmd)
{
	u16 fibsize;
	struct aac_srb * srbcmd = aac_scsi_common(fib, cmd);

	aac_build_sg(cmd, (struct sgmap*)&srbcmd->sg);
1215
	srbcmd->count = cpu_to_le32(scsi_bufflen(cmd));
1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234

	memset(srbcmd->cdb, 0, sizeof(srbcmd->cdb));
	memcpy(srbcmd->cdb, cmd->cmnd, cmd->cmd_len);
	/*
	 *	Build Scatter/Gather list
	 */
	fibsize = sizeof (struct aac_srb) +
		(((le32_to_cpu(srbcmd->sg.count) & 0xff) - 1) *
		 sizeof (struct sgentry));
	BUG_ON (fibsize > (fib->dev->max_fib_size -
				sizeof(struct aac_fibhdr)));

	/*
	 *	Now send the Fib to the adapter
	 */
	return aac_fib_send(ScsiPortCommand, fib, fibsize, FsaNormal, 0, 1,
				  (fib_callback) aac_srb_callback, (void *) cmd);
}

1235 1236
static int aac_scsi_32_64(struct fib * fib, struct scsi_cmnd * cmd)
{
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Leubner, Achim 已提交
1237 1238
	if ((sizeof(dma_addr_t) > 4) && fib->dev->needs_dac &&
	    (fib->dev->adapter_info.options & AAC_OPT_SGMAP_HOST64))
1239 1240 1241 1242
		return FAILED;
	return aac_scsi_32(fib, cmd);
}

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1243 1244 1245 1246 1247
int aac_get_adapter_info(struct aac_dev* dev)
{
	struct fib* fibptr;
	int rcode;
	u32 tmp;
1248 1249 1250
	struct aac_adapter_info *info;
	struct aac_bus_info *command;
	struct aac_bus_info_response *bus_info;
1251

1252
	if (!(fibptr = aac_fib_alloc(dev)))
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Linus Torvalds 已提交
1253 1254
		return -ENOMEM;

1255
	aac_fib_init(fibptr);
1256 1257
	info = (struct aac_adapter_info *) fib_data(fibptr);
	memset(info,0,sizeof(*info));
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Linus Torvalds 已提交
1258

1259
	rcode = aac_fib_send(RequestAdapterInfo,
1260
			 fibptr,
1261
			 sizeof(*info),
1262
			 FsaNormal,
1263
			 -1, 1, /* First `interrupt' command uses special wait */
1264
			 NULL,
1265 1266 1267
			 NULL);

	if (rcode < 0) {
1268 1269 1270 1271 1272 1273
		/* FIB should be freed only after
		 * getting the response from the F/W */
		if (rcode != -ERESTARTSYS) {
			aac_fib_complete(fibptr);
			aac_fib_free(fibptr);
		}
1274 1275 1276
		return rcode;
	}
	memcpy(&dev->adapter_info, info, sizeof(*info));
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1277

1278
	if (dev->adapter_info.options & AAC_OPT_SUPPLEMENT_ADAPTER_INFO) {
1279
		struct aac_supplement_adapter_info * sinfo;
1280

1281
		aac_fib_init(fibptr);
1282

1283
		sinfo = (struct aac_supplement_adapter_info *) fib_data(fibptr);
1284

1285
		memset(sinfo,0,sizeof(*sinfo));
1286

1287
		rcode = aac_fib_send(RequestSupplementAdapterInfo,
1288
				 fibptr,
1289
				 sizeof(*sinfo),
1290 1291 1292 1293 1294 1295
				 FsaNormal,
				 1, 1,
				 NULL,
				 NULL);

		if (rcode >= 0)
1296
			memcpy(&dev->supplement_adapter_info, sinfo, sizeof(*sinfo));
1297 1298 1299 1300 1301 1302
		if (rcode == -ERESTARTSYS) {
			fibptr = aac_fib_alloc(dev);
			if (!fibptr)
				return -ENOMEM;
		}

1303
	}
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1304

1305

1306 1307
	/*
	 * GetBusInfo
1308 1309
	 */

1310
	aac_fib_init(fibptr);
1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322

	bus_info = (struct aac_bus_info_response *) fib_data(fibptr);

	memset(bus_info, 0, sizeof(*bus_info));

	command = (struct aac_bus_info *)bus_info;

	command->Command = cpu_to_le32(VM_Ioctl);
	command->ObjType = cpu_to_le32(FT_DRIVE);
	command->MethodId = cpu_to_le32(1);
	command->CtlCmd = cpu_to_le32(GetBusInfo);

1323
	rcode = aac_fib_send(ContainerCommand,
1324 1325 1326 1327 1328 1329
			 fibptr,
			 sizeof (*bus_info),
			 FsaNormal,
			 1, 1,
			 NULL, NULL);

1330 1331
	/* reasoned default */
	dev->maximum_num_physicals = 16;
1332 1333 1334 1335 1336
	if (rcode >= 0 && le32_to_cpu(bus_info->Status) == ST_OK) {
		dev->maximum_num_physicals = le32_to_cpu(bus_info->TargetsPerBus);
		dev->maximum_num_channels = le32_to_cpu(bus_info->BusCount);
	}

1337
	if (!dev->in_reset) {
1338
		char buffer[16];
1339 1340
		tmp = le32_to_cpu(dev->adapter_info.kernelrev);
		printk(KERN_INFO "%s%d: kernel %d.%d-%d[%d] %.*s\n",
1341
			dev->name,
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1342 1343 1344 1345
			dev->id,
			tmp>>24,
			(tmp>>16)&0xff,
			tmp&0xff,
1346 1347 1348
			le32_to_cpu(dev->adapter_info.kernelbuild),
			(int)sizeof(dev->supplement_adapter_info.BuildDate),
			dev->supplement_adapter_info.BuildDate);
1349 1350
		tmp = le32_to_cpu(dev->adapter_info.monitorrev);
		printk(KERN_INFO "%s%d: monitor %d.%d-%d[%d]\n",
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1351 1352 1353
			dev->name, dev->id,
			tmp>>24,(tmp>>16)&0xff,tmp&0xff,
			le32_to_cpu(dev->adapter_info.monitorbuild));
1354 1355
		tmp = le32_to_cpu(dev->adapter_info.biosrev);
		printk(KERN_INFO "%s%d: bios %d.%d-%d[%d]\n",
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1356 1357 1358
			dev->name, dev->id,
			tmp>>24,(tmp>>16)&0xff,tmp&0xff,
			le32_to_cpu(dev->adapter_info.biosbuild));
1359
		buffer[0] = '\0';
1360
		if (aac_get_serial_number(
1361 1362 1363
		  shost_to_class(dev->scsi_host_ptr), buffer))
			printk(KERN_INFO "%s%d: serial %s",
			  dev->name, dev->id, buffer);
1364 1365 1366 1367 1368 1369
		if (dev->supplement_adapter_info.VpdInfo.Tsid[0]) {
			printk(KERN_INFO "%s%d: TSID %.*s\n",
			  dev->name, dev->id,
			  (int)sizeof(dev->supplement_adapter_info.VpdInfo.Tsid),
			  dev->supplement_adapter_info.VpdInfo.Tsid);
		}
1370
		if (!aac_check_reset || ((aac_check_reset == 1) &&
1371 1372
		  (dev->supplement_adapter_info.SupportedOptions2 &
		  AAC_OPTION_IGNORE_RESET))) {
1373 1374 1375
			printk(KERN_INFO "%s%d: Reset Adapter Ignored\n",
			  dev->name, dev->id);
		}
1376
	}
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1377

1378
	dev->cache_protected = 0;
1379 1380
	dev->jbod = ((dev->supplement_adapter_info.FeatureBits &
		AAC_FEATURE_JBOD) != 0);
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1381 1382
	dev->nondasd_support = 0;
	dev->raid_scsi_mode = 0;
1383
	if(dev->adapter_info.options & AAC_OPT_NONDASD)
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1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404
		dev->nondasd_support = 1;

	/*
	 * If the firmware supports ROMB RAID/SCSI mode and we are currently
	 * in RAID/SCSI mode, set the flag. For now if in this mode we will
	 * force nondasd support on. If we decide to allow the non-dasd flag
	 * additional changes changes will have to be made to support
	 * RAID/SCSI.  the function aac_scsi_cmd in this module will have to be
	 * changed to support the new dev->raid_scsi_mode flag instead of
	 * leaching off of the dev->nondasd_support flag. Also in linit.c the
	 * function aac_detect will have to be modified where it sets up the
	 * max number of channels based on the aac->nondasd_support flag only.
	 */
	if ((dev->adapter_info.options & AAC_OPT_SCSI_MANAGED) &&
	    (dev->adapter_info.options & AAC_OPT_RAID_SCSI_MODE)) {
		dev->nondasd_support = 1;
		dev->raid_scsi_mode = 1;
	}
	if (dev->raid_scsi_mode != 0)
		printk(KERN_INFO "%s%d: ROMB RAID/SCSI mode enabled\n",
				dev->name, dev->id);
1405

1406
	if (nondasd != -1)
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1407
		dev->nondasd_support = (nondasd!=0);
1408
	if (dev->nondasd_support && !dev->in_reset)
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1409 1410
		printk(KERN_INFO "%s%d: Non-DASD support enabled.\n",dev->name, dev->id);

1411
	if (dma_get_required_mask(&dev->pdev->dev) > DMA_BIT_MASK(32))
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1412
		dev->needs_dac = 1;
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1413
	dev->dac_support = 0;
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1414 1415
	if ((sizeof(dma_addr_t) > 4) && dev->needs_dac &&
	    (dev->adapter_info.options & AAC_OPT_SGMAP_HOST64)) {
1416 1417 1418
		if (!dev->in_reset)
			printk(KERN_INFO "%s%d: 64bit support enabled.\n",
				dev->name, dev->id);
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1419 1420 1421 1422 1423 1424
		dev->dac_support = 1;
	}

	if(dacmode != -1) {
		dev->dac_support = (dacmode!=0);
	}
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1425 1426 1427 1428 1429 1430 1431 1432 1433

	/* avoid problems with AAC_QUIRK_SCSI_32 controllers */
	if (dev->dac_support &&	(aac_get_driver_ident(dev->cardtype)->quirks
		& AAC_QUIRK_SCSI_32)) {
		dev->nondasd_support = 0;
		dev->jbod = 0;
		expose_physicals = 0;
	}

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1434
	if(dev->dac_support != 0) {
1435 1436
		if (!pci_set_dma_mask(dev->pdev, DMA_BIT_MASK(64)) &&
			!pci_set_consistent_dma_mask(dev->pdev, DMA_BIT_MASK(64))) {
1437 1438 1439
			if (!dev->in_reset)
				printk(KERN_INFO"%s%d: 64 Bit DAC enabled\n",
					dev->name, dev->id);
1440 1441
		} else if (!pci_set_dma_mask(dev->pdev, DMA_BIT_MASK(32)) &&
			!pci_set_consistent_dma_mask(dev->pdev, DMA_BIT_MASK(32))) {
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1442 1443 1444 1445 1446 1447 1448 1449 1450
			printk(KERN_INFO"%s%d: DMA mask set failed, 64 Bit DAC disabled\n",
				dev->name, dev->id);
			dev->dac_support = 0;
		} else {
			printk(KERN_WARNING"%s%d: No suitable DMA available.\n",
				dev->name, dev->id);
			rcode = -ENOMEM;
		}
	}
1451
	/*
1452 1453
	 * Deal with configuring for the individualized limits of each packet
	 * interface.
1454
	 */
1455
	dev->a_ops.adapter_scsi = (dev->dac_support)
1456 1457 1458
	  ? ((aac_get_driver_ident(dev->cardtype)->quirks & AAC_QUIRK_SCSI_32)
				? aac_scsi_32_64
				: aac_scsi_64)
1459 1460 1461 1462 1463 1464 1465 1466 1467
				: aac_scsi_32;
	if (dev->raw_io_interface) {
		dev->a_ops.adapter_bounds = (dev->raw_io_64)
					? aac_bounds_64
					: aac_bounds_32;
		dev->a_ops.adapter_read = aac_read_raw_io;
		dev->a_ops.adapter_write = aac_write_raw_io;
	} else {
		dev->a_ops.adapter_bounds = aac_bounds_32;
1468
		dev->scsi_host_ptr->sg_tablesize = (dev->max_fib_size -
1469
			sizeof(struct aac_fibhdr) -
1470 1471
			sizeof(struct aac_write) + sizeof(struct sgentry)) /
				sizeof(struct sgentry);
1472
		if (dev->dac_support) {
1473 1474
			dev->a_ops.adapter_read = aac_read_block64;
			dev->a_ops.adapter_write = aac_write_block64;
1475 1476
			/*
			 * 38 scatter gather elements
1477 1478 1479 1480 1481
			 */
			dev->scsi_host_ptr->sg_tablesize =
				(dev->max_fib_size -
				sizeof(struct aac_fibhdr) -
				sizeof(struct aac_write64) +
1482 1483
				sizeof(struct sgentry64)) /
					sizeof(struct sgentry64);
1484 1485 1486
		} else {
			dev->a_ops.adapter_read = aac_read_block;
			dev->a_ops.adapter_write = aac_write_block;
1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501
		}
		dev->scsi_host_ptr->max_sectors = AAC_MAX_32BIT_SGBCOUNT;
		if(!(dev->adapter_info.options & AAC_OPT_NEW_COMM)) {
			/*
			 * Worst case size that could cause sg overflow when
			 * we break up SG elements that are larger than 64KB.
			 * Would be nice if we could tell the SCSI layer what
			 * the maximum SG element size can be. Worst case is
			 * (sg_tablesize-1) 4KB elements with one 64KB
			 * element.
			 *	32bit -> 468 or 238KB	64bit -> 424 or 212KB
			 */
			dev->scsi_host_ptr->max_sectors =
			  (dev->scsi_host_ptr->sg_tablesize * 8) + 112;
		}
1502
	}
1503 1504 1505 1506 1507
	/* FIB should be freed only after getting the response from the F/W */
	if (rcode != -ERESTARTSYS) {
		aac_fib_complete(fibptr);
		aac_fib_free(fibptr);
	}
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1508 1509 1510 1511 1512

	return rcode;
}


1513
static void io_callback(void *context, struct fib * fibptr)
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{
	struct aac_dev *dev;
	struct aac_read_reply *readreply;
	struct scsi_cmnd *scsicmd;
	u32 cid;

	scsicmd = (struct scsi_cmnd *) context;

1522 1523 1524
	if (!aac_valid_context(scsicmd, fibptr))
		return;

1525
	dev = fibptr->dev;
1526
	cid = scmd_id(scsicmd);
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1527

1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561
	if (nblank(dprintk(x))) {
		u64 lba;
		switch (scsicmd->cmnd[0]) {
		case WRITE_6:
		case READ_6:
			lba = ((scsicmd->cmnd[1] & 0x1F) << 16) |
			    (scsicmd->cmnd[2] << 8) | scsicmd->cmnd[3];
			break;
		case WRITE_16:
		case READ_16:
			lba = ((u64)scsicmd->cmnd[2] << 56) |
			      ((u64)scsicmd->cmnd[3] << 48) |
			      ((u64)scsicmd->cmnd[4] << 40) |
			      ((u64)scsicmd->cmnd[5] << 32) |
			      ((u64)scsicmd->cmnd[6] << 24) |
			      (scsicmd->cmnd[7] << 16) |
			      (scsicmd->cmnd[8] << 8) | scsicmd->cmnd[9];
			break;
		case WRITE_12:
		case READ_12:
			lba = ((u64)scsicmd->cmnd[2] << 24) |
			      (scsicmd->cmnd[3] << 16) |
			      (scsicmd->cmnd[4] << 8) | scsicmd->cmnd[5];
			break;
		default:
			lba = ((u64)scsicmd->cmnd[2] << 24) |
			       (scsicmd->cmnd[3] << 16) |
			       (scsicmd->cmnd[4] << 8) | scsicmd->cmnd[5];
			break;
		}
		printk(KERN_DEBUG
		  "io_callback[cpu %d]: lba = %llu, t = %ld.\n",
		  smp_processor_id(), (unsigned long long)lba, jiffies);
	}
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1562

E
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1563
	BUG_ON(fibptr == NULL);
1564 1565 1566

	scsi_dma_unmap(scsicmd);

L
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1567
	readreply = (struct aac_read_reply *)fib_data(fibptr);
1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583
	switch (le32_to_cpu(readreply->status)) {
	case ST_OK:
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 |
			SAM_STAT_GOOD;
		dev->fsa_dev[cid].sense_data.sense_key = NO_SENSE;
		break;
	case ST_NOT_READY:
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 |
			SAM_STAT_CHECK_CONDITION;
		set_sense(&dev->fsa_dev[cid].sense_data, NOT_READY,
		  SENCODE_BECOMING_READY, ASENCODE_BECOMING_READY, 0, 0);
		memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
		       min_t(size_t, sizeof(dev->fsa_dev[cid].sense_data),
			     SCSI_SENSE_BUFFERSIZE));
		break;
	default:
1584
#ifdef AAC_DETAILED_STATUS_INFO
1585
		printk(KERN_WARNING "io_callback: io failed, status = %d\n",
1586 1587
		  le32_to_cpu(readreply->status));
#endif
1588 1589
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 |
			SAM_STAT_CHECK_CONDITION;
1590 1591 1592
		set_sense(&dev->fsa_dev[cid].sense_data,
		  HARDWARE_ERROR, SENCODE_INTERNAL_TARGET_FAILURE,
		  ASENCODE_INTERNAL_TARGET_FAILURE, 0, 0);
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		memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
1594 1595
		       min_t(size_t, sizeof(dev->fsa_dev[cid].sense_data),
			     SCSI_SENSE_BUFFERSIZE));
1596
		break;
L
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1597
	}
1598 1599
	aac_fib_complete(fibptr);
	aac_fib_free(fibptr);
L
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1600

1601
	scsicmd->scsi_done(scsicmd);
L
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1602 1603
}

1604
static int aac_read(struct scsi_cmnd * scsicmd)
L
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1605
{
1606
	u64 lba;
L
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	u32 count;
	int status;
	struct aac_dev *dev;
	struct fib * cmd_fibcontext;
1611
	int cid;
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1612 1613 1614 1615 1616

	dev = (struct aac_dev *)scsicmd->device->host->hostdata;
	/*
	 *	Get block address and transfer length
	 */
1617 1618
	switch (scsicmd->cmnd[0]) {
	case READ_6:
1619
		dprintk((KERN_DEBUG "aachba: received a read(6) command on id %d.\n", scmd_id(scsicmd)));
L
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1620

1621
		lba = ((scsicmd->cmnd[1] & 0x1F) << 16) |
1622
			(scsicmd->cmnd[2] << 8) | scsicmd->cmnd[3];
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1623 1624 1625 1626
		count = scsicmd->cmnd[4];

		if (count == 0)
			count = 256;
1627 1628
		break;
	case READ_16:
1629
		dprintk((KERN_DEBUG "aachba: received a read(16) command on id %d.\n", scmd_id(scsicmd)));
1630

1631 1632
		lba =	((u64)scsicmd->cmnd[2] << 56) |
			((u64)scsicmd->cmnd[3] << 48) |
1633 1634
			((u64)scsicmd->cmnd[4] << 40) |
			((u64)scsicmd->cmnd[5] << 32) |
1635
			((u64)scsicmd->cmnd[6] << 24) |
1636 1637
			(scsicmd->cmnd[7] << 16) |
			(scsicmd->cmnd[8] << 8) | scsicmd->cmnd[9];
1638
		count = (scsicmd->cmnd[10] << 24) |
1639 1640 1641 1642
			(scsicmd->cmnd[11] << 16) |
			(scsicmd->cmnd[12] << 8) | scsicmd->cmnd[13];
		break;
	case READ_12:
1643
		dprintk((KERN_DEBUG "aachba: received a read(12) command on id %d.\n", scmd_id(scsicmd)));
1644

1645
		lba = ((u64)scsicmd->cmnd[2] << 24) |
1646
			(scsicmd->cmnd[3] << 16) |
1647 1648
			(scsicmd->cmnd[4] << 8) | scsicmd->cmnd[5];
		count = (scsicmd->cmnd[6] << 24) |
1649
			(scsicmd->cmnd[7] << 16) |
1650
			(scsicmd->cmnd[8] << 8) | scsicmd->cmnd[9];
1651 1652
		break;
	default:
1653
		dprintk((KERN_DEBUG "aachba: received a read(10) command on id %d.\n", scmd_id(scsicmd)));
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1654

1655 1656
		lba = ((u64)scsicmd->cmnd[2] << 24) |
			(scsicmd->cmnd[3] << 16) |
1657
			(scsicmd->cmnd[4] << 8) | scsicmd->cmnd[5];
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1658
		count = (scsicmd->cmnd[7] << 8) | scsicmd->cmnd[8];
1659
		break;
L
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1660
	}
1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676

	if ((lba + count) > (dev->fsa_dev[scmd_id(scsicmd)].size)) {
		cid = scmd_id(scsicmd);
		dprintk((KERN_DEBUG "aacraid: Illegal lba\n"));
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 |
			SAM_STAT_CHECK_CONDITION;
		set_sense(&dev->fsa_dev[cid].sense_data,
			  HARDWARE_ERROR, SENCODE_INTERNAL_TARGET_FAILURE,
			  ASENCODE_INTERNAL_TARGET_FAILURE, 0, 0);
		memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
		       min_t(size_t, sizeof(dev->fsa_dev[cid].sense_data),
			     SCSI_SENSE_BUFFERSIZE));
		scsicmd->scsi_done(scsicmd);
		return 1;
	}

1677
	dprintk((KERN_DEBUG "aac_read[cpu %d]: lba = %llu, t = %ld.\n",
1678
	  smp_processor_id(), (unsigned long long)lba, jiffies));
1679
	if (aac_adapter_bounds(dev,scsicmd,lba))
1680
		return 0;
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1681 1682 1683
	/*
	 *	Alocate and initialize a Fib
	 */
1684
	if (!(cmd_fibcontext = aac_fib_alloc(dev))) {
1685
		printk(KERN_WARNING "aac_read: fib allocation failed\n");
L
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1686 1687 1688
		return -1;
	}

1689
	status = aac_adapter_read(cmd_fibcontext, scsicmd, lba, count);
L
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1690 1691 1692 1693

	/*
	 *	Check that the command queued to the controller
	 */
1694 1695
	if (status == -EINPROGRESS) {
		scsicmd->SCp.phase = AAC_OWNER_FIRMWARE;
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		return 0;
1697
	}
1698

1699
	printk(KERN_WARNING "aac_read: aac_fib_send failed with status: %d.\n", status);
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1700 1701 1702 1703
	/*
	 *	For some reason, the Fib didn't queue, return QUEUE_FULL
	 */
	scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_TASK_SET_FULL;
1704
	scsicmd->scsi_done(scsicmd);
1705 1706
	aac_fib_complete(cmd_fibcontext);
	aac_fib_free(cmd_fibcontext);
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	return 0;
}

1710
static int aac_write(struct scsi_cmnd * scsicmd)
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{
1712
	u64 lba;
L
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1713
	u32 count;
1714
	int fua;
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1715 1716 1717
	int status;
	struct aac_dev *dev;
	struct fib * cmd_fibcontext;
1718
	int cid;
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1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729

	dev = (struct aac_dev *)scsicmd->device->host->hostdata;
	/*
	 *	Get block address and transfer length
	 */
	if (scsicmd->cmnd[0] == WRITE_6)	/* 6 byte command */
	{
		lba = ((scsicmd->cmnd[1] & 0x1F) << 16) | (scsicmd->cmnd[2] << 8) | scsicmd->cmnd[3];
		count = scsicmd->cmnd[4];
		if (count == 0)
			count = 256;
1730
		fua = 0;
1731
	} else if (scsicmd->cmnd[0] == WRITE_16) { /* 16 byte command */
1732
		dprintk((KERN_DEBUG "aachba: received a write(16) command on id %d.\n", scmd_id(scsicmd)));
1733

1734
		lba =	((u64)scsicmd->cmnd[2] << 56) |
1735 1736 1737
			((u64)scsicmd->cmnd[3] << 48) |
			((u64)scsicmd->cmnd[4] << 40) |
			((u64)scsicmd->cmnd[5] << 32) |
1738
			((u64)scsicmd->cmnd[6] << 24) |
1739 1740 1741 1742
			(scsicmd->cmnd[7] << 16) |
			(scsicmd->cmnd[8] << 8) | scsicmd->cmnd[9];
		count = (scsicmd->cmnd[10] << 24) | (scsicmd->cmnd[11] << 16) |
			(scsicmd->cmnd[12] << 8) | scsicmd->cmnd[13];
1743
		fua = scsicmd->cmnd[1] & 0x8;
1744
	} else if (scsicmd->cmnd[0] == WRITE_12) { /* 12 byte command */
1745
		dprintk((KERN_DEBUG "aachba: received a write(12) command on id %d.\n", scmd_id(scsicmd)));
1746 1747 1748 1749 1750

		lba = ((u64)scsicmd->cmnd[2] << 24) | (scsicmd->cmnd[3] << 16)
		    | (scsicmd->cmnd[4] << 8) | scsicmd->cmnd[5];
		count = (scsicmd->cmnd[6] << 24) | (scsicmd->cmnd[7] << 16)
		      | (scsicmd->cmnd[8] << 8) | scsicmd->cmnd[9];
1751
		fua = scsicmd->cmnd[1] & 0x8;
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1752
	} else {
1753
		dprintk((KERN_DEBUG "aachba: received a write(10) command on id %d.\n", scmd_id(scsicmd)));
1754
		lba = ((u64)scsicmd->cmnd[2] << 24) | (scsicmd->cmnd[3] << 16) | (scsicmd->cmnd[4] << 8) | scsicmd->cmnd[5];
L
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1755
		count = (scsicmd->cmnd[7] << 8) | scsicmd->cmnd[8];
1756
		fua = scsicmd->cmnd[1] & 0x8;
L
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1757
	}
1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773

	if ((lba + count) > (dev->fsa_dev[scmd_id(scsicmd)].size)) {
		cid = scmd_id(scsicmd);
		dprintk((KERN_DEBUG "aacraid: Illegal lba\n"));
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 |
			SAM_STAT_CHECK_CONDITION;
		set_sense(&dev->fsa_dev[cid].sense_data,
			  HARDWARE_ERROR, SENCODE_INTERNAL_TARGET_FAILURE,
			  ASENCODE_INTERNAL_TARGET_FAILURE, 0, 0);
		memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
		       min_t(size_t, sizeof(dev->fsa_dev[cid].sense_data),
			     SCSI_SENSE_BUFFERSIZE));
		scsicmd->scsi_done(scsicmd);
		return 1;
	}

1774
	dprintk((KERN_DEBUG "aac_write[cpu %d]: lba = %llu, t = %ld.\n",
L
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1775
	  smp_processor_id(), (unsigned long long)lba, jiffies));
1776
	if (aac_adapter_bounds(dev,scsicmd,lba))
1777
		return 0;
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1778 1779 1780
	/*
	 *	Allocate and initialize a Fib then setup a BlockWrite command
	 */
1781
	if (!(cmd_fibcontext = aac_fib_alloc(dev))) {
1782 1783 1784 1785 1786 1787 1788 1789
		/* FIB temporarily unavailable,not catastrophic failure */

		/* scsicmd->result = DID_ERROR << 16;
		 * scsicmd->scsi_done(scsicmd);
		 * return 0;
		 */
		printk(KERN_WARNING "aac_write: fib allocation failed\n");
		return -1;
L
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1790 1791
	}

1792
	status = aac_adapter_write(cmd_fibcontext, scsicmd, lba, count, fua);
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1793 1794 1795 1796

	/*
	 *	Check that the command queued to the controller
	 */
1797 1798
	if (status == -EINPROGRESS) {
		scsicmd->SCp.phase = AAC_OWNER_FIRMWARE;
L
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1799 1800 1801
		return 0;
	}

1802
	printk(KERN_WARNING "aac_write: aac_fib_send failed with status: %d\n", status);
L
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1803 1804 1805 1806
	/*
	 *	For some reason, the Fib didn't queue, return QUEUE_FULL
	 */
	scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_TASK_SET_FULL;
1807
	scsicmd->scsi_done(scsicmd);
L
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1808

1809 1810
	aac_fib_complete(cmd_fibcontext);
	aac_fib_free(cmd_fibcontext);
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1811 1812 1813 1814 1815 1816 1817 1818 1819 1820
	return 0;
}

static void synchronize_callback(void *context, struct fib *fibptr)
{
	struct aac_synchronize_reply *synchronizereply;
	struct scsi_cmnd *cmd;

	cmd = context;

1821 1822 1823
	if (!aac_valid_context(cmd, fibptr))
		return;

1824
	dprintk((KERN_DEBUG "synchronize_callback[cpu %d]: t = %ld.\n",
L
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1825 1826 1827 1828 1829 1830
				smp_processor_id(), jiffies));
	BUG_ON(fibptr == NULL);


	synchronizereply = fib_data(fibptr);
	if (le32_to_cpu(synchronizereply->status) == CT_OK)
1831
		cmd->result = DID_OK << 16 |
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1832 1833 1834
			COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
	else {
		struct scsi_device *sdev = cmd->device;
1835
		struct aac_dev *dev = fibptr->dev;
1836
		u32 cid = sdev_id(sdev);
1837
		printk(KERN_WARNING
L
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1838 1839
		     "synchronize_callback: synchronize failed, status = %d\n",
		     le32_to_cpu(synchronizereply->status));
1840
		cmd->result = DID_OK << 16 |
L
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1841
			COMMAND_COMPLETE << 8 | SAM_STAT_CHECK_CONDITION;
1842 1843 1844
		set_sense(&dev->fsa_dev[cid].sense_data,
		  HARDWARE_ERROR, SENCODE_INTERNAL_TARGET_FAILURE,
		  ASENCODE_INTERNAL_TARGET_FAILURE, 0, 0);
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1845
		memcpy(cmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
1846 1847
		       min_t(size_t, sizeof(dev->fsa_dev[cid].sense_data),
			     SCSI_SENSE_BUFFERSIZE));
L
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1848 1849
	}

1850 1851
	aac_fib_complete(fibptr);
	aac_fib_free(fibptr);
1852
	cmd->scsi_done(cmd);
L
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1853 1854
}

1855
static int aac_synchronize(struct scsi_cmnd *scsicmd)
L
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1856 1857 1858 1859 1860 1861 1862
{
	int status;
	struct fib *cmd_fibcontext;
	struct aac_synchronize *synchronizecmd;
	struct scsi_cmnd *cmd;
	struct scsi_device *sdev = scsicmd->device;
	int active = 0;
1863
	struct aac_dev *aac;
1864 1865 1866
	u64 lba = ((u64)scsicmd->cmnd[2] << 24) | (scsicmd->cmnd[3] << 16) |
		(scsicmd->cmnd[4] << 8) | scsicmd->cmnd[5];
	u32 count = (scsicmd->cmnd[7] << 8) | scsicmd->cmnd[8];
L
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1867 1868 1869
	unsigned long flags;

	/*
1870 1871
	 * Wait for all outstanding queued commands to complete to this
	 * specific target (block).
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1872 1873 1874
	 */
	spin_lock_irqsave(&sdev->list_lock, flags);
	list_for_each_entry(cmd, &sdev->cmd_list, list)
1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919
		if (cmd->SCp.phase == AAC_OWNER_FIRMWARE) {
			u64 cmnd_lba;
			u32 cmnd_count;

			if (cmd->cmnd[0] == WRITE_6) {
				cmnd_lba = ((cmd->cmnd[1] & 0x1F) << 16) |
					(cmd->cmnd[2] << 8) |
					cmd->cmnd[3];
				cmnd_count = cmd->cmnd[4];
				if (cmnd_count == 0)
					cmnd_count = 256;
			} else if (cmd->cmnd[0] == WRITE_16) {
				cmnd_lba = ((u64)cmd->cmnd[2] << 56) |
					((u64)cmd->cmnd[3] << 48) |
					((u64)cmd->cmnd[4] << 40) |
					((u64)cmd->cmnd[5] << 32) |
					((u64)cmd->cmnd[6] << 24) |
					(cmd->cmnd[7] << 16) |
					(cmd->cmnd[8] << 8) |
					cmd->cmnd[9];
				cmnd_count = (cmd->cmnd[10] << 24) |
					(cmd->cmnd[11] << 16) |
					(cmd->cmnd[12] << 8) |
					cmd->cmnd[13];
			} else if (cmd->cmnd[0] == WRITE_12) {
				cmnd_lba = ((u64)cmd->cmnd[2] << 24) |
					(cmd->cmnd[3] << 16) |
					(cmd->cmnd[4] << 8) |
					cmd->cmnd[5];
				cmnd_count = (cmd->cmnd[6] << 24) |
					(cmd->cmnd[7] << 16) |
					(cmd->cmnd[8] << 8) |
					cmd->cmnd[9];
			} else if (cmd->cmnd[0] == WRITE_10) {
				cmnd_lba = ((u64)cmd->cmnd[2] << 24) |
					(cmd->cmnd[3] << 16) |
					(cmd->cmnd[4] << 8) |
					cmd->cmnd[5];
				cmnd_count = (cmd->cmnd[7] << 8) |
					cmd->cmnd[8];
			} else
				continue;
			if (((cmnd_lba + cmnd_count) < lba) ||
			  (count && ((lba + count) < cmnd_lba)))
				continue;
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1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931
			++active;
			break;
		}

	spin_unlock_irqrestore(&sdev->list_lock, flags);

	/*
	 *	Yield the processor (requeue for later)
	 */
	if (active)
		return SCSI_MLQUEUE_DEVICE_BUSY;

1932
	aac = (struct aac_dev *)sdev->host->hostdata;
1933 1934 1935
	if (aac->in_reset)
		return SCSI_MLQUEUE_HOST_BUSY;

L
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1936
	/*
1937
	 *	Allocate and initialize a Fib
L
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1938
	 */
1939
	if (!(cmd_fibcontext = aac_fib_alloc(aac)))
L
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1940 1941
		return SCSI_MLQUEUE_HOST_BUSY;

1942
	aac_fib_init(cmd_fibcontext);
L
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1943 1944 1945 1946

	synchronizecmd = fib_data(cmd_fibcontext);
	synchronizecmd->command = cpu_to_le32(VM_ContainerConfig);
	synchronizecmd->type = cpu_to_le32(CT_FLUSH_CACHE);
1947
	synchronizecmd->cid = cpu_to_le32(scmd_id(scsicmd));
1948
	synchronizecmd->count =
L
Linus Torvalds 已提交
1949 1950 1951 1952 1953
	     cpu_to_le32(sizeof(((struct aac_synchronize_reply *)NULL)->data));

	/*
	 *	Now send the Fib to the adapter
	 */
1954
	status = aac_fib_send(ContainerCommand,
L
Linus Torvalds 已提交
1955 1956 1957 1958 1959 1960 1961 1962 1963 1964
		  cmd_fibcontext,
		  sizeof(struct aac_synchronize),
		  FsaNormal,
		  0, 1,
		  (fib_callback)synchronize_callback,
		  (void *)scsicmd);

	/*
	 *	Check that the command queued to the controller
	 */
1965 1966
	if (status == -EINPROGRESS) {
		scsicmd->SCp.phase = AAC_OWNER_FIRMWARE;
L
Linus Torvalds 已提交
1967
		return 0;
1968
	}
L
Linus Torvalds 已提交
1969

1970
	printk(KERN_WARNING
1971 1972 1973
		"aac_synchronize: aac_fib_send failed with status: %d.\n", status);
	aac_fib_complete(cmd_fibcontext);
	aac_fib_free(cmd_fibcontext);
L
Linus Torvalds 已提交
1974 1975 1976
	return SCSI_MLQUEUE_HOST_BUSY;
}

1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054
static void aac_start_stop_callback(void *context, struct fib *fibptr)
{
	struct scsi_cmnd *scsicmd = context;

	if (!aac_valid_context(scsicmd, fibptr))
		return;

	BUG_ON(fibptr == NULL);

	scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;

	aac_fib_complete(fibptr);
	aac_fib_free(fibptr);
	scsicmd->scsi_done(scsicmd);
}

static int aac_start_stop(struct scsi_cmnd *scsicmd)
{
	int status;
	struct fib *cmd_fibcontext;
	struct aac_power_management *pmcmd;
	struct scsi_device *sdev = scsicmd->device;
	struct aac_dev *aac = (struct aac_dev *)sdev->host->hostdata;

	if (!(aac->supplement_adapter_info.SupportedOptions2 &
	      AAC_OPTION_POWER_MANAGEMENT)) {
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 |
				  SAM_STAT_GOOD;
		scsicmd->scsi_done(scsicmd);
		return 0;
	}

	if (aac->in_reset)
		return SCSI_MLQUEUE_HOST_BUSY;

	/*
	 *	Allocate and initialize a Fib
	 */
	cmd_fibcontext = aac_fib_alloc(aac);
	if (!cmd_fibcontext)
		return SCSI_MLQUEUE_HOST_BUSY;

	aac_fib_init(cmd_fibcontext);

	pmcmd = fib_data(cmd_fibcontext);
	pmcmd->command = cpu_to_le32(VM_ContainerConfig);
	pmcmd->type = cpu_to_le32(CT_POWER_MANAGEMENT);
	/* Eject bit ignored, not relevant */
	pmcmd->sub = (scsicmd->cmnd[4] & 1) ?
		cpu_to_le32(CT_PM_START_UNIT) : cpu_to_le32(CT_PM_STOP_UNIT);
	pmcmd->cid = cpu_to_le32(sdev_id(sdev));
	pmcmd->parm = (scsicmd->cmnd[1] & 1) ?
		cpu_to_le32(CT_PM_UNIT_IMMEDIATE) : 0;

	/*
	 *	Now send the Fib to the adapter
	 */
	status = aac_fib_send(ContainerCommand,
		  cmd_fibcontext,
		  sizeof(struct aac_power_management),
		  FsaNormal,
		  0, 1,
		  (fib_callback)aac_start_stop_callback,
		  (void *)scsicmd);

	/*
	 *	Check that the command queued to the controller
	 */
	if (status == -EINPROGRESS) {
		scsicmd->SCp.phase = AAC_OWNER_FIRMWARE;
		return 0;
	}

	aac_fib_complete(cmd_fibcontext);
	aac_fib_free(cmd_fibcontext);
	return SCSI_MLQUEUE_HOST_BUSY;
}

L
Linus Torvalds 已提交
2055 2056 2057 2058 2059 2060 2061
/**
 *	aac_scsi_cmd()		-	Process SCSI command
 *	@scsicmd:		SCSI command block
 *
 *	Emulate a SCSI command and queue the required request for the
 *	aacraid firmware.
 */
2062

L
Linus Torvalds 已提交
2063 2064
int aac_scsi_cmd(struct scsi_cmnd * scsicmd)
{
2065
	u32 cid;
L
Linus Torvalds 已提交
2066 2067 2068
	struct Scsi_Host *host = scsicmd->device->host;
	struct aac_dev *dev = (struct aac_dev *)host->hostdata;
	struct fsa_dev_info *fsa_dev_ptr = dev->fsa_dev;
2069

2070 2071
	if (fsa_dev_ptr == NULL)
		return -1;
L
Linus Torvalds 已提交
2072 2073 2074 2075 2076
	/*
	 *	If the bus, id or lun is out of range, return fail
	 *	Test does not apply to ID 16, the pseudo id for the controller
	 *	itself.
	 */
2077 2078 2079 2080
	cid = scmd_id(scsicmd);
	if (cid != host->this_id) {
		if (scmd_channel(scsicmd) == CONTAINER_CHANNEL) {
			if((cid >= dev->maximum_num_containers) ||
2081
					(scsicmd->device->lun != 0)) {
L
Linus Torvalds 已提交
2082 2083 2084 2085 2086 2087 2088 2089 2090
				scsicmd->result = DID_NO_CONNECT << 16;
				scsicmd->scsi_done(scsicmd);
				return 0;
			}

			/*
			 *	If the target container doesn't exist, it may have
			 *	been newly created
			 */
2091 2092 2093
			if (((fsa_dev_ptr[cid].valid & 1) == 0) ||
			  (fsa_dev_ptr[cid].sense_data.sense_key ==
			   NOT_READY)) {
L
Linus Torvalds 已提交
2094
				switch (scsicmd->cmnd[0]) {
2095 2096 2097 2098 2099
				case SERVICE_ACTION_IN:
					if (!(dev->raw_io_interface) ||
					    !(dev->raw_io_64) ||
					    ((scsicmd->cmnd[1] & 0x1f) != SAI_READ_CAPACITY_16))
						break;
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Linus Torvalds 已提交
2100 2101 2102
				case INQUIRY:
				case READ_CAPACITY:
				case TEST_UNIT_READY:
2103 2104
					if (dev->in_reset)
						return -1;
2105 2106
					return _aac_probe_container(scsicmd,
							aac_probe_container_callback2);
L
Linus Torvalds 已提交
2107 2108 2109 2110 2111
				default:
					break;
				}
			}
		} else {  /* check for physical non-dasd devices */
2112 2113
			if (dev->nondasd_support || expose_physicals ||
					dev->jbod) {
2114 2115
				if (dev->in_reset)
					return -1;
L
Linus Torvalds 已提交
2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127
				return aac_send_srb_fib(scsicmd);
			} else {
				scsicmd->result = DID_NO_CONNECT << 16;
				scsicmd->scsi_done(scsicmd);
				return 0;
			}
		}
	}
	/*
	 * else Command for the controller itself
	 */
	else if ((scsicmd->cmnd[0] != INQUIRY) &&	/* only INQUIRY & TUR cmnd supported for controller */
2128
		(scsicmd->cmnd[0] != TEST_UNIT_READY))
L
Linus Torvalds 已提交
2129 2130 2131
	{
		dprintk((KERN_WARNING "Only INQUIRY & TUR command supported for controller, rcvd = 0x%x.\n", scsicmd->cmnd[0]));
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_CHECK_CONDITION;
2132 2133 2134
		set_sense(&dev->fsa_dev[cid].sense_data,
		  ILLEGAL_REQUEST, SENCODE_INVALID_COMMAND,
		  ASENCODE_INVALID_COMMAND, 0, 0);
L
Linus Torvalds 已提交
2135
		memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
2136 2137
		       min_t(size_t, sizeof(dev->fsa_dev[cid].sense_data),
			     SCSI_SENSE_BUFFERSIZE));
L
Linus Torvalds 已提交
2138 2139 2140 2141 2142 2143 2144 2145 2146
		scsicmd->scsi_done(scsicmd);
		return 0;
	}


	/* Handle commands here that don't really require going out to the adapter */
	switch (scsicmd->cmnd[0]) {
	case INQUIRY:
	{
2147
		struct inquiry_data inq_data;
L
Linus Torvalds 已提交
2148

2149
		dprintk((KERN_DEBUG "INQUIRY command, ID: %d.\n", cid));
2150
		memset(&inq_data, 0, sizeof (struct inquiry_data));
L
Linus Torvalds 已提交
2151

L
Leubner, Achim 已提交
2152
		if ((scsicmd->cmnd[1] & 0x1) && aac_wwn) {
2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163
			char *arr = (char *)&inq_data;

			/* EVPD bit set */
			arr[0] = (scmd_id(scsicmd) == host->this_id) ?
			  INQD_PDT_PROC : INQD_PDT_DA;
			if (scsicmd->cmnd[2] == 0) {
				/* supported vital product data pages */
				arr[3] = 2;
				arr[4] = 0x0;
				arr[5] = 0x80;
				arr[1] = scsicmd->cmnd[2];
2164 2165
				scsi_sg_copy_from_buffer(scsicmd, &inq_data,
							 sizeof(inq_data));
2166 2167 2168 2169 2170 2171 2172
				scsicmd->result = DID_OK << 16 |
				  COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
			} else if (scsicmd->cmnd[2] == 0x80) {
				/* unit serial number page */
				arr[3] = setinqserial(dev, &arr[4],
				  scmd_id(scsicmd));
				arr[1] = scsicmd->cmnd[2];
2173 2174
				scsi_sg_copy_from_buffer(scsicmd, &inq_data,
							 sizeof(inq_data));
L
Leubner, Achim 已提交
2175 2176 2177 2178 2179 2180
				if (aac_wwn != 2)
					return aac_get_container_serial(
						scsicmd);
				/* SLES 10 SP1 special */
				scsicmd->result = DID_OK << 16 |
				  COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
2181 2182 2183 2184 2185
			} else {
				/* vpd page not implemented */
				scsicmd->result = DID_OK << 16 |
				  COMMAND_COMPLETE << 8 |
				  SAM_STAT_CHECK_CONDITION;
2186 2187 2188
				set_sense(&dev->fsa_dev[cid].sense_data,
				  ILLEGAL_REQUEST, SENCODE_INVALID_CDB_FIELD,
				  ASENCODE_NO_SENSE, 7, 2);
2189 2190
				memcpy(scsicmd->sense_buffer,
				  &dev->fsa_dev[cid].sense_data,
2191 2192 2193
				  min_t(size_t,
					sizeof(dev->fsa_dev[cid].sense_data),
					SCSI_SENSE_BUFFERSIZE));
2194 2195 2196 2197
			}
			scsicmd->scsi_done(scsicmd);
			return 0;
		}
2198 2199 2200
		inq_data.inqd_ver = 2;	/* claim compliance to SCSI-2 */
		inq_data.inqd_rdf = 2;	/* A response data format value of two indicates that the data shall be in the format specified in SCSI-2 */
		inq_data.inqd_len = 31;
L
Linus Torvalds 已提交
2201
		/*Format for "pad2" is  RelAdr | WBus32 | WBus16 |  Sync  | Linked |Reserved| CmdQue | SftRe */
2202
		inq_data.inqd_pad2= 0x32 ;	 /*WBus16|Sync|CmdQue */
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Linus Torvalds 已提交
2203 2204 2205 2206
		/*
		 *	Set the Vendor, Product, and Revision Level
		 *	see: <vendor>.c i.e. aac.c
		 */
2207
		if (cid == host->this_id) {
2208
			setinqstr(dev, (void *) (inq_data.inqd_vid), ARRAY_SIZE(container_types));
2209
			inq_data.inqd_pdt = INQD_PDT_PROC;	/* Processor device */
2210 2211
			scsi_sg_copy_from_buffer(scsicmd, &inq_data,
						 sizeof(inq_data));
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Linus Torvalds 已提交
2212 2213 2214 2215
			scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
			scsicmd->scsi_done(scsicmd);
			return 0;
		}
2216 2217
		if (dev->in_reset)
			return -1;
M
Mark Haverkamp 已提交
2218
		setinqstr(dev, (void *) (inq_data.inqd_vid), fsa_dev_ptr[cid].type);
2219
		inq_data.inqd_pdt = INQD_PDT_DA;	/* Direct/random access device */
2220
		scsi_sg_copy_from_buffer(scsicmd, &inq_data, sizeof(inq_data));
2221
		return aac_get_container_name(scsicmd);
L
Linus Torvalds 已提交
2222
	}
2223 2224 2225 2226 2227 2228 2229
	case SERVICE_ACTION_IN:
		if (!(dev->raw_io_interface) ||
		    !(dev->raw_io_64) ||
		    ((scsicmd->cmnd[1] & 0x1f) != SAI_READ_CAPACITY_16))
			break;
	{
		u64 capacity;
2230
		char cp[13];
2231
		unsigned int alloc_len;
2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246

		dprintk((KERN_DEBUG "READ CAPACITY_16 command.\n"));
		capacity = fsa_dev_ptr[cid].size - 1;
		cp[0] = (capacity >> 56) & 0xff;
		cp[1] = (capacity >> 48) & 0xff;
		cp[2] = (capacity >> 40) & 0xff;
		cp[3] = (capacity >> 32) & 0xff;
		cp[4] = (capacity >> 24) & 0xff;
		cp[5] = (capacity >> 16) & 0xff;
		cp[6] = (capacity >> 8) & 0xff;
		cp[7] = (capacity >> 0) & 0xff;
		cp[8] = 0;
		cp[9] = 0;
		cp[10] = 2;
		cp[11] = 0;
2247 2248
		cp[12] = 0;

2249 2250 2251 2252 2253
		alloc_len = ((scsicmd->cmnd[10] << 24)
			     + (scsicmd->cmnd[11] << 16)
			     + (scsicmd->cmnd[12] << 8) + scsicmd->cmnd[13]);

		alloc_len = min_t(size_t, alloc_len, sizeof(cp));
2254
		scsi_sg_copy_from_buffer(scsicmd, cp, alloc_len);
2255 2256 2257
		if (alloc_len < scsi_bufflen(scsicmd))
			scsi_set_resid(scsicmd,
				       scsi_bufflen(scsicmd) - alloc_len);
2258 2259 2260 2261 2262 2263 2264 2265 2266 2267

		/* Do not cache partition table for arrays */
		scsicmd->device->removable = 1;

		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
		scsicmd->scsi_done(scsicmd);

		return 0;
	}

L
Linus Torvalds 已提交
2268 2269 2270
	case READ_CAPACITY:
	{
		u32 capacity;
2271
		char cp[8];
L
Linus Torvalds 已提交
2272 2273

		dprintk((KERN_DEBUG "READ CAPACITY command.\n"));
2274
		if (fsa_dev_ptr[cid].size <= 0x100000000ULL)
L
Linus Torvalds 已提交
2275 2276 2277
			capacity = fsa_dev_ptr[cid].size - 1;
		else
			capacity = (u32)-1;
2278

L
Linus Torvalds 已提交
2279 2280 2281 2282 2283 2284 2285 2286
		cp[0] = (capacity >> 24) & 0xff;
		cp[1] = (capacity >> 16) & 0xff;
		cp[2] = (capacity >> 8) & 0xff;
		cp[3] = (capacity >> 0) & 0xff;
		cp[4] = 0;
		cp[5] = 0;
		cp[6] = 2;
		cp[7] = 0;
2287
		scsi_sg_copy_from_buffer(scsicmd, cp, sizeof(cp));
2288 2289
		/* Do not cache partition table for arrays */
		scsicmd->device->removable = 1;
2290 2291
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 |
		  SAM_STAT_GOOD;
L
Linus Torvalds 已提交
2292 2293 2294 2295 2296 2297 2298
		scsicmd->scsi_done(scsicmd);

		return 0;
	}

	case MODE_SENSE:
	{
2299 2300
		char mode_buf[7];
		int mode_buf_length = 4;
L
Linus Torvalds 已提交
2301 2302 2303 2304

		dprintk((KERN_DEBUG "MODE SENSE command.\n"));
		mode_buf[0] = 3;	/* Mode data length */
		mode_buf[1] = 0;	/* Medium type - default */
2305 2306 2307
		mode_buf[2] = 0;	/* Device-specific param,
					   bit 8: 0/1 = write enabled/protected
					   bit 4: 0/1 = FUA enabled */
2308
		if (dev->raw_io_interface && ((aac_cache & 5) != 1))
2309
			mode_buf[2] = 0x10;
L
Linus Torvalds 已提交
2310
		mode_buf[3] = 0;	/* Block descriptor length */
2311 2312 2313 2314 2315
		if (((scsicmd->cmnd[2] & 0x3f) == 8) ||
		  ((scsicmd->cmnd[2] & 0x3f) == 0x3f)) {
			mode_buf[0] = 6;
			mode_buf[4] = 8;
			mode_buf[5] = 1;
2316 2317
			mode_buf[6] = ((aac_cache & 6) == 2)
				? 0 : 0x04; /* WCE */
2318 2319 2320 2321
			mode_buf_length = 7;
			if (mode_buf_length > scsicmd->cmnd[4])
				mode_buf_length = scsicmd->cmnd[4];
		}
2322
		scsi_sg_copy_from_buffer(scsicmd, mode_buf, mode_buf_length);
L
Linus Torvalds 已提交
2323 2324 2325 2326 2327 2328 2329
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
		scsicmd->scsi_done(scsicmd);

		return 0;
	}
	case MODE_SENSE_10:
	{
2330 2331
		char mode_buf[11];
		int mode_buf_length = 8;
L
Linus Torvalds 已提交
2332 2333 2334 2335 2336

		dprintk((KERN_DEBUG "MODE SENSE 10 byte command.\n"));
		mode_buf[0] = 0;	/* Mode data length (MSB) */
		mode_buf[1] = 6;	/* Mode data length (LSB) */
		mode_buf[2] = 0;	/* Medium type - default */
2337 2338 2339
		mode_buf[3] = 0;	/* Device-specific param,
					   bit 8: 0/1 = write enabled/protected
					   bit 4: 0/1 = FUA enabled */
2340
		if (dev->raw_io_interface && ((aac_cache & 5) != 1))
2341
			mode_buf[3] = 0x10;
L
Linus Torvalds 已提交
2342 2343 2344 2345
		mode_buf[4] = 0;	/* reserved */
		mode_buf[5] = 0;	/* reserved */
		mode_buf[6] = 0;	/* Block descriptor length (MSB) */
		mode_buf[7] = 0;	/* Block descriptor length (LSB) */
2346 2347 2348 2349 2350
		if (((scsicmd->cmnd[2] & 0x3f) == 8) ||
		  ((scsicmd->cmnd[2] & 0x3f) == 0x3f)) {
			mode_buf[1] = 9;
			mode_buf[8] = 8;
			mode_buf[9] = 1;
2351 2352
			mode_buf[10] = ((aac_cache & 6) == 2)
				? 0 : 0x04; /* WCE */
2353 2354 2355 2356
			mode_buf_length = 11;
			if (mode_buf_length > scsicmd->cmnd[8])
				mode_buf_length = scsicmd->cmnd[8];
		}
2357
		scsi_sg_copy_from_buffer(scsicmd, mode_buf, mode_buf_length);
L
Linus Torvalds 已提交
2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385

		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
		scsicmd->scsi_done(scsicmd);

		return 0;
	}
	case REQUEST_SENSE:
		dprintk((KERN_DEBUG "REQUEST SENSE command.\n"));
		memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data, sizeof (struct sense_data));
		memset(&dev->fsa_dev[cid].sense_data, 0, sizeof (struct sense_data));
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
		scsicmd->scsi_done(scsicmd);
		return 0;

	case ALLOW_MEDIUM_REMOVAL:
		dprintk((KERN_DEBUG "LOCK command.\n"));
		if (scsicmd->cmnd[4])
			fsa_dev_ptr[cid].locked = 1;
		else
			fsa_dev_ptr[cid].locked = 0;

		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
		scsicmd->scsi_done(scsicmd);
		return 0;
	/*
	 *	These commands are all No-Ops
	 */
	case TEST_UNIT_READY:
2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400
		if (fsa_dev_ptr[cid].sense_data.sense_key == NOT_READY) {
			scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 |
				SAM_STAT_CHECK_CONDITION;
			set_sense(&dev->fsa_dev[cid].sense_data,
				  NOT_READY, SENCODE_BECOMING_READY,
				  ASENCODE_BECOMING_READY, 0, 0);
			memcpy(scsicmd->sense_buffer,
			       &dev->fsa_dev[cid].sense_data,
			       min_t(size_t,
				     sizeof(dev->fsa_dev[cid].sense_data),
				     SCSI_SENSE_BUFFERSIZE));
			scsicmd->scsi_done(scsicmd);
			return 0;
		}
		/* FALLTHRU */
L
Linus Torvalds 已提交
2401 2402 2403 2404 2405 2406 2407 2408
	case RESERVE:
	case RELEASE:
	case REZERO_UNIT:
	case REASSIGN_BLOCKS:
	case SEEK_10:
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
		scsicmd->scsi_done(scsicmd);
		return 0;
2409 2410 2411

	case START_STOP:
		return aac_start_stop(scsicmd);
L
Linus Torvalds 已提交
2412 2413
	}

2414
	switch (scsicmd->cmnd[0])
L
Linus Torvalds 已提交
2415 2416 2417
	{
		case READ_6:
		case READ_10:
2418 2419
		case READ_12:
		case READ_16:
2420 2421
			if (dev->in_reset)
				return -1;
L
Linus Torvalds 已提交
2422 2423 2424 2425 2426
			/*
			 *	Hack to keep track of ordinal number of the device that
			 *	corresponds to a container. Needed to convert
			 *	containers to /dev/sd device names
			 */
2427

2428 2429 2430
			if (scsicmd->request->rq_disk)
				strlcpy(fsa_dev_ptr[cid].devname,
				scsicmd->request->rq_disk->disk_name,
2431
				min(sizeof(fsa_dev_ptr[cid].devname),
2432
				sizeof(scsicmd->request->rq_disk->disk_name) + 1));
2433

2434
			return aac_read(scsicmd);
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2435 2436 2437

		case WRITE_6:
		case WRITE_10:
2438 2439
		case WRITE_12:
		case WRITE_16:
2440 2441
			if (dev->in_reset)
				return -1;
2442
			return aac_write(scsicmd);
L
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		case SYNCHRONIZE_CACHE:
2445 2446 2447 2448 2449 2450
			if (((aac_cache & 6) == 6) && dev->cache_protected) {
				scsicmd->result = DID_OK << 16 |
					COMMAND_COMPLETE << 8 | SAM_STAT_GOOD;
				scsicmd->scsi_done(scsicmd);
				return 0;
			}
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			/* Issue FIB to tell Firmware to flush it's cache */
2452 2453 2454
			if ((aac_cache & 6) != 2)
				return aac_synchronize(scsicmd);
			/* FALLTHRU */
L
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		default:
			/*
			 *	Unhandled commands
			 */
2459
			dprintk((KERN_WARNING "Unhandled SCSI Command: 0x%x.\n", scsicmd->cmnd[0]));
L
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			scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_CHECK_CONDITION;
2461 2462 2463
			set_sense(&dev->fsa_dev[cid].sense_data,
			  ILLEGAL_REQUEST, SENCODE_INVALID_COMMAND,
			  ASENCODE_INVALID_COMMAND, 0, 0);
L
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			memcpy(scsicmd->sense_buffer, &dev->fsa_dev[cid].sense_data,
2465 2466 2467
				min_t(size_t,
				      sizeof(dev->fsa_dev[cid].sense_data),
				      SCSI_SENSE_BUFFERSIZE));
L
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			scsicmd->scsi_done(scsicmd);
			return 0;
	}
}

static int query_disk(struct aac_dev *dev, void __user *arg)
{
	struct aac_query_disk qd;
	struct fsa_dev_info *fsa_dev_ptr;

	fsa_dev_ptr = dev->fsa_dev;
2479
	if (!fsa_dev_ptr)
M
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		return -EBUSY;
L
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	if (copy_from_user(&qd, arg, sizeof (struct aac_query_disk)))
		return -EFAULT;
	if (qd.cnum == -1)
2484
		qd.cnum = qd.id;
2485
	else if ((qd.bus == -1) && (qd.id == -1) && (qd.lun == -1))
L
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	{
		if (qd.cnum < 0 || qd.cnum >= dev->maximum_num_containers)
			return -EINVAL;
		qd.instance = dev->scsi_host_ptr->host_no;
		qd.bus = 0;
		qd.id = CONTAINER_TO_ID(qd.cnum);
		qd.lun = CONTAINER_TO_LUN(qd.cnum);
	}
	else return -EINVAL;

2496
	qd.valid = fsa_dev_ptr[qd.cnum].valid != 0;
L
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	qd.locked = fsa_dev_ptr[qd.cnum].locked;
	qd.deleted = fsa_dev_ptr[qd.cnum].deleted;

	if (fsa_dev_ptr[qd.cnum].devname[0] == '\0')
		qd.unmapped = 1;
	else
		qd.unmapped = 0;

	strlcpy(qd.name, fsa_dev_ptr[qd.cnum].devname,
	  min(sizeof(qd.name), sizeof(fsa_dev_ptr[qd.cnum].devname) + 1));

	if (copy_to_user(arg, &qd, sizeof (struct aac_query_disk)))
		return -EFAULT;
	return 0;
}

static int force_delete_disk(struct aac_dev *dev, void __user *arg)
{
	struct aac_delete_disk dd;
	struct fsa_dev_info *fsa_dev_ptr;

	fsa_dev_ptr = dev->fsa_dev;
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	if (!fsa_dev_ptr)
		return -EBUSY;
L
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	if (copy_from_user(&dd, arg, sizeof (struct aac_delete_disk)))
		return -EFAULT;

	if (dd.cnum >= dev->maximum_num_containers)
		return -EINVAL;
	/*
	 *	Mark this container as being deleted.
	 */
	fsa_dev_ptr[dd.cnum].deleted = 1;
	/*
	 *	Mark the container as no longer valid
	 */
	fsa_dev_ptr[dd.cnum].valid = 0;
	return 0;
}

static int delete_disk(struct aac_dev *dev, void __user *arg)
{
	struct aac_delete_disk dd;
	struct fsa_dev_info *fsa_dev_ptr;

	fsa_dev_ptr = dev->fsa_dev;
2544
	if (!fsa_dev_ptr)
M
Mark Haverkamp 已提交
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		return -EBUSY;
L
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2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599

	if (copy_from_user(&dd, arg, sizeof (struct aac_delete_disk)))
		return -EFAULT;

	if (dd.cnum >= dev->maximum_num_containers)
		return -EINVAL;
	/*
	 *	If the container is locked, it can not be deleted by the API.
	 */
	if (fsa_dev_ptr[dd.cnum].locked)
		return -EBUSY;
	else {
		/*
		 *	Mark the container as no longer being valid.
		 */
		fsa_dev_ptr[dd.cnum].valid = 0;
		fsa_dev_ptr[dd.cnum].devname[0] = '\0';
		return 0;
	}
}

int aac_dev_ioctl(struct aac_dev *dev, int cmd, void __user *arg)
{
	switch (cmd) {
	case FSACTL_QUERY_DISK:
		return query_disk(dev, arg);
	case FSACTL_DELETE_DISK:
		return delete_disk(dev, arg);
	case FSACTL_FORCE_DELETE_DISK:
		return force_delete_disk(dev, arg);
	case FSACTL_GET_CONTAINERS:
		return aac_get_containers(dev);
	default:
		return -ENOTTY;
	}
}

/**
 *
 * aac_srb_callback
 * @context: the context set in the fib - here it is scsi cmd
 * @fibptr: pointer to the fib
 *
 * Handles the completion of a scsi command to a non dasd device
 *
 */

static void aac_srb_callback(void *context, struct fib * fibptr)
{
	struct aac_dev *dev;
	struct aac_srb_reply *srbreply;
	struct scsi_cmnd *scsicmd;

	scsicmd = (struct scsi_cmnd *) context;
2600 2601 2602 2603

	if (!aac_valid_context(scsicmd, fibptr))
		return;

E
Eric Sesterhenn 已提交
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	BUG_ON(fibptr == NULL);
L
Linus Torvalds 已提交
2605

2606 2607
	dev = fibptr->dev;

L
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	srbreply = (struct aac_srb_reply *) fib_data(fibptr);

	scsicmd->sense_buffer[0] = '\0';  /* Initialize sense valid flag to false */
	/*
2612
	 *	Calculate resid for sg
L
Linus Torvalds 已提交
2613
	 */
2614 2615 2616 2617 2618

	scsi_set_resid(scsicmd, scsi_bufflen(scsicmd)
		       - le32_to_cpu(srbreply->data_xfer_length));

	scsi_dma_unmap(scsicmd);
L
Linus Torvalds 已提交
2619

2620 2621 2622 2623 2624
	/* expose physical device if expose_physicald flag is on */
	if (scsicmd->cmnd[0] == INQUIRY && !(scsicmd->cmnd[1] & 0x01)
	  && expose_physicals > 0)
		aac_expose_phy_device(scsicmd);

L
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2625 2626 2627 2628 2629 2630 2631
	/*
	 * First check the fib status
	 */

	if (le32_to_cpu(srbreply->status) != ST_OK){
		int len;
		printk(KERN_WARNING "aac_srb_callback: srb failed, status = %d\n", le32_to_cpu(srbreply->status));
2632 2633
		len = min_t(u32, le32_to_cpu(srbreply->sense_data_size),
			    SCSI_SENSE_BUFFERSIZE);
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2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644
		scsicmd->result = DID_ERROR << 16 | COMMAND_COMPLETE << 8 | SAM_STAT_CHECK_CONDITION;
		memcpy(scsicmd->sense_buffer, srbreply->sense_data, len);
	}

	/*
	 * Next check the srb status
	 */
	switch( (le32_to_cpu(srbreply->srb_status))&0x3f){
	case SRB_STATUS_ERROR_RECOVERY:
	case SRB_STATUS_PENDING:
	case SRB_STATUS_SUCCESS:
2645
		scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8;
L
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		break;
	case SRB_STATUS_DATA_OVERRUN:
		switch(scsicmd->cmnd[0]){
		case  READ_6:
		case  WRITE_6:
		case  READ_10:
		case  WRITE_10:
		case  READ_12:
		case  WRITE_12:
2655 2656
		case  READ_16:
		case  WRITE_16:
2657
			if (le32_to_cpu(srbreply->data_xfer_length) < scsicmd->underflow) {
L
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				printk(KERN_WARNING"aacraid: SCSI CMD underflow\n");
			} else {
				printk(KERN_WARNING"aacraid: SCSI CMD Data Overrun\n");
			}
			scsicmd->result = DID_ERROR << 16 | COMMAND_COMPLETE << 8;
			break;
		case INQUIRY: {
2665
			scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8;
L
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			break;
		}
		default:
			scsicmd->result = DID_OK << 16 | COMMAND_COMPLETE << 8;
			break;
		}
		break;
	case SRB_STATUS_ABORTED:
		scsicmd->result = DID_ABORT << 16 | ABORT << 8;
		break;
	case SRB_STATUS_ABORT_FAILED:
		// Not sure about this one - but assuming the hba was trying to abort for some reason
		scsicmd->result = DID_ERROR << 16 | ABORT << 8;
		break;
	case SRB_STATUS_PARITY_ERROR:
		scsicmd->result = DID_PARITY << 16 | MSG_PARITY_ERROR << 8;
		break;
	case SRB_STATUS_NO_DEVICE:
	case SRB_STATUS_INVALID_PATH_ID:
	case SRB_STATUS_INVALID_TARGET_ID:
	case SRB_STATUS_INVALID_LUN:
	case SRB_STATUS_SELECTION_TIMEOUT:
		scsicmd->result = DID_NO_CONNECT << 16 | COMMAND_COMPLETE << 8;
		break;

	case SRB_STATUS_COMMAND_TIMEOUT:
	case SRB_STATUS_TIMEOUT:
		scsicmd->result = DID_TIME_OUT << 16 | COMMAND_COMPLETE << 8;
		break;

	case SRB_STATUS_BUSY:
2697
		scsicmd->result = DID_BUS_BUSY << 16 | COMMAND_COMPLETE << 8;
L
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		break;

	case SRB_STATUS_BUS_RESET:
		scsicmd->result = DID_RESET << 16 | COMMAND_COMPLETE << 8;
		break;

	case SRB_STATUS_MESSAGE_REJECTED:
		scsicmd->result = DID_ERROR << 16 | MESSAGE_REJECT << 8;
		break;
	case SRB_STATUS_REQUEST_FLUSHED:
	case SRB_STATUS_ERROR:
	case SRB_STATUS_INVALID_REQUEST:
	case SRB_STATUS_REQUEST_SENSE_FAILED:
	case SRB_STATUS_NO_HBA:
	case SRB_STATUS_UNEXPECTED_BUS_FREE:
	case SRB_STATUS_PHASE_SEQUENCE_FAILURE:
	case SRB_STATUS_BAD_SRB_BLOCK_LENGTH:
	case SRB_STATUS_DELAYED_RETRY:
	case SRB_STATUS_BAD_FUNCTION:
	case SRB_STATUS_NOT_STARTED:
	case SRB_STATUS_NOT_IN_USE:
	case SRB_STATUS_FORCE_ABORT:
	case SRB_STATUS_DOMAIN_VALIDATION_FAIL:
	default:
#ifdef AAC_DETAILED_STATUS_INFO
		printk("aacraid: SRB ERROR(%u) %s scsi cmd 0x%x - scsi status 0x%x\n",
			le32_to_cpu(srbreply->srb_status) & 0x3F,
			aac_get_status_string(
2726 2727
				le32_to_cpu(srbreply->srb_status) & 0x3F),
			scsicmd->cmnd[0],
L
Linus Torvalds 已提交
2728 2729
			le32_to_cpu(srbreply->scsi_status));
#endif
2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745
		if ((scsicmd->cmnd[0] == ATA_12)
		  || (scsicmd->cmnd[0] == ATA_16)) {
			if (scsicmd->cmnd[2] & (0x01 << 5)) {
				scsicmd->result = DID_OK << 16
						| COMMAND_COMPLETE << 8;
				break;
			} else {
				scsicmd->result = DID_ERROR << 16
						| COMMAND_COMPLETE << 8;
				break;
			}
		} else {
			scsicmd->result = DID_ERROR << 16
					| COMMAND_COMPLETE << 8;
			break;
		}
L
Linus Torvalds 已提交
2746
	}
2747
	if (le32_to_cpu(srbreply->scsi_status) == SAM_STAT_CHECK_CONDITION) {
L
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2748 2749
		int len;
		scsicmd->result |= SAM_STAT_CHECK_CONDITION;
2750 2751
		len = min_t(u32, le32_to_cpu(srbreply->sense_data_size),
			    SCSI_SENSE_BUFFERSIZE);
L
Linus Torvalds 已提交
2752
#ifdef AAC_DETAILED_STATUS_INFO
2753 2754
		printk(KERN_WARNING "aac_srb_callback: check condition, status = %d len=%d\n",
					le32_to_cpu(srbreply->status), len);
L
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#endif
		memcpy(scsicmd->sense_buffer, srbreply->sense_data, len);
	}
	/*
	 * OR in the scsi status (already shifted up a bit)
	 */
	scsicmd->result |= le32_to_cpu(srbreply->scsi_status);

2763 2764
	aac_fib_complete(fibptr);
	aac_fib_free(fibptr);
2765
	scsicmd->scsi_done(scsicmd);
L
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}

/**
 *
 * aac_send_scb_fib
 * @scsicmd: the scsi command block
 *
2773
 * This routine will form a FIB and fill in the aac_srb from the
L
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 * scsicmd passed in.
 */

static int aac_send_srb_fib(struct scsi_cmnd* scsicmd)
{
	struct fib* cmd_fibcontext;
	struct aac_dev* dev;
	int status;

2783
	dev = (struct aac_dev *)scsicmd->device->host->hostdata;
2784
	if (scmd_id(scsicmd) >= dev->maximum_num_physicals ||
2785
			scsicmd->device->lun > 7) {
L
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2786 2787 2788 2789 2790 2791 2792 2793
		scsicmd->result = DID_NO_CONNECT << 16;
		scsicmd->scsi_done(scsicmd);
		return 0;
	}

	/*
	 *	Allocate and initialize a Fib then setup a BlockWrite command
	 */
2794
	if (!(cmd_fibcontext = aac_fib_alloc(dev))) {
L
Linus Torvalds 已提交
2795 2796
		return -1;
	}
2797
	status = aac_adapter_scsi(cmd_fibcontext, scsicmd);
L
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2798 2799 2800 2801

	/*
	 *	Check that the command queued to the controller
	 */
2802 2803
	if (status == -EINPROGRESS) {
		scsicmd->SCp.phase = AAC_OWNER_FIRMWARE;
L
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2804 2805 2806
		return 0;
	}

2807 2808 2809
	printk(KERN_WARNING "aac_srb: aac_fib_send failed with status: %d\n", status);
	aac_fib_complete(cmd_fibcontext);
	aac_fib_free(cmd_fibcontext);
L
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2810 2811 2812 2813 2814 2815 2816 2817

	return -1;
}

static unsigned long aac_build_sg(struct scsi_cmnd* scsicmd, struct sgmap* psg)
{
	struct aac_dev *dev;
	unsigned long byte_count = 0;
2818
	int nseg;
L
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2819 2820 2821 2822 2823

	dev = (struct aac_dev *)scsicmd->device->host->hostdata;
	// Get rid of old data
	psg->count = 0;
	psg->sg[0].addr = 0;
2824 2825 2826 2827 2828
	psg->sg[0].count = 0;

	nseg = scsi_dma_map(scsicmd);
	BUG_ON(nseg < 0);
	if (nseg) {
L
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2829 2830 2831
		struct scatterlist *sg;
		int i;

2832
		psg->count = cpu_to_le32(nseg);
L
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2833

2834
		scsi_for_each_sg(scsicmd, sg, nseg, i) {
L
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2835 2836 2837 2838 2839
			psg->sg[i].addr = cpu_to_le32(sg_dma_address(sg));
			psg->sg[i].count = cpu_to_le32(sg_dma_len(sg));
			byte_count += sg_dma_len(sg);
		}
		/* hba wants the size to be exact */
2840 2841 2842
		if (byte_count > scsi_bufflen(scsicmd)) {
			u32 temp = le32_to_cpu(psg->sg[i-1].count) -
				(byte_count - scsi_bufflen(scsicmd));
2843
			psg->sg[i-1].count = cpu_to_le32(temp);
2844
			byte_count = scsi_bufflen(scsicmd);
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2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858 2859
		}
		/* Check for command underflow */
		if(scsicmd->underflow && (byte_count < scsicmd->underflow)){
			printk(KERN_WARNING"aacraid: cmd len %08lX cmd underflow %08X\n",
					byte_count, scsicmd->underflow);
		}
	}
	return byte_count;
}


static unsigned long aac_build_sg64(struct scsi_cmnd* scsicmd, struct sgmap64* psg)
{
	struct aac_dev *dev;
	unsigned long byte_count = 0;
2860
	u64 addr;
2861
	int nseg;
L
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	dev = (struct aac_dev *)scsicmd->device->host->hostdata;
	// Get rid of old data
	psg->count = 0;
	psg->sg[0].addr[0] = 0;
	psg->sg[0].addr[1] = 0;
	psg->sg[0].count = 0;
2869 2870 2871 2872

	nseg = scsi_dma_map(scsicmd);
	BUG_ON(nseg < 0);
	if (nseg) {
L
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		struct scatterlist *sg;
		int i;

2876
		scsi_for_each_sg(scsicmd, sg, nseg, i) {
2877
			int count = sg_dma_len(sg);
2878 2879 2880
			addr = sg_dma_address(sg);
			psg->sg[i].addr[0] = cpu_to_le32(addr & 0xffffffff);
			psg->sg[i].addr[1] = cpu_to_le32(addr>>32);
2881 2882
			psg->sg[i].count = cpu_to_le32(count);
			byte_count += count;
L
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2883
		}
2884
		psg->count = cpu_to_le32(nseg);
L
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2885
		/* hba wants the size to be exact */
2886 2887 2888
		if (byte_count > scsi_bufflen(scsicmd)) {
			u32 temp = le32_to_cpu(psg->sg[i-1].count) -
				(byte_count - scsi_bufflen(scsicmd));
2889
			psg->sg[i-1].count = cpu_to_le32(temp);
2890
			byte_count = scsi_bufflen(scsicmd);
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		}
		/* Check for command underflow */
		if(scsicmd->underflow && (byte_count < scsicmd->underflow)){
			printk(KERN_WARNING"aacraid: cmd len %08lX cmd underflow %08X\n",
					byte_count, scsicmd->underflow);
		}
	}
	return byte_count;
}

2901 2902 2903
static unsigned long aac_build_sgraw(struct scsi_cmnd* scsicmd, struct sgmapraw* psg)
{
	unsigned long byte_count = 0;
2904
	int nseg;
2905 2906 2907 2908 2909 2910 2911 2912 2913

	// Get rid of old data
	psg->count = 0;
	psg->sg[0].next = 0;
	psg->sg[0].prev = 0;
	psg->sg[0].addr[0] = 0;
	psg->sg[0].addr[1] = 0;
	psg->sg[0].count = 0;
	psg->sg[0].flags = 0;
2914 2915 2916 2917

	nseg = scsi_dma_map(scsicmd);
	BUG_ON(nseg < 0);
	if (nseg) {
2918 2919 2920
		struct scatterlist *sg;
		int i;

2921
		scsi_for_each_sg(scsicmd, sg, nseg, i) {
2922 2923 2924 2925 2926 2927 2928 2929 2930 2931
			int count = sg_dma_len(sg);
			u64 addr = sg_dma_address(sg);
			psg->sg[i].next = 0;
			psg->sg[i].prev = 0;
			psg->sg[i].addr[1] = cpu_to_le32((u32)(addr>>32));
			psg->sg[i].addr[0] = cpu_to_le32((u32)(addr & 0xffffffff));
			psg->sg[i].count = cpu_to_le32(count);
			psg->sg[i].flags = 0;
			byte_count += count;
		}
2932
		psg->count = cpu_to_le32(nseg);
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		/* hba wants the size to be exact */
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		if (byte_count > scsi_bufflen(scsicmd)) {
			u32 temp = le32_to_cpu(psg->sg[i-1].count) -
				(byte_count - scsi_bufflen(scsicmd));
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			psg->sg[i-1].count = cpu_to_le32(temp);
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			byte_count = scsi_bufflen(scsicmd);
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		}
		/* Check for command underflow */
		if(scsicmd->underflow && (byte_count < scsicmd->underflow)){
			printk(KERN_WARNING"aacraid: cmd len %08lX cmd underflow %08X\n",
					byte_count, scsicmd->underflow);
		}
	}
	return byte_count;
}

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#ifdef AAC_DETAILED_STATUS_INFO

struct aac_srb_status_info {
	u32	status;
	char	*str;
};


static struct aac_srb_status_info srb_status_info[] = {
	{ SRB_STATUS_PENDING,		"Pending Status"},
	{ SRB_STATUS_SUCCESS,		"Success"},
	{ SRB_STATUS_ABORTED,		"Aborted Command"},
	{ SRB_STATUS_ABORT_FAILED,	"Abort Failed"},
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	{ SRB_STATUS_ERROR,		"Error Event"},
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	{ SRB_STATUS_BUSY,		"Device Busy"},
	{ SRB_STATUS_INVALID_REQUEST,	"Invalid Request"},
	{ SRB_STATUS_INVALID_PATH_ID,	"Invalid Path ID"},
	{ SRB_STATUS_NO_DEVICE,		"No Device"},
	{ SRB_STATUS_TIMEOUT,		"Timeout"},
	{ SRB_STATUS_SELECTION_TIMEOUT,	"Selection Timeout"},
	{ SRB_STATUS_COMMAND_TIMEOUT,	"Command Timeout"},
	{ SRB_STATUS_MESSAGE_REJECTED,	"Message Rejected"},
	{ SRB_STATUS_BUS_RESET,		"Bus Reset"},
	{ SRB_STATUS_PARITY_ERROR,	"Parity Error"},
	{ SRB_STATUS_REQUEST_SENSE_FAILED,"Request Sense Failed"},
	{ SRB_STATUS_NO_HBA,		"No HBA"},
	{ SRB_STATUS_DATA_OVERRUN,	"Data Overrun/Data Underrun"},
	{ SRB_STATUS_UNEXPECTED_BUS_FREE,"Unexpected Bus Free"},
	{ SRB_STATUS_PHASE_SEQUENCE_FAILURE,"Phase Error"},
	{ SRB_STATUS_BAD_SRB_BLOCK_LENGTH,"Bad Srb Block Length"},
	{ SRB_STATUS_REQUEST_FLUSHED,	"Request Flushed"},
	{ SRB_STATUS_DELAYED_RETRY,	"Delayed Retry"},
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	{ SRB_STATUS_INVALID_LUN,	"Invalid LUN"},
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	{ SRB_STATUS_INVALID_TARGET_ID,	"Invalid TARGET ID"},
	{ SRB_STATUS_BAD_FUNCTION,	"Bad Function"},
	{ SRB_STATUS_ERROR_RECOVERY,	"Error Recovery"},
	{ SRB_STATUS_NOT_STARTED,	"Not Started"},
	{ SRB_STATUS_NOT_IN_USE,	"Not In Use"},
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	{ SRB_STATUS_FORCE_ABORT,	"Force Abort"},
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	{ SRB_STATUS_DOMAIN_VALIDATION_FAIL,"Domain Validation Failure"},
	{ 0xff,				"Unknown Error"}
};

char *aac_get_status_string(u32 status)
{
	int i;

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	for (i = 0; i < ARRAY_SIZE(srb_status_info); i++)
		if (srb_status_info[i].status == status)
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			return srb_status_info[i].str;

	return "Bad Status Code";
}

#endif