cciss.c 99.5 KB
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/*
 *    Disk Array driver for HP SA 5xxx and 6xxx Controllers
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 *    Copyright 2000, 2006 Hewlett-Packard Development Company, L.P.
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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 of the License, 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, GOOD TITLE or
 *    NON INFRINGEMENT.  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; if not, write to the Free Software
 *    Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
 *
 *    Questions/Comments/Bugfixes to iss_storagedev@hp.com
 *
 */

#include <linux/module.h>
#include <linux/interrupt.h>
#include <linux/types.h>
#include <linux/pci.h>
#include <linux/kernel.h>
#include <linux/slab.h>
#include <linux/delay.h>
#include <linux/major.h>
#include <linux/fs.h>
#include <linux/bio.h>
#include <linux/blkpg.h>
#include <linux/timer.h>
#include <linux/proc_fs.h>
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#include <linux/init.h>
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#include <linux/hdreg.h>
#include <linux/spinlock.h>
#include <linux/compat.h>
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#include <linux/blktrace_api.h>
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#include <asm/uaccess.h>
#include <asm/io.h>

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#include <linux/dma-mapping.h>
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#include <linux/blkdev.h>
#include <linux/genhd.h>
#include <linux/completion.h>

#define CCISS_DRIVER_VERSION(maj,min,submin) ((maj<<16)|(min<<8)|(submin))
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#define DRIVER_NAME "HP CISS Driver (v 3.6.14)"
#define DRIVER_VERSION CCISS_DRIVER_VERSION(3,6,14)
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/* Embedded module documentation macros - see modules.h */
MODULE_AUTHOR("Hewlett-Packard Company");
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MODULE_DESCRIPTION("Driver for HP Controller SA5xxx SA6xxx version 3.6.14");
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MODULE_SUPPORTED_DEVICE("HP SA5i SA5i+ SA532 SA5300 SA5312 SA641 SA642 SA6400"
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			" SA6i P600 P800 P400 P400i E200 E200i E500");
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MODULE_VERSION("3.6.14");
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MODULE_LICENSE("GPL");

#include "cciss_cmd.h"
#include "cciss.h"
#include <linux/cciss_ioctl.h>

/* define the PCI info for the cards we can control */
static const struct pci_device_id cciss_pci_device_id[] = {
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	{PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_CISS,  0x0E11, 0x4070},
	{PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_CISSB, 0x0E11, 0x4080},
	{PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_CISSB, 0x0E11, 0x4082},
	{PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_CISSB, 0x0E11, 0x4083},
	{PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_CISSC, 0x0E11, 0x4091},
	{PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_CISSC, 0x0E11, 0x409A},
	{PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_CISSC, 0x0E11, 0x409B},
	{PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_CISSC, 0x0E11, 0x409C},
	{PCI_VENDOR_ID_COMPAQ, PCI_DEVICE_ID_COMPAQ_CISSC, 0x0E11, 0x409D},
	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSA,     0x103C, 0x3225},
	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSC,     0x103C, 0x3223},
	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSC,     0x103C, 0x3234},
	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSC,     0x103C, 0x3235},
	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSD,     0x103C, 0x3211},
	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSD,     0x103C, 0x3212},
	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSD,     0x103C, 0x3213},
	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSD,     0x103C, 0x3214},
	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSD,     0x103C, 0x3215},
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	{PCI_VENDOR_ID_HP,     PCI_DEVICE_ID_HP_CISSC,     0x103C, 0x3237},
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	{PCI_VENDOR_ID_HP,     PCI_ANY_ID,	PCI_ANY_ID, PCI_ANY_ID,
		PCI_CLASS_STORAGE_RAID << 8, 0xffff << 8, 0},
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	{0,}
};
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MODULE_DEVICE_TABLE(pci, cciss_pci_device_id);

/*  board_id = Subsystem Device ID & Vendor ID
 *  product = Marketing Name for the board
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 *  access = Address of the struct of function pointers
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 *  nr_cmds = Number of commands supported by controller
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 */
static struct board_type products[] = {
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	{0x40700E11, "Smart Array 5300", &SA5_access, 512},
	{0x40800E11, "Smart Array 5i", &SA5B_access, 512},
	{0x40820E11, "Smart Array 532", &SA5B_access, 512},
	{0x40830E11, "Smart Array 5312", &SA5B_access, 512},
	{0x409A0E11, "Smart Array 641", &SA5_access, 512},
	{0x409B0E11, "Smart Array 642", &SA5_access, 512},
	{0x409C0E11, "Smart Array 6400", &SA5_access, 512},
	{0x409D0E11, "Smart Array 6400 EM", &SA5_access, 512},
	{0x40910E11, "Smart Array 6i", &SA5_access, 512},
	{0x3225103C, "Smart Array P600", &SA5_access, 512},
	{0x3223103C, "Smart Array P800", &SA5_access, 512},
	{0x3234103C, "Smart Array P400", &SA5_access, 512},
	{0x3235103C, "Smart Array P400i", &SA5_access, 512},
	{0x3211103C, "Smart Array E200i", &SA5_access, 120},
	{0x3212103C, "Smart Array E200", &SA5_access, 120},
	{0x3213103C, "Smart Array E200i", &SA5_access, 120},
	{0x3214103C, "Smart Array E200i", &SA5_access, 120},
	{0x3215103C, "Smart Array E200i", &SA5_access, 120},
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	{0x3237103C, "Smart Array E500", &SA5_access, 512},
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	{0xFFFF103C, "Unknown Smart Array", &SA5_access, 120},
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};

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/* How long to wait (in milliseconds) for board to go into simple mode */
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#define MAX_CONFIG_WAIT 30000
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#define MAX_IOCTL_CONFIG_WAIT 1000

/*define how many times we will try a command because of bus resets */
#define MAX_CMD_RETRIES 3

#define READ_AHEAD 	 1024
#define MAX_CTLR	32

/* Originally cciss driver only supports 8 major numbers */
#define MAX_CTLR_ORIG 	8

static ctlr_info_t *hba[MAX_CTLR];

static void do_cciss_request(request_queue_t *q);
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static irqreturn_t do_cciss_intr(int irq, void *dev_id);
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static int cciss_open(struct inode *inode, struct file *filep);
static int cciss_release(struct inode *inode, struct file *filep);
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static int cciss_ioctl(struct inode *inode, struct file *filep,
		       unsigned int cmd, unsigned long arg);
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static int cciss_getgeo(struct block_device *bdev, struct hd_geometry *geo);
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static int cciss_revalidate(struct gendisk *disk);
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static int rebuild_lun_table(ctlr_info_t *h, struct gendisk *del_disk);
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static int deregister_disk(struct gendisk *disk, drive_info_struct *drv,
			   int clear_all);
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static void cciss_read_capacity(int ctlr, int logvol, int withirq,
			sector_t *total_size, unsigned int *block_size);
static void cciss_read_capacity_16(int ctlr, int logvol, int withirq,
			sector_t *total_size, unsigned int *block_size);
static void cciss_geometry_inquiry(int ctlr, int logvol,
			int withirq, sector_t total_size,
			unsigned int block_size, InquiryData_struct *inq_buff,
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				   drive_info_struct *drv);
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static void cciss_getgeometry(int cntl_num);
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static void __devinit cciss_interrupt_mode(ctlr_info_t *, struct pci_dev *,
					   __u32);
static void start_io(ctlr_info_t *h);
static int sendcmd(__u8 cmd, int ctlr, void *buff, size_t size,
		   unsigned int use_unit_num, unsigned int log_unit,
		   __u8 page_code, unsigned char *scsi3addr, int cmd_type);
static int sendcmd_withirq(__u8 cmd, int ctlr, void *buff, size_t size,
			   unsigned int use_unit_num, unsigned int log_unit,
			   __u8 page_code, int cmd_type);
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static void fail_all_cmds(unsigned long ctlr);

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#ifdef CONFIG_PROC_FS
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static int cciss_proc_get_info(char *buffer, char **start, off_t offset,
			       int length, int *eof, void *data);
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static void cciss_procinit(int i);
#else
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static void cciss_procinit(int i)
{
}
#endif				/* CONFIG_PROC_FS */
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#ifdef CONFIG_COMPAT
static long cciss_compat_ioctl(struct file *f, unsigned cmd, unsigned long arg);
#endif

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static struct block_device_operations cciss_fops = {
	.owner = THIS_MODULE,
	.open = cciss_open,
	.release = cciss_release,
	.ioctl = cciss_ioctl,
	.getgeo = cciss_getgeo,
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#ifdef CONFIG_COMPAT
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	.compat_ioctl = cciss_compat_ioctl,
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#endif
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	.revalidate_disk = cciss_revalidate,
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};

/*
 * Enqueuing and dequeuing functions for cmdlists.
 */
static inline void addQ(CommandList_struct **Qptr, CommandList_struct *c)
{
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	if (*Qptr == NULL) {
		*Qptr = c;
		c->next = c->prev = c;
	} else {
		c->prev = (*Qptr)->prev;
		c->next = (*Qptr);
		(*Qptr)->prev->next = c;
		(*Qptr)->prev = c;
	}
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}

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static inline CommandList_struct *removeQ(CommandList_struct **Qptr,
					  CommandList_struct *c)
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{
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	if (c && c->next != c) {
		if (*Qptr == c)
			*Qptr = c->next;
		c->prev->next = c->next;
		c->next->prev = c->prev;
	} else {
		*Qptr = NULL;
	}
	return c;
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}

#include "cciss_scsi.c"		/* For SCSI tape support */

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#define RAID_UNKNOWN 6

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#ifdef CONFIG_PROC_FS

/*
 * Report information about this controller.
 */
#define ENG_GIG 1000000000
#define ENG_GIG_FACTOR (ENG_GIG/512)
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static const char *raid_label[] = { "0", "4", "1(1+0)", "5", "5+1", "ADG",
	"UNKNOWN"
};
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static struct proc_dir_entry *proc_cciss;

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static int cciss_proc_get_info(char *buffer, char **start, off_t offset,
			       int length, int *eof, void *data)
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{
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	off_t pos = 0;
	off_t len = 0;
	int size, i, ctlr;
	ctlr_info_t *h = (ctlr_info_t *) data;
	drive_info_struct *drv;
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	unsigned long flags;
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	sector_t vol_sz, vol_sz_frac;
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	ctlr = h->ctlr;
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	/* prevent displaying bogus info during configuration
	 * or deconfiguration of a logical volume
	 */
	spin_lock_irqsave(CCISS_LOCK(ctlr), flags);
	if (h->busy_configuring) {
		spin_unlock_irqrestore(CCISS_LOCK(ctlr), flags);
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		return -EBUSY;
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	}
	h->busy_configuring = 1;
	spin_unlock_irqrestore(CCISS_LOCK(ctlr), flags);

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	size = sprintf(buffer, "%s: HP %s Controller\n"
		       "Board ID: 0x%08lx\n"
		       "Firmware Version: %c%c%c%c\n"
		       "IRQ: %d\n"
		       "Logical drives: %d\n"
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		       "Max sectors: %d\n"
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		       "Current Q depth: %d\n"
		       "Current # commands on controller: %d\n"
		       "Max Q depth since init: %d\n"
		       "Max # commands on controller since init: %d\n"
		       "Max SG entries since init: %d\n\n",
		       h->devname,
		       h->product_name,
		       (unsigned long)h->board_id,
		       h->firm_ver[0], h->firm_ver[1], h->firm_ver[2],
		       h->firm_ver[3], (unsigned int)h->intr[SIMPLE_MODE_INT],
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		       h->num_luns,
		       h->cciss_max_sectors,
		       h->Qdepth, h->commands_outstanding,
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		       h->maxQsinceinit, h->max_outstanding, h->maxSG);

	pos += size;
	len += size;
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	cciss_proc_tape_report(ctlr, buffer, &pos, &len);
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	for (i = 0; i <= h->highest_lun; i++) {
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		drv = &h->drv[i];
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		if (drv->heads == 0)
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			continue;

		vol_sz = drv->nr_blocks;
		vol_sz_frac = sector_div(vol_sz, ENG_GIG_FACTOR);
		vol_sz_frac *= 100;
		sector_div(vol_sz_frac, ENG_GIG_FACTOR);

		if (drv->raid_level > 5)
			drv->raid_level = RAID_UNKNOWN;
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		size = sprintf(buffer + len, "cciss/c%dd%d:"
			       "\t%4u.%02uGB\tRAID %s\n",
			       ctlr, i, (int)vol_sz, (int)vol_sz_frac,
			       raid_label[drv->raid_level]);
		pos += size;
		len += size;
	}

	*eof = 1;
	*start = buffer + offset;
	len -= offset;
	if (len > length)
		len = length;
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	h->busy_configuring = 0;
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	return len;
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}

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static int
cciss_proc_write(struct file *file, const char __user *buffer,
		 unsigned long count, void *data)
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{
	unsigned char cmd[80];
	int len;
#ifdef CONFIG_CISS_SCSI_TAPE
	ctlr_info_t *h = (ctlr_info_t *) data;
	int rc;
#endif

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	if (count > sizeof(cmd) - 1)
		return -EINVAL;
	if (copy_from_user(cmd, buffer, count))
		return -EFAULT;
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	cmd[count] = '\0';
	len = strlen(cmd);	// above 3 lines ensure safety
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	if (len && cmd[len - 1] == '\n')
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		cmd[--len] = '\0';
#	ifdef CONFIG_CISS_SCSI_TAPE
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	if (strcmp("engage scsi", cmd) == 0) {
		rc = cciss_engage_scsi(h->ctlr);
		if (rc != 0)
			return -rc;
		return count;
	}
	/* might be nice to have "disengage" too, but it's not
	   safely possible. (only 1 module use count, lock issues.) */
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#	endif
	return -EINVAL;
}

/*
 * Get us a file in /proc/cciss that says something about each controller.
 * Create /proc/cciss if it doesn't exist yet.
 */
static void __devinit cciss_procinit(int i)
{
	struct proc_dir_entry *pde;

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	if (proc_cciss == NULL) {
		proc_cciss = proc_mkdir("cciss", proc_root_driver);
		if (!proc_cciss)
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			return;
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	}
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	pde = create_proc_read_entry(hba[i]->devname,
				     S_IWUSR | S_IRUSR | S_IRGRP | S_IROTH,
				     proc_cciss, cciss_proc_get_info, hba[i]);
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	pde->write_proc = cciss_proc_write;
}
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#endif				/* CONFIG_PROC_FS */
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/*
 * For operations that cannot sleep, a command block is allocated at init,
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 * and managed by cmd_alloc() and cmd_free() using a simple bitmap to track
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 * which ones are free or in use.  For operations that can wait for kmalloc
 * to possible sleep, this routine can be called with get_from_pool set to 0.
 * cmd_free() MUST be called with a got_from_pool set to 0 if cmd_alloc was.
 */
static CommandList_struct *cmd_alloc(ctlr_info_t *h, int get_from_pool)
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{
	CommandList_struct *c;
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	int i;
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	u64bit temp64;
	dma_addr_t cmd_dma_handle, err_dma_handle;

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	if (!get_from_pool) {
		c = (CommandList_struct *) pci_alloc_consistent(h->pdev,
			sizeof(CommandList_struct), &cmd_dma_handle);
		if (c == NULL)
			return NULL;
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		memset(c, 0, sizeof(CommandList_struct));

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		c->cmdindex = -1;

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		c->err_info = (ErrorInfo_struct *)
		    pci_alloc_consistent(h->pdev, sizeof(ErrorInfo_struct),
			    &err_dma_handle);

		if (c->err_info == NULL) {
			pci_free_consistent(h->pdev,
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				sizeof(CommandList_struct), c, cmd_dma_handle);
			return NULL;
		}
		memset(c->err_info, 0, sizeof(ErrorInfo_struct));
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	} else {		/* get it out of the controllers pool */

		do {
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			i = find_first_zero_bit(h->cmd_pool_bits, h->nr_cmds);
			if (i == h->nr_cmds)
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				return NULL;
		} while (test_and_set_bit
			 (i & (BITS_PER_LONG - 1),
			  h->cmd_pool_bits + (i / BITS_PER_LONG)) != 0);
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#ifdef CCISS_DEBUG
		printk(KERN_DEBUG "cciss: using command buffer %d\n", i);
#endif
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		c = h->cmd_pool + i;
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		memset(c, 0, sizeof(CommandList_struct));
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		cmd_dma_handle = h->cmd_pool_dhandle
		    + i * sizeof(CommandList_struct);
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		c->err_info = h->errinfo_pool + i;
		memset(c->err_info, 0, sizeof(ErrorInfo_struct));
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		err_dma_handle = h->errinfo_pool_dhandle
		    + i * sizeof(ErrorInfo_struct);
		h->nr_allocs++;
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		c->cmdindex = i;
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	}
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	c->busaddr = (__u32) cmd_dma_handle;
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	temp64.val = (__u64) err_dma_handle;
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	c->ErrDesc.Addr.lower = temp64.val32.lower;
	c->ErrDesc.Addr.upper = temp64.val32.upper;
	c->ErrDesc.Len = sizeof(ErrorInfo_struct);

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	c->ctlr = h->ctlr;
	return c;
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}

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/*
 * Frees a command block that was previously allocated with cmd_alloc().
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 */
static void cmd_free(ctlr_info_t *h, CommandList_struct *c, int got_from_pool)
{
	int i;
	u64bit temp64;

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	if (!got_from_pool) {
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		temp64.val32.lower = c->ErrDesc.Addr.lower;
		temp64.val32.upper = c->ErrDesc.Addr.upper;
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		pci_free_consistent(h->pdev, sizeof(ErrorInfo_struct),
				    c->err_info, (dma_addr_t) temp64.val);
		pci_free_consistent(h->pdev, sizeof(CommandList_struct),
				    c, (dma_addr_t) c->busaddr);
	} else {
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		i = c - h->cmd_pool;
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		clear_bit(i & (BITS_PER_LONG - 1),
			  h->cmd_pool_bits + (i / BITS_PER_LONG));
		h->nr_frees++;
	}
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}

static inline ctlr_info_t *get_host(struct gendisk *disk)
{
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	return disk->queue->queuedata;
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}

static inline drive_info_struct *get_drv(struct gendisk *disk)
{
	return disk->private_data;
}

/*
 * Open.  Make sure the device is really there.
 */
static int cciss_open(struct inode *inode, struct file *filep)
{
	ctlr_info_t *host = get_host(inode->i_bdev->bd_disk);
	drive_info_struct *drv = get_drv(inode->i_bdev->bd_disk);

#ifdef CCISS_DEBUG
	printk(KERN_DEBUG "cciss_open %s\n", inode->i_bdev->bd_disk->disk_name);
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#endif				/* CCISS_DEBUG */
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	if (host->busy_initializing || drv->busy_configuring)
		return -EBUSY;
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	/*
	 * Root is allowed to open raw volume zero even if it's not configured
	 * so array config can still work. Root is also allowed to open any
	 * volume that has a LUN ID, so it can issue IOCTL to reread the
	 * disk information.  I don't think I really like this
	 * but I'm already using way to many device nodes to claim another one
	 * for "raw controller".
	 */
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	if (drv->heads == 0) {
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		if (iminor(inode) != 0) {	/* not node 0? */
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			/* if not node 0 make sure it is a partition = 0 */
			if (iminor(inode) & 0x0f) {
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				return -ENXIO;
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				/* if it is, make sure we have a LUN ID */
			} else if (drv->LunID == 0) {
				return -ENXIO;
			}
		}
		if (!capable(CAP_SYS_ADMIN))
			return -EPERM;
	}
	drv->usage_count++;
	host->usage_count++;
	return 0;
}
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/*
 * Close.  Sync first.
 */
static int cciss_release(struct inode *inode, struct file *filep)
{
	ctlr_info_t *host = get_host(inode->i_bdev->bd_disk);
	drive_info_struct *drv = get_drv(inode->i_bdev->bd_disk);

#ifdef CCISS_DEBUG
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	printk(KERN_DEBUG "cciss_release %s\n",
	       inode->i_bdev->bd_disk->disk_name);
#endif				/* CCISS_DEBUG */
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	drv->usage_count--;
	host->usage_count--;
	return 0;
}

#ifdef CONFIG_COMPAT

static int do_ioctl(struct file *f, unsigned cmd, unsigned long arg)
{
	int ret;
	lock_kernel();
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	ret = cciss_ioctl(f->f_path.dentry->d_inode, f, cmd, arg);
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	unlock_kernel();
	return ret;
}

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static int cciss_ioctl32_passthru(struct file *f, unsigned cmd,
				  unsigned long arg);
static int cciss_ioctl32_big_passthru(struct file *f, unsigned cmd,
				      unsigned long arg);
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static long cciss_compat_ioctl(struct file *f, unsigned cmd, unsigned long arg)
{
	switch (cmd) {
	case CCISS_GETPCIINFO:
	case CCISS_GETINTINFO:
	case CCISS_SETINTINFO:
	case CCISS_GETNODENAME:
	case CCISS_SETNODENAME:
	case CCISS_GETHEARTBEAT:
	case CCISS_GETBUSTYPES:
	case CCISS_GETFIRMVER:
	case CCISS_GETDRIVVER:
	case CCISS_REVALIDVOLS:
	case CCISS_DEREGDISK:
	case CCISS_REGNEWDISK:
	case CCISS_REGNEWD:
	case CCISS_RESCANDISK:
	case CCISS_GETLUNINFO:
		return do_ioctl(f, cmd, arg);

	case CCISS_PASSTHRU32:
		return cciss_ioctl32_passthru(f, cmd, arg);
	case CCISS_BIG_PASSTHRU32:
		return cciss_ioctl32_big_passthru(f, cmd, arg);

	default:
		return -ENOIOCTLCMD;
	}
}

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static int cciss_ioctl32_passthru(struct file *f, unsigned cmd,
				  unsigned long arg)
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{
	IOCTL32_Command_struct __user *arg32 =
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	    (IOCTL32_Command_struct __user *) arg;
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	IOCTL_Command_struct arg64;
	IOCTL_Command_struct __user *p = compat_alloc_user_space(sizeof(arg64));
	int err;
	u32 cp;

	err = 0;
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	err |=
	    copy_from_user(&arg64.LUN_info, &arg32->LUN_info,
			   sizeof(arg64.LUN_info));
	err |=
	    copy_from_user(&arg64.Request, &arg32->Request,
			   sizeof(arg64.Request));
	err |=
	    copy_from_user(&arg64.error_info, &arg32->error_info,
			   sizeof(arg64.error_info));
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	err |= get_user(arg64.buf_size, &arg32->buf_size);
	err |= get_user(cp, &arg32->buf);
	arg64.buf = compat_ptr(cp);
	err |= copy_to_user(p, &arg64, sizeof(arg64));

	if (err)
		return -EFAULT;

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	err = do_ioctl(f, CCISS_PASSTHRU, (unsigned long)p);
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	if (err)
		return err;
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	err |=
	    copy_in_user(&arg32->error_info, &p->error_info,
			 sizeof(arg32->error_info));
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	if (err)
		return -EFAULT;
	return err;
}

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static int cciss_ioctl32_big_passthru(struct file *file, unsigned cmd,
				      unsigned long arg)
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{
	BIG_IOCTL32_Command_struct __user *arg32 =
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	    (BIG_IOCTL32_Command_struct __user *) arg;
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	BIG_IOCTL_Command_struct arg64;
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	BIG_IOCTL_Command_struct __user *p =
	    compat_alloc_user_space(sizeof(arg64));
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	int err;
	u32 cp;

	err = 0;
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	err |=
	    copy_from_user(&arg64.LUN_info, &arg32->LUN_info,
			   sizeof(arg64.LUN_info));
	err |=
	    copy_from_user(&arg64.Request, &arg32->Request,
			   sizeof(arg64.Request));
	err |=
	    copy_from_user(&arg64.error_info, &arg32->error_info,
			   sizeof(arg64.error_info));
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	err |= get_user(arg64.buf_size, &arg32->buf_size);
	err |= get_user(arg64.malloc_size, &arg32->malloc_size);
	err |= get_user(cp, &arg32->buf);
	arg64.buf = compat_ptr(cp);
	err |= copy_to_user(p, &arg64, sizeof(arg64));

	if (err)
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		return -EFAULT;
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	err = do_ioctl(file, CCISS_BIG_PASSTHRU, (unsigned long)p);
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	if (err)
		return err;
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	err |=
	    copy_in_user(&arg32->error_info, &p->error_info,
			 sizeof(arg32->error_info));
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	if (err)
		return -EFAULT;
	return err;
}
#endif
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static int cciss_getgeo(struct block_device *bdev, struct hd_geometry *geo)
{
	drive_info_struct *drv = get_drv(bdev->bd_disk);

	if (!drv->cylinders)
		return -ENXIO;

	geo->heads = drv->heads;
	geo->sectors = drv->sectors;
	geo->cylinders = drv->cylinders;
	return 0;
}

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/*
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 * ioctl
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 */
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static int cciss_ioctl(struct inode *inode, struct file *filep,
		       unsigned int cmd, unsigned long arg)
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{
	struct block_device *bdev = inode->i_bdev;
	struct gendisk *disk = bdev->bd_disk;
	ctlr_info_t *host = get_host(disk);
	drive_info_struct *drv = get_drv(disk);
	int ctlr = host->ctlr;
	void __user *argp = (void __user *)arg;

#ifdef CCISS_DEBUG
	printk(KERN_DEBUG "cciss_ioctl: Called with cmd=%x %lx\n", cmd, arg);
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#endif				/* CCISS_DEBUG */

	switch (cmd) {
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	case CCISS_GETPCIINFO:
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		{
			cciss_pci_info_struct pciinfo;

			if (!arg)
				return -EINVAL;
			pciinfo.domain = pci_domain_nr(host->pdev->bus);
			pciinfo.bus = host->pdev->bus->number;
			pciinfo.dev_fn = host->pdev->devfn;
			pciinfo.board_id = host->board_id;
			if (copy_to_user
			    (argp, &pciinfo, sizeof(cciss_pci_info_struct)))
				return -EFAULT;
			return 0;
		}
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	case CCISS_GETINTINFO:
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		{
			cciss_coalint_struct intinfo;
			if (!arg)
				return -EINVAL;
			intinfo.delay =
			    readl(&host->cfgtable->HostWrite.CoalIntDelay);
			intinfo.count =
			    readl(&host->cfgtable->HostWrite.CoalIntCount);
			if (copy_to_user
			    (argp, &intinfo, sizeof(cciss_coalint_struct)))
				return -EFAULT;
			return 0;
		}
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	case CCISS_SETINTINFO:
		{
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			cciss_coalint_struct intinfo;
			unsigned long flags;
			int i;

			if (!arg)
				return -EINVAL;
			if (!capable(CAP_SYS_ADMIN))
				return -EPERM;
			if (copy_from_user
			    (&intinfo, argp, sizeof(cciss_coalint_struct)))
				return -EFAULT;
			if ((intinfo.delay == 0) && (intinfo.count == 0))
			{
//                      printk("cciss_ioctl: delay and count cannot be 0\n");
				return -EINVAL;
			}
			spin_lock_irqsave(CCISS_LOCK(ctlr), flags);
			/* Update the field, and then ring the doorbell */
			writel(intinfo.delay,
			       &(host->cfgtable->HostWrite.CoalIntDelay));
			writel(intinfo.count,
			       &(host->cfgtable->HostWrite.CoalIntCount));
			writel(CFGTBL_ChangeReq, host->vaddr + SA5_DOORBELL);

			for (i = 0; i < MAX_IOCTL_CONFIG_WAIT; i++) {
				if (!(readl(host->vaddr + SA5_DOORBELL)
				      & CFGTBL_ChangeReq))
					break;
				/* delay and try again */
				udelay(1000);
			}
			spin_unlock_irqrestore(CCISS_LOCK(ctlr), flags);
			if (i >= MAX_IOCTL_CONFIG_WAIT)
				return -EAGAIN;
			return 0;
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		}
	case CCISS_GETNODENAME:
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		{
			NodeName_type NodeName;
			int i;

			if (!arg)
				return -EINVAL;
			for (i = 0; i < 16; i++)
				NodeName[i] =
				    readb(&host->cfgtable->ServerName[i]);
			if (copy_to_user(argp, NodeName, sizeof(NodeName_type)))
				return -EFAULT;
			return 0;
		}
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	case CCISS_SETNODENAME:
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		{
			NodeName_type NodeName;
			unsigned long flags;
			int i;

			if (!arg)
				return -EINVAL;
			if (!capable(CAP_SYS_ADMIN))
				return -EPERM;

			if (copy_from_user
			    (NodeName, argp, sizeof(NodeName_type)))
				return -EFAULT;

			spin_lock_irqsave(CCISS_LOCK(ctlr), flags);

			/* Update the field, and then ring the doorbell */
			for (i = 0; i < 16; i++)
				writeb(NodeName[i],
				       &host->cfgtable->ServerName[i]);

			writel(CFGTBL_ChangeReq, host->vaddr + SA5_DOORBELL);

			for (i = 0; i < MAX_IOCTL_CONFIG_WAIT; i++) {
				if (!(readl(host->vaddr + SA5_DOORBELL)
				      & CFGTBL_ChangeReq))
					break;
				/* delay and try again */
				udelay(1000);
			}
			spin_unlock_irqrestore(CCISS_LOCK(ctlr), flags);
			if (i >= MAX_IOCTL_CONFIG_WAIT)
				return -EAGAIN;
			return 0;
		}
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	case CCISS_GETHEARTBEAT:
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		{
			Heartbeat_type heartbeat;

			if (!arg)
				return -EINVAL;
			heartbeat = readl(&host->cfgtable->HeartBeat);
			if (copy_to_user
			    (argp, &heartbeat, sizeof(Heartbeat_type)))
				return -EFAULT;
			return 0;
		}
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	case CCISS_GETBUSTYPES:
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		{
			BusTypes_type BusTypes;

			if (!arg)
				return -EINVAL;
			BusTypes = readl(&host->cfgtable->BusTypes);
			if (copy_to_user
			    (argp, &BusTypes, sizeof(BusTypes_type)))
				return -EFAULT;
			return 0;
		}
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	case CCISS_GETFIRMVER:
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		{
			FirmwareVer_type firmware;
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			if (!arg)
				return -EINVAL;
			memcpy(firmware, host->firm_ver, 4);
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			if (copy_to_user
			    (argp, firmware, sizeof(FirmwareVer_type)))
				return -EFAULT;
			return 0;
		}
	case CCISS_GETDRIVVER:
		{
			DriverVer_type DriverVer = DRIVER_VERSION;
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			if (!arg)
				return -EINVAL;
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			if (copy_to_user
			    (argp, &DriverVer, sizeof(DriverVer_type)))
				return -EFAULT;
			return 0;
		}
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	case CCISS_REVALIDVOLS:
860
		return rebuild_lun_table(host, NULL);
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	case CCISS_GETLUNINFO:{
			LogvolInfo_struct luninfo;

			luninfo.LunID = drv->LunID;
			luninfo.num_opens = drv->usage_count;
			luninfo.num_parts = 0;
			if (copy_to_user(argp, &luninfo,
					 sizeof(LogvolInfo_struct)))
				return -EFAULT;
			return 0;
		}
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	case CCISS_DEREGDISK:
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		return rebuild_lun_table(host, disk);
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	case CCISS_REGNEWD:
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		return rebuild_lun_table(host, NULL);
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	case CCISS_PASSTHRU:
		{
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			IOCTL_Command_struct iocommand;
			CommandList_struct *c;
			char *buff = NULL;
			u64bit temp64;
			unsigned long flags;
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			DECLARE_COMPLETION_ONSTACK(wait);
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			if (!arg)
				return -EINVAL;
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			if (!capable(CAP_SYS_RAWIO))
				return -EPERM;
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			if (copy_from_user
			    (&iocommand, argp, sizeof(IOCTL_Command_struct)))
				return -EFAULT;
			if ((iocommand.buf_size < 1) &&
			    (iocommand.Request.Type.Direction != XFER_NONE)) {
				return -EINVAL;
			}
#if 0				/* 'buf_size' member is 16-bits, and always smaller than kmalloc limit */
			/* Check kmalloc limits */
			if (iocommand.buf_size > 128000)
				return -EINVAL;
#endif
			if (iocommand.buf_size > 0) {
				buff = kmalloc(iocommand.buf_size, GFP_KERNEL);
				if (buff == NULL)
					return -EFAULT;
			}
			if (iocommand.Request.Type.Direction == XFER_WRITE) {
				/* Copy the data into the buffer we created */
				if (copy_from_user
				    (buff, iocommand.buf, iocommand.buf_size)) {
					kfree(buff);
					return -EFAULT;
				}
			} else {
				memset(buff, 0, iocommand.buf_size);
			}
			if ((c = cmd_alloc(host, 0)) == NULL) {
				kfree(buff);
				return -ENOMEM;
			}
			// Fill in the command type
			c->cmd_type = CMD_IOCTL_PEND;
			// Fill in Command Header
			c->Header.ReplyQueue = 0;	// unused in simple mode
			if (iocommand.buf_size > 0)	// buffer to fill
			{
				c->Header.SGList = 1;
				c->Header.SGTotal = 1;
			} else	// no buffers to fill
			{
				c->Header.SGList = 0;
				c->Header.SGTotal = 0;
			}
			c->Header.LUN = iocommand.LUN_info;
			c->Header.Tag.lower = c->busaddr;	// use the kernel address the cmd block for tag
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			// Fill in Request block
			c->Request = iocommand.Request;
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			// Fill in the scatter gather information
			if (iocommand.buf_size > 0) {
				temp64.val = pci_map_single(host->pdev, buff,
					iocommand.buf_size,
					PCI_DMA_BIDIRECTIONAL);
				c->SG[0].Addr.lower = temp64.val32.lower;
				c->SG[0].Addr.upper = temp64.val32.upper;
				c->SG[0].Len = iocommand.buf_size;
				c->SG[0].Ext = 0;	// we are not chaining
			}
			c->waiting = &wait;

			/* Put the request on the tail of the request queue */
			spin_lock_irqsave(CCISS_LOCK(ctlr), flags);
			addQ(&host->reqQ, c);
			host->Qdepth++;
			start_io(host);
			spin_unlock_irqrestore(CCISS_LOCK(ctlr), flags);

			wait_for_completion(&wait);

			/* unlock the buffers from DMA */
			temp64.val32.lower = c->SG[0].Addr.lower;
			temp64.val32.upper = c->SG[0].Addr.upper;
			pci_unmap_single(host->pdev, (dma_addr_t) temp64.val,
					 iocommand.buf_size,
					 PCI_DMA_BIDIRECTIONAL);

			/* Copy the error information out */
			iocommand.error_info = *(c->err_info);
			if (copy_to_user
			    (argp, &iocommand, sizeof(IOCTL_Command_struct))) {
				kfree(buff);
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				cmd_free(host, c, 0);
				return -EFAULT;
			}
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			if (iocommand.Request.Type.Direction == XFER_READ) {
				/* Copy the data out of the buffer we created */
				if (copy_to_user
				    (iocommand.buf, buff, iocommand.buf_size)) {
					kfree(buff);
					cmd_free(host, c, 0);
					return -EFAULT;
				}
			}
			kfree(buff);
			cmd_free(host, c, 0);
			return 0;
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		}
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	case CCISS_BIG_PASSTHRU:{
			BIG_IOCTL_Command_struct *ioc;
			CommandList_struct *c;
			unsigned char **buff = NULL;
			int *buff_size = NULL;
			u64bit temp64;
			unsigned long flags;
			BYTE sg_used = 0;
			int status = 0;
			int i;
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			DECLARE_COMPLETION_ONSTACK(wait);
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			__u32 left;
			__u32 sz;
			BYTE __user *data_ptr;

			if (!arg)
				return -EINVAL;
			if (!capable(CAP_SYS_RAWIO))
				return -EPERM;
			ioc = (BIG_IOCTL_Command_struct *)
			    kmalloc(sizeof(*ioc), GFP_KERNEL);
			if (!ioc) {
				status = -ENOMEM;
				goto cleanup1;
			}
			if (copy_from_user(ioc, argp, sizeof(*ioc))) {
				status = -EFAULT;
				goto cleanup1;
			}
			if ((ioc->buf_size < 1) &&
			    (ioc->Request.Type.Direction != XFER_NONE)) {
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				status = -EINVAL;
				goto cleanup1;
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			}
			/* Check kmalloc limits  using all SGs */
			if (ioc->malloc_size > MAX_KMALLOC_SIZE) {
				status = -EINVAL;
				goto cleanup1;
			}
			if (ioc->buf_size > ioc->malloc_size * MAXSGENTRIES) {
				status = -EINVAL;
				goto cleanup1;
			}
			buff =
			    kzalloc(MAXSGENTRIES * sizeof(char *), GFP_KERNEL);
			if (!buff) {
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				status = -ENOMEM;
				goto cleanup1;
			}
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			buff_size = kmalloc(MAXSGENTRIES * sizeof(int),
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						   GFP_KERNEL);
			if (!buff_size) {
				status = -ENOMEM;
				goto cleanup1;
			}
			left = ioc->buf_size;
			data_ptr = ioc->buf;
			while (left) {
				sz = (left >
				      ioc->malloc_size) ? ioc->
				    malloc_size : left;
				buff_size[sg_used] = sz;
				buff[sg_used] = kmalloc(sz, GFP_KERNEL);
				if (buff[sg_used] == NULL) {
L
Linus Torvalds 已提交
1058
					status = -ENOMEM;
1059 1060
					goto cleanup1;
				}
1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083
				if (ioc->Request.Type.Direction == XFER_WRITE) {
					if (copy_from_user
					    (buff[sg_used], data_ptr, sz)) {
						status = -ENOMEM;
						goto cleanup1;
					}
				} else {
					memset(buff[sg_used], 0, sz);
				}
				left -= sz;
				data_ptr += sz;
				sg_used++;
			}
			if ((c = cmd_alloc(host, 0)) == NULL) {
				status = -ENOMEM;
				goto cleanup1;
			}
			c->cmd_type = CMD_IOCTL_PEND;
			c->Header.ReplyQueue = 0;

			if (ioc->buf_size > 0) {
				c->Header.SGList = sg_used;
				c->Header.SGTotal = sg_used;
L
Linus Torvalds 已提交
1084
			} else {
1085 1086
				c->Header.SGList = 0;
				c->Header.SGTotal = 0;
L
Linus Torvalds 已提交
1087
			}
1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120
			c->Header.LUN = ioc->LUN_info;
			c->Header.Tag.lower = c->busaddr;

			c->Request = ioc->Request;
			if (ioc->buf_size > 0) {
				int i;
				for (i = 0; i < sg_used; i++) {
					temp64.val =
					    pci_map_single(host->pdev, buff[i],
						    buff_size[i],
						    PCI_DMA_BIDIRECTIONAL);
					c->SG[i].Addr.lower =
					    temp64.val32.lower;
					c->SG[i].Addr.upper =
					    temp64.val32.upper;
					c->SG[i].Len = buff_size[i];
					c->SG[i].Ext = 0;	/* we are not chaining */
				}
			}
			c->waiting = &wait;
			/* Put the request on the tail of the request queue */
			spin_lock_irqsave(CCISS_LOCK(ctlr), flags);
			addQ(&host->reqQ, c);
			host->Qdepth++;
			start_io(host);
			spin_unlock_irqrestore(CCISS_LOCK(ctlr), flags);
			wait_for_completion(&wait);
			/* unlock the buffers from DMA */
			for (i = 0; i < sg_used; i++) {
				temp64.val32.lower = c->SG[i].Addr.lower;
				temp64.val32.upper = c->SG[i].Addr.upper;
				pci_unmap_single(host->pdev,
					(dma_addr_t) temp64.val, buff_size[i],
L
Linus Torvalds 已提交
1121 1122
					PCI_DMA_BIDIRECTIONAL);
			}
1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140
			/* Copy the error information out */
			ioc->error_info = *(c->err_info);
			if (copy_to_user(argp, ioc, sizeof(*ioc))) {
				cmd_free(host, c, 0);
				status = -EFAULT;
				goto cleanup1;
			}
			if (ioc->Request.Type.Direction == XFER_READ) {
				/* Copy the data out of the buffer we created */
				BYTE __user *ptr = ioc->buf;
				for (i = 0; i < sg_used; i++) {
					if (copy_to_user
					    (ptr, buff[i], buff_size[i])) {
						cmd_free(host, c, 0);
						status = -EFAULT;
						goto cleanup1;
					}
					ptr += buff_size[i];
L
Linus Torvalds 已提交
1141 1142
				}
			}
1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153
			cmd_free(host, c, 0);
			status = 0;
		      cleanup1:
			if (buff) {
				for (i = 0; i < sg_used; i++)
					kfree(buff[i]);
				kfree(buff);
			}
			kfree(buff_size);
			kfree(ioc);
			return status;
L
Linus Torvalds 已提交
1154 1155 1156 1157 1158 1159
		}
	default:
		return -ENOTTY;
	}
}

1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171
static inline void complete_buffers(struct bio *bio, int status)
{
	while (bio) {
		struct bio *xbh = bio->bi_next;
		int nr_sectors = bio_sectors(bio);

		bio->bi_next = NULL;
		bio_endio(bio, nr_sectors << 9, status ? 0 : -EIO);
		bio = xbh;
	}
}

1172 1173 1174 1175 1176 1177 1178 1179 1180 1181
static void cciss_check_queues(ctlr_info_t *h)
{
	int start_queue = h->next_to_run;
	int i;

	/* check to see if we have maxed out the number of commands that can
	 * be placed on the queue.  If so then exit.  We do this check here
	 * in case the interrupt we serviced was from an ioctl and did not
	 * free any new commands.
	 */
1182
	if ((find_first_zero_bit(h->cmd_pool_bits, h->nr_cmds)) == h->nr_cmds)
1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200
		return;

	/* We have room on the queue for more commands.  Now we need to queue
	 * them up.  We will also keep track of the next queue to run so
	 * that every queue gets a chance to be started first.
	 */
	for (i = 0; i < h->highest_lun + 1; i++) {
		int curr_queue = (start_queue + i) % (h->highest_lun + 1);
		/* make sure the disk has been added and the drive is real
		 * because this can be called from the middle of init_one.
		 */
		if (!(h->drv[curr_queue].queue) || !(h->drv[curr_queue].heads))
			continue;
		blk_start_queue(h->gendisk[curr_queue]->queue);

		/* check to see if we have maxed out the number of commands
		 * that can be placed on the queue.
		 */
1201
		if ((find_first_zero_bit(h->cmd_pool_bits, h->nr_cmds)) == h->nr_cmds) {
1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215
			if (curr_queue == start_queue) {
				h->next_to_run =
				    (start_queue + 1) % (h->highest_lun + 1);
				break;
			} else {
				h->next_to_run = curr_queue;
				break;
			}
		} else {
			curr_queue = (curr_queue + 1) % (h->highest_lun + 1);
		}
	}
}

1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230
static void cciss_softirq_done(struct request *rq)
{
	CommandList_struct *cmd = rq->completion_data;
	ctlr_info_t *h = hba[cmd->ctlr];
	unsigned long flags;
	u64bit temp64;
	int i, ddir;

	if (cmd->Request.Type.Direction == XFER_READ)
		ddir = PCI_DMA_FROMDEVICE;
	else
		ddir = PCI_DMA_TODEVICE;

	/* command did not need to be retried */
	/* unmap the DMA mapping for all the scatter gather elements */
1231
	for (i = 0; i < cmd->Header.SGList; i++) {
1232 1233 1234 1235 1236 1237 1238
		temp64.val32.lower = cmd->SG[i].Addr.lower;
		temp64.val32.upper = cmd->SG[i].Addr.upper;
		pci_unmap_page(h->pdev, temp64.val, cmd->SG[i].Len, ddir);
	}

	complete_buffers(rq->bio, rq->errors);

J
Jens Axboe 已提交
1239 1240 1241 1242 1243 1244
	if (blk_fs_request(rq)) {
		const int rw = rq_data_dir(rq);

		disk_stat_add(rq->rq_disk, sectors[rw], rq->nr_sectors);
	}

1245 1246
#ifdef CCISS_DEBUG
	printk("Done with %p\n", rq);
1247
#endif				/* CCISS_DEBUG */
1248

1249
	add_disk_randomness(rq->rq_disk);
1250 1251
	spin_lock_irqsave(&h->lock, flags);
	end_that_request_last(rq, rq->errors);
1252
	cmd_free(h, cmd, 1);
1253
	cciss_check_queues(h);
1254 1255 1256
	spin_unlock_irqrestore(&h->lock, flags);
}

1257 1258 1259 1260 1261 1262 1263
/* This function will check the usage_count of the drive to be updated/added.
 * If the usage_count is zero then the drive information will be updated and
 * the disk will be re-registered with the kernel.  If not then it will be
 * left alone for the next reboot.  The exception to this is disk 0 which
 * will always be left registered with the kernel since it is also the
 * controller node.  Any changes to disk 0 will show up on the next
 * reboot.
1264
 */
1265
static void cciss_update_drive_info(int ctlr, int drv_index)
1266
{
1267 1268 1269 1270
	ctlr_info_t *h = hba[ctlr];
	struct gendisk *disk;
	InquiryData_struct *inq_buff = NULL;
	unsigned int block_size;
1271
	sector_t total_size;
1272 1273 1274
	unsigned long flags = 0;
	int ret = 0;

1275 1276
	/* if the disk already exists then deregister it before proceeding */
	if (h->drv[drv_index].raid_level != -1) {
1277 1278 1279 1280
		spin_lock_irqsave(CCISS_LOCK(h->ctlr), flags);
		h->drv[drv_index].busy_configuring = 1;
		spin_unlock_irqrestore(CCISS_LOCK(h->ctlr), flags);
		ret = deregister_disk(h->gendisk[drv_index],
1281
				      &h->drv[drv_index], 0);
1282 1283 1284 1285 1286 1287 1288
		h->drv[drv_index].busy_configuring = 0;
	}

	/* If the disk is in use return */
	if (ret)
		return;

1289
	/* Get information about the disk and modify the driver structure */
1290
	inq_buff = kmalloc(sizeof(InquiryData_struct), GFP_KERNEL);
1291 1292 1293
	if (inq_buff == NULL)
		goto mem_msg;

1294 1295 1296 1297 1298 1299 1300
 	/* testing to see if 16-byte CDBs are already being used */
 	if (h->cciss_read == CCISS_READ_16) {
 		cciss_read_capacity_16(h->ctlr, drv_index, 1,
 			&total_size, &block_size);
 		goto geo_inq;
 	}

1301
	cciss_read_capacity(ctlr, drv_index, 1,
1302
			    &total_size, &block_size);
1303

1304 1305 1306
  	/* if read_capacity returns all F's this volume is >2TB in size */
  	/* so we switch to 16-byte CDB's for all read/write ops */
  	if (total_size == 0xFFFFFFFFULL) {
1307 1308 1309 1310 1311 1312 1313 1314
		cciss_read_capacity_16(ctlr, drv_index, 1,
		&total_size, &block_size);
		h->cciss_read = CCISS_READ_16;
		h->cciss_write = CCISS_WRITE_16;
	} else {
		h->cciss_read = CCISS_READ_10;
		h->cciss_write = CCISS_WRITE_10;
	}
1315
geo_inq:
1316
	cciss_geometry_inquiry(ctlr, drv_index, 1, total_size, block_size,
1317
			       inq_buff, &h->drv[drv_index]);
1318 1319 1320 1321 1322 1323

	++h->num_luns;
	disk = h->gendisk[drv_index];
	set_capacity(disk, h->drv[drv_index].nr_blocks);

	/* if it's the controller it's already added */
1324
	if (drv_index) {
1325
		disk->queue = blk_init_queue(do_cciss_request, &h->lock);
1326 1327 1328 1329 1330
		sprintf(disk->disk_name, "cciss/c%dd%d", ctlr, drv_index);
		disk->major = h->major;
		disk->first_minor = drv_index << NWD_SHIFT;
		disk->fops = &cciss_fops;
		disk->private_data = &h->drv[drv_index];
1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341

		/* Set up queue information */
		disk->queue->backing_dev_info.ra_pages = READ_AHEAD;
		blk_queue_bounce_limit(disk->queue, hba[ctlr]->pdev->dma_mask);

		/* This is a hardware imposed limit. */
		blk_queue_max_hw_segments(disk->queue, MAXSGENTRIES);

		/* This is a limit in the driver and could be eliminated. */
		blk_queue_max_phys_segments(disk->queue, MAXSGENTRIES);

1342
		blk_queue_max_sectors(disk->queue, h->cciss_max_sectors);
1343

1344 1345
		blk_queue_softirq_done(disk->queue, cciss_softirq_done);

1346 1347 1348
		disk->queue->queuedata = hba[ctlr];

		blk_queue_hardsect_size(disk->queue,
1349
					hba[ctlr]->drv[drv_index].block_size);
1350 1351 1352 1353 1354

		h->drv[drv_index].queue = disk->queue;
		add_disk(disk);
	}

1355
      freeret:
1356 1357
	kfree(inq_buff);
	return;
1358
      mem_msg:
1359 1360 1361 1362 1363 1364 1365 1366 1367
	printk(KERN_ERR "cciss: out of memory\n");
	goto freeret;
}

/* This function will find the first index of the controllers drive array
 * that has a -1 for the raid_level and will return that index.  This is
 * where new drives will be added.  If the index to be returned is greater
 * than the highest_lun index for the controller then highest_lun is set
 * to this new index.  If there are no available indexes then -1 is returned.
1368
 */
1369 1370 1371 1372
static int cciss_find_free_drive_index(int ctlr)
{
	int i;

1373 1374
	for (i = 0; i < CISS_MAX_LUN; i++) {
		if (hba[ctlr]->drv[i].raid_level == -1) {
1375 1376 1377 1378 1379 1380 1381 1382 1383
			if (i > hba[ctlr]->highest_lun)
				hba[ctlr]->highest_lun = i;
			return i;
		}
	}
	return -1;
}

/* This function will add and remove logical drives from the Logical
1384
 * drive array of the controller and maintain persistency of ordering
1385 1386 1387 1388 1389 1390 1391
 * so that mount points are preserved until the next reboot.  This allows
 * for the removal of logical drives in the middle of the drive array
 * without a re-ordering of those drives.
 * INPUT
 * h		= The controller to perform the operations on
 * del_disk	= The disk to remove if specified.  If the value given
 *		  is NULL then no disk is removed.
1392
 */
1393
static int rebuild_lun_table(ctlr_info_t *h, struct gendisk *del_disk)
L
Linus Torvalds 已提交
1394
{
1395 1396 1397 1398 1399 1400 1401 1402 1403 1404
	int ctlr = h->ctlr;
	int num_luns;
	ReportLunData_struct *ld_buff = NULL;
	drive_info_struct *drv = NULL;
	int return_code;
	int listlength = 0;
	int i;
	int drv_found;
	int drv_index = 0;
	__u32 lunid = 0;
L
Linus Torvalds 已提交
1405
	unsigned long flags;
1406 1407 1408

	/* Set busy_configuring flag for this operation */
	spin_lock_irqsave(CCISS_LOCK(h->ctlr), flags);
1409
	if (h->busy_configuring) {
1410 1411 1412 1413 1414 1415 1416 1417 1418
		spin_unlock_irqrestore(CCISS_LOCK(h->ctlr), flags);
		return -EBUSY;
	}
	h->busy_configuring = 1;

	/* if del_disk is NULL then we are being called to add a new disk
	 * and update the logical drive table.  If it is not NULL then
	 * we will check if the disk is in use or not.
	 */
1419
	if (del_disk != NULL) {
1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436
		drv = get_drv(del_disk);
		drv->busy_configuring = 1;
		spin_unlock_irqrestore(CCISS_LOCK(h->ctlr), flags);
		return_code = deregister_disk(del_disk, drv, 1);
		drv->busy_configuring = 0;
		h->busy_configuring = 0;
		return return_code;
	} else {
		spin_unlock_irqrestore(CCISS_LOCK(h->ctlr), flags);
		if (!capable(CAP_SYS_RAWIO))
			return -EPERM;

		ld_buff = kzalloc(sizeof(ReportLunData_struct), GFP_KERNEL);
		if (ld_buff == NULL)
			goto mem_msg;

		return_code = sendcmd_withirq(CISS_REPORT_LOG, ctlr, ld_buff,
1437 1438 1439 1440
					      sizeof(ReportLunData_struct), 0,
					      0, 0, TYPE_CMD);

		if (return_code == IO_OK) {
1441 1442
			listlength =
				be32_to_cpu(*(__u32 *) ld_buff->LUNListLength);
1443
		} else {	/* reading number of logical volumes failed */
1444
			printk(KERN_WARNING "cciss: report logical volume"
1445
			       " command failed\n");
1446 1447 1448 1449 1450
			listlength = 0;
			goto freeret;
		}

		num_luns = listlength / 8;	/* 8 bytes per entry */
1451
		if (num_luns > CISS_MAX_LUN) {
1452 1453
			num_luns = CISS_MAX_LUN;
			printk(KERN_WARNING "cciss: more luns configured"
1454 1455
			       " on controller than can be handled by"
			       " this driver.\n");
1456 1457 1458
		}

		/* Compare controller drive array to drivers drive array.
1459 1460 1461 1462
		 * Check for updates in the drive information and any new drives
		 * on the controller.
		 */
		for (i = 0; i < num_luns; i++) {
1463 1464 1465 1466
			int j;

			drv_found = 0;

1467 1468 1469 1470 1471 1472 1473
			lunid = (0xff &
				 (unsigned int)(ld_buff->LUN[i][3])) << 24;
			lunid |= (0xff &
				  (unsigned int)(ld_buff->LUN[i][2])) << 16;
			lunid |= (0xff &
				  (unsigned int)(ld_buff->LUN[i][1])) << 8;
			lunid |= 0xff & (unsigned int)(ld_buff->LUN[i][0]);
1474 1475 1476 1477 1478

			/* Find if the LUN is already in the drive array
			 * of the controller.  If so then update its info
			 * if not is use.  If it does not exist then find
			 * the first free index and add it.
1479 1480 1481
			 */
			for (j = 0; j <= h->highest_lun; j++) {
				if (h->drv[j].LunID == lunid) {
1482 1483 1484 1485 1486 1487
					drv_index = j;
					drv_found = 1;
				}
			}

			/* check if the drive was found already in the array */
1488
			if (!drv_found) {
1489 1490 1491 1492
				drv_index = cciss_find_free_drive_index(ctlr);
				if (drv_index == -1)
					goto freeret;

1493 1494 1495 1496 1497 1498 1499 1500
				/*Check if the gendisk needs to be allocated */
				if (!h->gendisk[drv_index]){
					h->gendisk[drv_index] = alloc_disk(1 << NWD_SHIFT);
					if (!h->gendisk[drv_index]){
						printk(KERN_ERR "cciss: could not allocate new disk %d\n", drv_index);
						goto mem_msg;
					}
				}
1501 1502 1503
			}
			h->drv[drv_index].LunID = lunid;
			cciss_update_drive_info(ctlr, drv_index);
1504 1505
		}		/* end for */
	}			/* end else */
1506

1507
      freeret:
1508 1509 1510 1511 1512
	kfree(ld_buff);
	h->busy_configuring = 0;
	/* We return -1 here to tell the ACU that we have registered/updated
	 * all of the drives that we can and to keep it from calling us
	 * additional times.
1513
	 */
1514
	return -1;
1515
      mem_msg:
1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530
	printk(KERN_ERR "cciss: out of memory\n");
	goto freeret;
}

/* This function will deregister the disk and it's queue from the
 * kernel.  It must be called with the controller lock held and the
 * drv structures busy_configuring flag set.  It's parameters are:
 *
 * disk = This is the disk to be deregistered
 * drv  = This is the drive_info_struct associated with the disk to be
 *        deregistered.  It contains information about the disk used
 *        by the driver.
 * clear_all = This flag determines whether or not the disk information
 *             is going to be completely cleared out and the highest_lun
 *             reset.  Sometimes we want to clear out information about
1531
 *             the disk in preparation for re-adding it.  In this case
1532 1533 1534 1535 1536 1537
 *             the highest_lun should be left unchanged and the LunID
 *             should not be cleared.
*/
static int deregister_disk(struct gendisk *disk, drive_info_struct *drv,
			   int clear_all)
{
1538
	int i;
L
Linus Torvalds 已提交
1539 1540 1541 1542 1543 1544
	ctlr_info_t *h = get_host(disk);

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

	/* make sure logical volume is NOT is use */
1545 1546 1547 1548 1549
	if (clear_all || (h->gendisk[0] == disk)) {
		if (drv->usage_count > 1)
			return -EBUSY;
	} else if (drv->usage_count > 0)
		return -EBUSY;
L
Linus Torvalds 已提交
1550

1551 1552 1553
	/* invalidate the devices and deregister the disk.  If it is disk
	 * zero do not deregister it but just zero out it's values.  This
	 * allows us to delete disk zero but keep the controller registered.
1554 1555
	 */
	if (h->gendisk[0] != disk) {
1556 1557 1558 1559
		if (disk) {
			request_queue_t *q = disk->queue;
			if (disk->flags & GENHD_FL_UP)
				del_gendisk(disk);
1560
			if (q) {
1561
				blk_cleanup_queue(q);
1562 1563 1564 1565
				/* Set drv->queue to NULL so that we do not try
				 * to call blk_start_queue on this queue in the
				 * interrupt handler
				 */
1566 1567
				drv->queue = NULL;
			}
1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587
			/* If clear_all is set then we are deleting the logical
			 * drive, not just refreshing its info.  For drives
			 * other than disk 0 we will call put_disk.  We do not
			 * do this for disk 0 as we need it to be able to
			 * configure the controller.
			*/
			if (clear_all){
				/* This isn't pretty, but we need to find the
				 * disk in our array and NULL our the pointer.
				 * This is so that we will call alloc_disk if
				 * this index is used again later.
				*/
				for (i=0; i < CISS_MAX_LUN; i++){
					if(h->gendisk[i] == disk){
						h->gendisk[i] = NULL;
						break;
					}
				}
				put_disk(disk);
			}
1588
		}
1589 1590
	} else {
		set_capacity(disk, 0);
1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602
	}

	--h->num_luns;
	/* zero out the disk size info */
	drv->nr_blocks = 0;
	drv->block_size = 0;
	drv->heads = 0;
	drv->sectors = 0;
	drv->cylinders = 0;
	drv->raid_level = -1;	/* This can be used as a flag variable to
				 * indicate that this element of the drive
				 * array is free.
1603 1604 1605 1606 1607 1608 1609 1610 1611
				 */

	if (clear_all) {
		/* check to see if it was the last disk */
		if (drv == h->drv + h->highest_lun) {
			/* if so, find the new hightest lun */
			int i, newhighest = -1;
			for (i = 0; i < h->highest_lun; i++) {
				/* if the disk has size > 0, it is available */
1612
				if (h->drv[i].heads)
1613 1614 1615
					newhighest = i;
			}
			h->highest_lun = newhighest;
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		}
1617

1618
		drv->LunID = 0;
1619
	}
1620
	return 0;
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}
1622

1623 1624 1625 1626 1627
static int fill_cmd(CommandList_struct *c, __u8 cmd, int ctlr, void *buff, size_t size, unsigned int use_unit_num,	/* 0: address the controller,
															   1: address logical volume log_unit,
															   2: periph device address is scsi3addr */
		    unsigned int log_unit, __u8 page_code,
		    unsigned char *scsi3addr, int cmd_type)
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{
1629
	ctlr_info_t *h = hba[ctlr];
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1630 1631 1632 1633 1634
	u64bit buff_dma_handle;
	int status = IO_OK;

	c->cmd_type = CMD_IOCTL_PEND;
	c->Header.ReplyQueue = 0;
1635
	if (buff != NULL) {
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1636
		c->Header.SGList = 1;
1637
		c->Header.SGTotal = 1;
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1638 1639
	} else {
		c->Header.SGList = 0;
1640
		c->Header.SGTotal = 0;
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1641 1642 1643 1644 1645
	}
	c->Header.Tag.lower = c->busaddr;

	c->Request.Type.Type = cmd_type;
	if (cmd_type == TYPE_CMD) {
1646 1647
		switch (cmd) {
		case CISS_INQUIRY:
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			/* If the logical unit number is 0 then, this is going
1649 1650 1651 1652 1653 1654
			   to controller so It's a physical command
			   mode = 0 target = 0.  So we have nothing to write.
			   otherwise, if use_unit_num == 1,
			   mode = 1(volume set addressing) target = LUNID
			   otherwise, if use_unit_num == 2,
			   mode = 0(periph dev addr) target = scsi3addr */
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1655
			if (use_unit_num == 1) {
1656 1657 1658
				c->Header.LUN.LogDev.VolId =
				    h->drv[log_unit].LunID;
				c->Header.LUN.LogDev.Mode = 1;
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			} else if (use_unit_num == 2) {
1660 1661
				memcpy(c->Header.LUN.LunAddrBytes, scsi3addr,
				       8);
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				c->Header.LUN.LogDev.Mode = 0;
			}
			/* are we trying to read a vital product page */
1665
			if (page_code != 0) {
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				c->Request.CDB[1] = 0x01;
				c->Request.CDB[2] = page_code;
			}
			c->Request.CDBLen = 6;
1670
			c->Request.Type.Attribute = ATTR_SIMPLE;
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			c->Request.Type.Direction = XFER_READ;
			c->Request.Timeout = 0;
1673 1674 1675
			c->Request.CDB[0] = CISS_INQUIRY;
			c->Request.CDB[4] = size & 0xFF;
			break;
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		case CISS_REPORT_LOG:
		case CISS_REPORT_PHYS:
1678
			/* Talking to controller so It's a physical command
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			   mode = 00 target = 0.  Nothing to write.
1680
			 */
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			c->Request.CDBLen = 12;
			c->Request.Type.Attribute = ATTR_SIMPLE;
			c->Request.Type.Direction = XFER_READ;
			c->Request.Timeout = 0;
			c->Request.CDB[0] = cmd;
1686
			c->Request.CDB[6] = (size >> 24) & 0xFF;	//MSB
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			c->Request.CDB[7] = (size >> 16) & 0xFF;
			c->Request.CDB[8] = (size >> 8) & 0xFF;
			c->Request.CDB[9] = size & 0xFF;
			break;

		case CCISS_READ_CAPACITY:
			c->Header.LUN.LogDev.VolId = h->drv[log_unit].LunID;
			c->Header.LUN.LogDev.Mode = 1;
			c->Request.CDBLen = 10;
			c->Request.Type.Attribute = ATTR_SIMPLE;
			c->Request.Type.Direction = XFER_READ;
			c->Request.Timeout = 0;
			c->Request.CDB[0] = cmd;
1700
			break;
1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716
		case CCISS_READ_CAPACITY_16:
			c->Header.LUN.LogDev.VolId = h->drv[log_unit].LunID;
			c->Header.LUN.LogDev.Mode = 1;
			c->Request.CDBLen = 16;
			c->Request.Type.Attribute = ATTR_SIMPLE;
			c->Request.Type.Direction = XFER_READ;
			c->Request.Timeout = 0;
			c->Request.CDB[0] = cmd;
			c->Request.CDB[1] = 0x10;
			c->Request.CDB[10] = (size >> 24) & 0xFF;
			c->Request.CDB[11] = (size >> 16) & 0xFF;
			c->Request.CDB[12] = (size >> 8) & 0xFF;
			c->Request.CDB[13] = size & 0xFF;
			c->Request.Timeout = 0;
			c->Request.CDB[0] = cmd;
			break;
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		case CCISS_CACHE_FLUSH:
			c->Request.CDBLen = 12;
			c->Request.Type.Attribute = ATTR_SIMPLE;
			c->Request.Type.Direction = XFER_WRITE;
			c->Request.Timeout = 0;
			c->Request.CDB[0] = BMIC_WRITE;
			c->Request.CDB[6] = BMIC_CACHE_FLUSH;
1724
			break;
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1725 1726
		default:
			printk(KERN_WARNING
1727
			       "cciss%d:  Unknown Command 0x%c\n", ctlr, cmd);
1728
			return IO_ERROR;
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1729 1730 1731
		}
	} else if (cmd_type == TYPE_MSG) {
		switch (cmd) {
1732
		case 0:	/* ABORT message */
1733 1734 1735 1736
			c->Request.CDBLen = 12;
			c->Request.Type.Attribute = ATTR_SIMPLE;
			c->Request.Type.Direction = XFER_WRITE;
			c->Request.Timeout = 0;
1737 1738
			c->Request.CDB[0] = cmd;	/* abort */
			c->Request.CDB[1] = 0;	/* abort a command */
1739 1740 1741
			/* buff contains the tag of the command to abort */
			memcpy(&c->Request.CDB[4], buff, 8);
			break;
1742
		case 1:	/* RESET message */
1743 1744 1745 1746 1747
			c->Request.CDBLen = 12;
			c->Request.Type.Attribute = ATTR_SIMPLE;
			c->Request.Type.Direction = XFER_WRITE;
			c->Request.Timeout = 0;
			memset(&c->Request.CDB[0], 0, sizeof(c->Request.CDB));
1748 1749
			c->Request.CDB[0] = cmd;	/* reset */
			c->Request.CDB[1] = 0x04;	/* reset a LUN */
1750
			break;
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		case 3:	/* No-Op message */
			c->Request.CDBLen = 1;
			c->Request.Type.Attribute = ATTR_SIMPLE;
			c->Request.Type.Direction = XFER_WRITE;
			c->Request.Timeout = 0;
			c->Request.CDB[0] = cmd;
			break;
		default:
			printk(KERN_WARNING
1760
			       "cciss%d: unknown message type %d\n", ctlr, cmd);
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			return IO_ERROR;
		}
	} else {
		printk(KERN_WARNING
1765
		       "cciss%d: unknown command type %d\n", ctlr, cmd_type);
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		return IO_ERROR;
	}
	/* Fill in the scatter gather information */
	if (size > 0) {
		buff_dma_handle.val = (__u64) pci_map_single(h->pdev,
1771 1772
							     buff, size,
							     PCI_DMA_BIDIRECTIONAL);
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		c->SG[0].Addr.lower = buff_dma_handle.val32.lower;
		c->SG[0].Addr.upper = buff_dma_handle.val32.upper;
		c->SG[0].Len = size;
1776
		c->SG[0].Ext = 0;	/* we are not chaining */
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	}
	return status;
}
1780 1781 1782 1783 1784 1785 1786

static int sendcmd_withirq(__u8 cmd,
			   int ctlr,
			   void *buff,
			   size_t size,
			   unsigned int use_unit_num,
			   unsigned int log_unit, __u8 page_code, int cmd_type)
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{
	ctlr_info_t *h = hba[ctlr];
	CommandList_struct *c;
1790
	u64bit buff_dma_handle;
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	unsigned long flags;
	int return_status;
1793
	DECLARE_COMPLETION_ONSTACK(wait);
1794 1795

	if ((c = cmd_alloc(h, 0)) == NULL)
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		return -ENOMEM;
	return_status = fill_cmd(c, cmd, ctlr, buff, size, use_unit_num,
1798
				 log_unit, page_code, NULL, cmd_type);
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	if (return_status != IO_OK) {
		cmd_free(h, c, 0);
		return return_status;
	}
1803
      resend_cmd2:
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	c->waiting = &wait;
1805

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	/* Put the request on the tail of the queue and send it */
	spin_lock_irqsave(CCISS_LOCK(ctlr), flags);
	addQ(&h->reqQ, c);
	h->Qdepth++;
	start_io(h);
	spin_unlock_irqrestore(CCISS_LOCK(ctlr), flags);
1812

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	wait_for_completion(&wait);

1815 1816 1817 1818 1819 1820 1821 1822 1823 1824
	if (c->err_info->CommandStatus != 0) {	/* an error has occurred */
		switch (c->err_info->CommandStatus) {
		case CMD_TARGET_STATUS:
			printk(KERN_WARNING "cciss: cmd %p has "
			       " completed with errors\n", c);
			if (c->err_info->ScsiStatus) {
				printk(KERN_WARNING "cciss: cmd %p "
				       "has SCSI Status = %x\n",
				       c, c->err_info->ScsiStatus);
			}
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1825 1826

			break;
1827 1828
		case CMD_DATA_UNDERRUN:
		case CMD_DATA_OVERRUN:
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			/* expected for inquire and report lun commands */
			break;
1831 1832 1833 1834
		case CMD_INVALID:
			printk(KERN_WARNING "cciss: Cmd %p is "
			       "reported invalid\n", c);
			return_status = IO_ERROR;
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			break;
1836 1837 1838 1839
		case CMD_PROTOCOL_ERR:
			printk(KERN_WARNING "cciss: cmd %p has "
			       "protocol error \n", c);
			return_status = IO_ERROR;
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1840
			break;
1841 1842 1843 1844
		case CMD_HARDWARE_ERR:
			printk(KERN_WARNING "cciss: cmd %p had "
			       " hardware error\n", c);
			return_status = IO_ERROR;
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			break;
1846 1847 1848 1849
		case CMD_CONNECTION_LOST:
			printk(KERN_WARNING "cciss: cmd %p had "
			       "connection lost\n", c);
			return_status = IO_ERROR;
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1850
			break;
1851 1852 1853 1854
		case CMD_ABORTED:
			printk(KERN_WARNING "cciss: cmd %p was "
			       "aborted\n", c);
			return_status = IO_ERROR;
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			break;
1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881
		case CMD_ABORT_FAILED:
			printk(KERN_WARNING "cciss: cmd %p reports "
			       "abort failed\n", c);
			return_status = IO_ERROR;
			break;
		case CMD_UNSOLICITED_ABORT:
			printk(KERN_WARNING
			       "cciss%d: unsolicited abort %p\n", ctlr, c);
			if (c->retry_count < MAX_CMD_RETRIES) {
				printk(KERN_WARNING
				       "cciss%d: retrying %p\n", ctlr, c);
				c->retry_count++;
				/* erase the old error information */
				memset(c->err_info, 0,
				       sizeof(ErrorInfo_struct));
				return_status = IO_OK;
				INIT_COMPLETION(wait);
				goto resend_cmd2;
			}
			return_status = IO_ERROR;
			break;
		default:
			printk(KERN_WARNING "cciss: cmd %p returned "
			       "unknown status %x\n", c,
			       c->err_info->CommandStatus);
			return_status = IO_ERROR;
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		}
1883
	}
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	/* unlock the buffers from DMA */
1885 1886
	buff_dma_handle.val32.lower = c->SG[0].Addr.lower;
	buff_dma_handle.val32.upper = c->SG[0].Addr.upper;
1887 1888
	pci_unmap_single(h->pdev, (dma_addr_t) buff_dma_handle.val,
			 c->SG[0].Len, PCI_DMA_BIDIRECTIONAL);
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	cmd_free(h, c, 0);
1890
	return return_status;
L
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1891
}
1892

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static void cciss_geometry_inquiry(int ctlr, int logvol,
1894
				   int withirq, sector_t total_size,
1895 1896 1897
				   unsigned int block_size,
				   InquiryData_struct *inq_buff,
				   drive_info_struct *drv)
L
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1898 1899
{
	int return_code;
1900 1901
	unsigned long t;

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	memset(inq_buff, 0, sizeof(InquiryData_struct));
	if (withirq)
		return_code = sendcmd_withirq(CISS_INQUIRY, ctlr,
1905 1906
					      inq_buff, sizeof(*inq_buff), 1,
					      logvol, 0xC1, TYPE_CMD);
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1907 1908
	else
		return_code = sendcmd(CISS_INQUIRY, ctlr, inq_buff,
1909 1910
				      sizeof(*inq_buff), 1, logvol, 0xC1, NULL,
				      TYPE_CMD);
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1911
	if (return_code == IO_OK) {
1912
		if (inq_buff->data_byte[8] == 0xFF) {
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			printk(KERN_WARNING
1914 1915
			       "cciss: reading geometry failed, volume "
			       "does not support reading geometry\n");
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1916
			drv->heads = 255;
1917
			drv->sectors = 32;	// Sectors per track
1918
			drv->raid_level = RAID_UNKNOWN;
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		} else {
			drv->heads = inq_buff->data_byte[6];
			drv->sectors = inq_buff->data_byte[7];
			drv->cylinders = (inq_buff->data_byte[4] & 0xff) << 8;
			drv->cylinders += inq_buff->data_byte[5];
			drv->raid_level = inq_buff->data_byte[8];
1925 1926
		}
		drv->block_size = block_size;
1927
		drv->nr_blocks = total_size + 1;
1928 1929
		t = drv->heads * drv->sectors;
		if (t > 1) {
1930 1931
			sector_t real_size = total_size + 1;
			unsigned long rem = sector_div(real_size, t);
1932
			if (rem)
1933 1934
				real_size++;
			drv->cylinders = real_size;
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1935
		}
1936
	} else {		/* Get geometry failed */
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1937 1938
		printk(KERN_WARNING "cciss: reading geometry failed\n");
	}
1939
	printk(KERN_INFO "      heads=%d, sectors=%d, cylinders=%d\n\n",
1940
	       drv->heads, drv->sectors, drv->cylinders);
L
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1941
}
1942

L
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1943
static void
1944
cciss_read_capacity(int ctlr, int logvol, int withirq, sector_t *total_size,
1945
		    unsigned int *block_size)
L
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1946
{
1947
	ReadCapdata_struct *buf;
L
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1948
	int return_code;
1949 1950 1951 1952 1953 1954
	buf = kmalloc(sizeof(ReadCapdata_struct), GFP_KERNEL);
	if (buf == NULL) {
		printk(KERN_WARNING "cciss: out of memory\n");
		return;
	}
	memset(buf, 0, sizeof(ReadCapdata_struct));
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1955 1956
	if (withirq)
		return_code = sendcmd_withirq(CCISS_READ_CAPACITY,
1957 1958
				ctlr, buf, sizeof(ReadCapdata_struct),
					1, logvol, 0, TYPE_CMD);
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	else
		return_code = sendcmd(CCISS_READ_CAPACITY,
1961 1962
				ctlr, buf, sizeof(ReadCapdata_struct),
					1, logvol, 0, NULL, TYPE_CMD);
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1963
	if (return_code == IO_OK) {
1964
		*total_size = be32_to_cpu(*(__u32 *) buf->total_size);
1965
		*block_size = be32_to_cpu(*(__u32 *) buf->block_size);
1966
	} else {		/* read capacity command failed */
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		printk(KERN_WARNING "cciss: read capacity failed\n");
		*total_size = 0;
		*block_size = BLOCK_SIZE;
	}
1971
	if (*total_size != 0)
1972
		printk(KERN_INFO "      blocks= %llu block_size= %d\n",
1973
		(unsigned long long)*total_size+1, *block_size);
1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999
	kfree(buf);
	return;
}

static void
cciss_read_capacity_16(int ctlr, int logvol, int withirq, sector_t *total_size, 				unsigned int *block_size)
{
	ReadCapdata_struct_16 *buf;
	int return_code;
	buf = kmalloc(sizeof(ReadCapdata_struct_16), GFP_KERNEL);
	if (buf == NULL) {
		printk(KERN_WARNING "cciss: out of memory\n");
		return;
	}
	memset(buf, 0, sizeof(ReadCapdata_struct_16));
	if (withirq) {
		return_code = sendcmd_withirq(CCISS_READ_CAPACITY_16,
			ctlr, buf, sizeof(ReadCapdata_struct_16),
				1, logvol, 0, TYPE_CMD);
	}
	else {
		return_code = sendcmd(CCISS_READ_CAPACITY_16,
			ctlr, buf, sizeof(ReadCapdata_struct_16),
				1, logvol, 0, NULL, TYPE_CMD);
	}
	if (return_code == IO_OK) {
2000
		*total_size = be64_to_cpu(*(__u64 *) buf->total_size);
2001 2002 2003 2004 2005 2006
		*block_size = be32_to_cpu(*(__u32 *) buf->block_size);
	} else {		/* read capacity command failed */
		printk(KERN_WARNING "cciss: read capacity failed\n");
		*total_size = 0;
		*block_size = BLOCK_SIZE;
	}
2007
	printk(KERN_INFO "      blocks= %llu block_size= %d\n",
2008
	       (unsigned long long)*total_size+1, *block_size);
2009
	kfree(buf);
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	return;
}

static int cciss_revalidate(struct gendisk *disk)
{
	ctlr_info_t *h = get_host(disk);
	drive_info_struct *drv = get_drv(disk);
	int logvol;
2018
	int FOUND = 0;
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	unsigned int block_size;
2020
	sector_t total_size;
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	InquiryData_struct *inq_buff = NULL;

2023 2024 2025
	for (logvol = 0; logvol < CISS_MAX_LUN; logvol++) {
		if (h->drv[logvol].LunID == drv->LunID) {
			FOUND = 1;
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2026 2027 2028 2029
			break;
		}
	}

2030 2031
	if (!FOUND)
		return 1;
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2032

2033 2034 2035 2036 2037
	inq_buff = kmalloc(sizeof(InquiryData_struct), GFP_KERNEL);
	if (inq_buff == NULL) {
		printk(KERN_WARNING "cciss: out of memory\n");
		return 1;
	}
2038 2039 2040 2041 2042 2043 2044
	if (h->cciss_read == CCISS_READ_10) {
		cciss_read_capacity(h->ctlr, logvol, 1,
					&total_size, &block_size);
	} else {
		cciss_read_capacity_16(h->ctlr, logvol, 1,
					&total_size, &block_size);
	}
2045 2046
	cciss_geometry_inquiry(h->ctlr, logvol, 1, total_size, block_size,
			       inq_buff, drv);
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	blk_queue_hardsect_size(drv->queue, drv->block_size);
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	set_capacity(disk, drv->nr_blocks);

	kfree(inq_buff);
	return 0;
}

/*
 *   Wait polling for a command to complete.
 *   The memory mapped FIFO is polled for the completion.
 *   Used only at init time, interrupts from the HBA are disabled.
 */
static unsigned long pollcomplete(int ctlr)
{
	unsigned long done;
	int i;

	/* Wait (up to 20 seconds) for a command to complete */

	for (i = 20 * HZ; i > 0; i--) {
		done = hba[ctlr]->access.command_completed(hba[ctlr]);
2069 2070 2071
		if (done == FIFO_EMPTY)
			schedule_timeout_uninterruptible(1);
		else
2072
			return done;
L
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2073 2074 2075 2076
	}
	/* Invalid address to tell caller we ran out of time */
	return 1;
}
2077 2078 2079 2080

static int add_sendcmd_reject(__u8 cmd, int ctlr, unsigned long complete)
{
	/* We get in here if sendcmd() is polling for completions
2081 2082 2083
	   and gets some command back that it wasn't expecting --
	   something other than that which it just sent down.
	   Ordinarily, that shouldn't happen, but it can happen when
2084
	   the scsi tape stuff gets into error handling mode, and
2085
	   starts using sendcmd() to try to abort commands and
2086 2087
	   reset tape drives.  In that case, sendcmd may pick up
	   completions of commands that were sent to logical drives
2088
	   through the block i/o system, or cciss ioctls completing, etc.
2089 2090
	   In that case, we need to save those completions for later
	   processing by the interrupt handler.
2091
	 */
2092 2093

#ifdef CONFIG_CISS_SCSI_TAPE
2094
	struct sendcmd_reject_list *srl = &hba[ctlr]->scsi_rejects;
2095 2096 2097 2098 2099

	/* If it's not the scsi tape stuff doing error handling, (abort */
	/* or reset) then we don't expect anything weird. */
	if (cmd != CCISS_RESET_MSG && cmd != CCISS_ABORT_MSG) {
#endif
2100 2101 2102
		printk(KERN_WARNING "cciss cciss%d: SendCmd "
		       "Invalid command list address returned! (%lx)\n",
		       ctlr, complete);
2103 2104 2105 2106 2107 2108 2109
		/* not much we can do. */
#ifdef CONFIG_CISS_SCSI_TAPE
		return 1;
	}

	/* We've sent down an abort or reset, but something else
	   has completed */
2110
	if (srl->ncompletions >= (hba[ctlr]->nr_cmds + 2)) {
2111 2112
		/* Uh oh.  No room to save it for later... */
		printk(KERN_WARNING "cciss%d: Sendcmd: Invalid command addr, "
2113
		       "reject list overflow, command lost!\n", ctlr);
2114 2115 2116 2117 2118 2119 2120 2121 2122
		return 1;
	}
	/* Save it for later */
	srl->complete[srl->ncompletions] = complete;
	srl->ncompletions++;
#endif
	return 0;
}

L
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2123
/*
2124 2125
 * Send a command to the controller, and wait for it to complete.
 * Only used at init time.
L
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2126
 */
2127 2128 2129 2130 2131
static int sendcmd(__u8 cmd, int ctlr, void *buff, size_t size, unsigned int use_unit_num,	/* 0: address the controller,
												   1: address logical volume log_unit,
												   2: periph device address is scsi3addr */
		   unsigned int log_unit,
		   __u8 page_code, unsigned char *scsi3addr, int cmd_type)
L
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2132 2133 2134 2135
{
	CommandList_struct *c;
	int i;
	unsigned long complete;
2136
	ctlr_info_t *info_p = hba[ctlr];
L
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2137
	u64bit buff_dma_handle;
2138
	int status, done = 0;
L
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2139 2140 2141

	if ((c = cmd_alloc(info_p, 1)) == NULL) {
		printk(KERN_WARNING "cciss: unable to get memory");
2142
		return IO_ERROR;
L
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2143 2144
	}
	status = fill_cmd(c, cmd, ctlr, buff, size, use_unit_num,
2145
			  log_unit, page_code, scsi3addr, cmd_type);
L
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2146 2147 2148 2149
	if (status != IO_OK) {
		cmd_free(info_p, c, 1);
		return status;
	}
2150
      resend_cmd1:
L
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2151
	/*
2152 2153
	 * Disable interrupt
	 */
L
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2154 2155
#ifdef CCISS_DEBUG
	printk(KERN_DEBUG "cciss: turning intr off\n");
2156 2157 2158
#endif				/* CCISS_DEBUG */
	info_p->access.set_intr_mask(info_p, CCISS_INTR_OFF);

L
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2159
	/* Make sure there is room in the command FIFO */
2160
	/* Actually it should be completely empty at this time */
2161 2162
	/* unless we are in here doing error handling for the scsi */
	/* tape side of the driver. */
2163
	for (i = 200000; i > 0; i--) {
L
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2164
		/* if fifo isn't full go */
2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176
		if (!(info_p->access.fifo_full(info_p))) {

			break;
		}
		udelay(10);
		printk(KERN_WARNING "cciss cciss%d: SendCmd FIFO full,"
		       " waiting!\n", ctlr);
	}
	/*
	 * Send the cmd
	 */
	info_p->access.submit_command(info_p, c);
2177 2178 2179
	done = 0;
	do {
		complete = pollcomplete(ctlr);
L
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2180 2181

#ifdef CCISS_DEBUG
2182
		printk(KERN_DEBUG "cciss: command completed\n");
2183
#endif				/* CCISS_DEBUG */
L
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2184

2185
		if (complete == 1) {
2186 2187 2188
			printk(KERN_WARNING
			       "cciss cciss%d: SendCmd Timeout out, "
			       "No command list address returned!\n", ctlr);
2189 2190 2191 2192 2193 2194
			status = IO_ERROR;
			done = 1;
			break;
		}

		/* This will need to change for direct lookup completions */
2195 2196 2197 2198 2199
		if ((complete & CISS_ERROR_BIT)
		    && (complete & ~CISS_ERROR_BIT) == c->busaddr) {
			/* if data overrun or underun on Report command
			   ignore it
			 */
L
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2200 2201 2202
			if (((c->Request.CDB[0] == CISS_REPORT_LOG) ||
			     (c->Request.CDB[0] == CISS_REPORT_PHYS) ||
			     (c->Request.CDB[0] == CISS_INQUIRY)) &&
2203 2204 2205 2206
			    ((c->err_info->CommandStatus ==
			      CMD_DATA_OVERRUN) ||
			     (c->err_info->CommandStatus == CMD_DATA_UNDERRUN)
			    )) {
L
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2207 2208 2209
				complete = c->busaddr;
			} else {
				if (c->err_info->CommandStatus ==
2210
				    CMD_UNSOLICITED_ABORT) {
L
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2211
					printk(KERN_WARNING "cciss%d: "
2212 2213
					       "unsolicited abort %p\n",
					       ctlr, c);
L
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2214 2215
					if (c->retry_count < MAX_CMD_RETRIES) {
						printk(KERN_WARNING
2216 2217
						       "cciss%d: retrying %p\n",
						       ctlr, c);
L
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2218 2219 2220 2221
						c->retry_count++;
						/* erase the old error */
						/* information */
						memset(c->err_info, 0,
2222 2223
						       sizeof
						       (ErrorInfo_struct));
L
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2224 2225 2226
						goto resend_cmd1;
					} else {
						printk(KERN_WARNING
2227 2228
						       "cciss%d: retried %p too "
						       "many times\n", ctlr, c);
L
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2229 2230 2231
						status = IO_ERROR;
						goto cleanup1;
					}
2232 2233 2234 2235 2236
				} else if (c->err_info->CommandStatus ==
					   CMD_UNABORTABLE) {
					printk(KERN_WARNING
					       "cciss%d: command could not be aborted.\n",
					       ctlr);
2237 2238
					status = IO_ERROR;
					goto cleanup1;
L
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2239 2240
				}
				printk(KERN_WARNING "ciss ciss%d: sendcmd"
2241 2242
				       " Error %x \n", ctlr,
				       c->err_info->CommandStatus);
L
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2243
				printk(KERN_WARNING "ciss ciss%d: sendcmd"
2244 2245 2246 2247 2248 2249 2250 2251 2252
				       " offensive info\n"
				       "  size %x\n   num %x   value %x\n",
				       ctlr,
				       c->err_info->MoreErrInfo.Invalid_Cmd.
				       offense_size,
				       c->err_info->MoreErrInfo.Invalid_Cmd.
				       offense_num,
				       c->err_info->MoreErrInfo.Invalid_Cmd.
				       offense_value);
L
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2253 2254 2255 2256
				status = IO_ERROR;
				goto cleanup1;
			}
		}
2257
		/* This will need changing for direct lookup completions */
2258
		if (complete != c->busaddr) {
2259
			if (add_sendcmd_reject(cmd, ctlr, complete) != 0) {
2260
				BUG();	/* we are pretty much hosed if we get here. */
2261 2262
			}
			continue;
2263
		} else
2264
			done = 1;
2265 2266 2267
	} while (!done);

      cleanup1:
L
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2268
	/* unlock the data buffer from DMA */
2269 2270
	buff_dma_handle.val32.lower = c->SG[0].Addr.lower;
	buff_dma_handle.val32.upper = c->SG[0].Addr.upper;
L
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2271
	pci_unmap_single(info_p->pdev, (dma_addr_t) buff_dma_handle.val,
2272
			 c->SG[0].Len, PCI_DMA_BIDIRECTIONAL);
2273 2274 2275
#ifdef CONFIG_CISS_SCSI_TAPE
	/* if we saved some commands for later, process them now. */
	if (info_p->scsi_rejects.ncompletions > 0)
2276
		do_cciss_intr(0, info_p);
2277
#endif
L
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2278
	cmd_free(info_p, c, 1);
2279
	return status;
2280 2281
}

L
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2282 2283 2284 2285 2286
/*
 * Map (physical) PCI mem into (virtual) kernel space
 */
static void __iomem *remap_pci_mem(ulong base, ulong size)
{
2287 2288 2289
	ulong page_base = ((ulong) base) & PAGE_MASK;
	ulong page_offs = ((ulong) base) - page_base;
	void __iomem *page_remapped = ioremap(page_base, page_offs + size);
L
Linus Torvalds 已提交
2290

2291
	return page_remapped ? (page_remapped + page_offs) : NULL;
L
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2292 2293
}

2294 2295 2296 2297 2298
/*
 * Takes jobs of the Q and sends them to the hardware, then puts it on
 * the Q to wait for completion.
 */
static void start_io(ctlr_info_t *h)
L
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2299 2300
{
	CommandList_struct *c;
2301 2302

	while ((c = h->reqQ) != NULL) {
L
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2303 2304 2305 2306 2307 2308
		/* can't do anything if fifo is full */
		if ((h->access.fifo_full(h))) {
			printk(KERN_WARNING "cciss: fifo full\n");
			break;
		}

2309
		/* Get the first entry from the Request Q */
L
Linus Torvalds 已提交
2310 2311
		removeQ(&(h->reqQ), c);
		h->Qdepth--;
2312 2313

		/* Tell the controller execute command */
L
Linus Torvalds 已提交
2314
		h->access.submit_command(h, c);
2315 2316 2317

		/* Put job onto the completed Q */
		addQ(&(h->cmpQ), c);
L
Linus Torvalds 已提交
2318 2319
	}
}
2320

L
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2321 2322 2323
/* Assumes that CCISS_LOCK(h->ctlr) is held. */
/* Zeros out the error record and then resends the command back */
/* to the controller */
2324
static inline void resend_cciss_cmd(ctlr_info_t *h, CommandList_struct *c)
L
Linus Torvalds 已提交
2325 2326 2327 2328 2329
{
	/* erase the old error information */
	memset(c->err_info, 0, sizeof(ErrorInfo_struct));

	/* add it to software queue and then send it to the controller */
2330
	addQ(&(h->reqQ), c);
L
Linus Torvalds 已提交
2331
	h->Qdepth++;
2332
	if (h->Qdepth > h->maxQsinceinit)
L
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2333 2334 2335 2336
		h->maxQsinceinit = h->Qdepth;

	start_io(h);
}
2337

2338
/* checks the status of the job and calls complete buffers to mark all
2339 2340
 * buffers for the completed job. Note that this function does not need
 * to hold the hba/queue lock.
2341 2342 2343
 */
static inline void complete_command(ctlr_info_t *h, CommandList_struct *cmd,
				    int timeout)
L
Linus Torvalds 已提交
2344 2345 2346
{
	int status = 1;
	int retry_cmd = 0;
2347

L
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2348
	if (timeout)
2349
		status = 0;
L
Linus Torvalds 已提交
2350

2351 2352
	if (cmd->err_info->CommandStatus != 0) {	/* an error has occurred */
		switch (cmd->err_info->CommandStatus) {
L
Linus Torvalds 已提交
2353
			unsigned char sense_key;
2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367
		case CMD_TARGET_STATUS:
			status = 0;

			if (cmd->err_info->ScsiStatus == 0x02) {
				printk(KERN_WARNING "cciss: cmd %p "
				       "has CHECK CONDITION "
				       " byte 2 = 0x%x\n", cmd,
				       cmd->err_info->SenseInfo[2]
				    );
				/* check the sense key */
				sense_key = 0xf & cmd->err_info->SenseInfo[2];
				/* no status or recovered error */
				if ((sense_key == 0x0) || (sense_key == 0x1)) {
					status = 1;
L
Linus Torvalds 已提交
2368
				}
2369 2370 2371 2372 2373
			} else {
				printk(KERN_WARNING "cciss: cmd %p "
				       "has SCSI Status 0x%x\n",
				       cmd, cmd->err_info->ScsiStatus);
			}
L
Linus Torvalds 已提交
2374
			break;
2375 2376 2377 2378
		case CMD_DATA_UNDERRUN:
			printk(KERN_WARNING "cciss: cmd %p has"
			       " completed with data underrun "
			       "reported\n", cmd);
L
Linus Torvalds 已提交
2379
			break;
2380 2381 2382 2383
		case CMD_DATA_OVERRUN:
			printk(KERN_WARNING "cciss: cmd %p has"
			       " completed with data overrun "
			       "reported\n", cmd);
L
Linus Torvalds 已提交
2384
			break;
2385 2386 2387 2388
		case CMD_INVALID:
			printk(KERN_WARNING "cciss: cmd %p is "
			       "reported invalid\n", cmd);
			status = 0;
L
Linus Torvalds 已提交
2389
			break;
2390 2391 2392 2393
		case CMD_PROTOCOL_ERR:
			printk(KERN_WARNING "cciss: cmd %p has "
			       "protocol error \n", cmd);
			status = 0;
L
Linus Torvalds 已提交
2394
			break;
2395 2396 2397 2398
		case CMD_HARDWARE_ERR:
			printk(KERN_WARNING "cciss: cmd %p had "
			       " hardware error\n", cmd);
			status = 0;
L
Linus Torvalds 已提交
2399
			break;
2400 2401 2402 2403
		case CMD_CONNECTION_LOST:
			printk(KERN_WARNING "cciss: cmd %p had "
			       "connection lost\n", cmd);
			status = 0;
L
Linus Torvalds 已提交
2404
			break;
2405 2406 2407 2408
		case CMD_ABORTED:
			printk(KERN_WARNING "cciss: cmd %p was "
			       "aborted\n", cmd);
			status = 0;
L
Linus Torvalds 已提交
2409
			break;
2410 2411 2412 2413
		case CMD_ABORT_FAILED:
			printk(KERN_WARNING "cciss: cmd %p reports "
			       "abort failed\n", cmd);
			status = 0;
L
Linus Torvalds 已提交
2414
			break;
2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437
		case CMD_UNSOLICITED_ABORT:
			printk(KERN_WARNING "cciss%d: unsolicited "
			       "abort %p\n", h->ctlr, cmd);
			if (cmd->retry_count < MAX_CMD_RETRIES) {
				retry_cmd = 1;
				printk(KERN_WARNING
				       "cciss%d: retrying %p\n", h->ctlr, cmd);
				cmd->retry_count++;
			} else
				printk(KERN_WARNING
				       "cciss%d: %p retried too "
				       "many times\n", h->ctlr, cmd);
			status = 0;
			break;
		case CMD_TIMEOUT:
			printk(KERN_WARNING "cciss: cmd %p timedout\n", cmd);
			status = 0;
			break;
		default:
			printk(KERN_WARNING "cciss: cmd %p returned "
			       "unknown status %x\n", cmd,
			       cmd->err_info->CommandStatus);
			status = 0;
L
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2438 2439 2440
		}
	}
	/* We need to return this command */
2441 2442
	if (retry_cmd) {
		resend_cciss_cmd(h, cmd);
L
Linus Torvalds 已提交
2443
		return;
2444
	}
L
Linus Torvalds 已提交
2445

2446 2447
	cmd->rq->completion_data = cmd;
	cmd->rq->errors = status;
2448
	blk_add_trace_rq(cmd->rq->q, cmd->rq, BLK_TA_COMPLETE);
2449
	blk_complete_request(cmd->rq);
L
Linus Torvalds 已提交
2450 2451
}

2452 2453
/*
 * Get a request and submit it to the controller.
L
Linus Torvalds 已提交
2454 2455 2456
 */
static void do_cciss_request(request_queue_t *q)
{
2457
	ctlr_info_t *h = q->queuedata;
L
Linus Torvalds 已提交
2458
	CommandList_struct *c;
2459 2460
	sector_t start_blk;
	int seg;
L
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2461 2462 2463 2464 2465 2466 2467 2468
	struct request *creq;
	u64bit temp64;
	struct scatterlist tmp_sg[MAXSGENTRIES];
	drive_info_struct *drv;
	int i, dir;

	/* We call start_io here in case there is a command waiting on the
	 * queue that has not been sent.
2469
	 */
L
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2470 2471 2472
	if (blk_queue_plugged(q))
		goto startio;

2473
      queue:
L
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2474 2475 2476 2477
	creq = elv_next_request(q);
	if (!creq)
		goto startio;

2478
	BUG_ON(creq->nr_phys_segments > MAXSGENTRIES);
L
Linus Torvalds 已提交
2479

2480
	if ((c = cmd_alloc(h, 1)) == NULL)
L
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2481 2482 2483 2484 2485 2486 2487 2488
		goto full;

	blkdev_dequeue_request(creq);

	spin_unlock_irq(q->queue_lock);

	c->cmd_type = CMD_RWREQ;
	c->rq = creq;
2489 2490

	/* fill in the request */
L
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2491
	drv = creq->rq_disk->private_data;
2492
	c->Header.ReplyQueue = 0;	// unused in simple mode
2493 2494 2495 2496
	/* got command from pool, so use the command block index instead */
	/* for direct lookups. */
	/* The first 2 bits are reserved for controller error reporting. */
	c->Header.Tag.lower = (c->cmdindex << 3);
2497 2498
	c->Header.Tag.lower |= 0x04;	/* flag for direct lookup. */
	c->Header.LUN.LogDev.VolId = drv->LunID;
L
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2499
	c->Header.LUN.LogDev.Mode = 1;
2500 2501 2502 2503
	c->Request.CDBLen = 10;	// 12 byte commands not in FW yet;
	c->Request.Type.Type = TYPE_CMD;	// It is a command.
	c->Request.Type.Attribute = ATTR_SIMPLE;
	c->Request.Type.Direction =
2504
	    (rq_data_dir(creq) == READ) ? XFER_READ : XFER_WRITE;
2505 2506
	c->Request.Timeout = 0;	// Don't time out
	c->Request.CDB[0] =
2507
	    (rq_data_dir(creq) == READ) ? h->cciss_read : h->cciss_write;
L
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2508 2509
	start_blk = creq->sector;
#ifdef CCISS_DEBUG
2510 2511 2512
	printk(KERN_DEBUG "ciss: sector =%d nr_sectors=%d\n", (int)creq->sector,
	       (int)creq->nr_sectors);
#endif				/* CCISS_DEBUG */
L
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2513 2514 2515

	seg = blk_rq_map_sg(q, creq, tmp_sg);

2516
	/* get the DMA records for the setup */
L
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2517 2518 2519 2520 2521
	if (c->Request.Type.Direction == XFER_READ)
		dir = PCI_DMA_FROMDEVICE;
	else
		dir = PCI_DMA_TODEVICE;

2522
	for (i = 0; i < seg; i++) {
L
Linus Torvalds 已提交
2523 2524
		c->SG[i].Len = tmp_sg[i].length;
		temp64.val = (__u64) pci_map_page(h->pdev, tmp_sg[i].page,
2525 2526
						  tmp_sg[i].offset,
						  tmp_sg[i].length, dir);
L
Linus Torvalds 已提交
2527
		c->SG[i].Addr.lower = temp64.val32.lower;
2528 2529
		c->SG[i].Addr.upper = temp64.val32.upper;
		c->SG[i].Ext = 0;	// we are not chaining
L
Linus Torvalds 已提交
2530
	}
2531 2532 2533
	/* track how many SG entries we are using */
	if (seg > h->maxSG)
		h->maxSG = seg;
L
Linus Torvalds 已提交
2534 2535

#ifdef CCISS_DEBUG
2536 2537 2538
	printk(KERN_DEBUG "cciss: Submitting %d sectors in %d segments\n",
	       creq->nr_sectors, seg);
#endif				/* CCISS_DEBUG */
L
Linus Torvalds 已提交
2539 2540

	c->Header.SGList = c->Header.SGTotal = seg;
2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567
	if(h->cciss_read == CCISS_READ_10) {
		c->Request.CDB[1] = 0;
		c->Request.CDB[2] = (start_blk >> 24) & 0xff;	//MSB
		c->Request.CDB[3] = (start_blk >> 16) & 0xff;
		c->Request.CDB[4] = (start_blk >> 8) & 0xff;
		c->Request.CDB[5] = start_blk & 0xff;
		c->Request.CDB[6] = 0;	// (sect >> 24) & 0xff; MSB
		c->Request.CDB[7] = (creq->nr_sectors >> 8) & 0xff;
		c->Request.CDB[8] = creq->nr_sectors & 0xff;
		c->Request.CDB[9] = c->Request.CDB[11] = c->Request.CDB[12] = 0;
	} else {
		c->Request.CDBLen = 16;
		c->Request.CDB[1]= 0;
		c->Request.CDB[2]= (start_blk >> 56) & 0xff;	//MSB
		c->Request.CDB[3]= (start_blk >> 48) & 0xff;
		c->Request.CDB[4]= (start_blk >> 40) & 0xff;
		c->Request.CDB[5]= (start_blk >> 32) & 0xff;
		c->Request.CDB[6]= (start_blk >> 24) & 0xff;
		c->Request.CDB[7]= (start_blk >> 16) & 0xff;
		c->Request.CDB[8]= (start_blk >>  8) & 0xff;
		c->Request.CDB[9]= start_blk & 0xff;
		c->Request.CDB[10]= (creq->nr_sectors >>  24) & 0xff;
		c->Request.CDB[11]= (creq->nr_sectors >>  16) & 0xff;
		c->Request.CDB[12]= (creq->nr_sectors >>  8) & 0xff;
		c->Request.CDB[13]= creq->nr_sectors & 0xff;
		c->Request.CDB[14] = c->Request.CDB[15] = 0;
	}
L
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2568 2569 2570

	spin_lock_irq(q->queue_lock);

2571
	addQ(&(h->reqQ), c);
L
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2572
	h->Qdepth++;
2573 2574
	if (h->Qdepth > h->maxQsinceinit)
		h->maxQsinceinit = h->Qdepth;
L
Linus Torvalds 已提交
2575 2576

	goto queue;
2577
full:
L
Linus Torvalds 已提交
2578
	blk_stop_queue(q);
2579
startio:
L
Linus Torvalds 已提交
2580 2581
	/* We will already have the driver lock here so not need
	 * to lock it.
2582
	 */
L
Linus Torvalds 已提交
2583 2584 2585
	start_io(h);
}

2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608
static inline unsigned long get_next_completion(ctlr_info_t *h)
{
#ifdef CONFIG_CISS_SCSI_TAPE
	/* Any rejects from sendcmd() lying around? Process them first */
	if (h->scsi_rejects.ncompletions == 0)
		return h->access.command_completed(h);
	else {
		struct sendcmd_reject_list *srl;
		int n;
		srl = &h->scsi_rejects;
		n = --srl->ncompletions;
		/* printk("cciss%d: processing saved reject\n", h->ctlr); */
		printk("p");
		return srl->complete[n];
	}
#else
	return h->access.command_completed(h);
#endif
}

static inline int interrupt_pending(ctlr_info_t *h)
{
#ifdef CONFIG_CISS_SCSI_TAPE
2609
	return (h->access.intr_pending(h)
2610 2611 2612 2613 2614 2615 2616 2617 2618
		|| (h->scsi_rejects.ncompletions > 0));
#else
	return h->access.intr_pending(h);
#endif
}

static inline long interrupt_not_for_us(ctlr_info_t *h)
{
#ifdef CONFIG_CISS_SCSI_TAPE
2619 2620 2621
	return (((h->access.intr_pending(h) == 0) ||
		 (h->interrupts_enabled == 0))
		&& (h->scsi_rejects.ncompletions == 0));
2622
#else
2623
	return (((h->access.intr_pending(h) == 0) ||
2624 2625 2626 2627
		 (h->interrupts_enabled == 0)));
#endif
}

2628
static irqreturn_t do_cciss_intr(int irq, void *dev_id)
L
Linus Torvalds 已提交
2629 2630 2631 2632
{
	ctlr_info_t *h = dev_id;
	CommandList_struct *c;
	unsigned long flags;
2633
	__u32 a, a1, a2;
L
Linus Torvalds 已提交
2634

2635
	if (interrupt_not_for_us(h))
L
Linus Torvalds 已提交
2636 2637 2638 2639 2640 2641
		return IRQ_NONE;
	/*
	 * If there are completed commands in the completion queue,
	 * we had better do something about it.
	 */
	spin_lock_irqsave(CCISS_LOCK(h->ctlr), flags);
2642
	while (interrupt_pending(h)) {
2643
		while ((a = get_next_completion(h)) != FIFO_EMPTY) {
L
Linus Torvalds 已提交
2644
			a1 = a;
2645 2646
			if ((a & 0x04)) {
				a2 = (a >> 3);
2647
				if (a2 >= h->nr_cmds) {
2648 2649 2650
					printk(KERN_WARNING
					       "cciss: controller cciss%d failed, stopping.\n",
					       h->ctlr);
2651 2652 2653 2654 2655 2656 2657 2658
					fail_all_cmds(h->ctlr);
					return IRQ_HANDLED;
				}

				c = h->cmd_pool + a2;
				a = c->busaddr;

			} else {
2659
				a &= ~3;
2660
				if ((c = h->cmpQ) == NULL) {
2661 2662 2663 2664 2665 2666 2667 2668 2669 2670
					printk(KERN_WARNING
					       "cciss: Completion of %08x ignored\n",
					       a1);
					continue;
				}
				while (c->busaddr != a) {
					c = c->next;
					if (c == h->cmpQ)
						break;
				}
2671
			}
L
Linus Torvalds 已提交
2672 2673 2674 2675
			/*
			 * If we've found the command, take it off the
			 * completion Q and free it
			 */
2676
			if (c->busaddr == a) {
L
Linus Torvalds 已提交
2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694
				removeQ(&h->cmpQ, c);
				if (c->cmd_type == CMD_RWREQ) {
					complete_command(h, c, 0);
				} else if (c->cmd_type == CMD_IOCTL_PEND) {
					complete(c->waiting);
				}
#				ifdef CONFIG_CISS_SCSI_TAPE
				else if (c->cmd_type == CMD_SCSI)
					complete_scsi_command(c, 0, a1);
#				endif
				continue;
			}
		}
	}

	spin_unlock_irqrestore(CCISS_LOCK(h->ctlr), flags);
	return IRQ_HANDLED;
}
2695 2696

/*
2697
 *  We cannot read the structure directly, for portability we must use
L
Linus Torvalds 已提交
2698
 *   the io functions.
2699
 *   This is for debug only.
L
Linus Torvalds 已提交
2700 2701
 */
#ifdef CCISS_DEBUG
2702
static void print_cfg_table(CfgTable_struct *tb)
L
Linus Torvalds 已提交
2703 2704 2705 2706 2707 2708
{
	int i;
	char temp_name[17];

	printk("Controller Configuration information\n");
	printk("------------------------------------\n");
2709
	for (i = 0; i < 4; i++)
L
Linus Torvalds 已提交
2710
		temp_name[i] = readb(&(tb->Signature[i]));
2711 2712
	temp_name[4] = '\0';
	printk("   Signature = %s\n", temp_name);
L
Linus Torvalds 已提交
2713
	printk("   Spec Number = %d\n", readl(&(tb->SpecValence)));
2714 2715 2716 2717 2718 2719
	printk("   Transport methods supported = 0x%x\n",
	       readl(&(tb->TransportSupport)));
	printk("   Transport methods active = 0x%x\n",
	       readl(&(tb->TransportActive)));
	printk("   Requested transport Method = 0x%x\n",
	       readl(&(tb->HostWrite.TransportRequest)));
2720
	printk("   Coalesce Interrupt Delay = 0x%x\n",
2721
	       readl(&(tb->HostWrite.CoalIntDelay)));
2722
	printk("   Coalesce Interrupt Count = 0x%x\n",
2723 2724 2725 2726 2727
	       readl(&(tb->HostWrite.CoalIntCount)));
	printk("   Max outstanding commands = 0x%d\n",
	       readl(&(tb->CmdsOutMax)));
	printk("   Bus Types = 0x%x\n", readl(&(tb->BusTypes)));
	for (i = 0; i < 16; i++)
L
Linus Torvalds 已提交
2728 2729 2730
		temp_name[i] = readb(&(tb->ServerName[i]));
	temp_name[16] = '\0';
	printk("   Server Name = %s\n", temp_name);
2731
	printk("   Heartbeat Counter = 0x%x\n\n\n", readl(&(tb->HeartBeat)));
L
Linus Torvalds 已提交
2732
}
2733
#endif				/* CCISS_DEBUG */
L
Linus Torvalds 已提交
2734

2735
static int find_PCI_BAR_index(struct pci_dev *pdev, unsigned long pci_bar_addr)
L
Linus Torvalds 已提交
2736 2737
{
	int i, offset, mem_type, bar_type;
2738
	if (pci_bar_addr == PCI_BASE_ADDRESS_0)	/* looking for BAR zero? */
L
Linus Torvalds 已提交
2739 2740
		return 0;
	offset = 0;
2741 2742
	for (i = 0; i < DEVICE_COUNT_RESOURCE; i++) {
		bar_type = pci_resource_flags(pdev, i) & PCI_BASE_ADDRESS_SPACE;
L
Linus Torvalds 已提交
2743 2744 2745 2746
		if (bar_type == PCI_BASE_ADDRESS_SPACE_IO)
			offset += 4;
		else {
			mem_type = pci_resource_flags(pdev, i) &
2747
			    PCI_BASE_ADDRESS_MEM_TYPE_MASK;
L
Linus Torvalds 已提交
2748
			switch (mem_type) {
2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759
			case PCI_BASE_ADDRESS_MEM_TYPE_32:
			case PCI_BASE_ADDRESS_MEM_TYPE_1M:
				offset += 4;	/* 32 bit */
				break;
			case PCI_BASE_ADDRESS_MEM_TYPE_64:
				offset += 8;
				break;
			default:	/* reserved in PCI 2.2 */
				printk(KERN_WARNING
				       "Base address is invalid\n");
				return -1;
L
Linus Torvalds 已提交
2760 2761 2762
				break;
			}
		}
2763 2764
		if (offset == pci_bar_addr - PCI_BASE_ADDRESS_0)
			return i + 1;
L
Linus Torvalds 已提交
2765 2766 2767 2768
	}
	return -1;
}

2769 2770 2771 2772
/* If MSI/MSI-X is supported by the kernel we will try to enable it on
 * controllers that are capable. If not, we use IO-APIC mode.
 */

2773 2774
static void __devinit cciss_interrupt_mode(ctlr_info_t *c,
					   struct pci_dev *pdev, __u32 board_id)
2775 2776
{
#ifdef CONFIG_PCI_MSI
2777 2778 2779 2780
	int err;
	struct msix_entry cciss_msix_entries[4] = { {0, 0}, {0, 1},
	{0, 2}, {0, 3}
	};
2781 2782 2783

	/* Some boards advertise MSI but don't really support it */
	if ((board_id == 0x40700E11) ||
2784 2785
	    (board_id == 0x40800E11) ||
	    (board_id == 0x40820E11) || (board_id == 0x40830E11))
2786 2787
		goto default_int_mode;

2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800
	if (pci_find_capability(pdev, PCI_CAP_ID_MSIX)) {
		err = pci_enable_msix(pdev, cciss_msix_entries, 4);
		if (!err) {
			c->intr[0] = cciss_msix_entries[0].vector;
			c->intr[1] = cciss_msix_entries[1].vector;
			c->intr[2] = cciss_msix_entries[2].vector;
			c->intr[3] = cciss_msix_entries[3].vector;
			c->msix_vector = 1;
			return;
		}
		if (err > 0) {
			printk(KERN_WARNING "cciss: only %d MSI-X vectors "
			       "available\n", err);
2801
			goto default_int_mode;
2802 2803 2804
		} else {
			printk(KERN_WARNING "cciss: MSI-X init failed %d\n",
			       err);
2805
			goto default_int_mode;
2806 2807 2808 2809 2810 2811 2812 2813 2814
		}
	}
	if (pci_find_capability(pdev, PCI_CAP_ID_MSI)) {
		if (!pci_enable_msi(pdev)) {
			c->msi_vector = 1;
		} else {
			printk(KERN_WARNING "cciss: MSI init failed\n");
		}
	}
2815
default_int_mode:
2816
#endif				/* CONFIG_PCI_MSI */
2817
	/* if we get here we're going to use the default interrupt mode */
2818
	c->intr[SIMPLE_MODE_INT] = pdev->irq;
2819 2820 2821
	return;
}

L
Linus Torvalds 已提交
2822 2823 2824 2825 2826 2827 2828
static int cciss_pci_init(ctlr_info_t *c, struct pci_dev *pdev)
{
	ushort subsystem_vendor_id, subsystem_device_id, command;
	__u32 board_id, scratchpad = 0;
	__u64 cfg_offset;
	__u32 cfg_base_addr;
	__u64 cfg_base_addr_index;
2829
	int i, err;
L
Linus Torvalds 已提交
2830 2831 2832

	/* check to see if controller has been disabled */
	/* BEFORE trying to enable it */
2833 2834 2835 2836
	(void)pci_read_config_word(pdev, PCI_COMMAND, &command);
	if (!(command & 0x02)) {
		printk(KERN_WARNING
		       "cciss: controller appears to be disabled\n");
2837
		return -ENODEV;
L
Linus Torvalds 已提交
2838 2839
	}

2840
	err = pci_enable_device(pdev);
2841
	if (err) {
L
Linus Torvalds 已提交
2842
		printk(KERN_ERR "cciss: Unable to Enable PCI device\n");
2843
		return err;
L
Linus Torvalds 已提交
2844 2845
	}

2846 2847 2848
	err = pci_request_regions(pdev, "cciss");
	if (err) {
		printk(KERN_ERR "cciss: Cannot obtain PCI resources, "
2849
		       "aborting\n");
2850
		return err;
2851 2852
	}

L
Linus Torvalds 已提交
2853 2854 2855
	subsystem_vendor_id = pdev->subsystem_vendor;
	subsystem_device_id = pdev->subsystem_device;
	board_id = (((__u32) (subsystem_device_id << 16) & 0xffff0000) |
2856
		    subsystem_vendor_id);
L
Linus Torvalds 已提交
2857 2858 2859 2860 2861

#ifdef CCISS_DEBUG
	printk("command = %x\n", command);
	printk("irq = %x\n", pdev->irq);
	printk("board_id = %x\n", board_id);
2862
#endif				/* CCISS_DEBUG */
L
Linus Torvalds 已提交
2863

2864 2865 2866 2867
/* If the kernel supports MSI/MSI-X we will try to enable that functionality,
 * else we use the IO-APIC interrupt assigned to us by system ROM.
 */
	cciss_interrupt_mode(c, pdev, board_id);
L
Linus Torvalds 已提交
2868 2869 2870

	/*
	 * Memory base addr is first addr , the second points to the config
2871
	 *   table
L
Linus Torvalds 已提交
2872 2873
	 */

2874
	c->paddr = pci_resource_start(pdev, 0);	/* addressing mode bits already removed */
L
Linus Torvalds 已提交
2875 2876
#ifdef CCISS_DEBUG
	printk("address 0 = %x\n", c->paddr);
2877
#endif				/* CCISS_DEBUG */
2878
	c->vaddr = remap_pci_mem(c->paddr, 0x250);
L
Linus Torvalds 已提交
2879 2880 2881

	/* Wait for the board to become ready.  (PCI hotplug needs this.)
	 * We poll for up to 120 secs, once per 100ms. */
2882
	for (i = 0; i < 1200; i++) {
L
Linus Torvalds 已提交
2883 2884 2885 2886
		scratchpad = readl(c->vaddr + SA5_SCRATCHPAD_OFFSET);
		if (scratchpad == CCISS_FIRMWARE_READY)
			break;
		set_current_state(TASK_INTERRUPTIBLE);
2887
		schedule_timeout(HZ / 10);	/* wait 100ms */
L
Linus Torvalds 已提交
2888 2889 2890
	}
	if (scratchpad != CCISS_FIRMWARE_READY) {
		printk(KERN_WARNING "cciss: Board not ready.  Timed out.\n");
2891
		err = -ENODEV;
2892
		goto err_out_free_res;
L
Linus Torvalds 已提交
2893 2894 2895 2896 2897 2898 2899
	}

	/* get the address index number */
	cfg_base_addr = readl(c->vaddr + SA5_CTCFG_OFFSET);
	cfg_base_addr &= (__u32) 0x0000ffff;
#ifdef CCISS_DEBUG
	printk("cfg base address = %x\n", cfg_base_addr);
2900 2901
#endif				/* CCISS_DEBUG */
	cfg_base_addr_index = find_PCI_BAR_index(pdev, cfg_base_addr);
L
Linus Torvalds 已提交
2902 2903
#ifdef CCISS_DEBUG
	printk("cfg base address index = %x\n", cfg_base_addr_index);
2904
#endif				/* CCISS_DEBUG */
L
Linus Torvalds 已提交
2905 2906
	if (cfg_base_addr_index == -1) {
		printk(KERN_WARNING "cciss: Cannot find cfg_base_addr_index\n");
2907
		err = -ENODEV;
2908
		goto err_out_free_res;
L
Linus Torvalds 已提交
2909 2910 2911 2912 2913
	}

	cfg_offset = readl(c->vaddr + SA5_CTMEM_OFFSET);
#ifdef CCISS_DEBUG
	printk("cfg offset = %x\n", cfg_offset);
2914 2915 2916 2917
#endif				/* CCISS_DEBUG */
	c->cfgtable = remap_pci_mem(pci_resource_start(pdev,
						       cfg_base_addr_index) +
				    cfg_offset, sizeof(CfgTable_struct));
L
Linus Torvalds 已提交
2918 2919 2920
	c->board_id = board_id;

#ifdef CCISS_DEBUG
2921
	print_cfg_table(c->cfgtable);
2922
#endif				/* CCISS_DEBUG */
L
Linus Torvalds 已提交
2923

2924
	for (i = 0; i < ARRAY_SIZE(products); i++) {
L
Linus Torvalds 已提交
2925 2926 2927
		if (board_id == products[i].board_id) {
			c->product_name = products[i].product_name;
			c->access = *(products[i].access);
2928
			c->nr_cmds = products[i].nr_cmds;
L
Linus Torvalds 已提交
2929 2930 2931
			break;
		}
	}
2932 2933 2934 2935
	if ((readb(&c->cfgtable->Signature[0]) != 'C') ||
	    (readb(&c->cfgtable->Signature[1]) != 'I') ||
	    (readb(&c->cfgtable->Signature[2]) != 'S') ||
	    (readb(&c->cfgtable->Signature[3]) != 'S')) {
L
Linus Torvalds 已提交
2936
		printk("Does not appear to be a valid CISS config table\n");
2937
		err = -ENODEV;
2938
		goto err_out_free_res;
L
Linus Torvalds 已提交
2939
	}
2940 2941 2942 2943 2944 2945 2946 2947
	/* We didn't find the controller in our list. We know the
	 * signature is valid. If it's an HP device let's try to
	 * bind to the device and fire it up. Otherwise we bail.
	 */
	if (i == ARRAY_SIZE(products)) {
		if (subsystem_vendor_id == PCI_VENDOR_ID_HP) {
			c->product_name = products[i-1].product_name;
			c->access = *(products[i-1].access);
2948
			c->nr_cmds = products[i-1].nr_cmds;
2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960
			printk(KERN_WARNING "cciss: This is an unknown "
				"Smart Array controller.\n"
				"cciss: Please update to the latest driver "
				"available from www.hp.com.\n");
		} else {
			printk(KERN_WARNING "cciss: Sorry, I don't know how"
				" to access the Smart Array controller %08lx\n"
					, (unsigned long)board_id);
			err = -ENODEV;
			goto err_out_free_res;
		}
	}
L
Linus Torvalds 已提交
2961
#ifdef CONFIG_X86
2962 2963 2964 2965 2966 2967 2968
	{
		/* Need to enable prefetch in the SCSI core for 6400 in x86 */
		__u32 prefetch;
		prefetch = readl(&(c->cfgtable->SCSI_Prefetch));
		prefetch |= 0x100;
		writel(prefetch, &(c->cfgtable->SCSI_Prefetch));
	}
L
Linus Torvalds 已提交
2969 2970
#endif

2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981
	/* Disabling DMA prefetch for the P600
	 * An ASIC bug may result in a prefetch beyond
	 * physical memory.
	 */
	if(board_id == 0x3225103C) {
		__u32 dma_prefetch;
		dma_prefetch = readl(c->vaddr + I2O_DMA1_CFG);
		dma_prefetch |= 0x8000;
		writel(dma_prefetch, c->vaddr + I2O_DMA1_CFG);
	}

L
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2982 2983
#ifdef CCISS_DEBUG
	printk("Trying to put board into Simple mode\n");
2984
#endif				/* CCISS_DEBUG */
L
Linus Torvalds 已提交
2985
	c->max_commands = readl(&(c->cfgtable->CmdsOutMax));
2986 2987 2988
	/* Update the field, and then ring the doorbell */
	writel(CFGTBL_Trans_Simple, &(c->cfgtable->HostWrite.TransportRequest));
	writel(CFGTBL_ChangeReq, c->vaddr + SA5_DOORBELL);
L
Linus Torvalds 已提交
2989 2990 2991 2992

	/* under certain very rare conditions, this can take awhile.
	 * (e.g.: hot replace a failed 144GB drive in a RAID 5 set right
	 * as we enter this code.) */
2993
	for (i = 0; i < MAX_CONFIG_WAIT; i++) {
L
Linus Torvalds 已提交
2994 2995 2996 2997 2998
		if (!(readl(c->vaddr + SA5_DOORBELL) & CFGTBL_ChangeReq))
			break;
		/* delay and try again */
		set_current_state(TASK_INTERRUPTIBLE);
		schedule_timeout(10);
2999
	}
L
Linus Torvalds 已提交
3000 3001

#ifdef CCISS_DEBUG
3002 3003 3004
	printk(KERN_DEBUG "I counter got to %d %x\n", i,
	       readl(c->vaddr + SA5_DOORBELL));
#endif				/* CCISS_DEBUG */
L
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3005
#ifdef CCISS_DEBUG
3006 3007
	print_cfg_table(c->cfgtable);
#endif				/* CCISS_DEBUG */
L
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3008

3009
	if (!(readl(&(c->cfgtable->TransportActive)) & CFGTBL_Trans_Simple)) {
L
Linus Torvalds 已提交
3010
		printk(KERN_WARNING "cciss: unable to get board into"
3011
		       " simple mode\n");
3012
		err = -ENODEV;
3013
		goto err_out_free_res;
L
Linus Torvalds 已提交
3014 3015 3016
	}
	return 0;

3017
err_out_free_res:
3018 3019 3020 3021
	/*
	 * Deliberately omit pci_disable_device(): it does something nasty to
	 * Smart Array controllers that pci_enable_device does not undo
	 */
3022
	pci_release_regions(pdev);
3023
	return err;
L
Linus Torvalds 已提交
3024 3025
}

3026 3027 3028
/*
 * Gets information about the local volumes attached to the controller.
 */
L
Linus Torvalds 已提交
3029 3030 3031 3032 3033 3034 3035 3036 3037
static void cciss_getgeometry(int cntl_num)
{
	ReportLunData_struct *ld_buff;
	InquiryData_struct *inq_buff;
	int return_code;
	int i;
	int listlength = 0;
	__u32 lunid = 0;
	int block_size;
3038
	sector_t total_size;
L
Linus Torvalds 已提交
3039

3040
	ld_buff = kzalloc(sizeof(ReportLunData_struct), GFP_KERNEL);
3041 3042 3043 3044 3045 3046 3047
	if (ld_buff == NULL) {
		printk(KERN_ERR "cciss: out of memory\n");
		return;
	}
	inq_buff = kmalloc(sizeof(InquiryData_struct), GFP_KERNEL);
	if (inq_buff == NULL) {
		printk(KERN_ERR "cciss: out of memory\n");
L
Linus Torvalds 已提交
3048
		kfree(ld_buff);
3049 3050 3051 3052 3053 3054 3055
		return;
	}
	/* Get the firmware version */
	return_code = sendcmd(CISS_INQUIRY, cntl_num, inq_buff,
			      sizeof(InquiryData_struct), 0, 0, 0, NULL,
			      TYPE_CMD);
	if (return_code == IO_OK) {
L
Linus Torvalds 已提交
3056 3057 3058 3059
		hba[cntl_num]->firm_ver[0] = inq_buff->data_byte[32];
		hba[cntl_num]->firm_ver[1] = inq_buff->data_byte[33];
		hba[cntl_num]->firm_ver[2] = inq_buff->data_byte[34];
		hba[cntl_num]->firm_ver[3] = inq_buff->data_byte[35];
3060 3061
	} else {		/* send command failed */

L
Linus Torvalds 已提交
3062
		printk(KERN_WARNING "cciss: unable to determine firmware"
3063
		       " version of controller\n");
L
Linus Torvalds 已提交
3064
	}
3065 3066 3067 3068
	/* Get the number of logical volumes */
	return_code = sendcmd(CISS_REPORT_LOG, cntl_num, ld_buff,
			      sizeof(ReportLunData_struct), 0, 0, 0, NULL,
			      TYPE_CMD);
L
Linus Torvalds 已提交
3069

3070
	if (return_code == IO_OK) {
L
Linus Torvalds 已提交
3071 3072
#ifdef CCISS_DEBUG
		printk("LUN Data\n--------------------------\n");
3073 3074 3075 3076 3077 3078 3079 3080
#endif				/* CCISS_DEBUG */

		listlength |=
		    (0xff & (unsigned int)(ld_buff->LUNListLength[0])) << 24;
		listlength |=
		    (0xff & (unsigned int)(ld_buff->LUNListLength[1])) << 16;
		listlength |=
		    (0xff & (unsigned int)(ld_buff->LUNListLength[2])) << 8;
L
Linus Torvalds 已提交
3081
		listlength |= 0xff & (unsigned int)(ld_buff->LUNListLength[3]);
3082 3083
	} else {		/* reading number of logical volumes failed */

L
Linus Torvalds 已提交
3084
		printk(KERN_WARNING "cciss: report logical volume"
3085
		       " command failed\n");
L
Linus Torvalds 已提交
3086 3087
		listlength = 0;
	}
3088 3089 3090 3091 3092
	hba[cntl_num]->num_luns = listlength / 8;	// 8 bytes pre entry
	if (hba[cntl_num]->num_luns > CISS_MAX_LUN) {
		printk(KERN_ERR
		       "ciss:  only %d number of logical volumes supported\n",
		       CISS_MAX_LUN);
L
Linus Torvalds 已提交
3093 3094 3095
		hba[cntl_num]->num_luns = CISS_MAX_LUN;
	}
#ifdef CCISS_DEBUG
3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113
	printk(KERN_DEBUG "Length = %x %x %x %x = %d\n",
	       ld_buff->LUNListLength[0], ld_buff->LUNListLength[1],
	       ld_buff->LUNListLength[2], ld_buff->LUNListLength[3],
	       hba[cntl_num]->num_luns);
#endif				/* CCISS_DEBUG */

	hba[cntl_num]->highest_lun = hba[cntl_num]->num_luns - 1;
	for (i = 0; i < CISS_MAX_LUN; i++) {
		if (i < hba[cntl_num]->num_luns) {
			lunid = (0xff & (unsigned int)(ld_buff->LUN[i][3]))
			    << 24;
			lunid |= (0xff & (unsigned int)(ld_buff->LUN[i][2]))
			    << 16;
			lunid |= (0xff & (unsigned int)(ld_buff->LUN[i][1]))
			    << 8;
			lunid |= 0xff & (unsigned int)(ld_buff->LUN[i][0]);

			hba[cntl_num]->drv[i].LunID = lunid;
L
Linus Torvalds 已提交
3114 3115

#ifdef CCISS_DEBUG
3116 3117 3118 3119 3120
			printk(KERN_DEBUG "LUN[%d]:  %x %x %x %x = %x\n", i,
			       ld_buff->LUN[i][0], ld_buff->LUN[i][1],
			       ld_buff->LUN[i][2], ld_buff->LUN[i][3],
			       hba[cntl_num]->drv[i].LunID);
#endif				/* CCISS_DEBUG */
3121 3122 3123 3124

		/* testing to see if 16-byte CDBs are already being used */
		if(hba[cntl_num]->cciss_read == CCISS_READ_16) {
			cciss_read_capacity_16(cntl_num, i, 0,
3125
					    &total_size, &block_size);
3126 3127 3128 3129
			goto geo_inq;
		}
		cciss_read_capacity(cntl_num, i, 0, &total_size, &block_size);

3130 3131 3132
		/* If read_capacity returns all F's the logical is >2TB */
		/* so we switch to 16-byte CDBs for all read/write ops */
		if(total_size == 0xFFFFFFFFULL) {
3133 3134 3135 3136 3137 3138 3139 3140 3141
			cciss_read_capacity_16(cntl_num, i, 0,
			&total_size, &block_size);
			hba[cntl_num]->cciss_read = CCISS_READ_16;
			hba[cntl_num]->cciss_write = CCISS_WRITE_16;
		} else {
			hba[cntl_num]->cciss_read = CCISS_READ_10;
			hba[cntl_num]->cciss_write = CCISS_WRITE_10;
		}
geo_inq:
3142
			cciss_geometry_inquiry(cntl_num, i, 0, total_size,
3143 3144
					       block_size, inq_buff,
					       &hba[cntl_num]->drv[i]);
3145 3146 3147 3148
		} else {
			/* initialize raid_level to indicate a free space */
			hba[cntl_num]->drv[i].raid_level = -1;
		}
L
Linus Torvalds 已提交
3149 3150 3151
	}
	kfree(ld_buff);
	kfree(inq_buff);
3152
}
L
Linus Torvalds 已提交
3153 3154 3155 3156 3157

/* Function to find the first free pointer into our hba[] array */
/* Returns -1 if no free entries are left.  */
static int alloc_cciss_hba(void)
{
3158
	int i;
L
Linus Torvalds 已提交
3159

3160
	for (i = 0; i < MAX_CTLR; i++) {
L
Linus Torvalds 已提交
3161 3162
		if (!hba[i]) {
			ctlr_info_t *p;
3163
			p = kzalloc(sizeof(ctlr_info_t), GFP_KERNEL);
L
Linus Torvalds 已提交
3164 3165
			if (!p)
				goto Enomem;
3166 3167 3168
			p->gendisk[0] = alloc_disk(1 << NWD_SHIFT);
			if (!p->gendisk[0])
				goto Enomem;
L
Linus Torvalds 已提交
3169 3170 3171 3172 3173
			hba[i] = p;
			return i;
		}
	}
	printk(KERN_WARNING "cciss: This driver supports a maximum"
3174
	       " of %d controllers.\n", MAX_CTLR);
3175 3176
	return -1;
Enomem:
L
Linus Torvalds 已提交
3177 3178 3179 3180 3181 3182 3183 3184 3185 3186
	printk(KERN_ERR "cciss: out of memory.\n");
	return -1;
}

static void free_hba(int i)
{
	ctlr_info_t *p = hba[i];
	int n;

	hba[i] = NULL;
3187
	for (n = 0; n < CISS_MAX_LUN; n++)
L
Linus Torvalds 已提交
3188 3189 3190 3191 3192 3193 3194 3195 3196 3197
		put_disk(p->gendisk[n]);
	kfree(p);
}

/*
 *  This is it.  Find all the controllers and register them.  I really hate
 *  stealing all these major device numbers.
 *  returns the number of block devices registered.
 */
static int __devinit cciss_init_one(struct pci_dev *pdev,
3198
				    const struct pci_device_id *ent)
L
Linus Torvalds 已提交
3199 3200
{
	int i;
3201
	int j = 0;
L
Linus Torvalds 已提交
3202
	int rc;
3203
	int dac;
L
Linus Torvalds 已提交
3204 3205

	i = alloc_cciss_hba();
3206
	if (i < 0)
3207
		return -1;
3208 3209 3210

	hba[i]->busy_initializing = 1;

L
Linus Torvalds 已提交
3211 3212 3213 3214 3215 3216 3217 3218
	if (cciss_pci_init(hba[i], pdev) != 0)
		goto clean1;

	sprintf(hba[i]->devname, "cciss%d", i);
	hba[i]->ctlr = i;
	hba[i]->pdev = pdev;

	/* configure PCI DMA stuff */
3219
	if (!pci_set_dma_mask(pdev, DMA_64BIT_MASK))
3220
		dac = 1;
3221
	else if (!pci_set_dma_mask(pdev, DMA_32BIT_MASK))
3222
		dac = 0;
L
Linus Torvalds 已提交
3223
	else {
3224
		printk(KERN_ERR "cciss: no suitable DMA available\n");
L
Linus Torvalds 已提交
3225 3226 3227 3228 3229 3230 3231 3232 3233
		goto clean1;
	}

	/*
	 * register with the major number, or get a dynamic major number
	 * by passing 0 as argument.  This is done for greater than
	 * 8 controller support.
	 */
	if (i < MAX_CTLR_ORIG)
3234
		hba[i]->major = COMPAQ_CISS_MAJOR + i;
L
Linus Torvalds 已提交
3235
	rc = register_blkdev(hba[i]->major, hba[i]->devname);
3236
	if (rc == -EBUSY || rc == -EINVAL) {
L
Linus Torvalds 已提交
3237
		printk(KERN_ERR
3238 3239
		       "cciss:  Unable to get major number %d for %s "
		       "on hba %d\n", hba[i]->major, hba[i]->devname, i);
L
Linus Torvalds 已提交
3240
		goto clean1;
3241
	} else {
L
Linus Torvalds 已提交
3242 3243 3244 3245 3246 3247
		if (i >= MAX_CTLR_ORIG)
			hba[i]->major = rc;
	}

	/* make sure the board interrupts are off */
	hba[i]->access.set_intr_mask(hba[i], CCISS_INTR_OFF);
3248
	if (request_irq(hba[i]->intr[SIMPLE_MODE_INT], do_cciss_intr,
3249
			IRQF_DISABLED | IRQF_SHARED, hba[i]->devname, hba[i])) {
L
Linus Torvalds 已提交
3250
		printk(KERN_ERR "cciss: Unable to get irq %d for %s\n",
3251
		       hba[i]->intr[SIMPLE_MODE_INT], hba[i]->devname);
L
Linus Torvalds 已提交
3252 3253
		goto clean2;
	}
3254 3255

	printk(KERN_INFO "%s: <0x%x> at PCI %s IRQ %d%s using DAC\n",
3256 3257 3258 3259
	       hba[i]->devname, pdev->device, pci_name(pdev),
	       hba[i]->intr[SIMPLE_MODE_INT], dac ? "" : " not");

	hba[i]->cmd_pool_bits =
3260
	    kmalloc(((hba[i]->nr_cmds + BITS_PER_LONG -
3261 3262 3263
		      1) / BITS_PER_LONG) * sizeof(unsigned long), GFP_KERNEL);
	hba[i]->cmd_pool = (CommandList_struct *)
	    pci_alloc_consistent(hba[i]->pdev,
3264
		    hba[i]->nr_cmds * sizeof(CommandList_struct),
3265 3266 3267
		    &(hba[i]->cmd_pool_dhandle));
	hba[i]->errinfo_pool = (ErrorInfo_struct *)
	    pci_alloc_consistent(hba[i]->pdev,
3268
		    hba[i]->nr_cmds * sizeof(ErrorInfo_struct),
3269 3270 3271 3272 3273
		    &(hba[i]->errinfo_pool_dhandle));
	if ((hba[i]->cmd_pool_bits == NULL)
	    || (hba[i]->cmd_pool == NULL)
	    || (hba[i]->errinfo_pool == NULL)) {
		printk(KERN_ERR "cciss: out of memory");
L
Linus Torvalds 已提交
3274 3275
		goto clean4;
	}
3276
#ifdef CONFIG_CISS_SCSI_TAPE
3277 3278
	hba[i]->scsi_rejects.complete =
	    kmalloc(sizeof(hba[i]->scsi_rejects.complete[0]) *
3279
		    (hba[i]->nr_cmds + 5), GFP_KERNEL);
3280
	if (hba[i]->scsi_rejects.complete == NULL) {
3281
		printk(KERN_ERR "cciss: out of memory");
3282 3283 3284
		goto clean4;
	}
#endif
L
Linus Torvalds 已提交
3285 3286
	spin_lock_init(&hba[i]->lock);

3287 3288
	/* Initialize the pdev driver private data.
	   have it point to hba[i].  */
L
Linus Torvalds 已提交
3289
	pci_set_drvdata(pdev, hba[i]);
3290 3291 3292
	/* command and error info recs zeroed out before
	   they are used */
	memset(hba[i]->cmd_pool_bits, 0,
3293
	       ((hba[i]->nr_cmds + BITS_PER_LONG -
3294
		 1) / BITS_PER_LONG) * sizeof(unsigned long));
L
Linus Torvalds 已提交
3295

3296 3297 3298
#ifdef CCISS_DEBUG
	printk(KERN_DEBUG "Scanning for drives on controller cciss%d\n", i);
#endif				/* CCISS_DEBUG */
L
Linus Torvalds 已提交
3299 3300 3301 3302 3303 3304 3305 3306 3307

	cciss_getgeometry(i);

	cciss_scsi_setup(i);

	/* Turn the interrupts on so we can service requests */
	hba[i]->access.set_intr_mask(hba[i], CCISS_INTR_ON);

	cciss_procinit(i);
3308 3309 3310

	hba[i]->cciss_max_sectors = 2048;

3311
	hba[i]->busy_initializing = 0;
L
Linus Torvalds 已提交
3312

3313
	do {
M
Mike Miller 已提交
3314 3315
		drive_info_struct *drv = &(hba[i]->drv[j]);
		struct gendisk *disk = hba[i]->gendisk[j];
3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328
		request_queue_t *q;

		/* Check if the disk was allocated already */
		if (!disk){
			hba[i]->gendisk[j] = alloc_disk(1 << NWD_SHIFT);
			disk = hba[i]->gendisk[j];
		}

		/* Check that the disk was able to be allocated */
		if (!disk) {
			printk(KERN_ERR "cciss: unable to allocate memory for disk %d\n", j);
			goto clean4;
		}
M
Mike Miller 已提交
3329 3330 3331 3332

		q = blk_init_queue(do_cciss_request, &hba[i]->lock);
		if (!q) {
			printk(KERN_ERR
3333 3334
			       "cciss:  unable to allocate queue for disk %d\n",
			       j);
3335
			goto clean4;
M
Mike Miller 已提交
3336 3337 3338 3339
		}
		drv->queue = q;

		q->backing_dev_info.ra_pages = READ_AHEAD;
3340 3341 3342 3343
		blk_queue_bounce_limit(q, hba[i]->pdev->dma_mask);

		/* This is a hardware imposed limit. */
		blk_queue_max_hw_segments(q, MAXSGENTRIES);
L
Linus Torvalds 已提交
3344

3345 3346
		/* This is a limit in the driver and could be eliminated. */
		blk_queue_max_phys_segments(q, MAXSGENTRIES);
L
Linus Torvalds 已提交
3347

3348
		blk_queue_max_sectors(q, hba[i]->cciss_max_sectors);
L
Linus Torvalds 已提交
3349

3350
		blk_queue_softirq_done(q, cciss_softirq_done);
L
Linus Torvalds 已提交
3351

M
Mike Miller 已提交
3352
		q->queuedata = hba[i];
L
Linus Torvalds 已提交
3353 3354 3355 3356
		sprintf(disk->disk_name, "cciss/c%dd%d", i, j);
		disk->major = hba[i]->major;
		disk->first_minor = j << NWD_SHIFT;
		disk->fops = &cciss_fops;
M
Mike Miller 已提交
3357
		disk->queue = q;
L
Linus Torvalds 已提交
3358
		disk->private_data = drv;
3359
		disk->driverfs_dev = &pdev->dev;
L
Linus Torvalds 已提交
3360 3361
		/* we must register the controller even if no disks exist */
		/* this is for the online array utilities */
3362
		if (!drv->heads && j)
L
Linus Torvalds 已提交
3363
			continue;
M
Mike Miller 已提交
3364
		blk_queue_hardsect_size(q, drv->block_size);
L
Linus Torvalds 已提交
3365 3366
		set_capacity(disk, drv->nr_blocks);
		add_disk(disk);
3367 3368
		j++;
	} while (j <= hba[i]->highest_lun);
M
Mike Miller 已提交
3369

3370
	return 1;
L
Linus Torvalds 已提交
3371

3372
      clean4:
3373
#ifdef CONFIG_CISS_SCSI_TAPE
3374
	kfree(hba[i]->scsi_rejects.complete);
3375
#endif
3376
	kfree(hba[i]->cmd_pool_bits);
3377
	if (hba[i]->cmd_pool)
L
Linus Torvalds 已提交
3378
		pci_free_consistent(hba[i]->pdev,
3379
				    hba[i]->nr_cmds * sizeof(CommandList_struct),
3380 3381
				    hba[i]->cmd_pool, hba[i]->cmd_pool_dhandle);
	if (hba[i]->errinfo_pool)
L
Linus Torvalds 已提交
3382
		pci_free_consistent(hba[i]->pdev,
3383
				    hba[i]->nr_cmds * sizeof(ErrorInfo_struct),
3384 3385
				    hba[i]->errinfo_pool,
				    hba[i]->errinfo_pool_dhandle);
3386
	free_irq(hba[i]->intr[SIMPLE_MODE_INT], hba[i]);
3387
      clean2:
L
Linus Torvalds 已提交
3388
	unregister_blkdev(hba[i]->major, hba[i]->devname);
3389
      clean1:
3390
	hba[i]->busy_initializing = 0;
3391 3392 3393 3394 3395 3396
	/* cleanup any queues that may have been initialized */
	for (j=0; j <= hba[i]->highest_lun; j++){
		drive_info_struct *drv = &(hba[i]->drv[j]);
		if (drv->queue)
			blk_cleanup_queue(drv->queue);
	}
3397 3398 3399 3400
	/*
	 * Deliberately omit pci_disable_device(): it does something nasty to
	 * Smart Array controllers that pci_enable_device does not undo
	 */
3401 3402
	pci_release_regions(pdev);
	pci_set_drvdata(pdev, NULL);
3403
	free_hba(i);
3404
	return -1;
L
Linus Torvalds 已提交
3405 3406
}

3407
static void __devexit cciss_remove_one(struct pci_dev *pdev)
L
Linus Torvalds 已提交
3408 3409 3410 3411
{
	ctlr_info_t *tmp_ptr;
	int i, j;
	char flush_buf[4];
3412
	int return_code;
L
Linus Torvalds 已提交
3413

3414 3415
	if (pci_get_drvdata(pdev) == NULL) {
		printk(KERN_ERR "cciss: Unable to remove device \n");
L
Linus Torvalds 已提交
3416 3417 3418 3419
		return;
	}
	tmp_ptr = pci_get_drvdata(pdev);
	i = tmp_ptr->ctlr;
3420
	if (hba[i] == NULL) {
L
Linus Torvalds 已提交
3421
		printk(KERN_ERR "cciss: device appears to "
3422
		       "already be removed \n");
L
Linus Torvalds 已提交
3423 3424 3425 3426
		return;
	}
	/* Turn board interrupts off  and send the flush cache command */
	/* sendcmd will turn off interrupt, and send the flush...
3427
	 * To write all data in the battery backed cache to disks */
L
Linus Torvalds 已提交
3428 3429
	memset(flush_buf, 0, 4);
	return_code = sendcmd(CCISS_CACHE_FLUSH, i, flush_buf, 4, 0, 0, 0, NULL,
3430 3431 3432 3433
			      TYPE_CMD);
	if (return_code != IO_OK) {
		printk(KERN_WARNING "Error Flushing cache on controller %d\n",
		       i);
L
Linus Torvalds 已提交
3434
	}
3435 3436 3437
	free_irq(hba[i]->intr[2], hba[i]);

#ifdef CONFIG_PCI_MSI
3438 3439 3440 3441 3442
	if (hba[i]->msix_vector)
		pci_disable_msix(hba[i]->pdev);
	else if (hba[i]->msi_vector)
		pci_disable_msi(hba[i]->pdev);
#endif				/* CONFIG_PCI_MSI */
3443

L
Linus Torvalds 已提交
3444
	iounmap(hba[i]->vaddr);
3445
	cciss_unregister_scsi(i);	/* unhook from SCSI subsystem */
L
Linus Torvalds 已提交
3446
	unregister_blkdev(hba[i]->major, hba[i]->devname);
3447 3448
	remove_proc_entry(hba[i]->devname, proc_cciss);

L
Linus Torvalds 已提交
3449
	/* remove it from the disk list */
3450
	for (j = 0; j < CISS_MAX_LUN; j++) {
L
Linus Torvalds 已提交
3451
		struct gendisk *disk = hba[i]->gendisk[j];
3452 3453 3454
		if (disk) {
			request_queue_t *q = disk->queue;

3455
			if (disk->flags & GENHD_FL_UP)
3456 3457 3458
				del_gendisk(disk);
			if (q)
				blk_cleanup_queue(q);
3459
		}
L
Linus Torvalds 已提交
3460 3461
	}

3462
	pci_free_consistent(hba[i]->pdev, hba[i]->nr_cmds * sizeof(CommandList_struct),
L
Linus Torvalds 已提交
3463
			    hba[i]->cmd_pool, hba[i]->cmd_pool_dhandle);
3464
	pci_free_consistent(hba[i]->pdev, hba[i]->nr_cmds * sizeof(ErrorInfo_struct),
3465
			    hba[i]->errinfo_pool, hba[i]->errinfo_pool_dhandle);
L
Linus Torvalds 已提交
3466
	kfree(hba[i]->cmd_pool_bits);
3467 3468 3469
#ifdef CONFIG_CISS_SCSI_TAPE
	kfree(hba[i]->scsi_rejects.complete);
#endif
3470 3471 3472 3473
	/*
	 * Deliberately omit pci_disable_device(): it does something nasty to
	 * Smart Array controllers that pci_enable_device does not undo
	 */
3474
	pci_release_regions(pdev);
3475
	pci_set_drvdata(pdev, NULL);
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	free_hba(i);
3477
}
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static struct pci_driver cciss_pci_driver = {
3480 3481 3482 3483
	.name = "cciss",
	.probe = cciss_init_one,
	.remove = __devexit_p(cciss_remove_one),
	.id_table = cciss_pci_device_id,	/* id_table */
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};

/*
 *  This is it.  Register the PCI driver information for the cards we control
3488
 *  the OS will call our registered routines when it finds one of our cards.
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 */
static int __init cciss_init(void)
{
	printk(KERN_INFO DRIVER_NAME "\n");

	/* Register for our PCI devices */
3495
	return pci_register_driver(&cciss_pci_driver);
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}

static void __exit cciss_cleanup(void)
{
	int i;

	pci_unregister_driver(&cciss_pci_driver);
	/* double check that all controller entrys have been removed */
3504 3505
	for (i = 0; i < MAX_CTLR; i++) {
		if (hba[i] != NULL) {
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			printk(KERN_WARNING "cciss: had to remove"
3507
			       " controller %d\n", i);
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			cciss_remove_one(hba[i]->pdev);
		}
	}
	remove_proc_entry("cciss", proc_root_driver);
}

3514 3515 3516 3517 3518 3519 3520 3521
static void fail_all_cmds(unsigned long ctlr)
{
	/* If we get here, the board is apparently dead. */
	ctlr_info_t *h = hba[ctlr];
	CommandList_struct *c;
	unsigned long flags;

	printk(KERN_WARNING "cciss%d: controller not responding.\n", h->ctlr);
3522
	h->alive = 0;		/* the controller apparently died... */
3523 3524 3525

	spin_lock_irqsave(CCISS_LOCK(ctlr), flags);

3526
	pci_disable_device(h->pdev);	/* Make sure it is really dead. */
3527 3528

	/* move everything off the request queue onto the completed queue */
3529
	while ((c = h->reqQ) != NULL) {
3530 3531
		removeQ(&(h->reqQ), c);
		h->Qdepth--;
3532
		addQ(&(h->cmpQ), c);
3533 3534 3535
	}

	/* Now, fail everything on the completed queue with a HW error */
3536
	while ((c = h->cmpQ) != NULL) {
3537 3538 3539 3540 3541 3542 3543
		removeQ(&h->cmpQ, c);
		c->err_info->CommandStatus = CMD_HARDWARE_ERR;
		if (c->cmd_type == CMD_RWREQ) {
			complete_command(h, c, 0);
		} else if (c->cmd_type == CMD_IOCTL_PEND)
			complete(c->waiting);
#ifdef CONFIG_CISS_SCSI_TAPE
3544 3545
		else if (c->cmd_type == CMD_SCSI)
			complete_scsi_command(c, 0, 0);
3546 3547 3548 3549 3550 3551
#endif
	}
	spin_unlock_irqrestore(CCISS_LOCK(ctlr), flags);
	return;
}

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module_init(cciss_init);
module_exit(cciss_cleanup);