mptbase.c 203.9 KB
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/*
 *  linux/drivers/message/fusion/mptbase.c
 *      This is the Fusion MPT base driver which supports multiple
 *      (SCSI + LAN) specialized protocol drivers.
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 *      For use with LSI Logic PCI chip/adapter(s)
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 *      running LSI Logic Fusion MPT (Message Passing Technology) firmware.
 *
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 *  Copyright (c) 1999-2007 LSI Logic Corporation
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 *  (mailto:DL-MPTFusionLinux@lsi.com)
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 *
 */
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/*
    This program is free software; you can redistribute it and/or modify
    it under the terms of the GNU General Public License as published by
    the Free Software Foundation; version 2 of the License.

    This program is distributed in the hope that it will be useful,
    but WITHOUT ANY WARRANTY; without even the implied warranty of
    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
    GNU General Public License for more details.

    NO WARRANTY
    THE PROGRAM IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OR
    CONDITIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED INCLUDING, WITHOUT
    LIMITATION, ANY WARRANTIES OR CONDITIONS OF TITLE, NON-INFRINGEMENT,
    MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. Each Recipient is
    solely responsible for determining the appropriateness of using and
    distributing the Program and assumes all risks associated with its
    exercise of rights under this Agreement, including but not limited to
    the risks and costs of program errors, damage to or loss of data,
    programs or equipment, and unavailability or interruption of operations.

    DISCLAIMER OF LIABILITY
    NEITHER RECIPIENT NOR ANY CONTRIBUTORS SHALL HAVE ANY LIABILITY FOR ANY
    DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
    DAMAGES (INCLUDING WITHOUT LIMITATION LOST PROFITS), HOWEVER CAUSED AND
    ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR
    TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE
    USE OR DISTRIBUTION OF THE PROGRAM OR THE EXERCISE OF ANY RIGHTS GRANTED
    HEREUNDER, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGES

    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., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
*/
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/

#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/errno.h>
#include <linux/init.h>
#include <linux/slab.h>
#include <linux/types.h>
#include <linux/pci.h>
#include <linux/kdev_t.h>
#include <linux/blkdev.h>
#include <linux/delay.h>
#include <linux/interrupt.h>		/* needed for in_interrupt() proto */
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#include <linux/dma-mapping.h>
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#include <asm/io.h>
#ifdef CONFIG_MTRR
#include <asm/mtrr.h>
#endif

#include "mptbase.h"
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#include "lsi/mpi_log_fc.h"
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/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
#define my_NAME		"Fusion MPT base driver"
#define my_VERSION	MPT_LINUX_VERSION_COMMON
#define MYNAM		"mptbase"

MODULE_AUTHOR(MODULEAUTHOR);
MODULE_DESCRIPTION(my_NAME);
MODULE_LICENSE("GPL");
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MODULE_VERSION(my_VERSION);
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/*
 *  cmd line parameters
 */
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static int mpt_msi_enable;
module_param(mpt_msi_enable, int, 0);
MODULE_PARM_DESC(mpt_msi_enable, " MSI Support Enable (default=0)");

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static int mpt_channel_mapping;
module_param(mpt_channel_mapping, int, 0);
MODULE_PARM_DESC(mpt_channel_mapping, " Mapping id's to channels (default=0)");

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#ifdef MFCNT
static int mfcounter = 0;
#define PRINT_MF_COUNT 20000
#endif

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/*
 *  Public data...
 */
int mpt_lan_index = -1;
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int mpt_stm_index = -1;
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struct proc_dir_entry *mpt_proc_root_dir;
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#define WHOINIT_UNKNOWN		0xAA

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/*
 *  Private data...
 */
					/* Adapter link list */
LIST_HEAD(ioc_list);
					/* Callback lookup table */
static MPT_CALLBACK		 MptCallbacks[MPT_MAX_PROTOCOL_DRIVERS];
					/* Protocol driver class lookup table */
static int			 MptDriverClass[MPT_MAX_PROTOCOL_DRIVERS];
					/* Event handler lookup table */
static MPT_EVHANDLER		 MptEvHandlers[MPT_MAX_PROTOCOL_DRIVERS];
					/* Reset handler lookup table */
static MPT_RESETHANDLER		 MptResetHandlers[MPT_MAX_PROTOCOL_DRIVERS];
static struct mpt_pci_driver 	*MptDeviceDriverHandlers[MPT_MAX_PROTOCOL_DRIVERS];

static int	mpt_base_index = -1;
static int	last_drv_idx = -1;

static DECLARE_WAIT_QUEUE_HEAD(mpt_waitq);

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/*
 *  Forward protos...
 */
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static irqreturn_t mpt_interrupt(int irq, void *bus_id);
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static int	mpt_base_reply(MPT_ADAPTER *ioc, MPT_FRAME_HDR *req, MPT_FRAME_HDR *reply);
static int	mpt_handshake_req_reply_wait(MPT_ADAPTER *ioc, int reqBytes,
			u32 *req, int replyBytes, u16 *u16reply, int maxwait,
			int sleepFlag);
static int	mpt_do_ioc_recovery(MPT_ADAPTER *ioc, u32 reason, int sleepFlag);
static void	mpt_detect_bound_ports(MPT_ADAPTER *ioc, struct pci_dev *pdev);
static void	mpt_adapter_disable(MPT_ADAPTER *ioc);
static void	mpt_adapter_dispose(MPT_ADAPTER *ioc);

static void	MptDisplayIocCapabilities(MPT_ADAPTER *ioc);
static int	MakeIocReady(MPT_ADAPTER *ioc, int force, int sleepFlag);
static int	GetIocFacts(MPT_ADAPTER *ioc, int sleepFlag, int reason);
static int	GetPortFacts(MPT_ADAPTER *ioc, int portnum, int sleepFlag);
static int	SendIocInit(MPT_ADAPTER *ioc, int sleepFlag);
static int	SendPortEnable(MPT_ADAPTER *ioc, int portnum, int sleepFlag);
static int	mpt_do_upload(MPT_ADAPTER *ioc, int sleepFlag);
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static int	mpt_downloadboot(MPT_ADAPTER *ioc, MpiFwHeader_t *pFwHeader, int sleepFlag);
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static int	mpt_diag_reset(MPT_ADAPTER *ioc, int ignore, int sleepFlag);
static int	KickStart(MPT_ADAPTER *ioc, int ignore, int sleepFlag);
static int	SendIocReset(MPT_ADAPTER *ioc, u8 reset_type, int sleepFlag);
static int	PrimeIocFifos(MPT_ADAPTER *ioc);
static int	WaitForDoorbellAck(MPT_ADAPTER *ioc, int howlong, int sleepFlag);
static int	WaitForDoorbellInt(MPT_ADAPTER *ioc, int howlong, int sleepFlag);
static int	WaitForDoorbellReply(MPT_ADAPTER *ioc, int howlong, int sleepFlag);
static int	GetLanConfigPages(MPT_ADAPTER *ioc);
static int	GetIoUnitPage2(MPT_ADAPTER *ioc);
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int		mptbase_sas_persist_operation(MPT_ADAPTER *ioc, u8 persist_opcode);
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static int	mpt_GetScsiPortSettings(MPT_ADAPTER *ioc, int portnum);
static int	mpt_readScsiDevicePageHeaders(MPT_ADAPTER *ioc, int portnum);
static void 	mpt_read_ioc_pg_1(MPT_ADAPTER *ioc);
static void 	mpt_read_ioc_pg_4(MPT_ADAPTER *ioc);
static void	mpt_timer_expired(unsigned long data);
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static void	mpt_get_manufacturing_pg_0(MPT_ADAPTER *ioc);
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static int	SendEventNotification(MPT_ADAPTER *ioc, u8 EvSwitch);
static int	SendEventAck(MPT_ADAPTER *ioc, EventNotificationReply_t *evnp);
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static int	mpt_host_page_access_control(MPT_ADAPTER *ioc, u8 access_control_value, int sleepFlag);
static int	mpt_host_page_alloc(MPT_ADAPTER *ioc, pIOCInit_t ioc_init);
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#ifdef CONFIG_PROC_FS
static int	procmpt_summary_read(char *buf, char **start, off_t offset,
				int request, int *eof, void *data);
static int	procmpt_version_read(char *buf, char **start, off_t offset,
				int request, int *eof, void *data);
static int	procmpt_iocinfo_read(char *buf, char **start, off_t offset,
				int request, int *eof, void *data);
#endif
static void	mpt_get_fw_exp_ver(char *buf, MPT_ADAPTER *ioc);

//int		mpt_HardResetHandler(MPT_ADAPTER *ioc, int sleepFlag);
static int	ProcessEventNotification(MPT_ADAPTER *ioc, EventNotificationReply_t *evReply, int *evHandlers);
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#ifdef MPT_DEBUG_REPLY
static void	mpt_iocstatus_info(MPT_ADAPTER *ioc, u32 ioc_status, MPT_FRAME_HDR *mf);
#endif
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static void	mpt_fc_log_info(MPT_ADAPTER *ioc, u32 log_info);
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static void	mpt_spi_log_info(MPT_ADAPTER *ioc, u32 log_info);
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static void	mpt_sas_log_info(MPT_ADAPTER *ioc, u32 log_info);
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static int	mpt_read_ioc_pg_3(MPT_ADAPTER *ioc);
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static void	mpt_inactive_raid_list_free(MPT_ADAPTER *ioc);
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/* module entry point */
static int  __init    fusion_init  (void);
static void __exit    fusion_exit  (void);

#define CHIPREG_READ32(addr) 		readl_relaxed(addr)
#define CHIPREG_READ32_dmasync(addr)	readl(addr)
#define CHIPREG_WRITE32(addr,val) 	writel(val, addr)
#define CHIPREG_PIO_WRITE32(addr,val)	outl(val, (unsigned long)addr)
#define CHIPREG_PIO_READ32(addr) 	inl((unsigned long)addr)

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static void
pci_disable_io_access(struct pci_dev *pdev)
{
	u16 command_reg;

	pci_read_config_word(pdev, PCI_COMMAND, &command_reg);
	command_reg &= ~1;
	pci_write_config_word(pdev, PCI_COMMAND, command_reg);
}

static void
pci_enable_io_access(struct pci_dev *pdev)
{
	u16 command_reg;

	pci_read_config_word(pdev, PCI_COMMAND, &command_reg);
	command_reg |= 1;
	pci_write_config_word(pdev, PCI_COMMAND, command_reg);
}

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/*
 *  Process turbo (context) reply...
 */
static void
mpt_turbo_reply(MPT_ADAPTER *ioc, u32 pa)
{
	MPT_FRAME_HDR *mf = NULL;
	MPT_FRAME_HDR *mr = NULL;
	int req_idx = 0;
	int cb_idx;

	dmfprintk((MYIOC_s_INFO_FMT "Got TURBO reply req_idx=%08x\n",
				ioc->name, pa));

	switch (pa >> MPI_CONTEXT_REPLY_TYPE_SHIFT) {
	case MPI_CONTEXT_REPLY_TYPE_SCSI_INIT:
		req_idx = pa & 0x0000FFFF;
		cb_idx = (pa & 0x00FF0000) >> 16;
		mf = MPT_INDEX_2_MFPTR(ioc, req_idx);
		break;
	case MPI_CONTEXT_REPLY_TYPE_LAN:
		cb_idx = mpt_lan_index;
		/*
		 *  Blind set of mf to NULL here was fatal
		 *  after lan_reply says "freeme"
		 *  Fix sort of combined with an optimization here;
		 *  added explicit check for case where lan_reply
		 *  was just returning 1 and doing nothing else.
		 *  For this case skip the callback, but set up
		 *  proper mf value first here:-)
		 */
		if ((pa & 0x58000000) == 0x58000000) {
			req_idx = pa & 0x0000FFFF;
			mf = MPT_INDEX_2_MFPTR(ioc, req_idx);
			mpt_free_msg_frame(ioc, mf);
			mb();
			return;
			break;
		}
		mr = (MPT_FRAME_HDR *) CAST_U32_TO_PTR(pa);
		break;
	case MPI_CONTEXT_REPLY_TYPE_SCSI_TARGET:
		cb_idx = mpt_stm_index;
		mr = (MPT_FRAME_HDR *) CAST_U32_TO_PTR(pa);
		break;
	default:
		cb_idx = 0;
		BUG();
	}

	/*  Check for (valid) IO callback!  */
	if (cb_idx < 1 || cb_idx >= MPT_MAX_PROTOCOL_DRIVERS ||
			MptCallbacks[cb_idx] == NULL) {
		printk(MYIOC_s_WARN_FMT "%s: Invalid cb_idx (%d)!\n",
				__FUNCTION__, ioc->name, cb_idx);
		goto out;
	}

	if (MptCallbacks[cb_idx](ioc, mf, mr))
		mpt_free_msg_frame(ioc, mf);
 out:
	mb();
}

static void
mpt_reply(MPT_ADAPTER *ioc, u32 pa)
{
	MPT_FRAME_HDR	*mf;
	MPT_FRAME_HDR	*mr;
	int		 req_idx;
	int		 cb_idx;
	int		 freeme;

	u32 reply_dma_low;
	u16 ioc_stat;

	/* non-TURBO reply!  Hmmm, something may be up...
	 *  Newest turbo reply mechanism; get address
	 *  via left shift 1 (get rid of MPI_ADDRESS_REPLY_A_BIT)!
	 */

	/* Map DMA address of reply header to cpu address.
	 * pa is 32 bits - but the dma address may be 32 or 64 bits
	 * get offset based only only the low addresses
	 */

	reply_dma_low = (pa <<= 1);
	mr = (MPT_FRAME_HDR *)((u8 *)ioc->reply_frames +
			 (reply_dma_low - ioc->reply_frames_low_dma));

	req_idx = le16_to_cpu(mr->u.frame.hwhdr.msgctxu.fld.req_idx);
	cb_idx = mr->u.frame.hwhdr.msgctxu.fld.cb_idx;
	mf = MPT_INDEX_2_MFPTR(ioc, req_idx);

	dmfprintk((MYIOC_s_INFO_FMT "Got non-TURBO reply=%p req_idx=%x cb_idx=%x Function=%x\n",
			ioc->name, mr, req_idx, cb_idx, mr->u.hdr.Function));
	DBG_DUMP_REPLY_FRAME(mr)

	 /*  Check/log IOC log info
	 */
	ioc_stat = le16_to_cpu(mr->u.reply.IOCStatus);
	if (ioc_stat & MPI_IOCSTATUS_FLAG_LOG_INFO_AVAILABLE) {
		u32	 log_info = le32_to_cpu(mr->u.reply.IOCLogInfo);
		if (ioc->bus_type == FC)
			mpt_fc_log_info(ioc, log_info);
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		else if (ioc->bus_type == SPI)
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			mpt_spi_log_info(ioc, log_info);
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		else if (ioc->bus_type == SAS)
			mpt_sas_log_info(ioc, log_info);
	}

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#ifdef MPT_DEBUG_REPLY
	if (ioc_stat & MPI_IOCSTATUS_MASK)
		mpt_iocstatus_info(ioc, (u32)ioc_stat, mf);
#endif
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	/*  Check for (valid) IO callback!  */
	if (cb_idx < 1 || cb_idx >= MPT_MAX_PROTOCOL_DRIVERS ||
			MptCallbacks[cb_idx] == NULL) {
		printk(MYIOC_s_WARN_FMT "%s: Invalid cb_idx (%d)!\n",
				__FUNCTION__, ioc->name, cb_idx);
		freeme = 0;
		goto out;
	}

	freeme = MptCallbacks[cb_idx](ioc, mf, mr);

 out:
	/*  Flush (non-TURBO) reply with a WRITE!  */
	CHIPREG_WRITE32(&ioc->chip->ReplyFifo, pa);

	if (freeme)
		mpt_free_msg_frame(ioc, mf);
	mb();
}

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/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
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/**
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 *	mpt_interrupt - MPT adapter (IOC) specific interrupt handler.
 *	@irq: irq number (not used)
 *	@bus_id: bus identifier cookie == pointer to MPT_ADAPTER structure
 *
 *	This routine is registered via the request_irq() kernel API call,
 *	and handles all interrupts generated from a specific MPT adapter
 *	(also referred to as a IO Controller or IOC).
 *	This routine must clear the interrupt from the adapter and does
 *	so by reading the reply FIFO.  Multiple replies may be processed
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 *	per single call to this routine.
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 *
 *	This routine handles register-level access of the adapter but
 *	dispatches (calls) a protocol-specific callback routine to handle
 *	the protocol-specific details of the MPT request completion.
 */
static irqreturn_t
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mpt_interrupt(int irq, void *bus_id)
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{
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	MPT_ADAPTER *ioc = bus_id;
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	u32 pa = CHIPREG_READ32_dmasync(&ioc->chip->ReplyFifo);

	if (pa == 0xFFFFFFFF)
		return IRQ_NONE;
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	/*
	 *  Drain the reply FIFO!
	 */
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	do {
		if (pa & MPI_ADDRESS_REPLY_A_BIT)
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			mpt_reply(ioc, pa);
		else
			mpt_turbo_reply(ioc, pa);
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		pa = CHIPREG_READ32_dmasync(&ioc->chip->ReplyFifo);
	} while (pa != 0xFFFFFFFF);
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	return IRQ_HANDLED;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
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/**
 *	mpt_base_reply - MPT base driver's callback routine
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 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@mf: Pointer to original MPT request frame
 *	@reply: Pointer to MPT reply frame (NULL if TurboReply)
 *
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 *	MPT base driver's callback routine; all base driver
 *	"internal" request/reply processing is routed here.
 *	Currently used for EventNotification and EventAck handling.
 *
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 *	Returns 1 indicating original alloc'd request frame ptr
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 *	should be freed, or 0 if it shouldn't.
 */
static int
mpt_base_reply(MPT_ADAPTER *ioc, MPT_FRAME_HDR *mf, MPT_FRAME_HDR *reply)
{
	int freereq = 1;
	u8 func;

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	dmfprintk((MYIOC_s_INFO_FMT "mpt_base_reply() called\n", ioc->name));
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#if defined(MPT_DEBUG_MSG_FRAME)
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	if (!(reply->u.hdr.MsgFlags & MPI_MSGFLAGS_CONTINUATION_REPLY)) {
		dmfprintk((KERN_INFO MYNAM ": Original request frame (@%p) header\n", mf));
		DBG_DUMP_REQUEST_FRAME_HDR(mf)
	}
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#endif
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	func = reply->u.hdr.Function;
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	dmfprintk((MYIOC_s_INFO_FMT "mpt_base_reply, Function=%02Xh\n",
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			ioc->name, func));

	if (func == MPI_FUNCTION_EVENT_NOTIFICATION) {
		EventNotificationReply_t *pEvReply = (EventNotificationReply_t *) reply;
		int evHandlers = 0;
		int results;

		results = ProcessEventNotification(ioc, pEvReply, &evHandlers);
		if (results != evHandlers) {
			/* CHECKME! Any special handling needed here? */
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			devtverboseprintk((MYIOC_s_WARN_FMT "Called %d event handlers, sum results = %d\n",
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					ioc->name, evHandlers, results));
		}

		/*
		 *	Hmmm...  It seems that EventNotificationReply is an exception
		 *	to the rule of one reply per request.
		 */
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		if (pEvReply->MsgFlags & MPI_MSGFLAGS_CONTINUATION_REPLY) {
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			freereq = 0;
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		} else {
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			devtverboseprintk((MYIOC_s_WARN_FMT "EVENT_NOTIFICATION reply %p returns Request frame\n",
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				ioc->name, pEvReply));
		}
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#ifdef CONFIG_PROC_FS
//		LogEvent(ioc, pEvReply);
#endif

	} else if (func == MPI_FUNCTION_EVENT_ACK) {
		dprintk((MYIOC_s_INFO_FMT "mpt_base_reply, EventAck reply received\n",
				ioc->name));
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	} else if (func == MPI_FUNCTION_CONFIG) {
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		CONFIGPARMS *pCfg;
		unsigned long flags;

		dcprintk((MYIOC_s_INFO_FMT "config_complete (mf=%p,mr=%p)\n",
				ioc->name, mf, reply));

		pCfg = * ((CONFIGPARMS **)((u8 *) mf + ioc->req_sz - sizeof(void *)));

		if (pCfg) {
			/* disable timer and remove from linked list */
			del_timer(&pCfg->timer);

			spin_lock_irqsave(&ioc->FreeQlock, flags);
			list_del(&pCfg->linkage);
			spin_unlock_irqrestore(&ioc->FreeQlock, flags);

			/*
			 *	If IOC Status is SUCCESS, save the header
			 *	and set the status code to GOOD.
			 */
			pCfg->status = MPT_CONFIG_ERROR;
			if (reply) {
				ConfigReply_t	*pReply = (ConfigReply_t *)reply;
				u16		 status;

				status = le16_to_cpu(pReply->IOCStatus) & MPI_IOCSTATUS_MASK;
				dcprintk((KERN_NOTICE "  IOCStatus=%04xh, IOCLogInfo=%08xh\n",
				     status, le32_to_cpu(pReply->IOCLogInfo)));

				pCfg->status = status;
				if (status == MPI_IOCSTATUS_SUCCESS) {
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					if ((pReply->Header.PageType &
					    MPI_CONFIG_PAGETYPE_MASK) ==
					    MPI_CONFIG_PAGETYPE_EXTENDED) {
						pCfg->cfghdr.ehdr->ExtPageLength =
						    le16_to_cpu(pReply->ExtPageLength);
						pCfg->cfghdr.ehdr->ExtPageType =
						    pReply->ExtPageType;
					}
					pCfg->cfghdr.hdr->PageVersion = pReply->Header.PageVersion;

					/* If this is a regular header, save PageLength. */
					/* LMP Do this better so not using a reserved field! */
					pCfg->cfghdr.hdr->PageLength = pReply->Header.PageLength;
					pCfg->cfghdr.hdr->PageNumber = pReply->Header.PageNumber;
					pCfg->cfghdr.hdr->PageType = pReply->Header.PageType;
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				}
			}

			/*
			 *	Wake up the original calling thread
			 */
			pCfg->wait_done = 1;
			wake_up(&mpt_waitq);
		}
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	} else if (func == MPI_FUNCTION_SAS_IO_UNIT_CONTROL) {
		/* we should be always getting a reply frame */
		memcpy(ioc->persist_reply_frame, reply,
		    min(MPT_DEFAULT_FRAME_SIZE,
		    4*reply->u.reply.MsgLength));
		del_timer(&ioc->persist_timer);
		ioc->persist_wait_done = 1;
		wake_up(&mpt_waitq);
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	} else {
		printk(MYIOC_s_ERR_FMT "Unexpected msg function (=%02Xh) reply received!\n",
				ioc->name, func);
	}

	/*
	 *	Conditionally tell caller to free the original
	 *	EventNotification/EventAck/unexpected request frame!
	 */
	return freereq;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_register - Register protocol-specific main callback handler.
 *	@cbfunc: callback function pointer
 *	@dclass: Protocol driver's class (%MPT_DRIVER_CLASS enum value)
 *
 *	This routine is called by a protocol-specific driver (SCSI host,
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 *	LAN, SCSI target) to register its reply callback routine.  Each
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 *	protocol-specific driver must do this before it will be able to
 *	use any IOC resources, such as obtaining request frames.
 *
 *	NOTES: The SCSI protocol driver currently calls this routine thrice
 *	in order to register separate callbacks; one for "normal" SCSI IO;
 *	one for MptScsiTaskMgmt requests; one for Scan/DV requests.
 *
 *	Returns a positive integer valued "handle" in the
 *	range (and S.O.D. order) {N,...,7,6,5,...,1} if successful.
 *	Any non-positive return value (including zero!) should be considered
 *	an error by the caller.
 */
int
mpt_register(MPT_CALLBACK cbfunc, MPT_DRIVER_CLASS dclass)
{
	int i;

	last_drv_idx = -1;

	/*
	 *  Search for empty callback slot in this order: {N,...,7,6,5,...,1}
	 *  (slot/handle 0 is reserved!)
	 */
	for (i = MPT_MAX_PROTOCOL_DRIVERS-1; i; i--) {
		if (MptCallbacks[i] == NULL) {
			MptCallbacks[i] = cbfunc;
			MptDriverClass[i] = dclass;
			MptEvHandlers[i] = NULL;
			last_drv_idx = i;
			break;
		}
	}

	return last_drv_idx;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_deregister - Deregister a protocol drivers resources.
 *	@cb_idx: previously registered callback handle
 *
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 *	Each protocol-specific driver should call this routine when its
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 *	module is unloaded.
 */
void
mpt_deregister(int cb_idx)
{
	if ((cb_idx >= 0) && (cb_idx < MPT_MAX_PROTOCOL_DRIVERS)) {
		MptCallbacks[cb_idx] = NULL;
		MptDriverClass[cb_idx] = MPTUNKNOWN_DRIVER;
		MptEvHandlers[cb_idx] = NULL;

		last_drv_idx++;
	}
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_event_register - Register protocol-specific event callback
 *	handler.
 *	@cb_idx: previously registered (via mpt_register) callback handle
 *	@ev_cbfunc: callback function
 *
 *	This routine can be called by one or more protocol-specific drivers
 *	if/when they choose to be notified of MPT events.
 *
 *	Returns 0 for success.
 */
int
mpt_event_register(int cb_idx, MPT_EVHANDLER ev_cbfunc)
{
	if (cb_idx < 1 || cb_idx >= MPT_MAX_PROTOCOL_DRIVERS)
		return -1;

	MptEvHandlers[cb_idx] = ev_cbfunc;
	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_event_deregister - Deregister protocol-specific event callback
 *	handler.
 *	@cb_idx: previously registered callback handle
 *
 *	Each protocol-specific driver should call this routine
 *	when it does not (or can no longer) handle events,
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 *	or when its module is unloaded.
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 */
void
mpt_event_deregister(int cb_idx)
{
	if (cb_idx < 1 || cb_idx >= MPT_MAX_PROTOCOL_DRIVERS)
		return;

	MptEvHandlers[cb_idx] = NULL;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_reset_register - Register protocol-specific IOC reset handler.
 *	@cb_idx: previously registered (via mpt_register) callback handle
 *	@reset_func: reset function
 *
 *	This routine can be called by one or more protocol-specific drivers
 *	if/when they choose to be notified of IOC resets.
 *
 *	Returns 0 for success.
 */
int
mpt_reset_register(int cb_idx, MPT_RESETHANDLER reset_func)
{
	if (cb_idx < 1 || cb_idx >= MPT_MAX_PROTOCOL_DRIVERS)
		return -1;

	MptResetHandlers[cb_idx] = reset_func;
	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_reset_deregister - Deregister protocol-specific IOC reset handler.
 *	@cb_idx: previously registered callback handle
 *
 *	Each protocol-specific driver should call this routine
 *	when it does not (or can no longer) handle IOC reset handling,
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 *	or when its module is unloaded.
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 */
void
mpt_reset_deregister(int cb_idx)
{
	if (cb_idx < 1 || cb_idx >= MPT_MAX_PROTOCOL_DRIVERS)
		return;

	MptResetHandlers[cb_idx] = NULL;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_device_driver_register - Register device driver hooks
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 *	@dd_cbfunc: driver callbacks struct
 *	@cb_idx: MPT protocol driver index
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 */
int
mpt_device_driver_register(struct mpt_pci_driver * dd_cbfunc, int cb_idx)
{
	MPT_ADAPTER	*ioc;
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	const struct pci_device_id *id;
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	if (cb_idx < 1 || cb_idx >= MPT_MAX_PROTOCOL_DRIVERS)
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		return -EINVAL;
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	MptDeviceDriverHandlers[cb_idx] = dd_cbfunc;

	/* call per pci device probe entry point */
	list_for_each_entry(ioc, &ioc_list, list) {
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		id = ioc->pcidev->driver ?
		    ioc->pcidev->driver->id_table : NULL;
		if (dd_cbfunc->probe)
			dd_cbfunc->probe(ioc->pcidev, id);
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	 }

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	return 0;
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}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_device_driver_deregister - DeRegister device driver hooks
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 *	@cb_idx: MPT protocol driver index
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 */
void
mpt_device_driver_deregister(int cb_idx)
{
	struct mpt_pci_driver *dd_cbfunc;
	MPT_ADAPTER	*ioc;

	if (cb_idx < 1 || cb_idx >= MPT_MAX_PROTOCOL_DRIVERS)
		return;

	dd_cbfunc = MptDeviceDriverHandlers[cb_idx];

	list_for_each_entry(ioc, &ioc_list, list) {
		if (dd_cbfunc->remove)
			dd_cbfunc->remove(ioc->pcidev);
	}
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	MptDeviceDriverHandlers[cb_idx] = NULL;
}


/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_get_msg_frame - Obtain a MPT request frame from the pool (of 1024)
 *	allocated per MPT adapter.
 *	@handle: Handle of registered MPT protocol driver
 *	@ioc: Pointer to MPT adapter structure
 *
 *	Returns pointer to a MPT request frame or %NULL if none are available
 *	or IOC is not active.
 */
MPT_FRAME_HDR*
mpt_get_msg_frame(int handle, MPT_ADAPTER *ioc)
{
	MPT_FRAME_HDR *mf;
	unsigned long flags;
	u16	 req_idx;	/* Request index */

	/* validate handle and ioc identifier */

#ifdef MFCNT
	if (!ioc->active)
		printk(KERN_WARNING "IOC Not Active! mpt_get_msg_frame returning NULL!\n");
#endif

	/* If interrupts are not attached, do not return a request frame */
	if (!ioc->active)
		return NULL;

	spin_lock_irqsave(&ioc->FreeQlock, flags);
	if (!list_empty(&ioc->FreeQ)) {
		int req_offset;

		mf = list_entry(ioc->FreeQ.next, MPT_FRAME_HDR,
				u.frame.linkage.list);
		list_del(&mf->u.frame.linkage.list);
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		mf->u.frame.linkage.arg1 = 0;
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		mf->u.frame.hwhdr.msgctxu.fld.cb_idx = handle;	/* byte */
		req_offset = (u8 *)mf - (u8 *)ioc->req_frames;
								/* u16! */
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		req_idx = req_offset / ioc->req_sz;
		mf->u.frame.hwhdr.msgctxu.fld.req_idx = cpu_to_le16(req_idx);
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		mf->u.frame.hwhdr.msgctxu.fld.rsvd = 0;
		ioc->RequestNB[req_idx] = ioc->NB_for_64_byte_frame; /* Default, will be changed if necessary in SG generation */
#ifdef MFCNT
		ioc->mfcnt++;
#endif
	}
	else
		mf = NULL;
	spin_unlock_irqrestore(&ioc->FreeQlock, flags);

#ifdef MFCNT
	if (mf == NULL)
		printk(KERN_WARNING "IOC Active. No free Msg Frames! Count 0x%x Max 0x%x\n", ioc->mfcnt, ioc->req_depth);
	mfcounter++;
	if (mfcounter == PRINT_MF_COUNT)
		printk(KERN_INFO "MF Count 0x%x Max 0x%x \n", ioc->mfcnt, ioc->req_depth);
#endif

	dmfprintk((KERN_INFO MYNAM ": %s: mpt_get_msg_frame(%d,%d), got mf=%p\n",
			ioc->name, handle, ioc->id, mf));
	return mf;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_put_msg_frame - Send a protocol specific MPT request frame
 *	to a IOC.
 *	@handle: Handle of registered MPT protocol driver
 *	@ioc: Pointer to MPT adapter structure
 *	@mf: Pointer to MPT request frame
 *
 *	This routine posts a MPT request frame to the request post FIFO of a
 *	specific MPT adapter.
 */
void
mpt_put_msg_frame(int handle, MPT_ADAPTER *ioc, MPT_FRAME_HDR *mf)
{
	u32 mf_dma_addr;
	int req_offset;
	u16	 req_idx;	/* Request index */

	/* ensure values are reset properly! */
	mf->u.frame.hwhdr.msgctxu.fld.cb_idx = handle;		/* byte */
	req_offset = (u8 *)mf - (u8 *)ioc->req_frames;
								/* u16! */
819 820
	req_idx = req_offset / ioc->req_sz;
	mf->u.frame.hwhdr.msgctxu.fld.req_idx = cpu_to_le16(req_idx);
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	mf->u.frame.hwhdr.msgctxu.fld.rsvd = 0;

#ifdef MPT_DEBUG_MSG_FRAME
	{
		u32	*m = mf->u.frame.hwhdr.__hdr;
		int	 ii, n;

		printk(KERN_INFO MYNAM ": %s: About to Put msg frame @ %p:\n" KERN_INFO " ",
				ioc->name, m);
		n = ioc->req_sz/4 - 1;
		while (m[n] == 0)
			n--;
		for (ii=0; ii<=n; ii++) {
			if (ii && ((ii%8)==0))
				printk("\n" KERN_INFO " ");
			printk(" %08x", le32_to_cpu(m[ii]));
		}
		printk("\n");
	}
#endif

842
	mf_dma_addr = (ioc->req_frames_low_dma + req_offset) | ioc->RequestNB[req_idx];
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	dsgprintk((MYIOC_s_INFO_FMT "mf_dma_addr=%x req_idx=%d RequestNB=%x\n", ioc->name, mf_dma_addr, req_idx, ioc->RequestNB[req_idx]));
	CHIPREG_WRITE32(&ioc->chip->RequestFifo, mf_dma_addr);
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_free_msg_frame - Place MPT request frame back on FreeQ.
 *	@handle: Handle of registered MPT protocol driver
 *	@ioc: Pointer to MPT adapter structure
 *	@mf: Pointer to MPT request frame
 *
 *	This routine places a MPT request frame back on the MPT adapter's
 *	FreeQ.
 */
void
mpt_free_msg_frame(MPT_ADAPTER *ioc, MPT_FRAME_HDR *mf)
{
	unsigned long flags;

	/*  Put Request back on FreeQ!  */
	spin_lock_irqsave(&ioc->FreeQlock, flags);
864
	mf->u.frame.linkage.arg1 = 0xdeadbeaf; /* signature to know if this mf is freed */
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	list_add_tail(&mf->u.frame.linkage.list, &ioc->FreeQ);
#ifdef MFCNT
	ioc->mfcnt--;
#endif
	spin_unlock_irqrestore(&ioc->FreeQlock, flags);
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_add_sge - Place a simple SGE at address pAddr.
 *	@pAddr: virtual address for SGE
 *	@flagslength: SGE flags and data transfer length
 *	@dma_addr: Physical address
 *
 *	This routine places a MPT request frame back on the MPT adapter's
 *	FreeQ.
 */
void
mpt_add_sge(char *pAddr, u32 flagslength, dma_addr_t dma_addr)
{
	if (sizeof(dma_addr_t) == sizeof(u64)) {
		SGESimple64_t *pSge = (SGESimple64_t *) pAddr;
		u32 tmp = dma_addr & 0xFFFFFFFF;

		pSge->FlagsLength = cpu_to_le32(flagslength);
		pSge->Address.Low = cpu_to_le32(tmp);
		tmp = (u32) ((u64)dma_addr >> 32);
		pSge->Address.High = cpu_to_le32(tmp);

	} else {
		SGESimple32_t *pSge = (SGESimple32_t *) pAddr;
		pSge->FlagsLength = cpu_to_le32(flagslength);
		pSge->Address = cpu_to_le32(dma_addr);
	}
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
903
 *	mpt_send_handshake_request - Send MPT request via doorbell handshake method.
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 *	@handle: Handle of registered MPT protocol driver
 *	@ioc: Pointer to MPT adapter structure
 *	@reqBytes: Size of the request in bytes
 *	@req: Pointer to MPT request frame
 *	@sleepFlag: Use schedule if CAN_SLEEP else use udelay.
 *
 *	This routine is used exclusively to send MptScsiTaskMgmt
 *	requests since they are required to be sent via doorbell handshake.
 *
 *	NOTE: It is the callers responsibility to byte-swap fields in the
 *	request which are greater than 1 byte in size.
 *
 *	Returns 0 for success, non-zero for failure.
 */
int
mpt_send_handshake_request(int handle, MPT_ADAPTER *ioc, int reqBytes, u32 *req, int sleepFlag)
{
921
	int	r = 0;
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	u8	*req_as_bytes;
	int	 ii;

	/* State is known to be good upon entering
	 * this function so issue the bus reset
	 * request.
	 */

	/*
	 * Emulate what mpt_put_msg_frame() does /wrt to sanity
	 * setting cb_idx/req_idx.  But ONLY if this request
	 * is in proper (pre-alloc'd) request buffer range...
	 */
	ii = MFPTR_2_MPT_INDEX(ioc,(MPT_FRAME_HDR*)req);
	if (reqBytes >= 12 && ii >= 0 && ii < ioc->req_depth) {
		MPT_FRAME_HDR *mf = (MPT_FRAME_HDR*)req;
		mf->u.frame.hwhdr.msgctxu.fld.req_idx = cpu_to_le16(ii);
		mf->u.frame.hwhdr.msgctxu.fld.cb_idx = handle;
	}

	/* Make sure there are no doorbells */
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);
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	CHIPREG_WRITE32(&ioc->chip->Doorbell,
			((MPI_FUNCTION_HANDSHAKE<<MPI_DOORBELL_FUNCTION_SHIFT) |
			 ((reqBytes/4)<<MPI_DOORBELL_ADD_DWORDS_SHIFT)));

	/* Wait for IOC doorbell int */
	if ((ii = WaitForDoorbellInt(ioc, 5, sleepFlag)) < 0) {
		return ii;
	}

	/* Read doorbell and check for active bit */
	if (!(CHIPREG_READ32(&ioc->chip->Doorbell) & MPI_DOORBELL_ACTIVE))
		return -5;

	dhsprintk((KERN_INFO MYNAM ": %s: mpt_send_handshake_request start, WaitCnt=%d\n",
959
		ioc->name, ii));
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	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);

	if ((r = WaitForDoorbellAck(ioc, 5, sleepFlag)) < 0) {
		return -2;
	}
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	/* Send request via doorbell handshake */
	req_as_bytes = (u8 *) req;
	for (ii = 0; ii < reqBytes/4; ii++) {
		u32 word;

		word = ((req_as_bytes[(ii*4) + 0] <<  0) |
			(req_as_bytes[(ii*4) + 1] <<  8) |
			(req_as_bytes[(ii*4) + 2] << 16) |
			(req_as_bytes[(ii*4) + 3] << 24));
		CHIPREG_WRITE32(&ioc->chip->Doorbell, word);
		if ((r = WaitForDoorbellAck(ioc, 5, sleepFlag)) < 0) {
			r = -3;
			break;
		}
	}

	if (r >= 0 && WaitForDoorbellInt(ioc, 10, sleepFlag) >= 0)
		r = 0;
	else
		r = -4;

	/* Make sure there are no doorbells */
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);
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	return r;
}

994 995
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
996
 * mpt_host_page_access_control - control the IOC's Host Page Buffer access
997 998
 * @ioc: Pointer to MPT adapter structure
 * @access_control_value: define bits below
999 1000 1001 1002
 * @sleepFlag: Specifies whether the process can sleep
 *
 * Provides mechanism for the host driver to control the IOC's
 * Host Page Buffer access.
1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039
 *
 * Access Control Value - bits[15:12]
 * 0h Reserved
 * 1h Enable Access { MPI_DB_HPBAC_ENABLE_ACCESS }
 * 2h Disable Access { MPI_DB_HPBAC_DISABLE_ACCESS }
 * 3h Free Buffer { MPI_DB_HPBAC_FREE_BUFFER }
 *
 * Returns 0 for success, non-zero for failure.
 */

static int
mpt_host_page_access_control(MPT_ADAPTER *ioc, u8 access_control_value, int sleepFlag)
{
	int	 r = 0;

	/* return if in use */
	if (CHIPREG_READ32(&ioc->chip->Doorbell)
	    & MPI_DOORBELL_ACTIVE)
	    return -1;

	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);

	CHIPREG_WRITE32(&ioc->chip->Doorbell,
		((MPI_FUNCTION_HOST_PAGEBUF_ACCESS_CONTROL
		 <<MPI_DOORBELL_FUNCTION_SHIFT) |
		 (access_control_value<<12)));

	/* Wait for IOC to clear Doorbell Status bit */
	if ((r = WaitForDoorbellAck(ioc, 5, sleepFlag)) < 0) {
		return -2;
	}else
		return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_host_page_alloc - allocate system memory for the fw
1040 1041
 *	@ioc: Pointer to pointer to IOC adapter
 *	@ioc_init: Pointer to ioc init config page
1042
 *
1043
 *	If we already allocated memory in past, then resend the same pointer.
1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070
 *	Returns 0 for success, non-zero for failure.
 */
static int
mpt_host_page_alloc(MPT_ADAPTER *ioc, pIOCInit_t ioc_init)
{
	char	*psge;
	int	flags_length;
	u32	host_page_buffer_sz=0;

	if(!ioc->HostPageBuffer) {

		host_page_buffer_sz =
		    le32_to_cpu(ioc->facts.HostPageBufferSGE.FlagsLength) & 0xFFFFFF;

		if(!host_page_buffer_sz)
			return 0; /* fw doesn't need any host buffers */

		/* spin till we get enough memory */
		while(host_page_buffer_sz > 0) {

			if((ioc->HostPageBuffer = pci_alloc_consistent(
			    ioc->pcidev,
			    host_page_buffer_sz,
			    &ioc->HostPageBuffer_dma)) != NULL) {

				dinitprintk((MYIOC_s_INFO_FMT
				    "host_page_buffer @ %p, dma @ %x, sz=%d bytes\n",
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				    ioc->name, ioc->HostPageBuffer,
				    (u32)ioc->HostPageBuffer_dma,
1073
				    host_page_buffer_sz));
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				ioc->alloc_total += host_page_buffer_sz;
				ioc->HostPageBuffer_sz = host_page_buffer_sz;
				break;
			}

			host_page_buffer_sz -= (4*1024);
		}
	}

	if(!ioc->HostPageBuffer) {
		printk(MYIOC_s_ERR_FMT
		    "Failed to alloc memory for host_page_buffer!\n",
		    ioc->name);
		return -999;
	}

	psge = (char *)&ioc_init->HostPageBufferSGE;
	flags_length = MPI_SGE_FLAGS_SIMPLE_ELEMENT |
	    MPI_SGE_FLAGS_SYSTEM_ADDRESS |
	    MPI_SGE_FLAGS_32_BIT_ADDRESSING |
	    MPI_SGE_FLAGS_HOST_TO_IOC |
	    MPI_SGE_FLAGS_END_OF_BUFFER;
	if (sizeof(dma_addr_t) == sizeof(u64)) {
	    flags_length |= MPI_SGE_FLAGS_64_BIT_ADDRESSING;
	}
	flags_length = flags_length << MPI_SGE_FLAGS_SHIFT;
	flags_length |= ioc->HostPageBuffer_sz;
	mpt_add_sge(psge, flags_length, ioc->HostPageBuffer_dma);
	ioc->facts.HostPageBufferSGE = ioc_init->HostPageBufferSGE;

return 0;
}

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/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
1109
 *	mpt_verify_adapter - Given IOC identifier, set pointer to its adapter structure.
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 *	@iocid: IOC unique identifier (integer)
 *	@iocpp: Pointer to pointer to IOC adapter
 *
1113 1114 1115 1116 1117
 *	Given a unique IOC identifier, set pointer to the associated MPT
 *	adapter structure.
 *
 *	Returns iocid and sets iocpp if iocid is found.
 *	Returns -1 if iocid is not found.
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 */
int
mpt_verify_adapter(int iocid, MPT_ADAPTER **iocpp)
{
	MPT_ADAPTER *ioc;

	list_for_each_entry(ioc,&ioc_list,list) {
		if (ioc->id == iocid) {
			*iocpp =ioc;
			return iocid;
1128
		}
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	}
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	*iocpp = NULL;
	return -1;
}

1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376
/**
 *	mpt_get_product_name - returns product string
 *	@vendor: pci vendor id
 *	@device: pci device id
 *	@revision: pci revision id
 *	@prod_name: string returned
 *
 *	Returns product string displayed when driver loads,
 *	in /proc/mpt/summary and /sysfs/class/scsi_host/host<X>/version_product
 *
 **/
static void
mpt_get_product_name(u16 vendor, u16 device, u8 revision, char *prod_name)
{
	char *product_str = NULL;

	if (vendor == PCI_VENDOR_ID_BROCADE) {
		switch (device)
		{
		case MPI_MANUFACTPAGE_DEVICEID_FC949E:
			switch (revision)
			{
			case 0x00:
				product_str = "BRE040 A0";
				break;
			case 0x01:
				product_str = "BRE040 A1";
				break;
			default:
				product_str = "BRE040";
				break;
			}
			break;
		}
		goto out;
	}

	switch (device)
	{
	case MPI_MANUFACTPAGE_DEVICEID_FC909:
		product_str = "LSIFC909 B1";
		break;
	case MPI_MANUFACTPAGE_DEVICEID_FC919:
		product_str = "LSIFC919 B0";
		break;
	case MPI_MANUFACTPAGE_DEVICEID_FC929:
		product_str = "LSIFC929 B0";
		break;
	case MPI_MANUFACTPAGE_DEVICEID_FC919X:
		if (revision < 0x80)
			product_str = "LSIFC919X A0";
		else
			product_str = "LSIFC919XL A1";
		break;
	case MPI_MANUFACTPAGE_DEVICEID_FC929X:
		if (revision < 0x80)
			product_str = "LSIFC929X A0";
		else
			product_str = "LSIFC929XL A1";
		break;
	case MPI_MANUFACTPAGE_DEVICEID_FC939X:
		product_str = "LSIFC939X A1";
		break;
	case MPI_MANUFACTPAGE_DEVICEID_FC949X:
		product_str = "LSIFC949X A1";
		break;
	case MPI_MANUFACTPAGE_DEVICEID_FC949E:
		switch (revision)
		{
		case 0x00:
			product_str = "LSIFC949E A0";
			break;
		case 0x01:
			product_str = "LSIFC949E A1";
			break;
		default:
			product_str = "LSIFC949E";
			break;
		}
		break;
	case MPI_MANUFACTPAGE_DEVID_53C1030:
		switch (revision)
		{
		case 0x00:
			product_str = "LSI53C1030 A0";
			break;
		case 0x01:
			product_str = "LSI53C1030 B0";
			break;
		case 0x03:
			product_str = "LSI53C1030 B1";
			break;
		case 0x07:
			product_str = "LSI53C1030 B2";
			break;
		case 0x08:
			product_str = "LSI53C1030 C0";
			break;
		case 0x80:
			product_str = "LSI53C1030T A0";
			break;
		case 0x83:
			product_str = "LSI53C1030T A2";
			break;
		case 0x87:
			product_str = "LSI53C1030T A3";
			break;
		case 0xc1:
			product_str = "LSI53C1020A A1";
			break;
		default:
			product_str = "LSI53C1030";
			break;
		}
		break;
	case MPI_MANUFACTPAGE_DEVID_1030_53C1035:
		switch (revision)
		{
		case 0x03:
			product_str = "LSI53C1035 A2";
			break;
		case 0x04:
			product_str = "LSI53C1035 B0";
			break;
		default:
			product_str = "LSI53C1035";
			break;
		}
		break;
	case MPI_MANUFACTPAGE_DEVID_SAS1064:
		switch (revision)
		{
		case 0x00:
			product_str = "LSISAS1064 A1";
			break;
		case 0x01:
			product_str = "LSISAS1064 A2";
			break;
		case 0x02:
			product_str = "LSISAS1064 A3";
			break;
		case 0x03:
			product_str = "LSISAS1064 A4";
			break;
		default:
			product_str = "LSISAS1064";
			break;
		}
		break;
	case MPI_MANUFACTPAGE_DEVID_SAS1064E:
		switch (revision)
		{
		case 0x00:
			product_str = "LSISAS1064E A0";
			break;
		case 0x01:
			product_str = "LSISAS1064E B0";
			break;
		case 0x02:
			product_str = "LSISAS1064E B1";
			break;
		case 0x04:
			product_str = "LSISAS1064E B2";
			break;
		case 0x08:
			product_str = "LSISAS1064E B3";
			break;
		default:
			product_str = "LSISAS1064E";
			break;
		}
		break;
	case MPI_MANUFACTPAGE_DEVID_SAS1068:
		switch (revision)
		{
		case 0x00:
			product_str = "LSISAS1068 A0";
			break;
		case 0x01:
			product_str = "LSISAS1068 B0";
			break;
		case 0x02:
			product_str = "LSISAS1068 B1";
			break;
		default:
			product_str = "LSISAS1068";
			break;
		}
		break;
	case MPI_MANUFACTPAGE_DEVID_SAS1068E:
		switch (revision)
		{
		case 0x00:
			product_str = "LSISAS1068E A0";
			break;
		case 0x01:
			product_str = "LSISAS1068E B0";
			break;
		case 0x02:
			product_str = "LSISAS1068E B1";
			break;
		case 0x04:
			product_str = "LSISAS1068E B2";
			break;
		case 0x08:
			product_str = "LSISAS1068E B3";
			break;
		default:
			product_str = "LSISAS1068E";
			break;
		}
		break;
	case MPI_MANUFACTPAGE_DEVID_SAS1078:
		switch (revision)
		{
		case 0x00:
			product_str = "LSISAS1078 A0";
			break;
		case 0x01:
			product_str = "LSISAS1078 B0";
			break;
		case 0x02:
			product_str = "LSISAS1078 C0";
			break;
		case 0x03:
			product_str = "LSISAS1078 C1";
			break;
		case 0x04:
			product_str = "LSISAS1078 C2";
			break;
		default:
			product_str = "LSISAS1078";
			break;
		}
		break;
	}

 out:
	if (product_str)
		sprintf(prod_name, "%s", product_str);
}

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/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1378
/**
1379
 *	mpt_attach - Install a PCI intelligent MPT adapter.
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 *	@pdev: Pointer to pci_dev structure
1381
 *	@id: PCI device ID information
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 *
 *	This routine performs all the steps necessary to bring the IOC of
 *	a MPT adapter to a OPERATIONAL state.  This includes registering
 *	memory regions, registering the interrupt, and allocating request
 *	and reply memory pools.
 *
 *	This routine also pre-fetches the LAN MAC address of a Fibre Channel
 *	MPT adapter.
 *
 *	Returns 0 for success, non-zero for failure.
 *
 *	TODO: Add support for polled controllers
 */
1395 1396
int
mpt_attach(struct pci_dev *pdev, const struct pci_device_id *id)
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{
	MPT_ADAPTER	*ioc;
	u8		__iomem *mem;
	unsigned long	 mem_phys;
	unsigned long	 port;
	u32		 msize;
	u32		 psize;
	int		 ii;
	int		 r = -ENODEV;
	u8		 revision;
	u8		 pcixcmd;
	static int	 mpt_ids = 0;
#ifdef CONFIG_PROC_FS
	struct proc_dir_entry *dent, *ent;
#endif

	if (pci_enable_device(pdev))
		return r;
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	dinitprintk((KERN_WARNING MYNAM ": mpt_adapter_install\n"));
1417

1418
	if (!pci_set_dma_mask(pdev, DMA_64BIT_MASK)) {
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		dprintk((KERN_INFO MYNAM
			": 64 BIT PCI BUS DMA ADDRESSING SUPPORTED\n"));
1421
	} else if (pci_set_dma_mask(pdev, DMA_32BIT_MASK)) {
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		printk(KERN_WARNING MYNAM ": 32 BIT PCI BUS DMA ADDRESSING NOT SUPPORTED\n");
		return r;
	}

1426
	if (!pci_set_consistent_dma_mask(pdev, DMA_64BIT_MASK))
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		dprintk((KERN_INFO MYNAM
			": Using 64 bit consistent mask\n"));
	else
		dprintk((KERN_INFO MYNAM
			": Not using 64 bit consistent mask\n"));

1433
	ioc = kzalloc(sizeof(MPT_ADAPTER), GFP_ATOMIC);
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	if (ioc == NULL) {
		printk(KERN_ERR MYNAM ": ERROR - Insufficient memory to add adapter!\n");
		return -ENOMEM;
	}
	ioc->alloc_total = sizeof(MPT_ADAPTER);
	ioc->req_sz = MPT_DEFAULT_FRAME_SIZE;		/* avoid div by zero! */
	ioc->reply_sz = MPT_REPLY_FRAME_SIZE;
1441

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	ioc->pcidev = pdev;
	ioc->diagPending = 0;
	spin_lock_init(&ioc->diagLock);
1445
	spin_lock_init(&ioc->initializing_hba_lock);
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	/* Initialize the event logging.
	 */
	ioc->eventTypes = 0;	/* None */
	ioc->eventContext = 0;
	ioc->eventLogSize = 0;
	ioc->events = NULL;

#ifdef MFCNT
	ioc->mfcnt = 0;
#endif

	ioc->cached_fw = NULL;

	/* Initilize SCSI Config Data structure
	 */
1462
	memset(&ioc->spi_data, 0, sizeof(SpiCfgData));
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	/* Initialize the running configQ head.
	 */
	INIT_LIST_HEAD(&ioc->configQ);

1468 1469 1470 1471
	/* Initialize the fc rport list head.
	 */
	INIT_LIST_HEAD(&ioc->fc_rports);

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	/* Find lookup slot. */
	INIT_LIST_HEAD(&ioc->list);
	ioc->id = mpt_ids++;
1475

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	mem_phys = msize = 0;
	port = psize = 0;
	for (ii=0; ii < DEVICE_COUNT_RESOURCE; ii++) {
		if (pci_resource_flags(pdev, ii) & PCI_BASE_ADDRESS_SPACE_IO) {
1480 1481
			if (psize)
				continue;
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			/* Get I/O space! */
			port = pci_resource_start(pdev, ii);
			psize = pci_resource_len(pdev,ii);
		} else {
1486 1487
			if (msize)
				continue;
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			/* Get memmap */
			mem_phys = pci_resource_start(pdev, ii);
			msize = pci_resource_len(pdev,ii);
		}
	}
	ioc->mem_size = msize;

	mem = NULL;
	/* Get logical ptr for PciMem0 space */
	/*mem = ioremap(mem_phys, msize);*/
1498
	mem = ioremap(mem_phys, msize);
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	if (mem == NULL) {
		printk(KERN_ERR MYNAM ": ERROR - Unable to map adapter memory!\n");
		kfree(ioc);
		return -EINVAL;
	}
	ioc->memmap = mem;
	dinitprintk((KERN_INFO MYNAM ": mem = %p, mem_phys = %lx\n", mem, mem_phys));

	dinitprintk((KERN_INFO MYNAM ": facts @ %p, pfacts[0] @ %p\n",
			&ioc->facts, &ioc->pfacts[0]));

	ioc->mem_phys = mem_phys;
	ioc->chip = (SYSIF_REGS __iomem *)mem;

	/* Save Port IO values in case we need to do downloadboot */
	{
		u8 *pmem = (u8*)port;
		ioc->pio_mem_phys = port;
		ioc->pio_chip = (SYSIF_REGS __iomem *)pmem;
	}

1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531
	pci_read_config_byte(pdev, PCI_CLASS_REVISION, &revision);
	mpt_get_product_name(pdev->vendor, pdev->device, revision, ioc->prod_name);

	switch (pdev->device)
	{
	case MPI_MANUFACTPAGE_DEVICEID_FC939X:
	case MPI_MANUFACTPAGE_DEVICEID_FC949X:
		ioc->errata_flag_1064 = 1;
	case MPI_MANUFACTPAGE_DEVICEID_FC909:
	case MPI_MANUFACTPAGE_DEVICEID_FC929:
	case MPI_MANUFACTPAGE_DEVICEID_FC919:
	case MPI_MANUFACTPAGE_DEVICEID_FC949E:
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		ioc->bus_type = FC;
1533 1534 1535
		break;

	case MPI_MANUFACTPAGE_DEVICEID_FC929X:
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		if (revision < XL_929) {
			/* 929X Chip Fix. Set Split transactions level
		 	* for PCIX. Set MOST bits to zero.
		 	*/
			pci_read_config_byte(pdev, 0x6a, &pcixcmd);
			pcixcmd &= 0x8F;
			pci_write_config_byte(pdev, 0x6a, pcixcmd);
		} else {
			/* 929XL Chip Fix. Set MMRBC to 0x08.
		 	*/
			pci_read_config_byte(pdev, 0x6a, &pcixcmd);
			pcixcmd |= 0x08;
			pci_write_config_byte(pdev, 0x6a, pcixcmd);
		}
		ioc->bus_type = FC;
1551 1552 1553
		break;

	case MPI_MANUFACTPAGE_DEVICEID_FC919X:
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		/* 919X Chip Fix. Set Split transactions level
		 * for PCIX. Set MOST bits to zero.
		 */
		pci_read_config_byte(pdev, 0x6a, &pcixcmd);
		pcixcmd &= 0x8F;
		pci_write_config_byte(pdev, 0x6a, pcixcmd);
1560
		ioc->bus_type = FC;
1561 1562 1563
		break;

	case MPI_MANUFACTPAGE_DEVID_53C1030:
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		/* 1030 Chip Fix. Disable Split transactions
		 * for PCIX. Set MOST bits to zero if Rev < C0( = 8).
		 */
		if (revision < C0_1030) {
			pci_read_config_byte(pdev, 0x6a, &pcixcmd);
			pcixcmd &= 0x8F;
			pci_write_config_byte(pdev, 0x6a, pcixcmd);
		}
1572 1573

	case MPI_MANUFACTPAGE_DEVID_1030_53C1035:
1574
		ioc->bus_type = SPI;
1575 1576 1577 1578
		break;

	case MPI_MANUFACTPAGE_DEVID_SAS1064:
	case MPI_MANUFACTPAGE_DEVID_SAS1068:
1579
		ioc->errata_flag_1064 = 1;
1580 1581 1582 1583

	case MPI_MANUFACTPAGE_DEVID_SAS1064E:
	case MPI_MANUFACTPAGE_DEVID_SAS1068E:
	case MPI_MANUFACTPAGE_DEVID_SAS1078:
1584 1585
		ioc->bus_type = SAS;
	}
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1587 1588 1589
	if (ioc->errata_flag_1064)
		pci_disable_io_access(pdev);

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	sprintf(ioc->name, "ioc%d", ioc->id);

	spin_lock_init(&ioc->FreeQlock);

	/* Disable all! */
	CHIPREG_WRITE32(&ioc->chip->IntMask, 0xFFFFFFFF);
	ioc->active = 0;
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);

	/* Set lookup ptr. */
	list_add_tail(&ioc->list, &ioc_list);

1602
	/* Check for "bound ports" (929, 929X, 1030, 1035) to reduce redundant resets.
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	 */
	mpt_detect_bound_ports(ioc, pdev);

1606 1607
	if ((r = mpt_do_ioc_recovery(ioc, MPT_HOSTEVENT_IOC_BRINGUP,
	    CAN_SLEEP)) != 0){
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		printk(KERN_WARNING MYNAM
		  ": WARNING - %s did not initialize properly! (%d)\n",
		  ioc->name, r);
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		list_del(&ioc->list);
1613 1614
		if (ioc->alt_ioc)
			ioc->alt_ioc->alt_ioc = NULL;
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		iounmap(mem);
		kfree(ioc);
		pci_set_drvdata(pdev, NULL);
		return r;
	}

	/* call per device driver probe entry point */
	for(ii=0; ii<MPT_MAX_PROTOCOL_DRIVERS; ii++) {
		if(MptDeviceDriverHandlers[ii] &&
		  MptDeviceDriverHandlers[ii]->probe) {
			MptDeviceDriverHandlers[ii]->probe(pdev,id);
		}
	}

#ifdef CONFIG_PROC_FS
	/*
	 *  Create "/proc/mpt/iocN" subdirectory entry for each MPT adapter.
	 */
	dent = proc_mkdir(ioc->name, mpt_proc_root_dir);
	if (dent) {
		ent = create_proc_entry("info", S_IFREG|S_IRUGO, dent);
		if (ent) {
			ent->read_proc = procmpt_iocinfo_read;
			ent->data = ioc;
		}
		ent = create_proc_entry("summary", S_IFREG|S_IRUGO, dent);
		if (ent) {
			ent->read_proc = procmpt_summary_read;
			ent->data = ioc;
		}
	}
#endif

	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1652
/**
1653
 *	mpt_detach - Remove a PCI intelligent MPT adapter.
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 *	@pdev: Pointer to pci_dev structure
 */

1657 1658
void
mpt_detach(struct pci_dev *pdev)
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{
	MPT_ADAPTER 	*ioc = pci_get_drvdata(pdev);
	char pname[32];
	int ii;

	sprintf(pname, MPT_PROCFS_MPTBASEDIR "/%s/summary", ioc->name);
	remove_proc_entry(pname, NULL);
	sprintf(pname, MPT_PROCFS_MPTBASEDIR "/%s/info", ioc->name);
	remove_proc_entry(pname, NULL);
	sprintf(pname, MPT_PROCFS_MPTBASEDIR "/%s", ioc->name);
	remove_proc_entry(pname, NULL);
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	/* call per device driver remove entry point */
	for(ii=0; ii<MPT_MAX_PROTOCOL_DRIVERS; ii++) {
		if(MptDeviceDriverHandlers[ii] &&
		  MptDeviceDriverHandlers[ii]->remove) {
			MptDeviceDriverHandlers[ii]->remove(pdev);
		}
	}
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	/* Disable interrupts! */
	CHIPREG_WRITE32(&ioc->chip->IntMask, 0xFFFFFFFF);

	ioc->active = 0;
	synchronize_irq(pdev->irq);

	/* Clear any lingering interrupt */
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);

	CHIPREG_READ32(&ioc->chip->IntStatus);

	mpt_adapter_dispose(ioc);

	pci_set_drvdata(pdev, NULL);
}

/**************************************************************************
 * Power Management
 */
#ifdef CONFIG_PM
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1700
/**
1701
 *	mpt_suspend - Fusion MPT base driver suspend routine.
1702 1703
 *	@pdev: Pointer to pci_dev structure
 *	@state: new state to enter
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 */
1705 1706
int
mpt_suspend(struct pci_dev *pdev, pm_message_t state)
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{
	u32 device_state;
	MPT_ADAPTER *ioc = pci_get_drvdata(pdev);

1711
	device_state=pci_choose_state(pdev, state);
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	printk(MYIOC_s_INFO_FMT
	"pci-suspend: pdev=0x%p, slot=%s, Entering operating state [D%d]\n",
		ioc->name, pdev, pci_name(pdev), device_state);

	pci_save_state(pdev);

	/* put ioc into READY_STATE */
	if(SendIocReset(ioc, MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET, CAN_SLEEP)) {
		printk(MYIOC_s_ERR_FMT
		"pci-suspend:  IOC msg unit reset failed!\n", ioc->name);
	}

	/* disable interrupts */
	CHIPREG_WRITE32(&ioc->chip->IntMask, 0xFFFFFFFF);
	ioc->active = 0;

	/* Clear any lingering interrupt */
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);

	pci_disable_device(pdev);
	pci_set_power_state(pdev, device_state);

	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1739
/**
1740
 *	mpt_resume - Fusion MPT base driver resume routine.
1741
 *	@pdev: Pointer to pci_dev structure
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 */
1743 1744
int
mpt_resume(struct pci_dev *pdev)
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{
	MPT_ADAPTER *ioc = pci_get_drvdata(pdev);
	u32 device_state = pdev->current_state;
	int recovery_state;
1749
	int err;
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	printk(MYIOC_s_INFO_FMT
	"pci-resume: pdev=0x%p, slot=%s, Previous operating state [D%d]\n",
		ioc->name, pdev, pci_name(pdev), device_state);

	pci_set_power_state(pdev, 0);
	pci_restore_state(pdev);
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	err = pci_enable_device(pdev);
	if (err)
		return err;
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	/* enable interrupts */
1762
	CHIPREG_WRITE32(&ioc->chip->IntMask, MPI_HIM_DIM);
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	ioc->active = 1;

	printk(MYIOC_s_INFO_FMT
		"pci-resume: ioc-state=0x%x,doorbell=0x%x\n",
		ioc->name,
		(mpt_GetIocState(ioc, 1) >> MPI_IOC_STATE_SHIFT),
		CHIPREG_READ32(&ioc->chip->Doorbell));

	/* bring ioc to operational state */
	if ((recovery_state = mpt_do_ioc_recovery(ioc,
	    MPT_HOSTEVENT_IOC_RECOVER, CAN_SLEEP)) != 0) {
		printk(MYIOC_s_INFO_FMT
			"pci-resume: Cannot recover, error:[%x]\n",
			ioc->name, recovery_state);
	} else {
		printk(MYIOC_s_INFO_FMT
			"pci-resume: success\n", ioc->name);
	}

	return 0;
}
#endif

1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800
static int
mpt_signal_reset(int index, MPT_ADAPTER *ioc, int reset_phase)
{
	if ((MptDriverClass[index] == MPTSPI_DRIVER &&
	     ioc->bus_type != SPI) ||
	    (MptDriverClass[index] == MPTFC_DRIVER &&
	     ioc->bus_type != FC) ||
	    (MptDriverClass[index] == MPTSAS_DRIVER &&
	     ioc->bus_type != SAS))
		/* make sure we only call the relevant reset handler
		 * for the bus */
		return 0;
	return (MptResetHandlers[index])(ioc, reset_phase);
}

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/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
1802
/**
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 *	mpt_do_ioc_recovery - Initialize or recover MPT adapter.
 *	@ioc: Pointer to MPT adapter structure
 *	@reason: Event word / reason
 *	@sleepFlag: Use schedule if CAN_SLEEP else use udelay.
 *
 *	This routine performs all the steps necessary to bring the IOC
 *	to a OPERATIONAL state.
 *
 *	This routine also pre-fetches the LAN MAC address of a Fibre Channel
 *	MPT adapter.
 *
 *	Returns:
 *		 0 for success
 *		-1 if failed to get board READY
 *		-2 if READY but IOCFacts Failed
 *		-3 if READY but PrimeIOCFifos Failed
 *		-4 if READY but IOCInit Failed
 */
static int
mpt_do_ioc_recovery(MPT_ADAPTER *ioc, u32 reason, int sleepFlag)
{
	int	 hard_reset_done = 0;
	int	 alt_ioc_ready = 0;
	int	 hard;
	int	 rc=0;
	int	 ii;
	int	 handlers;
	int	 ret = 0;
	int	 reset_alt_ioc_active = 0;
1832
	int	 irq_allocated = 0;
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	printk(KERN_INFO MYNAM ": Initiating %s %s\n",
			ioc->name, reason==MPT_HOSTEVENT_IOC_BRINGUP ? "bringup" : "recovery");

	/* Disable reply interrupts (also blocks FreeQ) */
	CHIPREG_WRITE32(&ioc->chip->IntMask, 0xFFFFFFFF);
	ioc->active = 0;

	if (ioc->alt_ioc) {
		if (ioc->alt_ioc->active)
			reset_alt_ioc_active = 1;

		/* Disable alt-IOC's reply interrupts (and FreeQ) for a bit ... */
		CHIPREG_WRITE32(&ioc->alt_ioc->chip->IntMask, 0xFFFFFFFF);
		ioc->alt_ioc->active = 0;
	}

	hard = 1;
	if (reason == MPT_HOSTEVENT_IOC_BRINGUP)
		hard = 0;

	if ((hard_reset_done = MakeIocReady(ioc, hard, sleepFlag)) < 0) {
		if (hard_reset_done == -4) {
			printk(KERN_WARNING MYNAM ": %s Owned by PEER..skipping!\n",
					ioc->name);

			if (reset_alt_ioc_active && ioc->alt_ioc) {
				/* (re)Enable alt-IOC! (reply interrupt, FreeQ) */
				dprintk((KERN_INFO MYNAM ": alt-%s reply irq re-enabled\n",
						ioc->alt_ioc->name));
1863
				CHIPREG_WRITE32(&ioc->alt_ioc->chip->IntMask, MPI_HIM_DIM);
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				ioc->alt_ioc->active = 1;
			}

		} else {
			printk(KERN_WARNING MYNAM ": %s NOT READY WARNING!\n",
					ioc->name);
		}
		return -1;
	}

	/* hard_reset_done = 0 if a soft reset was performed
	 * and 1 if a hard reset was performed.
	 */
	if (hard_reset_done && reset_alt_ioc_active && ioc->alt_ioc) {
		if ((rc = MakeIocReady(ioc->alt_ioc, 0, sleepFlag)) == 0)
			alt_ioc_ready = 1;
		else
			printk(KERN_WARNING MYNAM
					": alt-%s: Not ready WARNING!\n",
					ioc->alt_ioc->name);
	}

	for (ii=0; ii<5; ii++) {
		/* Get IOC facts! Allow 5 retries */
		if ((rc = GetIocFacts(ioc, sleepFlag, reason)) == 0)
			break;
	}
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	if (ii == 5) {
		dinitprintk((MYIOC_s_INFO_FMT "Retry IocFacts failed rc=%x\n", ioc->name, rc));
		ret = -2;
	} else if (reason == MPT_HOSTEVENT_IOC_BRINGUP) {
		MptDisplayIocCapabilities(ioc);
	}
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	if (alt_ioc_ready) {
		if ((rc = GetIocFacts(ioc->alt_ioc, sleepFlag, reason)) != 0) {
			dinitprintk((MYIOC_s_INFO_FMT "Initial Alt IocFacts failed rc=%x\n", ioc->name, rc));
			/* Retry - alt IOC was initialized once
			 */
			rc = GetIocFacts(ioc->alt_ioc, sleepFlag, reason);
		}
		if (rc) {
			dinitprintk((MYIOC_s_INFO_FMT "Retry Alt IocFacts failed rc=%x\n", ioc->name, rc));
			alt_ioc_ready = 0;
			reset_alt_ioc_active = 0;
		} else if (reason == MPT_HOSTEVENT_IOC_BRINGUP) {
			MptDisplayIocCapabilities(ioc->alt_ioc);
		}
	}

1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927
	/*
	 * Device is reset now. It must have de-asserted the interrupt line
	 * (if it was asserted) and it should be safe to register for the
	 * interrupt now.
	 */
	if ((ret == 0) && (reason == MPT_HOSTEVENT_IOC_BRINGUP)) {
		ioc->pci_irq = -1;
		if (ioc->pcidev->irq) {
			if (mpt_msi_enable && !pci_enable_msi(ioc->pcidev))
				printk(MYIOC_s_INFO_FMT "PCI-MSI enabled\n",
					ioc->name);
			rc = request_irq(ioc->pcidev->irq, mpt_interrupt,
1928
					IRQF_SHARED, ioc->name, ioc);
1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945
			if (rc < 0) {
				printk(MYIOC_s_ERR_FMT "Unable to allocate "
					"interrupt %d!\n", ioc->name,
					ioc->pcidev->irq);
				if (mpt_msi_enable)
					pci_disable_msi(ioc->pcidev);
				return -EBUSY;
			}
			irq_allocated = 1;
			ioc->pci_irq = ioc->pcidev->irq;
			pci_set_master(ioc->pcidev);		/* ?? */
			pci_set_drvdata(ioc->pcidev, ioc);
			dprintk((KERN_INFO MYNAM ": %s installed at interrupt "
				"%d\n", ioc->name, ioc->pcidev->irq));
		}
	}

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	/* Prime reply & request queues!
	 * (mucho alloc's) Must be done prior to
	 * init as upper addresses are needed for init.
	 * If fails, continue with alt-ioc processing
	 */
	if ((ret == 0) && ((rc = PrimeIocFifos(ioc)) != 0))
		ret = -3;

	/* May need to check/upload firmware & data here!
	 * If fails, continue with alt-ioc processing
	 */
	if ((ret == 0) && ((rc = SendIocInit(ioc, sleepFlag)) != 0))
		ret = -4;
// NEW!
	if (alt_ioc_ready && ((rc = PrimeIocFifos(ioc->alt_ioc)) != 0)) {
		printk(KERN_WARNING MYNAM ": alt-%s: (%d) FIFO mgmt alloc WARNING!\n",
				ioc->alt_ioc->name, rc);
		alt_ioc_ready = 0;
		reset_alt_ioc_active = 0;
	}

	if (alt_ioc_ready) {
		if ((rc = SendIocInit(ioc->alt_ioc, sleepFlag)) != 0) {
			alt_ioc_ready = 0;
			reset_alt_ioc_active = 0;
			printk(KERN_WARNING MYNAM
				": alt-%s: (%d) init failure WARNING!\n",
					ioc->alt_ioc->name, rc);
		}
	}

	if (reason == MPT_HOSTEVENT_IOC_BRINGUP){
		if (ioc->upload_fw) {
			ddlprintk((MYIOC_s_INFO_FMT
				"firmware upload required!\n", ioc->name));

			/* Controller is not operational, cannot do upload
			 */
			if (ret == 0) {
				rc = mpt_do_upload(ioc, sleepFlag);
1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996
				if (rc == 0) {
					if (ioc->alt_ioc && ioc->alt_ioc->cached_fw) {
						/*
						 * Maintain only one pointer to FW memory
						 * so there will not be two attempt to
						 * downloadboot onboard dual function
						 * chips (mpt_adapter_disable,
						 * mpt_diag_reset)
						 */
						ddlprintk((MYIOC_s_INFO_FMT ": mpt_upload:  alt_%s has cached_fw=%p \n",
							ioc->name, ioc->alt_ioc->name, ioc->alt_ioc->cached_fw));
1997
						ioc->alt_ioc->cached_fw = NULL;
1998 1999
					}
				} else {
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					printk(KERN_WARNING MYNAM ": firmware upload failure!\n");
2001 2002
					ret = -5;
				}
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			}
		}
	}

	if (ret == 0) {
		/* Enable! (reply interrupt) */
2009
		CHIPREG_WRITE32(&ioc->chip->IntMask, MPI_HIM_DIM);
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		ioc->active = 1;
	}

	if (reset_alt_ioc_active && ioc->alt_ioc) {
		/* (re)Enable alt-IOC! (reply interrupt) */
2015
		dinitprintk((KERN_INFO MYNAM ": alt-%s reply irq re-enabled\n",
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				ioc->alt_ioc->name));
2017
		CHIPREG_WRITE32(&ioc->alt_ioc->chip->IntMask, MPI_HIM_DIM);
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		ioc->alt_ioc->active = 1;
	}

2021
	/*  Enable MPT base driver management of EventNotification
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	 *  and EventAck handling.
	 */
	if ((ret == 0) && (!ioc->facts.EventState))
		(void) SendEventNotification(ioc, 1);	/* 1=Enable EventNotification */

	if (ioc->alt_ioc && alt_ioc_ready && !ioc->alt_ioc->facts.EventState)
		(void) SendEventNotification(ioc->alt_ioc, 1);	/* 1=Enable EventNotification */

2030
	/*	Add additional "reason" check before call to GetLanConfigPages
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	 *	(combined with GetIoUnitPage2 call).  This prevents a somewhat
	 *	recursive scenario; GetLanConfigPages times out, timer expired
	 *	routine calls HardResetHandler, which calls into here again,
	 *	and we try GetLanConfigPages again...
	 */
	if ((ret == 0) && (reason == MPT_HOSTEVENT_IOC_BRINGUP)) {
2037 2038 2039 2040 2041 2042 2043

		/*
		 * Initalize link list for inactive raid volumes.
		 */
		init_MUTEX(&ioc->raid_data.inactive_list_mutex);
		INIT_LIST_HEAD(&ioc->raid_data.inactive_list);

2044 2045 2046 2047 2048 2049 2050 2051
		if (ioc->bus_type == SAS) {

			/* clear persistency table */
			if(ioc->facts.IOCExceptions &
			    MPI_IOCFACTS_EXCEPT_PERSISTENT_TABLE_FULL) {
				ret = mptbase_sas_persist_operation(ioc,
				    MPI_SAS_OP_CLEAR_NOT_PRESENT);
				if(ret != 0)
2052
					goto out;
2053 2054 2055 2056 2057 2058 2059
			}

			/* Find IM volumes
			 */
			mpt_findImVolumes(ioc);

		} else if (ioc->bus_type == FC) {
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			if ((ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_LAN) &&
			    (ioc->lan_cnfg_page0.Header.PageLength == 0)) {
				/*
				 *  Pre-fetch the ports LAN MAC address!
				 *  (LANPage1_t stuff)
				 */
				(void) GetLanConfigPages(ioc);
#ifdef MPT_DEBUG
				{
					u8 *a = (u8*)&ioc->lan_cnfg_page1.HardwareAddressLow;
					dprintk((MYIOC_s_INFO_FMT "LanAddr = %02X:%02X:%02X:%02X:%02X:%02X\n",
							ioc->name, a[5], a[4], a[3], a[2], a[1], a[0] ));
				}
#endif
			}
		} else {
			/* Get NVRAM and adapter maximums from SPP 0 and 2
			 */
			mpt_GetScsiPortSettings(ioc, 0);

			/* Get version and length of SDP 1
			 */
			mpt_readScsiDevicePageHeaders(ioc, 0);

			/* Find IM volumes
			 */
2086
			if (ioc->facts.MsgVersion >= MPI_VERSION_01_02)
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				mpt_findImVolumes(ioc);

			/* Check, and possibly reset, the coalescing value
			 */
			mpt_read_ioc_pg_1(ioc);

			mpt_read_ioc_pg_4(ioc);
		}

		GetIoUnitPage2(ioc);
2097
		mpt_get_manufacturing_pg_0(ioc);
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	}

	/*
	 * Call each currently registered protocol IOC reset handler
	 * with post-reset indication.
	 * NOTE: If we're doing _IOC_BRINGUP, there can be no
	 * MptResetHandlers[] registered yet.
	 */
	if (hard_reset_done) {
		rc = handlers = 0;
		for (ii=MPT_MAX_PROTOCOL_DRIVERS-1; ii; ii--) {
			if ((ret == 0) && MptResetHandlers[ii]) {
				dprintk((MYIOC_s_INFO_FMT "Calling IOC post_reset handler #%d\n",
						ioc->name, ii));
2112
				rc += mpt_signal_reset(ii, ioc, MPT_IOC_POST_RESET);
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				handlers++;
			}

			if (alt_ioc_ready && MptResetHandlers[ii]) {
2117
				drsprintk((MYIOC_s_INFO_FMT "Calling alt-%s post_reset handler #%d\n",
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						ioc->name, ioc->alt_ioc->name, ii));
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				rc += mpt_signal_reset(ii, ioc->alt_ioc, MPT_IOC_POST_RESET);
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				handlers++;
			}
		}
		/* FIXME?  Examine results here? */
	}

2126
 out:
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	if ((ret != 0) && irq_allocated) {
		free_irq(ioc->pci_irq, ioc);
		if (mpt_msi_enable)
			pci_disable_msi(ioc->pcidev);
	}
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	return ret;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
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/**
 *	mpt_detect_bound_ports - Search for matching PCI bus/dev_function
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 *	@ioc: Pointer to MPT adapter structure
 *	@pdev: Pointer to (struct pci_dev) structure
 *
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 *	Search for PCI bus/dev_function which matches
 *	PCI bus/dev_function (+/-1) for newly discovered 929,
 *	929X, 1030 or 1035.
 *
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 *	If match on PCI dev_function +/-1 is found, bind the two MPT adapters
 *	using alt_ioc pointer fields in their %MPT_ADAPTER structures.
 */
static void
mpt_detect_bound_ports(MPT_ADAPTER *ioc, struct pci_dev *pdev)
{
2151 2152 2153
	struct pci_dev *peer=NULL;
	unsigned int slot = PCI_SLOT(pdev->devfn);
	unsigned int func = PCI_FUNC(pdev->devfn);
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	MPT_ADAPTER *ioc_srch;

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	dprintk((MYIOC_s_INFO_FMT "PCI device %s devfn=%x/%x,"
	    " searching for devfn match on %x or %x\n",
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		ioc->name, pci_name(pdev), pdev->bus->number,
		pdev->devfn, func-1, func+1));
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	peer = pci_get_slot(pdev->bus, PCI_DEVFN(slot,func-1));
	if (!peer) {
		peer = pci_get_slot(pdev->bus, PCI_DEVFN(slot,func+1));
		if (!peer)
			return;
	}
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	list_for_each_entry(ioc_srch, &ioc_list, list) {
		struct pci_dev *_pcidev = ioc_srch->pcidev;
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		if (_pcidev == peer) {
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			/* Paranoia checks */
			if (ioc->alt_ioc != NULL) {
				printk(KERN_WARNING MYNAM ": Oops, already bound (%s <==> %s)!\n",
2174
					ioc->name, ioc->alt_ioc->name);
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				break;
			} else if (ioc_srch->alt_ioc != NULL) {
				printk(KERN_WARNING MYNAM ": Oops, already bound (%s <==> %s)!\n",
2178
					ioc_srch->name, ioc_srch->alt_ioc->name);
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				break;
			}
			dprintk((KERN_INFO MYNAM ": FOUND! binding %s <==> %s\n",
2182
				ioc->name, ioc_srch->name));
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			ioc_srch->alt_ioc = ioc;
			ioc->alt_ioc = ioc_srch;
		}
	}
2187
	pci_dev_put(peer);
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}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2191
/**
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 *	mpt_adapter_disable - Disable misbehaving MPT adapter.
2193
 *	@ioc: Pointer to MPT adapter structure
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 */
static void
mpt_adapter_disable(MPT_ADAPTER *ioc)
{
	int sz;
	int ret;

	if (ioc->cached_fw != NULL) {
		ddlprintk((KERN_INFO MYNAM ": mpt_adapter_disable: Pushing FW onto adapter\n"));
2203
		if ((ret = mpt_downloadboot(ioc, (MpiFwHeader_t *)ioc->cached_fw, NO_SLEEP)) < 0) {
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			printk(KERN_WARNING MYNAM
				": firmware downloadboot failure (%d)!\n", ret);
		}
	}

	/* Disable adapter interrupts! */
	CHIPREG_WRITE32(&ioc->chip->IntMask, 0xFFFFFFFF);
	ioc->active = 0;
	/* Clear any lingering interrupt */
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);

	if (ioc->alloc != NULL) {
		sz = ioc->alloc_sz;
		dexitprintk((KERN_INFO MYNAM ": %s.free  @ %p, sz=%d bytes\n",
		 	ioc->name, ioc->alloc, ioc->alloc_sz));
		pci_free_consistent(ioc->pcidev, sz,
				ioc->alloc, ioc->alloc_dma);
		ioc->reply_frames = NULL;
		ioc->req_frames = NULL;
		ioc->alloc = NULL;
		ioc->alloc_total -= sz;
	}

	if (ioc->sense_buf_pool != NULL) {
		sz = (ioc->req_depth * MPT_SENSE_BUFFER_ALLOC);
		pci_free_consistent(ioc->pcidev, sz,
				ioc->sense_buf_pool, ioc->sense_buf_pool_dma);
		ioc->sense_buf_pool = NULL;
		ioc->alloc_total -= sz;
	}

	if (ioc->events != NULL){
		sz = MPTCTL_EVENT_LOG_SIZE * sizeof(MPT_IOCTL_EVENTS);
		kfree(ioc->events);
		ioc->events = NULL;
		ioc->alloc_total -= sz;
	}

	if (ioc->cached_fw != NULL) {
		sz = ioc->facts.FWImageSize;
		pci_free_consistent(ioc->pcidev, sz,
			ioc->cached_fw, ioc->cached_fw_dma);
		ioc->cached_fw = NULL;
		ioc->alloc_total -= sz;
	}

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	kfree(ioc->spi_data.nvram);
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	mpt_inactive_raid_list_free(ioc);
	kfree(ioc->raid_data.pIocPg2);
2253
	kfree(ioc->raid_data.pIocPg3);
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	ioc->spi_data.nvram = NULL;
2255
	ioc->raid_data.pIocPg3 = NULL;
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	if (ioc->spi_data.pIocPg4 != NULL) {
		sz = ioc->spi_data.IocPg4Sz;
		pci_free_consistent(ioc->pcidev, sz, 
			ioc->spi_data.pIocPg4,
			ioc->spi_data.IocPg4_dma);
		ioc->spi_data.pIocPg4 = NULL;
		ioc->alloc_total -= sz;
	}

	if (ioc->ReqToChain != NULL) {
		kfree(ioc->ReqToChain);
		kfree(ioc->RequestNB);
		ioc->ReqToChain = NULL;
	}

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	kfree(ioc->ChainToChain);
	ioc->ChainToChain = NULL;
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	if (ioc->HostPageBuffer != NULL) {
		if((ret = mpt_host_page_access_control(ioc,
		    MPI_DB_HPBAC_FREE_BUFFER, NO_SLEEP)) != 0) {
			printk(KERN_ERR MYNAM
			   ": %s: host page buffers free failed (%d)!\n",
			    __FUNCTION__, ret);
		}
		dexitprintk((KERN_INFO MYNAM ": %s HostPageBuffer free  @ %p, sz=%d bytes\n",
		 	ioc->name, ioc->HostPageBuffer, ioc->HostPageBuffer_sz));
		pci_free_consistent(ioc->pcidev, ioc->HostPageBuffer_sz,
				ioc->HostPageBuffer,
				ioc->HostPageBuffer_dma);
		ioc->HostPageBuffer = NULL;
		ioc->HostPageBuffer_sz = 0;
		ioc->alloc_total -= ioc->HostPageBuffer_sz;
	}
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}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
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/**
 *	mpt_adapter_dispose - Free all resources associated with an MPT adapter
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 *	@ioc: Pointer to MPT adapter structure
 *
 *	This routine unregisters h/w resources and frees all alloc'd memory
 *	associated with a MPT adapter structure.
 */
static void
mpt_adapter_dispose(MPT_ADAPTER *ioc)
{
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	int sz_first, sz_last;
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	if (ioc == NULL)
		return;
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	sz_first = ioc->alloc_total;
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	mpt_adapter_disable(ioc);
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	if (ioc->pci_irq != -1) {
		free_irq(ioc->pci_irq, ioc);
2315 2316
		if (mpt_msi_enable)
			pci_disable_msi(ioc->pcidev);
2317 2318 2319 2320 2321 2322 2323
		ioc->pci_irq = -1;
	}

	if (ioc->memmap != NULL) {
		iounmap(ioc->memmap);
		ioc->memmap = NULL;
	}
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#if defined(CONFIG_MTRR) && 0
2326 2327 2328 2329
	if (ioc->mtrr_reg > 0) {
		mtrr_del(ioc->mtrr_reg, 0, 0);
		dprintk((KERN_INFO MYNAM ": %s: MTRR region de-registered\n", ioc->name));
	}
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#endif

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	/*  Zap the adapter lookup ptr!  */
	list_del(&ioc->list);
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	sz_last = ioc->alloc_total;
	dprintk((KERN_INFO MYNAM ": %s: free'd %d of %d bytes\n",
			ioc->name, sz_first-sz_last+(int)sizeof(*ioc), sz_first));
2338 2339 2340 2341

	if (ioc->alt_ioc)
		ioc->alt_ioc->alt_ioc = NULL;

2342
	kfree(ioc);
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}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
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/**
 *	MptDisplayIocCapabilities - Disply IOC's capabilities.
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 *	@ioc: Pointer to MPT adapter structure
 */
static void
MptDisplayIocCapabilities(MPT_ADAPTER *ioc)
{
	int i = 0;

	printk(KERN_INFO "%s: ", ioc->name);
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	if (ioc->prod_name)
		printk("%s: ", ioc->prod_name);
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	printk("Capabilities={");

	if (ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_INITIATOR) {
		printk("Initiator");
		i++;
	}

	if (ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_TARGET) {
		printk("%sTarget", i ? "," : "");
		i++;
	}

	if (ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_LAN) {
		printk("%sLAN", i ? "," : "");
		i++;
	}

#if 0
	/*
	 *  This would probably evoke more questions than it's worth
	 */
	if (ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_TARGET) {
		printk("%sLogBusAddr", i ? "," : "");
		i++;
	}
#endif

	printk("}\n");
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2389
/**
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 *	MakeIocReady - Get IOC to a READY state, using KickStart if needed.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@force: Force hard KickStart of IOC
 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	Returns:
 *		 1 - DIAG reset and READY
 *		 0 - READY initially OR soft reset and READY
 *		-1 - Any failure on KickStart
 *		-2 - Msg Unit Reset Failed
 *		-3 - IO Unit Reset Failed
 *		-4 - IOC owned by a PEER
 */
static int
MakeIocReady(MPT_ADAPTER *ioc, int force, int sleepFlag)
{
	u32	 ioc_state;
	int	 statefault = 0;
	int	 cntdn;
	int	 hard_reset_done = 0;
	int	 r;
	int	 ii;
	int	 whoinit;

	/* Get current [raw] IOC state  */
	ioc_state = mpt_GetIocState(ioc, 0);
	dhsprintk((KERN_INFO MYNAM "::MakeIocReady, %s [raw] state=%08x\n", ioc->name, ioc_state));

	/*
	 *	Check to see if IOC got left/stuck in doorbell handshake
	 *	grip of death.  If so, hard reset the IOC.
	 */
	if (ioc_state & MPI_DOORBELL_ACTIVE) {
		statefault = 1;
		printk(MYIOC_s_WARN_FMT "Unexpected doorbell active!\n",
				ioc->name);
	}

	/* Is it already READY? */
2429
	if (!statefault && (ioc_state & MPI_IOC_STATE_MASK) == MPI_IOC_STATE_READY)
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		return 0;

	/*
	 *	Check to see if IOC is in FAULT state.
	 */
	if ((ioc_state & MPI_IOC_STATE_MASK) == MPI_IOC_STATE_FAULT) {
		statefault = 2;
		printk(MYIOC_s_WARN_FMT "IOC is in FAULT state!!!\n",
				ioc->name);
		printk(KERN_WARNING "           FAULT code = %04xh\n",
				ioc_state & MPI_DOORBELL_DATA_MASK);
	}

	/*
	 *	Hmmm...  Did it get left operational?
	 */
	if ((ioc_state & MPI_IOC_STATE_MASK) == MPI_IOC_STATE_OPERATIONAL) {
2447
		dinitprintk((MYIOC_s_INFO_FMT "IOC operational unexpected\n",
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				ioc->name));

		/* Check WhoInit.
		 * If PCI Peer, exit.
		 * Else, if no fault conditions are present, issue a MessageUnitReset
		 * Else, fall through to KickStart case
		 */
		whoinit = (ioc_state & MPI_DOORBELL_WHO_INIT_MASK) >> MPI_DOORBELL_WHO_INIT_SHIFT;
2456 2457
		dinitprintk((KERN_INFO MYNAM
			": whoinit 0x%x statefault %d force %d\n",
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			whoinit, statefault, force));
		if (whoinit == MPI_WHOINIT_PCI_PEER)
			return -4;
		else {
			if ((statefault == 0 ) && (force == 0)) {
				if ((r = SendIocReset(ioc, MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET, sleepFlag)) == 0)
					return 0;
			}
			statefault = 3;
		}
	}

	hard_reset_done = KickStart(ioc, statefault||force, sleepFlag);
	if (hard_reset_done < 0)
		return -1;

	/*
	 *  Loop here waiting for IOC to come READY.
	 */
	ii = 0;
2478
	cntdn = ((sleepFlag == CAN_SLEEP) ? HZ : 1000) * 5;	/* 5 seconds */
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	while ((ioc_state = mpt_GetIocState(ioc, 1)) != MPI_IOC_STATE_READY) {
		if (ioc_state == MPI_IOC_STATE_OPERATIONAL) {
			/*
			 *  BIOS or previous driver load left IOC in OP state.
			 *  Reset messaging FIFOs.
			 */
			if ((r = SendIocReset(ioc, MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET, sleepFlag)) != 0) {
				printk(MYIOC_s_ERR_FMT "IOC msg unit reset failed!\n", ioc->name);
				return -2;
			}
		} else if (ioc_state == MPI_IOC_STATE_RESET) {
			/*
			 *  Something is wrong.  Try to get IOC back
			 *  to a known state.
			 */
			if ((r = SendIocReset(ioc, MPI_FUNCTION_IO_UNIT_RESET, sleepFlag)) != 0) {
				printk(MYIOC_s_ERR_FMT "IO unit reset failed!\n", ioc->name);
				return -3;
			}
		}

		ii++; cntdn--;
		if (!cntdn) {
			printk(MYIOC_s_ERR_FMT "Wait IOC_READY state timeout(%d)!\n",
					ioc->name, (int)((ii+5)/HZ));
			return -ETIME;
		}

		if (sleepFlag == CAN_SLEEP) {
2509
			msleep(1);
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		} else {
			mdelay (1);	/* 1 msec delay */
		}

	}

	if (statefault < 3) {
		printk(MYIOC_s_INFO_FMT "Recovered from %s\n",
				ioc->name,
				statefault==1 ? "stuck handshake" : "IOC FAULT");
	}

	return hard_reset_done;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2526
/**
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 *	mpt_GetIocState - Get the current state of a MPT adapter.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@cooked: Request raw or cooked IOC state
 *
 *	Returns all IOC Doorbell register bits if cooked==0, else just the
 *	Doorbell bits in MPI_IOC_STATE_MASK.
 */
u32
mpt_GetIocState(MPT_ADAPTER *ioc, int cooked)
{
	u32 s, sc;

	/*  Get!  */
	s = CHIPREG_READ32(&ioc->chip->Doorbell);
//	dprintk((MYIOC_s_INFO_FMT "raw state = %08x\n", ioc->name, s));
	sc = s & MPI_IOC_STATE_MASK;

	/*  Save!  */
	ioc->last_state = sc;

	return cooked ? sc : s;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2551
/**
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 *	GetIocFacts - Send IOCFacts request to MPT adapter.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@sleepFlag: Specifies whether the process can sleep
 *	@reason: If recovery, only update facts.
 *
 *	Returns 0 for success, non-zero for failure.
 */
static int
GetIocFacts(MPT_ADAPTER *ioc, int sleepFlag, int reason)
{
	IOCFacts_t		 get_facts;
	IOCFactsReply_t		*facts;
	int			 r;
	int			 req_sz;
	int			 reply_sz;
	int			 sz;
	u32			 status, vv;
	u8			 shiftFactor=1;

	/* IOC *must* NOT be in RESET state! */
	if (ioc->last_state == MPI_IOC_STATE_RESET) {
		printk(KERN_ERR MYNAM ": ERROR - Can't get IOCFacts, %s NOT READY! (%08x)\n",
				ioc->name,
				ioc->last_state );
		return -44;
	}

	facts = &ioc->facts;

	/* Destination (reply area)... */
	reply_sz = sizeof(*facts);
	memset(facts, 0, reply_sz);

	/* Request area (get_facts on the stack right now!) */
	req_sz = sizeof(get_facts);
	memset(&get_facts, 0, req_sz);

	get_facts.Function = MPI_FUNCTION_IOC_FACTS;
	/* Assert: All other get_facts fields are zero! */

2592 2593
	dinitprintk((MYIOC_s_INFO_FMT
	    "Sending get IocFacts request req_sz=%d reply_sz=%d\n",
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	    ioc->name, req_sz, reply_sz));

	/* No non-zero fields in the get_facts request are greater than
	 * 1 byte in size, so we can just fire it off as is.
	 */
	r = mpt_handshake_req_reply_wait(ioc, req_sz, (u32*)&get_facts,
			reply_sz, (u16*)facts, 5 /*seconds*/, sleepFlag);
	if (r != 0)
		return r;

	/*
	 * Now byte swap (GRRR) the necessary fields before any further
	 * inspection of reply contents.
	 *
	 * But need to do some sanity checks on MsgLength (byte) field
	 * to make sure we don't zero IOC's req_sz!
	 */
	/* Did we get a valid reply? */
	if (facts->MsgLength > offsetof(IOCFactsReply_t, RequestFrameSize)/sizeof(u32)) {
		if (reason == MPT_HOSTEVENT_IOC_BRINGUP) {
			/*
			 * If not been here, done that, save off first WhoInit value
			 */
			if (ioc->FirstWhoInit == WHOINIT_UNKNOWN)
				ioc->FirstWhoInit = facts->WhoInit;
		}

		facts->MsgVersion = le16_to_cpu(facts->MsgVersion);
		facts->MsgContext = le32_to_cpu(facts->MsgContext);
		facts->IOCExceptions = le16_to_cpu(facts->IOCExceptions);
		facts->IOCStatus = le16_to_cpu(facts->IOCStatus);
		facts->IOCLogInfo = le32_to_cpu(facts->IOCLogInfo);
2626
		status = le16_to_cpu(facts->IOCStatus) & MPI_IOCSTATUS_MASK;
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		/* CHECKME! IOCStatus, IOCLogInfo */

		facts->ReplyQueueDepth = le16_to_cpu(facts->ReplyQueueDepth);
		facts->RequestFrameSize = le16_to_cpu(facts->RequestFrameSize);

		/*
		 * FC f/w version changed between 1.1 and 1.2
		 *	Old: u16{Major(4),Minor(4),SubMinor(8)}
		 *	New: u32{Major(8),Minor(8),Unit(8),Dev(8)}
		 */
		if (facts->MsgVersion < 0x0102) {
			/*
			 *	Handle old FC f/w style, convert to new...
			 */
			u16	 oldv = le16_to_cpu(facts->Reserved_0101_FWVersion);
			facts->FWVersion.Word =
					((oldv<<12) & 0xFF000000) |
					((oldv<<8)  & 0x000FFF00);
		} else
			facts->FWVersion.Word = le32_to_cpu(facts->FWVersion.Word);

		facts->ProductID = le16_to_cpu(facts->ProductID);
2649 2650 2651
		if ((ioc->facts.ProductID & MPI_FW_HEADER_PID_PROD_MASK)
		    > MPI_FW_HEADER_PID_PROD_TARGET_SCSI)
			ioc->ir_firmware = 1;
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		facts->CurrentHostMfaHighAddr =
				le32_to_cpu(facts->CurrentHostMfaHighAddr);
		facts->GlobalCredits = le16_to_cpu(facts->GlobalCredits);
		facts->CurrentSenseBufferHighAddr =
				le32_to_cpu(facts->CurrentSenseBufferHighAddr);
		facts->CurReplyFrameSize =
				le16_to_cpu(facts->CurReplyFrameSize);
2659
		facts->IOCCapabilities = le32_to_cpu(facts->IOCCapabilities);
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		/*
		 * Handle NEW (!) IOCFactsReply fields in MPI-1.01.xx
		 * Older MPI-1.00.xx struct had 13 dwords, and enlarged
		 * to 14 in MPI-1.01.0x.
		 */
		if (facts->MsgLength >= (offsetof(IOCFactsReply_t,FWImageSize) + 7)/4 &&
		    facts->MsgVersion > 0x0100) {
			facts->FWImageSize = le32_to_cpu(facts->FWImageSize);
		}

		sz = facts->FWImageSize;
		if ( sz & 0x01 )
			sz += 1;
		if ( sz & 0x02 )
			sz += 2;
		facts->FWImageSize = sz;
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		if (!facts->RequestFrameSize) {
			/*  Something is wrong!  */
			printk(MYIOC_s_ERR_FMT "IOC reported invalid 0 request size!\n",
					ioc->name);
			return -55;
		}

2685
		r = sz = facts->BlockSize;
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		vv = ((63 / (sz * 4)) + 1) & 0x03;
		ioc->NB_for_64_byte_frame = vv;
		while ( sz )
		{
			shiftFactor++;
			sz = sz >> 1;
		}
		ioc->NBShiftFactor  = shiftFactor;
		dinitprintk((MYIOC_s_INFO_FMT "NB_for_64_byte_frame=%x NBShiftFactor=%x BlockSize=%x\n",
					ioc->name, vv, shiftFactor, r));
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		if (reason == MPT_HOSTEVENT_IOC_BRINGUP) {
			/*
			 * Set values for this IOC's request & reply frame sizes,
			 * and request & reply queue depths...
			 */
			ioc->req_sz = min(MPT_DEFAULT_FRAME_SIZE, facts->RequestFrameSize * 4);
			ioc->req_depth = min_t(int, MPT_MAX_REQ_DEPTH, facts->GlobalCredits);
			ioc->reply_sz = MPT_REPLY_FRAME_SIZE;
			ioc->reply_depth = min_t(int, MPT_DEFAULT_REPLY_DEPTH, facts->ReplyQueueDepth);

			dinitprintk((MYIOC_s_INFO_FMT "reply_sz=%3d, reply_depth=%4d\n",
				ioc->name, ioc->reply_sz, ioc->reply_depth));
			dinitprintk((MYIOC_s_INFO_FMT "req_sz  =%3d, req_depth  =%4d\n",
				ioc->name, ioc->req_sz, ioc->req_depth));

			/* Get port facts! */
			if ( (r = GetPortFacts(ioc, 0, sleepFlag)) != 0 )
				return r;
		}
	} else {
2717
		printk(MYIOC_s_ERR_FMT
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		     "Invalid IOC facts reply, msgLength=%d offsetof=%zd!\n",
		     ioc->name, facts->MsgLength, (offsetof(IOCFactsReply_t,
		     RequestFrameSize)/sizeof(u32)));
		return -66;
	}

	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2728
/**
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 *	GetPortFacts - Send PortFacts request to MPT adapter.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@portnum: Port number
 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	Returns 0 for success, non-zero for failure.
 */
static int
GetPortFacts(MPT_ADAPTER *ioc, int portnum, int sleepFlag)
{
	PortFacts_t		 get_pfacts;
	PortFactsReply_t	*pfacts;
	int			 ii;
	int			 req_sz;
	int			 reply_sz;
2744
	int			 max_id;
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	/* IOC *must* NOT be in RESET state! */
	if (ioc->last_state == MPI_IOC_STATE_RESET) {
		printk(KERN_ERR MYNAM ": ERROR - Can't get PortFacts, %s NOT READY! (%08x)\n",
				ioc->name,
				ioc->last_state );
		return -4;
	}

	pfacts = &ioc->pfacts[portnum];

	/* Destination (reply area)...  */
	reply_sz = sizeof(*pfacts);
	memset(pfacts, 0, reply_sz);

	/* Request area (get_pfacts on the stack right now!) */
	req_sz = sizeof(get_pfacts);
	memset(&get_pfacts, 0, req_sz);

	get_pfacts.Function = MPI_FUNCTION_PORT_FACTS;
	get_pfacts.PortNumber = portnum;
	/* Assert: All other get_pfacts fields are zero! */

	dinitprintk((MYIOC_s_INFO_FMT "Sending get PortFacts(%d) request\n",
			ioc->name, portnum));

	/* No non-zero fields in the get_pfacts request are greater than
	 * 1 byte in size, so we can just fire it off as is.
	 */
	ii = mpt_handshake_req_reply_wait(ioc, req_sz, (u32*)&get_pfacts,
				reply_sz, (u16*)pfacts, 5 /*seconds*/, sleepFlag);
	if (ii != 0)
		return ii;

	/* Did we get a valid reply? */

	/* Now byte swap the necessary fields in the response. */
	pfacts->MsgContext = le32_to_cpu(pfacts->MsgContext);
	pfacts->IOCStatus = le16_to_cpu(pfacts->IOCStatus);
	pfacts->IOCLogInfo = le32_to_cpu(pfacts->IOCLogInfo);
	pfacts->MaxDevices = le16_to_cpu(pfacts->MaxDevices);
	pfacts->PortSCSIID = le16_to_cpu(pfacts->PortSCSIID);
	pfacts->ProtocolFlags = le16_to_cpu(pfacts->ProtocolFlags);
	pfacts->MaxPostedCmdBuffers = le16_to_cpu(pfacts->MaxPostedCmdBuffers);
	pfacts->MaxPersistentIDs = le16_to_cpu(pfacts->MaxPersistentIDs);
	pfacts->MaxLanBuckets = le16_to_cpu(pfacts->MaxLanBuckets);

2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806
	max_id = (ioc->bus_type == SAS) ? pfacts->PortSCSIID :
	    pfacts->MaxDevices;
	ioc->devices_per_bus = (max_id > 255) ? 256 : max_id;
	ioc->number_of_buses = (ioc->devices_per_bus < 256) ? 1 : max_id/256;

	/*
	 * Place all the devices on channels
	 *
	 * (for debuging)
	 */
	if (mpt_channel_mapping) {
		ioc->devices_per_bus = 1;
		ioc->number_of_buses = (max_id > 255) ? 255 : max_id;
	}

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	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2811
/**
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 *	SendIocInit - Send IOCInit request to MPT adapter.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	Send IOCInit followed by PortEnable to bring IOC to OPERATIONAL state.
 *
 *	Returns 0 for success, non-zero for failure.
 */
static int
SendIocInit(MPT_ADAPTER *ioc, int sleepFlag)
{
	IOCInit_t		 ioc_init;
	MPIDefaultReply_t	 init_reply;
	u32			 state;
	int			 r;
	int			 count;
	int			 cntdn;

	memset(&ioc_init, 0, sizeof(ioc_init));
	memset(&init_reply, 0, sizeof(init_reply));

	ioc_init.WhoInit = MPI_WHOINIT_HOST_DRIVER;
	ioc_init.Function = MPI_FUNCTION_IOC_INIT;

	/* If we are in a recovery mode and we uploaded the FW image,
	 * then this pointer is not NULL. Skip the upload a second time.
	 * Set this flag if cached_fw set for either IOC.
	 */
	if (ioc->facts.Flags & MPI_IOCFACTS_FLAGS_FW_DOWNLOAD_BOOT)
		ioc->upload_fw = 1;
	else
		ioc->upload_fw = 0;
	ddlprintk((MYIOC_s_INFO_FMT "upload_fw %d facts.Flags=%x\n",
		   ioc->name, ioc->upload_fw, ioc->facts.Flags));

2847 2848
	ioc_init.MaxDevices = (U8)ioc->devices_per_bus;
	ioc_init.MaxBuses = (U8)ioc->number_of_buses;
2849 2850 2851 2852 2853 2854 2855 2856 2857 2858 2859 2860
	dinitprintk((MYIOC_s_INFO_FMT "facts.MsgVersion=%x\n",
		   ioc->name, ioc->facts.MsgVersion));
	if (ioc->facts.MsgVersion >= MPI_VERSION_01_05) {
		// set MsgVersion and HeaderVersion host driver was built with
		ioc_init.MsgVersion = cpu_to_le16(MPI_VERSION);
	        ioc_init.HeaderVersion = cpu_to_le16(MPI_HEADER_VERSION);

		if (ioc->facts.Flags & MPI_IOCFACTS_FLAGS_HOST_PAGE_BUFFER_PERSISTENT) {
			ioc_init.HostPageBufferSGE = ioc->facts.HostPageBufferSGE;
		} else if(mpt_host_page_alloc(ioc, &ioc_init))
			return -99;
	}
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	ioc_init.ReplyFrameSize = cpu_to_le16(ioc->reply_sz);	/* in BYTES */

	if (sizeof(dma_addr_t) == sizeof(u64)) {
		/* Save the upper 32-bits of the request
		 * (reply) and sense buffers.
		 */
		ioc_init.HostMfaHighAddr = cpu_to_le32((u32)((u64)ioc->alloc_dma >> 32));
		ioc_init.SenseBufferHighAddr = cpu_to_le32((u32)((u64)ioc->sense_buf_pool_dma >> 32));
	} else {
		/* Force 32-bit addressing */
		ioc_init.HostMfaHighAddr = cpu_to_le32(0);
		ioc_init.SenseBufferHighAddr = cpu_to_le32(0);
	}
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	ioc->facts.CurrentHostMfaHighAddr = ioc_init.HostMfaHighAddr;
	ioc->facts.CurrentSenseBufferHighAddr = ioc_init.SenseBufferHighAddr;
2877 2878
	ioc->facts.MaxDevices = ioc_init.MaxDevices;
	ioc->facts.MaxBuses = ioc_init.MaxBuses;
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	dhsprintk((MYIOC_s_INFO_FMT "Sending IOCInit (req @ %p)\n",
			ioc->name, &ioc_init));

	r = mpt_handshake_req_reply_wait(ioc, sizeof(IOCInit_t), (u32*)&ioc_init,
				sizeof(MPIDefaultReply_t), (u16*)&init_reply, 10 /*seconds*/, sleepFlag);
2885 2886
	if (r != 0) {
		printk(MYIOC_s_ERR_FMT "Sending IOCInit failed(%d)!\n",ioc->name, r);
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		return r;
2888
	}
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	/* No need to byte swap the multibyte fields in the reply
2891
	 * since we don't even look at its contents.
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	 */

	dhsprintk((MYIOC_s_INFO_FMT "Sending PortEnable (req @ %p)\n",
			ioc->name, &ioc_init));
2896 2897 2898

	if ((r = SendPortEnable(ioc, 0, sleepFlag)) != 0) {
		printk(MYIOC_s_ERR_FMT "Sending PortEnable failed(%d)!\n",ioc->name, r);
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		return r;
2900
	}
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	/* YIKES!  SUPER IMPORTANT!!!
	 *  Poll IocState until _OPERATIONAL while IOC is doing
	 *  LoopInit and TargetDiscovery!
	 */
	count = 0;
	cntdn = ((sleepFlag == CAN_SLEEP) ? HZ : 1000) * 60;	/* 60 seconds */
	state = mpt_GetIocState(ioc, 1);
	while (state != MPI_IOC_STATE_OPERATIONAL && --cntdn) {
		if (sleepFlag == CAN_SLEEP) {
2911
			msleep(1);
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		} else {
			mdelay(1);
		}

		if (!cntdn) {
			printk(MYIOC_s_ERR_FMT "Wait IOC_OP state timeout(%d)!\n",
					ioc->name, (int)((count+5)/HZ));
			return -9;
		}

		state = mpt_GetIocState(ioc, 1);
		count++;
	}
2925
	dinitprintk((MYIOC_s_INFO_FMT "INFO - Wait IOC_OPERATIONAL state (cnt=%d)\n",
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			ioc->name, count));

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	ioc->aen_event_read_flag=0;
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	return r;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
2933
/**
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 *	SendPortEnable - Send PortEnable request to MPT adapter port.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@portnum: Port number to enable
 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	Send PortEnable to bring IOC to OPERATIONAL state.
 *
 *	Returns 0 for success, non-zero for failure.
 */
static int
SendPortEnable(MPT_ADAPTER *ioc, int portnum, int sleepFlag)
{
	PortEnable_t		 port_enable;
	MPIDefaultReply_t	 reply_buf;
2948
	int	 rc;
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	int	 req_sz;
	int	 reply_sz;

	/*  Destination...  */
	reply_sz = sizeof(MPIDefaultReply_t);
	memset(&reply_buf, 0, reply_sz);

	req_sz = sizeof(PortEnable_t);
	memset(&port_enable, 0, req_sz);

	port_enable.Function = MPI_FUNCTION_PORT_ENABLE;
	port_enable.PortNumber = portnum;
/*	port_enable.ChainOffset = 0;		*/
/*	port_enable.MsgFlags = 0;		*/
/*	port_enable.MsgContext = 0;		*/

	dinitprintk((MYIOC_s_INFO_FMT "Sending Port(%d)Enable (req @ %p)\n",
			ioc->name, portnum, &port_enable));

	/* RAID FW may take a long time to enable
	 */
2970
	if (ioc->ir_firmware || ioc->bus_type == SAS) {
2971 2972 2973
		rc = mpt_handshake_req_reply_wait(ioc, req_sz,
		(u32*)&port_enable, reply_sz, (u16*)&reply_buf,
		300 /*seconds*/, sleepFlag);
2974
	} else {
2975 2976 2977
		rc = mpt_handshake_req_reply_wait(ioc, req_sz,
		(u32*)&port_enable, reply_sz, (u16*)&reply_buf,
		30 /*seconds*/, sleepFlag);
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	}
2979
	return rc;
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}

2982 2983 2984 2985 2986 2987 2988
/**
 *	mpt_alloc_fw_memory - allocate firmware memory
 *	@ioc: Pointer to MPT_ADAPTER structure
 *      @size: total FW bytes
 *
 *	If memory has already been allocated, the same (cached) value
 *	is returned.
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 */
void
mpt_alloc_fw_memory(MPT_ADAPTER *ioc, int size)
{
	if (ioc->cached_fw)
		return;  /* use already allocated memory */
	if (ioc->alt_ioc && ioc->alt_ioc->cached_fw) {
		ioc->cached_fw = ioc->alt_ioc->cached_fw;  /* use alt_ioc's memory */
		ioc->cached_fw_dma = ioc->alt_ioc->cached_fw_dma;
2998 2999
		ioc->alloc_total += size;
		ioc->alt_ioc->alloc_total -= size;
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	} else {
		if ( (ioc->cached_fw = pci_alloc_consistent(ioc->pcidev, size, &ioc->cached_fw_dma) ) )
			ioc->alloc_total += size;
	}
}
3005 3006 3007 3008 3009 3010
/**
 *	mpt_free_fw_memory - free firmware memory
 *	@ioc: Pointer to MPT_ADAPTER structure
 *
 *	If alt_img is NULL, delete from ioc structure.
 *	Else, delete a secondary image in same format.
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 */
void
mpt_free_fw_memory(MPT_ADAPTER *ioc)
{
	int sz;

	sz = ioc->facts.FWImageSize;
3018
	dinitprintk((KERN_INFO MYNAM "free_fw_memory: FW Image  @ %p[%p], sz=%d[%x] bytes\n",
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		 ioc->cached_fw, (void *)(ulong)ioc->cached_fw_dma, sz, sz));
	pci_free_consistent(ioc->pcidev, sz,
			ioc->cached_fw, ioc->cached_fw_dma);
	ioc->cached_fw = NULL;

	return;
}


/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
3029
/**
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 *	mpt_do_upload - Construct and Send FWUpload request to MPT adapter port.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	Returns 0 for success, >0 for handshake failure
 *		<0 for fw upload failure.
 *
 *	Remark: If bound IOC and a successful FWUpload was performed
 *	on the bound IOC, the second image is discarded
 *	and memory is free'd. Both channels must upload to prevent
 *	IOC from running in degraded mode.
 */
static int
mpt_do_upload(MPT_ADAPTER *ioc, int sleepFlag)
{
	u8			 request[ioc->req_sz];
	u8			 reply[sizeof(FWUploadReply_t)];
	FWUpload_t		*prequest;
	FWUploadReply_t		*preply;
	FWUploadTCSGE_t		*ptcsge;
	int			 sgeoffset;
	u32			 flagsLength;
	int			 ii, sz, reply_sz;
	int			 cmdStatus;

	/* If the image size is 0, we are done.
	 */
	if ((sz = ioc->facts.FWImageSize) == 0)
		return 0;

	mpt_alloc_fw_memory(ioc, sz);

3062
	dinitprintk((KERN_INFO MYNAM ": FW Image  @ %p[%p], sz=%d[%x] bytes\n",
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		 ioc->cached_fw, (void *)(ulong)ioc->cached_fw_dma, sz, sz));
3064

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	if (ioc->cached_fw == NULL) {
		/* Major Failure.
		 */
		return -ENOMEM;
	}

	prequest = (FWUpload_t *)&request;
	preply = (FWUploadReply_t *)&reply;

	/*  Destination...  */
	memset(prequest, 0, ioc->req_sz);

	reply_sz = sizeof(reply);
	memset(preply, 0, reply_sz);

	prequest->ImageType = MPI_FW_UPLOAD_ITYPE_FW_IOC_MEM;
	prequest->Function = MPI_FUNCTION_FW_UPLOAD;

	ptcsge = (FWUploadTCSGE_t *) &prequest->SGL;
	ptcsge->DetailsLength = 12;
	ptcsge->Flags = MPI_SGE_FLAGS_TRANSACTION_ELEMENT;
	ptcsge->ImageSize = cpu_to_le32(sz);

	sgeoffset = sizeof(FWUpload_t) - sizeof(SGE_MPI_UNION) + sizeof(FWUploadTCSGE_t);

	flagsLength = MPT_SGE_FLAGS_SSIMPLE_READ | sz;
	mpt_add_sge(&request[sgeoffset], flagsLength, ioc->cached_fw_dma);

	sgeoffset += sizeof(u32) + sizeof(dma_addr_t);
3094
	dinitprintk((KERN_INFO MYNAM ": Sending FW Upload (req @ %p) sgeoffset=%d \n",
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			prequest, sgeoffset));
	DBG_DUMP_FW_REQUEST_FRAME(prequest)

	ii = mpt_handshake_req_reply_wait(ioc, sgeoffset, (u32*)prequest,
				reply_sz, (u16*)preply, 65 /*seconds*/, sleepFlag);

3101
	dinitprintk((KERN_INFO MYNAM ": FW Upload completed rc=%x \n", ii));
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	cmdStatus = -EFAULT;
	if (ii == 0) {
		/* Handshake transfer was complete and successful.
		 * Check the Reply Frame.
		 */
		int status, transfer_sz;
		status = le16_to_cpu(preply->IOCStatus);
		if (status == MPI_IOCSTATUS_SUCCESS) {
			transfer_sz = le32_to_cpu(preply->ActualImageSize);
			if (transfer_sz == sz)
				cmdStatus = 0;
		}
	}
3116
	dinitprintk((MYIOC_s_INFO_FMT ": do_upload cmdStatus=%d \n",
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			ioc->name, cmdStatus));

3119

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	if (cmdStatus) {

		ddlprintk((MYIOC_s_INFO_FMT ": fw upload failed, freeing image \n",
			ioc->name));
		mpt_free_fw_memory(ioc);
	}

	return cmdStatus;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
3131
/**
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 *	mpt_downloadboot - DownloadBoot code
 *	@ioc: Pointer to MPT_ADAPTER structure
3134
 *	@pFwHeader: Pointer to firmware header info
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 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	FwDownloadBoot requires Programmed IO access.
 *
 *	Returns 0 for success
 *		-1 FW Image size is 0
 *		-2 No valid cached_fw Pointer
 *		<0 for fw upload failure.
 */
static int
3145
mpt_downloadboot(MPT_ADAPTER *ioc, MpiFwHeader_t *pFwHeader, int sleepFlag)
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{
	MpiExtImageHeader_t	*pExtImage;
	u32			 fwSize;
	u32			 diag0val;
	int			 count;
	u32			*ptrFw;
	u32			 diagRwData;
	u32			 nextImage;
	u32			 load_addr;
	u32 			 ioc_state=0;

3157 3158
	ddlprintk((MYIOC_s_INFO_FMT "downloadboot: fw size 0x%x (%d), FW Ptr %p\n",
				ioc->name, pFwHeader->ImageSize, pFwHeader->ImageSize, pFwHeader));
3159

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	CHIPREG_WRITE32(&ioc->chip->WriteSequence, 0xFF);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_1ST_KEY_VALUE);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_2ND_KEY_VALUE);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_3RD_KEY_VALUE);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_4TH_KEY_VALUE);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_5TH_KEY_VALUE);

	CHIPREG_WRITE32(&ioc->chip->Diagnostic, (MPI_DIAG_PREVENT_IOC_BOOT | MPI_DIAG_DISABLE_ARM));

	/* wait 1 msec */
	if (sleepFlag == CAN_SLEEP) {
3171
		msleep(1);
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	} else {
		mdelay (1);
	}

	diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);
	CHIPREG_WRITE32(&ioc->chip->Diagnostic, diag0val | MPI_DIAG_RESET_ADAPTER);

	for (count = 0; count < 30; count ++) {
		diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);
		if (!(diag0val & MPI_DIAG_RESET_ADAPTER)) {
			ddlprintk((MYIOC_s_INFO_FMT "RESET_ADAPTER cleared, count=%d\n",
				ioc->name, count));
			break;
		}
3186
		/* wait .1 sec */
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		if (sleepFlag == CAN_SLEEP) {
3188
			msleep (100);
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		} else {
3190
			mdelay (100);
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		}
	}

	if ( count == 30 ) {
3195 3196
		ddlprintk((MYIOC_s_INFO_FMT "downloadboot failed! "
		"Unable to get MPI_DIAG_DRWE mode, diag0val=%x\n",
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3197 3198 3199 3200 3201 3202 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216
		ioc->name, diag0val));
		return -3;
	}

	CHIPREG_WRITE32(&ioc->chip->WriteSequence, 0xFF);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_1ST_KEY_VALUE);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_2ND_KEY_VALUE);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_3RD_KEY_VALUE);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_4TH_KEY_VALUE);
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_5TH_KEY_VALUE);

	/* Set the DiagRwEn and Disable ARM bits */
	CHIPREG_WRITE32(&ioc->chip->Diagnostic, (MPI_DIAG_RW_ENABLE | MPI_DIAG_DISABLE_ARM));

	fwSize = (pFwHeader->ImageSize + 3)/4;
	ptrFw = (u32 *) pFwHeader;

	/* Write the LoadStartAddress to the DiagRw Address Register
	 * using Programmed IO
	 */
3217 3218 3219
	if (ioc->errata_flag_1064)
		pci_enable_io_access(ioc->pcidev);

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	CHIPREG_PIO_WRITE32(&ioc->pio_chip->DiagRwAddress, pFwHeader->LoadStartAddress);
	ddlprintk((MYIOC_s_INFO_FMT "LoadStart addr written 0x%x \n",
		ioc->name, pFwHeader->LoadStartAddress));

	ddlprintk((MYIOC_s_INFO_FMT "Write FW Image: 0x%x bytes @ %p\n",
				ioc->name, fwSize*4, ptrFw));
	while (fwSize--) {
		CHIPREG_PIO_WRITE32(&ioc->pio_chip->DiagRwData, *ptrFw++);
	}

	nextImage = pFwHeader->NextImageHeaderOffset;
	while (nextImage) {
		pExtImage = (MpiExtImageHeader_t *) ((char *)pFwHeader + nextImage);

		load_addr = pExtImage->LoadStartAddress;

		fwSize = (pExtImage->ImageSize + 3) >> 2;
		ptrFw = (u32 *)pExtImage;

3239 3240
		ddlprintk((MYIOC_s_INFO_FMT "Write Ext Image: 0x%x (%d) bytes @ %p load_addr=%x\n",
						ioc->name, fwSize*4, fwSize*4, ptrFw, load_addr));
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		CHIPREG_PIO_WRITE32(&ioc->pio_chip->DiagRwAddress, load_addr);

		while (fwSize--) {
			CHIPREG_PIO_WRITE32(&ioc->pio_chip->DiagRwData, *ptrFw++);
		}
		nextImage = pExtImage->NextImageHeaderOffset;
	}

	/* Write the IopResetVectorRegAddr */
	ddlprintk((MYIOC_s_INFO_FMT "Write IopResetVector Addr=%x! \n", ioc->name, 	pFwHeader->IopResetRegAddr));
	CHIPREG_PIO_WRITE32(&ioc->pio_chip->DiagRwAddress, pFwHeader->IopResetRegAddr);

	/* Write the IopResetVectorValue */
	ddlprintk((MYIOC_s_INFO_FMT "Write IopResetVector Value=%x! \n", ioc->name, pFwHeader->IopResetVectorValue));
	CHIPREG_PIO_WRITE32(&ioc->pio_chip->DiagRwData, pFwHeader->IopResetVectorValue);

	/* Clear the internal flash bad bit - autoincrementing register,
	 * so must do two writes.
	 */
3260
	if (ioc->bus_type == SPI) {
3261 3262 3263 3264 3265 3266 3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277
		/*
		 * 1030 and 1035 H/W errata, workaround to access
		 * the ClearFlashBadSignatureBit
		 */
		CHIPREG_PIO_WRITE32(&ioc->pio_chip->DiagRwAddress, 0x3F000000);
		diagRwData = CHIPREG_PIO_READ32(&ioc->pio_chip->DiagRwData);
		diagRwData |= 0x40000000;
		CHIPREG_PIO_WRITE32(&ioc->pio_chip->DiagRwAddress, 0x3F000000);
		CHIPREG_PIO_WRITE32(&ioc->pio_chip->DiagRwData, diagRwData);

	} else /* if((ioc->bus_type == SAS) || (ioc->bus_type == FC)) */ {
		diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);
		CHIPREG_WRITE32(&ioc->chip->Diagnostic, diag0val |
		    MPI_DIAG_CLEAR_FLASH_BAD_SIG);

		/* wait 1 msec */
		if (sleepFlag == CAN_SLEEP) {
3278
			msleep (1);
3279 3280 3281 3282
		} else {
			mdelay (1);
		}
	}
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3284 3285 3286
	if (ioc->errata_flag_1064)
		pci_disable_io_access(ioc->pcidev);

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	diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);
3288 3289
	ddlprintk((MYIOC_s_INFO_FMT "downloadboot diag0val=%x, "
		"turning off PREVENT_IOC_BOOT, DISABLE_ARM, RW_ENABLE\n",
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		ioc->name, diag0val));
3291
	diag0val &= ~(MPI_DIAG_PREVENT_IOC_BOOT | MPI_DIAG_DISABLE_ARM | MPI_DIAG_RW_ENABLE);
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	ddlprintk((MYIOC_s_INFO_FMT "downloadboot now diag0val=%x\n",
		ioc->name, diag0val));
	CHIPREG_WRITE32(&ioc->chip->Diagnostic, diag0val);

	/* Write 0xFF to reset the sequencer */
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, 0xFF);

3299 3300 3301 3302 3303 3304 3305 3306 3307 3308
	if (ioc->bus_type == SAS) {
		ioc_state = mpt_GetIocState(ioc, 0);
		if ( (GetIocFacts(ioc, sleepFlag,
				MPT_HOSTEVENT_IOC_BRINGUP)) != 0 ) {
			ddlprintk((MYIOC_s_INFO_FMT "GetIocFacts failed: IocState=%x\n",
					ioc->name, ioc_state));
			return -EFAULT;
		}
	}

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	for (count=0; count<HZ*20; count++) {
		if ((ioc_state = mpt_GetIocState(ioc, 0)) & MPI_IOC_STATE_READY) {
			ddlprintk((MYIOC_s_INFO_FMT "downloadboot successful! (count=%d) IocState=%x\n",
					ioc->name, count, ioc_state));
3313 3314 3315
			if (ioc->bus_type == SAS) {
				return 0;
			}
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			if ((SendIocInit(ioc, sleepFlag)) != 0) {
				ddlprintk((MYIOC_s_INFO_FMT "downloadboot: SendIocInit failed\n",
					ioc->name));
				return -EFAULT;
			}
			ddlprintk((MYIOC_s_INFO_FMT "downloadboot: SendIocInit successful\n",
					ioc->name));
			return 0;
		}
		if (sleepFlag == CAN_SLEEP) {
3326
			msleep (10);
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		} else {
			mdelay (10);
		}
	}
	ddlprintk((MYIOC_s_INFO_FMT "downloadboot failed! IocState=%x\n",
		ioc->name, ioc_state));
	return -EFAULT;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
3337
/**
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3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354
 *	KickStart - Perform hard reset of MPT adapter.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@force: Force hard reset
 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	This routine places MPT adapter in diagnostic mode via the
 *	WriteSequence register, and then performs a hard reset of adapter
 *	via the Diagnostic register.
 *
 *	Inputs:   sleepflag - CAN_SLEEP (non-interrupt thread)
 *			or NO_SLEEP (interrupt thread, use mdelay)
 *		  force - 1 if doorbell active, board fault state
 *				board operational, IOC_RECOVERY or
 *				IOC_BRINGUP and there is an alt_ioc.
 *			  0 else
 *
 *	Returns:
3355 3356 3357
 *		 1 - hard reset, READY
 *		 0 - no reset due to History bit, READY
 *		-1 - no reset due to History bit but not READY
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 *		     OR reset but failed to come READY
 *		-2 - no reset, could not enter DIAG mode
 *		-3 - reset but bad FW bit
 */
static int
KickStart(MPT_ADAPTER *ioc, int force, int sleepFlag)
{
	int hard_reset_done = 0;
	u32 ioc_state=0;
	int cnt,cntdn;

	dinitprintk((KERN_WARNING MYNAM ": KickStarting %s!\n", ioc->name));
3370
	if (ioc->bus_type == SPI) {
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		/* Always issue a Msg Unit Reset first. This will clear some
		 * SCSI bus hang conditions.
		 */
		SendIocReset(ioc, MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET, sleepFlag);

		if (sleepFlag == CAN_SLEEP) {
3377
			msleep (1000);
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		} else {
			mdelay (1000);
		}
	}

	hard_reset_done = mpt_diag_reset(ioc, force, sleepFlag);
	if (hard_reset_done < 0)
		return hard_reset_done;

	dinitprintk((MYIOC_s_INFO_FMT "Diagnostic reset successful!\n",
			ioc->name));

	cntdn = ((sleepFlag == CAN_SLEEP) ? HZ : 1000) * 2;	/* 2 seconds */
	for (cnt=0; cnt<cntdn; cnt++) {
		ioc_state = mpt_GetIocState(ioc, 1);
		if ((ioc_state == MPI_IOC_STATE_READY) || (ioc_state == MPI_IOC_STATE_OPERATIONAL)) {
			dinitprintk((MYIOC_s_INFO_FMT "KickStart successful! (cnt=%d)\n",
 					ioc->name, cnt));
			return hard_reset_done;
		}
		if (sleepFlag == CAN_SLEEP) {
3399
			msleep (10);
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		} else {
			mdelay (10);
		}
	}

	printk(MYIOC_s_ERR_FMT "Failed to come READY after reset! IocState=%x\n",
			ioc->name, ioc_state);
	return -1;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
3411
/**
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3412 3413 3414 3415
 *	mpt_diag_reset - Perform hard reset of the adapter.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@ignore: Set if to honor and clear to ignore
 *		the reset history bit
3416
 *	@sleepFlag: CAN_SLEEP if called in a non-interrupt thread,
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3417 3418 3419 3420 3421 3422 3423 3424 3425 3426 3427 3428 3429 3430 3431
 *		else set to NO_SLEEP (use mdelay instead)
 *
 *	This routine places the adapter in diagnostic mode via the
 *	WriteSequence register and then performs a hard reset of adapter
 *	via the Diagnostic register. Adapter should be in ready state
 *	upon successful completion.
 *
 *	Returns:  1  hard reset successful
 *		  0  no reset performed because reset history bit set
 *		 -2  enabling diagnostic mode failed
 *		 -3  diagnostic reset failed
 */
static int
mpt_diag_reset(MPT_ADAPTER *ioc, int ignore, int sleepFlag)
{
3432
	MPT_ADAPTER	*iocp=NULL;
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3433 3434 3435 3436 3437 3438 3439 3440
	u32 diag0val;
	u32 doorbell;
	int hard_reset_done = 0;
	int count = 0;
#ifdef MPT_DEBUG
	u32 diag1val = 0;
#endif

3441 3442 3443
	/* Clear any existing interrupts */
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);

3444 3445 3446 3447 3448 3449 3450 3451 3452 3453 3454 3455 3456 3457 3458 3459 3460 3461 3462
	if (ioc->pcidev->device == MPI_MANUFACTPAGE_DEVID_SAS1078) {
		drsprintk((MYIOC_s_WARN_FMT "%s: Doorbell=%p; 1078 reset "
			"address=%p\n",  ioc->name, __FUNCTION__,
			&ioc->chip->Doorbell, &ioc->chip->Reset_1078));
		CHIPREG_WRITE32(&ioc->chip->Reset_1078, 0x07);
		if (sleepFlag == CAN_SLEEP)
			msleep(1);
		else
			mdelay(1);

		for (count = 0; count < 60; count ++) {
			doorbell = CHIPREG_READ32(&ioc->chip->Doorbell);
			doorbell &= MPI_IOC_STATE_MASK;

			drsprintk((MYIOC_s_INFO_FMT
				"looking for READY STATE: doorbell=%x"
			        " count=%d\n",
				ioc->name, doorbell, count));
			if (doorbell == MPI_IOC_STATE_READY) {
3463
				return 1;
3464 3465 3466 3467 3468 3469 3470 3471 3472 3473 3474
			}

			/* wait 1 sec */
			if (sleepFlag == CAN_SLEEP)
				msleep(1000);
			else
				mdelay(1000);
		}
		return -1;
	}

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3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501
	/* Use "Diagnostic reset" method! (only thing available!) */
	diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);

#ifdef MPT_DEBUG
	if (ioc->alt_ioc)
		diag1val = CHIPREG_READ32(&ioc->alt_ioc->chip->Diagnostic);
	dprintk((MYIOC_s_INFO_FMT "DbG1: diag0=%08x, diag1=%08x\n",
			ioc->name, diag0val, diag1val));
#endif

	/* Do the reset if we are told to ignore the reset history
	 * or if the reset history is 0
	 */
	if (ignore || !(diag0val & MPI_DIAG_RESET_HISTORY)) {
		while ((diag0val & MPI_DIAG_DRWE) == 0) {
			/* Write magic sequence to WriteSequence register
			 * Loop until in diagnostic mode
			 */
			CHIPREG_WRITE32(&ioc->chip->WriteSequence, 0xFF);
			CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_1ST_KEY_VALUE);
			CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_2ND_KEY_VALUE);
			CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_3RD_KEY_VALUE);
			CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_4TH_KEY_VALUE);
			CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_5TH_KEY_VALUE);

			/* wait 100 msec */
			if (sleepFlag == CAN_SLEEP) {
3502
				msleep (100);
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3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531
			} else {
				mdelay (100);
			}

			count++;
			if (count > 20) {
				printk(MYIOC_s_ERR_FMT "Enable Diagnostic mode FAILED! (%02xh)\n",
						ioc->name, diag0val);
				return -2;

			}

			diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);

			dprintk((MYIOC_s_INFO_FMT "Wrote magic DiagWriteEn sequence (%x)\n",
					ioc->name, diag0val));
		}

#ifdef MPT_DEBUG
		if (ioc->alt_ioc)
			diag1val = CHIPREG_READ32(&ioc->alt_ioc->chip->Diagnostic);
		dprintk((MYIOC_s_INFO_FMT "DbG2: diag0=%08x, diag1=%08x\n",
				ioc->name, diag0val, diag1val));
#endif
		/*
		 * Disable the ARM (Bug fix)
		 *
		 */
		CHIPREG_WRITE32(&ioc->chip->Diagnostic, diag0val | MPI_DIAG_DISABLE_ARM);
3532
		mdelay(1);
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3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544 3545 3546 3547 3548 3549 3550 3551 3552 3553 3554 3555 3556

		/*
		 * Now hit the reset bit in the Diagnostic register
		 * (THE BIG HAMMER!) (Clears DRWE bit).
		 */
		CHIPREG_WRITE32(&ioc->chip->Diagnostic, diag0val | MPI_DIAG_RESET_ADAPTER);
		hard_reset_done = 1;
		dprintk((MYIOC_s_INFO_FMT "Diagnostic reset performed\n",
				ioc->name));

		/*
		 * Call each currently registered protocol IOC reset handler
		 * with pre-reset indication.
		 * NOTE: If we're doing _IOC_BRINGUP, there can be no
		 * MptResetHandlers[] registered yet.
		 */
		{
			int	 ii;
			int	 r = 0;

			for (ii=MPT_MAX_PROTOCOL_DRIVERS-1; ii; ii--) {
				if (MptResetHandlers[ii]) {
					dprintk((MYIOC_s_INFO_FMT "Calling IOC pre_reset handler #%d\n",
							ioc->name, ii));
3557
					r += mpt_signal_reset(ii, ioc, MPT_IOC_PRE_RESET);
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					if (ioc->alt_ioc) {
						dprintk((MYIOC_s_INFO_FMT "Calling alt-%s pre_reset handler #%d\n",
								ioc->name, ioc->alt_ioc->name, ii));
3561
						r += mpt_signal_reset(ii, ioc->alt_ioc, MPT_IOC_PRE_RESET);
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3562 3563 3564 3565 3566 3567
					}
				}
			}
			/* FIXME?  Examine results here? */
		}

3568 3569 3570 3571 3572
		if (ioc->cached_fw)
			iocp = ioc;
		else if (ioc->alt_ioc && ioc->alt_ioc->cached_fw)
			iocp = ioc->alt_ioc;
		if (iocp) {
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			/* If the DownloadBoot operation fails, the
			 * IOC will be left unusable. This is a fatal error
			 * case.  _diag_reset will return < 0
			 */
			for (count = 0; count < 30; count ++) {
3578
				diag0val = CHIPREG_READ32(&iocp->chip->Diagnostic);
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3579 3580 3581 3582
				if (!(diag0val & MPI_DIAG_RESET_ADAPTER)) {
					break;
				}

3583 3584
				dprintk((MYIOC_s_INFO_FMT "cached_fw: diag0val=%x count=%d\n",
					iocp->name, diag0val, count));
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3585 3586
				/* wait 1 sec */
				if (sleepFlag == CAN_SLEEP) {
3587
					msleep (1000);
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3588 3589 3590 3591
				} else {
					mdelay (1000);
				}
			}
3592
			if ((count = mpt_downloadboot(ioc,
3593
				(MpiFwHeader_t *)iocp->cached_fw, sleepFlag)) < 0) {
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				printk(KERN_WARNING MYNAM
					": firmware downloadboot failure (%d)!\n", count);
			}

		} else {
			/* Wait for FW to reload and for board
			 * to go to the READY state.
			 * Maximum wait is 60 seconds.
			 * If fail, no error will check again
			 * with calling program.
			 */
			for (count = 0; count < 60; count ++) {
				doorbell = CHIPREG_READ32(&ioc->chip->Doorbell);
				doorbell &= MPI_IOC_STATE_MASK;

				if (doorbell == MPI_IOC_STATE_READY) {
					break;
				}

				/* wait 1 sec */
				if (sleepFlag == CAN_SLEEP) {
3615
					msleep (1000);
L
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3616 3617 3618 3619 3620 3621 3622 3623 3624 3625 3626 3627 3628 3629 3630 3631 3632 3633 3634 3635 3636 3637 3638 3639 3640 3641 3642 3643 3644 3645 3646 3647 3648
				} else {
					mdelay (1000);
				}
			}
		}
	}

	diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);
#ifdef MPT_DEBUG
	if (ioc->alt_ioc)
		diag1val = CHIPREG_READ32(&ioc->alt_ioc->chip->Diagnostic);
	dprintk((MYIOC_s_INFO_FMT "DbG3: diag0=%08x, diag1=%08x\n",
		ioc->name, diag0val, diag1val));
#endif

	/* Clear RESET_HISTORY bit!  Place board in the
	 * diagnostic mode to update the diag register.
	 */
	diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);
	count = 0;
	while ((diag0val & MPI_DIAG_DRWE) == 0) {
		/* Write magic sequence to WriteSequence register
		 * Loop until in diagnostic mode
		 */
		CHIPREG_WRITE32(&ioc->chip->WriteSequence, 0xFF);
		CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_1ST_KEY_VALUE);
		CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_2ND_KEY_VALUE);
		CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_3RD_KEY_VALUE);
		CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_4TH_KEY_VALUE);
		CHIPREG_WRITE32(&ioc->chip->WriteSequence, MPI_WRSEQ_5TH_KEY_VALUE);

		/* wait 100 msec */
		if (sleepFlag == CAN_SLEEP) {
3649
			msleep (100);
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		} else {
			mdelay (100);
		}

		count++;
		if (count > 20) {
			printk(MYIOC_s_ERR_FMT "Enable Diagnostic mode FAILED! (%02xh)\n",
					ioc->name, diag0val);
			break;
		}
		diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);
	}
	diag0val &= ~MPI_DIAG_RESET_HISTORY;
	CHIPREG_WRITE32(&ioc->chip->Diagnostic, diag0val);
	diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);
	if (diag0val & MPI_DIAG_RESET_HISTORY) {
		printk(MYIOC_s_WARN_FMT "ResetHistory bit failed to clear!\n",
				ioc->name);
	}

	/* Disable Diagnostic Mode
	 */
	CHIPREG_WRITE32(&ioc->chip->WriteSequence, 0xFFFFFFFF);

	/* Check FW reload status flags.
	 */
	diag0val = CHIPREG_READ32(&ioc->chip->Diagnostic);
	if (diag0val & (MPI_DIAG_FLASH_BAD_SIG | MPI_DIAG_RESET_ADAPTER | MPI_DIAG_DISABLE_ARM)) {
		printk(MYIOC_s_ERR_FMT "Diagnostic reset FAILED! (%02xh)\n",
				ioc->name, diag0val);
		return -3;
	}

#ifdef MPT_DEBUG
	if (ioc->alt_ioc)
		diag1val = CHIPREG_READ32(&ioc->alt_ioc->chip->Diagnostic);
	dprintk((MYIOC_s_INFO_FMT "DbG4: diag0=%08x, diag1=%08x\n",
			ioc->name, diag0val, diag1val));
#endif

	/*
	 * Reset flag that says we've enabled event notification
	 */
	ioc->facts.EventState = 0;

	if (ioc->alt_ioc)
		ioc->alt_ioc->facts.EventState = 0;

	return hard_reset_done;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
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/**
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 *	SendIocReset - Send IOCReset request to MPT adapter.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@reset_type: reset type, expected values are
 *	%MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET or %MPI_FUNCTION_IO_UNIT_RESET
3707
 *	@sleepFlag: Specifies whether the process can sleep
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 *
 *	Send IOCReset request to the MPT adapter.
 *
 *	Returns 0 for success, non-zero for failure.
 */
static int
SendIocReset(MPT_ADAPTER *ioc, u8 reset_type, int sleepFlag)
{
	int r;
	u32 state;
	int cntdn, count;

3720
	drsprintk((KERN_INFO MYNAM ": %s: Sending IOC reset(0x%02x)!\n",
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			ioc->name, reset_type));
	CHIPREG_WRITE32(&ioc->chip->Doorbell, reset_type<<MPI_DOORBELL_FUNCTION_SHIFT);
	if ((r = WaitForDoorbellAck(ioc, 5, sleepFlag)) < 0)
		return r;

	/* FW ACK'd request, wait for READY state
	 */
	count = 0;
	cntdn = ((sleepFlag == CAN_SLEEP) ? HZ : 1000) * 15;	/* 15 seconds */

	while ((state = mpt_GetIocState(ioc, 1)) != MPI_IOC_STATE_READY) {
		cntdn--;
		count++;
		if (!cntdn) {
			if (sleepFlag != CAN_SLEEP)
				count *= 10;

			printk(KERN_ERR MYNAM ": %s: ERROR - Wait IOC_READY state timeout(%d)!\n",
					ioc->name, (int)((count+5)/HZ));
			return -ETIME;
		}

		if (sleepFlag == CAN_SLEEP) {
3744
			msleep(1);
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		} else {
			mdelay (1);	/* 1 msec delay */
		}
	}

	/* TODO!
	 *  Cleanup all event stuff for this IOC; re-issue EventNotification
	 *  request if needed.
	 */
	if (ioc->facts.Function)
		ioc->facts.EventState = 0;

	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
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/**
 *	initChainBuffers - Allocate memory for and initialize chain buffers
 *	@ioc: Pointer to MPT_ADAPTER structure
 *
 *	Allocates memory for and initializes chain buffers,
 *	chain buffer control arrays and spinlock.
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 */
static int
initChainBuffers(MPT_ADAPTER *ioc)
{
	u8		*mem;
	int		sz, ii, num_chain;
	int 		scale, num_sge, numSGE;

	/* ReqToChain size must equal the req_depth
	 * index = req_idx
	 */
	if (ioc->ReqToChain == NULL) {
		sz = ioc->req_depth * sizeof(int);
		mem = kmalloc(sz, GFP_ATOMIC);
		if (mem == NULL)
			return -1;

		ioc->ReqToChain = (int *) mem;
		dinitprintk((KERN_INFO MYNAM ": %s ReqToChain alloc  @ %p, sz=%d bytes\n",
			 	ioc->name, mem, sz));
		mem = kmalloc(sz, GFP_ATOMIC);
		if (mem == NULL)
			return -1;

		ioc->RequestNB = (int *) mem;
		dinitprintk((KERN_INFO MYNAM ": %s RequestNB alloc  @ %p, sz=%d bytes\n",
			 	ioc->name, mem, sz));
	}
	for (ii = 0; ii < ioc->req_depth; ii++) {
		ioc->ReqToChain[ii] = MPT_HOST_NO_CHAIN;
	}

	/* ChainToChain size must equal the total number
	 * of chain buffers to be allocated.
	 * index = chain_idx
	 *
	 * Calculate the number of chain buffers needed(plus 1) per I/O
3804
	 * then multiply the maximum number of simultaneous cmds
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	 *
	 * num_sge = num sge in request frame + last chain buffer
	 * scale = num sge per chain buffer if no chain element
	 */
	scale = ioc->req_sz/(sizeof(dma_addr_t) + sizeof(u32));
	if (sizeof(dma_addr_t) == sizeof(u64))
		num_sge =  scale + (ioc->req_sz - 60) / (sizeof(dma_addr_t) + sizeof(u32));
	else
		num_sge =  1+ scale + (ioc->req_sz - 64) / (sizeof(dma_addr_t) + sizeof(u32));

	if (sizeof(dma_addr_t) == sizeof(u64)) {
		numSGE = (scale - 1) * (ioc->facts.MaxChainDepth-1) + scale +
			(ioc->req_sz - 60) / (sizeof(dma_addr_t) + sizeof(u32));
	} else {
		numSGE = 1 + (scale - 1) * (ioc->facts.MaxChainDepth-1) + scale +
			(ioc->req_sz - 64) / (sizeof(dma_addr_t) + sizeof(u32));
	}
	dinitprintk((KERN_INFO MYNAM ": %s num_sge=%d numSGE=%d\n",
		ioc->name, num_sge, numSGE));

	if ( numSGE > MPT_SCSI_SG_DEPTH	)
		numSGE = MPT_SCSI_SG_DEPTH;

	num_chain = 1;
	while (numSGE - num_sge > 0) {
		num_chain++;
		num_sge += (scale - 1);
	}
	num_chain++;

	dinitprintk((KERN_INFO MYNAM ": %s Now numSGE=%d num_sge=%d num_chain=%d\n",
		ioc->name, numSGE, num_sge, num_chain));

3838
	if (ioc->bus_type == SPI)
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		num_chain *= MPT_SCSI_CAN_QUEUE;
	else
		num_chain *= MPT_FC_CAN_QUEUE;

	ioc->num_chain = num_chain;

	sz = num_chain * sizeof(int);
	if (ioc->ChainToChain == NULL) {
		mem = kmalloc(sz, GFP_ATOMIC);
		if (mem == NULL)
			return -1;

		ioc->ChainToChain = (int *) mem;
		dinitprintk((KERN_INFO MYNAM ": %s ChainToChain alloc @ %p, sz=%d bytes\n",
			 	ioc->name, mem, sz));
	} else {
		mem = (u8 *) ioc->ChainToChain;
	}
	memset(mem, 0xFF, sz);
	return num_chain;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
3862
/**
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 *	PrimeIocFifos - Initialize IOC request and reply FIFOs.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *
 *	This routine allocates memory for the MPT reply and request frame
 *	pools (if necessary), and primes the IOC reply FIFO with
 *	reply frames.
 *
 *	Returns 0 for success, non-zero for failure.
 */
static int
PrimeIocFifos(MPT_ADAPTER *ioc)
{
	MPT_FRAME_HDR *mf;
	unsigned long flags;
	dma_addr_t alloc_dma;
	u8 *mem;
	int i, reply_sz, sz, total_size, num_chain;

	/*  Prime reply FIFO...  */

	if (ioc->reply_frames == NULL) {
		if ( (num_chain = initChainBuffers(ioc)) < 0)
			return -1;

		total_size = reply_sz = (ioc->reply_sz * ioc->reply_depth);
		dinitprintk((KERN_INFO MYNAM ": %s.ReplyBuffer sz=%d bytes, ReplyDepth=%d\n",
			 	ioc->name, ioc->reply_sz, ioc->reply_depth));
		dinitprintk((KERN_INFO MYNAM ": %s.ReplyBuffer sz=%d[%x] bytes\n",
			 	ioc->name, reply_sz, reply_sz));

		sz = (ioc->req_sz * ioc->req_depth);
		dinitprintk((KERN_INFO MYNAM ": %s.RequestBuffer sz=%d bytes, RequestDepth=%d\n",
			 	ioc->name, ioc->req_sz, ioc->req_depth));
		dinitprintk((KERN_INFO MYNAM ": %s.RequestBuffer sz=%d[%x] bytes\n",
			 	ioc->name, sz, sz));
		total_size += sz;

		sz = num_chain * ioc->req_sz; /* chain buffer pool size */
		dinitprintk((KERN_INFO MYNAM ": %s.ChainBuffer sz=%d bytes, ChainDepth=%d\n",
			 	ioc->name, ioc->req_sz, num_chain));
		dinitprintk((KERN_INFO MYNAM ": %s.ChainBuffer sz=%d[%x] bytes num_chain=%d\n",
			 	ioc->name, sz, sz, num_chain));

		total_size += sz;
		mem = pci_alloc_consistent(ioc->pcidev, total_size, &alloc_dma);
		if (mem == NULL) {
			printk(MYIOC_s_ERR_FMT "Unable to allocate Reply, Request, Chain Buffers!\n",
				ioc->name);
			goto out_fail;
		}

		dinitprintk((KERN_INFO MYNAM ": %s.Total alloc @ %p[%p], sz=%d[%x] bytes\n",
			 	ioc->name, mem, (void *)(ulong)alloc_dma, total_size, total_size));

		memset(mem, 0, total_size);
		ioc->alloc_total += total_size;
		ioc->alloc = mem;
		ioc->alloc_dma = alloc_dma;
		ioc->alloc_sz = total_size;
		ioc->reply_frames = (MPT_FRAME_HDR *) mem;
		ioc->reply_frames_low_dma = (u32) (alloc_dma & 0xFFFFFFFF);

3925 3926 3927
		dinitprintk((KERN_INFO MYNAM ": %s ReplyBuffers @ %p[%p]\n",
	 		ioc->name, ioc->reply_frames, (void *)(ulong)alloc_dma));

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		alloc_dma += reply_sz;
		mem += reply_sz;

		/*  Request FIFO - WE manage this!  */

		ioc->req_frames = (MPT_FRAME_HDR *) mem;
		ioc->req_frames_dma = alloc_dma;

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		dinitprintk((KERN_INFO MYNAM ": %s RequestBuffers @ %p[%p]\n",
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			 	ioc->name, mem, (void *)(ulong)alloc_dma));

		ioc->req_frames_low_dma = (u32) (alloc_dma & 0xFFFFFFFF);

#if defined(CONFIG_MTRR) && 0
		/*
		 *  Enable Write Combining MTRR for IOC's memory region.
		 *  (at least as much as we can; "size and base must be
		 *  multiples of 4 kiB"
		 */
		ioc->mtrr_reg = mtrr_add(ioc->req_frames_dma,
					 sz,
					 MTRR_TYPE_WRCOMB, 1);
		dprintk((MYIOC_s_INFO_FMT "MTRR region registered (base:size=%08x:%x)\n",
				ioc->name, ioc->req_frames_dma, sz));
#endif

		for (i = 0; i < ioc->req_depth; i++) {
			alloc_dma += ioc->req_sz;
			mem += ioc->req_sz;
		}

		ioc->ChainBuffer = mem;
		ioc->ChainBufferDMA = alloc_dma;

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		dinitprintk((KERN_INFO MYNAM " :%s ChainBuffers @ %p(%p)\n",
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			ioc->name, ioc->ChainBuffer, (void *)(ulong)ioc->ChainBufferDMA));

		/* Initialize the free chain Q.
	 	*/

		INIT_LIST_HEAD(&ioc->FreeChainQ);

		/* Post the chain buffers to the FreeChainQ.
	 	*/
		mem = (u8 *)ioc->ChainBuffer;
		for (i=0; i < num_chain; i++) {
			mf = (MPT_FRAME_HDR *) mem;
			list_add_tail(&mf->u.frame.linkage.list, &ioc->FreeChainQ);
			mem += ioc->req_sz;
		}

		/* Initialize Request frames linked list
		 */
		alloc_dma = ioc->req_frames_dma;
		mem = (u8 *) ioc->req_frames;

		spin_lock_irqsave(&ioc->FreeQlock, flags);
		INIT_LIST_HEAD(&ioc->FreeQ);
		for (i = 0; i < ioc->req_depth; i++) {
			mf = (MPT_FRAME_HDR *) mem;

			/*  Queue REQUESTs *internally*!  */
			list_add_tail(&mf->u.frame.linkage.list, &ioc->FreeQ);

			mem += ioc->req_sz;
		}
		spin_unlock_irqrestore(&ioc->FreeQlock, flags);

		sz = (ioc->req_depth * MPT_SENSE_BUFFER_ALLOC);
		ioc->sense_buf_pool =
			pci_alloc_consistent(ioc->pcidev, sz, &ioc->sense_buf_pool_dma);
		if (ioc->sense_buf_pool == NULL) {
			printk(MYIOC_s_ERR_FMT "Unable to allocate Sense Buffers!\n",
				ioc->name);
			goto out_fail;
		}

		ioc->sense_buf_low_dma = (u32) (ioc->sense_buf_pool_dma & 0xFFFFFFFF);
		ioc->alloc_total += sz;
		dinitprintk((KERN_INFO MYNAM ": %s.SenseBuffers @ %p[%p]\n",
 			ioc->name, ioc->sense_buf_pool, (void *)(ulong)ioc->sense_buf_pool_dma));

	}

	/* Post Reply frames to FIFO
	 */
	alloc_dma = ioc->alloc_dma;
	dinitprintk((KERN_INFO MYNAM ": %s.ReplyBuffers @ %p[%p]\n",
	 	ioc->name, ioc->reply_frames, (void *)(ulong)alloc_dma));

	for (i = 0; i < ioc->reply_depth; i++) {
		/*  Write each address to the IOC!  */
		CHIPREG_WRITE32(&ioc->chip->ReplyFifo, alloc_dma);
		alloc_dma += ioc->reply_sz;
	}

	return 0;

out_fail:
	if (ioc->alloc != NULL) {
		sz = ioc->alloc_sz;
		pci_free_consistent(ioc->pcidev,
				sz,
				ioc->alloc, ioc->alloc_dma);
		ioc->reply_frames = NULL;
		ioc->req_frames = NULL;
		ioc->alloc_total -= sz;
	}
	if (ioc->sense_buf_pool != NULL) {
		sz = (ioc->req_depth * MPT_SENSE_BUFFER_ALLOC);
		pci_free_consistent(ioc->pcidev,
				sz,
				ioc->sense_buf_pool, ioc->sense_buf_pool_dma);
		ioc->sense_buf_pool = NULL;
	}
	return -1;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_handshake_req_reply_wait - Send MPT request to and receive reply
 *	from IOC via doorbell handshake method.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@reqBytes: Size of the request in bytes
 *	@req: Pointer to MPT request frame
 *	@replyBytes: Expected size of the reply in bytes
 *	@u16reply: Pointer to area where reply should be written
 *	@maxwait: Max wait time for a reply (in seconds)
 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	NOTES: It is the callers responsibility to byte-swap fields in the
 *	request which are greater than 1 byte in size.  It is also the
 *	callers responsibility to byte-swap response fields which are
 *	greater than 1 byte in size.
 *
 *	Returns 0 for success, non-zero for failure.
 */
static int
mpt_handshake_req_reply_wait(MPT_ADAPTER *ioc, int reqBytes, u32 *req,
4067
		int replyBytes, u16 *u16reply, int maxwait, int sleepFlag)
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{
	MPIDefaultReply_t *mptReply;
	int failcnt = 0;
	int t;

	/*
	 * Get ready to cache a handshake reply
	 */
	ioc->hs_reply_idx = 0;
	mptReply = (MPIDefaultReply_t *) ioc->hs_reply;
	mptReply->MsgLength = 0;

	/*
	 * Make sure there are no doorbells (WRITE 0 to IntStatus reg),
	 * then tell IOC that we want to handshake a request of N words.
	 * (WRITE u32val to Doorbell reg).
	 */
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);
	CHIPREG_WRITE32(&ioc->chip->Doorbell,
			((MPI_FUNCTION_HANDSHAKE<<MPI_DOORBELL_FUNCTION_SHIFT) |
			 ((reqBytes/4)<<MPI_DOORBELL_ADD_DWORDS_SHIFT)));

	/*
	 * Wait for IOC's doorbell handshake int
	 */
	if ((t = WaitForDoorbellInt(ioc, 5, sleepFlag)) < 0)
		failcnt++;

	dhsprintk((MYIOC_s_INFO_FMT "HandShake request start reqBytes=%d, WaitCnt=%d%s\n",
			ioc->name, reqBytes, t, failcnt ? " - MISSING DOORBELL HANDSHAKE!" : ""));

	/* Read doorbell and check for active bit */
	if (!(CHIPREG_READ32(&ioc->chip->Doorbell) & MPI_DOORBELL_ACTIVE))
			return -1;

	/*
	 * Clear doorbell int (WRITE 0 to IntStatus reg),
	 * then wait for IOC to ACKnowledge that it's ready for
	 * our handshake request.
	 */
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);
	if (!failcnt && (t = WaitForDoorbellAck(ioc, 5, sleepFlag)) < 0)
		failcnt++;

	if (!failcnt) {
		int	 ii;
		u8	*req_as_bytes = (u8 *) req;

		/*
		 * Stuff request words via doorbell handshake,
		 * with ACK from IOC for each.
		 */
		for (ii = 0; !failcnt && ii < reqBytes/4; ii++) {
			u32 word = ((req_as_bytes[(ii*4) + 0] <<  0) |
				    (req_as_bytes[(ii*4) + 1] <<  8) |
				    (req_as_bytes[(ii*4) + 2] << 16) |
				    (req_as_bytes[(ii*4) + 3] << 24));

			CHIPREG_WRITE32(&ioc->chip->Doorbell, word);
			if ((t = WaitForDoorbellAck(ioc, 5, sleepFlag)) < 0)
				failcnt++;
		}

		dhsprintk((KERN_INFO MYNAM ": Handshake request frame (@%p) header\n", req));
		DBG_DUMP_REQUEST_FRAME_HDR(req)

		dhsprintk((MYIOC_s_INFO_FMT "HandShake request post done, WaitCnt=%d%s\n",
				ioc->name, t, failcnt ? " - MISSING DOORBELL ACK!" : ""));

		/*
		 * Wait for completion of doorbell handshake reply from the IOC
		 */
		if (!failcnt && (t = WaitForDoorbellReply(ioc, maxwait, sleepFlag)) < 0)
			failcnt++;
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		dhsprintk((MYIOC_s_INFO_FMT "HandShake reply count=%d%s\n",
				ioc->name, t, failcnt ? " - MISSING DOORBELL REPLY!" : ""));

		/*
		 * Copy out the cached reply...
		 */
		for (ii=0; ii < min(replyBytes/2,mptReply->MsgLength*2); ii++)
			u16reply[ii] = ioc->hs_reply[ii];
	} else {
		return -99;
	}

	return -failcnt;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
4159 4160
/**
 *	WaitForDoorbellAck - Wait for IOC doorbell handshake acknowledge
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 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@howlong: How long to wait (in seconds)
 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	This routine waits (up to ~2 seconds max) for IOC doorbell
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 *	handshake ACKnowledge, indicated by the IOP_DOORBELL_STATUS
 *	bit in its IntStatus register being clear.
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 *
 *	Returns a negative value on failure, else wait loop count.
 */
static int
WaitForDoorbellAck(MPT_ADAPTER *ioc, int howlong, int sleepFlag)
{
	int cntdn;
	int count = 0;
	u32 intstat=0;

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	cntdn = 1000 * howlong;
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	if (sleepFlag == CAN_SLEEP) {
		while (--cntdn) {
4182
			msleep (1);
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			intstat = CHIPREG_READ32(&ioc->chip->IntStatus);
			if (! (intstat & MPI_HIS_IOP_DOORBELL_STATUS))
				break;
			count++;
		}
	} else {
		while (--cntdn) {
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			udelay (1000);
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			intstat = CHIPREG_READ32(&ioc->chip->IntStatus);
			if (! (intstat & MPI_HIS_IOP_DOORBELL_STATUS))
				break;
			count++;
		}
	}

	if (cntdn) {
		dprintk((MYIOC_s_INFO_FMT "WaitForDoorbell ACK (count=%d)\n",
				ioc->name, count));
		return count;
	}

	printk(MYIOC_s_ERR_FMT "Doorbell ACK timeout (count=%d), IntStatus=%x!\n",
			ioc->name, count, intstat);
	return -1;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
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/**
 *	WaitForDoorbellInt - Wait for IOC to set its doorbell interrupt bit
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 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@howlong: How long to wait (in seconds)
 *	@sleepFlag: Specifies whether the process can sleep
 *
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 *	This routine waits (up to ~2 seconds max) for IOC doorbell interrupt
 *	(MPI_HIS_DOORBELL_INTERRUPT) to be set in the IntStatus register.
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 *
 *	Returns a negative value on failure, else wait loop count.
 */
static int
WaitForDoorbellInt(MPT_ADAPTER *ioc, int howlong, int sleepFlag)
{
	int cntdn;
	int count = 0;
	u32 intstat=0;

4228
	cntdn = 1000 * howlong;
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	if (sleepFlag == CAN_SLEEP) {
		while (--cntdn) {
			intstat = CHIPREG_READ32(&ioc->chip->IntStatus);
			if (intstat & MPI_HIS_DOORBELL_INTERRUPT)
				break;
4234
			msleep(1);
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			count++;
		}
	} else {
		while (--cntdn) {
			intstat = CHIPREG_READ32(&ioc->chip->IntStatus);
			if (intstat & MPI_HIS_DOORBELL_INTERRUPT)
				break;
4242
			udelay (1000);
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			count++;
		}
	}

	if (cntdn) {
		dprintk((MYIOC_s_INFO_FMT "WaitForDoorbell INT (cnt=%d) howlong=%d\n",
				ioc->name, count, howlong));
		return count;
	}

	printk(MYIOC_s_ERR_FMT "Doorbell INT timeout (count=%d), IntStatus=%x!\n",
			ioc->name, count, intstat);
	return -1;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
4259 4260
/**
 *	WaitForDoorbellReply - Wait for and capture an IOC handshake reply.
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 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@howlong: How long to wait (in seconds)
 *	@sleepFlag: Specifies whether the process can sleep
 *
 *	This routine polls the IOC for a handshake reply, 16 bits at a time.
 *	Reply is cached to IOC private area large enough to hold a maximum
 *	of 128 bytes of reply data.
 *
 *	Returns a negative value on failure, else size of reply in WORDS.
 */
static int
WaitForDoorbellReply(MPT_ADAPTER *ioc, int howlong, int sleepFlag)
{
	int u16cnt = 0;
	int failcnt = 0;
	int t;
	u16 *hs_reply = ioc->hs_reply;
	volatile MPIDefaultReply_t *mptReply = (MPIDefaultReply_t *) ioc->hs_reply;
	u16 hword;

	hs_reply[0] = hs_reply[1] = hs_reply[7] = 0;

	/*
	 * Get first two u16's so we can look at IOC's intended reply MsgLength
	 */
	u16cnt=0;
	if ((t = WaitForDoorbellInt(ioc, howlong, sleepFlag)) < 0) {
		failcnt++;
	} else {
		hs_reply[u16cnt++] = le16_to_cpu(CHIPREG_READ32(&ioc->chip->Doorbell) & 0x0000FFFF);
		CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);
		if ((t = WaitForDoorbellInt(ioc, 5, sleepFlag)) < 0)
			failcnt++;
		else {
			hs_reply[u16cnt++] = le16_to_cpu(CHIPREG_READ32(&ioc->chip->Doorbell) & 0x0000FFFF);
			CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);
		}
	}

	dhsprintk((MYIOC_s_INFO_FMT "WaitCnt=%d First handshake reply word=%08x%s\n",
4301
			ioc->name, t, le32_to_cpu(*(u32 *)hs_reply),
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			failcnt ? " - MISSING DOORBELL HANDSHAKE!" : ""));

	/*
	 * If no error (and IOC said MsgLength is > 0), piece together
	 * reply 16 bits at a time.
	 */
	for (u16cnt=2; !failcnt && u16cnt < (2 * mptReply->MsgLength); u16cnt++) {
		if ((t = WaitForDoorbellInt(ioc, 5, sleepFlag)) < 0)
			failcnt++;
		hword = le16_to_cpu(CHIPREG_READ32(&ioc->chip->Doorbell) & 0x0000FFFF);
		/* don't overflow our IOC hs_reply[] buffer! */
		if (u16cnt < sizeof(ioc->hs_reply) / sizeof(ioc->hs_reply[0]))
			hs_reply[u16cnt] = hword;
		CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);
	}

	if (!failcnt && (t = WaitForDoorbellInt(ioc, 5, sleepFlag)) < 0)
		failcnt++;
	CHIPREG_WRITE32(&ioc->chip->IntStatus, 0);

	if (failcnt) {
		printk(MYIOC_s_ERR_FMT "Handshake reply failure!\n",
				ioc->name);
		return -failcnt;
	}
#if 0
	else if (u16cnt != (2 * mptReply->MsgLength)) {
		return -101;
	}
	else if ((mptReply->IOCStatus & MPI_IOCSTATUS_MASK) != MPI_IOCSTATUS_SUCCESS) {
		return -102;
	}
#endif

	dhsprintk((MYIOC_s_INFO_FMT "Got Handshake reply:\n", ioc->name));
	DBG_DUMP_REPLY_FRAME(mptReply)

	dhsprintk((MYIOC_s_INFO_FMT "WaitForDoorbell REPLY WaitCnt=%d (sz=%d)\n",
			ioc->name, t, u16cnt/2));
	return u16cnt/2;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
4345
/**
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 *	GetLanConfigPages - Fetch LANConfig pages.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *
 *	Return: 0 for success
 *	-ENOMEM if no memory available
 *		-EPERM if not allowed due to ISR context
 *		-EAGAIN if no msg frames currently available
 *		-EFAULT for non-successful reply or no reply (timeout)
 */
static int
GetLanConfigPages(MPT_ADAPTER *ioc)
{
	ConfigPageHeader_t	 hdr;
	CONFIGPARMS		 cfg;
	LANPage0_t		*ppage0_alloc;
	dma_addr_t		 page0_dma;
	LANPage1_t		*ppage1_alloc;
	dma_addr_t		 page1_dma;
	int			 rc = 0;
	int			 data_sz;
	int			 copy_sz;

	/* Get LAN Page 0 header */
	hdr.PageVersion = 0;
	hdr.PageLength = 0;
	hdr.PageNumber = 0;
	hdr.PageType = MPI_CONFIG_PAGETYPE_LAN;
4373
	cfg.cfghdr.hdr = &hdr;
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	cfg.physAddr = -1;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	cfg.pageAddr = 0;
	cfg.timeout = 0;

	if ((rc = mpt_config(ioc, &cfg)) != 0)
		return rc;

	if (hdr.PageLength > 0) {
		data_sz = hdr.PageLength * 4;
		ppage0_alloc = (LANPage0_t *) pci_alloc_consistent(ioc->pcidev, data_sz, &page0_dma);
		rc = -ENOMEM;
		if (ppage0_alloc) {
			memset((u8 *)ppage0_alloc, 0, data_sz);
			cfg.physAddr = page0_dma;
			cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;

			if ((rc = mpt_config(ioc, &cfg)) == 0) {
				/* save the data */
				copy_sz = min_t(int, sizeof(LANPage0_t), data_sz);
				memcpy(&ioc->lan_cnfg_page0, ppage0_alloc, copy_sz);

			}

			pci_free_consistent(ioc->pcidev, data_sz, (u8 *) ppage0_alloc, page0_dma);

			/* FIXME!
			 *	Normalize endianness of structure data,
			 *	by byte-swapping all > 1 byte fields!
			 */

		}

		if (rc)
			return rc;
	}

	/* Get LAN Page 1 header */
	hdr.PageVersion = 0;
	hdr.PageLength = 0;
	hdr.PageNumber = 1;
	hdr.PageType = MPI_CONFIG_PAGETYPE_LAN;
4417
	cfg.cfghdr.hdr = &hdr;
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	cfg.physAddr = -1;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	cfg.pageAddr = 0;

	if ((rc = mpt_config(ioc, &cfg)) != 0)
		return rc;

	if (hdr.PageLength == 0)
		return 0;

	data_sz = hdr.PageLength * 4;
	rc = -ENOMEM;
	ppage1_alloc = (LANPage1_t *) pci_alloc_consistent(ioc->pcidev, data_sz, &page1_dma);
	if (ppage1_alloc) {
		memset((u8 *)ppage1_alloc, 0, data_sz);
		cfg.physAddr = page1_dma;
		cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;

		if ((rc = mpt_config(ioc, &cfg)) == 0) {
			/* save the data */
			copy_sz = min_t(int, sizeof(LANPage1_t), data_sz);
			memcpy(&ioc->lan_cnfg_page1, ppage1_alloc, copy_sz);
		}

		pci_free_consistent(ioc->pcidev, data_sz, (u8 *) ppage1_alloc, page1_dma);

		/* FIXME!
		 *	Normalize endianness of structure data,
		 *	by byte-swapping all > 1 byte fields!
		 */

	}

	return rc;
}

4455
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
4456 4457
/**
 *	mptbase_sas_persist_operation - Perform operation on SAS Persistent Table
4458 4459 4460 4461 4462 4463 4464 4465 4466
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@persist_opcode: see below
 *
 *	MPI_SAS_OP_CLEAR_NOT_PRESENT - Free all persist TargetID mappings for
 *		devices not currently present.
 *	MPI_SAS_OP_CLEAR_ALL_PERSISTENT - Clear al persist TargetID mappings
 *
 *	NOTE: Don't use not this function during interrupt time.
 *
4467
 *	Returns 0 for success, non-zero error
4468 4469 4470 4471 4472 4473 4474 4475 4476 4477 4478 4479 4480 4481 4482 4483 4484 4485 4486 4487 4488 4489 4490 4491 4492 4493 4494 4495 4496 4497 4498 4499 4500 4501 4502 4503 4504 4505 4506 4507 4508 4509 4510 4511 4512 4513 4514 4515 4516 4517 4518 4519 4520 4521 4522 4523 4524 4525 4526 4527 4528 4529 4530
 */

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
int
mptbase_sas_persist_operation(MPT_ADAPTER *ioc, u8 persist_opcode)
{
	SasIoUnitControlRequest_t	*sasIoUnitCntrReq;
	SasIoUnitControlReply_t		*sasIoUnitCntrReply;
	MPT_FRAME_HDR			*mf = NULL;
	MPIHeader_t			*mpi_hdr;


	/* insure garbage is not sent to fw */
	switch(persist_opcode) {

	case MPI_SAS_OP_CLEAR_NOT_PRESENT:
	case MPI_SAS_OP_CLEAR_ALL_PERSISTENT:
		break;

	default:
		return -1;
		break;
	}

	printk("%s: persist_opcode=%x\n",__FUNCTION__, persist_opcode);

	/* Get a MF for this command.
	 */
	if ((mf = mpt_get_msg_frame(mpt_base_index, ioc)) == NULL) {
		printk("%s: no msg frames!\n",__FUNCTION__);
		return -1;
        }

	mpi_hdr = (MPIHeader_t *) mf;
	sasIoUnitCntrReq = (SasIoUnitControlRequest_t *)mf;
	memset(sasIoUnitCntrReq,0,sizeof(SasIoUnitControlRequest_t));
	sasIoUnitCntrReq->Function = MPI_FUNCTION_SAS_IO_UNIT_CONTROL;
	sasIoUnitCntrReq->MsgContext = mpi_hdr->MsgContext;
	sasIoUnitCntrReq->Operation = persist_opcode;

	init_timer(&ioc->persist_timer);
	ioc->persist_timer.data = (unsigned long) ioc;
	ioc->persist_timer.function = mpt_timer_expired;
	ioc->persist_timer.expires = jiffies + HZ*10 /* 10 sec */;
	ioc->persist_wait_done=0;
	add_timer(&ioc->persist_timer);
	mpt_put_msg_frame(mpt_base_index, ioc, mf);
	wait_event(mpt_waitq, ioc->persist_wait_done);

	sasIoUnitCntrReply =
	    (SasIoUnitControlReply_t *)ioc->persist_reply_frame;
	if (le16_to_cpu(sasIoUnitCntrReply->IOCStatus) != MPI_IOCSTATUS_SUCCESS) {
		printk("%s: IOCStatus=0x%X IOCLogInfo=0x%X\n",
		    __FUNCTION__,
		    sasIoUnitCntrReply->IOCStatus,
		    sasIoUnitCntrReply->IOCLogInfo);
		return -1;
	}

	printk("%s: success\n",__FUNCTION__);
	return 0;
}

4531 4532 4533 4534 4535 4536 4537 4538 4539 4540 4541 4542 4543 4544 4545 4546 4547 4548 4549 4550 4551 4552 4553 4554 4555 4556 4557
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/

static void
mptbase_raid_process_event_data(MPT_ADAPTER *ioc,
    MpiEventDataRaid_t * pRaidEventData)
{
	int 	volume;
	int 	reason;
	int 	disk;
	int 	status;
	int 	flags;
	int 	state;

	volume	= pRaidEventData->VolumeID;
	reason	= pRaidEventData->ReasonCode;
	disk	= pRaidEventData->PhysDiskNum;
	status	= le32_to_cpu(pRaidEventData->SettingsStatus);
	flags	= (status >> 0) & 0xff;
	state	= (status >> 8) & 0xff;

	if (reason == MPI_EVENT_RAID_RC_DOMAIN_VAL_NEEDED) {
		return;
	}

	if ((reason >= MPI_EVENT_RAID_RC_PHYSDISK_CREATED &&
	     reason <= MPI_EVENT_RAID_RC_PHYSDISK_STATUS_CHANGED) ||
	    (reason == MPI_EVENT_RAID_RC_SMART_DATA)) {
4558 4559
		printk(MYIOC_s_INFO_FMT "RAID STATUS CHANGE for PhysDisk %d id=%d\n",
			ioc->name, disk, volume);
4560 4561 4562 4563 4564 4565 4566 4567 4568 4569 4570 4571 4572 4573 4574 4575 4576 4577 4578 4579 4580 4581 4582 4583 4584 4585 4586 4587 4588 4589 4590 4591 4592 4593 4594 4595 4596 4597 4598 4599 4600 4601 4602 4603 4604 4605 4606 4607 4608 4609 4610 4611 4612 4613 4614 4615 4616 4617 4618 4619 4620 4621 4622 4623 4624 4625 4626 4627 4628 4629 4630 4631 4632 4633 4634 4635 4636 4637 4638 4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650 4651 4652 4653 4654 4655 4656 4657 4658 4659 4660 4661 4662
	} else {
		printk(MYIOC_s_INFO_FMT "RAID STATUS CHANGE for VolumeID %d\n",
			ioc->name, volume);
	}

	switch(reason) {
	case MPI_EVENT_RAID_RC_VOLUME_CREATED:
		printk(MYIOC_s_INFO_FMT "  volume has been created\n",
			ioc->name);
		break;

	case MPI_EVENT_RAID_RC_VOLUME_DELETED:

		printk(MYIOC_s_INFO_FMT "  volume has been deleted\n",
			ioc->name);
		break;

	case MPI_EVENT_RAID_RC_VOLUME_SETTINGS_CHANGED:
		printk(MYIOC_s_INFO_FMT "  volume settings have been changed\n",
			ioc->name);
		break;

	case MPI_EVENT_RAID_RC_VOLUME_STATUS_CHANGED:
		printk(MYIOC_s_INFO_FMT "  volume is now %s%s%s%s\n",
			ioc->name,
			state == MPI_RAIDVOL0_STATUS_STATE_OPTIMAL
			 ? "optimal"
			 : state == MPI_RAIDVOL0_STATUS_STATE_DEGRADED
			  ? "degraded"
			  : state == MPI_RAIDVOL0_STATUS_STATE_FAILED
			   ? "failed"
			   : "state unknown",
			flags & MPI_RAIDVOL0_STATUS_FLAG_ENABLED
			 ? ", enabled" : "",
			flags & MPI_RAIDVOL0_STATUS_FLAG_QUIESCED
			 ? ", quiesced" : "",
			flags & MPI_RAIDVOL0_STATUS_FLAG_RESYNC_IN_PROGRESS
			 ? ", resync in progress" : "" );
		break;

	case MPI_EVENT_RAID_RC_VOLUME_PHYSDISK_CHANGED:
		printk(MYIOC_s_INFO_FMT "  volume membership of PhysDisk %d has changed\n",
			ioc->name, disk);
		break;

	case MPI_EVENT_RAID_RC_PHYSDISK_CREATED:
		printk(MYIOC_s_INFO_FMT "  PhysDisk has been created\n",
			ioc->name);
		break;

	case MPI_EVENT_RAID_RC_PHYSDISK_DELETED:
		printk(MYIOC_s_INFO_FMT "  PhysDisk has been deleted\n",
			ioc->name);
		break;

	case MPI_EVENT_RAID_RC_PHYSDISK_SETTINGS_CHANGED:
		printk(MYIOC_s_INFO_FMT "  PhysDisk settings have been changed\n",
			ioc->name);
		break;

	case MPI_EVENT_RAID_RC_PHYSDISK_STATUS_CHANGED:
		printk(MYIOC_s_INFO_FMT "  PhysDisk is now %s%s%s\n",
			ioc->name,
			state == MPI_PHYSDISK0_STATUS_ONLINE
			 ? "online"
			 : state == MPI_PHYSDISK0_STATUS_MISSING
			  ? "missing"
			  : state == MPI_PHYSDISK0_STATUS_NOT_COMPATIBLE
			   ? "not compatible"
			   : state == MPI_PHYSDISK0_STATUS_FAILED
			    ? "failed"
			    : state == MPI_PHYSDISK0_STATUS_INITIALIZING
			     ? "initializing"
			     : state == MPI_PHYSDISK0_STATUS_OFFLINE_REQUESTED
			      ? "offline requested"
			      : state == MPI_PHYSDISK0_STATUS_FAILED_REQUESTED
			       ? "failed requested"
			       : state == MPI_PHYSDISK0_STATUS_OTHER_OFFLINE
			        ? "offline"
			        : "state unknown",
			flags & MPI_PHYSDISK0_STATUS_FLAG_OUT_OF_SYNC
			 ? ", out of sync" : "",
			flags & MPI_PHYSDISK0_STATUS_FLAG_QUIESCED
			 ? ", quiesced" : "" );
		break;

	case MPI_EVENT_RAID_RC_DOMAIN_VAL_NEEDED:
		printk(MYIOC_s_INFO_FMT "  Domain Validation needed for PhysDisk %d\n",
			ioc->name, disk);
		break;

	case MPI_EVENT_RAID_RC_SMART_DATA:
		printk(MYIOC_s_INFO_FMT "  SMART data received, ASC/ASCQ = %02xh/%02xh\n",
			ioc->name, pRaidEventData->ASC, pRaidEventData->ASCQ);
		break;

	case MPI_EVENT_RAID_RC_REPLACE_ACTION_STARTED:
		printk(MYIOC_s_INFO_FMT "  replacement of PhysDisk %d has started\n",
			ioc->name, disk);
		break;
	}
}

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/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
4664
/**
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 *	GetIoUnitPage2 - Retrieve BIOS version and boot order information.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *
 *	Returns: 0 for success
 *	-ENOMEM if no memory available
 *		-EPERM if not allowed due to ISR context
 *		-EAGAIN if no msg frames currently available
 *		-EFAULT for non-successful reply or no reply (timeout)
 */
static int
GetIoUnitPage2(MPT_ADAPTER *ioc)
{
	ConfigPageHeader_t	 hdr;
	CONFIGPARMS		 cfg;
	IOUnitPage2_t		*ppage_alloc;
	dma_addr_t		 page_dma;
	int			 data_sz;
	int			 rc;

	/* Get the page header */
	hdr.PageVersion = 0;
	hdr.PageLength = 0;
	hdr.PageNumber = 2;
	hdr.PageType = MPI_CONFIG_PAGETYPE_IO_UNIT;
4689
	cfg.cfghdr.hdr = &hdr;
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	cfg.physAddr = -1;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	cfg.pageAddr = 0;
	cfg.timeout = 0;

	if ((rc = mpt_config(ioc, &cfg)) != 0)
		return rc;

	if (hdr.PageLength == 0)
		return 0;

	/* Read the config page */
	data_sz = hdr.PageLength * 4;
	rc = -ENOMEM;
	ppage_alloc = (IOUnitPage2_t *) pci_alloc_consistent(ioc->pcidev, data_sz, &page_dma);
	if (ppage_alloc) {
		memset((u8 *)ppage_alloc, 0, data_sz);
		cfg.physAddr = page_dma;
		cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;

		/* If Good, save data */
		if ((rc = mpt_config(ioc, &cfg)) == 0)
			ioc->biosVersion = le32_to_cpu(ppage_alloc->BiosVersion);

		pci_free_consistent(ioc->pcidev, data_sz, (u8 *) ppage_alloc, page_dma);
	}

	return rc;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
4722 4723
/**
 *	mpt_GetScsiPortSettings - read SCSI Port Page 0 and 2
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 *	@ioc: Pointer to a Adapter Strucutre
 *	@portnum: IOC port number
 *
 *	Return: -EFAULT if read of config page header fails
 *			or if no nvram
 *	If read of SCSI Port Page 0 fails,
 *		NVRAM = MPT_HOST_NVRAM_INVALID  (0xFFFFFFFF)
 *		Adapter settings: async, narrow
 *		Return 1
 *	If read of SCSI Port Page 2 fails,
 *		Adapter settings valid
 *		NVRAM = MPT_HOST_NVRAM_INVALID  (0xFFFFFFFF)
 *		Return 1
 *	Else
 *		Both valid
 *		Return 0
 *	CHECK - what type of locking mechanisms should be used????
 */
static int
mpt_GetScsiPortSettings(MPT_ADAPTER *ioc, int portnum)
{
	u8			*pbuf;
	dma_addr_t		 buf_dma;
	CONFIGPARMS		 cfg;
	ConfigPageHeader_t	 header;
	int			 ii;
	int			 data, rc = 0;

	/* Allocate memory
	 */
	if (!ioc->spi_data.nvram) {
		int	 sz;
		u8	*mem;
		sz = MPT_MAX_SCSI_DEVICES * sizeof(int);
		mem = kmalloc(sz, GFP_ATOMIC);
		if (mem == NULL)
			return -EFAULT;

		ioc->spi_data.nvram = (int *) mem;

		dprintk((MYIOC_s_INFO_FMT "SCSI device NVRAM settings @ %p, sz=%d\n",
			ioc->name, ioc->spi_data.nvram, sz));
	}

	/* Invalidate NVRAM information
	 */
	for (ii=0; ii < MPT_MAX_SCSI_DEVICES; ii++) {
		ioc->spi_data.nvram[ii] = MPT_HOST_NVRAM_INVALID;
	}

	/* Read SPP0 header, allocate memory, then read page.
	 */
	header.PageVersion = 0;
	header.PageLength = 0;
	header.PageNumber = 0;
	header.PageType = MPI_CONFIG_PAGETYPE_SCSI_PORT;
4780
	cfg.cfghdr.hdr = &header;
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4781 4782 4783 4784 4785 4786 4787 4788 4789 4790 4791 4792 4793 4794 4795 4796 4797 4798 4799
	cfg.physAddr = -1;
	cfg.pageAddr = portnum;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	cfg.timeout = 0;	/* use default */
	if (mpt_config(ioc, &cfg) != 0)
		 return -EFAULT;

	if (header.PageLength > 0) {
		pbuf = pci_alloc_consistent(ioc->pcidev, header.PageLength * 4, &buf_dma);
		if (pbuf) {
			cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
			cfg.physAddr = buf_dma;
			if (mpt_config(ioc, &cfg) != 0) {
				ioc->spi_data.maxBusWidth = MPT_NARROW;
				ioc->spi_data.maxSyncOffset = 0;
				ioc->spi_data.minSyncFactor = MPT_ASYNC;
				ioc->spi_data.busType = MPT_HOST_BUS_UNKNOWN;
				rc = 1;
4800 4801
				ddvprintk((MYIOC_s_INFO_FMT "Unable to read PortPage0 minSyncFactor=%x\n",
					ioc->name, ioc->spi_data.minSyncFactor));
L
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4802 4803 4804 4805 4806 4807 4808 4809 4810
			} else {
				/* Save the Port Page 0 data
				 */
				SCSIPortPage0_t  *pPP0 = (SCSIPortPage0_t  *) pbuf;
				pPP0->Capabilities = le32_to_cpu(pPP0->Capabilities);
				pPP0->PhysicalInterface = le32_to_cpu(pPP0->PhysicalInterface);

				if ( (pPP0->Capabilities & MPI_SCSIPORTPAGE0_CAP_QAS) == 0 ) {
					ioc->spi_data.noQas |= MPT_TARGET_NO_NEGO_QAS;
4811
					ddvprintk((KERN_INFO MYNAM " :%s noQas due to Capabilities=%x\n",
L
Linus Torvalds 已提交
4812 4813 4814 4815 4816 4817 4818 4819
						ioc->name, pPP0->Capabilities));
				}
				ioc->spi_data.maxBusWidth = pPP0->Capabilities & MPI_SCSIPORTPAGE0_CAP_WIDE ? 1 : 0;
				data = pPP0->Capabilities & MPI_SCSIPORTPAGE0_CAP_MAX_SYNC_OFFSET_MASK;
				if (data) {
					ioc->spi_data.maxSyncOffset = (u8) (data >> 16);
					data = pPP0->Capabilities & MPI_SCSIPORTPAGE0_CAP_MIN_SYNC_PERIOD_MASK;
					ioc->spi_data.minSyncFactor = (u8) (data >> 8);
4820 4821
					ddvprintk((MYIOC_s_INFO_FMT "PortPage0 minSyncFactor=%x\n",
						ioc->name, ioc->spi_data.minSyncFactor));
L
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4822 4823 4824 4825 4826 4827 4828 4829 4830 4831 4832 4833
				} else {
					ioc->spi_data.maxSyncOffset = 0;
					ioc->spi_data.minSyncFactor = MPT_ASYNC;
				}

				ioc->spi_data.busType = pPP0->PhysicalInterface & MPI_SCSIPORTPAGE0_PHY_SIGNAL_TYPE_MASK;

				/* Update the minSyncFactor based on bus type.
				 */
				if ((ioc->spi_data.busType == MPI_SCSIPORTPAGE0_PHY_SIGNAL_HVD) ||
					(ioc->spi_data.busType == MPI_SCSIPORTPAGE0_PHY_SIGNAL_SE))  {

4834
					if (ioc->spi_data.minSyncFactor < MPT_ULTRA) {
L
Linus Torvalds 已提交
4835
						ioc->spi_data.minSyncFactor = MPT_ULTRA;
4836 4837 4838
						ddvprintk((MYIOC_s_INFO_FMT "HVD or SE detected, minSyncFactor=%x\n",
							ioc->name, ioc->spi_data.minSyncFactor));
					}
L
Linus Torvalds 已提交
4839 4840 4841 4842 4843 4844 4845 4846 4847 4848 4849 4850 4851 4852
				}
			}
			if (pbuf) {
				pci_free_consistent(ioc->pcidev, header.PageLength * 4, pbuf, buf_dma);
			}
		}
	}

	/* SCSI Port Page 2 - Read the header then the page.
	 */
	header.PageVersion = 0;
	header.PageLength = 0;
	header.PageNumber = 2;
	header.PageType = MPI_CONFIG_PAGETYPE_SCSI_PORT;
4853
	cfg.cfghdr.hdr = &header;
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4854 4855 4856 4857 4858 4859 4860 4861 4862 4863 4864 4865 4866 4867 4868 4869 4870 4871 4872 4873 4874 4875
	cfg.physAddr = -1;
	cfg.pageAddr = portnum;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	if (mpt_config(ioc, &cfg) != 0)
		return -EFAULT;

	if (header.PageLength > 0) {
		/* Allocate memory and read SCSI Port Page 2
		 */
		pbuf = pci_alloc_consistent(ioc->pcidev, header.PageLength * 4, &buf_dma);
		if (pbuf) {
			cfg.action = MPI_CONFIG_ACTION_PAGE_READ_NVRAM;
			cfg.physAddr = buf_dma;
			if (mpt_config(ioc, &cfg) != 0) {
				/* Nvram data is left with INVALID mark
				 */
				rc = 1;
			} else {
				SCSIPortPage2_t *pPP2 = (SCSIPortPage2_t  *) pbuf;
				MpiDeviceInfo_t	*pdevice = NULL;

4876 4877 4878 4879 4880 4881 4882 4883
				/*
				 * Save "Set to Avoid SCSI Bus Resets" flag
				 */
				ioc->spi_data.bus_reset =
				    (le32_to_cpu(pPP2->PortFlags) &
			        MPI_SCSIPORTPAGE2_PORT_FLAGS_AVOID_SCSI_RESET) ?
				    0 : 1 ;

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				/* Save the Port Page 2 data
				 * (reformat into a 32bit quantity)
				 */
				data = le32_to_cpu(pPP2->PortFlags) & MPI_SCSIPORTPAGE2_PORT_FLAGS_DV_MASK;
				ioc->spi_data.PortFlags = data;
				for (ii=0; ii < MPT_MAX_SCSI_DEVICES; ii++) {
					pdevice = &pPP2->DeviceSettings[ii];
					data = (le16_to_cpu(pdevice->DeviceFlags) << 16) |
						(pdevice->SyncFactor << 8) | pdevice->Timeout;
					ioc->spi_data.nvram[ii] = data;
				}
			}

			pci_free_consistent(ioc->pcidev, header.PageLength * 4, pbuf, buf_dma);
		}
	}

	/* Update Adapter limits with those from NVRAM
	 * Comment: Don't need to do this. Target performance
	 * parameters will never exceed the adapters limits.
	 */

	return rc;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
4910 4911
/**
 *	mpt_readScsiDevicePageHeaders - save version and length of SDP1
L
Linus Torvalds 已提交
4912 4913 4914 4915 4916 4917 4918 4919 4920 4921 4922 4923 4924 4925 4926 4927 4928 4929
 *	@ioc: Pointer to a Adapter Strucutre
 *	@portnum: IOC port number
 *
 *	Return: -EFAULT if read of config page header fails
 *		or 0 if success.
 */
static int
mpt_readScsiDevicePageHeaders(MPT_ADAPTER *ioc, int portnum)
{
	CONFIGPARMS		 cfg;
	ConfigPageHeader_t	 header;

	/* Read the SCSI Device Page 1 header
	 */
	header.PageVersion = 0;
	header.PageLength = 0;
	header.PageNumber = 1;
	header.PageType = MPI_CONFIG_PAGETYPE_SCSI_DEVICE;
4930
	cfg.cfghdr.hdr = &header;
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Linus Torvalds 已提交
4931 4932 4933 4934 4935 4936 4937 4938
	cfg.physAddr = -1;
	cfg.pageAddr = portnum;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	cfg.timeout = 0;
	if (mpt_config(ioc, &cfg) != 0)
		 return -EFAULT;

4939 4940
	ioc->spi_data.sdp1version = cfg.cfghdr.hdr->PageVersion;
	ioc->spi_data.sdp1length = cfg.cfghdr.hdr->PageLength;
L
Linus Torvalds 已提交
4941 4942 4943 4944 4945 4946 4947 4948

	header.PageVersion = 0;
	header.PageLength = 0;
	header.PageNumber = 0;
	header.PageType = MPI_CONFIG_PAGETYPE_SCSI_DEVICE;
	if (mpt_config(ioc, &cfg) != 0)
		 return -EFAULT;

4949 4950
	ioc->spi_data.sdp0version = cfg.cfghdr.hdr->PageVersion;
	ioc->spi_data.sdp0length = cfg.cfghdr.hdr->PageLength;
L
Linus Torvalds 已提交
4951 4952 4953 4954 4955 4956 4957 4958 4959

	dcprintk((MYIOC_s_INFO_FMT "Headers: 0: version %d length %d\n",
			ioc->name, ioc->spi_data.sdp0version, ioc->spi_data.sdp0length));

	dcprintk((MYIOC_s_INFO_FMT "Headers: 1: version %d length %d\n",
			ioc->name, ioc->spi_data.sdp1version, ioc->spi_data.sdp1length));
	return 0;
}

4960
/**
4961 4962
 * mpt_inactive_raid_list_free - This clears this link list.
 * @ioc : pointer to per adapter structure
4963 4964 4965 4966 4967 4968 4969 4970 4971 4972 4973 4974 4975 4976 4977 4978 4979 4980 4981
 **/
static void
mpt_inactive_raid_list_free(MPT_ADAPTER *ioc)
{
	struct inactive_raid_component_info *component_info, *pNext;

	if (list_empty(&ioc->raid_data.inactive_list))
		return;

	down(&ioc->raid_data.inactive_list_mutex);
	list_for_each_entry_safe(component_info, pNext,
	    &ioc->raid_data.inactive_list, list) {
		list_del(&component_info->list);
		kfree(component_info);
	}
	up(&ioc->raid_data.inactive_list_mutex);
}

/**
4982
 * mpt_inactive_raid_volumes - sets up link list of phy_disk_nums for devices belonging in an inactive volume
4983
 *
4984 4985 4986
 * @ioc : pointer to per adapter structure
 * @channel : volume channel
 * @id : volume target id
4987 4988 4989 4990 4991 4992 4993 4994 4995 4996 4997 4998 4999 5000 5001 5002 5003 5004 5005 5006 5007 5008 5009 5010 5011 5012 5013 5014 5015 5016 5017 5018 5019 5020 5021 5022 5023 5024 5025 5026 5027 5028 5029 5030 5031 5032 5033 5034 5035 5036 5037 5038 5039 5040 5041 5042 5043 5044 5045 5046 5047 5048 5049 5050 5051 5052 5053 5054 5055 5056 5057 5058 5059 5060 5061 5062 5063 5064 5065 5066 5067 5068 5069 5070 5071 5072 5073 5074 5075 5076 5077 5078 5079 5080 5081 5082 5083 5084 5085 5086 5087 5088 5089 5090 5091 5092 5093 5094 5095 5096 5097 5098 5099 5100 5101 5102 5103 5104 5105 5106 5107 5108 5109 5110 5111 5112 5113 5114 5115 5116 5117 5118 5119 5120 5121 5122 5123 5124 5125 5126 5127 5128 5129 5130 5131 5132
 **/
static void
mpt_inactive_raid_volumes(MPT_ADAPTER *ioc, u8 channel, u8 id)
{
	CONFIGPARMS			cfg;
	ConfigPageHeader_t		hdr;
	dma_addr_t			dma_handle;
	pRaidVolumePage0_t		buffer = NULL;
	int				i;
	RaidPhysDiskPage0_t 		phys_disk;
	struct inactive_raid_component_info *component_info;
	int				handle_inactive_volumes;

	memset(&cfg, 0 , sizeof(CONFIGPARMS));
	memset(&hdr, 0 , sizeof(ConfigPageHeader_t));
	hdr.PageType = MPI_CONFIG_PAGETYPE_RAID_VOLUME;
	cfg.pageAddr = (channel << 8) + id;
	cfg.cfghdr.hdr = &hdr;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;

	if (mpt_config(ioc, &cfg) != 0)
		goto out;

	if (!hdr.PageLength)
		goto out;

	buffer = pci_alloc_consistent(ioc->pcidev, hdr.PageLength * 4,
	    &dma_handle);

	if (!buffer)
		goto out;

	cfg.physAddr = dma_handle;
	cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;

	if (mpt_config(ioc, &cfg) != 0)
		goto out;

	if (!buffer->NumPhysDisks)
		goto out;

	handle_inactive_volumes =
	   (buffer->VolumeStatus.Flags & MPI_RAIDVOL0_STATUS_FLAG_VOLUME_INACTIVE ||
	   (buffer->VolumeStatus.Flags & MPI_RAIDVOL0_STATUS_FLAG_ENABLED) == 0 ||
	    buffer->VolumeStatus.State == MPI_RAIDVOL0_STATUS_STATE_FAILED ||
	    buffer->VolumeStatus.State == MPI_RAIDVOL0_STATUS_STATE_MISSING) ? 1 : 0;

	if (!handle_inactive_volumes)
		goto out;

	down(&ioc->raid_data.inactive_list_mutex);
	for (i = 0; i < buffer->NumPhysDisks; i++) {
		if(mpt_raid_phys_disk_pg0(ioc,
		    buffer->PhysDisk[i].PhysDiskNum, &phys_disk) != 0)
			continue;

		if ((component_info = kmalloc(sizeof (*component_info),
		 GFP_KERNEL)) == NULL)
			continue;

		component_info->volumeID = id;
		component_info->volumeBus = channel;
		component_info->d.PhysDiskNum = phys_disk.PhysDiskNum;
		component_info->d.PhysDiskBus = phys_disk.PhysDiskBus;
		component_info->d.PhysDiskID = phys_disk.PhysDiskID;
		component_info->d.PhysDiskIOC = phys_disk.PhysDiskIOC;

		list_add_tail(&component_info->list,
		    &ioc->raid_data.inactive_list);
	}
	up(&ioc->raid_data.inactive_list_mutex);

 out:
	if (buffer)
		pci_free_consistent(ioc->pcidev, hdr.PageLength * 4, buffer,
		    dma_handle);
}

/**
 *	mpt_raid_phys_disk_pg0 - returns phys disk page zero
 *	@ioc: Pointer to a Adapter Structure
 *	@phys_disk_num: io unit unique phys disk num generated by the ioc
 *	@phys_disk: requested payload data returned
 *
 *	Return:
 *	0 on success
 *	-EFAULT if read of config page header fails or data pointer not NULL
 *	-ENOMEM if pci_alloc failed
 **/
int
mpt_raid_phys_disk_pg0(MPT_ADAPTER *ioc, u8 phys_disk_num, pRaidPhysDiskPage0_t phys_disk)
{
	CONFIGPARMS		 	cfg;
	ConfigPageHeader_t	 	hdr;
	dma_addr_t			dma_handle;
	pRaidPhysDiskPage0_t		buffer = NULL;
	int				rc;

	memset(&cfg, 0 , sizeof(CONFIGPARMS));
	memset(&hdr, 0 , sizeof(ConfigPageHeader_t));

	hdr.PageType = MPI_CONFIG_PAGETYPE_RAID_PHYSDISK;
	cfg.cfghdr.hdr = &hdr;
	cfg.physAddr = -1;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;

	if (mpt_config(ioc, &cfg) != 0) {
		rc = -EFAULT;
		goto out;
	}

	if (!hdr.PageLength) {
		rc = -EFAULT;
		goto out;
	}

	buffer = pci_alloc_consistent(ioc->pcidev, hdr.PageLength * 4,
	    &dma_handle);

	if (!buffer) {
		rc = -ENOMEM;
		goto out;
	}

	cfg.physAddr = dma_handle;
	cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
	cfg.pageAddr = phys_disk_num;

	if (mpt_config(ioc, &cfg) != 0) {
		rc = -EFAULT;
		goto out;
	}

	rc = 0;
	memcpy(phys_disk, buffer, sizeof(*buffer));
	phys_disk->MaxLBA = le32_to_cpu(buffer->MaxLBA);

 out:

	if (buffer)
		pci_free_consistent(ioc->pcidev, hdr.PageLength * 4, buffer,
		    dma_handle);

	return rc;
}

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/**
 *	mpt_findImVolumes - Identify IDs of hidden disks and RAID Volumes
 *	@ioc: Pointer to a Adapter Strucutre
 *	@portnum: IOC port number
 *
 *	Return:
 *	0 on success
 *	-EFAULT if read of config page header fails or data pointer not NULL
 *	-ENOMEM if pci_alloc failed
5142
 **/
L
Linus Torvalds 已提交
5143 5144 5145 5146 5147 5148 5149 5150 5151 5152
int
mpt_findImVolumes(MPT_ADAPTER *ioc)
{
	IOCPage2_t		*pIoc2;
	u8			*mem;
	dma_addr_t		 ioc2_dma;
	CONFIGPARMS		 cfg;
	ConfigPageHeader_t	 header;
	int			 rc = 0;
	int			 iocpage2sz;
5153 5154 5155 5156 5157 5158 5159 5160 5161 5162
	int			 i;

	if (!ioc->ir_firmware)
		return 0;

	/* Free the old page
	 */
	kfree(ioc->raid_data.pIocPg2);
	ioc->raid_data.pIocPg2 = NULL;
	mpt_inactive_raid_list_free(ioc);
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5163 5164 5165 5166 5167 5168 5169

	/* Read IOCP2 header then the page.
	 */
	header.PageVersion = 0;
	header.PageLength = 0;
	header.PageNumber = 2;
	header.PageType = MPI_CONFIG_PAGETYPE_IOC;
5170
	cfg.cfghdr.hdr = &header;
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5171 5172 5173 5174 5175 5176 5177 5178 5179 5180 5181 5182 5183 5184 5185 5186 5187 5188 5189
	cfg.physAddr = -1;
	cfg.pageAddr = 0;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	cfg.timeout = 0;
	if (mpt_config(ioc, &cfg) != 0)
		 return -EFAULT;

	if (header.PageLength == 0)
		return -EFAULT;

	iocpage2sz = header.PageLength * 4;
	pIoc2 = pci_alloc_consistent(ioc->pcidev, iocpage2sz, &ioc2_dma);
	if (!pIoc2)
		return -ENOMEM;

	cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
	cfg.physAddr = ioc2_dma;
	if (mpt_config(ioc, &cfg) != 0)
5190 5191 5192 5193 5194
		goto out;

	mem = kmalloc(iocpage2sz, GFP_KERNEL);
	if (!mem)
		goto out;
L
Linus Torvalds 已提交
5195 5196

	memcpy(mem, (u8 *)pIoc2, iocpage2sz);
5197
	ioc->raid_data.pIocPg2 = (IOCPage2_t *) mem;
L
Linus Torvalds 已提交
5198

5199
	mpt_read_ioc_pg_3(ioc);
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5200

5201 5202 5203 5204
	for (i = 0; i < pIoc2->NumActiveVolumes ; i++)
		mpt_inactive_raid_volumes(ioc,
		    pIoc2->RaidVolume[i].VolumeBus,
		    pIoc2->RaidVolume[i].VolumeID);
L
Linus Torvalds 已提交
5205

5206
 out:
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5207 5208 5209 5210 5211
	pci_free_consistent(ioc->pcidev, iocpage2sz, pIoc2, ioc2_dma);

	return rc;
}

M
Moore, Eric 已提交
5212
static int
L
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5213 5214 5215 5216 5217 5218 5219 5220 5221 5222 5223
mpt_read_ioc_pg_3(MPT_ADAPTER *ioc)
{
	IOCPage3_t		*pIoc3;
	u8			*mem;
	CONFIGPARMS		 cfg;
	ConfigPageHeader_t	 header;
	dma_addr_t		 ioc3_dma;
	int			 iocpage3sz = 0;

	/* Free the old page
	 */
5224 5225
	kfree(ioc->raid_data.pIocPg3);
	ioc->raid_data.pIocPg3 = NULL;
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5226 5227 5228 5229 5230 5231 5232 5233

	/* There is at least one physical disk.
	 * Read and save IOC Page 3
	 */
	header.PageVersion = 0;
	header.PageLength = 0;
	header.PageNumber = 3;
	header.PageType = MPI_CONFIG_PAGETYPE_IOC;
5234
	cfg.cfghdr.hdr = &header;
L
Linus Torvalds 已提交
5235 5236 5237 5238 5239 5240 5241 5242 5243 5244 5245 5246 5247 5248 5249 5250 5251 5252 5253 5254 5255 5256 5257 5258
	cfg.physAddr = -1;
	cfg.pageAddr = 0;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	cfg.timeout = 0;
	if (mpt_config(ioc, &cfg) != 0)
		return 0;

	if (header.PageLength == 0)
		return 0;

	/* Read Header good, alloc memory
	 */
	iocpage3sz = header.PageLength * 4;
	pIoc3 = pci_alloc_consistent(ioc->pcidev, iocpage3sz, &ioc3_dma);
	if (!pIoc3)
		return 0;

	/* Read the Page and save the data
	 * into malloc'd memory.
	 */
	cfg.physAddr = ioc3_dma;
	cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
	if (mpt_config(ioc, &cfg) == 0) {
5259
		mem = kmalloc(iocpage3sz, GFP_KERNEL);
L
Linus Torvalds 已提交
5260 5261
		if (mem) {
			memcpy(mem, (u8 *)pIoc3, iocpage3sz);
5262
			ioc->raid_data.pIocPg3 = (IOCPage3_t *) mem;
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5263 5264 5265 5266 5267 5268 5269 5270 5271 5272 5273 5274 5275 5276 5277 5278 5279 5280 5281 5282 5283 5284 5285
		}
	}

	pci_free_consistent(ioc->pcidev, iocpage3sz, pIoc3, ioc3_dma);

	return 0;
}

static void
mpt_read_ioc_pg_4(MPT_ADAPTER *ioc)
{
	IOCPage4_t		*pIoc4;
	CONFIGPARMS		 cfg;
	ConfigPageHeader_t	 header;
	dma_addr_t		 ioc4_dma;
	int			 iocpage4sz;

	/* Read and save IOC Page 4
	 */
	header.PageVersion = 0;
	header.PageLength = 0;
	header.PageNumber = 4;
	header.PageType = MPI_CONFIG_PAGETYPE_IOC;
5286
	cfg.cfghdr.hdr = &header;
L
Linus Torvalds 已提交
5287 5288 5289 5290 5291 5292 5293 5294 5295 5296 5297 5298 5299 5300 5301 5302
	cfg.physAddr = -1;
	cfg.pageAddr = 0;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	cfg.timeout = 0;
	if (mpt_config(ioc, &cfg) != 0)
		return;

	if (header.PageLength == 0)
		return;

	if ( (pIoc4 = ioc->spi_data.pIocPg4) == NULL ) {
		iocpage4sz = (header.PageLength + 4) * 4; /* Allow 4 additional SEP's */
		pIoc4 = pci_alloc_consistent(ioc->pcidev, iocpage4sz, &ioc4_dma);
		if (!pIoc4)
			return;
5303
		ioc->alloc_total += iocpage4sz;
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5304 5305 5306 5307 5308 5309 5310 5311 5312 5313 5314 5315 5316 5317 5318 5319
	} else {
		ioc4_dma = ioc->spi_data.IocPg4_dma;
		iocpage4sz = ioc->spi_data.IocPg4Sz;
	}

	/* Read the Page into dma memory.
	 */
	cfg.physAddr = ioc4_dma;
	cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
	if (mpt_config(ioc, &cfg) == 0) {
		ioc->spi_data.pIocPg4 = (IOCPage4_t *) pIoc4;
		ioc->spi_data.IocPg4_dma = ioc4_dma;
		ioc->spi_data.IocPg4Sz = iocpage4sz;
	} else {
		pci_free_consistent(ioc->pcidev, iocpage4sz, pIoc4, ioc4_dma);
		ioc->spi_data.pIocPg4 = NULL;
5320
		ioc->alloc_total -= iocpage4sz;
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5321 5322 5323 5324 5325 5326 5327 5328 5329 5330 5331 5332 5333 5334 5335 5336 5337 5338 5339
	}
}

static void
mpt_read_ioc_pg_1(MPT_ADAPTER *ioc)
{
	IOCPage1_t		*pIoc1;
	CONFIGPARMS		 cfg;
	ConfigPageHeader_t	 header;
	dma_addr_t		 ioc1_dma;
	int			 iocpage1sz = 0;
	u32			 tmp;

	/* Check the Coalescing Timeout in IOC Page 1
	 */
	header.PageVersion = 0;
	header.PageLength = 0;
	header.PageNumber = 1;
	header.PageType = MPI_CONFIG_PAGETYPE_IOC;
5340
	cfg.cfghdr.hdr = &header;
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5341 5342 5343 5344 5345 5346 5347 5348 5349 5350 5351 5352 5353 5354 5355 5356 5357 5358 5359 5360 5361 5362 5363 5364 5365 5366 5367 5368 5369 5370 5371 5372 5373 5374 5375 5376 5377 5378 5379 5380 5381 5382 5383 5384 5385 5386 5387 5388 5389 5390 5391 5392 5393 5394 5395 5396 5397 5398 5399 5400 5401 5402 5403 5404 5405 5406 5407
	cfg.physAddr = -1;
	cfg.pageAddr = 0;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.dir = 0;
	cfg.timeout = 0;
	if (mpt_config(ioc, &cfg) != 0)
		return;

	if (header.PageLength == 0)
		return;

	/* Read Header good, alloc memory
	 */
	iocpage1sz = header.PageLength * 4;
	pIoc1 = pci_alloc_consistent(ioc->pcidev, iocpage1sz, &ioc1_dma);
	if (!pIoc1)
		return;

	/* Read the Page and check coalescing timeout
	 */
	cfg.physAddr = ioc1_dma;
	cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
	if (mpt_config(ioc, &cfg) == 0) {
		
		tmp = le32_to_cpu(pIoc1->Flags) & MPI_IOCPAGE1_REPLY_COALESCING;
		if (tmp == MPI_IOCPAGE1_REPLY_COALESCING) {
			tmp = le32_to_cpu(pIoc1->CoalescingTimeout);

			dprintk((MYIOC_s_INFO_FMT "Coalescing Enabled Timeout = %d\n",
					ioc->name, tmp));

			if (tmp > MPT_COALESCING_TIMEOUT) {
				pIoc1->CoalescingTimeout = cpu_to_le32(MPT_COALESCING_TIMEOUT);

				/* Write NVRAM and current
				 */
				cfg.dir = 1;
				cfg.action = MPI_CONFIG_ACTION_PAGE_WRITE_CURRENT;
				if (mpt_config(ioc, &cfg) == 0) {
					dprintk((MYIOC_s_INFO_FMT "Reset Current Coalescing Timeout to = %d\n",
							ioc->name, MPT_COALESCING_TIMEOUT));

					cfg.action = MPI_CONFIG_ACTION_PAGE_WRITE_NVRAM;
					if (mpt_config(ioc, &cfg) == 0) {
						dprintk((MYIOC_s_INFO_FMT "Reset NVRAM Coalescing Timeout to = %d\n",
								ioc->name, MPT_COALESCING_TIMEOUT));
					} else {
						dprintk((MYIOC_s_INFO_FMT "Reset NVRAM Coalescing Timeout Failed\n",
									ioc->name));
					}

				} else {
					dprintk((MYIOC_s_WARN_FMT "Reset of Current Coalescing Timeout Failed!\n",
								ioc->name));
				}
			}

		} else {
			dprintk((MYIOC_s_WARN_FMT "Coalescing Disabled\n", ioc->name));
		}
	}

	pci_free_consistent(ioc->pcidev, iocpage1sz, pIoc1, ioc1_dma);

	return;
}

5408 5409 5410 5411 5412 5413 5414 5415 5416 5417 5418 5419 5420 5421 5422 5423 5424 5425 5426 5427 5428 5429 5430 5431 5432 5433 5434 5435 5436 5437 5438 5439 5440 5441 5442 5443 5444 5445 5446 5447 5448 5449 5450
static void
mpt_get_manufacturing_pg_0(MPT_ADAPTER *ioc)
{
	CONFIGPARMS		cfg;
	ConfigPageHeader_t	hdr;
	dma_addr_t		buf_dma;
	ManufacturingPage0_t	*pbuf = NULL;

	memset(&cfg, 0 , sizeof(CONFIGPARMS));
	memset(&hdr, 0 , sizeof(ConfigPageHeader_t));

	hdr.PageType = MPI_CONFIG_PAGETYPE_MANUFACTURING;
	cfg.cfghdr.hdr = &hdr;
	cfg.physAddr = -1;
	cfg.action = MPI_CONFIG_ACTION_PAGE_HEADER;
	cfg.timeout = 10;

	if (mpt_config(ioc, &cfg) != 0)
		goto out;

	if (!cfg.cfghdr.hdr->PageLength)
		goto out;

	cfg.action = MPI_CONFIG_ACTION_PAGE_READ_CURRENT;
	pbuf = pci_alloc_consistent(ioc->pcidev, hdr.PageLength * 4, &buf_dma);
	if (!pbuf)
		goto out;

	cfg.physAddr = buf_dma;

	if (mpt_config(ioc, &cfg) != 0)
		goto out;

	memcpy(ioc->board_name, pbuf->BoardName, sizeof(ioc->board_name));
	memcpy(ioc->board_assembly, pbuf->BoardAssembly, sizeof(ioc->board_assembly));
	memcpy(ioc->board_tracer, pbuf->BoardTracerNumber, sizeof(ioc->board_tracer));

	out:

	if (pbuf)
		pci_free_consistent(ioc->pcidev, hdr.PageLength * 4, pbuf, buf_dma);
}

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/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
5452 5453
/**
 *	SendEventNotification - Send EventNotification (on or off) request to adapter
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 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@EvSwitch: Event switch flags
 */
static int
SendEventNotification(MPT_ADAPTER *ioc, u8 EvSwitch)
{
	EventNotification_t	*evnp;

	evnp = (EventNotification_t *) mpt_get_msg_frame(mpt_base_index, ioc);
	if (evnp == NULL) {
5464
		devtverboseprintk((MYIOC_s_WARN_FMT "Unable to allocate event request frame!\n",
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Linus Torvalds 已提交
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				ioc->name));
		return 0;
	}
	memset(evnp, 0, sizeof(*evnp));

5470
	devtverboseprintk((MYIOC_s_INFO_FMT "Sending EventNotification (%d) request %p\n", ioc->name, EvSwitch, evnp));
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	evnp->Function = MPI_FUNCTION_EVENT_NOTIFICATION;
	evnp->ChainOffset = 0;
	evnp->MsgFlags = 0;
	evnp->Switch = EvSwitch;

	mpt_put_msg_frame(mpt_base_index, ioc, (MPT_FRAME_HDR *)evnp);

	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	SendEventAck - Send EventAck request to MPT adapter.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@evnp: Pointer to original EventNotification request
 */
static int
SendEventAck(MPT_ADAPTER *ioc, EventNotificationReply_t *evnp)
{
	EventAck_t	*pAck;

	if ((pAck = (EventAck_t *) mpt_get_msg_frame(mpt_base_index, ioc)) == NULL) {
5494 5495
		dfailprintk((MYIOC_s_WARN_FMT "%s, no msg frames!!\n",
		    ioc->name,__FUNCTION__));
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		return -1;
	}

5499
	devtverboseprintk((MYIOC_s_INFO_FMT "Sending EventAck\n", ioc->name));
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5500 5501 5502

	pAck->Function     = MPI_FUNCTION_EVENT_ACK;
	pAck->ChainOffset  = 0;
5503
	pAck->Reserved[0]  = pAck->Reserved[1] = 0;
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5504
	pAck->MsgFlags     = 0;
5505
	pAck->Reserved1[0] = pAck->Reserved1[1] = pAck->Reserved1[2] = 0;
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	pAck->Event        = evnp->Event;
	pAck->EventContext = evnp->EventContext;

	mpt_put_msg_frame(mpt_base_index, ioc, (MPT_FRAME_HDR *)pAck);

	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_config - Generic function to issue config message
5517 5518
 *	@ioc:   Pointer to an adapter structure
 *	@pCfg:  Pointer to a configuration structure. Struct contains
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 *		action, page address, direction, physical address
 *		and pointer to a configuration page header
 *		Page header is updated.
 *
 *	Returns 0 for success
 *	-EPERM if not allowed due to ISR context
 *	-EAGAIN if no msg frames currently available
 *	-EFAULT for non-successful reply or no reply (timeout)
 */
int
mpt_config(MPT_ADAPTER *ioc, CONFIGPARMS *pCfg)
{
	Config_t	*pReq;
5532
	ConfigExtendedPageHeader_t  *pExtHdr = NULL;
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	MPT_FRAME_HDR	*mf;
	unsigned long	 flags;
	int		 ii, rc;
5536
	int		 flagsLength;
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	int		 in_isr;

5539
	/*	Prevent calling wait_event() (below), if caller happens
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	 *	to be in ISR context, because that is fatal!
	 */
	in_isr = in_interrupt();
	if (in_isr) {
		dcprintk((MYIOC_s_WARN_FMT "Config request not allowed in ISR context!\n",
				ioc->name));
		return -EPERM;
	}

	/* Get and Populate a free Frame
	 */
	if ((mf = mpt_get_msg_frame(mpt_base_index, ioc)) == NULL) {
		dcprintk((MYIOC_s_WARN_FMT "mpt_config: no msg frames!\n",
				ioc->name));
		return -EAGAIN;
	}
	pReq = (Config_t *)mf;
	pReq->Action = pCfg->action;
	pReq->Reserved = 0;
	pReq->ChainOffset = 0;
	pReq->Function = MPI_FUNCTION_CONFIG;
5561 5562

	/* Assume page type is not extended and clear "reserved" fields. */
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	pReq->ExtPageLength = 0;
	pReq->ExtPageType = 0;
	pReq->MsgFlags = 0;
5566

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	for (ii=0; ii < 8; ii++)
		pReq->Reserved2[ii] = 0;

5570 5571 5572 5573 5574 5575 5576 5577 5578 5579 5580 5581 5582 5583 5584
	pReq->Header.PageVersion = pCfg->cfghdr.hdr->PageVersion;
	pReq->Header.PageLength = pCfg->cfghdr.hdr->PageLength;
	pReq->Header.PageNumber = pCfg->cfghdr.hdr->PageNumber;
	pReq->Header.PageType = (pCfg->cfghdr.hdr->PageType & MPI_CONFIG_PAGETYPE_MASK);

	if ((pCfg->cfghdr.hdr->PageType & MPI_CONFIG_PAGETYPE_MASK) == MPI_CONFIG_PAGETYPE_EXTENDED) {
		pExtHdr = (ConfigExtendedPageHeader_t *)pCfg->cfghdr.ehdr;
		pReq->ExtPageLength = cpu_to_le16(pExtHdr->ExtPageLength);
		pReq->ExtPageType = pExtHdr->ExtPageType;
		pReq->Header.PageType = MPI_CONFIG_PAGETYPE_EXTENDED;

		/* Page Length must be treated as a reserved field for the extended header. */
		pReq->Header.PageLength = 0;
	}

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	pReq->PageAddress = cpu_to_le32(pCfg->pageAddr);

	/* Add a SGE to the config request.
	 */
	if (pCfg->dir)
		flagsLength = MPT_SGE_FLAGS_SSIMPLE_WRITE;
	else
		flagsLength = MPT_SGE_FLAGS_SSIMPLE_READ;

5594 5595
	if ((pCfg->cfghdr.hdr->PageType & MPI_CONFIG_PAGETYPE_MASK) == MPI_CONFIG_PAGETYPE_EXTENDED) {
		flagsLength |= pExtHdr->ExtPageLength * 4;
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5597 5598 5599 5600 5601
		dcprintk((MYIOC_s_INFO_FMT "Sending Config request type %d, page %d and action %d\n",
			ioc->name, pReq->ExtPageType, pReq->Header.PageNumber, pReq->Action));
	}
	else {
		flagsLength |= pCfg->cfghdr.hdr->PageLength * 4;
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5603 5604 5605 5606 5607
		dcprintk((MYIOC_s_INFO_FMT "Sending Config request type %d, page %d and action %d\n",
			ioc->name, pReq->Header.PageType, pReq->Header.PageNumber, pReq->Action));
	}

	mpt_add_sge((char *)&pReq->PageBufferSGE, flagsLength, pCfg->physAddr);
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	/* Append pCfg pointer to end of mf
	 */
	*((void **) (((u8 *) mf) + (ioc->req_sz - sizeof(void *)))) =  (void *) pCfg;

	/* Initalize the timer
	 */
	init_timer(&pCfg->timer);
	pCfg->timer.data = (unsigned long) ioc;
	pCfg->timer.function = mpt_timer_expired;
	pCfg->wait_done = 0;

	/* Set the timer; ensure 10 second minimum */
	if (pCfg->timeout < 10)
		pCfg->timer.expires = jiffies + HZ*10;
	else
		pCfg->timer.expires = jiffies + HZ*pCfg->timeout;

	/* Add to end of Q, set timer and then issue this command */
	spin_lock_irqsave(&ioc->FreeQlock, flags);
	list_add_tail(&pCfg->linkage, &ioc->configQ);
	spin_unlock_irqrestore(&ioc->FreeQlock, flags);

	add_timer(&pCfg->timer);
	mpt_put_msg_frame(mpt_base_index, ioc, mf);
	wait_event(mpt_waitq, pCfg->wait_done);

	/* mf has been freed - do not access */

	rc = pCfg->status;

	return rc;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
5643 5644
/**
 *	mpt_timer_expired - Callback for timer process.
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5645 5646 5647 5648 5649 5650 5651 5652 5653 5654 5655 5656 5657 5658 5659 5660 5661 5662 5663 5664 5665 5666 5667 5668
 *	Used only internal config functionality.
 *	@data: Pointer to MPT_SCSI_HOST recast as an unsigned long
 */
static void
mpt_timer_expired(unsigned long data)
{
	MPT_ADAPTER *ioc = (MPT_ADAPTER *) data;

	dcprintk((MYIOC_s_WARN_FMT "mpt_timer_expired! \n", ioc->name));

	/* Perform a FW reload */
	if (mpt_HardResetHandler(ioc, NO_SLEEP) < 0)
		printk(MYIOC_s_WARN_FMT "Firmware Reload FAILED!\n", ioc->name);

	/* No more processing.
	 * Hard reset clean-up will wake up
	 * process and free all resources.
	 */
	dcprintk((MYIOC_s_WARN_FMT "mpt_timer_expired complete!\n", ioc->name));

	return;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
5669
/**
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 *	mpt_ioc_reset - Base cleanup for hard reset
 *	@ioc: Pointer to the adapter structure
 *	@reset_phase: Indicates pre- or post-reset functionality
 *
5674
 *	Remark: Frees resources with internally generated commands.
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 */
static int
mpt_ioc_reset(MPT_ADAPTER *ioc, int reset_phase)
{
	CONFIGPARMS *pCfg;
	unsigned long flags;

	dprintk((KERN_WARNING MYNAM
			": IOC %s_reset routed to MPT base driver!\n",
			reset_phase==MPT_IOC_SETUP_RESET ? "setup" : (
			reset_phase==MPT_IOC_PRE_RESET ? "pre" : "post")));

	if (reset_phase == MPT_IOC_SETUP_RESET) {
		;
	} else if (reset_phase == MPT_IOC_PRE_RESET) {
		/* If the internal config Q is not empty -
		 * delete timer. MF resources will be freed when
		 * the FIFO's are primed.
		 */
		spin_lock_irqsave(&ioc->FreeQlock, flags);
		list_for_each_entry(pCfg, &ioc->configQ, linkage)
			del_timer(&pCfg->timer);
		spin_unlock_irqrestore(&ioc->FreeQlock, flags);

	} else {
		CONFIGPARMS *pNext;

		/* Search the configQ for internal commands.
		 * Flush the Q, and wake up all suspended threads.
		 */
		spin_lock_irqsave(&ioc->FreeQlock, flags);
		list_for_each_entry_safe(pCfg, pNext, &ioc->configQ, linkage) {
			list_del(&pCfg->linkage);

			pCfg->status = MPT_CONFIG_ERROR;
			pCfg->wait_done = 1;
			wake_up(&mpt_waitq);
		}
		spin_unlock_irqrestore(&ioc->FreeQlock, flags);
	}

	return 1;		/* currently means nothing really */
}


#ifdef CONFIG_PROC_FS		/* { */
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/*
 *	procfs (%MPT_PROCFS_MPTBASEDIR/...) support stuff...
 */
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
5726
/**
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Linus Torvalds 已提交
5727 5728 5729 5730 5731 5732 5733 5734 5735 5736 5737 5738 5739 5740 5741 5742 5743 5744 5745 5746 5747 5748 5749 5750 5751
 *	procmpt_create - Create %MPT_PROCFS_MPTBASEDIR entries.
 *
 *	Returns 0 for success, non-zero for failure.
 */
static int
procmpt_create(void)
{
	struct proc_dir_entry	*ent;

	mpt_proc_root_dir = proc_mkdir(MPT_PROCFS_MPTBASEDIR, NULL);
	if (mpt_proc_root_dir == NULL)
		return -ENOTDIR;

	ent = create_proc_entry("summary", S_IFREG|S_IRUGO, mpt_proc_root_dir);
	if (ent)
		ent->read_proc = procmpt_summary_read;

	ent = create_proc_entry("version", S_IFREG|S_IRUGO, mpt_proc_root_dir);
	if (ent)
		ent->read_proc = procmpt_version_read;

	return 0;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
5752
/**
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Linus Torvalds 已提交
5753 5754 5755 5756 5757 5758 5759 5760 5761 5762 5763 5764 5765
 *	procmpt_destroy - Tear down %MPT_PROCFS_MPTBASEDIR entries.
 *
 *	Returns 0 for success, non-zero for failure.
 */
static void
procmpt_destroy(void)
{
	remove_proc_entry("version", mpt_proc_root_dir);
	remove_proc_entry("summary", mpt_proc_root_dir);
	remove_proc_entry(MPT_PROCFS_MPTBASEDIR, NULL);
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
5766 5767
/**
 *	procmpt_summary_read - Handle read request of a summary file
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5768 5769 5770
 *	@buf: Pointer to area to write information
 *	@start: Pointer to start pointer
 *	@offset: Offset to start writing
5771
 *	@request: Amount of read data requested
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5772 5773 5774
 *	@eof: Pointer to EOF integer
 *	@data: Pointer
 *
5775
 *	Handles read request from /proc/mpt/summary or /proc/mpt/iocN/summary.
L
Linus Torvalds 已提交
5776 5777 5778 5779 5780 5781 5782 5783 5784 5785 5786 5787 5788 5789 5790 5791 5792 5793 5794 5795 5796 5797 5798 5799 5800 5801 5802 5803 5804 5805 5806 5807 5808 5809
 *	Returns number of characters written to process performing the read.
 */
static int
procmpt_summary_read(char *buf, char **start, off_t offset, int request, int *eof, void *data)
{
	MPT_ADAPTER *ioc;
	char *out = buf;
	int len;

	if (data) {
		int more = 0;

		ioc = data;
		mpt_print_ioc_summary(ioc, out, &more, 0, 1);

		out += more;
	} else {
		list_for_each_entry(ioc, &ioc_list, list) {
			int	more = 0;

			mpt_print_ioc_summary(ioc, out, &more, 0, 1);

			out += more;
			if ((out-buf) >= request)
				break;
		}
	}

	len = out - buf;

	MPT_PROC_READ_RETURN(buf,start,offset,request,eof,len);
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
5810
/**
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Linus Torvalds 已提交
5811 5812 5813 5814
 *	procmpt_version_read - Handle read request from /proc/mpt/version.
 *	@buf: Pointer to area to write information
 *	@start: Pointer to start pointer
 *	@offset: Offset to start writing
5815
 *	@request: Amount of read data requested
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Linus Torvalds 已提交
5816 5817 5818 5819 5820 5821 5822 5823 5824
 *	@eof: Pointer to EOF integer
 *	@data: Pointer
 *
 *	Returns number of characters written to process performing the read.
 */
static int
procmpt_version_read(char *buf, char **start, off_t offset, int request, int *eof, void *data)
{
	int	 ii;
5825
	int	 scsi, fc, sas, lan, ctl, targ, dmp;
L
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5826 5827 5828 5829 5830 5831
	char	*drvname;
	int	 len;

	len = sprintf(buf, "%s-%s\n", "mptlinux", MPT_LINUX_VERSION_COMMON);
	len += sprintf(buf+len, "  Fusion MPT base driver\n");

5832
	scsi = fc = sas = lan = ctl = targ = dmp = 0;
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5833 5834 5835 5836
	for (ii=MPT_MAX_PROTOCOL_DRIVERS-1; ii; ii--) {
		drvname = NULL;
		if (MptCallbacks[ii]) {
			switch (MptDriverClass[ii]) {
5837 5838 5839 5840 5841 5842 5843 5844
			case MPTSPI_DRIVER:
				if (!scsi++) drvname = "SPI host";
				break;
			case MPTFC_DRIVER:
				if (!fc++) drvname = "FC host";
				break;
			case MPTSAS_DRIVER:
				if (!sas++) drvname = "SAS host";
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5845 5846 5847 5848 5849 5850 5851 5852 5853 5854 5855 5856 5857 5858 5859 5860 5861 5862 5863 5864 5865
				break;
			case MPTLAN_DRIVER:
				if (!lan++) drvname = "LAN";
				break;
			case MPTSTM_DRIVER:
				if (!targ++) drvname = "SCSI target";
				break;
			case MPTCTL_DRIVER:
				if (!ctl++) drvname = "ioctl";
				break;
			}

			if (drvname)
				len += sprintf(buf+len, "  Fusion MPT %s driver\n", drvname);
		}
	}

	MPT_PROC_READ_RETURN(buf,start,offset,request,eof,len);
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
5866
/**
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 *	procmpt_iocinfo_read - Handle read request from /proc/mpt/iocN/info.
 *	@buf: Pointer to area to write information
 *	@start: Pointer to start pointer
 *	@offset: Offset to start writing
5871
 *	@request: Amount of read data requested
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 *	@eof: Pointer to EOF integer
 *	@data: Pointer
 *
 *	Returns number of characters written to process performing the read.
 */
static int
procmpt_iocinfo_read(char *buf, char **start, off_t offset, int request, int *eof, void *data)
{
	MPT_ADAPTER	*ioc = data;
	int		 len;
	char		 expVer[32];
	int		 sz;
	int		 p;

	mpt_get_fw_exp_ver(expVer, ioc);

	len = sprintf(buf, "%s:", ioc->name);
	if (ioc->facts.Flags & MPI_IOCFACTS_FLAGS_FW_DOWNLOAD_BOOT)
		len += sprintf(buf+len, "  (f/w download boot flag set)");
//	if (ioc->facts.IOCExceptions & MPI_IOCFACTS_EXCEPT_CONFIG_CHECKSUM_FAIL)
//		len += sprintf(buf+len, "  CONFIG_CHECKSUM_FAIL!");

	len += sprintf(buf+len, "\n  ProductID = 0x%04x (%s)\n",
			ioc->facts.ProductID,
			ioc->prod_name);
	len += sprintf(buf+len, "  FWVersion = 0x%08x%s", ioc->facts.FWVersion.Word, expVer);
	if (ioc->facts.FWImageSize)
		len += sprintf(buf+len, " (fw_size=%d)", ioc->facts.FWImageSize);
	len += sprintf(buf+len, "\n  MsgVersion = 0x%04x\n", ioc->facts.MsgVersion);
	len += sprintf(buf+len, "  FirstWhoInit = 0x%02x\n", ioc->FirstWhoInit);
	len += sprintf(buf+len, "  EventState = 0x%02x\n", ioc->facts.EventState);

	len += sprintf(buf+len, "  CurrentHostMfaHighAddr = 0x%08x\n",
			ioc->facts.CurrentHostMfaHighAddr);
	len += sprintf(buf+len, "  CurrentSenseBufferHighAddr = 0x%08x\n",
			ioc->facts.CurrentSenseBufferHighAddr);

	len += sprintf(buf+len, "  MaxChainDepth = 0x%02x frames\n", ioc->facts.MaxChainDepth);
	len += sprintf(buf+len, "  MinBlockSize = 0x%02x bytes\n", 4*ioc->facts.BlockSize);

	len += sprintf(buf+len, "  RequestFrames @ 0x%p (Dma @ 0x%p)\n",
					(void *)ioc->req_frames, (void *)(ulong)ioc->req_frames_dma);
	/*
	 *  Rounding UP to nearest 4-kB boundary here...
	 */
	sz = (ioc->req_sz * ioc->req_depth) + 128;
	sz = ((sz + 0x1000UL - 1UL) / 0x1000) * 0x1000;
	len += sprintf(buf+len, "    {CurReqSz=%d} x {CurReqDepth=%d} = %d bytes ^= 0x%x\n",
					ioc->req_sz, ioc->req_depth, ioc->req_sz*ioc->req_depth, sz);
	len += sprintf(buf+len, "    {MaxReqSz=%d}   {MaxReqDepth=%d}\n",
					4*ioc->facts.RequestFrameSize,
					ioc->facts.GlobalCredits);

	len += sprintf(buf+len, "  Frames   @ 0x%p (Dma @ 0x%p)\n",
					(void *)ioc->alloc, (void *)(ulong)ioc->alloc_dma);
	sz = (ioc->reply_sz * ioc->reply_depth) + 128;
	len += sprintf(buf+len, "    {CurRepSz=%d} x {CurRepDepth=%d} = %d bytes ^= 0x%x\n",
					ioc->reply_sz, ioc->reply_depth, ioc->reply_sz*ioc->reply_depth, sz);
	len += sprintf(buf+len, "    {MaxRepSz=%d}   {MaxRepDepth=%d}\n",
					ioc->facts.CurReplyFrameSize,
					ioc->facts.ReplyQueueDepth);

	len += sprintf(buf+len, "  MaxDevices = %d\n",
			(ioc->facts.MaxDevices==0) ? 255 : ioc->facts.MaxDevices);
	len += sprintf(buf+len, "  MaxBuses = %d\n", ioc->facts.MaxBuses);

	/* per-port info */
	for (p=0; p < ioc->facts.NumberOfPorts; p++) {
		len += sprintf(buf+len, "  PortNumber = %d (of %d)\n",
				p+1,
				ioc->facts.NumberOfPorts);
		if (ioc->bus_type == FC) {
			if (ioc->pfacts[p].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_LAN) {
				u8 *a = (u8*)&ioc->lan_cnfg_page1.HardwareAddressLow;
				len += sprintf(buf+len, "    LanAddr = %02X:%02X:%02X:%02X:%02X:%02X\n",
						a[5], a[4], a[3], a[2], a[1], a[0]);
			}
			len += sprintf(buf+len, "    WWN = %08X%08X:%08X%08X\n",
					ioc->fc_port_page0[p].WWNN.High,
					ioc->fc_port_page0[p].WWNN.Low,
					ioc->fc_port_page0[p].WWPN.High,
					ioc->fc_port_page0[p].WWPN.Low);
		}
	}

	MPT_PROC_READ_RETURN(buf,start,offset,request,eof,len);
}

#endif		/* CONFIG_PROC_FS } */

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
static void
mpt_get_fw_exp_ver(char *buf, MPT_ADAPTER *ioc)
{
	buf[0] ='\0';
	if ((ioc->facts.FWVersion.Word >> 24) == 0x0E) {
		sprintf(buf, " (Exp %02d%02d)",
			(ioc->facts.FWVersion.Word >> 16) & 0x00FF,	/* Month */
			(ioc->facts.FWVersion.Word >> 8) & 0x1F);	/* Day */

		/* insider hack! */
		if ((ioc->facts.FWVersion.Word >> 8) & 0x80)
			strcat(buf, " [MDBG]");
	}
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
 *	mpt_print_ioc_summary - Write ASCII summary of IOC to a buffer.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@buffer: Pointer to buffer where IOC summary info should be written
 *	@size: Pointer to number of bytes we wrote (set by this routine)
 *	@len: Offset at which to start writing in buffer
 *	@showlan: Display LAN stuff?
 *
 *	This routine writes (english readable) ASCII text, which represents
 *	a summary of IOC information, to a buffer.
 */
void
mpt_print_ioc_summary(MPT_ADAPTER *ioc, char *buffer, int *size, int len, int showlan)
{
	char expVer[32];
	int y;

	mpt_get_fw_exp_ver(expVer, ioc);

	/*
	 *  Shorter summary of attached ioc's...
	 */
	y = sprintf(buffer+len, "%s: %s, %s%08xh%s, Ports=%d, MaxQ=%d",
			ioc->name,
			ioc->prod_name,
			MPT_FW_REV_MAGIC_ID_STRING,	/* "FwRev=" or somesuch */
			ioc->facts.FWVersion.Word,
			expVer,
			ioc->facts.NumberOfPorts,
			ioc->req_depth);

	if (showlan && (ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_LAN)) {
		u8 *a = (u8*)&ioc->lan_cnfg_page1.HardwareAddressLow;
		y += sprintf(buffer+len+y, ", LanAddr=%02X:%02X:%02X:%02X:%02X:%02X",
			a[5], a[4], a[3], a[2], a[1], a[0]);
	}

	y += sprintf(buffer+len+y, ", IRQ=%d", ioc->pci_irq);

	if (!ioc->active)
		y += sprintf(buffer+len+y, " (disabled)");

	y += sprintf(buffer+len+y, "\n");

	*size = y;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/*
 *	Reset Handling
 */
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
/**
6032
 *	mpt_HardResetHandler - Generic reset handler
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Linus Torvalds 已提交
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 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@sleepFlag: Indicates if sleep or schedule must be called.
 *
6036 6037 6038
 *	Issues SCSI Task Management call based on input arg values.
 *	If TaskMgmt fails, returns associated SCSI request.
 *
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 *	Remark: _HardResetHandler can be invoked from an interrupt thread (timer)
 *	or a non-interrupt thread.  In the former, must not call schedule().
 *
6042
 *	Note: A return of -1 is a FATAL error case, as it means a
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Linus Torvalds 已提交
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 *	FW reload/initialization failed.
 *
 *	Returns 0 for SUCCESS or -1 if FAILED.
 */
int
mpt_HardResetHandler(MPT_ADAPTER *ioc, int sleepFlag)
{
	int		 rc;
	unsigned long	 flags;

	dtmprintk((MYIOC_s_INFO_FMT "HardResetHandler Entered!\n", ioc->name));
#ifdef MFCNT
	printk(MYIOC_s_INFO_FMT "HardResetHandler Entered!\n", ioc->name);
	printk("MF count 0x%x !\n", ioc->mfcnt);
#endif

	/* Reset the adapter. Prevent more than 1 call to
	 * mpt_do_ioc_recovery at any instant in time.
	 */
	spin_lock_irqsave(&ioc->diagLock, flags);
	if ((ioc->diagPending) || (ioc->alt_ioc && ioc->alt_ioc->diagPending)){
		spin_unlock_irqrestore(&ioc->diagLock, flags);
		return 0;
	} else {
		ioc->diagPending = 1;
	}
	spin_unlock_irqrestore(&ioc->diagLock, flags);

	/* FIXME: If do_ioc_recovery fails, repeat....
	 */

	/* The SCSI driver needs to adjust timeouts on all current
	 * commands prior to the diagnostic reset being issued.
A
Adrian Bunk 已提交
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	 * Prevents timeouts occurring during a diagnostic reset...very bad.
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	 * For all other protocol drivers, this is a no-op.
	 */
	{
		int	 ii;
		int	 r = 0;

		for (ii=MPT_MAX_PROTOCOL_DRIVERS-1; ii; ii--) {
			if (MptResetHandlers[ii]) {
				dtmprintk((MYIOC_s_INFO_FMT "Calling IOC reset_setup handler #%d\n",
						ioc->name, ii));
6087
				r += mpt_signal_reset(ii, ioc, MPT_IOC_SETUP_RESET);
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				if (ioc->alt_ioc) {
					dtmprintk((MYIOC_s_INFO_FMT "Calling alt-%s setup reset handler #%d\n",
							ioc->name, ioc->alt_ioc->name, ii));
6091
					r += mpt_signal_reset(ii, ioc->alt_ioc, MPT_IOC_SETUP_RESET);
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				}
			}
		}
	}

	if ((rc = mpt_do_ioc_recovery(ioc, MPT_HOSTEVENT_IOC_RECOVER, sleepFlag)) != 0) {
		printk(KERN_WARNING MYNAM ": WARNING - (%d) Cannot recover %s\n",
			rc, ioc->name);
	}
	ioc->reload_fw = 0;
	if (ioc->alt_ioc)
		ioc->alt_ioc->reload_fw = 0;

	spin_lock_irqsave(&ioc->diagLock, flags);
	ioc->diagPending = 0;
	if (ioc->alt_ioc)
		ioc->alt_ioc->diagPending = 0;
	spin_unlock_irqrestore(&ioc->diagLock, flags);

	dtmprintk((MYIOC_s_INFO_FMT "HardResetHandler rc = %d!\n", ioc->name, rc));

	return rc;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
6117 6118
static void
EventDescriptionStr(u8 event, u32 evData0, char *evStr)
L
Linus Torvalds 已提交
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{
6120
	char *ds = NULL;
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	switch(event) {
	case MPI_EVENT_NONE:
		ds = "None";
		break;
	case MPI_EVENT_LOG_DATA:
		ds = "Log Data";
		break;
	case MPI_EVENT_STATE_CHANGE:
		ds = "State Change";
		break;
	case MPI_EVENT_UNIT_ATTENTION:
		ds = "Unit Attention";
		break;
	case MPI_EVENT_IOC_BUS_RESET:
		ds = "IOC Bus Reset";
		break;
	case MPI_EVENT_EXT_BUS_RESET:
		ds = "External Bus Reset";
		break;
	case MPI_EVENT_RESCAN:
		ds = "Bus Rescan Event";
		break;
	case MPI_EVENT_LINK_STATUS_CHANGE:
		if (evData0 == MPI_EVENT_LINK_STATUS_FAILURE)
			ds = "Link Status(FAILURE) Change";
		else
			ds = "Link Status(ACTIVE) Change";
		break;
	case MPI_EVENT_LOOP_STATE_CHANGE:
		if (evData0 == MPI_EVENT_LOOP_STATE_CHANGE_LIP)
			ds = "Loop State(LIP) Change";
		else if (evData0 == MPI_EVENT_LOOP_STATE_CHANGE_LPE)
6154
			ds = "Loop State(LPE) Change";		/* ??? */
L
Linus Torvalds 已提交
6155
		else
6156
			ds = "Loop State(LPB) Change";		/* ??? */
L
Linus Torvalds 已提交
6157 6158 6159 6160 6161 6162
		break;
	case MPI_EVENT_LOGOUT:
		ds = "Logout";
		break;
	case MPI_EVENT_EVENT_CHANGE:
		if (evData0)
6163
			ds = "Events ON";
L
Linus Torvalds 已提交
6164
		else
6165
			ds = "Events OFF";
L
Linus Torvalds 已提交
6166 6167
		break;
	case MPI_EVENT_INTEGRATED_RAID:
6168 6169 6170 6171 6172 6173 6174 6175 6176 6177 6178 6179 6180 6181 6182 6183 6184 6185 6186 6187 6188 6189 6190 6191 6192 6193 6194 6195 6196 6197 6198 6199 6200 6201 6202 6203 6204 6205 6206 6207 6208
	{
		u8 ReasonCode = (u8)(evData0 >> 16);
		switch (ReasonCode) {
		case MPI_EVENT_RAID_RC_VOLUME_CREATED :
			ds = "Integrated Raid: Volume Created";
			break;
		case MPI_EVENT_RAID_RC_VOLUME_DELETED :
			ds = "Integrated Raid: Volume Deleted";
			break;
		case MPI_EVENT_RAID_RC_VOLUME_SETTINGS_CHANGED :
			ds = "Integrated Raid: Volume Settings Changed";
			break;
		case MPI_EVENT_RAID_RC_VOLUME_STATUS_CHANGED :
			ds = "Integrated Raid: Volume Status Changed";
			break;
		case MPI_EVENT_RAID_RC_VOLUME_PHYSDISK_CHANGED :
			ds = "Integrated Raid: Volume Physdisk Changed";
			break;
		case MPI_EVENT_RAID_RC_PHYSDISK_CREATED :
			ds = "Integrated Raid: Physdisk Created";
			break;
		case MPI_EVENT_RAID_RC_PHYSDISK_DELETED :
			ds = "Integrated Raid: Physdisk Deleted";
			break;
		case MPI_EVENT_RAID_RC_PHYSDISK_SETTINGS_CHANGED :
			ds = "Integrated Raid: Physdisk Settings Changed";
			break;
		case MPI_EVENT_RAID_RC_PHYSDISK_STATUS_CHANGED :
			ds = "Integrated Raid: Physdisk Status Changed";
			break;
		case MPI_EVENT_RAID_RC_DOMAIN_VAL_NEEDED :
			ds = "Integrated Raid: Domain Validation Needed";
			break;
		case MPI_EVENT_RAID_RC_SMART_DATA :
			ds = "Integrated Raid; Smart Data";
			break;
		case MPI_EVENT_RAID_RC_REPLACE_ACTION_STARTED :
			ds = "Integrated Raid: Replace Action Started";
			break;
		default:
			ds = "Integrated Raid";
L
Linus Torvalds 已提交
6209
		break;
6210 6211 6212 6213 6214 6215 6216 6217
		}
		break;
	}
	case MPI_EVENT_SCSI_DEVICE_STATUS_CHANGE:
		ds = "SCSI Device Status Change";
		break;
	case MPI_EVENT_SAS_DEVICE_STATUS_CHANGE:
	{
6218
		u8 id = (u8)(evData0);
6219
		u8 channel = (u8)(evData0 >> 8);
6220 6221 6222
		u8 ReasonCode = (u8)(evData0 >> 16);
		switch (ReasonCode) {
		case MPI_EVENT_SAS_DEV_STAT_RC_ADDED:
6223
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6224 6225
			    "SAS Device Status Change: Added: "
			    "id=%d channel=%d", id, channel);
6226 6227
			break;
		case MPI_EVENT_SAS_DEV_STAT_RC_NOT_RESPONDING:
6228
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6229 6230
			    "SAS Device Status Change: Deleted: "
			    "id=%d channel=%d", id, channel);
6231 6232
			break;
		case MPI_EVENT_SAS_DEV_STAT_RC_SMART_DATA:
6233
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6234 6235
			    "SAS Device Status Change: SMART Data: "
			    "id=%d channel=%d", id, channel);
6236 6237
			break;
		case MPI_EVENT_SAS_DEV_STAT_RC_NO_PERSIST_ADDED:
6238
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6239 6240 6241 6242 6243 6244 6245
			    "SAS Device Status Change: No Persistancy: "
			    "id=%d channel=%d", id, channel);
			break;
		case MPI_EVENT_SAS_DEV_STAT_RC_UNSUPPORTED:
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			    "SAS Device Status Change: Unsupported Device "
			    "Discovered : id=%d channel=%d", id, channel);
6246 6247 6248
			break;
		case MPI_EVENT_SAS_DEV_STAT_RC_INTERNAL_DEVICE_RESET:
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6249 6250
			    "SAS Device Status Change: Internal Device "
			    "Reset : id=%d channel=%d", id, channel);
6251 6252 6253
			break;
		case MPI_EVENT_SAS_DEV_STAT_RC_TASK_ABORT_INTERNAL:
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6254 6255
			    "SAS Device Status Change: Internal Task "
			    "Abort : id=%d channel=%d", id, channel);
6256 6257 6258
			break;
		case MPI_EVENT_SAS_DEV_STAT_RC_ABORT_TASK_SET_INTERNAL:
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6259 6260
			    "SAS Device Status Change: Internal Abort "
			    "Task Set : id=%d channel=%d", id, channel);
6261 6262 6263
			break;
		case MPI_EVENT_SAS_DEV_STAT_RC_CLEAR_TASK_SET_INTERNAL:
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6264 6265
			    "SAS Device Status Change: Internal Clear "
			    "Task Set : id=%d channel=%d", id, channel);
6266 6267 6268
			break;
		case MPI_EVENT_SAS_DEV_STAT_RC_QUERY_TASK_INTERNAL:
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6269 6270
			    "SAS Device Status Change: Internal Query "
			    "Task : id=%d channel=%d", id, channel);
6271 6272
			break;
		default:
6273
			snprintf(evStr, EVENT_DESCR_STR_SZ,
6274 6275
			    "SAS Device Status Change: Unknown: "
			    "id=%d channel=%d", id, channel);
6276
			break;
6277 6278 6279 6280 6281 6282 6283
		}
		break;
	}
	case MPI_EVENT_ON_BUS_TIMER_EXPIRED:
		ds = "Bus Timer Expired";
		break;
	case MPI_EVENT_QUEUE_FULL:
6284 6285 6286 6287 6288 6289 6290 6291
	{
		u16 curr_depth = (u16)(evData0 >> 16);
		u8 channel = (u8)(evData0 >> 8);
		u8 id = (u8)(evData0);

		snprintf(evStr, EVENT_DESCR_STR_SZ,
		   "Queue Full: channel=%d id=%d depth=%d",
		   channel, id, curr_depth);
6292
		break;
6293
	}
6294 6295 6296 6297 6298 6299 6300
	case MPI_EVENT_SAS_SES:
		ds = "SAS SES Event";
		break;
	case MPI_EVENT_PERSISTENT_TABLE_FULL:
		ds = "Persistent Table Full";
		break;
	case MPI_EVENT_SAS_PHY_LINK_STATUS:
6301 6302 6303 6304 6305 6306 6307
	{
		u8 LinkRates = (u8)(evData0 >> 8);
		u8 PhyNumber = (u8)(evData0);
		LinkRates = (LinkRates & MPI_EVENT_SAS_PLS_LR_CURRENT_MASK) >>
			MPI_EVENT_SAS_PLS_LR_CURRENT_SHIFT;
		switch (LinkRates) {
		case MPI_EVENT_SAS_PLS_LR_RATE_UNKNOWN:
6308 6309
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			   "SAS PHY Link Status: Phy=%d:"
6310 6311 6312
			   " Rate Unknown",PhyNumber);
			break;
		case MPI_EVENT_SAS_PLS_LR_RATE_PHY_DISABLED:
6313 6314
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			   "SAS PHY Link Status: Phy=%d:"
6315 6316 6317
			   " Phy Disabled",PhyNumber);
			break;
		case MPI_EVENT_SAS_PLS_LR_RATE_FAILED_SPEED_NEGOTIATION:
6318 6319
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			   "SAS PHY Link Status: Phy=%d:"
6320 6321 6322
			   " Failed Speed Nego",PhyNumber);
			break;
		case MPI_EVENT_SAS_PLS_LR_RATE_SATA_OOB_COMPLETE:
6323 6324
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			   "SAS PHY Link Status: Phy=%d:"
6325 6326 6327
			   " Sata OOB Completed",PhyNumber);
			break;
		case MPI_EVENT_SAS_PLS_LR_RATE_1_5:
6328 6329
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			   "SAS PHY Link Status: Phy=%d:"
6330 6331 6332
			   " Rate 1.5 Gbps",PhyNumber);
			break;
		case MPI_EVENT_SAS_PLS_LR_RATE_3_0:
6333 6334
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			   "SAS PHY Link Status: Phy=%d:"
6335 6336 6337
			   " Rate 3.0 Gpbs",PhyNumber);
			break;
		default:
6338 6339
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			   "SAS PHY Link Status: Phy=%d", PhyNumber);
6340 6341
			break;
		}
6342
		break;
6343
	}
6344 6345 6346
	case MPI_EVENT_SAS_DISCOVERY_ERROR:
		ds = "SAS Discovery Error";
		break;
6347 6348 6349
	case MPI_EVENT_IR_RESYNC_UPDATE:
	{
		u8 resync_complete = (u8)(evData0 >> 16);
6350 6351
		snprintf(evStr, EVENT_DESCR_STR_SZ,
		    "IR Resync Update: Complete = %d:",resync_complete);
6352 6353 6354 6355 6356 6357 6358 6359 6360 6361 6362 6363 6364 6365 6366 6367 6368 6369 6370 6371 6372 6373 6374 6375 6376 6377 6378 6379 6380 6381 6382 6383 6384 6385 6386 6387 6388 6389 6390 6391 6392 6393 6394 6395
		break;
	}
	case MPI_EVENT_IR2:
	{
		u8 ReasonCode = (u8)(evData0 >> 16);
		switch (ReasonCode) {
		case MPI_EVENT_IR2_RC_LD_STATE_CHANGED:
			ds = "IR2: LD State Changed";
			break;
		case MPI_EVENT_IR2_RC_PD_STATE_CHANGED:
			ds = "IR2: PD State Changed";
			break;
		case MPI_EVENT_IR2_RC_BAD_BLOCK_TABLE_FULL:
			ds = "IR2: Bad Block Table Full";
			break;
		case MPI_EVENT_IR2_RC_PD_INSERTED:
			ds = "IR2: PD Inserted";
			break;
		case MPI_EVENT_IR2_RC_PD_REMOVED:
			ds = "IR2: PD Removed";
			break;
		case MPI_EVENT_IR2_RC_FOREIGN_CFG_DETECTED:
			ds = "IR2: Foreign CFG Detected";
			break;
		case MPI_EVENT_IR2_RC_REBUILD_MEDIUM_ERROR:
			ds = "IR2: Rebuild Medium Error";
			break;
		default:
			ds = "IR2";
		break;
		}
		break;
	}
	case MPI_EVENT_SAS_DISCOVERY:
	{
		if (evData0)
			ds = "SAS Discovery: Start";
		else
			ds = "SAS Discovery: Stop";
		break;
	}
	case MPI_EVENT_LOG_ENTRY_ADDED:
		ds = "SAS Log Entry Added";
		break;
6396

6397 6398 6399 6400 6401 6402 6403 6404 6405 6406 6407 6408 6409 6410 6411 6412 6413 6414 6415 6416 6417 6418 6419 6420 6421 6422 6423 6424 6425 6426 6427 6428 6429 6430 6431 6432 6433 6434 6435 6436 6437 6438 6439 6440 6441 6442 6443 6444 6445 6446 6447 6448 6449 6450 6451 6452 6453 6454 6455 6456 6457 6458 6459 6460 6461 6462 6463 6464 6465 6466
	case MPI_EVENT_SAS_BROADCAST_PRIMITIVE:
	{
		u8 phy_num = (u8)(evData0);
		u8 port_num = (u8)(evData0 >> 8);
		u8 port_width = (u8)(evData0 >> 16);
		u8 primative = (u8)(evData0 >> 24);
		snprintf(evStr, EVENT_DESCR_STR_SZ,
		    "SAS Broadcase Primative: phy=%d port=%d "
		    "width=%d primative=0x%02x",
		    phy_num, port_num, port_width, primative);
		break;
	}

	case MPI_EVENT_SAS_INIT_DEVICE_STATUS_CHANGE:
	{
		u8 reason = (u8)(evData0);
		u8 port_num = (u8)(evData0 >> 8);
		u16 handle = le16_to_cpu(evData0 >> 16);

		snprintf(evStr, EVENT_DESCR_STR_SZ,
		    "SAS Initiator Device Status Change: reason=0x%02x "
		    "port=%d handle=0x%04x",
		    reason, port_num, handle);
		break;
	}

	case MPI_EVENT_SAS_INIT_TABLE_OVERFLOW:
	{
		u8 max_init = (u8)(evData0);
		u8 current_init = (u8)(evData0 >> 8);

		snprintf(evStr, EVENT_DESCR_STR_SZ,
		    "SAS Initiator Device Table Overflow: max initiators=%02d "
		    "current initators=%02d",
		    max_init, current_init);
		break;
	}
	case MPI_EVENT_SAS_SMP_ERROR:
	{
		u8 status = (u8)(evData0);
		u8 port_num = (u8)(evData0 >> 8);
		u8 result = (u8)(evData0 >> 16);

		if (status == MPI_EVENT_SAS_SMP_FUNCTION_RESULT_VALID)
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			    "SAS SMP Error: port=%d result=0x%02x",
			    port_num, result);
		else if (status == MPI_EVENT_SAS_SMP_CRC_ERROR)
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			    "SAS SMP Error: port=%d : CRC Error",
			    port_num);
		else if (status == MPI_EVENT_SAS_SMP_TIMEOUT)
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			    "SAS SMP Error: port=%d : Timeout",
			    port_num);
		else if (status == MPI_EVENT_SAS_SMP_NO_DESTINATION)
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			    "SAS SMP Error: port=%d : No Destination",
			    port_num);
		else if (status == MPI_EVENT_SAS_SMP_BAD_DESTINATION)
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			    "SAS SMP Error: port=%d : Bad Destination",
			    port_num);
		else
			snprintf(evStr, EVENT_DESCR_STR_SZ,
			    "SAS SMP Error: port=%d : status=0x%02x",
			    port_num, status);
		break;
	}

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	/*
	 *  MPT base "custom" events may be added here...
	 */
	default:
		ds = "Unknown";
		break;
	}
6474 6475
	if (ds)
		strncpy(evStr, ds, EVENT_DESCR_STR_SZ);
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6476 6477 6478
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
6479 6480
/**
 *	ProcessEventNotification - Route EventNotificationReply to all event handlers
L
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6481 6482 6483 6484
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@pEventReply: Pointer to EventNotification reply frame
 *	@evHandlers: Pointer to integer, number of event handlers
 *
6485 6486
 *	Routes a received EventNotificationReply to all currently registered
 *	event handlers.
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 *	Returns sum of event handlers return values.
 */
static int
ProcessEventNotification(MPT_ADAPTER *ioc, EventNotificationReply_t *pEventReply, int *evHandlers)
{
	u16 evDataLen;
	u32 evData0 = 0;
//	u32 evCtx;
	int ii;
	int r = 0;
	int handlers = 0;
6498
	char evStr[EVENT_DESCR_STR_SZ];
L
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	u8 event;

	/*
	 *  Do platform normalization of values
	 */
	event = le32_to_cpu(pEventReply->Event) & 0xFF;
//	evCtx = le32_to_cpu(pEventReply->EventContext);
	evDataLen = le16_to_cpu(pEventReply->EventDataLength);
	if (evDataLen) {
		evData0 = le32_to_cpu(pEventReply->Data[0]);
	}

6511
	EventDescriptionStr(event, evData0, evStr);
6512
	devtprintk((MYIOC_s_INFO_FMT "MPT event:(%02Xh) : %s\n",
L
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6513
			ioc->name,
6514 6515
			event,
			evStr));
L
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6516

6517
#if defined(MPT_DEBUG) || defined(MPT_DEBUG_VERBOSE_EVENTS)
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6518 6519 6520 6521 6522 6523 6524 6525 6526 6527 6528 6529 6530 6531 6532 6533 6534 6535 6536 6537 6538 6539
	printk(KERN_INFO MYNAM ": Event data:\n" KERN_INFO);
	for (ii = 0; ii < evDataLen; ii++)
		printk(" %08x", le32_to_cpu(pEventReply->Data[ii]));
	printk("\n");
#endif

	/*
	 *  Do general / base driver event processing
	 */
	switch(event) {
	case MPI_EVENT_EVENT_CHANGE:		/* 0A */
		if (evDataLen) {
			u8 evState = evData0 & 0xFF;

			/* CHECKME! What if evState unexpectedly says OFF (0)? */

			/* Update EventState field in cached IocFacts */
			if (ioc->facts.Function) {
				ioc->facts.EventState = evState;
			}
		}
		break;
6540 6541 6542 6543
	case MPI_EVENT_INTEGRATED_RAID:
		mptbase_raid_process_event_data(ioc,
		    (MpiEventDataRaid_t *)pEventReply->Data);
		break;
6544 6545
	default:
		break;
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6546 6547 6548 6549 6550 6551 6552 6553 6554
	}

	/*
	 * Should this event be logged? Events are written sequentially.
	 * When buffer is full, start again at the top.
	 */
	if (ioc->events && (ioc->eventTypes & ( 1 << event))) {
		int idx;

6555
		idx = ioc->eventContext % MPTCTL_EVENT_LOG_SIZE;
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6556 6557 6558 6559 6560 6561 6562 6563 6564 6565 6566 6567 6568 6569 6570 6571 6572 6573 6574 6575

		ioc->events[idx].event = event;
		ioc->events[idx].eventContext = ioc->eventContext;

		for (ii = 0; ii < 2; ii++) {
			if (ii < evDataLen)
				ioc->events[idx].data[ii] = le32_to_cpu(pEventReply->Data[ii]);
			else
				ioc->events[idx].data[ii] =  0;
		}

		ioc->eventContext++;
	}


	/*
	 *  Call each currently registered protocol event handler.
	 */
	for (ii=MPT_MAX_PROTOCOL_DRIVERS-1; ii; ii--) {
		if (MptEvHandlers[ii]) {
6576
			devtverboseprintk((MYIOC_s_INFO_FMT "Routing Event to event handler #%d\n",
L
Linus Torvalds 已提交
6577 6578 6579 6580 6581 6582 6583 6584 6585 6586 6587
					ioc->name, ii));
			r += (*(MptEvHandlers[ii]))(ioc, pEventReply);
			handlers++;
		}
	}
	/* FIXME?  Examine results here? */

	/*
	 *  If needed, send (a single) EventAck.
	 */
	if (pEventReply->AckRequired == MPI_EVENT_NOTIFICATION_ACK_REQUIRED) {
6588
		devtverboseprintk((MYIOC_s_WARN_FMT
6589
			"EventAck required\n",ioc->name));
L
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6590
		if ((ii = SendEventAck(ioc, pEventReply)) != 0) {
6591
			devtverboseprintk((MYIOC_s_WARN_FMT "SendEventAck returned %d\n",
L
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6592 6593 6594 6595 6596 6597 6598 6599 6600
					ioc->name, ii));
		}
	}

	*evHandlers = handlers;
	return r;
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
6601
/**
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6602 6603 6604 6605
 *	mpt_fc_log_info - Log information returned from Fibre Channel IOC.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@log_info: U32 LogInfo reply word from the IOC
 *
6606
 *	Refer to lsi/mpi_log_fc.h.
L
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 */
static void
mpt_fc_log_info(MPT_ADAPTER *ioc, u32 log_info)
{
6611 6612 6613 6614 6615 6616 6617 6618 6619 6620 6621 6622 6623 6624 6625 6626 6627 6628 6629 6630 6631 6632 6633 6634 6635 6636 6637 6638 6639 6640 6641
	char *desc = "unknown";

	switch (log_info & 0xFF000000) {
	case MPI_IOCLOGINFO_FC_INIT_BASE:
		desc = "FCP Initiator";
		break;
	case MPI_IOCLOGINFO_FC_TARGET_BASE:
		desc = "FCP Target";
		break;
	case MPI_IOCLOGINFO_FC_LAN_BASE:
		desc = "LAN";
		break;
	case MPI_IOCLOGINFO_FC_MSG_BASE:
		desc = "MPI Message Layer";
		break;
	case MPI_IOCLOGINFO_FC_LINK_BASE:
		desc = "FC Link";
		break;
	case MPI_IOCLOGINFO_FC_CTX_BASE:
		desc = "Context Manager";
		break;
	case MPI_IOCLOGINFO_FC_INVALID_FIELD_BYTE_OFFSET:
		desc = "Invalid Field Offset";
		break;
	case MPI_IOCLOGINFO_FC_STATE_CHANGE:
		desc = "State Change Info";
		break;
	}

	printk(MYIOC_s_INFO_FMT "LogInfo(0x%08x): SubClass={%s}, Value=(0x%06x)\n",
			ioc->name, log_info, desc, (log_info & 0xFFFFFF));
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}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
6645
/**
6646
 *	mpt_spi_log_info - Log information returned from SCSI Parallel IOC.
L
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6647 6648 6649 6650 6651 6652 6653
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@mr: Pointer to MPT reply frame
 *	@log_info: U32 LogInfo word from the IOC
 *
 *	Refer to lsi/sp_log.h.
 */
static void
6654
mpt_spi_log_info(MPT_ADAPTER *ioc, u32 log_info)
L
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6655 6656 6657 6658 6659 6660 6661 6662 6663 6664 6665 6666 6667 6668 6669 6670 6671 6672 6673 6674 6675 6676 6677 6678 6679 6680 6681 6682 6683 6684 6685 6686 6687 6688 6689 6690 6691 6692
{
	u32 info = log_info & 0x00FF0000;
	char *desc = "unknown";

	switch (info) {
	case 0x00010000:
		desc = "bug! MID not found";
		if (ioc->reload_fw == 0)
			ioc->reload_fw++;
		break;

	case 0x00020000:
		desc = "Parity Error";
		break;

	case 0x00030000:
		desc = "ASYNC Outbound Overrun";
		break;

	case 0x00040000:
		desc = "SYNC Offset Error";
		break;

	case 0x00050000:
		desc = "BM Change";
		break;

	case 0x00060000:
		desc = "Msg In Overflow";
		break;

	case 0x00070000:
		desc = "DMA Error";
		break;

	case 0x00080000:
		desc = "Outbound DMA Overrun";
		break;
6693

L
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6694 6695 6696 6697 6698 6699 6700 6701 6702 6703 6704 6705 6706 6707 6708
	case 0x00090000:
		desc = "Task Management";
		break;

	case 0x000A0000:
		desc = "Device Problem";
		break;

	case 0x000B0000:
		desc = "Invalid Phase Change";
		break;

	case 0x000C0000:
		desc = "Untagged Table Size";
		break;
6709

L
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6710 6711 6712 6713 6714
	}

	printk(MYIOC_s_INFO_FMT "LogInfo(0x%08x): F/W: %s\n", ioc->name, log_info, desc);
}

6715 6716 6717 6718 6719 6720 6721 6722 6723 6724 6725
/* strings for sas loginfo */
	static char *originator_str[] = {
		"IOP",						/* 00h */
		"PL",						/* 01h */
		"IR"						/* 02h */
	};
	static char *iop_code_str[] = {
		NULL,						/* 00h */
		"Invalid SAS Address",				/* 01h */
		NULL,						/* 02h */
		"Invalid Page",					/* 03h */
6726 6727 6728 6729
		"Diag Message Error",				/* 04h */
		"Task Terminated",				/* 05h */
		"Enclosure Management",				/* 06h */
		"Target Mode"					/* 07h */
6730 6731 6732 6733 6734 6735 6736 6737 6738 6739 6740 6741 6742 6743 6744 6745 6746 6747 6748 6749 6750 6751 6752
	};
	static char *pl_code_str[] = {
		NULL,						/* 00h */
		"Open Failure",					/* 01h */
		"Invalid Scatter Gather List",			/* 02h */
		"Wrong Relative Offset or Frame Length",	/* 03h */
		"Frame Transfer Error",				/* 04h */
		"Transmit Frame Connected Low",			/* 05h */
		"SATA Non-NCQ RW Error Bit Set",		/* 06h */
		"SATA Read Log Receive Data Error",		/* 07h */
		"SATA NCQ Fail All Commands After Error",	/* 08h */
		"SATA Error in Receive Set Device Bit FIS",	/* 09h */
		"Receive Frame Invalid Message",		/* 0Ah */
		"Receive Context Message Valid Error",		/* 0Bh */
		"Receive Frame Current Frame Error",		/* 0Ch */
		"SATA Link Down",				/* 0Dh */
		"Discovery SATA Init W IOS",			/* 0Eh */
		"Config Invalid Page",				/* 0Fh */
		"Discovery SATA Init Timeout",			/* 10h */
		"Reset",					/* 11h */
		"Abort",					/* 12h */
		"IO Not Yet Executed",				/* 13h */
		"IO Executed",					/* 14h */
6753 6754
		"Persistent Reservation Out Not Affiliation "
		    "Owner", 					/* 15h */
6755
		"Open Transmit DMA Abort",			/* 16h */
6756
		"IO Device Missing Delay Retry",		/* 17h */
6757
		"IO Cancelled Due to Recieve Error",		/* 18h */
6758 6759 6760 6761 6762 6763 6764 6765 6766
		NULL,						/* 19h */
		NULL,						/* 1Ah */
		NULL,						/* 1Bh */
		NULL,						/* 1Ch */
		NULL,						/* 1Dh */
		NULL,						/* 1Eh */
		NULL,						/* 1Fh */
		"Enclosure Management"				/* 20h */
	};
6767 6768 6769 6770 6771 6772 6773 6774 6775 6776 6777 6778 6779 6780 6781 6782 6783 6784 6785 6786 6787 6788 6789 6790 6791 6792 6793 6794 6795 6796 6797 6798 6799 6800 6801 6802 6803 6804 6805 6806 6807 6808 6809 6810 6811 6812 6813 6814 6815 6816 6817 6818 6819 6820 6821 6822 6823 6824 6825 6826 6827 6828 6829 6830 6831 6832 6833 6834 6835 6836 6837 6838 6839 6840 6841 6842 6843 6844 6845 6846 6847 6848 6849 6850 6851 6852 6853 6854 6855 6856
	static char *ir_code_str[] = {
		"Raid Action Error",				/* 00h */
		NULL,						/* 00h */
		NULL,						/* 01h */
		NULL,						/* 02h */
		NULL,						/* 03h */
		NULL,						/* 04h */
		NULL,						/* 05h */
		NULL,						/* 06h */
		NULL						/* 07h */
	};
	static char *raid_sub_code_str[] = {
		NULL, 						/* 00h */
		"Volume Creation Failed: Data Passed too "
		    "Large", 					/* 01h */
		"Volume Creation Failed: Duplicate Volumes "
		    "Attempted", 				/* 02h */
		"Volume Creation Failed: Max Number "
		    "Supported Volumes Exceeded",		/* 03h */
		"Volume Creation Failed: DMA Error",		/* 04h */
		"Volume Creation Failed: Invalid Volume Type",	/* 05h */
		"Volume Creation Failed: Error Reading "
		    "MFG Page 4", 				/* 06h */
		"Volume Creation Failed: Creating Internal "
		    "Structures", 				/* 07h */
		NULL,						/* 08h */
		NULL,						/* 09h */
		NULL,						/* 0Ah */
		NULL,						/* 0Bh */
		NULL,						/* 0Ch */
		NULL,						/* 0Dh */
		NULL,						/* 0Eh */
		NULL,						/* 0Fh */
		"Activation failed: Already Active Volume", 	/* 10h */
		"Activation failed: Unsupported Volume Type", 	/* 11h */
		"Activation failed: Too Many Active Volumes", 	/* 12h */
		"Activation failed: Volume ID in Use", 		/* 13h */
		"Activation failed: Reported Failure", 		/* 14h */
		"Activation failed: Importing a Volume", 	/* 15h */
		NULL,						/* 16h */
		NULL,						/* 17h */
		NULL,						/* 18h */
		NULL,						/* 19h */
		NULL,						/* 1Ah */
		NULL,						/* 1Bh */
		NULL,						/* 1Ch */
		NULL,						/* 1Dh */
		NULL,						/* 1Eh */
		NULL,						/* 1Fh */
		"Phys Disk failed: Too Many Phys Disks", 	/* 20h */
		"Phys Disk failed: Data Passed too Large",	/* 21h */
		"Phys Disk failed: DMA Error", 			/* 22h */
		"Phys Disk failed: Invalid <channel:id>", 	/* 23h */
		"Phys Disk failed: Creating Phys Disk Config "
		    "Page", 					/* 24h */
		NULL,						/* 25h */
		NULL,						/* 26h */
		NULL,						/* 27h */
		NULL,						/* 28h */
		NULL,						/* 29h */
		NULL,						/* 2Ah */
		NULL,						/* 2Bh */
		NULL,						/* 2Ch */
		NULL,						/* 2Dh */
		NULL,						/* 2Eh */
		NULL,						/* 2Fh */
		"Compatibility Error: IR Disabled",		/* 30h */
		"Compatibility Error: Inquiry Comand Failed",	/* 31h */
		"Compatibility Error: Device not Direct Access "
		    "Device ",					/* 32h */
		"Compatibility Error: Removable Device Found",	/* 33h */
		"Compatibility Error: Device SCSI Version not "
		    "2 or Higher", 				/* 34h */
		"Compatibility Error: SATA Device, 48 BIT LBA "
		    "not Supported", 				/* 35h */
		"Compatibility Error: Device doesn't have "
		    "512 Byte Block Sizes", 			/* 36h */
		"Compatibility Error: Volume Type Check Failed", /* 37h */
		"Compatibility Error: Volume Type is "
		    "Unsupported by FW", 			/* 38h */
		"Compatibility Error: Disk Drive too Small for "
		    "use in Volume", 				/* 39h */
		"Compatibility Error: Phys Disk for Create "
		    "Volume not Found", 			/* 3Ah */
		"Compatibility Error: Too Many or too Few "
		    "Disks for Volume Type", 			/* 3Bh */
		"Compatibility Error: Disk stripe Sizes "
		    "Must be 64KB", 				/* 3Ch */
		"Compatibility Error: IME Size Limited to < 2TB", /* 3Dh */
	};
6857 6858

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
6859
/**
6860 6861 6862 6863 6864
 *	mpt_sas_log_info - Log information returned from SAS IOC.
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@log_info: U32 LogInfo reply word from the IOC
 *
 *	Refer to lsi/mpi_log_sas.h.
6865
 **/
6866 6867 6868 6869 6870 6871 6872 6873 6874 6875 6876 6877 6878
static void
mpt_sas_log_info(MPT_ADAPTER *ioc, u32 log_info)
{
union loginfo_type {
	u32	loginfo;
	struct {
		u32	subcode:16;
		u32	code:8;
		u32	originator:4;
		u32	bus_type:4;
	}dw;
};
	union loginfo_type sas_loginfo;
6879
	char *originator_desc = NULL;
6880
	char *code_desc = NULL;
6881
	char *sub_code_desc = NULL;
6882 6883 6884 6885 6886

	sas_loginfo.loginfo = log_info;
	if ((sas_loginfo.dw.bus_type != 3 /*SAS*/) &&
	    (sas_loginfo.dw.originator < sizeof(originator_str)/sizeof(char*)))
		return;
6887 6888 6889 6890 6891 6892 6893 6894 6895 6896 6897 6898 6899 6900 6901 6902 6903 6904 6905 6906 6907 6908 6909 6910 6911 6912 6913 6914 6915

	originator_desc = originator_str[sas_loginfo.dw.originator];

	switch (sas_loginfo.dw.originator) {

		case 0:  /* IOP */
			if (sas_loginfo.dw.code <
			    sizeof(iop_code_str)/sizeof(char*))
				code_desc = iop_code_str[sas_loginfo.dw.code];
			break;
		case 1:  /* PL */
			if (sas_loginfo.dw.code <
			    sizeof(pl_code_str)/sizeof(char*))
				code_desc = pl_code_str[sas_loginfo.dw.code];
			break;
		case 2:  /* IR */
			if (sas_loginfo.dw.code >=
			    sizeof(ir_code_str)/sizeof(char*))
				break;
			code_desc = ir_code_str[sas_loginfo.dw.code];
			if (sas_loginfo.dw.subcode >=
			    sizeof(raid_sub_code_str)/sizeof(char*))
			break;
			if (sas_loginfo.dw.code == 0)
				sub_code_desc =
				    raid_sub_code_str[sas_loginfo.dw.subcode];
			break;
		default:
			return;
6916 6917
	}

6918 6919 6920 6921 6922 6923 6924
	if (sub_code_desc != NULL)
		printk(MYIOC_s_INFO_FMT
			"LogInfo(0x%08x): Originator={%s}, Code={%s},"
			" SubCode={%s}\n",
			ioc->name, log_info, originator_desc, code_desc,
			sub_code_desc);
	else if (code_desc != NULL)
6925 6926 6927
		printk(MYIOC_s_INFO_FMT
			"LogInfo(0x%08x): Originator={%s}, Code={%s},"
			" SubCode(0x%04x)\n",
6928
			ioc->name, log_info, originator_desc, code_desc,
6929 6930 6931 6932 6933
			sas_loginfo.dw.subcode);
	else
		printk(MYIOC_s_INFO_FMT
			"LogInfo(0x%08x): Originator={%s}, Code=(0x%02x),"
			" SubCode(0x%04x)\n",
6934 6935
			ioc->name, log_info, originator_desc,
			sas_loginfo.dw.code, sas_loginfo.dw.subcode);
6936 6937
}

6938
#ifdef MPT_DEBUG_REPLY
L
Linus Torvalds 已提交
6939
/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
6940
/**
6941 6942
 *	mpt_iocstatus_info_config - IOCSTATUS information for config pages
 *	@ioc: Pointer to MPT_ADAPTER structure
6943
 *	@ioc_status: U32 IOCStatus word from IOC
6944 6945 6946 6947 6948 6949 6950 6951 6952 6953 6954 6955 6956 6957 6958 6959 6960 6961 6962 6963 6964 6965 6966 6967 6968 6969 6970 6971 6972 6973 6974 6975 6976 6977 6978 6979 6980 6981 6982 6983 6984 6985 6986 6987 6988 6989 6990 6991 6992 6993 6994 6995 6996 6997 6998 6999 7000 7001 7002 7003 7004 7005 7006 7007 7008 7009 7010 7011 7012 7013 7014 7015 7016 7017 7018 7019
 *	@mf: Pointer to MPT request frame
 *
 *	Refer to lsi/mpi.h.
 **/
static void
mpt_iocstatus_info_config(MPT_ADAPTER *ioc, u32 ioc_status, MPT_FRAME_HDR *mf)
{
	Config_t *pReq = (Config_t *)mf;
	char extend_desc[EVENT_DESCR_STR_SZ];
	char *desc = NULL;
	u32 form;
	u8 page_type;

	if (pReq->Header.PageType == MPI_CONFIG_PAGETYPE_EXTENDED)
		page_type = pReq->ExtPageType;
	else
		page_type = pReq->Header.PageType;

	/*
	 * ignore invalid page messages for GET_NEXT_HANDLE
	 */
	form = le32_to_cpu(pReq->PageAddress);
	if (ioc_status == MPI_IOCSTATUS_CONFIG_INVALID_PAGE) {
		if (page_type == MPI_CONFIG_EXTPAGETYPE_SAS_DEVICE ||
		    page_type == MPI_CONFIG_EXTPAGETYPE_SAS_EXPANDER ||
		    page_type == MPI_CONFIG_EXTPAGETYPE_ENCLOSURE) {
			if ((form >> MPI_SAS_DEVICE_PGAD_FORM_SHIFT) ==
				MPI_SAS_DEVICE_PGAD_FORM_GET_NEXT_HANDLE)
				return;
		}
		if (page_type == MPI_CONFIG_PAGETYPE_FC_DEVICE)
			if ((form & MPI_FC_DEVICE_PGAD_FORM_MASK) ==
				MPI_FC_DEVICE_PGAD_FORM_NEXT_DID)
				return;
	}

	snprintf(extend_desc, EVENT_DESCR_STR_SZ,
	    "type=%02Xh, page=%02Xh, action=%02Xh, form=%08Xh",
	    page_type, pReq->Header.PageNumber, pReq->Action, form);

	switch (ioc_status) {

	case MPI_IOCSTATUS_CONFIG_INVALID_ACTION: /* 0x0020 */
		desc = "Config Page Invalid Action";
		break;

	case MPI_IOCSTATUS_CONFIG_INVALID_TYPE:   /* 0x0021 */
		desc = "Config Page Invalid Type";
		break;

	case MPI_IOCSTATUS_CONFIG_INVALID_PAGE:   /* 0x0022 */
		desc = "Config Page Invalid Page";
		break;

	case MPI_IOCSTATUS_CONFIG_INVALID_DATA:   /* 0x0023 */
		desc = "Config Page Invalid Data";
		break;

	case MPI_IOCSTATUS_CONFIG_NO_DEFAULTS:    /* 0x0024 */
		desc = "Config Page No Defaults";
		break;

	case MPI_IOCSTATUS_CONFIG_CANT_COMMIT:    /* 0x0025 */
		desc = "Config Page Can't Commit";
		break;
	}

	if (!desc)
		return;

	printk(MYIOC_s_INFO_FMT "IOCStatus(0x%04X): %s: %s\n",
	    ioc->name, ioc_status, desc, extend_desc);
}

/**
 *	mpt_iocstatus_info - IOCSTATUS information returned from IOC.
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7020 7021 7022 7023 7024
 *	@ioc: Pointer to MPT_ADAPTER structure
 *	@ioc_status: U32 IOCStatus word from IOC
 *	@mf: Pointer to MPT request frame
 *
 *	Refer to lsi/mpi.h.
7025
 **/
L
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7026
static void
7027
mpt_iocstatus_info(MPT_ADAPTER *ioc, u32 ioc_status, MPT_FRAME_HDR *mf)
L
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7028 7029
{
	u32 status = ioc_status & MPI_IOCSTATUS_MASK;
7030
	char *desc = NULL;
L
Linus Torvalds 已提交
7031 7032

	switch (status) {
7033 7034 7035 7036 7037

/****************************************************************************/
/*  Common IOCStatus values for all replies                                 */
/****************************************************************************/

L
Linus Torvalds 已提交
7038 7039 7040 7041 7042 7043 7044 7045 7046 7047 7048 7049 7050 7051 7052 7053 7054 7055 7056 7057 7058 7059 7060 7061 7062 7063 7064 7065 7066 7067 7068 7069
	case MPI_IOCSTATUS_INVALID_FUNCTION: /* 0x0001 */
		desc = "Invalid Function";
		break;

	case MPI_IOCSTATUS_BUSY: /* 0x0002 */
		desc = "Busy";
		break;

	case MPI_IOCSTATUS_INVALID_SGL: /* 0x0003 */
		desc = "Invalid SGL";
		break;

	case MPI_IOCSTATUS_INTERNAL_ERROR: /* 0x0004 */
		desc = "Internal Error";
		break;

	case MPI_IOCSTATUS_RESERVED: /* 0x0005 */
		desc = "Reserved";
		break;

	case MPI_IOCSTATUS_INSUFFICIENT_RESOURCES: /* 0x0006 */
		desc = "Insufficient Resources";
		break;

	case MPI_IOCSTATUS_INVALID_FIELD: /* 0x0007 */
		desc = "Invalid Field";
		break;

	case MPI_IOCSTATUS_INVALID_STATE: /* 0x0008 */
		desc = "Invalid State";
		break;

7070 7071 7072 7073
/****************************************************************************/
/*  Config IOCStatus values                                                 */
/****************************************************************************/

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	case MPI_IOCSTATUS_CONFIG_INVALID_ACTION: /* 0x0020 */
	case MPI_IOCSTATUS_CONFIG_INVALID_TYPE:   /* 0x0021 */
	case MPI_IOCSTATUS_CONFIG_INVALID_PAGE:   /* 0x0022 */
	case MPI_IOCSTATUS_CONFIG_INVALID_DATA:   /* 0x0023 */
	case MPI_IOCSTATUS_CONFIG_NO_DEFAULTS:    /* 0x0024 */
	case MPI_IOCSTATUS_CONFIG_CANT_COMMIT:    /* 0x0025 */
7080
		mpt_iocstatus_info_config(ioc, status, mf);
L
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7081 7082
		break;

7083 7084 7085 7086 7087 7088 7089
/****************************************************************************/
/*  SCSIIO Reply (SPI, FCP, SAS) initiator values                           */
/*                                                                          */
/*  Look at mptscsih_iocstatus_info_scsiio in mptscsih.c */
/*                                                                          */
/****************************************************************************/

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Linus Torvalds 已提交
7090
	case MPI_IOCSTATUS_SCSI_RECOVERED_ERROR: /* 0x0040 */
7091 7092 7093 7094 7095 7096 7097 7098 7099 7100 7101 7102
	case MPI_IOCSTATUS_SCSI_DATA_UNDERRUN: /* 0x0045 */
	case MPI_IOCSTATUS_SCSI_INVALID_BUS: /* 0x0041 */
	case MPI_IOCSTATUS_SCSI_INVALID_TARGETID: /* 0x0042 */
	case MPI_IOCSTATUS_SCSI_DEVICE_NOT_THERE: /* 0x0043 */
	case MPI_IOCSTATUS_SCSI_DATA_OVERRUN: /* 0x0044 */
	case MPI_IOCSTATUS_SCSI_IO_DATA_ERROR: /* 0x0046 */
	case MPI_IOCSTATUS_SCSI_PROTOCOL_ERROR: /* 0x0047 */
	case MPI_IOCSTATUS_SCSI_TASK_TERMINATED: /* 0x0048 */
	case MPI_IOCSTATUS_SCSI_RESIDUAL_MISMATCH: /* 0x0049 */
	case MPI_IOCSTATUS_SCSI_TASK_MGMT_FAILED: /* 0x004A */
	case MPI_IOCSTATUS_SCSI_IOC_TERMINATED: /* 0x004B */
	case MPI_IOCSTATUS_SCSI_EXT_TERMINATED: /* 0x004C */
L
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7103 7104
		break;

7105 7106 7107 7108 7109 7110
/****************************************************************************/
/*  SCSI Target values                                                      */
/****************************************************************************/

	case MPI_IOCSTATUS_TARGET_PRIORITY_IO: /* 0x0060 */
		desc = "Target: Priority IO";
L
Linus Torvalds 已提交
7111 7112
		break;

7113 7114
	case MPI_IOCSTATUS_TARGET_INVALID_PORT: /* 0x0061 */
		desc = "Target: Invalid Port";
L
Linus Torvalds 已提交
7115 7116
		break;

7117 7118
	case MPI_IOCSTATUS_TARGET_INVALID_IO_INDEX: /* 0x0062 */
		desc = "Target Invalid IO Index:";
L
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7119 7120
		break;

7121 7122
	case MPI_IOCSTATUS_TARGET_ABORTED: /* 0x0063 */
		desc = "Target: Aborted";
L
Linus Torvalds 已提交
7123 7124
		break;

7125 7126
	case MPI_IOCSTATUS_TARGET_NO_CONN_RETRYABLE: /* 0x0064 */
		desc = "Target: No Conn Retryable";
L
Linus Torvalds 已提交
7127 7128
		break;

7129 7130
	case MPI_IOCSTATUS_TARGET_NO_CONNECTION: /* 0x0065 */
		desc = "Target: No Connection";
L
Linus Torvalds 已提交
7131 7132
		break;

7133 7134
	case MPI_IOCSTATUS_TARGET_XFER_COUNT_MISMATCH: /* 0x006A */
		desc = "Target: Transfer Count Mismatch";
L
Linus Torvalds 已提交
7135 7136
		break;

7137 7138
	case MPI_IOCSTATUS_TARGET_STS_DATA_NOT_SENT: /* 0x006B */
		desc = "Target: STS Data not Sent";
L
Linus Torvalds 已提交
7139 7140
		break;

7141 7142
	case MPI_IOCSTATUS_TARGET_DATA_OFFSET_ERROR: /* 0x006D */
		desc = "Target: Data Offset Error";
L
Linus Torvalds 已提交
7143 7144
		break;

7145 7146
	case MPI_IOCSTATUS_TARGET_TOO_MUCH_WRITE_DATA: /* 0x006E */
		desc = "Target: Too Much Write Data";
L
Linus Torvalds 已提交
7147 7148
		break;

7149 7150
	case MPI_IOCSTATUS_TARGET_IU_TOO_SHORT: /* 0x006F */
		desc = "Target: IU Too Short";
L
Linus Torvalds 已提交
7151 7152
		break;

7153 7154 7155 7156 7157 7158 7159 7160 7161 7162 7163 7164 7165 7166 7167 7168 7169 7170 7171 7172 7173 7174 7175 7176 7177 7178 7179 7180 7181 7182 7183 7184 7185 7186 7187 7188 7189 7190 7191 7192 7193 7194 7195 7196 7197 7198 7199 7200 7201 7202 7203 7204 7205 7206 7207 7208 7209 7210 7211 7212 7213 7214 7215 7216 7217 7218 7219 7220 7221 7222 7223 7224 7225 7226 7227 7228 7229 7230
	case MPI_IOCSTATUS_TARGET_ACK_NAK_TIMEOUT: /* 0x0070 */
		desc = "Target: ACK NAK Timeout";
		break;

	case MPI_IOCSTATUS_TARGET_NAK_RECEIVED: /* 0x0071 */
		desc = "Target: Nak Received";
		break;

/****************************************************************************/
/*  Fibre Channel Direct Access values                                      */
/****************************************************************************/

	case MPI_IOCSTATUS_FC_ABORTED: /* 0x0066 */
		desc = "FC: Aborted";
		break;

	case MPI_IOCSTATUS_FC_RX_ID_INVALID: /* 0x0067 */
		desc = "FC: RX ID Invalid";
		break;

	case MPI_IOCSTATUS_FC_DID_INVALID: /* 0x0068 */
		desc = "FC: DID Invalid";
		break;

	case MPI_IOCSTATUS_FC_NODE_LOGGED_OUT: /* 0x0069 */
		desc = "FC: Node Logged Out";
		break;

	case MPI_IOCSTATUS_FC_EXCHANGE_CANCELED: /* 0x006C */
		desc = "FC: Exchange Canceled";
		break;

/****************************************************************************/
/*  LAN values                                                              */
/****************************************************************************/

	case MPI_IOCSTATUS_LAN_DEVICE_NOT_FOUND: /* 0x0080 */
		desc = "LAN: Device not Found";
		break;

	case MPI_IOCSTATUS_LAN_DEVICE_FAILURE: /* 0x0081 */
		desc = "LAN: Device Failure";
		break;

	case MPI_IOCSTATUS_LAN_TRANSMIT_ERROR: /* 0x0082 */
		desc = "LAN: Transmit Error";
		break;

	case MPI_IOCSTATUS_LAN_TRANSMIT_ABORTED: /* 0x0083 */
		desc = "LAN: Transmit Aborted";
		break;

	case MPI_IOCSTATUS_LAN_RECEIVE_ERROR: /* 0x0084 */
		desc = "LAN: Receive Error";
		break;

	case MPI_IOCSTATUS_LAN_RECEIVE_ABORTED: /* 0x0085 */
		desc = "LAN: Receive Aborted";
		break;

	case MPI_IOCSTATUS_LAN_PARTIAL_PACKET: /* 0x0086 */
		desc = "LAN: Partial Packet";
		break;

	case MPI_IOCSTATUS_LAN_CANCELED: /* 0x0087 */
		desc = "LAN: Canceled";
		break;

/****************************************************************************/
/*  Serial Attached SCSI values                                             */
/****************************************************************************/

	case MPI_IOCSTATUS_SAS_SMP_REQUEST_FAILED: /* 0x0090 */
		desc = "SAS: SMP Request Failed";
		break;

	case MPI_IOCSTATUS_SAS_SMP_DATA_OVERRUN: /* 0x0090 */
		desc = "SAS: SMP Data Overrun";
L
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7231 7232 7233 7234 7235 7236
		break;

	default:
		desc = "Others";
		break;
	}
7237 7238 7239 7240 7241

	if (!desc)
		return;

	printk(MYIOC_s_INFO_FMT "IOCStatus(0x%04X): %s\n", ioc->name, status, desc);
L
Linus Torvalds 已提交
7242
}
7243
#endif
L
Linus Torvalds 已提交
7244 7245

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
7246 7247 7248 7249 7250 7251
EXPORT_SYMBOL(mpt_attach);
EXPORT_SYMBOL(mpt_detach);
#ifdef CONFIG_PM
EXPORT_SYMBOL(mpt_resume);
EXPORT_SYMBOL(mpt_suspend);
#endif
L
Linus Torvalds 已提交
7252
EXPORT_SYMBOL(ioc_list);
7253
EXPORT_SYMBOL(mpt_proc_root_dir);
L
Linus Torvalds 已提交
7254 7255 7256 7257 7258 7259 7260 7261 7262 7263 7264 7265 7266 7267 7268 7269 7270
EXPORT_SYMBOL(mpt_register);
EXPORT_SYMBOL(mpt_deregister);
EXPORT_SYMBOL(mpt_event_register);
EXPORT_SYMBOL(mpt_event_deregister);
EXPORT_SYMBOL(mpt_reset_register);
EXPORT_SYMBOL(mpt_reset_deregister);
EXPORT_SYMBOL(mpt_device_driver_register);
EXPORT_SYMBOL(mpt_device_driver_deregister);
EXPORT_SYMBOL(mpt_get_msg_frame);
EXPORT_SYMBOL(mpt_put_msg_frame);
EXPORT_SYMBOL(mpt_free_msg_frame);
EXPORT_SYMBOL(mpt_add_sge);
EXPORT_SYMBOL(mpt_send_handshake_request);
EXPORT_SYMBOL(mpt_verify_adapter);
EXPORT_SYMBOL(mpt_GetIocState);
EXPORT_SYMBOL(mpt_print_ioc_summary);
EXPORT_SYMBOL(mpt_lan_index);
7271
EXPORT_SYMBOL(mpt_stm_index);
L
Linus Torvalds 已提交
7272 7273 7274 7275 7276
EXPORT_SYMBOL(mpt_HardResetHandler);
EXPORT_SYMBOL(mpt_config);
EXPORT_SYMBOL(mpt_findImVolumes);
EXPORT_SYMBOL(mpt_alloc_fw_memory);
EXPORT_SYMBOL(mpt_free_fw_memory);
7277
EXPORT_SYMBOL(mptbase_sas_persist_operation);
7278
EXPORT_SYMBOL(mpt_raid_phys_disk_pg0);
L
Linus Torvalds 已提交
7279 7280

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
7281
/**
L
Linus Torvalds 已提交
7282 7283 7284 7285 7286 7287 7288 7289 7290 7291 7292 7293 7294 7295 7296 7297 7298 7299 7300
 *	fusion_init - Fusion MPT base driver initialization routine.
 *
 *	Returns 0 for success, non-zero for failure.
 */
static int __init
fusion_init(void)
{
	int i;

	show_mptmod_ver(my_NAME, my_VERSION);
	printk(KERN_INFO COPYRIGHT "\n");

	for (i = 0; i < MPT_MAX_PROTOCOL_DRIVERS; i++) {
		MptCallbacks[i] = NULL;
		MptDriverClass[i] = MPTUNKNOWN_DRIVER;
		MptEvHandlers[i] = NULL;
		MptResetHandlers[i] = NULL;
	}

7301
	/*  Register ourselves (mptbase) in order to facilitate
L
Linus Torvalds 已提交
7302 7303 7304 7305 7306 7307 7308 7309 7310 7311 7312 7313 7314 7315 7316
	 *  EventNotification handling.
	 */
	mpt_base_index = mpt_register(mpt_base_reply, MPTBASE_DRIVER);

	/* Register for hard reset handling callbacks.
	 */
	if (mpt_reset_register(mpt_base_index, mpt_ioc_reset) == 0) {
		dprintk((KERN_INFO MYNAM ": Register for IOC reset notification\n"));
	} else {
		/* FIXME! */
	}

#ifdef CONFIG_PROC_FS
	(void) procmpt_create();
#endif
7317
	return 0;
L
Linus Torvalds 已提交
7318 7319 7320
}

/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*/
7321
/**
L
Linus Torvalds 已提交
7322 7323 7324 7325 7326 7327 7328 7329 7330 7331 7332 7333 7334 7335 7336 7337 7338 7339 7340 7341
 *	fusion_exit - Perform driver unload cleanup.
 *
 *	This routine frees all resources associated with each MPT adapter
 *	and removes all %MPT_PROCFS_MPTBASEDIR entries.
 */
static void __exit
fusion_exit(void)
{

	dexitprintk((KERN_INFO MYNAM ": fusion_exit() called!\n"));

	mpt_reset_deregister(mpt_base_index);

#ifdef CONFIG_PROC_FS
	procmpt_destroy();
#endif
}

module_init(fusion_init);
module_exit(fusion_exit);