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mfireg.h revision 1.7.2.1
      1  1.7.2.1       tls /* $NetBSD: mfireg.h,v 1.7.2.1 2012/11/20 03:02:06 tls Exp $ */
      2      1.1    bouyer /* $OpenBSD: mfireg.h,v 1.24 2006/06/19 19:05:45 marco Exp $ */
      3      1.1    bouyer /*
      4      1.1    bouyer  * Copyright (c) 2006 Marco Peereboom <marco (at) peereboom.us>
      5      1.1    bouyer  *
      6      1.1    bouyer  * Permission to use, copy, modify, and distribute this software for any
      7      1.1    bouyer  * purpose with or without fee is hereby granted, provided that the above
      8      1.1    bouyer  * copyright notice and this permission notice appear in all copies.
      9      1.1    bouyer  *
     10      1.1    bouyer  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
     11      1.1    bouyer  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
     12      1.1    bouyer  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
     13      1.1    bouyer  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
     14      1.1    bouyer  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
     15      1.1    bouyer  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
     16      1.1    bouyer  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
     17      1.1    bouyer  */
     18      1.1    bouyer 
     19      1.6    bouyer /*-
     20      1.6    bouyer  * Copyright (c) 2007 LSI Corp.
     21      1.6    bouyer  * Copyright (c) 2007 Rajesh Prabhakaran.
     22      1.6    bouyer  * All rights reserved.
     23      1.6    bouyer  *
     24      1.6    bouyer  * Redistribution and use in source and binary forms, with or without
     25      1.6    bouyer  * modification, are permitted provided that the following conditions
     26      1.6    bouyer  * are met:
     27      1.6    bouyer  * 1. Redistributions of source code must retain the above copyright
     28      1.6    bouyer  *    notice, this list of conditions and the following disclaimer.
     29      1.6    bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     30      1.6    bouyer  *    notice, this list of conditions and the following disclaimer in the
     31      1.6    bouyer  *    documentation and/or other materials provided with the distribution.
     32      1.6    bouyer  *
     33      1.6    bouyer  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     34      1.6    bouyer  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     35      1.6    bouyer  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     36      1.6    bouyer  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     37      1.6    bouyer  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     38      1.6    bouyer  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     39      1.6    bouyer  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     40      1.6    bouyer  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     41      1.6    bouyer  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     42      1.6    bouyer  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     43      1.6    bouyer  * SUCH DAMAGE.
     44      1.6    bouyer  */
     45      1.6    bouyer 
     46  1.7.2.1       tls #ifndef _DEV_IC_MFIREG_H_
     47  1.7.2.1       tls #define _DEV_IC_MFIREG_H_
     48  1.7.2.1       tls 
     49      1.1    bouyer /* management interface constants */
     50      1.6    bouyer #define MFI_MGMT_VD			0x01
     51      1.6    bouyer #define MFI_MGMT_SD			0x02
     52      1.1    bouyer 
     53      1.1    bouyer /* generic constants */
     54      1.6    bouyer #define MFI_FRAME_SIZE			64
     55      1.6    bouyer #define MFI_SENSE_SIZE			128
     56      1.6    bouyer #define MFI_OSTS_INTR_VALID		0x00000002 /* valid interrupt */
     57      1.6    bouyer #define MFI_OSTS_PPC_INTR_VALID		0x80000000
     58      1.6    bouyer #define MFI_OSTS_GEN2_INTR_VALID	(0x00000001 | 0x00000004)
     59      1.6    bouyer #define MFI_INVALID_CTX			0xffffffff
     60      1.6    bouyer #define MFI_ENABLE_INTR			0x01
     61      1.6    bouyer #define MFI_MAXFER			MAXPHYS	/* XXX bogus */
     62      1.6    bouyer #define MFI_SECTOR_LEN			512
     63      1.1    bouyer 
     64      1.1    bouyer /* register offsets */
     65      1.6    bouyer #define MFI_IMSG0			0x10 /* inbound msg 0 */
     66      1.6    bouyer #define MFI_IMSG1			0x14 /* inbound msg 1 */
     67      1.6    bouyer #define MFI_OMSG0			0x18 /* outbound msg 0 */
     68      1.6    bouyer #define MFI_OMSG1			0x1c /* outbound msg 1 */
     69      1.6    bouyer #define MFI_IDB				0x20 /* inbound doorbell */
     70      1.6    bouyer #define MFI_ISTS			0x24 /* inbound intr stat */
     71      1.6    bouyer #define MFI_IMSK			0x28 /* inbound intr mask */
     72      1.6    bouyer #define MFI_ODB				0x2c /* outbound doorbell */
     73      1.6    bouyer #define MFI_OSTS			0x30 /* outbound intr stat */
     74      1.6    bouyer #define MFI_OMSK			0x34 /* outbound inter mask */
     75      1.6    bouyer #define MFI_IQP				0x40 /* inbound queue port */
     76      1.6    bouyer #define MFI_OQP				0x44 /* outbound queue port */
     77      1.6    bouyer #define MFI_ODC				0xa0 /* outbound doorbell clr */
     78      1.6    bouyer #define MFI_OSP 			0xb0 /* outbound scratch pad */
     79      1.6    bouyer 
     80      1.6    bouyer /* ThunderBolt specific Register */
     81      1.6    bouyer #define MFI_RPI				0x6c /* reply_post_host_index */
     82      1.6    bouyer #define MFI_ILQP			0xc0 /* inbound_low_queue_port */
     83      1.6    bouyer #define MFI_IHQP			0xc4 /* inbound_high_queue_port */
     84      1.6    bouyer 
     85      1.6    bouyer /* OCR registers */
     86      1.6    bouyer #define MFI_WSR				0x004 /* write sequence register */
     87      1.6    bouyer #define MFI_HDR				0x008 /* host diagnostic register */
     88      1.6    bouyer #define MFI_RSR				0x3c3 /* Reset Status Register */
     89      1.6    bouyer 
     90      1.6    bouyer /* OCR specific flags */
     91      1.6    bouyer #define MFI_FIRMWARE_STATE_CHANGE	0x00000002
     92      1.6    bouyer #define MFI_STATE_CHANGE_INTERRUPT	0x00000004
     93      1.1    bouyer 
     94      1.5  sborrill /*
     95      1.5  sborrill  * skinny specific changes
     96      1.5  sborrill */
     97      1.6    bouyer #define MFI_SKINNY_IDB			0x00 /* Inbound doorbell is at 0x00 for skinny */
     98      1.6    bouyer #define MFI_IQPL			0x000000c0
     99      1.6    bouyer #define MFI_IQPH			0x000000c4
    100      1.6    bouyer #define MFI_OSTS_SKINNY_INTR_VALID	0x00000001
    101      1.5  sborrill 
    102      1.1    bouyer /* * firmware states */
    103      1.6    bouyer #define MFI_STATE_MASK			0xf0000000
    104      1.6    bouyer #define MFI_STATE_UNDEFINED		0x00000000
    105      1.6    bouyer #define MFI_STATE_BB_INIT		0x10000000
    106      1.6    bouyer #define MFI_STATE_FW_INIT		0x40000000
    107      1.6    bouyer #define MFI_STATE_WAIT_HANDSHAKE	0x60000000
    108      1.6    bouyer #define MFI_STATE_FW_INIT_2		0x70000000
    109      1.6    bouyer #define MFI_STATE_DEVICE_SCAN		0x80000000
    110      1.6    bouyer #define MFI_STATE_FLUSH_CACHE		0xa0000000
    111      1.6    bouyer #define MFI_STATE_READY			0xb0000000
    112      1.6    bouyer #define MFI_STATE_OPERATIONAL		0xc0000000
    113      1.6    bouyer #define MFI_STATE_FAULT			0xf0000000
    114      1.6    bouyer #define MFI_STATE_MAXSGL_MASK		0x00ff0000
    115      1.6    bouyer #define MFI_STATE_MAXCMD_MASK		0x0000ffff
    116      1.6    bouyer #define MFI_STATE_HOSTMEMREQD_MASK	0x08000000
    117      1.6    bouyer #define MFI_STATE_BOOT_MESSAGE_PENDING	0x90000000
    118      1.6    bouyer #define MFI_RESET_REQUIRED		0x00000001
    119      1.6    bouyer 
    120      1.6    bouyer /* ThunderBolt Support */
    121      1.6    bouyer #define MFI_STATE_TB_MASK		0xf0000000
    122      1.6    bouyer #define MFI_STATE_TB_RESET		0x00000000
    123      1.6    bouyer #define MFI_STATE_TB_READY		0x10000000
    124      1.6    bouyer #define MFI_STATE_TB_OPERATIONAL	0x20000000
    125      1.6    bouyer #define MFI_STATE_TB_FAULT		0x40000000
    126      1.1    bouyer 
    127      1.1    bouyer /* command reset register */
    128      1.6    bouyer #define MFI_INIT_ABORT			0x00000000
    129      1.6    bouyer #define MFI_INIT_READY			0x00000002
    130      1.6    bouyer #define MFI_INIT_MFIMODE		0x00000004
    131      1.6    bouyer #define MFI_INIT_CLEAR_HANDSHAKE	0x00000008
    132      1.6    bouyer #define MFI_RESET_FLAGS			MFI_INIT_READY|MFI_INIT_MFIMODE
    133      1.6    bouyer #define MFI_INIT_HOTPLUG		0x00000010
    134      1.6    bouyer 
    135      1.6    bouyer /* ADP reset flags */
    136      1.6    bouyer #define MFI_STOP_ADP			0x00000020
    137      1.6    bouyer #define MFI_ADP_RESET			0x00000040
    138      1.6    bouyer #define DIAG_WRITE_ENABLE		0x00000080
    139      1.6    bouyer #define DIAG_RESET_ADAPTER		0x00000004
    140      1.1    bouyer 
    141      1.1    bouyer /* mfi Frame flags */
    142      1.1    bouyer #define MFI_FRAME_POST_IN_REPLY_QUEUE		0x0000
    143      1.1    bouyer #define MFI_FRAME_DONT_POST_IN_REPLY_QUEUE	0x0001
    144      1.1    bouyer #define MFI_FRAME_SGL32				0x0000
    145      1.1    bouyer #define MFI_FRAME_SGL64				0x0002
    146      1.1    bouyer #define MFI_FRAME_SENSE32			0x0000
    147      1.1    bouyer #define MFI_FRAME_SENSE64			0x0004
    148      1.1    bouyer #define MFI_FRAME_DIR_NONE			0x0000
    149      1.1    bouyer #define MFI_FRAME_DIR_WRITE			0x0008
    150      1.1    bouyer #define MFI_FRAME_DIR_READ			0x0010
    151      1.1    bouyer #define MFI_FRAME_DIR_BOTH			0x0018
    152      1.6    bouyer #define MFI_FRAME_IEEE_SGL			0x0020
    153      1.6    bouyer 
    154      1.6    bouyer /* ThunderBolt Specific */
    155      1.6    bouyer 
    156      1.6    bouyer /*
    157      1.6    bouyer  * Pre-TB command size and TB command size.
    158      1.6    bouyer  * We will be checking it at the load time for the time being
    159      1.6    bouyer  */
    160      1.6    bouyer #define MR_COMMAND_SIZE (MFI_FRAME_SIZE*20) /* 1280 bytes */
    161      1.6    bouyer 
    162      1.6    bouyer #define MEGASAS_THUNDERBOLT_MSG_ALLIGNMENT	256
    163      1.6    bouyer /*
    164      1.6    bouyer  * We are defining only 128 byte message to reduce memory move over head
    165      1.6    bouyer  * and also it will reduce the SRB extension size by 128byte compared with
    166      1.6    bouyer  * 256 message size
    167      1.6    bouyer  */
    168      1.6    bouyer #define MEGASAS_THUNDERBOLT_NEW_MSG_SIZE	256
    169      1.6    bouyer #define MEGASAS_THUNDERBOLT_MAX_COMMANDS	1024
    170      1.6    bouyer #define MEGASAS_THUNDERBOLT_MAX_REPLY_COUNT	1024
    171      1.6    bouyer #define MEGASAS_THUNDERBOLT_REPLY_SIZE		8
    172      1.6    bouyer #define MEGASAS_THUNDERBOLT_MAX_CHAIN_COUNT	1
    173      1.6    bouyer #define MEGASAS_MAX_SZ_CHAIN_FRAME		1024
    174      1.6    bouyer 
    175      1.6    bouyer /*
    176      1.6    bouyer  * Calculating how many SGEs allowed in a allocated main message
    177      1.6    bouyer  * (size of the Message - Raid SCSI IO message size(except SGE))
    178      1.6    bouyer  * / size of SGE
    179      1.6    bouyer  * (0x100 - (0x90 - 0x10)) / 0x10 = 8
    180      1.6    bouyer  */
    181      1.6    bouyer #define MEGASAS_THUNDERBOLT_MAX_SGE_IN_MAINMSG \
    182      1.6    bouyer  ((MEGASAS_THUNDERBOLT_NEW_MSG_SIZE - \
    183      1.6    bouyer    (sizeof(struct mfi_mpi2_request_raid_scsi_io) - sizeof(mpi2_sge_io_union))\
    184      1.6    bouyer   ) / sizeof(mpi2_sge_io_union))
    185      1.6    bouyer 
    186      1.6    bouyer /*
    187      1.6    bouyer  * (Command frame size allocaed in SRB ext - Raid SCSI IO message size)
    188      1.6    bouyer  * / size of SGL ;
    189      1.6    bouyer  * (1280 - 256) / 16 = 64
    190      1.6    bouyer  */
    191      1.6    bouyer #define MEGASAS_THUNDERBOLT_MAX_SGE_IN_CHAINMSG \
    192      1.6    bouyer   ((MR_COMMAND_SIZE - MEGASAS_THUNDERBOLT_NEW_MSG_SIZE) / \
    193      1.6    bouyer    sizeof(mpi2_sge_io_union))
    194      1.6    bouyer 
    195      1.6    bouyer /*
    196      1.6    bouyer  * This is the offset in number of 4 * 32bit words to the next chain
    197      1.6    bouyer  * (0x100 - 0x10)/0x10 = 0xF(15)
    198      1.6    bouyer  */
    199      1.6    bouyer #define MEGASAS_THUNDERBOLT_CHAIN_OFF_MAINMSG \
    200      1.6    bouyer   ((MEGASAS_THUNDERBOLT_NEW_MSG_SIZE - sizeof(mpi2_sge_io_union)) / 16)
    201      1.6    bouyer 
    202      1.6    bouyer #define MEGASAS_THUNDERBOLT_CHAIN_OFF_MPT_PTMSG \
    203      1.6    bouyer   (offsetof(struct mfi_mpi2_request_raid_scsi_io, SGL) / 16)
    204      1.6    bouyer 
    205      1.6    bouyer #define MPI2_FUNCTION_PASSTHRU_IO_REQUEST	0xF0
    206      1.6    bouyer #define MPI2_FUNCTION_LD_IO_REQUEST		0xF1
    207      1.6    bouyer 
    208      1.6    bouyer #define MR_INTERNAL_MFI_FRAMES_SMID		1
    209      1.6    bouyer #define MR_CTRL_EVENT_WAIT_SMID			2
    210      1.6    bouyer #define MR_INTERNAL_DRIVER_RESET_SMID		3
    211      1.1    bouyer 
    212      1.1    bouyer /* mfi command opcodes */
    213      1.6    bouyer #define MFI_CMD_INIT			0x00
    214      1.6    bouyer #define MFI_CMD_LD_READ			0x01
    215      1.6    bouyer #define MFI_CMD_LD_WRITE		0x02
    216      1.6    bouyer #define MFI_CMD_LD_SCSI_IO		0x03
    217      1.6    bouyer #define MFI_CMD_PD_SCSI_IO		0x04
    218      1.6    bouyer #define MFI_CMD_DCMD			0x05
    219      1.6    bouyer #define MFI_CMD_ABORT			0x06
    220      1.6    bouyer #define MFI_CMD_SMP			0x07
    221      1.6    bouyer #define MFI_CMD_STP			0x08
    222      1.1    bouyer 
    223      1.1    bouyer /* direct commands */
    224      1.6    bouyer #define MR_DCMD_CTRL_GET_INFO		0x01010000
    225      1.6    bouyer #define MR_DCMD_CTRL_CACHE_FLUSH	0x01101000
    226      1.6    bouyer #define   MR_FLUSH_CTRL_CACHE		0x01
    227      1.6    bouyer #define   MR_FLUSH_DISK_CACHE		0x02
    228      1.6    bouyer #define MR_DCMD_CTRL_HOST_MEM_ALLOC	0x0100e100
    229      1.6    bouyer #define MR_DCMD_CTRL_SHUTDOWN		0x01050000
    230      1.6    bouyer #define   MR_ENABLE_DRIVE_SPINDOWN	0x01
    231      1.6    bouyer #define MR_DCMD_CTRL_EVENT_GET_INFO	0x01040100
    232      1.6    bouyer #define MR_DCMD_CTRL_EVENT_GET		0x01040300
    233      1.6    bouyer #define MR_DCMD_CTRL_EVENT_WAIT		0x01040500
    234      1.6    bouyer #define MR_DCMD_PD_GET_LIST		0x02010000
    235      1.6    bouyer #define MR_DCMD_PD_LIST_QUERY		0x02010100
    236      1.6    bouyer #define MR_DCMD_PD_GET_INFO		0x02020000
    237      1.6    bouyer #define MD_DCMD_PD_SET_STATE		0x02030100
    238      1.6    bouyer #define MD_DCMD_PD_REBUILD		0x02040100
    239      1.6    bouyer #define MR_DCMD_PD_BLINK		0x02070100
    240      1.6    bouyer #define MR_DCMD_PD_UNBLINK		0x02070200
    241      1.6    bouyer #define MR_DCMD_LD_MAP_GET_INFO		0x0300e101
    242      1.6    bouyer #define MR_DCMD_LD_SYNC			0x0300e102
    243      1.6    bouyer #define MR_DCMD_LD_GET_LIST		0x03010000
    244      1.6    bouyer #define MR_DCMD_LD_GET_INFO		0x03020000
    245      1.6    bouyer #define MR_DCMD_LD_GET_PROPERTIES	0x03030000
    246      1.6    bouyer #define MD_DCMD_CONF_GET		0x04010000
    247      1.7    bouyer #define MR_DCMD_BBU_GET_STATUS		0x05010000
    248      1.7    bouyer #define MR_DCMD_BBU_GET_CAPACITY_INFO	0x05020000
    249      1.7    bouyer #define MR_DCMD_BBU_GET_DESIGN_INFO	0x05030000
    250      1.6    bouyer #define MR_DCMD_CLUSTER			0x08000000
    251      1.6    bouyer #define MR_DCMD_CLUSTER_RESET_ALL	0x08010100
    252      1.6    bouyer #define MR_DCMD_CLUSTER_RESET_LD	0x08010200
    253      1.6    bouyer 
    254      1.6    bouyer #define MR_DCMD_SPEAKER_GET		0x01030100
    255      1.6    bouyer #define MR_DCMD_SPEAKER_ENABLE		0x01030200
    256      1.6    bouyer #define MR_DCMD_SPEAKER_DISABLE		0x01030300
    257      1.6    bouyer #define MR_DCMD_SPEAKER_SILENCE		0x01030400
    258      1.6    bouyer #define MR_DCMD_SPEAKER_TEST		0x01030500
    259      1.1    bouyer 
    260      1.1    bouyer /* mailbox bytes in direct command */
    261      1.6    bouyer #define MFI_MBOX_SIZE			12
    262      1.1    bouyer 
    263      1.1    bouyer /* mfi completion codes */
    264      1.1    bouyer typedef enum {
    265      1.1    bouyer 	MFI_STAT_OK =				0x00,
    266      1.1    bouyer 	MFI_STAT_INVALID_CMD =			0x01,
    267      1.1    bouyer 	MFI_STAT_INVALID_DCMD =			0x02,
    268      1.1    bouyer 	MFI_STAT_INVALID_PARAMETER =		0x03,
    269      1.1    bouyer 	MFI_STAT_INVALID_SEQUENCE_NUMBER =	0x04,
    270      1.1    bouyer 	MFI_STAT_ABORT_NOT_POSSIBLE =		0x05,
    271      1.1    bouyer 	MFI_STAT_APP_HOST_CODE_NOT_FOUND =	0x06,
    272      1.1    bouyer 	MFI_STAT_APP_IN_USE =			0x07,
    273      1.1    bouyer 	MFI_STAT_APP_NOT_INITIALIZED =		0x08,
    274      1.1    bouyer 	MFI_STAT_ARRAY_INDEX_INVALID =		0x09,
    275      1.1    bouyer 	MFI_STAT_ARRAY_ROW_NOT_EMPTY =		0x0a,
    276      1.1    bouyer 	MFI_STAT_CONFIG_RESOURCE_CONFLICT =	0x0b,
    277      1.1    bouyer 	MFI_STAT_DEVICE_NOT_FOUND =		0x0c,
    278      1.1    bouyer 	MFI_STAT_DRIVE_TOO_SMALL =		0x0d,
    279      1.1    bouyer 	MFI_STAT_FLASH_ALLOC_FAIL =		0x0e,
    280      1.1    bouyer 	MFI_STAT_FLASH_BUSY =			0x0f,
    281      1.1    bouyer 	MFI_STAT_FLASH_ERROR =			0x10,
    282      1.1    bouyer 	MFI_STAT_FLASH_IMAGE_BAD =		0x11,
    283      1.1    bouyer 	MFI_STAT_FLASH_IMAGE_INCOMPLETE =	0x12,
    284      1.1    bouyer 	MFI_STAT_FLASH_NOT_OPEN =		0x13,
    285      1.1    bouyer 	MFI_STAT_FLASH_NOT_STARTED =		0x14,
    286      1.1    bouyer 	MFI_STAT_FLUSH_FAILED =			0x15,
    287      1.1    bouyer 	MFI_STAT_HOST_CODE_NOT_FOUNT =		0x16,
    288      1.1    bouyer 	MFI_STAT_LD_CC_IN_PROGRESS =		0x17,
    289      1.1    bouyer 	MFI_STAT_LD_INIT_IN_PROGRESS =		0x18,
    290      1.1    bouyer 	MFI_STAT_LD_LBA_OUT_OF_RANGE =		0x19,
    291      1.1    bouyer 	MFI_STAT_LD_MAX_CONFIGURED =		0x1a,
    292      1.1    bouyer 	MFI_STAT_LD_NOT_OPTIMAL =		0x1b,
    293      1.1    bouyer 	MFI_STAT_LD_RBLD_IN_PROGRESS =		0x1c,
    294      1.1    bouyer 	MFI_STAT_LD_RECON_IN_PROGRESS =		0x1d,
    295      1.1    bouyer 	MFI_STAT_LD_WRONG_RAID_LEVEL =		0x1e,
    296      1.1    bouyer 	MFI_STAT_MAX_SPARES_EXCEEDED =		0x1f,
    297      1.1    bouyer 	MFI_STAT_MEMORY_NOT_AVAILABLE =		0x20,
    298      1.1    bouyer 	MFI_STAT_MFC_HW_ERROR =			0x21,
    299      1.1    bouyer 	MFI_STAT_NO_HW_PRESENT =		0x22,
    300      1.1    bouyer 	MFI_STAT_NOT_FOUND =			0x23,
    301      1.1    bouyer 	MFI_STAT_NOT_IN_ENCL =			0x24,
    302      1.1    bouyer 	MFI_STAT_PD_CLEAR_IN_PROGRESS =		0x25,
    303      1.1    bouyer 	MFI_STAT_PD_TYPE_WRONG =		0x26,
    304      1.1    bouyer 	MFI_STAT_PR_DISABLED =			0x27,
    305      1.1    bouyer 	MFI_STAT_ROW_INDEX_INVALID =		0x28,
    306      1.1    bouyer 	MFI_STAT_SAS_CONFIG_INVALID_ACTION =	0x29,
    307      1.1    bouyer 	MFI_STAT_SAS_CONFIG_INVALID_DATA =	0x2a,
    308      1.1    bouyer 	MFI_STAT_SAS_CONFIG_INVALID_PAGE =	0x2b,
    309      1.1    bouyer 	MFI_STAT_SAS_CONFIG_INVALID_TYPE =	0x2c,
    310      1.1    bouyer 	MFI_STAT_SCSI_DONE_WITH_ERROR =		0x2d,
    311      1.1    bouyer 	MFI_STAT_SCSI_IO_FAILED =		0x2e,
    312      1.1    bouyer 	MFI_STAT_SCSI_RESERVATION_CONFLICT =	0x2f,
    313      1.1    bouyer 	MFI_STAT_SHUTDOWN_FAILED =		0x30,
    314      1.1    bouyer 	MFI_STAT_TIME_NOT_SET =			0x31,
    315      1.1    bouyer 	MFI_STAT_WRONG_STATE =			0x32,
    316      1.1    bouyer 	MFI_STAT_LD_OFFLINE =			0x33,
    317      1.1    bouyer 	MFI_STAT_PEER_NOTIFICATION_REJECTED =	0x34,
    318      1.1    bouyer 	MFI_STAT_PEER_NOTIFICATION_FAILED =	0x35,
    319      1.1    bouyer 	MFI_STAT_RESERVATION_IN_PROGRESS =	0x36,
    320      1.1    bouyer 	MFI_STAT_I2C_ERRORS_DETECTED =		0x37,
    321      1.1    bouyer 	MFI_STAT_PCI_ERRORS_DETECTED =		0x38,
    322      1.1    bouyer 	MFI_STAT_INVALID_STATUS =		0xff
    323      1.1    bouyer } mfi_status_t;
    324      1.1    bouyer 
    325      1.1    bouyer typedef enum {
    326      1.1    bouyer 	MFI_EVT_CLASS_DEBUG =			-2,
    327      1.1    bouyer 	MFI_EVT_CLASS_PROGRESS =		-1,
    328      1.1    bouyer 	MFI_EVT_CLASS_INFO =			0,
    329      1.1    bouyer 	MFI_EVT_CLASS_WARNING =			1,
    330      1.1    bouyer 	MFI_EVT_CLASS_CRITICAL =		2,
    331      1.1    bouyer 	MFI_EVT_CLASS_FATAL =			3,
    332      1.1    bouyer 	MFI_EVT_CLASS_DEAD =			4
    333      1.1    bouyer } mfi_evt_class_t;
    334      1.1    bouyer 
    335      1.1    bouyer typedef enum {
    336      1.1    bouyer 	MFI_EVT_LOCALE_LD =			0x0001,
    337      1.1    bouyer 	MFI_EVT_LOCALE_PD =			0x0002,
    338      1.1    bouyer 	MFI_EVT_LOCALE_ENCL =			0x0004,
    339      1.1    bouyer 	MFI_EVT_LOCALE_BBU =			0x0008,
    340      1.1    bouyer 	MFI_EVT_LOCALE_SAS =			0x0010,
    341      1.1    bouyer 	MFI_EVT_LOCALE_CTRL =			0x0020,
    342      1.1    bouyer 	MFI_EVT_LOCALE_CONFIG =			0x0040,
    343      1.1    bouyer 	MFI_EVT_LOCALE_CLUSTER =		0x0080,
    344      1.1    bouyer 	MFI_EVT_LOCALE_ALL =			0xffff
    345      1.1    bouyer } mfi_evt_locale_t;
    346      1.1    bouyer 
    347      1.1    bouyer typedef enum {
    348      1.1    bouyer         MR_EVT_ARGS_NONE =			0x00,
    349      1.1    bouyer         MR_EVT_ARGS_CDB_SENSE,
    350      1.1    bouyer         MR_EVT_ARGS_LD,
    351      1.1    bouyer         MR_EVT_ARGS_LD_COUNT,
    352      1.1    bouyer         MR_EVT_ARGS_LD_LBA,
    353      1.1    bouyer         MR_EVT_ARGS_LD_OWNER,
    354      1.1    bouyer         MR_EVT_ARGS_LD_LBA_PD_LBA,
    355      1.1    bouyer         MR_EVT_ARGS_LD_PROG,
    356      1.1    bouyer         MR_EVT_ARGS_LD_STATE,
    357      1.1    bouyer         MR_EVT_ARGS_LD_STRIP,
    358      1.1    bouyer         MR_EVT_ARGS_PD,
    359      1.1    bouyer         MR_EVT_ARGS_PD_ERR,
    360      1.1    bouyer         MR_EVT_ARGS_PD_LBA,
    361      1.1    bouyer         MR_EVT_ARGS_PD_LBA_LD,
    362      1.1    bouyer         MR_EVT_ARGS_PD_PROG,
    363      1.1    bouyer         MR_EVT_ARGS_PD_STATE,
    364      1.1    bouyer         MR_EVT_ARGS_PCI,
    365      1.1    bouyer         MR_EVT_ARGS_RATE,
    366      1.1    bouyer         MR_EVT_ARGS_STR,
    367      1.1    bouyer         MR_EVT_ARGS_TIME,
    368      1.1    bouyer         MR_EVT_ARGS_ECC
    369      1.1    bouyer } mfi_evt_args;
    370      1.1    bouyer 
    371      1.6    bouyer /* XXX should be in mfi_evt_args ? */
    372      1.6    bouyer #define MR_EVT_CTRL_HOST_BUS_SCAN_REQUESTED	0x0152
    373      1.6    bouyer #define MR_EVT_PD_REMOVED			0x0070
    374      1.6    bouyer #define MR_EVT_PD_INSERTED			0x005b
    375      1.6    bouyer #define MR_EVT_LD_CHANGE			0x0051
    376      1.6    bouyer 
    377      1.6    bouyer typedef enum {
    378      1.6    bouyer 	MR_PD_QUERY_TYPE_ALL =			0,
    379      1.6    bouyer 	MR_PD_QUERY_TYPE_STATE =		1,
    380      1.6    bouyer 	MR_PD_QUERY_TYPE_POWER_STATE =		2,
    381      1.6    bouyer 	MR_PD_QUERY_TYPE_MEDIA_TYPE =		3,
    382      1.6    bouyer 	MR_PD_QUERY_TYPE_SPEED =		4,
    383      1.6    bouyer 	MR_PD_QUERY_TYPE_EXPOSED_TO_HOST =	5 /*query for system drives */
    384      1.6    bouyer } mfi_pd_query_type;
    385      1.6    bouyer 
    386      1.1    bouyer /* driver definitions */
    387      1.1    bouyer #define MFI_MAX_PD_CHANNELS			2
    388      1.1    bouyer #define MFI_MAX_PD_ARRAY			32
    389      1.1    bouyer #define MFI_MAX_LD_CHANNELS			2
    390      1.1    bouyer #define MFI_MAX_CHANNELS	(MFI_MAX_PD_CHANNELS + MFI_MAX_LD_CHANNELS)
    391      1.1    bouyer #define MFI_MAX_CHANNEL_DEVS			128
    392      1.1    bouyer #define MFI_DEFAULT_ID				-1
    393      1.1    bouyer #define MFI_MAX_LUN				8
    394      1.1    bouyer #define MFI_MAX_LD				64
    395      1.1    bouyer #define MFI_MAX_SPAN				8
    396      1.1    bouyer #define MFI_MAX_ARRAY_DEDICATED			16
    397      1.1    bouyer 
    398      1.1    bouyer /* sense buffer */
    399      1.1    bouyer struct mfi_sense {
    400      1.1    bouyer 	uint8_t			mse_data[MFI_SENSE_SIZE];
    401      1.1    bouyer } __packed;
    402      1.1    bouyer 
    403      1.1    bouyer /* scatter gather elements */
    404      1.1    bouyer struct mfi_sg32 {
    405      1.1    bouyer 	uint32_t		addr;
    406      1.1    bouyer 	uint32_t		len;
    407      1.1    bouyer } __packed;
    408      1.1    bouyer 
    409      1.1    bouyer struct mfi_sg64 {
    410      1.1    bouyer 	uint64_t		addr;
    411      1.1    bouyer 	uint32_t		len;
    412      1.1    bouyer } __packed;
    413      1.1    bouyer 
    414      1.6    bouyer struct mfi_sg_ieee {
    415      1.6    bouyer 	uint64_t		addr;
    416      1.6    bouyer 	uint32_t		len;
    417      1.6    bouyer 	uint32_t		flags;
    418      1.6    bouyer } __packed;
    419      1.6    bouyer 
    420      1.6    bouyer 
    421      1.1    bouyer union mfi_sgl {
    422      1.1    bouyer 	struct mfi_sg32		sg32[1];
    423      1.1    bouyer 	struct mfi_sg64		sg64[1];
    424      1.6    bouyer 	struct mfi_sg_ieee	sg_ieee[1];
    425      1.1    bouyer } __packed;
    426      1.1    bouyer 
    427      1.1    bouyer /* message frame */
    428      1.1    bouyer struct mfi_frame_header {
    429      1.1    bouyer 	uint8_t			mfh_cmd;
    430      1.1    bouyer 	uint8_t			mfh_sense_len;
    431      1.1    bouyer 	uint8_t			mfh_cmd_status;
    432      1.1    bouyer 	uint8_t			mfh_scsi_status;
    433      1.1    bouyer 	uint8_t			mfh_target_id;
    434      1.1    bouyer 	uint8_t			mfh_lun_id;
    435      1.1    bouyer 	uint8_t			mfh_cdb_len;
    436      1.1    bouyer 	uint8_t			mfh_sg_count;
    437      1.1    bouyer 	uint32_t		mfh_context;
    438      1.1    bouyer 	uint32_t		mfh_pad0;
    439      1.1    bouyer 	uint16_t		mfh_flags;
    440      1.1    bouyer 	uint16_t		mfh_timeout;
    441      1.1    bouyer 	uint32_t		mfh_data_len;
    442      1.1    bouyer } __packed;
    443      1.1    bouyer 
    444      1.1    bouyer union mfi_sgl_frame {
    445      1.1    bouyer 	struct mfi_sg32		sge32[8];
    446      1.1    bouyer 	struct mfi_sg64		sge64[5];
    447      1.1    bouyer 
    448      1.1    bouyer } __packed;
    449      1.1    bouyer 
    450      1.1    bouyer struct mfi_init_frame {
    451      1.1    bouyer 	struct mfi_frame_header	mif_header;
    452      1.1    bouyer 	uint32_t		mif_qinfo_new_addr_lo;
    453      1.1    bouyer 	uint32_t		mif_qinfo_new_addr_hi;
    454      1.1    bouyer 	uint32_t		mif_qinfo_old_addr_lo;
    455      1.1    bouyer 	uint32_t		mif_qinfo_old_addr_hi;
    456      1.6    bouyer 	uint32_t		driver_ver_lo;	/* 0x28 */
    457      1.6    bouyer 	uint32_t		driver_ver_hi;	/* 0x2c */
    458      1.6    bouyer 	uint32_t		reserved[4];
    459      1.1    bouyer } __packed;
    460      1.1    bouyer 
    461      1.1    bouyer /* queue init structure */
    462      1.1    bouyer struct mfi_init_qinfo {
    463      1.1    bouyer 	uint32_t		miq_flags;
    464      1.1    bouyer 	uint32_t		miq_rq_entries;
    465      1.1    bouyer 	uint32_t		miq_rq_addr_lo;
    466      1.1    bouyer 	uint32_t		miq_rq_addr_hi;
    467      1.1    bouyer 	uint32_t		miq_pi_addr_lo;
    468      1.1    bouyer 	uint32_t		miq_pi_addr_hi;
    469      1.1    bouyer 	uint32_t		miq_ci_addr_lo;
    470      1.1    bouyer 	uint32_t		miq_ci_addr_hi;
    471      1.1    bouyer } __packed;
    472      1.1    bouyer 
    473      1.1    bouyer #define MFI_IO_FRAME_SIZE	40
    474      1.1    bouyer struct mfi_io_frame {
    475      1.1    bouyer 	struct mfi_frame_header	mif_header;
    476      1.1    bouyer 	uint32_t		mif_sense_addr_lo;
    477      1.1    bouyer 	uint32_t		mif_sense_addr_hi;
    478      1.1    bouyer 	uint32_t		mif_lba_lo;
    479      1.1    bouyer 	uint32_t		mif_lba_hi;
    480      1.1    bouyer 	union mfi_sgl		mif_sgl;
    481      1.1    bouyer } __packed;
    482      1.1    bouyer 
    483      1.1    bouyer #define MFI_PASS_FRAME_SIZE	48
    484      1.1    bouyer struct mfi_pass_frame {
    485      1.1    bouyer 	struct mfi_frame_header mpf_header;
    486      1.1    bouyer 	uint32_t		mpf_sense_addr_lo;
    487      1.1    bouyer 	uint32_t		mpf_sense_addr_hi;
    488      1.1    bouyer 	uint8_t			mpf_cdb[16];
    489      1.1    bouyer 	union mfi_sgl		mpf_sgl;
    490      1.1    bouyer } __packed;
    491      1.1    bouyer 
    492      1.1    bouyer #define MFI_DCMD_FRAME_SIZE	40
    493      1.1    bouyer struct mfi_dcmd_frame {
    494      1.1    bouyer 	struct mfi_frame_header mdf_header;
    495      1.1    bouyer 	uint32_t		mdf_opcode;
    496      1.1    bouyer 	uint8_t			mdf_mbox[MFI_MBOX_SIZE];
    497      1.1    bouyer 	union mfi_sgl		mdf_sgl;
    498      1.1    bouyer } __packed;
    499      1.6    bouyer #define MFI_DCMD_MBOX_PEND_FLAG	0x1
    500      1.1    bouyer 
    501      1.1    bouyer struct mfi_abort_frame {
    502      1.1    bouyer 	struct mfi_frame_header maf_header;
    503      1.1    bouyer 	uint32_t		maf_abort_context;
    504      1.1    bouyer 	uint32_t		maf_pad;
    505      1.1    bouyer 	uint32_t		maf_abort_mfi_addr_lo;
    506      1.1    bouyer 	uint32_t		maf_abort_mfi_addr_hi;
    507      1.1    bouyer 	uint32_t		maf_reserved[6];
    508      1.1    bouyer } __packed;
    509      1.1    bouyer 
    510      1.1    bouyer struct mfi_smp_frame {
    511      1.1    bouyer 	struct mfi_frame_header msf_header;
    512      1.1    bouyer 	uint64_t		msf_sas_addr;
    513      1.1    bouyer 	union {
    514      1.1    bouyer 		struct mfi_sg32 sg32[2];
    515      1.1    bouyer 		struct mfi_sg64 sg64[2];
    516      1.1    bouyer 	}			msf_sgl;
    517      1.1    bouyer } __packed;
    518      1.1    bouyer 
    519      1.1    bouyer struct mfi_stp_frame {
    520      1.1    bouyer 	struct mfi_frame_header msf_header;
    521      1.1    bouyer 	uint16_t		msf_fis[10];
    522      1.1    bouyer 	uint32_t		msf_stp_flags;
    523      1.1    bouyer 	union {
    524      1.1    bouyer 		struct mfi_sg32 sg32[2];
    525      1.1    bouyer 		struct mfi_sg64 sg64[2];
    526      1.1    bouyer 	} 			msf_sgl;
    527      1.1    bouyer } __packed;
    528      1.1    bouyer 
    529      1.1    bouyer union mfi_frame {
    530      1.1    bouyer 	struct mfi_frame_header mfr_header;
    531      1.1    bouyer 	struct mfi_init_frame	mfr_init;
    532      1.1    bouyer 	struct mfi_io_frame	mfr_io;
    533      1.1    bouyer 	struct mfi_pass_frame	mfr_pass;
    534      1.1    bouyer 	struct mfi_dcmd_frame	mfr_dcmd;
    535      1.1    bouyer 	struct mfi_abort_frame	mfr_abort;
    536      1.1    bouyer 	struct mfi_smp_frame	mfr_smp;
    537      1.1    bouyer 	struct mfi_stp_frame	mfr_stp;
    538      1.1    bouyer 	uint8_t			mfr_bytes[MFI_FRAME_SIZE];
    539      1.1    bouyer };
    540      1.1    bouyer 
    541      1.1    bouyer union mfi_evt_class_locale {
    542      1.1    bouyer 	struct {
    543      1.1    bouyer 		uint16_t	locale;
    544      1.1    bouyer 		uint8_t 	reserved;
    545      1.1    bouyer 		int8_t		class;
    546      1.1    bouyer 	} __packed		mec_members;
    547      1.1    bouyer 
    548      1.1    bouyer 	uint32_t		mec_word;
    549      1.1    bouyer } __packed;
    550      1.1    bouyer 
    551      1.1    bouyer struct mfi_evt_log_info {
    552      1.1    bouyer 	uint32_t		mel_newest_seq_num;
    553      1.1    bouyer 	uint32_t		mel_oldest_seq_num;
    554      1.1    bouyer 	uint32_t		mel_clear_seq_num;
    555      1.1    bouyer 	uint32_t		mel_shutdown_seq_num;
    556      1.1    bouyer 	uint32_t		mel_boot_seq_num;
    557      1.1    bouyer } __packed;
    558      1.1    bouyer 
    559      1.1    bouyer struct mfi_progress {
    560      1.1    bouyer 	uint16_t		mp_progress;
    561      1.1    bouyer 	uint16_t		mp_elapsed_seconds;
    562      1.1    bouyer } __packed;
    563      1.1    bouyer 
    564      1.1    bouyer struct mfi_evtarg_ld {
    565      1.1    bouyer 	uint16_t		mel_target_id;
    566      1.1    bouyer 	uint8_t			mel_ld_index;
    567      1.1    bouyer 	uint8_t			mel_reserved;
    568      1.1    bouyer } __packed;
    569      1.1    bouyer 
    570      1.1    bouyer struct mfi_evtarg_pd {
    571      1.1    bouyer 	uint16_t		mep_device_id;
    572      1.1    bouyer 	uint8_t			mep_encl_index;
    573      1.1    bouyer 	uint8_t			mep_slot_number;
    574      1.1    bouyer } __packed;
    575      1.1    bouyer 
    576      1.1    bouyer struct mfi_evt_detail {
    577      1.1    bouyer 	uint32_t				med_seq_num;
    578      1.1    bouyer 	uint32_t				med_time_stamp;
    579      1.1    bouyer 	uint32_t				med_code;
    580      1.1    bouyer 	union mfi_evt_class_locale		med_cl;
    581      1.1    bouyer 	uint8_t					med_arg_type;
    582      1.1    bouyer 	uint8_t					med_reserved1[15];
    583      1.1    bouyer 
    584      1.1    bouyer 	union {
    585      1.1    bouyer 		struct {
    586      1.1    bouyer 			struct mfi_evtarg_pd	pd;
    587      1.1    bouyer 			uint8_t			cdb_length;
    588      1.1    bouyer 			uint8_t			sense_length;
    589      1.1    bouyer 			uint8_t			reserved[2];
    590      1.1    bouyer 			uint8_t			cdb[16];
    591      1.1    bouyer 			uint8_t			sense[64];
    592      1.1    bouyer 		} __packed			cdb_sense;
    593      1.1    bouyer 
    594      1.1    bouyer 		struct mfi_evtarg_ld 		ld;
    595      1.1    bouyer 
    596      1.1    bouyer 		struct {
    597      1.1    bouyer 			struct mfi_evtarg_ld	ld;
    598      1.1    bouyer 			uint64_t		count;
    599      1.1    bouyer 		} __packed			ld_count;
    600      1.1    bouyer 
    601      1.1    bouyer 		struct {
    602      1.1    bouyer 			uint64_t		lba;
    603      1.1    bouyer 			struct mfi_evtarg_ld	ld;
    604      1.1    bouyer 		} __packed			ld_lba;
    605      1.1    bouyer 
    606      1.1    bouyer 		struct {
    607      1.1    bouyer 			struct mfi_evtarg_ld	ld;
    608      1.1    bouyer 			uint32_t		prev_owner;
    609      1.1    bouyer 			uint32_t		new_owner;
    610      1.1    bouyer 		} __packed			ld_owner;
    611      1.1    bouyer 
    612      1.1    bouyer 		struct {
    613      1.1    bouyer 			uint64_t		ld_lba;
    614      1.1    bouyer 			uint64_t		pd_lba;
    615      1.1    bouyer 			struct mfi_evtarg_ld	ld;
    616      1.1    bouyer 			struct mfi_evtarg_pd	pd;
    617      1.1    bouyer 		} __packed			ld_lba_pd_lba;
    618      1.1    bouyer 
    619      1.1    bouyer 		struct {
    620      1.1    bouyer 			struct mfi_evtarg_ld	ld;
    621      1.1    bouyer 			struct mfi_progress	prog;
    622      1.1    bouyer 		} __packed			ld_prog;
    623      1.1    bouyer 
    624      1.1    bouyer 		struct {
    625      1.1    bouyer 			struct mfi_evtarg_ld	ld;
    626      1.1    bouyer 			uint32_t		prev_state;
    627      1.1    bouyer 			uint32_t		new_state;
    628      1.1    bouyer 		} __packed			ld_state;
    629      1.1    bouyer 
    630      1.1    bouyer 		struct {
    631      1.1    bouyer 			uint64_t		strip;
    632      1.1    bouyer 			struct mfi_evtarg_ld	ld;
    633      1.1    bouyer 		} __packed			ld_strip;
    634      1.1    bouyer 
    635      1.1    bouyer 		struct mfi_evtarg_pd		pd;
    636      1.1    bouyer 
    637      1.1    bouyer 		struct {
    638      1.1    bouyer 			struct mfi_evtarg_pd	pd;
    639      1.1    bouyer 			uint32_t		err;
    640      1.1    bouyer 		} __packed			pd_err;
    641      1.1    bouyer 
    642      1.1    bouyer 		struct {
    643      1.1    bouyer 			uint64_t		lba;
    644      1.1    bouyer 			struct mfi_evtarg_pd	pd;
    645      1.1    bouyer 		} __packed			pd_lba;
    646      1.1    bouyer 
    647      1.1    bouyer 		struct {
    648      1.1    bouyer 			uint64_t		lba;
    649      1.1    bouyer 			struct mfi_evtarg_pd	pd;
    650      1.1    bouyer 			struct mfi_evtarg_ld	ld;
    651      1.1    bouyer 		} __packed			pd_lba_ld;
    652      1.1    bouyer 
    653      1.1    bouyer 		struct {
    654      1.1    bouyer 			struct mfi_evtarg_pd	pd;
    655      1.1    bouyer 			struct mfi_progress	prog;
    656      1.1    bouyer 		} __packed			pd_prog;
    657      1.1    bouyer 
    658      1.1    bouyer 		struct {
    659      1.1    bouyer 			struct mfi_evtarg_pd	pd;
    660      1.1    bouyer 			uint32_t		prev_state;
    661      1.1    bouyer 			uint32_t		new_state;
    662      1.1    bouyer 		} __packed			pd_state;
    663      1.1    bouyer 
    664      1.1    bouyer 		struct {
    665      1.1    bouyer 			uint16_t		vendor_id;
    666      1.1    bouyer 			uint16_t		device_id;
    667      1.1    bouyer 			uint16_t		subvendor_id;
    668      1.1    bouyer 			uint16_t		subdevice_id;
    669      1.1    bouyer 		} __packed			pci;
    670      1.1    bouyer 
    671      1.1    bouyer 		uint32_t			rate;
    672      1.1    bouyer 		char				str[96];
    673      1.1    bouyer 
    674      1.1    bouyer 		struct {
    675      1.1    bouyer 			uint32_t		rtc;
    676      1.1    bouyer 			uint32_t		elapsed_seconds;
    677      1.1    bouyer 		} __packed			time;
    678      1.1    bouyer 
    679      1.1    bouyer 		struct {
    680      1.1    bouyer 			uint32_t		ecar;
    681      1.1    bouyer 			uint32_t		elog;
    682      1.1    bouyer 			char			str[64];
    683      1.1    bouyer 		} __packed			ecc;
    684      1.1    bouyer 
    685      1.1    bouyer 		uint8_t				b[96];
    686      1.1    bouyer 		uint16_t			s[48];
    687      1.1    bouyer 		uint32_t			w[24];
    688      1.1    bouyer 		uint64_t			d[12];
    689      1.1    bouyer 	}					args;
    690      1.1    bouyer 
    691      1.1    bouyer 	char					med_description[128];
    692      1.1    bouyer } __packed;
    693      1.1    bouyer 
    694      1.1    bouyer /* controller properties from mfi_ctrl_info */
    695      1.1    bouyer struct mfi_ctrl_props {
    696      1.1    bouyer 	uint16_t		mcp_seq_num;
    697      1.1    bouyer 	uint16_t		mcp_pred_fail_poll_interval;
    698      1.1    bouyer 	uint16_t		mcp_intr_throttle_cnt;
    699      1.1    bouyer 	uint16_t		mcp_intr_throttle_timeout;
    700      1.1    bouyer 	uint8_t			mcp_rebuild_rate;
    701      1.1    bouyer 	uint8_t			mcp_patrol_read_rate;
    702      1.1    bouyer 	uint8_t			mcp_bgi_rate;
    703      1.1    bouyer 	uint8_t			mcp_cc_rate;
    704      1.1    bouyer 	uint8_t			mcp_recon_rate;
    705      1.1    bouyer 	uint8_t			mcp_cache_flush_interval;
    706      1.1    bouyer 	uint8_t			mcp_spinup_drv_cnt;
    707      1.1    bouyer 	uint8_t			mcp_spinup_delay;
    708      1.1    bouyer 	uint8_t			mcp_cluster_enable;
    709      1.1    bouyer 	uint8_t			mcp_coercion_mode;
    710      1.1    bouyer 	uint8_t			mcp_alarm_enable;
    711      1.1    bouyer 	uint8_t			mcp_disable_auto_rebuild;
    712      1.1    bouyer 	uint8_t			mcp_disable_battery_warn;
    713      1.1    bouyer 	uint8_t			mcp_ecc_bucket_size;
    714      1.1    bouyer 	uint16_t		mcp_ecc_bucket_leak_rate;
    715      1.1    bouyer 	uint8_t			mcp_restore_hotspare_on_insertion;
    716      1.1    bouyer 	uint8_t			mcp_expose_encl_devices;
    717      1.6    bouyer 	uint8_t	 		maintainPdFailHistory;
    718      1.6    bouyer 	uint8_t	 		disallowHostRequestReordering;
    719      1.6    bouyer 	/* set TRUE to abort CC on detecting an inconsistency */
    720      1.6    bouyer 	uint8_t	 		abortCCOnError;
    721      1.6    bouyer 	/* load balance mode (MR_LOAD_BALANCE_MODE) */
    722      1.6    bouyer 	uint8_t	 		loadBalanceMode;
    723      1.6    bouyer 	/*
    724      1.6    bouyer 	 * 0 - use auto detect logic of backplanes like SGPIO, i2c SEP using
    725      1.6    bouyer 	 *     h/w mechansim like GPIO pins
    726      1.6    bouyer 	 * 1 - disable auto detect SGPIO,
    727      1.6    bouyer 	 * 2 - disable i2c SEP auto detect
    728      1.6    bouyer 	 * 3 - disable both auto detect
    729      1.6    bouyer 	 */
    730      1.6    bouyer 	uint8_t	 		disableAutoDetectBackplane;
    731      1.6    bouyer 	/*
    732      1.6    bouyer 	 * % of source LD to be reserved for a VDs snapshot in snapshot
    733      1.6    bouyer 	 * repository, for metadata and user data: 1=5%, 2=10%, 3=15% and so on
    734      1.6    bouyer 	 */
    735      1.6    bouyer 	uint8_t	 		snapVDSpace;
    736      1.6    bouyer 
    737      1.6    bouyer 	/*
    738      1.6    bouyer 	 * Add properties that can be controlled by a bit in the following
    739      1.6    bouyer 	 * structure.
    740      1.6    bouyer 	 */
    741      1.6    bouyer 	struct {
    742      1.6    bouyer 		/* set TRUE to disable copyBack (0=copback enabled) */
    743      1.6    bouyer 		uint32_t	copyBackDisabled		:1;
    744      1.6    bouyer 		uint32_t	SMARTerEnabled		  	:1;
    745      1.6    bouyer 		uint32_t	prCorrectUnconfiguredAreas      :1;
    746      1.6    bouyer 		uint32_t	useFdeOnly		      	:1;
    747      1.6    bouyer 		uint32_t	disableNCQ		      	:1;
    748      1.6    bouyer 		uint32_t	SSDSMARTerEnabled	       	:1;
    749      1.6    bouyer 		uint32_t	SSDPatrolReadEnabled	    	:1;
    750      1.6    bouyer 		uint32_t	enableSpinDownUnconfigured      :1;
    751      1.6    bouyer 		uint32_t	autoEnhancedImport	      	:1;
    752      1.6    bouyer 		uint32_t	enableSecretKeyControl	  	:1;
    753      1.6    bouyer 		uint32_t	disableOnlineCtrlReset	  	:1;
    754      1.6    bouyer 		uint32_t	allowBootWithPinnedCache	:1;
    755      1.6    bouyer 		uint32_t	disableSpinDownHS	       	:1;
    756      1.6    bouyer 		uint32_t	enableJBOD		      	:1;
    757      1.6    bouyer 		uint32_t	reserved			:18;
    758      1.6    bouyer 	} OnOffProperties;
    759      1.6    bouyer 	/*
    760      1.6    bouyer 	 * % of source LD to be reserved for auto snapshot in snapshot
    761      1.6    bouyer 	 * repository, for metadata and user data: 1=5%, 2=10%, 3=15% and so on.
    762      1.6    bouyer 	 */
    763      1.6    bouyer 	uint8_t			autoSnapVDSpace;
    764      1.6    bouyer 	/*
    765      1.6    bouyer 	 * Snapshot writeable VIEWs capacity as a % of source LD capacity:
    766      1.6    bouyer 	 * 0=READ only, 1=5%, 2=10%, 3=15% and so on.
    767      1.6    bouyer 	 */
    768      1.6    bouyer 	uint8_t			viewSpace;
    769      1.6    bouyer 	/* # of idle minutes before device is spun down (0=use FW defaults) */
    770      1.6    bouyer 	uint16_t		spinDownTime;
    771      1.6    bouyer 	uint8_t			reserved[24];
    772      1.1    bouyer } __packed;
    773      1.1    bouyer 
    774      1.1    bouyer /* pci info */
    775      1.1    bouyer struct mfi_info_pci {
    776      1.1    bouyer 	uint16_t		mip_vendor;
    777      1.1    bouyer 	uint16_t		mip_device;
    778      1.1    bouyer 	uint16_t		mip_subvendor;
    779      1.1    bouyer 	uint16_t		mip_subdevice;
    780      1.1    bouyer 	uint8_t			mip_reserved[24];
    781      1.1    bouyer } __packed;
    782      1.1    bouyer 
    783      1.1    bouyer /* host interface infor */
    784      1.1    bouyer struct mfi_info_host {
    785      1.1    bouyer 	uint8_t			mih_type;
    786      1.1    bouyer #define MFI_INFO_HOST_PCIX	0x01
    787      1.1    bouyer #define MFI_INFO_HOST_PCIE	0x02
    788      1.1    bouyer #define MFI_INFO_HOST_ISCSI	0x04
    789      1.1    bouyer #define MFI_INFO_HOST_SAS3G	0x08
    790      1.1    bouyer 	uint8_t			mih_reserved[6];
    791      1.1    bouyer 	uint8_t			mih_port_count;
    792      1.1    bouyer 	uint64_t		mih_port_addr[8];
    793      1.1    bouyer } __packed;
    794      1.1    bouyer 
    795      1.1    bouyer /* device  interface info */
    796      1.1    bouyer struct mfi_info_device {
    797      1.1    bouyer 	uint8_t			mid_type;
    798      1.1    bouyer #define MFI_INFO_DEV_SPI	0x01
    799      1.1    bouyer #define MFI_INFO_DEV_SAS3G	0x02
    800      1.1    bouyer #define MFI_INFO_DEV_SATA1	0x04
    801      1.1    bouyer #define MFI_INFO_DEV_SATA3G	0x08
    802      1.1    bouyer 	uint8_t			mid_reserved[6];
    803      1.1    bouyer 	uint8_t			mid_port_count;
    804      1.1    bouyer 	uint64_t		mid_port_addr[8];
    805      1.1    bouyer } __packed;
    806      1.1    bouyer 
    807      1.1    bouyer /* firmware component info */
    808      1.1    bouyer struct mfi_info_component {
    809      1.1    bouyer 	char		 	mic_name[8];
    810      1.1    bouyer 	char		 	mic_version[32];
    811      1.1    bouyer 	char		 	mic_build_date[16];
    812      1.1    bouyer 	char		 	mic_build_time[16];
    813      1.1    bouyer } __packed;
    814      1.1    bouyer 
    815      1.1    bouyer /* controller info from MFI_DCMD_CTRL_GETINFO. */
    816      1.1    bouyer struct mfi_ctrl_info {
    817      1.1    bouyer 	struct mfi_info_pci	mci_pci;
    818      1.1    bouyer 	struct mfi_info_host	mci_host;
    819      1.1    bouyer 	struct mfi_info_device	mci_device;
    820      1.1    bouyer 
    821      1.1    bouyer 	/* Firmware components that are present and active. */
    822      1.1    bouyer 	uint32_t		mci_image_check_word;
    823      1.1    bouyer 	uint32_t		mci_image_component_count;
    824      1.1    bouyer 	struct mfi_info_component mci_image_component[8];
    825      1.1    bouyer 
    826      1.1    bouyer 	/* Firmware components that have been flashed but are inactive */
    827      1.1    bouyer 	uint32_t		mci_pending_image_component_count;
    828      1.1    bouyer 	struct mfi_info_component mci_pending_image_component[8];
    829      1.1    bouyer 
    830      1.1    bouyer 	uint8_t			mci_max_arms;
    831      1.1    bouyer 	uint8_t			mci_max_spans;
    832      1.1    bouyer 	uint8_t			mci_max_arrays;
    833      1.1    bouyer 	uint8_t			mci_max_lds;
    834      1.1    bouyer 	char			mci_product_name[80];
    835      1.1    bouyer 	char			mci_serial_number[32];
    836      1.1    bouyer 	uint32_t		mci_hw_present;
    837      1.1    bouyer #define MFI_INFO_HW_BBU		0x01
    838      1.1    bouyer #define MFI_INFO_HW_ALARM	0x02
    839      1.1    bouyer #define MFI_INFO_HW_NVRAM	0x04
    840      1.1    bouyer #define MFI_INFO_HW_UART	0x08
    841      1.1    bouyer 	uint32_t		mci_current_fw_time;
    842      1.1    bouyer 	uint16_t		mci_max_cmds;
    843      1.1    bouyer 	uint16_t		mci_max_sg_elements;
    844      1.1    bouyer 	uint32_t		mci_max_request_size;
    845      1.1    bouyer 	uint16_t		mci_lds_present;
    846      1.1    bouyer 	uint16_t		mci_lds_degraded;
    847      1.1    bouyer 	uint16_t		mci_lds_offline;
    848      1.1    bouyer 	uint16_t		mci_pd_present;
    849      1.1    bouyer 	uint16_t		mci_pd_disks_present;
    850      1.1    bouyer 	uint16_t		mci_pd_disks_pred_failure;
    851      1.1    bouyer 	uint16_t		mci_pd_disks_failed;
    852      1.1    bouyer 	uint16_t		mci_nvram_size;
    853      1.1    bouyer 	uint16_t		mci_memory_size;
    854      1.1    bouyer 	uint16_t		mci_flash_size;
    855      1.1    bouyer 	uint16_t		mci_ram_correctable_errors;
    856      1.1    bouyer 	uint16_t		mci_ram_uncorrectable_errors;
    857      1.1    bouyer 	uint8_t			mci_cluster_allowed;
    858      1.1    bouyer 	uint8_t			mci_cluster_active;
    859      1.1    bouyer 	uint16_t		mci_max_strips_per_io;
    860      1.1    bouyer 
    861      1.1    bouyer 	uint32_t		mci_raid_levels;
    862      1.1    bouyer #define MFI_INFO_RAID_0		0x01
    863      1.1    bouyer #define MFI_INFO_RAID_1		0x02
    864      1.1    bouyer #define MFI_INFO_RAID_5		0x04
    865      1.1    bouyer #define MFI_INFO_RAID_1E	0x08
    866      1.1    bouyer #define MFI_INFO_RAID_6		0x10
    867      1.1    bouyer 
    868      1.1    bouyer 	uint32_t		mci_adapter_ops;
    869      1.1    bouyer #define MFI_INFO_AOPS_RBLD_RATE		0x0001
    870      1.1    bouyer #define MFI_INFO_AOPS_CC_RATE		0x0002
    871      1.1    bouyer #define MFI_INFO_AOPS_BGI_RATE		0x0004
    872      1.1    bouyer #define MFI_INFO_AOPS_RECON_RATE	0x0008
    873      1.1    bouyer #define MFI_INFO_AOPS_PATROL_RATE	0x0010
    874      1.1    bouyer #define MFI_INFO_AOPS_ALARM_CONTROL	0x0020
    875      1.1    bouyer #define MFI_INFO_AOPS_CLUSTER_SUPPORTED	0x0040
    876      1.1    bouyer #define MFI_INFO_AOPS_BBU		0x0080
    877      1.1    bouyer #define MFI_INFO_AOPS_SPANNING_ALLOWED	0x0100
    878      1.1    bouyer #define MFI_INFO_AOPS_DEDICATED_SPARES	0x0200
    879      1.1    bouyer #define MFI_INFO_AOPS_REVERTIBLE_SPARES	0x0400
    880      1.1    bouyer #define MFI_INFO_AOPS_FOREIGN_IMPORT	0x0800
    881      1.1    bouyer #define MFI_INFO_AOPS_SELF_DIAGNOSTIC	0x1000
    882      1.1    bouyer #define MFI_INFO_AOPS_MIXED_ARRAY	0x2000
    883      1.1    bouyer #define MFI_INFO_AOPS_GLOBAL_SPARES	0x4000
    884      1.1    bouyer 
    885      1.1    bouyer 	uint32_t		mci_ld_ops;
    886      1.1    bouyer #define MFI_INFO_LDOPS_READ_POLICY	0x01
    887      1.1    bouyer #define MFI_INFO_LDOPS_WRITE_POLICY	0x02
    888      1.1    bouyer #define MFI_INFO_LDOPS_IO_POLICY	0x04
    889      1.1    bouyer #define MFI_INFO_LDOPS_ACCESS_POLICY	0x08
    890      1.1    bouyer #define MFI_INFO_LDOPS_DISK_CACHE_POLICY 0x10
    891      1.1    bouyer 
    892      1.1    bouyer 	struct {
    893      1.1    bouyer 		uint8_t		min;
    894      1.1    bouyer 		uint8_t		max;
    895      1.1    bouyer 		uint8_t		reserved[2];
    896      1.1    bouyer 	} __packed		mci_stripe_sz_ops;
    897      1.1    bouyer 
    898      1.1    bouyer 	uint32_t		mci_pd_ops;
    899      1.1    bouyer #define MFI_INFO_PDOPS_FORCE_ONLINE	0x01
    900      1.1    bouyer #define MFI_INFO_PDOPS_FORCE_OFFLINE	0x02
    901      1.1    bouyer #define MFI_INFO_PDOPS_FORCE_REBUILD	0x04
    902      1.1    bouyer 
    903      1.1    bouyer 	uint32_t		mci_pd_mix_support;
    904      1.1    bouyer #define MFI_INFO_PDMIX_SAS		0x01
    905      1.1    bouyer #define MFI_INFO_PDMIX_SATA		0x02
    906      1.1    bouyer #define MFI_INFO_PDMIX_ENCL		0x04
    907      1.1    bouyer #define MFI_INFO_PDMIX_LD		0x08
    908      1.1    bouyer #define MFI_INFO_PDMIX_SATA_CLUSTER	0x10
    909      1.1    bouyer 
    910      1.1    bouyer 	uint8_t			mci_ecc_bucket_count;
    911      1.1    bouyer 	uint8_t			mci_reserved2[11];
    912      1.1    bouyer 	struct mfi_ctrl_props	mci_properties;
    913      1.1    bouyer 	char			mci_package_version[0x60];
    914      1.1    bouyer 	uint8_t			mci_pad[0x800 - 0x6a0];
    915      1.1    bouyer } __packed;
    916      1.1    bouyer 
    917      1.1    bouyer /* logical disk info from MR_DCMD_LD_GET_LIST */
    918      1.1    bouyer struct mfi_ld {
    919      1.1    bouyer 	uint8_t			mld_target;
    920      1.1    bouyer 	uint8_t			mld_res;
    921      1.1    bouyer 	uint16_t		mld_seq;
    922      1.1    bouyer } __packed;
    923      1.1    bouyer 
    924      1.1    bouyer struct mfi_ld_list {
    925      1.1    bouyer 	uint32_t		mll_no_ld;
    926      1.1    bouyer 	uint32_t		mll_res;
    927      1.1    bouyer 	struct {
    928      1.1    bouyer 		struct mfi_ld	mll_ld;
    929      1.1    bouyer 		uint8_t		mll_state;
    930      1.1    bouyer #define MFI_LD_OFFLINE			0x00
    931      1.1    bouyer #define MFI_LD_PART_DEGRADED		0x01
    932      1.1    bouyer #define MFI_LD_DEGRADED			0x02
    933      1.1    bouyer #define MFI_LD_ONLINE			0x03
    934      1.1    bouyer 		uint8_t		mll_res2;
    935      1.1    bouyer 		uint8_t		mll_res3;
    936      1.1    bouyer 		uint8_t		mll_res4;
    937      1.1    bouyer 		u_quad_t	mll_size;
    938      1.1    bouyer 	} mll_list[MFI_MAX_LD];
    939      1.1    bouyer } __packed;
    940      1.1    bouyer 
    941      1.1    bouyer /* logicl disk details from MR_DCMD_LD_GET_INFO */
    942      1.1    bouyer struct mfi_ld_prop {
    943      1.1    bouyer 	struct mfi_ld		mlp_ld;
    944      1.1    bouyer 	char			mlp_name[16];
    945      1.1    bouyer 	uint8_t			mlp_cache_policy;
    946      1.1    bouyer 	uint8_t			mlp_acces_policy;
    947      1.1    bouyer 	uint8_t			mlp_diskcache_policy;
    948      1.1    bouyer 	uint8_t			mlp_cur_cache_policy;
    949      1.1    bouyer 	uint8_t			mlp_disable_bgi;
    950      1.1    bouyer 	uint8_t			mlp_res[7];
    951      1.1    bouyer } __packed;
    952      1.1    bouyer 
    953      1.1    bouyer struct mfi_ld_parm {
    954      1.1    bouyer 	uint8_t			mpa_pri_raid;	/* SNIA DDF PRL */
    955      1.1    bouyer #define MFI_DDF_PRL_RAID0	0x00
    956      1.1    bouyer #define MFI_DDF_PRL_RAID1	0x01
    957      1.1    bouyer #define MFI_DDF_PRL_RAID3	0x03
    958      1.1    bouyer #define MFI_DDF_PRL_RAID4	0x04
    959      1.1    bouyer #define MFI_DDF_PRL_RAID5	0x05
    960      1.1    bouyer #define MFI_DDF_PRL_RAID1E	0x11
    961      1.1    bouyer #define MFI_DDF_PRL_JBOD	0x0f
    962      1.1    bouyer #define MFI_DDF_PRL_CONCAT	0x1f
    963      1.1    bouyer #define MFI_DDF_PRL_RAID5E	0x15
    964      1.1    bouyer #define MFI_DDF_PRL_RAID5EE	0x25
    965      1.1    bouyer #define MFI_DDF_PRL_RAID6	0x16
    966      1.1    bouyer 	uint8_t			mpa_raid_qual;	/* SNIA DDF RLQ */
    967      1.1    bouyer 	uint8_t			mpa_sec_raid;	/* SNIA DDF SRL */
    968      1.1    bouyer #define MFI_DDF_SRL_STRIPED	0x00
    969      1.1    bouyer #define MFI_DDF_SRL_MIRRORED	0x01
    970      1.1    bouyer #define MFI_DDF_SRL_CONCAT	0x02
    971      1.1    bouyer #define MFI_DDF_SRL_SPANNED	0x03
    972      1.1    bouyer 	uint8_t			mpa_stripe_size;
    973      1.1    bouyer 	uint8_t			mpa_no_drv_per_span;
    974      1.1    bouyer 	uint8_t			mpa_span_depth;
    975      1.1    bouyer 	uint8_t			mpa_state;
    976      1.1    bouyer 	uint8_t			mpa_init_state;
    977      1.6    bouyer 	uint8_t			mpa_is_consistent;
    978      1.6    bouyer 	uint8_t			mpa_res1[6];
    979      1.6    bouyer 	uint8_t			mpa_isSSCD;
    980      1.6    bouyer 	uint8_t			mpa_res[16];
    981      1.1    bouyer } __packed;
    982      1.1    bouyer 
    983      1.1    bouyer struct mfi_ld_span {
    984      1.1    bouyer 	u_quad_t		mls_start_block;
    985      1.1    bouyer 	u_quad_t		mls_no_blocks;
    986      1.1    bouyer 	uint16_t		mls_index;
    987      1.1    bouyer 	uint8_t			mls_res[6];
    988      1.1    bouyer } __packed;
    989      1.1    bouyer 
    990      1.1    bouyer struct mfi_ld_cfg {
    991      1.1    bouyer 	struct mfi_ld_prop	mlc_prop;
    992      1.1    bouyer 	struct mfi_ld_parm	mlc_parm;
    993      1.1    bouyer 	struct mfi_ld_span	mlc_span[MFI_MAX_SPAN];
    994      1.1    bouyer } __packed;
    995      1.1    bouyer 
    996      1.1    bouyer struct mfi_ld_progress {
    997      1.1    bouyer 	uint32_t		mlp_in_prog;
    998      1.1    bouyer #define MFI_LD_PROG_CC		0x01
    999      1.1    bouyer #define MFI_LD_PROG_BGI		0x02
   1000      1.1    bouyer #define MFI_LD_PROG_FGI		0x04
   1001      1.1    bouyer #define MFI_LD_PROG_RECONSTRUCT	0x08
   1002      1.1    bouyer 	struct mfi_progress	mlp_cc;
   1003      1.1    bouyer 	struct mfi_progress	mlp_bgi;
   1004      1.1    bouyer 	struct mfi_progress	mlp_fgi;
   1005      1.1    bouyer 	struct mfi_progress	mlp_reconstruct;
   1006      1.1    bouyer 	struct mfi_progress	mlp_res[4];
   1007      1.1    bouyer } __packed;
   1008      1.1    bouyer 
   1009      1.1    bouyer struct mfi_ld_details {
   1010      1.1    bouyer 	struct mfi_ld_cfg	mld_cfg;
   1011      1.1    bouyer 	u_quad_t		mld_size;
   1012      1.1    bouyer 	struct mfi_ld_progress	mld_progress;
   1013      1.1    bouyer 	uint16_t		mld_clust_own_id;
   1014      1.1    bouyer 	uint8_t			mld_res1;
   1015      1.1    bouyer 	uint8_t			mld_res2;
   1016      1.1    bouyer 	uint8_t			mld_inq_page83[64];
   1017      1.1    bouyer 	uint8_t			mld_res[16];
   1018      1.1    bouyer } __packed;
   1019      1.1    bouyer 
   1020      1.1    bouyer /* physical disk info from MR_DCMD_PD_GET_LIST */
   1021      1.1    bouyer struct mfi_pd_address {
   1022      1.1    bouyer 	uint16_t		mpa_pd_id;
   1023      1.1    bouyer 	uint16_t		mpa_enc_id;
   1024      1.1    bouyer 	uint8_t			mpa_enc_index;
   1025      1.1    bouyer 	uint8_t			mpa_enc_slot;
   1026      1.1    bouyer 	uint8_t			mpa_scsi_type;
   1027      1.1    bouyer 	uint8_t			mpa_port;
   1028      1.1    bouyer 	u_quad_t		mpa_sas_address[2];
   1029      1.1    bouyer } __packed;
   1030      1.1    bouyer 
   1031      1.6    bouyer #define MAX_SYS_PDS 240
   1032      1.1    bouyer struct mfi_pd_list {
   1033      1.1    bouyer 	uint32_t		mpl_size;
   1034      1.1    bouyer 	uint32_t		mpl_no_pd;
   1035      1.6    bouyer 	struct mfi_pd_address	mpl_address[MAX_SYS_PDS];
   1036      1.1    bouyer } __packed;
   1037      1.1    bouyer #define MFI_PD_LIST_SIZE	(256 * sizeof(struct mfi_pd_address) + 8)
   1038      1.1    bouyer 
   1039      1.1    bouyer struct mfi_pd {
   1040      1.1    bouyer 	uint16_t		mfp_id;
   1041      1.1    bouyer 	uint16_t		mfp_seq;
   1042      1.1    bouyer } __packed;
   1043      1.1    bouyer 
   1044      1.1    bouyer struct mfi_pd_progress {
   1045      1.1    bouyer 	uint32_t		mfp_in_prog;
   1046      1.1    bouyer #define MFI_PD_PROG_RBLD	0x01
   1047      1.1    bouyer #define MFI_PD_PROG_PR		0x02
   1048      1.1    bouyer #define MFI_PD_PROG_CLEAR	0x04
   1049      1.1    bouyer 	struct mfi_progress	mfp_rebuild;
   1050      1.1    bouyer 	struct mfi_progress	mfp_patrol_read;
   1051      1.1    bouyer 	struct mfi_progress	mfp_clear;
   1052      1.1    bouyer 	struct mfi_progress	mfp_res[4];
   1053      1.1    bouyer } __packed;
   1054      1.1    bouyer 
   1055      1.1    bouyer struct mfi_pd_details {
   1056      1.1    bouyer 	struct mfi_pd		mpd_pd;
   1057      1.1    bouyer 	uint8_t			mpd_inq_data[96];
   1058      1.1    bouyer 	uint8_t			mpd_inq_page83[64];
   1059      1.1    bouyer 	uint8_t			mpd_no_support;
   1060      1.1    bouyer 	uint8_t			mpd_scsy_type;
   1061      1.1    bouyer 	uint8_t			mpd_port;
   1062      1.1    bouyer 	uint8_t			mpd_speed;
   1063      1.1    bouyer 	uint32_t		mpd_mediaerr_cnt;
   1064      1.1    bouyer 	uint32_t		mpd_othererr_cnt;
   1065      1.1    bouyer 	uint32_t		mpd_predfail_cnt;
   1066      1.1    bouyer 	uint32_t		mpd_last_pred_event;
   1067      1.1    bouyer 	uint16_t		mpd_fw_state;
   1068      1.1    bouyer 	uint8_t			mpd_rdy_for_remove;
   1069      1.1    bouyer 	uint8_t			mpd_link_speed;
   1070      1.1    bouyer 	uint32_t		mpd_ddf_state;
   1071      1.1    bouyer #define MFI_DDF_GUID_FORCED	0x01
   1072      1.1    bouyer #define MFI_DDF_PART_OF_VD	0x02
   1073      1.1    bouyer #define MFI_DDF_GLOB_HOTSPARE	0x04
   1074      1.1    bouyer #define MFI_DDF_HOTSPARE	0x08
   1075      1.1    bouyer #define MFI_DDF_FOREIGN		0x10
   1076      1.1    bouyer #define MFI_DDF_TYPE_MASK	0xf000
   1077      1.1    bouyer #define MFI_DDF_TYPE_UNKNOWN	0x0000
   1078      1.1    bouyer #define MFI_DDF_TYPE_PAR_SCSI	0x1000
   1079      1.1    bouyer #define MFI_DDF_TYPE_SAS	0x2000
   1080      1.1    bouyer #define MFI_DDF_TYPE_SATA	0x3000
   1081      1.1    bouyer #define MFI_DDF_TYPE_FC		0x4000
   1082      1.1    bouyer 	struct {
   1083      1.1    bouyer 		uint8_t		mpp_cnt;
   1084      1.1    bouyer 		uint8_t		mpp_severed;
   1085      1.1    bouyer 		uint8_t		mpp_res[6];
   1086      1.1    bouyer 		u_quad_t	mpp_sas_addr[4];
   1087      1.1    bouyer 	} __packed mpd_path;
   1088      1.1    bouyer 	u_quad_t		mpd_size;
   1089      1.1    bouyer 	u_quad_t		mpd_no_coerce_size;
   1090      1.1    bouyer 	u_quad_t		mpd_coerce_size;
   1091      1.1    bouyer 	uint16_t		mpd_enc_id;
   1092      1.1    bouyer 	uint8_t			mpd_enc_idx;
   1093      1.1    bouyer 	uint8_t			mpd_enc_slot;
   1094      1.1    bouyer 	struct mfi_pd_progress	mpd_progress;
   1095      1.1    bouyer 	uint8_t			mpd_bblock_full;
   1096      1.1    bouyer 	uint8_t			mpd_unusable;
   1097      1.1    bouyer 	uint8_t			mpd_res[218]; /* size is 512 */
   1098      1.1    bouyer } __packed;
   1099      1.1    bouyer 
   1100      1.1    bouyer /* array configuration from MD_DCMD_CONF_GET */
   1101      1.1    bouyer struct mfi_array {
   1102      1.1    bouyer 	u_quad_t		mar_smallest_pd;
   1103      1.1    bouyer 	uint8_t			mar_no_disk;
   1104      1.1    bouyer 	uint8_t			mar_res1;
   1105      1.1    bouyer 	uint16_t		mar_array_ref;
   1106      1.1    bouyer 	uint8_t			mar_res2[20];
   1107      1.1    bouyer 	struct {
   1108      1.1    bouyer 		struct mfi_pd	mar_pd;
   1109      1.1    bouyer 		uint16_t	mar_pd_state;
   1110      1.1    bouyer #define MFI_PD_UNCONFIG_GOOD	0x00
   1111      1.1    bouyer #define MFI_PD_UNCONFIG_BAD	0x01
   1112      1.1    bouyer #define MFI_PD_HOTSPARE		0x02
   1113      1.1    bouyer #define MFI_PD_OFFLINE		0x10
   1114      1.1    bouyer #define MFI_PD_FAILED		0x11
   1115      1.1    bouyer #define MFI_PD_REBUILD		0x14
   1116      1.1    bouyer #define MFI_PD_ONLINE		0x18
   1117      1.6    bouyer #define MFI_PD_COPYBACK		0x20
   1118      1.6    bouyer #define MFI_PD_SYSTEM		0x40
   1119      1.6    bouyer #define MFI_PD_JBOD		MFI_PD_SYSTEM
   1120      1.1    bouyer 		uint8_t		mar_enc_pd;
   1121      1.1    bouyer 		uint8_t		mar_enc_slot;
   1122      1.1    bouyer 	} pd[MFI_MAX_PD_ARRAY];
   1123      1.1    bouyer } __packed;
   1124      1.1    bouyer 
   1125      1.7    bouyer /* informations from MR_DCMD_BBU_GET_CAPACITY_INFO */
   1126      1.7    bouyer struct mfi_bbu_capacity_info {
   1127      1.7    bouyer 	uint16_t		relative_charge;
   1128      1.7    bouyer 	uint16_t		absolute_charge;
   1129      1.7    bouyer 	uint16_t		remaining_capacity;
   1130      1.7    bouyer 	uint16_t		full_charge_capacity;
   1131      1.7    bouyer 	uint16_t		run_time_to_empty;
   1132      1.7    bouyer 	uint16_t		average_time_to_empty;
   1133      1.7    bouyer 	uint16_t		average_time_to_full;
   1134      1.7    bouyer 	uint16_t		cycle_count;
   1135      1.7    bouyer 	uint16_t		max_error;
   1136      1.7    bouyer 	uint16_t		remaining_capacity_alarm;
   1137      1.7    bouyer 	uint16_t		remaining_time_alarm;
   1138      1.7    bouyer 	uint8_t			reserved[26];
   1139      1.7    bouyer } __packed;
   1140      1.7    bouyer 
   1141      1.7    bouyer /* informations from MR_DCMD_BBU_GET_DESIGN_INFO */
   1142      1.7    bouyer struct mfi_bbu_design_info {
   1143      1.7    bouyer 	uint32_t		mfg_date;
   1144      1.7    bouyer 	uint16_t		design_capacity;
   1145      1.7    bouyer 	uint16_t		design_voltage;
   1146      1.7    bouyer 	uint16_t		spec_info;
   1147      1.7    bouyer 	uint16_t		serial_number;
   1148      1.7    bouyer 	uint16_t		pack_stat_config;
   1149      1.7    bouyer 	uint8_t		 	mfg_name[12];
   1150      1.7    bouyer 	uint8_t		 	device_name[8];
   1151      1.7    bouyer 	uint8_t		 	device_chemistry[8];
   1152      1.7    bouyer 	uint8_t		 	mfg_data[8];
   1153      1.7    bouyer 	uint8_t		 	reserved[17];
   1154      1.7    bouyer } __packed;
   1155      1.7    bouyer 
   1156      1.7    bouyer struct mfi_ibbu_state {
   1157      1.7    bouyer 	uint16_t		gas_guage_status;
   1158      1.7    bouyer 	uint16_t		relative_charge;
   1159      1.7    bouyer 	uint16_t		charger_system_state;
   1160      1.7    bouyer 	uint16_t		charger_system_ctrl;
   1161      1.7    bouyer 	uint16_t		charging_current;
   1162      1.7    bouyer 	uint16_t		absolute_charge;
   1163      1.7    bouyer 	uint16_t		max_error;
   1164      1.7    bouyer 	uint8_t			reserved[18];
   1165      1.7    bouyer } __packed;
   1166      1.7    bouyer 
   1167      1.7    bouyer struct mfi_bbu_state {
   1168      1.7    bouyer 	uint16_t		gas_guage_status;
   1169      1.7    bouyer 	uint16_t		relative_charge;
   1170      1.7    bouyer 	uint16_t		charger_status;
   1171      1.7    bouyer 	uint16_t		remaining_capacity;
   1172      1.7    bouyer 	uint16_t		full_charge_capacity;
   1173      1.7    bouyer 	uint8_t			is_SOH_good;
   1174      1.7    bouyer 	uint8_t			reserved[21];
   1175      1.7    bouyer } __packed;
   1176      1.7    bouyer 
   1177      1.7    bouyer union mfi_bbu_status_detail {
   1178      1.7    bouyer 	struct mfi_ibbu_state	ibbu;
   1179      1.7    bouyer 	struct mfi_bbu_state	bbu;
   1180      1.7    bouyer };
   1181      1.7    bouyer 
   1182      1.7    bouyer /* informations from MR_DCMD_BBU_GET_STATUS */
   1183      1.7    bouyer struct mfi_bbu_status {
   1184      1.7    bouyer 	uint8_t			battery_type;
   1185      1.7    bouyer #define MFI_BBU_TYPE_NONE	0
   1186      1.7    bouyer #define MFI_BBU_TYPE_IBBU	1
   1187      1.7    bouyer #define MFI_BBU_TYPE_BBU	2
   1188      1.7    bouyer 	uint8_t			reserved;
   1189      1.7    bouyer 	uint16_t		voltage;
   1190      1.7    bouyer 	int16_t			current;
   1191      1.7    bouyer 	uint16_t		temperature;
   1192      1.7    bouyer 	uint32_t		fw_status;
   1193      1.7    bouyer #define MFI_BBU_STATE_PACK_MISSING	(1 << 0)
   1194      1.7    bouyer #define MFI_BBU_STATE_VOLTAGE_LOW	(1 << 1)
   1195      1.7    bouyer #define MFI_BBU_STATE_TEMPERATURE_HIGH	(1 << 2)
   1196      1.7    bouyer #define MFI_BBU_STATE_CHARGE_ACTIVE	(1 << 3)
   1197      1.7    bouyer #define MFI_BBU_STATE_DISCHARGE_ACTIVE	(1 << 4)
   1198      1.7    bouyer #define MFI_BBU_STATE_LEARN_CYC_REQ	(1 << 5)
   1199      1.7    bouyer #define MFI_BBU_STATE_LEARN_CYC_ACTIVE	(1 << 6)
   1200      1.7    bouyer #define MFI_BBU_STATE_LEARN_CYC_FAIL	(1 << 7)
   1201      1.7    bouyer #define MFI_BBU_STATE_LEARN_CYC_TIMEOUT (1 << 8)
   1202      1.7    bouyer #define MFI_BBU_STATE_I2C_ERR_DETECT	(1 << 9)
   1203      1.7    bouyer 	uint8_t			pad[20];
   1204      1.7    bouyer 	union mfi_bbu_status_detail detail;
   1205      1.7    bouyer } __packed;
   1206      1.7    bouyer 
   1207      1.1    bouyer struct mfi_hotspare {
   1208      1.1    bouyer 	struct mfi_pd	mhs_pd;
   1209      1.1    bouyer 	uint8_t		mhs_type;
   1210      1.1    bouyer #define MFI_PD_HS_DEDICATED	0x01
   1211      1.1    bouyer #define MFI_PD_HS_REVERTIBLE	0x02
   1212      1.1    bouyer #define MFI_PD_HS_ENC_AFFINITY	0x04
   1213      1.1    bouyer 	uint8_t		mhs_res[2];
   1214      1.1    bouyer 	uint8_t		mhs_array_max;
   1215      1.1    bouyer 	uint16_t	mhs_array_ref[MFI_MAX_ARRAY_DEDICATED];
   1216      1.1    bouyer } __packed;
   1217      1.1    bouyer 
   1218      1.1    bouyer struct mfi_conf {
   1219      1.1    bouyer 	uint32_t		mfc_size;
   1220      1.1    bouyer 	uint16_t		mfc_no_array;
   1221      1.1    bouyer 	uint16_t		mfc_array_size;
   1222      1.1    bouyer 	uint16_t		mfc_no_ld;
   1223      1.1    bouyer 	uint16_t		mfc_ld_size;
   1224      1.1    bouyer 	uint16_t		mfc_no_hs;
   1225      1.1    bouyer 	uint16_t		mfc_hs_size;
   1226      1.1    bouyer 	uint8_t			mfc_res[16];
   1227      1.1    bouyer 	/*
   1228      1.1    bouyer 	 * XXX this is a ridiculous hack and does not reflect reality
   1229      1.1    bouyer 	 * Structures are actually indexed and therefore need pointer
   1230      1.1    bouyer 	 * math to reach.  We need the size of this structure first so
   1231      1.1    bouyer 	 * call it with the size of this structure and then use the returned
   1232      1.1    bouyer 	 * values to allocate memory and do the transfer of the whole structure
   1233      1.1    bouyer 	 * then calculate pointers to each of these structures.
   1234      1.1    bouyer 	 */
   1235      1.1    bouyer 	struct mfi_array	mfc_array[1];
   1236      1.1    bouyer 	struct mfi_ld_cfg	mfc_ld[1];
   1237      1.1    bouyer 	struct mfi_hotspare	mfc_hs[1];
   1238      1.1    bouyer } __packed;
   1239      1.6    bouyer 
   1240      1.6    bouyer /* ThunderBolt support */
   1241      1.6    bouyer 
   1242      1.6    bouyer /*
   1243      1.6    bouyer  * Raid Context structure which describes MegaRAID specific IO Paramenters
   1244      1.6    bouyer  * This resides at offset 0x60 where the SGL normally starts in MPT IO Frames
   1245      1.6    bouyer  */
   1246      1.6    bouyer typedef struct _mpi2_scsi_io_vendor_unique {
   1247      1.6    bouyer 	uint16_t	resvd0;		/* 0x00 - 0x01 */
   1248      1.6    bouyer 	uint16_t	timeoutValue;	/* 0x02 - 0x03 */
   1249      1.6    bouyer 	uint8_t		regLockFlags;
   1250      1.6    bouyer 	uint8_t		armId;
   1251      1.6    bouyer 	uint16_t	TargetID;	/* 0x06 - 0x07 */
   1252      1.6    bouyer 
   1253      1.6    bouyer 	uint64_t	RegLockLBA;	/* 0x08 - 0x0F */
   1254      1.6    bouyer 
   1255      1.6    bouyer 	uint32_t	RegLockLength;	/* 0x10 - 0x13 */
   1256      1.6    bouyer 
   1257      1.6    bouyer 	uint16_t	SMID;		/* 0x14 - 0x15 nextLMId */
   1258      1.6    bouyer 	uint8_t		exStatus;	/* 0x16 */
   1259      1.6    bouyer 	uint8_t		Status;		/* 0x17 status */
   1260      1.6    bouyer 
   1261      1.6    bouyer 	uint8_t		RAIDFlags;	/* 0x18 */
   1262      1.6    bouyer 	uint8_t		numSGE;		/* 0x19 numSge */
   1263      1.6    bouyer 	uint16_t	configSeqNum;	/* 0x1A - 0x1B */
   1264      1.6    bouyer 	uint8_t		spanArm;	/* 0x1C */
   1265      1.6    bouyer 	uint8_t		resvd2[3];	/* 0x1D - 0x1F */
   1266      1.6    bouyer } mpi2_scsi_io_vendor_unique, mpi25_scsi_io_vendor_unique;
   1267      1.6    bouyer 
   1268      1.6    bouyer /*****************************************************************************
   1269      1.6    bouyer *
   1270      1.6    bouyer *        Message Functions
   1271      1.6    bouyer *
   1272      1.6    bouyer *****************************************************************************/
   1273      1.6    bouyer 
   1274      1.6    bouyer #define NA_MPI2_FUNCTION_SCSI_IO_REQUEST            (0x00) /* SCSI IO */
   1275      1.6    bouyer #define MPI2_FUNCTION_SCSI_TASK_MGMT                (0x01) /* SCSI Task Management */
   1276      1.6    bouyer #define MPI2_FUNCTION_IOC_INIT                      (0x02) /* IOC Init */
   1277      1.6    bouyer #define MPI2_FUNCTION_IOC_FACTS                     (0x03) /* IOC Facts */
   1278      1.6    bouyer #define MPI2_FUNCTION_CONFIG                        (0x04) /* Configuration */
   1279      1.6    bouyer #define MPI2_FUNCTION_PORT_FACTS                    (0x05) /* Port Facts */
   1280      1.6    bouyer #define MPI2_FUNCTION_PORT_ENABLE                   (0x06) /* Port Enable */
   1281      1.6    bouyer #define MPI2_FUNCTION_EVENT_NOTIFICATION            (0x07) /* Event Notification */
   1282      1.6    bouyer #define MPI2_FUNCTION_EVENT_ACK                     (0x08) /* Event Acknowledge */
   1283      1.6    bouyer #define MPI2_FUNCTION_FW_DOWNLOAD                   (0x09) /* FW Download */
   1284      1.6    bouyer #define MPI2_FUNCTION_TARGET_ASSIST                 (0x0B) /* Target Assist */
   1285      1.6    bouyer #define MPI2_FUNCTION_TARGET_STATUS_SEND            (0x0C) /* Target Status Send */
   1286      1.6    bouyer #define MPI2_FUNCTION_TARGET_MODE_ABORT             (0x0D) /* Target Mode Abort */
   1287      1.6    bouyer #define MPI2_FUNCTION_FW_UPLOAD                     (0x12) /* FW Upload */
   1288      1.6    bouyer #define MPI2_FUNCTION_RAID_ACTION                   (0x15) /* RAID Action */
   1289      1.6    bouyer #define MPI2_FUNCTION_RAID_SCSI_IO_PASSTHROUGH      (0x16) /* SCSI IO RAID Passthrough */
   1290      1.6    bouyer #define MPI2_FUNCTION_TOOLBOX                       (0x17) /* Toolbox */
   1291      1.6    bouyer #define MPI2_FUNCTION_SCSI_ENCLOSURE_PROCESSOR      (0x18) /* SCSI Enclosure Processor */
   1292      1.6    bouyer #define MPI2_FUNCTION_SMP_PASSTHROUGH               (0x1A) /* SMP Passthrough */
   1293      1.6    bouyer #define MPI2_FUNCTION_SAS_IO_UNIT_CONTROL           (0x1B) /* SAS IO Unit Control */
   1294      1.6    bouyer #define MPI2_FUNCTION_SATA_PASSTHROUGH              (0x1C) /* SATA Passthrough */
   1295      1.6    bouyer #define MPI2_FUNCTION_DIAG_BUFFER_POST              (0x1D) /* Diagnostic Buffer Post */
   1296      1.6    bouyer #define MPI2_FUNCTION_DIAG_RELEASE                  (0x1E) /* Diagnostic Release */
   1297      1.6    bouyer #define MPI2_FUNCTION_TARGET_CMD_BUF_BASE_POST      (0x24) /* Target Command Buffer Post Base */
   1298      1.6    bouyer #define MPI2_FUNCTION_TARGET_CMD_BUF_LIST_POST      (0x25) /* Target Command Buffer Post List */
   1299      1.6    bouyer #define MPI2_FUNCTION_RAID_ACCELERATOR              (0x2C) /* RAID Accelerator */
   1300      1.6    bouyer #define MPI2_FUNCTION_HOST_BASED_DISCOVERY_ACTION   (0x2F) /* Host Based Discovery Action */
   1301      1.6    bouyer #define MPI2_FUNCTION_PWR_MGMT_CONTROL              (0x30) /* Power Management Control */
   1302      1.6    bouyer #define MPI2_FUNCTION_MIN_PRODUCT_SPECIFIC          (0xF0) /* beginning of product-specific range */
   1303      1.6    bouyer #define MPI2_FUNCTION_MAX_PRODUCT_SPECIFIC          (0xFF) /* end of product-specific range */
   1304      1.6    bouyer 
   1305      1.6    bouyer /* Doorbell functions */
   1306      1.6    bouyer #define MPI2_FUNCTION_IOC_MESSAGE_UNIT_RESET        (0x40)
   1307      1.6    bouyer #define MPI2_FUNCTION_HANDSHAKE                     (0x42)
   1308      1.6    bouyer 
   1309      1.6    bouyer /*****************************************************************************
   1310      1.6    bouyer *
   1311      1.6    bouyer *        MPI Version Definitions
   1312      1.6    bouyer *
   1313      1.6    bouyer *****************************************************************************/
   1314      1.6    bouyer 
   1315      1.6    bouyer #define MPI2_VERSION_MAJOR                  (0x02)
   1316      1.6    bouyer #define MPI2_VERSION_MINOR                  (0x00)
   1317      1.6    bouyer #define MPI2_VERSION_MAJOR_MASK             (0xFF00)
   1318      1.6    bouyer #define MPI2_VERSION_MAJOR_SHIFT            (8)
   1319      1.6    bouyer #define MPI2_VERSION_MINOR_MASK             (0x00FF)
   1320      1.6    bouyer #define MPI2_VERSION_MINOR_SHIFT            (0)
   1321      1.6    bouyer #define MPI2_VERSION ((MPI2_VERSION_MAJOR << MPI2_VERSION_MAJOR_SHIFT) |   \
   1322      1.6    bouyer                                       MPI2_VERSION_MINOR)
   1323      1.6    bouyer 
   1324      1.6    bouyer #define MPI2_VERSION_02_00                  (0x0200)
   1325      1.6    bouyer 
   1326      1.6    bouyer /* versioning for this MPI header set */
   1327      1.6    bouyer #define MPI2_HEADER_VERSION_UNIT            (0x10)
   1328      1.6    bouyer #define MPI2_HEADER_VERSION_DEV             (0x00)
   1329      1.6    bouyer #define MPI2_HEADER_VERSION_UNIT_MASK       (0xFF00)
   1330      1.6    bouyer #define MPI2_HEADER_VERSION_UNIT_SHIFT      (8)
   1331      1.6    bouyer #define MPI2_HEADER_VERSION_DEV_MASK        (0x00FF)
   1332      1.6    bouyer #define MPI2_HEADER_VERSION_DEV_SHIFT       (0)
   1333      1.6    bouyer #define MPI2_HEADER_VERSION ((MPI2_HEADER_VERSION_UNIT << 8) |		\
   1334      1.6    bouyer 					MPI2_HEADER_VERSION_DEV)
   1335      1.6    bouyer 
   1336      1.6    bouyer 
   1337      1.6    bouyer /* IOCInit Request message */
   1338      1.6    bouyer struct mpi2_ioc_init_request {
   1339      1.6    bouyer 	uint8_t		WhoInit;                        /* 0x00 */
   1340      1.6    bouyer 	uint8_t		Reserved1;                      /* 0x01 */
   1341      1.6    bouyer 	uint8_t		ChainOffset;                    /* 0x02 */
   1342      1.6    bouyer 	uint8_t		Function;                       /* 0x03 */
   1343      1.6    bouyer 	uint16_t	Reserved2;                      /* 0x04 */
   1344      1.6    bouyer 	uint8_t		Reserved3;                      /* 0x06 */
   1345      1.6    bouyer 	uint8_t		MsgFlags;                       /* 0x07 */
   1346      1.6    bouyer 	uint8_t		VP_ID;                          /* 0x08 */
   1347      1.6    bouyer 	uint8_t		VF_ID;                          /* 0x09 */
   1348      1.6    bouyer 	uint16_t	Reserved4;                      /* 0x0A */
   1349      1.6    bouyer 	uint16_t	MsgVersion;                     /* 0x0C */
   1350      1.6    bouyer 	uint16_t	HeaderVersion;                  /* 0x0E */
   1351      1.6    bouyer 	uint32_t	Reserved5;                      /* 0x10 */
   1352      1.6    bouyer 	uint16_t	Reserved6;                      /* 0x14 */
   1353      1.6    bouyer 	uint8_t		Reserved7;                      /* 0x16 */
   1354      1.6    bouyer 	uint8_t		HostMSIxVectors;                /* 0x17 */
   1355      1.6    bouyer 	uint16_t	Reserved8;                      /* 0x18 */
   1356      1.6    bouyer 	uint16_t	SystemRequestFrameSize;         /* 0x1A */
   1357      1.6    bouyer 	uint16_t	ReplyDescriptorPostQueueDepth;  /* 0x1C */
   1358      1.6    bouyer 	uint16_t	ReplyFreeQueueDepth;            /* 0x1E */
   1359      1.6    bouyer 	uint32_t	SenseBufferAddressHigh;         /* 0x20 */
   1360      1.6    bouyer 	uint32_t	SystemReplyAddressHigh;         /* 0x24 */
   1361      1.6    bouyer 	uint64_t	SystemRequestFrameBaseAddress;  /* 0x28 */
   1362      1.6    bouyer 	uint64_t	ReplyDescriptorPostQueueAddress;/* 0x30 */
   1363      1.6    bouyer 	uint64_t	ReplyFreeQueueAddress;          /* 0x38 */
   1364      1.6    bouyer 	uint64_t	TimeStamp;                      /* 0x40 */
   1365      1.6    bouyer };
   1366      1.6    bouyer 
   1367      1.6    bouyer /* WhoInit values */
   1368      1.6    bouyer #define MPI2_WHOINIT_NOT_INITIALIZED            (0x00)
   1369      1.6    bouyer #define MPI2_WHOINIT_SYSTEM_BIOS                (0x01)
   1370      1.6    bouyer #define MPI2_WHOINIT_ROM_BIOS                   (0x02)
   1371      1.6    bouyer #define MPI2_WHOINIT_PCI_PEER                   (0x03)
   1372      1.6    bouyer #define MPI2_WHOINIT_HOST_DRIVER                (0x04)
   1373      1.6    bouyer #define MPI2_WHOINIT_MANUFACTURER               (0x05)
   1374      1.6    bouyer 
   1375      1.6    bouyer struct mpi2_sge_chain_union {
   1376      1.6    bouyer 	uint16_t	Length;
   1377      1.6    bouyer 	uint8_t		NextChainOffset;
   1378      1.6    bouyer 	uint8_t		Flags;
   1379      1.6    bouyer 	union {
   1380      1.6    bouyer 		uint32_t	Address32;
   1381      1.6    bouyer 		uint64_t	Address64;
   1382      1.6    bouyer 	} u;
   1383      1.6    bouyer };
   1384      1.6    bouyer 
   1385      1.6    bouyer struct mpi2_ieee_sge_simple32 {
   1386      1.6    bouyer 	uint32_t	Address;
   1387      1.6    bouyer 	uint32_t	FlagsLength;
   1388      1.6    bouyer };
   1389      1.6    bouyer 
   1390      1.6    bouyer struct mpi2_ieee_sge_simple64 {
   1391      1.6    bouyer 	uint64_t	Address;
   1392      1.6    bouyer 	uint32_t	Length;
   1393      1.6    bouyer 	uint16_t	Reserved1;
   1394      1.6    bouyer 	uint8_t		Reserved2;
   1395      1.6    bouyer 	uint8_t		Flags;
   1396      1.6    bouyer };
   1397      1.6    bouyer 
   1398      1.6    bouyer typedef union _mpi2_ieee_simple_union {
   1399      1.6    bouyer 	struct mpi2_ieee_sge_simple32	Simple32;
   1400      1.6    bouyer 	struct mpi2_ieee_sge_simple64	Simple64;
   1401      1.6    bouyer } mpi2_ieee_simple_union;
   1402      1.6    bouyer 
   1403      1.6    bouyer typedef struct _mpi2_sge_simple_union {
   1404      1.6    bouyer 	uint32_t	FlagsLength;
   1405      1.6    bouyer 	union {
   1406      1.6    bouyer 		uint32_t	Address32;
   1407      1.6    bouyer 		uint64_t	Address64;
   1408      1.6    bouyer 	} u;
   1409      1.6    bouyer } mpi2_sge_simple_union;
   1410      1.6    bouyer 
   1411      1.6    bouyer /* MPI 2.5 SGLs */
   1412      1.6    bouyer 
   1413      1.6    bouyer #define MPI25_IEEE_SGE_FLAGS_END_OF_LIST        (0x40)
   1414      1.6    bouyer 
   1415      1.6    bouyer struct mpi25_ieee_sge_chain64 {
   1416      1.6    bouyer 	uint64_t	Address;
   1417      1.6    bouyer 	uint32_t	Length;
   1418      1.6    bouyer 	uint16_t	Reserved1;
   1419      1.6    bouyer 	uint8_t		NextChainOffset;
   1420      1.6    bouyer 	uint8_t		Flags;
   1421      1.6    bouyer };
   1422      1.6    bouyer 
   1423      1.6    bouyer /* use MPI2_IEEE_SGE_FLAGS_ defines for the Flags field */
   1424      1.6    bouyer 
   1425      1.6    bouyer /****************************************************************************
   1426      1.6    bouyer *  IEEE SGE field definitions and masks
   1427      1.6    bouyer ****************************************************************************/
   1428      1.6    bouyer 
   1429      1.6    bouyer /* Flags field bit definitions */
   1430      1.6    bouyer 
   1431      1.6    bouyer #define MPI2_IEEE_SGE_FLAGS_ELEMENT_TYPE_MASK   (0x80)
   1432      1.6    bouyer 
   1433      1.6    bouyer #define MPI2_IEEE32_SGE_FLAGS_SHIFT             (24)
   1434      1.6    bouyer 
   1435      1.6    bouyer #define MPI2_IEEE32_SGE_LENGTH_MASK             (0x00FFFFFF)
   1436      1.6    bouyer 
   1437      1.6    bouyer /* Element Type */
   1438      1.6    bouyer 
   1439      1.6    bouyer #define MPI2_IEEE_SGE_FLAGS_SIMPLE_ELEMENT      (0x00)
   1440      1.6    bouyer #define MPI2_IEEE_SGE_FLAGS_CHAIN_ELEMENT       (0x80)
   1441      1.6    bouyer 
   1442      1.6    bouyer /* Data Location Address Space */
   1443      1.6    bouyer 
   1444      1.6    bouyer #define MPI2_IEEE_SGE_FLAGS_ADDR_MASK           (0x03)
   1445      1.6    bouyer #define MPI2_IEEE_SGE_FLAGS_SYSTEM_ADDR         (0x00)
   1446      1.6    bouyer #define MPI2_IEEE_SGE_FLAGS_IOCDDR_ADDR         (0x01)
   1447      1.6    bouyer #define MPI2_IEEE_SGE_FLAGS_IOCPLB_ADDR         (0x02)
   1448      1.6    bouyer #define MPI2_IEEE_SGE_FLAGS_IOCPLBNTA_ADDR      (0x03)
   1449      1.6    bouyer 
   1450      1.6    bouyer /* Address Size */
   1451      1.6    bouyer 
   1452      1.6    bouyer #define MPI2_SGE_FLAGS_32_BIT_ADDRESSING        (0x00)
   1453      1.6    bouyer #define MPI2_SGE_FLAGS_64_BIT_ADDRESSING        (0x02)
   1454      1.6    bouyer 
   1455      1.6    bouyer /*******************/
   1456      1.6    bouyer /* SCSI IO Control bits */
   1457      1.6    bouyer #define MPI2_SCSIIO_CONTROL_ADDCDBLEN_MASK      (0xFC000000)
   1458      1.6    bouyer #define MPI2_SCSIIO_CONTROL_ADDCDBLEN_SHIFT     (26)
   1459      1.6    bouyer 
   1460      1.6    bouyer #define MPI2_SCSIIO_CONTROL_DATADIRECTION_MASK  (0x03000000)
   1461      1.6    bouyer #define MPI2_SCSIIO_CONTROL_NODATATRANSFER      (0x00000000)
   1462      1.6    bouyer #define MPI2_SCSIIO_CONTROL_WRITE               (0x01000000)
   1463      1.6    bouyer #define MPI2_SCSIIO_CONTROL_READ                (0x02000000)
   1464      1.6    bouyer #define MPI2_SCSIIO_CONTROL_BIDIRECTIONAL       (0x03000000)
   1465      1.6    bouyer 
   1466      1.6    bouyer #define MPI2_SCSIIO_CONTROL_TASKPRI_MASK        (0x00007800)
   1467      1.6    bouyer #define MPI2_SCSIIO_CONTROL_TASKPRI_SHIFT       (11)
   1468      1.6    bouyer 
   1469      1.6    bouyer #define MPI2_SCSIIO_CONTROL_TASKATTRIBUTE_MASK  (0x00000700)
   1470      1.6    bouyer #define MPI2_SCSIIO_CONTROL_SIMPLEQ             (0x00000000)
   1471      1.6    bouyer #define MPI2_SCSIIO_CONTROL_HEADOFQ             (0x00000100)
   1472      1.6    bouyer #define MPI2_SCSIIO_CONTROL_ORDEREDQ            (0x00000200)
   1473      1.6    bouyer #define MPI2_SCSIIO_CONTROL_ACAQ                (0x00000400)
   1474      1.6    bouyer 
   1475      1.6    bouyer #define MPI2_SCSIIO_CONTROL_TLR_MASK            (0x000000C0)
   1476      1.6    bouyer #define MPI2_SCSIIO_CONTROL_NO_TLR              (0x00000000)
   1477      1.6    bouyer #define MPI2_SCSIIO_CONTROL_TLR_ON              (0x00000040)
   1478      1.6    bouyer #define MPI2_SCSIIO_CONTROL_TLR_OFF             (0x00000080)
   1479      1.6    bouyer 
   1480      1.6    bouyer /*******************/
   1481      1.6    bouyer 
   1482      1.6    bouyer typedef struct {
   1483      1.6    bouyer 	uint8_t		CDB[20];                    /* 0x00 */
   1484      1.6    bouyer 	uint32_t	PrimaryReferenceTag;        /* 0x14 */
   1485      1.6    bouyer 	uint16_t	PrimaryApplicationTag;      /* 0x18 */
   1486      1.6    bouyer 	uint16_t	PrimaryApplicationTagMask;  /* 0x1A */
   1487      1.6    bouyer 	uint32_t	TransferLength;             /* 0x1C */
   1488      1.6    bouyer } mpi2_scsi_io_cdb_eedp32;
   1489      1.6    bouyer 
   1490      1.6    bouyer 
   1491      1.6    bouyer typedef union _mpi2_ieee_sge_chain_union {
   1492      1.6    bouyer 	struct mpi2_ieee_sge_simple32	Chain32;
   1493      1.6    bouyer 	struct mpi25_ieee_sge_chain64	Chain64;
   1494      1.6    bouyer } mpi2_ieee_sge_chain_union;
   1495      1.6    bouyer 
   1496      1.6    bouyer typedef union _mpi2_simple_sge_union {
   1497      1.6    bouyer 	mpi2_sge_simple_union		MpiSimple;
   1498      1.6    bouyer 	mpi2_ieee_simple_union	IeeeSimple;
   1499      1.6    bouyer } mpi2_simple_sge_union;
   1500      1.6    bouyer 
   1501      1.6    bouyer typedef union _mpi2_sge_io_union {
   1502      1.6    bouyer 	mpi2_sge_simple_union		MpiSimple;
   1503      1.6    bouyer 	struct mpi2_sge_chain_union	MpiChain;
   1504      1.6    bouyer 	mpi2_ieee_simple_union	IeeeSimple;
   1505      1.6    bouyer 	mpi2_ieee_sge_chain_union	IeeeChain;
   1506      1.6    bouyer } mpi2_sge_io_union;
   1507      1.6    bouyer 
   1508      1.6    bouyer typedef union {
   1509      1.6    bouyer 	uint8_t			CDB32[32];
   1510      1.6    bouyer 	mpi2_scsi_io_cdb_eedp32	EEDP32;
   1511      1.6    bouyer 	mpi2_sge_simple_union	SGE;
   1512      1.6    bouyer } mpi2_scsi_io_cdb_union;
   1513      1.6    bouyer 
   1514      1.6    bouyer 
   1515      1.6    bouyer 
   1516      1.6    bouyer /********/
   1517      1.6    bouyer 
   1518      1.6    bouyer /*
   1519      1.6    bouyer  * RAID SCSI IO Request Message
   1520      1.6    bouyer  * Total SGE count will be one less than  _MPI2_SCSI_IO_REQUEST
   1521      1.6    bouyer  */
   1522      1.6    bouyer struct mfi_mpi2_request_raid_scsi_io {
   1523      1.6    bouyer 	uint16_t		DevHandle;                      /* 0x00 */
   1524      1.6    bouyer 	uint8_t			ChainOffset;                    /* 0x02 */
   1525      1.6    bouyer 	uint8_t			Function;                       /* 0x03 */
   1526      1.6    bouyer 	uint16_t		Reserved1;                      /* 0x04 */
   1527      1.6    bouyer 	uint8_t			Reserved2;                      /* 0x06 */
   1528      1.6    bouyer 	uint8_t			MsgFlags;                       /* 0x07 */
   1529      1.6    bouyer 	uint8_t			VP_ID;                          /* 0x08 */
   1530      1.6    bouyer 	uint8_t			VF_ID;                          /* 0x09 */
   1531      1.6    bouyer 	uint16_t		Reserved3;                      /* 0x0A */
   1532      1.6    bouyer 	uint32_t		SenseBufferLowAddress;          /* 0x0C */
   1533      1.6    bouyer 	uint16_t		SGLFlags;                       /* 0x10 */
   1534      1.6    bouyer 	uint8_t			SenseBufferLength;              /* 0x12 */
   1535      1.6    bouyer 	uint8_t			Reserved4;                      /* 0x13 */
   1536      1.6    bouyer 	uint8_t			SGLOffset0;                     /* 0x14 */
   1537      1.6    bouyer 	uint8_t			SGLOffset1;                     /* 0x15 */
   1538      1.6    bouyer 	uint8_t			SGLOffset2;                     /* 0x16 */
   1539      1.6    bouyer 	uint8_t			SGLOffset3;                     /* 0x17 */
   1540      1.6    bouyer 	uint32_t		SkipCount;                      /* 0x18 */
   1541      1.6    bouyer 	uint32_t		DataLength;                     /* 0x1C */
   1542      1.6    bouyer 	uint32_t		BidirectionalDataLength;        /* 0x20 */
   1543      1.6    bouyer 	uint16_t		IoFlags;                        /* 0x24 */
   1544      1.6    bouyer 	uint16_t		EEDPFlags;                      /* 0x26 */
   1545      1.6    bouyer 	uint32_t		EEDPBlockSize;                  /* 0x28 */
   1546      1.6    bouyer 	uint32_t		SecondaryReferenceTag;          /* 0x2C */
   1547      1.6    bouyer 	uint16_t		SecondaryApplicationTag;        /* 0x30 */
   1548      1.6    bouyer 	uint16_t		ApplicationTagTranslationMask;  /* 0x32 */
   1549      1.6    bouyer 	uint8_t			LUN[8];                         /* 0x34 */
   1550      1.6    bouyer 	uint32_t		Control;                        /* 0x3C */
   1551      1.6    bouyer 	mpi2_scsi_io_cdb_union	CDB;                            /* 0x40 */
   1552      1.6    bouyer 	mpi2_scsi_io_vendor_unique	RaidContext;              /* 0x60 */
   1553      1.6    bouyer 	mpi2_sge_io_union	SGL;                            /* 0x80 */
   1554      1.6    bouyer } __packed;
   1555      1.6    bouyer 
   1556      1.6    bouyer /*
   1557      1.6    bouyer  * MPT RAID MFA IO Descriptor.
   1558      1.6    bouyer  */
   1559      1.6    bouyer typedef struct _mfi_raid_mfa_io_descriptor {
   1560      1.6    bouyer 	uint32_t	RequestFlags : 8;
   1561      1.6    bouyer 	uint32_t	MessageAddress1 : 24; /* bits 31:8*/
   1562      1.6    bouyer 	uint32_t	MessageAddress2;      /* bits 61:32 */
   1563      1.6    bouyer } mfi_raid_mfa_io_request_descriptor;
   1564      1.6    bouyer 
   1565      1.6    bouyer struct mfi_mpi2_request_header {
   1566      1.6    bouyer 	uint8_t		RequestFlags;       /* 0x00 */
   1567      1.6    bouyer 	uint8_t		MSIxIndex;          /* 0x01 */
   1568      1.6    bouyer 	uint16_t	SMID;               /* 0x02 */
   1569      1.6    bouyer 	uint16_t	LMID;               /* 0x04 */
   1570      1.6    bouyer };
   1571      1.6    bouyer 
   1572      1.6    bouyer /* defines for the RequestFlags field */
   1573      1.6    bouyer #define MPI2_REQ_DESCRIPT_FLAGS_TYPE_MASK               (0x0E)
   1574      1.6    bouyer #define MPI2_REQ_DESCRIPT_FLAGS_SCSI_IO                 (0x00)
   1575      1.6    bouyer #define MPI2_REQ_DESCRIPT_FLAGS_SCSI_TARGET             (0x02)
   1576      1.6    bouyer #define MPI2_REQ_DESCRIPT_FLAGS_HIGH_PRIORITY           (0x06)
   1577      1.6    bouyer #define MPI2_REQ_DESCRIPT_FLAGS_DEFAULT_TYPE            (0x08)
   1578      1.6    bouyer #define MPI2_REQ_DESCRIPT_FLAGS_RAID_ACCELERATOR        (0x0A)
   1579      1.6    bouyer 
   1580      1.6    bouyer #define MPI2_REQ_DESCRIPT_FLAGS_IOC_FIFO_MARKER (0x01)
   1581      1.6    bouyer 
   1582      1.6    bouyer struct mfi_mpi2_request_high_priority {
   1583      1.6    bouyer 	struct mfi_mpi2_request_header	header;
   1584      1.6    bouyer 	uint16_t			reserved;
   1585      1.6    bouyer };
   1586      1.6    bouyer 
   1587      1.6    bouyer struct mfi_mpi2_request_scsi_io {
   1588      1.6    bouyer 	struct mfi_mpi2_request_header	header;
   1589      1.6    bouyer 	uint16_t			scsi_io_dev_handle;
   1590      1.6    bouyer };
   1591      1.6    bouyer 
   1592      1.6    bouyer struct mfi_mpi2_request_scsi_target {
   1593      1.6    bouyer 	struct mfi_mpi2_request_header	header;
   1594      1.6    bouyer 	uint16_t			scsi_target_io_index;
   1595      1.6    bouyer };
   1596      1.6    bouyer 
   1597      1.6    bouyer /* Request Descriptors */
   1598      1.6    bouyer union mfi_mpi2_request_descriptor {
   1599      1.6    bouyer 	struct mfi_mpi2_request_header		header;
   1600      1.6    bouyer 	struct mfi_mpi2_request_high_priority	high_priority;
   1601      1.6    bouyer 	struct mfi_mpi2_request_scsi_io		scsi_io;
   1602      1.6    bouyer 	struct mfi_mpi2_request_scsi_target	scsi_target;
   1603      1.6    bouyer 	uint64_t				words;
   1604      1.6    bouyer };
   1605      1.6    bouyer 
   1606      1.6    bouyer /*
   1607      1.6    bouyer  * Request descriptor types
   1608      1.6    bouyer  */
   1609      1.6    bouyer #define MFI_REQ_DESCRIPT_FLAGS_LD_IO		0x7
   1610      1.6    bouyer #define MFI_REQ_DESCRIPT_FLAGS_MFA		0x1
   1611      1.6    bouyer #define MFI_REQ_DESCRIPT_FLAGS_TYPE_SHIFT	0x1
   1612      1.6    bouyer 
   1613      1.6    bouyer #define MFI_FUSION_FP_DEFAULT_TIMEOUT		0x14
   1614      1.6    bouyer 
   1615      1.6    bouyer struct mfi_mpi2_reply_header {
   1616      1.6    bouyer 	uint8_t		ReplyFlags;                 /* 0x00 */
   1617      1.6    bouyer 	uint8_t		MSIxIndex;                  /* 0x01 */
   1618      1.6    bouyer 	uint16_t	SMID;                       /* 0x02 */
   1619      1.6    bouyer };
   1620      1.6    bouyer 
   1621      1.6    bouyer /* defines for the ReplyFlags field */
   1622      1.6    bouyer #define MPI2_RPY_DESCRIPT_FLAGS_TYPE_MASK                   (0x0F)
   1623      1.6    bouyer #define MPI2_RPY_DESCRIPT_FLAGS_SCSI_IO_SUCCESS             (0x00)
   1624      1.6    bouyer #define MPI2_RPY_DESCRIPT_FLAGS_ADDRESS_REPLY               (0x01)
   1625      1.6    bouyer #define MPI2_RPY_DESCRIPT_FLAGS_TARGETASSIST_SUCCESS        (0x02)
   1626      1.6    bouyer #define MPI2_RPY_DESCRIPT_FLAGS_TARGET_COMMAND_BUFFER       (0x03)
   1627      1.6    bouyer #define MPI2_RPY_DESCRIPT_FLAGS_RAID_ACCELERATOR_SUCCESS    (0x05)
   1628      1.6    bouyer #define MPI2_RPY_DESCRIPT_FLAGS_UNUSED                      (0x0F)
   1629      1.6    bouyer 
   1630      1.6    bouyer /* values for marking a reply descriptor as unused */
   1631      1.6    bouyer #define MPI2_RPY_DESCRIPT_UNUSED_WORD0_MARK             (0xFFFFFFFF)
   1632      1.6    bouyer #define MPI2_RPY_DESCRIPT_UNUSED_WORD1_MARK             (0xFFFFFFFF)
   1633      1.6    bouyer 
   1634      1.6    bouyer struct mfi_mpi2_reply_default {
   1635      1.6    bouyer 	struct mfi_mpi2_reply_header	header;
   1636      1.6    bouyer 	uint32_t			DescriptorTypeDependent2;
   1637      1.6    bouyer };
   1638      1.6    bouyer 
   1639      1.6    bouyer struct mfi_mpi2_reply_address {
   1640      1.6    bouyer 	struct mfi_mpi2_reply_header	header;
   1641      1.6    bouyer 	uint32_t			ReplyFrameAddress;
   1642      1.6    bouyer };
   1643      1.6    bouyer 
   1644      1.6    bouyer struct mfi_mpi2_reply_scsi_io {
   1645      1.6    bouyer 	struct mfi_mpi2_reply_header	header;
   1646      1.6    bouyer 	uint16_t			TaskTag;		/* 0x04 */
   1647      1.6    bouyer 	uint16_t			Reserved1;		/* 0x06 */
   1648      1.6    bouyer };
   1649      1.6    bouyer 
   1650      1.6    bouyer struct mfi_mpi2_reply_target_assist {
   1651      1.6    bouyer 	struct mfi_mpi2_reply_header	header;
   1652      1.6    bouyer 	uint8_t				SequenceNumber;		/* 0x04 */
   1653      1.6    bouyer 	uint8_t				Reserved1;		/* 0x04 */
   1654      1.6    bouyer 	uint16_t			IoIndex;		/* 0x06 */
   1655      1.6    bouyer };
   1656      1.6    bouyer 
   1657      1.6    bouyer struct mfi_mpi2_reply_target_cmd_buffer {
   1658      1.6    bouyer 	struct mfi_mpi2_reply_header	header;
   1659      1.6    bouyer 	uint8_t				SequenceNumber;		/* 0x04 */
   1660      1.6    bouyer 	uint8_t				Flags;			/* 0x04 */
   1661      1.6    bouyer 	uint16_t			InitiatorDevHandle;	/* 0x06 */
   1662      1.6    bouyer 	uint16_t			IoIndex;		/* 0x06 */
   1663      1.6    bouyer };
   1664      1.6    bouyer 
   1665      1.6    bouyer struct mfi_mpi2_reply_raid_accel {
   1666      1.6    bouyer 	struct mfi_mpi2_reply_header	header;
   1667      1.6    bouyer 	uint8_t				SequenceNumber;		/* 0x04 */
   1668      1.6    bouyer 	uint32_t			Reserved;		/* 0x04 */
   1669      1.6    bouyer };
   1670      1.6    bouyer 
   1671      1.6    bouyer /* union of Reply Descriptors */
   1672      1.6    bouyer union mfi_mpi2_reply_descriptor {
   1673      1.6    bouyer 	struct mfi_mpi2_reply_header		header;
   1674      1.6    bouyer 	struct mfi_mpi2_reply_scsi_io		scsi_io;
   1675      1.6    bouyer 	struct mfi_mpi2_reply_target_assist	target_assist;
   1676      1.6    bouyer 	struct mfi_mpi2_reply_target_cmd_buffer	target_cmd;
   1677      1.6    bouyer 	struct mfi_mpi2_reply_raid_accel	raid_accel;
   1678      1.6    bouyer 	struct mfi_mpi2_reply_default		reply_default;
   1679      1.6    bouyer 	uint64_t				words;
   1680      1.6    bouyer };
   1681      1.6    bouyer 
   1682      1.6    bouyer struct io_request_info {
   1683      1.6    bouyer 	uint64_t	ldStartBlock;
   1684      1.6    bouyer 	uint32_t	numBlocks;
   1685      1.6    bouyer 	uint16_t	ldTgtId;
   1686      1.6    bouyer 	uint8_t		isRead;
   1687      1.6    bouyer 	uint16_t	devHandle;
   1688      1.6    bouyer 	uint64_t	pdBlock;
   1689      1.6    bouyer 	uint8_t		fpOkForIo;
   1690      1.6    bouyer };
   1691      1.6    bouyer 
   1692      1.6    bouyer /*
   1693      1.6    bouyer  * Define MFI Address Context union.
   1694      1.6    bouyer  */
   1695      1.6    bouyer #ifdef MFI_ADDRESS_IS_uint64_t
   1696      1.6    bouyer typedef uint64_t     mfi_address;
   1697      1.6    bouyer #else
   1698      1.6    bouyer typedef union _mfi_address {
   1699      1.6    bouyer 	struct {
   1700      1.6    bouyer 		uint32_t     addressLow;
   1701      1.6    bouyer 		uint32_t     addressHigh;
   1702      1.6    bouyer 	} u;
   1703      1.6    bouyer 	uint64_t     address;
   1704      1.6    bouyer } mfi_address;
   1705      1.6    bouyer #endif
   1706      1.6    bouyer 
   1707      1.6    bouyer #define MEGASAS_MAX_NAME        32
   1708      1.6    bouyer #define MEGASAS_VERSION         "4.23"
   1709  1.7.2.1       tls 
   1710  1.7.2.1       tls #endif /* _DEV_IC_MFIREG_H_ */
   1711