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isp_tpublic.h revision 1.20
      1  1.20  msaitoh /* $NetBSD: isp_tpublic.h,v 1.20 2020/08/19 02:19:07 msaitoh Exp $ */
      2  1.16   mjacob /*-
      3  1.16   mjacob  *  Copyright (c) 1997-2008 by Matthew Jacob
      4  1.16   mjacob  *  All rights reserved.
      5  1.16   mjacob  *
      6  1.16   mjacob  *  Redistribution and use in source and binary forms, with or without
      7  1.16   mjacob  *  modification, are permitted provided that the following conditions
      8  1.16   mjacob  *  are met:
      9  1.15   mjacob  *
     10  1.16   mjacob  *  1. Redistributions of source code must retain the above copyright
     11  1.16   mjacob  *     notice, this list of conditions and the following disclaimer.
     12  1.16   mjacob  *  2. Redistributions in binary form must reproduce the above copyright
     13  1.16   mjacob  *     notice, this list of conditions and the following disclaimer in the
     14  1.16   mjacob  *     documentation and/or other materials provided with the distribution.
     15  1.15   mjacob  *
     16  1.16   mjacob  *  THIS SOFTWARE IS PROVIDED BY AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     17  1.16   mjacob  *  ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     18  1.16   mjacob  *  IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     19  1.16   mjacob  *  ARE DISCLAIMED.  IN NO EVENT SHALL AUTHOR OR CONTRIBUTORS BE LIABLE
     20  1.16   mjacob  *  FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     21  1.16   mjacob  *  DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     22  1.16   mjacob  *  OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     23  1.16   mjacob  *  HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     24  1.16   mjacob  *  LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     25  1.16   mjacob  *  OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     26  1.16   mjacob  *  SUCH DAMAGE.
     27   1.1   mjacob  */
     28  1.15   mjacob /*
     29  1.15   mjacob  * Host Adapter Public Target Interface Structures && Routines
     30  1.15   mjacob  */
     31  1.16   mjacob /*
     32  1.16   mjacob  * A note about terminology:
     33  1.16   mjacob  *
     34  1.16   mjacob  *  "Inner Layer" means this driver (isp and the isp_tpublic API).
     35  1.16   mjacob  *
     36  1.16   mjacob  *    This module includes the both generic and platform specific pieces.
     37  1.16   mjacob  *
     38  1.16   mjacob  *  "Outer Layer" means another (external) module.
     39  1.16   mjacob  *
     40  1.16   mjacob  *    This is an additional module that actually implements SCSI target command
     41  1.16   mjacob  *    decode and is the recipient of incoming commands and the source of the
     42  1.16   mjacob  *    disposition for them.
     43  1.16   mjacob  */
     44  1.15   mjacob 
     45  1.15   mjacob #ifndef    _ISP_TPUBLIC_H
     46  1.15   mjacob #define    _ISP_TPUBLIC_H    1
     47  1.18   mjacob /*
     48  1.18   mjacob  * Include general target definitions
     49  1.18   mjacob  */
     50  1.18   mjacob #include "isp_target.h"
     51  1.15   mjacob 
     52  1.15   mjacob /*
     53  1.16   mjacob  * Action codes set by the Inner Layer for the outer layer to figure out what to do with.
     54  1.15   mjacob  */
     55  1.15   mjacob typedef enum {
     56  1.15   mjacob     QOUT_HBA_REG=0,     /* the argument is a pointer to a hba_register_t */
     57  1.15   mjacob     QOUT_ENABLE,        /* the argument is a pointer to a enadis_t */
     58  1.15   mjacob     QOUT_DISABLE,       /* the argument is a pointer to a enadis_t */
     59  1.15   mjacob     QOUT_TMD_START,     /* the argument is a pointer to a tmd_cmd_t */
     60  1.16   mjacob     QOUT_TMD_DONE,      /* the argument is a pointer to a tmd_xact_t */
     61  1.19   mjacob     QOUT_NOTIFY,        /* the argument is a pointer to a notify_t */
     62  1.15   mjacob     QOUT_HBA_UNREG      /* the argument is a pointer to a hba_register_t */
     63  1.15   mjacob } tact_e;
     64  1.15   mjacob 
     65  1.15   mjacob /*
     66  1.16   mjacob  * Action codes set by the outer layer for the
     67  1.16   mjacob  * inner layer to figure out what to do with.
     68  1.15   mjacob  */
     69  1.15   mjacob typedef enum {
     70  1.15   mjacob     QIN_HBA_REG=99,     /* the argument is a pointer to a hba_register_t */
     71  1.15   mjacob     QIN_GETINFO,        /* the argument is a pointer to a info_t */
     72  1.15   mjacob     QIN_SETINFO,        /* the argument is a pointer to a info_t */
     73  1.15   mjacob     QIN_GETDLIST,       /* the argument is a pointer to a fc_dlist_t */
     74  1.15   mjacob     QIN_ENABLE,         /* the argument is a pointer to a enadis_t */
     75  1.15   mjacob     QIN_DISABLE,        /* the argument is a pointer to a enadis_t */
     76  1.16   mjacob     QIN_TMD_CONT,       /* the argument is a pointer to a tmd_xact_t */
     77  1.15   mjacob     QIN_TMD_FIN,        /* the argument is a pointer to a tmd_cmd_t */
     78  1.19   mjacob     QIN_NOTIFY_ACK,     /* the argument is a pointer to a notify_t */
     79  1.15   mjacob     QIN_HBA_UNREG,      /* the argument is a pointer to a hba_register_t */
     80  1.15   mjacob } qact_e;
     81  1.15   mjacob 
     82  1.15   mjacob /*
     83  1.16   mjacob  * This structure is used to register to the outer layer the
     84  1.15   mjacob  * binding of an HBA identifier, driver name and instance and the
     85  1.16   mjacob  * lun width capapbilities of this inner layer. It's up to each
     86  1.16   mjacob  * platform to figure out how it wants to actually implement this.
     87  1.16   mjacob  * A typical sequence would be for the MD layer to find some external
     88  1.16   mjacob  * module's entry point and start by sending a QOUT_HBA_REG with info
     89  1.16   mjacob  * filled in, and the external module to call back with a QIN_HBA_REG
     90  1.16   mjacob  * that passes back the corresponding information.
     91  1.16   mjacob  *
     92  1.16   mjacob  * The r_version tag defines the version of this API.
     93  1.15   mjacob  */
     94  1.17   mjacob #define    QR_VERSION    20
     95  1.15   mjacob typedef struct {
     96  1.16   mjacob     /* NB: structure tags from here to r_version must never change */
     97  1.15   mjacob     void *                  r_identity;
     98  1.15   mjacob     void                    (*r_action)(qact_e, void *);
     99  1.15   mjacob     char                    r_name[8];
    100  1.15   mjacob     int                     r_inst;
    101  1.15   mjacob     int                     r_version;
    102  1.15   mjacob     uint32_t                r_locator;
    103  1.15   mjacob     uint32_t                r_nchannels;
    104  1.15   mjacob     enum { R_FC, R_SPI }    r_type;
    105  1.15   mjacob     void *                  r_private;
    106  1.15   mjacob } hba_register_t;
    107   1.1   mjacob 
    108   1.1   mjacob /*
    109  1.15   mjacob  * An information structure that is used to get or set per-channel transport layer parameters.
    110   1.1   mjacob  */
    111  1.15   mjacob typedef struct {
    112  1.15   mjacob     void *                  i_identity;
    113  1.15   mjacob     enum { I_FC, I_SPI }    i_type;
    114  1.15   mjacob     int                     i_channel;
    115  1.15   mjacob     int                     i_error;
    116  1.15   mjacob     union {
    117  1.15   mjacob         struct {
    118  1.15   mjacob             uint64_t    wwnn_nvram;
    119  1.15   mjacob             uint64_t    wwpn_nvram;
    120  1.15   mjacob             uint64_t    wwnn;
    121  1.15   mjacob             uint64_t    wwpn;
    122  1.15   mjacob         } fc;
    123  1.15   mjacob         struct {
    124  1.15   mjacob             int         iid;
    125  1.15   mjacob         } spi;
    126  1.15   mjacob     }                       i_id;
    127  1.15   mjacob } info_t;
    128   1.1   mjacob 
    129  1.15   mjacob /*
    130  1.15   mjacob  * An information structure to return a list of logged in WWPNs. FC specific.
    131  1.15   mjacob  */
    132   1.1   mjacob typedef struct {
    133  1.15   mjacob     void *                  d_identity;
    134  1.15   mjacob     int                     d_channel;
    135  1.15   mjacob     int                     d_error;
    136  1.15   mjacob     int                     d_count;
    137  1.15   mjacob     uint64_t *              d_wwpns;
    138  1.15   mjacob } fc_dlist_t;
    139  1.16   mjacob 
    140  1.15   mjacob /*
    141  1.16   mjacob  * Lun ENABLE/DISABLE
    142  1.16   mjacob  *
    143  1.15   mjacob  * A word about ENABLE/DISABLE: the argument is a pointer to a enadis_t
    144  1.16   mjacob  * with en_hba, en_chan and en_lun filled out. We used to have an iid
    145  1.16   mjacob  * and target pair, but this just gets silly so we made initiator id
    146  1.16   mjacob  * and target id something you set, once, elsewhere.
    147  1.15   mjacob  *
    148  1.15   mjacob  * If an error occurs in either enabling or disabling the described lun
    149  1.16   mjacob  * en_error is set with an appropriate non-zero value.
    150  1.15   mjacob  */
    151   1.1   mjacob typedef struct {
    152  1.15   mjacob     void *          en_private;     /* for outer layer usage */
    153  1.15   mjacob     void *          en_hba;         /* HBA tag */
    154  1.15   mjacob     uint16_t        en_lun;         /* logical unit */
    155  1.15   mjacob     uint16_t        en_chan;        /* channel on card */
    156  1.15   mjacob     int             en_error;
    157  1.15   mjacob } enadis_t;
    158   1.1   mjacob 
    159  1.16   mjacob 
    160  1.16   mjacob 
    161   1.1   mjacob /*
    162  1.16   mjacob  * Data Transaction
    163   1.1   mjacob  *
    164  1.16   mjacob  * A tmd_xact_t is a structure used to describe a transaction within
    165  1.16   mjacob  * an overall command. It used to be part of the overall command,
    166  1.16   mjacob  * but it became desirable to allow for multiple simultaneous
    167  1.16   mjacob  * transfers for a command to happen. Generally these structures
    168  1.16   mjacob  * define data to be moved (along with the relative offset within
    169  1.16   mjacob  * the overall command) with the last structure containing status
    170  1.16   mjacob  * and sense (if needed) as well.
    171  1.16   mjacob  *
    172  1.16   mjacob  * The td_cmd tag points back to the owning command.
    173  1.16   mjacob  *
    174  1.16   mjacob  * The td_data tag points to the (platform specific) data descriptor.
    175  1.16   mjacob  *
    176  1.16   mjacob  * The td_lprivate is for use by the Inner Layer for private usage.
    177  1.16   mjacob  *
    178  1.16   mjacob  * The td_xfrlen says whether this transaction is moving data- if nonzero.
    179  1.16   mjacob  *
    180  1.16   mjacob  * The td_offset states what the relative offset within the comamnd the
    181  1.16   mjacob  * data transfer will start at. It is undefined if td_xfrlen is zero.
    182  1.16   mjacob  *
    183  1.16   mjacob  * The td_error flag will note any errors that occurred during an attempt
    184  1.16   mjacob  * to start this transaction. The inner layer is responsible for setting
    185  1.16   mjacob  * this.
    186  1.16   mjacob  *
    187  1.16   mjacob  * The td_hflags tag is set by the outer layer to indicate how the inner
    188  1.16   mjacob  * layer is supposed to treat this transaction.
    189  1.16   mjacob  *
    190  1.16   mjacob  * The td_lflags tag is set by the inner layer to indicate whether this
    191  1.16   mjacob  * transaction sent status and/or sense. Note that (much as it hurts),
    192  1.16   mjacob  * this API allows the inner layer to *fail* to send sense even if asked
    193  1.16   mjacob  * to- that is, AUTOSENSE is not a requirement of this API and the outer
    194  1.16   mjacob  * layer has to be prepared for this (unlikely) eventuality.
    195  1.16   mjacob  */
    196  1.16   mjacob 
    197  1.16   mjacob typedef struct tmd_cmd tmd_cmd_t;
    198  1.16   mjacob typedef struct tmd_xact {
    199  1.16   mjacob     tmd_cmd_t *         td_cmd;                 /* cross-ref to tmd_cmd_t */
    200  1.16   mjacob     void *              td_data;                /* data descriptor */
    201  1.16   mjacob     void *              td_lprivate;            /* private for lower layer */
    202  1.16   mjacob     uint32_t            td_xfrlen;              /* size of this data load */
    203  1.16   mjacob     uint32_t            td_offset;              /* offset for this data load */
    204  1.16   mjacob     int                 td_error;               /* error with this transfer */
    205  1.16   mjacob     uint8_t             td_hflags;              /* flags set by caller */
    206  1.16   mjacob     uint8_t             td_lflags;              /* flags set by callee */
    207  1.16   mjacob } tmd_xact_t;
    208  1.16   mjacob 
    209  1.16   mjacob #define TDFH_STSVALID   0x01    /* status is valid - include it */
    210  1.16   mjacob #define TDFH_SNSVALID   0x02    /* sense data (from outer layer) good - include it */
    211  1.16   mjacob #define TDFH_DATA_IN    0x04    /* target (us) -> initiator (them) */
    212  1.16   mjacob #define TDFH_DATA_OUT   0x08    /* initiator (them) -> target (us) */
    213  1.16   mjacob #define TDFH_DATA_MASK  0x0C    /* mask to cover data direction */
    214  1.16   mjacob #define TDFH_PRIVATE    0xF0    /* private outer layer usage */
    215  1.16   mjacob 
    216  1.16   mjacob #define TDFL_SENTSTATUS 0x01    /* this transaction sent status */
    217  1.16   mjacob #define TDFL_SENTSENSE  0x02    /* this transaction sent sense data */
    218  1.16   mjacob #define TDFL_ERROR      0x04    /* this transaction had an error */
    219  1.18   mjacob #define TDFL_SYNCERROR  0x08    /* ... and didn't even start because of it */
    220  1.16   mjacob #define TDFL_PRIVATE    0xF0    /* private inner layer usage */
    221  1.16   mjacob 
    222  1.16   mjacob /*
    223  1.16   mjacob  * The command structure below the SCSI Command structure that is
    224  1.16   mjacob  * is the whole point of this API. After a LUN is (or LUNS are)
    225  1.16   mjacob  * enabled, initiators who send commands addressed to the port,
    226  1.16   mjacob  * channel and lun that have been enabled cause an interrupt which
    227  1.16   mjacob  * causes the chip to receive the command and present it to the
    228  1.16   mjacob  * inner layer. The inner layer allocates one of this command
    229  1.16   mjacob  * structures and copies relevant information to it and sends it
    230  1.16   mjacob  * to the outer layer with the action QOUT_TMD_START.
    231  1.16   mjacob  *
    232  1.16   mjacob  * The outer layer is then responsible for command decode and is responsible
    233  1.16   mjacob  * for sending any transactions back (via a QIN_TMD_CONT) to the inner layer
    234  1.16   mjacob  * that (optionally) moves data and then sends closing status.
    235  1.16   mjacob  *
    236  1.16   mjacob  * The outer layer, when informed of the status of the final transaction
    237  1.16   mjacob  * then releases this structure by sending it back to the inner layer
    238  1.16   mjacob  * with the action QOUT_TMD_FIN.
    239   1.3       he  *
    240  1.16   mjacob  * The structure tag meanings are as described below.
    241   1.3       he  *
    242  1.16   mjacob  * The cd_hba tag is a tag that uniquely identifies the HBA this target
    243  1.16   mjacob  * mode command is coming from. The outer layer has to pass this back
    244  1.16   mjacob  * unchanged to avoid chaos. It is identical to the r_identity tag used
    245  1.16   mjacob  * by the inner layer to register with the outer layer.
    246   1.3       he  *
    247  1.16   mjacob  * The cd_iid, cd_channel, cd_tgt and cd_lun tags are used to identify the
    248  1.16   mjacob  * the initiator who sent us a command, the channel on the this particular
    249  1.16   mjacob  * hardware port we arrived on (for multiple channel devices), the target we
    250  1.16   mjacob  * claim to be, and the lun on that target.
    251  1.16   mjacob  *
    252  1.16   mjacob  * The cd_tagval field is a tag that uniquely describes this tag. It may
    253  1.16   mjacob  * or may not have any correspondence to an underying hardware tag. The
    254  1.16   mjacob  * outer layer must pass this back unchanged or chaos will result.
    255   1.3       he  *
    256  1.16   mjacob  * The tag cd_totlen is the total data amount expected to be moved
    257  1.16   mjacob  * for this command. This will be set to non-zero for transports
    258  1.16   mjacob  * that know this value from the transport level (e.g., Fibre Channel).
    259  1.16   mjacob  * If it shows up in the outer layers set to zero, the total data length
    260  1.16   mjacob  * must be inferred from the CDB.
    261  1.16   mjacob  *
    262  1.16   mjacob  * The tag cd_moved is the total amount of data moved so far. It is the
    263  1.16   mjacob  * responsibilty of the inner layer to set this for every transaction and
    264  1.16   mjacob  * to keep track of it so that transport level residuals may be correctly
    265  1.16   mjacob  * set.
    266   1.1   mjacob  *
    267  1.16   mjacob  * The cd_cdb contains storage for the passed in SCSI command.
    268   1.1   mjacob  *
    269  1.15   mjacob  * The cd_tagtype field specifies what kind of command tag type, if
    270  1.16   mjacob  * any, has been sent with this command.
    271   1.1   mjacob  *
    272  1.16   mjacob  * The tag cd_flags has some junk flags set but mostly has flags reserved for outer layer use.
    273   1.1   mjacob  *
    274  1.16   mjacob  * The tags cd_sense and cd_scsi_status are self-explanatory.
    275   1.1   mjacob  *
    276  1.16   mjacob  * The cd_xact tag is the first or only transaction structure related to this command.
    277   1.1   mjacob  *
    278  1.16   mjacob  * The tag cd_lreserved, cd_hreserved are scratch areas for use for the outer and inner layers respectively.
    279  1.15   mjacob  *
    280   1.1   mjacob  */
    281   1.1   mjacob 
    282  1.16   mjacob #ifndef TMD_CDBLEN
    283  1.16   mjacob #define TMD_CDBLEN       16
    284  1.16   mjacob #endif
    285  1.16   mjacob #ifndef TMD_SENSELEN
    286  1.16   mjacob #define TMD_SENSELEN     18
    287  1.10   mjacob #endif
    288  1.16   mjacob #ifndef QCDS
    289  1.16   mjacob #define QCDS             (sizeof (uint64_t))
    290   1.1   mjacob #endif
    291  1.16   mjacob #ifndef TMD_PRIV_LO
    292  1.16   mjacob #define TMD_PRIV_LO 4
    293  1.16   mjacob #endif
    294  1.16   mjacob #ifndef TMD_PRIV_HI
    295  1.16   mjacob #define TMD_PRIV_HI 4
    296   1.1   mjacob #endif
    297   1.1   mjacob 
    298  1.16   mjacob struct tmd_cmd {
    299  1.15   mjacob     void *              cd_hba;     /* HBA tag */
    300  1.15   mjacob     uint64_t            cd_iid;     /* initiator ID */
    301  1.15   mjacob     uint64_t            cd_tgt;     /* target id */
    302  1.16   mjacob     uint64_t            cd_tagval;  /* tag value */
    303  1.15   mjacob     uint8_t             cd_lun[8];  /* logical unit */
    304  1.15   mjacob     uint32_t            cd_totlen;  /* total data load */
    305  1.16   mjacob     uint32_t            cd_moved;   /* total data moved so far */
    306  1.16   mjacob     uint16_t            cd_channel; /* channel index */
    307  1.16   mjacob     uint16_t            cd_flags;   /* flags */
    308  1.16   mjacob     uint16_t            cd_req_cnt; /* how many tmd_xact_t's are active */
    309  1.16   mjacob     uint8_t             cd_cdb[TMD_CDBLEN];
    310  1.15   mjacob     uint8_t             cd_tagtype; /* tag type */
    311  1.15   mjacob     uint8_t             cd_scsi_status;
    312  1.15   mjacob     uint8_t             cd_sense[TMD_SENSELEN];
    313  1.16   mjacob     tmd_xact_t          cd_xact;    /* first or only transaction */
    314  1.15   mjacob     union {
    315  1.16   mjacob         void *          ptrs[QCDS / sizeof (void *)];       /* (assume) one pointer */
    316  1.16   mjacob         uint64_t        llongs[QCDS / sizeof (uint64_t)];   /* one long long */
    317  1.16   mjacob         uint32_t        longs[QCDS / sizeof (uint32_t)];    /* two longs */
    318  1.16   mjacob         uint16_t        shorts[QCDS / sizeof (uint16_t)];   /* four shorts */
    319  1.16   mjacob         uint8_t         bytes[QCDS];                        /* eight bytes */
    320  1.16   mjacob     } cd_lreserved[TMD_PRIV_LO], cd_hreserved[TMD_PRIV_HI];
    321  1.16   mjacob };
    322  1.16   mjacob 
    323  1.16   mjacob #define CDF_NODISC      0x0001  /* disconnects disabled */
    324  1.16   mjacob #define CDF_DATA_IN     0x0002  /* target (us) -> initiator (them) */
    325  1.16   mjacob #define CDF_DATA_OUT    0x0004  /* initiator (them) -> target (us) */
    326  1.16   mjacob #define CDF_BIDIR       0x0006  /* bidirectional data */
    327  1.16   mjacob #define CDF_SNSVALID    0x0008  /* sense is set on incoming command */
    328  1.16   mjacob #define CDF_PRIVATE     0xff00  /* available for private use in outer layer */
    329   1.1   mjacob 
    330  1.15   mjacob /* defined tags */
    331  1.15   mjacob #define CD_UNTAGGED     0
    332  1.15   mjacob #define CD_SIMPLE_TAG   1
    333  1.15   mjacob #define CD_ORDERED_TAG  2
    334  1.15   mjacob #define CD_HEAD_TAG     3
    335  1.15   mjacob #define CD_ACA_TAG      4
    336  1.15   mjacob 
    337  1.15   mjacob #ifndef    TMD_SIZE
    338  1.15   mjacob #define    TMD_SIZE     (sizeof (tmd_cmd_t))
    339  1.10   mjacob #endif
    340  1.10   mjacob 
    341  1.15   mjacob #define L0LUN_TO_FLATLUN(lptr)              ((((lptr)[0] & 0x3f) << 8) | ((lptr)[1]))
    342  1.15   mjacob #define FLATLUN_TO_L0LUN(lptr, lun)                 \
    343  1.15   mjacob     (lptr)[1] = lun & 0xff;                         \
    344  1.15   mjacob     if (sizeof (lun) == 1) {                        \
    345  1.15   mjacob         (lptr)[0] = 0;                              \
    346  1.15   mjacob     } else {                                        \
    347  1.15   mjacob         uint16_t nl = lun;                          \
    348  1.15   mjacob         if (nl == LUN_ANY) {                        \
    349  1.15   mjacob             (lptr)[0] = (nl >> 8) & 0xff;           \
    350  1.15   mjacob         } else if (nl < 256) {                      \
    351  1.15   mjacob             (lptr)[0] = 0;                          \
    352  1.15   mjacob         } else {                                    \
    353  1.15   mjacob             (lptr)[0] = 0x40 | ((nl >> 8) & 0x3f);  \
    354  1.15   mjacob         }                                           \
    355  1.15   mjacob     }                                               \
    356  1.15   mjacob     memset(&(lptr)[2], 0, 6)
    357  1.15   mjacob 
    358  1.10   mjacob /*
    359  1.16   mjacob  * Inner Layer Handler Function.
    360  1.10   mjacob  *
    361  1.16   mjacob  * The inner layer target handler function (the outer layer calls this)
    362  1.20  msaitoh  * should be prototyped like so:
    363  1.10   mjacob  *
    364  1.15   mjacob  *    void target_action(qact_e, void *arg)
    365  1.10   mjacob  *
    366  1.16   mjacob  * The outer layer target handler function (the inner layer calls this)
    367  1.20  msaitoh  * should be prototyped like:
    368  1.10   mjacob  *
    369  1.15   mjacob  *    void scsi_target_handler(tact_e, void *arg)
    370  1.15   mjacob  */
    371  1.18   mjacob 
    372  1.15   mjacob #endif    /* _ISP_TPUBLIC_H */
    373  1.15   mjacob /*
    374  1.15   mjacob  * vim:ts=4:sw=4:expandtab
    375  1.10   mjacob  */
    376