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siop.ss revision 1.15.4.1
      1  1.15.4.1    tron ;	$NetBSD: siop.ss,v 1.15.4.1 2005/03/17 17:49:33 tron Exp $
      2       1.3  bouyer 
      3       1.3  bouyer ;
      4       1.3  bouyer ;  Copyright (c) 2000 Manuel Bouyer.
      5       1.3  bouyer ; 
      6       1.3  bouyer ;  Redistribution and use in source and binary forms, with or without
      7       1.3  bouyer ;  modification, are permitted provided that the following conditions
      8       1.3  bouyer ;  are met:
      9       1.3  bouyer ;  1. Redistributions of source code must retain the above copyright
     10       1.3  bouyer ;     notice, this list of conditions and the following disclaimer.
     11       1.3  bouyer ;  2. Redistributions in binary form must reproduce the above copyright
     12       1.3  bouyer ;     notice, this list of conditions and the following disclaimer in the
     13       1.3  bouyer ;     documentation and/or other materials provided with the distribution.
     14       1.3  bouyer ;  3. All advertising materials mentioning features or use of this software
     15       1.3  bouyer ;     must display the following acknowledgement:
     16      1.15  bouyer ; 	This product includes software developed by Manuel Bouyer.
     17       1.3  bouyer ;  4. The name of the author may not be used to endorse or promote products
     18       1.3  bouyer ;     derived from this software without specific prior written permission.
     19       1.3  bouyer ; 
     20       1.5  bouyer ;  THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     21       1.5  bouyer ;  IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     22       1.5  bouyer ;  OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     23       1.5  bouyer ;  IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,     
     24       1.5  bouyer ;  INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     25       1.5  bouyer ;  NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     26       1.5  bouyer ;  DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     27       1.5  bouyer ;  THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     28       1.5  bouyer ;  (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     29       1.5  bouyer ;  THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     30       1.3  bouyer 
     31       1.1  bouyer ARCH 720
     32       1.1  bouyer 
     33      1.14  bouyer ; offsets in siop_common_xfer
     34      1.14  bouyer ABSOLUTE t_id = 40;
     35      1.14  bouyer ABSOLUTE t_msg_in = 48;
     36      1.14  bouyer ABSOLUTE t_ext_msg_in = 56;
     37      1.14  bouyer ABSOLUTE t_ext_msg_data = 64;
     38      1.14  bouyer ABSOLUTE t_msg_out = 72;
     39      1.14  bouyer ABSOLUTE t_cmd = 80;
     40      1.14  bouyer ABSOLUTE t_status = 88;
     41      1.14  bouyer ABSOLUTE t_data = 96;
     42       1.1  bouyer 
     43       1.1  bouyer ;; interrupt codes
     44      1.10  bouyer ; interrupts that need a valid DSA
     45       1.1  bouyer ABSOLUTE int_done	= 0xff00;
     46       1.1  bouyer ABSOLUTE int_msgin	= 0xff01;
     47       1.2  bouyer ABSOLUTE int_extmsgin	= 0xff02;
     48       1.2  bouyer ABSOLUTE int_extmsgdata	= 0xff03;
     49      1.10  bouyer ABSOLUTE int_disc	= 0xff04;
     50      1.10  bouyer ; interrupts that don't have a valid DSA
     51      1.10  bouyer ABSOLUTE int_reseltarg	= 0xff80;
     52      1.10  bouyer ABSOLUTE int_resellun	= 0xff81;
     53      1.10  bouyer ABSOLUTE int_reseltag	= 0xff82;
     54      1.10  bouyer ABSOLUTE int_resfail	= 0xff83;
     55       1.1  bouyer ABSOLUTE int_err 	= 0xffff;
     56       1.1  bouyer 
     57       1.1  bouyer ; flags for scratcha0
     58       1.1  bouyer ABSOLUTE flag_sdp 	= 0x01 ; got save data pointer
     59       1.4  bouyer ABSOLUTE flag_data 	= 0x02 ; we're in data phase
     60       1.4  bouyer ABSOLUTE flag_data_mask	= 0xfd ; ~flag_data
     61       1.1  bouyer 
     62      1.10  bouyer ; main script symbols
     63      1.10  bouyer 
     64       1.1  bouyer ENTRY waitphase;
     65       1.2  bouyer ENTRY send_msgout;
     66       1.1  bouyer ENTRY msgout;
     67       1.1  bouyer ENTRY msgin;
     68      1.10  bouyer ENTRY handle_msgin;
     69       1.2  bouyer ENTRY msgin_ack;
     70       1.1  bouyer ENTRY dataout;
     71       1.1  bouyer ENTRY datain;
     72       1.1  bouyer ENTRY cmdout;
     73       1.1  bouyer ENTRY status;
     74       1.1  bouyer ENTRY disconnect;
     75       1.1  bouyer ENTRY reselect;
     76      1.10  bouyer ENTRY reselected;
     77       1.2  bouyer ENTRY selected;
     78      1.10  bouyer ENTRY script_sched;
     79      1.12  bouyer ENTRY script_sched_slot0;
     80       1.2  bouyer ENTRY get_extmsgdata;
     81      1.10  bouyer ENTRY resel_targ0;
     82      1.10  bouyer ENTRY msgin_space;
     83      1.10  bouyer ENTRY lunsw_return;
     84      1.13  bouyer ENTRY led_on1;
     85      1.13  bouyer ENTRY led_on2;
     86      1.13  bouyer ENTRY led_off;
     87      1.12  bouyer EXTERN abs_script_sched_slot0;
     88      1.10  bouyer EXTERN abs_targ0;
     89      1.10  bouyer EXTERN abs_msgin;
     90      1.10  bouyer 
     91      1.10  bouyer ; lun switch symbols
     92      1.11  bouyer ENTRY lun_switch_entry;
     93      1.10  bouyer ENTRY resel_lun0;
     94      1.10  bouyer ENTRY restore_scntl3;
     95      1.10  bouyer EXTERN abs_lunsw_return;
     96      1.10  bouyer 
     97      1.12  bouyer ; tag switch symbols
     98      1.12  bouyer ENTRY tag_switch_entry;
     99      1.12  bouyer ENTRY resel_tag0;
    100      1.12  bouyer EXTERN abs_tag0;
    101      1.12  bouyer 
    102      1.10  bouyer ; command reselect script symbols
    103      1.10  bouyer ENTRY rdsa0;
    104      1.10  bouyer ENTRY rdsa1;
    105      1.10  bouyer ENTRY rdsa2;
    106      1.10  bouyer ENTRY rdsa3;
    107      1.12  bouyer ENTRY ldsa_reload_dsa;
    108      1.12  bouyer ENTRY ldsa_select;
    109      1.12  bouyer ENTRY ldsa_data;
    110      1.12  bouyer 
    111      1.12  bouyer EXTERN ldsa_abs_reselected;
    112      1.12  bouyer EXTERN ldsa_abs_reselect;
    113      1.12  bouyer EXTERN ldsa_abs_selected;
    114      1.12  bouyer EXTERN ldsa_abs_data;
    115      1.12  bouyer EXTERN ldsa_abs_slot;
    116       1.1  bouyer 
    117      1.10  bouyer ; main script
    118       1.8  bouyer 
    119       1.1  bouyer PROC  siop_script:
    120       1.1  bouyer 
    121      1.10  bouyer reselected:
    122       1.1  bouyer ; starting a new session, init 'local variables'
    123       1.1  bouyer 	MOVE 0 to SCRATCHA0	; flags
    124       1.1  bouyer 	MOVE 0 to SCRATCHA1	; DSA offset (for S/G save data pointer)
    125      1.10  bouyer 	MOVE SCRATCHA3 to SFBR  ; pending message ?
    126      1.12  bouyer 	JUMP REL(handle_msgin), IF not 0x20;
    127       1.1  bouyer waitphase:
    128       1.1  bouyer 	JUMP REL(msgout), WHEN MSG_OUT;
    129       1.1  bouyer 	JUMP REL(msgin), WHEN MSG_IN;
    130       1.1  bouyer 	JUMP REL(dataout), WHEN DATA_OUT;
    131       1.1  bouyer 	JUMP REL(datain), WHEN DATA_IN;
    132       1.1  bouyer 	JUMP REL(cmdout), WHEN CMD;
    133       1.1  bouyer 	JUMP REL(status), WHEN STATUS;
    134       1.1  bouyer 	INT int_err;
    135       1.1  bouyer 
    136      1.12  bouyer reselect_fail:
    137      1.12  bouyer 	; check that host asserted SIGP, this'll clear SIGP in ISTAT
    138      1.12  bouyer 	MOVE CTEST2 & 0x40 TO SFBR;
    139      1.12  bouyer 	INT int_resfail,  IF 0x00;
    140      1.13  bouyer ; a NOP by default; patched with MOVE GPREG & 0xfe to GPREG on compile-time
    141      1.13  bouyer ; option "SIOP_SYMLED"
    142      1.13  bouyer led_on1:
    143      1.13  bouyer 	NOP;
    144      1.12  bouyer script_sched:
    145      1.12  bouyer 	; Clear DSA and init status
    146      1.12  bouyer 	MOVE 0xff to DSA0;
    147      1.12  bouyer 	MOVE 0xff to DSA1;
    148      1.12  bouyer 	MOVE 0xff to DSA2;
    149      1.12  bouyer 	MOVE 0xff to DSA3;
    150      1.12  bouyer 	MOVE 0 to SCRATCHA0	; flags
    151      1.12  bouyer 	MOVE 0 to SCRATCHA1	; DSA offset (for S/G save data pointer)
    152      1.12  bouyer ; the script scheduler: siop_start() we set the absolute jump addr, and then 
    153      1.12  bouyer ; changes the FALSE to TRUE. The select script will change it back to false
    154      1.12  bouyer ; once the target is selected.
    155      1.12  bouyer ; The RAM could hold 370 slot entry, we limit it to 40. Should be more than
    156      1.12  bouyer ; enouth.
    157      1.12  bouyer script_sched_slot0:
    158      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    159      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    160      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    161      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    162      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    163      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    164      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    165      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    166      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    167      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    168      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    169      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    170      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    171      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    172      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    173      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    174      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    175      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    176      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    177      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    178      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    179      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    180      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    181      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    182      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    183      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    184      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    185      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    186      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    187      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    188      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    189      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    190      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    191      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    192      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    193      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    194      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    195      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    196      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    197      1.12  bouyer 	JUMP abs_script_sched_slot0, IF FALSE;
    198      1.12  bouyer ; Nothing to do, wait for reselect
    199       1.1  bouyer reselect:
    200      1.10  bouyer 	; Clear DSA and init status
    201      1.10  bouyer 	MOVE 0xff to DSA0;
    202      1.10  bouyer 	MOVE 0xff to DSA1;
    203      1.10  bouyer 	MOVE 0xff to DSA2;
    204      1.10  bouyer 	MOVE 0xff to DSA3;
    205      1.12  bouyer 	MOVE 0x00 to SCRATCHA2; no tag
    206      1.12  bouyer 	MOVE 0x20 to SCRATCHA3; simple tag msg, ignored by reselected:
    207      1.13  bouyer ; a NOP by default; patched with MOVE GPREG | 0x01 to GPREG on compile-time
    208      1.13  bouyer ; option "SIOP_SYMLED"
    209      1.13  bouyer led_off:
    210      1.13  bouyer 	NOP;
    211       1.1  bouyer 	WAIT RESELECT REL(reselect_fail)
    212      1.13  bouyer ; a NOP by default; patched with MOVE GPREG & 0xfe to GPREG on compile-time
    213      1.13  bouyer ; option "SIOP_SYMLED"
    214      1.13  bouyer led_on2:
    215      1.13  bouyer 	NOP;
    216       1.1  bouyer 	MOVE SSID & 0x8f to SFBR
    217       1.1  bouyer 	MOVE SFBR to SCRATCHA0 ; save reselect ID
    218      1.10  bouyer ; find the rigth param for this target
    219      1.10  bouyer resel_targ0:
    220      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    221      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    222      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    223      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    224      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    225      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    226      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    227      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    228      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    229      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    230      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    231      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    232      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    233      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    234      1.10  bouyer 	JUMP abs_targ0, IF 0xff;
    235      1.10  bouyer 	INT int_reseltarg;
    236      1.10  bouyer lunsw_return:
    237      1.10  bouyer 	MOVE 1, abs_msgin, WHEN MSG_IN;
    238      1.10  bouyer 	MOVE SFBR & 0x07 to SCRATCHA1; save LUN
    239      1.10  bouyer 	CLEAR ACK;
    240      1.10  bouyer 	RETURN, WHEN NOT MSG_IN; If no more message, jump to lun sw
    241      1.10  bouyer 	MOVE 1, abs_msgin, WHEN MSG_IN;
    242      1.10  bouyer 	CLEAR ACK;
    243      1.10  bouyer 	MOVE SFBR  to SCRATCHA3; save message
    244      1.12  bouyer 	RETURN, IF NOT 0x20; jump to lun sw if not simple tag msg
    245      1.10  bouyer 	MOVE 1, abs_msgin, WHEN MSG_IN; get tag
    246      1.10  bouyer 	CLEAR ACK;
    247      1.10  bouyer 	MOVE SFBR  to SCRATCHA2; save tag
    248      1.10  bouyer 	RETURN; jump to lun sw
    249      1.10  bouyer 
    250      1.10  bouyer handle_sdp:
    251      1.10  bouyer 	CLEAR ACK;
    252      1.10  bouyer 	MOVE SCRATCHA0 | flag_sdp TO SCRATCHA0;
    253      1.10  bouyer 	; should get a disconnect message now
    254       1.1  bouyer msgin:
    255       1.1  bouyer 	CLEAR ATN
    256       1.1  bouyer 	MOVE FROM t_msg_in, WHEN MSG_IN;
    257      1.10  bouyer handle_msgin:
    258       1.1  bouyer 	JUMP REL(handle_cmpl), IF 0x00        ; command complete message
    259       1.1  bouyer 	JUMP REL(handle_sdp), IF 0x02	      ; save data pointer message
    260       1.2  bouyer 	JUMP REL(handle_extin), IF 0x01	      ; extended message
    261      1.12  bouyer 	INT int_msgin, IF not 0x04;
    262      1.12  bouyer 	CALL REL(disconnect)                  ; disconnect message;
    263  1.15.4.1    tron ; if we didn't get sdp, no need to interrupt
    264      1.12  bouyer 	MOVE SCRATCHA0 & flag_sdp TO SFBR;
    265      1.12  bouyer 	JUMP REL(script_sched), if 0x00; 
    266      1.12  bouyer ; Ok, we need to save data pointers
    267      1.12  bouyer 	INT int_disc;
    268       1.2  bouyer msgin_ack:
    269      1.10  bouyer selected:
    270       1.2  bouyer 	CLEAR ACK;
    271       1.2  bouyer 	JUMP REL(waitphase);
    272       1.2  bouyer 
    273       1.2  bouyer ; entry point for msgout after a msgin or status phase
    274       1.2  bouyer send_msgout:
    275       1.2  bouyer 	SET ATN;
    276       1.2  bouyer 	CLEAR ACK;
    277       1.1  bouyer msgout:
    278       1.1  bouyer 	MOVE FROM t_msg_out, WHEN MSG_OUT;
    279       1.1  bouyer 	CLEAR ATN;
    280       1.1  bouyer 	JUMP REL(waitphase);
    281       1.1  bouyer cmdout:
    282       1.1  bouyer 	MOVE FROM t_cmd, WHEN CMD;
    283       1.1  bouyer 	JUMP REL(waitphase);
    284       1.1  bouyer status:
    285       1.1  bouyer 	MOVE FROM t_status, WHEN STATUS;
    286       1.1  bouyer 	JUMP REL(waitphase);
    287       1.1  bouyer datain:
    288       1.1  bouyer 	CALL REL(savedsa);
    289       1.4  bouyer 	MOVE SCRATCHA0 | flag_data TO SCRATCHA0;
    290       1.1  bouyer datain_loop:
    291       1.1  bouyer 	MOVE FROM t_data, WHEN DATA_IN;
    292       1.1  bouyer 	MOVE SCRATCHA1 + 1 TO SCRATCHA1	; adjust offset
    293       1.1  bouyer 	MOVE DSA0 + 8 to DSA0;
    294       1.1  bouyer 	MOVE DSA1 + 0 to DSA1 WITH CARRY;
    295       1.1  bouyer 	MOVE DSA2 + 0 to DSA2 WITH CARRY;
    296       1.1  bouyer 	MOVE DSA3 + 0 to DSA3 WITH CARRY;
    297       1.1  bouyer 	JUMP REL(datain_loop), WHEN DATA_IN;
    298       1.1  bouyer 	CALL REL(restoredsa);
    299       1.4  bouyer 	MOVE SCRATCHA0 & flag_data_mask TO SCRATCHA0;
    300       1.1  bouyer 	JUMP REL(waitphase);
    301       1.1  bouyer 
    302       1.1  bouyer dataout:
    303       1.1  bouyer 	CALL REL(savedsa);
    304       1.4  bouyer 	MOVE SCRATCHA0 | flag_data TO SCRATCHA0;
    305       1.1  bouyer dataout_loop:
    306       1.1  bouyer 	MOVE FROM t_data, WHEN DATA_OUT;
    307       1.1  bouyer 	MOVE SCRATCHA1 + 1 TO SCRATCHA1	; adjust offset
    308       1.1  bouyer 	MOVE DSA0 + 8 to DSA0;
    309       1.1  bouyer 	MOVE DSA1 + 0 to DSA1 WITH CARRY;
    310       1.1  bouyer 	MOVE DSA2 + 0 to DSA2 WITH CARRY;
    311       1.1  bouyer 	MOVE DSA3 + 0 to DSA3 WITH CARRY;
    312       1.1  bouyer 	JUMP REL(dataout_loop), WHEN DATA_OUT;
    313       1.1  bouyer 	CALL REL(restoredsa);
    314       1.4  bouyer 	MOVE SCRATCHA0 & flag_data_mask TO SCRATCHA0;
    315       1.1  bouyer 	JUMP REL(waitphase);
    316       1.1  bouyer 
    317       1.1  bouyer savedsa:
    318       1.1  bouyer 	MOVE DSA0 to SFBR;
    319       1.1  bouyer 	MOVE SFBR to SCRATCHB0;
    320       1.1  bouyer 	MOVE DSA1 to SFBR;
    321       1.1  bouyer 	MOVE SFBR to SCRATCHB1;
    322       1.1  bouyer 	MOVE DSA2 to SFBR;
    323       1.1  bouyer 	MOVE SFBR to SCRATCHB2;
    324       1.1  bouyer 	MOVE DSA3 to SFBR;
    325       1.1  bouyer 	MOVE SFBR to SCRATCHB3;
    326       1.1  bouyer 	RETURN;
    327       1.1  bouyer 
    328       1.1  bouyer restoredsa:
    329       1.1  bouyer 	MOVE SCRATCHB0 TO SFBR;
    330       1.1  bouyer 	MOVE SFBR TO DSA0;
    331       1.1  bouyer 	MOVE SCRATCHB1 TO SFBR;
    332       1.1  bouyer 	MOVE SFBR TO DSA1;
    333       1.1  bouyer 	MOVE SCRATCHB2 TO SFBR;
    334       1.1  bouyer 	MOVE SFBR TO DSA2;
    335       1.1  bouyer 	MOVE SCRATCHB3 TO SFBR;
    336       1.1  bouyer 	MOVE SFBR TO DSA3;
    337       1.1  bouyer 	RETURN;
    338       1.1  bouyer 
    339       1.1  bouyer disconnect:
    340       1.1  bouyer 	MOVE SCNTL2 & 0x7f TO SCNTL2;
    341       1.1  bouyer 	CLEAR ATN;
    342       1.1  bouyer 	CLEAR ACK;
    343       1.1  bouyer 	WAIT DISCONNECT;
    344       1.1  bouyer 	RETURN;
    345       1.1  bouyer 
    346       1.1  bouyer handle_cmpl:
    347       1.1  bouyer 	CALL REL(disconnect);
    348       1.1  bouyer 	INT int_done;
    349       1.2  bouyer 
    350       1.2  bouyer handle_extin:
    351       1.2  bouyer 	CLEAR ACK;
    352       1.2  bouyer 	MOVE FROM t_ext_msg_in, WHEN MSG_IN;
    353       1.2  bouyer 	INT int_extmsgin; /* let host fill in t_ext_msg_data */
    354       1.2  bouyer get_extmsgdata:
    355       1.2  bouyer 	CLEAR ACK;
    356       1.2  bouyer 	MOVE FROM t_ext_msg_data, WHEN MSG_IN;
    357       1.2  bouyer 	INT int_extmsgdata;
    358      1.10  bouyer msgin_space:
    359      1.10  bouyer 	NOP; space to store msgin when reselect
    360      1.10  bouyer 
    361       1.2  bouyer 
    362      1.10  bouyer ;; per-target switch script for LUNs
    363      1.12  bouyer ; hack: we first do a call to the target-specific code, so that a return
    364      1.10  bouyer ; in the main switch will jump to the lun switch.
    365      1.10  bouyer PROC lun_switch:
    366      1.11  bouyer restore_scntl3:
    367      1.11  bouyer 	MOVE 0xff TO SCNTL3;
    368      1.11  bouyer 	MOVE 0xff TO SXFER;
    369      1.11  bouyer 	JUMP abs_lunsw_return;
    370      1.11  bouyer lun_switch_entry:
    371      1.10  bouyer 	CALL REL(restore_scntl3);
    372      1.10  bouyer 	MOVE SCRATCHA1 TO SFBR;
    373      1.10  bouyer resel_lun0:
    374      1.10  bouyer 	INT int_resellun;
    375      1.10  bouyer 
    376      1.12  bouyer ;; Per-device switch script for tag
    377      1.12  bouyer PROC tag_switch:
    378      1.12  bouyer tag_switch_entry:
    379      1.12  bouyer 	MOVE SCRATCHA2 TO SFBR; restore tag
    380      1.12  bouyer resel_tag0:
    381      1.12  bouyer 	JUMP abs_tag0, IF 0x00;
    382      1.12  bouyer 	JUMP abs_tag0, IF 0x01;
    383      1.12  bouyer 	JUMP abs_tag0, IF 0x02;
    384      1.12  bouyer 	JUMP abs_tag0, IF 0x03;
    385      1.12  bouyer 	JUMP abs_tag0, IF 0x04;
    386      1.12  bouyer 	JUMP abs_tag0, IF 0x05;
    387      1.12  bouyer 	JUMP abs_tag0, IF 0x06;
    388      1.12  bouyer 	JUMP abs_tag0, IF 0x07;
    389      1.12  bouyer 	JUMP abs_tag0, IF 0x08;
    390      1.12  bouyer 	JUMP abs_tag0, IF 0x09;
    391      1.12  bouyer 	JUMP abs_tag0, IF 0x0a;
    392      1.12  bouyer 	JUMP abs_tag0, IF 0x0b;
    393      1.12  bouyer 	JUMP abs_tag0, IF 0x0c;
    394      1.12  bouyer 	JUMP abs_tag0, IF 0x0d;
    395      1.12  bouyer 	JUMP abs_tag0, IF 0x0e;
    396      1.12  bouyer 	JUMP abs_tag0, IF 0x0f;
    397      1.12  bouyer 	INT int_reseltag;
    398      1.12  bouyer 
    399      1.12  bouyer ;; per-command script: select, and called after a reselect to load DSA
    400      1.10  bouyer 
    401      1.10  bouyer PROC load_dsa:
    402      1.10  bouyer ; Can't use MOVE MEMORY to load DSA, doesn't work I/O mapped
    403       1.8  bouyer rdsa0:
    404      1.10  bouyer 	MOVE 0xf0 to DSA0;
    405       1.8  bouyer rdsa1:
    406      1.10  bouyer 	MOVE 0xf1 to DSA1;
    407       1.8  bouyer rdsa2:
    408      1.10  bouyer 	MOVE 0xf2 to DSA2;
    409       1.8  bouyer rdsa3:
    410      1.10  bouyer 	MOVE 0xf3 to DSA3;
    411      1.10  bouyer 	RETURN;
    412      1.12  bouyer ldsa_reload_dsa:
    413      1.12  bouyer 	CALL REL(rdsa0);
    414      1.12  bouyer 	JUMP ldsa_abs_reselected;
    415      1.12  bouyer ldsa_select:
    416      1.10  bouyer 	CALL REL(rdsa0);
    417      1.12  bouyer 	SELECT ATN FROM t_id, ldsa_abs_reselect;
    418      1.12  bouyer 	MOVE MEMORY 4, ldsa_abs_data, ldsa_abs_slot;
    419      1.12  bouyer 	JUMP ldsa_abs_selected;
    420      1.12  bouyer ldsa_data:
    421      1.12  bouyer 	NOP; contains data used by the MOVE MEMORY
    422      1.13  bouyer 
    423      1.13  bouyer PROC siop_led_on:
    424      1.13  bouyer 	MOVE GPREG & 0xfe TO GPREG;
    425      1.13  bouyer 
    426      1.13  bouyer PROC siop_led_off:
    427      1.13  bouyer 	MOVE GPREG | 0x01 TO GPREG;
    428