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aic6360.c revision 1.10
      1  1.10  mycroft /*	$NetBSD: aic6360.c,v 1.10 1994/11/03 23:08:30 mycroft Exp $	*/
      2   1.9      cgd 
      3   1.1  mycroft /*
      4   1.7  mycroft  * Copyright (c) 1994 Charles Hannum.
      5   1.1  mycroft  * Copyright (c) 1994 Jarle Greipsland
      6   1.1  mycroft  * All rights reserved.
      7   1.1  mycroft  *
      8   1.1  mycroft  * Redistribution and use in source and binary forms, with or without
      9   1.1  mycroft  * modification, are permitted provided that the following conditions
     10   1.1  mycroft  * are met:
     11   1.1  mycroft  * 1. Redistributions of source code must retain the above copyright
     12   1.1  mycroft  *    notice, this list of conditions and the following disclaimer.
     13   1.1  mycroft  * 2. Redistributions in binary form must reproduce the above copyright
     14   1.1  mycroft  *    notice, this list of conditions and the following disclaimer in the
     15   1.1  mycroft  *    documentation and/or other materials provided with the distribution.
     16   1.8      cgd  * 3. The name of the author may not be used to endorse or promote products
     17   1.1  mycroft  *    derived from this software without specific prior written permission.
     18   1.1  mycroft  *
     19   1.1  mycroft  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     20   1.1  mycroft  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     21   1.1  mycroft  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     22   1.1  mycroft  * DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
     23   1.1  mycroft  * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
     24   1.1  mycroft  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     25   1.1  mycroft  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26   1.1  mycroft  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
     27   1.1  mycroft  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
     28   1.1  mycroft  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29   1.1  mycroft  * POSSIBILITY OF SUCH DAMAGE.
     30   1.1  mycroft  */
     31   1.1  mycroft 
     32   1.1  mycroft /*
     33   1.1  mycroft  * Acknowledgements: Many of the algorithms used in this driver are
     34   1.1  mycroft  * inspired by the work of Julian Elischer (julian (at) tfs.com) and
     35   1.1  mycroft  * Charles Hannum (mycroft (at) duality.gnu.ai.mit.edu).  Thanks a million!
     36   1.1  mycroft  */
     37   1.1  mycroft 
     38   1.1  mycroft /* TODO list:
     39   1.1  mycroft  * 1) Get the DMA stuff working.
     40   1.1  mycroft  * 2) Get the iov/uio stuff working. Is this a good thing ???
     41   1.1  mycroft  * 3) Get the synch stuff working.
     42   1.1  mycroft  * 4) Rewrite it to use malloc for the acb structs instead of static alloc.?
     43   1.1  mycroft  */
     44   1.1  mycroft 
     45   1.1  mycroft /*
     46   1.1  mycroft  * A few customizable items:
     47   1.1  mycroft  */
     48   1.1  mycroft 
     49   1.1  mycroft /* The SCSI ID of the host adapter/computer */
     50   1.1  mycroft #define AIC_SCSI_HOSTID 7
     51   1.1  mycroft 
     52   1.1  mycroft /* Use doubleword transfers to/from SCSI chip.  Note: This requires
     53   1.1  mycroft  * motherboard support.  Basicly, some motherboard chipsets are able to
     54   1.1  mycroft  * split a 32 bit I/O operation into two 16 bit I/O operations,
     55   1.1  mycroft  * transparently to the processor.  This speeds up some things, notably long
     56   1.1  mycroft  * data transfers.
     57   1.1  mycroft  */
     58   1.6  mycroft #define AIC_USE_DWORDS 0
     59   1.1  mycroft 
     60   1.1  mycroft /* Allow disconnects?  Was mainly used in an early phase of the driver when
     61   1.1  mycroft  * the message system was very flaky.  Should go away soon.
     62   1.1  mycroft  */
     63   1.1  mycroft #define AIC_ALLOW_DISCONNECT	1
     64   1.1  mycroft 
     65   1.1  mycroft /* Synchronous data transfers? (does not work yet!) XXX */
     66   1.1  mycroft #define AIC_USE_SYNCHRONOUS	0 	/* Enable/disable (1/0) */
     67   1.1  mycroft #define AIC_SYNC_PERIOD 	200
     68   1.1  mycroft #define AIC_SYNC_REQ_ACK_OFS 	8
     69   1.1  mycroft 
     70   1.1  mycroft /* Max attempts made to transmit a message */
     71   1.1  mycroft #define AIC_MSG_MAX_ATTEMPT	3 /* Not used now XXX */
     72   1.1  mycroft 
     73   1.1  mycroft /* Use DMA (else we do programmed I/O using string instructions) (not yet!)*/
     74   1.1  mycroft #define AIC_USE_EISA_DMA	0
     75   1.1  mycroft #define AIC_USE_ISA_DMA		0
     76   1.1  mycroft 
     77   1.1  mycroft /* How to behave on the (E)ISA bus when/if DMAing (on<<4) + off in us */
     78   1.1  mycroft #define EISA_BRST_TIM ((15<<4) + 1)	/* 15us on, 1us off */
     79   1.1  mycroft 
     80   1.1  mycroft /* Some spin loop parameters (essentially how long to wait some places)
     81   1.1  mycroft  * The problem(?) is that sometimes we expect either to be able to transmit a
     82   1.1  mycroft  * byte or to get a new one from the SCSI bus pretty soon.  In order to avoid
     83   1.1  mycroft  * returning from the interrupt just to get yanked back for the next byte we
     84   1.1  mycroft  * may spin in the interrupt routine waiting for this byte to come.  How long?
     85   1.1  mycroft  * This is really (SCSI) device and processor dependent.  Tuneable, I guess.
     86   1.1  mycroft  */
     87   1.1  mycroft #define AIC_MSGI_SPIN	1 	/* Will spinwait upto ?ms for a new msg byte */
     88   1.1  mycroft #define AIC_MSGO_SPIN	1
     89   1.1  mycroft 
     90   1.1  mycroft /* Include debug functions?  At the end of this file there are a bunch of
     91   1.1  mycroft  * functions that will print out various information regarding queued SCSI
     92   1.1  mycroft  * commands, driver state and chip contents.  You can call them from the
     93   1.1  mycroft  * kernel debugger.  If you set AIC_DEBUG to 0 they are not included (the
     94   1.1  mycroft  * kernel uses less memory) but you lose the debugging facilities.
     95   1.1  mycroft  */
     96   1.1  mycroft #define AIC_DEBUG 1
     97   1.1  mycroft 
     98   1.1  mycroft /* End of customizable parameters */
     99   1.1  mycroft 
    100   1.1  mycroft #if AIC_USE_EISA_DMA || AIC_USE_ISA_DMA
    101   1.1  mycroft #error "I said not yet! Start paying attention... grumble"
    102   1.1  mycroft #endif
    103   1.1  mycroft 
    104   1.1  mycroft #include <sys/types.h>
    105   1.1  mycroft #include <sys/param.h>
    106   1.1  mycroft #include <sys/systm.h>
    107   1.1  mycroft #include <sys/kernel.h>
    108   1.1  mycroft #include <sys/errno.h>
    109   1.1  mycroft #include <sys/ioctl.h>
    110   1.1  mycroft #include <sys/device.h>
    111   1.1  mycroft #include <sys/buf.h>
    112   1.1  mycroft #include <sys/proc.h>
    113   1.1  mycroft #include <sys/user.h>
    114   1.1  mycroft #include <sys/queue.h>
    115   1.1  mycroft 
    116   1.1  mycroft #include <machine/pio.h>
    117   1.1  mycroft 
    118   1.1  mycroft #include <scsi/scsi_all.h>
    119   1.1  mycroft #include <scsi/scsiconf.h>
    120   1.1  mycroft 
    121   1.1  mycroft #include <i386/isa/isavar.h>
    122   1.1  mycroft #include <i386/isa/icu.h>
    123   1.1  mycroft 
    124   1.1  mycroft /* Definitions, most of them has turned out to be unneccesary, but here they
    125   1.1  mycroft  * are anyway.
    126   1.1  mycroft  */
    127   1.1  mycroft 
    128   1.1  mycroft /*
    129   1.1  mycroft  * Generic SCSI messages. For now we reject most of them.
    130   1.1  mycroft  */
    131   1.1  mycroft /* Messages (1 byte) */		     /* I/T M(andatory) or (O)ptional */
    132   1.1  mycroft #define MSG_CMDCOMPLETE		0x00 /* M/M */
    133   1.1  mycroft #define MSG_EXTENDED		0x01 /* O/O */
    134   1.1  mycroft #define MSG_SAVEDATAPOINTER	0x02 /* O/O */
    135   1.1  mycroft #define MSG_RESTOREPOINTERS	0x03 /* O/O */
    136   1.1  mycroft #define MSG_DISCONNECT		0x04 /* O/O */
    137   1.1  mycroft #define MSG_INITIATOR_DET_ERR	0x05 /* M/M */
    138   1.1  mycroft #define MSG_ABORT		0x06 /* O/M */
    139   1.1  mycroft #define MSG_MESSAGE_REJECT	0x07 /* M/M */
    140   1.1  mycroft #define MSG_NOOP		0x08 /* M/M */
    141   1.1  mycroft #define MSG_PARITY_ERR		0x09 /* M/M */
    142   1.1  mycroft #define MSG_LINK_CMD_COMPLETE	0x0a /* O/O */
    143   1.1  mycroft #define MSG_LINK_CMD_COMPLETEF	0x0b /* O/O */
    144   1.1  mycroft #define MSG_BUS_DEV_RESET	0x0c /* O/M */
    145   1.1  mycroft #define MSG_ABORT_TAG		0x0d /* O/O */
    146   1.1  mycroft #define MSG_CLEAR_QUEUE		0x0e /* O/O */
    147   1.1  mycroft #define MSG_INIT_RECOVERY	0x0f /* O/O */
    148   1.1  mycroft #define MSG_REL_RECOVERY	0x10 /* O/O */
    149   1.1  mycroft #define MSG_TERM_IO_PROC	0x11 /* O/O */
    150   1.1  mycroft 
    151   1.1  mycroft /* Messages (2 byte) */
    152   1.1  mycroft #define MSG_SIMPLE_Q_TAG	0x20 /* O/O */
    153   1.1  mycroft #define MSG_HEAD_OF_Q_TAG	0x21 /* O/O */
    154   1.1  mycroft #define MSG_ORDERED_Q_TAG	0x22 /* O/O */
    155   1.1  mycroft #define MSG_IGN_WIDE_RESIDUE	0x23 /* O/O */
    156   1.1  mycroft 
    157   1.1  mycroft /* Identify message */
    158   1.1  mycroft #define MSG_IDENTIFY(lun) ((AIC_ALLOW_DISCONNECT ? 0xc0 : 0x80)|((lun) & 0x7))
    159   1.1  mycroft #define MSG_ISIDENT(m)		((m) & 0x80)
    160   1.1  mycroft 
    161   1.1  mycroft /* Extended messages (opcode) */
    162   1.1  mycroft #define MSG_EXT_SDTR		0x01
    163   1.1  mycroft 
    164   1.1  mycroft /* SCSI Status codes */
    165   1.1  mycroft #define ST_GOOD			0x00
    166   1.1  mycroft #define ST_CHKCOND		0x02
    167   1.1  mycroft #define ST_CONDMET		0x04
    168   1.1  mycroft #define ST_BUSY			0x08
    169   1.1  mycroft #define ST_INTERMED		0x10
    170   1.1  mycroft #define ST_INTERMED_CONDMET	0x14
    171   1.1  mycroft #define ST_RESERVATION_CONFLICT	0x18
    172   1.1  mycroft #define ST_CMD_TERM		0x22
    173   1.1  mycroft #define ST_QUEUE_FULL		0x28
    174   1.1  mycroft 
    175   1.1  mycroft #define ST_MASK			0x3e /* bit 0,6,7 is reserved */
    176   1.1  mycroft 
    177   1.1  mycroft /* AIC6360 definitions */
    178   1.1  mycroft #define SCSISEQ		(iobase + 0x00) /* SCSI sequence control */
    179   1.1  mycroft #define SXFRCTL0	(iobase + 0x01) /* SCSI transfer control 0 */
    180   1.1  mycroft #define SXFRCTL1	(iobase + 0x02) /* SCSI transfer control 1 */
    181   1.1  mycroft #define SCSISIGI	(iobase + 0x03) /* SCSI signal in */
    182   1.1  mycroft #define SCSISIGO	(iobase + 0x03) /* SCSI signal out */
    183   1.1  mycroft #define SCSIRATE	(iobase + 0x04) /* SCSI rate control */
    184   1.1  mycroft #define SCSIID		(iobase + 0x05) /* SCSI ID */
    185   1.1  mycroft #define SELID		(iobase + 0x05) /* Selection/Reselection ID */
    186   1.1  mycroft #define SCSIDAT		(iobase + 0x06) /* SCSI Latched Data */
    187   1.1  mycroft #define SCSIBUS		(iobase + 0x07) /* SCSI Data Bus*/
    188   1.1  mycroft #define STCNT0		(iobase + 0x08) /* SCSI transfer count */
    189   1.1  mycroft #define STCNT1		(iobase + 0x09)
    190   1.1  mycroft #define STCNT2		(iobase + 0x0a)
    191   1.1  mycroft #define CLRSINT0	(iobase + 0x0b) /* Clear SCSI interrupts 0 */
    192   1.1  mycroft #define SSTAT0		(iobase + 0x0b) /* SCSI interrupt status 0 */
    193   1.1  mycroft #define CLRSINT1	(iobase + 0x0c) /* Clear SCSI interrupts 1 */
    194   1.1  mycroft #define SSTAT1		(iobase + 0x0c) /* SCSI status 1 */
    195   1.1  mycroft #define SSTAT2		(iobase + 0x0d) /* SCSI status 2 */
    196   1.1  mycroft #define SCSITEST	(iobase + 0x0e) /* SCSI test control */
    197   1.1  mycroft #define SSTAT3		(iobase + 0x0e) /* SCSI status 3 */
    198   1.1  mycroft #define CLRSERR		(iobase + 0x0f) /* Clear SCSI errors */
    199   1.1  mycroft #define SSTAT4		(iobase + 0x0f) /* SCSI status 4 */
    200   1.1  mycroft #define SIMODE0		(iobase + 0x10) /* SCSI interrupt mode 0 */
    201   1.1  mycroft #define SIMODE1		(iobase + 0x11) /* SCSI interrupt mode 1 */
    202   1.1  mycroft #define DMACNTRL0	(iobase + 0x12) /* DMA control 0 */
    203   1.1  mycroft #define DMACNTRL1	(iobase + 0x13) /* DMA control 1 */
    204   1.1  mycroft #define DMASTAT		(iobase + 0x14) /* DMA status */
    205   1.1  mycroft #define FIFOSTAT	(iobase + 0x15) /* FIFO status */
    206   1.1  mycroft #define DMADATA		(iobase + 0x16) /* DMA data */
    207   1.1  mycroft #define DMADATAL	(iobase + 0x16) /* DMA data low byte */
    208   1.1  mycroft #define DMADATAH	(iobase + 0x17) /* DMA data high byte */
    209   1.1  mycroft #define BRSTCNTRL	(iobase + 0x18) /* Burst Control */
    210   1.1  mycroft #define DMADATALONG	(iobase + 0x18)
    211   1.1  mycroft #define PORTA		(iobase + 0x1a) /* Port A */
    212   1.1  mycroft #define PORTB		(iobase + 0x1b) /* Port B */
    213   1.1  mycroft #define REV		(iobase + 0x1c) /* Revision (001 for 6360) */
    214   1.1  mycroft #define STACK		(iobase + 0x1d) /* Stack */
    215   1.1  mycroft #define TEST		(iobase + 0x1e) /* Test register */
    216   1.1  mycroft #define ID		(iobase + 0x1f) /* ID register */
    217   1.1  mycroft 
    218   1.1  mycroft #define IDSTRING "(C)1991ADAPTECAIC6360           "
    219   1.1  mycroft 
    220   1.1  mycroft /* What all the bits do */
    221   1.1  mycroft 
    222   1.1  mycroft /* SCSISEQ */
    223   1.1  mycroft #define TEMODEO		0x80
    224   1.1  mycroft #define ENSELO		0x40
    225   1.1  mycroft #define ENSELI		0x20
    226   1.1  mycroft #define ENRESELI	0x10
    227   1.1  mycroft #define ENAUTOATNO	0x08
    228   1.1  mycroft #define ENAUTOATNI	0x04
    229   1.1  mycroft #define ENAUTOATNP	0x02
    230   1.1  mycroft #define SCSIRSTO	0x01
    231   1.1  mycroft 
    232   1.1  mycroft /* SXFRCTL0 */
    233   1.1  mycroft #define SCSIEN		0x80
    234   1.1  mycroft #define DMAEN		0x40
    235   1.1  mycroft #define CHEN		0x20
    236   1.1  mycroft #define CLRSTCNT	0x10
    237   1.1  mycroft #define SPIOEN		0x08
    238   1.1  mycroft #define CLRCH		0x02
    239   1.1  mycroft 
    240   1.1  mycroft /* SXFRCTL1 */
    241   1.1  mycroft #define BITBUCKET	0x80
    242   1.1  mycroft #define SWRAPEN		0x40
    243   1.1  mycroft #define ENSPCHK		0x20
    244   1.1  mycroft #define STIMESEL1	0x10
    245   1.1  mycroft #define STIMESEL0	0x08
    246   1.1  mycroft #define STIMO_256ms	0x00
    247   1.1  mycroft #define STIMO_128ms	0x08
    248   1.1  mycroft #define STIMO_64ms	0x10
    249   1.1  mycroft #define STIMO_32ms	0x18
    250   1.1  mycroft #define ENSTIMER	0x04
    251   1.1  mycroft #define BYTEALIGN	0x02
    252   1.1  mycroft 
    253   1.1  mycroft /* SCSISIGI */
    254   1.1  mycroft #define CDI		0x80
    255   1.1  mycroft #define IOI		0x40
    256   1.1  mycroft #define MSGI		0x20
    257   1.1  mycroft #define ATNI		0x10
    258   1.1  mycroft #define SELI		0x08
    259   1.1  mycroft #define BSYI		0x04
    260   1.1  mycroft #define REQI		0x02
    261   1.1  mycroft #define ACKI		0x01
    262   1.1  mycroft 
    263   1.1  mycroft /* Important! The 3 most significant bits of this register, in initiator mode,
    264   1.1  mycroft  * represents the "expected" SCSI bus phase and can be used to trigger phase
    265   1.1  mycroft  * mismatch and phase change interrupts.  But more important:  If there is a
    266   1.1  mycroft  * phase mismatch the chip will not transfer any data!  This is actually a nice
    267   1.1  mycroft  * feature as it gives us a bit more control over what is happening when we are
    268   1.1  mycroft  * bursting data (in) through the FIFOs and the phase suddenly changes from
    269   1.1  mycroft  * DATA IN to STATUS or MESSAGE IN.  The transfer will stop and wait for the
    270   1.1  mycroft  * proper phase to be set in this register instead of dumping the bits into the
    271   1.1  mycroft  * FIFOs.
    272   1.1  mycroft  */
    273   1.1  mycroft /* SCSISIGO */
    274   1.1  mycroft #define CDO		0x80
    275   1.1  mycroft #define CDEXP		(CDO)
    276   1.1  mycroft #define IOO		0x40
    277   1.1  mycroft #define IOEXP		(IOO)
    278   1.1  mycroft #define MSGO		0x20
    279   1.1  mycroft #define MSGEXP		(MSGO)
    280   1.1  mycroft #define ATNO		0x10
    281   1.1  mycroft #define SELO		0x08
    282   1.1  mycroft #define BSYO		0x04
    283   1.1  mycroft #define REQO		0x02
    284   1.1  mycroft #define ACKO		0x01
    285   1.1  mycroft 
    286   1.1  mycroft /* Information transfer phases */
    287   1.1  mycroft #define PH_DOUT		(0)
    288   1.1  mycroft #define PH_DIN		(IOI)
    289   1.1  mycroft #define PH_CMD		(CDI)
    290   1.1  mycroft #define PH_STAT		(CDI|IOI)
    291   1.1  mycroft #define PH_MSGO		(MSGI|CDI)
    292   1.1  mycroft #define PH_MSGI		(MSGI|CDI|IOI)
    293   1.1  mycroft 
    294   1.1  mycroft #define PH_MASK		0xe0
    295   1.1  mycroft 
    296   1.1  mycroft /* Some pseudo phases for getphase()*/
    297   1.1  mycroft #define PH_BUSFREE	0x100	/* (Re)Selection no longer valid */
    298   1.1  mycroft #define PH_INVALID	0x101	/* (Re)Selection valid, but no REQ yet */
    299   1.1  mycroft #define PH_PSBIT	0x100	/* "pseudo" bit */
    300   1.1  mycroft 
    301   1.1  mycroft /* SCSIRATE */
    302   1.1  mycroft #define SXFR2		0x40
    303   1.1  mycroft #define SXFR1		0x20
    304   1.1  mycroft #define SXFR0		0x10
    305   1.1  mycroft #define SOFS3		0x08
    306   1.1  mycroft #define SOFS2		0x04
    307   1.1  mycroft #define SOFS1		0x02
    308   1.1  mycroft #define SOFS0		0x01
    309   1.1  mycroft 
    310   1.1  mycroft /* SCSI ID */
    311   1.1  mycroft #define OID2		0x40
    312   1.1  mycroft #define OID1		0x20
    313   1.1  mycroft #define OID0		0x10
    314   1.1  mycroft #define OID_S		4	/* shift value */
    315   1.1  mycroft #define TID2		0x04
    316   1.1  mycroft #define TID1		0x02
    317   1.1  mycroft #define TID0		0x01
    318   1.1  mycroft #define SCSI_ID_MASK	0x7
    319   1.1  mycroft 
    320   1.1  mycroft /* SCSI selection/reselection ID (both target *and* initiator) */
    321   1.1  mycroft #define SELID7		0x80
    322   1.1  mycroft #define SELID6		0x40
    323   1.1  mycroft #define SELID5		0x20
    324   1.1  mycroft #define SELID4		0x10
    325   1.1  mycroft #define SELID3		0x08
    326   1.1  mycroft #define SELID2		0x04
    327   1.1  mycroft #define SELID1		0x02
    328   1.1  mycroft #define SELID0		0x01
    329   1.1  mycroft 
    330   1.1  mycroft /* CLRSINT0                      Clears what? (interrupt and/or status bit) */
    331   1.1  mycroft #define SETSDONE	0x80
    332   1.1  mycroft #define CLRSELDO	0x40	/* I */
    333   1.1  mycroft #define CLRSELDI	0x20	/* I+ */
    334   1.1  mycroft #define CLRSELINGO	0x10	/* I */
    335   1.1  mycroft #define CLRSWRAP	0x08	/* I+S */
    336   1.1  mycroft #define CLRSDONE	0x04	/* I+S */
    337   1.1  mycroft #define CLRSPIORDY	0x02	/* I */
    338   1.1  mycroft #define CLRDMADONE	0x01	/* I */
    339   1.1  mycroft 
    340   1.1  mycroft /* SSTAT0                          Howto clear */
    341   1.1  mycroft #define TARGET		0x80
    342   1.1  mycroft #define SELDO		0x40	/* Selfclearing */
    343   1.1  mycroft #define SELDI		0x20	/* Selfclearing when CLRSELDI is set */
    344   1.1  mycroft #define SELINGO		0x10	/* Selfclearing */
    345   1.1  mycroft #define SWRAP		0x08	/* CLRSWAP */
    346   1.1  mycroft #define SDONE		0x04	/* Not used in initiator mode */
    347   1.1  mycroft #define SPIORDY		0x02	/* Selfclearing (op on SCSIDAT) */
    348   1.1  mycroft #define DMADONE		0x01	/* Selfclearing (all FIFOs empty & T/C */
    349   1.1  mycroft 
    350   1.1  mycroft /* CLRSINT1                      Clears what? */
    351   1.1  mycroft #define CLRSELTIMO	0x80	/* I+S */
    352   1.1  mycroft #define CLRATNO		0x40
    353   1.1  mycroft #define CLRSCSIRSTI	0x20	/* I+S */
    354   1.1  mycroft #define CLRBUSFREE	0x08	/* I+S */
    355   1.1  mycroft #define CLRSCSIPERR	0x04	/* I+S */
    356   1.1  mycroft #define CLRPHASECHG	0x02	/* I+S */
    357   1.1  mycroft #define CLRREQINIT	0x01	/* I+S */
    358   1.1  mycroft 
    359   1.1  mycroft /* SSTAT1                       How to clear?  When set?*/
    360   1.1  mycroft #define SELTO		0x80	/* C		select out timeout */
    361   1.1  mycroft #define ATNTARG		0x40	/* Not used in initiator mode */
    362   1.1  mycroft #define SCSIRSTI	0x20	/* C		RST asserted */
    363   1.1  mycroft #define PHASEMIS	0x10	/* Selfclearing */
    364   1.1  mycroft #define BUSFREE		0x08	/* C		bus free condition */
    365   1.1  mycroft #define SCSIPERR	0x04	/* C		parity error on inbound data */
    366   1.1  mycroft #define PHASECHG	0x02	/* C	     phase in SCSISIGI doesn't match */
    367   1.1  mycroft #define REQINIT		0x01	/* C or ACK	asserting edge of REQ */
    368   1.1  mycroft 
    369   1.1  mycroft /* SSTAT2 */
    370   1.1  mycroft #define SOFFSET		0x20
    371   1.1  mycroft #define SEMPTY		0x10
    372   1.1  mycroft #define SFULL		0x08
    373   1.1  mycroft #define SFCNT2		0x04
    374   1.1  mycroft #define SFCNT1		0x02
    375   1.1  mycroft #define SFCNT0		0x01
    376   1.1  mycroft 
    377   1.1  mycroft /* SCSITEST */
    378   1.1  mycroft #define SCTESTU		0x08
    379   1.1  mycroft #define SCTESTD		0x04
    380   1.1  mycroft #define STCTEST		0x01
    381   1.1  mycroft 
    382   1.1  mycroft /* SSTAT3 */
    383   1.1  mycroft #define SCSICNT3	0x80
    384   1.1  mycroft #define SCSICNT2	0x40
    385   1.1  mycroft #define SCSICNT1	0x20
    386   1.1  mycroft #define SCSICNT0	0x10
    387   1.1  mycroft #define OFFCNT3		0x08
    388   1.1  mycroft #define OFFCNT2		0x04
    389   1.1  mycroft #define OFFCNT1		0x02
    390   1.1  mycroft #define OFFCNT0		0x01
    391   1.1  mycroft 
    392   1.1  mycroft /* CLRSERR */
    393   1.1  mycroft #define CLRSYNCERR	0x04
    394   1.1  mycroft #define CLRFWERR	0x02
    395   1.1  mycroft #define CLRFRERR	0x01
    396   1.1  mycroft 
    397   1.1  mycroft /* SSTAT4 */
    398   1.1  mycroft #define SYNCERR		0x04
    399   1.1  mycroft #define FWERR		0x02
    400   1.1  mycroft #define FRERR		0x01
    401   1.1  mycroft 
    402   1.1  mycroft /* SIMODE0 */
    403   1.1  mycroft #define ENSELDO		0x40
    404   1.1  mycroft #define ENSELDI		0x20
    405   1.1  mycroft #define ENSELINGO	0x10
    406   1.1  mycroft #define	ENSWRAP		0x08
    407   1.1  mycroft #define ENSDONE		0x04
    408   1.1  mycroft #define ENSPIORDY	0x02
    409   1.1  mycroft #define ENDMADONE	0x01
    410   1.1  mycroft 
    411   1.1  mycroft /* SIMODE1 */
    412   1.1  mycroft #define ENSELTIMO	0x80
    413   1.1  mycroft #define ENATNTARG	0x40
    414   1.1  mycroft #define ENSCSIRST	0x20
    415   1.1  mycroft #define ENPHASEMIS	0x10
    416   1.1  mycroft #define ENBUSFREE	0x08
    417   1.1  mycroft #define ENSCSIPERR	0x04
    418   1.1  mycroft #define ENPHASECHG	0x02
    419   1.1  mycroft #define ENREQINIT	0x01
    420   1.1  mycroft 
    421   1.1  mycroft /* DMACNTRL0 */
    422   1.1  mycroft #define ENDMA		0x80
    423   1.1  mycroft #define B8MODE		0x40
    424   1.1  mycroft #define DMA		0x20
    425   1.1  mycroft #define DWORDPIO	0x10
    426   1.1  mycroft #define WRITE		0x08
    427   1.1  mycroft #define INTEN		0x04
    428   1.1  mycroft #define RSTFIFO		0x02
    429   1.1  mycroft #define SWINT		0x01
    430   1.1  mycroft 
    431   1.1  mycroft /* DMACNTRL1 */
    432   1.1  mycroft #define PWRDWN		0x80
    433   1.1  mycroft #define ENSTK32		0x40
    434   1.1  mycroft #define STK4		0x10
    435   1.1  mycroft #define STK3		0x08
    436   1.1  mycroft #define STK2		0x04
    437   1.1  mycroft #define STK1		0x02
    438   1.1  mycroft #define STK0		0x01
    439   1.1  mycroft 
    440   1.1  mycroft /* DMASTAT */
    441   1.1  mycroft #define ATDONE		0x80
    442   1.1  mycroft #define WORDRDY		0x40
    443   1.1  mycroft #define INTSTAT		0x20
    444   1.1  mycroft #define DFIFOFULL	0x10
    445   1.1  mycroft #define DFIFOEMP	0x08
    446   1.1  mycroft #define DFIFOHF		0x04
    447   1.1  mycroft #define DWORDRDY	0x02
    448   1.1  mycroft 
    449   1.1  mycroft /* BRSTCNTRL */
    450   1.1  mycroft #define BON3		0x80
    451   1.1  mycroft #define BON2		0x40
    452   1.1  mycroft #define BON1		0x20
    453   1.1  mycroft #define BON0		0x10
    454   1.1  mycroft #define BOFF3		0x08
    455   1.1  mycroft #define BOFF2		0x04
    456   1.1  mycroft #define BOFF1		0x02
    457   1.1  mycroft #define BOFF0		0x01
    458   1.1  mycroft 
    459   1.1  mycroft /* TEST */
    460   1.1  mycroft #define BOFFTMR		0x40
    461   1.1  mycroft #define BONTMR		0x20
    462   1.1  mycroft #define STCNTH		0x10
    463   1.1  mycroft #define STCNTM		0x08
    464   1.1  mycroft #define STCNTL		0x04
    465   1.1  mycroft #define SCSIBLK		0x02
    466   1.1  mycroft #define DMABLK		0x01
    467   1.1  mycroft 
    468   1.1  mycroft 
    469   1.1  mycroft #define orreg(reg, val)   outb((reg), inb(reg)| (val))
    470   1.1  mycroft #define andreg(reg, val)  outb((reg), inb(reg)& (val))
    471   1.1  mycroft #define nandreg(reg, val) outb((reg), inb(reg)&~(val))
    472   1.1  mycroft 
    473   1.1  mycroft 
    474   1.1  mycroft 
    476   1.1  mycroft /* Grabbed from Julians SCSI aha-drivers */
    477   1.1  mycroft #ifdef	DDB
    478   1.1  mycroft int	Debugger();
    479   1.1  mycroft #else	DDB
    480   1.1  mycroft #define	Debugger() panic("should call debugger here (aic6360.c)")
    481   1.1  mycroft #endif	DDB
    482   1.2  mycroft 
    483   1.1  mycroft typedef u_long physaddr;
    484   1.1  mycroft 
    485   1.1  mycroft struct aic_dma_seg {
    486   1.1  mycroft 	physaddr	addr;
    487   1.1  mycroft 	long		len;
    488   1.1  mycroft };
    489   1.1  mycroft 
    490   1.1  mycroft extern int delaycount;
    491   1.1  mycroft #define FUDGE(X)	((X)>>1) 	/* get 1 ms spincount */
    492   1.1  mycroft #define MINIFUDGE(X)	((X)>>4) 	/* get (approx) 125us spincount */
    493   1.1  mycroft #define AIC_NSEG	16
    494   1.1  mycroft #define NUM_CONCURRENT	7	/* Only one per target for now */
    495   1.1  mycroft 
    496   1.1  mycroft /*
    497   1.1  mycroft  * ACB. Holds additional information for each SCSI command Comments: We
    498   1.1  mycroft  * need a separate scsi command block because we may need to overwrite it
    499   1.1  mycroft  * with a request sense command.  Basicly, we refrain from fiddling with
    500   1.1  mycroft  * the scsi_xfer struct (except do the expected updating of return values).
    501   1.1  mycroft  * We'll generally update: xs->{flags,resid,error,sense,status} and
    502   1.1  mycroft  * occasionally xs->retries.
    503   1.1  mycroft  */
    504   1.1  mycroft struct acb {
    505   1.1  mycroft 	TAILQ_ENTRY(acb) chain;
    506   1.1  mycroft 	struct scsi_xfer *xs;	/* SCSI xfer ctrl block from above */
    507   1.1  mycroft 	int		flags;	/* Status */
    508   1.1  mycroft #define ACB_FREE	0x00
    509   1.1  mycroft #define ACB_ACTIVE	0x01
    510   1.1  mycroft #define ACB_DONE	0x04
    511   1.1  mycroft #define ACB_CHKSENSE	0x08
    512   1.1  mycroft /*	struct aic_dma_seg dma[AIC_NSEG]; /* Physical addresses+len */
    513   1.1  mycroft 	struct scsi_generic cmd;  /* SCSI command block */
    514   1.1  mycroft 	int	 clen;
    515   1.1  mycroft 	char	*daddr;		/* Saved data pointer */
    516   1.1  mycroft 	int	 dleft;		/* Residue */
    517   1.1  mycroft 	int 	 stat;		/* SCSI status byte */
    518   1.1  mycroft };
    519   1.1  mycroft 
    520   1.1  mycroft /*
    521   1.1  mycroft  * Some info about each (possible) target on the SCSI bus.  This should
    522   1.1  mycroft  * probably have been a "per target+lunit" structure, but we'll leave it at
    523   1.1  mycroft  * this for now.  Is there a way to reliably hook it up to sc->fordriver??
    524   1.1  mycroft  */
    525   1.1  mycroft struct aic_tinfo {
    526   1.1  mycroft 	int	cmds;		/* #commands processed */
    527   1.1  mycroft 	int	dconns;		/* #disconnects */
    528   1.1  mycroft 	int	touts;		/* #timeouts */
    529   1.1  mycroft 	int	perrs;		/* #parity errors */
    530   1.1  mycroft 	int	senses;		/* #request sense commands sent */
    531   1.1  mycroft 	ushort	lubusy;		/* What local units/subr. are busy? */
    532   1.1  mycroft 	u_char  flags;
    533   1.1  mycroft #define NEED_TO_RESET	0x01	/* Should send a BUS_DEV_RESET */
    534   1.1  mycroft #define DO_NEGOTIATE	0x02	/* (Re)Negotiate synchronous options */
    535   1.1  mycroft #define TARGET_BUSY	0x04	/* Target is busy, i.e. cmd in progress */
    536   1.1  mycroft 	u_char  persgst;	/* Period suggestion */
    537   1.1  mycroft 	u_char  offsgst;	/* Offset suggestion */
    538   1.1  mycroft 	u_char  syncdata;	/* True negotiated synch parameters */
    539   1.1  mycroft } tinfo_t;
    540   1.1  mycroft 
    541   1.1  mycroft /* Register a linenumber (for debugging) */
    542   1.2  mycroft #if AIC_DEBUG
    543   1.2  mycroft #define LOGLINE(p) \
    544   1.2  mycroft 	do {					\
    545   1.2  mycroft 		p->history[p->hp] = __LINE__;	\
    546   1.2  mycroft 		p->hp = ++p->hp % AIC_HSIZE;	\
    547   1.1  mycroft 	} while (0)
    548   1.1  mycroft #else
    549   1.1  mycroft #define LOGLINE(p)
    550   1.1  mycroft #endif
    551   1.1  mycroft 
    552   1.1  mycroft struct aic_softc { /* One of these per adapter */
    553   1.1  mycroft 	/* Auto config stuff */
    554   1.1  mycroft 	struct device 	sc_dev;	/* This one has to go first! */
    555   1.1  mycroft 	struct isadev	sc_id;
    556   1.1  mycroft 	struct intrhand sc_ih;
    557   1.1  mycroft 	struct scsi_link sc_link;	/* prototype for subdevs */
    558   1.1  mycroft 	int		id_irq;		/* IRQ on the EISA bus */
    559   1.1  mycroft 	int		id_drq;		/* DRQ on the EISA bus */
    560   1.1  mycroft 	u_short		iobase;		/* Base I/O port */
    561   1.1  mycroft 	/* Lists of command blocks */
    562   1.1  mycroft 	TAILQ_HEAD(acb_list, acb) free_list, ready_list, nexus_list;
    563   1.1  mycroft 	struct acb *nexus;	/* current command */
    564   1.1  mycroft 	/* Command blocks and target info */
    565   1.1  mycroft 	struct acb acb[NUM_CONCURRENT];
    566   1.1  mycroft 	struct aic_tinfo tinfo[8];
    567   1.1  mycroft 	/* Data about the current nexus (updated for every cmd switch) */
    568   1.1  mycroft 	u_char	*dp;		/* Current data pointer */
    569   1.1  mycroft 	int	 dleft;		/* Data left to transfer */
    570   1.1  mycroft 	/* Adapter state */
    571   1.1  mycroft 	short	 phase;		/* Copy of what bus phase we are in */
    572   1.1  mycroft 	short	 prevphase;	/* Copy of what bus phase we were in */
    573   1.1  mycroft 	short	 state;		/* State applicable to the adapter */
    574   1.1  mycroft #define AIC_IDLE	0x01
    575   1.1  mycroft #define AIC_TMP_UNAVAIL	0x02	/* Don't accept SCSI commands */
    576   1.1  mycroft #define AIC_SELECTING	0x03	/* SCSI command is arbiting  */
    577   1.1  mycroft #define AIC_RESELECTED	0x04	/* Has been reselected */
    578   1.1  mycroft #define AIC_HASNEXUS	0x05	/* Actively using the SCSI bus */
    579   1.1  mycroft #define AIC_CLEANING	0x06
    580   1.1  mycroft 	short	 flags;
    581   1.1  mycroft #define AIC_DROP_MSGI	0x01	/* Discard all msgs (parity err detected) */
    582   1.1  mycroft #define AIC_DOINGDMA	0x02	/* The FIFO data path is active! */
    583   1.1  mycroft #define AIC_BUSFREE_OK	0x04	/* Bus free phase is OK. */
    584   1.1  mycroft #define AIC_SYNCHNEGO	0x08	/* Synch negotiation in progress. */
    585   1.1  mycroft #define AIC_BLOCKED	0x10	/* Don't schedule new scsi bus operations */
    586   1.1  mycroft 	/* Debugging stuff */
    587   1.1  mycroft #define AIC_HSIZE 8
    588   1.1  mycroft 	short	history[AIC_HSIZE]; /* Store line numbers here. */
    589   1.1  mycroft 	short	hp;
    590   1.1  mycroft 	u_char	progress;	/* Set if interrupt has achieved progress */
    591   1.1  mycroft 	/* Message stuff */
    592   1.1  mycroft 	u_char	msgpriq;	/* One or more messages to send (encoded) */
    593   1.1  mycroft 	u_char	msgout;		/* What message is on its way out? */
    594   1.1  mycroft #define SEND_DEV_RESET		0x01
    595   1.1  mycroft #define SEND_PARITY_ERROR	0x02
    596   1.1  mycroft #define SEND_ABORT		0x04
    597   1.1  mycroft #define SEND_REJECT		0x08
    598   1.1  mycroft #define SEND_INIT_DET_ERR	0x10
    599   1.1  mycroft #define SEND_IDENTIFY  		0x20
    600   1.1  mycroft #define SEND_SDTR		0x40
    601   1.1  mycroft #define AIC_MAX_MSG_LEN 8
    602   1.1  mycroft 	u_char  omess[AIC_MAX_MSG_LEN];	/* Scratch area for messages */
    603   1.1  mycroft 	u_char	*omp;		/* Message pointer (for multibyte messages) */
    604   1.1  mycroft 	u_char  omlen;
    605   1.1  mycroft 	u_char	imess[AIC_MAX_MSG_LEN + 1];
    606   1.1  mycroft 	u_char	*imp;		/* Message pointer (for multibyte messages) */
    607   1.1  mycroft 	u_char	imlen;
    608   1.1  mycroft };
    609   1.1  mycroft 
    610   1.1  mycroft #define AIC_SHOWACBS 0x01
    611   1.1  mycroft #define AIC_SHOWINTS 0x02
    612   1.1  mycroft #define AIC_SHOWCMDS 0x04
    613   1.1  mycroft #define AIC_SHOWMISC 0x08
    614   1.1  mycroft #define AIC_SHOWTRAC 0x10
    615   1.1  mycroft #define AIC_SHOWSTART 0x20
    616   1.1  mycroft int aic_debug = 0; /* AIC_SHOWSTART|AIC_SHOWMISC|AIC_SHOWTRAC; /**/
    617   1.1  mycroft 
    618   1.1  mycroft #if AIC_DEBUG
    619   1.1  mycroft #define AIC_ACBS(str)  do {if (aic_debug & AIC_SHOWACBS) printf str;} while (0)
    620   1.1  mycroft #define AIC_MISC(str)  do {if (aic_debug & AIC_SHOWMISC) printf str;} while (0)
    621   1.1  mycroft #define AIC_INTS(str)  do {if (aic_debug & AIC_SHOWINTS) printf str;} while (0)
    622   1.1  mycroft #define AIC_TRACE(str) do {if (aic_debug & AIC_SHOWTRAC) printf str;} while (0)
    623   1.1  mycroft #define AIC_CMDS(str)  do {if (aic_debug & AIC_SHOWCMDS) printf str;} while (0)
    624   1.1  mycroft #define AIC_START(str) do {if (aic_debug & AIC_SHOWSTART) printf str;}while (0)
    625   1.1  mycroft #else
    626   1.1  mycroft #define AIC_ACBS(str)
    627   1.1  mycroft #define AIC_MISC(str)
    628   1.1  mycroft #define AIC_INTS(str)
    629   1.1  mycroft #define AIC_TRACE(str)
    630   1.1  mycroft #define AIC_CMDS(str)
    631   1.1  mycroft #define AIC_START(str)
    632   1.1  mycroft #endif
    633  1.10  mycroft 
    634   1.1  mycroft int	aicprobe	__P((struct device *, void *, void *));
    635   1.1  mycroft void	aicattach	__P((struct device *, struct device *, void *));
    636   1.1  mycroft void	aic_minphys	__P((struct buf *));
    637   1.1  mycroft u_int	aic_adapter_info __P((struct aic_softc *));
    638   1.1  mycroft int	aicintr		__P((struct aic_softc *));
    639   1.1  mycroft void 	aic_init	__P((struct aic_softc *));
    640   1.1  mycroft void	aic_done	__P((struct acb *));
    641   1.1  mycroft int	aic_scsi_cmd	__P((struct scsi_xfer *));
    642   1.1  mycroft int	aic_poll	__P((struct aic_softc *, struct acb *));
    643   1.1  mycroft void	aic_add_timeout __P((struct acb *, int));
    644   1.5      cgd void	aic_remove_timeout __P((struct acb *));
    645   1.1  mycroft void	aic_timeout	__P((void *arg));
    646   1.1  mycroft int	aic_find	__P((struct aic_softc *));
    647   1.1  mycroft void	aic_sched	__P((struct aic_softc *));
    648   1.1  mycroft void	aic_scsi_reset	__P((struct aic_softc *));
    649   1.1  mycroft #if AIC_DEBUG
    650   1.1  mycroft void	aic_print_active_acb();
    651   1.1  mycroft void	aic_dump_driver();
    652   1.1  mycroft void	aic_dump6360();
    653   1.1  mycroft #endif
    654   1.1  mycroft 
    655   1.1  mycroft /* Linkup to the rest of the kernel */
    656   1.1  mycroft struct cfdriver aiccd = {
    657   1.1  mycroft 	NULL, "aic", aicprobe, aicattach, DV_DULL, sizeof(struct aic_softc)
    658   1.1  mycroft };
    659   1.1  mycroft 
    660   1.1  mycroft struct scsi_adapter aic_switch = {
    661   1.1  mycroft 	aic_scsi_cmd,
    662   1.1  mycroft 	aic_minphys,
    663   1.1  mycroft 	0,
    664   1.1  mycroft 	0,
    665   1.1  mycroft 	aic_adapter_info,
    666   1.1  mycroft 	"aic"
    667   1.1  mycroft };
    668   1.1  mycroft 
    669   1.1  mycroft struct scsi_device aic_dev = {
    670   1.1  mycroft 	NULL,			/* Use default error handler */
    671   1.1  mycroft 	NULL,			/* have a queue, served by this */
    672   1.1  mycroft 	NULL,			/* have no async handler */
    673   1.1  mycroft 	NULL,			/* Use default 'done' routine */
    674   1.1  mycroft 	"aic",
    675   1.1  mycroft 	0
    676   1.1  mycroft };
    677   1.1  mycroft 
    678   1.1  mycroft /*
    680   1.1  mycroft  * INITIALIZATION ROUTINES (probe, attach ++)
    681   1.1  mycroft  */
    682   1.1  mycroft 
    683   1.1  mycroft /*
    684   1.1  mycroft  * aicprobe: probe for AIC6360 SCSI-controller
    685   1.1  mycroft  * returns non-zero value if a controller is found.
    686  1.10  mycroft  */
    687  1.10  mycroft int
    688  1.10  mycroft aicprobe(parent, match, aux)
    689   1.1  mycroft 	struct device *parent;
    690  1.10  mycroft 	void *match, *aux;
    691   1.1  mycroft {
    692   1.1  mycroft 	struct aic_softc *aic = match;
    693   1.1  mycroft 	struct isa_attach_args *ia = aux;
    694   1.1  mycroft 	int i, len, ic;
    695   1.1  mycroft 
    696   1.1  mycroft #ifdef NEWCONFIG
    697   1.1  mycroft 	if (ia->ia_iobase == IOBASEUNK)
    698   1.1  mycroft 		return 0;
    699   1.1  mycroft #endif
    700   1.1  mycroft 	aic->iobase = ia->ia_iobase;
    701   1.1  mycroft 	if (aic_find(aic) != 0)
    702   1.1  mycroft 		return 0;
    703   1.1  mycroft #ifdef NEWCONFIG
    704   1.1  mycroft 	if (ia->ia_irq == IRQUNK)
    705   1.1  mycroft 		ia->ia_irq = (1 << aic->aic_int);
    706   1.1  mycroft 	else if (ia->ia_irq != (1 << aic->aic_int)) {
    707   1.1  mycroft 		printf("aic%d: irq mismatch, %x != %x\n",
    708   1.1  mycroft 		       aic->sc_dev.dv_unit, ia->ia_irq, 1 << aic->aic_int);
    709   1.1  mycroft 		return 0;
    710   1.1  mycroft 	}
    711   1.1  mycroft 
    712   1.1  mycroft 	if (ia->ia_drq == DRQUNK)
    713   1.1  mycroft 		ia->ia_drq = aic->aic_dma;
    714   1.1  mycroft 	else if (ia->ia_drq != aic->aic_dma) {
    715   1.1  mycroft 		printf("aic%d: drq mismatch, %x != %x\n",
    716   1.1  mycroft 				aic->sc_dev.dv_unit, ia->ia_drq, aic->aic_dma);
    717   1.1  mycroft 			return 0;
    718   1.1  mycroft 	}
    719   1.1  mycroft #endif
    720   1.1  mycroft 	ia->ia_msize = 0;
    721   1.1  mycroft 	ia->ia_iosize = 0x20;
    722   1.1  mycroft 	return 1;
    723   1.1  mycroft }
    724   1.1  mycroft 
    725   1.1  mycroft /* Do the real search-for-device.
    726   1.1  mycroft  * Prerequisite: aic->iobase should be set to the proper value
    727   1.1  mycroft  */
    728   1.1  mycroft int
    729   1.1  mycroft aic_find(aic)
    730   1.1  mycroft 	struct aic_softc *aic;
    731   1.1  mycroft {
    732   1.1  mycroft 	u_short iobase = aic->iobase;
    733   1.1  mycroft 	char chip_id[sizeof(IDSTRING)];	/* For chips that support it */
    734   1.1  mycroft 	char *start;
    735   1.1  mycroft 	int i;
    736   1.1  mycroft 
    737   1.1  mycroft 	/* Remove aic6360 from possible powerdown mode */
    738   1.1  mycroft 	outb(DMACNTRL0, 0);
    739   1.1  mycroft 
    740   1.1  mycroft 	/* Thanks to mark (at) aggregate.com for the new method for detecting
    741   1.1  mycroft 	 * whether the chip is present or not.  Bonus: may also work for
    742   1.1  mycroft 	 * the AIC-6260!
    743   1.1  mycroft  	 */
    744   1.1  mycroft 	AIC_TRACE(("aic: probing for aic-chip at port 0x%x\n",(int)iobase));
    745   1.1  mycroft  	/*
    746   1.1  mycroft  	 * Linux also init's the stack to 1-16 and then clears it,
    747   1.1  mycroft      	 *  6260's don't appear to have an ID reg - mpg
    748   1.1  mycroft  	 */
    749   1.1  mycroft 	/* Push the sequence 0,1,..,15 on the stack */
    750   1.2  mycroft #define STSIZE 16
    751   1.1  mycroft 	outb(DMACNTRL1, 0);	/* Reset stack pointer */
    752   1.1  mycroft 	for (i = 0; i < STSIZE; i++)
    753   1.1  mycroft 		outb(STACK, i);
    754   1.1  mycroft 
    755   1.1  mycroft 	/* See if we can pull out the same sequence */
    756   1.1  mycroft 	outb(DMACNTRL1, 0);
    757   1.1  mycroft  	for (i = 0; i < STSIZE && inb(STACK) == i; i++)
    758   1.1  mycroft 		;
    759   1.1  mycroft 	if (i != STSIZE) {
    760   1.1  mycroft 		AIC_START(("STACK futzed at %d.\n", i));
    761   1.1  mycroft 		return ENXIO;
    762   1.1  mycroft 	}
    763   1.1  mycroft 
    764   1.1  mycroft 	/* See if we can pull the id string out of the ID register,
    765   1.1  mycroft 	 * now only used for informational purposes.
    766   1.1  mycroft 	 */
    767   1.1  mycroft 	bzero(chip_id, sizeof(chip_id));
    768   1.1  mycroft 	insb(ID, chip_id, sizeof(IDSTRING)-1);
    769   1.1  mycroft 	AIC_START(("AIC found at 0x%x ", (int)aic->iobase));
    770   1.1  mycroft 	AIC_START(("ID: %s ",chip_id));
    771   1.1  mycroft 	AIC_START(("chip revision %d\n",(int)inb(REV)));
    772   1.1  mycroft 	return 0;
    773   1.1  mycroft }
    774   1.1  mycroft 
    775   1.1  mycroft int
    776   1.1  mycroft aicprint()
    777   1.1  mycroft {
    778   1.1  mycroft }
    779   1.1  mycroft 
    780   1.1  mycroft /*
    781   1.1  mycroft  * Attach the AIC6360, fill out some high and low level data structures
    782   1.1  mycroft  */
    783   1.1  mycroft void
    784   1.1  mycroft aicattach(parent, self, aux)
    785   1.1  mycroft 	struct device *parent, *self;
    786   1.1  mycroft 	void *aux;
    787   1.1  mycroft {
    788   1.1  mycroft 	struct isa_attach_args *ia = aux;
    789   1.1  mycroft 	struct aic_softc *aic = (void *)self;
    790   1.1  mycroft 
    791   1.1  mycroft 	AIC_TRACE(("aicattach\n"));
    792   1.1  mycroft 	aic->state = 0;
    793   1.1  mycroft 	aic_init(aic);	/* Init chip and driver */
    794   1.1  mycroft 
    795   1.1  mycroft 	/*
    796   1.1  mycroft 	 * Fill in the prototype scsi_link
    797   1.1  mycroft 	 */
    798   1.1  mycroft 	aic->sc_link.adapter_softc = aic;
    799   1.1  mycroft 	aic->sc_link.adapter_targ = AIC_SCSI_HOSTID;
    800   1.1  mycroft 	aic->sc_link.adapter = &aic_switch;
    801   1.1  mycroft 	aic->sc_link.device = &aic_dev;
    802   1.1  mycroft 	printf("\n");
    803   1.1  mycroft 
    804   1.1  mycroft #ifdef NEWCONFIG
    805   1.1  mycroft 	isa_establish(&aic->sc_id, &aic->sc_dev);
    806   1.1  mycroft #endif
    807   1.1  mycroft 	aic->sc_ih.ih_fun = aicintr;
    808   1.1  mycroft 	aic->sc_ih.ih_arg = aic;
    809   1.1  mycroft 	aic->sc_ih.ih_level = IPL_BIO;
    810   1.1  mycroft 	intr_establish(ia->ia_irq, &aic->sc_ih);
    811   1.1  mycroft 
    812   1.1  mycroft 	config_found(self, &aic->sc_link, aicprint);
    813   1.1  mycroft }
    814   1.1  mycroft 
    815   1.1  mycroft 
    816   1.1  mycroft /* Initialize AIC6360 chip itself
    817   1.1  mycroft  * The following conditions should hold:
    818   1.1  mycroft  * aicprobe should have succeeded, i.e. the iobase address in aic_softc must
    819   1.1  mycroft  * be valid.
    820   1.1  mycroft  */
    821   1.1  mycroft static void
    822   1.1  mycroft aic6360_reset(aic)
    823   1.1  mycroft 	struct aic_softc *aic;
    824   1.1  mycroft {
    825   1.1  mycroft 	u_short iobase = aic->iobase;
    826   1.1  mycroft 
    827   1.1  mycroft 	outb(SCSITEST, 0);	/* Doc. recommends to clear these two */
    828   1.1  mycroft 	outb(TEST, 0);		/* registers before operations commence */
    829   1.1  mycroft 
    830   1.1  mycroft 	/* Reset SCSI-FIFO and abort any transfers */
    831   1.1  mycroft 	outb(SXFRCTL0, CHEN|CLRCH|CLRSTCNT);
    832   1.1  mycroft 
    833   1.1  mycroft 	/* Reset DMA-FIFO */
    834   1.1  mycroft 	outb(DMACNTRL0, RSTFIFO);
    835   1.1  mycroft 	outb(DMACNTRL1, 0);
    836   1.1  mycroft 
    837   1.1  mycroft 	outb(SCSISEQ, 0);	/* Disable all selection features */
    838   1.1  mycroft 	outb(SXFRCTL1, 0);
    839   1.1  mycroft 
    840   1.1  mycroft 	outb(SIMODE0, 0x00);		/* Disable some interrupts */
    841   1.1  mycroft 	outb(CLRSINT0, 0x7f);	/* Clear a slew of interrupts */
    842   1.1  mycroft 
    843   1.1  mycroft 	outb(SIMODE1, 0x00);		/* Disable some more interrupts */
    844   1.1  mycroft 	outb(CLRSINT1, 0xef);	/* Clear another slew of interrupts */
    845   1.1  mycroft 
    846   1.1  mycroft 	outb(SCSIRATE, 0);	/* Disable synchronous transfers */
    847   1.1  mycroft 
    848   1.1  mycroft 	outb(CLRSERR, 0x07);	/* Haven't seen ant errors (yet) */
    849   1.1  mycroft 
    850   1.1  mycroft 	outb(SCSIID, AIC_SCSI_HOSTID << OID_S); /* Set our SCSI-ID */
    851   1.1  mycroft 	outb(BRSTCNTRL, EISA_BRST_TIM);
    852   1.1  mycroft }
    853   1.1  mycroft 
    854   1.1  mycroft /* Pull the SCSI RST line for 500 us */
    855   1.1  mycroft void
    856   1.1  mycroft aic_scsi_reset(aic)
    857   1.1  mycroft 	struct aic_softc *aic;
    858   1.1  mycroft {
    859   1.1  mycroft 	u_short iobase = aic->iobase;
    860   1.1  mycroft 
    861   1.1  mycroft 	outb(SCSISEQ, SCSIRSTO);
    862   1.1  mycroft 	delay(500);
    863   1.1  mycroft 	outb(SCSISEQ, 0);
    864   1.1  mycroft 	delay(50);
    865   1.1  mycroft }
    866   1.1  mycroft 
    867   1.1  mycroft /*
    868   1.1  mycroft  * Initialize aic SCSI driver, also (conditonally) reset the SCSI bus.
    869   1.1  mycroft  * The reinitialization is still buggy (e.g. on SCSI resets).
    870   1.1  mycroft  */
    871   1.1  mycroft void
    872   1.1  mycroft aic_init(aic)
    873   1.1  mycroft 	struct aic_softc *aic;
    874   1.1  mycroft {
    875   1.1  mycroft 	u_short iobase = aic->iobase;
    876   1.1  mycroft 	struct acb *acb;
    877   1.6  mycroft 	int r;
    878   1.1  mycroft 
    879   1.1  mycroft 	aic_scsi_reset(aic);
    880   1.1  mycroft 
    881   1.1  mycroft 	aic6360_reset(aic);	/* Clean up our own hardware */
    882   1.1  mycroft 
    883   1.1  mycroft /*XXX*/	/* If not the first time (probably a reset condition),
    884   1.1  mycroft 	 * we should clean queues with active commands
    885   1.1  mycroft 	 */
    886   1.1  mycroft 	if (aic->state == 0) {	/* First time through */
    887   1.1  mycroft 		TAILQ_INIT(&aic->ready_list);
    888   1.1  mycroft 		TAILQ_INIT(&aic->nexus_list);
    889   1.1  mycroft 		TAILQ_INIT(&aic->free_list);
    890   1.1  mycroft 		aic->nexus = 0;
    891   1.1  mycroft 		acb = aic->acb;
    892   1.1  mycroft 		bzero(acb, sizeof(aic->acb));
    893   1.1  mycroft 		for (r = 0; r < sizeof(aic->acb) / sizeof(*acb); r++) {
    894   1.1  mycroft 			TAILQ_INSERT_TAIL(&aic->free_list, acb, chain);
    895   1.1  mycroft 			acb++;
    896   1.2  mycroft 		}
    897   1.1  mycroft 		bzero(&aic->tinfo, sizeof(aic->tinfo));
    898   1.1  mycroft 	} else {
    899   1.1  mycroft 		aic->state = AIC_CLEANING;
    900   1.5      cgd 		if (aic->nexus != NULL) {
    901   1.1  mycroft 			aic->nexus->xs->error = XS_DRIVER_STUFFUP;
    902   1.1  mycroft 			untimeout(aic_timeout, aic->nexus);
    903   1.1  mycroft 			aic_done(aic->nexus);
    904   1.1  mycroft 		}
    905   1.1  mycroft 		aic->nexus = NULL;
    906   1.5      cgd 		while (acb = aic->nexus_list.tqh_first) {
    907   1.1  mycroft 			acb->xs->error = XS_DRIVER_STUFFUP;
    908   1.1  mycroft 			untimeout(aic_timeout, acb);
    909   1.1  mycroft 			aic_done(acb);
    910   1.1  mycroft 		}
    911   1.1  mycroft 	}
    912   1.1  mycroft 
    913   1.1  mycroft 	aic->phase = aic->prevphase = PH_INVALID;
    914   1.1  mycroft 	aic->hp = 0;
    915   1.1  mycroft 	for (r = 0; r < 7; r++) {
    916   1.1  mycroft 		struct aic_tinfo *tp = &aic->tinfo[r];
    917   1.1  mycroft 		tp->flags = AIC_USE_SYNCHRONOUS ? DO_NEGOTIATE : 0;
    918   1.1  mycroft 		tp->flags |= NEED_TO_RESET;
    919   1.1  mycroft 		tp->persgst = AIC_SYNC_PERIOD;
    920   1.1  mycroft 		tp->offsgst = AIC_SYNC_REQ_ACK_OFS;
    921   1.1  mycroft 		tp->syncdata = 0;
    922   1.1  mycroft 	}
    923   1.1  mycroft 	aic->state = AIC_IDLE;
    924   1.1  mycroft 	outb(DMACNTRL0, INTEN);
    925   1.1  mycroft 	return;
    926   1.1  mycroft }
    927   1.1  mycroft 
    928   1.1  mycroft /*
    930   1.1  mycroft  * DRIVER FUNCTIONS CALLABLE FROM HIGHER LEVEL DRIVERS
    931   1.1  mycroft  */
    932   1.1  mycroft 
    933   1.1  mycroft /*
    934   1.1  mycroft  * Expected sequence:
    935   1.1  mycroft  * 1) Command inserted into ready list
    936   1.1  mycroft  * 2) Command selected for execution
    937   1.1  mycroft  * 3) Command won arbitration and has selected target device
    938   1.1  mycroft  * 4) Send message out (identify message, eventually also sync.negotiations)
    939   1.1  mycroft  * 5) Send command
    940   1.1  mycroft  * 5a) Receive disconnect message, disconnect.
    941   1.1  mycroft  * 5b) Reselected by target
    942   1.1  mycroft  * 5c) Receive identify message from target.
    943   1.1  mycroft  * 6) Send or receive data
    944   1.1  mycroft  * 7) Receive status
    945   1.1  mycroft  * 8) Receive message (command complete etc.)
    946   1.1  mycroft  * 9) If status == SCSI_CHECK construct a synthetic request sense SCSI cmd.
    947   1.1  mycroft  *    Repeat 2-8 (no disconnects please...)
    948   1.1  mycroft  */
    949   1.1  mycroft 
    950   1.1  mycroft /*
    951   1.1  mycroft  * Start a SCSI-command
    952   1.1  mycroft  * This function is called by the higher level SCSI-driver to queue/run
    953   1.1  mycroft  * SCSI-commands.
    954   1.1  mycroft  */
    955   1.1  mycroft int
    956   1.1  mycroft aic_scsi_cmd(xs)
    957   1.1  mycroft 	struct scsi_xfer *xs;
    958   1.1  mycroft {
    959   1.1  mycroft 	struct scsi_link *sc = xs->sc_link;
    960   1.1  mycroft 	struct aic_softc *aic = sc->adapter_softc;
    961   1.1  mycroft 	struct acb 	*acb;
    962   1.1  mycroft 	int s, flags;
    963   1.1  mycroft 	u_short iobase = aic->iobase;
    964   1.1  mycroft 
    965   1.1  mycroft 	SC_DEBUG(sc, SDEV_DB2, ("aic_scsi_cmd\n"));
    966   1.1  mycroft 	AIC_TRACE(("aic_scsi_cmd\n"));
    967   1.1  mycroft 	AIC_MISC(("[0x%x, %d]->%d ", (int)xs->cmd->opcode, xs->cmdlen,
    968   1.2  mycroft 		  sc->target));
    969   1.1  mycroft 
    970   1.2  mycroft 	flags = xs->flags;
    971   1.1  mycroft 
    972   1.1  mycroft 	/* Get a aic command block */
    973   1.1  mycroft 	if (!(flags & SCSI_NOMASK)) {
    974   1.1  mycroft 		/* Critical region */
    975   1.1  mycroft 		s = splbio();
    976   1.1  mycroft 		acb = aic->free_list.tqh_first;
    977   1.1  mycroft 		if (acb) {
    978   1.1  mycroft 			TAILQ_REMOVE(&aic->free_list, acb, chain);
    979   1.1  mycroft 		}
    980   1.1  mycroft 		splx(s);
    981   1.1  mycroft 	} else {
    982   1.1  mycroft 		acb = aic->free_list.tqh_first;
    983   1.1  mycroft 		if (acb) {
    984   1.1  mycroft 			TAILQ_REMOVE(&aic->free_list, acb, chain);
    985   1.1  mycroft 		}
    986   1.1  mycroft 	}
    987   1.1  mycroft 
    988   1.1  mycroft 	if (acb == NULL) {
    989   1.1  mycroft 		xs->error = XS_DRIVER_STUFFUP;
    990   1.1  mycroft 		AIC_MISC(("TRY_AGAIN_LATER"));
    991   1.1  mycroft 		return TRY_AGAIN_LATER;
    992   1.1  mycroft 	}
    993   1.1  mycroft 
    994   1.1  mycroft 	/* Initialize acb */
    995   1.1  mycroft 	acb->flags = ACB_ACTIVE;
    996   1.1  mycroft 	acb->xs = xs;
    997   1.1  mycroft 	bcopy(xs->cmd, &acb->cmd, xs->cmdlen);
    998   1.1  mycroft 	acb->clen = xs->cmdlen;
    999   1.1  mycroft 	acb->daddr = xs->data;
   1000   1.2  mycroft 	acb->dleft = xs->datalen;
   1001   1.1  mycroft 	acb->stat = 0;
   1002   1.1  mycroft 
   1003   1.1  mycroft 	if (!(flags & SCSI_NOMASK))
   1004   1.5      cgd 		s = splbio();
   1005   1.1  mycroft 
   1006   1.1  mycroft 	TAILQ_INSERT_TAIL(&aic->ready_list, acb, chain);
   1007   1.1  mycroft 	timeout(aic_timeout, acb, (xs->timeout*hz)/1000);
   1008   1.1  mycroft 
   1009   1.2  mycroft 	if (aic->state == AIC_IDLE)
   1010   1.1  mycroft 		aic_sched(aic);
   1011   1.1  mycroft 
   1012   1.1  mycroft 	if (!(flags & SCSI_NOMASK)) { /* Almost done. Wait outside */
   1013   1.1  mycroft 		splx(s);
   1014   1.2  mycroft 		AIC_MISC(("SUCCESSFULLY_QUEUED"));
   1015   1.1  mycroft 		return SUCCESSFULLY_QUEUED;
   1016   1.1  mycroft 	}
   1017   1.1  mycroft 
   1018   1.1  mycroft 	/* Not allowed to use interrupts, use polling instead */
   1019   1.1  mycroft 	return aic_poll(aic, acb);
   1020   1.1  mycroft }
   1021   1.1  mycroft 
   1022   1.1  mycroft /*
   1023   1.1  mycroft  * Adjust transfer size in buffer structure
   1024   1.1  mycroft  */
   1025   1.1  mycroft void
   1026   1.2  mycroft aic_minphys(bp)
   1027   1.1  mycroft 	struct buf *bp;
   1028   1.2  mycroft {
   1029   1.2  mycroft 
   1030   1.1  mycroft 	AIC_TRACE(("aic_minphys\n"));
   1031   1.1  mycroft 	if (bp->b_bcount > (AIC_NSEG << PGSHIFT))
   1032   1.1  mycroft 		bp->b_bcount = (AIC_NSEG << PGSHIFT);
   1033   1.1  mycroft }
   1034   1.1  mycroft 
   1035   1.1  mycroft 
   1036   1.1  mycroft u_int
   1037   1.2  mycroft aic_adapter_info(aic)
   1038   1.1  mycroft 	struct aic_softc *aic;
   1039   1.1  mycroft {
   1040   1.1  mycroft 
   1041   1.1  mycroft 	AIC_TRACE(("aic_adapter_info\n"));
   1042   1.1  mycroft 	return 2;		/* One outstanding command per target */
   1043   1.1  mycroft }
   1044   1.1  mycroft 
   1045   1.1  mycroft /*
   1046   1.1  mycroft  * Used when interrupt driven I/O isn't allowed, e.g. during boot.
   1047   1.1  mycroft  */
   1048   1.1  mycroft int
   1049   1.1  mycroft aic_poll(aic, acb)
   1050   1.1  mycroft 	struct aic_softc *aic;
   1051   1.1  mycroft 	struct acb *acb;
   1052   1.1  mycroft {
   1053   1.1  mycroft 	register u_short iobase = aic->iobase;
   1054   1.1  mycroft 	struct scsi_xfer *xs = acb->xs;
   1055   1.1  mycroft 	int count = xs->timeout * 10;
   1056   1.1  mycroft 
   1057   1.1  mycroft 	AIC_TRACE(("aic_poll\n"));
   1058   1.1  mycroft 	while (count) {
   1059   1.1  mycroft 		if (inb(DMASTAT) & INTSTAT)
   1060   1.1  mycroft 			aicintr(aic);
   1061   1.1  mycroft 		if (xs->flags & ITSDONE)
   1062   1.1  mycroft 			break;
   1063   1.1  mycroft 		delay(100);
   1064   1.1  mycroft 		count--;
   1065   1.1  mycroft 	}
   1066   1.1  mycroft 	if (count == 0) {
   1067   1.1  mycroft 		AIC_MISC(("aic_poll: timeout"));
   1068   1.1  mycroft 		aic_timeout((caddr_t)acb);
   1069   1.1  mycroft 	}
   1070   1.1  mycroft 	if (xs->error)
   1071   1.1  mycroft 		return HAD_ERROR;
   1072   1.1  mycroft 	return COMPLETE;
   1073   1.1  mycroft }
   1074   1.1  mycroft 
   1075   1.1  mycroft /* LOW LEVEL SCSI UTILITIES */
   1077   1.1  mycroft 
   1078   1.1  mycroft /* Determine the SCSI bus phase, return either a real SCSI bus phase or some
   1079   1.1  mycroft  * pseudo phase we use to detect certain exceptions.  This one is a bit tricky.
   1080   1.1  mycroft  * The bits we peek at:
   1081   1.1  mycroft  * CDI, MSGI and DI is the 3 SCSI signals determining the bus phase.
   1082   1.1  mycroft  * These should be qualified by REQI high and ACKI low.
   1083   1.1  mycroft  * Also peek at SSTAT0[SELDO|SELDI] to detect a passing BUSFREE condition.
   1084   1.1  mycroft  * No longer detect SCSI RESET or PERR here.  They are tested for separately
   1085   1.1  mycroft  * in the interrupt handler.
   1086   1.1  mycroft  * Note: If an exception occur at some critical time during the phase
   1087   1.1  mycroft  * determination we'll most likely return something wildly erronous....
   1088   1.1  mycroft  */
   1089   1.1  mycroft static inline u_short
   1090   1.1  mycroft aicphase(aic)
   1091   1.1  mycroft 	struct aic_softc *aic;
   1092   1.1  mycroft {
   1093   1.1  mycroft 	register u_short iobase = aic->iobase;
   1094   1.1  mycroft 	register u_char sstat0, sstat1, scsisig;
   1095   1.1  mycroft 
   1096   1.2  mycroft 	sstat1 = inb(SSTAT1);	/* Look for REQINIT (REQ asserted) */
   1097   1.1  mycroft 	scsisig = inb(SCSISIGI); /* Get the SCSI bus signals */
   1098   1.1  mycroft 	sstat0 = inb(SSTAT0);	/* Get the selection valid status bits */
   1099   1.1  mycroft 
   1100   1.2  mycroft 	if (!(inb(SSTAT0) & (SELDO|SELDI))) /* Selection became invalid? */
   1101   1.1  mycroft 		return PH_BUSFREE;
   1102   1.1  mycroft 
   1103   1.1  mycroft 	/* Selection is still valid */
   1104   1.1  mycroft 	if (!(sstat1 & REQINIT)) 		/* REQ not asserted ? */
   1105   1.1  mycroft 		return PH_INVALID;
   1106   1.1  mycroft 
   1107   1.1  mycroft 	/* REQ is asserted, (and ACK is not) */
   1108   1.1  mycroft 	return scsisig & PH_MASK;
   1109   1.1  mycroft }
   1110   1.1  mycroft 
   1111   1.1  mycroft 
   1112   1.1  mycroft /* Schedule a scsi operation.  This has now been pulled out of the interrupt
   1114   1.1  mycroft  * handler so that we may call it from aic_scsi_cmd and aic_done.  This may
   1115   1.1  mycroft  * save us an unecessary interrupt just to get things going.  Should only be
   1116   1.1  mycroft  * called when state == AIC_IDLE and at bio pl.
   1117   1.1  mycroft  */
   1118   1.1  mycroft void
   1119   1.1  mycroft aic_sched(aic)
   1120   1.1  mycroft 	register struct aic_softc *aic;
   1121   1.1  mycroft {
   1122   1.1  mycroft 	struct scsi_xfer *xs;
   1123   1.1  mycroft 	struct scsi_link *sc;
   1124   1.1  mycroft 	struct acb *acb;
   1125   1.1  mycroft 	u_short iobase = aic->iobase;
   1126   1.1  mycroft 	int t, l;
   1127   1.1  mycroft 	u_char simode0, simode1, scsiseq;
   1128   1.1  mycroft 
   1129   1.1  mycroft 	AIC_TRACE(("aic_sched\n"));
   1130   1.1  mycroft 	simode0 = ENSELDI;
   1131   1.1  mycroft 	simode1 = ENSCSIRST|ENSCSIPERR|ENREQINIT;
   1132   1.1  mycroft 	scsiseq = ENRESELI;
   1133   1.1  mycroft 	/*
   1134   1.1  mycroft 	 * Find first acb in rdy queue that is for a target/lunit
   1135   1.1  mycroft 	 * combinations that is not busy.
   1136   1.2  mycroft 	 */
   1137   1.1  mycroft 	outb(CLRSINT1, CLRSELTIMO|CLRBUSFREE|CLRSCSIPERR);
   1138   1.1  mycroft 	for (acb = aic->ready_list.tqh_first; acb; acb = acb->chain.tqe_next) {
   1139   1.1  mycroft 		sc = acb->xs->sc_link;
   1140   1.1  mycroft 		t = sc->target;
   1141   1.1  mycroft 		if (!(aic->tinfo[t].lubusy & (1 << sc->lun))) {
   1142   1.1  mycroft 			TAILQ_REMOVE(&aic->ready_list, acb, chain);
   1143   1.1  mycroft 			aic->nexus = acb;
   1144   1.1  mycroft 			aic->state = AIC_SELECTING;
   1145   1.1  mycroft 			/*
   1146   1.1  mycroft 			 * Start selection process. Always enable
   1147   1.1  mycroft 			 * reselections.  Note: we don't have a nexus yet, so
   1148   1.1  mycroft 			 * cannot set aic->state = AIC_HASNEXUS.
   1149   1.1  mycroft 			 */
   1150   1.1  mycroft 			simode0 = ENSELDI|ENSELDO;
   1151   1.1  mycroft 			simode1 = ENSCSIRST|ENSCSIPERR|
   1152   1.1  mycroft 				  ENREQINIT|ENSELTIMO;
   1153   1.1  mycroft 			scsiseq = ENRESELI|ENSELO|ENAUTOATNO;
   1154   1.1  mycroft 			outb(SCSIID, AIC_SCSI_HOSTID << OID_S | t);
   1155   1.1  mycroft 			outb(SXFRCTL1, STIMO_256ms|ENSTIMER);
   1156   1.1  mycroft 			outb(CLRSINT0, CLRSELDO);
   1157   1.1  mycroft 			break;
   1158   1.1  mycroft 		} else
   1159   1.1  mycroft 			AIC_MISC(("%d:%d busy\n", t, sc->lun));
   1160   1.1  mycroft 	}
   1161   1.1  mycroft 	AIC_MISC(("%sselecting\n",scsiseq&ENSELO?"":"re"));
   1162   1.1  mycroft 	outb(SIMODE0, simode0);
   1163   1.1  mycroft 	outb(SIMODE1, simode1);
   1164   1.1  mycroft 	outb(SCSISEQ, scsiseq);
   1165   1.1  mycroft }
   1166   1.1  mycroft 
   1167   1.1  mycroft 
   1168   1.1  mycroft /*
   1170   1.1  mycroft  * POST PROCESSING OF SCSI_CMD (usually current)
   1171   1.1  mycroft  */
   1172   1.1  mycroft void
   1173   1.1  mycroft aic_done(acb)
   1174   1.1  mycroft 	struct acb *acb;
   1175   1.1  mycroft {
   1176   1.1  mycroft 	struct scsi_xfer *xs = acb->xs;
   1177   1.1  mycroft 	struct scsi_link *sc = xs->sc_link;
   1178   1.1  mycroft 	struct aic_softc *aic = sc->adapter_softc;
   1179   1.1  mycroft 	u_short iobase = aic->iobase;
   1180   1.1  mycroft 	struct acb *acb2;
   1181   1.1  mycroft 
   1182   1.1  mycroft 	AIC_TRACE(("aic_done "));
   1183   1.1  mycroft 
   1184   1.1  mycroft 	/*
   1185   1.1  mycroft 	 * Now, if we've come here with no error code, i.e. we've kept the
   1186   1.1  mycroft 	 * initial XS_NOERROR, and the status code signals that we should
   1187   1.1  mycroft 	 * check sense, we'll need to set up a request sense cmd block and
   1188   1.1  mycroft 	 * push the command back into the ready queue *before* any other
   1189   1.1  mycroft 	 * commands for this target/lunit, else we lose the sense info.
   1190   1.1  mycroft 	 * We don't support chk sense conditions for the request sense cmd.
   1191   1.1  mycroft 	 */
   1192   1.1  mycroft 	if (xs->error == XS_NOERROR && !(acb->flags & ACB_CHKSENSE)) {
   1193   1.1  mycroft 		if ((acb->stat & ST_MASK)==SCSI_CHECK) {
   1194   1.1  mycroft 			struct scsi_sense *ss = (void *)&acb->cmd;
   1195   1.1  mycroft 			AIC_MISC(("requesting sense "));
   1196   1.1  mycroft 			/* First, save the return values */
   1197   1.1  mycroft 			xs->resid = acb->dleft;
   1198   1.1  mycroft 			xs->status = acb->stat;
   1199   1.1  mycroft 			/* Next, setup a request sense command block */
   1200   1.1  mycroft 			bzero(ss, sizeof(*ss));
   1201   1.1  mycroft 			ss->op_code = REQUEST_SENSE;
   1202   1.1  mycroft 			ss->byte2 = sc->lun << 5;
   1203   1.1  mycroft 			ss->length = sizeof(struct scsi_sense_data);
   1204   1.1  mycroft 			acb->clen = sizeof(*ss);
   1205   1.1  mycroft 			acb->daddr = (char *)&xs->sense;
   1206   1.1  mycroft 			acb->dleft = sizeof(struct scsi_sense_data);
   1207   1.1  mycroft 			acb->flags = ACB_ACTIVE|ACB_CHKSENSE;
   1208   1.1  mycroft 			TAILQ_INSERT_HEAD(&aic->ready_list, acb, chain);
   1209   1.1  mycroft 			aic->tinfo[sc->target].lubusy &= ~(1<<sc->lun);
   1210   1.1  mycroft 			aic->tinfo[sc->target].senses++;
   1211   1.1  mycroft 			if (aic->nexus == acb) {
   1212   1.1  mycroft 				aic->nexus = NULL;
   1213   1.1  mycroft 				aic->state = AIC_IDLE;
   1214   1.1  mycroft 				aic_sched(aic);
   1215   1.1  mycroft 			}
   1216   1.1  mycroft 			return;
   1217   1.1  mycroft 		}
   1218   1.1  mycroft 	}
   1219   1.1  mycroft 
   1220   1.1  mycroft 	if (xs->flags & SCSI_ERR_OK) {
   1221   1.1  mycroft 		xs->resid = 0;
   1222   1.1  mycroft 		xs->error = XS_NOERROR;
   1223   1.1  mycroft 	} else if (xs->error == XS_NOERROR && (acb->flags & ACB_CHKSENSE)) {
   1224   1.1  mycroft 		xs->error = XS_SENSE;
   1225   1.1  mycroft 	} else {
   1226   1.1  mycroft 		xs->resid = acb->dleft;
   1227   1.1  mycroft 	}
   1228   1.1  mycroft 	xs->flags |= ITSDONE;
   1229   1.1  mycroft 
   1230   1.1  mycroft #if AIC_DEBUG
   1231   1.1  mycroft 	if (aic_debug & AIC_SHOWMISC) {
   1232   1.1  mycroft 		printf("err=0x%02x ",xs->error);
   1233   1.1  mycroft 		if (xs->error == XS_SENSE)
   1234   1.1  mycroft 			printf("sense=%2x\n", xs->sense.error_code);
   1235   1.1  mycroft 	}
   1236   1.1  mycroft 	if ((xs->resid || xs->error > XS_SENSE) && aic_debug & AIC_SHOWMISC) {
   1237   1.1  mycroft 		if (xs->resid)
   1238   1.1  mycroft 			printf("aic_done: resid=%d\n", xs->resid);
   1239   1.1  mycroft 		if (xs->error)
   1240   1.1  mycroft 			printf("aic_done: error=%d\n", xs->error);
   1241   1.1  mycroft 	}
   1242   1.1  mycroft #endif
   1243   1.1  mycroft 
   1244   1.1  mycroft 	/*
   1245   1.1  mycroft 	 * Remove the ACB from whatever queue it's on.  We have to do a bit of
   1246   1.1  mycroft 	 * a hack to figure out which queue it's on.  Note that it is *not*
   1247   1.1  mycroft 	 * necessary to cdr down the ready queue, but we must cdr down the
   1248   1.1  mycroft 	 * nexus queue and see if it's there, so we can mark the unit as no
   1249   1.1  mycroft 	 * longer busy.  This code is sickening, but it works.
   1250   1.1  mycroft 	 */
   1251   1.1  mycroft 	if (acb == aic->nexus) {
   1252   1.1  mycroft 		aic->state = AIC_IDLE;
   1253   1.1  mycroft 		aic->tinfo[sc->target].lubusy &= ~(1<<sc->lun);
   1254   1.1  mycroft 		aic_sched(aic);
   1255   1.1  mycroft 	} else if (aic->ready_list.tqh_last == &acb->chain.tqe_next) {
   1256   1.1  mycroft 		TAILQ_REMOVE(&aic->ready_list, acb, chain);
   1257   1.1  mycroft 	} else {
   1258   1.1  mycroft 		register struct acb *acb2;
   1259   1.1  mycroft 		for (acb2 = aic->nexus_list.tqh_first; acb2;
   1260   1.1  mycroft 		    acb2 = acb2->chain.tqe_next)
   1261   1.1  mycroft 			if (acb2 == acb) {
   1262   1.1  mycroft 				TAILQ_REMOVE(&aic->nexus_list, acb, chain);
   1263   1.1  mycroft 				aic->tinfo[sc->target].lubusy &= ~(1<<sc->lun);
   1264   1.1  mycroft 				/* XXXX Should we call aic_sched() here? */
   1265   1.1  mycroft 				break;
   1266   1.1  mycroft 			}
   1267   1.1  mycroft 		if (acb2)
   1268   1.1  mycroft 			;
   1269   1.1  mycroft 		else if (acb->chain.tqe_next) {
   1270   1.1  mycroft 			TAILQ_REMOVE(&aic->ready_list, acb, chain);
   1271   1.1  mycroft 		} else {
   1272   1.1  mycroft 			printf("%s: can't find matching acb\n",
   1273   1.1  mycroft 			    aic->sc_dev.dv_xname);
   1274   1.1  mycroft 			Debugger();
   1275   1.1  mycroft 		}
   1276   1.1  mycroft 	}
   1277   1.1  mycroft 	/* Put it on the free list. */
   1278   1.1  mycroft 	acb->flags = ACB_FREE;
   1279   1.1  mycroft 	TAILQ_INSERT_HEAD(&aic->free_list, acb, chain);
   1280   1.1  mycroft 
   1281   1.1  mycroft 	aic->tinfo[sc->target].cmds++;
   1282   1.1  mycroft 	scsi_done(xs);
   1283   1.1  mycroft 	return;
   1284   1.1  mycroft }
   1285   1.1  mycroft 
   1286   1.1  mycroft /*
   1288   1.1  mycroft  * INTERRUPT/PROTOCOL ENGINE
   1289   1.1  mycroft  */
   1290   1.1  mycroft 
   1291   1.1  mycroft /* The message system:
   1292   1.1  mycroft  * This is a revamped message system that now should easier accomodate new
   1293   1.1  mycroft  * messages, if necessary.
   1294   1.1  mycroft  * Currently we accept these messages:
   1295   1.1  mycroft  * IDENTIFY (when reselecting)
   1296   1.1  mycroft  * COMMAND COMPLETE # (expect bus free after messages marked #)
   1297   1.1  mycroft  * NOOP
   1298   1.1  mycroft  * MESSAGE REJECT
   1299   1.1  mycroft  * SYNCHRONOUS DATA TRANSFER REQUEST
   1300   1.1  mycroft  * SAVE DATA POINTER
   1301   1.1  mycroft  * RESTORE POINTERS
   1302   1.1  mycroft  * DISCONNECT #
   1303   1.1  mycroft  *
   1304   1.1  mycroft  * We may send these messages in prioritized order:
   1305   1.1  mycroft  * BUS DEVICE RESET #		if SCSI_RESET & xs->flags (or in weird sits.)
   1306   1.1  mycroft  * MESSAGE PARITY ERROR		par. err. during MSGI
   1307   1.1  mycroft  * MESSAGE REJECT		If we get a message we don't know how to handle
   1308   1.2  mycroft  * ABORT #			send on errors
   1309   1.2  mycroft  * INITIATOR DETECTED ERROR	also on errors (SCSI2) (during info xfer)
   1310   1.2  mycroft  * IDENTIFY			At the start of each transfer
   1311   1.2  mycroft  * SYNCHRONOUS DATA TRANSFER REQUEST	if appropriate
   1312   1.2  mycroft  * NOOP				if nothing else fits the bill ...
   1313   1.1  mycroft  */
   1314   1.1  mycroft 
   1315   1.1  mycroft #define aic_sched_msgout(m) \
   1316   1.1  mycroft 	do {				\
   1317   1.1  mycroft 		orreg(SCSISIGO, ATNO);	\
   1318   1.1  mycroft 		aic->msgpriq |= (m);	\
   1319   1.1  mycroft 	} while (0)
   1320   1.1  mycroft 
   1321   1.1  mycroft #define IS1BYTEMSG(m) (((m) != 1 && (m) < 0x20) || (m) >= 0x80)
   1322   1.1  mycroft #define IS2BYTEMSG(m) (((m) & 0xf0) == 0x20)
   1323   1.1  mycroft #define ISEXTMSG(m) ((m) == 1)
   1324   1.1  mycroft /* Precondition:
   1325   1.1  mycroft  * The SCSI bus is already in the MSGI phase and there is a message byte
   1326   1.1  mycroft  * on the bus, along with an asserted REQ signal.
   1327   1.1  mycroft  */
   1328   1.1  mycroft static void
   1329   1.1  mycroft aic_msgin(aic)
   1330   1.1  mycroft 	register struct aic_softc *aic;
   1331   1.1  mycroft {
   1332   1.1  mycroft 	register u_short iobase = aic->iobase;
   1333   1.1  mycroft 	int spincount, extlen;
   1334   1.1  mycroft 	u_char sstat1;
   1335   1.1  mycroft 
   1336   1.1  mycroft 	AIC_TRACE(("aic_msgin "));
   1337   1.1  mycroft 	outb(SCSISIGO, PH_MSGI);
   1338   1.1  mycroft 	/* Prepare for a new message.  A message should (according to the SCSI
   1339   1.1  mycroft 	 * standard) be transmitted in one single message_in phase.
   1340   1.1  mycroft 	 * If we have been in some other phase, then this is a new message.
   1341   1.1  mycroft 	 */
   1342   1.1  mycroft 	if (aic->prevphase != PH_MSGI) {
   1343   1.1  mycroft 		aic->flags &= ~AIC_DROP_MSGI;
   1344   1.2  mycroft 		aic->imlen = 0;
   1345   1.1  mycroft 	}
   1346   1.1  mycroft 	/*
   1347   1.1  mycroft 	 * Read a whole message but the last byte.  If we shall reject the
   1348   1.1  mycroft 	 * message, we shall have to do it, by asserting ATNO, during the
   1349   1.1  mycroft 	 * message transfer phase itself.
   1350   1.1  mycroft 	 */
   1351   1.1  mycroft 	for (;;) {
   1352   1.1  mycroft 		sstat1 = inb(SSTAT1);
   1353   1.1  mycroft 		/* If parity errors just dump everything on the floor, also
   1354   1.1  mycroft 		 * a parity error automatically sets ATNO
   1355   1.1  mycroft 		 */
   1356   1.1  mycroft 		if (sstat1 & SCSIPERR) {
   1357   1.1  mycroft 			aic_sched_msgout(SEND_PARITY_ERROR);
   1358   1.1  mycroft 			aic->flags |= AIC_DROP_MSGI;
   1359   1.1  mycroft 		}
   1360   1.1  mycroft 		/*
   1361   1.1  mycroft 		 * If we're going to reject the message, don't bother storing
   1362   1.1  mycroft 		 * the incoming bytes.  But still, we need to ACK them.
   1363   1.1  mycroft 		 */
   1364   1.1  mycroft 		if (!(aic->flags & AIC_DROP_MSGI)) {
   1365   1.1  mycroft 			/* Get next message byte */
   1366   1.1  mycroft 			aic->imess[aic->imlen] = inb(SCSIDAT);
   1367   1.1  mycroft 			/*
   1368   1.1  mycroft 			 * This testing is suboptimal, but most messages will
   1369   1.1  mycroft 			 * be of the one byte variety, so it should not effect
   1370   1.1  mycroft 			 * performance significantly.
   1371   1.1  mycroft 			 */
   1372   1.1  mycroft 			if (IS1BYTEMSG(aic->imess[0]))
   1373   1.1  mycroft 				break;
   1374   1.1  mycroft 			if (IS2BYTEMSG(aic->imess[0]) && aic->imlen == 1)
   1375   1.1  mycroft 				break;
   1376   1.1  mycroft 			if (ISEXTMSG(aic->imess[0]) && aic->imlen > 0) {
   1377   1.1  mycroft 				if (aic->imlen == AIC_MAX_MSG_LEN) {
   1378   1.1  mycroft 					aic->flags |= AIC_DROP_MSGI;
   1379   1.1  mycroft 					aic_sched_msgout(SEND_REJECT);
   1380   1.1  mycroft 				}
   1381   1.1  mycroft 				extlen = aic->imess[1] ? aic->imess[1] : 256;
   1382   1.1  mycroft 				if (aic->imlen == extlen + 2)
   1383   1.1  mycroft 					break; /* Got it all */
   1384   1.1  mycroft 			}
   1385   1.1  mycroft 		}
   1386   1.1  mycroft 		/* If we reach this spot we're either:
   1387   1.1  mycroft 		 * a) in the middle of a multi-byte message or
   1388   1.1  mycroft 		 * b) we're dropping bytes
   1389   1.1  mycroft 		 */
   1390   1.1  mycroft 		outb(SXFRCTL0, CHEN|SPIOEN);
   1391   1.1  mycroft 		inb(SCSIDAT); /* Really read it (ACK it, that is) */
   1392   1.1  mycroft 		outb(SXFRCTL0, CHEN);
   1393   1.1  mycroft 		aic->imlen++;
   1394   1.1  mycroft 
   1395   1.1  mycroft 		/*
   1396   1.1  mycroft 		 * We expect the bytes in a multibyte message to arrive
   1397   1.1  mycroft 		 * relatively close in time, a few microseconds apart.
   1398   1.1  mycroft 		 * Therefore we will spinwait for some small amount of time
   1399   1.1  mycroft 		 * waiting for the next byte.
   1400   1.1  mycroft 		 */
   1401   1.1  mycroft 		spincount = MINIFUDGE(delaycount) * AIC_MSGI_SPIN;
   1402   1.1  mycroft 		LOGLINE(aic);
   1403   1.1  mycroft 		while (spincount-- && !((sstat1 = inb(SSTAT1)) & REQINIT))
   1404   1.1  mycroft 			;
   1405   1.1  mycroft 		if (spincount == -1 || sstat1 & (PHASEMIS|BUSFREE))
   1406   1.1  mycroft 			return;
   1407   1.1  mycroft 	}
   1408   1.1  mycroft 	/* Now we should have a complete message (1 byte, 2 byte and moderately
   1409   1.1  mycroft 	 * long extended messages).  We only handle extended messages which
   1410   1.1  mycroft 	 * total length is shorter than AIC_MAX_MSG_LEN.  Longer messages will
   1411   1.1  mycroft 	 * be amputated.  (Return XS_BOBBITT ?)
   1412   1.1  mycroft 	 */
   1413   1.1  mycroft 	if (aic->state == AIC_HASNEXUS) {
   1414   1.1  mycroft 		struct acb *acb = aic->nexus;
   1415   1.4  mycroft 		struct aic_tinfo *ti = &aic->tinfo[acb->xs->sc_link->target];
   1416   1.1  mycroft 		int offs, per, rate;
   1417   1.1  mycroft 
   1418   1.1  mycroft 		outb(SIMODE1, ENSCSIRST|ENPHASEMIS|ENBUSFREE|ENSCSIPERR);
   1419   1.1  mycroft 		switch (aic->imess[0]) {
   1420   1.1  mycroft 		case MSG_CMDCOMPLETE:
   1421   1.1  mycroft 			if (!acb) {
   1422   1.2  mycroft 				aic_sched_msgout(SEND_ABORT);
   1423   1.1  mycroft 				printf("aic: CMDCOMPLETE but no command?\n");
   1424   1.1  mycroft 				break;
   1425   1.1  mycroft 			}
   1426   1.1  mycroft 			if (aic->dleft < 0) {
   1427   1.5      cgd 				struct scsi_link *sc = acb->xs->sc_link;
   1428   1.1  mycroft 				printf("aic: %d extra bytes from %d:%d\n",
   1429   1.1  mycroft 				    -aic->dleft, sc->target, sc->lun);
   1430   1.1  mycroft 				acb->dleft = 0;
   1431   1.1  mycroft 			}
   1432   1.1  mycroft 			acb->xs->resid = acb->dleft = aic->dleft;
   1433   1.1  mycroft 			aic->flags |= AIC_BUSFREE_OK;
   1434   1.1  mycroft 			untimeout(aic_timeout, acb);
   1435   1.1  mycroft 			aic_done(acb);
   1436   1.1  mycroft 			break;
   1437   1.1  mycroft 		case MSG_MESSAGE_REJECT:
   1438   1.1  mycroft 			if (aic_debug & AIC_SHOWMISC)
   1439   1.1  mycroft 				printf("aic: our msg rejected by target\n");
   1440   1.1  mycroft 			if (aic->flags & AIC_SYNCHNEGO) {
   1441   1.1  mycroft 				ti->syncdata = 0;
   1442   1.1  mycroft 				ti->persgst = ti->offsgst = 0;
   1443   1.1  mycroft 				aic->flags &= ~AIC_SYNCHNEGO;
   1444   1.1  mycroft 				ti->flags &= ~DO_NEGOTIATE;
   1445   1.1  mycroft 			}
   1446   1.1  mycroft 			/* Not all targets understand INITIATOR_DETECTED_ERR */
   1447   1.4  mycroft 			if (aic->msgout == SEND_INIT_DET_ERR)
   1448   1.1  mycroft 				aic_sched_msgout(SEND_ABORT);
   1449   1.1  mycroft 			break;
   1450   1.1  mycroft 		case MSG_NOOP:	/* Will do! Immediately, sir!*/
   1451   1.1  mycroft 			break;	/* Hah, that was easy! */
   1452   1.1  mycroft 		case MSG_DISCONNECT:
   1453   1.1  mycroft 			if (!acb) {
   1454   1.1  mycroft 				aic_sched_msgout(SEND_ABORT);
   1455   1.1  mycroft 				printf("aic: nothing to DISCONNECT\n");
   1456   1.1  mycroft 				break;
   1457   1.1  mycroft 			}
   1458   1.1  mycroft 			ti->dconns++;
   1459   1.4  mycroft 			TAILQ_INSERT_HEAD(&aic->nexus_list, acb, chain);
   1460   1.1  mycroft 			acb = aic->nexus = NULL;
   1461   1.1  mycroft 			aic->state = AIC_IDLE;
   1462   1.1  mycroft 			aic->flags |= AIC_BUSFREE_OK;
   1463   1.1  mycroft 			break;
   1464   1.1  mycroft 		case MSG_SAVEDATAPOINTER:
   1465   1.1  mycroft 			if (!acb) {
   1466   1.1  mycroft 				aic_sched_msgout(SEND_ABORT);
   1467   1.1  mycroft 				printf("aic: no DATAPOINTERs to save\n");
   1468   1.4  mycroft 				break;
   1469   1.1  mycroft 			}
   1470   1.1  mycroft 			acb->dleft = aic->dleft;
   1471   1.1  mycroft 			acb->daddr = aic->dp;
   1472   1.1  mycroft 			break;
   1473   1.1  mycroft 		case MSG_RESTOREPOINTERS:
   1474   1.1  mycroft 			if (!acb) {
   1475   1.1  mycroft 				aic_sched_msgout(SEND_ABORT);
   1476   1.1  mycroft 				printf("aic: no DATAPOINTERs to restore\n");
   1477   1.1  mycroft 				break;
   1478   1.1  mycroft 			}
   1479   1.1  mycroft 			aic->dp = acb->daddr;
   1480   1.1  mycroft 			aic->dleft = acb->dleft;
   1481   1.1  mycroft 			break;
   1482   1.1  mycroft 		case MSG_EXTENDED:
   1483   1.1  mycroft 			switch (aic->imess[2]) {
   1484   1.1  mycroft 			case MSG_EXT_SDTR:
   1485   1.1  mycroft 				per = aic->imess[3] * 4;
   1486   1.1  mycroft 				rate = (per + 49 - 100)/50;
   1487   1.1  mycroft 				offs = aic->imess[4];
   1488   1.1  mycroft 				if (offs == 0)
   1489   1.1  mycroft 					ti->syncdata = 0;
   1490   1.2  mycroft 				else if (rate > 7) {
   1491   1.1  mycroft 					/* Too slow for aic6360. Do asynch
   1492   1.1  mycroft 					 * instead.  Renegotiate the deal.
   1493   1.1  mycroft 					 */
   1494   1.1  mycroft 					ti->persgst = 0;
   1495   1.1  mycroft 					ti->offsgst = 0;
   1496   1.4  mycroft 					aic_sched_msgout(SEND_SDTR);
   1497   1.1  mycroft 				} else {
   1498   1.1  mycroft 					rate = rate<<4 | offs;
   1499   1.1  mycroft 					ti->syncdata = rate;
   1500   1.1  mycroft 				}
   1501   1.4  mycroft 				break;
   1502   1.1  mycroft 			default: /* Extended messages we don't handle */
   1503   1.1  mycroft 				aic_sched_msgout(SEND_REJECT);
   1504   1.4  mycroft 				break;
   1505   1.1  mycroft 			}
   1506   1.1  mycroft 			break;
   1507   1.1  mycroft 		default:
   1508   1.1  mycroft 			aic_sched_msgout(SEND_REJECT);
   1509   1.1  mycroft 			break;
   1510   1.1  mycroft 		}
   1511   1.1  mycroft 	} else if (aic->state == AIC_RESELECTED) {
   1512   1.1  mycroft 		struct scsi_link *sc;
   1513   1.1  mycroft 		struct acb *acb;
   1514   1.1  mycroft 		u_char selid, lunit;
   1515   1.1  mycroft 		/*
   1516   1.1  mycroft 		 * Which target is reselecting us? (The ID bit really)
   1517   1.1  mycroft 		 */
   1518   1.1  mycroft 		selid = inb(SELID) & ~(1<<AIC_SCSI_HOSTID);
   1519   1.1  mycroft 		if (MSG_ISIDENT(aic->imess[0])) { 	/* Identify? */
   1520   1.1  mycroft 			AIC_MISC(("searching "));
   1521   1.1  mycroft 			/* Search wait queue for disconnected cmd
   1522   1.1  mycroft 			 * The list should be short, so I haven't bothered with
   1523   1.1  mycroft 			 * any more sophisticated structures than a simple
   1524   1.1  mycroft 			 * singly linked list.
   1525   1.1  mycroft 			 */
   1526   1.1  mycroft 			lunit = aic->imess[0] & 0x07;
   1527   1.1  mycroft 			for (acb = aic->nexus_list.tqh_first; acb;
   1528   1.1  mycroft 			    acb = acb->chain.tqe_next) {
   1529   1.1  mycroft 				sc = acb->xs->sc_link;
   1530   1.1  mycroft 				if (sc->lun == lunit &&
   1531   1.1  mycroft 				    selid == (1<<sc->target)) {
   1532   1.1  mycroft 					TAILQ_REMOVE(&aic->nexus_list, acb,
   1533   1.2  mycroft 					    chain);
   1534   1.2  mycroft 					break;
   1535   1.1  mycroft 				}
   1536   1.1  mycroft 			}
   1537   1.1  mycroft 			if (!acb) { /* Invalid reselection! */
   1538   1.1  mycroft 				aic_sched_msgout(SEND_ABORT);
   1539   1.1  mycroft 				printf("aic: invalid reselect (idbit=0x%2x)\n",
   1540   1.1  mycroft 				    selid);
   1541   1.1  mycroft 			} else { /* Reestablish nexus */
   1542   1.1  mycroft 				/* Setup driver data structures and
   1543   1.1  mycroft 				 * do an implicit RESTORE POINTERS
   1544   1.1  mycroft 				 */
   1545   1.1  mycroft 				aic->nexus = acb;
   1546   1.2  mycroft 				aic->dp = acb->daddr;
   1547   1.1  mycroft 				aic->dleft = acb->dleft;
   1548   1.2  mycroft 				aic->tinfo[sc->target].lubusy |= (1<<sc->lun);
   1549   1.1  mycroft 				outb(SCSIRATE,aic->tinfo[sc->target].syncdata);
   1550   1.1  mycroft 				AIC_MISC(("... found acb"));
   1551   1.2  mycroft 				aic->state = AIC_HASNEXUS;
   1552   1.2  mycroft 			}
   1553   1.1  mycroft 		} else {
   1554   1.1  mycroft 			printf("aic: bogus reselect (no IDENTIFY) %0x2x\n",
   1555   1.4  mycroft 			    selid);
   1556   1.4  mycroft 			aic_sched_msgout(SEND_DEV_RESET);
   1557   1.4  mycroft 		}
   1558   1.4  mycroft 	} else { /* Neither AIC_HASNEXUS nor AIC_RESELECTED! */
   1559   1.4  mycroft 		printf("aic: unexpected message in; will send DEV_RESET\n");
   1560   1.1  mycroft 		aic_sched_msgout(SEND_DEV_RESET);
   1561   1.1  mycroft 	}
   1562   1.1  mycroft 	/* Must not forget to ACK the last message byte ... */
   1563   1.1  mycroft 	outb(SXFRCTL0, CHEN|SPIOEN);
   1564   1.1  mycroft 	inb(SCSIDAT);
   1565   1.1  mycroft 	outb(SXFRCTL0, CHEN);
   1566   1.1  mycroft 	outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   1567   1.1  mycroft }
   1568   1.1  mycroft 
   1569   1.1  mycroft 
   1570   1.1  mycroft /* The message out (and in) stuff is a bit complicated:
   1571   1.1  mycroft  * If the target requests another message (sequence) without
   1572   1.1  mycroft  * having changed phase in between it really asks for a
   1573   1.1  mycroft  * retransmit, probably due to parity error(s).
   1574   1.1  mycroft  * The following messages can be sent:
   1575   1.1  mycroft  * IDENTIFY	   @ These 3 stems from scsi command activity
   1576   1.1  mycroft  * BUS_DEV_RESET   @
   1577   1.1  mycroft  * IDENTIFY + SDTR @
   1578   1.1  mycroft  * MESSAGE_REJECT if MSGI doesn't make sense
   1579   1.1  mycroft  * MESSAGE_PARITY_ERROR if MSGI spots a parity error
   1580   1.1  mycroft  * NOOP if asked for a message and there's nothing to send
   1581   1.1  mycroft  */
   1582   1.1  mycroft static void
   1583   1.1  mycroft aic_msgout(aic)
   1584   1.1  mycroft 	register struct aic_softc *aic;
   1585   1.1  mycroft {
   1586   1.1  mycroft 	register u_short iobase = aic->iobase;
   1587   1.1  mycroft 	struct aic_tinfo *ti;
   1588   1.1  mycroft 	struct acb *acb;
   1589   1.1  mycroft 	u_char dmastat, scsisig;
   1590   1.1  mycroft 
   1591   1.1  mycroft 	/* First determine what to send. If we haven't seen a
   1592   1.1  mycroft 	 * phasechange this is a retransmission request.
   1593   1.1  mycroft 	 */
   1594   1.1  mycroft 	outb(SCSISIGO, PH_MSGO);
   1595   1.1  mycroft 	if (aic->prevphase != PH_MSGO) { /* NOT a retransmit */
   1596   1.1  mycroft 		/* Pick up highest priority message */
   1597   1.1  mycroft 		aic->msgout = aic->msgpriq & -aic->msgpriq; /* What message? */
   1598   1.1  mycroft 		aic->omlen = 1;	/* "Default" message len */
   1599   1.1  mycroft 		switch (aic->msgout) {
   1600   1.1  mycroft 		case SEND_SDTR:	/* Also implies an IDENTIFY message */
   1601   1.1  mycroft 			acb = aic->nexus;
   1602   1.1  mycroft 			ti = &aic->tinfo[acb->xs->sc_link->target];
   1603   1.1  mycroft 			aic->omess[1] = MSG_EXTENDED;
   1604   1.1  mycroft 			aic->omess[2] = 3;
   1605   1.2  mycroft 			aic->omess[3] = MSG_EXT_SDTR;
   1606   1.1  mycroft 			aic->omess[4] = ti->persgst >> 2;
   1607   1.1  mycroft 			aic->omess[5] = ti->offsgst;
   1608   1.1  mycroft 			aic->omlen = 6;
   1609   1.1  mycroft 			/* Fallthrough! */
   1610   1.1  mycroft 		case SEND_IDENTIFY:
   1611   1.1  mycroft 			if (aic->state != AIC_HASNEXUS) {
   1612   1.1  mycroft 				printf("aic at line %d: no nexus", __LINE__);
   1613   1.1  mycroft 				Debugger();
   1614   1.1  mycroft 			}
   1615   1.1  mycroft 			acb = aic->nexus;
   1616   1.1  mycroft 			aic->omess[0] = MSG_IDENTIFY(acb->xs->sc_link->lun);
   1617   1.1  mycroft 			break;
   1618   1.1  mycroft 		case SEND_DEV_RESET:
   1619   1.1  mycroft 			aic->omess[0] = MSG_BUS_DEV_RESET;
   1620   1.1  mycroft 			aic->flags |= AIC_BUSFREE_OK;
   1621   1.1  mycroft 			break;
   1622   1.1  mycroft 		case SEND_PARITY_ERROR:
   1623   1.1  mycroft 			aic->omess[0] = MSG_PARITY_ERR;
   1624   1.1  mycroft 			break;
   1625   1.1  mycroft 		case SEND_ABORT:
   1626   1.1  mycroft 			aic->omess[0] = MSG_ABORT;
   1627   1.1  mycroft 			aic->flags |= AIC_BUSFREE_OK;
   1628   1.1  mycroft 			break;
   1629   1.1  mycroft 		case SEND_INIT_DET_ERR:
   1630   1.1  mycroft 			aic->omess[0] = MSG_INITIATOR_DET_ERR;
   1631   1.1  mycroft 			break;
   1632   1.1  mycroft 		case SEND_REJECT:
   1633   1.4  mycroft 			aic->omess[0] = MSG_MESSAGE_REJECT;
   1634   1.1  mycroft 			break;
   1635   1.1  mycroft 		default:
   1636   1.1  mycroft 			aic->omess[0] = MSG_NOOP;
   1637   1.1  mycroft 			break;
   1638   1.1  mycroft 		}
   1639   1.1  mycroft 		aic->omp = aic->omess;
   1640   1.1  mycroft 	} else if (aic->omp == &aic->omess[aic->omlen]) {
   1641   1.1  mycroft 		/* Have sent the message at least once, this is a retransmit.
   1642   1.1  mycroft 		 */
   1643   1.1  mycroft 		AIC_MISC(("retransmitting "));
   1644   1.1  mycroft 		if (aic->omlen > 1)
   1645   1.1  mycroft 			outb(SCSISIGO, PH_MSGO|ATNO);
   1646   1.1  mycroft 	}
   1647   1.1  mycroft 	/* else, we're in the middle of a multi-byte message */
   1648   1.1  mycroft 	outb(SXFRCTL0, CHEN|SPIOEN);
   1649   1.1  mycroft 	outb(DMACNTRL0, INTEN|RSTFIFO);
   1650   1.1  mycroft 	outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   1651   1.1  mycroft 	do {
   1652   1.1  mycroft 		LOGLINE(aic);
   1653   1.1  mycroft 		do {
   1654   1.1  mycroft 			aic->phase = aicphase(aic);
   1655   1.1  mycroft 		} while (aic->phase == PH_INVALID);
   1656   1.1  mycroft 		if (aic->phase != PH_MSGO)
   1657   1.1  mycroft 			/* Target left MSGO, possibly to reject our
   1658   1.1  mycroft 			 * message
   1659   1.2  mycroft 			 */
   1660   1.1  mycroft 			break;
   1661   1.1  mycroft 		/* Clear ATN before last byte */
   1662   1.1  mycroft 		if (aic->omp == &aic->omess[aic->omlen-1])
   1663   1.1  mycroft 			outb(CLRSINT1, CLRATNO);
   1664   1.1  mycroft 		outb(SCSIDAT, *aic->omp++);	/* Send MSG */
   1665   1.1  mycroft 		LOGLINE(aic);
   1666   1.1  mycroft 		while (inb(SCSISIGI) & ACKO)
   1667   1.1  mycroft 			;
   1668   1.1  mycroft 	} while (aic->omp != &aic->omess[aic->omlen]);
   1669   1.1  mycroft 	aic->progress = aic->omp != aic->omess;
   1670   1.1  mycroft 	/* We get here in two ways:
   1671   1.1  mycroft 	 * a) phase != MSGO.  Target is probably going to reject our message
   1672   1.1  mycroft 	 * b) aic->omp == &aic->omess[aic->omlen], i.e. the message has been
   1673   1.1  mycroft 	 *    transmitted correctly and accepted by the target.
   1674   1.1  mycroft 	 */
   1675   1.1  mycroft 	if (aic->phase == PH_MSGO) {	/* Message accepted by target! */
   1676   1.1  mycroft 		aic->msgpriq &= ~aic->msgout;
   1677   1.1  mycroft 		aic->msgout = 0;
   1678   1.1  mycroft 	}
   1679   1.1  mycroft 	outb(SXFRCTL0, CHEN);	/* Disable SPIO */
   1680   1.1  mycroft 	outb(SIMODE0, 0); /* Setup interrupts before leaving */
   1681   1.1  mycroft 	outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   1682   1.1  mycroft 	/* Enabled ints: SCSIPERR, SCSIRSTI (unexpected)
   1683   1.1  mycroft 	 * 		 REQINIT (expected) BUSFREE (possibly expected)
   1684   1.1  mycroft 	 */
   1685   1.1  mycroft }
   1686   1.1  mycroft 
   1687   1.1  mycroft /* aic_dataout: perform a data transfer using the FIFO datapath in the aic6360
   1688   1.1  mycroft  * Precondition: The SCSI bus should be in the DOUT phase, with REQ asserted
   1689   1.1  mycroft  * and ACK deasserted (i.e. waiting for a data byte)
   1690   1.1  mycroft  * This new revision has been optimized (I tried) to make the common case fast,
   1691   1.1  mycroft  * and the rarer cases (as a result) somewhat more comlex
   1692   1.1  mycroft  */
   1693   1.1  mycroft void
   1694   1.6  mycroft aic_dataout(aic)
   1695   1.1  mycroft 	register struct aic_softc *aic;
   1696   1.6  mycroft {
   1697   1.1  mycroft 	register u_short iobase = aic->iobase;
   1698   1.1  mycroft 	register u_char dmastat;
   1699   1.6  mycroft 	struct acb *acb = aic->nexus;
   1700   1.6  mycroft 	int amount, olddleft = aic->dleft;
   1701   1.1  mycroft #define DOUTAMOUNT 128		/* Full FIFO */
   1702   1.6  mycroft 
   1703   1.1  mycroft 	/* Enable DATA OUT transfers */
   1704   1.1  mycroft 	outb(SCSISIGO, PH_DOUT);
   1705   1.1  mycroft 	outb(CLRSINT1, CLRPHASECHG);
   1706   1.1  mycroft 	/* Clear FIFOs and counters */
   1707   1.1  mycroft 	outb(SXFRCTL0, CHEN|CLRSTCNT|CLRCH);
   1708   1.1  mycroft 	outb(DMACNTRL0, WRITE|INTEN|RSTFIFO);
   1709   1.1  mycroft 	/* Enable FIFOs */
   1710   1.1  mycroft 	outb(SXFRCTL0, SCSIEN|DMAEN|CHEN);
   1711   1.1  mycroft 	outb(DMACNTRL0, ENDMA|DWORDPIO|WRITE|INTEN);
   1712   1.1  mycroft 
   1713   1.1  mycroft 	/* Setup to detect:
   1714   1.1  mycroft 	 * PHASEMIS & PHASECHG: target has left the DOUT phase
   1715   1.1  mycroft 	 * SCSIRST: something just pulled the RST line.
   1716   1.1  mycroft 	 * BUSFREE: target has unexpectedly left the DOUT phase
   1717   1.6  mycroft 	 */
   1718   1.6  mycroft 	outb(SIMODE1, ENPHASEMIS|ENSCSIRST|ENBUSFREE|ENPHASECHG);
   1719   1.6  mycroft 
   1720   1.1  mycroft 	/* I have tried to make the main loop as tight as possible.  This
   1721   1.6  mycroft 	 * means that some of the code following the loop is a bit more
   1722   1.6  mycroft 	 * complex than otherwise.
   1723   1.1  mycroft 	 */
   1724   1.6  mycroft 	while (aic->dleft) {
   1725   1.6  mycroft 		int xfer;
   1726   1.6  mycroft 
   1727   1.6  mycroft 		LOGLINE(aic);
   1728   1.6  mycroft 
   1729   1.6  mycroft 		for (;;) {
   1730   1.6  mycroft 			dmastat = inb(DMASTAT);
   1731   1.1  mycroft 			if (dmastat & DFIFOEMP)
   1732   1.1  mycroft 				break;
   1733   1.6  mycroft 			if (dmastat & INTSTAT)
   1734   1.6  mycroft 				goto phasechange;
   1735   1.6  mycroft 		}
   1736   1.6  mycroft 
   1737   1.6  mycroft 		xfer = min(DOUTAMOUNT, aic->dleft);
   1738   1.6  mycroft 
   1739   1.1  mycroft #if AIC_USE_DWORDS
   1740   1.6  mycroft 		if (xfer >= 12) {
   1741   1.6  mycroft 			outsl(DMADATALONG, aic->dp, xfer/4);
   1742   1.6  mycroft 			aic->dleft -= xfer & ~3;
   1743   1.6  mycroft 			aic->dp += xfer & ~3;
   1744   1.6  mycroft 			xfer &= 3;
   1745   1.6  mycroft 		}
   1746   1.1  mycroft #else
   1747   1.1  mycroft 		if (xfer >= 8) {
   1748   1.6  mycroft 			outsw(DMADATA, aic->dp, xfer/2);
   1749   1.6  mycroft 			aic->dleft -= xfer & ~1;
   1750   1.6  mycroft 			aic->dp += xfer & ~1;
   1751   1.6  mycroft 			xfer &= 1;
   1752   1.6  mycroft 		}
   1753   1.6  mycroft #endif
   1754   1.6  mycroft 
   1755   1.1  mycroft 		if (xfer) {
   1756   1.6  mycroft 			outb(DMACNTRL0, ENDMA|B8MODE|INTEN);
   1757   1.1  mycroft 			outsb(DMADATA, aic->dp, xfer);
   1758   1.6  mycroft 			aic->dleft -= xfer;
   1759   1.1  mycroft 			aic->dp += xfer;
   1760   1.6  mycroft 			outb(DMACNTRL0, ENDMA|DWORDPIO|INTEN);
   1761   1.6  mycroft 		}
   1762   1.6  mycroft 	}
   1763   1.6  mycroft 
   1764   1.6  mycroft 	/* See the bytes off chip */
   1765   1.1  mycroft 	for (;;) {
   1766   1.6  mycroft 		dmastat = inb(DMASTAT);
   1767   1.6  mycroft 		if ((dmastat & DFIFOEMP) && (inb(SSTAT2) & SEMPTY))
   1768   1.1  mycroft 			break;
   1769   1.6  mycroft 		if (dmastat & INTSTAT)
   1770   1.1  mycroft 			goto phasechange;
   1771   1.1  mycroft 	}
   1772   1.1  mycroft 
   1773   1.1  mycroft phasechange:
   1774   1.1  mycroft 	/* We now have the data off chip.  */
   1775   1.1  mycroft 	outb(SXFRCTL0, CHEN);
   1776   1.1  mycroft 
   1777   1.1  mycroft 	if (dmastat & INTSTAT) { /* Some sort of phasechange */
   1778   1.1  mycroft 		register u_char sstat2;
   1779   1.6  mycroft 		/* Stop transfers, do some accounting */
   1780   1.1  mycroft 		amount = inb(FIFOSTAT);
   1781   1.1  mycroft 		sstat2 = inb(SSTAT2);
   1782   1.1  mycroft 		if ((sstat2 & 7) == 0)
   1783   1.1  mycroft 			amount += sstat2 & SFULL ? 8 : 0;
   1784   1.1  mycroft 		else
   1785   1.1  mycroft 			amount += sstat2 & 7;
   1786   1.1  mycroft 		aic->dleft += amount;
   1787   1.1  mycroft 		aic->dp -= amount;
   1788   1.1  mycroft 		AIC_MISC(("+%d ", amount));
   1789   1.1  mycroft 	}
   1790   1.1  mycroft 
   1791   1.1  mycroft 	outb(DMACNTRL0, RSTFIFO|INTEN);
   1792   1.1  mycroft 	LOGLINE(aic);
   1793   1.1  mycroft 	while (inb(SXFRCTL0) & SCSIEN)
   1794   1.1  mycroft 		;
   1795   1.1  mycroft 	outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   1796   1.1  mycroft 	/* Enabled ints: BUSFREE, SCSIPERR, SCSIRSTI (unexpected)
   1797   1.1  mycroft 	 * 		 REQINIT (expected)
   1798   1.1  mycroft 	 */
   1799   1.1  mycroft 	aic->progress = olddleft != aic->dleft;
   1800   1.1  mycroft 	return;
   1801   1.1  mycroft }
   1802   1.1  mycroft 
   1803   1.1  mycroft /* aic_datain: perform data transfers using the FIFO datapath in the aic6360
   1804   1.1  mycroft  * Precondition: The SCSI bus should be in the DIN phase, with REQ asserted
   1805   1.1  mycroft  * and ACK deasserted (i.e. at least one byte is ready).
   1806   1.1  mycroft  * For now, uses a pretty dumb algorithm, hangs around until all data has been
   1807   1.1  mycroft  * transferred.  This, is OK for fast targets, but not so smart for slow
   1808   1.1  mycroft  * targets which don't disconnect or for huge transfers.
   1809   1.1  mycroft  */
   1810   1.1  mycroft void
   1811   1.6  mycroft aic_datain(aic)
   1812   1.1  mycroft 	register struct aic_softc *aic;
   1813   1.1  mycroft {
   1814   1.1  mycroft 	register u_short iobase = aic->iobase;
   1815   1.1  mycroft 	register u_char dmastat;
   1816   1.1  mycroft 	struct acb *acb = aic->nexus;
   1817   1.1  mycroft 	int amount, olddleft = aic->dleft;
   1818   1.1  mycroft #define DINAMOUNT 128		/* Default amount of data to transfer */
   1819   1.1  mycroft 
   1820   1.1  mycroft 	/* Enable DATA IN transfers */
   1821   1.1  mycroft 	outb(SCSISIGO, PH_DIN);
   1822   1.1  mycroft 	outb(CLRSINT1, CLRPHASECHG);
   1823   1.1  mycroft 	/* Clear FIFOs and counters */
   1824   1.6  mycroft 	outb(SXFRCTL0, CHEN|CLRSTCNT|CLRCH);
   1825   1.1  mycroft 	outb(DMACNTRL0, INTEN|RSTFIFO);
   1826   1.1  mycroft 	/* Enable FIFOs */
   1827   1.1  mycroft 	outb(SXFRCTL0, SCSIEN|DMAEN|CHEN);
   1828   1.1  mycroft 	outb(DMACNTRL0, ENDMA|DWORDPIO|INTEN);
   1829   1.6  mycroft 
   1830   1.6  mycroft 	outb(SIMODE1, ENSCSIRST|ENPHASEMIS|ENBUSFREE|ENPHASECHG);
   1831   1.6  mycroft 
   1832   1.6  mycroft 	/* We leave this loop if one or more of the following is true:
   1833   1.1  mycroft 	 * a) phase != PH_DIN && FIFOs are empty
   1834   1.6  mycroft 	 * b) SCSIRSTI is set (a reset has occurred) or busfree is detected.
   1835   1.6  mycroft 	 */
   1836   1.6  mycroft 	while (aic->dleft) {
   1837   1.1  mycroft 		int done = 0;
   1838   1.6  mycroft 		int xfer;
   1839   1.6  mycroft 
   1840   1.6  mycroft 		LOGLINE(aic);
   1841   1.6  mycroft 
   1842   1.6  mycroft 		/* Wait for fifo half full or phase mismatch */
   1843   1.6  mycroft 		for (;;) {
   1844   1.6  mycroft 			dmastat = inb(DMASTAT);
   1845   1.6  mycroft 			if (dmastat & (DFIFOFULL|INTSTAT))
   1846   1.6  mycroft 				break;
   1847   1.6  mycroft 		}
   1848   1.6  mycroft 
   1849   1.6  mycroft 		if (dmastat & DFIFOFULL)
   1850   1.6  mycroft 			xfer = DINAMOUNT;
   1851   1.6  mycroft 		else {
   1852   1.1  mycroft 			while ((inb(SSTAT2) & SEMPTY) == 0)
   1853   1.1  mycroft 				;
   1854   1.6  mycroft 			xfer = inb(FIFOSTAT);
   1855   1.6  mycroft 			done = 1;
   1856   1.6  mycroft 		}
   1857   1.6  mycroft 
   1858   1.6  mycroft 		xfer = min(xfer, aic->dleft);
   1859   1.6  mycroft 
   1860   1.1  mycroft #if AIC_USE_DWORDS
   1861   1.6  mycroft 		if (xfer >= 12) {
   1862   1.6  mycroft 			insl(DMADATALONG, aic->dp, xfer/4);
   1863   1.6  mycroft 			aic->dleft -= xfer & ~3;
   1864   1.6  mycroft 			aic->dp += xfer & ~3;
   1865   1.6  mycroft 			xfer &= 3;
   1866   1.6  mycroft 		}
   1867   1.1  mycroft #else
   1868   1.6  mycroft 		if (xfer >= 8) {
   1869   1.6  mycroft 			insw(DMADATA, aic->dp, xfer/2);
   1870   1.6  mycroft 			aic->dleft -= xfer & ~1;
   1871   1.6  mycroft 			aic->dp += xfer & ~1;
   1872   1.6  mycroft 			xfer &= 1;
   1873   1.6  mycroft 		}
   1874   1.6  mycroft #endif
   1875   1.6  mycroft 
   1876   1.6  mycroft 		if (xfer) {
   1877   1.6  mycroft 			outb(DMACNTRL0, ENDMA|B8MODE|INTEN);
   1878   1.1  mycroft 			insb(DMADATA, aic->dp, xfer);
   1879   1.1  mycroft 			aic->dleft -= xfer;
   1880   1.6  mycroft 			aic->dp += xfer;
   1881   1.6  mycroft 			outb(DMACNTRL0, ENDMA|DWORDPIO|INTEN);
   1882   1.6  mycroft 		}
   1883   1.6  mycroft 
   1884   1.6  mycroft 		if (done)
   1885   1.6  mycroft 			break;
   1886   1.1  mycroft 	}
   1887   1.1  mycroft 
   1888   1.1  mycroft #if 0
   1889   1.1  mycroft 	if (aic->dleft)
   1890   1.1  mycroft 		printf("residual %d\n", aic->dleft);
   1891   1.1  mycroft #endif
   1892   1.1  mycroft 
   1893   1.1  mycroft 	aic->progress = olddleft != aic->dleft;
   1894   1.1  mycroft 	/* Some SCSI-devices are rude enough to transfer more data than what
   1895   1.1  mycroft 	 * was requested, e.g. 2048 bytes from a CD-ROM instead of the
   1896   1.6  mycroft 	 * requested 512.  Test for progress, i.e. real transfers.  If no real
   1897   1.6  mycroft 	 * transfers have been performed (acb->dleft is probably already zero)
   1898   1.6  mycroft 	 * and the FIFO is not empty, waste some bytes....
   1899   1.6  mycroft 	 */
   1900   1.6  mycroft 	if (!aic->progress) {
   1901   1.6  mycroft 		int extra = 0;
   1902   1.1  mycroft 		LOGLINE(aic);
   1903   1.1  mycroft 
   1904   1.6  mycroft 		for (;;) {
   1905   1.1  mycroft 			dmastat = inb(DMASTAT);
   1906   1.2  mycroft 			if (dmastat & DFIFOEMP)
   1907   1.1  mycroft 				break;
   1908   1.1  mycroft 			(void) inb(DMADATA); /* Throw it away */
   1909   1.6  mycroft 			extra++;
   1910   1.1  mycroft 		}
   1911   1.1  mycroft 
   1912   1.6  mycroft 		AIC_MISC(("aic: %d extra bytes from %d:%d\n", extra,
   1913   1.1  mycroft 		    acb->xs->sc_link->target, acb->xs->sc_link->lun));
   1914   1.1  mycroft 		aic->progress = extra;
   1915   1.1  mycroft 	}
   1916   1.1  mycroft 
   1917   1.1  mycroft 	/* Stop the FIFO data path */
   1918   1.1  mycroft 	outb(SXFRCTL0, CHEN);
   1919   1.1  mycroft 
   1920   1.1  mycroft 	outb(DMACNTRL0, RSTFIFO|INTEN);
   1921   1.1  mycroft 	/* Come back when REQ is set again */
   1922   1.1  mycroft 	outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   1923   1.1  mycroft 	LOGLINE(aic);
   1924   1.1  mycroft }
   1925   1.1  mycroft 
   1926   1.1  mycroft 
   1927   1.1  mycroft /*
   1928   1.1  mycroft  * This is the workhorse routine of the driver.
   1929   1.1  mycroft  * Deficiencies (for now):
   1930   1.1  mycroft  * 1) always uses programmed I/O
   1931   1.1  mycroft  * 2) doesn't support synchronous transfers properly (yet)
   1932   1.1  mycroft  */
   1933   1.1  mycroft 
   1934   1.1  mycroft int
   1935   1.1  mycroft aicintr(aic)
   1936   1.1  mycroft 	register struct aic_softc *aic;
   1937   1.1  mycroft {
   1938   1.1  mycroft 	register struct acb *acb;
   1939   1.1  mycroft 	register struct scsi_link *sc;
   1940   1.1  mycroft 	register u_short iobase = aic->iobase;
   1941   1.1  mycroft 	struct scsi_xfer *xs;
   1942   1.1  mycroft 	struct aic_tinfo *ti;
   1943   1.1  mycroft 	int done, amount;
   1944   1.1  mycroft 	u_char sstat0, sstat1, scsisig, dmastat, sstat2;
   1945   1.1  mycroft 	u_char scsiseq, simode0, simode1, sxfrctl0;
   1946   1.1  mycroft 
   1947   1.1  mycroft 	LOGLINE(aic);
   1948   1.1  mycroft 	/* Clear INTEN.  This is important if we're running with edge
   1949   1.1  mycroft 	 * triggered interrupts as we don't guarantee that all interrupts will
   1950   1.1  mycroft 	 * be served during one single invocation of this routine, i.e. we may
   1951   1.1  mycroft 	 * need another edge.
   1952   1.1  mycroft 	 */
   1953   1.1  mycroft 	outb(DMACNTRL0, 0);
   1954   1.2  mycroft 	AIC_TRACE(("aicintr\n"));
   1955   1.1  mycroft 
   1956   1.1  mycroft 	/*
   1957   1.1  mycroft 	 * 1st check for abnormal conditions, such as reset or parity errors
   1958   1.1  mycroft 	 */
   1959   1.1  mycroft 	sstat1 = inb(SSTAT1);
   1960   1.1  mycroft 	AIC_MISC(("s1:0x%02x ", sstat1));
   1961   1.2  mycroft 	if (sstat1 & (SCSIRSTI|SCSIPERR)) {
   1962   1.1  mycroft 		if (sstat1 & SCSIRSTI) {
   1963   1.1  mycroft 			printf("aic: reset in -- reinitializing....\n");
   1964   1.1  mycroft 			aic_init(aic); /* Restart everything */
   1965   1.1  mycroft 			LOGLINE(aic);
   1966   1.1  mycroft 			outb(DMACNTRL0, INTEN);
   1967   1.1  mycroft 			return 1;
   1968   1.1  mycroft 		} else {
   1969   1.1  mycroft 			printf("aic: SCSI bus parity error\n");
   1970   1.1  mycroft 			outb(CLRSINT1, CLRSCSIPERR);
   1971   1.1  mycroft 			if (aic->prevphase == PH_MSGI)
   1972   1.1  mycroft 				aic_sched_msgout(SEND_PARITY_ERROR);
   1973   1.1  mycroft 			else
   1974   1.1  mycroft 				aic_sched_msgout(SEND_INIT_DET_ERR);
   1975   1.1  mycroft 		}
   1976   1.1  mycroft 	}
   1977   1.1  mycroft 
   1978   1.1  mycroft 	/*
   1979   1.1  mycroft 	 * If we're not already busy doing something test for the following
   1980   1.1  mycroft 	 * conditions:
   1981   1.1  mycroft 	 * 1) We have been reselected by something
   1982   1.1  mycroft 	 * 2) We have selected something successfully
   1983   1.2  mycroft 	 * 3) Our selection process has timed out
   1984   1.1  mycroft 	 * 4) This is really a bus free interrupt just to get a new command
   1985   1.1  mycroft 	 *    going?
   1986   1.1  mycroft 	 * 5) Spurious interrupt?
   1987   1.1  mycroft 	 */
   1988   1.1  mycroft 	sstat0 = inb(SSTAT0);
   1989   1.1  mycroft 	AIC_MISC(("s0:0x%02x ", sstat0));
   1990   1.1  mycroft 	if (aic->state != AIC_HASNEXUS) { /* No nexus yet */
   1991   1.1  mycroft 		if (sstat0 & SELDI) {
   1992   1.1  mycroft 			LOGLINE(aic);
   1993   1.1  mycroft 			/* We have been reselected. Things to do:
   1994   1.1  mycroft 			 * a) If we're trying to select something ourselves
   1995   1.1  mycroft 			 *    back off the current command.
   1996   1.1  mycroft 			 * b) "Wait" for a message in phase (IDENTIFY)
   1997   1.1  mycroft 			 * c) Call aic_msgin() to get the identify message and
   1998   1.1  mycroft 			 *    retrieve the disconnected command from the wait
   1999   1.1  mycroft 			 *    queue.
   2000   1.1  mycroft 			 */
   2001   1.1  mycroft 			AIC_MISC(("reselect "));
   2002   1.1  mycroft 			/* If we're trying to select a target ourselves,
   2003   1.1  mycroft 			 * push our command back into the rdy list.
   2004   1.1  mycroft 			 */
   2005   1.1  mycroft 			if (aic->state == AIC_SELECTING) {
   2006   1.1  mycroft 				AIC_MISC(("backoff selector "));
   2007   1.1  mycroft 				TAILQ_INSERT_HEAD(&aic->ready_list, aic->nexus,
   2008   1.1  mycroft 				    chain);
   2009   1.1  mycroft 				aic->nexus = NULL;
   2010   1.1  mycroft 			}
   2011   1.1  mycroft 			aic->state = AIC_RESELECTED;
   2012   1.1  mycroft 			/* Clear interrupts, disable future selection stuff
   2013   1.1  mycroft 			 * including select interrupts and timeouts
   2014   1.1  mycroft 			 */
   2015   1.1  mycroft 			outb(CLRSINT0, CLRSELDI);
   2016   1.1  mycroft 			outb(SCSISEQ, 0);
   2017   1.1  mycroft 			outb(SIMODE0, 0);
   2018   1.1  mycroft 			/* Setup chip so we may detect spurious busfree
   2019   1.2  mycroft 			 * conditions later.
   2020   1.1  mycroft 			 */
   2021   1.1  mycroft 			outb(CLRSINT1, CLRBUSFREE);
   2022   1.1  mycroft 			outb(SIMODE1, ENSCSIRST|ENBUSFREE|
   2023   1.1  mycroft 			     ENSCSIPERR|ENREQINIT);
   2024   1.1  mycroft 			/* Now, we're expecting an IDENTIFY message. */
   2025   1.1  mycroft 			aic->phase = aicphase(aic);
   2026   1.1  mycroft 			if (aic->phase & PH_PSBIT) {
   2027   1.1  mycroft 				LOGLINE(aic);
   2028   1.1  mycroft 				outb(DMACNTRL0, INTEN);
   2029   1.1  mycroft 				return 1; /* Come back when REQ is set */
   2030   1.2  mycroft 			}
   2031   1.1  mycroft 			if (aic->phase == PH_MSGI)
   2032   1.1  mycroft 				aic_msgin(aic);	/* Handle identify message */
   2033   1.1  mycroft 			else {
   2034   1.1  mycroft 				/* Things are seriously fucked up.
   2035   1.2  mycroft 				 * Pull the brakes, i.e. RST
   2036   1.1  mycroft 				 */
   2037   1.2  mycroft 				printf("aic at line %d: target didn't identify\n", __LINE__);
   2038   1.1  mycroft 				Debugger();
   2039   1.1  mycroft 				aic_init(aic);
   2040   1.2  mycroft 				return 1;
   2041   1.2  mycroft 			}
   2042   1.2  mycroft 			if (aic->state != AIC_HASNEXUS) {/* IDENTIFY fail?! */
   2043   1.1  mycroft 				printf("aic at line %d: identify failed\n",
   2044   1.1  mycroft 				    __LINE__);
   2045   1.2  mycroft 				aic_init(aic);
   2046   1.1  mycroft 				return 1;
   2047   1.1  mycroft 			} else {
   2048   1.1  mycroft 				outb(SIMODE1,
   2049   1.1  mycroft 				    ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   2050   1.1  mycroft 				/* Fallthrough to HASNEXUS part of aicintr */
   2051   1.1  mycroft 			}
   2052   1.1  mycroft 		} else if (sstat0 & SELDO) {
   2053   1.1  mycroft 			LOGLINE(aic);
   2054   1.2  mycroft 			/* We have selected a target. Things to do:
   2055   1.1  mycroft 			 * a) Determine what message(s) to send.
   2056   1.1  mycroft 			 * b) Verify that we're still selecting the target.
   2057   1.1  mycroft 			 * c) Mark device as busy.
   2058   1.1  mycroft 			 */
   2059   1.1  mycroft 			acb = aic->nexus;
   2060   1.1  mycroft 			if (!acb) {
   2061   1.1  mycroft 				printf("aic at line %d: missing acb", __LINE__);
   2062   1.1  mycroft 				Debugger();
   2063   1.1  mycroft 			}
   2064   1.1  mycroft 			sc = acb->xs->sc_link;
   2065   1.1  mycroft 			ti = &aic->tinfo[sc->target];
   2066   1.1  mycroft 			if (acb->xs->flags & SCSI_RESET)
   2067   1.1  mycroft 				aic->msgpriq = SEND_DEV_RESET;
   2068   1.1  mycroft 			else if (ti->flags & DO_NEGOTIATE)
   2069   1.1  mycroft 				aic->msgpriq = SEND_IDENTIFY|SEND_SDTR;
   2070   1.1  mycroft 			else
   2071   1.1  mycroft 				aic->msgpriq = SEND_IDENTIFY;
   2072   1.1  mycroft 			/* Setup chip to enable later testing for busfree
   2073   1.1  mycroft 			 * conditions
   2074   1.1  mycroft 			 */
   2075   1.1  mycroft 			outb(CLRSINT1, CLRBUSFREE);
   2076   1.1  mycroft 			outb(SCSISEQ, 0); /* Stop selection stuff */
   2077   1.1  mycroft 			nandreg(SIMODE0, ENSELDO); /* No more selectout ints */
   2078   1.1  mycroft 			sstat0 = inb(SSTAT0);
   2079   1.1  mycroft 			if (sstat0 & SELDO) { /* Still selected!? */
   2080   1.1  mycroft 				outb(SIMODE0, 0);
   2081   1.1  mycroft 				outb(SIMODE1, ENSCSIRST|ENSCSIPERR|
   2082   1.1  mycroft 				     ENBUSFREE|ENREQINIT);
   2083   1.1  mycroft 				aic->state = AIC_HASNEXUS;
   2084   1.1  mycroft 				aic->flags = 0;
   2085   1.1  mycroft 				aic->prevphase = PH_INVALID;
   2086   1.1  mycroft 				aic->dp = acb->daddr;
   2087   1.1  mycroft 				aic->dleft = acb->dleft;
   2088   1.1  mycroft 				ti->lubusy |= (1<<sc->lun);
   2089   1.5      cgd 				AIC_MISC(("select ok "));
   2090   1.1  mycroft 			} else {
   2091   1.1  mycroft 				/* Has seen busfree since selection, i.e.
   2092   1.1  mycroft 				 * a "spurious" selection. Shouldn't happen.
   2093   1.1  mycroft 				 */
   2094   1.1  mycroft 				printf("aic: unexpected busfree\n");
   2095   1.2  mycroft 				xs->error = XS_DRIVER_STUFFUP;
   2096   1.1  mycroft 				untimeout(aic_timeout, acb);
   2097   1.1  mycroft 				aic_done(acb);
   2098   1.1  mycroft 			}
   2099   1.1  mycroft 			LOGLINE(aic);
   2100   1.1  mycroft 			outb(DMACNTRL0, INTEN);
   2101   1.1  mycroft 			return 1;
   2102   1.2  mycroft 		} else if (sstat1 & SELTO) {
   2103   1.1  mycroft 			/* Selection timed out. What to do:
   2104   1.1  mycroft 			 * Disable selections out and fail the command with
   2105   1.1  mycroft 			 * code XS_TIMEOUT.
   2106   1.1  mycroft 			 */
   2107   1.1  mycroft 			acb = aic->nexus;
   2108   1.1  mycroft 			if (!acb) {
   2109   1.1  mycroft 				printf("aic at line %d: missing acb", __LINE__);
   2110   1.5      cgd 				Debugger();
   2111   1.1  mycroft 			}
   2112   1.1  mycroft 			outb(SCSISEQ, ENRESELI|ENAUTOATNP);
   2113   1.1  mycroft 			outb(SXFRCTL1, 0);
   2114   1.1  mycroft 			outb(CLRSINT1, CLRSELTIMO);
   2115   1.2  mycroft 			aic->state = AIC_IDLE;
   2116   1.1  mycroft 			acb->xs->error = XS_TIMEOUT;
   2117   1.1  mycroft 			untimeout(aic_timeout, acb);
   2118   1.1  mycroft 			aic_done(acb);
   2119   1.1  mycroft 			LOGLINE(aic);
   2120   1.1  mycroft 			outb(DMACNTRL0, INTEN);
   2121   1.1  mycroft 			return 1;
   2122   1.1  mycroft 		} else {
   2123   1.1  mycroft 			/* Assume a bus free interrupt.  What to do:
   2124   1.1  mycroft 			 * Start selecting.
   2125   1.1  mycroft 			 */
   2126   1.1  mycroft 			if (aic->state == AIC_IDLE)
   2127   1.1  mycroft 				aic_sched(aic);
   2128   1.1  mycroft 			else
   2129   1.1  mycroft 				AIC_MISC(("Extra aic6360 interrupt."));
   2130   1.1  mycroft 			LOGLINE(aic);
   2131   1.1  mycroft 			outb(DMACNTRL0, INTEN);
   2132   1.2  mycroft 			return 1;
   2133   1.1  mycroft 		}
   2134   1.1  mycroft 	}
   2135   1.1  mycroft 	/* Driver is now in state AIC_HASNEXUS, i.e. we have a current command
   2136   1.1  mycroft 	 * working the SCSI bus.
   2137   1.1  mycroft 	 */
   2138   1.1  mycroft 	acb = aic->nexus;
   2139   1.2  mycroft 	if (aic->state != AIC_HASNEXUS || acb == NULL) {
   2140   1.1  mycroft 		printf("aic: no nexus!!\n");
   2141   1.1  mycroft 		Debugger();
   2142   1.1  mycroft 	}
   2143   1.1  mycroft 
   2144   1.1  mycroft 	/* What sort of transfer does the bus signal? */
   2145   1.2  mycroft 	aic->phase = aicphase(aic);
   2146   1.1  mycroft 	if (!(aic->phase & PH_PSBIT)) /* not a pseudo phase */
   2147   1.1  mycroft 		outb(SCSISIGO, aic->phase);
   2148   1.1  mycroft 	outb(CLRSINT1, CLRPHASECHG);
   2149   1.1  mycroft 	/* These interrupts are enabled by default:
   2150   1.1  mycroft 	 * SCSIRSTI, SCSIPERR, BUSFREE, REQINIT
   2151   1.1  mycroft 	 */
   2152   1.1  mycroft 	switch (aic->phase) {
   2153   1.1  mycroft 	case PH_MSGO:
   2154   1.1  mycroft 		LOGLINE(aic);
   2155   1.1  mycroft 		if (aic_debug & AIC_SHOWMISC)
   2156   1.1  mycroft 			printf("PH_MSGO ");
   2157   1.1  mycroft 		aic_msgout(aic);
   2158   1.1  mycroft 		aic->prevphase = PH_MSGO;
   2159   1.1  mycroft 		/* Setup interrupts before leaving */
   2160   1.1  mycroft 		outb(SIMODE0, 0);
   2161   1.1  mycroft 		outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   2162   1.1  mycroft 		/* Enabled ints: SCSIPERR, SCSIRSTI (unexpected)
   2163   1.1  mycroft 		 * 		 REQINIT (expected) BUSFREE (possibly expected)
   2164   1.1  mycroft 		 */
   2165   1.1  mycroft 		break;
   2166   1.1  mycroft 	case PH_CMD:		/* CMD phase & REQ asserted */
   2167   1.1  mycroft 		LOGLINE(aic);
   2168   1.1  mycroft 		if (aic_debug & AIC_SHOWMISC)
   2169   1.1  mycroft 			printf("PH_CMD 0x%02x (%d) ",
   2170   1.1  mycroft 			       acb->cmd.opcode, acb->clen);
   2171   1.1  mycroft 		outb(SCSISIGO, PH_CMD);
   2172   1.1  mycroft 		/* Use FIFO for CMDs. Assumes that no cmd > 128 bytes. OK? */
   2173   1.1  mycroft 		/* Clear hostFIFO and enable EISA-hostFIFO transfers */
   2174   1.1  mycroft 		outb(DMACNTRL0, WRITE|RSTFIFO|INTEN);	/* 3(4) */
   2175   1.1  mycroft 		/* Clear scsiFIFO and enable SCSI-interface
   2176   1.1  mycroft 		   & hostFIFO-scsiFIFO transfers */
   2177   1.1  mycroft 		outb(SXFRCTL0, CHEN|CLRCH|CLRSTCNT); 	/* 4 */
   2178   1.1  mycroft 		outb(SXFRCTL0, SCSIEN|DMAEN|CHEN); 	/* 5 */
   2179   1.1  mycroft 		outb(DMACNTRL0, ENDMA|WRITE|INTEN); 	/* 3+6 */
   2180   1.1  mycroft 		/* What (polled) interrupts to enable */
   2181   1.1  mycroft 		outb(SIMODE1, ENPHASEMIS|ENSCSIRST|ENBUSFREE|ENSCSIPERR);
   2182   1.2  mycroft 		/* DFIFOEMP is set, FIFO (128 byte) is always big enough */
   2183   1.2  mycroft 		outsw(DMADATA, (short *)&acb->cmd, acb->clen>>1);
   2184   1.1  mycroft 
   2185   1.2  mycroft 		/* Wait for SCSI FIFO to drain */
   2186   1.1  mycroft 		LOGLINE(aic);
   2187   1.1  mycroft 		do {
   2188   1.5      cgd 			sstat2 = inb(SSTAT2);
   2189   1.1  mycroft 		} while (!(sstat2 & SEMPTY) && !(inb(DMASTAT) & INTSTAT));
   2190   1.1  mycroft 		if (!(inb(SSTAT2) & SEMPTY)) {
   2191   1.1  mycroft 			printf("aic at line %d: SCSI-FIFO didn't drain\n",
   2192   1.1  mycroft 			    __LINE__);
   2193   1.1  mycroft 			Debugger();
   2194   1.1  mycroft 			acb->xs->error = XS_DRIVER_STUFFUP;
   2195   1.1  mycroft 			untimeout(aic_timeout, acb);
   2196   1.1  mycroft 			aic_done(acb);
   2197   1.1  mycroft 			aic_init(aic);
   2198   1.1  mycroft 			return 1;
   2199   1.2  mycroft 		}
   2200   1.2  mycroft 		outb(SXFRCTL0, CHEN);	/* Clear SCSIEN & DMAEN */
   2201   1.1  mycroft 		outb(SIMODE0, 0);
   2202   1.2  mycroft 		outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR);
   2203   1.1  mycroft 		LOGLINE(aic);
   2204   1.1  mycroft 		do {
   2205   1.5      cgd 			sxfrctl0 = inb(SXFRCTL0);
   2206   1.1  mycroft 		} while (sxfrctl0 & SCSIEN && !(inb(DMASTAT) & INTSTAT));
   2207   1.1  mycroft 		if (sxfrctl0 & SCSIEN) {
   2208   1.1  mycroft 			printf("aic at line %d: scsi xfer never finished\n",
   2209   1.1  mycroft 			    __LINE__);
   2210   1.1  mycroft 			Debugger();
   2211   1.1  mycroft 			acb->xs->error = XS_DRIVER_STUFFUP;
   2212   1.1  mycroft 			untimeout(aic_timeout, acb);
   2213   1.1  mycroft 			aic_done(acb);
   2214   1.1  mycroft 			aic_init(aic);
   2215   1.1  mycroft 			return 1;
   2216   1.1  mycroft 		}
   2217   1.1  mycroft 		outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   2218   1.1  mycroft 		/* Enabled ints: BUSFREE, SCSIPERR, SCSIRSTI (unexpected)
   2219   1.1  mycroft 		 * 		 REQINIT (expected)
   2220   1.1  mycroft 		 */
   2221   1.1  mycroft 		aic->prevphase = PH_CMD;
   2222   1.1  mycroft 		break;
   2223   1.1  mycroft 	case PH_DOUT:
   2224   1.1  mycroft 		LOGLINE(aic);
   2225   1.1  mycroft 		AIC_MISC(("PH_DOUT [%d] ",aic->dleft));
   2226   1.1  mycroft 		aic_dataout(aic);
   2227   1.1  mycroft 		aic->prevphase = PH_DOUT;
   2228   1.1  mycroft 		break;
   2229   1.1  mycroft 	case PH_MSGI:
   2230   1.1  mycroft 		LOGLINE(aic);
   2231   1.1  mycroft 		if (aic_debug & AIC_SHOWMISC)
   2232   1.1  mycroft 			printf("PH_MSGI ");
   2233   1.1  mycroft 		aic_msgin(aic);
   2234   1.1  mycroft 		outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   2235   1.1  mycroft 		aic->prevphase = PH_MSGI;
   2236   1.1  mycroft 		break;
   2237   1.1  mycroft 	case PH_DIN:
   2238   1.1  mycroft 		LOGLINE(aic);
   2239   1.1  mycroft 		if (aic_debug & AIC_SHOWMISC)
   2240   1.1  mycroft 			printf("PH_DIN ");
   2241   1.1  mycroft 		aic_datain(aic);
   2242   1.1  mycroft 		aic->prevphase = PH_DIN;
   2243   1.1  mycroft 		break;
   2244   1.1  mycroft 	case PH_STAT:
   2245   1.1  mycroft 		LOGLINE(aic);
   2246   1.1  mycroft 		if (aic_debug & AIC_SHOWMISC)
   2247   1.1  mycroft 			printf("PH_STAT ");
   2248   1.1  mycroft 		outb(SCSISIGO, PH_STAT);
   2249   1.1  mycroft 		outb(SXFRCTL0, CHEN|SPIOEN);
   2250   1.1  mycroft 		outb(DMACNTRL0, RSTFIFO|INTEN);
   2251   1.1  mycroft 		outb(SIMODE1, ENSCSIRST|ENPHASEMIS|ENBUSFREE|ENSCSIPERR);
   2252   1.1  mycroft 		acb->stat = inb(SCSIDAT);
   2253   1.1  mycroft 		outb(SXFRCTL0, CHEN);
   2254   1.1  mycroft 		if (aic_debug & AIC_SHOWMISC)
   2255   1.1  mycroft 			printf("0x%02x ", acb->stat);
   2256   1.1  mycroft 		outb(SIMODE1, ENSCSIRST|ENBUSFREE|ENSCSIPERR|ENREQINIT);
   2257   1.1  mycroft 		aic->prevphase = PH_STAT;
   2258   1.1  mycroft 		break;
   2259   1.2  mycroft 	case PH_INVALID:
   2260   1.2  mycroft 		LOGLINE(aic);
   2261   1.2  mycroft 		break;
   2262   1.1  mycroft 	case PH_BUSFREE:
   2263   1.1  mycroft 		LOGLINE(aic);
   2264   1.1  mycroft 		if (aic->flags & AIC_BUSFREE_OK) { /*It's fun the 1st time.. */
   2265   1.1  mycroft 			aic->flags &= ~AIC_BUSFREE_OK;
   2266   1.2  mycroft 		} else {
   2267   1.1  mycroft 			printf("aic at line %d: unexpected busfree phase\n",
   2268   1.1  mycroft 			    __LINE__);
   2269   1.1  mycroft 			Debugger();
   2270   1.1  mycroft 		}
   2271   1.1  mycroft 		break;
   2272   1.1  mycroft         default:
   2273   1.1  mycroft 		printf("aic at line %d: bogus bus phase\n", __LINE__);
   2274   1.1  mycroft 		Debugger();
   2275   1.1  mycroft 		break;
   2276   1.1  mycroft 	}
   2277   1.5      cgd 	LOGLINE(aic);
   2278   1.1  mycroft 	outb(DMACNTRL0, INTEN);
   2279   1.1  mycroft 	return 1;
   2280   1.5      cgd }
   2281   1.1  mycroft 
   2282   1.1  mycroft void
   2283   1.1  mycroft aic_timeout(arg)
   2284   1.1  mycroft 	void *arg;
   2285   1.1  mycroft {
   2286   1.1  mycroft 	int s = splbio();
   2287   1.1  mycroft 	struct acb *acb = (struct acb *)arg;
   2288   1.1  mycroft 	struct aic_softc *aic;
   2289   1.1  mycroft 
   2290   1.1  mycroft 	aic = acb->xs->sc_link->adapter_softc;
   2291   1.1  mycroft 	sc_print_addr(acb->xs->sc_link);
   2292   1.1  mycroft 	acb->xs->error = XS_TIMEOUT;
   2293   1.1  mycroft 	printf("timed out\n");
   2294   1.1  mycroft 
   2295   1.1  mycroft 	aic_done(acb);
   2296   1.1  mycroft 	splx(s);
   2297   1.1  mycroft }
   2298   1.1  mycroft 
   2299   1.1  mycroft #ifdef AIC_DEBUG
   2301   1.1  mycroft /*
   2302   1.1  mycroft  * The following functions are mostly used for debugging purposes, either
   2303   1.1  mycroft  * directly called from the driver or from the kernel debugger.
   2304   1.1  mycroft  */
   2305   1.1  mycroft 
   2306   1.2  mycroft void
   2307   1.2  mycroft aic_show_scsi_cmd(acb)
   2308   1.2  mycroft 	struct acb *acb;
   2309   1.2  mycroft {
   2310   1.1  mycroft 	u_char  *b = (u_char *)&acb->cmd;
   2311   1.1  mycroft 	struct scsi_link *sc = acb->xs->sc_link;
   2312   1.1  mycroft 	int i;
   2313   1.1  mycroft 
   2314   1.2  mycroft 	sc_print_addr(sc);
   2315   1.2  mycroft 	if (!(acb->xs->flags & SCSI_RESET)) {
   2316   1.1  mycroft 		for (i = 0; i < acb->clen; i++) {
   2317   1.1  mycroft 			if (i)
   2318   1.1  mycroft 				printf(",");
   2319   1.1  mycroft 			printf("%x", b[i]);
   2320   1.1  mycroft 		}
   2321   1.1  mycroft 		printf("\n");
   2322   1.2  mycroft 	} else
   2323   1.2  mycroft 		printf("RESET\n");
   2324   1.1  mycroft }
   2325   1.2  mycroft 
   2326   1.1  mycroft void
   2327   1.1  mycroft aic_print_acb(acb)
   2328   1.1  mycroft 	struct acb *acb;
   2329   1.1  mycroft {
   2330   1.1  mycroft 
   2331   1.1  mycroft 	printf("acb@%x xs=%x flags=%x", acb, acb->xs, acb->flags);
   2332   1.1  mycroft 	printf(" daddr=%x dleft=%d stat=%x\n",
   2333   1.1  mycroft 	    (long)acb->daddr, acb->dleft, acb->stat);
   2334   1.1  mycroft 	aic_show_scsi_cmd(acb);
   2335   1.1  mycroft }
   2336   1.1  mycroft 
   2337   1.1  mycroft void
   2338   1.1  mycroft aic_print_active_acb()
   2339   1.1  mycroft {
   2340   1.1  mycroft 	struct acb *acb;
   2341   1.1  mycroft 	struct aic_softc *aic = aiccd.cd_devs[0];
   2342   1.1  mycroft 
   2343   1.1  mycroft 	printf("ready list:\n");
   2344   1.1  mycroft 	for (acb = aic->ready_list.tqh_first; acb; acb = acb->chain.tqe_next)
   2345   1.1  mycroft 		aic_print_acb(acb);
   2346   1.1  mycroft 	printf("nexus:\n");
   2347   1.1  mycroft 	if (aic->nexus)
   2348   1.1  mycroft 		aic_print_acb(aic->nexus);
   2349   1.1  mycroft 	printf("nexus list:\n");
   2350   1.1  mycroft 	for (acb = aic->nexus_list.tqh_first; acb; acb = acb->chain.tqe_next)
   2351   1.1  mycroft 		aic_print_acb(acb);
   2352   1.2  mycroft }
   2353   1.1  mycroft 
   2354   1.2  mycroft void
   2355   1.1  mycroft aic_dump6360()
   2356   1.2  mycroft {
   2357   1.2  mycroft 	u_short iobase = 0x340;
   2358   1.1  mycroft 
   2359   1.2  mycroft 	printf("aic6360: SCSISEQ=%x SXFRCTL0=%x SXFRCTL1=%x SCSISIGI=%x\n",
   2360   1.1  mycroft 	    inb(SCSISEQ), inb(SXFRCTL0), inb(SXFRCTL1), inb(SCSISIGI));
   2361   1.1  mycroft 	printf("         SSTAT0=%x SSTAT1=%x SSTAT2=%x SSTAT3=%x SSTAT4=%x\n",
   2362   1.1  mycroft 	    inb(SSTAT0), inb(SSTAT1), inb(SSTAT2), inb(SSTAT3), inb(SSTAT4));
   2363   1.1  mycroft 	printf("         SIMODE0=%x SIMODE1=%x DMACNTRL0=%x DMACNTRL1=%x DMASTAT=%x\n",
   2364   1.1  mycroft 	    inb(SIMODE0), inb(SIMODE1), inb(DMACNTRL0), inb(DMACNTRL1),
   2365   1.1  mycroft 	    inb(DMASTAT));
   2366   1.1  mycroft 	printf("         FIFOSTAT=%d SCSIBUS=0x%x\n",
   2367   1.1  mycroft 	    inb(FIFOSTAT), inb(SCSIBUS));
   2368   1.1  mycroft }
   2369   1.1  mycroft 
   2370   1.2  mycroft void
   2371   1.1  mycroft aic_dump_driver()
   2372   1.2  mycroft {
   2373   1.2  mycroft 	struct aic_softc *aic = aiccd.cd_devs[0];
   2374   1.1  mycroft 	struct aic_tinfo *ti;
   2375   1.1  mycroft 	int i;
   2376   1.1  mycroft 
   2377   1.1  mycroft 	printf("nexus=%x phase=%x prevphase=%x\n", aic->nexus, aic->phase,
   2378   1.1  mycroft 	    aic->prevphase);
   2379   1.1  mycroft 	printf("state=%x msgin=%x msgpriq=%x msgout=%x imlen=%d omlen=%d\n",
   2380   1.1  mycroft 	    aic->state, aic->imess[0], aic->msgpriq, aic->msgout, aic->imlen,
   2381   1.2  mycroft 	    aic->omlen);
   2382   1.1  mycroft 	printf("history:");
   2383   1.1  mycroft 	i = aic->hp;
   2384   1.2  mycroft 	do {
   2385   1.2  mycroft 		printf(" %d", aic->history[i]);
   2386   1.1  mycroft 		i = (i + 1) % AIC_HSIZE;
   2387   1.1  mycroft 	} while (i != aic->hp);
   2388   1.1  mycroft 	printf("*\n");
   2389                	for (i = 0; i < 7; i++) {
   2390                		ti = &aic->tinfo[i];
   2391                		printf("tinfo%d: %d cmds %d disconnects %d timeouts",
   2392                		    i, ti->cmds, ti->dconns, ti->touts);
   2393                		printf(" %d senses flags=%x\n", ti->senses, ti->flags);
   2394                	}
   2395                }
   2396                #endif
   2397