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mha.c revision 1.3
      1  1.3  thorpej /*	$NetBSD: mha.c,v 1.3 1998/01/12 21:13:46 thorpej Exp $	*/
      2  1.1      oki 
      3  1.1      oki /*
      4  1.1      oki  * Copyright (c) 1996 Masaru Oki, Takumi Nakamura and Masanobu Saitoh.  All rights reserved.
      5  1.1      oki  * Copyright (c) 1994, 1995, 1996 Charles M. Hannum.  All rights reserved.
      6  1.1      oki  *
      7  1.1      oki  * Redistribution and use in source and binary forms, with or without
      8  1.1      oki  * modification, are permitted provided that the following conditions
      9  1.1      oki  * are met:
     10  1.1      oki  * 1. Redistributions of source code must retain the above copyright
     11  1.1      oki  *    notice, this list of conditions and the following disclaimer.
     12  1.1      oki  * 2. Redistributions in binary form must reproduce the above copyright
     13  1.1      oki  *    notice, this list of conditions and the following disclaimer in the
     14  1.1      oki  *    documentation and/or other materials provided with the distribution.
     15  1.1      oki  * 3. All advertising materials mentioning features or use of this software
     16  1.1      oki  *    must display the following acknowledgement:
     17  1.1      oki  *	This product includes software developed by Charles M. Hannum.
     18  1.1      oki  * 4. The name of the author may not be used to endorse or promote products
     19  1.1      oki  *    derived from this software without specific prior written permission.
     20  1.1      oki  *
     21  1.1      oki  * Copyright (c) 1994 Jarle Greipsland
     22  1.1      oki  * All rights reserved.
     23  1.1      oki  *
     24  1.1      oki  * Redistribution and use in source and binary forms, with or without
     25  1.1      oki  * modification, are permitted provided that the following conditions
     26  1.1      oki  * are met:
     27  1.1      oki  * 1. Redistributions of source code must retain the above copyright
     28  1.1      oki  *    notice, this list of conditions and the following disclaimer.
     29  1.1      oki  * 2. Redistributions in binary form must reproduce the above copyright
     30  1.1      oki  *    notice, this list of conditions and the following disclaimer in the
     31  1.1      oki  *    documentation and/or other materials provided with the distribution.
     32  1.1      oki  * 3. The name of the author may not be used to endorse or promote products
     33  1.1      oki  *    derived from this software without specific prior written permission.
     34  1.1      oki  *
     35  1.1      oki  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     36  1.1      oki  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     37  1.1      oki  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     38  1.1      oki  * DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
     39  1.1      oki  * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
     40  1.1      oki  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     41  1.1      oki  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     42  1.1      oki  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
     43  1.1      oki  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
     44  1.1      oki  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     45  1.1      oki  * POSSIBILITY OF SUCH DAMAGE.
     46  1.1      oki  */
     47  1.1      oki 
     48  1.1      oki /* Synchronous data transfers? */
     49  1.1      oki #define SPC_USE_SYNCHRONOUS	0
     50  1.1      oki #define SPC_SYNC_REQ_ACK_OFS 	8
     51  1.1      oki 
     52  1.1      oki /* Include debug functions?  At the end of this file there are a bunch of
     53  1.1      oki  * functions that will print out various information regarding queued SCSI
     54  1.1      oki  * commands, driver state and chip contents.  You can call them from the
     55  1.1      oki  * kernel debugger.  If you set SPC_DEBUG to 0 they are not included (the
     56  1.1      oki  * kernel uses less memory) but you lose the debugging facilities.
     57  1.1      oki  */
     58  1.1      oki #define SPC_DEBUG		0
     59  1.1      oki 
     60  1.1      oki /* End of customizable parameters */
     61  1.1      oki 
     62  1.1      oki /*
     63  1.1      oki  * MB86601A SCSI Protocol Controller (SPC) routines for MANKAI Mach-2
     64  1.1      oki  */
     65  1.1      oki 
     66  1.1      oki #include <sys/types.h>
     67  1.1      oki #include <sys/param.h>
     68  1.1      oki #include <sys/systm.h>
     69  1.1      oki #include <sys/kernel.h>
     70  1.1      oki #include <sys/errno.h>
     71  1.1      oki #include <sys/ioctl.h>
     72  1.1      oki #include <sys/device.h>
     73  1.1      oki #include <sys/buf.h>
     74  1.1      oki #include <sys/proc.h>
     75  1.1      oki #include <sys/user.h>
     76  1.1      oki #include <sys/queue.h>
     77  1.1      oki 
     78  1.1      oki #include <dev/scsipi/scsi_all.h>
     79  1.1      oki #include <dev/scsipi/scsipi_all.h>
     80  1.1      oki #include <dev/scsipi/scsi_message.h>
     81  1.1      oki #include <dev/scsipi/scsiconf.h>
     82  1.1      oki 
     83  1.1      oki #include <x68k/x68k/iodevice.h>
     84  1.1      oki #include <x68k/dev/mb86601reg.h>
     85  1.1      oki #include <x68k/dev/mhavar.h>
     86  1.1      oki #include <x68k/dev/dmavar.h>
     87  1.1      oki 
     88  1.1      oki #if 0
     89  1.1      oki #define WAIT {if (sc->sc_pc[2]) {printf("[W_%d", __LINE__); while (sc->sc_pc[2] & 0x40);printf("]");}}
     90  1.1      oki #else
     91  1.1      oki #define WAIT {while (sc->sc_pc[2] & 0x40);}
     92  1.1      oki #endif
     93  1.1      oki 
     94  1.1      oki #define SSR	(sc->sc_pc[2])
     95  1.1      oki #define	SS_IREQUEST	0x80
     96  1.1      oki #define	SS_BUSY		0x40
     97  1.1      oki #define	SS_DREG_FULL	0x02
     98  1.1      oki 
     99  1.1      oki #define	NSR	(sc->sc_pc[3])
    100  1.1      oki 
    101  1.1      oki #define	SIR	(sc->sc_pc[4])
    102  1.1      oki 
    103  1.1      oki #define	CMR	(sc->sc_pc[5])
    104  1.1      oki #define	CMD_SEL_AND_CMD	0x00
    105  1.1      oki #define	CMD_SELECT	0x09
    106  1.1      oki #define	CMD_SET_ATN	0x0a
    107  1.1      oki #define	CMD_RESET_ATN	0x0b
    108  1.1      oki #define	CMD_RESET_ACK	0x0d
    109  1.1      oki #define	CMD_SEND_FROM_MPU	0x10
    110  1.1      oki #define	CMD_SEND_FROM_DMA	0x11
    111  1.1      oki #define	CMD_RECEIVE_TO_MPU	0x12
    112  1.1      oki #define	CMD_RECEIVE_TO_DMA	0x13
    113  1.1      oki #define	CMD_RECEIVE_MSG	0x1a
    114  1.1      oki #define	CMD_RECEIVE_STS	0x1c
    115  1.1      oki #define	CMD_SOFT_RESET	0x40
    116  1.1      oki #define	CMD_SCSI_RESET	0x42
    117  1.1      oki #define	CMD_SET_UP_REG	0x43
    118  1.1      oki 
    119  1.1      oki #define	SCR	(sc->sc_pc[11])
    120  1.1      oki 
    121  1.1      oki #define	TMR	(sc->sc_pc[12])
    122  1.1      oki #define	TM_SYNC		0x80
    123  1.1      oki #define	TM_ASYNC	0x00
    124  1.1      oki 
    125  1.1      oki #define	WAR	(sc->sc_pc[15])
    126  1.1      oki #define	WA_MCSBUFWIN	0x00
    127  1.1      oki #define	WA_UPMWIN	0x80
    128  1.1      oki #define	WA_INITWIN	0xc0
    129  1.1      oki 
    130  1.1      oki #define	MBR	(sc->sc_pc[15])
    131  1.1      oki 
    132  1.1      oki #define ISCSR	(sc->sc_ps[2])
    133  1.1      oki 
    134  1.1      oki #define	CCR	(sc->sc_pcx[0])
    135  1.1      oki #define	OIR	(sc->sc_pcx[1])
    136  1.1      oki #define	AMR	(sc->sc_pcx[2])
    137  1.1      oki #define	SMR	(sc->sc_pcx[3])
    138  1.1      oki #define	SRR	(sc->sc_pcx[4])
    139  1.1      oki #define	STR	(sc->sc_pcx[5])
    140  1.1      oki #define	RTR	(sc->sc_pcx[6])
    141  1.1      oki #define	ATR	(sc->sc_pcx[7])
    142  1.1      oki #define	PER	(sc->sc_pcx[8])
    143  1.1      oki #define	IER	(sc->sc_pcx[9])
    144  1.1      oki #define	IE_ALL	0xBF
    145  1.1      oki 
    146  1.1      oki #define	GLR	(sc->sc_pcx[10])
    147  1.1      oki #define	DMR	(sc->sc_pcx[11])
    148  1.1      oki #define	IMR	(sc->sc_pcx[12])
    149  1.1      oki 
    150  1.1      oki 
    151  1.1      oki #ifndef DDB
    153  1.1      oki #define	Debugger() panic("should call debugger here (mha.c)")
    154  1.1      oki #endif /* ! DDB */
    155  1.1      oki 
    156  1.1      oki 
    157  1.1      oki #if SPC_DEBUG
    158  1.1      oki #define SPC_SHOWACBS	0x01
    159  1.1      oki #define SPC_SHOWINTS	0x02
    160  1.1      oki #define SPC_SHOWCMDS	0x04
    161  1.1      oki #define SPC_SHOWMISC	0x08
    162  1.1      oki #define SPC_SHOWTRAC	0x10
    163  1.1      oki #define SPC_SHOWSTART	0x20
    164  1.1      oki #define SPC_SHOWPHASE	0x40
    165  1.1      oki #define SPC_SHOWDMA	0x80
    166  1.1      oki #define SPC_SHOWCCMDS	0x100
    167  1.1      oki #define SPC_SHOWMSGS	0x200
    168  1.1      oki #define SPC_DOBREAK	0x400
    169  1.1      oki 
    170  1.1      oki int mha_debug =
    171  1.1      oki #if 0
    172  1.1      oki 0x7FF;
    173  1.1      oki #else
    174  1.1      oki SPC_SHOWSTART|SPC_SHOWTRAC;
    175  1.1      oki #endif
    176  1.1      oki 
    177  1.1      oki 
    178  1.1      oki #define SPC_ACBS(str)  do {if (mha_debug & SPC_SHOWACBS) printf str;} while (0)
    179  1.1      oki #define SPC_MISC(str)  do {if (mha_debug & SPC_SHOWMISC) printf str;} while (0)
    180  1.1      oki #define SPC_INTS(str)  do {if (mha_debug & SPC_SHOWINTS) printf str;} while (0)
    181  1.1      oki #define SPC_TRACE(str) do {if (mha_debug & SPC_SHOWTRAC) printf str;} while (0)
    182  1.1      oki #define SPC_CMDS(str)  do {if (mha_debug & SPC_SHOWCMDS) printf str;} while (0)
    183  1.1      oki #define SPC_START(str) do {if (mha_debug & SPC_SHOWSTART) printf str;}while (0)
    184  1.1      oki #define SPC_PHASE(str) do {if (mha_debug & SPC_SHOWPHASE) printf str;}while (0)
    185  1.1      oki #define SPC_DMA(str)   do {if (mha_debug & SPC_SHOWDMA) printf str;}while (0)
    186  1.1      oki #define SPC_MSGS(str)  do {if (mha_debug & SPC_SHOWMSGS) printf str;}while (0)
    187  1.1      oki #define	SPC_BREAK()    do {if ((mha_debug & SPC_DOBREAK) != 0) Debugger();} while (0)
    188  1.1      oki #define	SPC_ASSERT(x)  do {if (x) {} else {printf("%s at line %d: assertion failed\n", sc->sc_dev.dv_xname, __LINE__); Debugger();}} while (0)
    189  1.1      oki #else
    190  1.1      oki #define SPC_ACBS(str)
    191  1.1      oki #define SPC_MISC(str)
    192  1.1      oki #define SPC_INTS(str)
    193  1.1      oki #define SPC_TRACE(str)
    194  1.1      oki #define SPC_CMDS(str)
    195  1.1      oki #define SPC_START(str)
    196  1.1      oki #define SPC_PHASE(str)
    197  1.1      oki #define SPC_DMA(str)
    198  1.1      oki #define SPC_MSGS(str)
    199  1.1      oki #define	SPC_BREAK()
    200  1.1      oki #define	SPC_ASSERT(x)
    201  1.1      oki #endif
    202  1.1      oki 
    203  1.1      oki int	mhamatch	__P((struct device *, void *, void *));
    204  1.1      oki void	mhaattach	__P((struct device *, struct device *, void *));
    205  1.1      oki void	mhaselect	__P((struct mha_softc *,
    206  1.1      oki 				     u_char, u_char, u_char *, u_char));
    207  1.1      oki void	mha_scsi_reset	__P((struct mha_softc *));
    208  1.1      oki void	mha_reset	__P((struct mha_softc *));
    209  1.1      oki void	mha_free_acb	__P((struct mha_softc *, struct acb *, int));
    210  1.1      oki void	mha_sense	__P((struct mha_softc *, struct acb *));
    211  1.1      oki void	mha_msgin	__P((struct mha_softc *));
    212  1.1      oki void	mha_msgout	__P((struct mha_softc *));
    213  1.1      oki int	mha_dataout_pio	__P((struct mha_softc *, u_char *, int));
    214  1.1      oki int	mha_datain_pio	__P((struct mha_softc *, u_char *, int));
    215  1.1      oki int	mha_dataout	__P((struct mha_softc *, u_char *, int));
    216  1.1      oki int	mha_datain	__P((struct mha_softc *, u_char *, int));
    217  1.1      oki void	mha_abort	__P((struct mha_softc *, struct acb *));
    218  1.1      oki void 	mha_init	__P((struct mha_softc *));
    219  1.1      oki int	mha_scsi_cmd	__P((struct scsipi_xfer *));
    220  1.1      oki int	mha_poll	__P((struct mha_softc *, struct acb *));
    221  1.1      oki void	mha_sched	__P((struct mha_softc *));
    222  1.1      oki void	mha_done	__P((struct mha_softc *, struct acb *));
    223  1.1      oki int	mhaintr		__P((int));
    224  1.1      oki void	mha_timeout	__P((void *));
    225  1.1      oki void	mha_minphys	__P((struct buf *));
    226  1.1      oki void	mha_dequeue	__P((struct mha_softc *, struct acb *));
    227  1.1      oki inline void	mha_setsync	__P((struct mha_softc *, struct spc_tinfo *));
    228  1.1      oki #ifdef SPC_DEBUG
    229  1.1      oki void	mha_print_acb __P((struct acb *));
    230  1.1      oki void	mha_show_scsi_cmd __P((struct acb *));
    231  1.1      oki void	mha_print_active_acb __P((void));
    232  1.1      oki void	mha_dump_driver __P((struct mha_softc *));
    233  1.1      oki #endif
    234  1.1      oki volatile void *	mha_find	__P((int));
    235  1.1      oki 
    236  1.1      oki static int mha_dataio_dma __P((int, int, struct mha_softc *, u_char *, int));
    237  1.1      oki 
    238  1.1      oki struct cfattach mha_ca = {
    239  1.1      oki 	sizeof(struct mha_softc), mhamatch, mhaattach
    240  1.1      oki };
    241  1.3  thorpej 
    242  1.1      oki extern struct cfdriver mha_cd;
    243  1.1      oki 
    244  1.1      oki struct scsipi_adapter mha_switch = {
    245  1.1      oki 	mha_scsi_cmd,
    246  1.1      oki 	mha_minphys,
    247  1.1      oki 	0,
    248  1.1      oki 	0,
    249  1.1      oki };
    250  1.1      oki 
    251  1.1      oki struct scsipi_device mha_dev = {
    252  1.1      oki 	NULL,			/* Use default error handler */
    253  1.1      oki 	NULL,			/* have a queue, served by this */
    254  1.1      oki 	NULL,			/* have no async handler */
    255  1.1      oki 	NULL,			/* Use default 'done' routine */
    256  1.1      oki };
    257  1.1      oki 
    258  1.1      oki /*
    260  1.1      oki  * returns non-zero value if a controller is found.
    261  1.1      oki  */
    262  1.1      oki int
    263  1.1      oki mhamatch(parent, match, aux)
    264  1.1      oki 	struct device *parent;
    265  1.1      oki 	void *match, *aux;
    266  1.1      oki {
    267  1.1      oki 	struct cfdata *cf = match;
    268  1.1      oki 
    269  1.1      oki 	if (strcmp(aux, "mha") || mha_find(cf->cf_unit) == 0)
    270  1.1      oki 		return 0;
    271  1.1      oki 	return 1;
    272  1.1      oki }
    273  1.1      oki 
    274  1.1      oki /*
    275  1.1      oki  * Find the board
    276  1.1      oki  */
    277  1.1      oki volatile void *
    278  1.1      oki mha_find(unit)
    279  1.1      oki 	int unit;
    280  1.1      oki {
    281  1.1      oki 	volatile void *addr;
    282  1.1      oki 
    283  1.1      oki 	if (unit > 1)
    284  1.1      oki 		return 0;
    285  1.1      oki 	/* Find only on-board ROM */
    286  1.1      oki   if (badaddr(IODEVbase->exscsirom)
    287  1.1      oki       || bcmp((void *)&IODEVbase->exscsirom[0x24], "SCSIEX", 6))
    288  1.1      oki     return 0;
    289  1.1      oki 
    290  1.1      oki   /* If bdid exists, this board is ``CZ-6BS1'' */
    291  1.1      oki   if (!badbaddr(&IODEVbase->io_exspc.bdid))
    292  1.1      oki     return 0;
    293  1.1      oki 
    294  1.1      oki 	return (void *)(&IODEVbase->exscsirom[0x60]);
    295  1.1      oki }
    296  1.1      oki 
    297  1.1      oki /*
    298  1.1      oki  */
    299  1.1      oki 
    300  1.1      oki struct mha_softc *tmpsc;
    301  1.1      oki 
    302  1.1      oki void
    303  1.1      oki mhaattach(parent, self, aux)
    304  1.1      oki 	struct device *parent, *self;
    305  1.1      oki 	void *aux;
    306  1.1      oki {
    307  1.1      oki 	struct mha_softc *sc = (void *)self;
    308  1.1      oki 
    309  1.1      oki 	tmpsc = sc;	/* XXX */
    310  1.1      oki 
    311  1.1      oki 	SPC_TRACE(("mhaattach  "));
    312  1.1      oki 	sc->sc_state = SPC_INIT;
    313  1.1      oki 	sc->sc_iobase = mha_find(sc->sc_dev.dv_unit); /* XXX */
    314  1.1      oki 
    315  1.1      oki 	sc->sc_pc = (volatile u_char *)sc->sc_iobase;
    316  1.1      oki 	sc->sc_ps = (volatile u_short *)sc->sc_iobase;
    317  1.1      oki 	sc->sc_pcx = &sc->sc_pc[0x10];
    318  1.1      oki 
    319  1.1      oki 	sc->sc_id = IODEVbase->io_sram[0x70] & 0x7; /* XXX */
    320  1.1      oki 
    321  1.1      oki 	mha_init(sc);	/* Init chip and driver */
    322  1.1      oki 	sc->sc_phase  = BUSFREE_PHASE;
    323  1.1      oki 
    324  1.1      oki 	/*
    325  1.1      oki 	 * Fill in the prototype scsi_link
    326  1.1      oki 	 */
    327  1.1      oki 	sc->sc_link.scsipi_scsi.channel = SCSI_CHANNEL_ONLY_ONE;
    328  1.1      oki 	sc->sc_link.adapter_softc = sc;
    329  1.1      oki 	sc->sc_link.scsipi_scsi.adapter_target = sc->sc_id;
    330  1.1      oki 	sc->sc_link.adapter = &mha_switch;
    331  1.1      oki 	sc->sc_link.device = &mha_dev;
    332  1.1      oki 	sc->sc_link.openings = 2;
    333  1.1      oki 	sc->sc_link.scsipi_scsi.max_target = 7;
    334  1.1      oki 	sc->sc_link.type = BUS_SCSI;
    335  1.1      oki 
    336  1.1      oki 	sc->sc_spcinitialized = 0;
    337  1.1      oki 	WAR = WA_INITWIN;
    338  1.1      oki #if 1
    339  1.1      oki 	CCR = 0x14;
    340  1.1      oki 	OIR = sc->sc_id;
    341  1.1      oki 	AMR = 0x00;
    342  1.1      oki 	SMR = 0x00;
    343  1.1      oki 	SRR = 0x00;
    344  1.1      oki 	STR = 0x20;
    345  1.1      oki 	RTR = 0x40;
    346  1.1      oki 	ATR = 0x01;
    347  1.1      oki 	PER = 0xc9;
    348  1.1      oki #endif
    349  1.1      oki 	IER = IE_ALL;	/* $B$9$Y$F$N3d$j9~$_$r5v2D(B */
    350  1.1      oki #if 1
    351  1.1      oki 	GLR = 0x00;
    352  1.1      oki 	DMR = 0x30;
    353  1.1      oki 	IMR = 0x00;
    354  1.1      oki #endif
    355  1.1      oki 	WAR = WA_MCSBUFWIN;
    356  1.1      oki 
    357  1.1      oki 	/* drop off */
    358  1.1      oki 	while (SSR & SS_IREQUEST)
    359  1.1      oki 	  {
    360  1.1      oki 	    unsigned a = ISCSR;
    361  1.1      oki 	  }
    362  1.1      oki 
    363  1.1      oki 	CMR = CMD_SET_UP_REG;	/* setup reg cmd. */
    364  1.1      oki 
    365  1.1      oki 	SPC_TRACE(("waiting for intr..."));
    366  1.1      oki 	while(!sc->sc_spcinitialized);
    367  1.1      oki 
    368  1.1      oki 	tmpsc = NULL;
    369  1.1      oki 
    370  1.1      oki 	printf("\n");
    371  1.1      oki 
    372  1.1      oki 	config_found(self, &sc->sc_link, scsiprint);
    373  1.1      oki }
    374  1.1      oki 
    375  1.1      oki void
    376  1.1      oki mha_reset(sc)
    377  1.1      oki 	struct mha_softc *sc;
    378  1.1      oki {
    379  1.1      oki 	u_short	dummy;
    380  1.1      oki printf("reset...");
    381  1.1      oki 	CMR = CMD_SOFT_RESET;
    382  1.1      oki 	asm volatile ("nop");	/* XXX wait (4clk in 20mhz) ??? */
    383  1.1      oki 	dummy = sc->sc_ps[-1];
    384  1.1      oki 	dummy = sc->sc_ps[-1];
    385  1.1      oki 	dummy = sc->sc_ps[-1];
    386  1.1      oki 	dummy = sc->sc_ps[-1];
    387  1.1      oki 	asm volatile ("nop");
    388  1.1      oki 	CMR = CMD_SOFT_RESET;
    389  1.1      oki 	sc->sc_spcinitialized = 0;
    390  1.1      oki 	CMR = CMD_SET_UP_REG;	/* setup reg cmd. */
    391  1.1      oki 	while(!sc->sc_spcinitialized);
    392  1.1      oki 
    393  1.1      oki 	sc->sc_id = IODEVbase->io_sram[0x70] & 0x7; /* XXX */
    394  1.1      oki printf("done.\n");
    395  1.1      oki }
    396  1.1      oki 
    397  1.1      oki /*
    398  1.1      oki  * Pull the SCSI RST line for 500us.
    399  1.1      oki  */
    400  1.1      oki void
    401  1.1      oki mha_scsi_reset(sc)	/* FINISH? */
    402  1.1      oki 	struct mha_softc *sc;
    403  1.1      oki {
    404  1.1      oki 
    405  1.1      oki 	CMR = CMD_SCSI_RESET;	/* SCSI RESET */
    406  1.1      oki 	WAIT;
    407  1.1      oki }
    408  1.1      oki 
    409  1.1      oki /*
    410  1.1      oki  * Initialize mha SCSI driver.
    411  1.1      oki  */
    412  1.1      oki void
    413  1.1      oki mha_init(sc)
    414  1.1      oki 	struct mha_softc *sc;
    415  1.1      oki {
    416  1.1      oki 	struct acb *acb;
    417  1.1      oki 	int r;
    418  1.1      oki 
    419  1.1      oki 	if (sc->sc_state == SPC_INIT) {
    420  1.1      oki 		/* First time through; initialize. */
    421  1.1      oki 		TAILQ_INIT(&sc->ready_list);
    422  1.1      oki 		TAILQ_INIT(&sc->nexus_list);
    423  1.1      oki 		TAILQ_INIT(&sc->free_list);
    424  1.1      oki 		sc->sc_nexus = NULL;
    425  1.1      oki 		acb = sc->sc_acb;
    426  1.1      oki 		bzero(acb, sizeof(sc->sc_acb));
    427  1.1      oki 		for (r = 0; r < sizeof(sc->sc_acb) / sizeof(*acb); r++) {
    428  1.1      oki 			TAILQ_INSERT_TAIL(&sc->free_list, acb, chain);
    429  1.1      oki 			acb++;
    430  1.1      oki 		}
    431  1.1      oki 		bzero(&sc->sc_tinfo, sizeof(sc->sc_tinfo));
    432  1.1      oki 	} else {
    433  1.1      oki 		/* Cancel any active commands. */
    434  1.1      oki 		sc->sc_flags |= SPC_ABORTING;
    435  1.1      oki 		sc->sc_state = SPC_IDLE;
    436  1.1      oki 		if ((acb = sc->sc_nexus) != NULL) {
    437  1.1      oki 			acb->xs->error = XS_DRIVER_STUFFUP;
    438  1.1      oki 			mha_done(sc, acb);
    439  1.1      oki 		}
    440  1.1      oki 		while ((acb = sc->nexus_list.tqh_first) != NULL) {
    441  1.1      oki 			acb->xs->error = XS_DRIVER_STUFFUP;
    442  1.1      oki 			mha_done(sc, acb);
    443  1.1      oki 		}
    444  1.1      oki 	}
    445  1.1      oki 
    446  1.1      oki 	sc->sc_phase = sc->sc_prevphase = INVALID_PHASE;
    447  1.1      oki 	for (r = 0; r < 8; r++) {
    448  1.1      oki 		struct spc_tinfo *ti = &sc->sc_tinfo[r];
    449  1.1      oki 
    450  1.1      oki 		ti->flags = 0;
    451  1.1      oki #if SPC_USE_SYNCHRONOUS
    452  1.1      oki 		ti->flags |= T_SYNCMODE;
    453  1.1      oki 		ti->period = sc->sc_minsync;
    454  1.1      oki 		ti->offset = SPC_SYNC_REQ_ACK_OFS;
    455  1.1      oki #else
    456  1.1      oki 		ti->period = ti->offset = 0;
    457  1.1      oki #endif
    458  1.1      oki 		ti->width = 0;
    459  1.1      oki 	}
    460  1.1      oki 
    461  1.1      oki 	sc->sc_state = SPC_IDLE;
    462  1.1      oki #if 0
    463  1.1      oki 	mha_reset(sc);
    464  1.1      oki #endif
    465  1.1      oki }
    466  1.1      oki 
    467  1.1      oki void
    468  1.1      oki mha_free_acb(sc, acb, flags)
    469  1.1      oki 	struct mha_softc *sc;
    470  1.1      oki 	struct acb *acb;
    471  1.1      oki 	int flags;
    472  1.1      oki {
    473  1.1      oki 	int s;
    474  1.1      oki 
    475  1.1      oki 	s = splbio();
    476  1.1      oki 
    477  1.1      oki 	acb->flags = 0;
    478  1.1      oki 	TAILQ_INSERT_HEAD(&sc->free_list, acb, chain);
    479  1.1      oki 
    480  1.1      oki 	/*
    481  1.1      oki 	 * If there were none, wake anybody waiting for one to come free,
    482  1.1      oki 	 * starting with queued entries.
    483  1.1      oki 	 */
    484  1.1      oki 	if (acb->chain.tqe_next == 0)
    485  1.1      oki 		wakeup(&sc->free_list);
    486  1.1      oki 
    487  1.1      oki 	splx(s);
    488  1.1      oki }
    489  1.1      oki 
    490  1.1      oki 
    491  1.1      oki /*
    493  1.1      oki  * DRIVER FUNCTIONS CALLABLE FROM HIGHER LEVEL DRIVERS
    494  1.1      oki  */
    495  1.1      oki 
    496  1.1      oki /*
    497  1.1      oki  * Expected sequence:
    498  1.1      oki  * 1) Command inserted into ready list
    499  1.1      oki  * 2) Command selected for execution
    500  1.1      oki  * 3) Command won arbitration and has selected target device
    501  1.1      oki  * 4) Send message out (identify message, eventually also sync.negotiations)
    502  1.1      oki  * 5) Send command
    503  1.1      oki  * 5a) Receive disconnect message, disconnect.
    504  1.1      oki  * 5b) Reselected by target
    505  1.1      oki  * 5c) Receive identify message from target.
    506  1.1      oki  * 6) Send or receive data
    507  1.1      oki  * 7) Receive status
    508  1.1      oki  * 8) Receive message (command complete etc.)
    509  1.1      oki  * 9) If status == SCSI_CHECK construct a synthetic request sense SCSI cmd.
    510  1.1      oki  *    Repeat 2-8 (no disconnects please...)
    511  1.1      oki  */
    512  1.1      oki 
    513  1.1      oki /*
    514  1.1      oki  * Start a selection.  This is used by mha_sched() to select an idle target,
    515  1.1      oki  * and by mha_done() to immediately reselect a target to get sense information.
    516  1.1      oki  */
    517  1.1      oki void
    518  1.1      oki mhaselect(sc, target, lun, cmd, clen)
    519  1.1      oki 	struct mha_softc *sc;
    520  1.1      oki 	u_char target, lun;
    521  1.1      oki 	u_char *cmd;
    522  1.1      oki 	u_char clen;
    523  1.1      oki {
    524  1.1      oki #if 0
    525  1.1      oki 	struct scsi_link *sc_link = acb->xs->sc_link;
    526  1.1      oki #endif
    527  1.1      oki 	struct spc_tinfo *ti = &sc->sc_tinfo[target];
    528  1.1      oki 	int i;
    529  1.1      oki 	int s;
    530  1.1      oki 
    531  1.1      oki 	s = splbio();	/* XXX */
    532  1.1      oki 
    533  1.1      oki 	SPC_TRACE(("[mhaselect(t%d,l%d,cmd:%x)] ", target, lun, *(u_char *)cmd));
    534  1.1      oki 
    535  1.1      oki 	/* CDB $B$r(B SPC $B$N(B MCS REG $B$K%;%C%H$9$k(B */
    536  1.1      oki 	/* Now the command into the FIFO */
    537  1.1      oki 	WAIT;
    538  1.1      oki #if 1
    539  1.1      oki 	SPC_MISC(("[cmd:"));
    540  1.1      oki 	for (i = 0; i < clen; i++)
    541  1.1      oki 	  {
    542  1.1      oki 	    unsigned c = cmd[i];
    543  1.1      oki 	    if (i == 1)
    544  1.1      oki 	      c |= lun << 5;
    545  1.1      oki 	    SPC_MISC((" %02x", c));
    546  1.1      oki 	    sc->sc_pcx[i] = c;
    547  1.1      oki 	  }
    548  1.1      oki 	SPC_MISC(("], target=%d\n", target));
    549  1.1      oki #else
    550  1.1      oki 	bcopy(cmd, sc->sc_pcx, clen);
    551  1.1      oki #endif
    552  1.1      oki 	if (NSR & 0x80)
    553  1.1      oki 		panic("scsistart: already selected...");
    554  1.1      oki 	sc->sc_phase  = COMMAND_PHASE;
    555  1.1      oki 
    556  1.1      oki 	/* new state ASP_SELECTING */
    557  1.1      oki 	sc->sc_state = SPC_SELECTING;
    558  1.1      oki 
    559  1.1      oki 	SIR = target;
    560  1.1      oki #if 0
    561  1.1      oki 	CMR = CMD_SELECT;
    562  1.1      oki #else
    563  1.1      oki 	CMR = CMD_SEL_AND_CMD;	/* select & cmd */
    564  1.1      oki #endif
    565  1.1      oki 	splx(s);
    566  1.1      oki }
    567  1.1      oki 
    568  1.1      oki #if 0
    569  1.1      oki int
    570  1.1      oki mha_reselect(sc, message)
    571  1.1      oki 	struct mha_softc *sc;
    572  1.1      oki 	u_char message;
    573  1.1      oki {
    574  1.1      oki 	u_char selid, target, lun;
    575  1.1      oki 	struct acb *acb;
    576  1.1      oki 	struct scsipi_link *sc_link;
    577  1.1      oki 	struct spc_tinfo *ti;
    578  1.1      oki 
    579  1.1      oki 	/*
    580  1.1      oki 	 * The SCSI chip made a snapshot of the data bus while the reselection
    581  1.1      oki 	 * was being negotiated.  This enables us to determine which target did
    582  1.1      oki 	 * the reselect.
    583  1.1      oki 	 */
    584  1.1      oki 	selid = sc->sc_selid & ~(1 << sc->sc_id);
    585  1.1      oki 	if (selid & (selid - 1)) {
    586  1.1      oki 		printf("%s: reselect with invalid selid %02x; sending DEVICE RESET\n",
    587  1.1      oki 		    sc->sc_dev.dv_xname, selid);
    588  1.1      oki 		SPC_BREAK();
    589  1.1      oki 		goto reset;
    590  1.1      oki 	}
    591  1.1      oki 
    592  1.1      oki 	/*
    593  1.1      oki 	 * Search wait queue for disconnected cmd
    594  1.1      oki 	 * The list should be short, so I haven't bothered with
    595  1.1      oki 	 * any more sophisticated structures than a simple
    596  1.1      oki 	 * singly linked list.
    597  1.1      oki 	 */
    598  1.1      oki 	target = ffs(selid) - 1;
    599  1.1      oki 	lun = message & 0x07;
    600  1.1      oki 	for (acb = sc->nexus_list.tqh_first; acb != NULL;
    601  1.1      oki 	     acb = acb->chain.tqe_next) {
    602  1.1      oki 		sc_link = acb->xs->sc_link;
    603  1.1      oki 		if (sc_link->scsipi_scsi.target == target &&
    604  1.1      oki 		    sc_link->scsipi_scsi.lun == lun)
    605  1.1      oki 			break;
    606  1.1      oki 	}
    607  1.1      oki 	if (acb == NULL) {
    608  1.1      oki 		printf("%s: reselect from target %d lun %d with no nexus; sending ABORT\n",
    609  1.1      oki 		    sc->sc_dev.dv_xname, target, lun);
    610  1.1      oki 		SPC_BREAK();
    611  1.1      oki 		goto abort;
    612  1.1      oki 	}
    613  1.1      oki 
    614  1.1      oki 	/* Make this nexus active again. */
    615  1.1      oki 	TAILQ_REMOVE(&sc->nexus_list, acb, chain);
    616  1.1      oki 	sc->sc_state = SPC_HASNEXUS;
    617  1.1      oki 	sc->sc_nexus = acb;
    618  1.1      oki 	ti = &sc->sc_tinfo[target];
    619  1.1      oki 	ti->lubusy |= (1 << lun);
    620  1.1      oki 	mha_setsync(sc, ti);
    621  1.1      oki 
    622  1.1      oki 	if (acb->flags & ACB_RESET)
    623  1.1      oki 		mha_sched_msgout(sc, SEND_DEV_RESET);
    624  1.1      oki 	else if (acb->flags & ACB_ABORTED)
    625  1.1      oki 		mha_sched_msgout(sc, SEND_ABORT);
    626  1.1      oki 
    627  1.1      oki 	/* Do an implicit RESTORE POINTERS. */
    628  1.1      oki 	sc->sc_dp = acb->daddr;
    629  1.1      oki 	sc->sc_dleft = acb->dleft;
    630  1.1      oki 	sc->sc_cp = (u_char *)&acb->cmd;
    631  1.1      oki 	sc->sc_cleft = acb->clen;
    632  1.1      oki 
    633  1.1      oki 	return (0);
    634  1.1      oki 
    635  1.1      oki reset:
    636  1.1      oki 	mha_sched_msgout(sc, SEND_DEV_RESET);
    637  1.1      oki 	return (1);
    638  1.1      oki 
    639  1.1      oki abort:
    640  1.1      oki 	mha_sched_msgout(sc, SEND_ABORT);
    641  1.1      oki 	return (1);
    642  1.1      oki }
    643  1.1      oki #endif
    644  1.1      oki /*
    645  1.1      oki  * Start a SCSI-command
    646  1.1      oki  * This function is called by the higher level SCSI-driver to queue/run
    647  1.1      oki  * SCSI-commands.
    648  1.1      oki  */
    649  1.1      oki int
    650  1.1      oki mha_scsi_cmd(xs)
    651  1.1      oki 	struct scsipi_xfer *xs;
    652  1.1      oki {
    653  1.1      oki 	struct scsipi_link *sc_link = xs->sc_link;
    654  1.1      oki 	struct mha_softc *sc = sc_link->adapter_softc;
    655  1.1      oki 	struct acb *acb;
    656  1.1      oki 	int s, flags;
    657  1.1      oki 
    658  1.1      oki 	SPC_TRACE(("[mha_scsi_cmd] "));
    659  1.1      oki 	SPC_CMDS(("[0x%x, %d]->%d ", (int)xs->cmd->opcode, xs->cmdlen,
    660  1.1      oki 	    sc_link->scsipi_scsi.target));
    661  1.1      oki 
    662  1.1      oki 	flags = xs->flags;
    663  1.1      oki 
    664  1.1      oki 	/* Get a mha command block */
    665  1.1      oki 	s = splbio();
    666  1.1      oki 	acb = sc->free_list.tqh_first;
    667  1.1      oki 	if (acb) {
    668  1.1      oki 		TAILQ_REMOVE(&sc->free_list, acb, chain);
    669  1.1      oki 		ACB_SETQ(acb, ACB_QNONE);
    670  1.1      oki 	}
    671  1.1      oki 	splx(s);
    672  1.1      oki 
    673  1.1      oki 	if (acb == NULL) {
    674  1.1      oki 		SPC_MISC(("TRY_AGAIN_LATER"));
    675  1.1      oki 		return TRY_AGAIN_LATER;
    676  1.1      oki 	}
    677  1.1      oki 
    678  1.1      oki 	/* Initialize acb */
    679  1.1      oki 	acb->xs = xs;
    680  1.1      oki 	bcopy(xs->cmd, &acb->cmd, xs->cmdlen);
    681  1.1      oki 	acb->clen = xs->cmdlen;
    682  1.1      oki 	acb->daddr = xs->data;
    683  1.1      oki 	acb->dleft = xs->datalen;
    684  1.1      oki 	acb->stat = 0;
    685  1.1      oki 
    686  1.1      oki 	s = splbio();
    687  1.1      oki 	ACB_SETQ(acb, ACB_QREADY);
    688  1.1      oki 	TAILQ_INSERT_TAIL(&sc->ready_list, acb, chain);
    689  1.1      oki #if 1
    690  1.1      oki 	timeout(mha_timeout, acb, (xs->timeout*hz)/1000);
    691  1.1      oki #endif
    692  1.1      oki 
    693  1.1      oki 	/*
    694  1.1      oki 	 * $B%-%e!<$N=hM}Cf$G$J$1$l$P!"%9%1%8%e!<%j%s%03+;O$9$k(B
    695  1.1      oki 	 */
    696  1.1      oki 	if (sc->sc_state == SPC_IDLE)
    697  1.1      oki 		mha_sched(sc);
    698  1.1      oki 
    699  1.1      oki 	splx(s);
    700  1.1      oki 
    701  1.1      oki 	if (flags & SCSI_POLL) {
    702  1.1      oki 		/* Not allowed to use interrupts, use polling instead */
    703  1.1      oki 		return mha_poll(sc, acb);
    704  1.1      oki 	}
    705  1.1      oki 
    706  1.1      oki 	SPC_MISC(("SUCCESSFULLY_QUEUED"));
    707  1.1      oki 	return SUCCESSFULLY_QUEUED;
    708  1.1      oki }
    709  1.1      oki 
    710  1.1      oki /*
    711  1.1      oki  * Adjust transfer size in buffer structure
    712  1.1      oki  */
    713  1.1      oki void
    714  1.1      oki mha_minphys(bp)
    715  1.1      oki 	struct buf *bp;
    716  1.1      oki {
    717  1.1      oki 
    718  1.1      oki 	SPC_TRACE(("mha_minphys  "));
    719  1.1      oki 	minphys(bp);
    720  1.1      oki }
    721  1.1      oki 
    722  1.1      oki /*
    723  1.1      oki  * Used when interrupt driven I/O isn't allowed, e.g. during boot.
    724  1.1      oki  */
    725  1.1      oki int
    726  1.1      oki mha_poll(sc, acb)
    727  1.1      oki 	struct mha_softc *sc;
    728  1.1      oki 	struct acb *acb;
    729  1.1      oki {
    730  1.1      oki 	struct scsipi_xfer *xs = acb->xs;
    731  1.1      oki 	int count = xs->timeout * 100;
    732  1.1      oki 	int s = splbio();
    733  1.1      oki 
    734  1.1      oki 	SPC_TRACE(("[mha_poll] "));
    735  1.1      oki 
    736  1.1      oki 	while (count) {
    737  1.1      oki 		/*
    738  1.1      oki 		 * If we had interrupts enabled, would we
    739  1.1      oki 		 * have got an interrupt?
    740  1.1      oki 		 */
    741  1.1      oki 		if (SSR & SS_IREQUEST)
    742  1.1      oki 			mhaintr(sc->sc_dev.dv_unit);
    743  1.1      oki 		if ((xs->flags & ITSDONE) != 0)
    744  1.1      oki 			break;
    745  1.1      oki 		DELAY(10);
    746  1.1      oki #if 1
    747  1.1      oki 		if (sc->sc_state == SPC_IDLE) {
    748  1.1      oki 			SPC_TRACE(("[mha_poll: rescheduling] "));
    749  1.1      oki 			mha_sched(sc);
    750  1.1      oki 		}
    751  1.1      oki #endif
    752  1.1      oki 		count--;
    753  1.1      oki 	}
    754  1.1      oki 
    755  1.1      oki 	if (count == 0) {
    756  1.1      oki 		SPC_MISC(("mha_poll: timeout"));
    757  1.1      oki 		mha_timeout((caddr_t)acb);
    758  1.1      oki 	}
    759  1.1      oki 	splx(s);
    760  1.1      oki 	return COMPLETE;
    761  1.1      oki }
    762  1.1      oki 
    763  1.1      oki /*
    765  1.1      oki  * LOW LEVEL SCSI UTILITIES
    766  1.1      oki  */
    767  1.1      oki 
    768  1.1      oki /*
    769  1.1      oki  * Set synchronous transfer offset and period.
    770  1.1      oki  */
    771  1.1      oki inline void
    772  1.1      oki mha_setsync(sc, ti)
    773  1.1      oki 	struct mha_softc *sc;
    774  1.1      oki 	struct spc_tinfo *ti;
    775  1.1      oki {
    776  1.1      oki }
    777  1.1      oki 
    778  1.1      oki 
    779  1.1      oki /*
    781  1.1      oki  * Schedule a SCSI operation.  This has now been pulled out of the interrupt
    782  1.1      oki  * handler so that we may call it from mha_scsi_cmd and mha_done.  This may
    783  1.1      oki  * save us an unecessary interrupt just to get things going.  Should only be
    784  1.1      oki  * called when state == SPC_IDLE and at bio pl.
    785  1.1      oki  */
    786  1.1      oki void
    787  1.1      oki mha_sched(sc)
    788  1.1      oki 	register struct mha_softc *sc;
    789  1.1      oki {
    790  1.1      oki 	struct scsipi_link *sc_link;
    791  1.1      oki 	struct acb *acb;
    792  1.1      oki 	int t;
    793  1.1      oki 
    794  1.1      oki 	SPC_TRACE(("[mha_sched] "));
    795  1.1      oki 	if (sc->sc_state != SPC_IDLE)
    796  1.1      oki 		panic("mha_sched: not IDLE (state=%d)", sc->sc_state);
    797  1.1      oki 
    798  1.1      oki 	if (sc->sc_flags & SPC_ABORTING)
    799  1.1      oki 		return;
    800  1.1      oki 
    801  1.1      oki 	/*
    802  1.1      oki 	 * Find first acb in ready queue that is for a target/lunit
    803  1.1      oki 	 * combinations that is not busy.
    804  1.1      oki 	 */
    805  1.1      oki 	for (acb = sc->ready_list.tqh_first; acb ; acb = acb->chain.tqe_next) {
    806  1.1      oki 		struct spc_tinfo *ti;
    807  1.1      oki 		sc_link = acb->xs->sc_link;
    808  1.1      oki 		t = sc_link->scsipi_scsi.target;
    809  1.1      oki 		ti = &sc->sc_tinfo[t];
    810  1.1      oki 		if (!(ti->lubusy & (1 << sc_link->scsipi_scsi.lun))) {
    811  1.1      oki 			if ((acb->flags & ACB_QBITS) != ACB_QREADY)
    812  1.1      oki 				panic("mha: busy entry on ready list");
    813  1.1      oki 			TAILQ_REMOVE(&sc->ready_list, acb, chain);
    814  1.1      oki 			ACB_SETQ(acb, ACB_QNONE);
    815  1.1      oki 			sc->sc_nexus = acb;
    816  1.1      oki 			sc->sc_flags = 0;
    817  1.1      oki 			sc->sc_prevphase = INVALID_PHASE;
    818  1.1      oki 			sc->sc_dp = acb->daddr;
    819  1.1      oki 			sc->sc_dleft = acb->dleft;
    820  1.1      oki 			ti->lubusy |= (1<<sc_link->scsipi_scsi.lun);
    821  1.1      oki 			mhaselect(sc, t, sc_link->scsipi_scsi.lun,
    822  1.1      oki 				     (u_char *)&acb->cmd, acb->clen);
    823  1.1      oki 			break;
    824  1.1      oki 		} else {
    825  1.1      oki 			SPC_MISC(("%d:%d busy\n",
    826  1.1      oki 			    sc_link->scsipi_scsi.target,
    827  1.1      oki 			    sc_link->scsipi_scsi.lun));
    828  1.1      oki 		}
    829  1.1      oki 	}
    830  1.1      oki }
    831  1.1      oki 
    832  1.1      oki void
    834  1.1      oki mha_sense(sc, acb)
    835  1.1      oki 	struct mha_softc *sc;
    836  1.1      oki 	struct acb *acb;
    837  1.1      oki {
    838  1.1      oki 	struct scsipi_xfer *xs = acb->xs;
    839  1.1      oki 	struct scsipi_link *sc_link = xs->sc_link;
    840  1.1      oki 	struct spc_tinfo *ti = &sc->sc_tinfo[sc_link->scsipi_scsi.target];
    841  1.1      oki 	struct scsipi_sense *ss = (void *)&acb->cmd;
    842  1.1      oki 
    843  1.1      oki 	SPC_MISC(("requesting sense  "));
    844  1.1      oki 	/* Next, setup a request sense command block */
    845  1.1      oki 	bzero(ss, sizeof(*ss));
    846  1.1      oki 	ss->opcode = REQUEST_SENSE;
    847  1.1      oki 	ss->byte2 = sc_link->scsipi_scsi.lun << 5;
    848  1.1      oki 	ss->length = sizeof(struct scsipi_sense_data);
    849  1.1      oki 	acb->clen = sizeof(*ss);
    850  1.1      oki 	acb->daddr = (char *)&xs->sense;
    851  1.1      oki 	acb->dleft = sizeof(struct scsipi_sense_data);
    852  1.1      oki 	acb->flags |= ACB_CHKSENSE;
    853  1.1      oki 	ti->senses++;
    854  1.1      oki 	if (acb->flags & ACB_QNEXUS)
    855  1.1      oki 		ti->lubusy &= ~(1 << sc_link->scsipi_scsi.lun);
    856  1.1      oki 	if (acb == sc->sc_nexus) {
    857  1.1      oki 		mhaselect(sc, sc_link->scsipi_scsi.target,
    858  1.1      oki 			  sc_link->scsipi_scsi.lun,
    859  1.1      oki 			     (void *)&acb->cmd, acb->clen);
    860  1.1      oki 	} else {
    861  1.1      oki 		mha_dequeue(sc, acb);
    862  1.1      oki 		TAILQ_INSERT_HEAD(&sc->ready_list, acb, chain);
    863  1.1      oki 		if (sc->sc_state == SPC_IDLE)
    864  1.1      oki 			mha_sched(sc);
    865  1.1      oki 	}
    866  1.1      oki }
    867  1.1      oki 
    868  1.1      oki /*
    869  1.1      oki  * POST PROCESSING OF SCSI_CMD (usually current)
    870  1.1      oki  */
    871  1.1      oki void
    872  1.1      oki mha_done(sc, acb)
    873  1.1      oki 	struct mha_softc *sc;
    874  1.1      oki 	struct acb *acb;
    875  1.1      oki {
    876  1.1      oki 	struct scsipi_xfer *xs = acb->xs;
    877  1.1      oki 	struct scsipi_link *sc_link = xs->sc_link;
    878  1.1      oki 	struct spc_tinfo *ti = &sc->sc_tinfo[sc_link->scsipi_scsi.target];
    879  1.1      oki 
    880  1.1      oki 	SPC_TRACE(("[mha_done(error:%x)] ", xs->error));
    881  1.1      oki 
    882  1.1      oki #if 1
    883  1.1      oki 	untimeout(mha_timeout, acb);
    884  1.1      oki #endif
    885  1.1      oki 
    886  1.1      oki 	/*
    887  1.1      oki 	 * Now, if we've come here with no error code, i.e. we've kept the
    888  1.1      oki 	 * initial XS_NOERROR, and the status code signals that we should
    889  1.1      oki 	 * check sense, we'll need to set up a request sense cmd block and
    890  1.1      oki 	 * push the command back into the ready queue *before* any other
    891  1.1      oki 	 * commands for this target/lunit, else we lose the sense info.
    892  1.1      oki 	 * We don't support chk sense conditions for the request sense cmd.
    893  1.1      oki 	 */
    894  1.1      oki 	if (xs->error == XS_NOERROR) {
    895  1.1      oki 		if ((acb->flags & ACB_ABORTED) != 0) {
    896  1.1      oki 			xs->error = XS_TIMEOUT;
    897  1.1      oki 		} else if (acb->flags & ACB_CHKSENSE) {
    898  1.1      oki 			xs->error = XS_SENSE;
    899  1.1      oki 		} else if ((acb->stat & ST_MASK) == SCSI_CHECK) {
    900  1.1      oki 			struct scsipi_sense *ss = (void *)&acb->cmd;
    901  1.1      oki 			SPC_MISC(("requesting sense "));
    902  1.1      oki 			/* First, save the return values */
    903  1.1      oki 			xs->resid = acb->dleft;
    904  1.1      oki 			xs->status = acb->stat;
    905  1.1      oki 			/* Next, setup a request sense command block */
    906  1.1      oki 			bzero(ss, sizeof(*ss));
    907  1.1      oki 			ss->opcode = REQUEST_SENSE;
    908  1.1      oki 			/*ss->byte2 = sc_link->lun << 5;*/
    909  1.1      oki 			ss->length = sizeof(struct scsipi_sense_data);
    910  1.1      oki 			acb->clen = sizeof(*ss);
    911  1.1      oki 			acb->daddr = (char *)&xs->sense;
    912  1.1      oki 			acb->dleft = sizeof(struct scsipi_sense_data);
    913  1.1      oki 			acb->flags |= ACB_CHKSENSE;
    914  1.1      oki /*XXX - must take off queue here */
    915  1.1      oki 			if (acb != sc->sc_nexus) {
    916  1.1      oki 				panic("%s: mha_sched: floating acb %p",
    917  1.1      oki 					sc->sc_dev.dv_xname, acb);
    918  1.1      oki 			}
    919  1.1      oki 			TAILQ_INSERT_HEAD(&sc->ready_list, acb, chain);
    920  1.1      oki 			ACB_SETQ(acb, ACB_QREADY);
    921  1.1      oki 			ti->lubusy &= ~(1<<sc_link->scsipi_scsi.lun);
    922  1.1      oki 			ti->senses++;
    923  1.1      oki 			timeout(mha_timeout, acb, (xs->timeout*hz)/1000);
    924  1.1      oki 			if (sc->sc_nexus == acb) {
    925  1.1      oki 				sc->sc_nexus = NULL;
    926  1.1      oki 				sc->sc_state = SPC_IDLE;
    927  1.1      oki 				mha_sched(sc);
    928  1.1      oki 			}
    929  1.1      oki #if 0
    930  1.1      oki 			mha_sense(sc, acb);
    931  1.1      oki #endif
    932  1.1      oki 			return;
    933  1.1      oki 		} else {
    934  1.1      oki 			xs->resid = acb->dleft;
    935  1.1      oki 		}
    936  1.1      oki 	}
    937  1.1      oki 
    938  1.1      oki 	xs->flags |= ITSDONE;
    939  1.1      oki 
    940  1.1      oki #if SPC_DEBUG
    941  1.1      oki 	if ((mha_debug & SPC_SHOWMISC) != 0) {
    942  1.1      oki 		if (xs->resid != 0)
    943  1.1      oki 			printf("resid=%d ", xs->resid);
    944  1.1      oki 		if (xs->error == XS_SENSE)
    945  1.1      oki 			printf("sense=0x%02x\n", xs->sense.error_code);
    946  1.1      oki 		else
    947  1.1      oki 			printf("error=%d\n", xs->error);
    948  1.1      oki 	}
    949  1.1      oki #endif
    950  1.1      oki 
    951  1.1      oki 	/*
    952  1.1      oki 	 * Remove the ACB from whatever queue it's on.
    953  1.1      oki 	 */
    954  1.1      oki 	switch (acb->flags & ACB_QBITS) {
    955  1.1      oki 	case ACB_QNONE:
    956  1.1      oki 		if (acb != sc->sc_nexus) {
    957  1.1      oki 			panic("%s: floating acb", sc->sc_dev.dv_xname);
    958  1.1      oki 		}
    959  1.1      oki 		sc->sc_nexus = NULL;
    960  1.1      oki 		sc->sc_state = SPC_IDLE;
    961  1.1      oki 		ti->lubusy &= ~(1<<sc_link->scsipi_scsi.lun);
    962  1.1      oki 		mha_sched(sc);
    963  1.1      oki 		break;
    964  1.1      oki 	case ACB_QREADY:
    965  1.1      oki 		TAILQ_REMOVE(&sc->ready_list, acb, chain);
    966  1.1      oki 		break;
    967  1.1      oki 	case ACB_QNEXUS:
    968  1.1      oki 		TAILQ_REMOVE(&sc->nexus_list, acb, chain);
    969  1.1      oki 		ti->lubusy &= ~(1<<sc_link->scsipi_scsi.lun);
    970  1.1      oki 		break;
    971  1.1      oki 	case ACB_QFREE:
    972  1.1      oki 		panic("%s: dequeue: busy acb on free list",
    973  1.1      oki 			sc->sc_dev.dv_xname);
    974  1.1      oki 		break;
    975  1.1      oki 	default:
    976  1.1      oki 		panic("%s: dequeue: unknown queue %d",
    977  1.1      oki 			sc->sc_dev.dv_xname, acb->flags & ACB_QBITS);
    978  1.1      oki 	}
    979  1.1      oki 
    980  1.1      oki 	/* Put it on the free list, and clear flags. */
    981  1.1      oki #if 0
    982  1.1      oki 	TAILQ_INSERT_HEAD(&sc->free_list, acb, chain);
    983  1.1      oki 	acb->flags = ACB_QFREE;
    984  1.1      oki #else
    985  1.1      oki 	mha_free_acb(sc, acb, xs->flags);
    986  1.1      oki #endif
    987  1.1      oki 
    988  1.1      oki 	ti->cmds++;
    989  1.1      oki 	scsipi_done(xs);
    990  1.1      oki }
    991  1.1      oki 
    992  1.1      oki void
    993  1.1      oki mha_dequeue(sc, acb)
    994  1.1      oki 	struct mha_softc *sc;
    995  1.1      oki 	struct acb *acb;
    996  1.1      oki {
    997  1.1      oki 
    998  1.1      oki 	if (acb->flags & ACB_QNEXUS) {
    999  1.1      oki 		TAILQ_REMOVE(&sc->nexus_list, acb, chain);
   1000  1.1      oki 	} else {
   1001  1.1      oki 		TAILQ_REMOVE(&sc->ready_list, acb, chain);
   1002  1.1      oki 	}
   1003  1.1      oki }
   1004  1.1      oki 
   1005  1.1      oki /*
   1007  1.1      oki  * INTERRUPT/PROTOCOL ENGINE
   1008  1.1      oki  */
   1009  1.1      oki 
   1010  1.1      oki /*
   1011  1.1      oki  * Schedule an outgoing message by prioritizing it, and asserting
   1012  1.1      oki  * attention on the bus. We can only do this when we are the initiator
   1013  1.1      oki  * else there will be an illegal command interrupt.
   1014  1.1      oki  */
   1015  1.1      oki #define mha_sched_msgout(m) \
   1016  1.1      oki 	do {				\
   1017  1.1      oki 		SPC_MISC(("mha_sched_msgout %d ", m)); \
   1018  1.1      oki 		CMR = CMD_SET_ATN;	\
   1019  1.1      oki 		sc->sc_msgpriq |= (m);	\
   1020  1.1      oki 	} while (0)
   1021  1.1      oki 
   1022  1.1      oki #define IS1BYTEMSG(m) (((m) != 0x01 && (m) < 0x20) || (m) >= 0x80)
   1023  1.1      oki #define IS2BYTEMSG(m) (((m) & 0xf0) == 0x20)
   1024  1.1      oki #define ISEXTMSG(m) ((m) == 0x01)
   1025  1.1      oki 
   1026  1.1      oki /*
   1027  1.1      oki  * Precondition:
   1028  1.1      oki  * The SCSI bus is already in the MSGI phase and there is a message byte
   1029  1.1      oki  * on the bus, along with an asserted REQ signal.
   1030  1.1      oki  */
   1031  1.1      oki void
   1032  1.1      oki mha_msgin(sc)
   1033  1.1      oki 	register struct mha_softc *sc;
   1034  1.1      oki {
   1035  1.1      oki 	register int v;
   1036  1.1      oki 	int n;
   1037  1.1      oki 
   1038  1.1      oki 	SPC_TRACE(("[mha_msgin(curmsglen:%d)] ", sc->sc_imlen));
   1039  1.1      oki 
   1040  1.1      oki 	/*
   1041  1.1      oki 	 * Prepare for a new message.  A message should (according
   1042  1.1      oki 	 * to the SCSI standard) be transmitted in one single
   1043  1.1      oki 	 * MESSAGE_IN_PHASE. If we have been in some other phase,
   1044  1.1      oki 	 * then this is a new message.
   1045  1.1      oki 	 */
   1046  1.1      oki 	if (sc->sc_prevphase != MESSAGE_IN_PHASE) {
   1047  1.1      oki 		sc->sc_flags &= ~SPC_DROP_MSGI;
   1048  1.1      oki 		sc->sc_imlen = 0;
   1049  1.1      oki 	}
   1050  1.1      oki 
   1051  1.1      oki 	WAIT;
   1052  1.1      oki 
   1053  1.1      oki 	v = MBR;	/* modified byte */
   1054  1.1      oki 	v = sc->sc_pcx[0];
   1055  1.1      oki 
   1056  1.1      oki 	sc->sc_imess[sc->sc_imlen] = v;
   1057  1.1      oki 
   1058  1.1      oki 	/*
   1059  1.1      oki 	 * If we're going to reject the message, don't bother storing
   1060  1.1      oki 	 * the incoming bytes.  But still, we need to ACK them.
   1061  1.1      oki 	 */
   1062  1.1      oki 
   1063  1.1      oki 	if ((sc->sc_flags & SPC_DROP_MSGI)) {
   1064  1.1      oki 		CMR = CMD_SET_ATN;
   1065  1.1      oki /*		ESPCMD(sc, ESPCMD_MSGOK);*/
   1066  1.1      oki 		printf("<dropping msg byte %x>",
   1067  1.1      oki 			sc->sc_imess[sc->sc_imlen]);
   1068  1.1      oki 		return;
   1069  1.1      oki 	}
   1070  1.1      oki 
   1071  1.1      oki 	if (sc->sc_imlen >= SPC_MAX_MSG_LEN) {
   1072  1.1      oki 		mha_sched_msgout(SEND_REJECT);
   1073  1.1      oki 		sc->sc_flags |= SPC_DROP_MSGI;
   1074  1.1      oki 	} else {
   1075  1.1      oki 		sc->sc_imlen++;
   1076  1.1      oki 		/*
   1077  1.1      oki 		 * This testing is suboptimal, but most
   1078  1.1      oki 		 * messages will be of the one byte variety, so
   1079  1.1      oki 		 * it should not effect performance
   1080  1.1      oki 		 * significantly.
   1081  1.1      oki 		 */
   1082  1.1      oki 		if (sc->sc_imlen == 1 && IS1BYTEMSG(sc->sc_imess[0]))
   1083  1.1      oki 			goto gotit;
   1084  1.1      oki 		if (sc->sc_imlen == 2 && IS2BYTEMSG(sc->sc_imess[0]))
   1085  1.1      oki 			goto gotit;
   1086  1.1      oki 		if (sc->sc_imlen >= 3 && ISEXTMSG(sc->sc_imess[0]) &&
   1087  1.1      oki 		    sc->sc_imlen == sc->sc_imess[1] + 2)
   1088  1.1      oki 			goto gotit;
   1089  1.1      oki 	}
   1090  1.1      oki #if 0
   1091  1.1      oki 	/* Ack what we have so far */
   1092  1.1      oki 	ESPCMD(sc, ESPCMD_MSGOK);
   1093  1.1      oki #endif
   1094  1.1      oki 	return;
   1095  1.1      oki 
   1096  1.1      oki gotit:
   1097  1.1      oki 	SPC_MSGS(("gotmsg(%x)", sc->sc_imess[0]));
   1098  1.1      oki 	/*
   1099  1.1      oki 	 * Now we should have a complete message (1 byte, 2 byte
   1100  1.1      oki 	 * and moderately long extended messages).  We only handle
   1101  1.1      oki 	 * extended messages which total length is shorter than
   1102  1.1      oki 	 * SPC_MAX_MSG_LEN.  Longer messages will be amputated.
   1103  1.1      oki 	 */
   1104  1.1      oki 	if (sc->sc_state == SPC_HASNEXUS) {
   1105  1.1      oki 		struct acb *acb = sc->sc_nexus;
   1106  1.1      oki 		struct spc_tinfo *ti =
   1107  1.1      oki 			&sc->sc_tinfo[acb->xs->sc_link->scsipi_scsi.target];
   1108  1.1      oki 
   1109  1.1      oki 		switch (sc->sc_imess[0]) {
   1110  1.1      oki 		case MSG_CMDCOMPLETE:
   1111  1.1      oki 			SPC_MSGS(("cmdcomplete "));
   1112  1.1      oki 			if (sc->sc_dleft < 0) {
   1113  1.1      oki 				struct scsipi_link *sc_link = acb->xs->sc_link;
   1114  1.1      oki 				printf("mha: %d extra bytes from %d:%d\n",
   1115  1.1      oki 					-sc->sc_dleft,
   1116  1.1      oki 					sc_link->scsipi_scsi.target,
   1117  1.1      oki 				        sc_link->scsipi_scsi.lun);
   1118  1.1      oki 				sc->sc_dleft = 0;
   1119  1.1      oki 			}
   1120  1.1      oki 			acb->xs->resid = acb->dleft = sc->sc_dleft;
   1121  1.1      oki 			sc->sc_flags |= SPC_BUSFREE_OK;
   1122  1.1      oki 			break;
   1123  1.1      oki 
   1124  1.1      oki 		case MSG_MESSAGE_REJECT:
   1125  1.1      oki #if SPC_DEBUG
   1126  1.1      oki 			if (mha_debug & SPC_SHOWMSGS)
   1127  1.1      oki 				printf("%s: our msg rejected by target\n",
   1128  1.1      oki 					sc->sc_dev.dv_xname);
   1129  1.1      oki #endif
   1130  1.1      oki #if 1 /* XXX - must remember last message */
   1131  1.1      oki scsi_print_addr(acb->xs->sc_link); printf("MSG_MESSAGE_REJECT>>");
   1132  1.1      oki #endif
   1133  1.1      oki 			if (sc->sc_flags & SPC_SYNCHNEGO) {
   1134  1.1      oki 				ti->period = ti->offset = 0;
   1135  1.1      oki 				sc->sc_flags &= ~SPC_SYNCHNEGO;
   1136  1.1      oki 				ti->flags &= ~T_NEGOTIATE;
   1137  1.1      oki 			}
   1138  1.1      oki 			/* Not all targets understand INITIATOR_DETECTED_ERR */
   1139  1.1      oki 			if (sc->sc_msgout == SEND_INIT_DET_ERR)
   1140  1.1      oki 				mha_sched_msgout(SEND_ABORT);
   1141  1.1      oki 			break;
   1142  1.1      oki 		case MSG_NOOP:
   1143  1.1      oki 			SPC_MSGS(("noop "));
   1144  1.1      oki 			break;
   1145  1.1      oki 		case MSG_DISCONNECT:
   1146  1.1      oki 			SPC_MSGS(("disconnect "));
   1147  1.1      oki 			ti->dconns++;
   1148  1.1      oki 			sc->sc_flags |= SPC_DISCON;
   1149  1.1      oki 			sc->sc_flags |= SPC_BUSFREE_OK;
   1150  1.1      oki 			if ((acb->xs->sc_link->quirks & SDEV_AUTOSAVE) == 0)
   1151  1.1      oki 				break;
   1152  1.1      oki 			/*FALLTHROUGH*/
   1153  1.1      oki 		case MSG_SAVEDATAPOINTER:
   1154  1.1      oki 			SPC_MSGS(("save datapointer "));
   1155  1.1      oki 			acb->dleft = sc->sc_dleft;
   1156  1.1      oki 			acb->daddr = sc->sc_dp;
   1157  1.1      oki 			break;
   1158  1.1      oki 		case MSG_RESTOREPOINTERS:
   1159  1.1      oki 			SPC_MSGS(("restore datapointer "));
   1160  1.1      oki 			if (!acb) {
   1161  1.1      oki 				mha_sched_msgout(SEND_ABORT);
   1162  1.1      oki 				printf("%s: no DATAPOINTERs to restore\n",
   1163  1.1      oki 				    sc->sc_dev.dv_xname);
   1164  1.1      oki 				break;
   1165  1.1      oki 			}
   1166  1.1      oki 			sc->sc_dp = acb->daddr;
   1167  1.1      oki 			sc->sc_dleft = acb->dleft;
   1168  1.1      oki 			break;
   1169  1.1      oki 		case MSG_PARITY_ERROR:
   1170  1.1      oki 			printf("%s:target%d: MSG_PARITY_ERROR\n",
   1171  1.1      oki 				sc->sc_dev.dv_xname,
   1172  1.1      oki 				acb->xs->sc_link->scsipi_scsi.target);
   1173  1.1      oki 			break;
   1174  1.1      oki 		case MSG_EXTENDED:
   1175  1.1      oki 			SPC_MSGS(("extended(%x) ", sc->sc_imess[2]));
   1176  1.1      oki 			switch (sc->sc_imess[2]) {
   1177  1.1      oki 			case MSG_EXT_SDTR:
   1178  1.1      oki 				SPC_MSGS(("SDTR period %d, offset %d ",
   1179  1.1      oki 					sc->sc_imess[3], sc->sc_imess[4]));
   1180  1.1      oki 				ti->period = sc->sc_imess[3];
   1181  1.1      oki 				ti->offset = sc->sc_imess[4];
   1182  1.1      oki 				if (sc->sc_minsync == 0) {
   1183  1.1      oki 					/* We won't do synch */
   1184  1.1      oki 					ti->offset = 0;
   1185  1.1      oki 					mha_sched_msgout(SEND_SDTR);
   1186  1.1      oki 				} else if (ti->offset == 0) {
   1187  1.1      oki 					printf("%s:%d: async\n", "mha",
   1188  1.1      oki 						acb->xs->sc_link->scsipi_scsi.target);
   1189  1.1      oki 					ti->offset = 0;
   1190  1.1      oki 					sc->sc_flags &= ~SPC_SYNCHNEGO;
   1191  1.1      oki 				} else if (ti->period > 124) {
   1192  1.1      oki 					printf("%s:%d: async\n", "mha",
   1193  1.1      oki 						acb->xs->sc_link->scsipi_scsi.target);
   1194  1.1      oki 					ti->offset = 0;
   1195  1.1      oki 					mha_sched_msgout(SEND_SDTR);
   1196  1.1      oki 				} else {
   1197  1.1      oki 					int r = 250/ti->period;
   1198  1.1      oki 					int s = (100*250)/ti->period - 100*r;
   1199  1.1      oki 					int p;
   1200  1.1      oki #if 0
   1201  1.1      oki 					p =  mha_stp2cpb(sc, ti->period);
   1202  1.1      oki 					ti->period = mha_cpb2stp(sc, p);
   1203  1.1      oki #endif
   1204  1.1      oki 
   1205  1.1      oki #ifdef SPC_DEBUG
   1206  1.1      oki 					scsi_print_addr(acb->xs->sc_link);
   1207  1.1      oki #endif
   1208  1.1      oki 					if ((sc->sc_flags&SPC_SYNCHNEGO) == 0) {
   1209  1.1      oki 						/* Target initiated negotiation */
   1210  1.1      oki 						if (ti->flags & T_SYNCMODE) {
   1211  1.1      oki 						    ti->flags &= ~T_SYNCMODE;
   1212  1.1      oki #ifdef SPC_DEBUG
   1213  1.1      oki 						    printf("renegotiated ");
   1214  1.1      oki #endif
   1215  1.1      oki 						}
   1216  1.1      oki 						TMR=TM_ASYNC;
   1217  1.1      oki 						/* Clamp to our maxima */
   1218  1.1      oki 						if (ti->period < sc->sc_minsync)
   1219  1.1      oki 							ti->period = sc->sc_minsync;
   1220  1.1      oki 						if (ti->offset > 15)
   1221  1.1      oki 							ti->offset = 15;
   1222  1.1      oki 						mha_sched_msgout(SEND_SDTR);
   1223  1.1      oki 					} else {
   1224  1.1      oki 						/* we are sync */
   1225  1.1      oki 						sc->sc_flags &= ~SPC_SYNCHNEGO;
   1226  1.1      oki 						TMR = TM_SYNC;
   1227  1.1      oki 						ti->flags |= T_SYNCMODE;
   1228  1.1      oki 					}
   1229  1.1      oki #ifdef SPC_DEBUG
   1230  1.1      oki 					printf("max sync rate %d.%02dMb/s\n",
   1231  1.1      oki 						r, s);
   1232  1.1      oki #endif
   1233  1.1      oki 				}
   1234  1.1      oki 				ti->flags &= ~T_NEGOTIATE;
   1235  1.1      oki 				break;
   1236  1.1      oki 			default: /* Extended messages we don't handle */
   1237  1.1      oki 				CMR = CMD_SET_ATN; /* XXX? */
   1238  1.1      oki 				break;
   1239  1.1      oki 			}
   1240  1.1      oki 			break;
   1241  1.1      oki 		default:
   1242  1.1      oki 			SPC_MSGS(("ident "));
   1243  1.1      oki 			/* thanks for that ident... */
   1244  1.1      oki 			if (!MSG_ISIDENTIFY(sc->sc_imess[0])) {
   1245  1.1      oki 				SPC_MISC(("unknown "));
   1246  1.1      oki printf("%s: unimplemented message: %d\n", sc->sc_dev.dv_xname, sc->sc_imess[0]);
   1247  1.1      oki 				CMR = CMD_SET_ATN; /* XXX? */
   1248  1.1      oki 			}
   1249  1.1      oki 			break;
   1250  1.1      oki 		}
   1251  1.1      oki 	} else if (sc->sc_state == SPC_RESELECTED) {
   1252  1.1      oki 		struct scsipi_link *sc_link = NULL;
   1253  1.1      oki 		struct acb *acb;
   1254  1.1      oki 		struct spc_tinfo *ti;
   1255  1.1      oki 		u_char lunit;
   1256  1.1      oki 
   1257  1.1      oki 		if (MSG_ISIDENTIFY(sc->sc_imess[0])) { 	/* Identify? */
   1258  1.1      oki 			SPC_MISC(("searching "));
   1259  1.1      oki 			/*
   1260  1.1      oki 			 * Search wait queue for disconnected cmd
   1261  1.1      oki 			 * The list should be short, so I haven't bothered with
   1262  1.1      oki 			 * any more sophisticated structures than a simple
   1263  1.1      oki 			 * singly linked list.
   1264  1.1      oki 			 */
   1265  1.1      oki 			lunit = sc->sc_imess[0] & 0x07;
   1266  1.1      oki 			for (acb = sc->nexus_list.tqh_first; acb;
   1267  1.1      oki 			     acb = acb->chain.tqe_next) {
   1268  1.1      oki 				sc_link = acb->xs->sc_link;
   1269  1.1      oki 				if (sc_link->scsipi_scsi.lun == lunit &&
   1270  1.1      oki 				    sc->sc_selid == (1<<sc_link->scsipi_scsi.target)) {
   1271  1.1      oki 					TAILQ_REMOVE(&sc->nexus_list, acb,
   1272  1.1      oki 					    chain);
   1273  1.1      oki 					ACB_SETQ(acb, ACB_QNONE);
   1274  1.1      oki 					break;
   1275  1.1      oki 				}
   1276  1.1      oki 			}
   1277  1.1      oki 
   1278  1.1      oki 			if (!acb) {		/* Invalid reselection! */
   1279  1.1      oki 				mha_sched_msgout(SEND_ABORT);
   1280  1.1      oki 				printf("mmespc: invalid reselect (idbit=0x%2x)\n",
   1281  1.1      oki 				    sc->sc_selid);
   1282  1.1      oki 			} else {		/* Reestablish nexus */
   1283  1.1      oki 				/*
   1284  1.1      oki 				 * Setup driver data structures and
   1285  1.1      oki 				 * do an implicit RESTORE POINTERS
   1286  1.1      oki 				 */
   1287  1.1      oki 				ti = &sc->sc_tinfo[sc_link->scsipi_scsi.target];
   1288  1.1      oki 				sc->sc_nexus = acb;
   1289  1.1      oki 				sc->sc_dp = acb->daddr;
   1290  1.1      oki 				sc->sc_dleft = acb->dleft;
   1291  1.1      oki 				sc->sc_tinfo[sc_link->scsipi_scsi.target].lubusy
   1292  1.1      oki 					|= (1<<sc_link->scsipi_scsi.lun);
   1293  1.1      oki 				if (ti->flags & T_SYNCMODE) {
   1294  1.1      oki 					TMR = TM_SYNC;	/* XXX */
   1295  1.1      oki 				} else {
   1296  1.1      oki 					TMR = TM_ASYNC;
   1297  1.1      oki 				}
   1298  1.1      oki 				SPC_MISC(("... found acb"));
   1299  1.1      oki 				sc->sc_state = SPC_HASNEXUS;
   1300  1.1      oki 			}
   1301  1.1      oki 		} else {
   1302  1.1      oki 			printf("%s: bogus reselect (no IDENTIFY) %0x2x\n",
   1303  1.1      oki 			    sc->sc_dev.dv_xname, sc->sc_selid);
   1304  1.1      oki 			mha_sched_msgout(SEND_DEV_RESET);
   1305  1.1      oki 		}
   1306  1.1      oki 	} else { /* Neither SPC_HASNEXUS nor SPC_RESELECTED! */
   1307  1.1      oki 		printf("%s: unexpected message in; will send DEV_RESET\n",
   1308  1.1      oki 		    sc->sc_dev.dv_xname);
   1309  1.1      oki 		mha_sched_msgout(SEND_DEV_RESET);
   1310  1.1      oki 	}
   1311  1.1      oki 
   1312  1.1      oki 	/* Ack last message byte */
   1313  1.1      oki #if 0
   1314  1.1      oki 	ESPCMD(sc, ESPCMD_MSGOK);
   1315  1.1      oki #endif
   1316  1.1      oki 
   1317  1.1      oki 	/* Done, reset message pointer. */
   1318  1.1      oki 	sc->sc_flags &= ~SPC_DROP_MSGI;
   1319  1.1      oki 	sc->sc_imlen = 0;
   1320  1.1      oki }
   1321  1.1      oki 
   1322  1.1      oki /*
   1323  1.1      oki  * Send the highest priority, scheduled message.
   1324  1.1      oki  */
   1325  1.1      oki void
   1326  1.1      oki mha_msgout(sc)
   1327  1.1      oki 	register struct mha_softc *sc;
   1328  1.1      oki {
   1329  1.1      oki 	struct spc_tinfo *ti;
   1330  1.1      oki 	int n;
   1331  1.1      oki 
   1332  1.1      oki 	SPC_TRACE(("mha_msgout  "));
   1333  1.1      oki 
   1334  1.1      oki 	if (sc->sc_prevphase == MESSAGE_OUT_PHASE) {
   1335  1.1      oki 		if (sc->sc_omp == sc->sc_omess) {
   1336  1.1      oki 			/*
   1337  1.1      oki 			 * This is a retransmission.
   1338  1.1      oki 			 *
   1339  1.1      oki 			 * We get here if the target stayed in MESSAGE OUT
   1340  1.1      oki 			 * phase.  Section 5.1.9.2 of the SCSI 2 spec indicates
   1341  1.1      oki 			 * that all of the previously transmitted messages must
   1342  1.1      oki 			 * be sent again, in the same order.  Therefore, we
   1343  1.1      oki 			 * requeue all the previously transmitted messages, and
   1344  1.1      oki 			 * start again from the top.  Our simple priority
   1345  1.1      oki 			 * scheme keeps the messages in the right order.
   1346  1.1      oki 			 */
   1347  1.1      oki 			SPC_MISC(("retransmitting  "));
   1348  1.1      oki 			sc->sc_msgpriq |= sc->sc_msgoutq;
   1349  1.1      oki 			/*
   1350  1.1      oki 			 * Set ATN.  If we're just sending a trivial 1-byte
   1351  1.1      oki 			 * message, we'll clear ATN later on anyway.
   1352  1.1      oki 			 */
   1353  1.1      oki 			CMR = CMD_SET_ATN; /* XXX? */
   1354  1.1      oki 		} else {
   1355  1.1      oki 			/* This is a continuation of the previous message. */
   1356  1.1      oki 			n = sc->sc_omp - sc->sc_omess;
   1357  1.1      oki 			goto nextbyte;
   1358  1.1      oki 		}
   1359  1.1      oki 	}
   1360  1.1      oki 
   1361  1.1      oki 	/* No messages transmitted so far. */
   1362  1.1      oki 	sc->sc_msgoutq = 0;
   1363  1.1      oki 	sc->sc_lastmsg = 0;
   1364  1.1      oki 
   1365  1.1      oki nextmsg:
   1366  1.1      oki 	/* Pick up highest priority message. */
   1367  1.1      oki 	sc->sc_currmsg = sc->sc_msgpriq & -sc->sc_msgpriq;
   1368  1.1      oki 	sc->sc_msgpriq &= ~sc->sc_currmsg;
   1369  1.1      oki 	sc->sc_msgoutq |= sc->sc_currmsg;
   1370  1.1      oki 
   1371  1.1      oki 	/* Build the outgoing message data. */
   1372  1.1      oki 	switch (sc->sc_currmsg) {
   1373  1.1      oki 	case SEND_IDENTIFY:
   1374  1.1      oki 		SPC_ASSERT(sc->sc_nexus != NULL);
   1375  1.1      oki 		sc->sc_omess[0] =
   1376  1.1      oki 		    MSG_IDENTIFY(sc->sc_nexus->xs->sc_link->scsipi_scsi.lun, 1);
   1377  1.1      oki 		n = 1;
   1378  1.1      oki 		break;
   1379  1.1      oki 
   1380  1.1      oki #if SPC_USE_SYNCHRONOUS
   1381  1.1      oki 	case SEND_SDTR:
   1382  1.1      oki 		SPC_ASSERT(sc->sc_nexus != NULL);
   1383  1.1      oki 		ti = &sc->sc_tinfo[sc->sc_nexus->xs->sc_link->scsipi_scsi.target];
   1384  1.1      oki 		sc->sc_omess[4] = MSG_EXTENDED;
   1385  1.1      oki 		sc->sc_omess[3] = 3;
   1386  1.1      oki 		sc->sc_omess[2] = MSG_EXT_SDTR;
   1387  1.1      oki 		sc->sc_omess[1] = ti->period >> 2;
   1388  1.1      oki 		sc->sc_omess[0] = ti->offset;
   1389  1.1      oki 		n = 5;
   1390  1.1      oki 		break;
   1391  1.1      oki #endif
   1392  1.1      oki 
   1393  1.1      oki #if SPC_USE_WIDE
   1394  1.1      oki 	case SEND_WDTR:
   1395  1.1      oki 		SPC_ASSERT(sc->sc_nexus != NULL);
   1396  1.1      oki 		ti = &sc->sc_tinfo[sc->sc_nexus->xs->sc_link->scsipi_scsi.target];
   1397  1.1      oki 		sc->sc_omess[3] = MSG_EXTENDED;
   1398  1.1      oki 		sc->sc_omess[2] = 2;
   1399  1.1      oki 		sc->sc_omess[1] = MSG_EXT_WDTR;
   1400  1.1      oki 		sc->sc_omess[0] = ti->width;
   1401  1.1      oki 		n = 4;
   1402  1.1      oki 		break;
   1403  1.1      oki #endif
   1404  1.1      oki 
   1405  1.1      oki 	case SEND_DEV_RESET:
   1406  1.1      oki 		sc->sc_flags |= SPC_ABORTING;
   1407  1.1      oki 		sc->sc_omess[0] = MSG_BUS_DEV_RESET;
   1408  1.1      oki 		n = 1;
   1409  1.1      oki 		break;
   1410  1.1      oki 
   1411  1.1      oki 	case SEND_REJECT:
   1412  1.1      oki 		sc->sc_omess[0] = MSG_MESSAGE_REJECT;
   1413  1.1      oki 		n = 1;
   1414  1.1      oki 		break;
   1415  1.1      oki 
   1416  1.1      oki 	case SEND_PARITY_ERROR:
   1417  1.1      oki 		sc->sc_omess[0] = MSG_PARITY_ERROR;
   1418  1.1      oki 		n = 1;
   1419  1.1      oki 		break;
   1420  1.1      oki 
   1421  1.1      oki 	case SEND_INIT_DET_ERR:
   1422  1.1      oki 		sc->sc_omess[0] = MSG_INITIATOR_DET_ERR;
   1423  1.1      oki 		n = 1;
   1424  1.1      oki 		break;
   1425  1.1      oki 
   1426  1.1      oki 	case SEND_ABORT:
   1427  1.1      oki 		sc->sc_flags |= SPC_ABORTING;
   1428  1.1      oki 		sc->sc_omess[0] = MSG_ABORT;
   1429  1.1      oki 		n = 1;
   1430  1.1      oki 		break;
   1431  1.1      oki 
   1432  1.1      oki 	default:
   1433  1.1      oki 		printf("%s: unexpected MESSAGE OUT; sending NOOP\n",
   1434  1.1      oki 		    sc->sc_dev.dv_xname);
   1435  1.1      oki 		SPC_BREAK();
   1436  1.1      oki 		sc->sc_omess[0] = MSG_NOOP;
   1437  1.1      oki 		n = 1;
   1438  1.1      oki 		break;
   1439  1.1      oki 	}
   1440  1.1      oki 	sc->sc_omp = &sc->sc_omess[n];
   1441  1.1      oki 
   1442  1.1      oki nextbyte:
   1443  1.1      oki 	/* Send message bytes. */
   1444  1.1      oki 	/* send TRANSFER command. */
   1445  1.1      oki 	sc->sc_ps[3] = 1;
   1446  1.1      oki 	sc->sc_ps[4] = n >> 8;
   1447  1.1      oki 	sc->sc_pc[10] = n;
   1448  1.1      oki 	sc->sc_ps[-1] = 0x000F;	/* burst */
   1449  1.1      oki 	asm volatile ("nop");
   1450  1.1      oki 	CMR = CMD_SEND_FROM_DMA;	/* send from DMA */
   1451  1.1      oki 	for (;;) {
   1452  1.1      oki 		if ((SSR & SS_BUSY) != 0)
   1453  1.1      oki 			break;
   1454  1.1      oki 		if (SSR & SS_IREQUEST)
   1455  1.1      oki 			goto out;
   1456  1.1      oki 	}
   1457  1.1      oki 	for (;;) {
   1458  1.1      oki #if 0
   1459  1.1      oki 		for (;;) {
   1460  1.1      oki 			if ((PSNS & PSNS_REQ) != 0)
   1461  1.1      oki 				break;
   1462  1.1      oki 			/* Wait for REQINIT.  XXX Need timeout. */
   1463  1.1      oki 		}
   1464  1.1      oki #endif
   1465  1.1      oki 		if (SSR & SS_IREQUEST) {
   1466  1.1      oki 			/*
   1467  1.1      oki 			 * Target left MESSAGE OUT, possibly to reject
   1468  1.1      oki 			 * our message.
   1469  1.1      oki 			 *
   1470  1.1      oki 			 * If this is the last message being sent, then we
   1471  1.1      oki 			 * deassert ATN, since either the target is going to
   1472  1.1      oki 			 * ignore this message, or it's going to ask for a
   1473  1.1      oki 			 * retransmission via MESSAGE PARITY ERROR (in which
   1474  1.1      oki 			 * case we reassert ATN anyway).
   1475  1.1      oki 			 */
   1476  1.1      oki #if 0
   1477  1.1      oki 			if (sc->sc_msgpriq == 0)
   1478  1.1      oki 				CMR = CMD_RESET_ATN;
   1479  1.1      oki #endif
   1480  1.1      oki 			goto out;
   1481  1.1      oki 		}
   1482  1.1      oki 
   1483  1.1      oki #if 0
   1484  1.1      oki 		/* Clear ATN before last byte if this is the last message. */
   1485  1.1      oki 		if (n == 1 && sc->sc_msgpriq == 0)
   1486  1.1      oki 			CMR = CMD_RESET_ATN;
   1487  1.1      oki #endif
   1488  1.1      oki 
   1489  1.1      oki 		while ((SSR & SS_DREG_FULL) != 0)
   1490  1.1      oki 			;
   1491  1.1      oki 		/* Send message byte. */
   1492  1.1      oki 		sc->sc_pc[0] = *--sc->sc_omp;
   1493  1.1      oki 		--n;
   1494  1.1      oki 		/* Keep track of the last message we've sent any bytes of. */
   1495  1.1      oki 		sc->sc_lastmsg = sc->sc_currmsg;
   1496  1.1      oki 
   1497  1.1      oki 		if (n == 0)
   1498  1.1      oki 			break;
   1499  1.1      oki 	}
   1500  1.1      oki 
   1501  1.1      oki 	/* We get here only if the entire message has been transmitted. */
   1502  1.1      oki 	if (sc->sc_msgpriq != 0) {
   1503  1.1      oki 		/* There are more outgoing messages. */
   1504  1.1      oki 		goto nextmsg;
   1505  1.1      oki 	}
   1506  1.1      oki 
   1507  1.1      oki 	/*
   1508  1.1      oki 	 * The last message has been transmitted.  We need to remember the last
   1509  1.1      oki 	 * message transmitted (in case the target switches to MESSAGE IN phase
   1510  1.1      oki 	 * and sends a MESSAGE REJECT), and the list of messages transmitted
   1511  1.1      oki 	 * this time around (in case the target stays in MESSAGE OUT phase to
   1512  1.1      oki 	 * request a retransmit).
   1513  1.1      oki 	 */
   1514  1.1      oki 
   1515  1.1      oki out:
   1516  1.1      oki 	/* Disable REQ/ACK protocol. */
   1517  1.1      oki }
   1518  1.1      oki 
   1519  1.1      oki 
   1520  1.1      oki /***************************************************************
   1522  1.1      oki  *
   1523  1.1      oki  *	datain/dataout
   1524  1.1      oki  *
   1525  1.1      oki  */
   1526  1.1      oki 
   1527  1.1      oki int
   1528  1.1      oki mha_datain_pio(sc, p, n)
   1529  1.1      oki 	register struct mha_softc *sc;
   1530  1.1      oki 	u_char *p;
   1531  1.1      oki 	int n;
   1532  1.1      oki {
   1533  1.1      oki 	u_short d;
   1534  1.1      oki 	int a;
   1535  1.1      oki 	int total_n = n;
   1536  1.1      oki 
   1537  1.1      oki 	SPC_TRACE(("[mha_datain_pio(%x,%d)", p, n));
   1538  1.1      oki 
   1539  1.1      oki 	WAIT;
   1540  1.1      oki 	sc->sc_ps[3] = 1;
   1541  1.1      oki 	sc->sc_ps[4] = n >> 8;
   1542  1.1      oki 	sc->sc_pc[10] = n;
   1543  1.1      oki 	/* $BHa$7$-%=%U%HE>Aw(B */
   1544  1.1      oki 	CMR = CMD_RECEIVE_TO_MPU;
   1545  1.1      oki 	for (;;) {
   1546  1.1      oki 		a = SSR;
   1547  1.1      oki 		if (a & 0x04) {
   1548  1.1      oki 			d = sc->sc_ps[0];
   1549  1.1      oki 			*p++ = d >> 8;
   1550  1.1      oki 			if (--n > 0) {
   1551  1.1      oki 				*p++ = d;
   1552  1.1      oki 				--n;
   1553  1.1      oki 			}
   1554  1.1      oki 			a = SSR;
   1555  1.1      oki 		}
   1556  1.1      oki 		if (a & 0x40)
   1557  1.1      oki 			continue;
   1558  1.1      oki 		if (a & 0x80)
   1559  1.1      oki 			break;
   1560  1.1      oki 	}
   1561  1.1      oki 	SPC_TRACE(("...%d resd]", n));
   1562  1.1      oki 	return total_n - n;
   1563  1.1      oki }
   1564  1.1      oki 
   1565  1.1      oki int
   1566  1.1      oki mha_dataout_pio(sc, p, n)
   1567  1.1      oki 	register struct mha_softc *sc;
   1568  1.1      oki 	u_char *p;
   1569  1.1      oki 	int n;
   1570  1.1      oki {
   1571  1.1      oki 	u_short d;
   1572  1.1      oki 	int a;
   1573  1.1      oki 	int total_n = n;
   1574  1.1      oki 
   1575  1.1      oki 	SPC_TRACE(("[mha_dataout_pio(%x,%d)", p, n));
   1576  1.1      oki 
   1577  1.1      oki 	WAIT;
   1578  1.1      oki 	sc->sc_ps[3] = 1;
   1579  1.1      oki 	sc->sc_ps[4] = n >> 8;
   1580  1.1      oki 	sc->sc_pc[10] = n;
   1581  1.1      oki 	/* $BHa$7$-%=%U%HE>Aw(B */
   1582  1.1      oki 	CMR = CMD_SEND_FROM_MPU;
   1583  1.1      oki 	for (;;) {
   1584  1.1      oki 		a = SSR;
   1585  1.1      oki 		if (a & 0x04) {
   1586  1.1      oki 			d = *p++ << 8;
   1587  1.1      oki 			if (--n > 0) {
   1588  1.1      oki 				d |= *p++;
   1589  1.1      oki 				--n;
   1590  1.1      oki 			}
   1591  1.1      oki 			sc->sc_ps[0] = d;
   1592  1.1      oki 			a = SSR;
   1593  1.1      oki 		}
   1594  1.1      oki 		if (a & 0x40)
   1595  1.1      oki 			continue;
   1596  1.1      oki 		if (a & 0x80)
   1597  1.1      oki 			break;
   1598  1.1      oki 	}
   1599  1.1      oki 	SPC_TRACE(("...%d resd]", n));
   1600  1.1      oki 	return total_n - n;
   1601  1.1      oki }
   1602  1.1      oki 
   1603  1.1      oki static int
   1604  1.1      oki mha_dataio_dma(dw, cw, sc, p, n)
   1605  1.1      oki 	int dw;		/* DMA word */
   1606  1.1      oki 	int cw;		/* CMR word */
   1607  1.1      oki 	register struct mha_softc *sc;
   1608  1.1      oki 	u_char *p;
   1609  1.1      oki 	int n;
   1610  1.1      oki {
   1611  1.1      oki   int ts;
   1612  1.1      oki   char *paddr, *vaddr;
   1613  1.1      oki 
   1614  1.1      oki   vaddr = p;
   1615  1.1      oki   paddr = (char *)kvtop(vaddr);
   1616  1.1      oki   DCFP((vm_offset_t)paddr);	/* XXX */
   1617  1.1      oki   for (ts = (NBPG - ((long)vaddr & PGOFSET));
   1618  1.1      oki        ts < n && (char *)kvtop(vaddr + ts + 4) == paddr + ts + 4;
   1619  1.1      oki        ts += NBPG)
   1620  1.1      oki     DCFP((vm_offset_t)paddr + ts);
   1621  1.1      oki   if (ts > n)
   1622  1.1      oki     ts = n;
   1623  1.1      oki #if 0
   1624  1.1      oki   printf("(%x,%x)->(%x,%x)\n", p, n, paddr, ts);
   1625  1.1      oki   PCIA();	/* XXX */
   1626  1.1      oki #endif
   1627  1.1      oki   sc->sc_pc[0x80 + (((long)paddr >> 16) & 0xFF)] = 0;
   1628  1.1      oki   sc->sc_pc[0x180 + (((long)paddr >> 8) & 0xFF)] = 0;
   1629  1.1      oki   sc->sc_pc[0x280 + (((long)paddr >> 0) & 0xFF)] = 0;
   1630  1.1      oki   WAIT;
   1631  1.1      oki   sc->sc_ps[3] = 1;
   1632  1.1      oki   sc->sc_ps[4] = ts >> 8;
   1633  1.1      oki   sc->sc_pc[10] = ts;
   1634  1.1      oki   /* DMA $BE>Aw@)8f$O0J2<$NDL$j!#(B
   1635  1.1      oki      3 ... short bus cycle
   1636  1.1      oki      2 ... MAXIMUM XFER.
   1637  1.1      oki      1 ... BURST XFER.
   1638  1.1      oki      0 ... R/W */
   1639  1.1      oki   sc->sc_ps[-1] = dw;	/* burst */
   1640  1.1      oki   asm volatile ("nop");
   1641  1.1      oki   CMR = cw;	/* receive to DMA */
   1642  1.1      oki   return ts;
   1643  1.1      oki }
   1644  1.1      oki int
   1645  1.1      oki mha_dataout(sc, p, n)
   1646  1.1      oki 	register struct mha_softc *sc;
   1647  1.1      oki 	u_char *p;
   1648  1.1      oki 	int n;
   1649  1.1      oki {
   1650  1.1      oki   register struct acb *acb = sc->sc_nexus;
   1651  1.1      oki 
   1652  1.1      oki   if (n == 0)
   1653  1.1      oki     return n;
   1654  1.1      oki 
   1655  1.1      oki   if (((long)p & 1) || (n & 1))
   1656  1.1      oki     return mha_dataout_pio(sc, p, n);
   1657  1.1      oki   return mha_dataio_dma(0x000F, CMD_SEND_FROM_DMA, sc, p, n);
   1658  1.1      oki }
   1659  1.1      oki 
   1660  1.1      oki int
   1662  1.1      oki mha_datain(sc, p, n)
   1663  1.1      oki 	register struct mha_softc *sc;
   1664  1.1      oki 	u_char *p;
   1665  1.1      oki 	int n;
   1666  1.1      oki {
   1667  1.1      oki   int ts;
   1668  1.1      oki   register struct acb *acb = sc->sc_nexus;
   1669  1.1      oki   char *paddr, *vaddr;
   1670  1.1      oki 
   1671  1.1      oki   if (n == 0)
   1672  1.1      oki     return n;
   1673  1.1      oki   if (acb->cmd.opcode == 0x03 || ((long)p & 1) || (n & 1))
   1674  1.1      oki     return mha_datain_pio(sc, p, n);
   1675  1.1      oki   return mha_dataio_dma(0x000E, CMD_RECEIVE_TO_DMA, sc, p, n);
   1676  1.1      oki }
   1677  1.1      oki 
   1678  1.1      oki 
   1680  1.1      oki /*
   1681  1.1      oki  * Catch an interrupt from the adaptor
   1682  1.2      oki  */
   1683  1.1      oki /*
   1684  1.2      oki  * This is the workhorse routine of the driver.
   1685  1.2      oki  * Deficiencies (for now):
   1686  1.1      oki  * 1) always uses programmed I/O
   1687  1.1      oki  */
   1688  1.1      oki int
   1689  1.1      oki mhaintr(unit)
   1690  1.1      oki 	int unit;
   1691  1.2      oki {
   1692  1.2      oki 	struct mha_softc *sc = mha_cd.cd_devs[unit]; /* XXX */
   1693  1.2      oki 	u_char ints;
   1694  1.2      oki 	struct acb *acb;
   1695  1.1      oki 	struct scsipi_link *sc_link;
   1696  1.2      oki 	struct spc_tinfo *ti;
   1697  1.1      oki 	u_char ph;
   1698  1.1      oki 	u_short r;
   1699  1.1      oki 	int n;
   1700  1.1      oki 
   1701  1.1      oki 	/* return if not configured */
   1702  1.1      oki 	if (sc == NULL)
   1703  1.1      oki 		return;
   1704  1.1      oki 
   1705  1.1      oki #if 1	/* XXX */
   1706  1.1      oki 	if (tmpsc != NULL && tmpsc != sc) {
   1707  1.1      oki 	    SPC_MISC(("[%x %x]\n", mha_cd.cd_devs, sc));
   1708  1.1      oki 	    sc = tmpsc;
   1709  1.1      oki 	  }
   1710  1.1      oki #endif
   1711  1.1      oki 
   1712  1.1      oki 	/*
   1713  1.1      oki 	 * $B3d$j9~$_6X;_$K$9$k(B
   1714  1.1      oki 	 */
   1715  1.1      oki #if 0
   1716  1.1      oki 	SCTL &= ~SCTL_INTR_ENAB;
   1717  1.1      oki #endif
   1718  1.1      oki 
   1719  1.1      oki 	SPC_TRACE(("[mhaintr]"));
   1720  1.1      oki 
   1721  1.1      oki loop:
   1722  1.1      oki 	/*
   1723  1.1      oki 	 * $BA4E>Aw$,40A4$K=*N;$9$k$^$G%k!<%W$9$k(B
   1724  1.1      oki 	 */
   1725  1.1      oki 	/*
   1726  1.1      oki 	 * First check for abnormal conditions, such as reset.
   1727  1.1      oki 	 */
   1728  1.1      oki #if 0
   1729  1.1      oki #if 1 /* XXX? */
   1730  1.1      oki 	while (((ints = SSR) & SS_IREQUEST) == 0)
   1731  1.1      oki 		delay(1);
   1732  1.1      oki 	SPC_MISC(("ints = 0x%x  ", ints));
   1733  1.1      oki #else /* usually? */
   1734  1.1      oki 	ints = SSR;
   1735  1.1      oki #endif
   1736  1.1      oki #endif
   1737  1.1      oki   while (SSR & SS_IREQUEST)
   1738  1.1      oki     {
   1739  1.1      oki       acb = sc->sc_nexus;
   1740  1.1      oki       r = ISCSR;
   1741  1.1      oki       SPC_MISC(("[r=0x%x]", r));
   1742  1.1      oki       switch (r >> 8)
   1743  1.1      oki 	{
   1744  1.1      oki 	default:
   1745  1.1      oki 	  printf("[addr=%x\n"
   1746  1.1      oki 		 "result=0x%x\n"
   1747  1.1      oki 		 "cmd=0x%x\n"
   1748  1.1      oki 		 "ph=0x%x(ought to be %d)]\n",
   1749  1.1      oki 		 &ISCSR,
   1750  1.1      oki 		 r,
   1751  1.1      oki 		 acb->xs->cmd->opcode,
   1752  1.1      oki 		 SCR, sc->sc_phase);
   1753  1.1      oki 	  panic("unexpected result.");
   1754  1.1      oki 	case 0x82:	/* selection timeout */
   1755  1.1      oki 	  SPC_MISC(("selection timeout  "));
   1756  1.1      oki 	  sc->sc_phase = BUSFREE_PHASE;
   1757  1.1      oki 	  SPC_ASSERT(sc->sc_nexus != NULL);
   1758  1.1      oki 	  acb = sc->sc_nexus;
   1759  1.1      oki 	  delay(250);
   1760  1.1      oki 	  acb->xs->error = XS_SELTIMEOUT;
   1761  1.1      oki 	  mha_done(sc, acb);
   1762  1.1      oki 	  continue;	/* XXX ??? msaitoh */
   1763  1.1      oki 	case 0x60:	/* command completed */
   1764  1.1      oki 	  sc->sc_spcinitialized++;
   1765  1.1      oki 	  if (sc->sc_phase == BUSFREE_PHASE)
   1766  1.1      oki 	    continue;
   1767  1.1      oki 	  ph = SCR;
   1768  1.1      oki 	  if (ph & PSNS_ACK)
   1769  1.1      oki 	    {
   1770  1.1      oki 	      int s;
   1771  1.1      oki 	      /* $B$U$D!<$N%3%^%s%I$,=*N;$7$?$i$7$$(B */
   1772  1.1      oki SPC_MISC(("0x60)phase = %x(ought to be %x)\n", ph & PHASE_MASK, sc->sc_phase));
   1773  1.1      oki # if 0
   1774  1.1      oki 	      switch (sc->sc_phase)
   1775  1.1      oki #else
   1776  1.1      oki 	      switch (ph & PHASE_MASK)
   1777  1.1      oki #endif
   1778  1.1      oki 		{
   1779  1.1      oki 		case STATUS_PHASE:
   1780  1.1      oki 			if (sc->sc_state != SPC_HASNEXUS)
   1781  1.1      oki 			  {
   1782  1.1      oki 			    printf("stsin: !SPC_HASNEXUS->(%d)\n", sc->sc_state);
   1783  1.1      oki 			  }
   1784  1.1      oki 			SPC_ASSERT(sc->sc_nexus != NULL);
   1785  1.1      oki 			acb = sc->sc_nexus;
   1786  1.1      oki 			WAIT;
   1787  1.1      oki 			s = MBR;
   1788  1.1      oki 			SPC_ASSERT(s == 1);
   1789  1.1      oki 			acb->stat = sc->sc_pcx[0]; /* XXX */
   1790  1.1      oki 			SPC_MISC(("stat=0x%02x  ", acb->stat));
   1791  1.1      oki 			sc->sc_prevphase = STATUS_PHASE;
   1792  1.1      oki 			break;
   1793  1.1      oki 		case MESSAGE_IN_PHASE:
   1794  1.1      oki 			mha_msgin(sc);
   1795  1.1      oki 			sc->sc_prevphase = MESSAGE_IN_PHASE;
   1796  1.1      oki 			break;
   1797  1.1      oki 		}
   1798  1.1      oki 	      WAIT;
   1799  1.1      oki 	      CMR = CMD_RESET_ACK;	/* reset ack */
   1800  1.1      oki 	      /*mha_done(sc, acb);	XXX */
   1801  1.1      oki 	      continue;
   1802  1.1      oki 	    }
   1803  1.1      oki 	  else if (NSR & 0x80)	/* nexus */
   1804  1.1      oki 	    {
   1805  1.1      oki #if 1
   1806  1.1      oki 		if (sc->sc_state == SPC_SELECTING)	/* XXX msaitoh */
   1807  1.1      oki 		  sc->sc_state = SPC_HASNEXUS;
   1808  1.1      oki 	      /* $B%U%'!<%:$N7h$aBG$A$r$9$k(B
   1809  1.1      oki 		 $B30$l$?$i!"(Binitial-phase error(0x54) $B$,(B
   1810  1.1      oki 		 $BJV$C$F$/$k$s$GCm0U$7$?$^$(!#(B
   1811  1.1      oki 		 $B$G$b$J$<$+(B 0x65 $B$,JV$C$F$-$?$j$7$F$M!<$+(B? */
   1812  1.1      oki 	      WAIT;
   1813  1.1      oki 	      if (SSR & SS_IREQUEST)
   1814  1.1      oki 		continue;
   1815  1.1      oki 	      switch (sc->sc_phase)
   1816  1.1      oki 		{
   1817  1.1      oki 		default:
   1818  1.1      oki 		  panic("$B8+CN$i$L(B phase $B$,Mh$A$^$C$?$@$h(B");
   1819  1.1      oki 		case MESSAGE_IN_PHASE:
   1820  1.1      oki 		  /* $B2?$b$7$J$$(B */
   1821  1.1      oki 		  continue;
   1822  1.1      oki 		case STATUS_PHASE:
   1823  1.1      oki 		  sc->sc_phase = MESSAGE_IN_PHASE;
   1824  1.1      oki 		  CMR = CMD_RECEIVE_MSG;	/* receive msg */
   1825  1.1      oki 		  continue;
   1826  1.1      oki 		case DATA_IN_PHASE:
   1827  1.1      oki 		  sc->sc_prevphase = DATA_IN_PHASE;
   1828  1.1      oki 		  if (sc->sc_dleft == 0)
   1829  1.1      oki 		    {
   1830  1.1      oki 		      /* $BE>Aw%G!<%?$O$b$&$J$$$N$G(B
   1831  1.1      oki 			 $B%9%F!<%?%9%U%'!<%:$r4|BT$7$h$&(B */
   1832  1.1      oki 		      sc->sc_phase = STATUS_PHASE;
   1833  1.1      oki 		      CMR = CMD_RECEIVE_STS;	/* receive sts */
   1834  1.1      oki 		      continue;
   1835  1.1      oki 		    }
   1836  1.1      oki 		  n = mha_datain(sc, sc->sc_dp, sc->sc_dleft);
   1837  1.1      oki 		  sc->sc_dp += n;
   1838  1.1      oki 		  sc->sc_dleft -= n;
   1839  1.1      oki 		  continue;
   1840  1.1      oki 		case DATA_OUT_PHASE:
   1841  1.1      oki 		  sc->sc_prevphase = DATA_OUT_PHASE;
   1842  1.1      oki 		  if (sc->sc_dleft == 0)
   1843  1.1      oki 		    {
   1844  1.1      oki 		      /* $BE>Aw%G!<%?$O$b$&$J$$$N$G(B
   1845  1.1      oki 			 $B%9%F!<%?%9%U%'!<%:$r4|BT$7$h$&(B */
   1846  1.1      oki 		      sc->sc_phase = STATUS_PHASE;
   1847  1.1      oki 		      CMR = CMD_RECEIVE_STS;	/* receive sts */
   1848  1.1      oki 		      continue;
   1849  1.1      oki 		    }
   1850  1.1      oki 		  /* data phase $B$NB3$-$r$d$m$&(B */
   1851  1.1      oki 		  n = mha_dataout(sc, sc->sc_dp, sc->sc_dleft);
   1852  1.1      oki 		  sc->sc_dp += n;
   1853  1.1      oki 		  sc->sc_dleft -= n;
   1854  1.1      oki 		  continue;
   1855  1.1      oki 		case COMMAND_PHASE:
   1856  1.1      oki 		  /* $B:G=i$O(B CMD PHASE $B$H$$$&$3$H$i$7$$(B */
   1857  1.1      oki 		  if (acb->dleft)
   1858  1.1      oki 		    {
   1859  1.1      oki 		      /* $B%G!<%?E>Aw$,$"$j$&$k>l9g(B */
   1860  1.1      oki 		      if (acb->xs->flags & SCSI_DATA_IN)
   1861  1.1      oki 			{
   1862  1.1      oki 			  sc->sc_phase = DATA_IN_PHASE;
   1863  1.1      oki 			  n = mha_datain(sc, sc->sc_dp, sc->sc_dleft);
   1864  1.1      oki 			  sc->sc_dp += n;
   1865  1.1      oki 			  sc->sc_dleft -= n;
   1866  1.1      oki 			}
   1867  1.1      oki 		      else if (acb->xs->flags & SCSI_DATA_OUT)
   1868  1.1      oki 			{
   1869  1.1      oki 			  sc->sc_phase = DATA_OUT_PHASE;
   1870  1.1      oki 			  n = mha_dataout(sc, sc->sc_dp, sc->sc_dleft);
   1871  1.1      oki 			  sc->sc_dp += n;
   1872  1.1      oki 			  sc->sc_dleft -= n;
   1873  1.1      oki 			}
   1874  1.1      oki 		      continue;
   1875  1.1      oki 		    }
   1876  1.1      oki 		  else
   1877  1.1      oki 		    {
   1878  1.1      oki 		      /* $B%G!<%?E>Aw$O$J$$$i$7$$(B?! */
   1879  1.1      oki 		      WAIT;
   1880  1.1      oki 		      sc->sc_phase = STATUS_PHASE;
   1881  1.1      oki 		      CMR = CMD_RECEIVE_STS;	/* receive sts */
   1882  1.1      oki 		      continue;
   1883  1.1      oki 		    }
   1884  1.1      oki 		}
   1885  1.1      oki #endif
   1886  1.1      oki 	    }
   1887  1.1      oki 	  continue;
   1888  1.1      oki 	case 0x31:	/* disconnected in xfer progress. */
   1889  1.1      oki 	  SPC_MISC(("[0x31]"));
   1890  1.1      oki 	case 0x70:	/* disconnected. */
   1891  1.1      oki 	  SPC_ASSERT(sc->sc_flags & SPC_BUSFREE_OK);
   1892  1.1      oki 	  sc->sc_phase = BUSFREE_PHASE;
   1893  1.1      oki 	  sc->sc_state = SPC_IDLE;
   1894  1.1      oki #if 1
   1895  1.1      oki 	  acb = sc->sc_nexus;
   1896  1.1      oki 	  SPC_ASSERT(sc->sc_nexus != NULL);
   1897  1.1      oki 	  acb->xs->error = XS_NOERROR;
   1898  1.1      oki 	  mha_done(sc, acb);
   1899  1.1      oki #else
   1900  1.1      oki 	  TAILQ_INSERT_HEAD(&sc->nexus_list, acb, chain);
   1901  1.1      oki 	  mha_sched(sc);
   1902  1.1      oki #endif
   1903  1.1      oki 	  continue;
   1904  1.1      oki 	case 0x32:	/* phase error in xfer progress. */
   1905  1.1      oki 	  SPC_MISC(("[0x32]"));
   1906  1.1      oki 	case 0x65:	/* invalid command.
   1907  1.1      oki 			   $B$J$<$3$s$J$b$N$,=P$k$N$+(B
   1908  1.1      oki 			   $B26$K$OA4$/M}2r$G$-$J$$(B */
   1909  1.1      oki #if 1
   1910  1.1      oki 	  SPC_MISC(("[0x%04x]", r));
   1911  1.1      oki #endif
   1912  1.1      oki 	case 0x54:	/* initial-phase error. */
   1913  1.1      oki 	  SPC_MISC(("[0x54, ns=%x, ph=%x(ought to be %x)]",
   1914  1.1      oki 		    NSR,
   1915  1.1      oki 		    SCR, sc->sc_phase));
   1916  1.1      oki 	  /* thru */
   1917  1.1      oki 	case 0x71:	/* assert req */
   1918  1.1      oki 	  WAIT;
   1919  1.1      oki 	  if (SSR & 0x40)
   1920  1.1      oki 	    {
   1921  1.1      oki 	      printf("SPC sts=%2x, r=%04x, ns=%x, ph=%x\n",
   1922  1.1      oki 		     SSR, r, NSR, SCR);
   1923  1.1      oki 	      WAIT;
   1924  1.1      oki 	    }
   1925  1.1      oki 	  ph = SCR;
   1926  1.1      oki 	  if (sc->sc_state == SPC_SELECTING)	/* XXX msaitoh */
   1927  1.1      oki 	    {
   1928  1.1      oki 	      sc->sc_state = SPC_HASNEXUS;
   1929  1.1      oki 	    }
   1930  1.1      oki 	  if (ph & 0x80)
   1931  1.1      oki 	    {
   1932  1.1      oki 	      switch (ph & PHASE_MASK)
   1933  1.1      oki 		{
   1934  1.1      oki 		default:
   1935  1.1      oki 			printf("phase = %x\n", ph);
   1936  1.1      oki 			panic("assert req: the phase I don't know!");
   1937  1.1      oki 		case DATA_IN_PHASE:
   1938  1.1      oki 			sc->sc_prevphase = DATA_IN_PHASE;
   1939  1.1      oki 			SPC_MISC(("DATAIN(%d)...", sc->sc_dleft));
   1940  1.1      oki 			n = mha_datain(sc, sc->sc_dp, sc->sc_dleft);
   1941  1.1      oki 			sc->sc_dp += n;
   1942  1.1      oki 			sc->sc_dleft -= n;
   1943  1.1      oki 			SPC_MISC(("done\n"));
   1944  1.1      oki 			continue;
   1945  1.1      oki 		case DATA_OUT_PHASE:
   1946  1.1      oki 			sc->sc_prevphase = DATA_OUT_PHASE;
   1947  1.1      oki 			SPC_MISC(("DATAOUT\n"));
   1948  1.1      oki 			n = mha_dataout(sc, sc->sc_dp, sc->sc_dleft);
   1949  1.1      oki 			sc->sc_dp += n;
   1950  1.1      oki 			sc->sc_dleft -= n;
   1951  1.1      oki 			continue;
   1952  1.1      oki 		case STATUS_PHASE:
   1953  1.1      oki 			sc->sc_phase = STATUS_PHASE;
   1954  1.1      oki 			SPC_MISC(("[RECV_STS]"));
   1955  1.1      oki 			WAIT;
   1956  1.1      oki 			CMR = CMD_RECEIVE_STS;	/* receive sts */
   1957  1.1      oki 			continue;
   1958  1.1      oki 		case MESSAGE_IN_PHASE:
   1959  1.1      oki 			sc->sc_phase = MESSAGE_IN_PHASE;
   1960  1.1      oki 			WAIT;
   1961  1.1      oki 			CMR = CMD_RECEIVE_MSG;
   1962  1.1      oki 			continue;
   1963  1.1      oki 		}
   1964  1.1      oki 	    }
   1965  1.1      oki 	  continue;
   1966  1.1      oki 	}
   1967  1.1      oki     }
   1968  1.1      oki }
   1969  1.1      oki 
   1970  1.1      oki void
   1971  1.1      oki mha_abort(sc, acb)
   1972  1.1      oki 	struct mha_softc *sc;
   1973  1.1      oki 	struct acb *acb;
   1974  1.1      oki {
   1975  1.1      oki 	acb->flags |= ACB_ABORTED;
   1976  1.1      oki 
   1977  1.1      oki 	if (acb == sc->sc_nexus) {
   1978  1.1      oki 		/*
   1979  1.1      oki 		 * If we're still selecting, the message will be scheduled
   1980  1.1      oki 		 * after selection is complete.
   1981  1.1      oki 		 */
   1982  1.1      oki 		if (sc->sc_state == SPC_HASNEXUS) {
   1983  1.1      oki 			sc->sc_flags |= SPC_ABORTING;
   1984  1.1      oki 			mha_sched_msgout(SEND_ABORT);
   1985  1.1      oki 		}
   1986  1.1      oki 	} else {
   1987  1.1      oki 		if (sc->sc_state == SPC_IDLE)
   1988  1.1      oki 			mha_sched(sc);
   1989  1.1      oki 	}
   1990  1.1      oki }
   1991  1.1      oki 
   1992  1.1      oki void
   1993  1.1      oki mha_timeout(arg)
   1994  1.1      oki 	void *arg;
   1995  1.1      oki {
   1996  1.1      oki 	int s = splbio();
   1997  1.1      oki 	struct acb *acb = (struct acb *)arg;
   1998  1.1      oki 	struct scsipi_xfer *xs = acb->xs;
   1999  1.1      oki 	struct scsipi_link *sc_link = xs->sc_link;
   2000  1.1      oki 	struct mha_softc *sc = sc_link->adapter_softc;
   2001  1.1      oki 
   2002  1.1      oki 	scsi_print_addr(sc_link);
   2003  1.1      oki again:
   2004  1.1      oki 	printf("%s: timed out [acb %p (flags 0x%x, dleft %x, stat %x)], "
   2005  1.1      oki 	       "<state %d, nexus %p, phase(c %x, p %x), resid %x, msg(q %x,o %x) >",
   2006  1.1      oki 		sc->sc_dev.dv_xname,
   2007  1.1      oki 		acb, acb->flags, acb->dleft, acb->stat,
   2008  1.1      oki 		sc->sc_state, sc->sc_nexus, sc->sc_phase, sc->sc_prevphase,
   2009  1.1      oki 		sc->sc_dleft, sc->sc_msgpriq, sc->sc_msgout
   2010  1.1      oki 		);
   2011  1.1      oki 	printf("[%04x %02x]\n", sc->sc_ps[1], SCR);
   2012  1.1      oki 	panic("timeout, ouch!");
   2013  1.1      oki 
   2014  1.1      oki 	if (acb->flags & ACB_ABORTED) {
   2015  1.1      oki 		/* abort timed out */
   2016  1.1      oki 		printf(" AGAIN\n");
   2017  1.1      oki #if 0
   2018  1.1      oki 		mha_init(sc, 1); /* XXX 1?*/
   2019  1.1      oki #endif
   2020  1.1      oki 	} else {
   2021  1.1      oki 		/* abort the operation that has timed out */
   2022  1.1      oki 		printf("\n");
   2023  1.1      oki 		xs->error = XS_TIMEOUT;
   2024  1.1      oki 		mha_abort(sc, acb);
   2025  1.1      oki 	}
   2026  1.1      oki 
   2027  1.1      oki 	splx(s);
   2028  1.1      oki }
   2029  1.1      oki 
   2030  1.1      oki #ifdef SPC_DEBUG
   2032  1.1      oki /*
   2033  1.1      oki  * The following functions are mostly used for debugging purposes, either
   2034  1.1      oki  * directly called from the driver or from the kernel debugger.
   2035  1.1      oki  */
   2036  1.1      oki 
   2037  1.1      oki void
   2038  1.1      oki mha_show_scsi_cmd(acb)
   2039  1.1      oki 	struct acb *acb;
   2040  1.1      oki {
   2041  1.1      oki 	u_char  *b = (u_char *)&acb->cmd;
   2042  1.1      oki 	struct scsipi_link *sc_link = acb->xs->sc_link;
   2043  1.1      oki 	int i;
   2044  1.1      oki 
   2045  1.1      oki 	scsi_print_addr(sc_link);
   2046  1.1      oki 	if ((acb->xs->flags & SCSI_RESET) == 0) {
   2047  1.1      oki 		for (i = 0; i < acb->clen; i++) {
   2048  1.1      oki 			if (i)
   2049  1.1      oki 				printf(",");
   2050  1.1      oki 			printf("%x", b[i]);
   2051  1.1      oki 		}
   2052  1.1      oki 		printf("\n");
   2053  1.1      oki 	} else
   2054  1.1      oki 		printf("RESET\n");
   2055  1.1      oki }
   2056  1.1      oki 
   2057  1.1      oki void
   2058  1.1      oki mha_print_acb(acb)
   2059  1.1      oki 	struct acb *acb;
   2060  1.1      oki {
   2061  1.1      oki 
   2062  1.1      oki 	printf("acb@%x xs=%x flags=%x", acb, acb->xs, acb->flags);
   2063  1.1      oki 	printf(" dp=%x dleft=%d stat=%x\n",
   2064  1.1      oki 	    (long)acb->daddr, acb->dleft, acb->stat);
   2065  1.1      oki 	mha_show_scsi_cmd(acb);
   2066  1.1      oki }
   2067  1.1      oki 
   2068  1.1      oki void
   2069  1.1      oki mha_print_active_acb()
   2070  1.1      oki {
   2071  1.1      oki 	struct acb *acb;
   2072  1.1      oki 	struct mha_softc *sc = mha_cd.cd_devs[0]; /* XXX */
   2073  1.1      oki 
   2074  1.1      oki 	printf("ready list:\n");
   2075  1.1      oki 	for (acb = sc->ready_list.tqh_first; acb != NULL;
   2076  1.1      oki 	    acb = acb->chain.tqe_next)
   2077  1.1      oki 		mha_print_acb(acb);
   2078  1.1      oki 	printf("nexus:\n");
   2079  1.1      oki 	if (sc->sc_nexus != NULL)
   2080  1.1      oki 		mha_print_acb(sc->sc_nexus);
   2081  1.1      oki 	printf("nexus list:\n");
   2082  1.1      oki 	for (acb = sc->nexus_list.tqh_first; acb != NULL;
   2083  1.1      oki 	    acb = acb->chain.tqe_next)
   2084  1.1      oki 		mha_print_acb(acb);
   2085  1.1      oki }
   2086  1.1      oki 
   2087  1.1      oki void
   2088  1.1      oki mha_dump_driver(sc)
   2089  1.1      oki 	struct mha_softc *sc;
   2090  1.1      oki {
   2091  1.1      oki 	struct spc_tinfo *ti;
   2092  1.1      oki 	int i;
   2093  1.1      oki 
   2094  1.1      oki 	printf("nexus=%x prevphase=%x\n", sc->sc_nexus, sc->sc_prevphase);
   2095               	printf("state=%x msgin=%x msgpriq=%x msgoutq=%x lastmsg=%x currmsg=%x\n",
   2096               	    sc->sc_state, sc->sc_imess[0],
   2097               	    sc->sc_msgpriq, sc->sc_msgoutq, sc->sc_lastmsg, sc->sc_currmsg);
   2098               	for (i = 0; i < 7; i++) {
   2099               		ti = &sc->sc_tinfo[i];
   2100               		printf("tinfo%d: %d cmds %d disconnects %d timeouts",
   2101               		    i, ti->cmds, ti->dconns, ti->touts);
   2102               		printf(" %d senses flags=%x\n", ti->senses, ti->flags);
   2103               	}
   2104               }
   2105               #endif
   2106