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aic7xxx.c revision 1.22
      1  1.22       cgd /*	$NetBSD: aic7xxx.c,v 1.22 1997/03/13 00:38:48 cgd Exp $	*/
      2   1.8   thorpej 
      3   1.1   mycroft /*
      4   1.1   mycroft  * Generic driver for the aic7xxx based adaptec SCSI controllers
      5   1.1   mycroft  * Product specific probe and attach routines can be found in:
      6   1.6   mycroft  * i386/eisa/aic7770.c	27/284X and aic7770 motherboard controllers
      7   1.9  explorer  * pci/aic7870.c	3940, 2940, aic7880, aic7870 and aic7850 controllers
      8   1.1   mycroft  *
      9   1.6   mycroft  * Copyright (c) 1994, 1995, 1996 Justin T. Gibbs.
     10   1.6   mycroft  * All rights reserved.
     11   1.1   mycroft  *
     12   1.6   mycroft  * Redistribution and use in source and binary forms, with or without
     13   1.6   mycroft  * modification, are permitted provided that the following conditions
     14   1.6   mycroft  * are met:
     15   1.6   mycroft  * 1. Redistributions of source code must retain the above copyright
     16   1.6   mycroft  *    notice immediately at the beginning of the file, without modification,
     17   1.6   mycroft  *    this list of conditions, and the following disclaimer.
     18   1.6   mycroft  * 2. Redistributions in binary form must reproduce the above copyright
     19   1.6   mycroft  *    notice, this list of conditions and the following disclaimer in the
     20   1.6   mycroft  *    documentation and/or other materials provided with the distribution.
     21   1.6   mycroft  * 3. The name of the author may not be used to endorse or promote products
     22   1.6   mycroft  *    derived from this software without specific prior written permission.
     23   1.1   mycroft  *
     24   1.6   mycroft  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     25   1.6   mycroft  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26   1.6   mycroft  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27   1.6   mycroft  * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
     28   1.6   mycroft  * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29   1.6   mycroft  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30   1.6   mycroft  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31   1.6   mycroft  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32   1.6   mycroft  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33   1.6   mycroft  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34   1.6   mycroft  * SUCH DAMAGE.
     35   1.9  explorer  *
     36   1.9  explorer  * from Id: aic7xxx.c,v 1.75 1996/06/23 20:02:37 gibbs Exp
     37   1.1   mycroft  */
     38   1.1   mycroft /*
     39   1.1   mycroft  * TODO:
     40   1.1   mycroft  *	Implement Target Mode
     41   1.6   mycroft  *
     42   1.6   mycroft  * A few notes on how SCB paging works...
     43   1.6   mycroft  *
     44   1.6   mycroft  * SCB paging takes advantage of the fact that devices stay disconnected
     45   1.6   mycroft  * from the bus a relatively long time and that while they're disconnected,
     46   1.6   mycroft  * having the SCBs for that device down on the host adapter is of little use.
     47   1.6   mycroft  * Instead we copy the SCB back up into kernel memory and reuse the SCB slot
     48   1.6   mycroft  * on the card to schedule another transaction.  This can be a real payoff
     49   1.6   mycroft  * when doing random I/O to tagged queueing devices since there are more
     50   1.6   mycroft  * transactions active at once for the device to sort for optimal seek
     51   1.6   mycroft  * reduction. The algorithm goes like this...
     52   1.6   mycroft  *
     53   1.6   mycroft  * At the sequencer level:
     54   1.6   mycroft  * 1) Disconnected SCBs are threaded onto a doubly linked list, headed by
     55   1.6   mycroft  *    DISCONNECTED_SCBH using the SCB_NEXT and SCB_PREV fields.  The most
     56   1.6   mycroft  *    recently disconnected device is always at the head.
     57   1.6   mycroft  *
     58   1.6   mycroft  * 2) The SCB has an added field SCB_TAG that corresponds to the kernel
     59   1.6   mycroft  *    SCB number (ie 0-254).
     60   1.6   mycroft  *
     61   1.6   mycroft  * 3) When a command is queued, the hardware index of the SCB it was downloaded
     62   1.6   mycroft  *    into is placed into the QINFIFO for easy indexing by the sequencer.
     63   1.6   mycroft  *
     64   1.6   mycroft  * 4) The tag field is used as the tag for tagged-queueing, for determining
     65   1.6   mycroft  *    the related kernel SCB, and is the value put into the QOUTFIFO
     66   1.6   mycroft  *    so the kernel doesn't have to upload the SCB to determine the kernel SCB
     67   1.6   mycroft  *    that completed on command completes.
     68   1.6   mycroft  *
     69   1.6   mycroft  * 5) When a reconnect occurs, the sequencer must scan the SCB array (even
     70   1.6   mycroft  *    in the tag case) looking for the appropriate SCB and if it can't find
     71   1.6   mycroft  *    it, it interrupts the kernel so it can page the SCB in.
     72   1.6   mycroft  *
     73   1.6   mycroft  * 6) If the sequencer is successful in finding the SCB, it removes it from
     74   1.6   mycroft  *    the doubly linked list of disconnected SCBS.
     75   1.6   mycroft  *
     76   1.6   mycroft  * At the kernel level:
     77   1.6   mycroft  * 1) There are four queues that a kernel SCB may reside on:
     78   1.6   mycroft  *	free_scbs - SCBs that are not in use and have a hardware slot assigned
     79   1.6   mycroft  *		    to them.
     80   1.6   mycroft  *      page_scbs - SCBs that are not in use and need to have a hardware slot
     81   1.6   mycroft  *		    assigned to them (i.e. they will most likely cause a page
     82   1.6   mycroft  *		    out event).
     83   1.6   mycroft  *	waiting_scbs - SCBs that are active, don't have an assigned hardware
     84   1.6   mycroft  *		    slot assigned to them and are waiting for either a
     85   1.6   mycroft  *		    disconnection or a command complete to free up a slot.
     86   1.6   mycroft  *	assigned_scbs - SCBs that were in the waiting_scbs queue, but were
     87   1.6   mycroft  *		    assigned a slot by ahc_free_scb.
     88   1.6   mycroft  *
     89   1.6   mycroft  * 2) When a new request comes in, an SCB is allocated from the free_scbs or
     90   1.6   mycroft  *    page_scbs queue with preference to SCBs on the free_scbs queue.
     91   1.6   mycroft  *
     92   1.6   mycroft  * 3) If there are no free slots (we retrieved the SCB off of the page_scbs
     93   1.6   mycroft  *    queue), the SCB is inserted onto the tail of the waiting_scbs list and
     94   1.6   mycroft  *    we attempt to run this queue down.
     95   1.6   mycroft  *
     96  1.21     mikel  * 4) ahc_run_waiting_queues() looks at both the assigned_scbs and waiting_scbs
     97   1.6   mycroft  *    queues.  In the case of the assigned_scbs, the commands are immediately
     98   1.6   mycroft  *    downloaded and started.  For waiting_scbs, we page in all that we can
     99   1.6   mycroft  *    ensuring we don't create a resource deadlock (see comments in
    100  1.21     mikel  *    ahc_run_waiting_queues()).
    101   1.6   mycroft  *
    102   1.6   mycroft  * 5) After we handle a bunch of command completes, we also try running the
    103   1.6   mycroft  *    queues since many SCBs may have disconnected since the last command
    104   1.6   mycroft  *    was started and we have at least one free slot on the card.
    105   1.6   mycroft  *
    106   1.6   mycroft  * 6) ahc_free_scb looks at the waiting_scbs queue for a transaction
    107   1.6   mycroft  *    requiring a slot and moves it to the assigned_scbs queue if it
    108   1.6   mycroft  *    finds one.  Otherwise it puts the current SCB onto the free_scbs
    109   1.6   mycroft  *    queue for later use.
    110   1.6   mycroft  *
    111   1.6   mycroft  * 7) The driver handles page-in requests from the sequencer in response to
    112  1.21     mikel  *    the NO_MATCH sequencer interrupt.  For tagged commands, the appropriate
    113   1.6   mycroft  *    SCB is easily found since the tag is a direct index into our kernel SCB
    114   1.6   mycroft  *    array.  For non-tagged commands, we keep a separate array of 16 pointers
    115   1.6   mycroft  *    that point to the single possible SCB that was paged out for that target.
    116   1.1   mycroft  */
    117   1.1   mycroft 
    118   1.1   mycroft #include <sys/param.h>
    119   1.1   mycroft #include <sys/systm.h>
    120   1.6   mycroft #if defined(__NetBSD__)
    121   1.1   mycroft #include <sys/device.h>
    122   1.6   mycroft #include <machine/bus.h>
    123   1.6   mycroft #include <machine/intr.h>
    124   1.6   mycroft #endif /* defined(__NetBSD__) */
    125   1.6   mycroft 
    126   1.1   mycroft #include <sys/malloc.h>
    127   1.1   mycroft #include <sys/buf.h>
    128   1.1   mycroft #include <sys/proc.h>
    129   1.1   mycroft 
    130   1.1   mycroft #include <scsi/scsi_all.h>
    131  1.14     gibbs #include <scsi/scsi_message.h>
    132   1.6   mycroft #if defined(__NetBSD__)
    133   1.1   mycroft #include <scsi/scsi_debug.h>
    134   1.6   mycroft #endif
    135   1.1   mycroft #include <scsi/scsiconf.h>
    136   1.1   mycroft 
    137   1.6   mycroft #if defined(__FreeBSD__)
    138   1.6   mycroft #include <machine/clock.h>
    139   1.5   mycroft #endif
    140   1.1   mycroft 
    141   1.6   mycroft #include <vm/vm.h>
    142   1.6   mycroft #include <vm/vm_param.h>
    143   1.6   mycroft #include <vm/pmap.h>
    144   1.1   mycroft 
    145   1.6   mycroft #if defined(__FreeBSD__)
    146   1.6   mycroft #include <i386/scsi/aic7xxx.h>
    147   1.1   mycroft 
    148   1.6   mycroft #include <dev/aic7xxx/aic7xxx_reg.h>
    149   1.6   mycroft #endif /* defined(__FreeBSD__) */
    150   1.1   mycroft 
    151   1.6   mycroft #if defined(__NetBSD__)
    152   1.6   mycroft #include <dev/ic/aic7xxxreg.h>
    153   1.6   mycroft #include <dev/ic/aic7xxxvar.h>
    154   1.1   mycroft 
    155   1.6   mycroft #define bootverbose	1
    156   1.1   mycroft 
    157   1.6   mycroft #define DEBUGTARG	DEBUGTARGET
    158  1.21     mikel #if DEBUGTARG < 0	/* Negative numbers for disabling cause warnings */
    159   1.6   mycroft #undef DEBUGTARG
    160  1.14     gibbs #define DEBUGTARG	17
    161   1.6   mycroft #endif
    162  1.22       cgd #ifdef alpha		/* XXX */
    163  1.22       cgd /* XXX XXX NEED REAL DMA MAPPING SUPPORT XXX XXX */
    164  1.22       cgd extern vm_offset_t alpha_XXX_dmamap(vm_offset_t);
    165  1.22       cgd #undef vtophys
    166  1.22       cgd #define	vtophys(va)	alpha_XXX_dmamap((vm_offset_t) va)
    167  1.22       cgd #endif	/* alpha */
    168   1.6   mycroft #endif /* defined(__NetBSD__) */
    169   1.1   mycroft 
    170   1.6   mycroft #include <sys/kernel.h>
    171   1.6   mycroft #define KVTOPHYS(x)   vtophys(x)
    172   1.1   mycroft 
    173   1.6   mycroft #define MIN(a,b) ((a < b) ? a : b)
    174   1.6   mycroft #define ALL_TARGETS -1
    175   1.1   mycroft 
    176   1.6   mycroft #if defined(__FreeBSD__)
    177   1.6   mycroft u_long ahc_unit = 0;
    178   1.6   mycroft #endif
    179   1.1   mycroft 
    180   1.6   mycroft #ifdef AHC_DEBUG
    181   1.9  explorer static int     ahc_debug = AHC_DEBUG;
    182   1.6   mycroft #endif
    183   1.1   mycroft 
    184   1.6   mycroft #ifdef AHC_BROKEN_CACHE
    185   1.6   mycroft int ahc_broken_cache = 1;
    186   1.1   mycroft 
    187   1.1   mycroft /*
    188   1.6   mycroft  * "wbinvd" cause writing back whole cache (both CPU internal & external)
    189   1.6   mycroft  * to memory, so that the instruction takes a lot of time.
    190   1.6   mycroft  * This makes machine slow.
    191   1.1   mycroft  */
    192   1.6   mycroft #define	INVALIDATE_CACHE()	__asm __volatile("wbinvd")
    193   1.6   mycroft #endif
    194   1.1   mycroft 
    195   1.6   mycroft /**** bit definitions for SCSIDEF ****/
    196   1.6   mycroft #define	HSCSIID		0x07		/* our SCSI ID */
    197   1.6   mycroft #define HWSCSIID	0x0f		/* our SCSI ID if Wide Bus */
    198   1.1   mycroft 
    199   1.6   mycroft static void	 ahcminphys __P((struct buf *bp));
    200   1.6   mycroft static int32_t	 ahc_scsi_cmd __P((struct scsi_xfer *xs));
    201  1.14     gibbs static inline void pause_sequencer __P((struct ahc_data *ahc));
    202  1.14     gibbs static inline void unpause_sequencer __P((struct ahc_data *ahc,
    203  1.14     gibbs 					  int unpause_always));
    204  1.14     gibbs static inline void restart_sequencer __P((struct ahc_data *ahc));
    205   1.1   mycroft 
    206   1.6   mycroft static struct scsi_adapter ahc_switch =
    207   1.6   mycroft {
    208   1.6   mycroft         ahc_scsi_cmd,
    209   1.6   mycroft         ahcminphys,
    210   1.6   mycroft         0,
    211   1.6   mycroft         0,
    212   1.6   mycroft #if defined(__FreeBSD__)
    213   1.6   mycroft         0,
    214   1.6   mycroft         "ahc",
    215   1.6   mycroft         { 0, 0 }
    216   1.6   mycroft #endif
    217   1.6   mycroft };
    218   1.1   mycroft 
    219   1.6   mycroft /* the below structure is so we have a default dev struct for our link struct */
    220   1.6   mycroft static struct scsi_device ahc_dev =
    221   1.6   mycroft {
    222   1.6   mycroft     NULL,                       /* Use default error handler */
    223   1.6   mycroft     NULL,                       /* have a queue, served by this */
    224   1.6   mycroft     NULL,                       /* have no async handler */
    225   1.6   mycroft     NULL,                       /* Use default 'done' routine */
    226   1.6   mycroft #if defined(__FreeBSD__)
    227   1.6   mycroft     "ahc",
    228   1.6   mycroft     0,
    229   1.6   mycroft     { 0, 0 }
    230   1.6   mycroft #endif
    231   1.6   mycroft };
    232   1.1   mycroft 
    233  1.14     gibbs static inline void
    234  1.14     gibbs pause_sequencer(ahc)
    235  1.14     gibbs 	struct ahc_data *ahc;
    236  1.14     gibbs {
    237  1.14     gibbs 	AHC_OUTB(ahc, HCNTRL, ahc->pause);
    238  1.14     gibbs 
    239  1.14     gibbs 	/*
    240  1.14     gibbs 	 * Since the sequencer can disable pausing in a critical section, we
    241  1.14     gibbs 	 * must loop until it actually stops.
    242  1.14     gibbs 	 */
    243  1.14     gibbs 	while ((AHC_INB(ahc, HCNTRL) & PAUSE) == 0)
    244   1.6   mycroft 		;
    245  1.14     gibbs }
    246   1.1   mycroft 
    247  1.14     gibbs static inline void
    248  1.14     gibbs unpause_sequencer(ahc, unpause_always)
    249  1.14     gibbs 	struct ahc_data *ahc;
    250  1.14     gibbs 	int unpause_always;
    251  1.14     gibbs {
    252  1.14     gibbs 	if (unpause_always
    253  1.14     gibbs 	 ||(AHC_INB(ahc, INTSTAT) & (SCSIINT | SEQINT | BRKADRINT)) == 0)
    254  1.14     gibbs 		AHC_OUTB(ahc, HCNTRL, ahc->unpause);
    255  1.14     gibbs }
    256   1.1   mycroft 
    257   1.1   mycroft /*
    258   1.6   mycroft  * Restart the sequencer program from address zero
    259   1.1   mycroft  */
    260  1.14     gibbs static inline void
    261  1.14     gibbs restart_sequencer(ahc)
    262  1.14     gibbs 	struct ahc_data *ahc;
    263  1.14     gibbs {
    264  1.14     gibbs 	do {
    265  1.14     gibbs 		AHC_OUTB(ahc, SEQCTL, SEQRESET|FASTMODE);
    266  1.14     gibbs 	} while((AHC_INB(ahc, SEQADDR0) != 0)
    267  1.14     gibbs 		|| (AHC_INB(ahc, SEQADDR1) != 0));
    268  1.14     gibbs 
    269  1.14     gibbs 	unpause_sequencer(ahc, /*unpause_always*/TRUE);
    270  1.14     gibbs }
    271   1.1   mycroft 
    272   1.6   mycroft #if defined(__NetBSD__)
    273   1.1   mycroft /*
    274   1.6   mycroft  * Is device which is pointed by sc_link connected on second scsi bus ?
    275   1.1   mycroft  */
    276   1.6   mycroft #define	IS_SCSIBUS_B(ahc, sc_link)	\
    277   1.6   mycroft 	((sc_link)->scsibus == (ahc)->sc_link_b.scsibus)
    278   1.1   mycroft 
    279   1.1   mycroft /*
    280   1.6   mycroft  * convert FreeBSD's SCSI symbols to NetBSD's
    281   1.6   mycroft  */
    282   1.6   mycroft #define	SCSI_NOMASK	SCSI_POLL
    283   1.6   mycroft #define	opennings	openings
    284   1.6   mycroft #endif
    285   1.6   mycroft 
    286   1.6   mycroft static u_char	ahc_abort_wscb __P((struct ahc_data *ahc, struct scb *scbp,
    287   1.6   mycroft 				    u_char prev,
    288   1.6   mycroft 				    u_char timedout_scb, u_int32_t xs_error));
    289   1.6   mycroft static void	ahc_add_waiting_scb __P((struct ahc_data *ahc,
    290   1.6   mycroft 					 struct scb *scb));
    291   1.6   mycroft static void	ahc_done __P((struct ahc_data *ahc, struct scb *scbp));
    292   1.6   mycroft static void	ahc_free_scb __P((struct ahc_data *ahc, struct scb *scb,
    293   1.6   mycroft 				  int flags));
    294   1.6   mycroft static inline void ahc_send_scb __P((struct ahc_data *ahc, struct scb *scb));
    295   1.6   mycroft static inline void ahc_fetch_scb __P((struct ahc_data *ahc, struct scb *scb));
    296   1.6   mycroft static inline void ahc_page_scb __P((struct ahc_data *ahc, struct scb *out_scb,
    297   1.6   mycroft 				struct scb *in_scb));
    298   1.6   mycroft static inline void ahc_run_waiting_queues __P((struct ahc_data *ahc));
    299  1.14     gibbs static void	ahc_handle_seqint __P((struct ahc_data *ahc, u_int8_t intstat));
    300   1.6   mycroft static struct scb *
    301   1.6   mycroft 		ahc_get_scb __P((struct ahc_data *ahc, int flags));
    302   1.6   mycroft static void	ahc_loadseq __P((struct ahc_data *ahc));
    303   1.6   mycroft static int	ahc_match_scb __P((struct scb *scb, int target, char channel));
    304   1.6   mycroft static int	ahc_poll __P((struct ahc_data *ahc, int wait));
    305   1.6   mycroft #ifdef AHC_DEBUG
    306   1.6   mycroft static void	ahc_print_scb __P((struct scb *scb));
    307   1.6   mycroft #endif
    308   1.6   mycroft static int	ahc_reset_channel __P((struct ahc_data *ahc, char channel,
    309   1.6   mycroft 				       u_char timedout_scb, u_int32_t xs_error,
    310   1.6   mycroft 				       u_char initiate_reset));
    311   1.6   mycroft static int	ahc_reset_device __P((struct ahc_data *ahc, int target,
    312   1.6   mycroft 				      char channel, u_char timedout_scb,
    313   1.6   mycroft 				      u_int32_t xs_error));
    314   1.6   mycroft static void	ahc_reset_current_bus __P((struct ahc_data *ahc));
    315   1.6   mycroft static void	ahc_run_done_queue __P((struct ahc_data *ahc));
    316  1.14     gibbs static void	ahc_scsirate __P((struct ahc_data* ahc, u_int8_t *scsirate,
    317  1.14     gibbs 				  u_int8_t *period, u_int8_t *offset,
    318  1.14     gibbs 				  char channel, int target));
    319   1.6   mycroft #if defined(__FreeBSD__)
    320   1.6   mycroft static timeout_t
    321   1.6   mycroft 		ahc_timeout;
    322   1.6   mycroft #elif defined(__NetBSD__)
    323   1.6   mycroft static void	ahc_timeout __P((void *));
    324   1.6   mycroft #endif
    325   1.6   mycroft static void	ahc_busy_target __P((struct ahc_data *ahc,
    326   1.6   mycroft 				     int target, char channel));
    327   1.6   mycroft static void	ahc_unbusy_target __P((struct ahc_data *ahc,
    328   1.6   mycroft 				       int target, char channel));
    329  1.14     gibbs static void	ahc_construct_sdtr __P((struct ahc_data *ahc, int start_byte,
    330  1.14     gibbs 					u_int8_t period, u_int8_t offset));
    331  1.14     gibbs static void	ahc_construct_wdtr __P((struct ahc_data *ahc, int start_byte,
    332  1.14     gibbs 					u_int8_t bus_width));
    333   1.1   mycroft 
    334  1.18   thorpej #if defined(__NetBSD__)			/* XXX */
    335  1.18   thorpej static void	ahc_xxx_enqueue __P((struct ahc_data *ahc,
    336  1.18   thorpej 		    struct scsi_xfer *xs, int infront));
    337  1.18   thorpej static struct scsi_xfer *ahc_xxx_dequeue __P((struct ahc_data *ahc));
    338  1.18   thorpej #endif
    339  1.18   thorpej 
    340   1.6   mycroft #if defined(__FreeBSD__)
    341   1.1   mycroft 
    342   1.6   mycroft char *ahc_name(ahc)
    343   1.6   mycroft 	struct ahc_data *ahc;
    344   1.6   mycroft {
    345   1.6   mycroft 	static char name[10];
    346   1.1   mycroft 
    347   1.6   mycroft 	sprintf(name, "ahc%d", ahc->unit);
    348   1.6   mycroft 	return (name);
    349   1.6   mycroft }
    350   1.1   mycroft 
    351   1.6   mycroft #elif defined(__NetBSD__)
    352   1.6   mycroft struct cfdriver ahc_cd = {
    353   1.6   mycroft 	NULL, "ahc", DV_DULL
    354   1.6   mycroft };
    355   1.6   mycroft #endif
    356   1.1   mycroft 
    357   1.1   mycroft #ifdef  AHC_DEBUG
    358   1.6   mycroft static void
    359   1.1   mycroft ahc_print_scb(scb)
    360   1.6   mycroft         struct scb *scb;
    361   1.1   mycroft {
    362  1.16  christos         printf("scb:%p control:0x%x tcl:0x%x cmdlen:%d cmdpointer:0x%lx\n"
    363   1.6   mycroft 	    ,scb
    364   1.6   mycroft 	    ,scb->control
    365   1.6   mycroft 	    ,scb->tcl
    366   1.6   mycroft 	    ,scb->cmdlen
    367   1.6   mycroft 	    ,scb->cmdpointer );
    368  1.16  christos         printf("        datlen:%d data:0x%lx segs:0x%x segp:0x%lx\n"
    369   1.6   mycroft 	    ,scb->datalen
    370   1.6   mycroft 	    ,scb->data
    371   1.6   mycroft 	    ,scb->SG_segment_count
    372   1.6   mycroft 	    ,scb->SG_list_pointer);
    373  1.16  christos 	printf("	sg_addr:%lx sg_len:%ld\n"
    374   1.6   mycroft 	    ,scb->ahc_dma[0].addr
    375   1.6   mycroft 	    ,scb->ahc_dma[0].len);
    376   1.1   mycroft }
    377   1.1   mycroft 
    378   1.1   mycroft #endif
    379   1.1   mycroft 
    380   1.1   mycroft static struct {
    381   1.6   mycroft         u_char errno;
    382   1.1   mycroft 	char *errmesg;
    383   1.1   mycroft } hard_error[] = {
    384   1.1   mycroft 	{ ILLHADDR,  "Illegal Host Access" },
    385  1.21     mikel 	{ ILLSADDR,  "Illegal Sequencer Address referenced" },
    386   1.1   mycroft 	{ ILLOPCODE, "Illegal Opcode in sequencer program" },
    387   1.1   mycroft 	{ PARERR,    "Sequencer Ram Parity Error" }
    388   1.1   mycroft };
    389   1.1   mycroft 
    390   1.1   mycroft 
    391   1.1   mycroft /*
    392   1.1   mycroft  * Valid SCSIRATE values.  (p. 3-17)
    393   1.1   mycroft  * Provides a mapping of tranfer periods in ns to the proper value to
    394   1.1   mycroft  * stick in the scsiscfr reg to use that transfer rate.
    395   1.1   mycroft  */
    396   1.1   mycroft static struct {
    397   1.6   mycroft 	short sxfr;
    398   1.6   mycroft 	/* Rates in Ultra mode have bit 8 of sxfr set */
    399   1.6   mycroft #define		ULTRA_SXFR 0x100
    400  1.14     gibbs 	int period; /* in ns/4 */
    401   1.1   mycroft 	char *rate;
    402   1.1   mycroft } ahc_syncrates[] = {
    403  1.14     gibbs 	{ 0x100, 12, "20.0"  },
    404  1.14     gibbs 	{ 0x110, 15, "16.0"  },
    405  1.14     gibbs 	{ 0x120, 18, "13.4"  },
    406  1.14     gibbs 	{ 0x000, 25, "10.0"  },
    407  1.14     gibbs 	{ 0x010, 31,  "8.0"  },
    408  1.14     gibbs 	{ 0x020, 37,  "6.67" },
    409  1.14     gibbs 	{ 0x030, 43,  "5.7"  },
    410  1.14     gibbs 	{ 0x040, 50,  "5.0"  },
    411  1.14     gibbs 	{ 0x050, 56,  "4.4"  },
    412  1.14     gibbs 	{ 0x060, 62,  "4.0"  },
    413  1.14     gibbs 	{ 0x070, 68,  "3.6"  }
    414   1.1   mycroft };
    415   1.1   mycroft 
    416   1.1   mycroft static int ahc_num_syncrates =
    417   1.1   mycroft 	sizeof(ahc_syncrates) / sizeof(ahc_syncrates[0]);
    418   1.1   mycroft 
    419   1.1   mycroft /*
    420  1.21     mikel  * Allocate a controller structure for a new device and initialize it.
    421   1.6   mycroft  * ahc_reset should be called before now since we assume that the card
    422   1.6   mycroft  * is paused.
    423   1.1   mycroft  */
    424   1.6   mycroft #if defined(__FreeBSD__)
    425   1.6   mycroft struct ahc_data *
    426   1.6   mycroft ahc_alloc(unit, iobase, type, flags)
    427   1.6   mycroft 	int unit;
    428   1.6   mycroft 	u_long iobase;
    429   1.6   mycroft #elif defined(__NetBSD__)
    430   1.6   mycroft void
    431  1.17   thorpej ahc_construct(ahc, iot, ioh, type, flags)
    432   1.6   mycroft 	struct  ahc_data *ahc;
    433  1.17   thorpej 	bus_space_tag_t iot;
    434  1.17   thorpej 	bus_space_handle_t ioh;
    435   1.6   mycroft #endif
    436   1.6   mycroft 	ahc_type type;
    437   1.6   mycroft 	ahc_flag flags;
    438   1.6   mycroft {
    439   1.1   mycroft 
    440   1.6   mycroft 	/*
    441   1.6   mycroft 	 * find unit and check we have that many defined
    442   1.6   mycroft 	 */
    443   1.1   mycroft 
    444   1.6   mycroft #if defined(__FreeBSD__)
    445   1.6   mycroft 	struct  ahc_data *ahc;
    446   1.1   mycroft 
    447   1.1   mycroft 	/*
    448   1.6   mycroft 	 * Allocate a storage area for us
    449   1.1   mycroft 	 */
    450   1.1   mycroft 
    451   1.6   mycroft 	ahc = malloc(sizeof(struct ahc_data), M_TEMP, M_NOWAIT);
    452   1.6   mycroft 	if (!ahc) {
    453  1.16  christos 		printf("ahc%d: cannot malloc!\n", unit);
    454   1.6   mycroft 		return NULL;
    455   1.6   mycroft 	}
    456   1.6   mycroft 	bzero(ahc, sizeof(struct ahc_data));
    457   1.6   mycroft #endif
    458   1.9  explorer 	STAILQ_INIT(&ahc->free_scbs);
    459   1.9  explorer 	STAILQ_INIT(&ahc->page_scbs);
    460   1.9  explorer 	STAILQ_INIT(&ahc->waiting_scbs);
    461   1.9  explorer 	STAILQ_INIT(&ahc->assigned_scbs);
    462   1.6   mycroft #if defined(__FreeBSD__)
    463   1.6   mycroft 	ahc->unit = unit;
    464   1.9  explorer #endif
    465   1.9  explorer #if defined(__FreeBSD__)
    466   1.6   mycroft 	ahc->baseport = iobase;
    467   1.6   mycroft #elif defined(__NetBSD__)
    468  1.17   thorpej 	ahc->sc_iot = iot;
    469   1.6   mycroft 	ahc->sc_ioh = ioh;
    470   1.6   mycroft #endif
    471   1.6   mycroft 	ahc->type = type;
    472   1.6   mycroft 	ahc->flags = flags;
    473   1.6   mycroft 	ahc->unpause = (AHC_INB(ahc, HCNTRL) & IRQMS) | INTEN;
    474   1.6   mycroft 	ahc->pause = ahc->unpause | PAUSE;
    475   1.6   mycroft 
    476   1.6   mycroft #if defined(__FreeBSD__)
    477   1.6   mycroft 	return (ahc);
    478   1.6   mycroft #endif
    479   1.6   mycroft }
    480   1.1   mycroft 
    481   1.6   mycroft void
    482   1.6   mycroft ahc_free(ahc)
    483   1.6   mycroft 	struct ahc_data *ahc;
    484   1.6   mycroft {
    485   1.6   mycroft #if defined(__FreeBSD__)
    486   1.6   mycroft 	free(ahc, M_DEVBUF);
    487   1.6   mycroft 	return;
    488   1.6   mycroft #endif
    489   1.1   mycroft }
    490   1.1   mycroft 
    491   1.6   mycroft void
    492   1.6   mycroft #if defined(__FreeBSD__)
    493   1.6   mycroft ahc_reset(iobase)
    494   1.6   mycroft 	u_long iobase;
    495   1.6   mycroft #elif defined(__NetBSD__)
    496  1.17   thorpej ahc_reset(devname, iot, ioh)
    497   1.6   mycroft 	char *devname;
    498  1.17   thorpej 	bus_space_tag_t iot;
    499  1.17   thorpej 	bus_space_handle_t ioh;
    500   1.6   mycroft #endif
    501   1.6   mycroft {
    502   1.6   mycroft         u_char hcntrl;
    503   1.6   mycroft 	int wait;
    504   1.6   mycroft 
    505   1.6   mycroft 	/* Retain the IRQ type accross the chip reset */
    506   1.6   mycroft #if defined(__FreeBSD__)
    507   1.6   mycroft 	hcntrl = (inb(HCNTRL + iobase) & IRQMS) | INTEN;
    508   1.6   mycroft 
    509   1.6   mycroft 	outb(HCNTRL + iobase, CHIPRST | PAUSE);
    510   1.6   mycroft #elif defined(__NetBSD__)
    511  1.17   thorpej 	hcntrl = (bus_space_read_1(iot, ioh, HCNTRL) & IRQMS) | INTEN;
    512   1.6   mycroft 
    513  1.17   thorpej 	bus_space_write_1(iot, ioh, HCNTRL, CHIPRST | PAUSE);
    514   1.6   mycroft #endif
    515   1.6   mycroft 	/*
    516   1.6   mycroft 	 * Ensure that the reset has finished
    517   1.6   mycroft 	 */
    518   1.6   mycroft 	wait = 1000;
    519   1.6   mycroft #if defined(__FreeBSD__)
    520   1.6   mycroft 	while (--wait && !(inb(HCNTRL + iobase) & CHIPRSTACK))
    521   1.6   mycroft #elif defined(__NetBSD__)
    522  1.17   thorpej 	while (--wait && !(bus_space_read_1(iot, ioh, HCNTRL) & CHIPRSTACK))
    523   1.6   mycroft #endif
    524   1.6   mycroft 		DELAY(1000);
    525   1.6   mycroft 	if(wait == 0) {
    526   1.6   mycroft #if defined(__FreeBSD__)
    527  1.16  christos 		printf("ahc at 0x%lx: WARNING - Failed chip reset!  "
    528   1.6   mycroft 		       "Trying to initialize anyway.\n", iobase);
    529   1.6   mycroft #elif defined(__NetBSD__)
    530  1.16  christos 		printf("%s: WARNING - Failed chip reset!  "
    531   1.6   mycroft 		       "Trying to initialize anyway.\n", devname);
    532   1.6   mycroft #endif
    533   1.6   mycroft 	}
    534   1.6   mycroft #if defined(__FreeBSD__)
    535   1.6   mycroft 	outb(HCNTRL + iobase, hcntrl | PAUSE);
    536   1.6   mycroft #elif defined(__NetBSD__)
    537  1.17   thorpej 	bus_space_write_1(iot, ioh, HCNTRL, hcntrl | PAUSE);
    538   1.6   mycroft #endif
    539   1.6   mycroft }
    540   1.1   mycroft 
    541   1.1   mycroft /*
    542   1.1   mycroft  * Look up the valid period to SCSIRATE conversion in our table.
    543   1.1   mycroft  */
    544   1.6   mycroft static void
    545   1.9  explorer ahc_scsirate(ahc, scsirate, period, offset, channel, target )
    546  1.14     gibbs 	struct	 ahc_data *ahc;
    547  1.14     gibbs 	u_int8_t *scsirate;
    548  1.14     gibbs 	u_int8_t *period;
    549  1.14     gibbs 	u_int8_t *offset;
    550  1.14     gibbs 	char	 channel;
    551  1.14     gibbs 	int	 target;
    552   1.1   mycroft {
    553   1.1   mycroft 	int i;
    554  1.14     gibbs 	u_int32_t ultra_enb_addr;
    555  1.14     gibbs 	u_int8_t  sxfrctl0;
    556  1.14     gibbs 	u_int8_t  ultra_enb;
    557   1.1   mycroft 
    558  1.14     gibbs 	i = ahc_num_syncrates; /* Default to async */
    559  1.14     gibbs 
    560  1.14     gibbs 	if (*period >= ahc_syncrates[0].period && *offset != 0) {
    561  1.14     gibbs 		for (i = 0; i < ahc_num_syncrates; i++) {
    562   1.6   mycroft 
    563  1.14     gibbs 			if (*period <= ahc_syncrates[i].period) {
    564   1.9  explorer 				/*
    565  1.14     gibbs 				 * Watch out for Ultra speeds when ultra is not
    566  1.14     gibbs 				 * enabled and vice-versa.
    567   1.9  explorer 				 */
    568  1.14     gibbs 				if(!(ahc->type & AHC_ULTRA)
    569  1.14     gibbs 				 && (ahc_syncrates[i].sxfr & ULTRA_SXFR)) {
    570  1.14     gibbs 					/*
    571  1.14     gibbs 					 * This should only happen if the
    572  1.14     gibbs 					 * drive is the first to negotiate
    573  1.14     gibbs 					 * and chooses a high rate.  We'll
    574  1.14     gibbs 					 * just move down the table util
    575  1.14     gibbs 					 * we hit a non ultra speed.
    576  1.14     gibbs 					 */
    577  1.14     gibbs 					continue;
    578  1.14     gibbs 				}
    579  1.14     gibbs 				*scsirate = (ahc_syncrates[i].sxfr & 0xF0)
    580  1.14     gibbs 					  | (*offset & 0x0f);
    581  1.14     gibbs 				*period = ahc_syncrates[i].period;
    582  1.14     gibbs 
    583  1.14     gibbs 				if(bootverbose) {
    584  1.16  christos 					printf("%s: target %d synchronous at %sMHz,"
    585  1.14     gibbs 					       " offset = 0x%x\n",
    586  1.14     gibbs 					        ahc_name(ahc), target,
    587  1.14     gibbs 						ahc_syncrates[i].rate, *offset );
    588  1.14     gibbs 				}
    589  1.14     gibbs 				break;
    590   1.6   mycroft 			}
    591   1.1   mycroft 		}
    592   1.1   mycroft 	}
    593  1.14     gibbs 	if (i >= ahc_num_syncrates) {
    594  1.21     mikel 		/* Use asynchronous transfers. */
    595  1.14     gibbs 		*scsirate = 0;
    596  1.14     gibbs 		*period = 0;
    597  1.14     gibbs 		*offset = 0;
    598  1.14     gibbs 		if (bootverbose)
    599  1.21     mikel 			printf("%s: target %d using asynchronous transfers\n",
    600  1.14     gibbs 			       ahc_name(ahc), target );
    601  1.14     gibbs 	}
    602  1.14     gibbs 	/*
    603  1.14     gibbs 	 * Ensure Ultra mode is set properly for
    604  1.14     gibbs 	 * this target.
    605  1.14     gibbs 	 */
    606  1.14     gibbs 	ultra_enb_addr = ULTRA_ENB;
    607  1.14     gibbs 	if(channel == 'B' || target > 7)
    608  1.14     gibbs 		ultra_enb_addr++;
    609  1.14     gibbs 	ultra_enb = AHC_INB(ahc, ultra_enb_addr);
    610  1.14     gibbs 	sxfrctl0 = AHC_INB(ahc, SXFRCTL0);
    611  1.14     gibbs 	if (*scsirate != 0 && ahc_syncrates[i].sxfr & ULTRA_SXFR) {
    612  1.14     gibbs 		ultra_enb |= 0x01 << (target & 0x07);
    613  1.14     gibbs 		sxfrctl0 |= ULTRAEN;
    614   1.6   mycroft 	}
    615  1.14     gibbs 	else {
    616  1.14     gibbs 		ultra_enb &= ~(0x01 << (target & 0x07));
    617  1.14     gibbs 		sxfrctl0 &= ~ULTRAEN;
    618  1.14     gibbs 	}
    619  1.14     gibbs 	AHC_OUTB(ahc, ultra_enb_addr, ultra_enb);
    620  1.14     gibbs 	AHC_OUTB(ahc, SXFRCTL0, sxfrctl0);
    621   1.1   mycroft }
    622   1.1   mycroft 
    623   1.1   mycroft /*
    624   1.1   mycroft  * Attach all the sub-devices we can find
    625   1.1   mycroft  */
    626   1.1   mycroft int
    627   1.6   mycroft ahc_attach(ahc)
    628   1.6   mycroft 	struct ahc_data *ahc;
    629   1.1   mycroft {
    630  1.15  christos #if defined(__FreeBSD__)
    631   1.6   mycroft 	struct scsibus_data *scbus;
    632  1.15  christos #endif
    633   1.1   mycroft 
    634  1.18   thorpej #if defined(__NetBSD__)			/* XXX */
    635  1.18   thorpej 	/*
    636  1.18   thorpej 	 * Initialize the software queue.
    637  1.18   thorpej 	 */
    638  1.18   thorpej 	LIST_INIT(&ahc->sc_xxxq);
    639  1.18   thorpej #endif
    640  1.18   thorpej 
    641   1.6   mycroft #ifdef AHC_BROKEN_CACHE
    642   1.6   mycroft 	if (cpu_class == CPUCLASS_386)	/* doesn't have "wbinvd" instruction */
    643   1.6   mycroft 		ahc_broken_cache = 0;
    644   1.6   mycroft #endif
    645   1.1   mycroft 	/*
    646   1.6   mycroft 	 * fill in the prototype scsi_links.
    647   1.1   mycroft 	 */
    648   1.6   mycroft #if defined(__FreeBSD__)
    649   1.6   mycroft 	ahc->sc_link.adapter_unit = ahc->unit;
    650   1.6   mycroft 	ahc->sc_link.adapter_targ = ahc->our_id;
    651   1.6   mycroft 	ahc->sc_link.fordriver = 0;
    652   1.6   mycroft #elif defined(__NetBSD__)
    653   1.6   mycroft 	ahc->sc_link.adapter_target = ahc->our_id;
    654  1.12       cgd 	ahc->sc_link.channel = 0;
    655  1.20     mikel 	/*
    656  1.20     mikel 	 * Set up max_target.
    657  1.20     mikel 	 */
    658  1.20     mikel 	ahc->sc_link.max_target = (ahc->type & AHC_WIDE) ? 15 : 7;
    659   1.6   mycroft #endif
    660   1.1   mycroft 	ahc->sc_link.adapter_softc = ahc;
    661   1.1   mycroft 	ahc->sc_link.adapter = &ahc_switch;
    662   1.6   mycroft 	ahc->sc_link.opennings = 2;
    663   1.1   mycroft 	ahc->sc_link.device = &ahc_dev;
    664   1.1   mycroft 	ahc->sc_link.flags = DEBUGLEVEL;
    665   1.6   mycroft 
    666   1.6   mycroft 	if(ahc->type & AHC_TWIN) {
    667   1.6   mycroft 		/* Configure the second scsi bus */
    668   1.6   mycroft 		ahc->sc_link_b = ahc->sc_link;
    669   1.6   mycroft #if defined(__FreeBSD__)
    670   1.6   mycroft 		ahc->sc_link_b.adapter_targ = ahc->our_id_b;
    671   1.6   mycroft 		ahc->sc_link_b.adapter_bus = 1;
    672   1.6   mycroft 		ahc->sc_link_b.fordriver = (void *)SELBUSB;
    673   1.6   mycroft #elif defined(__NetBSD__)
    674   1.6   mycroft 		ahc->sc_link_b.adapter_target = ahc->our_id_b;
    675  1.12       cgd 		ahc->sc_link_b.channel = 1;
    676   1.6   mycroft #endif
    677   1.6   mycroft 	}
    678   1.6   mycroft 
    679   1.6   mycroft 
    680   1.6   mycroft #if defined(__FreeBSD__)
    681   1.6   mycroft 	/*
    682   1.6   mycroft 	 * Prepare the scsibus_data area for the upperlevel
    683   1.6   mycroft 	 * scsi code.
    684   1.6   mycroft 	 */
    685   1.6   mycroft 	scbus = scsi_alloc_bus();
    686   1.6   mycroft 	if(!scbus)
    687   1.6   mycroft 		return 0;
    688   1.6   mycroft 	scbus->adapter_link = (ahc->flags & AHC_CHANNEL_B_PRIMARY) ?
    689   1.6   mycroft 				&ahc->sc_link_b : &ahc->sc_link;
    690   1.6   mycroft 	if(ahc->type & AHC_WIDE)
    691   1.6   mycroft 		scbus->maxtarg = 15;
    692   1.6   mycroft 
    693   1.6   mycroft 	/*
    694   1.6   mycroft 	 * ask the adapter what subunits are present
    695   1.6   mycroft 	 */
    696   1.6   mycroft 	if(bootverbose)
    697  1.16  christos 		printf("ahc%d: Probing channel %c\n", ahc->unit,
    698   1.6   mycroft 			(ahc->flags & AHC_CHANNEL_B_PRIMARY) ? 'B' : 'A');
    699   1.6   mycroft 	scsi_attachdevs(scbus);
    700   1.6   mycroft 	scbus = NULL;	/* Upper-level SCSI code owns this now */
    701   1.6   mycroft 
    702   1.6   mycroft 	if(ahc->type & AHC_TWIN) {
    703   1.6   mycroft 		scbus =  scsi_alloc_bus();
    704   1.6   mycroft 		if(!scbus)
    705   1.6   mycroft 			return 0;
    706   1.6   mycroft 		scbus->adapter_link = (ahc->flags & AHC_CHANNEL_B_PRIMARY) ?
    707   1.6   mycroft 					&ahc->sc_link : &ahc->sc_link_b;
    708   1.6   mycroft 		if(ahc->type & AHC_WIDE)
    709   1.6   mycroft 			scbus->maxtarg = 15;
    710   1.6   mycroft 		if(bootverbose)
    711  1.16  christos 			printf("ahc%d: Probing Channel %c\n", ahc->unit,
    712   1.6   mycroft 			       (ahc->flags & AHC_CHANNEL_B_PRIMARY) ? 'A': 'B');
    713   1.6   mycroft 		scsi_attachdevs(scbus);
    714   1.6   mycroft 		scbus = NULL;	/* Upper-level SCSI code owns this now */
    715   1.6   mycroft 	}
    716   1.6   mycroft #elif defined(__NetBSD__)
    717   1.1   mycroft 	/*
    718   1.1   mycroft 	 * ask the adapter what subunits are present
    719   1.1   mycroft 	 */
    720   1.6   mycroft 	if ((ahc->flags & AHC_CHANNEL_B_PRIMARY) == 0) {
    721   1.6   mycroft 		/* make IS_SCSIBUS_B() == false, while probing channel A */
    722   1.6   mycroft 		ahc->sc_link_b.scsibus = 0xff;
    723   1.6   mycroft 
    724  1.12       cgd 		config_found((void *)ahc, &ahc->sc_link, scsiprint);
    725   1.6   mycroft 		if (ahc->type & AHC_TWIN)
    726  1.12       cgd 			config_found((void *)ahc, &ahc->sc_link_b, scsiprint);
    727   1.6   mycroft 	} else {
    728   1.6   mycroft 		/*
    729   1.6   mycroft 		 * if implementation of IS_SCSIBUS_B() is changed to use
    730   1.6   mycroft 		 * ahc->sc_link.scsibus, then "ahc->sc_link.scsibus = 0xff;"
    731   1.6   mycroft 		 * is needed, here.
    732   1.6   mycroft 		 */
    733   1.6   mycroft 
    734   1.6   mycroft 		/* assert(ahc->type & AHC_TWIN); */
    735  1.12       cgd 		config_found((void *)ahc, &ahc->sc_link_b, scsiprint);
    736  1.12       cgd 		config_found((void *)ahc, &ahc->sc_link, scsiprint);
    737   1.1   mycroft 	}
    738   1.6   mycroft #endif
    739   1.1   mycroft 	return 1;
    740   1.1   mycroft }
    741   1.1   mycroft 
    742   1.6   mycroft /*
    743   1.6   mycroft  * Send an SCB down to the card via PIO.
    744   1.6   mycroft  * We assume that the proper SCB is already selected in SCBPTR.
    745   1.6   mycroft  */
    746   1.6   mycroft static inline void
    747   1.1   mycroft ahc_send_scb(ahc, scb)
    748   1.6   mycroft         struct	ahc_data *ahc;
    749   1.6   mycroft         struct	scb *scb;
    750   1.1   mycroft {
    751   1.6   mycroft 	AHC_OUTB(ahc, SCBCNT, SCBAUTO);
    752   1.6   mycroft 	if( ahc->type == AHC_284 )
    753   1.6   mycroft 		/* Can only do 8bit PIO */
    754   1.6   mycroft 		AHC_OUTSB(ahc, SCBARRAY, scb, SCB_PIO_TRANSFER_SIZE);
    755   1.6   mycroft 	else
    756   1.6   mycroft 		AHC_OUTSL(ahc, SCBARRAY, scb,
    757   1.6   mycroft 		      (SCB_PIO_TRANSFER_SIZE + 3) / 4);
    758   1.6   mycroft 	AHC_OUTB(ahc, SCBCNT, 0);
    759   1.6   mycroft }
    760   1.6   mycroft 
    761   1.6   mycroft /*
    762   1.6   mycroft  * Retrieve an SCB from the card via PIO.
    763   1.6   mycroft  * We assume that the proper SCB is already selected in SCBPTR.
    764   1.6   mycroft  */
    765   1.6   mycroft static inline void
    766   1.6   mycroft ahc_fetch_scb(ahc, scb)
    767   1.6   mycroft 	struct	ahc_data *ahc;
    768   1.6   mycroft 	struct	scb *scb;
    769   1.6   mycroft {
    770   1.6   mycroft 	AHC_OUTB(ahc, SCBCNT, 0x80);	/* SCBAUTO */
    771   1.6   mycroft 
    772   1.6   mycroft 	/* Can only do 8bit PIO for reads */
    773   1.6   mycroft 	AHC_INSB(ahc, SCBARRAY, scb, SCB_PIO_TRANSFER_SIZE);
    774   1.6   mycroft 
    775   1.6   mycroft 	AHC_OUTB(ahc, SCBCNT, 0);
    776   1.6   mycroft }
    777   1.6   mycroft 
    778   1.6   mycroft /*
    779   1.6   mycroft  * Swap in_scbp for out_scbp down in the cards SCB array.
    780   1.6   mycroft  * We assume that the SCB for out_scbp is already selected in SCBPTR.
    781   1.6   mycroft  */
    782   1.6   mycroft static inline void
    783   1.6   mycroft ahc_page_scb(ahc, out_scbp, in_scbp)
    784   1.6   mycroft 	struct ahc_data *ahc;
    785   1.6   mycroft 	struct scb *out_scbp;
    786   1.6   mycroft 	struct scb *in_scbp;
    787   1.6   mycroft {
    788   1.6   mycroft 	/* Page-out */
    789   1.6   mycroft 	ahc_fetch_scb(ahc, out_scbp);
    790   1.6   mycroft 	out_scbp->flags |= SCB_PAGED_OUT;
    791   1.6   mycroft 	if(!(out_scbp->control & TAG_ENB))
    792   1.6   mycroft 	{
    793   1.6   mycroft 		/* Stick in non-tagged array */
    794   1.6   mycroft 		int index =  (out_scbp->tcl >> 4)
    795   1.6   mycroft 			   | (out_scbp->tcl & SELBUSB);
    796   1.6   mycroft 		ahc->pagedout_ntscbs[index] = out_scbp;
    797   1.6   mycroft 	}
    798   1.6   mycroft 
    799   1.6   mycroft 	/* Page-in */
    800   1.6   mycroft 	in_scbp->position = out_scbp->position;
    801   1.6   mycroft 	out_scbp->position = SCB_LIST_NULL;
    802   1.6   mycroft 	ahc_send_scb(ahc, in_scbp);
    803   1.6   mycroft 	in_scbp->flags &= ~SCB_PAGED_OUT;
    804   1.6   mycroft }
    805   1.6   mycroft 
    806   1.6   mycroft static inline void
    807   1.6   mycroft ahc_run_waiting_queues(ahc)
    808   1.6   mycroft 	struct ahc_data *ahc;
    809   1.6   mycroft {
    810   1.6   mycroft 	struct scb* scb;
    811   1.6   mycroft 	u_char cur_scb;
    812   1.6   mycroft 
    813   1.9  explorer 	if(!(ahc->assigned_scbs.stqh_first || ahc->waiting_scbs.stqh_first))
    814   1.6   mycroft 		return;
    815   1.1   mycroft 
    816  1.14     gibbs 	pause_sequencer(ahc);
    817   1.6   mycroft 	cur_scb = AHC_INB(ahc, SCBPTR);
    818   1.6   mycroft 
    819   1.6   mycroft 	/*
    820   1.6   mycroft 	 * First handle SCBs that are waiting but have been
    821   1.6   mycroft 	 * assigned a slot.
    822   1.6   mycroft 	 */
    823   1.9  explorer 	while((scb = ahc->assigned_scbs.stqh_first) != NULL) {
    824   1.9  explorer 		STAILQ_REMOVE_HEAD(&ahc->assigned_scbs, links);
    825   1.6   mycroft 		AHC_OUTB(ahc, SCBPTR, scb->position);
    826   1.6   mycroft 		ahc_send_scb(ahc, scb);
    827   1.6   mycroft 
    828   1.6   mycroft 		/* Mark this as an active command */
    829   1.9  explorer 		scb->flags ^= SCB_ASSIGNEDQ|SCB_ACTIVE;
    830   1.6   mycroft 
    831   1.6   mycroft 		AHC_OUTB(ahc, QINFIFO, scb->position);
    832   1.6   mycroft 		if (!(scb->xs->flags & SCSI_NOMASK)) {
    833   1.6   mycroft 			timeout(ahc_timeout, (caddr_t)scb,
    834   1.6   mycroft 				(scb->xs->timeout * hz) / 1000);
    835   1.6   mycroft 		}
    836   1.6   mycroft 		SC_DEBUG(scb->xs->sc_link, SDEV_DB3, ("cmd_sent\n"));
    837   1.6   mycroft 	}
    838   1.6   mycroft 	/* Now deal with SCBs that require paging */
    839   1.9  explorer 	if((scb = ahc->waiting_scbs.stqh_first) != NULL) {
    840   1.6   mycroft 		u_char disc_scb = AHC_INB(ahc, DISCONNECTED_SCBH);
    841   1.6   mycroft 		u_char active = AHC_INB(ahc, FLAGS) & (SELECTED|IDENTIFY_SEEN);
    842   1.6   mycroft 		int count = 0;
    843   1.6   mycroft 
    844   1.6   mycroft 		do {
    845   1.6   mycroft 			u_char next_scb;
    846   1.6   mycroft 
    847   1.6   mycroft 			/* Attempt to page this SCB in */
    848   1.6   mycroft 			if(disc_scb == SCB_LIST_NULL)
    849   1.6   mycroft 				break;
    850   1.6   mycroft 
    851   1.6   mycroft 			/*
    852   1.9  explorer 			 * Check the next SCB on in the list.
    853   1.6   mycroft 			 */
    854   1.6   mycroft 			AHC_OUTB(ahc, SCBPTR, disc_scb);
    855   1.6   mycroft 			next_scb = AHC_INB(ahc, SCB_NEXT);
    856   1.6   mycroft 
    857   1.6   mycroft 			/*
    858   1.6   mycroft 			 * We have to be careful about when we allow
    859   1.6   mycroft 			 * an SCB to be paged out.  There must always
    860  1.21     mikel 			 * be at least one slot available for a
    861   1.6   mycroft 			 * reconnecting target in case it references
    862   1.6   mycroft 			 * an SCB that has been paged out.  Our
    863   1.6   mycroft 			 * heuristic is that either the disconnected
    864   1.6   mycroft 			 * list has at least two entries in it or
    865   1.6   mycroft 			 * there is one entry and the sequencer is
    866  1.21     mikel 			 * actively working on an SCB which implies that
    867   1.6   mycroft 			 * it will either complete or disconnect before
    868   1.6   mycroft 			 * another reconnection can occur.
    869   1.6   mycroft 			 */
    870   1.6   mycroft 			if((next_scb != SCB_LIST_NULL) || active)
    871   1.6   mycroft 			{
    872   1.6   mycroft 				u_char out_scbi;
    873   1.6   mycroft 				struct scb* out_scbp;
    874   1.6   mycroft 
    875   1.9  explorer 				STAILQ_REMOVE_HEAD(&ahc->waiting_scbs, links);
    876   1.6   mycroft 
    877   1.6   mycroft 				/*
    878   1.6   mycroft 				 * Find the in-core SCB for the one
    879   1.6   mycroft 				 * we're paging out.
    880   1.6   mycroft 				 */
    881   1.6   mycroft 				out_scbi = AHC_INB(ahc, SCB_TAG);
    882   1.6   mycroft 				out_scbp = ahc->scbarray[out_scbi];
    883   1.6   mycroft 
    884   1.6   mycroft 				/* Do the page out */
    885   1.6   mycroft 				ahc_page_scb(ahc, out_scbp, scb);
    886   1.6   mycroft 
    887   1.6   mycroft 				/* Mark this as an active command */
    888   1.9  explorer 				scb->flags ^= SCB_WAITINGQ|SCB_ACTIVE;
    889   1.6   mycroft 
    890   1.6   mycroft 				/* Queue the command */
    891   1.6   mycroft 				AHC_OUTB(ahc, QINFIFO, scb->position);
    892   1.6   mycroft 				if (!(scb->xs->flags & SCSI_NOMASK)) {
    893   1.6   mycroft 					timeout(ahc_timeout, (caddr_t)scb,
    894   1.6   mycroft 						(scb->xs->timeout * hz) / 1000);
    895   1.6   mycroft 				}
    896   1.6   mycroft 				SC_DEBUG(scb->xs->sc_link, SDEV_DB3,
    897   1.6   mycroft 					("cmd_paged-in\n"));
    898   1.6   mycroft 				count++;
    899   1.6   mycroft 
    900   1.6   mycroft 				/* Advance to the next disconnected SCB */
    901   1.6   mycroft 				disc_scb = next_scb;
    902   1.6   mycroft 			}
    903   1.6   mycroft 			else
    904   1.6   mycroft 				break;
    905   1.9  explorer 		} while((scb = ahc->waiting_scbs.stqh_first) != NULL);
    906   1.6   mycroft 
    907   1.6   mycroft 		if(count) {
    908   1.6   mycroft 			/*
    909   1.6   mycroft 			 * Update the head of the disconnected list.
    910   1.6   mycroft 			 */
    911   1.6   mycroft 			AHC_OUTB(ahc, DISCONNECTED_SCBH, disc_scb);
    912   1.6   mycroft 			if(disc_scb != SCB_LIST_NULL) {
    913   1.6   mycroft 				AHC_OUTB(ahc, SCBPTR, disc_scb);
    914   1.6   mycroft 				AHC_OUTB(ahc, SCB_PREV, SCB_LIST_NULL);
    915   1.6   mycroft 			}
    916   1.6   mycroft 		}
    917   1.6   mycroft 	}
    918   1.6   mycroft 	/* Restore old position */
    919   1.6   mycroft 	AHC_OUTB(ahc, SCBPTR, cur_scb);
    920  1.14     gibbs 	unpause_sequencer(ahc, /*unpause_always*/FALSE);
    921   1.1   mycroft }
    922   1.1   mycroft 
    923   1.6   mycroft /*
    924   1.6   mycroft  * Add this SCB to the head of the "waiting for selection" list.
    925   1.6   mycroft  */
    926   1.6   mycroft static
    927   1.6   mycroft void ahc_add_waiting_scb(ahc, scb)
    928   1.6   mycroft 	struct ahc_data *ahc;
    929   1.6   mycroft 	struct scb *scb;
    930   1.1   mycroft {
    931   1.6   mycroft 	u_char next;
    932   1.6   mycroft 	u_char curscb;
    933   1.1   mycroft 
    934   1.6   mycroft 	curscb = AHC_INB(ahc, SCBPTR);
    935   1.6   mycroft 	next = AHC_INB(ahc, WAITING_SCBH);
    936   1.6   mycroft 
    937   1.6   mycroft 	AHC_OUTB(ahc, SCBPTR, scb->position);
    938   1.6   mycroft 	AHC_OUTB(ahc, SCB_NEXT, next);
    939   1.6   mycroft 	AHC_OUTB(ahc, WAITING_SCBH, scb->position);
    940   1.6   mycroft 
    941   1.6   mycroft 	AHC_OUTB(ahc, SCBPTR, curscb);
    942   1.1   mycroft }
    943   1.1   mycroft 
    944   1.1   mycroft /*
    945   1.6   mycroft  * Catch an interrupt from the adapter
    946   1.1   mycroft  */
    947   1.6   mycroft #if defined(__FreeBSD__)
    948   1.6   mycroft void
    949   1.6   mycroft #elif defined (__NetBSD__)
    950   1.1   mycroft int
    951   1.6   mycroft #endif
    952   1.6   mycroft ahc_intr(arg)
    953   1.6   mycroft         void *arg;
    954   1.1   mycroft {
    955   1.6   mycroft 	int     intstat;
    956   1.6   mycroft 	u_char	status;
    957   1.9  explorer 	struct	scb *scb;
    958   1.9  explorer 	struct	scsi_xfer *xs;
    959   1.9  explorer 	struct	ahc_data *ahc = (struct ahc_data *)arg;
    960   1.6   mycroft 
    961   1.9  explorer 	intstat = AHC_INB(ahc, INTSTAT);
    962   1.1   mycroft 	/*
    963   1.1   mycroft 	 * Is this interrupt for me? or for
    964  1.21     mikel 	 * someone who is sharing my interrupt?
    965   1.1   mycroft 	 */
    966   1.6   mycroft 	if (!(intstat & INT_PEND))
    967   1.6   mycroft #if defined(__FreeBSD__)
    968   1.6   mycroft 		return;
    969   1.6   mycroft #elif defined(__NetBSD__)
    970   1.1   mycroft 		return 0;
    971   1.6   mycroft #endif
    972   1.6   mycroft 
    973   1.6   mycroft         if (intstat & BRKADRINT) {
    974   1.1   mycroft 		/* We upset the sequencer :-( */
    975   1.1   mycroft 
    976   1.1   mycroft 		/* Lookup the error message */
    977   1.6   mycroft 		int i, error = AHC_INB(ahc, ERROR);
    978   1.1   mycroft 		int num_errors =  sizeof(hard_error)/sizeof(hard_error[0]);
    979   1.6   mycroft 		for(i = 0; error != 1 && i < num_errors; i++)
    980   1.1   mycroft 			error >>= 1;
    981   1.6   mycroft                 panic("%s: brkadrint, %s at seqaddr = 0x%x\n",
    982   1.6   mycroft 		      ahc_name(ahc), hard_error[i].errmesg,
    983   1.6   mycroft 		      (AHC_INB(ahc, SEQADDR1) << 8) |
    984   1.6   mycroft 		      AHC_INB(ahc, SEQADDR0));
    985   1.6   mycroft         }
    986  1.14     gibbs         if (intstat & SEQINT)
    987  1.14     gibbs 		ahc_handle_seqint(ahc, intstat);
    988  1.14     gibbs 
    989  1.14     gibbs 	if (intstat & SCSIINT) {
    990  1.14     gibbs 
    991  1.14     gibbs 		int scb_index = AHC_INB(ahc, SCB_TAG);
    992  1.14     gibbs 		status = AHC_INB(ahc, SSTAT1);
    993  1.14     gibbs 		scb = ahc->scbarray[scb_index];
    994  1.14     gibbs 
    995  1.14     gibbs 		if (status & SCSIRSTI) {
    996  1.14     gibbs 			char channel;
    997  1.14     gibbs 			channel = AHC_INB(ahc, SBLKCTL);
    998  1.14     gibbs 			channel = channel & SELBUSB ? 'B' : 'A';
    999  1.16  christos 			printf("%s: Someone reset channel %c\n",
   1000  1.14     gibbs 				ahc_name(ahc), channel);
   1001  1.14     gibbs 			ahc_reset_channel(ahc,
   1002  1.14     gibbs 					  channel,
   1003  1.14     gibbs 					  SCB_LIST_NULL,
   1004  1.14     gibbs 					  XS_BUSY,
   1005  1.14     gibbs 					  /* Initiate Reset */FALSE);
   1006  1.14     gibbs 			scb = NULL;
   1007  1.14     gibbs 		}
   1008  1.14     gibbs 		else if (!(scb && (scb->flags & SCB_ACTIVE))){
   1009  1.16  christos 			printf("%s: ahc_intr - referenced scb not "
   1010  1.14     gibbs 			       "valid during scsiint 0x%x scb(%d)\n",
   1011  1.14     gibbs 				ahc_name(ahc), status, scb_index);
   1012  1.14     gibbs 			AHC_OUTB(ahc, CLRSINT1, status);
   1013  1.14     gibbs 			unpause_sequencer(ahc, /*unpause_always*/TRUE);
   1014  1.14     gibbs 			AHC_OUTB(ahc, CLRINT, CLRSCSIINT);
   1015  1.14     gibbs 			scb = NULL;
   1016  1.14     gibbs 		}
   1017  1.14     gibbs 		else if (status & SCSIPERR) {
   1018  1.14     gibbs 			/*
   1019  1.14     gibbs 			 * Determine the bus phase and
   1020  1.14     gibbs 			 * queue an appropriate message
   1021  1.14     gibbs 			 */
   1022  1.14     gibbs 			char	*phase;
   1023  1.14     gibbs 			u_char	mesg_out = MSG_NOOP;
   1024  1.14     gibbs 			u_char	lastphase = AHC_INB(ahc, LASTPHASE);
   1025  1.14     gibbs 
   1026  1.14     gibbs 			xs = scb->xs;
   1027  1.14     gibbs 			sc_print_addr(xs->sc_link);
   1028  1.14     gibbs 
   1029  1.14     gibbs 			switch(lastphase) {
   1030  1.14     gibbs 				case P_DATAOUT:
   1031  1.14     gibbs 					phase = "Data-Out";
   1032  1.14     gibbs 					break;
   1033  1.14     gibbs 				case P_DATAIN:
   1034  1.14     gibbs 					phase = "Data-In";
   1035  1.14     gibbs 					mesg_out = MSG_INITIATOR_DET_ERR;
   1036  1.14     gibbs 					break;
   1037  1.14     gibbs 				case P_COMMAND:
   1038  1.14     gibbs 					phase = "Command";
   1039  1.14     gibbs 					break;
   1040  1.14     gibbs 				case P_MESGOUT:
   1041  1.14     gibbs 					phase = "Message-Out";
   1042  1.14     gibbs 					break;
   1043  1.14     gibbs 				case P_STATUS:
   1044  1.14     gibbs 					phase = "Status";
   1045  1.14     gibbs 					mesg_out = MSG_INITIATOR_DET_ERR;
   1046  1.14     gibbs 					break;
   1047  1.14     gibbs 				case P_MESGIN:
   1048  1.14     gibbs 					phase = "Message-In";
   1049  1.14     gibbs 					mesg_out = MSG_PARITY_ERROR;
   1050  1.14     gibbs 					break;
   1051  1.14     gibbs 				default:
   1052  1.14     gibbs 					phase = "unknown";
   1053  1.14     gibbs 					break;
   1054  1.14     gibbs 			}
   1055  1.16  christos 			printf("parity error during %s phase.\n", phase);
   1056   1.9  explorer 
   1057  1.14     gibbs 			/*
   1058  1.14     gibbs 			 * We've set the hardware to assert ATN if we
   1059  1.14     gibbs 			 * get a parity error on "in" phases, so all we
   1060  1.14     gibbs 			 * need to do is stuff the message buffer with
   1061  1.14     gibbs 			 * the appropriate message.  "In" phases have set
   1062  1.14     gibbs 			 * mesg_out to something other than MSG_NOP.
   1063  1.14     gibbs 			 */
   1064  1.14     gibbs 			if(mesg_out != MSG_NOOP) {
   1065  1.14     gibbs 				AHC_OUTB(ahc, MSG0, mesg_out);
   1066  1.14     gibbs 				AHC_OUTB(ahc, MSG_LEN, 1);
   1067  1.14     gibbs 			}
   1068  1.14     gibbs 			else
   1069   1.9  explorer 				/*
   1070  1.14     gibbs 				 * Should we allow the target to make
   1071  1.14     gibbs 				 * this decision for us?
   1072   1.9  explorer 				 */
   1073  1.14     gibbs 				xs->error = XS_DRIVER_STUFFUP;
   1074  1.14     gibbs 		}
   1075  1.14     gibbs 		else if (status & SELTO) {
   1076  1.14     gibbs 			u_char waiting;
   1077  1.14     gibbs 			u_char flags;
   1078  1.14     gibbs 
   1079  1.14     gibbs 			xs = scb->xs;
   1080  1.14     gibbs 			xs->error = XS_SELTIMEOUT;
   1081  1.14     gibbs 			/*
   1082  1.14     gibbs 			 * Clear any pending messages for the timed out
   1083  1.14     gibbs 			 * target, and mark the target as free
   1084  1.14     gibbs 			 */
   1085  1.14     gibbs 			flags = AHC_INB(ahc, FLAGS);
   1086  1.14     gibbs 			AHC_OUTB(ahc, MSG_LEN, 0);
   1087  1.14     gibbs 			ahc_unbusy_target(ahc, xs->sc_link->target,
   1088  1.14     gibbs #if defined(__FreeBSD__)
   1089  1.14     gibbs 			 	((long)xs->sc_link->fordriver & SELBUSB)
   1090  1.14     gibbs #elif defined(__NetBSD__)
   1091  1.14     gibbs 				IS_SCSIBUS_B(ahc, xs->sc_link)
   1092  1.14     gibbs #endif
   1093  1.14     gibbs 				 	? 'B' : 'A');
   1094  1.14     gibbs 			/* Stop the selection */
   1095  1.14     gibbs 			AHC_OUTB(ahc, SCSISEQ, 0);
   1096  1.14     gibbs 
   1097  1.14     gibbs 			AHC_OUTB(ahc, SCB_CONTROL, 0);
   1098  1.14     gibbs 
   1099  1.14     gibbs 			AHC_OUTB(ahc, CLRSINT1, CLRSELTIMEO);
   1100  1.14     gibbs 
   1101  1.14     gibbs 			AHC_OUTB(ahc, CLRINT, CLRSCSIINT);
   1102  1.14     gibbs 
   1103  1.14     gibbs 			/* Shift the waiting for selection queue forward */
   1104  1.14     gibbs 			waiting = AHC_INB(ahc, WAITING_SCBH);
   1105  1.14     gibbs 			AHC_OUTB(ahc, SCBPTR, waiting);
   1106  1.14     gibbs 			waiting = AHC_INB(ahc, SCB_NEXT);
   1107  1.14     gibbs 			AHC_OUTB(ahc, WAITING_SCBH, waiting);
   1108   1.9  explorer 
   1109  1.14     gibbs 			restart_sequencer(ahc);
   1110  1.14     gibbs 		}
   1111  1.14     gibbs 		else if (!(status & BUSFREE)) {
   1112  1.14     gibbs 		      sc_print_addr(scb->xs->sc_link);
   1113  1.16  christos 		      printf("Unknown SCSIINT. Status = 0x%x\n", status);
   1114  1.14     gibbs 		      AHC_OUTB(ahc, CLRSINT1, status);
   1115  1.14     gibbs 		      unpause_sequencer(ahc, /*unpause_always*/TRUE);
   1116  1.14     gibbs 		      AHC_OUTB(ahc, CLRINT, CLRSCSIINT);
   1117  1.14     gibbs 		      scb = NULL;
   1118  1.14     gibbs 		}
   1119  1.14     gibbs 		if(scb != NULL) {
   1120  1.14     gibbs 		    /* We want to process the command */
   1121  1.14     gibbs 		    untimeout(ahc_timeout, (caddr_t)scb);
   1122  1.14     gibbs 		    ahc_done(ahc, scb);
   1123  1.14     gibbs 		}
   1124  1.14     gibbs 	}
   1125  1.14     gibbs 	if (intstat & CMDCMPLT) {
   1126  1.14     gibbs 		int   scb_index;
   1127  1.14     gibbs 
   1128  1.14     gibbs 		do {
   1129  1.14     gibbs 			scb_index = AHC_INB(ahc, QOUTFIFO);
   1130  1.14     gibbs 			scb = ahc->scbarray[scb_index];
   1131  1.14     gibbs 			if (!scb || !(scb->flags & SCB_ACTIVE)) {
   1132  1.16  christos 				printf("%s: WARNING "
   1133  1.14     gibbs 				       "no command for scb %d (cmdcmplt)\n"
   1134  1.14     gibbs 				       "QOUTCNT == %d\n",
   1135  1.14     gibbs 					ahc_name(ahc), scb_index,
   1136  1.14     gibbs 					AHC_INB(ahc, QOUTCNT));
   1137  1.14     gibbs 				AHC_OUTB(ahc, CLRINT, CLRCMDINT);
   1138  1.14     gibbs 				continue;
   1139  1.14     gibbs 			}
   1140  1.14     gibbs 			AHC_OUTB(ahc, CLRINT, CLRCMDINT);
   1141  1.14     gibbs 			untimeout(ahc_timeout, (caddr_t)scb);
   1142  1.14     gibbs 			ahc_done(ahc, scb);
   1143  1.14     gibbs 
   1144  1.14     gibbs 		} while (AHC_INB(ahc, QOUTCNT) & ahc->qcntmask);
   1145  1.14     gibbs 
   1146  1.14     gibbs 		ahc_run_waiting_queues(ahc);
   1147  1.14     gibbs 	}
   1148  1.14     gibbs #if defined(__NetBSD__)
   1149  1.14     gibbs 	return 1;
   1150  1.14     gibbs #endif
   1151  1.14     gibbs }
   1152  1.14     gibbs 
   1153  1.14     gibbs static void
   1154  1.14     gibbs ahc_handle_seqint(ahc, intstat)
   1155  1.14     gibbs 	struct ahc_data *ahc;
   1156  1.14     gibbs 	u_int8_t intstat;
   1157  1.14     gibbs {
   1158  1.14     gibbs 	struct scb *scb;
   1159  1.14     gibbs 	u_short targ_mask;
   1160  1.14     gibbs 	u_char target = (AHC_INB(ahc, SCSIID) >> 4) & 0x0f;
   1161  1.14     gibbs 	u_char scratch_offset = target;
   1162  1.14     gibbs 	char channel = AHC_INB(ahc, SBLKCTL) & SELBUSB ? 'B': 'A';
   1163  1.14     gibbs 
   1164  1.14     gibbs 	if (channel == 'B')
   1165  1.14     gibbs 		scratch_offset += 8;
   1166  1.14     gibbs 	targ_mask = (0x01 << scratch_offset);
   1167  1.14     gibbs 
   1168  1.14     gibbs 	switch (intstat & SEQINT_MASK) {
   1169  1.14     gibbs 	case NO_MATCH:
   1170  1.14     gibbs 		if (ahc->flags & AHC_PAGESCBS) {
   1171  1.14     gibbs 			/* SCB Page-in request */
   1172  1.14     gibbs 			u_char tag;
   1173  1.14     gibbs 			u_char next;
   1174  1.14     gibbs 			u_char disc_scb;
   1175  1.14     gibbs 			struct scb *outscb;
   1176  1.14     gibbs 			u_char arg_1 = AHC_INB(ahc, ARG_1);
   1177  1.14     gibbs 
   1178  1.14     gibbs 			/*
   1179  1.14     gibbs 			 * We should succeed, so set this now.
   1180  1.14     gibbs 			 * If we don't, and one of the methods
   1181  1.14     gibbs 			 * we use to aquire an SCB calls ahc_done,
   1182  1.14     gibbs 			 * we may wind up in our start routine
   1183  1.14     gibbs 			 * and unpause the adapter without giving
   1184  1.14     gibbs 			 * it the correct return value, which will
   1185  1.14     gibbs 			 * cause a hang.
   1186  1.14     gibbs 			 */
   1187  1.14     gibbs 			AHC_OUTB(ahc, RETURN_1, SCB_PAGEDIN);
   1188  1.14     gibbs 
   1189  1.14     gibbs 			if (arg_1 == SCB_LIST_NULL) {
   1190  1.14     gibbs 				/* Non-tagged command */
   1191  1.14     gibbs 				int index;
   1192  1.14     gibbs 
   1193  1.14     gibbs 				index = target|(channel == 'B' ? SELBUSB : 0);
   1194  1.14     gibbs 				scb = ahc->pagedout_ntscbs[index];
   1195  1.14     gibbs 			} else
   1196  1.14     gibbs 				scb = ahc->scbarray[arg_1];
   1197  1.14     gibbs 
   1198  1.14     gibbs 			if (!(scb->flags & SCB_PAGED_OUT))
   1199  1.14     gibbs 				panic("%s: Request to page in a non paged out "
   1200  1.14     gibbs 				      "SCB.", ahc_name(ahc));
   1201  1.14     gibbs 			/*
   1202  1.14     gibbs 			 * Now to pick the SCB to page out.
   1203  1.14     gibbs 			 * Either take a free SCB, an assigned SCB,
   1204  1.14     gibbs 			 * an SCB that just completed, the first
   1205  1.14     gibbs 			 * one on the disconnected SCB list, or
   1206  1.14     gibbs 			 * as a last resort a queued SCB.
   1207  1.14     gibbs 			 */
   1208  1.14     gibbs 			if (ahc->free_scbs.stqh_first) {
   1209  1.14     gibbs 				outscb = ahc->free_scbs.stqh_first;
   1210  1.14     gibbs 				STAILQ_REMOVE_HEAD(&ahc->free_scbs, links);
   1211  1.14     gibbs 				scb->position = outscb->position;
   1212  1.14     gibbs 				outscb->position = SCB_LIST_NULL;
   1213  1.14     gibbs 				STAILQ_INSERT_HEAD(&ahc->page_scbs, outscb,
   1214  1.14     gibbs 						   links);
   1215  1.14     gibbs 				AHC_OUTB(ahc, SCBPTR, scb->position);
   1216  1.14     gibbs 				ahc_send_scb(ahc, scb);
   1217  1.14     gibbs 				scb->flags &= ~SCB_PAGED_OUT;
   1218  1.14     gibbs 				goto pagein_done;
   1219  1.14     gibbs 			}
   1220  1.14     gibbs 			if (intstat & CMDCMPLT) {
   1221  1.14     gibbs 				int   scb_index;
   1222   1.1   mycroft 
   1223  1.14     gibbs 				AHC_OUTB(ahc, CLRINT, CLRCMDINT);
   1224  1.14     gibbs 				scb_index = AHC_INB(ahc, QOUTFIFO);
   1225  1.14     gibbs 				if (!(AHC_INB(ahc, QOUTCNT) & ahc->qcntmask))
   1226  1.14     gibbs 					intstat &= ~CMDCMPLT;
   1227  1.14     gibbs 
   1228  1.14     gibbs 				outscb = ahc->scbarray[scb_index];
   1229  1.14     gibbs 				if (!outscb || !(outscb->flags & SCB_ACTIVE)) {
   1230  1.16  christos 					printf("%s: WARNING no command for "
   1231  1.14     gibbs 					       "scb %d (cmdcmplt)\n",
   1232  1.14     gibbs 					       ahc_name(ahc),
   1233  1.14     gibbs 					       scb_index);
   1234  1.14     gibbs 					/*
   1235  1.14     gibbs 					 * Fall through in hopes of finding
   1236  1.14     gibbs 					 * another SCB
   1237  1.14     gibbs 					 */
   1238  1.14     gibbs 				} else {
   1239   1.6   mycroft 					scb->position = outscb->position;
   1240   1.6   mycroft 					outscb->position = SCB_LIST_NULL;
   1241   1.6   mycroft 					AHC_OUTB(ahc, SCBPTR, scb->position);
   1242   1.6   mycroft 					ahc_send_scb(ahc, scb);
   1243   1.6   mycroft 					scb->flags &= ~SCB_PAGED_OUT;
   1244  1.14     gibbs 					untimeout(ahc_timeout,
   1245  1.14     gibbs 						  (caddr_t)outscb);
   1246  1.14     gibbs 					ahc_done(ahc, outscb);
   1247   1.6   mycroft 					goto pagein_done;
   1248   1.6   mycroft 				}
   1249  1.14     gibbs 			}
   1250  1.14     gibbs 			disc_scb = AHC_INB(ahc, DISCONNECTED_SCBH);
   1251  1.14     gibbs 			if (disc_scb != SCB_LIST_NULL) {
   1252  1.14     gibbs 				AHC_OUTB(ahc, SCBPTR, disc_scb);
   1253  1.14     gibbs 				tag = AHC_INB(ahc, SCB_TAG);
   1254  1.14     gibbs 				outscb = ahc->scbarray[tag];
   1255  1.14     gibbs 				next = AHC_INB(ahc, SCB_NEXT);
   1256  1.14     gibbs 				if (next != SCB_LIST_NULL) {
   1257  1.14     gibbs 					AHC_OUTB(ahc, SCBPTR, next);
   1258  1.14     gibbs 					AHC_OUTB(ahc, SCB_PREV,
   1259  1.14     gibbs 						 SCB_LIST_NULL);
   1260  1.14     gibbs 					AHC_OUTB(ahc, SCBPTR, disc_scb);
   1261   1.6   mycroft 				}
   1262  1.14     gibbs 				AHC_OUTB(ahc, DISCONNECTED_SCBH, next);
   1263  1.14     gibbs 				ahc_page_scb(ahc, outscb, scb);
   1264  1.14     gibbs 			} else if (AHC_INB(ahc, QINCNT) & ahc->qcntmask) {
   1265  1.14     gibbs 				/*
   1266  1.14     gibbs 				 * Pull one of our queued commands
   1267  1.14     gibbs 				 * as a last resort
   1268  1.14     gibbs 				 */
   1269  1.14     gibbs 				disc_scb = AHC_INB(ahc, QINFIFO);
   1270  1.14     gibbs 				AHC_OUTB(ahc, SCBPTR, disc_scb);
   1271  1.14     gibbs 				tag = AHC_INB(ahc, SCB_TAG);
   1272  1.14     gibbs 				outscb = ahc->scbarray[tag];
   1273  1.14     gibbs 				if ((outscb->control & 0x23) != TAG_ENB) {
   1274  1.14     gibbs 					/*
   1275  1.14     gibbs 					 * This is not a simple tagged command
   1276  1.14     gibbs 					 * so its position in the queue
   1277  1.14     gibbs 					 * matters.  Take the command at the
   1278  1.14     gibbs 					 * end of the queue instead.
   1279  1.14     gibbs 					 */
   1280  1.14     gibbs 					int i;
   1281  1.14     gibbs 					u_char saved_queue[AHC_SCB_MAX];
   1282  1.14     gibbs 					u_char queued = AHC_INB(ahc, QINCNT)
   1283  1.14     gibbs 							& ahc->qcntmask;
   1284  1.14     gibbs 
   1285  1.14     gibbs 					/*
   1286  1.14     gibbs 					 * Count the command we removed
   1287  1.14     gibbs 					 * already
   1288  1.14     gibbs 					 */
   1289  1.14     gibbs 					saved_queue[0] = disc_scb;
   1290  1.14     gibbs 					queued++;
   1291  1.14     gibbs 
   1292  1.14     gibbs 					/* Empty the input queue */
   1293  1.14     gibbs 					for (i = 1; i < queued; i++)
   1294  1.14     gibbs 						saved_queue[i] = AHC_INB(ahc, QINFIFO);
   1295   1.6   mycroft 
   1296  1.14     gibbs 					/*
   1297  1.14     gibbs 					 * Put everyone back but the
   1298  1.14     gibbs 					 * last entry
   1299  1.14     gibbs 					 */
   1300  1.14     gibbs 					queued--;
   1301  1.14     gibbs 					for (i = 0; i < queued; i++)
   1302  1.14     gibbs 						AHC_OUTB(ahc, QINFIFO,
   1303  1.14     gibbs 							 saved_queue[i]);
   1304  1.14     gibbs 
   1305  1.14     gibbs 					AHC_OUTB(ahc, SCBPTR,
   1306  1.14     gibbs 						 saved_queue[queued]);
   1307   1.6   mycroft 					tag = AHC_INB(ahc, SCB_TAG);
   1308   1.6   mycroft 					outscb = ahc->scbarray[tag];
   1309  1.14     gibbs 				}
   1310  1.14     gibbs 				untimeout(ahc_timeout, (caddr_t)outscb);
   1311  1.14     gibbs 				scb->position = outscb->position;
   1312  1.14     gibbs 				outscb->position = SCB_LIST_NULL;
   1313  1.14     gibbs 				STAILQ_INSERT_HEAD(&ahc->waiting_scbs,
   1314  1.14     gibbs 						   outscb, links);
   1315  1.14     gibbs 				outscb->flags |= SCB_WAITINGQ;
   1316  1.14     gibbs 				ahc_send_scb(ahc, scb);
   1317  1.14     gibbs 				scb->flags &= ~SCB_PAGED_OUT;
   1318   1.6   mycroft 			}
   1319   1.6   mycroft 			else {
   1320  1.14     gibbs 				panic("Page-in request with no candidates");
   1321   1.6   mycroft 				AHC_OUTB(ahc, RETURN_1, 0);
   1322   1.6   mycroft 			}
   1323  1.14     gibbs 		  pagein_done:
   1324  1.14     gibbs 		} else {
   1325  1.16  christos 			printf("%s:%c:%d: no active SCB for reconnecting "
   1326  1.14     gibbs 			       "target - issuing ABORT\n",
   1327  1.14     gibbs 			       ahc_name(ahc), channel, target);
   1328  1.16  christos 			printf("SAVED_TCL == 0x%x\n",
   1329  1.14     gibbs 			       AHC_INB(ahc, SAVED_TCL));
   1330  1.14     gibbs 			ahc_unbusy_target(ahc, target, channel);
   1331  1.14     gibbs 			AHC_OUTB(ahc, SCB_CONTROL, 0);
   1332  1.14     gibbs 			AHC_OUTB(ahc, CLRSINT1, CLRSELTIMEO);
   1333  1.14     gibbs 			AHC_OUTB(ahc, RETURN_1, 0);
   1334  1.14     gibbs 		}
   1335  1.14     gibbs 		break;
   1336  1.14     gibbs 	case SEND_REJECT:
   1337  1.14     gibbs 	{
   1338  1.14     gibbs 		u_char rejbyte = AHC_INB(ahc, REJBYTE);
   1339  1.21     mikel 		printf("%s:%c:%d: Warning - unknown message received from "
   1340  1.14     gibbs 		       "target (0x%x).  Rejecting\n",
   1341  1.14     gibbs 		       ahc_name(ahc), channel, target, rejbyte);
   1342  1.14     gibbs 		break;
   1343  1.14     gibbs 	}
   1344  1.14     gibbs 	case NO_IDENT:
   1345  1.14     gibbs 		panic("%s:%c:%d: Target did not send an IDENTIFY message. "
   1346  1.14     gibbs 		      "SAVED_TCL == 0x%x\n",
   1347  1.14     gibbs 		      ahc_name(ahc), channel, target,
   1348  1.14     gibbs 		      AHC_INB(ahc, SAVED_TCL));
   1349  1.14     gibbs 		break;
   1350  1.14     gibbs 	case BAD_PHASE:
   1351  1.16  christos 		printf("%s:%c:%d: unknown scsi bus phase.  Attempting to "
   1352  1.14     gibbs 		       "continue\n", ahc_name(ahc), channel, target);
   1353  1.14     gibbs 		break;
   1354  1.14     gibbs 	case EXTENDED_MSG:
   1355  1.14     gibbs 	{
   1356  1.14     gibbs 		u_int8_t message_length;
   1357  1.14     gibbs 		u_int8_t message_code;
   1358  1.14     gibbs 
   1359  1.14     gibbs 		message_length = AHC_INB(ahc, MSGIN_EXT_LEN);
   1360  1.14     gibbs 		message_code = AHC_INB(ahc, MSGIN_EXT_OPCODE);
   1361  1.14     gibbs 		switch(message_code) {
   1362  1.14     gibbs 		case MSG_EXT_SDTR:
   1363  1.14     gibbs 		{
   1364  1.14     gibbs 			u_int8_t period;
   1365  1.14     gibbs 			u_int8_t offset;
   1366  1.14     gibbs 			u_int8_t saved_offset;
   1367  1.14     gibbs 			u_int8_t targ_scratch;
   1368  1.14     gibbs 			u_int8_t maxoffset;
   1369  1.14     gibbs 			u_int8_t rate;
   1370  1.14     gibbs 
   1371  1.14     gibbs 			if (message_length != MSG_EXT_SDTR_LEN) {
   1372  1.14     gibbs 				AHC_OUTB(ahc, RETURN_1, SEND_REJ);
   1373  1.14     gibbs 				ahc->sdtrpending &= ~targ_mask;
   1374  1.14     gibbs 				break;
   1375  1.14     gibbs 			}
   1376  1.14     gibbs 			period = AHC_INB(ahc, MSGIN_EXT_BYTE0);
   1377  1.14     gibbs 			saved_offset = AHC_INB(ahc, MSGIN_EXT_BYTE1);
   1378  1.14     gibbs 			targ_scratch = AHC_INB(ahc, TARG_SCRATCH
   1379  1.14     gibbs 					       + scratch_offset);
   1380  1.14     gibbs 			if (targ_scratch & WIDEXFER)
   1381  1.14     gibbs 				maxoffset = MAX_OFFSET_16BIT;
   1382  1.14     gibbs 			else
   1383  1.14     gibbs 				maxoffset = MAX_OFFSET_8BIT;
   1384  1.14     gibbs 			offset = MIN(saved_offset, maxoffset);
   1385  1.14     gibbs 			ahc_scsirate(ahc, &rate, &period, &offset,
   1386  1.14     gibbs 				     channel, target);
   1387  1.14     gibbs 			/* Preserve the WideXfer flag */
   1388  1.14     gibbs 			targ_scratch = rate | (targ_scratch & WIDEXFER);
   1389  1.14     gibbs 
   1390  1.14     gibbs 			/*
   1391  1.14     gibbs 			 * Update both the target scratch area and the
   1392  1.14     gibbs 			 * current SCSIRATE.
   1393  1.14     gibbs 			 */
   1394  1.14     gibbs 			AHC_OUTB(ahc, TARG_SCRATCH + scratch_offset,
   1395  1.14     gibbs 				 targ_scratch);
   1396  1.14     gibbs 			AHC_OUTB(ahc, SCSIRATE, targ_scratch);
   1397  1.14     gibbs 
   1398  1.14     gibbs 			/*
   1399  1.14     gibbs 			 * See if we initiated Sync Negotiation
   1400  1.14     gibbs 			 * and didn't have to fall down to async
   1401  1.14     gibbs 			 * transfers.
   1402  1.14     gibbs 			 */
   1403  1.14     gibbs 			if ((ahc->sdtrpending & targ_mask) != 0
   1404  1.14     gibbs 			 && (saved_offset == offset)) {
   1405  1.14     gibbs 				/*
   1406  1.14     gibbs 				 * Don't send an SDTR back to
   1407  1.14     gibbs 				 * the target
   1408  1.14     gibbs 				 */
   1409  1.14     gibbs 				AHC_OUTB(ahc, RETURN_1, 0);
   1410  1.14     gibbs 				ahc->needsdtr &= ~targ_mask;
   1411  1.14     gibbs 				ahc->sdtrpending &= ~targ_mask;
   1412  1.14     gibbs 			} else {
   1413  1.14     gibbs 				/*
   1414  1.14     gibbs 				 * Send our own SDTR in reply
   1415   1.1   mycroft 				 */
   1416   1.6   mycroft #ifdef AHC_DEBUG
   1417  1.14     gibbs 				if(ahc_debug & AHC_SHOWMISC)
   1418  1.16  christos 					printf("Sending SDTR!!\n");
   1419   1.6   mycroft #endif
   1420  1.14     gibbs 				ahc_construct_sdtr(ahc, /*start_byte*/0,
   1421  1.14     gibbs 						   period, offset);
   1422  1.14     gibbs 				AHC_OUTB(ahc, RETURN_1, SEND_MSG);
   1423  1.14     gibbs 
   1424   1.1   mycroft 				/*
   1425  1.14     gibbs 				 * If we aren't starting a re-negotiation
   1426  1.14     gibbs 				 * because we had to go async in response
   1427  1.14     gibbs 				 * to a "too low" response from the target
   1428  1.14     gibbs 				 * clear the needsdtr flag for this target.
   1429   1.1   mycroft 				 */
   1430  1.14     gibbs 				if ((ahc->sdtrpending & targ_mask) == 0)
   1431  1.14     gibbs 					ahc->needsdtr &= ~targ_mask;
   1432  1.14     gibbs 				else
   1433  1.14     gibbs 					ahc->sdtrpending |= targ_mask;
   1434   1.1   mycroft 			}
   1435  1.14     gibbs 			break;
   1436  1.14     gibbs 		}
   1437  1.14     gibbs 		case MSG_EXT_WDTR:
   1438  1.14     gibbs 		{
   1439  1.14     gibbs 			u_int8_t scratch, bus_width;
   1440   1.1   mycroft 
   1441  1.14     gibbs 			if (message_length != MSG_EXT_WDTR_LEN) {
   1442  1.14     gibbs 				AHC_OUTB(ahc, RETURN_1, SEND_REJ);
   1443  1.14     gibbs 				ahc->wdtrpending &= ~targ_mask;
   1444  1.14     gibbs 				break;
   1445  1.14     gibbs 			}
   1446   1.1   mycroft 
   1447  1.14     gibbs 			bus_width = AHC_INB(ahc, MSGIN_EXT_BYTE0);
   1448  1.14     gibbs 			scratch = AHC_INB(ahc, TARG_SCRATCH
   1449  1.14     gibbs 					  + scratch_offset);
   1450   1.1   mycroft 
   1451  1.14     gibbs 			if (ahc->wdtrpending & targ_mask) {
   1452  1.14     gibbs 				/*
   1453  1.14     gibbs 				 * Don't send a WDTR back to the
   1454  1.14     gibbs 				 * target, since we asked first.
   1455  1.14     gibbs 				 */
   1456  1.14     gibbs 				AHC_OUTB(ahc, RETURN_1, 0);
   1457  1.14     gibbs 				switch(bus_width){
   1458  1.14     gibbs 				case BUS_8_BIT:
   1459  1.14     gibbs 					scratch &= 0x7f;
   1460  1.14     gibbs 					break;
   1461  1.14     gibbs 				case BUS_16_BIT:
   1462  1.14     gibbs 					if(bootverbose)
   1463  1.16  christos 						printf("%s: target %d using "
   1464  1.14     gibbs 						       "16Bit transfers\n",
   1465  1.14     gibbs 						       ahc_name(ahc), target);
   1466  1.14     gibbs 					scratch |= WIDEXFER;
   1467  1.14     gibbs 					break;
   1468  1.14     gibbs 				case BUS_32_BIT:
   1469   1.6   mycroft 					/*
   1470  1.14     gibbs 					 * How can we do 32bit transfers
   1471  1.14     gibbs 					 * on a 16bit bus?
   1472   1.6   mycroft 					 */
   1473  1.14     gibbs 					AHC_OUTB(ahc, RETURN_1, SEND_REJ);
   1474  1.16  christos 					printf("%s: target %d requested 32Bit "
   1475  1.14     gibbs 					       "transfers.  Rejecting...\n",
   1476  1.14     gibbs 					       ahc_name(ahc), target);
   1477  1.14     gibbs 					break;
   1478  1.14     gibbs 				default:
   1479  1.14     gibbs 					break;
   1480  1.14     gibbs 				}
   1481  1.14     gibbs 			} else {
   1482  1.14     gibbs 				/*
   1483  1.14     gibbs 				 * Send our own WDTR in reply
   1484  1.14     gibbs 				 */
   1485  1.14     gibbs 				switch(bus_width) {
   1486  1.14     gibbs 				case BUS_8_BIT:
   1487  1.14     gibbs 					scratch &= 0x7f;
   1488  1.14     gibbs 					break;
   1489  1.14     gibbs 				case BUS_32_BIT:
   1490  1.14     gibbs 				case BUS_16_BIT:
   1491  1.14     gibbs 					if(ahc->type & AHC_WIDE) {
   1492  1.14     gibbs 						/* Negotiate 16_BITS */
   1493  1.14     gibbs 						bus_width = BUS_16_BIT;
   1494  1.14     gibbs 						if(bootverbose)
   1495  1.16  christos 							printf("%s: target %d "
   1496  1.14     gibbs 							       "using 16Bit "
   1497   1.6   mycroft 							       "transfers\n",
   1498   1.6   mycroft 							       ahc_name(ahc),
   1499   1.6   mycroft 							       target);
   1500  1.14     gibbs 						scratch |= WIDEXFER;
   1501  1.14     gibbs 					} else
   1502  1.14     gibbs 						bus_width = BUS_8_BIT;
   1503  1.14     gibbs 					break;
   1504  1.14     gibbs 				default:
   1505  1.14     gibbs 					break;
   1506   1.1   mycroft 				}
   1507  1.14     gibbs 				ahc_construct_wdtr(ahc, /*start_byte*/0,
   1508  1.14     gibbs 						   bus_width);
   1509  1.14     gibbs 				AHC_OUTB(ahc, RETURN_1, SEND_MSG);
   1510   1.6   mycroft 			}
   1511  1.14     gibbs 
   1512  1.14     gibbs 			ahc->needwdtr &= ~targ_mask;
   1513  1.14     gibbs 			ahc->wdtrpending &= ~targ_mask;
   1514  1.14     gibbs 			AHC_OUTB(ahc, TARG_SCRATCH + scratch_offset, scratch);
   1515  1.14     gibbs 			AHC_OUTB(ahc, SCSIRATE, scratch);
   1516  1.14     gibbs 			break;
   1517  1.14     gibbs 		}
   1518  1.14     gibbs 		default:
   1519  1.14     gibbs 			/* Unknown extended message.  Reject it. */
   1520  1.14     gibbs 			AHC_OUTB(ahc, RETURN_1, SEND_REJ);
   1521  1.14     gibbs 		}
   1522  1.14     gibbs 	}
   1523  1.14     gibbs 	case REJECT_MSG:
   1524  1.14     gibbs 	{
   1525  1.14     gibbs 		/*
   1526  1.14     gibbs 		 * What we care about here is if we had an
   1527  1.14     gibbs 		 * outstanding SDTR or WDTR message for this
   1528  1.14     gibbs 		 * target.  If we did, this is a signal that
   1529  1.14     gibbs 		 * the target is refusing negotiation.
   1530  1.14     gibbs 		 */
   1531   1.1   mycroft 
   1532  1.14     gibbs 		u_char targ_scratch;
   1533   1.6   mycroft 
   1534  1.14     gibbs 		targ_scratch = AHC_INB(ahc, TARG_SCRATCH
   1535  1.14     gibbs 				       + scratch_offset);
   1536   1.1   mycroft 
   1537  1.14     gibbs 		if (ahc->wdtrpending & targ_mask){
   1538  1.14     gibbs 			/* note 8bit xfers and clear flag */
   1539  1.14     gibbs 			targ_scratch &= 0x7f;
   1540  1.14     gibbs 			ahc->needwdtr &= ~targ_mask;
   1541  1.14     gibbs 			ahc->wdtrpending &= ~targ_mask;
   1542  1.16  christos 			printf("%s:%c:%d: refuses WIDE negotiation.  Using "
   1543  1.14     gibbs 			       "8bit transfers\n", ahc_name(ahc),
   1544  1.14     gibbs 			       channel, target);
   1545  1.14     gibbs 		} else if(ahc->sdtrpending & targ_mask){
   1546  1.14     gibbs 			/* note asynch xfers and clear flag */
   1547  1.14     gibbs 			targ_scratch &= 0xf0;
   1548  1.14     gibbs 			ahc->needsdtr &= ~targ_mask;
   1549  1.14     gibbs 			ahc->sdtrpending &= ~targ_mask;
   1550  1.21     mikel 			printf("%s:%c:%d: refuses synchronous negotiation. "
   1551  1.21     mikel 			       "Using asynchronous transfers\n",
   1552  1.14     gibbs 			       ahc_name(ahc),
   1553  1.14     gibbs 			       channel, target);
   1554  1.14     gibbs 		} else {
   1555  1.14     gibbs 			/*
   1556  1.14     gibbs 			 * Otherwise, we ignore it.
   1557  1.14     gibbs 			 */
   1558   1.1   mycroft #ifdef AHC_DEBUG
   1559  1.14     gibbs 			if(ahc_debug & AHC_SHOWMISC)
   1560  1.16  christos 				printf("%s:%c:%d: Message reject -- ignored\n",
   1561  1.14     gibbs 				       ahc_name(ahc), channel, target);
   1562   1.1   mycroft #endif
   1563  1.14     gibbs 			break;
   1564  1.14     gibbs 		}
   1565  1.14     gibbs 		AHC_OUTB(ahc, TARG_SCRATCH + scratch_offset, targ_scratch);
   1566  1.14     gibbs 		AHC_OUTB(ahc, SCSIRATE, targ_scratch);
   1567  1.14     gibbs 		break;
   1568  1.14     gibbs 	}
   1569  1.14     gibbs 	case BAD_STATUS:
   1570  1.14     gibbs 	{
   1571  1.14     gibbs 		int	scb_index;
   1572  1.14     gibbs 		struct	scsi_xfer *xs;
   1573  1.14     gibbs 
   1574  1.14     gibbs 		/* The sequencer will notify us when a command
   1575  1.14     gibbs 		 * has an error that would be of interest to
   1576  1.14     gibbs 		 * the kernel.  This allows us to leave the sequencer
   1577  1.14     gibbs 		 * running in the common case of command completes
   1578  1.14     gibbs 		 * without error.
   1579  1.14     gibbs 		 */
   1580  1.14     gibbs 
   1581  1.14     gibbs 		scb_index = AHC_INB(ahc, SCB_TAG);
   1582  1.14     gibbs 		scb = ahc->scbarray[scb_index];
   1583   1.6   mycroft 
   1584  1.14     gibbs 		/*
   1585  1.14     gibbs 		 * Set the default return value to 0 (don't
   1586  1.14     gibbs 		 * send sense).  The sense code will change
   1587  1.14     gibbs 		 * this if needed and this reduces code
   1588  1.14     gibbs 		 * duplication.
   1589  1.14     gibbs 		 */
   1590  1.14     gibbs 		AHC_OUTB(ahc, RETURN_1, 0);
   1591  1.14     gibbs 		if (!(scb && (scb->flags & SCB_ACTIVE))) {
   1592  1.16  christos 			printf("%s:%c:%d: ahc_intr - referenced scb "
   1593  1.14     gibbs 			       "not valid during seqint 0x%x scb(%d)\n",
   1594  1.14     gibbs 			       ahc_name(ahc),
   1595  1.14     gibbs 			       channel, target, intstat,
   1596  1.14     gibbs 			       scb_index);
   1597  1.14     gibbs 			goto clear;
   1598  1.14     gibbs 		}
   1599   1.1   mycroft 
   1600  1.14     gibbs 		xs = scb->xs;
   1601   1.1   mycroft 
   1602  1.14     gibbs 		scb->status = AHC_INB(ahc, SCB_TARGET_STATUS);
   1603   1.1   mycroft 
   1604   1.6   mycroft #ifdef AHC_DEBUG
   1605  1.14     gibbs 		if((ahc_debug & AHC_SHOWSCBS)
   1606  1.14     gibbs 		   && xs->sc_link->target == DEBUGTARGET)
   1607  1.14     gibbs 			ahc_print_scb(scb);
   1608  1.14     gibbs #endif
   1609  1.14     gibbs 		xs->status = scb->status;
   1610  1.14     gibbs 		switch(scb->status){
   1611  1.14     gibbs 		case SCSI_OK:
   1612  1.16  christos 			printf("%s: Interrupted for staus of"
   1613  1.14     gibbs 			       " 0???\n", ahc_name(ahc));
   1614  1.14     gibbs 			break;
   1615  1.14     gibbs 		case SCSI_CHECK:
   1616  1.14     gibbs #ifdef AHC_DEBUG
   1617  1.14     gibbs 			if(ahc_debug & AHC_SHOWSENSE)
   1618  1.14     gibbs 			{
   1619  1.22       cgd 
   1620  1.14     gibbs 				sc_print_addr(xs->sc_link);
   1621  1.16  christos 				printf("requests Check Status\n");
   1622  1.14     gibbs 			}
   1623  1.14     gibbs #endif
   1624  1.14     gibbs 
   1625  1.14     gibbs 			if ((xs->error == XS_NOERROR)
   1626  1.14     gibbs 			    && !(scb->flags & SCB_SENSE)) {
   1627  1.14     gibbs 				struct ahc_dma_seg *sg = scb->ahc_dma;
   1628  1.14     gibbs 				struct scsi_sense *sc = &(scb->sense_cmd);
   1629   1.1   mycroft #ifdef AHC_DEBUG
   1630  1.14     gibbs 				if (ahc_debug & AHC_SHOWSENSE)
   1631   1.6   mycroft 				{
   1632   1.6   mycroft 					sc_print_addr(xs->sc_link);
   1633  1.16  christos 					printf("Sending Sense\n");
   1634   1.6   mycroft 				}
   1635   1.1   mycroft #endif
   1636   1.6   mycroft #if defined(__FreeBSD__)
   1637  1.14     gibbs 				sc->op_code = REQUEST_SENSE;
   1638   1.6   mycroft #elif defined(__NetBSD__)
   1639  1.14     gibbs 				sc->opcode = REQUEST_SENSE;
   1640   1.6   mycroft #endif
   1641  1.14     gibbs 				sc->byte2 =  xs->sc_link->lun << 5;
   1642  1.14     gibbs 				sc->length = sizeof(struct scsi_sense_data);
   1643  1.14     gibbs 				sc->control = 0;
   1644  1.14     gibbs 				sg->addr = KVTOPHYS(&xs->sense);
   1645  1.14     gibbs 				sg->len = sizeof(struct scsi_sense_data);
   1646  1.14     gibbs 
   1647  1.14     gibbs 				scb->control &= DISCENB;
   1648  1.14     gibbs 				scb->status = 0;
   1649  1.14     gibbs 				scb->SG_segment_count = 1;
   1650  1.14     gibbs 				scb->SG_list_pointer = KVTOPHYS(sg);
   1651  1.14     gibbs 				scb->data = sg->addr;
   1652  1.14     gibbs 				scb->datalen = sg->len;
   1653   1.6   mycroft #ifdef AHC_BROKEN_CACHE
   1654  1.14     gibbs 				if (ahc_broken_cache)
   1655  1.14     gibbs 					INVALIDATE_CACHE();
   1656   1.6   mycroft #endif
   1657  1.14     gibbs 				scb->cmdpointer = KVTOPHYS(sc);
   1658  1.14     gibbs 				scb->cmdlen = sizeof(*sc);
   1659   1.6   mycroft 
   1660  1.14     gibbs 				scb->flags |= SCB_SENSE;
   1661  1.14     gibbs 				ahc_send_scb(ahc, scb);
   1662   1.6   mycroft 				/*
   1663  1.14     gibbs 				 * Ensure that the target is "BUSY"
   1664  1.14     gibbs 				 * so we don't get overlapping
   1665  1.14     gibbs 				 * commands if we happen to be doing
   1666  1.14     gibbs 				 * tagged I/O.
   1667   1.6   mycroft 				 */
   1668  1.14     gibbs 				ahc_busy_target(ahc, target, channel);
   1669   1.6   mycroft 
   1670   1.6   mycroft 				/*
   1671  1.14     gibbs 				 * Make us the next command to run
   1672   1.6   mycroft 				 */
   1673  1.14     gibbs 				ahc_add_waiting_scb(ahc, scb);
   1674  1.14     gibbs 				AHC_OUTB(ahc, RETURN_1, SEND_SENSE);
   1675  1.14     gibbs 				break;
   1676   1.6   mycroft 			}
   1677   1.1   mycroft 			/*
   1678  1.14     gibbs 			 * Clear the SCB_SENSE Flag and have
   1679  1.14     gibbs 			 * the sequencer do a normal command
   1680  1.14     gibbs 			 * complete with either a "DRIVER_STUFFUP"
   1681  1.14     gibbs 			 * error or whatever other error condition
   1682  1.14     gibbs 			 * we already had.
   1683   1.1   mycroft 			 */
   1684  1.14     gibbs 			scb->flags &= ~SCB_SENSE;
   1685  1.14     gibbs 			if (xs->error == XS_NOERROR)
   1686  1.14     gibbs 				xs->error = XS_DRIVER_STUFFUP;
   1687  1.14     gibbs 			break;
   1688  1.14     gibbs 		case SCSI_BUSY:
   1689  1.14     gibbs 			xs->error = XS_BUSY;
   1690   1.1   mycroft 			sc_print_addr(xs->sc_link);
   1691  1.16  christos 			printf("Target Busy\n");
   1692   1.1   mycroft 			break;
   1693  1.14     gibbs 		case SCSI_QUEUE_FULL:
   1694   1.6   mycroft 			/*
   1695  1.14     gibbs 			 * The upper level SCSI code will someday
   1696  1.14     gibbs 			 * handle this properly.
   1697   1.6   mycroft 			 */
   1698  1.14     gibbs 			sc_print_addr(xs->sc_link);
   1699  1.16  christos 			printf("Queue Full\n");
   1700  1.14     gibbs 			scb->flags |= SCB_ASSIGNEDQ;
   1701  1.14     gibbs 			STAILQ_INSERT_TAIL(&ahc->assigned_scbs,scb, links);
   1702  1.14     gibbs 			AHC_OUTB(ahc, RETURN_1, SEND_SENSE);
   1703   1.6   mycroft 			break;
   1704  1.14     gibbs 		default:
   1705  1.14     gibbs 			sc_print_addr(xs->sc_link);
   1706  1.16  christos 			printf("unexpected targ_status: %x\n", scb->status);
   1707  1.14     gibbs 			xs->error = XS_DRIVER_STUFFUP;
   1708   1.1   mycroft 			break;
   1709   1.1   mycroft 		}
   1710  1.14     gibbs 		break;
   1711  1.14     gibbs 	}
   1712  1.14     gibbs 	case RESIDUAL:
   1713  1.14     gibbs 	{
   1714  1.14     gibbs 		int scb_index;
   1715  1.14     gibbs 		struct scsi_xfer *xs;
   1716   1.1   mycroft 
   1717  1.14     gibbs 		scb_index = AHC_INB(ahc, SCB_TAG);
   1718  1.14     gibbs 		scb = ahc->scbarray[scb_index];
   1719  1.14     gibbs 		xs = scb->xs;
   1720   1.1   mycroft 		/*
   1721  1.14     gibbs 		 * Don't clobber valid resid info with
   1722  1.14     gibbs 		 * a resid coming from a check sense
   1723  1.14     gibbs 		 * operation.
   1724   1.1   mycroft 		 */
   1725  1.14     gibbs 		if (!(scb->flags & SCB_SENSE)) {
   1726  1.14     gibbs 			int resid_sgs;
   1727   1.6   mycroft 
   1728   1.6   mycroft 			/*
   1729  1.14     gibbs 			 * Remainder of the SG where the transfer
   1730  1.14     gibbs 			 * stopped.
   1731   1.6   mycroft 			 */
   1732  1.14     gibbs 			xs->resid = (AHC_INB(ahc, SCB_RESID_DCNT2)<<16) |
   1733  1.14     gibbs 				    (AHC_INB(ahc, SCB_RESID_DCNT1)<<8)  |
   1734  1.14     gibbs 				    AHC_INB(ahc, SCB_RESID_DCNT0);
   1735   1.1   mycroft 
   1736   1.6   mycroft 			/*
   1737  1.14     gibbs 			 * Add up the contents of all residual
   1738  1.14     gibbs 			 * SG segments that are after the SG where
   1739  1.14     gibbs 			 * the transfer stopped.
   1740   1.6   mycroft 			 */
   1741  1.14     gibbs 			resid_sgs = AHC_INB(ahc, SCB_RESID_SGCNT) - 1;
   1742  1.14     gibbs 			while (resid_sgs > 0) {
   1743  1.14     gibbs 				int sg;
   1744  1.14     gibbs 
   1745  1.14     gibbs 				sg = scb->SG_segment_count - resid_sgs;
   1746  1.14     gibbs 				xs->resid += scb->ahc_dma[sg].len;
   1747  1.14     gibbs 				resid_sgs--;
   1748   1.6   mycroft 			}
   1749   1.9  explorer 
   1750   1.6   mycroft #if defined(__FreeBSD__)
   1751  1.14     gibbs 			xs->flags |= SCSI_RESID_VALID;
   1752   1.6   mycroft #elif defined(__NetBSD__)
   1753  1.14     gibbs 			/* XXX - Update to do this right */
   1754  1.14     gibbs #endif
   1755  1.14     gibbs #ifdef AHC_DEBUG
   1756  1.14     gibbs 			if (ahc_debug & AHC_SHOWMISC) {
   1757  1.14     gibbs 				sc_print_addr(xs->sc_link);
   1758  1.16  christos 				printf("Handled Residual of %ld bytes\n"
   1759  1.14     gibbs 				       ,xs->resid);
   1760  1.14     gibbs 			}
   1761   1.6   mycroft #endif
   1762   1.1   mycroft 		}
   1763  1.14     gibbs 		break;
   1764   1.6   mycroft 	}
   1765  1.14     gibbs 	case ABORT_TAG:
   1766  1.14     gibbs 	{
   1767   1.6   mycroft 		int   scb_index;
   1768  1.14     gibbs 		struct scsi_xfer *xs;
   1769   1.1   mycroft 
   1770  1.14     gibbs 		scb_index = AHC_INB(ahc, SCB_TAG);
   1771  1.14     gibbs 		scb = ahc->scbarray[scb_index];
   1772  1.14     gibbs 		xs = scb->xs;
   1773  1.14     gibbs 		/*
   1774  1.14     gibbs 		 * We didn't recieve a valid tag back from
   1775  1.14     gibbs 		 * the target on a reconnect.
   1776  1.14     gibbs 		 */
   1777  1.14     gibbs 		sc_print_addr(xs->sc_link);
   1778  1.21     mikel 		printf("invalid tag received -- sending ABORT_TAG\n");
   1779  1.14     gibbs 		xs->error = XS_DRIVER_STUFFUP;
   1780  1.14     gibbs 		untimeout(ahc_timeout, (caddr_t)scb);
   1781  1.14     gibbs 		ahc_done(ahc, scb);
   1782  1.14     gibbs 		break;
   1783  1.14     gibbs 	}
   1784  1.14     gibbs 	case AWAITING_MSG:
   1785  1.14     gibbs 	{
   1786  1.14     gibbs 		int   scb_index;
   1787  1.14     gibbs 		scb_index = AHC_INB(ahc, SCB_TAG);
   1788  1.14     gibbs 		scb = ahc->scbarray[scb_index];
   1789  1.14     gibbs 		/*
   1790  1.14     gibbs 		 * This SCB had a zero length command, informing
   1791  1.14     gibbs 		 * the sequencer that we wanted to send a special
   1792  1.14     gibbs 		 * message to this target.  We only do this for
   1793  1.14     gibbs 		 * BUS_DEVICE_RESET messages currently.
   1794  1.14     gibbs 		 */
   1795  1.14     gibbs 		if (scb->flags & SCB_DEVICE_RESET) {
   1796  1.14     gibbs 			AHC_OUTB(ahc, MSG0,
   1797  1.14     gibbs 				 MSG_BUS_DEV_RESET);
   1798  1.14     gibbs 			AHC_OUTB(ahc, MSG_LEN, 1);
   1799  1.16  christos 			printf("Bus Device Reset Message Sent\n");
   1800  1.14     gibbs 		} else if (scb->flags & SCB_MSGOUT_WDTR) {
   1801  1.14     gibbs 			ahc_construct_wdtr(ahc, AHC_INB(ahc, MSG_LEN),
   1802  1.14     gibbs 					   BUS_16_BIT);
   1803  1.14     gibbs 		} else if (scb->flags & SCB_MSGOUT_SDTR) {
   1804  1.14     gibbs 			u_int8_t target_scratch;
   1805  1.14     gibbs 			u_int8_t ultraenable;
   1806  1.14     gibbs 			int sxfr;
   1807  1.14     gibbs 			int i;
   1808  1.14     gibbs 
   1809  1.14     gibbs 			/* Pull the user defined setting */
   1810  1.14     gibbs 			target_scratch = AHC_INB(ahc, TARG_SCRATCH
   1811  1.14     gibbs 						 + scratch_offset);
   1812  1.14     gibbs 
   1813  1.14     gibbs 			sxfr = target_scratch & SXFR;
   1814  1.14     gibbs 			if (scratch_offset < 8)
   1815  1.14     gibbs 				ultraenable = AHC_INB(ahc, ULTRA_ENB);
   1816  1.14     gibbs 			else
   1817  1.14     gibbs 				ultraenable = AHC_INB(ahc, ULTRA_ENB + 1);
   1818  1.14     gibbs 
   1819  1.14     gibbs 			if (ultraenable & targ_mask)
   1820  1.14     gibbs 				/* Want an ultra speed in the table */
   1821  1.14     gibbs 				sxfr |= 0x100;
   1822  1.14     gibbs 
   1823  1.14     gibbs 			for (i = 0; i < ahc_num_syncrates; i++)
   1824  1.14     gibbs 				if (sxfr == ahc_syncrates[i].sxfr)
   1825  1.14     gibbs 					break;
   1826  1.14     gibbs 
   1827  1.14     gibbs 			ahc_construct_sdtr(ahc, AHC_INB(ahc, MSG_LEN),
   1828  1.14     gibbs 					   ahc_syncrates[i].period,
   1829  1.14     gibbs 					   target_scratch & WIDEXFER ?
   1830  1.14     gibbs 					   MAX_OFFSET_16BIT : MAX_OFFSET_8BIT);
   1831  1.14     gibbs 		} else
   1832  1.14     gibbs 			panic("ahc_intr: AWAITING_MSG for an SCB that "
   1833  1.14     gibbs 			      "does not have a waiting message");
   1834  1.14     gibbs 		break;
   1835  1.14     gibbs 	}
   1836  1.14     gibbs 	case IMMEDDONE:
   1837  1.14     gibbs 	{
   1838  1.14     gibbs 		/*
   1839  1.14     gibbs 		 * Take care of device reset messages
   1840  1.14     gibbs 		 */
   1841  1.14     gibbs 		u_char scbindex = AHC_INB(ahc, SCB_TAG);
   1842  1.14     gibbs 		scb = ahc->scbarray[scbindex];
   1843  1.14     gibbs 		if (scb->flags & SCB_DEVICE_RESET) {
   1844  1.14     gibbs 			u_char targ_scratch;
   1845  1.14     gibbs 			int found;
   1846  1.14     gibbs 			/*
   1847  1.14     gibbs 			 * Go back to async/narrow transfers and
   1848  1.14     gibbs 			 * renegotiate.
   1849  1.14     gibbs 			 */
   1850  1.14     gibbs 			ahc_unbusy_target(ahc, target, channel);
   1851  1.14     gibbs 			ahc->needsdtr |= ahc->needsdtr_orig & targ_mask;
   1852  1.14     gibbs 			ahc->needwdtr |= ahc->needwdtr_orig & targ_mask;
   1853  1.14     gibbs 			ahc->sdtrpending &= ~targ_mask;
   1854  1.14     gibbs 			ahc->wdtrpending &= ~targ_mask;
   1855  1.14     gibbs 			targ_scratch = AHC_INB(ahc, TARG_SCRATCH
   1856  1.14     gibbs 					       + scratch_offset);
   1857  1.14     gibbs 			targ_scratch &= SXFR;
   1858  1.14     gibbs 			AHC_OUTB(ahc, TARG_SCRATCH + scratch_offset,
   1859  1.14     gibbs 				 targ_scratch);
   1860  1.14     gibbs 			found = ahc_reset_device(ahc, target,
   1861  1.14     gibbs 						 channel, SCB_LIST_NULL,
   1862  1.14     gibbs 						 XS_NOERROR);
   1863  1.14     gibbs 			sc_print_addr(scb->xs->sc_link);
   1864  1.16  christos 			printf("Bus Device Reset delivered. "
   1865  1.14     gibbs 			       "%d SCBs aborted\n", found);
   1866  1.14     gibbs 			ahc->in_timeout = FALSE;
   1867  1.14     gibbs 			ahc_run_done_queue(ahc);
   1868  1.14     gibbs 		} else
   1869  1.14     gibbs 			panic("ahc_intr: Immediate complete for "
   1870  1.14     gibbs 			      "unknown operation.");
   1871  1.14     gibbs 		break;
   1872  1.14     gibbs 	}
   1873  1.14     gibbs 	case DATA_OVERRUN:
   1874  1.14     gibbs 	{
   1875  1.14     gibbs 		/*
   1876  1.14     gibbs 		 * When the sequencer detects an overrun, it
   1877  1.14     gibbs 		 * sets STCNT to 0x00ffffff and allows the
   1878  1.14     gibbs 		 * target to complete its transfer in
   1879  1.14     gibbs 		 * BITBUCKET mode.
   1880  1.14     gibbs 		 */
   1881  1.14     gibbs 		u_char scbindex = AHC_INB(ahc, SCB_TAG);
   1882  1.14     gibbs 		u_int32_t overrun;
   1883  1.14     gibbs 		scb = ahc->scbarray[scbindex];
   1884  1.14     gibbs 		overrun = AHC_INB(ahc, STCNT0)
   1885  1.14     gibbs 			| (AHC_INB(ahc, STCNT1) << 8)
   1886  1.14     gibbs 			| (AHC_INB(ahc, STCNT2) << 16);
   1887  1.14     gibbs 		overrun = 0x00ffffff - overrun;
   1888  1.14     gibbs 		sc_print_addr(scb->xs->sc_link);
   1889  1.16  christos 		printf("data overrun of %d bytes detected."
   1890  1.14     gibbs 		       "  Forcing a retry.\n", overrun);
   1891  1.14     gibbs 		/*
   1892  1.14     gibbs 		 * Set this and it will take affect when the
   1893  1.14     gibbs 		 * target does a command complete.
   1894  1.14     gibbs 		 */
   1895  1.14     gibbs 		scb->xs->error = XS_DRIVER_STUFFUP;
   1896  1.14     gibbs 		break;
   1897   1.6   mycroft 	}
   1898  1.14     gibbs #if NOT_YET
   1899  1.14     gibbs 	/* XXX Fill these in later */
   1900  1.14     gibbs 	case MESG_BUFFER_BUSY:
   1901  1.14     gibbs 		break;
   1902  1.14     gibbs 	case MSGIN_PHASEMIS:
   1903  1.14     gibbs 		break;
   1904   1.1   mycroft #endif
   1905  1.14     gibbs 	default:
   1906  1.16  christos 		printf("ahc_intr: seqint, "
   1907  1.14     gibbs 		       "intstat == 0x%x, scsisigi = 0x%x\n",
   1908  1.14     gibbs 		       intstat, AHC_INB(ahc, SCSISIGI));
   1909  1.14     gibbs 		break;
   1910  1.14     gibbs 	}
   1911  1.14     gibbs 
   1912  1.14     gibbs clear:
   1913  1.14     gibbs 	/*
   1914  1.14     gibbs 	 * Clear the upper byte that holds SEQINT status
   1915  1.14     gibbs 	 * codes and clear the SEQINT bit.
   1916  1.14     gibbs 	 */
   1917  1.14     gibbs 	AHC_OUTB(ahc, CLRINT, CLRSEQINT);
   1918  1.14     gibbs 
   1919  1.14     gibbs 	/*
   1920  1.14     gibbs 	 *  The sequencer is paused immediately on
   1921  1.14     gibbs 	 *  a SEQINT, so we should restart it when
   1922  1.14     gibbs 	 *  we're done.
   1923  1.14     gibbs 	 */
   1924  1.14     gibbs 	unpause_sequencer(ahc, /*unpause_always*/TRUE);
   1925   1.1   mycroft }
   1926   1.1   mycroft 
   1927   1.1   mycroft /*
   1928   1.1   mycroft  * We have a scb which has been processed by the
   1929   1.1   mycroft  * adaptor, now we look to see how the operation
   1930   1.1   mycroft  * went.
   1931   1.1   mycroft  */
   1932   1.6   mycroft static void
   1933   1.1   mycroft ahc_done(ahc, scb)
   1934   1.6   mycroft 	struct ahc_data *ahc;
   1935   1.6   mycroft 	struct scb *scb;
   1936   1.1   mycroft {
   1937   1.1   mycroft 	struct scsi_xfer *xs = scb->xs;
   1938   1.6   mycroft 
   1939   1.6   mycroft 	SC_DEBUG(xs->sc_link, SDEV_DB2, ("ahc_done\n"));
   1940   1.1   mycroft 	/*
   1941   1.1   mycroft 	 * Put the results of the operation
   1942   1.1   mycroft 	 * into the xfer and call whoever started it
   1943   1.1   mycroft 	 */
   1944   1.6   mycroft #if defined(__NetBSD__)
   1945   1.6   mycroft 	if (xs->error != XS_NOERROR) {
   1946   1.6   mycroft 		/* Don't override the error value. */
   1947   1.6   mycroft 	} else if (scb->flags & SCB_ABORTED) {
   1948   1.6   mycroft 		xs->error = XS_DRIVER_STUFFUP;
   1949   1.6   mycroft 	} else
   1950   1.6   mycroft #endif
   1951   1.6   mycroft 	if(scb->flags & SCB_SENSE)
   1952   1.6   mycroft 		xs->error = XS_SENSE;
   1953   1.6   mycroft 	if(scb->flags & SCB_SENTORDEREDTAG)
   1954   1.6   mycroft 		ahc->in_timeout = FALSE;
   1955   1.6   mycroft #if defined(__FreeBSD__)
   1956   1.6   mycroft 	if ((xs->flags & SCSI_ERR_OK) && !(xs->error == XS_SENSE)) {
   1957   1.6   mycroft 		/* All went correctly  OR errors expected */
   1958   1.6   mycroft 		xs->error = XS_NOERROR;
   1959   1.1   mycroft 	}
   1960   1.6   mycroft #elif defined(__NetBSD__)
   1961   1.6   mycroft 	/*
   1962   1.6   mycroft 	 * Since NetBSD doesn't have error ignoring operation mode
   1963   1.6   mycroft 	 * (SCSI_ERR_OK in FreeBSD), we don't have to care this case.
   1964   1.6   mycroft 	 */
   1965   1.6   mycroft #endif
   1966   1.1   mycroft 	xs->flags |= ITSDONE;
   1967   1.1   mycroft #ifdef AHC_TAGENABLE
   1968   1.6   mycroft 	if(xs->cmd->opcode == INQUIRY && xs->error == XS_NOERROR)
   1969   1.6   mycroft 	{
   1970   1.1   mycroft 		struct scsi_inquiry_data *inq_data;
   1971   1.1   mycroft 		u_short mask = 0x01 << (xs->sc_link->target |
   1972   1.6   mycroft 				(scb->tcl & 0x08));
   1973   1.1   mycroft 		/*
   1974   1.1   mycroft 		 * Sneak a look at the results of the SCSI Inquiry
   1975   1.6   mycroft 		 * command and see if we can do Tagged queing.  This
   1976   1.1   mycroft 		 * should really be done by the higher level drivers.
   1977   1.1   mycroft 		 */
   1978   1.1   mycroft 		inq_data = (struct scsi_inquiry_data *)xs->data;
   1979   1.6   mycroft 		if((inq_data->flags & SID_CmdQue) && !(ahc->tagenable & mask))
   1980   1.6   mycroft 		{
   1981  1.16  christos 		        printf("%s: target %d Tagged Queuing Device\n",
   1982   1.6   mycroft 				ahc_name(ahc), xs->sc_link->target);
   1983   1.1   mycroft 			ahc->tagenable |= mask;
   1984   1.6   mycroft 			if(ahc->maxhscbs >= 16 || (ahc->flags & AHC_PAGESCBS)) {
   1985   1.6   mycroft 				/* Default to 8 tags */
   1986   1.6   mycroft 				xs->sc_link->opennings += 6;
   1987   1.6   mycroft 			}
   1988   1.6   mycroft 			else
   1989   1.6   mycroft 			{
   1990   1.6   mycroft 				/*
   1991   1.6   mycroft 				 * Default to 4 tags on whimpy
   1992   1.6   mycroft 				 * cards that don't have much SCB
   1993   1.6   mycroft 				 * space and can't page.  This prevents
   1994   1.6   mycroft 				 * a single device from hogging all
   1995   1.6   mycroft 				 * slots.  We should really have a better
   1996   1.6   mycroft 				 * way of providing fairness.
   1997   1.6   mycroft 				 */
   1998   1.6   mycroft 				xs->sc_link->opennings += 2;
   1999   1.6   mycroft 			}
   2000   1.1   mycroft 		}
   2001   1.1   mycroft 	}
   2002   1.1   mycroft #endif
   2003   1.1   mycroft 	ahc_free_scb(ahc, scb, xs->flags);
   2004   1.1   mycroft 	scsi_done(xs);
   2005  1.18   thorpej 
   2006  1.18   thorpej #if defined(__NetBSD__)			/* XXX */
   2007  1.18   thorpej 	/*
   2008  1.18   thorpej 	 * If there are entries in the software queue, try to
   2009  1.18   thorpej 	 * run the first one.  We should be more or less guaranteed
   2010  1.18   thorpej 	 * to succeed, since we just freed an SCB.
   2011  1.18   thorpej 	 *
   2012  1.18   thorpej 	 * NOTE: ahc_scsi_cmd() relies on our calling it with
   2013  1.18   thorpej 	 * the first entry in the queue.
   2014  1.18   thorpej 	 */
   2015  1.18   thorpej 	if (ahc->sc_xxxq.lh_first != NULL)
   2016  1.18   thorpej 		(void) ahc_scsi_cmd(ahc->sc_xxxq.lh_first);
   2017  1.18   thorpej #endif /* __NetBSD__ */
   2018   1.1   mycroft }
   2019   1.1   mycroft 
   2020   1.1   mycroft /*
   2021   1.1   mycroft  * Start the board, ready for normal operation
   2022   1.1   mycroft  */
   2023   1.1   mycroft int
   2024   1.1   mycroft ahc_init(ahc)
   2025   1.6   mycroft 	struct  ahc_data *ahc;
   2026   1.1   mycroft {
   2027  1.14     gibbs 	u_int8_t  scsi_conf, sblkctl, i;
   2028  1.14     gibbs 	u_int16_t ultraenable = 0;
   2029  1.14     gibbs 	int	  max_targ = 15;
   2030   1.1   mycroft 	/*
   2031   1.6   mycroft 	 * Assume we have a board at this stage and it has been reset.
   2032   1.1   mycroft 	 */
   2033   1.1   mycroft 
   2034   1.6   mycroft 	/* Handle the SCBPAGING option */
   2035   1.6   mycroft #ifndef AHC_SCBPAGING_ENABLE
   2036   1.6   mycroft 	ahc->flags &= ~AHC_PAGESCBS;
   2037   1.6   mycroft #endif
   2038   1.6   mycroft 
   2039   1.6   mycroft 	/* Determine channel configuration and who we are on the scsi bus. */
   2040   1.6   mycroft 	switch ( (sblkctl = AHC_INB(ahc, SBLKCTL) & 0x0a) ) {
   2041   1.6   mycroft 	    case 0:
   2042   1.6   mycroft 		ahc->our_id = (AHC_INB(ahc, SCSICONF) & HSCSIID);
   2043   1.6   mycroft 		ahc->flags &= ~AHC_CHANNEL_B_PRIMARY;
   2044   1.6   mycroft 		if(ahc->type == AHC_394)
   2045  1.16  christos 			printf("Channel %c, SCSI Id=%d, ",
   2046   1.6   mycroft 				ahc->flags & AHC_CHNLB ? 'B' : 'A',
   2047   1.6   mycroft 				ahc->our_id);
   2048   1.6   mycroft 		else
   2049  1.16  christos 			printf("Single Channel, SCSI Id=%d, ", ahc->our_id);
   2050   1.6   mycroft 		AHC_OUTB(ahc, FLAGS, SINGLE_BUS | (ahc->flags & AHC_PAGESCBS));
   2051   1.1   mycroft 		break;
   2052   1.6   mycroft 	    case 2:
   2053   1.6   mycroft 		ahc->our_id = (AHC_INB(ahc, SCSICONF + 1) & HWSCSIID);
   2054   1.6   mycroft 		ahc->flags &= ~AHC_CHANNEL_B_PRIMARY;
   2055   1.6   mycroft 		if(ahc->type == AHC_394)
   2056  1.16  christos 			printf("Wide Channel %c, SCSI Id=%d, ",
   2057   1.6   mycroft 				ahc->flags & AHC_CHNLB ? 'B' : 'A',
   2058   1.6   mycroft 				ahc->our_id);
   2059   1.1   mycroft 		else
   2060  1.16  christos 			printf("Wide Channel, SCSI Id=%d, ", ahc->our_id);
   2061   1.1   mycroft 		ahc->type |= AHC_WIDE;
   2062   1.6   mycroft 		AHC_OUTB(ahc, FLAGS, WIDE_BUS | (ahc->flags & AHC_PAGESCBS));
   2063   1.1   mycroft 		break;
   2064   1.6   mycroft 	    case 8:
   2065   1.6   mycroft 		ahc->our_id = (AHC_INB(ahc, SCSICONF) & HSCSIID);
   2066   1.6   mycroft 		ahc->our_id_b = (AHC_INB(ahc, SCSICONF + 1) & HSCSIID);
   2067  1.16  christos 		printf("Twin Channel, A SCSI Id=%d, B SCSI Id=%d, ",
   2068   1.6   mycroft 			ahc->our_id, ahc->our_id_b);
   2069   1.1   mycroft 		ahc->type |= AHC_TWIN;
   2070   1.6   mycroft 		AHC_OUTB(ahc, FLAGS, TWIN_BUS | (ahc->flags & AHC_PAGESCBS));
   2071   1.1   mycroft 		break;
   2072   1.6   mycroft 	    default:
   2073  1.16  christos 		printf(" Unsupported adapter type.  Ignoring\n");
   2074   1.1   mycroft 		return(-1);
   2075   1.1   mycroft 	}
   2076   1.1   mycroft 
   2077   1.6   mycroft 	/* Determine the number of SCBs */
   2078   1.1   mycroft 
   2079   1.6   mycroft 	{
   2080   1.6   mycroft 		AHC_OUTB(ahc, SCBPTR, 0);
   2081   1.6   mycroft 		AHC_OUTB(ahc, SCB_CONTROL, 0);
   2082   1.6   mycroft 		for(i = 1; i < AHC_SCB_MAX; i++) {
   2083   1.6   mycroft 			AHC_OUTB(ahc, SCBPTR, i);
   2084   1.6   mycroft 			AHC_OUTB(ahc, SCB_CONTROL, i);
   2085   1.6   mycroft 			if(AHC_INB(ahc, SCB_CONTROL) != i)
   2086   1.6   mycroft 				break;
   2087   1.6   mycroft 			AHC_OUTB(ahc, SCBPTR, 0);
   2088   1.6   mycroft 			if(AHC_INB(ahc, SCB_CONTROL) != 0)
   2089   1.6   mycroft 				break;
   2090   1.6   mycroft 			/* Clear the control byte. */
   2091   1.6   mycroft 			AHC_OUTB(ahc, SCBPTR, i);
   2092   1.6   mycroft 			AHC_OUTB(ahc, SCB_CONTROL, 0);
   2093   1.1   mycroft 
   2094   1.6   mycroft 			ahc->qcntmask |= i;     /* Update the count mask. */
   2095   1.1   mycroft 		}
   2096   1.6   mycroft 
   2097   1.6   mycroft 		/* Ensure we clear the 0 SCB's control byte. */
   2098   1.6   mycroft 		AHC_OUTB(ahc, SCBPTR, 0);
   2099   1.6   mycroft 		AHC_OUTB(ahc, SCB_CONTROL, 0);
   2100   1.6   mycroft 
   2101   1.6   mycroft 		ahc->qcntmask |= i;
   2102   1.6   mycroft 		ahc->maxhscbs = i;
   2103   1.6   mycroft 	}
   2104   1.6   mycroft 
   2105   1.6   mycroft 	if((ahc->maxhscbs < AHC_SCB_MAX) && (ahc->flags & AHC_PAGESCBS))
   2106   1.6   mycroft 		ahc->maxscbs = AHC_SCB_MAX;
   2107   1.6   mycroft 	else {
   2108   1.6   mycroft 		ahc->maxscbs = ahc->maxhscbs;
   2109   1.6   mycroft 		ahc->flags &= ~AHC_PAGESCBS;
   2110   1.1   mycroft 	}
   2111   1.6   mycroft 
   2112  1.16  christos 	printf("%d SCBs\n", ahc->maxhscbs);
   2113   1.6   mycroft 
   2114   1.6   mycroft #ifdef AHC_DEBUG
   2115   1.6   mycroft 	if(ahc_debug & AHC_SHOWMISC) {
   2116   1.6   mycroft 		struct scb	test;
   2117  1.16  christos 		printf("%s: hardware scb %ld bytes; kernel scb; "
   2118   1.6   mycroft 		       "ahc_dma %d bytes\n",
   2119   1.6   mycroft 			ahc_name(ahc),
   2120   1.6   mycroft 		        (u_long)&(test.next) - (u_long)(&test),
   2121   1.6   mycroft 			sizeof(test),
   2122   1.6   mycroft 			sizeof(struct ahc_dma_seg));
   2123   1.6   mycroft 	}
   2124   1.6   mycroft #endif /* AHC_DEBUG */
   2125   1.6   mycroft 
   2126   1.6   mycroft 	/* Set the SCSI Id, SXFRCTL0, SXFRCTL1, and SIMODE1, for both channels*/
   2127   1.6   mycroft 	if(ahc->type & AHC_TWIN)
   2128   1.6   mycroft 	{
   2129   1.1   mycroft 		/*
   2130   1.1   mycroft 		 * The device is gated to channel B after a chip reset,
   2131   1.1   mycroft 		 * so set those values first
   2132   1.1   mycroft 		 */
   2133   1.6   mycroft 		AHC_OUTB(ahc, SCSIID, ahc->our_id_b);
   2134   1.6   mycroft 		scsi_conf = AHC_INB(ahc, SCSICONF + 1);
   2135   1.6   mycroft 		AHC_OUTB(ahc, SXFRCTL1, (scsi_conf & (ENSPCHK|STIMESEL))
   2136   1.6   mycroft 					| ENSTIMER|ACTNEGEN|STPWEN);
   2137   1.6   mycroft 		AHC_OUTB(ahc, SIMODE1, ENSELTIMO|ENSCSIRST|ENSCSIPERR);
   2138   1.6   mycroft 		if(ahc->type & AHC_ULTRA)
   2139   1.6   mycroft 			AHC_OUTB(ahc, SXFRCTL0, DFON|SPIOEN|ULTRAEN);
   2140   1.6   mycroft 		else
   2141   1.6   mycroft 			AHC_OUTB(ahc, SXFRCTL0, DFON|SPIOEN);
   2142   1.6   mycroft 
   2143   1.6   mycroft 		if(scsi_conf & RESET_SCSI) {
   2144   1.6   mycroft 			/* Reset the bus */
   2145  1.13   thorpej #if !defined(__NetBSD__) || (defined(__NetBSD__) && defined(DEBUG))
   2146   1.6   mycroft 			if(bootverbose)
   2147  1.21     mikel 				printf("%s: Resetting Channel B\n",
   2148   1.6   mycroft 				       ahc_name(ahc));
   2149  1.13   thorpej #endif
   2150   1.6   mycroft 			AHC_OUTB(ahc, SCSISEQ, SCSIRSTO);
   2151   1.6   mycroft 			DELAY(1000);
   2152   1.6   mycroft 			AHC_OUTB(ahc, SCSISEQ, 0);
   2153   1.6   mycroft 
   2154   1.6   mycroft 			/* Ensure we don't get a RSTI interrupt from this */
   2155   1.6   mycroft 			AHC_OUTB(ahc, CLRSINT1, CLRSCSIRSTI);
   2156   1.6   mycroft 			AHC_OUTB(ahc, CLRINT, CLRSCSIINT);
   2157   1.6   mycroft 		}
   2158   1.6   mycroft 
   2159   1.1   mycroft 		/* Select Channel A */
   2160   1.6   mycroft 		AHC_OUTB(ahc, SBLKCTL, 0);
   2161   1.6   mycroft 	}
   2162   1.6   mycroft 	AHC_OUTB(ahc, SCSIID, ahc->our_id);
   2163   1.6   mycroft 	scsi_conf = AHC_INB(ahc, SCSICONF);
   2164   1.6   mycroft 	AHC_OUTB(ahc, SXFRCTL1, (scsi_conf & (ENSPCHK|STIMESEL))
   2165   1.6   mycroft 				| ENSTIMER|ACTNEGEN|STPWEN);
   2166   1.6   mycroft 	AHC_OUTB(ahc, SIMODE1, ENSELTIMO|ENSCSIRST|ENSCSIPERR);
   2167   1.6   mycroft 	if(ahc->type & AHC_ULTRA)
   2168   1.6   mycroft 		AHC_OUTB(ahc, SXFRCTL0, DFON|SPIOEN|ULTRAEN);
   2169   1.6   mycroft 	else
   2170   1.6   mycroft 		AHC_OUTB(ahc, SXFRCTL0, DFON|SPIOEN);
   2171   1.6   mycroft 
   2172   1.6   mycroft 	if(scsi_conf & RESET_SCSI) {
   2173   1.6   mycroft 		/* Reset the bus */
   2174  1.13   thorpej #if !defined(__NetBSD__) || (defined(__NetBSD__) && defined(DEBUG))
   2175   1.6   mycroft 		if(bootverbose)
   2176  1.21     mikel 			printf("%s: Resetting Channel A\n", ahc_name(ahc));
   2177  1.13   thorpej #endif
   2178   1.6   mycroft 
   2179   1.6   mycroft 		AHC_OUTB(ahc, SCSISEQ, SCSIRSTO);
   2180   1.6   mycroft 		DELAY(1000);
   2181   1.6   mycroft 		AHC_OUTB(ahc, SCSISEQ, 0);
   2182   1.6   mycroft 
   2183   1.6   mycroft 		/* Ensure we don't get a RSTI interrupt from this */
   2184   1.6   mycroft 		AHC_OUTB(ahc, CLRSINT1, CLRSCSIRSTI);
   2185   1.6   mycroft 		AHC_OUTB(ahc, CLRINT, CLRSCSIINT);
   2186   1.1   mycroft 	}
   2187   1.6   mycroft 
   2188   1.1   mycroft 	/*
   2189   1.1   mycroft 	 * Look at the information that board initialization or
   2190   1.1   mycroft 	 * the board bios has left us.  In the lower four bits of each
   2191   1.1   mycroft 	 * target's scratch space any value other than 0 indicates
   2192  1.21     mikel 	 * that we should initiate synchronous transfers.  If it's zero,
   2193  1.21     mikel 	 * the user or the BIOS has decided to disable synchronous
   2194   1.6   mycroft 	 * negotiation to that target so we don't activate the needsdtr
   2195   1.1   mycroft 	 * flag.
   2196   1.1   mycroft 	 */
   2197   1.1   mycroft 	ahc->needsdtr_orig = 0;
   2198   1.1   mycroft 	ahc->needwdtr_orig = 0;
   2199   1.1   mycroft 
   2200   1.6   mycroft 	/* Grab the disconnection disable table and invert it for our needs */
   2201   1.6   mycroft 	if(ahc->flags & AHC_USEDEFAULTS) {
   2202  1.16  christos 		printf("%s: Host Adapter Bios disabled.  Using default SCSI "
   2203   1.6   mycroft 			"device parameters\n", ahc_name(ahc));
   2204   1.6   mycroft 		ahc->discenable = 0xff;
   2205   1.6   mycroft 	}
   2206   1.6   mycroft 	else
   2207   1.6   mycroft 		ahc->discenable = ~((AHC_INB(ahc, DISC_DSB + 1) << 8)
   2208   1.6   mycroft 				   | AHC_INB(ahc, DISC_DSB));
   2209   1.6   mycroft 
   2210   1.6   mycroft 	if(!(ahc->type & (AHC_WIDE|AHC_TWIN)))
   2211   1.6   mycroft 		max_targ = 7;
   2212   1.6   mycroft 
   2213   1.6   mycroft 	for(i = 0; i <= max_targ; i++){
   2214   1.6   mycroft 		u_char target_settings;
   2215   1.6   mycroft 		if (ahc->flags & AHC_USEDEFAULTS) {
   2216   1.6   mycroft 			target_settings = 0; /* 10MHz */
   2217   1.1   mycroft 			ahc->needsdtr_orig |= (0x01 << i);
   2218   1.6   mycroft 			ahc->needwdtr_orig |= (0x01 << i);
   2219   1.1   mycroft 		}
   2220   1.6   mycroft 		else {
   2221   1.6   mycroft 			/* Take the settings leftover in scratch RAM. */
   2222   1.6   mycroft 			target_settings = AHC_INB(ahc, TARG_SCRATCH + i);
   2223   1.6   mycroft 
   2224   1.6   mycroft 			if(target_settings & 0x0f){
   2225   1.6   mycroft 				ahc->needsdtr_orig |= (0x01 << i);
   2226  1.21     mikel 				/*Default to asynchronous transfers(0 offset)*/
   2227   1.6   mycroft 				target_settings &= 0xf0;
   2228   1.6   mycroft 			}
   2229   1.6   mycroft 			if(target_settings & 0x80){
   2230   1.6   mycroft 				ahc->needwdtr_orig |= (0x01 << i);
   2231   1.6   mycroft 				/*
   2232   1.6   mycroft 				 * We'll set the Wide flag when we
   2233   1.6   mycroft 				 * are successful with Wide negotiation.
   2234   1.6   mycroft 				 * Turn it off for now so we aren't
   2235   1.6   mycroft 				 * confused.
   2236   1.6   mycroft 				 */
   2237   1.6   mycroft 				target_settings &= 0x7f;
   2238   1.6   mycroft 			}
   2239   1.9  explorer 			if(ahc->type & AHC_ULTRA) {
   2240   1.9  explorer 				/*
   2241   1.9  explorer 				 * Enable Ultra for any target that
   2242   1.9  explorer 				 * has a valid ultra syncrate setting.
   2243   1.9  explorer 				 */
   2244   1.9  explorer 				u_char rate = target_settings & 0x70;
   2245   1.9  explorer 				if(rate == 0x00 || rate == 0x10 ||
   2246   1.9  explorer 				   rate == 0x20 || rate == 0x40) {
   2247   1.9  explorer 					if(rate == 0x40) {
   2248   1.9  explorer 						/* Treat 10MHz specially */
   2249   1.9  explorer 						target_settings &= ~0x70;
   2250   1.9  explorer 					}
   2251   1.9  explorer 					else
   2252   1.9  explorer 						ultraenable |= (0x01 << i);
   2253   1.9  explorer 				}
   2254   1.9  explorer 			}
   2255   1.1   mycroft 		}
   2256   1.6   mycroft 		AHC_OUTB(ahc, TARG_SCRATCH+i,target_settings);
   2257   1.1   mycroft 	}
   2258   1.1   mycroft 	/*
   2259   1.1   mycroft 	 * If we are not a WIDE device, forget WDTR.  This
   2260   1.1   mycroft 	 * makes the driver work on some cards that don't
   2261   1.1   mycroft 	 * leave these fields cleared when the BIOS is not
   2262   1.1   mycroft 	 * installed.
   2263   1.1   mycroft 	 */
   2264   1.6   mycroft 	if(!(ahc->type & AHC_WIDE))
   2265   1.1   mycroft 		ahc->needwdtr_orig = 0;
   2266   1.1   mycroft 	ahc->needsdtr = ahc->needsdtr_orig;
   2267   1.1   mycroft 	ahc->needwdtr = ahc->needwdtr_orig;
   2268   1.1   mycroft 	ahc->sdtrpending = 0;
   2269   1.1   mycroft 	ahc->wdtrpending = 0;
   2270   1.1   mycroft 	ahc->tagenable = 0;
   2271   1.6   mycroft 	ahc->orderedtag = 0;
   2272   1.6   mycroft 
   2273   1.9  explorer 	AHC_OUTB(ahc, ULTRA_ENB, ultraenable & 0xff);
   2274   1.9  explorer 	AHC_OUTB(ahc, ULTRA_ENB + 1, (ultraenable >> 8) & 0xff);
   2275   1.9  explorer 
   2276   1.6   mycroft #ifdef AHC_DEBUG
   2277   1.6   mycroft 	/* How did we do? */
   2278   1.6   mycroft 	if(ahc_debug & AHC_SHOWMISC)
   2279  1.16  christos 		printf("NEEDSDTR == 0x%x\nNEEDWDTR == 0x%x\n"
   2280   1.6   mycroft 			"DISCENABLE == 0x%x\n", ahc->needsdtr,
   2281   1.6   mycroft 			ahc->needwdtr, ahc->discenable);
   2282   1.6   mycroft #endif
   2283   1.1   mycroft 	/*
   2284  1.21     mikel 	 * Set the number of available SCBs
   2285   1.1   mycroft 	 */
   2286   1.6   mycroft 	AHC_OUTB(ahc, SCBCOUNT, ahc->maxhscbs);
   2287   1.1   mycroft 
   2288   1.6   mycroft 	/*
   2289   1.6   mycroft 	 * 2's compliment of maximum tag value
   2290   1.6   mycroft 	 */
   2291   1.6   mycroft 	i = ahc->maxscbs;
   2292   1.6   mycroft 	AHC_OUTB(ahc, COMP_SCBCOUNT, -i & 0xff);
   2293   1.1   mycroft 
   2294   1.1   mycroft 	/*
   2295   1.6   mycroft 	 * QCount mask to deal with broken aic7850s that
   2296  1.21     mikel 	 * sporadically get garbage in the upper bits of
   2297   1.6   mycroft 	 * their QCount registers.
   2298   1.1   mycroft 	 */
   2299   1.6   mycroft 	AHC_OUTB(ahc, QCNTMASK, ahc->qcntmask);
   2300   1.1   mycroft 
   2301   1.1   mycroft 	/* We don't have any busy targets right now */
   2302   1.6   mycroft 	AHC_OUTB(ahc, ACTIVE_A, 0);
   2303   1.6   mycroft 	AHC_OUTB(ahc, ACTIVE_B, 0);
   2304   1.6   mycroft 
   2305   1.1   mycroft 	/* We don't have any waiting selections */
   2306   1.6   mycroft 	AHC_OUTB(ahc, WAITING_SCBH, SCB_LIST_NULL);
   2307   1.6   mycroft 
   2308   1.6   mycroft 	/* Our disconnection list is empty too */
   2309   1.6   mycroft 	AHC_OUTB(ahc, DISCONNECTED_SCBH, SCB_LIST_NULL);
   2310   1.6   mycroft 
   2311   1.6   mycroft 	/* Message out buffer starts empty */
   2312   1.6   mycroft 	AHC_OUTB(ahc, MSG_LEN, 0x00);
   2313   1.6   mycroft 
   2314   1.6   mycroft 	/*
   2315   1.6   mycroft 	 * Load the Sequencer program and Enable the adapter
   2316   1.6   mycroft 	 * in "fast" mode.
   2317   1.6   mycroft          */
   2318  1.13   thorpej #if !defined(__NetBSD__) || (defined(__NetBSD__) && defined(DEBUG))
   2319   1.6   mycroft 	if(bootverbose)
   2320  1.16  christos 		printf("%s: Downloading Sequencer Program...",
   2321   1.6   mycroft 		       ahc_name(ahc));
   2322  1.13   thorpej #endif
   2323   1.6   mycroft 
   2324   1.6   mycroft 	ahc_loadseq(ahc);
   2325   1.6   mycroft 
   2326  1.13   thorpej #if !defined(__NetBSD__) || (defined(__NetBSD__) && defined(DEBUG))
   2327   1.6   mycroft 	if(bootverbose)
   2328  1.16  christos 		printf("Done\n");
   2329  1.13   thorpej #endif
   2330   1.6   mycroft 
   2331   1.6   mycroft 	AHC_OUTB(ahc, SEQCTL, FASTMODE);
   2332   1.6   mycroft 
   2333  1.14     gibbs 	unpause_sequencer(ahc, /*unpause_always*/TRUE);
   2334   1.6   mycroft 
   2335   1.1   mycroft 	/*
   2336   1.6   mycroft 	 * Note that we are going and return (to probe)
   2337   1.1   mycroft 	 */
   2338   1.6   mycroft 	ahc->flags |= AHC_INIT;
   2339   1.1   mycroft 	return (0);
   2340   1.1   mycroft }
   2341   1.1   mycroft 
   2342   1.6   mycroft static void
   2343   1.1   mycroft ahcminphys(bp)
   2344   1.6   mycroft         struct buf *bp;
   2345   1.1   mycroft {
   2346   1.6   mycroft /*
   2347   1.6   mycroft  * Even though the card can transfer up to 16megs per command
   2348   1.6   mycroft  * we are limited by the number of segments in the dma segment
   2349   1.6   mycroft  * list that we can hold.  The worst case is that all pages are
   2350   1.6   mycroft  * discontinuous physically, hense the "page per segment" limit
   2351   1.6   mycroft  * enforced here.
   2352   1.6   mycroft  */
   2353   1.9  explorer         if (bp->b_bcount > ((AHC_NSEG - 1) * PAGE_SIZE)) {
   2354   1.9  explorer                 bp->b_bcount = ((AHC_NSEG - 1) * PAGE_SIZE);
   2355   1.6   mycroft         }
   2356   1.6   mycroft #if defined(__NetBSD__)
   2357   1.1   mycroft 	minphys(bp);
   2358   1.6   mycroft #endif
   2359   1.1   mycroft }
   2360   1.1   mycroft 
   2361  1.18   thorpej #if defined(__NetBSD__)			/* XXX */
   2362  1.18   thorpej /*
   2363  1.18   thorpej  * Insert a scsi_xfer into the software queue.  We overload xs->free_list
   2364  1.18   thorpej  * to to ensure we don't run into a queue resource shortage, and keep
   2365  1.18   thorpej  * a pointer to the last entry around to make insertion O(C).
   2366  1.18   thorpej  */
   2367  1.18   thorpej static void
   2368  1.18   thorpej ahc_xxx_enqueue(ahc, xs, infront)
   2369  1.18   thorpej 	struct ahc_data *ahc;
   2370  1.18   thorpej 	struct scsi_xfer *xs;
   2371  1.18   thorpej 	int infront;
   2372  1.18   thorpej {
   2373  1.18   thorpej 
   2374  1.18   thorpej 	if (infront || ahc->sc_xxxq.lh_first == NULL) {
   2375  1.18   thorpej 		if (ahc->sc_xxxq.lh_first == NULL)
   2376  1.18   thorpej 			ahc->sc_xxxqlast = xs;
   2377  1.18   thorpej 		LIST_INSERT_HEAD(&ahc->sc_xxxq, xs, free_list);
   2378  1.18   thorpej 		return;
   2379  1.18   thorpej 	}
   2380  1.18   thorpej 
   2381  1.18   thorpej 	LIST_INSERT_AFTER(ahc->sc_xxxqlast, xs, free_list);
   2382  1.18   thorpej 	ahc->sc_xxxqlast = xs;
   2383  1.18   thorpej }
   2384  1.18   thorpej 
   2385  1.18   thorpej /*
   2386  1.18   thorpej  * Pull a scsi_xfer off the front of the software queue.  When we
   2387  1.18   thorpej  * pull the last one off, we need to clear the pointer to the last
   2388  1.18   thorpej  * entry.
   2389  1.18   thorpej  */
   2390  1.18   thorpej static struct scsi_xfer *
   2391  1.18   thorpej ahc_xxx_dequeue(ahc)
   2392  1.18   thorpej 	struct ahc_data *ahc;
   2393  1.18   thorpej {
   2394  1.18   thorpej 	struct scsi_xfer *xs;
   2395  1.18   thorpej 
   2396  1.18   thorpej 	xs = ahc->sc_xxxq.lh_first;
   2397  1.18   thorpej 	LIST_REMOVE(xs, free_list);
   2398  1.18   thorpej 
   2399  1.18   thorpej 	if (ahc->sc_xxxq.lh_first == NULL)
   2400  1.18   thorpej 		ahc->sc_xxxqlast = NULL;
   2401  1.18   thorpej 
   2402  1.18   thorpej 	return (xs);
   2403  1.18   thorpej }
   2404  1.18   thorpej #endif
   2405  1.18   thorpej 
   2406   1.1   mycroft /*
   2407   1.1   mycroft  * start a scsi operation given the command and
   2408   1.1   mycroft  * the data address, target, and lun all of which
   2409   1.1   mycroft  * are stored in the scsi_xfer struct
   2410   1.1   mycroft  */
   2411   1.6   mycroft static int32_t
   2412   1.1   mycroft ahc_scsi_cmd(xs)
   2413   1.6   mycroft         struct scsi_xfer *xs;
   2414   1.1   mycroft {
   2415   1.9  explorer 	struct	scb *scb;
   2416   1.9  explorer 	struct	ahc_dma_seg *sg;
   2417   1.9  explorer 	int	seg;		/* scatter gather seg being worked on */
   2418  1.22       cgd 	unsigned long thiskv, nextkv;
   2419   1.9  explorer 	physaddr thisphys, nextphys;
   2420   1.9  explorer 	int	bytes_this_seg, bytes_this_page, datalen, flags;
   2421   1.9  explorer 	struct	ahc_data *ahc;
   2422   1.6   mycroft 	u_short	mask;
   2423   1.9  explorer 	int	s;
   2424  1.18   thorpej #if defined(__NetBSD__)			/* XXX */
   2425  1.18   thorpej 	int	dontqueue = 0, fromqueue = 0;
   2426  1.18   thorpej #endif
   2427   1.6   mycroft 
   2428   1.6   mycroft 	ahc = (struct ahc_data *)xs->sc_link->adapter_softc;
   2429   1.9  explorer 	mask = (0x01 << (xs->sc_link->target
   2430   1.6   mycroft #if defined(__FreeBSD__)
   2431   1.6   mycroft 				| ((u_long)xs->sc_link->fordriver & 0x08)));
   2432   1.6   mycroft #elif defined(__NetBSD__)
   2433   1.6   mycroft 			| (IS_SCSIBUS_B(ahc, xs->sc_link) ? SELBUSB : 0) ));
   2434   1.6   mycroft #endif
   2435  1.18   thorpej 
   2436   1.9  explorer 	SC_DEBUG(xs->sc_link, SDEV_DB2, ("ahc_scsi_cmd\n"));
   2437  1.18   thorpej 
   2438  1.18   thorpej #if defined(__NetBSD__)			/* XXX */
   2439  1.18   thorpej 	/* must protect the queue */
   2440  1.18   thorpej 	s = splbio();
   2441  1.18   thorpej 
   2442  1.18   thorpej 	/*
   2443  1.18   thorpej 	 * If we're running the queue from ahc_done(), we're called
   2444  1.18   thorpej 	 * with the first entry in the queue as our argument.
   2445  1.18   thorpej 	 * Pull it off; if we can't run the job, it will get placed
   2446  1.18   thorpej 	 * back at the front.
   2447  1.18   thorpej 	 */
   2448  1.18   thorpej 	if (xs == ahc->sc_xxxq.lh_first) {
   2449  1.18   thorpej 		xs = ahc_xxx_dequeue(ahc);
   2450  1.18   thorpej 		fromqueue = 1;
   2451  1.18   thorpej 		goto get_scb;
   2452  1.18   thorpej 	}
   2453  1.18   thorpej 
   2454  1.21     mikel 	/* determine safety of software queueing */
   2455  1.18   thorpej 	dontqueue = xs->flags & SCSI_POLL;
   2456  1.18   thorpej 
   2457  1.18   thorpej 	/*
   2458  1.18   thorpej 	 * Handle situations where there's already entries in the
   2459  1.18   thorpej 	 * queue.
   2460  1.18   thorpej 	 */
   2461  1.18   thorpej 	if (ahc->sc_xxxq.lh_first != NULL) {
   2462  1.18   thorpej 		/*
   2463  1.18   thorpej 		 * If we can't queue, we have to abort, since
   2464  1.18   thorpej 		 * we have to preserve order.
   2465  1.18   thorpej 		 */
   2466  1.18   thorpej 		if (dontqueue) {
   2467  1.18   thorpej 			splx(s);
   2468  1.18   thorpej 			xs->error = XS_DRIVER_STUFFUP;
   2469  1.18   thorpej 			return (TRY_AGAIN_LATER);
   2470  1.18   thorpej 		}
   2471  1.18   thorpej 
   2472  1.18   thorpej 		/*
   2473  1.18   thorpej 		 * Swap with the first queue entry.
   2474  1.18   thorpej 		 */
   2475  1.18   thorpej 		ahc_xxx_enqueue(ahc, xs, 0);
   2476  1.18   thorpej 		xs = ahc_xxx_dequeue(ahc);
   2477  1.18   thorpej 		fromqueue = 1;
   2478  1.18   thorpej 	}
   2479  1.18   thorpej 
   2480  1.18   thorpej  get_scb:
   2481  1.18   thorpej #endif /* __NetBSD__ */
   2482   1.9  explorer 	/*
   2483   1.9  explorer 	 * get an scb to use. If the transfer
   2484   1.9  explorer 	 * is from a buf (possibly from interrupt time)
   2485   1.9  explorer 	 * then we can't allow it to sleep
   2486   1.9  explorer 	 */
   2487   1.9  explorer 	flags = xs->flags;
   2488   1.9  explorer 	if (flags & ITSDONE) {
   2489  1.16  christos 		printf("%s: Already done?", ahc_name(ahc));
   2490   1.9  explorer 		xs->flags &= ~ITSDONE;
   2491   1.9  explorer 	}
   2492   1.9  explorer 	if (!(flags & INUSE)) {
   2493  1.16  christos 		printf("%s: Not in use?", ahc_name(ahc));
   2494   1.9  explorer 		xs->flags |= INUSE;
   2495   1.9  explorer 	}
   2496   1.9  explorer 	if (!(scb = ahc_get_scb(ahc, flags))) {
   2497  1.18   thorpej #if defined(__NetBSD__)			/* XXX */
   2498  1.18   thorpej 		/*
   2499  1.18   thorpej 		 * If we can't queue, we lose.
   2500  1.18   thorpej 		 */
   2501  1.18   thorpej 		if (dontqueue) {
   2502  1.18   thorpej 			splx(s);
   2503  1.18   thorpej 			xs->error = XS_DRIVER_STUFFUP;
   2504  1.18   thorpej 			return (TRY_AGAIN_LATER);
   2505  1.18   thorpej 		}
   2506  1.18   thorpej 
   2507  1.18   thorpej 		/*
   2508  1.18   thorpej 		 * If we were pulled off the queue, put ourselves
   2509  1.18   thorpej 		 * back in the front, otherwise tack ourselves onto
   2510  1.18   thorpej 		 * the end.
   2511  1.18   thorpej 		 */
   2512  1.18   thorpej 		ahc_xxx_enqueue(ahc, xs, fromqueue);
   2513  1.18   thorpej 
   2514  1.18   thorpej 		splx(s);
   2515  1.18   thorpej 		return (SUCCESSFULLY_QUEUED);
   2516  1.18   thorpej #else
   2517   1.9  explorer 		xs->error = XS_DRIVER_STUFFUP;
   2518   1.9  explorer 		return (TRY_AGAIN_LATER);
   2519  1.18   thorpej #endif /* __NetBSD__ */
   2520   1.9  explorer 	}
   2521  1.18   thorpej 
   2522  1.18   thorpej #if defined(__NetBSD__)
   2523  1.18   thorpej 	/* we're done playing with the queue */
   2524  1.18   thorpej 	splx(s);
   2525  1.18   thorpej #endif
   2526  1.18   thorpej 
   2527   1.9  explorer 	SC_DEBUG(xs->sc_link, SDEV_DB3, ("start scb(%p)\n", scb));
   2528   1.9  explorer 	scb->xs = xs;
   2529  1.14     gibbs 	if (flags & SCSI_RESET) {
   2530   1.6   mycroft 		scb->flags |= SCB_DEVICE_RESET|SCB_IMMED;
   2531  1.14     gibbs 		scb->control |= MK_MESSAGE;
   2532  1.14     gibbs 	}
   2533   1.9  explorer 	/*
   2534   1.9  explorer 	 * Put all the arguments for the xfer in the scb
   2535   1.9  explorer 	 */
   2536   1.6   mycroft 
   2537   1.6   mycroft 	if(ahc->tagenable & mask) {
   2538   1.6   mycroft 		scb->control |= TAG_ENB;
   2539   1.6   mycroft 		if(ahc->orderedtag & mask) {
   2540  1.16  christos 			printf("Ordered Tag sent\n");
   2541   1.6   mycroft 			scb->control |= 0x02;
   2542   1.6   mycroft 			ahc->orderedtag &= ~mask;
   2543   1.6   mycroft 		}
   2544   1.6   mycroft 	}
   2545   1.6   mycroft 	if(ahc->discenable & mask)
   2546   1.6   mycroft 		scb->control |= DISCENB;
   2547   1.6   mycroft 	if((ahc->needwdtr & mask) && !(ahc->wdtrpending & mask))
   2548   1.6   mycroft 	{
   2549  1.14     gibbs 		scb->control |= MK_MESSAGE;
   2550  1.14     gibbs 		scb->flags |= SCB_MSGOUT_WDTR;
   2551   1.1   mycroft 		ahc->wdtrpending |= mask;
   2552   1.1   mycroft 	}
   2553   1.6   mycroft 	else if((ahc->needsdtr & mask) && !(ahc->sdtrpending & mask))
   2554   1.6   mycroft 	{
   2555  1.14     gibbs 		scb->control |= MK_MESSAGE;
   2556  1.14     gibbs 		scb->flags |= SCB_MSGOUT_SDTR;
   2557   1.1   mycroft 		ahc->sdtrpending |= mask;
   2558   1.1   mycroft 	}
   2559   1.6   mycroft 	scb->tcl = ((xs->sc_link->target << 4) & 0xF0) |
   2560   1.6   mycroft #if defined(__FreeBSD__)
   2561   1.6   mycroft 				  ((u_long)xs->sc_link->fordriver & 0x08) |
   2562   1.6   mycroft #elif defined(__NetBSD__)
   2563   1.6   mycroft 				  (IS_SCSIBUS_B(ahc,xs->sc_link)? SELBUSB : 0)|
   2564   1.6   mycroft #endif
   2565   1.6   mycroft 				  (xs->sc_link->lun & 0x07);
   2566   1.1   mycroft 	scb->cmdlen = xs->cmdlen;
   2567   1.6   mycroft 	scb->cmdpointer = KVTOPHYS(xs->cmd);
   2568   1.1   mycroft 	xs->resid = 0;
   2569   1.6   mycroft 	xs->status = 0;
   2570   1.6   mycroft 	if (xs->datalen) {      /* should use S/G only if not zero length */
   2571   1.6   mycroft 		scb->SG_list_pointer = KVTOPHYS(scb->ahc_dma);
   2572   1.1   mycroft 		sg = scb->ahc_dma;
   2573   1.1   mycroft 		seg = 0;
   2574   1.6   mycroft 		/*
   2575   1.6   mycroft 		 * Set up the scatter gather block
   2576   1.6   mycroft 		 */
   2577   1.6   mycroft 		SC_DEBUG(xs->sc_link, SDEV_DB4,
   2578   1.6   mycroft 			 ("%ld @%p:- ", xs->datalen, xs->data));
   2579   1.6   mycroft 		datalen = xs->datalen;
   2580  1.22       cgd 		thiskv = (unsigned long) xs->data;
   2581   1.6   mycroft 		thisphys = KVTOPHYS(thiskv);
   2582   1.6   mycroft 
   2583   1.6   mycroft 		while ((datalen) && (seg < AHC_NSEG)) {
   2584   1.6   mycroft 			bytes_this_seg = 0;
   2585   1.6   mycroft 
   2586   1.6   mycroft 			/* put in the base address */
   2587   1.6   mycroft 			sg->addr = thisphys;
   2588   1.6   mycroft 
   2589   1.6   mycroft 			SC_DEBUGN(xs->sc_link, SDEV_DB4, ("0x%lx", thisphys));
   2590   1.6   mycroft 
   2591   1.6   mycroft 			/* do it at least once */
   2592   1.6   mycroft 			nextphys = thisphys;
   2593   1.6   mycroft 			while ((datalen) && (thisphys == nextphys)) {
   2594   1.1   mycroft 				/*
   2595   1.6   mycroft 				 * This page is contiguous (physically)
   2596   1.6   mycroft 				 * with the the last, just extend the
   2597   1.6   mycroft 				 * length
   2598   1.1   mycroft 				 */
   2599   1.6   mycroft 				/* how far to the end of the page */
   2600   1.9  explorer 				nextphys = (thisphys & (~(PAGE_SIZE- 1)))
   2601   1.9  explorer 					   + PAGE_SIZE;
   2602   1.6   mycroft 				bytes_this_page = nextphys - thisphys;
   2603   1.6   mycroft 				/**** or the data ****/
   2604  1.22       cgd 				bytes_this_page = min(bytes_this_page, datalen);
   2605   1.6   mycroft 				bytes_this_seg += bytes_this_page;
   2606   1.6   mycroft 				datalen -= bytes_this_page;
   2607   1.6   mycroft 
   2608   1.6   mycroft 				/* get more ready for the next page */
   2609  1.22       cgd 				nextkv = thiskv;
   2610  1.22       cgd 				nextkv &= ~((unsigned long) PAGE_SIZE - 1);
   2611  1.22       cgd 				nextkv += PAGE_SIZE;
   2612   1.6   mycroft 				if (datalen)
   2613  1.22       cgd 					thisphys = KVTOPHYS(nextkv);
   2614  1.22       cgd 				thiskv = nextkv;
   2615   1.1   mycroft 			}
   2616   1.6   mycroft 			/*
   2617   1.6   mycroft 			 * next page isn't contiguous, finish the seg
   2618   1.6   mycroft 			 */
   2619   1.6   mycroft 			SC_DEBUGN(xs->sc_link, SDEV_DB4,
   2620   1.6   mycroft 					("(0x%x)", bytes_this_seg));
   2621   1.6   mycroft 			sg->len = bytes_this_seg;
   2622   1.6   mycroft 			sg++;
   2623   1.6   mycroft 			seg++;
   2624   1.1   mycroft 		}
   2625   1.1   mycroft 		scb->SG_segment_count = seg;
   2626   1.6   mycroft 
   2627   1.6   mycroft 		/* Copy the first SG into the data pointer area */
   2628   1.6   mycroft 		scb->data = scb->ahc_dma->addr;
   2629   1.6   mycroft 		scb->datalen = scb->ahc_dma->len;
   2630   1.6   mycroft 		SC_DEBUGN(xs->sc_link, SDEV_DB4, ("\n"));
   2631   1.6   mycroft 		if (datalen) {
   2632   1.6   mycroft 			/* there's still data, must have run out of segs! */
   2633  1.16  christos 			printf("%s: ahc_scsi_cmd: more than %d DMA segs\n",
   2634   1.6   mycroft 				ahc_name(ahc), AHC_NSEG);
   2635   1.1   mycroft 			xs->error = XS_DRIVER_STUFFUP;
   2636   1.1   mycroft 			ahc_free_scb(ahc, scb, flags);
   2637   1.1   mycroft 			return (COMPLETE);
   2638   1.1   mycroft 		}
   2639   1.6   mycroft #ifdef AHC_BROKEN_CACHE
   2640   1.6   mycroft 		if (ahc_broken_cache)
   2641   1.6   mycroft 			INVALIDATE_CACHE();
   2642   1.6   mycroft #endif
   2643   1.6   mycroft 	}
   2644   1.6   mycroft 	else {
   2645   1.6   mycroft 		/*
   2646   1.6   mycroft 		 * No data xfer, use non S/G values
   2647   1.6   mycroft 	 	 */
   2648   1.1   mycroft 		scb->SG_segment_count = 0;
   2649   1.6   mycroft 		scb->SG_list_pointer = 0;
   2650   1.6   mycroft 		scb->data = 0;
   2651   1.6   mycroft 		scb->datalen = 0;
   2652   1.1   mycroft 	}
   2653   1.1   mycroft 
   2654   1.6   mycroft #ifdef AHC_DEBUG
   2655   1.6   mycroft 	if((ahc_debug & AHC_SHOWSCBS) && (xs->sc_link->target == DEBUGTARG))
   2656   1.1   mycroft 		ahc_print_scb(scb);
   2657   1.1   mycroft #endif
   2658   1.1   mycroft 	s = splbio();
   2659   1.1   mycroft 
   2660   1.6   mycroft 	if( scb->position != SCB_LIST_NULL )
   2661   1.6   mycroft 	{
   2662   1.6   mycroft 		/* We already have a valid slot */
   2663   1.6   mycroft 		u_char curscb;
   2664   1.1   mycroft 
   2665  1.14     gibbs 		pause_sequencer(ahc);
   2666   1.6   mycroft 		curscb = AHC_INB(ahc, SCBPTR);
   2667   1.6   mycroft 		AHC_OUTB(ahc, SCBPTR, scb->position);
   2668   1.6   mycroft 		ahc_send_scb(ahc, scb);
   2669   1.6   mycroft 		AHC_OUTB(ahc, SCBPTR, curscb);
   2670   1.6   mycroft 		AHC_OUTB(ahc, QINFIFO, scb->position);
   2671  1.14     gibbs 		unpause_sequencer(ahc, /*unpause_always*/FALSE);
   2672   1.9  explorer 		scb->flags |= SCB_ACTIVE;
   2673   1.6   mycroft 		if (!(flags & SCSI_NOMASK)) {
   2674   1.6   mycroft 			timeout(ahc_timeout, (caddr_t)scb,
   2675   1.6   mycroft 				(xs->timeout * hz) / 1000);
   2676   1.6   mycroft 		}
   2677   1.6   mycroft 		SC_DEBUG(xs->sc_link, SDEV_DB3, ("cmd_sent\n"));
   2678   1.6   mycroft 	}
   2679   1.6   mycroft 	else {
   2680   1.9  explorer 		scb->flags |= SCB_WAITINGQ;
   2681   1.9  explorer 		STAILQ_INSERT_TAIL(&ahc->waiting_scbs, scb, links);
   2682   1.6   mycroft 		ahc_run_waiting_queues(ahc);
   2683   1.6   mycroft 	}
   2684   1.6   mycroft 	if (!(flags & SCSI_NOMASK)) {
   2685   1.1   mycroft 		splx(s);
   2686   1.1   mycroft 		return (SUCCESSFULLY_QUEUED);
   2687   1.1   mycroft 	}
   2688   1.1   mycroft 	/*
   2689   1.6   mycroft 	 * If we can't use interrupts, poll for completion
   2690   1.1   mycroft 	 */
   2691   1.6   mycroft 	SC_DEBUG(xs->sc_link, SDEV_DB3, ("cmd_poll\n"));
   2692   1.6   mycroft 	do {
   2693   1.6   mycroft 		if (ahc_poll(ahc, xs->timeout)) {
   2694   1.6   mycroft 			if (!(xs->flags & SCSI_SILENT))
   2695  1.16  christos 				printf("cmd fail\n");
   2696   1.1   mycroft 			ahc_timeout(scb);
   2697   1.6   mycroft 			break;
   2698   1.6   mycroft 		}
   2699   1.6   mycroft 	} while (!(xs->flags & ITSDONE));  /* a non command complete intr */
   2700   1.6   mycroft 	splx(s);
   2701   1.1   mycroft 	return (COMPLETE);
   2702   1.1   mycroft }
   2703   1.1   mycroft 
   2704   1.1   mycroft 
   2705   1.1   mycroft /*
   2706  1.21     mikel  * A scb (and hence an scb entry on the board) is put onto the
   2707   1.1   mycroft  * free list.
   2708   1.1   mycroft  */
   2709   1.6   mycroft static void
   2710   1.1   mycroft ahc_free_scb(ahc, scb, flags)
   2711   1.6   mycroft         struct	ahc_data *ahc;
   2712   1.6   mycroft         int     flags;
   2713   1.6   mycroft         struct  scb *scb;
   2714   1.1   mycroft {
   2715   1.6   mycroft 	struct scb *wscb;
   2716   1.6   mycroft 	unsigned int opri;
   2717   1.1   mycroft 
   2718   1.6   mycroft 	opri = splbio();
   2719   1.1   mycroft 
   2720   1.9  explorer 	/* Clean up for the next user */
   2721   1.1   mycroft 	scb->flags = SCB_FREE;
   2722   1.9  explorer 	scb->control = 0;
   2723   1.9  explorer 	scb->status = 0;
   2724   1.9  explorer 
   2725   1.6   mycroft 	if(scb->position == SCB_LIST_NULL) {
   2726   1.9  explorer 		STAILQ_INSERT_HEAD(&ahc->page_scbs, scb, links);
   2727   1.9  explorer 		if(!scb->links.stqe_next && !ahc->free_scbs.stqh_first)
   2728   1.6   mycroft 			/*
   2729  1.21     mikel 			 * If there were no SCBs available, wake anybody waiting
   2730   1.6   mycroft 			 * for one to come free.
   2731   1.6   mycroft 			 */
   2732   1.6   mycroft 			wakeup((caddr_t)&ahc->free_scbs);
   2733   1.6   mycroft 	}
   2734   1.6   mycroft 	/*
   2735   1.6   mycroft 	 * If there are any SCBS on the waiting queue,
   2736   1.6   mycroft 	 * assign the slot of this "freed" SCB to the first
   2737   1.6   mycroft 	 * one.  We'll run the waiting queues after all command
   2738   1.6   mycroft 	 * completes for a particular interrupt are completed
   2739   1.6   mycroft 	 * or when we start another command.
   2740   1.6   mycroft 	 */
   2741   1.9  explorer 	else if((wscb = ahc->waiting_scbs.stqh_first) != NULL) {
   2742   1.9  explorer 		STAILQ_REMOVE_HEAD(&ahc->waiting_scbs, links);
   2743   1.6   mycroft 		wscb->position = scb->position;
   2744  1.14     gibbs 		STAILQ_INSERT_TAIL(&ahc->assigned_scbs, wscb, links);
   2745   1.9  explorer 		wscb->flags ^= SCB_WAITINGQ|SCB_ASSIGNEDQ;
   2746   1.6   mycroft 
   2747   1.6   mycroft 		/*
   2748   1.6   mycroft 		 * The "freed" SCB will need to be assigned a slot
   2749   1.6   mycroft 		 * before being used, so put it in the page_scbs
   2750   1.6   mycroft 		 * queue.
   2751   1.6   mycroft 		 */
   2752   1.6   mycroft 		scb->position = SCB_LIST_NULL;
   2753   1.9  explorer 		STAILQ_INSERT_HEAD(&ahc->page_scbs, scb, links);
   2754   1.9  explorer 		if(!scb->links.stqe_next && !ahc->free_scbs.stqh_first)
   2755   1.6   mycroft 			/*
   2756  1.21     mikel 			 * If there were no SCBs available, wake anybody waiting
   2757   1.6   mycroft 			 * for one to come free.
   2758   1.6   mycroft 			 */
   2759   1.6   mycroft 			wakeup((caddr_t)&ahc->free_scbs);
   2760   1.6   mycroft 	}
   2761   1.6   mycroft 	else {
   2762   1.9  explorer 		STAILQ_INSERT_HEAD(&ahc->free_scbs, scb, links);
   2763   1.9  explorer 		if(!scb->links.stqe_next && !ahc->page_scbs.stqh_first)
   2764   1.6   mycroft 			/*
   2765  1.21     mikel 			 * If there were no SCBs available, wake anybody waiting
   2766   1.6   mycroft 			 * for one to come free.
   2767   1.6   mycroft 			 */
   2768   1.6   mycroft 			wakeup((caddr_t)&ahc->free_scbs);
   2769   1.6   mycroft 	}
   2770   1.9  explorer #ifdef AHC_DEBUG
   2771   1.9  explorer 	ahc->activescbs--;
   2772   1.9  explorer #endif
   2773   1.6   mycroft 	splx(opri);
   2774   1.1   mycroft }
   2775   1.1   mycroft 
   2776   1.1   mycroft /*
   2777   1.6   mycroft  * Get a free scb, either one already assigned to a hardware slot
   2778   1.6   mycroft  * on the adapter or one that will require an SCB to be paged out before
   2779   1.6   mycroft  * use. If there are none, see if we can allocate a new SCB.  Otherwise
   2780   1.6   mycroft  * either return an error or sleep.
   2781   1.1   mycroft  */
   2782   1.6   mycroft static struct scb *
   2783   1.1   mycroft ahc_get_scb(ahc, flags)
   2784   1.6   mycroft         struct	ahc_data *ahc;
   2785   1.6   mycroft         int	flags;
   2786   1.1   mycroft {
   2787   1.6   mycroft 	unsigned opri;
   2788   1.6   mycroft 	struct scb *scbp;
   2789   1.1   mycroft 
   2790   1.6   mycroft 	opri = splbio();
   2791   1.1   mycroft 	/*
   2792   1.1   mycroft 	 * If we can and have to, sleep waiting for one to come free
   2793   1.1   mycroft 	 * but only if we can't allocate a new one.
   2794   1.1   mycroft 	 */
   2795   1.6   mycroft 	while (1) {
   2796   1.9  explorer 		if((scbp = ahc->free_scbs.stqh_first)) {
   2797   1.9  explorer 			STAILQ_REMOVE_HEAD(&ahc->free_scbs, links);
   2798   1.6   mycroft 		}
   2799   1.9  explorer 		else if((scbp = ahc->page_scbs.stqh_first)) {
   2800   1.9  explorer 			STAILQ_REMOVE_HEAD(&ahc->page_scbs, links);
   2801   1.6   mycroft 		}
   2802   1.9  explorer 		else if(ahc->numscbs < ahc->maxscbs) {
   2803   1.6   mycroft 			scbp = (struct scb *) malloc(sizeof(struct scb),
   2804   1.6   mycroft 				M_TEMP, M_NOWAIT);
   2805   1.6   mycroft 			if (scbp) {
   2806   1.6   mycroft 				bzero(scbp, sizeof(struct scb));
   2807   1.6   mycroft 				scbp->tag = ahc->numscbs;
   2808   1.6   mycroft 				if( ahc->numscbs < ahc->maxhscbs )
   2809   1.6   mycroft 					scbp->position = ahc->numscbs;
   2810   1.6   mycroft 				else
   2811   1.6   mycroft 					scbp->position = SCB_LIST_NULL;
   2812   1.6   mycroft 				ahc->numscbs++;
   2813   1.6   mycroft 				/*
   2814   1.6   mycroft 				 * Place in the scbarray
   2815   1.6   mycroft 				 * Never is removed.
   2816   1.6   mycroft 				 */
   2817   1.6   mycroft 				ahc->scbarray[scbp->tag] = scbp;
   2818   1.6   mycroft 			}
   2819   1.6   mycroft 			else {
   2820  1.16  christos 				printf("%s: Can't malloc SCB\n",
   2821   1.6   mycroft 				       ahc_name(ahc));
   2822   1.6   mycroft 			}
   2823   1.1   mycroft 		}
   2824   1.6   mycroft 		else {
   2825   1.6   mycroft 			if (!(flags & SCSI_NOSLEEP)) {
   2826   1.6   mycroft 				tsleep((caddr_t)&ahc->free_scbs, PRIBIO,
   2827   1.6   mycroft 					"ahcscb", 0);
   2828   1.6   mycroft 				continue;
   2829   1.1   mycroft 			}
   2830   1.1   mycroft 		}
   2831   1.6   mycroft 		break;
   2832   1.1   mycroft 	}
   2833   1.1   mycroft 
   2834   1.9  explorer #ifdef AHC_DEBUG
   2835   1.6   mycroft 	if (scbp) {
   2836   1.6   mycroft 		ahc->activescbs++;
   2837   1.6   mycroft 		if((ahc_debug & AHC_SHOWSCBCNT)
   2838   1.6   mycroft 		  && (ahc->activescbs == ahc->maxhscbs))
   2839  1.16  christos 			printf("%s: Max SCBs active\n", ahc_name(ahc));
   2840   1.9  explorer 	}
   2841   1.1   mycroft #endif
   2842   1.6   mycroft 
   2843   1.6   mycroft 	splx(opri);
   2844   1.1   mycroft 
   2845   1.6   mycroft 	return (scbp);
   2846   1.1   mycroft }
   2847   1.1   mycroft 
   2848   1.6   mycroft static void ahc_loadseq(ahc)
   2849   1.6   mycroft 	struct ahc_data *ahc;
   2850   1.1   mycroft {
   2851   1.9  explorer         static u_char seqprog[] = {
   2852  1.10   mycroft #if defined(__FreeBSD__)
   2853   1.1   mycroft #               include "aic7xxx_seq.h"
   2854  1.10   mycroft #endif
   2855  1.10   mycroft #if defined(__NetBSD__)
   2856  1.10   mycroft #		include <dev/microcode/aic7xxx/aic7xxx_seq.h>
   2857  1.10   mycroft #endif
   2858   1.1   mycroft 	};
   2859   1.1   mycroft 
   2860   1.6   mycroft 	AHC_OUTB(ahc, SEQCTL, PERRORDIS|SEQRESET|LOADRAM);
   2861   1.6   mycroft 
   2862   1.6   mycroft 	AHC_OUTSB(ahc, SEQRAM, seqprog, sizeof(seqprog));
   2863   1.6   mycroft 
   2864   1.6   mycroft 	do {
   2865   1.6   mycroft 		AHC_OUTB(ahc, SEQCTL, SEQRESET|FASTMODE);
   2866   1.9  explorer 	} while((AHC_INB(ahc, SEQADDR0) != 0)
   2867   1.9  explorer 		|| (AHC_INB(ahc, SEQADDR1) != 0));
   2868   1.1   mycroft }
   2869   1.1   mycroft 
   2870   1.1   mycroft /*
   2871   1.6   mycroft  * Function to poll for command completion when
   2872   1.6   mycroft  * interrupts are disabled (crash dumps)
   2873   1.1   mycroft  */
   2874   1.6   mycroft static int
   2875   1.6   mycroft ahc_poll(ahc, wait)
   2876   1.6   mycroft 	struct	ahc_data *ahc;
   2877   1.6   mycroft 	int	wait; /* in msec */
   2878   1.6   mycroft {
   2879   1.6   mycroft 	while (--wait) {
   2880   1.6   mycroft 		DELAY(1000);
   2881   1.6   mycroft 		if (AHC_INB(ahc, INTSTAT) & INT_PEND)
   2882   1.6   mycroft 			break;
   2883   1.6   mycroft 	} if (wait == 0) {
   2884  1.16  christos 		printf("%s: board is not responding\n", ahc_name(ahc));
   2885   1.6   mycroft 		return (EIO);
   2886   1.6   mycroft 	}
   2887   1.6   mycroft 	ahc_intr((void *)ahc);
   2888   1.6   mycroft 	return (0);
   2889   1.6   mycroft }
   2890   1.6   mycroft 
   2891   1.6   mycroft static void
   2892   1.6   mycroft ahc_timeout(arg)
   2893   1.6   mycroft 	void	*arg;
   2894   1.6   mycroft {
   2895   1.6   mycroft 	struct	scb *scb = (struct scb *)arg;
   2896   1.6   mycroft 	struct	ahc_data *ahc;
   2897   1.9  explorer 	int	s, found;
   2898   1.6   mycroft 	u_char	bus_state;
   2899   1.6   mycroft 	char	channel;
   2900   1.6   mycroft 
   2901   1.6   mycroft 	s = splbio();
   2902   1.6   mycroft 
   2903   1.6   mycroft 	if (!(scb->flags & SCB_ACTIVE)) {
   2904   1.6   mycroft 		/* Previous timeout took care of me already */
   2905   1.6   mycroft 		splx(s);
   2906   1.6   mycroft 		return;
   2907   1.6   mycroft 	}
   2908   1.6   mycroft 
   2909   1.6   mycroft 	ahc = (struct ahc_data *)scb->xs->sc_link->adapter_softc;
   2910   1.6   mycroft 
   2911   1.6   mycroft 	if (ahc->in_timeout) {
   2912   1.6   mycroft 		/*
   2913   1.6   mycroft 		 * Some other SCB has started a recovery operation
   2914   1.6   mycroft 		 * and is still working on cleaning things up.
   2915   1.6   mycroft 		 */
   2916   1.6   mycroft 		if (scb->flags & SCB_TIMEDOUT) {
   2917   1.6   mycroft 			/*
   2918   1.6   mycroft 			 * This SCB has been here before and is not the
   2919   1.6   mycroft 			 * recovery SCB. Cut our losses and panic.  Its
   2920   1.6   mycroft 			 * better to do this than trash a filesystem.
   2921   1.6   mycroft 			 */
   2922   1.6   mycroft 			panic("%s: Timed-out command times out "
   2923   1.6   mycroft 				"again\n", ahc_name(ahc));
   2924   1.6   mycroft 		}
   2925   1.6   mycroft 		else if (!(scb->flags & SCB_ABORTED))
   2926   1.6   mycroft 		{
   2927   1.6   mycroft 			/*
   2928   1.6   mycroft 			 * This is not the SCB that started this timeout
   2929   1.6   mycroft 			 * processing.  Give this scb another lifetime so
   2930   1.6   mycroft 			 * that it can continue once we deal with the
   2931   1.6   mycroft 			 * timeout.
   2932   1.6   mycroft 			 */
   2933   1.6   mycroft 			scb->flags |= SCB_TIMEDOUT;
   2934   1.6   mycroft 			timeout(ahc_timeout, (caddr_t)scb,
   2935   1.6   mycroft 				(scb->xs->timeout * hz) / 1000);
   2936   1.6   mycroft 			splx(s);
   2937   1.6   mycroft 			return;
   2938   1.6   mycroft 		}
   2939   1.6   mycroft 	}
   2940   1.6   mycroft 	ahc->in_timeout = TRUE;
   2941   1.6   mycroft 
   2942   1.6   mycroft 	/*
   2943   1.6   mycroft 	 * Ensure that the card doesn't do anything
   2944   1.6   mycroft 	 * behind our back.
   2945   1.6   mycroft 	 */
   2946  1.14     gibbs 	pause_sequencer(ahc);
   2947   1.6   mycroft 
   2948   1.6   mycroft 	sc_print_addr(scb->xs->sc_link);
   2949  1.16  christos 	printf("timed out ");
   2950   1.6   mycroft 	/*
   2951   1.6   mycroft 	 * Take a snapshot of the bus state and print out
   2952   1.6   mycroft 	 * some information so we can track down driver bugs.
   2953   1.6   mycroft 	 */
   2954   1.6   mycroft 	bus_state = AHC_INB(ahc, LASTPHASE);
   2955   1.6   mycroft 
   2956   1.6   mycroft 	switch(bus_state & PHASE_MASK)
   2957   1.6   mycroft 	{
   2958   1.6   mycroft 		case P_DATAOUT:
   2959  1.16  christos 			printf("in dataout phase");
   2960   1.6   mycroft 			break;
   2961   1.6   mycroft 		case P_DATAIN:
   2962  1.16  christos 			printf("in datain phase");
   2963   1.6   mycroft 			break;
   2964   1.6   mycroft 		case P_COMMAND:
   2965  1.16  christos 			printf("in command phase");
   2966   1.6   mycroft 			break;
   2967   1.6   mycroft 		case P_MESGOUT:
   2968  1.16  christos 			printf("in message out phase");
   2969   1.6   mycroft 			break;
   2970   1.6   mycroft 		case P_STATUS:
   2971  1.16  christos 			printf("in status phase");
   2972   1.6   mycroft 			break;
   2973   1.6   mycroft 		case P_MESGIN:
   2974  1.16  christos 			printf("in message in phase");
   2975   1.6   mycroft 			break;
   2976   1.6   mycroft 		default:
   2977  1.16  christos 			printf("while idle, LASTPHASE == 0x%x",
   2978   1.6   mycroft 				bus_state);
   2979   1.6   mycroft 			/*
   2980   1.6   mycroft 			 * We aren't in a valid phase, so assume we're
   2981   1.6   mycroft 			 * idle.
   2982   1.6   mycroft 			 */
   2983   1.6   mycroft 			bus_state = 0;
   2984   1.6   mycroft 			break;
   2985   1.6   mycroft 	}
   2986   1.6   mycroft 
   2987  1.16  christos 	printf(", SCSISIGI == 0x%x\n", AHC_INB(ahc, SCSISIGI));
   2988   1.6   mycroft 
   2989   1.6   mycroft 	/* Decide our course of action */
   2990   1.6   mycroft 
   2991   1.6   mycroft 	if(scb->flags & SCB_ABORTED)
   2992   1.6   mycroft 	{
   2993   1.6   mycroft 		/*
   2994   1.6   mycroft 		 * Been down this road before.
   2995   1.6   mycroft 		 * Do a full bus reset.
   2996   1.6   mycroft 		 */
   2997   1.6   mycroft 		char channel = (scb->tcl & SELBUSB)
   2998   1.6   mycroft 			   ? 'B': 'A';
   2999   1.6   mycroft 		found = ahc_reset_channel(ahc, channel, scb->tag,
   3000   1.6   mycroft 					  XS_TIMEOUT, /*Initiate Reset*/TRUE);
   3001  1.16  christos 		printf("%s: Issued Channel %c Bus Reset #1. "
   3002   1.6   mycroft 		       "%d SCBs aborted\n", ahc_name(ahc), channel, found);
   3003   1.6   mycroft 		ahc->in_timeout = FALSE;
   3004   1.6   mycroft 	}
   3005   1.6   mycroft 	else if(scb->control & TAG_ENB) {
   3006   1.6   mycroft 		/*
   3007   1.6   mycroft 		 * We could be starving this command
   3008   1.6   mycroft 		 * try sending an ordered tag command
   3009   1.6   mycroft 		 * to the target we come from.
   3010   1.6   mycroft 		 */
   3011   1.6   mycroft 		scb->flags |= SCB_ABORTED|SCB_SENTORDEREDTAG;
   3012   1.6   mycroft 		ahc->orderedtag |= 0xFF;
   3013   1.6   mycroft 		timeout(ahc_timeout, (caddr_t)scb, (5 * hz));
   3014  1.14     gibbs 		unpause_sequencer(ahc, /*unpause_always*/FALSE);
   3015  1.16  christos 		printf("Ordered Tag queued\n");
   3016   1.6   mycroft 		goto done;
   3017   1.6   mycroft 	}
   3018   1.6   mycroft 	else {
   3019   1.6   mycroft 		/*
   3020   1.6   mycroft 		 * Send a Bus Device Reset Message:
   3021   1.6   mycroft 		 * The target that is holding up the bus may not
   3022   1.6   mycroft 		 * be the same as the one that triggered this timeout
   3023   1.6   mycroft 		 * (different commands have different timeout lengths).
   3024   1.6   mycroft 		 * It is also impossible to get a message to a target
   3025   1.6   mycroft 		 * if we are in a "frozen" data transfer phase.  Our
   3026   1.6   mycroft 		 * strategy here is to queue a bus device reset message
   3027   1.6   mycroft 		 * to the timed out target if it is disconnected.
   3028   1.6   mycroft 		 * Otherwise, if we have an active target we stuff the
   3029   1.6   mycroft 		 * message buffer with a bus device reset message and
   3030   1.6   mycroft 		 * assert ATN in the hopes that the target will let go
   3031   1.6   mycroft 		 * of the bus and finally disconnect.  If this fails,
   3032   1.6   mycroft 		 * we'll get another timeout 2 seconds later which will
   3033   1.6   mycroft 		 * cause a bus reset.
   3034   1.6   mycroft 		 *
   3035   1.6   mycroft 		 * XXX If the SCB is paged out, we simply reset the
   3036   1.6   mycroft 		 *     bus.  We should probably queue a new command
   3037   1.6   mycroft 		 *     instead.
   3038   1.6   mycroft 		 */
   3039   1.6   mycroft 
   3040   1.6   mycroft 		/* Test to see if scb is disconnected */
   3041   1.6   mycroft 		if( !(scb->flags & SCB_PAGED_OUT ) ){
   3042   1.6   mycroft 			u_char active_scb;
   3043   1.6   mycroft 			struct scb *active_scbp;
   3044   1.6   mycroft 
   3045   1.6   mycroft 			active_scb = AHC_INB(ahc, SCBPTR);
   3046   1.6   mycroft 			active_scbp = ahc->scbarray[AHC_INB(ahc, SCB_TAG)];
   3047   1.6   mycroft 			AHC_OUTB(ahc, SCBPTR, scb->position);
   3048   1.1   mycroft 
   3049   1.6   mycroft 			if(AHC_INB(ahc, SCB_CONTROL) & DISCONNECTED) {
   3050   1.6   mycroft 				if(ahc->flags & AHC_PAGESCBS) {
   3051   1.6   mycroft 					/*
   3052   1.6   mycroft 					 * Pull this SCB out of the
   3053   1.6   mycroft 					 * disconnected list.
   3054   1.6   mycroft 					 */
   3055   1.6   mycroft 					u_char prev = AHC_INB(ahc, SCB_PREV);
   3056   1.6   mycroft 					u_char next = AHC_INB(ahc, SCB_NEXT);
   3057   1.6   mycroft 					if(prev == SCB_LIST_NULL) {
   3058   1.6   mycroft 						/* At the head */
   3059   1.6   mycroft 						AHC_OUTB(ahc, DISCONNECTED_SCBH,
   3060   1.6   mycroft 						     next );
   3061   1.6   mycroft 					}
   3062   1.6   mycroft 					else {
   3063   1.6   mycroft 						AHC_OUTB(ahc, SCBPTR, prev);
   3064   1.6   mycroft 						AHC_OUTB(ahc, SCB_NEXT, next);
   3065   1.6   mycroft 						if(next != SCB_LIST_NULL) {
   3066   1.6   mycroft 							AHC_OUTB(ahc, SCBPTR,
   3067   1.6   mycroft 							     next);
   3068   1.6   mycroft 							AHC_OUTB(ahc, SCB_PREV,
   3069   1.6   mycroft 							     prev);
   3070   1.6   mycroft 						}
   3071   1.6   mycroft 						AHC_OUTB(ahc, SCBPTR,
   3072   1.6   mycroft 						     scb->position);
   3073   1.6   mycroft 					}
   3074   1.6   mycroft 				}
   3075   1.6   mycroft 				scb->flags |= SCB_DEVICE_RESET|SCB_ABORTED;
   3076   1.6   mycroft 				scb->control &= DISCENB;
   3077  1.14     gibbs 				scb->control |= MK_MESSAGE;
   3078   1.6   mycroft 				scb->cmdlen = 0;
   3079   1.6   mycroft 				scb->SG_segment_count = 0;
   3080   1.6   mycroft 				scb->SG_list_pointer = 0;
   3081   1.6   mycroft 				scb->data = 0;
   3082   1.6   mycroft 				scb->datalen = 0;
   3083   1.6   mycroft 				ahc_send_scb(ahc, scb);
   3084   1.6   mycroft 				ahc_add_waiting_scb(ahc, scb);
   3085   1.6   mycroft 				timeout(ahc_timeout, (caddr_t)scb, (2 * hz));
   3086   1.6   mycroft 				sc_print_addr(scb->xs->sc_link);
   3087  1.16  christos 				printf("BUS DEVICE RESET message queued.\n");
   3088   1.6   mycroft 				AHC_OUTB(ahc, SCBPTR, active_scb);
   3089  1.14     gibbs 				unpause_sequencer(ahc, /*unpause_always*/FALSE);
   3090   1.6   mycroft 				goto done;
   3091   1.6   mycroft 			}
   3092   1.6   mycroft 			/* Is the active SCB really active? */
   3093   1.6   mycroft 			else if((active_scbp->flags & SCB_ACTIVE) && bus_state){
   3094   1.6   mycroft 				AHC_OUTB(ahc, MSG_LEN, 1);
   3095  1.14     gibbs 				AHC_OUTB(ahc, MSG0, MSG_BUS_DEV_RESET);
   3096   1.6   mycroft 				AHC_OUTB(ahc, SCSISIGO, bus_state|ATNO);
   3097   1.6   mycroft 				sc_print_addr(active_scbp->xs->sc_link);
   3098  1.16  christos 				printf("asserted ATN - device reset in "
   3099   1.6   mycroft 				       "message buffer\n");
   3100   1.6   mycroft 				active_scbp->flags |=   SCB_DEVICE_RESET
   3101   1.6   mycroft 						      | SCB_ABORTED;
   3102   1.6   mycroft 				if(active_scbp != scb) {
   3103   1.6   mycroft 					untimeout(ahc_timeout,
   3104   1.6   mycroft 						  (caddr_t)active_scbp);
   3105   1.6   mycroft 					/* Give scb a new lease on life */
   3106   1.6   mycroft 					timeout(ahc_timeout, (caddr_t)scb,
   3107   1.6   mycroft 						(scb->xs->timeout * hz) / 1000);
   3108   1.6   mycroft 				}
   3109   1.6   mycroft 				timeout(ahc_timeout, (caddr_t)active_scbp,
   3110   1.6   mycroft 					(2 * hz));
   3111   1.6   mycroft 				AHC_OUTB(ahc, SCBPTR, active_scb);
   3112  1.14     gibbs 				unpause_sequencer(ahc, /*unpause_always*/FALSE);
   3113   1.6   mycroft 				goto done;
   3114   1.6   mycroft 			}
   3115   1.6   mycroft 		}
   3116   1.1   mycroft 		/*
   3117   1.6   mycroft 		 * No active target or a paged out SCB.
   3118  1.21     mikel 		 * Try resetting the bus.
   3119   1.1   mycroft 		 */
   3120   1.6   mycroft 		channel = (scb->tcl & SELBUSB) ? 'B': 'A';
   3121   1.6   mycroft 		found = ahc_reset_channel(ahc, channel, scb->tag,
   3122   1.6   mycroft 					  XS_TIMEOUT,
   3123   1.6   mycroft 					  /*Initiate Reset*/TRUE);
   3124  1.16  christos 		printf("%s: Issued Channel %c Bus Reset #2. "
   3125   1.6   mycroft 			"%d SCBs aborted\n", ahc_name(ahc), channel,
   3126   1.6   mycroft 			found);
   3127   1.6   mycroft 		ahc->in_timeout = FALSE;
   3128   1.1   mycroft 	}
   3129   1.6   mycroft done:
   3130   1.6   mycroft 	splx(s);
   3131   1.1   mycroft }
   3132   1.1   mycroft 
   3133   1.6   mycroft 
   3134   1.6   mycroft /*
   3135   1.6   mycroft  * The device at the given target/channel has been reset.  Abort
   3136   1.6   mycroft  * all active and queued scbs for that target/channel.
   3137   1.6   mycroft  */
   3138   1.6   mycroft static int
   3139   1.6   mycroft ahc_reset_device(ahc, target, channel, timedout_scb, xs_error)
   3140   1.6   mycroft 	struct ahc_data *ahc;
   3141   1.6   mycroft 	int target;
   3142   1.6   mycroft 	char channel;
   3143   1.6   mycroft 	u_char timedout_scb;
   3144   1.6   mycroft 	u_int32_t xs_error;
   3145   1.1   mycroft {
   3146   1.6   mycroft         struct scb *scbp;
   3147   1.6   mycroft 	u_char active_scb;
   3148   1.6   mycroft 	int i = 0;
   3149   1.1   mycroft 	int found = 0;
   3150   1.1   mycroft 
   3151   1.6   mycroft 	/* restore this when we're done */
   3152   1.6   mycroft 	active_scb = AHC_INB(ahc, SCBPTR);
   3153   1.6   mycroft 
   3154   1.1   mycroft 	/*
   3155   1.6   mycroft 	 * Search the QINFIFO.
   3156   1.1   mycroft 	 */
   3157   1.1   mycroft 	{
   3158   1.9  explorer 		u_char saved_queue[AHC_SCB_MAX];
   3159   1.9  explorer 		u_char queued = AHC_INB(ahc, QINCNT) & ahc->qcntmask;
   3160   1.1   mycroft 
   3161   1.1   mycroft 		for (i = 0; i < (queued - found); i++) {
   3162   1.6   mycroft 			saved_queue[i] = AHC_INB(ahc, QINFIFO);
   3163   1.6   mycroft 			AHC_OUTB(ahc, SCBPTR, saved_queue[i]);
   3164   1.6   mycroft 			scbp = ahc->scbarray[AHC_INB(ahc, SCB_TAG)];
   3165   1.6   mycroft 			if (ahc_match_scb (scbp, target, channel)){
   3166   1.6   mycroft 				/*
   3167   1.6   mycroft 				 * We found an scb that needs to be aborted.
   3168   1.6   mycroft 				 */
   3169   1.6   mycroft 				scbp->flags = SCB_ABORTED|SCB_QUEUED_FOR_DONE;
   3170   1.6   mycroft 				scbp->xs->error |= xs_error;
   3171   1.6   mycroft 				if(scbp->position != timedout_scb)
   3172   1.6   mycroft 					untimeout(ahc_timeout, (caddr_t)scbp);
   3173   1.6   mycroft 				AHC_OUTB(ahc, SCB_CONTROL, 0);
   3174   1.1   mycroft 				i--;
   3175   1.6   mycroft 				found++;
   3176   1.1   mycroft 			}
   3177   1.1   mycroft 		}
   3178   1.6   mycroft 		/* Now put the saved scbs back. */
   3179   1.6   mycroft 		for (queued = 0; queued < i; queued++) {
   3180   1.6   mycroft 			AHC_OUTB(ahc, QINFIFO, saved_queue[queued]);
   3181   1.6   mycroft 		}
   3182   1.6   mycroft 	}
   3183   1.1   mycroft 
   3184   1.6   mycroft 	/*
   3185   1.6   mycroft 	 * Search waiting for selection list.
   3186   1.6   mycroft 	 */
   3187   1.6   mycroft 	{
   3188   1.6   mycroft 		u_char next, prev;
   3189   1.6   mycroft 
   3190   1.6   mycroft 		next = AHC_INB(ahc, WAITING_SCBH);  /* Start at head of list. */
   3191   1.6   mycroft 		prev = SCB_LIST_NULL;
   3192   1.6   mycroft 
   3193   1.6   mycroft 		while (next != SCB_LIST_NULL) {
   3194   1.6   mycroft 			AHC_OUTB(ahc, SCBPTR, next);
   3195   1.6   mycroft 			scbp = ahc->scbarray[AHC_INB(ahc, SCB_TAG)];
   3196   1.6   mycroft 			/*
   3197   1.6   mycroft 			 * Select the SCB.
   3198   1.6   mycroft 			 */
   3199   1.6   mycroft 			if (ahc_match_scb(scbp, target, channel)) {
   3200   1.6   mycroft 				next = ahc_abort_wscb(ahc, scbp, prev,
   3201   1.6   mycroft 						timedout_scb, xs_error);
   3202   1.6   mycroft 				found++;
   3203   1.6   mycroft 			}
   3204   1.6   mycroft 			else {
   3205   1.6   mycroft 				prev = next;
   3206   1.6   mycroft 				next = AHC_INB(ahc, SCB_NEXT);
   3207   1.6   mycroft 			}
   3208   1.6   mycroft 		}
   3209   1.1   mycroft 	}
   3210   1.1   mycroft 	/*
   3211   1.6   mycroft 	 * Go through the entire SCB array now and look for
   3212   1.6   mycroft 	 * commands for this target that are active.  These
   3213   1.6   mycroft 	 * are other (most likely tagged) commands that
   3214   1.6   mycroft 	 * were disconnected when the reset occured.
   3215   1.6   mycroft 	 */
   3216   1.6   mycroft 	for(i = 0; i < ahc->numscbs; i++) {
   3217   1.6   mycroft 		scbp = ahc->scbarray[i];
   3218   1.6   mycroft 		if((scbp->flags & SCB_ACTIVE)
   3219   1.6   mycroft 		  && ahc_match_scb(scbp, target, channel)) {
   3220   1.6   mycroft 			/* Ensure the target is "free" */
   3221   1.6   mycroft 			ahc_unbusy_target(ahc, target, channel);
   3222   1.6   mycroft 			if( !(scbp->flags & SCB_PAGED_OUT) )
   3223   1.6   mycroft 			{
   3224   1.6   mycroft 				AHC_OUTB(ahc, SCBPTR, scbp->position);
   3225   1.6   mycroft 				AHC_OUTB(ahc, SCB_CONTROL, 0);
   3226   1.6   mycroft 			}
   3227   1.6   mycroft 			scbp->flags = SCB_ABORTED|SCB_QUEUED_FOR_DONE;
   3228   1.6   mycroft 			scbp->xs->error |= xs_error;
   3229   1.6   mycroft 			if(scbp->tag != timedout_scb)
   3230   1.6   mycroft 				untimeout(ahc_timeout, (caddr_t)scbp);
   3231   1.6   mycroft 			found++;
   3232   1.6   mycroft 		}
   3233   1.6   mycroft 	}
   3234   1.6   mycroft 	AHC_OUTB(ahc, SCBPTR, active_scb);
   3235   1.6   mycroft 	return found;
   3236   1.6   mycroft }
   3237   1.6   mycroft 
   3238   1.6   mycroft /*
   3239   1.6   mycroft  * Manipulate the waiting for selection list and return the
   3240   1.6   mycroft  * scb that follows the one that we remove.
   3241   1.6   mycroft  */
   3242   1.6   mycroft static u_char
   3243   1.6   mycroft ahc_abort_wscb (ahc, scbp, prev, timedout_scb, xs_error)
   3244   1.6   mycroft 	struct ahc_data *ahc;
   3245   1.6   mycroft         struct scb *scbp;
   3246   1.6   mycroft 	u_char prev;
   3247   1.6   mycroft 	u_char timedout_scb;
   3248   1.6   mycroft 	u_int32_t xs_error;
   3249   1.6   mycroft {
   3250   1.6   mycroft 	u_char curscbp, next;
   3251   1.6   mycroft 	int target = ((scbp->tcl >> 4) & 0x0f);
   3252   1.6   mycroft 	char channel = (scbp->tcl & SELBUSB) ? 'B' : 'A';
   3253   1.6   mycroft 	/*
   3254   1.6   mycroft 	 * Select the SCB we want to abort and
   3255   1.6   mycroft 	 * pull the next pointer out of it.
   3256   1.6   mycroft 	 */
   3257   1.6   mycroft 	curscbp = AHC_INB(ahc, SCBPTR);
   3258   1.6   mycroft 	AHC_OUTB(ahc, SCBPTR, scbp->position);
   3259   1.6   mycroft 	next = AHC_INB(ahc, SCB_NEXT);
   3260   1.6   mycroft 
   3261   1.6   mycroft 	/* Clear the necessary fields */
   3262   1.6   mycroft 	AHC_OUTB(ahc, SCB_CONTROL, 0);
   3263   1.6   mycroft 	AHC_OUTB(ahc, SCB_NEXT, SCB_LIST_NULL);
   3264   1.6   mycroft 	ahc_unbusy_target(ahc, target, channel);
   3265   1.6   mycroft 
   3266   1.6   mycroft 	/* update the waiting list */
   3267   1.6   mycroft 	if( prev == SCB_LIST_NULL )
   3268   1.6   mycroft 		/* First in the list */
   3269   1.6   mycroft 		AHC_OUTB(ahc, WAITING_SCBH, next);
   3270   1.6   mycroft 	else {
   3271   1.1   mycroft 		/*
   3272   1.6   mycroft 		 * Select the scb that pointed to us
   3273   1.6   mycroft 		 * and update its next pointer.
   3274   1.1   mycroft 		 */
   3275   1.6   mycroft 		AHC_OUTB(ahc, SCBPTR, prev);
   3276   1.6   mycroft 		AHC_OUTB(ahc, SCB_NEXT, next);
   3277   1.1   mycroft 	}
   3278   1.1   mycroft 	/*
   3279   1.6   mycroft 	 * Point us back at the original scb position
   3280   1.6   mycroft 	 * and inform the SCSI system that the command
   3281   1.6   mycroft 	 * has been aborted.
   3282   1.6   mycroft 	 */
   3283   1.6   mycroft 	AHC_OUTB(ahc, SCBPTR, curscbp);
   3284   1.6   mycroft 	scbp->flags = SCB_ABORTED|SCB_QUEUED_FOR_DONE;
   3285   1.6   mycroft 	scbp->xs->error |= xs_error;
   3286   1.6   mycroft 	if(scbp->tag != timedout_scb)
   3287   1.6   mycroft 		untimeout(ahc_timeout, (caddr_t)scbp);
   3288   1.6   mycroft 	return next;
   3289   1.6   mycroft }
   3290   1.6   mycroft 
   3291   1.6   mycroft static void
   3292   1.6   mycroft ahc_busy_target(ahc, target, channel)
   3293   1.6   mycroft 	struct ahc_data *ahc;
   3294   1.6   mycroft 	u_char target;
   3295   1.6   mycroft 	char   channel;
   3296   1.6   mycroft {
   3297   1.6   mycroft 	u_char active;
   3298   1.6   mycroft 	u_long active_port = ACTIVE_A;
   3299   1.6   mycroft 
   3300   1.6   mycroft 	if(target > 0x07 || channel == 'B') {
   3301   1.6   mycroft 		/*
   3302   1.6   mycroft 		 * targets on the Second channel or
   3303   1.6   mycroft 		 * above id 7 store info in byte two
   3304   1.6   mycroft 		 * of HA_ACTIVE
   3305   1.1   mycroft 		 */
   3306   1.6   mycroft 		active_port++;
   3307   1.6   mycroft 	}
   3308   1.6   mycroft 	active = AHC_INB(ahc, active_port);
   3309   1.6   mycroft 	active |= (0x01 << (target & 0x07));
   3310   1.6   mycroft 	AHC_OUTB(ahc, active_port, active);
   3311   1.6   mycroft }
   3312   1.6   mycroft 
   3313   1.6   mycroft static void
   3314   1.6   mycroft ahc_unbusy_target(ahc, target, channel)
   3315   1.6   mycroft 	struct ahc_data *ahc;
   3316   1.6   mycroft 	u_char target;
   3317   1.6   mycroft 	char   channel;
   3318   1.6   mycroft {
   3319   1.6   mycroft 	u_char active;
   3320   1.6   mycroft 	u_long active_port = ACTIVE_A;
   3321   1.1   mycroft 
   3322   1.6   mycroft 	if(target > 0x07 || channel == 'B') {
   3323   1.6   mycroft 		/*
   3324   1.6   mycroft 		 * targets on the Second channel or
   3325   1.6   mycroft 		 * above id 7 store info in byte two
   3326   1.6   mycroft 		 * of HA_ACTIVE
   3327   1.6   mycroft 		 */
   3328   1.6   mycroft 		active_port++;
   3329   1.1   mycroft 	}
   3330   1.6   mycroft 	active = AHC_INB(ahc, active_port);
   3331   1.6   mycroft 	active &= ~(0x01 << (target & 0x07));
   3332   1.6   mycroft 	AHC_OUTB(ahc, active_port, active);
   3333   1.1   mycroft }
   3334   1.1   mycroft 
   3335   1.6   mycroft static void
   3336   1.6   mycroft ahc_reset_current_bus(ahc)
   3337   1.6   mycroft 	struct ahc_data *ahc;
   3338   1.1   mycroft {
   3339   1.6   mycroft 	AHC_OUTB(ahc, SCSISEQ, SCSIRSTO);
   3340   1.6   mycroft 	DELAY(1000);
   3341   1.6   mycroft 	AHC_OUTB(ahc, SCSISEQ, 0);
   3342   1.6   mycroft }
   3343   1.1   mycroft 
   3344   1.6   mycroft static int
   3345   1.6   mycroft ahc_reset_channel(ahc, channel, timedout_scb, xs_error, initiate_reset)
   3346   1.6   mycroft 	struct ahc_data *ahc;
   3347   1.6   mycroft 	char   channel;
   3348   1.6   mycroft 	u_char timedout_scb;
   3349   1.6   mycroft 	u_int32_t xs_error;
   3350   1.6   mycroft 	u_char initiate_reset;
   3351   1.6   mycroft {
   3352   1.6   mycroft 	u_char sblkctl;
   3353   1.6   mycroft 	char cur_channel;
   3354   1.6   mycroft 	u_long offset, offset_max;
   3355   1.6   mycroft 	int found;
   3356   1.6   mycroft 
   3357   1.6   mycroft 	/*
   3358   1.6   mycroft 	 * Clean up all the state information for the
   3359   1.6   mycroft 	 * pending transactions on this bus.
   3360   1.6   mycroft 	 */
   3361   1.6   mycroft 	found = ahc_reset_device(ahc, ALL_TARGETS, channel,
   3362   1.6   mycroft 				 timedout_scb, xs_error);
   3363   1.6   mycroft 	if(channel == 'B'){
   3364   1.6   mycroft 		ahc->needsdtr |= (ahc->needsdtr_orig & 0xff00);
   3365   1.6   mycroft 		ahc->sdtrpending &= 0x00ff;
   3366   1.6   mycroft 		AHC_OUTB(ahc, ACTIVE_B, 0);
   3367   1.6   mycroft 		offset = TARG_SCRATCH + 8;
   3368   1.6   mycroft 		offset_max = TARG_SCRATCH + 16;
   3369   1.6   mycroft 	}
   3370   1.6   mycroft 	else if (ahc->type & AHC_WIDE){
   3371   1.6   mycroft 		ahc->needsdtr = ahc->needsdtr_orig;
   3372   1.6   mycroft 		ahc->needwdtr = ahc->needwdtr_orig;
   3373   1.6   mycroft 		ahc->sdtrpending = 0;
   3374   1.6   mycroft 		ahc->wdtrpending = 0;
   3375   1.6   mycroft 		AHC_OUTB(ahc, ACTIVE_A, 0);
   3376   1.6   mycroft 		AHC_OUTB(ahc, ACTIVE_B, 0);
   3377   1.6   mycroft 		offset = TARG_SCRATCH;
   3378   1.6   mycroft 		offset_max = TARG_SCRATCH + 16;
   3379   1.6   mycroft 	}
   3380   1.6   mycroft 	else{
   3381   1.6   mycroft 		ahc->needsdtr |= (ahc->needsdtr_orig & 0x00ff);
   3382   1.6   mycroft 		ahc->sdtrpending &= 0xff00;
   3383   1.6   mycroft 		AHC_OUTB(ahc, ACTIVE_A, 0);
   3384   1.6   mycroft 		offset = TARG_SCRATCH;
   3385   1.6   mycroft 		offset_max = TARG_SCRATCH + 8;
   3386   1.6   mycroft 	}
   3387   1.6   mycroft 	for(;offset < offset_max;offset++) {
   3388   1.6   mycroft 		/*
   3389   1.6   mycroft 		 * Revert to async/narrow transfers
   3390   1.6   mycroft 		 * until we renegotiate.
   3391   1.6   mycroft 		 */
   3392   1.6   mycroft 		u_char targ_scratch;
   3393   1.1   mycroft 
   3394   1.6   mycroft 		targ_scratch = AHC_INB(ahc, offset);
   3395   1.6   mycroft 		targ_scratch &= SXFR;
   3396   1.6   mycroft 		AHC_OUTB(ahc, offset, targ_scratch);
   3397   1.6   mycroft 	}
   3398   1.1   mycroft 
   3399   1.6   mycroft 	/*
   3400   1.6   mycroft 	 * Reset the bus if we are initiating this reset and
   3401   1.6   mycroft 	 * restart/unpause the sequencer
   3402   1.6   mycroft 	 */
   3403   1.6   mycroft 	/* Case 1: Command for another bus is active */
   3404   1.6   mycroft 	sblkctl = AHC_INB(ahc, SBLKCTL);
   3405   1.6   mycroft 	cur_channel = (sblkctl & SELBUSB) ? 'B' : 'A';
   3406   1.6   mycroft 	if(cur_channel != channel)
   3407   1.6   mycroft 	{
   3408   1.6   mycroft 		/*
   3409   1.6   mycroft 		 * Stealthily reset the other bus
   3410   1.6   mycroft 		 * without upsetting the current bus
   3411   1.6   mycroft 		 */
   3412   1.6   mycroft 		AHC_OUTB(ahc, SBLKCTL, sblkctl ^ SELBUSB);
   3413   1.6   mycroft 		if( initiate_reset )
   3414   1.6   mycroft 		{
   3415   1.6   mycroft 			ahc_reset_current_bus(ahc);
   3416   1.6   mycroft 		}
   3417   1.6   mycroft 		AHC_OUTB(ahc, CLRSINT1, CLRSCSIRSTI|CLRSELTIMEO);
   3418   1.6   mycroft 		AHC_OUTB(ahc, CLRINT, CLRSCSIINT);
   3419   1.6   mycroft 		AHC_OUTB(ahc, SBLKCTL, sblkctl);
   3420  1.14     gibbs 		unpause_sequencer(ahc, /*unpause_always*/TRUE);
   3421   1.6   mycroft 	}
   3422   1.6   mycroft 	/* Case 2: A command from this bus is active or we're idle */
   3423   1.6   mycroft 	else {
   3424   1.6   mycroft 		if( initiate_reset )
   3425   1.6   mycroft 		{
   3426   1.6   mycroft 			ahc_reset_current_bus(ahc);
   3427   1.6   mycroft 		}
   3428   1.6   mycroft 		AHC_OUTB(ahc, CLRSINT1, CLRSCSIRSTI|CLRSELTIMEO);
   3429   1.6   mycroft 		AHC_OUTB(ahc, CLRINT, CLRSCSIINT);
   3430  1.14     gibbs 		restart_sequencer(ahc);
   3431   1.1   mycroft 	}
   3432   1.6   mycroft 	ahc_run_done_queue(ahc);
   3433   1.6   mycroft 	return found;
   3434   1.6   mycroft }
   3435   1.1   mycroft 
   3436   1.6   mycroft void
   3437   1.6   mycroft ahc_run_done_queue(ahc)
   3438   1.6   mycroft 	struct ahc_data *ahc;
   3439   1.6   mycroft {
   3440   1.6   mycroft 	int i;
   3441   1.6   mycroft 	struct scb *scbp;
   3442   1.6   mycroft 
   3443   1.6   mycroft 	for(i = 0; i < ahc->numscbs; i++) {
   3444   1.6   mycroft 		scbp = ahc->scbarray[i];
   3445   1.6   mycroft 		if(scbp->flags & SCB_QUEUED_FOR_DONE)
   3446   1.6   mycroft 			ahc_done(ahc, scbp);
   3447   1.1   mycroft 	}
   3448   1.6   mycroft }
   3449   1.6   mycroft 
   3450   1.6   mycroft static int
   3451   1.6   mycroft ahc_match_scb (scb, target, channel)
   3452   1.6   mycroft         struct scb *scb;
   3453   1.6   mycroft         int target;
   3454   1.6   mycroft 	char channel;
   3455   1.6   mycroft {
   3456   1.6   mycroft 	int targ = (scb->tcl >> 4) & 0x0f;
   3457   1.6   mycroft 	char chan = (scb->tcl & SELBUSB) ? 'B' : 'A';
   3458   1.1   mycroft 
   3459   1.6   mycroft 	if (target == ALL_TARGETS)
   3460   1.6   mycroft 		return (chan == channel);
   3461   1.6   mycroft 	else
   3462   1.6   mycroft 		return ((chan == channel) && (targ == target));
   3463  1.14     gibbs }
   3464  1.14     gibbs 
   3465  1.14     gibbs 
   3466  1.14     gibbs static void
   3467  1.14     gibbs ahc_construct_sdtr(ahc, start_byte, period, offset)
   3468  1.14     gibbs 	struct ahc_data *ahc;
   3469  1.14     gibbs 	int start_byte;
   3470  1.14     gibbs 	u_int8_t period;
   3471  1.14     gibbs 	u_int8_t offset;
   3472  1.14     gibbs {
   3473  1.14     gibbs 	AHC_OUTB(ahc, MSG0 + start_byte, MSG_EXTENDED);
   3474  1.14     gibbs 	AHC_OUTB(ahc, MSG1 + start_byte, MSG_EXT_SDTR_LEN);
   3475  1.14     gibbs 	AHC_OUTB(ahc, MSG2 + start_byte, MSG_EXT_SDTR);
   3476  1.14     gibbs 	AHC_OUTB(ahc, MSG3 + start_byte, period);
   3477  1.14     gibbs 	AHC_OUTB(ahc, MSG4 + start_byte, offset);
   3478  1.14     gibbs 	AHC_OUTB(ahc, MSG_LEN, start_byte + 5);
   3479  1.14     gibbs }
   3480  1.14     gibbs 
   3481  1.14     gibbs static void
   3482  1.14     gibbs ahc_construct_wdtr(ahc, start_byte, bus_width)
   3483  1.14     gibbs 	struct ahc_data *ahc;
   3484  1.14     gibbs 	int start_byte;
   3485  1.14     gibbs 	u_int8_t bus_width;
   3486  1.14     gibbs {
   3487  1.14     gibbs 	AHC_OUTB(ahc, MSG0 + start_byte, MSG_EXTENDED);
   3488  1.14     gibbs 	AHC_OUTB(ahc, MSG1 + start_byte, MSG_EXT_WDTR_LEN);
   3489  1.14     gibbs 	AHC_OUTB(ahc, MSG2 + start_byte, MSG_EXT_WDTR);
   3490  1.14     gibbs 	AHC_OUTB(ahc, MSG3 + start_byte, bus_width);
   3491  1.14     gibbs 	AHC_OUTB(ahc, MSG_LEN, start_byte + 4);
   3492   1.1   mycroft }
   3493