xref: /csrg-svn/sys/pmax/dev/asc.c (revision 58792)
152889Sbostic /*-
252889Sbostic  * Copyright (c) 1992 The Regents of the University of California.
352889Sbostic  * All rights reserved.
452889Sbostic  *
552889Sbostic  * This code is derived from software contributed to Berkeley by
656819Sralph  * Ralph Campbell and Rick Macklem.
752889Sbostic  *
852889Sbostic  * %sccs.include.redist.c%
952889Sbostic  *
10*58792Sralph  *	@(#)asc.c	7.12 (Berkeley) 03/23/93
1152889Sbostic  */
1252889Sbostic 
1352889Sbostic /*
1452889Sbostic  * Mach Operating System
1552889Sbostic  * Copyright (c) 1991,1990,1989 Carnegie Mellon University
1652889Sbostic  * All Rights Reserved.
1752889Sbostic  *
1852889Sbostic  * Permission to use, copy, modify and distribute this software and its
1952889Sbostic  * documentation is hereby granted, provided that both the copyright
2052889Sbostic  * notice and this permission notice appear in all copies of the
2152889Sbostic  * software, derivative works or modified versions, and any portions
2252889Sbostic  * thereof, and that both notices appear in supporting documentation.
2352889Sbostic  *
2452889Sbostic  * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS
2552889Sbostic  * CONDITION.  CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
2652889Sbostic  * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
2752889Sbostic  *
2852889Sbostic  * Carnegie Mellon requests users of this software to return to
2952889Sbostic  *
3052889Sbostic  *  Software Distribution Coordinator  or  Software.Distribution@CS.CMU.EDU
3152889Sbostic  *  School of Computer Science
3252889Sbostic  *  Carnegie Mellon University
3352889Sbostic  *  Pittsburgh PA 15213-3890
3452889Sbostic  *
3552889Sbostic  * any improvements or extensions that they make and grant Carnegie the
3652889Sbostic  * rights to redistribute these changes.
3752889Sbostic  */
3852889Sbostic 
3952889Sbostic /*
4052889Sbostic  * HISTORY
4152889Sbostic  * $Log:	scsi_53C94_hdw.c,v $
4252889Sbostic  * Revision 2.5  91/02/05  17:45:07  mrt
4352889Sbostic  * 	Added author notices
4452889Sbostic  * 	[91/02/04  11:18:43  mrt]
4552889Sbostic  *
4652889Sbostic  * 	Changed to use new Mach copyright
4752889Sbostic  * 	[91/02/02  12:17:20  mrt]
4852889Sbostic  *
4952889Sbostic  * Revision 2.4  91/01/08  15:48:24  rpd
5052889Sbostic  * 	Added continuation argument to thread_block.
5152889Sbostic  * 	[90/12/27            rpd]
5252889Sbostic  *
5352889Sbostic  * Revision 2.3  90/12/05  23:34:48  af
5452889Sbostic  * 	Recovered from pmax merge.. and from the destruction of a disk.
5552889Sbostic  * 	[90/12/03  23:40:40  af]
5652889Sbostic  *
5752889Sbostic  * Revision 2.1.1.1  90/11/01  03:39:09  af
5852889Sbostic  * 	Created, from the DEC specs:
5952889Sbostic  * 	"PMAZ-AA TURBOchannel SCSI Module Functional Specification"
6052889Sbostic  * 	Workstation Systems Engineering, Palo Alto, CA. Aug 27, 1990.
6152889Sbostic  * 	And from the NCR data sheets
6252889Sbostic  * 	"NCR 53C94, 53C95, 53C96 Advances SCSI Controller"
6352889Sbostic  * 	[90/09/03            af]
6452889Sbostic  */
6552889Sbostic 
6652889Sbostic /*
6752889Sbostic  *	File: scsi_53C94_hdw.h
6852889Sbostic  * 	Author: Alessandro Forin, Carnegie Mellon University
6952889Sbostic  *	Date:	9/90
7052889Sbostic  *
7152889Sbostic  *	Bottom layer of the SCSI driver: chip-dependent functions
7252889Sbostic  *
7352889Sbostic  *	This file contains the code that is specific to the NCR 53C94
7452889Sbostic  *	SCSI chip (Host Bus Adapter in SCSI parlance): probing, start
7552889Sbostic  *	operation, and interrupt routine.
7652889Sbostic  */
7752889Sbostic 
7852889Sbostic /*
7952889Sbostic  * This layer works based on small simple 'scripts' that are installed
8052889Sbostic  * at the start of the command and drive the chip to completion.
8152889Sbostic  * The idea comes from the specs of the NCR 53C700 'script' processor.
8252889Sbostic  *
8352889Sbostic  * There are various reasons for this, mainly
8452889Sbostic  * - Performance: identify the common (successful) path, and follow it;
8552889Sbostic  *   at interrupt time no code is needed to find the current status
8652889Sbostic  * - Code size: it should be easy to compact common operations
8752889Sbostic  * - Adaptability: the code skeleton should adapt to different chips without
8852889Sbostic  *   terrible complications.
8952889Sbostic  * - Error handling: and it is easy to modify the actions performed
9052889Sbostic  *   by the scripts to cope with strange but well identified sequences
9152889Sbostic  *
9252889Sbostic  */
9352889Sbostic 
9456819Sralph #include <asc.h>
9552889Sbostic #if NASC > 0
9652889Sbostic 
9756522Sbostic #include <sys/param.h>
9856522Sbostic #include <sys/systm.h>
9956819Sralph #include <sys/dkstat.h>
10056819Sralph #include <sys/buf.h>
10156819Sralph #include <sys/conf.h>
10256522Sbostic #include <sys/errno.h>
10352889Sbostic 
10456819Sralph #include <machine/machConst.h>
10556819Sralph 
10656525Sbostic #include <pmax/dev/device.h>
10756525Sbostic #include <pmax/dev/scsi.h>
10856525Sbostic #include <pmax/dev/ascreg.h>
10952889Sbostic 
11056819Sralph #include <pmax/pmax/asic.h>
11156819Sralph #include <pmax/pmax/kmin.h>
11256819Sralph #include <pmax/pmax/pmaxtype.h>
11356819Sralph 
11456819Sralph #define	readback(a)	{ register int foo; foo = (a); }
11556819Sralph extern int pmax_boardtype;
11656819Sralph 
11756819Sralph /*
11856819Sralph  * In 4ns ticks.
11956819Sralph  */
12052889Sbostic int	asc_to_scsi_period[] = {
12156819Sralph 	32,
12256819Sralph 	33,
12356819Sralph 	34,
12456819Sralph 	35,
12556819Sralph 	5,
12656819Sralph 	5,
12756819Sralph 	6,
12856819Sralph 	7,
12956819Sralph 	8,
13056819Sralph 	9,
13156819Sralph 	10,
13256819Sralph 	11,
13356819Sralph 	12,
13456819Sralph 	13,
13556819Sralph 	14,
13656819Sralph 	15,
13756819Sralph 	16,
13856819Sralph 	17,
13956819Sralph 	18,
14056819Sralph 	19,
14156819Sralph 	20,
14256819Sralph 	21,
14356819Sralph 	22,
14456819Sralph 	23,
14556819Sralph 	24,
14656819Sralph 	25,
14756819Sralph 	26,
14856819Sralph 	27,
14956819Sralph 	28,
15056819Sralph 	29,
15156819Sralph 	30,
15256819Sralph 	31,
15352889Sbostic };
15452889Sbostic 
15552889Sbostic /*
15652889Sbostic  * Internal forward declarations.
15752889Sbostic  */
15852889Sbostic static void asc_reset();
15952889Sbostic static void asc_startcmd();
16052889Sbostic 
16152889Sbostic #ifdef DEBUG
16252889Sbostic int	asc_debug = 1;
16352889Sbostic int	asc_debug_cmd;
16452889Sbostic int	asc_debug_bn;
16552889Sbostic int	asc_debug_sz;
16658658Sralph #define NLOG 32
16752889Sbostic struct asc_log {
16852889Sbostic 	u_int	status;
16952889Sbostic 	u_char	state;
17052889Sbostic 	u_char	msg;
17152889Sbostic 	int	target;
17258658Sralph 	int	resid;
17352889Sbostic } asc_log[NLOG], *asc_logp = asc_log;
17452889Sbostic #define PACK(unit, status, ss, ir) \
17552889Sbostic 	((unit << 24) | (status << 16) | (ss << 8) | ir)
17652889Sbostic #endif
17752889Sbostic 
17852889Sbostic /*
17952889Sbostic  * Scripts are entries in a state machine table.
18052889Sbostic  * A script has four parts: a pre-condition, an action, a command to the chip,
18152889Sbostic  * and an index into asc_scripts for the next state. The first triggers error
18252889Sbostic  * handling if not satisfied and in our case it is formed by the
18352889Sbostic  * values of the interrupt register and status register, this
18452889Sbostic  * basically captures the phase of the bus and the TC and BS
18552889Sbostic  * bits.  The action part is just a function pointer, and the
18652889Sbostic  * command is what the 53C94 should be told to do at the end
18752889Sbostic  * of the action processing.  This command is only issued and the
18852889Sbostic  * script proceeds if the action routine returns TRUE.
18952889Sbostic  * See asc_intr() for how and where this is all done.
19052889Sbostic  */
19152889Sbostic typedef struct script {
19252889Sbostic 	int		condition;	/* expected state at interrupt time */
19352889Sbostic 	int		(*action)();	/* extra operations */
19452889Sbostic 	int		command;	/* command to the chip */
19552889Sbostic 	struct script	*next;		/* index into asc_scripts for next state */
19652889Sbostic } script_t;
19752889Sbostic 
19852889Sbostic /* Matching on the condition value */
19958658Sralph #define	SCRIPT_MATCH(ir, csr)		((ir) | (((csr) & 0x67) << 8))
20052889Sbostic 
20152889Sbostic /* forward decls of script actions */
20256819Sralph static int script_nop();		/* when nothing needed */
20356819Sralph static int asc_end();			/* all come to an end */
20456819Sralph static int asc_get_status();		/* get status from target */
20556819Sralph static int asc_dma_in();		/* start reading data from target */
20656819Sralph static int asc_last_dma_in();		/* cleanup after all data is read */
20756819Sralph static int asc_resume_in();		/* resume data in after a message */
20856819Sralph static int asc_resume_dma_in();		/* resume DMA after a disconnect */
20956819Sralph static int asc_dma_out();		/* send data to target via dma */
21056819Sralph static int asc_last_dma_out();		/* cleanup after all data is written */
21156819Sralph static int asc_resume_out();		/* resume data out after a message */
21256819Sralph static int asc_resume_dma_out();	/* resume DMA after a disconnect */
21356819Sralph static int asc_sendsync();		/* negotiate sync xfer */
21456819Sralph static int asc_replysync();		/* negotiate sync xfer */
21556819Sralph static int asc_msg_in();		/* process a message byte */
21656819Sralph static int asc_disconnect();		/* process an expected disconnect */
21752889Sbostic 
21852889Sbostic /* Define the index into asc_scripts for various state transitions */
21952889Sbostic #define	SCRIPT_DATA_IN		0
22052942Sralph #define	SCRIPT_CONTINUE_IN	2
22152942Sralph #define	SCRIPT_DATA_OUT		3
22252942Sralph #define	SCRIPT_CONTINUE_OUT	5
22352942Sralph #define	SCRIPT_SIMPLE		6
22452942Sralph #define	SCRIPT_GET_STATUS	7
22552942Sralph #define	SCRIPT_MSG_IN		9
22652942Sralph #define	SCRIPT_REPLY_SYNC	11
22752889Sbostic #define	SCRIPT_TRY_SYNC		12
22852942Sralph #define	SCRIPT_DISCONNECT	15
22952942Sralph #define	SCRIPT_RESEL		16
23052942Sralph #define	SCRIPT_RESUME_IN	17
23152942Sralph #define	SCRIPT_RESUME_DMA_IN	18
23252942Sralph #define	SCRIPT_RESUME_OUT	19
23352942Sralph #define	SCRIPT_RESUME_DMA_OUT	20
23452942Sralph #define	SCRIPT_RESUME_NO_DATA	21
23552889Sbostic 
23652889Sbostic /*
23752889Sbostic  * Scripts
23852889Sbostic  */
23952889Sbostic script_t asc_scripts[] = {
24052942Sralph 	/* start data in */
24152889Sbostic 	{SCRIPT_MATCH(ASC_INT_FC | ASC_INT_BS, ASC_PHASE_DATAI),	/*  0 */
24252889Sbostic 		asc_dma_in, ASC_CMD_XFER_INFO | ASC_CMD_DMA,
24352942Sralph 		&asc_scripts[SCRIPT_DATA_IN + 1]},
24452889Sbostic 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_STATUS),			/*  1 */
24552889Sbostic 		asc_last_dma_in, ASC_CMD_I_COMPLETE,
24652942Sralph 		&asc_scripts[SCRIPT_GET_STATUS]},
24752889Sbostic 
24858570Sralph 	/* continue data in after a chunk is finished */
24952942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_DATAI),			/*  2 */
25052942Sralph 		asc_dma_in, ASC_CMD_XFER_INFO | ASC_CMD_DMA,
25152942Sralph 		&asc_scripts[SCRIPT_DATA_IN + 1]},
25252942Sralph 
25352942Sralph 	/* start data out */
25452942Sralph 	{SCRIPT_MATCH(ASC_INT_FC | ASC_INT_BS, ASC_PHASE_DATAO),	/*  3 */
25552889Sbostic 		asc_dma_out, ASC_CMD_XFER_INFO | ASC_CMD_DMA,
25652942Sralph 		&asc_scripts[SCRIPT_DATA_OUT + 1]},
25752942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_STATUS),			/*  4 */
25852889Sbostic 		asc_last_dma_out, ASC_CMD_I_COMPLETE,
25952942Sralph 		&asc_scripts[SCRIPT_GET_STATUS]},
26052889Sbostic 
26158570Sralph 	/* continue data out after a chunk is finished */
26252942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_DATAO),			/*  5 */
26352942Sralph 		asc_dma_out, ASC_CMD_XFER_INFO | ASC_CMD_DMA,
26452942Sralph 		&asc_scripts[SCRIPT_DATA_OUT + 1]},
26552942Sralph 
26652889Sbostic 	/* simple command with no data transfer */
26752942Sralph 	{SCRIPT_MATCH(ASC_INT_FC | ASC_INT_BS, ASC_PHASE_STATUS),	/*  6 */
26852889Sbostic 		script_nop, ASC_CMD_I_COMPLETE,
26952942Sralph 		&asc_scripts[SCRIPT_GET_STATUS]},
27052889Sbostic 
27152889Sbostic 	/* get status and finish command */
27252942Sralph 	{SCRIPT_MATCH(ASC_INT_FC, ASC_PHASE_MSG_IN),			/*  7 */
27352889Sbostic 		asc_get_status, ASC_CMD_MSG_ACPT,
27452942Sralph 		&asc_scripts[SCRIPT_GET_STATUS + 1]},
27552942Sralph 	{SCRIPT_MATCH(ASC_INT_DISC, 0),					/*  8 */
27652889Sbostic 		asc_end, ASC_CMD_NOP,
27752942Sralph 		&asc_scripts[SCRIPT_GET_STATUS + 1]},
27852889Sbostic 
27952889Sbostic 	/* message in */
28052942Sralph 	{SCRIPT_MATCH(ASC_INT_FC, ASC_PHASE_MSG_IN),			/*  9 */
28152942Sralph 		asc_msg_in, ASC_CMD_MSG_ACPT,
28252942Sralph 		&asc_scripts[SCRIPT_MSG_IN + 1]},
28352942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_MSG_IN),			/* 10 */
28452889Sbostic 		script_nop, ASC_CMD_XFER_INFO,
28552942Sralph 		&asc_scripts[SCRIPT_MSG_IN]},
28652889Sbostic 
28752889Sbostic 	/* send synchonous negotiation reply */
28852942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_MSG_OUT),			/* 11 */
28952889Sbostic 		asc_replysync, ASC_CMD_XFER_INFO,
29052942Sralph 		&asc_scripts[SCRIPT_REPLY_SYNC]},
29152889Sbostic 
29252889Sbostic 	/* try to negotiate synchonous transfer parameters */
29352889Sbostic 	{SCRIPT_MATCH(ASC_INT_FC | ASC_INT_BS, ASC_PHASE_MSG_OUT),	/* 12 */
29452889Sbostic 		asc_sendsync, ASC_CMD_XFER_INFO,
29553080Sralph 		&asc_scripts[SCRIPT_TRY_SYNC + 1]},
29653080Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_MSG_IN),			/* 13 */
29752889Sbostic 		script_nop, ASC_CMD_XFER_INFO,
29853080Sralph 		&asc_scripts[SCRIPT_MSG_IN]},
29953080Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_COMMAND),			/* 14 */
30053080Sralph 		script_nop, ASC_CMD_XFER_INFO | ASC_CMD_DMA,
30153080Sralph 		&asc_scripts[SCRIPT_RESUME_NO_DATA]},
30252889Sbostic 
30352942Sralph 	/* handle a disconnect */
30452942Sralph 	{SCRIPT_MATCH(ASC_INT_DISC, ASC_PHASE_DATAO),			/* 15 */
30552942Sralph 		asc_disconnect, ASC_CMD_ENABLE_SEL,
30652942Sralph 		&asc_scripts[SCRIPT_RESEL]},
30752942Sralph 
30852889Sbostic 	/* reselect sequence: this is just a placeholder so match fails */
30952942Sralph 	{SCRIPT_MATCH(0, ASC_PHASE_MSG_IN),				/* 16 */
31052889Sbostic 		script_nop, ASC_CMD_MSG_ACPT,
31152942Sralph 		&asc_scripts[SCRIPT_RESEL]},
31252889Sbostic 
31352942Sralph 	/* resume data in after a message */
31452942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_DATAI),			/* 17 */
31552942Sralph 		asc_resume_in, ASC_CMD_XFER_INFO | ASC_CMD_DMA,
31652942Sralph 		&asc_scripts[SCRIPT_DATA_IN + 1]},
31752942Sralph 
31852942Sralph 	/* resume partial DMA data in after a message */
31952942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_DATAI),			/* 18 */
32052889Sbostic 		asc_resume_dma_in, ASC_CMD_XFER_INFO | ASC_CMD_DMA,
32152942Sralph 		&asc_scripts[SCRIPT_DATA_IN + 1]},
32252889Sbostic 
32352942Sralph 	/* resume data out after a message */
32452942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_DATAO),			/* 19 */
32552942Sralph 		asc_resume_out, ASC_CMD_XFER_INFO | ASC_CMD_DMA,
32652942Sralph 		&asc_scripts[SCRIPT_DATA_OUT + 1]},
32752942Sralph 
32852942Sralph 	/* resume partial DMA data out after a message */
32952942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_DATAO),			/* 20 */
33052889Sbostic 		asc_resume_dma_out, ASC_CMD_XFER_INFO | ASC_CMD_DMA,
33152942Sralph 		&asc_scripts[SCRIPT_DATA_OUT + 1]},
33252942Sralph 
33352942Sralph 	/* resume after a message when there is no more data */
33452942Sralph 	{SCRIPT_MATCH(ASC_INT_BS, ASC_PHASE_STATUS),			/* 21 */
33552942Sralph 		script_nop, ASC_CMD_I_COMPLETE,
33652942Sralph 		&asc_scripts[SCRIPT_GET_STATUS]},
33752889Sbostic };
33852889Sbostic 
33952889Sbostic /*
34052889Sbostic  * State kept for each active SCSI device.
34152889Sbostic  */
34252889Sbostic typedef struct scsi_state {
34352889Sbostic 	script_t *script;	/* saved script while processing error */
34452889Sbostic 	int	statusByte;	/* status byte returned during STATUS_PHASE */
34552889Sbostic 	int	error;		/* errno to pass back to device driver */
34652889Sbostic 	u_char	*dmaBufAddr;	/* DMA buffer address */
34752889Sbostic 	u_int	dmaBufSize;	/* DMA buffer size */
34852889Sbostic 	int	dmalen;		/* amount to transfer in this chunk */
34952889Sbostic 	int	dmaresid;	/* amount not transfered if chunk suspended */
35052889Sbostic 	int	buflen;		/* total remaining amount of data to transfer */
35152889Sbostic 	char	*buf;		/* current pointer within scsicmd->buf */
35252889Sbostic 	int	flags;		/* see below */
35352889Sbostic 	int	msglen;		/* number of message bytes to read */
35452889Sbostic 	int	msgcnt;		/* number of message bytes received */
35552889Sbostic 	u_char	sync_period;	/* DMA synchronous period */
35652889Sbostic 	u_char	sync_offset;	/* DMA synchronous xfer offset or 0 if async */
35752889Sbostic 	u_char	msg_out;	/* next MSG_OUT byte to send */
35852889Sbostic 	u_char	msg_in[16];	/* buffer for multibyte messages */
35952889Sbostic } State;
36052889Sbostic 
36152889Sbostic /* state flags */
36252889Sbostic #define DISCONN		0x01	/* true if currently disconnected from bus */
36353080Sralph #define DMA_IN_PROGRESS	0x02	/* true if data DMA started */
36452889Sbostic #define DMA_IN		0x04	/* true if reading from SCSI device */
36552889Sbostic #define DMA_OUT		0x10	/* true if writing to SCSI device */
36652889Sbostic #define DID_SYNC	0x20	/* true if synchronous offset was negotiated */
36752889Sbostic #define TRY_SYNC	0x40	/* true if try neg. synchronous offset */
36858658Sralph #define PARITY_ERR	0x80	/* true if parity error seen */
36952889Sbostic 
37052889Sbostic /*
37152889Sbostic  * State kept for each active SCSI host interface (53C94).
37252889Sbostic  */
37352889Sbostic struct asc_softc {
37452889Sbostic 	asc_regmap_t	*regs;		/* chip address */
37552889Sbostic 	volatile int	*dmar;		/* DMA address register address */
37656819Sralph 	u_char		*buff;		/* RAM buffer address (uncached) */
37752889Sbostic 	int		myid;		/* SCSI ID of this interface */
37852889Sbostic 	int		myidmask;	/* ~(1 << myid) */
37952889Sbostic 	int		state;		/* current SCSI connection state */
38052889Sbostic 	int		target;		/* target SCSI ID if busy */
38152889Sbostic 	script_t	*script;	/* next expected interrupt & action */
38252889Sbostic 	ScsiCmd		*cmd[ASC_NCMD];	/* active command indexed by SCSI ID */
38352889Sbostic 	State		st[ASC_NCMD];	/* state info for each active command */
38456819Sralph 	void		(*dma_start)();	/* Start dma routine */
38556819Sralph 	void		(*dma_end)();	/* End dma routine */
38656819Sralph 	u_char		*dma_next;
38756819Sralph 	int		dma_xfer;	/* Dma len still to go */
38856819Sralph 	int		min_period;	/* Min transfer period clk/byte */
38956819Sralph 	int		max_period;	/* Max transfer period clk/byte */
39056819Sralph 	int		ccf;		/* CCF, whatever that really is? */
39156819Sralph 	int		timeout_250;	/* 250ms timeout */
39256819Sralph 	int		tb_ticks;	/* 4ns. ticks/tb channel ticks */
39352889Sbostic } asc_softc[NASC];
39452889Sbostic 
39552889Sbostic #define	ASC_STATE_IDLE		0	/* idle state */
39652889Sbostic #define	ASC_STATE_BUSY		1	/* selecting or currently connected */
39752889Sbostic #define ASC_STATE_TARGET	2	/* currently selected as target */
39852889Sbostic #define ASC_STATE_RESEL		3	/* currently waiting for reselect */
39952889Sbostic 
40052889Sbostic typedef struct asc_softc *asc_softc_t;
40152889Sbostic 
40252889Sbostic /*
40356819Sralph  * Dma operations.
40456819Sralph  */
40556819Sralph #define	ASCDMA_READ	1
40656819Sralph #define	ASCDMA_WRITE	2
40756819Sralph static void tb_dma_start(), tb_dma_end(), asic_dma_start(), asic_dma_end();
40857233Sralph extern u_long asc_iomem;
40957233Sralph extern u_long asic_base;
41056819Sralph 
41156819Sralph /*
41252889Sbostic  * Definition of the controller for the auto-configuration program.
41352889Sbostic  */
41452889Sbostic int	asc_probe();
41552889Sbostic void	asc_start();
41652889Sbostic void	asc_intr();
41752889Sbostic struct	driver ascdriver = {
41852889Sbostic 	"asc", asc_probe, asc_start, 0, asc_intr,
41952889Sbostic };
42052889Sbostic 
42152889Sbostic /*
42252889Sbostic  * Test to see if device is present.
42352889Sbostic  * Return true if found and initialized ok.
42452889Sbostic  */
42552889Sbostic asc_probe(cp)
42652889Sbostic 	register struct pmax_ctlr *cp;
42752889Sbostic {
42852889Sbostic 	register asc_softc_t asc;
42952889Sbostic 	register asc_regmap_t *regs;
43052889Sbostic 	int unit, id, s, i;
43157233Sralph 	int bufsiz;
43252889Sbostic 
43352889Sbostic 	if ((unit = cp->pmax_unit) >= NASC)
43452889Sbostic 		return (0);
43552889Sbostic 	if (badaddr(cp->pmax_addr + ASC_OFFSET_53C94, 1))
43652889Sbostic 		return (0);
43752889Sbostic 	asc = &asc_softc[unit];
43852889Sbostic 
43952889Sbostic 	/*
44052889Sbostic 	 * Initialize hw descriptor, cache some pointers
44152889Sbostic 	 */
44252889Sbostic 	asc->regs = (asc_regmap_t *)(cp->pmax_addr + ASC_OFFSET_53C94);
44352889Sbostic 
44456819Sralph 	/*
44556819Sralph 	 * Set up machine dependencies.
44656819Sralph 	 * 1) how to do dma
44756819Sralph 	 * 2) timing based on turbochannel frequency
44856819Sralph 	 */
44956819Sralph 	switch (pmax_boardtype) {
45056819Sralph 	case DS_3MIN:
45156819Sralph 	case DS_MAXINE:
45257233Sralph 	case DS_3MAXPLUS:
45356819Sralph 	    if (unit == 0) {
45457233Sralph 		asc->buff = (u_char *)MACH_PHYS_TO_UNCACHED(asc_iomem);
45557233Sralph 		bufsiz = 8192;
45657233Sralph 		*((volatile int *)ASIC_REG_SCSI_DMAPTR(asic_base)) = -1;
45757233Sralph 		*((volatile int *)ASIC_REG_SCSI_DMANPTR(asic_base)) = -1;
45857233Sralph 		*((volatile int *)ASIC_REG_SCSI_SCR(asic_base)) = 0;
45956819Sralph 		asc->dma_start = asic_dma_start;
46056819Sralph 		asc->dma_end = asic_dma_end;
46156819Sralph 		break;
46256819Sralph 	    }
46356819Sralph 	    /*
46456819Sralph 	     * Fall through for turbochannel option.
46556819Sralph 	     */
46656819Sralph 	case DS_3MAX:
46756819Sralph 	default:
46856819Sralph 	    asc->dmar = (volatile int *)(cp->pmax_addr + ASC_OFFSET_DMAR);
46956819Sralph 	    asc->buff = (u_char *)(cp->pmax_addr + ASC_OFFSET_RAM);
47057233Sralph 	    bufsiz = PER_TGT_DMA_SIZE;
47156819Sralph 	    asc->dma_start = tb_dma_start;
47256819Sralph 	    asc->dma_end = tb_dma_end;
47356819Sralph 	};
47456819Sralph 	/*
47556819Sralph 	 * Now for timing. The 3max has a 25Mhz tb whereas the 3min and
47656819Sralph 	 * maxine are 12.5Mhz.
47756819Sralph 	 */
47856819Sralph 	switch (pmax_boardtype) {
47956819Sralph 	case DS_3MAX:
48057233Sralph 	case DS_3MAXPLUS:
48156819Sralph 		asc->min_period = ASC_MIN_PERIOD25;
48256819Sralph 		asc->max_period = ASC_MAX_PERIOD25;
48356819Sralph 		asc->ccf = ASC_CCF(25);
48456819Sralph 		asc->timeout_250 = ASC_TIMEOUT_250(25, asc->ccf);
48556819Sralph 		asc->tb_ticks = 10;
48656819Sralph 		break;
48756819Sralph 	case DS_3MIN:
48856819Sralph 	case DS_MAXINE:
48956819Sralph 	default:
49056819Sralph 		asc->min_period = ASC_MIN_PERIOD12;
49156819Sralph 		asc->max_period = ASC_MAX_PERIOD12;
49256819Sralph 		asc->ccf = ASC_CCF(13);
49356819Sralph 		asc->timeout_250 = ASC_TIMEOUT_250(13, asc->ccf);
49456819Sralph 		asc->tb_ticks = 20;
49556819Sralph 		break;
49656819Sralph 	};
49756819Sralph 
49852889Sbostic 	asc->state = ASC_STATE_IDLE;
49952889Sbostic 	asc->target = -1;
50052889Sbostic 
50152889Sbostic 	regs = asc->regs;
50252889Sbostic 
50352889Sbostic 	/*
50452889Sbostic 	 * Reset chip, fully.  Note that interrupts are already enabled.
50552889Sbostic 	 */
50652889Sbostic 	s = splbio();
50752889Sbostic 
50852889Sbostic 	/* preserve our ID for now */
50952889Sbostic 	asc->myid = regs->asc_cnfg1 & ASC_CNFG1_MY_BUS_ID;
51052889Sbostic 	asc->myidmask = ~(1 << asc->myid);
51152889Sbostic 
51252889Sbostic 	asc_reset(asc, regs);
51352889Sbostic 
51452889Sbostic 	/*
51552889Sbostic 	 * Our SCSI id on the bus.
51652889Sbostic 	 * The user can set this via the prom on 3maxen/pmaxen.
51752889Sbostic 	 * If this changes it is easy to fix: make a default that
51852889Sbostic 	 * can be changed as boot arg.
51952889Sbostic 	 */
52052889Sbostic #ifdef	unneeded
52152889Sbostic 	regs->asc_cnfg1 = (regs->asc_cnfg1 & ~ASC_CNFG1_MY_BUS_ID) |
52252889Sbostic 			      (scsi_initiator_id[unit] & 0x7);
52352889Sbostic #endif
52452889Sbostic 	id = regs->asc_cnfg1 & ASC_CNFG1_MY_BUS_ID;
52552889Sbostic 	splx(s);
52652889Sbostic 
52752889Sbostic 	/*
52852889Sbostic 	 * Statically partition the DMA buffer between targets.
52952889Sbostic 	 * This way we will eventually be able to attach/detach
53052889Sbostic 	 * drives on-fly.  And 18k/target is plenty for normal use.
53152889Sbostic 	 */
53252889Sbostic 
53352889Sbostic 	/*
53452889Sbostic 	 * Give each target its own DMA buffer region.
53552889Sbostic 	 * We may want to try ping ponging buffers later.
53652889Sbostic 	 */
53752889Sbostic 	for (i = 0; i < ASC_NCMD; i++) {
53857233Sralph 		asc->st[i].dmaBufAddr = asc->buff + bufsiz * i;
53957233Sralph 		asc->st[i].dmaBufSize = bufsiz;
54052889Sbostic 	}
54152889Sbostic 	printf("asc%d at nexus0 csr 0x%x priority %d SCSI id %d\n",
54252889Sbostic 		unit, cp->pmax_addr, cp->pmax_pri, id);
54352889Sbostic 	return (1);
54452889Sbostic }
54552889Sbostic 
54652889Sbostic /*
54752889Sbostic  * Start activity on a SCSI device.
54852889Sbostic  * We maintain information on each device separately since devices can
54952889Sbostic  * connect/disconnect during an operation.
55052889Sbostic  */
55152889Sbostic void
55252889Sbostic asc_start(scsicmd)
55352889Sbostic 	register ScsiCmd *scsicmd;	/* command to start */
55452889Sbostic {
55552889Sbostic 	register struct scsi_device *sdp = scsicmd->sd;
55652889Sbostic 	register asc_softc_t asc = &asc_softc[sdp->sd_ctlr];
55752889Sbostic 	int s;
55852889Sbostic 
55952889Sbostic 	s = splbio();
56052889Sbostic 	/*
56152889Sbostic 	 * Check if another command is already in progress.
56252889Sbostic 	 * We may have to change this if we allow SCSI devices with
56352889Sbostic 	 * separate LUNs.
56452889Sbostic 	 */
56552889Sbostic 	if (asc->cmd[sdp->sd_drive]) {
56652889Sbostic 		printf("asc%d: device %s busy at start\n", sdp->sd_ctlr,
56752889Sbostic 			sdp->sd_driver->d_name);
56852889Sbostic 		(*sdp->sd_driver->d_done)(scsicmd->unit, EBUSY,
56952889Sbostic 			scsicmd->buflen, 0);
57052889Sbostic 		splx(s);
57152889Sbostic 	}
57252889Sbostic 	asc->cmd[sdp->sd_drive] = scsicmd;
57352889Sbostic 	asc_startcmd(asc, sdp->sd_drive);
57452889Sbostic 	splx(s);
57552889Sbostic }
57652889Sbostic 
57752889Sbostic static void
57852889Sbostic asc_reset(asc, regs)
57952889Sbostic 	asc_softc_t asc;
58052889Sbostic 	asc_regmap_t *regs;
58152889Sbostic {
58252889Sbostic 
58352889Sbostic 	/*
58452889Sbostic 	 * Reset chip and wait till done
58552889Sbostic 	 */
58652889Sbostic 	regs->asc_cmd = ASC_CMD_RESET;
58752889Sbostic 	MachEmptyWriteBuffer(); DELAY(25);
58852889Sbostic 
58952889Sbostic 	/* spec says this is needed after reset */
59052889Sbostic 	regs->asc_cmd = ASC_CMD_NOP;
59152889Sbostic 	MachEmptyWriteBuffer(); DELAY(25);
59252889Sbostic 
59352889Sbostic 	/*
59452889Sbostic 	 * Set up various chip parameters
59552889Sbostic 	 */
59656819Sralph 	regs->asc_ccf = asc->ccf;
59752889Sbostic 	MachEmptyWriteBuffer(); DELAY(25);
59856819Sralph 	regs->asc_sel_timo = asc->timeout_250;
59952889Sbostic 	/* restore our ID */
60052889Sbostic 	regs->asc_cnfg1 = asc->myid | ASC_CNFG1_P_CHECK;
60157233Sralph 	/* include ASC_CNFG2_SCSI2 if you want to allow SCSI II commands */
60257233Sralph 	regs->asc_cnfg2 = /* ASC_CNFG2_RFB | ASC_CNFG2_SCSI2 | */ ASC_CNFG2_EPL;
60352889Sbostic 	regs->asc_cnfg3 = 0;
60452889Sbostic 	/* zero anything else */
60552889Sbostic 	ASC_TC_PUT(regs, 0);
60656819Sralph 	regs->asc_syn_p = asc->min_period;
60752889Sbostic 	regs->asc_syn_o = 0;	/* async for now */
60852889Sbostic 	MachEmptyWriteBuffer();
60952889Sbostic }
61052889Sbostic 
61152889Sbostic /*
61252889Sbostic  * Start a SCSI command on a target.
61352889Sbostic  */
61452889Sbostic static void
61552889Sbostic asc_startcmd(asc, target)
61652889Sbostic 	asc_softc_t asc;
61752889Sbostic 	int target;
61852889Sbostic {
61952889Sbostic 	register asc_regmap_t *regs;
62052889Sbostic 	register ScsiCmd *scsicmd;
62152889Sbostic 	register State *state;
62252889Sbostic 	int len;
62352889Sbostic 
62452889Sbostic 	/*
62552889Sbostic 	 * See if another target is currently selected on this SCSI bus.
62652889Sbostic 	 */
62752889Sbostic 	if (asc->target >= 0)
62852889Sbostic 		return;
62952889Sbostic 
63052889Sbostic 	regs = asc->regs;
63152889Sbostic 
63252889Sbostic 	/*
63358658Sralph 	 * If a reselection is in progress, it is Ok to ignore it since
63458658Sralph 	 * the ASC will automatically cancel the command and flush
63558658Sralph 	 * the FIFO if the ASC is reselected before the command starts.
63658658Sralph 	 * If we try to use ASC_CMD_DISABLE_SEL, we can hang the system if
63758658Sralph 	 * a reselect occurs before starting the command.
63852889Sbostic 	 */
63952889Sbostic 
64052889Sbostic 	asc->state = ASC_STATE_BUSY;
64152889Sbostic 	asc->target = target;
64252889Sbostic 
64352889Sbostic 	/* cache some pointers */
64452889Sbostic 	scsicmd = asc->cmd[target];
64552889Sbostic 	state = &asc->st[target];
64652889Sbostic 
64752889Sbostic #ifdef DEBUG
64852889Sbostic 	if (asc_debug > 1) {
64952889Sbostic 		printf("asc_startcmd: %s target %d cmd %x len %d\n",
65052889Sbostic 			scsicmd->sd->sd_driver->d_name, target,
65152889Sbostic 			scsicmd->cmd[0], scsicmd->buflen);
65252889Sbostic 	}
65352889Sbostic #endif
65452889Sbostic 
65552889Sbostic 	/*
65652889Sbostic 	 * Init the chip and target state.
65752889Sbostic 	 */
65853080Sralph 	state->flags = state->flags & DID_SYNC;
65952889Sbostic 	state->error = 0;
66052889Sbostic 	state->script = (script_t *)0;
66152889Sbostic 	state->msg_out = SCSI_NO_OP;
66252889Sbostic 
66352889Sbostic 	/*
66452889Sbostic 	 * Copy command data to the DMA buffer.
66552889Sbostic 	 */
666*58792Sralph 	len = scsicmd->cmdlen + 1;
66752889Sbostic 	state->dmalen = len;
668*58792Sralph 	state->dmaBufAddr[0] = SCSI_DIS_REC_IDENTIFY;
669*58792Sralph 	bcopy(scsicmd->cmd, state->dmaBufAddr + 1, len);
67052889Sbostic 
67152889Sbostic 	/* check for simple SCSI command with no data transfer */
67252889Sbostic 	if ((state->buflen = scsicmd->buflen) == 0) {
67352889Sbostic 		/* check for sync negotiation */
67452889Sbostic 		if ((scsicmd->flags & SCSICMD_USE_SYNC) &&
67552889Sbostic 		    !(state->flags & DID_SYNC)) {
67652889Sbostic 			asc->script = &asc_scripts[SCRIPT_TRY_SYNC];
67752889Sbostic 			state->flags |= TRY_SYNC;
67852889Sbostic 		} else
67952889Sbostic 			asc->script = &asc_scripts[SCRIPT_SIMPLE];
68052889Sbostic 		state->buf = (char *)0;
68152889Sbostic 	} else if (scsicmd->flags & SCSICMD_DATA_TO_DEVICE) {
68252889Sbostic 		asc->script = &asc_scripts[SCRIPT_DATA_OUT];
68353080Sralph 		state->buf = scsicmd->buf;
68452889Sbostic 		state->flags |= DMA_OUT;
68552889Sbostic 	} else {
68652889Sbostic 		asc->script = &asc_scripts[SCRIPT_DATA_IN];
68752889Sbostic 		state->buf = scsicmd->buf;
68852889Sbostic 		state->flags |= DMA_IN;
68952889Sbostic 	}
69052889Sbostic 
691*58792Sralph #ifdef DEBUG
692*58792Sralph 	asc_debug_cmd = scsicmd->cmd[0];
693*58792Sralph 	if (scsicmd->cmd[0] == SCSI_READ_EXT) {
694*58792Sralph 		asc_debug_bn = (scsicmd->cmd[2] << 24) |
695*58792Sralph 			(scsicmd->cmd[3] << 16) |
696*58792Sralph 			(scsicmd->cmd[4] << 8) |
697*58792Sralph 			scsicmd->cmd[5];
698*58792Sralph 		asc_debug_sz = (scsicmd->cmd[7] << 8) | scsicmd->cmd[8];
699*58792Sralph 	}
700*58792Sralph 	asc_logp->status = PACK(asc - asc_softc, 0, 0, asc_debug_cmd);
701*58792Sralph 	asc_logp->target = asc->target;
702*58792Sralph 	asc_logp->state = asc->script - asc_scripts;
703*58792Sralph 	asc_logp->msg = SCSI_DIS_REC_IDENTIFY;
704*58792Sralph 	asc_logp->resid = scsicmd->buflen;
705*58792Sralph 	if (++asc_logp >= &asc_log[NLOG])
706*58792Sralph 		asc_logp = asc_log;
707*58792Sralph #endif
70852889Sbostic 
709*58792Sralph 	/* initialize the DMA */
71056819Sralph 	(*asc->dma_start)(asc, state, state->dmaBufAddr, ASCDMA_WRITE);
71152889Sbostic 	ASC_TC_PUT(regs, len);
71256819Sralph 	readback(regs->asc_cmd);
71352889Sbostic 
71452889Sbostic 	regs->asc_dbus_id = target;
71556819Sralph 	readback(regs->asc_dbus_id);
71652889Sbostic 	regs->asc_syn_p = state->sync_period;
71756819Sralph 	readback(regs->asc_syn_p);
71852889Sbostic 	regs->asc_syn_o = state->sync_offset;
71956819Sralph 	readback(regs->asc_syn_o);
72052889Sbostic 
72152889Sbostic 	if (state->flags & TRY_SYNC)
72253080Sralph 		regs->asc_cmd = ASC_CMD_SEL_ATN_STOP;
72352889Sbostic 	else
72452889Sbostic 		regs->asc_cmd = ASC_CMD_SEL_ATN | ASC_CMD_DMA;
72556819Sralph 	readback(regs->asc_cmd);
72652889Sbostic }
72752889Sbostic 
72852889Sbostic /*
72952889Sbostic  * Interrupt routine
73052889Sbostic  *	Take interrupts from the chip
73152889Sbostic  *
73252889Sbostic  * Implementation:
73352889Sbostic  *	Move along the current command's script if
73452889Sbostic  *	all is well, invoke error handler if not.
73552889Sbostic  */
73652889Sbostic void
73752889Sbostic asc_intr(unit)
73852889Sbostic 	int unit;
73952889Sbostic {
74052889Sbostic 	register asc_softc_t asc = &asc_softc[unit];
74152889Sbostic 	register asc_regmap_t *regs = asc->regs;
74252889Sbostic 	register State *state;
74352889Sbostic 	register script_t *scpt;
74452889Sbostic 	register int ss, ir, status;
74552889Sbostic 
74652889Sbostic 	/* collect ephemeral information */
74752889Sbostic 	status = regs->asc_status;
74853080Sralph again:
74952889Sbostic 	ss = regs->asc_ss;
75052889Sbostic 	ir = regs->asc_intr;	/* this resets the previous two */
75152889Sbostic 	scpt = asc->script;
75252889Sbostic 
75352889Sbostic #ifdef DEBUG
75452889Sbostic 	asc_logp->status = PACK(unit, status, ss, ir);
75552889Sbostic 	asc_logp->target = (asc->state == ASC_STATE_BUSY) ? asc->target : -1;
75652889Sbostic 	asc_logp->state = scpt - asc_scripts;
75752889Sbostic 	asc_logp->msg = -1;
75858658Sralph 	asc_logp->resid = 0;
75952889Sbostic 	if (++asc_logp >= &asc_log[NLOG])
76052889Sbostic 		asc_logp = asc_log;
76152889Sbostic 	if (asc_debug > 2)
76252889Sbostic 		printf("asc_intr: status %x ss %x ir %x cond %d:%x\n",
76352889Sbostic 			status, ss, ir, scpt - asc_scripts, scpt->condition);
76452889Sbostic #endif
76552889Sbostic 
76652889Sbostic 	/* check the expected state */
76752889Sbostic 	if (SCRIPT_MATCH(ir, status) == scpt->condition) {
76852889Sbostic 		/*
76952889Sbostic 		 * Perform the appropriate operation, then proceed.
77052889Sbostic 		 */
77152889Sbostic 		if ((*scpt->action)(asc, status, ss, ir)) {
77252889Sbostic 			regs->asc_cmd = scpt->command;
77356819Sralph 			readback(regs->asc_cmd);
77452889Sbostic 			asc->script = scpt->next;
77552889Sbostic 		}
77652889Sbostic 		goto done;
77752889Sbostic 	}
77852889Sbostic 
77958658Sralph 	/*
78058658Sralph 	 * Check for parity error.
78158658Sralph 	 * Hardware will automatically set ATN
78258658Sralph 	 * to request the device for a MSG_OUT phase.
78358658Sralph 	 */
78458658Sralph 	if (status & ASC_CSR_PE) {
78558658Sralph 		printf("asc%d: SCSI device %d: incomming parity error seen\n",
78658658Sralph 			asc - asc_softc, asc->target);
78758658Sralph 		asc->st[asc->target].flags |= PARITY_ERR;
78858658Sralph 	}
78958658Sralph 
79058658Sralph 	/*
79158658Sralph 	 * Check for gross error.
79258658Sralph 	 * Probably a bug in a device driver.
79358658Sralph 	 */
79458658Sralph 	if (status & ASC_CSR_GE) {
79558658Sralph 		printf("asc%d: SCSI device %d: gross error\n",
79658658Sralph 			asc - asc_softc, asc->target);
79758658Sralph 		goto abort;
79858658Sralph 	}
79958658Sralph 
80052889Sbostic 	/* check for message in or out */
80152889Sbostic 	if ((ir & ~ASC_INT_FC) == ASC_INT_BS) {
80252889Sbostic 		register int len, fifo;
80352889Sbostic 
80452889Sbostic 		state = &asc->st[asc->target];
80552889Sbostic 		switch (ASC_PHASE(status)) {
80653080Sralph 		case ASC_PHASE_DATAI:
80753080Sralph 		case ASC_PHASE_DATAO:
80853080Sralph 			ASC_TC_GET(regs, len);
80953080Sralph 			fifo = regs->asc_flags & ASC_FLAGS_FIFO_CNT;
81053080Sralph 			printf("asc_intr: data overrun: buflen %d dmalen %d tc %d fifo %d\n",
81153080Sralph 				state->buflen, state->dmalen, len, fifo);
81253080Sralph 			goto abort;
81353080Sralph 
81452889Sbostic 		case ASC_PHASE_MSG_IN:
81552889Sbostic 			break;
81652889Sbostic 
81752889Sbostic 		case ASC_PHASE_MSG_OUT:
81858658Sralph 			/*
81958658Sralph 			 * Check for parity error.
82058658Sralph 			 * Hardware will automatically set ATN
82158658Sralph 			 * to request the device for a MSG_OUT phase.
82258658Sralph 			 */
82358658Sralph 			if (state->flags & PARITY_ERR) {
82458658Sralph 				state->flags &= ~PARITY_ERR;
82558658Sralph 				state->msg_out = SCSI_MESSAGE_PARITY_ERROR;
82658658Sralph 				/* reset message in counter */
82758658Sralph 				state->msglen = 0;
82858658Sralph 			} else
82958658Sralph 				state->msg_out = SCSI_NO_OP;
83052889Sbostic 			regs->asc_fifo = state->msg_out;
83152889Sbostic 			regs->asc_cmd = ASC_CMD_XFER_INFO;
83256819Sralph 			readback(regs->asc_cmd);
83352889Sbostic 			goto done;
83452889Sbostic 
83552889Sbostic 		case ASC_PHASE_STATUS:
83652889Sbostic 			/* probably an error in the SCSI command */
83752889Sbostic 			asc->script = &asc_scripts[SCRIPT_GET_STATUS];
83852889Sbostic 			regs->asc_cmd = ASC_CMD_I_COMPLETE;
83956819Sralph 			readback(regs->asc_cmd);
84052889Sbostic 			goto done;
84152889Sbostic 
84252889Sbostic 		default:
84352889Sbostic 			goto abort;
84452889Sbostic 		}
84552889Sbostic 
84652889Sbostic 		if (state->script)
84752889Sbostic 			goto abort;
84852889Sbostic 
84952889Sbostic 		/* check for DMA in progress */
85052889Sbostic 		ASC_TC_GET(regs, len);
85152889Sbostic 		fifo = regs->asc_flags & ASC_FLAGS_FIFO_CNT;
85252889Sbostic 		/* flush any data in the FIFO */
85352889Sbostic 		if (fifo) {
85453080Sralph 			if (state->flags & DMA_OUT)
85553080Sralph 				len += fifo;
85653080Sralph 			else if (state->flags & DMA_IN) {
85753080Sralph 				u_char *cp;
85853080Sralph 
85953080Sralph 				printf("asc_intr: IN: dmalen %d len %d fifo %d\n",
86053080Sralph 					state->dmalen, len, fifo); /* XXX */
86153080Sralph 				len += fifo;
86253080Sralph 				cp = state->dmaBufAddr + (state->dmalen - len);
86353080Sralph 				while (fifo-- > 0)
86453080Sralph 					*cp++ = regs->asc_fifo;
86553080Sralph 			} else
86653080Sralph 				printf("asc_intr: dmalen %d len %d fifo %d\n",
86753080Sralph 					state->dmalen, len, fifo); /* XXX */
86852889Sbostic 			regs->asc_cmd = ASC_CMD_FLUSH;
86956819Sralph 			readback(regs->asc_cmd);
87056819Sralph 			DELAY(2);
87152889Sbostic 		}
87252889Sbostic 		if (len) {
87352889Sbostic 			/* save number of bytes still to be sent or received */
87452889Sbostic 			state->dmaresid = len;
875*58792Sralph #ifdef DEBUG
876*58792Sralph 			if (asc_logp == asc_log)
877*58792Sralph 				asc_log[NLOG - 1].resid = len;
878*58792Sralph 			else
879*58792Sralph 				asc_logp[-1].resid = len;
880*58792Sralph #endif
88152889Sbostic 			/* setup state to resume to */
882*58792Sralph 			if (state->flags & DMA_IN) {
883*58792Sralph 				/*
884*58792Sralph 				 * Since the ASC_CNFG3_SRB bit of the
885*58792Sralph 				 * cnfg3 register bit is not set,
886*58792Sralph 				 * we just transferred an extra byte.
887*58792Sralph 				 * Since we can't resume on an odd byte
888*58792Sralph 				 * boundary, we copy the valid data out
889*58792Sralph 				 * and resume DMA at the start address.
890*58792Sralph 				 */
891*58792Sralph 				if (len & 1) {
892*58792Sralph 					printf("asc_intr: msg in len %d (fifo %d)\n",
893*58792Sralph 						len, fifo);
894*58792Sralph 					len = state->dmalen - len;
895*58792Sralph 					goto do_in;
896*58792Sralph 				}
89752889Sbostic 				state->script =
89852889Sbostic 					&asc_scripts[SCRIPT_RESUME_DMA_IN];
899*58792Sralph 			} else if (state->flags & DMA_OUT)
90052889Sbostic 				state->script =
90152889Sbostic 					&asc_scripts[SCRIPT_RESUME_DMA_OUT];
90252889Sbostic 			else
90352889Sbostic 				state->script = asc->script;
90452889Sbostic 		} else {
90552889Sbostic 			/* setup state to resume to */
90652942Sralph 			if (state->flags & DMA_IN) {
90753080Sralph 				if (state->flags & DMA_IN_PROGRESS) {
908*58792Sralph 					len = state->dmalen;
909*58792Sralph 				do_in:
91053080Sralph 					state->flags &= ~DMA_IN_PROGRESS;
91156819Sralph 					(*asc->dma_end)(asc, state, ASCDMA_READ);
91252942Sralph 					bcopy(state->dmaBufAddr, state->buf,
91352942Sralph 						len);
91452942Sralph 					state->buf += len;
91552942Sralph 					state->buflen -= len;
91653080Sralph 				}
91752942Sralph 				if (state->buflen)
91852942Sralph 					state->script =
91952942Sralph 					    &asc_scripts[SCRIPT_RESUME_IN];
92052942Sralph 				else
92152942Sralph 					state->script =
92252942Sralph 					    &asc_scripts[SCRIPT_RESUME_NO_DATA];
92352942Sralph 			} else if (state->flags & DMA_OUT) {
92452942Sralph 				/*
92552942Sralph 				 * If this is the last chunk, the next expected
92652942Sralph 				 * state is to get status.
92752942Sralph 				 */
92853080Sralph 				if (state->flags & DMA_IN_PROGRESS) {
92953080Sralph 					state->flags &= ~DMA_IN_PROGRESS;
93056819Sralph 					(*asc->dma_end)(asc, state, ASCDMA_WRITE);
93153080Sralph 					len = state->dmalen;
93253080Sralph 					state->buf += len;
93353080Sralph 					state->buflen -= len;
93453080Sralph 				}
93552942Sralph 				if (state->buflen)
93652942Sralph 					state->script =
93752942Sralph 					    &asc_scripts[SCRIPT_RESUME_OUT];
93852942Sralph 				else
93952942Sralph 					state->script =
94052942Sralph 					    &asc_scripts[SCRIPT_RESUME_NO_DATA];
94153080Sralph 			} else if (asc->script == &asc_scripts[SCRIPT_SIMPLE])
94253080Sralph 				state->script =
94358658Sralph 					&asc_scripts[SCRIPT_RESUME_NO_DATA];
94453080Sralph 			else
94552889Sbostic 				state->script = asc->script;
94652889Sbostic 		}
94752889Sbostic 
94852889Sbostic 		/* setup to receive a message */
94952889Sbostic 		asc->script = &asc_scripts[SCRIPT_MSG_IN];
95052889Sbostic 		state->msglen = 0;
95152889Sbostic 		regs->asc_cmd = ASC_CMD_XFER_INFO;
95256819Sralph 		readback(regs->asc_cmd);
95352889Sbostic 		goto done;
95452889Sbostic 	}
95552889Sbostic 
95652889Sbostic 	/* check for SCSI bus reset */
95752889Sbostic 	if (ir & ASC_INT_RESET) {
95852889Sbostic 		register int i;
95952889Sbostic 
96052889Sbostic 		printf("asc%d: SCSI bus reset!!\n", asc - asc_softc);
96152889Sbostic 		/* need to flush any pending commands */
96252889Sbostic 		for (i = 0; i < ASC_NCMD; i++) {
96352889Sbostic 			if (!asc->cmd[i])
96452889Sbostic 				continue;
96552889Sbostic 			asc->st[i].error = EIO;
96652889Sbostic 			asc_end(asc, 0, 0, 0);
96752889Sbostic 		}
96852889Sbostic 		/* rearbitrate synchronous offset */
96952889Sbostic 		for (i = 0; i < ASC_NCMD; i++) {
97052889Sbostic 			asc->st[i].sync_offset = 0;
97152889Sbostic 			asc->st[i].flags = 0;
97252889Sbostic 		}
97352889Sbostic 		asc->target = -1;
97452889Sbostic 		return;
97552889Sbostic 	}
97652889Sbostic 
97752889Sbostic 	/* check for command errors */
97852889Sbostic 	if (ir & ASC_INT_ILL)
97952889Sbostic 		goto abort;
98052889Sbostic 
98152889Sbostic 	/* check for disconnect */
98252889Sbostic 	if (ir & ASC_INT_DISC) {
98352889Sbostic 		state = &asc->st[asc->target];
98452889Sbostic 		switch (ASC_SS(ss)) {
98552889Sbostic 		case 0: /* device did not respond */
98658658Sralph 			/* check for one of the starting scripts */
98758658Sralph 			switch (asc->script - asc_scripts) {
98858658Sralph 			case SCRIPT_TRY_SYNC:
98958658Sralph 			case SCRIPT_SIMPLE:
99058658Sralph 			case SCRIPT_DATA_IN:
99158658Sralph 			case SCRIPT_DATA_OUT:
99258658Sralph 				if (regs->asc_flags & ASC_FLAGS_FIFO_CNT) {
99358658Sralph 					regs->asc_cmd = ASC_CMD_FLUSH;
99458658Sralph 					readback(regs->asc_cmd);
99558658Sralph 				}
99658658Sralph 				state->error = ENXIO;
99758658Sralph 				asc_end(asc, status, ss, ir);
99858658Sralph 				return;
99958658Sralph 			}
100058658Sralph 			/* FALLTHROUGH */
100152889Sbostic 
100252889Sbostic 		default:
100358658Sralph 			printf("asc%d: SCSI device %d: unexpected disconnect\n",
100458658Sralph 				asc - asc_softc, asc->target);
100557233Sralph 			/*
100657233Sralph 			 * On rare occasions my RZ24 does a disconnect during
100757233Sralph 			 * data in phase and the following seems to keep it
100857233Sralph 			 * happy.
100957233Sralph 			 * XXX Should a scsi disk ever do this??
101057233Sralph 			 */
101157233Sralph 			asc->script = &asc_scripts[SCRIPT_RESEL];
101257233Sralph 			asc->state = ASC_STATE_RESEL;
101357233Sralph 			state->flags |= DISCONN;
101457233Sralph 			regs->asc_cmd = ASC_CMD_ENABLE_SEL;
101557233Sralph 			readback(regs->asc_cmd);
101657233Sralph 			return;
101752889Sbostic 		}
101852889Sbostic 	}
101952889Sbostic 
102052889Sbostic 	/* check for reselect */
102152889Sbostic 	if (ir & ASC_INT_RESEL) {
102252889Sbostic 		unsigned fifo, id, msg;
102352889Sbostic 
102452889Sbostic 		fifo = regs->asc_flags & ASC_FLAGS_FIFO_CNT;
102552889Sbostic 		if (fifo < 2)
102652889Sbostic 			goto abort;
102752889Sbostic 		/* read unencoded SCSI ID and convert to binary */
102852889Sbostic 		msg = regs->asc_fifo & asc->myidmask;
102952889Sbostic 		for (id = 0; (msg & 1) == 0; id++)
103052889Sbostic 			msg >>= 1;
103152889Sbostic 		/* read identify message */
103252889Sbostic 		msg = regs->asc_fifo;
103352889Sbostic #ifdef DEBUG
103452889Sbostic 		if (asc_logp == asc_log)
103552889Sbostic 			asc_log[NLOG - 1].msg = msg;
103652889Sbostic 		else
103752889Sbostic 			asc_logp[-1].msg = msg;
103852889Sbostic #endif
103952889Sbostic 		asc->state = ASC_STATE_BUSY;
104052889Sbostic 		asc->target = id;
104152889Sbostic 		state = &asc->st[id];
104252889Sbostic 		asc->script = state->script;
104352889Sbostic 		state->script = (script_t *)0;
104452889Sbostic 		if (!(state->flags & DISCONN))
104552889Sbostic 			goto abort;
104652889Sbostic 		state->flags &= ~DISCONN;
104753080Sralph 		regs->asc_syn_p = state->sync_period;
104853080Sralph 		regs->asc_syn_o = state->sync_offset;
104952889Sbostic 		regs->asc_cmd = ASC_CMD_MSG_ACPT;
105056819Sralph 		readback(regs->asc_cmd);
105152889Sbostic 		goto done;
105252889Sbostic 	}
105352889Sbostic 
105452889Sbostic 	/* check if we are being selected as a target */
105552889Sbostic 	if (ir & (ASC_INT_SEL | ASC_INT_SEL_ATN))
105652889Sbostic 		goto abort;
105752889Sbostic 
105858658Sralph 	/*
105958658Sralph 	 * 'ir' must be just ASC_INT_FC.
106058658Sralph 	 * This is normal if canceling an ASC_ENABLE_SEL.
106158658Sralph 	 */
106258658Sralph 
106352889Sbostic done:
106452889Sbostic 	MachEmptyWriteBuffer();
106553080Sralph 	/* watch out for HW race conditions and setup & hold time violations */
106653080Sralph 	ir = regs->asc_status;
106753080Sralph 	while (ir != (status = regs->asc_status))
106853080Sralph 		ir = status;
106953080Sralph 	if (status & ASC_CSR_INT)
107052889Sbostic 		goto again;
107152889Sbostic 	return;
107252889Sbostic 
107352889Sbostic abort:
107452889Sbostic #ifdef DEBUG
107552889Sbostic 	asc_DumpLog("asc_intr");
107652889Sbostic #endif
107752889Sbostic #if 0
107852889Sbostic 	panic("asc_intr");
107952889Sbostic #else
108052889Sbostic 	for (;;);
108152889Sbostic #endif
108252889Sbostic }
108352889Sbostic 
108452889Sbostic /*
108552889Sbostic  * All the many little things that the interrupt
108652889Sbostic  * routine might switch to.
108752889Sbostic  */
108852889Sbostic 
108952889Sbostic /* ARGSUSED */
109052889Sbostic static int
109152889Sbostic script_nop(asc, status, ss, ir)
109252889Sbostic 	register asc_softc_t asc;
109352889Sbostic 	register int status, ss, ir;
109452889Sbostic {
109552889Sbostic 	return (1);
109652889Sbostic }
109752889Sbostic 
109852889Sbostic /* ARGSUSED */
109952889Sbostic static int
110052889Sbostic asc_get_status(asc, status, ss, ir)
110152889Sbostic 	register asc_softc_t asc;
110252889Sbostic 	register int status, ss, ir;
110352889Sbostic {
110452889Sbostic 	register asc_regmap_t *regs = asc->regs;
110552889Sbostic 	register int data;
110652889Sbostic 
110752889Sbostic 	/*
110852889Sbostic 	 * Get the last two bytes in the FIFO.
110952889Sbostic 	 */
111052889Sbostic 	if ((data = regs->asc_flags & ASC_FLAGS_FIFO_CNT) != 2) {
111152889Sbostic 		printf("asc_get_status: fifo cnt %d\n", data); /* XXX */
111258658Sralph 		asc_DumpLog("get_status"); /* XXX */
111352889Sbostic 		if (data < 2) {
111452889Sbostic 			asc->regs->asc_cmd = ASC_CMD_MSG_ACPT;
111556819Sralph 			readback(asc->regs->asc_cmd);
111652889Sbostic 			return (0);
111752889Sbostic 		}
111852889Sbostic 		do {
111952889Sbostic 			data = regs->asc_fifo;
112052889Sbostic 		} while ((regs->asc_flags & ASC_FLAGS_FIFO_CNT) > 2);
112152889Sbostic 	}
112252889Sbostic 
112352889Sbostic 	/* save the status byte */
112452889Sbostic 	asc->st[asc->target].statusByte = data = regs->asc_fifo;
112552889Sbostic #ifdef DEBUG
112652889Sbostic 	if (asc_logp == asc_log)
112752889Sbostic 		asc_log[NLOG - 1].msg = data;
112852889Sbostic 	else
112952889Sbostic 		asc_logp[-1].msg = data;
113052889Sbostic #endif
113152889Sbostic 
113252889Sbostic 	/* get the (presumed) command_complete message */
113352889Sbostic 	if ((data = regs->asc_fifo) == SCSI_COMMAND_COMPLETE)
113452889Sbostic 		return (1);
113552889Sbostic 
113652889Sbostic #ifdef DEBUG
113752889Sbostic 	printf("asc_get_status: status %x cmd %x\n",
113852889Sbostic 		asc->st[asc->target].statusByte, data);
113952889Sbostic 	asc_DumpLog("asc_get_status");
114052889Sbostic #endif
114152889Sbostic 	return (0);
114252889Sbostic }
114352889Sbostic 
114452889Sbostic /* ARGSUSED */
114552889Sbostic static int
114652889Sbostic asc_end(asc, status, ss, ir)
114752889Sbostic 	register asc_softc_t asc;
114852889Sbostic 	register int status, ss, ir;
114952889Sbostic {
115052889Sbostic 	register ScsiCmd *scsicmd;
115152889Sbostic 	register State *state;
115252889Sbostic 	register int i, target;
115352889Sbostic 
115452889Sbostic 	asc->state = ASC_STATE_IDLE;
115552889Sbostic 	target = asc->target;
115652889Sbostic 	asc->target = -1;
115752889Sbostic 	scsicmd = asc->cmd[target];
115852889Sbostic 	asc->cmd[target] = (ScsiCmd *)0;
115952889Sbostic 	state = &asc->st[target];
116052889Sbostic 
116152889Sbostic #ifdef DEBUG
116252889Sbostic 	if (asc_debug > 1) {
116352889Sbostic 		printf("asc_end: %s target %d cmd %x err %d resid %d\n",
116452889Sbostic 			scsicmd->sd->sd_driver->d_name, target,
116552889Sbostic 			scsicmd->cmd[0], state->error, state->buflen);
116652889Sbostic 	}
116752889Sbostic #endif
116852889Sbostic #ifdef DIAGNOSTIC
116952889Sbostic 	if (target < 0 || !scsicmd)
117052889Sbostic 		panic("asc_end");
117152889Sbostic #endif
117252889Sbostic 
117352889Sbostic 	/* look for disconnected devices */
117452889Sbostic 	for (i = 0; i < ASC_NCMD; i++) {
117552889Sbostic 		if (!asc->cmd[i] || !(asc->st[i].flags & DISCONN))
117652889Sbostic 			continue;
117752889Sbostic 		asc->regs->asc_cmd = ASC_CMD_ENABLE_SEL;
117856819Sralph 		readback(asc->regs->asc_cmd);
117952889Sbostic 		asc->state = ASC_STATE_RESEL;
118052889Sbostic 		asc->script = &asc_scripts[SCRIPT_RESEL];
118152889Sbostic 		break;
118252889Sbostic 	}
118352889Sbostic 
118458658Sralph 	/*
118558658Sralph 	 * Look for another device that is ready.
118658658Sralph 	 * May want to keep last one started and increment for fairness
118758658Sralph 	 * rather than always starting at zero.
118858658Sralph 	 */
118952889Sbostic 	for (i = 0; i < ASC_NCMD; i++) {
119052889Sbostic 		/* don't restart a disconnected command */
119152889Sbostic 		if (!asc->cmd[i] || (asc->st[i].flags & DISCONN))
119252889Sbostic 			continue;
119352889Sbostic 		asc_startcmd(asc, i);
119452889Sbostic 		break;
119552889Sbostic 	}
119652889Sbostic 
119752889Sbostic 	/* signal device driver that the command is done */
119852889Sbostic 	(*scsicmd->sd->sd_driver->d_done)(scsicmd->unit, state->error,
119952889Sbostic 		state->buflen, state->statusByte);
120052889Sbostic 
120152889Sbostic 	return (0);
120252889Sbostic }
120352889Sbostic 
120452889Sbostic /* ARGSUSED */
120552889Sbostic static int
120652889Sbostic asc_dma_in(asc, status, ss, ir)
120752889Sbostic 	register asc_softc_t asc;
120852889Sbostic 	register int status, ss, ir;
120952889Sbostic {
121052889Sbostic 	register asc_regmap_t *regs = asc->regs;
121152889Sbostic 	register State *state = &asc->st[asc->target];
121253080Sralph 	register int len;
121352889Sbostic 
121452889Sbostic 	/* check for previous chunk in buffer */
121553080Sralph 	if (state->flags & DMA_IN_PROGRESS) {
121652889Sbostic 		/*
121752889Sbostic 		 * Only count bytes that have been copied to memory.
121852889Sbostic 		 * There may be some bytes in the FIFO if synchonous transfers
121952889Sbostic 		 * are in progress.
122052889Sbostic 		 */
122156819Sralph 		(*asc->dma_end)(asc, state, ASCDMA_READ);
122252889Sbostic 		ASC_TC_GET(regs, len);
122352889Sbostic 		len = state->dmalen - len;
122452889Sbostic 		bcopy(state->dmaBufAddr, state->buf, len);
122552889Sbostic 		state->buf += len;
122652889Sbostic 		state->buflen -= len;
122753080Sralph 	}
122852889Sbostic 
122952942Sralph 	/* setup to start reading the next chunk */
123052889Sbostic 	len = state->buflen;
123152889Sbostic 	if (len > state->dmaBufSize)
123252889Sbostic 		len = state->dmaBufSize;
123352889Sbostic 	state->dmalen = len;
123456819Sralph 	(*asc->dma_start)(asc, state, state->dmaBufAddr, ASCDMA_READ);
123552889Sbostic 	ASC_TC_PUT(regs, len);
123652942Sralph #ifdef DEBUG
123752942Sralph 	if (asc_debug > 2)
123852942Sralph 		printf("asc_dma_in: buflen %d, len %d\n", state->buflen, len);
123952942Sralph #endif
124052942Sralph 
124152942Sralph 	/* check for next chunk */
124253080Sralph 	state->flags |= DMA_IN_PROGRESS;
124352889Sbostic 	if (len != state->buflen) {
124452889Sbostic 		regs->asc_cmd = ASC_CMD_XFER_INFO | ASC_CMD_DMA;
124556819Sralph 		readback(regs->asc_cmd);
124652942Sralph 		asc->script = &asc_scripts[SCRIPT_CONTINUE_IN];
124752889Sbostic 		return (0);
124852889Sbostic 	}
124952889Sbostic 	return (1);
125052889Sbostic }
125152889Sbostic 
125252889Sbostic /* ARGSUSED */
125352889Sbostic static int
125452889Sbostic asc_last_dma_in(asc, status, ss, ir)
125552889Sbostic 	register asc_softc_t asc;
125652889Sbostic 	register int status, ss, ir;
125752889Sbostic {
125852889Sbostic 	register asc_regmap_t *regs = asc->regs;
125952889Sbostic 	register State *state = &asc->st[asc->target];
126052889Sbostic 	register int len, fifo;
126152889Sbostic 
126252889Sbostic 	/* copy data from buffer to main memory */
126356819Sralph 	(*asc->dma_end)(asc, state, ASCDMA_READ);
126452889Sbostic 	ASC_TC_GET(regs, len);
126552889Sbostic 	fifo = regs->asc_flags & ASC_FLAGS_FIFO_CNT;
126652889Sbostic #ifdef DEBUG
126752942Sralph 	if (asc_debug > 2)
126852889Sbostic 		printf("asc_last_dma_in: buflen %d dmalen %d tc %d fifo %d\n",
126952889Sbostic 			state->buflen, state->dmalen, len, fifo);
127052889Sbostic #endif
127152889Sbostic 	if (fifo) {
127252942Sralph 		/* device must be trying to send more than we expect */
127352889Sbostic 		regs->asc_cmd = ASC_CMD_FLUSH;
127456819Sralph 		readback(regs->asc_cmd);
127552889Sbostic 	}
127653080Sralph 	state->flags &= ~DMA_IN_PROGRESS;
127752889Sbostic 	len = state->dmalen - len;
127852889Sbostic 	state->buflen -= len;
127952889Sbostic 	bcopy(state->dmaBufAddr, state->buf, len);
128052889Sbostic 
128152889Sbostic 	return (1);
128252889Sbostic }
128352889Sbostic 
128452889Sbostic /* ARGSUSED */
128552889Sbostic static int
128652942Sralph asc_resume_in(asc, status, ss, ir)
128752942Sralph 	register asc_softc_t asc;
128852942Sralph 	register int status, ss, ir;
128952942Sralph {
129052942Sralph 	register asc_regmap_t *regs = asc->regs;
129152942Sralph 	register State *state = &asc->st[asc->target];
129252942Sralph 	register int len;
129352942Sralph 
129452942Sralph 	/* setup to start reading the next chunk */
129552942Sralph 	len = state->buflen;
129652942Sralph 	if (len > state->dmaBufSize)
129752942Sralph 		len = state->dmaBufSize;
129852942Sralph 	state->dmalen = len;
129956819Sralph 	(*asc->dma_start)(asc, state, state->dmaBufAddr, ASCDMA_READ);
130052942Sralph 	ASC_TC_PUT(regs, len);
130152942Sralph #ifdef DEBUG
130252942Sralph 	if (asc_debug > 2)
130352942Sralph 		printf("asc_resume_in: buflen %d, len %d\n", state->buflen,
130452942Sralph 			len);
130552942Sralph #endif
130652942Sralph 
130752942Sralph 	/* check for next chunk */
130853080Sralph 	state->flags |= DMA_IN_PROGRESS;
130952942Sralph 	if (len != state->buflen) {
131052942Sralph 		regs->asc_cmd = ASC_CMD_XFER_INFO | ASC_CMD_DMA;
131156819Sralph 		readback(regs->asc_cmd);
131252942Sralph 		asc->script = &asc_scripts[SCRIPT_CONTINUE_IN];
131352942Sralph 		return (0);
131452942Sralph 	}
131552942Sralph 	return (1);
131652942Sralph }
131752942Sralph 
131852942Sralph /* ARGSUSED */
131952942Sralph static int
132052889Sbostic asc_resume_dma_in(asc, status, ss, ir)
132152889Sbostic 	register asc_softc_t asc;
132252889Sbostic 	register int status, ss, ir;
132352889Sbostic {
132452889Sbostic 	register asc_regmap_t *regs = asc->regs;
132552889Sbostic 	register State *state = &asc->st[asc->target];
132652889Sbostic 	register int len, off;
132752889Sbostic 
132852889Sbostic 	/* setup to finish reading the current chunk */
132952889Sbostic 	len = state->dmaresid;
133052889Sbostic 	off = state->dmalen - len;
133152889Sbostic 	if ((off & 1) && state->sync_offset) {
133252889Sbostic 		printf("asc_resume_dma_in: odd xfer dmalen %d len %d off %d\n",
133352889Sbostic 			state->dmalen, len, off); /* XXX */
133452889Sbostic 		regs->asc_res_fifo = state->dmaBufAddr[off];
133552889Sbostic 	}
133656819Sralph 	(*asc->dma_start)(asc, state, state->dmaBufAddr + off, ASCDMA_READ);
133752889Sbostic 	ASC_TC_PUT(regs, len);
133852942Sralph #ifdef DEBUG
133952942Sralph 	if (asc_debug > 2)
134052942Sralph 		printf("asc_resume_dma_in: buflen %d dmalen %d len %d off %d\n",
134152942Sralph 			state->dmalen, state->buflen, len, off);
134252942Sralph #endif
134352942Sralph 
134452942Sralph 	/* check for next chunk */
134553080Sralph 	state->flags |= DMA_IN_PROGRESS;
134652889Sbostic 	if (state->dmalen != state->buflen) {
134752889Sbostic 		regs->asc_cmd = ASC_CMD_XFER_INFO | ASC_CMD_DMA;
134856819Sralph 		readback(regs->asc_cmd);
134952942Sralph 		asc->script = &asc_scripts[SCRIPT_CONTINUE_IN];
135052889Sbostic 		return (0);
135152889Sbostic 	}
135252889Sbostic 	return (1);
135352889Sbostic }
135452889Sbostic 
135552889Sbostic /* ARGSUSED */
135652889Sbostic static int
135752889Sbostic asc_dma_out(asc, status, ss, ir)
135852889Sbostic 	register asc_softc_t asc;
135952889Sbostic 	register int status, ss, ir;
136052889Sbostic {
136152889Sbostic 	register asc_regmap_t *regs = asc->regs;
136252889Sbostic 	register State *state = &asc->st[asc->target];
136352889Sbostic 	register int len, fifo;
136452889Sbostic 
136553080Sralph 	if (state->flags & DMA_IN_PROGRESS) {
136652889Sbostic 		/* check to be sure previous chunk was finished */
136752889Sbostic 		ASC_TC_GET(regs, len);
136852889Sbostic 		fifo = regs->asc_flags & ASC_FLAGS_FIFO_CNT;
136952889Sbostic 		if (len || fifo)
137052889Sbostic 			printf("asc_dma_out: buflen %d dmalen %d tc %d fifo %d\n",
137152889Sbostic 				state->buflen, state->dmalen, len, fifo); /* XXX */
137252889Sbostic 		len += fifo;
137352889Sbostic 		len = state->dmalen - len;
137453080Sralph 		state->buf += len;
137552889Sbostic 		state->buflen -= len;
137653080Sralph 	}
137752889Sbostic 
1378*58792Sralph 	/* setup for this chunk */
137953080Sralph 	len = state->buflen;
138053080Sralph 	if (len > state->dmaBufSize)
138153080Sralph 		len = state->dmaBufSize;
138253080Sralph 	state->dmalen = len;
138353080Sralph 	bcopy(state->buf, state->dmaBufAddr, len);
138456819Sralph 	(*asc->dma_start)(asc, state, state->dmaBufAddr, ASCDMA_WRITE);
138552942Sralph 	ASC_TC_PUT(regs, len);
138652889Sbostic #ifdef DEBUG
138752889Sbostic 	if (asc_debug > 2)
138852942Sralph 		printf("asc_dma_out: buflen %d, len %d\n", state->buflen, len);
138952889Sbostic #endif
139052889Sbostic 
139152889Sbostic 	/* check for next chunk */
139253080Sralph 	state->flags |= DMA_IN_PROGRESS;
139352889Sbostic 	if (len != state->buflen) {
139452889Sbostic 		regs->asc_cmd = ASC_CMD_XFER_INFO | ASC_CMD_DMA;
139556819Sralph 		readback(regs->asc_cmd);
139652942Sralph 		asc->script = &asc_scripts[SCRIPT_CONTINUE_OUT];
139752889Sbostic 		return (0);
139852889Sbostic 	}
139952889Sbostic 	return (1);
140052889Sbostic }
140152889Sbostic 
140252889Sbostic /* ARGSUSED */
140352889Sbostic static int
140452889Sbostic asc_last_dma_out(asc, status, ss, ir)
140552889Sbostic 	register asc_softc_t asc;
140652889Sbostic 	register int status, ss, ir;
140752889Sbostic {
140852889Sbostic 	register asc_regmap_t *regs = asc->regs;
140952889Sbostic 	register State *state = &asc->st[asc->target];
141052889Sbostic 	register int len, fifo;
141152889Sbostic 
141252889Sbostic 	ASC_TC_GET(regs, len);
141352889Sbostic 	fifo = regs->asc_flags & ASC_FLAGS_FIFO_CNT;
141452889Sbostic #ifdef DEBUG
141552889Sbostic 	if (asc_debug > 2)
141652889Sbostic 		printf("asc_last_dma_out: buflen %d dmalen %d tc %d fifo %d\n",
141753080Sralph 			state->buflen, state->dmalen, len, fifo);
141852942Sralph #endif
141952942Sralph 	if (fifo) {
142052942Sralph 		len += fifo;
142152942Sralph 		regs->asc_cmd = ASC_CMD_FLUSH;
142256819Sralph 		readback(regs->asc_cmd);
1423*58792Sralph 		printf("asc_last_dma_out: buflen %d dmalen %d tc %d fifo %d\n",
1424*58792Sralph 			state->buflen, state->dmalen, len, fifo);
142552942Sralph 	}
142653080Sralph 	state->flags &= ~DMA_IN_PROGRESS;
142752889Sbostic 	len = state->dmalen - len;
142852889Sbostic 	state->buflen -= len;
142952889Sbostic 	return (1);
143052889Sbostic }
143152889Sbostic 
143252889Sbostic /* ARGSUSED */
143352889Sbostic static int
143452942Sralph asc_resume_out(asc, status, ss, ir)
143552942Sralph 	register asc_softc_t asc;
143652942Sralph 	register int status, ss, ir;
143752942Sralph {
143852942Sralph 	register asc_regmap_t *regs = asc->regs;
143952942Sralph 	register State *state = &asc->st[asc->target];
144052942Sralph 	register int len;
144152942Sralph 
1442*58792Sralph 	/* setup for this chunk */
144352942Sralph 	len = state->buflen;
144452942Sralph 	if (len > state->dmaBufSize)
144552942Sralph 		len = state->dmaBufSize;
144652942Sralph 	state->dmalen = len;
144752942Sralph 	bcopy(state->buf, state->dmaBufAddr, len);
144856819Sralph 	(*asc->dma_start)(asc, state, state->dmaBufAddr, ASCDMA_WRITE);
144952942Sralph 	ASC_TC_PUT(regs, len);
145052942Sralph #ifdef DEBUG
145152942Sralph 	if (asc_debug > 2)
145252942Sralph 		printf("asc_resume_out: buflen %d, len %d\n", state->buflen,
145352942Sralph 			len);
145452942Sralph #endif
145552942Sralph 
145652942Sralph 	/* check for next chunk */
145753080Sralph 	state->flags |= DMA_IN_PROGRESS;
145852942Sralph 	if (len != state->buflen) {
145952942Sralph 		regs->asc_cmd = ASC_CMD_XFER_INFO | ASC_CMD_DMA;
146056819Sralph 		readback(regs->asc_cmd);
146152942Sralph 		asc->script = &asc_scripts[SCRIPT_CONTINUE_OUT];
146252942Sralph 		return (0);
146352942Sralph 	}
146452942Sralph 	return (1);
146552942Sralph }
146652942Sralph 
146752942Sralph /* ARGSUSED */
146852942Sralph static int
146952889Sbostic asc_resume_dma_out(asc, status, ss, ir)
147052889Sbostic 	register asc_softc_t asc;
147152889Sbostic 	register int status, ss, ir;
147252889Sbostic {
147352889Sbostic 	register asc_regmap_t *regs = asc->regs;
147452889Sbostic 	register State *state = &asc->st[asc->target];
147552889Sbostic 	register int len, off;
147652889Sbostic 
147752889Sbostic 	/* setup to finish writing this chunk */
147852889Sbostic 	len = state->dmaresid;
147952889Sbostic 	off = state->dmalen - len;
148052889Sbostic 	if (off & 1) {
148152889Sbostic 		printf("asc_resume_dma_out: odd xfer dmalen %d len %d off %d\n",
148252889Sbostic 			state->dmalen, len, off); /* XXX */
148352889Sbostic 		regs->asc_fifo = state->dmaBufAddr[off];
148452889Sbostic 		off++;
148552889Sbostic 		len--;
148652889Sbostic 	}
148756819Sralph 	(*asc->dma_start)(asc, state, state->dmaBufAddr + off, ASCDMA_WRITE);
148852889Sbostic 	ASC_TC_PUT(regs, len);
148952942Sralph #ifdef DEBUG
149052942Sralph 	if (asc_debug > 2)
149152942Sralph 		printf("asc_resume_dma_out: buflen %d dmalen %d len %d off %d\n",
149252942Sralph 			state->dmalen, state->buflen, len, off);
149352942Sralph #endif
149452942Sralph 
149552942Sralph 	/* check for next chunk */
149653080Sralph 	state->flags |= DMA_IN_PROGRESS;
149752889Sbostic 	if (state->dmalen != state->buflen) {
149852889Sbostic 		regs->asc_cmd = ASC_CMD_XFER_INFO | ASC_CMD_DMA;
149956819Sralph 		readback(regs->asc_cmd);
150052942Sralph 		asc->script = &asc_scripts[SCRIPT_CONTINUE_OUT];
150152889Sbostic 		return (0);
150252889Sbostic 	}
150352889Sbostic 	return (1);
150452889Sbostic }
150552889Sbostic 
150652889Sbostic /* ARGSUSED */
150752889Sbostic static int
150852889Sbostic asc_sendsync(asc, status, ss, ir)
150952889Sbostic 	register asc_softc_t asc;
151052889Sbostic 	register int status, ss, ir;
151152889Sbostic {
151252889Sbostic 	register asc_regmap_t *regs = asc->regs;
151353080Sralph 	register State *state = &asc->st[asc->target];
151452889Sbostic 
151553080Sralph 	/* send the extended synchronous negotiation message */
151652889Sbostic 	regs->asc_fifo = SCSI_EXTENDED_MSG;
151752889Sbostic 	MachEmptyWriteBuffer();
151852889Sbostic 	regs->asc_fifo = 3;
151952889Sbostic 	MachEmptyWriteBuffer();
152052889Sbostic 	regs->asc_fifo = SCSI_SYNCHRONOUS_XFER;
152152889Sbostic 	MachEmptyWriteBuffer();
152252889Sbostic 	regs->asc_fifo = SCSI_MIN_PERIOD;
152352889Sbostic 	MachEmptyWriteBuffer();
152452889Sbostic 	regs->asc_fifo = ASC_MAX_OFFSET;
152553080Sralph 	/* state to resume after we see the sync reply message */
152653080Sralph 	state->script = asc->script + 2;
152753080Sralph 	state->msglen = 0;
152852889Sbostic 	return (1);
152952889Sbostic }
153052889Sbostic 
153152889Sbostic /* ARGSUSED */
153252889Sbostic static int
153352889Sbostic asc_replysync(asc, status, ss, ir)
153452889Sbostic 	register asc_softc_t asc;
153552889Sbostic 	register int status, ss, ir;
153652889Sbostic {
153752889Sbostic 	register asc_regmap_t *regs = asc->regs;
153852889Sbostic 	register State *state = &asc->st[asc->target];
153952889Sbostic 
154052889Sbostic #ifdef DEBUG
154152889Sbostic 	if (asc_debug > 2)
154252889Sbostic 		printf("asc_replysync: %x %x\n",
154356819Sralph 			asc_to_scsi_period[state->sync_period] * asc->tb_ticks,
154452889Sbostic 			state->sync_offset);
154552889Sbostic #endif
154652889Sbostic 	/* send synchronous transfer in response to a request */
154752889Sbostic 	regs->asc_fifo = SCSI_EXTENDED_MSG;
154852889Sbostic 	MachEmptyWriteBuffer();
154952889Sbostic 	regs->asc_fifo = 3;
155052889Sbostic 	MachEmptyWriteBuffer();
155152889Sbostic 	regs->asc_fifo = SCSI_SYNCHRONOUS_XFER;
155252889Sbostic 	MachEmptyWriteBuffer();
155356819Sralph 	regs->asc_fifo = asc_to_scsi_period[state->sync_period] * asc->tb_ticks;
155452889Sbostic 	MachEmptyWriteBuffer();
155552889Sbostic 	regs->asc_fifo = state->sync_offset;
155652889Sbostic 	regs->asc_cmd = ASC_CMD_XFER_INFO;
155756819Sralph 	readback(regs->asc_cmd);
155852889Sbostic 
155952889Sbostic 	/* return to the appropriate script */
156052889Sbostic 	if (!state->script) {
156152889Sbostic #ifdef DEBUG
156252889Sbostic 		asc_DumpLog("asc_replsync");
156352889Sbostic #endif
156452889Sbostic 		panic("asc_replysync");
156552889Sbostic 	}
156652889Sbostic 	asc->script = state->script;
156752889Sbostic 	state->script = (script_t *)0;
156852889Sbostic 	return (0);
156952889Sbostic }
157052889Sbostic 
157152889Sbostic /* ARGSUSED */
157252889Sbostic static int
157352942Sralph asc_msg_in(asc, status, ss, ir)
157452889Sbostic 	register asc_softc_t asc;
157552889Sbostic 	register int status, ss, ir;
157652889Sbostic {
157752889Sbostic 	register asc_regmap_t *regs = asc->regs;
157852889Sbostic 	register State *state = &asc->st[asc->target];
157952889Sbostic 	register int msg;
158052889Sbostic 	int i;
158152889Sbostic 
158252889Sbostic 	/* read one message byte */
158352889Sbostic 	msg = regs->asc_fifo;
158452889Sbostic #ifdef DEBUG
158552889Sbostic 	if (asc_logp == asc_log)
158652889Sbostic 		asc_log[NLOG - 1].msg = msg;
158752889Sbostic 	else
158852889Sbostic 		asc_logp[-1].msg = msg;
158952889Sbostic #endif
159052889Sbostic 
159152889Sbostic 	/* check for multi-byte message */
159252889Sbostic 	if (state->msglen != 0) {
159352889Sbostic 		/* first byte is the message length */
159452889Sbostic 		if (state->msglen < 0) {
159552889Sbostic 			state->msglen = msg;
159652889Sbostic 			return (1);
159752889Sbostic 		}
159852889Sbostic 		if (state->msgcnt >= state->msglen)
159952889Sbostic 			goto abort;
160052889Sbostic 		state->msg_in[state->msgcnt++] = msg;
160152889Sbostic 
160252889Sbostic 		/* did we just read the last byte of the message? */
160352889Sbostic 		if (state->msgcnt != state->msglen)
160452889Sbostic 			return (1);
160552889Sbostic 
160652889Sbostic 		/* process an extended message */
160752889Sbostic #ifdef DEBUG
160852889Sbostic 		if (asc_debug > 2)
160952942Sralph 			printf("asc_msg_in: msg %x %x %x\n",
161052889Sbostic 				state->msg_in[0],
161152889Sbostic 				state->msg_in[1],
161252889Sbostic 				state->msg_in[2]);
161352889Sbostic #endif
161452889Sbostic 		switch (state->msg_in[0]) {
161552889Sbostic 		case SCSI_SYNCHRONOUS_XFER:
161652889Sbostic 			state->flags |= DID_SYNC;
161752889Sbostic 			state->sync_offset = state->msg_in[2];
161852889Sbostic 
161952889Sbostic 			/* convert SCSI period to ASC period */
162056819Sralph 			i = state->msg_in[1] / asc->tb_ticks;
162156819Sralph 			if (i < asc->min_period)
162256819Sralph 				i = asc->min_period;
162356819Sralph 			else if (i >= asc->max_period) {
162452889Sbostic 				/* can't do sync transfer, period too long */
162552889Sbostic 				printf("asc%d: SCSI device %d: sync xfer period too long (%d)\n",
162652889Sbostic 					asc - asc_softc, asc->target, i);
162756819Sralph 				i = asc->max_period;
162852889Sbostic 				state->sync_offset = 0;
162952889Sbostic 			}
163056819Sralph 			if ((i * asc->tb_ticks) != state->msg_in[1])
163152889Sbostic 				i++;
163252889Sbostic 			state->sync_period = i & 0x1F;
163352889Sbostic 
163452889Sbostic 			/*
163552889Sbostic 			 * If this is a request, check minimums and
163652889Sbostic 			 * send back an acknowledge.
163752889Sbostic 			 */
163852889Sbostic 			if (!(state->flags & TRY_SYNC)) {
163952889Sbostic 				regs->asc_cmd = ASC_CMD_SET_ATN;
164056819Sralph 				readback(regs->asc_cmd);
164152889Sbostic 
164256819Sralph 				if (state->sync_period < asc->min_period)
164352889Sbostic 					state->sync_period =
164456819Sralph 						asc->min_period;
164552889Sbostic 				if (state->sync_offset > ASC_MAX_OFFSET)
164652889Sbostic 					state->sync_offset =
164752889Sbostic 						ASC_MAX_OFFSET;
164852889Sbostic 				asc->script = &asc_scripts[SCRIPT_REPLY_SYNC];
164952889Sbostic 				regs->asc_syn_p = state->sync_period;
165056819Sralph 				readback(regs->asc_syn_p);
165152889Sbostic 				regs->asc_syn_o = state->sync_offset;
165256819Sralph 				readback(regs->asc_syn_o);
165352889Sbostic 				regs->asc_cmd = ASC_CMD_MSG_ACPT;
165456819Sralph 				readback(regs->asc_cmd);
165552889Sbostic 				return (0);
165652889Sbostic 			}
165752889Sbostic 
165852889Sbostic 			regs->asc_syn_p = state->sync_period;
165956819Sralph 			readback(regs->asc_syn_p);
166052889Sbostic 			regs->asc_syn_o = state->sync_offset;
166156819Sralph 			readback(regs->asc_syn_o);
166252889Sbostic 			goto done;
166352889Sbostic 
166452889Sbostic 		default:
166552889Sbostic 			printf("asc%d: SCSI device %d: rejecting extended message 0x%x\n",
166652889Sbostic 				asc - asc_softc, asc->target,
166752889Sbostic 				state->msg_in[0]);
166852889Sbostic 			goto reject;
166952889Sbostic 		}
167052889Sbostic 	}
167152889Sbostic 
167252889Sbostic 	/* process first byte of a message */
167352889Sbostic #ifdef DEBUG
167452889Sbostic 	if (asc_debug > 2)
167552942Sralph 		printf("asc_msg_in: msg %x\n", msg);
167652889Sbostic #endif
167752889Sbostic 	switch (msg) {
167852889Sbostic #if 0
167952889Sbostic 	case SCSI_MESSAGE_REJECT:
168052889Sbostic 		printf(" did not like SYNCH xfer "); /* XXX */
168152889Sbostic 		state->flags |= DID_SYNC;
168252889Sbostic 		regs->asc_cmd = ASC_CMD_MSG_ACPT;
168356819Sralph 		readback(regs->asc_cmd);
168452889Sbostic 		status = asc_wait(regs, ASC_CSR_INT);
168552889Sbostic 		ir = regs->asc_intr;
168652889Sbostic 		/* some just break out here, some dont */
168752889Sbostic 		if (ASC_PHASE(status) == ASC_PHASE_MSG_OUT) {
168852889Sbostic 			regs->asc_fifo = SCSI_ABORT;
168952889Sbostic 			regs->asc_cmd = ASC_CMD_XFER_INFO;
169056819Sralph 			readback(regs->asc_cmd);
169152889Sbostic 			status = asc_wait(regs, ASC_CSR_INT);
169252889Sbostic 			ir = regs->asc_intr;
169352889Sbostic 		}
169452889Sbostic 		if (ir & ASC_INT_DISC) {
169552889Sbostic 			asc_end(asc, status, 0, ir);
169652889Sbostic 			return (0);
169752889Sbostic 		}
169852889Sbostic 		goto status;
169952889Sbostic #endif
170052889Sbostic 
170152889Sbostic 	case SCSI_EXTENDED_MSG: /* read an extended message */
170252889Sbostic 		/* setup to read message length next */
170352889Sbostic 		state->msglen = -1;
170452889Sbostic 		state->msgcnt = 0;
170552889Sbostic 		return (1);
170652889Sbostic 
170752889Sbostic 	case SCSI_NO_OP:
170852889Sbostic 		break;
170952889Sbostic 
171052889Sbostic 	case SCSI_SAVE_DATA_POINTER:
171152889Sbostic 		/* expect another message */
171252889Sbostic 		return (1);
171352889Sbostic 
171452889Sbostic 	case SCSI_RESTORE_POINTERS:
171552889Sbostic 		/*
171652889Sbostic 		 * Need to do the following if resuming synchonous data in
171752889Sbostic 		 * on an odd byte boundary.
171852889Sbostic 		regs->asc_cnfg2 |= ASC_CNFG2_RFB;
171952889Sbostic 		 */
172052889Sbostic 		break;
172152889Sbostic 
172252889Sbostic 	case SCSI_DISCONNECT:
172352889Sbostic 		if (state->flags & DISCONN)
172452889Sbostic 			goto abort;
172552889Sbostic 		state->flags |= DISCONN;
172652942Sralph 		regs->asc_cmd = ASC_CMD_MSG_ACPT;
172756819Sralph 		readback(regs->asc_cmd);
172852942Sralph 		asc->script = &asc_scripts[SCRIPT_DISCONNECT];
172952942Sralph 		return (0);
173052889Sbostic 
173152889Sbostic 	default:
173252889Sbostic 		printf("asc%d: SCSI device %d: rejecting message 0x%x\n",
173352889Sbostic 			asc - asc_softc, asc->target, msg);
173452889Sbostic 	reject:
173552889Sbostic 		/* request a message out before acknowledging this message */
173652889Sbostic 		state->msg_out = SCSI_MESSAGE_REJECT;
173752889Sbostic 		regs->asc_cmd = ASC_CMD_SET_ATN;
173856819Sralph 		readback(regs->asc_cmd);
173952889Sbostic 	}
174052889Sbostic 
174152889Sbostic done:
174252889Sbostic 	/* return to original script */
174352889Sbostic 	regs->asc_cmd = ASC_CMD_MSG_ACPT;
174456819Sralph 	readback(regs->asc_cmd);
174552889Sbostic 	if (!state->script) {
174652889Sbostic 	abort:
174752889Sbostic #ifdef DEBUG
174852942Sralph 		asc_DumpLog("asc_msg_in");
174952889Sbostic #endif
175052942Sralph 		panic("asc_msg_in");
175152889Sbostic 	}
175252889Sbostic 	asc->script = state->script;
175352889Sbostic 	state->script = (script_t *)0;
175452889Sbostic 	return (0);
175552889Sbostic }
175652889Sbostic 
175752942Sralph /* ARGSUSED */
175852942Sralph static int
175952942Sralph asc_disconnect(asc, status, ss, ir)
176052942Sralph 	register asc_softc_t asc;
176152942Sralph 	register int status, ss, ir;
176252942Sralph {
176352942Sralph 	register State *state = &asc->st[asc->target];
176452942Sralph 
176558658Sralph #ifdef DIAGNOSTIC
176658658Sralph 	if (!(state->flags & DISCONN)) {
176758658Sralph 		printf("asc_disconnect: device %d: DISCONN not set!\n",
176858658Sralph 			asc->target);
176958658Sralph 	}
177058658Sralph #endif
177152942Sralph 	asc->target = -1;
177252942Sralph 	asc->state = ASC_STATE_RESEL;
177352942Sralph 	return (1);
177452942Sralph }
177552942Sralph 
177656819Sralph /*
1777*58792Sralph  * DMA handling routines. For a turbochannel device, just set the dmar.
1778*58792Sralph  * For the I/O ASIC, handle the actual DMA interface.
177956819Sralph  */
178056819Sralph static void
178156819Sralph tb_dma_start(asc, state, cp, flag)
178256819Sralph 	asc_softc_t asc;
178356819Sralph 	State *state;
178456819Sralph 	caddr_t cp;
178556819Sralph 	int flag;
178656819Sralph {
178756819Sralph 
178856819Sralph 	if (flag == ASCDMA_WRITE)
178956819Sralph 		*asc->dmar = ASC_DMAR_WRITE | ASC_DMA_ADDR(cp);
179056819Sralph 	else
179156819Sralph 		*asc->dmar = ASC_DMA_ADDR(cp);
179256819Sralph }
179356819Sralph 
179456819Sralph static void
179556819Sralph tb_dma_end(asc, state, flag)
179656819Sralph 	asc_softc_t asc;
179756819Sralph 	State *state;
179856819Sralph 	int flag;
179956819Sralph {
180056819Sralph 
180156819Sralph }
180256819Sralph 
180356819Sralph static void
180456819Sralph asic_dma_start(asc, state, cp, flag)
180556819Sralph 	asc_softc_t asc;
180656819Sralph 	State *state;
180756819Sralph 	caddr_t cp;
180856819Sralph 	int flag;
180956819Sralph {
181056819Sralph 	register volatile u_int *ssr = (volatile u_int *)
181157233Sralph 		ASIC_REG_CSR(asic_base);
181256819Sralph 	u_int phys, nphys;
181356819Sralph 
181456819Sralph 	/* stop DMA engine first */
181556819Sralph 	*ssr &= ~ASIC_CSR_DMAEN_SCSI;
181658658Sralph 	*((volatile int *)ASIC_REG_SCSI_SCR(asic_base)) = 0;
181756819Sralph 
181856819Sralph 	phys = MACH_CACHED_TO_PHYS(cp);
181956819Sralph 	cp = (caddr_t)pmax_trunc_page(cp + NBPG);
182056819Sralph 	nphys = MACH_CACHED_TO_PHYS(cp);
182156819Sralph 
182256819Sralph 	asc->dma_next = cp;
182356819Sralph 	asc->dma_xfer = state->dmalen - (nphys - phys);
182456819Sralph 
182557233Sralph 	*(volatile int *)ASIC_REG_SCSI_DMAPTR(asic_base) =
182656819Sralph 		ASIC_DMA_ADDR(phys);
182757233Sralph 	*(volatile int *)ASIC_REG_SCSI_DMANPTR(asic_base) =
182856819Sralph 		ASIC_DMA_ADDR(nphys);
182956819Sralph 	if (flag == ASCDMA_READ)
183056819Sralph 		*ssr |= ASIC_CSR_SCSI_DIR | ASIC_CSR_DMAEN_SCSI;
183156819Sralph 	else
183256819Sralph 		*ssr = (*ssr & ~ASIC_CSR_SCSI_DIR) | ASIC_CSR_DMAEN_SCSI;
183356819Sralph 	MachEmptyWriteBuffer();
183456819Sralph }
183556819Sralph 
183656819Sralph static void
183756819Sralph asic_dma_end(asc, state, flag)
183856819Sralph 	asc_softc_t asc;
183956819Sralph 	State *state;
184056819Sralph 	int flag;
184156819Sralph {
184256819Sralph 	register volatile u_int *ssr = (volatile u_int *)
184357233Sralph 		ASIC_REG_CSR(asic_base);
184456819Sralph 	int nb;
184556819Sralph 
184656819Sralph 	*ssr &= ~ASIC_CSR_DMAEN_SCSI;
184757233Sralph 	*((volatile int *)ASIC_REG_SCSI_DMAPTR(asic_base)) = -1;
184857233Sralph 	*((volatile int *)ASIC_REG_SCSI_DMANPTR(asic_base)) = -1;
184956819Sralph 	MachEmptyWriteBuffer();
185056819Sralph 
185156819Sralph 	if (flag == ASCDMA_READ) {
185256819Sralph 		MachFlushDCache(MACH_PHYS_TO_CACHED(
185356819Sralph 		    MACH_UNCACHED_TO_PHYS(state->dmaBufAddr)), state->dmalen);
185457233Sralph 		if (nb = *((int *)ASIC_REG_SCSI_SCR(asic_base))) {
185556819Sralph 			/* pick up last upto6 bytes, sigh. */
185656819Sralph 			register u_short *to;
185756819Sralph 			register int w;
185856819Sralph 
185956819Sralph 			/* Last byte really xferred is.. */
186056819Sralph 			to = (u_short *)(state->dmaBufAddr + state->dmalen - (nb << 1));
186157233Sralph 			w = *(int *)ASIC_REG_SCSI_SDR0(asic_base);
186256819Sralph 			*to++ = w;
186356819Sralph 			if (--nb > 0) {
186456819Sralph 				w >>= 16;
186556819Sralph 				*to++ = w;
186656819Sralph 			}
186756819Sralph 			if (--nb > 0) {
186857233Sralph 				w = *(int *)ASIC_REG_SCSI_SDR1(asic_base);
186956819Sralph 				*to++ = w;
187056819Sralph 			}
187156819Sralph 		}
187256819Sralph 	}
187356819Sralph }
187456819Sralph 
187557233Sralph #ifdef notdef
187656819Sralph /*
187756819Sralph  * Called by asic_intr() for scsi dma pointer update interrupts.
187856819Sralph  */
187956819Sralph void
188056819Sralph asc_dma_intr()
188156819Sralph {
188256819Sralph 	asc_softc_t asc = &asc_softc[0];
188356819Sralph 	u_int next_phys;
188456819Sralph 
188556819Sralph 	asc->dma_xfer -= NBPG;
188656819Sralph 	if (asc->dma_xfer <= -NBPG) {
188756819Sralph 		volatile u_int *ssr = (volatile u_int *)
188857233Sralph 			ASIC_REG_CSR(asic_base);
188956819Sralph 		*ssr &= ~ASIC_CSR_DMAEN_SCSI;
189056819Sralph 	} else {
189156819Sralph 		asc->dma_next += NBPG;
189256819Sralph 		next_phys = MACH_CACHED_TO_PHYS(asc->dma_next);
189356819Sralph 	}
189457233Sralph 	*(volatile int *)ASIC_REG_SCSI_DMANPTR(asic_base) =
189556819Sralph 		ASIC_DMA_ADDR(next_phys);
189656819Sralph 	MachEmptyWriteBuffer();
189756819Sralph }
189857233Sralph #endif
189956819Sralph 
190052889Sbostic #ifdef DEBUG
190152889Sbostic asc_DumpLog(str)
190252889Sbostic 	char *str;
190352889Sbostic {
190452889Sbostic 	register struct asc_log *lp;
190552889Sbostic 	register u_int status;
190652889Sbostic 
190752889Sbostic 	printf("asc: %s: cmd %x bn %d cnt %d\n", str, asc_debug_cmd,
190852889Sbostic 		asc_debug_bn, asc_debug_sz);
190958570Sralph 	lp = asc_logp;
191058570Sralph 	do {
191152889Sbostic 		status = lp->status;
191258658Sralph 		printf("asc%d tgt %d status %x ss %x ir %x cond %d:%x msg %x resid %d\n",
191352889Sbostic 			status >> 24,
191452889Sbostic 			lp->target,
191552889Sbostic 			(status >> 16) & 0xFF,
191652889Sbostic 			(status >> 8) & 0xFF,
191752889Sbostic 			status & 0XFF,
191852889Sbostic 			lp->state,
191952889Sbostic 			asc_scripts[lp->state].condition,
192058658Sralph 			lp->msg, lp->resid);
192152889Sbostic 		if (++lp >= &asc_log[NLOG])
192252889Sbostic 			lp = asc_log;
192358570Sralph 	} while (lp != asc_logp);
192452889Sbostic }
192552889Sbostic #endif
192652889Sbostic 
192752889Sbostic #endif	/* NASC > 0 */
1928