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gtsc.c revision 1.15
      1  1.15    veego /*	$NetBSD: gtsc.c,v 1.15 1996/04/21 21:11:34 veego Exp $	*/
      2   1.7      cgd 
      3   1.1   chopps /*
      4   1.1   chopps  * Copyright (c) 1994 Christian E. Hopps
      5   1.1   chopps  * Copyright (c) 1982, 1990 The Regents of the University of California.
      6   1.1   chopps  * All rights reserved.
      7   1.1   chopps  *
      8   1.1   chopps  * Redistribution and use in source and binary forms, with or without
      9   1.1   chopps  * modification, are permitted provided that the following conditions
     10   1.1   chopps  * are met:
     11   1.1   chopps  * 1. Redistributions of source code must retain the above copyright
     12   1.1   chopps  *    notice, this list of conditions and the following disclaimer.
     13   1.1   chopps  * 2. Redistributions in binary form must reproduce the above copyright
     14   1.1   chopps  *    notice, this list of conditions and the following disclaimer in the
     15   1.1   chopps  *    documentation and/or other materials provided with the distribution.
     16   1.1   chopps  * 3. All advertising materials mentioning features or use of this software
     17   1.1   chopps  *    must display the following acknowledgement:
     18   1.1   chopps  *	This product includes software developed by the University of
     19   1.1   chopps  *	California, Berkeley and its contributors.
     20   1.1   chopps  * 4. Neither the name of the University nor the names of its contributors
     21   1.1   chopps  *    may be used to endorse or promote products derived from this software
     22   1.1   chopps  *    without specific prior written permission.
     23   1.1   chopps  *
     24   1.1   chopps  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     25   1.1   chopps  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26   1.1   chopps  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27   1.1   chopps  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     28   1.1   chopps  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29   1.1   chopps  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30   1.1   chopps  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31   1.1   chopps  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32   1.1   chopps  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33   1.1   chopps  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34   1.1   chopps  * SUCH DAMAGE.
     35   1.1   chopps  *
     36   1.1   chopps  *	@(#)dma.c
     37   1.1   chopps  */
     38   1.1   chopps #include <sys/param.h>
     39   1.1   chopps #include <sys/systm.h>
     40   1.1   chopps #include <sys/kernel.h>
     41   1.1   chopps #include <sys/device.h>
     42   1.1   chopps #include <scsi/scsi_all.h>
     43   1.1   chopps #include <scsi/scsiconf.h>
     44   1.1   chopps #include <amiga/amiga/custom.h>
     45   1.1   chopps #include <amiga/amiga/cc.h>
     46   1.1   chopps #include <amiga/amiga/device.h>
     47  1.11   chopps #include <amiga/amiga/isr.h>
     48   1.1   chopps #include <amiga/dev/dmavar.h>
     49   1.1   chopps #include <amiga/dev/sbicreg.h>
     50   1.1   chopps #include <amiga/dev/sbicvar.h>
     51   1.1   chopps #include <amiga/dev/gtscreg.h>
     52   1.9   chopps #include <amiga/dev/zbusvar.h>
     53   1.1   chopps #include <amiga/dev/gvpbusvar.h>
     54   1.1   chopps 
     55   1.1   chopps void gtscattach __P((struct device *, struct device *, void *));
     56  1.14  thorpej int gtscmatch __P((struct device *, void *, void *));
     57   1.1   chopps int gtscprint __P((void *auxp, char *));
     58   1.1   chopps 
     59  1.13   chopps void gtsc_enintr __P((struct sbic_softc *));
     60   1.1   chopps void gtsc_dmastop __P((struct sbic_softc *));
     61   1.1   chopps int gtsc_dmanext __P((struct sbic_softc *));
     62  1.15    veego int gtsc_dmaintr __P((void *));
     63   1.1   chopps int gtsc_dmago __P((struct sbic_softc *, char *, int, int));
     64   1.1   chopps 
     65  1.15    veego #ifdef DEBUG
     66  1.15    veego void gtsc_dump __P((void));
     67  1.15    veego #endif
     68  1.15    veego 
     69   1.1   chopps struct scsi_adapter gtsc_scsiswitch = {
     70   1.1   chopps 	sbic_scsicmd,
     71   1.1   chopps 	sbic_minphys,
     72   1.1   chopps 	0,			/* no lun support */
     73   1.1   chopps 	0,			/* no lun support */
     74   1.1   chopps };
     75   1.1   chopps 
     76   1.1   chopps struct scsi_device gtsc_scsidev = {
     77   1.1   chopps 	NULL,		/* use default error handler */
     78   1.1   chopps 	NULL,		/* have a queue served by this ??? */
     79   1.1   chopps 	NULL,		/* have no async handler ??? */
     80   1.1   chopps 	NULL,		/* Use default done routine */
     81   1.1   chopps };
     82   1.1   chopps 
     83   1.1   chopps int gtsc_maxdma = 0;	/* Maximum size per DMA transfer */
     84   1.1   chopps int gtsc_dmamask = 0;
     85   1.1   chopps int gtsc_dmabounce = 0;
     86  1.12   chopps int gtsc_clock_override = 0;
     87   1.1   chopps 
     88   1.1   chopps #ifdef DEBUG
     89   1.1   chopps int gtsc_debug = 0;
     90   1.1   chopps #endif
     91   1.1   chopps 
     92  1.14  thorpej struct cfattach gtsc_ca = {
     93  1.14  thorpej 	sizeof(struct sbic_softc), gtscmatch, gtscattach
     94  1.14  thorpej };
     95  1.14  thorpej 
     96  1.14  thorpej struct cfdriver gtsc_cd = {
     97  1.14  thorpej 	NULL, "gtsc", DV_DULL, NULL, 0
     98  1.14  thorpej };
     99   1.1   chopps 
    100   1.1   chopps int
    101  1.14  thorpej gtscmatch(pdp, match, auxp)
    102   1.1   chopps 	struct device *pdp;
    103  1.14  thorpej 	void *match, *auxp;
    104   1.1   chopps {
    105   1.1   chopps 	struct gvpbus_args *gap;
    106   1.1   chopps 
    107   1.1   chopps 	gap = auxp;
    108   1.1   chopps 	if (gap->flags & GVP_SCSI)
    109   1.1   chopps 		return(1);
    110   1.1   chopps 	return(0);
    111   1.1   chopps }
    112   1.1   chopps 
    113   1.1   chopps /*
    114   1.1   chopps  * attach all devices on our board.
    115   1.1   chopps  */
    116   1.1   chopps void
    117   1.1   chopps gtscattach(pdp, dp, auxp)
    118   1.1   chopps 	struct device *pdp, *dp;
    119   1.1   chopps 	void *auxp;
    120   1.1   chopps {
    121   1.1   chopps 	volatile struct sdmac *rp;
    122   1.1   chopps 	struct gvpbus_args *gap;
    123   1.1   chopps 	struct sbic_softc *sc;
    124   1.1   chopps 
    125   1.1   chopps 	gap = auxp;
    126   1.1   chopps 	sc = (struct sbic_softc *)dp;
    127   1.1   chopps 	sc->sc_cregs = rp = gap->zargs.va;
    128   1.4   chopps 
    129   1.1   chopps 	/*
    130   1.1   chopps 	 * disable ints and reset bank register
    131   1.1   chopps 	 */
    132   1.1   chopps 	rp->CNTR = 0;
    133   1.4   chopps 	if ((gap->flags & GVP_NOBANK) == 0)
    134   1.4   chopps 		rp->bank = 0;
    135   1.1   chopps 
    136   1.1   chopps 	sc->sc_dmago =  gtsc_dmago;
    137  1.13   chopps 	sc->sc_enintr = gtsc_enintr;
    138   1.1   chopps 	sc->sc_dmanext = gtsc_dmanext;
    139   1.1   chopps 	sc->sc_dmastop = gtsc_dmastop;
    140   1.1   chopps 	sc->sc_dmacmd = 0;
    141   1.1   chopps 
    142   1.1   chopps 	sc->sc_flags |= SBICF_BADDMA;
    143   1.1   chopps 	if (gtsc_dmamask)
    144   1.1   chopps 		sc->sc_dmamask = gtsc_dmamask;
    145   1.1   chopps 	else if (gap->flags & GVP_24BITDMA)
    146   1.1   chopps 		sc->sc_dmamask = ~0x00ffffff;
    147   1.1   chopps 	else if (gap->flags & GVP_25BITDMA)
    148   1.1   chopps 		sc->sc_dmamask = ~0x01ffffff;
    149   1.1   chopps 	else
    150   1.1   chopps 		sc->sc_dmamask = ~0x07ffffff;
    151  1.15    veego 	printf(": dmamask 0x%lx", ~sc->sc_dmamask);
    152   1.1   chopps 
    153   1.4   chopps 	if ((gap->flags & GVP_NOBANK) == 0)
    154   1.4   chopps 		sc->gtsc_bankmask = (~sc->sc_dmamask >> 18) & 0x01c0;
    155   1.1   chopps 
    156  1.12   chopps #if 0
    157   1.1   chopps 	/*
    158   1.1   chopps 	 * if the user requests a bounce buffer or
    159   1.1   chopps 	 * the users kva space is not ztwo and dma needs it
    160   1.1   chopps 	 * try and allocate a bounce buffer.  If we allocate
    161   1.1   chopps 	 * one and it is in ztwo space leave maxdma to user
    162   1.1   chopps 	 * setting or default to MAXPHYS else the address must
    163   1.1   chopps 	 * be on the chip bus so decrease it to either the users
    164   1.1   chopps 	 * setting or 1024 bytes.
    165   1.1   chopps 	 *
    166   1.1   chopps 	 * XXX this needs to change if we move to multiple memory segments.
    167   1.1   chopps 	 */
    168   1.1   chopps 	if (gtsc_dmabounce || kvtop(sc) & sc->sc_dmamask) {
    169  1.12   chopps 		sc->sc_dmabuffer = (char *) alloc_z2mem(MAXPHYS * 8); /* XXX */
    170   1.1   chopps 		if (isztwomem(sc->sc_dmabuffer))
    171   1.6   chopps 			printf(" bounce pa 0x%x", kvtop(sc->sc_dmabuffer));
    172   1.1   chopps 		else if (gtsc_maxdma == 0) {
    173   1.1   chopps 			gtsc_maxdma = 1024;
    174   1.2   chopps 			printf(" bounce pa 0x%x",
    175   1.1   chopps 			    PREP_DMA_MEM(sc->sc_dmabuffer));
    176   1.1   chopps 		}
    177   1.1   chopps 	}
    178  1.12   chopps #endif
    179   1.1   chopps 	if (gtsc_maxdma == 0)
    180   1.1   chopps 		gtsc_maxdma = MAXPHYS;
    181   1.1   chopps 
    182  1.12   chopps 	printf(" flags %x", gap->flags);
    183   1.2   chopps 	printf(" maxdma %d\n", gtsc_maxdma);
    184   1.1   chopps 
    185   1.1   chopps 	sc->sc_sbicp = (sbic_regmap_p) ((int)rp + 0x61);
    186  1.12   chopps 	sc->sc_clkfreq = gtsc_clock_override ? gtsc_clock_override :
    187  1.12   chopps 	    ((gap->flags & GVP_14MHZ) ? 143 : 72);
    188  1.15    veego 	printf("sc_clkfreg: %ld.%ldMhz\n", sc->sc_clkfreq / 10, sc->sc_clkfreq % 10);
    189   1.1   chopps 
    190   1.1   chopps 	sc->sc_link.adapter_softc = sc;
    191  1.10   chopps 	sc->sc_link.adapter_target = 7;
    192   1.1   chopps 	sc->sc_link.adapter = &gtsc_scsiswitch;
    193   1.1   chopps 	sc->sc_link.device = &gtsc_scsidev;
    194  1.12   chopps 	sc->sc_link.openings = 2;
    195  1.12   chopps 
    196  1.12   chopps 	sbicinit(sc);
    197   1.1   chopps 
    198  1.11   chopps 	sc->sc_isr.isr_intr = gtsc_dmaintr;
    199  1.11   chopps 	sc->sc_isr.isr_arg = sc;
    200  1.11   chopps 	sc->sc_isr.isr_ipl = 2;
    201  1.11   chopps 	add_isr(&sc->sc_isr);
    202   1.1   chopps 
    203   1.1   chopps 	/*
    204   1.1   chopps 	 * attach all scsi units on us
    205   1.1   chopps 	 */
    206   1.1   chopps 	config_found(dp, &sc->sc_link, gtscprint);
    207   1.1   chopps }
    208   1.1   chopps 
    209   1.1   chopps /*
    210   1.1   chopps  * print diag if pnp is NULL else just extra
    211   1.1   chopps  */
    212   1.1   chopps int
    213   1.1   chopps gtscprint(auxp, pnp)
    214   1.1   chopps 	void *auxp;
    215   1.1   chopps 	char *pnp;
    216   1.1   chopps {
    217   1.1   chopps 	if (pnp == NULL)
    218   1.1   chopps 		return(UNCONF);
    219   1.1   chopps 	return(QUIET);
    220   1.1   chopps }
    221   1.1   chopps 
    222   1.1   chopps void
    223  1.13   chopps gtsc_enintr(dev)
    224   1.1   chopps 	struct sbic_softc *dev;
    225   1.1   chopps {
    226   1.1   chopps 	volatile struct sdmac *sdp;
    227   1.1   chopps 
    228   1.1   chopps 	sdp = dev->sc_cregs;
    229   1.1   chopps 
    230  1.13   chopps 	dev->sc_flags |= SBICF_INTR;
    231  1.13   chopps 	sdp->CNTR = GVP_CNTR_INTEN;
    232   1.1   chopps }
    233   1.1   chopps 
    234   1.1   chopps int
    235   1.1   chopps gtsc_dmago(dev, addr, count, flags)
    236   1.1   chopps 	struct sbic_softc *dev;
    237   1.1   chopps 	char *addr;
    238   1.1   chopps 	int count, flags;
    239   1.1   chopps {
    240   1.1   chopps 	volatile struct sdmac *sdp;
    241   1.1   chopps 
    242   1.1   chopps 	sdp = dev->sc_cregs;
    243   1.1   chopps 	/*
    244   1.1   chopps 	 * Set up the command word based on flags
    245   1.1   chopps 	 */
    246   1.1   chopps 	dev->sc_dmacmd = GVP_CNTR_INTEN;
    247   1.1   chopps 	if ((flags & DMAGO_READ) == 0)
    248   1.1   chopps 		dev->sc_dmacmd |= GVP_CNTR_DDIR;
    249   1.1   chopps 
    250   1.1   chopps #ifdef DEBUG
    251   1.1   chopps 	if (gtsc_debug & DDB_IO)
    252   1.1   chopps 		printf("gtsc_dmago: cmd %x\n", dev->sc_dmacmd);
    253   1.1   chopps #endif
    254   1.1   chopps 	dev->sc_flags |= SBICF_INTR;
    255   1.1   chopps 	sdp->CNTR = dev->sc_dmacmd;
    256  1.13   chopps 	if((u_int)dev->sc_cur->dc_addr & dev->sc_dmamask) {
    257  1.13   chopps #if 1
    258  1.15    veego 		printf("gtsc_dmago: pa %p->%lx dmacmd %x",
    259  1.13   chopps 		    dev->sc_cur->dc_addr,
    260  1.13   chopps 		    (u_int)dev->sc_cur->dc_addr & ~dev->sc_dmamask,
    261  1.13   chopps 		     dev->sc_dmacmd);
    262  1.13   chopps #endif
    263  1.13   chopps 		sdp->ACR = 0x00f80000;	/***********************************/
    264  1.13   chopps 	} else
    265  1.13   chopps 		sdp->ACR = (u_int) dev->sc_cur->dc_addr;
    266   1.1   chopps 	if (dev->gtsc_bankmask)
    267   1.4   chopps 		sdp->bank =
    268   1.4   chopps 		    dev->gtsc_bankmask & (((u_int)dev->sc_cur->dc_addr) >> 18);
    269   1.1   chopps 	sdp->ST_DMA = 1;
    270   1.1   chopps 
    271   1.1   chopps 	/*
    272   1.1   chopps 	 * restrict transfer count to maximum
    273   1.1   chopps 	 */
    274   1.1   chopps 	if (dev->sc_tcnt > gtsc_maxdma)
    275   1.1   chopps 		dev->sc_tcnt = gtsc_maxdma;
    276  1.13   chopps #if 1
    277  1.13   chopps 	if((u_int)dev->sc_cur->dc_addr & dev->sc_dmamask)
    278  1.15    veego 		printf(" tcnt %ld\n", dev->sc_tcnt);
    279  1.13   chopps #endif
    280   1.1   chopps 	return(dev->sc_tcnt);
    281   1.1   chopps }
    282   1.1   chopps 
    283   1.1   chopps void
    284   1.1   chopps gtsc_dmastop(dev)
    285   1.1   chopps 	struct sbic_softc *dev;
    286   1.1   chopps {
    287   1.1   chopps 	volatile struct sdmac *sdp;
    288   1.1   chopps 	int s;
    289   1.1   chopps 
    290   1.1   chopps 	sdp = dev->sc_cregs;
    291   1.1   chopps 
    292   1.1   chopps #ifdef DEBUG
    293   1.1   chopps 	if (gtsc_debug & DDB_FOLLOW)
    294   1.1   chopps 		printf("gtsc_dmastop()\n");
    295   1.1   chopps #endif
    296   1.1   chopps 	if (dev->sc_dmacmd) {
    297   1.1   chopps 		/*
    298   1.1   chopps 		 * clear possible interrupt and stop dma
    299   1.1   chopps 		 */
    300   1.1   chopps 		s = splbio();
    301   1.1   chopps 		sdp->CNTR &= ~GVP_CNTR_INT_P;
    302   1.1   chopps 		sdp->SP_DMA = 1;
    303   1.1   chopps 		dev->sc_dmacmd = 0;
    304   1.1   chopps 		splx(s);
    305   1.1   chopps 	}
    306   1.1   chopps }
    307   1.1   chopps 
    308   1.1   chopps int
    309  1.15    veego gtsc_dmaintr(arg)
    310  1.15    veego 	void *arg;
    311   1.1   chopps {
    312  1.15    veego 	struct sbic_softc *dev = arg;
    313   1.1   chopps 	volatile struct sdmac *sdp;
    314  1.11   chopps 	int stat;
    315   1.1   chopps 
    316  1.11   chopps 	sdp = dev->sc_cregs;
    317  1.11   chopps 	stat = sdp->CNTR;
    318  1.11   chopps 	if ((stat & GVP_CNTR_INT_P) == 0)
    319  1.11   chopps 		return (0);
    320   1.1   chopps #ifdef DEBUG
    321  1.11   chopps 	if (gtsc_debug & DDB_FOLLOW)
    322  1.11   chopps 		printf("%s: dmaintr 0x%x\n", dev->sc_dev.dv_xname, stat);
    323   1.1   chopps #endif
    324  1.11   chopps 	if (dev->sc_flags & SBICF_INTR)
    325  1.11   chopps 		if (sbicintr(dev))
    326  1.11   chopps 			return (1);
    327  1.11   chopps 	return(0);
    328   1.1   chopps }
    329   1.1   chopps 
    330   1.1   chopps 
    331   1.1   chopps int
    332   1.1   chopps gtsc_dmanext(dev)
    333   1.1   chopps 	struct sbic_softc *dev;
    334   1.1   chopps {
    335   1.1   chopps 	volatile struct sdmac *sdp;
    336   1.1   chopps 
    337   1.1   chopps 	sdp = dev->sc_cregs;
    338   1.1   chopps 
    339   1.1   chopps 	if (dev->sc_cur > dev->sc_last) {
    340   1.1   chopps 		/* shouldn't happen !! */
    341   1.1   chopps 		printf("gtsc_dmanext at end !!!\n");
    342   1.1   chopps 		gtsc_dmastop(dev);
    343   1.1   chopps 		return(0);
    344   1.1   chopps 	}
    345   1.1   chopps 	/*
    346   1.1   chopps 	 * clear possible interrupt and stop dma
    347   1.1   chopps 	 */
    348   1.1   chopps 	sdp->CNTR &= ~GVP_CNTR_INT_P;
    349   1.1   chopps 	sdp->SP_DMA = 1;
    350   1.1   chopps 
    351   1.1   chopps 	sdp->CNTR = dev->sc_dmacmd;
    352   1.1   chopps 	sdp->ACR = (u_int) dev->sc_cur->dc_addr;
    353   1.1   chopps 	if (dev->gtsc_bankmask)
    354   1.1   chopps 		sdp->bank =
    355   1.1   chopps 		    dev->gtsc_bankmask & ((u_int)dev->sc_cur->dc_addr >> 18);
    356   1.1   chopps 	sdp->ST_DMA = 1;
    357   1.1   chopps 
    358   1.1   chopps 	dev->sc_tcnt = dev->sc_cur->dc_count << 1;
    359   1.1   chopps 	if (dev->sc_tcnt > gtsc_maxdma)
    360   1.1   chopps 		dev->sc_tcnt = gtsc_maxdma;
    361   1.1   chopps #ifdef DEBUG
    362   1.1   chopps 	if (gtsc_debug & DDB_FOLLOW)
    363  1.15    veego 		printf("gtsc_dmanext ret: %ld\n", dev->sc_tcnt);
    364   1.1   chopps #endif
    365   1.1   chopps 	return(dev->sc_tcnt);
    366   1.1   chopps }
    367   1.1   chopps 
    368   1.1   chopps #ifdef DEBUG
    369   1.1   chopps void
    370  1.13   chopps gtsc_dump()
    371   1.1   chopps {
    372  1.13   chopps 	int i;
    373   1.1   chopps 
    374  1.14  thorpej 	for (i = 0; i < gtsc_cd.cd_ndevs; ++i)
    375  1.14  thorpej 		if (gtsc_cd.cd_devs[i])
    376  1.14  thorpej 			sbic_dump(gtsc_cd.cd_devs[i]);
    377   1.1   chopps }
    378   1.1   chopps #endif
    379