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wdsc.c revision 1.21.2.1
      1  1.21.2.1  jdolecek /*	$NetBSD: wdsc.c,v 1.21.2.1 2002/10/10 18:34:18 jdolecek Exp $	*/
      2       1.1     chuck 
      3       1.1     chuck /*
      4       1.1     chuck  * Copyright (c) 1996 Steve Woodford
      5       1.1     chuck  * Copyright (c) 1982, 1990 The Regents of the University of California.
      6       1.1     chuck  * All rights reserved.
      7       1.1     chuck  *
      8       1.1     chuck  * Redistribution and use in source and binary forms, with or without
      9       1.1     chuck  * modification, are permitted provided that the following conditions
     10       1.1     chuck  * are met:
     11       1.1     chuck  * 1. Redistributions of source code must retain the above copyright
     12       1.1     chuck  *    notice, this list of conditions and the following disclaimer.
     13       1.1     chuck  * 2. Redistributions in binary form must reproduce the above copyright
     14       1.1     chuck  *    notice, this list of conditions and the following disclaimer in the
     15       1.1     chuck  *    documentation and/or other materials provided with the distribution.
     16       1.1     chuck  * 3. All advertising materials mentioning features or use of this software
     17       1.1     chuck  *    must display the following acknowledgement:
     18       1.1     chuck  *  This product includes software developed by the University of
     19       1.1     chuck  *  California, Berkeley and its contributors.
     20       1.1     chuck  * 4. Neither the name of the University nor the names of its contributors
     21       1.1     chuck  *    may be used to endorse or promote products derived from this software
     22       1.1     chuck  *    without specific prior written permission.
     23       1.1     chuck  *
     24       1.1     chuck  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     25       1.1     chuck  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26       1.1     chuck  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27       1.1     chuck  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     28       1.1     chuck  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29       1.1     chuck  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30       1.1     chuck  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31       1.1     chuck  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32       1.1     chuck  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33       1.1     chuck  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34       1.1     chuck  * SUCH DAMAGE.
     35       1.1     chuck  *
     36       1.1     chuck  *  @(#)wdsc.c
     37       1.1     chuck  */
     38       1.2     chuck 
     39       1.1     chuck #include <sys/param.h>
     40       1.1     chuck #include <sys/systm.h>
     41       1.1     chuck #include <sys/kernel.h>
     42       1.1     chuck #include <sys/device.h>
     43       1.2     chuck 
     44      1.10    bouyer #include <dev/scsipi/scsi_all.h>
     45      1.10    bouyer #include <dev/scsipi/scsipi_all.h>
     46      1.10    bouyer #include <dev/scsipi/scsiconf.h>
     47       1.2     chuck 
     48      1.16       scw #include <machine/cpu.h>
     49      1.17       scw #include <machine/bus.h>
     50       1.3     chuck #include <machine/autoconf.h>
     51       1.3     chuck 
     52       1.2     chuck #include <mvme68k/dev/dmavar.h>
     53       1.1     chuck #include <mvme68k/dev/pccreg.h>
     54       1.2     chuck #include <mvme68k/dev/pccvar.h>
     55       1.1     chuck #include <mvme68k/dev/sbicreg.h>
     56       1.1     chuck #include <mvme68k/dev/sbicvar.h>
     57       1.1     chuck #include <mvme68k/dev/wdscreg.h>
     58       1.1     chuck 
     59       1.2     chuck void    wdsc_pcc_attach __P((struct device *, struct device *, void *));
     60       1.9       gwr int     wdsc_pcc_match  __P((struct device *, struct cfdata *, void *));
     61       1.1     chuck 
     62  1.21.2.1  jdolecek CFATTACH_DECL(wdsc_pcc, sizeof(struct sbic_softc),
     63  1.21.2.1  jdolecek     wdsc_pcc_match, wdsc_pcc_attach, NULL, NULL);
     64      1.17       scw 
     65      1.17       scw extern struct cfdriver wdsc_cd;
     66      1.17       scw 
     67       1.1     chuck void    wdsc_enintr     __P((struct sbic_softc *));
     68       1.1     chuck int     wdsc_dmago      __P((struct sbic_softc *, char *, int, int));
     69       1.1     chuck int     wdsc_dmanext    __P((struct sbic_softc *));
     70       1.1     chuck void    wdsc_dmastop    __P((struct sbic_softc *));
     71       1.2     chuck int     wdsc_dmaintr    __P((void *));
     72       1.2     chuck int     wdsc_scsiintr   __P((void *));
     73       1.1     chuck 
     74       1.1     chuck /*
     75       1.1     chuck  * Match for SCSI devices on the onboard WD33C93 chip
     76       1.1     chuck  */
     77       1.1     chuck int
     78       1.9       gwr wdsc_pcc_match(pdp, cf, auxp)
     79       1.1     chuck     struct device *pdp;
     80       1.9       gwr 	struct cfdata *cf;
     81       1.9       gwr     void *auxp;
     82       1.1     chuck {
     83       1.2     chuck     struct pcc_attach_args *pa = auxp;
     84       1.2     chuck 
     85       1.2     chuck     if (strcmp(pa->pa_name, wdsc_cd.cd_name))
     86       1.2     chuck 	return (0);
     87       1.2     chuck 
     88       1.2     chuck     pa->pa_ipl = cf->pcccf_ipl;
     89       1.2     chuck     return (1);
     90       1.1     chuck }
     91       1.1     chuck 
     92       1.1     chuck /*
     93       1.1     chuck  * Attach the wdsc driver
     94       1.1     chuck  */
     95       1.1     chuck void
     96       1.2     chuck wdsc_pcc_attach(pdp, dp, auxp)
     97       1.1     chuck     struct device *pdp, *dp;
     98       1.1     chuck     void *auxp;
     99       1.1     chuck {
    100      1.17       scw     struct sbic_softc *sc;
    101      1.17       scw     struct pcc_attach_args *pa;
    102      1.17       scw     bus_space_handle_t bush;
    103      1.21       scw     static struct evcnt evcnt;	/* XXXSCW: Temporary hack */
    104       1.1     chuck 
    105      1.17       scw     sc = (struct sbic_softc *)dp;
    106      1.17       scw     pa = auxp;
    107      1.17       scw 
    108      1.17       scw     bus_space_map(pa->pa_bust, pa->pa_offset, 0x20, 0, &bush);
    109       1.1     chuck 
    110      1.17       scw     /*
    111      1.17       scw      * XXXSCW: We *need* an MI, bus_spaced WD33C93 driver...
    112      1.17       scw      */
    113      1.17       scw     sc->sc_sbicp = (sbic_regmap_p) bush;
    114       1.1     chuck 
    115      1.21       scw     sc->sc_driver  = (void *) &evcnt;
    116       1.1     chuck     sc->sc_enintr  = wdsc_enintr;
    117       1.1     chuck     sc->sc_dmago   = wdsc_dmago;
    118       1.1     chuck     sc->sc_dmanext = wdsc_dmanext;
    119       1.1     chuck     sc->sc_dmastop = wdsc_dmastop;
    120       1.1     chuck     sc->sc_dmacmd  = 0;
    121       1.1     chuck 
    122      1.20    bouyer     sc->sc_adapter.adapt_dev = &sc->sc_dev;
    123      1.20    bouyer     sc->sc_adapter.adapt_nchannels = 1;
    124      1.20    bouyer     sc->sc_adapter.adapt_openings = 7;
    125      1.20    bouyer     sc->sc_adapter.adapt_max_periph = 1;
    126      1.20    bouyer     sc->sc_adapter.adapt_ioctl = NULL;
    127      1.20    bouyer     sc->sc_adapter.adapt_minphys = sbic_minphys;
    128      1.20    bouyer     sc->sc_adapter.adapt_request = sbic_scsi_request;
    129      1.20    bouyer 
    130      1.20    bouyer     sc->sc_channel.chan_adapter = &sc->sc_adapter;
    131      1.20    bouyer     sc->sc_channel.chan_bustype = &scsi_bustype;
    132      1.20    bouyer     sc->sc_channel.chan_channel = 0;
    133      1.20    bouyer     sc->sc_channel.chan_ntargets = 8;
    134      1.20    bouyer     sc->sc_channel.chan_nluns = 8;
    135      1.20    bouyer     sc->sc_channel.chan_id = 7;
    136       1.1     chuck 
    137      1.20    bouyer     printf(": WD33C93 SCSI, target %d\n", sc->sc_channel.chan_id);
    138       1.1     chuck 
    139       1.1     chuck     /*
    140       1.1     chuck      * Eveything is a valid dma address.
    141       1.1     chuck      */
    142       1.1     chuck     sc->sc_dmamask = 0;
    143       1.1     chuck 
    144       1.1     chuck     /*
    145       1.1     chuck      * The onboard WD33C93 of the '147 is usually clocked at 10MHz...
    146       1.1     chuck      * (We use 10 times this for accuracy in later calculations)
    147       1.1     chuck      */
    148       1.1     chuck     sc->sc_clkfreq = 100;
    149       1.1     chuck 
    150       1.1     chuck     /*
    151       1.1     chuck      * Initialise the hardware
    152       1.1     chuck      */
    153       1.1     chuck     sbicinit(sc);
    154       1.1     chuck 
    155       1.1     chuck     /*
    156       1.1     chuck      * Fix up the interrupts
    157       1.1     chuck      */
    158       1.2     chuck     sc->sc_ipl = pa->pa_ipl & PCC_IMASK;
    159       1.1     chuck 
    160      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_SCSI_INTR_CTRL, PCC_ICLEAR);
    161      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_INTR_CTRL, PCC_ICLEAR);
    162      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_CONTROL, 0);
    163      1.17       scw 
    164      1.21       scw     evcnt_attach_dynamic(&evcnt, EVCNT_TYPE_INTR, pccintr_evcnt(sc->sc_ipl),
    165      1.21       scw 	"disk", sc->sc_dev.dv_xname);
    166      1.21       scw     pccintr_establish(PCCV_DMA, wdsc_dmaintr,  sc->sc_ipl, sc, &evcnt);
    167      1.21       scw     pccintr_establish(PCCV_SCSI, wdsc_scsiintr, sc->sc_ipl, sc, &evcnt);
    168      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_SCSI_INTR_CTRL,
    169      1.17       scw         sc->sc_ipl | PCC_IENABLE | PCC_ICLEAR);
    170       1.1     chuck 
    171      1.20    bouyer     (void)config_found(dp, &sc->sc_channel, scsiprint);
    172       1.1     chuck }
    173       1.1     chuck 
    174       1.1     chuck /*
    175       1.1     chuck  * Enable DMA interrupts
    176       1.1     chuck  */
    177       1.1     chuck void
    178       1.1     chuck wdsc_enintr(dev)
    179       1.1     chuck     struct sbic_softc *dev;
    180       1.1     chuck {
    181       1.1     chuck     dev->sc_flags |= SBICF_INTR;
    182       1.1     chuck 
    183      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_INTR_CTRL,
    184      1.17       scw         dev->sc_ipl | PCC_IENABLE | PCC_ICLEAR);
    185       1.1     chuck }
    186       1.1     chuck 
    187       1.1     chuck /*
    188       1.1     chuck  * Prime the hardware for a DMA transfer
    189       1.1     chuck  */
    190       1.1     chuck int
    191       1.1     chuck wdsc_dmago(dev, addr, count, flags)
    192       1.1     chuck     struct sbic_softc *dev;
    193       1.1     chuck     char *addr;
    194       1.1     chuck     int count, flags;
    195       1.1     chuck {
    196       1.1     chuck     /*
    197       1.1     chuck      * Set up the command word based on flags
    198       1.1     chuck      */
    199       1.1     chuck     if ( (flags & DMAGO_READ) == 0 )
    200       1.1     chuck         dev->sc_dmacmd = DMAC_CSR_ENABLE | DMAC_CSR_WRITE;
    201       1.1     chuck     else
    202       1.1     chuck         dev->sc_dmacmd = DMAC_CSR_ENABLE;
    203       1.1     chuck 
    204       1.1     chuck     dev->sc_flags |= SBICF_INTR;
    205       1.1     chuck     dev->sc_tcnt   = dev->sc_cur->dc_count << 1;
    206       1.1     chuck 
    207       1.1     chuck     /*
    208       1.1     chuck      * Prime the hardware.
    209       1.1     chuck      * Note, it's probably not necessary to do this here, since dmanext
    210       1.1     chuck      * is called just prior to the actual transfer.
    211       1.1     chuck      */
    212      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_CONTROL, 0);
    213      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_INTR_CTRL,
    214      1.17       scw         dev->sc_ipl | PCC_IENABLE | PCC_ICLEAR);
    215      1.17       scw     pcc_reg_write32(sys_pcc, PCCREG_DMA_DATA_ADDR,
    216      1.17       scw 	(u_int32_t) dev->sc_cur->dc_addr);
    217      1.17       scw     pcc_reg_write32(sys_pcc, PCCREG_DMA_BYTE_COUNT,
    218      1.17       scw 	(u_int32_t) dev->sc_tcnt | (1 << 24));
    219      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_CONTROL, dev->sc_dmacmd);
    220       1.1     chuck 
    221       1.1     chuck     return(dev->sc_tcnt);
    222       1.1     chuck }
    223       1.1     chuck 
    224       1.1     chuck /*
    225       1.1     chuck  * Prime the hardware for the next DMA transfer
    226       1.1     chuck  */
    227       1.1     chuck int
    228       1.1     chuck wdsc_dmanext(dev)
    229       1.1     chuck     struct sbic_softc *dev;
    230       1.1     chuck {
    231       1.1     chuck     if ( dev->sc_cur > dev->sc_last ) {
    232       1.1     chuck         /*
    233       1.1     chuck          * Shouldn't happen !!
    234       1.1     chuck          */
    235       1.7  christos         printf("wdsc_dmanext at end !!!\n");
    236       1.1     chuck         wdsc_dmastop(dev);
    237       1.1     chuck         return(0);
    238       1.1     chuck     }
    239       1.1     chuck 
    240       1.1     chuck     dev->sc_tcnt = dev->sc_cur->dc_count << 1;
    241       1.1     chuck 
    242       1.1     chuck     /*
    243       1.1     chuck      * Load the next DMA address
    244       1.1     chuck      */
    245      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_CONTROL, 0);
    246      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_INTR_CTRL,
    247      1.17       scw         dev->sc_ipl | PCC_IENABLE | PCC_ICLEAR);
    248      1.17       scw     pcc_reg_write32(sys_pcc, PCCREG_DMA_DATA_ADDR,
    249      1.17       scw 	(u_int32_t) dev->sc_cur->dc_addr);
    250      1.17       scw     pcc_reg_write32(sys_pcc, PCCREG_DMA_BYTE_COUNT,
    251      1.17       scw 	(u_int32_t) dev->sc_tcnt | (1 << 24));
    252      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_CONTROL, dev->sc_dmacmd);
    253       1.1     chuck 
    254       1.1     chuck     return(dev->sc_tcnt);
    255       1.1     chuck }
    256       1.1     chuck 
    257       1.1     chuck /*
    258       1.1     chuck  * Stop DMA, and disable interrupts
    259       1.1     chuck  */
    260       1.1     chuck void
    261       1.1     chuck wdsc_dmastop(dev)
    262       1.1     chuck     struct sbic_softc *dev;
    263       1.1     chuck {
    264      1.17       scw     int s;
    265       1.1     chuck 
    266       1.1     chuck     s = splbio();
    267       1.1     chuck 
    268      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_CONTROL, 0);
    269      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_DMA_INTR_CTRL, dev->sc_ipl | PCC_ICLEAR);
    270       1.1     chuck 
    271       1.1     chuck     splx(s);
    272       1.1     chuck }
    273       1.1     chuck 
    274       1.1     chuck /*
    275       1.1     chuck  * Come here following a DMA interrupt
    276       1.1     chuck  */
    277       1.1     chuck int
    278       1.2     chuck wdsc_dmaintr(arg)
    279       1.2     chuck     void *arg;
    280       1.1     chuck {
    281       1.2     chuck     struct sbic_softc *dev = arg;
    282      1.17       scw     int found = 0;
    283       1.1     chuck 
    284       1.1     chuck     /*
    285       1.1     chuck      * Really a DMA interrupt?
    286       1.1     chuck      */
    287      1.17       scw     if ( (pcc_reg_read(sys_pcc, PCCREG_DMA_INTR_CTRL) & 0x80) == 0 )
    288       1.1     chuck         return(0);
    289       1.1     chuck 
    290       1.1     chuck     /*
    291       1.1     chuck      * Was it a completion interrupt?
    292       1.1     chuck      * XXXSCW Note: Support for other DMA interrupts is required, eg. buserr
    293       1.1     chuck      */
    294      1.17       scw     if ( pcc_reg_read(sys_pcc, PCCREG_DMA_CONTROL) & DMAC_CSR_DONE ) {
    295       1.1     chuck         ++found;
    296       1.1     chuck 
    297      1.17       scw 	pcc_reg_write(sys_pcc, PCCREG_DMA_INTR_CTRL,
    298      1.17       scw 	    dev->sc_ipl | PCC_IENABLE | PCC_ICLEAR);
    299       1.1     chuck     }
    300       1.1     chuck 
    301       1.1     chuck     return(found);
    302       1.1     chuck }
    303       1.1     chuck 
    304       1.1     chuck /*
    305       1.1     chuck  * Come here for SCSI interrupts
    306       1.1     chuck  */
    307       1.1     chuck int
    308       1.2     chuck wdsc_scsiintr(arg)
    309       1.2     chuck     void *arg;
    310       1.1     chuck {
    311       1.2     chuck     struct sbic_softc *dev = arg;
    312      1.17       scw     int found;
    313       1.1     chuck 
    314       1.1     chuck     /*
    315       1.1     chuck      * Really a SCSI interrupt?
    316       1.1     chuck      */
    317      1.17       scw     if ( (pcc_reg_read(sys_pcc, PCCREG_SCSI_INTR_CTRL) & 0x80) == 0 )
    318       1.1     chuck         return(0);
    319       1.1     chuck 
    320       1.1     chuck     /*
    321       1.1     chuck      * Go handle it
    322       1.1     chuck      */
    323       1.1     chuck     found = sbicintr(dev);
    324       1.1     chuck 
    325       1.1     chuck     /*
    326       1.1     chuck      * Acknowledge and clear the interrupt
    327       1.1     chuck      */
    328      1.17       scw     pcc_reg_write(sys_pcc, PCCREG_SCSI_INTR_CTRL,
    329      1.17       scw 	    dev->sc_ipl | PCC_IENABLE | PCC_ICLEAR);
    330       1.1     chuck 
    331       1.1     chuck     return(found);
    332       1.1     chuck }
    333