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sbus.c revision 1.75
      1  1.75       cdi /*	$NetBSD: sbus.c,v 1.75 2006/02/11 17:57:31 cdi Exp $ */
      2   1.1       eeh 
      3  1.50       eeh /*
      4  1.50       eeh  * Copyright (c) 1999-2002 Eduardo Horvath
      5   1.1       eeh  * All rights reserved.
      6   1.1       eeh  *
      7   1.1       eeh  * Redistribution and use in source and binary forms, with or without
      8   1.1       eeh  * modification, are permitted provided that the following conditions
      9   1.1       eeh  * are met:
     10   1.1       eeh  * 1. Redistributions of source code must retain the above copyright
     11   1.1       eeh  *    notice, this list of conditions and the following disclaimer.
     12   1.1       eeh  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1       eeh  *    notice, this list of conditions and the following disclaimer in the
     14   1.1       eeh  *    documentation and/or other materials provided with the distribution.
     15  1.50       eeh  * 3. The name of the author may not be used to endorse or promote products
     16  1.50       eeh  *    derived from this software without specific prior written permission.
     17  1.18       eeh  *
     18  1.50       eeh  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     19  1.50       eeh  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     20  1.50       eeh  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     21  1.50       eeh  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     22  1.50       eeh  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     23  1.50       eeh  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     24  1.50       eeh  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     25  1.50       eeh  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     26  1.50       eeh  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     27  1.18       eeh  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     28  1.18       eeh  * SUCH DAMAGE.
     29  1.18       eeh  */
     30  1.18       eeh 
     31  1.18       eeh 
     32  1.18       eeh /*
     33   1.1       eeh  * Sbus stuff.
     34   1.1       eeh  */
     35  1.61     lukem 
     36  1.61     lukem #include <sys/cdefs.h>
     37  1.75       cdi __KERNEL_RCSID(0, "$NetBSD: sbus.c,v 1.75 2006/02/11 17:57:31 cdi Exp $");
     38  1.61     lukem 
     39   1.8       eeh #include "opt_ddb.h"
     40   1.1       eeh 
     41   1.1       eeh #include <sys/param.h>
     42  1.12       eeh #include <sys/extent.h>
     43   1.1       eeh #include <sys/malloc.h>
     44   1.1       eeh #include <sys/systm.h>
     45   1.1       eeh #include <sys/device.h>
     46  1.40       eeh #include <sys/reboot.h>
     47   1.1       eeh 
     48   1.1       eeh #include <machine/bus.h>
     49  1.50       eeh #include <machine/openfirm.h>
     50  1.50       eeh 
     51  1.25       mrg #include <sparc64/sparc64/cache.h>
     52  1.13       mrg #include <sparc64/dev/iommureg.h>
     53  1.17       mrg #include <sparc64/dev/iommuvar.h>
     54   1.1       eeh #include <sparc64/dev/sbusreg.h>
     55   1.7        pk #include <dev/sbus/sbusvar.h>
     56   1.1       eeh 
     57  1.59   thorpej #include <uvm/uvm_extern.h>
     58  1.44       eeh 
     59   1.1       eeh #include <machine/autoconf.h>
     60   1.1       eeh #include <machine/cpu.h>
     61   1.8       eeh #include <machine/sparc64.h>
     62   1.1       eeh 
     63   1.1       eeh #ifdef DEBUG
     64   1.1       eeh #define SDB_DVMA	0x1
     65   1.1       eeh #define SDB_INTR	0x2
     66  1.27       mrg int sbus_debug = 0;
     67  1.27       mrg #define DPRINTF(l, s)   do { if (sbus_debug & l) printf s; } while (0)
     68  1.27       mrg #else
     69  1.27       mrg #define DPRINTF(l, s)
     70   1.1       eeh #endif
     71   1.1       eeh 
     72  1.75       cdi void sbusreset(int);
     73   1.1       eeh 
     74  1.75       cdi static bus_dma_tag_t sbus_alloc_dmatag(struct sbus_softc *);
     75  1.75       cdi static int sbus_get_intr(struct sbus_softc *, int, struct openprom_intr **,
     76  1.75       cdi 	int *, int);
     77  1.75       cdi static int sbus_overtemp(void *);
     78  1.75       cdi static int _sbus_bus_map(
     79   1.1       eeh 		bus_space_tag_t,
     80   1.1       eeh 		bus_addr_t,		/*offset*/
     81   1.1       eeh 		bus_size_t,		/*size*/
     82   1.1       eeh 		int,			/*flags*/
     83  1.47       eeh 		vaddr_t,			/* XXX unused -- compat w/sparc */
     84  1.75       cdi 		bus_space_handle_t *);
     85  1.75       cdi static void *sbus_intr_establish(
     86   1.1       eeh 		bus_space_tag_t,
     87  1.75       cdi 		int,			/*`device class' priority*/
     88  1.35        pk 		int,			/*Sbus interrupt level*/
     89  1.75       cdi 		int (*)(void *),	/*handler*/
     90  1.56        pk 		void *,			/*handler arg*/
     91  1.75       cdi 		void (*)(void));	/*optional fast trap*/
     92   1.1       eeh 
     93   1.1       eeh 
     94   1.1       eeh /* autoconfiguration driver */
     95  1.75       cdi int	sbus_match(struct device *, struct cfdata *, void *);
     96  1.75       cdi void	sbus_attach(struct device *, struct device *, void *);
     97   1.1       eeh 
     98   1.1       eeh 
     99  1.54   thorpej CFATTACH_DECL(sbus, sizeof(struct sbus_softc),
    100  1.55   thorpej     sbus_match, sbus_attach, NULL, NULL);
    101   1.1       eeh 
    102   1.1       eeh extern struct cfdriver sbus_cd;
    103   1.1       eeh 
    104   1.1       eeh /*
    105   1.1       eeh  * DVMA routines
    106   1.1       eeh  */
    107  1.75       cdi int	sbus_dmamap_load(bus_dma_tag_t, bus_dmamap_t, void *, bus_size_t,
    108  1.75       cdi 		struct proc *, int);
    109  1.75       cdi void	sbus_dmamap_unload(bus_dma_tag_t, bus_dmamap_t);
    110  1.75       cdi int	sbus_dmamap_load_raw(bus_dma_tag_t, bus_dmamap_t, bus_dma_segment_t *,
    111  1.75       cdi 		int, bus_size_t, int);
    112  1.75       cdi void	sbus_dmamap_sync(bus_dma_tag_t, bus_dmamap_t, bus_addr_t, bus_size_t,
    113  1.75       cdi 		int);
    114  1.75       cdi int	sbus_dmamem_alloc(bus_dma_tag_t tag, bus_size_t size,
    115  1.75       cdi 		bus_size_t alignment, bus_size_t boundary,
    116  1.75       cdi 		bus_dma_segment_t *segs, int nsegs, int *rsegs, int flags);
    117  1.75       cdi void	sbus_dmamem_free(bus_dma_tag_t tag, bus_dma_segment_t *segs, int nsegs);
    118  1.75       cdi int	sbus_dmamem_map(bus_dma_tag_t tag, bus_dma_segment_t *segs, int nsegs,
    119  1.75       cdi 		size_t size, caddr_t *kvap, int flags);
    120  1.75       cdi void	sbus_dmamem_unmap(bus_dma_tag_t tag, caddr_t kva, size_t size);
    121   1.1       eeh 
    122   1.1       eeh /*
    123   1.1       eeh  * Child devices receive the Sbus interrupt level in their attach
    124   1.1       eeh  * arguments. We translate these to CPU IPLs using the following
    125   1.1       eeh  * tables. Note: obio bus interrupt levels are identical to the
    126   1.1       eeh  * processor IPL.
    127   1.1       eeh  *
    128   1.1       eeh  * The second set of tables is used when the Sbus interrupt level
    129   1.1       eeh  * cannot be had from the PROM as an `interrupt' property. We then
    130   1.1       eeh  * fall back on the `intr' property which contains the CPU IPL.
    131   1.1       eeh  */
    132   1.1       eeh 
    133   1.1       eeh /*
    134   1.1       eeh  * This value is or'ed into the attach args' interrupt level cookie
    135   1.1       eeh  * if the interrupt level comes from an `intr' property, i.e. it is
    136   1.1       eeh  * not an Sbus interrupt level.
    137   1.1       eeh  */
    138   1.1       eeh #define SBUS_INTR_COMPAT	0x80000000
    139   1.1       eeh 
    140   1.1       eeh 
    141   1.1       eeh /*
    142   1.1       eeh  * Print the location of some sbus-attached device (called just
    143   1.1       eeh  * before attaching that device).  If `sbus' is not NULL, the
    144   1.1       eeh  * device was found but not configured; print the sbus as well.
    145   1.1       eeh  * Return UNCONF (config_find ignores this if the device was configured).
    146   1.1       eeh  */
    147   1.1       eeh int
    148   1.1       eeh sbus_print(args, busname)
    149   1.1       eeh 	void *args;
    150   1.1       eeh 	const char *busname;
    151   1.1       eeh {
    152   1.1       eeh 	struct sbus_attach_args *sa = args;
    153   1.3       eeh 	int i;
    154   1.1       eeh 
    155   1.1       eeh 	if (busname)
    156  1.58   thorpej 		aprint_normal("%s at %s", sa->sa_name, busname);
    157  1.58   thorpej 	aprint_normal(" slot %ld offset 0x%lx", (long)sa->sa_slot,
    158   1.8       eeh 	       (u_long)sa->sa_offset);
    159  1.22       mrg 	for (i = 0; i < sa->sa_nintr; i++) {
    160  1.51   thorpej 		struct openprom_intr *sbi = &sa->sa_intr[i];
    161   1.1       eeh 
    162  1.58   thorpej 		aprint_normal(" vector %lx ipl %ld",
    163  1.51   thorpej 		       (u_long)sbi->oi_vec,
    164  1.51   thorpej 		       (long)INTLEV(sbi->oi_pri));
    165   1.1       eeh 	}
    166   1.1       eeh 	return (UNCONF);
    167   1.1       eeh }
    168   1.1       eeh 
    169   1.1       eeh int
    170  1.75       cdi sbus_match(struct device *parent, struct cfdata *cf, void *aux)
    171   1.1       eeh {
    172   1.1       eeh 	struct mainbus_attach_args *ma = aux;
    173   1.1       eeh 
    174  1.52   thorpej 	return (strcmp(cf->cf_name, ma->ma_name) == 0);
    175   1.1       eeh }
    176   1.1       eeh 
    177   1.1       eeh /*
    178   1.1       eeh  * Attach an Sbus.
    179   1.1       eeh  */
    180   1.1       eeh void
    181  1.75       cdi sbus_attach(struct device *parent, struct device *self, void *aux)
    182   1.1       eeh {
    183   1.9       eeh 	struct sbus_softc *sc = (struct sbus_softc *)self;
    184   1.1       eeh 	struct mainbus_attach_args *ma = aux;
    185  1.40       eeh 	struct intrhand *ih;
    186  1.40       eeh 	int ipl;
    187  1.27       mrg 	char *name;
    188   1.1       eeh 	int node = ma->ma_node;
    189   1.1       eeh 	int node0, error;
    190   1.1       eeh 	bus_space_tag_t sbt;
    191   1.1       eeh 	struct sbus_attach_args sa;
    192   1.1       eeh 
    193   1.1       eeh 	sc->sc_bustag = ma->ma_bustag;
    194   1.1       eeh 	sc->sc_dmatag = ma->ma_dmatag;
    195  1.48       eeh 	sc->sc_ign = ma->ma_interrupts[0] & INTMAP_IGN;
    196   1.1       eeh 
    197  1.48       eeh 	/* XXXX Use sysio PROM mappings for interrupt vector regs. */
    198  1.48       eeh 	sparc_promaddr_to_handle(sc->sc_bustag,	ma->ma_address[0], &sc->sc_bh);
    199  1.48       eeh 	sc->sc_sysio = (struct sysioreg *)bus_space_vaddr(sc->sc_bustag,
    200  1.49       eeh 		sc->sc_bh);
    201  1.48       eeh 
    202  1.48       eeh #ifdef _LP64
    203  1.48       eeh 	/*
    204  1.48       eeh 	 * 32-bit kernels use virtual addresses for bus space operations
    205  1.48       eeh 	 * so we may as well use the prom VA.
    206  1.48       eeh 	 *
    207  1.48       eeh 	 * 64-bit kernels use physical addresses for bus space operations
    208  1.48       eeh 	 * so mapping this in again will reduce TLB thrashing.
    209  1.48       eeh 	 */
    210  1.48       eeh 	if (bus_space_map(sc->sc_bustag, ma->ma_reg[0].ur_paddr,
    211  1.48       eeh 		ma->ma_reg[0].ur_len, 0, &sc->sc_bh) != 0) {
    212  1.48       eeh 		printf("%s: cannot map registers\n", self->dv_xname);
    213  1.48       eeh 		return;
    214  1.48       eeh 	}
    215  1.48       eeh #endif
    216   1.1       eeh 
    217   1.1       eeh 	/*
    218   1.1       eeh 	 * Record clock frequency for synchronous SCSI.
    219   1.1       eeh 	 * IS THIS THE CORRECT DEFAULT??
    220   1.1       eeh 	 */
    221  1.67        pk 	sc->sc_clockfreq = prom_getpropint(node, "clock-frequency",
    222  1.48       eeh 		25*1000*1000);
    223   1.1       eeh 	printf(": clock = %s MHz\n", clockfreq(sc->sc_clockfreq));
    224   1.1       eeh 
    225  1.69        pk 	sbt = bus_space_tag_alloc(sc->sc_bustag, sc);
    226  1.69        pk 	sbt->type = SBUS_BUS_SPACE;
    227  1.69        pk 	sbt->sparc_bus_map = _sbus_bus_map;
    228  1.69        pk 	sbt->sparc_intr_establish = sbus_intr_establish;
    229  1.69        pk 
    230   1.1       eeh 	sc->sc_dmatag = sbus_alloc_dmatag(sc);
    231   1.1       eeh 
    232   1.1       eeh 	/*
    233   1.1       eeh 	 * Get the SBus burst transfer size if burst transfers are supported
    234   1.1       eeh 	 */
    235  1.67        pk 	sc->sc_burst = prom_getpropint(node, "burst-sizes", 0);
    236   1.1       eeh 
    237   1.1       eeh 	/*
    238   1.1       eeh 	 * Collect address translations from the OBP.
    239   1.1       eeh 	 */
    240  1.67        pk 	error = prom_getprop(node, "ranges", sizeof(struct openprom_range),
    241  1.69        pk 			 &sbt->nranges, &sbt->ranges);
    242  1.16       eeh 	if (error)
    243   1.1       eeh 		panic("%s: error getting ranges property", sc->sc_dev.dv_xname);
    244   1.1       eeh 
    245  1.48       eeh 	/* initialize the IOMMU */
    246  1.17       mrg 
    247  1.17       mrg 	/* punch in our copies */
    248  1.17       mrg 	sc->sc_is.is_bustag = sc->sc_bustag;
    249  1.48       eeh 	bus_space_subregion(sc->sc_bustag, sc->sc_bh,
    250  1.48       eeh 		(vaddr_t)&((struct sysioreg *)NULL)->sys_iommu,
    251  1.48       eeh 		sizeof (struct iommureg), &sc->sc_is.is_iommu);
    252  1.50       eeh 
    253  1.50       eeh 	/* initialize our strbuf_ctl */
    254  1.50       eeh 	sc->sc_is.is_sb[0] = &sc->sc_sb;
    255  1.50       eeh 	sc->sc_sb.sb_is = &sc->sc_is;
    256  1.48       eeh 	bus_space_subregion(sc->sc_bustag, sc->sc_bh,
    257  1.48       eeh 		(vaddr_t)&((struct sysioreg *)NULL)->sys_strbuf,
    258  1.50       eeh 		sizeof (struct iommu_strbuf), &sc->sc_sb.sb_sb);
    259  1.50       eeh 	/* Point sb_flush to our flush buffer. */
    260  1.50       eeh 	sc->sc_sb.sb_flush = &sc->sc_flush;
    261  1.16       eeh 
    262  1.27       mrg 	/* give us a nice name.. */
    263  1.27       mrg 	name = (char *)malloc(32, M_DEVBUF, M_NOWAIT);
    264  1.27       mrg 	if (name == 0)
    265  1.27       mrg 		panic("couldn't malloc iommu name");
    266  1.27       mrg 	snprintf(name, 32, "%s dvma", sc->sc_dev.dv_xname);
    267  1.27       mrg 
    268  1.43       eeh 	iommu_init(name, &sc->sc_is, 0, -1);
    269  1.12       eeh 
    270  1.40       eeh 	/* Enable the over temp intr */
    271  1.40       eeh 	ih = (struct intrhand *)
    272  1.40       eeh 		malloc(sizeof(struct intrhand), M_DEVBUF, M_NOWAIT);
    273  1.40       eeh 	ih->ih_map = &sc->sc_sysio->therm_int_map;
    274  1.40       eeh 	ih->ih_clr = NULL; /* &sc->sc_sysio->therm_clr_int; */
    275  1.40       eeh 	ih->ih_fun = sbus_overtemp;
    276  1.40       eeh 	ipl = 1;
    277  1.40       eeh 	ih->ih_pil = (1<<ipl);
    278  1.40       eeh 	ih->ih_number = INTVEC(*(ih->ih_map));
    279  1.40       eeh 	intr_establish(ipl, ih);
    280  1.74    martin 	*(ih->ih_map) |= INTMAP_V|(CPU_UPAID << INTMAP_TID_SHIFT);
    281  1.40       eeh 
    282  1.42       mrg 	/*
    283  1.42       mrg 	 * Note: the stupid SBUS IOMMU ignores the high bits of an address, so a
    284  1.42       mrg 	 * NULL DMA pointer will be translated by the first page of the IOTSB.
    285  1.42       mrg 	 * To avoid bugs we'll alloc and ignore the first entry in the IOTSB.
    286  1.42       mrg 	 */
    287  1.42       mrg 	{
    288  1.42       mrg 		u_long dummy;
    289  1.42       mrg 
    290  1.42       mrg 		if (extent_alloc_subregion(sc->sc_is.is_dvmamap,
    291  1.59   thorpej 		    sc->sc_is.is_dvmabase, sc->sc_is.is_dvmabase + PAGE_SIZE,
    292  1.59   thorpej 		    PAGE_SIZE, PAGE_SIZE, 0, EX_NOWAIT|EX_BOUNDZERO,
    293  1.59   thorpej 		    (u_long *)&dummy) != 0)
    294  1.42       mrg 			panic("sbus iommu: can't toss first dvma page");
    295  1.42       mrg 	}
    296  1.42       mrg 
    297  1.12       eeh 	/*
    298   1.1       eeh 	 * Loop through ROM children, fixing any relative addresses
    299   1.1       eeh 	 * and then configuring each device.
    300   1.1       eeh 	 * `specials' is an array of device names that are treated
    301   1.1       eeh 	 * specially:
    302   1.1       eeh 	 */
    303  1.50       eeh 	node0 = OF_child(node);
    304  1.50       eeh 	for (node = node0; node; node = OF_peer(node)) {
    305  1.72  christos 		char *name1 = prom_getpropstring(node, "name");
    306   1.1       eeh 
    307   1.1       eeh 		if (sbus_setup_attach_args(sc, sbt, sc->sc_dmatag,
    308  1.23        pk 					   node, &sa) != 0) {
    309  1.72  christos 			printf("sbus_attach: %s: incomplete\n", name1);
    310   1.1       eeh 			continue;
    311   1.1       eeh 		}
    312   1.1       eeh 		(void) config_found(&sc->sc_dev, (void *)&sa, sbus_print);
    313   1.3       eeh 		sbus_destroy_attach_args(&sa);
    314   1.1       eeh 	}
    315   1.1       eeh }
    316   1.1       eeh 
    317   1.1       eeh int
    318  1.23        pk sbus_setup_attach_args(sc, bustag, dmatag, node, sa)
    319   1.1       eeh 	struct sbus_softc	*sc;
    320   1.1       eeh 	bus_space_tag_t		bustag;
    321   1.1       eeh 	bus_dma_tag_t		dmatag;
    322   1.1       eeh 	int			node;
    323   1.1       eeh 	struct sbus_attach_args	*sa;
    324   1.1       eeh {
    325  1.51   thorpej 	/*struct	openprom_addr sbusreg;*/
    326   1.3       eeh 	/*int	base;*/
    327   1.1       eeh 	int	error;
    328   1.3       eeh 	int n;
    329   1.1       eeh 
    330  1.65    martin 	memset(sa, 0, sizeof(struct sbus_attach_args));
    331  1.68    martin 	n = 0;
    332  1.67        pk 	error = prom_getprop(node, "name", 1, &n, &sa->sa_name);
    333   1.3       eeh 	if (error != 0)
    334   1.3       eeh 		return (error);
    335   1.3       eeh 	sa->sa_name[n] = '\0';
    336   1.3       eeh 
    337   1.1       eeh 	sa->sa_bustag = bustag;
    338   1.1       eeh 	sa->sa_dmatag = dmatag;
    339   1.1       eeh 	sa->sa_node = node;
    340  1.37       eeh 	sa->sa_frequency = sc->sc_clockfreq;
    341   1.1       eeh 
    342  1.67        pk 	error = prom_getprop(node, "reg", sizeof(struct openprom_addr),
    343  1.62       mrg 			 &sa->sa_nreg, &sa->sa_reg);
    344   1.3       eeh 	if (error != 0) {
    345   1.3       eeh 		char buf[32];
    346   1.3       eeh 		if (error != ENOENT ||
    347   1.3       eeh 		    !node_has_property(node, "device_type") ||
    348  1.67        pk 		    strcmp(prom_getpropstringA(node, "device_type", buf, sizeof buf),
    349   1.3       eeh 			   "hierarchical") != 0)
    350   1.3       eeh 			return (error);
    351   1.3       eeh 	}
    352   1.3       eeh 	for (n = 0; n < sa->sa_nreg; n++) {
    353   1.3       eeh 		/* Convert to relative addressing, if necessary */
    354  1.51   thorpej 		u_int32_t base = sa->sa_reg[n].oa_base;
    355   1.3       eeh 		if (SBUS_ABS(base)) {
    356  1.51   thorpej 			sa->sa_reg[n].oa_space = SBUS_ABS_TO_SLOT(base);
    357  1.51   thorpej 			sa->sa_reg[n].oa_base = SBUS_ABS_TO_OFFSET(base);
    358   1.3       eeh 		}
    359   1.1       eeh 	}
    360   1.1       eeh 
    361  1.22       mrg 	if ((error = sbus_get_intr(sc, node, &sa->sa_intr, &sa->sa_nintr,
    362  1.22       mrg 	    sa->sa_slot)) != 0)
    363   1.1       eeh 		return (error);
    364   1.1       eeh 
    365  1.67        pk 	error = prom_getprop(node, "address", sizeof(u_int32_t),
    366  1.62       mrg 			 &sa->sa_npromvaddrs, &sa->sa_promvaddrs);
    367   1.3       eeh 	if (error != 0 && error != ENOENT)
    368   1.1       eeh 		return (error);
    369   1.1       eeh 
    370   1.1       eeh 	return (0);
    371   1.1       eeh }
    372   1.1       eeh 
    373   1.3       eeh void
    374   1.3       eeh sbus_destroy_attach_args(sa)
    375   1.3       eeh 	struct sbus_attach_args	*sa;
    376   1.3       eeh {
    377   1.3       eeh 	if (sa->sa_name != NULL)
    378   1.3       eeh 		free(sa->sa_name, M_DEVBUF);
    379   1.3       eeh 
    380   1.3       eeh 	if (sa->sa_nreg != 0)
    381   1.3       eeh 		free(sa->sa_reg, M_DEVBUF);
    382   1.3       eeh 
    383   1.3       eeh 	if (sa->sa_intr)
    384   1.3       eeh 		free(sa->sa_intr, M_DEVBUF);
    385   1.3       eeh 
    386   1.3       eeh 	if (sa->sa_promvaddrs)
    387   1.8       eeh 		free((void *)sa->sa_promvaddrs, M_DEVBUF);
    388   1.3       eeh 
    389  1.65    martin 	memset(sa, 0, sizeof(struct sbus_attach_args)); /*DEBUG*/
    390   1.3       eeh }
    391   1.3       eeh 
    392   1.3       eeh 
    393   1.1       eeh int
    394  1.75       cdi _sbus_bus_map(bus_space_tag_t t, bus_addr_t addr, bus_size_t size, int flags,
    395  1.75       cdi 	vaddr_t v, bus_space_handle_t *hp)
    396   1.1       eeh {
    397  1.69        pk 	int error;
    398   1.1       eeh 
    399  1.70        pk 	if (t->ranges != NULL) {
    400  1.70        pk 		if ((error = bus_space_translate_address_generic(
    401  1.70        pk 				t->ranges, t->nranges, &addr)) != 0)
    402  1.70        pk 			return (error);
    403  1.70        pk 	}
    404   1.1       eeh 
    405  1.69        pk 	return (bus_space_map(t->parent, addr, size, flags, hp));
    406   1.1       eeh }
    407   1.1       eeh 
    408  1.44       eeh 
    409  1.44       eeh bus_addr_t
    410  1.44       eeh sbus_bus_addr(t, btype, offset)
    411  1.44       eeh 	bus_space_tag_t t;
    412  1.44       eeh 	u_int btype;
    413  1.44       eeh 	u_int offset;
    414  1.44       eeh {
    415  1.44       eeh 	int slot = btype;
    416  1.69        pk 	struct openprom_range *rp;
    417  1.44       eeh 	int i;
    418  1.44       eeh 
    419  1.69        pk 	for (i = 0; i < t->nranges; i++) {
    420  1.69        pk 		rp = &t->ranges[i];
    421  1.69        pk 		if (rp->or_child_space != slot)
    422  1.44       eeh 			continue;
    423  1.44       eeh 
    424  1.71       chs 		return BUS_ADDR(rp->or_parent_space,
    425  1.71       chs 				rp->or_parent_base + offset);
    426   1.1       eeh 	}
    427   1.1       eeh 
    428  1.69        pk 	return (0);
    429   1.1       eeh }
    430   1.1       eeh 
    431   1.1       eeh 
    432   1.1       eeh /*
    433   1.1       eeh  * Each attached device calls sbus_establish after it initializes
    434   1.1       eeh  * its sbusdev portion.
    435   1.1       eeh  */
    436   1.1       eeh void
    437   1.1       eeh sbus_establish(sd, dev)
    438   1.1       eeh 	register struct sbusdev *sd;
    439   1.1       eeh 	register struct device *dev;
    440   1.1       eeh {
    441   1.1       eeh 	register struct sbus_softc *sc;
    442   1.1       eeh 	register struct device *curdev;
    443   1.1       eeh 
    444   1.1       eeh 	/*
    445   1.1       eeh 	 * We have to look for the sbus by name, since it is not necessarily
    446   1.1       eeh 	 * our immediate parent (i.e. sun4m /iommu/sbus/espdma/esp)
    447   1.1       eeh 	 * We don't just use the device structure of the above-attached
    448   1.1       eeh 	 * sbus, since we might (in the future) support multiple sbus's.
    449   1.1       eeh 	 */
    450   1.1       eeh 	for (curdev = dev->dv_parent; ; curdev = curdev->dv_parent) {
    451   1.1       eeh 		if (!curdev || !curdev->dv_xname)
    452   1.1       eeh 			panic("sbus_establish: can't find sbus parent for %s",
    453   1.1       eeh 			      sd->sd_dev->dv_xname
    454   1.1       eeh 					? sd->sd_dev->dv_xname
    455   1.1       eeh 					: "<unknown>" );
    456   1.1       eeh 
    457   1.1       eeh 		if (strncmp(curdev->dv_xname, "sbus", 4) == 0)
    458   1.1       eeh 			break;
    459   1.1       eeh 	}
    460   1.1       eeh 	sc = (struct sbus_softc *) curdev;
    461   1.1       eeh 
    462   1.1       eeh 	sd->sd_dev = dev;
    463   1.1       eeh 	sd->sd_bchain = sc->sc_sbdev;
    464   1.1       eeh 	sc->sc_sbdev = sd;
    465   1.1       eeh }
    466   1.1       eeh 
    467   1.1       eeh /*
    468  1.33       mrg  * Reset the given sbus.
    469   1.1       eeh  */
    470   1.1       eeh void
    471  1.75       cdi sbusreset(int sbus)
    472   1.1       eeh {
    473   1.1       eeh 	register struct sbusdev *sd;
    474   1.1       eeh 	struct sbus_softc *sc = sbus_cd.cd_devs[sbus];
    475   1.1       eeh 	struct device *dev;
    476   1.1       eeh 
    477   1.1       eeh 	printf("reset %s:", sc->sc_dev.dv_xname);
    478   1.1       eeh 	for (sd = sc->sc_sbdev; sd != NULL; sd = sd->sd_bchain) {
    479   1.1       eeh 		if (sd->sd_reset) {
    480   1.1       eeh 			dev = sd->sd_dev;
    481   1.1       eeh 			(*sd->sd_reset)(dev);
    482   1.1       eeh 			printf(" %s", dev->dv_xname);
    483   1.1       eeh 		}
    484   1.1       eeh 	}
    485   1.1       eeh 	/* Reload iommu regs */
    486  1.17       mrg 	iommu_reset(&sc->sc_is);
    487  1.40       eeh }
    488  1.40       eeh 
    489  1.40       eeh /*
    490  1.40       eeh  * Handle an overtemp situation.
    491  1.41   hubertf  *
    492  1.41   hubertf  * SPARCs have temperature sensors which generate interrupts
    493  1.41   hubertf  * if the machine's temperature exceeds a certain threshold.
    494  1.41   hubertf  * This handles the interrupt and powers off the machine.
    495  1.41   hubertf  * The same needs to be done to PCI controller drivers.
    496  1.40       eeh  */
    497  1.40       eeh int
    498  1.75       cdi sbus_overtemp(void *arg)
    499  1.40       eeh {
    500  1.40       eeh 	/* Should try a clean shutdown first */
    501  1.41   hubertf 	printf("DANGER: OVER TEMPERATURE detected\nShutting down...\n");
    502  1.40       eeh 	delay(20);
    503  1.40       eeh 	cpu_reboot(RB_POWERDOWN|RB_HALT, NULL);
    504   1.1       eeh }
    505   1.1       eeh 
    506   1.1       eeh /*
    507   1.1       eeh  * Get interrupt attributes for an Sbus device.
    508   1.1       eeh  */
    509   1.1       eeh int
    510  1.75       cdi sbus_get_intr(struct sbus_softc *sc, int node, struct openprom_intr **ipp,
    511  1.75       cdi 	int *np, int slot)
    512   1.1       eeh {
    513   1.1       eeh 	int *ipl;
    514  1.22       mrg 	int n, i;
    515   1.1       eeh 	char buf[32];
    516   1.1       eeh 
    517   1.1       eeh 	/*
    518   1.1       eeh 	 * The `interrupts' property contains the Sbus interrupt level.
    519   1.1       eeh 	 */
    520   1.1       eeh 	ipl = NULL;
    521  1.67        pk 	if (prom_getprop(node, "interrupts", sizeof(int), np, &ipl) == 0) {
    522  1.51   thorpej 		struct openprom_intr *ip;
    523  1.22       mrg 		int pri;
    524  1.22       mrg 
    525  1.10       eeh 		/* Default to interrupt level 2 -- otherwise unused */
    526  1.22       mrg 		pri = INTLEVENCODE(2);
    527  1.22       mrg 
    528  1.22       mrg 		/* Change format to an `struct sbus_intr' array */
    529  1.51   thorpej 		ip = malloc(*np * sizeof(struct openprom_intr), M_DEVBUF,
    530  1.51   thorpej 		    M_NOWAIT);
    531   1.3       eeh 		if (ip == NULL)
    532   1.3       eeh 			return (ENOMEM);
    533  1.22       mrg 
    534  1.22       mrg 		/*
    535  1.22       mrg 		 * Now things get ugly.  We need to take this value which is
    536   1.1       eeh 		 * the interrupt vector number and encode the IPL into it
    537   1.1       eeh 		 * somehow. Luckily, the interrupt vector has lots of free
    538  1.22       mrg 		 * space and we can easily stuff the IPL in there for a while.
    539   1.1       eeh 		 */
    540  1.67        pk 		prom_getpropstringA(node, "device_type", buf, sizeof buf);
    541  1.66        pk 		if (buf[0] == '\0')
    542  1.67        pk 			prom_getpropstringA(node, "name", buf, sizeof buf);
    543  1.22       mrg 
    544  1.22       mrg 		for (i = 0; intrmap[i].in_class; i++)
    545   1.3       eeh 			if (strcmp(intrmap[i].in_class, buf) == 0) {
    546   1.3       eeh 				pri = INTLEVENCODE(intrmap[i].in_lev);
    547   1.1       eeh 				break;
    548   1.1       eeh 			}
    549  1.22       mrg 
    550  1.22       mrg 		/*
    551  1.22       mrg 		 * Sbus card devices need the slot number encoded into
    552  1.22       mrg 		 * the vector as this is generally not done.
    553  1.22       mrg 		 */
    554  1.22       mrg 		if ((ipl[0] & INTMAP_OBIO) == 0)
    555  1.22       mrg 			pri |= slot << 3;
    556  1.22       mrg 
    557   1.3       eeh 		for (n = 0; n < *np; n++) {
    558   1.3       eeh 			/*
    559   1.3       eeh 			 * We encode vector and priority into sbi_pri so we
    560   1.3       eeh 			 * can pass them as a unit.  This will go away if
    561   1.3       eeh 			 * sbus_establish ever takes an sbus_intr instead
    562   1.3       eeh 			 * of an integer level.
    563   1.3       eeh 			 * Stuff the real vector in sbi_vec.
    564   1.3       eeh 			 */
    565  1.22       mrg 
    566  1.51   thorpej 			ip[n].oi_pri = pri|ipl[n];
    567  1.51   thorpej 			ip[n].oi_vec = ipl[n];
    568   1.3       eeh 		}
    569   1.1       eeh 		free(ipl, M_DEVBUF);
    570   1.3       eeh 		*ipp = ip;
    571   1.1       eeh 	}
    572   1.1       eeh 
    573  1.22       mrg 	return (0);
    574   1.1       eeh }
    575   1.1       eeh 
    576   1.1       eeh 
    577   1.1       eeh /*
    578   1.1       eeh  * Install an interrupt handler for an Sbus device.
    579   1.1       eeh  */
    580   1.1       eeh void *
    581  1.75       cdi sbus_intr_establish(bus_space_tag_t t, int pri, int level,
    582  1.75       cdi 	int (*handler)(void *), void *arg, void (*fastvec)(void))
    583   1.1       eeh {
    584   1.1       eeh 	struct sbus_softc *sc = t->cookie;
    585   1.1       eeh 	struct intrhand *ih;
    586   1.1       eeh 	int ipl;
    587  1.35        pk 	long vec = pri;
    588   1.1       eeh 
    589   1.1       eeh 	ih = (struct intrhand *)
    590   1.1       eeh 		malloc(sizeof(struct intrhand), M_DEVBUF, M_NOWAIT);
    591   1.1       eeh 	if (ih == NULL)
    592   1.1       eeh 		return (NULL);
    593   1.1       eeh 
    594  1.56        pk 	if ((vec & SBUS_INTR_COMPAT) != 0)
    595   1.8       eeh 		ipl = vec & ~SBUS_INTR_COMPAT;
    596   1.1       eeh 	else {
    597   1.1       eeh 		/* Decode and remove IPL */
    598   1.8       eeh 		ipl = INTLEV(vec);
    599   1.8       eeh 		vec = INTVEC(vec);
    600  1.27       mrg 		DPRINTF(SDB_INTR,
    601  1.27       mrg 		    ("\nsbus: intr[%ld]%lx: %lx\nHunting for IRQ...\n",
    602  1.39       mrg 		    (long)ipl, (long)vec, (u_long)intrlev[vec]));
    603   1.8       eeh 		if ((vec & INTMAP_OBIO) == 0) {
    604   1.1       eeh 			/* We're in an SBUS slot */
    605   1.1       eeh 			/* Register the map and clear intr registers */
    606  1.22       mrg 
    607  1.35        pk 			int slot = INTSLOT(pri);
    608  1.22       mrg 
    609  1.22       mrg 			ih->ih_map = &(&sc->sc_sysio->sbus_slot0_int)[slot];
    610  1.22       mrg 			ih->ih_clr = &sc->sc_sysio->sbus0_clr_int[vec];
    611   1.1       eeh #ifdef DEBUG
    612  1.27       mrg 			if (sbus_debug & SDB_INTR) {
    613  1.72  christos 				int64_t imap = *ih->ih_map;
    614   1.1       eeh 
    615  1.36       mrg 				printf("SBUS %lx IRQ as %llx in slot %d\n",
    616  1.72  christos 				       (long)vec, (long long)imap, slot);
    617  1.36       mrg 				printf("\tmap addr %p clr addr %p\n",
    618  1.36       mrg 				    ih->ih_map, ih->ih_clr);
    619   1.1       eeh 			}
    620   1.1       eeh #endif
    621   1.1       eeh 			/* Enable the interrupt */
    622  1.63    petrov 			vec |= INTMAP_V | sc->sc_ign |
    623  1.63    petrov 				(CPU_UPAID << INTMAP_TID_SHIFT);
    624  1.48       eeh 			*(ih->ih_map) = vec;
    625   1.1       eeh 		} else {
    626   1.1       eeh 			int64_t *intrptr = &sc->sc_sysio->scsi_int_map;
    627  1.72  christos 			int64_t imap = 0;
    628   1.1       eeh 			int i;
    629   1.1       eeh 
    630   1.1       eeh 			/* Insert IGN */
    631   1.8       eeh 			vec |= sc->sc_ign;
    632  1.22       mrg 			for (i = 0; &intrptr[i] <=
    633  1.22       mrg 			    (int64_t *)&sc->sc_sysio->reserved_int_map &&
    634  1.72  christos 			    INTVEC(imap = intrptr[i]) != INTVEC(vec); i++)
    635  1.22       mrg 				;
    636  1.72  christos 			if (INTVEC(imap) == INTVEC(vec)) {
    637  1.27       mrg 				DPRINTF(SDB_INTR,
    638  1.36       mrg 				    ("OBIO %lx IRQ as %lx in slot %d\n",
    639  1.72  christos 				    vec, (long)imap, i));
    640   1.1       eeh 				/* Register the map and clear intr registers */
    641   1.1       eeh 				ih->ih_map = &intrptr[i];
    642   1.1       eeh 				intrptr = (int64_t *)&sc->sc_sysio->scsi_clr_int;
    643   1.1       eeh 				ih->ih_clr = &intrptr[i];
    644   1.1       eeh 				/* Enable the interrupt */
    645  1.74    martin 				imap |= INTMAP_V
    646  1.74    martin 				    |(CPU_UPAID << INTMAP_TID_SHIFT);
    647  1.48       eeh 				/* XXXX */
    648  1.72  christos 				*(ih->ih_map) = imap;
    649  1.27       mrg 			} else
    650  1.27       mrg 				panic("IRQ not found!");
    651   1.1       eeh 		}
    652   1.1       eeh 	}
    653   1.1       eeh #ifdef DEBUG
    654  1.27       mrg 	if (sbus_debug & SDB_INTR) { long i; for (i = 0; i < 400000000; i++); }
    655   1.1       eeh #endif
    656   1.1       eeh 
    657   1.1       eeh 	ih->ih_fun = handler;
    658   1.1       eeh 	ih->ih_arg = arg;
    659   1.8       eeh 	ih->ih_number = vec;
    660   1.1       eeh 	ih->ih_pil = (1<<ipl);
    661  1.18       eeh 	intr_establish(ipl, ih);
    662   1.1       eeh 	return (ih);
    663   1.1       eeh }
    664   1.1       eeh 
    665   1.1       eeh static bus_dma_tag_t
    666  1.75       cdi sbus_alloc_dmatag(struct sbus_softc *sc)
    667   1.1       eeh {
    668   1.1       eeh 	bus_dma_tag_t sdt, psdt = sc->sc_dmatag;
    669   1.1       eeh 
    670   1.1       eeh 	sdt = (bus_dma_tag_t)
    671   1.1       eeh 		malloc(sizeof(struct sparc_bus_dma_tag), M_DEVBUF, M_NOWAIT);
    672   1.1       eeh 	if (sdt == NULL)
    673   1.1       eeh 		/* Panic? */
    674   1.1       eeh 		return (psdt);
    675   1.1       eeh 
    676   1.1       eeh 	sdt->_cookie = sc;
    677   1.1       eeh 	sdt->_parent = psdt;
    678   1.1       eeh #define PCOPY(x)	sdt->x = psdt->x
    679   1.1       eeh 	PCOPY(_dmamap_create);
    680   1.1       eeh 	PCOPY(_dmamap_destroy);
    681   1.1       eeh 	sdt->_dmamap_load = sbus_dmamap_load;
    682   1.1       eeh 	PCOPY(_dmamap_load_mbuf);
    683   1.1       eeh 	PCOPY(_dmamap_load_uio);
    684  1.29       eeh 	sdt->_dmamap_load_raw = sbus_dmamap_load_raw;
    685   1.1       eeh 	sdt->_dmamap_unload = sbus_dmamap_unload;
    686   1.1       eeh 	sdt->_dmamap_sync = sbus_dmamap_sync;
    687   1.1       eeh 	sdt->_dmamem_alloc = sbus_dmamem_alloc;
    688   1.1       eeh 	sdt->_dmamem_free = sbus_dmamem_free;
    689   1.2       eeh 	sdt->_dmamem_map = sbus_dmamem_map;
    690   1.2       eeh 	sdt->_dmamem_unmap = sbus_dmamem_unmap;
    691   1.1       eeh 	PCOPY(_dmamem_mmap);
    692   1.1       eeh #undef	PCOPY
    693   1.1       eeh 	sc->sc_dmatag = sdt;
    694   1.1       eeh 	return (sdt);
    695   1.1       eeh }
    696   1.1       eeh 
    697   1.1       eeh int
    698  1.75       cdi sbus_dmamap_load(bus_dma_tag_t tag, bus_dmamap_t map, void *buf,
    699  1.75       cdi 	bus_size_t buflen, struct proc *p, int flags)
    700   1.1       eeh {
    701  1.28       mrg 	struct sbus_softc *sc = (struct sbus_softc *)tag->_cookie;
    702   1.1       eeh 
    703  1.50       eeh 	return (iommu_dvmamap_load(tag, &sc->sc_sb, map, buf, buflen, p, flags));
    704  1.29       eeh }
    705  1.29       eeh 
    706  1.29       eeh int
    707  1.75       cdi sbus_dmamap_load_raw(bus_dma_tag_t tag, bus_dmamap_t map,
    708  1.75       cdi 	bus_dma_segment_t *segs, int nsegs, bus_size_t size, int flags)
    709  1.29       eeh {
    710  1.29       eeh 	struct sbus_softc *sc = (struct sbus_softc *)tag->_cookie;
    711  1.29       eeh 
    712  1.50       eeh 	return (iommu_dvmamap_load_raw(tag, &sc->sc_sb, map, segs, nsegs, flags, size));
    713   1.1       eeh }
    714   1.1       eeh 
    715   1.1       eeh void
    716  1.75       cdi sbus_dmamap_unload(bus_dma_tag_t tag, bus_dmamap_t map)
    717   1.1       eeh {
    718  1.28       mrg 	struct sbus_softc *sc = (struct sbus_softc *)tag->_cookie;
    719  1.12       eeh 
    720  1.50       eeh 	iommu_dvmamap_unload(tag, &sc->sc_sb, map);
    721   1.1       eeh }
    722   1.1       eeh 
    723   1.1       eeh void
    724  1.75       cdi sbus_dmamap_sync(bus_dma_tag_t tag, bus_dmamap_t map, bus_addr_t offset,
    725  1.75       cdi 	bus_size_t len, int ops)
    726   1.1       eeh {
    727  1.28       mrg 	struct sbus_softc *sc = (struct sbus_softc *)tag->_cookie;
    728   1.1       eeh 
    729  1.30       eeh 	if (ops & (BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE)) {
    730  1.30       eeh 		/* Flush the CPU then the IOMMU */
    731  1.30       eeh 		bus_dmamap_sync(tag->_parent, map, offset, len, ops);
    732  1.50       eeh 		iommu_dvmamap_sync(tag, &sc->sc_sb, map, offset, len, ops);
    733  1.30       eeh 	}
    734  1.30       eeh 	if (ops & (BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE)) {
    735  1.30       eeh 		/* Flush the IOMMU then the CPU */
    736  1.50       eeh 		iommu_dvmamap_sync(tag, &sc->sc_sb, map, offset, len, ops);
    737  1.30       eeh 		bus_dmamap_sync(tag->_parent, map, offset, len, ops);
    738  1.30       eeh 	}
    739   1.1       eeh }
    740   1.1       eeh 
    741   1.1       eeh int
    742  1.75       cdi sbus_dmamem_alloc(bus_dma_tag_t tag, bus_size_t size, bus_size_t alignment,
    743  1.75       cdi 	bus_size_t boundary, bus_dma_segment_t *segs, int nsegs, int *rsegs,
    744  1.75       cdi 	int flags)
    745   1.1       eeh {
    746  1.28       mrg 	struct sbus_softc *sc = (struct sbus_softc *)tag->_cookie;
    747   1.1       eeh 
    748  1.50       eeh 	return (iommu_dvmamem_alloc(tag, &sc->sc_sb, size, alignment, boundary,
    749  1.28       mrg 	    segs, nsegs, rsegs, flags));
    750   1.1       eeh }
    751   1.1       eeh 
    752   1.1       eeh void
    753  1.75       cdi sbus_dmamem_free(bus_dma_tag_t tag, bus_dma_segment_t *segs, int nsegs)
    754   1.1       eeh {
    755  1.28       mrg 	struct sbus_softc *sc = (struct sbus_softc *)tag->_cookie;
    756   1.1       eeh 
    757  1.50       eeh 	iommu_dvmamem_free(tag, &sc->sc_sb, segs, nsegs);
    758   1.1       eeh }
    759   1.1       eeh 
    760   1.2       eeh int
    761  1.75       cdi sbus_dmamem_map(bus_dma_tag_t tag, bus_dma_segment_t *segs, int nsegs,
    762  1.75       cdi 	size_t size, caddr_t *kvap, int flags)
    763   1.2       eeh {
    764  1.28       mrg 	struct sbus_softc *sc = (struct sbus_softc *)tag->_cookie;
    765   1.2       eeh 
    766  1.50       eeh 	return (iommu_dvmamem_map(tag, &sc->sc_sb, segs, nsegs, size, kvap, flags));
    767   1.2       eeh }
    768   1.2       eeh 
    769   1.2       eeh void
    770  1.75       cdi sbus_dmamem_unmap(bus_dma_tag_t tag, caddr_t kva, size_t size)
    771   1.2       eeh {
    772  1.28       mrg 	struct sbus_softc *sc = (struct sbus_softc *)tag->_cookie;
    773  1.28       mrg 
    774  1.50       eeh 	iommu_dvmamem_unmap(tag, &sc->sc_sb, kva, size);
    775   1.2       eeh }
    776