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iop.c revision 1.13
      1  1.13       ad /*	$NetBSD: iop.c,v 1.13 2001/04/01 15:02:08 ad Exp $	*/
      2   1.1       ad 
      3   1.1       ad /*-
      4  1.11       ad  * Copyright (c) 2000, 2001 The NetBSD Foundation, Inc.
      5   1.1       ad  * All rights reserved.
      6   1.1       ad  *
      7   1.1       ad  * This code is derived from software contributed to The NetBSD Foundation
      8   1.1       ad  * by Andrew Doran.
      9   1.1       ad  *
     10   1.1       ad  * Redistribution and use in source and binary forms, with or without
     11   1.1       ad  * modification, are permitted provided that the following conditions
     12   1.1       ad  * are met:
     13   1.1       ad  * 1. Redistributions of source code must retain the above copyright
     14   1.1       ad  *    notice, this list of conditions and the following disclaimer.
     15   1.1       ad  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.1       ad  *    notice, this list of conditions and the following disclaimer in the
     17   1.1       ad  *    documentation and/or other materials provided with the distribution.
     18   1.1       ad  * 3. All advertising materials mentioning features or use of this software
     19   1.1       ad  *    must display the following acknowledgement:
     20   1.1       ad  *        This product includes software developed by the NetBSD
     21   1.1       ad  *        Foundation, Inc. and its contributors.
     22   1.1       ad  * 4. Neither the name of The NetBSD Foundation nor the names of its
     23   1.1       ad  *    contributors may be used to endorse or promote products derived
     24   1.1       ad  *    from this software without specific prior written permission.
     25   1.1       ad  *
     26   1.1       ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     27   1.1       ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     28   1.1       ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     29   1.1       ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     30   1.1       ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     31   1.1       ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     32   1.1       ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     33   1.1       ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     34   1.1       ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     35   1.1       ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     36   1.1       ad  * POSSIBILITY OF SUCH DAMAGE.
     37   1.1       ad  */
     38   1.1       ad 
     39   1.1       ad /*
     40   1.1       ad  * Support for I2O IOPs (intelligent I/O processors).
     41   1.1       ad  */
     42   1.1       ad 
     43   1.1       ad #include "opt_i2o.h"
     44   1.5       ad #include "iop.h"
     45   1.1       ad 
     46   1.1       ad #include <sys/param.h>
     47   1.1       ad #include <sys/systm.h>
     48   1.1       ad #include <sys/kernel.h>
     49   1.1       ad #include <sys/device.h>
     50   1.1       ad #include <sys/queue.h>
     51   1.1       ad #include <sys/proc.h>
     52   1.1       ad #include <sys/malloc.h>
     53   1.1       ad #include <sys/ioctl.h>
     54   1.1       ad #include <sys/endian.h>
     55   1.5       ad #include <sys/conf.h>
     56   1.5       ad #include <sys/kthread.h>
     57   1.1       ad 
     58   1.4  thorpej #include <uvm/uvm_extern.h>
     59   1.4  thorpej 
     60   1.1       ad #include <machine/bus.h>
     61   1.1       ad 
     62   1.1       ad #include <dev/i2o/i2o.h>
     63  1.11       ad #include <dev/i2o/iopio.h>
     64   1.1       ad #include <dev/i2o/iopreg.h>
     65   1.1       ad #include <dev/i2o/iopvar.h>
     66   1.1       ad 
     67   1.1       ad #define POLL(ms, cond)				\
     68   1.1       ad do {						\
     69   1.1       ad 	int i;					\
     70   1.1       ad 	for (i = (ms) * 10; i; i--) {		\
     71   1.1       ad 		if (cond)			\
     72   1.1       ad 			break;			\
     73   1.1       ad 		DELAY(100);			\
     74   1.1       ad 	}					\
     75   1.1       ad } while (/* CONSTCOND */0);
     76   1.1       ad 
     77   1.1       ad #ifdef I2ODEBUG
     78   1.1       ad #define DPRINTF(x)	printf x
     79   1.1       ad #else
     80   1.1       ad #define	DPRINTF(x)
     81   1.1       ad #endif
     82   1.1       ad 
     83   1.1       ad #ifdef I2OVERBOSE
     84   1.5       ad #define IFVERBOSE(x)	x
     85  1.11       ad #define	COMMENT(x)	NULL
     86   1.1       ad #else
     87   1.1       ad #define	IFVERBOSE(x)
     88  1.11       ad #define	COMMENT(x)
     89   1.1       ad #endif
     90   1.1       ad 
     91   1.5       ad #define IOP_ICTXHASH_NBUCKETS	16
     92   1.5       ad #define	IOP_ICTXHASH(ictx)	(&iop_ictxhashtbl[(ictx) & iop_ictxhash])
     93  1.11       ad 
     94  1.11       ad #define	IOP_MAX_SEGS	(((IOP_MAX_XFER + PAGE_SIZE - 1) / PAGE_SIZE) + 1)
     95  1.11       ad 
     96  1.11       ad #define	IOP_TCTX_SHIFT	12
     97  1.11       ad #define	IOP_TCTX_MASK	((1 << IOP_TCTX_SHIFT) - 1)
     98   1.5       ad 
     99   1.5       ad static LIST_HEAD(, iop_initiator) *iop_ictxhashtbl;
    100   1.5       ad static u_long	iop_ictxhash;
    101   1.1       ad static void	*iop_sdh;
    102   1.5       ad static struct	i2o_systab *iop_systab;
    103   1.5       ad static int	iop_systab_size;
    104   1.1       ad 
    105   1.1       ad extern struct cfdriver iop_cd;
    106   1.1       ad 
    107   1.5       ad #define	IC_CONFIGURE	0x01
    108  1.11       ad #define	IC_PRIORITY	0x02
    109   1.1       ad 
    110   1.1       ad struct iop_class {
    111   1.5       ad 	u_short	ic_class;
    112   1.5       ad 	u_short	ic_flags;
    113  1.11       ad #ifdef I2OVERBOSE
    114   1.1       ad 	const char	*ic_caption;
    115  1.11       ad #endif
    116   1.1       ad } static const iop_class[] = {
    117   1.1       ad 	{
    118   1.1       ad 		I2O_CLASS_EXECUTIVE,
    119   1.1       ad 		0,
    120   1.5       ad 		COMMENT("executive")
    121   1.1       ad 	},
    122   1.1       ad 	{
    123   1.1       ad 		I2O_CLASS_DDM,
    124   1.1       ad 		0,
    125   1.5       ad 		COMMENT("device driver module")
    126   1.1       ad 	},
    127   1.1       ad 	{
    128   1.1       ad 		I2O_CLASS_RANDOM_BLOCK_STORAGE,
    129  1.11       ad 		IC_CONFIGURE | IC_PRIORITY,
    130   1.1       ad 		IFVERBOSE("random block storage")
    131   1.1       ad 	},
    132   1.1       ad 	{
    133   1.1       ad 		I2O_CLASS_SEQUENTIAL_STORAGE,
    134  1.11       ad 		IC_CONFIGURE | IC_PRIORITY,
    135   1.1       ad 		IFVERBOSE("sequential storage")
    136   1.1       ad 	},
    137   1.1       ad 	{
    138   1.1       ad 		I2O_CLASS_LAN,
    139  1.11       ad 		IC_CONFIGURE | IC_PRIORITY,
    140   1.1       ad 		IFVERBOSE("LAN port")
    141   1.1       ad 	},
    142   1.1       ad 	{
    143   1.1       ad 		I2O_CLASS_WAN,
    144  1.11       ad 		IC_CONFIGURE | IC_PRIORITY,
    145   1.1       ad 		IFVERBOSE("WAN port")
    146   1.1       ad 	},
    147   1.1       ad 	{
    148   1.1       ad 		I2O_CLASS_FIBRE_CHANNEL_PORT,
    149   1.1       ad 		IC_CONFIGURE,
    150   1.1       ad 		IFVERBOSE("fibrechannel port")
    151   1.1       ad 	},
    152   1.1       ad 	{
    153   1.1       ad 		I2O_CLASS_FIBRE_CHANNEL_PERIPHERAL,
    154   1.1       ad 		0,
    155   1.5       ad 		COMMENT("fibrechannel peripheral")
    156   1.1       ad 	},
    157   1.1       ad  	{
    158   1.1       ad  		I2O_CLASS_SCSI_PERIPHERAL,
    159   1.1       ad  		0,
    160   1.5       ad  		COMMENT("SCSI peripheral")
    161   1.1       ad  	},
    162   1.1       ad 	{
    163   1.1       ad 		I2O_CLASS_ATE_PORT,
    164   1.1       ad 		IC_CONFIGURE,
    165   1.1       ad 		IFVERBOSE("ATE port")
    166   1.1       ad 	},
    167   1.1       ad 	{
    168   1.1       ad 		I2O_CLASS_ATE_PERIPHERAL,
    169   1.1       ad 		0,
    170   1.5       ad 		COMMENT("ATE peripheral")
    171   1.1       ad 	},
    172   1.1       ad 	{
    173   1.1       ad 		I2O_CLASS_FLOPPY_CONTROLLER,
    174   1.1       ad 		IC_CONFIGURE,
    175   1.1       ad 		IFVERBOSE("floppy controller")
    176   1.1       ad 	},
    177   1.1       ad 	{
    178   1.1       ad 		I2O_CLASS_FLOPPY_DEVICE,
    179   1.1       ad 		0,
    180   1.5       ad 		COMMENT("floppy device")
    181   1.1       ad 	},
    182   1.1       ad 	{
    183   1.1       ad 		I2O_CLASS_BUS_ADAPTER_PORT,
    184   1.1       ad 		IC_CONFIGURE,
    185   1.1       ad 		IFVERBOSE("bus adapter port" )
    186   1.1       ad 	},
    187   1.1       ad };
    188   1.1       ad 
    189   1.1       ad #if defined(I2ODEBUG) && defined(I2OVERBOSE)
    190  1.11       ad static const char * const iop_status[] = {
    191   1.1       ad 	"success",
    192   1.1       ad 	"abort (dirty)",
    193   1.1       ad 	"abort (no data transfer)",
    194   1.1       ad 	"abort (partial transfer)",
    195   1.1       ad 	"error (dirty)",
    196   1.1       ad 	"error (no data transfer)",
    197   1.1       ad 	"error (partial transfer)",
    198   1.1       ad 	"undefined error code",
    199   1.1       ad 	"process abort (dirty)",
    200   1.1       ad 	"process abort (no data transfer)",
    201   1.1       ad 	"process abort (partial transfer)",
    202   1.1       ad 	"transaction error",
    203   1.1       ad };
    204   1.1       ad #endif
    205   1.1       ad 
    206   1.5       ad static inline u_int32_t	iop_inl(struct iop_softc *, int);
    207   1.5       ad static inline void	iop_outl(struct iop_softc *, int, u_int32_t);
    208   1.5       ad 
    209   1.1       ad static void	iop_config_interrupts(struct device *);
    210  1.11       ad static void	iop_configure_devices(struct iop_softc *, int, int);
    211   1.1       ad static void	iop_devinfo(int, char *);
    212   1.1       ad static int	iop_print(void *, const char *);
    213  1.11       ad static int	iop_reconfigure(struct iop_softc *, u_int);
    214   1.1       ad static void	iop_shutdown(void *);
    215   1.1       ad static int	iop_submatch(struct device *, struct cfdata *, void *);
    216   1.5       ad #ifdef notyet
    217   1.1       ad static int	iop_vendor_print(void *, const char *);
    218   1.5       ad #endif
    219   1.1       ad 
    220  1.11       ad static void	iop_adjqparam(struct iop_softc *, int);
    221   1.9       ad static void	iop_create_reconf_thread(void *);
    222  1.11       ad static int	iop_handle_reply(struct iop_softc *, u_int32_t);
    223   1.1       ad static int	iop_hrt_get(struct iop_softc *);
    224   1.1       ad static int	iop_hrt_get0(struct iop_softc *, struct i2o_hrt *, int);
    225  1.11       ad static void	iop_intr_event(struct device *, struct iop_msg *, void *);
    226   1.5       ad static int	iop_lct_get0(struct iop_softc *, struct i2o_lct *, int,
    227   1.5       ad 			     u_int32_t);
    228  1.11       ad static void	iop_msg_poll(struct iop_softc *, struct iop_msg *, int);
    229  1.11       ad static void	iop_msg_wait(struct iop_softc *, struct iop_msg *, int);
    230   1.1       ad static int	iop_ofifo_init(struct iop_softc *);
    231  1.11       ad static int	iop_passthrough(struct iop_softc *, struct ioppt *);
    232  1.11       ad static int	iop_post(struct iop_softc *, u_int32_t *);
    233   1.9       ad static void	iop_reconf_thread(void *);
    234   1.1       ad static void	iop_release_mfa(struct iop_softc *, u_int32_t);
    235   1.1       ad static int	iop_reset(struct iop_softc *);
    236  1.11       ad static int	iop_status_get(struct iop_softc *, int);
    237   1.1       ad static int	iop_systab_set(struct iop_softc *);
    238  1.11       ad static void	iop_tfn_print(struct iop_softc *, struct i2o_fault_notify *);
    239   1.1       ad 
    240   1.1       ad #ifdef I2ODEBUG
    241  1.11       ad static void	iop_reply_print(struct iop_softc *, struct i2o_reply *);
    242   1.1       ad #endif
    243   1.1       ad 
    244   1.5       ad cdev_decl(iop);
    245   1.5       ad 
    246   1.5       ad static inline u_int32_t
    247   1.5       ad iop_inl(struct iop_softc *sc, int off)
    248   1.5       ad {
    249   1.5       ad 
    250   1.5       ad 	bus_space_barrier(sc->sc_iot, sc->sc_ioh, off, 4,
    251   1.5       ad 	    BUS_SPACE_BARRIER_WRITE | BUS_SPACE_BARRIER_READ);
    252   1.5       ad 	return (bus_space_read_4(sc->sc_iot, sc->sc_ioh, off));
    253   1.5       ad }
    254   1.5       ad 
    255   1.5       ad static inline void
    256   1.5       ad iop_outl(struct iop_softc *sc, int off, u_int32_t val)
    257   1.5       ad {
    258   1.5       ad 
    259   1.5       ad 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, off, val);
    260   1.5       ad 	bus_space_barrier(sc->sc_iot, sc->sc_ioh, off, 4,
    261   1.5       ad 	    BUS_SPACE_BARRIER_WRITE);
    262   1.5       ad }
    263   1.5       ad 
    264   1.1       ad /*
    265  1.11       ad  * Initialise the IOP and our interface.
    266   1.1       ad  */
    267   1.5       ad void
    268   1.1       ad iop_init(struct iop_softc *sc, const char *intrstr)
    269   1.1       ad {
    270  1.11       ad 	struct iop_msg *im;
    271  1.11       ad 	int rv, i;
    272   1.1       ad 	u_int32_t mask;
    273   1.1       ad 	char ident[64];
    274   1.1       ad 
    275  1.11       ad 	if (iop_ictxhashtbl == NULL)
    276   1.5       ad 		iop_ictxhashtbl = hashinit(IOP_ICTXHASH_NBUCKETS, HASH_LIST,
    277   1.5       ad 		    M_DEVBUF, M_NOWAIT, &iop_ictxhash);
    278   1.1       ad 
    279   1.5       ad 	/* Reset the IOP and request status. */
    280   1.1       ad 	printf("I2O adapter");
    281   1.5       ad 
    282   1.5       ad 	if ((rv = iop_reset(sc)) != 0) {
    283   1.5       ad 		printf("%s: not responding (reset)\n", sc->sc_dv.dv_xname);
    284   1.5       ad 		return;
    285   1.5       ad 	}
    286  1.11       ad 	if ((rv = iop_status_get(sc, 1)) != 0) {
    287   1.5       ad 		printf("%s: not responding (get status)\n", sc->sc_dv.dv_xname);
    288   1.5       ad 		return;
    289   1.1       ad 	}
    290   1.5       ad 	sc->sc_flags |= IOP_HAVESTATUS;
    291   1.5       ad 	iop_strvis(sc, sc->sc_status.productid, sizeof(sc->sc_status.productid),
    292   1.1       ad 	    ident, sizeof(ident));
    293   1.5       ad 	printf(" <%s>\n", ident);
    294   1.5       ad 
    295   1.5       ad #ifdef I2ODEBUG
    296   1.5       ad 	printf("%s: orgid=0x%04x version=%d\n", sc->sc_dv.dv_xname,
    297   1.5       ad 	    le16toh(sc->sc_status.orgid),
    298   1.5       ad 	    (le32toh(sc->sc_status.segnumber) >> 12) & 15);
    299   1.5       ad 	printf("%s: type want have cbase\n", sc->sc_dv.dv_xname);
    300   1.5       ad 	printf("%s: mem  %04x %04x %08x\n", sc->sc_dv.dv_xname,
    301   1.5       ad 	    le32toh(sc->sc_status.desiredprivmemsize),
    302   1.5       ad 	    le32toh(sc->sc_status.currentprivmemsize),
    303   1.5       ad 	    le32toh(sc->sc_status.currentprivmembase));
    304   1.5       ad 	printf("%s: i/o  %04x %04x %08x\n", sc->sc_dv.dv_xname,
    305   1.5       ad 	    le32toh(sc->sc_status.desiredpriviosize),
    306   1.5       ad 	    le32toh(sc->sc_status.currentpriviosize),
    307   1.5       ad 	    le32toh(sc->sc_status.currentpriviobase));
    308   1.5       ad #endif
    309   1.1       ad 
    310  1.11       ad 	sc->sc_maxob = le32toh(sc->sc_status.maxoutboundmframes);
    311  1.11       ad 	if (sc->sc_maxob > IOP_MAX_OUTBOUND)
    312  1.11       ad 		sc->sc_maxob = IOP_MAX_OUTBOUND;
    313  1.11       ad 	sc->sc_maxib = le32toh(sc->sc_status.maxinboundmframes);
    314  1.11       ad 	if (sc->sc_maxib > IOP_MAX_INBOUND)
    315  1.11       ad 		sc->sc_maxib = IOP_MAX_INBOUND;
    316  1.11       ad 
    317  1.11       ad 	/* Allocate message wrappers. */
    318  1.11       ad 	im = malloc(sizeof(*im) * sc->sc_maxib, M_DEVBUF, M_NOWAIT);
    319  1.11       ad 	memset(im, 0, sizeof(*im) * sc->sc_maxib);
    320  1.11       ad 	sc->sc_ims = im;
    321  1.11       ad 	SLIST_INIT(&sc->sc_im_freelist);
    322  1.11       ad 
    323  1.11       ad 	for (i = 0; i < sc->sc_maxib; i++, im++) {
    324  1.11       ad 		rv = bus_dmamap_create(sc->sc_dmat, IOP_MAX_XFER,
    325  1.11       ad 		    IOP_MAX_SEGS, IOP_MAX_XFER, 0,
    326  1.11       ad 		    BUS_DMA_NOWAIT | BUS_DMA_ALLOCNOW,
    327  1.11       ad 		    &im->im_xfer[0].ix_map);
    328  1.11       ad 		if (rv != 0) {
    329  1.11       ad 			printf("%s: couldn't create dmamap (%d)",
    330  1.11       ad 			    sc->sc_dv.dv_xname, rv);
    331  1.11       ad 			return;
    332  1.11       ad 		}
    333  1.11       ad 
    334  1.11       ad 		im->im_tctx = i;
    335  1.11       ad 		SLIST_INSERT_HEAD(&sc->sc_im_freelist, im, im_chain);
    336  1.11       ad 	}
    337   1.1       ad 
    338  1.11       ad 	/* Initalise the IOP's outbound FIFO. */
    339   1.5       ad 	if (iop_ofifo_init(sc) != 0) {
    340   1.5       ad 		printf("%s: unable to init oubound FIFO\n", sc->sc_dv.dv_xname);
    341   1.5       ad 		return;
    342   1.5       ad 	}
    343   1.1       ad 
    344   1.5       ad 	/*
    345   1.5       ad  	 * Defer further configuration until (a) interrupts are working and
    346   1.5       ad  	 * (b) we have enough information to build the system table.
    347   1.5       ad  	 */
    348   1.1       ad 	config_interrupts((struct device *)sc, iop_config_interrupts);
    349   1.1       ad 
    350   1.5       ad 	/* Configure shutdown hook before we start any device activity. */
    351   1.1       ad 	if (iop_sdh == NULL)
    352   1.1       ad 		iop_sdh = shutdownhook_establish(iop_shutdown, NULL);
    353   1.1       ad 
    354   1.1       ad 	/* Ensure interrupts are enabled at the IOP. */
    355   1.5       ad 	mask = iop_inl(sc, IOP_REG_INTR_MASK);
    356   1.5       ad 	iop_outl(sc, IOP_REG_INTR_MASK, mask & ~IOP_INTR_OFIFO);
    357   1.1       ad 
    358   1.1       ad 	if (intrstr != NULL)
    359   1.1       ad 		printf("%s: interrupting at %s\n", sc->sc_dv.dv_xname,
    360   1.1       ad 		    intrstr);
    361   1.1       ad 
    362   1.1       ad #ifdef I2ODEBUG
    363   1.1       ad 	printf("%s: queue depths: inbound %d/%d, outbound %d/%d\n",
    364  1.11       ad 	    sc->sc_dv.dv_xname, sc->sc_maxib,
    365  1.11       ad 	    le32toh(sc->sc_status.maxinboundmframes),
    366  1.11       ad 	    sc->sc_maxob, le32toh(sc->sc_status.maxoutboundmframes));
    367   1.1       ad #endif
    368   1.1       ad 
    369   1.5       ad 	lockinit(&sc->sc_conflock, PRIBIO, "iopconf", hz * 30, 0);
    370   1.1       ad }
    371   1.1       ad 
    372   1.1       ad /*
    373   1.5       ad  * Perform autoconfiguration tasks.
    374   1.1       ad  */
    375   1.1       ad static void
    376   1.1       ad iop_config_interrupts(struct device *self)
    377   1.1       ad {
    378   1.5       ad 	struct iop_softc *sc, *iop;
    379   1.5       ad 	struct i2o_systab_entry *ste;
    380   1.5       ad 	int rv, i, niop;
    381   1.1       ad 
    382   1.1       ad 	sc = (struct iop_softc *)self;
    383   1.5       ad 	LIST_INIT(&sc->sc_iilist);
    384   1.5       ad 
    385   1.5       ad 	printf("%s: configuring...\n", sc->sc_dv.dv_xname);
    386   1.1       ad 
    387   1.5       ad 	if (iop_hrt_get(sc) != 0) {
    388   1.5       ad 		printf("%s: unable to retrieve HRT\n", sc->sc_dv.dv_xname);
    389   1.5       ad 		return;
    390   1.5       ad 	}
    391   1.1       ad 
    392   1.5       ad 	/*
    393   1.5       ad  	 * Build the system table.
    394   1.5       ad  	 */
    395   1.5       ad 	if (iop_systab == NULL) {
    396   1.5       ad 		for (i = 0, niop = 0; i < iop_cd.cd_ndevs; i++) {
    397   1.5       ad 			if ((iop = device_lookup(&iop_cd, i)) == NULL)
    398   1.5       ad 				continue;
    399   1.5       ad 			if ((iop->sc_flags & IOP_HAVESTATUS) == 0)
    400   1.5       ad 				continue;
    401  1.11       ad 			if (iop_status_get(iop, 1) != 0) {
    402   1.5       ad 				printf("%s: unable to retrieve status\n",
    403   1.5       ad 				    sc->sc_dv.dv_xname);
    404   1.5       ad 				iop->sc_flags &= ~IOP_HAVESTATUS;
    405   1.5       ad 				continue;
    406   1.5       ad 			}
    407   1.5       ad 			niop++;
    408   1.5       ad 		}
    409   1.5       ad 		if (niop == 0)
    410   1.5       ad 			return;
    411   1.5       ad 
    412   1.5       ad 		i = sizeof(struct i2o_systab_entry) * (niop - 1) +
    413   1.5       ad 		    sizeof(struct i2o_systab);
    414   1.5       ad 		iop_systab_size = i;
    415   1.5       ad 		iop_systab = malloc(i, M_DEVBUF, M_NOWAIT);
    416   1.5       ad 
    417   1.5       ad 		memset(iop_systab, 0, i);
    418   1.5       ad 		iop_systab->numentries = niop;
    419   1.5       ad 		iop_systab->version = I2O_VERSION_11;
    420   1.5       ad 
    421   1.5       ad 		for (i = 0, ste = iop_systab->entry; i < iop_cd.cd_ndevs; i++) {
    422   1.5       ad 			if ((iop = device_lookup(&iop_cd, i)) == NULL)
    423   1.5       ad 				continue;
    424   1.5       ad 			if ((iop->sc_flags & IOP_HAVESTATUS) == 0)
    425   1.5       ad 				continue;
    426   1.5       ad 
    427   1.5       ad 			ste->orgid = iop->sc_status.orgid;
    428   1.5       ad 			ste->iopid = iop->sc_dv.dv_unit + 2;
    429   1.5       ad 			ste->segnumber =
    430   1.5       ad 			    htole32(le32toh(iop->sc_status.segnumber) & ~4095);
    431   1.5       ad 			ste->iopcaps = iop->sc_status.iopcaps;
    432   1.5       ad 			ste->inboundmsgframesize =
    433   1.5       ad 			    iop->sc_status.inboundmframesize;
    434   1.5       ad 			ste->inboundmsgportaddresslow =
    435   1.5       ad 			    htole32(iop->sc_memaddr + IOP_REG_IFIFO);
    436   1.5       ad 			ste++;
    437   1.5       ad 		}
    438   1.5       ad 	}
    439   1.5       ad 
    440  1.11       ad 	/*
    441  1.11       ad 	 * Post the system table to the IOP and bring it to the OPERATIONAL
    442  1.11       ad 	 * state.
    443  1.11       ad 	 */
    444   1.5       ad 	if (iop_systab_set(sc) != 0) {
    445   1.5       ad 		printf("%s: unable to set system table\n", sc->sc_dv.dv_xname);
    446   1.5       ad 		return;
    447   1.5       ad 	}
    448   1.5       ad 	if (iop_simple_cmd(sc, I2O_TID_IOP, I2O_EXEC_SYS_ENABLE, IOP_ICTX, 1,
    449  1.11       ad 	    30000) != 0) {
    450   1.5       ad 		printf("%s: unable to enable system\n", sc->sc_dv.dv_xname);
    451   1.5       ad 		return;
    452   1.5       ad 	}
    453   1.5       ad 
    454   1.5       ad 	/*
    455   1.5       ad 	 * Set up an event handler for this IOP.
    456   1.5       ad 	 */
    457   1.5       ad 	sc->sc_eventii.ii_dv = self;
    458   1.5       ad 	sc->sc_eventii.ii_intr = iop_intr_event;
    459   1.5       ad 	sc->sc_eventii.ii_flags = II_DISCARD | II_UTILITY;
    460   1.5       ad 	sc->sc_eventii.ii_tid = I2O_TID_IOP;
    461  1.11       ad 	iop_initiator_register(sc, &sc->sc_eventii);
    462  1.11       ad 
    463  1.11       ad 	rv = iop_util_eventreg(sc, &sc->sc_eventii,
    464  1.11       ad 	    I2O_EVENT_EXEC_RESOURCE_LIMITS |
    465  1.11       ad 	    I2O_EVENT_EXEC_CONNECTION_FAIL |
    466  1.11       ad 	    I2O_EVENT_EXEC_ADAPTER_FAULT |
    467  1.11       ad 	    I2O_EVENT_EXEC_POWER_FAIL |
    468  1.11       ad 	    I2O_EVENT_EXEC_RESET_PENDING |
    469  1.11       ad 	    I2O_EVENT_EXEC_RESET_IMMINENT |
    470  1.11       ad 	    I2O_EVENT_EXEC_HARDWARE_FAIL |
    471  1.11       ad 	    I2O_EVENT_EXEC_XCT_CHANGE |
    472  1.11       ad 	    I2O_EVENT_EXEC_DDM_AVAILIBILITY |
    473  1.11       ad 	    I2O_EVENT_GEN_DEVICE_RESET |
    474  1.11       ad 	    I2O_EVENT_GEN_STATE_CHANGE |
    475  1.11       ad 	    I2O_EVENT_GEN_GENERAL_WARNING);
    476  1.11       ad 	if (rv != 0) {
    477   1.5       ad 		printf("%s: unable to register for events", sc->sc_dv.dv_xname);
    478   1.5       ad 		return;
    479   1.5       ad 	}
    480   1.5       ad 
    481   1.5       ad #ifdef notyet
    482   1.1       ad 	/* Attempt to match and attach a product-specific extension. */
    483   1.1       ad 	ia.ia_class = I2O_CLASS_ANY;
    484   1.1       ad 	ia.ia_tid = I2O_TID_IOP;
    485   1.1       ad 	config_found_sm(self, &ia, iop_vendor_print, iop_submatch);
    486   1.5       ad #endif
    487   1.5       ad 
    488  1.11       ad 	lockmgr(&sc->sc_conflock, LK_EXCLUSIVE, NULL);
    489  1.11       ad 	if ((rv = iop_reconfigure(sc, 0)) == -1) {
    490   1.5       ad 		printf("%s: configure failed (%d)\n", sc->sc_dv.dv_xname, rv);
    491   1.5       ad 		return;
    492   1.5       ad 	}
    493  1.11       ad 	lockmgr(&sc->sc_conflock, LK_RELEASE, NULL);
    494   1.5       ad 
    495   1.9       ad 	kthread_create(iop_create_reconf_thread, sc);
    496   1.9       ad }
    497   1.9       ad 
    498   1.9       ad /*
    499   1.9       ad  * Create the reconfiguration thread.  Called after the standard kernel
    500   1.9       ad  * threads have been created.
    501   1.9       ad  */
    502   1.9       ad static void
    503   1.9       ad iop_create_reconf_thread(void *cookie)
    504   1.9       ad {
    505   1.9       ad 	struct iop_softc *sc;
    506   1.9       ad 	int rv;
    507   1.9       ad 
    508   1.9       ad 	sc = cookie;
    509  1.11       ad 	sc->sc_flags |= IOP_ONLINE;
    510   1.9       ad 
    511   1.9       ad 	rv = kthread_create1(iop_reconf_thread, sc, &sc->sc_reconf_proc,
    512  1.11       ad  	    "%s", sc->sc_dv.dv_xname);
    513  1.11       ad  	if (rv != 0) {
    514   1.9       ad 		printf("%s: unable to create reconfiguration thread (%d)",
    515  1.11       ad  		    sc->sc_dv.dv_xname, rv);
    516  1.11       ad  		return;
    517  1.11       ad  	}
    518   1.5       ad }
    519   1.5       ad 
    520   1.5       ad /*
    521   1.5       ad  * Reconfiguration thread; listens for LCT change notification, and
    522   1.5       ad  * initiates re-configuration if recieved.
    523   1.5       ad  */
    524   1.5       ad static void
    525   1.9       ad iop_reconf_thread(void *cookie)
    526   1.5       ad {
    527   1.5       ad 	struct iop_softc *sc;
    528   1.5       ad 	struct i2o_lct lct;
    529   1.5       ad 	u_int32_t chgind;
    530  1.11       ad 	int rv;
    531   1.5       ad 
    532   1.5       ad 	sc = cookie;
    533  1.11       ad 	chgind = sc->sc_chgind + 1;
    534   1.5       ad 
    535   1.5       ad 	for (;;) {
    536  1.11       ad 		DPRINTF(("%s: async reconfig: requested 0x%08x\n",
    537  1.11       ad 		    sc->sc_dv.dv_xname, chgind));
    538   1.5       ad 
    539  1.11       ad 		PHOLD(sc->sc_reconf_proc);
    540  1.11       ad 		rv = iop_lct_get0(sc, &lct, sizeof(lct), chgind);
    541  1.11       ad 		PRELE(sc->sc_reconf_proc);
    542  1.11       ad 
    543  1.11       ad 		DPRINTF(("%s: async reconfig: notified (0x%08x, %d)\n",
    544  1.11       ad 		    sc->sc_dv.dv_xname, le32toh(lct.changeindicator), rv));
    545  1.11       ad 
    546  1.11       ad 		if (rv == 0 &&
    547  1.11       ad 		    lockmgr(&sc->sc_conflock, LK_EXCLUSIVE, NULL) == 0) {
    548  1.11       ad 			iop_reconfigure(sc, le32toh(lct.changeindicator));
    549  1.11       ad 			chgind = sc->sc_chgind + 1;
    550  1.11       ad 			lockmgr(&sc->sc_conflock, LK_RELEASE, NULL);
    551   1.5       ad 		}
    552   1.5       ad 
    553   1.9       ad 		tsleep(iop_reconf_thread, PWAIT, "iopzzz", hz * 5);
    554   1.5       ad 	}
    555   1.5       ad }
    556   1.5       ad 
    557   1.5       ad /*
    558   1.5       ad  * Reconfigure: find new and removed devices.
    559   1.5       ad  */
    560   1.5       ad static int
    561  1.11       ad iop_reconfigure(struct iop_softc *sc, u_int chgind)
    562   1.5       ad {
    563   1.5       ad 	struct iop_msg *im;
    564  1.11       ad 	struct i2o_hba_bus_scan mf;
    565   1.5       ad 	struct i2o_lct_entry *le;
    566   1.5       ad 	struct iop_initiator *ii, *nextii;
    567   1.5       ad 	int rv, tid, i;
    568   1.5       ad 
    569   1.1       ad 	/*
    570   1.5       ad 	 * If the reconfiguration request isn't the result of LCT change
    571   1.5       ad 	 * notification, then be more thorough: ask all bus ports to scan
    572   1.5       ad 	 * their busses.  Wait up to 5 minutes for each bus port to complete
    573   1.5       ad 	 * the request.
    574   1.1       ad 	 */
    575   1.5       ad 	if (chgind == 0) {
    576   1.5       ad 		if ((rv = iop_lct_get(sc)) != 0) {
    577   1.5       ad 			DPRINTF(("iop_reconfigure: unable to read LCT\n"));
    578  1.11       ad 			return (rv);
    579   1.5       ad 		}
    580   1.5       ad 
    581   1.5       ad 		le = sc->sc_lct->entry;
    582   1.5       ad 		for (i = 0; i < sc->sc_nlctent; i++, le++) {
    583   1.5       ad 			if ((le16toh(le->classid) & 4095) !=
    584   1.5       ad 			    I2O_CLASS_BUS_ADAPTER_PORT)
    585   1.5       ad 				continue;
    586   1.5       ad 			tid = le32toh(le->localtid) & 4095;
    587   1.5       ad 
    588  1.11       ad 			im = iop_msg_alloc(sc, NULL, IM_WAIT);
    589   1.5       ad 
    590  1.11       ad 			mf.msgflags = I2O_MSGFLAGS(i2o_hba_bus_scan);
    591  1.11       ad 			mf.msgfunc = I2O_MSGFUNC(tid, I2O_HBA_BUS_SCAN);
    592  1.11       ad 			mf.msgictx = IOP_ICTX;
    593  1.11       ad 			mf.msgtctx = im->im_tctx;
    594   1.5       ad 
    595   1.5       ad 			DPRINTF(("%s: scanning bus %d\n", sc->sc_dv.dv_xname,
    596   1.5       ad 			    tid));
    597   1.5       ad 
    598  1.11       ad 			rv = iop_msg_post(sc, im, &mf, 5*60*1000);
    599  1.11       ad 			iop_msg_free(sc, im);
    600  1.11       ad #ifdef I2ODEBUG
    601  1.11       ad 			if (rv != 0)
    602  1.11       ad 				printf("%s: bus scan failed\n",
    603  1.11       ad 				    sc->sc_dv.dv_xname);
    604  1.11       ad #endif
    605   1.5       ad 		}
    606  1.11       ad 	} else if (chgind <= sc->sc_chgind) {
    607   1.5       ad 		DPRINTF(("%s: LCT unchanged (async)\n", sc->sc_dv.dv_xname));
    608  1.11       ad 		return (0);
    609   1.5       ad 	}
    610   1.5       ad 
    611   1.5       ad 	/* Re-read the LCT and determine if it has changed. */
    612   1.5       ad 	if ((rv = iop_lct_get(sc)) != 0) {
    613   1.5       ad 		DPRINTF(("iop_reconfigure: unable to re-read LCT\n"));
    614  1.11       ad 		return (rv);
    615   1.5       ad 	}
    616   1.5       ad 	DPRINTF(("%s: %d LCT entries\n", sc->sc_dv.dv_xname, sc->sc_nlctent));
    617   1.5       ad 
    618  1.11       ad 	chgind = le32toh(sc->sc_lct->changeindicator);
    619  1.11       ad 	if (chgind == sc->sc_chgind) {
    620   1.5       ad 		DPRINTF(("%s: LCT unchanged\n", sc->sc_dv.dv_xname));
    621  1.11       ad 		return (0);
    622   1.5       ad 	}
    623   1.5       ad 	DPRINTF(("%s: LCT changed\n", sc->sc_dv.dv_xname));
    624  1.11       ad 	sc->sc_chgind = chgind;
    625   1.5       ad 
    626   1.5       ad 	if (sc->sc_tidmap != NULL)
    627   1.5       ad 		free(sc->sc_tidmap, M_DEVBUF);
    628   1.5       ad 	sc->sc_tidmap = malloc(sc->sc_nlctent * sizeof(struct iop_tidmap),
    629   1.5       ad 	    M_DEVBUF, M_NOWAIT);
    630  1.11       ad 	memset(sc->sc_tidmap, 0, sizeof(sc->sc_tidmap));
    631   1.5       ad 
    632  1.11       ad 	/* Allow 1 queued command per device while we're configuring. */
    633  1.11       ad 	iop_adjqparam(sc, 1);
    634  1.11       ad 
    635  1.11       ad 	/*
    636  1.11       ad 	 * Match and attach child devices.  We configure high-level devices
    637  1.11       ad 	 * first so that any claims will propagate throughout the LCT,
    638  1.11       ad 	 * hopefully masking off aliased devices as a result.
    639  1.11       ad 	 *
    640  1.11       ad 	 * Re-reading the LCT at this point is a little dangerous, but we'll
    641  1.11       ad 	 * trust the IOP (and the operator) to behave itself...
    642  1.11       ad 	 */
    643  1.11       ad 	iop_configure_devices(sc, IC_CONFIGURE | IC_PRIORITY,
    644  1.11       ad 	    IC_CONFIGURE | IC_PRIORITY);
    645  1.11       ad 	if ((rv = iop_lct_get(sc)) != 0)
    646  1.11       ad 		DPRINTF(("iop_reconfigure: unable to re-read LCT\n"));
    647  1.11       ad 	iop_configure_devices(sc, IC_CONFIGURE | IC_PRIORITY,
    648  1.11       ad 	    IC_CONFIGURE);
    649   1.5       ad 
    650   1.5       ad 	for (ii = LIST_FIRST(&sc->sc_iilist); ii != NULL; ii = nextii) {
    651  1.11       ad 		nextii = LIST_NEXT(ii, ii_list);
    652   1.5       ad 
    653   1.5       ad 		/* Detach devices that were configured, but are now gone. */
    654   1.5       ad 		for (i = 0; i < sc->sc_nlctent; i++)
    655   1.5       ad 			if (ii->ii_tid == sc->sc_tidmap[i].it_tid)
    656   1.5       ad 				break;
    657   1.5       ad 		if (i == sc->sc_nlctent ||
    658   1.5       ad 		    (sc->sc_tidmap[i].it_flags & IT_CONFIGURED) == 0)
    659   1.5       ad 			config_detach(ii->ii_dv, DETACH_FORCE);
    660   1.5       ad 
    661   1.5       ad 		/*
    662   1.5       ad 		 * Tell initiators that existed before the re-configuration
    663   1.5       ad 		 * to re-configure.
    664   1.5       ad 		 */
    665   1.5       ad 		if (ii->ii_reconfig == NULL)
    666   1.5       ad 			continue;
    667   1.5       ad 		if ((rv = (*ii->ii_reconfig)(ii->ii_dv)) != 0)
    668   1.5       ad 			printf("%s: %s failed reconfigure (%d)\n",
    669   1.5       ad 			    sc->sc_dv.dv_xname, ii->ii_dv->dv_xname, rv);
    670   1.5       ad 	}
    671   1.5       ad 
    672  1.11       ad 	/* Re-adjust queue parameters and return. */
    673  1.11       ad 	if (sc->sc_nii != 0)
    674  1.11       ad 		iop_adjqparam(sc, (sc->sc_maxib - sc->sc_nuii - IOP_MF_RESERVE)
    675  1.11       ad 		    / sc->sc_nii);
    676  1.11       ad 
    677  1.11       ad 	return (0);
    678   1.1       ad }
    679   1.1       ad 
    680   1.1       ad /*
    681   1.5       ad  * Configure I2O devices into the system.
    682   1.1       ad  */
    683   1.1       ad static void
    684  1.11       ad iop_configure_devices(struct iop_softc *sc, int mask, int maskval)
    685   1.1       ad {
    686   1.1       ad 	struct iop_attach_args ia;
    687   1.5       ad 	struct iop_initiator *ii;
    688   1.1       ad 	const struct i2o_lct_entry *le;
    689   1.9       ad 	struct device *dv;
    690   1.8       ad 	int i, j, nent;
    691  1.11       ad 	u_int usertid;
    692   1.1       ad 
    693   1.1       ad 	nent = sc->sc_nlctent;
    694   1.1       ad 	for (i = 0, le = sc->sc_lct->entry; i < nent; i++, le++) {
    695   1.9       ad 		sc->sc_tidmap[i].it_tid = le32toh(le->localtid) & 4095;
    696   1.9       ad 
    697  1.11       ad 		/* Ignore the device if it's in use. */
    698  1.11       ad 		usertid = le32toh(le->usertid) & 4095;
    699  1.11       ad 		if (usertid != I2O_TID_NONE && usertid != I2O_TID_HOST)
    700   1.1       ad 			continue;
    701   1.1       ad 
    702   1.1       ad 		ia.ia_class = le16toh(le->classid) & 4095;
    703   1.9       ad 		ia.ia_tid = sc->sc_tidmap[i].it_tid;
    704   1.8       ad 
    705   1.8       ad 		/* Ignore uninteresting devices. */
    706   1.8       ad 		for (j = 0; j < sizeof(iop_class) / sizeof(iop_class[0]); j++)
    707   1.8       ad 			if (iop_class[j].ic_class == ia.ia_class)
    708   1.8       ad 				break;
    709   1.8       ad 		if (j < sizeof(iop_class) / sizeof(iop_class[0]) &&
    710  1.11       ad 		    (iop_class[j].ic_flags & mask) != maskval)
    711   1.8       ad 			continue;
    712   1.1       ad 
    713   1.1       ad 		/*
    714   1.5       ad 		 * Try to configure the device only if it's not already
    715   1.5       ad 		 * configured.
    716   1.1       ad  		 */
    717   1.7       ad  		LIST_FOREACH(ii, &sc->sc_iilist, ii_list) {
    718   1.9       ad  			if (ia.ia_tid == ii->ii_tid) {
    719   1.9       ad 				sc->sc_tidmap[i].it_flags |= IT_CONFIGURED;
    720   1.9       ad 				strcpy(sc->sc_tidmap[i].it_dvname,
    721   1.9       ad 				    ii->ii_dv->dv_xname);
    722  1.11       ad  				break;
    723   1.9       ad 			}
    724   1.7       ad 		}
    725   1.5       ad 		if (ii != NULL)
    726   1.5       ad 			continue;
    727   1.5       ad 
    728   1.9       ad 		dv = config_found_sm(&sc->sc_dv, &ia, iop_print, iop_submatch);
    729   1.9       ad 		if (dv != NULL) {
    730  1.11       ad  			sc->sc_tidmap[i].it_flags |= IT_CONFIGURED;
    731   1.9       ad 			strcpy(sc->sc_tidmap[i].it_dvname, dv->dv_xname);
    732   1.9       ad 		}
    733   1.1       ad 	}
    734   1.1       ad }
    735   1.1       ad 
    736  1.11       ad /*
    737  1.11       ad  * Adjust queue parameters for all child devices.
    738  1.11       ad  */
    739  1.11       ad static void
    740  1.11       ad iop_adjqparam(struct iop_softc *sc, int mpi)
    741  1.11       ad {
    742  1.11       ad 	struct iop_initiator *ii;
    743  1.11       ad 
    744  1.11       ad 	LIST_FOREACH(ii, &sc->sc_iilist, ii_list)
    745  1.11       ad 		if (ii->ii_adjqparam != NULL)
    746  1.11       ad 			(*ii->ii_adjqparam)(ii->ii_dv, mpi);
    747  1.11       ad }
    748  1.11       ad 
    749   1.1       ad static void
    750   1.1       ad iop_devinfo(int class, char *devinfo)
    751   1.1       ad {
    752   1.1       ad #ifdef I2OVERBOSE
    753   1.1       ad 	int i;
    754   1.1       ad 
    755   1.1       ad 	for (i = 0; i < sizeof(iop_class) / sizeof(iop_class[0]); i++)
    756   1.1       ad 		if (class == iop_class[i].ic_class)
    757   1.1       ad 			break;
    758   1.1       ad 
    759   1.1       ad 	if (i == sizeof(iop_class) / sizeof(iop_class[0]))
    760   1.1       ad 		sprintf(devinfo, "device (class 0x%x)", class);
    761   1.1       ad 	else
    762   1.1       ad 		strcpy(devinfo, iop_class[i].ic_caption);
    763   1.1       ad #else
    764   1.1       ad 
    765   1.1       ad 	sprintf(devinfo, "device (class 0x%x)", class);
    766   1.1       ad #endif
    767   1.1       ad }
    768   1.1       ad 
    769   1.1       ad static int
    770   1.1       ad iop_print(void *aux, const char *pnp)
    771   1.1       ad {
    772   1.1       ad 	struct iop_attach_args *ia;
    773   1.1       ad 	char devinfo[256];
    774   1.1       ad 
    775   1.1       ad 	ia = aux;
    776   1.1       ad 
    777   1.1       ad 	if (pnp != NULL) {
    778   1.1       ad 		iop_devinfo(ia->ia_class, devinfo);
    779   1.1       ad 		printf("%s at %s", devinfo, pnp);
    780   1.1       ad 	}
    781   1.1       ad 	printf(" tid %d", ia->ia_tid);
    782   1.1       ad 	return (UNCONF);
    783   1.1       ad }
    784   1.1       ad 
    785   1.5       ad #ifdef notyet
    786   1.1       ad static int
    787   1.1       ad iop_vendor_print(void *aux, const char *pnp)
    788   1.1       ad {
    789   1.1       ad 
    790   1.1       ad 	if (pnp != NULL)
    791   1.1       ad 		printf("vendor specific extension at %s", pnp);
    792   1.1       ad 	return (UNCONF);
    793   1.1       ad }
    794   1.5       ad #endif
    795   1.1       ad 
    796   1.1       ad static int
    797   1.1       ad iop_submatch(struct device *parent, struct cfdata *cf, void *aux)
    798   1.1       ad {
    799   1.1       ad 	struct iop_attach_args *ia;
    800   1.1       ad 
    801   1.1       ad 	ia = aux;
    802   1.1       ad 
    803   1.1       ad 	if (cf->iopcf_tid != IOPCF_TID_DEFAULT && cf->iopcf_tid != ia->ia_tid)
    804   1.1       ad 		return (0);
    805   1.1       ad 
    806   1.1       ad 	return ((*cf->cf_attach->ca_match)(parent, cf, aux));
    807   1.1       ad }
    808   1.1       ad 
    809   1.1       ad /*
    810   1.1       ad  * Shut down all configured IOPs.
    811   1.1       ad  */
    812   1.1       ad static void
    813   1.1       ad iop_shutdown(void *junk)
    814   1.1       ad {
    815   1.1       ad 	struct iop_softc *sc;
    816   1.1       ad 	int i;
    817   1.1       ad 
    818  1.11       ad 	printf("shutting down iop devices...");
    819   1.1       ad 
    820   1.1       ad 	for (i = 0; i < iop_cd.cd_ndevs; i++) {
    821   1.1       ad 		if ((sc = device_lookup(&iop_cd, i)) == NULL)
    822   1.1       ad 			continue;
    823   1.5       ad 		if ((sc->sc_flags & IOP_ONLINE) == 0)
    824   1.5       ad 			continue;
    825   1.5       ad 		iop_simple_cmd(sc, I2O_TID_IOP, I2O_EXEC_SYS_QUIESCE, IOP_ICTX,
    826  1.12       ad 		    0, 5000);
    827   1.5       ad 		iop_simple_cmd(sc, I2O_TID_IOP, I2O_EXEC_IOP_CLEAR, IOP_ICTX,
    828  1.12       ad 		    0, 1000);
    829   1.1       ad 	}
    830   1.1       ad 
    831   1.1       ad 	/* Wait.  Some boards could still be flushing, stupidly enough. */
    832   1.1       ad 	delay(5000*1000);
    833  1.11       ad 	printf(" done.\n");
    834   1.1       ad }
    835   1.1       ad 
    836   1.1       ad /*
    837  1.11       ad  * Retrieve IOP status.
    838   1.1       ad  */
    839   1.1       ad static int
    840  1.11       ad iop_status_get(struct iop_softc *sc, int nosleep)
    841   1.1       ad {
    842  1.11       ad 	struct i2o_exec_status_get mf;
    843  1.11       ad 	int rv, i;
    844   1.1       ad 
    845  1.11       ad 	mf.msgflags = I2O_MSGFLAGS(i2o_exec_status_get);
    846  1.11       ad 	mf.msgfunc = I2O_MSGFUNC(I2O_TID_IOP, I2O_EXEC_STATUS_GET);
    847  1.11       ad 	mf.reserved[0] = 0;
    848  1.11       ad 	mf.reserved[1] = 0;
    849  1.11       ad 	mf.reserved[2] = 0;
    850  1.11       ad 	mf.reserved[3] = 0;
    851  1.11       ad 	mf.addrlow = kvtop((caddr_t)&sc->sc_status);	/* XXX */
    852  1.11       ad 	mf.addrhigh = 0;
    853  1.11       ad 	mf.length = sizeof(sc->sc_status);
    854   1.1       ad 
    855   1.5       ad 	memset(&sc->sc_status, 0, sizeof(sc->sc_status));
    856   1.1       ad 
    857  1.11       ad 	if ((rv = iop_post(sc, (u_int32_t *)&mf)) != 0)
    858   1.1       ad 		return (rv);
    859   1.1       ad 
    860   1.1       ad 	/* XXX */
    861  1.11       ad 	for (i = 25; i != 0; i--) {
    862  1.11       ad 		if (*((volatile u_char *)&sc->sc_status.syncbyte) == 0xff)
    863  1.11       ad 			break;
    864  1.11       ad 		if (nosleep)
    865  1.11       ad 			DELAY(100*1000);
    866  1.11       ad 		else
    867  1.11       ad 			tsleep(iop_status_get, PWAIT, "iopstat", hz / 10);
    868  1.11       ad 	}
    869   1.1       ad 
    870  1.11       ad 	if (*((volatile u_char *)&sc->sc_status.syncbyte) != 0xff)
    871  1.11       ad 		rv = EIO;
    872  1.11       ad 	else
    873  1.11       ad 		rv = 0;
    874  1.11       ad 	return (rv);
    875   1.1       ad }
    876   1.1       ad 
    877   1.1       ad /*
    878  1.11       ad  * Initalize and populate the IOP's outbound FIFO.
    879   1.1       ad  */
    880   1.1       ad static int
    881   1.1       ad iop_ofifo_init(struct iop_softc *sc)
    882   1.1       ad {
    883   1.1       ad 	struct iop_msg *im;
    884   1.1       ad 	volatile u_int32_t status;
    885   1.1       ad 	bus_addr_t addr;
    886   1.5       ad 	bus_dma_segment_t seg;
    887  1.11       ad 	struct i2o_exec_outbound_init *mf;
    888   1.5       ad 	int i, rseg, rv;
    889  1.11       ad 	u_int32_t mb[IOP_MAX_MSG_SIZE / sizeof(u_int32_t)];
    890   1.1       ad 
    891  1.11       ad 	im = iop_msg_alloc(sc, NULL, IM_POLL);
    892   1.1       ad 
    893  1.11       ad 	mf = (struct i2o_exec_outbound_init *)mb;
    894  1.11       ad 	mf->msgflags = I2O_MSGFLAGS(i2o_exec_outbound_init);
    895  1.11       ad 	mf->msgfunc = I2O_MSGFUNC(I2O_TID_IOP, I2O_EXEC_OUTBOUND_INIT);
    896  1.11       ad 	mf->msgictx = IOP_ICTX;
    897  1.11       ad 	mf->msgtctx = im->im_tctx;
    898  1.11       ad 	mf->pagesize = PAGE_SIZE;
    899  1.11       ad 	mf->flags = IOP_INIT_CODE | ((IOP_MAX_MSG_SIZE >> 2) << 16);
    900   1.1       ad 
    901   1.1       ad 	status = 0;
    902   1.5       ad 
    903   1.5       ad 	/*
    904   1.5       ad 	 * The I2O spec says that there are two SGLs: one for the status
    905   1.5       ad 	 * word, and one for a list of discarded MFAs.  It continues to say
    906   1.5       ad 	 * that if you don't want to get the list of MFAs, an IGNORE SGL is
    907  1.11       ad 	 * necessary; this isn't the case (and is in fact a bad thing).
    908   1.5       ad 	 */
    909  1.11       ad 	iop_msg_map(sc, im, mb, (void *)&status, sizeof(status), 0);
    910  1.11       ad 	if ((rv = iop_msg_post(sc, im, mb, 0)) != 0) {
    911  1.11       ad 		iop_msg_free(sc, im);
    912   1.1       ad 		return (rv);
    913   1.1       ad 	}
    914   1.1       ad 	iop_msg_unmap(sc, im);
    915  1.11       ad 	iop_msg_free(sc, im);
    916   1.1       ad 
    917   1.5       ad 	/* XXX */
    918   1.5       ad 	POLL(5000, status == I2O_EXEC_OUTBOUND_INIT_COMPLETE);
    919   1.5       ad 	if (status != I2O_EXEC_OUTBOUND_INIT_COMPLETE) {
    920   1.5       ad 		printf("%s: outbound FIFO init failed\n", sc->sc_dv.dv_xname);
    921   1.5       ad 		return (EIO);
    922   1.1       ad 	}
    923   1.1       ad 
    924  1.11       ad 	/* Allocate DMA safe memory for the reply frames. */
    925   1.1       ad 	if (sc->sc_rep_phys == 0) {
    926  1.11       ad 		sc->sc_rep_size = sc->sc_maxob * IOP_MAX_MSG_SIZE;
    927   1.5       ad 
    928   1.5       ad 		rv = bus_dmamem_alloc(sc->sc_dmat, sc->sc_rep_size, PAGE_SIZE,
    929   1.5       ad 		    0, &seg, 1, &rseg, BUS_DMA_NOWAIT);
    930   1.5       ad 		if (rv != 0) {
    931   1.5       ad 			printf("%s: dma alloc = %d\n", sc->sc_dv.dv_xname,
    932   1.5       ad 			   rv);
    933   1.5       ad 			return (rv);
    934   1.5       ad 		}
    935   1.5       ad 
    936   1.5       ad 		rv = bus_dmamem_map(sc->sc_dmat, &seg, rseg, sc->sc_rep_size,
    937   1.5       ad 		    &sc->sc_rep, BUS_DMA_NOWAIT | BUS_DMA_COHERENT);
    938   1.5       ad 		if (rv != 0) {
    939   1.5       ad 			printf("%s: dma map = %d\n", sc->sc_dv.dv_xname, rv);
    940   1.5       ad 			return (rv);
    941   1.5       ad 		}
    942   1.5       ad 
    943   1.5       ad 		rv = bus_dmamap_create(sc->sc_dmat, sc->sc_rep_size, 1,
    944   1.5       ad 		    sc->sc_rep_size, 0, BUS_DMA_NOWAIT, &sc->sc_rep_dmamap);
    945   1.5       ad 		if (rv != 0) {
    946   1.5       ad 			printf("%s: dma create = %d\n", sc->sc_dv.dv_xname, rv);
    947   1.5       ad 			return (rv);
    948   1.5       ad 		}
    949   1.5       ad 
    950   1.5       ad 		rv = bus_dmamap_load(sc->sc_dmat, sc->sc_rep_dmamap, sc->sc_rep,
    951   1.5       ad 		    sc->sc_rep_size, NULL, BUS_DMA_NOWAIT);
    952   1.5       ad 		if (rv != 0) {
    953   1.5       ad 			printf("%s: dma load = %d\n", sc->sc_dv.dv_xname, rv);
    954   1.5       ad 			return (rv);
    955   1.5       ad 		}
    956   1.5       ad 
    957   1.5       ad 		sc->sc_rep_phys = sc->sc_rep_dmamap->dm_segs[0].ds_addr;
    958   1.1       ad 	}
    959   1.1       ad 
    960   1.1       ad 	/* Populate the outbound FIFO. */
    961  1.11       ad 	for (i = sc->sc_maxob, addr = sc->sc_rep_phys; i != 0; i--) {
    962   1.5       ad 		iop_outl(sc, IOP_REG_OFIFO, (u_int32_t)addr);
    963  1.11       ad 		addr += IOP_MAX_MSG_SIZE;
    964   1.1       ad 	}
    965   1.1       ad 
    966   1.1       ad 	return (0);
    967   1.1       ad }
    968   1.1       ad 
    969   1.1       ad /*
    970   1.1       ad  * Read the specified number of bytes from the IOP's hardware resource table.
    971   1.1       ad  */
    972   1.1       ad static int
    973   1.1       ad iop_hrt_get0(struct iop_softc *sc, struct i2o_hrt *hrt, int size)
    974   1.1       ad {
    975   1.1       ad 	struct iop_msg *im;
    976   1.1       ad 	int rv;
    977  1.11       ad 	struct i2o_exec_hrt_get *mf;
    978  1.11       ad 	u_int32_t mb[IOP_MAX_MSG_SIZE / sizeof(u_int32_t)];
    979   1.1       ad 
    980  1.11       ad 	im = iop_msg_alloc(sc, NULL, IM_WAIT);
    981  1.11       ad 	mf = (struct i2o_exec_hrt_get *)mb;
    982  1.11       ad 	mf->msgflags = I2O_MSGFLAGS(i2o_exec_hrt_get);
    983  1.11       ad 	mf->msgfunc = I2O_MSGFUNC(I2O_TID_IOP, I2O_EXEC_HRT_GET);
    984  1.11       ad 	mf->msgictx = IOP_ICTX;
    985  1.11       ad 	mf->msgtctx = im->im_tctx;
    986   1.1       ad 
    987  1.11       ad 	iop_msg_map(sc, im, mb, hrt, size, 0);
    988  1.11       ad 	rv = iop_msg_post(sc, im, mb, 30000);
    989   1.1       ad 	iop_msg_unmap(sc, im);
    990  1.11       ad 	iop_msg_free(sc, im);
    991   1.1       ad 	return (rv);
    992   1.1       ad }
    993   1.1       ad 
    994   1.1       ad /*
    995   1.5       ad  * Read the IOP's hardware resource table.
    996   1.1       ad  */
    997   1.1       ad static int
    998   1.1       ad iop_hrt_get(struct iop_softc *sc)
    999   1.1       ad {
   1000   1.1       ad 	struct i2o_hrt hrthdr, *hrt;
   1001   1.1       ad 	int size, rv;
   1002   1.1       ad 
   1003  1.11       ad 	PHOLD(curproc);
   1004  1.11       ad 	rv = iop_hrt_get0(sc, &hrthdr, sizeof(hrthdr));
   1005  1.11       ad 	PRELE(curproc);
   1006  1.11       ad 	if (rv != 0)
   1007   1.1       ad 		return (rv);
   1008   1.1       ad 
   1009   1.5       ad 	DPRINTF(("%s: %d hrt entries\n", sc->sc_dv.dv_xname,
   1010   1.5       ad 	    le16toh(hrthdr.numentries)));
   1011   1.5       ad 
   1012   1.5       ad 	size = sizeof(struct i2o_hrt) +
   1013   1.5       ad 	    (htole32(hrthdr.numentries) - 1) * sizeof(struct i2o_hrt_entry);
   1014   1.1       ad 	hrt = (struct i2o_hrt *)malloc(size, M_DEVBUF, M_NOWAIT);
   1015   1.1       ad 
   1016   1.1       ad 	if ((rv = iop_hrt_get0(sc, hrt, size)) != 0) {
   1017   1.1       ad 		free(hrt, M_DEVBUF);
   1018   1.1       ad 		return (rv);
   1019   1.1       ad 	}
   1020   1.1       ad 
   1021   1.1       ad 	if (sc->sc_hrt != NULL)
   1022   1.1       ad 		free(sc->sc_hrt, M_DEVBUF);
   1023   1.1       ad 	sc->sc_hrt = hrt;
   1024   1.1       ad 	return (0);
   1025   1.1       ad }
   1026   1.1       ad 
   1027   1.1       ad /*
   1028   1.1       ad  * Request the specified number of bytes from the IOP's logical
   1029   1.5       ad  * configuration table.  If a change indicator is specified, this
   1030  1.11       ad  * is a verbatim notification request, so the caller is prepared
   1031   1.5       ad  * to wait indefinitely.
   1032   1.1       ad  */
   1033   1.1       ad static int
   1034   1.5       ad iop_lct_get0(struct iop_softc *sc, struct i2o_lct *lct, int size,
   1035   1.5       ad 	     u_int32_t chgind)
   1036   1.1       ad {
   1037   1.1       ad 	struct iop_msg *im;
   1038  1.11       ad 	struct i2o_exec_lct_notify *mf;
   1039   1.1       ad 	int rv;
   1040  1.11       ad 	u_int32_t mb[IOP_MAX_MSG_SIZE / sizeof(u_int32_t)];
   1041   1.1       ad 
   1042  1.11       ad 	im = iop_msg_alloc(sc, NULL, IM_WAIT);
   1043   1.1       ad 	memset(lct, 0, size);
   1044   1.1       ad 
   1045  1.11       ad 	mf = (struct i2o_exec_lct_notify *)mb;
   1046  1.11       ad 	mf->msgflags = I2O_MSGFLAGS(i2o_exec_lct_notify);
   1047  1.11       ad 	mf->msgfunc = I2O_MSGFUNC(I2O_TID_IOP, I2O_EXEC_LCT_NOTIFY);
   1048  1.11       ad 	mf->msgictx = IOP_ICTX;
   1049  1.11       ad 	mf->msgtctx = im->im_tctx;
   1050  1.11       ad 	mf->classid = I2O_CLASS_ANY;
   1051  1.11       ad 	mf->changeindicator = chgind;
   1052   1.5       ad 
   1053   1.9       ad #ifdef I2ODEBUG
   1054   1.9       ad 	printf("iop_lct_get0: reading LCT");
   1055   1.9       ad 	if (chgind != 0)
   1056   1.9       ad 		printf(" (async)");
   1057   1.9       ad 	printf("\n");
   1058   1.9       ad #endif
   1059   1.1       ad 
   1060  1.11       ad 	iop_msg_map(sc, im, mb, lct, size, 0);
   1061  1.11       ad 	rv = iop_msg_post(sc, im, mb, (chgind == 0 ? 120*1000 : 0));
   1062   1.1       ad 	iop_msg_unmap(sc, im);
   1063  1.11       ad 	iop_msg_free(sc, im);
   1064   1.1       ad 	return (rv);
   1065   1.1       ad }
   1066   1.1       ad 
   1067   1.1       ad /*
   1068   1.6       ad  * Read the IOP's logical configuration table.
   1069   1.1       ad  */
   1070   1.1       ad int
   1071   1.1       ad iop_lct_get(struct iop_softc *sc)
   1072   1.1       ad {
   1073   1.5       ad 	int esize, size, rv;
   1074   1.5       ad 	struct i2o_lct *lct;
   1075   1.1       ad 
   1076   1.5       ad 	esize = le32toh(sc->sc_status.expectedlctsize);
   1077   1.5       ad 	lct = (struct i2o_lct *)malloc(esize, M_DEVBUF, M_WAITOK);
   1078   1.5       ad 	if (lct == NULL)
   1079   1.1       ad 		return (ENOMEM);
   1080   1.1       ad 
   1081   1.5       ad 	if ((rv = iop_lct_get0(sc, lct, esize, 0)) != 0) {
   1082   1.1       ad 		free(lct, M_DEVBUF);
   1083   1.1       ad 		return (rv);
   1084   1.1       ad 	}
   1085   1.1       ad 
   1086   1.5       ad 	size = le16toh(lct->tablesize) << 2;
   1087   1.5       ad 	if (esize != size) {
   1088   1.1       ad 		free(lct, M_DEVBUF);
   1089   1.5       ad 		lct = (struct i2o_lct *)malloc(size, M_DEVBUF, M_WAITOK);
   1090   1.5       ad 		if (lct == NULL)
   1091   1.5       ad 			return (ENOMEM);
   1092   1.5       ad 
   1093   1.5       ad 		if ((rv = iop_lct_get0(sc, lct, size, 0)) != 0) {
   1094   1.5       ad 			free(lct, M_DEVBUF);
   1095   1.5       ad 			return (rv);
   1096   1.5       ad 		}
   1097   1.1       ad 	}
   1098   1.5       ad 
   1099   1.5       ad 	/* Swap in the new LCT. */
   1100   1.1       ad 	if (sc->sc_lct != NULL)
   1101   1.1       ad 		free(sc->sc_lct, M_DEVBUF);
   1102   1.1       ad 	sc->sc_lct = lct;
   1103   1.1       ad 	sc->sc_nlctent = ((le16toh(sc->sc_lct->tablesize) << 2) -
   1104   1.1       ad 	    sizeof(struct i2o_lct) + sizeof(struct i2o_lct_entry)) /
   1105   1.1       ad 	    sizeof(struct i2o_lct_entry);
   1106   1.1       ad 	return (0);
   1107   1.1       ad }
   1108   1.1       ad 
   1109   1.1       ad /*
   1110  1.11       ad  * Request the specified parameter group from the target.  If an initiator
   1111  1.11       ad  * is specified (a) don't wait for the operation to complete, but instead
   1112  1.11       ad  * let the initiator's interrupt handler deal with the reply and (b) place a
   1113  1.11       ad  * pointer to the parameter group op in the wrapper's `im_dvcontext' field.
   1114   1.1       ad  */
   1115   1.1       ad int
   1116  1.11       ad iop_param_op(struct iop_softc *sc, int tid, struct iop_initiator *ii,
   1117  1.11       ad 	     int write, int group, void *buf, int size)
   1118   1.1       ad {
   1119   1.1       ad 	struct iop_msg *im;
   1120  1.11       ad 	struct i2o_util_params_op *mf;
   1121  1.11       ad 	struct i2o_reply *rf;
   1122   1.5       ad 	int rv, func, op;
   1123  1.11       ad 	struct iop_pgop *pgop;
   1124  1.11       ad 	u_int32_t mb[IOP_MAX_MSG_SIZE / sizeof(u_int32_t)];
   1125   1.1       ad 
   1126  1.11       ad 	im = iop_msg_alloc(sc, ii, (ii == NULL ? IM_WAIT : 0) | IM_NOSTATUS);
   1127  1.11       ad 	if ((pgop = malloc(sizeof(*pgop), M_DEVBUF, M_WAITOK)) == NULL) {
   1128  1.11       ad 		iop_msg_free(sc, im);
   1129  1.11       ad 		return (ENOMEM);
   1130  1.11       ad 	}
   1131  1.11       ad 	if ((rf = malloc(sizeof(*rf), M_DEVBUF, M_WAITOK)) == NULL) {
   1132  1.11       ad 		iop_msg_free(sc, im);
   1133  1.11       ad 		free(pgop, M_DEVBUF);
   1134  1.11       ad 		return (ENOMEM);
   1135  1.11       ad 	}
   1136  1.11       ad 	im->im_dvcontext = pgop;
   1137  1.11       ad 	im->im_rb = rf;
   1138   1.1       ad 
   1139   1.5       ad 	if (write) {
   1140   1.5       ad 		func = I2O_UTIL_PARAMS_SET;
   1141   1.5       ad 		op = I2O_PARAMS_OP_FIELD_SET;
   1142   1.5       ad 	} else {
   1143   1.5       ad 		func = I2O_UTIL_PARAMS_GET;
   1144   1.5       ad 		op = I2O_PARAMS_OP_FIELD_GET;
   1145   1.5       ad 	}
   1146   1.5       ad 
   1147  1.11       ad 	mf = (struct i2o_util_params_op *)mb;
   1148  1.11       ad 	mf->msgflags = I2O_MSGFLAGS(i2o_util_params_op);
   1149  1.11       ad 	mf->msgfunc = I2O_MSGFUNC(tid, func);
   1150  1.11       ad 	mf->msgictx = IOP_ICTX;
   1151  1.11       ad 	mf->msgtctx = im->im_tctx;
   1152  1.11       ad 	mf->flags = 0;
   1153  1.11       ad 
   1154  1.11       ad 	pgop->olh.count = htole16(1);
   1155  1.11       ad 	pgop->olh.reserved = htole16(0);
   1156  1.11       ad 	pgop->oat.operation = htole16(op);
   1157  1.11       ad 	pgop->oat.fieldcount = htole16(0xffff);
   1158  1.11       ad 	pgop->oat.group = htole16(group);
   1159  1.11       ad 
   1160  1.11       ad 	if (ii == NULL)
   1161  1.11       ad 		PHOLD(curproc);
   1162   1.1       ad 
   1163   1.5       ad 	memset(buf, 0, size);
   1164  1.11       ad 	iop_msg_map(sc, im, mb, pgop, sizeof(*pgop), 1);
   1165  1.11       ad 	iop_msg_map(sc, im, mb, buf, size, write);
   1166  1.11       ad 	rv = iop_msg_post(sc, im, mb, (ii == NULL ? 30000 : 0));
   1167  1.11       ad 
   1168  1.11       ad 	if (ii == NULL)
   1169  1.11       ad 		PRELE(curproc);
   1170  1.11       ad 
   1171  1.11       ad 	/* Detect errors; let partial transfers to count as success. */
   1172  1.11       ad 	if (ii == NULL && rv == 0) {
   1173  1.11       ad 		if (rf->reqstatus == I2O_STATUS_ERROR_PARTIAL_XFER &&
   1174  1.11       ad 		    le16toh(rf->detail) == I2O_DSC_UNKNOWN_ERROR)
   1175  1.11       ad 			rv = 0;
   1176  1.11       ad 		else
   1177  1.11       ad 			rv = (rf->reqstatus != 0 ? EIO : 0);
   1178  1.11       ad 	}
   1179  1.11       ad 
   1180  1.11       ad 	if (ii == NULL || rv != 0) {
   1181  1.11       ad 		iop_msg_unmap(sc, im);
   1182  1.11       ad 		iop_msg_free(sc, im);
   1183  1.11       ad 		free(pgop, M_DEVBUF);
   1184  1.11       ad 		free(rf, M_DEVBUF);
   1185  1.11       ad 	}
   1186   1.1       ad 
   1187   1.1       ad 	return (rv);
   1188  1.11       ad }
   1189   1.1       ad 
   1190   1.1       ad /*
   1191   1.5       ad  * Execute a simple command (no parameters).
   1192   1.1       ad  */
   1193   1.1       ad int
   1194   1.5       ad iop_simple_cmd(struct iop_softc *sc, int tid, int function, int ictx,
   1195   1.5       ad 	       int async, int timo)
   1196   1.1       ad {
   1197   1.1       ad 	struct iop_msg *im;
   1198  1.11       ad 	struct i2o_msg mf;
   1199   1.5       ad 	int rv, fl;
   1200   1.1       ad 
   1201  1.11       ad 	fl = (async != 0 ? IM_WAIT : IM_POLL);
   1202  1.11       ad 	im = iop_msg_alloc(sc, NULL, fl);
   1203   1.1       ad 
   1204  1.11       ad 	mf.msgflags = I2O_MSGFLAGS(i2o_msg);
   1205  1.11       ad 	mf.msgfunc = I2O_MSGFUNC(tid, function);
   1206  1.11       ad 	mf.msgictx = ictx;
   1207  1.11       ad 	mf.msgtctx = im->im_tctx;
   1208   1.1       ad 
   1209  1.11       ad 	rv = iop_msg_post(sc, im, &mf, timo);
   1210  1.11       ad 	iop_msg_free(sc, im);
   1211   1.1       ad 	return (rv);
   1212   1.1       ad }
   1213   1.1       ad 
   1214   1.1       ad /*
   1215   1.5       ad  * Post the system table to the IOP.
   1216   1.1       ad  */
   1217   1.1       ad static int
   1218   1.1       ad iop_systab_set(struct iop_softc *sc)
   1219   1.1       ad {
   1220  1.11       ad 	struct i2o_exec_sys_tab_set *mf;
   1221   1.1       ad 	struct iop_msg *im;
   1222  1.13       ad 	bus_space_handle_t bsh;
   1223  1.13       ad 	bus_addr_t boo;
   1224   1.1       ad 	u_int32_t mema[2], ioa[2];
   1225   1.1       ad 	int rv;
   1226  1.11       ad 	u_int32_t mb[IOP_MAX_MSG_SIZE / sizeof(u_int32_t)];
   1227   1.1       ad 
   1228  1.11       ad 	im = iop_msg_alloc(sc, NULL, IM_WAIT);
   1229   1.1       ad 
   1230  1.11       ad 	mf = (struct i2o_exec_sys_tab_set *)mb;
   1231  1.11       ad 	mf->msgflags = I2O_MSGFLAGS(i2o_exec_sys_tab_set);
   1232  1.11       ad 	mf->msgfunc = I2O_MSGFUNC(I2O_TID_IOP, I2O_EXEC_SYS_TAB_SET);
   1233  1.11       ad 	mf->msgictx = IOP_ICTX;
   1234  1.11       ad 	mf->msgtctx = im->im_tctx;
   1235  1.11       ad 	mf->iopid = (sc->sc_dv.dv_unit + 2) << 12;
   1236  1.11       ad 	mf->segnumber = 0;
   1237   1.5       ad 
   1238  1.13       ad 	mema[1] = sc->sc_status.desiredprivmemsize;
   1239  1.13       ad 	ioa[1] = sc->sc_status.desiredpriviosize;
   1240  1.13       ad 
   1241  1.13       ad 	if (mema[1] != 0) {
   1242  1.13       ad 		rv = bus_space_alloc(sc->sc_bus_memt, 0, 0xffffffff,
   1243  1.13       ad 		    le32toh(mema[1]), PAGE_SIZE, 0, 0, &boo, &bsh);
   1244  1.13       ad 		mema[0] = htole32(boo);
   1245  1.13       ad 		if (rv != 0) {
   1246  1.13       ad 			printf("%s: can't alloc priv mem space, err = %d\n",
   1247  1.13       ad 			    sc->sc_dv.dv_xname, rv);
   1248  1.13       ad 			mema[0] = 0;
   1249  1.13       ad 			mema[1] = 0;
   1250  1.13       ad 		}
   1251  1.13       ad 	}
   1252  1.13       ad 
   1253  1.13       ad 	if (ioa[1] != 0) {
   1254  1.13       ad 		rv = bus_space_alloc(sc->sc_bus_iot, 0, 0xffff,
   1255  1.13       ad 		    le32toh(ioa[1]), 0, 0, 0, &boo, &bsh);
   1256  1.13       ad 		ioa[0] = htole32(boo);
   1257  1.13       ad 		if (rv != 0) {
   1258  1.13       ad 			printf("%s: can't alloc priv i/o space, err = %d\n",
   1259  1.13       ad 			    sc->sc_dv.dv_xname, rv);
   1260  1.13       ad 			ioa[0] = 0;
   1261  1.13       ad 			ioa[1] = 0;
   1262  1.13       ad 		}
   1263  1.13       ad 	}
   1264   1.1       ad 
   1265  1.11       ad 	PHOLD(curproc);
   1266  1.11       ad 	iop_msg_map(sc, im, mb, iop_systab, iop_systab_size, 1);
   1267  1.11       ad 	iop_msg_map(sc, im, mb, mema, sizeof(mema), 1);
   1268  1.11       ad 	iop_msg_map(sc, im, mb, ioa, sizeof(ioa), 1);
   1269  1.11       ad 	rv = iop_msg_post(sc, im, mb, 5000);
   1270   1.1       ad 	iop_msg_unmap(sc, im);
   1271  1.11       ad 	iop_msg_free(sc, im);
   1272  1.11       ad 	PRELE(curproc);
   1273   1.1       ad 	return (rv);
   1274   1.1       ad }
   1275   1.1       ad 
   1276   1.1       ad /*
   1277  1.11       ad  * Reset the IOP.  Must be called with interrupts disabled.
   1278   1.1       ad  */
   1279   1.1       ad static int
   1280   1.1       ad iop_reset(struct iop_softc *sc)
   1281   1.1       ad {
   1282   1.1       ad 	volatile u_int32_t sw;
   1283   1.1       ad 	u_int32_t mfa;
   1284  1.11       ad 	struct i2o_exec_iop_reset mf;
   1285   1.1       ad 	int rv;
   1286   1.1       ad 
   1287   1.1       ad 	sw = 0;
   1288   1.1       ad 
   1289  1.11       ad 	mf.msgflags = I2O_MSGFLAGS(i2o_exec_iop_reset);
   1290  1.11       ad 	mf.msgfunc = I2O_MSGFUNC(I2O_TID_IOP, I2O_EXEC_IOP_RESET);
   1291  1.11       ad 	mf.reserved[0] = 0;
   1292  1.11       ad 	mf.reserved[1] = 0;
   1293  1.11       ad 	mf.reserved[2] = 0;
   1294  1.11       ad 	mf.reserved[3] = 0;
   1295  1.11       ad 	mf.statuslow = kvtop((caddr_t)&sw);		/* XXX */
   1296  1.11       ad 	mf.statushigh = 0;
   1297   1.1       ad 
   1298  1.11       ad 	if ((rv = iop_post(sc, (u_int32_t *)&mf)))
   1299   1.1       ad 		return (rv);
   1300   1.1       ad 
   1301   1.1       ad 	POLL(2500, sw != 0);					/* XXX */
   1302   1.1       ad 	if (sw != I2O_RESET_IN_PROGRESS) {
   1303   1.1       ad 		printf("%s: reset rejected\n", sc->sc_dv.dv_xname);
   1304   1.1       ad 		return (EIO);
   1305   1.1       ad 	}
   1306   1.1       ad 
   1307   1.1       ad 	/*
   1308   1.5       ad 	 * IOP is now in the INIT state.  Wait no more than 10 seconds for
   1309   1.1       ad 	 * the inbound queue to become responsive.
   1310   1.1       ad 	 */
   1311   1.5       ad 	POLL(10000, (mfa = iop_inl(sc, IOP_REG_IFIFO)) != IOP_MFA_EMPTY);
   1312   1.1       ad 	if (mfa == IOP_MFA_EMPTY) {
   1313   1.1       ad 		printf("%s: reset failed\n", sc->sc_dv.dv_xname);
   1314   1.1       ad 		return (EIO);
   1315   1.1       ad 	}
   1316   1.1       ad 
   1317   1.1       ad 	iop_release_mfa(sc, mfa);
   1318   1.1       ad 	return (0);
   1319   1.1       ad }
   1320   1.1       ad 
   1321   1.1       ad /*
   1322  1.11       ad  * Register a new initiator.  Must be called with the configuration lock
   1323  1.11       ad  * held.
   1324   1.1       ad  */
   1325  1.11       ad void
   1326   1.1       ad iop_initiator_register(struct iop_softc *sc, struct iop_initiator *ii)
   1327   1.1       ad {
   1328  1.11       ad 	static int ictxgen;
   1329  1.11       ad 	int s;
   1330   1.5       ad 
   1331  1.11       ad 	/* 0 is reserved (by us) for system messages. */
   1332  1.11       ad 	ii->ii_ictx = ++ictxgen;
   1333   1.1       ad 
   1334  1.11       ad 	/*
   1335  1.11       ad 	 * `Utility initiators' don't make it onto the per-IOP initiator list
   1336  1.11       ad 	 * (which is used only for configuration), but do get one slot on
   1337  1.11       ad 	 * the inbound queue.
   1338  1.11       ad 	 */
   1339  1.11       ad 	if ((ii->ii_flags & II_UTILITY) == 0) {
   1340  1.11       ad 		LIST_INSERT_HEAD(&sc->sc_iilist, ii, ii_list);
   1341  1.11       ad 		sc->sc_nii++;
   1342  1.11       ad 	} else
   1343  1.11       ad 		sc->sc_nuii++;
   1344  1.11       ad 
   1345  1.11       ad 	s = splbio();
   1346   1.5       ad 	LIST_INSERT_HEAD(IOP_ICTXHASH(ii->ii_ictx), ii, ii_hash);
   1347  1.11       ad 	splx(s);
   1348   1.1       ad }
   1349   1.1       ad 
   1350   1.1       ad /*
   1351  1.11       ad  * Unregister an initiator.  Must be called with the configuration lock
   1352  1.11       ad  * held.
   1353   1.1       ad  */
   1354   1.1       ad void
   1355   1.1       ad iop_initiator_unregister(struct iop_softc *sc, struct iop_initiator *ii)
   1356   1.1       ad {
   1357  1.11       ad 	int s;
   1358  1.11       ad 
   1359  1.11       ad 	if ((ii->ii_flags & II_UTILITY) == 0) {
   1360  1.11       ad 		LIST_REMOVE(ii, ii_list);
   1361  1.11       ad 		sc->sc_nii--;
   1362  1.11       ad 	} else
   1363  1.11       ad 		sc->sc_nuii--;
   1364   1.1       ad 
   1365  1.11       ad 	s = splbio();
   1366   1.5       ad 	LIST_REMOVE(ii, ii_hash);
   1367  1.11       ad 	splx(s);
   1368   1.1       ad }
   1369   1.1       ad 
   1370   1.1       ad /*
   1371  1.11       ad  * Handle a reply frame from the IOP.
   1372   1.1       ad  */
   1373   1.1       ad static int
   1374   1.5       ad iop_handle_reply(struct iop_softc *sc, u_int32_t rmfa)
   1375   1.1       ad {
   1376   1.1       ad 	struct iop_msg *im;
   1377   1.1       ad 	struct i2o_reply *rb;
   1378  1.11       ad 	struct i2o_fault_notify *fn;
   1379   1.1       ad 	struct iop_initiator *ii;
   1380   1.5       ad 	u_int off, ictx, tctx, status, size;
   1381   1.1       ad 
   1382   1.1       ad 	off = (int)(rmfa - sc->sc_rep_phys);
   1383   1.1       ad 	rb = (struct i2o_reply *)(sc->sc_rep + off);
   1384   1.1       ad 
   1385  1.11       ad 	/* Perform reply queue DMA synchronisation.  XXX This is rubbish. */
   1386  1.11       ad 	bus_dmamap_sync(sc->sc_dmat, sc->sc_rep_dmamap, off,
   1387  1.11       ad 	    IOP_MAX_MSG_SIZE, BUS_DMASYNC_POSTREAD);
   1388  1.11       ad 	if (--sc->sc_curib != 0)
   1389   1.1       ad 		bus_dmamap_sync(sc->sc_dmat, sc->sc_rep_dmamap,
   1390   1.1       ad 		    0, sc->sc_rep_size, BUS_DMASYNC_PREREAD);
   1391   1.1       ad 
   1392   1.1       ad #ifdef I2ODEBUG
   1393   1.1       ad 	if ((le32toh(rb->msgflags) & I2O_MSGFLAGS_64BIT) != 0)
   1394   1.5       ad 		panic("iop_handle_reply: 64-bit reply");
   1395   1.1       ad #endif
   1396   1.1       ad 	/*
   1397   1.1       ad 	 * Find the initiator.
   1398   1.1       ad 	 */
   1399   1.1       ad 	ictx = le32toh(rb->msgictx);
   1400   1.1       ad 	if (ictx == IOP_ICTX)
   1401   1.1       ad 		ii = NULL;
   1402   1.1       ad 	else {
   1403   1.5       ad 		ii = LIST_FIRST(IOP_ICTXHASH(ictx));
   1404   1.5       ad 		for (; ii != NULL; ii = LIST_NEXT(ii, ii_hash))
   1405   1.5       ad 			if (ii->ii_ictx == ictx)
   1406   1.5       ad 				break;
   1407   1.5       ad 		if (ii == NULL) {
   1408   1.1       ad #ifdef I2ODEBUG
   1409  1.11       ad 			iop_reply_print(sc, rb);
   1410   1.1       ad #endif
   1411  1.11       ad 			printf("%s: WARNING: bad ictx returned (%x)\n",
   1412   1.5       ad 			    sc->sc_dv.dv_xname, ictx);
   1413   1.5       ad 			return (-1);
   1414   1.5       ad 		}
   1415   1.1       ad 	}
   1416   1.1       ad 
   1417  1.11       ad 	/*
   1418  1.11       ad 	 * If we recieved a transport failure notice, we've got to dig the
   1419  1.11       ad 	 * transaction context (if any) out of the original message frame,
   1420  1.11       ad 	 * and then release the original MFA back to the inbound FIFO.
   1421  1.11       ad 	 */
   1422  1.11       ad 	if ((rb->msgflags & I2O_MSGFLAGS_FAIL) != 0) {
   1423  1.11       ad 		status = I2O_STATUS_SUCCESS;
   1424  1.11       ad 
   1425  1.11       ad 		fn = (struct i2o_fault_notify *)rb;
   1426  1.11       ad 		tctx = iop_inl(sc, fn->lowmfa + 12);	/* XXX */
   1427  1.11       ad 		iop_release_mfa(sc, fn->lowmfa);
   1428  1.11       ad 		iop_tfn_print(sc, fn);
   1429  1.11       ad 	} else {
   1430  1.11       ad 		status = rb->reqstatus;
   1431  1.11       ad 		tctx = le32toh(rb->msgtctx);
   1432  1.11       ad 	}
   1433   1.1       ad 
   1434   1.1       ad 	if (ii == NULL || (ii->ii_flags & II_DISCARD) == 0) {
   1435   1.1       ad 		/*
   1436   1.1       ad 		 * This initiator tracks state using message wrappers.
   1437   1.1       ad 		 *
   1438   1.1       ad 		 * Find the originating message wrapper, and if requested
   1439   1.1       ad 		 * notify the initiator.
   1440   1.1       ad 		 */
   1441  1.11       ad 		im = sc->sc_ims + (tctx & IOP_TCTX_MASK);
   1442  1.11       ad 		if ((tctx & IOP_TCTX_MASK) > sc->sc_maxib ||
   1443  1.11       ad 		    (im->im_flags & IM_ALLOCED) == 0 ||
   1444  1.11       ad 		    tctx != im->im_tctx) {
   1445  1.11       ad 			printf("%s: WARNING: bad tctx returned (0x%08x, %p)\n",
   1446  1.11       ad 			    sc->sc_dv.dv_xname, tctx, im);
   1447  1.11       ad 			if (im != NULL)
   1448  1.11       ad 				printf("%s: flags=0x%08x tctx=0x%08x\n",
   1449  1.11       ad 				    sc->sc_dv.dv_xname, im->im_flags,
   1450  1.11       ad 				    im->im_tctx);
   1451   1.5       ad #ifdef I2ODEBUG
   1452  1.11       ad 			if ((rb->msgflags & I2O_MSGFLAGS_FAIL) == 0)
   1453  1.11       ad 				iop_reply_print(sc, rb);
   1454   1.5       ad #endif
   1455   1.5       ad 			return (-1);
   1456   1.5       ad 		}
   1457  1.11       ad 
   1458  1.11       ad 		if ((rb->msgflags & I2O_MSGFLAGS_FAIL) != 0)
   1459  1.11       ad 			im->im_flags |= IM_FAIL;
   1460  1.11       ad 
   1461   1.1       ad #ifdef I2ODEBUG
   1462   1.1       ad 		if ((im->im_flags & IM_REPLIED) != 0)
   1463   1.5       ad 			panic("%s: dup reply", sc->sc_dv.dv_xname);
   1464   1.1       ad #endif
   1465  1.11       ad 		im->im_flags |= IM_REPLIED;
   1466   1.1       ad 
   1467  1.11       ad #ifdef I2ODEBUG
   1468  1.11       ad 		if (status != I2O_STATUS_SUCCESS)
   1469  1.11       ad 			iop_reply_print(sc, rb);
   1470  1.11       ad #endif
   1471  1.11       ad 		im->im_reqstatus = status;
   1472   1.1       ad 
   1473  1.11       ad 		/* Copy the reply frame, if requested. */
   1474  1.11       ad 		if (im->im_rb != NULL) {
   1475  1.11       ad 			size = (le32toh(rb->msgflags) >> 14) & ~3;
   1476   1.1       ad #ifdef I2ODEBUG
   1477  1.11       ad 			if (size > IOP_MAX_MSG_SIZE)
   1478  1.11       ad 				panic("iop_handle_reply: reply too large");
   1479   1.1       ad #endif
   1480  1.11       ad 			memcpy(im->im_rb, rb, size);
   1481  1.11       ad 		}
   1482  1.11       ad 
   1483   1.1       ad 		/* Notify the initiator. */
   1484  1.11       ad 		if ((im->im_flags & IM_WAIT) != 0)
   1485   1.1       ad 			wakeup(im);
   1486  1.13       ad 		else if ((im->im_flags & (IM_POLL | IM_POLL_INTR)) != IM_POLL)
   1487   1.1       ad 			(*ii->ii_intr)(ii->ii_dv, im, rb);
   1488   1.1       ad 	} else {
   1489   1.1       ad 		/*
   1490   1.1       ad 		 * This initiator discards message wrappers.
   1491   1.1       ad 		 *
   1492   1.1       ad 		 * Simply pass the reply frame to the initiator.
   1493   1.1       ad 		 */
   1494   1.1       ad 		(*ii->ii_intr)(ii->ii_dv, NULL, rb);
   1495   1.1       ad 	}
   1496   1.1       ad 
   1497   1.1       ad 	return (status);
   1498   1.1       ad }
   1499   1.1       ad 
   1500   1.1       ad /*
   1501  1.11       ad  * Handle an interrupt from the IOP.
   1502   1.1       ad  */
   1503   1.1       ad int
   1504   1.1       ad iop_intr(void *arg)
   1505   1.1       ad {
   1506   1.1       ad 	struct iop_softc *sc;
   1507   1.5       ad 	u_int32_t rmfa;
   1508   1.1       ad 
   1509   1.1       ad 	sc = arg;
   1510   1.1       ad 
   1511   1.5       ad 	if ((iop_inl(sc, IOP_REG_INTR_STATUS) & IOP_INTR_OFIFO) == 0)
   1512   1.5       ad 		return (0);
   1513   1.5       ad 
   1514   1.5       ad 	for (;;) {
   1515   1.5       ad 		/* Double read to account for IOP bug. */
   1516  1.11       ad 		if ((rmfa = iop_inl(sc, IOP_REG_OFIFO)) == IOP_MFA_EMPTY) {
   1517  1.11       ad 			rmfa = iop_inl(sc, IOP_REG_OFIFO);
   1518  1.11       ad 			if (rmfa == IOP_MFA_EMPTY)
   1519  1.11       ad 				break;
   1520  1.11       ad 		}
   1521   1.5       ad 		iop_handle_reply(sc, rmfa);
   1522  1.11       ad 		iop_outl(sc, IOP_REG_OFIFO, rmfa);
   1523   1.1       ad 	}
   1524   1.1       ad 
   1525   1.5       ad 	return (1);
   1526   1.5       ad }
   1527   1.5       ad 
   1528   1.5       ad /*
   1529   1.5       ad  * Handle an event signalled by the executive.
   1530   1.5       ad  */
   1531   1.5       ad static void
   1532   1.5       ad iop_intr_event(struct device *dv, struct iop_msg *im, void *reply)
   1533   1.5       ad {
   1534   1.5       ad 	struct i2o_util_event_register_reply *rb;
   1535   1.5       ad 	struct iop_softc *sc;
   1536   1.5       ad 	u_int event;
   1537   1.5       ad 
   1538   1.5       ad 	sc = (struct iop_softc *)dv;
   1539   1.5       ad 	rb = reply;
   1540   1.5       ad 
   1541  1.11       ad 	if ((rb->msgflags & I2O_MSGFLAGS_FAIL) != 0)
   1542   1.5       ad 		return;
   1543   1.5       ad 
   1544  1.11       ad 	event = le32toh(rb->event);
   1545   1.5       ad 	printf("%s: event 0x%08x received\n", dv->dv_xname, event);
   1546   1.1       ad }
   1547   1.1       ad 
   1548   1.1       ad /*
   1549   1.1       ad  * Allocate a message wrapper.
   1550   1.1       ad  */
   1551  1.11       ad struct iop_msg *
   1552  1.11       ad iop_msg_alloc(struct iop_softc *sc, struct iop_initiator *ii, int flags)
   1553   1.1       ad {
   1554   1.1       ad 	struct iop_msg *im;
   1555  1.11       ad 	static u_int tctxgen;
   1556  1.11       ad 	int s, i;
   1557   1.1       ad 
   1558   1.1       ad #ifdef I2ODEBUG
   1559   1.1       ad 	if ((flags & IM_SYSMASK) != 0)
   1560   1.1       ad 		panic("iop_msg_alloc: system flags specified");
   1561   1.1       ad #endif
   1562   1.1       ad 
   1563   1.1       ad 	s = splbio();	/* XXX */
   1564  1.11       ad 	im = SLIST_FIRST(&sc->sc_im_freelist);
   1565  1.11       ad #if defined(DIAGNOSTIC) || defined(I2ODEBUG)
   1566  1.11       ad 	if (im == NULL)
   1567  1.11       ad 		panic("iop_msg_alloc: no free wrappers");
   1568  1.11       ad #endif
   1569  1.11       ad 	SLIST_REMOVE_HEAD(&sc->sc_im_freelist, im_chain);
   1570  1.11       ad 	splx(s);
   1571   1.1       ad 
   1572  1.11       ad 	if (ii != NULL && (ii->ii_flags & II_DISCARD) != 0)
   1573   1.5       ad 		flags |= IM_DISCARD;
   1574   1.1       ad 
   1575  1.11       ad 	im->im_tctx = (im->im_tctx & IOP_TCTX_MASK) | tctxgen;
   1576  1.11       ad 	tctxgen += (1 << IOP_TCTX_SHIFT);
   1577   1.1       ad 	im->im_flags = flags | IM_ALLOCED;
   1578  1.11       ad 	im->im_rb = NULL;
   1579  1.11       ad 	i = 0;
   1580  1.11       ad 	do {
   1581  1.11       ad 		im->im_xfer[i++].ix_size = 0;
   1582  1.11       ad 	} while (i < IOP_MAX_MSG_XFERS);
   1583   1.1       ad 
   1584  1.11       ad 	return (im);
   1585   1.1       ad }
   1586   1.1       ad 
   1587   1.1       ad /*
   1588   1.1       ad  * Free a message wrapper.
   1589   1.1       ad  */
   1590   1.1       ad void
   1591  1.11       ad iop_msg_free(struct iop_softc *sc, struct iop_msg *im)
   1592   1.1       ad {
   1593   1.1       ad 	int s;
   1594   1.1       ad 
   1595   1.1       ad #ifdef I2ODEBUG
   1596   1.1       ad 	if ((im->im_flags & IM_ALLOCED) == 0)
   1597   1.1       ad 		panic("iop_msg_free: wrapper not allocated");
   1598   1.1       ad #endif
   1599   1.1       ad 
   1600   1.1       ad 	im->im_flags = 0;
   1601  1.11       ad 	s = splbio();
   1602  1.11       ad 	SLIST_INSERT_HEAD(&sc->sc_im_freelist, im, im_chain);
   1603   1.1       ad 	splx(s);
   1604   1.1       ad }
   1605   1.1       ad 
   1606   1.1       ad /*
   1607   1.5       ad  * Map a data transfer.  Write a scatter-gather list into the message frame.
   1608   1.1       ad  */
   1609   1.1       ad int
   1610  1.11       ad iop_msg_map(struct iop_softc *sc, struct iop_msg *im, u_int32_t *mb,
   1611  1.11       ad 	    void *xferaddr, int xfersize, int out)
   1612   1.1       ad {
   1613  1.11       ad 	bus_dmamap_t dm;
   1614  1.11       ad 	bus_dma_segment_t *ds;
   1615   1.1       ad 	struct iop_xfer *ix;
   1616  1.11       ad 	u_int rv, i, nsegs, flg, off, xn;
   1617  1.11       ad 	u_int32_t *p;
   1618   1.5       ad 
   1619  1.11       ad 	for (xn = 0, ix = im->im_xfer; xn < IOP_MAX_MSG_XFERS; xn++, ix++)
   1620   1.1       ad 		if (ix->ix_size == 0)
   1621   1.1       ad 			break;
   1622  1.11       ad 
   1623   1.1       ad #ifdef I2ODEBUG
   1624  1.11       ad 	if (xfersize == 0)
   1625  1.11       ad 		panic("iop_msg_map: null transfer");
   1626  1.11       ad 	if (xfersize > IOP_MAX_XFER)
   1627  1.11       ad 		panic("iop_msg_map: transfer too large");
   1628  1.11       ad 	if (xn == IOP_MAX_MSG_XFERS)
   1629   1.1       ad 		panic("iop_msg_map: too many xfers");
   1630   1.1       ad #endif
   1631   1.1       ad 
   1632  1.11       ad 	/*
   1633  1.11       ad 	 * Only the first DMA map is static.
   1634  1.11       ad 	 */
   1635  1.11       ad 	if (xn != 0) {
   1636   1.1       ad 		rv = bus_dmamap_create(sc->sc_dmat, IOP_MAX_XFER,
   1637  1.11       ad 		    IOP_MAX_SEGS, IOP_MAX_XFER, 0,
   1638   1.1       ad 		    BUS_DMA_NOWAIT | BUS_DMA_ALLOCNOW, &ix->ix_map);
   1639   1.1       ad 		if (rv != 0)
   1640   1.1       ad 			return (rv);
   1641   1.1       ad 	}
   1642   1.1       ad 
   1643  1.11       ad 	dm = ix->ix_map;
   1644  1.11       ad 	rv = bus_dmamap_load(sc->sc_dmat, dm, xferaddr, xfersize, NULL, 0);
   1645  1.11       ad 	if (rv != 0)
   1646  1.11       ad 		goto bad;
   1647  1.11       ad 
   1648  1.11       ad 	/*
   1649  1.11       ad 	 * How many SIMPLE SG elements can we fit in this message?
   1650  1.11       ad 	 */
   1651  1.11       ad 	off = mb[0] >> 16;
   1652  1.11       ad 	p = mb + off;
   1653  1.11       ad 	nsegs = ((IOP_MAX_MSG_SIZE / 4) - off) >> 1;
   1654  1.11       ad 
   1655  1.11       ad 	if (dm->dm_nsegs > nsegs) {
   1656  1.11       ad 		bus_dmamap_unload(sc->sc_dmat, ix->ix_map);
   1657  1.11       ad 		rv = EFBIG;
   1658  1.11       ad 		DPRINTF(("iop_msg_map: too many segs\n"));
   1659  1.11       ad 		goto bad;
   1660  1.11       ad 	}
   1661   1.1       ad 
   1662  1.11       ad 	nsegs = dm->dm_nsegs;
   1663  1.11       ad 	xfersize = 0;
   1664   1.1       ad 
   1665  1.11       ad 	/*
   1666  1.11       ad 	 * Write out the SG list.
   1667  1.11       ad 	 */
   1668   1.1       ad 	if (out)
   1669  1.11       ad 		flg = I2O_SGL_SIMPLE | I2O_SGL_DATA_OUT;
   1670   1.1       ad 	else
   1671  1.11       ad 		flg = I2O_SGL_SIMPLE;
   1672   1.1       ad 
   1673  1.11       ad 	for (i = nsegs, ds = dm->dm_segs; i > 1; i--, p += 2, ds++) {
   1674  1.11       ad 		p[0] = (u_int32_t)ds->ds_len | flg;
   1675  1.11       ad 		p[1] = (u_int32_t)ds->ds_addr;
   1676  1.11       ad 		xfersize += ds->ds_len;
   1677   1.1       ad 	}
   1678   1.1       ad 
   1679  1.11       ad 	p[0] = (u_int32_t)ds->ds_len | flg | I2O_SGL_END_BUFFER;
   1680  1.11       ad 	p[1] = (u_int32_t)ds->ds_addr;
   1681  1.11       ad 	xfersize += ds->ds_len;
   1682  1.11       ad 
   1683  1.11       ad 	/* Fix up the transfer record, and sync the map. */
   1684  1.11       ad 	ix->ix_flags = (out ? IX_OUT : IX_IN);
   1685  1.11       ad 	ix->ix_size = xfersize;
   1686  1.11       ad 	bus_dmamap_sync(sc->sc_dmat, ix->ix_map, 0, xfersize,
   1687  1.11       ad 	    out ? BUS_DMASYNC_POSTWRITE : BUS_DMASYNC_POSTREAD);
   1688  1.11       ad 
   1689   1.1       ad 	/*
   1690   1.1       ad 	 * If this is the first xfer we've mapped for this message, adjust
   1691   1.1       ad 	 * the SGL offset field in the message header.
   1692   1.1       ad 	 */
   1693   1.2       ad 	if ((im->im_flags & IM_SGLOFFADJ) == 0) {
   1694  1.11       ad 		mb[0] += (mb[0] >> 12) & 0xf0;
   1695   1.2       ad 		im->im_flags |= IM_SGLOFFADJ;
   1696   1.2       ad 	}
   1697  1.11       ad 	mb[0] += (nsegs << 17);
   1698  1.11       ad 	return (0);
   1699  1.11       ad 
   1700  1.11       ad  bad:
   1701  1.11       ad  	if (xn != 0)
   1702  1.11       ad 		bus_dmamap_destroy(sc->sc_dmat, ix->ix_map);
   1703  1.11       ad 	return (rv);
   1704  1.11       ad }
   1705  1.11       ad 
   1706  1.11       ad /*
   1707  1.11       ad  * Map a block I/O data transfer (different in that there's only one per
   1708  1.11       ad  * message maximum, and PAGE addressing may be used).  Write a scatter
   1709  1.11       ad  * gather list into the message frame.
   1710  1.11       ad  */
   1711  1.11       ad int
   1712  1.11       ad iop_msg_map_bio(struct iop_softc *sc, struct iop_msg *im, u_int32_t *mb,
   1713  1.11       ad 		void *xferaddr, int xfersize, int out)
   1714  1.11       ad {
   1715  1.11       ad 	bus_dma_segment_t *ds;
   1716  1.11       ad 	bus_dmamap_t dm;
   1717  1.11       ad 	struct iop_xfer *ix;
   1718  1.11       ad 	u_int rv, i, nsegs, off, slen, tlen, flg;
   1719  1.11       ad 	paddr_t saddr, eaddr;
   1720  1.11       ad 	u_int32_t *p;
   1721  1.11       ad 
   1722  1.11       ad #ifdef I2ODEBUG
   1723  1.11       ad 	if (xfersize == 0)
   1724  1.11       ad 		panic("iop_msg_map_bio: null transfer");
   1725  1.11       ad 	if (xfersize > IOP_MAX_XFER)
   1726  1.11       ad 		panic("iop_msg_map_bio: transfer too large");
   1727  1.11       ad 	if ((im->im_flags & IM_SGLOFFADJ) != 0)
   1728  1.11       ad 		panic("iop_msg_map_bio: SGLOFFADJ");
   1729  1.11       ad #endif
   1730  1.11       ad 
   1731  1.11       ad 	ix = im->im_xfer;
   1732  1.11       ad 	dm = ix->ix_map;
   1733  1.11       ad 	rv = bus_dmamap_load(sc->sc_dmat, dm, xferaddr, xfersize, NULL, 0);
   1734  1.11       ad 	if (rv != 0)
   1735  1.11       ad 		return (rv);
   1736  1.11       ad 
   1737  1.11       ad 	off = mb[0] >> 16;
   1738  1.11       ad 	nsegs = ((IOP_MAX_MSG_SIZE / 4) - off) >> 1;
   1739  1.11       ad 
   1740  1.11       ad 	/*
   1741  1.11       ad 	 * If the transfer is highly fragmented and won't fit using SIMPLE
   1742  1.11       ad 	 * elements, use PAGE_LIST elements instead.  SIMPLE elements are
   1743  1.11       ad 	 * potentially more efficient, both for us and the IOP.
   1744  1.11       ad 	 */
   1745  1.11       ad 	if (dm->dm_nsegs > nsegs) {
   1746  1.11       ad 		nsegs = 1;
   1747  1.11       ad 		p = mb + off + 1;
   1748  1.11       ad 
   1749  1.11       ad 		/* XXX This should be done with a bus_space flag. */
   1750  1.11       ad 		for (i = dm->dm_nsegs, ds = dm->dm_segs; i > 0; i--, ds++) {
   1751  1.11       ad 			slen = ds->ds_len;
   1752  1.11       ad 			saddr = ds->ds_addr;
   1753  1.11       ad 
   1754  1.11       ad 			while (slen > 0) {
   1755  1.11       ad 				eaddr = (saddr + PAGE_SIZE) & ~(PAGE_SIZE - 1);
   1756  1.11       ad 				tlen = min(eaddr - saddr, slen);
   1757  1.11       ad 				slen -= tlen;
   1758  1.11       ad 				*p++ = le32toh(saddr);
   1759  1.11       ad 				saddr = eaddr;
   1760  1.11       ad 				nsegs++;
   1761  1.11       ad 			}
   1762  1.11       ad 		}
   1763  1.11       ad 
   1764  1.11       ad 		mb[off] = xfersize | I2O_SGL_PAGE_LIST | I2O_SGL_END_BUFFER |
   1765  1.11       ad 		    I2O_SGL_END;
   1766  1.11       ad 		if (out)
   1767  1.11       ad 			mb[off] |= I2O_SGL_DATA_OUT;
   1768  1.11       ad 	} else {
   1769  1.11       ad 		p = mb + off;
   1770  1.13       ad 		nsegs = dm->dm_nsegs;
   1771  1.11       ad 
   1772  1.11       ad 		if (out)
   1773  1.11       ad 			flg = I2O_SGL_SIMPLE | I2O_SGL_DATA_OUT;
   1774  1.11       ad 		else
   1775  1.11       ad 			flg = I2O_SGL_SIMPLE;
   1776  1.11       ad 
   1777  1.11       ad 		for (i = nsegs, ds = dm->dm_segs; i > 1; i--, p += 2, ds++) {
   1778  1.11       ad 			p[0] = (u_int32_t)ds->ds_len | flg;
   1779  1.11       ad 			p[1] = (u_int32_t)ds->ds_addr;
   1780  1.11       ad 		}
   1781  1.11       ad 
   1782  1.11       ad 		p[0] = (u_int32_t)ds->ds_len | flg | I2O_SGL_END_BUFFER |
   1783  1.11       ad 		    I2O_SGL_END;
   1784  1.11       ad 		p[1] = (u_int32_t)ds->ds_addr;
   1785  1.11       ad 		nsegs <<= 1;
   1786  1.11       ad 	}
   1787  1.11       ad 
   1788  1.11       ad 	/* Fix up the transfer record, and sync the map. */
   1789  1.11       ad 	ix->ix_flags = (out ? IX_OUT : IX_IN);
   1790  1.11       ad 	ix->ix_size = xfersize;
   1791  1.11       ad 	bus_dmamap_sync(sc->sc_dmat, ix->ix_map, 0, xfersize,
   1792  1.11       ad 	    out ? BUS_DMASYNC_POSTWRITE : BUS_DMASYNC_POSTREAD);
   1793  1.11       ad 
   1794  1.11       ad 	/*
   1795  1.11       ad 	 * Adjust the SGL offset and total message size fields.  We don't
   1796  1.11       ad 	 * set IM_SGLOFFADJ, since it's used only for SIMPLE elements.
   1797  1.11       ad 	 */
   1798  1.11       ad 	mb[0] += ((off << 4) + (nsegs << 16));
   1799   1.1       ad 	return (0);
   1800   1.1       ad }
   1801   1.1       ad 
   1802   1.1       ad /*
   1803   1.1       ad  * Unmap all data transfers associated with a message wrapper.
   1804   1.1       ad  */
   1805   1.1       ad void
   1806   1.1       ad iop_msg_unmap(struct iop_softc *sc, struct iop_msg *im)
   1807   1.1       ad {
   1808   1.1       ad 	struct iop_xfer *ix;
   1809   1.1       ad 	int i;
   1810  1.11       ad 
   1811  1.11       ad #ifdef I2ODEBUG
   1812  1.11       ad 	if (im->im_xfer[0].ix_size == 0)
   1813  1.11       ad 		panic("iop_msg_unmap: no transfers mapped");
   1814  1.11       ad #endif
   1815  1.11       ad 
   1816  1.11       ad 	for (ix = im->im_xfer, i = 0;;) {
   1817   1.1       ad 		bus_dmamap_sync(sc->sc_dmat, ix->ix_map, 0, ix->ix_size,
   1818   1.1       ad 		    ix->ix_flags & IX_OUT ? BUS_DMASYNC_POSTWRITE :
   1819   1.1       ad 		    BUS_DMASYNC_POSTREAD);
   1820   1.1       ad 		bus_dmamap_unload(sc->sc_dmat, ix->ix_map);
   1821   1.1       ad 
   1822   1.1       ad 		/* Only the first DMA map is static. */
   1823   1.1       ad 		if (i != 0)
   1824   1.1       ad 			bus_dmamap_destroy(sc->sc_dmat, ix->ix_map);
   1825  1.11       ad 		if ((++ix)->ix_size == 0)
   1826  1.11       ad 			break;
   1827  1.11       ad 		if (++i >= IOP_MAX_MSG_XFERS)
   1828  1.11       ad 			break;
   1829   1.1       ad 	}
   1830   1.1       ad }
   1831   1.1       ad 
   1832  1.11       ad /*
   1833  1.11       ad  * Post a message frame to the IOP's inbound queue.
   1834   1.1       ad  */
   1835   1.1       ad int
   1836  1.11       ad iop_post(struct iop_softc *sc, u_int32_t *mb)
   1837   1.1       ad {
   1838  1.11       ad 	u_int32_t mfa;
   1839  1.11       ad 	int s;
   1840  1.11       ad 
   1841  1.13       ad 	/* ZZZ */
   1842  1.13       ad 	if ((mb[0] >> 16) > IOP_MAX_MSG_SIZE / 4)
   1843  1.13       ad 		panic("iop_post: frame too large");
   1844  1.13       ad 
   1845  1.11       ad 	s = splbio();	/* XXX */
   1846  1.11       ad 
   1847  1.11       ad 	/* Allocate a slot with the IOP. */
   1848  1.11       ad 	if ((mfa = iop_inl(sc, IOP_REG_IFIFO)) == IOP_MFA_EMPTY)
   1849  1.11       ad 		if ((mfa = iop_inl(sc, IOP_REG_IFIFO)) == IOP_MFA_EMPTY) {
   1850  1.11       ad 			splx(s);
   1851  1.11       ad 			printf("%s: mfa not forthcoming\n",
   1852  1.11       ad 			    sc->sc_dv.dv_xname);
   1853  1.11       ad 			return (EAGAIN);
   1854  1.11       ad 		}
   1855  1.11       ad 
   1856  1.11       ad 	/* Perform reply buffer DMA synchronisation.  XXX This is rubbish. */
   1857  1.11       ad 	if (sc->sc_curib++ == 0)
   1858  1.11       ad 		bus_dmamap_sync(sc->sc_dmat, sc->sc_rep_dmamap, 0,
   1859  1.11       ad 		    sc->sc_rep_size, BUS_DMASYNC_PREREAD);
   1860   1.1       ad 
   1861  1.11       ad 	/* Copy out the message frame. */
   1862  1.11       ad 	bus_space_write_region_4(sc->sc_iot, sc->sc_ioh, mfa, mb, mb[0] >> 16);
   1863  1.13       ad 	bus_space_barrier(sc->sc_iot, sc->sc_ioh, mfa, (mb[0] >> 14) & ~3,
   1864  1.11       ad 	    BUS_SPACE_BARRIER_WRITE);
   1865  1.11       ad 
   1866  1.11       ad 	/* Post the MFA back to the IOP. */
   1867  1.11       ad 	iop_outl(sc, IOP_REG_IFIFO, mfa);
   1868   1.1       ad 
   1869  1.11       ad 	splx(s);
   1870  1.11       ad 	return (0);
   1871  1.11       ad }
   1872   1.1       ad 
   1873  1.11       ad /*
   1874  1.11       ad  * Post a message to the IOP and deal with completion.
   1875  1.11       ad  */
   1876  1.11       ad int
   1877  1.11       ad iop_msg_post(struct iop_softc *sc, struct iop_msg *im, void *xmb, int timo)
   1878  1.11       ad {
   1879  1.11       ad 	u_int32_t *mb;
   1880  1.11       ad 	int rv, s;
   1881   1.1       ad 
   1882  1.11       ad 	mb = xmb;
   1883   1.1       ad 
   1884  1.11       ad 	/* Terminate the scatter/gather list chain. */
   1885   1.1       ad 	if ((im->im_flags & IM_SGLOFFADJ) != 0)
   1886  1.11       ad 		mb[(mb[0] >> 16) - 2] |= I2O_SGL_END;
   1887   1.1       ad 
   1888  1.11       ad 	if ((rv = iop_post(sc, mb)) != 0)
   1889  1.11       ad 		return (rv);
   1890   1.1       ad 
   1891  1.11       ad 	if ((im->im_flags & IM_DISCARD) != 0)
   1892  1.11       ad 		iop_msg_free(sc, im);
   1893  1.11       ad 	else if ((im->im_flags & IM_POLL) != 0 && timo == 0) {
   1894  1.11       ad 		/* XXX For ofifo_init(). */
   1895  1.11       ad 		rv = 0;
   1896  1.11       ad 	} else if ((im->im_flags & (IM_POLL | IM_WAIT)) != 0) {
   1897  1.11       ad 		if ((im->im_flags & IM_POLL) != 0)
   1898  1.11       ad 			iop_msg_poll(sc, im, timo);
   1899  1.11       ad 		else
   1900  1.11       ad 			iop_msg_wait(sc, im, timo);
   1901   1.1       ad 
   1902  1.11       ad 		s = splbio();
   1903  1.11       ad 		if ((im->im_flags & IM_REPLIED) != 0) {
   1904  1.11       ad 			if ((im->im_flags & IM_NOSTATUS) != 0)
   1905  1.11       ad 				rv = 0;
   1906  1.11       ad 			else if ((im->im_flags & IM_FAIL) != 0)
   1907  1.11       ad 				rv = ENXIO;
   1908  1.11       ad 			else if (im->im_reqstatus != I2O_STATUS_SUCCESS)
   1909  1.11       ad 				rv = EIO;
   1910  1.11       ad 			else
   1911  1.11       ad 				rv = 0;
   1912  1.11       ad 		} else
   1913  1.11       ad 			rv = EBUSY;
   1914   1.2       ad 		splx(s);
   1915  1.11       ad 	} else
   1916  1.11       ad 		rv = 0;
   1917  1.11       ad 
   1918  1.11       ad 	return (rv);
   1919  1.11       ad }
   1920  1.11       ad 
   1921  1.11       ad /*
   1922  1.11       ad  * Spin until the specified message is replied to.
   1923  1.11       ad  */
   1924  1.11       ad static void
   1925  1.11       ad iop_msg_poll(struct iop_softc *sc, struct iop_msg *im, int timo)
   1926  1.11       ad {
   1927  1.11       ad 	u_int32_t rmfa;
   1928  1.11       ad 	int s, status;
   1929  1.11       ad 
   1930  1.11       ad 	s = splbio();	/* XXX */
   1931   1.1       ad 
   1932   1.1       ad 	/* Wait for completion. */
   1933   1.1       ad 	for (timo *= 10; timo != 0; timo--) {
   1934   1.5       ad 		if ((iop_inl(sc, IOP_REG_INTR_STATUS) & IOP_INTR_OFIFO) != 0) {
   1935   1.5       ad 			/* Double read to account for IOP bug. */
   1936   1.5       ad 			rmfa = iop_inl(sc, IOP_REG_OFIFO);
   1937   1.5       ad 			if (rmfa == IOP_MFA_EMPTY)
   1938   1.5       ad 				rmfa = iop_inl(sc, IOP_REG_OFIFO);
   1939  1.11       ad 			if (rmfa != IOP_MFA_EMPTY) {
   1940   1.5       ad 				status = iop_handle_reply(sc, rmfa);
   1941  1.11       ad 
   1942  1.11       ad 				/*
   1943  1.11       ad 				 * Return the reply frame to the IOP's
   1944  1.11       ad 				 * outbound FIFO.
   1945  1.11       ad 				 */
   1946  1.11       ad 				iop_outl(sc, IOP_REG_OFIFO, rmfa);
   1947  1.11       ad 			}
   1948   1.5       ad 		}
   1949   1.1       ad 		if ((im->im_flags & IM_REPLIED) != 0)
   1950   1.1       ad 			break;
   1951   1.1       ad 		DELAY(100);
   1952   1.1       ad 	}
   1953   1.1       ad 
   1954   1.1       ad 	if (timo == 0) {
   1955   1.5       ad #ifdef I2ODEBUG
   1956   1.5       ad 		printf("%s: poll - no reply\n", sc->sc_dv.dv_xname);
   1957  1.11       ad 		if (iop_status_get(sc, 1) != 0)
   1958  1.11       ad 			printf("iop_msg_poll: unable to retrieve status\n");
   1959   1.5       ad 		else
   1960  1.11       ad 			printf("iop_msg_poll: IOP state = %d\n",
   1961   1.5       ad 			    (le32toh(sc->sc_status.segnumber) >> 16) & 0xff);
   1962   1.5       ad #endif
   1963   1.1       ad 	}
   1964   1.1       ad 
   1965   1.1       ad 	splx(s);
   1966   1.1       ad }
   1967   1.1       ad 
   1968   1.1       ad /*
   1969  1.11       ad  * Sleep until the specified message is replied to.
   1970   1.1       ad  */
   1971  1.11       ad static void
   1972   1.1       ad iop_msg_wait(struct iop_softc *sc, struct iop_msg *im, int timo)
   1973   1.1       ad {
   1974  1.11       ad 	int s, rv;
   1975   1.1       ad 
   1976   1.5       ad 	s = splbio();
   1977   1.5       ad 	if ((im->im_flags & IM_REPLIED) != 0) {
   1978   1.5       ad 		splx(s);
   1979  1.11       ad 		return;
   1980   1.5       ad 	}
   1981   1.5       ad 	rv = tsleep(im, PRIBIO, "iopmsg", timo * hz / 1000);
   1982   1.5       ad 	splx(s);
   1983  1.11       ad 
   1984   1.5       ad #ifdef I2ODEBUG
   1985   1.5       ad 	if (rv != 0) {
   1986   1.5       ad 		printf("iop_msg_wait: tsleep() == %d\n", rv);
   1987  1.11       ad 		if (iop_status_get(sc, 0) != 0)
   1988   1.5       ad 			printf("iop_msg_wait: unable to retrieve status\n");
   1989   1.5       ad 		else
   1990   1.5       ad 			printf("iop_msg_wait: IOP state = %d\n",
   1991   1.5       ad 			    (le32toh(sc->sc_status.segnumber) >> 16) & 0xff);
   1992   1.5       ad 	}
   1993   1.5       ad #endif
   1994   1.1       ad }
   1995   1.1       ad 
   1996   1.1       ad /*
   1997   1.1       ad  * Release an unused message frame back to the IOP's inbound fifo.
   1998   1.1       ad  */
   1999   1.1       ad static void
   2000   1.1       ad iop_release_mfa(struct iop_softc *sc, u_int32_t mfa)
   2001   1.1       ad {
   2002   1.1       ad 
   2003   1.1       ad 	/* Use the frame to issue a no-op. */
   2004   1.5       ad 	iop_outl(sc, mfa, I2O_VERSION_11 | (4 << 16));
   2005   1.5       ad 	iop_outl(sc, mfa + 4, I2O_MSGFUNC(I2O_TID_IOP, I2O_UTIL_NOP));
   2006   1.5       ad 	iop_outl(sc, mfa + 8, 0);
   2007   1.5       ad 	iop_outl(sc, mfa + 12, 0);
   2008   1.1       ad 
   2009   1.5       ad 	iop_outl(sc, IOP_REG_IFIFO, mfa);
   2010   1.1       ad }
   2011   1.1       ad 
   2012   1.1       ad #ifdef I2ODEBUG
   2013   1.1       ad /*
   2014  1.11       ad  * Dump a reply frame header.
   2015   1.1       ad  */
   2016   1.1       ad static void
   2017  1.11       ad iop_reply_print(struct iop_softc *sc, struct i2o_reply *rb)
   2018   1.1       ad {
   2019   1.5       ad 	u_int function, detail;
   2020   1.1       ad #ifdef I2OVERBOSE
   2021   1.1       ad 	const char *statusstr;
   2022   1.1       ad #endif
   2023   1.1       ad 
   2024   1.5       ad 	function = (le32toh(rb->msgfunc) >> 24) & 0xff;
   2025   1.1       ad 	detail = le16toh(rb->detail);
   2026   1.1       ad 
   2027   1.5       ad 	printf("%s: reply:\n", sc->sc_dv.dv_xname);
   2028   1.5       ad 
   2029   1.1       ad #ifdef I2OVERBOSE
   2030   1.1       ad 	if (rb->reqstatus < sizeof(iop_status) / sizeof(iop_status[0]))
   2031   1.1       ad 		statusstr = iop_status[rb->reqstatus];
   2032   1.1       ad 	else
   2033   1.1       ad 		statusstr = "undefined error code";
   2034   1.1       ad 
   2035   1.5       ad 	printf("%s:   function=0x%02x status=0x%02x (%s)\n",
   2036   1.5       ad 	    sc->sc_dv.dv_xname, function, rb->reqstatus, statusstr);
   2037   1.1       ad #else
   2038   1.5       ad 	printf("%s:   function=0x%02x status=0x%02x\n",
   2039   1.5       ad 	    sc->sc_dv.dv_xname, function, rb->reqstatus);
   2040   1.1       ad #endif
   2041   1.5       ad 	printf("%s:   detail=0x%04x ictx=0x%08x tctx=0x%08x\n",
   2042   1.5       ad 	    sc->sc_dv.dv_xname, detail, le32toh(rb->msgictx),
   2043   1.5       ad 	    le32toh(rb->msgtctx));
   2044   1.5       ad 	printf("%s:   tidi=%d tidt=%d flags=0x%02x\n", sc->sc_dv.dv_xname,
   2045   1.5       ad 	    (le32toh(rb->msgfunc) >> 12) & 4095, le32toh(rb->msgfunc) & 4095,
   2046   1.5       ad 	    (le32toh(rb->msgflags) >> 8) & 0xff);
   2047   1.1       ad }
   2048   1.1       ad #endif
   2049   1.1       ad 
   2050   1.1       ad /*
   2051  1.11       ad  * Dump a transport failure reply.
   2052  1.11       ad  */
   2053  1.11       ad static void
   2054  1.11       ad iop_tfn_print(struct iop_softc *sc, struct i2o_fault_notify *fn)
   2055  1.11       ad {
   2056  1.11       ad 
   2057  1.11       ad 	printf("%s: WARNING: transport failure:\n", sc->sc_dv.dv_xname);
   2058  1.11       ad 
   2059  1.11       ad 	printf("%s:   ictx=0x%08x tctx=0x%08x\n", sc->sc_dv.dv_xname,
   2060  1.11       ad 	    le32toh(fn->msgictx), le32toh(fn->msgtctx));
   2061  1.11       ad 	printf("%s:  failurecode=0x%02x severity=0x%02x\n",
   2062  1.11       ad 	    sc->sc_dv.dv_xname, fn->failurecode, fn->severity);
   2063  1.11       ad 	printf("%s:  highestver=0x%02x lowestver=0x%02x\n",
   2064  1.11       ad 	    sc->sc_dv.dv_xname, fn->highestver, fn->lowestver);
   2065  1.11       ad }
   2066  1.11       ad 
   2067  1.11       ad /*
   2068   1.5       ad  * Translate an I2O ASCII field into a C string.
   2069   1.1       ad  */
   2070   1.1       ad void
   2071   1.5       ad iop_strvis(struct iop_softc *sc, const char *src, int slen, char *dst, int dlen)
   2072   1.1       ad {
   2073   1.5       ad 	int hc, lc, i, nit;
   2074   1.1       ad 
   2075   1.1       ad 	dlen--;
   2076   1.1       ad 	lc = 0;
   2077   1.1       ad 	hc = 0;
   2078   1.1       ad 	i = 0;
   2079   1.5       ad 
   2080   1.5       ad 	/*
   2081   1.5       ad 	 * DPT use NUL as a space, whereas AMI use it as a terminator.  The
   2082   1.5       ad 	 * spec has nothing to say about it.  Since AMI fields are usually
   2083   1.5       ad 	 * filled with junk after the terminator, ...
   2084   1.5       ad 	 */
   2085   1.5       ad 	nit = (le16toh(sc->sc_status.orgid) != I2O_ORG_DPT);
   2086   1.5       ad 
   2087   1.5       ad 	while (slen-- != 0 && dlen-- != 0) {
   2088   1.5       ad 		if (nit && *src == '\0')
   2089   1.5       ad 			break;
   2090   1.5       ad 		else if (*src <= 0x20 || *src >= 0x7f) {
   2091   1.1       ad 			if (hc)
   2092   1.1       ad 				dst[i++] = ' ';
   2093   1.1       ad 		} else {
   2094   1.1       ad 			hc = 1;
   2095   1.1       ad 			dst[i++] = *src;
   2096   1.1       ad 			lc = i;
   2097   1.1       ad 		}
   2098   1.1       ad 		src++;
   2099   1.1       ad 	}
   2100   1.1       ad 
   2101   1.1       ad 	dst[lc] = '\0';
   2102   1.1       ad }
   2103   1.1       ad 
   2104   1.1       ad /*
   2105  1.11       ad  * Retrieve the DEVICE_IDENTITY parameter group from the target and dump it.
   2106  1.11       ad  */
   2107  1.11       ad int
   2108  1.11       ad iop_print_ident(struct iop_softc *sc, int tid)
   2109  1.11       ad {
   2110  1.11       ad 	struct {
   2111  1.11       ad 		struct	i2o_param_op_results pr;
   2112  1.11       ad 		struct	i2o_param_read_results prr;
   2113  1.11       ad 		struct	i2o_param_device_identity di;
   2114  1.11       ad 	} __attribute__ ((__packed__)) p;
   2115  1.11       ad 	char buf[32];
   2116  1.11       ad 	int rv;
   2117  1.11       ad 
   2118  1.11       ad 	rv = iop_param_op(sc, tid, NULL, 0, I2O_PARAM_DEVICE_IDENTITY, &p,
   2119  1.11       ad 	    sizeof(p));
   2120  1.11       ad 	if (rv != 0)
   2121  1.11       ad 		return (rv);
   2122  1.11       ad 
   2123  1.11       ad 	iop_strvis(sc, p.di.vendorinfo, sizeof(p.di.vendorinfo), buf,
   2124  1.11       ad 	    sizeof(buf));
   2125  1.11       ad 	printf(" <%s, ", buf);
   2126  1.11       ad 	iop_strvis(sc, p.di.productinfo, sizeof(p.di.productinfo), buf,
   2127  1.11       ad 	    sizeof(buf));
   2128  1.11       ad 	printf("%s, ", buf);
   2129  1.11       ad 	iop_strvis(sc, p.di.revlevel, sizeof(p.di.revlevel), buf, sizeof(buf));
   2130  1.11       ad 	printf("%s>", buf);
   2131  1.11       ad 
   2132  1.11       ad 	return (0);
   2133  1.11       ad }
   2134  1.11       ad 
   2135  1.11       ad /*
   2136   1.5       ad  * Claim or unclaim the specified TID.
   2137   1.1       ad  */
   2138   1.1       ad int
   2139   1.5       ad iop_util_claim(struct iop_softc *sc, struct iop_initiator *ii, int release,
   2140   1.5       ad 	      int flags)
   2141   1.1       ad {
   2142   1.5       ad 	struct iop_msg *im;
   2143  1.11       ad 	struct i2o_util_claim mf;
   2144   1.5       ad 	int rv, func;
   2145   1.5       ad 
   2146   1.5       ad 	func = release ? I2O_UTIL_CLAIM_RELEASE : I2O_UTIL_CLAIM;
   2147  1.11       ad 	im = iop_msg_alloc(sc, ii, IM_WAIT);
   2148   1.5       ad 
   2149  1.11       ad 	/* We can use the same structure, as they're identical. */
   2150  1.11       ad 	mf.msgflags = I2O_MSGFLAGS(i2o_util_claim);
   2151  1.11       ad 	mf.msgfunc = I2O_MSGFUNC(ii->ii_tid, func);
   2152  1.11       ad 	mf.msgictx = ii->ii_ictx;
   2153  1.11       ad 	mf.msgtctx = im->im_tctx;
   2154  1.11       ad 	mf.flags = flags;
   2155   1.5       ad 
   2156  1.11       ad 	rv = iop_msg_post(sc, im, &mf, 5000);
   2157  1.11       ad 	iop_msg_free(sc, im);
   2158   1.5       ad 	return (rv);
   2159   1.5       ad }
   2160   1.5       ad 
   2161   1.5       ad /*
   2162   1.5       ad  * Perform an abort.
   2163   1.5       ad  */
   2164   1.5       ad int iop_util_abort(struct iop_softc *sc, struct iop_initiator *ii, int func,
   2165   1.5       ad 		  int tctxabort, int flags)
   2166   1.5       ad {
   2167   1.5       ad 	struct iop_msg *im;
   2168  1.11       ad 	struct i2o_util_abort mf;
   2169   1.5       ad 	int rv;
   2170   1.5       ad 
   2171  1.11       ad 	im = iop_msg_alloc(sc, ii, IM_WAIT);
   2172   1.1       ad 
   2173  1.11       ad 	mf.msgflags = I2O_MSGFLAGS(i2o_util_abort);
   2174  1.11       ad 	mf.msgfunc = I2O_MSGFUNC(ii->ii_tid, I2O_UTIL_ABORT);
   2175  1.11       ad 	mf.msgictx = ii->ii_ictx;
   2176  1.11       ad 	mf.msgtctx = im->im_tctx;
   2177  1.11       ad 	mf.flags = (func << 24) | flags;
   2178  1.11       ad 	mf.tctxabort = tctxabort;
   2179   1.1       ad 
   2180  1.11       ad 	rv = iop_msg_post(sc, im, &mf, 5000);
   2181  1.11       ad 	iop_msg_free(sc, im);
   2182   1.5       ad 	return (rv);
   2183   1.1       ad }
   2184   1.1       ad 
   2185   1.1       ad /*
   2186  1.11       ad  * Enable or disable reception of events for the specified device.
   2187   1.1       ad  */
   2188   1.5       ad int iop_util_eventreg(struct iop_softc *sc, struct iop_initiator *ii, int mask)
   2189   1.5       ad {
   2190   1.5       ad 	struct iop_msg *im;
   2191  1.11       ad 	struct i2o_util_event_register mf;
   2192   1.5       ad 
   2193  1.11       ad 	im = iop_msg_alloc(sc, ii, 0);
   2194   1.5       ad 
   2195  1.11       ad 	mf.msgflags = I2O_MSGFLAGS(i2o_util_event_register);
   2196  1.11       ad 	mf.msgfunc = I2O_MSGFUNC(ii->ii_tid, I2O_UTIL_EVENT_REGISTER);
   2197  1.11       ad 	mf.msgictx = ii->ii_ictx;
   2198  1.11       ad 	mf.msgtctx = im->im_tctx;
   2199  1.11       ad 	mf.eventmask = mask;
   2200   1.5       ad 
   2201  1.11       ad 	/* This message is replied to only when events are signalled. */
   2202  1.11       ad 	return (iop_msg_post(sc, im, &mf, 0));
   2203   1.5       ad }
   2204   1.5       ad 
   2205   1.1       ad int
   2206   1.5       ad iopopen(dev_t dev, int flag, int mode, struct proc *p)
   2207   1.1       ad {
   2208   1.5       ad 	struct iop_softc *sc;
   2209   1.5       ad 
   2210  1.11       ad 	if ((sc = device_lookup(&iop_cd, minor(dev))) == NULL)
   2211  1.11       ad 		return (ENXIO);
   2212  1.11       ad 	if ((sc->sc_flags & IOP_ONLINE) == 0)
   2213   1.1       ad 		return (ENXIO);
   2214   1.5       ad 	if ((sc->sc_flags & IOP_OPEN) != 0)
   2215   1.5       ad 		return (EBUSY);
   2216   1.5       ad 	sc->sc_flags |= IOP_OPEN;
   2217   1.5       ad 
   2218  1.11       ad 	sc->sc_ptb = malloc(IOP_MAX_XFER * IOP_MAX_MSG_XFERS, M_DEVBUF,
   2219   1.9       ad 	    M_WAITOK);
   2220   1.9       ad 	if (sc->sc_ptb == NULL) {
   2221   1.9       ad 		sc->sc_flags ^= IOP_OPEN;
   2222   1.9       ad 		return (ENOMEM);
   2223   1.9       ad 	}
   2224   1.9       ad 
   2225   1.5       ad 	return (0);
   2226   1.1       ad }
   2227   1.1       ad 
   2228   1.5       ad int
   2229   1.5       ad iopclose(dev_t dev, int flag, int mode, struct proc *p)
   2230   1.1       ad {
   2231   1.5       ad 	struct iop_softc *sc;
   2232   1.1       ad 
   2233   1.5       ad 	sc = device_lookup(&iop_cd, minor(dev));
   2234   1.9       ad 	free(sc->sc_ptb, M_DEVBUF);
   2235  1.11       ad 	sc->sc_flags &= ~IOP_OPEN;
   2236   1.5       ad 	return (0);
   2237   1.1       ad }
   2238   1.1       ad 
   2239   1.1       ad int
   2240   1.5       ad iopioctl(dev_t dev, u_long cmd, caddr_t data, int flag, struct proc *p)
   2241   1.1       ad {
   2242   1.5       ad 	struct iop_softc *sc;
   2243   1.5       ad 	struct iovec *iov;
   2244   1.5       ad 	int rv, i;
   2245   1.5       ad 
   2246   1.5       ad 	if (securelevel >= 2)
   2247   1.5       ad 		return (EPERM);
   2248   1.5       ad 
   2249   1.5       ad 	sc = device_lookup(&iop_cd, minor(dev));
   2250   1.5       ad 
   2251   1.5       ad 	switch (cmd) {
   2252   1.5       ad 	case IOPIOCPT:
   2253  1.11       ad 		return (iop_passthrough(sc, (struct ioppt *)data));
   2254   1.5       ad 
   2255  1.11       ad 	case IOPIOCGSTATUS:
   2256  1.11       ad 		iov = (struct iovec *)data;
   2257  1.11       ad 		i = sizeof(struct i2o_status);
   2258  1.11       ad 		if (i > iov->iov_len)
   2259  1.11       ad 			i = iov->iov_len;
   2260  1.11       ad 		else
   2261  1.11       ad 			iov->iov_len = i;
   2262  1.11       ad 		if ((rv = iop_status_get(sc, 0)) == 0)
   2263  1.11       ad 			rv = copyout(&sc->sc_status, iov->iov_base, i);
   2264  1.11       ad 		return (rv);
   2265   1.5       ad 
   2266  1.11       ad 	case IOPIOCGLCT:
   2267  1.11       ad 	case IOPIOCGTIDMAP:
   2268  1.11       ad 	case IOPIOCRECONFIG:
   2269  1.11       ad 		break;
   2270   1.5       ad 
   2271  1.11       ad 	default:
   2272  1.11       ad #if defined(DIAGNOSTIC) || defined(I2ODEBUG)
   2273  1.11       ad 		printf("%s: unknown ioctl %lx\n", sc->sc_dv.dv_xname, cmd);
   2274  1.11       ad #endif
   2275  1.11       ad 		return (ENOTTY);
   2276  1.11       ad 	}
   2277   1.5       ad 
   2278  1.11       ad 	if ((rv = lockmgr(&sc->sc_conflock, LK_SHARED, NULL)) != 0)
   2279  1.11       ad 		return (rv);
   2280   1.1       ad 
   2281  1.11       ad 	switch (cmd) {
   2282   1.5       ad 	case IOPIOCGLCT:
   2283   1.5       ad 		iov = (struct iovec *)data;
   2284  1.11       ad 		i = le16toh(sc->sc_lct->tablesize) << 2;
   2285   1.5       ad 		if (i > iov->iov_len)
   2286   1.5       ad 			i = iov->iov_len;
   2287   1.5       ad 		else
   2288   1.5       ad 			iov->iov_len = i;
   2289  1.11       ad 		rv = copyout(sc->sc_lct, iov->iov_base, i);
   2290   1.5       ad 		break;
   2291   1.5       ad 
   2292   1.5       ad 	case IOPIOCRECONFIG:
   2293  1.11       ad 		rv = iop_reconfigure(sc, 0);
   2294   1.9       ad 		break;
   2295   1.9       ad 
   2296   1.9       ad 	case IOPIOCGTIDMAP:
   2297   1.9       ad 		iov = (struct iovec *)data;
   2298  1.11       ad 		i = sizeof(struct iop_tidmap) * sc->sc_nlctent;
   2299  1.11       ad 		if (i > iov->iov_len)
   2300  1.11       ad 			i = iov->iov_len;
   2301  1.11       ad 		else
   2302  1.11       ad 			iov->iov_len = i;
   2303  1.11       ad 		rv = copyout(sc->sc_tidmap, iov->iov_base, i);
   2304  1.11       ad 		break;
   2305  1.11       ad 	}
   2306  1.11       ad 
   2307  1.11       ad 	lockmgr(&sc->sc_conflock, LK_RELEASE, NULL);
   2308  1.11       ad 	return (rv);
   2309  1.11       ad }
   2310  1.11       ad 
   2311  1.11       ad static int
   2312  1.11       ad iop_passthrough(struct iop_softc *sc, struct ioppt *pt)
   2313  1.11       ad {
   2314  1.11       ad 	struct iop_msg *im;
   2315  1.11       ad 	struct i2o_msg *mf;
   2316  1.11       ad 	struct ioppt_buf *ptb;
   2317  1.11       ad 	int rv, i, mapped;
   2318  1.11       ad 	void *buf;
   2319  1.11       ad 
   2320  1.11       ad 	mf = NULL;
   2321  1.11       ad 	im = NULL;
   2322  1.11       ad 	mapped = 1;
   2323  1.11       ad 
   2324  1.11       ad 	if (pt->pt_msglen > IOP_MAX_MSG_SIZE ||
   2325  1.11       ad 	    pt->pt_msglen > (le16toh(sc->sc_status.inboundmframesize) << 2) ||
   2326  1.11       ad 	    pt->pt_msglen < sizeof(struct i2o_msg) ||
   2327  1.11       ad 	    pt->pt_nbufs > IOP_MAX_MSG_XFERS ||
   2328  1.11       ad 	    pt->pt_nbufs < 0 || pt->pt_replylen < 0 ||
   2329  1.11       ad             pt->pt_timo < 1000 || pt->pt_timo > 5*60*1000)
   2330  1.11       ad 		return (EINVAL);
   2331  1.11       ad 
   2332  1.11       ad 	for (i = 0; i < pt->pt_nbufs; i++)
   2333  1.11       ad 		if (pt->pt_bufs[i].ptb_datalen > IOP_MAX_XFER) {
   2334  1.11       ad 			rv = ENOMEM;
   2335  1.11       ad 			goto bad;
   2336  1.11       ad 		}
   2337  1.11       ad 
   2338  1.11       ad 	mf = malloc(IOP_MAX_MSG_SIZE, M_DEVBUF, M_WAITOK);
   2339  1.11       ad 	if (mf == NULL)
   2340  1.11       ad 		return (ENOMEM);
   2341  1.11       ad 
   2342  1.11       ad 	if ((rv = copyin(pt->pt_msg, mf, pt->pt_msglen)) != 0)
   2343  1.11       ad 		goto bad;
   2344  1.11       ad 
   2345  1.11       ad 	im = iop_msg_alloc(sc, NULL, IM_WAIT | IM_NOSTATUS);
   2346  1.11       ad 	im->im_rb = (struct i2o_reply *)mf;
   2347  1.11       ad 	mf->msgictx = IOP_ICTX;
   2348  1.11       ad 	mf->msgtctx = im->im_tctx;
   2349  1.11       ad 
   2350  1.11       ad 	for (i = 0; i < pt->pt_nbufs; i++) {
   2351  1.11       ad 		ptb = &pt->pt_bufs[i];
   2352  1.11       ad 		buf = sc->sc_ptb + i * IOP_MAX_XFER;
   2353  1.11       ad 
   2354  1.11       ad 		if ((u_int)ptb->ptb_datalen > IOP_MAX_XFER) {
   2355  1.11       ad 			rv = EINVAL;
   2356  1.11       ad 			goto bad;
   2357  1.11       ad 		}
   2358  1.11       ad 
   2359  1.11       ad 		if (ptb->ptb_out != 0) {
   2360  1.11       ad 			rv = copyin(ptb->ptb_data, buf, ptb->ptb_datalen);
   2361  1.11       ad 			if (rv != 0)
   2362  1.11       ad 				goto bad;
   2363   1.9       ad 		}
   2364   1.5       ad 
   2365  1.11       ad 		rv = iop_msg_map(sc, im, (u_int32_t *)mf, buf,
   2366  1.11       ad 		    ptb->ptb_datalen, ptb->ptb_out != 0);
   2367  1.11       ad 		if (rv != 0)
   2368  1.11       ad 			goto bad;
   2369  1.11       ad 		mapped = 1;
   2370  1.11       ad 	}
   2371  1.11       ad 
   2372  1.11       ad 	if ((rv = iop_msg_post(sc, im, mf, pt->pt_timo)) != 0)
   2373  1.11       ad 		goto bad;
   2374  1.11       ad 
   2375  1.11       ad 	i = (le32toh(im->im_rb->msgflags) >> 14) & ~3;
   2376  1.11       ad 	if (i > IOP_MAX_MSG_SIZE)
   2377  1.11       ad 		i = IOP_MAX_MSG_SIZE;
   2378  1.11       ad 	if (i > pt->pt_replylen)
   2379  1.11       ad 		i = pt->pt_replylen;
   2380  1.11       ad 	if ((rv = copyout(im->im_rb, pt->pt_reply, i)) != 0)
   2381  1.11       ad 		goto bad;
   2382  1.11       ad 
   2383  1.11       ad 	iop_msg_unmap(sc, im);
   2384  1.11       ad 	mapped = 0;
   2385  1.11       ad 
   2386  1.11       ad 	for (i = 0; i < pt->pt_nbufs; i++) {
   2387  1.11       ad 		ptb = &pt->pt_bufs[i];
   2388  1.11       ad 		if (ptb->ptb_out != 0)
   2389  1.11       ad 			continue;
   2390  1.11       ad 		buf = sc->sc_ptb + i * IOP_MAX_XFER;
   2391  1.11       ad 		rv = copyout(buf, ptb->ptb_data, ptb->ptb_datalen);
   2392  1.11       ad 		if (rv != 0)
   2393  1.11       ad 			break;
   2394   1.5       ad 	}
   2395   1.9       ad 
   2396  1.11       ad  bad:
   2397  1.11       ad 	if (mapped != 0)
   2398  1.11       ad 		iop_msg_unmap(sc, im);
   2399  1.11       ad 	if (im != NULL)
   2400  1.11       ad 		iop_msg_free(sc, im);
   2401  1.11       ad 	if (mf != NULL)
   2402  1.11       ad 		free(mf, M_DEVBUF);
   2403   1.1       ad 	return (rv);
   2404   1.5       ad }
   2405