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cac.c revision 1.43.12.3
      1  1.43.12.1       mjf /*	$NetBSD: cac.c,v 1.43.12.3 2008/06/29 09:33:07 mjf Exp $	*/
      2        1.1        ad 
      3        1.1        ad /*-
      4       1.39        ad  * Copyright (c) 2000, 2006, 2007 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        1.6        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  *
     19        1.1        ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20        1.1        ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21        1.1        ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22        1.1        ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23        1.1        ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24        1.1        ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25        1.1        ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26        1.1        ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27        1.1        ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28        1.1        ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29        1.1        ad  * POSSIBILITY OF SUCH DAMAGE.
     30        1.1        ad  */
     31        1.1        ad 
     32        1.1        ad /*
     33        1.1        ad  * Driver for Compaq array controllers.
     34        1.1        ad  */
     35       1.19     lukem 
     36       1.19     lukem #include <sys/cdefs.h>
     37  1.43.12.1       mjf __KERNEL_RCSID(0, "$NetBSD: cac.c,v 1.43.12.3 2008/06/29 09:33:07 mjf Exp $");
     38  1.43.12.1       mjf 
     39  1.43.12.1       mjf #include "bio.h"
     40        1.1        ad 
     41        1.1        ad #include <sys/param.h>
     42        1.1        ad #include <sys/systm.h>
     43        1.1        ad #include <sys/kernel.h>
     44        1.1        ad #include <sys/device.h>
     45        1.1        ad #include <sys/queue.h>
     46        1.1        ad #include <sys/proc.h>
     47        1.1        ad #include <sys/buf.h>
     48        1.1        ad #include <sys/endian.h>
     49        1.1        ad #include <sys/malloc.h>
     50        1.1        ad #include <sys/pool.h>
     51        1.1        ad 
     52       1.15   thorpej #include <uvm/uvm_extern.h>
     53       1.15   thorpej 
     54       1.34       dsl #include <sys/bswap.h>
     55       1.42        ad #include <sys/bus.h>
     56        1.1        ad 
     57        1.1        ad #include <dev/ic/cacreg.h>
     58        1.1        ad #include <dev/ic/cacvar.h>
     59        1.1        ad 
     60  1.43.12.1       mjf #if NBIO > 0
     61  1.43.12.1       mjf #include <dev/biovar.h>
     62  1.43.12.1       mjf #endif /* NBIO > 0 */
     63  1.43.12.1       mjf 
     64       1.28  drochner #include "locators.h"
     65       1.28  drochner 
     66       1.27   thorpej static struct	cac_ccb *cac_ccb_alloc(struct cac_softc *, int);
     67       1.27   thorpej static void	cac_ccb_done(struct cac_softc *, struct cac_ccb *);
     68       1.27   thorpej static void	cac_ccb_free(struct cac_softc *, struct cac_ccb *);
     69       1.27   thorpej static int	cac_ccb_poll(struct cac_softc *, struct cac_ccb *, int);
     70       1.27   thorpej static int	cac_ccb_start(struct cac_softc *, struct cac_ccb *);
     71       1.27   thorpej static int	cac_print(void *, const char *);
     72       1.27   thorpej static void	cac_shutdown(void *);
     73       1.27   thorpej 
     74       1.27   thorpej static struct	cac_ccb *cac_l0_completed(struct cac_softc *);
     75       1.27   thorpej static int	cac_l0_fifo_full(struct cac_softc *);
     76       1.27   thorpej static void	cac_l0_intr_enable(struct cac_softc *, int);
     77       1.27   thorpej static int	cac_l0_intr_pending(struct cac_softc *);
     78       1.27   thorpej static void	cac_l0_submit(struct cac_softc *, struct cac_ccb *);
     79       1.10        ad 
     80       1.10        ad static void	*cac_sdh;	/* shutdown hook */
     81       1.10        ad 
     82  1.43.12.1       mjf #if NBIO > 0
     83  1.43.12.1       mjf int		cac_ioctl(struct device *, u_long, void *);
     84  1.43.12.1       mjf int		cac_ioctl_vol(struct cac_softc *, struct bioc_vol *);
     85  1.43.12.1       mjf int		cac_create_sensors(struct cac_softc *);
     86  1.43.12.1       mjf void		cac_sensor_refresh(struct sysmon_envsys *, envsys_data_t *);
     87  1.43.12.1       mjf #endif /* NBIO > 0 */
     88  1.43.12.1       mjf 
     89       1.20        ad const struct cac_linkage cac_l0 = {
     90       1.10        ad 	cac_l0_completed,
     91       1.10        ad 	cac_l0_fifo_full,
     92       1.10        ad 	cac_l0_intr_enable,
     93       1.10        ad 	cac_l0_intr_pending,
     94       1.10        ad 	cac_l0_submit
     95       1.10        ad };
     96        1.1        ad 
     97        1.1        ad /*
     98        1.1        ad  * Initialise our interface to the controller.
     99        1.1        ad  */
    100        1.1        ad int
    101       1.10        ad cac_init(struct cac_softc *sc, const char *intrstr, int startfw)
    102        1.1        ad {
    103        1.1        ad 	struct cac_controller_info cinfo;
    104        1.1        ad 	struct cac_attach_args caca;
    105        1.1        ad 	int error, rseg, size, i;
    106        1.1        ad 	bus_dma_segment_t seg;
    107        1.1        ad 	struct cac_ccb *ccb;
    108       1.31  drochner 	int locs[CACCF_NLOCS];
    109       1.38        ad 	char firm[8];
    110       1.29     perry 
    111        1.1        ad 	if (intrstr != NULL)
    112  1.43.12.2       mjf 		aprint_normal_dev(&sc->sc_dv, "interrupting at %s\n",
    113       1.10        ad 		    intrstr);
    114        1.1        ad 
    115        1.1        ad 	SIMPLEQ_INIT(&sc->sc_ccb_free);
    116        1.1        ad 	SIMPLEQ_INIT(&sc->sc_ccb_queue);
    117       1.43        ad 	mutex_init(&sc->sc_mutex, MUTEX_DEFAULT, IPL_VM);
    118       1.39        ad 	cv_init(&sc->sc_ccb_cv, "cacccb");
    119        1.1        ad 
    120        1.1        ad         size = sizeof(struct cac_ccb) * CAC_MAX_CCBS;
    121        1.1        ad 
    122       1.29     perry 	if ((error = bus_dmamem_alloc(sc->sc_dmat, size, PAGE_SIZE, 0, &seg, 1,
    123        1.1        ad 	    &rseg, BUS_DMA_NOWAIT)) != 0) {
    124  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "unable to allocate CCBs, error = %d\n",
    125  1.43.12.2       mjf 		    error);
    126        1.1        ad 		return (-1);
    127        1.1        ad 	}
    128        1.1        ad 
    129       1.29     perry 	if ((error = bus_dmamem_map(sc->sc_dmat, &seg, rseg, size,
    130       1.40  christos 	    (void **)&sc->sc_ccbs,
    131       1.10        ad 	    BUS_DMA_NOWAIT | BUS_DMA_COHERENT)) != 0) {
    132  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "unable to map CCBs, error = %d\n",
    133  1.43.12.2       mjf 		    error);
    134        1.1        ad 		return (-1);
    135        1.1        ad 	}
    136        1.1        ad 
    137       1.29     perry 	if ((error = bus_dmamap_create(sc->sc_dmat, size, 1, size, 0,
    138        1.1        ad 	    BUS_DMA_NOWAIT, &sc->sc_dmamap)) != 0) {
    139  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "unable to create CCB DMA map, error = %d\n",
    140  1.43.12.2       mjf 		    error);
    141        1.1        ad 		return (-1);
    142        1.1        ad 	}
    143        1.1        ad 
    144       1.29     perry 	if ((error = bus_dmamap_load(sc->sc_dmat, sc->sc_dmamap, sc->sc_ccbs,
    145        1.1        ad 	    size, NULL, BUS_DMA_NOWAIT)) != 0) {
    146  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "unable to load CCB DMA map, error = %d\n",
    147  1.43.12.2       mjf 		    error);
    148        1.1        ad 		return (-1);
    149        1.1        ad 	}
    150        1.1        ad 
    151        1.1        ad 	sc->sc_ccbs_paddr = sc->sc_dmamap->dm_segs[0].ds_addr;
    152        1.1        ad 	memset(sc->sc_ccbs, 0, size);
    153        1.1        ad 	ccb = (struct cac_ccb *)sc->sc_ccbs;
    154        1.1        ad 
    155        1.1        ad 	for (i = 0; i < CAC_MAX_CCBS; i++, ccb++) {
    156        1.1        ad 		/* Create the DMA map for this CCB's data */
    157       1.12        ad 		error = bus_dmamap_create(sc->sc_dmat, CAC_MAX_XFER,
    158       1.12        ad 		    CAC_SG_SIZE, CAC_MAX_XFER, 0,
    159       1.12        ad 		    BUS_DMA_NOWAIT | BUS_DMA_ALLOCNOW,
    160       1.12        ad 		    &ccb->ccb_dmamap_xfer);
    161       1.10        ad 
    162        1.1        ad 		if (error) {
    163  1.43.12.2       mjf 			aprint_error_dev(&sc->sc_dv, "can't create ccb dmamap (%d)\n",
    164  1.43.12.2       mjf 			    error);
    165        1.1        ad 			break;
    166        1.1        ad 		}
    167        1.1        ad 
    168        1.1        ad 		ccb->ccb_flags = 0;
    169        1.1        ad 		ccb->ccb_paddr = sc->sc_ccbs_paddr + i * sizeof(struct cac_ccb);
    170        1.1        ad 		SIMPLEQ_INSERT_TAIL(&sc->sc_ccb_free, ccb, ccb_chain);
    171        1.1        ad 	}
    172       1.29     perry 
    173       1.10        ad 	/* Start firmware background tasks, if needed. */
    174       1.10        ad 	if (startfw) {
    175       1.10        ad 		if (cac_cmd(sc, CAC_CMD_START_FIRMWARE, &cinfo, sizeof(cinfo),
    176       1.10        ad 		    0, 0, CAC_CCB_DATA_IN, NULL)) {
    177  1.43.12.2       mjf 			aprint_error_dev(&sc->sc_dv, "CAC_CMD_START_FIRMWARE failed\n");
    178       1.10        ad 			return (-1);
    179       1.10        ad 		}
    180       1.10        ad 	}
    181       1.10        ad 
    182       1.29     perry 	if (cac_cmd(sc, CAC_CMD_GET_CTRL_INFO, &cinfo, sizeof(cinfo), 0, 0,
    183        1.1        ad 	    CAC_CCB_DATA_IN, NULL)) {
    184  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "CAC_CMD_GET_CTRL_INFO failed\n");
    185        1.1        ad 		return (-1);
    186        1.1        ad 	}
    187        1.1        ad 
    188       1.38        ad 	strlcpy(firm, cinfo.firm_rev, 4+1);
    189  1.43.12.2       mjf 	printf("%s: %d channels, firmware <%s>\n", device_xname(&sc->sc_dv),
    190       1.38        ad 	    cinfo.scsi_chips, firm);
    191       1.38        ad 
    192       1.14        ad 	sc->sc_nunits = cinfo.num_drvs;
    193        1.1        ad 	for (i = 0; i < cinfo.num_drvs; i++) {
    194        1.1        ad 		caca.caca_unit = i;
    195       1.28  drochner 
    196       1.31  drochner 		locs[CACCF_UNIT] = i;
    197       1.28  drochner 
    198       1.31  drochner 		config_found_sm_loc(&sc->sc_dv, "cac", locs, &caca,
    199       1.38        ad 		    cac_print, config_stdsubmatch);
    200        1.1        ad 	}
    201        1.1        ad 
    202       1.10        ad 	/* Set our `shutdownhook' before we start any device activity. */
    203        1.4        ad 	if (cac_sdh == NULL)
    204        1.1        ad 		cac_sdh = shutdownhook_establish(cac_shutdown, NULL);
    205       1.29     perry 
    206       1.39        ad 	mutex_enter(&sc->sc_mutex);
    207       1.20        ad 	(*sc->sc_cl.cl_intr_enable)(sc, CAC_INTR_ENABLE);
    208       1.39        ad 	mutex_exit(&sc->sc_mutex);
    209       1.39        ad 
    210  1.43.12.1       mjf #if NBIO > 0
    211  1.43.12.1       mjf 	if (bio_register(&sc->sc_dv, cac_ioctl) != 0)
    212  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "controller registration failed");
    213  1.43.12.1       mjf 	else
    214  1.43.12.1       mjf 		sc->sc_ioctl = cac_ioctl;
    215  1.43.12.1       mjf 	if (cac_create_sensors(sc) != 0)
    216  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "unable to create sensors\n");
    217  1.43.12.1       mjf #endif
    218  1.43.12.1       mjf 
    219        1.1        ad 	return (0);
    220        1.1        ad }
    221        1.1        ad 
    222        1.1        ad /*
    223       1.10        ad  * Shut down all `cac' controllers.
    224        1.1        ad  */
    225       1.27   thorpej static void
    226       1.36  christos cac_shutdown(void *cookie)
    227        1.1        ad {
    228        1.4        ad 	extern struct cfdriver cac_cd;
    229        1.1        ad 	struct cac_softc *sc;
    230       1.30  christos 	u_int8_t tbuf[512];
    231        1.4        ad 	int i;
    232        1.1        ad 
    233        1.4        ad 	for (i = 0; i < cac_cd.cd_ndevs; i++) {
    234  1.43.12.3       mjf 		if ((sc = device_lookup_private(&cac_cd, i)) == NULL)
    235       1.29     perry 			continue;
    236       1.30  christos 		memset(tbuf, 0, sizeof(tbuf));
    237       1.30  christos 		tbuf[0] = 1;
    238       1.30  christos 		cac_cmd(sc, CAC_CMD_FLUSH_CACHE, tbuf, sizeof(tbuf), 0, 0,
    239        1.1        ad 		    CAC_CCB_DATA_OUT, NULL);
    240        1.1        ad 	}
    241       1.29     perry }
    242        1.1        ad 
    243        1.1        ad /*
    244       1.10        ad  * Print autoconfiguration message for a sub-device.
    245        1.1        ad  */
    246       1.27   thorpej static int
    247       1.10        ad cac_print(void *aux, const char *pnp)
    248        1.1        ad {
    249        1.1        ad 	struct cac_attach_args *caca;
    250        1.1        ad 
    251        1.1        ad 	caca = (struct cac_attach_args *)aux;
    252        1.1        ad 
    253       1.10        ad 	if (pnp != NULL)
    254       1.23   thorpej 		aprint_normal("block device at %s", pnp);
    255       1.23   thorpej 	aprint_normal(" unit %d", caca->caca_unit);
    256        1.1        ad 	return (UNCONF);
    257        1.1        ad }
    258        1.1        ad 
    259        1.1        ad /*
    260        1.1        ad  * Handle an interrupt from the controller: process finished CCBs and
    261        1.1        ad  * dequeue any waiting CCBs.
    262        1.1        ad  */
    263        1.1        ad int
    264       1.10        ad cac_intr(void *cookie)
    265        1.1        ad {
    266        1.1        ad 	struct cac_softc *sc;
    267        1.1        ad 	struct cac_ccb *ccb;
    268       1.39        ad 	int rv;
    269        1.1        ad 
    270       1.10        ad 	sc = (struct cac_softc *)cookie;
    271        1.1        ad 
    272       1.39        ad 	mutex_enter(&sc->sc_mutex);
    273       1.39        ad 
    274       1.39        ad 	if ((*sc->sc_cl.cl_intr_pending)(sc)) {
    275       1.39        ad 		while ((ccb = (*sc->sc_cl.cl_completed)(sc)) != NULL) {
    276       1.39        ad 			cac_ccb_done(sc, ccb);
    277       1.39        ad 			cac_ccb_start(sc, NULL);
    278       1.39        ad 		}
    279       1.39        ad 		rv = 1;
    280       1.39        ad 	} else
    281       1.39        ad 		rv = 0;
    282        1.1        ad 
    283       1.39        ad 	mutex_exit(&sc->sc_mutex);
    284        1.1        ad 
    285       1.39        ad 	return (rv);
    286        1.1        ad }
    287        1.1        ad 
    288        1.1        ad /*
    289        1.1        ad  * Execute a [polled] command.
    290        1.1        ad  */
    291        1.1        ad int
    292       1.10        ad cac_cmd(struct cac_softc *sc, int command, void *data, int datasize,
    293       1.10        ad 	int drive, int blkno, int flags, struct cac_context *context)
    294        1.1        ad {
    295        1.1        ad 	struct cac_ccb *ccb;
    296        1.1        ad 	struct cac_sgb *sgb;
    297       1.39        ad 	int i, rv, size, nsegs;
    298        1.2        ad 
    299        1.2        ad 	size = 0;
    300        1.1        ad 
    301       1.26        pk 	if ((ccb = cac_ccb_alloc(sc, 1)) == NULL) {
    302  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "unable to alloc CCB");
    303       1.26        pk 		return (EAGAIN);
    304        1.1        ad 	}
    305        1.1        ad 
    306        1.1        ad 	if ((flags & (CAC_CCB_DATA_IN | CAC_CCB_DATA_OUT)) != 0) {
    307       1.10        ad 		bus_dmamap_load(sc->sc_dmat, ccb->ccb_dmamap_xfer,
    308       1.17   thorpej 		    (void *)data, datasize, NULL, BUS_DMA_NOWAIT |
    309       1.18   thorpej 		    BUS_DMA_STREAMING | ((flags & CAC_CCB_DATA_IN) ?
    310       1.18   thorpej 		    BUS_DMA_READ : BUS_DMA_WRITE));
    311       1.10        ad 
    312        1.1        ad 		bus_dmamap_sync(sc->sc_dmat, ccb->ccb_dmamap_xfer, 0, datasize,
    313        1.1        ad 		    (flags & CAC_CCB_DATA_IN) != 0 ? BUS_DMASYNC_PREREAD :
    314        1.1        ad 		    BUS_DMASYNC_PREWRITE);
    315       1.29     perry 
    316        1.1        ad 		sgb = ccb->ccb_seg;
    317        1.2        ad 		nsegs = min(ccb->ccb_dmamap_xfer->dm_nsegs, CAC_SG_SIZE);
    318        1.1        ad 
    319        1.2        ad 		for (i = 0; i < nsegs; i++, sgb++) {
    320        1.2        ad 			size += ccb->ccb_dmamap_xfer->dm_segs[i].ds_len;
    321       1.29     perry 			sgb->length =
    322        1.1        ad 			    htole32(ccb->ccb_dmamap_xfer->dm_segs[i].ds_len);
    323       1.29     perry 			sgb->addr =
    324        1.1        ad 			    htole32(ccb->ccb_dmamap_xfer->dm_segs[i].ds_addr);
    325        1.1        ad 		}
    326        1.2        ad 	} else {
    327        1.2        ad 		size = datasize;
    328        1.2        ad 		nsegs = 0;
    329        1.1        ad 	}
    330        1.2        ad 
    331        1.1        ad 	ccb->ccb_hdr.drive = drive;
    332       1.37        ad 	ccb->ccb_hdr.priority = 0;
    333       1.29     perry 	ccb->ccb_hdr.size = htole16((sizeof(struct cac_req) +
    334        1.1        ad 	    sizeof(struct cac_sgb) * CAC_SG_SIZE) >> 2);
    335        1.1        ad 
    336       1.37        ad 	ccb->ccb_req.next = 0;
    337       1.37        ad 	ccb->ccb_req.error = 0;
    338       1.37        ad 	ccb->ccb_req.reserved = 0;
    339        1.2        ad 	ccb->ccb_req.bcount = htole16(howmany(size, DEV_BSIZE));
    340        1.1        ad 	ccb->ccb_req.command = command;
    341        1.5   thorpej 	ccb->ccb_req.sgcount = nsegs;
    342        1.1        ad 	ccb->ccb_req.blkno = htole32(blkno);
    343       1.29     perry 
    344        1.1        ad 	ccb->ccb_flags = flags;
    345        1.2        ad 	ccb->ccb_datasize = size;
    346        1.1        ad 
    347       1.39        ad 	mutex_enter(&sc->sc_mutex);
    348       1.39        ad 
    349        1.1        ad 	if (context == NULL) {
    350        1.1        ad 		memset(&ccb->ccb_context, 0, sizeof(struct cac_context));
    351       1.10        ad 
    352       1.10        ad 		/* Synchronous commands musn't wait. */
    353       1.20        ad 		if ((*sc->sc_cl.cl_fifo_full)(sc)) {
    354        1.1        ad 			cac_ccb_free(sc, ccb);
    355       1.26        pk 			rv = EAGAIN;
    356        1.1        ad 		} else {
    357       1.12        ad #ifdef DIAGNOSTIC
    358       1.12        ad 			ccb->ccb_flags |= CAC_CCB_ACTIVE;
    359       1.12        ad #endif
    360       1.20        ad 			(*sc->sc_cl.cl_submit)(sc, ccb);
    361       1.13        ad 			rv = cac_ccb_poll(sc, ccb, 2000);
    362        1.1        ad 			cac_ccb_free(sc, ccb);
    363        1.1        ad 		}
    364        1.1        ad 	} else {
    365        1.1        ad 		memcpy(&ccb->ccb_context, context, sizeof(struct cac_context));
    366       1.26        pk 		(void)cac_ccb_start(sc, ccb);
    367       1.26        pk 		rv = 0;
    368        1.1        ad 	}
    369       1.29     perry 
    370       1.39        ad 	mutex_exit(&sc->sc_mutex);
    371        1.1        ad 	return (rv);
    372        1.1        ad }
    373        1.1        ad 
    374        1.1        ad /*
    375       1.39        ad  * Wait for the specified CCB to complete.
    376        1.1        ad  */
    377       1.27   thorpej static int
    378       1.10        ad cac_ccb_poll(struct cac_softc *sc, struct cac_ccb *wantccb, int timo)
    379       1.10        ad {
    380        1.1        ad 	struct cac_ccb *ccb;
    381       1.13        ad 
    382       1.41        ad 	KASSERT(mutex_owned(&sc->sc_mutex));
    383       1.39        ad 
    384       1.38        ad 	timo *= 1000;
    385        1.1        ad 
    386       1.10        ad 	do {
    387       1.10        ad 		for (; timo != 0; timo--) {
    388       1.20        ad 			ccb = (*sc->sc_cl.cl_completed)(sc);
    389       1.20        ad 			if (ccb != NULL)
    390        1.1        ad 				break;
    391       1.38        ad 			DELAY(1);
    392        1.1        ad 		}
    393        1.1        ad 
    394       1.13        ad 		if (timo == 0) {
    395  1.43.12.2       mjf 			printf("%s: timeout\n", device_xname(&sc->sc_dv));
    396       1.13        ad 			return (EBUSY);
    397       1.13        ad 		}
    398       1.10        ad 		cac_ccb_done(sc, ccb);
    399       1.10        ad 	} while (ccb != wantccb);
    400       1.13        ad 
    401       1.13        ad 	return (0);
    402        1.1        ad }
    403        1.1        ad 
    404        1.1        ad /*
    405       1.29     perry  * Enqueue the specified command (if any) and attempt to start all enqueued
    406       1.39        ad  * commands.
    407        1.1        ad  */
    408       1.27   thorpej static int
    409       1.10        ad cac_ccb_start(struct cac_softc *sc, struct cac_ccb *ccb)
    410        1.1        ad {
    411       1.10        ad 
    412       1.41        ad 	KASSERT(mutex_owned(&sc->sc_mutex));
    413       1.39        ad 
    414        1.1        ad 	if (ccb != NULL)
    415        1.1        ad 		SIMPLEQ_INSERT_TAIL(&sc->sc_ccb_queue, ccb, ccb_chain);
    416        1.1        ad 
    417        1.1        ad 	while ((ccb = SIMPLEQ_FIRST(&sc->sc_ccb_queue)) != NULL) {
    418       1.20        ad 		if ((*sc->sc_cl.cl_fifo_full)(sc))
    419       1.26        pk 			return (EAGAIN);
    420       1.21     lukem 		SIMPLEQ_REMOVE_HEAD(&sc->sc_ccb_queue, ccb_chain);
    421       1.10        ad #ifdef DIAGNOSTIC
    422       1.10        ad 		ccb->ccb_flags |= CAC_CCB_ACTIVE;
    423       1.10        ad #endif
    424       1.20        ad 		(*sc->sc_cl.cl_submit)(sc, ccb);
    425        1.1        ad 	}
    426       1.29     perry 
    427        1.1        ad 	return (0);
    428        1.1        ad }
    429        1.1        ad 
    430        1.1        ad /*
    431        1.1        ad  * Process a finished CCB.
    432        1.1        ad  */
    433       1.27   thorpej static void
    434       1.10        ad cac_ccb_done(struct cac_softc *sc, struct cac_ccb *ccb)
    435        1.1        ad {
    436       1.14        ad 	struct device *dv;
    437       1.14        ad 	void *context;
    438        1.1        ad 	int error;
    439        1.1        ad 
    440        1.1        ad 	error = 0;
    441        1.1        ad 
    442       1.41        ad 	KASSERT(mutex_owned(&sc->sc_mutex));
    443       1.39        ad 
    444       1.10        ad #ifdef DIAGNOSTIC
    445       1.10        ad 	if ((ccb->ccb_flags & CAC_CCB_ACTIVE) == 0)
    446       1.10        ad 		panic("cac_ccb_done: CCB not active");
    447       1.10        ad 	ccb->ccb_flags &= ~CAC_CCB_ACTIVE;
    448       1.10        ad #endif
    449       1.10        ad 
    450        1.1        ad 	if ((ccb->ccb_flags & (CAC_CCB_DATA_IN | CAC_CCB_DATA_OUT)) != 0) {
    451        1.1        ad 		bus_dmamap_sync(sc->sc_dmat, ccb->ccb_dmamap_xfer, 0,
    452        1.1        ad 		    ccb->ccb_datasize, ccb->ccb_flags & CAC_CCB_DATA_IN ?
    453        1.1        ad 		    BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
    454        1.1        ad 		bus_dmamap_unload(sc->sc_dmat, ccb->ccb_dmamap_xfer);
    455        1.1        ad 	}
    456        1.1        ad 
    457       1.16        ad 	error = ccb->ccb_req.error;
    458       1.10        ad 	if (ccb->ccb_context.cc_handler != NULL) {
    459       1.14        ad 		dv = ccb->ccb_context.cc_dv;
    460       1.14        ad 		context = ccb->ccb_context.cc_context;
    461       1.10        ad 		cac_ccb_free(sc, ccb);
    462       1.14        ad 		(*ccb->ccb_context.cc_handler)(dv, context, error);
    463       1.16        ad 	} else {
    464       1.16        ad 		if ((error & CAC_RET_SOFT_ERROR) != 0)
    465  1.43.12.2       mjf 			aprint_error_dev(&sc->sc_dv, "soft error; array may be degraded\n");
    466       1.16        ad 		if ((error & CAC_RET_HARD_ERROR) != 0)
    467  1.43.12.2       mjf 			aprint_error_dev(&sc->sc_dv, "hard error\n");
    468       1.16        ad 		if ((error & CAC_RET_CMD_REJECTED) != 0) {
    469       1.16        ad 			error = 1;
    470  1.43.12.2       mjf 			aprint_error_dev(&sc->sc_dv, "invalid request\n");
    471       1.16        ad 		}
    472       1.10        ad 	}
    473        1.1        ad }
    474        1.1        ad 
    475        1.1        ad /*
    476       1.10        ad  * Allocate a CCB.
    477        1.1        ad  */
    478       1.27   thorpej static struct cac_ccb *
    479       1.10        ad cac_ccb_alloc(struct cac_softc *sc, int nosleep)
    480        1.1        ad {
    481        1.1        ad 	struct cac_ccb *ccb;
    482        1.1        ad 
    483       1.39        ad 	mutex_enter(&sc->sc_mutex);
    484        1.1        ad 
    485        1.1        ad 	for (;;) {
    486        1.1        ad 		if ((ccb = SIMPLEQ_FIRST(&sc->sc_ccb_free)) != NULL) {
    487       1.21     lukem 			SIMPLEQ_REMOVE_HEAD(&sc->sc_ccb_free, ccb_chain);
    488        1.1        ad 			break;
    489        1.1        ad 		}
    490        1.1        ad 		if (nosleep) {
    491        1.1        ad 			ccb = NULL;
    492        1.1        ad 			break;
    493        1.1        ad 		}
    494       1.39        ad 		cv_wait(&sc->sc_ccb_cv, &sc->sc_mutex);
    495        1.1        ad 	}
    496        1.1        ad 
    497       1.39        ad 	mutex_exit(&sc->sc_mutex);
    498        1.1        ad 	return (ccb);
    499        1.1        ad }
    500        1.1        ad 
    501        1.1        ad /*
    502        1.1        ad  * Put a CCB onto the freelist.
    503        1.1        ad  */
    504       1.27   thorpej static void
    505       1.10        ad cac_ccb_free(struct cac_softc *sc, struct cac_ccb *ccb)
    506        1.1        ad {
    507       1.39        ad 
    508       1.41        ad 	KASSERT(mutex_owned(&sc->sc_mutex));
    509        1.1        ad 
    510       1.13        ad 	ccb->ccb_flags = 0;
    511       1.39        ad 	if (SIMPLEQ_EMPTY(&sc->sc_ccb_free))
    512       1.39        ad 		cv_signal(&sc->sc_ccb_cv);
    513        1.1        ad 	SIMPLEQ_INSERT_HEAD(&sc->sc_ccb_free, ccb, ccb_chain);
    514       1.10        ad }
    515       1.10        ad 
    516       1.10        ad /*
    517       1.10        ad  * Board specific linkage shared between multiple bus types.
    518       1.10        ad  */
    519       1.10        ad 
    520       1.27   thorpej static int
    521       1.10        ad cac_l0_fifo_full(struct cac_softc *sc)
    522       1.10        ad {
    523       1.10        ad 
    524       1.41        ad 	KASSERT(mutex_owned(&sc->sc_mutex));
    525       1.39        ad 
    526       1.10        ad 	return (cac_inl(sc, CAC_REG_CMD_FIFO) == 0);
    527       1.10        ad }
    528       1.10        ad 
    529       1.27   thorpej static void
    530       1.10        ad cac_l0_submit(struct cac_softc *sc, struct cac_ccb *ccb)
    531       1.10        ad {
    532       1.10        ad 
    533       1.41        ad 	KASSERT(mutex_owned(&sc->sc_mutex));
    534       1.39        ad 
    535       1.40  christos 	bus_dmamap_sync(sc->sc_dmat, sc->sc_dmamap,
    536       1.40  christos 	    (char *)ccb - (char *)sc->sc_ccbs,
    537       1.10        ad 	    sizeof(struct cac_ccb), BUS_DMASYNC_PREWRITE | BUS_DMASYNC_PREREAD);
    538       1.10        ad 	cac_outl(sc, CAC_REG_CMD_FIFO, ccb->ccb_paddr);
    539       1.10        ad }
    540       1.10        ad 
    541       1.27   thorpej static struct cac_ccb *
    542       1.10        ad cac_l0_completed(struct cac_softc *sc)
    543       1.10        ad {
    544       1.10        ad 	struct cac_ccb *ccb;
    545       1.10        ad 	paddr_t off;
    546       1.10        ad 
    547       1.41        ad 	KASSERT(mutex_owned(&sc->sc_mutex));
    548       1.39        ad 
    549       1.20        ad 	if ((off = cac_inl(sc, CAC_REG_DONE_FIFO)) == 0)
    550       1.20        ad 		return (NULL);
    551       1.20        ad 
    552       1.20        ad 	if ((off & 3) != 0)
    553  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "failed command list returned: %lx\n",
    554  1.43.12.2       mjf 		    (long)off);
    555       1.20        ad 
    556       1.20        ad 	off = (off & ~3) - sc->sc_ccbs_paddr;
    557       1.40  christos 	ccb = (struct cac_ccb *)((char *)sc->sc_ccbs + off);
    558       1.10        ad 
    559       1.10        ad 	bus_dmamap_sync(sc->sc_dmat, sc->sc_dmamap, off, sizeof(struct cac_ccb),
    560       1.10        ad 	    BUS_DMASYNC_POSTWRITE | BUS_DMASYNC_POSTREAD);
    561       1.10        ad 
    562       1.37        ad 	if ((off & 3) != 0 && ccb->ccb_req.error == 0)
    563       1.37        ad 		ccb->ccb_req.error = CAC_RET_CMD_REJECTED;
    564       1.37        ad 
    565       1.10        ad 	return (ccb);
    566       1.10        ad }
    567       1.10        ad 
    568       1.27   thorpej static int
    569       1.10        ad cac_l0_intr_pending(struct cac_softc *sc)
    570       1.10        ad {
    571       1.10        ad 
    572       1.41        ad 	KASSERT(mutex_owned(&sc->sc_mutex));
    573       1.39        ad 
    574       1.20        ad 	return (cac_inl(sc, CAC_REG_INTR_PENDING) & CAC_INTR_ENABLE);
    575       1.10        ad }
    576       1.10        ad 
    577       1.27   thorpej static void
    578       1.10        ad cac_l0_intr_enable(struct cac_softc *sc, int state)
    579       1.10        ad {
    580       1.10        ad 
    581       1.41        ad 	KASSERT(mutex_owned(&sc->sc_mutex));
    582       1.39        ad 
    583       1.10        ad 	cac_outl(sc, CAC_REG_INTR_MASK,
    584       1.10        ad 	    state ? CAC_INTR_ENABLE : CAC_INTR_DISABLE);
    585        1.1        ad }
    586  1.43.12.1       mjf 
    587  1.43.12.1       mjf #if NBIO > 0
    588  1.43.12.1       mjf const int cac_level[] = { 0, 4, 1, 5, 51, 7 };
    589  1.43.12.1       mjf const int cac_stat[] = { BIOC_SVONLINE, BIOC_SVOFFLINE, BIOC_SVOFFLINE,
    590  1.43.12.1       mjf     BIOC_SVDEGRADED, BIOC_SVREBUILD, BIOC_SVREBUILD, BIOC_SVDEGRADED,
    591  1.43.12.1       mjf     BIOC_SVDEGRADED, BIOC_SVINVALID, BIOC_SVINVALID, BIOC_SVBUILDING,
    592  1.43.12.1       mjf     BIOC_SVOFFLINE, BIOC_SVBUILDING };
    593  1.43.12.1       mjf 
    594  1.43.12.1       mjf int
    595  1.43.12.1       mjf cac_ioctl(struct device *dev, u_long cmd, void *addr)
    596  1.43.12.1       mjf {
    597  1.43.12.1       mjf 	struct cac_softc	*sc = (struct cac_softc *)dev;
    598  1.43.12.1       mjf 	struct bioc_inq *bi;
    599  1.43.12.1       mjf 	struct bioc_disk *bd;
    600  1.43.12.1       mjf 	cac_lock_t lock;
    601  1.43.12.1       mjf 	int error = 0;
    602  1.43.12.1       mjf 
    603  1.43.12.1       mjf 	lock = CAC_LOCK(sc);
    604  1.43.12.1       mjf 	switch (cmd) {
    605  1.43.12.1       mjf 	case BIOCINQ:
    606  1.43.12.1       mjf 		bi = (struct bioc_inq *)addr;
    607  1.43.12.2       mjf 		strlcpy(bi->bi_dev, device_xname(&sc->sc_dv), sizeof(bi->bi_dev));
    608  1.43.12.1       mjf 		bi->bi_novol = sc->sc_nunits;
    609  1.43.12.1       mjf 		bi->bi_nodisk = 0;
    610  1.43.12.1       mjf 		break;
    611  1.43.12.1       mjf 
    612  1.43.12.1       mjf 	case BIOCVOL:
    613  1.43.12.1       mjf 		error = cac_ioctl_vol(sc, (struct bioc_vol *)addr);
    614  1.43.12.1       mjf 		break;
    615  1.43.12.1       mjf 
    616  1.43.12.1       mjf 	case BIOCDISK:
    617  1.43.12.1       mjf 	case BIOCDISK_NOVOL:
    618  1.43.12.1       mjf 		bd = (struct bioc_disk *)addr;
    619  1.43.12.1       mjf 		if (bd->bd_volid > sc->sc_nunits) {
    620  1.43.12.1       mjf 			error = EINVAL;
    621  1.43.12.1       mjf 			break;
    622  1.43.12.1       mjf 		}
    623  1.43.12.1       mjf 		/* No disk information yet */
    624  1.43.12.1       mjf 		break;
    625  1.43.12.1       mjf 
    626  1.43.12.1       mjf 	case BIOCBLINK:
    627  1.43.12.1       mjf 	case BIOCALARM:
    628  1.43.12.1       mjf 	case BIOCSETSTATE:
    629  1.43.12.1       mjf 	default:
    630  1.43.12.1       mjf 		error = EINVAL;
    631  1.43.12.1       mjf 	}
    632  1.43.12.1       mjf 	CAC_UNLOCK(sc, lock);
    633  1.43.12.1       mjf 
    634  1.43.12.1       mjf 	return (error);
    635  1.43.12.1       mjf }
    636  1.43.12.1       mjf 
    637  1.43.12.1       mjf int
    638  1.43.12.1       mjf cac_ioctl_vol(struct cac_softc *sc, struct bioc_vol *bv)
    639  1.43.12.1       mjf {
    640  1.43.12.1       mjf 	struct cac_drive_info dinfo;
    641  1.43.12.1       mjf 	struct cac_drive_status dstatus;
    642  1.43.12.1       mjf 	u_int32_t blks;
    643  1.43.12.1       mjf 
    644  1.43.12.1       mjf 	if (bv->bv_volid > sc->sc_nunits) {
    645  1.43.12.1       mjf 		return EINVAL;
    646  1.43.12.1       mjf 	}
    647  1.43.12.1       mjf 	if (cac_cmd(sc, CAC_CMD_GET_LOG_DRV_INFO, &dinfo, sizeof(dinfo),
    648  1.43.12.1       mjf 	    bv->bv_volid, 0, CAC_CCB_DATA_IN, NULL)) {
    649  1.43.12.1       mjf 		return EIO;
    650  1.43.12.1       mjf 	}
    651  1.43.12.1       mjf 	if (cac_cmd(sc, CAC_CMD_SENSE_DRV_STATUS, &dstatus, sizeof(dstatus),
    652  1.43.12.1       mjf 	    bv->bv_volid, 0, CAC_CCB_DATA_IN, NULL)) {
    653  1.43.12.1       mjf 		return EIO;
    654  1.43.12.1       mjf 	}
    655  1.43.12.1       mjf 	blks = CAC_GET2(dinfo.ncylinders) * CAC_GET1(dinfo.nheads) *
    656  1.43.12.1       mjf 	    CAC_GET1(dinfo.nsectors);
    657  1.43.12.1       mjf 	bv->bv_size = (off_t)blks * CAC_GET2(dinfo.secsize);
    658  1.43.12.1       mjf 	bv->bv_level = cac_level[CAC_GET1(dinfo.mirror)];	/*XXX limit check */
    659  1.43.12.1       mjf 	bv->bv_nodisk = 0;		/* XXX */
    660  1.43.12.1       mjf 	bv->bv_status = 0;		/* XXX */
    661  1.43.12.1       mjf 	bv->bv_percent = -1;
    662  1.43.12.1       mjf 	bv->bv_seconds = 0;
    663  1.43.12.1       mjf 	if (dstatus.stat < sizeof(cac_stat)/sizeof(cac_stat[0]))
    664  1.43.12.1       mjf 		bv->bv_status = cac_stat[dstatus.stat];
    665  1.43.12.1       mjf 	if (bv->bv_status == BIOC_SVREBUILD ||
    666  1.43.12.1       mjf 	    bv->bv_status == BIOC_SVBUILDING)
    667  1.43.12.1       mjf 		bv->bv_percent = ((blks - CAC_GET4(dstatus.prog)) * 1000ULL) /
    668  1.43.12.1       mjf 		    blks;
    669  1.43.12.1       mjf 	return 0;
    670  1.43.12.1       mjf }
    671  1.43.12.1       mjf 
    672  1.43.12.1       mjf int
    673  1.43.12.1       mjf cac_create_sensors(struct cac_softc *sc)
    674  1.43.12.1       mjf {
    675  1.43.12.1       mjf 	int			i;
    676  1.43.12.1       mjf 	int nsensors = sc->sc_nunits;
    677  1.43.12.1       mjf 
    678  1.43.12.1       mjf 	sc->sc_sme = sysmon_envsys_create();
    679  1.43.12.1       mjf 	sc->sc_sensor = malloc(sizeof(envsys_data_t) * nsensors,
    680  1.43.12.1       mjf 	    M_DEVBUF, M_NOWAIT | M_ZERO);
    681  1.43.12.1       mjf 	if (sc->sc_sensor == NULL) {
    682  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "can't allocate envsys_data_t\n");
    683  1.43.12.1       mjf 		return(ENOMEM);
    684  1.43.12.1       mjf 	}
    685  1.43.12.1       mjf 
    686  1.43.12.1       mjf 	for (i = 0; i < nsensors; i++) {
    687  1.43.12.1       mjf 		sc->sc_sensor[i].units = ENVSYS_DRIVE;
    688  1.43.12.1       mjf 		sc->sc_sensor[i].monitor = true;
    689  1.43.12.1       mjf 		/* Enable monitoring for drive state changes */
    690  1.43.12.1       mjf 		sc->sc_sensor[i].flags |= ENVSYS_FMONSTCHANGED;
    691  1.43.12.1       mjf 		/* logical drives */
    692  1.43.12.1       mjf 		snprintf(sc->sc_sensor[i].desc,
    693  1.43.12.1       mjf 		    sizeof(sc->sc_sensor[i].desc), "%s:%d",
    694  1.43.12.2       mjf 		    device_xname(&sc->sc_dv), i);
    695  1.43.12.1       mjf 		if (sysmon_envsys_sensor_attach(sc->sc_sme,
    696  1.43.12.1       mjf 		    &sc->sc_sensor[i]))
    697  1.43.12.1       mjf 			goto out;
    698  1.43.12.1       mjf 	}
    699  1.43.12.2       mjf 	sc->sc_sme->sme_name = device_xname(&sc->sc_dv);
    700  1.43.12.1       mjf 	sc->sc_sme->sme_cookie = sc;
    701  1.43.12.1       mjf 	sc->sc_sme->sme_refresh = cac_sensor_refresh;
    702  1.43.12.1       mjf 	if (sysmon_envsys_register(sc->sc_sme)) {
    703  1.43.12.2       mjf 		aprint_error_dev(&sc->sc_dv, "unable to register with sysmon\n");
    704  1.43.12.1       mjf 		return(1);
    705  1.43.12.1       mjf 	}
    706  1.43.12.1       mjf 	return (0);
    707  1.43.12.1       mjf 
    708  1.43.12.1       mjf out:
    709  1.43.12.1       mjf 	free(sc->sc_sensor, M_DEVBUF);
    710  1.43.12.1       mjf 	sysmon_envsys_destroy(sc->sc_sme);
    711  1.43.12.1       mjf 	return EINVAL;
    712  1.43.12.1       mjf }
    713  1.43.12.1       mjf 
    714  1.43.12.1       mjf void
    715  1.43.12.1       mjf cac_sensor_refresh(struct sysmon_envsys *sme, envsys_data_t *edata)
    716  1.43.12.1       mjf {
    717  1.43.12.1       mjf 	struct cac_softc	*sc = sme->sme_cookie;
    718  1.43.12.1       mjf 	struct bioc_vol		bv;
    719  1.43.12.1       mjf 	int s;
    720  1.43.12.1       mjf 
    721  1.43.12.1       mjf 	if (edata->sensor >= sc->sc_nunits)
    722  1.43.12.1       mjf 		return;
    723  1.43.12.1       mjf 
    724  1.43.12.1       mjf 	bzero(&bv, sizeof(bv));
    725  1.43.12.1       mjf 	bv.bv_volid = edata->sensor;
    726  1.43.12.1       mjf 	s = splbio();
    727  1.43.12.1       mjf 	if (cac_ioctl_vol(sc, &bv)) {
    728  1.43.12.1       mjf 		splx(s);
    729  1.43.12.1       mjf 		return;
    730  1.43.12.1       mjf 	}
    731  1.43.12.1       mjf 	splx(s);
    732  1.43.12.1       mjf 
    733  1.43.12.1       mjf 	switch(bv.bv_status) {
    734  1.43.12.1       mjf 	case BIOC_SVOFFLINE:
    735  1.43.12.1       mjf 		edata->value_cur = ENVSYS_DRIVE_FAIL;
    736  1.43.12.1       mjf 		edata->state = ENVSYS_SCRITICAL;
    737  1.43.12.1       mjf 		break;
    738  1.43.12.1       mjf 
    739  1.43.12.1       mjf 	case BIOC_SVDEGRADED:
    740  1.43.12.1       mjf 		edata->value_cur = ENVSYS_DRIVE_PFAIL;
    741  1.43.12.1       mjf 		edata->state = ENVSYS_SCRITICAL;
    742  1.43.12.1       mjf 		break;
    743  1.43.12.1       mjf 
    744  1.43.12.1       mjf 	case BIOC_SVSCRUB:
    745  1.43.12.1       mjf 	case BIOC_SVONLINE:
    746  1.43.12.1       mjf 		edata->value_cur = ENVSYS_DRIVE_ONLINE;
    747  1.43.12.1       mjf 		edata->state = ENVSYS_SVALID;
    748  1.43.12.1       mjf 		break;
    749  1.43.12.1       mjf 
    750  1.43.12.1       mjf 	case BIOC_SVREBUILD:
    751  1.43.12.1       mjf 	case BIOC_SVBUILDING:
    752  1.43.12.1       mjf 		edata->value_cur = ENVSYS_DRIVE_REBUILD;
    753  1.43.12.1       mjf 		edata->state = ENVSYS_SVALID;
    754  1.43.12.1       mjf 		break;
    755  1.43.12.1       mjf 
    756  1.43.12.1       mjf 	case BIOC_SVINVALID:
    757  1.43.12.1       mjf 		/* FALLTRHOUGH */
    758  1.43.12.1       mjf 	default:
    759  1.43.12.1       mjf 		edata->value_cur = 0; /* unknown */
    760  1.43.12.1       mjf 		edata->state = ENVSYS_SINVALID;
    761  1.43.12.1       mjf 	}
    762  1.43.12.1       mjf }
    763  1.43.12.1       mjf #endif /* NBIO > 0 */
    764