Home | History | Annotate | Line # | Download | only in ebus
ace_ebus.c revision 1.13
      1 /*	$NetBSD: ace_ebus.c,v 1.13 2014/08/10 16:44:33 tls Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 2010 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code was written by Alessandro Forin and Neil Pittman
      8  * at Microsoft Research and contributed to The NetBSD Foundation
      9  * by Microsoft Corporation.
     10  *
     11  * Redistribution and use in source and binary forms, with or without
     12  * modification, are permitted provided that the following conditions
     13  * are met:
     14  * 1. Redistributions of source code must retain the above copyright
     15  *    notice, this list of conditions and the following disclaimer.
     16  * 2. Redistributions in binary form must reproduce the above copyright
     17  *    notice, this list of conditions and the following disclaimer in the
     18  *    documentation and/or other materials provided with the distribution.
     19  *
     20  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30  * POSSIBILITY OF SUCH DAMAGE.
     31  */
     32 
     33 #include <sys/cdefs.h>
     34 __KERNEL_RCSID(0, "$NetBSD: ace_ebus.c,v 1.13 2014/08/10 16:44:33 tls Exp $");
     35 
     36 #include <sys/param.h>
     37 #include <sys/systm.h>
     38 #include <sys/kernel.h>
     39 #include <sys/conf.h>
     40 #include <sys/file.h>
     41 #include <sys/stat.h>
     42 #include <sys/ioctl.h>
     43 #include <sys/buf.h>
     44 #include <sys/bufq.h>
     45 #include <sys/uio.h>
     46 #include <sys/malloc.h>
     47 #include <sys/device.h>
     48 #include <sys/disklabel.h>
     49 #include <sys/disk.h>
     50 #include <sys/syslog.h>
     51 #include <sys/proc.h>
     52 #include <sys/vnode.h>
     53 #include <sys/kthread.h>
     54 #include <sys/lock.h>
     55 #include <sys/queue.h>
     56 
     57 #include <sys/rnd.h>
     58 
     59 #include <machine/intr.h>
     60 #include <machine/bus.h>
     61 
     62 #include "locators.h"
     63 #include <prop/proplib.h>
     64 
     65 #include <emips/ebus/ebusvar.h>
     66 #include <emips/emips/machdep.h>
     67 #include <machine/emipsreg.h>
     68 
     69 /* Structure returned by the Identify command (see CFlash specs)
     70  * NB: We only care for the first sector so that is what we define here.
     71  * NB: Beware of mis-alignment for all 32bit things
     72  */
     73 typedef struct _CFLASH_IDENTIFY {
     74 	uint16_t Signature;				/* Word 0 */
     75 #define CFLASH_SIGNATURE 0x848a
     76 	uint16_t DefaultNumberOfCylinders;		/* Word 1 */
     77 	uint16_t Reserved1;				/* Word 2 */
     78 	uint16_t DefaultNumberOfHeads;			/* Word 3 */
     79 	uint16_t Obsolete1[2];				/* Word 4 */
     80 	uint16_t DefaultSectorsPerTrack;		/* Word 6 */
     81 	uint16_t SectorsPerCard[2];			/* Word 7 */
     82 	uint16_t Obsolete2;				/* Word 9 */
     83 	uint8_t  SerialNumber[20]; /* padded, right-justified Word 10 */
     84 	uint16_t Obsolete3[2];				/* Word 20 */
     85 	uint16_t EccBytesInRWLong;			/* Word 22 */
     86 	uint8_t  FirmwareRevision[8];			/* Word 23 */
     87 	uint8_t  ModelNumber[40];			/* Word 27 */
     88 	uint16_t SectorsInRWMultiple;			/* Word 47 */
     89 	uint16_t Reserved2;				/* Word 48 */
     90 	uint16_t Capabilities;				/* Word 49 */
     91 	uint16_t Reserved3;				/* Word 50 */
     92 	uint16_t PioMode;				/* Word 51 */
     93 	uint16_t Obsolete4;				/* Word 52 */
     94 	uint16_t FieldValidity;				/* Word 53 */
     95 	uint16_t CurrentNumberOfCylinders;		/* Word 54 */
     96 	uint16_t CurrentNumberOfHeads;			/* Word 55 */
     97 	uint16_t CurrentSectorsPerTrack;		/* Word 56 */
     98 	uint16_t CurrentCapacity[2];			/* Word 57 */
     99 	uint16_t MultiSectorSettings;			/* Word 59 */
    100 	uint16_t NumberOfAddressableSectors[2];		/* Word 60 */
    101 	uint16_t Reserved4;				/* Word 62 */
    102 	uint16_t MultiWordDmaTransfer;			/* Word 63 */
    103 	uint16_t AdvancedPioModes;			/* Word 64 */
    104 	uint16_t MinimumMultiWordDmaTiming;		/* Word 65 */
    105 	uint16_t RecommendedMultiWordDmaTiming;		/* Word 66 */
    106 	uint16_t PioTimingNoFlowControl;		/* Word 67 */
    107 	uint16_t PioTimingWithFlowControl;		/* Word 68 */
    108 	uint16_t Reserved5[13];				/* Word 69 */
    109 	uint16_t FeaturesSupported[3];			/* Word 82 */
    110 	uint16_t FeaturesEnabled[3];			/* Word 85 */
    111 	uint16_t UdmaMode;				/* Word 88 */
    112 	uint16_t SecurityEraseTime;			/* Word 89 */
    113 	uint16_t EnhancedSecurityEraseTime;		/* Word 90 */
    114 	uint16_t CurrentPowerManagementValue;		/* Word 91 */
    115 	uint8_t  Reserved6[72];				/* Word 92-127 */
    116 	uint8_t  SecondHalf[256];			/* Word 128-255 */
    117 } CFLASH_IDENTIFY, *PCFLASH_IDENTIFY;
    118 
    119 #define SIZEOF_IDENTIFY CF_SECTOR_SIZE /* must be a sector multiple */
    120 
    121 /* Instead of dragging in atavar.h.. */
    122 /*
    123  * Parameters/state needed by the controller to perform an ATA bio.
    124  */
    125 struct ace_bio {
    126 	volatile int flags;/* cmd flags */
    127 #define	ATA_POLL	0x0002	/* poll for completion */
    128 #define	ATA_SINGLE	0x0008	/* transfer must be done in singlesector mode */
    129 #define	ATA_READ	0x0020	/* transfer is a read (otherwise a write) */
    130 #define	ATA_CORR	0x0040	/* transfer had a corrected error */
    131 	daddr_t		blkno;	/* block addr */
    132 	daddr_t		blkdone;/* number of blks transferred */
    133 	size_t		nblks;	/* number of blocks currently transferring */
    134 	size_t		nbytes;	/* number of bytes currently transferring */
    135 	char		*databuf;/* data buffer address */
    136 	volatile int	error;
    137 #define	NOERROR		0	/* There was no error (r_error invalid),
    138 				   else see acedone()*/
    139 #define FAILED(er) (er != 0)
    140 #define EDOOFUS EIO
    141 
    142 	uint32_t	r_error;/* copy of status register */
    143 #ifdef HAS_BAD144_HANDLING
    144 	daddr_t		badsect[127];/* 126 plus trailing -1 marker */
    145 #endif
    146 };
    147 /* End of atavar.h*/
    148 
    149 struct ace_softc {
    150 	/* General disk infos */
    151 	device_t sc_dev;
    152 
    153 	struct disk sc_dk;
    154 	struct bufq_state *sc_q;
    155 	struct callout sc_restart_ch;
    156 
    157 	/* IDE disk soft states */
    158 	struct buf *sc_bp; /* buf being transfered */
    159 	struct buf *active_xfer; /* buf handoff to thread  */
    160 	/* current transfer data */
    161 	struct ace_bio sc_bio; /* current transfer */
    162 
    163 	struct proc *ch_thread;
    164 	int ch_flags;
    165 #define ATACH_SHUTDOWN 0x02        /* thread is shutting down */
    166 #define ATACH_IRQ_WAIT 0x10        /* thread is waiting for irq */
    167 #define ATACH_DISABLED 0x80        /* channel is disabled */
    168 #define ATACH_TH_RUN   0x100       /* the kernel thread is working */
    169 #define ATACH_TH_RESET 0x200       /* someone ask the thread to reset */
    170 
    171 	int openings;
    172 	int media_has_changed;
    173 #define    ACECE_MC    0x20    /* media changed */
    174 #define    ACECE_MCR   0x08    /* media change requested */
    175 	struct _CFLASH_IDENTIFY sc_params;/* drive characteristics found */
    176 
    177 	int sc_flags;
    178 #define	ACEF_WLABEL	0x004 /* label is writable */
    179 #define	ACEF_LABELLING	0x008 /* writing label */
    180 #define ACEF_LOADED	0x010 /* parameters loaded */
    181 #define ACEF_WAIT	0x020 /* waiting for resources */
    182 #define ACEF_KLABEL	0x080 /* retain label after 'full' close */
    183 
    184 	uint64_t sc_capacity;
    185 	uint32_t sc_multi; /* max sectors per xfer */
    186 
    187 	struct	_Sac   *sc_dr;		/* reg pointers */
    188 	int hw_busy;
    189 	int retries; /* number of xfer retry */
    190 
    191 	krndsource_t	rnd_source;
    192 };
    193 
    194 int  ace_ebus_match(device_t, cfdata_t, void *);
    195 void ace_ebus_attach(device_t, device_t, void *);
    196 void aceattach(struct ace_softc *);
    197 int	 acedetach(device_t, int);
    198 int	 aceactivate(device_t, enum devact);
    199 
    200 void  acedone(struct ace_softc *);
    201 static void ace_set_geometry(struct ace_softc *ace);
    202 
    203 CFATTACH_DECL_NEW(ace_ebus, sizeof(struct ace_softc),
    204     ace_ebus_match, ace_ebus_attach, acedetach, aceactivate);
    205 
    206 int  ace_ebus_intr(void *cookie, void *f);
    207 
    208 static void sysace_thread(void *arg);
    209 
    210 int
    211 ace_ebus_match(device_t parent, cfdata_t cf, void *aux)
    212 {
    213 	struct ebus_attach_args *d = aux;
    214 	struct _Sac *sac = (struct _Sac *)d->ia_vaddr;
    215 
    216 	if (strcmp("ace", d->ia_name) != 0)
    217 		return 0;
    218 	if ((sac == NULL) ||
    219 	    ((sac->Tag & SAC_TAG) != PMTTAG_SYSTEM_ACE))
    220 		return 0;
    221 	return 1;
    222 }
    223 
    224 void
    225 ace_ebus_attach(device_t parent, device_t self, void *aux)
    226 {
    227 	struct ace_softc *ace = device_private(self);
    228 	struct ebus_attach_args *ia = aux;
    229 	int error;
    230 
    231 	ace->sc_dev = self;
    232 
    233 	/*
    234 	 * It's on the baseboard, with a dedicated interrupt line.
    235 	 */
    236 	ace->sc_dr = (struct _Sac *)ia->ia_vaddr;
    237 #if DEBUG
    238 	printf(" virt=%p", (void*)ace->sc_dr);
    239 #endif
    240 	printf(" : System ACE\n");
    241 
    242 	ebus_intr_establish(parent, (void*)ia->ia_cookie, IPL_BIO,
    243 	    ace_ebus_intr, ace);
    244 
    245 	config_pending_incr(self);
    246 
    247 	error = kthread_create(PRI_NONE, 0, NULL, sysace_thread,
    248 	    ace, NULL, "%s", device_xname(ace->sc_dev));
    249 	if (error)
    250 		aprint_error_dev(ace->sc_dev, "unable to create kernel "
    251 		    "thread: error %d\n", error);
    252 }
    253 
    254 /*
    255  * Sysace driver I(af) wrote for FreeBsd.
    256  */
    257 #define CF_SECBITS     9
    258 #define CF_SECTOR_SIZE (1 << CF_SECBITS)
    259 
    260 static int sysace_attach(struct ace_softc *sc);
    261 static int sysace_reset(struct ace_softc *sc);
    262 static int sysace_identify(struct ace_softc *sc);
    263 static int sysace_lock_registers(struct ace_softc *sc);
    264 static int sysace_unlock_registers(struct ace_softc *sc);
    265 static int sysace_start(struct ace_softc *sc, uint32_t Command, uint32_t Lba,
    266 			uint32_t nSectors);
    267 static int sysace_validate(struct ace_softc *sc, daddr_t start, size_t *pSize);
    268 static int sysace_read_at (struct ace_softc *sc, daddr_t start_sector,
    269 			   char *buffer, size_t nblocks, size_t * pSizeRead);
    270 static int sysace_write_at(struct ace_softc *sc, daddr_t start_sector,
    271 			   char *buffer, size_t nblocks, size_t * pSizeWritten);
    272 #ifdef USE_ACE_FOR_RECONFIG /* Old code, despised and replaced by ICAP */
    273 static int sysace_send_config(struct ace_softc *sc,
    274                               uint32_t *Data, unsigned int nBytes);
    275 #endif
    276 
    277 #define DEBUG_INTR   0x01
    278 #define DEBUG_XFERS  0x02
    279 #define DEBUG_STATUS 0x04
    280 #define DEBUG_FUNCS  0x08
    281 #define DEBUG_PROBE  0x10
    282 #define DEBUG_WRITES 0x20
    283 #define DEBUG_READS  0x40
    284 #define DEBUG_ERRORS 0x80
    285 #ifdef DEBUG
    286 int ace_debug = DEBUG_ERRORS /*|DEBUG_WRITES*/;
    287 #define ACE_DEBUG(x) (ace_debug & (x))
    288 #define DBGME(_lev_,_x_) if ((_lev_) & ace_debug) _x_
    289 #else
    290 #define ACE_DEBUG(x) (0)
    291 #define DBGME(_lev_,_x_)
    292 #endif
    293 #define DEBUG_PRINT(_args_,_lev_) DBGME(_lev_,printf _args_)
    294 
    295 static int
    296 sysace_attach(struct ace_softc *sc)
    297 {
    298 	int error;
    299 
    300 	DBGME(DEBUG_FUNCS, printf("Sysace::delayed_attach %p\n", sc));
    301 
    302 	sc->media_has_changed = TRUE;
    303 	sc->sc_capacity = 0;
    304 
    305 	error = sysace_reset(sc);
    306 	if (error) {
    307 		device_printf(sc->sc_dev,
    308 		    "failed to reset, errno=%d\n", error);
    309 		goto Out;
    310 	}
    311 
    312 	error = sysace_identify(sc);
    313 	if (error) {
    314 		device_printf(sc->sc_dev,
    315 		    "failed to identify card, errno=%d.\n", error);
    316 		goto Out;
    317 	}
    318 
    319 	DBGME(DEBUG_PROBE, device_printf(sc->sc_dev,
    320 	    "Card has %qx sectors.\n", sc->sc_capacity));
    321 	if (sc->sc_capacity == 0) {
    322 		device_printf(sc->sc_dev, "size 0, no card? Wont work.\n");
    323 		error = EDOOFUS;
    324 		goto Out;
    325 	}
    326 
    327 	sc->media_has_changed = FALSE;
    328 Out:
    329 	return error;
    330 }
    331 
    332 static void
    333 sysace_wedges(void *arg);
    334 extern int	dkwedge_autodiscover;
    335 
    336 /*
    337  * Aux temp thread to avoid deadlock when doing
    338  * the partitio.. ahem wedges thing.
    339  */
    340 static void
    341 sysace_wedges(void *arg)
    342 {
    343 	struct ace_softc *sc = arg;
    344 
    345 	DBGME(DEBUG_STATUS, printf("Sysace::wedges started for %p\n", sc));
    346 
    347 	/* Discover wedges on this disk. */
    348 	dkwedge_autodiscover = 1;
    349 	dkwedge_discover(&sc->sc_dk);
    350 
    351 	config_pending_decr(sc->sc_dev);
    352 
    353 	DBGME(DEBUG_STATUS, printf("Sysace::thread done for %p\n", sc));
    354 	kthread_exit(0);
    355 }
    356 
    357 static void
    358 sysace_thread(void *arg)
    359 {
    360 	struct ace_softc *sc = arg;
    361 	struct buf *bp;
    362 	int s, error;
    363 
    364 	DBGME(DEBUG_STATUS, printf("Sysace::thread started for %p\n", sc));
    365 
    366 	s = splbio();
    367 	aceattach(sc);
    368 	splx(s);
    369 
    370 	error = kthread_create(PRI_NONE, 0 /* MPSAFE??? */, NULL,
    371 	    sysace_wedges, sc, NULL, "%s.wedges", device_xname(sc->sc_dev));
    372 	if (error)
    373 		aprint_error_dev(sc->sc_dev, "wedges: unable to create "
    374 		    "kernel thread: error %d\n", error);
    375 
    376 	DBGME(DEBUG_STATUS,
    377 	    printf("Sysace::thread service active for %p\n", sc));
    378 
    379 	s = splbio();
    380 	for (;;) {
    381 		/* Get next I/O request, wait if necessary */
    382 		if ((sc->ch_flags & (ATACH_TH_RESET | ATACH_SHUTDOWN)) == 0 &&
    383 		    (sc->active_xfer == NULL)) {
    384 			sc->ch_flags &= ~ATACH_TH_RUN;
    385 			(void) tsleep(&sc->ch_thread, PRIBIO, "aceth", 0);
    386 			sc->ch_flags |= ATACH_TH_RUN;
    387 		}
    388 		if (sc->ch_flags & ATACH_SHUTDOWN)
    389 			break;
    390 		bp = sc->active_xfer;
    391 		sc->active_xfer = NULL;
    392 		if (bp != NULL) {
    393 			size_t sz, bnow;
    394 
    395 			DBGME(DEBUG_XFERS,
    396 			    printf("Sysace::task %p %p %x %p %qx %d (%zd)\n",
    397 			    sc, bp, sc->sc_bio.flags, sc->sc_bio.databuf,
    398 			    sc->sc_bio.blkno, sc->sc_bio.nbytes,
    399 			    sc->sc_bio.nblks));
    400 
    401 			sc->sc_bio.error = 0;
    402 			for (; sc->sc_bio.nblks > 0;) {
    403 
    404 				bnow = sc->sc_bio.nblks;
    405 				if (sc->sc_bio.flags & ATA_SINGLE)
    406 					bnow = 1;
    407 
    408 				if (sc->sc_bio.flags & ATA_READ) {
    409 					sc->sc_bio.error =
    410 					    sysace_read_at(sc,
    411 					    sc->sc_bio.blkno,
    412 					    sc->sc_bio.databuf, bnow, &sz);
    413 				} else {
    414 					sc->sc_bio.error =
    415 					    sysace_write_at(sc,
    416 					    sc->sc_bio.blkno,
    417 					    sc->sc_bio.databuf, bnow, &sz);
    418 				}
    419 
    420 				if (FAILED(sc->sc_bio.error))
    421 					break;
    422 
    423 				sc->sc_bio.blkno += sz; /* in blocks */
    424 				sc->sc_bio.nblks -= sz;
    425 				sc->sc_bio.blkdone += sz;
    426 				sz = sz << CF_SECBITS; /* in bytes */
    427 				sc->sc_bio.databuf += sz;
    428 				sc->sc_bio.nbytes  -= sz;
    429 			}
    430 
    431 			acedone(sc);
    432 		}
    433 	}
    434 
    435 	splx(s);
    436 	sc->ch_thread = NULL;
    437 	wakeup(&sc->ch_flags);
    438 	kthread_exit(0);
    439 }
    440 
    441 /* Worker routines
    442  */
    443 #if _DEBUG
    444 typedef char *NAME;
    445 typedef struct _REGDESC {
    446 	NAME RegisterName;
    447 	NAME BitNames[32];
    448 } REGDESC, *PREGDESC;
    449 
    450 static void
    451 SysacePrintRegister(const REGDESC *Desc, uint32_t Value)
    452 {
    453 	int i;
    454 
    455 	printf("\t%s %x =", Desc->RegisterName, Value);
    456 	for (i = 31; i >= 0; i--) {
    457 		if (Value & (1 << i))
    458 			printf(" %s",
    459 			    (Desc->BitNames[i]) ? Desc->BitNames[i] : "?");
    460 	}
    461 	printf("\n");
    462 }
    463 
    464 static uint32_t
    465 SysaceDumpRegisters(struct _Sac *regs)
    466 {
    467 	const REGDESC Control_Names = {
    468 		"Control",
    469 		{
    470 			0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
    471 			"RST",		/* 0x00010000 */
    472 			"BUS8",		/* 0x00020000 */
    473 			"BUS16",	/* 0x00040000 */
    474 			"BUS32",	/* 0x00080000 */
    475 			"IRQ",		/* 0x00100000 */
    476 			"BRDY",		/* 0x00200000 */
    477 			"IMSK0",	/* 0x00400000 */
    478 			"IMSK1",	/* 0x00800000 */
    479 			"TD0",		/* 0x0f000000 */
    480 			"TD1",		/* 0x0f000000 */
    481 			"TD2",		/* 0x0f000000 */
    482 			"TD3",		/* 0x0f000000 */
    483 			"BUFW8",	/* 0x10000000 */
    484 			"BUFW16",	/* 0x20000000 */
    485 			"BUFW32",	/* 0x40000000 */
    486 			"DEBUG"		/* 0x80000000 */
    487 		}
    488 	};
    489 
    490 	const REGDESC STATUS_Names = {
    491 		"STATUS",
    492 		{
    493 			"CFGLOCK",	/* 0x00000001 */
    494 			"MPULOCK",	/* 0x00000002 */
    495 			"CFGERROR",	/* 0x00000004 */
    496 			"CFCERROR",	/* 0x00000008 */
    497 			"CFDETECT",	/* 0x00000010 */
    498 			"DATABUFRDY",	/* 0x00000020 */
    499 			"DATABUFWRITE",	/* 0x00000040 */
    500 			"CFGDONE",	/* 0x00000080 */
    501 			"RDYFORCFCMD",	/* 0x00000100 */
    502 			"CFGMODEPIN",	/* 0x00000200 */
    503 			0,0,0,
    504 			"CFGADDRPIN0",	/* 0x0000e000 */
    505 			"CFGADDRPIN1",	/* 0x0000e000 */
    506 			"CFGADDRPIN2",	/* 0x0000e000 */
    507 			0,
    508 			"CFBSY",	/* 0x00020000 */
    509 			"CFRDY",	/* 0x00040000 */
    510 			"CFDWF",	/* 0x00080000 */
    511 			"CFDSC",	/* 0x00100000 */
    512 			"CFDRQ",	/* 0x00200000 */
    513 			"CFCORR",	/* 0x00400000 */
    514 			"CFERR",	/* 0x00800000 */
    515 			0,
    516 		}
    517 	};
    518 
    519 	const REGDESC ERRORREG_Names = {
    520 		"ERRORREG",
    521 		{
    522 			"CARDRESETERR",	/* 0x00000001 */
    523 			"CARDRDYERR",	/* 0x00000002 */
    524 			"CARDREADERR",	/* 0x00000004 */
    525 			"CARDWRITEERR",	/* 0x00000008 */
    526 			"SECTORRDYERR",	/* 0x00000010 */
    527 			"CFGADDRERR",	/* 0x00000020 */
    528 			"CFGFAILED",	/* 0x00000040 */
    529 			"CFGREADERR",	/* 0x00000080 */
    530 			"CFGINSTRERR",	/* 0x00000100 */
    531 			"CFGINITERR",	/* 0x00000200 */
    532 			0,
    533 			"CFBBK",	/* 0x00000800 */
    534 			"CFUNC",	/* 0x00001000 */
    535 			"CFIDNF",	/* 0x00002000 */
    536 			"CFABORT",	/* 0x00004000 */
    537 			"CFAMNF",	/* 0x00008000 */
    538 			0,
    539 		}
    540 	};
    541 
    542 	const NAME CommandNames[8] = {
    543 		"0",			/* 0x0000 */
    544 		"RESETMEMCARD",		/* 0x0100 */
    545 		"IDENTIFYMEMCARD",	/* 0x0200 */
    546 		"READMEMCARDDATA",	/* 0x0300 */
    547 		"WRITEMEMCARDDATA",	/* 0x0400 */
    548 		"5",			/* 0x0500 */
    549 		"ABORT",		/* 0x0600 */
    550 		"7"			/* 0x0700 */
    551 	};
    552 
    553 	const REGDESC CONTROLREG_Names = {
    554 		"CONTROLREG",
    555 		{
    556 			"FORCELOCKREQ",	/* 0x00000001 */
    557 			"LOCKREQ",	/* 0x00000002 */
    558 			"FORCECFGADDR",	/* 0x00000004 */
    559 			"FORCECFGMODE",	/* 0x00000008 */
    560 			"CFGMODE",	/* 0x00000010 */
    561 			"CFGSTART",	/* 0x00000020 */
    562 			"CFGSEL_MPU",	/* 0x00000040 */
    563 			"CFGRESET",	/* 0x00000080 */
    564 			"DATABUFRDYIRQ",/* 0x00000100 */
    565 			"ERRORIRQ",	/* 0x00000200 */
    566 			"CFGDONEIRQ",	/* 0x00000400 */
    567 			"RESETIRQ",	/* 0x00000800 */
    568 			"CFGPROG",	/* 0x00001000 */
    569 			"CFGADDR_B0",	/* 0x00002000 */
    570 			"CFGADDR_B1",	/* 0x00004000 */
    571 			"CFGADDR_B2",	/* 0x00008000 */
    572 			0,
    573 		}
    574 	};
    575 
    576 	const REGDESC FATSTATREG_Names = {
    577 		"FATSTATREG",
    578 		{
    579 			"MBRVALID",	/* 0x00000001 */
    580 			"PBRVALID",	/* 0x00000002 */
    581 			"MBRFAT12",	/* 0x00000004 */
    582 			"PBRFAT12",	/* 0x00000008 */
    583 			"MBRFAT16",	/* 0x00000010 */
    584 			"PBRFAT16",	/* 0x00000020 */
    585 			"CALCFAT12",	/* 0x00000040 */
    586 			"CALCFAT16",	/* 0x00000080 */
    587 			0,
    588 		}
    589 	};
    590 
    591 	printf("Sysace@%p:\n", regs);
    592 	printf("\tTag %x\n", regs->Tag);
    593 	SysacePrintRegister(&Control_Names, regs->Control);
    594 	printf("\tBUSMODEREG %x\n", regs->BUSMODEREG);
    595 	SysacePrintRegister(&STATUS_Names, regs->STATUS);
    596 	SysacePrintRegister(&ERRORREG_Names, regs->ERRORREG);
    597 	printf("\tCFGLBAREG %x\n", regs->CFGLBAREG);
    598 	printf("\tMPULBAREG %x\n", regs->MPULBAREG);
    599 	printf("\tVERSIONREG %x\n", regs->VERSIONREG);
    600 	printf("\tSECCNTCMDREG %x = %s cnt=%d\n", regs->SECCNTCMDREG,
    601 	    CommandNames[(regs->SECCNTCMDREG >> 8) & 7],
    602 	    regs->SECCNTCMDREG & SAC_SECCCNT);
    603 	SysacePrintRegister(&CONTROLREG_Names, regs->CONTROLREG);
    604 	SysacePrintRegister(&FATSTATREG_Names, regs->FATSTATREG);
    605 
    606 	return 1;
    607 }
    608 
    609 #else
    610 #define SysaceDumpRegisters(_c_)
    611 #endif
    612 
    613 /*
    614  * Reset the device and the interface
    615  */
    616 static int
    617 sysace_reset(struct ace_softc *sc)
    618 {
    619 	struct _Sac *regs = sc->sc_dr;
    620 
    621 	DBGME(DEBUG_FUNCS, printf("Sysace::Reset %p\n", sc));
    622 
    623 	/* 16bit etc etc */
    624 	uint32_t BusMode, Control;
    625 
    626 	/* reset our interface */
    627 	regs->Control = SAC_RST;
    628 	DELAY(200);
    629 
    630 	/* repeat on both byte lanes */
    631 	regs->BUSMODEREG = SAC_MODE16 | (SAC_MODE16 << 8);
    632 	DELAY(1);
    633 
    634 	/* check what our interface does and what the SysACE expects */
    635 	Control = regs->Control;
    636 	BusMode = regs->BUSMODEREG;
    637 
    638 	/* get them to agree */
    639 	if (BusMode & SAC_MODE16) {
    640 		regs->Control = Control | SAC_BUS16;
    641 		regs->Control = regs->Control & ~SAC_BUS8;
    642 	} else {
    643 		regs->Control = Control | SAC_BUS8;
    644 		regs->Control = regs->Control & ~SAC_BUS16;
    645 	}
    646 
    647 	/* check that it worked */
    648 	BusMode = regs->BUSMODEREG;
    649 	Control = regs->Control;
    650 
    651 	if (((BusMode & SAC_MODE16) == 0) && ((Control & SAC_BUS8) == 0))
    652 		return EDOOFUS;
    653 	if (((BusMode & SAC_MODE16) > 0) && ((Control & SAC_BUS16) == 0))
    654 		return EDOOFUS;
    655 
    656 	/* interrupts off for now */
    657 	regs->Control &= ~SAC_INTMASK;
    658 #define SAC_INTERRUPTS (SAC_DATABUFRDYIRQ | SAC_ERRORIRQ /* | SAC_CFGDONEIRQ */)
    659 	Control = regs->CONTROLREG;
    660 	Control = (Control & ~SAC_INTERRUPTS) | SAC_RESETIRQ | SAC_FORCECFGMODE;
    661 	regs->CONTROLREG = Control;
    662 	regs->CONTROLREG = Control & ~SAC_RESETIRQ;
    663 
    664 	/* no command */
    665 	regs->MPULBAREG = 0;
    666 
    667 	return 0;
    668 }
    669 
    670 /*
    671  * Take control of the ACE datapath
    672  */
    673 static int
    674 sysace_lock_registers(struct ace_softc *sc)
    675 {
    676 	uint32_t Status;
    677 	int i;
    678 
    679 	DBGME(DEBUG_FUNCS, printf("Sysace::Lock %p\n", sc));
    680 
    681 	/*
    682 	 * Locked already?
    683 	 */
    684 	Status = sc->sc_dr->STATUS;
    685 	if (Status & SAC_MPULOCK)
    686 		return TRUE;
    687 
    688 	/*
    689 	 * Request lock
    690 	 */
    691 	sc->sc_dr->CONTROLREG |= SAC_LOCKREQ;
    692 
    693 	/*
    694 	 * Spin a bit until we get it
    695 	 */
    696 	for (i = 0; i < 200; i++) {
    697 		Status = sc->sc_dr->STATUS;
    698 		if (Status & SAC_MPULOCK)
    699 			return TRUE;
    700 		DELAY(100);
    701 		DBGME(DEBUG_FUNCS,
    702 		    printf("Sysace::Lock loops.. (st=%x)\n",Status));
    703 	}
    704 
    705 	/*
    706 	 * oopsie!
    707 	 */
    708 	DBGME(DEBUG_ERRORS, printf("Sysace::Lock timeout (st=%x)\n",Status));
    709 	SysaceDumpRegisters(sc->sc_dr);
    710 	return FALSE;
    711 }
    712 
    713 /*
    714  * Release control of the ACE datapath
    715  */
    716 static int
    717 sysace_unlock_registers(struct ace_softc *sc)
    718 {
    719 	uint32_t Status;
    720 	int i;
    721 
    722 	DBGME(DEBUG_FUNCS, printf("Sysace::Unlock %p\n", sc));
    723 
    724 	/*
    725 	 * Clear reset
    726 	 */
    727 	sc->sc_dr->CONTROLREG &= ~SAC_CFGRESET;
    728 
    729 	/*
    730 	 * Unlocked already?
    731 	 */
    732 	Status = sc->sc_dr->STATUS;
    733 	if ((Status & SAC_MPULOCK) == 0)
    734 		return TRUE;
    735 
    736 	/*
    737 	 * Request unlock
    738 	 */
    739 	sc->sc_dr->CONTROLREG &= ~SAC_LOCKREQ;
    740 
    741 	/*
    742 	 * Spin a bit until we get it
    743 	 */
    744 	for (i = 0; i < 200; i++) {
    745 		Status = sc->sc_dr->STATUS;
    746 		if ((Status & SAC_MPULOCK) == 0)
    747 			return TRUE;
    748 		DELAY(100);
    749 		DBGME(DEBUG_FUNCS,
    750 		    printf("Sysace::Unlock loops.. (st=%x)\n",Status));
    751 	}
    752 
    753 	/*
    754 	 * oopsie!
    755 	 */
    756 	DBGME(DEBUG_ERRORS, printf("Sysace::Unlock timeout (st=%x)\n",Status));
    757 	SysaceDumpRegisters(sc->sc_dr);
    758 	return FALSE;
    759 }
    760 
    761 /*
    762  * Check if the ACE is waiting for a comamnd
    763  */
    764 #define sysace_ready(_s_) ((_s_)->sc_dr->STATUS & SAC_RDYFORCFCMD)
    765 
    766 /*
    767  * Check if the ACE is executing a comamnd
    768  */
    769 #define sysace_busy(_s_) ((_s_)->sc_dr->STATUS & SAC_CFBSY)
    770 
    771 /*
    772  * Turn on interrupts from the ACE
    773  */
    774 #define sysace_inton(_s_) { \
    775 	(_s_)->sc_dr->CONTROLREG |= SAC_INTERRUPTS; \
    776 	(_s_)->sc_dr->Control |= SAC_INTMASK; \
    777 }
    778 
    779 /*
    780  * Turn off interrupts from the ACE
    781  */
    782 #define sysace_intoff(_s_) { \
    783 	(_s_)->sc_dr->CONTROLREG &= ~SAC_INTERRUPTS; \
    784 	(_s_)->sc_dr->Control &= ~SAC_INTMASK; \
    785 }
    786 
    787 /*
    788  * Start a command on the ACE, such as read or identify.
    789  */
    790 static int
    791 sysace_start(struct ace_softc *sc, uint32_t Command, uint32_t Lba,
    792     uint32_t nSectors)
    793 {
    794 
    795 	/*
    796 	 * Lock it if not already
    797 	 */
    798 	if (!sysace_lock_registers(sc)) {
    799 		/* printed already */
    800 		return ETIMEDOUT;
    801 	}
    802 
    803 	/*
    804 	 * Is there a CF inserted
    805 	 */
    806 	if (!(sc->sc_dr->STATUS & SAC_CFDETECT)) {
    807 		/* NB: Not a failure state */
    808 		DBGME(DEBUG_ERRORS,
    809 		    printf("Sysace:: no media (st=%x)\n", sc->sc_dr->STATUS));
    810 		if (sc->sc_capacity) {
    811 			sc->media_has_changed = TRUE;
    812 			sc->sc_capacity = 0;
    813 		}
    814 		return ENODEV;
    815 	}
    816 
    817 	/*
    818 	 * Is it ready for a command
    819 	 */
    820 	if (!sysace_ready(sc)) {
    821 		DBGME(DEBUG_ERRORS,
    822 		    printf("Sysace:: not ready (st=%x)\n", sc->sc_dr->STATUS));
    823 		SysaceDumpRegisters(sc->sc_dr);
    824 		return EBUSY;
    825 	}
    826 
    827 	/*
    828 	 * sector number and command
    829 	 */
    830 	sc->sc_dr->MPULBAREG = Lba;
    831 	sc->sc_dr->SECCNTCMDREG =
    832 	    (uint16_t)(Command | (nSectors & SAC_SECCCNT));
    833 
    834 	/*
    835 	 *  re-route the chip
    836 	 * NB: The "RESET" is actually not much of a misnomer.
    837 	 * The chip was designed for a one-shot execution at reset time,
    838 	 * namely loading the configuration data into the FPGA. So.
    839 	 */
    840 	sc->hw_busy = TRUE;
    841 	sc->sc_dr->CONTROLREG |= SAC_CFGRESET;
    842 	return 0;
    843 }
    844 
    845 /*
    846  * Identify the (size of the) CompactFlash card inserted in the slot.
    847  */
    848 static int
    849 sysace_identify(struct ace_softc *sc)
    850 {
    851 	PCFLASH_IDENTIFY Identify = &sc->sc_params;
    852 	uint32_t Status = 0;
    853 	int i, j, error;
    854 
    855 	DBGME(DEBUG_FUNCS, printf("Sysace::Identify %p\n", sc));
    856 
    857 	/*
    858 	 * Turn on interrupts before we start the command
    859 	 */
    860 	sysace_inton(sc); /* BUGBUG we should add polling mode (for dump too) */
    861 
    862 	/*
    863 	 * This will invalidate the ACE's current sector data
    864 	 */
    865 	sc->sc_capacity = 0;
    866 
    867 	/*
    868 	 * Get it going
    869 	 */
    870 	error = sysace_start(sc, SAC_CMD_IDENTIFYMEMCARD, 0, 1);
    871 
    872 	/*
    873 	 * Wait until its done
    874 	 */
    875 	if (!FAILED(error)) {
    876 
    877 		/* Might be called during autoconf, no interrupts */
    878 		if (cold) {
    879 			do {
    880 				DELAY(10);
    881 				Status = sc->sc_dr->STATUS;
    882 			} while ((Status &
    883 			    (SAC_DATABUFRDY|SAC_CFCERROR|SAC_CFGERROR)) == 0);
    884 		} else {
    885 			while (sc->hw_busy) {
    886 				DBGME(DEBUG_FUNCS,
    887 				    printf("Sysace:: cwait.. (st=%x)"
    888 				    " sizeof=%d\n",
    889 				    sc->sc_dr->STATUS, sizeof(*Identify)));
    890 				error = tsleep(&sc->media_has_changed, PRIBIO,
    891 				    "aceidfy", 0);
    892 			}
    893 		}
    894 
    895 		/*
    896 		 * Did it work?
    897 		 */
    898 		Status = sc->sc_dr->STATUS;
    899 
    900 		if (Status & SAC_DATABUFRDY) {
    901 
    902 			/*
    903 			 * Yes, pull out all the data.
    904 			 * NB: Until we do so the chip will not be ready for
    905 			 *     another command
    906 			 */
    907 			for (i = 0; i < sizeof(*Identify); i += 4) {
    908 
    909 				/*
    910 				 * Verify the (32-bytes) FIFO has reloaded
    911 				 */
    912 				for (j = 0; j < 10; j++) {
    913 					Status = sc->sc_dr->STATUS;
    914 					if (Status & SAC_DATABUFRDY)
    915 						break;
    916 					DELAY(10);
    917 				}
    918 				if (Status & SAC_DATABUFRDY) {
    919 					uint32_t Data32;
    920 
    921 					/*
    922 					 * This pulls two 16-bit words out of
    923 					 * the FIFO.
    924 					 * They are ordered in LE.
    925 					 * NB: Yes this is different from
    926 					 *     regular data accesses
    927 					 */
    928 					Data32 = sc->sc_dr->DATABUFREG[0];
    929 #if _BYTE_ORDER == _LITTLE_ENDIAN
    930 					/* all is fine */
    931 #else
    932 					Data32 =
    933 					    (Data32 >> 16) | (Data32 << 16);
    934 #endif
    935 					memcpy(((char *)Identify) + i,
    936 					    &Data32, 4);
    937 				} else {
    938 					/*
    939 					 * Ooops, what's going on here?
    940 					 */
    941 					DBGME(DEBUG_ERRORS,
    942 					    printf("Sysace::!DATABUFRDY %x\n",
    943 					    Status));
    944 					error = EIO;
    945 					break;
    946 				}
    947 			}
    948 
    949 			/*
    950 			 * Make sure we did ok and pick up the relevant info
    951 			 */
    952 			if (Status & SAC_DATABUFRDY) {
    953 				DBGME(DEBUG_XFERS,
    954 				    device_printf(sc->sc_dev,
    955 				    "model: %.40s/%.20s\n",
    956 				    Identify->ModelNumber,
    957 				    Identify->SerialNumber));
    958 				if (Identify->Signature == CFLASH_SIGNATURE) {
    959 					DBGME(DEBUG_PROBE,
    960 					    printf("Sysace::Card is"
    961 					    " %.40s::%.20s\n",
    962 					    Identify->ModelNumber,
    963 					    Identify->SerialNumber));
    964 
    965 					sc->sc_capacity =
    966 					    (Identify->SectorsPerCard[0] << 16)
    967 					    | Identify->SectorsPerCard[1];
    968 					DBGME(DEBUG_PROBE,
    969 					    printf("Sysace::sc_capacity x%qx\n",
    970 					    sc->sc_capacity));
    971 					ace_set_geometry(sc);
    972 				} else {
    973 					DBGME(DEBUG_ERRORS,
    974 					    printf("Sysace::Bad card signature?"
    975 					    " %x != %x\n",
    976 					    Identify->Signature,
    977 					    CFLASH_SIGNATURE));
    978 					sc->sc_capacity = 0;
    979 					error = ENXIO;
    980 				}
    981 			} else {
    982 				error = ETIMEDOUT;
    983 			}
    984 		} else {
    985 			/*
    986 			 * No, it did not work. Maybe there is no card inserted
    987 			 */
    988 			DBGME(DEBUG_ERRORS,
    989 			    printf("Sysace::Identify failed,"
    990 			    " missing CFLASH card?\n"));
    991 			SysaceDumpRegisters(sc->sc_dr);
    992 			/* BUGBUG Fix the error code accordingly */
    993 			error = ETIMEDOUT;
    994 		}
    995 	}
    996 
    997 	/* remember this jic */
    998 	sc->sc_bio.r_error = Status;
    999 
   1000 	/* Free the ACE for the JTAG, just in case */
   1001 	sysace_unlock_registers(sc);
   1002 
   1003 	/*
   1004 	 * Done
   1005 	 */
   1006 	return error;
   1007 }
   1008 
   1009 /*
   1010  * Common code for read&write argument validation
   1011  */
   1012 static int
   1013 sysace_validate(struct ace_softc *sc, daddr_t start, size_t *pSize)
   1014 {
   1015 	daddr_t Size;
   1016 
   1017 	/*
   1018 	 * Verify that we know the media size
   1019 	 */
   1020 	if (sc->sc_capacity == 0) {
   1021 		int error = sysace_identify(sc);
   1022 		if (FAILED(error))
   1023 			return error;
   1024 	}
   1025 
   1026 	/*
   1027 	 * Validate args
   1028 	 */
   1029 	if (start >= sc->sc_capacity) {
   1030 		*pSize = 0;
   1031 		DBGME(DEBUG_ERRORS,
   1032 		    printf("Sysace::ValidateArg(%qx) EOF\n", start));
   1033 		return E2BIG;
   1034 	}
   1035 
   1036 	/*
   1037 	 * Adjust size if necessary
   1038 	 */
   1039 	Size = start + *pSize;
   1040 	if (Size > sc->sc_capacity) {
   1041 		/*
   1042 		 * At most this many sectors
   1043 		 */
   1044 		Size = sc->sc_capacity - start;
   1045 		*pSize = (size_t)Size;
   1046 	}
   1047 
   1048 	DBGME(DEBUG_FUNCS,
   1049 	    printf("Sysace::Validate %qx %zd\n", start, *pSize));
   1050 	return 0;
   1051 }
   1052 
   1053 /* Read SIZE bytes from sysace device, at offset Position
   1054  */
   1055 uint32_t ace_maxatatime = 255;
   1056 #define MAXATATIME ace_maxatatime //255 /* BUGBUG test me on real hardware!! */
   1057 
   1058 static int
   1059 sysace_read_at(struct ace_softc *sc, daddr_t start_sector, char *buffer,
   1060     size_t nblocks, size_t *pSizeRead)
   1061 {
   1062 	int error;
   1063 	uint32_t BlocksThisTime;
   1064 	uint32_t Status = 0, SizeRead = 0;
   1065 	uint32_t i, j;
   1066 
   1067 	DBGME(DEBUG_XFERS|DEBUG_READS,
   1068 	    printf("SysaceReadAt(%p %qx %p %zd %p)\n",
   1069 	    sc, start_sector, buffer, nblocks, pSizeRead));
   1070 
   1071 	/*
   1072 	 * Validate & trim arguments
   1073 	 */
   1074 	error = sysace_validate(sc, start_sector, &nblocks);
   1075 
   1076 	/*
   1077 	 * Repeat until we are done or error
   1078 	 */
   1079 	while (error == 0) {
   1080 
   1081 		/*
   1082 		 * .. one bunch of sectors at a time
   1083 		 */
   1084 		BlocksThisTime = nblocks;
   1085 		if (BlocksThisTime > MAXATATIME)
   1086 			BlocksThisTime = MAXATATIME;
   1087 
   1088 		/*
   1089 		 * Yes, start a sector read
   1090 		 */
   1091 		sysace_inton(sc);
   1092 		error = sysace_start(sc,
   1093 		    SAC_CMD_READMEMCARDDATA,
   1094 		    (uint32_t)start_sector,  /* BUGBUG trims here, no warn. */
   1095 		    BlocksThisTime);
   1096 		/*
   1097 		 * And wait until done, if ok
   1098 		 */
   1099 		if (!FAILED(error)) {
   1100 			start_sector += BlocksThisTime;
   1101 			/* Might be called during autoconf, no interrupts */
   1102 			/* BUGBUG timeouts! */
   1103 			if (cold) {
   1104 				do {
   1105 					DELAY(10);
   1106 					Status = sc->sc_dr->STATUS;
   1107 				} while ((Status &
   1108 				    (SAC_DATABUFRDY|SAC_CFCERROR|SAC_CFGERROR))
   1109 				    == 0);
   1110 			} else {
   1111 				while (sc->hw_busy) {
   1112 					error = tsleep(&sc->media_has_changed,
   1113 					    PRIBIO, "aceread", 0);
   1114 				}
   1115 			}
   1116 		}
   1117 
   1118 		/*
   1119 		 * Are we doing ok
   1120 		 */
   1121 		if (!FAILED(error)) {
   1122 
   1123 		/*
   1124 		 * Get the data out of the ACE
   1125 		 */
   1126 			for (i = 0; i < (BlocksThisTime << CF_SECBITS);
   1127 			    i += 4) {
   1128 
   1129 				/*
   1130 				 * Make sure the FIFO is ready
   1131 				 */
   1132 				for (j = 0; j < 10; j++) {
   1133 					Status = sc->sc_dr->STATUS;
   1134 					if (Status & SAC_DATABUFRDY)
   1135 						break;
   1136 					DELAY(1000);
   1137 				}
   1138 
   1139 				/*
   1140 				 * Got it?
   1141 				 */
   1142 				if (Status & SAC_DATABUFRDY) {
   1143 					uint32_t Data32;
   1144 
   1145 					Data32 = sc->sc_dr->DATABUFREG[0];
   1146 					Data32 = le32toh(Data32);
   1147 					memcpy(buffer + i, &Data32, 4);
   1148 				} else {
   1149 					/*
   1150 					 * Ooops, get out of here
   1151 					 */
   1152 					DBGME(DEBUG_ERRORS,
   1153 					    printf("Sysace::READ timeout\n"));
   1154 					SysaceDumpRegisters(sc->sc_dr);
   1155 					error = ETIMEDOUT;
   1156 					break;
   1157 				}
   1158 			}
   1159 
   1160 			/*
   1161 			 * Still doing ok?
   1162 			 */
   1163 			if (!FAILED(error)) {
   1164 				nblocks   -= BlocksThisTime;
   1165 				SizeRead  += BlocksThisTime;
   1166 				buffer    += BlocksThisTime << CF_SECBITS;
   1167 			} else {
   1168 				/* remember this jic */
   1169 				sc->sc_bio.r_error = Status;
   1170 			}
   1171 		}
   1172 
   1173 		/* Free the ACE for the JTAG, just in case */
   1174 		sysace_unlock_registers(sc);
   1175 
   1176 		/*
   1177 		 * Are we done yet?
   1178 		 */
   1179 		if (nblocks == 0)
   1180 			break;
   1181 	}
   1182 
   1183 	if (pSizeRead)
   1184 		*pSizeRead = SizeRead;
   1185 	return error;
   1186 }
   1187 
   1188 /*
   1189  * Write SIZE bytes to device.
   1190  */
   1191 static int
   1192 sysace_write_at(struct ace_softc *sc, daddr_t start_sector, char *buffer,
   1193     size_t nblocks, size_t *pSizeWritten)
   1194 {
   1195 	int error;
   1196 	uint32_t BlocksThisTime;
   1197 	uint32_t Status = 0, SizeWritten = 0;
   1198 	uint32_t i, j;
   1199 
   1200 	DBGME(DEBUG_XFERS|DEBUG_WRITES,
   1201 	    printf("SysaceWriteAt(%p %qx %p %zd %p)\n",
   1202 	    sc, start_sector, buffer, nblocks, pSizeWritten));
   1203 
   1204 	/*
   1205 	 * Validate & trim arguments
   1206 	 */
   1207 	error = sysace_validate(sc, start_sector, &nblocks);
   1208 
   1209 	/*
   1210 	 * Repeat until we are done or error
   1211 	 */
   1212 	while (error == 0) {
   1213 
   1214 		/*
   1215 		 * .. one sector at a time
   1216 		 * BUGBUG Supposedly we can do up to 256 sectors?
   1217 		 */
   1218 		BlocksThisTime = nblocks;
   1219 		if (BlocksThisTime > MAXATATIME)
   1220 			BlocksThisTime = MAXATATIME;
   1221 
   1222 		/*
   1223 		 * Yes, start a sector write
   1224 		 */
   1225 		sysace_inton(sc);
   1226 		error = sysace_start(sc,
   1227 		    SAC_CMD_WRITEMEMCARDDATA,
   1228 		    (uint32_t)start_sector,  /* BUGBUG trims here, no warn. */
   1229 		    BlocksThisTime);
   1230 		/*
   1231 		 * And wait until done, if ok
   1232 		 */
   1233 		if (!FAILED(error)) {
   1234 			start_sector += BlocksThisTime;
   1235 			/* BUGBUG timeouts! */
   1236 			while (sc->hw_busy) {
   1237 				error = tsleep(&sc->media_has_changed,
   1238 				    PRIBIO, "acewrite", 0);
   1239 			}
   1240 		}
   1241 
   1242 		/*
   1243 		 * Are we doing ok
   1244 		 */
   1245 		if (!FAILED(error)) {
   1246 
   1247 			/*
   1248 			 * Get the data out to the ACE
   1249 			 */
   1250 			for (i = 0; i < (BlocksThisTime << CF_SECBITS);
   1251 			    i += 4) {
   1252 
   1253 				/*
   1254 				 * Make sure the FIFO is ready
   1255 				 */
   1256 				for (j = 0; j < 10; j++) {
   1257 					Status = sc->sc_dr->STATUS;
   1258 					if (Status & SAC_DATABUFRDY)
   1259 						break;
   1260 					DELAY(1000);
   1261 				}
   1262 
   1263 				/*
   1264 				 * Got it?
   1265 				 */
   1266 				if (Status & SAC_DATABUFRDY) {
   1267 					uint32_t Data32;
   1268 
   1269 					memcpy(&Data32, buffer + i, 4);
   1270 					Data32 = htole32(Data32);
   1271 					sc->sc_dr->DATABUFREG[0] = Data32;
   1272 				} else {
   1273 					/*
   1274 					 * Ooops, get out of here
   1275 					 */
   1276 					DBGME(DEBUG_ERRORS,
   1277 					    printf("Sysace::WRITE timeout\n"));
   1278 					SysaceDumpRegisters(sc->sc_dr);
   1279 					error = ETIMEDOUT;
   1280 					/* remember this jic */
   1281 					sc->sc_bio.r_error = Status;
   1282 					break;
   1283 				}
   1284 			}
   1285 
   1286 			/*
   1287 			 * Still doing ok?
   1288 			 */
   1289 			if (!FAILED(error)) {
   1290 				nblocks     -= BlocksThisTime;
   1291 				SizeWritten += BlocksThisTime;
   1292 				buffer      += BlocksThisTime << CF_SECBITS;
   1293 			}
   1294 		}
   1295 
   1296 		/*
   1297 		 * We need to wait until the device is ready for the
   1298 		 * next command
   1299 		 * Experimentation shows that it can take longer than 10msec.
   1300 		 */
   1301 		if (!FAILED(error)) {
   1302 			for (j = 0; j < 300; j++) {
   1303 				Status = sc->sc_dr->STATUS;
   1304 				if (Status & SAC_RDYFORCFCMD)
   1305 					break;
   1306 				(void)tsleep(&sc->media_has_changed,
   1307 				    PRIBIO, "acewrite", 2);
   1308 			}
   1309 			if (!(Status & SAC_RDYFORCFCMD)) {
   1310 				DBGME(DEBUG_ERRORS,
   1311 				    printf("Sysace::WRITE-COMPLETE timeout"
   1312 				    " St=%x\n", Status));
   1313 				SysaceDumpRegisters(sc->sc_dr);
   1314 				/*
   1315 				 * Ignore, we'll handle it the next time around
   1316 				 * BUGBUG To be revised along with non-existant
   1317 				 * error handling
   1318 				 */
   1319 			}
   1320 		}
   1321 
   1322 		/* Free the ACE for the JTAG, just in case */
   1323 		sysace_unlock_registers(sc);
   1324 
   1325 		/*
   1326 		 * Are we done yet?
   1327 		 */
   1328 		if (nblocks == 0)
   1329 			break;
   1330 	}
   1331 
   1332 	if (pSizeWritten)
   1333 		*pSizeWritten = SizeWritten;
   1334 	return error;
   1335 }
   1336 
   1337 int
   1338 ace_ebus_intr(void *cookie, void *f)
   1339 {
   1340 	struct ace_softc *sc = cookie;
   1341 	uint32_t Control;
   1342 
   1343 	/*
   1344 	 * Turn off interrupts and ACK them
   1345 	 */
   1346 	sysace_intoff(sc);
   1347 
   1348 	Control = sc->sc_dr->CONTROLREG & (~(SAC_RESETIRQ|SAC_INTERRUPTS));
   1349 	sc->sc_dr->CONTROLREG = Control | SAC_RESETIRQ;
   1350 	sc->sc_dr->CONTROLREG = Control;
   1351 
   1352 	/* ... read status and do whatever ... */
   1353 
   1354 	sc->hw_busy = FALSE;
   1355 	wakeup(&sc->media_has_changed);
   1356 	return 1;
   1357 }
   1358 
   1359 #ifdef USE_ACE_FOR_RECONFIG
   1360 static int
   1361 sysace_send_config(struct ace_softc *sc, uint32_t *Data, unsigned int nBytes)
   1362 {
   1363 	struct _Sac *Interface = sc->sc_dr;
   1364 	unsigned int i, j, nWords;
   1365 	uint32_t CtlWas;
   1366 	uint32_t Status;
   1367 
   1368 	CtlWas = Interface->CONTROLREG;
   1369 
   1370 	/* Set the bits but in RESET (pag 49-50 of specs)*/
   1371 #define CFGCMD (SAC_FORCELOCKREQ | SAC_LOCKREQ | SAC_CFGSEL | \
   1372 		SAC_FORCECFGMODE |/* SAC_CFGMODE |*/ SAC_CFGSTART)
   1373 
   1374 	Interface->CONTROLREG = CFGCMD | SAC_CFGRESET;
   1375 
   1376 	/* Take it out of RESET */
   1377 	Interface->CONTROLREG = CFGCMD;
   1378 
   1379 	/*
   1380 	 * Must wait till it says READY
   1381 	 * It can take a looong time
   1382 	 */
   1383 	for (j = 0; j < 1000; j++) {
   1384 		Status = Interface->STATUS;
   1385 		if (Status & SAC_RDYFORCFCMD)
   1386 			break;
   1387 		DELAY(1000);
   1388 	}
   1389 
   1390 	if (0 == (Status & SAC_RDYFORCFCMD)) {
   1391 		DBGME(DEBUG_ERRORS,
   1392 		    printf("Sysace::CMD error %x (j=%d)\n", Status, j));
   1393 		goto Error;
   1394 	}
   1395 
   1396 	/*
   1397 	 * Get the data out to the ACE
   1398 	 */
   1399 #define ACEROUNDUP 32
   1400 	nBytes = (nBytes + ACEROUNDUP - 1) & ~(ACEROUNDUP-1);
   1401 	nWords = (nBytes + 3) / 4;
   1402 	DBGME(DEBUG_FUNCS,
   1403 	    printf("Sending %d bytes (as %d words) to %p ",
   1404 	    nBytes, nWords, Interface));
   1405 	for (i = 0; i < nWords; i += 1/*word*/) {
   1406 
   1407 		/* Stop on errors */
   1408 		Status = Interface->ERRORREG;
   1409 		if (Status) {
   1410 			/*
   1411 			 * Ooops, get out of here
   1412 			 */
   1413 			DBGME(DEBUG_ERRORS,
   1414 			    printf("Sysace::CFG error %x (i=%d)\n", Status, i));
   1415 			goto Error;
   1416 		}
   1417 
   1418 		/*
   1419 		 * Make sure the FIFO is ready
   1420 		 */
   1421 		for (j = 0; j < 100; j++) {
   1422 			Status = Interface->STATUS;
   1423 			if (Status & SAC_DATABUFRDY)
   1424 				break;
   1425 			DELAY(1000);
   1426 		}
   1427 
   1428 		/*
   1429 		 * Got it?
   1430 		 */
   1431 		if (Status & SAC_DATABUFRDY) {
   1432 			uint32_t Data32;
   1433 
   1434 			Data32 = Data[i];
   1435 			Data32 = htole32(Data32);
   1436 			Interface->DATABUFREG[0] = Data32;
   1437 		} else {
   1438 			/*
   1439 			 * Ooops, get out of here
   1440 			 */
   1441 			DBGME(DEBUG_ERRORS,
   1442 			    printf("Sysace::WRITE timeout %x (i=%d)\n",
   1443 			    Status, i));
   1444 			goto Error;
   1445 		}
   1446 	}
   1447 	DBGME(DEBUG_FUNCS, printf("done ok.\n"));
   1448 
   1449 	/* Put it back the way it was (try to.. :-( )*/
   1450 	Interface->CONTROLREG = CtlWas;
   1451 	return 0;
   1452 
   1453  Error:
   1454 	SysaceDumpRegisters(Interface);
   1455 	Interface->CONTROLREG = CtlWas;
   1456 	return EIO;
   1457 }
   1458 #endif /* USE_ACE_FOR_RECONFIG */
   1459 
   1460 
   1461 /*
   1462  * Rest of code lifted with mods from the dev\ata\wd.c driver
   1463  */
   1464 
   1465 /*
   1466  * Copyright (c) 1998, 2001 Manuel Bouyer.  All rights reserved.
   1467  *
   1468  * Redistribution and use in source and binary forms, with or without
   1469  * modification, are permitted provided that the following conditions
   1470  * are met:
   1471  * 1. Redistributions of source code must retain the above copyright
   1472  *	notice, this list of conditions and the following disclaimer.
   1473  * 2. Redistributions in binary form must reproduce the above copyright
   1474  *	notice, this list of conditions and the following disclaimer in the
   1475  *	documentation and/or other materials provided with the distribution.
   1476  * 3. All advertising materials mentioning features or use of this software
   1477  *	must display the following acknowledgement:
   1478  *  This product includes software developed by Manuel Bouyer.
   1479  * 4. The name of the author may not be used to endorse or promote products
   1480  *	derived from this software without specific prior written permission.
   1481  *
   1482  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
   1483  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
   1484  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
   1485  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
   1486  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
   1487  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
   1488  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
   1489  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
   1490  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
   1491  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
   1492  */
   1493 
   1494 /*-
   1495  * Copyright (c) 1998, 2003, 2004 The NetBSD Foundation, Inc.
   1496  * All rights reserved.
   1497  *
   1498  * This code is derived from software contributed to The NetBSD Foundation
   1499  * by Charles M. Hannum and by Onno van der Linden.
   1500  *
   1501  * Redistribution and use in source and binary forms, with or without
   1502  * modification, are permitted provided that the following conditions
   1503  * are met:
   1504  * 1. Redistributions of source code must retain the above copyright
   1505  *    notice, this list of conditions and the following disclaimer.
   1506  * 2. Redistributions in binary form must reproduce the above copyright
   1507  *    notice, this list of conditions and the following disclaimer in the
   1508  *    documentation and/or other materials provided with the distribution.
   1509  * 3. All advertising materials mentioning features or use of this software
   1510  *    must display the following acknowledgement:
   1511  *        This product includes software developed by the NetBSD
   1512  *        Foundation, Inc. and its contributors.
   1513  * 4. Neither the name of The NetBSD Foundation nor the names of its
   1514  *    contributors may be used to endorse or promote products derived
   1515  *    from this software without specific prior written permission.
   1516  *
   1517  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
   1518  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
   1519  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
   1520  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
   1521  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
   1522  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
   1523  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
   1524  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
   1525  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
   1526  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
   1527  * POSSIBILITY OF SUCH DAMAGE.
   1528  */
   1529 
   1530 static const char ST506[] = "ST506";
   1531 
   1532 #define	ACEIORETRIES_SINGLE 4	/* number of retries before single-sector */
   1533 #define	ACEIORETRIES	5	/* number of retries before giving up */
   1534 #define	RECOVERYTIME hz/2	/* time to wait before retrying a cmd */
   1535 
   1536 #define	ACEUNIT(dev)		DISKUNIT(dev)
   1537 #define	ACEPART(dev)		DISKPART(dev)
   1538 #define	ACEMINOR(unit, part)	DISKMINOR(unit, part)
   1539 #define	MAKEACEDEV(maj, unit, part)	MAKEDISKDEV(maj, unit, part)
   1540 
   1541 #define	ACELABELDEV(dev)	(MAKEACEDEV(major(dev), ACEUNIT(dev), RAW_PART))
   1542 
   1543 void	aceperror(const struct ace_softc *);
   1544 
   1545 extern struct cfdriver ace_cd;
   1546 
   1547 dev_type_open(aceopen);
   1548 dev_type_close(aceclose);
   1549 dev_type_read(aceread);
   1550 dev_type_write(acewrite);
   1551 dev_type_ioctl(aceioctl);
   1552 dev_type_strategy(acestrategy);
   1553 dev_type_dump(acedump);
   1554 dev_type_size(acesize);
   1555 
   1556 const struct bdevsw ace_bdevsw = {
   1557 	.d_open = aceopen,
   1558 	.d_close = aceclose,
   1559 	.d_strategy = acestrategy,
   1560 	.d_ioctl = aceioctl,
   1561 	.d_dump = acedump,
   1562 	.d_psize = acesize,
   1563 	.d_discard = nodiscard,
   1564 	.d_flag = D_DISK
   1565 };
   1566 
   1567 const struct cdevsw ace_cdevsw = {
   1568 	.d_open = aceopen,
   1569 	.d_close = aceclose,
   1570 	.d_read = aceread,
   1571 	.d_write = acewrite,
   1572 	.d_ioctl = aceioctl,
   1573 	.d_stop = nostop,
   1574 	.d_tty = notty,
   1575 	.d_poll = nopoll,
   1576 	.d_mmap = nommap,
   1577 	.d_kqfilter = nokqfilter,
   1578 	.d_discard = nodiscard,
   1579 	.d_flag = D_DISK
   1580 };
   1581 
   1582 void  acegetdefaultlabel(struct ace_softc *, struct disklabel *);
   1583 void  acegetdisklabel(struct ace_softc *);
   1584 void  acestart(void *);
   1585 void  __acestart(struct ace_softc*, struct buf *);
   1586 void  acerestart(void *);
   1587 
   1588 struct dkdriver acedkdriver = { acestrategy, minphys };
   1589 
   1590 #ifdef HAS_BAD144_HANDLING
   1591 static void bad144intern(struct ace_softc *);
   1592 #endif
   1593 
   1594 void
   1595 aceattach(struct ace_softc *ace)
   1596 {
   1597 	device_t self = ace->sc_dev;
   1598 	char tbuf[41], pbuf[9], c, *p, *q;
   1599 	int i, blank;
   1600 	DEBUG_PRINT(("aceattach\n"), DEBUG_FUNCS | DEBUG_PROBE);
   1601 
   1602 	callout_init(&ace->sc_restart_ch, 0);
   1603 	bufq_alloc(&ace->sc_q, BUFQ_DISK_DEFAULT_STRAT, BUFQ_SORT_RAWBLOCK);
   1604 
   1605 	ace->openings = 1; /* wazziz?*/
   1606 	ace->sc_multi = MAXATATIME;
   1607 
   1608 	aprint_naive("\n");
   1609 
   1610 	/* setup all required fields so that if the attach fails we are ok */
   1611 	ace->sc_dk.dk_driver = &acedkdriver;
   1612 	ace->sc_dk.dk_name = device_xname(ace->sc_dev);
   1613 
   1614 	/* read our drive info */
   1615 	if (sysace_attach(ace) != 0) {
   1616 		aprint_error_dev(ace->sc_dev, "attach failed\n");
   1617 		return;
   1618 	}
   1619 
   1620 	aprint_normal_dev(ace->sc_dev, "drive supports %d-sector PIO xfers\n",
   1621 	    ace->sc_multi);
   1622 
   1623 	for (blank = 0, p = ace->sc_params.ModelNumber, q = tbuf, i = 0;
   1624 	    i < sizeof(ace->sc_params.ModelNumber); i++) {
   1625 		c = *p++;
   1626 		if (c == '\0')
   1627 			break;
   1628 		if (c != ' ') {
   1629 			if (blank) {
   1630 				*q++ = ' ';
   1631 				blank = 0;
   1632 			}
   1633 			*q++ = c;
   1634 		} else
   1635 			blank = 1;
   1636 	}
   1637 	*q++ = '\0';
   1638 
   1639 	aprint_normal_dev(ace->sc_dev, "card is <%s>\n", tbuf);
   1640 
   1641 	format_bytes(pbuf, sizeof(pbuf), ace->sc_capacity * DEV_BSIZE);
   1642 	aprint_normal("%s: %s, %d cyl, %d head, %d sec, "
   1643 	    "%d bytes/sect x %llu sectors\n",
   1644 	    device_xname(self), pbuf,
   1645 	    (int)(ace->sc_capacity /
   1646 	    (ace->sc_params.CurrentNumberOfHeads *
   1647 	    ace->sc_params.CurrentSectorsPerTrack)),
   1648 	    ace->sc_params.CurrentNumberOfHeads,
   1649 	    ace->sc_params.CurrentSectorsPerTrack,
   1650 	    DEV_BSIZE, (unsigned long long)ace->sc_capacity);
   1651 
   1652 	/*
   1653 	 * Attach the disk structure. We fill in dk_info later.
   1654 	 */
   1655 	disk_attach(&ace->sc_dk);
   1656 
   1657 	rnd_attach_source(&ace->rnd_source, device_xname(ace->sc_dev),
   1658 			  RND_TYPE_DISK, RND_FLAG_DEFAULT);
   1659 
   1660 }
   1661 
   1662 int
   1663 aceactivate(device_t self, enum devact act)
   1664 {
   1665 	int rv = 0;
   1666 
   1667 	switch (act) {
   1668 	case DVACT_DEACTIVATE:
   1669 		/*
   1670 		 * Nothing to do; we key off the device's DVF_ACTIVATE.
   1671 		 */
   1672 		break;
   1673 	default:
   1674 		rv = EOPNOTSUPP;
   1675 	}
   1676 	return rv;
   1677 }
   1678 
   1679 int
   1680 acedetach(device_t self, int flags)
   1681 {
   1682 	struct ace_softc *sc = device_private(self);
   1683 	int s, bmaj, cmaj, i, mn;
   1684 
   1685 	/* locate the major number */
   1686 	bmaj = bdevsw_lookup_major(&ace_bdevsw);
   1687 	cmaj = cdevsw_lookup_major(&ace_cdevsw);
   1688 
   1689 	/* Nuke the vnodes for any open instances. */
   1690 	for (i = 0; i < MAXPARTITIONS; i++) {
   1691 		mn = ACEMINOR(device_unit(self), i);
   1692 		vdevgone(bmaj, mn, mn, VBLK);
   1693 		vdevgone(cmaj, mn, mn, VCHR);
   1694 	}
   1695 
   1696 	/* Delete all of our wedges. */
   1697 	dkwedge_delall(&sc->sc_dk);
   1698 
   1699 	s = splbio();
   1700 
   1701 	/* Kill off any queued buffers. */
   1702 	bufq_drain(sc->sc_q);
   1703 
   1704 	bufq_free(sc->sc_q);
   1705 #if 0
   1706 	sc->atabus->ata_killpending(sc->drvp);
   1707 #endif
   1708 
   1709 	splx(s);
   1710 
   1711 	/* Detach disk. */
   1712 	disk_detach(&sc->sc_dk);
   1713 
   1714 	/* Unhook the entropy source. */
   1715 	rnd_detach_source(&sc->rnd_source);
   1716 
   1717 #if 0
   1718 	sc->drvp->drive_flags = 0; /* no drive any more here */
   1719 #endif
   1720 
   1721 	return 0;
   1722 }
   1723 
   1724 /*
   1725  * Read/write routine for a buffer.  Validates the arguments and schedules the
   1726  * transfer.  Does not wait for the transfer to complete.
   1727  */
   1728 void
   1729 acestrategy(struct buf *bp)
   1730 {
   1731 	struct ace_softc *ace;
   1732 	struct disklabel *lp;
   1733 	daddr_t blkno;
   1734 	int s;
   1735 
   1736 	ace = device_lookup_private(&ace_cd, ACEUNIT(bp->b_dev));
   1737 
   1738 	if (ace == NULL) {
   1739 		bp->b_error = ENXIO;
   1740 		biodone(bp);
   1741 		return;
   1742 	}
   1743 	lp = ace->sc_dk.dk_label;
   1744 
   1745 	DEBUG_PRINT(("acestrategy (%s) %lld\n",
   1746 	    device_xname(ace->sc_dev), bp->b_blkno), DEBUG_XFERS);
   1747 
   1748 	/* Valid request?  */
   1749 	if (bp->b_blkno < 0 ||
   1750 	    (bp->b_bcount % lp->d_secsize) != 0 ||
   1751 	    (bp->b_bcount / lp->d_secsize) >= (1 << NBBY)) {
   1752 		bp->b_error = EINVAL;
   1753 		goto done;
   1754 	}
   1755 
   1756 	/* If device invalidated (e.g. media change, door open), error. */
   1757 	if ((ace->sc_flags & ACEF_LOADED) == 0) {
   1758 		bp->b_error = EIO;
   1759 		goto done;
   1760 	}
   1761 
   1762 	/* If it's a null transfer, return immediately. */
   1763 	if (bp->b_bcount == 0)
   1764 		goto done;
   1765 
   1766 	/*
   1767 	 * Do bounds checking, adjust transfer. if error, process.
   1768 	 * If end of partition, just return.
   1769 	 */
   1770 	if (ACEPART(bp->b_dev) == RAW_PART) {
   1771 		if (bounds_check_with_mediasize(bp, DEV_BSIZE,
   1772 		    ace->sc_capacity) <= 0)
   1773 			goto done;
   1774 	} else {
   1775 		if (bounds_check_with_label(&ace->sc_dk, bp,
   1776 		    (ace->sc_flags & (ACEF_WLABEL|ACEF_LABELLING)) != 0) <= 0)
   1777 			goto done;
   1778 	}
   1779 
   1780 	/*
   1781 	 * Now convert the block number to absolute and put it in
   1782 	 * terms of the device's logical block size.
   1783 	 */
   1784 	if (lp->d_secsize >= DEV_BSIZE)
   1785 		blkno = bp->b_blkno / (lp->d_secsize / DEV_BSIZE);
   1786 	else
   1787 		blkno = bp->b_blkno * (DEV_BSIZE / lp->d_secsize);
   1788 
   1789 	if (ACEPART(bp->b_dev) != RAW_PART)
   1790 		blkno += lp->d_partitions[ACEPART(bp->b_dev)].p_offset;
   1791 
   1792 	bp->b_rawblkno = blkno;
   1793 
   1794 	/* Queue transfer on drive, activate drive and controller if idle. */
   1795 	s = splbio();
   1796 	bufq_put(ace->sc_q, bp);
   1797 	acestart(ace);
   1798 	splx(s);
   1799 	return;
   1800 done:
   1801 	/* Toss transfer; we're done early. */
   1802 	bp->b_resid = bp->b_bcount;
   1803 	biodone(bp);
   1804 }
   1805 
   1806 /*
   1807  * Queue a drive for I/O.
   1808  */
   1809 void
   1810 acestart(void *arg)
   1811 {
   1812 	struct ace_softc *ace = arg;
   1813 	struct buf *bp = NULL;
   1814 
   1815 	DEBUG_PRINT(("acestart %s\n", device_xname(ace->sc_dev)), DEBUG_XFERS);
   1816 	while (ace->openings > 0) {
   1817 
   1818 		/* Is there a buf for us ? */
   1819 		if ((bp = bufq_get(ace->sc_q)) == NULL)
   1820 			return;
   1821 
   1822 		/*
   1823 		 * Make the command. First lock the device
   1824 		 */
   1825 		ace->openings--;
   1826 
   1827 		ace->retries = 0;
   1828 		__acestart(ace, bp);
   1829 	}
   1830 }
   1831 
   1832 void
   1833 __acestart(struct ace_softc *sc, struct buf *bp)
   1834 {
   1835 
   1836 	sc->sc_bp = bp;
   1837 	/*
   1838 	 * If we're retrying, retry in single-sector mode. This will give us
   1839 	 * the sector number of the problem, and will eventually allow the
   1840 	 * transfer to succeed.
   1841 	 */
   1842 	if (sc->retries >= ACEIORETRIES_SINGLE)
   1843 		sc->sc_bio.flags = ATA_SINGLE;
   1844 	else
   1845 		sc->sc_bio.flags = 0;
   1846 	if (bp->b_flags & B_READ)
   1847 		sc->sc_bio.flags |= ATA_READ;
   1848 	sc->sc_bio.blkno = bp->b_rawblkno;
   1849 	sc->sc_bio.blkdone = 0;
   1850 	sc->sc_bio.nbytes = bp->b_bcount;
   1851 	sc->sc_bio.nblks  = bp->b_bcount >> CF_SECBITS;
   1852 	sc->sc_bio.databuf = bp->b_data;
   1853 	/* Instrumentation. */
   1854 	disk_busy(&sc->sc_dk);
   1855 	sc->active_xfer = bp;
   1856 	wakeup(&sc->ch_thread);
   1857 }
   1858 
   1859 void
   1860 acedone(struct ace_softc *ace)
   1861 {
   1862 	struct buf *bp = ace->sc_bp;
   1863 	const char *errmsg;
   1864 	int do_perror = 0;
   1865 
   1866 	DEBUG_PRINT(("acedone %s\n", device_xname(ace->sc_dev)), DEBUG_XFERS);
   1867 
   1868 	if (bp == NULL)
   1869 		return;
   1870 
   1871 	bp->b_resid = ace->sc_bio.nbytes;
   1872 	switch (ace->sc_bio.error) {
   1873 	case ETIMEDOUT:
   1874 		errmsg = "device timeout";
   1875 	do_perror = 1;
   1876 		goto retry;
   1877 	case EBUSY:
   1878 	case EDOOFUS:
   1879 		errmsg = "device stuck";
   1880 retry:		/* Just reset and retry. Can we do more ? */
   1881 		sysace_reset(ace);
   1882 		diskerr(bp, "ace", errmsg, LOG_PRINTF,
   1883 		    ace->sc_bio.blkdone, ace->sc_dk.dk_label);
   1884 		if (ace->retries < ACEIORETRIES)
   1885 			printf(", retrying");
   1886 		printf("\n");
   1887 		if (do_perror)
   1888 			aceperror(ace);
   1889 		if (ace->retries < ACEIORETRIES) {
   1890 			ace->retries++;
   1891 			callout_reset(&ace->sc_restart_ch, RECOVERYTIME,
   1892 			    acerestart, ace);
   1893 			return;
   1894 		}
   1895 
   1896 		bp->b_error = EIO;
   1897 		break;
   1898 	case 0:
   1899 		if ((ace->sc_bio.flags & ATA_CORR) || ace->retries > 0)
   1900 			printf("%s: soft error (corrected)\n",
   1901 			    device_xname(ace->sc_dev));
   1902 		break;
   1903 	case ENODEV:
   1904 	case E2BIG:
   1905 		bp->b_error = EIO;
   1906 		break;
   1907 	}
   1908 	disk_unbusy(&ace->sc_dk, (bp->b_bcount - bp->b_resid),
   1909 	    (bp->b_flags & B_READ));
   1910 	rnd_add_uint32(&ace->rnd_source, bp->b_blkno);
   1911 	biodone(bp);
   1912 	ace->openings++;
   1913 	acestart(ace);
   1914 }
   1915 
   1916 void
   1917 acerestart(void *v)
   1918 {
   1919 	struct ace_softc *ace = v;
   1920 	struct buf *bp = ace->sc_bp;
   1921 	int s;
   1922 	DEBUG_PRINT(("acerestart %s\n",
   1923 	    device_xname(ace->sc_dev)), DEBUG_XFERS);
   1924 
   1925 	s = splbio();
   1926 	__acestart(v, bp);
   1927 	splx(s);
   1928 }
   1929 
   1930 int
   1931 aceread(dev_t dev, struct uio *uio, int flags)
   1932 {
   1933 	int r;
   1934 
   1935 	DEBUG_PRINT(("aceread\n"), DEBUG_XFERS);
   1936 	r = physio(acestrategy, NULL, dev, B_READ, minphys, uio);
   1937 	DEBUG_PRINT(("aceread -> x%x resid=%x\n",r,uio->uio_resid),DEBUG_XFERS);
   1938 
   1939 	return r;
   1940 }
   1941 
   1942 int
   1943 acewrite(dev_t dev, struct uio *uio, int flags)
   1944 {
   1945 
   1946 	DEBUG_PRINT(("acewrite\n"), DEBUG_XFERS);
   1947 	return physio(acestrategy, NULL, dev, B_WRITE, minphys, uio);
   1948 }
   1949 
   1950 int
   1951 aceopen(dev_t dev, int flag, int fmt, struct lwp *l)
   1952 {
   1953 	struct ace_softc *ace;
   1954 	int part, error;
   1955 
   1956 	DEBUG_PRINT(("aceopen\n"), DEBUG_FUNCS);
   1957 	ace = device_lookup_private(&ace_cd, ACEUNIT(dev));
   1958 	if (ace == NULL)
   1959 		return ENXIO;
   1960 
   1961 	if (! device_is_active(ace->sc_dev))
   1962 		return ENODEV;
   1963 
   1964 	part = ACEPART(dev);
   1965 
   1966 	mutex_enter(&ace->sc_dk.dk_openlock);
   1967 
   1968 	/*
   1969 	 * If there are wedges, and this is not RAW_PART, then we
   1970 	 * need to fail.
   1971 	 */
   1972 	if (ace->sc_dk.dk_nwedges != 0 && part != RAW_PART) {
   1973 		error = EBUSY;
   1974 		goto bad;
   1975 	}
   1976 
   1977 	if (ace->sc_dk.dk_openmask != 0) {
   1978 		/*
   1979 		 * If any partition is open, but the disk has been invalidated,
   1980 		 * disallow further opens.
   1981 		 */
   1982 		if ((ace->sc_flags & ACEF_LOADED) == 0) {
   1983 			error = EIO;
   1984 			goto bad;
   1985 		}
   1986 	} else {
   1987 		if ((ace->sc_flags & ACEF_LOADED) == 0) {
   1988 			ace->sc_flags |= ACEF_LOADED;
   1989 
   1990 			/* Load the physical device parameters. */
   1991 			if (ace->sc_capacity == 0) {
   1992 				error = sysace_identify(ace);
   1993 				if (error)
   1994 					goto bad;
   1995 			}
   1996 
   1997 			/* Load the partition info if not already loaded. */
   1998 			acegetdisklabel(ace);
   1999 		}
   2000 	}
   2001 
   2002 	/* Check that the partition exists. */
   2003 	if (part != RAW_PART &&
   2004 	    (part >= ace->sc_dk.dk_label->d_npartitions ||
   2005 	     ace->sc_dk.dk_label->d_partitions[part].p_fstype == FS_UNUSED)) {
   2006 		error = ENXIO;
   2007 		goto bad;
   2008 	}
   2009 
   2010 	/* Insure only one open at a time. */
   2011 	switch (fmt) {
   2012 	case S_IFCHR:
   2013 		ace->sc_dk.dk_copenmask |= (1 << part);
   2014 		break;
   2015 	case S_IFBLK:
   2016 		ace->sc_dk.dk_bopenmask |= (1 << part);
   2017 		break;
   2018 	}
   2019 	ace->sc_dk.dk_openmask =
   2020 	    ace->sc_dk.dk_copenmask | ace->sc_dk.dk_bopenmask;
   2021 
   2022 	mutex_exit(&ace->sc_dk.dk_openlock);
   2023 	return 0;
   2024 
   2025  bad:
   2026 	mutex_exit(&ace->sc_dk.dk_openlock);
   2027 	return error;
   2028 }
   2029 
   2030 int
   2031 aceclose(dev_t dev, int flag, int fmt, struct lwp *l)
   2032 {
   2033 	struct ace_softc *ace = device_lookup_private(&ace_cd, ACEUNIT(dev));
   2034 	int part = ACEPART(dev);
   2035 
   2036 	DEBUG_PRINT(("aceclose\n"), DEBUG_FUNCS);
   2037 	if (ace == NULL)
   2038 		return ENXIO;
   2039 
   2040 	mutex_enter(&ace->sc_dk.dk_openlock);
   2041 
   2042 	switch (fmt) {
   2043 	case S_IFCHR:
   2044 		ace->sc_dk.dk_copenmask &= ~(1 << part);
   2045 		break;
   2046 	case S_IFBLK:
   2047 		ace->sc_dk.dk_bopenmask &= ~(1 << part);
   2048 		break;
   2049 	}
   2050 	ace->sc_dk.dk_openmask =
   2051 	    ace->sc_dk.dk_copenmask | ace->sc_dk.dk_bopenmask;
   2052 
   2053 	if (ace->sc_dk.dk_openmask == 0) {
   2054 
   2055 		if (!(ace->sc_flags & ACEF_KLABEL))
   2056 			ace->sc_flags &= ~ACEF_LOADED;
   2057 
   2058 	}
   2059 
   2060 	mutex_exit(&ace->sc_dk.dk_openlock);
   2061 	return 0;
   2062 }
   2063 
   2064 void
   2065 acegetdefaultlabel(struct ace_softc *ace, struct disklabel *lp)
   2066 {
   2067 
   2068 	DEBUG_PRINT(("acegetdefaultlabel\n"), DEBUG_FUNCS);
   2069 	memset(lp, 0, sizeof(struct disklabel));
   2070 
   2071 	lp->d_secsize = DEV_BSIZE;
   2072 	lp->d_ntracks = ace->sc_params.CurrentNumberOfHeads;
   2073 	lp->d_nsectors = ace->sc_params.CurrentSectorsPerTrack;
   2074 	lp->d_ncylinders = ace->sc_capacity /
   2075 	    (ace->sc_params.CurrentNumberOfHeads *
   2076 	     ace->sc_params.CurrentSectorsPerTrack);
   2077 	lp->d_secpercyl = lp->d_ntracks * lp->d_nsectors;
   2078 
   2079 	lp->d_type = DTYPE_ST506; /* ?!? */
   2080 
   2081 	strncpy(lp->d_typename, ace->sc_params.ModelNumber, 16);
   2082 	strncpy(lp->d_packname, "fictitious", 16);
   2083 	if (ace->sc_capacity > UINT32_MAX)
   2084 		lp->d_secperunit = UINT32_MAX;
   2085 	else
   2086 		lp->d_secperunit = ace->sc_capacity;
   2087 	lp->d_rpm = 3600;
   2088 	lp->d_interleave = 1;
   2089 	lp->d_flags = 0;
   2090 
   2091 	lp->d_partitions[RAW_PART].p_offset = 0;
   2092 	lp->d_partitions[RAW_PART].p_size =
   2093 	    lp->d_secperunit * (lp->d_secsize / DEV_BSIZE);
   2094 	lp->d_partitions[RAW_PART].p_fstype = FS_UNUSED;
   2095 	lp->d_npartitions = RAW_PART + 1;
   2096 
   2097 	lp->d_magic = DISKMAGIC;
   2098 	lp->d_magic2 = DISKMAGIC;
   2099 	lp->d_checksum = dkcksum(lp);
   2100 }
   2101 
   2102 /*
   2103  * Fabricate a default disk label, and try to read the correct one.
   2104  */
   2105 void
   2106 acegetdisklabel(struct ace_softc *ace)
   2107 {
   2108 	struct disklabel *lp = ace->sc_dk.dk_label;
   2109 	const char *errstring;
   2110 
   2111 	DEBUG_PRINT(("acegetdisklabel\n"), DEBUG_FUNCS);
   2112 
   2113 	memset(ace->sc_dk.dk_cpulabel, 0, sizeof(struct cpu_disklabel));
   2114 
   2115 	acegetdefaultlabel(ace, lp);
   2116 
   2117 #ifdef HAS_BAD144_HANDLING
   2118 	ace->sc_bio.badsect[0] = -1;
   2119 #endif
   2120 
   2121 	errstring = readdisklabel(MAKEACEDEV(0, device_unit(ace->sc_dev),
   2122 				  RAW_PART), acestrategy, lp,
   2123 				  ace->sc_dk.dk_cpulabel);
   2124 	if (errstring) {
   2125 		printf("%s: %s\n", device_xname(ace->sc_dev), errstring);
   2126 		return;
   2127 	}
   2128 
   2129 #if DEBUG
   2130 	if (ACE_DEBUG(DEBUG_WRITES)) {
   2131 		int i, n = ace->sc_dk.dk_label->d_npartitions;
   2132 		printf("%s: %d parts\n", device_xname(ace->sc_dev), n);
   2133 		for (i = 0; i < n; i++) {
   2134 			printf("\t[%d]: t=%x s=%d o=%d\n", i,
   2135 			    ace->sc_dk.dk_label->d_partitions[i].p_fstype,
   2136 			    ace->sc_dk.dk_label->d_partitions[i].p_size,
   2137 			    ace->sc_dk.dk_label->d_partitions[i].p_offset);
   2138 		}
   2139 	}
   2140 #endif
   2141 
   2142 #ifdef HAS_BAD144_HANDLING
   2143 	if ((lp->d_flags & D_BADSECT) != 0)
   2144 		bad144intern(ace);
   2145 #endif
   2146 }
   2147 
   2148 void
   2149 aceperror(const struct ace_softc *ace)
   2150 {
   2151 	const char *devname = device_xname(ace->sc_dev);
   2152 	uint32_t Status = ace->sc_bio.r_error;
   2153 
   2154 	printf("%s: (", devname);
   2155 
   2156 	if (Status == 0)
   2157 		printf("error not notified");
   2158 	else
   2159 		printf("status=x%x", Status);
   2160 
   2161 	printf(")\n");
   2162 }
   2163 
   2164 int
   2165 aceioctl(dev_t dev, u_long xfer, void *addr, int flag, struct lwp *l)
   2166 {
   2167 	struct ace_softc *ace = device_lookup_private(&ace_cd, ACEUNIT(dev));
   2168 	int error = 0, s;
   2169 
   2170 	DEBUG_PRINT(("aceioctl\n"), DEBUG_FUNCS);
   2171 
   2172 	if ((ace->sc_flags & ACEF_LOADED) == 0)
   2173 		return EIO;
   2174 
   2175 	error = disk_ioctl(&ace->sc_dk, xfer, addr, flag, l);
   2176 	if (error != EPASSTHROUGH)
   2177 		return error;
   2178 
   2179 	switch (xfer) {
   2180 #ifdef HAS_BAD144_HANDLING
   2181 	case DIOCSBAD:
   2182 		if ((flag & FWRITE) == 0)
   2183 			return EBADF;
   2184 		ace->sc_dk.dk_cpulabel->bad = *(struct dkbad *)addr;
   2185 		ace->sc_dk.dk_label->d_flags |= D_BADSECT;
   2186 		bad144intern(ace);
   2187 		return 0;
   2188 #endif
   2189 	case DIOCGDINFO:
   2190 		*(struct disklabel *)addr = *(ace->sc_dk.dk_label);
   2191 		return 0;
   2192 
   2193 	case DIOCGPART:
   2194 		((struct partinfo *)addr)->disklab = ace->sc_dk.dk_label;
   2195 		((struct partinfo *)addr)->part =
   2196 		    &ace->sc_dk.dk_label->d_partitions[ACEPART(dev)];
   2197 		return 0;
   2198 
   2199 	case DIOCWDINFO:
   2200 	case DIOCSDINFO:
   2201 	{
   2202 		struct disklabel *lp;
   2203 
   2204 		if ((flag & FWRITE) == 0)
   2205 			return EBADF;
   2206 
   2207 		lp = (struct disklabel *)addr;
   2208 
   2209 		mutex_enter(&ace->sc_dk.dk_openlock);
   2210 		ace->sc_flags |= ACEF_LABELLING;
   2211 
   2212 		error = setdisklabel(ace->sc_dk.dk_label,
   2213 		    lp, /*ace->sc_dk.dk_openmask : */0,
   2214 		    ace->sc_dk.dk_cpulabel);
   2215 		if (error == 0) {
   2216 			if (xfer == DIOCWDINFO)
   2217 				error = writedisklabel(ACELABELDEV(dev),
   2218 				    acestrategy, ace->sc_dk.dk_label,
   2219 				    ace->sc_dk.dk_cpulabel);
   2220 		}
   2221 
   2222 		ace->sc_flags &= ~ACEF_LABELLING;
   2223 		mutex_exit(&ace->sc_dk.dk_openlock);
   2224 		return error;
   2225 	}
   2226 
   2227 	case DIOCKLABEL:
   2228 		if (*(int *)addr)
   2229 			ace->sc_flags |= ACEF_KLABEL;
   2230 		else
   2231 			ace->sc_flags &= ~ACEF_KLABEL;
   2232 		return 0;
   2233 
   2234 	case DIOCWLABEL:
   2235 		if ((flag & FWRITE) == 0)
   2236 			return EBADF;
   2237 		if (*(int *)addr)
   2238 			ace->sc_flags |= ACEF_WLABEL;
   2239 		else
   2240 			ace->sc_flags &= ~ACEF_WLABEL;
   2241 		return 0;
   2242 
   2243 	case DIOCGDEFLABEL:
   2244 		acegetdefaultlabel(ace, (struct disklabel *)addr);
   2245 		return 0;
   2246 
   2247 	case DIOCCACHESYNC:
   2248 		return 0;
   2249 
   2250 	case DIOCAWEDGE:
   2251 	    {
   2252 		struct dkwedge_info *dkw = (void *) addr;
   2253 
   2254 		if ((flag & FWRITE) == 0)
   2255 			return EBADF;
   2256 
   2257 		/* If the ioctl happens here, the parent is us. */
   2258 		strcpy(dkw->dkw_parent, device_xname(ace->sc_dev));
   2259 		return dkwedge_add(dkw);
   2260 	    }
   2261 
   2262 	case DIOCDWEDGE:
   2263 	    {
   2264 		struct dkwedge_info *dkw = (void *) addr;
   2265 
   2266 		if ((flag & FWRITE) == 0)
   2267 			return EBADF;
   2268 
   2269 		/* If the ioctl happens here, the parent is us. */
   2270 		strcpy(dkw->dkw_parent, device_xname(ace->sc_dev));
   2271 		return dkwedge_del(dkw);
   2272 	    }
   2273 
   2274 	case DIOCLWEDGES:
   2275 	    {
   2276 		struct dkwedge_list *dkwl = (void *) addr;
   2277 
   2278 		return dkwedge_list(&ace->sc_dk, dkwl, l);
   2279 	    }
   2280 
   2281 	case DIOCGSTRATEGY:
   2282 	    {
   2283 		struct disk_strategy *dks = (void *)addr;
   2284 
   2285 		s = splbio();
   2286 		strlcpy(dks->dks_name, bufq_getstrategyname(ace->sc_q),
   2287 		    sizeof(dks->dks_name));
   2288 		splx(s);
   2289 		dks->dks_paramlen = 0;
   2290 
   2291 		return 0;
   2292 	    }
   2293 
   2294 	case DIOCSSTRATEGY:
   2295 	    {
   2296 		struct disk_strategy *dks = (void *)addr;
   2297 		struct bufq_state *new;
   2298 		struct bufq_state *old;
   2299 
   2300 		if ((flag & FWRITE) == 0) {
   2301 			return EBADF;
   2302 		}
   2303 		if (dks->dks_param != NULL) {
   2304 			return EINVAL;
   2305 		}
   2306 		dks->dks_name[sizeof(dks->dks_name) - 1] = 0; /* ensure term */
   2307 		error = bufq_alloc(&new, dks->dks_name,
   2308 		    BUFQ_EXACT|BUFQ_SORT_RAWBLOCK);
   2309 		if (error) {
   2310 			return error;
   2311 		}
   2312 		s = splbio();
   2313 		old = ace->sc_q;
   2314 		bufq_move(new, old);
   2315 		ace->sc_q = new;
   2316 		splx(s);
   2317 		bufq_free(old);
   2318 
   2319 		return 0;
   2320 	    }
   2321 
   2322 #ifdef USE_ACE_FOR_RECONFIG
   2323 	/*
   2324 	 * Ok, how do I get this standardized
   2325 	 * [nothing to do with disks either]
   2326 	 */
   2327 #define DIOC_FPGA_RECONFIGURE _IOW('d',166, struct ioctl_pt)
   2328 	case DIOC_FPGA_RECONFIGURE:
   2329 	    {
   2330 		/*
   2331 		 * BUGBUG This is totally wrong, we need to fault in
   2332 		 * all data in advance.
   2333 		 * Otherwise we get back here with the sysace in a bad state
   2334 		 * (its NOT reentrant!)
   2335 		 */
   2336 		struct ioctl_pt *pt = (struct ioctl_pt *)addr;
   2337 		return sysace_send_config(ace,(uint32_t*)pt->data,pt->com);
   2338 	    }
   2339 #endif /* USE_ACE_FOR_RECONFIG */
   2340 
   2341 	default:
   2342 		/*
   2343 		 * NB: we get a DIOCGWEDGEINFO, but nobody else handles it
   2344 		 * either
   2345 		 */
   2346 		DEBUG_PRINT(("aceioctl: unsup x%lx\n", xfer), DEBUG_FUNCS);
   2347 		return ENOTTY;
   2348 	}
   2349 }
   2350 
   2351 int
   2352 acesize(dev_t dev)
   2353 {
   2354 	struct ace_softc *ace;
   2355 	int part, omask;
   2356 	int size;
   2357 
   2358 	DEBUG_PRINT(("acesize\n"), DEBUG_FUNCS);
   2359 
   2360 	ace = device_lookup_private(&ace_cd, ACEUNIT(dev));
   2361 	if (ace == NULL)
   2362 		return -1;
   2363 
   2364 	part = ACEPART(dev);
   2365 	omask = ace->sc_dk.dk_openmask & (1 << part);
   2366 
   2367 	if (omask == 0 && aceopen(dev, 0, S_IFBLK, NULL) != 0)
   2368 		return -1;
   2369 	if (ace->sc_dk.dk_label->d_partitions[part].p_fstype != FS_SWAP)
   2370 		size = -1;
   2371 	else
   2372 		size = ace->sc_dk.dk_label->d_partitions[part].p_size *
   2373 		    (ace->sc_dk.dk_label->d_secsize / DEV_BSIZE);
   2374 	if (omask == 0 && aceclose(dev, 0, S_IFBLK, NULL) != 0)
   2375 		return -1;
   2376 	return size;
   2377 }
   2378 
   2379 /* #define ACE_DUMP_NOT_TRUSTED if you just want to watch */
   2380 #define ACE_DUMP_NOT_TRUSTED
   2381 static int acedoingadump = 0;
   2382 
   2383 /*
   2384  * Dump core after a system crash.
   2385  */
   2386 int
   2387 acedump(dev_t dev, daddr_t blkno, void *va, size_t size)
   2388 {
   2389 	struct ace_softc *ace;	/* disk unit to do the I/O */
   2390 	struct disklabel *lp;   /* disk's disklabel */
   2391 	int part, err;
   2392 	int nblks;	/* total number of sectors left to write */
   2393 
   2394 	/* Check if recursive dump; if so, punt. */
   2395 	if (acedoingadump)
   2396 		return EFAULT;
   2397 	acedoingadump = 1;
   2398 
   2399 	ace = device_lookup_private(&ace_cd, ACEUNIT(dev));
   2400 	if (ace == NULL)
   2401 		return ENXIO;
   2402 
   2403 	part = ACEPART(dev);
   2404 
   2405 	/* Convert to disk sectors.  Request must be a multiple of size. */
   2406 	lp = ace->sc_dk.dk_label;
   2407 	if ((size % lp->d_secsize) != 0)
   2408 		return EFAULT;
   2409 	nblks = size / lp->d_secsize;
   2410 	blkno = blkno / (lp->d_secsize / DEV_BSIZE);
   2411 
   2412 	/* Check transfer bounds against partition size. */
   2413 	if ((blkno < 0) || ((blkno + nblks) > lp->d_partitions[part].p_size))
   2414 		return EINVAL;
   2415 
   2416 	/* Offset block number to start of partition. */
   2417 	blkno += lp->d_partitions[part].p_offset;
   2418 
   2419 	ace->sc_bp = NULL;
   2420 	ace->sc_bio.blkno = blkno;
   2421 	ace->sc_bio.flags = ATA_POLL;
   2422 	ace->sc_bio.nbytes = nblks * lp->d_secsize;
   2423 	ace->sc_bio.databuf = va;
   2424 #ifndef ACE_DUMP_NOT_TRUSTED
   2425 	ace->active_xfer = bp;
   2426 	wakeup(&ace->ch_thread);
   2427 
   2428 	switch(ace->sc_bio.error) {
   2429 	case ETIMEDOUT:
   2430 		printf("acedump: device timed out");
   2431 		err = EIO;
   2432 		break;
   2433 	case 0:
   2434 		err = 0;
   2435 		break;
   2436 	default:
   2437 		panic("acedump: unknown error type");
   2438 	}
   2439 	if (err != 0) {
   2440 		printf("\n");
   2441 		return err;
   2442 	}
   2443 #else	/* ACE_DUMP_NOT_TRUSTED */
   2444 	/* Let's just talk about this first... */
   2445 	device_printf(ace->sc_dev, ": dump addr 0x%p, size %zu blkno %llx\n",
   2446 	    va, size, blkno);
   2447 	DELAY(500 * 1000);	/* half a second */
   2448 	err = 0;
   2449 	__USE(err);
   2450 #endif
   2451 
   2452 	acedoingadump = 0;
   2453 	return 0;
   2454 }
   2455 
   2456 #ifdef HAS_BAD144_HANDLING
   2457 /*
   2458  * Internalize the bad sector table.
   2459  */
   2460 void
   2461 bad144intern(struct ace_softc *ace)
   2462 {
   2463 	struct dkbad *bt = &ace->sc_dk.dk_cpulabel->bad;
   2464 	struct disklabel *lp = ace->sc_dk.dk_label;
   2465 	int i = 0;
   2466 
   2467 	DEBUG_PRINT(("bad144intern\n"), DEBUG_XFERS);
   2468 
   2469 	for (; i < NBT_BAD; i++) {
   2470 		if (bt->bt_bad[i].bt_cyl == 0xffff)
   2471 			break;
   2472 		ace->sc_bio.badsect[i] =
   2473 		    bt->bt_bad[i].bt_cyl * lp->d_secpercyl +
   2474 		    (bt->bt_bad[i].bt_trksec >> 8) * lp->d_nsectors +
   2475 		    (bt->bt_bad[i].bt_trksec & 0xff);
   2476 	}
   2477 	for (; i < NBT_BAD+1; i++)
   2478 		ace->sc_bio.badsect[i] = -1;
   2479 }
   2480 #endif
   2481 
   2482 static void
   2483 ace_set_geometry(struct ace_softc *ace)
   2484 {
   2485 	struct disk_geom *dg = &ace->sc_dk.dk_geom;
   2486 
   2487 	memset(dg, 0, sizeof(*dg));
   2488 
   2489 	dg->dg_secperunit = ace->sc_capacity;
   2490 	dg->dg_secsize = DEV_BSIZE /* XXX 512? */;
   2491 	dg->dg_nsectors = ace->sc_params.CurrentSectorsPerTrack;
   2492 	dg->dg_ntracks = ace->sc_params.CurrentNumberOfHeads;
   2493 
   2494 	disk_set_info(ace->sc_dev, &ace->sc_dk, ST506);
   2495 }
   2496