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umass.c revision 1.39
      1 /*	$NetBSD: umass.c,v 1.39 2000/07/06 07:11:18 augustss Exp $	*/
      2 /*-
      3  * Copyright (c) 1999 MAEKAWA Masahide <bishop (at) rr.iij4u.or.jp>,
      4  *		      Nick Hibma <n_hibma (at) freebsd.org>
      5  * All rights reserved.
      6  *
      7  * Redistribution and use in source and binary forms, with or without
      8  * modification, are permitted provided that the following conditions
      9  * are met:
     10  * 1. Redistributions of source code must retain the above copyright
     11  *    notice, this list of conditions and the following disclaimer.
     12  * 2. Redistributions in binary form must reproduce the above copyright
     13  *    notice, this list of conditions and the following disclaimer in the
     14  *    documentation and/or other materials provided with the distribution.
     15  *
     16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     19  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     26  * SUCH DAMAGE.
     27  *
     28  *     $FreeBSD: src/sys/dev/usb/umass.c,v 1.13 2000/03/26 01:39:12 n_hibma Exp $
     29  */
     30 
     31 /*
     32  * Universal Serial Bus Mass Storage Class Bulk-Only Transport
     33  * http://www.usb.org/developers/usbmassbulk_09.pdf
     34  * XXX Add URL to CBI spec in www.usb.org
     35  */
     36 
     37 /*
     38  * Ported to NetBSD by Lennart Augustsson <augustss (at) netbsd.org>.
     39  * Parts of the code written my Jason R. Thorpe <thorpej (at) shagadelic.org>.
     40  */
     41 
     42 /*
     43  * The driver handles 3 Wire Protocols
     44  * - Command/Bulk/Interrupt (CBI)
     45  * - Command/Bulk/Interrupt with Command Completion Interrupt (CBI with CCI)
     46  * - Mass Storage Bulk-Only (BBB)
     47  *   (BBB refers Bulk/Bulk/Bulk for Command/Data/Status phases)
     48  *
     49  * Over these wire protocols it handles the following command protocols
     50  * - SCSI
     51  * - UFI (floppy command set)
     52  * - 8070 (ATA/ATAPI)
     53  *
     54  * UFI and 8070i are transformed versions of the SCSI command set. The
     55  * sc->transform method is used to convert the commands into the appropriate
     56  * format (if at all necessary). For example, UFI requires all commands to be
     57  * 12 bytes in length amongst other things.
     58  *
     59  * The source code below is marked and can be split into a number of pieces
     60  * (in this order):
     61  *
     62  * - probe/attach/detach
     63  * - generic transfer routines
     64  * - BBB
     65  * - CBI
     66  * - CBI_I (in addition to functions from CBI)
     67  * - CAM (Common Access Method)
     68  * - SCSI
     69  * - UFI
     70  * - 8070i
     71  *
     72  * The protocols are implemented using a state machine, for the transfers as
     73  * well as for the resets. The state machine is contained in umass_*_state.
     74  * The state machine is started through either umass_*_transfer or
     75  * umass_*_reset.
     76  *
     77  * The reason for doing this is a) CAM performs a lot better this way and b) it
     78  * avoids using tsleep from interrupt context (for example after a failed
     79  * transfer).
     80  */
     81 
     82 /*
     83  * The SCSI related part of this driver has been derived from the
     84  * dev/ppbus/vpo.c driver, by Nicolas Souchu (nsouch (at) freebsd.org).
     85  *
     86  * The CAM layer uses so called actions which are messages sent to the host
     87  * adapter for completion. The actions come in through umass_cam_action. The
     88  * appropriate block of routines is called depending on the transport protocol
     89  * in use. When the transfer has finished, these routines call
     90  * umass_cam_cb again to complete the CAM command.
     91  */
     92 
     93 /* XXX Should we split the driver into a number of files?  umass.c,
     94  *     umass_scsi.c, umass_8070.c, umass_ufi.c, umass_bbb.c, umass_cbi.c or
     95  *     something similar?
     96  */
     97 
     98 #include "atapibus.h"
     99 
    100 #include <sys/param.h>
    101 #include <sys/systm.h>
    102 #include <sys/kernel.h>
    103 #include <sys/conf.h>
    104 #if defined(__NetBSD__) || defined(__OpenBSD__)
    105 #include <sys/buf.h>
    106 #include <sys/device.h>
    107 #include <sys/ioctl.h>
    108 #include <sys/malloc.h>
    109 #undef KASSERT
    110 #define KASSERT(cond, msg)
    111 #elif defined(__FreeBSD__)
    112 #include <sys/module.h>
    113 #include <sys/bus.h>
    114 #include <machine/clock.h>
    115 #endif
    116 
    117 #include <dev/usb/usb.h>
    118 #include <dev/usb/usbdi.h>
    119 #include <dev/usb/usbdi_util.h>
    120 #include <dev/usb/usbdevs.h>
    121 
    122 #if defined(__FreeBSD__)
    123 #include <cam/cam.h>
    124 #include <cam/cam_ccb.h>
    125 #include <cam/cam_sim.h>
    126 #include <cam/cam_xpt_sim.h>
    127 #include <cam/scsi/scsi_all.h>
    128 #include <cam/scsi/scsi_da.h>
    129 
    130 #ifdef UMASS_DO_CAM_RESCAN
    131 #include <sys/devicestat.h>
    132 #include <cam/cam_periph.h>
    133 #endif
    134 
    135 #elif defined(__NetBSD__) || defined(__OpenBSD__)
    136 #include <sys/scsiio.h>
    137 #include <dev/scsipi/scsi_all.h>
    138 #include <dev/scsipi/scsipi_all.h>
    139 #include <dev/scsipi/scsiconf.h>
    140 
    141 #include <dev/scsipi/atapiconf.h>
    142 
    143 #include <dev/scsipi/scsipi_disk.h>
    144 #include <dev/scsipi/scsi_disk.h>
    145 #include <dev/scsipi/scsi_changer.h>
    146 
    147 #include <dev/ata/atavar.h>	/* XXX */
    148 #include <sys/disk.h>		/* XXX */
    149 #include <dev/scsipi/sdvar.h>	/* XXX */
    150 #endif
    151 
    152 #ifdef UMASS_DEBUG
    153 #define DIF(m, x)	if (umassdebug & (m)) do { x ; } while (0)
    154 #define DPRINTF(m, x)	if (umassdebug & (m)) logprintf x
    155 #define UDMASS_UPPER	0x00008000	/* upper layer */
    156 #define UDMASS_GEN	0x00010000	/* general */
    157 #define UDMASS_SCSI	0x00020000	/* scsi */
    158 #define UDMASS_UFI	0x00040000	/* ufi command set */
    159 #define UDMASS_8070	0x00080000	/* 8070i command set */
    160 #define UDMASS_USB	0x00100000	/* USB general */
    161 #define UDMASS_BBB	0x00200000	/* Bulk-Only transfers */
    162 #define UDMASS_CBI	0x00400000	/* CBI transfers */
    163 #define UDMASS_ALL	0xffff0000	/* all of the above */
    164 
    165 #define UDMASS_XFER	0x40000000	/* all transfers */
    166 #define UDMASS_CMD	0x80000000
    167 
    168 int umassdebug = 0; //UDMASS_ALL;
    169 #else
    170 #define DIF(m, x)	/* nop */
    171 #define DPRINTF(m, x)	/* nop */
    172 #endif
    173 
    174 
    175 /* Generic definitions */
    176 
    177 #define UFI_COMMAND_LENGTH 12
    178 
    179 /* Direction for umass_*_transfer */
    180 #define DIR_NONE	0
    181 #define DIR_IN		1
    182 #define DIR_OUT		2
    183 
    184 /* The transfer speed determines the timeout value */
    185 #define UMASS_DEFAULT_TRANSFER_SPEED	150	/* in kb/s, conservative est. */
    186 #define UMASS_FLOPPY_TRANSFER_SPEED	20
    187 #define UMASS_ZIP100_TRANSFER_SPEED	650
    188 
    189 #define UMASS_SPINUP_TIME 10000	/* ms */
    190 
    191 #ifdef __FreeBSD__
    192 /* device name */
    193 #define DEVNAME		"umass"
    194 #define DEVNAME_SIM	"umass-"
    195 
    196 #define UMASS_MAX_TRANSFER_SIZE		65536
    197 
    198 /* CAM specific definitions */
    199 
    200 /* The bus id, whatever that is */
    201 #define UMASS_SCSI_BUS		0
    202 
    203 /* All USB drives are 'connected' to one SIM (SCSI controller). umass3
    204  * ends up being target 3 on that SIM. When a request for target 3
    205  * comes in we fetch the softc with devclass_get_softc(target_id).
    206  *
    207  * The SIM is the highest target number. This makes sure that umass0 corresponds
    208  * to target 0 on the USB SCSI bus.
    209  */
    210 #ifndef UMASS_DEBUG
    211 #define UMASS_SCSIID_MAX	32	/* maximum number of drives expected */
    212 #else
    213 /* while debugging avoid unnecessary clutter in the output at umass_cam_rescan
    214  * (XPT_PATH_INQ)
    215  */
    216 #define UMASS_SCSIID_MAX	3	/* maximum number of drives expected */
    217 #endif
    218 #define UMASS_SCSIID_HOST	UMASS_SCSIID_MAX
    219 #endif
    220 
    221 #define MS_TO_TICKS(ms) ((ms) * hz / 1000)
    222 
    223 
    224 /* Bulk-Only features */
    225 
    226 #define UR_BBB_RESET	0xff		/* Bulk-Only reset */
    227 #define	UR_BBB_GET_MAX_LUN	0xfe
    228 
    229 /* Command Block Wrapper */
    230 typedef struct {
    231 	uDWord		dCBWSignature;
    232 #	define CBWSIGNATURE	0x43425355
    233 	uDWord		dCBWTag;
    234 	uDWord		dCBWDataTransferLength;
    235 	uByte		bCBWFlags;
    236 #	define CBWFLAGS_OUT	0x00
    237 #	define CBWFLAGS_IN	0x80
    238 	uByte		bCBWLUN;
    239 	uByte		bCDBLength;
    240 #	define CBWCDBLENGTH	16
    241 	uByte		CBWCDB[CBWCDBLENGTH];
    242 } umass_bbb_cbw_t;
    243 #define UMASS_BBB_CBW_SIZE	31
    244 
    245 /* Command Status Wrapper */
    246 typedef struct {
    247 	uDWord		dCSWSignature;
    248 #	define CSWSIGNATURE	0x53425355
    249 	uDWord		dCSWTag;
    250 	uDWord		dCSWDataResidue;
    251 	uByte		bCSWStatus;
    252 #	define CSWSTATUS_GOOD	0x0
    253 #	define CSWSTATUS_FAILED 0x1
    254 #	define CSWSTATUS_PHASE	0x2
    255 } umass_bbb_csw_t;
    256 #define UMASS_BBB_CSW_SIZE	13
    257 
    258 /* CBI features */
    259 
    260 #define UR_CBI_ADSC	0x00
    261 
    262 typedef unsigned char umass_cbi_cbl_t[16];	/* Command block */
    263 
    264 typedef union {
    265 	struct {
    266 		unsigned char	type;
    267 		#define IDB_TYPE_CCI		0x00
    268 		unsigned char	value;
    269 		#define IDB_VALUE_PASS		0x00
    270 		#define IDB_VALUE_FAIL		0x01
    271 		#define IDB_VALUE_PHASE		0x02
    272 		#define IDB_VALUE_PERSISTENT	0x03
    273 		#define IDB_VALUE_STATUS_MASK	0x03
    274 	} common;
    275 
    276 	struct {
    277 		unsigned char	asc;
    278 		unsigned char	ascq;
    279 	} ufi;
    280 } umass_cbi_sbl_t;
    281 
    282 
    283 
    284 struct umass_softc;		/* see below */
    285 
    286 typedef void (*transfer_cb_f)(struct umass_softc *sc, void *priv,
    287 			      int residue, int status);
    288 #define STATUS_CMD_OK		0	/* everything ok */
    289 #define STATUS_CMD_UNKNOWN	1	/* will have to fetch sense */
    290 #define STATUS_CMD_FAILED	2	/* transfer was ok, command failed */
    291 #define STATUS_WIRE_FAILED	3	/* couldn't even get command across */
    292 
    293 typedef void (*wire_reset_f)(struct umass_softc *sc, int status);
    294 typedef void (*wire_transfer_f)(struct umass_softc *sc, int lun,
    295 				void *cmd, int cmdlen, void *data, int datalen,
    296 				int dir, transfer_cb_f cb, void *priv);
    297 typedef void (*wire_state_f)(usbd_xfer_handle xfer,
    298 			     usbd_private_handle priv, usbd_status err);
    299 
    300 #if defined(__FreeBSD__)
    301 typedef int (*command_transform_f)(struct umass_softc *sc,
    302 				   u_char *cmd, int cmdlen,
    303 				   u_char **rcmd, int *rcmdlen));
    304 #endif
    305 
    306 
    307 /* the per device structure */
    308 struct umass_softc {
    309 	USBBASEDEVICE		sc_dev;		/* base device */
    310 	usbd_device_handle	sc_udev;	/* device */
    311 
    312 	unsigned char		drive;
    313 #	define DRIVE_GENERIC		0	/* use defaults for this one */
    314 #	define ZIP_100			1	/* to be used for quirks */
    315 #	define SHUTTLE_EUSB		2
    316 
    317 	unsigned char		quirks;
    318 	/* The drive does not support Test Unit Ready. Convert to
    319 	 * Start Unit.
    320 	 * Y-E Data
    321 	 * ZIP 100
    322 	 */
    323 #	define NO_TEST_UNIT_READY	0x01
    324 	/* The drive does not reset the Unit Attention state after
    325 	 * REQUEST SENSE has been sent. The INQUIRY command does not reset
    326 	 * the UA either, and so CAM runs in circles trying to retrieve the
    327 	 * initial INQUIRY data.
    328 	 * Y-E Data
    329 	 */
    330 #	define RS_NO_CLEAR_UA		0x02	/* no REQUEST SENSE on INQUIRY*/
    331 	/* The drive does not support START_STOP.
    332 	 * Shuttle E-USB
    333 	 */
    334 #	define NO_START_STOP		0x04
    335 
    336 	unsigned int		proto;
    337 #	define PROTO_UNKNOWN	0x0000		/* unknown protocol */
    338 #	define PROTO_BBB	0x0001		/* USB wire protocol */
    339 #	define PROTO_CBI	0x0002
    340 #	define PROTO_CBI_I	0x0004
    341 #	define PROTO_WIRE	0x00ff		/* USB wire protocol mask */
    342 #	define PROTO_SCSI	0x0100		/* command protocol */
    343 #	define PROTO_ATAPI	0x0200
    344 #	define PROTO_UFI	0x0400
    345 #	define PROTO_COMMAND	0xff00		/* command protocol mask */
    346 
    347 	usbd_interface_handle	iface;		/* Mass Storage interface */
    348 	int			ifaceno;	/* MS iface number */
    349 
    350 	u_int8_t		bulkin;		/* bulk-in Endpoint Address */
    351 	u_int8_t		bulkout;	/* bulk-out Endpoint Address */
    352 	u_int8_t		intrin;		/* intr-in Endp. (CBI) */
    353 	usbd_pipe_handle	bulkin_pipe;
    354 	usbd_pipe_handle	bulkout_pipe;
    355 	usbd_pipe_handle	intrin_pipe;
    356 
    357 	/* Reset the device in a wire protocol specific way */
    358 	wire_reset_f		reset;
    359 
    360 	/* The start of a wire transfer. It prepares the whole transfer (cmd,
    361 	 * data, and status stage) and initiates it. It is up to the state
    362 	 * machine (below) to handle the various stages and errors in these
    363 	 */
    364 	wire_transfer_f		transfer;
    365 
    366 	/* The state machine, handling the various states during a transfer */
    367 	wire_state_f		state;
    368 
    369 #if defined(__FreeBSD__)
    370 	/* The command transform function is used to conver the SCSI commands
    371 	 * into their derivatives, like UFI, ATAPI, and friends.
    372 	 */
    373 	command_transform_f	transform;	/* command transform */
    374 #endif
    375 
    376 	/* Bulk specific variables for transfers in progress */
    377 	umass_bbb_cbw_t		cbw;	/* command block wrapper */
    378 	umass_bbb_csw_t		csw;	/* command status wrapper*/
    379 	/* CBI specific variables for transfers in progress */
    380 	umass_cbi_cbl_t		cbl;	/* command block */
    381 	umass_cbi_sbl_t		sbl;	/* status block */
    382 
    383 	/* generic variables for transfers in progress */
    384 	/* ctrl transfer requests */
    385 	usb_device_request_t	request;
    386 
    387 	/* xfer handles
    388 	 * Most of our operations are initiated from interrupt context, so
    389 	 * we need to avoid using the one that is in use. We want to avoid
    390 	 * allocating them in the interrupt context as well.
    391 	 */
    392 	/* indices into array below */
    393 #	define XFER_BBB_CBW		0	/* Bulk-Only */
    394 #	define XFER_BBB_DATA		1
    395 #	define XFER_BBB_DCLEAR		2
    396 #	define XFER_BBB_CSW1		3
    397 #	define XFER_BBB_CSW2		4
    398 #	define XFER_BBB_SCLEAR		5
    399 #	define XFER_BBB_RESET1		6
    400 #	define XFER_BBB_RESET2		7
    401 #	define XFER_BBB_RESET3		8
    402 
    403 #	define XFER_CBI_CB		0	/* CBI */
    404 #	define XFER_CBI_DATA		1
    405 #	define XFER_CBI_STATUS		2
    406 #	define XFER_CBI_DCLEAR		3
    407 #	define XFER_CBI_SCLEAR		4
    408 #	define XFER_CBI_RESET1		5
    409 #	define XFER_CBI_RESET2		6
    410 #	define XFER_CBI_RESET3		7
    411 
    412 #	define XFER_NR			9	/* maximum number */
    413 
    414 	usbd_xfer_handle	transfer_xfer[XFER_NR]; /* for ctrl xfers */
    415 
    416 	void			*data_buffer;
    417 
    418 	int			transfer_dir;		/* data direction */
    419 	void			*transfer_data;		/* data buffer */
    420 	int			transfer_datalen;	/* (maximum) length */
    421 	int			transfer_actlen;	/* actual length */
    422 	transfer_cb_f		transfer_cb;		/* callback */
    423 	void			*transfer_priv;		/* for callback */
    424 	int			transfer_status;
    425 
    426 	int			transfer_state;
    427 #	define TSTATE_IDLE			0
    428 #	define TSTATE_BBB_COMMAND		1	/* CBW transfer */
    429 #	define TSTATE_BBB_DATA			2	/* Data transfer */
    430 #	define TSTATE_BBB_DCLEAR		3	/* clear endpt stall */
    431 #	define TSTATE_BBB_STATUS1		4	/* clear endpt stall */
    432 #	define TSTATE_BBB_SCLEAR		5	/* clear endpt stall */
    433 #	define TSTATE_BBB_STATUS2		6	/* CSW transfer */
    434 #	define TSTATE_BBB_RESET1		7	/* reset command */
    435 #	define TSTATE_BBB_RESET2		8	/* in clear stall */
    436 #	define TSTATE_BBB_RESET3		9	/* out clear stall */
    437 #	define TSTATE_CBI_COMMAND		10	/* command transfer */
    438 #	define TSTATE_CBI_DATA			11	/* data transfer */
    439 #	define TSTATE_CBI_STATUS		12	/* status transfer */
    440 #	define TSTATE_CBI_DCLEAR		13	/* clear ep stall */
    441 #	define TSTATE_CBI_SCLEAR		14	/* clear ep stall */
    442 #	define TSTATE_CBI_RESET1		15	/* reset command */
    443 #	define TSTATE_CBI_RESET2		16	/* in clear stall */
    444 #	define TSTATE_CBI_RESET3		17	/* out clear stall */
    445 #	define TSTATE_STATES			18	/* # of states above */
    446 
    447 
    448 	int			transfer_speed;		/* in kb/s */
    449 	int			timeout;		/* in msecs */
    450 
    451 	u_int8_t		maxlun;			/* max lun supported */
    452 
    453 #if defined(__FreeBSD__)
    454 	/* SCSI/CAM specific variables */
    455 	struct scsi_sense	cam_scsi_sense;
    456 
    457 #elif defined(__NetBSD__) || defined(__OpenBSD__)
    458 	union {
    459 		struct scsipi_link	sc_link;
    460 		struct {
    461 			struct ata_atapi_attach	sc_aa;
    462 			struct ata_drive_datas	sc_aa_drive;
    463 		} aa;
    464 	} u;
    465 	struct atapi_adapter	sc_atapi_adapter;
    466 #define sc_adapter sc_atapi_adapter._generic
    467 	int			sc_xfer_flags;
    468 	usbd_status		sc_sync_status;
    469 	struct scsipi_sense	sc_sense_cmd;
    470 
    471 	device_ptr_t		sc_child;	/* child device, for detach */
    472 	char			sc_dying;
    473 
    474 #endif
    475 };
    476 
    477 #ifdef UMASS_DEBUG
    478 char *states[TSTATE_STATES+1] = {
    479 	/* should be kept in sync with the list at transfer_state */
    480 	"Idle",
    481 	"BBB CBW",
    482 	"BBB Data",
    483 	"BBB Data bulk-in/-out clear stall",
    484 	"BBB CSW, 1st attempt",
    485 	"BBB CSW bulk-in clear stall",
    486 	"BBB CSW, 2nd attempt",
    487 	"BBB Reset",
    488 	"BBB bulk-in clear stall",
    489 	"BBB bulk-out clear stall",
    490 	"CBI Command",
    491 	"CBI Data",
    492 	"CBI Status",
    493 	"CBI Data bulk-in/-out clear stall",
    494 	"CBI Status intr-in clear stall",
    495 	"CBI Reset",
    496 	"CBI bulk-in clear stall",
    497 	"CBI bulk-out clear stall",
    498 	NULL
    499 };
    500 #endif
    501 
    502 struct cam_sim *umass_sim;	/* SCSI Interface Module */
    503 struct cam_path *umass_path;	/*   and its path */
    504 
    505 
    506 /* USB device probe/attach/detach functions */
    507 USB_DECLARE_DRIVER(umass);
    508 Static void umass_disco(struct umass_softc *sc);
    509 Static int umass_match_proto(struct umass_softc *sc,
    510 			     usbd_interface_handle iface,
    511 			     usbd_device_handle dev);
    512 Static void umass_init_shuttle(struct umass_softc *sc);
    513 
    514 /* generic transfer functions */
    515 Static usbd_status umass_setup_transfer(struct umass_softc *sc,
    516 				usbd_pipe_handle pipe,
    517 				void *buffer, int buflen, int flags,
    518 				usbd_xfer_handle xfer);
    519 Static usbd_status umass_setup_ctrl_transfer(struct umass_softc *sc,
    520 				usbd_device_handle dev,
    521 				usb_device_request_t *req,
    522 				void *buffer, int buflen, int flags,
    523 				usbd_xfer_handle xfer);
    524 Static void umass_clear_endpoint_stall(struct umass_softc *sc,
    525 				u_int8_t endpt, usbd_pipe_handle pipe,
    526 				int state, usbd_xfer_handle xfer);
    527 #if 0
    528 Static void umass_reset(struct umass_softc *sc,	transfer_cb_f cb, void *priv);
    529 #endif
    530 
    531 /* Bulk-Only related functions */
    532 Static void umass_bbb_reset(struct umass_softc *sc, int status);
    533 Static void umass_bbb_transfer(struct umass_softc *sc, int lun,
    534 				void *cmd, int cmdlen,
    535 				void *data, int datalen, int dir,
    536 				transfer_cb_f cb, void *priv);
    537 Static void umass_bbb_state(usbd_xfer_handle xfer,
    538 				usbd_private_handle priv,
    539 				usbd_status err);
    540 usbd_status umass_bbb_get_max_lun(struct umass_softc *sc, u_int8_t *maxlun);
    541 
    542 
    543 /* CBI related functions */
    544 Static int umass_cbi_adsc(struct umass_softc *sc, char *buffer,int buflen,
    545 				usbd_xfer_handle xfer);
    546 Static void umass_cbi_reset(struct umass_softc *sc, int status);
    547 Static void umass_cbi_transfer(struct umass_softc *sc, int lun,
    548 				void *cmd, int cmdlen,
    549 				void *data, int datalen, int dir,
    550 				transfer_cb_f cb, void *priv);
    551 Static void umass_cbi_state(usbd_xfer_handle xfer,
    552 				usbd_private_handle priv, usbd_status err);
    553 
    554 #if defined(__FreeBSD__)
    555 /* CAM related functions */
    556 Static void umass_cam_action(struct cam_sim *sim, union ccb *ccb);
    557 Static void umass_cam_poll(struct cam_sim *sim);
    558 
    559 Static void umass_cam_cb(struct umass_softc *sc, void *priv,
    560 				int residue, int status);
    561 Static void umass_cam_sense_cb(struct umass_softc *sc, void *priv,
    562 				int residue, int status);
    563 
    564 #ifdef UMASS_DO_CAM_RESCAN
    565 Static void umass_cam_rescan(struct umass_softc *sc);
    566 #endif
    567 
    568 Static int umass_cam_attach_sim(void);
    569 Static int umass_cam_attach(struct umass_softc *sc);
    570 Static int umass_cam_detach_sim(void);
    571 Static int umass_cam_detach(struct umass_softc *sc);
    572 
    573 #elif defined(__NetBSD__) || defined(__OpenBSD__)
    574 
    575 #define UMASS_SCSIID_HOST	0x00
    576 #define UMASS_SCSIID_DEVICE	0x01
    577 
    578 #define UMASS_MAX_TRANSFER_SIZE	MAXBSIZE
    579 
    580 struct scsipi_device umass_dev =
    581 {
    582 	NULL,			/* Use default error handler */
    583 	NULL,			/* have a queue, served by this */
    584 	NULL,			/* have no async handler */
    585 	NULL,			/* Use default 'done' routine */
    586 };
    587 
    588 Static int umass_scsipi_cmd(struct scsipi_xfer *xs);
    589 Static void umass_scsipi_minphys(struct buf *bp);
    590 Static int umass_scsipi_ioctl(struct scsipi_link *, u_long,
    591 				   caddr_t, int, struct proc *);
    592 Static int umass_scsipi_getgeom(struct scsipi_link *link,
    593 			      struct disk_parms *, u_long sectors);
    594 
    595 Static void umass_scsipi_cb(struct umass_softc *sc, void *priv,
    596 				     int residue, int status);
    597 Static void umass_scsipi_sense_cb(struct umass_softc *sc, void *priv,
    598 				       int residue, int status);
    599 
    600 Static int scsipiprint(void *aux, const char *pnp);
    601 Static int umass_ufi_transform(struct umass_softc *sc,
    602 			       struct scsipi_generic *cmd, int cmdlen,
    603 			       struct scsipi_generic *rcmd, int *rcmdlen);
    604 #if NATAPIBUS > 0
    605 Static void umass_atapi_probedev(struct atapibus_softc *, int);
    606 #endif
    607 #endif
    608 
    609 #if defined(__FreeBSD__)
    610 /* SCSI specific functions */
    611 Static int umass_scsi_transform(struct umass_softc *sc,
    612 				unsigned char *cmd, int cmdlen,
    613 				unsigned char **rcmd, int *rcmdlen);
    614 
    615 /* UFI specific functions */
    616 Static int umass_ufi_transform(struct umass_softc *sc,
    617 				unsigned char *cmd, int cmdlen,
    618 				unsigned char **rcmd, int *rcmdlen);
    619 
    620 /* 8070 specific functions */
    621 Static int umass_8070_transform(struct umass_softc *sc,
    622 				unsigned char *cmd, int cmdlen,
    623 				unsigned char **rcmd, int *rcmdlen);
    624 #endif
    625 
    626 #ifdef UMASS_DEBUG
    627 /* General debugging functions */
    628 Static void umass_bbb_dump_cbw(struct umass_softc *sc,
    629 				umass_bbb_cbw_t *cbw);
    630 Static void umass_bbb_dump_csw(struct umass_softc *sc,
    631 				umass_bbb_csw_t *csw);
    632 Static void umass_dump_buffer(struct umass_softc *sc, u_int8_t *buffer,
    633 				int buflen, int printlen);
    634 #endif
    635 
    636 
    637 void usbd_clear_endpoint_toggle(usbd_pipe_handle pipe);	/* XXXXX */
    638 
    639 /*
    640  * USB device probe/attach/detach
    641  */
    642 
    643 /*
    644  * Match the device we are seeing with the devices supported. Fill in the
    645  * proto and drive fields in the softc accordingly.
    646  * This function is called from both probe and attach.
    647  */
    648 
    649 Static int
    650 umass_match_proto(struct umass_softc *sc, usbd_interface_handle iface,
    651 		  usbd_device_handle dev)
    652 {
    653 	usb_device_descriptor_t *dd;
    654 	usb_interface_descriptor_t *id;
    655 
    656 	/*
    657 	 * Fill in sc->drive and sc->proto and return a match
    658 	 * value if both are determined and 0 otherwise.
    659 	 */
    660 
    661 	sc->drive = DRIVE_GENERIC;
    662 	sc->proto = PROTO_UNKNOWN;
    663 	sc->transfer_speed = UMASS_DEFAULT_TRANSFER_SPEED;
    664 
    665 	sc->sc_udev = dev;
    666 	dd = usbd_get_device_descriptor(dev);
    667 
    668 	if (UGETW(dd->idVendor) == USB_VENDOR_SHUTTLE
    669 	    && UGETW(dd->idProduct) == USB_PRODUCT_SHUTTLE_EUSB) {
    670 		sc->drive = SHUTTLE_EUSB;
    671 #if CBI_I
    672 		sc->proto = PROTO_ATAPI | PROTO_CBI_I;
    673 #else
    674 		sc->proto = PROTO_ATAPI | PROTO_CBI;
    675 #endif
    676 		sc->quirks |= NO_TEST_UNIT_READY | NO_START_STOP;
    677 		return (UMATCH_VENDOR_PRODUCT);
    678 	}
    679 
    680 	if (UGETW(dd->idVendor) == USB_VENDOR_YEDATA
    681 	    && UGETW(dd->idProduct) == USB_PRODUCT_YEDATA_FLASHBUSTERU) {
    682 
    683 		/* Revisions < 1.28 do not handle the interrupt endpoint
    684 		 * very well.
    685 		 */
    686 		if (UGETW(dd->bcdDevice) < 0x128)
    687 			sc->proto = PROTO_UFI | PROTO_CBI;
    688 		else
    689 #if CBI_I
    690 			sc->proto = PROTO_UFI | PROTO_CBI_I;
    691 #else
    692 			sc->proto = PROTO_UFI | PROTO_CBI;
    693 #endif
    694 		/*
    695 		 * Revisions < 1.28 do not have the TEST UNIT READY command
    696 		 * Revisions == 1.28 have a broken TEST UNIT READY
    697 		 */
    698 		if (UGETW(dd->bcdDevice) <= 0x128)
    699 			sc->quirks |= NO_TEST_UNIT_READY;
    700 
    701 		sc->quirks |= RS_NO_CLEAR_UA;
    702 		sc->transfer_speed = UMASS_FLOPPY_TRANSFER_SPEED;
    703 		return (UMATCH_VENDOR_PRODUCT_REV);
    704 	}
    705 
    706 
    707 	id = usbd_get_interface_descriptor(iface);
    708 	if (id == NULL || id->bInterfaceClass != UICLASS_MASS)
    709 		return (UMATCH_NONE);
    710 
    711 	switch (id->bInterfaceSubClass) {
    712 	case UISUBCLASS_SCSI:
    713 		sc->proto |= PROTO_SCSI;
    714 		break;
    715 	case UISUBCLASS_UFI:
    716 		sc->transfer_speed = UMASS_FLOPPY_TRANSFER_SPEED;
    717 		sc->proto |= PROTO_UFI;
    718 		break;
    719 	case UISUBCLASS_SFF8020I:
    720 	case UISUBCLASS_SFF8070I:
    721 	case UISUBCLASS_QIC157:
    722 		sc->proto |= PROTO_ATAPI;
    723 		break;
    724 	default:
    725 		DPRINTF(UDMASS_GEN, ("%s: Unsupported command protocol %d\n",
    726 			USBDEVNAME(sc->sc_dev), id->bInterfaceSubClass));
    727 		return (UMATCH_NONE);
    728 	}
    729 
    730 	switch (id->bInterfaceProtocol) {
    731 	case UIPROTO_MASS_CBI:
    732 		sc->proto |= PROTO_CBI;
    733 		break;
    734 	case UIPROTO_MASS_CBI_I:
    735 #if CBI_I
    736 		sc->proto |= PROTO_CBI_I;
    737 #else
    738 		sc->proto |= PROTO_CBI;
    739 #endif
    740 		break;
    741 	case UIPROTO_MASS_BBB:
    742 		sc->proto |= PROTO_BBB;
    743 		break;
    744 	case UIPROTO_MASS_BBB_P:
    745 		sc->drive = ZIP_100;
    746 		sc->proto |= PROTO_BBB;
    747 		sc->transfer_speed = UMASS_ZIP100_TRANSFER_SPEED;
    748 		sc->quirks |= NO_TEST_UNIT_READY;
    749 		break;
    750 	default:
    751 		DPRINTF(UDMASS_GEN, ("%s: Unsupported wire protocol %d\n",
    752 			USBDEVNAME(sc->sc_dev), id->bInterfaceProtocol));
    753 		return (UMATCH_NONE);
    754 	}
    755 
    756 	return (UMATCH_DEVCLASS_DEVSUBCLASS_DEVPROTO);
    757 }
    758 
    759 USB_MATCH(umass)
    760 {
    761 	USB_MATCH_START(umass, uaa);
    762 #if defined(__FreeBSD__)
    763 	struct umass_softc *sc = device_get_softc(self);
    764 #else if defined(__NetBSD__) || defined(__OpenBSD__)
    765 	struct umass_softc scs, *sc = &scs;
    766 	memset(sc, 0, sizeof *sc);
    767 #endif
    768 
    769 	if (uaa->iface == NULL)
    770 		return(UMATCH_NONE);
    771 
    772 	return (umass_match_proto(sc, uaa->iface, uaa->device));
    773 }
    774 
    775 USB_ATTACH(umass)
    776 {
    777 	USB_ATTACH_START(umass, sc, uaa);
    778 	usb_interface_descriptor_t *id;
    779 	usb_endpoint_descriptor_t *ed;
    780 	const char *sSubclass, *sProto;
    781 	char devinfo[1024];
    782 	int i, bno;
    783 	int err;
    784 
    785 	/*
    786 	 * the softc struct is bzero-ed in device_set_driver. We can safely
    787 	 * call umass_detach without specifically initialising the struct.
    788 	 */
    789 
    790 	usbd_devinfo(uaa->device, 0, devinfo);
    791 	USB_ATTACH_SETUP;
    792 
    793 	sc->iface = uaa->iface;
    794 	sc->ifaceno = uaa->ifaceno;
    795 
    796 	/* initialise the proto and drive values in the umass_softc (again) */
    797 	(void) umass_match_proto(sc, sc->iface, uaa->device);
    798 
    799 	/*
    800 	 * The timeout is based on the maximum expected transfer size
    801 	 * divided by the expected transfer speed.
    802 	 * We multiply by 4 to make sure a busy system doesn't make things
    803 	 * fail.
    804 	 */
    805 	sc->timeout = 4 * UMASS_MAX_TRANSFER_SIZE / sc->transfer_speed;
    806 	sc->timeout += UMASS_SPINUP_TIME;	/* allow for spinning up */
    807 
    808 	id = usbd_get_interface_descriptor(sc->iface);
    809 	printf("%s: %s\n", USBDEVNAME(sc->sc_dev), devinfo);
    810 
    811 	switch (id->bInterfaceSubClass) {
    812 	case UISUBCLASS_SCSI:
    813 		sSubclass = "SCSI";
    814 		break;
    815 	case UISUBCLASS_UFI:
    816 		sSubclass = "UFI";
    817 		break;
    818 	case UISUBCLASS_SFF8020I:
    819 		sSubclass = "SFF8020i";
    820 		break;
    821 	case UISUBCLASS_SFF8070I:
    822 		sSubclass = "SFF8070i";
    823 		break;
    824 	case UISUBCLASS_QIC157:
    825 		sSubclass = "QIC157";
    826 		break;
    827 	default:
    828 		sSubclass = "unknown";
    829 		break;
    830 	}
    831 	switch (id->bInterfaceProtocol) {
    832 	case UIPROTO_MASS_CBI:
    833 		sProto = "CBI";
    834 		break;
    835 	case UIPROTO_MASS_CBI_I:
    836 		sProto = "CBI-I";
    837 		break;
    838 	case UIPROTO_MASS_BBB:
    839 		sProto = "BBB";
    840 		break;
    841 	case UIPROTO_MASS_BBB_P:
    842 		sProto = "BBB-P";
    843 		break;
    844 	default:
    845 		sProto = "unknown";
    846 		break;
    847 	}
    848 	printf("%s: using %s over %s\n", USBDEVNAME(sc->sc_dev), sSubclass,
    849 	       sProto);
    850 
    851 	/*
    852 	 * In addition to the Control endpoint the following endpoints
    853 	 * are required:
    854 	 * a) bulk-in endpoint.
    855 	 * b) bulk-out endpoint.
    856 	 * and for Control/Bulk/Interrupt with CCI (CBI_I)
    857 	 * c) intr-in
    858 	 *
    859 	 * The endpoint addresses are not fixed, so we have to read them
    860 	 * from the device descriptors of the current interface.
    861 	 */
    862 	for (i = 0 ; i < id->bNumEndpoints ; i++) {
    863 		ed = usbd_interface2endpoint_descriptor(sc->iface, i);
    864 		if (!ed) {
    865 			printf("%s: could not read endpoint descriptor\n",
    866 			       USBDEVNAME(sc->sc_dev));
    867 			USB_ATTACH_ERROR_RETURN;
    868 		}
    869 		if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN
    870 		    && (ed->bmAttributes & UE_XFERTYPE) == UE_BULK) {
    871 			sc->bulkin = ed->bEndpointAddress;
    872 		} else if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_OUT
    873 		    && (ed->bmAttributes & UE_XFERTYPE) == UE_BULK) {
    874 			sc->bulkout = ed->bEndpointAddress;
    875 		} else if (sc->proto & PROTO_CBI_I
    876 		    && UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN
    877 		    && (ed->bmAttributes & UE_XFERTYPE) == UE_INTERRUPT) {
    878 			sc->intrin = ed->bEndpointAddress;
    879 #ifdef UMASS_DEBUG
    880 			if (UGETW(ed->wMaxPacketSize) > 2) {
    881 				DPRINTF(UDMASS_CBI, ("%s: intr size is %d\n",
    882 					USBDEVNAME(sc->sc_dev),
    883 					UGETW(ed->wMaxPacketSize)));
    884 			}
    885 #endif
    886 		}
    887 	}
    888 
    889 	/* check whether we found all the endpoints we need */
    890 	if (!sc->bulkin || !sc->bulkout
    891 	    || (sc->proto & PROTO_CBI_I && !sc->intrin) ) {
    892 		DPRINTF(UDMASS_USB, ("%s: endpoint not found %d/%d/%d\n",
    893 			USBDEVNAME(sc->sc_dev),
    894 			sc->bulkin, sc->bulkout, sc->intrin));
    895 		umass_disco(sc);
    896 		USB_ATTACH_ERROR_RETURN;
    897 	}
    898 
    899 	/*
    900 	 * Get the maximum LUN supported by the device.
    901 	 */
    902 	if ((sc->proto & PROTO_WIRE) == PROTO_BBB) {
    903 		err = umass_bbb_get_max_lun(sc, &sc->maxlun);
    904 		if (err) {
    905 			printf("%s: unable to get Max Lun: %s\n",
    906 			       USBDEVNAME(sc->sc_dev), usbd_errstr(err));
    907 			USB_ATTACH_ERROR_RETURN;
    908 		}
    909 	} else {
    910 		sc->maxlun = 0;
    911 	}
    912 
    913 	/* Open the bulk-in and -out pipe */
    914 	err = usbd_open_pipe(sc->iface, sc->bulkout,
    915 				USBD_EXCLUSIVE_USE, &sc->bulkout_pipe);
    916 	if (err) {
    917 		DPRINTF(UDMASS_USB, ("%s: cannot open %d-out pipe (bulk)\n",
    918 			USBDEVNAME(sc->sc_dev), sc->bulkout));
    919 		umass_disco(sc);
    920 		USB_ATTACH_ERROR_RETURN;
    921 	}
    922 	err = usbd_open_pipe(sc->iface, sc->bulkin,
    923 				USBD_EXCLUSIVE_USE, &sc->bulkin_pipe);
    924 	if (err) {
    925 		DPRINTF(UDMASS_USB, ("%s: could not open %d-in pipe (bulk)\n",
    926 			USBDEVNAME(sc->sc_dev), sc->bulkin));
    927 		umass_disco(sc);
    928 		USB_ATTACH_ERROR_RETURN;
    929 	}
    930 	/*
    931 	 * Open the intr-in pipe if the protocol is CBI with CCI.
    932 	 * Note: early versions of the Zip drive do have an interrupt pipe, but
    933 	 * this pipe is unused
    934 	 *
    935 	 * We do not open the interrupt pipe as an interrupt pipe, but as a
    936 	 * normal bulk endpoint. We send an IN transfer down the wire at the
    937 	 * appropriate time, because we know exactly when to expect data on
    938 	 * that endpoint. This saves bandwidth, but more important, makes the
    939 	 * code for handling the data on that endpoint simpler. No data
    940 	 * arriving concurrently.
    941 	 */
    942 	if (sc->proto & PROTO_CBI_I) {
    943 		err = usbd_open_pipe(sc->iface, sc->intrin,
    944 				USBD_EXCLUSIVE_USE, &sc->intrin_pipe);
    945 		if (err) {
    946 			DPRINTF(UDMASS_USB, ("%s: couldn't open %d-in (intr)\n",
    947 				USBDEVNAME(sc->sc_dev), sc->intrin));
    948 			umass_disco(sc);
    949 			USB_ATTACH_ERROR_RETURN;
    950 		}
    951 	}
    952 
    953 	/* initialisation of generic part */
    954 	sc->transfer_state = TSTATE_IDLE;
    955 
    956 	/* request a sufficient number of xfer handles */
    957 	for (i = 0; i < XFER_NR; i++) {
    958 		sc->transfer_xfer[i] = usbd_alloc_xfer(uaa->device);
    959 		if (sc->transfer_xfer[i] == 0) {
    960 			DPRINTF(UDMASS_USB, ("%s: Out of memory\n",
    961 				USBDEVNAME(sc->sc_dev)));
    962 			umass_disco(sc);
    963 			USB_ATTACH_ERROR_RETURN;
    964 		}
    965 	}
    966 	/* Allocate buffer for data transfer (it's huge). */
    967 	switch (sc->proto & PROTO_WIRE) {
    968 	case PROTO_BBB:
    969 		bno = XFER_BBB_DATA;
    970 		goto dalloc;
    971 	case PROTO_CBI:
    972 		bno = XFER_CBI_DATA;
    973 		goto dalloc;
    974 	case PROTO_CBI_I:
    975 		bno = XFER_CBI_DATA;
    976 	dalloc:
    977 		sc->data_buffer = usbd_alloc_buffer(sc->transfer_xfer[bno],
    978 						    UMASS_MAX_TRANSFER_SIZE);
    979 		if (sc->data_buffer == NULL) {
    980 			umass_disco(sc);
    981 			USB_ATTACH_ERROR_RETURN;
    982 		}
    983 		break;
    984 	default:
    985 		break;
    986 	}
    987 
    988 	/* Initialise the wire protocol specific methods */
    989 	if (sc->proto & PROTO_BBB) {
    990 		sc->reset = umass_bbb_reset;
    991 		sc->transfer = umass_bbb_transfer;
    992 		sc->state = umass_bbb_state;
    993 	} else if ((sc->proto & PROTO_CBI) || (sc->proto & PROTO_CBI_I)) {
    994 		sc->reset = umass_cbi_reset;
    995 		sc->transfer = umass_cbi_transfer;
    996 		sc->state = umass_cbi_state;
    997 #ifdef UMASS_DEBUG
    998 	} else {
    999 		panic("%s:%d: Unknown proto 0x%02x\n",
   1000 		      __FILE__, __LINE__, sc->proto);
   1001 #endif
   1002 	}
   1003 
   1004 	if (sc->drive == SHUTTLE_EUSB)
   1005 		umass_init_shuttle(sc);
   1006 
   1007 #if defined(__FreeBSD__)
   1008 	if (sc->proto & PROTO_SCSI)
   1009 		sc->transform = umass_scsi_transform;
   1010 	else if (sc->proto & PROTO_UFI)
   1011 		sc->transform = umass_ufi_transform;
   1012 	else if (sc->proto & PROTO_ATAPI)
   1013 		sc->transform = umass_8070_transform;
   1014 #ifdef UMASS_DEBUG
   1015 	else
   1016 		panic("No transformation defined for command proto 0x%02x\n",
   1017 		      sc->proto & PROTO_COMMAND);
   1018 #endif
   1019 
   1020 	/* From here onwards the device can be used. */
   1021 
   1022 	if ((sc->proto & PROTO_SCSI) ||
   1023 	    (sc->proto & PROTO_ATAPI) ||
   1024 	    (sc->proto & PROTO_UFI)) {
   1025 		/* Prepare the SCSI command block */
   1026 		sc->cam_scsi_sense.opcode = REQUEST_SENSE;
   1027 
   1028 		/* If this is the first device register the SIM */
   1029 		if (umass_sim == NULL) {
   1030 			err = umass_cam_attach_sim();
   1031 			if (err) {
   1032 				umass_disco(self);
   1033 				USB_ATTACH_ERROR_RETURN;
   1034 			}
   1035 		}
   1036 
   1037 		/* Attach the new device to our SCSI host controller (SIM) */
   1038 		err = umass_cam_attach(sc);
   1039 		if (err) {
   1040 			umass_disco(self);
   1041 			USB_ATTACH_ERROR_RETURN;
   1042 		}
   1043 	} else {
   1044 		panic("%s:%d: Unknown proto 0x%02x\n",
   1045 		      __FILE__, __LINE__, sc->proto);
   1046 	}
   1047 #elif defined(__NetBSD__) || defined(__OpenBSD__)
   1048 	/*
   1049 	 * Fill in the adapter.
   1050 	 */
   1051 	sc->sc_adapter.scsipi_cmd = umass_scsipi_cmd;
   1052 	sc->sc_adapter.scsipi_minphys = umass_scsipi_minphys;
   1053 	sc->sc_adapter.scsipi_ioctl = umass_scsipi_ioctl;
   1054 	sc->sc_adapter.scsipi_getgeom = umass_scsipi_getgeom;
   1055 
   1056 	/*
   1057 	 * fill in the prototype scsipi_link.
   1058 	 */
   1059 	switch (sc->proto & PROTO_COMMAND) {
   1060 	case PROTO_UFI:
   1061 		sc->u.sc_link.quirks |= SDEV_ONLYBIG;
   1062 		/* fall into */
   1063 	case PROTO_SCSI:
   1064 		sc->u.sc_link.type = BUS_SCSI;
   1065 		sc->u.sc_link.scsipi_scsi.channel = SCSI_CHANNEL_ONLY_ONE;
   1066 		sc->u.sc_link.adapter_softc = sc;
   1067 		sc->u.sc_link.scsipi_scsi.adapter_target = UMASS_SCSIID_HOST;
   1068 		sc->u.sc_link.adapter = &sc->sc_adapter;
   1069 		sc->u.sc_link.device = &umass_dev;
   1070 		sc->u.sc_link.openings = 1;
   1071 		sc->u.sc_link.scsipi_scsi.max_target = UMASS_SCSIID_DEVICE;
   1072 		sc->u.sc_link.scsipi_scsi.max_lun = sc->maxlun;
   1073 
   1074 		if (sc->quirks & NO_TEST_UNIT_READY)
   1075 			sc->u.sc_link.quirks |= ADEV_NOTUR;
   1076 		break;
   1077 
   1078 #if NATAPIBUS > 0
   1079 	case PROTO_ATAPI:
   1080 		sc->u.aa.sc_aa.aa_type = T_ATAPI;
   1081 		sc->u.aa.sc_aa.aa_channel = 0;
   1082 		sc->u.aa.sc_aa.aa_openings = 1;
   1083 		sc->u.aa.sc_aa.aa_drv_data = &sc->u.aa.sc_aa_drive;
   1084 		sc->u.aa.sc_aa.aa_bus_private = &sc->sc_atapi_adapter;
   1085 		sc->sc_atapi_adapter.atapi_probedev = umass_atapi_probedev;
   1086 		sc->sc_atapi_adapter.atapi_kill_pending = scsi_kill_pending;
   1087 		break;
   1088 #endif
   1089 
   1090 	default:
   1091 		printf("%s: proto=0x%x not supported yet\n",
   1092 		       USBDEVNAME(sc->sc_dev), sc->proto);
   1093 		umass_disco(sc);
   1094 		USB_ATTACH_ERROR_RETURN;
   1095 	}
   1096 
   1097 	sc->sc_child = config_found(&sc->sc_dev, &sc->u, scsipiprint);
   1098 	if (sc->sc_child == NULL) {
   1099 		umass_disco(sc);
   1100 		/* Not an error, just not a complete success. */
   1101 		USB_ATTACH_SUCCESS_RETURN;
   1102 	}
   1103 #endif
   1104 
   1105 	usbd_add_drv_event(USB_EVENT_DRIVER_ATTACH, sc->sc_udev,
   1106 			   USBDEV(sc->sc_dev));
   1107 
   1108 	DPRINTF(UDMASS_GEN, ("%s: Attach finished\n", USBDEVNAME(sc->sc_dev)));
   1109 
   1110 	USB_ATTACH_SUCCESS_RETURN;
   1111 }
   1112 
   1113 Static int
   1114 scsipiprint(void *aux, const char *pnp)
   1115 {
   1116 	struct scsipi_link *l = aux;
   1117 
   1118 	if (l->type == BUS_SCSI)
   1119 		return (scsiprint(aux, pnp));
   1120 	else {
   1121 #if NATAPIBUS > 0
   1122 		extern int atapi_print(void *aux, const char *pnp);
   1123 		return (atapi_print(aux, pnp));
   1124 #else
   1125 		if (pnp)
   1126 			printf("atapibus at %s", pnp);
   1127 		return (UNCONF);
   1128 #endif
   1129 	}
   1130 }
   1131 
   1132 USB_DETACH(umass)
   1133 {
   1134 	USB_DETACH_START(umass, sc);
   1135 	int rv = 0;
   1136 
   1137 	DPRINTF(UDMASS_USB, ("%s: detached\n", USBDEVNAME(sc->sc_dev)));
   1138 
   1139 	/* Abort the pipes to wake up any waiting processes. */
   1140 	if (sc->bulkout_pipe != NULL)
   1141 		usbd_abort_pipe(sc->bulkout_pipe);
   1142 	if (sc->bulkin_pipe != NULL)
   1143 		usbd_abort_pipe(sc->bulkin_pipe);
   1144 	if (sc->intrin_pipe != NULL)
   1145 		usbd_abort_pipe(sc->intrin_pipe);
   1146 
   1147 #if 0
   1148 	/* Do we really need referebce counting?  Perhaps in ioctl() */
   1149 	s = splusb();
   1150 	if (--sc->sc_refcnt >= 0) {
   1151 		/* Wait for processes to go away. */
   1152 		usb_detach_wait(USBDEV(sc->sc_dev));
   1153 	}
   1154 	splx(s);
   1155 #endif
   1156 
   1157 #if defined(__FreeBSD__)
   1158 	if ((sc->proto & PROTO_SCSI) ||
   1159 	    (sc->proto & PROTO_ATAPI) ||
   1160 	    (sc->proto & PROTO_UFI))
   1161 		/* detach the device from the SCSI host controller (SIM) */
   1162 		rv = umass_cam_detach(sc);
   1163 #elif defined(__NetBSD__) || defined(__OpenBSD__)
   1164 	if (sc->sc_child != NULL)
   1165 		rv = config_detach(sc->sc_child, flags);
   1166 #endif
   1167 	if (rv != 0)
   1168 		return (rv);
   1169 
   1170 	umass_disco(sc);
   1171 
   1172 	usbd_add_drv_event(USB_EVENT_DRIVER_DETACH, sc->sc_udev,
   1173 			   USBDEV(sc->sc_dev));
   1174 
   1175 	return (0);
   1176 }
   1177 
   1178 #if defined(__NetBSD__) || defined(__OpenBSD__)
   1179 int
   1180 umass_activate(struct device *self, enum devact act)
   1181 {
   1182 	struct umass_softc *sc = (struct umass_softc *) self;
   1183 	int rv = 0;
   1184 
   1185 	DPRINTF(UDMASS_USB, ("%s: umass_activate: %d\n",
   1186 	    USBDEVNAME(sc->sc_dev), act));
   1187 
   1188 	switch (act) {
   1189 	case DVACT_ACTIVATE:
   1190 		rv = EOPNOTSUPP;
   1191 		break;
   1192 
   1193 	case DVACT_DEACTIVATE:
   1194 		if (sc->sc_child == NULL)
   1195 			break;
   1196 		rv = config_deactivate(sc->sc_child);
   1197 		DPRINTF(UDMASS_USB, ("%s: umass_activate: child "
   1198 		    "returned %d\n", USBDEVNAME(sc->sc_dev), rv));
   1199 		if (rv == 0)
   1200 			sc->sc_dying = 1;
   1201 		break;
   1202 	}
   1203 	return (rv);
   1204 }
   1205 #endif
   1206 
   1207 Static void
   1208 umass_disco(struct umass_softc *sc)
   1209 {
   1210 	int i;
   1211 
   1212 	DPRINTF(UDMASS_GEN, ("umass_disco\n"));
   1213 
   1214 	/* Free the xfers. */
   1215 	for (i = 0; i < XFER_NR; i++)
   1216 		if (sc->transfer_xfer[i] != NULL) {
   1217 			usbd_free_xfer(sc->transfer_xfer[i]);
   1218 			sc->transfer_xfer[i] = NULL;
   1219 		}
   1220 
   1221 	/* Remove all the pipes. */
   1222 	if (sc->bulkout_pipe != NULL)
   1223 		usbd_close_pipe(sc->bulkout_pipe);
   1224 	if (sc->bulkin_pipe != NULL)
   1225 		usbd_close_pipe(sc->bulkin_pipe);
   1226 	if (sc->intrin_pipe != NULL)
   1227 		usbd_close_pipe(sc->intrin_pipe);
   1228 }
   1229 
   1230 Static void
   1231 umass_init_shuttle(struct umass_softc *sc)
   1232 {
   1233 	usb_device_request_t req;
   1234 	u_char status[2];
   1235 
   1236 	/* The Linux driver does this */
   1237 	req.bmRequestType = UT_READ_VENDOR_DEVICE;
   1238 	req.bRequest = 1;
   1239 	USETW(req.wValue, 0);
   1240 	USETW(req.wIndex, sc->ifaceno);
   1241 	USETW(req.wLength, sizeof status);
   1242 	(void)usbd_do_request(sc->sc_udev, &req, &status);
   1243 }
   1244 
   1245 /*
   1246  * Generic functions to handle transfers
   1247  */
   1248 
   1249 Static usbd_status
   1250 umass_setup_transfer(struct umass_softc *sc, usbd_pipe_handle pipe,
   1251 			void *buffer, int buflen, int flags,
   1252 			usbd_xfer_handle xfer)
   1253 {
   1254 	usbd_status err;
   1255 
   1256 	if (sc->sc_dying)
   1257 		return (USBD_IOERROR);
   1258 
   1259 	/* Initialiase a USB transfer and then schedule it */
   1260 
   1261 	usbd_setup_xfer(xfer, pipe, (void *)sc, buffer, buflen,
   1262 	    flags | sc->sc_xfer_flags, sc->timeout, sc->state);
   1263 
   1264 	err = usbd_transfer(xfer);
   1265 	DPRINTF(UDMASS_XFER,("%s: start xfer buffer=%p buflen=%d flags=0x%x "
   1266 	    "timeout=%d\n", USBDEVNAME(sc->sc_dev),
   1267 	    buffer, buflen, flags | sc->sc_xfer_flags, sc->timeout));
   1268 	if (err && err != USBD_IN_PROGRESS) {
   1269 		DPRINTF(UDMASS_BBB, ("%s: failed to setup transfer, %s\n",
   1270 			USBDEVNAME(sc->sc_dev), usbd_errstr(err)));
   1271 		return (err);
   1272 	}
   1273 
   1274 	return (USBD_NORMAL_COMPLETION);
   1275 }
   1276 
   1277 
   1278 Static usbd_status
   1279 umass_setup_ctrl_transfer(struct umass_softc *sc, usbd_device_handle dev,
   1280 	 usb_device_request_t *req,
   1281 	 void *buffer, int buflen, int flags,
   1282 	 usbd_xfer_handle xfer)
   1283 {
   1284 	usbd_status err;
   1285 
   1286 	if (sc->sc_dying)
   1287 		return (USBD_IOERROR);
   1288 
   1289 	/* Initialiase a USB control transfer and then schedule it */
   1290 
   1291 	usbd_setup_default_xfer(xfer, dev, (void *) sc,
   1292 	    sc->timeout, req, buffer, buflen, flags, sc->state);
   1293 
   1294 	err = usbd_transfer(xfer);
   1295 	if (err && err != USBD_IN_PROGRESS) {
   1296 		DPRINTF(UDMASS_BBB, ("%s: failed to setup ctrl transfer, %s\n",
   1297 			 USBDEVNAME(sc->sc_dev), usbd_errstr(err)));
   1298 
   1299 		/* do not reset, as this would make us loop */
   1300 		return (err);
   1301 	}
   1302 
   1303 	return (USBD_NORMAL_COMPLETION);
   1304 }
   1305 
   1306 Static void
   1307 umass_clear_endpoint_stall(struct umass_softc *sc,
   1308 	u_int8_t endpt, usbd_pipe_handle pipe,
   1309 	int state, usbd_xfer_handle xfer)
   1310 {
   1311 	usbd_device_handle dev;
   1312 
   1313 	if (sc->sc_dying)
   1314 		return;
   1315 
   1316 	DPRINTF(UDMASS_BBB, ("%s: Clear endpoint 0x%02x stall\n",
   1317 		USBDEVNAME(sc->sc_dev), endpt));
   1318 
   1319 	usbd_interface2device_handle(sc->iface, &dev);
   1320 
   1321 	sc->transfer_state = state;
   1322 
   1323 	usbd_clear_endpoint_toggle(pipe);
   1324 
   1325 	sc->request.bmRequestType = UT_WRITE_ENDPOINT;
   1326 	sc->request.bRequest = UR_CLEAR_FEATURE;
   1327 	USETW(sc->request.wValue, UF_ENDPOINT_HALT);
   1328 	USETW(sc->request.wIndex, endpt);
   1329 	USETW(sc->request.wLength, 0);
   1330 	umass_setup_ctrl_transfer(sc, dev, &sc->request, NULL, 0, 0, xfer);
   1331 }
   1332 
   1333 #if 0
   1334 Static void
   1335 umass_reset(struct umass_softc *sc, transfer_cb_f cb, void *priv)
   1336 {
   1337 	sc->transfer_cb = cb;
   1338 	sc->transfer_priv = priv;
   1339 
   1340 	/* The reset is a forced reset, so no error (yet) */
   1341 	sc->reset(sc, STATUS_CMD_OK);
   1342 }
   1343 #endif
   1344 
   1345 /*
   1346  * Bulk protocol specific functions
   1347  */
   1348 
   1349 Static void
   1350 umass_bbb_reset(struct umass_softc *sc, int status)
   1351 {
   1352 	usbd_device_handle dev;
   1353 
   1354 	KASSERT(sc->proto & PROTO_BBB,
   1355 		("sc->proto == 0x%02x wrong for umass_bbb_reset\n", sc->proto));
   1356 
   1357 	if (sc->sc_dying)
   1358 		return;
   1359 
   1360 	/*
   1361 	 * Reset recovery (5.3.4 in Universal Serial Bus Mass Storage Class)
   1362 	 *
   1363 	 * For Reset Recovery the host shall issue in the following order:
   1364 	 * a) a Bulk-Only Mass Storage Reset
   1365 	 * b) a Clear Feature HALT to the Bulk-In endpoint
   1366 	 * c) a Clear Feature HALT to the Bulk-Out endpoint
   1367 	 *
   1368 	 * This is done in 3 steps, states:
   1369 	 * TSTATE_BBB_RESET1
   1370 	 * TSTATE_BBB_RESET2
   1371 	 * TSTATE_BBB_RESET3
   1372 	 *
   1373 	 * If the reset doesn't succeed, the device should be port reset.
   1374 	 */
   1375 
   1376 	DPRINTF(UDMASS_BBB, ("%s: Bulk Reset\n",
   1377 		USBDEVNAME(sc->sc_dev)));
   1378 
   1379 	sc->transfer_state = TSTATE_BBB_RESET1;
   1380 	sc->transfer_status = status;
   1381 
   1382 	usbd_interface2device_handle(sc->iface, &dev);
   1383 
   1384 	/* reset is a class specific interface write */
   1385 	sc->request.bmRequestType = UT_WRITE_CLASS_INTERFACE;
   1386 	sc->request.bRequest = UR_BBB_RESET;
   1387 	USETW(sc->request.wValue, 0);
   1388 	USETW(sc->request.wIndex, sc->ifaceno);
   1389 	USETW(sc->request.wLength, 0);
   1390 	umass_setup_ctrl_transfer(sc, dev, &sc->request, NULL, 0, 0,
   1391 				  sc->transfer_xfer[XFER_BBB_RESET1]);
   1392 }
   1393 
   1394 Static void
   1395 umass_bbb_transfer(struct umass_softc *sc, int lun, void *cmd, int cmdlen,
   1396 		    void *data, int datalen, int dir,
   1397 		    transfer_cb_f cb, void *priv)
   1398 {
   1399 	static int dCBWtag = 42;	/* unique for CBW of transfer */
   1400 
   1401 	DPRINTF(UDMASS_BBB,("%s: umass_bbb_transfer cmd=0x%02x\n",
   1402 		USBDEVNAME(sc->sc_dev), *(u_char*)cmd));
   1403 
   1404 	KASSERT(sc->proto & PROTO_BBB,
   1405 		("sc->proto == 0x%02x wrong for umass_bbb_transfer\n",
   1406 		sc->proto));
   1407 
   1408 	/*
   1409 	 * Do a Bulk-Only transfer with cmdlen bytes from cmd, possibly
   1410 	 * a data phase of datalen bytes from/to the device and finally a
   1411 	 * csw read phase.
   1412 	 * If the data direction was inbound a maximum of datalen bytes
   1413 	 * is stored in the buffer pointed to by data.
   1414 	 *
   1415 	 * umass_bbb_transfer initialises the transfer and lets the state
   1416 	 * machine in umass_bbb_state handle the completion. It uses the
   1417 	 * following states:
   1418 	 * TSTATE_BBB_COMMAND
   1419 	 *   -> TSTATE_BBB_DATA
   1420 	 *   -> TSTATE_BBB_STATUS
   1421 	 *   -> TSTATE_BBB_STATUS2
   1422 	 *   -> TSTATE_BBB_IDLE
   1423 	 *
   1424 	 * An error in any of those states will invoke
   1425 	 * umass_bbb_reset.
   1426 	 */
   1427 
   1428 	/* check the given arguments */
   1429 	KASSERT(datalen == 0 || data != NULL,
   1430 		("%s: datalen > 0, but no buffer",USBDEVNAME(sc->sc_dev)));
   1431 	KASSERT(cmdlen <= CBWCDBLENGTH,
   1432 		("%s: cmdlen exceeds CDB length in CBW (%d > %d)",
   1433 			USBDEVNAME(sc->sc_dev), cmdlen, CBWCDBLENGTH));
   1434 	KASSERT(dir == DIR_NONE || datalen > 0,
   1435 		("%s: datalen == 0 while direction is not NONE\n",
   1436 			USBDEVNAME(sc->sc_dev)));
   1437 	KASSERT(datalen == 0 || dir != DIR_NONE,
   1438 		("%s: direction is NONE while datalen is not zero\n",
   1439 			USBDEVNAME(sc->sc_dev)));
   1440 	KASSERT(sizeof(umass_bbb_cbw_t) == UMASS_BBB_CBW_SIZE,
   1441 		("%s: CBW struct does not have the right size (%d vs. %d)\n",
   1442 			USBDEVNAME(sc->sc_dev),
   1443 			sizeof(umass_bbb_cbw_t), UMASS_BBB_CBW_SIZE));
   1444 	KASSERT(sizeof(umass_bbb_csw_t) == UMASS_BBB_CSW_SIZE,
   1445 		("%s: CSW struct does not have the right size (%d vs. %d)\n",
   1446 			USBDEVNAME(sc->sc_dev),
   1447 			sizeof(umass_bbb_csw_t), UMASS_BBB_CSW_SIZE));
   1448 
   1449 	/*
   1450 	 * Determine the direction of the data transfer and the length.
   1451 	 *
   1452 	 * dCBWDataTransferLength (datalen) :
   1453 	 *   This field indicates the number of bytes of data that the host
   1454 	 *   intends to transfer on the IN or OUT Bulk endpoint(as indicated by
   1455 	 *   the Direction bit) during the execution of this command. If this
   1456 	 *   field is set to 0, the device will expect that no data will be
   1457 	 *   transferred IN or OUT during this command, regardless of the value
   1458 	 *   of the Direction bit defined in dCBWFlags.
   1459 	 *
   1460 	 * dCBWFlags (dir) :
   1461 	 *   The bits of the Flags field are defined as follows:
   1462 	 *     Bits 0-6	 reserved
   1463 	 *     Bit  7	 Direction - this bit shall be ignored if the
   1464 	 *			     dCBWDataTransferLength field is zero.
   1465 	 *		 0 = data Out from host to device
   1466 	 *		 1 = data In from device to host
   1467 	 */
   1468 
   1469 	/* Fill in the Command Block Wrapper */
   1470 	USETDW(sc->cbw.dCBWSignature, CBWSIGNATURE);
   1471 	USETDW(sc->cbw.dCBWTag, dCBWtag);
   1472 	dCBWtag++;	/* cannot be done in macro (it will be done 4 times) */
   1473 	USETDW(sc->cbw.dCBWDataTransferLength, datalen);
   1474 	/* DIR_NONE is treated as DIR_OUT (0x00) */
   1475 	sc->cbw.bCBWFlags = (dir == DIR_IN? CBWFLAGS_IN:CBWFLAGS_OUT);
   1476 	sc->cbw.bCBWLUN = lun;
   1477 	sc->cbw.bCDBLength = cmdlen;
   1478 	bcopy(cmd, sc->cbw.CBWCDB, cmdlen);
   1479 
   1480 	DIF(UDMASS_BBB, umass_bbb_dump_cbw(sc, &sc->cbw));
   1481 
   1482 	/* store the details for the data transfer phase */
   1483 	sc->transfer_dir = dir;
   1484 	sc->transfer_data = data;
   1485 	sc->transfer_datalen = datalen;
   1486 	sc->transfer_actlen = 0;
   1487 	sc->transfer_cb = cb;
   1488 	sc->transfer_priv = priv;
   1489 	sc->transfer_status = STATUS_CMD_OK;
   1490 
   1491 	/* move from idle to the command state */
   1492 	sc->transfer_state = TSTATE_BBB_COMMAND;
   1493 
   1494 	/* Send the CBW from host to device via bulk-out endpoint. */
   1495 	if (umass_setup_transfer(sc, sc->bulkout_pipe,
   1496 			&sc->cbw, UMASS_BBB_CBW_SIZE, 0,
   1497 			sc->transfer_xfer[XFER_BBB_CBW])) {
   1498 		umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1499 	}
   1500 }
   1501 
   1502 
   1503 Static void
   1504 umass_bbb_state(usbd_xfer_handle xfer, usbd_private_handle priv,
   1505 		usbd_status err)
   1506 {
   1507 	struct umass_softc *sc = (struct umass_softc *) priv;
   1508 	usbd_xfer_handle next_xfer;
   1509 
   1510 	KASSERT(sc->proto & PROTO_BBB,
   1511 		("sc->proto == 0x%02x wrong for umass_bbb_state\n",sc->proto));
   1512 
   1513 	if (sc->sc_dying)
   1514 		return;
   1515 
   1516 	/*
   1517 	 * State handling for BBB transfers.
   1518 	 *
   1519 	 * The subroutine is rather long. It steps through the states given in
   1520 	 * Annex A of the Bulk-Only specification.
   1521 	 * Each state first does the error handling of the previous transfer
   1522 	 * and then prepares the next transfer.
   1523 	 * Each transfer is done asynchroneously so after the request/transfer
   1524 	 * has been submitted you will find a 'return;'.
   1525 	 */
   1526 
   1527 	DPRINTF(UDMASS_BBB, ("%s: Handling BBB state %d (%s), xfer=%p, %s\n",
   1528 		USBDEVNAME(sc->sc_dev), sc->transfer_state,
   1529 		states[sc->transfer_state], xfer, usbd_errstr(err)));
   1530 
   1531 	switch (sc->transfer_state) {
   1532 
   1533 	/***** Bulk Transfer *****/
   1534 	case TSTATE_BBB_COMMAND:
   1535 		/* Command transport phase, error handling */
   1536 		if (err) {
   1537 			DPRINTF(UDMASS_BBB, ("%s: failed to send CBW\n",
   1538 				USBDEVNAME(sc->sc_dev)));
   1539 			/* If the device detects that the CBW is invalid, then
   1540 			 * the device may STALL both bulk endpoints and require
   1541 			 * a Bulk-Reset
   1542 			 */
   1543 			umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1544 			return;
   1545 		}
   1546 
   1547 		/* Data transport phase, setup transfer */
   1548 		sc->transfer_state = TSTATE_BBB_DATA;
   1549 		if (sc->transfer_dir == DIR_IN) {
   1550 			if (umass_setup_transfer(sc, sc->bulkin_pipe,
   1551 					sc->data_buffer, sc->transfer_datalen,
   1552 					USBD_SHORT_XFER_OK | USBD_NO_COPY,
   1553 					sc->transfer_xfer[XFER_BBB_DATA]))
   1554 				umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1555 
   1556 			return;
   1557 		} else if (sc->transfer_dir == DIR_OUT) {
   1558 			memcpy(sc->data_buffer, sc->transfer_data,
   1559 			       sc->transfer_datalen);
   1560 			if (umass_setup_transfer(sc, sc->bulkout_pipe,
   1561 					sc->data_buffer, sc->transfer_datalen,
   1562 					USBD_NO_COPY,/* fixed length transfer */
   1563 					sc->transfer_xfer[XFER_BBB_DATA]))
   1564 				umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1565 
   1566 			return;
   1567 		} else {
   1568 			DPRINTF(UDMASS_BBB, ("%s: no data phase\n",
   1569 				USBDEVNAME(sc->sc_dev)));
   1570 		}
   1571 
   1572 		/* FALLTHROUGH if no data phase, err == 0 */
   1573 	case TSTATE_BBB_DATA:
   1574 		/* Command transport phase, error handling (ignored if no data
   1575 		 * phase (fallthrough from previous state)) */
   1576 		if (sc->transfer_dir != DIR_NONE) {
   1577 			/* retrieve the length of the transfer that was done */
   1578 			usbd_get_xfer_status(xfer, NULL, NULL,
   1579 					     &sc->transfer_actlen, NULL);
   1580 
   1581 			if (err) {
   1582 				DPRINTF(UDMASS_BBB, ("%s: Data-%s %db failed, "
   1583 					"%s\n", USBDEVNAME(sc->sc_dev),
   1584 					(sc->transfer_dir == DIR_IN?"in":"out"),
   1585 					sc->transfer_datalen,usbd_errstr(err)));
   1586 
   1587 				if (err == USBD_STALLED) {
   1588 					umass_clear_endpoint_stall(sc,
   1589 					  (sc->transfer_dir == DIR_IN?
   1590 					    sc->bulkin:sc->bulkout),
   1591 					  (sc->transfer_dir == DIR_IN?
   1592 					    sc->bulkin_pipe:sc->bulkout_pipe),
   1593 					  TSTATE_BBB_DCLEAR,
   1594 					  sc->transfer_xfer[XFER_BBB_DCLEAR]);
   1595 					return;
   1596 				} else {
   1597 					/* Unless the error is a pipe stall the
   1598 					 * error is fatal.
   1599 					 */
   1600 					umass_bbb_reset(sc,STATUS_WIRE_FAILED);
   1601 					return;
   1602 				}
   1603 			}
   1604 		}
   1605 
   1606 		if (sc->transfer_dir == DIR_IN)
   1607 			memcpy(sc->transfer_data, sc->data_buffer,
   1608 			       sc->transfer_actlen);
   1609 
   1610 		DIF(UDMASS_BBB, if (sc->transfer_dir == DIR_IN)
   1611 					umass_dump_buffer(sc, sc->transfer_data,
   1612 						sc->transfer_datalen, 48));
   1613 
   1614 		/* FALLTHROUGH, err == 0 (no data phase or successfull) */
   1615 	case TSTATE_BBB_DCLEAR: /* stall clear after data phase */
   1616 	case TSTATE_BBB_SCLEAR: /* stall clear after status phase */
   1617 		/* Reading of CSW after bulk stall condition in data phase
   1618 		 * (TSTATE_BBB_DATA2) or bulk-in stall condition after
   1619 		 * reading CSW (TSTATE_BBB_SCLEAR).
   1620 		 * In the case of no data phase or successfull data phase,
   1621 		 * err == 0 and the following if block is passed.
   1622 		 */
   1623 		if (err) {	/* should not occur */
   1624 			/* try the transfer below, even if clear stall failed */
   1625 			DPRINTF(UDMASS_BBB, ("%s: bulk-%s stall clear failed"
   1626 				", %s\n", USBDEVNAME(sc->sc_dev),
   1627 				(sc->transfer_dir == DIR_IN? "in":"out"),
   1628 				usbd_errstr(err)));
   1629 			umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1630 			return;
   1631 		}
   1632 
   1633 		/* Status transport phase, setup transfer */
   1634 		if (sc->transfer_state == TSTATE_BBB_COMMAND ||
   1635 		    sc->transfer_state == TSTATE_BBB_DATA ||
   1636 		    sc->transfer_state == TSTATE_BBB_DCLEAR) {
   1637 			/* After no data phase, successfull data phase and
   1638 			 * after clearing bulk-in/-out stall condition
   1639 			 */
   1640 			sc->transfer_state = TSTATE_BBB_STATUS1;
   1641 			next_xfer = sc->transfer_xfer[XFER_BBB_CSW1];
   1642 		} else {
   1643 			/* After first attempt of fetching CSW */
   1644 			sc->transfer_state = TSTATE_BBB_STATUS2;
   1645 			next_xfer = sc->transfer_xfer[XFER_BBB_CSW2];
   1646 		}
   1647 
   1648 		/* Read the Command Status Wrapper via bulk-in endpoint. */
   1649 		if (umass_setup_transfer(sc, sc->bulkin_pipe,
   1650 				&sc->csw, UMASS_BBB_CSW_SIZE, 0,
   1651 				next_xfer)) {
   1652 			umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1653 			return;
   1654 		}
   1655 
   1656 		return;
   1657 	case TSTATE_BBB_STATUS1:	/* first attempt */
   1658 	case TSTATE_BBB_STATUS2:	/* second attempt */
   1659 		/* Status transfer, error handling */
   1660 		if (err) {
   1661 			DPRINTF(UDMASS_BBB, ("%s: Failed to read CSW, %s%s\n",
   1662 				USBDEVNAME(sc->sc_dev), usbd_errstr(err),
   1663 				(sc->transfer_state == TSTATE_BBB_STATUS1?
   1664 					", retrying":"")));
   1665 
   1666 			/* If this was the first attempt at fetching the CSW
   1667 			 * retry it, otherwise fail.
   1668 			 */
   1669 			if (sc->transfer_state == TSTATE_BBB_STATUS1) {
   1670 				umass_clear_endpoint_stall(sc,
   1671 						sc->bulkin, sc->bulkin_pipe,
   1672 						TSTATE_BBB_SCLEAR,
   1673 						sc->transfer_xfer[XFER_BBB_SCLEAR]);
   1674 				return;
   1675 			} else {
   1676 				umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1677 				return;
   1678 			}
   1679 		}
   1680 
   1681 		DIF(UDMASS_BBB, umass_bbb_dump_csw(sc, &sc->csw));
   1682 
   1683 		/* Check CSW and handle any error */
   1684 		if (UGETDW(sc->csw.dCSWSignature) != CSWSIGNATURE) {
   1685 			/* Invalid CSW: Wrong signature or wrong tag might
   1686 			 * indicate that the device is confused -> reset it.
   1687 			 */
   1688 			printf("%s: Invalid CSW: sig 0x%08x should be 0x%08x\n",
   1689 				USBDEVNAME(sc->sc_dev),
   1690 				UGETDW(sc->csw.dCSWSignature),
   1691 				CSWSIGNATURE);
   1692 
   1693 			umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1694 			return;
   1695 		} else if (UGETDW(sc->csw.dCSWTag)
   1696 				!= UGETDW(sc->cbw.dCBWTag)) {
   1697 			printf("%s: Invalid CSW: tag %d should be %d\n",
   1698 				USBDEVNAME(sc->sc_dev),
   1699 				UGETDW(sc->csw.dCSWTag),
   1700 				UGETDW(sc->cbw.dCBWTag));
   1701 
   1702 			umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1703 			return;
   1704 
   1705 		/* CSW is valid here */
   1706 		} else if (sc->csw.bCSWStatus > CSWSTATUS_PHASE) {
   1707 			printf("%s: Invalid CSW: status %d > %d\n",
   1708 				USBDEVNAME(sc->sc_dev),
   1709 				sc->csw.bCSWStatus,
   1710 				CSWSTATUS_PHASE);
   1711 
   1712 			umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1713 			return;
   1714 		} else if (sc->csw.bCSWStatus == CSWSTATUS_PHASE) {
   1715 			printf("%s: Phase Error, residue = %d\n",
   1716 				USBDEVNAME(sc->sc_dev),
   1717 				UGETDW(sc->csw.dCSWDataResidue));
   1718 
   1719 			umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1720 			return;
   1721 
   1722 		} else if (sc->transfer_actlen > sc->transfer_datalen) {
   1723 			/* Buffer overrun! Don't let this go by unnoticed */
   1724 			panic("%s: transferred %d bytes instead of %d bytes\n",
   1725 				USBDEVNAME(sc->sc_dev),
   1726 				sc->transfer_actlen, sc->transfer_datalen);
   1727 		} else if (sc->transfer_datalen - sc->transfer_actlen
   1728 			   != UGETDW(sc->csw.dCSWDataResidue)) {
   1729 			DPRINTF(UDMASS_BBB, ("%s: actlen=%d != residue=%d\n",
   1730 				USBDEVNAME(sc->sc_dev),
   1731 				sc->transfer_datalen - sc->transfer_actlen,
   1732 				UGETDW(sc->csw.dCSWDataResidue)));
   1733 
   1734 			umass_bbb_reset(sc, STATUS_WIRE_FAILED);
   1735 			return;
   1736 
   1737 		} else if (sc->csw.bCSWStatus == CSWSTATUS_FAILED) {
   1738 			DPRINTF(UDMASS_BBB, ("%s: Command Failed, res = %d\n",
   1739 				USBDEVNAME(sc->sc_dev),
   1740 				UGETDW(sc->csw.dCSWDataResidue)));
   1741 
   1742 			/* SCSI command failed but transfer was succesful */
   1743 			sc->transfer_state = TSTATE_IDLE;
   1744 			sc->transfer_cb(sc, sc->transfer_priv,
   1745 					UGETDW(sc->csw.dCSWDataResidue),
   1746 					STATUS_CMD_FAILED);
   1747 
   1748 			return;
   1749 
   1750 		} else {	/* success */
   1751 			sc->transfer_state = TSTATE_IDLE;
   1752 			sc->transfer_cb(sc, sc->transfer_priv,
   1753 					UGETDW(sc->csw.dCSWDataResidue),
   1754 					STATUS_CMD_OK);
   1755 
   1756 			return;
   1757 		}
   1758 
   1759 	/***** Bulk Reset *****/
   1760 	case TSTATE_BBB_RESET1:
   1761 		if (err)
   1762 			printf("%s: BBB reset failed, %s\n",
   1763 				USBDEVNAME(sc->sc_dev), usbd_errstr(err));
   1764 
   1765 		umass_clear_endpoint_stall(sc,
   1766 			sc->bulkin, sc->bulkin_pipe, TSTATE_BBB_RESET2,
   1767 			sc->transfer_xfer[XFER_BBB_RESET2]);
   1768 
   1769 		return;
   1770 	case TSTATE_BBB_RESET2:
   1771 		if (err)	/* should not occur */
   1772 			printf("%s: BBB bulk-in clear stall failed, %s\n",
   1773 			       USBDEVNAME(sc->sc_dev), usbd_errstr(err));
   1774 			/* no error recovery, otherwise we end up in a loop */
   1775 
   1776 		umass_clear_endpoint_stall(sc,
   1777 			sc->bulkout, sc->bulkout_pipe, TSTATE_BBB_RESET3,
   1778 			sc->transfer_xfer[XFER_BBB_RESET3]);
   1779 
   1780 		return;
   1781 	case TSTATE_BBB_RESET3:
   1782 		if (err)	/* should not occur */
   1783 			printf("%s: BBB bulk-out clear stall failed, %s\n",
   1784 			       USBDEVNAME(sc->sc_dev), usbd_errstr(err));
   1785 			/* no error recovery, otherwise we end up in a loop */
   1786 
   1787 		sc->transfer_state = TSTATE_IDLE;
   1788 		if (sc->transfer_priv) {
   1789 			sc->transfer_cb(sc, sc->transfer_priv,
   1790 					sc->transfer_datalen,
   1791 					sc->transfer_status);
   1792 		}
   1793 
   1794 		return;
   1795 
   1796 	/***** Default *****/
   1797 	default:
   1798 		panic("%s: Unknown state %d\n",
   1799 		      USBDEVNAME(sc->sc_dev), sc->transfer_state);
   1800 	}
   1801 }
   1802 
   1803 /*
   1804  * Command/Bulk/Interrupt (CBI) specific functions
   1805  */
   1806 
   1807 Static int
   1808 umass_cbi_adsc(struct umass_softc *sc, char *buffer, int buflen,
   1809 	       usbd_xfer_handle xfer)
   1810 {
   1811 	usbd_device_handle dev;
   1812 
   1813 	KASSERT(sc->proto & (PROTO_CBI|PROTO_CBI_I),
   1814 		("sc->proto == 0x%02x wrong for umass_cbi_adsc\n",sc->proto));
   1815 
   1816 	usbd_interface2device_handle(sc->iface, &dev);
   1817 
   1818 	sc->request.bmRequestType = UT_WRITE_CLASS_INTERFACE;
   1819 	sc->request.bRequest = UR_CBI_ADSC;
   1820 	USETW(sc->request.wValue, 0);
   1821 	USETW(sc->request.wIndex, sc->ifaceno);
   1822 	USETW(sc->request.wLength, buflen);
   1823 	return umass_setup_ctrl_transfer(sc, dev, &sc->request, buffer,
   1824 					 buflen, 0, xfer);
   1825 }
   1826 
   1827 
   1828 Static void
   1829 umass_cbi_reset(struct umass_softc *sc, int status)
   1830 {
   1831 	int i;
   1832 #	define SEND_DIAGNOSTIC_CMDLEN	12
   1833 
   1834 	KASSERT(sc->proto & (PROTO_CBI|PROTO_CBI_I),
   1835 		("sc->proto == 0x%02x wrong for umass_cbi_reset\n",sc->proto));
   1836 
   1837 	if (sc->sc_dying)
   1838 		return;
   1839 
   1840 	/*
   1841 	 * Command Block Reset Protocol
   1842 	 *
   1843 	 * First send a reset request to the device. Then clear
   1844 	 * any possibly stalled bulk endpoints.
   1845 
   1846 	 * This is done in 3 steps, states:
   1847 	 * TSTATE_CBI_RESET1
   1848 	 * TSTATE_CBI_RESET2
   1849 	 * TSTATE_CBI_RESET3
   1850 	 *
   1851 	 * If the reset doesn't succeed, the device should be port reset.
   1852 	 */
   1853 
   1854 	DPRINTF(UDMASS_CBI, ("%s: CBI Reset\n",
   1855 		USBDEVNAME(sc->sc_dev)));
   1856 
   1857 	KASSERT(sizeof(sc->cbl) >= SEND_DIAGNOSTIC_CMDLEN,
   1858 		("%s: CBL struct is too small (%d < %d)\n",
   1859 			USBDEVNAME(sc->sc_dev),
   1860 			sizeof(sc->cbl), SEND_DIAGNOSTIC_CMDLEN));
   1861 
   1862 	sc->transfer_state = TSTATE_CBI_RESET1;
   1863 	sc->transfer_status = status;
   1864 
   1865 	/* The 0x1d code is the SEND DIAGNOSTIC command. To distingiush between
   1866 	 * the two the last 10 bytes of the cbl is filled with 0xff (section
   1867 	 * 2.2 of the CBI spec).
   1868 	 */
   1869 	sc->cbl[0] = 0x1d;	/* Command Block Reset */
   1870 	sc->cbl[1] = 0x04;
   1871 	for (i = 2; i < SEND_DIAGNOSTIC_CMDLEN; i++)
   1872 		sc->cbl[i] = 0xff;
   1873 
   1874 	umass_cbi_adsc(sc, sc->cbl, SEND_DIAGNOSTIC_CMDLEN,
   1875 		       sc->transfer_xfer[XFER_CBI_RESET1]);
   1876 	/* XXX if the command fails we should reset the port on the bub */
   1877 }
   1878 
   1879 Static void
   1880 umass_cbi_transfer(struct umass_softc *sc, int lun,
   1881 		void *cmd, int cmdlen, void *data, int datalen, int dir,
   1882 		transfer_cb_f cb, void *priv)
   1883 {
   1884 	DPRINTF(UDMASS_CBI,("%s: umass_cbi_transfer cmd=0x%02x, len=%d\n",
   1885 		USBDEVNAME(sc->sc_dev), *(u_char*)cmd, datalen));
   1886 
   1887 	KASSERT(sc->proto & (PROTO_CBI|PROTO_CBI_I),
   1888 		("sc->proto == 0x%02x wrong for umass_cbi_transfer\n",
   1889 		sc->proto));
   1890 
   1891 	if (sc->sc_dying)
   1892 		return;
   1893 
   1894 	/*
   1895 	 * Do a CBI transfer with cmdlen bytes from cmd, possibly
   1896 	 * a data phase of datalen bytes from/to the device and finally a
   1897 	 * csw read phase.
   1898 	 * If the data direction was inbound a maximum of datalen bytes
   1899 	 * is stored in the buffer pointed to by data.
   1900 	 *
   1901 	 * umass_cbi_transfer initialises the transfer and lets the state
   1902 	 * machine in umass_cbi_state handle the completion. It uses the
   1903 	 * following states:
   1904 	 * TSTATE_CBI_COMMAND
   1905 	 *   -> XXX fill in
   1906 	 *
   1907 	 * An error in any of those states will invoke
   1908 	 * umass_cbi_reset.
   1909 	 */
   1910 
   1911 	/* check the given arguments */
   1912 	KASSERT(datalen == 0 || data != NULL,
   1913 		("%s: datalen > 0, but no buffer",USBDEVNAME(sc->sc_dev)));
   1914 	KASSERT(datalen == 0 || dir != DIR_NONE,
   1915 		("%s: direction is NONE while datalen is not zero\n",
   1916 			USBDEVNAME(sc->sc_dev)));
   1917 
   1918 	/* store the details for the data transfer phase */
   1919 	sc->transfer_dir = dir;
   1920 	sc->transfer_data = data;
   1921 	sc->transfer_datalen = datalen;
   1922 	sc->transfer_actlen = 0;
   1923 	sc->transfer_cb = cb;
   1924 	sc->transfer_priv = priv;
   1925 	sc->transfer_status = STATUS_CMD_OK;
   1926 
   1927 	/* move from idle to the command state */
   1928 	sc->transfer_state = TSTATE_CBI_COMMAND;
   1929 
   1930 	/* Send the Command Block from host to device via control endpoint. */
   1931 	if (umass_cbi_adsc(sc, cmd, cmdlen, sc->transfer_xfer[XFER_CBI_CB]))
   1932 		umass_cbi_reset(sc, STATUS_WIRE_FAILED);
   1933 }
   1934 
   1935 Static void
   1936 umass_cbi_state(usbd_xfer_handle xfer, usbd_private_handle priv,
   1937 		usbd_status err)
   1938 {
   1939 	struct umass_softc *sc = (struct umass_softc *) priv;
   1940 
   1941 	KASSERT(sc->proto & (PROTO_CBI|PROTO_CBI_I),
   1942 		("sc->proto == 0x%02x wrong for umass_cbi_state\n", sc->proto));
   1943 
   1944 	if (sc->sc_dying)
   1945 		return;
   1946 
   1947 	/*
   1948 	 * State handling for CBI transfers.
   1949 	 */
   1950 
   1951 	DPRINTF(UDMASS_CBI, ("%s: Handling CBI state %d (%s), xfer=%p, %s\n",
   1952 		USBDEVNAME(sc->sc_dev), sc->transfer_state,
   1953 		states[sc->transfer_state], xfer, usbd_errstr(err)));
   1954 
   1955 	switch (sc->transfer_state) {
   1956 
   1957 	/***** CBI Transfer *****/
   1958 	case TSTATE_CBI_COMMAND:
   1959 		if (err == USBD_STALLED) {
   1960 			DPRINTF(UDMASS_CBI, ("%s: Command Transport failed\n",
   1961 				USBDEVNAME(sc->sc_dev)));
   1962 			/* Status transport by control pipe (section 2.3.2.1).
   1963 			 * The command contained in the command block failed.
   1964 			 *
   1965 			 * The control pipe has already been unstalled by the
   1966 			 * USB stack.
   1967 			 * Section 2.4.3.1.1 states that the bulk in endpoints
   1968 			 * should not stalled at this point.
   1969 			 */
   1970 
   1971 			sc->transfer_state = TSTATE_IDLE;
   1972 			sc->transfer_cb(sc, sc->transfer_priv,
   1973 					sc->transfer_datalen,
   1974 					STATUS_CMD_FAILED);
   1975 
   1976 			return;
   1977 		} else if (err) {
   1978 			DPRINTF(UDMASS_CBI, ("%s: failed to send ADSC\n",
   1979 				USBDEVNAME(sc->sc_dev)));
   1980 			umass_cbi_reset(sc, STATUS_WIRE_FAILED);
   1981 
   1982 			return;
   1983 		}
   1984 
   1985 		sc->transfer_state = TSTATE_CBI_DATA;
   1986 		if (sc->transfer_dir == DIR_IN) {
   1987 			if (umass_setup_transfer(sc, sc->bulkin_pipe,
   1988 					sc->transfer_data, sc->transfer_datalen,
   1989 					USBD_SHORT_XFER_OK | USBD_NO_COPY,
   1990 					sc->transfer_xfer[XFER_CBI_DATA]))
   1991 				umass_cbi_reset(sc, STATUS_WIRE_FAILED);
   1992 
   1993 		} else if (sc->transfer_dir == DIR_OUT) {
   1994 			memcpy(sc->data_buffer, sc->transfer_data,
   1995 			       sc->transfer_datalen);
   1996 			if (umass_setup_transfer(sc, sc->bulkout_pipe,
   1997 					sc->transfer_data, sc->transfer_datalen,
   1998 					USBD_NO_COPY,/* fixed length transfer */
   1999 					sc->transfer_xfer[XFER_CBI_DATA]))
   2000 				umass_cbi_reset(sc, STATUS_WIRE_FAILED);
   2001 
   2002 		} else if (sc->proto & PROTO_CBI_I) {
   2003 			DPRINTF(UDMASS_CBI, ("%s: no data phase\n",
   2004 				USBDEVNAME(sc->sc_dev)));
   2005 			sc->transfer_state = TSTATE_CBI_STATUS;
   2006 			if (umass_setup_transfer(sc, sc->intrin_pipe,
   2007 					&sc->sbl, sizeof(sc->sbl),
   2008 					0,	/* fixed length transfer */
   2009 					sc->transfer_xfer[XFER_CBI_STATUS])){
   2010 				umass_cbi_reset(sc, STATUS_WIRE_FAILED);
   2011 			}
   2012 		} else {
   2013 			DPRINTF(UDMASS_CBI, ("%s: no data phase\n",
   2014 				USBDEVNAME(sc->sc_dev)));
   2015 			/* No command completion interrupt. Request
   2016 			 * sense data.
   2017 			 */
   2018 			sc->transfer_state = TSTATE_IDLE;
   2019 			sc->transfer_cb(sc, sc->transfer_priv,
   2020 			       0, STATUS_CMD_UNKNOWN);
   2021 		}
   2022 
   2023 		return;
   2024 
   2025 	case TSTATE_CBI_DATA:
   2026 		/* retrieve the length of the transfer that was done */
   2027 		usbd_get_xfer_status(xfer,NULL,NULL,&sc->transfer_actlen,NULL);
   2028 		DPRINTF(UDMASS_CBI, ("%s: CBI_DATA actlen=%d\n",
   2029 			USBDEVNAME(sc->sc_dev), sc->transfer_actlen));
   2030 
   2031 		if (err) {
   2032 			DPRINTF(UDMASS_CBI, ("%s: Data-%s %db failed, "
   2033 				"%s\n", USBDEVNAME(sc->sc_dev),
   2034 				(sc->transfer_dir == DIR_IN?"in":"out"),
   2035 				sc->transfer_datalen,usbd_errstr(err)));
   2036 
   2037 			if (err == USBD_STALLED) {
   2038 				umass_clear_endpoint_stall(sc,
   2039 					sc->bulkin, sc->bulkin_pipe,
   2040 					TSTATE_CBI_DCLEAR,
   2041 					sc->transfer_xfer[XFER_CBI_DCLEAR]);
   2042 			} else {
   2043 				umass_cbi_reset(sc, STATUS_WIRE_FAILED);
   2044 			}
   2045 			return;
   2046 		}
   2047 
   2048 		if (sc->transfer_dir == DIR_IN)
   2049 			memcpy(sc->transfer_data, sc->data_buffer,
   2050 			       sc->transfer_actlen);
   2051 
   2052 		DIF(UDMASS_CBI, if (sc->transfer_dir == DIR_IN)
   2053 					umass_dump_buffer(sc, sc->transfer_data,
   2054 						sc->transfer_actlen, 48));
   2055 
   2056 		if (sc->proto & PROTO_CBI_I) {
   2057 			sc->transfer_state = TSTATE_CBI_STATUS;
   2058 			memset(&sc->sbl, 0, sizeof(sc->sbl));
   2059 			if (umass_setup_transfer(sc, sc->intrin_pipe,
   2060 				    &sc->sbl, sizeof(sc->sbl),
   2061 				    0,	/* fixed length transfer */
   2062 				    sc->transfer_xfer[XFER_CBI_STATUS])){
   2063 				umass_cbi_reset(sc, STATUS_WIRE_FAILED);
   2064 			}
   2065 		} else {
   2066 			/* No command completion interrupt. Request
   2067 			 * sense to get status of command.
   2068 			 */
   2069 			sc->transfer_state = TSTATE_IDLE;
   2070 			sc->transfer_cb(sc, sc->transfer_priv,
   2071 				sc->transfer_datalen - sc->transfer_actlen,
   2072 				STATUS_CMD_UNKNOWN);
   2073 		}
   2074 		return;
   2075 
   2076 	case TSTATE_CBI_STATUS:
   2077 		if (err) {
   2078 			DPRINTF(UDMASS_CBI, ("%s: Status Transport failed\n",
   2079 				USBDEVNAME(sc->sc_dev)));
   2080 			/* Status transport by interrupt pipe (section 2.3.2.2).
   2081 			 */
   2082 
   2083 			if (err == USBD_STALLED) {
   2084 				umass_clear_endpoint_stall(sc,
   2085 					sc->intrin, sc->intrin_pipe,
   2086 					TSTATE_CBI_SCLEAR,
   2087 					sc->transfer_xfer[XFER_CBI_SCLEAR]);
   2088 			} else {
   2089 				umass_cbi_reset(sc, STATUS_WIRE_FAILED);
   2090 			}
   2091 			return;
   2092 		}
   2093 
   2094 		/* Dissect the information in the buffer */
   2095 
   2096 		if (sc->proto & PROTO_UFI) {
   2097 			int status;
   2098 
   2099 			/* Section 3.4.3.1.3 specifies that the UFI command
   2100 			 * protocol returns an ASC and ASCQ in the interrupt
   2101 			 * data block.
   2102 			 */
   2103 
   2104 			DPRINTF(UDMASS_CBI, ("%s: UFI CCI, ASC = 0x%02x, "
   2105 				"ASCQ = 0x%02x\n",
   2106 				USBDEVNAME(sc->sc_dev),
   2107 				sc->sbl.ufi.asc, sc->sbl.ufi.ascq));
   2108 
   2109 			if (sc->sbl.ufi.asc == 0 && sc->sbl.ufi.ascq == 0)
   2110 				status = STATUS_CMD_OK;
   2111 			else
   2112 				status = STATUS_CMD_FAILED;
   2113 
   2114 			/* No sense, command successfull */
   2115 		} else {
   2116 			/* Command Interrupt Data Block */
   2117 			DPRINTF(UDMASS_CBI, ("%s: type=0x%02x, value=0x%02x\n",
   2118 				USBDEVNAME(sc->sc_dev),
   2119 				sc->sbl.common.type, sc->sbl.common.value));
   2120 
   2121 			if (sc->sbl.common.type == IDB_TYPE_CCI) {
   2122 				int err;
   2123 
   2124 				if ((sc->sbl.common.value&IDB_VALUE_STATUS_MASK)
   2125 							== IDB_VALUE_PASS) {
   2126 					err = STATUS_CMD_OK;
   2127 				} else if ((sc->sbl.common.value & IDB_VALUE_STATUS_MASK)
   2128 							== IDB_VALUE_FAIL ||
   2129 					   (sc->sbl.common.value & IDB_VALUE_STATUS_MASK)
   2130 						== IDB_VALUE_PERSISTENT) {
   2131 					err = STATUS_CMD_FAILED;
   2132 				} else {
   2133 					err = STATUS_WIRE_FAILED;
   2134 				}
   2135 
   2136 				sc->transfer_state = TSTATE_IDLE;
   2137 				sc->transfer_cb(sc, sc->transfer_priv,
   2138 						sc->transfer_datalen,
   2139 						err);
   2140 			}
   2141 		}
   2142 		return;
   2143 
   2144 	case TSTATE_CBI_DCLEAR:
   2145 		if (err) {	/* should not occur */
   2146 			printf("%s: CBI bulk-in/out stall clear failed, %s\n",
   2147 			       USBDEVNAME(sc->sc_dev), usbd_errstr(err));
   2148 			umass_cbi_reset(sc, STATUS_WIRE_FAILED);
   2149 		}
   2150 
   2151 		sc->transfer_state = TSTATE_IDLE;
   2152 		sc->transfer_cb(sc, sc->transfer_priv,
   2153 				sc->transfer_datalen,
   2154 				STATUS_CMD_FAILED);
   2155 		return;
   2156 
   2157 	case TSTATE_CBI_SCLEAR:
   2158 		if (err)	/* should not occur */
   2159 			printf("%s: CBI intr-in stall clear failed, %s\n",
   2160 			       USBDEVNAME(sc->sc_dev), usbd_errstr(err));
   2161 
   2162 		/* Something really bad is going on. Reset the device */
   2163 		umass_cbi_reset(sc, STATUS_CMD_FAILED);
   2164 		return;
   2165 
   2166 	/***** CBI Reset *****/
   2167 	case TSTATE_CBI_RESET1:
   2168 		if (err)
   2169 			printf("%s: CBI reset failed, %s\n",
   2170 				USBDEVNAME(sc->sc_dev), usbd_errstr(err));
   2171 
   2172 		umass_clear_endpoint_stall(sc,
   2173 			sc->bulkin, sc->bulkin_pipe, TSTATE_CBI_RESET2,
   2174 			sc->transfer_xfer[XFER_CBI_RESET2]);
   2175 
   2176 		return;
   2177 	case TSTATE_CBI_RESET2:
   2178 		if (err)	/* should not occur */
   2179 			printf("%s: CBI bulk-in stall clear failed, %s\n",
   2180 			       USBDEVNAME(sc->sc_dev), usbd_errstr(err));
   2181 			/* no error recovery, otherwise we end up in a loop */
   2182 
   2183 		umass_clear_endpoint_stall(sc,
   2184 			sc->bulkout, sc->bulkout_pipe, TSTATE_CBI_RESET3,
   2185 			sc->transfer_xfer[XFER_CBI_RESET3]);
   2186 
   2187 		return;
   2188 	case TSTATE_CBI_RESET3:
   2189 		if (err)	/* should not occur */
   2190 			printf("%s: CBI bulk-out stall clear failed, %s\n",
   2191 			       USBDEVNAME(sc->sc_dev), usbd_errstr(err));
   2192 			/* no error recovery, otherwise we end up in a loop */
   2193 
   2194 		sc->transfer_state = TSTATE_IDLE;
   2195 		if (sc->transfer_priv) {
   2196 			sc->transfer_cb(sc, sc->transfer_priv,
   2197 					sc->transfer_datalen,
   2198 					sc->transfer_status);
   2199 		}
   2200 
   2201 		return;
   2202 
   2203 
   2204 	/***** Default *****/
   2205 	default:
   2206 		panic("%s: Unknown state %d\n",
   2207 		      USBDEVNAME(sc->sc_dev), sc->transfer_state);
   2208 	}
   2209 }
   2210 
   2211 usbd_status
   2212 umass_bbb_get_max_lun(struct umass_softc *sc, u_int8_t *maxlun)
   2213 {
   2214 	usbd_device_handle dev;
   2215 	usb_device_request_t req;
   2216 	usbd_status err;
   2217 	usb_interface_descriptor_t *id;
   2218 
   2219 	*maxlun = 0;		/* Default to 0. */
   2220 
   2221 	DPRINTF(UDMASS_BBB, ("%s: Get Max Lun\n", USBDEVNAME(sc->sc_dev)));
   2222 
   2223 	usbd_interface2device_handle(sc->iface, &dev);
   2224 	id = usbd_get_interface_descriptor(sc->iface);
   2225 
   2226 	/* The Get Max Lun command is a class-specific request. */
   2227 	req.bmRequestType = UT_READ_CLASS_INTERFACE;
   2228 	req.bRequest = UR_BBB_GET_MAX_LUN;
   2229 	USETW(req.wValue, 0);
   2230 	USETW(req.wIndex, id->bInterfaceNumber);
   2231 	USETW(req.wLength, 1);
   2232 
   2233 	err = usbd_do_request(dev, &req, maxlun);
   2234 	switch (err) {
   2235 	case USBD_NORMAL_COMPLETION:
   2236 		DPRINTF(UDMASS_BBB, ("%s: Max Lun %d\n",
   2237 		    USBDEVNAME(sc->sc_dev), *maxlun));
   2238 		break;
   2239 
   2240 	case USBD_STALLED:
   2241 		/*
   2242 		 * Device doesn't support Get Max Lun request.
   2243 		 */
   2244 		err = USBD_NORMAL_COMPLETION;
   2245 		DPRINTF(UDMASS_BBB, ("%s: Get Max Lun not supported\n",
   2246 		    USBDEVNAME(sc->sc_dev)));
   2247 		break;
   2248 
   2249 	case USBD_SHORT_XFER:
   2250 		/*
   2251 		 * XXX This must mean Get Max Lun is not supported, too!
   2252 		 */
   2253 		err = USBD_NORMAL_COMPLETION;
   2254 		DPRINTF(UDMASS_BBB, ("%s: Get Max Lun SHORT_XFER\n",
   2255 		    USBDEVNAME(sc->sc_dev)));
   2256 		break;
   2257 
   2258 	default:
   2259 		printf("%s: Get Max Lun failed: %s\n",
   2260 		    USBDEVNAME(sc->sc_dev), usbd_errstr(err));
   2261 		/* XXX Should we port_reset the device? */
   2262 		break;
   2263 	}
   2264 
   2265 	return (err);
   2266 }
   2267 
   2268 
   2269 
   2270 #if defined(__FreeBSD__)
   2271 /*
   2272  * CAM specific functions (used by SCSI, UFI, 8070)
   2273  */
   2274 
   2275 Static int
   2276 umass_cam_attach_sim(void)
   2277 {
   2278 	struct cam_devq *devq;		/* Per device Queue */
   2279 
   2280 	/* A HBA is attached to the CAM layer.
   2281 	 *
   2282 	 * The CAM layer will then after a while start probing for
   2283 	 * devices on the bus. The number of devices is limitted to one.
   2284 	 */
   2285 
   2286 	/* SCSI transparent command set */
   2287 
   2288 	devq = cam_simq_alloc(1 /*maximum openings*/);
   2289 	if (devq == NULL)
   2290 		return(ENOMEM);
   2291 
   2292 	umass_sim = cam_sim_alloc(umass_cam_action, umass_cam_poll, DEVNAME,
   2293 				NULL /*priv*/, 0 /*unit number*/,
   2294 				1 /*maximum device openings*/,
   2295 				0 /*maximum tagged device openings*/,
   2296 				devq);
   2297 	if (umass_sim == NULL) {
   2298 		cam_simq_free(devq);
   2299 		return(ENOMEM);
   2300 	}
   2301 
   2302 	if(xpt_bus_register(umass_sim, 0) != CAM_SUCCESS)
   2303 		return(ENOMEM);
   2304 
   2305 	if (xpt_create_path(&umass_path, NULL, cam_sim_path(umass_sim),
   2306 			    UMASS_SCSIID_HOST, 0)
   2307 	    != CAM_REQ_CMP)
   2308 		return(ENOMEM);
   2309 
   2310 	return(0);
   2311 }
   2312 
   2313 #ifdef UMASS_DO_CAM_RESCAN
   2314 /* this function is only used from umass_cam_rescan, so mention
   2315  * prototype down here.
   2316  */
   2317 Static void umass_cam_rescan_callback(struct cam_periph *periph,union ccb *ccb);
   2318 
   2319 Static void
   2320 umass_cam_rescan_callback(struct cam_periph *periph, union ccb *ccb)
   2321 {
   2322 #ifdef UMASS_DEBUG
   2323 	struct umass_softc *sc = devclass_get_softc(umass_devclass,
   2324 					       ccb->ccb_h.target_id);
   2325 
   2326 	if (ccb->ccb_h.status != CAM_REQ_CMP) {
   2327 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d: Rescan failed, 0x%04x\n",
   2328 			USBDEVNAME(sc->sc_dev), UMASS_SCSI_BUS,
   2329 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun,
   2330 			ccb->ccb_h.status));
   2331 	} else {
   2332 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d: Rescan succeeded, freeing resources.\n",
   2333 			USBDEVNAME(sc->sc_dev), UMASS_SCSI_BUS,
   2334 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun));
   2335 	}
   2336 #endif
   2337 
   2338 	xpt_free_path(ccb->ccb_h.path);
   2339 	free(ccb, M_USBDEV);
   2340 }
   2341 
   2342 Static void
   2343 umass_cam_rescan(struct umass_softc *sc)
   2344 {
   2345 	struct cam_path *path;
   2346 	union ccb *ccb = malloc(sizeof(union ccb), M_USBDEV, M_WAITOK);
   2347 
   2348 	memset(ccb, 0, sizeof(union ccb));
   2349 
   2350 	DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d: scanning bus for new device %d\n",
   2351 		USBDEVNAME(sc->sc_dev),	 cam_sim_path(umass_sim),
   2352 		device_get_unit(sc->sc_dev), 0,
   2353 		device_get_unit(sc->sc_dev)));
   2354 
   2355 	if (xpt_create_path(&path, xpt_periph, cam_sim_path(umass_sim),
   2356 		    device_get_unit(sc->sc_dev), 0)
   2357 	    != CAM_REQ_CMP)
   2358 		return;
   2359 
   2360 	xpt_setup_ccb(&ccb->ccb_h, path, 5/*priority (low)*/);
   2361 	ccb->ccb_h.func_code = XPT_SCAN_BUS;
   2362 	ccb->ccb_h.cbfcnp = umass_cam_rescan_callback;
   2363 	ccb->crcn.flags = CAM_FLAG_NONE;
   2364 	xpt_action(ccb);
   2365 
   2366 	/* The scan is in progress now. */
   2367 }
   2368 #endif
   2369 
   2370 Static int
   2371 umass_cam_attach(struct umass_softc *sc)
   2372 {
   2373 	/* SIM already attached at module load. The device is a target on the
   2374 	 * one SIM we registered: target device_get_unit(self).
   2375 	 */
   2376 
   2377 	/* The artificial limit UMASS_SCSIID_MAX is there because CAM expects
   2378 	 * a limit to the number of targets that are present on a SIM.
   2379 	 */
   2380 	if (device_get_unit(sc->sc_dev) > UMASS_SCSIID_MAX) {
   2381 		printf("%s: Increase UMASS_SCSIID_MAX (currently %d) in %s "
   2382 			"and try again.\n", USBDEVNAME(sc->sc_dev),
   2383 			UMASS_SCSIID_MAX, __FILE__);
   2384 		return(1);
   2385 	}
   2386 
   2387 #ifdef UMASS_DO_CAM_RESCAN
   2388 	if (!cold) {
   2389 		/* Notify CAM of the new device. Any failure is benign, as the
   2390 		 * user can still do it by hand (camcontrol rescan <busno>).
   2391 		 * Only do this if we are not booting, because CAM does a scan
   2392 		 * after booting has completed, when interrupts have been
   2393 		 * enabled.
   2394 		 */
   2395 		umass_cam_rescan(sc);
   2396 	}
   2397 #endif
   2398 
   2399 	return(0);	/* always succesful */
   2400 }
   2401 
   2402 /* umass_cam_detach
   2403  *	detach from the CAM layer
   2404  */
   2405 
   2406 Static int
   2407 umass_cam_detach_sim(void)
   2408 {
   2409 	if (umass_sim)
   2410 		return(EBUSY);	/* XXX CAM can't handle disappearing SIMs yet */
   2411 
   2412 	if (umass_path) {
   2413 		/* XXX do we need to send an asynchroneous event for the SIM?
   2414 		xpt_async(AC_LOST_DEVICE, umass_path, NULL);
   2415 		 */
   2416 		xpt_free_path(umass_path);
   2417 		umass_path = NULL;
   2418 	}
   2419 
   2420 	if (umass_sim) {
   2421 		if (xpt_bus_deregister(cam_sim_path(umass_sim)))
   2422 			cam_sim_free(umass_sim, /*free_devq*/TRUE);
   2423 		else
   2424 			return(EBUSY);
   2425 
   2426 		umass_sim = NULL;
   2427 	}
   2428 
   2429 	return(0);
   2430 }
   2431 
   2432 Static int
   2433 umass_cam_detach(struct umass_softc *sc)
   2434 {
   2435 	struct cam_path *path;
   2436 
   2437 	/* detach of sim not done until module unload */
   2438 	DPRINTF(UDMASS_SCSI, ("%s: losing CAM device entry\n",
   2439 		USBDEVNAME(sc->sc_dev)));
   2440 
   2441 	if (xpt_create_path(&path, NULL, cam_sim_path(umass_sim),
   2442 		    device_get_unit(sc->sc_dev), CAM_LUN_WILDCARD)
   2443 	    != CAM_REQ_CMP)
   2444 		return(ENOMEM);
   2445 	xpt_async(AC_LOST_DEVICE, path, NULL);
   2446 	xpt_free_path(path);
   2447 
   2448 	return(0);
   2449 }
   2450 
   2451 
   2452 
   2453 /* umass_cam_action
   2454  *	CAM requests for action come through here
   2455  */
   2456 
   2457 Static void
   2458 umass_cam_action(struct cam_sim *sim, union ccb *ccb)
   2459 {
   2460 	struct umass_softc *sc = devclass_get_softc(umass_devclass,
   2461 					       ccb->ccb_h.target_id);
   2462 
   2463 	/* The softc is still there, but marked as going away. umass_cam_detach
   2464 	 * has not yet notified CAM of the lost device however.
   2465 	 */
   2466 	if (sc && sc->sc_dying) {
   2467 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:func_code 0x%04x: "
   2468 			"Invalid target (gone)\n",
   2469 			USBDEVNAME(sc->sc_dev), UMASS_SCSI_BUS,
   2470 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun,
   2471 			ccb->ccb_h.func_code));
   2472 		ccb->ccb_h.status = CAM_TID_INVALID;
   2473 		xpt_done(ccb);
   2474 		return;
   2475 	}
   2476 
   2477 	/* Verify, depending on the operation to perform, that we either got a
   2478 	 * valid sc, because an existing target was referenced, or otherwise
   2479 	 * the SIM is addressed.
   2480 	 *
   2481 	 * This avoids bombing out at a printf and does give the CAM layer some
   2482 	 * sensible feedback on errors.
   2483 	 */
   2484 	switch (ccb->ccb_h.func_code) {
   2485 	case XPT_SCSI_IO:
   2486 	case XPT_RESET_DEV:
   2487 	case XPT_GET_TRAN_SETTINGS:
   2488 	case XPT_SET_TRAN_SETTINGS:
   2489 	case XPT_CALC_GEOMETRY:
   2490 		/* the opcodes requiring a target. These should never occur. */
   2491 		if (sc == NULL) {
   2492 			printf("%s:%d:%d:%d:func_code 0x%04x: "
   2493 				"Invalid target\n",
   2494 				DEVNAME_SIM, UMASS_SCSI_BUS,
   2495 				ccb->ccb_h.target_id, ccb->ccb_h.target_lun,
   2496 				ccb->ccb_h.func_code);
   2497 
   2498 			ccb->ccb_h.status = CAM_TID_INVALID;
   2499 			xpt_done(ccb);
   2500 			return;
   2501 		}
   2502 		break;
   2503 	case XPT_PATH_INQ:
   2504 	case XPT_NOOP:
   2505 		/* The opcodes sometimes aimed at a target (sc is valid),
   2506 		 * sometimes aimed at the SIM (sc is invalid and target is
   2507 		 * CAM_TARGET_WILDCARD)
   2508 		 */
   2509 		if (sc == NULL && ccb->ccb_h.target_id != CAM_TARGET_WILDCARD) {
   2510 			DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:func_code 0x%04x: "
   2511 				"Invalid target\n",
   2512 				DEVNAME_SIM, UMASS_SCSI_BUS,
   2513 				ccb->ccb_h.target_id, ccb->ccb_h.target_lun,
   2514 				ccb->ccb_h.func_code));
   2515 
   2516 			ccb->ccb_h.status = CAM_TID_INVALID;
   2517 			xpt_done(ccb);
   2518 			return;
   2519 		}
   2520 		break;
   2521 	default:
   2522 		/* XXX Hm, we should check the input parameters */
   2523 	}
   2524 
   2525 	/* Perform the requested action */
   2526 	switch (ccb->ccb_h.func_code) {
   2527 	case XPT_SCSI_IO:
   2528 	{
   2529 		struct ccb_scsiio *csio = &ccb->csio;	/* deref union */
   2530 		int dir;
   2531 		unsigned char *cmd;
   2532 		int cmdlen;
   2533 
   2534 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:XPT_SCSI_IO: "
   2535 			"cmd: 0x%02x, flags: 0x%02x, "
   2536 			"%db cmd/%db data/%db sense\n",
   2537 			USBDEVNAME(sc->sc_dev), UMASS_SCSI_BUS,
   2538 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun,
   2539 			csio->cdb_io.cdb_bytes[0],
   2540 			ccb->ccb_h.flags & CAM_DIR_MASK,
   2541 			csio->cdb_len, csio->dxfer_len,
   2542 			csio->sense_len));
   2543 
   2544 		/* clear the end of the buffer to make sure we don't send out
   2545 		 * garbage.
   2546 		 */
   2547 		DIF(UDMASS_SCSI, if ((ccb->ccb_h.flags & CAM_DIR_MASK)
   2548 				     == CAM_DIR_OUT)
   2549 					umass_dump_buffer(sc, csio->data_ptr,
   2550 						csio->dxfer_len, 48));
   2551 
   2552 		if (sc->transfer_state != TSTATE_IDLE) {
   2553 			DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:XPT_SCSI_IO: "
   2554 				"I/O requested while busy (state %d, %s)\n",
   2555 				USBDEVNAME(sc->sc_dev), UMASS_SCSI_BUS,
   2556 				ccb->ccb_h.target_id, ccb->ccb_h.target_lun,
   2557 				sc->transfer_state,states[sc->transfer_state]));
   2558 			ccb->ccb_h.status = CAM_SCSI_BUSY;
   2559 			xpt_done(ccb);
   2560 			return;
   2561 		}
   2562 
   2563 		switch(ccb->ccb_h.flags&CAM_DIR_MASK) {
   2564 		case CAM_DIR_IN:
   2565 			dir = DIR_IN;
   2566 			break;
   2567 		case CAM_DIR_OUT:
   2568 			dir = DIR_OUT;
   2569 			break;
   2570 		default:
   2571 			dir = DIR_NONE;
   2572 		}
   2573 
   2574 		ccb->ccb_h.status = CAM_REQ_INPROG | CAM_SIM_QUEUED;
   2575 		if (sc->transform(sc, csio->cdb_io.cdb_bytes, csio->cdb_len,
   2576 				  &cmd, &cmdlen)) {
   2577 			sc->transfer(sc, ccb->ccb_h.target_lun, cmd, cmdlen,
   2578 				     csio->data_ptr,
   2579 				     csio->dxfer_len, dir,
   2580 				     umass_cam_cb, (void *) ccb);
   2581 		} else {
   2582 			ccb->ccb_h.status = CAM_REQ_INVALID;
   2583 			xpt_done(ccb);
   2584 		}
   2585 
   2586 		break;
   2587 	}
   2588 	case XPT_PATH_INQ:
   2589 	{
   2590 		struct ccb_pathinq *cpi = &ccb->cpi;
   2591 
   2592 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:XPT_PATH_INQ:.\n",
   2593 			(sc == NULL? DEVNAME_SIM:USBDEVNAME(sc->sc_dev)),
   2594 			UMASS_SCSI_BUS,
   2595 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun));
   2596 
   2597 		/* host specific information */
   2598 		cpi->version_num = 1;
   2599 		cpi->hba_inquiry = 0;
   2600 		cpi->target_sprt = 0;
   2601 		cpi->hba_misc = 0;
   2602 		cpi->hba_eng_cnt = 0;
   2603 		cpi->max_target = UMASS_SCSIID_MAX;	/* one target */
   2604 		cpi->max_lun = 0;	/* no LUN's supported */
   2605 		cpi->initiator_id = UMASS_SCSIID_HOST;
   2606 		strncpy(cpi->sim_vid, "FreeBSD", SIM_IDLEN);
   2607 		strncpy(cpi->hba_vid, "USB SCSI", HBA_IDLEN);
   2608 		strncpy(cpi->dev_name, cam_sim_name(sim), DEV_IDLEN);
   2609 		cpi->unit_number = cam_sim_unit(sim);
   2610 		cpi->bus_id = UMASS_SCSI_BUS;
   2611 		if (sc) {
   2612 			cpi->base_transfer_speed = sc->transfer_speed;
   2613 			cpi->max_lun = sc->maxlun;
   2614 		}
   2615 
   2616 		cpi->ccb_h.status = CAM_REQ_CMP;
   2617 		xpt_done(ccb);
   2618 		break;
   2619 	}
   2620 	case XPT_RESET_DEV:
   2621 	{
   2622 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:XPT_RESET_DEV:.\n",
   2623 			USBDEVNAME(sc->sc_dev), UMASS_SCSI_BUS,
   2624 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun));
   2625 
   2626 		ccb->ccb_h.status = CAM_REQ_INPROG;
   2627 		umass_reset(sc, umass_cam_cb, (void *) ccb);
   2628 		break;
   2629 	}
   2630 	case XPT_GET_TRAN_SETTINGS:
   2631 	{
   2632 		struct ccb_trans_settings *cts = &ccb->cts;
   2633 
   2634 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:XPT_GET_TRAN_SETTINGS:.\n",
   2635 			USBDEVNAME(sc->sc_dev), UMASS_SCSI_BUS,
   2636 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun));
   2637 
   2638 		cts->valid = 0;
   2639 		cts->flags = 0;		/* no disconnection, tagging */
   2640 
   2641 		ccb->ccb_h.status = CAM_REQ_CMP;
   2642 		xpt_done(ccb);
   2643 		break;
   2644 	}
   2645 	case XPT_SET_TRAN_SETTINGS:
   2646 	{
   2647 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:XPT_SET_TRAN_SETTINGS:.\n",
   2648 			USBDEVNAME(sc->sc_dev), UMASS_SCSI_BUS,
   2649 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun));
   2650 
   2651 		ccb->ccb_h.status = CAM_FUNC_NOTAVAIL;
   2652 		xpt_done(ccb);
   2653 		break;
   2654 	}
   2655 	case XPT_CALC_GEOMETRY:
   2656 	{
   2657 		struct ccb_calc_geometry *ccg = &ccb->ccg;
   2658 
   2659 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:XPT_CALC_GEOMETRY: "
   2660 			"Volume size = %d\n",
   2661 			USBDEVNAME(sc->sc_dev), UMASS_SCSI_BUS,
   2662 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun,
   2663 			ccg->volume_size));
   2664 
   2665 		/* XXX We should probably ask the drive for the details
   2666 		 *     instead of cluching them up ourselves
   2667 		 */
   2668 		if (sc->drive == ZIP_100) {
   2669 			ccg->heads = 64;
   2670 			ccg->secs_per_track = 32;
   2671 			ccg->cylinders = ccg->volume_size / ccg->heads
   2672 					  / ccg->secs_per_track;
   2673 			ccb->ccb_h.status = CAM_REQ_CMP;
   2674 			break;
   2675 		} else if (sc->proto & PROTO_UFI) {
   2676 			ccg->heads = 2;
   2677 			if (ccg->volume_size == 2880)
   2678 				ccg->secs_per_track = 18;
   2679 			else
   2680 				ccg->secs_per_track = 9;
   2681 			ccg->cylinders = 80;
   2682 			break;
   2683 		} else {
   2684 			ccb->ccb_h.status = CAM_REQ_CMP_ERR;
   2685 		}
   2686 
   2687 		xpt_done(ccb);
   2688 		break;
   2689 	}
   2690 	case XPT_NOOP:
   2691 	{
   2692 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:XPT_NOOP:.\n",
   2693 			(sc == NULL? DEVNAME_SIM:USBDEVNAME(sc->sc_dev)),
   2694 			UMASS_SCSI_BUS,
   2695 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun));
   2696 
   2697 		ccb->ccb_h.status = CAM_REQ_CMP;
   2698 		xpt_done(ccb);
   2699 		break;
   2700 	}
   2701 	default:
   2702 		DPRINTF(UDMASS_SCSI, ("%s:%d:%d:%d:func_code 0x%04x: "
   2703 			"Not implemented\n",
   2704 			(sc == NULL? DEVNAME_SIM:USBDEVNAME(sc->sc_dev)),
   2705 			UMASS_SCSI_BUS,
   2706 			ccb->ccb_h.target_id, ccb->ccb_h.target_lun,
   2707 			ccb->ccb_h.func_code));
   2708 
   2709 		ccb->ccb_h.status = CAM_FUNC_NOTAVAIL;
   2710 		xpt_done(ccb);
   2711 		break;
   2712 	}
   2713 }
   2714 
   2715 /* umass_cam_poll
   2716  *	all requests are handled through umass_cam_action, requests
   2717  *	are never pending. So, nothing to do here.
   2718  */
   2719 Static void
   2720 umass_cam_poll(struct cam_sim *sim)
   2721 {
   2722 #ifdef UMASS_DEBUG
   2723 	struct umass_softc *sc = (struct umass_softc *) sim->softc;
   2724 
   2725 	DPRINTF(UDMASS_SCSI, ("%s: CAM poll\n",
   2726 		USBDEVNAME(sc->sc_dev)));
   2727 #endif
   2728 
   2729 	/* nop */
   2730 }
   2731 
   2732 
   2733 /* umass_cam_cb
   2734  *	finalise a completed CAM command
   2735  */
   2736 
   2737 Static void
   2738 umass_cam_cb(struct umass_softc *sc, void *priv, int residue, int status)
   2739 {
   2740 	union ccb *ccb = (union ccb *) priv;
   2741 	struct ccb_scsiio *csio = &ccb->csio;		/* deref union */
   2742 
   2743 	csio->resid = residue;
   2744 
   2745 	switch (status) {
   2746 	case STATUS_CMD_OK:
   2747 		ccb->ccb_h.status = CAM_REQ_CMP;
   2748 		xpt_done(ccb);
   2749 		break;
   2750 
   2751 	case STATUS_CMD_UNKNOWN:
   2752 	case STATUS_CMD_FAILED:
   2753 		switch (ccb->ccb_h.func_code) {
   2754 		case XPT_SCSI_IO:
   2755 		{
   2756 			unsigned char *cmd;
   2757 			int cmdlen;
   2758 
   2759 			/* fetch sense data */
   2760 			DPRINTF(UDMASS_SCSI,("%s: Fetching %db sense data\n",
   2761 			        USBDEVNAME(sc->sc_dev),
   2762 			        sc->cam_scsi_sense.length));
   2763 
   2764 			sc->cam_scsi_sense.length = csio->sense_len;
   2765 
   2766 			if (sc->transform(sc, (char *) &sc->cam_scsi_sense,
   2767 				      sizeof(sc->cam_scsi_sense),
   2768 				      &cmd, &cmdlen)) {
   2769 				sc->transfer(sc, ccb->ccb_h.target_lun,
   2770 					     cmd, cmdlen,
   2771 					     &csio->sense_data,
   2772 					     csio->sense_len, DIR_IN,
   2773 					     umass_cam_sense_cb, (void *) ccb);
   2774 			} else {
   2775 #ifdef UMASS_DEBUG
   2776 				panic("transform(REQUEST_SENSE) failed\n");
   2777 #else
   2778 				csio->resid = sc->transfer_datalen;
   2779 				ccb->ccb_h.status = CAM_REQ_CMP_ERR;
   2780 				xpt_done(ccb);
   2781 #endif
   2782 			}
   2783 			break;
   2784 		}
   2785 		case XPT_RESET_DEV: /* Reset failed */
   2786 			ccb->ccb_h.status = CAM_REQ_CMP_ERR;
   2787 			xpt_done(ccb);
   2788 			break;
   2789 		default:
   2790 			panic("umass_cam_cb called for func_code %d\n",
   2791 			      ccb->ccb_h.func_code);
   2792 		}
   2793 		break;
   2794 
   2795 	case STATUS_WIRE_FAILED:
   2796 		/* the wire protocol failed and will have recovered
   2797 		 * (hopefully).	 We return an error to CAM and let CAM retry
   2798 		 * the command if necessary.
   2799 		 */
   2800 		ccb->ccb_h.status = CAM_REQ_CMP_ERR;
   2801 		xpt_done(ccb);
   2802 		break;
   2803 
   2804 	default:
   2805 		panic("%s: Unknown status %d in umass_cam_cb\n",
   2806 			USBDEVNAME(sc->sc_dev), status);
   2807 	}
   2808 }
   2809 
   2810 /* Finalise a completed autosense operation
   2811  */
   2812 Static void
   2813 umass_cam_sense_cb(struct umass_softc *sc, void *priv, int residue, int status)
   2814 {
   2815 	union ccb *ccb = (union ccb *) priv;
   2816 	struct ccb_scsiio *csio = &ccb->csio;		/* deref union */
   2817 
   2818 	switch (status) {
   2819 	case STATUS_CMD_OK:
   2820 	case STATUS_CMD_UNKNOWN:
   2821 		/* Getting sense data succeeded. The length of the sense data
   2822 		 * is not returned in any way. The sense data itself contains
   2823 		 * the length of the sense data that is valid.
   2824 		 */
   2825 		if (sc->quirks & RS_NO_CLEAR_UA
   2826 		    && csio->cdb_io.cdb_bytes[0] == INQUIRY
   2827 		    && (csio->sense_data.flags & SSD_KEY)
   2828 						== SSD_KEY_UNIT_ATTENTION) {
   2829 			/* Ignore unit attention errors in the case where
   2830 			 * the Unit Attention state is not cleared on
   2831 			 * REQUEST SENSE. They will appear again at the next
   2832 			 * command.
   2833 			 */
   2834 			ccb->ccb_h.status = CAM_REQ_CMP;
   2835 		} else if ((csio->sense_data.flags & SSD_KEY)
   2836 						== SSD_KEY_NO_SENSE) {
   2837 			/* No problem after all (in the case of CBI without
   2838 			 * CCI)
   2839 			 */
   2840 			ccb->ccb_h.status = CAM_REQ_CMP;
   2841 		} else {
   2842 			ccb->ccb_h.status = CAM_SCSI_STATUS_ERROR
   2843 					    | CAM_AUTOSNS_VALID;
   2844 			csio->scsi_status = SCSI_STATUS_CHECK_COND;
   2845 		}
   2846 		xpt_done(ccb);
   2847 		break;
   2848 
   2849 	default:
   2850 		DPRINTF(UDMASS_SCSI, ("%s: Autosense failed, status %d\n",
   2851 			USBDEVNAME(sc->sc_dev), status));
   2852 		ccb->ccb_h.status = CAM_AUTOSENSE_FAIL;
   2853 		xpt_done(ccb);
   2854 	}
   2855 }
   2856 
   2857 
   2858 Static int
   2859 umass_driver_load(module_t mod, int what, void *arg)
   2860 {
   2861 	int err;
   2862 
   2863 	switch (what) {
   2864 	case MOD_UNLOAD:
   2865 		err = umass_cam_detach_sim();
   2866 		if (err)
   2867 			return(err);
   2868 		return(usbd_driver_load(mod, what, arg));
   2869 	case MOD_LOAD:
   2870 		/* We don't attach to CAM at this point, because it will try
   2871 		 * and malloc memory for it. This is not possible when the
   2872 		 * boot loader loads umass as a module before the kernel
   2873 		 * has been bootstrapped.
   2874 		 */
   2875 	default:
   2876 		return(usbd_driver_load(mod, what, arg));
   2877 	}
   2878 }
   2879 
   2880 
   2881 
   2882 /* (even the comment is missing) */
   2883 
   2884 DRIVER_MODULE(umass, uhub, umass_driver, umass_devclass, umass_driver_load, 0);
   2885 
   2886 
   2887 /*
   2888  * SCSI specific functions
   2889  */
   2890 
   2891 Static int
   2892 umass_scsi_transform(struct umass_softc *sc, unsigned char *cmd, int cmdlen,
   2893 		     unsigned char **rcmd, int *rcmdlen)
   2894 {
   2895 	*rcmd = cmd;		/* trivial copy */
   2896 	*rcmdlen = cmdlen;
   2897 
   2898 	switch (cmd[0]) {
   2899 	case TEST_UNIT_READY:
   2900 		if (sc->quirks & NO_TEST_UNIT_READY) {
   2901 			DPRINTF(UDMASS_SCSI, ("%s: Converted TEST_UNIT_READY "
   2902 				"to START_UNIT\n", USBDEVNAME(sc->sc_dev)));
   2903 			cmd[0] = START_STOP_UNIT;
   2904 			cmd[4] = SSS_START;
   2905 		}
   2906 		break;
   2907 	}
   2908 
   2909 	return 1;		/* success */
   2910 }
   2911 
   2912 /*
   2913  * UFI specific functions
   2914  */
   2915 
   2916 Static int
   2917 umass_ufi_transform(struct umass_softc *sc, unsigned char *cmd, int cmdlen,
   2918 		    unsigned char **rcmd, int *rcmdlen)
   2919 {
   2920 	*rcmd = cmd;
   2921 	/* A UFI command is always 12 bytes in length */
   2922 	/* XXX cmd[(cmdlen+1)..12] contains garbage */
   2923 	*rcmdlen = 12;
   2924 
   2925 	switch (cmd[0]) {
   2926 	case TEST_UNIT_READY:
   2927 		if (sc->quirks &  NO_TEST_UNIT_READY) {
   2928 			DPRINTF(UDMASS_UFI, ("%s: Converted TEST_UNIT_READY "
   2929 				"to START_UNIT\n", USBDEVNAME(sc->sc_dev)));
   2930 			cmd[0] = START_STOP_UNIT;
   2931 			cmd[4] = SSS_START;
   2932 		}
   2933 		return 1;
   2934 	case INQUIRY:
   2935 	case START_STOP_UNIT:
   2936 	case MODE_SENSE:
   2937 	case PREVENT_ALLOW:
   2938 	case READ_10:
   2939 	case READ_12:
   2940 	case READ_CAPACITY:
   2941 	case REQUEST_SENSE:
   2942 	case REZERO_UNIT:
   2943 	case POSITION_TO_ELEMENT:	/* SEEK_10 */
   2944 	case SEND_DIAGNOSTIC:
   2945 	case WRITE_10:
   2946 	case WRITE_12:
   2947 	/* FORMAT_UNIT */
   2948 	/* MODE_SELECT */
   2949 	/* READ_FORMAT_CAPACITY */
   2950 	/* VERIFY */
   2951 	/* WRITE_AND_VERIFY */
   2952 		return 1;	/* success */
   2953 	default:
   2954 		return 0;	/* success */
   2955 	}
   2956 }
   2957 
   2958 /*
   2959  * 8070 specific functions
   2960  */
   2961 Static int
   2962 umass_8070_transform(struct umass_softc *sc, unsigned char *cmd, int cmdlen,
   2963 		     unsigned char **rcmd, int *rcmdlen)
   2964 {
   2965 	return 0;	/* failure */
   2966 }
   2967 
   2968 #endif /* __FreeBSD__ */
   2969 
   2970 
   2971 #ifdef UMASS_DEBUG
   2972 Static void
   2973 umass_bbb_dump_cbw(struct umass_softc *sc, umass_bbb_cbw_t *cbw)
   2974 {
   2975 	int clen = cbw->bCDBLength;
   2976 	int dlen = UGETDW(cbw->dCBWDataTransferLength);
   2977 	u_int8_t *c = cbw->CBWCDB;
   2978 	int tag = UGETDW(cbw->dCBWTag);
   2979 	int flags = cbw->bCBWFlags;
   2980 
   2981 	DPRINTF(UDMASS_BBB, ("%s: CBW %d: cmd = %db "
   2982 		"(0x%02x%02x%02x%02x%02x%02x%s), "
   2983 		"data = %d bytes, dir = %s\n",
   2984 		USBDEVNAME(sc->sc_dev), tag, clen,
   2985 		c[0], c[1], c[2], c[3], c[4], c[5], (clen > 6? "...":""),
   2986 		dlen, (flags == CBWFLAGS_IN? "in":
   2987 		       (flags == CBWFLAGS_OUT? "out":"<invalid>"))));
   2988 }
   2989 
   2990 Static void
   2991 umass_bbb_dump_csw(struct umass_softc *sc, umass_bbb_csw_t *csw)
   2992 {
   2993 	int sig = UGETDW(csw->dCSWSignature);
   2994 	int tag = UGETW(csw->dCSWTag);
   2995 	int res = UGETDW(csw->dCSWDataResidue);
   2996 	int status = csw->bCSWStatus;
   2997 
   2998 	DPRINTF(UDMASS_BBB, ("%s: CSW %d: sig = 0x%08x (%s), tag = %d, "
   2999 		"res = %d, status = 0x%02x (%s)\n", USBDEVNAME(sc->sc_dev),
   3000 		tag, sig, (sig == CSWSIGNATURE?	 "valid":"invalid"),
   3001 		tag, res,
   3002 		status, (status == CSWSTATUS_GOOD? "good":
   3003 			 (status == CSWSTATUS_FAILED? "failed":
   3004 			  (status == CSWSTATUS_PHASE? "phase":"<invalid>")))));
   3005 }
   3006 
   3007 Static void
   3008 umass_dump_buffer(struct umass_softc *sc, u_int8_t *buffer, int buflen,
   3009 		  int printlen)
   3010 {
   3011 	int i, j;
   3012 	char s1[40];
   3013 	char s2[40];
   3014 	char s3[5];
   3015 
   3016 	s1[0] = '\0';
   3017 	s3[0] = '\0';
   3018 
   3019 	sprintf(s2, " buffer=%p, buflen=%d", buffer, buflen);
   3020 	for (i = 0; i < buflen && i < printlen; i++) {
   3021 		j = i % 16;
   3022 		if (j == 0 && i != 0) {
   3023 			DPRINTF(UDMASS_GEN, ("%s: 0x %s%s\n",
   3024 				USBDEVNAME(sc->sc_dev), s1, s2));
   3025 			s2[0] = '\0';
   3026 		}
   3027 		sprintf(&s1[j*2], "%02x", buffer[i] & 0xff);
   3028 	}
   3029 	if (buflen > printlen)
   3030 		sprintf(s3, " ...");
   3031 	DPRINTF(UDMASS_GEN, ("%s: 0x %s%s%s\n",
   3032 		USBDEVNAME(sc->sc_dev), s1, s2, s3));
   3033 }
   3034 #endif
   3035 
   3036 
   3037 
   3038 
   3039 
   3040 
   3041 
   3042 
   3043 #if defined(__NetBSD__) || defined(__OpenBSD__)
   3044 Static int
   3045 umass_scsipi_cmd(struct scsipi_xfer *xs)
   3046 {
   3047 	struct scsipi_link *sc_link = xs->sc_link;
   3048 	struct umass_softc *sc = sc_link->adapter_softc;
   3049 	struct scsipi_generic *cmd, trcmd;
   3050 	int cmdlen;
   3051 	int dir;
   3052 
   3053 	DIF(UDMASS_UPPER, sc_link->flags |= DEBUGLEVEL);
   3054 
   3055 	DPRINTF(UDMASS_CMD, ("%s: umass_scsi_cmd:  %d:%d xs=%p cmd=0x%02x "
   3056 	    "(quirks=0x%x, poll=%d)\n", USBDEVNAME(sc->sc_dev),
   3057 	    sc_link->scsipi_scsi.target, sc_link->scsipi_scsi.lun,
   3058 	    xs, xs->cmd->opcode, sc_link->quirks,
   3059 	    xs->xs_control & XS_CTL_POLL));
   3060 #if defined(USB_DEBUG) && defined(SCSIDEBUG)
   3061 	if (umassdebug & UDMASS_SCSI)
   3062 		show_scsipi_xs(xs);
   3063 	else if (umassdebug & ~UDMASS_CMD)
   3064 		show_scsipi_cmd(xs);
   3065 #endif
   3066 
   3067 	if (sc->sc_dying) {
   3068 		xs->error = XS_DRIVER_STUFFUP;
   3069 		goto done;
   3070 	}
   3071 
   3072 #ifdef UMASS_DEBUG
   3073 	if ((sc_link->type == BUS_ATAPI ?
   3074 	     sc_link->scsipi_atapi.drive : sc_link->scsipi_scsi.target)
   3075 	    != UMASS_SCSIID_DEVICE) {
   3076 		DPRINTF(UDMASS_SCSI, ("%s: wrong SCSI ID %d\n",
   3077 		    USBDEVNAME(sc->sc_dev),
   3078 		    sc_link->scsipi_scsi.target));
   3079 		xs->error = XS_DRIVER_STUFFUP;
   3080 		goto done;
   3081 	}
   3082 #endif
   3083 
   3084 	if (xs->cmd->opcode == SCSI_MODE_SENSE &&
   3085 	    (sc_link->quirks & SDEV_NOMODESENSE)) {
   3086 		/*printf("%s: SCSI_MODE_SENSE\n", USBDEVNAME(sc->sc_dev));*/
   3087 		xs->error = XS_TIMEOUT;
   3088 		goto done;
   3089 	}
   3090 
   3091 	if (xs->cmd->opcode == START_STOP &&
   3092 	    (sc->quirks & NO_START_STOP)) {
   3093 		/*printf("%s: START_STOP\n", USBDEVNAME(sc->sc_dev));*/
   3094 		xs->error = XS_NOERROR;
   3095 		goto done;
   3096 	}
   3097 
   3098 	dir = DIR_NONE;
   3099 	if (xs->datalen) {
   3100 		switch (xs->xs_control & (XS_CTL_DATA_IN | XS_CTL_DATA_OUT)) {
   3101 		case XS_CTL_DATA_IN:
   3102 			dir = DIR_IN;
   3103 			break;
   3104 		case XS_CTL_DATA_OUT:
   3105 			dir = DIR_OUT;
   3106 			break;
   3107 		}
   3108 	}
   3109 
   3110 	if (xs->datalen > UMASS_MAX_TRANSFER_SIZE) {
   3111 		printf("umass_cmd: large datalen, %d\n", xs->datalen);
   3112 		xs->error = XS_DRIVER_STUFFUP;
   3113 		goto done;
   3114 	}
   3115 
   3116 	cmd = xs->cmd;
   3117 	cmdlen = xs->cmdlen;
   3118 	if (sc->proto & PROTO_UFI) {
   3119 		if (!umass_ufi_transform(sc, cmd, cmdlen, &trcmd, &cmdlen)) {
   3120 			xs->error = XS_DRIVER_STUFFUP;
   3121 			goto done;
   3122 		}
   3123 		cmd = &trcmd;
   3124 
   3125 	}
   3126 
   3127 	if (xs->xs_control & XS_CTL_POLL) {
   3128 		/* Use sync transfer. XXX Broken! */
   3129 		DPRINTF(UDMASS_SCSI, ("umass_scsi_cmd: sync dir=%d\n", dir));
   3130 		sc->sc_xfer_flags = USBD_SYNCHRONOUS;
   3131 		sc->sc_sync_status = USBD_INVAL;
   3132 		sc->transfer(sc, sc_link->scsipi_scsi.lun, cmd, cmdlen,
   3133 			     xs->data, xs->datalen, dir, 0, xs);
   3134 		sc->sc_xfer_flags = 0;
   3135 		DPRINTF(UDMASS_SCSI, ("umass_scsi_cmd: done err=%d\n",
   3136 				      sc->sc_sync_status));
   3137 		switch (sc->sc_sync_status) {
   3138 		case USBD_NORMAL_COMPLETION:
   3139 			xs->error = XS_NOERROR;
   3140 			break;
   3141 		case USBD_TIMEOUT:
   3142 			xs->error = XS_TIMEOUT;
   3143 			break;
   3144 		default:
   3145 			xs->error = XS_DRIVER_STUFFUP;
   3146 			break;
   3147 		}
   3148 		goto done;
   3149 	} else {
   3150 		DPRINTF(UDMASS_SCSI, ("umass_scsi_cmd: async dir=%d, cmdlen=%d"
   3151 				      " datalen=%d\n",
   3152 				      dir, cmdlen, xs->datalen));
   3153 		sc->transfer(sc, sc_link->scsipi_scsi.lun, cmd, cmdlen,
   3154 		    xs->data, xs->datalen, dir, umass_scsipi_cb, xs);
   3155 		return (SUCCESSFULLY_QUEUED);
   3156 	}
   3157 
   3158 	/* Return if command finishes early. */
   3159  done:
   3160 	xs->xs_status |= XS_STS_DONE;
   3161 	scsipi_done(xs);
   3162 	if (xs->xs_control & XS_CTL_POLL)
   3163 		return (COMPLETE);
   3164 	else
   3165 		return (SUCCESSFULLY_QUEUED);
   3166 }
   3167 
   3168 Static void
   3169 umass_scsipi_minphys(struct buf *bp)
   3170 {
   3171 	if (bp->b_bcount > UMASS_MAX_TRANSFER_SIZE)
   3172 		bp->b_bcount = UMASS_MAX_TRANSFER_SIZE;
   3173 	minphys(bp);
   3174 }
   3175 
   3176 int
   3177 umass_scsipi_ioctl(struct scsipi_link *link, u_long cmd, caddr_t arg,
   3178 		   int flag, struct proc *p)
   3179 {
   3180 	/*struct umass_softc *sc = link->adapter_softc;*/
   3181 
   3182 	switch (cmd) {
   3183 #if 0
   3184 	case SCBUSIORESET:
   3185 		ccb->ccb_h.status = CAM_REQ_INPROG;
   3186 		umass_reset(sc, umass_cam_cb, (void *) ccb);
   3187 		return (0);
   3188 #endif
   3189 	default:
   3190 		return (ENOTTY);
   3191 	}
   3192 }
   3193 
   3194 Static int
   3195 umass_scsipi_getgeom(struct scsipi_link *sc_link, struct disk_parms *dp,
   3196 		     u_long sectors)
   3197 {
   3198 	struct umass_softc *sc = sc_link->adapter_softc;
   3199 
   3200 	/* If it's not a floppy, we don't know what to do. */
   3201 	if (!(sc->proto & PROTO_UFI))
   3202 		return (0);
   3203 
   3204 	switch (sectors) {
   3205 	case 1440:
   3206 		/* Most likely a single density 3.5" floppy. */
   3207 		dp->heads = 2;
   3208 		dp->sectors = 9;
   3209 		dp->cyls = 80;
   3210 		return (1);
   3211 	case 2880:
   3212 		/* Most likely a double density 3.5" floppy. */
   3213 		dp->heads = 2;
   3214 		dp->sectors = 18;
   3215 		dp->cyls = 80;
   3216 		return (1);
   3217 	default:
   3218 		return (0);
   3219 	}
   3220 }
   3221 
   3222 Static void
   3223 umass_scsipi_cb(struct umass_softc *sc, void *priv, int residue, int status)
   3224 {
   3225 	struct scsipi_xfer *xs = priv;
   3226 	struct scsipi_link *sc_link = xs->sc_link;
   3227 	int cmdlen;
   3228 	int s;
   3229 
   3230 	DPRINTF(UDMASS_CMD,("umass_scsipi_cb: xs=%p residue=%d status=%d\n",
   3231 		xs, residue, status));
   3232 
   3233 	xs->resid = residue;
   3234 
   3235 	switch (status) {
   3236 	case STATUS_CMD_OK:
   3237 		xs->error = XS_NOERROR;
   3238 		break;
   3239 
   3240 	case STATUS_CMD_UNKNOWN:
   3241 	case STATUS_CMD_FAILED:
   3242 		/* fetch sense data */
   3243 		memset(&sc->sc_sense_cmd, 0, sizeof(sc->sc_sense_cmd));
   3244 		sc->sc_sense_cmd.opcode = REQUEST_SENSE;
   3245 		sc->sc_sense_cmd.byte2 = sc_link->scsipi_scsi.lun <<
   3246 		    SCSI_CMD_LUN_SHIFT;
   3247 		sc->sc_sense_cmd.length = sizeof(xs->sense);
   3248 
   3249 		cmdlen = sizeof(sc->sc_sense_cmd);
   3250 		if (sc->proto & PROTO_UFI) /* XXX */
   3251 			cmdlen = UFI_COMMAND_LENGTH;
   3252 		sc->transfer(sc, sc_link->scsipi_scsi.lun,
   3253 			     &sc->sc_sense_cmd, cmdlen,
   3254 			     &xs->sense, sizeof(xs->sense), DIR_IN,
   3255 			     umass_scsipi_sense_cb, xs);
   3256 		return;
   3257 
   3258 	case STATUS_WIRE_FAILED:
   3259 		xs->error = XS_RESET;
   3260 		break;
   3261 
   3262 	default:
   3263 		panic("%s: Unknown status %d in umass_scsipi_cb\n",
   3264 			USBDEVNAME(sc->sc_dev), status);
   3265 	}
   3266 
   3267 	xs->xs_status |= XS_STS_DONE;
   3268 
   3269 	DPRINTF(UDMASS_CMD,("umass_scsipi_cb: return xs->error=%d, "
   3270 		"xs->xs_status=0x%x xs->resid=%d\n", xs->error, xs->xs_status,
   3271 		xs->resid));
   3272 
   3273 	s = splbio();
   3274 	scsipi_done(xs);
   3275 	splx(s);
   3276 }
   3277 
   3278 /*
   3279  * Finalise a completed autosense operation
   3280  */
   3281 Static void
   3282 umass_scsipi_sense_cb(struct umass_softc *sc, void *priv, int residue,
   3283 		      int status)
   3284 {
   3285 	struct scsipi_xfer *xs = priv;
   3286 	int s;
   3287 
   3288 	DPRINTF(UDMASS_CMD,("umass_scsipi_sense_cb: xs=%p residue=%d "
   3289 		"status=%d\n", xs, residue, status));
   3290 
   3291 	switch (status) {
   3292 	case STATUS_CMD_OK:
   3293 	case STATUS_CMD_UNKNOWN:
   3294 		/* getting sense data succeeded */
   3295 		if (xs->cmd->opcode == INQUIRY && (xs->resid < xs->datalen
   3296 		    || ((sc->quirks & RS_NO_CLEAR_UA) /* XXX */) )) {
   3297 			/*
   3298 			 * Some drivers return SENSE errors even after INQUIRY.
   3299 			 * The upper layer doesn't like that.
   3300 			 */
   3301 			xs->error = XS_NOERROR;
   3302 			break;
   3303 		}
   3304 		/* XXX look at residue */
   3305 		if (residue == 0 || residue == 14)/* XXX */
   3306 			xs->error = XS_SENSE;
   3307 		else
   3308 			xs->error = XS_SHORTSENSE;
   3309 		break;
   3310 	default:
   3311 		DPRINTF(UDMASS_SCSI, ("%s: Autosense failed, status %d\n",
   3312 			USBDEVNAME(sc->sc_dev), status));
   3313 		xs->error = XS_DRIVER_STUFFUP;
   3314 		break;
   3315 	}
   3316 
   3317 	xs->xs_status |= XS_STS_DONE;
   3318 
   3319 	DPRINTF(UDMASS_CMD,("umass_scsipi_sense_cb: return xs->error=%d, "
   3320 		"xs->xs_status=0x%x xs->resid=%d\n", xs->error, xs->xs_status,
   3321 		xs->resid));
   3322 
   3323 	s = splbio();
   3324 	scsipi_done(xs);
   3325 	splx(s);
   3326 }
   3327 
   3328 /*
   3329  * UFI specific functions
   3330  */
   3331 
   3332 Static int
   3333 umass_ufi_transform(struct umass_softc *sc, struct scsipi_generic *cmd,
   3334 		    int cmdlen, struct scsipi_generic *rcmd, int *rcmdlen)
   3335 {
   3336 	*rcmdlen = UFI_COMMAND_LENGTH;
   3337 	memset(rcmd, 0, sizeof *rcmd);
   3338 
   3339 	/* Handle any quirks */
   3340 	if (cmd->opcode == TEST_UNIT_READY
   3341 	    && (sc->quirks & NO_TEST_UNIT_READY)) {
   3342 		/*
   3343 		 * Some devices do not support this command.
   3344 		 * Start Stop Unit should give the same results
   3345 		 */
   3346 		DPRINTF(UDMASS_UFI, ("%s: Converted TEST_UNIT_READY "
   3347 			"to START_UNIT\n", USBDEVNAME(sc->sc_dev)));
   3348 		cmd->opcode = START_STOP;
   3349 		cmd->bytes[3] = SSS_START;
   3350 		return 1;
   3351 	}
   3352 
   3353 	switch (cmd->opcode) {
   3354 	/* Commands of which the format has been verified. They should work. */
   3355 	case TEST_UNIT_READY:
   3356 	case SCSI_REZERO_UNIT:
   3357 	case REQUEST_SENSE:
   3358 	case INQUIRY:
   3359 	case START_STOP:
   3360 	/*case SEND_DIAGNOSTIC: ??*/
   3361 	case PREVENT_ALLOW:
   3362 	case READ_CAPACITY:
   3363 	case READ_BIG:
   3364 	case WRITE_BIG:
   3365 	case POSITION_TO_ELEMENT:	/* SEEK_10 */
   3366 	case SCSI_MODE_SELECT_BIG:
   3367 	case SCSI_MODE_SENSE_BIG:
   3368 		/* Copy the command into the (zeroed out) destination buffer */
   3369 		memcpy(rcmd, cmd, cmdlen);
   3370 		return (1);	/* success */
   3371 
   3372 	/*
   3373 	 * Other UFI commands: FORMAT_UNIT, MODE_SELECT, READ_FORMAT_CAPACITY,
   3374 	 * VERIFY, WRITE_AND_VERIFY.
   3375 	 * These should be checked whether they somehow can be made to fit.
   3376 	 */
   3377 
   3378 	/* These commands are known _not_ to work. They should be converted. */
   3379 	case SCSI_READ_COMMAND:
   3380 	case SCSI_WRITE_COMMAND:
   3381 	case SCSI_MODE_SENSE:
   3382 	case SCSI_MODE_SELECT:
   3383 	default:
   3384 		printf("%s: Unsupported UFI command 0x%02x",
   3385 			USBDEVNAME(sc->sc_dev), cmd->opcode);
   3386 		if (cmdlen == 6)
   3387 			printf(", 6 byte command should have been converted");
   3388 		printf("\n");
   3389 		return (0);	/* failure */
   3390 	}
   3391 }
   3392 
   3393 #if NATAPIBUS > 0
   3394 Static void
   3395 umass_atapi_probedev(struct atapibus_softc *atapi, int target)
   3396 {
   3397 	struct scsipi_link *sc_link;
   3398 	struct scsipibus_attach_args sa;
   3399 	struct ata_drive_datas *drvp = &atapi->sc_drvs[target];
   3400 	char vendor[33], product[65], revision[17];
   3401 	struct scsipi_inquiry_data inqbuf;
   3402 
   3403 	DPRINTF(UDMASS_SCSI,("umass_atapi_probedev: atapi=%p target=%d\n",
   3404 			     atapi, target));
   3405 
   3406 	if (atapi->sc_link[target])
   3407 		return;
   3408 
   3409 	sc_link = malloc(sizeof(*sc_link), M_DEVBUF, M_NOWAIT);
   3410 	if (sc_link == NULL) {
   3411 		printf("%s: can't allocate link for drive %d\n",
   3412 		       atapi->sc_dev.dv_xname, target);
   3413 		return;
   3414 	}
   3415 	*sc_link = *atapi->adapter_link;
   3416 
   3417 	DIF(UDMASS_UPPER, sc_link->flags |= DEBUGLEVEL);
   3418 
   3419 	/* Fill generic parts of the link. */
   3420 	sc_link->active = 0;
   3421 	sc_link->scsipi_atapi.drive = target;
   3422 	sc_link->device = &umass_dev;
   3423 	TAILQ_INIT(&sc_link->pending_xfers);
   3424 
   3425 	DPRINTF(UDMASS_SCSI, ("umass_atapi_probedev: doing inquiry\n"));
   3426 	/* Now go ask the device all about itself. */
   3427 	memset(&inqbuf, 0, sizeof(inqbuf));
   3428 	if (scsipi_inquire(sc_link, &inqbuf, XS_CTL_DISCOVERY) != 0)
   3429 		goto bad;
   3430 
   3431 	scsipi_strvis(vendor, 33, inqbuf.vendor, 8);
   3432 	scsipi_strvis(product, 65, inqbuf.product, 16);
   3433 	scsipi_strvis(revision, 17, inqbuf.revision, 4);
   3434 
   3435 	sa.sa_sc_link = sc_link;
   3436 	sa.sa_inqbuf.type = inqbuf.device;
   3437 	sa.sa_inqbuf.removable = inqbuf.dev_qual2 & SID_REMOVABLE ?
   3438 	    T_REMOV : T_FIXED;
   3439 	if (sa.sa_inqbuf.removable)
   3440 		sc_link->flags |= SDEV_REMOVABLE;
   3441 	/* XXX how? sc_link->scsipi_atapi.cap |= ACAP_LEN;*/
   3442 	sa.sa_inqbuf.vendor = vendor;
   3443 	sa.sa_inqbuf.product = product;
   3444 	sa.sa_inqbuf.revision = revision;
   3445 	sa.sa_inqptr = NULL;
   3446 
   3447 	drvp->drv_softc = atapi_probedev(atapi, target, sc_link, &sa);
   3448 	/* atapi_probedev() frees the scsipi_link when there is no device. */
   3449 	return;
   3450 
   3451 bad:
   3452 	free(sc_link, M_DEVBUF);
   3453 	return;
   3454 }
   3455 #endif
   3456 #endif
   3457