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