seagate.c revision 1.33 1 1.33 cgd /* $NetBSD: seagate.c,v 1.33 1999/03/19 05:42:00 cgd Exp $ */
2 1.24 perry
3 1.1 mycroft /*
4 1.1 mycroft * ST01/02, Future Domain TMC-885, TMC-950 SCSI driver
5 1.1 mycroft *
6 1.28 mycroft * Copyright 1994, Charles M. Hannum (mycroft (at) ai.mit.edu)
7 1.1 mycroft * Copyright 1994, Kent Palmkvist (kentp (at) isy.liu.se)
8 1.1 mycroft * Copyright 1994, Robert Knier (rknier (at) qgraph.com)
9 1.1 mycroft * Copyright 1992, 1994 Drew Eckhardt (drew (at) colorado.edu)
10 1.1 mycroft * Copyright 1994, Julian Elischer (julian (at) tfs.com)
11 1.1 mycroft *
12 1.1 mycroft * Others that has contributed by example code is
13 1.1 mycroft * Glen Overby (overby (at) cray.com)
14 1.1 mycroft * Tatu Yllnen
15 1.1 mycroft * Brian E Litzinger
16 1.1 mycroft *
17 1.1 mycroft * Redistribution and use in source and binary forms, with or without
18 1.1 mycroft * modification, are permitted provided that the following conditions
19 1.1 mycroft * are met:
20 1.1 mycroft * 1. Redistributions of source code must retain the above copyright
21 1.1 mycroft * notice, this list of conditions and the following disclaimer.
22 1.1 mycroft * 2. Redistributions in binary form must reproduce the above copyright
23 1.1 mycroft * notice, this list of conditions and the following disclaimer in the
24 1.1 mycroft * documentation and/or other materials provided with the distribution.
25 1.1 mycroft *
26 1.1 mycroft * THIS SOFTWARE IS PROVIDED BY THE DEVELOPERS ``AS IS'' AND
27 1.1 mycroft * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
28 1.1 mycroft * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
29 1.1 mycroft * ARE DISCLAIMED. IN NO EVENT SHALL THE DEVELOPERS BE LIABLE
30 1.1 mycroft * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
31 1.1 mycroft * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
32 1.1 mycroft * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
33 1.1 mycroft * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
34 1.1 mycroft * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
35 1.1 mycroft * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
36 1.1 mycroft * SUCH DAMAGE.
37 1.1 mycroft */
38 1.1 mycroft
39 1.1 mycroft /*
40 1.1 mycroft * kentp 940307 alpha version based on newscsi-03 version of Julians SCSI-code
41 1.1 mycroft * kentp 940314 Added possibility to not use messages
42 1.1 mycroft * rknier 940331 Added fast transfer code
43 1.1 mycroft * rknier 940407 Added assembler coded data transfers
44 1.1 mycroft */
45 1.1 mycroft
46 1.1 mycroft /*
47 1.1 mycroft * What should really be done:
48 1.1 mycroft *
49 1.1 mycroft * Add missing tests for timeouts
50 1.1 mycroft * Restructure interrupt enable/disable code (runs to long with int disabled)
51 1.1 mycroft * Find bug? giving problem with tape status
52 1.1 mycroft * Add code to handle Future Domain 840, 841, 880 and 881
53 1.1 mycroft * adjust timeouts (startup is very slow)
54 1.1 mycroft * add code to use tagged commands in SCSI2
55 1.1 mycroft * Add code to handle slow devices better (sleep if device not disconnecting)
56 1.1 mycroft * Fix unnecessary interrupts
57 1.1 mycroft */
58 1.1 mycroft
59 1.1 mycroft /*
60 1.1 mycroft * Note to users trying to share a disk between DOS and unix:
61 1.1 mycroft * The ST01/02 is a translating host-adapter. It is not giving DOS
62 1.1 mycroft * the same number of heads/tracks/sectors as specified by the disk.
63 1.1 mycroft * It is therefore important to look at what numbers DOS thinks the
64 1.1 mycroft * disk has. Use these to disklabel your disk in an appropriate manner
65 1.1 mycroft */
66 1.1 mycroft
67 1.1 mycroft #include <sys/types.h>
68 1.1 mycroft #include <sys/param.h>
69 1.1 mycroft #include <sys/systm.h>
70 1.1 mycroft #include <sys/kernel.h>
71 1.1 mycroft #include <sys/errno.h>
72 1.1 mycroft #include <sys/ioctl.h>
73 1.3 mycroft #include <sys/device.h>
74 1.1 mycroft #include <sys/buf.h>
75 1.1 mycroft #include <sys/proc.h>
76 1.1 mycroft #include <sys/user.h>
77 1.3 mycroft #include <sys/queue.h>
78 1.3 mycroft #include <sys/malloc.h>
79 1.1 mycroft
80 1.17 mycroft #include <machine/intr.h>
81 1.1 mycroft #include <machine/pio.h>
82 1.1 mycroft
83 1.23 bouyer #include <dev/scsipi/scsi_all.h>
84 1.23 bouyer #include <dev/scsipi/scsipi_all.h>
85 1.23 bouyer #include <dev/scsipi/scsi_message.h>
86 1.23 bouyer #include <dev/scsipi/scsiconf.h>
87 1.1 mycroft
88 1.8 cgd #include <dev/isa/isareg.h>
89 1.33 cgd #include <dev/isa/isavar.h> /* XXX USES ISA HOLE DIRECTLY */
90 1.3 mycroft
91 1.1 mycroft #define SEA_SCB_MAX 32 /* allow maximally 8 scsi control blocks */
92 1.1 mycroft #define SCB_TABLE_SIZE 8 /* start with 8 scb entries in table */
93 1.1 mycroft #define BLOCK_SIZE 512 /* size of READ/WRITE areas on SCSI card */
94 1.1 mycroft
95 1.1 mycroft /*
96 1.1 mycroft * defining SEA_BLINDTRANSFER will make DATA IN and DATA OUT to be done with
97 1.1 mycroft * blind transfers, i.e. no check is done for scsi phase changes. This will
98 1.1 mycroft * result in data loss if the scsi device does not send its data using
99 1.1 mycroft * BLOCK_SIZE bytes at a time.
100 1.1 mycroft * If SEA_BLINDTRANSFER defined and SEA_ASSEMBLER also defined will result in
101 1.1 mycroft * the use of blind transfers coded in assembler. SEA_ASSEMBLER is no good
102 1.1 mycroft * without SEA_BLINDTRANSFER defined.
103 1.1 mycroft */
104 1.1 mycroft #define SEA_BLINDTRANSFER /* do blind transfers */
105 1.1 mycroft #define SEA_ASSEMBLER /* Use assembly code for fast transfers */
106 1.1 mycroft
107 1.1 mycroft /*
108 1.1 mycroft * defining SEA_NOMSGS causes messages not to be used (thereby disabling
109 1.1 mycroft * disconnects)
110 1.1 mycroft */
111 1.1 mycroft #undef SEA_NOMSGS
112 1.1 mycroft
113 1.1 mycroft /*
114 1.1 mycroft * defining SEA_NODATAOUT makes dataout phase being aborted
115 1.1 mycroft */
116 1.1 mycroft #undef SEA_NODATAOUT
117 1.1 mycroft
118 1.1 mycroft /* Debugging definitions. Should not be used unless you want a lot of
119 1.1 mycroft printouts even under normal conditions */
120 1.1 mycroft
121 1.1 mycroft #undef SEA_DEBUGQUEUE /* Display info about queue-lengths */
122 1.1 mycroft
123 1.1 mycroft /******************************* board definitions **************************/
124 1.1 mycroft /*
125 1.1 mycroft * CONTROL defines
126 1.1 mycroft */
127 1.1 mycroft #define CMD_RST 0x01 /* scsi reset */
128 1.1 mycroft #define CMD_SEL 0x02 /* scsi select */
129 1.1 mycroft #define CMD_BSY 0x04 /* scsi busy */
130 1.1 mycroft #define CMD_ATTN 0x08 /* scsi attention */
131 1.1 mycroft #define CMD_START_ARB 0x10 /* start arbitration bit */
132 1.1 mycroft #define CMD_EN_PARITY 0x20 /* enable scsi parity generation */
133 1.1 mycroft #define CMD_INTR 0x40 /* enable scsi interrupts */
134 1.1 mycroft #define CMD_DRVR_ENABLE 0x80 /* scsi enable */
135 1.1 mycroft
136 1.1 mycroft /*
137 1.1 mycroft * STATUS
138 1.1 mycroft */
139 1.1 mycroft #define STAT_BSY 0x01 /* scsi busy */
140 1.1 mycroft #define STAT_MSG 0x02 /* scsi msg */
141 1.1 mycroft #define STAT_IO 0x04 /* scsi I/O */
142 1.1 mycroft #define STAT_CD 0x08 /* scsi C/D */
143 1.1 mycroft #define STAT_REQ 0x10 /* scsi req */
144 1.1 mycroft #define STAT_SEL 0x20 /* scsi select */
145 1.1 mycroft #define STAT_PARITY 0x40 /* parity error bit */
146 1.1 mycroft #define STAT_ARB_CMPL 0x80 /* arbitration complete bit */
147 1.1 mycroft
148 1.1 mycroft /*
149 1.1 mycroft * REQUESTS
150 1.1 mycroft */
151 1.3 mycroft #define PH_DATAOUT (0)
152 1.3 mycroft #define PH_DATAIN (STAT_IO)
153 1.3 mycroft #define PH_CMD (STAT_CD)
154 1.3 mycroft #define PH_STAT (STAT_CD | STAT_IO)
155 1.3 mycroft #define PH_MSGOUT (STAT_MSG | STAT_CD)
156 1.3 mycroft #define PH_MSGIN (STAT_MSG | STAT_CD | STAT_IO)
157 1.3 mycroft
158 1.3 mycroft #define PH_MASK (STAT_MSG | STAT_CD | STAT_IO)
159 1.1 mycroft
160 1.3 mycroft #define PH_INVALID 0xff
161 1.1 mycroft
162 1.1 mycroft #define SEA_RAMOFFSET 0x00001800
163 1.1 mycroft
164 1.1 mycroft #define BASE_CMD (CMD_INTR | CMD_EN_PARITY)
165 1.1 mycroft
166 1.3 mycroft #define SEAGATE 1 /* Seagate ST0[12] */
167 1.3 mycroft #define FDOMAIN 2 /* Future Domain TMC-{885,950} */
168 1.3 mycroft #define FDOMAIN840 3 /* Future Domain TMC-{84[01],88[01]} */
169 1.1 mycroft
170 1.1 mycroft /******************************************************************************/
171 1.1 mycroft
172 1.1 mycroft /* scsi control block used to keep info about a scsi command */
173 1.1 mycroft struct sea_scb {
174 1.1 mycroft u_char *data; /* position in data buffer so far */
175 1.3 mycroft int datalen; /* bytes remaining to transfer */
176 1.1 mycroft TAILQ_ENTRY(sea_scb) chain;
177 1.23 bouyer struct scsipi_xfer *xs; /* the scsipi_xfer for this cmd */
178 1.1 mycroft int flags; /* status of the instruction */
179 1.1 mycroft #define SCB_FREE 0
180 1.1 mycroft #define SCB_ACTIVE 1
181 1.1 mycroft #define SCB_ABORTED 2
182 1.1 mycroft #define SCB_TIMEOUT 4
183 1.1 mycroft #define SCB_ERROR 8
184 1.1 mycroft };
185 1.1 mycroft
186 1.1 mycroft /*
187 1.1 mycroft * data structure describing current status of the scsi bus. One for each
188 1.1 mycroft * controller card.
189 1.1 mycroft */
190 1.1 mycroft struct sea_softc {
191 1.1 mycroft struct device sc_dev;
192 1.8 cgd void *sc_ih;
193 1.1 mycroft
194 1.3 mycroft int type; /* board type */
195 1.1 mycroft caddr_t maddr; /* Base address for card */
196 1.1 mycroft caddr_t maddr_cr_sr; /* Address of control and status reg */
197 1.1 mycroft caddr_t maddr_dr; /* Address of data register */
198 1.3 mycroft
199 1.23 bouyer struct scsipi_link sc_link; /* prototype for subdevs */
200 1.30 thorpej struct scsipi_adapter sc_adapter;
201 1.3 mycroft TAILQ_HEAD(, sea_scb) free_list, ready_list, nexus_list;
202 1.3 mycroft struct sea_scb *nexus; /* currently connected command */
203 1.3 mycroft int numscbs; /* number of scsi control blocks */
204 1.3 mycroft struct sea_scb scb[SCB_TABLE_SIZE];
205 1.3 mycroft
206 1.1 mycroft int our_id; /* our scsi id */
207 1.1 mycroft u_char our_id_mask;
208 1.1 mycroft volatile u_char busy[8]; /* index=target, bit=lun, Keep track of
209 1.1 mycroft busy luns at device target */
210 1.1 mycroft };
211 1.1 mycroft
212 1.1 mycroft /* flag showing if main routine is running. */
213 1.1 mycroft static volatile int main_running = 0;
214 1.1 mycroft
215 1.1 mycroft #define STATUS (*(volatile u_char *)sea->maddr_cr_sr)
216 1.1 mycroft #define CONTROL STATUS
217 1.1 mycroft #define DATA (*(volatile u_char *)sea->maddr_dr)
218 1.1 mycroft
219 1.1 mycroft /*
220 1.1 mycroft * These are "special" values for the tag parameter passed to sea_select
221 1.1 mycroft * Not implemented right now.
222 1.1 mycroft */
223 1.1 mycroft #define TAG_NEXT -1 /* Use next free tag */
224 1.1 mycroft #define TAG_NONE -2 /*
225 1.1 mycroft * Establish I_T_L nexus instead of I_T_L_Q
226 1.1 mycroft * even on SCSI-II devices.
227 1.1 mycroft */
228 1.1 mycroft
229 1.1 mycroft typedef struct {
230 1.1 mycroft char *signature;
231 1.1 mycroft int offset, length;
232 1.1 mycroft int type;
233 1.1 mycroft } BiosSignature;
234 1.1 mycroft
235 1.1 mycroft /*
236 1.1 mycroft * Signatures for automatic recognition of board type
237 1.1 mycroft */
238 1.1 mycroft static const BiosSignature signatures[] = {
239 1.1 mycroft {"ST01 v1.7 (C) Copyright 1987 Seagate", 15, 37, SEAGATE},
240 1.1 mycroft {"SCSI BIOS 2.00 (C) Copyright 1987 Seagate", 15, 40, SEAGATE},
241 1.1 mycroft
242 1.1 mycroft /*
243 1.1 mycroft * The following two lines are NOT mistakes. One detects ROM revision
244 1.1 mycroft * 3.0.0, the other 3.2. Since seagate has only one type of SCSI adapter,
245 1.1 mycroft * and this is not going to change, the "SEAGATE" and "SCSI" together
246 1.1 mycroft * are probably "good enough"
247 1.1 mycroft */
248 1.1 mycroft {"SEAGATE SCSI BIOS ", 16, 17, SEAGATE},
249 1.1 mycroft {"SEAGATE SCSI BIOS ", 17, 17, SEAGATE},
250 1.1 mycroft
251 1.1 mycroft /*
252 1.1 mycroft * However, future domain makes several incompatible SCSI boards, so specific
253 1.1 mycroft * signatures must be used.
254 1.1 mycroft */
255 1.1 mycroft {"FUTURE DOMAIN CORP. (C) 1986-1989 V5.0C2/14/89", 5, 45, FDOMAIN},
256 1.1 mycroft {"FUTURE DOMAIN CORP. (C) 1986-1989 V6.0A7/28/89", 5, 46, FDOMAIN},
257 1.1 mycroft {"FUTURE DOMAIN CORP. (C) 1986-1990 V6.0105/31/90",5, 47, FDOMAIN},
258 1.1 mycroft {"FUTURE DOMAIN CORP. (C) 1986-1990 V6.0209/18/90",5, 47, FDOMAIN},
259 1.1 mycroft {"FUTURE DOMAIN CORP. (C) 1986-1990 V7.009/18/90", 5, 46, FDOMAIN},
260 1.1 mycroft {"FUTURE DOMAIN CORP. (C) 1992 V8.00.004/02/92", 5, 44, FDOMAIN},
261 1.1 mycroft {"FUTURE DOMAIN TMC-950", 5, 21, FDOMAIN},
262 1.1 mycroft };
263 1.1 mycroft
264 1.1 mycroft #define nsignatures (sizeof(signatures) / sizeof(signatures[0]))
265 1.1 mycroft
266 1.16 christos #ifdef notdef
267 1.1 mycroft static const char *bases[] = {
268 1.1 mycroft (char *) 0xc8000, (char *) 0xca000, (char *) 0xcc000,
269 1.1 mycroft (char *) 0xce000, (char *) 0xdc000, (char *) 0xde000
270 1.1 mycroft };
271 1.1 mycroft
272 1.1 mycroft #define nbases (sizeof(bases) / sizeof(bases[0]))
273 1.16 christos #endif
274 1.1 mycroft
275 1.8 cgd int seaintr __P((void *));
276 1.23 bouyer int sea_scsi_cmd __P((struct scsipi_xfer *));
277 1.1 mycroft void sea_timeout __P((void *));
278 1.1 mycroft void sea_done __P((struct sea_softc *, struct sea_scb *));
279 1.1 mycroft struct sea_scb *sea_get_scb __P((struct sea_softc *, int));
280 1.1 mycroft void sea_free_scb __P((struct sea_softc *, struct sea_scb *, int));
281 1.1 mycroft static void sea_main __P((void));
282 1.1 mycroft static void sea_information_transfer __P((struct sea_softc *));
283 1.23 bouyer int sea_poll __P((struct sea_softc *, struct scsipi_xfer *, int));
284 1.1 mycroft void sea_init __P((struct sea_softc *));
285 1.1 mycroft void sea_send_scb __P((struct sea_softc *sea, struct sea_scb *scb));
286 1.1 mycroft void sea_reselect __P((struct sea_softc *sea));
287 1.1 mycroft int sea_select __P((struct sea_softc *sea, struct sea_scb *scb));
288 1.1 mycroft int sea_transfer_pio __P((struct sea_softc *sea, u_char *phase,
289 1.3 mycroft int *count, u_char **data));
290 1.1 mycroft int sea_abort __P((struct sea_softc *, struct sea_scb *scb));
291 1.1 mycroft
292 1.1 mycroft /* the below structure is so we have a default dev struct for our link struct */
293 1.23 bouyer struct scsipi_device sea_dev = {
294 1.1 mycroft NULL, /* use default error handler */
295 1.1 mycroft NULL, /* have a queue, served by this */
296 1.1 mycroft NULL, /* have no async handler */
297 1.1 mycroft NULL, /* Use default 'done' routine */
298 1.1 mycroft };
299 1.1 mycroft
300 1.26 drochner int seaprobe __P((struct device *, struct cfdata *, void *));
301 1.11 pk void seaattach __P((struct device *, struct device *, void *));
302 1.1 mycroft
303 1.14 thorpej struct cfattach sea_ca = {
304 1.14 thorpej sizeof(struct sea_softc), seaprobe, seaattach
305 1.14 thorpej };
306 1.14 thorpej
307 1.25 thorpej extern struct cfdriver sea_cd;
308 1.1 mycroft
309 1.1 mycroft #ifdef SEA_DEBUGQUEUE
310 1.1 mycroft void
311 1.1 mycroft sea_queue_length(sea)
312 1.1 mycroft struct sea_softc *sea;
313 1.1 mycroft {
314 1.1 mycroft struct sea_scb *scb;
315 1.1 mycroft int connected, issued, disconnected;
316 1.1 mycroft
317 1.3 mycroft connected = sea->nexus ? 1 : 0;
318 1.3 mycroft for (scb = sea->ready_list.tqh_first, issued = 0; scb;
319 1.1 mycroft scb = scb->chain.tqe_next, issued++);
320 1.3 mycroft for (scb = sea->nexus_list.tqh_first, disconnected = 0; scb;
321 1.1 mycroft scb = scb->chain.tqe_next, disconnected++);
322 1.21 christos printf("%s: length: %d/%d/%d\n", sea->sc_dev.dv_xname, connected,
323 1.1 mycroft issued, disconnected);
324 1.1 mycroft }
325 1.1 mycroft #endif
326 1.1 mycroft
327 1.1 mycroft /*
328 1.1 mycroft * Check if the device can be found at the port given and if so, detect the
329 1.1 mycroft * type the type of board. Set it up ready for further work. Takes the isa_dev
330 1.1 mycroft * structure from autoconf as an argument.
331 1.1 mycroft * Returns 1 if card recognized, 0 if errors.
332 1.1 mycroft */
333 1.1 mycroft int
334 1.2 mycroft seaprobe(parent, match, aux)
335 1.2 mycroft struct device *parent;
336 1.26 drochner struct cfdata *match;
337 1.26 drochner void *aux;
338 1.1 mycroft {
339 1.1 mycroft struct isa_attach_args *ia = aux;
340 1.26 drochner int i, type = 0;
341 1.26 drochner caddr_t maddr;
342 1.1 mycroft
343 1.1 mycroft /*
344 1.1 mycroft * Could try to find a board by looking through all possible addresses.
345 1.1 mycroft * This is not done the right way now, because I have not found a way
346 1.1 mycroft * to get a boards virtual memory address given its physical. There is
347 1.1 mycroft * a function that returns the physical address for a given virtual
348 1.1 mycroft * address, but not the other way around.
349 1.1 mycroft */
350 1.1 mycroft
351 1.4 mycroft if (ia->ia_maddr == MADDRUNK) {
352 1.1 mycroft /* XXX */
353 1.1 mycroft return 0;
354 1.1 mycroft } else
355 1.26 drochner maddr = ISA_HOLE_VADDR(ia->ia_maddr);
356 1.26 drochner
357 1.26 drochner /* check board type */ /* No way to define this through config */
358 1.26 drochner for (i = 0; i < nsignatures; i++)
359 1.26 drochner if (!bcmp(maddr + signatures[i].offset,
360 1.26 drochner signatures[i].signature, signatures[i].length)) {
361 1.26 drochner type = signatures[i].type;
362 1.26 drochner break;
363 1.26 drochner }
364 1.26 drochner
365 1.26 drochner /* Find controller and data memory addresses */
366 1.26 drochner switch (type) {
367 1.26 drochner case SEAGATE:
368 1.26 drochner case FDOMAIN840:
369 1.26 drochner case FDOMAIN:
370 1.26 drochner break;
371 1.26 drochner default:
372 1.26 drochner #ifdef DEBUG
373 1.26 drochner printf("seaprobe: board type unknown at address 0x%x\n",
374 1.26 drochner ia->ia_maddr);
375 1.26 drochner #endif
376 1.26 drochner return 0;
377 1.26 drochner }
378 1.26 drochner
379 1.26 drochner ia->ia_drq = DRQUNK;
380 1.26 drochner ia->ia_msize = 0x2000;
381 1.26 drochner ia->ia_iosize = 0;
382 1.26 drochner return 1;
383 1.26 drochner }
384 1.26 drochner
385 1.26 drochner /*
386 1.26 drochner * Attach all sub-devices we can find
387 1.26 drochner */
388 1.26 drochner void
389 1.26 drochner seaattach(parent, self, aux)
390 1.26 drochner struct device *parent, *self;
391 1.26 drochner void *aux;
392 1.26 drochner {
393 1.26 drochner struct isa_attach_args *ia = aux;
394 1.26 drochner struct sea_softc *sea = (void *)self;
395 1.26 drochner int i;
396 1.26 drochner
397 1.26 drochner sea->maddr = ISA_HOLE_VADDR(ia->ia_maddr);
398 1.1 mycroft
399 1.1 mycroft /* check board type */ /* No way to define this through config */
400 1.1 mycroft for (i = 0; i < nsignatures; i++)
401 1.12 thorpej if (!bcmp(sea->maddr + signatures[i].offset,
402 1.1 mycroft signatures[i].signature, signatures[i].length)) {
403 1.1 mycroft sea->type = signatures[i].type;
404 1.1 mycroft break;
405 1.1 mycroft }
406 1.1 mycroft
407 1.1 mycroft /* Find controller and data memory addresses */
408 1.1 mycroft switch (sea->type) {
409 1.1 mycroft case SEAGATE:
410 1.3 mycroft case FDOMAIN840:
411 1.1 mycroft sea->maddr_cr_sr =
412 1.1 mycroft (void *) (((u_char *)sea->maddr) + 0x1a00);
413 1.1 mycroft sea->maddr_dr =
414 1.1 mycroft (void *) (((u_char *)sea->maddr) + 0x1c00);
415 1.1 mycroft break;
416 1.1 mycroft case FDOMAIN:
417 1.1 mycroft sea->maddr_cr_sr =
418 1.1 mycroft (void *) (((u_char *)sea->maddr) + 0x1c00);
419 1.1 mycroft sea->maddr_dr =
420 1.1 mycroft (void *) (((u_char *)sea->maddr) + 0x1e00);
421 1.1 mycroft break;
422 1.1 mycroft default:
423 1.22 mikel #ifdef DEBUG
424 1.22 mikel printf("%s: board type unknown at address 0x%x\n",
425 1.22 mikel sea->sc_dev.dv_xname, ia->ia_maddr);
426 1.10 mycroft #endif
427 1.26 drochner return;
428 1.1 mycroft }
429 1.1 mycroft
430 1.1 mycroft /* Test controller RAM (works the same way on future domain cards?) */
431 1.1 mycroft *((u_char *)sea->maddr + SEA_RAMOFFSET) = 0xa5;
432 1.1 mycroft *((u_char *)sea->maddr + SEA_RAMOFFSET + 1) = 0x5a;
433 1.1 mycroft
434 1.1 mycroft if ((*((u_char *)sea->maddr + SEA_RAMOFFSET) != 0xa5) ||
435 1.1 mycroft (*((u_char *)sea->maddr + SEA_RAMOFFSET + 1) != 0x5a)) {
436 1.21 christos printf("%s: board RAM failure\n", sea->sc_dev.dv_xname);
437 1.26 drochner return;
438 1.1 mycroft }
439 1.1 mycroft
440 1.1 mycroft sea_init(sea);
441 1.1 mycroft
442 1.1 mycroft /*
443 1.30 thorpej * Fill in the adapter.
444 1.30 thorpej */
445 1.30 thorpej sea->sc_adapter.scsipi_cmd = sea_scsi_cmd;
446 1.30 thorpej sea->sc_adapter.scsipi_minphys = minphys;
447 1.30 thorpej
448 1.30 thorpej /*
449 1.23 bouyer * fill in the prototype scsipi_link.
450 1.1 mycroft */
451 1.23 bouyer sea->sc_link.scsipi_scsi.channel = SCSI_CHANNEL_ONLY_ONE;
452 1.1 mycroft sea->sc_link.adapter_softc = sea;
453 1.23 bouyer sea->sc_link.scsipi_scsi.adapter_target = sea->our_id;
454 1.30 thorpej sea->sc_link.adapter = &sea->sc_adapter;
455 1.1 mycroft sea->sc_link.device = &sea_dev;
456 1.3 mycroft sea->sc_link.openings = 1;
457 1.23 bouyer sea->sc_link.scsipi_scsi.max_target = 7;
458 1.31 mjacob sea->sc_link.scsipi_scsi.max_lun = 7;
459 1.23 bouyer sea->sc_link.type = BUS_SCSI;
460 1.1 mycroft
461 1.21 christos printf("\n");
462 1.1 mycroft
463 1.15 cgd sea->sc_ih = isa_intr_establish(ia->ia_ic, ia->ia_irq, IST_EDGE,
464 1.15 cgd IPL_BIO, seaintr, sea);
465 1.1 mycroft
466 1.1 mycroft /*
467 1.1 mycroft * ask the adapter what subunits are present
468 1.1 mycroft */
469 1.19 cgd config_found(self, &sea->sc_link, scsiprint);
470 1.1 mycroft }
471 1.1 mycroft
472 1.1 mycroft /*
473 1.1 mycroft * Catch an interrupt from the adaptor
474 1.1 mycroft */
475 1.1 mycroft int
476 1.8 cgd seaintr(arg)
477 1.8 cgd void *arg;
478 1.1 mycroft {
479 1.8 cgd struct sea_softc *sea = arg;
480 1.1 mycroft
481 1.1 mycroft #ifdef DEBUG /* extra overhead, and only needed for intr debugging */
482 1.1 mycroft if ((STATUS & STAT_PARITY) == 0 &&
483 1.1 mycroft (STATUS & (STAT_SEL | STAT_IO)) != (STAT_SEL | STAT_IO))
484 1.1 mycroft return 0;
485 1.1 mycroft #endif
486 1.1 mycroft
487 1.1 mycroft loop:
488 1.1 mycroft /* dispatch to appropriate routine if found and done=0 */
489 1.1 mycroft /* should check to see that this card really caused the interrupt */
490 1.1 mycroft
491 1.1 mycroft if (STATUS & STAT_PARITY) {
492 1.1 mycroft /* Parity error interrupt */
493 1.21 christos printf("%s: parity error\n", sea->sc_dev.dv_xname);
494 1.1 mycroft return 1;
495 1.1 mycroft }
496 1.1 mycroft
497 1.1 mycroft if ((STATUS & (STAT_SEL | STAT_IO)) == (STAT_SEL | STAT_IO)) {
498 1.1 mycroft /* Reselect interrupt */
499 1.1 mycroft sea_reselect(sea);
500 1.1 mycroft if (!main_running)
501 1.1 mycroft sea_main();
502 1.1 mycroft goto loop;
503 1.1 mycroft }
504 1.1 mycroft
505 1.1 mycroft return 1;
506 1.1 mycroft }
507 1.1 mycroft
508 1.1 mycroft /*
509 1.1 mycroft * Setup data structures, and reset the board and the SCSI bus.
510 1.1 mycroft */
511 1.1 mycroft void
512 1.1 mycroft sea_init(sea)
513 1.1 mycroft struct sea_softc *sea;
514 1.1 mycroft {
515 1.1 mycroft int i;
516 1.1 mycroft
517 1.1 mycroft /* Reset the scsi bus (I don't know if this is needed */
518 1.1 mycroft CONTROL = BASE_CMD | CMD_DRVR_ENABLE | CMD_RST;
519 1.1 mycroft delay(25); /* hold reset for at least 25 microseconds */
520 1.1 mycroft CONTROL = BASE_CMD;
521 1.1 mycroft delay(10); /* wait a Bus Clear Delay (800 ns + bus free delay (800 ns) */
522 1.1 mycroft
523 1.1 mycroft /* Set our id (don't know anything about this) */
524 1.1 mycroft switch (sea->type) {
525 1.1 mycroft case SEAGATE:
526 1.1 mycroft sea->our_id = 7;
527 1.1 mycroft break;
528 1.1 mycroft case FDOMAIN:
529 1.3 mycroft case FDOMAIN840:
530 1.1 mycroft sea->our_id = 6;
531 1.1 mycroft break;
532 1.1 mycroft }
533 1.1 mycroft sea->our_id_mask = 1 << sea->our_id;
534 1.1 mycroft
535 1.1 mycroft /* init fields used by our routines */
536 1.3 mycroft sea->nexus = 0;
537 1.3 mycroft TAILQ_INIT(&sea->ready_list);
538 1.3 mycroft TAILQ_INIT(&sea->nexus_list);
539 1.3 mycroft TAILQ_INIT(&sea->free_list);
540 1.1 mycroft for (i = 0; i < 8; i++)
541 1.1 mycroft sea->busy[i] = 0x00;
542 1.1 mycroft
543 1.1 mycroft /* link up the free list of scbs */
544 1.1 mycroft sea->numscbs = SCB_TABLE_SIZE;
545 1.1 mycroft for (i = 0; i < SCB_TABLE_SIZE; i++) {
546 1.3 mycroft TAILQ_INSERT_TAIL(&sea->free_list, &sea->scb[i], chain);
547 1.1 mycroft }
548 1.1 mycroft }
549 1.1 mycroft
550 1.1 mycroft /*
551 1.1 mycroft * start a scsi operation given the command and the data address. Also needs
552 1.1 mycroft * the unit, target and lu.
553 1.1 mycroft */
554 1.1 mycroft int
555 1.1 mycroft sea_scsi_cmd(xs)
556 1.23 bouyer struct scsipi_xfer *xs;
557 1.1 mycroft {
558 1.23 bouyer struct scsipi_link *sc_link = xs->sc_link;
559 1.1 mycroft struct sea_softc *sea = sc_link->adapter_softc;
560 1.1 mycroft struct sea_scb *scb;
561 1.1 mycroft int flags;
562 1.3 mycroft int s;
563 1.1 mycroft
564 1.1 mycroft SC_DEBUG(sc_link, SDEV_DB2, ("sea_scsi_cmd\n"));
565 1.1 mycroft
566 1.1 mycroft flags = xs->flags;
567 1.7 mycroft if ((flags & (ITSDONE|INUSE)) != INUSE) {
568 1.21 christos printf("%s: done or not in use?\n", sea->sc_dev.dv_xname);
569 1.1 mycroft xs->flags &= ~ITSDONE;
570 1.1 mycroft xs->flags |= INUSE;
571 1.1 mycroft }
572 1.3 mycroft if ((scb = sea_get_scb(sea, flags)) == NULL) {
573 1.1 mycroft xs->error = XS_DRIVER_STUFFUP;
574 1.1 mycroft return TRY_AGAIN_LATER;
575 1.1 mycroft }
576 1.3 mycroft scb->flags = SCB_ACTIVE;
577 1.3 mycroft scb->xs = xs;
578 1.1 mycroft
579 1.1 mycroft if (flags & SCSI_RESET) {
580 1.1 mycroft /*
581 1.1 mycroft * Try to send a reset command to the card.
582 1.1 mycroft * XXX Not implemented.
583 1.1 mycroft */
584 1.21 christos printf("%s: resetting\n", sea->sc_dev.dv_xname);
585 1.1 mycroft xs->error = XS_DRIVER_STUFFUP;
586 1.3 mycroft return COMPLETE;
587 1.1 mycroft }
588 1.1 mycroft
589 1.1 mycroft /*
590 1.1 mycroft * Put all the arguments for the xfer in the scb
591 1.1 mycroft */
592 1.1 mycroft scb->datalen = xs->datalen;
593 1.1 mycroft scb->data = xs->data;
594 1.1 mycroft
595 1.1 mycroft #ifdef SEA_DEBUGQUEUE
596 1.1 mycroft sea_queue_length(sea);
597 1.1 mycroft #endif
598 1.1 mycroft
599 1.3 mycroft s = splbio();
600 1.3 mycroft
601 1.3 mycroft sea_send_scb(sea, scb);
602 1.3 mycroft
603 1.1 mycroft /*
604 1.1 mycroft * Usually return SUCCESSFULLY QUEUED
605 1.1 mycroft */
606 1.3 mycroft if ((flags & SCSI_POLL) == 0) {
607 1.3 mycroft timeout(sea_timeout, scb, (xs->timeout * hz) / 1000);
608 1.1 mycroft splx(s);
609 1.1 mycroft return SUCCESSFULLY_QUEUED;
610 1.1 mycroft }
611 1.1 mycroft
612 1.3 mycroft splx(s);
613 1.3 mycroft
614 1.1 mycroft /*
615 1.1 mycroft * If we can't use interrupts, poll on completion
616 1.1 mycroft */
617 1.3 mycroft if (sea_poll(sea, xs, xs->timeout)) {
618 1.3 mycroft sea_timeout(scb);
619 1.3 mycroft if (sea_poll(sea, xs, 2000))
620 1.3 mycroft sea_timeout(scb);
621 1.3 mycroft }
622 1.3 mycroft return COMPLETE;
623 1.1 mycroft }
624 1.1 mycroft
625 1.1 mycroft /*
626 1.1 mycroft * Get a free scb. If there are none, see if we can allocate a new one. If so,
627 1.1 mycroft * put it in the hash table too; otherwise return an error or sleep.
628 1.1 mycroft */
629 1.1 mycroft struct sea_scb *
630 1.1 mycroft sea_get_scb(sea, flags)
631 1.1 mycroft struct sea_softc *sea;
632 1.1 mycroft int flags;
633 1.1 mycroft {
634 1.1 mycroft int s;
635 1.1 mycroft struct sea_scb *scb;
636 1.1 mycroft
637 1.3 mycroft s = splbio();
638 1.1 mycroft
639 1.1 mycroft /*
640 1.1 mycroft * If we can and have to, sleep waiting for one to come free
641 1.1 mycroft * but only if we can't allocate a new one.
642 1.1 mycroft */
643 1.1 mycroft for (;;) {
644 1.3 mycroft scb = sea->free_list.tqh_first;
645 1.1 mycroft if (scb) {
646 1.3 mycroft TAILQ_REMOVE(&sea->free_list, scb, chain);
647 1.1 mycroft break;
648 1.1 mycroft }
649 1.1 mycroft if (sea->numscbs < SEA_SCB_MAX) {
650 1.16 christos scb = (struct sea_scb *) malloc(sizeof(struct sea_scb),
651 1.16 christos M_TEMP, M_NOWAIT);
652 1.16 christos if (scb) {
653 1.1 mycroft bzero(scb, sizeof(struct sea_scb));
654 1.1 mycroft sea->numscbs++;
655 1.1 mycroft } else
656 1.21 christos printf("%s: can't malloc scb\n",
657 1.1 mycroft sea->sc_dev.dv_xname);
658 1.1 mycroft break;
659 1.1 mycroft }
660 1.10 mycroft if ((flags & SCSI_NOSLEEP) != 0)
661 1.10 mycroft break;
662 1.10 mycroft tsleep(&sea->free_list, PRIBIO, "seascb", 0);
663 1.1 mycroft }
664 1.1 mycroft
665 1.3 mycroft splx(s);
666 1.1 mycroft return scb;
667 1.1 mycroft }
668 1.1 mycroft
669 1.1 mycroft /*
670 1.1 mycroft * Try to send this command to the board. Because this board does not use any
671 1.1 mycroft * mailboxes, this routine simply adds the command to the queue held by the
672 1.1 mycroft * sea_softc structure.
673 1.1 mycroft * A check is done to see if the command contains a REQUEST_SENSE command, and
674 1.1 mycroft * if so the command is put first in the queue, otherwise the command is added
675 1.1 mycroft * to the end of the queue. ?? Not correct ??
676 1.1 mycroft */
677 1.1 mycroft void
678 1.1 mycroft sea_send_scb(sea, scb)
679 1.1 mycroft struct sea_softc *sea;
680 1.1 mycroft struct sea_scb *scb;
681 1.1 mycroft {
682 1.1 mycroft
683 1.3 mycroft TAILQ_INSERT_TAIL(&sea->ready_list, scb, chain);
684 1.3 mycroft /* Try to do some work on the card. */
685 1.1 mycroft if (!main_running)
686 1.1 mycroft sea_main();
687 1.1 mycroft }
688 1.1 mycroft
689 1.1 mycroft /*
690 1.1 mycroft * Coroutine that runs as long as more work can be done on the seagate host
691 1.1 mycroft * adapter in a system. Both sea_scsi_cmd and sea_intr will try to start it in
692 1.1 mycroft * case it is not running.
693 1.1 mycroft */
694 1.1 mycroft void
695 1.1 mycroft sea_main()
696 1.1 mycroft {
697 1.1 mycroft struct sea_softc *sea;
698 1.1 mycroft struct sea_scb *scb;
699 1.1 mycroft int done;
700 1.1 mycroft int unit;
701 1.1 mycroft int s;
702 1.1 mycroft
703 1.1 mycroft main_running = 1;
704 1.1 mycroft
705 1.1 mycroft /*
706 1.1 mycroft * This should not be run with interrupts disabled, but use the splx
707 1.1 mycroft * code instead.
708 1.1 mycroft */
709 1.1 mycroft loop:
710 1.1 mycroft done = 1;
711 1.14 thorpej for (unit = 0; unit < sea_cd.cd_ndevs; unit++) {
712 1.14 thorpej sea = sea_cd.cd_devs[unit];
713 1.1 mycroft if (!sea)
714 1.1 mycroft continue;
715 1.1 mycroft s = splbio();
716 1.3 mycroft if (!sea->nexus) {
717 1.1 mycroft /*
718 1.3 mycroft * Search through the ready_list for a command
719 1.1 mycroft * destined for a target that's not busy.
720 1.1 mycroft */
721 1.3 mycroft for (scb = sea->ready_list.tqh_first; scb;
722 1.1 mycroft scb = scb->chain.tqe_next) {
723 1.23 bouyer if (!(sea->busy[scb->xs->sc_link->scsipi_scsi.target] &
724 1.23 bouyer (1 << scb->xs->sc_link->scsipi_scsi.lun))) {
725 1.3 mycroft TAILQ_REMOVE(&sea->ready_list, scb,
726 1.1 mycroft chain);
727 1.1 mycroft
728 1.1 mycroft /* Re-enable interrupts. */
729 1.1 mycroft splx(s);
730 1.1 mycroft
731 1.1 mycroft /*
732 1.1 mycroft * Attempt to establish an I_T_L nexus.
733 1.3 mycroft * On success, sea->nexus is set.
734 1.1 mycroft * On failure, we must add the command
735 1.1 mycroft * back to the issue queue so we can
736 1.1 mycroft * keep trying.
737 1.1 mycroft */
738 1.1 mycroft
739 1.1 mycroft /*
740 1.1 mycroft * REQUEST_SENSE commands are issued
741 1.1 mycroft * without tagged queueing, even on
742 1.1 mycroft * SCSI-II devices because the
743 1.1 mycroft * contingent alligence condition
744 1.1 mycroft * exists for the entire unit.
745 1.1 mycroft */
746 1.1 mycroft
747 1.1 mycroft /*
748 1.1 mycroft * First check that if any device has
749 1.1 mycroft * tried a reconnect while we have done
750 1.1 mycroft * other things with interrupts
751 1.1 mycroft * disabled.
752 1.1 mycroft */
753 1.1 mycroft
754 1.1 mycroft if ((STATUS & (STAT_SEL | STAT_IO)) ==
755 1.1 mycroft (STAT_SEL | STAT_IO)) {
756 1.1 mycroft sea_reselect(sea);
757 1.1 mycroft break;
758 1.1 mycroft }
759 1.1 mycroft if (sea_select(sea, scb)) {
760 1.1 mycroft s = splbio();
761 1.3 mycroft TAILQ_INSERT_HEAD(&sea->ready_list,
762 1.1 mycroft scb, chain);
763 1.1 mycroft splx(s);
764 1.1 mycroft } else
765 1.1 mycroft break;
766 1.1 mycroft } /* if target/lun is not busy */
767 1.1 mycroft } /* for scb */
768 1.3 mycroft if (!sea->nexus) {
769 1.3 mycroft /* check for reselection phase */
770 1.3 mycroft if ((STATUS & (STAT_SEL | STAT_IO)) ==
771 1.3 mycroft (STAT_SEL | STAT_IO)) {
772 1.3 mycroft sea_reselect(sea);
773 1.3 mycroft }
774 1.3 mycroft }
775 1.3 mycroft } /* if (!sea->nexus) */
776 1.1 mycroft
777 1.1 mycroft splx(s);
778 1.3 mycroft if (sea->nexus) { /* we are connected. Do the task */
779 1.1 mycroft sea_information_transfer(sea);
780 1.1 mycroft done = 0;
781 1.1 mycroft } else
782 1.1 mycroft break;
783 1.1 mycroft } /* for instance */
784 1.1 mycroft
785 1.1 mycroft if (!done)
786 1.1 mycroft goto loop;
787 1.1 mycroft
788 1.1 mycroft main_running = 0;
789 1.1 mycroft }
790 1.1 mycroft
791 1.1 mycroft void
792 1.1 mycroft sea_free_scb(sea, scb, flags)
793 1.1 mycroft struct sea_softc *sea;
794 1.1 mycroft struct sea_scb *scb;
795 1.1 mycroft int flags;
796 1.1 mycroft {
797 1.1 mycroft int s;
798 1.1 mycroft
799 1.3 mycroft s = splbio();
800 1.1 mycroft
801 1.1 mycroft scb->flags = SCB_FREE;
802 1.3 mycroft TAILQ_INSERT_HEAD(&sea->free_list, scb, chain);
803 1.3 mycroft
804 1.1 mycroft /*
805 1.1 mycroft * If there were none, wake anybody waiting for one to come free,
806 1.1 mycroft * starting with queued entries.
807 1.1 mycroft */
808 1.1 mycroft if (!scb->chain.tqe_next)
809 1.3 mycroft wakeup((caddr_t)&sea->free_list);
810 1.1 mycroft
811 1.3 mycroft splx(s);
812 1.1 mycroft }
813 1.1 mycroft
814 1.1 mycroft void
815 1.1 mycroft sea_timeout(arg)
816 1.1 mycroft void *arg;
817 1.1 mycroft {
818 1.1 mycroft struct sea_scb *scb = arg;
819 1.23 bouyer struct scsipi_xfer *xs = scb->xs;
820 1.23 bouyer struct scsipi_link *sc_link = xs->sc_link;
821 1.3 mycroft struct sea_softc *sea = sc_link->adapter_softc;
822 1.3 mycroft int s;
823 1.1 mycroft
824 1.23 bouyer scsi_print_addr(sc_link);
825 1.21 christos printf("timed out");
826 1.1 mycroft
827 1.3 mycroft s = splbio();
828 1.3 mycroft
829 1.1 mycroft /*
830 1.1 mycroft * If it has been through before, then
831 1.1 mycroft * a previous abort has failed, don't
832 1.1 mycroft * try abort again
833 1.1 mycroft */
834 1.1 mycroft if (scb->flags & SCB_ABORTED) {
835 1.3 mycroft /* abort timed out */
836 1.21 christos printf(" AGAIN\n");
837 1.3 mycroft scb->xs->retries = 0;
838 1.1 mycroft scb->flags |= SCB_ABORTED;
839 1.1 mycroft sea_done(sea, scb);
840 1.1 mycroft } else {
841 1.3 mycroft /* abort the operation that has timed out */
842 1.21 christos printf("\n");
843 1.3 mycroft scb->flags |= SCB_ABORTED;
844 1.1 mycroft sea_abort(sea, scb);
845 1.3 mycroft /* 2 secs for the abort */
846 1.3 mycroft if ((xs->flags & SCSI_POLL) == 0)
847 1.3 mycroft timeout(sea_timeout, scb, 2 * hz);
848 1.1 mycroft }
849 1.3 mycroft
850 1.1 mycroft splx(s);
851 1.1 mycroft }
852 1.1 mycroft
853 1.1 mycroft void
854 1.1 mycroft sea_reselect(sea)
855 1.1 mycroft struct sea_softc *sea;
856 1.1 mycroft {
857 1.1 mycroft u_char target_mask;
858 1.1 mycroft int i;
859 1.1 mycroft u_char lun, phase;
860 1.1 mycroft u_char msg[3];
861 1.3 mycroft int len;
862 1.1 mycroft u_char *data;
863 1.1 mycroft struct sea_scb *scb;
864 1.1 mycroft int abort = 0;
865 1.1 mycroft
866 1.1 mycroft if (!((target_mask = STATUS) & STAT_SEL)) {
867 1.21 christos printf("%s: wrong state 0x%x\n", sea->sc_dev.dv_xname,
868 1.1 mycroft target_mask);
869 1.1 mycroft return;
870 1.1 mycroft }
871 1.1 mycroft
872 1.1 mycroft /* wait for a device to win the reselection phase */
873 1.1 mycroft /* signals this by asserting the I/O signal */
874 1.1 mycroft for (i = 10; i && (STATUS & (STAT_SEL | STAT_IO | STAT_BSY)) !=
875 1.1 mycroft (STAT_SEL | STAT_IO | 0); i--);
876 1.1 mycroft /* !! Check for timeout here */
877 1.1 mycroft /* the data bus contains original initiator id ORed with target id */
878 1.1 mycroft target_mask = DATA;
879 1.1 mycroft /* see that we really are the initiator */
880 1.1 mycroft if (!(target_mask & sea->our_id_mask)) {
881 1.21 christos printf("%s: polled reselection was not for me: 0x%x\n",
882 1.1 mycroft sea->sc_dev.dv_xname, target_mask);
883 1.1 mycroft return;
884 1.1 mycroft }
885 1.1 mycroft /* find target who won */
886 1.1 mycroft target_mask &= ~sea->our_id_mask;
887 1.1 mycroft /* host responds by asserting the BSY signal */
888 1.1 mycroft CONTROL = BASE_CMD | CMD_DRVR_ENABLE | CMD_BSY;
889 1.1 mycroft /* target should respond by deasserting the SEL signal */
890 1.1 mycroft for (i = 50000; i && (STATUS & STAT_SEL); i++);
891 1.1 mycroft /* remove the busy status */
892 1.1 mycroft CONTROL = BASE_CMD | CMD_DRVR_ENABLE;
893 1.1 mycroft /* we are connected. Now we wait for the MSGIN condition */
894 1.1 mycroft for (i = 50000; i && !(STATUS & STAT_REQ); i--);
895 1.1 mycroft /* !! Add timeout check here */
896 1.1 mycroft /* hope we get an IDENTIFY message */
897 1.1 mycroft len = 3;
898 1.1 mycroft data = msg;
899 1.3 mycroft phase = PH_MSGIN;
900 1.1 mycroft sea_transfer_pio(sea, &phase, &len, &data);
901 1.1 mycroft
902 1.3 mycroft if (MSG_ISIDENTIFY(msg[0])) {
903 1.21 christos printf("%s: expecting IDENTIFY message, got 0x%x\n",
904 1.1 mycroft sea->sc_dev.dv_xname, msg[0]);
905 1.1 mycroft abort = 1;
906 1.16 christos scb = NULL;
907 1.1 mycroft } else {
908 1.1 mycroft lun = msg[0] & 0x07;
909 1.1 mycroft
910 1.1 mycroft /*
911 1.1 mycroft * Find the command corresponding to the I_T_L or I_T_L_Q nexus
912 1.1 mycroft * we just reestablished, and remove it from the disconnected
913 1.1 mycroft * queue.
914 1.1 mycroft */
915 1.3 mycroft for (scb = sea->nexus_list.tqh_first; scb;
916 1.1 mycroft scb = scb->chain.tqe_next)
917 1.23 bouyer if (target_mask == (1 << scb->xs->sc_link->scsipi_scsi.target) &&
918 1.23 bouyer lun == scb->xs->sc_link->scsipi_scsi.lun) {
919 1.3 mycroft TAILQ_REMOVE(&sea->nexus_list, scb,
920 1.1 mycroft chain);
921 1.1 mycroft break;
922 1.1 mycroft }
923 1.1 mycroft if (!scb) {
924 1.21 christos printf("%s: target %02x lun %d not disconnected\n",
925 1.1 mycroft sea->sc_dev.dv_xname, target_mask, lun);
926 1.1 mycroft /*
927 1.1 mycroft * Since we have an established nexus that we can't do
928 1.1 mycroft * anything with, we must abort it.
929 1.1 mycroft */
930 1.1 mycroft abort = 1;
931 1.1 mycroft }
932 1.1 mycroft }
933 1.1 mycroft
934 1.1 mycroft if (abort) {
935 1.1 mycroft msg[0] = MSG_ABORT;
936 1.1 mycroft len = 1;
937 1.1 mycroft data = msg;
938 1.3 mycroft phase = PH_MSGOUT;
939 1.1 mycroft CONTROL = BASE_CMD | CMD_ATTN;
940 1.1 mycroft sea_transfer_pio(sea, &phase, &len, &data);
941 1.1 mycroft } else
942 1.3 mycroft sea->nexus = scb;
943 1.1 mycroft
944 1.1 mycroft return;
945 1.1 mycroft }
946 1.1 mycroft
947 1.1 mycroft /*
948 1.1 mycroft * Transfer data in given phase using polled I/O.
949 1.1 mycroft */
950 1.1 mycroft int
951 1.1 mycroft sea_transfer_pio(sea, phase, count, data)
952 1.1 mycroft struct sea_softc *sea;
953 1.1 mycroft u_char *phase;
954 1.3 mycroft int *count;
955 1.1 mycroft u_char **data;
956 1.1 mycroft {
957 1.1 mycroft register u_char p = *phase, tmp;
958 1.1 mycroft register int c = *count;
959 1.1 mycroft register u_char *d = *data;
960 1.1 mycroft int timeout;
961 1.1 mycroft
962 1.1 mycroft do {
963 1.1 mycroft /*
964 1.1 mycroft * Wait for assertion of REQ, after which the phase bits will
965 1.1 mycroft * be valid.
966 1.1 mycroft */
967 1.3 mycroft for (timeout = 0; timeout < 50000; timeout++)
968 1.1 mycroft if ((tmp = STATUS) & STAT_REQ)
969 1.1 mycroft break;
970 1.1 mycroft if (!(tmp & STAT_REQ)) {
971 1.21 christos printf("%s: timeout waiting for STAT_REQ\n",
972 1.1 mycroft sea->sc_dev.dv_xname);
973 1.1 mycroft break;
974 1.1 mycroft }
975 1.1 mycroft
976 1.1 mycroft /*
977 1.1 mycroft * Check for phase mismatch. Reached if the target decides
978 1.1 mycroft * that it has finished the transfer.
979 1.1 mycroft */
980 1.3 mycroft if (sea->type == FDOMAIN840)
981 1.3 mycroft tmp = ((tmp & 0x08) >> 2) |
982 1.3 mycroft ((tmp & 0x02) << 2) |
983 1.3 mycroft (tmp & 0xf5);
984 1.3 mycroft if ((tmp & PH_MASK) != p)
985 1.1 mycroft break;
986 1.1 mycroft
987 1.1 mycroft /* Do actual transfer from SCSI bus to/from memory. */
988 1.1 mycroft if (!(p & STAT_IO))
989 1.1 mycroft DATA = *d;
990 1.1 mycroft else
991 1.1 mycroft *d = DATA;
992 1.1 mycroft ++d;
993 1.1 mycroft
994 1.1 mycroft /*
995 1.1 mycroft * The SCSI standard suggests that in MSGOUT phase, the
996 1.1 mycroft * initiator should drop ATN on the last byte of the message
997 1.1 mycroft * phase after REQ has been asserted for the handshake but
998 1.1 mycroft * before the initiator raises ACK.
999 1.1 mycroft * Don't know how to accomplish this on the ST01/02.
1000 1.1 mycroft */
1001 1.1 mycroft
1002 1.1 mycroft #if 0
1003 1.1 mycroft /*
1004 1.1 mycroft * XXX
1005 1.1 mycroft * The st01 code doesn't wait for STAT_REQ to be deasserted.
1006 1.1 mycroft * Is this ok?
1007 1.1 mycroft */
1008 1.1 mycroft for (timeout = 0; timeout < 200000L; timeout++)
1009 1.1 mycroft if (!(STATUS & STAT_REQ))
1010 1.1 mycroft break;
1011 1.1 mycroft if (STATUS & STAT_REQ)
1012 1.21 christos printf("%s: timeout on wait for !STAT_REQ",
1013 1.1 mycroft sea->sc_dev.dv_xname);
1014 1.1 mycroft #endif
1015 1.1 mycroft } while (--c);
1016 1.1 mycroft
1017 1.1 mycroft *count = c;
1018 1.1 mycroft *data = d;
1019 1.1 mycroft tmp = STATUS;
1020 1.1 mycroft if (tmp & STAT_REQ)
1021 1.3 mycroft *phase = tmp & PH_MASK;
1022 1.1 mycroft else
1023 1.3 mycroft *phase = PH_INVALID;
1024 1.1 mycroft
1025 1.1 mycroft if (c && (*phase != p))
1026 1.1 mycroft return -1;
1027 1.1 mycroft return 0;
1028 1.1 mycroft }
1029 1.1 mycroft
1030 1.1 mycroft /*
1031 1.1 mycroft * Establish I_T_L or I_T_L_Q nexus for new or existing command including
1032 1.1 mycroft * ARBITRATION, SELECTION, and initial message out for IDENTIFY and queue
1033 1.1 mycroft * messages. Return -1 if selection could not execute for some reason, 0 if
1034 1.1 mycroft * selection succeded or failed because the target did not respond.
1035 1.1 mycroft */
1036 1.1 mycroft int
1037 1.1 mycroft sea_select(sea, scb)
1038 1.1 mycroft struct sea_softc *sea;
1039 1.1 mycroft struct sea_scb *scb;
1040 1.1 mycroft {
1041 1.1 mycroft u_char msg[3], phase;
1042 1.1 mycroft u_char *data;
1043 1.3 mycroft int len;
1044 1.1 mycroft int timeout;
1045 1.1 mycroft
1046 1.1 mycroft CONTROL = BASE_CMD;
1047 1.1 mycroft DATA = sea->our_id_mask;
1048 1.1 mycroft CONTROL = (BASE_CMD & ~CMD_INTR) | CMD_START_ARB;
1049 1.1 mycroft
1050 1.1 mycroft /* wait for arbitration to complete */
1051 1.1 mycroft for (timeout = 0; timeout < 3000000L; timeout++)
1052 1.1 mycroft if (STATUS & STAT_ARB_CMPL)
1053 1.1 mycroft break;
1054 1.1 mycroft if (!(STATUS & STAT_ARB_CMPL)) {
1055 1.1 mycroft if (STATUS & STAT_SEL) {
1056 1.21 christos printf("%s: arbitration lost\n", sea->sc_dev.dv_xname);
1057 1.1 mycroft scb->flags |= SCB_ERROR;
1058 1.1 mycroft } else {
1059 1.21 christos printf("%s: arbitration timeout\n",
1060 1.1 mycroft sea->sc_dev.dv_xname);
1061 1.1 mycroft scb->flags |= SCB_TIMEOUT;
1062 1.1 mycroft }
1063 1.1 mycroft CONTROL = BASE_CMD;
1064 1.1 mycroft return -1;
1065 1.1 mycroft }
1066 1.1 mycroft
1067 1.1 mycroft delay(2);
1068 1.23 bouyer DATA = (u_char)((1 << scb->xs->sc_link->scsipi_scsi.target) |
1069 1.23 bouyer sea->our_id_mask);
1070 1.1 mycroft CONTROL =
1071 1.1 mycroft #ifdef SEA_NOMSGS
1072 1.1 mycroft (BASE_CMD & ~CMD_INTR) | CMD_DRVR_ENABLE | CMD_SEL;
1073 1.1 mycroft #else
1074 1.1 mycroft (BASE_CMD & ~CMD_INTR) | CMD_DRVR_ENABLE | CMD_SEL | CMD_ATTN;
1075 1.1 mycroft #endif
1076 1.1 mycroft delay(1);
1077 1.1 mycroft
1078 1.1 mycroft /* wait for a bsy from target */
1079 1.1 mycroft for (timeout = 0; timeout < 2000000L; timeout++)
1080 1.1 mycroft if (STATUS & STAT_BSY)
1081 1.1 mycroft break;
1082 1.1 mycroft if (!(STATUS & STAT_BSY)) {
1083 1.1 mycroft /* should return some error to the higher level driver */
1084 1.1 mycroft CONTROL = BASE_CMD;
1085 1.1 mycroft scb->flags |= SCB_TIMEOUT;
1086 1.1 mycroft return 0;
1087 1.1 mycroft }
1088 1.1 mycroft
1089 1.1 mycroft /* Try to make the target to take a message from us */
1090 1.1 mycroft #ifdef SEA_NOMSGS
1091 1.1 mycroft CONTROL = (BASE_CMD & ~CMD_INTR) | CMD_DRVR_ENABLE;
1092 1.1 mycroft #else
1093 1.1 mycroft CONTROL = (BASE_CMD & ~CMD_INTR) | CMD_DRVR_ENABLE | CMD_ATTN;
1094 1.1 mycroft #endif
1095 1.1 mycroft delay(1);
1096 1.1 mycroft
1097 1.1 mycroft /* should start a msg_out phase */
1098 1.1 mycroft for (timeout = 0; timeout < 2000000L; timeout++)
1099 1.1 mycroft if (STATUS & STAT_REQ)
1100 1.1 mycroft break;
1101 1.3 mycroft /* Remove ATN. */
1102 1.1 mycroft CONTROL = BASE_CMD | CMD_DRVR_ENABLE;
1103 1.1 mycroft if (!(STATUS & STAT_REQ)) {
1104 1.1 mycroft /*
1105 1.1 mycroft * This should not be taken as an error, but more like an
1106 1.1 mycroft * unsupported feature! Should set a flag indicating that the
1107 1.1 mycroft * target don't support messages, and continue without failure.
1108 1.1 mycroft * (THIS IS NOT AN ERROR!)
1109 1.1 mycroft */
1110 1.1 mycroft } else {
1111 1.23 bouyer msg[0] = MSG_IDENTIFY(scb->xs->sc_link->scsipi_scsi.lun, 1);
1112 1.1 mycroft len = 1;
1113 1.1 mycroft data = msg;
1114 1.3 mycroft phase = PH_MSGOUT;
1115 1.1 mycroft /* Should do test on result of sea_transfer_pio(). */
1116 1.1 mycroft sea_transfer_pio(sea, &phase, &len, &data);
1117 1.1 mycroft }
1118 1.1 mycroft if (!(STATUS & STAT_BSY))
1119 1.21 christos printf("%s: after successful arbitrate: no STAT_BSY!\n",
1120 1.1 mycroft sea->sc_dev.dv_xname);
1121 1.1 mycroft
1122 1.3 mycroft sea->nexus = scb;
1123 1.23 bouyer sea->busy[scb->xs->sc_link->scsipi_scsi.target] |=
1124 1.23 bouyer 1 << scb->xs->sc_link->scsipi_scsi.lun;
1125 1.1 mycroft /* This assignment should depend on possibility to send a message to target. */
1126 1.1 mycroft CONTROL = BASE_CMD | CMD_DRVR_ENABLE;
1127 1.1 mycroft /* XXX Reset pointer in command? */
1128 1.1 mycroft return 0;
1129 1.1 mycroft }
1130 1.1 mycroft
1131 1.1 mycroft /*
1132 1.1 mycroft * Send an abort to the target. Return 1 success, 0 on failure.
1133 1.1 mycroft */
1134 1.1 mycroft int
1135 1.1 mycroft sea_abort(sea, scb)
1136 1.1 mycroft struct sea_softc *sea;
1137 1.1 mycroft struct sea_scb *scb;
1138 1.1 mycroft {
1139 1.1 mycroft struct sea_scb *tmp;
1140 1.1 mycroft u_char msg, phase, *msgptr;
1141 1.3 mycroft int len;
1142 1.1 mycroft
1143 1.1 mycroft /*
1144 1.1 mycroft * If the command hasn't been issued yet, we simply remove it from the
1145 1.1 mycroft * issue queue
1146 1.1 mycroft * XXX Could avoid this loop.
1147 1.1 mycroft */
1148 1.3 mycroft for (tmp = sea->ready_list.tqh_first; tmp; tmp = tmp->chain.tqe_next)
1149 1.1 mycroft if (scb == tmp) {
1150 1.3 mycroft TAILQ_REMOVE(&sea->ready_list, scb, chain);
1151 1.1 mycroft /* XXX Set some type of error result for operation. */
1152 1.1 mycroft return 1;
1153 1.1 mycroft }
1154 1.1 mycroft
1155 1.1 mycroft /*
1156 1.1 mycroft * If any commands are connected, we're going to fail the abort and let
1157 1.1 mycroft * the high level SCSI driver retry at a later time or issue a reset.
1158 1.1 mycroft */
1159 1.3 mycroft if (sea->nexus)
1160 1.1 mycroft return 0;
1161 1.1 mycroft
1162 1.1 mycroft /*
1163 1.1 mycroft * If the command is currently disconnected from the bus, and there are
1164 1.1 mycroft * no connected commands, we reconnect the I_T_L or I_T_L_Q nexus
1165 1.1 mycroft * associated with it, go into message out, and send an abort message.
1166 1.1 mycroft */
1167 1.3 mycroft for (tmp = sea->nexus_list.tqh_first; tmp;
1168 1.1 mycroft tmp = tmp->chain.tqe_next)
1169 1.1 mycroft if (scb == tmp) {
1170 1.1 mycroft if (sea_select(sea, scb))
1171 1.1 mycroft return 0;
1172 1.1 mycroft
1173 1.1 mycroft msg = MSG_ABORT;
1174 1.1 mycroft msgptr = &msg;
1175 1.1 mycroft len = 1;
1176 1.3 mycroft phase = PH_MSGOUT;
1177 1.1 mycroft CONTROL = BASE_CMD | CMD_ATTN;
1178 1.1 mycroft sea_transfer_pio(sea, &phase, &len, &msgptr);
1179 1.1 mycroft
1180 1.3 mycroft for (tmp = sea->nexus_list.tqh_first; tmp;
1181 1.1 mycroft tmp = tmp->chain.tqe_next)
1182 1.1 mycroft if (scb == tmp) {
1183 1.3 mycroft TAILQ_REMOVE(&sea->nexus_list,
1184 1.1 mycroft scb, chain);
1185 1.1 mycroft /* XXX Set some type of error result
1186 1.1 mycroft for the operation. */
1187 1.1 mycroft return 1;
1188 1.1 mycroft }
1189 1.1 mycroft }
1190 1.1 mycroft
1191 1.1 mycroft /* Command not found in any queue; race condition? */
1192 1.1 mycroft return 1;
1193 1.1 mycroft }
1194 1.1 mycroft
1195 1.1 mycroft void
1196 1.1 mycroft sea_done(sea, scb)
1197 1.1 mycroft struct sea_softc *sea;
1198 1.1 mycroft struct sea_scb *scb;
1199 1.1 mycroft {
1200 1.23 bouyer struct scsipi_xfer *xs = scb->xs;
1201 1.1 mycroft
1202 1.1 mycroft untimeout(sea_timeout, scb);
1203 1.1 mycroft
1204 1.1 mycroft xs->resid = scb->datalen;
1205 1.1 mycroft
1206 1.3 mycroft /* XXXX need to get status */
1207 1.3 mycroft if (scb->flags == SCB_ACTIVE) {
1208 1.1 mycroft xs->resid = 0;
1209 1.1 mycroft } else {
1210 1.3 mycroft if (scb->flags & (SCB_TIMEOUT | SCB_ABORTED))
1211 1.3 mycroft xs->error = XS_TIMEOUT;
1212 1.3 mycroft if (scb->flags & SCB_ERROR)
1213 1.1 mycroft xs->error = XS_DRIVER_STUFFUP;
1214 1.1 mycroft }
1215 1.1 mycroft xs->flags |= ITSDONE;
1216 1.1 mycroft sea_free_scb(sea, scb, xs->flags);
1217 1.23 bouyer scsipi_done(xs);
1218 1.1 mycroft }
1219 1.1 mycroft
1220 1.1 mycroft /*
1221 1.1 mycroft * Wait for completion of command in polled mode.
1222 1.1 mycroft */
1223 1.1 mycroft int
1224 1.3 mycroft sea_poll(sea, xs, count)
1225 1.1 mycroft struct sea_softc *sea;
1226 1.23 bouyer struct scsipi_xfer *xs;
1227 1.3 mycroft int count;
1228 1.1 mycroft {
1229 1.1 mycroft int s;
1230 1.1 mycroft
1231 1.1 mycroft while (count) {
1232 1.1 mycroft /* try to do something */
1233 1.1 mycroft s = splbio();
1234 1.1 mycroft if (!main_running)
1235 1.1 mycroft sea_main();
1236 1.1 mycroft splx(s);
1237 1.1 mycroft if (xs->flags & ITSDONE)
1238 1.3 mycroft return 0;
1239 1.3 mycroft delay(1000);
1240 1.1 mycroft count--;
1241 1.1 mycroft }
1242 1.3 mycroft return 1;
1243 1.1 mycroft }
1244 1.1 mycroft
1245 1.1 mycroft /*
1246 1.1 mycroft * Do the transfer. We know we are connected. Update the flags, and call
1247 1.1 mycroft * sea_done() when task accomplished. Dialog controlled by the target.
1248 1.1 mycroft */
1249 1.1 mycroft void
1250 1.1 mycroft sea_information_transfer(sea)
1251 1.1 mycroft struct sea_softc *sea;
1252 1.1 mycroft {
1253 1.1 mycroft int timeout;
1254 1.3 mycroft u_char msgout = MSG_NOOP;
1255 1.3 mycroft int len;
1256 1.1 mycroft int s;
1257 1.1 mycroft u_char *data;
1258 1.3 mycroft u_char phase, tmp, old_phase = PH_INVALID;
1259 1.3 mycroft struct sea_scb *scb = sea->nexus;
1260 1.1 mycroft int loop;
1261 1.1 mycroft
1262 1.1 mycroft for (timeout = 0; timeout < 10000000L; timeout++) {
1263 1.1 mycroft tmp = STATUS;
1264 1.3 mycroft if (tmp & STAT_PARITY)
1265 1.21 christos printf("%s: parity error detected\n",
1266 1.3 mycroft sea->sc_dev.dv_xname);
1267 1.1 mycroft if (!(tmp & STAT_BSY)) {
1268 1.1 mycroft for (loop = 0; loop < 20; loop++)
1269 1.1 mycroft if ((tmp = STATUS) & STAT_BSY)
1270 1.1 mycroft break;
1271 1.1 mycroft if (!(tmp & STAT_BSY)) {
1272 1.21 christos printf("%s: !STAT_BSY unit in data transfer!\n",
1273 1.1 mycroft sea->sc_dev.dv_xname);
1274 1.1 mycroft s = splbio();
1275 1.3 mycroft sea->nexus = NULL;
1276 1.1 mycroft scb->flags = SCB_ERROR;
1277 1.1 mycroft splx(s);
1278 1.1 mycroft sea_done(sea, scb);
1279 1.1 mycroft return;
1280 1.1 mycroft }
1281 1.1 mycroft }
1282 1.1 mycroft
1283 1.1 mycroft /* we only have a valid SCSI phase when REQ is asserted */
1284 1.1 mycroft if (!(tmp & STAT_REQ))
1285 1.1 mycroft continue;
1286 1.1 mycroft
1287 1.3 mycroft if (sea->type == FDOMAIN840)
1288 1.3 mycroft tmp = ((tmp & 0x08) >> 2) |
1289 1.3 mycroft ((tmp & 0x02) << 2) |
1290 1.3 mycroft (tmp & 0xf5);
1291 1.3 mycroft phase = tmp & PH_MASK;
1292 1.1 mycroft if (phase != old_phase)
1293 1.1 mycroft old_phase = phase;
1294 1.1 mycroft
1295 1.1 mycroft switch (phase) {
1296 1.3 mycroft case PH_DATAOUT:
1297 1.1 mycroft #ifdef SEA_NODATAOUT
1298 1.21 christos printf("%s: SEA_NODATAOUT set, attempted DATAOUT aborted\n",
1299 1.1 mycroft sea->sc_dev.dv_xname);
1300 1.1 mycroft msgout = MSG_ABORT;
1301 1.1 mycroft CONTROL = BASE_CMD | CMD_ATTN;
1302 1.1 mycroft break;
1303 1.1 mycroft #endif
1304 1.3 mycroft case PH_DATAIN:
1305 1.1 mycroft if (!scb->data)
1306 1.21 christos printf("no data address!\n");
1307 1.1 mycroft #ifdef SEA_BLINDTRANSFER
1308 1.1 mycroft if (scb->datalen && !(scb->datalen % BLOCK_SIZE)) {
1309 1.1 mycroft while (scb->datalen) {
1310 1.3 mycroft for (loop = 0; loop < 50000; loop++)
1311 1.1 mycroft if ((tmp = STATUS) & STAT_REQ)
1312 1.1 mycroft break;
1313 1.1 mycroft if (!(tmp & STAT_REQ)) {
1314 1.21 christos printf("%s: timeout waiting for STAT_REQ\n",
1315 1.1 mycroft sea->sc_dev.dv_xname);
1316 1.1 mycroft /* XXX Do something? */
1317 1.1 mycroft }
1318 1.3 mycroft if (sea->type == FDOMAIN840)
1319 1.3 mycroft tmp = ((tmp & 0x08) >> 2) |
1320 1.3 mycroft ((tmp & 0x02) << 2) |
1321 1.3 mycroft (tmp & 0xf5);
1322 1.3 mycroft if ((tmp & PH_MASK) != phase)
1323 1.1 mycroft break;
1324 1.1 mycroft if (!(phase & STAT_IO)) {
1325 1.1 mycroft #ifdef SEA_ASSEMBLER
1326 1.1 mycroft asm("shr $2, %%ecx\n\t\
1327 1.1 mycroft cld\n\t\
1328 1.1 mycroft rep\n\t\
1329 1.1 mycroft movsl" :
1330 1.1 mycroft "=S" (scb->data) :
1331 1.1 mycroft "0" (scb->data),
1332 1.1 mycroft "D" (sea->maddr_dr),
1333 1.1 mycroft "c" (BLOCK_SIZE) :
1334 1.1 mycroft "%ecx", "%edi");
1335 1.1 mycroft #else
1336 1.1 mycroft for (count = 0;
1337 1.1 mycroft count < BLOCK_SIZE;
1338 1.1 mycroft count++)
1339 1.1 mycroft DATA = *(scb->data++);
1340 1.1 mycroft #endif
1341 1.1 mycroft } else {
1342 1.1 mycroft #ifdef SEA_ASSEMBLER
1343 1.1 mycroft asm("shr $2, %%ecx\n\t\
1344 1.1 mycroft cld\n\t\
1345 1.1 mycroft rep\n\t\
1346 1.1 mycroft movsl" :
1347 1.1 mycroft "=D" (scb->data) :
1348 1.1 mycroft "S" (sea->maddr_dr),
1349 1.1 mycroft "0" (scb->data),
1350 1.1 mycroft "c" (BLOCK_SIZE) :
1351 1.1 mycroft "%ecx", "%esi");
1352 1.1 mycroft #else
1353 1.1 mycroft for (count = 0;
1354 1.1 mycroft count < BLOCK_SIZE;
1355 1.1 mycroft count++)
1356 1.1 mycroft *(scb->data++) = DATA;
1357 1.1 mycroft #endif
1358 1.1 mycroft }
1359 1.1 mycroft scb->datalen -= BLOCK_SIZE;
1360 1.1 mycroft }
1361 1.1 mycroft }
1362 1.1 mycroft #endif
1363 1.1 mycroft if (scb->datalen)
1364 1.1 mycroft sea_transfer_pio(sea, &phase, &scb->datalen,
1365 1.1 mycroft &scb->data);
1366 1.1 mycroft break;
1367 1.3 mycroft case PH_MSGIN:
1368 1.1 mycroft /* Multibyte messages should not be present here. */
1369 1.1 mycroft len = 1;
1370 1.1 mycroft data = &tmp;
1371 1.1 mycroft sea_transfer_pio(sea, &phase, &len, &data);
1372 1.1 mycroft /* scb->MessageIn = tmp; */
1373 1.1 mycroft
1374 1.1 mycroft switch (tmp) {
1375 1.1 mycroft case MSG_ABORT:
1376 1.1 mycroft scb->flags = SCB_ABORTED;
1377 1.21 christos printf("sea: command aborted by target\n");
1378 1.1 mycroft CONTROL = BASE_CMD;
1379 1.1 mycroft sea_done(sea, scb);
1380 1.1 mycroft return;
1381 1.3 mycroft case MSG_CMDCOMPLETE:
1382 1.1 mycroft s = splbio();
1383 1.3 mycroft sea->nexus = NULL;
1384 1.1 mycroft splx(s);
1385 1.23 bouyer sea->busy[scb->xs->sc_link->scsipi_scsi.target] &=
1386 1.23 bouyer ~(1 << scb->xs->sc_link->scsipi_scsi.lun);
1387 1.1 mycroft CONTROL = BASE_CMD;
1388 1.1 mycroft sea_done(sea, scb);
1389 1.1 mycroft return;
1390 1.1 mycroft case MSG_MESSAGE_REJECT:
1391 1.21 christos printf("%s: message_reject recieved\n",
1392 1.1 mycroft sea->sc_dev.dv_xname);
1393 1.1 mycroft break;
1394 1.1 mycroft case MSG_DISCONNECT:
1395 1.1 mycroft s = splbio();
1396 1.3 mycroft TAILQ_INSERT_TAIL(&sea->nexus_list,
1397 1.1 mycroft scb, chain);
1398 1.3 mycroft sea->nexus = NULL;
1399 1.1 mycroft CONTROL = BASE_CMD;
1400 1.1 mycroft splx(s);
1401 1.1 mycroft return;
1402 1.3 mycroft case MSG_SAVEDATAPOINTER:
1403 1.3 mycroft case MSG_RESTOREPOINTERS:
1404 1.1 mycroft /* save/restore of pointers are ignored */
1405 1.1 mycroft break;
1406 1.1 mycroft default:
1407 1.1 mycroft /*
1408 1.1 mycroft * This should be handled in the pio data
1409 1.1 mycroft * transfer phase, as the ATN should be raised
1410 1.1 mycroft * before ACK goes false when rejecting a
1411 1.1 mycroft * message.
1412 1.1 mycroft */
1413 1.21 christos printf("%s: unknown message in: %x\n",
1414 1.1 mycroft sea->sc_dev.dv_xname, tmp);
1415 1.1 mycroft break;
1416 1.1 mycroft } /* switch (tmp) */
1417 1.1 mycroft break;
1418 1.3 mycroft case PH_MSGOUT:
1419 1.1 mycroft len = 1;
1420 1.1 mycroft data = &msgout;
1421 1.1 mycroft /* sea->last_message = msgout; */
1422 1.1 mycroft sea_transfer_pio(sea, &phase, &len, &data);
1423 1.1 mycroft if (msgout == MSG_ABORT) {
1424 1.21 christos printf("%s: sent message abort to target\n",
1425 1.1 mycroft sea->sc_dev.dv_xname);
1426 1.1 mycroft s = splbio();
1427 1.23 bouyer sea->busy[scb->xs->sc_link->scsipi_scsi.target] &=
1428 1.23 bouyer ~(1 << scb->xs->sc_link->scsipi_scsi.lun);
1429 1.3 mycroft sea->nexus = NULL;
1430 1.1 mycroft scb->flags = SCB_ABORTED;
1431 1.1 mycroft splx(s);
1432 1.1 mycroft /* enable interrupt from scsi */
1433 1.1 mycroft sea_done(sea, scb);
1434 1.1 mycroft return;
1435 1.1 mycroft }
1436 1.3 mycroft msgout = MSG_NOOP;
1437 1.1 mycroft break;
1438 1.3 mycroft case PH_CMD:
1439 1.3 mycroft len = scb->xs->cmdlen;
1440 1.3 mycroft data = (char *) scb->xs->cmd;
1441 1.1 mycroft sea_transfer_pio(sea, &phase, &len, &data);
1442 1.1 mycroft break;
1443 1.3 mycroft case PH_STAT:
1444 1.1 mycroft len = 1;
1445 1.1 mycroft data = &tmp;
1446 1.1 mycroft sea_transfer_pio(sea, &phase, &len, &data);
1447 1.3 mycroft scb->xs->status = tmp;
1448 1.1 mycroft break;
1449 1.1 mycroft default:
1450 1.21 christos printf("sea: unknown phase\n");
1451 1.1 mycroft } /* switch (phase) */
1452 1.1 mycroft } /* for (...) */
1453 1.1 mycroft
1454 1.1 mycroft /* If we get here we have got a timeout! */
1455 1.21 christos printf("%s: timeout in data transfer\n", sea->sc_dev.dv_xname);
1456 1.1 mycroft scb->flags = SCB_TIMEOUT;
1457 1.1 mycroft /* XXX Should I clear scsi-bus state? */
1458 1.1 mycroft sea_done(sea, scb);
1459 1.1 mycroft }
1460