btl.c revision 1.3 1 1.3 soda /* $NetBSD: btl.c,v 1.3 2000/02/22 11:26:01 soda Exp $ */
2 1.1 soda
3 1.1 soda #undef BTDIAG
4 1.1 soda #define integrate
5 1.1 soda
6 1.2 soda #define notyet /* XXX - #undef this, if this driver does actually work */
7 1.2 soda
8 1.1 soda /*
9 1.1 soda * Copyright (c) 1994, 1996 Charles M. Hannum. All rights reserved.
10 1.1 soda *
11 1.1 soda * Redistribution and use in source and binary forms, with or without
12 1.1 soda * modification, are permitted provided that the following conditions
13 1.1 soda * are met:
14 1.1 soda * 1. Redistributions of source code must retain the above copyright
15 1.1 soda * notice, this list of conditions and the following disclaimer.
16 1.1 soda * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 soda * notice, this list of conditions and the following disclaimer in the
18 1.1 soda * documentation and/or other materials provided with the distribution.
19 1.1 soda * 3. All advertising materials mentioning features or use of this software
20 1.1 soda * must display the following acknowledgement:
21 1.1 soda * This product includes software developed by Charles M. Hannum.
22 1.1 soda * 4. The name of the author may not be used to endorse or promote products
23 1.1 soda * derived from this software without specific prior written permission.
24 1.1 soda *
25 1.1 soda * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
26 1.1 soda * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
27 1.1 soda * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
28 1.1 soda * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
29 1.1 soda * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
30 1.1 soda * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
31 1.1 soda * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
32 1.1 soda * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
33 1.1 soda * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
34 1.1 soda * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
35 1.1 soda */
36 1.1 soda
37 1.1 soda /*
38 1.1 soda * Originally written by Julian Elischer (julian (at) tfs.com)
39 1.1 soda * for TRW Financial Systems for use under the MACH(2.5) operating system.
40 1.1 soda *
41 1.1 soda * TRW Financial Systems, in accordance with their agreement with Carnegie
42 1.1 soda * Mellon University, makes this software available to CMU to distribute
43 1.1 soda * or use in any manner that they see fit as long as this message is kept with
44 1.1 soda * the software. For this reason TFS also grants any other persons or
45 1.1 soda * organisations permission to use or modify this software.
46 1.1 soda *
47 1.1 soda * TFS supplies this software to be publicly redistributed
48 1.1 soda * on the understanding that TFS is not responsible for the correct
49 1.1 soda * functioning of this software in any circumstances.
50 1.1 soda */
51 1.1 soda
52 1.1 soda #include <sys/types.h>
53 1.1 soda #include <sys/param.h>
54 1.1 soda #include <sys/systm.h>
55 1.1 soda #include <sys/kernel.h>
56 1.1 soda #include <sys/errno.h>
57 1.1 soda #include <sys/malloc.h>
58 1.1 soda #include <sys/ioctl.h>
59 1.1 soda #include <sys/device.h>
60 1.1 soda #include <sys/buf.h>
61 1.1 soda #include <sys/proc.h>
62 1.1 soda #include <sys/user.h>
63 1.1 soda
64 1.1 soda #include <machine/intr.h>
65 1.1 soda #include <machine/pio.h>
66 1.1 soda
67 1.1 soda #include <arc/dti/desktech.h>
68 1.1 soda
69 1.2 soda #include <dev/scsipi/scsi_all.h>
70 1.2 soda #include <dev/scsipi/scsipi_all.h>
71 1.2 soda #include <dev/scsipi/scsiconf.h>
72 1.1 soda
73 1.1 soda #include <dev/isa/isavar.h>
74 1.1 soda #include <arc/dti/btlreg.h>
75 1.1 soda #include <arc/arc/arctype.h> /* XXX for cpu types */
76 1.1 soda
77 1.1 soda #ifndef DDB
78 1.1 soda #define Debugger() panic("should call debugger here (bt742a.c)")
79 1.1 soda #endif /* ! DDB */
80 1.1 soda
81 1.1 soda /*
82 1.1 soda * Mail box defs etc.
83 1.1 soda * these could be bigger but we need the bt_softc to fit on a single page..
84 1.1 soda */
85 1.1 soda #define BT_MBX_SIZE 32 /* mail box size (MAX 255 MBxs) */
86 1.1 soda /* don't need that many really */
87 1.1 soda #define BT_CCB_MAX 32 /* store up to 32 CCBs at one time */
88 1.1 soda #define CCB_HASH_SIZE 32 /* hash table size for phystokv */
89 1.1 soda #define CCB_HASH_SHIFT 9
90 1.1 soda #define CCB_HASH(x) ((((long)(x))>>CCB_HASH_SHIFT) & (CCB_HASH_SIZE - 1))
91 1.1 soda
92 1.1 soda #define bt_nextmbx(wmb, mbx, mbio) \
93 1.1 soda if ((wmb) == &(mbx)->mbio[BT_MBX_SIZE - 1]) \
94 1.1 soda (wmb) = &(mbx)->mbio[0]; \
95 1.1 soda else \
96 1.1 soda (wmb)++;
97 1.1 soda
98 1.1 soda struct bt_mbx {
99 1.1 soda struct bt_mbx_out mbo[BT_MBX_SIZE];
100 1.1 soda struct bt_mbx_in mbi[BT_MBX_SIZE];
101 1.1 soda struct bt_mbx_out *cmbo; /* Collection Mail Box out */
102 1.1 soda struct bt_mbx_out *tmbo; /* Target Mail Box out */
103 1.1 soda struct bt_mbx_in *tmbi; /* Target Mail Box in */
104 1.1 soda };
105 1.1 soda
106 1.1 soda #define KVTOPHYS(x) ((cputype == DESKSTATION_TYNE) ? \
107 1.1 soda (((int)(x) & 0x7fffff) | 0x800000) : ((int)(x)))
108 1.1 soda #define PHYSTOKV(x) ((cputype == DESKSTATION_TYNE) ? \
109 1.1 soda (((int)(x) & 0x7fffff) | TYNE_V_BOUNCE) : ((int)(x)))
110 1.1 soda
111 1.1 soda struct bt_softc {
112 1.1 soda struct device sc_dev;
113 1.1 soda void *sc_ih;
114 1.1 soda
115 1.1 soda int sc_iobase;
116 1.1 soda int sc_irq, sc_drq;
117 1.1 soda
118 1.1 soda char sc_model[7],
119 1.1 soda sc_firmware[6];
120 1.1 soda
121 1.1 soda struct bt_mbx *sc_mbx; /* all our mailboxes */
122 1.1 soda #define wmbx (sc->sc_mbx)
123 1.1 soda struct bt_ccb *sc_ccbhash[CCB_HASH_SIZE];
124 1.1 soda TAILQ_HEAD(, bt_ccb) sc_free_ccb, sc_waiting_ccb;
125 1.1 soda TAILQ_HEAD(, bt_buf) sc_free_buf;
126 1.1 soda int sc_numccbs, sc_mbofull;
127 1.1 soda int sc_numbufs;
128 1.1 soda int sc_scsi_dev; /* adapters scsi id */
129 1.2 soda struct scsipi_link sc_link; /* prototype for devs */
130 1.2 soda struct scsipi_adapter sc_adapter;
131 1.1 soda };
132 1.1 soda
133 1.1 soda #ifdef BTDEBUG
134 1.1 soda int bt_debug = 0;
135 1.1 soda #endif /* BTDEBUG */
136 1.1 soda
137 1.1 soda int bt_cmd __P((int, struct bt_softc *, int, u_char *, int, u_char *));
138 1.1 soda integrate void bt_finish_ccbs __P((struct bt_softc *));
139 1.1 soda int btintr __P((void *));
140 1.1 soda integrate void bt_reset_ccb __P((struct bt_softc *, struct bt_ccb *));
141 1.1 soda void bt_free_ccb __P((struct bt_softc *, struct bt_ccb *));
142 1.1 soda integrate void bt_init_ccb __P((struct bt_softc *, struct bt_ccb *));
143 1.1 soda struct bt_ccb *bt_get_ccb __P((struct bt_softc *, int));
144 1.1 soda struct bt_ccb *bt_ccb_phys_kv __P((struct bt_softc *, u_long));
145 1.1 soda void bt_queue_ccb __P((struct bt_softc *, struct bt_ccb *));
146 1.1 soda void bt_collect_mbo __P((struct bt_softc *));
147 1.1 soda void bt_start_ccbs __P((struct bt_softc *));
148 1.1 soda void bt_done __P((struct bt_softc *, struct bt_ccb *));
149 1.1 soda int bt_find __P((struct isa_attach_args *, struct bt_softc *));
150 1.1 soda void bt_init __P((struct bt_softc *));
151 1.1 soda void bt_inquire_setup_information __P((struct bt_softc *));
152 1.1 soda void btminphys __P((struct buf *));
153 1.2 soda int bt_scsi_cmd __P((struct scsipi_xfer *));
154 1.2 soda int bt_poll __P((struct bt_softc *, struct scsipi_xfer *, int));
155 1.1 soda void bt_timeout __P((void *arg));
156 1.1 soda void bt_free_buf __P((struct bt_softc *, struct bt_buf *));
157 1.1 soda struct bt_buf * bt_get_buf __P((struct bt_softc *, int));
158 1.1 soda
159 1.1 soda /* XXX static buffer as a kludge. DMA isn't cache coherent on the rpc44, so
160 1.1 soda * we always use uncached buffers for DMA. */
161 1.1 soda static char rpc44_buffer[ TYNE_S_BOUNCE ];
162 1.1 soda
163 1.1 soda /* the below structure is so we have a default dev struct for out link struct */
164 1.2 soda struct scsipi_device bt_dev = {
165 1.1 soda NULL, /* Use default error handler */
166 1.1 soda NULL, /* have a queue, served by this */
167 1.1 soda NULL, /* have no async handler */
168 1.1 soda NULL, /* Use default 'done' routine */
169 1.1 soda };
170 1.1 soda
171 1.2 soda int btprobe __P((struct device *, struct cfdata *, void *));
172 1.1 soda void btattach __P((struct device *, struct device *, void *));
173 1.1 soda int btprint __P((void *, const char *));
174 1.1 soda
175 1.1 soda struct cfattach btl_ca = {
176 1.1 soda sizeof(struct bt_softc), btprobe, btattach
177 1.1 soda };
178 1.1 soda
179 1.1 soda #define BT_RESET_TIMEOUT 2000 /* time to wait for reset (mSec) */
180 1.1 soda #define BT_ABORT_TIMEOUT 2000 /* time to wait for abort (mSec) */
181 1.1 soda
182 1.1 soda /*
183 1.1 soda * bt_cmd(iobase, sc, icnt, ibuf, ocnt, obuf)
184 1.1 soda *
185 1.1 soda * Activate Adapter command
186 1.1 soda * icnt: number of args (outbound bytes including opcode)
187 1.1 soda * ibuf: argument buffer
188 1.1 soda * ocnt: number of expected returned bytes
189 1.1 soda * obuf: result buffer
190 1.1 soda * wait: number of seconds to wait for response
191 1.1 soda *
192 1.1 soda * Performs an adapter command through the ports. Not to be confused with a
193 1.1 soda * scsi command, which is read in via the dma; one of the adapter commands
194 1.1 soda * tells it to read in a scsi command.
195 1.1 soda */
196 1.1 soda int
197 1.1 soda bt_cmd(iobase, sc, icnt, ibuf, ocnt, obuf)
198 1.1 soda int iobase;
199 1.1 soda struct bt_softc *sc;
200 1.1 soda int icnt, ocnt;
201 1.1 soda u_char *ibuf, *obuf;
202 1.1 soda {
203 1.1 soda const char *name;
204 1.1 soda register int i;
205 1.1 soda int wait;
206 1.1 soda u_char sts;
207 1.1 soda u_char opcode = ibuf[0];
208 1.1 soda
209 1.1 soda if (sc != NULL)
210 1.1 soda name = sc->sc_dev.dv_xname;
211 1.1 soda else
212 1.1 soda name = "(bt probe)";
213 1.1 soda
214 1.1 soda /*
215 1.1 soda * Calculate a reasonable timeout for the command.
216 1.1 soda */
217 1.1 soda switch (opcode) {
218 1.1 soda case BT_INQUIRE_DEVICES:
219 1.1 soda wait = 15 * 20000;
220 1.1 soda break;
221 1.1 soda default:
222 1.1 soda wait = 1 * 20000;
223 1.1 soda break;
224 1.1 soda }
225 1.1 soda
226 1.1 soda /*
227 1.1 soda * Wait for the adapter to go idle, unless it's one of
228 1.1 soda * the commands which don't need this
229 1.1 soda */
230 1.1 soda if (opcode != BT_MBO_INTR_EN) {
231 1.1 soda for (i = 20000; i; i--) { /* 1 sec? */
232 1.1 soda sts = isa_inb(iobase + BT_STAT_PORT);
233 1.1 soda if (sts & BT_STAT_IDLE)
234 1.1 soda break;
235 1.1 soda delay(50);
236 1.1 soda }
237 1.1 soda if (!i) {
238 1.1 soda printf("%s: bt_cmd, host not idle(0x%x)\n",
239 1.1 soda name, sts);
240 1.1 soda return ENXIO;
241 1.1 soda }
242 1.1 soda }
243 1.1 soda /*
244 1.1 soda * Now that it is idle, if we expect output, preflush the
245 1.1 soda * queue feeding to us.
246 1.1 soda */
247 1.1 soda if (ocnt) {
248 1.1 soda while ((isa_inb(iobase + BT_STAT_PORT)) & BT_STAT_DF)
249 1.1 soda isa_inb(iobase + BT_DATA_PORT);
250 1.1 soda }
251 1.1 soda /*
252 1.1 soda * Output the command and the number of arguments given
253 1.1 soda * for each byte, first check the port is empty.
254 1.1 soda */
255 1.1 soda while (icnt--) {
256 1.1 soda for (i = wait; i; i--) {
257 1.1 soda sts = isa_inb(iobase + BT_STAT_PORT);
258 1.1 soda if (!(sts & BT_STAT_CDF))
259 1.1 soda break;
260 1.1 soda delay(50);
261 1.1 soda }
262 1.1 soda if (!i) {
263 1.1 soda if (opcode != BT_INQUIRE_REVISION &&
264 1.1 soda opcode != BT_INQUIRE_REVISION_3)
265 1.1 soda printf("%s: bt_cmd, cmd/data port full\n", name);
266 1.1 soda isa_outb(iobase + BT_CTRL_PORT, BT_CTRL_SRST);
267 1.1 soda return ENXIO;
268 1.1 soda }
269 1.1 soda isa_outb(iobase + BT_CMD_PORT, *ibuf++);
270 1.1 soda }
271 1.1 soda /*
272 1.1 soda * If we expect input, loop that many times, each time,
273 1.1 soda * looking for the data register to have valid data
274 1.1 soda */
275 1.1 soda while (ocnt--) {
276 1.1 soda for (i = wait; i; i--) {
277 1.1 soda sts = isa_inb(iobase + BT_STAT_PORT);
278 1.1 soda if (sts & BT_STAT_DF)
279 1.1 soda break;
280 1.1 soda delay(50);
281 1.1 soda }
282 1.1 soda if (!i) {
283 1.1 soda if (opcode != BT_INQUIRE_REVISION &&
284 1.1 soda opcode != BT_INQUIRE_REVISION_3)
285 1.1 soda printf("%s: bt_cmd, cmd/data port empty %d\n",
286 1.1 soda name, ocnt);
287 1.1 soda isa_outb(iobase + BT_CTRL_PORT, BT_CTRL_SRST);
288 1.1 soda return ENXIO;
289 1.1 soda }
290 1.1 soda *obuf++ = isa_inb(iobase + BT_DATA_PORT);
291 1.1 soda }
292 1.1 soda /*
293 1.1 soda * Wait for the board to report a finished instruction.
294 1.1 soda * We may get an extra interrupt for the HACC signal, but this is
295 1.1 soda * unimportant.
296 1.1 soda */
297 1.1 soda if (opcode != BT_MBO_INTR_EN) {
298 1.1 soda for (i = 20000; i; i--) { /* 1 sec? */
299 1.1 soda sts = isa_inb(iobase + BT_INTR_PORT);
300 1.1 soda /* XXX Need to save this in the interrupt handler? */
301 1.1 soda if (sts & BT_INTR_HACC)
302 1.1 soda break;
303 1.1 soda delay(50);
304 1.1 soda }
305 1.1 soda if (!i) {
306 1.1 soda printf("%s: bt_cmd, host not finished(0x%x)\n",
307 1.1 soda name, sts);
308 1.1 soda return ENXIO;
309 1.1 soda }
310 1.1 soda }
311 1.1 soda isa_outb(iobase + BT_CTRL_PORT, BT_CTRL_IRST);
312 1.1 soda return 0;
313 1.1 soda }
314 1.1 soda
315 1.1 soda /*
316 1.1 soda * Check if the device can be found at the port given
317 1.1 soda * and if so, set it up ready for further work
318 1.1 soda * as an argument, takes the isa_device structure from
319 1.1 soda * autoconf.c
320 1.1 soda */
321 1.1 soda int
322 1.1 soda btprobe(parent, match, aux)
323 1.1 soda struct device *parent;
324 1.2 soda struct cfdata *match;
325 1.2 soda void *aux;
326 1.1 soda {
327 1.1 soda register struct isa_attach_args *ia = aux;
328 1.1 soda
329 1.1 soda #ifdef NEWCONFIG
330 1.1 soda if (ia->ia_iobase == IOBASEUNK)
331 1.1 soda return 0;
332 1.1 soda #endif
333 1.1 soda
334 1.1 soda /* See if there is a unit at this location. */
335 1.1 soda if (bt_find(ia, NULL) != 0)
336 1.1 soda return 0;
337 1.1 soda
338 1.1 soda ia->ia_msize = 0;
339 1.1 soda ia->ia_iosize = 4;
340 1.1 soda /* IRQ and DRQ set by bt_find(). */
341 1.1 soda return 1;
342 1.1 soda }
343 1.1 soda
344 1.1 soda /*
345 1.1 soda * Attach all the sub-devices we can find
346 1.1 soda */
347 1.1 soda void
348 1.1 soda btattach(parent, self, aux)
349 1.1 soda struct device *parent, *self;
350 1.1 soda void *aux;
351 1.1 soda {
352 1.1 soda struct isa_attach_args *ia = aux;
353 1.1 soda struct bt_softc *sc = (void *)self;
354 1.1 soda struct bt_ccb *ccb;
355 1.1 soda struct bt_buf *buf;
356 1.1 soda u_int bouncearea;
357 1.1 soda u_int bouncebase;
358 1.1 soda u_int bouncesize;
359 1.1 soda
360 1.1 soda if (bt_find(ia, sc) != 0)
361 1.1 soda panic("btattach: bt_find of %s failed", self->dv_xname);
362 1.1 soda sc->sc_iobase = ia->ia_iobase;
363 1.1 soda
364 1.1 soda /*
365 1.1 soda * create mbox area
366 1.1 soda */
367 1.1 soda if (cputype == DESKSTATION_TYNE) {
368 1.1 soda bouncebase = TYNE_V_BOUNCE;
369 1.1 soda bouncesize = TYNE_S_BOUNCE;
370 1.1 soda } else {
371 1.1 soda bouncesize = TYNE_S_BOUNCE; /* Good enough? XXX */
372 1.1 soda /* bouncebase = (u_int) malloc( bouncesize, M_DEVBUF, M_NOWAIT);*/
373 1.1 soda bouncebase = (u_int) rpc44_buffer | 0xa0000000;
374 1.1 soda }
375 1.1 soda bouncearea = bouncebase + sizeof(struct bt_mbx);
376 1.1 soda sc->sc_mbx = (struct bt_mbx *)bouncebase;
377 1.1 soda
378 1.1 soda bt_inquire_setup_information(sc);
379 1.1 soda bt_init(sc);
380 1.1 soda TAILQ_INIT(&sc->sc_free_ccb);
381 1.1 soda TAILQ_INIT(&sc->sc_free_buf);
382 1.1 soda TAILQ_INIT(&sc->sc_waiting_ccb);
383 1.1 soda
384 1.1 soda /*
385 1.1 soda * fill up with ccb's
386 1.1 soda */
387 1.1 soda while (sc->sc_numccbs < BT_CCB_MAX) {
388 1.1 soda ccb = (struct bt_ccb *)bouncearea;
389 1.1 soda bouncearea += sizeof(struct bt_ccb);
390 1.1 soda bt_init_ccb(sc, ccb);
391 1.1 soda TAILQ_INSERT_HEAD(&sc->sc_free_ccb, ccb, chain);
392 1.1 soda sc->sc_numccbs++;
393 1.1 soda }
394 1.1 soda /*
395 1.1 soda * fill up with bufs's
396 1.1 soda */
397 1.1 soda while ((bouncearea + sizeof(struct bt_buf)) < bouncebase + bouncesize) {
398 1.1 soda buf = (struct bt_buf *)bouncearea;
399 1.1 soda bouncearea += sizeof(struct bt_buf);
400 1.1 soda TAILQ_INSERT_HEAD(&sc->sc_free_buf, buf, chain);
401 1.1 soda sc->sc_numbufs++;
402 1.1 soda }
403 1.1 soda /*
404 1.2 soda * Fill in the adapter.
405 1.2 soda */
406 1.2 soda sc->sc_adapter.scsipi_cmd = bt_scsi_cmd;
407 1.2 soda sc->sc_adapter.scsipi_minphys = btminphys;
408 1.2 soda /*
409 1.2 soda * fill in the prototype scsipi_link.
410 1.1 soda */
411 1.2 soda sc->sc_link.scsipi_scsi.channel = SCSI_CHANNEL_ONLY_ONE;
412 1.1 soda sc->sc_link.adapter_softc = sc;
413 1.2 soda sc->sc_link.scsipi_scsi.adapter_target = sc->sc_scsi_dev;
414 1.2 soda sc->sc_link.adapter = &sc->sc_adapter;
415 1.1 soda sc->sc_link.device = &bt_dev;
416 1.1 soda sc->sc_link.openings = 1;
417 1.2 soda sc->sc_link.scsipi_scsi.max_target = 7;
418 1.2 soda sc->sc_link.scsipi_scsi.max_lun = 7;
419 1.2 soda sc->sc_link.type = BUS_SCSI;
420 1.1 soda
421 1.1 soda sc->sc_ih = isa_intr_establish(ia->ia_ic, sc->sc_irq, IST_EDGE,
422 1.2 soda IPL_BIO, btintr, sc);
423 1.1 soda
424 1.1 soda /*
425 1.1 soda * ask the adapter what subunits are present
426 1.1 soda */
427 1.2 soda config_found(self, &sc->sc_link, scsiprint);
428 1.1 soda }
429 1.1 soda
430 1.1 soda integrate void
431 1.1 soda bt_finish_ccbs(sc)
432 1.1 soda struct bt_softc *sc;
433 1.1 soda {
434 1.1 soda struct bt_mbx_in *wmbi;
435 1.1 soda struct bt_ccb *ccb;
436 1.1 soda int i;
437 1.1 soda
438 1.1 soda wmbi = wmbx->tmbi;
439 1.1 soda
440 1.1 soda if (wmbi->stat == BT_MBI_FREE) {
441 1.1 soda for (i = 0; i < BT_MBX_SIZE; i++) {
442 1.1 soda if (wmbi->stat != BT_MBI_FREE) {
443 1.1 soda printf("%s: mbi not in round-robin order\n",
444 1.1 soda sc->sc_dev.dv_xname);
445 1.1 soda goto AGAIN;
446 1.1 soda }
447 1.1 soda bt_nextmbx(wmbi, wmbx, mbi);
448 1.1 soda }
449 1.1 soda #ifdef BTDIAGnot
450 1.1 soda printf("%s: mbi interrupt with no full mailboxes\n",
451 1.1 soda sc->sc_dev.dv_xname);
452 1.1 soda #endif
453 1.1 soda return;
454 1.1 soda }
455 1.1 soda
456 1.1 soda AGAIN:
457 1.1 soda do {
458 1.1 soda ccb = bt_ccb_phys_kv(sc, phystol(wmbi->ccb_addr));
459 1.1 soda if (!ccb) {
460 1.1 soda printf("%s: bad mbi ccb pointer; skipping\n",
461 1.1 soda sc->sc_dev.dv_xname);
462 1.1 soda goto next;
463 1.1 soda }
464 1.1 soda
465 1.1 soda #ifdef BTDEBUG
466 1.1 soda if (bt_debug) {
467 1.1 soda u_char *cp = (u_char *) &ccb->scsi_cmd;
468 1.1 soda printf("op=%x %x %x %x %x %x\n",
469 1.1 soda cp[0], cp[1], cp[2], cp[3], cp[4], cp[5]);
470 1.1 soda printf("stat %x for mbi addr = 0x%08x, ",
471 1.1 soda wmbi->stat, wmbi);
472 1.1 soda printf("ccb addr = 0x%x\n", ccb);
473 1.1 soda }
474 1.1 soda #endif /* BTDEBUG */
475 1.1 soda
476 1.1 soda switch (wmbi->stat) {
477 1.1 soda case BT_MBI_OK:
478 1.1 soda case BT_MBI_ERROR:
479 1.1 soda if ((ccb->flags & CCB_ABORT) != 0) {
480 1.1 soda /*
481 1.1 soda * If we already started an abort, wait for it
482 1.1 soda * to complete before clearing the CCB. We
483 1.1 soda * could instead just clear CCB_SENDING, but
484 1.1 soda * what if the mailbox was already received?
485 1.1 soda * The worst that happens here is that we clear
486 1.1 soda * the CCB a bit later than we need to. BFD.
487 1.1 soda */
488 1.1 soda goto next;
489 1.1 soda }
490 1.1 soda break;
491 1.1 soda
492 1.1 soda case BT_MBI_ABORT:
493 1.1 soda case BT_MBI_UNKNOWN:
494 1.1 soda /*
495 1.1 soda * Even if the CCB wasn't found, we clear it anyway.
496 1.1 soda * See preceeding comment.
497 1.1 soda */
498 1.1 soda break;
499 1.1 soda
500 1.1 soda default:
501 1.1 soda printf("%s: bad mbi status %02x; skipping\n",
502 1.1 soda sc->sc_dev.dv_xname, wmbi->stat);
503 1.1 soda goto next;
504 1.1 soda }
505 1.1 soda
506 1.1 soda untimeout(bt_timeout, ccb);
507 1.1 soda bt_done(sc, ccb);
508 1.1 soda
509 1.1 soda next:
510 1.1 soda wmbi->stat = BT_MBI_FREE;
511 1.1 soda bt_nextmbx(wmbi, wmbx, mbi);
512 1.1 soda } while (wmbi->stat != BT_MBI_FREE);
513 1.1 soda
514 1.1 soda wmbx->tmbi = wmbi;
515 1.1 soda }
516 1.1 soda
517 1.1 soda /*
518 1.1 soda * Catch an interrupt from the adaptor
519 1.1 soda */
520 1.1 soda int
521 1.1 soda btintr(arg)
522 1.1 soda void *arg;
523 1.1 soda {
524 1.1 soda struct bt_softc *sc = arg;
525 1.1 soda int iobase = sc->sc_iobase;
526 1.1 soda u_char sts;
527 1.1 soda
528 1.1 soda #ifdef BTDEBUG
529 1.1 soda printf("%s: btintr ", sc->sc_dev.dv_xname);
530 1.1 soda #endif /* BTDEBUG */
531 1.1 soda
532 1.1 soda /*
533 1.1 soda * First acknowlege the interrupt, Then if it's not telling about
534 1.1 soda * a completed operation just return.
535 1.1 soda */
536 1.1 soda sts = isa_inb(iobase + BT_INTR_PORT);
537 1.1 soda if ((sts & BT_INTR_ANYINTR) == 0)
538 1.1 soda return 0;
539 1.1 soda isa_outb(iobase + BT_CTRL_PORT, BT_CTRL_IRST);
540 1.1 soda
541 1.1 soda #ifdef BTDIAG
542 1.1 soda /* Make sure we clear CCB_SENDING before finishing a CCB. */
543 1.1 soda bt_collect_mbo(sc);
544 1.1 soda #endif
545 1.1 soda
546 1.1 soda /* Mail box out empty? */
547 1.1 soda if (sts & BT_INTR_MBOA) {
548 1.1 soda struct bt_toggle toggle;
549 1.1 soda
550 1.1 soda toggle.cmd.opcode = BT_MBO_INTR_EN;
551 1.1 soda toggle.cmd.enable = 0;
552 1.1 soda bt_cmd(iobase, sc, sizeof(toggle.cmd), (u_char *)&toggle.cmd, 0,
553 1.1 soda (u_char *)0);
554 1.1 soda bt_start_ccbs(sc);
555 1.1 soda }
556 1.1 soda
557 1.1 soda /* Mail box in full? */
558 1.1 soda if (sts & BT_INTR_MBIF)
559 1.1 soda bt_finish_ccbs(sc);
560 1.1 soda
561 1.1 soda return 1;
562 1.1 soda }
563 1.1 soda
564 1.1 soda integrate void
565 1.1 soda bt_reset_ccb(sc, ccb)
566 1.1 soda struct bt_softc *sc;
567 1.1 soda struct bt_ccb *ccb;
568 1.1 soda {
569 1.1 soda
570 1.1 soda ccb->flags = 0;
571 1.1 soda }
572 1.1 soda
573 1.1 soda /*
574 1.1 soda * A ccb is put onto the free list.
575 1.1 soda */
576 1.1 soda void
577 1.1 soda bt_free_ccb(sc, ccb)
578 1.1 soda struct bt_softc *sc;
579 1.1 soda struct bt_ccb *ccb;
580 1.1 soda {
581 1.1 soda int s;
582 1.1 soda
583 1.1 soda s = splbio();
584 1.1 soda
585 1.1 soda bt_reset_ccb(sc, ccb);
586 1.1 soda TAILQ_INSERT_HEAD(&sc->sc_free_ccb, ccb, chain);
587 1.1 soda
588 1.1 soda /*
589 1.1 soda * If there were none, wake anybody waiting for one to come free,
590 1.1 soda * starting with queued entries.
591 1.1 soda */
592 1.1 soda if (ccb->chain.tqe_next == 0)
593 1.1 soda wakeup(&sc->sc_free_ccb);
594 1.1 soda
595 1.1 soda splx(s);
596 1.1 soda }
597 1.1 soda
598 1.1 soda /*
599 1.1 soda * A buf is put onto the free list.
600 1.1 soda */
601 1.1 soda void
602 1.1 soda bt_free_buf(sc, buf)
603 1.1 soda struct bt_softc *sc;
604 1.1 soda struct bt_buf *buf;
605 1.1 soda {
606 1.1 soda int s;
607 1.1 soda
608 1.1 soda s = splbio();
609 1.1 soda
610 1.1 soda TAILQ_INSERT_HEAD(&sc->sc_free_buf, buf, chain);
611 1.1 soda sc->sc_numbufs++;
612 1.1 soda
613 1.1 soda /*
614 1.1 soda * If there were none, wake anybody waiting for one to come free,
615 1.1 soda * starting with queued entries.
616 1.1 soda */
617 1.1 soda if (buf->chain.tqe_next == 0)
618 1.1 soda wakeup(&sc->sc_free_buf);
619 1.1 soda
620 1.1 soda splx(s);
621 1.1 soda }
622 1.1 soda
623 1.1 soda integrate void
624 1.1 soda bt_init_ccb(sc, ccb)
625 1.1 soda struct bt_softc *sc;
626 1.1 soda struct bt_ccb *ccb;
627 1.1 soda {
628 1.1 soda int hashnum;
629 1.1 soda
630 1.1 soda bzero(ccb, sizeof(struct bt_ccb));
631 1.1 soda /*
632 1.1 soda * put in the phystokv hash table
633 1.1 soda * Never gets taken out.
634 1.1 soda */
635 1.1 soda ccb->hashkey = KVTOPHYS(ccb);
636 1.1 soda hashnum = CCB_HASH(ccb->hashkey);
637 1.1 soda ccb->nexthash = sc->sc_ccbhash[hashnum];
638 1.1 soda sc->sc_ccbhash[hashnum] = ccb;
639 1.1 soda bt_reset_ccb(sc, ccb);
640 1.1 soda }
641 1.1 soda
642 1.1 soda /*
643 1.1 soda * Get a free ccb
644 1.1 soda *
645 1.1 soda * If there are none, either return an error or sleep.
646 1.1 soda */
647 1.1 soda struct bt_ccb *
648 1.2 soda bt_get_ccb(sc, nosleep)
649 1.1 soda struct bt_softc *sc;
650 1.2 soda int nosleep;
651 1.1 soda {
652 1.1 soda struct bt_ccb *ccb;
653 1.1 soda int s;
654 1.1 soda
655 1.1 soda s = splbio();
656 1.1 soda
657 1.1 soda /*
658 1.1 soda * If we can and have to, sleep waiting for one to come free.
659 1.1 soda */
660 1.1 soda for (;;) {
661 1.1 soda ccb = sc->sc_free_ccb.tqh_first;
662 1.1 soda if (ccb) {
663 1.1 soda TAILQ_REMOVE(&sc->sc_free_ccb, ccb, chain);
664 1.1 soda break;
665 1.1 soda }
666 1.2 soda if (nosleep)
667 1.1 soda goto out;
668 1.1 soda tsleep(&sc->sc_free_ccb, PRIBIO, "btccb", 0);
669 1.1 soda }
670 1.1 soda
671 1.1 soda ccb->flags |= CCB_ALLOC;
672 1.1 soda
673 1.1 soda out:
674 1.1 soda splx(s);
675 1.1 soda return ccb;
676 1.1 soda }
677 1.1 soda
678 1.1 soda /*
679 1.1 soda * Get a free buf
680 1.1 soda *
681 1.1 soda * If there are none, either return an error or sleep.
682 1.1 soda */
683 1.1 soda struct bt_buf *
684 1.2 soda bt_get_buf(sc, nosleep)
685 1.1 soda struct bt_softc *sc;
686 1.2 soda int nosleep;
687 1.1 soda {
688 1.1 soda struct bt_buf *buf;
689 1.1 soda int s;
690 1.1 soda
691 1.1 soda s = splbio();
692 1.1 soda
693 1.1 soda /*
694 1.1 soda * If we can and have to, sleep waiting for one to come free.
695 1.1 soda */
696 1.1 soda for (;;) {
697 1.1 soda buf = sc->sc_free_buf.tqh_first;
698 1.1 soda if (buf) {
699 1.1 soda TAILQ_REMOVE(&sc->sc_free_buf, buf, chain);
700 1.1 soda sc->sc_numbufs--;
701 1.1 soda break;
702 1.1 soda }
703 1.2 soda if (nosleep)
704 1.1 soda goto out;
705 1.1 soda tsleep(&sc->sc_free_buf, PRIBIO, "btbuf", 0);
706 1.1 soda }
707 1.1 soda
708 1.1 soda out:
709 1.1 soda splx(s);
710 1.1 soda return buf;
711 1.1 soda }
712 1.1 soda
713 1.1 soda /*
714 1.1 soda * Given a physical address, find the ccb that it corresponds to.
715 1.1 soda */
716 1.1 soda struct bt_ccb *
717 1.1 soda bt_ccb_phys_kv(sc, ccb_phys)
718 1.1 soda struct bt_softc *sc;
719 1.1 soda u_long ccb_phys;
720 1.1 soda {
721 1.1 soda int hashnum = CCB_HASH(ccb_phys);
722 1.1 soda struct bt_ccb *ccb = sc->sc_ccbhash[hashnum];
723 1.1 soda
724 1.1 soda while (ccb) {
725 1.1 soda if (ccb->hashkey == ccb_phys)
726 1.1 soda break;
727 1.1 soda ccb = ccb->nexthash;
728 1.1 soda }
729 1.1 soda return ccb;
730 1.1 soda }
731 1.1 soda
732 1.1 soda /*
733 1.1 soda * Queue a CCB to be sent to the controller, and send it if possible.
734 1.1 soda */
735 1.1 soda void
736 1.1 soda bt_queue_ccb(sc, ccb)
737 1.1 soda struct bt_softc *sc;
738 1.1 soda struct bt_ccb *ccb;
739 1.1 soda {
740 1.1 soda
741 1.1 soda TAILQ_INSERT_TAIL(&sc->sc_waiting_ccb, ccb, chain);
742 1.1 soda bt_start_ccbs(sc);
743 1.1 soda }
744 1.1 soda
745 1.1 soda /*
746 1.1 soda * Garbage collect mailboxes that are no longer in use.
747 1.1 soda */
748 1.1 soda void
749 1.1 soda bt_collect_mbo(sc)
750 1.1 soda struct bt_softc *sc;
751 1.1 soda {
752 1.1 soda struct bt_mbx_out *wmbo; /* Mail Box Out pointer */
753 1.1 soda
754 1.1 soda wmbo = wmbx->cmbo;
755 1.1 soda
756 1.1 soda while (sc->sc_mbofull > 0) {
757 1.1 soda if (wmbo->cmd != BT_MBO_FREE)
758 1.1 soda break;
759 1.1 soda
760 1.1 soda #ifdef BTDIAG
761 1.1 soda ccb = bt_ccb_phys_kv(sc, phystol(wmbo->ccb_addr));
762 1.1 soda ccb->flags &= ~CCB_SENDING;
763 1.1 soda #endif
764 1.1 soda
765 1.1 soda --sc->sc_mbofull;
766 1.1 soda bt_nextmbx(wmbo, wmbx, mbo);
767 1.1 soda }
768 1.1 soda
769 1.1 soda wmbx->cmbo = wmbo;
770 1.1 soda }
771 1.1 soda
772 1.1 soda /*
773 1.1 soda * Send as many CCBs as we have empty mailboxes for.
774 1.1 soda */
775 1.1 soda void
776 1.1 soda bt_start_ccbs(sc)
777 1.1 soda struct bt_softc *sc;
778 1.1 soda {
779 1.1 soda int iobase = sc->sc_iobase;
780 1.1 soda struct bt_mbx_out *wmbo; /* Mail Box Out pointer */
781 1.1 soda struct bt_ccb *ccb;
782 1.1 soda
783 1.1 soda wmbo = wmbx->tmbo;
784 1.1 soda
785 1.1 soda while ((ccb = sc->sc_waiting_ccb.tqh_first) != NULL) {
786 1.1 soda if (sc->sc_mbofull >= BT_MBX_SIZE) {
787 1.1 soda bt_collect_mbo(sc);
788 1.1 soda if (sc->sc_mbofull >= BT_MBX_SIZE) {
789 1.1 soda struct bt_toggle toggle;
790 1.1 soda
791 1.1 soda toggle.cmd.opcode = BT_MBO_INTR_EN;
792 1.1 soda toggle.cmd.enable = 1;
793 1.1 soda bt_cmd(iobase, sc, sizeof(toggle.cmd),
794 1.1 soda (u_char *)&toggle.cmd, 0, (u_char *)0);
795 1.1 soda break;
796 1.1 soda }
797 1.1 soda }
798 1.1 soda
799 1.1 soda TAILQ_REMOVE(&sc->sc_waiting_ccb, ccb, chain);
800 1.1 soda #ifdef BTDIAG
801 1.1 soda ccb->flags |= CCB_SENDING;
802 1.1 soda #endif
803 1.1 soda
804 1.1 soda /* Link ccb to mbo. */
805 1.1 soda ltophys(KVTOPHYS(ccb), wmbo->ccb_addr);
806 1.1 soda if (ccb->flags & CCB_ABORT)
807 1.1 soda wmbo->cmd = BT_MBO_ABORT;
808 1.1 soda else
809 1.1 soda wmbo->cmd = BT_MBO_START;
810 1.1 soda
811 1.1 soda /* Tell the card to poll immediately. */
812 1.1 soda isa_outb(iobase + BT_CMD_PORT, BT_START_SCSI);
813 1.1 soda
814 1.2 soda if ((ccb->xs->xs_control & XS_CTL_POLL) == 0)
815 1.1 soda timeout(bt_timeout, ccb, (ccb->timeout * hz) / 1000);
816 1.1 soda
817 1.1 soda ++sc->sc_mbofull;
818 1.1 soda bt_nextmbx(wmbo, wmbx, mbo);
819 1.1 soda }
820 1.1 soda
821 1.1 soda wmbx->tmbo = wmbo;
822 1.1 soda }
823 1.1 soda
824 1.1 soda /*
825 1.1 soda * We have a ccb which has been processed by the
826 1.1 soda * adaptor, now we look to see how the operation
827 1.1 soda * went. Wake up the owner if waiting
828 1.1 soda */
829 1.1 soda void
830 1.1 soda bt_done(sc, ccb)
831 1.1 soda struct bt_softc *sc;
832 1.1 soda struct bt_ccb *ccb;
833 1.1 soda {
834 1.2 soda struct scsipi_sense_data *s1, *s2;
835 1.2 soda struct scsipi_xfer *xs = ccb->xs;
836 1.1 soda
837 1.1 soda u_long thiskv, thisbounce;
838 1.1 soda int bytes_this_page, datalen;
839 1.1 soda struct bt_scat_gath *sg;
840 1.1 soda int seg;
841 1.1 soda
842 1.1 soda SC_DEBUG(xs->sc_link, SDEV_DB2, ("bt_done\n"));
843 1.1 soda /*
844 1.1 soda * Otherwise, put the results of the operation
845 1.1 soda * into the xfer and call whoever started it
846 1.1 soda */
847 1.1 soda #ifdef BTDIAG
848 1.1 soda if (ccb->flags & CCB_SENDING) {
849 1.1 soda printf("%s: exiting ccb still in transit!\n", sc->sc_dev.dv_xname);
850 1.1 soda Debugger();
851 1.1 soda return;
852 1.1 soda }
853 1.1 soda #endif
854 1.1 soda if ((ccb->flags & CCB_ALLOC) == 0) {
855 1.1 soda printf("%s: exiting ccb not allocated!\n", sc->sc_dev.dv_xname);
856 1.1 soda Debugger();
857 1.1 soda return;
858 1.1 soda }
859 1.1 soda if (xs->error == XS_NOERROR) {
860 1.1 soda if (ccb->host_stat != BT_OK) {
861 1.1 soda switch (ccb->host_stat) {
862 1.1 soda case BT_SEL_TIMEOUT: /* No response */
863 1.1 soda xs->error = XS_SELTIMEOUT;
864 1.1 soda break;
865 1.1 soda default: /* Other scsi protocol messes */
866 1.1 soda printf("%s: host_stat %x\n",
867 1.1 soda sc->sc_dev.dv_xname, ccb->host_stat);
868 1.1 soda xs->error = XS_DRIVER_STUFFUP;
869 1.1 soda break;
870 1.1 soda }
871 1.1 soda } else if (ccb->target_stat != SCSI_OK) {
872 1.1 soda switch (ccb->target_stat) {
873 1.1 soda case SCSI_CHECK:
874 1.1 soda s1 = &ccb->scsi_sense;
875 1.2 soda s2 = &xs->sense.scsi_sense;
876 1.1 soda *s2 = *s1;
877 1.1 soda xs->error = XS_SENSE;
878 1.1 soda break;
879 1.1 soda case SCSI_BUSY:
880 1.1 soda xs->error = XS_BUSY;
881 1.1 soda break;
882 1.1 soda default:
883 1.1 soda printf("%s: target_stat %x\n",
884 1.1 soda sc->sc_dev.dv_xname, ccb->target_stat);
885 1.1 soda xs->error = XS_DRIVER_STUFFUP;
886 1.1 soda break;
887 1.1 soda }
888 1.1 soda } else
889 1.1 soda xs->resid = 0;
890 1.1 soda }
891 1.1 soda
892 1.1 soda if((datalen = xs->datalen) != 0) {
893 1.1 soda thiskv = (int)xs->data;
894 1.1 soda sg = ccb->scat_gath;
895 1.1 soda seg = phystol(ccb->data_length) / sizeof(struct bt_scat_gath);
896 1.1 soda
897 1.1 soda while (seg) {
898 1.1 soda thisbounce = PHYSTOKV(phystol(sg->seg_addr));
899 1.1 soda bytes_this_page = phystol(sg->seg_len);
900 1.2 soda if(xs->xs_control & XS_CTL_DATA_IN) {
901 1.1 soda bcopy((void *)thisbounce, (void *)thiskv, bytes_this_page);
902 1.1 soda }
903 1.1 soda bt_free_buf(sc, (struct bt_buf *)thisbounce);
904 1.1 soda thiskv += bytes_this_page;
905 1.1 soda datalen -= bytes_this_page;
906 1.1 soda
907 1.1 soda sg++;
908 1.1 soda seg--;
909 1.1 soda }
910 1.1 soda }
911 1.1 soda
912 1.1 soda bt_free_ccb(sc, ccb);
913 1.2 soda xs->xs_status |= XS_STS_DONE;
914 1.2 soda scsipi_done(xs);
915 1.1 soda }
916 1.1 soda
917 1.1 soda /*
918 1.1 soda * Find the board and find it's irq/drq
919 1.1 soda */
920 1.1 soda int
921 1.1 soda bt_find(ia, sc)
922 1.1 soda struct isa_attach_args *ia;
923 1.1 soda struct bt_softc *sc;
924 1.1 soda {
925 1.1 soda int iobase = ia->ia_iobase;
926 1.1 soda int i;
927 1.1 soda u_char sts;
928 1.1 soda struct bt_extended_inquire inquire;
929 1.1 soda struct bt_config config;
930 1.1 soda int irq, drq;
931 1.1 soda
932 1.2 soda #ifndef notyet
933 1.2 soda /* Check something is at the ports we need to access */
934 1.2 soda sts = isa_inb(iobase + BHA_STAT_PORT);
935 1.2 soda if (sts == 0xFF)
936 1.2 soda return (0);
937 1.2 soda #endif
938 1.2 soda
939 1.1 soda /*
940 1.1 soda * reset board, If it doesn't respond, assume
941 1.1 soda * that it's not there.. good for the probe
942 1.1 soda */
943 1.1 soda
944 1.1 soda isa_outb(iobase + BT_CTRL_PORT, BT_CTRL_HRST | BT_CTRL_SRST);
945 1.1 soda
946 1.1 soda delay(100);
947 1.1 soda for (i = BT_RESET_TIMEOUT; i; i--) {
948 1.1 soda sts = isa_inb(iobase + BT_STAT_PORT);
949 1.1 soda if (sts == (BT_STAT_IDLE | BT_STAT_INIT))
950 1.1 soda break;
951 1.1 soda delay(1000);
952 1.1 soda }
953 1.1 soda if (!i) {
954 1.1 soda #ifdef BTDEBUG
955 1.1 soda if (bt_debug)
956 1.1 soda printf("bt_find: No answer from buslogic board\n");
957 1.1 soda #endif /* BTDEBUG */
958 1.1 soda return 1;
959 1.1 soda }
960 1.1 soda
961 1.2 soda #ifndef notyet
962 1.2 soda /*
963 1.2 soda * The BusLogic cards implement an Adaptec 1542 (aha)-compatible
964 1.2 soda * interface. The native bha interface is not compatible with
965 1.2 soda * an aha. 1542. We need to ensure that we never match an
966 1.2 soda * Adaptec 1542. We must also avoid sending Adaptec-compatible
967 1.2 soda * commands to a real bha, lest it go into 1542 emulation mode.
968 1.2 soda * (On an indirect bus like ISA, we should always probe for BusLogic
969 1.2 soda * interfaces before Adaptec interfaces).
970 1.2 soda */
971 1.2 soda
972 1.2 soda /*
973 1.2 soda * Make sure we don't match an AHA-1542A or AHA-1542B, by checking
974 1.2 soda * for an extended-geometry register. The 1542[AB] don't have one.
975 1.2 soda */
976 1.2 soda sts = isa_inb(iobase + BT_EXTGEOM_PORT);
977 1.2 soda if (sts == 0xFF)
978 1.2 soda return (0);
979 1.2 soda #endif /* notyet */
980 1.2 soda
981 1.1 soda /*
982 1.1 soda * Check that we actually know how to use this board.
983 1.1 soda */
984 1.1 soda delay(1000);
985 1.1 soda bzero(&inquire, sizeof inquire);
986 1.1 soda inquire.cmd.opcode = BT_INQUIRE_EXTENDED;
987 1.1 soda inquire.cmd.len = sizeof(inquire.reply);
988 1.2 soda i = bt_cmd(iobase, sc, sizeof(inquire.cmd), (u_char *)&inquire.cmd,
989 1.1 soda sizeof(inquire.reply), (u_char *)&inquire.reply);
990 1.2 soda
991 1.2 soda #ifndef notyet
992 1.2 soda /*
993 1.2 soda * Some 1542Cs (CP, perhaps not CF, may depend on firmware rev)
994 1.2 soda * have the extended-geometry register and also respond to
995 1.2 soda * BHA_INQUIRE_EXTENDED. Make sure we never match such cards,
996 1.2 soda * by checking the size of the reply is what a BusLogic card returns.
997 1.2 soda */
998 1.2 soda if (i) { /* XXX - this doesn't really check the size. ??? see bha.c */
999 1.2 soda #ifdef BTDEBUG
1000 1.2 soda printf("bt_find: board returned %d instead of %d to %s\n",
1001 1.2 soda i, sizeof(inquire.reply), "INQUIRE_EXTENDED");
1002 1.2 soda #endif
1003 1.2 soda return (0);
1004 1.2 soda }
1005 1.2 soda
1006 1.2 soda /* OK, we know we've found a buslogic adaptor. */
1007 1.2 soda #endif /* notyet */
1008 1.2 soda
1009 1.1 soda switch (inquire.reply.bus_type) {
1010 1.1 soda case BT_BUS_TYPE_24BIT:
1011 1.1 soda case BT_BUS_TYPE_32BIT:
1012 1.1 soda break;
1013 1.1 soda case BT_BUS_TYPE_MCA:
1014 1.1 soda /* We don't grok MicroChannel (yet). */
1015 1.1 soda return 1;
1016 1.1 soda default:
1017 1.1 soda printf("bt_find: illegal bus type %c\n", inquire.reply.bus_type);
1018 1.1 soda return 1;
1019 1.1 soda }
1020 1.1 soda
1021 1.1 soda /*
1022 1.1 soda * Assume we have a board at this stage setup dma channel from
1023 1.1 soda * jumpers and save int level
1024 1.1 soda */
1025 1.1 soda delay(1000);
1026 1.1 soda config.cmd.opcode = BT_INQUIRE_CONFIG;
1027 1.1 soda bt_cmd(iobase, sc, sizeof(config.cmd), (u_char *)&config.cmd,
1028 1.1 soda sizeof(config.reply), (u_char *)&config.reply);
1029 1.1 soda switch (config.reply.chan) {
1030 1.1 soda case EISADMA:
1031 1.1 soda drq = DRQUNK;
1032 1.1 soda break;
1033 1.1 soda case CHAN0:
1034 1.1 soda drq = 0;
1035 1.1 soda break;
1036 1.1 soda case CHAN5:
1037 1.1 soda drq = 5;
1038 1.1 soda break;
1039 1.1 soda case CHAN6:
1040 1.1 soda drq = 6;
1041 1.1 soda break;
1042 1.1 soda case CHAN7:
1043 1.1 soda drq = 7;
1044 1.1 soda break;
1045 1.1 soda default:
1046 1.1 soda printf("bt_find: illegal drq setting %x\n", config.reply.chan);
1047 1.1 soda return 1;
1048 1.1 soda }
1049 1.1 soda
1050 1.1 soda switch (config.reply.intr) {
1051 1.1 soda case INT9:
1052 1.1 soda irq = 9;
1053 1.1 soda break;
1054 1.1 soda case INT10:
1055 1.1 soda irq = 10;
1056 1.1 soda break;
1057 1.1 soda case INT11:
1058 1.1 soda irq = 11;
1059 1.1 soda break;
1060 1.1 soda case INT12:
1061 1.1 soda irq = 12;
1062 1.1 soda break;
1063 1.1 soda case INT14:
1064 1.1 soda irq = 14;
1065 1.1 soda break;
1066 1.1 soda case INT15:
1067 1.1 soda irq = 15;
1068 1.1 soda break;
1069 1.1 soda default:
1070 1.1 soda printf("bt_find: illegal irq setting %x\n", config.reply.intr);
1071 1.1 soda return 1;
1072 1.1 soda }
1073 1.1 soda
1074 1.1 soda if (sc != NULL) {
1075 1.1 soda /* who are we on the scsi bus? */
1076 1.1 soda sc->sc_scsi_dev = config.reply.scsi_dev;
1077 1.1 soda
1078 1.1 soda sc->sc_iobase = iobase;
1079 1.1 soda sc->sc_irq = irq;
1080 1.1 soda sc->sc_drq = drq;
1081 1.1 soda } else {
1082 1.1 soda if (ia->ia_irq == IRQUNK)
1083 1.1 soda ia->ia_irq = irq;
1084 1.1 soda else if (ia->ia_irq != irq)
1085 1.1 soda return 1;
1086 1.1 soda if (ia->ia_drq == DRQUNK)
1087 1.1 soda ia->ia_drq = drq;
1088 1.1 soda else if (ia->ia_drq != drq)
1089 1.1 soda return 1;
1090 1.1 soda }
1091 1.1 soda
1092 1.1 soda return 0;
1093 1.1 soda }
1094 1.1 soda
1095 1.1 soda /*
1096 1.1 soda * Start the board, ready for normal operation
1097 1.1 soda */
1098 1.1 soda void
1099 1.1 soda bt_init(sc)
1100 1.1 soda struct bt_softc *sc;
1101 1.1 soda {
1102 1.1 soda int iobase = sc->sc_iobase;
1103 1.1 soda struct bt_devices devices;
1104 1.1 soda struct bt_setup setup;
1105 1.1 soda struct bt_mailbox mailbox;
1106 1.1 soda struct bt_period period;
1107 1.1 soda int i;
1108 1.1 soda
1109 1.1 soda /* Enable round-robin scheme - appeared at firmware rev. 3.31. */
1110 1.1 soda if (strcmp(sc->sc_firmware, "3.31") >= 0) {
1111 1.1 soda struct bt_toggle toggle;
1112 1.1 soda
1113 1.1 soda toggle.cmd.opcode = BT_ROUND_ROBIN;
1114 1.1 soda toggle.cmd.enable = 1;
1115 1.1 soda bt_cmd(iobase, sc, sizeof(toggle.cmd), (u_char *)&toggle.cmd,
1116 1.1 soda 0, (u_char *)0);
1117 1.1 soda }
1118 1.1 soda
1119 1.1 soda /* Inquire Installed Devices (to force synchronous negotiation). */
1120 1.1 soda devices.cmd.opcode = BT_INQUIRE_DEVICES;
1121 1.1 soda bt_cmd(iobase, sc, sizeof(devices.cmd), (u_char *)&devices.cmd,
1122 1.1 soda sizeof(devices.reply), (u_char *)&devices.reply);
1123 1.1 soda
1124 1.1 soda /* Obtain setup information from. */
1125 1.1 soda setup.cmd.opcode = BT_INQUIRE_SETUP;
1126 1.1 soda setup.cmd.len = sizeof(setup.reply);
1127 1.1 soda bt_cmd(iobase, sc, sizeof(setup.cmd), (u_char *)&setup.cmd,
1128 1.1 soda sizeof(setup.reply), (u_char *)&setup.reply);
1129 1.1 soda
1130 1.1 soda printf("%s: %s, %s\n",
1131 1.1 soda sc->sc_dev.dv_xname,
1132 1.1 soda setup.reply.sync_neg ? "sync" : "async",
1133 1.1 soda setup.reply.parity ? "parity" : "no parity");
1134 1.1 soda
1135 1.1 soda for (i = 0; i < 8; i++)
1136 1.1 soda period.reply.period[i] = setup.reply.sync[i].period * 5 + 20;
1137 1.1 soda
1138 1.1 soda if (sc->sc_firmware[0] >= '3') {
1139 1.1 soda period.cmd.opcode = BT_INQUIRE_PERIOD;
1140 1.1 soda period.cmd.len = sizeof(period.reply);
1141 1.1 soda bt_cmd(iobase, sc, sizeof(period.cmd), (u_char *)&period.cmd,
1142 1.1 soda sizeof(period.reply), (u_char *)&period.reply);
1143 1.1 soda }
1144 1.1 soda
1145 1.1 soda for (i = 0; i < 8; i++) {
1146 1.1 soda if (!setup.reply.sync[i].valid ||
1147 1.1 soda (!setup.reply.sync[i].offset && !setup.reply.sync[i].period))
1148 1.1 soda continue;
1149 1.1 soda printf("%s targ %d: sync, offset %d, period %dnsec\n",
1150 1.1 soda sc->sc_dev.dv_xname, i,
1151 1.1 soda setup.reply.sync[i].offset, period.reply.period[i] * 10);
1152 1.1 soda }
1153 1.1 soda
1154 1.1 soda /*
1155 1.1 soda * Set up initial mail box for round-robin operation.
1156 1.1 soda */
1157 1.1 soda for (i = 0; i < BT_MBX_SIZE; i++) {
1158 1.1 soda wmbx->mbo[i].cmd = BT_MBO_FREE;
1159 1.1 soda wmbx->mbi[i].stat = BT_MBI_FREE;
1160 1.1 soda }
1161 1.1 soda wmbx->cmbo = wmbx->tmbo = &wmbx->mbo[0];
1162 1.1 soda wmbx->tmbi = &wmbx->mbi[0];
1163 1.1 soda sc->sc_mbofull = 0;
1164 1.1 soda
1165 1.1 soda /* Initialize mail box. */
1166 1.1 soda mailbox.cmd.opcode = BT_MBX_INIT_EXTENDED;
1167 1.1 soda mailbox.cmd.nmbx = BT_MBX_SIZE;
1168 1.1 soda ltophys(KVTOPHYS(wmbx), mailbox.cmd.addr);
1169 1.1 soda bt_cmd(iobase, sc, sizeof(mailbox.cmd), (u_char *)&mailbox.cmd,
1170 1.1 soda 0, (u_char *)0);
1171 1.1 soda }
1172 1.1 soda
1173 1.1 soda void
1174 1.1 soda bt_inquire_setup_information(sc)
1175 1.1 soda struct bt_softc *sc;
1176 1.1 soda {
1177 1.1 soda int iobase = sc->sc_iobase;
1178 1.1 soda struct bt_model model;
1179 1.1 soda struct bt_revision revision;
1180 1.1 soda struct bt_digit digit;
1181 1.1 soda char *p;
1182 1.1 soda
1183 1.1 soda /*
1184 1.1 soda * Get the firmware revision.
1185 1.1 soda */
1186 1.1 soda p = sc->sc_firmware;
1187 1.1 soda revision.cmd.opcode = BT_INQUIRE_REVISION;
1188 1.1 soda bt_cmd(iobase, sc, sizeof(revision.cmd), (u_char *)&revision.cmd,
1189 1.1 soda sizeof(revision.reply), (u_char *)&revision.reply);
1190 1.1 soda *p++ = revision.reply.firm_revision;
1191 1.1 soda *p++ = '.';
1192 1.1 soda *p++ = revision.reply.firm_version;
1193 1.1 soda digit.cmd.opcode = BT_INQUIRE_REVISION_3;
1194 1.1 soda bt_cmd(iobase, sc, sizeof(digit.cmd), (u_char *)&digit.cmd,
1195 1.1 soda sizeof(digit.reply), (u_char *)&digit.reply);
1196 1.1 soda *p++ = digit.reply.digit;
1197 1.1 soda if (revision.reply.firm_revision >= '3' ||
1198 1.1 soda (revision.reply.firm_revision == '3' && revision.reply.firm_version >= '3')) {
1199 1.1 soda digit.cmd.opcode = BT_INQUIRE_REVISION_4;
1200 1.1 soda bt_cmd(iobase, sc, sizeof(digit.cmd), (u_char *)&digit.cmd,
1201 1.1 soda sizeof(digit.reply), (u_char *)&digit.reply);
1202 1.1 soda *p++ = digit.reply.digit;
1203 1.1 soda }
1204 1.1 soda while (p > sc->sc_firmware && (p[-1] == ' ' || p[-1] == '\0'))
1205 1.1 soda p--;
1206 1.1 soda *p = '\0';
1207 1.1 soda
1208 1.1 soda /*
1209 1.1 soda * Get the model number.
1210 1.1 soda */
1211 1.1 soda if (revision.reply.firm_revision >= '3') {
1212 1.1 soda p = sc->sc_model;
1213 1.1 soda model.cmd.opcode = BT_INQUIRE_MODEL;
1214 1.1 soda model.cmd.len = sizeof(model.reply);
1215 1.1 soda bt_cmd(iobase, sc, sizeof(model.cmd), (u_char *)&model.cmd,
1216 1.1 soda sizeof(model.reply), (u_char *)&model.reply);
1217 1.1 soda *p++ = model.reply.id[0];
1218 1.1 soda *p++ = model.reply.id[1];
1219 1.1 soda *p++ = model.reply.id[2];
1220 1.1 soda *p++ = model.reply.id[3];
1221 1.1 soda while (p > sc->sc_model && (p[-1] == ' ' || p[-1] == '\0'))
1222 1.1 soda p--;
1223 1.1 soda *p++ = model.reply.version[0];
1224 1.1 soda *p++ = model.reply.version[1];
1225 1.1 soda while (p > sc->sc_model && (p[-1] == ' ' || p[-1] == '\0'))
1226 1.1 soda p--;
1227 1.1 soda *p = '\0';
1228 1.1 soda } else
1229 1.1 soda strcpy(sc->sc_model, "542B");
1230 1.1 soda
1231 1.1 soda printf(": model BT-%s, firmware %s\n", sc->sc_model, sc->sc_firmware);
1232 1.1 soda }
1233 1.1 soda
1234 1.1 soda void
1235 1.1 soda btminphys(bp)
1236 1.1 soda struct buf *bp;
1237 1.1 soda {
1238 1.1 soda
1239 1.1 soda if (bp->b_bcount > ((BT_NSEG - 1) << PGSHIFT))
1240 1.1 soda bp->b_bcount = ((BT_NSEG - 1) << PGSHIFT);
1241 1.1 soda minphys(bp);
1242 1.1 soda }
1243 1.1 soda
1244 1.1 soda /*
1245 1.1 soda * start a scsi operation given the command and the data address. Also needs
1246 1.1 soda * the unit, target and lu.
1247 1.1 soda */
1248 1.1 soda int
1249 1.1 soda bt_scsi_cmd(xs)
1250 1.2 soda struct scsipi_xfer *xs;
1251 1.1 soda {
1252 1.2 soda struct scsipi_link *sc_link = xs->sc_link;
1253 1.1 soda struct bt_softc *sc = sc_link->adapter_softc;
1254 1.1 soda struct bt_ccb *ccb;
1255 1.1 soda struct bt_scat_gath *sg;
1256 1.1 soda int seg; /* scatter gather seg being worked on */
1257 1.1 soda u_long thiskv, thisbounce;
1258 1.2 soda int bytes_this_page, datalen, control;
1259 1.1 soda int s;
1260 1.1 soda
1261 1.1 soda SC_DEBUG(sc_link, SDEV_DB2, ("bt_scsi_cmd\n"));
1262 1.1 soda /*
1263 1.1 soda * get a ccb to use. If the transfer
1264 1.1 soda * is from a buf (possibly from interrupt time)
1265 1.1 soda * then we can't allow it to sleep
1266 1.1 soda */
1267 1.2 soda control = xs->xs_control;
1268 1.2 soda if ((ccb = bt_get_ccb(sc, control & XS_CTL_NOSLEEP)) == NULL) {
1269 1.1 soda xs->error = XS_DRIVER_STUFFUP;
1270 1.1 soda return TRY_AGAIN_LATER;
1271 1.1 soda }
1272 1.1 soda ccb->xs = xs;
1273 1.1 soda ccb->timeout = xs->timeout;
1274 1.1 soda
1275 1.1 soda /*
1276 1.1 soda * Put all the arguments for the xfer in the ccb
1277 1.1 soda */
1278 1.2 soda if (control & XS_CTL_RESET) {
1279 1.1 soda ccb->opcode = BT_RESET_CCB;
1280 1.1 soda ccb->scsi_cmd_length = 0;
1281 1.1 soda } else {
1282 1.1 soda /* can't use S/G if zero length */
1283 1.1 soda ccb->opcode = (xs->datalen ? BT_INIT_SCAT_GATH_CCB
1284 1.1 soda : BT_INITIATOR_CCB);
1285 1.1 soda bcopy(xs->cmd, &ccb->scsi_cmd,
1286 1.1 soda ccb->scsi_cmd_length = xs->cmdlen);
1287 1.1 soda }
1288 1.1 soda
1289 1.1 soda if (xs->datalen) {
1290 1.1 soda sg = ccb->scat_gath;
1291 1.1 soda seg = 0;
1292 1.1 soda /*
1293 1.1 soda * Set up the scatter-gather block.
1294 1.1 soda */
1295 1.1 soda SC_DEBUG(sc_link, SDEV_DB4,
1296 1.1 soda ("%d @0x%x:- ", xs->datalen, xs->data));
1297 1.1 soda
1298 1.1 soda datalen = xs->datalen;
1299 1.1 soda thiskv = (int)xs->data;
1300 1.1 soda
1301 1.1 soda while (datalen && seg < BT_NSEG) {
1302 1.1 soda
1303 1.1 soda /* put in the base address of a buf */
1304 1.2 soda thisbounce = (u_long)
1305 1.2 soda bt_get_buf(sc, control & XS_CTL_NOSLEEP);
1306 1.1 soda if(thisbounce == 0)
1307 1.1 soda break;
1308 1.1 soda ltophys(KVTOPHYS(thisbounce), sg->seg_addr);
1309 1.1 soda bytes_this_page = min(sizeof(struct bt_buf), datalen);
1310 1.2 soda if (control & XS_CTL_DATA_OUT) {
1311 1.1 soda bcopy((void *)thiskv, (void *)thisbounce, bytes_this_page);
1312 1.1 soda }
1313 1.1 soda thiskv += bytes_this_page;
1314 1.1 soda datalen -= bytes_this_page;
1315 1.1 soda
1316 1.1 soda ltophys(bytes_this_page, sg->seg_len);
1317 1.1 soda sg++;
1318 1.1 soda seg++;
1319 1.1 soda }
1320 1.1 soda SC_DEBUGN(sc_link, SDEV_DB4, ("\n"));
1321 1.1 soda if (datalen) {
1322 1.1 soda printf("%s: bt_scsi_cmd, out of bufs %d of %d left.\n",
1323 1.1 soda sc->sc_dev.dv_xname, datalen, xs->datalen);
1324 1.1 soda goto badbuf;
1325 1.1 soda }
1326 1.1 soda ltophys(KVTOPHYS(ccb->scat_gath), ccb->data_addr);
1327 1.1 soda ltophys(seg * sizeof(struct bt_scat_gath), ccb->data_length);
1328 1.1 soda } else { /* No data xfer, use non S/G values */
1329 1.1 soda ltophys(0, ccb->data_addr);
1330 1.1 soda ltophys(0, ccb->data_length);
1331 1.1 soda }
1332 1.1 soda
1333 1.1 soda ccb->data_out = 0;
1334 1.1 soda ccb->data_in = 0;
1335 1.2 soda ccb->target = sc_link->scsipi_scsi.target;
1336 1.2 soda ccb->lun = sc_link->scsipi_scsi.lun;
1337 1.1 soda ltophys(KVTOPHYS(&ccb->scsi_sense), ccb->sense_ptr);
1338 1.1 soda ccb->req_sense_length = sizeof(ccb->scsi_sense);
1339 1.1 soda ccb->host_stat = 0x00;
1340 1.1 soda ccb->target_stat = 0x00;
1341 1.1 soda ccb->link_id = 0;
1342 1.1 soda ltophys(0, ccb->link_addr);
1343 1.1 soda
1344 1.1 soda s = splbio();
1345 1.1 soda bt_queue_ccb(sc, ccb);
1346 1.1 soda splx(s);
1347 1.1 soda
1348 1.1 soda /*
1349 1.1 soda * Usually return SUCCESSFULLY QUEUED
1350 1.1 soda */
1351 1.1 soda SC_DEBUG(sc_link, SDEV_DB3, ("cmd_sent\n"));
1352 1.2 soda if ((control & XS_CTL_POLL) == 0)
1353 1.1 soda return SUCCESSFULLY_QUEUED;
1354 1.1 soda
1355 1.1 soda /*
1356 1.1 soda * If we can't use interrupts, poll on completion
1357 1.1 soda */
1358 1.1 soda if (bt_poll(sc, xs, ccb->timeout)) {
1359 1.1 soda bt_timeout(ccb);
1360 1.1 soda if (bt_poll(sc, xs, ccb->timeout))
1361 1.1 soda bt_timeout(ccb);
1362 1.1 soda }
1363 1.1 soda return COMPLETE;
1364 1.1 soda
1365 1.1 soda badbuf:
1366 1.1 soda sg = ccb->scat_gath;
1367 1.1 soda while (seg) {
1368 1.1 soda thisbounce = PHYSTOKV(phystol(sg->seg_addr));
1369 1.1 soda bt_free_buf(sc, (struct bt_buf *)thisbounce);
1370 1.1 soda sg++;
1371 1.1 soda seg--;
1372 1.1 soda }
1373 1.1 soda xs->error = XS_DRIVER_STUFFUP;
1374 1.1 soda bt_free_ccb(sc, ccb);
1375 1.1 soda return TRY_AGAIN_LATER;
1376 1.1 soda }
1377 1.1 soda
1378 1.1 soda /*
1379 1.1 soda * Poll a particular unit, looking for a particular xs
1380 1.1 soda */
1381 1.1 soda int
1382 1.1 soda bt_poll(sc, xs, count)
1383 1.1 soda struct bt_softc *sc;
1384 1.2 soda struct scsipi_xfer *xs;
1385 1.1 soda int count;
1386 1.1 soda {
1387 1.1 soda int iobase = sc->sc_iobase;
1388 1.1 soda
1389 1.1 soda /* timeouts are in msec, so we loop in 1000 usec cycles */
1390 1.1 soda while (count) {
1391 1.1 soda /*
1392 1.1 soda * If we had interrupts enabled, would we
1393 1.1 soda * have got an interrupt?
1394 1.1 soda */
1395 1.1 soda if (isa_inb(iobase + BT_INTR_PORT) & BT_INTR_ANYINTR)
1396 1.1 soda btintr(sc);
1397 1.2 soda if (xs->xs_status & XS_STS_DONE)
1398 1.1 soda return 0;
1399 1.1 soda delay(1000); /* only happens in boot so ok */
1400 1.1 soda count--;
1401 1.1 soda }
1402 1.1 soda return 1;
1403 1.1 soda }
1404 1.1 soda
1405 1.1 soda void
1406 1.1 soda bt_timeout(arg)
1407 1.1 soda void *arg;
1408 1.1 soda {
1409 1.1 soda struct bt_ccb *ccb = arg;
1410 1.2 soda struct scsipi_xfer *xs = ccb->xs;
1411 1.2 soda struct scsipi_link *sc_link = xs->sc_link;
1412 1.1 soda struct bt_softc *sc = sc_link->adapter_softc;
1413 1.1 soda int s;
1414 1.1 soda
1415 1.2 soda scsi_print_addr(sc_link);
1416 1.1 soda printf("timed out");
1417 1.1 soda
1418 1.1 soda s = splbio();
1419 1.1 soda
1420 1.1 soda #ifdef BTDIAG
1421 1.1 soda /*
1422 1.1 soda * If the ccb's mbx is not free, then the board has gone Far East?
1423 1.1 soda */
1424 1.1 soda bt_collect_mbo(sc);
1425 1.1 soda if (ccb->flags & CCB_SENDING) {
1426 1.1 soda printf("%s: not taking commands!\n", sc->sc_dev.dv_xname);
1427 1.1 soda Debugger();
1428 1.1 soda }
1429 1.1 soda #endif
1430 1.1 soda
1431 1.1 soda /*
1432 1.1 soda * If it has been through before, then
1433 1.1 soda * a previous abort has failed, don't
1434 1.1 soda * try abort again
1435 1.1 soda */
1436 1.1 soda if (ccb->flags & CCB_ABORT) {
1437 1.1 soda /* abort timed out */
1438 1.1 soda printf(" AGAIN\n");
1439 1.1 soda /* XXX Must reset! */
1440 1.1 soda } else {
1441 1.1 soda /* abort the operation that has timed out */
1442 1.1 soda printf("\n");
1443 1.1 soda ccb->xs->error = XS_TIMEOUT;
1444 1.1 soda ccb->timeout = BT_ABORT_TIMEOUT;
1445 1.1 soda ccb->flags |= CCB_ABORT;
1446 1.1 soda bt_queue_ccb(sc, ccb);
1447 1.1 soda }
1448 1.1 soda
1449 1.1 soda splx(s);
1450 1.1 soda }
1451