ahb.c revision 1.7 1 1.7 thorpej /* $NetBSD: ahb.c,v 1.7 1996/12/10 21:27:48 thorpej Exp $ */
2 1.1 mycroft
3 1.1 mycroft #undef AHBDEBUG
4 1.1 mycroft #ifdef DDB
5 1.1 mycroft #define integrate
6 1.1 mycroft #else
7 1.1 mycroft #define integrate static inline
8 1.1 mycroft #endif
9 1.1 mycroft
10 1.1 mycroft /*
11 1.1 mycroft * Copyright (c) 1994, 1996 Charles M. Hannum. All rights reserved.
12 1.1 mycroft *
13 1.1 mycroft * Redistribution and use in source and binary forms, with or without
14 1.1 mycroft * modification, are permitted provided that the following conditions
15 1.1 mycroft * are met:
16 1.1 mycroft * 1. Redistributions of source code must retain the above copyright
17 1.1 mycroft * notice, this list of conditions and the following disclaimer.
18 1.1 mycroft * 2. Redistributions in binary form must reproduce the above copyright
19 1.1 mycroft * notice, this list of conditions and the following disclaimer in the
20 1.1 mycroft * documentation and/or other materials provided with the distribution.
21 1.1 mycroft * 3. All advertising materials mentioning features or use of this software
22 1.1 mycroft * must display the following acknowledgement:
23 1.1 mycroft * This product includes software developed by Charles M. Hannum.
24 1.1 mycroft * 4. The name of the author may not be used to endorse or promote products
25 1.1 mycroft * derived from this software without specific prior written permission.
26 1.1 mycroft *
27 1.1 mycroft * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
28 1.1 mycroft * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
29 1.1 mycroft * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
30 1.1 mycroft * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
31 1.1 mycroft * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
32 1.1 mycroft * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
33 1.1 mycroft * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
34 1.1 mycroft * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
35 1.1 mycroft * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
36 1.1 mycroft * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
37 1.1 mycroft */
38 1.1 mycroft
39 1.1 mycroft /*
40 1.1 mycroft * Originally written by Julian Elischer (julian (at) tfs.com)
41 1.1 mycroft * for TRW Financial Systems for use under the MACH(2.5) operating system.
42 1.1 mycroft *
43 1.1 mycroft * TRW Financial Systems, in accordance with their agreement with Carnegie
44 1.1 mycroft * Mellon University, makes this software available to CMU to distribute
45 1.1 mycroft * or use in any manner that they see fit as long as this message is kept with
46 1.1 mycroft * the software. For this reason TFS also grants any other persons or
47 1.1 mycroft * organisations permission to use or modify this software.
48 1.1 mycroft *
49 1.1 mycroft * TFS supplies this software to be publicly redistributed
50 1.1 mycroft * on the understanding that TFS is not responsible for the correct
51 1.1 mycroft * functioning of this software in any circumstances.
52 1.1 mycroft */
53 1.1 mycroft
54 1.1 mycroft #include <sys/types.h>
55 1.1 mycroft #include <sys/param.h>
56 1.1 mycroft #include <sys/systm.h>
57 1.1 mycroft #include <sys/kernel.h>
58 1.1 mycroft #include <sys/errno.h>
59 1.1 mycroft #include <sys/ioctl.h>
60 1.1 mycroft #include <sys/device.h>
61 1.1 mycroft #include <sys/malloc.h>
62 1.1 mycroft #include <sys/buf.h>
63 1.1 mycroft #include <sys/proc.h>
64 1.1 mycroft #include <sys/user.h>
65 1.1 mycroft
66 1.1 mycroft #include <machine/bus.h>
67 1.1 mycroft #include <machine/intr.h>
68 1.1 mycroft
69 1.1 mycroft #include <scsi/scsi_all.h>
70 1.1 mycroft #include <scsi/scsiconf.h>
71 1.1 mycroft
72 1.1 mycroft #include <dev/eisa/eisareg.h>
73 1.1 mycroft #include <dev/eisa/eisavar.h>
74 1.1 mycroft #include <dev/eisa/eisadevs.h>
75 1.1 mycroft #include <dev/eisa/ahbreg.h>
76 1.1 mycroft
77 1.1 mycroft #ifndef DDB
78 1.1 mycroft #define Debugger() panic("should call debugger here (aha1742.c)")
79 1.1 mycroft #endif /* ! DDB */
80 1.1 mycroft
81 1.1 mycroft #define AHB_ECB_MAX 32 /* store up to 32 ECBs at one time */
82 1.1 mycroft #define ECB_HASH_SIZE 32 /* hash table size for phystokv */
83 1.1 mycroft #define ECB_HASH_SHIFT 9
84 1.1 mycroft #define ECB_HASH(x) ((((long)(x))>>ECB_HASH_SHIFT) & (ECB_HASH_SIZE - 1))
85 1.1 mycroft
86 1.1 mycroft #define KVTOPHYS(x) vtophys(x)
87 1.1 mycroft
88 1.1 mycroft struct ahb_softc {
89 1.1 mycroft struct device sc_dev;
90 1.6 thorpej bus_space_tag_t sc_iot;
91 1.1 mycroft
92 1.6 thorpej bus_space_handle_t sc_ioh;
93 1.1 mycroft int sc_irq;
94 1.1 mycroft void *sc_ih;
95 1.1 mycroft
96 1.1 mycroft struct ahb_ecb *sc_ecbhash[ECB_HASH_SIZE];
97 1.1 mycroft TAILQ_HEAD(, ahb_ecb) sc_free_ecb;
98 1.1 mycroft struct ahb_ecb *sc_immed_ecb; /* an outstanding immediete command */
99 1.1 mycroft int sc_numecbs;
100 1.1 mycroft int sc_scsi_dev; /* our scsi id */
101 1.1 mycroft struct scsi_link sc_link;
102 1.1 mycroft };
103 1.1 mycroft
104 1.1 mycroft void ahb_send_mbox __P((struct ahb_softc *, int, struct ahb_ecb *));
105 1.1 mycroft void ahb_send_immed __P((struct ahb_softc *, u_long, struct ahb_ecb *));
106 1.1 mycroft int ahbintr __P((void *));
107 1.1 mycroft void ahb_free_ecb __P((struct ahb_softc *, struct ahb_ecb *));
108 1.1 mycroft struct ahb_ecb *ahb_get_ecb __P((struct ahb_softc *, int));
109 1.1 mycroft struct ahb_ecb *ahb_ecb_phys_kv __P((struct ahb_softc *, physaddr));
110 1.1 mycroft void ahb_done __P((struct ahb_softc *, struct ahb_ecb *));
111 1.6 thorpej int ahb_find __P((bus_space_tag_t, bus_space_handle_t, struct ahb_softc *));
112 1.1 mycroft void ahb_init __P((struct ahb_softc *));
113 1.1 mycroft void ahbminphys __P((struct buf *));
114 1.1 mycroft int ahb_scsi_cmd __P((struct scsi_xfer *));
115 1.1 mycroft int ahb_poll __P((struct ahb_softc *, struct scsi_xfer *, int));
116 1.1 mycroft void ahb_timeout __P((void *));
117 1.3 thorpej
118 1.3 thorpej integrate void ahb_reset_ecb __P((struct ahb_softc *, struct ahb_ecb *));
119 1.3 thorpej integrate void ahb_init_ecb __P((struct ahb_softc *, struct ahb_ecb *));
120 1.1 mycroft
121 1.1 mycroft struct scsi_adapter ahb_switch = {
122 1.1 mycroft ahb_scsi_cmd,
123 1.1 mycroft ahbminphys,
124 1.1 mycroft 0,
125 1.1 mycroft 0,
126 1.1 mycroft };
127 1.1 mycroft
128 1.1 mycroft /* the below structure is so we have a default dev struct for our link struct */
129 1.1 mycroft struct scsi_device ahb_dev = {
130 1.1 mycroft NULL, /* Use default error handler */
131 1.1 mycroft NULL, /* have a queue, served by this */
132 1.1 mycroft NULL, /* have no async handler */
133 1.1 mycroft NULL, /* Use default 'done' routine */
134 1.1 mycroft };
135 1.1 mycroft
136 1.1 mycroft int ahbmatch __P((struct device *, void *, void *));
137 1.1 mycroft void ahbattach __P((struct device *, struct device *, void *));
138 1.1 mycroft
139 1.1 mycroft struct cfattach ahb_ca = {
140 1.1 mycroft sizeof(struct ahb_softc), ahbmatch, ahbattach
141 1.1 mycroft };
142 1.1 mycroft
143 1.1 mycroft struct cfdriver ahb_cd = {
144 1.1 mycroft NULL, "ahb", DV_DULL
145 1.1 mycroft };
146 1.1 mycroft
147 1.1 mycroft #define AHB_ABORT_TIMEOUT 2000 /* time to wait for abort (mSec) */
148 1.1 mycroft
149 1.1 mycroft /*
150 1.1 mycroft * Check the slots looking for a board we recognise
151 1.1 mycroft * If we find one, note it's address (slot) and call
152 1.1 mycroft * the actual probe routine to check it out.
153 1.1 mycroft */
154 1.1 mycroft int
155 1.1 mycroft ahbmatch(parent, match, aux)
156 1.1 mycroft struct device *parent;
157 1.1 mycroft void *match, *aux;
158 1.1 mycroft {
159 1.1 mycroft struct eisa_attach_args *ea = aux;
160 1.6 thorpej bus_space_tag_t iot = ea->ea_iot;
161 1.6 thorpej bus_space_handle_t ioh;
162 1.1 mycroft int rv;
163 1.1 mycroft
164 1.1 mycroft /* must match one of our known ID strings */
165 1.1 mycroft if (strcmp(ea->ea_idstring, "ADP0000") &&
166 1.1 mycroft strcmp(ea->ea_idstring, "ADP0001") &&
167 1.1 mycroft strcmp(ea->ea_idstring, "ADP0002") &&
168 1.1 mycroft strcmp(ea->ea_idstring, "ADP0400"))
169 1.1 mycroft return (0);
170 1.1 mycroft
171 1.6 thorpej if (bus_space_map(iot, EISA_SLOT_ADDR(ea->ea_slot),
172 1.6 thorpej EISA_SLOT_SIZE, 0, &ioh))
173 1.1 mycroft return (0);
174 1.1 mycroft
175 1.6 thorpej rv = !ahb_find(iot, ioh, NULL);
176 1.1 mycroft
177 1.6 thorpej bus_space_unmap(iot, ioh, EISA_SLOT_SIZE);
178 1.1 mycroft
179 1.1 mycroft return (rv);
180 1.1 mycroft }
181 1.1 mycroft
182 1.1 mycroft /*
183 1.1 mycroft * Attach all the sub-devices we can find
184 1.1 mycroft */
185 1.1 mycroft void
186 1.1 mycroft ahbattach(parent, self, aux)
187 1.1 mycroft struct device *parent, *self;
188 1.1 mycroft void *aux;
189 1.1 mycroft {
190 1.1 mycroft struct eisa_attach_args *ea = aux;
191 1.1 mycroft struct ahb_softc *sc = (void *)self;
192 1.6 thorpej bus_space_tag_t iot = ea->ea_iot;
193 1.6 thorpej bus_space_handle_t ioh;
194 1.1 mycroft eisa_chipset_tag_t ec = ea->ea_ec;
195 1.1 mycroft eisa_intr_handle_t ih;
196 1.1 mycroft const char *model, *intrstr;
197 1.1 mycroft
198 1.1 mycroft if (!strcmp(ea->ea_idstring, "ADP0000"))
199 1.1 mycroft model = EISA_PRODUCT_ADP0000;
200 1.1 mycroft else if (!strcmp(ea->ea_idstring, "ADP0001"))
201 1.1 mycroft model = EISA_PRODUCT_ADP0001;
202 1.1 mycroft else if (!strcmp(ea->ea_idstring, "ADP0002"))
203 1.1 mycroft model = EISA_PRODUCT_ADP0002;
204 1.1 mycroft else if (!strcmp(ea->ea_idstring, "ADP0400"))
205 1.1 mycroft model = EISA_PRODUCT_ADP0400;
206 1.1 mycroft else
207 1.1 mycroft model = "unknown model!";
208 1.5 christos printf(": %s\n", model);
209 1.1 mycroft
210 1.6 thorpej if (bus_space_map(iot, EISA_SLOT_ADDR(ea->ea_slot),
211 1.6 thorpej EISA_SLOT_SIZE, 0, &ioh))
212 1.1 mycroft panic("ahbattach: could not map I/O addresses");
213 1.1 mycroft
214 1.6 thorpej sc->sc_iot = iot;
215 1.1 mycroft sc->sc_ioh = ioh;
216 1.6 thorpej if (ahb_find(iot, ioh, sc))
217 1.1 mycroft panic("ahbattach: ahb_find failed!");
218 1.1 mycroft
219 1.1 mycroft ahb_init(sc);
220 1.1 mycroft TAILQ_INIT(&sc->sc_free_ecb);
221 1.1 mycroft
222 1.1 mycroft /*
223 1.1 mycroft * fill in the prototype scsi_link.
224 1.1 mycroft */
225 1.1 mycroft sc->sc_link.channel = SCSI_CHANNEL_ONLY_ONE;
226 1.1 mycroft sc->sc_link.adapter_softc = sc;
227 1.1 mycroft sc->sc_link.adapter_target = sc->sc_scsi_dev;
228 1.1 mycroft sc->sc_link.adapter = &ahb_switch;
229 1.1 mycroft sc->sc_link.device = &ahb_dev;
230 1.1 mycroft sc->sc_link.openings = 4;
231 1.7 thorpej sc->sc_link.max_target = 7;
232 1.1 mycroft
233 1.1 mycroft if (eisa_intr_map(ec, sc->sc_irq, &ih)) {
234 1.5 christos printf("%s: couldn't map interrupt (%d)\n",
235 1.1 mycroft sc->sc_dev.dv_xname, sc->sc_irq);
236 1.1 mycroft return;
237 1.1 mycroft }
238 1.1 mycroft intrstr = eisa_intr_string(ec, ih);
239 1.1 mycroft sc->sc_ih = eisa_intr_establish(ec, ih, IST_LEVEL, IPL_BIO,
240 1.1 mycroft ahbintr, sc);
241 1.1 mycroft if (sc->sc_ih == NULL) {
242 1.5 christos printf("%s: couldn't establish interrupt",
243 1.1 mycroft sc->sc_dev.dv_xname);
244 1.1 mycroft if (intrstr != NULL)
245 1.5 christos printf(" at %s", intrstr);
246 1.5 christos printf("\n");
247 1.1 mycroft return;
248 1.1 mycroft }
249 1.1 mycroft if (intrstr != NULL)
250 1.5 christos printf("%s: interrupting at %s\n", sc->sc_dev.dv_xname,
251 1.1 mycroft intrstr);
252 1.1 mycroft
253 1.1 mycroft /*
254 1.1 mycroft * ask the adapter what subunits are present
255 1.1 mycroft */
256 1.1 mycroft config_found(self, &sc->sc_link, scsiprint);
257 1.1 mycroft }
258 1.1 mycroft
259 1.1 mycroft /*
260 1.1 mycroft * Function to send a command out through a mailbox
261 1.1 mycroft */
262 1.1 mycroft void
263 1.1 mycroft ahb_send_mbox(sc, opcode, ecb)
264 1.1 mycroft struct ahb_softc *sc;
265 1.1 mycroft int opcode;
266 1.1 mycroft struct ahb_ecb *ecb;
267 1.1 mycroft {
268 1.6 thorpej bus_space_tag_t iot = sc->sc_iot;
269 1.6 thorpej bus_space_handle_t ioh = sc->sc_ioh;
270 1.1 mycroft int wait = 300; /* 1ms should be enough */
271 1.1 mycroft
272 1.1 mycroft while (--wait) {
273 1.6 thorpej if ((bus_space_read_1(iot, ioh, G2STAT) & (G2STAT_BUSY | G2STAT_MBOX_EMPTY))
274 1.1 mycroft == (G2STAT_MBOX_EMPTY))
275 1.1 mycroft break;
276 1.1 mycroft delay(10);
277 1.1 mycroft }
278 1.1 mycroft if (!wait) {
279 1.5 christos printf("%s: board not responding\n", sc->sc_dev.dv_xname);
280 1.1 mycroft Debugger();
281 1.1 mycroft }
282 1.1 mycroft
283 1.6 thorpej bus_space_write_4(iot, ioh, MBOXOUT0, KVTOPHYS(ecb)); /* don't know this will work */
284 1.6 thorpej bus_space_write_1(iot, ioh, ATTN, opcode | ecb->xs->sc_link->target);
285 1.1 mycroft
286 1.1 mycroft if ((ecb->xs->flags & SCSI_POLL) == 0)
287 1.1 mycroft timeout(ahb_timeout, ecb, (ecb->timeout * hz) / 1000);
288 1.1 mycroft }
289 1.1 mycroft
290 1.1 mycroft /*
291 1.1 mycroft * Function to send an immediate type command to the adapter
292 1.1 mycroft */
293 1.1 mycroft void
294 1.1 mycroft ahb_send_immed(sc, cmd, ecb)
295 1.1 mycroft struct ahb_softc *sc;
296 1.1 mycroft u_long cmd;
297 1.1 mycroft struct ahb_ecb *ecb;
298 1.1 mycroft {
299 1.6 thorpej bus_space_tag_t iot = sc->sc_iot;
300 1.6 thorpej bus_space_handle_t ioh = sc->sc_ioh;
301 1.1 mycroft int wait = 100; /* 1 ms enough? */
302 1.1 mycroft
303 1.1 mycroft while (--wait) {
304 1.6 thorpej if ((bus_space_read_1(iot, ioh, G2STAT) & (G2STAT_BUSY | G2STAT_MBOX_EMPTY))
305 1.1 mycroft == (G2STAT_MBOX_EMPTY))
306 1.1 mycroft break;
307 1.1 mycroft delay(10);
308 1.1 mycroft }
309 1.1 mycroft if (!wait) {
310 1.5 christos printf("%s: board not responding\n", sc->sc_dev.dv_xname);
311 1.1 mycroft Debugger();
312 1.1 mycroft }
313 1.1 mycroft
314 1.6 thorpej bus_space_write_4(iot, ioh, MBOXOUT0, cmd); /* don't know this will work */
315 1.6 thorpej bus_space_write_1(iot, ioh, G2CNTRL, G2CNTRL_SET_HOST_READY);
316 1.6 thorpej bus_space_write_1(iot, ioh, ATTN, OP_IMMED | ecb->xs->sc_link->target);
317 1.1 mycroft
318 1.1 mycroft if ((ecb->xs->flags & SCSI_POLL) == 0)
319 1.1 mycroft timeout(ahb_timeout, ecb, (ecb->timeout * hz) / 1000);
320 1.1 mycroft }
321 1.1 mycroft
322 1.1 mycroft /*
323 1.1 mycroft * Catch an interrupt from the adaptor
324 1.1 mycroft */
325 1.1 mycroft int
326 1.1 mycroft ahbintr(arg)
327 1.1 mycroft void *arg;
328 1.1 mycroft {
329 1.1 mycroft struct ahb_softc *sc = arg;
330 1.6 thorpej bus_space_tag_t iot = sc->sc_iot;
331 1.6 thorpej bus_space_handle_t ioh = sc->sc_ioh;
332 1.1 mycroft struct ahb_ecb *ecb;
333 1.1 mycroft u_char ahbstat;
334 1.1 mycroft u_long mboxval;
335 1.1 mycroft
336 1.1 mycroft #ifdef AHBDEBUG
337 1.5 christos printf("%s: ahbintr ", sc->sc_dev.dv_xname);
338 1.1 mycroft #endif /* AHBDEBUG */
339 1.1 mycroft
340 1.6 thorpej if ((bus_space_read_1(iot, ioh, G2STAT) & G2STAT_INT_PEND) == 0)
341 1.1 mycroft return 0;
342 1.1 mycroft
343 1.1 mycroft for (;;) {
344 1.1 mycroft /*
345 1.1 mycroft * First get all the information and then
346 1.1 mycroft * acknowlege the interrupt
347 1.1 mycroft */
348 1.6 thorpej ahbstat = bus_space_read_1(iot, ioh, G2INTST);
349 1.6 thorpej mboxval = bus_space_read_4(iot, ioh, MBOXIN0);
350 1.6 thorpej bus_space_write_1(iot, ioh, G2CNTRL, G2CNTRL_CLEAR_EISA_INT);
351 1.1 mycroft
352 1.1 mycroft #ifdef AHBDEBUG
353 1.5 christos printf("status = 0x%x ", ahbstat);
354 1.1 mycroft #endif /* AHBDEBUG */
355 1.1 mycroft
356 1.1 mycroft /*
357 1.1 mycroft * Process the completed operation
358 1.1 mycroft */
359 1.1 mycroft switch (ahbstat & G2INTST_INT_STAT) {
360 1.1 mycroft case AHB_ECB_OK:
361 1.1 mycroft case AHB_ECB_RECOVERED:
362 1.1 mycroft case AHB_ECB_ERR:
363 1.1 mycroft ecb = ahb_ecb_phys_kv(sc, mboxval);
364 1.1 mycroft if (!ecb) {
365 1.5 christos printf("%s: BAD ECB RETURNED!\n",
366 1.1 mycroft sc->sc_dev.dv_xname);
367 1.1 mycroft goto next; /* whatever it was, it'll timeout */
368 1.1 mycroft }
369 1.1 mycroft break;
370 1.1 mycroft
371 1.1 mycroft case AHB_IMMED_ERR:
372 1.1 mycroft ecb = sc->sc_immed_ecb;
373 1.1 mycroft sc->sc_immed_ecb = 0;
374 1.1 mycroft ecb->flags |= ECB_IMMED_FAIL;
375 1.1 mycroft break;
376 1.1 mycroft
377 1.1 mycroft case AHB_IMMED_OK:
378 1.1 mycroft ecb = sc->sc_immed_ecb;
379 1.1 mycroft sc->sc_immed_ecb = 0;
380 1.1 mycroft break;
381 1.1 mycroft
382 1.1 mycroft default:
383 1.5 christos printf("%s: unexpected interrupt %x\n",
384 1.1 mycroft sc->sc_dev.dv_xname, ahbstat);
385 1.1 mycroft goto next;
386 1.1 mycroft }
387 1.1 mycroft
388 1.1 mycroft untimeout(ahb_timeout, ecb);
389 1.1 mycroft ahb_done(sc, ecb);
390 1.1 mycroft
391 1.1 mycroft next:
392 1.6 thorpej if ((bus_space_read_1(iot, ioh, G2STAT) & G2STAT_INT_PEND) == 0)
393 1.1 mycroft return 1;
394 1.1 mycroft }
395 1.1 mycroft }
396 1.1 mycroft
397 1.1 mycroft integrate void
398 1.1 mycroft ahb_reset_ecb(sc, ecb)
399 1.1 mycroft struct ahb_softc *sc;
400 1.1 mycroft struct ahb_ecb *ecb;
401 1.1 mycroft {
402 1.1 mycroft
403 1.1 mycroft ecb->flags = 0;
404 1.1 mycroft }
405 1.1 mycroft
406 1.1 mycroft /*
407 1.1 mycroft * A ecb (and hence a mbx-out is put onto the
408 1.1 mycroft * free list.
409 1.1 mycroft */
410 1.1 mycroft void
411 1.1 mycroft ahb_free_ecb(sc, ecb)
412 1.1 mycroft struct ahb_softc *sc;
413 1.1 mycroft struct ahb_ecb *ecb;
414 1.1 mycroft {
415 1.1 mycroft int s;
416 1.1 mycroft
417 1.1 mycroft s = splbio();
418 1.1 mycroft
419 1.1 mycroft ahb_reset_ecb(sc, ecb);
420 1.1 mycroft TAILQ_INSERT_HEAD(&sc->sc_free_ecb, ecb, chain);
421 1.1 mycroft
422 1.1 mycroft /*
423 1.1 mycroft * If there were none, wake anybody waiting for one to come free,
424 1.1 mycroft * starting with queued entries.
425 1.1 mycroft */
426 1.1 mycroft if (ecb->chain.tqe_next == 0)
427 1.1 mycroft wakeup(&sc->sc_free_ecb);
428 1.1 mycroft
429 1.1 mycroft splx(s);
430 1.1 mycroft }
431 1.1 mycroft
432 1.1 mycroft integrate void
433 1.1 mycroft ahb_init_ecb(sc, ecb)
434 1.1 mycroft struct ahb_softc *sc;
435 1.1 mycroft struct ahb_ecb *ecb;
436 1.1 mycroft {
437 1.1 mycroft int hashnum;
438 1.1 mycroft
439 1.1 mycroft bzero(ecb, sizeof(struct ahb_ecb));
440 1.1 mycroft /*
441 1.1 mycroft * put in the phystokv hash table
442 1.1 mycroft * Never gets taken out.
443 1.1 mycroft */
444 1.1 mycroft ecb->hashkey = KVTOPHYS(ecb);
445 1.1 mycroft hashnum = ECB_HASH(ecb->hashkey);
446 1.1 mycroft ecb->nexthash = sc->sc_ecbhash[hashnum];
447 1.1 mycroft sc->sc_ecbhash[hashnum] = ecb;
448 1.1 mycroft ahb_reset_ecb(sc, ecb);
449 1.1 mycroft }
450 1.1 mycroft
451 1.1 mycroft /*
452 1.1 mycroft * Get a free ecb
453 1.1 mycroft *
454 1.1 mycroft * If there are none, see if we can allocate a new one. If so, put it in the
455 1.1 mycroft * hash table too otherwise either return an error or sleep.
456 1.1 mycroft */
457 1.1 mycroft struct ahb_ecb *
458 1.1 mycroft ahb_get_ecb(sc, flags)
459 1.1 mycroft struct ahb_softc *sc;
460 1.1 mycroft int flags;
461 1.1 mycroft {
462 1.1 mycroft struct ahb_ecb *ecb;
463 1.1 mycroft int s;
464 1.1 mycroft
465 1.1 mycroft s = splbio();
466 1.1 mycroft
467 1.1 mycroft /*
468 1.1 mycroft * If we can and have to, sleep waiting for one to come free
469 1.1 mycroft * but only if we can't allocate a new one.
470 1.1 mycroft */
471 1.1 mycroft for (;;) {
472 1.1 mycroft ecb = sc->sc_free_ecb.tqh_first;
473 1.1 mycroft if (ecb) {
474 1.1 mycroft TAILQ_REMOVE(&sc->sc_free_ecb, ecb, chain);
475 1.1 mycroft break;
476 1.1 mycroft }
477 1.1 mycroft if (sc->sc_numecbs < AHB_ECB_MAX) {
478 1.1 mycroft ecb = (struct ahb_ecb *) malloc(sizeof(struct ahb_ecb),
479 1.1 mycroft M_TEMP, M_NOWAIT);
480 1.1 mycroft if (!ecb) {
481 1.5 christos printf("%s: can't malloc ecb\n",
482 1.1 mycroft sc->sc_dev.dv_xname);
483 1.1 mycroft goto out;
484 1.1 mycroft }
485 1.1 mycroft ahb_init_ecb(sc, ecb);
486 1.1 mycroft sc->sc_numecbs++;
487 1.1 mycroft break;
488 1.1 mycroft }
489 1.1 mycroft if ((flags & SCSI_NOSLEEP) != 0)
490 1.1 mycroft goto out;
491 1.1 mycroft tsleep(&sc->sc_free_ecb, PRIBIO, "ahbecb", 0);
492 1.1 mycroft }
493 1.1 mycroft
494 1.1 mycroft ecb->flags |= ECB_ALLOC;
495 1.1 mycroft
496 1.1 mycroft out:
497 1.1 mycroft splx(s);
498 1.1 mycroft return ecb;
499 1.1 mycroft }
500 1.1 mycroft
501 1.1 mycroft /*
502 1.1 mycroft * given a physical address, find the ecb that it corresponds to.
503 1.1 mycroft */
504 1.1 mycroft struct ahb_ecb *
505 1.1 mycroft ahb_ecb_phys_kv(sc, ecb_phys)
506 1.1 mycroft struct ahb_softc *sc;
507 1.1 mycroft physaddr ecb_phys;
508 1.1 mycroft {
509 1.1 mycroft int hashnum = ECB_HASH(ecb_phys);
510 1.1 mycroft struct ahb_ecb *ecb = sc->sc_ecbhash[hashnum];
511 1.1 mycroft
512 1.1 mycroft while (ecb) {
513 1.1 mycroft if (ecb->hashkey == ecb_phys)
514 1.1 mycroft break;
515 1.1 mycroft ecb = ecb->nexthash;
516 1.1 mycroft }
517 1.1 mycroft return ecb;
518 1.1 mycroft }
519 1.1 mycroft
520 1.1 mycroft /*
521 1.1 mycroft * We have a ecb which has been processed by the adaptor, now we look to see
522 1.1 mycroft * how the operation went.
523 1.1 mycroft */
524 1.1 mycroft void
525 1.1 mycroft ahb_done(sc, ecb)
526 1.1 mycroft struct ahb_softc *sc;
527 1.1 mycroft struct ahb_ecb *ecb;
528 1.1 mycroft {
529 1.1 mycroft struct scsi_sense_data *s1, *s2;
530 1.1 mycroft struct scsi_xfer *xs = ecb->xs;
531 1.1 mycroft
532 1.1 mycroft SC_DEBUG(xs->sc_link, SDEV_DB2, ("ahb_done\n"));
533 1.1 mycroft /*
534 1.1 mycroft * Otherwise, put the results of the operation
535 1.1 mycroft * into the xfer and call whoever started it
536 1.1 mycroft */
537 1.1 mycroft if ((ecb->flags & ECB_ALLOC) == 0) {
538 1.5 christos printf("%s: exiting ecb not allocated!\n", sc->sc_dev.dv_xname);
539 1.1 mycroft Debugger();
540 1.1 mycroft }
541 1.1 mycroft if (ecb->flags & ECB_IMMED) {
542 1.1 mycroft if (ecb->flags & ECB_IMMED_FAIL)
543 1.1 mycroft xs->error = XS_DRIVER_STUFFUP;
544 1.1 mycroft goto done;
545 1.1 mycroft }
546 1.1 mycroft if (xs->error == XS_NOERROR) {
547 1.1 mycroft if (ecb->ecb_status.host_stat != HS_OK) {
548 1.1 mycroft switch (ecb->ecb_status.host_stat) {
549 1.1 mycroft case HS_TIMED_OUT: /* No response */
550 1.1 mycroft xs->error = XS_SELTIMEOUT;
551 1.1 mycroft break;
552 1.1 mycroft default: /* Other scsi protocol messes */
553 1.5 christos printf("%s: host_stat %x\n",
554 1.1 mycroft sc->sc_dev.dv_xname, ecb->ecb_status.host_stat);
555 1.1 mycroft xs->error = XS_DRIVER_STUFFUP;
556 1.1 mycroft }
557 1.1 mycroft } else if (ecb->ecb_status.target_stat != SCSI_OK) {
558 1.1 mycroft switch (ecb->ecb_status.target_stat) {
559 1.1 mycroft case SCSI_CHECK:
560 1.1 mycroft s1 = &ecb->ecb_sense;
561 1.1 mycroft s2 = &xs->sense;
562 1.1 mycroft *s2 = *s1;
563 1.1 mycroft xs->error = XS_SENSE;
564 1.1 mycroft break;
565 1.1 mycroft case SCSI_BUSY:
566 1.1 mycroft xs->error = XS_BUSY;
567 1.1 mycroft break;
568 1.1 mycroft default:
569 1.5 christos printf("%s: target_stat %x\n",
570 1.1 mycroft sc->sc_dev.dv_xname, ecb->ecb_status.target_stat);
571 1.1 mycroft xs->error = XS_DRIVER_STUFFUP;
572 1.1 mycroft }
573 1.1 mycroft } else
574 1.1 mycroft xs->resid = 0;
575 1.1 mycroft }
576 1.1 mycroft done:
577 1.1 mycroft ahb_free_ecb(sc, ecb);
578 1.1 mycroft xs->flags |= ITSDONE;
579 1.1 mycroft scsi_done(xs);
580 1.1 mycroft }
581 1.1 mycroft
582 1.1 mycroft /*
583 1.1 mycroft * Start the board, ready for normal operation
584 1.1 mycroft */
585 1.1 mycroft int
586 1.6 thorpej ahb_find(iot, ioh, sc)
587 1.6 thorpej bus_space_tag_t iot;
588 1.6 thorpej bus_space_handle_t ioh;
589 1.1 mycroft struct ahb_softc *sc;
590 1.1 mycroft {
591 1.1 mycroft u_char intdef;
592 1.1 mycroft int i, irq, busid;
593 1.1 mycroft int wait = 1000; /* 1 sec enough? */
594 1.1 mycroft
595 1.6 thorpej bus_space_write_1(iot, ioh, PORTADDR, PORTADDR_ENHANCED);
596 1.1 mycroft
597 1.1 mycroft #define NO_NO 1
598 1.1 mycroft #ifdef NO_NO
599 1.1 mycroft /*
600 1.1 mycroft * reset board, If it doesn't respond, assume
601 1.1 mycroft * that it's not there.. good for the probe
602 1.1 mycroft */
603 1.6 thorpej bus_space_write_1(iot, ioh, G2CNTRL, G2CNTRL_HARD_RESET);
604 1.1 mycroft delay(1000);
605 1.6 thorpej bus_space_write_1(iot, ioh, G2CNTRL, 0);
606 1.1 mycroft delay(10000);
607 1.1 mycroft while (--wait) {
608 1.6 thorpej if ((bus_space_read_1(iot, ioh, G2STAT) & G2STAT_BUSY) == 0)
609 1.1 mycroft break;
610 1.1 mycroft delay(1000);
611 1.1 mycroft }
612 1.1 mycroft if (!wait) {
613 1.1 mycroft #ifdef AHBDEBUG
614 1.5 christos printf("ahb_find: No answer from aha1742 board\n");
615 1.1 mycroft #endif /* AHBDEBUG */
616 1.1 mycroft return ENXIO;
617 1.1 mycroft }
618 1.6 thorpej i = bus_space_read_1(iot, ioh, MBOXIN0);
619 1.1 mycroft if (i) {
620 1.5 christos printf("self test failed, val = 0x%x\n", i);
621 1.1 mycroft return EIO;
622 1.1 mycroft }
623 1.1 mycroft
624 1.1 mycroft /* Set it again, just to be sure. */
625 1.6 thorpej bus_space_write_1(iot, ioh, PORTADDR, PORTADDR_ENHANCED);
626 1.1 mycroft #endif
627 1.1 mycroft
628 1.6 thorpej while (bus_space_read_1(iot, ioh, G2STAT) & G2STAT_INT_PEND) {
629 1.5 christos printf(".");
630 1.6 thorpej bus_space_write_1(iot, ioh, G2CNTRL, G2CNTRL_CLEAR_EISA_INT);
631 1.1 mycroft delay(10000);
632 1.1 mycroft }
633 1.1 mycroft
634 1.6 thorpej intdef = bus_space_read_1(iot, ioh, INTDEF);
635 1.1 mycroft switch (intdef & 0x07) {
636 1.1 mycroft case INT9:
637 1.1 mycroft irq = 9;
638 1.1 mycroft break;
639 1.1 mycroft case INT10:
640 1.1 mycroft irq = 10;
641 1.1 mycroft break;
642 1.1 mycroft case INT11:
643 1.1 mycroft irq = 11;
644 1.1 mycroft break;
645 1.1 mycroft case INT12:
646 1.1 mycroft irq = 12;
647 1.1 mycroft break;
648 1.1 mycroft case INT14:
649 1.1 mycroft irq = 14;
650 1.1 mycroft break;
651 1.1 mycroft case INT15:
652 1.1 mycroft irq = 15;
653 1.1 mycroft break;
654 1.1 mycroft default:
655 1.5 christos printf("illegal int setting %x\n", intdef);
656 1.1 mycroft return EIO;
657 1.1 mycroft }
658 1.1 mycroft
659 1.6 thorpej bus_space_write_1(iot, ioh, INTDEF, (intdef | INTEN)); /* make sure we can interrupt */
660 1.1 mycroft
661 1.1 mycroft /* who are we on the scsi bus? */
662 1.6 thorpej busid = (bus_space_read_1(iot, ioh, SCSIDEF) & HSCSIID);
663 1.1 mycroft
664 1.1 mycroft /* if we want to fill in softc, do so now */
665 1.1 mycroft if (sc != NULL) {
666 1.1 mycroft sc->sc_irq = irq;
667 1.1 mycroft sc->sc_scsi_dev = busid;
668 1.1 mycroft }
669 1.1 mycroft
670 1.1 mycroft /*
671 1.1 mycroft * Note that we are going and return (to probe)
672 1.1 mycroft */
673 1.1 mycroft return 0;
674 1.1 mycroft }
675 1.1 mycroft
676 1.1 mycroft void
677 1.1 mycroft ahb_init(sc)
678 1.1 mycroft struct ahb_softc *sc;
679 1.1 mycroft {
680 1.1 mycroft
681 1.1 mycroft }
682 1.1 mycroft
683 1.1 mycroft void
684 1.1 mycroft ahbminphys(bp)
685 1.1 mycroft struct buf *bp;
686 1.1 mycroft {
687 1.1 mycroft
688 1.1 mycroft if (bp->b_bcount > ((AHB_NSEG - 1) << PGSHIFT))
689 1.1 mycroft bp->b_bcount = ((AHB_NSEG - 1) << PGSHIFT);
690 1.1 mycroft minphys(bp);
691 1.1 mycroft }
692 1.1 mycroft
693 1.1 mycroft /*
694 1.1 mycroft * start a scsi operation given the command and the data address. Also needs
695 1.1 mycroft * the unit, target and lu.
696 1.1 mycroft */
697 1.1 mycroft int
698 1.1 mycroft ahb_scsi_cmd(xs)
699 1.1 mycroft struct scsi_xfer *xs;
700 1.1 mycroft {
701 1.1 mycroft struct scsi_link *sc_link = xs->sc_link;
702 1.1 mycroft struct ahb_softc *sc = sc_link->adapter_softc;
703 1.1 mycroft struct ahb_ecb *ecb;
704 1.1 mycroft struct ahb_dma_seg *sg;
705 1.1 mycroft int seg; /* scatter gather seg being worked on */
706 1.1 mycroft u_long thiskv, thisphys, nextphys;
707 1.1 mycroft int bytes_this_seg, bytes_this_page, datalen, flags;
708 1.1 mycroft int s;
709 1.1 mycroft
710 1.1 mycroft SC_DEBUG(sc_link, SDEV_DB2, ("ahb_scsi_cmd\n"));
711 1.1 mycroft /*
712 1.1 mycroft * get a ecb (mbox-out) to use. If the transfer
713 1.1 mycroft * is from a buf (possibly from interrupt time)
714 1.1 mycroft * then we can't allow it to sleep
715 1.1 mycroft */
716 1.1 mycroft flags = xs->flags;
717 1.1 mycroft if ((ecb = ahb_get_ecb(sc, flags)) == NULL) {
718 1.1 mycroft xs->error = XS_DRIVER_STUFFUP;
719 1.1 mycroft return TRY_AGAIN_LATER;
720 1.1 mycroft }
721 1.1 mycroft ecb->xs = xs;
722 1.1 mycroft ecb->timeout = xs->timeout;
723 1.1 mycroft
724 1.1 mycroft /*
725 1.1 mycroft * If it's a reset, we need to do an 'immediate'
726 1.1 mycroft * command, and store its ecb for later
727 1.1 mycroft * if there is already an immediate waiting,
728 1.1 mycroft * then WE must wait
729 1.1 mycroft */
730 1.1 mycroft if (flags & SCSI_RESET) {
731 1.1 mycroft ecb->flags |= ECB_IMMED;
732 1.1 mycroft if (sc->sc_immed_ecb)
733 1.1 mycroft return TRY_AGAIN_LATER;
734 1.1 mycroft sc->sc_immed_ecb = ecb;
735 1.1 mycroft
736 1.1 mycroft s = splbio();
737 1.1 mycroft ahb_send_immed(sc, AHB_TARG_RESET, ecb);
738 1.1 mycroft splx(s);
739 1.1 mycroft
740 1.1 mycroft if ((flags & SCSI_POLL) == 0)
741 1.1 mycroft return SUCCESSFULLY_QUEUED;
742 1.1 mycroft
743 1.1 mycroft /*
744 1.1 mycroft * If we can't use interrupts, poll on completion
745 1.1 mycroft */
746 1.1 mycroft if (ahb_poll(sc, xs, ecb->timeout))
747 1.1 mycroft ahb_timeout(ecb);
748 1.1 mycroft return COMPLETE;
749 1.1 mycroft }
750 1.1 mycroft
751 1.1 mycroft /*
752 1.1 mycroft * Put all the arguments for the xfer in the ecb
753 1.1 mycroft */
754 1.1 mycroft ecb->opcode = ECB_SCSI_OP;
755 1.1 mycroft ecb->opt1 = ECB_SES /*| ECB_DSB*/ | ECB_ARS;
756 1.1 mycroft ecb->opt2 = sc_link->lun | ECB_NRB;
757 1.2 mycroft bcopy(xs->cmd, &ecb->scsi_cmd, ecb->scsi_cmd_length = xs->cmdlen);
758 1.1 mycroft ecb->sense_ptr = KVTOPHYS(&ecb->ecb_sense);
759 1.1 mycroft ecb->req_sense_length = sizeof(ecb->ecb_sense);
760 1.1 mycroft ecb->status = KVTOPHYS(&ecb->ecb_status);
761 1.1 mycroft ecb->ecb_status.host_stat = 0x00;
762 1.1 mycroft ecb->ecb_status.target_stat = 0x00;
763 1.1 mycroft
764 1.1 mycroft if (xs->datalen) {
765 1.1 mycroft sg = ecb->ahb_dma;
766 1.1 mycroft seg = 0;
767 1.1 mycroft #ifdef TFS
768 1.1 mycroft if (flags & SCSI_DATA_UIO) {
769 1.4 christos struct iovec *iovp = ((struct uio *) xs->data)->uio_iov;
770 1.1 mycroft datalen = ((struct uio *) xs->data)->uio_iovcnt;
771 1.1 mycroft xs->datalen = 0;
772 1.1 mycroft while (datalen && seg < AHB_NSEG) {
773 1.1 mycroft sg->seg_addr = (physaddr)iovp->iov_base;
774 1.1 mycroft sg->seg_len = iovp->iov_len;
775 1.1 mycroft xs->datalen += iovp->iov_len;
776 1.1 mycroft SC_DEBUGN(sc_link, SDEV_DB4, ("(0x%x@0x%x)",
777 1.1 mycroft iovp->iov_len, iovp->iov_base));
778 1.1 mycroft sg++;
779 1.1 mycroft iovp++;
780 1.1 mycroft seg++;
781 1.1 mycroft datalen--;
782 1.1 mycroft }
783 1.1 mycroft }
784 1.1 mycroft else
785 1.1 mycroft #endif /*TFS */
786 1.1 mycroft {
787 1.1 mycroft /*
788 1.1 mycroft * Set up the scatter gather block
789 1.1 mycroft */
790 1.1 mycroft SC_DEBUG(sc_link, SDEV_DB4,
791 1.1 mycroft ("%d @0x%x:- ", xs->datalen, xs->data));
792 1.1 mycroft datalen = xs->datalen;
793 1.1 mycroft thiskv = (long) xs->data;
794 1.1 mycroft thisphys = KVTOPHYS(thiskv);
795 1.1 mycroft
796 1.1 mycroft while (datalen && seg < AHB_NSEG) {
797 1.1 mycroft bytes_this_seg = 0;
798 1.1 mycroft
799 1.1 mycroft /* put in the base address */
800 1.1 mycroft sg->seg_addr = thisphys;
801 1.1 mycroft
802 1.1 mycroft SC_DEBUGN(sc_link, SDEV_DB4, ("0x%x", thisphys));
803 1.1 mycroft
804 1.1 mycroft /* do it at least once */
805 1.1 mycroft nextphys = thisphys;
806 1.1 mycroft while (datalen && thisphys == nextphys) {
807 1.1 mycroft /*
808 1.1 mycroft * This page is contiguous (physically)
809 1.1 mycroft * with the the last, just extend the
810 1.1 mycroft * length
811 1.1 mycroft */
812 1.1 mycroft /* how far to the end of the page */
813 1.1 mycroft nextphys = (thisphys & ~PGOFSET) + NBPG;
814 1.1 mycroft bytes_this_page = nextphys - thisphys;
815 1.1 mycroft /**** or the data ****/
816 1.1 mycroft bytes_this_page = min(bytes_this_page,
817 1.1 mycroft datalen);
818 1.1 mycroft bytes_this_seg += bytes_this_page;
819 1.1 mycroft datalen -= bytes_this_page;
820 1.1 mycroft
821 1.1 mycroft /* get more ready for the next page */
822 1.1 mycroft thiskv = (thiskv & ~PGOFSET) + NBPG;
823 1.1 mycroft if (datalen)
824 1.1 mycroft thisphys = KVTOPHYS(thiskv);
825 1.1 mycroft }
826 1.1 mycroft /*
827 1.1 mycroft * next page isn't contiguous, finish the seg
828 1.1 mycroft */
829 1.1 mycroft SC_DEBUGN(sc_link, SDEV_DB4,
830 1.1 mycroft ("(0x%x)", bytes_this_seg));
831 1.1 mycroft sg->seg_len = bytes_this_seg;
832 1.1 mycroft sg++;
833 1.1 mycroft seg++;
834 1.1 mycroft }
835 1.1 mycroft }
836 1.1 mycroft /*end of iov/kv decision */
837 1.1 mycroft SC_DEBUGN(sc_link, SDEV_DB4, ("\n"));
838 1.1 mycroft if (datalen) {
839 1.1 mycroft /*
840 1.1 mycroft * there's still data, must have run out of segs!
841 1.1 mycroft */
842 1.5 christos printf("%s: ahb_scsi_cmd, more than %d dma segs\n",
843 1.1 mycroft sc->sc_dev.dv_xname, AHB_NSEG);
844 1.1 mycroft goto bad;
845 1.1 mycroft }
846 1.1 mycroft ecb->data_addr = KVTOPHYS(ecb->ahb_dma);
847 1.1 mycroft ecb->data_length = seg * sizeof(struct ahb_dma_seg);
848 1.1 mycroft ecb->opt1 |= ECB_S_G;
849 1.1 mycroft } else { /* No data xfer, use non S/G values */
850 1.1 mycroft ecb->data_addr = (physaddr)0;
851 1.1 mycroft ecb->data_length = 0;
852 1.1 mycroft }
853 1.1 mycroft ecb->link_addr = (physaddr)0;
854 1.1 mycroft
855 1.1 mycroft s = splbio();
856 1.1 mycroft ahb_send_mbox(sc, OP_START_ECB, ecb);
857 1.1 mycroft splx(s);
858 1.1 mycroft
859 1.1 mycroft /*
860 1.1 mycroft * Usually return SUCCESSFULLY QUEUED
861 1.1 mycroft */
862 1.1 mycroft if ((flags & SCSI_POLL) == 0)
863 1.1 mycroft return SUCCESSFULLY_QUEUED;
864 1.1 mycroft
865 1.1 mycroft /*
866 1.1 mycroft * If we can't use interrupts, poll on completion
867 1.1 mycroft */
868 1.1 mycroft if (ahb_poll(sc, xs, ecb->timeout)) {
869 1.1 mycroft ahb_timeout(ecb);
870 1.1 mycroft if (ahb_poll(sc, xs, ecb->timeout))
871 1.1 mycroft ahb_timeout(ecb);
872 1.1 mycroft }
873 1.1 mycroft return COMPLETE;
874 1.1 mycroft
875 1.1 mycroft bad:
876 1.1 mycroft xs->error = XS_DRIVER_STUFFUP;
877 1.1 mycroft ahb_free_ecb(sc, ecb);
878 1.1 mycroft return COMPLETE;
879 1.1 mycroft }
880 1.1 mycroft
881 1.1 mycroft /*
882 1.1 mycroft * Function to poll for command completion when in poll mode
883 1.1 mycroft */
884 1.1 mycroft int
885 1.1 mycroft ahb_poll(sc, xs, count)
886 1.1 mycroft struct ahb_softc *sc;
887 1.1 mycroft struct scsi_xfer *xs;
888 1.1 mycroft int count;
889 1.1 mycroft { /* in msec */
890 1.6 thorpej bus_space_tag_t iot = sc->sc_iot;
891 1.6 thorpej bus_space_handle_t ioh = sc->sc_ioh;
892 1.1 mycroft
893 1.1 mycroft while (count) {
894 1.1 mycroft /*
895 1.1 mycroft * If we had interrupts enabled, would we
896 1.1 mycroft * have got an interrupt?
897 1.1 mycroft */
898 1.6 thorpej if (bus_space_read_1(iot, ioh, G2STAT) & G2STAT_INT_PEND)
899 1.1 mycroft ahbintr(sc);
900 1.1 mycroft if (xs->flags & ITSDONE)
901 1.1 mycroft return 0;
902 1.1 mycroft delay(1000);
903 1.1 mycroft count--;
904 1.1 mycroft }
905 1.1 mycroft return 1;
906 1.1 mycroft }
907 1.1 mycroft
908 1.1 mycroft void
909 1.1 mycroft ahb_timeout(arg)
910 1.1 mycroft void *arg;
911 1.1 mycroft {
912 1.1 mycroft struct ahb_ecb *ecb = arg;
913 1.1 mycroft struct scsi_xfer *xs = ecb->xs;
914 1.1 mycroft struct scsi_link *sc_link = xs->sc_link;
915 1.1 mycroft struct ahb_softc *sc = sc_link->adapter_softc;
916 1.1 mycroft int s;
917 1.1 mycroft
918 1.1 mycroft sc_print_addr(sc_link);
919 1.5 christos printf("timed out");
920 1.1 mycroft
921 1.1 mycroft s = splbio();
922 1.1 mycroft
923 1.1 mycroft if (ecb->flags & ECB_IMMED) {
924 1.5 christos printf("\n");
925 1.1 mycroft ecb->flags |= ECB_IMMED_FAIL;
926 1.1 mycroft /* XXX Must reset! */
927 1.1 mycroft } else
928 1.1 mycroft
929 1.1 mycroft /*
930 1.1 mycroft * If it has been through before, then
931 1.1 mycroft * a previous abort has failed, don't
932 1.1 mycroft * try abort again
933 1.1 mycroft */
934 1.1 mycroft if (ecb->flags & ECB_ABORT) {
935 1.1 mycroft /* abort timed out */
936 1.5 christos printf(" AGAIN\n");
937 1.1 mycroft /* XXX Must reset! */
938 1.1 mycroft } else {
939 1.1 mycroft /* abort the operation that has timed out */
940 1.5 christos printf("\n");
941 1.1 mycroft ecb->xs->error = XS_TIMEOUT;
942 1.1 mycroft ecb->timeout = AHB_ABORT_TIMEOUT;
943 1.1 mycroft ecb->flags |= ECB_ABORT;
944 1.1 mycroft ahb_send_mbox(sc, OP_ABORT_ECB, ecb);
945 1.1 mycroft }
946 1.1 mycroft
947 1.1 mycroft splx(s);
948 1.1 mycroft }
949