cardbus.c revision 1.72 1 /* $NetBSD: cardbus.c,v 1.72 2006/06/04 19:27:59 christos Exp $ */
2
3 /*
4 * Copyright (c) 1997, 1998, 1999 and 2000
5 * HAYAKAWA Koichi. All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. All advertising materials mentioning features or use of this software
16 * must display the following acknowledgement:
17 * This product includes software developed by HAYAKAWA Koichi.
18 * 4. The name of the author may not be used to endorse or promote products
19 * derived from this software without specific prior written permission.
20 *
21 *
22 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
24 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
25 * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
26 * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
27 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
28 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
30 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
31 * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
32 * POSSIBILITY OF SUCH DAMAGE.
33 */
34
35 #include <sys/cdefs.h>
36 __KERNEL_RCSID(0, "$NetBSD: cardbus.c,v 1.72 2006/06/04 19:27:59 christos Exp $");
37
38 #include "opt_cardbus.h"
39
40 #include <sys/param.h>
41 #include <sys/systm.h>
42 #include <sys/device.h>
43 #include <sys/malloc.h>
44 #include <sys/kernel.h>
45 #include <sys/syslog.h>
46 #include <sys/proc.h>
47 #include <sys/reboot.h> /* for AB_* needed by bootverbose */
48
49 #include <machine/bus.h>
50
51 #include <dev/cardbus/cardbusvar.h>
52 #include <dev/pci/pcidevs.h>
53
54 #include <dev/cardbus/cardbus_exrom.h>
55
56 #include <dev/pci/pcivar.h> /* XXX */
57 #include <dev/pci/pcireg.h> /* XXX */
58
59 #include <dev/pcmcia/pcmciareg.h>
60
61 #include "locators.h"
62
63 #if defined CARDBUS_DEBUG
64 #define STATIC
65 #define DPRINTF(a) printf a
66 #else
67 #define STATIC static
68 #define DPRINTF(a)
69 #endif
70
71
72 STATIC void cardbusattach(struct device *, struct device *, void *);
73 STATIC int cardbusmatch(struct device *, struct cfdata *, void *);
74 int cardbus_rescan(struct device *, const char *, const int *);
75 void cardbus_childdetached(struct device *, struct device *);
76 static int cardbusprint(void *, const char *);
77
78 typedef void (*tuple_decode_func)(u_int8_t*, int, void*);
79
80 static int decode_tuples(u_int8_t *, int, tuple_decode_func, void*);
81 #ifdef CARDBUS_DEBUG
82 static void print_tuple(u_int8_t*, int, void*);
83 #endif
84
85 static int cardbus_read_tuples(struct cardbus_attach_args *,
86 cardbusreg_t, u_int8_t *, size_t);
87
88 static void enable_function(struct cardbus_softc *, int, int);
89 static void disable_function(struct cardbus_softc *, int);
90
91 CFATTACH_DECL2(cardbus, sizeof(struct cardbus_softc),
92 cardbusmatch, cardbusattach, NULL, NULL,
93 cardbus_rescan, cardbus_childdetached);
94
95 #ifndef __NetBSD_Version__
96 struct cfdriver cardbus_cd = {
97 NULL, "cardbus", DV_DULL
98 };
99 #endif
100
101
102 STATIC int
103 cardbusmatch(struct device *parent, struct cfdata *cf, void *aux)
104 {
105 struct cbslot_attach_args *cba = aux;
106
107 if (strcmp(cba->cba_busname, cf->cf_name)) {
108 DPRINTF(("cardbusmatch: busname differs %s <=> %s\n",
109 cba->cba_busname, cf->cf_name));
110 return (0);
111 }
112
113 return (1);
114 }
115
116 STATIC void
117 cardbusattach(struct device *parent, struct device *self, void *aux)
118 {
119 struct cardbus_softc *sc = device_private(self);
120 struct cbslot_attach_args *cba = aux;
121
122 sc->sc_bus = cba->cba_bus;
123 sc->sc_intrline = cba->cba_intrline;
124 sc->sc_cacheline = cba->cba_cacheline;
125 sc->sc_lattimer = cba->cba_lattimer;
126
127 printf(": bus %d", sc->sc_bus);
128 if (bootverbose)
129 printf(" cacheline 0x%x, lattimer 0x%x", sc->sc_cacheline,
130 sc->sc_lattimer);
131 printf("\n");
132
133 sc->sc_iot = cba->cba_iot; /* CardBus I/O space tag */
134 sc->sc_memt = cba->cba_memt; /* CardBus MEM space tag */
135 sc->sc_dmat = cba->cba_dmat; /* DMA tag */
136 sc->sc_cc = cba->cba_cc;
137 sc->sc_cf = cba->cba_cf;
138
139 #if rbus
140 sc->sc_rbus_iot = cba->cba_rbus_iot;
141 sc->sc_rbus_memt = cba->cba_rbus_memt;
142 #endif
143 }
144
145 static int
146 cardbus_read_tuples(struct cardbus_attach_args *ca, cardbusreg_t cis_ptr,
147 u_int8_t *tuples, size_t len)
148 {
149 struct cardbus_softc *sc = ca->ca_ct->ct_sc;
150 cardbus_chipset_tag_t cc = ca->ca_ct->ct_cc;
151 cardbus_function_tag_t cf = ca->ca_ct->ct_cf;
152 cardbustag_t tag = ca->ca_tag;
153 cardbusreg_t command;
154 bus_space_tag_t bar_tag;
155 bus_space_handle_t bar_memh;
156 bus_size_t bar_size;
157 bus_addr_t bar_addr;
158 cardbusreg_t reg;
159 int found = 0;
160 int cardbus_space = cis_ptr & CARDBUS_CIS_ASIMASK;
161 int i, j;
162
163 memset(tuples, 0, len);
164
165 cis_ptr = cis_ptr & CARDBUS_CIS_ADDRMASK;
166
167 switch (cardbus_space) {
168 case CARDBUS_CIS_ASI_TUPLE:
169 DPRINTF(("%s: reading CIS data from configuration space\n",
170 sc->sc_dev.dv_xname));
171 for (i = cis_ptr, j = 0; i < 0xff; i += 4) {
172 u_int32_t e = (*cf->cardbus_conf_read)(cc, tag, i);
173 tuples[j] = 0xff & e;
174 e >>= 8;
175 tuples[j + 1] = 0xff & e;
176 e >>= 8;
177 tuples[j + 2] = 0xff & e;
178 e >>= 8;
179 tuples[j + 3] = 0xff & e;
180 j += 4;
181 }
182 found++;
183 break;
184
185 case CARDBUS_CIS_ASI_BAR0:
186 case CARDBUS_CIS_ASI_BAR1:
187 case CARDBUS_CIS_ASI_BAR2:
188 case CARDBUS_CIS_ASI_BAR3:
189 case CARDBUS_CIS_ASI_BAR4:
190 case CARDBUS_CIS_ASI_BAR5:
191 case CARDBUS_CIS_ASI_ROM:
192 if (cardbus_space == CARDBUS_CIS_ASI_ROM) {
193 reg = CARDBUS_ROM_REG;
194 DPRINTF(("%s: reading CIS data from ROM\n",
195 sc->sc_dev.dv_xname));
196 } else {
197 reg = CARDBUS_BASE0_REG + (cardbus_space - 1) * 4;
198 DPRINTF(("%s: reading CIS data from BAR%d\n",
199 sc->sc_dev.dv_xname, cardbus_space - 1));
200 }
201
202 /*
203 * XXX zero register so mapreg_map doesn't get confused by old
204 * contents.
205 */
206 cardbus_conf_write(cc, cf, tag, reg, 0);
207 if (Cardbus_mapreg_map(ca->ca_ct, reg,
208 CARDBUS_MAPREG_TYPE_MEM | PCI_MAPREG_MEM_TYPE_32BIT,
209 0, &bar_tag, &bar_memh, &bar_addr, &bar_size)) {
210 printf("%s: failed to map memory\n",
211 sc->sc_dev.dv_xname);
212 return (1);
213 }
214
215 if (cardbus_space == CARDBUS_CIS_ASI_ROM) {
216 cardbusreg_t exrom;
217 int save;
218 struct cardbus_rom_image_head rom_image;
219 struct cardbus_rom_image *p;
220
221 save = splhigh();
222 /* enable rom address decoder */
223 exrom = cardbus_conf_read(cc, cf, tag, reg);
224 cardbus_conf_write(cc, cf, tag, reg, exrom | 1);
225
226 command = cardbus_conf_read(cc, cf, tag,
227 CARDBUS_COMMAND_STATUS_REG);
228 cardbus_conf_write(cc, cf, tag,
229 CARDBUS_COMMAND_STATUS_REG,
230 command | CARDBUS_COMMAND_MEM_ENABLE);
231
232 if (cardbus_read_exrom(ca->ca_memt, bar_memh,
233 &rom_image))
234 goto out;
235
236 SIMPLEQ_FOREACH(p, &rom_image, next) {
237 if (p->rom_image ==
238 CARDBUS_CIS_ASI_ROM_IMAGE(cis_ptr)) {
239 bus_space_read_region_1(p->romt,
240 p->romh, CARDBUS_CIS_ADDR(cis_ptr),
241 tuples, MIN(p->image_size, len));
242 found++;
243 break;
244 }
245 }
246 while ((p = SIMPLEQ_FIRST(&rom_image)) != NULL) {
247 SIMPLEQ_REMOVE_HEAD(&rom_image, next);
248 free(p, M_DEVBUF);
249 }
250 out:
251 exrom = cardbus_conf_read(cc, cf, tag, reg);
252 cardbus_conf_write(cc, cf, tag, reg, exrom & ~1);
253 splx(save);
254 } else {
255 command = cardbus_conf_read(cc, cf, tag,
256 CARDBUS_COMMAND_STATUS_REG);
257 cardbus_conf_write(cc, cf, tag,
258 CARDBUS_COMMAND_STATUS_REG,
259 command | CARDBUS_COMMAND_MEM_ENABLE);
260 /* XXX byte order? */
261 bus_space_read_region_1(ca->ca_memt, bar_memh,
262 cis_ptr, tuples, MIN(bar_size, len));
263 found++;
264 }
265 command = cardbus_conf_read(cc, cf, tag,
266 CARDBUS_COMMAND_STATUS_REG);
267 cardbus_conf_write(cc, cf, tag, CARDBUS_COMMAND_STATUS_REG,
268 command & ~CARDBUS_COMMAND_MEM_ENABLE);
269 cardbus_conf_write(cc, cf, tag, reg, 0);
270
271 Cardbus_mapreg_unmap(ca->ca_ct, reg, bar_tag, bar_memh,
272 bar_size);
273 break;
274
275 #ifdef DIAGNOSTIC
276 default:
277 panic("%s: bad CIS space (%d)", sc->sc_dev.dv_xname,
278 cardbus_space);
279 #endif
280 }
281 return (!found);
282 }
283
284 static void
285 parse_tuple(u_int8_t *tuple, int len, void *data)
286 {
287 struct cardbus_cis_info *cis = data;
288 char *p;
289 int i, bar_index;
290
291 switch (tuple[0]) {
292 case PCMCIA_CISTPL_MANFID:
293 if (tuple[1] != 4) {
294 DPRINTF(("%s: wrong length manufacturer id (%d)\n",
295 __func__, tuple[1]));
296 break;
297 }
298 cis->manufacturer = tuple[2] | (tuple[3] << 8);
299 cis->product = tuple[4] | (tuple[5] << 8);
300 break;
301
302 case PCMCIA_CISTPL_VERS_1:
303 memcpy(cis->cis1_info_buf, tuple + 2, tuple[1]);
304 i = 0;
305 p = cis->cis1_info_buf + 2;
306 while (i <
307 sizeof(cis->cis1_info) / sizeof(cis->cis1_info[0])) {
308 if (p >= cis->cis1_info_buf + tuple[1] || *p == '\xff')
309 break;
310 cis->cis1_info[i++] = p;
311 while (*p != '\0' && *p != '\xff')
312 p++;
313 if (*p == '\0')
314 p++;
315 }
316 break;
317
318 case PCMCIA_CISTPL_BAR:
319 if (tuple[1] != 6) {
320 DPRINTF(("%s: BAR with short length (%d)\n",
321 __func__, tuple[1]));
322 break;
323 }
324 bar_index = tuple[2] & 7;
325 if (bar_index == 0) {
326 DPRINTF(("%s: invalid ASI in BAR tuple\n", __func__));
327 break;
328 }
329 bar_index--;
330 cis->bar[bar_index].flags = tuple[2];
331 cis->bar[bar_index].size =
332 (tuple[4] << 0) |
333 (tuple[5] << 8) |
334 (tuple[6] << 16) |
335 (tuple[7] << 24);
336 break;
337
338 case PCMCIA_CISTPL_FUNCID:
339 cis->funcid = tuple[2];
340 break;
341
342 case PCMCIA_CISTPL_FUNCE:
343 switch (cis->funcid) {
344 case PCMCIA_FUNCTION_SERIAL:
345 if (tuple[1] >= 2 &&
346 /* XXX PCMCIA_TPLFE_TYPE_SERIAL_??? */
347 tuple[2] == 0) {
348 cis->funce.serial.uart_type = tuple[3] & 0x1f;
349 cis->funce.serial.uart_present = 1;
350 }
351 break;
352
353 case PCMCIA_FUNCTION_NETWORK:
354 if (tuple[1] >= 8 &&
355 tuple[2] == PCMCIA_TPLFE_TYPE_LAN_NID) {
356 if (tuple[3] >
357 sizeof(cis->funce.network.netid)) {
358 DPRINTF(("%s: unknown network id type "
359 "(len = %d)\n",
360 __func__, tuple[3]));
361 } else {
362 cis->funce.network.netid_present = 1;
363 memcpy(cis->funce.network.netid,
364 tuple + 4, tuple[3]);
365 }
366 }
367 break;
368 }
369 break;
370 }
371 }
372
373 /*
374 * int cardbus_attach_card(struct cardbus_softc *sc)
375 *
376 * This function attaches the card on the slot: turns on power,
377 * reads and analyses tuple, sets configuration index.
378 *
379 * This function returns the number of recognised device functions.
380 * If no functions are recognised, return 0.
381 */
382 int
383 cardbus_attach_card(struct cardbus_softc *sc)
384 {
385 cardbus_chipset_tag_t cc;
386 cardbus_function_tag_t cf;
387 int cdstatus;
388 static int wildcard[CARDBUSCF_NLOCS] = {
389 CARDBUSCF_FUNCTION_DEFAULT
390 };
391
392 cc = sc->sc_cc;
393 cf = sc->sc_cf;
394
395 DPRINTF(("cardbus_attach_card: cb%d start\n",
396 device_unit(&sc->sc_dev)));
397
398 /* inspect initial voltage */
399 if ((cdstatus = (*cf->cardbus_ctrl)(cc, CARDBUS_CD)) == 0) {
400 DPRINTF(("cardbusattach: no CardBus card on cb%d\n",
401 device_unit(&sc->sc_dev)));
402 return (0);
403 }
404
405 cardbus_rescan(&sc->sc_dev, "cardbus", wildcard);
406 return (1); /* XXX */
407 }
408
409 int
410 cardbus_rescan(struct device *self, const char *ifattr, const int *locators)
411 {
412 struct cardbus_softc *sc = device_private(self);
413 cardbus_chipset_tag_t cc;
414 cardbus_function_tag_t cf;
415 cardbustag_t tag;
416 cardbusreg_t id, class, cis_ptr;
417 cardbusreg_t bhlc;
418 int cdstatus;
419 int function, nfunction;
420 struct device *csc;
421 cardbus_devfunc_t ct;
422
423 cc = sc->sc_cc;
424 cf = sc->sc_cf;
425
426 /* inspect initial voltage */
427 if ((cdstatus = (*cf->cardbus_ctrl)(cc, CARDBUS_CD)) == 0) {
428 DPRINTF(("cardbusattach: no CardBus card on cb%d\n",
429 device_unit(&sc->sc_dev)));
430 return (0);
431 }
432
433 /*
434 * XXX use fake function 8 to keep power on during whole
435 * configuration.
436 */
437 enable_function(sc, cdstatus, 8);
438 function = 0;
439
440 tag = cardbus_make_tag(cc, cf, sc->sc_bus, function);
441
442 /*
443 * Wait until power comes up. Maxmum 500 ms.
444 */
445 {
446 int i;
447
448 for (i = 0; i < 5; ++i) {
449 id = cardbus_conf_read(cc, cf, tag, CARDBUS_ID_REG);
450 if (id != 0xffffffff && id != 0) {
451 break;
452 }
453 if (cold) { /* before kernel thread invoked */
454 delay(100 * 1000);
455 } else { /* thread context */
456 if (tsleep((void *)sc, PCATCH, "cardbus",
457 hz / 10) != EWOULDBLOCK) {
458 break;
459 }
460 }
461 }
462 if (i == 5) {
463 return (EIO);
464 }
465 }
466
467 bhlc = cardbus_conf_read(cc, cf, tag, CARDBUS_BHLC_REG);
468 DPRINTF(("%s bhlc 0x%08x -> ", sc->sc_dev.dv_xname, bhlc));
469 nfunction = CARDBUS_HDRTYPE_MULTIFN(bhlc) ? 8 : 1;
470
471 for (function = 0; function < nfunction; function++) {
472 struct cardbus_attach_args ca;
473 int locs[CARDBUSCF_NLOCS];
474
475 if (locators[CARDBUSCF_FUNCTION] !=
476 CARDBUSCF_FUNCTION_DEFAULT &&
477 locators[CARDBUSCF_FUNCTION] != function)
478 continue;
479
480 if (sc->sc_funcs[function])
481 continue;
482
483 tag = cardbus_make_tag(cc, cf, sc->sc_bus, function);
484
485 id = cardbus_conf_read(cc, cf, tag, CARDBUS_ID_REG);
486 class = cardbus_conf_read(cc, cf, tag, CARDBUS_CLASS_REG);
487 cis_ptr = cardbus_conf_read(cc, cf, tag, CARDBUS_CIS_REG);
488
489 /* Invalid vendor ID value? */
490 if (CARDBUS_VENDOR(id) == PCI_VENDOR_INVALID) {
491 continue;
492 }
493
494 DPRINTF(("cardbus_attach_card: "
495 "Vendor 0x%x, Product 0x%x, CIS 0x%x\n",
496 CARDBUS_VENDOR(id), CARDBUS_PRODUCT(id), cis_ptr));
497
498 enable_function(sc, cdstatus, function);
499
500 /* clean up every BAR */
501 cardbus_conf_write(cc, cf, tag, CARDBUS_BASE0_REG, 0);
502 cardbus_conf_write(cc, cf, tag, CARDBUS_BASE1_REG, 0);
503 cardbus_conf_write(cc, cf, tag, CARDBUS_BASE2_REG, 0);
504 cardbus_conf_write(cc, cf, tag, CARDBUS_BASE3_REG, 0);
505 cardbus_conf_write(cc, cf, tag, CARDBUS_BASE4_REG, 0);
506 cardbus_conf_write(cc, cf, tag, CARDBUS_BASE5_REG, 0);
507 cardbus_conf_write(cc, cf, tag, CARDBUS_ROM_REG, 0);
508
509 /* set initial latency and cacheline size */
510 bhlc = cardbus_conf_read(cc, cf, tag, CARDBUS_BHLC_REG);
511 DPRINTF(("%s func%d bhlc 0x%08x -> ", sc->sc_dev.dv_xname,
512 function, bhlc));
513 bhlc &= ~((CARDBUS_LATTIMER_MASK << CARDBUS_LATTIMER_SHIFT) |
514 (CARDBUS_CACHELINE_MASK << CARDBUS_CACHELINE_SHIFT));
515 bhlc |= (sc->sc_cacheline & CARDBUS_CACHELINE_MASK) <<
516 CARDBUS_CACHELINE_SHIFT;
517 bhlc |= (sc->sc_lattimer & CARDBUS_LATTIMER_MASK) <<
518 CARDBUS_LATTIMER_SHIFT;
519
520 cardbus_conf_write(cc, cf, tag, CARDBUS_BHLC_REG, bhlc);
521 bhlc = cardbus_conf_read(cc, cf, tag, CARDBUS_BHLC_REG);
522 DPRINTF(("0x%08x\n", bhlc));
523
524 if (CARDBUS_LATTIMER(bhlc) < 0x10) {
525 bhlc &= ~(CARDBUS_LATTIMER_MASK <<
526 CARDBUS_LATTIMER_SHIFT);
527 bhlc |= (0x10 << CARDBUS_LATTIMER_SHIFT);
528 cardbus_conf_write(cc, cf, tag,
529 CARDBUS_BHLC_REG, bhlc);
530 }
531
532 /*
533 * We need to allocate the ct here, since we might
534 * need it when reading the CIS
535 */
536 if ((ct = malloc(sizeof(struct cardbus_devfunc),
537 M_DEVBUF, M_NOWAIT)) == NULL) {
538 panic("no room for cardbus_tag");
539 }
540
541 ct->ct_cc = sc->sc_cc;
542 ct->ct_cf = sc->sc_cf;
543 ct->ct_bus = sc->sc_bus;
544 ct->ct_func = function;
545 ct->ct_sc = sc;
546 sc->sc_funcs[function] = ct;
547
548 memset(&ca, 0, sizeof(ca));
549
550 ca.ca_ct = ct;
551
552 ca.ca_iot = sc->sc_iot;
553 ca.ca_memt = sc->sc_memt;
554 ca.ca_dmat = sc->sc_dmat;
555
556 #if rbus
557 ca.ca_rbus_iot = sc->sc_rbus_iot;
558 ca.ca_rbus_memt= sc->sc_rbus_memt;
559 #endif
560
561 ca.ca_tag = tag;
562 ca.ca_bus = sc->sc_bus;
563 ca.ca_function = function;
564 ca.ca_id = id;
565 ca.ca_class = class;
566
567 ca.ca_intrline = sc->sc_intrline;
568
569 if (cis_ptr != 0) {
570 #define TUPLESIZE 2048
571 u_int8_t *tuple = malloc(TUPLESIZE, M_DEVBUF, M_WAITOK);
572 if (cardbus_read_tuples(&ca, cis_ptr,
573 tuple, TUPLESIZE)) {
574 printf("cardbus_attach_card: "
575 "failed to read CIS\n");
576 } else {
577 #ifdef CARDBUS_DEBUG
578 decode_tuples(tuple, TUPLESIZE,
579 print_tuple, NULL);
580 #endif
581 decode_tuples(tuple, TUPLESIZE,
582 parse_tuple, &ca.ca_cis);
583 }
584 free(tuple, M_DEVBUF);
585 }
586
587 locs[CARDBUSCF_FUNCTION] = function;
588
589 if ((csc = config_found_sm_loc((void *)sc, "cardbus", locs,
590 &ca, cardbusprint, config_stdsubmatch)) == NULL) {
591 /* do not match */
592 disable_function(sc, function);
593 sc->sc_funcs[function] = NULL;
594 free(ct, M_DEVBUF);
595 } else {
596 /* found */
597 ct->ct_device = csc;
598 }
599 }
600 /*
601 * XXX power down pseudo function 8 (this will power down the card
602 * if no functions were attached).
603 */
604 disable_function(sc, 8);
605
606 return (0);
607 }
608
609 static int
610 cardbusprint(void *aux, const char *pnp)
611 {
612 struct cardbus_attach_args *ca = aux;
613 char devinfo[256];
614 int i;
615
616 if (pnp) {
617 pci_devinfo(ca->ca_id, ca->ca_class, 1, devinfo,
618 sizeof(devinfo));
619 for (i = 0; i < 4; i++) {
620 if (ca->ca_cis.cis1_info[i] == NULL)
621 break;
622 if (i)
623 aprint_normal(", ");
624 aprint_normal("%s", ca->ca_cis.cis1_info[i]);
625 }
626 aprint_verbose("%s(manufacturer 0x%x, product 0x%x)",
627 i ? " " : "",
628 ca->ca_cis.manufacturer, ca->ca_cis.product);
629 aprint_normal(" %s at %s", devinfo, pnp);
630 }
631 aprint_normal(" function %d", ca->ca_function);
632
633 return (UNCONF);
634 }
635
636 /*
637 * void cardbus_detach_card(struct cardbus_softc *sc)
638 *
639 * This function detaches the card on the slot: detach device data
640 * structure and turns off the power.
641 *
642 * This function must not be called under interrupt context.
643 */
644 void
645 cardbus_detach_card(struct cardbus_softc *sc)
646 {
647 int f;
648 struct cardbus_devfunc *ct;
649
650 for (f = 0; f < 8; f++) {
651 ct = sc->sc_funcs[f];
652 if (!ct)
653 continue;
654
655 DPRINTF(("%s: detaching %s\n", sc->sc_dev.dv_xname,
656 ct->ct_device->dv_xname));
657 /* call device detach function */
658
659 if (config_detach(ct->ct_device, 0) != 0) {
660 printf("%s: cannot detach dev %s, function %d\n",
661 sc->sc_dev.dv_xname, ct->ct_device->dv_xname,
662 ct->ct_func);
663 }
664 }
665
666 sc->sc_poweron_func = 0;
667 (*sc->sc_cf->cardbus_power)(sc->sc_cc,
668 CARDBUS_VCC_0V | CARDBUS_VPP_0V);
669 }
670
671 void
672 cardbus_childdetached(struct device *self, struct device *child)
673 {
674 struct cardbus_softc *sc = device_private(self);
675 struct cardbus_devfunc *ct;
676
677 ct = sc->sc_funcs[device_locator(child, CARDBUSCF_FUNCTION)];
678 KASSERT(ct->ct_device == child);
679
680 sc->sc_poweron_func &= ~(1 << ct->ct_func);
681 sc->sc_funcs[ct->ct_func] = NULL;
682 free(ct, M_DEVBUF);
683 }
684
685 /*
686 * void *cardbus_intr_establish(cc, cf, irq, level, func, arg)
687 * Interrupt handler of pccard.
688 * args:
689 * cardbus_chipset_tag_t *cc
690 * int irq:
691 */
692 void *
693 cardbus_intr_establish(cardbus_chipset_tag_t cc, cardbus_function_tag_t cf,
694 cardbus_intr_handle_t irq, int level, int (*func)(void *), void *arg)
695 {
696
697 DPRINTF(("- cardbus_intr_establish: irq %d\n", irq));
698 return ((*cf->cardbus_intr_establish)(cc, irq, level, func, arg));
699 }
700
701 /*
702 * void cardbus_intr_disestablish(cc, cf, handler)
703 * Interrupt handler of pccard.
704 * args:
705 * cardbus_chipset_tag_t *cc
706 */
707 void
708 cardbus_intr_disestablish(cardbus_chipset_tag_t cc, cardbus_function_tag_t cf,
709 void *handler)
710 {
711
712 DPRINTF(("- pccard_intr_disestablish\n"));
713 (*cf->cardbus_intr_disestablish)(cc, handler);
714 }
715
716 /*
717 * XXX this should be merged with cardbus_function_{enable,disable},
718 * but we don't have a ct when these functions are called.
719 */
720 static void
721 enable_function(struct cardbus_softc *sc, int cdstatus, int function)
722 {
723
724 if (sc->sc_poweron_func == 0) {
725 /* switch to 3V and/or wait for power to stabilize */
726 if (cdstatus & CARDBUS_3V_CARD) {
727 /*
728 * sc_poweron_func must be substituted before
729 * entering sleep, in order to avoid turn on
730 * power twice.
731 */
732 sc->sc_poweron_func |= (1 << function);
733 (*sc->sc_cf->cardbus_power)(sc->sc_cc, CARDBUS_VCC_3V);
734 } else {
735 /* No cards other than 3.3V cards. */
736 return;
737 }
738 (*sc->sc_cf->cardbus_ctrl)(sc->sc_cc, CARDBUS_RESET);
739 }
740 sc->sc_poweron_func |= (1 << function);
741 }
742
743 static void
744 disable_function(struct cardbus_softc *sc, int function)
745 {
746
747 sc->sc_poweron_func &= ~(1 << function);
748 if (sc->sc_poweron_func == 0) {
749 /* power-off because no functions are enabled */
750 (*sc->sc_cf->cardbus_power)(sc->sc_cc, CARDBUS_VCC_0V);
751 }
752 }
753
754 /*
755 * int cardbus_function_enable(struct cardbus_softc *sc, int func)
756 *
757 * This function enables a function on a card. When no power is
758 * applied on the card, power will be applied on it.
759 */
760 int
761 cardbus_function_enable(struct cardbus_softc *sc, int func)
762 {
763 cardbus_chipset_tag_t cc = sc->sc_cc;
764 cardbus_function_tag_t cf = sc->sc_cf;
765 cardbusreg_t command;
766 cardbustag_t tag;
767
768 DPRINTF(("entering cardbus_function_enable... "));
769
770 /* entering critical area */
771
772 /* XXX: sc_vold should be used */
773 enable_function(sc, CARDBUS_3V_CARD, func);
774
775 /* exiting critical area */
776
777 tag = cardbus_make_tag(cc, cf, sc->sc_bus, func);
778
779 command = cardbus_conf_read(cc, cf, tag, CARDBUS_COMMAND_STATUS_REG);
780 command |= (CARDBUS_COMMAND_MEM_ENABLE | CARDBUS_COMMAND_IO_ENABLE |
781 CARDBUS_COMMAND_MASTER_ENABLE); /* XXX: good guess needed */
782
783 cardbus_conf_write(cc, cf, tag, CARDBUS_COMMAND_STATUS_REG, command);
784
785 cardbus_free_tag(cc, cf, tag);
786
787 DPRINTF(("%x\n", sc->sc_poweron_func));
788
789 return (0);
790 }
791
792 /*
793 * int cardbus_function_disable(struct cardbus_softc *, int func)
794 *
795 * This function disable a function on a card. When no functions are
796 * enabled, it turns off the power.
797 */
798 int
799 cardbus_function_disable(struct cardbus_softc *sc, int func)
800 {
801
802 DPRINTF(("entering cardbus_function_disable... "));
803
804 disable_function(sc, func);
805
806 return (0);
807 }
808
809 /*
810 * int cardbus_get_capability(cardbus_chipset_tag_t cc,
811 * cardbus_function_tag_t cf, cardbustag_t tag, int capid, int *offset,
812 * cardbusreg_t *value)
813 *
814 * Find the specified PCI capability.
815 */
816 int
817 cardbus_get_capability(cardbus_chipset_tag_t cc, cardbus_function_tag_t cf,
818 cardbustag_t tag, int capid, int *offset, cardbusreg_t *value)
819 {
820 cardbusreg_t reg;
821 unsigned int ofs;
822
823 reg = cardbus_conf_read(cc, cf, tag, PCI_COMMAND_STATUS_REG);
824 if (!(reg & PCI_STATUS_CAPLIST_SUPPORT))
825 return (0);
826
827 ofs = PCI_CAPLIST_PTR(cardbus_conf_read(cc, cf, tag,
828 PCI_CAPLISTPTR_REG));
829 while (ofs != 0) {
830 #ifdef DIAGNOSTIC
831 if ((ofs & 3) || (ofs < 0x40))
832 panic("cardbus_get_capability");
833 #endif
834 reg = cardbus_conf_read(cc, cf, tag, ofs);
835 if (PCI_CAPLIST_CAP(reg) == capid) {
836 if (offset)
837 *offset = ofs;
838 if (value)
839 *value = reg;
840 return (1);
841 }
842 ofs = PCI_CAPLIST_NEXT(reg);
843 }
844
845 return (0);
846 }
847
848 /*
849 * below this line, there are some functions for decoding tuples.
850 * They should go out from this file.
851 */
852
853 static u_int8_t *
854 decode_tuple(u_int8_t *, u_int8_t *, tuple_decode_func, void *);
855
856 static int
857 decode_tuples(u_int8_t *tuple, int buflen, tuple_decode_func func, void *data)
858 {
859 u_int8_t *tp = tuple;
860
861 if (PCMCIA_CISTPL_LINKTARGET != *tuple) {
862 DPRINTF(("WRONG TUPLE: 0x%x\n", *tuple));
863 return (0);
864 }
865
866 while ((tp = decode_tuple(tp, tuple + buflen, func, data)) != NULL)
867 ;
868
869 return (1);
870 }
871
872 static u_int8_t *
873 decode_tuple(u_int8_t *tuple, u_int8_t *end,
874 tuple_decode_func func, void *data)
875 {
876 u_int8_t type;
877 u_int8_t len;
878
879 type = tuple[0];
880 switch (type) {
881 case PCMCIA_CISTPL_NULL:
882 case PCMCIA_CISTPL_END:
883 len = 1;
884 break;
885 default:
886 if (tuple + 2 > end)
887 return (NULL);
888 len = tuple[1] + 2;
889 break;
890 }
891
892 if (tuple + len > end)
893 return (NULL);
894
895 (*func)(tuple, len, data);
896
897 if (type == PCMCIA_CISTPL_END || tuple + len == end)
898 return (NULL);
899
900 return (tuple + len);
901 }
902
903 /*
904 * XXX: this is another reason why this code should be shared with PCI.
905 */
906 int
907 cardbus_powerstate(cardbus_devfunc_t ct, pcitag_t tag, const int *newstate,
908 int *oldstate)
909 {
910 cardbus_chipset_tag_t cc = ct->ct_cc;
911 cardbus_function_tag_t cf = ct->ct_cf;
912
913 int offset;
914 pcireg_t value, cap, now;
915
916 if (!cardbus_get_capability(cc, cf, tag, PCI_CAP_PWRMGMT, &offset,
917 &value))
918 return EOPNOTSUPP;
919
920 cap = value >> 16;
921 value = cardbus_conf_read(cc, cf, tag, offset + PCI_PMCSR);
922 now = value & PCI_PMCSR_STATE_MASK;
923 value &= ~PCI_PMCSR_STATE_MASK;
924 if (oldstate) {
925 switch (now) {
926 case PCI_PMCSR_STATE_D0:
927 *oldstate = PCI_PWR_D0;
928 break;
929 case PCI_PMCSR_STATE_D1:
930 *oldstate = PCI_PWR_D1;
931 break;
932 case PCI_PMCSR_STATE_D2:
933 *oldstate = PCI_PWR_D2;
934 break;
935 case PCI_PMCSR_STATE_D3:
936 *oldstate = PCI_PWR_D3;
937 break;
938 default:
939 return EINVAL;
940 }
941 }
942 if (newstate == NULL)
943 return 0;
944 switch (*newstate) {
945 case PCI_PWR_D0:
946 if (now == PCI_PMCSR_STATE_D0)
947 return 0;
948 value |= PCI_PMCSR_STATE_D0;
949 break;
950 case PCI_PWR_D1:
951 if (now == PCI_PMCSR_STATE_D1)
952 return 0;
953 if (now == PCI_PMCSR_STATE_D2 || now == PCI_PMCSR_STATE_D3)
954 return EINVAL;
955 if (!(cap & PCI_PMCR_D1SUPP))
956 return EOPNOTSUPP;
957 value |= PCI_PMCSR_STATE_D1;
958 break;
959 case PCI_PWR_D2:
960 if (now == PCI_PMCSR_STATE_D2)
961 return 0;
962 if (now == PCI_PMCSR_STATE_D3)
963 return EINVAL;
964 if (!(cap & PCI_PMCR_D2SUPP))
965 return EOPNOTSUPP;
966 value |= PCI_PMCSR_STATE_D2;
967 break;
968 case PCI_PWR_D3:
969 if (now == PCI_PMCSR_STATE_D3)
970 return 0;
971 value |= PCI_PMCSR_STATE_D3;
972 break;
973 default:
974 return EINVAL;
975 }
976 cardbus_conf_write(cc, cf, tag, offset + PCI_PMCSR, value);
977 DELAY(1000);
978
979 return 0;
980 }
981
982 int
983 cardbus_setpowerstate(const char *dvname, cardbus_devfunc_t ct, pcitag_t tag,
984 int newpwr)
985 {
986 int oldpwr, error;
987
988 if ((error = cardbus_powerstate(ct, tag, &newpwr, &oldpwr)) != 0)
989 return error;
990
991 if (oldpwr == newpwr)
992 return 0;
993
994 if (oldpwr > newpwr) {
995 printf("%s: sleeping to power state D%d\n", dvname, oldpwr);
996 return 0;
997 }
998
999 /* oldpwr < newpwr */
1000 switch (oldpwr) {
1001 case PCI_PWR_D3:
1002 /*
1003 * XXX: This is because none of the devices do
1004 * the necessary song and dance for now to wakeup
1005 * Once this
1006 */
1007 printf("%s: cannot wake up from power state D%d\n",
1008 dvname, oldpwr);
1009 return EINVAL;
1010 default:
1011 printf("%s: waking up from power state D%d\n",
1012 dvname, oldpwr);
1013 return 0;
1014 }
1015 }
1016
1017
1018 #ifdef CARDBUS_DEBUG
1019 static const char *tuple_name(int);
1020 static const char *tuple_names[] = {
1021 "TPL_NULL", "TPL_DEVICE", "Reserved", "Reserved", /* 0-3 */
1022 "CONFIG_CB", "CFTABLE_ENTRY_CB", "Reserved", "BAR", /* 4-7 */
1023 "Reserved", "Reserved", "Reserved", "Reserved", /* 8-B */
1024 "Reserved", "Reserved", "Reserved", "Reserved", /* C-F */
1025 "CHECKSUM", "LONGLINK_A", "LONGLINK_C", "LINKTARGET", /* 10-13 */
1026 "NO_LINK", "VERS_1", "ALTSTR", "DEVICE_A",
1027 "JEDEC_C", "JEDEC_A", "CONFIG", "CFTABLE_ENTRY",
1028 "DEVICE_OC", "DEVICE_OA", "DEVICE_GEO", "DEVICE_GEO_A",
1029 "MANFID", "FUNCID", "FUNCE", "SWIL", /* 20-23 */
1030 "Reserved", "Reserved", "Reserved", "Reserved", /* 24-27 */
1031 "Reserved", "Reserved", "Reserved", "Reserved", /* 28-2B */
1032 "Reserved", "Reserved", "Reserved", "Reserved", /* 2C-2F */
1033 "Reserved", "Reserved", "Reserved", "Reserved", /* 30-33 */
1034 "Reserved", "Reserved", "Reserved", "Reserved", /* 34-37 */
1035 "Reserved", "Reserved", "Reserved", "Reserved", /* 38-3B */
1036 "Reserved", "Reserved", "Reserved", "Reserved", /* 3C-3F */
1037 "VERS_2", "FORMAT", "GEOMETRY", "BYTEORDER",
1038 "DATE", "BATTERY", "ORG"
1039 };
1040 #define NAME_LEN(x) (sizeof x / sizeof(x[0]))
1041
1042 static const char *
1043 tuple_name(int type)
1044 {
1045
1046 if (0 <= type && type < NAME_LEN(tuple_names)) {
1047 return (tuple_names[type]);
1048 } else if (type == 0xff) {
1049 return ("END");
1050 } else {
1051 return ("Reserved");
1052 }
1053 }
1054
1055 static void
1056 print_tuple(u_int8_t *tuple, int len, void *data)
1057 {
1058 int i;
1059
1060 printf("tuple: %s len %d\n", tuple_name(tuple[0]), len);
1061
1062 for (i = 0; i < len; ++i) {
1063 if (i % 16 == 0) {
1064 printf(" 0x%2x:", i);
1065 }
1066 printf(" %x", tuple[i]);
1067 if (i % 16 == 15) {
1068 printf("\n");
1069 }
1070 }
1071 if (i % 16 != 0) {
1072 printf("\n");
1073 }
1074 }
1075 #endif
1076