xref: /netbsd-src/sys/arch/sparc/dev/ts102.c (revision 82d56013d7b633d116a93943de88e08335357a7c)
1 /*	$OpenBSD: ts102.c,v 1.14 2005/01/27 17:03:23 millert Exp $	*/
2 /*	$NetBSD: ts102.c,v 1.19 2021/04/24 23:36:49 thorpej Exp $ */
3 /*
4  * Copyright (c) 2003, 2004, Miodrag Vallat.
5  * Copyright (c) 2005, Michael Lorenz.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
18  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
19  * DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
20  * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
21  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
22  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
24  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
25  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
26  * POSSIBILITY OF SUCH DAMAGE.
27  */
28 
29 /*
30  * Driver for the PCMCIA controller found in Tadpole SPARCbook 3 series
31  * notebooks.
32  *
33  * Based on the information provided in the SPARCbook 3 Technical Reference
34  * Manual (s3gxtrmb.pdf), chapter 7.  A few ramblings against this document
35  * and/or the chip itself are scattered across this file.
36  *
37  * Implementation notes:
38  *
39  * - The TS102 exports its PCMCIA windows as SBus memory ranges: 64MB for
40  *   the common memory window, and 16MB for the attribute and I/O windows.
41  *
42  *   Mapping the whole windows would consume 192MB of address space, which
43  *   is much more that what the iospace can offer.
44  *
45  *   A best-effort solution would be to map the windows on demand. However,
46  *   due to the wap mapdev() works, the va used for the mappings would be
47  *   lost after unmapping (although using an extent to register iospace memory
48  *   usage would fix this). So, instead, we will do a fixed mapping of a subset
49  *   of each window upon attach - this is similar to what the stp4020 driver
50  *   does.
51  *
52  * Endianness farce:
53  *
54  * - The documentation pretends that the endianness settings only affect the
55  *   common memory window. Gee, thanks a lot. What about other windows, then?
56  *   As a result, this driver runs with endianness conversions turned off.
57  *
58  * - One of the little-endian SBus and big-endian PCMCIA flags has the reverse
59  *   meaning, actually. To achieve a ``no endianness conversion'' status,
60  *   one has to be set and the other unset. It does not matter which one,
61  *   though.
62  */
63 
64 #include <sys/cdefs.h>
65 
66 #include <sys/param.h>
67 #include <sys/systm.h>
68 #include <sys/errno.h>
69 #include <sys/malloc.h>
70 #include <sys/extent.h>
71 #include <sys/proc.h>
72 #include <sys/kernel.h>
73 #include <sys/kthread.h>
74 #include <sys/device.h>
75 
76 #include <dev/pcmcia/pcmciareg.h>
77 #include <dev/pcmcia/pcmciavar.h>
78 #include <dev/pcmcia/pcmciachip.h>
79 
80 #include <sys/bus.h>
81 #include <machine/intr.h>
82 #include <machine/autoconf.h>
83 
84 #include <dev/sbus/sbusvar.h>
85 #include <sparc/dev/ts102reg.h>
86 
87 #include "tctrl.h"
88 
89 #if NTCTRL > 0
90 #include <machine/tctrl.h>
91 #include <sparc/dev/tctrlvar.h>
92 #endif
93 
94 #define	TS102_NUM_SLOTS		2
95 
96 /*
97  * Memory ranges
98  */
99 #define	TS102_RANGE_COMMON	0
100 #define	TS102_RANGE_ATTR	1
101 #define	TS102_RANGE_IO		2
102 
103 #define	TS102_RANGE_CNT		3
104 #define	TS102_NUM_RANGES	(TS102_RANGE_CNT * TS102_NUM_SLOTS)
105 
106 #define	TS102_ARBITRARY_MAP_SIZE	(1 * 1024 * 1024)
107 
108 struct	tslot_softc;
109 
110 #ifdef TSLOT_DEBUG
111 #define TSPRINTF	printf
112 #else
113 #define TSPRINTF	while (0) printf
114 #endif
115 
116 /*
117  * Per-slot data
118  */
119 struct	tslot_data {
120 	struct tslot_softc	*td_parent;
121 	device_t		td_pcmcia;
122 
123 	volatile uint8_t	*td_regs;
124 	bus_addr_t		td_space[TS102_RANGE_CNT];
125 	bus_space_tag_t		td_pcmciat;	/* for accessing cards */
126 
127 	/* Interrupt handler */
128 	int			(*td_intr)(void *);
129 	void			*td_intrarg;
130 	void			*td_softint;
131 
132 	/* Socket status */
133 	int			td_slot;
134 	int			td_status;
135 #define	TS_CARD			0x0001
136 };
137 
138 struct	tslot_softc {
139 	device_t	sc_dev;
140 
141 	bus_space_tag_t	sc_bustag;		/* socket control io	*/
142 	bus_space_handle_t	sc_regh;	/*  space		*/
143 
144 	pcmcia_chipset_tag_t sc_pct;
145 
146 	lwp_t		*sc_thread;	/* event thread */
147 	uint32_t	sc_events;	/* sockets with pending events */
148 
149 	/* bits 0 and 1 are set according to card presence in slot 0 and 1 */
150 	uint32_t 	sc_active;
151 
152 	struct tslot_data sc_slot[TS102_NUM_SLOTS];
153 };
154 
155 static void tslot_attach(device_t, device_t, void *);
156 static void tslot_event_thread(void *);
157 static int  tslot_intr(void *);
158 static void tslot_intr_disestablish(pcmcia_chipset_handle_t, void *);
159 static void *tslot_intr_establish(pcmcia_chipset_handle_t,
160     struct pcmcia_function *, int, int (*)(void *), void *);
161 
162 const char  *tslot_intr_string(pcmcia_chipset_handle_t, void *);
163 static int  tslot_io_alloc(pcmcia_chipset_handle_t, bus_addr_t, bus_size_t,
164     bus_size_t, struct pcmcia_io_handle *);
165 static void tslot_io_free(pcmcia_chipset_handle_t, struct pcmcia_io_handle *);
166 static int  tslot_io_map(pcmcia_chipset_handle_t, int, bus_addr_t, bus_size_t,
167     struct pcmcia_io_handle *, int *);
168 static void tslot_io_unmap(pcmcia_chipset_handle_t, int);
169 static int  tslot_match(device_t, struct cfdata *, void *);
170 static int  tslot_mem_alloc(pcmcia_chipset_handle_t, bus_size_t,
171     struct pcmcia_mem_handle *);
172 static void tslot_mem_free(pcmcia_chipset_handle_t, struct pcmcia_mem_handle *);
173 static int  tslot_mem_map(pcmcia_chipset_handle_t, int, bus_addr_t, bus_size_t,
174     struct pcmcia_mem_handle *, bus_size_t *, int *);
175 static void tslot_mem_unmap(pcmcia_chipset_handle_t, int);
176 static int  tslot_print(void *, const char *);
177 static void tslot_queue_event(struct tslot_softc *, int);
178 static void tslot_reset(struct tslot_data *, uint32_t);
179 static void tslot_slot_disable(pcmcia_chipset_handle_t);
180 static void tslot_slot_enable(pcmcia_chipset_handle_t);
181 static void tslot_slot_intr(struct tslot_data *, int);
182 static void tslot_slot_settype(pcmcia_chipset_handle_t, int);
183 static void tslot_update_lcd(struct tslot_softc *, int, int);
184 static void tslot_intr_dispatch(void *arg);
185 
186 CFATTACH_DECL_NEW(tslot, sizeof(struct tslot_softc),
187     tslot_match, tslot_attach, NULL, NULL);
188 
189 extern struct cfdriver tslot_cd;
190 
191 /*
192  * PCMCIA chipset methods
193  */
194 struct	pcmcia_chip_functions tslot_functions = {
195 	tslot_mem_alloc,
196 	tslot_mem_free,
197 	tslot_mem_map,
198 	tslot_mem_unmap,
199 
200 	tslot_io_alloc,
201 	tslot_io_free,
202 	tslot_io_map,
203 	tslot_io_unmap,
204 
205 	tslot_intr_establish,
206 	tslot_intr_disestablish,
207 
208 	tslot_slot_enable,
209 	tslot_slot_disable,
210 	tslot_slot_settype
211 };
212 
213 static	uint16_t ts102_read_2(bus_space_tag_t,
214 				 bus_space_handle_t,
215 				 bus_size_t);
216 static	uint32_t ts102_read_4(bus_space_tag_t,
217 				 bus_space_handle_t,
218 				 bus_size_t);
219 static	uint64_t ts102_read_8(bus_space_tag_t,
220 				 bus_space_handle_t,
221 				 bus_size_t);
222 static	void	ts102_write_2(bus_space_tag_t,
223 				bus_space_handle_t,
224 				bus_size_t,
225 				uint16_t);
226 static	void	ts102_write_4(bus_space_tag_t,
227 				bus_space_handle_t,
228 				bus_size_t,
229 				uint32_t);
230 static	void	ts102_write_8(bus_space_tag_t,
231 				bus_space_handle_t,
232 				bus_size_t,
233 				uint64_t);
234 
235 static uint16_t
236 ts102_read_2(bus_space_tag_t space, bus_space_handle_t handle,
237     bus_size_t offset)
238 {
239 	return (le16toh(*(volatile uint16_t *)(handle +
240 	    offset)));
241 }
242 
243 static uint32_t
244 ts102_read_4(bus_space_tag_t space, bus_space_handle_t handle,
245     bus_size_t offset)
246 {
247 	return (le32toh(*(volatile uint32_t *)(handle +
248 	    offset)));
249 }
250 
251 static uint64_t
252 ts102_read_8(bus_space_tag_t space, bus_space_handle_t handle,
253     bus_size_t offset)
254 {
255 	return (le64toh(*(volatile uint64_t *)(handle +
256 	    offset)));
257 }
258 
259 static void
260 ts102_write_2(bus_space_tag_t space, bus_space_handle_t handle,
261     bus_size_t offset, uint16_t value)
262 {
263 	(*(volatile uint16_t *)(handle + offset)) =
264 	    htole16(value);
265 }
266 
267 static void
268 ts102_write_4(bus_space_tag_t space, bus_space_handle_t handle,
269     bus_size_t offset, uint32_t value)
270 {
271 	(*(volatile uint32_t *)(handle + offset)) =
272 	    htole32(value);
273 }
274 
275 static void
276 ts102_write_8(bus_space_tag_t space, bus_space_handle_t handle,
277     bus_size_t offset, uint64_t value)
278 {
279 	(*(volatile uint64_t *)(handle + offset)) =
280 	    htole64(value);
281 }
282 
283 
284 #define	TSLOT_READ(slot, offset) \
285 	*(volatile uint16_t *)((slot)->td_regs + (offset))
286 #define	TSLOT_WRITE(slot, offset, value) \
287 	*(volatile uint16_t *)((slot)->td_regs + (offset)) = (value)
288 
289 /*
290  * Attachment and initialization
291  */
292 
293 static int
294 tslot_match(device_t parent, struct cfdata *vcf, void *aux)
295 {
296 	struct sbus_attach_args *sa = aux;
297 
298 	return (strcmp("ts102", sa->sa_name) == 0);
299 }
300 
301 static void
302 tslot_attach(device_t parent, device_t self, void *args)
303 {
304 	struct sbus_attach_args *sa = args;
305 	struct tslot_softc *sc = device_private(self);
306 	struct tslot_data *td;
307 	volatile uint8_t *regs;
308 	int node, slot, rnum, base, size;
309 	uint32_t ranges[30];
310 	void *rptr = ranges;
311 	bus_space_handle_t hrang = 0;
312 	bus_space_tag_t tag;
313 
314 	sc->sc_dev = self;
315 	node = sa->sa_node;
316 	sc->sc_bustag=sa->sa_bustag;
317 	if (sbus_bus_map(sa->sa_bustag,
318 			 sa->sa_slot,
319 			 sa->sa_offset,
320 			 sa->sa_size,
321 			 0, &sc->sc_regh) != 0) {
322 		printf("%s: cannot map registers\n", device_xname(self));
323 		return;
324 	}
325 	regs = (uint8_t *)bus_space_vaddr(sa->sa_bustag, sc->sc_regh);
326 
327 	tag = bus_space_tag_alloc(sa->sa_bustag, sc);
328 	if (tag == NULL) {
329 		printf("%s: attach: out of memory\n", device_xname(self));
330 		return;
331 	}
332 	tag->sparc_read_2 = ts102_read_2;
333 	tag->sparc_read_4 = ts102_read_4;
334 	tag->sparc_read_8 = ts102_read_8;
335 	tag->sparc_write_2 = ts102_write_2;
336 	tag->sparc_write_4 = ts102_write_4;
337 	tag->sparc_write_8 = ts102_write_8;
338 
339 	bus_intr_establish(sa->sa_bustag, sa->sa_intr[0].oi_pri,
340 	    IPL_NONE, tslot_intr, sc);
341 
342 	printf(": %d slots\n", TS102_NUM_SLOTS);
343 
344 	size = sizeof(ranges);
345 	if (prom_getprop(node, "ranges", 4, &size, &rptr) != 0) {
346 		printf("couldn't read ranges\n");
347 		return;
348 	}
349 
350 	/*
351 	 * Setup asynchronous event handler
352 	 */
353 	sc->sc_events = 0;
354 
355 	TSPRINTF("starting event thread...\n");
356 	if (kthread_create(PRI_NONE, 0, NULL, tslot_event_thread, sc,
357 	    &sc->sc_thread, "%s", device_xname(self)) != 0) {
358 		panic("%s: unable to create event kthread",
359 		    device_xname(self));
360 	}
361 
362 	sc->sc_pct = (pcmcia_chipset_tag_t)&tslot_functions;
363 	sc->sc_active = 0;
364 
365 	/*
366 	 * Setup slots
367 	 */
368 	TSPRINTF("mapping resources...\n");
369 	for (slot = 0; slot < TS102_NUM_SLOTS; slot++) {
370 		td = &sc->sc_slot[slot];
371 		TSPRINTF("slot %d, ",slot);
372 		for (rnum = 0; rnum < TS102_RANGE_CNT; rnum++) {
373 			base = (slot * TS102_RANGE_CNT + rnum) * 5;
374 			TSPRINTF("%d: %08x %08x ",rnum,ranges[base + 3],
375 			    ranges[base + 4]);
376 			if(sbus_bus_map(sc->sc_bustag,
377 					sa->sa_slot,
378 				 	ranges[base+3],
379 				 	TS102_ARBITRARY_MAP_SIZE,
380 					0, &hrang) != 0) {
381 				printf("%s: cannot map registers\n",
382 				    device_xname(self));
383 				return;
384 			}
385 			TSPRINTF("%08x: %08x ",(uint32_t)ranges[base + 3],
386 			    (uint32_t)hrang);
387 			td->td_space[rnum] = hrang;
388 		}
389 		td->td_parent = sc;
390 		td->td_pcmciat = tag;
391 		td->td_softint = NULL;
392 		td->td_regs = regs + slot * (TS102_REG_CARD_B_INT -
393 		    TS102_REG_CARD_A_INT);
394 		td->td_slot = slot;
395 
396 		TSPRINTF("resetting slot %d %d\n", slot, (int)td->td_regs);
397 		tslot_reset(td, TS102_ARBITRARY_MAP_SIZE);
398 	}
399 }
400 
401 static void
402 tslot_reset(struct tslot_data *td, uint32_t iosize)
403 {
404 	struct pcmciabus_attach_args paa;
405 	int ctl, status;
406 
407 	paa.paa_busname = "pcmcia";
408 	paa.pct = (pcmcia_chipset_tag_t)td->td_parent->sc_pct;
409 	paa.pch = (pcmcia_chipset_handle_t)td;
410 
411 	td->td_pcmcia = config_found(td->td_parent->sc_dev, &paa, tslot_print,
412 	    CFARG_EOL);
413 
414 	if (td->td_pcmcia == NULL) {
415 		/*
416 		 * If no pcmcia attachment, power down the slot.
417 		 */
418 		tslot_slot_disable((pcmcia_chipset_handle_t)td);
419 		return;
420 	}
421 
422 	/*
423 	 * Initialize the slot
424 	 */
425 
426 	ctl = TSLOT_READ(td, TS102_REG_CARD_A_CTL);
427 
428 	/* force low addresses */
429 	ctl &= ~(TS102_CARD_CTL_AA_MASK | TS102_CARD_CTL_IA_MASK);
430 
431 	/* Put SBus and PCMCIA in their respective endian mode */
432 	ctl |= TS102_CARD_CTL_SBLE;	/* this is not what it looks like! */
433 	ctl &= ~TS102_CARD_CTL_PCMBE;	/* default */
434 
435 	/* disable read ahead and address increment */
436 	ctl &= ~TS102_CARD_CTL_RAHD;
437 	ctl |= TS102_CARD_CTL_INCDIS;
438 
439 	/* power on */
440 	ctl &= ~TS102_CARD_CTL_PWRD;
441 	TSLOT_WRITE(td, TS102_REG_CARD_A_CTL, ctl);
442 	TSPRINTF("ctl: %x\n", ctl);
443 
444 	/*
445 	 * Enable interrupt upon insertion/removal
446 	 */
447 
448 	TSLOT_WRITE(td, TS102_REG_CARD_A_INT,
449 	    TS102_CARD_INT_MASK_CARDDETECT_STATUS);
450 
451 	status = TSLOT_READ(td, TS102_REG_CARD_A_STS);
452 	if (status & TS102_CARD_STS_PRES) {
453 		td->td_status = TS_CARD;
454 		pcmcia_card_attach(td->td_pcmcia);
455 	} else
456 		td->td_status = 0;
457 }
458 
459 /* XXX there ought to be a common function for this... */
460 static int
461 tslot_print(void *aux, const char *description)
462 {
463 	struct pcmciabus_attach_args *paa = aux;
464 	struct tslot_data *td = (struct tslot_data *)paa->pch;
465 
466 	printf(" socket %d", td->td_slot);
467 	return (UNCONF);
468 }
469 
470 /*
471  * PCMCIA Helpers
472  */
473 
474 static int
475 tslot_io_alloc(pcmcia_chipset_handle_t pch, bus_addr_t start, bus_size_t size,
476     bus_size_t align, struct pcmcia_io_handle *pih)
477 {
478 	struct tslot_data *td = (struct tslot_data *)pch;
479 
480 #ifdef TSLOT_DEBUG
481 	printf("[io alloc %x]", (uint32_t)size);
482 #endif
483 
484 	pih->iot = td->td_pcmciat;
485 	pih->ioh = td->td_space[TS102_RANGE_IO];
486 	pih->addr = start;
487 	pih->size = size;
488 	pih->flags = 0;
489 
490 	return (0);
491 }
492 
493 static void
494 tslot_io_free(pcmcia_chipset_handle_t pch, struct pcmcia_io_handle *pih)
495 {
496 #ifdef TSLOT_DEBUG
497 	printf("[io free]");
498 #endif
499 }
500 
501 static int
502 tslot_io_map(pcmcia_chipset_handle_t pch, int width, bus_addr_t offset,
503     bus_size_t size, struct pcmcia_io_handle *pih, int *windowp)
504 {
505 	struct tslot_data *td = (struct tslot_data *)pch;
506 
507 #ifdef TSLOT_DEBUG
508 	printf("[io map %x/%x", (uint32_t)offset, (uint32_t)size);
509 #endif
510 
511 	pih->iot = td->td_pcmciat;
512 	if (bus_space_subregion(pih->iot, td->td_space[TS102_RANGE_IO],
513 	    offset, size, &pih->ioh) != 0)
514 		printf("io_map failed, offset %x\n", (uint32_t)offset);
515 	*windowp = 0; /* TS102_RANGE_IO */
516 
517 #ifdef TSLOT_DEBUG
518 	printf("->%x/%x]", (uint32_t)pih->ioh, (uint32_t)size);
519 	{
520 		int addr, line;
521 		for( addr = offset; addr < (offset + size); addr += 16) {
522 			printf("%04x:", addr);
523 			for(line = addr; line < (addr + 16); line += 2) {
524 				printf(" %04x", bus_space_read_2(pih->iot,
525 				    pih->ioh, line));
526 			}
527 			printf("\n");
528 		}
529 	}
530 #endif
531 
532 	return (0);
533 }
534 
535 static void
536 tslot_io_unmap(pcmcia_chipset_handle_t pch, int win)
537 {
538 #ifdef TSLOT_DEBUG
539 	struct tslot_data *td = (struct tslot_data *)pch;
540 
541 	printf("[io unmap]");
542 	{
543 		int addr, line, offset = 0, size = 0x80;
544 		for (addr = offset; addr < (offset + size); addr += 16) {
545 			printf("%04x:", addr);
546 			for (line = addr; line < (addr + 16); line += 2){
547 				printf(" %04x", bus_space_read_2(td->td_pcmciat,
548 				    td->td_space[2], line));
549 			}
550 			printf("\n");
551 		}
552 	}
553 #endif
554 }
555 
556 static int
557 tslot_mem_alloc(pcmcia_chipset_handle_t pch, bus_size_t size,
558     struct pcmcia_mem_handle *pmh)
559 {
560 	struct tslot_data *td = (struct tslot_data *)pch;
561 
562 #ifdef TSLOT_DEBUG
563 	printf("[mem alloc %x]", (uint32_t)size);
564 #endif
565 	pmh->memt = td->td_pcmciat;
566 	pmh->size = size;
567 	pmh->addr = 0;
568 	pmh->mhandle = 0;
569 	pmh->realsize = size;	/* nothing so far! */
570 
571 	return (0);
572 }
573 
574 static void
575 tslot_mem_free(pcmcia_chipset_handle_t pch, struct pcmcia_mem_handle *pmh)
576 {
577 #ifdef TSLOT_DEBUG
578 	printf("[mem free]");
579 #endif
580 }
581 
582 static int
583 tslot_mem_map(pcmcia_chipset_handle_t pch, int kind, bus_addr_t addr,
584     bus_size_t size, struct pcmcia_mem_handle *pmh, bus_size_t *offsetp,
585     int *windowp)
586 {
587 	struct tslot_data *td = (struct tslot_data *)pch;
588 	int slot;
589 
590 	slot = kind & PCMCIA_MEM_ATTR ? TS102_RANGE_ATTR : TS102_RANGE_COMMON;
591 #ifdef TSLOT_DEBUG
592 	printf("[mem map %d %x/%x", slot, (uint32_t)addr, (uint32_t)size);
593 #endif
594 
595 	pmh->memt = td->td_parent->sc_bustag;
596 	if (bus_space_subregion(pmh->memt, td->td_space[slot],
597 	    addr, size, &pmh->memh) != 0)
598 		printf("mem_map failed, offset %x\n", (uint32_t)addr);
599 	pmh->realsize = TS102_ARBITRARY_MAP_SIZE - addr;
600 	pmh->size = size;
601 	*offsetp = 0;
602 	*windowp = 0;
603 
604 #ifdef TSLOT_DEBUG
605 	printf("->%x/%x]", (uint32_t)pmh->memh, (uint32_t)size);
606 #endif
607 
608 	return (0);
609 }
610 
611 static void
612 tslot_mem_unmap(pcmcia_chipset_handle_t pch, int win)
613 {
614 #ifdef TSLOT_DEBUG
615 	printf("[mem unmap %d]", win);
616 #endif
617 }
618 
619 static void
620 tslot_slot_disable(pcmcia_chipset_handle_t pch)
621 {
622 	struct tslot_data *td = (struct tslot_data *)pch;
623 #ifdef TSLOT_DEBUG
624 	printf("%s: disable slot %d\n",
625 	    device_xname(td->td_parent->sc_dev), td->td_slot);
626 #endif
627 
628 	/*
629 	 * Disable card access.
630 	 */
631 	TSLOT_WRITE(td, TS102_REG_CARD_A_STS,
632 	    TSLOT_READ(td, TS102_REG_CARD_A_STS) & ~TS102_CARD_STS_ACEN);
633 
634 	/*
635 	 * Disable interrupts, except for insertion.
636 	 */
637 	TSLOT_WRITE(td, TS102_REG_CARD_A_INT,
638 	    TS102_CARD_INT_MASK_CARDDETECT_STATUS);
639 }
640 
641 static void
642 tslot_slot_enable(pcmcia_chipset_handle_t pch)
643 {
644 	struct tslot_data *td = (struct tslot_data *)pch;
645 	int status, intr, i;
646 
647 #ifdef TSLOT_DEBUG
648 	printf("%s: enable slot %d\n",
649 	    device_xname(td->td_parent->sc_dev), td->td_slot);
650 #endif
651 
652 	/* Power down the socket to reset it */
653 	status = TSLOT_READ(td, TS102_REG_CARD_A_STS);
654 	TSPRINTF("status: %x\n", status);
655 	TSLOT_WRITE(td, TS102_REG_CARD_A_STS, status | TS102_CARD_STS_VCCEN);
656 
657 	/*
658 	 * wait 300ms until power fails (Tpf).  Then, wait 100ms since we
659 	 * are changing Vcc (Toff).
660 	 */
661 	DELAY((300 + 100) * 1000);
662 
663 	/*
664 	 * Power on the card if not already done, and enable card access
665 	 */
666 	status |= TS102_CARD_STS_ACEN;
667 	status &= ~TS102_CARD_STS_VCCEN;
668 	TSLOT_WRITE(td, TS102_REG_CARD_A_STS, status);
669 
670 	/*
671 	 * wait 100ms until power raise (Tpr) and 20ms to become
672 	 * stable (Tsu(Vcc)).
673 	 */
674 	DELAY((100 + 20) * 1000);
675 
676 	status &= ~TS102_CARD_STS_VPP1_MASK;
677 	status |= TS102_CARD_STS_VPP1_VCC;
678 	TSLOT_WRITE(td, TS102_REG_CARD_A_STS, status);
679 
680 	/*
681 	 * hold RESET at least 20us.
682 	 */
683 	intr = TSLOT_READ(td, TS102_REG_CARD_A_INT);
684 	TSLOT_WRITE(td, TS102_REG_CARD_A_INT, TS102_CARD_INT_SOFT_RESET);
685 	DELAY(20);
686 	TSLOT_WRITE(td, TS102_REG_CARD_A_INT, intr);
687 
688 	/* wait 20ms as per pc card standard (r2.01) section 4.3.6 */
689 	DELAY(20 * 1000);
690 
691 	/* We need level-triggered interrupts for PC Card hardware */
692 	TSLOT_WRITE(td, TS102_REG_CARD_A_STS,
693 		TSLOT_READ(td, TS102_REG_CARD_A_STS) | TS102_CARD_STS_LVL);
694 
695 	/*
696 	 * Wait until the card is unbusy. If it is still busy after 3 seconds,
697 	 * give up. We could enable card interrupts and wait for the interrupt
698 	 * to happen when BUSY is released, but the interrupt could also be
699 	 * triggered by the card itself if it's an I/O card, so better poll
700 	 * here.
701 	 */
702 	for (i = 30000; i != 0; i--) {
703 		status = TSLOT_READ(td, TS102_REG_CARD_A_STS);
704 		/* If the card has been removed, abort */
705 		if ((status & TS102_CARD_STS_PRES) == 0) {
706 			tslot_slot_disable(pch);
707 			return;
708 		}
709 		if (status & TS102_CARD_STS_RDY)
710 			break;
711 		else
712 			DELAY(100);
713 	}
714 
715 	if (i == 0) {
716 		printf("%s: slot %d still busy after 3 seconds, status 0x%x\n",
717 		    device_xname(td->td_parent->sc_dev), td->td_slot,
718 		    TSLOT_READ(td, TS102_REG_CARD_A_STS));
719 		return;
720 	}
721 }
722 static void
723 tslot_event_thread(void *v)
724 {
725 	struct tslot_softc *sc = v;
726 	struct tslot_data *td;
727 	int s, status;
728 	unsigned int socket;
729 
730 #if NTCTRL > 0
731 	int i;
732 
733 	/*
734 	 * First-time setup of our LCD symbol. When a card is present at boot
735 	 * time we won't detect a change here and therefore the LCD symbol won't
736 	 * light up.
737 	 */
738 	for (i = 0; i < TS102_NUM_SLOTS; i++) {
739 		td = &sc->sc_slot[i];
740 		status = TSLOT_READ(td, TS102_REG_CARD_A_STS);
741 		tslot_update_lcd(sc, i, status & TS102_CARD_STS_PRES);
742 	}
743 #endif
744 
745 	for (;;) {
746 		s = splhigh();
747 
748 		if ((socket = ffs(sc->sc_events)) == 0) {
749 			splx(s);
750 			tsleep(&sc->sc_events, PWAIT, "tslot_event", hz * 30);
751 			continue;
752 		}
753 		socket--;
754 		sc->sc_events &= ~(1 << socket);
755 		splx(s);
756 
757 		if (socket >= TS102_NUM_SLOTS) {
758 #ifdef DEBUG
759 			printf("%s: invalid slot number %d\n",
760 			    device_xname(sc->sc_dev), socket);
761 #endif
762 			continue;
763 		}
764 
765 		td = &sc->sc_slot[socket];
766 		status = TSLOT_READ(td, TS102_REG_CARD_A_STS);
767 
768 		if (status & TS102_CARD_STS_PRES) {
769 			/* Card insertion */
770 			if ((td->td_status & TS_CARD) == 0) {
771 				td->td_status |= TS_CARD;
772 				tslot_update_lcd(sc, socket, 1);
773 				pcmcia_card_attach(td->td_pcmcia);
774 			}
775 		} else {
776 			/* Card removal */
777 			if ((td->td_status & TS_CARD) != 0) {
778 				tslot_update_lcd(sc, socket, 0);
779 				td->td_status &= ~TS_CARD;
780 				pcmcia_card_detach(td->td_pcmcia,
781 				    DETACH_FORCE);
782 			}
783 		}
784 	}
785 }
786 
787 /*
788  * Interrupt handling
789  */
790 
791 static int
792 tslot_intr(void *v)
793 {
794 	struct tslot_softc *sc = v;
795 	struct tslot_data *td;
796 	int intregs[TS102_NUM_SLOTS], *intreg;
797 	int i, s, rc = 0;
798 
799 	s = splhigh();
800 
801 	/*
802 	 * Scan slots, and acknowledge the interrupt if necessary first
803 	 */
804 	for (i = 0; i < TS102_NUM_SLOTS; i++) {
805 		td = &sc->sc_slot[i];
806 		intreg = &intregs[i];
807 		*intreg = TSLOT_READ(td, TS102_REG_CARD_A_INT);
808 
809 		/*
810 		 * Acknowledge all interrupt situations at once, even if they
811 		 * did not occur.
812 		 */
813 		if ((*intreg & (TS102_CARD_INT_STATUS_IRQ |
814 		    TS102_CARD_INT_STATUS_WP_STATUS_CHANGED |
815 		    TS102_CARD_INT_STATUS_BATTERY_STATUS_CHANGED |
816 		    TS102_CARD_INT_STATUS_CARDDETECT_STATUS_CHANGED)) != 0) {
817 			rc = 1;
818 			TSLOT_WRITE(td, TS102_REG_CARD_A_INT, *intreg |
819 			    TS102_CARD_INT_RQST_IRQ |
820 			    TS102_CARD_INT_RQST_WP_STATUS_CHANGED |
821 			    TS102_CARD_INT_RQST_BATTERY_STATUS_CHANGED |
822 			    TS102_CARD_INT_RQST_CARDDETECT_STATUS_CHANGED);
823 		}
824 	}
825 
826 #ifdef TSLOT_DEBUG
827 	printf("tslot_intr: %x %x\n", intregs[0], intregs[1]);
828 #endif
829 
830 	/*
831 	 * Invoke the interrupt handler for each slot
832 	 */
833 	for (i = 0; i < TS102_NUM_SLOTS; i++) {
834 		td = &sc->sc_slot[i];
835 		intreg = &intregs[i];
836 
837 		if ((*intreg & (TS102_CARD_INT_STATUS_IRQ |
838 		    TS102_CARD_INT_STATUS_WP_STATUS_CHANGED |
839 		    TS102_CARD_INT_STATUS_BATTERY_STATUS_CHANGED |
840 		    TS102_CARD_INT_STATUS_CARDDETECT_STATUS_CHANGED)) != 0)
841 			tslot_slot_intr(td, *intreg);
842 	}
843 	splx(s);
844 
845 	return (rc);
846 }
847 
848 static void
849 tslot_queue_event(struct tslot_softc *sc, int slot)
850 {
851 	int s;
852 
853 	s = splhigh();
854 	sc->sc_events |= (1 << slot);
855 	splx(s);
856 	wakeup(&sc->sc_events);
857 }
858 
859 static void
860 tslot_slot_intr(struct tslot_data *td, int intreg)
861 {
862 	struct tslot_softc *sc = td->td_parent;
863 	int status, sockstat;
864 	uint32_t ireg;
865 
866 	status = TSLOT_READ(td, TS102_REG_CARD_A_STS);
867 #ifdef TSLOT_DEBUG
868 	printf("%s: interrupt on socket %d ir %x sts %x\n",
869 	    device_xname(sc->sc_dev), td->td_slot, intreg, status);
870 #else
871 	__USE(status);
872 #endif
873 
874 	sockstat = td->td_status;
875 
876 	/*
877 	 * The TS102 queues interrupt request, and may trigger an interrupt
878 	 * for a condition the driver does not want to receive anymore (for
879 	 * example, after a card gets removed).
880 	 * Thus, only proceed if the driver is currently allowing a particular
881 	 * condition.
882 	 */
883 
884 	if ((intreg & TS102_CARD_INT_STATUS_CARDDETECT_STATUS_CHANGED) != 0 &&
885 	    (intreg & TS102_CARD_INT_MASK_CARDDETECT_STATUS) != 0) {
886 		tslot_queue_event(sc, td->td_slot);
887 #ifdef TSLOT_DEBUG
888 		printf("%s: slot %d status changed from %d to %d\n",
889 		    device_xname(sc->sc_dev), td->td_slot, sockstat,
890 		    td->td_status);
891 #endif
892 		/*
893 		 * Ignore extra interrupt bits, they are part of the change.
894 		 */
895 		return;
896 	}
897 
898 	if ((intreg & TS102_CARD_INT_STATUS_IRQ) != 0 &&
899 	    (intreg & TS102_CARD_INT_MASK_IRQ) != 0) {
900 		/* ignore interrupts if we have a pending state change */
901 		if (sc->sc_events & (1 << td->td_slot))
902 		{
903 			TSPRINTF("ev: %d\n", sc->sc_events);
904 			return;
905 		}
906 		if ((sockstat & TS_CARD) == 0) {
907 			printf("%s: spurious interrupt on slot %d isr %x\n",
908 			    device_xname(sc->sc_dev), td->td_slot, intreg);
909 			return;
910 		}
911 
912 		if (td->td_intr != NULL) {
913 
914 			if (td->td_softint != NULL)
915 				sparc_softintr_schedule(td->td_softint);
916 			/*
917 			 * Disable this sbus interrupt, until the soft-int
918 			 * handler had a chance to run
919 			 */
920 			ireg = TSLOT_READ(td, TS102_REG_CARD_A_INT);
921 			TSLOT_WRITE(td, TS102_REG_CARD_A_INT, ireg &
922 			    ~TS102_CARD_INT_MASK_IRQ);
923 		}
924 	}
925 }
926 
927 static void
928 tslot_intr_disestablish(pcmcia_chipset_handle_t pch, void *ih)
929 {
930 	struct tslot_data *td = (struct tslot_data *)pch;
931 
932 	td->td_intr = NULL;
933 	td->td_intrarg = NULL;
934 	if (td->td_softint) {
935 		sparc_softintr_disestablish(td->td_softint);
936 		td->td_softint = NULL;
937 	}
938 }
939 
940 const char *
941 tslot_intr_string(pcmcia_chipset_handle_t pch, void *ih)
942 {
943 	if (ih == NULL)
944 		return ("couldn't establish interrupt");
945 	else
946 		return ("");	/* nothing for now */
947 }
948 
949 static void *
950 tslot_intr_establish(pcmcia_chipset_handle_t pch, struct pcmcia_function *pf,
951     int ipl, int (*handler)(void *), void *arg)
952 {
953 	struct tslot_data *td = (struct tslot_data *)pch;
954 
955 	td->td_intr = handler;
956 	td->td_intrarg = arg;
957 	td->td_softint = sparc_softintr_establish(ipl, tslot_intr_dispatch, td);
958 
959 	return (td);
960 }
961 
962 /*
963  * Softinterrupt called to invoke the real driver interrupt handler.
964  */
965 static void
966 tslot_intr_dispatch(void *arg)
967 {
968 	struct tslot_data *td = arg;
969 	int s;
970 	uint32_t ireg;
971 
972 	/* invoke driver handler */
973 	td->td_intr(td->td_intrarg);
974 
975 	/* enable SBUS interrupts for pcmcia interrupts again */
976 	s = splhigh();
977 	ireg = TSLOT_READ(td, TS102_REG_CARD_A_INT);
978 	TSLOT_WRITE(td, TS102_REG_CARD_A_INT, ireg | TS102_CARD_INT_MASK_IRQ);
979 	splx(s);
980 }
981 
982 static void
983 tslot_slot_settype(pcmcia_chipset_handle_t pch, int type)
984 {
985 	struct tslot_data *td = (struct tslot_data *)pch;
986 	uint32_t reg;
987 
988 	/*
989 	 * Enable the card interrupts if this is an I/O card.
990 	 * Note that the TS102_CARD_STS_IO bit in the status register will
991 	 * never get set, despite what the documentation says!
992 	 */
993 	TSPRINTF("tslot_slot_settype(%d)\n",type);
994 	if (type == PCMCIA_IFTYPE_IO) {
995 		TSLOT_WRITE(td, TS102_REG_CARD_A_STS,
996 		    TSLOT_READ(td, TS102_REG_CARD_A_STS) | TS102_CARD_STS_IO);
997 		TSLOT_WRITE(td, TS102_REG_CARD_A_INT,
998 		    TS102_CARD_INT_MASK_CARDDETECT_STATUS |
999 		    TS102_CARD_INT_MASK_IRQ);
1000 		reg=TSLOT_READ(td, TS102_REG_CARD_A_STS);
1001 		TSPRINTF("status: %x\n", reg);
1002 	}
1003 }
1004 
1005 static void
1006 tslot_update_lcd(struct tslot_softc *sc, int socket, int status)
1007 {
1008 #if NTCTRL > 0
1009 	int was = (sc->sc_active != 0), is;
1010 	int mask = 1 << socket;
1011 
1012 	if (status > 0) {
1013 		sc->sc_active |= mask;
1014 	} else {
1015 		sc->sc_active &= (mask ^ 3);
1016 	}
1017 	is = (sc->sc_active != 0);
1018 	if (was != is) {
1019 		tadpole_set_lcd(is, 0x40);
1020 	}
1021 #endif
1022 }
1023