xref: /netbsd-src/sys/arch/hpcsh/dev/pfckbd.c (revision 8b0f9554ff8762542c4defc4f70e1eb76fb508fa)
1 /*	$NetBSD: pfckbd.c,v 1.23 2007/10/17 19:54:30 garbled Exp $	*/
2 
3 /*-
4  * Copyright (c) 2001, 2002 The NetBSD Foundation, Inc.
5  * All rights reserved.
6  *
7  * This code is derived from software contributed to The NetBSD Foundation
8  * by UCHIYAMA Yasushi.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  * 1. Redistributions of source code must retain the above copyright
14  *    notice, this list of conditions and the following disclaimer.
15  * 2. Redistributions in binary form must reproduce the above copyright
16  *    notice, this list of conditions and the following disclaimer in the
17  *    documentation and/or other materials provided with the distribution.
18  * 3. All advertising materials mentioning features or use of this software
19  *    must display the following acknowledgement:
20  *        This product includes software developed by the NetBSD
21  *        Foundation, Inc. and its contributors.
22  * 4. Neither the name of The NetBSD Foundation nor the names of its
23  *    contributors may be used to endorse or promote products derived
24  *    from this software without specific prior written permission.
25  *
26  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36  * POSSIBILITY OF SUCH DAMAGE.
37  */
38 
39 /*
40  * Matrix scan keyboard connected to SH7709, SH7709A PFC module.
41  * currently, HP Jornada 680/690, HITACHI PERSONA HPW-50PAD only.
42  */
43 #include <sys/cdefs.h>
44 __KERNEL_RCSID(0, "$NetBSD: pfckbd.c,v 1.23 2007/10/17 19:54:30 garbled Exp $");
45 
46 #include "debug_hpcsh.h"
47 
48 #include <sys/param.h>
49 #include <sys/systm.h>
50 #include <sys/device.h>
51 #include <sys/callout.h>
52 
53 #include <machine/bus.h>
54 #include <machine/platid.h>
55 #include <machine/platid_mask.h>
56 
57 #include <dev/hpc/hpckbdvar.h>
58 
59 #include <sh3/pfcreg.h>
60 
61 #include <hpcsh/dev/pfckbdvar.h>
62 
63 #ifdef	PFCKBD_DEBUG
64 #define DPRINTF_ENABLE
65 #define DPRINTF_DEBUG	pfckbd_debug
66 #endif
67 #include <machine/debug.h>
68 
69 static struct pfckbd_core {
70 	int pc_attached;
71 	int pc_enabled;
72 	struct callout pc_soft_ch;
73 	struct hpckbd_ic_if pc_if;
74 	struct hpckbd_if *pc_hpckbd;
75 	uint16_t pc_column[8];
76 	void (*pc_callout)(void *);
77 } pfckbd_core;
78 
79 static int pfckbd_match(struct device *, struct cfdata *, void *);
80 static void pfckbd_attach(struct device *, struct device *, void *);
81 
82 CFATTACH_DECL(pfckbd, sizeof(struct device),
83     pfckbd_match, pfckbd_attach, NULL, NULL);
84 
85 static void pfckbd_ifsetup(struct pfckbd_core *);
86 
87 /* callbacks for hpckbd */
88 static int pfckbd_input_establish(void *, struct hpckbd_if *);
89 static int pfckbd_poll(void *);
90 
91 static void pfckbd_input(struct pfckbd_core *, int, uint16_t);
92 
93 static void (*pfckbd_callout_lookup(void))(void *);
94 static void pfckbd_callout_unknown(void *);
95 static void pfckbd_callout_hp(void *);
96 static void pfckbd_callout_hitachi(void *);
97 void pfckbd_poll_hitachi_power(void);
98 
99 
100 /* callout function table. this function is platfrom specific. */
101 static const struct {
102 	platid_mask_t *platform;
103 	void (*func)(void *);
104 } pfckbd_calloutfunc_table[] = {
105 	{ &platid_mask_MACH_HP		, pfckbd_callout_hp },
106 	{ &platid_mask_MACH_HITACHI	, pfckbd_callout_hitachi }
107 };
108 
109 
110 void
111 pfckbd_cnattach()
112 {
113 	struct pfckbd_core *pc = &pfckbd_core;
114 
115 	if ((cpu_product != CPU_PRODUCT_7709)
116 	    && (cpu_product != CPU_PRODUCT_7709A))
117 		return;
118 
119 	/* initialize interface */
120 	pfckbd_ifsetup(pc);
121 
122 	/* attach descendants */
123 	hpckbd_cnattach(&pc->pc_if);
124 }
125 
126 static int
127 pfckbd_match(struct device *parent, struct cfdata *cf, void *aux)
128 {
129 
130 	if ((cpu_product != CPU_PRODUCT_7709)
131 	    && (cpu_product != CPU_PRODUCT_7709A))
132 		return 0;
133 
134 	return !pfckbd_core.pc_attached; /* attach only once */
135 }
136 
137 static void
138 pfckbd_attach(struct device *parent, struct device *self, void *aux)
139 {
140 	struct hpckbd_attach_args haa;
141 
142 	printf("\n");
143 
144 	pfckbd_core.pc_attached = 1;
145 
146 	pfckbd_ifsetup(&pfckbd_core);
147 
148 	/* attach hpckbd */
149 	haa.haa_ic = &pfckbd_core.pc_if; /* tell hpckbd our interface */
150 	config_found(self, &haa, hpckbd_print);
151 
152 	/* install callout handler */
153 	callout_init(&pfckbd_core.pc_soft_ch, 0);
154 	callout_reset(&pfckbd_core.pc_soft_ch, 1,
155 		      pfckbd_core.pc_callout, &pfckbd_core);
156 }
157 
158 static void
159 pfckbd_ifsetup(struct pfckbd_core *pc)
160 {
161 	int i;
162 
163 	pc->pc_if.hii_ctx = pc;
164 	pc->pc_if.hii_establish	= pfckbd_input_establish;
165 	pc->pc_if.hii_poll = pfckbd_poll;
166 
167 	for (i = 0; i < 8; i++)
168 		pc->pc_column[i] = 0xdfff;
169 
170 	/* select PFC access method */
171 	pc->pc_callout = pfckbd_callout_lookup();
172 }
173 
174 
175 /*
176  * Callback for hpckbd_initif
177  */
178 static int
179 pfckbd_input_establish(void *ic, struct hpckbd_if *kbdif)
180 {
181 	struct pfckbd_core *pc = ic;
182 
183 	pc->pc_hpckbd = kbdif;	/* save hpckbd interface */
184 	pc->pc_enabled = 1;	/* ok to talk to hpckbd */
185 
186 	return 0;
187 }
188 
189 /*
190  * Callback for hpckbd_cngetc
191  */
192 static int
193 pfckbd_poll(void *ic)
194 {
195 	struct pfckbd_core *pc = ic;
196 
197 	if (pc->pc_enabled)
198 		(*pc->pc_callout)(pc);
199 
200 	return 0;
201 }
202 
203 /*
204  * Called by platform specific scan routines to report key events to hpckbd
205  */
206 static void
207 pfckbd_input(struct pfckbd_core *pc, int column, uint16_t data)
208 {
209 	int row, type, val;
210 	unsigned int edge, mask;
211 
212 	edge = data ^ pc->pc_column[column];
213 	if (edge == 0)
214 		return;		/* no changes in this column */
215 
216 	pc->pc_column[column] = data;
217 
218 	for (row = 0, mask = 1; row < 16; ++row, mask <<= 1) {
219 		if (mask & edge) {
220 			type = mask & data ? /* up */ 0 : /* down */ 1;
221 			DPRINTF("(%2d, %2d) %d \n", row, column, type);
222 
223 			val = row * 8 + column;
224 			hpckbd_input(pc->pc_hpckbd, type, val);
225 		}
226 	}
227 }
228 
229 
230 /*
231  * Platform dependent scan routines.
232  */
233 
234 /* Look up appropriate callback handler */
235 static void
236 (*pfckbd_callout_lookup())(void *)
237 {
238 	int i, n;
239 
240 	n = sizeof(pfckbd_calloutfunc_table)
241 		/ sizeof(pfckbd_calloutfunc_table[0]);
242 
243 	for (i = 0; i < n; i++)
244 		if (platid_match(&platid,
245 				 pfckbd_calloutfunc_table[i].platform))
246 			return pfckbd_calloutfunc_table[i].func;
247 
248 	return pfckbd_callout_unknown;
249 }
250 
251 /* Placeholder for unknown platform */
252 static void
253 pfckbd_callout_unknown(void *arg)
254 {
255 
256 	printf("%s: unknown keyboard switch\n", __func__);
257 }
258 
259 /*
260  * HP Jornada680/690, HP620LX
261  */
262 static void
263 pfckbd_callout_hp(void *arg)
264 {
265 #define PFCKBD_HP_PDCR_MASK 0xcc0c
266 #define PFCKBD_HP_PECR_MASK 0xf0cf
267 
268 	/*
269 	 * Disable output on all lines but the n'th line in D.
270 	 * Pull the n'th scan line in D low.
271 	 */
272 #define PD(n)								\
273 	{ (uint16_t)(PFCKBD_HP_PDCR_MASK & (~(1 << (2*(n)+1)))),	\
274 	  (uint16_t)(PFCKBD_HP_PECR_MASK & 0xffff),			\
275 	  (uint8_t)~(1 << (n)),						\
276 	  0xff }
277 
278 	/* Ditto for E */
279 #define PE(n)								\
280 	{ (uint16_t)(PFCKBD_HP_PDCR_MASK & 0xffff),			\
281 	  (uint16_t)(PFCKBD_HP_PECR_MASK & (~(1 << (2*(n)+1)))),	\
282 	  0xff,								\
283 	  (uint8_t)~(1 << (n)) }
284 
285 	static const struct {
286 		uint16_t dc, ec; uint8_t d, e;
287 	} scan[] = {
288 		PD(1), PD(5), PE(1), PE(6), PE(7), PE(3), PE(0), PD(7)
289 	};
290 
291 #undef PD
292 #undef PE
293 
294 	struct pfckbd_core *pc = arg;
295 	uint16_t dc, ec;
296 	int column;
297 	uint16_t data;
298 
299 	if (!pc->pc_enabled)
300 		goto reinstall;
301 
302 	/* bits in D/E control regs we do not touch (XXX: can they change?) */
303 	dc = _reg_read_2(SH7709_PDCR) & ~PFCKBD_HP_PDCR_MASK;
304 	ec = _reg_read_2(SH7709_PECR) & ~PFCKBD_HP_PECR_MASK;
305 
306 	for (column = 0; column < 8; column++) {
307 		/* disable output to all lines except the one we scan */
308 		_reg_write_2(SH7709_PDCR, dc | scan[column].dc);
309 		_reg_write_2(SH7709_PECR, ec | scan[column].ec);
310 		delay(5);
311 
312 		/* pull the scan line low */
313 		_reg_write_1(SH7709_PDDR, scan[column].d);
314 		_reg_write_1(SH7709_PEDR, scan[column].e);
315 		delay(50);
316 
317 		/* read sense */
318 		data = _reg_read_1(SH7709_PFDR)
319 			| (_reg_read_1(SH7709_PCDR) << 8);
320 
321 		pfckbd_input(pc, column, data);
322 	}
323 
324 	/* scan no lines */
325 	_reg_write_1(SH7709_PDDR, 0xff);
326 	_reg_write_1(SH7709_PEDR, 0xff);
327 
328 	/* enable all scan lines */
329 	_reg_write_2(SH7709_PDCR, dc | (0x5555 & PFCKBD_HP_PDCR_MASK));
330 	_reg_write_2(SH7709_PECR, ec | (0x5555 & PFCKBD_HP_PECR_MASK));
331 
332 #if 0
333 	/* (ignore) extra keys/events (recorder buttons, lid, cable &c) */
334 	data = _reg_read_1(SH7709_PGDR) | (_reg_read_1(SH7709_PHDR) << 8);
335 #endif
336 
337  reinstall:
338 	callout_schedule(&pc->pc_soft_ch, 1);
339 }
340 
341 /*
342  * HITACH PERSONA (HPW-50PAD)
343  */
344 static void
345 pfckbd_callout_hitachi(void *arg)
346 {
347 #define PFCKBD_HITACHI_PCCR_MASK 0xfff3
348 #define PFCKBD_HITACHI_PDCR_MASK 0x000c
349 #define PFCKBD_HITACHI_PECR_MASK 0x30cf
350 
351 #define PFCKBD_HITACHI_PCDR_SCN_MASK 0xfd
352 #define PFCKBD_HITACHI_PDDR_SCN_MASK 0x02
353 #define PFCKBD_HITACHI_PEDR_SCN_MASK 0x4b
354 
355 #define PFCKBD_HITACHI_PCDR_SNS_MASK 0x01
356 #define PFCKBD_HITACHI_PFDR_SNS_MASK 0xfe
357 
358 	/*
359 	 * Disable output on all lines but the n'th line in C.
360 	 * Pull the n'th scan line in C low.
361 	 */
362 #define PC(n)								\
363 	{ (uint16_t)(PFCKBD_HITACHI_PCCR_MASK & (~(1 << (2*(n)+1)))),	\
364 	  (uint16_t)(PFCKBD_HITACHI_PDCR_MASK & 0xffff),		\
365 	  (uint16_t)(PFCKBD_HITACHI_PECR_MASK & 0xffff),		\
366 	  (uint8_t)(PFCKBD_HITACHI_PCDR_SCN_MASK & ~(1 << (n))),	\
367 	  PFCKBD_HITACHI_PDDR_SCN_MASK,					\
368 	  PFCKBD_HITACHI_PEDR_SCN_MASK }
369 
370 	/* Ditto for D */
371 #define PD(n)								\
372 	{ (uint16_t)(PFCKBD_HITACHI_PCCR_MASK & 0xffff),		\
373 	  (uint16_t)(PFCKBD_HITACHI_PDCR_MASK & (~(1 << (2*(n)+1)))),	\
374 	  (uint16_t)(PFCKBD_HITACHI_PECR_MASK & 0xffff),		\
375 	  PFCKBD_HITACHI_PCDR_SCN_MASK,					\
376 	  (uint8_t)(PFCKBD_HITACHI_PDDR_SCN_MASK & ~(1 << (n))),	\
377 	  PFCKBD_HITACHI_PEDR_SCN_MASK }
378 
379 	/* Ditto for E */
380 #define PE(n)								\
381 	{ (uint16_t)(PFCKBD_HITACHI_PCCR_MASK & 0xffff),		\
382 	  (uint16_t)(PFCKBD_HITACHI_PDCR_MASK & 0xffff),		\
383 	  (uint16_t)(PFCKBD_HITACHI_PECR_MASK & (~(1 << (2*(n)+1)))),	\
384 	  PFCKBD_HITACHI_PCDR_SCN_MASK,					\
385 	  PFCKBD_HITACHI_PDDR_SCN_MASK,					\
386 	  (uint8_t)(PFCKBD_HITACHI_PEDR_SCN_MASK & ~(1 << (n))) }
387 
388 	static const struct {
389 		uint16_t cc, dc, ec; uint8_t c, d, e;
390 	} scan[] = {
391 		PE(6), PE(3), PE(1), PE(0), PC(7), PC(6), PC(5), PC(4),
392 		PC(3), PC(2), PD(1), PC(0)
393 	};
394 
395 	struct pfckbd_core *pc = arg;
396 	uint16_t cc, dc, ec;
397 	uint8_t data[2], cd, dd, ed;
398 	int i;
399 
400 	if (!pc->pc_enabled)
401 		goto reinstall;
402 
403 	/* bits in C/D/E control regs we do not touch (XXX: can they change?) */
404 	cc = _reg_read_2(SH7709_PCCR) & ~PFCKBD_HITACHI_PCCR_MASK;
405 	dc = _reg_read_2(SH7709_PDCR) & ~PFCKBD_HITACHI_PDCR_MASK;
406 	ec = _reg_read_2(SH7709_PECR) & ~PFCKBD_HITACHI_PECR_MASK;
407 
408 	for (i = 0; i < 12; i++) {
409 		/* disable output to all lines except the one we scan */
410 		_reg_write_2(SH7709_PCCR, cc | scan[i].cc);
411 		_reg_write_2(SH7709_PDCR, dc | scan[i].dc);
412 		_reg_write_2(SH7709_PECR, ec | scan[i].ec);
413 		delay(5);
414 
415 		cd = _reg_read_1(SH7709_PCDR) & ~PFCKBD_HITACHI_PCDR_SCN_MASK;
416 		dd = _reg_read_1(SH7709_PDDR) & ~PFCKBD_HITACHI_PDDR_SCN_MASK;
417 		ed = _reg_read_1(SH7709_PEDR) & ~PFCKBD_HITACHI_PEDR_SCN_MASK;
418 
419 		/* pull the scan line low */
420 		_reg_write_1(SH7709_PCDR, cd | scan[i].c);
421 		_reg_write_1(SH7709_PDDR, dd | scan[i].d);
422 		_reg_write_1(SH7709_PEDR, ed | scan[i].e);
423 		delay(50);
424 
425 		/* read sense */
426 		data[i & 0x1] =
427 		    (_reg_read_1(SH7709_PCDR) & PFCKBD_HITACHI_PCDR_SNS_MASK)
428 		  | (_reg_read_1(SH7709_PFDR) & PFCKBD_HITACHI_PFDR_SNS_MASK);
429 
430 		if (i & 0x1)
431 			pfckbd_input(pc, (i >> 1), (data[0] | (data[1] << 8)));
432 	}
433 
434 	/* enable all scan lines */
435 	_reg_write_2(SH7709_PCCR, cc | (0x5555 & PFCKBD_HITACHI_PCCR_MASK));
436 	_reg_write_2(SH7709_PDCR, dc | (0x5555 & PFCKBD_HITACHI_PDCR_MASK));
437 	_reg_write_2(SH7709_PECR, ec | (0x5555 & PFCKBD_HITACHI_PECR_MASK));
438 
439  reinstall:
440 	callout_schedule(&pc->pc_soft_ch, 1);
441 }
442 
443 void
444 pfckbd_poll_hitachi_power()
445 {
446 	static const struct {
447 		uint16_t cc, dc, ec; uint8_t c, d, e;
448 	} poll = PD(1);
449 
450 #undef PC
451 #undef PD
452 #undef PE
453 
454 	uint16_t cc, dc, ec;
455 	uint8_t cd, dd, ed;
456 
457 	/* bits in C/D/E control regs we do not touch (XXX: can they change?) */
458 	cc = _reg_read_2(SH7709_PCCR) & ~PFCKBD_HITACHI_PCCR_MASK;
459 	dc = _reg_read_2(SH7709_PDCR) & ~PFCKBD_HITACHI_PDCR_MASK;
460 	ec = _reg_read_2(SH7709_PECR) & ~PFCKBD_HITACHI_PECR_MASK;
461 
462 	/* disable output to all lines except the one we scan */
463 	_reg_write_2(SH7709_PCCR, cc | poll.cc);
464 	_reg_write_2(SH7709_PDCR, dc | poll.dc);
465 	_reg_write_2(SH7709_PECR, ec | poll.ec);
466 	delay(5);
467 
468 	cd = _reg_read_1(SH7709_PCDR) & ~PFCKBD_HITACHI_PCDR_SCN_MASK;
469 	dd = _reg_read_1(SH7709_PDDR) & ~PFCKBD_HITACHI_PDDR_SCN_MASK;
470 	ed = _reg_read_1(SH7709_PEDR) & ~PFCKBD_HITACHI_PEDR_SCN_MASK;
471 
472 	/* pull the scan line low */
473 	_reg_write_1(SH7709_PCDR, cd | poll.c);
474 	_reg_write_1(SH7709_PDDR, dd | poll.d);
475 	_reg_write_1(SH7709_PEDR, ed | poll.e);
476 	delay(50);
477 
478 	/* poll POWER On */
479 	while (_reg_read_1(SH7709_PCDR) & PFCKBD_HITACHI_PCDR_SNS_MASK & 0x01);
480 
481 	/* enable all scan lines */
482 	_reg_write_2(SH7709_PCCR, cc | (0x5555 & PFCKBD_HITACHI_PCCR_MASK));
483 	_reg_write_2(SH7709_PDCR, dc | (0x5555 & PFCKBD_HITACHI_PDCR_MASK));
484 	_reg_write_2(SH7709_PECR, ec | (0x5555 & PFCKBD_HITACHI_PECR_MASK));
485 }
486