ztp.c revision 1.8 1 1.8 nonaka /* $NetBSD: ztp.c,v 1.8 2009/12/12 07:49:31 nonaka Exp $ */
2 1.1 peter /* $OpenBSD: zts.c,v 1.9 2005/04/24 18:55:49 uwe Exp $ */
3 1.1 peter
4 1.1 peter /*
5 1.1 peter * Copyright (c) 2005 Dale Rahn <drahn (at) openbsd.org>
6 1.1 peter *
7 1.1 peter * Permission to use, copy, modify, and distribute this software for any
8 1.1 peter * purpose with or without fee is hereby granted, provided that the above
9 1.1 peter * copyright notice and this permission notice appear in all copies.
10 1.1 peter *
11 1.1 peter * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
12 1.1 peter * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
13 1.1 peter * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
14 1.1 peter * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
15 1.1 peter * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
16 1.1 peter * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
17 1.1 peter * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
18 1.1 peter */
19 1.1 peter
20 1.1 peter #include <sys/cdefs.h>
21 1.8 nonaka __KERNEL_RCSID(0, "$NetBSD: ztp.c,v 1.8 2009/12/12 07:49:31 nonaka Exp $");
22 1.1 peter
23 1.1 peter #include "lcd.h"
24 1.1 peter
25 1.1 peter #include <sys/types.h>
26 1.1 peter #include <sys/param.h>
27 1.1 peter #include <sys/systm.h>
28 1.1 peter #include <sys/device.h>
29 1.1 peter #include <sys/malloc.h>
30 1.1 peter #include <sys/kernel.h>
31 1.1 peter #include <sys/callout.h>
32 1.1 peter
33 1.1 peter #include <dev/wscons/wsconsio.h>
34 1.1 peter #include <dev/wscons/wsmousevar.h>
35 1.1 peter #include <dev/wscons/wsdisplayvar.h>
36 1.1 peter
37 1.1 peter #include <dev/hpc/hpcfbio.h> /* XXX: for tpctl */
38 1.1 peter #include <dev/hpc/hpctpanelvar.h>
39 1.1 peter
40 1.3 nonaka #include <arm/xscale/pxa2x0cpu.h>
41 1.1 peter #include <arm/xscale/pxa2x0reg.h>
42 1.1 peter #include <arm/xscale/pxa2x0var.h>
43 1.3 nonaka #include <arm/xscale/xscalereg.h>
44 1.1 peter #include <arm/xscale/pxa2x0_lcd.h>
45 1.1 peter #include <arm/xscale/pxa2x0_gpio.h>
46 1.1 peter
47 1.1 peter #include <zaurus/dev/zsspvar.h>
48 1.1 peter
49 1.3 nonaka #ifdef ZTP_DEBUG
50 1.3 nonaka #define DPRINTF(s) printf s
51 1.3 nonaka #else
52 1.3 nonaka #define DPRINTF(s)
53 1.3 nonaka #endif
54 1.3 nonaka
55 1.1 peter /*
56 1.1 peter * ADS784x touch screen controller
57 1.1 peter */
58 1.1 peter #define ADSCTRL_PD0_SH 0 /* PD0 bit */
59 1.1 peter #define ADSCTRL_PD1_SH 1 /* PD1 bit */
60 1.1 peter #define ADSCTRL_DFR_SH 2 /* SER/DFR bit */
61 1.1 peter #define ADSCTRL_MOD_SH 3 /* Mode bit */
62 1.1 peter #define ADSCTRL_ADR_SH 4 /* Address setting */
63 1.1 peter #define ADSCTRL_STS_SH 7 /* Start bit */
64 1.1 peter
65 1.1 peter #define GPIO_TP_INT_C3K 11
66 1.1 peter #define GPIO_HSYNC_C3K 22
67 1.1 peter
68 1.1 peter #define POLL_TIMEOUT_RATE0 ((hz * 150)/1000)
69 1.1 peter #define POLL_TIMEOUT_RATE1 (hz / 100) /* XXX every tick */
70 1.1 peter
71 1.1 peter #define CCNT_HS_400_VGA_C3K 6250 /* 15.024us */
72 1.1 peter
73 1.1 peter /* XXX need to ask zaurus_lcd.c for the screen dimension */
74 1.1 peter #define CURRENT_DISPLAY (&sharp_zaurus_C3000)
75 1.1 peter extern const struct lcd_panel_geometry sharp_zaurus_C3000;
76 1.1 peter
77 1.1 peter /* Settable via sysctl. */
78 1.3 nonaka int ztp_rawmode;
79 1.1 peter
80 1.1 peter static const struct wsmouse_calibcoords ztp_default_calib = {
81 1.3 nonaka 0, 0, 479, 639, /* minx, miny, maxx, maxy */
82 1.3 nonaka 5, /* samplelen */
83 1.3 nonaka {
84 1.3 nonaka { 1929, 2021, 240, 320 }, /* rawx, rawy, x, y */
85 1.3 nonaka { 545, 3464, 48, 64 },
86 1.3 nonaka { 3308, 3452, 48, 576 },
87 1.3 nonaka { 2854, 768, 432, 576 },
88 1.3 nonaka { 542, 593, 432, 64 }
89 1.3 nonaka }
90 1.3 nonaka };
91 1.3 nonaka
92 1.3 nonaka struct ztp_pos {
93 1.3 nonaka int x;
94 1.3 nonaka int y;
95 1.3 nonaka int z; /* touch pressure */
96 1.1 peter };
97 1.1 peter
98 1.1 peter struct ztp_softc {
99 1.6 nonaka device_t sc_dev;
100 1.1 peter struct callout sc_tp_poll;
101 1.1 peter void *sc_gh;
102 1.1 peter int sc_enabled;
103 1.1 peter int sc_buttons; /* button emulation ? */
104 1.1 peter struct device *sc_wsmousedev;
105 1.3 nonaka struct ztp_pos sc_oldpos;
106 1.1 peter int sc_resx;
107 1.1 peter int sc_resy;
108 1.1 peter struct tpcalib_softc sc_tpcalib;
109 1.1 peter };
110 1.1 peter
111 1.6 nonaka static int ztp_match(device_t, cfdata_t, void *);
112 1.6 nonaka static void ztp_attach(device_t, device_t, void *);
113 1.1 peter
114 1.6 nonaka CFATTACH_DECL_NEW(ztp, sizeof(struct ztp_softc),
115 1.1 peter ztp_match, ztp_attach, NULL, NULL);
116 1.1 peter
117 1.1 peter static int ztp_enable(void *);
118 1.1 peter static void ztp_disable(void *);
119 1.7 nonaka static bool ztp_suspend(device_t dv PMF_FN_ARGS);
120 1.7 nonaka static bool ztp_resume(device_t dv PMF_FN_ARGS);
121 1.1 peter static void ztp_poll(void *);
122 1.1 peter static int ztp_irq(void *);
123 1.2 christos static int ztp_ioctl(void *, u_long, void *, int, struct lwp *);
124 1.1 peter
125 1.3 nonaka static const struct wsmouse_accessops ztp_accessops = {
126 1.1 peter ztp_enable,
127 1.1 peter ztp_ioctl,
128 1.1 peter ztp_disable
129 1.1 peter };
130 1.1 peter
131 1.1 peter static int
132 1.6 nonaka ztp_match(device_t parent, cfdata_t cf, void *aux)
133 1.1 peter {
134 1.1 peter
135 1.1 peter return 1;
136 1.1 peter }
137 1.1 peter
138 1.1 peter static void
139 1.6 nonaka ztp_attach(device_t parent, device_t self, void *aux)
140 1.1 peter {
141 1.6 nonaka struct ztp_softc *sc = device_private(self);
142 1.1 peter struct wsmousedev_attach_args a;
143 1.1 peter
144 1.6 nonaka sc->sc_dev = self;
145 1.6 nonaka
146 1.6 nonaka aprint_normal("\n");
147 1.6 nonaka aprint_naive("\n");
148 1.3 nonaka
149 1.4 ad callout_init(&sc->sc_tp_poll, 0);
150 1.1 peter callout_setfunc(&sc->sc_tp_poll, ztp_poll, sc);
151 1.1 peter
152 1.1 peter /* Initialize ADS7846 Difference Reference mode */
153 1.1 peter (void)zssp_ic_send(ZSSP_IC_ADS7846,
154 1.1 peter (1<<ADSCTRL_ADR_SH) | (1<<ADSCTRL_STS_SH));
155 1.1 peter delay(5000);
156 1.1 peter (void)zssp_ic_send(ZSSP_IC_ADS7846,
157 1.1 peter (3<<ADSCTRL_ADR_SH) | (1<<ADSCTRL_STS_SH));
158 1.1 peter delay(5000);
159 1.1 peter (void)zssp_ic_send(ZSSP_IC_ADS7846,
160 1.1 peter (4<<ADSCTRL_ADR_SH) | (1<<ADSCTRL_STS_SH));
161 1.1 peter delay(5000);
162 1.1 peter (void)zssp_ic_send(ZSSP_IC_ADS7846,
163 1.1 peter (5<<ADSCTRL_ADR_SH) | (1<<ADSCTRL_STS_SH));
164 1.1 peter delay(5000);
165 1.1 peter
166 1.1 peter a.accessops = &ztp_accessops;
167 1.1 peter a.accesscookie = sc;
168 1.1 peter
169 1.1 peter #if NLCD > 0
170 1.1 peter sc->sc_resx = CURRENT_DISPLAY->panel_height;
171 1.1 peter sc->sc_resy = CURRENT_DISPLAY->panel_width;
172 1.1 peter #else
173 1.1 peter sc->sc_resx = 480; /* XXX */
174 1.1 peter sc->sc_resy = 640; /* XXX */
175 1.1 peter #endif
176 1.1 peter
177 1.1 peter sc->sc_wsmousedev = config_found(self, &a, wsmousedevprint);
178 1.1 peter
179 1.1 peter /* Initialize calibration, set default parameters. */
180 1.1 peter tpcalib_init(&sc->sc_tpcalib);
181 1.1 peter tpcalib_ioctl(&sc->sc_tpcalib, WSMOUSEIO_SCALIBCOORDS,
182 1.1 peter __UNCONST(&ztp_default_calib), 0, 0);
183 1.1 peter }
184 1.1 peter
185 1.1 peter static int
186 1.1 peter ztp_enable(void *v)
187 1.1 peter {
188 1.1 peter struct ztp_softc *sc = (struct ztp_softc *)v;
189 1.1 peter
190 1.6 nonaka DPRINTF(("%s: ztp_enable()\n", device_xname(sc->sc_dev)));
191 1.3 nonaka
192 1.3 nonaka if (sc->sc_enabled) {
193 1.6 nonaka DPRINTF(("%s: already enabled\n", device_xname(sc->sc_dev)));
194 1.1 peter return EBUSY;
195 1.3 nonaka }
196 1.1 peter
197 1.1 peter callout_stop(&sc->sc_tp_poll);
198 1.1 peter
199 1.7 nonaka if (!pmf_device_register(sc->sc_dev, ztp_suspend, ztp_resume))
200 1.7 nonaka aprint_error_dev(sc->sc_dev,
201 1.7 nonaka "couldn't establish power handler\n");
202 1.1 peter
203 1.1 peter pxa2x0_gpio_set_function(GPIO_TP_INT_C3K, GPIO_IN);
204 1.1 peter
205 1.1 peter /* XXX */
206 1.1 peter if (sc->sc_gh == NULL) {
207 1.1 peter sc->sc_gh = pxa2x0_gpio_intr_establish(GPIO_TP_INT_C3K,
208 1.1 peter IST_EDGE_FALLING, IPL_TTY, ztp_irq, sc);
209 1.1 peter } else {
210 1.1 peter pxa2x0_gpio_intr_unmask(sc->sc_gh);
211 1.1 peter }
212 1.1 peter
213 1.1 peter /* enable interrupts */
214 1.1 peter sc->sc_enabled = 1;
215 1.1 peter sc->sc_buttons = 0;
216 1.1 peter
217 1.1 peter return 0;
218 1.1 peter }
219 1.1 peter
220 1.1 peter static void
221 1.1 peter ztp_disable(void *v)
222 1.1 peter {
223 1.1 peter struct ztp_softc *sc = (struct ztp_softc *)v;
224 1.1 peter
225 1.6 nonaka DPRINTF(("%s: ztp_disable()\n", device_xname(sc->sc_dev)));
226 1.3 nonaka
227 1.1 peter callout_stop(&sc->sc_tp_poll);
228 1.1 peter
229 1.7 nonaka pmf_device_deregister(sc->sc_dev);
230 1.1 peter
231 1.3 nonaka if (sc->sc_gh) {
232 1.3 nonaka pxa2x0_gpio_intr_mask(sc->sc_gh);
233 1.1 peter }
234 1.1 peter
235 1.1 peter /* disable interrupts */
236 1.1 peter sc->sc_enabled = 0;
237 1.1 peter }
238 1.1 peter
239 1.7 nonaka static bool
240 1.7 nonaka ztp_suspend(device_t dv PMF_FN_ARGS)
241 1.1 peter {
242 1.7 nonaka struct ztp_softc *sc = device_private(dv);
243 1.7 nonaka
244 1.7 nonaka DPRINTF(("%s: ztp_suspend()\n", device_xname(sc->sc_dev)));
245 1.7 nonaka
246 1.7 nonaka sc->sc_enabled = 0;
247 1.7 nonaka pxa2x0_gpio_intr_mask(sc->sc_gh);
248 1.1 peter
249 1.7 nonaka callout_stop(&sc->sc_tp_poll);
250 1.3 nonaka
251 1.7 nonaka /* Turn off reference voltage but leave ADC on. */
252 1.7 nonaka (void)zssp_ic_send(ZSSP_IC_ADS7846, (1 << ADSCTRL_PD1_SH) |
253 1.7 nonaka (1 << ADSCTRL_ADR_SH) | (1 << ADSCTRL_STS_SH));
254 1.1 peter
255 1.7 nonaka pxa2x0_gpio_set_function(GPIO_TP_INT_C3K, GPIO_OUT | GPIO_SET);
256 1.1 peter
257 1.7 nonaka return true;
258 1.7 nonaka }
259 1.1 peter
260 1.7 nonaka static bool
261 1.7 nonaka ztp_resume(device_t dv PMF_FN_ARGS)
262 1.7 nonaka {
263 1.7 nonaka struct ztp_softc *sc = device_private(dv);
264 1.1 peter
265 1.7 nonaka DPRINTF(("%s: ztp_resume()\n", device_xname(sc->sc_dev)));
266 1.1 peter
267 1.7 nonaka pxa2x0_gpio_set_function(GPIO_TP_INT_C3K, GPIO_IN);
268 1.7 nonaka pxa2x0_gpio_intr_mask(sc->sc_gh);
269 1.1 peter
270 1.7 nonaka /* Enable automatic low power mode. */
271 1.7 nonaka (void)zssp_ic_send(ZSSP_IC_ADS7846,
272 1.7 nonaka (4 << ADSCTRL_ADR_SH) | (1 << ADSCTRL_STS_SH));
273 1.7 nonaka
274 1.7 nonaka pxa2x0_gpio_intr_unmask(sc->sc_gh);
275 1.7 nonaka sc->sc_enabled = 1;
276 1.7 nonaka
277 1.7 nonaka return true;
278 1.1 peter }
279 1.1 peter
280 1.1 peter #define HSYNC() \
281 1.3 nonaka do { \
282 1.3 nonaka while (pxa2x0_gpio_get_bit(GPIO_HSYNC_C3K) == 0) \
283 1.3 nonaka continue; \
284 1.3 nonaka while (pxa2x0_gpio_get_bit(GPIO_HSYNC_C3K) != 0) \
285 1.3 nonaka continue; \
286 1.3 nonaka } while (/*CONSTCOND*/0)
287 1.3 nonaka
288 1.3 nonaka static inline uint32_t pxa2x0_ccnt_enable(uint32_t);
289 1.3 nonaka static inline uint32_t pxa2x0_read_ccnt(void);
290 1.3 nonaka static uint32_t ztp_sync_ads784x(int, int, uint32_t);
291 1.3 nonaka static void ztp_sync_send(uint32_t);
292 1.3 nonaka static int ztp_readpos(struct ztp_pos *);
293 1.1 peter
294 1.3 nonaka static inline uint32_t
295 1.3 nonaka pxa2x0_ccnt_enable(uint32_t reg)
296 1.1 peter {
297 1.1 peter uint32_t rv;
298 1.1 peter
299 1.1 peter __asm volatile("mrc p14, 0, %0, c0, c1, 0" : "=r" (rv));
300 1.3 nonaka __asm volatile("mcr p14, 0, %0, c0, c1, 0" : : "r" (reg));
301 1.3 nonaka
302 1.3 nonaka return rv;
303 1.1 peter }
304 1.1 peter
305 1.3 nonaka static inline uint32_t
306 1.1 peter pxa2x0_read_ccnt(void)
307 1.1 peter {
308 1.1 peter uint32_t rv;
309 1.1 peter
310 1.1 peter __asm volatile("mrc p14, 0, %0, c1, c1, 0" : "=r" (rv));
311 1.3 nonaka
312 1.1 peter return rv;
313 1.1 peter }
314 1.1 peter
315 1.1 peter /*
316 1.1 peter * Communicate synchronously with the ADS784x touch screen controller.
317 1.1 peter */
318 1.1 peter static uint32_t
319 1.1 peter ztp_sync_ads784x(int dorecv/* XXX */, int dosend/* XXX */, uint32_t cmd)
320 1.1 peter {
321 1.3 nonaka uint32_t ccen;
322 1.3 nonaka uint32_t rv = 0;
323 1.1 peter
324 1.1 peter /* XXX poll hsync only if LCD is enabled */
325 1.1 peter
326 1.1 peter /* start clock counter */
327 1.3 nonaka ccen = pxa2x0_ccnt_enable(PMNC_E);
328 1.1 peter
329 1.1 peter HSYNC();
330 1.1 peter
331 1.1 peter if (dorecv) {
332 1.1 peter /* read SSDR and disable ADS784x */
333 1.1 peter rv = zssp_ic_stop(ZSSP_IC_ADS7846);
334 1.1 peter }
335 1.1 peter
336 1.3 nonaka if (dosend) {
337 1.1 peter ztp_sync_send(cmd);
338 1.3 nonaka }
339 1.1 peter
340 1.1 peter /* stop clock counter */
341 1.1 peter pxa2x0_ccnt_enable(ccen);
342 1.1 peter
343 1.1 peter return rv;
344 1.1 peter }
345 1.1 peter
346 1.1 peter void
347 1.1 peter ztp_sync_send(uint32_t cmd)
348 1.1 peter {
349 1.3 nonaka volatile uint32_t base, now;
350 1.1 peter uint32_t tck;
351 1.1 peter
352 1.1 peter /* XXX */
353 1.1 peter tck = CCNT_HS_400_VGA_C3K - 151;
354 1.1 peter
355 1.1 peter /* send dummy command; discard SSDR */
356 1.1 peter (void)zssp_ic_send(ZSSP_IC_ADS7846, cmd);
357 1.1 peter
358 1.1 peter /* wait for refresh */
359 1.1 peter HSYNC();
360 1.1 peter
361 1.1 peter /* wait after refresh */
362 1.3 nonaka base = pxa2x0_read_ccnt();
363 1.3 nonaka now = pxa2x0_read_ccnt();
364 1.3 nonaka while ((now - base) < tck)
365 1.3 nonaka now = pxa2x0_read_ccnt();
366 1.1 peter
367 1.1 peter /* send the actual command; keep ADS784x enabled */
368 1.1 peter zssp_ic_start(ZSSP_IC_ADS7846, cmd);
369 1.1 peter }
370 1.1 peter
371 1.1 peter static int
372 1.1 peter ztp_readpos(struct ztp_pos *pos)
373 1.1 peter {
374 1.1 peter int cmd;
375 1.1 peter int t0, t1;
376 1.1 peter int down;
377 1.1 peter
378 1.1 peter /* XXX */
379 1.1 peter pxa2x0_gpio_set_function(GPIO_HSYNC_C3K, GPIO_IN);
380 1.1 peter
381 1.1 peter /* check that pen is down */
382 1.1 peter cmd = (1 << ADSCTRL_PD0_SH) | (1 << ADSCTRL_PD1_SH) |
383 1.1 peter (3 << ADSCTRL_ADR_SH) | (1 << ADSCTRL_STS_SH);
384 1.3 nonaka t0 = zssp_ic_send(ZSSP_IC_ADS7846, cmd);
385 1.3 nonaka DPRINTF(("ztp_readpos(): t0 = %d\n", t0));
386 1.1 peter
387 1.3 nonaka down = (t0 >= 10);
388 1.1 peter if (down == 0)
389 1.1 peter goto out;
390 1.1 peter
391 1.1 peter /* Y */
392 1.1 peter cmd = (1 << ADSCTRL_PD0_SH) | (1 << ADSCTRL_PD1_SH) |
393 1.1 peter (1 << ADSCTRL_ADR_SH) | (1 << ADSCTRL_STS_SH);
394 1.1 peter (void)ztp_sync_ads784x(0, 1, cmd);
395 1.1 peter
396 1.1 peter /* Y */
397 1.1 peter cmd = (1 << ADSCTRL_PD0_SH) | (1 << ADSCTRL_PD1_SH) |
398 1.1 peter (1 << ADSCTRL_ADR_SH) | (1 << ADSCTRL_STS_SH);
399 1.1 peter (void)ztp_sync_ads784x(1, 1, cmd);
400 1.1 peter
401 1.1 peter /* X */
402 1.1 peter cmd = (1 << ADSCTRL_PD0_SH) | (1 << ADSCTRL_PD1_SH) |
403 1.1 peter (5 << ADSCTRL_ADR_SH) | (1 << ADSCTRL_STS_SH);
404 1.1 peter pos->y = ztp_sync_ads784x(1, 1, cmd);
405 1.3 nonaka DPRINTF(("ztp_readpos(): y = %d\n", pos->y));
406 1.1 peter
407 1.1 peter /* T0 */
408 1.1 peter cmd = (1 << ADSCTRL_PD0_SH) | (1 << ADSCTRL_PD1_SH) |
409 1.1 peter (3 << ADSCTRL_ADR_SH) | (1 << ADSCTRL_STS_SH);
410 1.1 peter pos->x = ztp_sync_ads784x(1, 1, cmd);
411 1.3 nonaka DPRINTF(("ztp_readpos(): x = %d\n", pos->x));
412 1.1 peter
413 1.1 peter /* T1 */
414 1.1 peter cmd = (1 << ADSCTRL_PD0_SH) | (1 << ADSCTRL_PD1_SH) |
415 1.1 peter (4 << ADSCTRL_ADR_SH) | (1 << ADSCTRL_STS_SH);
416 1.1 peter t0 = ztp_sync_ads784x(1, 1, cmd);
417 1.1 peter t1 = ztp_sync_ads784x(1, 0, cmd);
418 1.3 nonaka DPRINTF(("ztp_readpos(): t0 = %d, t1 = %d\n", t0, t1));
419 1.1 peter
420 1.1 peter /* check that pen is still down */
421 1.1 peter /* XXX pressure sensitivity varies with X or what? */
422 1.1 peter if (t0 == 0 || (pos->x * (t1 - t0) / t0) >= 15000)
423 1.1 peter down = 0;
424 1.1 peter pos->z = down;
425 1.1 peter
426 1.1 peter out:
427 1.1 peter /* Enable automatic low power mode. */
428 1.1 peter cmd = (4 << ADSCTRL_ADR_SH) | (1 << ADSCTRL_STS_SH);
429 1.1 peter (void)zssp_ic_send(ZSSP_IC_ADS7846, cmd);
430 1.1 peter
431 1.1 peter return down;
432 1.1 peter }
433 1.1 peter
434 1.1 peter static void
435 1.1 peter ztp_poll(void *v)
436 1.1 peter {
437 1.1 peter int s;
438 1.1 peter
439 1.1 peter s = spltty();
440 1.1 peter (void)ztp_irq(v);
441 1.1 peter splx(s);
442 1.1 peter }
443 1.1 peter
444 1.1 peter static int
445 1.1 peter ztp_irq(void *v)
446 1.1 peter {
447 1.1 peter extern int zkbd_modstate;
448 1.1 peter struct ztp_softc *sc = (struct ztp_softc *)v;
449 1.1 peter struct ztp_pos tp = { 0, 0, 0 };
450 1.1 peter int pindown;
451 1.1 peter int down;
452 1.1 peter int x, y;
453 1.1 peter int s;
454 1.1 peter
455 1.1 peter if (!sc->sc_enabled)
456 1.1 peter return 0;
457 1.1 peter
458 1.1 peter s = splhigh();
459 1.1 peter
460 1.1 peter pindown = pxa2x0_gpio_get_bit(GPIO_TP_INT_C3K) ? 0 : 1;
461 1.6 nonaka DPRINTF(("%s: pindown = %d\n", device_xname(sc->sc_dev), pindown));
462 1.1 peter if (pindown) {
463 1.1 peter pxa2x0_gpio_intr_mask(sc->sc_gh);
464 1.1 peter callout_schedule(&sc->sc_tp_poll, POLL_TIMEOUT_RATE1);
465 1.1 peter }
466 1.1 peter
467 1.1 peter down = ztp_readpos(&tp);
468 1.6 nonaka DPRINTF(("%s: x = %d, y = %d, z = %d, down = %d\n",
469 1.6 nonaka device_xname(sc->sc_dev), tp.x, tp.y, tp.z, down));
470 1.1 peter
471 1.1 peter if (!pindown) {
472 1.1 peter pxa2x0_gpio_intr_unmask(sc->sc_gh);
473 1.1 peter callout_schedule(&sc->sc_tp_poll, POLL_TIMEOUT_RATE0);
474 1.1 peter }
475 1.1 peter pxa2x0_gpio_clear_intr(GPIO_TP_INT_C3K);
476 1.1 peter
477 1.1 peter splx(s);
478 1.1 peter
479 1.1 peter if (down) {
480 1.1 peter if (!ztp_rawmode) {
481 1.1 peter tpcalib_trans(&sc->sc_tpcalib, tp.x, tp.y, &x, &y);
482 1.6 nonaka DPRINTF(("%s: x = %d, y = %d\n",
483 1.6 nonaka device_xname(sc->sc_dev), x, y));
484 1.1 peter tp.x = x;
485 1.1 peter tp.y = y;
486 1.1 peter }
487 1.1 peter }
488 1.1 peter
489 1.1 peter if (zkbd_modstate != 0 && down) {
490 1.3 nonaka if (zkbd_modstate & (1 << 1)) {
491 1.1 peter /* Fn */
492 1.1 peter down = 2;
493 1.3 nonaka } else if (zkbd_modstate & (1 << 2)) {
494 1.1 peter /* 'Alt' */
495 1.1 peter down = 4;
496 1.1 peter }
497 1.1 peter }
498 1.1 peter if (!down) {
499 1.1 peter /* x/y values are not reliable when pen is up */
500 1.3 nonaka tp = sc->sc_oldpos;
501 1.1 peter }
502 1.1 peter
503 1.1 peter if (down || sc->sc_buttons != down) {
504 1.3 nonaka wsmouse_input(sc->sc_wsmousedev, down, tp.x, tp.y, 0, 0,
505 1.3 nonaka WSMOUSE_INPUT_ABSOLUTE_X | WSMOUSE_INPUT_ABSOLUTE_Y);
506 1.1 peter sc->sc_buttons = down;
507 1.3 nonaka sc->sc_oldpos = tp;
508 1.1 peter }
509 1.1 peter
510 1.1 peter return 1;
511 1.1 peter }
512 1.1 peter
513 1.1 peter static int
514 1.2 christos ztp_ioctl(void *v, u_long cmd, void *data, int flag, struct lwp *l)
515 1.1 peter {
516 1.1 peter struct ztp_softc *sc = (struct ztp_softc *)v;
517 1.1 peter struct wsmouse_id *id;
518 1.1 peter
519 1.1 peter switch (cmd) {
520 1.1 peter case WSMOUSEIO_GTYPE:
521 1.1 peter *(u_int *)data = WSMOUSE_TYPE_TPANEL;
522 1.1 peter return 0;
523 1.1 peter
524 1.1 peter case WSMOUSEIO_GETID:
525 1.1 peter /*
526 1.1 peter * return unique ID string,
527 1.1 peter * "<vendor> <model> <serial number>"
528 1.1 peter */
529 1.1 peter id = (struct wsmouse_id *)data;
530 1.1 peter if (id->type != WSMOUSE_ID_TYPE_UIDSTR)
531 1.1 peter return EINVAL;
532 1.1 peter strlcpy(id->data, "Sharp SL-C3x00 SN000000", WSMOUSE_ID_MAXLEN);
533 1.1 peter id->length = strlen(id->data);
534 1.1 peter return 0;
535 1.1 peter
536 1.1 peter case WSMOUSEIO_SCALIBCOORDS:
537 1.1 peter case WSMOUSEIO_GCALIBCOORDS:
538 1.8 nonaka return tpcalib_ioctl(&sc->sc_tpcalib, cmd, data, flag, l);
539 1.1 peter }
540 1.1 peter
541 1.1 peter return EPASSTHROUGH;
542 1.1 peter }
543