scoop.c revision 1.1 1 1.1 ober /* $NetBSD: scoop.c,v 1.1 2006/12/16 05:15:16 ober Exp $ */
2 1.1 ober /* $OpenBSD: zaurus_scoop.c,v 1.12 2005/11/17 05:26:31 uwe Exp $ */
3 1.1 ober
4 1.1 ober /*
5 1.1 ober * Copyright (c) 2005 Uwe Stuehler <uwe (at) bsdx.de>
6 1.1 ober *
7 1.1 ober * Permission to use, copy, modify, and distribute this software for any
8 1.1 ober * purpose with or without fee is hereby granted, provided that the above
9 1.1 ober * copyright notice and this permission notice appear in all copies.
10 1.1 ober *
11 1.1 ober * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
12 1.1 ober * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
13 1.1 ober * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
14 1.1 ober * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
15 1.1 ober * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
16 1.1 ober * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
17 1.1 ober * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
18 1.1 ober */
19 1.1 ober
20 1.1 ober #include <sys/cdefs.h>
21 1.1 ober __KERNEL_RCSID(0, "$NetBSD: scoop.c,v 1.1 2006/12/16 05:15:16 ober Exp $");
22 1.1 ober
23 1.1 ober #include <sys/param.h>
24 1.1 ober #include <sys/systm.h>
25 1.1 ober #include <sys/device.h>
26 1.1 ober #include <sys/conf.h>
27 1.1 ober #include <sys/gpio.h>
28 1.1 ober
29 1.1 ober #include <machine/bus.h>
30 1.1 ober
31 1.1 ober #include <arm/xscale/pxa2x0var.h>
32 1.1 ober
33 1.1 ober #include <zaurus/zaurus/zaurus_reg.h>
34 1.1 ober #include <zaurus/zaurus/zaurus_var.h>
35 1.1 ober
36 1.1 ober #include <zaurus/dev/scoopreg.h>
37 1.1 ober #include <zaurus/dev/scoopvar.h>
38 1.1 ober
39 1.1 ober #include "ioconf.h"
40 1.1 ober
41 1.1 ober struct scoop_softc {
42 1.1 ober struct device sc_dev;
43 1.1 ober bus_space_tag_t sc_iot;
44 1.1 ober bus_space_handle_t sc_ioh;
45 1.1 ober uint16_t sc_gpwr; /* GPIO state before suspend */
46 1.1 ober };
47 1.1 ober
48 1.1 ober static int scoopmatch(struct device *, struct cfdata *, void *);
49 1.1 ober static void scoopattach(struct device *, struct device *, void *);
50 1.1 ober
51 1.1 ober CFATTACH_DECL(scoop, sizeof(struct scoop_softc),
52 1.1 ober scoopmatch, scoopattach, NULL, NULL);
53 1.1 ober
54 1.1 ober int scoop_gpio_pin_read(struct scoop_softc *sc, int);
55 1.1 ober void scoop_gpio_pin_write(struct scoop_softc *sc, int, int);
56 1.1 ober void scoop_gpio_pin_ctl(struct scoop_softc *sc, int, int);
57 1.1 ober
58 1.1 ober static int
59 1.1 ober scoopmatch(struct device *parent, struct cfdata *cf, void *aux)
60 1.1 ober {
61 1.1 ober
62 1.1 ober /*
63 1.1 ober * Only C3000-like models are known to have two SCOOPs.
64 1.1 ober */
65 1.1 ober if (ZAURUS_ISC3000)
66 1.1 ober return (cf->cf_unit < 2);
67 1.1 ober return (cf->cf_unit == 0);
68 1.1 ober }
69 1.1 ober
70 1.1 ober static void
71 1.1 ober scoopattach(struct device *parent, struct device *self, void *aux)
72 1.1 ober {
73 1.1 ober struct pxaip_attach_args *pxa = (struct pxaip_attach_args *)aux;
74 1.1 ober struct scoop_softc *sc = (struct scoop_softc *)self;
75 1.1 ober bus_addr_t addr;
76 1.1 ober bus_size_t size;
77 1.1 ober
78 1.1 ober sc->sc_iot = pxa->pxa_iot;
79 1.1 ober
80 1.1 ober if (pxa->pxa_addr != -1)
81 1.1 ober addr = pxa->pxa_addr;
82 1.1 ober else if (sc->sc_dev.dv_unit == 0)
83 1.1 ober addr = C3000_SCOOP0_BASE;
84 1.1 ober else
85 1.1 ober addr = C3000_SCOOP1_BASE;
86 1.1 ober
87 1.1 ober size = pxa->pxa_size < SCOOP_SIZE ? SCOOP_SIZE : pxa->pxa_size;
88 1.1 ober
89 1.1 ober if (bus_space_map(sc->sc_iot, addr, size, 0, &sc->sc_ioh) != 0) {
90 1.1 ober printf(": failed to map %s\n", sc->sc_dev.dv_xname);
91 1.1 ober return;
92 1.1 ober }
93 1.1 ober
94 1.1 ober if (ZAURUS_ISC3000 && sc->sc_dev.dv_unit == 1) {
95 1.1 ober scoop_gpio_pin_ctl(sc, SCOOP1_AKIN_PULLUP, GPIO_PIN_OUTPUT);
96 1.1 ober scoop_gpio_pin_write(sc, SCOOP1_AKIN_PULLUP, GPIO_PIN_LOW);
97 1.1 ober } else if (!ZAURUS_ISC3000) {
98 1.1 ober scoop_gpio_pin_ctl(sc, SCOOP0_AKIN_PULLUP, GPIO_PIN_OUTPUT);
99 1.1 ober scoop_gpio_pin_write(sc, SCOOP0_AKIN_PULLUP, GPIO_PIN_LOW);
100 1.1 ober }
101 1.1 ober
102 1.1 ober printf(": PCMCIA/GPIO controller\n");
103 1.1 ober }
104 1.1 ober
105 1.1 ober int
106 1.1 ober scoop_gpio_pin_read(struct scoop_softc *sc, int pin)
107 1.1 ober {
108 1.1 ober uint16_t bit = (1 << pin);
109 1.1 ober uint16_t rv;
110 1.1 ober
111 1.1 ober rv = bus_space_read_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPWR);
112 1.1 ober return (rv & bit) != 0 ? 1 : 0;
113 1.1 ober }
114 1.1 ober
115 1.1 ober void
116 1.1 ober scoop_gpio_pin_write(struct scoop_softc *sc, int pin, int level)
117 1.1 ober {
118 1.1 ober uint16_t bit = (1 << pin);
119 1.1 ober uint16_t rv;
120 1.1 ober
121 1.1 ober rv = bus_space_read_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPWR);
122 1.1 ober bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPWR,
123 1.1 ober level == GPIO_PIN_LOW ? (rv & ~bit) : (rv | bit));
124 1.1 ober }
125 1.1 ober
126 1.1 ober void
127 1.1 ober scoop_gpio_pin_ctl(struct scoop_softc *sc, int pin, int flags)
128 1.1 ober {
129 1.1 ober uint16_t bit = (1 << pin);
130 1.1 ober uint16_t rv;
131 1.1 ober
132 1.1 ober rv = bus_space_read_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPCR);
133 1.1 ober switch (flags & (GPIO_PIN_INPUT|GPIO_PIN_OUTPUT)) {
134 1.1 ober case GPIO_PIN_INPUT:
135 1.1 ober rv &= ~bit;
136 1.1 ober break;
137 1.1 ober case GPIO_PIN_OUTPUT:
138 1.1 ober rv |= bit;
139 1.1 ober break;
140 1.1 ober }
141 1.1 ober bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPCR, rv);
142 1.1 ober }
143 1.1 ober
144 1.1 ober /*
145 1.1 ober * Turn the LCD background light and contrast signal on or off.
146 1.1 ober */
147 1.1 ober void
148 1.1 ober scoop_set_backlight(int on, int cont)
149 1.1 ober {
150 1.1 ober
151 1.1 ober if (scoop_cd.cd_ndevs > 1 && scoop_cd.cd_devs[1] != NULL) {
152 1.1 ober /* C3000 */
153 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[1],
154 1.1 ober SCOOP1_BACKLIGHT_CONT, !cont);
155 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[1],
156 1.1 ober SCOOP1_BACKLIGHT_ON, on);
157 1.1 ober }
158 1.1 ober #if 0
159 1.1 ober else if (scoop_cd.cd_ndevs > 0 && scoop_cd.cd_devs[0] != NULL) {
160 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0],
161 1.1 ober SCOOP0_BACKLIGHT_CONT, cont);
162 1.1 ober }
163 1.1 ober #endif
164 1.1 ober }
165 1.1 ober
166 1.1 ober /*
167 1.1 ober * Turn the infrared LED on or off (must be on while transmitting).
168 1.1 ober */
169 1.1 ober void
170 1.1 ober scoop_set_irled(int on)
171 1.1 ober {
172 1.1 ober if (scoop_cd.cd_ndevs > 1 && scoop_cd.cd_devs[1] != NULL)
173 1.1 ober /* IR_ON is inverted */
174 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[1],
175 1.1 ober SCOOP1_IR_ON, !on);
176 1.1 ober }
177 1.1 ober
178 1.1 ober /*
179 1.1 ober * Turn the green and orange LEDs on or off. If the orange LED is on,
180 1.1 ober * then it is wired to indicate if A/C is connected. The green LED has
181 1.1 ober * no such predefined function.
182 1.1 ober */
183 1.1 ober void
184 1.1 ober scoop_led_set(int led, int on)
185 1.1 ober {
186 1.1 ober
187 1.1 ober if (scoop_cd.cd_ndevs > 0 && scoop_cd.cd_devs[0] != NULL) {
188 1.1 ober if ((led & SCOOP_LED_GREEN) != 0) {
189 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0],
190 1.1 ober SCOOP0_LED_GREEN, on);
191 1.1 ober }
192 1.1 ober if (scoop_cd.cd_ndevs > 1 && (led & SCOOP_LED_ORANGE) != 0) {
193 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0],
194 1.1 ober SCOOP0_LED_ORANGE_C3000, on);
195 1.1 ober }
196 1.1 ober }
197 1.1 ober }
198 1.1 ober
199 1.1 ober /*
200 1.1 ober * Enable or disable the headphone output connection.
201 1.1 ober */
202 1.1 ober void
203 1.1 ober scoop_set_headphone(int on)
204 1.1 ober {
205 1.1 ober
206 1.1 ober if (scoop_cd.cd_ndevs < 1 || scoop_cd.cd_devs[0] == NULL)
207 1.1 ober return;
208 1.1 ober
209 1.1 ober scoop_gpio_pin_ctl(scoop_cd.cd_devs[0], SCOOP0_MUTE_L,
210 1.1 ober GPIO_PIN_OUTPUT);
211 1.1 ober scoop_gpio_pin_ctl(scoop_cd.cd_devs[0], SCOOP0_MUTE_R,
212 1.1 ober GPIO_PIN_OUTPUT);
213 1.1 ober
214 1.1 ober if (on) {
215 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0], SCOOP0_MUTE_L,
216 1.1 ober GPIO_PIN_HIGH);
217 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0], SCOOP0_MUTE_R,
218 1.1 ober GPIO_PIN_HIGH);
219 1.1 ober } else {
220 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0], SCOOP0_MUTE_L,
221 1.1 ober GPIO_PIN_LOW);
222 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0], SCOOP0_MUTE_R,
223 1.1 ober GPIO_PIN_LOW);
224 1.1 ober }
225 1.1 ober }
226 1.1 ober
227 1.1 ober /*
228 1.1 ober * Turn on pullup resistor while not reading the remote control.
229 1.1 ober */
230 1.1 ober void
231 1.1 ober scoop_akin_pullup(int enable)
232 1.1 ober {
233 1.1 ober
234 1.1 ober if (scoop_cd.cd_ndevs > 1 && scoop_cd.cd_devs[1] != NULL) {
235 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[1],
236 1.1 ober SCOOP1_AKIN_PULLUP, enable);
237 1.1 ober } else {
238 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0],
239 1.1 ober SCOOP0_AKIN_PULLUP, enable);
240 1.1 ober }
241 1.1 ober }
242 1.1 ober
243 1.1 ober void
244 1.1 ober scoop_battery_temp_adc(int enable)
245 1.1 ober {
246 1.1 ober
247 1.1 ober if (scoop_cd.cd_ndevs > 0 && scoop_cd.cd_devs[0] != NULL) {
248 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0],
249 1.1 ober SCOOP0_ADC_TEMP_ON_C3000, enable);
250 1.1 ober }
251 1.1 ober }
252 1.1 ober
253 1.1 ober void
254 1.1 ober scoop_charge_battery(int enable, int voltage_high)
255 1.1 ober {
256 1.1 ober
257 1.1 ober if (scoop_cd.cd_ndevs > 0 && scoop_cd.cd_devs[0] != NULL) {
258 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0],
259 1.1 ober SCOOP0_JK_B_C3000, voltage_high);
260 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0],
261 1.1 ober SCOOP0_CHARGE_OFF_C3000, !enable);
262 1.1 ober }
263 1.1 ober }
264 1.1 ober
265 1.1 ober void
266 1.1 ober scoop_discharge_battery(int enable)
267 1.1 ober {
268 1.1 ober
269 1.1 ober if (scoop_cd.cd_ndevs > 0 && scoop_cd.cd_devs[0] != NULL) {
270 1.1 ober scoop_gpio_pin_write(scoop_cd.cd_devs[0],
271 1.1 ober SCOOP0_JK_A_C3000, enable);
272 1.1 ober }
273 1.1 ober }
274 1.1 ober
275 1.1 ober /* XXX */
276 1.1 ober void scoop_check_mcr(void);
277 1.1 ober void
278 1.1 ober scoop_check_mcr(void)
279 1.1 ober {
280 1.1 ober struct scoop_softc *sc;
281 1.1 ober uint16_t v;
282 1.1 ober
283 1.1 ober /* C3000 */
284 1.1 ober if (scoop_cd.cd_ndevs > 1 && scoop_cd.cd_devs[1] != NULL) {
285 1.1 ober sc = scoop_cd.cd_devs[0];
286 1.1 ober v = bus_space_read_2(sc->sc_iot, sc->sc_ioh, SCOOP_MCR);
287 1.1 ober if ((v & 0x100) == 0) {
288 1.1 ober bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCOOP_MCR,
289 1.1 ober 0x0101);
290 1.1 ober }
291 1.1 ober
292 1.1 ober sc = scoop_cd.cd_devs[1];
293 1.1 ober v = bus_space_read_2(sc->sc_iot, sc->sc_ioh, SCOOP_MCR);
294 1.1 ober if ((v & 0x100) == 0) {
295 1.1 ober bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCOOP_MCR,
296 1.1 ober 0x0101);
297 1.1 ober }
298 1.1 ober }
299 1.1 ober }
300 1.1 ober
301 1.1 ober void
302 1.1 ober scoop_suspend(void)
303 1.1 ober {
304 1.1 ober struct scoop_softc *sc;
305 1.1 ober uint32_t rv;
306 1.1 ober
307 1.1 ober if (scoop_cd.cd_ndevs > 0 && scoop_cd.cd_devs[0] != NULL) {
308 1.1 ober sc = scoop_cd.cd_devs[0];
309 1.1 ober sc->sc_gpwr = bus_space_read_2(sc->sc_iot, sc->sc_ioh,
310 1.1 ober SCOOP_GPWR);
311 1.1 ober /* C3000 */
312 1.1 ober bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPWR,
313 1.1 ober sc->sc_gpwr & ~((1<<SCOOP0_MUTE_L) | (1<<SCOOP0_MUTE_R) |
314 1.1 ober (1<<SCOOP0_JK_A_C3000) | (1<<SCOOP0_ADC_TEMP_ON_C3000) |
315 1.1 ober (1<<SCOOP0_LED_GREEN)));
316 1.1 ober }
317 1.1 ober
318 1.1 ober /* C3000 */
319 1.1 ober if (scoop_cd.cd_ndevs > 1 && scoop_cd.cd_devs[1] != NULL) {
320 1.1 ober sc = scoop_cd.cd_devs[1];
321 1.1 ober sc->sc_gpwr = bus_space_read_2(sc->sc_iot, sc->sc_ioh,
322 1.1 ober SCOOP_GPWR);
323 1.1 ober bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPWR,
324 1.1 ober sc->sc_gpwr & ~((1<<SCOOP1_RESERVED_4) |
325 1.1 ober (1<<SCOOP1_RESERVED_5) | (1<<SCOOP1_RESERVED_6) |
326 1.1 ober (1<<SCOOP1_BACKLIGHT_CONT) | (1<<SCOOP1_BACKLIGHT_ON) |
327 1.1 ober (1<<SCOOP1_MIC_BIAS)));
328 1.1 ober rv = bus_space_read_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPWR);
329 1.1 ober bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPWR,
330 1.1 ober rv | ((1<<SCOOP1_IR_ON) | (1<<SCOOP1_RESERVED_3)));
331 1.1 ober }
332 1.1 ober }
333 1.1 ober
334 1.1 ober void
335 1.1 ober scoop_resume(void)
336 1.1 ober {
337 1.1 ober struct scoop_softc *sc;
338 1.1 ober
339 1.1 ober if (scoop_cd.cd_ndevs > 0 && scoop_cd.cd_devs[0] != NULL) {
340 1.1 ober sc = scoop_cd.cd_devs[0];
341 1.1 ober bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPWR,
342 1.1 ober sc->sc_gpwr);
343 1.1 ober }
344 1.1 ober
345 1.1 ober if (scoop_cd.cd_ndevs > 1 && scoop_cd.cd_devs[1] != NULL) {
346 1.1 ober sc = scoop_cd.cd_devs[1];
347 1.1 ober bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCOOP_GPWR,
348 1.1 ober sc->sc_gpwr);
349 1.1 ober }
350 1.1 ober }
351