j6x0pwr.c revision 1.16 1 1.16 thorpej /* $NetBSD: j6x0pwr.c,v 1.16 2023/12/20 14:50:02 thorpej Exp $ */
2 1.1 uwe
3 1.1 uwe /*
4 1.12 uwe * Copyright (c) 2003, 2006 Valeriy E. Ushakov
5 1.1 uwe * All rights reserved.
6 1.1 uwe *
7 1.1 uwe * Redistribution and use in source and binary forms, with or without
8 1.1 uwe * modification, are permitted provided that the following conditions
9 1.1 uwe * are met:
10 1.1 uwe * 1. Redistributions of source code must retain the above copyright
11 1.1 uwe * notice, this list of conditions and the following disclaimer.
12 1.1 uwe * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 uwe * notice, this list of conditions and the following disclaimer in the
14 1.1 uwe * documentation and/or other materials provided with the distribution.
15 1.1 uwe * 3. The name of the author may not be used to endorse or promote products
16 1.1 uwe * derived from this software without specific prior written permission
17 1.1 uwe *
18 1.1 uwe * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 uwe * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 uwe * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 uwe * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 uwe * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 uwe * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 uwe * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 uwe * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 uwe * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 1.1 uwe * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 uwe */
29 1.2 uwe
30 1.2 uwe #include <sys/cdefs.h>
31 1.16 thorpej __KERNEL_RCSID(0, "$NetBSD: j6x0pwr.c,v 1.16 2023/12/20 14:50:02 thorpej Exp $");
32 1.1 uwe
33 1.1 uwe #include <sys/param.h>
34 1.1 uwe #include <sys/kernel.h>
35 1.1 uwe #include <sys/device.h>
36 1.1 uwe #include <sys/systm.h>
37 1.1 uwe #include <sys/callout.h>
38 1.1 uwe
39 1.10 uwe #include <dev/apm/apmbios.h>
40 1.10 uwe
41 1.3 uwe #include <machine/platid.h>
42 1.3 uwe #include <machine/platid_mask.h>
43 1.4 uch #include <machine/config_hook.h>
44 1.3 uwe
45 1.1 uwe #include <sh3/exception.h>
46 1.1 uwe #include <sh3/intcreg.h>
47 1.1 uwe #include <sh3/pfcreg.h>
48 1.1 uwe
49 1.3 uwe #include <sh3/dev/adcvar.h>
50 1.1 uwe
51 1.1 uwe
52 1.10 uwe /* SH7709 PFC bits pertinent to Jornada 6x0 power */
53 1.1 uwe #define PGDR_MAIN_BATTERY_OUT 0x04
54 1.1 uwe #define PGDR_LID_OPEN 0x01
55 1.10 uwe #define PJDR_AC_POWER_OUT 0x10
56 1.10 uwe #define PLDR_BATTERY_CHARGED 0x20
57 1.10 uwe
58 1.10 uwe
59 1.10 uwe static inline int __attribute__((__always_inline__))
60 1.10 uwe j6x0pwr_battery_is_absent(void)
61 1.10 uwe {
62 1.10 uwe
63 1.10 uwe return _reg_read_1(SH7709_PGDR) & PGDR_MAIN_BATTERY_OUT;
64 1.10 uwe }
65 1.10 uwe
66 1.10 uwe static inline int __attribute__((__always_inline__))
67 1.10 uwe j6x0pwr_ac_is_off(void)
68 1.10 uwe {
69 1.10 uwe
70 1.10 uwe return _reg_read_1(SH7709_PJDR) & PJDR_AC_POWER_OUT;
71 1.10 uwe }
72 1.10 uwe
73 1.10 uwe
74 1.10 uwe static inline int __attribute__((__always_inline__))
75 1.10 uwe j6x0pwr_is_not_charging(void)
76 1.10 uwe {
77 1.10 uwe
78 1.10 uwe return _reg_read_1(SH7709_PLDR) & PLDR_BATTERY_CHARGED;
79 1.10 uwe }
80 1.10 uwe
81 1.1 uwe
82 1.11 peter /* A/D converter channels to get power stats from */
83 1.10 uwe #define ADC_CHANNEL_BATTERY 3 /* main battery */
84 1.10 uwe #define ADC_CHANNEL_BACKUP 4 /* backup battery - we don't report it */
85 1.10 uwe #define ADC_CHANNEL_CHARGE 5 /* we use PLDR_BATTERY_CHARGED instead */
86 1.10 uwe
87 1.10 uwe /*
88 1.10 uwe * Empirical range of battery values.
89 1.10 uwe * Thanks to Joseph Heenan for measurements.
90 1.10 uwe */
91 1.10 uwe #define J6X0PWR_BATTERY_MIN 630
92 1.10 uwe #define J6X0PWR_BATTERY_CRITICAL 635
93 1.10 uwe #define J6X0PWR_BATTERY_LOW 645
94 1.10 uwe #define J6X0PWR_BATTERY_FULL 910 /* can be slightly more */
95 1.10 uwe
96 1.10 uwe
97 1.10 uwe /* Convenience aliases (XXX: should be provided by config_hook.h) */
98 1.10 uwe #define CONFIG_HOOK_BUTTON_PRESSED ((void *)1)
99 1.10 uwe #define CONFIG_HOOK_BUTTON_RELEASED ((void *)0)
100 1.1 uwe
101 1.1 uwe
102 1.1 uwe
103 1.10 uwe /* allow only one instance */
104 1.10 uwe static int j6x0pwr_attached = 0;
105 1.10 uwe
106 1.1 uwe struct j6x0pwr_softc {
107 1.14 uwe device_t sc_dev;
108 1.1 uwe
109 1.4 uch void *sc_ih;
110 1.4 uch volatile int sc_poweroff;
111 1.1 uwe };
112 1.1 uwe
113 1.14 uwe static int j6x0pwr_match(device_t, cfdata_t, void *);
114 1.14 uwe static void j6x0pwr_attach(device_t, device_t, void *);
115 1.1 uwe
116 1.14 uwe CFATTACH_DECL_NEW(j6x0pwr, sizeof(struct j6x0pwr_softc),
117 1.1 uwe j6x0pwr_match, j6x0pwr_attach, NULL, NULL);
118 1.1 uwe
119 1.1 uwe
120 1.10 uwe static int j6x0pwr_apm_getpower_hook(void *, int, long, void *);
121 1.10 uwe static int j6x0pwr_get_battery(void); /* from ADC */
122 1.10 uwe
123 1.1 uwe static int j6x0pwr_intr(void *);
124 1.4 uch static void j6x0pwr_sleep(void *);
125 1.4 uch static int j6x0pwr_clear_interrupt(void);
126 1.1 uwe
127 1.10 uwe
128 1.1 uwe static int
129 1.14 uwe j6x0pwr_match(device_t parent, cfdata_t cfp, void *aux)
130 1.1 uwe {
131 1.1 uwe
132 1.1 uwe /*
133 1.1 uwe * XXX: does platid_mask_MACH_HP_LX matches _JORNADA_6XX too?
134 1.1 uwe * Is 620 wired similarly?
135 1.1 uwe */
136 1.1 uwe if (!platid_match(&platid, &platid_mask_MACH_HP_JORNADA_6XX))
137 1.9 uwe return 0;
138 1.1 uwe
139 1.1 uwe if (strcmp(cfp->cf_name, "j6x0pwr") != 0)
140 1.9 uwe return 0;
141 1.1 uwe
142 1.10 uwe /* allow only one instance */
143 1.10 uwe return !j6x0pwr_attached;
144 1.1 uwe }
145 1.1 uwe
146 1.1 uwe
147 1.1 uwe static void
148 1.14 uwe j6x0pwr_attach(device_t parent, device_t self, void *aux)
149 1.1 uwe {
150 1.14 uwe struct j6x0pwr_softc *sc;
151 1.9 uwe
152 1.9 uwe /* XXX: in machdep.c */
153 1.4 uch extern void (*__sleep_func)(void *);
154 1.4 uch extern void *__sleep_ctx;
155 1.1 uwe
156 1.14 uwe sc = device_private(self);
157 1.14 uwe sc->sc_dev = self;
158 1.14 uwe
159 1.14 uwe aprint_naive("\n");
160 1.14 uwe aprint_normal("\n");
161 1.14 uwe
162 1.10 uwe /* allow only one instance */
163 1.10 uwe j6x0pwr_attached = 1;
164 1.10 uwe
165 1.10 uwe /* arrange for hpcapm to call us when power status is requested */
166 1.10 uwe config_hook(CONFIG_HOOK_GET, CONFIG_HOOK_ACADAPTER,
167 1.10 uwe CONFIG_HOOK_EXCLUSIVE,
168 1.10 uwe j6x0pwr_apm_getpower_hook, sc);
169 1.10 uwe config_hook(CONFIG_HOOK_GET, CONFIG_HOOK_CHARGE,
170 1.10 uwe CONFIG_HOOK_EXCLUSIVE,
171 1.10 uwe j6x0pwr_apm_getpower_hook, sc);
172 1.10 uwe config_hook(CONFIG_HOOK_GET, CONFIG_HOOK_BATTERYVAL,
173 1.10 uwe CONFIG_HOOK_EXCLUSIVE,
174 1.10 uwe j6x0pwr_apm_getpower_hook, sc);
175 1.10 uwe
176 1.11 peter /* register sleep function to APM */
177 1.4 uch __sleep_func = j6x0pwr_sleep;
178 1.14 uwe __sleep_ctx = sc;
179 1.9 uwe
180 1.4 uch sc->sc_poweroff = 0;
181 1.4 uch
182 1.4 uch /* drain the old interrupt */
183 1.4 uch j6x0pwr_clear_interrupt();
184 1.4 uch
185 1.4 uch sc->sc_ih = intc_intr_establish(SH7709_INTEVT2_IRQ0, IST_EDGE, IPL_TTY,
186 1.4 uch j6x0pwr_intr, sc);
187 1.1 uwe
188 1.5 uwe _reg_write_1(SH7709_PKDR, 0); /* Green LED on */
189 1.15 uwe
190 1.15 uwe if (!pmf_device_register(self, NULL, NULL))
191 1.15 uwe aprint_error_dev(self, "unable to establish power handler\n");
192 1.1 uwe }
193 1.1 uwe
194 1.1 uwe
195 1.1 uwe /*
196 1.1 uwe * Triggered when the On/Off button is pressed or the lid is closed.
197 1.6 uwe * The state of the lid is reflected in the bit PGDR[0].
198 1.1 uwe * Closing the lid can trigger several consecutive interrupts.
199 1.1 uwe *
200 1.1 uwe * XXX: Since we don't put the machine to sleep, I have no idea how
201 1.1 uwe * wakeup interrupt(s) look like. Need to revisit when software
202 1.1 uwe * suspend is added to the kernel (which we need to support ACPI).
203 1.1 uwe */
204 1.1 uwe static int
205 1.14 uwe j6x0pwr_intr(void *arg)
206 1.1 uwe {
207 1.14 uwe struct j6x0pwr_softc *sc = arg;
208 1.14 uwe device_t self = sc->sc_dev;
209 1.1 uwe uint8_t irr0;
210 1.1 uwe uint8_t pgdr;
211 1.1 uwe
212 1.9 uwe irr0 = j6x0pwr_clear_interrupt();
213 1.9 uwe if ((irr0 & IRR0_IRQ0) == 0) {
214 1.1 uwe #ifdef DIAGNOSTIC
215 1.14 uwe aprint_normal_dev(self, "irr0=0x%02x?\n", irr0);
216 1.1 uwe #endif
217 1.9 uwe return 0;
218 1.1 uwe }
219 1.1 uwe
220 1.4 uch pgdr = _reg_read_1(SH7709_PGDR);
221 1.4 uch if ((pgdr & PGDR_LID_OPEN) == 0) {
222 1.14 uwe aprint_normal_dev(self, "lid closed %d\n", sc->sc_poweroff);
223 1.4 uch if (sc->sc_poweroff)
224 1.4 uch return 1;
225 1.4 uch } else {
226 1.14 uwe aprint_normal_dev(self, "ON/OFF %d\n", sc->sc_poweroff);
227 1.4 uch if (sc->sc_poweroff)
228 1.4 uch sc->sc_poweroff = 0;
229 1.4 uch }
230 1.1 uwe
231 1.10 uwe config_hook_call(CONFIG_HOOK_BUTTONEVENT,
232 1.10 uwe CONFIG_HOOK_BUTTONEVENT_POWER,
233 1.10 uwe CONFIG_HOOK_BUTTON_PRESSED);
234 1.10 uwe /* fake release */
235 1.10 uwe config_hook_call(CONFIG_HOOK_BUTTONEVENT,
236 1.10 uwe CONFIG_HOOK_BUTTONEVENT_POWER,
237 1.10 uwe CONFIG_HOOK_BUTTON_RELEASED);
238 1.1 uwe
239 1.9 uwe return 1;
240 1.1 uwe }
241 1.1 uwe
242 1.10 uwe
243 1.4 uch static int
244 1.12 uwe j6x0pwr_clear_interrupt(void)
245 1.4 uch {
246 1.4 uch uint8_t irr0;
247 1.4 uch
248 1.4 uch irr0 = _reg_read_1(SH7709_IRR0);
249 1.4 uch if (irr0 & IRR0_IRQ0)
250 1.4 uch _reg_write_1(SH7709_IRR0, irr0 & ~IRR0_IRQ0);
251 1.4 uch
252 1.4 uch return irr0;
253 1.4 uch }
254 1.4 uch
255 1.10 uwe
256 1.4 uch void
257 1.14 uwe j6x0pwr_sleep(void *arg)
258 1.4 uch {
259 1.4 uch /* splhigh on entry */
260 1.14 uwe struct j6x0pwr_softc *sc = arg;
261 1.4 uch int s;
262 1.4 uch
263 1.4 uch /* Reinstall j6x0pwr_intr as a wakeup handler */
264 1.4 uch intc_intr_disestablish(sc->sc_ih);
265 1.4 uch sc->sc_ih = intc_intr_establish(SH7709_INTEVT2_IRQ0, IST_EDGE, IPL_HIGH,
266 1.4 uch j6x0pwr_intr, sc);
267 1.4 uch sc->sc_poweroff = 1;
268 1.4 uch do {
269 1.4 uch /* Disable interrupt except for power button. */
270 1.4 uch s = _cpu_intr_resume(IPL_CLOCK << 4);
271 1.5 uwe _reg_write_1(SH7709_PKDR, 0xff); /* Green LED off */
272 1.9 uwe
273 1.8 perry __asm volatile("sleep");
274 1.9 uwe
275 1.5 uwe _reg_write_1(SH7709_PKDR, 0); /* Green LED on */
276 1.4 uch _cpu_intr_resume(s);
277 1.4 uch } while (sc->sc_poweroff);
278 1.4 uch
279 1.4 uch /* Return to normal power button */
280 1.4 uch intc_intr_disestablish(sc->sc_ih);
281 1.4 uch sc->sc_ih = intc_intr_establish(SH7709_INTEVT2_IRQ0, IST_EDGE, IPL_TTY,
282 1.4 uch j6x0pwr_intr, sc);
283 1.4 uch /* splhigh on exit */
284 1.4 uch }
285 1.1 uwe
286 1.1 uwe
287 1.10 uwe static int
288 1.10 uwe j6x0pwr_apm_getpower_hook(void *ctx, int type, long id, void *msg)
289 1.1 uwe {
290 1.10 uwe /* struct j6x0pwr_softc * const sc = ctx; */
291 1.10 uwe int * const pval = msg;
292 1.10 uwe int battery, state;
293 1.10 uwe
294 1.10 uwe if (type != CONFIG_HOOK_GET)
295 1.10 uwe return EINVAL;
296 1.10 uwe
297 1.10 uwe switch (id) {
298 1.10 uwe
299 1.10 uwe case CONFIG_HOOK_ACADAPTER:
300 1.10 uwe *pval = j6x0pwr_ac_is_off() ? APM_AC_OFF : APM_AC_ON;
301 1.10 uwe return 0;
302 1.10 uwe
303 1.10 uwe case CONFIG_HOOK_CHARGE:
304 1.10 uwe if (j6x0pwr_battery_is_absent())
305 1.10 uwe state = APM_BATT_FLAG_NO_SYSTEM_BATTERY;
306 1.10 uwe else {
307 1.10 uwe battery = j6x0pwr_get_battery();
308 1.10 uwe if (battery < J6X0PWR_BATTERY_CRITICAL)
309 1.10 uwe state = APM_BATT_FLAG_CRITICAL;
310 1.10 uwe else if (battery < J6X0PWR_BATTERY_LOW)
311 1.10 uwe state = APM_BATT_FLAG_LOW;
312 1.10 uwe else
313 1.10 uwe state = APM_BATT_FLAG_HIGH; /* XXX? */
314 1.1 uwe
315 1.10 uwe if (!j6x0pwr_is_not_charging())
316 1.10 uwe state |= APM_BATT_FLAG_CHARGING;
317 1.10 uwe }
318 1.10 uwe *pval = state;
319 1.10 uwe return 0;
320 1.1 uwe
321 1.10 uwe case CONFIG_HOOK_BATTERYVAL:
322 1.10 uwe if (j6x0pwr_battery_is_absent())
323 1.10 uwe state = 0;
324 1.1 uwe else {
325 1.10 uwe battery = j6x0pwr_get_battery();
326 1.10 uwe if (battery > J6X0PWR_BATTERY_FULL)
327 1.10 uwe state = 100;
328 1.10 uwe else
329 1.10 uwe state = 100 * (battery - J6X0PWR_BATTERY_MIN)
330 1.10 uwe / (J6X0PWR_BATTERY_FULL
331 1.10 uwe - J6X0PWR_BATTERY_MIN);
332 1.1 uwe }
333 1.10 uwe *pval = state;
334 1.10 uwe return 0;
335 1.1 uwe }
336 1.1 uwe
337 1.10 uwe return EINVAL;
338 1.10 uwe }
339 1.10 uwe
340 1.10 uwe
341 1.10 uwe static int
342 1.10 uwe j6x0pwr_get_battery(void)
343 1.10 uwe {
344 1.10 uwe int battery;
345 1.10 uwe int s;
346 1.1 uwe
347 1.10 uwe if (j6x0pwr_battery_is_absent())
348 1.10 uwe return -1;
349 1.1 uwe
350 1.1 uwe s = spltty();
351 1.10 uwe battery = adc_sample_channel(ADC_CHANNEL_BATTERY);
352 1.1 uwe splx(s);
353 1.1 uwe
354 1.10 uwe return battery;
355 1.1 uwe }
356