xref: /netbsd-src/sys/arch/zaurus/dev/zapm.c (revision c7fb772b85b2b5d4cfb282f868f454b4701534fd)
1*c7fb772bSthorpej /*	$NetBSD: zapm.c,v 1.14 2021/08/07 16:19:08 thorpej Exp $	*/
21de7f198Snonaka /*	$OpenBSD: zaurus_apm.c,v 1.13 2006/12/12 23:14:28 dim Exp $	*/
31de7f198Snonaka 
41de7f198Snonaka /*
51de7f198Snonaka  * Copyright (c) 2005 Uwe Stuehler <uwe@bsdx.de>
61de7f198Snonaka  *
71de7f198Snonaka  * Permission to use, copy, modify, and distribute this software for any
81de7f198Snonaka  * purpose with or without fee is hereby granted, provided that the above
91de7f198Snonaka  * copyright notice and this permission notice appear in all copies.
101de7f198Snonaka  *
111de7f198Snonaka  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
121de7f198Snonaka  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
131de7f198Snonaka  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
141de7f198Snonaka  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
151de7f198Snonaka  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
161de7f198Snonaka  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
171de7f198Snonaka  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
181de7f198Snonaka  */
191de7f198Snonaka 
201de7f198Snonaka #include <sys/cdefs.h>
21*c7fb772bSthorpej __KERNEL_RCSID(0, "$NetBSD: zapm.c,v 1.14 2021/08/07 16:19:08 thorpej Exp $");
221de7f198Snonaka 
231de7f198Snonaka #include <sys/param.h>
241de7f198Snonaka #include <sys/systm.h>
251de7f198Snonaka #include <sys/kernel.h>
261de7f198Snonaka #include <sys/callout.h>
279a25b0cbSuwe #include <sys/selinfo.h> /* XXX: for apm_softc that is exposed here */
289b35e244Suebayasi #include <sys/device.h>
291de7f198Snonaka 
301de7f198Snonaka #include <dev/hpc/apm/apmvar.h>
311de7f198Snonaka 
321de7f198Snonaka #include <arm/xscale/pxa2x0reg.h>
331de7f198Snonaka #include <arm/xscale/pxa2x0var.h>
341de7f198Snonaka #include <arm/xscale/pxa2x0cpu.h>
351de7f198Snonaka #include <arm/xscale/pxa2x0_gpio.h>
361de7f198Snonaka 
371de7f198Snonaka #include <machine/config_hook.h>
381de7f198Snonaka 
391de7f198Snonaka #include <zaurus/dev/scoopvar.h>
401de7f198Snonaka #include <zaurus/dev/zsspvar.h>
411de7f198Snonaka #include <zaurus/zaurus/zaurus_reg.h>
421de7f198Snonaka #include <zaurus/zaurus/zaurus_var.h>
431de7f198Snonaka 
441de7f198Snonaka #ifdef APMDEBUG
451de7f198Snonaka #define DPRINTF(x)	printf x
461de7f198Snonaka #else
471de7f198Snonaka #define	DPRINTF(x)	do { } while (/*CONSTCOND*/0)
481de7f198Snonaka #endif
491de7f198Snonaka 
501de7f198Snonaka struct zapm_softc {
511a686006Snonaka 	device_t sc_dev;
521de7f198Snonaka 	void *sc_apmdev;
5390e9d6e9Snonaka 	kmutex_t sc_mtx;
541de7f198Snonaka 
551de7f198Snonaka 	struct callout sc_cyclic_poll;
561de7f198Snonaka 	struct callout sc_discharge_poll;
571de7f198Snonaka 	struct timeval sc_lastbattchk;
581de7f198Snonaka 	volatile int suspended;
591de7f198Snonaka 	volatile int charging;
601de7f198Snonaka 	volatile int discharging;
611de7f198Snonaka 	int battery_volt;
621de7f198Snonaka 	int battery_full_cnt;
631de7f198Snonaka 
641de7f198Snonaka 	/* GPIO pin */
651de7f198Snonaka 	int sc_ac_detect_pin;
661de7f198Snonaka 	int sc_batt_cover_pin;
671de7f198Snonaka 	int sc_charge_comp_pin;
681de7f198Snonaka 
691de7f198Snonaka 	/* machine-independent part */
701de7f198Snonaka 	volatile u_int events;
711de7f198Snonaka 	volatile int power_state;
721de7f198Snonaka 	volatile int battery_state;
731de7f198Snonaka 	volatile int ac_state;
741de7f198Snonaka 	config_hook_tag sc_standby_hook;
751de7f198Snonaka 	config_hook_tag sc_suspend_hook;
761de7f198Snonaka 	config_hook_tag sc_battery_hook;
771de7f198Snonaka 	config_hook_tag sc_ac_hook;
781de7f198Snonaka 	int battery_life;
791de7f198Snonaka 	int minutes_left;
801de7f198Snonaka };
811de7f198Snonaka 
821a686006Snonaka static int	zapm_match(device_t, cfdata_t, void *);
831a686006Snonaka static void	zapm_attach(device_t, device_t, void *);
841de7f198Snonaka 
851a686006Snonaka CFATTACH_DECL_NEW(zapm, sizeof(struct zapm_softc),
861de7f198Snonaka     zapm_match, zapm_attach, NULL, NULL);
871de7f198Snonaka 
881de7f198Snonaka static int	zapm_hook(void *, int, long, void *);
891de7f198Snonaka static void     zapm_disconnect(void *);
901de7f198Snonaka static void     zapm_enable(void *, int);
911de7f198Snonaka static int      zapm_set_powstate(void *, u_int, u_int);
929a25b0cbSuwe static int      zapm_get_powstat(void *, u_int, struct apm_power_info *);
931de7f198Snonaka static int      zapm_get_event(void *, u_int *, u_int *);
941de7f198Snonaka static void     zapm_cpu_busy(void *);
951de7f198Snonaka static void     zapm_cpu_idle(void *);
961de7f198Snonaka static void     zapm_get_capabilities(void *, u_int *, u_int *);
971de7f198Snonaka 
981de7f198Snonaka static struct apm_accessops zapm_accessops = {
991de7f198Snonaka 	zapm_disconnect,
1001de7f198Snonaka 	zapm_enable,
1011de7f198Snonaka 	zapm_set_powstate,
1021de7f198Snonaka 	zapm_get_powstat,
1031de7f198Snonaka 	zapm_get_event,
1041de7f198Snonaka 	zapm_cpu_busy,
1051de7f198Snonaka 	zapm_cpu_idle,
1061de7f198Snonaka 	zapm_get_capabilities,
1071de7f198Snonaka };
1081de7f198Snonaka 
1091de7f198Snonaka static int	zapm_acintr(void *);
1101de7f198Snonaka static int	zapm_bcintr(void *);
1111de7f198Snonaka static void	zapm_cyclic(void *);
1121de7f198Snonaka static void	zapm_poll(void *);
1131de7f198Snonaka static void	zapm_poll1(void *, int);
1141de7f198Snonaka 
1151de7f198Snonaka /* battery-related GPIO pins */
1161de7f198Snonaka #define GPIO_AC_IN_C3000	115	/* 0=AC connected */
1171de7f198Snonaka #define GPIO_CHRG_CO_C3000	101	/* 1=battery full */
1181de7f198Snonaka #define GPIO_BATT_COVER_C3000	90	/* 0=unlocked */
1191de7f198Snonaka 
1201de7f198Snonaka /* Cyclic timer value */
1211de7f198Snonaka #define	CYCLIC_TIME	(60 * hz)	/* 60s */
1221de7f198Snonaka 
1231de7f198Snonaka static int
zapm_match(device_t parent,cfdata_t cf,void * aux)1241a686006Snonaka zapm_match(device_t parent, cfdata_t cf, void *aux)
1251de7f198Snonaka {
1261de7f198Snonaka 
127003bdf4cSnonaka 	if (ZAURUS_ISC1000 || ZAURUS_ISC3000)
1281de7f198Snonaka 		return 1;
129003bdf4cSnonaka 	return 0;
1301de7f198Snonaka }
1311de7f198Snonaka 
1321de7f198Snonaka static void
zapm_attach(device_t parent,device_t self,void * aux)1331a686006Snonaka zapm_attach(device_t parent, device_t self, void *aux)
1341de7f198Snonaka {
1351de7f198Snonaka 	struct zapm_softc *sc = device_private(self);
1361de7f198Snonaka 	struct apmdev_attach_args aaa;
1371de7f198Snonaka 
1381a686006Snonaka 	sc->sc_dev = self;
1391a686006Snonaka 
1401de7f198Snonaka 	aprint_normal(": pseudo power management module\n");
1411a686006Snonaka 	aprint_naive("\n");
1421de7f198Snonaka 
1431de7f198Snonaka 	/* machine-depent part */
1441de7f198Snonaka 	callout_init(&sc->sc_cyclic_poll, 0);
1451de7f198Snonaka 	callout_setfunc(&sc->sc_cyclic_poll, zapm_cyclic, sc);
1461de7f198Snonaka 	callout_init(&sc->sc_discharge_poll, 0);
1471de7f198Snonaka 	callout_setfunc(&sc->sc_discharge_poll, zapm_poll, sc);
14890e9d6e9Snonaka 	mutex_init(&sc->sc_mtx, MUTEX_DEFAULT, IPL_NONE);
1491de7f198Snonaka 
150003bdf4cSnonaka 	if (ZAURUS_ISC1000 || ZAURUS_ISC3000) {
1511de7f198Snonaka 		sc->sc_ac_detect_pin = GPIO_AC_IN_C3000;
1521de7f198Snonaka 		sc->sc_batt_cover_pin = GPIO_BATT_COVER_C3000;
1531de7f198Snonaka 		sc->sc_charge_comp_pin = GPIO_CHRG_CO_C3000;
1541de7f198Snonaka 	} else {
1551de7f198Snonaka 		/* XXX */
1561de7f198Snonaka 		return;
1571de7f198Snonaka 	}
1581de7f198Snonaka 
1591de7f198Snonaka 	pxa2x0_gpio_set_function(sc->sc_ac_detect_pin, GPIO_IN);
1601de7f198Snonaka 	pxa2x0_gpio_set_function(sc->sc_charge_comp_pin, GPIO_IN);
1611de7f198Snonaka 	pxa2x0_gpio_set_function(sc->sc_batt_cover_pin, GPIO_IN);
1621de7f198Snonaka 
1631de7f198Snonaka 	(void)pxa2x0_gpio_intr_establish(sc->sc_ac_detect_pin,
1641de7f198Snonaka 	    IST_EDGE_BOTH, IPL_BIO, zapm_acintr, sc);
1651de7f198Snonaka 	(void)pxa2x0_gpio_intr_establish(sc->sc_charge_comp_pin,
1661de7f198Snonaka 	    IST_EDGE_BOTH, IPL_BIO, zapm_bcintr, sc);
1671de7f198Snonaka 
1681de7f198Snonaka 	/* machine-independent part */
1691de7f198Snonaka 	sc->events = 0;
1701de7f198Snonaka 	sc->power_state = APM_SYS_READY;
1711de7f198Snonaka 	sc->battery_state = APM_BATT_FLAG_UNKNOWN;
1721de7f198Snonaka 	sc->ac_state = APM_AC_UNKNOWN;
1731de7f198Snonaka 	sc->battery_life = APM_BATT_LIFE_UNKNOWN;
1741de7f198Snonaka 	sc->minutes_left = 0;
1751de7f198Snonaka 	sc->sc_standby_hook = config_hook(CONFIG_HOOK_PMEVENT,
1761de7f198Snonaka 					  CONFIG_HOOK_PMEVENT_STANDBYREQ,
1771de7f198Snonaka 					  CONFIG_HOOK_EXCLUSIVE,
1781de7f198Snonaka 					  zapm_hook, sc);
1791de7f198Snonaka 	sc->sc_suspend_hook = config_hook(CONFIG_HOOK_PMEVENT,
1801de7f198Snonaka 					  CONFIG_HOOK_PMEVENT_SUSPENDREQ,
1811de7f198Snonaka 					  CONFIG_HOOK_EXCLUSIVE,
1821de7f198Snonaka 					  zapm_hook, sc);
1831de7f198Snonaka 
1841de7f198Snonaka 	sc->sc_battery_hook = config_hook(CONFIG_HOOK_PMEVENT,
1851de7f198Snonaka 					  CONFIG_HOOK_PMEVENT_BATTERY,
1861de7f198Snonaka 					  CONFIG_HOOK_SHARE,
1871de7f198Snonaka 					  zapm_hook, sc);
1881de7f198Snonaka 
1891de7f198Snonaka 	sc->sc_ac_hook = config_hook(CONFIG_HOOK_PMEVENT,
1901de7f198Snonaka 				     CONFIG_HOOK_PMEVENT_AC,
1911de7f198Snonaka 				     CONFIG_HOOK_SHARE,
1921de7f198Snonaka 				     zapm_hook, sc);
1931de7f198Snonaka 
1941de7f198Snonaka 	aaa.accessops = &zapm_accessops;
1951de7f198Snonaka 	aaa.accesscookie = sc;
1961de7f198Snonaka 	aaa.apm_detail = 0x0102;
1971de7f198Snonaka 
198*c7fb772bSthorpej 	sc->sc_apmdev = config_found(self, &aaa, apmprint, CFARGS_NONE);
1991de7f198Snonaka 	if (sc->sc_apmdev != NULL) {
2001de7f198Snonaka 		zapm_poll1(sc, 0);
2011de7f198Snonaka 		callout_schedule(&sc->sc_cyclic_poll, CYCLIC_TIME);
2021de7f198Snonaka 	}
2031de7f198Snonaka }
2041de7f198Snonaka 
2051de7f198Snonaka static int
zapm_hook(void * v,int type,long id,void * msg)2061de7f198Snonaka zapm_hook(void *v, int type, long id, void *msg)
2071de7f198Snonaka {
2081de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
2091de7f198Snonaka 	int charge;
2101de7f198Snonaka 	int message;
2111de7f198Snonaka 	int s;
2121de7f198Snonaka 
2131de7f198Snonaka 	if (type != CONFIG_HOOK_PMEVENT)
2141de7f198Snonaka 		return 1;
2151de7f198Snonaka 
2161de7f198Snonaka 	if (CONFIG_HOOK_VALUEP(msg))
2171de7f198Snonaka 		message = (int)msg;
2181de7f198Snonaka 	else
2191de7f198Snonaka 		message = *(int *)msg;
2201de7f198Snonaka 
2211de7f198Snonaka 	s = splhigh();
2221de7f198Snonaka 
2231de7f198Snonaka 	switch (id) {
2241de7f198Snonaka 	case CONFIG_HOOK_PMEVENT_STANDBYREQ:
2251de7f198Snonaka 		if (sc->power_state != APM_SYS_STANDBY) {
2261de7f198Snonaka 			sc->events |= (1 << APM_USER_STANDBY_REQ);
2271de7f198Snonaka 		} else {
2281de7f198Snonaka 			sc->events |= (1 << APM_NORMAL_RESUME);
2291de7f198Snonaka 		}
2301de7f198Snonaka 		break;
2311de7f198Snonaka 	case CONFIG_HOOK_PMEVENT_SUSPENDREQ:
2321de7f198Snonaka 		if (sc->power_state != APM_SYS_SUSPEND) {
2331de7f198Snonaka 			DPRINTF(("zapm: suspend request\n"));
2341de7f198Snonaka 			sc->events |= (1 << APM_USER_SUSPEND_REQ);
2351de7f198Snonaka 		} else {
2361de7f198Snonaka 			sc->events |= (1 << APM_NORMAL_RESUME);
2371de7f198Snonaka 		}
2381de7f198Snonaka 		break;
2391de7f198Snonaka 	case CONFIG_HOOK_PMEVENT_BATTERY:
2401de7f198Snonaka 		switch (message) {
2411de7f198Snonaka 		case CONFIG_HOOK_BATT_CRITICAL:
2421de7f198Snonaka 			DPRINTF(("zapm: battery state critical\n"));
2431de7f198Snonaka 			charge = sc->battery_state & APM_BATT_FLAG_CHARGING;
2441de7f198Snonaka 			sc->battery_state = APM_BATT_FLAG_CRITICAL;
2451de7f198Snonaka 			sc->battery_state |= charge;
2461de7f198Snonaka 			sc->battery_life = 0;
2471de7f198Snonaka 			break;
2481de7f198Snonaka 		case CONFIG_HOOK_BATT_LOW:
2491de7f198Snonaka 			DPRINTF(("zapm: battery state low\n"));
2501de7f198Snonaka 			charge = sc->battery_state & APM_BATT_FLAG_CHARGING;
2511de7f198Snonaka 			sc->battery_state = APM_BATT_FLAG_LOW;
2521de7f198Snonaka 			sc->battery_state |= charge;
2531de7f198Snonaka 			break;
2541de7f198Snonaka 		case CONFIG_HOOK_BATT_HIGH:
2551de7f198Snonaka 			DPRINTF(("zapm: battery state high\n"));
2561de7f198Snonaka 			charge = sc->battery_state & APM_BATT_FLAG_CHARGING;
2571de7f198Snonaka 			sc->battery_state = APM_BATT_FLAG_HIGH;
2581de7f198Snonaka 			sc->battery_state |= charge;
2591de7f198Snonaka 			break;
2601de7f198Snonaka 		case CONFIG_HOOK_BATT_10P:
2611de7f198Snonaka 			DPRINTF(("zapm: battery life 10%%\n"));
2621de7f198Snonaka 			sc->battery_life = 10;
2631de7f198Snonaka 			break;
2641de7f198Snonaka 		case CONFIG_HOOK_BATT_20P:
2651de7f198Snonaka 			DPRINTF(("zapm: battery life 20%%\n"));
2661de7f198Snonaka 			sc->battery_life = 20;
2671de7f198Snonaka 			break;
2681de7f198Snonaka 		case CONFIG_HOOK_BATT_30P:
2691de7f198Snonaka 			DPRINTF(("zapm: battery life 30%%\n"));
2701de7f198Snonaka 			sc->battery_life = 30;
2711de7f198Snonaka 			break;
2721de7f198Snonaka 		case CONFIG_HOOK_BATT_40P:
2731de7f198Snonaka 			DPRINTF(("zapm: battery life 40%%\n"));
2741de7f198Snonaka 			sc->battery_life = 40;
2751de7f198Snonaka 			break;
2761de7f198Snonaka 		case CONFIG_HOOK_BATT_50P:
2771de7f198Snonaka 			DPRINTF(("zapm: battery life 50%%\n"));
2781de7f198Snonaka 			sc->battery_life = 50;
2791de7f198Snonaka 			break;
2801de7f198Snonaka 		case CONFIG_HOOK_BATT_60P:
2811de7f198Snonaka 			DPRINTF(("zapm: battery life 60%%\n"));
2821de7f198Snonaka 			sc->battery_life = 60;
2831de7f198Snonaka 			break;
2841de7f198Snonaka 		case CONFIG_HOOK_BATT_70P:
2851de7f198Snonaka 			DPRINTF(("zapm: battery life 70%%\n"));
2861de7f198Snonaka 			sc->battery_life = 70;
2871de7f198Snonaka 			break;
2881de7f198Snonaka 		case CONFIG_HOOK_BATT_80P:
2891de7f198Snonaka 			DPRINTF(("zapm: battery life 80%%\n"));
2901de7f198Snonaka 			sc->battery_life = 80;
2911de7f198Snonaka 			break;
2921de7f198Snonaka 		case CONFIG_HOOK_BATT_90P:
2931de7f198Snonaka 			DPRINTF(("zapm: battery life 90%%\n"));
2941de7f198Snonaka 			sc->battery_life = 90;
2951de7f198Snonaka 			break;
2961de7f198Snonaka 		case CONFIG_HOOK_BATT_100P:
2971de7f198Snonaka 			DPRINTF(("zapm: battery life 100%%\n"));
2981de7f198Snonaka 			sc->battery_life = 100;
2991de7f198Snonaka 			break;
3001de7f198Snonaka 		case CONFIG_HOOK_BATT_UNKNOWN:
3011de7f198Snonaka 			DPRINTF(("zapm: battery state unknown\n"));
3021de7f198Snonaka 			sc->battery_state = APM_BATT_FLAG_UNKNOWN;
3031de7f198Snonaka 			sc->battery_life = APM_BATT_LIFE_UNKNOWN;
3041de7f198Snonaka 			break;
3051de7f198Snonaka 		case CONFIG_HOOK_BATT_NO_SYSTEM_BATTERY:
3061de7f198Snonaka 			DPRINTF(("zapm: battery state no system battery?\n"));
3071de7f198Snonaka 			sc->battery_state = APM_BATT_FLAG_NO_SYSTEM_BATTERY;
3081de7f198Snonaka 			sc->battery_life = APM_BATT_LIFE_UNKNOWN;
3091de7f198Snonaka 			break;
3101de7f198Snonaka 		}
3111de7f198Snonaka 		break;
3121de7f198Snonaka 	case CONFIG_HOOK_PMEVENT_AC:
3131de7f198Snonaka 		switch (message) {
3141de7f198Snonaka 		case CONFIG_HOOK_AC_OFF:
3151de7f198Snonaka 			DPRINTF(("zapm: ac not connected\n"));
3161de7f198Snonaka 			sc->battery_state &= ~APM_BATT_FLAG_CHARGING;
3171de7f198Snonaka 			sc->ac_state = APM_AC_OFF;
3181de7f198Snonaka 			break;
3191de7f198Snonaka 		case CONFIG_HOOK_AC_ON_CHARGE:
3201de7f198Snonaka 			DPRINTF(("zapm: charging\n"));
3211de7f198Snonaka 			sc->battery_state |= APM_BATT_FLAG_CHARGING;
3221de7f198Snonaka 			sc->ac_state = APM_AC_ON;
3231de7f198Snonaka 			break;
3241de7f198Snonaka 		case CONFIG_HOOK_AC_ON_NOCHARGE:
3251de7f198Snonaka 			DPRINTF(("zapm: ac connected\n"));
3261de7f198Snonaka 			sc->battery_state &= ~APM_BATT_FLAG_CHARGING;
3271de7f198Snonaka 			sc->ac_state = APM_AC_ON;
3281de7f198Snonaka 			break;
3291de7f198Snonaka 		case CONFIG_HOOK_AC_UNKNOWN:
3301de7f198Snonaka 			sc->ac_state = APM_AC_UNKNOWN;
3311de7f198Snonaka 			break;
3321de7f198Snonaka 		}
3331de7f198Snonaka 		break;
3341de7f198Snonaka 	}
3351de7f198Snonaka 
3361de7f198Snonaka 	splx(s);
3371de7f198Snonaka 
3381de7f198Snonaka 	return 0;
3391de7f198Snonaka }
3401de7f198Snonaka 
3411de7f198Snonaka static void
zapm_disconnect(void * v)3421de7f198Snonaka zapm_disconnect(void *v)
3431de7f198Snonaka {
3441de7f198Snonaka #if 0
3451de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
3461de7f198Snonaka #endif
3471de7f198Snonaka }
3481de7f198Snonaka 
3491de7f198Snonaka static void
zapm_enable(void * v,int onoff)3501de7f198Snonaka zapm_enable(void *v, int onoff)
3511de7f198Snonaka {
3521de7f198Snonaka #if 0
3531de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
3541de7f198Snonaka #endif
3551de7f198Snonaka }
3561de7f198Snonaka 
3571de7f198Snonaka static int
zapm_set_powstate(void * v,u_int devid,u_int powstat)3581de7f198Snonaka zapm_set_powstate(void *v, u_int devid, u_int powstat)
3591de7f198Snonaka {
3601de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
3611de7f198Snonaka 
3621de7f198Snonaka 	if (devid != APM_DEV_ALLDEVS)
3631de7f198Snonaka 		return APM_ERR_UNRECOG_DEV;
3641de7f198Snonaka 
3651de7f198Snonaka 	switch (powstat) {
3661de7f198Snonaka 	case APM_SYS_READY:
3671de7f198Snonaka 		DPRINTF(("zapm: set power state READY\n"));
3681de7f198Snonaka 		sc->power_state = APM_SYS_READY;
3691de7f198Snonaka 		break;
3701de7f198Snonaka 	case APM_SYS_STANDBY:
3711de7f198Snonaka 		DPRINTF(("zapm: set power state STANDBY\n"));
3721de7f198Snonaka 		/* XXX */
3731de7f198Snonaka 		DPRINTF(("zapm: resume\n"));
3741de7f198Snonaka 		break;
3751de7f198Snonaka 	case APM_SYS_SUSPEND:
3761de7f198Snonaka 		DPRINTF(("zapm: set power state SUSPEND...\n"));
3771de7f198Snonaka 		/* XXX */
3781de7f198Snonaka 		DPRINTF(("zapm: resume\n"));
3791de7f198Snonaka 		break;
3801de7f198Snonaka 	case APM_SYS_OFF:
3811de7f198Snonaka 		DPRINTF(("zapm: set power state OFF\n"));
3821de7f198Snonaka 		sc->power_state = APM_SYS_OFF;
3831de7f198Snonaka 		break;
3841de7f198Snonaka 	case APM_LASTREQ_INPROG:
3851de7f198Snonaka 		/*DPRINTF(("zapm: set power state INPROG\n"));*/
3861de7f198Snonaka 		break;
3871de7f198Snonaka 	case APM_LASTREQ_REJECTED:
3881de7f198Snonaka 		DPRINTF(("zapm: set power state REJECTED\n"));
3891de7f198Snonaka 		break;
3901de7f198Snonaka 	}
3911de7f198Snonaka 
3921de7f198Snonaka 	return 0;
3931de7f198Snonaka }
3941de7f198Snonaka 
3951de7f198Snonaka static int
zapm_get_powstat(void * v,u_int batteryid,struct apm_power_info * pinfo)3969a25b0cbSuwe zapm_get_powstat(void *v, u_int batteryid, struct apm_power_info *pinfo)
3971de7f198Snonaka {
3981de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
3991de7f198Snonaka 	int val;
4001de7f198Snonaka 
4011de7f198Snonaka 	if (config_hook_call(CONFIG_HOOK_GET,
4021de7f198Snonaka 			     CONFIG_HOOK_ACADAPTER, &val) != -1)
4031de7f198Snonaka 		pinfo->ac_state = val;
4041de7f198Snonaka 	else
4051de7f198Snonaka 		pinfo->ac_state = sc->ac_state;
406671ae660Snonaka 	DPRINTF(("zapm: pinfo->ac_state: %d\n", pinfo->ac_state));
407671ae660Snonaka 
4081de7f198Snonaka 	if (config_hook_call(CONFIG_HOOK_GET,
4091de7f198Snonaka 			     CONFIG_HOOK_CHARGE, &val) != -1)
4101de7f198Snonaka 		pinfo->battery_state = val;
411671ae660Snonaka 	else {
412671ae660Snonaka 		DPRINTF(("zapm: sc->battery_state: %#x\n", sc->battery_state));
413671ae660Snonaka 		if (sc->battery_state & APM_BATT_FLAG_CHARGING)
414671ae660Snonaka 			pinfo->battery_flags = APM_BATT_FLAG_CHARGING;
415671ae660Snonaka 		else if (sc->battery_state & APM_BATT_FLAG_CRITICAL)
416671ae660Snonaka 			pinfo->battery_flags = APM_BATT_FLAG_CRITICAL;
417671ae660Snonaka 		else if (sc->battery_state & APM_BATT_FLAG_LOW)
418671ae660Snonaka 			pinfo->battery_flags = APM_BATT_FLAG_LOW;
419671ae660Snonaka 		else if (sc->battery_state & APM_BATT_FLAG_HIGH)
420671ae660Snonaka 			pinfo->battery_flags = APM_BATT_FLAG_HIGH;
4211de7f198Snonaka 		else
422671ae660Snonaka 			pinfo->battery_flags = APM_BATT_FLAG_UNKNOWN;
423671ae660Snonaka 	}
424671ae660Snonaka 	DPRINTF(("zapm: pinfo->battery_flags: %#x\n", pinfo->battery_flags));
425671ae660Snonaka 
4261de7f198Snonaka 	if (config_hook_call(CONFIG_HOOK_GET,
4271de7f198Snonaka 			     CONFIG_HOOK_BATTERYVAL, &val) != -1)
4281de7f198Snonaka 		pinfo->battery_life = val;
4291de7f198Snonaka 	else
4301de7f198Snonaka 		pinfo->battery_life = sc->battery_life;
431671ae660Snonaka 	DPRINTF(("zapm: pinfo->battery_life: %d\n", pinfo->battery_life));
4321de7f198Snonaka 
4331de7f198Snonaka 	return 0;
4341de7f198Snonaka }
4351de7f198Snonaka 
4361de7f198Snonaka static int
zapm_get_event(void * v,u_int * event_type,u_int * event_info)4371de7f198Snonaka zapm_get_event(void *v, u_int *event_type, u_int *event_info)
4381de7f198Snonaka {
4391de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
4401de7f198Snonaka 	u_int ev;
4411de7f198Snonaka 	int s;
4421de7f198Snonaka 
4431de7f198Snonaka 	s = splhigh();
4441de7f198Snonaka 	for (ev = APM_STANDBY_REQ; ev <= APM_CAP_CHANGE; ev++) {
4451de7f198Snonaka 		if (sc->events & (1 << ev)) {
4461de7f198Snonaka 			sc->events &= ~(1 << ev);
4471de7f198Snonaka 			*event_type = ev;
4481de7f198Snonaka 			if (*event_type == APM_NORMAL_RESUME ||
4491de7f198Snonaka 			    *event_type == APM_CRIT_RESUME) {
4501de7f198Snonaka 				/* pccard power off in the suspend state */
4511de7f198Snonaka 				*event_info = 1;
4521de7f198Snonaka 				sc->power_state = APM_SYS_READY;
4531de7f198Snonaka 			} else {
4541de7f198Snonaka 				*event_info = 0;
4551de7f198Snonaka 			}
4561de7f198Snonaka 			splx(s);
4571de7f198Snonaka 
4581de7f198Snonaka 			return 0;
4591de7f198Snonaka 		}
4601de7f198Snonaka 	}
4611de7f198Snonaka 	splx(s);
4621de7f198Snonaka 
4631de7f198Snonaka 	return APM_ERR_NOEVENTS;
4641de7f198Snonaka }
4651de7f198Snonaka 
4661de7f198Snonaka static void
zapm_cpu_busy(void * v)4671de7f198Snonaka zapm_cpu_busy(void *v)
4681de7f198Snonaka {
4691de7f198Snonaka #if 0
4701de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
4711de7f198Snonaka #endif
4721de7f198Snonaka }
4731de7f198Snonaka 
4741de7f198Snonaka static void
zapm_cpu_idle(void * v)4751de7f198Snonaka zapm_cpu_idle(void *v)
4761de7f198Snonaka {
4771de7f198Snonaka #if 0
4781de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
4791de7f198Snonaka #endif
4801de7f198Snonaka }
4811de7f198Snonaka 
4821de7f198Snonaka static void
zapm_get_capabilities(void * v,u_int * numbatts,u_int * capflags)4831de7f198Snonaka zapm_get_capabilities(void *v, u_int *numbatts, u_int *capflags)
4841de7f198Snonaka {
4851de7f198Snonaka #if 0
4861de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
4871de7f198Snonaka #endif
4881de7f198Snonaka 
4891de7f198Snonaka 	*numbatts = 1;
4901de7f198Snonaka 	*capflags = 0 /* | APM_GLOBAL_STANDBY | APM_GLOBAL_SUSPEND */;
4911de7f198Snonaka }
4921de7f198Snonaka 
4931de7f198Snonaka /*-----------------------------------------------------------------------------
4941de7f198Snonaka  * zaurus depent part
4951de7f198Snonaka  */
4961de7f198Snonaka /* MAX1111 command word */
4971de7f198Snonaka #define MAXCTRL_PD0		(1<<0)
4981de7f198Snonaka #define MAXCTRL_PD1		(1<<1)
4991de7f198Snonaka #define MAXCTRL_SGL		(1<<2)
5001de7f198Snonaka #define MAXCTRL_UNI		(1<<3)
5011de7f198Snonaka #define MAXCTRL_SEL_SHIFT	4
5021de7f198Snonaka #define MAXCTRL_STR		(1<<7)
5031de7f198Snonaka 
5041de7f198Snonaka /* MAX1111 ADC channels */
5051de7f198Snonaka #define	BATT_THM		2
5061de7f198Snonaka #define	BATT_AD			4
5071de7f198Snonaka #define JK_VAD			6
5081de7f198Snonaka 
5091de7f198Snonaka /*
5101de7f198Snonaka  * Battery-specific information
5111de7f198Snonaka  */
5121de7f198Snonaka struct battery_threshold {
5131de7f198Snonaka 	int	percent;
5141de7f198Snonaka 	int	value;
5151de7f198Snonaka 	int	state;
5161de7f198Snonaka };
5171de7f198Snonaka 
5181de7f198Snonaka struct battery_info {
5191de7f198Snonaka 	const struct battery_threshold *bi_thres;
5201de7f198Snonaka };
5211de7f198Snonaka 
5221de7f198Snonaka static const struct battery_threshold zaurus_battery_life_c3000[] = {
523a17a94caSnonaka 	{ 100,	212,	CONFIG_HOOK_BATT_HIGH		},
524a17a94caSnonaka 	{  98,	212,	CONFIG_HOOK_BATT_HIGH		},
525a17a94caSnonaka 	{  95,	211,	CONFIG_HOOK_BATT_HIGH		},
526a17a94caSnonaka 	{  93,	210,	CONFIG_HOOK_BATT_HIGH		},
527a17a94caSnonaka 	{  90,	209,	CONFIG_HOOK_BATT_HIGH		},
528a17a94caSnonaka 	{  88,	208,	CONFIG_HOOK_BATT_HIGH		},
529a17a94caSnonaka 	{  85,	207,	CONFIG_HOOK_BATT_HIGH		},
530a17a94caSnonaka 	{  83,	206,	CONFIG_HOOK_BATT_HIGH		},
531a17a94caSnonaka 	{  80,	205,	CONFIG_HOOK_BATT_HIGH		},
532a17a94caSnonaka 	{  78,	204,	CONFIG_HOOK_BATT_HIGH		},
533a17a94caSnonaka 	{  75,	203,	CONFIG_HOOK_BATT_HIGH		},
534a17a94caSnonaka 	{  73,	202,	CONFIG_HOOK_BATT_HIGH		},
535a17a94caSnonaka 	{  70,	201,	CONFIG_HOOK_BATT_HIGH		},
536a17a94caSnonaka 	{  68,	200,	CONFIG_HOOK_BATT_HIGH		},
537a17a94caSnonaka 	{  65,	199,	CONFIG_HOOK_BATT_HIGH		},
538a17a94caSnonaka 	{  63,	198,	CONFIG_HOOK_BATT_HIGH		},
539a17a94caSnonaka 	{  60,	197,	CONFIG_HOOK_BATT_HIGH		},
540a17a94caSnonaka 	{  58,	196,	CONFIG_HOOK_BATT_HIGH		},
541a17a94caSnonaka 	{  55,	195,	CONFIG_HOOK_BATT_HIGH		},
542a17a94caSnonaka 	{  53,	194,	CONFIG_HOOK_BATT_HIGH		},
543a17a94caSnonaka 	{  50,	193,	CONFIG_HOOK_BATT_HIGH		},
544a17a94caSnonaka 	{  48,	192,	CONFIG_HOOK_BATT_HIGH		},
545a17a94caSnonaka 	{  45,	192,	CONFIG_HOOK_BATT_HIGH		},
546a17a94caSnonaka 	{  43,	191,	CONFIG_HOOK_BATT_HIGH		},
547a17a94caSnonaka 	{  40,	191,	CONFIG_HOOK_BATT_HIGH		},
548a17a94caSnonaka 	{  38,	190,	CONFIG_HOOK_BATT_HIGH		},
549a17a94caSnonaka 	{  35,	190,	CONFIG_HOOK_BATT_HIGH		},
550a17a94caSnonaka 	{  33,	189,	CONFIG_HOOK_BATT_HIGH		},
551a17a94caSnonaka 	{  30,	188,	CONFIG_HOOK_BATT_HIGH		},
552a17a94caSnonaka 	{  28,	187,	CONFIG_HOOK_BATT_LOW		},
553a17a94caSnonaka 	{  25,	186,	CONFIG_HOOK_BATT_LOW		},
554a17a94caSnonaka 	{  23,	185,	CONFIG_HOOK_BATT_LOW		},
555a17a94caSnonaka 	{  20,	184,	CONFIG_HOOK_BATT_LOW		},
556a17a94caSnonaka 	{  18,	183,	CONFIG_HOOK_BATT_LOW		},
557a17a94caSnonaka 	{  15,	182,	CONFIG_HOOK_BATT_LOW		},
558a17a94caSnonaka 	{  13,	181,	CONFIG_HOOK_BATT_LOW		},
559a17a94caSnonaka 	{  10,	180,	CONFIG_HOOK_BATT_LOW		},
560a17a94caSnonaka 	{   8,	179,	CONFIG_HOOK_BATT_LOW		},
5611de7f198Snonaka 	{   5,	178,	CONFIG_HOOK_BATT_LOW		},
5621de7f198Snonaka 	{   0,	  0,	CONFIG_HOOK_BATT_CRITICAL	}
5631de7f198Snonaka };
5641de7f198Snonaka 
5651de7f198Snonaka static const struct battery_info zaurus_battery_c3000 = {
5661de7f198Snonaka 	zaurus_battery_life_c3000
5671de7f198Snonaka };
5681de7f198Snonaka 
5691de7f198Snonaka static const struct battery_info *zaurus_main_battery = &zaurus_battery_c3000;
5701de7f198Snonaka 
5711de7f198Snonaka /* Restart charging this many times before accepting BATT_FULL. */
5721de7f198Snonaka #define	MIN_BATT_FULL		2
5731de7f198Snonaka 
5741de7f198Snonaka /* Discharge 100 ms before reading the voltage if AC is connected. */
5751de7f198Snonaka #define	DISCHARGE_TIMEOUT	(hz / 10)
5761de7f198Snonaka 
5771de7f198Snonaka /* Check battery voltage and "kick charging" every minute. */
5781de7f198Snonaka static const struct timeval zapm_battchkrate = { 60, 0 };
5791de7f198Snonaka 
5801de7f198Snonaka static int	zapm_get_ac_state(struct zapm_softc *);
5811de7f198Snonaka static int	zapm_get_battery_compartment_state(struct zapm_softc *);
5821de7f198Snonaka static int	zapm_get_charge_complete_state(struct zapm_softc *);
5831de7f198Snonaka static void	zapm_set_charging(struct zapm_softc *, int);
5841de7f198Snonaka static int	zapm_charge_complete(struct zapm_softc *);
585a17a94caSnonaka static int	max1111_adc_value_avg(int chan, int pause);
5861de7f198Snonaka static int	zapm_get_battery_volt(void);
5871de7f198Snonaka static int	zapm_battery_state(int volt);
5881de7f198Snonaka static int	zapm_battery_life(int volt);
5891de7f198Snonaka 
5901de7f198Snonaka static int
zapm_acintr(void * v)5911de7f198Snonaka zapm_acintr(void *v)
5921de7f198Snonaka {
5931de7f198Snonaka 
5941de7f198Snonaka 	zapm_poll1(v, 1);
5951de7f198Snonaka 
5961de7f198Snonaka 	return 1;
5971de7f198Snonaka }
5981de7f198Snonaka 
5991de7f198Snonaka static int
zapm_bcintr(void * v)6001de7f198Snonaka zapm_bcintr(void *v)
6011de7f198Snonaka {
6021de7f198Snonaka 
6031de7f198Snonaka 	zapm_poll1(v, 1);
6041de7f198Snonaka 
6051de7f198Snonaka 	return 1;
6061de7f198Snonaka }
6071de7f198Snonaka 
6081de7f198Snonaka static void
zapm_cyclic(void * v)6091de7f198Snonaka zapm_cyclic(void *v)
6101de7f198Snonaka {
6111de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
6121de7f198Snonaka 
6131de7f198Snonaka 	zapm_poll1(sc, 1);
6141de7f198Snonaka 
6151de7f198Snonaka 	callout_schedule(&sc->sc_cyclic_poll, CYCLIC_TIME);
6161de7f198Snonaka }
6171de7f198Snonaka 
6181de7f198Snonaka static void
zapm_poll(void * v)6191de7f198Snonaka zapm_poll(void *v)
6201de7f198Snonaka {
6211de7f198Snonaka 
6221de7f198Snonaka 	zapm_poll1(v, 1);
6231de7f198Snonaka }
6241de7f198Snonaka 
6251de7f198Snonaka static int
zapm_get_ac_state(struct zapm_softc * sc)6261de7f198Snonaka zapm_get_ac_state(struct zapm_softc *sc)
6271de7f198Snonaka {
6281de7f198Snonaka 
6291de7f198Snonaka 	if (!pxa2x0_gpio_get_bit(sc->sc_ac_detect_pin))
6301de7f198Snonaka 		return APM_AC_ON;
6311de7f198Snonaka 	return APM_AC_OFF;
6321de7f198Snonaka }
6331de7f198Snonaka 
6341de7f198Snonaka static int
zapm_get_battery_compartment_state(struct zapm_softc * sc)6351de7f198Snonaka zapm_get_battery_compartment_state(struct zapm_softc *sc)
6361de7f198Snonaka {
6371de7f198Snonaka 
6381de7f198Snonaka 	return pxa2x0_gpio_get_bit(sc->sc_batt_cover_pin);
6391de7f198Snonaka }
6401de7f198Snonaka 
6411de7f198Snonaka static int
zapm_get_charge_complete_state(struct zapm_softc * sc)6421de7f198Snonaka zapm_get_charge_complete_state(struct zapm_softc *sc)
6431de7f198Snonaka {
6441de7f198Snonaka 
6451de7f198Snonaka 	return pxa2x0_gpio_get_bit(sc->sc_charge_comp_pin);
6461de7f198Snonaka }
6471de7f198Snonaka 
6481de7f198Snonaka static void
zapm_set_charging(struct zapm_softc * sc,int enable)6491de7f198Snonaka zapm_set_charging(struct zapm_softc *sc, int enable)
6501de7f198Snonaka {
6511de7f198Snonaka 
652533071c4Stsutsui 	if (ZAURUS_ISC1000 || ZAURUS_ISC3000) {
6531de7f198Snonaka 		scoop_discharge_battery(0);
6541de7f198Snonaka 		scoop_charge_battery(enable, 0);
6551de7f198Snonaka 		scoop_led_set(SCOOP_LED_ORANGE, enable);
6561de7f198Snonaka 	}
657533071c4Stsutsui }
6581de7f198Snonaka 
6591de7f198Snonaka /*
6601de7f198Snonaka  * Return non-zero if the charge complete signal indicates that the
6611de7f198Snonaka  * battery is fully charged.  Restart charging to clear this signal.
6621de7f198Snonaka  */
6631de7f198Snonaka static int
zapm_charge_complete(struct zapm_softc * sc)6641de7f198Snonaka zapm_charge_complete(struct zapm_softc *sc)
6651de7f198Snonaka {
6661de7f198Snonaka 
6671de7f198Snonaka 	if (sc->charging && sc->battery_full_cnt < MIN_BATT_FULL) {
6681de7f198Snonaka 		if (zapm_get_charge_complete_state(sc)) {
6691de7f198Snonaka 			sc->battery_full_cnt++;
6701de7f198Snonaka 			if (sc->battery_full_cnt < MIN_BATT_FULL) {
6711de7f198Snonaka 				DPRINTF(("battery almost full\n"));
6721de7f198Snonaka 				zapm_set_charging(sc, 0);
6731de7f198Snonaka 				delay(15000);
6741de7f198Snonaka 				zapm_set_charging(sc, 1);
6751de7f198Snonaka 			}
6761de7f198Snonaka 		} else if (sc->battery_full_cnt > 0) {
6771de7f198Snonaka 			/* false alarm */
6781de7f198Snonaka 			sc->battery_full_cnt = 0;
6791de7f198Snonaka 			zapm_set_charging(sc, 0);
6801de7f198Snonaka 			delay(15000);
6811de7f198Snonaka 			zapm_set_charging(sc, 1);
6821de7f198Snonaka 		}
6831de7f198Snonaka 	}
6841de7f198Snonaka 
6851de7f198Snonaka 	return (sc->battery_full_cnt >= MIN_BATT_FULL);
6861de7f198Snonaka }
6871de7f198Snonaka 
6881de7f198Snonaka static int
max1111_adc_value(int chan)6891de7f198Snonaka max1111_adc_value(int chan)
6901de7f198Snonaka {
6911de7f198Snonaka 
6921de7f198Snonaka 	return ((int)zssp_ic_send(ZSSP_IC_MAX1111, MAXCTRL_PD0 |
6931de7f198Snonaka 	    MAXCTRL_PD1 | MAXCTRL_SGL | MAXCTRL_UNI |
6941de7f198Snonaka 	    (chan << MAXCTRL_SEL_SHIFT) | MAXCTRL_STR));
6951de7f198Snonaka }
6961de7f198Snonaka 
6971de7f198Snonaka /* XXX simplify */
6981de7f198Snonaka static int
max1111_adc_value_avg(int chan,int pause)6991de7f198Snonaka max1111_adc_value_avg(int chan, int pause)
7001de7f198Snonaka {
7011de7f198Snonaka 	int val[5];
702a17a94caSnonaka 	int sum;
703a17a94caSnonaka 	int minv, maxv, v;
704a17a94caSnonaka 	int i;
7051de7f198Snonaka 
7061de7f198Snonaka 	DPRINTF(("max1111_adc_value_avg: chan = %d, pause = %d\n",
7071de7f198Snonaka 	    chan, pause));
7081de7f198Snonaka 
7091de7f198Snonaka 	for (i = 0; i < 5; i++) {
7101de7f198Snonaka 		val[i] = max1111_adc_value(chan);
7111de7f198Snonaka 		if (i != 4)
7121de7f198Snonaka 			delay(pause * 1000);
7131de7f198Snonaka 		DPRINTF(("max1111_adc_value_avg: chan[%d] = %d\n", i, val[i]));
7141de7f198Snonaka 	}
7151de7f198Snonaka 
716a17a94caSnonaka 	/* get max value */
717a17a94caSnonaka 	v = val[0];
718a17a94caSnonaka 	minv = 0;
7191de7f198Snonaka 	for (i = 1; i < 5; i++) {
720a17a94caSnonaka 		if (v < val[i]) {
721a17a94caSnonaka 			v = val[i];
722a17a94caSnonaka 			minv = i;
7231de7f198Snonaka 		}
7241de7f198Snonaka 	}
7251de7f198Snonaka 
726a17a94caSnonaka 	/* get min value */
727a17a94caSnonaka 	v = val[4];
728a17a94caSnonaka 	maxv = 4;
7291de7f198Snonaka 	for (i = 3; i >= 0; i--) {
730a17a94caSnonaka 		if (v > val[i]) {
731a17a94caSnonaka 			v = val[i];
732a17a94caSnonaka 			maxv = i;
7331de7f198Snonaka 		}
7341de7f198Snonaka 	}
7351de7f198Snonaka 
736a17a94caSnonaka 	DPRINTF(("max1111_adc_value_avg: minv = %d, maxv = %d\n", minv, maxv));
737a17a94caSnonaka 	sum = 0;
7381de7f198Snonaka 	for (i = 0; i < 5; i++) {
739a17a94caSnonaka 		if (i == minv || i == maxv)
7401de7f198Snonaka 			continue;
7411de7f198Snonaka 		sum += val[i];
7421de7f198Snonaka 	}
7431de7f198Snonaka 
7441de7f198Snonaka 	DPRINTF(("max1111_adc_value_avg: sum = %d, sum / 3 = %d\n",
7451de7f198Snonaka 	    sum, sum / 3));
7461de7f198Snonaka 
7471de7f198Snonaka 	return sum / 3;
7481de7f198Snonaka }
7491de7f198Snonaka 
7501de7f198Snonaka static int
zapm_get_battery_volt(void)7511de7f198Snonaka zapm_get_battery_volt(void)
7521de7f198Snonaka {
7531de7f198Snonaka 
7541de7f198Snonaka 	return max1111_adc_value_avg(BATT_AD, 10);
7551de7f198Snonaka }
7561de7f198Snonaka 
7571de7f198Snonaka static int
zapm_battery_state(int volt)7581de7f198Snonaka zapm_battery_state(int volt)
7591de7f198Snonaka {
7601de7f198Snonaka 	const struct battery_threshold *bthr;
7611de7f198Snonaka 	int i;
7621de7f198Snonaka 
7631de7f198Snonaka 	bthr = zaurus_main_battery->bi_thres;
7641de7f198Snonaka 
7651de7f198Snonaka 	for (i = 0; bthr[i].value > 0; i++)
7661de7f198Snonaka 		if (bthr[i].value <= volt)
7671de7f198Snonaka 			break;
7681de7f198Snonaka 
7691de7f198Snonaka 	return bthr[i].state;
7701de7f198Snonaka }
7711de7f198Snonaka 
7721de7f198Snonaka static int
zapm_battery_life(int volt)7731de7f198Snonaka zapm_battery_life(int volt)
7741de7f198Snonaka {
7751de7f198Snonaka 	const struct battery_threshold *bthr;
7761de7f198Snonaka 	int i;
7771de7f198Snonaka 
7781de7f198Snonaka 	bthr = zaurus_main_battery->bi_thres;
7791de7f198Snonaka 
7801de7f198Snonaka 	for (i = 0; bthr[i].value > 0; i++)
7811de7f198Snonaka 		if (bthr[i].value <= volt)
7821de7f198Snonaka 			break;
7831de7f198Snonaka 
7841de7f198Snonaka 	if (i == 0)
7851de7f198Snonaka 		return bthr[0].percent;
7861de7f198Snonaka 
7871de7f198Snonaka 	return (bthr[i].percent +
7881de7f198Snonaka 	    ((volt - bthr[i].value) * 100) /
7891de7f198Snonaka 	    (bthr[i-1].value - bthr[i].value) *
7901de7f198Snonaka 	    (bthr[i-1].percent - bthr[i].percent) / 100);
7911de7f198Snonaka }
7921de7f198Snonaka 
7931de7f198Snonaka /*
7941de7f198Snonaka  * Poll power-management related GPIO inputs, update battery life
7951de7f198Snonaka  * in softc, and/or control battery charging.
7961de7f198Snonaka  */
7971de7f198Snonaka static void
zapm_poll1(void * v,int do_suspend)7981de7f198Snonaka zapm_poll1(void *v, int do_suspend)
7991de7f198Snonaka {
8001de7f198Snonaka 	struct zapm_softc *sc = (struct zapm_softc *)v;
8011de7f198Snonaka 	int ac_state;
8021de7f198Snonaka 	int bc_lock;
8031de7f198Snonaka 	int charging;
8041de7f198Snonaka 	int volt;
8051de7f198Snonaka 
80690e9d6e9Snonaka 	if (!mutex_tryenter(&sc->sc_mtx))
80790e9d6e9Snonaka 		return;
8081de7f198Snonaka 
8091de7f198Snonaka 	ac_state = zapm_get_ac_state(sc);
8101de7f198Snonaka 	bc_lock = zapm_get_battery_compartment_state(sc);
8111de7f198Snonaka 
8121de7f198Snonaka 	/* Stop discharging. */
8131de7f198Snonaka 	if (sc->discharging) {
8141de7f198Snonaka 		sc->discharging = 0;
8151de7f198Snonaka 		charging = 0;
8161de7f198Snonaka 		volt = zapm_get_battery_volt();
8171de7f198Snonaka 		DPRINTF(("zapm_poll: discharge off volt %d\n", volt));
8181de7f198Snonaka 	} else {
8191de7f198Snonaka 		charging = sc->battery_state & APM_BATT_FLAG_CHARGING;
8201de7f198Snonaka 		volt = sc->battery_volt;
8211de7f198Snonaka 	}
8221de7f198Snonaka 
8231de7f198Snonaka 	/* Start or stop charging as necessary. */
8241de7f198Snonaka 	if (ac_state && bc_lock) {
8251de7f198Snonaka 		int charge_completed = zapm_charge_complete(sc);
8261de7f198Snonaka 		if (charging) {
8271de7f198Snonaka 			if (charge_completed) {
8281de7f198Snonaka 				DPRINTF(("zapm_poll: battery is full\n"));
8291de7f198Snonaka 				charging = 0;
8301de7f198Snonaka 				zapm_set_charging(sc, 0);
8311de7f198Snonaka 			}
8321de7f198Snonaka 		} else if (!charge_completed) {
833a75e0b5bSnonaka 			charging = APM_BATT_FLAG_CHARGING;
8341de7f198Snonaka 			volt = zapm_get_battery_volt();
8351de7f198Snonaka 			zapm_set_charging(sc, 1);
8361de7f198Snonaka 			DPRINTF(("zapm_poll: start charging volt %d\n", volt));
8371de7f198Snonaka 		}
8381de7f198Snonaka 	} else {
8391de7f198Snonaka 		if (charging) {
8401de7f198Snonaka 			charging = 0;
8411de7f198Snonaka 			zapm_set_charging(sc, 0);
8421de7f198Snonaka 			timerclear(&sc->sc_lastbattchk);
8431de7f198Snonaka 			DPRINTF(("zapm_poll: stop charging\n"));
8441de7f198Snonaka 		}
8451de7f198Snonaka 		sc->battery_full_cnt = 0;
8461de7f198Snonaka 	}
8471de7f198Snonaka 
8481de7f198Snonaka 	/*
8491de7f198Snonaka 	 * Restart charging once in a while.  Discharge a few milliseconds
8501de7f198Snonaka 	 * before updating the voltage in our softc if A/C is connected.
8511de7f198Snonaka 	 */
8521de7f198Snonaka 	if (bc_lock && ratecheck(&sc->sc_lastbattchk, &zapm_battchkrate)) {
8531de7f198Snonaka 		if (do_suspend && sc->suspended) {
8541de7f198Snonaka 			/* XXX */
8551de7f198Snonaka #if 0
8561de7f198Snonaka 			DPRINTF(("zapm_poll: suspended %lu %lu\n",
8571de7f198Snonaka 			    sc->lastbattchk.tv_sec,
8581de7f198Snonaka 			    pxa2x0_rtc_getsecs()));
8591de7f198Snonaka 			if (charging) {
8601de7f198Snonaka 				zapm_set_charging(sc, 0);
8611de7f198Snonaka 				delay(15000);
8621de7f198Snonaka 				zapm_set_charging(sc, 1);
8631de7f198Snonaka 				pxa2x0_rtc_setalarm(pxa2x0_rtc_getsecs() +
8641de7f198Snonaka 				    zapm_battchkrate.tv_sec + 1);
8651de7f198Snonaka 			}
8661de7f198Snonaka #endif
8671de7f198Snonaka 		} else if (ac_state && sc->battery_full_cnt == 0) {
8681de7f198Snonaka 			DPRINTF(("zapm_poll: discharge on\n"));
8691de7f198Snonaka 			if (charging)
8701de7f198Snonaka 				zapm_set_charging(sc, 0);
8711de7f198Snonaka 			sc->discharging = 1;
872533071c4Stsutsui 			if (ZAURUS_ISC1000 || ZAURUS_ISC3000)
8731de7f198Snonaka 				scoop_discharge_battery(1);
8741de7f198Snonaka 			callout_schedule(&sc->sc_discharge_poll,
8751de7f198Snonaka 			    DISCHARGE_TIMEOUT);
8761de7f198Snonaka 		} else if (!ac_state) {
8771de7f198Snonaka 			volt = zapm_get_battery_volt();
8781de7f198Snonaka 			DPRINTF(("zapm_poll: volt %d\n", volt));
8791de7f198Snonaka 		}
8801de7f198Snonaka 	}
8811de7f198Snonaka 
8821de7f198Snonaka 	/* Update the cached power state in our softc. */
8831de7f198Snonaka 	if ((ac_state != sc->ac_state)
8841de7f198Snonaka 	 || (charging != (sc->battery_state & APM_BATT_FLAG_CHARGING))) {
8851de7f198Snonaka 		config_hook_call(CONFIG_HOOK_PMEVENT,
8861de7f198Snonaka 		    CONFIG_HOOK_PMEVENT_AC,
8871de7f198Snonaka 		    (void *)((ac_state == APM_AC_OFF)
8881de7f198Snonaka 		        ? CONFIG_HOOK_AC_OFF
8891de7f198Snonaka 		        : (charging ? CONFIG_HOOK_AC_ON_CHARGE
8901de7f198Snonaka 		                    : CONFIG_HOOK_AC_ON_NOCHARGE)));
8911de7f198Snonaka 	}
8921de7f198Snonaka 	if (volt != sc->battery_volt) {
8931de7f198Snonaka 		sc->battery_volt = volt;
8941de7f198Snonaka 		sc->battery_life = zapm_battery_life(volt);
8951de7f198Snonaka 		config_hook_call(CONFIG_HOOK_PMEVENT,
8961de7f198Snonaka 		    CONFIG_HOOK_PMEVENT_BATTERY,
8971de7f198Snonaka 		    (void *)zapm_battery_state(volt));
8981de7f198Snonaka 	}
8991de7f198Snonaka 
90090e9d6e9Snonaka 	mutex_exit(&sc->sc_mtx);
9011de7f198Snonaka }
902