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acpi_bat.c revision 1.121
      1  1.121  riastrad /*	$NetBSD: acpi_bat.c,v 1.121 2022/01/07 01:10:57 riastradh Exp $	*/
      2   1.26   mycroft 
      3   1.26   mycroft /*-
      4   1.26   mycroft  * Copyright (c) 2003 The NetBSD Foundation, Inc.
      5   1.26   mycroft  * All rights reserved.
      6   1.26   mycroft  *
      7   1.26   mycroft  * This code is derived from software contributed to The NetBSD Foundation
      8   1.26   mycroft  * by Charles M. Hannum of By Noon Software, Inc.
      9   1.26   mycroft  *
     10   1.26   mycroft  * Redistribution and use in source and binary forms, with or without
     11   1.26   mycroft  * modification, are permitted provided that the following conditions
     12   1.26   mycroft  * are met:
     13   1.26   mycroft  * 1. Redistributions of source code must retain the above copyright
     14   1.26   mycroft  *    notice, this list of conditions and the following disclaimer.
     15   1.26   mycroft  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.26   mycroft  *    notice, this list of conditions and the following disclaimer in the
     17   1.26   mycroft  *    documentation and/or other materials provided with the distribution.
     18   1.26   mycroft  *
     19   1.26   mycroft  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20   1.26   mycroft  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21   1.26   mycroft  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22   1.26   mycroft  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23   1.26   mycroft  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24   1.26   mycroft  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25   1.26   mycroft  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26   1.26   mycroft  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27   1.26   mycroft  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28   1.26   mycroft  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29   1.26   mycroft  * POSSIBILITY OF SUCH DAMAGE.
     30   1.26   mycroft  */
     31    1.1  sommerfe 
     32    1.1  sommerfe /*
     33    1.1  sommerfe  * Copyright 2001 Bill Sommerfeld.
     34    1.1  sommerfe  * All rights reserved.
     35    1.1  sommerfe  *
     36    1.1  sommerfe  * Redistribution and use in source and binary forms, with or without
     37    1.1  sommerfe  * modification, are permitted provided that the following conditions
     38    1.1  sommerfe  * are met:
     39    1.1  sommerfe  * 1. Redistributions of source code must retain the above copyright
     40    1.1  sommerfe  *    notice, this list of conditions and the following disclaimer.
     41    1.1  sommerfe  * 2. Redistributions in binary form must reproduce the above copyright
     42    1.1  sommerfe  *    notice, this list of conditions and the following disclaimer in the
     43    1.1  sommerfe  *    documentation and/or other materials provided with the distribution.
     44    1.1  sommerfe  * 3. All advertising materials mentioning features or use of this software
     45    1.1  sommerfe  *    must display the following acknowledgement:
     46    1.1  sommerfe  *	This product includes software developed for the NetBSD Project by
     47    1.1  sommerfe  *	Wasabi Systems, Inc.
     48    1.1  sommerfe  * 4. The name of Wasabi Systems, Inc. may not be used to endorse
     49    1.1  sommerfe  *    or promote products derived from this software without specific prior
     50    1.1  sommerfe  *    written permission.
     51    1.1  sommerfe  *
     52    1.1  sommerfe  * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
     53    1.1  sommerfe  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     54    1.1  sommerfe  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     55    1.1  sommerfe  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL WASABI SYSTEMS, INC
     56    1.1  sommerfe  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     57    1.1  sommerfe  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     58    1.1  sommerfe  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     59    1.1  sommerfe  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     60    1.1  sommerfe  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     61    1.1  sommerfe  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     62    1.1  sommerfe  * POSSIBILITY OF SUCH DAMAGE.
     63    1.1  sommerfe  */
     64    1.1  sommerfe 
     65    1.1  sommerfe /*
     66    1.1  sommerfe  * ACPI Battery Driver.
     67    1.1  sommerfe  *
     68    1.1  sommerfe  * ACPI defines two different battery device interfaces: "Control
     69    1.1  sommerfe  * Method" batteries, in which AML methods are defined in order to get
     70    1.1  sommerfe  * battery status and set battery alarm thresholds, and a "Smart
     71    1.1  sommerfe  * Battery" device, which is an SMbus device accessed through the ACPI
     72    1.1  sommerfe  * Embedded Controller device.
     73    1.1  sommerfe  *
     74    1.1  sommerfe  * This driver is for the "Control Method"-style battery only.
     75    1.1  sommerfe  */
     76    1.1  sommerfe 
     77    1.1  sommerfe #include <sys/cdefs.h>
     78  1.121  riastrad __KERNEL_RCSID(0, "$NetBSD: acpi_bat.c,v 1.121 2022/01/07 01:10:57 riastradh Exp $");
     79    1.1  sommerfe 
     80    1.1  sommerfe #include <sys/param.h>
     81   1.84    jruoho #include <sys/condvar.h>
     82   1.84    jruoho #include <sys/device.h>
     83   1.84    jruoho #include <sys/kernel.h>
     84   1.81    jruoho #include <sys/kmem.h>
     85   1.83    jruoho #include <sys/module.h>
     86   1.46   xtraeme #include <sys/mutex.h>
     87   1.84    jruoho #include <sys/systm.h>
     88   1.77    jruoho 
     89    1.1  sommerfe #include <dev/acpi/acpireg.h>
     90    1.1  sommerfe #include <dev/acpi/acpivar.h>
     91    1.1  sommerfe 
     92   1.77    jruoho #define _COMPONENT		 ACPI_BAT_COMPONENT
     93   1.77    jruoho ACPI_MODULE_NAME		 ("acpi_bat")
     94   1.73   mlelstv 
     95  1.102    jruoho #define	ACPI_NOTIFY_BAT_STATUS	 0x80
     96  1.102    jruoho #define	ACPI_NOTIFY_BAT_INFO	 0x81
     97  1.102    jruoho 
     98   1.76    jruoho /*
     99   1.76    jruoho  * Sensor indexes.
    100   1.76    jruoho  */
    101   1.76    jruoho enum {
    102   1.76    jruoho 	ACPIBAT_PRESENT		 = 0,
    103   1.90    jruoho 	ACPIBAT_DVOLTAGE	 = 1,
    104   1.90    jruoho 	ACPIBAT_VOLTAGE		 = 2,
    105   1.90    jruoho 	ACPIBAT_DCAPACITY	 = 3,
    106   1.90    jruoho 	ACPIBAT_LFCCAPACITY	 = 4,
    107   1.90    jruoho 	ACPIBAT_CAPACITY	 = 5,
    108   1.90    jruoho 	ACPIBAT_CHARGERATE	 = 6,
    109   1.90    jruoho 	ACPIBAT_DISCHARGERATE	 = 7,
    110   1.90    jruoho 	ACPIBAT_CHARGING	 = 8,
    111   1.90    jruoho 	ACPIBAT_CHARGE_STATE	 = 9,
    112   1.90    jruoho 	ACPIBAT_COUNT		 = 10
    113   1.76    jruoho };
    114   1.76    jruoho 
    115   1.76    jruoho /*
    116   1.76    jruoho  * Battery Information, _BIF
    117   1.76    jruoho  * (ACPI 3.0, sec. 10.2.2.1).
    118   1.76    jruoho  */
    119   1.76    jruoho enum {
    120   1.76    jruoho 	ACPIBAT_BIF_UNIT	 = 0,
    121   1.76    jruoho 	ACPIBAT_BIF_DCAPACITY	 = 1,
    122   1.76    jruoho 	ACPIBAT_BIF_LFCCAPACITY	 = 2,
    123   1.76    jruoho 	ACPIBAT_BIF_TECHNOLOGY	 = 3,
    124   1.76    jruoho 	ACPIBAT_BIF_DVOLTAGE	 = 4,
    125   1.76    jruoho 	ACPIBAT_BIF_WCAPACITY	 = 5,
    126   1.76    jruoho 	ACPIBAT_BIF_LCAPACITY	 = 6,
    127   1.76    jruoho 	ACPIBAT_BIF_GRANULARITY1 = 7,
    128   1.76    jruoho 	ACPIBAT_BIF_GRANULARITY2 = 8,
    129   1.76    jruoho 	ACPIBAT_BIF_MODEL	 = 9,
    130   1.76    jruoho 	ACPIBAT_BIF_SERIAL	 = 10,
    131   1.76    jruoho 	ACPIBAT_BIF_TYPE	 = 11,
    132   1.76    jruoho 	ACPIBAT_BIF_OEM		 = 12,
    133   1.76    jruoho 	ACPIBAT_BIF_COUNT	 = 13
    134   1.76    jruoho };
    135   1.76    jruoho 
    136   1.76    jruoho /*
    137   1.76    jruoho  * Battery Status, _BST
    138   1.76    jruoho  * (ACPI 3.0, sec. 10.2.2.3).
    139   1.76    jruoho  */
    140   1.76    jruoho enum {
    141   1.76    jruoho 	ACPIBAT_BST_STATE	 = 0,
    142   1.76    jruoho 	ACPIBAT_BST_RATE	 = 1,
    143   1.76    jruoho 	ACPIBAT_BST_CAPACITY	 = 2,
    144   1.76    jruoho 	ACPIBAT_BST_VOLTAGE	 = 3,
    145   1.76    jruoho 	ACPIBAT_BST_COUNT	 = 4
    146   1.76    jruoho };
    147   1.14  explorer 
    148    1.1  sommerfe struct acpibat_softc {
    149   1.77    jruoho 	struct acpi_devnode	*sc_node;
    150   1.77    jruoho 	struct sysmon_envsys	*sc_sme;
    151  1.108    jruoho 	struct timeval		 sc_last;
    152   1.81    jruoho 	envsys_data_t		*sc_sensor;
    153   1.77    jruoho 	kmutex_t		 sc_mutex;
    154   1.77    jruoho 	kcondvar_t		 sc_condvar;
    155  1.111    jruoho 	int32_t			 sc_dcapacity;
    156  1.111    jruoho 	int32_t			 sc_dvoltage;
    157   1.87    jruoho 	int32_t			 sc_lcapacity;
    158   1.87    jruoho 	int32_t			 sc_wcapacity;
    159   1.78    jruoho 	int                      sc_present;
    160  1.121  riastrad 	bool			 sc_dying;
    161    1.1  sommerfe };
    162    1.1  sommerfe 
    163  1.117   thorpej static const struct device_compatible_entry compat_data[] = {
    164  1.117   thorpej 	{ .compat = "PNP0C0A" },
    165  1.117   thorpej 	DEVICE_COMPAT_EOL
    166   1.33     kochi };
    167   1.33     kochi 
    168   1.11  explorer #define ACPIBAT_PWRUNIT_MA	0x00000001  /* mA not mW */
    169   1.14  explorer #define ACPIBAT_ST_DISCHARGING	0x00000001  /* battery is discharging */
    170   1.14  explorer #define ACPIBAT_ST_CHARGING	0x00000002  /* battery is charging */
    171   1.14  explorer #define ACPIBAT_ST_CRITICAL	0x00000004  /* battery is critical */
    172   1.11  explorer 
    173   1.11  explorer /*
    174   1.88    jruoho  * A value used when _BST or _BIF is temporarily unknown.
    175   1.76    jruoho  */
    176   1.76    jruoho #define ACPIBAT_VAL_UNKNOWN	0xFFFFFFFF
    177   1.76    jruoho 
    178   1.76    jruoho #define ACPIBAT_VAL_ISVALID(x)						      \
    179   1.76    jruoho 	(((x) != ACPIBAT_VAL_UNKNOWN) ? ENVSYS_SVALID : ENVSYS_SINVALID)
    180   1.76    jruoho 
    181   1.77    jruoho static int	    acpibat_match(device_t, cfdata_t, void *);
    182   1.77    jruoho static void	    acpibat_attach(device_t, device_t, void *);
    183   1.80    jruoho static int	    acpibat_detach(device_t, int);
    184   1.77    jruoho static int          acpibat_get_sta(device_t);
    185  1.105    jruoho static ACPI_OBJECT *acpibat_get_object(ACPI_HANDLE, const char *, uint32_t);
    186   1.77    jruoho static void         acpibat_get_info(device_t);
    187   1.90    jruoho static void	    acpibat_print_info(device_t, ACPI_OBJECT *);
    188   1.77    jruoho static void         acpibat_get_status(device_t);
    189   1.77    jruoho static void         acpibat_update_info(void *);
    190   1.77    jruoho static void         acpibat_update_status(void *);
    191   1.77    jruoho static void         acpibat_init_envsys(device_t);
    192   1.99    jruoho static void         acpibat_notify_handler(ACPI_HANDLE, uint32_t, void *);
    193   1.77    jruoho static void         acpibat_refresh(struct sysmon_envsys *, envsys_data_t *);
    194   1.82    dyoung static bool	    acpibat_resume(device_t, const pmf_qual_t *);
    195   1.87    jruoho static void	    acpibat_get_limits(struct sysmon_envsys *, envsys_data_t *,
    196   1.87    jruoho 				       sysmon_envsys_lim_t *, uint32_t *);
    197    1.1  sommerfe 
    198   1.58     joerg CFATTACH_DECL_NEW(acpibat, sizeof(struct acpibat_softc),
    199   1.80    jruoho     acpibat_match, acpibat_attach, acpibat_detach, NULL);
    200    1.1  sommerfe 
    201    1.1  sommerfe /*
    202    1.1  sommerfe  * acpibat_match:
    203    1.1  sommerfe  *
    204    1.1  sommerfe  *	Autoconfiguration `match' routine.
    205    1.1  sommerfe  */
    206   1.39     kochi static int
    207   1.70    cegger acpibat_match(device_t parent, cfdata_t match, void *aux)
    208    1.1  sommerfe {
    209    1.1  sommerfe 	struct acpi_attach_args *aa = aux;
    210    1.1  sommerfe 
    211  1.117   thorpej 	return acpi_compatible_match(aa, compat_data);
    212    1.1  sommerfe }
    213    1.1  sommerfe 
    214    1.1  sommerfe /*
    215    1.1  sommerfe  * acpibat_attach:
    216    1.1  sommerfe  *
    217    1.1  sommerfe  *	Autoconfiguration `attach' routine.
    218    1.1  sommerfe  */
    219   1.39     kochi static void
    220   1.58     joerg acpibat_attach(device_t parent, device_t self, void *aux)
    221    1.1  sommerfe {
    222   1.58     joerg 	struct acpibat_softc *sc = device_private(self);
    223    1.1  sommerfe 	struct acpi_attach_args *aa = aux;
    224  1.107    jruoho 	ACPI_HANDLE tmp;
    225  1.107    jruoho 	ACPI_STATUS rv;
    226    1.1  sommerfe 
    227   1.77    jruoho 	aprint_naive(": ACPI Battery\n");
    228   1.77    jruoho 	aprint_normal(": ACPI Battery\n");
    229    1.1  sommerfe 
    230    1.1  sommerfe 	sc->sc_node = aa->aa_node;
    231   1.87    jruoho 
    232   1.78    jruoho 	sc->sc_present = 0;
    233  1.111    jruoho 	sc->sc_dvoltage = 0;
    234  1.111    jruoho 	sc->sc_dcapacity = 0;
    235   1.87    jruoho 	sc->sc_lcapacity = 0;
    236   1.87    jruoho 	sc->sc_wcapacity = 0;
    237   1.81    jruoho 
    238   1.80    jruoho 	sc->sc_sme = NULL;
    239    1.1  sommerfe 
    240   1.69  jmcneill 	mutex_init(&sc->sc_mutex, MUTEX_DEFAULT, IPL_NONE);
    241   1.69  jmcneill 	cv_init(&sc->sc_condvar, device_xname(self));
    242   1.69  jmcneill 
    243   1.81    jruoho 	sc->sc_sensor = kmem_zalloc(ACPIBAT_COUNT *
    244   1.81    jruoho 	    sizeof(*sc->sc_sensor), KM_SLEEP);
    245   1.81    jruoho 
    246  1.116  riastrad 	config_interrupts(self, acpibat_init_envsys);
    247  1.107    jruoho 
    248  1.107    jruoho 	/*
    249  1.107    jruoho 	 * If this is ever seen, the driver should be extended.
    250  1.107    jruoho 	 */
    251  1.107    jruoho 	rv = AcpiGetHandle(sc->sc_node->ad_handle, "_BIX", &tmp);
    252  1.107    jruoho 	if (ACPI_SUCCESS(rv))
    253  1.107    jruoho 		aprint_verbose_dev(self, "ACPI 4.0 functionality present\n");
    254    1.1  sommerfe }
    255    1.1  sommerfe 
    256   1.13  explorer /*
    257   1.80    jruoho  * acpibat_detach:
    258   1.80    jruoho  *
    259   1.80    jruoho  *	Autoconfiguration `detach' routine.
    260   1.80    jruoho  */
    261   1.80    jruoho static int
    262   1.80    jruoho acpibat_detach(device_t self, int flags)
    263   1.80    jruoho {
    264   1.80    jruoho 	struct acpibat_softc *sc = device_private(self);
    265   1.80    jruoho 
    266  1.121  riastrad 	/* Prevent further use of sc->sc_sme in acpibat_update_info.  */
    267  1.121  riastrad 	mutex_enter(&sc->sc_mutex);
    268  1.121  riastrad 	sc->sc_dying = true;
    269  1.121  riastrad 	mutex_exit(&sc->sc_mutex);
    270  1.121  riastrad 
    271  1.121  riastrad 	/* Prevent further calls to acpibat_resume.  */
    272  1.118  riastrad 	pmf_device_deregister(self);
    273  1.121  riastrad 
    274  1.121  riastrad 	/* Prevent further calls to acpibat_notify_handler.  */
    275  1.100    jruoho 	acpi_deregister_notify(sc->sc_node);
    276   1.80    jruoho 
    277  1.121  riastrad 	/* Detach sensors and prevent further calls to acpibat_refresh. */
    278   1.80    jruoho 	if (sc->sc_sme != NULL)
    279   1.80    jruoho 		sysmon_envsys_unregister(sc->sc_sme);
    280   1.80    jruoho 
    281  1.121  riastrad 	/*
    282  1.121  riastrad 	 * Wait for calls to acpibat_update_info/status in case sysmon
    283  1.121  riastrad 	 * envsys refreshed the sensors and queued them but they didn't
    284  1.121  riastrad 	 * run before sysmon_envsys_unregister.  After this point, no
    285  1.121  riastrad 	 * asynchronous access to the softc is possible.
    286  1.121  riastrad 	 */
    287  1.121  riastrad 	AcpiOsWaitEventsComplete();
    288  1.121  riastrad 
    289   1.81    jruoho 	if (sc->sc_sensor != NULL)
    290   1.81    jruoho 		kmem_free(sc->sc_sensor, ACPIBAT_COUNT *
    291   1.81    jruoho 		    sizeof(*sc->sc_sensor));
    292   1.81    jruoho 
    293  1.118  riastrad 	cv_destroy(&sc->sc_condvar);
    294  1.118  riastrad 	mutex_destroy(&sc->sc_mutex);
    295   1.80    jruoho 
    296   1.80    jruoho 	return 0;
    297   1.80    jruoho }
    298   1.80    jruoho 
    299   1.80    jruoho /*
    300   1.77    jruoho  * acpibat_get_sta:
    301   1.76    jruoho  *
    302   1.76    jruoho  *	Evaluate whether the battery is present or absent.
    303   1.76    jruoho  *
    304   1.76    jruoho  *	Returns: 0 for no battery, 1 for present, and -1 on error.
    305   1.13  explorer  */
    306   1.39     kochi static int
    307   1.77    jruoho acpibat_get_sta(device_t dv)
    308   1.13  explorer {
    309   1.59     joerg 	struct acpibat_softc *sc = device_private(dv);
    310   1.36   kanaoka 	ACPI_INTEGER val;
    311   1.13  explorer 	ACPI_STATUS rv;
    312   1.13  explorer 
    313   1.20     kochi 	rv = acpi_eval_integer(sc->sc_node->ad_handle, "_STA", &val);
    314   1.35   mycroft 	if (ACPI_FAILURE(rv)) {
    315  1.120  riastrad 		aprint_error_dev(dv, "failed to evaluate _STA: %s\n",
    316  1.120  riastrad 		    AcpiFormatException(rv));
    317   1.37     kochi 		return -1;
    318   1.13  explorer 	}
    319   1.13  explorer 
    320   1.76    jruoho 	sc->sc_sensor[ACPIBAT_PRESENT].state = ENVSYS_SVALID;
    321   1.76    jruoho 
    322   1.85    jruoho 	if ((val & ACPI_STA_BATTERY_PRESENT) == 0) {
    323   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_PRESENT].value_cur = 0;
    324   1.76    jruoho 		return 0;
    325   1.76    jruoho 	}
    326   1.46   xtraeme 
    327   1.76    jruoho 	sc->sc_sensor[ACPIBAT_PRESENT].value_cur = 1;
    328   1.76    jruoho 
    329   1.76    jruoho 	return 1;
    330   1.76    jruoho }
    331   1.76    jruoho 
    332   1.76    jruoho static ACPI_OBJECT *
    333  1.105    jruoho acpibat_get_object(ACPI_HANDLE hdl, const char *pth, uint32_t count)
    334   1.76    jruoho {
    335   1.76    jruoho 	ACPI_OBJECT *obj;
    336   1.76    jruoho 	ACPI_BUFFER buf;
    337   1.76    jruoho 	ACPI_STATUS rv;
    338   1.76    jruoho 
    339   1.76    jruoho 	rv = acpi_eval_struct(hdl, pth, &buf);
    340   1.76    jruoho 	if (ACPI_FAILURE(rv))
    341   1.76    jruoho 		return NULL;
    342   1.76    jruoho 
    343   1.76    jruoho 	obj = buf.Pointer;
    344   1.76    jruoho 	if (obj->Type != ACPI_TYPE_PACKAGE) {
    345   1.76    jruoho 		ACPI_FREE(buf.Pointer);
    346   1.76    jruoho 		return NULL;
    347   1.76    jruoho 	}
    348   1.76    jruoho 	if (obj->Package.Count != count) {
    349   1.76    jruoho 		ACPI_FREE(buf.Pointer);
    350   1.76    jruoho 		return NULL;
    351   1.76    jruoho 	}
    352   1.76    jruoho 
    353   1.76    jruoho 	return obj;
    354   1.13  explorer }
    355    1.1  sommerfe 
    356    1.1  sommerfe /*
    357   1.76    jruoho  * acpibat_get_info:
    358    1.1  sommerfe  *
    359   1.90    jruoho  * 	Get the battery info.
    360    1.1  sommerfe  */
    361   1.77    jruoho static void
    362   1.59     joerg acpibat_get_info(device_t dv)
    363    1.1  sommerfe {
    364   1.59     joerg 	struct acpibat_softc *sc = device_private(dv);
    365   1.76    jruoho 	ACPI_HANDLE hdl = sc->sc_node->ad_handle;
    366   1.76    jruoho 	ACPI_OBJECT *elm, *obj;
    367   1.76    jruoho 	ACPI_STATUS rv = AE_OK;
    368  1.105    jruoho 	int capunit, i, rateunit;
    369  1.105    jruoho 	uint64_t val;
    370   1.76    jruoho 
    371   1.76    jruoho 	obj = acpibat_get_object(hdl, "_BIF", ACPIBAT_BIF_COUNT);
    372   1.76    jruoho 	if (obj == NULL) {
    373   1.76    jruoho 		rv = AE_ERROR;
    374   1.76    jruoho 		goto out;
    375    1.1  sommerfe 	}
    376   1.32   mycroft 
    377   1.76    jruoho 	elm = obj->Package.Elements;
    378   1.76    jruoho 	for (i = ACPIBAT_BIF_UNIT; i < ACPIBAT_BIF_MODEL; i++) {
    379   1.76    jruoho 		if (elm[i].Type != ACPI_TYPE_INTEGER) {
    380   1.76    jruoho 			rv = AE_TYPE;
    381   1.76    jruoho 			goto out;
    382   1.76    jruoho 		}
    383  1.114   mlelstv 		if (elm[i].Integer.Value != ACPIBAT_VAL_UNKNOWN &&
    384  1.114   mlelstv 		    elm[i].Integer.Value >= INT_MAX) {
    385  1.113  riastrad 			rv = AE_LIMIT;
    386  1.113  riastrad 			goto out;
    387  1.113  riastrad 		}
    388    1.1  sommerfe 	}
    389   1.76    jruoho 
    390  1.114   mlelstv 	switch (elm[ACPIBAT_BIF_UNIT].Integer.Value) {
    391  1.114   mlelstv 	case ACPIBAT_PWRUNIT_MA:
    392   1.15  tshiozak 		capunit = ENVSYS_SAMPHOUR;
    393   1.15  tshiozak 		rateunit = ENVSYS_SAMPS;
    394  1.114   mlelstv 		break;
    395  1.114   mlelstv 	default:
    396   1.15  tshiozak 		capunit = ENVSYS_SWATTHOUR;
    397   1.15  tshiozak 		rateunit = ENVSYS_SWATTS;
    398  1.114   mlelstv 		break;
    399   1.15  tshiozak 	}
    400   1.32   mycroft 
    401   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_DCAPACITY].units = capunit;
    402   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_LFCCAPACITY].units = capunit;
    403   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_CHARGERATE].units = rateunit;
    404   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_DISCHARGERATE].units = rateunit;
    405   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_CAPACITY].units = capunit;
    406   1.62   xtraeme 
    407   1.76    jruoho 	/* Design capacity. */
    408   1.88    jruoho 	val = elm[ACPIBAT_BIF_DCAPACITY].Integer.Value;
    409   1.88    jruoho 	sc->sc_sensor[ACPIBAT_DCAPACITY].value_cur = val * 1000;
    410   1.76    jruoho 	sc->sc_sensor[ACPIBAT_DCAPACITY].state = ACPIBAT_VAL_ISVALID(val);
    411   1.76    jruoho 
    412   1.76    jruoho 	/* Last full charge capacity. */
    413   1.88    jruoho 	val = elm[ACPIBAT_BIF_LFCCAPACITY].Integer.Value;
    414   1.88    jruoho 	sc->sc_sensor[ACPIBAT_LFCCAPACITY].value_cur = val * 1000;
    415   1.76    jruoho 	sc->sc_sensor[ACPIBAT_LFCCAPACITY].state = ACPIBAT_VAL_ISVALID(val);
    416   1.76    jruoho 
    417   1.76    jruoho 	/* Design voltage. */
    418   1.88    jruoho 	val = elm[ACPIBAT_BIF_DVOLTAGE].Integer.Value;
    419   1.88    jruoho 	sc->sc_sensor[ACPIBAT_DVOLTAGE].value_cur = val * 1000;
    420   1.76    jruoho 	sc->sc_sensor[ACPIBAT_DVOLTAGE].state = ACPIBAT_VAL_ISVALID(val);
    421   1.76    jruoho 
    422   1.87    jruoho 	/* Design low and warning capacity. */
    423   1.87    jruoho 	sc->sc_lcapacity = elm[ACPIBAT_BIF_LCAPACITY].Integer.Value * 1000;
    424   1.87    jruoho 	sc->sc_wcapacity = elm[ACPIBAT_BIF_WCAPACITY].Integer.Value * 1000;
    425   1.76    jruoho 
    426   1.76    jruoho 	/*
    427   1.87    jruoho 	 * Initialize the maximum of current capacity
    428   1.87    jruoho 	 * to the last known full charge capacity.
    429   1.76    jruoho 	 */
    430   1.76    jruoho 	val = sc->sc_sensor[ACPIBAT_LFCCAPACITY].value_cur;
    431   1.76    jruoho 	sc->sc_sensor[ACPIBAT_CAPACITY].value_max = val;
    432   1.76    jruoho 
    433   1.90    jruoho 	acpibat_print_info(dv, elm);
    434   1.90    jruoho 
    435   1.76    jruoho out:
    436   1.76    jruoho 	if (obj != NULL)
    437   1.76    jruoho 		ACPI_FREE(obj);
    438   1.15  tshiozak 
    439   1.76    jruoho 	if (ACPI_FAILURE(rv))
    440   1.76    jruoho 		aprint_error_dev(dv, "failed to evaluate _BIF: %s\n",
    441   1.76    jruoho 		    AcpiFormatException(rv));
    442    1.1  sommerfe }
    443    1.1  sommerfe 
    444    1.1  sommerfe /*
    445   1.90    jruoho  * acpibat_print_info:
    446   1.90    jruoho  *
    447   1.90    jruoho  * 	Display the battery info.
    448   1.90    jruoho  */
    449   1.90    jruoho static void
    450   1.90    jruoho acpibat_print_info(device_t dv, ACPI_OBJECT *elm)
    451   1.90    jruoho {
    452  1.103    jruoho 	struct acpibat_softc *sc = device_private(dv);
    453  1.111    jruoho 	const char *tech, *unit;
    454  1.111    jruoho 	int32_t dcap, dvol;
    455   1.90    jruoho 	int i;
    456   1.90    jruoho 
    457   1.90    jruoho 	for (i = ACPIBAT_BIF_OEM; i > ACPIBAT_BIF_GRANULARITY2; i--) {
    458   1.90    jruoho 		if (elm[i].Type != ACPI_TYPE_STRING)
    459   1.90    jruoho 			return;
    460   1.90    jruoho 		if (elm[i].String.Pointer == NULL)
    461   1.90    jruoho 			return;
    462  1.103    jruoho 		if (elm[i].String.Pointer[0] == '\0')
    463  1.103    jruoho 			return;
    464  1.103    jruoho 	}
    465  1.103    jruoho 
    466  1.111    jruoho 	dcap = elm[ACPIBAT_BIF_DCAPACITY].Integer.Value;
    467  1.111    jruoho 	dvol = elm[ACPIBAT_BIF_DVOLTAGE].Integer.Value;
    468  1.103    jruoho 
    469  1.111    jruoho 	/*
    470  1.111    jruoho 	 * Try to detect whether the battery was switched.
    471  1.111    jruoho 	 */
    472  1.111    jruoho 	if (sc->sc_dcapacity == dcap && sc->sc_dvoltage == dvol)
    473  1.103    jruoho 		return;
    474  1.103    jruoho 	else {
    475  1.111    jruoho 		sc->sc_dcapacity = dcap;
    476  1.111    jruoho 		sc->sc_dvoltage = dvol;
    477   1.90    jruoho 	}
    478   1.90    jruoho 
    479   1.90    jruoho 	tech = (elm[ACPIBAT_BIF_TECHNOLOGY].Integer.Value != 0) ?
    480  1.101  christos 	    "rechargeable" : "non-rechargeable";
    481   1.90    jruoho 
    482  1.101  christos 	aprint_normal_dev(dv, "%s %s %s battery\n",
    483   1.90    jruoho 	    elm[ACPIBAT_BIF_OEM].String.Pointer,
    484  1.101  christos 	    elm[ACPIBAT_BIF_TYPE].String.Pointer, tech);
    485   1.90    jruoho 
    486  1.111    jruoho 	aprint_debug_dev(dv, "model number %s, serial number %s\n",
    487  1.111    jruoho 	    elm[ACPIBAT_BIF_MODEL].String.Pointer,
    488  1.111    jruoho 	    elm[ACPIBAT_BIF_SERIAL].String.Pointer);
    489   1.91    jruoho 
    490   1.91    jruoho #define SCALE(x) (((int)x) / 1000000), ((((int)x) % 1000000) / 1000)
    491   1.91    jruoho 
    492   1.91    jruoho 	/*
    493   1.91    jruoho 	 * These values are defined as follows (ACPI 4.0, p. 388):
    494   1.91    jruoho 	 *
    495   1.91    jruoho 	 * Granularity 1.	"Battery capacity granularity between low
    496   1.91    jruoho 	 *			 and warning in [mAh] or [mWh]. That is,
    497   1.91    jruoho 	 *			 this is the smallest increment in capacity
    498   1.91    jruoho 	 *			 that the battery is capable of measuring."
    499   1.91    jruoho 	 *
    500   1.91    jruoho 	 * Granularity 2.	"Battery capacity granularity between warning
    501   1.91    jruoho 	 *			 and full in [mAh] or [mWh]. [...]"
    502   1.91    jruoho 	 */
    503  1.114   mlelstv 	switch (elm[ACPIBAT_BIF_UNIT].Integer.Value) {
    504  1.114   mlelstv 	case ACPIBAT_PWRUNIT_MA:
    505  1.101  christos 		unit = "Ah";
    506  1.114   mlelstv 		break;
    507  1.114   mlelstv 	default:
    508  1.101  christos 		unit = "Wh";
    509  1.114   mlelstv 		break;
    510  1.114   mlelstv 	}
    511  1.103    jruoho 
    512  1.103    jruoho 	aprint_verbose_dev(dv, "granularity: "
    513  1.103    jruoho 	    "low->warn %d.%03d %s, warn->full %d.%03d %s\n",
    514   1.91    jruoho 	    SCALE(elm[ACPIBAT_BIF_GRANULARITY1].Integer.Value * 1000), unit,
    515   1.91    jruoho 	    SCALE(elm[ACPIBAT_BIF_GRANULARITY2].Integer.Value * 1000), unit);
    516   1.90    jruoho }
    517   1.90    jruoho 
    518   1.90    jruoho /*
    519    1.1  sommerfe  * acpibat_get_status:
    520    1.1  sommerfe  *
    521   1.90    jruoho  *	Get the current battery status.
    522    1.1  sommerfe  */
    523   1.77    jruoho static void
    524   1.59     joerg acpibat_get_status(device_t dv)
    525    1.1  sommerfe {
    526   1.59     joerg 	struct acpibat_softc *sc = device_private(dv);
    527   1.76    jruoho 	ACPI_HANDLE hdl = sc->sc_node->ad_handle;
    528   1.76    jruoho 	ACPI_OBJECT *elm, *obj;
    529   1.76    jruoho 	ACPI_STATUS rv = AE_OK;
    530  1.105    jruoho 	int i, rate, state;
    531  1.105    jruoho 	uint64_t val;
    532    1.1  sommerfe 
    533   1.76    jruoho 	obj = acpibat_get_object(hdl, "_BST", ACPIBAT_BST_COUNT);
    534   1.76    jruoho 	if (obj == NULL) {
    535   1.20     kochi 		rv = AE_ERROR;
    536   1.20     kochi 		goto out;
    537    1.1  sommerfe 	}
    538   1.76    jruoho 
    539   1.76    jruoho 	elm = obj->Package.Elements;
    540   1.76    jruoho 	for (i = ACPIBAT_BST_STATE; i < ACPIBAT_BST_COUNT; i++) {
    541   1.76    jruoho 		if (elm[i].Type != ACPI_TYPE_INTEGER) {
    542   1.76    jruoho 			rv = AE_TYPE;
    543   1.76    jruoho 			goto out;
    544   1.76    jruoho 		}
    545   1.10  jmcneill 	}
    546    1.1  sommerfe 
    547   1.76    jruoho 	state = elm[ACPIBAT_BST_STATE].Integer.Value;
    548   1.76    jruoho 	if ((state & ACPIBAT_ST_CHARGING) != 0) {
    549   1.79  drochner 		/* XXX rate can be invalid */
    550   1.79  drochner 		rate = elm[ACPIBAT_BST_RATE].Integer.Value;
    551   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGERATE].state = ENVSYS_SVALID;
    552   1.76    jruoho 		sc->sc_sensor[ACPIBAT_CHARGERATE].value_cur = rate * 1000;
    553   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_DISCHARGERATE].state = ENVSYS_SINVALID;
    554   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGING].state = ENVSYS_SVALID;
    555   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGING].value_cur = 1;
    556   1.76    jruoho 	} else if ((state & ACPIBAT_ST_DISCHARGING) != 0) {
    557   1.79  drochner 		rate = elm[ACPIBAT_BST_RATE].Integer.Value;
    558   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_DISCHARGERATE].state = ENVSYS_SVALID;
    559   1.76    jruoho 		sc->sc_sensor[ACPIBAT_DISCHARGERATE].value_cur = rate * 1000;
    560   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGERATE].state = ENVSYS_SINVALID;
    561   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGING].state = ENVSYS_SVALID;
    562   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGING].value_cur = 0;
    563   1.76    jruoho 	} else {
    564   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGING].state = ENVSYS_SVALID;
    565   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGING].value_cur = 0;
    566   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGERATE].state = ENVSYS_SINVALID;
    567   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_DISCHARGERATE].state = ENVSYS_SINVALID;
    568   1.46   xtraeme 	}
    569   1.46   xtraeme 
    570   1.76    jruoho 	/* Remaining capacity. */
    571   1.88    jruoho 	val = elm[ACPIBAT_BST_CAPACITY].Integer.Value;
    572   1.88    jruoho 	sc->sc_sensor[ACPIBAT_CAPACITY].value_cur = val * 1000;
    573   1.76    jruoho 	sc->sc_sensor[ACPIBAT_CAPACITY].state = ACPIBAT_VAL_ISVALID(val);
    574   1.76    jruoho 
    575   1.76    jruoho 	/* Battery voltage. */
    576   1.88    jruoho 	val = elm[ACPIBAT_BST_VOLTAGE].Integer.Value;
    577   1.88    jruoho 	sc->sc_sensor[ACPIBAT_VOLTAGE].value_cur = val * 1000;
    578   1.76    jruoho 	sc->sc_sensor[ACPIBAT_VOLTAGE].state = ACPIBAT_VAL_ISVALID(val);
    579   1.76    jruoho 
    580   1.78    jruoho 	sc->sc_sensor[ACPIBAT_CHARGE_STATE].state = ENVSYS_SVALID;
    581   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_CHARGE_STATE].value_cur =
    582   1.61   xtraeme 	    ENVSYS_BATTERY_CAPACITY_NORMAL;
    583   1.56   xtraeme 
    584   1.87    jruoho 	if (sc->sc_sensor[ACPIBAT_CAPACITY].value_cur < sc->sc_wcapacity) {
    585   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CAPACITY].state = ENVSYS_SWARNUNDER;
    586   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGE_STATE].value_cur =
    587   1.61   xtraeme 		    ENVSYS_BATTERY_CAPACITY_WARNING;
    588   1.55   xtraeme 	}
    589   1.46   xtraeme 
    590   1.87    jruoho 	if (sc->sc_sensor[ACPIBAT_CAPACITY].value_cur < sc->sc_lcapacity) {
    591   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CAPACITY].state = ENVSYS_SCRITUNDER;
    592   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGE_STATE].value_cur =
    593   1.61   xtraeme 		    ENVSYS_BATTERY_CAPACITY_LOW;
    594   1.55   xtraeme 	}
    595   1.46   xtraeme 
    596   1.76    jruoho 	if ((state & ACPIBAT_ST_CRITICAL) != 0) {
    597   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CAPACITY].state = ENVSYS_SCRITICAL;
    598   1.62   xtraeme 		sc->sc_sensor[ACPIBAT_CHARGE_STATE].value_cur =
    599   1.61   xtraeme 		    ENVSYS_BATTERY_CAPACITY_CRITICAL;
    600   1.55   xtraeme 	}
    601   1.46   xtraeme 
    602   1.76    jruoho out:
    603   1.76    jruoho 	if (obj != NULL)
    604   1.76    jruoho 		ACPI_FREE(obj);
    605   1.76    jruoho 
    606   1.76    jruoho 	if (ACPI_FAILURE(rv))
    607   1.76    jruoho 		aprint_error_dev(dv, "failed to evaluate _BST: %s\n",
    608   1.76    jruoho 		    AcpiFormatException(rv));
    609   1.15  tshiozak }
    610   1.15  tshiozak 
    611   1.15  tshiozak static void
    612   1.77    jruoho acpibat_update_info(void *arg)
    613   1.15  tshiozak {
    614   1.77    jruoho 	device_t dv = arg;
    615   1.59     joerg 	struct acpibat_softc *sc = device_private(dv);
    616   1.77    jruoho 	int i, rv;
    617   1.15  tshiozak 
    618   1.77    jruoho 	mutex_enter(&sc->sc_mutex);
    619   1.15  tshiozak 
    620  1.121  riastrad 	/* Don't touch sc_sme if we're detaching.  */
    621  1.121  riastrad 	if (sc->sc_dying)
    622  1.121  riastrad 		goto out;
    623  1.121  riastrad 
    624   1.77    jruoho 	rv = acpibat_get_sta(dv);
    625   1.98    jruoho 	if (rv > 0) {
    626   1.77    jruoho 		acpibat_get_info(dv);
    627   1.98    jruoho 
    628   1.98    jruoho 		/*
    629   1.98    jruoho 		 * If the status changed, update the limits.
    630   1.98    jruoho 		 */
    631   1.98    jruoho 		if (sc->sc_present == 0 &&
    632   1.98    jruoho 		    sc->sc_sensor[ACPIBAT_CAPACITY].value_max > 0)
    633   1.98    jruoho 			sysmon_envsys_update_limits(sc->sc_sme,
    634   1.98    jruoho 			    &sc->sc_sensor[ACPIBAT_CAPACITY]);
    635   1.98    jruoho 	} else {
    636   1.90    jruoho 		i = (rv < 0) ? 0 : ACPIBAT_DVOLTAGE;
    637   1.77    jruoho 		while (i < ACPIBAT_COUNT) {
    638   1.77    jruoho 			sc->sc_sensor[i].state = ENVSYS_SINVALID;
    639   1.77    jruoho 			i++;
    640   1.77    jruoho 		}
    641   1.52      cube 	}
    642   1.46   xtraeme 
    643   1.78    jruoho 	sc->sc_present = rv;
    644  1.121  riastrad out:
    645   1.77    jruoho 	mutex_exit(&sc->sc_mutex);
    646   1.15  tshiozak }
    647   1.15  tshiozak 
    648   1.15  tshiozak static void
    649   1.77    jruoho acpibat_update_status(void *arg)
    650   1.15  tshiozak {
    651   1.59     joerg 	device_t dv = arg;
    652   1.59     joerg 	struct acpibat_softc *sc = device_private(dv);
    653   1.77    jruoho 	int i, rv;
    654   1.15  tshiozak 
    655   1.77    jruoho 	mutex_enter(&sc->sc_mutex);
    656   1.15  tshiozak 
    657   1.77    jruoho 	rv = acpibat_get_sta(dv);
    658   1.78    jruoho 	if (rv > 0) {
    659   1.78    jruoho 		if (sc->sc_present == 0)
    660   1.78    jruoho 			acpibat_get_info(dv);
    661   1.77    jruoho 		acpibat_get_status(dv);
    662   1.78    jruoho 	} else {
    663   1.90    jruoho 		i = (rv < 0) ? 0 : ACPIBAT_DVOLTAGE;
    664   1.77    jruoho 		while (i < ACPIBAT_COUNT) {
    665   1.77    jruoho 			sc->sc_sensor[i].state = ENVSYS_SINVALID;
    666   1.77    jruoho 			i++;
    667   1.77    jruoho 		}
    668   1.77    jruoho 	}
    669   1.67  jmcneill 
    670   1.78    jruoho 	sc->sc_present = rv;
    671  1.108    jruoho 	microtime(&sc->sc_last);
    672   1.78    jruoho 
    673   1.69  jmcneill 	cv_broadcast(&sc->sc_condvar);
    674   1.69  jmcneill 	mutex_exit(&sc->sc_mutex);
    675   1.67  jmcneill }
    676   1.67  jmcneill 
    677    1.1  sommerfe /*
    678    1.1  sommerfe  * acpibat_notify_handler:
    679    1.1  sommerfe  *
    680    1.1  sommerfe  *	Callback from ACPI interrupt handler to notify us of an event.
    681    1.1  sommerfe  */
    682   1.39     kochi static void
    683   1.99    jruoho acpibat_notify_handler(ACPI_HANDLE handle, uint32_t notify, void *context)
    684    1.1  sommerfe {
    685   1.77    jruoho 	static const int handler = OSL_NOTIFY_HANDLER;
    686   1.59     joerg 	device_t dv = context;
    687    1.1  sommerfe 
    688   1.77    jruoho 	switch (notify) {
    689  1.102    jruoho 	case ACPI_NOTIFY_BUS_CHECK:
    690   1.11  explorer 		break;
    691  1.102    jruoho 	case ACPI_NOTIFY_BAT_INFO:
    692  1.102    jruoho 	case ACPI_NOTIFY_DEVICE_CHECK:
    693   1.77    jruoho 		(void)AcpiOsExecute(handler, acpibat_update_info, dv);
    694   1.13  explorer 		break;
    695  1.102    jruoho 	case ACPI_NOTIFY_BAT_STATUS:
    696   1.77    jruoho 		(void)AcpiOsExecute(handler, acpibat_update_status, dv);
    697    1.1  sommerfe 		break;
    698    1.1  sommerfe 	default:
    699   1.77    jruoho 		aprint_error_dev(dv, "unknown notify: 0x%02X\n", notify);
    700    1.1  sommerfe 	}
    701   1.14  explorer }
    702   1.14  explorer 
    703   1.39     kochi static void
    704   1.59     joerg acpibat_init_envsys(device_t dv)
    705   1.14  explorer {
    706   1.59     joerg 	struct acpibat_softc *sc = device_private(dv);
    707   1.77    jruoho 	int i;
    708   1.14  explorer 
    709   1.62   xtraeme #define INITDATA(index, unit, string)					\
    710   1.77    jruoho 	do {								\
    711   1.77    jruoho 		sc->sc_sensor[index].state = ENVSYS_SVALID;		\
    712   1.77    jruoho 		sc->sc_sensor[index].units = unit;			\
    713   1.77    jruoho 		(void)strlcpy(sc->sc_sensor[index].desc, string,	\
    714   1.77    jruoho 		    sizeof(sc->sc_sensor[index].desc));			\
    715   1.77    jruoho 	} while (/* CONSTCOND */ 0)
    716   1.32   mycroft 
    717   1.15  tshiozak 	INITDATA(ACPIBAT_PRESENT, ENVSYS_INDICATOR, "present");
    718   1.77    jruoho 	INITDATA(ACPIBAT_DCAPACITY, ENVSYS_SWATTHOUR, "design cap");
    719   1.77    jruoho 	INITDATA(ACPIBAT_LFCCAPACITY, ENVSYS_SWATTHOUR, "last full cap");
    720   1.14  explorer 	INITDATA(ACPIBAT_DVOLTAGE, ENVSYS_SVOLTS_DC, "design voltage");
    721   1.14  explorer 	INITDATA(ACPIBAT_VOLTAGE, ENVSYS_SVOLTS_DC, "voltage");
    722   1.77    jruoho 	INITDATA(ACPIBAT_CHARGERATE, ENVSYS_SWATTS, "charge rate");
    723   1.77    jruoho 	INITDATA(ACPIBAT_DISCHARGERATE, ENVSYS_SWATTS, "discharge rate");
    724   1.77    jruoho 	INITDATA(ACPIBAT_CAPACITY, ENVSYS_SWATTHOUR, "charge");
    725   1.61   xtraeme 	INITDATA(ACPIBAT_CHARGING, ENVSYS_BATTERY_CHARGE, "charging");
    726   1.61   xtraeme 	INITDATA(ACPIBAT_CHARGE_STATE, ENVSYS_BATTERY_CAPACITY, "charge state");
    727   1.32   mycroft 
    728   1.32   mycroft #undef INITDATA
    729   1.14  explorer 
    730  1.110  pgoyette 	sc->sc_sensor[ACPIBAT_CHARGE_STATE].value_cur =
    731  1.110  pgoyette 		ENVSYS_BATTERY_CAPACITY_NORMAL;
    732  1.110  pgoyette 
    733   1.94    jruoho 	sc->sc_sensor[ACPIBAT_CAPACITY].flags |=
    734   1.94    jruoho 	    ENVSYS_FPERCENT | ENVSYS_FVALID_MAX | ENVSYS_FMONLIMITS;
    735   1.94    jruoho 
    736   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_CHARGE_STATE].flags |= ENVSYS_FMONSTCHANGED;
    737   1.53   xtraeme 
    738   1.87    jruoho 	/* Disable userland monitoring on these sensors. */
    739   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_VOLTAGE].flags = ENVSYS_FMONNOTSUPP;
    740   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_CHARGERATE].flags = ENVSYS_FMONNOTSUPP;
    741   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_DISCHARGERATE].flags = ENVSYS_FMONNOTSUPP;
    742   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_DCAPACITY].flags = ENVSYS_FMONNOTSUPP;
    743   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_LFCCAPACITY].flags = ENVSYS_FMONNOTSUPP;
    744   1.62   xtraeme 	sc->sc_sensor[ACPIBAT_DVOLTAGE].flags = ENVSYS_FMONNOTSUPP;
    745   1.62   xtraeme 
    746  1.112    jruoho 	/* Attach rnd(9) to the (dis)charge rates. */
    747  1.112    jruoho 	sc->sc_sensor[ACPIBAT_CHARGERATE].flags |= ENVSYS_FHAS_ENTROPY;
    748  1.112    jruoho 	sc->sc_sensor[ACPIBAT_DISCHARGERATE].flags |= ENVSYS_FHAS_ENTROPY;
    749  1.112    jruoho 
    750   1.62   xtraeme 	sc->sc_sme = sysmon_envsys_create();
    751   1.77    jruoho 
    752   1.76    jruoho 	for (i = 0; i < ACPIBAT_COUNT; i++) {
    753   1.62   xtraeme 		if (sysmon_envsys_sensor_attach(sc->sc_sme,
    754   1.77    jruoho 			&sc->sc_sensor[i]))
    755   1.77    jruoho 			goto fail;
    756   1.62   xtraeme 	}
    757   1.62   xtraeme 
    758   1.62   xtraeme 	sc->sc_sme->sme_name = device_xname(dv);
    759   1.69  jmcneill 	sc->sc_sme->sme_cookie = dv;
    760   1.69  jmcneill 	sc->sc_sme->sme_refresh = acpibat_refresh;
    761   1.62   xtraeme 	sc->sc_sme->sme_class = SME_CLASS_BATTERY;
    762   1.95  pgoyette 	sc->sc_sme->sme_flags = SME_POLL_ONLY | SME_INIT_REFRESH;
    763   1.87    jruoho 	sc->sc_sme->sme_get_limits = acpibat_get_limits;
    764   1.14  explorer 
    765  1.118  riastrad 	(void)acpi_register_notify(sc->sc_node, acpibat_notify_handler);
    766   1.77    jruoho 	acpibat_update_info(dv);
    767   1.77    jruoho 	acpibat_update_status(dv);
    768   1.77    jruoho 
    769   1.77    jruoho 	if (sysmon_envsys_register(sc->sc_sme))
    770   1.77    jruoho 		goto fail;
    771   1.23   mycroft 
    772  1.118  riastrad 	(void)pmf_device_register(dv, NULL, acpibat_resume);
    773  1.118  riastrad 
    774   1.77    jruoho 	return;
    775   1.77    jruoho 
    776   1.77    jruoho fail:
    777   1.77    jruoho 	aprint_error_dev(dv, "failed to initialize sysmon\n");
    778   1.81    jruoho 
    779   1.77    jruoho 	sysmon_envsys_destroy(sc->sc_sme);
    780   1.81    jruoho 	kmem_free(sc->sc_sensor, ACPIBAT_COUNT * sizeof(*sc->sc_sensor));
    781   1.81    jruoho 
    782   1.80    jruoho 	sc->sc_sme = NULL;
    783   1.81    jruoho 	sc->sc_sensor = NULL;
    784   1.14  explorer }
    785   1.69  jmcneill 
    786   1.69  jmcneill static void
    787   1.69  jmcneill acpibat_refresh(struct sysmon_envsys *sme, envsys_data_t *edata)
    788   1.69  jmcneill {
    789  1.108    jruoho 	device_t self = sme->sme_cookie;
    790  1.108    jruoho 	struct acpibat_softc *sc;
    791  1.108    jruoho 	struct timeval tv, tmp;
    792   1.69  jmcneill 	ACPI_STATUS rv;
    793   1.69  jmcneill 
    794  1.108    jruoho 	sc = device_private(self);
    795  1.108    jruoho 
    796  1.108    jruoho 	tmp.tv_sec = 10;
    797  1.108    jruoho 	tmp.tv_usec = 0;
    798  1.108    jruoho 
    799  1.108    jruoho 	microtime(&tv);
    800  1.108    jruoho 	timersub(&tv, &tmp, &tv);
    801  1.108    jruoho 	if (timercmp(&tv, &sc->sc_last, <) != 0)
    802  1.108    jruoho 		return;
    803  1.108    jruoho 
    804   1.89    jruoho 	if (mutex_tryenter(&sc->sc_mutex) == 0)
    805   1.77    jruoho 		return;
    806   1.77    jruoho 
    807  1.108    jruoho 	rv = AcpiOsExecute(OSL_NOTIFY_HANDLER, acpibat_update_status, self);
    808   1.77    jruoho 	if (ACPI_SUCCESS(rv))
    809   1.77    jruoho 		cv_timedwait(&sc->sc_condvar, &sc->sc_mutex, hz);
    810   1.77    jruoho 
    811   1.77    jruoho 	mutex_exit(&sc->sc_mutex);
    812   1.77    jruoho }
    813   1.77    jruoho 
    814   1.77    jruoho static bool
    815   1.82    dyoung acpibat_resume(device_t dv, const pmf_qual_t *qual)
    816   1.77    jruoho {
    817   1.77    jruoho 
    818  1.106    jruoho 	(void)AcpiOsExecute(OSL_NOTIFY_HANDLER, acpibat_update_info, dv);
    819  1.106    jruoho 	(void)AcpiOsExecute(OSL_NOTIFY_HANDLER, acpibat_update_status, dv);
    820   1.74  jmcneill 
    821   1.77    jruoho 	return true;
    822   1.69  jmcneill }
    823   1.83    jruoho 
    824   1.87    jruoho static void
    825   1.87    jruoho acpibat_get_limits(struct sysmon_envsys *sme, envsys_data_t *edata,
    826   1.87    jruoho     sysmon_envsys_lim_t *limits, uint32_t *props)
    827   1.87    jruoho {
    828   1.87    jruoho 	device_t dv = sme->sme_cookie;
    829   1.87    jruoho 	struct acpibat_softc *sc = device_private(dv);
    830   1.87    jruoho 
    831   1.87    jruoho 	if (edata->sensor != ACPIBAT_CAPACITY)
    832   1.87    jruoho 		return;
    833   1.87    jruoho 
    834   1.87    jruoho 	limits->sel_critmin = sc->sc_lcapacity;
    835   1.87    jruoho 	limits->sel_warnmin = sc->sc_wcapacity;
    836   1.87    jruoho 
    837   1.87    jruoho 	*props |= PROP_BATTCAP | PROP_BATTWARN | PROP_DRIVER_LIMITS;
    838   1.87    jruoho }
    839   1.87    jruoho 
    840  1.115  pgoyette MODULE(MODULE_CLASS_DRIVER, acpibat, "sysmon_envsys");
    841   1.83    jruoho 
    842  1.109    jruoho #ifdef _MODULE
    843   1.92     pooka #include "ioconf.c"
    844  1.109    jruoho #endif
    845   1.83    jruoho 
    846   1.83    jruoho static int
    847  1.109    jruoho acpibat_modcmd(modcmd_t cmd, void *aux)
    848   1.83    jruoho {
    849  1.109    jruoho 	int rv = 0;
    850   1.83    jruoho 
    851   1.83    jruoho 	switch (cmd) {
    852   1.83    jruoho 	case MODULE_CMD_INIT:
    853  1.109    jruoho #ifdef _MODULE
    854  1.109    jruoho 		rv = config_init_component(cfdriver_ioconf_acpibat,
    855   1.97     pooka 		    cfattach_ioconf_acpibat, cfdata_ioconf_acpibat);
    856  1.109    jruoho #endif
    857  1.109    jruoho 		break;
    858   1.83    jruoho 	case MODULE_CMD_FINI:
    859  1.109    jruoho #ifdef _MODULE
    860  1.109    jruoho 		rv = config_fini_component(cfdriver_ioconf_acpibat,
    861   1.97     pooka 		    cfattach_ioconf_acpibat, cfdata_ioconf_acpibat);
    862  1.109    jruoho #endif
    863  1.109    jruoho 		break;
    864   1.83    jruoho 	default:
    865  1.109    jruoho 		rv = ENOTTY;
    866   1.83    jruoho 	}
    867  1.109    jruoho 
    868  1.109    jruoho 	return rv;
    869   1.83    jruoho }
    870