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lm75.c revision 1.30.2.1
      1  1.30.2.1  pgoyette /*	$NetBSD: lm75.c,v 1.30.2.1 2018/06/25 07:25:50 pgoyette Exp $	*/
      2       1.1   thorpej 
      3       1.1   thorpej /*
      4       1.1   thorpej  * Copyright (c) 2003 Wasabi Systems, Inc.
      5       1.1   thorpej  * All rights reserved.
      6       1.1   thorpej  *
      7       1.1   thorpej  * Written by Jason R. Thorpe for Wasabi Systems, Inc.
      8       1.1   thorpej  *
      9       1.1   thorpej  * Redistribution and use in source and binary forms, with or without
     10       1.1   thorpej  * modification, are permitted provided that the following conditions
     11       1.1   thorpej  * are met:
     12       1.1   thorpej  * 1. Redistributions of source code must retain the above copyright
     13       1.1   thorpej  *    notice, this list of conditions and the following disclaimer.
     14       1.1   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     15       1.1   thorpej  *    notice, this list of conditions and the following disclaimer in the
     16       1.1   thorpej  *    documentation and/or other materials provided with the distribution.
     17       1.1   thorpej  * 3. All advertising materials mentioning features or use of this software
     18       1.1   thorpej  *    must display the following acknowledgement:
     19       1.1   thorpej  *      This product includes software developed for the NetBSD Project by
     20       1.1   thorpej  *      Wasabi Systems, Inc.
     21       1.1   thorpej  * 4. The name of Wasabi Systems, Inc. may not be used to endorse
     22       1.1   thorpej  *    or promote products derived from this software without specific prior
     23       1.1   thorpej  *    written permission.
     24       1.1   thorpej  *
     25       1.1   thorpej  * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
     26       1.1   thorpej  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     27       1.1   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     28       1.1   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL WASABI SYSTEMS, INC
     29       1.1   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     30       1.1   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     31       1.1   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     32       1.1   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     33       1.1   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     34       1.1   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     35       1.1   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     36       1.1   thorpej  */
     37       1.1   thorpej 
     38      1.17     lukem #include <sys/cdefs.h>
     39  1.30.2.1  pgoyette __KERNEL_RCSID(0, "$NetBSD: lm75.c,v 1.30.2.1 2018/06/25 07:25:50 pgoyette Exp $");
     40      1.17     lukem 
     41       1.1   thorpej #include <sys/param.h>
     42       1.1   thorpej #include <sys/systm.h>
     43       1.1   thorpej #include <sys/device.h>
     44       1.1   thorpej #include <sys/kernel.h>
     45      1.23  macallan #include <sys/sysctl.h>
     46       1.1   thorpej 
     47       1.1   thorpej #include <dev/sysmon/sysmonvar.h>
     48       1.1   thorpej 
     49       1.1   thorpej #include <dev/i2c/i2cvar.h>
     50       1.1   thorpej #include <dev/i2c/lm75reg.h>
     51       1.1   thorpej 
     52      1.30  macallan #ifdef macppc
     53      1.30  macallan #define HAVE_OF 1
     54      1.30  macallan #endif
     55      1.30  macallan 
     56      1.30  macallan #ifdef HAVE_OF
     57      1.30  macallan #include <dev/ofw/openfirm.h>
     58      1.30  macallan #endif
     59      1.30  macallan 
     60       1.1   thorpej struct lmtemp_softc {
     61      1.23  macallan 	device_t sc_dev;
     62       1.1   thorpej 	i2c_tag_t sc_tag;
     63       1.1   thorpej 	int sc_address;
     64       1.1   thorpej 
     65      1.18   xtraeme 	struct sysmon_envsys *sc_sme;
     66      1.16   xtraeme 	envsys_data_t sc_sensor;
     67      1.23  macallan 	int sc_tmax;
     68      1.28       jdc 	uint32_t sc_smax, sc_smin, sc_scrit;
     69       1.9  kiyohara 
     70      1.27       jdc 	uint32_t (*sc_lmtemp_decode)(const uint8_t *, int);
     71      1.28       jdc 	void (*sc_lmtemp_encode)(const uint32_t, uint8_t *, int);
     72       1.1   thorpej };
     73       1.1   thorpej 
     74      1.18   xtraeme static int  lmtemp_match(device_t, cfdata_t, void *);
     75      1.18   xtraeme static void lmtemp_attach(device_t, device_t, void *);
     76       1.1   thorpej 
     77      1.18   xtraeme CFATTACH_DECL_NEW(lmtemp, sizeof(struct lmtemp_softc),
     78       1.1   thorpej 	lmtemp_match, lmtemp_attach, NULL, NULL);
     79       1.1   thorpej 
     80      1.16   xtraeme static void	lmtemp_refresh(struct sysmon_envsys *, envsys_data_t *);
     81      1.18   xtraeme static int	lmtemp_config_write(struct lmtemp_softc *, uint8_t);
     82      1.28       jdc static int	lmtemp_temp_write(struct lmtemp_softc *, uint8_t, uint32_t,
     83      1.28       jdc 				int);
     84      1.27       jdc static int	lmtemp_temp_read(struct lmtemp_softc *, uint8_t, uint32_t *,
     85      1.27       jdc 				int);
     86      1.27       jdc static uint32_t lmtemp_decode_lm75(const uint8_t *, int);
     87      1.27       jdc static uint32_t lmtemp_decode_ds75(const uint8_t *, int);
     88      1.27       jdc static uint32_t lmtemp_decode_lm77(const uint8_t *, int);
     89      1.28       jdc static void	lmtemp_encode_lm75(const uint32_t, uint8_t *, int);
     90      1.28       jdc static void	lmtemp_encode_ds75(const uint32_t, uint8_t *, int);
     91      1.28       jdc static void	lmtemp_encode_lm77(const uint32_t, uint8_t *, int);
     92      1.28       jdc static void	lmtemp_getlim_lm75(struct sysmon_envsys *, envsys_data_t *,
     93      1.28       jdc 				sysmon_envsys_lim_t *, uint32_t *);
     94      1.28       jdc static void	lmtemp_getlim_lm77(struct sysmon_envsys *, envsys_data_t *,
     95      1.28       jdc 				sysmon_envsys_lim_t *, uint32_t *);
     96      1.28       jdc static void	lmtemp_setlim_lm75(struct sysmon_envsys *, envsys_data_t *,
     97      1.28       jdc 				sysmon_envsys_lim_t *, uint32_t *);
     98      1.28       jdc static void	lmtemp_setlim_lm77(struct sysmon_envsys *, envsys_data_t *,
     99      1.28       jdc 				sysmon_envsys_lim_t *, uint32_t *);
    100       1.9  kiyohara 
    101      1.23  macallan static void	lmtemp_setup_sysctl(struct lmtemp_softc *);
    102      1.23  macallan static int	sysctl_lm75_temp(SYSCTLFN_ARGS);
    103      1.21    martin 
    104      1.21    martin static const char * lmtemp_compats[] = {
    105      1.21    martin 	"i2c-lm75",
    106      1.30  macallan 	"ds1775",
    107      1.21    martin 	/*
    108      1.21    martin 	 * see XXX in _attach() below: add code once non-lm75 matches are
    109      1.21    martin 	 * added here!
    110      1.21    martin 	 */
    111      1.21    martin 	NULL
    112      1.21    martin };
    113      1.21    martin 
    114  1.30.2.1  pgoyette static const struct device_compatible_entry lmtemp_compat_data[] = {
    115  1.30.2.1  pgoyette 	DEVICE_COMPAT_ENTRY(lmtemp_compats),
    116  1.30.2.1  pgoyette 	DEVICE_COMPAT_TERMINATOR
    117  1.30.2.1  pgoyette };
    118  1.30.2.1  pgoyette 
    119       1.9  kiyohara enum {
    120       1.9  kiyohara 	lmtemp_lm75 = 0,
    121       1.9  kiyohara 	lmtemp_ds75,
    122       1.9  kiyohara 	lmtemp_lm77,
    123       1.9  kiyohara };
    124       1.9  kiyohara static const struct {
    125       1.9  kiyohara 	int lmtemp_type;
    126       1.9  kiyohara 	const char *lmtemp_name;
    127       1.9  kiyohara 	int lmtemp_addrmask;
    128       1.9  kiyohara 	int lmtemp_addr;
    129      1.27       jdc 	uint32_t (*lmtemp_decode)(const uint8_t *, int);
    130      1.28       jdc 	void (*lmtemp_encode)(const uint32_t, uint8_t *, int);
    131      1.28       jdc 	void (*lmtemp_getlim)(struct sysmon_envsys *, envsys_data_t *,
    132      1.28       jdc 		sysmon_envsys_lim_t *, uint32_t *);
    133      1.28       jdc 	void (*lmtemp_setlim)(struct sysmon_envsys *, envsys_data_t *,
    134      1.28       jdc 		sysmon_envsys_lim_t *, uint32_t *);
    135       1.9  kiyohara } lmtemptbl[] = {
    136      1.28       jdc 	{ lmtemp_lm75,	"LM75",	LM75_ADDRMASK,	LM75_ADDR,
    137      1.28       jdc 	    lmtemp_decode_lm75,	lmtemp_encode_lm75,
    138      1.28       jdc 	    lmtemp_getlim_lm75,	lmtemp_setlim_lm75 },
    139      1.28       jdc 	{ lmtemp_ds75,	"DS75",	LM75_ADDRMASK,	LM75_ADDR,
    140      1.28       jdc 	    lmtemp_decode_ds75,	lmtemp_encode_ds75,
    141      1.28       jdc 	    lmtemp_getlim_lm75,	lmtemp_setlim_lm75 },
    142      1.28       jdc 	{ lmtemp_lm77,	"LM77",	LM77_ADDRMASK,	LM77_ADDR,
    143      1.28       jdc 	    lmtemp_decode_lm77, lmtemp_encode_lm77,
    144      1.28       jdc 	    lmtemp_getlim_lm77,	lmtemp_setlim_lm77 },
    145      1.28       jdc 	{ -1,		NULL,	 0,		0,
    146      1.28       jdc 	    NULL,		NULL,
    147      1.28       jdc 	    NULL,		NULL }
    148       1.9  kiyohara };
    149       1.1   thorpej 
    150       1.1   thorpej static int
    151      1.18   xtraeme lmtemp_match(device_t parent, cfdata_t cf, void *aux)
    152       1.1   thorpej {
    153       1.1   thorpej 	struct i2c_attach_args *ia = aux;
    154  1.30.2.1  pgoyette 	int i, match_result;
    155      1.21    martin 
    156  1.30.2.1  pgoyette 	if (iic_use_direct_match(ia, cf, lmtemp_compat_data, &match_result))
    157  1.30.2.1  pgoyette 		return match_result;
    158      1.21    martin 
    159  1.30.2.1  pgoyette 	/*
    160  1.30.2.1  pgoyette 	 * Indirect config - not much we can do!
    161  1.30.2.1  pgoyette 	 */
    162  1.30.2.1  pgoyette 	for (i = 0; lmtemptbl[i].lmtemp_type != -1 ; i++)
    163  1.30.2.1  pgoyette 		if (lmtemptbl[i].lmtemp_type == cf->cf_flags)
    164  1.30.2.1  pgoyette 			break;
    165  1.30.2.1  pgoyette 	if (lmtemptbl[i].lmtemp_type == -1)
    166  1.30.2.1  pgoyette 		return 0;
    167  1.30.2.1  pgoyette 
    168  1.30.2.1  pgoyette 	if ((ia->ia_addr & lmtemptbl[i].lmtemp_addrmask) ==
    169  1.30.2.1  pgoyette 	    lmtemptbl[i].lmtemp_addr)
    170  1.30.2.1  pgoyette 		return I2C_MATCH_ADDRESS_ONLY;
    171       1.1   thorpej 
    172      1.18   xtraeme 	return 0;
    173       1.1   thorpej }
    174       1.1   thorpej 
    175       1.1   thorpej static void
    176      1.18   xtraeme lmtemp_attach(device_t parent, device_t self, void *aux)
    177       1.1   thorpej {
    178       1.6   thorpej 	struct lmtemp_softc *sc = device_private(self);
    179       1.1   thorpej 	struct i2c_attach_args *ia = aux;
    180      1.30  macallan 	char name[64];
    181       1.9  kiyohara 	int i;
    182       1.9  kiyohara 
    183      1.23  macallan 	sc->sc_dev = self;
    184      1.21    martin 	if (ia->ia_name == NULL) {
    185      1.21    martin 		for (i = 0; lmtemptbl[i].lmtemp_type != -1 ; i++)
    186      1.21    martin 			if (lmtemptbl[i].lmtemp_type ==
    187      1.21    martin 			    device_cfdata(self)->cf_flags)
    188      1.21    martin 				break;
    189      1.21    martin 	} else {
    190      1.30  macallan 		if (strcmp(ia->ia_name, "ds1775") == 0) {
    191      1.30  macallan 			i = 1;	/* LMTYPE_DS75 */
    192      1.30  macallan 		} else {
    193      1.30  macallan 			/* XXX - add code when adding other direct matches! */
    194      1.30  macallan 			i = 0;
    195      1.30  macallan 		}
    196      1.21    martin 	}
    197       1.1   thorpej 
    198       1.1   thorpej 	sc->sc_tag = ia->ia_tag;
    199       1.1   thorpej 	sc->sc_address = ia->ia_addr;
    200       1.1   thorpej 
    201       1.1   thorpej 	aprint_naive(": Temperature Sensor\n");
    202      1.21    martin 	if (ia->ia_name) {
    203      1.21    martin 		aprint_normal(": %s %s Temperature Sensor\n", ia->ia_name,
    204      1.21    martin 			lmtemptbl[i].lmtemp_name);
    205      1.21    martin 	} else {
    206      1.21    martin 		aprint_normal(": %s Temperature Sensor\n",
    207      1.21    martin 			lmtemptbl[i].lmtemp_name);
    208      1.21    martin 	}
    209       1.1   thorpej 
    210      1.27       jdc 	sc->sc_lmtemp_decode = lmtemptbl[i].lmtemp_decode;
    211      1.28       jdc 	sc->sc_lmtemp_encode = lmtemptbl[i].lmtemp_encode;
    212      1.27       jdc 
    213      1.27       jdc 	iic_acquire_bus(sc->sc_tag, I2C_F_POLL);
    214      1.27       jdc 
    215      1.28       jdc 	/* Read temperature limit(s) and remember initial value(s). */
    216      1.28       jdc 	if (i == lmtemp_lm77) {
    217      1.29       jdc 		if (lmtemp_temp_read(sc, LM77_REG_TCRIT_SET_POINT,
    218      1.29       jdc 		    &sc->sc_scrit, 1) != 0) {
    219      1.29       jdc 			aprint_error_dev(self,
    220      1.29       jdc 			    "unable to read low register\n");
    221      1.29       jdc 			iic_release_bus(sc->sc_tag, I2C_F_POLL);
    222      1.29       jdc 			return;
    223      1.29       jdc 		}
    224      1.28       jdc 		if (lmtemp_temp_read(sc, LM77_REG_TLOW_SET_POINT,
    225      1.29       jdc 		    &sc->sc_smin, 1) != 0) {
    226      1.28       jdc 			aprint_error_dev(self,
    227      1.28       jdc 			    "unable to read low register\n");
    228      1.28       jdc 			iic_release_bus(sc->sc_tag, I2C_F_POLL);
    229      1.28       jdc 			return;
    230      1.28       jdc 		}
    231      1.28       jdc 		if (lmtemp_temp_read(sc, LM77_REG_THIGH_SET_POINT,
    232      1.28       jdc 		    &sc->sc_smax, 1) != 0) {
    233      1.28       jdc 			aprint_error_dev(self,
    234      1.28       jdc 			    "unable to read high register\n");
    235      1.28       jdc 			iic_release_bus(sc->sc_tag, I2C_F_POLL);
    236      1.28       jdc 			return;
    237      1.28       jdc 		}
    238      1.29       jdc 	} else {	/* LM75 or compatible */
    239      1.29       jdc 		if (lmtemp_temp_read(sc, LM75_REG_TOS_SET_POINT,
    240      1.29       jdc 		    &sc->sc_smax, 1) != 0) {
    241      1.29       jdc 			aprint_error_dev(self, "unable to read Tos register\n");
    242      1.29       jdc 			iic_release_bus(sc->sc_tag, I2C_F_POLL);
    243      1.29       jdc 			return;
    244      1.29       jdc 		}
    245      1.28       jdc 	}
    246      1.29       jdc 	sc->sc_tmax = sc->sc_smax;
    247      1.27       jdc 
    248      1.23  macallan 	if (i == lmtemp_lm75)
    249      1.23  macallan 		lmtemp_setup_sysctl(sc);
    250      1.23  macallan 
    251       1.1   thorpej 	/* Set the configuration of the LM75 to defaults. */
    252      1.23  macallan 	if (lmtemp_config_write(sc, LM75_CONFIG_FAULT_QUEUE_4) != 0) {
    253      1.18   xtraeme 		aprint_error_dev(self, "unable to write config register\n");
    254       1.1   thorpej 		iic_release_bus(sc->sc_tag, I2C_F_POLL);
    255       1.1   thorpej 		return;
    256       1.1   thorpej 	}
    257       1.1   thorpej 	iic_release_bus(sc->sc_tag, I2C_F_POLL);
    258       1.1   thorpej 
    259      1.16   xtraeme 	sc->sc_sme = sysmon_envsys_create();
    260       1.1   thorpej 	/* Initialize sensor data. */
    261      1.16   xtraeme 	sc->sc_sensor.units =  ENVSYS_STEMP;
    262      1.22  pgoyette 	sc->sc_sensor.state =  ENVSYS_SINVALID;
    263      1.28       jdc 	sc->sc_sensor.flags =  ENVSYS_FMONLIMITS;
    264      1.30  macallan 
    265      1.30  macallan 	(void)strlcpy(name,
    266      1.21    martin 	    ia->ia_name? ia->ia_name : device_xname(self),
    267      1.18   xtraeme 	    sizeof(sc->sc_sensor.desc));
    268      1.30  macallan #ifdef HAVE_OF
    269      1.30  macallan 	int ch;
    270      1.30  macallan 	ch = OF_child(ia->ia_cookie);
    271      1.30  macallan 	if (ch != 0) {
    272      1.30  macallan 		OF_getprop(ch, "location", name, 64);
    273      1.30  macallan 	}
    274      1.30  macallan #endif
    275      1.30  macallan 	(void)strlcpy(sc->sc_sensor.desc, name,
    276      1.30  macallan 	    sizeof(sc->sc_sensor.desc));
    277      1.16   xtraeme 	if (sysmon_envsys_sensor_attach(sc->sc_sme, &sc->sc_sensor)) {
    278      1.16   xtraeme 		sysmon_envsys_destroy(sc->sc_sme);
    279      1.16   xtraeme 		return;
    280      1.16   xtraeme 	}
    281       1.1   thorpej 
    282       1.7       riz 	/* Hook into system monitor. */
    283      1.18   xtraeme 	sc->sc_sme->sme_name = device_xname(self);
    284      1.16   xtraeme 	sc->sc_sme->sme_cookie = sc;
    285      1.16   xtraeme 	sc->sc_sme->sme_refresh = lmtemp_refresh;
    286      1.28       jdc 	sc->sc_sme->sme_get_limits = lmtemptbl[i].lmtemp_getlim;
    287      1.28       jdc 	sc->sc_sme->sme_set_limits = lmtemptbl[i].lmtemp_setlim;
    288       1.1   thorpej 
    289      1.16   xtraeme 	if (sysmon_envsys_register(sc->sc_sme)) {
    290      1.18   xtraeme 		aprint_error_dev(self, "unable to register with sysmon\n");
    291      1.16   xtraeme 		sysmon_envsys_destroy(sc->sc_sme);
    292      1.16   xtraeme 	}
    293       1.1   thorpej }
    294       1.1   thorpej 
    295       1.1   thorpej static int
    296       1.1   thorpej lmtemp_config_write(struct lmtemp_softc *sc, uint8_t val)
    297       1.1   thorpej {
    298       1.1   thorpej 	uint8_t cmdbuf[2];
    299       1.1   thorpej 
    300       1.1   thorpej 	cmdbuf[0] = LM75_REG_CONFIG;
    301       1.1   thorpej 	cmdbuf[1] = val;
    302       1.1   thorpej 
    303      1.18   xtraeme 	return iic_exec(sc->sc_tag, I2C_OP_WRITE_WITH_STOP,
    304      1.18   xtraeme 	    sc->sc_address, cmdbuf, 1, &cmdbuf[1], 1, I2C_F_POLL);
    305       1.1   thorpej }
    306       1.1   thorpej 
    307       1.1   thorpej static int
    308      1.28       jdc lmtemp_temp_write(struct lmtemp_softc *sc, uint8_t reg, uint32_t val, int degc)
    309      1.23  macallan {
    310      1.23  macallan 	uint8_t cmdbuf[3];
    311      1.23  macallan 
    312      1.23  macallan 	cmdbuf[0] = reg;
    313      1.28       jdc 	sc->sc_lmtemp_encode(val, &cmdbuf[1], degc);
    314      1.23  macallan 
    315      1.23  macallan 	return iic_exec(sc->sc_tag, I2C_OP_WRITE_WITH_STOP,
    316      1.23  macallan 	    sc->sc_address, cmdbuf, 1, &cmdbuf[1], 2, I2C_F_POLL);
    317      1.23  macallan }
    318      1.23  macallan 
    319      1.23  macallan static int
    320      1.27       jdc lmtemp_temp_read(struct lmtemp_softc *sc, uint8_t which, uint32_t *valp,
    321      1.27       jdc     int degc)
    322       1.1   thorpej {
    323       1.2       scw 	int error;
    324       1.1   thorpej 	uint8_t cmdbuf[1];
    325       1.1   thorpej 	uint8_t buf[LM75_TEMP_LEN];
    326       1.1   thorpej 
    327       1.1   thorpej 	cmdbuf[0] = which;
    328       1.1   thorpej 
    329       1.1   thorpej 	error = iic_exec(sc->sc_tag, I2C_OP_READ_WITH_STOP,
    330       1.1   thorpej 	    sc->sc_address, cmdbuf, 1, buf, LM75_TEMP_LEN, 0);
    331       1.1   thorpej 	if (error)
    332      1.18   xtraeme 		return error;
    333       1.1   thorpej 
    334      1.27       jdc 	*valp = sc->sc_lmtemp_decode(buf, degc);
    335      1.18   xtraeme 	return 0;
    336       1.1   thorpej }
    337       1.1   thorpej 
    338       1.1   thorpej static void
    339       1.1   thorpej lmtemp_refresh_sensor_data(struct lmtemp_softc *sc)
    340       1.1   thorpej {
    341       1.1   thorpej 	uint32_t val;
    342       1.1   thorpej 	int error;
    343       1.1   thorpej 
    344      1.27       jdc 	error = lmtemp_temp_read(sc, LM75_REG_TEMP, &val, 0);
    345       1.1   thorpej 	if (error) {
    346       1.1   thorpej #if 0
    347      1.25       chs 		aprint_error_dev(sc->sc_dev, "unable to read temperature, error = %d\n",
    348      1.19    cegger 		    error);
    349       1.1   thorpej #endif
    350      1.16   xtraeme 		sc->sc_sensor.state = ENVSYS_SINVALID;
    351       1.1   thorpej 		return;
    352       1.1   thorpej 	}
    353       1.1   thorpej 
    354      1.16   xtraeme 	sc->sc_sensor.value_cur = val;
    355      1.16   xtraeme 	sc->sc_sensor.state = ENVSYS_SVALID;
    356       1.1   thorpej }
    357       1.1   thorpej 
    358      1.16   xtraeme static void
    359      1.16   xtraeme lmtemp_refresh(struct sysmon_envsys *sme, envsys_data_t *edata)
    360       1.1   thorpej {
    361       1.1   thorpej 	struct lmtemp_softc *sc = sme->sme_cookie;
    362       1.1   thorpej 
    363       1.1   thorpej 	iic_acquire_bus(sc->sc_tag, 0);	/* also locks our instance */
    364       1.1   thorpej 	lmtemp_refresh_sensor_data(sc);
    365       1.1   thorpej 	iic_release_bus(sc->sc_tag, 0);	/* also unlocks our instance */
    366       1.1   thorpej }
    367       1.2       scw 
    368      1.28       jdc static void
    369      1.28       jdc lmtemp_getlim_lm75(struct sysmon_envsys *sme, envsys_data_t *edata,
    370      1.28       jdc     sysmon_envsys_lim_t *limits, uint32_t *props)
    371      1.28       jdc {
    372      1.28       jdc 	struct lmtemp_softc *sc = sme->sme_cookie;
    373      1.28       jdc 	uint32_t val;
    374      1.28       jdc 
    375      1.28       jdc 	*props &= ~(PROP_CRITMAX);
    376      1.28       jdc 
    377      1.29       jdc 	iic_acquire_bus(sc->sc_tag, 0);
    378      1.28       jdc 	if (lmtemp_temp_read(sc, LM75_REG_TOS_SET_POINT, &val, 0) == 0) {
    379      1.28       jdc 		limits->sel_critmax = val;
    380      1.28       jdc 		*props |= PROP_CRITMAX;
    381      1.28       jdc 	}
    382      1.29       jdc 	iic_release_bus(sc->sc_tag, 0);
    383      1.28       jdc }
    384      1.28       jdc 
    385      1.28       jdc static void
    386      1.28       jdc lmtemp_getlim_lm77(struct sysmon_envsys *sme, envsys_data_t *edata,
    387      1.28       jdc     sysmon_envsys_lim_t *limits, uint32_t *props)
    388      1.28       jdc {
    389      1.28       jdc 	struct lmtemp_softc *sc = sme->sme_cookie;
    390      1.28       jdc 	uint32_t val;
    391      1.28       jdc 
    392      1.28       jdc 	*props &= ~(PROP_CRITMAX | PROP_WARNMAX | PROP_WARNMIN);
    393      1.28       jdc 
    394      1.29       jdc 	iic_acquire_bus(sc->sc_tag, 0);
    395      1.28       jdc 	if (lmtemp_temp_read(sc, LM77_REG_TCRIT_SET_POINT, &val, 0) == 0) {
    396      1.28       jdc 		limits->sel_critmax = val;
    397      1.28       jdc 		*props |= PROP_CRITMAX;
    398      1.28       jdc 	}
    399      1.28       jdc 	if (lmtemp_temp_read(sc, LM77_REG_THIGH_SET_POINT, &val, 0) == 0) {
    400      1.28       jdc 		limits->sel_warnmax = val;
    401      1.28       jdc 		*props |= PROP_WARNMAX;
    402      1.28       jdc 	}
    403      1.28       jdc 	if (lmtemp_temp_read(sc, LM77_REG_TLOW_SET_POINT, &val, 0) == 0) {
    404      1.28       jdc 		limits->sel_warnmin = val;
    405      1.28       jdc 		*props |= PROP_WARNMIN;
    406      1.28       jdc 	}
    407      1.29       jdc 	iic_release_bus(sc->sc_tag, 0);
    408      1.28       jdc }
    409      1.28       jdc 
    410      1.28       jdc static void
    411      1.28       jdc lmtemp_setlim_lm75(struct sysmon_envsys *sme, envsys_data_t *edata,
    412      1.28       jdc     sysmon_envsys_lim_t *limits, uint32_t *props)
    413      1.28       jdc {
    414      1.28       jdc 	struct lmtemp_softc *sc = sme->sme_cookie;
    415      1.28       jdc 	int32_t limit;
    416      1.28       jdc 
    417      1.28       jdc 	if (*props & PROP_CRITMAX) {
    418      1.28       jdc 		if (limits == NULL)	/* Restore defaults */
    419      1.28       jdc 			limit = sc->sc_smax;
    420      1.28       jdc 		else
    421      1.28       jdc 			limit = limits->sel_critmax;
    422      1.29       jdc 		iic_acquire_bus(sc->sc_tag, 0);
    423      1.28       jdc 		lmtemp_temp_write(sc, LM75_REG_THYST_SET_POINT,
    424      1.28       jdc 		    limit - 5000000, 0);
    425      1.28       jdc 		lmtemp_temp_write(sc, LM75_REG_TOS_SET_POINT, limit, 0);
    426      1.29       jdc 		iic_release_bus(sc->sc_tag, 0);
    427      1.28       jdc 
    428      1.28       jdc 		/* Synchronise sysctl */
    429      1.28       jdc 		sc->sc_tmax = (limit - 273150000) / 1000000;
    430      1.28       jdc 	}
    431      1.28       jdc }
    432      1.28       jdc 
    433      1.28       jdc static void
    434      1.28       jdc lmtemp_setlim_lm77(struct sysmon_envsys *sme, envsys_data_t *edata,
    435      1.28       jdc     sysmon_envsys_lim_t *limits, uint32_t *props)
    436      1.28       jdc {
    437      1.28       jdc 	struct lmtemp_softc *sc = sme->sme_cookie;
    438      1.28       jdc 	int32_t limit;
    439      1.28       jdc 
    440      1.29       jdc 	iic_acquire_bus(sc->sc_tag, 0);
    441      1.28       jdc 	if (*props & PROP_CRITMAX) {
    442      1.28       jdc 		if (limits == NULL)	/* Restore defaults */
    443      1.29       jdc 			limit = sc->sc_scrit;
    444      1.28       jdc 		else
    445      1.28       jdc 			limit = limits->sel_critmax;
    446      1.28       jdc 		lmtemp_temp_write(sc, LM77_REG_TCRIT_SET_POINT, limit, 0);
    447      1.28       jdc 	}
    448      1.28       jdc 	if (*props & PROP_WARNMAX) {
    449      1.28       jdc 		if (limits == NULL)	/* Restore defaults */
    450      1.28       jdc 			limit = sc->sc_smax;
    451      1.28       jdc 		else
    452      1.28       jdc 			limit = limits->sel_warnmax;
    453      1.28       jdc 		lmtemp_temp_write(sc, LM77_REG_THIGH_SET_POINT, limit, 0);
    454      1.28       jdc 	}
    455      1.28       jdc 	if (*props & PROP_WARNMIN) {
    456      1.28       jdc 		if (limits == NULL)	/* Restore defaults */
    457      1.29       jdc 			limit = sc->sc_smin;
    458      1.28       jdc 		else
    459      1.28       jdc 			limit = limits->sel_warnmin;
    460      1.28       jdc 		lmtemp_temp_write(sc, LM77_REG_TLOW_SET_POINT, limit, 0);
    461      1.28       jdc 	}
    462      1.29       jdc 	iic_release_bus(sc->sc_tag, 0);
    463      1.28       jdc }
    464      1.28       jdc 
    465       1.2       scw static uint32_t
    466      1.27       jdc lmtemp_decode_lm75(const uint8_t *buf, int degc)
    467       1.2       scw {
    468      1.20    briggs 	int temp;
    469       1.2       scw 	uint32_t val;
    470       1.2       scw 
    471      1.20    briggs 	/*
    472      1.20    briggs 	 * LM75 temps are the most-significant 9 bits of a 16-bit reg.
    473      1.20    briggs 	 * sign-extend the MSB and add in the 0.5 from the LSB
    474      1.20    briggs 	 */
    475      1.20    briggs 	temp = (int8_t) buf[0];
    476      1.20    briggs 	temp = (temp << 1) + ((buf[1] >> 7) & 0x1);
    477       1.2       scw 
    478      1.27       jdc 	/* Temp is given in 1/2 deg. C, we convert to C or uK. */
    479      1.27       jdc 	if (degc)
    480      1.27       jdc 		val = temp / 2;
    481      1.27       jdc 	else
    482      1.27       jdc 		val = temp * 500000 + 273150000;
    483       1.2       scw 
    484      1.18   xtraeme 	return val;
    485       1.2       scw }
    486       1.2       scw 
    487       1.2       scw static uint32_t
    488      1.27       jdc lmtemp_decode_ds75(const uint8_t *buf, int degc)
    489       1.2       scw {
    490       1.2       scw 	int temp;
    491       1.2       scw 
    492       1.2       scw 	/*
    493       1.2       scw 	 * Sign-extend the MSB byte, and add in the fractions of a
    494       1.7       riz 	 * degree contained in the LSB (precision 1/16th DegC).
    495       1.2       scw 	 */
    496       1.2       scw 	temp = (int8_t)buf[0];
    497       1.2       scw 	temp = (temp << 4) | ((buf[1] >> 4) & 0xf);
    498       1.2       scw 
    499       1.2       scw 	/*
    500      1.27       jdc 	 * Conversion to C or uK is simple.
    501       1.2       scw 	 */
    502      1.27       jdc 	if (degc)
    503      1.27       jdc 		return temp / 16;
    504      1.27       jdc 	else
    505      1.27       jdc 		return (temp * 62500 + 273150000);
    506       1.2       scw }
    507       1.2       scw 
    508       1.9  kiyohara static uint32_t
    509      1.27       jdc lmtemp_decode_lm77(const uint8_t *buf, int degc)
    510       1.9  kiyohara {
    511       1.9  kiyohara 	int temp;
    512       1.9  kiyohara 	uint32_t val;
    513       1.9  kiyohara 
    514       1.9  kiyohara 	/*
    515       1.9  kiyohara 	 * Describe each bits of temperature registers on LM77.
    516       1.9  kiyohara 	 *   D15 - D12:	Sign
    517       1.9  kiyohara 	 *   D11 - D3 :	Bit8(MSB) - Bit0
    518       1.9  kiyohara 	 */
    519       1.9  kiyohara 	temp = (int8_t)buf[0];
    520      1.10  kiyohara 	temp = (temp << 5) | ((buf[1] >> 3) & 0x1f);
    521       1.9  kiyohara 
    522      1.27       jdc 	/* Temp is given in 1/2 deg. C, we convert to C or uK. */
    523      1.27       jdc 	if (degc)
    524      1.27       jdc 		val = temp / 2;
    525      1.27       jdc 	else
    526      1.27       jdc 		val = temp * 500000 + 273150000;
    527       1.9  kiyohara 
    528      1.18   xtraeme 	return val;
    529       1.9  kiyohara }
    530       1.9  kiyohara 
    531      1.28       jdc static void lmtemp_encode_lm75(const uint32_t val, uint8_t *buf, int degc)
    532      1.28       jdc {
    533      1.28       jdc 	int temp;
    534      1.28       jdc 
    535      1.28       jdc 	/* Convert from C or uK to register format */
    536      1.28       jdc 	if (degc)
    537      1.28       jdc 		temp = val * 2;
    538      1.28       jdc 	else
    539      1.28       jdc 		temp = (val - 273150000) / 500000;
    540      1.28       jdc 	buf[0] = (temp >> 1) & 0xff;
    541      1.28       jdc 	buf[1] = (temp & 1) << 7;
    542      1.28       jdc }
    543      1.28       jdc 
    544      1.28       jdc static void lmtemp_encode_ds75(const uint32_t val, uint8_t *buf, int degc)
    545      1.28       jdc {
    546      1.28       jdc 	int temp;
    547      1.28       jdc 
    548      1.28       jdc 	/* Convert from C or uK to register format */
    549      1.28       jdc 	if (degc)
    550      1.28       jdc 		temp = val * 16;
    551      1.28       jdc 	else
    552      1.28       jdc 		temp = (val - 273150000) / 62500;
    553      1.28       jdc 	buf[0] = (temp >> 4) & 0xff;
    554      1.28       jdc 	buf[1] = (temp & 0xf) << 4;
    555      1.28       jdc }
    556      1.28       jdc 
    557      1.28       jdc static void lmtemp_encode_lm77(const uint32_t val, uint8_t *buf, int degc)
    558      1.28       jdc {
    559      1.28       jdc 	int temp;
    560      1.28       jdc 
    561      1.28       jdc 	/* Convert from C or uK to register format */
    562      1.28       jdc 	if (degc)
    563      1.28       jdc 		temp = val * 2;
    564      1.28       jdc 	else
    565      1.28       jdc 		temp = (val - 273150000) / 500000;
    566      1.28       jdc 	buf[0] = (temp >> 5) & 0xff;
    567      1.28       jdc 	buf[1] = (temp & 0x1f) << 3;
    568      1.28       jdc }
    569      1.28       jdc 
    570      1.23  macallan static void
    571      1.23  macallan lmtemp_setup_sysctl(struct lmtemp_softc *sc)
    572      1.23  macallan {
    573      1.23  macallan 	const struct sysctlnode *me = NULL, *node = NULL;
    574      1.23  macallan 
    575      1.23  macallan 	sysctl_createv(NULL, 0, NULL, &me,
    576      1.23  macallan 	    CTLFLAG_READWRITE,
    577      1.23  macallan 	    CTLTYPE_NODE, device_xname(sc->sc_dev), NULL,
    578      1.23  macallan 	    NULL, 0, NULL, 0,
    579      1.23  macallan 	    CTL_MACHDEP, CTL_CREATE, CTL_EOL);
    580      1.23  macallan 
    581      1.23  macallan 	sysctl_createv(NULL, 0, NULL, &node,
    582      1.23  macallan 	    CTLFLAG_READWRITE | CTLFLAG_OWNDESC,
    583      1.23  macallan 	    CTLTYPE_INT, "temp", "Threshold temperature",
    584      1.24       dsl 	    sysctl_lm75_temp, 1, (void *)sc, 0,
    585      1.23  macallan 	    CTL_MACHDEP, me->sysctl_num, CTL_CREATE, CTL_EOL);
    586      1.23  macallan }
    587      1.23  macallan 
    588      1.23  macallan static int
    589      1.23  macallan sysctl_lm75_temp(SYSCTLFN_ARGS)
    590      1.23  macallan {
    591      1.23  macallan 	struct sysctlnode node = *rnode;
    592      1.23  macallan 	struct lmtemp_softc *sc = node.sysctl_data;
    593      1.23  macallan 	int temp;
    594      1.23  macallan 
    595      1.23  macallan 	if (newp) {
    596      1.23  macallan 
    597      1.23  macallan 		/* we're asked to write */
    598      1.23  macallan 		node.sysctl_data = &sc->sc_tmax;
    599      1.23  macallan 		if (sysctl_lookup(SYSCTLFN_CALL(&node)) == 0) {
    600      1.23  macallan 
    601      1.23  macallan 			temp = *(int *)node.sysctl_data;
    602      1.23  macallan 			sc->sc_tmax = temp;
    603      1.23  macallan 			iic_acquire_bus(sc->sc_tag, I2C_F_POLL);
    604      1.23  macallan 			lmtemp_temp_write(sc, LM75_REG_THYST_SET_POINT,
    605      1.28       jdc 			    sc->sc_tmax - 5, 1);
    606      1.23  macallan 			lmtemp_temp_write(sc, LM75_REG_TOS_SET_POINT,
    607      1.28       jdc 			    sc->sc_tmax, 1);
    608      1.23  macallan 			iic_release_bus(sc->sc_tag, I2C_F_POLL);
    609      1.28       jdc 
    610      1.28       jdc 			/* Synchronise envsys - calls lmtemp_getlim_lm75() */
    611      1.28       jdc 			sysmon_envsys_update_limits(sc->sc_sme, &sc->sc_sensor);
    612      1.23  macallan 			return 0;
    613      1.23  macallan 		}
    614      1.23  macallan 		return EINVAL;
    615      1.23  macallan 	} else {
    616      1.23  macallan 
    617      1.23  macallan 		node.sysctl_data = &sc->sc_tmax;
    618      1.23  macallan 		node.sysctl_size = 4;
    619      1.23  macallan 		return (sysctl_lookup(SYSCTLFN_CALL(&node)));
    620      1.23  macallan 	}
    621      1.23  macallan 
    622      1.23  macallan 	return 0;
    623      1.23  macallan }
    624      1.23  macallan 
    625      1.23  macallan SYSCTL_SETUP(sysctl_lmtemp_setup, "sysctl lmtemp subtree setup")
    626      1.23  macallan {
    627      1.23  macallan 
    628      1.23  macallan 	sysctl_createv(NULL, 0, NULL, NULL,
    629      1.23  macallan 		       CTLFLAG_PERMANENT,
    630      1.23  macallan 		       CTLTYPE_NODE, "machdep", NULL,
    631      1.23  macallan 		       NULL, 0, NULL, 0,
    632      1.23  macallan 		       CTL_MACHDEP, CTL_EOL);
    633      1.23  macallan }
    634      1.23  macallan 
    635      1.23  macallan 
    636