adm1021.c revision 1.26 1 1.26 thorpej /* $NetBSD: adm1021.c,v 1.26 2021/01/28 14:35:11 thorpej Exp $ */
2 1.1 jkunz /* $OpenBSD: adm1021.c,v 1.27 2007/06/24 05:34:35 dlg Exp $ */
3 1.1 jkunz
4 1.1 jkunz /*
5 1.1 jkunz * Copyright (c) 2005 Theo de Raadt
6 1.1 jkunz *
7 1.1 jkunz * Permission to use, copy, modify, and distribute this software for any
8 1.1 jkunz * purpose with or without fee is hereby granted, provided that the above
9 1.1 jkunz * copyright notice and this permission notice appear in all copies.
10 1.1 jkunz *
11 1.1 jkunz * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
12 1.1 jkunz * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
13 1.1 jkunz * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
14 1.1 jkunz * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
15 1.1 jkunz * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
16 1.1 jkunz * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
17 1.1 jkunz * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
18 1.1 jkunz */
19 1.1 jkunz
20 1.11 jdc /*
21 1.11 jdc * Driver for ADM1021 and compatible temperature sensors, including ADM1021,
22 1.11 jdc * ADM1021A, ADM1023, ADM1032, GL523SM, G781, LM84, MAX1617, MAX1617A,
23 1.13 macallan * NE1617A, MAX6642 and Xeon embedded temperature sensors.
24 1.11 jdc *
25 1.11 jdc * Some sensors differ from the ADM1021/MAX1617/NE1617A:
26 1.13 macallan * ADM1021A ADM1023 ADM1032 G781 LM84 MAX1617A MAX6642
27 1.13 macallan * company/revision reg X X X X X X
28 1.13 macallan * no negative temps X X X X
29 1.13 macallan * 11-bit remote temp X X X X
30 1.14 macallan * no low limits X X
31 1.13 macallan * therm (high) limits X X X
32 1.11 jdc *
33 1.11 jdc * Registers 0x00 to 0x0f have separate read/write addresses, but
34 1.11 jdc * registers 0x10 and above have the same read/write address.
35 1.11 jdc * The 11-bit (extended) temperature consists of a separate register with
36 1.11 jdc * 3 valid bits that are always added to the external temperature (even if
37 1.11 jdc * the temperature is negative).
38 1.11 jdc */
39 1.11 jdc
40 1.1 jkunz #include <sys/cdefs.h>
41 1.26 thorpej __KERNEL_RCSID(0, "$NetBSD: adm1021.c,v 1.26 2021/01/28 14:35:11 thorpej Exp $");
42 1.1 jkunz
43 1.1 jkunz #include <sys/param.h>
44 1.1 jkunz #include <sys/systm.h>
45 1.1 jkunz #include <sys/device.h>
46 1.1 jkunz #include <dev/sysmon/sysmonvar.h>
47 1.1 jkunz
48 1.1 jkunz #include <dev/i2c/i2cvar.h>
49 1.1 jkunz
50 1.11 jdc /* Registers */
51 1.11 jdc #define ADM1021_INT_TEMP 0x00 /* Internal temperature value */
52 1.11 jdc #define ADM1021_EXT_TEMP 0x01 /* External temperature value */
53 1.11 jdc #define ADM1021_STATUS 0x02 /* Status */
54 1.11 jdc #define ADM1021_CONFIG_READ 0x03 /* Read configuration */
55 1.11 jdc #define ADM1021_CONV_RATE_READ 0x04 /* Read conversion rate */
56 1.11 jdc #define ADM1021_INT_HIGH_READ 0x05 /* Read internal high limit */
57 1.11 jdc #define ADM1021_INT_LOW_READ 0x06 /* Read internal low limit */
58 1.11 jdc #define ADM1021_EXT_HIGH_READ 0x07 /* Read external high limit */
59 1.11 jdc #define ADM1021_EXT_LOW_READ 0x08 /* Read external low limit */
60 1.11 jdc #define ADM1021_CONFIG_WRITE 0x09 /* Write configuration */
61 1.11 jdc #define ADM1021_CONV_RATE_WRITE 0x0a /* Write conversion rate */
62 1.11 jdc #define ADM1021_INT_HIGH_WRITE 0x0b /* Write internal high limit */
63 1.11 jdc #define ADM1021_INT_LOW_WRITE 0x0c /* Write internal low limit */
64 1.11 jdc #define ADM1021_EXT_HIGH_WRITE 0x0d /* Write external high limit */
65 1.11 jdc #define ADM1021_EXT_LOW_WRITE 0x0e /* Write external low limit */
66 1.11 jdc #define ADM1021_ONE_SHOT 0x0f /* One shot command */
67 1.11 jdc #define ADM1023_EXT_TEMP2 0x10 /* R/W external temp low byte */
68 1.11 jdc #define ADM1023_EXT_TEMP_OFF 0x11 /* R/W external temp offset */
69 1.11 jdc #define ADM1023_EXT_TEMP_OFF2 0x12 /* R/W external temp off low byte */
70 1.11 jdc #define ADM1023_EXT_HIGH2 0x13 /* R/W external high lim low byte */
71 1.11 jdc #define ADM1023_EXT_LOW2 0x14 /* R/W external low lim low byte */
72 1.11 jdc #define ADM1032_EXT_THERM 0x19 /* R/W external Therm (high) limit */
73 1.11 jdc #define ADM1032_INT_THERM 0x20 /* R/W internal Therm (high) limit */
74 1.11 jdc #define ADM1032_THERM_HYST 0x21 /* R/W Therm hysteris */
75 1.11 jdc #define ADM1032_ALERT_QUEUE 0x22 /* R/W consecutive alert queue */
76 1.11 jdc #define ADM1021_COMPANY 0xfe /* Company ID */
77 1.11 jdc #define ADM1021_DIE_REVISION 0xff /* Die revision code */
78 1.11 jdc
79 1.11 jdc /* Register values */
80 1.11 jdc #define ADM1021_CONFIG_RUN 0x40
81 1.1 jkunz
82 1.1 jkunz #define ADM1021_STATUS_INVAL 0x7f
83 1.11 jdc #define ADM1021_STATUS_NOEXT 0x40 /* External diode is open-circuit */
84 1.11 jdc
85 1.11 jdc #define ADM1023_EXT2_SHIFT 5
86 1.11 jdc #define ADM1023_EXT2_MASK 0x07
87 1.11 jdc
88 1.11 jdc #define ADM1021_COMPANY_ADM 0x41 /* 'A' */
89 1.11 jdc #define ADM1021_COMPANY_GMT 0x47 /* 'G' */
90 1.11 jdc #define ADM1021_COMPANY_MAXIM 0x4d /* 'M' */
91 1.11 jdc
92 1.11 jdc #define ADM1021_REV_1021 0x00
93 1.11 jdc #define ADM1021_REV_1021A 0x30
94 1.11 jdc #define ADM1021_REV_MASK 0xf0
95 1.1 jkunz
96 1.1 jkunz /* Sensors */
97 1.1 jkunz #define ADMTEMP_INT 0
98 1.1 jkunz #define ADMTEMP_EXT 1
99 1.1 jkunz #define ADMTEMP_NUM_SENSORS 2
100 1.1 jkunz
101 1.11 jdc #define ADMTEMP_MAX_NEG -65
102 1.11 jdc #define ADMTEMP_MAX_POS 127
103 1.11 jdc #define ADMTEMP_LOW_DEFAULT 0xc9 /* (-55) */
104 1.11 jdc
105 1.11 jdc /* Limit registers might read 0xff, so we ignore them if they do */
106 1.11 jdc #define ADMTEMP_LIM_INVAL -1 /* 0xff */
107 1.11 jdc
108 1.11 jdc #define ADMTEMP_NAMELEN 9 /* Maximum name length + 1 */
109 1.11 jdc
110 1.1 jkunz struct admtemp_softc {
111 1.1 jkunz i2c_tag_t sc_tag;
112 1.1 jkunz i2c_addr_t sc_addr;
113 1.20 macallan prop_dictionary_t sc_prop;
114 1.1 jkunz
115 1.11 jdc int sc_flags;
116 1.11 jdc int sc_noexternal, sc_noneg, sc_nolow;
117 1.11 jdc int sc_ext11, sc_therm;
118 1.1 jkunz struct sysmon_envsys *sc_sme;
119 1.1 jkunz envsys_data_t sc_sensor[ADMTEMP_NUM_SENSORS];
120 1.11 jdc int sc_setdef[ADMTEMP_NUM_SENSORS];
121 1.12 christos uint8_t sc_highlim[ADMTEMP_NUM_SENSORS];
122 1.12 christos uint8_t sc_lowlim[ADMTEMP_NUM_SENSORS];
123 1.12 christos uint8_t sc_highlim2, sc_lowlim2;
124 1.12 christos uint8_t sc_thermlim[ADMTEMP_NUM_SENSORS];
125 1.1 jkunz };
126 1.1 jkunz
127 1.2 cegger int admtemp_match(device_t, cfdata_t, void *);
128 1.2 cegger void admtemp_attach(device_t, device_t, void *);
129 1.1 jkunz void admtemp_refresh(struct sysmon_envsys *, envsys_data_t *);
130 1.11 jdc void admtemp_getlim_1021(struct sysmon_envsys *, envsys_data_t *,
131 1.11 jdc sysmon_envsys_lim_t *, uint32_t *);
132 1.11 jdc void admtemp_getlim_1023(struct sysmon_envsys *, envsys_data_t *,
133 1.11 jdc sysmon_envsys_lim_t *, uint32_t *);
134 1.11 jdc void admtemp_getlim_1032(struct sysmon_envsys *, envsys_data_t *,
135 1.11 jdc sysmon_envsys_lim_t *, uint32_t *);
136 1.11 jdc void admtemp_setlim_1021(struct sysmon_envsys *, envsys_data_t *,
137 1.11 jdc sysmon_envsys_lim_t *, uint32_t *);
138 1.11 jdc void admtemp_setlim_1023(struct sysmon_envsys *, envsys_data_t *,
139 1.11 jdc sysmon_envsys_lim_t *, uint32_t *);
140 1.11 jdc void admtemp_setlim_1032(struct sysmon_envsys *, envsys_data_t *,
141 1.11 jdc sysmon_envsys_lim_t *, uint32_t *);
142 1.1 jkunz
143 1.1 jkunz CFATTACH_DECL_NEW(admtemp, sizeof(struct admtemp_softc),
144 1.1 jkunz admtemp_match, admtemp_attach, NULL, NULL);
145 1.1 jkunz
146 1.26 thorpej struct admtemp_params {
147 1.26 thorpej const char *name;
148 1.26 thorpej int noneg;
149 1.26 thorpej int nolow;
150 1.26 thorpej int ext11;
151 1.26 thorpej int therm;
152 1.26 thorpej };
153 1.26 thorpej
154 1.26 thorpej static const struct admtemp_params admtemp_params_max1617 = {
155 1.26 thorpej .name = "MAX1617A",
156 1.26 thorpej .noneg = 0,
157 1.26 thorpej .nolow = 0,
158 1.26 thorpej .ext11 = 0,
159 1.26 thorpej .therm = 0,
160 1.26 thorpej };
161 1.26 thorpej
162 1.26 thorpej static const struct admtemp_params admtemp_params_max6642 = {
163 1.26 thorpej .name = "MAX6642",
164 1.26 thorpej .noneg = 0,
165 1.26 thorpej .nolow = 1,
166 1.26 thorpej .ext11 = 0,
167 1.26 thorpej .therm = 0,
168 1.26 thorpej };
169 1.26 thorpej
170 1.26 thorpej static const struct admtemp_params admtemp_params_max6690 = {
171 1.26 thorpej .name = "MAX6690",
172 1.26 thorpej .noneg = 0,
173 1.26 thorpej .nolow = 0,
174 1.26 thorpej .ext11 = 1,
175 1.26 thorpej .therm = 0,
176 1.26 thorpej };
177 1.26 thorpej
178 1.19 thorpej static const struct device_compatible_entry compat_data[] = {
179 1.26 thorpej { .compat = "i2c-max1617", .data = &admtemp_params_max1617 },
180 1.26 thorpej { .compat = "max6642", .data = &admtemp_params_max6642 },
181 1.26 thorpej { .compat = "max6690", .data = &admtemp_params_max6690 },
182 1.25 thorpej DEVICE_COMPAT_EOL
183 1.18 thorpej };
184 1.18 thorpej
185 1.1 jkunz int
186 1.2 cegger admtemp_match(device_t parent, cfdata_t match, void *aux)
187 1.1 jkunz {
188 1.1 jkunz struct i2c_attach_args *ia = aux;
189 1.17 thorpej int match_result;
190 1.1 jkunz
191 1.19 thorpej if (iic_use_direct_match(ia, match, compat_data, &match_result))
192 1.17 thorpej return match_result;
193 1.17 thorpej
194 1.17 thorpej /*
195 1.17 thorpej * Indirect config - not much we can do!
196 1.17 thorpej * Check typical addresses.
197 1.17 thorpej */
198 1.17 thorpej if (((ia->ia_addr >= 0x18) && (ia->ia_addr <= 0x1a)) ||
199 1.17 thorpej ((ia->ia_addr >= 0x29) && (ia->ia_addr <= 0x2b)) ||
200 1.17 thorpej ((ia->ia_addr >= 0x48) && (ia->ia_addr <= 0x4e)))
201 1.17 thorpej return I2C_MATCH_ADDRESS_ONLY;
202 1.1 jkunz
203 1.4 martin return 0;
204 1.1 jkunz }
205 1.1 jkunz
206 1.12 christos static int
207 1.12 christos admtemp_exec(struct admtemp_softc *sc, i2c_op_t op, uint8_t *cmd,
208 1.12 christos uint8_t *data)
209 1.12 christos {
210 1.12 christos return iic_exec(sc->sc_tag, op, sc->sc_addr, cmd, sizeof(*cmd), data,
211 1.12 christos sizeof(*data), 0);
212 1.12 christos }
213 1.12 christos
214 1.11 jdc /*
215 1.11 jdc * Set flags based on chip type for direct config, or by testing for
216 1.11 jdc * indirect config.
217 1.11 jdc *
218 1.11 jdc * LM84, MAX1617, and NE1617A don't have company/revision registers.
219 1.11 jdc * If we can't read the company register, we'll check the
220 1.11 jdc * internal low limit to see if we have an LM84.
221 1.11 jdc *
222 1.11 jdc * To check if an ADM chip has 11-bit sensors, we'll write 0.125
223 1.11 jdc * to the external temperature limit low byte register and read it
224 1.11 jdc * back (because we can't tell from the id/rev).
225 1.11 jdc *
226 1.11 jdc * To check if an ADM chip has a Therm output, we check that we
227 1.11 jdc * read 0x55 (default value) from the external therm limit.
228 1.11 jdc *
229 1.11 jdc * If an ADM chip doesn't have 11-bit sensors, check the revision to
230 1.11 jdc * determine if it handles negative temperatures.
231 1.11 jdc */
232 1.11 jdc static void
233 1.11 jdc admtemp_setflags(struct admtemp_softc *sc, struct i2c_attach_args *ia,
234 1.12 christos uint8_t* comp, uint8_t *rev, char* name)
235 1.11 jdc {
236 1.12 christos uint8_t cmd, data, tmp;
237 1.11 jdc
238 1.11 jdc *comp = 0;
239 1.11 jdc *rev = 0;
240 1.11 jdc
241 1.11 jdc cmd = ADM1021_COMPANY;
242 1.12 christos admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, comp);
243 1.11 jdc
244 1.11 jdc cmd = ADM1021_DIE_REVISION;
245 1.12 christos admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, rev);
246 1.11 jdc
247 1.11 jdc sc->sc_noneg = 1;
248 1.11 jdc sc->sc_nolow = 0;
249 1.11 jdc sc->sc_ext11 = 0;
250 1.11 jdc sc->sc_therm = 0;
251 1.11 jdc
252 1.11 jdc /* Direct config */
253 1.26 thorpej const struct device_compatible_entry *dce =
254 1.26 thorpej iic_compatible_lookup(ia, compat_data);
255 1.26 thorpej if (dce != NULL) {
256 1.26 thorpej const struct admtemp_params *params = dce->data;
257 1.26 thorpej
258 1.26 thorpej sc->sc_noneg = params->noneg;
259 1.26 thorpej sc->sc_nolow = params->nolow;
260 1.26 thorpej sc->sc_ext11 = params->ext11;
261 1.26 thorpej sc->sc_therm = params->therm;
262 1.26 thorpej strlcpy(name, params->name, ADMTEMP_NAMELEN);
263 1.26 thorpej return;
264 1.11 jdc }
265 1.11 jdc
266 1.11 jdc /* Indirect config */
267 1.11 jdc if (*comp == 0) {
268 1.11 jdc sc->sc_noneg = 0;
269 1.11 jdc cmd = ADM1021_INT_LOW_READ;
270 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, comp) == 0 &&
271 1.12 christos *comp != ADMTEMP_LOW_DEFAULT) {
272 1.11 jdc sc->sc_nolow = 1;
273 1.11 jdc strlcpy(name, "LM84", ADMTEMP_NAMELEN);
274 1.11 jdc } else
275 1.11 jdc strlcpy(name, "MAX1617", ADMTEMP_NAMELEN);
276 1.11 jdc }
277 1.11 jdc
278 1.11 jdc if (*comp == ADM1021_COMPANY_MAXIM) {
279 1.11 jdc sc->sc_noneg = 0;
280 1.13 macallan /*
281 1.13 macallan * MAX6642 doesn't have a revision register
282 1.13 macallan * XXX this works only on macppc with iic at pmu because the
283 1.13 macallan * pmu doesn't return an error for nonexistant registers, it
284 1.13 macallan * just repeats previous data
285 1.13 macallan */
286 1.13 macallan if (*comp == *rev) {
287 1.13 macallan sc->sc_therm = 0; /* */
288 1.14 macallan sc->sc_nolow = 1;
289 1.13 macallan strlcpy(name, "MAX6642", ADMTEMP_NAMELEN);
290 1.15 macallan } else if (*rev == 0) {
291 1.15 macallan strlcpy(name, "MAX6690", ADMTEMP_NAMELEN);
292 1.15 macallan sc->sc_ext11 = 1;
293 1.13 macallan } else {
294 1.13 macallan strlcpy(name, "MAX1617A", ADMTEMP_NAMELEN);
295 1.13 macallan }
296 1.11 jdc }
297 1.11 jdc
298 1.11 jdc if (*comp == ADM1021_COMPANY_GMT) {
299 1.11 jdc sc->sc_ext11 = 1;
300 1.11 jdc sc->sc_therm = 1;
301 1.11 jdc strlcpy(name, "G781", ADMTEMP_NAMELEN);
302 1.11 jdc }
303 1.11 jdc
304 1.11 jdc if (*comp == ADM1021_COMPANY_ADM) {
305 1.11 jdc cmd = ADM1023_EXT_HIGH2;
306 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &data) == 0) {
307 1.11 jdc tmp = 1 << ADM1023_EXT2_SHIFT;
308 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &tmp);
309 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd,
310 1.12 christos &tmp) == 0 && tmp == 1 << ADM1023_EXT2_SHIFT) {
311 1.11 jdc sc->sc_ext11 = 1;
312 1.11 jdc strlcpy(name, "ADM1023", ADMTEMP_NAMELEN);
313 1.11 jdc }
314 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &data);
315 1.11 jdc }
316 1.11 jdc cmd = ADM1032_EXT_THERM;
317 1.11 jdc if (sc->sc_ext11 &&
318 1.12 christos admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &data) == 0
319 1.12 christos && data == 0x55) {
320 1.11 jdc sc->sc_therm = 1;
321 1.11 jdc strlcpy(name, "ADM1032", ADMTEMP_NAMELEN);
322 1.11 jdc }
323 1.11 jdc if (!sc->sc_ext11 &&
324 1.11 jdc (*rev & ADM1021_REV_MASK) == ADM1021_REV_1021A) {
325 1.11 jdc sc->sc_noneg = 0;
326 1.11 jdc strlcpy(name, "ADM1021A", ADMTEMP_NAMELEN);
327 1.11 jdc } else
328 1.11 jdc strlcpy(name, "ADM1021", ADMTEMP_NAMELEN);
329 1.11 jdc }
330 1.11 jdc }
331 1.1 jkunz
332 1.1 jkunz void
333 1.2 cegger admtemp_attach(device_t parent, device_t self, void *aux)
334 1.1 jkunz {
335 1.1 jkunz struct admtemp_softc *sc = device_private(self);
336 1.1 jkunz struct i2c_attach_args *ia = aux;
337 1.12 christos uint8_t cmd, data, stat, comp, rev;
338 1.11 jdc char name[ADMTEMP_NAMELEN];
339 1.20 macallan char ename[64] = "external", iname[64] = "internal";
340 1.20 macallan const char *desc;
341 1.20 macallan
342 1.1 jkunz sc->sc_tag = ia->ia_tag;
343 1.1 jkunz sc->sc_addr = ia->ia_addr;
344 1.20 macallan sc->sc_prop = ia->ia_prop;
345 1.1 jkunz
346 1.1 jkunz iic_acquire_bus(sc->sc_tag, 0);
347 1.1 jkunz cmd = ADM1021_CONFIG_READ;
348 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &data) != 0) {
349 1.1 jkunz iic_release_bus(sc->sc_tag, 0);
350 1.8 chs aprint_error_dev(self, "cannot get control register\n");
351 1.1 jkunz return;
352 1.1 jkunz }
353 1.1 jkunz if (data & ADM1021_CONFIG_RUN) {
354 1.1 jkunz cmd = ADM1021_STATUS;
355 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &stat)) {
356 1.1 jkunz iic_release_bus(sc->sc_tag, 0);
357 1.8 chs aprint_error_dev(self,
358 1.1 jkunz "cannot read status register\n");
359 1.1 jkunz return;
360 1.1 jkunz }
361 1.1 jkunz if ((stat & ADM1021_STATUS_INVAL) == ADM1021_STATUS_INVAL) {
362 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd,
363 1.12 christos &stat)) {
364 1.1 jkunz iic_release_bus(sc->sc_tag, 0);
365 1.8 chs aprint_error_dev(self,
366 1.1 jkunz "cannot read status register\n");
367 1.1 jkunz return;
368 1.1 jkunz }
369 1.1 jkunz }
370 1.1 jkunz
371 1.1 jkunz /* means external is dead */
372 1.1 jkunz if ((stat & ADM1021_STATUS_INVAL) != ADM1021_STATUS_INVAL &&
373 1.1 jkunz (stat & ADM1021_STATUS_NOEXT))
374 1.1 jkunz sc->sc_noexternal = 1;
375 1.1 jkunz
376 1.1 jkunz data &= ~ADM1021_CONFIG_RUN;
377 1.1 jkunz cmd = ADM1021_CONFIG_WRITE;
378 1.12 christos if (admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &data)) {
379 1.1 jkunz iic_release_bus(sc->sc_tag, 0);
380 1.8 chs aprint_error_dev(self,
381 1.1 jkunz "cannot set control register\n");
382 1.1 jkunz return;
383 1.1 jkunz }
384 1.1 jkunz }
385 1.11 jdc
386 1.11 jdc admtemp_setflags(sc, ia, &comp, &rev, name);
387 1.11 jdc
388 1.1 jkunz iic_release_bus(sc->sc_tag, 0);
389 1.1 jkunz
390 1.11 jdc aprint_normal(": %s temperature sensor", name);
391 1.11 jdc if (comp)
392 1.11 jdc aprint_normal(": id. 0x%02x, rev. 0x%02x\n", comp, rev);
393 1.11 jdc else
394 1.11 jdc aprint_normal("\n");
395 1.11 jdc aprint_naive(": Temperature sensor\n");
396 1.11 jdc
397 1.1 jkunz /* Initialize sensor data. */
398 1.6 martin sc->sc_sensor[ADMTEMP_INT].state = ENVSYS_SINVALID;
399 1.1 jkunz sc->sc_sensor[ADMTEMP_INT].units = ENVSYS_STEMP;
400 1.6 martin sc->sc_sensor[ADMTEMP_EXT].state = ENVSYS_SINVALID;
401 1.1 jkunz sc->sc_sensor[ADMTEMP_EXT].units = ENVSYS_STEMP;
402 1.23 rin sc->sc_sensor[ADMTEMP_INT].flags =
403 1.23 rin ENVSYS_FMONLIMITS | ENVSYS_FHAS_ENTROPY;
404 1.23 rin sc->sc_sensor[ADMTEMP_EXT].flags =
405 1.23 rin ENVSYS_FMONLIMITS | ENVSYS_FHAS_ENTROPY;
406 1.20 macallan
407 1.20 macallan if (prop_dictionary_get_cstring_nocopy(sc->sc_prop, "s00", &desc)) {
408 1.20 macallan strncpy(iname, desc, 64);
409 1.20 macallan }
410 1.20 macallan
411 1.20 macallan if (prop_dictionary_get_cstring_nocopy(sc->sc_prop, "s01", &desc)) {
412 1.20 macallan strncpy(ename, desc, 64);
413 1.20 macallan }
414 1.20 macallan
415 1.16 macallan strlcpy(sc->sc_sensor[ADMTEMP_INT].desc, iname,
416 1.16 macallan sizeof(sc->sc_sensor[ADMTEMP_INT].desc));
417 1.16 macallan strlcpy(sc->sc_sensor[ADMTEMP_EXT].desc, ename,
418 1.16 macallan sizeof(sc->sc_sensor[ADMTEMP_EXT].desc));
419 1.20 macallan
420 1.1 jkunz sc->sc_sme = sysmon_envsys_create();
421 1.1 jkunz if (sysmon_envsys_sensor_attach(
422 1.1 jkunz sc->sc_sme, &sc->sc_sensor[ADMTEMP_INT])) {
423 1.1 jkunz sysmon_envsys_destroy(sc->sc_sme);
424 1.21 jdc sc->sc_sme = NULL;
425 1.8 chs aprint_error_dev(self,
426 1.1 jkunz "unable to attach internal at sysmon\n");
427 1.1 jkunz return;
428 1.1 jkunz }
429 1.1 jkunz if (sc->sc_noexternal == 0 &&
430 1.1 jkunz sysmon_envsys_sensor_attach(
431 1.1 jkunz sc->sc_sme, &sc->sc_sensor[ADMTEMP_EXT])) {
432 1.1 jkunz sysmon_envsys_destroy(sc->sc_sme);
433 1.21 jdc sc->sc_sme = NULL;
434 1.8 chs aprint_error_dev(self,
435 1.1 jkunz "unable to attach external at sysmon\n");
436 1.1 jkunz return;
437 1.1 jkunz }
438 1.1 jkunz sc->sc_sme->sme_name = device_xname(self);
439 1.1 jkunz sc->sc_sme->sme_cookie = sc;
440 1.1 jkunz sc->sc_sme->sme_refresh = admtemp_refresh;
441 1.11 jdc if (sc->sc_therm) {
442 1.11 jdc sc->sc_sme->sme_get_limits = admtemp_getlim_1032;
443 1.11 jdc sc->sc_sme->sme_set_limits = admtemp_setlim_1032;
444 1.11 jdc } else if (sc->sc_ext11) {
445 1.11 jdc sc->sc_sme->sme_get_limits = admtemp_getlim_1023;
446 1.11 jdc sc->sc_sme->sme_set_limits = admtemp_setlim_1023;
447 1.11 jdc } else {
448 1.11 jdc sc->sc_sme->sme_get_limits = admtemp_getlim_1021;
449 1.11 jdc sc->sc_sme->sme_set_limits = admtemp_setlim_1021;
450 1.11 jdc }
451 1.1 jkunz if (sysmon_envsys_register(sc->sc_sme)) {
452 1.8 chs aprint_error_dev(self,
453 1.1 jkunz "unable to register with sysmon\n");
454 1.1 jkunz sysmon_envsys_destroy(sc->sc_sme);
455 1.21 jdc sc->sc_sme = NULL;
456 1.1 jkunz return;
457 1.1 jkunz }
458 1.1 jkunz }
459 1.1 jkunz
460 1.1 jkunz
461 1.1 jkunz void
462 1.1 jkunz admtemp_refresh(struct sysmon_envsys *sme, envsys_data_t *edata)
463 1.1 jkunz {
464 1.1 jkunz struct admtemp_softc *sc = sme->sme_cookie;
465 1.12 christos uint8_t cmd, xdata;
466 1.1 jkunz int8_t sdata;
467 1.1 jkunz
468 1.21 jdc if (iic_acquire_bus(sc->sc_tag, 0)) {
469 1.21 jdc edata->state = ENVSYS_SINVALID;
470 1.21 jdc return;
471 1.21 jdc }
472 1.1 jkunz
473 1.1 jkunz if (edata->sensor == ADMTEMP_INT)
474 1.1 jkunz cmd = ADM1021_INT_TEMP;
475 1.1 jkunz else
476 1.1 jkunz cmd = ADM1021_EXT_TEMP;
477 1.11 jdc
478 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &sdata) == 0) {
479 1.1 jkunz if (sdata == ADM1021_STATUS_INVAL) {
480 1.1 jkunz edata->state = ENVSYS_SINVALID;
481 1.1 jkunz } else {
482 1.1 jkunz edata->value_cur = 273150000 + 1000000 * sdata;
483 1.1 jkunz edata->state = ENVSYS_SVALID;
484 1.1 jkunz }
485 1.1 jkunz }
486 1.11 jdc if (edata->sensor == ADMTEMP_EXT && sc->sc_ext11) {
487 1.11 jdc cmd = ADM1023_EXT_TEMP2;
488 1.12 christos admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &xdata);
489 1.11 jdc edata->value_cur +=
490 1.11 jdc (xdata >> ADM1023_EXT2_SHIFT & ADM1023_EXT2_MASK) * 125000;
491 1.11 jdc }
492 1.11 jdc
493 1.11 jdc iic_release_bus(sc->sc_tag, 0);
494 1.11 jdc }
495 1.11 jdc
496 1.11 jdc void
497 1.11 jdc admtemp_getlim_1021(struct sysmon_envsys *sme, envsys_data_t *edata,
498 1.11 jdc sysmon_envsys_lim_t *limits, uint32_t *props)
499 1.11 jdc {
500 1.11 jdc struct admtemp_softc *sc = sme->sme_cookie;
501 1.12 christos uint8_t cmd;
502 1.11 jdc int8_t hdata = 0x7f, ldata = 0xc9;
503 1.11 jdc
504 1.11 jdc *props &= ~(PROP_CRITMAX | PROP_CRITMIN);
505 1.11 jdc
506 1.21 jdc if (iic_acquire_bus(sc->sc_tag, 0))
507 1.21 jdc return;
508 1.11 jdc
509 1.11 jdc if (edata->sensor == ADMTEMP_INT)
510 1.11 jdc cmd = ADM1021_INT_HIGH_READ;
511 1.11 jdc else
512 1.11 jdc cmd = ADM1021_EXT_HIGH_READ;
513 1.11 jdc
514 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &hdata) == 0 &&
515 1.11 jdc hdata != ADMTEMP_LIM_INVAL) {
516 1.11 jdc limits->sel_critmax = 273150000 + 1000000 * hdata;
517 1.11 jdc *props |= PROP_CRITMAX;
518 1.11 jdc }
519 1.11 jdc
520 1.11 jdc if (sc->sc_nolow == 1) {
521 1.11 jdc goto release;
522 1.11 jdc }
523 1.11 jdc
524 1.11 jdc if (edata->sensor == ADMTEMP_INT)
525 1.11 jdc cmd = ADM1021_INT_LOW_READ;
526 1.11 jdc else
527 1.11 jdc cmd = ADM1021_EXT_LOW_READ;
528 1.11 jdc
529 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &ldata) == 0 &&
530 1.11 jdc ldata != ADMTEMP_LIM_INVAL) {
531 1.11 jdc limits->sel_critmin = 273150000 + 1000000 * ldata;
532 1.11 jdc *props |= PROP_CRITMIN;
533 1.11 jdc }
534 1.11 jdc
535 1.11 jdc release:
536 1.11 jdc iic_release_bus(sc->sc_tag, 0);
537 1.11 jdc
538 1.11 jdc /* Save the values if this is the first time through. */
539 1.11 jdc if (sc->sc_setdef[edata->sensor] == 0) {
540 1.11 jdc sc->sc_setdef[edata->sensor] = 1;
541 1.11 jdc sc->sc_highlim[edata->sensor] = hdata;
542 1.11 jdc sc->sc_lowlim[edata->sensor] = ldata;
543 1.11 jdc }
544 1.11 jdc }
545 1.11 jdc
546 1.11 jdc void
547 1.11 jdc admtemp_getlim_1023(struct sysmon_envsys *sme, envsys_data_t *edata,
548 1.11 jdc sysmon_envsys_lim_t *limits, uint32_t *props)
549 1.11 jdc {
550 1.11 jdc struct admtemp_softc *sc = sme->sme_cookie;
551 1.12 christos uint8_t cmd, xhdata = 0, xldata = 0;
552 1.11 jdc int8_t hdata = 0x7f, ldata = 0xc9;
553 1.11 jdc
554 1.11 jdc *props &= ~(PROP_CRITMAX | PROP_CRITMIN);
555 1.11 jdc
556 1.21 jdc if (iic_acquire_bus(sc->sc_tag, 0))
557 1.21 jdc return;
558 1.11 jdc
559 1.11 jdc if (edata->sensor == ADMTEMP_INT)
560 1.11 jdc cmd = ADM1021_INT_HIGH_READ;
561 1.11 jdc else
562 1.11 jdc cmd = ADM1021_EXT_HIGH_READ;
563 1.11 jdc
564 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &hdata) == 0 &&
565 1.11 jdc hdata != ADMTEMP_LIM_INVAL) {
566 1.11 jdc limits->sel_critmax = 273150000 + 1000000 * hdata;
567 1.11 jdc *props |= PROP_CRITMAX;
568 1.11 jdc }
569 1.11 jdc
570 1.11 jdc if (edata->sensor == ADMTEMP_EXT) {
571 1.11 jdc cmd = ADM1023_EXT_HIGH2;
572 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &xhdata) == 0)
573 1.11 jdc limits->sel_critmax +=
574 1.11 jdc (xhdata >> ADM1023_EXT2_SHIFT & ADM1023_EXT2_MASK)
575 1.11 jdc * 125000;
576 1.11 jdc }
577 1.11 jdc
578 1.11 jdc if (edata->sensor == ADMTEMP_INT)
579 1.11 jdc cmd = ADM1021_INT_LOW_READ;
580 1.11 jdc else
581 1.11 jdc cmd = ADM1021_EXT_LOW_READ;
582 1.11 jdc
583 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &ldata) == 0 &&
584 1.11 jdc ldata != ADMTEMP_LIM_INVAL) {
585 1.11 jdc limits->sel_critmin = 273150000 + 1000000 * ldata;
586 1.11 jdc *props |= PROP_CRITMIN;
587 1.11 jdc }
588 1.11 jdc
589 1.11 jdc if (edata->sensor == ADMTEMP_EXT) {
590 1.11 jdc cmd = ADM1023_EXT_LOW2;
591 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &xldata) == 0)
592 1.11 jdc limits->sel_critmin +=
593 1.11 jdc (xldata >> ADM1023_EXT2_SHIFT & ADM1023_EXT2_MASK)
594 1.11 jdc * 125000;
595 1.11 jdc }
596 1.11 jdc
597 1.11 jdc iic_release_bus(sc->sc_tag, 0);
598 1.11 jdc
599 1.11 jdc /* Save the values if this is the first time through. */
600 1.11 jdc if (sc->sc_setdef[edata->sensor] == 0) {
601 1.11 jdc sc->sc_setdef[edata->sensor] = 1;
602 1.11 jdc sc->sc_highlim[edata->sensor] = hdata;
603 1.11 jdc sc->sc_lowlim[edata->sensor] = ldata;
604 1.11 jdc if (edata->sensor == ADMTEMP_EXT) {
605 1.11 jdc sc->sc_highlim2 = xhdata;
606 1.11 jdc sc->sc_lowlim2 = xldata;
607 1.11 jdc }
608 1.11 jdc }
609 1.11 jdc }
610 1.11 jdc
611 1.11 jdc void
612 1.11 jdc admtemp_getlim_1032(struct sysmon_envsys *sme, envsys_data_t *edata,
613 1.11 jdc sysmon_envsys_lim_t *limits, uint32_t *props)
614 1.11 jdc {
615 1.11 jdc struct admtemp_softc *sc = sme->sme_cookie;
616 1.12 christos uint8_t cmd, xhdata = 0, xldata = 0;
617 1.11 jdc int8_t tdata = 0x55, hdata = 0x55, ldata = 0;
618 1.11 jdc
619 1.11 jdc *props &= ~(PROP_WARNMAX | PROP_CRITMAX | PROP_WARNMIN);
620 1.11 jdc
621 1.21 jdc if (iic_acquire_bus(sc->sc_tag, 0))
622 1.21 jdc return;
623 1.11 jdc
624 1.11 jdc if (edata->sensor == ADMTEMP_INT)
625 1.11 jdc cmd = ADM1032_INT_THERM;
626 1.11 jdc else
627 1.11 jdc cmd = ADM1032_EXT_THERM;
628 1.11 jdc
629 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &tdata) == 0 &&
630 1.11 jdc tdata != ADMTEMP_LIM_INVAL) {
631 1.11 jdc limits->sel_critmax = 273150000 + 1000000 * tdata;
632 1.11 jdc *props |= PROP_CRITMAX;
633 1.11 jdc }
634 1.11 jdc
635 1.11 jdc if (edata->sensor == ADMTEMP_INT)
636 1.11 jdc cmd = ADM1021_INT_HIGH_READ;
637 1.11 jdc else
638 1.11 jdc cmd = ADM1021_EXT_HIGH_READ;
639 1.11 jdc
640 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &hdata) == 0 &&
641 1.11 jdc hdata != ADMTEMP_LIM_INVAL) {
642 1.11 jdc limits->sel_warnmax = 273150000 + 1000000 * hdata;
643 1.11 jdc *props |= PROP_WARNMAX;
644 1.11 jdc }
645 1.11 jdc
646 1.11 jdc if (edata->sensor == ADMTEMP_EXT) {
647 1.11 jdc cmd = ADM1023_EXT_HIGH2;
648 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &xhdata) == 0)
649 1.11 jdc limits->sel_warnmax +=
650 1.11 jdc (xhdata >> ADM1023_EXT2_SHIFT & ADM1023_EXT2_MASK)
651 1.11 jdc * 125000;
652 1.11 jdc }
653 1.11 jdc
654 1.11 jdc if (edata->sensor == ADMTEMP_INT)
655 1.11 jdc cmd = ADM1021_INT_LOW_READ;
656 1.11 jdc else
657 1.11 jdc cmd = ADM1021_EXT_LOW_READ;
658 1.11 jdc
659 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &ldata) == 0 &&
660 1.11 jdc ldata != ADMTEMP_LIM_INVAL) {
661 1.11 jdc limits->sel_warnmin = 273150000 + 1000000 * ldata;
662 1.11 jdc *props |= PROP_WARNMIN;
663 1.11 jdc }
664 1.11 jdc
665 1.11 jdc if (edata->sensor == ADMTEMP_EXT) {
666 1.11 jdc cmd = ADM1023_EXT_LOW2;
667 1.12 christos if (admtemp_exec(sc, I2C_OP_READ_WITH_STOP, &cmd, &xldata) == 0)
668 1.11 jdc limits->sel_warnmin +=
669 1.11 jdc (xldata >> ADM1023_EXT2_SHIFT & ADM1023_EXT2_MASK)
670 1.11 jdc * 125000;
671 1.11 jdc }
672 1.11 jdc
673 1.11 jdc iic_release_bus(sc->sc_tag, 0);
674 1.11 jdc
675 1.11 jdc /* Save the values if this is the first time through. */
676 1.11 jdc if (sc->sc_setdef[edata->sensor] == 0) {
677 1.11 jdc sc->sc_setdef[edata->sensor] = 1;
678 1.11 jdc sc->sc_thermlim[edata->sensor] = tdata;
679 1.11 jdc sc->sc_highlim[edata->sensor] = hdata;
680 1.11 jdc sc->sc_lowlim[edata->sensor] = ldata;
681 1.11 jdc if (edata->sensor == ADMTEMP_EXT) {
682 1.11 jdc sc->sc_highlim2 = xhdata;
683 1.11 jdc sc->sc_lowlim2 = xldata;
684 1.11 jdc }
685 1.11 jdc }
686 1.11 jdc }
687 1.11 jdc
688 1.11 jdc void
689 1.11 jdc admtemp_setlim_1021(struct sysmon_envsys *sme, envsys_data_t *edata,
690 1.11 jdc sysmon_envsys_lim_t *limits, uint32_t *props)
691 1.11 jdc {
692 1.11 jdc struct admtemp_softc *sc = sme->sme_cookie;
693 1.12 christos uint8_t cmd;
694 1.11 jdc int tmp;
695 1.11 jdc int8_t sdata;
696 1.11 jdc
697 1.21 jdc if (iic_acquire_bus(sc->sc_tag, 0))
698 1.21 jdc return;
699 1.11 jdc
700 1.11 jdc if (*props & PROP_CRITMAX) {
701 1.11 jdc if (edata->sensor == ADMTEMP_INT)
702 1.11 jdc cmd = ADM1021_INT_HIGH_WRITE;
703 1.11 jdc else
704 1.11 jdc cmd = ADM1021_EXT_HIGH_WRITE;
705 1.11 jdc
706 1.11 jdc if (limits == NULL) /* Restore defaults */
707 1.11 jdc sdata = sc->sc_highlim[edata->sensor];
708 1.11 jdc else {
709 1.11 jdc tmp = (limits->sel_critmax - 273150000) / 1000000;
710 1.11 jdc if (tmp > ADMTEMP_MAX_POS)
711 1.11 jdc sdata = ADMTEMP_MAX_POS;
712 1.11 jdc else if (tmp < 0 && sc->sc_noneg)
713 1.11 jdc sdata = 0;
714 1.11 jdc else if (tmp < ADMTEMP_MAX_NEG)
715 1.11 jdc sdata = ADMTEMP_MAX_NEG;
716 1.11 jdc else
717 1.11 jdc sdata = tmp & 0xff;
718 1.11 jdc }
719 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &sdata);
720 1.11 jdc }
721 1.11 jdc
722 1.11 jdc if (*props & PROP_CRITMIN && sc->sc_nolow == 0) {
723 1.11 jdc if (edata->sensor == ADMTEMP_INT)
724 1.11 jdc cmd = ADM1021_INT_LOW_WRITE;
725 1.11 jdc else
726 1.11 jdc cmd = ADM1021_EXT_LOW_WRITE;
727 1.11 jdc if (limits == NULL)
728 1.11 jdc sdata = sc->sc_lowlim[edata->sensor];
729 1.11 jdc else {
730 1.11 jdc tmp = (limits->sel_critmin - 273150000) / 1000000;
731 1.11 jdc if (tmp > ADMTEMP_MAX_POS)
732 1.11 jdc sdata = ADMTEMP_MAX_POS;
733 1.11 jdc else if (tmp < 0 && sc->sc_noneg)
734 1.11 jdc sdata = 0;
735 1.11 jdc else if (tmp < ADMTEMP_MAX_NEG)
736 1.11 jdc sdata = ADMTEMP_MAX_NEG;
737 1.11 jdc else
738 1.11 jdc sdata = tmp & 0xff;
739 1.11 jdc }
740 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &sdata);
741 1.11 jdc }
742 1.11 jdc
743 1.11 jdc iic_release_bus(sc->sc_tag, 0);
744 1.11 jdc }
745 1.11 jdc
746 1.11 jdc static void
747 1.12 christos admtemp_encode_temp(const uint32_t val, int8_t *sdata, uint8_t *xdata,
748 1.11 jdc const int ext11)
749 1.11 jdc {
750 1.11 jdc int32_t tmp;
751 1.11 jdc
752 1.11 jdc if (ext11) {
753 1.11 jdc /* Split temperature into high and low bytes */
754 1.11 jdc tmp = (val - 273150000) / 125000;
755 1.11 jdc *xdata = (tmp & ADM1023_EXT2_MASK) << ADM1023_EXT2_SHIFT;
756 1.11 jdc tmp -= (int32_t) (*xdata >> ADM1023_EXT2_SHIFT);
757 1.11 jdc tmp /= 8; /* 1000000 / 125000 */
758 1.11 jdc } else {
759 1.11 jdc *xdata = 0;
760 1.11 jdc tmp = (val - 273150000) / 1000000;
761 1.11 jdc }
762 1.11 jdc if (tmp > ADMTEMP_MAX_POS)
763 1.11 jdc *sdata = ADMTEMP_MAX_POS;
764 1.11 jdc else if (tmp < 0)
765 1.11 jdc *sdata = 0;
766 1.11 jdc else
767 1.11 jdc *sdata = tmp & 0xff;
768 1.11 jdc }
769 1.11 jdc
770 1.11 jdc void
771 1.11 jdc admtemp_setlim_1023(struct sysmon_envsys *sme, envsys_data_t *edata,
772 1.11 jdc sysmon_envsys_lim_t *limits, uint32_t *props)
773 1.11 jdc {
774 1.11 jdc struct admtemp_softc *sc = sme->sme_cookie;
775 1.11 jdc int ext11;
776 1.12 christos uint8_t cmd, xdata;
777 1.11 jdc int8_t sdata;
778 1.11 jdc
779 1.11 jdc if (edata->sensor == ADMTEMP_INT)
780 1.11 jdc ext11 = 0;
781 1.11 jdc else
782 1.11 jdc ext11 = 1;
783 1.11 jdc
784 1.21 jdc if (iic_acquire_bus(sc->sc_tag, 0))
785 1.21 jdc return;
786 1.11 jdc
787 1.11 jdc if (*props & PROP_CRITMAX) {
788 1.11 jdc if (edata->sensor == ADMTEMP_INT)
789 1.11 jdc cmd = ADM1021_INT_HIGH_WRITE;
790 1.11 jdc else
791 1.11 jdc cmd = ADM1021_EXT_HIGH_WRITE;
792 1.11 jdc
793 1.11 jdc if (limits == NULL) { /* Restore defaults */
794 1.11 jdc sdata = sc->sc_highlim[edata->sensor];
795 1.11 jdc xdata = sc->sc_highlim2;
796 1.11 jdc } else
797 1.11 jdc admtemp_encode_temp(limits->sel_critmax, &sdata,
798 1.11 jdc &xdata, ext11);
799 1.11 jdc
800 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &sdata);
801 1.11 jdc if (ext11) {
802 1.11 jdc cmd = ADM1023_EXT_HIGH2;
803 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &xdata);
804 1.11 jdc }
805 1.11 jdc }
806 1.11 jdc
807 1.11 jdc if (*props & PROP_CRITMIN) {
808 1.11 jdc if (edata->sensor == ADMTEMP_INT)
809 1.11 jdc cmd = ADM1021_INT_LOW_WRITE;
810 1.11 jdc else
811 1.11 jdc cmd = ADM1021_EXT_LOW_WRITE;
812 1.11 jdc if (limits == NULL) {
813 1.11 jdc sdata = sc->sc_lowlim[edata->sensor];
814 1.11 jdc xdata = sc->sc_lowlim2;
815 1.11 jdc } else
816 1.11 jdc admtemp_encode_temp(limits->sel_critmax, &sdata,
817 1.11 jdc &xdata, ext11);
818 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &sdata);
819 1.11 jdc if (ext11) {
820 1.11 jdc cmd = ADM1023_EXT_LOW2;
821 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &xdata);
822 1.11 jdc }
823 1.11 jdc }
824 1.11 jdc
825 1.11 jdc iic_release_bus(sc->sc_tag, 0);
826 1.11 jdc }
827 1.11 jdc
828 1.11 jdc void
829 1.11 jdc admtemp_setlim_1032(struct sysmon_envsys *sme, envsys_data_t *edata,
830 1.11 jdc sysmon_envsys_lim_t *limits, uint32_t *props)
831 1.11 jdc {
832 1.11 jdc struct admtemp_softc *sc = sme->sme_cookie;
833 1.11 jdc int ext11;
834 1.12 christos uint8_t cmd, xdata;
835 1.11 jdc int8_t sdata;
836 1.11 jdc
837 1.11 jdc if (edata->sensor == ADMTEMP_INT)
838 1.11 jdc ext11 = 0;
839 1.11 jdc else
840 1.11 jdc ext11 = 1;
841 1.11 jdc
842 1.21 jdc if (iic_acquire_bus(sc->sc_tag, 0))
843 1.21 jdc return;
844 1.11 jdc
845 1.11 jdc if (*props & PROP_CRITMAX) {
846 1.11 jdc if (edata->sensor == ADMTEMP_INT)
847 1.11 jdc cmd = ADM1032_INT_THERM;
848 1.11 jdc else
849 1.11 jdc cmd = ADM1032_EXT_THERM;
850 1.11 jdc if (limits == NULL) /* Restore default */
851 1.11 jdc sdata = sc->sc_thermlim[edata->sensor];
852 1.11 jdc else
853 1.11 jdc admtemp_encode_temp(limits->sel_critmax, &sdata,
854 1.11 jdc &xdata, 0);
855 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &sdata);
856 1.11 jdc }
857 1.11 jdc
858 1.11 jdc if (*props & PROP_WARNMAX) {
859 1.11 jdc if (edata->sensor == ADMTEMP_INT)
860 1.11 jdc cmd = ADM1021_INT_HIGH_WRITE;
861 1.11 jdc else
862 1.11 jdc cmd = ADM1021_EXT_HIGH_WRITE;
863 1.11 jdc
864 1.11 jdc if (limits == NULL) { /* Restore defaults */
865 1.11 jdc sdata = sc->sc_highlim[edata->sensor];
866 1.11 jdc xdata = sc->sc_highlim2;
867 1.11 jdc } else
868 1.11 jdc admtemp_encode_temp(limits->sel_warnmax, &sdata,
869 1.11 jdc &xdata, ext11);
870 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &sdata);
871 1.11 jdc
872 1.11 jdc if (ext11) {
873 1.11 jdc cmd = ADM1023_EXT_HIGH2;
874 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &xdata);
875 1.11 jdc }
876 1.11 jdc }
877 1.11 jdc
878 1.11 jdc if (*props & PROP_WARNMIN) {
879 1.11 jdc if (edata->sensor == ADMTEMP_INT)
880 1.11 jdc cmd = ADM1021_INT_LOW_WRITE;
881 1.11 jdc else
882 1.11 jdc cmd = ADM1021_EXT_LOW_WRITE;
883 1.11 jdc if (limits == NULL) {
884 1.11 jdc sdata = sc->sc_lowlim[edata->sensor];
885 1.11 jdc xdata = sc->sc_lowlim2;
886 1.11 jdc } else
887 1.11 jdc admtemp_encode_temp(limits->sel_warnmin, &sdata,
888 1.11 jdc &xdata, ext11);
889 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &sdata);
890 1.11 jdc
891 1.11 jdc if (ext11) {
892 1.11 jdc cmd = ADM1023_EXT_LOW2;
893 1.12 christos admtemp_exec(sc, I2C_OP_WRITE_WITH_STOP, &cmd, &xdata);
894 1.11 jdc }
895 1.11 jdc }
896 1.1 jkunz
897 1.1 jkunz iic_release_bus(sc->sc_tag, 0);
898 1.1 jkunz }
899