itesio_isa.c revision 1.30 1 1.30 mlelstv /* $NetBSD: itesio_isa.c,v 1.30 2022/06/29 15:56:58 mlelstv Exp $ */
2 1.1 xtraeme /* Derived from $OpenBSD: it.c,v 1.19 2006/04/10 00:57:54 deraadt Exp $ */
3 1.1 xtraeme
4 1.1 xtraeme /*
5 1.13 xtraeme * Copyright (c) 2006-2007 Juan Romero Pardines <xtraeme (at) netbsd.org>
6 1.1 xtraeme * Copyright (c) 2003 Julien Bordet <zejames (at) greyhats.org>
7 1.1 xtraeme * All rights reserved.
8 1.1 xtraeme *
9 1.1 xtraeme * Redistribution and use in source and binary forms, with or without
10 1.1 xtraeme * modification, are permitted provided that the following conditions
11 1.1 xtraeme * are met:
12 1.1 xtraeme * 1. Redistributions of source code must retain the above copyright
13 1.1 xtraeme * notice, this list of conditions and the following disclaimer.
14 1.1 xtraeme * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 xtraeme * notice, this list of conditions and the following disclaimer in the
16 1.1 xtraeme * documentation and/or other materials provided with the distribution.
17 1.1 xtraeme *
18 1.1 xtraeme * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 xtraeme * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITD TO, THE IMPLIED WARRANTIES
20 1.1 xtraeme * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 xtraeme * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 xtraeme * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 xtraeme * NOT LIMITD TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 xtraeme * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 xtraeme * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 xtraeme * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 1.1 xtraeme * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 xtraeme */
29 1.1 xtraeme
30 1.1 xtraeme /*
31 1.1 xtraeme * Driver for the iTE IT87xxF Super I/O. Currently supporting
32 1.11 xtraeme * the Environmental Controller to monitor the sensors and the
33 1.11 xtraeme * Watchdog Timer.
34 1.1 xtraeme */
35 1.1 xtraeme
36 1.1 xtraeme #include <sys/cdefs.h>
37 1.30 mlelstv __KERNEL_RCSID(0, "$NetBSD: itesio_isa.c,v 1.30 2022/06/29 15:56:58 mlelstv Exp $");
38 1.1 xtraeme
39 1.1 xtraeme #include <sys/param.h>
40 1.1 xtraeme #include <sys/kernel.h>
41 1.1 xtraeme #include <sys/device.h>
42 1.23 jmcneill #include <sys/module.h>
43 1.1 xtraeme #include <sys/bus.h>
44 1.29 nonaka #include <sys/kmem.h>
45 1.1 xtraeme
46 1.1 xtraeme #include <dev/isa/isareg.h>
47 1.1 xtraeme #include <dev/isa/isavar.h>
48 1.1 xtraeme
49 1.1 xtraeme #include <dev/sysmon/sysmonvar.h>
50 1.1 xtraeme
51 1.1 xtraeme #include <dev/isa/itesio_isavar.h>
52 1.1 xtraeme
53 1.1 xtraeme #define IT_VOLTSTART_IDX 3 /* voltage start index */
54 1.1 xtraeme #define IT_FANSTART_IDX 12 /* fan start index */
55 1.1 xtraeme
56 1.29 nonaka /* IT8625: 3 temps, 10 volts, 6 fans */
57 1.29 nonaka #define IT8625_NUM_SENSORS 19
58 1.29 nonaka #define IT8625_VOLTSTART_IDX 3 /* voltage start index */
59 1.29 nonaka #define IT8625_FANSTART_IDX 13 /* fan start index */
60 1.29 nonaka
61 1.1 xtraeme #if defined(ITESIO_DEBUG)
62 1.1 xtraeme #define DPRINTF(x) do { printf x; } while (0)
63 1.1 xtraeme #else
64 1.1 xtraeme #define DPRINTF(x)
65 1.1 xtraeme #endif
66 1.1 xtraeme
67 1.1 xtraeme /*
68 1.1 xtraeme * IT87-compatible chips can typically measure voltages up to 4.096 V.
69 1.1 xtraeme * To measure higher voltages the input is attenuated with (external)
70 1.1 xtraeme * resistors. Negative voltages are measured using a reference
71 1.1 xtraeme * voltage. So we have to convert the sensor values back to real
72 1.1 xtraeme * voltages by applying the appropriate resistor factor.
73 1.1 xtraeme */
74 1.1 xtraeme #define RFACT_NONE 10000
75 1.1 xtraeme #define RFACT(x, y) (RFACT_NONE * ((x) + (y)) / (y))
76 1.1 xtraeme
77 1.1 xtraeme /* autoconf(9) functions */
78 1.14 xtraeme static int itesio_isa_match(device_t, cfdata_t, void *);
79 1.1 xtraeme static void itesio_isa_attach(device_t, device_t, void *);
80 1.1 xtraeme static int itesio_isa_detach(device_t, int);
81 1.1 xtraeme
82 1.1 xtraeme CFATTACH_DECL_NEW(itesio, sizeof(struct itesio_softc),
83 1.1 xtraeme itesio_isa_match, itesio_isa_attach, itesio_isa_detach, NULL);
84 1.1 xtraeme
85 1.1 xtraeme /* driver functions */
86 1.1 xtraeme static uint8_t itesio_ecreadreg(struct itesio_softc *, int);
87 1.1 xtraeme static void itesio_ecwritereg(struct itesio_softc *, int, int);
88 1.1 xtraeme static uint8_t itesio_readreg(bus_space_tag_t, bus_space_handle_t, int);
89 1.1 xtraeme static void itesio_writereg(bus_space_tag_t, bus_space_handle_t, int, int);
90 1.1 xtraeme static void itesio_enter(bus_space_tag_t, bus_space_handle_t);
91 1.1 xtraeme static void itesio_exit(bus_space_tag_t, bus_space_handle_t);
92 1.1 xtraeme
93 1.10 xtraeme /* sysmon_envsys(9) glue */
94 1.1 xtraeme static void itesio_setup_sensors(struct itesio_softc *);
95 1.1 xtraeme static void itesio_refresh_temp(struct itesio_softc *, envsys_data_t *);
96 1.1 xtraeme static void itesio_refresh_volts(struct itesio_softc *, envsys_data_t *);
97 1.1 xtraeme static void itesio_refresh_fans(struct itesio_softc *, envsys_data_t *);
98 1.4 xtraeme static void itesio_refresh(struct sysmon_envsys *, envsys_data_t *);
99 1.29 nonaka static void itesio_refresh_it8705_fans(struct itesio_softc *,
100 1.29 nonaka envsys_data_t *);
101 1.29 nonaka static void itesio_setup_it8625_sensors(struct itesio_softc *);
102 1.29 nonaka static void itesio_refresh_it8625_volts(struct itesio_softc *,
103 1.29 nonaka envsys_data_t *);
104 1.29 nonaka static void itesio_refresh_it8625_fans(struct itesio_softc *,
105 1.29 nonaka envsys_data_t *);
106 1.1 xtraeme
107 1.9 xtraeme /* sysmon_wdog glue */
108 1.19 pgoyette static bool itesio_wdt_suspend(device_t, const pmf_qual_t *);
109 1.9 xtraeme static int itesio_wdt_setmode(struct sysmon_wdog *);
110 1.9 xtraeme static int itesio_wdt_tickle(struct sysmon_wdog *);
111 1.9 xtraeme
112 1.1 xtraeme /* rfact values for voltage sensors */
113 1.1 xtraeme static const int itesio_vrfact[] = {
114 1.1 xtraeme RFACT_NONE, /* VCORE_A */
115 1.1 xtraeme RFACT_NONE, /* VCORE_B */
116 1.1 xtraeme RFACT_NONE, /* +3.3V */
117 1.1 xtraeme RFACT(68, 100), /* +5V */
118 1.1 xtraeme RFACT(30, 10), /* +12V */
119 1.16 xtraeme RFACT(21, 10), /* -5V */
120 1.16 xtraeme RFACT(83, 20), /* -12V */
121 1.1 xtraeme RFACT(68, 100), /* STANDBY */
122 1.1 xtraeme RFACT_NONE /* VBAT */
123 1.1 xtraeme };
124 1.1 xtraeme
125 1.29 nonaka static const struct itesio_config itesio_config[] = {
126 1.29 nonaka {
127 1.29 nonaka .chipid = ITESIO_ID8625,
128 1.29 nonaka .no_wdt = true,
129 1.29 nonaka .num_sensors = IT8625_NUM_SENSORS,
130 1.29 nonaka .voltstart_idx = IT8625_VOLTSTART_IDX,
131 1.29 nonaka .fanstart_idx = IT8625_FANSTART_IDX,
132 1.29 nonaka .setup_sensors = itesio_setup_it8625_sensors,
133 1.29 nonaka .refresh_volts = itesio_refresh_it8625_volts,
134 1.29 nonaka .refresh_fans = itesio_refresh_it8625_fans,
135 1.29 nonaka },
136 1.29 nonaka { .chipid = ITESIO_ID8628, },
137 1.29 nonaka { .chipid = ITESIO_ID8655, },
138 1.29 nonaka {
139 1.29 nonaka .chipid = ITESIO_ID8705,
140 1.29 nonaka .no_wdt = true,
141 1.29 nonaka .refresh_fans = itesio_refresh_it8705_fans,
142 1.29 nonaka },
143 1.29 nonaka {
144 1.29 nonaka .chipid = ITESIO_ID8712,
145 1.29 nonaka .refresh_fans = itesio_refresh_it8705_fans,
146 1.29 nonaka },
147 1.29 nonaka { .chipid = ITESIO_ID8716, },
148 1.29 nonaka { .chipid = ITESIO_ID8718, },
149 1.29 nonaka { .chipid = ITESIO_ID8720, },
150 1.29 nonaka { .chipid = ITESIO_ID8721, },
151 1.29 nonaka { .chipid = ITESIO_ID8726, },
152 1.29 nonaka { .chipid = ITESIO_ID8728, },
153 1.29 nonaka { .chipid = ITESIO_ID8771, },
154 1.29 nonaka { .chipid = ITESIO_ID8772, },
155 1.29 nonaka };
156 1.29 nonaka
157 1.29 nonaka static const struct itesio_config *
158 1.29 nonaka itesio_isa_find_config(uint16_t chipid)
159 1.29 nonaka {
160 1.29 nonaka const struct itesio_config *ic;
161 1.29 nonaka size_t i;
162 1.29 nonaka
163 1.29 nonaka for (i = 0; i < __arraycount(itesio_config); i++) {
164 1.29 nonaka ic = &itesio_config[i];
165 1.29 nonaka if (chipid == ic->chipid)
166 1.29 nonaka return ic;
167 1.29 nonaka }
168 1.29 nonaka return NULL;
169 1.29 nonaka }
170 1.29 nonaka
171 1.1 xtraeme static int
172 1.14 xtraeme itesio_isa_match(device_t parent, cfdata_t match, void *aux)
173 1.1 xtraeme {
174 1.1 xtraeme struct isa_attach_args *ia = aux;
175 1.1 xtraeme bus_space_handle_t ioh;
176 1.29 nonaka const struct itesio_config *ic;
177 1.1 xtraeme uint16_t cr;
178 1.1 xtraeme
179 1.1 xtraeme /* Must supply an address */
180 1.1 xtraeme if (ia->ia_nio < 1)
181 1.1 xtraeme return 0;
182 1.1 xtraeme
183 1.1 xtraeme if (ISA_DIRECT_CONFIG(ia))
184 1.1 xtraeme return 0;
185 1.1 xtraeme
186 1.1 xtraeme if (ia->ia_io[0].ir_addr == ISA_UNKNOWN_PORT)
187 1.1 xtraeme return 0;
188 1.1 xtraeme
189 1.1 xtraeme if (bus_space_map(ia->ia_iot, ia->ia_io[0].ir_addr, 2, 0, &ioh))
190 1.1 xtraeme return 0;
191 1.1 xtraeme
192 1.1 xtraeme itesio_enter(ia->ia_iot, ioh);
193 1.1 xtraeme cr = (itesio_readreg(ia->ia_iot, ioh, ITESIO_CHIPID1) << 8);
194 1.1 xtraeme cr |= itesio_readreg(ia->ia_iot, ioh, ITESIO_CHIPID2);
195 1.1 xtraeme itesio_exit(ia->ia_iot, ioh);
196 1.1 xtraeme bus_space_unmap(ia->ia_iot, ioh, 2);
197 1.1 xtraeme
198 1.29 nonaka ic = itesio_isa_find_config(cr);
199 1.29 nonaka if (ic == NULL)
200 1.1 xtraeme return 0;
201 1.29 nonaka
202 1.29 nonaka ia->ia_nio = 1;
203 1.29 nonaka ia->ia_io[0].ir_size = 2;
204 1.29 nonaka ia->ia_niomem = 0;
205 1.29 nonaka ia->ia_nirq = 0;
206 1.29 nonaka ia->ia_ndrq = 0;
207 1.29 nonaka return 1;
208 1.1 xtraeme }
209 1.1 xtraeme
210 1.1 xtraeme static void
211 1.1 xtraeme itesio_isa_attach(device_t parent, device_t self, void *aux)
212 1.1 xtraeme {
213 1.1 xtraeme struct itesio_softc *sc = device_private(self);
214 1.1 xtraeme struct isa_attach_args *ia = aux;
215 1.29 nonaka const struct itesio_config *ic;
216 1.29 nonaka uint32_t i;
217 1.29 nonaka int error;
218 1.1 xtraeme uint8_t cr;
219 1.1 xtraeme
220 1.9 xtraeme sc->sc_iot = ia->ia_iot;
221 1.1 xtraeme
222 1.9 xtraeme if (bus_space_map(sc->sc_iot, ia->ia_io[0].ir_addr, 2, 0,
223 1.18 jakllsch &sc->sc_pnp_ioh)) {
224 1.18 jakllsch aprint_error(": can't map pnp i/o space\n");
225 1.1 xtraeme return;
226 1.1 xtraeme }
227 1.6 jmcneill
228 1.6 jmcneill aprint_naive("\n");
229 1.6 jmcneill
230 1.1 xtraeme /*
231 1.1 xtraeme * Enter to the Super I/O MB PNP mode.
232 1.1 xtraeme */
233 1.18 jakllsch itesio_enter(sc->sc_iot, sc->sc_pnp_ioh);
234 1.1 xtraeme /*
235 1.1 xtraeme * Get info from the Super I/O Global Configuration Registers:
236 1.1 xtraeme * Chip IDs and Device Revision.
237 1.1 xtraeme */
238 1.18 jakllsch sc->sc_chipid = (itesio_readreg(sc->sc_iot, sc->sc_pnp_ioh,
239 1.9 xtraeme ITESIO_CHIPID1) << 8);
240 1.18 jakllsch sc->sc_chipid |= itesio_readreg(sc->sc_iot, sc->sc_pnp_ioh,
241 1.9 xtraeme ITESIO_CHIPID2);
242 1.18 jakllsch sc->sc_devrev = (itesio_readreg(sc->sc_iot, sc->sc_pnp_ioh,
243 1.9 xtraeme ITESIO_DEVREV) & 0x0f);
244 1.1 xtraeme /*
245 1.1 xtraeme * Select the EC LDN to get the Base Address.
246 1.1 xtraeme */
247 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_LDNSEL,
248 1.18 jakllsch ITESIO_EC_LDN);
249 1.1 xtraeme sc->sc_hwmon_baseaddr =
250 1.18 jakllsch (itesio_readreg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_EC_MSB) << 8);
251 1.18 jakllsch sc->sc_hwmon_baseaddr |= itesio_readreg(sc->sc_iot, sc->sc_pnp_ioh,
252 1.9 xtraeme ITESIO_EC_LSB);
253 1.1 xtraeme /*
254 1.9 xtraeme * We are done, exit MB PNP mode.
255 1.1 xtraeme */
256 1.18 jakllsch itesio_exit(sc->sc_iot, sc->sc_pnp_ioh);
257 1.1 xtraeme
258 1.29 nonaka ic = itesio_isa_find_config(sc->sc_chipid);
259 1.29 nonaka if (ic == NULL) {
260 1.29 nonaka aprint_error(": unknown chipid: %04x", sc->sc_chipid);
261 1.29 nonaka goto out2;
262 1.29 nonaka }
263 1.29 nonaka sc->sc_config = *ic;
264 1.29 nonaka if (sc->sc_config.num_sensors == 0)
265 1.29 nonaka sc->sc_config.num_sensors = IT_NUM_SENSORS;
266 1.29 nonaka if (sc->sc_config.voltstart_idx == 0)
267 1.29 nonaka sc->sc_config.voltstart_idx = IT_VOLTSTART_IDX;
268 1.29 nonaka if (sc->sc_config.fanstart_idx == 0)
269 1.29 nonaka sc->sc_config.fanstart_idx = IT_FANSTART_IDX;
270 1.29 nonaka if (sc->sc_config.setup_sensors == NULL)
271 1.29 nonaka sc->sc_config.setup_sensors = itesio_setup_sensors;
272 1.29 nonaka if (sc->sc_config.refresh_temp == NULL)
273 1.29 nonaka sc->sc_config.refresh_temp = itesio_refresh_temp;
274 1.29 nonaka if (sc->sc_config.refresh_volts == NULL)
275 1.29 nonaka sc->sc_config.refresh_volts = itesio_refresh_volts;
276 1.29 nonaka if (sc->sc_config.refresh_fans == NULL)
277 1.29 nonaka sc->sc_config.refresh_fans = itesio_refresh_fans;
278 1.29 nonaka
279 1.1 xtraeme aprint_normal(": iTE IT%4xF Super I/O (rev %d)\n",
280 1.1 xtraeme sc->sc_chipid, sc->sc_devrev);
281 1.1 xtraeme aprint_normal_dev(self, "Hardware Monitor registers at 0x%x\n",
282 1.1 xtraeme sc->sc_hwmon_baseaddr);
283 1.1 xtraeme
284 1.18 jakllsch if (bus_space_map(sc->sc_iot, sc->sc_hwmon_baseaddr, 8, 0,
285 1.9 xtraeme &sc->sc_ec_ioh)) {
286 1.1 xtraeme aprint_error_dev(self, "cannot map hwmon i/o space\n");
287 1.15 xtraeme goto out2;
288 1.1 xtraeme }
289 1.1 xtraeme
290 1.1 xtraeme sc->sc_hwmon_mapped = true;
291 1.1 xtraeme
292 1.1 xtraeme /* Activate monitoring */
293 1.1 xtraeme cr = itesio_ecreadreg(sc, ITESIO_EC_CONFIG);
294 1.1 xtraeme SET(cr, 0x01);
295 1.1 xtraeme itesio_ecwritereg(sc, ITESIO_EC_CONFIG, cr);
296 1.1 xtraeme
297 1.1 xtraeme #ifdef notyet
298 1.1 xtraeme /* Enable beep alarms */
299 1.1 xtraeme cr = itesio_ecreadreg(sc, ITESIO_EC_BEEPEER);
300 1.1 xtraeme SET(cr, 0x02); /* Voltage exceeds limit */
301 1.1 xtraeme SET(cr, 0x04); /* Temperature exceeds limit */
302 1.1 xtraeme itesio_ecwritereg(sc, ITESIO_EC_BEEPEER, cr);
303 1.1 xtraeme #endif
304 1.1 xtraeme
305 1.4 xtraeme /*
306 1.4 xtraeme * Initialize and attach sensors.
307 1.4 xtraeme */
308 1.29 nonaka (*sc->sc_config.setup_sensors)(sc);
309 1.4 xtraeme sc->sc_sme = sysmon_envsys_create();
310 1.29 nonaka for (i = 0; i < sc->sc_config.num_sensors; i++) {
311 1.4 xtraeme if (sysmon_envsys_sensor_attach(sc->sc_sme,
312 1.4 xtraeme &sc->sc_sensor[i])) {
313 1.4 xtraeme sysmon_envsys_destroy(sc->sc_sme);
314 1.30 mlelstv sc->sc_sme = NULL;
315 1.15 xtraeme goto out;
316 1.4 xtraeme }
317 1.1 xtraeme }
318 1.1 xtraeme /*
319 1.1 xtraeme * Hook into the system monitor.
320 1.1 xtraeme */
321 1.4 xtraeme sc->sc_sme->sme_name = device_xname(self);
322 1.4 xtraeme sc->sc_sme->sme_cookie = sc;
323 1.4 xtraeme sc->sc_sme->sme_refresh = itesio_refresh;
324 1.1 xtraeme
325 1.29 nonaka if ((error = sysmon_envsys_register(sc->sc_sme))) {
326 1.5 xtraeme aprint_error_dev(self,
327 1.29 nonaka "unable to register with sysmon (%d)\n", error);
328 1.4 xtraeme sysmon_envsys_destroy(sc->sc_sme);
329 1.30 mlelstv sc->sc_sme = NULL;
330 1.15 xtraeme goto out;
331 1.1 xtraeme }
332 1.1 xtraeme sc->sc_hwmon_enabled = true;
333 1.9 xtraeme
334 1.20 pgoyette if (!pmf_device_register(self, NULL, NULL))
335 1.20 pgoyette aprint_error_dev(self, "couldn't establish power handler\n");
336 1.20 pgoyette
337 1.29 nonaka /* Some chips don't support the WDT */
338 1.29 nonaka if (sc->sc_config.no_wdt)
339 1.15 xtraeme goto out2;
340 1.9 xtraeme
341 1.9 xtraeme /*
342 1.9 xtraeme * Initialize the watchdog timer.
343 1.9 xtraeme */
344 1.9 xtraeme sc->sc_smw.smw_name = device_xname(self);
345 1.9 xtraeme sc->sc_smw.smw_cookie = sc;
346 1.9 xtraeme sc->sc_smw.smw_setmode = itesio_wdt_setmode;
347 1.9 xtraeme sc->sc_smw.smw_tickle = itesio_wdt_tickle;
348 1.9 xtraeme sc->sc_smw.smw_period = 60;
349 1.9 xtraeme
350 1.9 xtraeme if (sysmon_wdog_register(&sc->sc_smw)) {
351 1.9 xtraeme aprint_error_dev(self, "unable to register watchdog timer\n");
352 1.15 xtraeme goto out2;
353 1.9 xtraeme }
354 1.9 xtraeme sc->sc_wdt_enabled = true;
355 1.9 xtraeme aprint_normal_dev(self, "Watchdog Timer present\n");
356 1.19 pgoyette
357 1.20 pgoyette pmf_device_deregister(self);
358 1.19 pgoyette if (!pmf_device_register(self, itesio_wdt_suspend, NULL))
359 1.19 pgoyette aprint_error_dev(self, "couldn't establish power handler\n");
360 1.19 pgoyette
361 1.15 xtraeme return;
362 1.15 xtraeme
363 1.15 xtraeme out:
364 1.18 jakllsch bus_space_unmap(sc->sc_iot, sc->sc_ec_ioh, 8);
365 1.15 xtraeme out2:
366 1.18 jakllsch bus_space_unmap(sc->sc_iot, sc->sc_pnp_ioh, 2);
367 1.1 xtraeme }
368 1.1 xtraeme
369 1.1 xtraeme static int
370 1.1 xtraeme itesio_isa_detach(device_t self, int flags)
371 1.1 xtraeme {
372 1.1 xtraeme struct itesio_softc *sc = device_private(self);
373 1.1 xtraeme
374 1.1 xtraeme if (sc->sc_hwmon_enabled)
375 1.4 xtraeme sysmon_envsys_unregister(sc->sc_sme);
376 1.1 xtraeme if (sc->sc_hwmon_mapped)
377 1.18 jakllsch bus_space_unmap(sc->sc_iot, sc->sc_ec_ioh, 8);
378 1.9 xtraeme if (sc->sc_wdt_enabled) {
379 1.12 wiz sysmon_wdog_unregister(&sc->sc_smw);
380 1.18 jakllsch bus_space_unmap(sc->sc_iot, sc->sc_pnp_ioh, 2);
381 1.9 xtraeme }
382 1.9 xtraeme
383 1.29 nonaka if (sc->sc_sensor != NULL) {
384 1.29 nonaka kmem_free(sc->sc_sensor,
385 1.29 nonaka sizeof(sc->sc_sensor[0]) * sc->sc_config.num_sensors);
386 1.29 nonaka }
387 1.29 nonaka
388 1.1 xtraeme return 0;
389 1.1 xtraeme }
390 1.1 xtraeme
391 1.19 pgoyette static bool
392 1.19 pgoyette itesio_wdt_suspend(device_t dev, const pmf_qual_t *qual)
393 1.19 pgoyette {
394 1.19 pgoyette struct itesio_softc *sc = device_private(dev);
395 1.19 pgoyette
396 1.19 pgoyette /* Don't allow suspend if watchdog is armed */
397 1.19 pgoyette if ((sc->sc_smw.smw_mode & WDOG_MODE_MASK) != WDOG_MODE_DISARMED)
398 1.19 pgoyette return false;
399 1.19 pgoyette return true;
400 1.19 pgoyette }
401 1.19 pgoyette
402 1.1 xtraeme /*
403 1.1 xtraeme * Functions to read/write to the Environmental Controller.
404 1.1 xtraeme */
405 1.1 xtraeme static uint8_t
406 1.1 xtraeme itesio_ecreadreg(struct itesio_softc *sc, int reg)
407 1.1 xtraeme {
408 1.18 jakllsch bus_space_write_1(sc->sc_iot, sc->sc_ec_ioh, ITESIO_EC_ADDR, reg);
409 1.18 jakllsch return bus_space_read_1(sc->sc_iot, sc->sc_ec_ioh, ITESIO_EC_DATA);
410 1.1 xtraeme }
411 1.1 xtraeme
412 1.1 xtraeme static void
413 1.1 xtraeme itesio_ecwritereg(struct itesio_softc *sc, int reg, int val)
414 1.1 xtraeme {
415 1.18 jakllsch bus_space_write_1(sc->sc_iot, sc->sc_ec_ioh, ITESIO_EC_ADDR, reg);
416 1.18 jakllsch bus_space_write_1(sc->sc_iot, sc->sc_ec_ioh, ITESIO_EC_DATA, val);
417 1.1 xtraeme }
418 1.1 xtraeme
419 1.1 xtraeme /*
420 1.1 xtraeme * Functions to enter/exit/read/write to the Super I/O.
421 1.1 xtraeme */
422 1.1 xtraeme static uint8_t
423 1.1 xtraeme itesio_readreg(bus_space_tag_t iot, bus_space_handle_t ioh, int reg)
424 1.1 xtraeme {
425 1.1 xtraeme bus_space_write_1(iot, ioh, ITESIO_ADDR, reg);
426 1.1 xtraeme return bus_space_read_1(iot, ioh, ITESIO_DATA);
427 1.1 xtraeme }
428 1.1 xtraeme
429 1.1 xtraeme static void
430 1.1 xtraeme itesio_writereg(bus_space_tag_t iot, bus_space_handle_t ioh, int reg, int val)
431 1.1 xtraeme {
432 1.1 xtraeme bus_space_write_1(iot, ioh, ITESIO_ADDR, reg);
433 1.1 xtraeme bus_space_write_1(iot, ioh, ITESIO_DATA, val);
434 1.1 xtraeme }
435 1.1 xtraeme
436 1.1 xtraeme static void
437 1.1 xtraeme itesio_enter(bus_space_tag_t iot, bus_space_handle_t ioh)
438 1.1 xtraeme {
439 1.1 xtraeme bus_space_write_1(iot, ioh, ITESIO_ADDR, 0x87);
440 1.1 xtraeme bus_space_write_1(iot, ioh, ITESIO_ADDR, 0x01);
441 1.1 xtraeme bus_space_write_1(iot, ioh, ITESIO_ADDR, 0x55);
442 1.1 xtraeme bus_space_write_1(iot, ioh, ITESIO_ADDR, 0x55);
443 1.1 xtraeme }
444 1.1 xtraeme
445 1.1 xtraeme static void
446 1.1 xtraeme itesio_exit(bus_space_tag_t iot, bus_space_handle_t ioh)
447 1.1 xtraeme {
448 1.1 xtraeme bus_space_write_1(iot, ioh, ITESIO_ADDR, 0x02);
449 1.1 xtraeme bus_space_write_1(iot, ioh, ITESIO_DATA, 0x02);
450 1.1 xtraeme }
451 1.1 xtraeme
452 1.1 xtraeme
453 1.1 xtraeme #define COPYDESCR(x, y) \
454 1.1 xtraeme do { \
455 1.1 xtraeme strlcpy((x), (y), sizeof(x)); \
456 1.1 xtraeme } while (0)
457 1.1 xtraeme /*
458 1.1 xtraeme * sysmon_envsys(9) glue.
459 1.1 xtraeme */
460 1.1 xtraeme static void
461 1.29 nonaka itesio_setup_sensors_common(struct itesio_softc *sc)
462 1.1 xtraeme {
463 1.29 nonaka const struct itesio_config *ic = &sc->sc_config;
464 1.29 nonaka size_t allocsz;
465 1.29 nonaka uint32_t i;
466 1.29 nonaka
467 1.29 nonaka allocsz = sizeof(sc->sc_sensor[0]) * ic->num_sensors;
468 1.29 nonaka sc->sc_sensor = kmem_zalloc(allocsz, KM_SLEEP);
469 1.1 xtraeme
470 1.1 xtraeme /* temperatures */
471 1.29 nonaka for (i = 0; i < ic->voltstart_idx; i++)
472 1.4 xtraeme sc->sc_sensor[i].units = ENVSYS_STEMP;
473 1.1 xtraeme
474 1.29 nonaka /* voltages */
475 1.29 nonaka for (i = ic->voltstart_idx; i < ic->fanstart_idx; i++) {
476 1.29 nonaka sc->sc_sensor[i].units = ENVSYS_SVOLTS_DC;
477 1.29 nonaka sc->sc_sensor[i].flags = ENVSYS_FCHANGERFACT;
478 1.29 nonaka }
479 1.29 nonaka
480 1.29 nonaka /* fans */
481 1.29 nonaka for (i = ic->fanstart_idx; i < ic->num_sensors; i++)
482 1.29 nonaka sc->sc_sensor[i].units = ENVSYS_SFANRPM;
483 1.29 nonaka
484 1.29 nonaka /* all */
485 1.29 nonaka for (i = 0; i < ic->num_sensors; i++)
486 1.29 nonaka sc->sc_sensor[i].state = ENVSYS_SINVALID;
487 1.29 nonaka }
488 1.29 nonaka
489 1.29 nonaka static void
490 1.29 nonaka itesio_setup_sensors(struct itesio_softc *sc)
491 1.29 nonaka {
492 1.29 nonaka
493 1.29 nonaka itesio_setup_sensors_common(sc);
494 1.29 nonaka
495 1.29 nonaka /* temperatures */
496 1.4 xtraeme COPYDESCR(sc->sc_sensor[0].desc, "CPU Temp");
497 1.4 xtraeme COPYDESCR(sc->sc_sensor[1].desc, "System Temp");
498 1.4 xtraeme COPYDESCR(sc->sc_sensor[2].desc, "Aux Temp");
499 1.1 xtraeme
500 1.1 xtraeme /* voltages */
501 1.4 xtraeme COPYDESCR(sc->sc_sensor[3].desc, "VCORE_A");
502 1.4 xtraeme COPYDESCR(sc->sc_sensor[4].desc, "VCORE_B");
503 1.4 xtraeme COPYDESCR(sc->sc_sensor[5].desc, "+3.3V");
504 1.4 xtraeme COPYDESCR(sc->sc_sensor[6].desc, "+5V");
505 1.4 xtraeme COPYDESCR(sc->sc_sensor[7].desc, "+12V");
506 1.16 xtraeme COPYDESCR(sc->sc_sensor[8].desc, "-5V");
507 1.16 xtraeme COPYDESCR(sc->sc_sensor[9].desc, "-12V");
508 1.4 xtraeme COPYDESCR(sc->sc_sensor[10].desc, "STANDBY");
509 1.4 xtraeme COPYDESCR(sc->sc_sensor[11].desc, "VBAT");
510 1.1 xtraeme
511 1.1 xtraeme /* fans */
512 1.4 xtraeme COPYDESCR(sc->sc_sensor[12].desc, "CPU Fan");
513 1.4 xtraeme COPYDESCR(sc->sc_sensor[13].desc, "System Fan");
514 1.4 xtraeme COPYDESCR(sc->sc_sensor[14].desc, "Aux Fan");
515 1.29 nonaka }
516 1.29 nonaka
517 1.29 nonaka static void
518 1.29 nonaka itesio_setup_it8625_sensors(struct itesio_softc *sc)
519 1.29 nonaka {
520 1.29 nonaka
521 1.29 nonaka itesio_setup_sensors_common(sc);
522 1.29 nonaka
523 1.29 nonaka /* temperatures */
524 1.29 nonaka COPYDESCR(sc->sc_sensor[0].desc, "Temp0");
525 1.29 nonaka COPYDESCR(sc->sc_sensor[1].desc, "Temp1");
526 1.29 nonaka COPYDESCR(sc->sc_sensor[2].desc, "Temp2");
527 1.22 pgoyette
528 1.29 nonaka /* voltages */
529 1.29 nonaka COPYDESCR(sc->sc_sensor[3].desc, "VIN0");
530 1.29 nonaka COPYDESCR(sc->sc_sensor[4].desc, "VIN1");
531 1.29 nonaka COPYDESCR(sc->sc_sensor[5].desc, "VIN2");
532 1.29 nonaka COPYDESCR(sc->sc_sensor[6].desc, "VIN3");
533 1.29 nonaka COPYDESCR(sc->sc_sensor[7].desc, "VIN4");
534 1.29 nonaka COPYDESCR(sc->sc_sensor[8].desc, "VIN5");
535 1.29 nonaka COPYDESCR(sc->sc_sensor[9].desc, "VIN6");
536 1.29 nonaka COPYDESCR(sc->sc_sensor[10].desc, "Internal 3VSB");
537 1.29 nonaka COPYDESCR(sc->sc_sensor[11].desc, "VBAT");
538 1.29 nonaka COPYDESCR(sc->sc_sensor[12].desc, "Internal AVCC3");
539 1.29 nonaka
540 1.29 nonaka /* fans */
541 1.29 nonaka COPYDESCR(sc->sc_sensor[13].desc, "Fan0");
542 1.29 nonaka COPYDESCR(sc->sc_sensor[14].desc, "Fan1");
543 1.29 nonaka COPYDESCR(sc->sc_sensor[15].desc, "Fan2");
544 1.29 nonaka COPYDESCR(sc->sc_sensor[16].desc, "Fan3");
545 1.29 nonaka COPYDESCR(sc->sc_sensor[17].desc, "Fan4");
546 1.29 nonaka COPYDESCR(sc->sc_sensor[18].desc, "Fan5");
547 1.1 xtraeme }
548 1.1 xtraeme #undef COPYDESCR
549 1.1 xtraeme
550 1.1 xtraeme static void
551 1.1 xtraeme itesio_refresh_temp(struct itesio_softc *sc, envsys_data_t *edata)
552 1.1 xtraeme {
553 1.1 xtraeme int sdata;
554 1.1 xtraeme
555 1.1 xtraeme sdata = itesio_ecreadreg(sc, ITESIO_EC_SENSORTEMPBASE + edata->sensor);
556 1.1 xtraeme /* sensor is not connected or reporting invalid data */
557 1.1 xtraeme if (sdata == 0 || sdata >= 0xfa) {
558 1.1 xtraeme edata->state = ENVSYS_SINVALID;
559 1.1 xtraeme return;
560 1.1 xtraeme }
561 1.1 xtraeme
562 1.1 xtraeme DPRINTF(("%s: sdata[temp%d] 0x%x\n", __func__, edata->sensor, sdata));
563 1.1 xtraeme /* Convert temperature to uK */
564 1.1 xtraeme edata->value_cur = sdata * 1000000 + 273150000;
565 1.1 xtraeme edata->state = ENVSYS_SVALID;
566 1.1 xtraeme }
567 1.1 xtraeme
568 1.1 xtraeme static void
569 1.1 xtraeme itesio_refresh_volts(struct itesio_softc *sc, envsys_data_t *edata)
570 1.1 xtraeme {
571 1.1 xtraeme uint8_t vbatcr = 0;
572 1.1 xtraeme int i, sdata;
573 1.1 xtraeme
574 1.29 nonaka i = edata->sensor - sc->sc_config.voltstart_idx;
575 1.1 xtraeme
576 1.1 xtraeme sdata = itesio_ecreadreg(sc, ITESIO_EC_SENSORVOLTBASE + i);
577 1.1 xtraeme /* not connected */
578 1.1 xtraeme if (sdata == 0 || sdata == 0xff) {
579 1.1 xtraeme edata->state = ENVSYS_SINVALID;
580 1.1 xtraeme return;
581 1.1 xtraeme }
582 1.1 xtraeme
583 1.1 xtraeme /*
584 1.1 xtraeme * update VBAT voltage reading every time we read it, to get
585 1.1 xtraeme * latest value.
586 1.1 xtraeme */
587 1.1 xtraeme if (i == 8) {
588 1.1 xtraeme vbatcr = itesio_ecreadreg(sc, ITESIO_EC_CONFIG);
589 1.1 xtraeme SET(vbatcr, ITESIO_EC_UPDATEVBAT);
590 1.1 xtraeme itesio_ecwritereg(sc, ITESIO_EC_CONFIG, vbatcr);
591 1.1 xtraeme }
592 1.1 xtraeme
593 1.1 xtraeme DPRINTF(("%s: sdata[volt%d] 0x%x\n", __func__, i, sdata));
594 1.1 xtraeme
595 1.1 xtraeme /* voltage returned as (mV << 4) */
596 1.1 xtraeme edata->value_cur = (sdata << 4);
597 1.16 xtraeme /* negative values */
598 1.16 xtraeme if (i == 5 || i == 6)
599 1.16 xtraeme edata->value_cur -= ITESIO_EC_VREF;
600 1.1 xtraeme /* rfact is (factor * 10^4) */
601 1.1 xtraeme if (edata->rfact)
602 1.21 jakllsch edata->value_cur *= edata->rfact;
603 1.21 jakllsch else
604 1.21 jakllsch edata->value_cur *= itesio_vrfact[i];
605 1.1 xtraeme /* division by 10 gets us back to uVDC */
606 1.1 xtraeme edata->value_cur /= 10;
607 1.16 xtraeme if (i == 5 || i == 6)
608 1.16 xtraeme edata->value_cur += ITESIO_EC_VREF * 1000;
609 1.16 xtraeme
610 1.1 xtraeme edata->state = ENVSYS_SVALID;
611 1.1 xtraeme }
612 1.1 xtraeme
613 1.1 xtraeme static void
614 1.29 nonaka itesio_refresh_it8625_volts(struct itesio_softc *sc, envsys_data_t *edata)
615 1.29 nonaka {
616 1.29 nonaka int i, sdata;
617 1.29 nonaka
618 1.29 nonaka i = edata->sensor - sc->sc_config.voltstart_idx;
619 1.29 nonaka
620 1.29 nonaka if (i < 9)
621 1.29 nonaka sdata = itesio_ecreadreg(sc, ITESIO_EC_SENSORVOLTBASE + i);
622 1.29 nonaka else
623 1.29 nonaka sdata = itesio_ecreadreg(sc,
624 1.29 nonaka ITESIO_EC_SENSORVOLTEXTBASE + i - 9);
625 1.29 nonaka /* not connected */
626 1.29 nonaka if (sdata == 0 || sdata == 0xff) {
627 1.29 nonaka edata->state = ENVSYS_SINVALID;
628 1.29 nonaka return;
629 1.29 nonaka }
630 1.29 nonaka
631 1.29 nonaka DPRINTF(("%s: sdata[volt%d] 0x%x\n", __func__, i, sdata));
632 1.29 nonaka
633 1.29 nonaka if (i == 7) {
634 1.29 nonaka /* Internal 3VSB: reading value * 2 * 10.9mV */
635 1.29 nonaka edata->value_cur = sdata * 2 * 109;
636 1.29 nonaka } else {
637 1.29 nonaka /* other: reading value * 10.9mV */
638 1.29 nonaka edata->value_cur = sdata * 109;
639 1.29 nonaka }
640 1.29 nonaka /* rfact is (factor * 10^4) */
641 1.29 nonaka if (edata->rfact)
642 1.29 nonaka edata->value_cur *= edata->rfact;
643 1.29 nonaka else
644 1.29 nonaka edata->value_cur *= RFACT_NONE;
645 1.29 nonaka /* division by 100 gets us back to uVDC */
646 1.29 nonaka edata->value_cur /= 100;
647 1.29 nonaka edata->state = ENVSYS_SVALID;
648 1.29 nonaka }
649 1.29 nonaka
650 1.29 nonaka static void
651 1.1 xtraeme itesio_refresh_fans(struct itesio_softc *sc, envsys_data_t *edata)
652 1.1 xtraeme {
653 1.29 nonaka uint8_t mode;
654 1.29 nonaka uint16_t sdata;
655 1.29 nonaka int i;
656 1.29 nonaka
657 1.29 nonaka i = edata->sensor - sc->sc_config.fanstart_idx;
658 1.29 nonaka
659 1.29 nonaka mode = itesio_ecreadreg(sc, ITESIO_EC_FAN16_CER);
660 1.29 nonaka sdata = itesio_ecreadreg(sc, ITESIO_EC_SENSORFANBASE + i);
661 1.29 nonaka if (mode & (1 << i))
662 1.29 nonaka sdata += (itesio_ecreadreg(sc,
663 1.29 nonaka ITESIO_EC_SENSORFANEXTBASE + i) << 8);
664 1.29 nonaka edata->state = ENVSYS_SVALID;
665 1.29 nonaka if (sdata == 0 ||
666 1.29 nonaka sdata == ((mode & (1 << i)) ? 0xffff : 0xff))
667 1.29 nonaka edata->state = ENVSYS_SINVALID;
668 1.29 nonaka else {
669 1.29 nonaka edata->value_cur = 1350000 / 2 / sdata;
670 1.29 nonaka edata->state = ENVSYS_SVALID;
671 1.29 nonaka }
672 1.29 nonaka DPRINTF(("%s: 16bit sdata[fan%d] 0x%x\n", __func__, i, sdata));
673 1.29 nonaka }
674 1.29 nonaka
675 1.29 nonaka static void
676 1.29 nonaka itesio_refresh_it8705_fans(struct itesio_softc *sc, envsys_data_t *edata)
677 1.29 nonaka {
678 1.29 nonaka uint16_t sdata;
679 1.1 xtraeme int i, divisor, odivisor, ndivisor;
680 1.1 xtraeme
681 1.29 nonaka i = edata->sensor - sc->sc_config.fanstart_idx;
682 1.1 xtraeme
683 1.29 nonaka /*
684 1.29 nonaka * Use the Fan Tachometer Divisor Register for
685 1.29 nonaka * IT8705F and IT8712F.
686 1.29 nonaka */
687 1.29 nonaka divisor = odivisor = ndivisor =
688 1.29 nonaka itesio_ecreadreg(sc, ITESIO_EC_FAN_TDR);
689 1.29 nonaka sdata = itesio_ecreadreg(sc, ITESIO_EC_SENSORFANBASE + i);
690 1.29 nonaka if (sdata == 0xff) {
691 1.29 nonaka edata->state = ENVSYS_SINVALID;
692 1.29 nonaka if (i == 2)
693 1.29 nonaka ndivisor |= 0x40;
694 1.29 nonaka else {
695 1.29 nonaka ndivisor &= ~(7 << (i * 3));
696 1.29 nonaka ndivisor |= ((divisor + 1) & 7) << (i * 3);
697 1.1 xtraeme }
698 1.1 xtraeme } else {
699 1.29 nonaka if (i == 2)
700 1.29 nonaka divisor = divisor & 1 ? 3 : 1;
701 1.29 nonaka
702 1.29 nonaka if ((sdata << (divisor & 7)) == 0)
703 1.1 xtraeme edata->state = ENVSYS_SINVALID;
704 1.1 xtraeme else {
705 1.29 nonaka edata->value_cur =
706 1.29 nonaka 1350000 / (sdata << (divisor & 7));
707 1.1 xtraeme edata->state = ENVSYS_SVALID;
708 1.1 xtraeme }
709 1.1 xtraeme }
710 1.29 nonaka DPRINTF(("%s: 8bit sdata[fan%d] 0x%x div: 0x%x\n", __func__,
711 1.29 nonaka i, sdata, divisor));
712 1.29 nonaka if (ndivisor != odivisor)
713 1.29 nonaka itesio_ecwritereg(sc, ITESIO_EC_FAN_TDR, ndivisor);
714 1.29 nonaka }
715 1.29 nonaka
716 1.29 nonaka static void
717 1.29 nonaka itesio_refresh_it8625_fans(struct itesio_softc *sc, envsys_data_t *edata)
718 1.29 nonaka {
719 1.29 nonaka uint16_t sdata;
720 1.29 nonaka int i;
721 1.29 nonaka
722 1.29 nonaka i = edata->sensor - sc->sc_config.fanstart_idx;
723 1.29 nonaka
724 1.29 nonaka switch (i) {
725 1.29 nonaka case 0:
726 1.29 nonaka case 1:
727 1.29 nonaka case 2:
728 1.29 nonaka sdata = itesio_ecreadreg(sc, ITESIO_EC_SENSORFANBASE + i);
729 1.29 nonaka sdata += (itesio_ecreadreg(sc,
730 1.29 nonaka ITESIO_EC_SENSORFANEXTBASE + i) << 8);
731 1.29 nonaka break;
732 1.29 nonaka case 3:
733 1.29 nonaka sdata = itesio_ecreadreg(sc, IT8625_EC_SENSORFAN4_LSB);
734 1.29 nonaka sdata += itesio_ecreadreg(sc, IT8625_EC_SENSORFAN4_MSB) << 8;
735 1.29 nonaka break;
736 1.29 nonaka case 4:
737 1.29 nonaka sdata = itesio_ecreadreg(sc, IT8625_EC_SENSORFAN5_LSB);
738 1.29 nonaka sdata += itesio_ecreadreg(sc, IT8625_EC_SENSORFAN5_MSB) << 8;
739 1.29 nonaka break;
740 1.29 nonaka case 5:
741 1.29 nonaka sdata = itesio_ecreadreg(sc, IT8625_EC_SENSORFAN6_LSB);
742 1.29 nonaka sdata += itesio_ecreadreg(sc, IT8625_EC_SENSORFAN6_MSB) << 8;
743 1.29 nonaka break;
744 1.29 nonaka default:
745 1.29 nonaka edata->state = ENVSYS_SINVALID;
746 1.29 nonaka return;
747 1.29 nonaka }
748 1.29 nonaka edata->state = ENVSYS_SVALID;
749 1.29 nonaka if (sdata == 0 || sdata == 0xffff)
750 1.29 nonaka edata->state = ENVSYS_SINVALID;
751 1.29 nonaka else {
752 1.29 nonaka edata->value_cur = 1350000 / 2 / sdata;
753 1.29 nonaka edata->state = ENVSYS_SVALID;
754 1.29 nonaka }
755 1.29 nonaka DPRINTF(("%s: 16bit sdata[fan%d] 0x%x\n", __func__, i, sdata));
756 1.1 xtraeme }
757 1.1 xtraeme
758 1.4 xtraeme static void
759 1.4 xtraeme itesio_refresh(struct sysmon_envsys *sme, struct envsys_data *edata)
760 1.1 xtraeme {
761 1.1 xtraeme struct itesio_softc *sc = sme->sme_cookie;
762 1.1 xtraeme
763 1.29 nonaka if (edata->sensor < sc->sc_config.voltstart_idx)
764 1.29 nonaka (*sc->sc_config.refresh_temp)(sc, edata);
765 1.29 nonaka else if (edata->sensor >= sc->sc_config.voltstart_idx &&
766 1.29 nonaka edata->sensor < sc->sc_config.fanstart_idx)
767 1.29 nonaka (*sc->sc_config.refresh_volts)(sc, edata);
768 1.1 xtraeme else
769 1.29 nonaka (*sc->sc_config.refresh_fans)(sc, edata);
770 1.1 xtraeme }
771 1.9 xtraeme
772 1.9 xtraeme static int
773 1.9 xtraeme itesio_wdt_setmode(struct sysmon_wdog *smw)
774 1.9 xtraeme {
775 1.9 xtraeme struct itesio_softc *sc = smw->smw_cookie;
776 1.9 xtraeme int period = smw->smw_period;
777 1.9 xtraeme
778 1.9 xtraeme /* Enter MB PNP mode and select the WDT LDN */
779 1.18 jakllsch itesio_enter(sc->sc_iot, sc->sc_pnp_ioh);
780 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_LDNSEL,
781 1.18 jakllsch ITESIO_WDT_LDN);
782 1.9 xtraeme
783 1.9 xtraeme if ((smw->smw_mode & WDOG_MODE_MASK) == WDOG_MODE_DISARMED) {
784 1.9 xtraeme /* Disable the watchdog */
785 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_WDT_CTL, 0);
786 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_WDT_CNF, 0);
787 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_WDT_TMO_MSB, 0);
788 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_WDT_TMO_LSB, 0);
789 1.9 xtraeme } else {
790 1.9 xtraeme /* Enable the watchdog */
791 1.9 xtraeme if (period > ITESIO_WDT_MAXTIMO || period < 1)
792 1.9 xtraeme period = smw->smw_period = ITESIO_WDT_MAXTIMO;
793 1.9 xtraeme
794 1.9 xtraeme period *= 2;
795 1.9 xtraeme
796 1.9 xtraeme /* set the timeout and start the watchdog */
797 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_WDT_TMO_MSB,
798 1.9 xtraeme period >> 8);
799 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_WDT_TMO_LSB,
800 1.9 xtraeme period & 0xff);
801 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_WDT_CNF,
802 1.9 xtraeme ITESIO_WDT_CNF_SECS | ITESIO_WDT_CNF_KRST |
803 1.9 xtraeme ITESIO_WDT_CNF_PWROK);
804 1.9 xtraeme }
805 1.9 xtraeme /* we are done, exit MB PNP mode */
806 1.18 jakllsch itesio_exit(sc->sc_iot, sc->sc_pnp_ioh);
807 1.9 xtraeme
808 1.9 xtraeme return 0;
809 1.9 xtraeme }
810 1.9 xtraeme
811 1.9 xtraeme static int
812 1.9 xtraeme itesio_wdt_tickle(struct sysmon_wdog *smw)
813 1.9 xtraeme {
814 1.9 xtraeme struct itesio_softc *sc = smw->smw_cookie;
815 1.9 xtraeme int period = smw->smw_period * 2;
816 1.9 xtraeme
817 1.9 xtraeme /* refresh timeout value and exit */
818 1.18 jakllsch itesio_enter(sc->sc_iot, sc->sc_pnp_ioh);
819 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_LDNSEL,
820 1.18 jakllsch ITESIO_WDT_LDN);
821 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_WDT_TMO_MSB,
822 1.9 xtraeme period >> 8);
823 1.18 jakllsch itesio_writereg(sc->sc_iot, sc->sc_pnp_ioh, ITESIO_WDT_TMO_LSB,
824 1.9 xtraeme period & 0xff);
825 1.18 jakllsch itesio_exit(sc->sc_iot, sc->sc_pnp_ioh);
826 1.9 xtraeme
827 1.9 xtraeme return 0;
828 1.9 xtraeme }
829 1.23 jmcneill
830 1.25 pgoyette MODULE(MODULE_CLASS_DRIVER, itesio, "sysmon_envsys,sysmon_wdog");
831 1.23 jmcneill
832 1.23 jmcneill #ifdef _MODULE
833 1.23 jmcneill #include "ioconf.c"
834 1.23 jmcneill #endif
835 1.23 jmcneill
836 1.23 jmcneill static int
837 1.23 jmcneill itesio_modcmd(modcmd_t cmd, void *opaque)
838 1.23 jmcneill {
839 1.23 jmcneill switch (cmd) {
840 1.23 jmcneill case MODULE_CMD_INIT:
841 1.23 jmcneill #ifdef _MODULE
842 1.23 jmcneill return config_init_component(cfdriver_ioconf_itesio,
843 1.23 jmcneill cfattach_ioconf_itesio, cfdata_ioconf_itesio);
844 1.23 jmcneill #else
845 1.23 jmcneill return 0;
846 1.23 jmcneill #endif
847 1.23 jmcneill case MODULE_CMD_FINI:
848 1.23 jmcneill #ifdef _MODULE
849 1.23 jmcneill return config_fini_component(cfdriver_ioconf_itesio,
850 1.23 jmcneill cfattach_ioconf_itesio, cfdata_ioconf_itesio);
851 1.23 jmcneill #else
852 1.23 jmcneill return 0;
853 1.23 jmcneill #endif
854 1.23 jmcneill default:
855 1.23 jmcneill return ENOTTY;
856 1.23 jmcneill }
857 1.23 jmcneill }
858