1 /* $NetBSD: sdtemp.c,v 1.26 2015/05/20 00:43:28 msaitoh Exp $ */ 2 3 /* 4 * Copyright (c) 2009 The NetBSD Foundation, Inc. 5 * All rights reserved. 6 * 7 * This code is derived from software contributed to The NetBSD Foundation 8 * by Paul Goyette. 9 * 10 * Redistribution and use in source and binary forms, with or without 11 * modification, are permitted provided that the following conditions 12 * are met: 13 * 1. Redistributions of source code must retain the above copyright 14 * notice, this list of conditions and the following disclaimer. 15 * 2. Redistributions in binary form must reproduce the above copyright 16 * notice, this list of conditions and the following disclaimer in the 17 * documentation and/or other materials provided with the distribution. 18 * 19 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 20 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 21 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 22 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 23 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 24 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 25 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 26 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 27 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 28 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 29 * POSSIBILITY OF SUCH DAMAGE. 30 */ 31 32 #include <sys/cdefs.h> 33 __KERNEL_RCSID(0, "$NetBSD: sdtemp.c,v 1.26 2015/05/20 00:43:28 msaitoh Exp $"); 34 35 #include <sys/param.h> 36 #include <sys/systm.h> 37 #include <sys/kmem.h> 38 #include <sys/device.h> 39 #include <sys/kernel.h> 40 #include <sys/endian.h> 41 #include <sys/module.h> 42 43 #include <dev/sysmon/sysmonvar.h> 44 45 #include <dev/i2c/i2cvar.h> 46 #include <dev/i2c/sdtemp_reg.h> 47 48 struct sdtemp_softc { 49 device_t sc_dev; 50 i2c_tag_t sc_tag; 51 int sc_address; 52 53 struct sysmon_envsys *sc_sme; 54 envsys_data_t *sc_sensor; 55 sysmon_envsys_lim_t sc_deflims; 56 uint32_t sc_defprops; 57 int sc_resolution; 58 uint16_t sc_capability; 59 }; 60 61 static int sdtemp_match(device_t, cfdata_t, void *); 62 static void sdtemp_attach(device_t, device_t, void *); 63 static int sdtemp_detach(device_t, int); 64 65 CFATTACH_DECL_NEW(sdtemp, sizeof(struct sdtemp_softc), 66 sdtemp_match, sdtemp_attach, sdtemp_detach, NULL); 67 68 static void sdtemp_refresh(struct sysmon_envsys *, envsys_data_t *); 69 static void sdtemp_get_limits(struct sysmon_envsys *, envsys_data_t *, 70 sysmon_envsys_lim_t *, uint32_t *); 71 static void sdtemp_set_limits(struct sysmon_envsys *, envsys_data_t *, 72 sysmon_envsys_lim_t *, uint32_t *); 73 #ifdef NOT_YET 74 static int sdtemp_read_8(struct sdtemp_softc *, uint8_t, uint8_t *); 75 static int sdtemp_write_8(struct sdtemp_softc *, uint8_t, uint8_t); 76 #endif /* NOT YET */ 77 static int sdtemp_read_16(struct sdtemp_softc *, uint8_t, uint16_t *); 78 static int sdtemp_write_16(struct sdtemp_softc *, uint8_t, uint16_t); 79 static uint32_t sdtemp_decode_temp(struct sdtemp_softc *, uint16_t); 80 static bool sdtemp_pmf_suspend(device_t, const pmf_qual_t *); 81 static bool sdtemp_pmf_resume(device_t, const pmf_qual_t *); 82 83 struct sdtemp_dev_entry { 84 const uint16_t sdtemp_mfg_id; 85 const uint16_t sdtemp_devrev; 86 const uint16_t sdtemp_mask; 87 const uint8_t sdtemp_resolution; 88 const char *sdtemp_desc; 89 }; 90 91 /* Convert sysmon_envsys uKelvin value to simple degC */ 92 93 #define __UK2C(uk) (((uk) - 273150000) / 1000000) 94 95 /* 96 * List of devices known to conform to JEDEC JC42.4 97 * 98 * NOTE: A non-negative value for resolution indicates that the sensor 99 * resolution is fixed at that number of fractional bits; a negative 100 * value indicates that the sensor needs to be configured. In either 101 * case, trip-point registers are fixed at two-bit (0.25C) resolution. 102 */ 103 static const struct sdtemp_dev_entry 104 sdtemp_dev_table[] = { 105 { MAXIM_MANUFACTURER_ID, MAX_6604_DEVICE_ID, MAX_6604_MASK, 3, 106 "Maxim MAX6604" }, 107 { MCP_MANUFACTURER_ID, MCP_9805_DEVICE_ID, MCP_9805_MASK, 2, 108 "Microchip Tech MCP9805/MCP9843" }, 109 { MCP_MANUFACTURER_ID, MCP_98243_DEVICE_ID, MCP_98243_MASK, -4, 110 "Microchip Tech MCP98243" }, 111 { MCP_MANUFACTURER_ID, MCP_98242_DEVICE_ID, MCP_98242_MASK, -4, 112 "Microchip Tech MCP98242" }, 113 { ADT_MANUFACTURER_ID, ADT_7408_DEVICE_ID, ADT_7408_MASK, 4, 114 "Analog Devices ADT7408" }, 115 { NXP_MANUFACTURER_ID, NXP_SE98_DEVICE_ID, NXP_SE98_MASK, 3, 116 "NXP Semiconductors SE97B/SE98" }, 117 { NXP_MANUFACTURER_ID, NXP_SE97_DEVICE_ID, NXP_SE97_MASK, 3, 118 "NXP Semiconductors SE97" }, 119 { STTS_MANUFACTURER_ID, STTS_424E_DEVICE_ID, STTS_424E_MASK, 2, 120 "STmicroelectronics STTS424E" }, 121 { STTS_MANUFACTURER_ID, STTS_424_DEVICE_ID, STTS_424_MASK, 2, 122 "STmicroelectronics STTS424" }, 123 { STTS_MANUFACTURER_ID, STTS_2002_DEVICE_ID, STTS_2002_MASK, 2, 124 "STmicroelectronics STTS2002" }, 125 { STTS_MANUFACTURER_ID, STTS_2004_DEVICE_ID, STTS_2004_MASK, 2, 126 "STmicroelectronics STTS2002" }, 127 { STTS_MANUFACTURER_ID, STTS_3000_DEVICE_ID, STTS_3000_MASK, 2, 128 "STmicroelectronics STTS3000" }, 129 { CAT_MANUFACTURER_ID, CAT_34TS02_DEVICE_ID, CAT_34TS02_MASK, 4, 130 "Catalyst CAT34TS02/CAT6095" }, 131 { CAT_MANUFACTURER_ID, CAT_34TS02C_DEVICE_ID, CAT_34TS02C_MASK, 4, 132 "Catalyst CAT34TS02C" }, 133 { IDT_MANUFACTURER_ID, IDT_TS3000B3_DEVICE_ID, IDT_TS3000B3_MASK, 4, 134 "Integrated Device Technology TS3000B3/TSE2002B3" }, 135 { 0, 0, 0, 2, "Unknown" } 136 }; 137 138 static int 139 sdtemp_lookup(uint16_t mfg, uint16_t devrev) 140 { 141 int i; 142 143 for (i = 0; sdtemp_dev_table[i].sdtemp_mfg_id; i++) { 144 if (mfg != sdtemp_dev_table[i].sdtemp_mfg_id) 145 continue; 146 if ((devrev & sdtemp_dev_table[i].sdtemp_mask) == 147 sdtemp_dev_table[i].sdtemp_devrev) 148 break; 149 } 150 151 return i; 152 } 153 154 static int 155 sdtemp_match(device_t parent, cfdata_t cf, void *aux) 156 { 157 struct i2c_attach_args *ia = aux; 158 uint16_t mfgid, devid; 159 struct sdtemp_softc sc; 160 int i, error; 161 162 sc.sc_tag = ia->ia_tag; 163 sc.sc_address = ia->ia_addr; 164 165 if ((ia->ia_addr & SDTEMP_ADDRMASK) != SDTEMP_ADDR) 166 return 0; 167 168 /* Verify that we can read the manufacturer ID & Device ID */ 169 iic_acquire_bus(sc.sc_tag, 0); 170 error = sdtemp_read_16(&sc, SDTEMP_REG_MFG_ID, &mfgid) | 171 sdtemp_read_16(&sc, SDTEMP_REG_DEV_REV, &devid); 172 iic_release_bus(sc.sc_tag, 0); 173 174 if (error) 175 return 0; 176 177 i = sdtemp_lookup(mfgid, devid); 178 if (sdtemp_dev_table[i].sdtemp_mfg_id == 0) { 179 aprint_debug("sdtemp: No match for mfg 0x%04x dev 0x%02x " 180 "rev 0x%02x at address 0x%02x\n", mfgid, devid >> 8, 181 devid & 0xff, sc.sc_address); 182 return 0; 183 } 184 185 return 1; 186 } 187 188 static void 189 sdtemp_attach(device_t parent, device_t self, void *aux) 190 { 191 struct sdtemp_softc *sc = device_private(self); 192 struct i2c_attach_args *ia = aux; 193 uint16_t mfgid, devid; 194 int i, error; 195 196 sc->sc_tag = ia->ia_tag; 197 sc->sc_address = ia->ia_addr; 198 sc->sc_dev = self; 199 200 iic_acquire_bus(sc->sc_tag, 0); 201 if ((error = sdtemp_read_16(sc, SDTEMP_REG_MFG_ID, &mfgid)) != 0 || 202 (error = sdtemp_read_16(sc, SDTEMP_REG_DEV_REV, &devid)) != 0) { 203 iic_release_bus(sc->sc_tag, 0); 204 aprint_error(": attach error %d\n", error); 205 return; 206 } 207 i = sdtemp_lookup(mfgid, devid); 208 sc->sc_resolution = 209 sdtemp_dev_table[i].sdtemp_resolution; 210 211 aprint_naive(": Temp Sensor\n"); 212 aprint_normal(": %s Temp Sensor\n", sdtemp_dev_table[i].sdtemp_desc); 213 214 if (sdtemp_dev_table[i].sdtemp_mfg_id == 0) 215 aprint_debug_dev(self, 216 "mfg 0x%04x dev 0x%02x rev 0x%02x at addr 0x%02x\n", 217 mfgid, devid >> 8, devid & 0xff, ia->ia_addr); 218 219 /* 220 * Alarm capability is required; if not present, this is likely 221 * not a real sdtemp device. 222 */ 223 error = sdtemp_read_16(sc, SDTEMP_REG_CAPABILITY, &sc->sc_capability); 224 if (error != 0 || (sc->sc_capability & SDTEMP_CAP_HAS_ALARM) == 0) { 225 iic_release_bus(sc->sc_tag, 0); 226 aprint_error_dev(self, 227 "required alarm capability not present!\n"); 228 return; 229 } 230 /* Set the configuration to defaults. */ 231 error = sdtemp_write_16(sc, SDTEMP_REG_CONFIG, 0); 232 if (error != 0) { 233 iic_release_bus(sc->sc_tag, 0); 234 aprint_error_dev(self, "error %d writing config register\n", 235 error); 236 return; 237 } 238 /* If variable resolution, set to max */ 239 if (sc->sc_resolution < 0) { 240 sc->sc_resolution = ~sc->sc_resolution; 241 error = sdtemp_write_16(sc, SDTEMP_REG_RESOLUTION, 242 sc->sc_resolution & 0x3); 243 if (error != 0) { 244 iic_release_bus(sc->sc_tag, 0); 245 aprint_error_dev(self, 246 "error %d writing resolution register\n", error); 247 return; 248 } else 249 sc->sc_resolution++; 250 } 251 iic_release_bus(sc->sc_tag, 0); 252 253 /* Hook us into the sysmon_envsys subsystem */ 254 sc->sc_sme = sysmon_envsys_create(); 255 sc->sc_sme->sme_name = device_xname(self); 256 sc->sc_sme->sme_cookie = sc; 257 sc->sc_sme->sme_refresh = sdtemp_refresh; 258 sc->sc_sme->sme_get_limits = sdtemp_get_limits; 259 sc->sc_sme->sme_set_limits = sdtemp_set_limits; 260 261 sc->sc_sensor = kmem_zalloc(sizeof(envsys_data_t), KM_NOSLEEP); 262 if (!sc->sc_sensor) { 263 aprint_error_dev(self, "unable to allocate sc_sensor\n"); 264 goto bad2; 265 } 266 267 /* Initialize sensor data. */ 268 sc->sc_sensor->units = ENVSYS_STEMP; 269 sc->sc_sensor->state = ENVSYS_SINVALID; 270 sc->sc_sensor->flags |= ENVSYS_FMONLIMITS; 271 (void)strlcpy(sc->sc_sensor->desc, device_xname(self), 272 sizeof(sc->sc_sensor->desc)); 273 snprintf(sc->sc_sensor->desc, sizeof(sc->sc_sensor->desc), 274 "DIMM %d temperature", sc->sc_address - SDTEMP_ADDR); 275 276 /* Now attach the sensor */ 277 if (sysmon_envsys_sensor_attach(sc->sc_sme, sc->sc_sensor)) { 278 aprint_error_dev(self, "unable to attach sensor\n"); 279 goto bad; 280 } 281 282 /* Register the device */ 283 error = sysmon_envsys_register(sc->sc_sme); 284 if (error) { 285 aprint_error_dev(self, "error %d registering with sysmon\n", 286 error); 287 goto bad; 288 } 289 290 if (!pmf_device_register(self, sdtemp_pmf_suspend, sdtemp_pmf_resume)) 291 aprint_error_dev(self, "couldn't establish power handler\n"); 292 293 /* Retrieve and display hardware monitor limits */ 294 sdtemp_get_limits(sc->sc_sme, sc->sc_sensor, &sc->sc_deflims, 295 &sc->sc_defprops); 296 aprint_normal_dev(self, "Hardware limits: "); 297 i = 0; 298 if (sc->sc_defprops & PROP_WARNMIN) { 299 aprint_normal("low %dC", 300 __UK2C(sc->sc_deflims.sel_warnmin)); 301 i++; 302 } 303 if (sc->sc_defprops & PROP_WARNMAX) { 304 aprint_normal("%shigh %dC ", (i)?", ":"", 305 __UK2C(sc->sc_deflims.sel_warnmax)); 306 i++; 307 } 308 if (sc->sc_defprops & PROP_CRITMAX) { 309 aprint_normal("%scritical %dC ", (i)?", ":"", 310 __UK2C(sc->sc_deflims.sel_critmax)); 311 i++; 312 } 313 aprint_normal("%s\n", (i)?"":"none set"); 314 315 return; 316 317 bad: 318 kmem_free(sc->sc_sensor, sizeof(envsys_data_t)); 319 bad2: 320 sysmon_envsys_destroy(sc->sc_sme); 321 } 322 323 static int 324 sdtemp_detach(device_t self, int flags) 325 { 326 struct sdtemp_softc *sc = device_private(self); 327 328 pmf_device_deregister(self); 329 330 if (sc->sc_sme) 331 sysmon_envsys_unregister(sc->sc_sme); 332 if (sc->sc_sensor) 333 kmem_free(sc->sc_sensor, sizeof(envsys_data_t)); 334 335 return 0; 336 } 337 338 /* Retrieve current limits from device, and encode in uKelvins */ 339 static void 340 sdtemp_get_limits(struct sysmon_envsys *sme, envsys_data_t *edata, 341 sysmon_envsys_lim_t *limits, uint32_t *props) 342 { 343 struct sdtemp_softc *sc = sme->sme_cookie; 344 uint16_t lim; 345 346 *props = 0; 347 iic_acquire_bus(sc->sc_tag, 0); 348 if (sdtemp_read_16(sc, SDTEMP_REG_LOWER_LIM, &lim) == 0 && lim != 0) { 349 limits->sel_warnmin = sdtemp_decode_temp(sc, lim); 350 *props |= PROP_WARNMIN; 351 } 352 if (sdtemp_read_16(sc, SDTEMP_REG_UPPER_LIM, &lim) == 0 && lim != 0) { 353 limits->sel_warnmax = sdtemp_decode_temp(sc, lim); 354 *props |= PROP_WARNMAX; 355 } 356 if (sdtemp_read_16(sc, SDTEMP_REG_CRIT_LIM, &lim) == 0 && lim != 0) { 357 limits->sel_critmax = sdtemp_decode_temp(sc, lim); 358 *props |= PROP_CRITMAX; 359 } 360 iic_release_bus(sc->sc_tag, 0); 361 if (*props != 0) 362 *props |= PROP_DRIVER_LIMITS; 363 } 364 365 /* Send current limit values to the device */ 366 static void 367 sdtemp_set_limits(struct sysmon_envsys *sme, envsys_data_t *edata, 368 sysmon_envsys_lim_t *limits, uint32_t *props) 369 { 370 uint16_t val; 371 struct sdtemp_softc *sc = sme->sme_cookie; 372 373 if (limits == NULL) { 374 limits = &sc->sc_deflims; 375 props = &sc->sc_defprops; 376 } 377 iic_acquire_bus(sc->sc_tag, 0); 378 if (*props & PROP_WARNMIN) { 379 val = __UK2C(limits->sel_warnmin); 380 (void)sdtemp_write_16(sc, SDTEMP_REG_LOWER_LIM, 381 (val << 4) & SDTEMP_TEMP_MASK); 382 } 383 if (*props & PROP_WARNMAX) { 384 val = __UK2C(limits->sel_warnmax); 385 (void)sdtemp_write_16(sc, SDTEMP_REG_UPPER_LIM, 386 (val << 4) & SDTEMP_TEMP_MASK); 387 } 388 if (*props & PROP_CRITMAX) { 389 val = __UK2C(limits->sel_critmax); 390 (void)sdtemp_write_16(sc, SDTEMP_REG_CRIT_LIM, 391 (val << 4) & SDTEMP_TEMP_MASK); 392 } 393 iic_release_bus(sc->sc_tag, 0); 394 395 /* 396 * If at least one limit is set that we can handle, and no 397 * limits are set that we cannot handle, tell sysmon that 398 * the driver will take care of monitoring the limits! 399 */ 400 if (*props & (PROP_CRITMIN | PROP_BATTCAP | PROP_BATTWARN)) 401 *props &= ~PROP_DRIVER_LIMITS; 402 else if (*props & PROP_LIMITS) 403 *props |= PROP_DRIVER_LIMITS; 404 else 405 *props &= ~PROP_DRIVER_LIMITS; 406 } 407 408 #ifdef NOT_YET /* All registers on these sensors are 16-bits */ 409 410 /* Read a 8-bit value from a register */ 411 static int 412 sdtemp_read_8(struct sdtemp_softc *sc, uint8_t reg, uint8_t *valp) 413 { 414 int error; 415 416 error = iic_exec(sc->sc_tag, I2C_OP_READ_WITH_STOP, 417 sc->sc_address, ®, 1, valp, sizeof(*valp), 0); 418 419 return error; 420 } 421 422 static int 423 sdtemp_write_8(struct sdtemp_softc *sc, uint8_t reg, uint8_t val) 424 { 425 return iic_exec(sc->sc_tag, I2C_OP_WRITE_WITH_STOP, 426 sc->sc_address, ®, 1, &val, sizeof(val), 0); 427 } 428 #endif /* NOT_YET */ 429 430 /* Read a 16-bit value from a register */ 431 static int 432 sdtemp_read_16(struct sdtemp_softc *sc, uint8_t reg, uint16_t *valp) 433 { 434 int error; 435 436 error = iic_exec(sc->sc_tag, I2C_OP_READ_WITH_STOP, 437 sc->sc_address, ®, 1, valp, sizeof(*valp), 0); 438 if (error) 439 return error; 440 441 *valp = be16toh(*valp); 442 443 return 0; 444 } 445 446 static int 447 sdtemp_write_16(struct sdtemp_softc *sc, uint8_t reg, uint16_t val) 448 { 449 uint16_t temp; 450 451 temp = htobe16(val); 452 return iic_exec(sc->sc_tag, I2C_OP_WRITE_WITH_STOP, 453 sc->sc_address, ®, 1, &temp, sizeof(temp), 0); 454 } 455 456 static uint32_t 457 sdtemp_decode_temp(struct sdtemp_softc *sc, uint16_t temp) 458 { 459 uint32_t val; 460 int32_t stemp; 461 462 /* Get only the temperature bits */ 463 temp &= SDTEMP_TEMP_MASK; 464 465 /* If necessary, extend the sign bit */ 466 if ((sc->sc_capability & SDTEMP_CAP_WIDER_RANGE) && 467 (temp & SDTEMP_TEMP_NEGATIVE)) 468 temp |= SDTEMP_TEMP_SIGN_EXT; 469 470 /* Mask off only bits valid within current resolution */ 471 temp &= ~(0xf >> sc->sc_resolution); 472 473 /* Treat as signed and extend to 32-bits */ 474 stemp = (int16_t)temp; 475 476 /* Now convert from 0.0625 (1/16) deg C increments to microKelvins */ 477 val = (stemp * 62500) + 273150000; 478 479 return val; 480 } 481 482 static void 483 sdtemp_refresh(struct sysmon_envsys *sme, envsys_data_t *edata) 484 { 485 struct sdtemp_softc *sc = sme->sme_cookie; 486 uint16_t val; 487 int error; 488 489 iic_acquire_bus(sc->sc_tag, 0); 490 error = sdtemp_read_16(sc, SDTEMP_REG_AMBIENT_TEMP, &val); 491 iic_release_bus(sc->sc_tag, 0); 492 493 if (error) { 494 edata->state = ENVSYS_SINVALID; 495 return; 496 } 497 498 edata->value_cur = sdtemp_decode_temp(sc, val); 499 500 /* Now check for limits */ 501 if ((edata->upropset & PROP_DRIVER_LIMITS) == 0) 502 edata->state = ENVSYS_SVALID; 503 else if ((val & SDTEMP_ABOVE_CRIT) && 504 (edata->upropset & PROP_CRITMAX)) 505 edata->state = ENVSYS_SCRITOVER; 506 else if ((val & SDTEMP_ABOVE_UPPER) && 507 (edata->upropset & PROP_WARNMAX)) 508 edata->state = ENVSYS_SWARNOVER; 509 else if ((val & SDTEMP_BELOW_LOWER) && 510 (edata->upropset & PROP_WARNMIN)) 511 edata->state = ENVSYS_SWARNUNDER; 512 else 513 edata->state = ENVSYS_SVALID; 514 } 515 516 /* 517 * power management functions 518 * 519 * We go into "shutdown" mode at suspend time, and return to normal 520 * mode upon resume. This reduces power consumption by disabling 521 * the A/D converter. 522 */ 523 524 static bool 525 sdtemp_pmf_suspend(device_t dev, const pmf_qual_t *qual) 526 { 527 struct sdtemp_softc *sc = device_private(dev); 528 int error; 529 uint16_t config; 530 531 iic_acquire_bus(sc->sc_tag, 0); 532 error = sdtemp_read_16(sc, SDTEMP_REG_CONFIG, &config); 533 if (error == 0) { 534 config |= SDTEMP_CONFIG_SHUTDOWN_MODE; 535 error = sdtemp_write_16(sc, SDTEMP_REG_CONFIG, config); 536 } 537 iic_release_bus(sc->sc_tag, 0); 538 return (error == 0); 539 } 540 541 static bool 542 sdtemp_pmf_resume(device_t dev, const pmf_qual_t *qual) 543 { 544 struct sdtemp_softc *sc = device_private(dev); 545 int error; 546 uint16_t config; 547 548 iic_acquire_bus(sc->sc_tag, 0); 549 error = sdtemp_read_16(sc, SDTEMP_REG_CONFIG, &config); 550 if (error == 0) { 551 config &= ~SDTEMP_CONFIG_SHUTDOWN_MODE; 552 error = sdtemp_write_16(sc, SDTEMP_REG_CONFIG, config); 553 } 554 iic_release_bus(sc->sc_tag, 0); 555 return (error == 0); 556 } 557 558 MODULE(MODULE_CLASS_DRIVER, sdtemp, "i2cexec,sysmon_envsys"); 559 560 #ifdef _MODULE 561 #include "ioconf.c" 562 #endif 563 564 static int 565 sdtemp_modcmd(modcmd_t cmd, void *opaque) 566 { 567 int error = 0; 568 569 switch (cmd) { 570 case MODULE_CMD_INIT: 571 #ifdef _MODULE 572 error = config_init_component(cfdriver_ioconf_sdtemp, 573 cfattach_ioconf_sdtemp, cfdata_ioconf_sdtemp); 574 #endif 575 return error; 576 case MODULE_CMD_FINI: 577 #ifdef _MODULE 578 error = config_fini_component(cfdriver_ioconf_sdtemp, 579 cfattach_ioconf_sdtemp, cfdata_ioconf_sdtemp); 580 #endif 581 return error; 582 default: 583 return ENOTTY; 584 } 585 } 586