1 1.53 jmcneill /* $NetBSD: acpi_cpu.c,v 1.53 2020/12/07 10:57:41 jmcneill Exp $ */ 2 1.1 jruoho 3 1.1 jruoho /*- 4 1.28 jruoho * Copyright (c) 2010, 2011 Jukka Ruohonen <jruohonen (at) iki.fi> 5 1.1 jruoho * All rights reserved. 6 1.1 jruoho * 7 1.1 jruoho * Redistribution and use in source and binary forms, with or without 8 1.1 jruoho * modification, are permitted provided that the following conditions 9 1.1 jruoho * are met: 10 1.1 jruoho * 11 1.1 jruoho * 1. Redistributions of source code must retain the above copyright 12 1.1 jruoho * notice, this list of conditions and the following disclaimer. 13 1.1 jruoho * 2. Redistributions in binary form must reproduce the above copyright 14 1.1 jruoho * notice, this list of conditions and the following disclaimer in the 15 1.1 jruoho * documentation and/or other materials provided with the distribution. 16 1.1 jruoho * 17 1.1 jruoho * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 18 1.1 jruoho * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 19 1.1 jruoho * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 20 1.1 jruoho * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 21 1.1 jruoho * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 22 1.1 jruoho * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 23 1.1 jruoho * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 24 1.1 jruoho * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 25 1.1 jruoho * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 26 1.1 jruoho * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 27 1.1 jruoho * SUCH DAMAGE. 28 1.1 jruoho */ 29 1.1 jruoho #include <sys/cdefs.h> 30 1.53 jmcneill __KERNEL_RCSID(0, "$NetBSD: acpi_cpu.c,v 1.53 2020/12/07 10:57:41 jmcneill Exp $"); 31 1.1 jruoho 32 1.1 jruoho #include <sys/param.h> 33 1.1 jruoho #include <sys/cpu.h> 34 1.33 jruoho #include <sys/evcnt.h> 35 1.1 jruoho #include <sys/kernel.h> 36 1.1 jruoho #include <sys/kmem.h> 37 1.1 jruoho #include <sys/module.h> 38 1.10 jruoho #include <sys/mutex.h> 39 1.24 jruoho #include <sys/sysctl.h> 40 1.45 jruoho #include <sys/cpufreq.h> 41 1.1 jruoho 42 1.1 jruoho #include <dev/acpi/acpireg.h> 43 1.1 jruoho #include <dev/acpi/acpivar.h> 44 1.1 jruoho #include <dev/acpi/acpi_cpu.h> 45 1.1 jruoho 46 1.1 jruoho #include <machine/acpi_machdep.h> 47 1.53 jmcneill 48 1.53 jmcneill #if defined(__i386__) || defined(__x86_64__) 49 1.30 jruoho #include <machine/cpuvar.h> 50 1.53 jmcneill #endif 51 1.1 jruoho 52 1.1 jruoho #define _COMPONENT ACPI_BUS_COMPONENT 53 1.1 jruoho ACPI_MODULE_NAME ("acpi_cpu") 54 1.1 jruoho 55 1.1 jruoho static int acpicpu_match(device_t, cfdata_t, void *); 56 1.1 jruoho static void acpicpu_attach(device_t, device_t, void *); 57 1.1 jruoho static int acpicpu_detach(device_t, int); 58 1.1 jruoho static int acpicpu_once_attach(void); 59 1.1 jruoho static int acpicpu_once_detach(void); 60 1.17 jruoho static void acpicpu_start(device_t); 61 1.1 jruoho 62 1.30 jruoho static ACPI_STATUS acpicpu_object(ACPI_HANDLE, struct acpicpu_object *); 63 1.1 jruoho static uint32_t acpicpu_cap(struct acpicpu_softc *); 64 1.21 jruoho static ACPI_STATUS acpicpu_cap_osc(struct acpicpu_softc *, 65 1.21 jruoho uint32_t, uint32_t *); 66 1.1 jruoho static void acpicpu_notify(ACPI_HANDLE, uint32_t, void *); 67 1.1 jruoho static bool acpicpu_suspend(device_t, const pmf_qual_t *); 68 1.1 jruoho static bool acpicpu_resume(device_t, const pmf_qual_t *); 69 1.33 jruoho static void acpicpu_evcnt_attach(device_t); 70 1.33 jruoho static void acpicpu_evcnt_detach(device_t); 71 1.33 jruoho static void acpicpu_debug_print(device_t); 72 1.45 jruoho static const char *acpicpu_debug_print_method_c(uint8_t); 73 1.45 jruoho static const char *acpicpu_debug_print_method_pt(uint8_t); 74 1.33 jruoho static const char *acpicpu_debug_print_dep(uint32_t); 75 1.1 jruoho 76 1.30 jruoho static uint32_t acpicpu_count = 0; 77 1.1 jruoho struct acpicpu_softc **acpicpu_sc = NULL; 78 1.24 jruoho static bool acpicpu_dynamic = true; 79 1.24 jruoho static bool acpicpu_passive = true; 80 1.1 jruoho 81 1.36 jruoho static const struct { 82 1.36 jruoho const char *manu; 83 1.36 jruoho const char *prod; 84 1.36 jruoho const char *vers; 85 1.36 jruoho } acpicpu_quirks[] = { 86 1.36 jruoho { "Supermicro", "PDSMi-LN4", "0123456789" }, 87 1.49 jruoho { "ASUSTeK Computer INC.", "M2A-MX", "Rev 1.xx" }, 88 1.36 jruoho }; 89 1.36 jruoho 90 1.1 jruoho CFATTACH_DECL_NEW(acpicpu, sizeof(struct acpicpu_softc), 91 1.1 jruoho acpicpu_match, acpicpu_attach, acpicpu_detach, NULL); 92 1.1 jruoho 93 1.1 jruoho static int 94 1.1 jruoho acpicpu_match(device_t parent, cfdata_t match, void *aux) 95 1.1 jruoho { 96 1.36 jruoho const char *manu, *prod, *vers; 97 1.31 jruoho struct cpu_info *ci; 98 1.36 jruoho size_t i; 99 1.1 jruoho 100 1.30 jruoho if (acpi_softc == NULL) 101 1.1 jruoho return 0; 102 1.1 jruoho 103 1.49 jruoho manu = pmf_get_platform("board-vendor"); 104 1.49 jruoho prod = pmf_get_platform("board-product"); 105 1.49 jruoho vers = pmf_get_platform("board-version"); 106 1.36 jruoho 107 1.36 jruoho if (manu != NULL && prod != NULL && vers != NULL) { 108 1.36 jruoho 109 1.36 jruoho for (i = 0; i < __arraycount(acpicpu_quirks); i++) { 110 1.36 jruoho 111 1.36 jruoho if (strcasecmp(acpicpu_quirks[i].manu, manu) == 0 && 112 1.36 jruoho strcasecmp(acpicpu_quirks[i].prod, prod) == 0 && 113 1.36 jruoho strcasecmp(acpicpu_quirks[i].vers, vers) == 0) 114 1.36 jruoho return 0; 115 1.36 jruoho } 116 1.36 jruoho } 117 1.36 jruoho 118 1.31 jruoho ci = acpicpu_md_match(parent, match, aux); 119 1.31 jruoho 120 1.31 jruoho if (ci == NULL) 121 1.3 christos return 0; 122 1.5 jruoho 123 1.42 jruoho if (acpi_match_cpu_info(ci) == NULL) 124 1.42 jruoho return 0; 125 1.42 jruoho 126 1.42 jruoho return 10; 127 1.1 jruoho } 128 1.1 jruoho 129 1.1 jruoho static void 130 1.1 jruoho acpicpu_attach(device_t parent, device_t self, void *aux) 131 1.1 jruoho { 132 1.1 jruoho struct acpicpu_softc *sc = device_private(self); 133 1.31 jruoho struct cpu_info *ci; 134 1.42 jruoho ACPI_HANDLE hdl; 135 1.27 jruoho cpuid_t id; 136 1.1 jruoho int rv; 137 1.1 jruoho 138 1.31 jruoho ci = acpicpu_md_attach(parent, self, aux); 139 1.31 jruoho 140 1.31 jruoho if (ci == NULL) 141 1.31 jruoho return; 142 1.31 jruoho 143 1.30 jruoho sc->sc_ci = ci; 144 1.30 jruoho sc->sc_dev = self; 145 1.30 jruoho sc->sc_cold = true; 146 1.1 jruoho 147 1.42 jruoho hdl = acpi_match_cpu_info(ci); 148 1.1 jruoho 149 1.42 jruoho if (hdl == NULL) { 150 1.30 jruoho aprint_normal(": failed to match processor\n"); 151 1.1 jruoho return; 152 1.30 jruoho } 153 1.1 jruoho 154 1.43 jruoho sc->sc_node = acpi_match_node(hdl); 155 1.42 jruoho 156 1.30 jruoho if (acpicpu_once_attach() != 0) { 157 1.30 jruoho aprint_normal(": failed to initialize\n"); 158 1.1 jruoho return; 159 1.1 jruoho } 160 1.1 jruoho 161 1.30 jruoho KASSERT(acpi_softc != NULL); 162 1.30 jruoho KASSERT(acpicpu_sc != NULL); 163 1.30 jruoho KASSERT(sc->sc_node != NULL); 164 1.30 jruoho 165 1.27 jruoho id = sc->sc_ci->ci_acpiid; 166 1.27 jruoho 167 1.27 jruoho if (acpicpu_sc[id] != NULL) { 168 1.30 jruoho aprint_normal(": already attached\n"); 169 1.1 jruoho return; 170 1.1 jruoho } 171 1.1 jruoho 172 1.21 jruoho aprint_naive("\n"); 173 1.21 jruoho aprint_normal(": ACPI CPU\n"); 174 1.21 jruoho 175 1.30 jruoho rv = acpicpu_object(sc->sc_node->ad_handle, &sc->sc_object); 176 1.30 jruoho 177 1.53 jmcneill if (ACPI_FAILURE(rv) && rv != AE_TYPE) 178 1.30 jruoho aprint_verbose_dev(self, "failed to obtain CPU object\n"); 179 1.30 jruoho 180 1.30 jruoho acpicpu_count++; 181 1.27 jruoho acpicpu_sc[id] = sc; 182 1.1 jruoho 183 1.1 jruoho sc->sc_cap = acpicpu_cap(sc); 184 1.29 jruoho sc->sc_ncpus = acpi_md_ncpus(); 185 1.30 jruoho sc->sc_flags = acpicpu_md_flags(); 186 1.1 jruoho 187 1.30 jruoho KASSERT(acpicpu_count <= sc->sc_ncpus); 188 1.30 jruoho KASSERT(sc->sc_node->ad_device == NULL); 189 1.30 jruoho 190 1.30 jruoho sc->sc_node->ad_device = self; 191 1.10 jruoho mutex_init(&sc->sc_mtx, MUTEX_DEFAULT, IPL_NONE); 192 1.10 jruoho 193 1.53 jmcneill #if defined(__i386__) || defined(__x86_64__) 194 1.1 jruoho acpicpu_cstate_attach(self); 195 1.53 jmcneill #endif 196 1.12 jruoho acpicpu_pstate_attach(self); 197 1.15 jruoho acpicpu_tstate_attach(self); 198 1.12 jruoho 199 1.30 jruoho acpicpu_debug_print(self); 200 1.33 jruoho acpicpu_evcnt_attach(self); 201 1.30 jruoho 202 1.30 jruoho (void)config_interrupts(self, acpicpu_start); 203 1.1 jruoho (void)acpi_register_notify(sc->sc_node, acpicpu_notify); 204 1.1 jruoho (void)pmf_device_register(self, acpicpu_suspend, acpicpu_resume); 205 1.1 jruoho } 206 1.1 jruoho 207 1.1 jruoho static int 208 1.1 jruoho acpicpu_detach(device_t self, int flags) 209 1.1 jruoho { 210 1.1 jruoho struct acpicpu_softc *sc = device_private(self); 211 1.1 jruoho 212 1.14 jruoho sc->sc_cold = true; 213 1.34 jruoho 214 1.34 jruoho acpicpu_evcnt_detach(self); 215 1.1 jruoho acpi_deregister_notify(sc->sc_node); 216 1.1 jruoho 217 1.44 jruoho acpicpu_cstate_detach(self); 218 1.44 jruoho acpicpu_pstate_detach(self); 219 1.44 jruoho acpicpu_tstate_detach(self); 220 1.15 jruoho 221 1.30 jruoho mutex_destroy(&sc->sc_mtx); 222 1.30 jruoho sc->sc_node->ad_device = NULL; 223 1.1 jruoho 224 1.30 jruoho acpicpu_count--; 225 1.30 jruoho acpicpu_once_detach(); 226 1.10 jruoho 227 1.1 jruoho return 0; 228 1.1 jruoho } 229 1.1 jruoho 230 1.1 jruoho static int 231 1.1 jruoho acpicpu_once_attach(void) 232 1.1 jruoho { 233 1.1 jruoho struct acpicpu_softc *sc; 234 1.1 jruoho unsigned int i; 235 1.1 jruoho 236 1.30 jruoho if (acpicpu_count != 0) 237 1.30 jruoho return 0; 238 1.30 jruoho 239 1.30 jruoho KASSERT(acpicpu_sc == NULL); 240 1.30 jruoho 241 1.1 jruoho acpicpu_sc = kmem_zalloc(maxcpus * sizeof(*sc), KM_SLEEP); 242 1.1 jruoho 243 1.1 jruoho for (i = 0; i < maxcpus; i++) 244 1.1 jruoho acpicpu_sc[i] = NULL; 245 1.1 jruoho 246 1.1 jruoho return 0; 247 1.1 jruoho } 248 1.1 jruoho 249 1.1 jruoho static int 250 1.1 jruoho acpicpu_once_detach(void) 251 1.1 jruoho { 252 1.1 jruoho struct acpicpu_softc *sc; 253 1.1 jruoho 254 1.30 jruoho if (acpicpu_count != 0) 255 1.30 jruoho return EDEADLK; 256 1.1 jruoho 257 1.46 jruoho cpufreq_deregister(); 258 1.46 jruoho 259 1.46 jruoho if (acpicpu_sc != NULL) 260 1.30 jruoho kmem_free(acpicpu_sc, maxcpus * sizeof(*sc)); 261 1.30 jruoho 262 1.17 jruoho return 0; 263 1.17 jruoho } 264 1.1 jruoho 265 1.17 jruoho static void 266 1.30 jruoho acpicpu_start(device_t self) 267 1.17 jruoho { 268 1.17 jruoho struct acpicpu_softc *sc = device_private(self); 269 1.30 jruoho static uint32_t count = 0; 270 1.45 jruoho struct cpufreq cf; 271 1.45 jruoho uint32_t i; 272 1.17 jruoho 273 1.30 jruoho /* 274 1.30 jruoho * Run the state-specific initialization routines. These 275 1.30 jruoho * must run only once, after interrupts have been enabled, 276 1.30 jruoho * all CPUs are running, and all ACPI CPUs have attached. 277 1.30 jruoho */ 278 1.30 jruoho if (++count != acpicpu_count || acpicpu_count != sc->sc_ncpus) { 279 1.17 jruoho sc->sc_cold = false; 280 1.17 jruoho return; 281 1.17 jruoho } 282 1.17 jruoho 283 1.17 jruoho /* 284 1.30 jruoho * Set the last ACPI CPU as non-cold 285 1.30 jruoho * only after C-states are enabled. 286 1.17 jruoho */ 287 1.17 jruoho if ((sc->sc_flags & ACPICPU_FLAG_C) != 0) 288 1.17 jruoho acpicpu_cstate_start(self); 289 1.17 jruoho 290 1.30 jruoho sc->sc_cold = false; 291 1.30 jruoho 292 1.17 jruoho if ((sc->sc_flags & ACPICPU_FLAG_P) != 0) 293 1.17 jruoho acpicpu_pstate_start(self); 294 1.17 jruoho 295 1.17 jruoho if ((sc->sc_flags & ACPICPU_FLAG_T) != 0) 296 1.17 jruoho acpicpu_tstate_start(self); 297 1.17 jruoho 298 1.30 jruoho aprint_debug_dev(self, "ACPI CPUs started\n"); 299 1.45 jruoho 300 1.45 jruoho /* 301 1.45 jruoho * Register with cpufreq(9). 302 1.45 jruoho */ 303 1.45 jruoho if ((sc->sc_flags & ACPICPU_FLAG_P) != 0) { 304 1.45 jruoho 305 1.45 jruoho (void)memset(&cf, 0, sizeof(struct cpufreq)); 306 1.45 jruoho 307 1.45 jruoho cf.cf_mp = false; 308 1.45 jruoho cf.cf_cookie = NULL; 309 1.45 jruoho cf.cf_get_freq = acpicpu_pstate_get; 310 1.45 jruoho cf.cf_set_freq = acpicpu_pstate_set; 311 1.45 jruoho cf.cf_state_count = sc->sc_pstate_count; 312 1.45 jruoho 313 1.45 jruoho (void)strlcpy(cf.cf_name, "acpicpu", sizeof(cf.cf_name)); 314 1.45 jruoho 315 1.45 jruoho for (i = 0; i < sc->sc_pstate_count; i++) { 316 1.45 jruoho 317 1.45 jruoho if (sc->sc_pstate[i].ps_freq == 0) 318 1.45 jruoho continue; 319 1.45 jruoho 320 1.45 jruoho cf.cf_state[i].cfs_freq = sc->sc_pstate[i].ps_freq; 321 1.45 jruoho cf.cf_state[i].cfs_power = sc->sc_pstate[i].ps_power; 322 1.45 jruoho } 323 1.45 jruoho 324 1.45 jruoho if (cpufreq_register(&cf) != 0) 325 1.45 jruoho aprint_error_dev(self, "failed to register cpufreq\n"); 326 1.45 jruoho } 327 1.1 jruoho } 328 1.1 jruoho 329 1.52 pgoyette SYSCTL_SETUP(acpicpu_sysctl, "acpi_cpu sysctls") 330 1.24 jruoho { 331 1.24 jruoho const struct sysctlnode *node; 332 1.24 jruoho int err; 333 1.24 jruoho 334 1.52 pgoyette err = sysctl_createv(clog, 0, NULL, &node, 335 1.24 jruoho CTLFLAG_PERMANENT, CTLTYPE_NODE, "acpi", NULL, 336 1.50 pooka NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, CTL_EOL); 337 1.24 jruoho 338 1.24 jruoho if (err != 0) 339 1.24 jruoho goto fail; 340 1.24 jruoho 341 1.52 pgoyette err = sysctl_createv(clog, 0, &node, &node, 342 1.24 jruoho 0, CTLTYPE_NODE, "cpu", SYSCTL_DESCR("ACPI CPU"), 343 1.24 jruoho NULL, 0, NULL, 0, CTL_CREATE, CTL_EOL); 344 1.24 jruoho 345 1.24 jruoho if (err != 0) 346 1.24 jruoho goto fail; 347 1.24 jruoho 348 1.52 pgoyette err = sysctl_createv(clog, 0, &node, NULL, 349 1.24 jruoho CTLFLAG_READWRITE, CTLTYPE_BOOL, "dynamic", 350 1.24 jruoho SYSCTL_DESCR("Dynamic states"), NULL, 0, 351 1.24 jruoho &acpicpu_dynamic, 0, CTL_CREATE, CTL_EOL); 352 1.24 jruoho 353 1.24 jruoho if (err != 0) 354 1.24 jruoho goto fail; 355 1.24 jruoho 356 1.52 pgoyette err = sysctl_createv(clog, 0, &node, NULL, 357 1.24 jruoho CTLFLAG_READWRITE, CTLTYPE_BOOL, "passive", 358 1.24 jruoho SYSCTL_DESCR("Passive cooling"), NULL, 0, 359 1.24 jruoho &acpicpu_passive, 0, CTL_CREATE, CTL_EOL); 360 1.24 jruoho 361 1.24 jruoho if (err != 0) 362 1.24 jruoho goto fail; 363 1.24 jruoho 364 1.24 jruoho return; 365 1.24 jruoho 366 1.24 jruoho fail: 367 1.52 pgoyette aprint_error("%s: failed to init sysctl (err %d)\n", __func__, err); 368 1.24 jruoho } 369 1.24 jruoho 370 1.30 jruoho static ACPI_STATUS 371 1.1 jruoho acpicpu_object(ACPI_HANDLE hdl, struct acpicpu_object *ao) 372 1.1 jruoho { 373 1.53 jmcneill ACPI_OBJECT_TYPE typ; 374 1.1 jruoho ACPI_OBJECT *obj; 375 1.1 jruoho ACPI_BUFFER buf; 376 1.1 jruoho ACPI_STATUS rv; 377 1.1 jruoho 378 1.53 jmcneill rv = AcpiGetType(hdl, &typ); 379 1.53 jmcneill if (typ != ACPI_TYPE_PROCESSOR) { 380 1.53 jmcneill return AE_TYPE; 381 1.53 jmcneill } 382 1.53 jmcneill 383 1.1 jruoho rv = acpi_eval_struct(hdl, NULL, &buf); 384 1.1 jruoho 385 1.1 jruoho if (ACPI_FAILURE(rv)) 386 1.30 jruoho goto out; 387 1.1 jruoho 388 1.1 jruoho obj = buf.Pointer; 389 1.1 jruoho 390 1.1 jruoho if (obj->Type != ACPI_TYPE_PROCESSOR) { 391 1.1 jruoho rv = AE_TYPE; 392 1.1 jruoho goto out; 393 1.1 jruoho } 394 1.1 jruoho 395 1.1 jruoho if (obj->Processor.ProcId > (uint32_t)maxcpus) { 396 1.1 jruoho rv = AE_LIMIT; 397 1.1 jruoho goto out; 398 1.1 jruoho } 399 1.1 jruoho 400 1.1 jruoho KDASSERT((uint64_t)obj->Processor.PblkAddress < UINT32_MAX); 401 1.1 jruoho 402 1.1 jruoho if (ao != NULL) { 403 1.1 jruoho ao->ao_procid = obj->Processor.ProcId; 404 1.1 jruoho ao->ao_pblklen = obj->Processor.PblkLength; 405 1.1 jruoho ao->ao_pblkaddr = obj->Processor.PblkAddress; 406 1.1 jruoho } 407 1.1 jruoho 408 1.1 jruoho out: 409 1.1 jruoho if (buf.Pointer != NULL) 410 1.1 jruoho ACPI_FREE(buf.Pointer); 411 1.1 jruoho 412 1.30 jruoho return rv; 413 1.1 jruoho } 414 1.1 jruoho 415 1.1 jruoho static uint32_t 416 1.1 jruoho acpicpu_cap(struct acpicpu_softc *sc) 417 1.1 jruoho { 418 1.21 jruoho uint32_t flags, cap = 0; 419 1.1 jruoho ACPI_STATUS rv; 420 1.1 jruoho 421 1.1 jruoho /* 422 1.21 jruoho * Query and set machine-dependent capabilities. 423 1.41 jruoho * Note that the Intel-specific _PDC method has 424 1.41 jruoho * already been evaluated. It was furthermore 425 1.21 jruoho * deprecated in the ACPI 3.0 in favor of _OSC. 426 1.1 jruoho */ 427 1.41 jruoho flags = acpi_md_pdc(); 428 1.21 jruoho rv = acpicpu_cap_osc(sc, flags, &cap); 429 1.1 jruoho 430 1.21 jruoho if (ACPI_FAILURE(rv) && rv != AE_NOT_FOUND) { 431 1.1 jruoho 432 1.41 jruoho aprint_error_dev(sc->sc_dev, "failed to evaluate " 433 1.41 jruoho "_OSC: %s\n", AcpiFormatException(rv)); 434 1.21 jruoho } 435 1.1 jruoho 436 1.41 jruoho return (cap != 0) ? cap : flags; 437 1.1 jruoho } 438 1.1 jruoho 439 1.1 jruoho static ACPI_STATUS 440 1.21 jruoho acpicpu_cap_osc(struct acpicpu_softc *sc, uint32_t flags, uint32_t *val) 441 1.1 jruoho { 442 1.21 jruoho ACPI_OBJECT_LIST arg; 443 1.21 jruoho ACPI_OBJECT obj[4]; 444 1.21 jruoho ACPI_OBJECT *osc; 445 1.1 jruoho ACPI_BUFFER buf; 446 1.1 jruoho ACPI_STATUS rv; 447 1.21 jruoho uint32_t cap[2]; 448 1.21 jruoho uint32_t *ptr; 449 1.21 jruoho int i = 5; 450 1.1 jruoho 451 1.21 jruoho static uint8_t intel_uuid[16] = { 452 1.1 jruoho 0x16, 0xA6, 0x77, 0x40, 0x0C, 0x29, 0xBE, 0x47, 453 1.1 jruoho 0x9E, 0xBD, 0xD8, 0x70, 0x58, 0x71, 0x39, 0x53 454 1.1 jruoho }; 455 1.1 jruoho 456 1.21 jruoho cap[0] = ACPI_OSC_QUERY; 457 1.21 jruoho cap[1] = flags; 458 1.1 jruoho 459 1.21 jruoho again: 460 1.21 jruoho arg.Count = 4; 461 1.21 jruoho arg.Pointer = obj; 462 1.21 jruoho 463 1.21 jruoho obj[0].Type = ACPI_TYPE_BUFFER; 464 1.21 jruoho obj[0].Buffer.Length = sizeof(intel_uuid); 465 1.21 jruoho obj[0].Buffer.Pointer = intel_uuid; 466 1.21 jruoho 467 1.21 jruoho obj[1].Type = ACPI_TYPE_INTEGER; 468 1.21 jruoho obj[1].Integer.Value = ACPICPU_PDC_REVID; 469 1.21 jruoho 470 1.21 jruoho obj[2].Type = ACPI_TYPE_INTEGER; 471 1.21 jruoho obj[2].Integer.Value = __arraycount(cap); 472 1.21 jruoho 473 1.21 jruoho obj[3].Type = ACPI_TYPE_BUFFER; 474 1.21 jruoho obj[3].Buffer.Length = sizeof(cap); 475 1.21 jruoho obj[3].Buffer.Pointer = (void *)cap; 476 1.1 jruoho 477 1.1 jruoho buf.Pointer = NULL; 478 1.1 jruoho buf.Length = ACPI_ALLOCATE_LOCAL_BUFFER; 479 1.1 jruoho 480 1.21 jruoho rv = AcpiEvaluateObject(sc->sc_node->ad_handle, "_OSC", &arg, &buf); 481 1.1 jruoho 482 1.1 jruoho if (ACPI_FAILURE(rv)) 483 1.21 jruoho goto out; 484 1.1 jruoho 485 1.21 jruoho osc = buf.Pointer; 486 1.1 jruoho 487 1.21 jruoho if (osc->Type != ACPI_TYPE_BUFFER) { 488 1.1 jruoho rv = AE_TYPE; 489 1.1 jruoho goto out; 490 1.1 jruoho } 491 1.1 jruoho 492 1.21 jruoho if (osc->Buffer.Length != sizeof(cap)) { 493 1.1 jruoho rv = AE_BUFFER_OVERFLOW; 494 1.1 jruoho goto out; 495 1.1 jruoho } 496 1.1 jruoho 497 1.21 jruoho ptr = (uint32_t *)osc->Buffer.Pointer; 498 1.21 jruoho 499 1.21 jruoho if ((ptr[0] & ACPI_OSC_ERROR) != 0) { 500 1.21 jruoho rv = AE_ERROR; 501 1.21 jruoho goto out; 502 1.21 jruoho } 503 1.21 jruoho 504 1.21 jruoho if ((ptr[0] & (ACPI_OSC_ERROR_REV | ACPI_OSC_ERROR_UUID)) != 0) { 505 1.21 jruoho rv = AE_BAD_PARAMETER; 506 1.21 jruoho goto out; 507 1.21 jruoho } 508 1.21 jruoho 509 1.21 jruoho /* 510 1.21 jruoho * "It is strongly recommended that the OS evaluate 511 1.21 jruoho * _OSC with the Query Support Flag set until _OSC 512 1.21 jruoho * returns the Capabilities Masked bit clear, to 513 1.21 jruoho * negotiate the set of features to be granted to 514 1.21 jruoho * the OS for native support (ACPI 4.0, 6.2.10)." 515 1.21 jruoho */ 516 1.21 jruoho if ((ptr[0] & ACPI_OSC_ERROR_MASKED) != 0 && i >= 0) { 517 1.1 jruoho 518 1.1 jruoho ACPI_FREE(buf.Pointer); 519 1.21 jruoho i--; 520 1.1 jruoho 521 1.21 jruoho goto again; 522 1.21 jruoho } 523 1.1 jruoho 524 1.21 jruoho if ((cap[0] & ACPI_OSC_QUERY) != 0) { 525 1.1 jruoho 526 1.21 jruoho ACPI_FREE(buf.Pointer); 527 1.21 jruoho cap[0] &= ~ACPI_OSC_QUERY; 528 1.1 jruoho 529 1.21 jruoho goto again; 530 1.21 jruoho } 531 1.1 jruoho 532 1.21 jruoho /* 533 1.21 jruoho * It is permitted for _OSC to return all 534 1.21 jruoho * bits cleared, but this is specified to 535 1.21 jruoho * vary on per-device basis. Assume that 536 1.21 jruoho * everything rather than nothing will be 537 1.23 jruoho * supported in this case; we do not need 538 1.21 jruoho * the firmware to know the CPU features. 539 1.21 jruoho */ 540 1.21 jruoho *val = (ptr[1] != 0) ? ptr[1] : cap[1]; 541 1.1 jruoho 542 1.21 jruoho out: 543 1.21 jruoho if (buf.Pointer != NULL) 544 1.21 jruoho ACPI_FREE(buf.Pointer); 545 1.1 jruoho 546 1.21 jruoho return rv; 547 1.1 jruoho } 548 1.1 jruoho 549 1.1 jruoho static void 550 1.1 jruoho acpicpu_notify(ACPI_HANDLE hdl, uint32_t evt, void *aux) 551 1.1 jruoho { 552 1.1 jruoho ACPI_OSD_EXEC_CALLBACK func; 553 1.1 jruoho struct acpicpu_softc *sc; 554 1.1 jruoho device_t self = aux; 555 1.1 jruoho 556 1.1 jruoho sc = device_private(self); 557 1.1 jruoho 558 1.16 jruoho if (sc->sc_cold != false) 559 1.16 jruoho return; 560 1.16 jruoho 561 1.24 jruoho if (acpicpu_dynamic != true) 562 1.24 jruoho return; 563 1.24 jruoho 564 1.1 jruoho switch (evt) { 565 1.1 jruoho 566 1.1 jruoho case ACPICPU_C_NOTIFY: 567 1.1 jruoho 568 1.1 jruoho if ((sc->sc_flags & ACPICPU_FLAG_C) == 0) 569 1.1 jruoho return; 570 1.1 jruoho 571 1.1 jruoho func = acpicpu_cstate_callback; 572 1.1 jruoho break; 573 1.1 jruoho 574 1.1 jruoho case ACPICPU_P_NOTIFY: 575 1.1 jruoho 576 1.1 jruoho if ((sc->sc_flags & ACPICPU_FLAG_P) == 0) 577 1.1 jruoho return; 578 1.1 jruoho 579 1.12 jruoho func = acpicpu_pstate_callback; 580 1.1 jruoho break; 581 1.1 jruoho 582 1.1 jruoho case ACPICPU_T_NOTIFY: 583 1.1 jruoho 584 1.1 jruoho if ((sc->sc_flags & ACPICPU_FLAG_T) == 0) 585 1.1 jruoho return; 586 1.1 jruoho 587 1.15 jruoho func = acpicpu_tstate_callback; 588 1.1 jruoho break; 589 1.1 jruoho 590 1.1 jruoho default: 591 1.1 jruoho aprint_error_dev(sc->sc_dev, "unknown notify: 0x%02X\n", evt); 592 1.1 jruoho return; 593 1.1 jruoho } 594 1.1 jruoho 595 1.1 jruoho (void)AcpiOsExecute(OSL_NOTIFY_HANDLER, func, sc->sc_dev); 596 1.1 jruoho } 597 1.1 jruoho 598 1.1 jruoho static bool 599 1.1 jruoho acpicpu_suspend(device_t self, const pmf_qual_t *qual) 600 1.1 jruoho { 601 1.1 jruoho struct acpicpu_softc *sc = device_private(self); 602 1.1 jruoho 603 1.1 jruoho if ((sc->sc_flags & ACPICPU_FLAG_C) != 0) 604 1.1 jruoho (void)acpicpu_cstate_suspend(self); 605 1.1 jruoho 606 1.12 jruoho if ((sc->sc_flags & ACPICPU_FLAG_P) != 0) 607 1.12 jruoho (void)acpicpu_pstate_suspend(self); 608 1.12 jruoho 609 1.15 jruoho if ((sc->sc_flags & ACPICPU_FLAG_T) != 0) 610 1.15 jruoho (void)acpicpu_tstate_suspend(self); 611 1.15 jruoho 612 1.18 jruoho sc->sc_cold = true; 613 1.18 jruoho 614 1.1 jruoho return true; 615 1.1 jruoho } 616 1.1 jruoho 617 1.1 jruoho static bool 618 1.1 jruoho acpicpu_resume(device_t self, const pmf_qual_t *qual) 619 1.1 jruoho { 620 1.1 jruoho struct acpicpu_softc *sc = device_private(self); 621 1.38 jruoho static const int handler = OSL_NOTIFY_HANDLER; 622 1.1 jruoho 623 1.18 jruoho sc->sc_cold = false; 624 1.18 jruoho 625 1.1 jruoho if ((sc->sc_flags & ACPICPU_FLAG_C) != 0) 626 1.38 jruoho (void)AcpiOsExecute(handler, acpicpu_cstate_resume, self); 627 1.1 jruoho 628 1.12 jruoho if ((sc->sc_flags & ACPICPU_FLAG_P) != 0) 629 1.38 jruoho (void)AcpiOsExecute(handler, acpicpu_pstate_resume, self); 630 1.12 jruoho 631 1.15 jruoho if ((sc->sc_flags & ACPICPU_FLAG_T) != 0) 632 1.38 jruoho (void)AcpiOsExecute(handler, acpicpu_tstate_resume, self); 633 1.15 jruoho 634 1.1 jruoho return true; 635 1.1 jruoho } 636 1.1 jruoho 637 1.29 jruoho static void 638 1.33 jruoho acpicpu_evcnt_attach(device_t self) 639 1.33 jruoho { 640 1.33 jruoho struct acpicpu_softc *sc = device_private(self); 641 1.33 jruoho struct acpicpu_cstate *cs; 642 1.33 jruoho struct acpicpu_pstate *ps; 643 1.33 jruoho struct acpicpu_tstate *ts; 644 1.33 jruoho const char *str; 645 1.33 jruoho uint32_t i; 646 1.33 jruoho 647 1.33 jruoho for (i = 0; i < __arraycount(sc->sc_cstate); i++) { 648 1.33 jruoho 649 1.33 jruoho cs = &sc->sc_cstate[i]; 650 1.33 jruoho 651 1.33 jruoho if (cs->cs_method == 0) 652 1.33 jruoho continue; 653 1.33 jruoho 654 1.33 jruoho str = "HALT"; 655 1.33 jruoho 656 1.33 jruoho if (cs->cs_method == ACPICPU_C_STATE_FFH) 657 1.33 jruoho str = "MWAIT"; 658 1.33 jruoho 659 1.33 jruoho if (cs->cs_method == ACPICPU_C_STATE_SYSIO) 660 1.33 jruoho str = "I/O"; 661 1.33 jruoho 662 1.33 jruoho (void)snprintf(cs->cs_name, sizeof(cs->cs_name), 663 1.33 jruoho "C%d (%s)", i, str); 664 1.33 jruoho 665 1.33 jruoho evcnt_attach_dynamic(&cs->cs_evcnt, EVCNT_TYPE_MISC, 666 1.33 jruoho NULL, device_xname(sc->sc_dev), cs->cs_name); 667 1.33 jruoho } 668 1.33 jruoho 669 1.33 jruoho for (i = 0; i < sc->sc_pstate_count; i++) { 670 1.33 jruoho 671 1.33 jruoho ps = &sc->sc_pstate[i]; 672 1.33 jruoho 673 1.33 jruoho if (ps->ps_freq == 0) 674 1.33 jruoho continue; 675 1.33 jruoho 676 1.33 jruoho (void)snprintf(ps->ps_name, sizeof(ps->ps_name), 677 1.33 jruoho "P%u (%u MHz)", i, ps->ps_freq); 678 1.33 jruoho 679 1.33 jruoho evcnt_attach_dynamic(&ps->ps_evcnt, EVCNT_TYPE_MISC, 680 1.33 jruoho NULL, device_xname(sc->sc_dev), ps->ps_name); 681 1.33 jruoho } 682 1.33 jruoho 683 1.33 jruoho for (i = 0; i < sc->sc_tstate_count; i++) { 684 1.33 jruoho 685 1.33 jruoho ts = &sc->sc_tstate[i]; 686 1.33 jruoho 687 1.33 jruoho if (ts->ts_percent == 0) 688 1.33 jruoho continue; 689 1.33 jruoho 690 1.33 jruoho (void)snprintf(ts->ts_name, sizeof(ts->ts_name), 691 1.33 jruoho "T%u (%u %%)", i, ts->ts_percent); 692 1.33 jruoho 693 1.33 jruoho evcnt_attach_dynamic(&ts->ts_evcnt, EVCNT_TYPE_MISC, 694 1.33 jruoho NULL, device_xname(sc->sc_dev), ts->ts_name); 695 1.33 jruoho } 696 1.33 jruoho } 697 1.33 jruoho 698 1.33 jruoho static void 699 1.33 jruoho acpicpu_evcnt_detach(device_t self) 700 1.33 jruoho { 701 1.33 jruoho struct acpicpu_softc *sc = device_private(self); 702 1.33 jruoho struct acpicpu_cstate *cs; 703 1.33 jruoho struct acpicpu_pstate *ps; 704 1.33 jruoho struct acpicpu_tstate *ts; 705 1.33 jruoho uint32_t i; 706 1.33 jruoho 707 1.33 jruoho for (i = 0; i < __arraycount(sc->sc_cstate); i++) { 708 1.33 jruoho 709 1.33 jruoho cs = &sc->sc_cstate[i]; 710 1.33 jruoho 711 1.33 jruoho if (cs->cs_method != 0) 712 1.33 jruoho evcnt_detach(&cs->cs_evcnt); 713 1.33 jruoho } 714 1.33 jruoho 715 1.33 jruoho for (i = 0; i < sc->sc_pstate_count; i++) { 716 1.33 jruoho 717 1.33 jruoho ps = &sc->sc_pstate[i]; 718 1.33 jruoho 719 1.33 jruoho if (ps->ps_freq != 0) 720 1.33 jruoho evcnt_detach(&ps->ps_evcnt); 721 1.33 jruoho } 722 1.33 jruoho 723 1.33 jruoho for (i = 0; i < sc->sc_tstate_count; i++) { 724 1.33 jruoho 725 1.33 jruoho ts = &sc->sc_tstate[i]; 726 1.33 jruoho 727 1.33 jruoho if (ts->ts_percent != 0) 728 1.33 jruoho evcnt_detach(&ts->ts_evcnt); 729 1.33 jruoho } 730 1.33 jruoho } 731 1.33 jruoho 732 1.33 jruoho static void 733 1.30 jruoho acpicpu_debug_print(device_t self) 734 1.29 jruoho { 735 1.30 jruoho struct acpicpu_softc *sc = device_private(self); 736 1.30 jruoho struct cpu_info *ci = sc->sc_ci; 737 1.32 jruoho struct acpicpu_cstate *cs; 738 1.32 jruoho struct acpicpu_pstate *ps; 739 1.32 jruoho struct acpicpu_tstate *ts; 740 1.32 jruoho static bool once = false; 741 1.29 jruoho struct acpicpu_dep *dep; 742 1.32 jruoho uint32_t i, method; 743 1.32 jruoho 744 1.32 jruoho if (once != true) { 745 1.32 jruoho 746 1.32 jruoho for (i = 0; i < __arraycount(sc->sc_cstate); i++) { 747 1.32 jruoho 748 1.32 jruoho cs = &sc->sc_cstate[i]; 749 1.32 jruoho 750 1.32 jruoho if (cs->cs_method == 0) 751 1.32 jruoho continue; 752 1.32 jruoho 753 1.32 jruoho aprint_verbose_dev(sc->sc_dev, "C%d: %3s, " 754 1.35 jruoho "lat %3u us, pow %5u mW%s\n", i, 755 1.45 jruoho acpicpu_debug_print_method_c(cs->cs_method), 756 1.32 jruoho cs->cs_latency, cs->cs_power, 757 1.35 jruoho (cs->cs_flags != 0) ? ", bus master check" : ""); 758 1.32 jruoho } 759 1.32 jruoho 760 1.32 jruoho method = sc->sc_pstate_control.reg_spaceid; 761 1.32 jruoho 762 1.32 jruoho for (i = 0; i < sc->sc_pstate_count; i++) { 763 1.32 jruoho 764 1.32 jruoho ps = &sc->sc_pstate[i]; 765 1.32 jruoho 766 1.32 jruoho if (ps->ps_freq == 0) 767 1.32 jruoho continue; 768 1.32 jruoho 769 1.32 jruoho aprint_verbose_dev(sc->sc_dev, "P%d: %3s, " 770 1.35 jruoho "lat %3u us, pow %5u mW, %4u MHz%s\n", i, 771 1.45 jruoho acpicpu_debug_print_method_pt(method), 772 1.35 jruoho ps->ps_latency, ps->ps_power, ps->ps_freq, 773 1.35 jruoho (ps->ps_flags & ACPICPU_FLAG_P_TURBO) != 0 ? 774 1.35 jruoho ", turbo boost" : ""); 775 1.32 jruoho } 776 1.32 jruoho 777 1.32 jruoho method = sc->sc_tstate_control.reg_spaceid; 778 1.32 jruoho 779 1.32 jruoho for (i = 0; i < sc->sc_tstate_count; i++) { 780 1.32 jruoho 781 1.32 jruoho ts = &sc->sc_tstate[i]; 782 1.32 jruoho 783 1.32 jruoho if (ts->ts_percent == 0) 784 1.32 jruoho continue; 785 1.32 jruoho 786 1.32 jruoho aprint_verbose_dev(sc->sc_dev, "T%u: %3s, " 787 1.32 jruoho "lat %3u us, pow %5u mW, %3u %%\n", i, 788 1.45 jruoho acpicpu_debug_print_method_pt(method), 789 1.32 jruoho ts->ts_latency, ts->ts_power, ts->ts_percent); 790 1.32 jruoho } 791 1.32 jruoho 792 1.32 jruoho once = true; 793 1.32 jruoho } 794 1.29 jruoho 795 1.30 jruoho aprint_debug_dev(sc->sc_dev, "id %u, lapic id %u, " 796 1.30 jruoho "cap 0x%04x, flags 0x%08x\n", ci->ci_acpiid, 797 1.30 jruoho (uint32_t)ci->ci_cpuid, sc->sc_cap, sc->sc_flags); 798 1.30 jruoho 799 1.29 jruoho if ((sc->sc_flags & ACPICPU_FLAG_C_DEP) != 0) { 800 1.29 jruoho 801 1.29 jruoho dep = &sc->sc_cstate_dep; 802 1.29 jruoho 803 1.29 jruoho aprint_debug_dev(sc->sc_dev, "C-state coordination: " 804 1.29 jruoho "%u CPUs, domain %u, type %s\n", dep->dep_ncpus, 805 1.29 jruoho dep->dep_domain, acpicpu_debug_print_dep(dep->dep_type)); 806 1.29 jruoho } 807 1.29 jruoho 808 1.29 jruoho if ((sc->sc_flags & ACPICPU_FLAG_P_DEP) != 0) { 809 1.29 jruoho 810 1.29 jruoho dep = &sc->sc_pstate_dep; 811 1.29 jruoho 812 1.29 jruoho aprint_debug_dev(sc->sc_dev, "P-state coordination: " 813 1.29 jruoho "%u CPUs, domain %u, type %s\n", dep->dep_ncpus, 814 1.29 jruoho dep->dep_domain, acpicpu_debug_print_dep(dep->dep_type)); 815 1.29 jruoho } 816 1.29 jruoho 817 1.29 jruoho if ((sc->sc_flags & ACPICPU_FLAG_T_DEP) != 0) { 818 1.29 jruoho 819 1.29 jruoho dep = &sc->sc_tstate_dep; 820 1.29 jruoho 821 1.29 jruoho aprint_debug_dev(sc->sc_dev, "T-state coordination: " 822 1.29 jruoho "%u CPUs, domain %u, type %s\n", dep->dep_ncpus, 823 1.29 jruoho dep->dep_domain, acpicpu_debug_print_dep(dep->dep_type)); 824 1.29 jruoho } 825 1.29 jruoho } 826 1.29 jruoho 827 1.29 jruoho static const char * 828 1.45 jruoho acpicpu_debug_print_method_c(uint8_t val) 829 1.32 jruoho { 830 1.32 jruoho 831 1.40 jruoho if (val == ACPICPU_C_STATE_FFH) 832 1.40 jruoho return "FFH"; 833 1.32 jruoho 834 1.40 jruoho if (val == ACPICPU_C_STATE_HALT) 835 1.32 jruoho return "HLT"; 836 1.32 jruoho 837 1.40 jruoho if (val == ACPICPU_C_STATE_SYSIO) 838 1.40 jruoho return "I/O"; 839 1.32 jruoho 840 1.45 jruoho return "???"; 841 1.45 jruoho } 842 1.45 jruoho 843 1.45 jruoho static const char * 844 1.45 jruoho acpicpu_debug_print_method_pt(uint8_t val) 845 1.45 jruoho { 846 1.53 jmcneill if (val == ACPI_ADR_SPACE_SYSTEM_MEMORY) 847 1.53 jmcneill return "MMIO"; 848 1.45 jruoho 849 1.40 jruoho if (val == ACPI_ADR_SPACE_SYSTEM_IO) 850 1.32 jruoho return "I/O"; 851 1.32 jruoho 852 1.40 jruoho if (val == ACPI_ADR_SPACE_FIXED_HARDWARE) 853 1.40 jruoho return "FFH"; 854 1.40 jruoho 855 1.40 jruoho return "???"; 856 1.32 jruoho } 857 1.32 jruoho 858 1.32 jruoho static const char * 859 1.29 jruoho acpicpu_debug_print_dep(uint32_t val) 860 1.29 jruoho { 861 1.29 jruoho 862 1.29 jruoho switch (val) { 863 1.29 jruoho 864 1.29 jruoho case ACPICPU_DEP_SW_ALL: 865 1.29 jruoho return "SW_ALL"; 866 1.29 jruoho 867 1.29 jruoho case ACPICPU_DEP_SW_ANY: 868 1.29 jruoho return "SW_ANY"; 869 1.29 jruoho 870 1.29 jruoho case ACPICPU_DEP_HW_ALL: 871 1.29 jruoho return "HW_ALL"; 872 1.29 jruoho 873 1.29 jruoho default: 874 1.29 jruoho return "unknown"; 875 1.29 jruoho } 876 1.29 jruoho } 877 1.29 jruoho 878 1.1 jruoho MODULE(MODULE_CLASS_DRIVER, acpicpu, NULL); 879 1.1 jruoho 880 1.26 jruoho #ifdef _MODULE 881 1.26 jruoho #include "ioconf.c" 882 1.26 jruoho #endif 883 1.1 jruoho 884 1.1 jruoho static int 885 1.26 jruoho acpicpu_modcmd(modcmd_t cmd, void *aux) 886 1.1 jruoho { 887 1.26 jruoho int rv = 0; 888 1.1 jruoho 889 1.1 jruoho switch (cmd) { 890 1.1 jruoho 891 1.1 jruoho case MODULE_CMD_INIT: 892 1.1 jruoho 893 1.26 jruoho #ifdef _MODULE 894 1.26 jruoho rv = config_init_component(cfdriver_ioconf_acpicpu, 895 1.26 jruoho cfattach_ioconf_acpicpu, cfdata_ioconf_acpicpu); 896 1.26 jruoho #endif 897 1.26 jruoho break; 898 1.1 jruoho 899 1.1 jruoho case MODULE_CMD_FINI: 900 1.1 jruoho 901 1.26 jruoho #ifdef _MODULE 902 1.26 jruoho rv = config_fini_component(cfdriver_ioconf_acpicpu, 903 1.26 jruoho cfattach_ioconf_acpicpu, cfdata_ioconf_acpicpu); 904 1.26 jruoho #endif 905 1.26 jruoho break; 906 1.1 jruoho 907 1.1 jruoho default: 908 1.26 jruoho rv = ENOTTY; 909 1.1 jruoho } 910 1.26 jruoho 911 1.26 jruoho return rv; 912 1.1 jruoho } 913