1 1.108 riastrad /* $NetBSD: acpi_ec.c,v 1.108 2023/07/18 10:17:12 riastradh Exp $ */ 2 1.1 thorpej 3 1.44 jmcneill /*- 4 1.44 jmcneill * Copyright (c) 2007 Joerg Sonnenberger <joerg (at) NetBSD.org>. 5 1.1 thorpej * All rights reserved. 6 1.1 thorpej * 7 1.1 thorpej * Redistribution and use in source and binary forms, with or without 8 1.1 thorpej * modification, are permitted provided that the following conditions 9 1.1 thorpej * are met: 10 1.1 thorpej * 11 1.1 thorpej * 1. Redistributions of source code must retain the above copyright 12 1.1 thorpej * notice, this list of conditions and the following disclaimer. 13 1.1 thorpej * 2. Redistributions in binary form must reproduce the above copyright 14 1.44 jmcneill * notice, this list of conditions and the following disclaimer in 15 1.44 jmcneill * the documentation and/or other materials provided with the 16 1.44 jmcneill * distribution. 17 1.44 jmcneill * 18 1.44 jmcneill * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 19 1.44 jmcneill * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 20 1.44 jmcneill * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS 21 1.44 jmcneill * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE 22 1.44 jmcneill * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, 23 1.44 jmcneill * INCIDENTAL, SPECIAL, EXEMPLARY OR CONSEQUENTIAL DAMAGES (INCLUDING, 24 1.44 jmcneill * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 25 1.44 jmcneill * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 26 1.44 jmcneill * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 27 1.44 jmcneill * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT 28 1.44 jmcneill * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 29 1.1 thorpej * SUCH DAMAGE. 30 1.1 thorpej */ 31 1.1 thorpej 32 1.46 joerg /* 33 1.46 joerg * The ACPI Embedded Controller (EC) driver serves two different purposes: 34 1.46 joerg * - read and write access from ASL, e.g. to read battery state 35 1.46 joerg * - notification of ASL of System Control Interrupts. 36 1.46 joerg * 37 1.89 riastrad * Lock order: 38 1.89 riastrad * sc_access_mtx (serializes EC transactions -- read, write, or SCI) 39 1.89 riastrad * -> ACPI global lock (excludes other ACPI access during EC transaction) 40 1.89 riastrad * -> sc_mtx (serializes state machine transitions and waits) 41 1.46 joerg * 42 1.89 riastrad * SCIs are processed in a kernel thread. 43 1.46 joerg * 44 1.46 joerg * Read and write requests spin around for a short time as many requests 45 1.46 joerg * can be handled instantly by the EC. During normal processing interrupt 46 1.46 joerg * mode is used exclusively. At boot and resume time interrupts are not 47 1.46 joerg * working and the handlers just busy loop. 48 1.46 joerg * 49 1.46 joerg * A callout is scheduled to compensate for missing interrupts on some 50 1.46 joerg * hardware. If the EC doesn't process a request for 5s, it is most likely 51 1.46 joerg * in a wedged state. No method to reset the EC is currently known. 52 1.46 joerg * 53 1.46 joerg * Special care has to be taken to not poll the EC in a busy loop without 54 1.46 joerg * delay. This can prevent processing of Power Button events. At least some 55 1.46 joerg * Lenovo Thinkpads seem to be implement the Power Button Override in the EC 56 1.46 joerg * and the only option to recover on those models is to cut off all power. 57 1.46 joerg */ 58 1.46 joerg 59 1.3 lukem #include <sys/cdefs.h> 60 1.108 riastrad __KERNEL_RCSID(0, "$NetBSD: acpi_ec.c,v 1.108 2023/07/18 10:17:12 riastradh Exp $"); 61 1.88 riastrad 62 1.88 riastrad #ifdef _KERNEL_OPT 63 1.88 riastrad #include "opt_acpi_ec.h" 64 1.88 riastrad #endif 65 1.1 thorpej 66 1.1 thorpej #include <sys/param.h> 67 1.62 jruoho #include <sys/callout.h> 68 1.44 jmcneill #include <sys/condvar.h> 69 1.1 thorpej #include <sys/device.h> 70 1.1 thorpej #include <sys/kernel.h> 71 1.44 jmcneill #include <sys/kthread.h> 72 1.44 jmcneill #include <sys/mutex.h> 73 1.62 jruoho #include <sys/systm.h> 74 1.1 thorpej 75 1.57 mlelstv #include <dev/acpi/acpireg.h> 76 1.1 thorpej #include <dev/acpi/acpivar.h> 77 1.48 jmcneill #include <dev/acpi/acpi_ecvar.h> 78 1.1 thorpej 79 1.57 mlelstv #define _COMPONENT ACPI_EC_COMPONENT 80 1.57 mlelstv ACPI_MODULE_NAME ("acpi_ec") 81 1.57 mlelstv 82 1.44 jmcneill /* Maximum time to wait for global ACPI lock in ms */ 83 1.44 jmcneill #define EC_LOCK_TIMEOUT 5 84 1.23 kochi 85 1.44 jmcneill /* Maximum time to poll for completion of a command in ms */ 86 1.44 jmcneill #define EC_POLL_TIMEOUT 5 87 1.1 thorpej 88 1.46 joerg /* Maximum time to give a single EC command in s */ 89 1.46 joerg #define EC_CMD_TIMEOUT 10 90 1.46 joerg 91 1.44 jmcneill /* From ACPI 3.0b, chapter 12.3 */ 92 1.44 jmcneill #define EC_COMMAND_READ 0x80 93 1.44 jmcneill #define EC_COMMAND_WRITE 0x81 94 1.44 jmcneill #define EC_COMMAND_BURST_EN 0x82 95 1.44 jmcneill #define EC_COMMAND_BURST_DIS 0x83 96 1.44 jmcneill #define EC_COMMAND_QUERY 0x84 97 1.44 jmcneill 98 1.44 jmcneill /* From ACPI 3.0b, chapter 12.2.1 */ 99 1.44 jmcneill #define EC_STATUS_OBF 0x01 100 1.44 jmcneill #define EC_STATUS_IBF 0x02 101 1.44 jmcneill #define EC_STATUS_CMD 0x08 102 1.44 jmcneill #define EC_STATUS_BURST 0x10 103 1.44 jmcneill #define EC_STATUS_SCI 0x20 104 1.44 jmcneill #define EC_STATUS_SMI 0x40 105 1.1 thorpej 106 1.88 riastrad #define EC_STATUS_FMT \ 107 1.88 riastrad "\x10\10IGN7\7SMI\6SCI\5BURST\4CMD\3IGN2\2IBF\1OBF" 108 1.88 riastrad 109 1.85 thorpej static const struct device_compatible_entry compat_data[] = { 110 1.85 thorpej { .compat = "PNP0C09" }, 111 1.85 thorpej DEVICE_COMPAT_EOL 112 1.44 jmcneill }; 113 1.44 jmcneill 114 1.88 riastrad #define EC_STATE_ENUM(F) \ 115 1.88 riastrad F(EC_STATE_QUERY, "QUERY") \ 116 1.88 riastrad F(EC_STATE_QUERY_VAL, "QUERY_VAL") \ 117 1.88 riastrad F(EC_STATE_READ, "READ") \ 118 1.88 riastrad F(EC_STATE_READ_ADDR, "READ_ADDR") \ 119 1.88 riastrad F(EC_STATE_READ_VAL, "READ_VAL") \ 120 1.88 riastrad F(EC_STATE_WRITE, "WRITE") \ 121 1.88 riastrad F(EC_STATE_WRITE_ADDR, "WRITE_ADDR") \ 122 1.88 riastrad F(EC_STATE_WRITE_VAL, "WRITE_VAL") \ 123 1.88 riastrad F(EC_STATE_FREE, "FREE") \ 124 1.88 riastrad 125 1.44 jmcneill enum ec_state_t { 126 1.88 riastrad #define F(N, S) N, 127 1.88 riastrad EC_STATE_ENUM(F) 128 1.88 riastrad #undef F 129 1.88 riastrad }; 130 1.88 riastrad 131 1.88 riastrad #ifdef ACPIEC_DEBUG 132 1.88 riastrad static const char *const acpiec_state_names[] = { 133 1.88 riastrad #define F(N, S) [N] = S, 134 1.88 riastrad EC_STATE_ENUM(F) 135 1.88 riastrad #undef F 136 1.44 jmcneill }; 137 1.88 riastrad #endif 138 1.44 jmcneill 139 1.44 jmcneill struct acpiec_softc { 140 1.87 riastrad device_t sc_dev; 141 1.87 riastrad 142 1.44 jmcneill ACPI_HANDLE sc_ech; 143 1.1 thorpej 144 1.44 jmcneill ACPI_HANDLE sc_gpeh; 145 1.65 jruoho uint8_t sc_gpebit; 146 1.1 thorpej 147 1.44 jmcneill bus_space_tag_t sc_data_st; 148 1.44 jmcneill bus_space_handle_t sc_data_sh; 149 1.1 thorpej 150 1.44 jmcneill bus_space_tag_t sc_csr_st; 151 1.44 jmcneill bus_space_handle_t sc_csr_sh; 152 1.1 thorpej 153 1.44 jmcneill bool sc_need_global_lock; 154 1.65 jruoho uint32_t sc_global_lock; 155 1.17 mycroft 156 1.44 jmcneill kmutex_t sc_mtx, sc_access_mtx; 157 1.44 jmcneill kcondvar_t sc_cv, sc_cv_sci; 158 1.44 jmcneill enum ec_state_t sc_state; 159 1.44 jmcneill bool sc_got_sci; 160 1.46 joerg callout_t sc_pseudo_intr; 161 1.44 jmcneill 162 1.44 jmcneill uint8_t sc_cur_addr, sc_cur_val; 163 1.23 kochi }; 164 1.1 thorpej 165 1.88 riastrad #ifdef ACPIEC_DEBUG 166 1.88 riastrad 167 1.88 riastrad #define ACPIEC_DEBUG_ENUM(F) \ 168 1.88 riastrad F(ACPIEC_DEBUG_REG, "REG") \ 169 1.88 riastrad F(ACPIEC_DEBUG_RW, "RW") \ 170 1.88 riastrad F(ACPIEC_DEBUG_QUERY, "QUERY") \ 171 1.88 riastrad F(ACPIEC_DEBUG_TRANSITION, "TRANSITION") \ 172 1.88 riastrad F(ACPIEC_DEBUG_INTR, "INTR") \ 173 1.88 riastrad 174 1.88 riastrad enum { 175 1.88 riastrad #define F(N, S) N, 176 1.88 riastrad ACPIEC_DEBUG_ENUM(F) 177 1.88 riastrad #undef F 178 1.88 riastrad }; 179 1.88 riastrad 180 1.88 riastrad static const char *const acpiec_debug_names[] = { 181 1.88 riastrad #define F(N, S) [N] = S, 182 1.88 riastrad ACPIEC_DEBUG_ENUM(F) 183 1.88 riastrad #undef F 184 1.88 riastrad }; 185 1.88 riastrad 186 1.88 riastrad int acpiec_debug = ACPIEC_DEBUG; 187 1.88 riastrad 188 1.88 riastrad #define DPRINTF(n, sc, fmt, ...) do \ 189 1.88 riastrad { \ 190 1.88 riastrad if (acpiec_debug & __BIT(n)) { \ 191 1.88 riastrad char dprintbuf[16]; \ 192 1.88 riastrad const char *state; \ 193 1.88 riastrad \ 194 1.88 riastrad /* paranoia */ \ 195 1.88 riastrad if ((sc)->sc_state < __arraycount(acpiec_state_names)) { \ 196 1.88 riastrad state = acpiec_state_names[(sc)->sc_state]; \ 197 1.88 riastrad } else { \ 198 1.88 riastrad snprintf(dprintbuf, sizeof(dprintbuf), "0x%x", \ 199 1.88 riastrad (sc)->sc_state); \ 200 1.88 riastrad state = dprintbuf; \ 201 1.88 riastrad } \ 202 1.88 riastrad \ 203 1.88 riastrad device_printf((sc)->sc_dev, "(%s) [%s] "fmt, \ 204 1.88 riastrad acpiec_debug_names[n], state, ##__VA_ARGS__); \ 205 1.88 riastrad } \ 206 1.88 riastrad } while (0) 207 1.88 riastrad 208 1.88 riastrad #else 209 1.88 riastrad 210 1.88 riastrad #define DPRINTF(n, sc, fmt, ...) __nothing 211 1.88 riastrad 212 1.88 riastrad #endif 213 1.88 riastrad 214 1.55 cegger static int acpiecdt_match(device_t, cfdata_t, void *); 215 1.44 jmcneill static void acpiecdt_attach(device_t, device_t, void *); 216 1.44 jmcneill 217 1.55 cegger static int acpiec_match(device_t, cfdata_t, void *); 218 1.44 jmcneill static void acpiec_attach(device_t, device_t, void *); 219 1.16 kochi 220 1.44 jmcneill static void acpiec_common_attach(device_t, device_t, ACPI_HANDLE, 221 1.63 dyoung bus_space_tag_t, bus_addr_t, bus_space_tag_t, bus_addr_t, 222 1.63 dyoung ACPI_HANDLE, uint8_t); 223 1.1 thorpej 224 1.60 dyoung static bool acpiec_suspend(device_t, const pmf_qual_t *); 225 1.60 dyoung static bool acpiec_resume(device_t, const pmf_qual_t *); 226 1.56 alc static bool acpiec_shutdown(device_t, int); 227 1.17 mycroft 228 1.44 jmcneill static bool acpiec_parse_gpe_package(device_t, ACPI_HANDLE, 229 1.44 jmcneill ACPI_HANDLE *, uint8_t *); 230 1.20 yamt 231 1.46 joerg static void acpiec_callout(void *); 232 1.44 jmcneill static void acpiec_gpe_query(void *); 233 1.69 jruoho static uint32_t acpiec_gpe_handler(ACPI_HANDLE, uint32_t, void *); 234 1.65 jruoho static ACPI_STATUS acpiec_space_setup(ACPI_HANDLE, uint32_t, void *, void **); 235 1.65 jruoho static ACPI_STATUS acpiec_space_handler(uint32_t, ACPI_PHYSICAL_ADDRESS, 236 1.65 jruoho uint32_t, ACPI_INTEGER *, void *, void *); 237 1.20 yamt 238 1.99 riastrad static void acpiec_gpe_state_machine(struct acpiec_softc *); 239 1.20 yamt 240 1.44 jmcneill CFATTACH_DECL_NEW(acpiec, sizeof(struct acpiec_softc), 241 1.20 yamt acpiec_match, acpiec_attach, NULL, NULL); 242 1.20 yamt 243 1.44 jmcneill CFATTACH_DECL_NEW(acpiecdt, sizeof(struct acpiec_softc), 244 1.44 jmcneill acpiecdt_match, acpiecdt_attach, NULL, NULL); 245 1.44 jmcneill 246 1.44 jmcneill static device_t ec_singleton = NULL; 247 1.44 jmcneill static bool acpiec_cold = false; 248 1.23 kochi 249 1.44 jmcneill static bool 250 1.44 jmcneill acpiecdt_find(device_t parent, ACPI_HANDLE *ec_handle, 251 1.44 jmcneill bus_addr_t *cmd_reg, bus_addr_t *data_reg, uint8_t *gpebit) 252 1.9 tshiozak { 253 1.44 jmcneill ACPI_TABLE_ECDT *ecdt; 254 1.44 jmcneill ACPI_STATUS rv; 255 1.44 jmcneill 256 1.44 jmcneill rv = AcpiGetTable(ACPI_SIG_ECDT, 1, (ACPI_TABLE_HEADER **)&ecdt); 257 1.44 jmcneill if (ACPI_FAILURE(rv)) 258 1.44 jmcneill return false; 259 1.44 jmcneill 260 1.44 jmcneill if (ecdt->Control.BitWidth != 8 || ecdt->Data.BitWidth != 8) { 261 1.44 jmcneill aprint_error_dev(parent, 262 1.61 jruoho "ECDT register width invalid (%u/%u)\n", 263 1.44 jmcneill ecdt->Control.BitWidth, ecdt->Data.BitWidth); 264 1.44 jmcneill return false; 265 1.44 jmcneill } 266 1.24 kochi 267 1.44 jmcneill rv = AcpiGetHandle(ACPI_ROOT_OBJECT, ecdt->Id, ec_handle); 268 1.44 jmcneill if (ACPI_FAILURE(rv)) { 269 1.44 jmcneill aprint_error_dev(parent, 270 1.44 jmcneill "failed to look up EC object %s: %s\n", 271 1.44 jmcneill ecdt->Id, AcpiFormatException(rv)); 272 1.44 jmcneill return false; 273 1.44 jmcneill } 274 1.44 jmcneill 275 1.44 jmcneill *cmd_reg = ecdt->Control.Address; 276 1.44 jmcneill *data_reg = ecdt->Data.Address; 277 1.44 jmcneill *gpebit = ecdt->Gpe; 278 1.44 jmcneill 279 1.44 jmcneill return true; 280 1.9 tshiozak } 281 1.4 thorpej 282 1.44 jmcneill static int 283 1.55 cegger acpiecdt_match(device_t parent, cfdata_t match, void *aux) 284 1.1 thorpej { 285 1.44 jmcneill ACPI_HANDLE ec_handle; 286 1.44 jmcneill bus_addr_t cmd_reg, data_reg; 287 1.44 jmcneill uint8_t gpebit; 288 1.1 thorpej 289 1.44 jmcneill if (acpiecdt_find(parent, &ec_handle, &cmd_reg, &data_reg, &gpebit)) 290 1.44 jmcneill return 1; 291 1.44 jmcneill else 292 1.44 jmcneill return 0; 293 1.1 thorpej } 294 1.1 thorpej 295 1.44 jmcneill static void 296 1.44 jmcneill acpiecdt_attach(device_t parent, device_t self, void *aux) 297 1.1 thorpej { 298 1.64 dyoung struct acpibus_attach_args *aa = aux; 299 1.44 jmcneill ACPI_HANDLE ec_handle; 300 1.44 jmcneill bus_addr_t cmd_reg, data_reg; 301 1.44 jmcneill uint8_t gpebit; 302 1.44 jmcneill 303 1.44 jmcneill if (!acpiecdt_find(parent, &ec_handle, &cmd_reg, &data_reg, &gpebit)) 304 1.44 jmcneill panic("ECDT disappeared"); 305 1.44 jmcneill 306 1.53 jmcneill aprint_naive("\n"); 307 1.44 jmcneill aprint_normal(": ACPI Embedded Controller via ECDT\n"); 308 1.20 yamt 309 1.63 dyoung acpiec_common_attach(parent, self, ec_handle, aa->aa_iot, cmd_reg, 310 1.63 dyoung aa->aa_iot, data_reg, NULL, gpebit); 311 1.1 thorpej } 312 1.1 thorpej 313 1.31 kochi static int 314 1.55 cegger acpiec_match(device_t parent, cfdata_t match, void *aux) 315 1.1 thorpej { 316 1.1 thorpej struct acpi_attach_args *aa = aux; 317 1.1 thorpej 318 1.85 thorpej return acpi_compatible_match(aa, compat_data); 319 1.1 thorpej } 320 1.1 thorpej 321 1.44 jmcneill static void 322 1.44 jmcneill acpiec_attach(device_t parent, device_t self, void *aux) 323 1.17 mycroft { 324 1.44 jmcneill struct acpi_attach_args *aa = aux; 325 1.44 jmcneill struct acpi_resources ec_res; 326 1.44 jmcneill struct acpi_io *io0, *io1; 327 1.44 jmcneill ACPI_HANDLE gpe_handle; 328 1.44 jmcneill uint8_t gpebit; 329 1.23 kochi ACPI_STATUS rv; 330 1.17 mycroft 331 1.44 jmcneill if (ec_singleton != NULL) { 332 1.54 jmcneill aprint_naive(": using %s\n", device_xname(ec_singleton)); 333 1.54 jmcneill aprint_normal(": using %s\n", device_xname(ec_singleton)); 334 1.73 riastrad goto fail0; 335 1.44 jmcneill } 336 1.44 jmcneill 337 1.84 jdolecek if (!acpi_device_present(aa->aa_node->ad_handle)) { 338 1.84 jdolecek aprint_normal(": not present\n"); 339 1.84 jdolecek goto fail0; 340 1.84 jdolecek } 341 1.84 jdolecek 342 1.44 jmcneill if (!acpiec_parse_gpe_package(self, aa->aa_node->ad_handle, 343 1.44 jmcneill &gpe_handle, &gpebit)) 344 1.73 riastrad goto fail0; 345 1.17 mycroft 346 1.44 jmcneill rv = acpi_resource_parse(self, aa->aa_node->ad_handle, "_CRS", 347 1.44 jmcneill &ec_res, &acpi_resource_parse_ops_default); 348 1.44 jmcneill if (rv != AE_OK) { 349 1.44 jmcneill aprint_error_dev(self, "resource parsing failed: %s\n", 350 1.44 jmcneill AcpiFormatException(rv)); 351 1.73 riastrad goto fail0; 352 1.17 mycroft } 353 1.17 mycroft 354 1.44 jmcneill if ((io0 = acpi_res_io(&ec_res, 0)) == NULL) { 355 1.44 jmcneill aprint_error_dev(self, "no data register resource\n"); 356 1.73 riastrad goto fail1; 357 1.44 jmcneill } 358 1.44 jmcneill if ((io1 = acpi_res_io(&ec_res, 1)) == NULL) { 359 1.44 jmcneill aprint_error_dev(self, "no CSR register resource\n"); 360 1.73 riastrad goto fail1; 361 1.23 kochi } 362 1.23 kochi 363 1.44 jmcneill acpiec_common_attach(parent, self, aa->aa_node->ad_handle, 364 1.63 dyoung aa->aa_iot, io1->ar_base, aa->aa_iot, io0->ar_base, 365 1.63 dyoung gpe_handle, gpebit); 366 1.23 kochi 367 1.44 jmcneill acpi_resource_cleanup(&ec_res); 368 1.73 riastrad return; 369 1.73 riastrad 370 1.73 riastrad fail1: acpi_resource_cleanup(&ec_res); 371 1.73 riastrad fail0: if (!pmf_device_register(self, NULL, NULL)) 372 1.73 riastrad aprint_error_dev(self, "couldn't establish power handler\n"); 373 1.44 jmcneill } 374 1.23 kochi 375 1.44 jmcneill static void 376 1.44 jmcneill acpiec_common_attach(device_t parent, device_t self, 377 1.63 dyoung ACPI_HANDLE ec_handle, bus_space_tag_t cmdt, bus_addr_t cmd_reg, 378 1.63 dyoung bus_space_tag_t datat, bus_addr_t data_reg, 379 1.44 jmcneill ACPI_HANDLE gpe_handle, uint8_t gpebit) 380 1.44 jmcneill { 381 1.44 jmcneill struct acpiec_softc *sc = device_private(self); 382 1.44 jmcneill ACPI_STATUS rv; 383 1.44 jmcneill ACPI_INTEGER val; 384 1.23 kochi 385 1.87 riastrad sc->sc_dev = self; 386 1.87 riastrad 387 1.63 dyoung sc->sc_csr_st = cmdt; 388 1.63 dyoung sc->sc_data_st = datat; 389 1.63 dyoung 390 1.44 jmcneill sc->sc_ech = ec_handle; 391 1.44 jmcneill sc->sc_gpeh = gpe_handle; 392 1.44 jmcneill sc->sc_gpebit = gpebit; 393 1.44 jmcneill 394 1.44 jmcneill sc->sc_state = EC_STATE_FREE; 395 1.44 jmcneill mutex_init(&sc->sc_mtx, MUTEX_DRIVER, IPL_TTY); 396 1.44 jmcneill mutex_init(&sc->sc_access_mtx, MUTEX_DEFAULT, IPL_NONE); 397 1.44 jmcneill cv_init(&sc->sc_cv, "eccv"); 398 1.44 jmcneill cv_init(&sc->sc_cv_sci, "ecsci"); 399 1.44 jmcneill 400 1.44 jmcneill if (bus_space_map(sc->sc_data_st, data_reg, 1, 0, 401 1.44 jmcneill &sc->sc_data_sh) != 0) { 402 1.44 jmcneill aprint_error_dev(self, "unable to map data register\n"); 403 1.44 jmcneill return; 404 1.44 jmcneill } 405 1.23 kochi 406 1.44 jmcneill if (bus_space_map(sc->sc_csr_st, cmd_reg, 1, 0, &sc->sc_csr_sh) != 0) { 407 1.44 jmcneill aprint_error_dev(self, "unable to map CSR register\n"); 408 1.44 jmcneill goto post_data_map; 409 1.23 kochi } 410 1.23 kochi 411 1.44 jmcneill rv = acpi_eval_integer(sc->sc_ech, "_GLK", &val); 412 1.44 jmcneill if (rv == AE_OK) { 413 1.44 jmcneill sc->sc_need_global_lock = val != 0; 414 1.44 jmcneill } else if (rv != AE_NOT_FOUND) { 415 1.44 jmcneill aprint_error_dev(self, "unable to evaluate _GLK: %s\n", 416 1.44 jmcneill AcpiFormatException(rv)); 417 1.44 jmcneill goto post_csr_map; 418 1.44 jmcneill } else { 419 1.44 jmcneill sc->sc_need_global_lock = false; 420 1.33 kochi } 421 1.44 jmcneill if (sc->sc_need_global_lock) 422 1.44 jmcneill aprint_normal_dev(self, "using global ACPI lock\n"); 423 1.33 kochi 424 1.46 joerg callout_init(&sc->sc_pseudo_intr, CALLOUT_MPSAFE); 425 1.100 riastrad callout_setfunc(&sc->sc_pseudo_intr, acpiec_callout, sc); 426 1.46 joerg 427 1.44 jmcneill rv = AcpiInstallAddressSpaceHandler(sc->sc_ech, ACPI_ADR_SPACE_EC, 428 1.105 riastrad acpiec_space_handler, acpiec_space_setup, sc); 429 1.44 jmcneill if (rv != AE_OK) { 430 1.44 jmcneill aprint_error_dev(self, 431 1.44 jmcneill "unable to install address space handler: %s\n", 432 1.44 jmcneill AcpiFormatException(rv)); 433 1.44 jmcneill goto post_csr_map; 434 1.33 kochi } 435 1.33 kochi 436 1.44 jmcneill rv = AcpiInstallGpeHandler(sc->sc_gpeh, sc->sc_gpebit, 437 1.101 riastrad ACPI_GPE_EDGE_TRIGGERED, acpiec_gpe_handler, sc); 438 1.44 jmcneill if (rv != AE_OK) { 439 1.44 jmcneill aprint_error_dev(self, "unable to install GPE handler: %s\n", 440 1.23 kochi AcpiFormatException(rv)); 441 1.44 jmcneill goto post_csr_map; 442 1.17 mycroft } 443 1.23 kochi 444 1.69 jruoho rv = AcpiEnableGpe(sc->sc_gpeh, sc->sc_gpebit); 445 1.44 jmcneill if (rv != AE_OK) { 446 1.44 jmcneill aprint_error_dev(self, "unable to enable GPE: %s\n", 447 1.44 jmcneill AcpiFormatException(rv)); 448 1.44 jmcneill goto post_csr_map; 449 1.44 jmcneill } 450 1.23 kochi 451 1.44 jmcneill if (kthread_create(PRI_NONE, KTHREAD_MPSAFE, NULL, acpiec_gpe_query, 452 1.104 riastrad sc, NULL, "acpiec sci thread")) { 453 1.44 jmcneill aprint_error_dev(self, "unable to create query kthread\n"); 454 1.44 jmcneill goto post_csr_map; 455 1.44 jmcneill } 456 1.23 kochi 457 1.44 jmcneill ec_singleton = self; 458 1.23 kochi 459 1.56 alc if (!pmf_device_register1(self, acpiec_suspend, acpiec_resume, 460 1.56 alc acpiec_shutdown)) 461 1.44 jmcneill aprint_error_dev(self, "couldn't establish power handler\n"); 462 1.23 kochi 463 1.23 kochi return; 464 1.44 jmcneill 465 1.44 jmcneill post_csr_map: 466 1.44 jmcneill (void)AcpiRemoveGpeHandler(sc->sc_gpeh, sc->sc_gpebit, 467 1.44 jmcneill acpiec_gpe_handler); 468 1.44 jmcneill (void)AcpiRemoveAddressSpaceHandler(sc->sc_ech, 469 1.44 jmcneill ACPI_ADR_SPACE_EC, acpiec_space_handler); 470 1.44 jmcneill bus_space_unmap(sc->sc_csr_st, sc->sc_csr_sh, 1); 471 1.44 jmcneill post_data_map: 472 1.44 jmcneill bus_space_unmap(sc->sc_data_st, sc->sc_data_sh, 1); 473 1.73 riastrad if (!pmf_device_register(self, NULL, NULL)) 474 1.73 riastrad aprint_error_dev(self, "couldn't establish power handler\n"); 475 1.17 mycroft } 476 1.17 mycroft 477 1.44 jmcneill static bool 478 1.60 dyoung acpiec_suspend(device_t dv, const pmf_qual_t *qual) 479 1.1 thorpej { 480 1.107 riastrad struct acpiec_softc *sc = device_private(dv); 481 1.80 riastrad 482 1.107 riastrad /* 483 1.107 riastrad * XXX This looks bad because acpiec_cold is global and 484 1.107 riastrad * sc->sc_mtx doesn't look like it's global, but we can have 485 1.107 riastrad * only one acpiec(4) device anyway. Maybe acpiec_cold should 486 1.107 riastrad * live in the softc to make this look less bad? 487 1.107 riastrad * 488 1.107 riastrad * XXX Should this block read/write/query transactions until 489 1.107 riastrad * resume? 490 1.107 riastrad * 491 1.107 riastrad * XXX Should this interrupt existing transactions to make them 492 1.107 riastrad * fail promptly or restart on resume? 493 1.107 riastrad */ 494 1.107 riastrad mutex_enter(&sc->sc_mtx); 495 1.44 jmcneill acpiec_cold = true; 496 1.107 riastrad mutex_exit(&sc->sc_mtx); 497 1.1 thorpej 498 1.44 jmcneill return true; 499 1.44 jmcneill } 500 1.1 thorpej 501 1.44 jmcneill static bool 502 1.60 dyoung acpiec_resume(device_t dv, const pmf_qual_t *qual) 503 1.44 jmcneill { 504 1.107 riastrad struct acpiec_softc *sc = device_private(dv); 505 1.80 riastrad 506 1.107 riastrad mutex_enter(&sc->sc_mtx); 507 1.44 jmcneill acpiec_cold = false; 508 1.107 riastrad mutex_exit(&sc->sc_mtx); 509 1.1 thorpej 510 1.44 jmcneill return true; 511 1.44 jmcneill } 512 1.17 mycroft 513 1.44 jmcneill static bool 514 1.56 alc acpiec_shutdown(device_t dv, int how) 515 1.56 alc { 516 1.107 riastrad struct acpiec_softc *sc = device_private(dv); 517 1.56 alc 518 1.107 riastrad mutex_enter(&sc->sc_mtx); 519 1.56 alc acpiec_cold = true; 520 1.107 riastrad mutex_exit(&sc->sc_mtx); 521 1.107 riastrad 522 1.56 alc return true; 523 1.56 alc } 524 1.56 alc 525 1.56 alc static bool 526 1.44 jmcneill acpiec_parse_gpe_package(device_t self, ACPI_HANDLE ec_handle, 527 1.44 jmcneill ACPI_HANDLE *gpe_handle, uint8_t *gpebit) 528 1.44 jmcneill { 529 1.44 jmcneill ACPI_BUFFER buf; 530 1.44 jmcneill ACPI_OBJECT *p, *c; 531 1.44 jmcneill ACPI_STATUS rv; 532 1.1 thorpej 533 1.44 jmcneill rv = acpi_eval_struct(ec_handle, "_GPE", &buf); 534 1.44 jmcneill if (rv != AE_OK) { 535 1.44 jmcneill aprint_error_dev(self, "unable to evaluate _GPE: %s\n", 536 1.44 jmcneill AcpiFormatException(rv)); 537 1.44 jmcneill return false; 538 1.44 jmcneill } 539 1.1 thorpej 540 1.44 jmcneill p = buf.Pointer; 541 1.23 kochi 542 1.44 jmcneill if (p->Type == ACPI_TYPE_INTEGER) { 543 1.44 jmcneill *gpe_handle = NULL; 544 1.44 jmcneill *gpebit = p->Integer.Value; 545 1.57 mlelstv ACPI_FREE(p); 546 1.44 jmcneill return true; 547 1.44 jmcneill } 548 1.23 kochi 549 1.44 jmcneill if (p->Type != ACPI_TYPE_PACKAGE) { 550 1.44 jmcneill aprint_error_dev(self, "_GPE is neither integer nor package\n"); 551 1.57 mlelstv ACPI_FREE(p); 552 1.44 jmcneill return false; 553 1.44 jmcneill } 554 1.80 riastrad 555 1.44 jmcneill if (p->Package.Count != 2) { 556 1.80 riastrad aprint_error_dev(self, 557 1.80 riastrad "_GPE package does not contain 2 elements\n"); 558 1.57 mlelstv ACPI_FREE(p); 559 1.44 jmcneill return false; 560 1.1 thorpej } 561 1.1 thorpej 562 1.44 jmcneill c = &p->Package.Elements[0]; 563 1.59 jruoho rv = acpi_eval_reference_handle(c, gpe_handle); 564 1.59 jruoho 565 1.59 jruoho if (ACPI_FAILURE(rv)) { 566 1.59 jruoho aprint_error_dev(self, "failed to evaluate _GPE handle\n"); 567 1.57 mlelstv ACPI_FREE(p); 568 1.44 jmcneill return false; 569 1.44 jmcneill } 570 1.59 jruoho 571 1.44 jmcneill c = &p->Package.Elements[1]; 572 1.59 jruoho 573 1.44 jmcneill if (c->Type != ACPI_TYPE_INTEGER) { 574 1.44 jmcneill aprint_error_dev(self, 575 1.44 jmcneill "_GPE package needs integer as 2nd field\n"); 576 1.57 mlelstv ACPI_FREE(p); 577 1.44 jmcneill return false; 578 1.44 jmcneill } 579 1.44 jmcneill *gpebit = c->Integer.Value; 580 1.57 mlelstv ACPI_FREE(p); 581 1.44 jmcneill return true; 582 1.44 jmcneill } 583 1.23 kochi 584 1.44 jmcneill static uint8_t 585 1.44 jmcneill acpiec_read_data(struct acpiec_softc *sc) 586 1.44 jmcneill { 587 1.88 riastrad uint8_t x; 588 1.88 riastrad 589 1.89 riastrad KASSERT(mutex_owned(&sc->sc_mtx)); 590 1.89 riastrad 591 1.88 riastrad x = bus_space_read_1(sc->sc_data_st, sc->sc_data_sh, 0); 592 1.88 riastrad DPRINTF(ACPIEC_DEBUG_REG, sc, "read data=0x%"PRIx8"\n", x); 593 1.88 riastrad 594 1.88 riastrad return x; 595 1.44 jmcneill } 596 1.17 mycroft 597 1.44 jmcneill static void 598 1.44 jmcneill acpiec_write_data(struct acpiec_softc *sc, uint8_t val) 599 1.44 jmcneill { 600 1.88 riastrad 601 1.89 riastrad KASSERT(mutex_owned(&sc->sc_mtx)); 602 1.89 riastrad 603 1.88 riastrad DPRINTF(ACPIEC_DEBUG_REG, sc, "write data=0x%"PRIx8"\n", val); 604 1.44 jmcneill bus_space_write_1(sc->sc_data_st, sc->sc_data_sh, 0, val); 605 1.44 jmcneill } 606 1.1 thorpej 607 1.44 jmcneill static uint8_t 608 1.44 jmcneill acpiec_read_status(struct acpiec_softc *sc) 609 1.44 jmcneill { 610 1.88 riastrad uint8_t x; 611 1.88 riastrad 612 1.89 riastrad KASSERT(mutex_owned(&sc->sc_mtx)); 613 1.89 riastrad 614 1.88 riastrad x = bus_space_read_1(sc->sc_csr_st, sc->sc_csr_sh, 0); 615 1.88 riastrad DPRINTF(ACPIEC_DEBUG_REG, sc, "read status=0x%"PRIx8"\n", x); 616 1.88 riastrad 617 1.88 riastrad return x; 618 1.44 jmcneill } 619 1.33 kochi 620 1.44 jmcneill static void 621 1.44 jmcneill acpiec_write_command(struct acpiec_softc *sc, uint8_t cmd) 622 1.44 jmcneill { 623 1.88 riastrad 624 1.89 riastrad KASSERT(mutex_owned(&sc->sc_mtx)); 625 1.89 riastrad 626 1.88 riastrad DPRINTF(ACPIEC_DEBUG_REG, sc, "write command=0x%"PRIx8"\n", cmd); 627 1.44 jmcneill bus_space_write_1(sc->sc_csr_st, sc->sc_csr_sh, 0, cmd); 628 1.44 jmcneill } 629 1.33 kochi 630 1.44 jmcneill static ACPI_STATUS 631 1.65 jruoho acpiec_space_setup(ACPI_HANDLE region, uint32_t func, void *arg, 632 1.44 jmcneill void **region_arg) 633 1.44 jmcneill { 634 1.80 riastrad 635 1.44 jmcneill if (func == ACPI_REGION_DEACTIVATE) 636 1.44 jmcneill *region_arg = NULL; 637 1.44 jmcneill else 638 1.44 jmcneill *region_arg = arg; 639 1.1 thorpej 640 1.44 jmcneill return AE_OK; 641 1.1 thorpej } 642 1.1 thorpej 643 1.1 thorpej static void 644 1.102 riastrad acpiec_lock(struct acpiec_softc *sc) 645 1.1 thorpej { 646 1.25 kochi ACPI_STATUS rv; 647 1.1 thorpej 648 1.44 jmcneill mutex_enter(&sc->sc_access_mtx); 649 1.1 thorpej 650 1.44 jmcneill if (sc->sc_need_global_lock) { 651 1.80 riastrad rv = AcpiAcquireGlobalLock(EC_LOCK_TIMEOUT, 652 1.80 riastrad &sc->sc_global_lock); 653 1.44 jmcneill if (rv != AE_OK) { 654 1.102 riastrad aprint_error_dev(sc->sc_dev, 655 1.80 riastrad "failed to acquire global lock: %s\n", 656 1.44 jmcneill AcpiFormatException(rv)); 657 1.44 jmcneill return; 658 1.1 thorpej } 659 1.44 jmcneill } 660 1.44 jmcneill } 661 1.44 jmcneill 662 1.44 jmcneill static void 663 1.102 riastrad acpiec_unlock(struct acpiec_softc *sc) 664 1.44 jmcneill { 665 1.44 jmcneill ACPI_STATUS rv; 666 1.1 thorpej 667 1.44 jmcneill if (sc->sc_need_global_lock) { 668 1.44 jmcneill rv = AcpiReleaseGlobalLock(sc->sc_global_lock); 669 1.44 jmcneill if (rv != AE_OK) { 670 1.102 riastrad aprint_error_dev(sc->sc_dev, 671 1.80 riastrad "failed to release global lock: %s\n", 672 1.25 kochi AcpiFormatException(rv)); 673 1.1 thorpej } 674 1.1 thorpej } 675 1.44 jmcneill mutex_exit(&sc->sc_access_mtx); 676 1.44 jmcneill } 677 1.44 jmcneill 678 1.44 jmcneill static ACPI_STATUS 679 1.98 riastrad acpiec_wait_timeout(struct acpiec_softc *sc) 680 1.44 jmcneill { 681 1.98 riastrad device_t dv = sc->sc_dev; 682 1.98 riastrad int i; 683 1.1 thorpej 684 1.44 jmcneill for (i = 0; i < EC_POLL_TIMEOUT; ++i) { 685 1.99 riastrad acpiec_gpe_state_machine(sc); 686 1.44 jmcneill if (sc->sc_state == EC_STATE_FREE) 687 1.98 riastrad return AE_OK; 688 1.44 jmcneill delay(1); 689 1.44 jmcneill } 690 1.1 thorpej 691 1.108 riastrad DPRINTF(ACPIEC_DEBUG_RW, sc, "SCI polling timeout\n"); 692 1.44 jmcneill if (cold || acpiec_cold) { 693 1.98 riastrad int timeo = 1000 * EC_CMD_TIMEOUT; 694 1.98 riastrad 695 1.49 jmcneill while (sc->sc_state != EC_STATE_FREE && timeo-- > 0) { 696 1.50 jmcneill delay(1000); 697 1.99 riastrad acpiec_gpe_state_machine(sc); 698 1.1 thorpej } 699 1.49 jmcneill if (sc->sc_state != EC_STATE_FREE) { 700 1.96 riastrad aprint_error_dev(dv, "command timed out, state %d\n", 701 1.96 riastrad sc->sc_state); 702 1.98 riastrad return AE_ERROR; 703 1.49 jmcneill } 704 1.95 riastrad } else { 705 1.95 riastrad const unsigned deadline = getticks() + EC_CMD_TIMEOUT*hz; 706 1.95 riastrad unsigned delta; 707 1.95 riastrad 708 1.95 riastrad while (sc->sc_state != EC_STATE_FREE && 709 1.95 riastrad (delta = deadline - getticks()) < INT_MAX) 710 1.95 riastrad (void)cv_timedwait(&sc->sc_cv, &sc->sc_mtx, delta); 711 1.95 riastrad if (sc->sc_state != EC_STATE_FREE) { 712 1.95 riastrad aprint_error_dev(dv, 713 1.95 riastrad "command takes over %d sec...\n", 714 1.95 riastrad EC_CMD_TIMEOUT); 715 1.98 riastrad return AE_ERROR; 716 1.95 riastrad } 717 1.1 thorpej } 718 1.33 kochi 719 1.98 riastrad return AE_OK; 720 1.98 riastrad } 721 1.98 riastrad 722 1.98 riastrad static ACPI_STATUS 723 1.103 riastrad acpiec_read(struct acpiec_softc *sc, uint8_t addr, uint8_t *val) 724 1.98 riastrad { 725 1.98 riastrad ACPI_STATUS rv; 726 1.98 riastrad 727 1.102 riastrad acpiec_lock(sc); 728 1.98 riastrad mutex_enter(&sc->sc_mtx); 729 1.98 riastrad 730 1.98 riastrad DPRINTF(ACPIEC_DEBUG_RW, sc, 731 1.98 riastrad "pid %ld %s, lid %ld%s%s: read addr 0x%"PRIx8"\n", 732 1.98 riastrad (long)curproc->p_pid, curproc->p_comm, 733 1.98 riastrad (long)curlwp->l_lid, curlwp->l_name ? " " : "", 734 1.98 riastrad curlwp->l_name ? curlwp->l_name : "", 735 1.98 riastrad addr); 736 1.98 riastrad 737 1.98 riastrad KASSERT(sc->sc_state == EC_STATE_FREE); 738 1.98 riastrad 739 1.98 riastrad sc->sc_cur_addr = addr; 740 1.98 riastrad sc->sc_state = EC_STATE_READ; 741 1.98 riastrad 742 1.98 riastrad rv = acpiec_wait_timeout(sc); 743 1.98 riastrad if (ACPI_FAILURE(rv)) 744 1.98 riastrad goto out; 745 1.98 riastrad 746 1.88 riastrad DPRINTF(ACPIEC_DEBUG_RW, sc, 747 1.88 riastrad "pid %ld %s, lid %ld%s%s: read addr 0x%"PRIx8": 0x%"PRIx8"\n", 748 1.88 riastrad (long)curproc->p_pid, curproc->p_comm, 749 1.88 riastrad (long)curlwp->l_lid, curlwp->l_name ? " " : "", 750 1.88 riastrad curlwp->l_name ? curlwp->l_name : "", 751 1.88 riastrad addr, sc->sc_cur_val); 752 1.88 riastrad 753 1.44 jmcneill *val = sc->sc_cur_val; 754 1.98 riastrad 755 1.98 riastrad out: mutex_exit(&sc->sc_mtx); 756 1.102 riastrad acpiec_unlock(sc); 757 1.97 riastrad return rv; 758 1.1 thorpej } 759 1.1 thorpej 760 1.1 thorpej static ACPI_STATUS 761 1.103 riastrad acpiec_write(struct acpiec_softc *sc, uint8_t addr, uint8_t val) 762 1.1 thorpej { 763 1.97 riastrad ACPI_STATUS rv; 764 1.1 thorpej 765 1.102 riastrad acpiec_lock(sc); 766 1.44 jmcneill mutex_enter(&sc->sc_mtx); 767 1.1 thorpej 768 1.88 riastrad DPRINTF(ACPIEC_DEBUG_RW, sc, 769 1.88 riastrad "pid %ld %s, lid %ld%s%s write addr 0x%"PRIx8": 0x%"PRIx8"\n", 770 1.88 riastrad (long)curproc->p_pid, curproc->p_comm, 771 1.88 riastrad (long)curlwp->l_lid, curlwp->l_name ? " " : "", 772 1.88 riastrad curlwp->l_name ? curlwp->l_name : "", 773 1.88 riastrad addr, val); 774 1.88 riastrad 775 1.91 riastrad KASSERT(sc->sc_state == EC_STATE_FREE); 776 1.91 riastrad 777 1.44 jmcneill sc->sc_cur_addr = addr; 778 1.44 jmcneill sc->sc_cur_val = val; 779 1.44 jmcneill sc->sc_state = EC_STATE_WRITE; 780 1.44 jmcneill 781 1.98 riastrad rv = acpiec_wait_timeout(sc); 782 1.98 riastrad if (ACPI_FAILURE(rv)) 783 1.98 riastrad goto out; 784 1.44 jmcneill 785 1.88 riastrad DPRINTF(ACPIEC_DEBUG_RW, sc, 786 1.88 riastrad "pid %ld %s, lid %ld%s%s: write addr 0x%"PRIx8": 0x%"PRIx8 787 1.88 riastrad " done\n", 788 1.88 riastrad (long)curproc->p_pid, curproc->p_comm, 789 1.88 riastrad (long)curlwp->l_lid, curlwp->l_name ? " " : "", 790 1.88 riastrad curlwp->l_name ? curlwp->l_name : "", 791 1.88 riastrad addr, val); 792 1.98 riastrad 793 1.98 riastrad out: mutex_exit(&sc->sc_mtx); 794 1.102 riastrad acpiec_unlock(sc); 795 1.97 riastrad return rv; 796 1.1 thorpej } 797 1.1 thorpej 798 1.86 riastrad /* 799 1.86 riastrad * acpiec_space_handler(func, paddr, bitwidth, value, arg, region_arg) 800 1.86 riastrad * 801 1.86 riastrad * Transfer bitwidth/8 bytes of data between paddr and *value: 802 1.86 riastrad * from paddr to *value when func is ACPI_READ, and the other way 803 1.105 riastrad * when func is ACPI_WRITE. arg is the acpiec_softc pointer. 804 1.105 riastrad * region_arg is ignored (XXX why? determined by 805 1.86 riastrad * acpiec_space_setup but never used by anything that I can see). 806 1.86 riastrad * 807 1.86 riastrad * The caller always provides storage at *value large enough for 808 1.86 riastrad * an ACPI_INTEGER object, i.e., a 64-bit integer. However, 809 1.86 riastrad * bitwidth may be larger; in this case the caller provides larger 810 1.86 riastrad * storage at *value, e.g. 128 bits as documented in 811 1.86 riastrad * <https://gnats.netbsd.org/55206>. 812 1.86 riastrad * 813 1.86 riastrad * On reads, this fully initializes one ACPI_INTEGER's worth of 814 1.86 riastrad * data at *value, even if bitwidth < 64. The integer is 815 1.86 riastrad * interpreted in host byte order; in other words, bytes of data 816 1.86 riastrad * are transferred in order between paddr and (uint8_t *)value. 817 1.86 riastrad * The transfer is not atomic; it may go byte-by-byte. 818 1.86 riastrad * 819 1.86 riastrad * XXX This only really makes sense on little-endian systems. 820 1.86 riastrad * E.g., thinkpad_acpi.c assumes that a single byte is transferred 821 1.86 riastrad * in the low-order bits of the result. A big-endian system could 822 1.86 riastrad * read a 64-bit integer in big-endian (and it did for a while!), 823 1.86 riastrad * but what should it do for larger reads? Unclear! 824 1.86 riastrad * 825 1.86 riastrad * XXX It's not clear whether the object at *value is always 826 1.86 riastrad * _aligned_ adequately for an ACPI_INTEGER object. Currently it 827 1.86 riastrad * always is as long as malloc, used by AcpiOsAllocate, returns 828 1.86 riastrad * 64-bit-aligned data. 829 1.86 riastrad */ 830 1.1 thorpej static ACPI_STATUS 831 1.65 jruoho acpiec_space_handler(uint32_t func, ACPI_PHYSICAL_ADDRESS paddr, 832 1.65 jruoho uint32_t width, ACPI_INTEGER *value, void *arg, void *region_arg) 833 1.1 thorpej { 834 1.105 riastrad struct acpiec_softc *sc = arg; 835 1.44 jmcneill ACPI_STATUS rv; 836 1.82 jmcneill uint8_t addr, *buf; 837 1.79 riastrad unsigned int i; 838 1.44 jmcneill 839 1.82 jmcneill if (paddr > 0xff || width % 8 != 0 || 840 1.81 riastrad value == NULL || arg == NULL || paddr + width / 8 > 0x100) 841 1.44 jmcneill return AE_BAD_PARAMETER; 842 1.1 thorpej 843 1.44 jmcneill addr = paddr; 844 1.82 jmcneill buf = (uint8_t *)value; 845 1.1 thorpej 846 1.44 jmcneill rv = AE_OK; 847 1.1 thorpej 848 1.79 riastrad switch (func) { 849 1.79 riastrad case ACPI_READ: 850 1.82 jmcneill for (i = 0; i < width; i += 8, ++addr, ++buf) { 851 1.103 riastrad rv = acpiec_read(sc, addr, buf); 852 1.79 riastrad if (rv != AE_OK) 853 1.79 riastrad break; 854 1.79 riastrad } 855 1.86 riastrad /* 856 1.86 riastrad * Make sure to fully initialize at least an 857 1.86 riastrad * ACPI_INTEGER-sized object. 858 1.86 riastrad */ 859 1.86 riastrad for (; i < sizeof(*value)*8; i += 8, ++buf) 860 1.86 riastrad *buf = 0; 861 1.79 riastrad break; 862 1.79 riastrad case ACPI_WRITE: 863 1.82 jmcneill for (i = 0; i < width; i += 8, ++addr, ++buf) { 864 1.103 riastrad rv = acpiec_write(sc, addr, *buf); 865 1.79 riastrad if (rv != AE_OK) 866 1.79 riastrad break; 867 1.78 riastrad } 868 1.79 riastrad break; 869 1.79 riastrad default: 870 1.103 riastrad aprint_error_dev(sc->sc_dev, 871 1.103 riastrad "invalid Address Space function called: %x\n", 872 1.103 riastrad (unsigned int)func); 873 1.79 riastrad return AE_BAD_PARAMETER; 874 1.79 riastrad } 875 1.1 thorpej 876 1.44 jmcneill return rv; 877 1.1 thorpej } 878 1.1 thorpej 879 1.44 jmcneill static void 880 1.98 riastrad acpiec_wait(struct acpiec_softc *sc) 881 1.98 riastrad { 882 1.98 riastrad int i; 883 1.98 riastrad 884 1.98 riastrad /* 885 1.98 riastrad * First, attempt to get the query by polling. 886 1.98 riastrad */ 887 1.98 riastrad for (i = 0; i < EC_POLL_TIMEOUT; ++i) { 888 1.99 riastrad acpiec_gpe_state_machine(sc); 889 1.98 riastrad if (sc->sc_state == EC_STATE_FREE) 890 1.98 riastrad return; 891 1.98 riastrad delay(1); 892 1.98 riastrad } 893 1.98 riastrad 894 1.98 riastrad /* 895 1.98 riastrad * Polling timed out. Try waiting for interrupts -- either GPE 896 1.98 riastrad * interrupts, or periodic callouts in case GPE interrupts are 897 1.98 riastrad * broken. 898 1.98 riastrad */ 899 1.98 riastrad DPRINTF(ACPIEC_DEBUG_QUERY, sc, "SCI polling timeout\n"); 900 1.98 riastrad while (sc->sc_state != EC_STATE_FREE) 901 1.98 riastrad cv_wait(&sc->sc_cv, &sc->sc_mtx); 902 1.98 riastrad } 903 1.98 riastrad 904 1.98 riastrad static void 905 1.44 jmcneill acpiec_gpe_query(void *arg) 906 1.1 thorpej { 907 1.104 riastrad struct acpiec_softc *sc = arg; 908 1.44 jmcneill uint8_t reg; 909 1.44 jmcneill char qxx[5]; 910 1.44 jmcneill ACPI_STATUS rv; 911 1.1 thorpej 912 1.44 jmcneill loop: 913 1.90 riastrad /* 914 1.90 riastrad * Wait until the EC sends an SCI requesting a query. 915 1.90 riastrad */ 916 1.44 jmcneill mutex_enter(&sc->sc_mtx); 917 1.93 riastrad while (!sc->sc_got_sci) 918 1.44 jmcneill cv_wait(&sc->sc_cv_sci, &sc->sc_mtx); 919 1.88 riastrad DPRINTF(ACPIEC_DEBUG_QUERY, sc, "SCI query requested\n"); 920 1.44 jmcneill mutex_exit(&sc->sc_mtx); 921 1.44 jmcneill 922 1.90 riastrad /* 923 1.90 riastrad * EC wants to submit a query to us. Exclude concurrent reads 924 1.90 riastrad * and writes while we handle it. 925 1.90 riastrad */ 926 1.102 riastrad acpiec_lock(sc); 927 1.44 jmcneill mutex_enter(&sc->sc_mtx); 928 1.44 jmcneill 929 1.88 riastrad DPRINTF(ACPIEC_DEBUG_QUERY, sc, "SCI query\n"); 930 1.88 riastrad 931 1.91 riastrad KASSERT(sc->sc_state == EC_STATE_FREE); 932 1.91 riastrad 933 1.44 jmcneill /* The Query command can always be issued, so be defensive here. */ 934 1.93 riastrad KASSERT(sc->sc_got_sci); 935 1.44 jmcneill sc->sc_got_sci = false; 936 1.44 jmcneill sc->sc_state = EC_STATE_QUERY; 937 1.1 thorpej 938 1.98 riastrad acpiec_wait(sc); 939 1.44 jmcneill 940 1.44 jmcneill reg = sc->sc_cur_val; 941 1.88 riastrad DPRINTF(ACPIEC_DEBUG_QUERY, sc, "SCI query: 0x%"PRIx8"\n", reg); 942 1.1 thorpej 943 1.44 jmcneill mutex_exit(&sc->sc_mtx); 944 1.102 riastrad acpiec_unlock(sc); 945 1.1 thorpej 946 1.44 jmcneill if (reg == 0) 947 1.44 jmcneill goto loop; /* Spurious query result */ 948 1.1 thorpej 949 1.1 thorpej /* 950 1.44 jmcneill * Evaluate _Qxx to respond to the controller. 951 1.1 thorpej */ 952 1.44 jmcneill snprintf(qxx, sizeof(qxx), "_Q%02X", (unsigned int)reg); 953 1.44 jmcneill rv = AcpiEvaluateObject(sc->sc_ech, qxx, NULL, NULL); 954 1.44 jmcneill if (rv != AE_OK && rv != AE_NOT_FOUND) { 955 1.104 riastrad aprint_error_dev(sc->sc_dev, "GPE query method %s failed: %s", 956 1.68 cegger qxx, AcpiFormatException(rv)); 957 1.1 thorpej } 958 1.1 thorpej 959 1.44 jmcneill goto loop; 960 1.24 kochi } 961 1.1 thorpej 962 1.44 jmcneill static void 963 1.99 riastrad acpiec_gpe_state_machine(struct acpiec_softc *sc) 964 1.1 thorpej { 965 1.44 jmcneill uint8_t reg; 966 1.1 thorpej 967 1.89 riastrad KASSERT(mutex_owned(&sc->sc_mtx)); 968 1.89 riastrad 969 1.44 jmcneill reg = acpiec_read_status(sc); 970 1.1 thorpej 971 1.88 riastrad #ifdef ACPIEC_DEBUG 972 1.88 riastrad if (acpiec_debug & __BIT(ACPIEC_DEBUG_TRANSITION)) { 973 1.88 riastrad char buf[128]; 974 1.88 riastrad 975 1.88 riastrad snprintb(buf, sizeof(buf), EC_STATUS_FMT, reg); 976 1.88 riastrad DPRINTF(ACPIEC_DEBUG_TRANSITION, sc, "%s\n", buf); 977 1.88 riastrad } 978 1.88 riastrad #endif 979 1.88 riastrad 980 1.44 jmcneill switch (sc->sc_state) { 981 1.44 jmcneill case EC_STATE_QUERY: 982 1.44 jmcneill if ((reg & EC_STATUS_IBF) != 0) 983 1.44 jmcneill break; /* Nothing of interest here. */ 984 1.44 jmcneill acpiec_write_command(sc, EC_COMMAND_QUERY); 985 1.44 jmcneill sc->sc_state = EC_STATE_QUERY_VAL; 986 1.44 jmcneill break; 987 1.1 thorpej 988 1.44 jmcneill case EC_STATE_QUERY_VAL: 989 1.44 jmcneill if ((reg & EC_STATUS_OBF) == 0) 990 1.44 jmcneill break; /* Nothing of interest here. */ 991 1.44 jmcneill sc->sc_cur_val = acpiec_read_data(sc); 992 1.44 jmcneill sc->sc_state = EC_STATE_FREE; 993 1.1 thorpej break; 994 1.1 thorpej 995 1.44 jmcneill case EC_STATE_READ: 996 1.44 jmcneill if ((reg & EC_STATUS_IBF) != 0) 997 1.44 jmcneill break; /* Nothing of interest here. */ 998 1.44 jmcneill acpiec_write_command(sc, EC_COMMAND_READ); 999 1.44 jmcneill sc->sc_state = EC_STATE_READ_ADDR; 1000 1.1 thorpej break; 1001 1.1 thorpej 1002 1.44 jmcneill case EC_STATE_READ_ADDR: 1003 1.44 jmcneill if ((reg & EC_STATUS_IBF) != 0) 1004 1.44 jmcneill break; /* Nothing of interest here. */ 1005 1.44 jmcneill acpiec_write_data(sc, sc->sc_cur_addr); 1006 1.44 jmcneill sc->sc_state = EC_STATE_READ_VAL; 1007 1.44 jmcneill break; 1008 1.1 thorpej 1009 1.44 jmcneill case EC_STATE_READ_VAL: 1010 1.44 jmcneill if ((reg & EC_STATUS_OBF) == 0) 1011 1.44 jmcneill break; /* Nothing of interest here. */ 1012 1.44 jmcneill sc->sc_cur_val = acpiec_read_data(sc); 1013 1.44 jmcneill sc->sc_state = EC_STATE_FREE; 1014 1.44 jmcneill break; 1015 1.1 thorpej 1016 1.44 jmcneill case EC_STATE_WRITE: 1017 1.44 jmcneill if ((reg & EC_STATUS_IBF) != 0) 1018 1.44 jmcneill break; /* Nothing of interest here. */ 1019 1.44 jmcneill acpiec_write_command(sc, EC_COMMAND_WRITE); 1020 1.44 jmcneill sc->sc_state = EC_STATE_WRITE_ADDR; 1021 1.44 jmcneill break; 1022 1.1 thorpej 1023 1.44 jmcneill case EC_STATE_WRITE_ADDR: 1024 1.44 jmcneill if ((reg & EC_STATUS_IBF) != 0) 1025 1.44 jmcneill break; /* Nothing of interest here. */ 1026 1.44 jmcneill acpiec_write_data(sc, sc->sc_cur_addr); 1027 1.44 jmcneill sc->sc_state = EC_STATE_WRITE_VAL; 1028 1.44 jmcneill break; 1029 1.1 thorpej 1030 1.44 jmcneill case EC_STATE_WRITE_VAL: 1031 1.44 jmcneill if ((reg & EC_STATUS_IBF) != 0) 1032 1.44 jmcneill break; /* Nothing of interest here. */ 1033 1.106 riastrad acpiec_write_data(sc, sc->sc_cur_val); 1034 1.44 jmcneill sc->sc_state = EC_STATE_FREE; 1035 1.44 jmcneill break; 1036 1.1 thorpej 1037 1.44 jmcneill case EC_STATE_FREE: 1038 1.92 riastrad break; 1039 1.92 riastrad 1040 1.92 riastrad default: 1041 1.92 riastrad panic("invalid state"); 1042 1.92 riastrad } 1043 1.92 riastrad 1044 1.92 riastrad /* 1045 1.106 riastrad * If we are not in a transaction, wake anyone waiting to start 1046 1.106 riastrad * one. If an SCI was requested, notify the SCI thread that it 1047 1.106 riastrad * needs to handle the SCI. 1048 1.92 riastrad */ 1049 1.92 riastrad if (sc->sc_state == EC_STATE_FREE) { 1050 1.106 riastrad cv_signal(&sc->sc_cv); 1051 1.92 riastrad if (reg & EC_STATUS_SCI) { 1052 1.88 riastrad DPRINTF(ACPIEC_DEBUG_TRANSITION, sc, 1053 1.88 riastrad "wake SCI thread\n"); 1054 1.92 riastrad sc->sc_got_sci = true; 1055 1.44 jmcneill cv_signal(&sc->sc_cv_sci); 1056 1.88 riastrad } 1057 1.44 jmcneill } 1058 1.46 joerg 1059 1.90 riastrad /* 1060 1.90 riastrad * In case GPE interrupts are broken, poll once per tick for EC 1061 1.90 riastrad * status updates while a transaction is still pending. 1062 1.90 riastrad */ 1063 1.88 riastrad if (sc->sc_state != EC_STATE_FREE) { 1064 1.88 riastrad DPRINTF(ACPIEC_DEBUG_INTR, sc, "schedule callout\n"); 1065 1.46 joerg callout_schedule(&sc->sc_pseudo_intr, 1); 1066 1.88 riastrad } 1067 1.88 riastrad 1068 1.88 riastrad DPRINTF(ACPIEC_DEBUG_TRANSITION, sc, "return\n"); 1069 1.46 joerg } 1070 1.46 joerg 1071 1.46 joerg static void 1072 1.46 joerg acpiec_callout(void *arg) 1073 1.46 joerg { 1074 1.100 riastrad struct acpiec_softc *sc = arg; 1075 1.46 joerg 1076 1.46 joerg mutex_enter(&sc->sc_mtx); 1077 1.88 riastrad DPRINTF(ACPIEC_DEBUG_INTR, sc, "callout\n"); 1078 1.99 riastrad acpiec_gpe_state_machine(sc); 1079 1.46 joerg mutex_exit(&sc->sc_mtx); 1080 1.24 kochi } 1081 1.1 thorpej 1082 1.65 jruoho static uint32_t 1083 1.69 jruoho acpiec_gpe_handler(ACPI_HANDLE hdl, uint32_t gpebit, void *arg) 1084 1.1 thorpej { 1085 1.101 riastrad struct acpiec_softc *sc = arg; 1086 1.1 thorpej 1087 1.44 jmcneill mutex_enter(&sc->sc_mtx); 1088 1.88 riastrad DPRINTF(ACPIEC_DEBUG_INTR, sc, "GPE\n"); 1089 1.99 riastrad acpiec_gpe_state_machine(sc); 1090 1.44 jmcneill mutex_exit(&sc->sc_mtx); 1091 1.1 thorpej 1092 1.70 jruoho return ACPI_INTERRUPT_HANDLED | ACPI_REENABLE_GPE; 1093 1.1 thorpej } 1094 1.48 jmcneill 1095 1.48 jmcneill ACPI_STATUS 1096 1.48 jmcneill acpiec_bus_read(device_t dv, u_int addr, ACPI_INTEGER *val, int width) 1097 1.48 jmcneill { 1098 1.105 riastrad struct acpiec_softc *sc = device_private(dv); 1099 1.105 riastrad 1100 1.105 riastrad return acpiec_space_handler(ACPI_READ, addr, width * 8, val, sc, NULL); 1101 1.48 jmcneill } 1102 1.48 jmcneill 1103 1.48 jmcneill ACPI_STATUS 1104 1.48 jmcneill acpiec_bus_write(device_t dv, u_int addr, ACPI_INTEGER val, int width) 1105 1.48 jmcneill { 1106 1.105 riastrad struct acpiec_softc *sc = device_private(dv); 1107 1.105 riastrad 1108 1.105 riastrad return acpiec_space_handler(ACPI_WRITE, addr, width * 8, &val, sc, 1109 1.80 riastrad NULL); 1110 1.48 jmcneill } 1111 1.48 jmcneill 1112 1.48 jmcneill ACPI_HANDLE 1113 1.48 jmcneill acpiec_get_handle(device_t dv) 1114 1.48 jmcneill { 1115 1.48 jmcneill struct acpiec_softc *sc = device_private(dv); 1116 1.48 jmcneill 1117 1.48 jmcneill return sc->sc_ech; 1118 1.48 jmcneill } 1119