1fec754d4SMike Smith /*- 298aa9cd0SNate Lawson * Copyright (c) 2003-2005 Nate Lawson (SDG) 3fec754d4SMike Smith * Copyright (c) 2001 Michael Smith 4fec754d4SMike Smith * All rights reserved. 5fec754d4SMike Smith * 6fec754d4SMike Smith * Redistribution and use in source and binary forms, with or without 7fec754d4SMike Smith * modification, are permitted provided that the following conditions 8fec754d4SMike Smith * are met: 9fec754d4SMike Smith * 1. Redistributions of source code must retain the above copyright 10fec754d4SMike Smith * notice, this list of conditions and the following disclaimer. 11fec754d4SMike Smith * 2. Redistributions in binary form must reproduce the above copyright 12fec754d4SMike Smith * notice, this list of conditions and the following disclaimer in the 13fec754d4SMike Smith * documentation and/or other materials provided with the distribution. 14fec754d4SMike Smith * 15fec754d4SMike Smith * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 16fec754d4SMike Smith * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 17fec754d4SMike Smith * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 18fec754d4SMike Smith * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 19fec754d4SMike Smith * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 20fec754d4SMike Smith * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 21fec754d4SMike Smith * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 22fec754d4SMike Smith * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 23fec754d4SMike Smith * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 24fec754d4SMike Smith * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 25fec754d4SMike Smith * SUCH DAMAGE. 26fec754d4SMike Smith */ 27fec754d4SMike Smith 28aad970f1SDavid E. O'Brien #include <sys/cdefs.h> 29aad970f1SDavid E. O'Brien __FBSDID("$FreeBSD$"); 30aad970f1SDavid E. O'Brien 31fec754d4SMike Smith #include "opt_acpi.h" 32fec754d4SMike Smith #include <sys/param.h> 33fec754d4SMike Smith #include <sys/bus.h> 3498aa9cd0SNate Lawson #include <sys/cpu.h> 3556a70eadSNate Lawson #include <sys/kernel.h> 36447a5fa1SJohn Baldwin #include <sys/malloc.h> 37fe12f24bSPoul-Henning Kamp #include <sys/module.h> 386b74f9b7SNate Lawson #include <sys/pcpu.h> 3956a70eadSNate Lawson #include <sys/power.h> 4056a70eadSNate Lawson #include <sys/proc.h> 41f51d43feSAndriy Gapon #include <sys/sched.h> 4256a70eadSNate Lawson #include <sys/sbuf.h> 436b74f9b7SNate Lawson #include <sys/smp.h> 44fec754d4SMike Smith 456b74f9b7SNate Lawson #include <dev/pci/pcivar.h> 4656a70eadSNate Lawson #include <machine/atomic.h> 47fec754d4SMike Smith #include <machine/bus.h> 48e1c9d39eSJung-uk Kim #if defined(__amd64__) || defined(__i386__) 49e1c9d39eSJung-uk Kim #include <machine/clock.h> 50b57a73f8SKonstantin Belousov #include <machine/specialreg.h> 51b57a73f8SKonstantin Belousov #include <machine/md_var.h> 52e1c9d39eSJung-uk Kim #endif 5356a70eadSNate Lawson #include <sys/rman.h> 54fec754d4SMike Smith 55129d3046SJung-uk Kim #include <contrib/dev/acpica/include/acpi.h> 56129d3046SJung-uk Kim #include <contrib/dev/acpica/include/accommon.h> 57129d3046SJung-uk Kim 58fec754d4SMike Smith #include <dev/acpica/acpivar.h> 59fec754d4SMike Smith 60fec754d4SMike Smith /* 618c5468e3SNate Lawson * Support for ACPI Processor devices, including C[1-3] sleep states. 62fec754d4SMike Smith */ 63fec754d4SMike Smith 64be2b1797SNate Lawson /* Hooks for the ACPI CA debugging infrastructure */ 65fec754d4SMike Smith #define _COMPONENT ACPI_PROCESSOR 669127281cSMike Smith ACPI_MODULE_NAME("PROCESSOR") 67fec754d4SMike Smith 686b74f9b7SNate Lawson struct acpi_cx { 696b74f9b7SNate Lawson struct resource *p_lvlx; /* Register to read to enter state. */ 706b74f9b7SNate Lawson uint32_t type; /* C1-3 (C4 and up treated as C3). */ 716b74f9b7SNate Lawson uint32_t trans_lat; /* Transition latency (usec). */ 726b74f9b7SNate Lawson uint32_t power; /* Power consumed (mW). */ 73f4eb0418SNate Lawson int res_type; /* Resource type for p_lvlx. */ 74f51d43feSAndriy Gapon int res_rid; /* Resource ID for p_lvlx. */ 75b57a73f8SKonstantin Belousov bool do_mwait; 76b57a73f8SKonstantin Belousov uint32_t mwait_hint; 77b57a73f8SKonstantin Belousov bool mwait_hw_coord; 78b57a73f8SKonstantin Belousov bool mwait_bm_avoidance; 796b74f9b7SNate Lawson }; 806b74f9b7SNate Lawson #define MAX_CX_STATES 8 816b74f9b7SNate Lawson 82fec754d4SMike Smith struct acpi_cpu_softc { 83fec754d4SMike Smith device_t cpu_dev; 84fec754d4SMike Smith ACPI_HANDLE cpu_handle; 8598aa9cd0SNate Lawson struct pcpu *cpu_pcpu; 8698aa9cd0SNate Lawson uint32_t cpu_acpi_id; /* ACPI processor id */ 8756a70eadSNate Lawson uint32_t cpu_p_blk; /* ACPI P_BLK location */ 8856a70eadSNate Lawson uint32_t cpu_p_blk_len; /* P_BLK length (must be 6). */ 896b74f9b7SNate Lawson struct acpi_cx cpu_cx_states[MAX_CX_STATES]; 9056a70eadSNate Lawson int cpu_cx_count; /* Number of valid Cx states. */ 91a2afe45aSNate Lawson int cpu_prev_sleep;/* Last idle sleep duration. */ 92b29224c2SNate Lawson int cpu_features; /* Child driver supported features. */ 93907b6777SNate Lawson /* Runtime state. */ 9492597e06SJohn Baldwin int cpu_non_c2; /* Index of lowest non-C2 state. */ 95907b6777SNate Lawson int cpu_non_c3; /* Index of lowest non-C3 state. */ 96907b6777SNate Lawson u_int cpu_cx_stats[MAX_CX_STATES];/* Cx usage history. */ 97907b6777SNate Lawson /* Values for sysctl. */ 98907b6777SNate Lawson struct sysctl_ctx_list cpu_sysctl_ctx; 99907b6777SNate Lawson struct sysctl_oid *cpu_sysctl_tree; 10055fb7f36SSean Bruno int cpu_cx_lowest; 101d30b88afSAndriy Gapon int cpu_cx_lowest_lim; 10209424d43SAndriy Gapon int cpu_disable_idle; /* Disable entry to idle function */ 103907b6777SNate Lawson char cpu_cx_supported[64]; 104fec754d4SMike Smith }; 105fec754d4SMike Smith 10698aa9cd0SNate Lawson struct acpi_cpu_device { 10798aa9cd0SNate Lawson struct resource_list ad_rl; 10898aa9cd0SNate Lawson }; 10998aa9cd0SNate Lawson 1106b74f9b7SNate Lawson #define CPU_GET_REG(reg, width) \ 1116b74f9b7SNate Lawson (bus_space_read_ ## width(rman_get_bustag((reg)), \ 1126b74f9b7SNate Lawson rman_get_bushandle((reg)), 0)) 1136b74f9b7SNate Lawson #define CPU_SET_REG(reg, width, val) \ 1146b74f9b7SNate Lawson (bus_space_write_ ## width(rman_get_bustag((reg)), \ 1156b74f9b7SNate Lawson rman_get_bushandle((reg)), 0, (val))) 116be2b1797SNate Lawson 1178b888c66SNate Lawson #define ACPI_NOTIFY_CX_STATES 0x81 /* _CST changed. */ 118fec754d4SMike Smith 11918ececa0SNate Lawson #define CPU_QUIRK_NO_C3 (1<<0) /* C3-type states are not usable. */ 12018ececa0SNate Lawson #define CPU_QUIRK_NO_BM_CTRL (1<<2) /* No bus mastering control. */ 1216b74f9b7SNate Lawson 1226b74f9b7SNate Lawson #define PCI_VENDOR_INTEL 0x8086 1236b74f9b7SNate Lawson #define PCI_DEVICE_82371AB_3 0x7113 /* PIIX4 chipset for quirks. */ 1246b74f9b7SNate Lawson #define PCI_REVISION_A_STEP 0 1256b74f9b7SNate Lawson #define PCI_REVISION_B_STEP 1 1266b74f9b7SNate Lawson #define PCI_REVISION_4E 2 1276b74f9b7SNate Lawson #define PCI_REVISION_4M 3 1288a000acaSRui Paulo #define PIIX4_DEVACTB_REG 0x58 1298a000acaSRui Paulo #define PIIX4_BRLD_EN_IRQ0 (1<<0) 1308a000acaSRui Paulo #define PIIX4_BRLD_EN_IRQ (1<<1) 1318a000acaSRui Paulo #define PIIX4_BRLD_EN_IRQ8 (1<<5) 1328a000acaSRui Paulo #define PIIX4_STOP_BREAK_MASK (PIIX4_BRLD_EN_IRQ0 | PIIX4_BRLD_EN_IRQ | PIIX4_BRLD_EN_IRQ8) 1338a000acaSRui Paulo #define PIIX4_PCNTRL_BST_EN (1<<10) 1346b74f9b7SNate Lawson 135b57a73f8SKonstantin Belousov #define CST_FFH_VENDOR_INTEL 1 136b57a73f8SKonstantin Belousov #define CST_FFH_INTEL_CL_C1IO 1 137b57a73f8SKonstantin Belousov #define CST_FFH_INTEL_CL_MWAIT 2 138b57a73f8SKonstantin Belousov #define CST_FFH_MWAIT_HW_COORD 0x0001 139b57a73f8SKonstantin Belousov #define CST_FFH_MWAIT_BM_AVOID 0x0002 140b57a73f8SKonstantin Belousov 141e054cac7SConrad Meyer #define CPUDEV_DEVICE_ID "ACPI0007" 142e054cac7SConrad Meyer 143c2641d23SRoger Pau Monné /* Knob to disable acpi_cpu devices */ 144c2641d23SRoger Pau Monné bool acpi_cpu_disabled = false; 145c2641d23SRoger Pau Monné 1466b74f9b7SNate Lawson /* Platform hardware resource information. */ 1476b74f9b7SNate Lawson static uint32_t cpu_smi_cmd; /* Value to write to SMI_CMD. */ 14856a70eadSNate Lawson static uint8_t cpu_cst_cnt; /* Indicate we are _CST aware. */ 149a2afe45aSNate Lawson static int cpu_quirks; /* Indicate any hardware bugs. */ 1506b74f9b7SNate Lawson 1516b74f9b7SNate Lawson /* Values for sysctl. */ 152907b6777SNate Lawson static struct sysctl_ctx_list cpu_sysctl_ctx; 153907b6777SNate Lawson static struct sysctl_oid *cpu_sysctl_tree; 154907b6777SNate Lawson static int cpu_cx_generic; 155d30b88afSAndriy Gapon static int cpu_cx_lowest_lim; 156*67f2a563STom Jones static bool cppc_notify; 157fec754d4SMike Smith 158447a5fa1SJohn Baldwin static struct acpi_cpu_softc **cpu_softc; 159d92a2ebdSNate Lawson ACPI_SERIAL_DECL(cpu, "ACPI CPU"); 160fec754d4SMike Smith 161fec754d4SMike Smith static int acpi_cpu_probe(device_t dev); 162fec754d4SMike Smith static int acpi_cpu_attach(device_t dev); 1633331373cSNate Lawson static int acpi_cpu_suspend(device_t dev); 1643331373cSNate Lawson static int acpi_cpu_resume(device_t dev); 165c8077ccdSAlexander Motin static int acpi_pcpu_get_id(device_t dev, uint32_t acpi_id, 166c8077ccdSAlexander Motin u_int *cpu_id); 16798aa9cd0SNate Lawson static struct resource_list *acpi_cpu_get_rlist(device_t dev, device_t child); 1683d844eddSAndriy Gapon static device_t acpi_cpu_add_child(device_t dev, u_int order, const char *name, 16998aa9cd0SNate Lawson int unit); 17098aa9cd0SNate Lawson static int acpi_cpu_read_ivar(device_t dev, device_t child, int index, 17198aa9cd0SNate Lawson uintptr_t *result); 17256a70eadSNate Lawson static int acpi_cpu_shutdown(device_t dev); 173907b6777SNate Lawson static void acpi_cpu_cx_probe(struct acpi_cpu_softc *sc); 174907b6777SNate Lawson static void acpi_cpu_generic_cx_probe(struct acpi_cpu_softc *sc); 1756b74f9b7SNate Lawson static int acpi_cpu_cx_cst(struct acpi_cpu_softc *sc); 1766b74f9b7SNate Lawson static void acpi_cpu_startup(void *arg); 177907b6777SNate Lawson static void acpi_cpu_startup_cx(struct acpi_cpu_softc *sc); 17889ab2a7aSRui Paulo static void acpi_cpu_cx_list(struct acpi_cpu_softc *sc); 179617994efSAndrew Turner #if defined(__i386__) || defined(__amd64__) 180acccf7d8SDavide Italiano static void acpi_cpu_idle(sbintime_t sbt); 181617994efSAndrew Turner #endif 1826b74f9b7SNate Lawson static void acpi_cpu_notify(ACPI_HANDLE h, UINT32 notify, void *context); 1839cf4cabeSJung-uk Kim static void acpi_cpu_quirks(void); 1849cf4cabeSJung-uk Kim static void acpi_cpu_quirks_piix4(void); 185a2afe45aSNate Lawson static int acpi_cpu_usage_sysctl(SYSCTL_HANDLER_ARGS); 1860d470054SAdrian Chadd static int acpi_cpu_usage_counters_sysctl(SYSCTL_HANDLER_ARGS); 187d30b88afSAndriy Gapon static int acpi_cpu_set_cx_lowest(struct acpi_cpu_softc *sc); 1886b74f9b7SNate Lawson static int acpi_cpu_cx_lowest_sysctl(SYSCTL_HANDLER_ARGS); 189907b6777SNate Lawson static int acpi_cpu_global_cx_lowest_sysctl(SYSCTL_HANDLER_ARGS); 190b57a73f8SKonstantin Belousov #if defined(__i386__) || defined(__amd64__) 191b57a73f8SKonstantin Belousov static int acpi_cpu_method_sysctl(SYSCTL_HANDLER_ARGS); 192b57a73f8SKonstantin Belousov #endif 193fec754d4SMike Smith 194fec754d4SMike Smith static device_method_t acpi_cpu_methods[] = { 195fec754d4SMike Smith /* Device interface */ 196fec754d4SMike Smith DEVMETHOD(device_probe, acpi_cpu_probe), 197fec754d4SMike Smith DEVMETHOD(device_attach, acpi_cpu_attach), 19898aa9cd0SNate Lawson DEVMETHOD(device_detach, bus_generic_detach), 19956a70eadSNate Lawson DEVMETHOD(device_shutdown, acpi_cpu_shutdown), 2003331373cSNate Lawson DEVMETHOD(device_suspend, acpi_cpu_suspend), 2013331373cSNate Lawson DEVMETHOD(device_resume, acpi_cpu_resume), 20298aa9cd0SNate Lawson 20398aa9cd0SNate Lawson /* Bus interface */ 20498aa9cd0SNate Lawson DEVMETHOD(bus_add_child, acpi_cpu_add_child), 20598aa9cd0SNate Lawson DEVMETHOD(bus_read_ivar, acpi_cpu_read_ivar), 20698aa9cd0SNate Lawson DEVMETHOD(bus_get_resource_list, acpi_cpu_get_rlist), 20798aa9cd0SNate Lawson DEVMETHOD(bus_get_resource, bus_generic_rl_get_resource), 20898aa9cd0SNate Lawson DEVMETHOD(bus_set_resource, bus_generic_rl_set_resource), 20998aa9cd0SNate Lawson DEVMETHOD(bus_alloc_resource, bus_generic_rl_alloc_resource), 21098aa9cd0SNate Lawson DEVMETHOD(bus_release_resource, bus_generic_rl_release_resource), 21198aa9cd0SNate Lawson DEVMETHOD(bus_activate_resource, bus_generic_activate_resource), 21298aa9cd0SNate Lawson DEVMETHOD(bus_deactivate_resource, bus_generic_deactivate_resource), 21398aa9cd0SNate Lawson DEVMETHOD(bus_setup_intr, bus_generic_setup_intr), 21498aa9cd0SNate Lawson DEVMETHOD(bus_teardown_intr, bus_generic_teardown_intr), 215fec754d4SMike Smith 2164b7ec270SMarius Strobl DEVMETHOD_END 217fec754d4SMike Smith }; 218fec754d4SMike Smith 219fec754d4SMike Smith static driver_t acpi_cpu_driver = { 220b0e2b625SNate Lawson "cpu", 221fec754d4SMike Smith acpi_cpu_methods, 222fec754d4SMike Smith sizeof(struct acpi_cpu_softc), 223fec754d4SMike Smith }; 224fec754d4SMike Smith 225916a5d8aSJohn Baldwin DRIVER_MODULE(cpu, acpi, acpi_cpu_driver, 0, 0); 226b0e2b625SNate Lawson MODULE_DEPEND(cpu, acpi, 1, 1, 1); 22756a70eadSNate Lawson 228fec754d4SMike Smith static int 229fec754d4SMike Smith acpi_cpu_probe(device_t dev) 230fec754d4SMike Smith { 231e054cac7SConrad Meyer static char *cpudev_ids[] = { CPUDEV_DEVICE_ID, NULL }; 232b29224c2SNate Lawson int acpi_id, cpu_id; 233b0e2b625SNate Lawson ACPI_BUFFER buf; 234b0e2b625SNate Lawson ACPI_HANDLE handle; 235b0e2b625SNate Lawson ACPI_OBJECT *obj; 236b0e2b625SNate Lawson ACPI_STATUS status; 237e054cac7SConrad Meyer ACPI_OBJECT_TYPE type; 238b0e2b625SNate Lawson 239e054cac7SConrad Meyer if (acpi_disabled("cpu") || acpi_cpu_disabled) 240e054cac7SConrad Meyer return (ENXIO); 241e054cac7SConrad Meyer type = acpi_get_type(dev); 242e054cac7SConrad Meyer if (type != ACPI_TYPE_PROCESSOR && type != ACPI_TYPE_DEVICE) 243e054cac7SConrad Meyer return (ENXIO); 244e054cac7SConrad Meyer if (type == ACPI_TYPE_DEVICE && 2455efca36fSTakanori Watanabe ACPI_ID_PROBE(device_get_parent(dev), dev, cpudev_ids, NULL) >= 0) 246b0e2b625SNate Lawson return (ENXIO); 247b0e2b625SNate Lawson 248b0e2b625SNate Lawson handle = acpi_get_handle(dev); 249447a5fa1SJohn Baldwin if (cpu_softc == NULL) 250447a5fa1SJohn Baldwin cpu_softc = malloc(sizeof(struct acpi_cpu_softc *) * 251447a5fa1SJohn Baldwin (mp_maxid + 1), M_TEMP /* XXX */, M_WAITOK | M_ZERO); 252b0e2b625SNate Lawson 253e054cac7SConrad Meyer if (type == ACPI_TYPE_PROCESSOR) { 254b0e2b625SNate Lawson /* Get our Processor object. */ 255b0e2b625SNate Lawson buf.Pointer = NULL; 256b0e2b625SNate Lawson buf.Length = ACPI_ALLOCATE_BUFFER; 257b0e2b625SNate Lawson status = AcpiEvaluateObject(handle, NULL, NULL, &buf); 258b0e2b625SNate Lawson if (ACPI_FAILURE(status)) { 259b0e2b625SNate Lawson device_printf(dev, "probe failed to get Processor obj - %s\n", 260b0e2b625SNate Lawson AcpiFormatException(status)); 261b0e2b625SNate Lawson return (ENXIO); 262b0e2b625SNate Lawson } 263b0e2b625SNate Lawson obj = (ACPI_OBJECT *)buf.Pointer; 264b0e2b625SNate Lawson if (obj->Type != ACPI_TYPE_PROCESSOR) { 265e054cac7SConrad Meyer device_printf(dev, "Processor object has bad type %d\n", 266e054cac7SConrad Meyer obj->Type); 267b0e2b625SNate Lawson AcpiOsFree(obj); 268b0e2b625SNate Lawson return (ENXIO); 269fec754d4SMike Smith } 270be2b1797SNate Lawson 271b0e2b625SNate Lawson /* 272b0e2b625SNate Lawson * Find the processor associated with our unit. We could use the 273b0e2b625SNate Lawson * ProcId as a key, however, some boxes do not have the same values 274b0e2b625SNate Lawson * in their Processor object as the ProcId values in the MADT. 275b0e2b625SNate Lawson */ 276b0e2b625SNate Lawson acpi_id = obj->Processor.ProcId; 277b0e2b625SNate Lawson AcpiOsFree(obj); 278e054cac7SConrad Meyer } else { 279e054cac7SConrad Meyer status = acpi_GetInteger(handle, "_UID", &acpi_id); 280e054cac7SConrad Meyer if (ACPI_FAILURE(status)) { 281e054cac7SConrad Meyer device_printf(dev, "Device object has bad value - %s\n", 282e054cac7SConrad Meyer AcpiFormatException(status)); 283e054cac7SConrad Meyer return (ENXIO); 284e054cac7SConrad Meyer } 285e054cac7SConrad Meyer } 286c8077ccdSAlexander Motin if (acpi_pcpu_get_id(dev, acpi_id, &cpu_id) != 0) { 287c8077ccdSAlexander Motin if (bootverbose && (type != ACPI_TYPE_PROCESSOR || acpi_id != 255)) 288c8077ccdSAlexander Motin printf("ACPI: Processor %s (ACPI ID %u) ignored\n", 289c8077ccdSAlexander Motin acpi_name(acpi_get_handle(dev)), acpi_id); 290c8077ccdSAlexander Motin return (ENXIO); 291c8077ccdSAlexander Motin } 292c8077ccdSAlexander Motin 293c8077ccdSAlexander Motin if (device_set_unit(dev, cpu_id) != 0) 294fec754d4SMike Smith return (ENXIO); 295b0e2b625SNate Lawson 296b29224c2SNate Lawson device_set_desc(dev, "ACPI CPU"); 297b0e2b625SNate Lawson 29843d9cb5bSWarner Losh if (!bootverbose && device_get_unit(dev) != 0) { 29943d9cb5bSWarner Losh device_quiet(dev); 30043d9cb5bSWarner Losh device_quiet_children(dev); 30143d9cb5bSWarner Losh } 30243d9cb5bSWarner Losh 303b93f47eaSRoger Pau Monné return (BUS_PROBE_DEFAULT); 304fec754d4SMike Smith } 305fec754d4SMike Smith 306fec754d4SMike Smith static int 307fec754d4SMike Smith acpi_cpu_attach(device_t dev) 308fec754d4SMike Smith { 309b0e2b625SNate Lawson ACPI_BUFFER buf; 31087f0a4bfSJung-uk Kim ACPI_OBJECT arg, *obj; 311bce92885SNate Lawson ACPI_OBJECT_LIST arglist; 31298aa9cd0SNate Lawson struct pcpu *pcpu_data; 313fec754d4SMike Smith struct acpi_cpu_softc *sc; 314fec754d4SMike Smith struct acpi_softc *acpi_sc; 315fec754d4SMike Smith ACPI_STATUS status; 316b29224c2SNate Lawson u_int features; 317b29224c2SNate Lawson int cpu_id, drv_count, i; 318b29224c2SNate Lawson driver_t **drivers; 319bce92885SNate Lawson uint32_t cap_set[3]; 320fec754d4SMike Smith 321c961facaSNate Lawson /* UUID needed by _OSC evaluation */ 322c961facaSNate Lawson static uint8_t cpu_oscuuid[16] = { 0x16, 0xA6, 0x77, 0x40, 0x0C, 0x29, 323c961facaSNate Lawson 0xBE, 0x47, 0x9E, 0xBD, 0xD8, 0x70, 324c961facaSNate Lawson 0x58, 0x71, 0x39, 0x53 }; 325c961facaSNate Lawson 326b4a05238SPeter Wemm ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__); 327fec754d4SMike Smith 328fec754d4SMike Smith sc = device_get_softc(dev); 329fec754d4SMike Smith sc->cpu_dev = dev; 330fec754d4SMike Smith sc->cpu_handle = acpi_get_handle(dev); 331c8077ccdSAlexander Motin cpu_id = device_get_unit(dev); 33298aa9cd0SNate Lawson cpu_softc[cpu_id] = sc; 33398aa9cd0SNate Lawson pcpu_data = pcpu_find(cpu_id); 33498aa9cd0SNate Lawson pcpu_data->pc_device = dev; 33598aa9cd0SNate Lawson sc->cpu_pcpu = pcpu_data; 3362be4e471SJung-uk Kim cpu_smi_cmd = AcpiGbl_FADT.SmiCommand; 3372be4e471SJung-uk Kim cpu_cst_cnt = AcpiGbl_FADT.CstControl; 338fec754d4SMike Smith 339e054cac7SConrad Meyer if (acpi_get_type(dev) == ACPI_TYPE_PROCESSOR) { 340b0e2b625SNate Lawson buf.Pointer = NULL; 341b0e2b625SNate Lawson buf.Length = ACPI_ALLOCATE_BUFFER; 3426b74f9b7SNate Lawson status = AcpiEvaluateObject(sc->cpu_handle, NULL, NULL, &buf); 3436b74f9b7SNate Lawson if (ACPI_FAILURE(status)) { 344b0e2b625SNate Lawson device_printf(dev, "attach failed to get Processor obj - %s\n", 3456b74f9b7SNate Lawson AcpiFormatException(status)); 3466b74f9b7SNate Lawson return (ENXIO); 347b0e2b625SNate Lawson } 348b0e2b625SNate Lawson obj = (ACPI_OBJECT *)buf.Pointer; 349b0e2b625SNate Lawson sc->cpu_p_blk = obj->Processor.PblkAddress; 350b0e2b625SNate Lawson sc->cpu_p_blk_len = obj->Processor.PblkLength; 35198aa9cd0SNate Lawson sc->cpu_acpi_id = obj->Processor.ProcId; 352b0e2b625SNate Lawson AcpiOsFree(obj); 353e054cac7SConrad Meyer } else { 354e054cac7SConrad Meyer KASSERT(acpi_get_type(dev) == ACPI_TYPE_DEVICE, 355e054cac7SConrad Meyer ("Unexpected ACPI object")); 356e054cac7SConrad Meyer status = acpi_GetInteger(sc->cpu_handle, "_UID", &sc->cpu_acpi_id); 357e054cac7SConrad Meyer if (ACPI_FAILURE(status)) { 358e054cac7SConrad Meyer device_printf(dev, "Device object has bad value - %s\n", 359e054cac7SConrad Meyer AcpiFormatException(status)); 360e054cac7SConrad Meyer return (ENXIO); 361e054cac7SConrad Meyer } 362e054cac7SConrad Meyer sc->cpu_p_blk = 0; 363e054cac7SConrad Meyer sc->cpu_p_blk_len = 0; 364e054cac7SConrad Meyer } 36556a70eadSNate Lawson ACPI_DEBUG_PRINT((ACPI_DB_INFO, "acpi_cpu%d: P_BLK at %#x/%d\n", 36656a70eadSNate Lawson device_get_unit(dev), sc->cpu_p_blk, sc->cpu_p_blk_len)); 3676b74f9b7SNate Lawson 368907b6777SNate Lawson /* 369907b6777SNate Lawson * If this is the first cpu we attach, create and initialize the generic 370907b6777SNate Lawson * resources that will be used by all acpi cpu devices. 371907b6777SNate Lawson */ 372907b6777SNate Lawson if (device_get_unit(dev) == 0) { 373907b6777SNate Lawson /* Assume we won't be using generic Cx mode by default */ 374907b6777SNate Lawson cpu_cx_generic = FALSE; 375907b6777SNate Lawson 376907b6777SNate Lawson /* Install hw.acpi.cpu sysctl tree */ 377fec754d4SMike Smith acpi_sc = acpi_device_get_parent_softc(dev); 378907b6777SNate Lawson sysctl_ctx_init(&cpu_sysctl_ctx); 379907b6777SNate Lawson cpu_sysctl_tree = SYSCTL_ADD_NODE(&cpu_sysctl_ctx, 38098aa9cd0SNate Lawson SYSCTL_CHILDREN(acpi_sc->acpi_sysctl_tree), OID_AUTO, "cpu", 3817029da5cSPawel Biernacki CTLFLAG_RD | CTLFLAG_MPSAFE, 0, "node for CPU children"); 382907b6777SNate Lawson } 383fec754d4SMike Smith 3846b74f9b7SNate Lawson /* 385b29224c2SNate Lawson * Before calling any CPU methods, collect child driver feature hints 386f2d94257SNate Lawson * and notify ACPI of them. We support unified SMP power control 387f2d94257SNate Lawson * so advertise this ourselves. Note this is not the same as independent 388f2d94257SNate Lawson * SMP control where each CPU can have different settings. 389b29224c2SNate Lawson */ 390b57a73f8SKonstantin Belousov sc->cpu_features = ACPI_CAP_SMP_SAME | ACPI_CAP_SMP_SAME_C3 | 391b57a73f8SKonstantin Belousov ACPI_CAP_C1_IO_HALT; 392b57a73f8SKonstantin Belousov 393b57a73f8SKonstantin Belousov #if defined(__i386__) || defined(__amd64__) 394b57a73f8SKonstantin Belousov /* 395b57a73f8SKonstantin Belousov * Ask for MWAIT modes if not disabled and interrupts work 396b57a73f8SKonstantin Belousov * reasonable with MWAIT. 397b57a73f8SKonstantin Belousov */ 398b57a73f8SKonstantin Belousov if (!acpi_disabled("mwait") && cpu_mwait_usable()) 399b57a73f8SKonstantin Belousov sc->cpu_features |= ACPI_CAP_SMP_C1_NATIVE | ACPI_CAP_SMP_C3_NATIVE; 400*67f2a563STom Jones 401*67f2a563STom Jones /* 402*67f2a563STom Jones * Work around a lingering SMM bug which leads to freezes when handling 403*67f2a563STom Jones * CPPC notifications. Tell the SMM we will handle any CPPC notifications. 404*67f2a563STom Jones */ 405*67f2a563STom Jones if ((cpu_power_eax & CPUTPM1_HWP_NOTIFICATION) && cppc_notify) 406*67f2a563STom Jones sc->cpu_features |= ACPI_CAP_INTR_CPPC; 407b57a73f8SKonstantin Belousov #endif 408b57a73f8SKonstantin Belousov 409e206dddcSJohn Baldwin if (devclass_get_drivers(device_get_devclass(dev), &drivers, 410e206dddcSJohn Baldwin &drv_count) == 0) { 411b29224c2SNate Lawson for (i = 0; i < drv_count; i++) { 412b29224c2SNate Lawson if (ACPI_GET_FEATURES(drivers[i], &features) == 0) 413b29224c2SNate Lawson sc->cpu_features |= features; 414b29224c2SNate Lawson } 415b29224c2SNate Lawson free(drivers, M_TEMP); 416b29224c2SNate Lawson } 417bce92885SNate Lawson 418bce92885SNate Lawson /* 419f4ab0cccSAndriy Gapon * CPU capabilities are specified in 420f4ab0cccSAndriy Gapon * Intel Processor Vendor-Specific ACPI Interface Specification. 421bce92885SNate Lawson */ 422bce92885SNate Lawson if (sc->cpu_features) { 423877a6d99SAndriy Gapon cap_set[1] = sc->cpu_features; 4244c26ac69SJohn Baldwin status = acpi_EvaluateOSC(sc->cpu_handle, cpu_oscuuid, 1, 2, cap_set, 4254c26ac69SJohn Baldwin cap_set, false); 426f4ab0cccSAndriy Gapon if (ACPI_SUCCESS(status)) { 427f4ab0cccSAndriy Gapon if (cap_set[0] != 0) 428f4ab0cccSAndriy Gapon device_printf(dev, "_OSC returned status %#x\n", cap_set[0]); 429f4ab0cccSAndriy Gapon } 430f4ab0cccSAndriy Gapon else { 43187f0a4bfSJung-uk Kim arglist.Pointer = &arg; 432f4ab0cccSAndriy Gapon arglist.Count = 1; 43387f0a4bfSJung-uk Kim arg.Type = ACPI_TYPE_BUFFER; 43487f0a4bfSJung-uk Kim arg.Buffer.Length = sizeof(cap_set); 43587f0a4bfSJung-uk Kim arg.Buffer.Pointer = (uint8_t *)cap_set; 436f4ab0cccSAndriy Gapon cap_set[0] = 1; /* revision */ 437f4ab0cccSAndriy Gapon cap_set[1] = 1; /* number of capabilities integers */ 438f4ab0cccSAndriy Gapon cap_set[2] = sc->cpu_features; 439f4ab0cccSAndriy Gapon AcpiEvaluateObject(sc->cpu_handle, "_PDC", &arglist, NULL); 440f4ab0cccSAndriy Gapon } 441bce92885SNate Lawson } 442b29224c2SNate Lawson 443907b6777SNate Lawson /* Probe for Cx state support. */ 444907b6777SNate Lawson acpi_cpu_cx_probe(sc); 4456b74f9b7SNate Lawson 44698aa9cd0SNate Lawson return (0); 4476b74f9b7SNate Lawson } 4486b74f9b7SNate Lawson 449aa835160SAndriy Gapon static void 450aa835160SAndriy Gapon acpi_cpu_postattach(void *unused __unused) 451aa835160SAndriy Gapon { 452695323aeSAlexander Motin struct acpi_cpu_softc *sc; 453695323aeSAlexander Motin int attached = 0, i; 454aa835160SAndriy Gapon 4554e50efb1SAndrew Turner if (cpu_softc == NULL) 4564e50efb1SAndrew Turner return; 4574e50efb1SAndrew Turner 458de291c5dSAlexander Motin bus_topo_lock(); 459695323aeSAlexander Motin CPU_FOREACH(i) { 460695323aeSAlexander Motin if ((sc = cpu_softc[i]) != NULL) 461695323aeSAlexander Motin bus_generic_probe(sc->cpu_dev); 462aa835160SAndriy Gapon } 463695323aeSAlexander Motin CPU_FOREACH(i) { 464695323aeSAlexander Motin if ((sc = cpu_softc[i]) != NULL) { 465695323aeSAlexander Motin bus_generic_attach(sc->cpu_dev); 466f8887b89SJohn Baldwin attached = 1; 467695323aeSAlexander Motin } 468695323aeSAlexander Motin } 469de291c5dSAlexander Motin bus_topo_unlock(); 470f8887b89SJohn Baldwin 471f8887b89SJohn Baldwin if (attached) { 472fdce57a0SJohn Baldwin #ifdef EARLY_AP_STARTUP 473fdce57a0SJohn Baldwin acpi_cpu_startup(NULL); 474fdce57a0SJohn Baldwin #else 475f8887b89SJohn Baldwin /* Queue post cpu-probing task handler */ 476f8887b89SJohn Baldwin AcpiOsExecute(OSL_NOTIFY_HANDLER, acpi_cpu_startup, NULL); 477fdce57a0SJohn Baldwin #endif 478f8887b89SJohn Baldwin } 479aa835160SAndriy Gapon } 480aa835160SAndriy Gapon 481aa835160SAndriy Gapon SYSINIT(acpi_cpu, SI_SUB_CONFIGURE, SI_ORDER_MIDDLE, 482aa835160SAndriy Gapon acpi_cpu_postattach, NULL); 483aa835160SAndriy Gapon 48409424d43SAndriy Gapon static void 48509424d43SAndriy Gapon disable_idle(struct acpi_cpu_softc *sc) 48609424d43SAndriy Gapon { 48709424d43SAndriy Gapon cpuset_t cpuset; 48809424d43SAndriy Gapon 48909424d43SAndriy Gapon CPU_SETOF(sc->cpu_pcpu->pc_cpuid, &cpuset); 49009424d43SAndriy Gapon sc->cpu_disable_idle = TRUE; 49109424d43SAndriy Gapon 49209424d43SAndriy Gapon /* 49309424d43SAndriy Gapon * Ensure that the CPU is not in idle state or in acpi_cpu_idle(). 49409424d43SAndriy Gapon * Note that this code depends on the fact that the rendezvous IPI 49509424d43SAndriy Gapon * can not penetrate context where interrupts are disabled and acpi_cpu_idle 49609424d43SAndriy Gapon * is called and executed in such a context with interrupts being re-enabled 49709424d43SAndriy Gapon * right before return. 49809424d43SAndriy Gapon */ 49967d955aaSPatrick Kelsey smp_rendezvous_cpus(cpuset, smp_no_rendezvous_barrier, NULL, 50067d955aaSPatrick Kelsey smp_no_rendezvous_barrier, NULL); 50109424d43SAndriy Gapon } 50209424d43SAndriy Gapon 50309424d43SAndriy Gapon static void 50409424d43SAndriy Gapon enable_idle(struct acpi_cpu_softc *sc) 50509424d43SAndriy Gapon { 50609424d43SAndriy Gapon 50709424d43SAndriy Gapon sc->cpu_disable_idle = FALSE; 50809424d43SAndriy Gapon } 50909424d43SAndriy Gapon 510617994efSAndrew Turner #if defined(__i386__) || defined(__amd64__) 51109424d43SAndriy Gapon static int 51209424d43SAndriy Gapon is_idle_disabled(struct acpi_cpu_softc *sc) 51309424d43SAndriy Gapon { 51409424d43SAndriy Gapon 51509424d43SAndriy Gapon return (sc->cpu_disable_idle); 51609424d43SAndriy Gapon } 517617994efSAndrew Turner #endif 51809424d43SAndriy Gapon 519b6426963SNate Lawson /* 5203331373cSNate Lawson * Disable any entry to the idle function during suspend and re-enable it 5213331373cSNate Lawson * during resume. 5223331373cSNate Lawson */ 5233331373cSNate Lawson static int 5243331373cSNate Lawson acpi_cpu_suspend(device_t dev) 5253331373cSNate Lawson { 5263331373cSNate Lawson int error; 5273331373cSNate Lawson 5283331373cSNate Lawson error = bus_generic_suspend(dev); 5293331373cSNate Lawson if (error) 5303331373cSNate Lawson return (error); 53109424d43SAndriy Gapon disable_idle(device_get_softc(dev)); 5323331373cSNate Lawson return (0); 5333331373cSNate Lawson } 5343331373cSNate Lawson 5353331373cSNate Lawson static int 5363331373cSNate Lawson acpi_cpu_resume(device_t dev) 5373331373cSNate Lawson { 5383331373cSNate Lawson 53909424d43SAndriy Gapon enable_idle(device_get_softc(dev)); 5403331373cSNate Lawson return (bus_generic_resume(dev)); 5413331373cSNate Lawson } 5423331373cSNate Lawson 5433331373cSNate Lawson /* 544c8077ccdSAlexander Motin * Find the processor associated with a given ACPI ID. 545b6426963SNate Lawson */ 546b6426963SNate Lawson static int 547c8077ccdSAlexander Motin acpi_pcpu_get_id(device_t dev, uint32_t acpi_id, u_int *cpu_id) 548b6426963SNate Lawson { 549e4cd9dcfSJohn Baldwin struct pcpu *pc; 550c8077ccdSAlexander Motin u_int i; 551b6426963SNate Lawson 552c8077ccdSAlexander Motin CPU_FOREACH(i) { 553c8077ccdSAlexander Motin pc = pcpu_find(i); 554c8077ccdSAlexander Motin if (pc->pc_acpi_id == acpi_id) { 555c8077ccdSAlexander Motin *cpu_id = pc->pc_cpuid; 556c8077ccdSAlexander Motin return (0); 557c8077ccdSAlexander Motin } 558c8077ccdSAlexander Motin } 559e4cd9dcfSJohn Baldwin 560e4cd9dcfSJohn Baldwin /* 561e4cd9dcfSJohn Baldwin * If pc_acpi_id for CPU 0 is not initialized (e.g. a non-APIC 562e4cd9dcfSJohn Baldwin * UP box) use the ACPI ID from the first processor we find. 563e4cd9dcfSJohn Baldwin */ 564c8077ccdSAlexander Motin if (mp_ncpus == 1) { 565e4cd9dcfSJohn Baldwin pc = pcpu_find(0); 566e4cd9dcfSJohn Baldwin if (pc->pc_acpi_id == 0xffffffff) 567c8077ccdSAlexander Motin pc->pc_acpi_id = acpi_id; 568e4cd9dcfSJohn Baldwin *cpu_id = 0; 569e4cd9dcfSJohn Baldwin return (0); 570e4cd9dcfSJohn Baldwin } 571e4cd9dcfSJohn Baldwin 572b6426963SNate Lawson return (ESRCH); 573b6426963SNate Lawson } 574b6426963SNate Lawson 57598aa9cd0SNate Lawson static struct resource_list * 57698aa9cd0SNate Lawson acpi_cpu_get_rlist(device_t dev, device_t child) 57798aa9cd0SNate Lawson { 57898aa9cd0SNate Lawson struct acpi_cpu_device *ad; 57998aa9cd0SNate Lawson 58098aa9cd0SNate Lawson ad = device_get_ivars(child); 58198aa9cd0SNate Lawson if (ad == NULL) 58298aa9cd0SNate Lawson return (NULL); 58398aa9cd0SNate Lawson return (&ad->ad_rl); 58498aa9cd0SNate Lawson } 58598aa9cd0SNate Lawson 58698aa9cd0SNate Lawson static device_t 5873d844eddSAndriy Gapon acpi_cpu_add_child(device_t dev, u_int order, const char *name, int unit) 58898aa9cd0SNate Lawson { 58998aa9cd0SNate Lawson struct acpi_cpu_device *ad; 59098aa9cd0SNate Lawson device_t child; 59198aa9cd0SNate Lawson 59298aa9cd0SNate Lawson if ((ad = malloc(sizeof(*ad), M_TEMP, M_NOWAIT | M_ZERO)) == NULL) 59398aa9cd0SNate Lawson return (NULL); 59498aa9cd0SNate Lawson 59598aa9cd0SNate Lawson resource_list_init(&ad->ad_rl); 59698aa9cd0SNate Lawson 59798aa9cd0SNate Lawson child = device_add_child_ordered(dev, order, name, unit); 59898aa9cd0SNate Lawson if (child != NULL) 59998aa9cd0SNate Lawson device_set_ivars(child, ad); 60043ce1c77SNate Lawson else 60143ce1c77SNate Lawson free(ad, M_TEMP); 60298aa9cd0SNate Lawson return (child); 60398aa9cd0SNate Lawson } 60498aa9cd0SNate Lawson 60598aa9cd0SNate Lawson static int 60698aa9cd0SNate Lawson acpi_cpu_read_ivar(device_t dev, device_t child, int index, uintptr_t *result) 60798aa9cd0SNate Lawson { 60898aa9cd0SNate Lawson struct acpi_cpu_softc *sc; 60998aa9cd0SNate Lawson 61098aa9cd0SNate Lawson sc = device_get_softc(dev); 61198aa9cd0SNate Lawson switch (index) { 61298aa9cd0SNate Lawson case ACPI_IVAR_HANDLE: 61398aa9cd0SNate Lawson *result = (uintptr_t)sc->cpu_handle; 61498aa9cd0SNate Lawson break; 61598aa9cd0SNate Lawson case CPU_IVAR_PCPU: 61698aa9cd0SNate Lawson *result = (uintptr_t)sc->cpu_pcpu; 61798aa9cd0SNate Lawson break; 618e1c9d39eSJung-uk Kim #if defined(__amd64__) || defined(__i386__) 619e1c9d39eSJung-uk Kim case CPU_IVAR_NOMINAL_MHZ: 620e1c9d39eSJung-uk Kim if (tsc_is_invariant) { 6213453537fSJung-uk Kim *result = (uintptr_t)(atomic_load_acq_64(&tsc_freq) / 1000000); 622e1c9d39eSJung-uk Kim break; 623e1c9d39eSJung-uk Kim } 624e1c9d39eSJung-uk Kim /* FALLTHROUGH */ 625e1c9d39eSJung-uk Kim #endif 62698aa9cd0SNate Lawson default: 62798aa9cd0SNate Lawson return (ENOENT); 62898aa9cd0SNate Lawson } 62998aa9cd0SNate Lawson return (0); 63098aa9cd0SNate Lawson } 63198aa9cd0SNate Lawson 6326b74f9b7SNate Lawson static int 63356a70eadSNate Lawson acpi_cpu_shutdown(device_t dev) 63456a70eadSNate Lawson { 63556a70eadSNate Lawson ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__); 63656a70eadSNate Lawson 63798aa9cd0SNate Lawson /* Allow children to shutdown first. */ 63898aa9cd0SNate Lawson bus_generic_shutdown(dev); 63998aa9cd0SNate Lawson 640cc3c11f9SNate Lawson /* 64109424d43SAndriy Gapon * Disable any entry to the idle function. 642cc3c11f9SNate Lawson */ 64309424d43SAndriy Gapon disable_idle(device_get_softc(dev)); 64409424d43SAndriy Gapon 64509424d43SAndriy Gapon /* 646453130d9SPedro F. Giffuni * CPU devices are not truly detached and remain referenced, 64709424d43SAndriy Gapon * so their resources are not freed. 64809424d43SAndriy Gapon */ 64956a70eadSNate Lawson 65056a70eadSNate Lawson return_VALUE (0); 65156a70eadSNate Lawson } 65256a70eadSNate Lawson 653907b6777SNate Lawson static void 6546b74f9b7SNate Lawson acpi_cpu_cx_probe(struct acpi_cpu_softc *sc) 6556b74f9b7SNate Lawson { 656907b6777SNate Lawson ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__); 657907b6777SNate Lawson 658907b6777SNate Lawson /* Use initial sleep value of 1 sec. to start with lowest idle state. */ 659907b6777SNate Lawson sc->cpu_prev_sleep = 1000000; 660907b6777SNate Lawson sc->cpu_cx_lowest = 0; 661d30b88afSAndriy Gapon sc->cpu_cx_lowest_lim = 0; 662907b6777SNate Lawson 663907b6777SNate Lawson /* 664907b6777SNate Lawson * Check for the ACPI 2.0 _CST sleep states object. If we can't find 665907b6777SNate Lawson * any, we'll revert to generic FADT/P_BLK Cx control method which will 666907b6777SNate Lawson * be handled by acpi_cpu_startup. We need to defer to after having 667907b6777SNate Lawson * probed all the cpus in the system before probing for generic Cx 668907b6777SNate Lawson * states as we may already have found cpus with valid _CST packages 669907b6777SNate Lawson */ 670907b6777SNate Lawson if (!cpu_cx_generic && acpi_cpu_cx_cst(sc) != 0) { 671907b6777SNate Lawson /* 672907b6777SNate Lawson * We were unable to find a _CST package for this cpu or there 673907b6777SNate Lawson * was an error parsing it. Switch back to generic mode. 674907b6777SNate Lawson */ 675907b6777SNate Lawson cpu_cx_generic = TRUE; 676bd826803SNate Lawson if (bootverbose) 677bd826803SNate Lawson device_printf(sc->cpu_dev, "switching to generic Cx mode\n"); 678907b6777SNate Lawson } 679907b6777SNate Lawson 680907b6777SNate Lawson /* 681907b6777SNate Lawson * TODO: _CSD Package should be checked here. 682907b6777SNate Lawson */ 683907b6777SNate Lawson } 684907b6777SNate Lawson 685907b6777SNate Lawson static void 686907b6777SNate Lawson acpi_cpu_generic_cx_probe(struct acpi_cpu_softc *sc) 687907b6777SNate Lawson { 6886b74f9b7SNate Lawson ACPI_GENERIC_ADDRESS gas; 6896b74f9b7SNate Lawson struct acpi_cx *cx_ptr; 69056a70eadSNate Lawson 69156a70eadSNate Lawson sc->cpu_cx_count = 0; 6926b74f9b7SNate Lawson cx_ptr = sc->cpu_cx_states; 693fec754d4SMike Smith 694907b6777SNate Lawson /* Use initial sleep value of 1 sec. to start with lowest idle state. */ 695907b6777SNate Lawson sc->cpu_prev_sleep = 1000000; 696907b6777SNate Lawson 6976b74f9b7SNate Lawson /* C1 has been required since just after ACPI 1.0 */ 6986b74f9b7SNate Lawson cx_ptr->type = ACPI_STATE_C1; 6996b74f9b7SNate Lawson cx_ptr->trans_lat = 0; 7006b74f9b7SNate Lawson cx_ptr++; 70192597e06SJohn Baldwin sc->cpu_non_c2 = sc->cpu_cx_count; 702987e5277SAndriy Gapon sc->cpu_non_c3 = sc->cpu_cx_count; 70356a70eadSNate Lawson sc->cpu_cx_count++; 70456a70eadSNate Lawson 705c181b89bSNate Lawson /* 706c181b89bSNate Lawson * The spec says P_BLK must be 6 bytes long. However, some systems 707c181b89bSNate Lawson * use it to indicate a fractional set of features present so we 708c181b89bSNate Lawson * take 5 as C2. Some may also have a value of 7 to indicate 709c181b89bSNate Lawson * another C3 but most use _CST for this (as required) and having 710c181b89bSNate Lawson * "only" C1-C3 is not a hardship. 711c181b89bSNate Lawson */ 712c181b89bSNate Lawson if (sc->cpu_p_blk_len < 5) 713907b6777SNate Lawson return; 714fec754d4SMike Smith 7156b74f9b7SNate Lawson /* Validate and allocate resources for C2 (P_LVL2). */ 7162be4e471SJung-uk Kim gas.SpaceId = ACPI_ADR_SPACE_SYSTEM_IO; 7172be4e471SJung-uk Kim gas.BitWidth = 8; 7182be4e471SJung-uk Kim if (AcpiGbl_FADT.C2Latency <= 100) { 71956a70eadSNate Lawson gas.Address = sc->cpu_p_blk + 4; 720f51d43feSAndriy Gapon cx_ptr->res_rid = 0; 721f51d43feSAndriy Gapon acpi_bus_alloc_gas(sc->cpu_dev, &cx_ptr->res_type, &cx_ptr->res_rid, 722907b6777SNate Lawson &gas, &cx_ptr->p_lvlx, RF_SHAREABLE); 7236b74f9b7SNate Lawson if (cx_ptr->p_lvlx != NULL) { 7246b74f9b7SNate Lawson cx_ptr->type = ACPI_STATE_C2; 7252be4e471SJung-uk Kim cx_ptr->trans_lat = AcpiGbl_FADT.C2Latency; 7266b74f9b7SNate Lawson cx_ptr++; 727987e5277SAndriy Gapon sc->cpu_non_c3 = sc->cpu_cx_count; 72856a70eadSNate Lawson sc->cpu_cx_count++; 729fec754d4SMike Smith } 730fec754d4SMike Smith } 731c181b89bSNate Lawson if (sc->cpu_p_blk_len < 6) 732907b6777SNate Lawson return; 733be2b1797SNate Lawson 7346b74f9b7SNate Lawson /* Validate and allocate resources for C3 (P_LVL3). */ 7356e1de64dSRui Paulo if (AcpiGbl_FADT.C3Latency <= 1000 && !(cpu_quirks & CPU_QUIRK_NO_C3)) { 73656a70eadSNate Lawson gas.Address = sc->cpu_p_blk + 5; 737f51d43feSAndriy Gapon cx_ptr->res_rid = 1; 738f51d43feSAndriy Gapon acpi_bus_alloc_gas(sc->cpu_dev, &cx_ptr->res_type, &cx_ptr->res_rid, 739f51d43feSAndriy Gapon &gas, &cx_ptr->p_lvlx, RF_SHAREABLE); 7406b74f9b7SNate Lawson if (cx_ptr->p_lvlx != NULL) { 7416b74f9b7SNate Lawson cx_ptr->type = ACPI_STATE_C3; 7422be4e471SJung-uk Kim cx_ptr->trans_lat = AcpiGbl_FADT.C3Latency; 7436b74f9b7SNate Lawson cx_ptr++; 74456a70eadSNate Lawson sc->cpu_cx_count++; 7456b74f9b7SNate Lawson } 7466b74f9b7SNate Lawson } 7476b74f9b7SNate Lawson } 7486b74f9b7SNate Lawson 749044a49cdSAndrew Turner #if defined(__i386__) || defined(__amd64__) 750b57a73f8SKonstantin Belousov static void 751b57a73f8SKonstantin Belousov acpi_cpu_cx_cst_mwait(struct acpi_cx *cx_ptr, uint64_t address, int accsize) 752b57a73f8SKonstantin Belousov { 753b57a73f8SKonstantin Belousov 754b57a73f8SKonstantin Belousov cx_ptr->do_mwait = true; 755b57a73f8SKonstantin Belousov cx_ptr->mwait_hint = address & 0xffffffff; 756b57a73f8SKonstantin Belousov cx_ptr->mwait_hw_coord = (accsize & CST_FFH_MWAIT_HW_COORD) != 0; 757b57a73f8SKonstantin Belousov cx_ptr->mwait_bm_avoidance = (accsize & CST_FFH_MWAIT_BM_AVOID) != 0; 758b57a73f8SKonstantin Belousov } 759044a49cdSAndrew Turner #endif 760b57a73f8SKonstantin Belousov 761b57a73f8SKonstantin Belousov static void 762b57a73f8SKonstantin Belousov acpi_cpu_cx_cst_free_plvlx(device_t cpu_dev, struct acpi_cx *cx_ptr) 763b57a73f8SKonstantin Belousov { 764b57a73f8SKonstantin Belousov 765b57a73f8SKonstantin Belousov if (cx_ptr->p_lvlx == NULL) 766b57a73f8SKonstantin Belousov return; 767b57a73f8SKonstantin Belousov bus_release_resource(cpu_dev, cx_ptr->res_type, cx_ptr->res_rid, 768b57a73f8SKonstantin Belousov cx_ptr->p_lvlx); 769b57a73f8SKonstantin Belousov cx_ptr->p_lvlx = NULL; 770b57a73f8SKonstantin Belousov } 771b57a73f8SKonstantin Belousov 7726b74f9b7SNate Lawson /* 7736b74f9b7SNate Lawson * Parse a _CST package and set up its Cx states. Since the _CST object 7746b74f9b7SNate Lawson * can change dynamically, our notify handler may call this function 7756b74f9b7SNate Lawson * to clean up and probe the new _CST package. 7766b74f9b7SNate Lawson */ 7776b74f9b7SNate Lawson static int 7786b74f9b7SNate Lawson acpi_cpu_cx_cst(struct acpi_cpu_softc *sc) 7796b74f9b7SNate Lawson { 7806b74f9b7SNate Lawson struct acpi_cx *cx_ptr; 7816b74f9b7SNate Lawson ACPI_STATUS status; 7826b74f9b7SNate Lawson ACPI_BUFFER buf; 7836b74f9b7SNate Lawson ACPI_OBJECT *top; 7846b74f9b7SNate Lawson ACPI_OBJECT *pkg; 7856b74f9b7SNate Lawson uint32_t count; 786044a49cdSAndrew Turner int i; 787044a49cdSAndrew Turner #if defined(__i386__) || defined(__amd64__) 788b57a73f8SKonstantin Belousov uint64_t address; 789044a49cdSAndrew Turner int vendor, class, accsize; 790044a49cdSAndrew Turner #endif 7916b74f9b7SNate Lawson 79256a70eadSNate Lawson ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__); 79356a70eadSNate Lawson 7946b74f9b7SNate Lawson buf.Pointer = NULL; 7956b74f9b7SNate Lawson buf.Length = ACPI_ALLOCATE_BUFFER; 7966b74f9b7SNate Lawson status = AcpiEvaluateObject(sc->cpu_handle, "_CST", NULL, &buf); 797bd826803SNate Lawson if (ACPI_FAILURE(status)) 7986b74f9b7SNate Lawson return (ENXIO); 7996b74f9b7SNate Lawson 8006b74f9b7SNate Lawson /* _CST is a package with a count and at least one Cx package. */ 8016b74f9b7SNate Lawson top = (ACPI_OBJECT *)buf.Pointer; 80221cea91fSNate Lawson if (!ACPI_PKG_VALID(top, 2) || acpi_PkgInt32(top, 0, &count) != 0) { 803bd826803SNate Lawson device_printf(sc->cpu_dev, "invalid _CST package\n"); 8046b74f9b7SNate Lawson AcpiOsFree(buf.Pointer); 8056b74f9b7SNate Lawson return (ENXIO); 8066b74f9b7SNate Lawson } 8076b74f9b7SNate Lawson if (count != top->Package.Count - 1) { 808bd826803SNate Lawson device_printf(sc->cpu_dev, "invalid _CST state count (%d != %d)\n", 8096b74f9b7SNate Lawson count, top->Package.Count - 1); 8106b74f9b7SNate Lawson count = top->Package.Count - 1; 8116b74f9b7SNate Lawson } 8126b74f9b7SNate Lawson if (count > MAX_CX_STATES) { 81356a70eadSNate Lawson device_printf(sc->cpu_dev, "_CST has too many states (%d)\n", count); 8146b74f9b7SNate Lawson count = MAX_CX_STATES; 8156b74f9b7SNate Lawson } 8166b74f9b7SNate Lawson 81792597e06SJohn Baldwin sc->cpu_non_c2 = 0; 81868d5e11cSJung-uk Kim sc->cpu_non_c3 = 0; 81956a70eadSNate Lawson sc->cpu_cx_count = 0; 8206b74f9b7SNate Lawson cx_ptr = sc->cpu_cx_states; 82168d5e11cSJung-uk Kim 82268d5e11cSJung-uk Kim /* 82368d5e11cSJung-uk Kim * C1 has been required since just after ACPI 1.0. 82468d5e11cSJung-uk Kim * Reserve the first slot for it. 82568d5e11cSJung-uk Kim */ 82668d5e11cSJung-uk Kim cx_ptr->type = ACPI_STATE_C0; 82768d5e11cSJung-uk Kim cx_ptr++; 82868d5e11cSJung-uk Kim sc->cpu_cx_count++; 82968d5e11cSJung-uk Kim 83068d5e11cSJung-uk Kim /* Set up all valid states. */ 8316b74f9b7SNate Lawson for (i = 0; i < count; i++) { 8326b74f9b7SNate Lawson pkg = &top->Package.Elements[i + 1]; 83321cea91fSNate Lawson if (!ACPI_PKG_VALID(pkg, 4) || 83421cea91fSNate Lawson acpi_PkgInt32(pkg, 1, &cx_ptr->type) != 0 || 83521cea91fSNate Lawson acpi_PkgInt32(pkg, 2, &cx_ptr->trans_lat) != 0 || 83621cea91fSNate Lawson acpi_PkgInt32(pkg, 3, &cx_ptr->power) != 0) { 83780f006a1SNate Lawson device_printf(sc->cpu_dev, "skipping invalid Cx state package\n"); 8386b74f9b7SNate Lawson continue; 8396b74f9b7SNate Lawson } 8406b74f9b7SNate Lawson 8416b74f9b7SNate Lawson /* Validate the state to see if we should use it. */ 8426b74f9b7SNate Lawson switch (cx_ptr->type) { 8436b74f9b7SNate Lawson case ACPI_STATE_C1: 844b57a73f8SKonstantin Belousov acpi_cpu_cx_cst_free_plvlx(sc->cpu_dev, cx_ptr); 845b57a73f8SKonstantin Belousov #if defined(__i386__) || defined(__amd64__) 846b57a73f8SKonstantin Belousov if (acpi_PkgFFH_IntelCpu(pkg, 0, &vendor, &class, &address, 847b57a73f8SKonstantin Belousov &accsize) == 0 && vendor == CST_FFH_VENDOR_INTEL) { 848b57a73f8SKonstantin Belousov if (class == CST_FFH_INTEL_CL_C1IO) { 849b57a73f8SKonstantin Belousov /* C1 I/O then Halt */ 850b57a73f8SKonstantin Belousov cx_ptr->res_rid = sc->cpu_cx_count; 851b57a73f8SKonstantin Belousov bus_set_resource(sc->cpu_dev, SYS_RES_IOPORT, 852b57a73f8SKonstantin Belousov cx_ptr->res_rid, address, 1); 853b57a73f8SKonstantin Belousov cx_ptr->p_lvlx = bus_alloc_resource_any(sc->cpu_dev, 854b57a73f8SKonstantin Belousov SYS_RES_IOPORT, &cx_ptr->res_rid, RF_ACTIVE | 855b57a73f8SKonstantin Belousov RF_SHAREABLE); 856b57a73f8SKonstantin Belousov if (cx_ptr->p_lvlx == NULL) { 857b57a73f8SKonstantin Belousov bus_delete_resource(sc->cpu_dev, SYS_RES_IOPORT, 858b57a73f8SKonstantin Belousov cx_ptr->res_rid); 859b57a73f8SKonstantin Belousov device_printf(sc->cpu_dev, 860b57a73f8SKonstantin Belousov "C1 I/O failed to allocate port %d, " 861b57a73f8SKonstantin Belousov "degrading to C1 Halt", (int)address); 862b57a73f8SKonstantin Belousov } 863b57a73f8SKonstantin Belousov } else if (class == CST_FFH_INTEL_CL_MWAIT) { 864b57a73f8SKonstantin Belousov acpi_cpu_cx_cst_mwait(cx_ptr, address, accsize); 865b57a73f8SKonstantin Belousov } 866b57a73f8SKonstantin Belousov } 867b57a73f8SKonstantin Belousov #endif 86868d5e11cSJung-uk Kim if (sc->cpu_cx_states[0].type == ACPI_STATE_C0) { 86968d5e11cSJung-uk Kim /* This is the first C1 state. Use the reserved slot. */ 87068d5e11cSJung-uk Kim sc->cpu_cx_states[0] = *cx_ptr; 87168d5e11cSJung-uk Kim } else { 87292597e06SJohn Baldwin sc->cpu_non_c2 = sc->cpu_cx_count; 87356101001SAndriy Gapon sc->cpu_non_c3 = sc->cpu_cx_count; 8746b74f9b7SNate Lawson cx_ptr++; 87556a70eadSNate Lawson sc->cpu_cx_count++; 87668d5e11cSJung-uk Kim } 8776b74f9b7SNate Lawson continue; 8786b74f9b7SNate Lawson case ACPI_STATE_C2: 87956101001SAndriy Gapon sc->cpu_non_c3 = sc->cpu_cx_count; 8806b74f9b7SNate Lawson break; 8816b74f9b7SNate Lawson case ACPI_STATE_C3: 8826b74f9b7SNate Lawson default: 88309c22c66SAndriy Gapon if ((cpu_quirks & CPU_QUIRK_NO_C3) != 0) { 88456a70eadSNate Lawson ACPI_DEBUG_PRINT((ACPI_DB_INFO, 88556a70eadSNate Lawson "acpi_cpu%d: C3[%d] not available.\n", 88656a70eadSNate Lawson device_get_unit(sc->cpu_dev), i)); 8876b74f9b7SNate Lawson continue; 8888cd59625SKonstantin Belousov } 8896b74f9b7SNate Lawson break; 8906b74f9b7SNate Lawson } 8916b74f9b7SNate Lawson 8926b74f9b7SNate Lawson /* Free up any previous register. */ 893b57a73f8SKonstantin Belousov acpi_cpu_cx_cst_free_plvlx(sc->cpu_dev, cx_ptr); 8946b74f9b7SNate Lawson 8956b74f9b7SNate Lawson /* Allocate the control register for C2 or C3. */ 896b57a73f8SKonstantin Belousov #if defined(__i386__) || defined(__amd64__) 897b57a73f8SKonstantin Belousov if (acpi_PkgFFH_IntelCpu(pkg, 0, &vendor, &class, &address, 898b57a73f8SKonstantin Belousov &accsize) == 0 && vendor == CST_FFH_VENDOR_INTEL && 899b57a73f8SKonstantin Belousov class == CST_FFH_INTEL_CL_MWAIT) { 900b57a73f8SKonstantin Belousov /* Native C State Instruction use (mwait) */ 901b57a73f8SKonstantin Belousov acpi_cpu_cx_cst_mwait(cx_ptr, address, accsize); 902b57a73f8SKonstantin Belousov ACPI_DEBUG_PRINT((ACPI_DB_INFO, 903b57a73f8SKonstantin Belousov "acpi_cpu%d: Got C%d/mwait - %d latency\n", 904b57a73f8SKonstantin Belousov device_get_unit(sc->cpu_dev), cx_ptr->type, cx_ptr->trans_lat)); 905b57a73f8SKonstantin Belousov cx_ptr++; 906b57a73f8SKonstantin Belousov sc->cpu_cx_count++; 907b57a73f8SKonstantin Belousov } else 908b57a73f8SKonstantin Belousov #endif 909b57a73f8SKonstantin Belousov { 910f51d43feSAndriy Gapon cx_ptr->res_rid = sc->cpu_cx_count; 911b57a73f8SKonstantin Belousov acpi_PkgGas(sc->cpu_dev, pkg, 0, &cx_ptr->res_type, 912b57a73f8SKonstantin Belousov &cx_ptr->res_rid, &cx_ptr->p_lvlx, RF_SHAREABLE); 913f4eb0418SNate Lawson if (cx_ptr->p_lvlx) { 91456a70eadSNate Lawson ACPI_DEBUG_PRINT((ACPI_DB_INFO, 91556a70eadSNate Lawson "acpi_cpu%d: Got C%d - %d latency\n", 91656a70eadSNate Lawson device_get_unit(sc->cpu_dev), cx_ptr->type, 91756a70eadSNate Lawson cx_ptr->trans_lat)); 9186b74f9b7SNate Lawson cx_ptr++; 91956a70eadSNate Lawson sc->cpu_cx_count++; 9206b74f9b7SNate Lawson } 9216b74f9b7SNate Lawson } 922b57a73f8SKonstantin Belousov } 9236b74f9b7SNate Lawson AcpiOsFree(buf.Pointer); 9246b74f9b7SNate Lawson 92568d5e11cSJung-uk Kim /* If C1 state was not found, we need one now. */ 92668d5e11cSJung-uk Kim cx_ptr = sc->cpu_cx_states; 92768d5e11cSJung-uk Kim if (cx_ptr->type == ACPI_STATE_C0) { 92868d5e11cSJung-uk Kim cx_ptr->type = ACPI_STATE_C1; 92968d5e11cSJung-uk Kim cx_ptr->trans_lat = 0; 93068d5e11cSJung-uk Kim } 93168d5e11cSJung-uk Kim 9326b74f9b7SNate Lawson return (0); 933fec754d4SMike Smith } 934fec754d4SMike Smith 935fec754d4SMike Smith /* 936fec754d4SMike Smith * Call this *after* all CPUs have been attached. 937fec754d4SMike Smith */ 938fec754d4SMike Smith static void 9396b74f9b7SNate Lawson acpi_cpu_startup(void *arg) 940fec754d4SMike Smith { 94156a70eadSNate Lawson struct acpi_cpu_softc *sc; 942907b6777SNate Lawson int i; 943fec754d4SMike Smith 94456a70eadSNate Lawson /* 945907b6777SNate Lawson * Setup any quirks that might necessary now that we have probed 946907b6777SNate Lawson * all the CPUs 94756a70eadSNate Lawson */ 948907b6777SNate Lawson acpi_cpu_quirks(); 949907b6777SNate Lawson 950907b6777SNate Lawson if (cpu_cx_generic) { 951907b6777SNate Lawson /* 952907b6777SNate Lawson * We are using generic Cx mode, probe for available Cx states 953907b6777SNate Lawson * for all processors. 954907b6777SNate Lawson */ 955695323aeSAlexander Motin CPU_FOREACH(i) { 956695323aeSAlexander Motin if ((sc = cpu_softc[i]) != NULL) 957907b6777SNate Lawson acpi_cpu_generic_cx_probe(sc); 958907b6777SNate Lawson } 959907b6777SNate Lawson } else { 960907b6777SNate Lawson /* 961907b6777SNate Lawson * We are using _CST mode, remove C3 state if necessary. 962907b6777SNate Lawson * As we now know for sure that we will be using _CST mode 963907b6777SNate Lawson * install our notify handler. 964907b6777SNate Lawson */ 965695323aeSAlexander Motin CPU_FOREACH(i) { 966695323aeSAlexander Motin if ((sc = cpu_softc[i]) == NULL) 967695323aeSAlexander Motin continue; 9687a310721SJohn Baldwin if (cpu_quirks & CPU_QUIRK_NO_C3) { 969633a2847SColin Percival sc->cpu_cx_count = min(sc->cpu_cx_count, sc->cpu_non_c3 + 1); 970907b6777SNate Lawson } 971907b6777SNate Lawson AcpiInstallNotifyHandler(sc->cpu_handle, ACPI_DEVICE_NOTIFY, 972907b6777SNate Lawson acpi_cpu_notify, sc); 973907b6777SNate Lawson } 974907b6777SNate Lawson } 97556a70eadSNate Lawson 9768c5468e3SNate Lawson /* Perform Cx final initialization. */ 977695323aeSAlexander Motin CPU_FOREACH(i) { 978695323aeSAlexander Motin if ((sc = cpu_softc[i]) != NULL) 979907b6777SNate Lawson acpi_cpu_startup_cx(sc); 980907b6777SNate Lawson } 981907b6777SNate Lawson 982907b6777SNate Lawson /* Add a sysctl handler to handle global Cx lowest setting */ 983907b6777SNate Lawson SYSCTL_ADD_PROC(&cpu_sysctl_ctx, SYSCTL_CHILDREN(cpu_sysctl_tree), 9843e68d2c5SAlexander Motin OID_AUTO, "cx_lowest", CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 985907b6777SNate Lawson NULL, 0, acpi_cpu_global_cx_lowest_sysctl, "A", 986907b6777SNate Lawson "Global lowest Cx sleep state to use"); 987907b6777SNate Lawson 988*67f2a563STom Jones /* Add sysctl handler to control registering for CPPC notifications */ 989*67f2a563STom Jones cppc_notify = 1; 990*67f2a563STom Jones SYSCTL_ADD_BOOL(&cpu_sysctl_ctx, SYSCTL_CHILDREN(cpu_sysctl_tree), 991*67f2a563STom Jones OID_AUTO, "cppc_notify", CTLFLAG_RDTUN | CTLFLAG_MPSAFE, 992*67f2a563STom Jones &cppc_notify, 0, "Register for CPPC Notifications"); 993*67f2a563STom Jones 994907b6777SNate Lawson /* Take over idling from cpu_idle_default(). */ 995d30b88afSAndriy Gapon cpu_cx_lowest_lim = 0; 996695323aeSAlexander Motin CPU_FOREACH(i) { 997695323aeSAlexander Motin if ((sc = cpu_softc[i]) != NULL) 99809424d43SAndriy Gapon enable_idle(sc); 99909424d43SAndriy Gapon } 1000617994efSAndrew Turner #if defined(__i386__) || defined(__amd64__) 1001907b6777SNate Lawson cpu_idle_hook = acpi_cpu_idle; 1002617994efSAndrew Turner #endif 10036b74f9b7SNate Lawson } 10046b74f9b7SNate Lawson 100556a70eadSNate Lawson static void 100689ab2a7aSRui Paulo acpi_cpu_cx_list(struct acpi_cpu_softc *sc) 100756a70eadSNate Lawson { 100856a70eadSNate Lawson struct sbuf sb; 100956a70eadSNate Lawson int i; 101056a70eadSNate Lawson 1011ae56b59fSNate Lawson /* 1012907b6777SNate Lawson * Set up the list of Cx states 1013ae56b59fSNate Lawson */ 1014907b6777SNate Lawson sbuf_new(&sb, sc->cpu_cx_supported, sizeof(sc->cpu_cx_supported), 1015907b6777SNate Lawson SBUF_FIXEDLEN); 1016412ef220SAndriy Gapon for (i = 0; i < sc->cpu_cx_count; i++) 10173c5c5559SAlexander Motin sbuf_printf(&sb, "C%d/%d/%d ", i + 1, sc->cpu_cx_states[i].type, 10183c5c5559SAlexander Motin sc->cpu_cx_states[i].trans_lat); 101956a70eadSNate Lawson sbuf_trim(&sb); 102056a70eadSNate Lawson sbuf_finish(&sb); 102189ab2a7aSRui Paulo } 102289ab2a7aSRui Paulo 102389ab2a7aSRui Paulo static void 102489ab2a7aSRui Paulo acpi_cpu_startup_cx(struct acpi_cpu_softc *sc) 102589ab2a7aSRui Paulo { 102689ab2a7aSRui Paulo acpi_cpu_cx_list(sc); 1027907b6777SNate Lawson 1028907b6777SNate Lawson SYSCTL_ADD_STRING(&sc->cpu_sysctl_ctx, 1029907b6777SNate Lawson SYSCTL_CHILDREN(device_get_sysctl_tree(sc->cpu_dev)), 1030907b6777SNate Lawson OID_AUTO, "cx_supported", CTLFLAG_RD, 1031907b6777SNate Lawson sc->cpu_cx_supported, 0, 1032907b6777SNate Lawson "Cx/microsecond values for supported Cx states"); 1033907b6777SNate Lawson SYSCTL_ADD_PROC(&sc->cpu_sysctl_ctx, 10347029da5cSPawel Biernacki SYSCTL_CHILDREN(device_get_sysctl_tree(sc->cpu_dev)), OID_AUTO, 10353e68d2c5SAlexander Motin "cx_lowest", CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 1036907b6777SNate Lawson (void *)sc, 0, acpi_cpu_cx_lowest_sysctl, "A", 103756a70eadSNate Lawson "lowest Cx sleep state to use"); 1038907b6777SNate Lawson SYSCTL_ADD_PROC(&sc->cpu_sysctl_ctx, 10397029da5cSPawel Biernacki SYSCTL_CHILDREN(device_get_sysctl_tree(sc->cpu_dev)), OID_AUTO, 10403e68d2c5SAlexander Motin "cx_usage", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, 1041907b6777SNate Lawson (void *)sc, 0, acpi_cpu_usage_sysctl, "A", 1042a2afe45aSNate Lawson "percent usage for each Cx state"); 10430d470054SAdrian Chadd SYSCTL_ADD_PROC(&sc->cpu_sysctl_ctx, 10447029da5cSPawel Biernacki SYSCTL_CHILDREN(device_get_sysctl_tree(sc->cpu_dev)), OID_AUTO, 10453e68d2c5SAlexander Motin "cx_usage_counters", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, 10460d470054SAdrian Chadd (void *)sc, 0, acpi_cpu_usage_counters_sysctl, "A", 10470d470054SAdrian Chadd "Cx sleep state counters"); 1048b57a73f8SKonstantin Belousov #if defined(__i386__) || defined(__amd64__) 1049b57a73f8SKonstantin Belousov SYSCTL_ADD_PROC(&sc->cpu_sysctl_ctx, 10507029da5cSPawel Biernacki SYSCTL_CHILDREN(device_get_sysctl_tree(sc->cpu_dev)), OID_AUTO, 10513e68d2c5SAlexander Motin "cx_method", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, 10527029da5cSPawel Biernacki (void *)sc, 0, acpi_cpu_method_sysctl, "A", "Cx entrance methods"); 1053b57a73f8SKonstantin Belousov #endif 105456a70eadSNate Lawson 105556a70eadSNate Lawson /* Signal platform that we can handle _CST notification. */ 1056907b6777SNate Lawson if (!cpu_cx_generic && cpu_cst_cnt != 0) { 1057d92a2ebdSNate Lawson ACPI_LOCK(acpi); 105856a70eadSNate Lawson AcpiOsWritePort(cpu_smi_cmd, cpu_cst_cnt, 8); 1059d92a2ebdSNate Lawson ACPI_UNLOCK(acpi); 106056a70eadSNate Lawson } 106156a70eadSNate Lawson } 106256a70eadSNate Lawson 1063617994efSAndrew Turner #if defined(__i386__) || defined(__amd64__) 1064fec754d4SMike Smith /* 1065a2afe45aSNate Lawson * Idle the CPU in the lowest state possible. This function is called with 1066a2afe45aSNate Lawson * interrupts disabled. Note that once it re-enables interrupts, a task 1067a2afe45aSNate Lawson * switch can occur so do not access shared data (i.e. the softc) after 1068a2afe45aSNate Lawson * interrupts are re-enabled. 10696b74f9b7SNate Lawson */ 10706b74f9b7SNate Lawson static void 1071acccf7d8SDavide Italiano acpi_cpu_idle(sbintime_t sbt) 10726b74f9b7SNate Lawson { 10736b74f9b7SNate Lawson struct acpi_cpu_softc *sc; 107456a70eadSNate Lawson struct acpi_cx *cx_next; 10752cee045bSAlexander Motin uint64_t start_ticks, end_ticks; 10766b74f9b7SNate Lawson uint32_t start_time, end_time; 10779ae8e006SJung-uk Kim ACPI_STATUS status; 1078acccf7d8SDavide Italiano int bm_active, cx_next_idx, i, us; 10796b74f9b7SNate Lawson 1080cd1f3db9SNate Lawson /* 1081cd1f3db9SNate Lawson * Look up our CPU id to get our softc. If it's NULL, we'll use C1 1082cd1f3db9SNate Lawson * since there is no ACPI processor object for this CPU. This occurs 1083cd1f3db9SNate Lawson * for logical CPUs in the HTT case. 1084cd1f3db9SNate Lawson */ 1085cd1f3db9SNate Lawson sc = cpu_softc[PCPU_GET(cpuid)]; 1086cd1f3db9SNate Lawson if (sc == NULL) { 1087cd1f3db9SNate Lawson acpi_cpu_c1(); 1088cd1f3db9SNate Lawson return; 1089cd1f3db9SNate Lawson } 1090cd1f3db9SNate Lawson 109130bf6110SAndriy Gapon /* If disabled, take the safe path. */ 109209424d43SAndriy Gapon if (is_idle_disabled(sc)) { 109330bf6110SAndriy Gapon acpi_cpu_c1(); 109409424d43SAndriy Gapon return; 109509424d43SAndriy Gapon } 109609424d43SAndriy Gapon 1097bb1d6ad5SAlexander Motin /* Find the lowest state that has small enough latency. */ 1098acccf7d8SDavide Italiano us = sc->cpu_prev_sleep; 1099d9ddf0c0SDavide Italiano if (sbt >= 0 && us > (sbt >> 12)) 1100d9ddf0c0SDavide Italiano us = (sbt >> 12); 1101b0baaaaeSAlexander Motin cx_next_idx = 0; 110292597e06SJohn Baldwin if (cpu_disable_c2_sleep) 110392597e06SJohn Baldwin i = min(sc->cpu_cx_lowest, sc->cpu_non_c2); 110492597e06SJohn Baldwin else if (cpu_disable_c3_sleep) 110548fe2e67SAlexander Motin i = min(sc->cpu_cx_lowest, sc->cpu_non_c3); 110655fb7f36SSean Bruno else 1107a157e425SAlexander Motin i = sc->cpu_cx_lowest; 1108a157e425SAlexander Motin for (; i >= 0; i--) { 1109acccf7d8SDavide Italiano if (sc->cpu_cx_states[i].trans_lat * 3 <= us) { 1110a2afe45aSNate Lawson cx_next_idx = i; 1111a2afe45aSNate Lawson break; 1112a2afe45aSNate Lawson } 111380f006a1SNate Lawson } 111456a70eadSNate Lawson 11156b74f9b7SNate Lawson /* 11166b74f9b7SNate Lawson * Check for bus master activity. If there was activity, clear 11176b74f9b7SNate Lawson * the bit and use the lowest non-C3 state. Note that the USB 11186b74f9b7SNate Lawson * driver polling for new devices keeps this bit set all the 1119f435261dSNate Lawson * time if USB is loaded. 11206b74f9b7SNate Lawson */ 112145521967SAlexander Motin cx_next = &sc->cpu_cx_states[cx_next_idx]; 11223c5c5559SAlexander Motin if ((cpu_quirks & CPU_QUIRK_NO_BM_CTRL) == 0 && 112345521967SAlexander Motin cx_next_idx > sc->cpu_non_c3 && 112445521967SAlexander Motin (!cx_next->do_mwait || cx_next->mwait_bm_avoidance)) { 11259ae8e006SJung-uk Kim status = AcpiReadBitRegister(ACPI_BITREG_BUS_MASTER_STATUS, &bm_active); 11269ae8e006SJung-uk Kim if (ACPI_SUCCESS(status) && bm_active != 0) { 1127129d3046SJung-uk Kim AcpiWriteBitRegister(ACPI_BITREG_BUS_MASTER_STATUS, 1); 11283c5c5559SAlexander Motin cx_next_idx = sc->cpu_non_c3; 112945521967SAlexander Motin cx_next = &sc->cpu_cx_states[cx_next_idx]; 11306b74f9b7SNate Lawson } 1131f435261dSNate Lawson } 11326b74f9b7SNate Lawson 1133a2afe45aSNate Lawson /* Select the next state and update statistics. */ 1134907b6777SNate Lawson sc->cpu_cx_stats[cx_next_idx]++; 1135a2afe45aSNate Lawson KASSERT(cx_next->type != ACPI_STATE_C0, ("acpi_cpu_idle: C0 sleep")); 11366b74f9b7SNate Lawson 11376b74f9b7SNate Lawson /* 1138a2afe45aSNate Lawson * Execute HLT (or equivalent) and wait for an interrupt. We can't 11397150e671SAlexander Motin * precisely calculate the time spent in C1 since the place we wake up 1140a157e425SAlexander Motin * is an ISR. Assume we slept no more then half of quantum, unless 1141a157e425SAlexander Motin * we are called inside critical section, delaying context switch. 11426b74f9b7SNate Lawson */ 1143a2afe45aSNate Lawson if (cx_next->type == ACPI_STATE_C1) { 11442cee045bSAlexander Motin start_ticks = cpu_ticks(); 1145b57a73f8SKonstantin Belousov if (cx_next->p_lvlx != NULL) { 1146b57a73f8SKonstantin Belousov /* C1 I/O then Halt */ 1147b57a73f8SKonstantin Belousov CPU_GET_REG(cx_next->p_lvlx, 1); 1148b57a73f8SKonstantin Belousov } 1149b57a73f8SKonstantin Belousov if (cx_next->do_mwait) 1150b57a73f8SKonstantin Belousov acpi_cpu_idle_mwait(cx_next->mwait_hint); 1151b57a73f8SKonstantin Belousov else 1152a2afe45aSNate Lawson acpi_cpu_c1(); 11532cee045bSAlexander Motin end_ticks = cpu_ticks(); 115419d4720bSJonathan T. Looney /* acpi_cpu_c1() returns with interrupts enabled. */ 115519d4720bSJonathan T. Looney if (cx_next->do_mwait) 115619d4720bSJonathan T. Looney ACPI_ENABLE_IRQS(); 11572cee045bSAlexander Motin end_time = ((end_ticks - start_ticks) << 20) / cpu_tickrate(); 11582cee045bSAlexander Motin if (!cx_next->do_mwait && curthread->td_critnest == 0) 11592cee045bSAlexander Motin end_time = min(end_time, 500000 / hz); 1160a157e425SAlexander Motin sc->cpu_prev_sleep = (sc->cpu_prev_sleep * 3 + end_time) / 4; 1161a2afe45aSNate Lawson return; 1162a2afe45aSNate Lawson } 1163a2afe45aSNate Lawson 1164f435261dSNate Lawson /* 1165f435261dSNate Lawson * For C3, disable bus master arbitration and enable bus master wake 1166f435261dSNate Lawson * if BM control is available, otherwise flush the CPU cache. 1167f435261dSNate Lawson */ 116845521967SAlexander Motin if (cx_next->type == ACPI_STATE_C3) { 1169f435261dSNate Lawson if ((cpu_quirks & CPU_QUIRK_NO_BM_CTRL) == 0) { 1170129d3046SJung-uk Kim AcpiWriteBitRegister(ACPI_BITREG_ARB_DISABLE, 1); 1171129d3046SJung-uk Kim AcpiWriteBitRegister(ACPI_BITREG_BUS_MASTER_RLD, 1); 1172f435261dSNate Lawson } else 1173f435261dSNate Lawson ACPI_FLUSH_CPU_CACHE(); 1174a2afe45aSNate Lawson } 1175a2afe45aSNate Lawson 11766b74f9b7SNate Lawson /* 1177a2afe45aSNate Lawson * Read from P_LVLx to enter C2(+), checking time spent asleep. 11786b74f9b7SNate Lawson * Use the ACPI timer for measuring sleep time. Since we need to 11796b74f9b7SNate Lawson * get the time very close to the CPU start/stop clock logic, this 11806b74f9b7SNate Lawson * is the only reliable time source. 11816b74f9b7SNate Lawson */ 11823c5c5559SAlexander Motin if (cx_next->type == ACPI_STATE_C3) { 11832f6a1a81SJung-uk Kim AcpiGetTimer(&start_time); 11842cee045bSAlexander Motin start_ticks = 0; 11853c5c5559SAlexander Motin } else { 11863c5c5559SAlexander Motin start_time = 0; 11872cee045bSAlexander Motin start_ticks = cpu_ticks(); 11883c5c5559SAlexander Motin } 1189075e4807SAlexander Motin if (cx_next->do_mwait) { 1190b57a73f8SKonstantin Belousov acpi_cpu_idle_mwait(cx_next->mwait_hint); 1191075e4807SAlexander Motin } else { 11926b74f9b7SNate Lawson CPU_GET_REG(cx_next->p_lvlx, 1); 11936b74f9b7SNate Lawson /* 11946b74f9b7SNate Lawson * Read the end time twice. Since it may take an arbitrary time 11956b74f9b7SNate Lawson * to enter the idle state, the first read may be executed before 11966b74f9b7SNate Lawson * the processor has stopped. Doing it again provides enough 11976b74f9b7SNate Lawson * margin that we are certain to have a correct value. 11986b74f9b7SNate Lawson */ 11992f6a1a81SJung-uk Kim AcpiGetTimer(&end_time); 1200075e4807SAlexander Motin } 1201075e4807SAlexander Motin 12022cee045bSAlexander Motin if (cx_next->type == ACPI_STATE_C3) 12032f6a1a81SJung-uk Kim AcpiGetTimer(&end_time); 12042cee045bSAlexander Motin else 12052cee045bSAlexander Motin end_ticks = cpu_ticks(); 12066b74f9b7SNate Lawson 12076b74f9b7SNate Lawson /* Enable bus master arbitration and disable bus master wakeup. */ 120845521967SAlexander Motin if (cx_next->type == ACPI_STATE_C3 && 120918ececa0SNate Lawson (cpu_quirks & CPU_QUIRK_NO_BM_CTRL) == 0) { 1210129d3046SJung-uk Kim AcpiWriteBitRegister(ACPI_BITREG_ARB_DISABLE, 0); 1211129d3046SJung-uk Kim AcpiWriteBitRegister(ACPI_BITREG_BUS_MASTER_RLD, 0); 12126b74f9b7SNate Lawson } 121380f006a1SNate Lawson ACPI_ENABLE_IRQS(); 12146b74f9b7SNate Lawson 12152cee045bSAlexander Motin if (cx_next->type == ACPI_STATE_C3) 12162cee045bSAlexander Motin AcpiGetTimerDuration(start_time, end_time, &end_time); 12172cee045bSAlexander Motin else 12182cee045bSAlexander Motin end_time = ((end_ticks - start_ticks) << 20) / cpu_tickrate(); 12192cee045bSAlexander Motin sc->cpu_prev_sleep = (sc->cpu_prev_sleep * 3 + end_time) / 4; 12206b74f9b7SNate Lawson } 1221617994efSAndrew Turner #endif 12226b74f9b7SNate Lawson 12236b74f9b7SNate Lawson /* 12248b888c66SNate Lawson * Re-evaluate the _CST object when we are notified that it changed. 12256b74f9b7SNate Lawson */ 12266b74f9b7SNate Lawson static void 12276b74f9b7SNate Lawson acpi_cpu_notify(ACPI_HANDLE h, UINT32 notify, void *context) 12286b74f9b7SNate Lawson { 12296b74f9b7SNate Lawson struct acpi_cpu_softc *sc = (struct acpi_cpu_softc *)context; 12306b74f9b7SNate Lawson 12318b888c66SNate Lawson if (notify != ACPI_NOTIFY_CX_STATES) 12328b888c66SNate Lawson return; 12338b888c66SNate Lawson 123430bf6110SAndriy Gapon /* 123530bf6110SAndriy Gapon * C-state data for target CPU is going to be in flux while we execute 123630bf6110SAndriy Gapon * acpi_cpu_cx_cst, so disable entering acpi_cpu_idle. 123730bf6110SAndriy Gapon * Also, it may happen that multiple ACPI taskqueues may concurrently 123830bf6110SAndriy Gapon * execute notifications for the same CPU. ACPI_SERIAL is used to 123930bf6110SAndriy Gapon * protect against that. 124030bf6110SAndriy Gapon */ 124130bf6110SAndriy Gapon ACPI_SERIAL_BEGIN(cpu); 124230bf6110SAndriy Gapon disable_idle(sc); 124330bf6110SAndriy Gapon 124489ab2a7aSRui Paulo /* Update the list of Cx states. */ 124589ab2a7aSRui Paulo acpi_cpu_cx_cst(sc); 124689ab2a7aSRui Paulo acpi_cpu_cx_list(sc); 1247d30b88afSAndriy Gapon acpi_cpu_set_cx_lowest(sc); 124830bf6110SAndriy Gapon 124930bf6110SAndriy Gapon enable_idle(sc); 125089ab2a7aSRui Paulo ACPI_SERIAL_END(cpu); 1251154fc7b6SAndriy Gapon 1252154fc7b6SAndriy Gapon acpi_UserNotify("PROCESSOR", sc->cpu_handle, notify); 12536b74f9b7SNate Lawson } 12546b74f9b7SNate Lawson 12559cf4cabeSJung-uk Kim static void 1256907b6777SNate Lawson acpi_cpu_quirks(void) 12576b74f9b7SNate Lawson { 12587826bf98SNate Lawson ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__); 12597826bf98SNate Lawson 12606b74f9b7SNate Lawson /* 1261907b6777SNate Lawson * Bus mastering arbitration control is needed to keep caches coherent 1262907b6777SNate Lawson * while sleeping in C3. If it's not present but a working flush cache 1263907b6777SNate Lawson * instruction is present, flush the caches before entering C3 instead. 1264907b6777SNate Lawson * Otherwise, just disable C3 completely. 12656b74f9b7SNate Lawson */ 12662be4e471SJung-uk Kim if (AcpiGbl_FADT.Pm2ControlBlock == 0 || 12672be4e471SJung-uk Kim AcpiGbl_FADT.Pm2ControlLength == 0) { 12682be4e471SJung-uk Kim if ((AcpiGbl_FADT.Flags & ACPI_FADT_WBINVD) && 12692be4e471SJung-uk Kim (AcpiGbl_FADT.Flags & ACPI_FADT_WBINVD_FLUSH) == 0) { 1270907b6777SNate Lawson cpu_quirks |= CPU_QUIRK_NO_BM_CTRL; 1271907b6777SNate Lawson ACPI_DEBUG_PRINT((ACPI_DB_INFO, 127230dd6af3SNate Lawson "acpi_cpu: no BM control, using flush cache method\n")); 1273907b6777SNate Lawson } else { 1274907b6777SNate Lawson cpu_quirks |= CPU_QUIRK_NO_C3; 1275907b6777SNate Lawson ACPI_DEBUG_PRINT((ACPI_DB_INFO, 127630dd6af3SNate Lawson "acpi_cpu: no BM control, C3 not available\n")); 1277907b6777SNate Lawson } 1278907b6777SNate Lawson } 1279907b6777SNate Lawson 1280907b6777SNate Lawson /* 1281907b6777SNate Lawson * If we are using generic Cx mode, C3 on multiple CPUs requires using 1282907b6777SNate Lawson * the expensive flush cache instruction. 1283907b6777SNate Lawson */ 128430dd6af3SNate Lawson if (cpu_cx_generic && mp_ncpus > 1) { 128518ececa0SNate Lawson cpu_quirks |= CPU_QUIRK_NO_BM_CTRL; 128630dd6af3SNate Lawson ACPI_DEBUG_PRINT((ACPI_DB_INFO, 128730dd6af3SNate Lawson "acpi_cpu: SMP, using flush cache mode for C3\n")); 128830dd6af3SNate Lawson } 12896b74f9b7SNate Lawson 12906b74f9b7SNate Lawson /* Look for various quirks of the PIIX4 part. */ 12919cf4cabeSJung-uk Kim acpi_cpu_quirks_piix4(); 12929cf4cabeSJung-uk Kim } 12939cf4cabeSJung-uk Kim 12949cf4cabeSJung-uk Kim static void 12959cf4cabeSJung-uk Kim acpi_cpu_quirks_piix4(void) 12969cf4cabeSJung-uk Kim { 12979cf4cabeSJung-uk Kim #ifdef __i386__ 12989cf4cabeSJung-uk Kim device_t acpi_dev; 12999cf4cabeSJung-uk Kim uint32_t val; 13009ae8e006SJung-uk Kim ACPI_STATUS status; 13019cf4cabeSJung-uk Kim 13026b74f9b7SNate Lawson acpi_dev = pci_find_device(PCI_VENDOR_INTEL, PCI_DEVICE_82371AB_3); 13036b74f9b7SNate Lawson if (acpi_dev != NULL) { 13046b74f9b7SNate Lawson switch (pci_get_revid(acpi_dev)) { 13056b74f9b7SNate Lawson /* 13066b74f9b7SNate Lawson * Disable C3 support for all PIIX4 chipsets. Some of these parts 13076b74f9b7SNate Lawson * do not report the BMIDE status to the BM status register and 13086b74f9b7SNate Lawson * others have a livelock bug if Type-F DMA is enabled. Linux 13096b74f9b7SNate Lawson * works around the BMIDE bug by reading the BM status directly 13106b74f9b7SNate Lawson * but we take the simpler approach of disabling C3 for these 13116b74f9b7SNate Lawson * parts. 13126b74f9b7SNate Lawson * 13136b74f9b7SNate Lawson * See erratum #18 ("C3 Power State/BMIDE and Type-F DMA 13146b74f9b7SNate Lawson * Livelock") from the January 2002 PIIX4 specification update. 13156b74f9b7SNate Lawson * Applies to all PIIX4 models. 13168a000acaSRui Paulo * 13178a000acaSRui Paulo * Also, make sure that all interrupts cause a "Stop Break" 13188a000acaSRui Paulo * event to exit from C2 state. 1319f1e1ddc3SAndriy Gapon * Also, BRLD_EN_BM (ACPI_BITREG_BUS_MASTER_RLD in ACPI-speak) 1320f1e1ddc3SAndriy Gapon * should be set to zero, otherwise it causes C2 to short-sleep. 1321f1e1ddc3SAndriy Gapon * PIIX4 doesn't properly support C3 and bus master activity 1322f1e1ddc3SAndriy Gapon * need not break out of C2. 13236b74f9b7SNate Lawson */ 13248a000acaSRui Paulo case PCI_REVISION_A_STEP: 13258a000acaSRui Paulo case PCI_REVISION_B_STEP: 13266b74f9b7SNate Lawson case PCI_REVISION_4E: 13276b74f9b7SNate Lawson case PCI_REVISION_4M: 13286b74f9b7SNate Lawson cpu_quirks |= CPU_QUIRK_NO_C3; 132930dd6af3SNate Lawson ACPI_DEBUG_PRINT((ACPI_DB_INFO, 133030dd6af3SNate Lawson "acpi_cpu: working around PIIX4 bug, disabling C3\n")); 13318a000acaSRui Paulo 13328a000acaSRui Paulo val = pci_read_config(acpi_dev, PIIX4_DEVACTB_REG, 4); 13338a000acaSRui Paulo if ((val & PIIX4_STOP_BREAK_MASK) != PIIX4_STOP_BREAK_MASK) { 13348a000acaSRui Paulo ACPI_DEBUG_PRINT((ACPI_DB_INFO, 1335f1e1ddc3SAndriy Gapon "acpi_cpu: PIIX4: enabling IRQs to generate Stop Break\n")); 13368a000acaSRui Paulo val |= PIIX4_STOP_BREAK_MASK; 13378a000acaSRui Paulo pci_write_config(acpi_dev, PIIX4_DEVACTB_REG, val, 4); 13388a000acaSRui Paulo } 13399ae8e006SJung-uk Kim status = AcpiReadBitRegister(ACPI_BITREG_BUS_MASTER_RLD, &val); 13409ae8e006SJung-uk Kim if (ACPI_SUCCESS(status) && val != 0) { 1341f1e1ddc3SAndriy Gapon ACPI_DEBUG_PRINT((ACPI_DB_INFO, 1342f1e1ddc3SAndriy Gapon "acpi_cpu: PIIX4: reset BRLD_EN_BM\n")); 1343129d3046SJung-uk Kim AcpiWriteBitRegister(ACPI_BITREG_BUS_MASTER_RLD, 0); 1344f1e1ddc3SAndriy Gapon } 13456b74f9b7SNate Lawson break; 13466b74f9b7SNate Lawson default: 13476b74f9b7SNate Lawson break; 13486b74f9b7SNate Lawson } 13496b74f9b7SNate Lawson } 13509cf4cabeSJung-uk Kim #endif 13516b74f9b7SNate Lawson } 13526b74f9b7SNate Lawson 13536b74f9b7SNate Lawson static int 1354a2afe45aSNate Lawson acpi_cpu_usage_sysctl(SYSCTL_HANDLER_ARGS) 13556b74f9b7SNate Lawson { 13563e68d2c5SAlexander Motin struct acpi_cpu_softc *sc = (struct acpi_cpu_softc *)arg1; 13576b74f9b7SNate Lawson struct sbuf sb; 13586b74f9b7SNate Lawson char buf[128]; 13593e68d2c5SAlexander Motin int error, i; 13604a03551dSNate Lawson uintmax_t fract, sum, whole; 13616b74f9b7SNate Lawson 13623e68d2c5SAlexander Motin sbuf_new_for_sysctl(&sb, buf, sizeof(buf), req); 13633e7fa136SNate Lawson sum = 0; 1364907b6777SNate Lawson for (i = 0; i < sc->cpu_cx_count; i++) 1365907b6777SNate Lawson sum += sc->cpu_cx_stats[i]; 1366907b6777SNate Lawson for (i = 0; i < sc->cpu_cx_count; i++) { 13673e7fa136SNate Lawson if (sum > 0) { 1368907b6777SNate Lawson whole = (uintmax_t)sc->cpu_cx_stats[i] * 100; 13693e7fa136SNate Lawson fract = (whole % sum) * 100; 13703e7fa136SNate Lawson sbuf_printf(&sb, "%u.%02u%% ", (u_int)(whole / sum), 13713e7fa136SNate Lawson (u_int)(fract / sum)); 13723e7fa136SNate Lawson } else 13732500b6d9SAlexander Motin sbuf_printf(&sb, "0.00%% "); 13743e7fa136SNate Lawson } 13752500b6d9SAlexander Motin sbuf_printf(&sb, "last %dus", sc->cpu_prev_sleep); 13763e68d2c5SAlexander Motin error = sbuf_finish(&sb); 1377ccc09458SNate Lawson sbuf_delete(&sb); 13783e68d2c5SAlexander Motin return (error); 13796b74f9b7SNate Lawson } 13806b74f9b7SNate Lawson 13810d470054SAdrian Chadd /* 13820d470054SAdrian Chadd * XXX TODO: actually add support to count each entry/exit 13830d470054SAdrian Chadd * from the Cx states. 13840d470054SAdrian Chadd */ 13850d470054SAdrian Chadd static int 13860d470054SAdrian Chadd acpi_cpu_usage_counters_sysctl(SYSCTL_HANDLER_ARGS) 13870d470054SAdrian Chadd { 13883e68d2c5SAlexander Motin struct acpi_cpu_softc *sc = (struct acpi_cpu_softc *)arg1; 13890d470054SAdrian Chadd struct sbuf sb; 13900d470054SAdrian Chadd char buf[128]; 13913e68d2c5SAlexander Motin int error, i; 13920d470054SAdrian Chadd 13933e68d2c5SAlexander Motin sbuf_new_for_sysctl(&sb, buf, sizeof(buf), req); 13940d470054SAdrian Chadd for (i = 0; i < sc->cpu_cx_count; i++) { 13953e68d2c5SAlexander Motin if (i > 0) 13963e68d2c5SAlexander Motin sbuf_putc(&sb, ' '); 13970d470054SAdrian Chadd sbuf_printf(&sb, "%u", sc->cpu_cx_stats[i]); 13980d470054SAdrian Chadd } 13993e68d2c5SAlexander Motin error = sbuf_finish(&sb); 14000d470054SAdrian Chadd sbuf_delete(&sb); 14013e68d2c5SAlexander Motin return (error); 14020d470054SAdrian Chadd } 14030d470054SAdrian Chadd 1404b57a73f8SKonstantin Belousov #if defined(__i386__) || defined(__amd64__) 1405b57a73f8SKonstantin Belousov static int 1406b57a73f8SKonstantin Belousov acpi_cpu_method_sysctl(SYSCTL_HANDLER_ARGS) 1407b57a73f8SKonstantin Belousov { 14083e68d2c5SAlexander Motin struct acpi_cpu_softc *sc = (struct acpi_cpu_softc *)arg1; 1409b57a73f8SKonstantin Belousov struct acpi_cx *cx; 1410b57a73f8SKonstantin Belousov struct sbuf sb; 1411b57a73f8SKonstantin Belousov char buf[128]; 14123e68d2c5SAlexander Motin int error, i; 1413b57a73f8SKonstantin Belousov 14143e68d2c5SAlexander Motin sbuf_new_for_sysctl(&sb, buf, sizeof(buf), req); 1415b57a73f8SKonstantin Belousov for (i = 0; i < sc->cpu_cx_count; i++) { 1416b57a73f8SKonstantin Belousov cx = &sc->cpu_cx_states[i]; 14173e68d2c5SAlexander Motin if (i > 0) 14183e68d2c5SAlexander Motin sbuf_putc(&sb, ' '); 1419b57a73f8SKonstantin Belousov sbuf_printf(&sb, "C%d/", i + 1); 1420b57a73f8SKonstantin Belousov if (cx->do_mwait) { 1421b57a73f8SKonstantin Belousov sbuf_cat(&sb, "mwait"); 1422b57a73f8SKonstantin Belousov if (cx->mwait_hw_coord) 1423b57a73f8SKonstantin Belousov sbuf_cat(&sb, "/hwc"); 1424b57a73f8SKonstantin Belousov if (cx->mwait_bm_avoidance) 1425b57a73f8SKonstantin Belousov sbuf_cat(&sb, "/bma"); 1426b57a73f8SKonstantin Belousov } else if (cx->type == ACPI_STATE_C1) { 1427b57a73f8SKonstantin Belousov sbuf_cat(&sb, "hlt"); 1428b57a73f8SKonstantin Belousov } else { 1429b57a73f8SKonstantin Belousov sbuf_cat(&sb, "io"); 1430b57a73f8SKonstantin Belousov } 1431b57a73f8SKonstantin Belousov if (cx->type == ACPI_STATE_C1 && cx->p_lvlx != NULL) 1432b57a73f8SKonstantin Belousov sbuf_cat(&sb, "/iohlt"); 1433b57a73f8SKonstantin Belousov } 14343e68d2c5SAlexander Motin error = sbuf_finish(&sb); 1435b57a73f8SKonstantin Belousov sbuf_delete(&sb); 14363e68d2c5SAlexander Motin return (error); 1437b57a73f8SKonstantin Belousov } 1438b57a73f8SKonstantin Belousov #endif 1439b57a73f8SKonstantin Belousov 14406b74f9b7SNate Lawson static int 1441d30b88afSAndriy Gapon acpi_cpu_set_cx_lowest(struct acpi_cpu_softc *sc) 14426b74f9b7SNate Lawson { 1443b13cf774SNate Lawson int i; 14446b74f9b7SNate Lawson 1445b13cf774SNate Lawson ACPI_SERIAL_ASSERT(cpu); 1446d30b88afSAndriy Gapon sc->cpu_cx_lowest = min(sc->cpu_cx_lowest_lim, sc->cpu_cx_count - 1); 1447907b6777SNate Lawson 1448907b6777SNate Lawson /* If not disabling, cache the new lowest non-C3 state. */ 1449907b6777SNate Lawson sc->cpu_non_c3 = 0; 1450907b6777SNate Lawson for (i = sc->cpu_cx_lowest; i >= 0; i--) { 1451907b6777SNate Lawson if (sc->cpu_cx_states[i].type < ACPI_STATE_C3) { 1452907b6777SNate Lawson sc->cpu_non_c3 = i; 1453907b6777SNate Lawson break; 1454907b6777SNate Lawson } 1455907b6777SNate Lawson } 1456907b6777SNate Lawson 1457907b6777SNate Lawson /* Reset the statistics counters. */ 1458907b6777SNate Lawson bzero(sc->cpu_cx_stats, sizeof(sc->cpu_cx_stats)); 1459b13cf774SNate Lawson return (0); 1460b13cf774SNate Lawson } 1461b13cf774SNate Lawson 1462b13cf774SNate Lawson static int 1463b13cf774SNate Lawson acpi_cpu_cx_lowest_sysctl(SYSCTL_HANDLER_ARGS) 1464b13cf774SNate Lawson { 1465b13cf774SNate Lawson struct acpi_cpu_softc *sc; 1466b13cf774SNate Lawson char state[8]; 1467b13cf774SNate Lawson int val, error; 1468b13cf774SNate Lawson 1469b13cf774SNate Lawson sc = (struct acpi_cpu_softc *) arg1; 1470d30b88afSAndriy Gapon snprintf(state, sizeof(state), "C%d", sc->cpu_cx_lowest_lim + 1); 1471b13cf774SNate Lawson error = sysctl_handle_string(oidp, state, sizeof(state), req); 1472b13cf774SNate Lawson if (error != 0 || req->newptr == NULL) 1473b13cf774SNate Lawson return (error); 1474b13cf774SNate Lawson if (strlen(state) < 2 || toupper(state[0]) != 'C') 1475b13cf774SNate Lawson return (EINVAL); 1476d30b88afSAndriy Gapon if (strcasecmp(state, "Cmax") == 0) 1477d30b88afSAndriy Gapon val = MAX_CX_STATES; 1478d30b88afSAndriy Gapon else { 1479d30b88afSAndriy Gapon val = (int) strtol(state + 1, NULL, 10); 1480d30b88afSAndriy Gapon if (val < 1 || val > MAX_CX_STATES) 1481b13cf774SNate Lawson return (EINVAL); 1482d30b88afSAndriy Gapon } 1483b13cf774SNate Lawson 1484b13cf774SNate Lawson ACPI_SERIAL_BEGIN(cpu); 1485d30b88afSAndriy Gapon sc->cpu_cx_lowest_lim = val - 1; 1486d30b88afSAndriy Gapon acpi_cpu_set_cx_lowest(sc); 1487907b6777SNate Lawson ACPI_SERIAL_END(cpu); 1488907b6777SNate Lawson 148955fb7f36SSean Bruno return (0); 1490907b6777SNate Lawson } 1491907b6777SNate Lawson 1492907b6777SNate Lawson static int 1493907b6777SNate Lawson acpi_cpu_global_cx_lowest_sysctl(SYSCTL_HANDLER_ARGS) 1494907b6777SNate Lawson { 1495907b6777SNate Lawson struct acpi_cpu_softc *sc; 1496907b6777SNate Lawson char state[8]; 1497b13cf774SNate Lawson int val, error, i; 1498907b6777SNate Lawson 1499d30b88afSAndriy Gapon snprintf(state, sizeof(state), "C%d", cpu_cx_lowest_lim + 1); 1500ccc09458SNate Lawson error = sysctl_handle_string(oidp, state, sizeof(state), req); 15016b74f9b7SNate Lawson if (error != 0 || req->newptr == NULL) 15026b74f9b7SNate Lawson return (error); 1503ccc09458SNate Lawson if (strlen(state) < 2 || toupper(state[0]) != 'C') 1504ccc09458SNate Lawson return (EINVAL); 1505d30b88afSAndriy Gapon if (strcasecmp(state, "Cmax") == 0) 1506d30b88afSAndriy Gapon val = MAX_CX_STATES; 1507d30b88afSAndriy Gapon else { 1508d30b88afSAndriy Gapon val = (int) strtol(state + 1, NULL, 10); 1509d30b88afSAndriy Gapon if (val < 1 || val > MAX_CX_STATES) 15106b74f9b7SNate Lawson return (EINVAL); 1511d30b88afSAndriy Gapon } 15126b74f9b7SNate Lawson 1513b13cf774SNate Lawson /* Update the new lowest useable Cx state for all CPUs. */ 1514907b6777SNate Lawson ACPI_SERIAL_BEGIN(cpu); 1515d30b88afSAndriy Gapon cpu_cx_lowest_lim = val - 1; 1516695323aeSAlexander Motin CPU_FOREACH(i) { 1517695323aeSAlexander Motin if ((sc = cpu_softc[i]) == NULL) 1518695323aeSAlexander Motin continue; 1519d30b88afSAndriy Gapon sc->cpu_cx_lowest_lim = cpu_cx_lowest_lim; 1520d30b88afSAndriy Gapon acpi_cpu_set_cx_lowest(sc); 1521907b6777SNate Lawson } 1522d92a2ebdSNate Lawson ACPI_SERIAL_END(cpu); 15236b74f9b7SNate Lawson 15246b74f9b7SNate Lawson return (0); 15256b74f9b7SNate Lawson } 1526