xref: /freebsd/sys/dev/acpica/acpi_cpu.c (revision c2641d23e1d77c6c433d87ada2ed048c136838ee)
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>
50e1c9d39eSJung-uk Kim #endif
5156a70eadSNate Lawson #include <sys/rman.h>
52fec754d4SMike Smith 
53129d3046SJung-uk Kim #include <contrib/dev/acpica/include/acpi.h>
54129d3046SJung-uk Kim #include <contrib/dev/acpica/include/accommon.h>
55129d3046SJung-uk Kim 
56fec754d4SMike Smith #include <dev/acpica/acpivar.h>
57fec754d4SMike Smith 
58fec754d4SMike Smith /*
598c5468e3SNate Lawson  * Support for ACPI Processor devices, including C[1-3] sleep states.
60fec754d4SMike Smith  */
61fec754d4SMike Smith 
62be2b1797SNate Lawson /* Hooks for the ACPI CA debugging infrastructure */
63fec754d4SMike Smith #define _COMPONENT	ACPI_PROCESSOR
649127281cSMike Smith ACPI_MODULE_NAME("PROCESSOR")
65fec754d4SMike Smith 
666b74f9b7SNate Lawson struct acpi_cx {
676b74f9b7SNate Lawson     struct resource	*p_lvlx;	/* Register to read to enter state. */
686b74f9b7SNate Lawson     uint32_t		 type;		/* C1-3 (C4 and up treated as C3). */
696b74f9b7SNate Lawson     uint32_t		 trans_lat;	/* Transition latency (usec). */
706b74f9b7SNate Lawson     uint32_t		 power;		/* Power consumed (mW). */
71f4eb0418SNate Lawson     int			 res_type;	/* Resource type for p_lvlx. */
72f51d43feSAndriy Gapon     int			 res_rid;	/* Resource ID for p_lvlx. */
736b74f9b7SNate Lawson };
746b74f9b7SNate Lawson #define MAX_CX_STATES	 8
756b74f9b7SNate Lawson 
76fec754d4SMike Smith struct acpi_cpu_softc {
77fec754d4SMike Smith     device_t		 cpu_dev;
78fec754d4SMike Smith     ACPI_HANDLE		 cpu_handle;
7998aa9cd0SNate Lawson     struct pcpu		*cpu_pcpu;
8098aa9cd0SNate Lawson     uint32_t		 cpu_acpi_id;	/* ACPI processor id */
8156a70eadSNate Lawson     uint32_t		 cpu_p_blk;	/* ACPI P_BLK location */
8256a70eadSNate Lawson     uint32_t		 cpu_p_blk_len;	/* P_BLK length (must be 6). */
836b74f9b7SNate Lawson     struct acpi_cx	 cpu_cx_states[MAX_CX_STATES];
8456a70eadSNate Lawson     int			 cpu_cx_count;	/* Number of valid Cx states. */
85a2afe45aSNate Lawson     int			 cpu_prev_sleep;/* Last idle sleep duration. */
86b29224c2SNate Lawson     int			 cpu_features;	/* Child driver supported features. */
87907b6777SNate Lawson     /* Runtime state. */
88907b6777SNate Lawson     int			 cpu_non_c3;	/* Index of lowest non-C3 state. */
89907b6777SNate Lawson     u_int		 cpu_cx_stats[MAX_CX_STATES];/* Cx usage history. */
90907b6777SNate Lawson     /* Values for sysctl. */
91907b6777SNate Lawson     struct sysctl_ctx_list cpu_sysctl_ctx;
92907b6777SNate Lawson     struct sysctl_oid	*cpu_sysctl_tree;
9355fb7f36SSean Bruno     int			 cpu_cx_lowest;
94d30b88afSAndriy Gapon     int			 cpu_cx_lowest_lim;
9509424d43SAndriy Gapon     int			 cpu_disable_idle; /* Disable entry to idle function */
96907b6777SNate Lawson     char 		 cpu_cx_supported[64];
97fec754d4SMike Smith };
98fec754d4SMike Smith 
9998aa9cd0SNate Lawson struct acpi_cpu_device {
10098aa9cd0SNate Lawson     struct resource_list	ad_rl;
10198aa9cd0SNate Lawson };
10298aa9cd0SNate Lawson 
1036b74f9b7SNate Lawson #define CPU_GET_REG(reg, width) 					\
1046b74f9b7SNate Lawson     (bus_space_read_ ## width(rman_get_bustag((reg)), 			\
1056b74f9b7SNate Lawson 		      rman_get_bushandle((reg)), 0))
1066b74f9b7SNate Lawson #define CPU_SET_REG(reg, width, val)					\
1076b74f9b7SNate Lawson     (bus_space_write_ ## width(rman_get_bustag((reg)), 			\
1086b74f9b7SNate Lawson 		       rman_get_bushandle((reg)), 0, (val)))
109be2b1797SNate Lawson 
1106b74f9b7SNate Lawson #define PM_USEC(x)	 ((x) >> 2)	/* ~4 clocks per usec (3.57955 Mhz) */
111fec754d4SMike Smith 
1128b888c66SNate Lawson #define ACPI_NOTIFY_CX_STATES	0x81	/* _CST changed. */
113fec754d4SMike Smith 
11418ececa0SNate Lawson #define CPU_QUIRK_NO_C3		(1<<0)	/* C3-type states are not usable. */
11518ececa0SNate Lawson #define CPU_QUIRK_NO_BM_CTRL	(1<<2)	/* No bus mastering control. */
1166b74f9b7SNate Lawson 
1176b74f9b7SNate Lawson #define PCI_VENDOR_INTEL	0x8086
1186b74f9b7SNate Lawson #define PCI_DEVICE_82371AB_3	0x7113	/* PIIX4 chipset for quirks. */
1196b74f9b7SNate Lawson #define PCI_REVISION_A_STEP	0
1206b74f9b7SNate Lawson #define PCI_REVISION_B_STEP	1
1216b74f9b7SNate Lawson #define PCI_REVISION_4E		2
1226b74f9b7SNate Lawson #define PCI_REVISION_4M		3
1238a000acaSRui Paulo #define PIIX4_DEVACTB_REG	0x58
1248a000acaSRui Paulo #define PIIX4_BRLD_EN_IRQ0	(1<<0)
1258a000acaSRui Paulo #define PIIX4_BRLD_EN_IRQ	(1<<1)
1268a000acaSRui Paulo #define PIIX4_BRLD_EN_IRQ8	(1<<5)
1278a000acaSRui Paulo #define PIIX4_STOP_BREAK_MASK	(PIIX4_BRLD_EN_IRQ0 | PIIX4_BRLD_EN_IRQ | PIIX4_BRLD_EN_IRQ8)
1288a000acaSRui Paulo #define PIIX4_PCNTRL_BST_EN	(1<<10)
1296b74f9b7SNate Lawson 
130e4cd9dcfSJohn Baldwin /* Allow users to ignore processor orders in MADT. */
131e4cd9dcfSJohn Baldwin static int cpu_unordered;
132e4cd9dcfSJohn Baldwin SYSCTL_INT(_debug_acpi, OID_AUTO, cpu_unordered, CTLFLAG_RDTUN,
133e4cd9dcfSJohn Baldwin     &cpu_unordered, 0,
134e4cd9dcfSJohn Baldwin     "Do not use the MADT to match ACPI Processor objects to CPUs.");
135e4cd9dcfSJohn Baldwin 
136*c2641d23SRoger Pau Monné /* Knob to disable acpi_cpu devices */
137*c2641d23SRoger Pau Monné bool acpi_cpu_disabled = false;
138*c2641d23SRoger Pau Monné 
1396b74f9b7SNate Lawson /* Platform hardware resource information. */
1406b74f9b7SNate Lawson static uint32_t		 cpu_smi_cmd;	/* Value to write to SMI_CMD. */
14156a70eadSNate Lawson static uint8_t		 cpu_cst_cnt;	/* Indicate we are _CST aware. */
142a2afe45aSNate Lawson static int		 cpu_quirks;	/* Indicate any hardware bugs. */
1436b74f9b7SNate Lawson 
1446b74f9b7SNate Lawson /* Values for sysctl. */
145907b6777SNate Lawson static struct sysctl_ctx_list cpu_sysctl_ctx;
146907b6777SNate Lawson static struct sysctl_oid *cpu_sysctl_tree;
147907b6777SNate Lawson static int		 cpu_cx_generic;
148d30b88afSAndriy Gapon static int		 cpu_cx_lowest_lim;
149fec754d4SMike Smith 
150fec754d4SMike Smith static device_t		*cpu_devices;
151fec754d4SMike Smith static int		 cpu_ndevices;
152447a5fa1SJohn Baldwin static struct acpi_cpu_softc **cpu_softc;
153d92a2ebdSNate Lawson ACPI_SERIAL_DECL(cpu, "ACPI CPU");
154fec754d4SMike Smith 
155fec754d4SMike Smith static int	acpi_cpu_probe(device_t dev);
156fec754d4SMike Smith static int	acpi_cpu_attach(device_t dev);
1573331373cSNate Lawson static int	acpi_cpu_suspend(device_t dev);
1583331373cSNate Lawson static int	acpi_cpu_resume(device_t dev);
159e4cd9dcfSJohn Baldwin static int	acpi_pcpu_get_id(device_t dev, uint32_t *acpi_id,
160b6426963SNate Lawson 		    uint32_t *cpu_id);
16198aa9cd0SNate Lawson static struct resource_list *acpi_cpu_get_rlist(device_t dev, device_t child);
1623d844eddSAndriy Gapon static device_t	acpi_cpu_add_child(device_t dev, u_int order, const char *name,
16398aa9cd0SNate Lawson 		    int unit);
16498aa9cd0SNate Lawson static int	acpi_cpu_read_ivar(device_t dev, device_t child, int index,
16598aa9cd0SNate Lawson 		    uintptr_t *result);
16656a70eadSNate Lawson static int	acpi_cpu_shutdown(device_t dev);
167907b6777SNate Lawson static void	acpi_cpu_cx_probe(struct acpi_cpu_softc *sc);
168907b6777SNate Lawson static void	acpi_cpu_generic_cx_probe(struct acpi_cpu_softc *sc);
1696b74f9b7SNate Lawson static int	acpi_cpu_cx_cst(struct acpi_cpu_softc *sc);
1706b74f9b7SNate Lawson static void	acpi_cpu_startup(void *arg);
171907b6777SNate Lawson static void	acpi_cpu_startup_cx(struct acpi_cpu_softc *sc);
17289ab2a7aSRui Paulo static void	acpi_cpu_cx_list(struct acpi_cpu_softc *sc);
173acccf7d8SDavide Italiano static void	acpi_cpu_idle(sbintime_t sbt);
1746b74f9b7SNate Lawson static void	acpi_cpu_notify(ACPI_HANDLE h, UINT32 notify, void *context);
175907b6777SNate Lawson static int	acpi_cpu_quirks(void);
176a2afe45aSNate Lawson static int	acpi_cpu_usage_sysctl(SYSCTL_HANDLER_ARGS);
1770d470054SAdrian Chadd static int	acpi_cpu_usage_counters_sysctl(SYSCTL_HANDLER_ARGS);
178d30b88afSAndriy Gapon static int	acpi_cpu_set_cx_lowest(struct acpi_cpu_softc *sc);
1796b74f9b7SNate Lawson static int	acpi_cpu_cx_lowest_sysctl(SYSCTL_HANDLER_ARGS);
180907b6777SNate Lawson static int	acpi_cpu_global_cx_lowest_sysctl(SYSCTL_HANDLER_ARGS);
181fec754d4SMike Smith 
182fec754d4SMike Smith static device_method_t acpi_cpu_methods[] = {
183fec754d4SMike Smith     /* Device interface */
184fec754d4SMike Smith     DEVMETHOD(device_probe,	acpi_cpu_probe),
185fec754d4SMike Smith     DEVMETHOD(device_attach,	acpi_cpu_attach),
18698aa9cd0SNate Lawson     DEVMETHOD(device_detach,	bus_generic_detach),
18756a70eadSNate Lawson     DEVMETHOD(device_shutdown,	acpi_cpu_shutdown),
1883331373cSNate Lawson     DEVMETHOD(device_suspend,	acpi_cpu_suspend),
1893331373cSNate Lawson     DEVMETHOD(device_resume,	acpi_cpu_resume),
19098aa9cd0SNate Lawson 
19198aa9cd0SNate Lawson     /* Bus interface */
19298aa9cd0SNate Lawson     DEVMETHOD(bus_add_child,	acpi_cpu_add_child),
19398aa9cd0SNate Lawson     DEVMETHOD(bus_read_ivar,	acpi_cpu_read_ivar),
19498aa9cd0SNate Lawson     DEVMETHOD(bus_get_resource_list, acpi_cpu_get_rlist),
19598aa9cd0SNate Lawson     DEVMETHOD(bus_get_resource,	bus_generic_rl_get_resource),
19698aa9cd0SNate Lawson     DEVMETHOD(bus_set_resource,	bus_generic_rl_set_resource),
19798aa9cd0SNate Lawson     DEVMETHOD(bus_alloc_resource, bus_generic_rl_alloc_resource),
19898aa9cd0SNate Lawson     DEVMETHOD(bus_release_resource, bus_generic_rl_release_resource),
19998aa9cd0SNate Lawson     DEVMETHOD(bus_activate_resource, bus_generic_activate_resource),
20098aa9cd0SNate Lawson     DEVMETHOD(bus_deactivate_resource, bus_generic_deactivate_resource),
20198aa9cd0SNate Lawson     DEVMETHOD(bus_setup_intr,	bus_generic_setup_intr),
20298aa9cd0SNate Lawson     DEVMETHOD(bus_teardown_intr, bus_generic_teardown_intr),
203fec754d4SMike Smith 
2044b7ec270SMarius Strobl     DEVMETHOD_END
205fec754d4SMike Smith };
206fec754d4SMike Smith 
207fec754d4SMike Smith static driver_t acpi_cpu_driver = {
208b0e2b625SNate Lawson     "cpu",
209fec754d4SMike Smith     acpi_cpu_methods,
210fec754d4SMike Smith     sizeof(struct acpi_cpu_softc),
211fec754d4SMike Smith };
212fec754d4SMike Smith 
2133045c8afSNate Lawson static devclass_t acpi_cpu_devclass;
2143045c8afSNate Lawson DRIVER_MODULE(cpu, acpi, acpi_cpu_driver, acpi_cpu_devclass, 0, 0);
215b0e2b625SNate Lawson MODULE_DEPEND(cpu, acpi, 1, 1, 1);
21656a70eadSNate Lawson 
217fec754d4SMike Smith static int
218fec754d4SMike Smith acpi_cpu_probe(device_t dev)
219fec754d4SMike Smith {
220b29224c2SNate Lawson     int			   acpi_id, cpu_id;
221b0e2b625SNate Lawson     ACPI_BUFFER		   buf;
222b0e2b625SNate Lawson     ACPI_HANDLE		   handle;
223b0e2b625SNate Lawson     ACPI_OBJECT		   *obj;
224b0e2b625SNate Lawson     ACPI_STATUS		   status;
225b0e2b625SNate Lawson 
226*c2641d23SRoger Pau Monné     if (acpi_disabled("cpu") || acpi_get_type(dev) != ACPI_TYPE_PROCESSOR ||
227*c2641d23SRoger Pau Monné 	    acpi_cpu_disabled)
228b0e2b625SNate Lawson 	return (ENXIO);
229b0e2b625SNate Lawson 
230b0e2b625SNate Lawson     handle = acpi_get_handle(dev);
231447a5fa1SJohn Baldwin     if (cpu_softc == NULL)
232447a5fa1SJohn Baldwin 	cpu_softc = malloc(sizeof(struct acpi_cpu_softc *) *
233447a5fa1SJohn Baldwin 	    (mp_maxid + 1), M_TEMP /* XXX */, M_WAITOK | M_ZERO);
234b0e2b625SNate Lawson 
235b0e2b625SNate Lawson     /* Get our Processor object. */
236b0e2b625SNate Lawson     buf.Pointer = NULL;
237b0e2b625SNate Lawson     buf.Length = ACPI_ALLOCATE_BUFFER;
238b0e2b625SNate Lawson     status = AcpiEvaluateObject(handle, NULL, NULL, &buf);
239b0e2b625SNate Lawson     if (ACPI_FAILURE(status)) {
240b0e2b625SNate Lawson 	device_printf(dev, "probe failed to get Processor obj - %s\n",
241b0e2b625SNate Lawson 		      AcpiFormatException(status));
242b0e2b625SNate Lawson 	return (ENXIO);
243b0e2b625SNate Lawson     }
244b0e2b625SNate Lawson     obj = (ACPI_OBJECT *)buf.Pointer;
245b0e2b625SNate Lawson     if (obj->Type != ACPI_TYPE_PROCESSOR) {
246b0e2b625SNate Lawson 	device_printf(dev, "Processor object has bad type %d\n", obj->Type);
247b0e2b625SNate Lawson 	AcpiOsFree(obj);
248b0e2b625SNate Lawson 	return (ENXIO);
249fec754d4SMike Smith     }
250be2b1797SNate Lawson 
251b0e2b625SNate Lawson     /*
252b0e2b625SNate Lawson      * Find the processor associated with our unit.  We could use the
253b0e2b625SNate Lawson      * ProcId as a key, however, some boxes do not have the same values
254b0e2b625SNate Lawson      * in their Processor object as the ProcId values in the MADT.
255b0e2b625SNate Lawson      */
256b0e2b625SNate Lawson     acpi_id = obj->Processor.ProcId;
257b0e2b625SNate Lawson     AcpiOsFree(obj);
258e4cd9dcfSJohn Baldwin     if (acpi_pcpu_get_id(dev, &acpi_id, &cpu_id) != 0)
259fec754d4SMike Smith 	return (ENXIO);
260b0e2b625SNate Lawson 
261b0e2b625SNate Lawson     /*
262b0e2b625SNate Lawson      * Check if we already probed this processor.  We scan the bus twice
263b0e2b625SNate Lawson      * so it's possible we've already seen this one.
264b0e2b625SNate Lawson      */
265b0e2b625SNate Lawson     if (cpu_softc[cpu_id] != NULL)
266b0e2b625SNate Lawson 	return (ENXIO);
267b0e2b625SNate Lawson 
268b0e2b625SNate Lawson     /* Mark this processor as in-use and save our derived id for attach. */
269b0e2b625SNate Lawson     cpu_softc[cpu_id] = (void *)1;
270f6eb382cSAndriy Gapon     acpi_set_private(dev, (void*)(intptr_t)cpu_id);
271b29224c2SNate Lawson     device_set_desc(dev, "ACPI CPU");
272b0e2b625SNate Lawson 
273b0e2b625SNate Lawson     return (0);
274fec754d4SMike Smith }
275fec754d4SMike Smith 
276fec754d4SMike Smith static int
277fec754d4SMike Smith acpi_cpu_attach(device_t dev)
278fec754d4SMike Smith {
279b0e2b625SNate Lawson     ACPI_BUFFER		   buf;
280c961facaSNate Lawson     ACPI_OBJECT		   arg[4], *obj;
281bce92885SNate Lawson     ACPI_OBJECT_LIST	   arglist;
28298aa9cd0SNate Lawson     struct pcpu		   *pcpu_data;
283fec754d4SMike Smith     struct acpi_cpu_softc *sc;
284fec754d4SMike Smith     struct acpi_softc	  *acpi_sc;
285fec754d4SMike Smith     ACPI_STATUS		   status;
286b29224c2SNate Lawson     u_int		   features;
287b29224c2SNate Lawson     int			   cpu_id, drv_count, i;
288b29224c2SNate Lawson     driver_t 		  **drivers;
289bce92885SNate Lawson     uint32_t		   cap_set[3];
290fec754d4SMike Smith 
291c961facaSNate Lawson     /* UUID needed by _OSC evaluation */
292c961facaSNate Lawson     static uint8_t cpu_oscuuid[16] = { 0x16, 0xA6, 0x77, 0x40, 0x0C, 0x29,
293c961facaSNate Lawson 				       0xBE, 0x47, 0x9E, 0xBD, 0xD8, 0x70,
294c961facaSNate Lawson 				       0x58, 0x71, 0x39, 0x53 };
295c961facaSNate Lawson 
296b4a05238SPeter Wemm     ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__);
297fec754d4SMike Smith 
298fec754d4SMike Smith     sc = device_get_softc(dev);
299fec754d4SMike Smith     sc->cpu_dev = dev;
300fec754d4SMike Smith     sc->cpu_handle = acpi_get_handle(dev);
301f6eb382cSAndriy Gapon     cpu_id = (int)(intptr_t)acpi_get_private(dev);
30298aa9cd0SNate Lawson     cpu_softc[cpu_id] = sc;
30398aa9cd0SNate Lawson     pcpu_data = pcpu_find(cpu_id);
30498aa9cd0SNate Lawson     pcpu_data->pc_device = dev;
30598aa9cd0SNate Lawson     sc->cpu_pcpu = pcpu_data;
3062be4e471SJung-uk Kim     cpu_smi_cmd = AcpiGbl_FADT.SmiCommand;
3072be4e471SJung-uk Kim     cpu_cst_cnt = AcpiGbl_FADT.CstControl;
308fec754d4SMike Smith 
309b0e2b625SNate Lawson     buf.Pointer = NULL;
310b0e2b625SNate Lawson     buf.Length = ACPI_ALLOCATE_BUFFER;
3116b74f9b7SNate Lawson     status = AcpiEvaluateObject(sc->cpu_handle, NULL, NULL, &buf);
3126b74f9b7SNate Lawson     if (ACPI_FAILURE(status)) {
313b0e2b625SNate Lawson 	device_printf(dev, "attach failed to get Processor obj - %s\n",
3146b74f9b7SNate Lawson 		      AcpiFormatException(status));
3156b74f9b7SNate Lawson 	return (ENXIO);
316b0e2b625SNate Lawson     }
317b0e2b625SNate Lawson     obj = (ACPI_OBJECT *)buf.Pointer;
318b0e2b625SNate Lawson     sc->cpu_p_blk = obj->Processor.PblkAddress;
319b0e2b625SNate Lawson     sc->cpu_p_blk_len = obj->Processor.PblkLength;
32098aa9cd0SNate Lawson     sc->cpu_acpi_id = obj->Processor.ProcId;
321b0e2b625SNate Lawson     AcpiOsFree(obj);
32256a70eadSNate Lawson     ACPI_DEBUG_PRINT((ACPI_DB_INFO, "acpi_cpu%d: P_BLK at %#x/%d\n",
32356a70eadSNate Lawson 		     device_get_unit(dev), sc->cpu_p_blk, sc->cpu_p_blk_len));
3246b74f9b7SNate Lawson 
325907b6777SNate Lawson     /*
326907b6777SNate Lawson      * If this is the first cpu we attach, create and initialize the generic
327907b6777SNate Lawson      * resources that will be used by all acpi cpu devices.
328907b6777SNate Lawson      */
329907b6777SNate Lawson     if (device_get_unit(dev) == 0) {
330907b6777SNate Lawson 	/* Assume we won't be using generic Cx mode by default */
331907b6777SNate Lawson 	cpu_cx_generic = FALSE;
332907b6777SNate Lawson 
333907b6777SNate Lawson 	/* Install hw.acpi.cpu sysctl tree */
334fec754d4SMike Smith 	acpi_sc = acpi_device_get_parent_softc(dev);
335907b6777SNate Lawson 	sysctl_ctx_init(&cpu_sysctl_ctx);
336907b6777SNate Lawson 	cpu_sysctl_tree = SYSCTL_ADD_NODE(&cpu_sysctl_ctx,
33798aa9cd0SNate Lawson 	    SYSCTL_CHILDREN(acpi_sc->acpi_sysctl_tree), OID_AUTO, "cpu",
338907b6777SNate Lawson 	    CTLFLAG_RD, 0, "node for CPU children");
339907b6777SNate Lawson 
340907b6777SNate Lawson 	/* Queue post cpu-probing task handler */
3412be4e471SJung-uk Kim 	AcpiOsExecute(OSL_NOTIFY_HANDLER, acpi_cpu_startup, NULL);
342907b6777SNate Lawson     }
343fec754d4SMike Smith 
3446b74f9b7SNate Lawson     /*
345b29224c2SNate Lawson      * Before calling any CPU methods, collect child driver feature hints
346f2d94257SNate Lawson      * and notify ACPI of them.  We support unified SMP power control
347f2d94257SNate Lawson      * so advertise this ourselves.  Note this is not the same as independent
348f2d94257SNate Lawson      * SMP control where each CPU can have different settings.
349b29224c2SNate Lawson      */
350f2d94257SNate Lawson     sc->cpu_features = ACPI_CAP_SMP_SAME | ACPI_CAP_SMP_SAME_C3;
351b29224c2SNate Lawson     if (devclass_get_drivers(acpi_cpu_devclass, &drivers, &drv_count) == 0) {
352b29224c2SNate Lawson 	for (i = 0; i < drv_count; i++) {
353b29224c2SNate Lawson 	    if (ACPI_GET_FEATURES(drivers[i], &features) == 0)
354b29224c2SNate Lawson 		sc->cpu_features |= features;
355b29224c2SNate Lawson 	}
356b29224c2SNate Lawson 	free(drivers, M_TEMP);
357b29224c2SNate Lawson     }
358bce92885SNate Lawson 
359bce92885SNate Lawson     /*
360f4ab0cccSAndriy Gapon      * CPU capabilities are specified in
361f4ab0cccSAndriy Gapon      * Intel Processor Vendor-Specific ACPI Interface Specification.
362bce92885SNate Lawson      */
363bce92885SNate Lawson     if (sc->cpu_features) {
364c961facaSNate Lawson 	arglist.Pointer = arg;
365c961facaSNate Lawson 	arglist.Count = 4;
366c961facaSNate Lawson 	arg[0].Type = ACPI_TYPE_BUFFER;
367c961facaSNate Lawson 	arg[0].Buffer.Length = sizeof(cpu_oscuuid);
368c961facaSNate Lawson 	arg[0].Buffer.Pointer = cpu_oscuuid;	/* UUID */
369c961facaSNate Lawson 	arg[1].Type = ACPI_TYPE_INTEGER;
370c961facaSNate Lawson 	arg[1].Integer.Value = 1;		/* revision */
371c961facaSNate Lawson 	arg[2].Type = ACPI_TYPE_INTEGER;
372c961facaSNate Lawson 	arg[2].Integer.Value = 1;		/* count */
373c961facaSNate Lawson 	arg[3].Type = ACPI_TYPE_BUFFER;
374c961facaSNate Lawson 	arg[3].Buffer.Length = sizeof(cap_set);	/* Capabilities buffer */
375c961facaSNate Lawson 	arg[3].Buffer.Pointer = (uint8_t *)cap_set;
376877a6d99SAndriy Gapon 	cap_set[0] = 0;				/* status */
377877a6d99SAndriy Gapon 	cap_set[1] = sc->cpu_features;
378f4ab0cccSAndriy Gapon 	status = AcpiEvaluateObject(sc->cpu_handle, "_OSC", &arglist, NULL);
379f4ab0cccSAndriy Gapon 	if (ACPI_SUCCESS(status)) {
380f4ab0cccSAndriy Gapon 	    if (cap_set[0] != 0)
381f4ab0cccSAndriy Gapon 		device_printf(dev, "_OSC returned status %#x\n", cap_set[0]);
382f4ab0cccSAndriy Gapon 	}
383f4ab0cccSAndriy Gapon 	else {
384f4ab0cccSAndriy Gapon 	    arglist.Pointer = arg;
385f4ab0cccSAndriy Gapon 	    arglist.Count = 1;
386f4ab0cccSAndriy Gapon 	    arg[0].Type = ACPI_TYPE_BUFFER;
387f4ab0cccSAndriy Gapon 	    arg[0].Buffer.Length = sizeof(cap_set);
388f4ab0cccSAndriy Gapon 	    arg[0].Buffer.Pointer = (uint8_t *)cap_set;
389f4ab0cccSAndriy Gapon 	    cap_set[0] = 1; /* revision */
390f4ab0cccSAndriy Gapon 	    cap_set[1] = 1; /* number of capabilities integers */
391f4ab0cccSAndriy Gapon 	    cap_set[2] = sc->cpu_features;
392f4ab0cccSAndriy Gapon 	    AcpiEvaluateObject(sc->cpu_handle, "_PDC", &arglist, NULL);
393f4ab0cccSAndriy Gapon 	}
394bce92885SNate Lawson     }
395b29224c2SNate Lawson 
396907b6777SNate Lawson     /* Probe for Cx state support. */
397907b6777SNate Lawson     acpi_cpu_cx_probe(sc);
3986b74f9b7SNate Lawson 
39998aa9cd0SNate Lawson     return (0);
4006b74f9b7SNate Lawson }
4016b74f9b7SNate Lawson 
402aa835160SAndriy Gapon static void
403aa835160SAndriy Gapon acpi_cpu_postattach(void *unused __unused)
404aa835160SAndriy Gapon {
405aa835160SAndriy Gapon     device_t *devices;
406aa835160SAndriy Gapon     int err;
407aa835160SAndriy Gapon     int i, n;
408aa835160SAndriy Gapon 
409aa835160SAndriy Gapon     err = devclass_get_devices(acpi_cpu_devclass, &devices, &n);
410aa835160SAndriy Gapon     if (err != 0) {
411aa835160SAndriy Gapon 	printf("devclass_get_devices(acpi_cpu_devclass) failed\n");
412aa835160SAndriy Gapon 	return;
413aa835160SAndriy Gapon     }
414aa835160SAndriy Gapon     for (i = 0; i < n; i++)
415aa835160SAndriy Gapon 	bus_generic_probe(devices[i]);
416aa835160SAndriy Gapon     for (i = 0; i < n; i++)
417aa835160SAndriy Gapon 	bus_generic_attach(devices[i]);
418aa835160SAndriy Gapon     free(devices, M_TEMP);
419aa835160SAndriy Gapon }
420aa835160SAndriy Gapon 
421aa835160SAndriy Gapon SYSINIT(acpi_cpu, SI_SUB_CONFIGURE, SI_ORDER_MIDDLE,
422aa835160SAndriy Gapon     acpi_cpu_postattach, NULL);
423aa835160SAndriy Gapon 
42409424d43SAndriy Gapon static void
42509424d43SAndriy Gapon disable_idle(struct acpi_cpu_softc *sc)
42609424d43SAndriy Gapon {
42709424d43SAndriy Gapon     cpuset_t cpuset;
42809424d43SAndriy Gapon 
42909424d43SAndriy Gapon     CPU_SETOF(sc->cpu_pcpu->pc_cpuid, &cpuset);
43009424d43SAndriy Gapon     sc->cpu_disable_idle = TRUE;
43109424d43SAndriy Gapon 
43209424d43SAndriy Gapon     /*
43309424d43SAndriy Gapon      * Ensure that the CPU is not in idle state or in acpi_cpu_idle().
43409424d43SAndriy Gapon      * Note that this code depends on the fact that the rendezvous IPI
43509424d43SAndriy Gapon      * can not penetrate context where interrupts are disabled and acpi_cpu_idle
43609424d43SAndriy Gapon      * is called and executed in such a context with interrupts being re-enabled
43709424d43SAndriy Gapon      * right before return.
43809424d43SAndriy Gapon      */
43909424d43SAndriy Gapon     smp_rendezvous_cpus(cpuset, smp_no_rendevous_barrier, NULL,
44009424d43SAndriy Gapon 	smp_no_rendevous_barrier, NULL);
44109424d43SAndriy Gapon }
44209424d43SAndriy Gapon 
44309424d43SAndriy Gapon static void
44409424d43SAndriy Gapon enable_idle(struct acpi_cpu_softc *sc)
44509424d43SAndriy Gapon {
44609424d43SAndriy Gapon 
44709424d43SAndriy Gapon     sc->cpu_disable_idle = FALSE;
44809424d43SAndriy Gapon }
44909424d43SAndriy Gapon 
45009424d43SAndriy Gapon static int
45109424d43SAndriy Gapon is_idle_disabled(struct acpi_cpu_softc *sc)
45209424d43SAndriy Gapon {
45309424d43SAndriy Gapon 
45409424d43SAndriy Gapon     return (sc->cpu_disable_idle);
45509424d43SAndriy Gapon }
45609424d43SAndriy Gapon 
457b6426963SNate Lawson /*
4583331373cSNate Lawson  * Disable any entry to the idle function during suspend and re-enable it
4593331373cSNate Lawson  * during resume.
4603331373cSNate Lawson  */
4613331373cSNate Lawson static int
4623331373cSNate Lawson acpi_cpu_suspend(device_t dev)
4633331373cSNate Lawson {
4643331373cSNate Lawson     int error;
4653331373cSNate Lawson 
4663331373cSNate Lawson     error = bus_generic_suspend(dev);
4673331373cSNate Lawson     if (error)
4683331373cSNate Lawson 	return (error);
46909424d43SAndriy Gapon     disable_idle(device_get_softc(dev));
4703331373cSNate Lawson     return (0);
4713331373cSNate Lawson }
4723331373cSNate Lawson 
4733331373cSNate Lawson static int
4743331373cSNate Lawson acpi_cpu_resume(device_t dev)
4753331373cSNate Lawson {
4763331373cSNate Lawson 
47709424d43SAndriy Gapon     enable_idle(device_get_softc(dev));
4783331373cSNate Lawson     return (bus_generic_resume(dev));
4793331373cSNate Lawson }
4803331373cSNate Lawson 
4813331373cSNate Lawson /*
482e4cd9dcfSJohn Baldwin  * Find the processor associated with a given ACPI ID.  By default,
483e4cd9dcfSJohn Baldwin  * use the MADT to map ACPI IDs to APIC IDs and use that to locate a
484e4cd9dcfSJohn Baldwin  * processor.  Some systems have inconsistent ASL and MADT however.
485e4cd9dcfSJohn Baldwin  * For these systems the cpu_unordered tunable can be set in which
486e4cd9dcfSJohn Baldwin  * case we assume that Processor objects are listed in the same order
487e4cd9dcfSJohn Baldwin  * in both the MADT and ASL.
488b6426963SNate Lawson  */
489b6426963SNate Lawson static int
490e4cd9dcfSJohn Baldwin acpi_pcpu_get_id(device_t dev, uint32_t *acpi_id, uint32_t *cpu_id)
491b6426963SNate Lawson {
492e4cd9dcfSJohn Baldwin     struct pcpu	*pc;
493e4cd9dcfSJohn Baldwin     uint32_t	 i, idx;
494b6426963SNate Lawson 
495b6426963SNate Lawson     KASSERT(acpi_id != NULL, ("Null acpi_id"));
496b6426963SNate Lawson     KASSERT(cpu_id != NULL, ("Null cpu_id"));
497e4cd9dcfSJohn Baldwin     idx = device_get_unit(dev);
498e4cd9dcfSJohn Baldwin 
499e4cd9dcfSJohn Baldwin     /*
500e4cd9dcfSJohn Baldwin      * If pc_acpi_id for CPU 0 is not initialized (e.g. a non-APIC
501e4cd9dcfSJohn Baldwin      * UP box) use the ACPI ID from the first processor we find.
502e4cd9dcfSJohn Baldwin      */
503e4cd9dcfSJohn Baldwin     if (idx == 0 && mp_ncpus == 1) {
504e4cd9dcfSJohn Baldwin 	pc = pcpu_find(0);
505e4cd9dcfSJohn Baldwin 	if (pc->pc_acpi_id == 0xffffffff)
506e4cd9dcfSJohn Baldwin 	    pc->pc_acpi_id = *acpi_id;
507e4cd9dcfSJohn Baldwin 	*cpu_id = 0;
508e4cd9dcfSJohn Baldwin 	return (0);
509e4cd9dcfSJohn Baldwin     }
510e4cd9dcfSJohn Baldwin 
5113aa6d94eSJohn Baldwin     CPU_FOREACH(i) {
512e4cd9dcfSJohn Baldwin 	pc = pcpu_find(i);
513e4cd9dcfSJohn Baldwin 	KASSERT(pc != NULL, ("no pcpu data for %d", i));
514e4cd9dcfSJohn Baldwin 	if (cpu_unordered) {
515b6426963SNate Lawson 	    if (idx-- == 0) {
516b6426963SNate Lawson 		/*
517e4cd9dcfSJohn Baldwin 		 * If pc_acpi_id doesn't match the ACPI ID from the
518e4cd9dcfSJohn Baldwin 		 * ASL, prefer the MADT-derived value.
519b6426963SNate Lawson 		 */
520e4cd9dcfSJohn Baldwin 		if (pc->pc_acpi_id != *acpi_id)
521e4cd9dcfSJohn Baldwin 		    *acpi_id = pc->pc_acpi_id;
522e4cd9dcfSJohn Baldwin 		*cpu_id = pc->pc_cpuid;
523e4cd9dcfSJohn Baldwin 		return (0);
524e4cd9dcfSJohn Baldwin 	    }
525e4cd9dcfSJohn Baldwin 	} else {
526e4cd9dcfSJohn Baldwin 	    if (pc->pc_acpi_id == *acpi_id) {
527e4cd9dcfSJohn Baldwin 		if (bootverbose)
5282aa7a9e6SJung-uk Kim 		    device_printf(dev,
5292aa7a9e6SJung-uk Kim 			"Processor %s (ACPI ID %u) -> APIC ID %d\n",
5302aa7a9e6SJung-uk Kim 			acpi_name(acpi_get_handle(dev)), *acpi_id,
5312aa7a9e6SJung-uk Kim 			pc->pc_cpuid);
532e4cd9dcfSJohn Baldwin 		*cpu_id = pc->pc_cpuid;
533b6426963SNate Lawson 		return (0);
534b6426963SNate Lawson 	    }
535b6426963SNate Lawson 	}
536e4cd9dcfSJohn Baldwin     }
537e4cd9dcfSJohn Baldwin 
538e4cd9dcfSJohn Baldwin     if (bootverbose)
539e4cd9dcfSJohn Baldwin 	printf("ACPI: Processor %s (ACPI ID %u) ignored\n",
540e4cd9dcfSJohn Baldwin 	    acpi_name(acpi_get_handle(dev)), *acpi_id);
541b6426963SNate Lawson 
542b6426963SNate Lawson     return (ESRCH);
543b6426963SNate Lawson }
544b6426963SNate Lawson 
54598aa9cd0SNate Lawson static struct resource_list *
54698aa9cd0SNate Lawson acpi_cpu_get_rlist(device_t dev, device_t child)
54798aa9cd0SNate Lawson {
54898aa9cd0SNate Lawson     struct acpi_cpu_device *ad;
54998aa9cd0SNate Lawson 
55098aa9cd0SNate Lawson     ad = device_get_ivars(child);
55198aa9cd0SNate Lawson     if (ad == NULL)
55298aa9cd0SNate Lawson 	return (NULL);
55398aa9cd0SNate Lawson     return (&ad->ad_rl);
55498aa9cd0SNate Lawson }
55598aa9cd0SNate Lawson 
55698aa9cd0SNate Lawson static device_t
5573d844eddSAndriy Gapon acpi_cpu_add_child(device_t dev, u_int order, const char *name, int unit)
55898aa9cd0SNate Lawson {
55998aa9cd0SNate Lawson     struct acpi_cpu_device *ad;
56098aa9cd0SNate Lawson     device_t child;
56198aa9cd0SNate Lawson 
56298aa9cd0SNate Lawson     if ((ad = malloc(sizeof(*ad), M_TEMP, M_NOWAIT | M_ZERO)) == NULL)
56398aa9cd0SNate Lawson 	return (NULL);
56498aa9cd0SNate Lawson 
56598aa9cd0SNate Lawson     resource_list_init(&ad->ad_rl);
56698aa9cd0SNate Lawson 
56798aa9cd0SNate Lawson     child = device_add_child_ordered(dev, order, name, unit);
56898aa9cd0SNate Lawson     if (child != NULL)
56998aa9cd0SNate Lawson 	device_set_ivars(child, ad);
57043ce1c77SNate Lawson     else
57143ce1c77SNate Lawson 	free(ad, M_TEMP);
57298aa9cd0SNate Lawson     return (child);
57398aa9cd0SNate Lawson }
57498aa9cd0SNate Lawson 
57598aa9cd0SNate Lawson static int
57698aa9cd0SNate Lawson acpi_cpu_read_ivar(device_t dev, device_t child, int index, uintptr_t *result)
57798aa9cd0SNate Lawson {
57898aa9cd0SNate Lawson     struct acpi_cpu_softc *sc;
57998aa9cd0SNate Lawson 
58098aa9cd0SNate Lawson     sc = device_get_softc(dev);
58198aa9cd0SNate Lawson     switch (index) {
58298aa9cd0SNate Lawson     case ACPI_IVAR_HANDLE:
58398aa9cd0SNate Lawson 	*result = (uintptr_t)sc->cpu_handle;
58498aa9cd0SNate Lawson 	break;
58598aa9cd0SNate Lawson     case CPU_IVAR_PCPU:
58698aa9cd0SNate Lawson 	*result = (uintptr_t)sc->cpu_pcpu;
58798aa9cd0SNate Lawson 	break;
588e1c9d39eSJung-uk Kim #if defined(__amd64__) || defined(__i386__)
589e1c9d39eSJung-uk Kim     case CPU_IVAR_NOMINAL_MHZ:
590e1c9d39eSJung-uk Kim 	if (tsc_is_invariant) {
5913453537fSJung-uk Kim 	    *result = (uintptr_t)(atomic_load_acq_64(&tsc_freq) / 1000000);
592e1c9d39eSJung-uk Kim 	    break;
593e1c9d39eSJung-uk Kim 	}
594e1c9d39eSJung-uk Kim 	/* FALLTHROUGH */
595e1c9d39eSJung-uk Kim #endif
59698aa9cd0SNate Lawson     default:
59798aa9cd0SNate Lawson 	return (ENOENT);
59898aa9cd0SNate Lawson     }
59998aa9cd0SNate Lawson     return (0);
60098aa9cd0SNate Lawson }
60198aa9cd0SNate Lawson 
6026b74f9b7SNate Lawson static int
60356a70eadSNate Lawson acpi_cpu_shutdown(device_t dev)
60456a70eadSNate Lawson {
60556a70eadSNate Lawson     ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__);
60656a70eadSNate Lawson 
60798aa9cd0SNate Lawson     /* Allow children to shutdown first. */
60898aa9cd0SNate Lawson     bus_generic_shutdown(dev);
60998aa9cd0SNate Lawson 
610cc3c11f9SNate Lawson     /*
61109424d43SAndriy Gapon      * Disable any entry to the idle function.
612cc3c11f9SNate Lawson      */
61309424d43SAndriy Gapon     disable_idle(device_get_softc(dev));
61409424d43SAndriy Gapon 
61509424d43SAndriy Gapon     /*
61609424d43SAndriy Gapon      * CPU devices are not truely detached and remain referenced,
61709424d43SAndriy Gapon      * so their resources are not freed.
61809424d43SAndriy Gapon      */
61956a70eadSNate Lawson 
62056a70eadSNate Lawson     return_VALUE (0);
62156a70eadSNate Lawson }
62256a70eadSNate Lawson 
623907b6777SNate Lawson static void
6246b74f9b7SNate Lawson acpi_cpu_cx_probe(struct acpi_cpu_softc *sc)
6256b74f9b7SNate Lawson {
626907b6777SNate Lawson     ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__);
627907b6777SNate Lawson 
628907b6777SNate Lawson     /* Use initial sleep value of 1 sec. to start with lowest idle state. */
629907b6777SNate Lawson     sc->cpu_prev_sleep = 1000000;
630907b6777SNate Lawson     sc->cpu_cx_lowest = 0;
631d30b88afSAndriy Gapon     sc->cpu_cx_lowest_lim = 0;
632907b6777SNate Lawson 
633907b6777SNate Lawson     /*
634907b6777SNate Lawson      * Check for the ACPI 2.0 _CST sleep states object. If we can't find
635907b6777SNate Lawson      * any, we'll revert to generic FADT/P_BLK Cx control method which will
636907b6777SNate Lawson      * be handled by acpi_cpu_startup. We need to defer to after having
637907b6777SNate Lawson      * probed all the cpus in the system before probing for generic Cx
638907b6777SNate Lawson      * states as we may already have found cpus with valid _CST packages
639907b6777SNate Lawson      */
640907b6777SNate Lawson     if (!cpu_cx_generic && acpi_cpu_cx_cst(sc) != 0) {
641907b6777SNate Lawson 	/*
642907b6777SNate Lawson 	 * We were unable to find a _CST package for this cpu or there
643907b6777SNate Lawson 	 * was an error parsing it. Switch back to generic mode.
644907b6777SNate Lawson 	 */
645907b6777SNate Lawson 	cpu_cx_generic = TRUE;
646bd826803SNate Lawson 	if (bootverbose)
647bd826803SNate Lawson 	    device_printf(sc->cpu_dev, "switching to generic Cx mode\n");
648907b6777SNate Lawson     }
649907b6777SNate Lawson 
650907b6777SNate Lawson     /*
651907b6777SNate Lawson      * TODO: _CSD Package should be checked here.
652907b6777SNate Lawson      */
653907b6777SNate Lawson }
654907b6777SNate Lawson 
655907b6777SNate Lawson static void
656907b6777SNate Lawson acpi_cpu_generic_cx_probe(struct acpi_cpu_softc *sc)
657907b6777SNate Lawson {
6586b74f9b7SNate Lawson     ACPI_GENERIC_ADDRESS	 gas;
6596b74f9b7SNate Lawson     struct acpi_cx		*cx_ptr;
66056a70eadSNate Lawson 
66156a70eadSNate Lawson     sc->cpu_cx_count = 0;
6626b74f9b7SNate Lawson     cx_ptr = sc->cpu_cx_states;
663fec754d4SMike Smith 
664907b6777SNate Lawson     /* Use initial sleep value of 1 sec. to start with lowest idle state. */
665907b6777SNate Lawson     sc->cpu_prev_sleep = 1000000;
666907b6777SNate Lawson 
6676b74f9b7SNate Lawson     /* C1 has been required since just after ACPI 1.0 */
6686b74f9b7SNate Lawson     cx_ptr->type = ACPI_STATE_C1;
6696b74f9b7SNate Lawson     cx_ptr->trans_lat = 0;
6706b74f9b7SNate Lawson     cx_ptr++;
671987e5277SAndriy Gapon     sc->cpu_non_c3 = sc->cpu_cx_count;
67256a70eadSNate Lawson     sc->cpu_cx_count++;
67356a70eadSNate Lawson 
674c181b89bSNate Lawson     /*
675c181b89bSNate Lawson      * The spec says P_BLK must be 6 bytes long.  However, some systems
676c181b89bSNate Lawson      * use it to indicate a fractional set of features present so we
677c181b89bSNate Lawson      * take 5 as C2.  Some may also have a value of 7 to indicate
678c181b89bSNate Lawson      * another C3 but most use _CST for this (as required) and having
679c181b89bSNate Lawson      * "only" C1-C3 is not a hardship.
680c181b89bSNate Lawson      */
681c181b89bSNate Lawson     if (sc->cpu_p_blk_len < 5)
682907b6777SNate Lawson 	return;
683fec754d4SMike Smith 
6846b74f9b7SNate Lawson     /* Validate and allocate resources for C2 (P_LVL2). */
6852be4e471SJung-uk Kim     gas.SpaceId = ACPI_ADR_SPACE_SYSTEM_IO;
6862be4e471SJung-uk Kim     gas.BitWidth = 8;
6872be4e471SJung-uk Kim     if (AcpiGbl_FADT.C2Latency <= 100) {
68856a70eadSNate Lawson 	gas.Address = sc->cpu_p_blk + 4;
689f51d43feSAndriy Gapon 	cx_ptr->res_rid = 0;
690f51d43feSAndriy Gapon 	acpi_bus_alloc_gas(sc->cpu_dev, &cx_ptr->res_type, &cx_ptr->res_rid,
691907b6777SNate Lawson 	    &gas, &cx_ptr->p_lvlx, RF_SHAREABLE);
6926b74f9b7SNate Lawson 	if (cx_ptr->p_lvlx != NULL) {
6936b74f9b7SNate Lawson 	    cx_ptr->type = ACPI_STATE_C2;
6942be4e471SJung-uk Kim 	    cx_ptr->trans_lat = AcpiGbl_FADT.C2Latency;
6956b74f9b7SNate Lawson 	    cx_ptr++;
696987e5277SAndriy Gapon 	    sc->cpu_non_c3 = sc->cpu_cx_count;
69756a70eadSNate Lawson 	    sc->cpu_cx_count++;
698fec754d4SMike Smith 	}
699fec754d4SMike Smith     }
700c181b89bSNate Lawson     if (sc->cpu_p_blk_len < 6)
701907b6777SNate Lawson 	return;
702be2b1797SNate Lawson 
7036b74f9b7SNate Lawson     /* Validate and allocate resources for C3 (P_LVL3). */
7046e1de64dSRui Paulo     if (AcpiGbl_FADT.C3Latency <= 1000 && !(cpu_quirks & CPU_QUIRK_NO_C3)) {
70556a70eadSNate Lawson 	gas.Address = sc->cpu_p_blk + 5;
706f51d43feSAndriy Gapon 	cx_ptr->res_rid = 1;
707f51d43feSAndriy Gapon 	acpi_bus_alloc_gas(sc->cpu_dev, &cx_ptr->res_type, &cx_ptr->res_rid,
708f51d43feSAndriy Gapon 	    &gas, &cx_ptr->p_lvlx, RF_SHAREABLE);
7096b74f9b7SNate Lawson 	if (cx_ptr->p_lvlx != NULL) {
7106b74f9b7SNate Lawson 	    cx_ptr->type = ACPI_STATE_C3;
7112be4e471SJung-uk Kim 	    cx_ptr->trans_lat = AcpiGbl_FADT.C3Latency;
7126b74f9b7SNate Lawson 	    cx_ptr++;
71356a70eadSNate Lawson 	    sc->cpu_cx_count++;
714412ef220SAndriy Gapon 	    cpu_can_deep_sleep = 1;
7156b74f9b7SNate Lawson 	}
7166b74f9b7SNate Lawson     }
7176b74f9b7SNate Lawson }
7186b74f9b7SNate Lawson 
7196b74f9b7SNate Lawson /*
7206b74f9b7SNate Lawson  * Parse a _CST package and set up its Cx states.  Since the _CST object
7216b74f9b7SNate Lawson  * can change dynamically, our notify handler may call this function
7226b74f9b7SNate Lawson  * to clean up and probe the new _CST package.
7236b74f9b7SNate Lawson  */
7246b74f9b7SNate Lawson static int
7256b74f9b7SNate Lawson acpi_cpu_cx_cst(struct acpi_cpu_softc *sc)
7266b74f9b7SNate Lawson {
7276b74f9b7SNate Lawson     struct	 acpi_cx *cx_ptr;
7286b74f9b7SNate Lawson     ACPI_STATUS	 status;
7296b74f9b7SNate Lawson     ACPI_BUFFER	 buf;
7306b74f9b7SNate Lawson     ACPI_OBJECT	*top;
7316b74f9b7SNate Lawson     ACPI_OBJECT	*pkg;
7326b74f9b7SNate Lawson     uint32_t	 count;
7336b74f9b7SNate Lawson     int		 i;
7346b74f9b7SNate Lawson 
73556a70eadSNate Lawson     ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__);
73656a70eadSNate Lawson 
7376b74f9b7SNate Lawson     buf.Pointer = NULL;
7386b74f9b7SNate Lawson     buf.Length = ACPI_ALLOCATE_BUFFER;
7396b74f9b7SNate Lawson     status = AcpiEvaluateObject(sc->cpu_handle, "_CST", NULL, &buf);
740bd826803SNate Lawson     if (ACPI_FAILURE(status))
7416b74f9b7SNate Lawson 	return (ENXIO);
7426b74f9b7SNate Lawson 
7436b74f9b7SNate Lawson     /* _CST is a package with a count and at least one Cx package. */
7446b74f9b7SNate Lawson     top = (ACPI_OBJECT *)buf.Pointer;
74521cea91fSNate Lawson     if (!ACPI_PKG_VALID(top, 2) || acpi_PkgInt32(top, 0, &count) != 0) {
746bd826803SNate Lawson 	device_printf(sc->cpu_dev, "invalid _CST package\n");
7476b74f9b7SNate Lawson 	AcpiOsFree(buf.Pointer);
7486b74f9b7SNate Lawson 	return (ENXIO);
7496b74f9b7SNate Lawson     }
7506b74f9b7SNate Lawson     if (count != top->Package.Count - 1) {
751bd826803SNate Lawson 	device_printf(sc->cpu_dev, "invalid _CST state count (%d != %d)\n",
7526b74f9b7SNate Lawson 	       count, top->Package.Count - 1);
7536b74f9b7SNate Lawson 	count = top->Package.Count - 1;
7546b74f9b7SNate Lawson     }
7556b74f9b7SNate Lawson     if (count > MAX_CX_STATES) {
75656a70eadSNate Lawson 	device_printf(sc->cpu_dev, "_CST has too many states (%d)\n", count);
7576b74f9b7SNate Lawson 	count = MAX_CX_STATES;
7586b74f9b7SNate Lawson     }
7596b74f9b7SNate Lawson 
76068d5e11cSJung-uk Kim     sc->cpu_non_c3 = 0;
76156a70eadSNate Lawson     sc->cpu_cx_count = 0;
7626b74f9b7SNate Lawson     cx_ptr = sc->cpu_cx_states;
76368d5e11cSJung-uk Kim 
76468d5e11cSJung-uk Kim     /*
76568d5e11cSJung-uk Kim      * C1 has been required since just after ACPI 1.0.
76668d5e11cSJung-uk Kim      * Reserve the first slot for it.
76768d5e11cSJung-uk Kim      */
76868d5e11cSJung-uk Kim     cx_ptr->type = ACPI_STATE_C0;
76968d5e11cSJung-uk Kim     cx_ptr++;
77068d5e11cSJung-uk Kim     sc->cpu_cx_count++;
77168d5e11cSJung-uk Kim 
77268d5e11cSJung-uk Kim     /* Set up all valid states. */
7736b74f9b7SNate Lawson     for (i = 0; i < count; i++) {
7746b74f9b7SNate Lawson 	pkg = &top->Package.Elements[i + 1];
77521cea91fSNate Lawson 	if (!ACPI_PKG_VALID(pkg, 4) ||
77621cea91fSNate Lawson 	    acpi_PkgInt32(pkg, 1, &cx_ptr->type) != 0 ||
77721cea91fSNate Lawson 	    acpi_PkgInt32(pkg, 2, &cx_ptr->trans_lat) != 0 ||
77821cea91fSNate Lawson 	    acpi_PkgInt32(pkg, 3, &cx_ptr->power) != 0) {
77921cea91fSNate Lawson 
78080f006a1SNate Lawson 	    device_printf(sc->cpu_dev, "skipping invalid Cx state package\n");
7816b74f9b7SNate Lawson 	    continue;
7826b74f9b7SNate Lawson 	}
7836b74f9b7SNate Lawson 
7846b74f9b7SNate Lawson 	/* Validate the state to see if we should use it. */
7856b74f9b7SNate Lawson 	switch (cx_ptr->type) {
7866b74f9b7SNate Lawson 	case ACPI_STATE_C1:
78768d5e11cSJung-uk Kim 	    if (sc->cpu_cx_states[0].type == ACPI_STATE_C0) {
78868d5e11cSJung-uk Kim 		/* This is the first C1 state.  Use the reserved slot. */
78968d5e11cSJung-uk Kim 		sc->cpu_cx_states[0] = *cx_ptr;
79068d5e11cSJung-uk Kim 	    } else {
79156101001SAndriy Gapon 		sc->cpu_non_c3 = sc->cpu_cx_count;
7926b74f9b7SNate Lawson 		cx_ptr++;
79356a70eadSNate Lawson 		sc->cpu_cx_count++;
79468d5e11cSJung-uk Kim 	    }
7956b74f9b7SNate Lawson 	    continue;
7966b74f9b7SNate Lawson 	case ACPI_STATE_C2:
79756101001SAndriy Gapon 	    sc->cpu_non_c3 = sc->cpu_cx_count;
7986b74f9b7SNate Lawson 	    break;
7996b74f9b7SNate Lawson 	case ACPI_STATE_C3:
8006b74f9b7SNate Lawson 	default:
80109c22c66SAndriy Gapon 	    if ((cpu_quirks & CPU_QUIRK_NO_C3) != 0) {
80256a70eadSNate Lawson 		ACPI_DEBUG_PRINT((ACPI_DB_INFO,
80356a70eadSNate Lawson 				 "acpi_cpu%d: C3[%d] not available.\n",
80456a70eadSNate Lawson 				 device_get_unit(sc->cpu_dev), i));
8056b74f9b7SNate Lawson 		continue;
806412ef220SAndriy Gapon 	    } else
807412ef220SAndriy Gapon 		cpu_can_deep_sleep = 1;
8086b74f9b7SNate Lawson 	    break;
8096b74f9b7SNate Lawson 	}
8106b74f9b7SNate Lawson 
8116b74f9b7SNate Lawson 	/* Free up any previous register. */
8126b74f9b7SNate Lawson 	if (cx_ptr->p_lvlx != NULL) {
813f51d43feSAndriy Gapon 	    bus_release_resource(sc->cpu_dev, cx_ptr->res_type, cx_ptr->res_rid,
814f51d43feSAndriy Gapon 	        cx_ptr->p_lvlx);
8156b74f9b7SNate Lawson 	    cx_ptr->p_lvlx = NULL;
8166b74f9b7SNate Lawson 	}
8176b74f9b7SNate Lawson 
8186b74f9b7SNate Lawson 	/* Allocate the control register for C2 or C3. */
819f51d43feSAndriy Gapon 	cx_ptr->res_rid = sc->cpu_cx_count;
820f51d43feSAndriy Gapon 	acpi_PkgGas(sc->cpu_dev, pkg, 0, &cx_ptr->res_type, &cx_ptr->res_rid,
821907b6777SNate Lawson 	    &cx_ptr->p_lvlx, RF_SHAREABLE);
822f4eb0418SNate Lawson 	if (cx_ptr->p_lvlx) {
82356a70eadSNate Lawson 	    ACPI_DEBUG_PRINT((ACPI_DB_INFO,
82456a70eadSNate Lawson 			     "acpi_cpu%d: Got C%d - %d latency\n",
82556a70eadSNate Lawson 			     device_get_unit(sc->cpu_dev), cx_ptr->type,
82656a70eadSNate Lawson 			     cx_ptr->trans_lat));
8276b74f9b7SNate Lawson 	    cx_ptr++;
82856a70eadSNate Lawson 	    sc->cpu_cx_count++;
8296b74f9b7SNate Lawson 	}
8306b74f9b7SNate Lawson     }
8316b74f9b7SNate Lawson     AcpiOsFree(buf.Pointer);
8326b74f9b7SNate Lawson 
83368d5e11cSJung-uk Kim     /* If C1 state was not found, we need one now. */
83468d5e11cSJung-uk Kim     cx_ptr = sc->cpu_cx_states;
83568d5e11cSJung-uk Kim     if (cx_ptr->type == ACPI_STATE_C0) {
83668d5e11cSJung-uk Kim 	cx_ptr->type = ACPI_STATE_C1;
83768d5e11cSJung-uk Kim 	cx_ptr->trans_lat = 0;
83868d5e11cSJung-uk Kim     }
83968d5e11cSJung-uk Kim 
8406b74f9b7SNate Lawson     return (0);
841fec754d4SMike Smith }
842fec754d4SMike Smith 
843fec754d4SMike Smith /*
844fec754d4SMike Smith  * Call this *after* all CPUs have been attached.
845fec754d4SMike Smith  */
846fec754d4SMike Smith static void
8476b74f9b7SNate Lawson acpi_cpu_startup(void *arg)
848fec754d4SMike Smith {
84956a70eadSNate Lawson     struct acpi_cpu_softc *sc;
850907b6777SNate Lawson     int i;
851fec754d4SMike Smith 
852be2b1797SNate Lawson     /* Get set of CPU devices */
8533045c8afSNate Lawson     devclass_get_devices(acpi_cpu_devclass, &cpu_devices, &cpu_ndevices);
854fec754d4SMike Smith 
85556a70eadSNate Lawson     /*
856907b6777SNate Lawson      * Setup any quirks that might necessary now that we have probed
857907b6777SNate Lawson      * all the CPUs
85856a70eadSNate Lawson      */
859907b6777SNate Lawson     acpi_cpu_quirks();
860907b6777SNate Lawson 
861907b6777SNate Lawson     if (cpu_cx_generic) {
862907b6777SNate Lawson 	/*
863907b6777SNate Lawson 	 * We are using generic Cx mode, probe for available Cx states
864907b6777SNate Lawson 	 * for all processors.
865907b6777SNate Lawson 	 */
86656a70eadSNate Lawson 	for (i = 0; i < cpu_ndevices; i++) {
86756a70eadSNate Lawson 	    sc = device_get_softc(cpu_devices[i]);
868907b6777SNate Lawson 	    acpi_cpu_generic_cx_probe(sc);
869907b6777SNate Lawson 	}
870907b6777SNate Lawson     } else {
871907b6777SNate Lawson 	/*
872907b6777SNate Lawson 	 * We are using _CST mode, remove C3 state if necessary.
873907b6777SNate Lawson 	 * As we now know for sure that we will be using _CST mode
874907b6777SNate Lawson 	 * install our notify handler.
875907b6777SNate Lawson 	 */
876907b6777SNate Lawson 	for (i = 0; i < cpu_ndevices; i++) {
877907b6777SNate Lawson 	    sc = device_get_softc(cpu_devices[i]);
8787a310721SJohn Baldwin 	    if (cpu_quirks & CPU_QUIRK_NO_C3) {
879907b6777SNate Lawson 		sc->cpu_cx_count = sc->cpu_non_c3 + 1;
880907b6777SNate Lawson 	    }
881907b6777SNate Lawson 	    AcpiInstallNotifyHandler(sc->cpu_handle, ACPI_DEVICE_NOTIFY,
882907b6777SNate Lawson 		acpi_cpu_notify, sc);
883907b6777SNate Lawson 	}
884907b6777SNate Lawson     }
88556a70eadSNate Lawson 
8868c5468e3SNate Lawson     /* Perform Cx final initialization. */
887907b6777SNate Lawson     for (i = 0; i < cpu_ndevices; i++) {
888907b6777SNate Lawson 	sc = device_get_softc(cpu_devices[i]);
889907b6777SNate Lawson 	acpi_cpu_startup_cx(sc);
890907b6777SNate Lawson     }
891907b6777SNate Lawson 
892907b6777SNate Lawson     /* Add a sysctl handler to handle global Cx lowest setting */
893907b6777SNate Lawson     SYSCTL_ADD_PROC(&cpu_sysctl_ctx, SYSCTL_CHILDREN(cpu_sysctl_tree),
894907b6777SNate Lawson 	OID_AUTO, "cx_lowest", CTLTYPE_STRING | CTLFLAG_RW,
895907b6777SNate Lawson 	NULL, 0, acpi_cpu_global_cx_lowest_sysctl, "A",
896907b6777SNate Lawson 	"Global lowest Cx sleep state to use");
897907b6777SNate Lawson 
898907b6777SNate Lawson     /* Take over idling from cpu_idle_default(). */
899d30b88afSAndriy Gapon     cpu_cx_lowest_lim = 0;
90009424d43SAndriy Gapon     for (i = 0; i < cpu_ndevices; i++) {
90109424d43SAndriy Gapon 	sc = device_get_softc(cpu_devices[i]);
90209424d43SAndriy Gapon 	enable_idle(sc);
90309424d43SAndriy Gapon     }
904907b6777SNate Lawson     cpu_idle_hook = acpi_cpu_idle;
9056b74f9b7SNate Lawson }
9066b74f9b7SNate Lawson 
90756a70eadSNate Lawson static void
90889ab2a7aSRui Paulo acpi_cpu_cx_list(struct acpi_cpu_softc *sc)
90956a70eadSNate Lawson {
91056a70eadSNate Lawson     struct sbuf sb;
91156a70eadSNate Lawson     int i;
91256a70eadSNate Lawson 
913ae56b59fSNate Lawson     /*
914907b6777SNate Lawson      * Set up the list of Cx states
915ae56b59fSNate Lawson      */
916907b6777SNate Lawson     sbuf_new(&sb, sc->cpu_cx_supported, sizeof(sc->cpu_cx_supported),
917907b6777SNate Lawson 	SBUF_FIXEDLEN);
918412ef220SAndriy Gapon     for (i = 0; i < sc->cpu_cx_count; i++)
9193c5c5559SAlexander Motin 	sbuf_printf(&sb, "C%d/%d/%d ", i + 1, sc->cpu_cx_states[i].type,
9203c5c5559SAlexander Motin 	    sc->cpu_cx_states[i].trans_lat);
92156a70eadSNate Lawson     sbuf_trim(&sb);
92256a70eadSNate Lawson     sbuf_finish(&sb);
92389ab2a7aSRui Paulo }
92489ab2a7aSRui Paulo 
92589ab2a7aSRui Paulo static void
92689ab2a7aSRui Paulo acpi_cpu_startup_cx(struct acpi_cpu_softc *sc)
92789ab2a7aSRui Paulo {
92889ab2a7aSRui Paulo     acpi_cpu_cx_list(sc);
929907b6777SNate Lawson 
930907b6777SNate Lawson     SYSCTL_ADD_STRING(&sc->cpu_sysctl_ctx,
931907b6777SNate Lawson 		      SYSCTL_CHILDREN(device_get_sysctl_tree(sc->cpu_dev)),
932907b6777SNate Lawson 		      OID_AUTO, "cx_supported", CTLFLAG_RD,
933907b6777SNate Lawson 		      sc->cpu_cx_supported, 0,
934907b6777SNate Lawson 		      "Cx/microsecond values for supported Cx states");
935907b6777SNate Lawson     SYSCTL_ADD_PROC(&sc->cpu_sysctl_ctx,
936907b6777SNate Lawson 		    SYSCTL_CHILDREN(device_get_sysctl_tree(sc->cpu_dev)),
937ccc09458SNate Lawson 		    OID_AUTO, "cx_lowest", CTLTYPE_STRING | CTLFLAG_RW,
938907b6777SNate Lawson 		    (void *)sc, 0, acpi_cpu_cx_lowest_sysctl, "A",
93956a70eadSNate Lawson 		    "lowest Cx sleep state to use");
940907b6777SNate Lawson     SYSCTL_ADD_PROC(&sc->cpu_sysctl_ctx,
941907b6777SNate Lawson 		    SYSCTL_CHILDREN(device_get_sysctl_tree(sc->cpu_dev)),
942a2afe45aSNate Lawson 		    OID_AUTO, "cx_usage", CTLTYPE_STRING | CTLFLAG_RD,
943907b6777SNate Lawson 		    (void *)sc, 0, acpi_cpu_usage_sysctl, "A",
944a2afe45aSNate Lawson 		    "percent usage for each Cx state");
9450d470054SAdrian Chadd     SYSCTL_ADD_PROC(&sc->cpu_sysctl_ctx,
9460d470054SAdrian Chadd 		    SYSCTL_CHILDREN(device_get_sysctl_tree(sc->cpu_dev)),
9470d470054SAdrian Chadd 		    OID_AUTO, "cx_usage_counters", CTLTYPE_STRING | CTLFLAG_RD,
9480d470054SAdrian Chadd 		    (void *)sc, 0, acpi_cpu_usage_counters_sysctl, "A",
9490d470054SAdrian Chadd 		    "Cx sleep state counters");
95056a70eadSNate Lawson 
95156a70eadSNate Lawson     /* Signal platform that we can handle _CST notification. */
952907b6777SNate Lawson     if (!cpu_cx_generic && cpu_cst_cnt != 0) {
953d92a2ebdSNate Lawson 	ACPI_LOCK(acpi);
95456a70eadSNate Lawson 	AcpiOsWritePort(cpu_smi_cmd, cpu_cst_cnt, 8);
955d92a2ebdSNate Lawson 	ACPI_UNLOCK(acpi);
95656a70eadSNate Lawson     }
95756a70eadSNate Lawson }
95856a70eadSNate Lawson 
959fec754d4SMike Smith /*
960a2afe45aSNate Lawson  * Idle the CPU in the lowest state possible.  This function is called with
961a2afe45aSNate Lawson  * interrupts disabled.  Note that once it re-enables interrupts, a task
962a2afe45aSNate Lawson  * switch can occur so do not access shared data (i.e. the softc) after
963a2afe45aSNate Lawson  * interrupts are re-enabled.
9646b74f9b7SNate Lawson  */
9656b74f9b7SNate Lawson static void
966acccf7d8SDavide Italiano acpi_cpu_idle(sbintime_t sbt)
9676b74f9b7SNate Lawson {
9686b74f9b7SNate Lawson     struct	acpi_cpu_softc *sc;
96956a70eadSNate Lawson     struct	acpi_cx *cx_next;
9703c5c5559SAlexander Motin     uint64_t	cputicks;
9716b74f9b7SNate Lawson     uint32_t	start_time, end_time;
972acccf7d8SDavide Italiano     int		bm_active, cx_next_idx, i, us;
9736b74f9b7SNate Lawson 
974cd1f3db9SNate Lawson     /*
975cd1f3db9SNate Lawson      * Look up our CPU id to get our softc.  If it's NULL, we'll use C1
976cd1f3db9SNate Lawson      * since there is no ACPI processor object for this CPU.  This occurs
977cd1f3db9SNate Lawson      * for logical CPUs in the HTT case.
978cd1f3db9SNate Lawson      */
979cd1f3db9SNate Lawson     sc = cpu_softc[PCPU_GET(cpuid)];
980cd1f3db9SNate Lawson     if (sc == NULL) {
981cd1f3db9SNate Lawson 	acpi_cpu_c1();
982cd1f3db9SNate Lawson 	return;
983cd1f3db9SNate Lawson     }
984cd1f3db9SNate Lawson 
98530bf6110SAndriy Gapon     /* If disabled, take the safe path. */
98609424d43SAndriy Gapon     if (is_idle_disabled(sc)) {
98730bf6110SAndriy Gapon 	acpi_cpu_c1();
98809424d43SAndriy Gapon 	return;
98909424d43SAndriy Gapon     }
99009424d43SAndriy Gapon 
991bb1d6ad5SAlexander Motin     /* Find the lowest state that has small enough latency. */
992acccf7d8SDavide Italiano     us = sc->cpu_prev_sleep;
993d9ddf0c0SDavide Italiano     if (sbt >= 0 && us > (sbt >> 12))
994d9ddf0c0SDavide Italiano 	us = (sbt >> 12);
995b0baaaaeSAlexander Motin     cx_next_idx = 0;
99655fb7f36SSean Bruno     if (cpu_disable_deep_sleep)
99748fe2e67SAlexander Motin 	i = min(sc->cpu_cx_lowest, sc->cpu_non_c3);
99855fb7f36SSean Bruno     else
999a157e425SAlexander Motin 	i = sc->cpu_cx_lowest;
1000a157e425SAlexander Motin     for (; i >= 0; i--) {
1001acccf7d8SDavide Italiano 	if (sc->cpu_cx_states[i].trans_lat * 3 <= us) {
1002a2afe45aSNate Lawson 	    cx_next_idx = i;
1003a2afe45aSNate Lawson 	    break;
1004a2afe45aSNate Lawson 	}
100580f006a1SNate Lawson     }
100656a70eadSNate Lawson 
10076b74f9b7SNate Lawson     /*
10086b74f9b7SNate Lawson      * Check for bus master activity.  If there was activity, clear
10096b74f9b7SNate Lawson      * the bit and use the lowest non-C3 state.  Note that the USB
10106b74f9b7SNate Lawson      * driver polling for new devices keeps this bit set all the
1011f435261dSNate Lawson      * time if USB is loaded.
10126b74f9b7SNate Lawson      */
10133c5c5559SAlexander Motin     if ((cpu_quirks & CPU_QUIRK_NO_BM_CTRL) == 0 &&
10143c5c5559SAlexander Motin 	cx_next_idx > sc->cpu_non_c3) {
1015129d3046SJung-uk Kim 	AcpiReadBitRegister(ACPI_BITREG_BUS_MASTER_STATUS, &bm_active);
10166b74f9b7SNate Lawson 	if (bm_active != 0) {
1017129d3046SJung-uk Kim 	    AcpiWriteBitRegister(ACPI_BITREG_BUS_MASTER_STATUS, 1);
10183c5c5559SAlexander Motin 	    cx_next_idx = sc->cpu_non_c3;
10196b74f9b7SNate Lawson 	}
1020f435261dSNate Lawson     }
10216b74f9b7SNate Lawson 
1022a2afe45aSNate Lawson     /* Select the next state and update statistics. */
1023a2afe45aSNate Lawson     cx_next = &sc->cpu_cx_states[cx_next_idx];
1024907b6777SNate Lawson     sc->cpu_cx_stats[cx_next_idx]++;
1025a2afe45aSNate Lawson     KASSERT(cx_next->type != ACPI_STATE_C0, ("acpi_cpu_idle: C0 sleep"));
10266b74f9b7SNate Lawson 
10276b74f9b7SNate Lawson     /*
1028a2afe45aSNate Lawson      * Execute HLT (or equivalent) and wait for an interrupt.  We can't
10297150e671SAlexander Motin      * precisely calculate the time spent in C1 since the place we wake up
1030a157e425SAlexander Motin      * is an ISR.  Assume we slept no more then half of quantum, unless
1031a157e425SAlexander Motin      * we are called inside critical section, delaying context switch.
10326b74f9b7SNate Lawson      */
1033a2afe45aSNate Lawson     if (cx_next->type == ACPI_STATE_C1) {
10343c5c5559SAlexander Motin 	cputicks = cpu_ticks();
1035a2afe45aSNate Lawson 	acpi_cpu_c1();
10363c5c5559SAlexander Motin 	end_time = ((cpu_ticks() - cputicks) << 20) / cpu_tickrate();
1037a157e425SAlexander Motin 	if (curthread->td_critnest == 0)
1038a157e425SAlexander Motin 		end_time = min(end_time, 500000 / hz);
1039a157e425SAlexander Motin 	sc->cpu_prev_sleep = (sc->cpu_prev_sleep * 3 + end_time) / 4;
1040a2afe45aSNate Lawson 	return;
1041a2afe45aSNate Lawson     }
1042a2afe45aSNate Lawson 
1043f435261dSNate Lawson     /*
1044f435261dSNate Lawson      * For C3, disable bus master arbitration and enable bus master wake
1045f435261dSNate Lawson      * if BM control is available, otherwise flush the CPU cache.
1046f435261dSNate Lawson      */
1047a2afe45aSNate Lawson     if (cx_next->type == ACPI_STATE_C3) {
1048f435261dSNate Lawson 	if ((cpu_quirks & CPU_QUIRK_NO_BM_CTRL) == 0) {
1049129d3046SJung-uk Kim 	    AcpiWriteBitRegister(ACPI_BITREG_ARB_DISABLE, 1);
1050129d3046SJung-uk Kim 	    AcpiWriteBitRegister(ACPI_BITREG_BUS_MASTER_RLD, 1);
1051f435261dSNate Lawson 	} else
1052f435261dSNate Lawson 	    ACPI_FLUSH_CPU_CACHE();
1053a2afe45aSNate Lawson     }
1054a2afe45aSNate Lawson 
10556b74f9b7SNate Lawson     /*
1056a2afe45aSNate Lawson      * Read from P_LVLx to enter C2(+), checking time spent asleep.
10576b74f9b7SNate Lawson      * Use the ACPI timer for measuring sleep time.  Since we need to
10586b74f9b7SNate Lawson      * get the time very close to the CPU start/stop clock logic, this
10596b74f9b7SNate Lawson      * is the only reliable time source.
10606b74f9b7SNate Lawson      */
10613c5c5559SAlexander Motin     if (cx_next->type == ACPI_STATE_C3) {
106292488a57SJung-uk Kim 	AcpiHwRead(&start_time, &AcpiGbl_FADT.XPmTimerBlock);
10633c5c5559SAlexander Motin 	cputicks = 0;
10643c5c5559SAlexander Motin     } else {
10653c5c5559SAlexander Motin 	start_time = 0;
10663c5c5559SAlexander Motin 	cputicks = cpu_ticks();
10673c5c5559SAlexander Motin     }
10686b74f9b7SNate Lawson     CPU_GET_REG(cx_next->p_lvlx, 1);
10696b74f9b7SNate Lawson 
10706b74f9b7SNate Lawson     /*
10716b74f9b7SNate Lawson      * Read the end time twice.  Since it may take an arbitrary time
10726b74f9b7SNate Lawson      * to enter the idle state, the first read may be executed before
10736b74f9b7SNate Lawson      * the processor has stopped.  Doing it again provides enough
10746b74f9b7SNate Lawson      * margin that we are certain to have a correct value.
10756b74f9b7SNate Lawson      */
107692488a57SJung-uk Kim     AcpiHwRead(&end_time, &AcpiGbl_FADT.XPmTimerBlock);
10773c5c5559SAlexander Motin     if (cx_next->type == ACPI_STATE_C3) {
107892488a57SJung-uk Kim 	AcpiHwRead(&end_time, &AcpiGbl_FADT.XPmTimerBlock);
10793c5c5559SAlexander Motin 	end_time = acpi_TimerDelta(end_time, start_time);
10803c5c5559SAlexander Motin     } else
10813c5c5559SAlexander Motin 	end_time = ((cpu_ticks() - cputicks) << 20) / cpu_tickrate();
10826b74f9b7SNate Lawson 
10836b74f9b7SNate Lawson     /* Enable bus master arbitration and disable bus master wakeup. */
108418ececa0SNate Lawson     if (cx_next->type == ACPI_STATE_C3 &&
108518ececa0SNate Lawson 	(cpu_quirks & CPU_QUIRK_NO_BM_CTRL) == 0) {
1086129d3046SJung-uk Kim 	AcpiWriteBitRegister(ACPI_BITREG_ARB_DISABLE, 0);
1087129d3046SJung-uk Kim 	AcpiWriteBitRegister(ACPI_BITREG_BUS_MASTER_RLD, 0);
10886b74f9b7SNate Lawson     }
108980f006a1SNate Lawson     ACPI_ENABLE_IRQS();
10906b74f9b7SNate Lawson 
1091b0baaaaeSAlexander Motin     sc->cpu_prev_sleep = (sc->cpu_prev_sleep * 3 + PM_USEC(end_time)) / 4;
10926b74f9b7SNate Lawson }
10936b74f9b7SNate Lawson 
10946b74f9b7SNate Lawson /*
10958b888c66SNate Lawson  * Re-evaluate the _CST object when we are notified that it changed.
10966b74f9b7SNate Lawson  */
10976b74f9b7SNate Lawson static void
10986b74f9b7SNate Lawson acpi_cpu_notify(ACPI_HANDLE h, UINT32 notify, void *context)
10996b74f9b7SNate Lawson {
11006b74f9b7SNate Lawson     struct acpi_cpu_softc *sc = (struct acpi_cpu_softc *)context;
11016b74f9b7SNate Lawson 
11028b888c66SNate Lawson     if (notify != ACPI_NOTIFY_CX_STATES)
11038b888c66SNate Lawson 	return;
11048b888c66SNate Lawson 
110530bf6110SAndriy Gapon     /*
110630bf6110SAndriy Gapon      * C-state data for target CPU is going to be in flux while we execute
110730bf6110SAndriy Gapon      * acpi_cpu_cx_cst, so disable entering acpi_cpu_idle.
110830bf6110SAndriy Gapon      * Also, it may happen that multiple ACPI taskqueues may concurrently
110930bf6110SAndriy Gapon      * execute notifications for the same CPU.  ACPI_SERIAL is used to
111030bf6110SAndriy Gapon      * protect against that.
111130bf6110SAndriy Gapon      */
111230bf6110SAndriy Gapon     ACPI_SERIAL_BEGIN(cpu);
111330bf6110SAndriy Gapon     disable_idle(sc);
111430bf6110SAndriy Gapon 
111589ab2a7aSRui Paulo     /* Update the list of Cx states. */
111689ab2a7aSRui Paulo     acpi_cpu_cx_cst(sc);
111789ab2a7aSRui Paulo     acpi_cpu_cx_list(sc);
1118d30b88afSAndriy Gapon     acpi_cpu_set_cx_lowest(sc);
111930bf6110SAndriy Gapon 
112030bf6110SAndriy Gapon     enable_idle(sc);
112189ab2a7aSRui Paulo     ACPI_SERIAL_END(cpu);
1122154fc7b6SAndriy Gapon 
1123154fc7b6SAndriy Gapon     acpi_UserNotify("PROCESSOR", sc->cpu_handle, notify);
11246b74f9b7SNate Lawson }
11256b74f9b7SNate Lawson 
11266b74f9b7SNate Lawson static int
1127907b6777SNate Lawson acpi_cpu_quirks(void)
11286b74f9b7SNate Lawson {
1129ae56b59fSNate Lawson     device_t acpi_dev;
11308a000acaSRui Paulo     uint32_t val;
11316b74f9b7SNate Lawson 
11327826bf98SNate Lawson     ACPI_FUNCTION_TRACE((char *)(uintptr_t)__func__);
11337826bf98SNate Lawson 
11346b74f9b7SNate Lawson     /*
1135907b6777SNate Lawson      * Bus mastering arbitration control is needed to keep caches coherent
1136907b6777SNate Lawson      * while sleeping in C3.  If it's not present but a working flush cache
1137907b6777SNate Lawson      * instruction is present, flush the caches before entering C3 instead.
1138907b6777SNate Lawson      * Otherwise, just disable C3 completely.
11396b74f9b7SNate Lawson      */
11402be4e471SJung-uk Kim     if (AcpiGbl_FADT.Pm2ControlBlock == 0 ||
11412be4e471SJung-uk Kim 	AcpiGbl_FADT.Pm2ControlLength == 0) {
11422be4e471SJung-uk Kim 	if ((AcpiGbl_FADT.Flags & ACPI_FADT_WBINVD) &&
11432be4e471SJung-uk Kim 	    (AcpiGbl_FADT.Flags & ACPI_FADT_WBINVD_FLUSH) == 0) {
1144907b6777SNate Lawson 	    cpu_quirks |= CPU_QUIRK_NO_BM_CTRL;
1145907b6777SNate Lawson 	    ACPI_DEBUG_PRINT((ACPI_DB_INFO,
114630dd6af3SNate Lawson 		"acpi_cpu: no BM control, using flush cache method\n"));
1147907b6777SNate Lawson 	} else {
1148907b6777SNate Lawson 	    cpu_quirks |= CPU_QUIRK_NO_C3;
1149907b6777SNate Lawson 	    ACPI_DEBUG_PRINT((ACPI_DB_INFO,
115030dd6af3SNate Lawson 		"acpi_cpu: no BM control, C3 not available\n"));
1151907b6777SNate Lawson 	}
1152907b6777SNate Lawson     }
1153907b6777SNate Lawson 
1154907b6777SNate Lawson     /*
1155907b6777SNate Lawson      * If we are using generic Cx mode, C3 on multiple CPUs requires using
1156907b6777SNate Lawson      * the expensive flush cache instruction.
1157907b6777SNate Lawson      */
115830dd6af3SNate Lawson     if (cpu_cx_generic && mp_ncpus > 1) {
115918ececa0SNate Lawson 	cpu_quirks |= CPU_QUIRK_NO_BM_CTRL;
116030dd6af3SNate Lawson 	ACPI_DEBUG_PRINT((ACPI_DB_INFO,
116130dd6af3SNate Lawson 	    "acpi_cpu: SMP, using flush cache mode for C3\n"));
116230dd6af3SNate Lawson     }
11636b74f9b7SNate Lawson 
11646b74f9b7SNate Lawson     /* Look for various quirks of the PIIX4 part. */
11656b74f9b7SNate Lawson     acpi_dev = pci_find_device(PCI_VENDOR_INTEL, PCI_DEVICE_82371AB_3);
11666b74f9b7SNate Lawson     if (acpi_dev != NULL) {
11676b74f9b7SNate Lawson 	switch (pci_get_revid(acpi_dev)) {
11686b74f9b7SNate Lawson 	/*
11696b74f9b7SNate Lawson 	 * Disable C3 support for all PIIX4 chipsets.  Some of these parts
11706b74f9b7SNate Lawson 	 * do not report the BMIDE status to the BM status register and
11716b74f9b7SNate Lawson 	 * others have a livelock bug if Type-F DMA is enabled.  Linux
11726b74f9b7SNate Lawson 	 * works around the BMIDE bug by reading the BM status directly
11736b74f9b7SNate Lawson 	 * but we take the simpler approach of disabling C3 for these
11746b74f9b7SNate Lawson 	 * parts.
11756b74f9b7SNate Lawson 	 *
11766b74f9b7SNate Lawson 	 * See erratum #18 ("C3 Power State/BMIDE and Type-F DMA
11776b74f9b7SNate Lawson 	 * Livelock") from the January 2002 PIIX4 specification update.
11786b74f9b7SNate Lawson 	 * Applies to all PIIX4 models.
11798a000acaSRui Paulo 	 *
11808a000acaSRui Paulo 	 * Also, make sure that all interrupts cause a "Stop Break"
11818a000acaSRui Paulo 	 * event to exit from C2 state.
1182f1e1ddc3SAndriy Gapon 	 * Also, BRLD_EN_BM (ACPI_BITREG_BUS_MASTER_RLD in ACPI-speak)
1183f1e1ddc3SAndriy Gapon 	 * should be set to zero, otherwise it causes C2 to short-sleep.
1184f1e1ddc3SAndriy Gapon 	 * PIIX4 doesn't properly support C3 and bus master activity
1185f1e1ddc3SAndriy Gapon 	 * need not break out of C2.
11866b74f9b7SNate Lawson 	 */
11878a000acaSRui Paulo 	case PCI_REVISION_A_STEP:
11888a000acaSRui Paulo 	case PCI_REVISION_B_STEP:
11896b74f9b7SNate Lawson 	case PCI_REVISION_4E:
11906b74f9b7SNate Lawson 	case PCI_REVISION_4M:
11916b74f9b7SNate Lawson 	    cpu_quirks |= CPU_QUIRK_NO_C3;
119230dd6af3SNate Lawson 	    ACPI_DEBUG_PRINT((ACPI_DB_INFO,
119330dd6af3SNate Lawson 		"acpi_cpu: working around PIIX4 bug, disabling C3\n"));
11948a000acaSRui Paulo 
11958a000acaSRui Paulo 	    val = pci_read_config(acpi_dev, PIIX4_DEVACTB_REG, 4);
11968a000acaSRui Paulo 	    if ((val & PIIX4_STOP_BREAK_MASK) != PIIX4_STOP_BREAK_MASK) {
11978a000acaSRui Paulo 		ACPI_DEBUG_PRINT((ACPI_DB_INFO,
1198f1e1ddc3SAndriy Gapon 		    "acpi_cpu: PIIX4: enabling IRQs to generate Stop Break\n"));
11998a000acaSRui Paulo 	    	val |= PIIX4_STOP_BREAK_MASK;
12008a000acaSRui Paulo 		pci_write_config(acpi_dev, PIIX4_DEVACTB_REG, val, 4);
12018a000acaSRui Paulo 	    }
1202129d3046SJung-uk Kim 	    AcpiReadBitRegister(ACPI_BITREG_BUS_MASTER_RLD, &val);
1203f1e1ddc3SAndriy Gapon 	    if (val) {
1204f1e1ddc3SAndriy Gapon 		ACPI_DEBUG_PRINT((ACPI_DB_INFO,
1205f1e1ddc3SAndriy Gapon 		    "acpi_cpu: PIIX4: reset BRLD_EN_BM\n"));
1206129d3046SJung-uk Kim 		AcpiWriteBitRegister(ACPI_BITREG_BUS_MASTER_RLD, 0);
1207f1e1ddc3SAndriy Gapon 	    }
12086b74f9b7SNate Lawson 	    break;
12096b74f9b7SNate Lawson 	default:
12106b74f9b7SNate Lawson 	    break;
12116b74f9b7SNate Lawson 	}
12126b74f9b7SNate Lawson     }
12136b74f9b7SNate Lawson 
12146b74f9b7SNate Lawson     return (0);
12156b74f9b7SNate Lawson }
12166b74f9b7SNate Lawson 
12176b74f9b7SNate Lawson static int
1218a2afe45aSNate Lawson acpi_cpu_usage_sysctl(SYSCTL_HANDLER_ARGS)
12196b74f9b7SNate Lawson {
1220907b6777SNate Lawson     struct acpi_cpu_softc *sc;
12216b74f9b7SNate Lawson     struct sbuf	 sb;
12226b74f9b7SNate Lawson     char	 buf[128];
12236b74f9b7SNate Lawson     int		 i;
12244a03551dSNate Lawson     uintmax_t	 fract, sum, whole;
12256b74f9b7SNate Lawson 
1226907b6777SNate Lawson     sc = (struct acpi_cpu_softc *) arg1;
12273e7fa136SNate Lawson     sum = 0;
1228907b6777SNate Lawson     for (i = 0; i < sc->cpu_cx_count; i++)
1229907b6777SNate Lawson 	sum += sc->cpu_cx_stats[i];
12306b74f9b7SNate Lawson     sbuf_new(&sb, buf, sizeof(buf), SBUF_FIXEDLEN);
1231907b6777SNate Lawson     for (i = 0; i < sc->cpu_cx_count; i++) {
12323e7fa136SNate Lawson 	if (sum > 0) {
1233907b6777SNate Lawson 	    whole = (uintmax_t)sc->cpu_cx_stats[i] * 100;
12343e7fa136SNate Lawson 	    fract = (whole % sum) * 100;
12353e7fa136SNate Lawson 	    sbuf_printf(&sb, "%u.%02u%% ", (u_int)(whole / sum),
12363e7fa136SNate Lawson 		(u_int)(fract / sum));
12373e7fa136SNate Lawson 	} else
12382500b6d9SAlexander Motin 	    sbuf_printf(&sb, "0.00%% ");
12393e7fa136SNate Lawson     }
12402500b6d9SAlexander Motin     sbuf_printf(&sb, "last %dus", sc->cpu_prev_sleep);
12416b74f9b7SNate Lawson     sbuf_trim(&sb);
12426b74f9b7SNate Lawson     sbuf_finish(&sb);
1243ccc09458SNate Lawson     sysctl_handle_string(oidp, sbuf_data(&sb), sbuf_len(&sb), req);
1244ccc09458SNate Lawson     sbuf_delete(&sb);
12456b74f9b7SNate Lawson 
12466b74f9b7SNate Lawson     return (0);
12476b74f9b7SNate Lawson }
12486b74f9b7SNate Lawson 
12490d470054SAdrian Chadd /*
12500d470054SAdrian Chadd  * XXX TODO: actually add support to count each entry/exit
12510d470054SAdrian Chadd  * from the Cx states.
12520d470054SAdrian Chadd  */
12530d470054SAdrian Chadd static int
12540d470054SAdrian Chadd acpi_cpu_usage_counters_sysctl(SYSCTL_HANDLER_ARGS)
12550d470054SAdrian Chadd {
12560d470054SAdrian Chadd     struct acpi_cpu_softc *sc;
12570d470054SAdrian Chadd     struct sbuf	 sb;
12580d470054SAdrian Chadd     char	 buf[128];
12590d470054SAdrian Chadd     int		 i;
12600d470054SAdrian Chadd 
12610d470054SAdrian Chadd     sc = (struct acpi_cpu_softc *) arg1;
12620d470054SAdrian Chadd 
12630d470054SAdrian Chadd     /* Print out the raw counters */
12640d470054SAdrian Chadd     sbuf_new(&sb, buf, sizeof(buf), SBUF_FIXEDLEN);
12650d470054SAdrian Chadd 
12660d470054SAdrian Chadd     for (i = 0; i < sc->cpu_cx_count; i++) {
12670d470054SAdrian Chadd         sbuf_printf(&sb, "%u ", sc->cpu_cx_stats[i]);
12680d470054SAdrian Chadd     }
12690d470054SAdrian Chadd 
12700d470054SAdrian Chadd     sbuf_trim(&sb);
12710d470054SAdrian Chadd     sbuf_finish(&sb);
12720d470054SAdrian Chadd     sysctl_handle_string(oidp, sbuf_data(&sb), sbuf_len(&sb), req);
12730d470054SAdrian Chadd     sbuf_delete(&sb);
12740d470054SAdrian Chadd 
12750d470054SAdrian Chadd     return (0);
12760d470054SAdrian Chadd }
12770d470054SAdrian Chadd 
12786b74f9b7SNate Lawson static int
1279d30b88afSAndriy Gapon acpi_cpu_set_cx_lowest(struct acpi_cpu_softc *sc)
12806b74f9b7SNate Lawson {
1281b13cf774SNate Lawson     int i;
12826b74f9b7SNate Lawson 
1283b13cf774SNate Lawson     ACPI_SERIAL_ASSERT(cpu);
1284d30b88afSAndriy Gapon     sc->cpu_cx_lowest = min(sc->cpu_cx_lowest_lim, sc->cpu_cx_count - 1);
1285907b6777SNate Lawson 
1286907b6777SNate Lawson     /* If not disabling, cache the new lowest non-C3 state. */
1287907b6777SNate Lawson     sc->cpu_non_c3 = 0;
1288907b6777SNate Lawson     for (i = sc->cpu_cx_lowest; i >= 0; i--) {
1289907b6777SNate Lawson 	if (sc->cpu_cx_states[i].type < ACPI_STATE_C3) {
1290907b6777SNate Lawson 	    sc->cpu_non_c3 = i;
1291907b6777SNate Lawson 	    break;
1292907b6777SNate Lawson 	}
1293907b6777SNate Lawson     }
1294907b6777SNate Lawson 
1295907b6777SNate Lawson     /* Reset the statistics counters. */
1296907b6777SNate Lawson     bzero(sc->cpu_cx_stats, sizeof(sc->cpu_cx_stats));
1297b13cf774SNate Lawson     return (0);
1298b13cf774SNate Lawson }
1299b13cf774SNate Lawson 
1300b13cf774SNate Lawson static int
1301b13cf774SNate Lawson acpi_cpu_cx_lowest_sysctl(SYSCTL_HANDLER_ARGS)
1302b13cf774SNate Lawson {
1303b13cf774SNate Lawson     struct	 acpi_cpu_softc *sc;
1304b13cf774SNate Lawson     char	 state[8];
1305b13cf774SNate Lawson     int		 val, error;
1306b13cf774SNate Lawson 
1307b13cf774SNate Lawson     sc = (struct acpi_cpu_softc *) arg1;
1308d30b88afSAndriy Gapon     snprintf(state, sizeof(state), "C%d", sc->cpu_cx_lowest_lim + 1);
1309b13cf774SNate Lawson     error = sysctl_handle_string(oidp, state, sizeof(state), req);
1310b13cf774SNate Lawson     if (error != 0 || req->newptr == NULL)
1311b13cf774SNate Lawson 	return (error);
1312b13cf774SNate Lawson     if (strlen(state) < 2 || toupper(state[0]) != 'C')
1313b13cf774SNate Lawson 	return (EINVAL);
1314d30b88afSAndriy Gapon     if (strcasecmp(state, "Cmax") == 0)
1315d30b88afSAndriy Gapon 	val = MAX_CX_STATES;
1316d30b88afSAndriy Gapon     else {
1317d30b88afSAndriy Gapon 	val = (int) strtol(state + 1, NULL, 10);
1318d30b88afSAndriy Gapon 	if (val < 1 || val > MAX_CX_STATES)
1319b13cf774SNate Lawson 	    return (EINVAL);
1320d30b88afSAndriy Gapon     }
1321b13cf774SNate Lawson 
1322b13cf774SNate Lawson     ACPI_SERIAL_BEGIN(cpu);
1323d30b88afSAndriy Gapon     sc->cpu_cx_lowest_lim = val - 1;
1324d30b88afSAndriy Gapon     acpi_cpu_set_cx_lowest(sc);
1325907b6777SNate Lawson     ACPI_SERIAL_END(cpu);
1326907b6777SNate Lawson 
132755fb7f36SSean Bruno     return (0);
1328907b6777SNate Lawson }
1329907b6777SNate Lawson 
1330907b6777SNate Lawson static int
1331907b6777SNate Lawson acpi_cpu_global_cx_lowest_sysctl(SYSCTL_HANDLER_ARGS)
1332907b6777SNate Lawson {
1333907b6777SNate Lawson     struct	acpi_cpu_softc *sc;
1334907b6777SNate Lawson     char	state[8];
1335b13cf774SNate Lawson     int		val, error, i;
1336907b6777SNate Lawson 
1337d30b88afSAndriy Gapon     snprintf(state, sizeof(state), "C%d", cpu_cx_lowest_lim + 1);
1338ccc09458SNate Lawson     error = sysctl_handle_string(oidp, state, sizeof(state), req);
13396b74f9b7SNate Lawson     if (error != 0 || req->newptr == NULL)
13406b74f9b7SNate Lawson 	return (error);
1341ccc09458SNate Lawson     if (strlen(state) < 2 || toupper(state[0]) != 'C')
1342ccc09458SNate Lawson 	return (EINVAL);
1343d30b88afSAndriy Gapon     if (strcasecmp(state, "Cmax") == 0)
1344d30b88afSAndriy Gapon 	val = MAX_CX_STATES;
1345d30b88afSAndriy Gapon     else {
1346d30b88afSAndriy Gapon 	val = (int) strtol(state + 1, NULL, 10);
1347d30b88afSAndriy Gapon 	if (val < 1 || val > MAX_CX_STATES)
13486b74f9b7SNate Lawson 	    return (EINVAL);
1349d30b88afSAndriy Gapon     }
13506b74f9b7SNate Lawson 
1351b13cf774SNate Lawson     /* Update the new lowest useable Cx state for all CPUs. */
1352907b6777SNate Lawson     ACPI_SERIAL_BEGIN(cpu);
1353d30b88afSAndriy Gapon     cpu_cx_lowest_lim = val - 1;
1354907b6777SNate Lawson     for (i = 0; i < cpu_ndevices; i++) {
1355907b6777SNate Lawson 	sc = device_get_softc(cpu_devices[i]);
1356d30b88afSAndriy Gapon 	sc->cpu_cx_lowest_lim = cpu_cx_lowest_lim;
1357d30b88afSAndriy Gapon 	acpi_cpu_set_cx_lowest(sc);
1358907b6777SNate Lawson     }
1359d92a2ebdSNate Lawson     ACPI_SERIAL_END(cpu);
13606b74f9b7SNate Lawson 
13616b74f9b7SNate Lawson     return (0);
13626b74f9b7SNate Lawson }
1363