sleep.c 32.1 KB
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/*
 * sleep.c - ACPI sleep support.
 *
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 * Copyright (c) 2005 Alexey Starikovskiy <alexey.y.starikovskiy@intel.com>
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 * Copyright (c) 2004 David Shaohua Li <shaohua.li@intel.com>
 * Copyright (c) 2000-2003 Patrick Mochel
 * Copyright (c) 2003 Open Source Development Lab
 *
 * This file is released under the GPLv2.
 *
 */

#include <linux/delay.h>
#include <linux/irq.h>
#include <linux/dmi.h>
#include <linux/device.h>
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#include <linux/interrupt.h>
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#include <linux/suspend.h>
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#include <linux/reboot.h>
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#include <linux/acpi.h>
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#include <linux/module.h>
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#include <linux/syscore_ops.h>
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#include <asm/io.h>
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#include <trace/events/power.h>
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#include "internal.h"
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#include "sleep.h"

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/*
 * Some HW-full platforms do not have _S5, so they may need
 * to leverage efi power off for a shutdown.
 */
bool acpi_no_s5;
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static u8 sleep_states[ACPI_S_STATE_COUNT];
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static void acpi_sleep_tts_switch(u32 acpi_state)
{
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	acpi_status status;
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	status = acpi_execute_simple_method(NULL, "\\_TTS", acpi_state);
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	if (ACPI_FAILURE(status) && status != AE_NOT_FOUND) {
		/*
		 * OS can't evaluate the _TTS object correctly. Some warning
		 * message will be printed. But it won't break anything.
		 */
		printk(KERN_NOTICE "Failure in evaluating _TTS object\n");
	}
}

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static int tts_notify_reboot(struct notifier_block *this,
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			unsigned long code, void *x)
{
	acpi_sleep_tts_switch(ACPI_STATE_S5);
	return NOTIFY_DONE;
}

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static struct notifier_block tts_notifier = {
	.notifier_call	= tts_notify_reboot,
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	.next		= NULL,
	.priority	= 0,
};

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static int acpi_sleep_prepare(u32 acpi_state)
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{
#ifdef CONFIG_ACPI_SLEEP
	/* do we have a wakeup address for S2 and S3? */
	if (acpi_state == ACPI_STATE_S3) {
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		if (!acpi_wakeup_address)
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			return -EFAULT;
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		acpi_set_waking_vector(acpi_wakeup_address);
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	}
	ACPI_FLUSH_CPU_CACHE();
#endif
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	printk(KERN_INFO PREFIX "Preparing to enter system sleep state S%d\n",
		acpi_state);
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	acpi_enable_wakeup_devices(acpi_state);
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	acpi_enter_sleep_state_prep(acpi_state);
	return 0;
}

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static bool acpi_sleep_state_supported(u8 sleep_state)
{
	acpi_status status;
	u8 type_a, type_b;

	status = acpi_get_sleep_type_data(sleep_state, &type_a, &type_b);
	return ACPI_SUCCESS(status) && (!acpi_gbl_reduced_hardware
		|| (acpi_gbl_FADT.sleep_control.address
			&& acpi_gbl_FADT.sleep_status.address));
}

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#ifdef CONFIG_ACPI_SLEEP
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static u32 acpi_target_sleep_state = ACPI_STATE_S0;
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u32 acpi_target_system_state(void)
{
	return acpi_target_sleep_state;
}
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EXPORT_SYMBOL_GPL(acpi_target_system_state);
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static bool pwr_btn_event_pending;
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/*
 * The ACPI specification wants us to save NVS memory regions during hibernation
 * and to restore them during the subsequent resume.  Windows does that also for
 * suspend to RAM.  However, it is known that this mechanism does not work on
 * all machines, so we allow the user to disable it with the help of the
 * 'acpi_sleep=nonvs' kernel command line option.
 */
static bool nvs_nosave;

void __init acpi_nvs_nosave(void)
{
	nvs_nosave = true;
}

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/*
 * The ACPI specification wants us to save NVS memory regions during hibernation
 * but says nothing about saving NVS during S3.  Not all versions of Windows
 * save NVS on S3 suspend either, and it is clear that not all systems need
 * NVS to be saved at S3 time.  To improve suspend/resume time, allow the
 * user to disable saving NVS on S3 if their system does not require it, but
 * continue to save/restore NVS for S4 as specified.
 */
static bool nvs_nosave_s3;

void __init acpi_nvs_nosave_s3(void)
{
	nvs_nosave_s3 = true;
}

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static int __init init_nvs_save_s3(const struct dmi_system_id *d)
{
	nvs_nosave_s3 = false;
	return 0;
}

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/*
 * ACPI 1.0 wants us to execute _PTS before suspending devices, so we allow the
 * user to request that behavior by using the 'acpi_old_suspend_ordering'
 * kernel command line option that causes the following variable to be set.
 */
static bool old_suspend_ordering;

void __init acpi_old_suspend_ordering(void)
{
	old_suspend_ordering = true;
}

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static int __init init_old_suspend_ordering(const struct dmi_system_id *d)
{
	acpi_old_suspend_ordering();
	return 0;
}

static int __init init_nvs_nosave(const struct dmi_system_id *d)
{
	acpi_nvs_nosave();
	return 0;
}

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static bool acpi_sleep_no_lps0;

static int __init init_no_lps0(const struct dmi_system_id *d)
{
	acpi_sleep_no_lps0 = true;
	return 0;
}

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static const struct dmi_system_id acpisleep_dmi_table[] __initconst = {
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	{
	.callback = init_old_suspend_ordering,
	.ident = "Abit KN9 (nForce4 variant)",
	.matches = {
		DMI_MATCH(DMI_BOARD_VENDOR, "http://www.abit.com.tw/"),
		DMI_MATCH(DMI_BOARD_NAME, "KN9 Series(NF-CK804)"),
		},
	},
	{
	.callback = init_old_suspend_ordering,
	.ident = "HP xw4600 Workstation",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Hewlett-Packard"),
		DMI_MATCH(DMI_PRODUCT_NAME, "HP xw4600 Workstation"),
		},
	},
	{
	.callback = init_old_suspend_ordering,
	.ident = "Asus Pundit P1-AH2 (M2N8L motherboard)",
	.matches = {
		DMI_MATCH(DMI_BOARD_VENDOR, "ASUSTek Computer INC."),
		DMI_MATCH(DMI_BOARD_NAME, "M2N8L"),
		},
	},
	{
	.callback = init_old_suspend_ordering,
	.ident = "Panasonic CF51-2L",
	.matches = {
		DMI_MATCH(DMI_BOARD_VENDOR,
				"Matsushita Electric Industrial Co.,Ltd."),
		DMI_MATCH(DMI_BOARD_NAME, "CF51-2L"),
		},
	},
	{
	.callback = init_nvs_nosave,
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	.ident = "Sony Vaio VGN-FW41E_H",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-FW41E_H"),
		},
	},
	{
	.callback = init_nvs_nosave,
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	.ident = "Sony Vaio VGN-FW21E",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-FW21E"),
		},
	},
	{
	.callback = init_nvs_nosave,
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	.ident = "Sony Vaio VGN-FW21M",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-FW21M"),
		},
	},
	{
	.callback = init_nvs_nosave,
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	.ident = "Sony Vaio VPCEB17FX",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VPCEB17FX"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Sony Vaio VGN-SR11M",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-SR11M"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Everex StepNote Series",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Everex Systems, Inc."),
		DMI_MATCH(DMI_PRODUCT_NAME, "Everex StepNote Series"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Sony Vaio VPCEB1Z1E",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VPCEB1Z1E"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Sony Vaio VGN-NW130D",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-NW130D"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Sony Vaio VPCCW29FX",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VPCCW29FX"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Averatec AV1020-ED2",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "AVERATEC"),
		DMI_MATCH(DMI_PRODUCT_NAME, "1000 Series"),
		},
	},
	{
	.callback = init_old_suspend_ordering,
	.ident = "Asus A8N-SLI DELUXE",
	.matches = {
		DMI_MATCH(DMI_BOARD_VENDOR, "ASUSTeK Computer INC."),
		DMI_MATCH(DMI_BOARD_NAME, "A8N-SLI DELUXE"),
		},
	},
	{
	.callback = init_old_suspend_ordering,
	.ident = "Asus A8N-SLI Premium",
	.matches = {
		DMI_MATCH(DMI_BOARD_VENDOR, "ASUSTeK Computer INC."),
		DMI_MATCH(DMI_BOARD_NAME, "A8N-SLI Premium"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Sony Vaio VGN-SR26GN_P",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-SR26GN_P"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Sony Vaio VPCEB1S1E",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VPCEB1S1E"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Sony Vaio VGN-FW520F",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-FW520F"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Asus K54C",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "ASUSTeK Computer Inc."),
		DMI_MATCH(DMI_PRODUCT_NAME, "K54C"),
		},
	},
	{
	.callback = init_nvs_nosave,
	.ident = "Asus K54HR",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "ASUSTeK Computer Inc."),
		DMI_MATCH(DMI_PRODUCT_NAME, "K54HR"),
		},
	},
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	{
	.callback = init_nvs_save_s3,
	.ident = "Asus 1025C",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "ASUSTeK COMPUTER INC."),
		DMI_MATCH(DMI_PRODUCT_NAME, "1025C"),
		},
	},
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	/*
	 * https://bugzilla.kernel.org/show_bug.cgi?id=189431
	 * Lenovo G50-45 is a platform later than 2012, but needs nvs memory
	 * saving during S3.
	 */
	{
	.callback = init_nvs_save_s3,
	.ident = "Lenovo G50-45",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "LENOVO"),
		DMI_MATCH(DMI_PRODUCT_NAME, "80E3"),
		},
	},
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	/*
	 * https://bugzilla.kernel.org/show_bug.cgi?id=196907
	 * Some Dell XPS13 9360 cannot do suspend-to-idle using the Low Power
	 * S0 Idle firmware interface.
	 */
	{
	.callback = init_no_lps0,
	.ident = "Dell XPS13 9360",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
		DMI_MATCH(DMI_PRODUCT_NAME, "XPS 13 9360"),
		},
	},
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	/*
	 * ThinkPad X1 Tablet(2016) cannot do suspend-to-idle using
	 * the Low Power S0 Idle firmware interface (see
	 * https://bugzilla.kernel.org/show_bug.cgi?id=199057).
	 */
	{
	.callback = init_no_lps0,
	.ident = "ThinkPad X1 Tablet(2016)",
	.matches = {
		DMI_MATCH(DMI_SYS_VENDOR, "LENOVO"),
		DMI_MATCH(DMI_PRODUCT_NAME, "20GGA00L00"),
		},
	},
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	{},
};

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static bool ignore_blacklist;

void __init acpi_sleep_no_blacklist(void)
{
	ignore_blacklist = true;
}

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static void __init acpi_sleep_dmi_check(void)
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{
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	if (ignore_blacklist)
		return;

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	if (dmi_get_bios_year() >= 2012)
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		acpi_nvs_nosave_s3();

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	dmi_check_system(acpisleep_dmi_table);
}

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/**
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 * acpi_pm_freeze - Disable the GPEs and suspend EC transactions.
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 */
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static int acpi_pm_freeze(void)
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{
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	acpi_disable_all_gpes();
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	acpi_os_wait_events_complete();
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	acpi_ec_block_transactions();
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	return 0;
}

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/**
 * acpi_pre_suspend - Enable wakeup devices, "freeze" EC and save NVS.
 */
static int acpi_pm_pre_suspend(void)
{
	acpi_pm_freeze();
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	return suspend_nvs_save();
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}

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/**
 *	__acpi_pm_prepare - Prepare the platform to enter the target state.
 *
 *	If necessary, set the firmware waking vector and do arch-specific
 *	nastiness to get the wakeup code to the waking vector.
 */
static int __acpi_pm_prepare(void)
{
	int error = acpi_sleep_prepare(acpi_target_sleep_state);
	if (error)
		acpi_target_sleep_state = ACPI_STATE_S0;
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	return error;
}

/**
 *	acpi_pm_prepare - Prepare the platform to enter the target sleep
 *		state and disable the GPEs.
 */
static int acpi_pm_prepare(void)
{
	int error = __acpi_pm_prepare();
	if (!error)
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		error = acpi_pm_pre_suspend();
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	return error;
}

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static int find_powerf_dev(struct device *dev, void *data)
{
	struct acpi_device *device = to_acpi_device(dev);
	const char *hid = acpi_device_hid(device);

	return !strcmp(hid, ACPI_BUTTON_HID_POWERF);
}

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/**
 *	acpi_pm_finish - Instruct the platform to leave a sleep state.
 *
 *	This is called after we wake back up (or if entering the sleep state
 *	failed).
 */
static void acpi_pm_finish(void)
{
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	struct device *pwr_btn_dev;
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	u32 acpi_state = acpi_target_sleep_state;

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	acpi_ec_unblock_transactions();
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	suspend_nvs_free();
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	if (acpi_state == ACPI_STATE_S0)
		return;
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	printk(KERN_INFO PREFIX "Waking up from system sleep state S%d\n",
		acpi_state);
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	acpi_disable_wakeup_devices(acpi_state);
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	acpi_leave_sleep_state(acpi_state);

	/* reset firmware waking vector */
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	acpi_set_waking_vector(0);
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	acpi_target_sleep_state = ACPI_STATE_S0;
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	acpi_resume_power_resources();

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	/* If we were woken with the fixed power button, provide a small
	 * hint to userspace in the form of a wakeup event on the fixed power
	 * button device (if it can be found).
	 *
	 * We delay the event generation til now, as the PM layer requires
	 * timekeeping to be running before we generate events. */
	if (!pwr_btn_event_pending)
		return;

	pwr_btn_event_pending = false;
	pwr_btn_dev = bus_find_device(&acpi_bus_type, NULL, NULL,
				      find_powerf_dev);
	if (pwr_btn_dev) {
		pm_wakeup_event(pwr_btn_dev, 0);
		put_device(pwr_btn_dev);
	}
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}

/**
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 * acpi_pm_start - Start system PM transition.
 */
static void acpi_pm_start(u32 acpi_state)
{
	acpi_target_sleep_state = acpi_state;
	acpi_sleep_tts_switch(acpi_target_sleep_state);
	acpi_scan_lock_acquire();
}

/**
 * acpi_pm_end - Finish up system PM transition.
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 */
static void acpi_pm_end(void)
{
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	acpi_turn_off_unused_power_resources();
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	acpi_scan_lock_release();
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	/*
	 * This is necessary in case acpi_pm_finish() is not called during a
	 * failing transition to a sleep state.
	 */
	acpi_target_sleep_state = ACPI_STATE_S0;
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	acpi_sleep_tts_switch(acpi_target_sleep_state);
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}
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#else /* !CONFIG_ACPI_SLEEP */
#define acpi_target_sleep_state	ACPI_STATE_S0
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#define acpi_sleep_no_lps0	(false)
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static inline void acpi_sleep_dmi_check(void) {}
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#endif /* CONFIG_ACPI_SLEEP */
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#ifdef CONFIG_SUSPEND
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static u32 acpi_suspend_states[] = {
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	[PM_SUSPEND_ON] = ACPI_STATE_S0,
	[PM_SUSPEND_STANDBY] = ACPI_STATE_S1,
	[PM_SUSPEND_MEM] = ACPI_STATE_S3,
	[PM_SUSPEND_MAX] = ACPI_STATE_S5
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};

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/**
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 *	acpi_suspend_begin - Set the target system sleep state to the state
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 *		associated with given @pm_state, if supported.
 */
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static int acpi_suspend_begin(suspend_state_t pm_state)
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{
	u32 acpi_state = acpi_suspend_states[pm_state];
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	int error;
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	error = (nvs_nosave || nvs_nosave_s3) ? 0 : suspend_nvs_alloc();
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	if (error)
		return error;

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	if (!sleep_states[acpi_state]) {
		pr_err("ACPI does not support sleep state S%u\n", acpi_state);
		return -ENOSYS;
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	}
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	if (acpi_state > ACPI_STATE_S1)
		pm_set_suspend_via_firmware();
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	acpi_pm_start(acpi_state);
	return 0;
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}

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/**
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 *	acpi_suspend_enter - Actually enter a sleep state.
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 *	@pm_state: ignored
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 *
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 *	Flush caches and go to sleep. For STR we have to call arch-specific
 *	assembly, which in turn call acpi_enter_sleep_state().
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 *	It's unfortunate, but it works. Please fix if you're feeling frisky.
 */
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static int acpi_suspend_enter(suspend_state_t pm_state)
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{
	acpi_status status = AE_OK;
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	u32 acpi_state = acpi_target_sleep_state;
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	int error;
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	ACPI_FLUSH_CPU_CACHE();

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	trace_suspend_resume(TPS("acpi_suspend"), acpi_state, true);
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	switch (acpi_state) {
	case ACPI_STATE_S1:
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		barrier();
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		status = acpi_enter_sleep_state(acpi_state);
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		break;

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	case ACPI_STATE_S3:
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		if (!acpi_suspend_lowlevel)
			return -ENOSYS;
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		error = acpi_suspend_lowlevel();
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		if (error)
			return error;
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		pr_info(PREFIX "Low-level resume complete\n");
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		pm_set_resume_via_firmware();
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		break;
	}
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	trace_suspend_resume(TPS("acpi_suspend"), acpi_state, false);
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	/* This violates the spec but is required for bug compatibility. */
	acpi_write_bit_register(ACPI_BITREG_SCI_ENABLE, 1);
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	/* Reprogram control registers */
	acpi_leave_sleep_state_prep(acpi_state);
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	/* ACPI 3.0 specs (P62) says that it's the responsibility
616 617
	 * of the OSPM to clear the status bit [ implying that the
	 * POWER_BUTTON event should not reach userspace ]
618 619 620 621 622
	 *
	 * However, we do generate a small hint for userspace in the form of
	 * a wakeup event. We flag this condition for now and generate the
	 * event later, as we're currently too early in resume to be able to
	 * generate wakeup events.
623
	 */
624
	if (ACPI_SUCCESS(status) && (acpi_state == ACPI_STATE_S3)) {
625
		acpi_event_status pwr_btn_status = ACPI_EVENT_FLAG_DISABLED;
626 627 628

		acpi_get_event_status(ACPI_EVENT_POWER_BUTTON, &pwr_btn_status);

629
		if (pwr_btn_status & ACPI_EVENT_FLAG_STATUS_SET) {
630 631 632 633 634
			acpi_clear_event(ACPI_EVENT_POWER_BUTTON);
			/* Flag for later */
			pwr_btn_event_pending = true;
		}
	}
635

636 637 638 639 640
	/*
	 * Disable and clear GPE status before interrupt is enabled. Some GPEs
	 * (like wakeup GPE) haven't handler, this can avoid such GPE misfire.
	 * acpi_leave_sleep_state will reenable specific GPEs later
	 */
641
	acpi_disable_all_gpes();
642
	/* Allow EC transactions to happen. */
643
	acpi_ec_unblock_transactions();
644

645 646
	suspend_nvs_restore();

L
Linus Torvalds 已提交
647 648 649
	return ACPI_SUCCESS(status) ? 0 : -EFAULT;
}

650
static int acpi_suspend_state_valid(suspend_state_t pm_state)
651
{
652
	u32 acpi_state;
653

654 655 656 657 658 659 660 661 662 663
	switch (pm_state) {
	case PM_SUSPEND_ON:
	case PM_SUSPEND_STANDBY:
	case PM_SUSPEND_MEM:
		acpi_state = acpi_suspend_states[pm_state];

		return sleep_states[acpi_state];
	default:
		return 0;
	}
664 665
}

666
static const struct platform_suspend_ops acpi_suspend_ops = {
667 668
	.valid = acpi_suspend_state_valid,
	.begin = acpi_suspend_begin,
669
	.prepare_late = acpi_pm_prepare,
670
	.enter = acpi_suspend_enter,
671
	.wake = acpi_pm_finish,
672 673 674 675 676 677 678 679 680 681 682 683 684 685
	.end = acpi_pm_end,
};

/**
 *	acpi_suspend_begin_old - Set the target system sleep state to the
 *		state associated with given @pm_state, if supported, and
 *		execute the _PTS control method.  This function is used if the
 *		pre-ACPI 2.0 suspend ordering has been requested.
 */
static int acpi_suspend_begin_old(suspend_state_t pm_state)
{
	int error = acpi_suspend_begin(pm_state);
	if (!error)
		error = __acpi_pm_prepare();
686

687 688 689 690 691 692 693
	return error;
}

/*
 * The following callbacks are used if the pre-ACPI 2.0 suspend ordering has
 * been requested.
 */
694
static const struct platform_suspend_ops acpi_suspend_ops_old = {
695 696
	.valid = acpi_suspend_state_valid,
	.begin = acpi_suspend_begin_old,
697
	.prepare_late = acpi_pm_pre_suspend,
698
	.enter = acpi_suspend_enter,
699
	.wake = acpi_pm_finish,
700 701
	.end = acpi_pm_end,
	.recover = acpi_pm_finish,
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Linus Torvalds 已提交
702
};
703

704
static bool s2idle_in_progress;
705 706
static bool s2idle_wakeup;

707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722
/*
 * On platforms supporting the Low Power S0 Idle interface there is an ACPI
 * device object with the PNP0D80 compatible device ID (System Power Management
 * Controller) and a specific _DSM method under it.  That method, if present,
 * can be used to indicate to the platform that the OS is transitioning into a
 * low-power state in which certain types of activity are not desirable or that
 * it is leaving such a state, which allows the platform to adjust its operation
 * mode accordingly.
 */
static const struct acpi_device_id lps0_device_ids[] = {
	{"PNP0D80", },
	{"", },
};

#define ACPI_LPS0_DSM_UUID	"c4eb40a0-6cd2-11e2-bcfd-0800200c9a66"

723
#define ACPI_LPS0_GET_DEVICE_CONSTRAINTS	1
724 725 726 727 728 729 730 731 732
#define ACPI_LPS0_SCREEN_OFF	3
#define ACPI_LPS0_SCREEN_ON	4
#define ACPI_LPS0_ENTRY		5
#define ACPI_LPS0_EXIT		6

static acpi_handle lps0_device_handle;
static guid_t lps0_dsm_guid;
static char lps0_dsm_func_mask;

733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869
/* Device constraint entry structure */
struct lpi_device_info {
	char *name;
	int enabled;
	union acpi_object *package;
};

/* Constraint package structure */
struct lpi_device_constraint {
	int uid;
	int min_dstate;
	int function_states;
};

struct lpi_constraints {
	acpi_handle handle;
	int min_dstate;
};

static struct lpi_constraints *lpi_constraints_table;
static int lpi_constraints_table_size;

static void lpi_device_get_constraints(void)
{
	union acpi_object *out_obj;
	int i;

	out_obj = acpi_evaluate_dsm_typed(lps0_device_handle, &lps0_dsm_guid,
					  1, ACPI_LPS0_GET_DEVICE_CONSTRAINTS,
					  NULL, ACPI_TYPE_PACKAGE);

	acpi_handle_debug(lps0_device_handle, "_DSM function 1 eval %s\n",
			  out_obj ? "successful" : "failed");

	if (!out_obj)
		return;

	lpi_constraints_table = kcalloc(out_obj->package.count,
					sizeof(*lpi_constraints_table),
					GFP_KERNEL);
	if (!lpi_constraints_table)
		goto free_acpi_buffer;

	acpi_handle_debug(lps0_device_handle, "LPI: constraints list begin:\n");

	for (i = 0; i < out_obj->package.count; i++) {
		struct lpi_constraints *constraint;
		acpi_status status;
		union acpi_object *package = &out_obj->package.elements[i];
		struct lpi_device_info info = { };
		int package_count = 0, j;

		if (!package)
			continue;

		for (j = 0; j < package->package.count; ++j) {
			union acpi_object *element =
					&(package->package.elements[j]);

			switch (element->type) {
			case ACPI_TYPE_INTEGER:
				info.enabled = element->integer.value;
				break;
			case ACPI_TYPE_STRING:
				info.name = element->string.pointer;
				break;
			case ACPI_TYPE_PACKAGE:
				package_count = element->package.count;
				info.package = element->package.elements;
				break;
			}
		}

		if (!info.enabled || !info.package || !info.name)
			continue;

		constraint = &lpi_constraints_table[lpi_constraints_table_size];

		status = acpi_get_handle(NULL, info.name, &constraint->handle);
		if (ACPI_FAILURE(status))
			continue;

		acpi_handle_debug(lps0_device_handle,
				  "index:%d Name:%s\n", i, info.name);

		constraint->min_dstate = -1;

		for (j = 0; j < package_count; ++j) {
			union acpi_object *info_obj = &info.package[j];
			union acpi_object *cnstr_pkg;
			union acpi_object *obj;
			struct lpi_device_constraint dev_info;

			switch (info_obj->type) {
			case ACPI_TYPE_INTEGER:
				/* version */
				break;
			case ACPI_TYPE_PACKAGE:
				if (info_obj->package.count < 2)
					break;

				cnstr_pkg = info_obj->package.elements;
				obj = &cnstr_pkg[0];
				dev_info.uid = obj->integer.value;
				obj = &cnstr_pkg[1];
				dev_info.min_dstate = obj->integer.value;

				acpi_handle_debug(lps0_device_handle,
					"uid:%d min_dstate:%s\n",
					dev_info.uid,
					acpi_power_state_string(dev_info.min_dstate));

				constraint->min_dstate = dev_info.min_dstate;
				break;
			}
		}

		if (constraint->min_dstate < 0) {
			acpi_handle_debug(lps0_device_handle,
					  "Incomplete constraint defined\n");
			continue;
		}

		lpi_constraints_table_size++;
	}

	acpi_handle_debug(lps0_device_handle, "LPI: constraints list end\n");

free_acpi_buffer:
	ACPI_FREE(out_obj);
}

static void lpi_check_constraints(void)
{
	int i;

	for (i = 0; i < lpi_constraints_table_size; ++i) {
870
		acpi_handle handle = lpi_constraints_table[i].handle;
871 872
		struct acpi_device *adev;

873
		if (!handle || acpi_bus_get_device(handle, &adev))
874 875
			continue;

876
		acpi_handle_debug(handle,
877 878 879 880 881
			"LPI: required min power state:%s current power state:%s\n",
			acpi_power_state_string(lpi_constraints_table[i].min_dstate),
			acpi_power_state_string(adev->power.state));

		if (!adev->flags.power_manageable) {
882 883
			acpi_handle_info(handle, "LPI: Device not power manageable\n");
			lpi_constraints_table[i].handle = NULL;
884 885 886 887
			continue;
		}

		if (adev->power.state < lpi_constraints_table[i].min_dstate)
888
			acpi_handle_info(handle,
889 890 891 892 893 894
				"LPI: Constraint not met; min power state:%s current power state:%s\n",
				acpi_power_state_string(lpi_constraints_table[i].min_dstate),
				acpi_power_state_string(adev->power.state));
	}
}

895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916
static void acpi_sleep_run_lps0_dsm(unsigned int func)
{
	union acpi_object *out_obj;

	if (!(lps0_dsm_func_mask & (1 << func)))
		return;

	out_obj = acpi_evaluate_dsm(lps0_device_handle, &lps0_dsm_guid, 1, func, NULL);
	ACPI_FREE(out_obj);

	acpi_handle_debug(lps0_device_handle, "_DSM function %u evaluation %s\n",
			  func, out_obj ? "successful" : "failed");
}

static int lps0_device_attach(struct acpi_device *adev,
			      const struct acpi_device_id *not_used)
{
	union acpi_object *out_obj;

	if (lps0_device_handle)
		return 0;

917 918 919 920 921 922
	if (acpi_sleep_no_lps0) {
		acpi_handle_info(adev->handle,
				 "Low Power S0 Idle interface disabled\n");
		return 0;
	}

923 924 925 926 927 928 929 930 931
	if (!(acpi_gbl_FADT.flags & ACPI_FADT_LOW_POWER_S0))
		return 0;

	guid_parse(ACPI_LPS0_DSM_UUID, &lps0_dsm_guid);
	/* Check if the _DSM is present and as expected. */
	out_obj = acpi_evaluate_dsm(adev->handle, &lps0_dsm_guid, 1, 0, NULL);
	if (out_obj && out_obj->type == ACPI_TYPE_BUFFER) {
		char bitmask = *(char *)out_obj->buffer.pointer;

932 933 934 935 936 937 938 939
		lps0_dsm_func_mask = bitmask;
		lps0_device_handle = adev->handle;
		/*
		 * Use suspend-to-idle by default if the default
		 * suspend mode was not set from the command line.
		 */
		if (mem_sleep_default > PM_SUSPEND_MEM)
			mem_sleep_current = PM_SUSPEND_TO_IDLE;
940 941 942

		acpi_handle_debug(adev->handle, "_DSM function mask: 0x%x\n",
				  bitmask);
943 944

		acpi_ec_mark_gpe_for_wake();
945 946 947 948 949
	} else {
		acpi_handle_debug(adev->handle,
				  "_DSM function 0 evaluation failed\n");
	}
	ACPI_FREE(out_obj);
950 951 952

	lpi_device_get_constraints();

953 954 955 956 957 958 959 960
	return 0;
}

static struct acpi_scan_handler lps0_handler = {
	.ids = lps0_device_ids,
	.attach = lps0_device_attach,
};

961
static int acpi_s2idle_begin(void)
962 963
{
	acpi_scan_lock_acquire();
964
	s2idle_in_progress = true;
965 966 967
	return 0;
}

968
static int acpi_s2idle_prepare(void)
969
{
970 971 972
	if (lps0_device_handle) {
		acpi_sleep_run_lps0_dsm(ACPI_LPS0_SCREEN_OFF);
		acpi_sleep_run_lps0_dsm(ACPI_LPS0_ENTRY);
973 974

		acpi_ec_set_gpe_wake_mask(ACPI_GPE_ENABLE);
975
	}
976

977 978
	if (acpi_sci_irq_valid())
		enable_irq_wake(acpi_sci_irq);
979

980 981
	acpi_enable_wakeup_devices(ACPI_STATE_S0);

982 983 984
	/* Change the configuration of GPEs to avoid spurious wakeup. */
	acpi_enable_all_wakeup_gpes();
	acpi_os_wait_events_complete();
985 986 987
	return 0;
}

988
static void acpi_s2idle_wake(void)
989
{
990 991
	if (!lps0_device_handle)
		return;
992 993 994 995

	if (pm_debug_messages_on)
		lpi_check_constraints();

996 997 998 999 1000 1001 1002 1003 1004
	/*
	 * If IRQD_WAKEUP_ARMED is not set for the SCI at this point, it means
	 * that the SCI has triggered while suspended, so cancel the wakeup in
	 * case it has not been a wakeup event (the GPEs will be checked later).
	 */
	if (acpi_sci_irq_valid() &&
	    !irqd_is_wakeup_armed(irq_get_irq_data(acpi_sci_irq))) {
		pm_system_cancel_wakeup();
		s2idle_wakeup = true;
1005 1006 1007 1008 1009
		/*
		 * On some platforms with the LPS0 _DSM device noirq resume
		 * takes too much time for EC wakeup events to survive, so look
		 * for them now.
		 */
1010
		acpi_ec_dispatch_gpe();
1011 1012 1013
	}
}

1014
static void acpi_s2idle_sync(void)
1015 1016 1017 1018
{
	/*
	 * Process all pending events in case there are any wakeup ones.
	 *
1019 1020
	 * The EC driver uses the system workqueue and an additional special
	 * one, so those need to be flushed too.
1021
	 */
1022
	acpi_os_wait_events_complete();	/* synchronize SCI IRQ handling */
1023
	acpi_ec_flush_work();
1024
	acpi_os_wait_events_complete();	/* synchronize Notify handling */
1025 1026 1027
	s2idle_wakeup = false;
}

1028
static void acpi_s2idle_restore(void)
1029
{
1030 1031
	acpi_enable_all_runtime_gpes();

1032 1033
	acpi_disable_wakeup_devices(ACPI_STATE_S0);

1034 1035
	if (acpi_sci_irq_valid())
		disable_irq_wake(acpi_sci_irq);
1036

1037
	if (lps0_device_handle) {
1038 1039
		acpi_ec_set_gpe_wake_mask(ACPI_GPE_DISABLE);

1040 1041 1042
		acpi_sleep_run_lps0_dsm(ACPI_LPS0_EXIT);
		acpi_sleep_run_lps0_dsm(ACPI_LPS0_SCREEN_ON);
	}
1043 1044
}

1045
static void acpi_s2idle_end(void)
1046
{
1047
	s2idle_in_progress = false;
1048 1049 1050
	acpi_scan_lock_release();
}

1051 1052 1053 1054 1055 1056 1057
static const struct platform_s2idle_ops acpi_s2idle_ops = {
	.begin = acpi_s2idle_begin,
	.prepare = acpi_s2idle_prepare,
	.wake = acpi_s2idle_wake,
	.sync = acpi_s2idle_sync,
	.restore = acpi_s2idle_restore,
	.end = acpi_s2idle_end,
1058 1059
};

1060 1061 1062 1063
static void acpi_sleep_suspend_setup(void)
{
	int i;

1064 1065
	for (i = ACPI_STATE_S1; i < ACPI_STATE_S4; i++)
		if (acpi_sleep_state_supported(i))
1066 1067 1068 1069
			sleep_states[i] = 1;

	suspend_set_ops(old_suspend_ordering ?
		&acpi_suspend_ops_old : &acpi_suspend_ops);
1070 1071

	acpi_scan_add_handler(&lps0_handler);
1072
	s2idle_set_ops(&acpi_s2idle_ops);
1073
}
1074

1075
#else /* !CONFIG_SUSPEND */
1076 1077 1078
#define s2idle_in_progress	(false)
#define s2idle_wakeup		(false)
#define lps0_device_handle	(NULL)
1079 1080
static inline void acpi_sleep_suspend_setup(void) {}
#endif /* !CONFIG_SUSPEND */
1081

1082 1083 1084 1085 1086
bool acpi_s2idle_wakeup(void)
{
	return s2idle_wakeup;
}

1087 1088 1089 1090 1091
bool acpi_sleep_no_ec_events(void)
{
	return !s2idle_in_progress || !lps0_device_handle;
}

1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116
#ifdef CONFIG_PM_SLEEP
static u32 saved_bm_rld;

static int  acpi_save_bm_rld(void)
{
	acpi_read_bit_register(ACPI_BITREG_BUS_MASTER_RLD, &saved_bm_rld);
	return 0;
}

static void  acpi_restore_bm_rld(void)
{
	u32 resumed_bm_rld = 0;

	acpi_read_bit_register(ACPI_BITREG_BUS_MASTER_RLD, &resumed_bm_rld);
	if (resumed_bm_rld == saved_bm_rld)
		return;

	acpi_write_bit_register(ACPI_BITREG_BUS_MASTER_RLD, saved_bm_rld);
}

static struct syscore_ops acpi_sleep_syscore_ops = {
	.suspend = acpi_save_bm_rld,
	.resume = acpi_restore_bm_rld,
};

1117
static void acpi_sleep_syscore_init(void)
1118 1119 1120 1121 1122 1123 1124
{
	register_syscore_ops(&acpi_sleep_syscore_ops);
}
#else
static inline void acpi_sleep_syscore_init(void) {}
#endif /* CONFIG_PM_SLEEP */

1125
#ifdef CONFIG_HIBERNATION
1126 1127 1128 1129 1130 1131 1132 1133 1134
static unsigned long s4_hardware_signature;
static struct acpi_table_facs *facs;
static bool nosigcheck;

void __init acpi_no_s4_hw_signature(void)
{
	nosigcheck = true;
}

1135
static int acpi_hibernation_begin(pm_message_t stage)
1136
{
1137 1138 1139 1140 1141
	if (!nvs_nosave) {
		int error = suspend_nvs_alloc();
		if (error)
			return error;
	}
1142

1143 1144
	if (stage.event == PM_EVENT_HIBERNATE)
		pm_set_suspend_via_firmware();
1145

1146 1147
	acpi_pm_start(ACPI_STATE_S4);
	return 0;
1148 1149
}

1150 1151 1152 1153 1154 1155 1156
static int acpi_hibernation_enter(void)
{
	acpi_status status = AE_OK;

	ACPI_FLUSH_CPU_CACHE();

	/* This shouldn't return.  If it returns, we have a problem */
L
Len Brown 已提交
1157 1158 1159
	status = acpi_enter_sleep_state(ACPI_STATE_S4);
	/* Reprogram control registers */
	acpi_leave_sleep_state_prep(ACPI_STATE_S4);
1160 1161 1162 1163

	return ACPI_SUCCESS(status) ? 0 : -EFAULT;
}

1164 1165
static void acpi_hibernation_leave(void)
{
1166
	pm_set_resume_via_firmware();
1167 1168 1169 1170 1171
	/*
	 * If ACPI is not enabled by the BIOS and the boot kernel, we need to
	 * enable it here.
	 */
	acpi_enable();
L
Len Brown 已提交
1172 1173
	/* Reprogram control registers */
	acpi_leave_sleep_state_prep(ACPI_STATE_S4);
1174
	/* Check the hardware signature */
1175 1176
	if (facs && s4_hardware_signature != facs->hardware_signature)
		pr_crit("ACPI: Hardware changed while hibernated, success doubtful!\n");
1177
	/* Restore the NVS memory area */
1178
	suspend_nvs_restore();
1179
	/* Allow EC transactions to happen. */
1180
	acpi_ec_unblock_transactions();
1181 1182
}

1183
static void acpi_pm_thaw(void)
1184
{
1185
	acpi_ec_unblock_transactions();
1186
	acpi_enable_all_runtime_gpes();
1187 1188
}

1189
static const struct platform_hibernation_ops acpi_hibernation_ops = {
1190 1191
	.begin = acpi_hibernation_begin,
	.end = acpi_pm_end,
1192
	.pre_snapshot = acpi_pm_prepare,
1193
	.finish = acpi_pm_finish,
1194 1195 1196
	.prepare = acpi_pm_prepare,
	.enter = acpi_hibernation_enter,
	.leave = acpi_hibernation_leave,
1197 1198
	.pre_restore = acpi_pm_freeze,
	.restore_cleanup = acpi_pm_thaw,
1199
};
1200

1201 1202 1203 1204 1205 1206
/**
 *	acpi_hibernation_begin_old - Set the target system sleep state to
 *		ACPI_STATE_S4 and execute the _PTS control method.  This
 *		function is used if the pre-ACPI 2.0 suspend ordering has been
 *		requested.
 */
1207
static int acpi_hibernation_begin_old(pm_message_t stage)
1208
{
Z
Zhao Yakui 已提交
1209 1210 1211 1212 1213 1214 1215 1216 1217
	int error;
	/*
	 * The _TTS object should always be evaluated before the _PTS object.
	 * When the old_suspended_ordering is true, the _PTS object is
	 * evaluated in the acpi_sleep_prepare.
	 */
	acpi_sleep_tts_switch(ACPI_STATE_S4);

	error = acpi_sleep_prepare(ACPI_STATE_S4);
1218 1219
	if (error)
		return error;
1220

1221 1222 1223 1224
	if (!nvs_nosave) {
		error = suspend_nvs_alloc();
		if (error)
			return error;
1225
	}
1226 1227 1228 1229 1230 1231 1232

	if (stage.event == PM_EVENT_HIBERNATE)
		pm_set_suspend_via_firmware();

	acpi_target_sleep_state = ACPI_STATE_S4;
	acpi_scan_lock_acquire();
	return 0;
1233 1234
}

1235 1236 1237 1238
/*
 * The following callbacks are used if the pre-ACPI 2.0 suspend ordering has
 * been requested.
 */
1239
static const struct platform_hibernation_ops acpi_hibernation_ops_old = {
1240 1241
	.begin = acpi_hibernation_begin_old,
	.end = acpi_pm_end,
1242
	.pre_snapshot = acpi_pm_pre_suspend,
1243
	.prepare = acpi_pm_freeze,
1244
	.finish = acpi_pm_finish,
1245
	.enter = acpi_hibernation_enter,
1246
	.leave = acpi_hibernation_leave,
1247 1248
	.pre_restore = acpi_pm_freeze,
	.restore_cleanup = acpi_pm_thaw,
1249
	.recover = acpi_pm_finish,
1250
};
1251 1252 1253

static void acpi_sleep_hibernate_setup(void)
{
1254
	if (!acpi_sleep_state_supported(ACPI_STATE_S4))
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		return;

	hibernation_set_ops(old_suspend_ordering ?
			&acpi_hibernation_ops_old : &acpi_hibernation_ops);
	sleep_states[ACPI_STATE_S4] = 1;
	if (nosigcheck)
		return;

	acpi_get_table(ACPI_SIG_FACS, 1, (struct acpi_table_header **)&facs);
	if (facs)
		s4_hardware_signature = facs->hardware_signature;
}
#else /* !CONFIG_HIBERNATION */
static inline void acpi_sleep_hibernate_setup(void) {}
#endif /* !CONFIG_HIBERNATION */
1270

1271 1272 1273 1274
static void acpi_power_off_prepare(void)
{
	/* Prepare to power off the system */
	acpi_sleep_prepare(ACPI_STATE_S5);
1275
	acpi_disable_all_gpes();
1276
	acpi_os_wait_events_complete();
1277 1278 1279 1280 1281
}

static void acpi_power_off(void)
{
	/* acpi_sleep_prepare(ACPI_STATE_S5) should have already been called */
1282
	printk(KERN_DEBUG "%s called\n", __func__);
1283
	local_irq_disable();
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	acpi_enter_sleep_state(ACPI_STATE_S5);
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}

1287
int __init acpi_sleep_init(void)
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{
1289 1290 1291
	char supported[ACPI_S_STATE_COUNT * 3 + 1];
	char *pos = supported;
	int i;
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1293 1294
	acpi_sleep_dmi_check();

1295 1296
	sleep_states[ACPI_STATE_S0] = 1;

1297
	acpi_sleep_syscore_init();
1298 1299
	acpi_sleep_suspend_setup();
	acpi_sleep_hibernate_setup();
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1301
	if (acpi_sleep_state_supported(ACPI_STATE_S5)) {
1302 1303 1304
		sleep_states[ACPI_STATE_S5] = 1;
		pm_power_off_prepare = acpi_power_off_prepare;
		pm_power_off = acpi_power_off;
1305 1306
	} else {
		acpi_no_s5 = true;
1307
	}
1308 1309 1310 1311 1312 1313 1314 1315

	supported[0] = 0;
	for (i = 0; i < ACPI_S_STATE_COUNT; i++) {
		if (sleep_states[i])
			pos += sprintf(pos, " S%d", i);
	}
	pr_info(PREFIX "(supports%s)\n", supported);

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	/*
1317 1318
	 * Register the tts_notifier to reboot notifier list so that the _TTS
	 * object can also be evaluated when the system enters S5.
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1319
	 */
1320
	register_reboot_notifier(&tts_notifier);
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	return 0;
}