xref: /openbmc/linux/drivers/acpi/x86/utils.c (revision 2d42aacea8cb20a1bbc88568c01990df5d24f99c)
1d2912cb1SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
2b7ecf663SHans de Goede /*
3b7ecf663SHans de Goede  * X86 ACPI Utility Functions
4b7ecf663SHans de Goede  *
5b7ecf663SHans de Goede  * Copyright (C) 2017 Hans de Goede <hdegoede@redhat.com>
6b7ecf663SHans de Goede  *
7b7ecf663SHans de Goede  * Based on various non upstream patches to support the CHT Whiskey Cove PMIC:
8b7ecf663SHans de Goede  * Copyright (C) 2013-2015 Intel Corporation. All rights reserved.
9b7ecf663SHans de Goede  */
10b7ecf663SHans de Goede 
1157a18322SHans de Goede #define pr_fmt(fmt) "ACPI: " fmt
1257a18322SHans de Goede 
13b7ecf663SHans de Goede #include <linux/acpi.h>
143b6a70beSHans de Goede #include <linux/dmi.h>
1535f9e773SHans de Goede #include <linux/platform_device.h>
16b7ecf663SHans de Goede #include <asm/cpu_device_id.h>
17b7ecf663SHans de Goede #include <asm/intel-family.h>
18b7ecf663SHans de Goede #include "../internal.h"
19b7ecf663SHans de Goede 
20b7ecf663SHans de Goede /*
21b7ecf663SHans de Goede  * Some ACPI devices are hidden (status == 0x0) in recent BIOS-es because
22b7ecf663SHans de Goede  * some recent Windows drivers bind to one device but poke at multiple
23b7ecf663SHans de Goede  * devices at the same time, so the others get hidden.
243b6a70beSHans de Goede  *
253b6a70beSHans de Goede  * Some BIOS-es (temporarily) hide specific APCI devices to work around Windows
263b6a70beSHans de Goede  * driver bugs. We use DMI matching to match known cases of this.
273b6a70beSHans de Goede  *
281a68b346SHans de Goede  * Likewise sometimes some not-actually present devices are sometimes
291a68b346SHans de Goede  * reported as present, which may cause issues.
30b7ecf663SHans de Goede  *
311a68b346SHans de Goede  * We work around this by using the below quirk list to override the status
321a68b346SHans de Goede  * reported by the _STA method with a fixed value (ACPI_STA_DEFAULT or 0).
331a68b346SHans de Goede  * Note this MUST only be done for devices where this is safe.
341a68b346SHans de Goede  *
351a68b346SHans de Goede  * This status overriding is limited to specific CPU (SoC) models both to
361a68b346SHans de Goede  * avoid potentially causing trouble on other models and because some HIDs
371a68b346SHans de Goede  * are re-used on different SoCs for completely different devices.
38b7ecf663SHans de Goede  */
391a68b346SHans de Goede struct override_status_id {
40b7ecf663SHans de Goede 	struct acpi_device_id hid[2];
41b7ecf663SHans de Goede 	struct x86_cpu_id cpu_ids[2];
423b6a70beSHans de Goede 	struct dmi_system_id dmi_ids[2]; /* Optional */
43b7ecf663SHans de Goede 	const char *uid;
44ba46e42eSHans de Goede 	const char *path;
451a68b346SHans de Goede 	unsigned long long status;
46b7ecf663SHans de Goede };
47b7ecf663SHans de Goede 
48ba46e42eSHans de Goede #define ENTRY(status, hid, uid, path, cpu_model, dmi...) {		\
49b7ecf663SHans de Goede 	{ { hid, }, {} },						\
501a68b346SHans de Goede 	{ X86_MATCH_INTEL_FAM6_MODEL(cpu_model, NULL), {} },		\
513b6a70beSHans de Goede 	{ { .matches = dmi }, {} },					\
52b7ecf663SHans de Goede 	uid,								\
53ba46e42eSHans de Goede 	path,								\
541a68b346SHans de Goede 	status,								\
55b7ecf663SHans de Goede }
56b7ecf663SHans de Goede 
571a68b346SHans de Goede #define PRESENT_ENTRY_HID(hid, uid, cpu_model, dmi...) \
58ba46e42eSHans de Goede 	ENTRY(ACPI_STA_DEFAULT, hid, uid, NULL, cpu_model, dmi)
591a68b346SHans de Goede 
601a68b346SHans de Goede #define NOT_PRESENT_ENTRY_HID(hid, uid, cpu_model, dmi...) \
61ba46e42eSHans de Goede 	ENTRY(0, hid, uid, NULL, cpu_model, dmi)
62ba46e42eSHans de Goede 
63ba46e42eSHans de Goede #define PRESENT_ENTRY_PATH(path, cpu_model, dmi...) \
64ba46e42eSHans de Goede 	ENTRY(ACPI_STA_DEFAULT, "", NULL, path, cpu_model, dmi)
65ba46e42eSHans de Goede 
66ba46e42eSHans de Goede #define NOT_PRESENT_ENTRY_PATH(path, cpu_model, dmi...) \
67ba46e42eSHans de Goede 	ENTRY(0, "", NULL, path, cpu_model, dmi)
681a68b346SHans de Goede 
691a68b346SHans de Goede static const struct override_status_id override_status_ids[] = {
70b7ecf663SHans de Goede 	/*
71b7ecf663SHans de Goede 	 * Bay / Cherry Trail PWM directly poked by GPU driver in win10,
72b7ecf663SHans de Goede 	 * but Linux uses a separate PWM driver, harmless if not used.
73b7ecf663SHans de Goede 	 */
741a68b346SHans de Goede 	PRESENT_ENTRY_HID("80860F09", "1", ATOM_SILVERMONT, {}),
751a68b346SHans de Goede 	PRESENT_ENTRY_HID("80862288", "1", ATOM_AIRMONT, {}),
76ff6cdfd7SYauhen Kharuzhy 
77b72cd8e0SHans de Goede 	/* The Xiaomi Mi Pad 2 uses PWM2 for touchkeys backlight control */
78b72cd8e0SHans de Goede 	PRESENT_ENTRY_HID("80862289", "2", ATOM_AIRMONT, {
79b72cd8e0SHans de Goede 		DMI_MATCH(DMI_SYS_VENDOR, "Xiaomi Inc"),
80b72cd8e0SHans de Goede 		DMI_MATCH(DMI_PRODUCT_NAME, "Mipad2"),
81b72cd8e0SHans de Goede 	      }),
82b72cd8e0SHans de Goede 
83753a448cSHans de Goede 	/*
84753a448cSHans de Goede 	 * The INT0002 device is necessary to clear wakeup interrupt sources
85753a448cSHans de Goede 	 * on Cherry Trail devices, without it we get nobody cared IRQ msgs.
86753a448cSHans de Goede 	 */
871a68b346SHans de Goede 	PRESENT_ENTRY_HID("INT0002", "1", ATOM_AIRMONT, {}),
88b5cc1699SHans de Goede 	/*
8972a361a5STristian Celestin 	 * On the Dell Venue 11 Pro 7130 and 7139, the DSDT hides
9072a361a5STristian Celestin 	 * the touchscreen ACPI device until a certain time
9172a361a5STristian Celestin 	 * after _SB.PCI0.GFX0.LCD.LCD1._ON gets called has passed
9272a361a5STristian Celestin 	 * *and* _STA has been called at least 3 times since.
93b5cc1699SHans de Goede 	 */
941a68b346SHans de Goede 	PRESENT_ENTRY_HID("SYNA7500", "1", HASWELL_L, {
95b5cc1699SHans de Goede 		DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
96b5cc1699SHans de Goede 		DMI_MATCH(DMI_PRODUCT_NAME, "Venue 11 Pro 7130"),
97b5cc1699SHans de Goede 	      }),
981a68b346SHans de Goede 	PRESENT_ENTRY_HID("SYNA7500", "1", HASWELL_L, {
9972a361a5STristian Celestin 		DMI_MATCH(DMI_SYS_VENDOR, "Dell Inc."),
10072a361a5STristian Celestin 		DMI_MATCH(DMI_PRODUCT_NAME, "Venue 11 Pro 7139"),
10172a361a5STristian Celestin 	      }),
10272a361a5STristian Celestin 
103906dc284SHans de Goede 	/*
1041c3b44c0SHans de Goede 	 * The GPD win BIOS dated 20170221 has disabled the accelerometer, the
105906dc284SHans de Goede 	 * drivers sometimes cause crashes under Windows and this is how the
10657d2dbf7SHans de Goede 	 * manufacturer has solved this :|  The DMI match may not seem unique,
10757d2dbf7SHans de Goede 	 * but it is. In the 67000+ DMI decode dumps from linux-hardware.org
10857d2dbf7SHans de Goede 	 * only 116 have board_vendor set to "AMI Corporation" and of those 116
10957d2dbf7SHans de Goede 	 * only the GPD win and pocket entries' board_name is "Default string".
1101c3b44c0SHans de Goede 	 *
1111c3b44c0SHans de Goede 	 * Unfortunately the GPD pocket also uses these strings and its BIOS
1121c3b44c0SHans de Goede 	 * was copy-pasted from the GPD win, so it has a disabled KIOX000A
1131c3b44c0SHans de Goede 	 * node which we should not enable, thus we also check the BIOS date.
114906dc284SHans de Goede 	 */
1151a68b346SHans de Goede 	PRESENT_ENTRY_HID("KIOX000A", "1", ATOM_AIRMONT, {
116906dc284SHans de Goede 		DMI_MATCH(DMI_BOARD_VENDOR, "AMI Corporation"),
117906dc284SHans de Goede 		DMI_MATCH(DMI_BOARD_NAME, "Default string"),
118906dc284SHans de Goede 		DMI_MATCH(DMI_PRODUCT_NAME, "Default string"),
1191c3b44c0SHans de Goede 		DMI_MATCH(DMI_BIOS_DATE, "02/21/2017")
1201c3b44c0SHans de Goede 	      }),
1211a68b346SHans de Goede 	PRESENT_ENTRY_HID("KIOX000A", "1", ATOM_AIRMONT, {
1221c3b44c0SHans de Goede 		DMI_MATCH(DMI_BOARD_VENDOR, "AMI Corporation"),
1231c3b44c0SHans de Goede 		DMI_MATCH(DMI_BOARD_NAME, "Default string"),
1241c3b44c0SHans de Goede 		DMI_MATCH(DMI_PRODUCT_NAME, "Default string"),
125906dc284SHans de Goede 		DMI_MATCH(DMI_BIOS_DATE, "03/20/2017")
126906dc284SHans de Goede 	      }),
1271a68b346SHans de Goede 	PRESENT_ENTRY_HID("KIOX000A", "1", ATOM_AIRMONT, {
1281c3b44c0SHans de Goede 		DMI_MATCH(DMI_BOARD_VENDOR, "AMI Corporation"),
1291c3b44c0SHans de Goede 		DMI_MATCH(DMI_BOARD_NAME, "Default string"),
1301c3b44c0SHans de Goede 		DMI_MATCH(DMI_PRODUCT_NAME, "Default string"),
1311c3b44c0SHans de Goede 		DMI_MATCH(DMI_BIOS_DATE, "05/25/2017")
1321c3b44c0SHans de Goede 	      }),
13357d2dbf7SHans de Goede 
13457d2dbf7SHans de Goede 	/*
13557d2dbf7SHans de Goede 	 * The GPD win/pocket have a PCI wifi card, but its DSDT has the SDIO
13657d2dbf7SHans de Goede 	 * mmc controller enabled and that has a child-device which _PS3
13757d2dbf7SHans de Goede 	 * method sets a GPIO causing the PCI wifi card to turn off.
13857d2dbf7SHans de Goede 	 * See above remark about uniqueness of the DMI match.
13957d2dbf7SHans de Goede 	 */
14057d2dbf7SHans de Goede 	NOT_PRESENT_ENTRY_PATH("\\_SB_.PCI0.SDHB.BRC1", ATOM_AIRMONT, {
14157d2dbf7SHans de Goede 		DMI_EXACT_MATCH(DMI_BOARD_VENDOR, "AMI Corporation"),
14257d2dbf7SHans de Goede 		DMI_EXACT_MATCH(DMI_BOARD_NAME, "Default string"),
14357d2dbf7SHans de Goede 		DMI_EXACT_MATCH(DMI_BOARD_SERIAL, "Default string"),
14457d2dbf7SHans de Goede 		DMI_EXACT_MATCH(DMI_PRODUCT_NAME, "Default string"),
14557d2dbf7SHans de Goede 	      }),
14661711941SMarius Hoch 
14761711941SMarius Hoch 	/*
14861711941SMarius Hoch 	 * The LSM303D on the Lenovo Yoga Tablet 2 series is present
14961711941SMarius Hoch 	 * as both ACCL0001 and MAGN0001. As we can only ever register an
15061711941SMarius Hoch 	 * i2c client for one of them, ignore MAGN0001.
15161711941SMarius Hoch 	 */
15261711941SMarius Hoch 	NOT_PRESENT_ENTRY_HID("MAGN0001", "1", ATOM_SILVERMONT, {
15361711941SMarius Hoch 		DMI_MATCH(DMI_SYS_VENDOR, "LENOVO"),
15461711941SMarius Hoch 		DMI_MATCH(DMI_PRODUCT_FAMILY, "YOGATablet2"),
15561711941SMarius Hoch 	      }),
156b7ecf663SHans de Goede };
157b7ecf663SHans de Goede 
1581a68b346SHans de Goede bool acpi_device_override_status(struct acpi_device *adev, unsigned long long *status)
159b7ecf663SHans de Goede {
160b7ecf663SHans de Goede 	bool ret = false;
161b7ecf663SHans de Goede 	unsigned int i;
162b7ecf663SHans de Goede 
1631a68b346SHans de Goede 	for (i = 0; i < ARRAY_SIZE(override_status_ids); i++) {
1641a68b346SHans de Goede 		if (!x86_match_cpu(override_status_ids[i].cpu_ids))
165b7ecf663SHans de Goede 			continue;
166b7ecf663SHans de Goede 
1671a68b346SHans de Goede 		if (override_status_ids[i].dmi_ids[0].matches[0].slot &&
1681a68b346SHans de Goede 		    !dmi_check_system(override_status_ids[i].dmi_ids))
1693b6a70beSHans de Goede 			continue;
1703b6a70beSHans de Goede 
171ba46e42eSHans de Goede 		if (override_status_ids[i].path) {
172ba46e42eSHans de Goede 			struct acpi_buffer path = { ACPI_ALLOCATE_BUFFER, NULL };
173ba46e42eSHans de Goede 			bool match;
174ba46e42eSHans de Goede 
175ba46e42eSHans de Goede 			if (acpi_get_name(adev->handle, ACPI_FULL_PATHNAME, &path))
176ba46e42eSHans de Goede 				continue;
177ba46e42eSHans de Goede 
178ba46e42eSHans de Goede 			match = strcmp((char *)path.pointer, override_status_ids[i].path) == 0;
179ba46e42eSHans de Goede 			kfree(path.pointer);
180ba46e42eSHans de Goede 
181ba46e42eSHans de Goede 			if (!match)
182ba46e42eSHans de Goede 				continue;
183ba46e42eSHans de Goede 		} else {
184ba46e42eSHans de Goede 			if (acpi_match_device_ids(adev, override_status_ids[i].hid))
185ba46e42eSHans de Goede 				continue;
186ba46e42eSHans de Goede 
187ba46e42eSHans de Goede 			if (!adev->pnp.unique_id ||
188ba46e42eSHans de Goede 			    strcmp(adev->pnp.unique_id, override_status_ids[i].uid))
189ba46e42eSHans de Goede 				continue;
190ba46e42eSHans de Goede 		}
191ba46e42eSHans de Goede 
1921a68b346SHans de Goede 		*status = override_status_ids[i].status;
193b7ecf663SHans de Goede 		ret = true;
194b7ecf663SHans de Goede 		break;
195b7ecf663SHans de Goede 	}
196b7ecf663SHans de Goede 
197b7ecf663SHans de Goede 	return ret;
198b7ecf663SHans de Goede }
1996485fc18SMario Limonciello 
2006485fc18SMario Limonciello /*
201fd880577SMario Limonciello  * AMD systems from Renoir onwards *require* that the NVME controller
2026485fc18SMario Limonciello  * is put into D3 over a Modern Standby / suspend-to-idle cycle.
2036485fc18SMario Limonciello  *
2046485fc18SMario Limonciello  * This is "typically" accomplished using the `StorageD3Enable`
2056485fc18SMario Limonciello  * property in the _DSD that is checked via the `acpi_storage_d3` function
206fd880577SMario Limonciello  * but some OEM systems still don't have it in their BIOS.
2076485fc18SMario Limonciello  *
2086485fc18SMario Limonciello  * The Microsoft documentation for StorageD3Enable mentioned that Windows has
209fd880577SMario Limonciello  * a hardcoded allowlist for D3 support as well as a registry key to override
210fd880577SMario Limonciello  * the BIOS, which has been used for these cases.
2116485fc18SMario Limonciello  *
2126485fc18SMario Limonciello  * This allows quirking on Linux in a similar fashion.
213e2a56364SMario Limonciello  *
214e2a56364SMario Limonciello  * Cezanne systems shouldn't *normally* need this as the BIOS includes
215e2a56364SMario Limonciello  * StorageD3Enable.  But for two reasons we have added it.
216e2a56364SMario Limonciello  * 1) The BIOS on a number of Dell systems have ambiguity
217e2a56364SMario Limonciello  *    between the same value used for _ADR on ACPI nodes GPP1.DEV0 and GPP1.NVME.
218e2a56364SMario Limonciello  *    GPP1.NVME is needed to get StorageD3Enable node set properly.
219e2a56364SMario Limonciello  *    https://bugzilla.kernel.org/show_bug.cgi?id=216440
220e2a56364SMario Limonciello  *    https://bugzilla.kernel.org/show_bug.cgi?id=216773
221e2a56364SMario Limonciello  *    https://bugzilla.kernel.org/show_bug.cgi?id=217003
222e2a56364SMario Limonciello  * 2) On at least one HP system StorageD3Enable is missing on the second NVME
223fd880577SMario Limonciello  *    disk in the system.
224fd880577SMario Limonciello  * 3) On at least one HP Rembrandt system StorageD3Enable is missing on the only
225fd880577SMario Limonciello  *    NVME device.
2266485fc18SMario Limonciello  */
2276485fc18SMario Limonciello bool force_storage_d3(void)
2286485fc18SMario Limonciello {
229fd880577SMario Limonciello 	if (!cpu_feature_enabled(X86_FEATURE_ZEN))
230fd880577SMario Limonciello 		return false;
231fd880577SMario Limonciello 	return acpi_gbl_FADT.flags & ACPI_FADT_LOW_POWER_S0;
2326485fc18SMario Limonciello }
23335f9e773SHans de Goede 
23435f9e773SHans de Goede /*
23535f9e773SHans de Goede  * x86 ACPI boards which ship with only Android as their factory image usually
23635f9e773SHans de Goede  * declare a whole bunch of bogus I2C devices in their ACPI tables and sometimes
23735f9e773SHans de Goede  * there are issues with serdev devices on these boards too, e.g. the resource
23835f9e773SHans de Goede  * points to the wrong serdev_controller.
23935f9e773SHans de Goede  *
24035f9e773SHans de Goede  * Instantiating I2C / serdev devs for these bogus devs causes various issues,
24135f9e773SHans de Goede  * e.g. GPIO/IRQ resource conflicts because sometimes drivers do bind to them.
24235f9e773SHans de Goede  * The Android x86 kernel fork shipped on these devices has some special code
24335f9e773SHans de Goede  * to remove the bogus I2C clients (and AFAICT serdevs are ignored completely).
24435f9e773SHans de Goede  *
24535f9e773SHans de Goede  * The acpi_quirk_skip_*_enumeration() functions below are used by the I2C or
24635f9e773SHans de Goede  * serdev code to skip instantiating any I2C or serdev devs on broken boards.
24735f9e773SHans de Goede  *
24835f9e773SHans de Goede  * In case of I2C an exception is made for HIDs on the i2c_acpi_known_good_ids
24935f9e773SHans de Goede  * list. These are known to always be correct (and in case of the audio-codecs
25035f9e773SHans de Goede  * the drivers heavily rely on the codec being enumerated through ACPI).
25135f9e773SHans de Goede  *
25235f9e773SHans de Goede  * Note these boards typically do actually have I2C and serdev devices,
25335f9e773SHans de Goede  * just different ones then the ones described in their DSDT. The devices
25435f9e773SHans de Goede  * which are actually present are manually instantiated by the
25535f9e773SHans de Goede  * drivers/platform/x86/x86-android-tablets.c kernel module.
25635f9e773SHans de Goede  */
25735f9e773SHans de Goede #define ACPI_QUIRK_SKIP_I2C_CLIENTS				BIT(0)
258f91280f3SHans de Goede #define ACPI_QUIRK_UART1_SKIP					BIT(1)
259f91280f3SHans de Goede #define ACPI_QUIRK_UART1_TTY_UART2_SKIP				BIT(2)
260*2d42aaceSHans de Goede #define ACPI_QUIRK_PNP_UART1_SKIP				BIT(3)
261*2d42aaceSHans de Goede #define ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY			BIT(4)
262*2d42aaceSHans de Goede #define ACPI_QUIRK_USE_ACPI_AC_AND_BATTERY			BIT(5)
263*2d42aaceSHans de Goede #define ACPI_QUIRK_SKIP_GPIO_EVENT_HANDLERS			BIT(6)
26435f9e773SHans de Goede 
26557a18322SHans de Goede static const struct dmi_system_id acpi_quirk_skip_dmi_ids[] = {
26657a18322SHans de Goede 	/*
26757a18322SHans de Goede 	 * 1. Devices with only the skip / don't-skip AC and battery quirks,
26857a18322SHans de Goede 	 *    sorted alphabetically.
26957a18322SHans de Goede 	 */
27057a18322SHans de Goede 	{
27157a18322SHans de Goede 		/* ECS EF20EA, AXP288 PMIC but uses separate fuel-gauge */
27257a18322SHans de Goede 		.matches = {
27357a18322SHans de Goede 			DMI_MATCH(DMI_PRODUCT_NAME, "EF20EA"),
27457a18322SHans de Goede 		},
27557a18322SHans de Goede 		.driver_data = (void *)ACPI_QUIRK_USE_ACPI_AC_AND_BATTERY
27657a18322SHans de Goede 	},
27757a18322SHans de Goede 	{
27857a18322SHans de Goede 		/* Lenovo Ideapad Miix 320, AXP288 PMIC, separate fuel-gauge */
27957a18322SHans de Goede 		.matches = {
28057a18322SHans de Goede 			DMI_MATCH(DMI_SYS_VENDOR, "LENOVO"),
28157a18322SHans de Goede 			DMI_MATCH(DMI_PRODUCT_NAME, "80XF"),
28257a18322SHans de Goede 			DMI_MATCH(DMI_PRODUCT_VERSION, "Lenovo MIIX 320-10ICR"),
28357a18322SHans de Goede 		},
28457a18322SHans de Goede 		.driver_data = (void *)ACPI_QUIRK_USE_ACPI_AC_AND_BATTERY
28557a18322SHans de Goede 	},
28657a18322SHans de Goede 
28757a18322SHans de Goede 	/*
28857a18322SHans de Goede 	 * 2. Devices which also have the skip i2c/serdev quirks and which
28957a18322SHans de Goede 	 *    need the x86-android-tablets module to properly work.
29057a18322SHans de Goede 	 */
29157a18322SHans de Goede #if IS_ENABLED(CONFIG_X86_ANDROID_TABLETS)
29235f9e773SHans de Goede 	{
293a5cb0695SHans de Goede 		/* Acer Iconia One 7 B1-750 */
294a5cb0695SHans de Goede 		.matches = {
295a5cb0695SHans de Goede 			DMI_MATCH(DMI_SYS_VENDOR, "Insyde"),
296a5cb0695SHans de Goede 			DMI_MATCH(DMI_PRODUCT_NAME, "VESPA2"),
297a5cb0695SHans de Goede 		},
298a5cb0695SHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
299a5cb0695SHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY |
300a5cb0695SHans de Goede 					ACPI_QUIRK_SKIP_GPIO_EVENT_HANDLERS),
301a5cb0695SHans de Goede 	},
302a5cb0695SHans de Goede 	{
30335f9e773SHans de Goede 		.matches = {
30435f9e773SHans de Goede 			DMI_EXACT_MATCH(DMI_SYS_VENDOR, "ASUSTeK COMPUTER INC."),
30535f9e773SHans de Goede 			DMI_EXACT_MATCH(DMI_PRODUCT_NAME, "ME176C"),
30635f9e773SHans de Goede 		},
30735f9e773SHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
3081b15b698SHans de Goede 					ACPI_QUIRK_UART1_TTY_UART2_SKIP |
3095adc4093SHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY |
3105adc4093SHans de Goede 					ACPI_QUIRK_SKIP_GPIO_EVENT_HANDLERS),
31135f9e773SHans de Goede 	},
31235f9e773SHans de Goede 	{
3131a1e7540SHans de Goede 		/* Lenovo Yoga Book X90F/L */
3141a1e7540SHans de Goede 		.matches = {
3151a1e7540SHans de Goede 			DMI_EXACT_MATCH(DMI_SYS_VENDOR, "Intel Corporation"),
3161a1e7540SHans de Goede 			DMI_EXACT_MATCH(DMI_PRODUCT_NAME, "CHERRYVIEW D1 PLATFORM"),
3171a1e7540SHans de Goede 			DMI_EXACT_MATCH(DMI_PRODUCT_VERSION, "YETI-11"),
3181a1e7540SHans de Goede 		},
3191a1e7540SHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
320f91280f3SHans de Goede 					ACPI_QUIRK_UART1_SKIP |
3211a1e7540SHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY |
3221a1e7540SHans de Goede 					ACPI_QUIRK_SKIP_GPIO_EVENT_HANDLERS),
3231a1e7540SHans de Goede 	},
3241a1e7540SHans de Goede 	{
32535f9e773SHans de Goede 		.matches = {
32635f9e773SHans de Goede 			DMI_MATCH(DMI_SYS_VENDOR, "ASUSTeK COMPUTER INC."),
32735f9e773SHans de Goede 			DMI_MATCH(DMI_PRODUCT_NAME, "TF103C"),
32835f9e773SHans de Goede 		},
3291b15b698SHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
3305adc4093SHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY |
3315adc4093SHans de Goede 					ACPI_QUIRK_SKIP_GPIO_EVENT_HANDLERS),
33235f9e773SHans de Goede 	},
33335f9e773SHans de Goede 	{
334fe820db3SHans de Goede 		/* Lenovo Yoga Tablet 2 1050F/L */
3354fecb1e9SHans de Goede 		.matches = {
3364fecb1e9SHans de Goede 			DMI_MATCH(DMI_SYS_VENDOR, "Intel Corp."),
3374fecb1e9SHans de Goede 			DMI_MATCH(DMI_PRODUCT_NAME, "VALLEYVIEW C0 PLATFORM"),
3384fecb1e9SHans de Goede 			DMI_MATCH(DMI_BOARD_NAME, "BYT-T FFD8"),
3394fecb1e9SHans de Goede 			/* Partial match on beginning of BIOS version */
3404fecb1e9SHans de Goede 			DMI_MATCH(DMI_BIOS_VERSION, "BLADE_21"),
3414fecb1e9SHans de Goede 		},
3424fecb1e9SHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
343*2d42aaceSHans de Goede 					ACPI_QUIRK_PNP_UART1_SKIP |
3444fecb1e9SHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY),
3454fecb1e9SHans de Goede 	},
3464fecb1e9SHans de Goede 	{
347fe820db3SHans de Goede 		/* Lenovo Yoga Tab 3 Pro X90F */
348fe820db3SHans de Goede 		.matches = {
349fe820db3SHans de Goede 			DMI_MATCH(DMI_SYS_VENDOR, "Intel Corporation"),
350fe820db3SHans de Goede 			DMI_MATCH(DMI_PRODUCT_NAME, "CHERRYVIEW D1 PLATFORM"),
351fe820db3SHans de Goede 			DMI_MATCH(DMI_PRODUCT_VERSION, "Blade3-10A-001"),
352fe820db3SHans de Goede 		},
353fe820db3SHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
354fe820db3SHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY),
355fe820db3SHans de Goede 	},
356fe820db3SHans de Goede 	{
357ecc6aaabSHans de Goede 		/* Medion Lifetab S10346 */
358ecc6aaabSHans de Goede 		.matches = {
359ecc6aaabSHans de Goede 			DMI_MATCH(DMI_BOARD_VENDOR, "AMI Corporation"),
360ecc6aaabSHans de Goede 			DMI_MATCH(DMI_BOARD_NAME, "Aptio CRB"),
361ecc6aaabSHans de Goede 			/* Way too generic, also match on BIOS data */
362ecc6aaabSHans de Goede 			DMI_MATCH(DMI_BIOS_DATE, "10/22/2015"),
363ecc6aaabSHans de Goede 		},
364ecc6aaabSHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
365ecc6aaabSHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY),
366ecc6aaabSHans de Goede 	},
367ecc6aaabSHans de Goede 	{
36869d6b376SHans de Goede 		/* Nextbook Ares 8 (BYT version)*/
369f38312c9SHans de Goede 		.matches = {
370f38312c9SHans de Goede 			DMI_MATCH(DMI_SYS_VENDOR, "Insyde"),
371f38312c9SHans de Goede 			DMI_MATCH(DMI_PRODUCT_NAME, "M890BAP"),
372f38312c9SHans de Goede 		},
373f38312c9SHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
3745adc4093SHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY |
3755adc4093SHans de Goede 					ACPI_QUIRK_SKIP_GPIO_EVENT_HANDLERS),
376f38312c9SHans de Goede 	},
377f38312c9SHans de Goede 	{
37869d6b376SHans de Goede 		/* Nextbook Ares 8A (CHT version)*/
37969d6b376SHans de Goede 		.matches = {
38069d6b376SHans de Goede 			DMI_MATCH(DMI_SYS_VENDOR, "Insyde"),
38169d6b376SHans de Goede 			DMI_MATCH(DMI_PRODUCT_NAME, "CherryTrail"),
38269d6b376SHans de Goede 			DMI_MATCH(DMI_BIOS_VERSION, "M882"),
38369d6b376SHans de Goede 		},
38469d6b376SHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
38569d6b376SHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY),
38669d6b376SHans de Goede 	},
38769d6b376SHans de Goede 	{
38835f9e773SHans de Goede 		/* Whitelabel (sold as various brands) TM800A550L */
38935f9e773SHans de Goede 		.matches = {
39035f9e773SHans de Goede 			DMI_MATCH(DMI_BOARD_VENDOR, "AMI Corporation"),
39135f9e773SHans de Goede 			DMI_MATCH(DMI_BOARD_NAME, "Aptio CRB"),
39235f9e773SHans de Goede 			/* Above strings are too generic, also match on BIOS version */
39335f9e773SHans de Goede 			DMI_MATCH(DMI_BIOS_VERSION, "ZY-8-BI-PX4S70VTR400-X423B-005-D"),
39435f9e773SHans de Goede 		},
3951b15b698SHans de Goede 		.driver_data = (void *)(ACPI_QUIRK_SKIP_I2C_CLIENTS |
3961b15b698SHans de Goede 					ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY),
39735f9e773SHans de Goede 	},
39857a18322SHans de Goede #endif
39935f9e773SHans de Goede 	{}
40035f9e773SHans de Goede };
40135f9e773SHans de Goede 
40257a18322SHans de Goede #if IS_ENABLED(CONFIG_X86_ANDROID_TABLETS)
40335f9e773SHans de Goede static const struct acpi_device_id i2c_acpi_known_good_ids[] = {
40435f9e773SHans de Goede 	{ "10EC5640", 0 }, /* RealTek ALC5640 audio codec */
40569d6b376SHans de Goede 	{ "10EC5651", 0 }, /* RealTek ALC5651 audio codec */
40635f9e773SHans de Goede 	{ "INT33F4", 0 },  /* X-Powers AXP288 PMIC */
40735f9e773SHans de Goede 	{ "INT33FD", 0 },  /* Intel Crystal Cove PMIC */
408fe820db3SHans de Goede 	{ "INT34D3", 0 },  /* Intel Whiskey Cove PMIC */
40935f9e773SHans de Goede 	{ "NPCE69A", 0 },  /* Asus Transformer keyboard dock */
41035f9e773SHans de Goede 	{}
41135f9e773SHans de Goede };
41235f9e773SHans de Goede 
41335f9e773SHans de Goede bool acpi_quirk_skip_i2c_client_enumeration(struct acpi_device *adev)
41435f9e773SHans de Goede {
41535f9e773SHans de Goede 	const struct dmi_system_id *dmi_id;
41635f9e773SHans de Goede 	long quirks;
41735f9e773SHans de Goede 
41857a18322SHans de Goede 	dmi_id = dmi_first_match(acpi_quirk_skip_dmi_ids);
41935f9e773SHans de Goede 	if (!dmi_id)
42035f9e773SHans de Goede 		return false;
42135f9e773SHans de Goede 
42235f9e773SHans de Goede 	quirks = (unsigned long)dmi_id->driver_data;
42335f9e773SHans de Goede 	if (!(quirks & ACPI_QUIRK_SKIP_I2C_CLIENTS))
42435f9e773SHans de Goede 		return false;
42535f9e773SHans de Goede 
42635f9e773SHans de Goede 	return acpi_match_device_ids(adev, i2c_acpi_known_good_ids);
42735f9e773SHans de Goede }
42835f9e773SHans de Goede EXPORT_SYMBOL_GPL(acpi_quirk_skip_i2c_client_enumeration);
42935f9e773SHans de Goede 
430a217b613SHans de Goede static int acpi_dmi_skip_serdev_enumeration(struct device *controller_parent, bool *skip)
43135f9e773SHans de Goede {
43235f9e773SHans de Goede 	struct acpi_device *adev = ACPI_COMPANION(controller_parent);
43335f9e773SHans de Goede 	const struct dmi_system_id *dmi_id;
43435f9e773SHans de Goede 	long quirks = 0;
435197a5aeaSAndy Shevchenko 	u64 uid;
436197a5aeaSAndy Shevchenko 	int ret;
43735f9e773SHans de Goede 
438197a5aeaSAndy Shevchenko 	ret = acpi_dev_uid_to_integer(adev, &uid);
439197a5aeaSAndy Shevchenko 	if (ret)
440197a5aeaSAndy Shevchenko 		return 0;
441197a5aeaSAndy Shevchenko 
44257a18322SHans de Goede 	dmi_id = dmi_first_match(acpi_quirk_skip_dmi_ids);
44335f9e773SHans de Goede 	if (dmi_id)
44435f9e773SHans de Goede 		quirks = (unsigned long)dmi_id->driver_data;
44535f9e773SHans de Goede 
446*2d42aaceSHans de Goede 	if (!dev_is_platform(controller_parent)) {
447*2d42aaceSHans de Goede 		/* PNP enumerated UARTs */
448*2d42aaceSHans de Goede 		if ((quirks & ACPI_QUIRK_PNP_UART1_SKIP) && uid == 1)
449*2d42aaceSHans de Goede 			*skip = true;
450*2d42aaceSHans de Goede 
451*2d42aaceSHans de Goede 		return 0;
452*2d42aaceSHans de Goede 	}
453*2d42aaceSHans de Goede 
454f91280f3SHans de Goede 	if ((quirks & ACPI_QUIRK_UART1_SKIP) && uid == 1)
455f91280f3SHans de Goede 		*skip = true;
456f91280f3SHans de Goede 
45735f9e773SHans de Goede 	if (quirks & ACPI_QUIRK_UART1_TTY_UART2_SKIP) {
458197a5aeaSAndy Shevchenko 		if (uid == 1)
45935f9e773SHans de Goede 			return -ENODEV; /* Create tty cdev instead of serdev */
46035f9e773SHans de Goede 
461197a5aeaSAndy Shevchenko 		if (uid == 2)
46235f9e773SHans de Goede 			*skip = true;
46335f9e773SHans de Goede 	}
46435f9e773SHans de Goede 
46535f9e773SHans de Goede 	return 0;
46635f9e773SHans de Goede }
4675adc4093SHans de Goede 
4685adc4093SHans de Goede bool acpi_quirk_skip_gpio_event_handlers(void)
4695adc4093SHans de Goede {
4705adc4093SHans de Goede 	const struct dmi_system_id *dmi_id;
4715adc4093SHans de Goede 	long quirks;
4725adc4093SHans de Goede 
4735adc4093SHans de Goede 	dmi_id = dmi_first_match(acpi_quirk_skip_dmi_ids);
4745adc4093SHans de Goede 	if (!dmi_id)
4755adc4093SHans de Goede 		return false;
4765adc4093SHans de Goede 
4775adc4093SHans de Goede 	quirks = (unsigned long)dmi_id->driver_data;
4785adc4093SHans de Goede 	return (quirks & ACPI_QUIRK_SKIP_GPIO_EVENT_HANDLERS);
4795adc4093SHans de Goede }
4805adc4093SHans de Goede EXPORT_SYMBOL_GPL(acpi_quirk_skip_gpio_event_handlers);
481a217b613SHans de Goede #else
482a217b613SHans de Goede static int acpi_dmi_skip_serdev_enumeration(struct device *controller_parent, bool *skip)
483a217b613SHans de Goede {
484a217b613SHans de Goede 	return 0;
485a217b613SHans de Goede }
48635f9e773SHans de Goede #endif
48757a18322SHans de Goede 
488a217b613SHans de Goede int acpi_quirk_skip_serdev_enumeration(struct device *controller_parent, bool *skip)
489a217b613SHans de Goede {
490a217b613SHans de Goede 	*skip = false;
491a217b613SHans de Goede 
492a217b613SHans de Goede 	return acpi_dmi_skip_serdev_enumeration(controller_parent, skip);
493a217b613SHans de Goede }
494a217b613SHans de Goede EXPORT_SYMBOL_GPL(acpi_quirk_skip_serdev_enumeration);
495a217b613SHans de Goede 
49657a18322SHans de Goede /* Lists of PMIC ACPI HIDs with an (often better) native charger driver */
49757a18322SHans de Goede static const struct {
49857a18322SHans de Goede 	const char *hid;
49957a18322SHans de Goede 	int hrv;
50057a18322SHans de Goede } acpi_skip_ac_and_battery_pmic_ids[] = {
50157a18322SHans de Goede 	{ "INT33F4", -1 }, /* X-Powers AXP288 PMIC */
50257a18322SHans de Goede 	{ "INT34D3",  3 }, /* Intel Cherrytrail Whiskey Cove PMIC */
50357a18322SHans de Goede };
50457a18322SHans de Goede 
50557a18322SHans de Goede bool acpi_quirk_skip_acpi_ac_and_battery(void)
50657a18322SHans de Goede {
50757a18322SHans de Goede 	const struct dmi_system_id *dmi_id;
50857a18322SHans de Goede 	long quirks = 0;
50957a18322SHans de Goede 	int i;
51057a18322SHans de Goede 
51157a18322SHans de Goede 	dmi_id = dmi_first_match(acpi_quirk_skip_dmi_ids);
51257a18322SHans de Goede 	if (dmi_id)
51357a18322SHans de Goede 		quirks = (unsigned long)dmi_id->driver_data;
51457a18322SHans de Goede 
51557a18322SHans de Goede 	if (quirks & ACPI_QUIRK_SKIP_ACPI_AC_AND_BATTERY)
51657a18322SHans de Goede 		return true;
51757a18322SHans de Goede 
51857a18322SHans de Goede 	if (quirks & ACPI_QUIRK_USE_ACPI_AC_AND_BATTERY)
51957a18322SHans de Goede 		return false;
52057a18322SHans de Goede 
52157a18322SHans de Goede 	for (i = 0; i < ARRAY_SIZE(acpi_skip_ac_and_battery_pmic_ids); i++) {
52257a18322SHans de Goede 		if (acpi_dev_present(acpi_skip_ac_and_battery_pmic_ids[i].hid, "1",
52357a18322SHans de Goede 				     acpi_skip_ac_and_battery_pmic_ids[i].hrv)) {
52457a18322SHans de Goede 			pr_info_once("found native %s PMIC, skipping ACPI AC and battery devices\n",
52557a18322SHans de Goede 				     acpi_skip_ac_and_battery_pmic_ids[i].hid);
52657a18322SHans de Goede 			return true;
52757a18322SHans de Goede 		}
52857a18322SHans de Goede 	}
52957a18322SHans de Goede 
53057a18322SHans de Goede 	return false;
53157a18322SHans de Goede }
53257a18322SHans de Goede EXPORT_SYMBOL_GPL(acpi_quirk_skip_acpi_ac_and_battery);
5330a0e2ea6SMichal Wilczynski 
5340a0e2ea6SMichal Wilczynski /* This section provides a workaround for a specific x86 system
5350a0e2ea6SMichal Wilczynski  * which requires disabling of mwait to work correctly.
5360a0e2ea6SMichal Wilczynski  */
5370a0e2ea6SMichal Wilczynski static int __init acpi_proc_quirk_set_no_mwait(const struct dmi_system_id *id)
5380a0e2ea6SMichal Wilczynski {
5390a0e2ea6SMichal Wilczynski 	pr_notice("%s detected - disabling mwait for CPU C-states\n",
5400a0e2ea6SMichal Wilczynski 		  id->ident);
5410a0e2ea6SMichal Wilczynski 	boot_option_idle_override = IDLE_NOMWAIT;
5420a0e2ea6SMichal Wilczynski 	return 0;
5430a0e2ea6SMichal Wilczynski }
5440a0e2ea6SMichal Wilczynski 
5450a0e2ea6SMichal Wilczynski static const struct dmi_system_id acpi_proc_quirk_mwait_dmi_table[] __initconst = {
5460a0e2ea6SMichal Wilczynski 	{
5470a0e2ea6SMichal Wilczynski 		.callback = acpi_proc_quirk_set_no_mwait,
5480a0e2ea6SMichal Wilczynski 		.ident = "Extensa 5220",
5490a0e2ea6SMichal Wilczynski 		.matches =  {
5500a0e2ea6SMichal Wilczynski 			DMI_MATCH(DMI_BIOS_VENDOR, "Phoenix Technologies LTD"),
5510a0e2ea6SMichal Wilczynski 			DMI_MATCH(DMI_SYS_VENDOR, "Acer"),
5520a0e2ea6SMichal Wilczynski 			DMI_MATCH(DMI_PRODUCT_VERSION, "0100"),
5530a0e2ea6SMichal Wilczynski 			DMI_MATCH(DMI_BOARD_NAME, "Columbia"),
5540a0e2ea6SMichal Wilczynski 		},
5550a0e2ea6SMichal Wilczynski 		.driver_data = NULL,
5560a0e2ea6SMichal Wilczynski 	},
5570a0e2ea6SMichal Wilczynski 	{}
5580a0e2ea6SMichal Wilczynski };
5590a0e2ea6SMichal Wilczynski 
5600a0e2ea6SMichal Wilczynski void __init acpi_proc_quirk_mwait_check(void)
5610a0e2ea6SMichal Wilczynski {
5620a0e2ea6SMichal Wilczynski 	/*
5630a0e2ea6SMichal Wilczynski 	 * Check whether the system is DMI table. If yes, OSPM
5640a0e2ea6SMichal Wilczynski 	 * should not use mwait for CPU-states.
5650a0e2ea6SMichal Wilczynski 	 */
5660a0e2ea6SMichal Wilczynski 	dmi_check_system(acpi_proc_quirk_mwait_dmi_table);
5670a0e2ea6SMichal Wilczynski }
568