blob: 73ae43627d603eb9e5a71e505227f661a0d8bf5c [file] [log] [blame]
Rafael J. Wysockif58b0822013-03-06 23:46:20 +01001/*
2 * ACPI support for Intel Lynxpoint LPSS.
3 *
Rafael J. Wysocki3df2da92015-02-03 14:29:43 +01004 * Copyright (C) 2013, Intel Corporation
Rafael J. Wysockif58b0822013-03-06 23:46:20 +01005 * Authors: Mika Westerberg <mika.westerberg@linux.intel.com>
6 * Rafael J. Wysocki <rafael.j.wysocki@intel.com>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
11 */
12
13#include <linux/acpi.h>
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010014#include <linux/clkdev.h>
15#include <linux/clk-provider.h>
16#include <linux/err.h>
17#include <linux/io.h>
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +010018#include <linux/mutex.h>
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010019#include <linux/platform_device.h>
20#include <linux/platform_data/clk-lpss.h>
Irina Tirdea80a75812017-01-23 12:07:43 -060021#include <linux/platform_data/x86/pmc_atom.h>
Tomeu Vizoso989561d2016-01-07 16:46:13 +010022#include <linux/pm_domain.h>
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +010023#include <linux/pm_runtime.h>
Hans de Goedebf7696a2017-01-22 17:14:09 +010024#include <linux/pwm.h>
Rafael J. Wysockia09c5912018-06-13 13:17:26 +020025#include <linux/suspend.h>
Heikki Krogerusc78b0832014-05-23 16:15:09 +030026#include <linux/delay.h>
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010027
28#include "internal.h"
29
30ACPI_MODULE_NAME("acpi_lpss");
31
Rafael J. Wysockid6ddaaa2014-05-30 14:34:05 +020032#ifdef CONFIG_X86_INTEL_LPSS
33
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +010034#include <asm/cpu_device_id.h>
Dave Hansen4626d842016-06-02 17:19:46 -070035#include <asm/intel-family.h>
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +010036#include <asm/iosf_mbi.h>
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +010037
Rafael J. Wysockid6ddaaa2014-05-30 14:34:05 +020038#define LPSS_ADDR(desc) ((unsigned long)&desc)
39
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010040#define LPSS_CLK_SIZE 0x04
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +010041#define LPSS_LTR_SIZE 0x18
42
43/* Offsets relative to LPSS_PRIVATE_OFFSET */
Heikki Krogerused3a8722014-05-19 14:42:07 +030044#define LPSS_CLK_DIVIDER_DEF_MASK (BIT(1) | BIT(16))
Mika Westerberg765bdd42014-06-17 14:33:39 +030045#define LPSS_RESETS 0x04
46#define LPSS_RESETS_RESET_FUNC BIT(0)
47#define LPSS_RESETS_RESET_APB BIT(1)
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +010048#define LPSS_GENERAL 0x08
49#define LPSS_GENERAL_LTR_MODE_SW BIT(2)
Heikki Krogerus088f1fd2013-10-09 09:49:20 +030050#define LPSS_GENERAL_UART_RTS_OVRD BIT(3)
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +010051#define LPSS_SW_LTR 0x10
52#define LPSS_AUTO_LTR 0x14
Rafael J. Wysocki1a8f8352014-02-11 00:35:53 +010053#define LPSS_LTR_SNOOP_REQ BIT(15)
54#define LPSS_LTR_SNOOP_MASK 0x0000FFFF
55#define LPSS_LTR_SNOOP_LAT_1US 0x800
56#define LPSS_LTR_SNOOP_LAT_32US 0xC00
57#define LPSS_LTR_SNOOP_LAT_SHIFT 5
58#define LPSS_LTR_SNOOP_LAT_CUTOFF 3000
59#define LPSS_LTR_MAX_VAL 0x3FF
Heikki Krogerus06d86412013-06-17 13:25:46 +030060#define LPSS_TX_INT 0x20
61#define LPSS_TX_INT_MASK BIT(1)
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010062
Heikki Krogerusc78b0832014-05-23 16:15:09 +030063#define LPSS_PRV_REG_COUNT 9
64
Heikki Krogerusff8c1af2014-09-02 10:55:07 +030065/* LPSS Flags */
66#define LPSS_CLK BIT(0)
67#define LPSS_CLK_GATE BIT(1)
68#define LPSS_CLK_DIVIDER BIT(2)
69#define LPSS_LTR BIT(3)
70#define LPSS_SAVE_CTX BIT(4)
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +053071#define LPSS_NO_D3_DELAY BIT(5)
Mika Westerbergf6272172013-05-13 12:42:44 +000072
Hans de Goedec975e472018-04-13 14:54:17 +020073/* Crystal Cove PMIC shares same ACPI ID between different platforms */
74#define BYT_CRC_HRV 2
75#define CHT_CRC_HRV 3
76
Heikki Krogerus06d86412013-06-17 13:25:46 +030077struct lpss_private_data;
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010078
79struct lpss_device_desc {
Heikki Krogerusff8c1af2014-09-02 10:55:07 +030080 unsigned int flags;
Heikki Krogerusfcf07892015-03-06 15:48:38 +020081 const char *clk_con_id;
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +010082 unsigned int prv_offset;
Mika Westerberg958c4eb2013-06-18 16:51:35 +030083 size_t prv_size_override;
Heikki Krogerusa5565cf2016-08-23 11:33:27 +030084 struct property_entry *properties;
Heikki Krogerus06d86412013-06-17 13:25:46 +030085 void (*setup)(struct lpss_private_data *pdata);
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010086};
87
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +010088static const struct lpss_device_desc lpss_dma_desc = {
Rafael J. Wysocki3df2da92015-02-03 14:29:43 +010089 .flags = LPSS_CLK,
Rafael J. Wysockib59cc202013-05-08 11:55:49 +030090};
91
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010092struct lpss_private_data {
Hans de Goededd242a02017-07-06 18:49:27 +020093 struct acpi_device *adev;
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010094 void __iomem *mmio_base;
95 resource_size_t mmio_size;
Heikki Krogerus03f09f72014-09-02 10:55:09 +030096 unsigned int fixed_clk_rate;
Rafael J. Wysockif58b0822013-03-06 23:46:20 +010097 struct clk *clk;
98 const struct lpss_device_desc *dev_desc;
Heikki Krogerusc78b0832014-05-23 16:15:09 +030099 u32 prv_reg_ctx[LPSS_PRV_REG_COUNT];
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100100};
101
Hans de Goede86b62e52018-09-08 20:08:13 +0200102/* Devices which need to be in D3 before lpss_iosf_enter_d3_state() proceeds */
103static u32 pmc_atom_d3_mask = 0xfe000ffe;
104
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100105/* LPSS run time quirks */
106static unsigned int lpss_quirks;
107
108/*
109 * LPSS_QUIRK_ALWAYS_POWER_ON: override power state for LPSS DMA device.
110 *
Andy Shevchenkofa9e93b2015-12-21 22:31:09 +0200111 * The LPSS DMA controller has neither _PS0 nor _PS3 method. Moreover
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100112 * it can be powered off automatically whenever the last LPSS device goes down.
113 * In case of no power any access to the DMA controller will hang the system.
114 * The behaviour is reproduced on some HP laptops based on Intel BayTrail as
115 * well as on ASuS T100TA transformer.
116 *
117 * This quirk overrides power state of entire LPSS island to keep DMA powered
118 * on whenever we have at least one other device in use.
119 */
120#define LPSS_QUIRK_ALWAYS_POWER_ON BIT(0)
121
Heikki Krogerus1f47a772014-09-11 15:19:33 +0300122/* UART Component Parameter Register */
123#define LPSS_UART_CPR 0xF4
124#define LPSS_UART_CPR_AFCE BIT(4)
125
Heikki Krogerus06d86412013-06-17 13:25:46 +0300126static void lpss_uart_setup(struct lpss_private_data *pdata)
127{
Heikki Krogerus088f1fd2013-10-09 09:49:20 +0300128 unsigned int offset;
Heikki Krogerus1f47a772014-09-11 15:19:33 +0300129 u32 val;
Heikki Krogerus06d86412013-06-17 13:25:46 +0300130
Heikki Krogerus088f1fd2013-10-09 09:49:20 +0300131 offset = pdata->dev_desc->prv_offset + LPSS_TX_INT;
Heikki Krogerus1f47a772014-09-11 15:19:33 +0300132 val = readl(pdata->mmio_base + offset);
133 writel(val | LPSS_TX_INT_MASK, pdata->mmio_base + offset);
Heikki Krogerus088f1fd2013-10-09 09:49:20 +0300134
Heikki Krogerus1f47a772014-09-11 15:19:33 +0300135 val = readl(pdata->mmio_base + LPSS_UART_CPR);
136 if (!(val & LPSS_UART_CPR_AFCE)) {
137 offset = pdata->dev_desc->prv_offset + LPSS_GENERAL;
138 val = readl(pdata->mmio_base + offset);
139 val |= LPSS_GENERAL_UART_RTS_OVRD;
140 writel(val, pdata->mmio_base + offset);
141 }
Heikki Krogerus06d86412013-06-17 13:25:46 +0300142}
143
Mika Westerberg30957942015-02-18 13:50:17 +0200144static void lpss_deassert_reset(struct lpss_private_data *pdata)
Mika Westerberg765bdd42014-06-17 14:33:39 +0300145{
146 unsigned int offset;
147 u32 val;
148
149 offset = pdata->dev_desc->prv_offset + LPSS_RESETS;
150 val = readl(pdata->mmio_base + offset);
151 val |= LPSS_RESETS_RESET_APB | LPSS_RESETS_RESET_FUNC;
152 writel(val, pdata->mmio_base + offset);
Mika Westerberg30957942015-02-18 13:50:17 +0200153}
154
Hans de Goede04434ab2017-04-21 09:35:07 +0200155/*
156 * BYT PWM used for backlight control by the i915 driver on systems without
157 * the Crystal Cove PMIC.
158 */
159static struct pwm_lookup byt_pwm_lookup[] = {
160 PWM_LOOKUP_WITH_MODULE("80860F09:00", 0, "0000:00:02.0",
161 "pwm_backlight", 0, PWM_POLARITY_NORMAL,
162 "pwm-lpss-platform"),
163};
164
165static void byt_pwm_setup(struct lpss_private_data *pdata)
166{
Hans de Goededd242a02017-07-06 18:49:27 +0200167 struct acpi_device *adev = pdata->adev;
168
169 /* Only call pwm_add_table for the first PWM controller */
170 if (!adev->pnp.unique_id || strcmp(adev->pnp.unique_id, "1"))
171 return;
172
Hans de Goedec975e472018-04-13 14:54:17 +0200173 if (!acpi_dev_present("INT33FD", NULL, BYT_CRC_HRV))
Hans de Goede04434ab2017-04-21 09:35:07 +0200174 pwm_add_table(byt_pwm_lookup, ARRAY_SIZE(byt_pwm_lookup));
175}
176
Mika Westerberg30957942015-02-18 13:50:17 +0200177#define LPSS_I2C_ENABLE 0x6c
178
179static void byt_i2c_setup(struct lpss_private_data *pdata)
180{
Hans de Goede86b62e52018-09-08 20:08:13 +0200181 const char *uid_str = acpi_device_uid(pdata->adev);
182 acpi_handle handle = pdata->adev->handle;
183 unsigned long long shared_host = 0;
184 acpi_status status;
185 long uid = 0;
186
187 /* Expected to always be true, but better safe then sorry */
188 if (uid_str)
189 uid = simple_strtol(uid_str, NULL, 10);
190
191 /* Detect I2C bus shared with PUNIT and ignore its d3 status */
192 status = acpi_evaluate_integer(handle, "_SEM", NULL, &shared_host);
193 if (ACPI_SUCCESS(status) && shared_host && uid)
194 pmc_atom_d3_mask &= ~(BIT_LPSS2_F1_I2C1 << (uid - 1));
195
Mika Westerberg30957942015-02-18 13:50:17 +0200196 lpss_deassert_reset(pdata);
Heikki Krogerus03f09f72014-09-02 10:55:09 +0300197
198 if (readl(pdata->mmio_base + pdata->dev_desc->prv_offset))
199 pdata->fixed_clk_rate = 133000000;
Mika Westerberg3293c7b2015-02-18 13:50:16 +0200200
201 writel(0, pdata->mmio_base + LPSS_I2C_ENABLE);
Mika Westerberg765bdd42014-06-17 14:33:39 +0300202}
203
Hans de Goedebf7696a2017-01-22 17:14:09 +0100204/* BSW PWM used for backlight control by the i915 driver */
205static struct pwm_lookup bsw_pwm_lookup[] = {
206 PWM_LOOKUP_WITH_MODULE("80862288:00", 0, "0000:00:02.0",
207 "pwm_backlight", 0, PWM_POLARITY_NORMAL,
208 "pwm-lpss-platform"),
209};
210
211static void bsw_pwm_setup(struct lpss_private_data *pdata)
212{
Hans de Goededd242a02017-07-06 18:49:27 +0200213 struct acpi_device *adev = pdata->adev;
214
215 /* Only call pwm_add_table for the first PWM controller */
216 if (!adev->pnp.unique_id || strcmp(adev->pnp.unique_id, "1"))
217 return;
218
Hans de Goedebf7696a2017-01-22 17:14:09 +0100219 pwm_add_table(bsw_pwm_lookup, ARRAY_SIZE(bsw_pwm_lookup));
220}
221
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200222static const struct lpss_device_desc lpt_dev_desc = {
Heikki Krogerusff8c1af2014-09-02 10:55:07 +0300223 .flags = LPSS_CLK | LPSS_CLK_GATE | LPSS_CLK_DIVIDER | LPSS_LTR,
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +0100224 .prv_offset = 0x800,
Heikki Krogerused3a8722014-05-19 14:42:07 +0300225};
226
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200227static const struct lpss_device_desc lpt_i2c_dev_desc = {
Heikki Krogerusff8c1af2014-09-02 10:55:07 +0300228 .flags = LPSS_CLK | LPSS_CLK_GATE | LPSS_LTR,
Heikki Krogerused3a8722014-05-19 14:42:07 +0300229 .prv_offset = 0x800,
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +0100230};
231
Heikki Krogerusa5565cf2016-08-23 11:33:27 +0300232static struct property_entry uart_properties[] = {
233 PROPERTY_ENTRY_U32("reg-io-width", 4),
234 PROPERTY_ENTRY_U32("reg-shift", 2),
235 PROPERTY_ENTRY_BOOL("snps,uart-16550-compatible"),
236 { },
237};
238
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200239static const struct lpss_device_desc lpt_uart_dev_desc = {
Heikki Krogerusff8c1af2014-09-02 10:55:07 +0300240 .flags = LPSS_CLK | LPSS_CLK_GATE | LPSS_CLK_DIVIDER | LPSS_LTR,
Heikki Krogerusfcf07892015-03-06 15:48:38 +0200241 .clk_con_id = "baudclk",
Heikki Krogerus06d86412013-06-17 13:25:46 +0300242 .prv_offset = 0x800,
Heikki Krogerus06d86412013-06-17 13:25:46 +0300243 .setup = lpss_uart_setup,
Heikki Krogerusa5565cf2016-08-23 11:33:27 +0300244 .properties = uart_properties,
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +0100245};
246
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200247static const struct lpss_device_desc lpt_sdio_dev_desc = {
Heikki Krogerusff8c1af2014-09-02 10:55:07 +0300248 .flags = LPSS_LTR,
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +0100249 .prv_offset = 0x1000,
Mika Westerberg958c4eb2013-06-18 16:51:35 +0300250 .prv_size_override = 0x1018,
Chew, Chiau Eee1c74812014-02-19 02:24:29 +0800251};
252
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200253static const struct lpss_device_desc byt_pwm_dev_desc = {
Heikki Krogerus3f56bf32014-09-02 10:55:10 +0300254 .flags = LPSS_SAVE_CTX,
Hans de Goedefdcb6132018-04-26 14:10:24 +0200255 .prv_offset = 0x800,
Hans de Goede04434ab2017-04-21 09:35:07 +0200256 .setup = byt_pwm_setup,
Chew, Chiau Eee1c74812014-02-19 02:24:29 +0800257};
258
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530259static const struct lpss_device_desc bsw_pwm_dev_desc = {
260 .flags = LPSS_SAVE_CTX | LPSS_NO_D3_DELAY,
Hans de Goedefdcb6132018-04-26 14:10:24 +0200261 .prv_offset = 0x800,
Hans de Goedebf7696a2017-01-22 17:14:09 +0100262 .setup = bsw_pwm_setup,
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530263};
264
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200265static const struct lpss_device_desc byt_uart_dev_desc = {
Rafael J. Wysocki3df2da92015-02-03 14:29:43 +0100266 .flags = LPSS_CLK | LPSS_CLK_GATE | LPSS_CLK_DIVIDER | LPSS_SAVE_CTX,
Heikki Krogerusfcf07892015-03-06 15:48:38 +0200267 .clk_con_id = "baudclk",
Mika Westerbergf6272172013-05-13 12:42:44 +0000268 .prv_offset = 0x800,
Heikki Krogerus06d86412013-06-17 13:25:46 +0300269 .setup = lpss_uart_setup,
Heikki Krogerusa5565cf2016-08-23 11:33:27 +0300270 .properties = uart_properties,
Mika Westerbergf6272172013-05-13 12:42:44 +0000271};
272
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530273static const struct lpss_device_desc bsw_uart_dev_desc = {
274 .flags = LPSS_CLK | LPSS_CLK_GATE | LPSS_CLK_DIVIDER | LPSS_SAVE_CTX
275 | LPSS_NO_D3_DELAY,
276 .clk_con_id = "baudclk",
277 .prv_offset = 0x800,
278 .setup = lpss_uart_setup,
Heikki Krogerusa5565cf2016-08-23 11:33:27 +0300279 .properties = uart_properties,
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530280};
281
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200282static const struct lpss_device_desc byt_spi_dev_desc = {
Rafael J. Wysocki3df2da92015-02-03 14:29:43 +0100283 .flags = LPSS_CLK | LPSS_CLK_GATE | LPSS_CLK_DIVIDER | LPSS_SAVE_CTX,
Mika Westerbergf6272172013-05-13 12:42:44 +0000284 .prv_offset = 0x400,
Mika Westerbergf6272172013-05-13 12:42:44 +0000285};
286
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200287static const struct lpss_device_desc byt_sdio_dev_desc = {
Rafael J. Wysocki3df2da92015-02-03 14:29:43 +0100288 .flags = LPSS_CLK,
Mika Westerbergf6272172013-05-13 12:42:44 +0000289};
290
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200291static const struct lpss_device_desc byt_i2c_dev_desc = {
Rafael J. Wysocki3df2da92015-02-03 14:29:43 +0100292 .flags = LPSS_CLK | LPSS_SAVE_CTX,
Mika Westerbergf6272172013-05-13 12:42:44 +0000293 .prv_offset = 0x800,
Heikki Krogerus03f09f72014-09-02 10:55:09 +0300294 .setup = byt_i2c_setup,
Alan Cox1bfbd8e2014-08-19 15:55:22 +0300295};
296
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530297static const struct lpss_device_desc bsw_i2c_dev_desc = {
298 .flags = LPSS_CLK | LPSS_SAVE_CTX | LPSS_NO_D3_DELAY,
299 .prv_offset = 0x800,
300 .setup = byt_i2c_setup,
301};
302
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100303static const struct lpss_device_desc bsw_spi_dev_desc = {
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530304 .flags = LPSS_CLK | LPSS_CLK_GATE | LPSS_CLK_DIVIDER | LPSS_SAVE_CTX
305 | LPSS_NO_D3_DELAY,
Mika Westerberg30957942015-02-18 13:50:17 +0200306 .prv_offset = 0x400,
307 .setup = lpss_deassert_reset,
308};
309
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100310#define ICPU(model) { X86_VENDOR_INTEL, 6, model, X86_FEATURE_ANY, }
311
312static const struct x86_cpu_id lpss_cpu_ids[] = {
Dave Hansen4626d842016-06-02 17:19:46 -0700313 ICPU(INTEL_FAM6_ATOM_SILVERMONT1), /* Valleyview, Bay Trail */
314 ICPU(INTEL_FAM6_ATOM_AIRMONT), /* Braswell, Cherry Trail */
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100315 {}
316};
317
Rafael J. Wysockid6ddaaa2014-05-30 14:34:05 +0200318#else
319
320#define LPSS_ADDR(desc) (0UL)
321
322#endif /* CONFIG_X86_INTEL_LPSS */
323
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100324static const struct acpi_device_id acpi_lpss_device_ids[] = {
Rafael J. Wysockib59cc202013-05-08 11:55:49 +0300325 /* Generic LPSS devices */
Rafael J. Wysockid6ddaaa2014-05-30 14:34:05 +0200326 { "INTL9C60", LPSS_ADDR(lpss_dma_desc) },
Rafael J. Wysockib59cc202013-05-08 11:55:49 +0300327
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100328 /* Lynxpoint LPSS devices */
Rafael J. Wysockid6ddaaa2014-05-30 14:34:05 +0200329 { "INT33C0", LPSS_ADDR(lpt_dev_desc) },
330 { "INT33C1", LPSS_ADDR(lpt_dev_desc) },
331 { "INT33C2", LPSS_ADDR(lpt_i2c_dev_desc) },
332 { "INT33C3", LPSS_ADDR(lpt_i2c_dev_desc) },
333 { "INT33C4", LPSS_ADDR(lpt_uart_dev_desc) },
334 { "INT33C5", LPSS_ADDR(lpt_uart_dev_desc) },
335 { "INT33C6", LPSS_ADDR(lpt_sdio_dev_desc) },
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100336 { "INT33C7", },
337
Mika Westerbergf6272172013-05-13 12:42:44 +0000338 /* BayTrail LPSS devices */
Rafael J. Wysockid6ddaaa2014-05-30 14:34:05 +0200339 { "80860F09", LPSS_ADDR(byt_pwm_dev_desc) },
340 { "80860F0A", LPSS_ADDR(byt_uart_dev_desc) },
341 { "80860F0E", LPSS_ADDR(byt_spi_dev_desc) },
342 { "80860F14", LPSS_ADDR(byt_sdio_dev_desc) },
343 { "80860F41", LPSS_ADDR(byt_i2c_dev_desc) },
Mika Westerbergf6272172013-05-13 12:42:44 +0000344 { "INT33B2", },
Jin Yao20482d32014-05-15 18:28:46 +0300345 { "INT33FC", },
Mika Westerbergf6272172013-05-13 12:42:44 +0000346
Alan Cox1bfbd8e2014-08-19 15:55:22 +0300347 /* Braswell LPSS devices */
Hans de Goede24071402018-08-27 09:45:44 +0200348 { "80862286", LPSS_ADDR(lpss_dma_desc) },
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530349 { "80862288", LPSS_ADDR(bsw_pwm_dev_desc) },
350 { "8086228A", LPSS_ADDR(bsw_uart_dev_desc) },
Mika Westerberg30957942015-02-18 13:50:17 +0200351 { "8086228E", LPSS_ADDR(bsw_spi_dev_desc) },
Hans de Goede24071402018-08-27 09:45:44 +0200352 { "808622C0", LPSS_ADDR(lpss_dma_desc) },
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530353 { "808622C1", LPSS_ADDR(bsw_i2c_dev_desc) },
Alan Cox1bfbd8e2014-08-19 15:55:22 +0300354
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530355 /* Broadwell LPSS devices */
Rafael J. Wysockid6ddaaa2014-05-30 14:34:05 +0200356 { "INT3430", LPSS_ADDR(lpt_dev_desc) },
357 { "INT3431", LPSS_ADDR(lpt_dev_desc) },
358 { "INT3432", LPSS_ADDR(lpt_i2c_dev_desc) },
359 { "INT3433", LPSS_ADDR(lpt_i2c_dev_desc) },
360 { "INT3434", LPSS_ADDR(lpt_uart_dev_desc) },
361 { "INT3435", LPSS_ADDR(lpt_uart_dev_desc) },
362 { "INT3436", LPSS_ADDR(lpt_sdio_dev_desc) },
Mika Westerberga4d97532013-11-12 11:48:19 +0200363 { "INT3437", },
364
Heikki Krogerusff8c1af2014-09-02 10:55:07 +0300365 /* Wildcat Point LPSS devices */
366 { "INT3438", LPSS_ADDR(lpt_dev_desc) },
Jie Yang43218a12014-08-01 09:06:35 +0800367
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100368 { }
369};
370
Rafael J. Wysockid6ddaaa2014-05-30 14:34:05 +0200371#ifdef CONFIG_X86_INTEL_LPSS
372
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100373static int is_memory(struct acpi_resource *res, void *not_used)
374{
375 struct resource r;
376 return !acpi_dev_resource_memory(res, &r);
377}
378
379/* LPSS main clock device. */
380static struct platform_device *lpss_clk_dev;
381
382static inline void lpt_register_clock_device(void)
383{
384 lpss_clk_dev = platform_device_register_simple("clk-lpt", -1, NULL, 0);
385}
386
387static int register_device_clock(struct acpi_device *adev,
388 struct lpss_private_data *pdata)
389{
390 const struct lpss_device_desc *dev_desc = pdata->dev_desc;
Heikki Krogerused3a8722014-05-19 14:42:07 +0300391 const char *devname = dev_name(&adev->dev);
Colin Ian King71c50db2017-10-15 12:50:34 +0100392 struct clk *clk;
Rafael J. Wysockib59cc202013-05-08 11:55:49 +0300393 struct lpss_clk_data *clk_data;
Heikki Krogerused3a8722014-05-19 14:42:07 +0300394 const char *parent, *clk_name;
395 void __iomem *prv_base;
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100396
397 if (!lpss_clk_dev)
398 lpt_register_clock_device();
399
Rafael J. Wysockib59cc202013-05-08 11:55:49 +0300400 clk_data = platform_get_drvdata(lpss_clk_dev);
401 if (!clk_data)
402 return -ENODEV;
Heikki Krogerusb0d00f82014-09-02 10:55:08 +0300403 clk = clk_data->clk;
Rafael J. Wysockib59cc202013-05-08 11:55:49 +0300404
405 if (!pdata->mmio_base
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +0100406 || pdata->mmio_size < dev_desc->prv_offset + LPSS_CLK_SIZE)
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100407 return -ENODATA;
408
Mika Westerbergf6272172013-05-13 12:42:44 +0000409 parent = clk_data->name;
Heikki Krogerused3a8722014-05-19 14:42:07 +0300410 prv_base = pdata->mmio_base + dev_desc->prv_offset;
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100411
Heikki Krogerus03f09f72014-09-02 10:55:09 +0300412 if (pdata->fixed_clk_rate) {
413 clk = clk_register_fixed_rate(NULL, devname, parent, 0,
414 pdata->fixed_clk_rate);
415 goto out;
Mika Westerbergf6272172013-05-13 12:42:44 +0000416 }
417
Heikki Krogerusff8c1af2014-09-02 10:55:07 +0300418 if (dev_desc->flags & LPSS_CLK_GATE) {
Heikki Krogerused3a8722014-05-19 14:42:07 +0300419 clk = clk_register_gate(NULL, devname, parent, 0,
420 prv_base, 0, 0, NULL);
421 parent = devname;
422 }
423
Heikki Krogerusff8c1af2014-09-02 10:55:07 +0300424 if (dev_desc->flags & LPSS_CLK_DIVIDER) {
Heikki Krogerused3a8722014-05-19 14:42:07 +0300425 /* Prevent division by zero */
426 if (!readl(prv_base))
427 writel(LPSS_CLK_DIVIDER_DEF_MASK, prv_base);
428
429 clk_name = kasprintf(GFP_KERNEL, "%s-div", devname);
430 if (!clk_name)
431 return -ENOMEM;
432 clk = clk_register_fractional_divider(NULL, clk_name, parent,
433 0, prv_base,
434 1, 15, 16, 15, 0, NULL);
435 parent = clk_name;
436
437 clk_name = kasprintf(GFP_KERNEL, "%s-update", devname);
438 if (!clk_name) {
439 kfree(parent);
440 return -ENOMEM;
441 }
442 clk = clk_register_gate(NULL, clk_name, parent,
443 CLK_SET_RATE_PARENT | CLK_SET_RATE_GATE,
444 prv_base, 31, 0, NULL);
445 kfree(parent);
446 kfree(clk_name);
Mika Westerbergf6272172013-05-13 12:42:44 +0000447 }
Heikki Krogerus03f09f72014-09-02 10:55:09 +0300448out:
Mika Westerbergf6272172013-05-13 12:42:44 +0000449 if (IS_ERR(clk))
450 return PTR_ERR(clk);
451
Heikki Krogerused3a8722014-05-19 14:42:07 +0300452 pdata->clk = clk;
Heikki Krogerusfcf07892015-03-06 15:48:38 +0200453 clk_register_clkdev(clk, dev_desc->clk_con_id, devname);
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100454 return 0;
455}
456
Adrian Huntere6ce0ce2017-12-15 14:48:47 +0200457struct lpss_device_links {
458 const char *supplier_hid;
459 const char *supplier_uid;
460 const char *consumer_hid;
461 const char *consumer_uid;
462 u32 flags;
463};
464
465/*
466 * The _DEP method is used to identify dependencies but instead of creating
467 * device links for every handle in _DEP, only links in the following list are
468 * created. That is necessary because, in the general case, _DEP can refer to
469 * devices that might not have drivers, or that are on different buses, or where
470 * the supplier is not enumerated until after the consumer is probed.
471 */
472static const struct lpss_device_links lpss_device_links[] = {
473 {"808622C1", "7", "80860F14", "3", DL_FLAG_PM_RUNTIME},
474};
475
Hans de Goedeea625ce2018-09-23 15:58:06 +0200476static bool hid_uid_match(struct acpi_device *adev,
Adrian Huntere6ce0ce2017-12-15 14:48:47 +0200477 const char *hid2, const char *uid2)
478{
Hans de Goedeea625ce2018-09-23 15:58:06 +0200479 const char *hid1 = acpi_device_hid(adev);
480 const char *uid1 = acpi_device_uid(adev);
481
Hans de Goedea92a5562018-09-23 15:58:07 +0200482 if (strcmp(hid1, hid2))
483 return false;
484
485 if (!uid2)
486 return true;
487
488 return uid1 && !strcmp(uid1, uid2);
Adrian Huntere6ce0ce2017-12-15 14:48:47 +0200489}
490
491static bool acpi_lpss_is_supplier(struct acpi_device *adev,
492 const struct lpss_device_links *link)
493{
Hans de Goedeea625ce2018-09-23 15:58:06 +0200494 return hid_uid_match(adev, link->supplier_hid, link->supplier_uid);
Adrian Huntere6ce0ce2017-12-15 14:48:47 +0200495}
496
497static bool acpi_lpss_is_consumer(struct acpi_device *adev,
498 const struct lpss_device_links *link)
499{
Hans de Goedeea625ce2018-09-23 15:58:06 +0200500 return hid_uid_match(adev, link->consumer_hid, link->consumer_uid);
Adrian Huntere6ce0ce2017-12-15 14:48:47 +0200501}
502
503struct hid_uid {
504 const char *hid;
505 const char *uid;
506};
507
508static int match_hid_uid(struct device *dev, void *data)
509{
510 struct acpi_device *adev = ACPI_COMPANION(dev);
511 struct hid_uid *id = data;
512
513 if (!adev)
514 return 0;
515
Hans de Goedeea625ce2018-09-23 15:58:06 +0200516 return hid_uid_match(adev, id->hid, id->uid);
Adrian Huntere6ce0ce2017-12-15 14:48:47 +0200517}
518
519static struct device *acpi_lpss_find_device(const char *hid, const char *uid)
520{
521 struct hid_uid data = {
522 .hid = hid,
523 .uid = uid,
524 };
525
526 return bus_find_device(&platform_bus_type, NULL, &data, match_hid_uid);
527}
528
529static bool acpi_lpss_dep(struct acpi_device *adev, acpi_handle handle)
530{
531 struct acpi_handle_list dep_devices;
532 acpi_status status;
533 int i;
534
535 if (!acpi_has_method(adev->handle, "_DEP"))
536 return false;
537
538 status = acpi_evaluate_reference(adev->handle, "_DEP", NULL,
539 &dep_devices);
540 if (ACPI_FAILURE(status)) {
541 dev_dbg(&adev->dev, "Failed to evaluate _DEP.\n");
542 return false;
543 }
544
545 for (i = 0; i < dep_devices.count; i++) {
546 if (dep_devices.handles[i] == handle)
547 return true;
548 }
549
550 return false;
551}
552
553static void acpi_lpss_link_consumer(struct device *dev1,
554 const struct lpss_device_links *link)
555{
556 struct device *dev2;
557
558 dev2 = acpi_lpss_find_device(link->consumer_hid, link->consumer_uid);
559 if (!dev2)
560 return;
561
562 if (acpi_lpss_dep(ACPI_COMPANION(dev2), ACPI_HANDLE(dev1)))
563 device_link_add(dev2, dev1, link->flags);
564
565 put_device(dev2);
566}
567
568static void acpi_lpss_link_supplier(struct device *dev1,
569 const struct lpss_device_links *link)
570{
571 struct device *dev2;
572
573 dev2 = acpi_lpss_find_device(link->supplier_hid, link->supplier_uid);
574 if (!dev2)
575 return;
576
577 if (acpi_lpss_dep(ACPI_COMPANION(dev1), ACPI_HANDLE(dev2)))
578 device_link_add(dev1, dev2, link->flags);
579
580 put_device(dev2);
581}
582
583static void acpi_lpss_create_device_links(struct acpi_device *adev,
584 struct platform_device *pdev)
585{
586 int i;
587
588 for (i = 0; i < ARRAY_SIZE(lpss_device_links); i++) {
589 const struct lpss_device_links *link = &lpss_device_links[i];
590
591 if (acpi_lpss_is_supplier(adev, link))
592 acpi_lpss_link_consumer(&pdev->dev, link);
593
594 if (acpi_lpss_is_consumer(adev, link))
595 acpi_lpss_link_supplier(&pdev->dev, link);
596 }
597}
598
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100599static int acpi_lpss_create_device(struct acpi_device *adev,
600 const struct acpi_device_id *id)
601{
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200602 const struct lpss_device_desc *dev_desc;
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100603 struct lpss_private_data *pdata;
Jiang Liu90e97822015-02-05 13:44:43 +0800604 struct resource_entry *rentry;
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100605 struct list_head resource_list;
Rafael J. Wysocki8ce62f82014-05-25 14:38:52 +0200606 struct platform_device *pdev;
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100607 int ret;
608
Mathias Krauseb2687cd2015-06-13 14:26:50 +0200609 dev_desc = (const struct lpss_device_desc *)id->driver_data;
Rafael J. Wysocki8ce62f82014-05-25 14:38:52 +0200610 if (!dev_desc) {
Heikki Krogerus15718752016-11-03 16:21:26 +0200611 pdev = acpi_create_platform_device(adev, NULL);
Rafael J. Wysocki8ce62f82014-05-25 14:38:52 +0200612 return IS_ERR_OR_NULL(pdev) ? PTR_ERR(pdev) : 1;
613 }
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100614 pdata = kzalloc(sizeof(*pdata), GFP_KERNEL);
615 if (!pdata)
616 return -ENOMEM;
617
618 INIT_LIST_HEAD(&resource_list);
619 ret = acpi_dev_get_resources(adev, &resource_list, is_memory, NULL);
620 if (ret < 0)
621 goto err_out;
622
623 list_for_each_entry(rentry, &resource_list, node)
Jiang Liu90e97822015-02-05 13:44:43 +0800624 if (resource_type(rentry->res) == IORESOURCE_MEM) {
Mika Westerberg958c4eb2013-06-18 16:51:35 +0300625 if (dev_desc->prv_size_override)
626 pdata->mmio_size = dev_desc->prv_size_override;
627 else
Jiang Liu90e97822015-02-05 13:44:43 +0800628 pdata->mmio_size = resource_size(rentry->res);
629 pdata->mmio_base = ioremap(rentry->res->start,
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100630 pdata->mmio_size);
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100631 break;
632 }
633
634 acpi_dev_free_resource_list(&resource_list);
635
Rafael J. Wysockid3e13ff2015-07-07 00:31:47 +0200636 if (!pdata->mmio_base) {
Hans de Goedee1681592018-01-14 21:01:48 +0100637 /* Avoid acpi_bus_attach() instantiating a pdev for this dev. */
638 adev->pnp.type.platform_id = 0;
Ronald Tschalära4bb2b42017-08-09 01:15:42 -0700639 /* Skip the device, but continue the namespace scan. */
640 ret = 0;
Rafael J. Wysockid3e13ff2015-07-07 00:31:47 +0200641 goto err_out;
642 }
643
Hans de Goededd242a02017-07-06 18:49:27 +0200644 pdata->adev = adev;
Mika Westerbergaf65cfe2013-09-02 13:30:25 +0300645 pdata->dev_desc = dev_desc;
646
Heikki Krogerus03f09f72014-09-02 10:55:09 +0300647 if (dev_desc->setup)
648 dev_desc->setup(pdata);
649
Heikki Krogerusff8c1af2014-09-02 10:55:07 +0300650 if (dev_desc->flags & LPSS_CLK) {
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100651 ret = register_device_clock(adev, pdata);
652 if (ret) {
Rafael J. Wysockib9e95fc2013-06-19 00:45:34 +0200653 /* Skip the device, but continue the namespace scan. */
654 ret = 0;
655 goto err_out;
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100656 }
657 }
658
Rafael J. Wysockib9e95fc2013-06-19 00:45:34 +0200659 /*
660 * This works around a known issue in ACPI tables where LPSS devices
661 * have _PS0 and _PS3 without _PSC (and no power resources), so
662 * acpi_bus_init_power() will assume that the BIOS has put them into D0.
663 */
664 ret = acpi_device_fix_up_power(adev);
665 if (ret) {
666 /* Skip the device, but continue the namespace scan. */
667 ret = 0;
668 goto err_out;
669 }
670
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100671 adev->driver_data = pdata;
Heikki Krogerus15718752016-11-03 16:21:26 +0200672 pdev = acpi_create_platform_device(adev, dev_desc->properties);
Rafael J. Wysocki8ce62f82014-05-25 14:38:52 +0200673 if (!IS_ERR_OR_NULL(pdev)) {
Adrian Huntere6ce0ce2017-12-15 14:48:47 +0200674 acpi_lpss_create_device_links(adev, pdev);
Rafael J. Wysocki8ce62f82014-05-25 14:38:52 +0200675 return 1;
676 }
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100677
Rafael J. Wysocki8ce62f82014-05-25 14:38:52 +0200678 ret = PTR_ERR(pdev);
Rafael J. Wysockif58b0822013-03-06 23:46:20 +0100679 adev->driver_data = NULL;
680
681 err_out:
682 kfree(pdata);
683 return ret;
684}
685
Rafael J. Wysocki1a8f8352014-02-11 00:35:53 +0100686static u32 __lpss_reg_read(struct lpss_private_data *pdata, unsigned int reg)
687{
688 return readl(pdata->mmio_base + pdata->dev_desc->prv_offset + reg);
689}
690
691static void __lpss_reg_write(u32 val, struct lpss_private_data *pdata,
692 unsigned int reg)
693{
694 writel(val, pdata->mmio_base + pdata->dev_desc->prv_offset + reg);
695}
696
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +0100697static int lpss_reg_read(struct device *dev, unsigned int reg, u32 *val)
698{
699 struct acpi_device *adev;
700 struct lpss_private_data *pdata;
701 unsigned long flags;
702 int ret;
703
704 ret = acpi_bus_get_device(ACPI_HANDLE(dev), &adev);
705 if (WARN_ON(ret))
706 return ret;
707
708 spin_lock_irqsave(&dev->power.lock, flags);
709 if (pm_runtime_suspended(dev)) {
710 ret = -EAGAIN;
711 goto out;
712 }
713 pdata = acpi_driver_data(adev);
714 if (WARN_ON(!pdata || !pdata->mmio_base)) {
715 ret = -ENODEV;
716 goto out;
717 }
Rafael J. Wysocki1a8f8352014-02-11 00:35:53 +0100718 *val = __lpss_reg_read(pdata, reg);
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +0100719
720 out:
721 spin_unlock_irqrestore(&dev->power.lock, flags);
722 return ret;
723}
724
725static ssize_t lpss_ltr_show(struct device *dev, struct device_attribute *attr,
726 char *buf)
727{
728 u32 ltr_value = 0;
729 unsigned int reg;
730 int ret;
731
732 reg = strcmp(attr->attr.name, "auto_ltr") ? LPSS_SW_LTR : LPSS_AUTO_LTR;
733 ret = lpss_reg_read(dev, reg, &ltr_value);
734 if (ret)
735 return ret;
736
737 return snprintf(buf, PAGE_SIZE, "%08x\n", ltr_value);
738}
739
740static ssize_t lpss_ltr_mode_show(struct device *dev,
741 struct device_attribute *attr, char *buf)
742{
743 u32 ltr_mode = 0;
744 char *outstr;
745 int ret;
746
747 ret = lpss_reg_read(dev, LPSS_GENERAL, &ltr_mode);
748 if (ret)
749 return ret;
750
751 outstr = (ltr_mode & LPSS_GENERAL_LTR_MODE_SW) ? "sw" : "auto";
752 return sprintf(buf, "%s\n", outstr);
753}
754
755static DEVICE_ATTR(auto_ltr, S_IRUSR, lpss_ltr_show, NULL);
756static DEVICE_ATTR(sw_ltr, S_IRUSR, lpss_ltr_show, NULL);
757static DEVICE_ATTR(ltr_mode, S_IRUSR, lpss_ltr_mode_show, NULL);
758
759static struct attribute *lpss_attrs[] = {
760 &dev_attr_auto_ltr.attr,
761 &dev_attr_sw_ltr.attr,
762 &dev_attr_ltr_mode.attr,
763 NULL,
764};
765
Arvind Yadav31945d02017-06-30 18:23:50 +0530766static const struct attribute_group lpss_attr_group = {
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +0100767 .attrs = lpss_attrs,
768 .name = "lpss_ltr",
769};
770
Rafael J. Wysocki1a8f8352014-02-11 00:35:53 +0100771static void acpi_lpss_set_ltr(struct device *dev, s32 val)
772{
773 struct lpss_private_data *pdata = acpi_driver_data(ACPI_COMPANION(dev));
774 u32 ltr_mode, ltr_val;
775
776 ltr_mode = __lpss_reg_read(pdata, LPSS_GENERAL);
777 if (val < 0) {
778 if (ltr_mode & LPSS_GENERAL_LTR_MODE_SW) {
779 ltr_mode &= ~LPSS_GENERAL_LTR_MODE_SW;
780 __lpss_reg_write(ltr_mode, pdata, LPSS_GENERAL);
781 }
782 return;
783 }
784 ltr_val = __lpss_reg_read(pdata, LPSS_SW_LTR) & ~LPSS_LTR_SNOOP_MASK;
785 if (val >= LPSS_LTR_SNOOP_LAT_CUTOFF) {
786 ltr_val |= LPSS_LTR_SNOOP_LAT_32US;
787 val = LPSS_LTR_MAX_VAL;
788 } else if (val > LPSS_LTR_MAX_VAL) {
789 ltr_val |= LPSS_LTR_SNOOP_LAT_32US | LPSS_LTR_SNOOP_REQ;
790 val >>= LPSS_LTR_SNOOP_LAT_SHIFT;
791 } else {
792 ltr_val |= LPSS_LTR_SNOOP_LAT_1US | LPSS_LTR_SNOOP_REQ;
793 }
794 ltr_val |= val;
795 __lpss_reg_write(ltr_val, pdata, LPSS_SW_LTR);
796 if (!(ltr_mode & LPSS_GENERAL_LTR_MODE_SW)) {
797 ltr_mode |= LPSS_GENERAL_LTR_MODE_SW;
798 __lpss_reg_write(ltr_mode, pdata, LPSS_GENERAL);
799 }
800}
801
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300802#ifdef CONFIG_PM
803/**
804 * acpi_lpss_save_ctx() - Save the private registers of LPSS device
805 * @dev: LPSS device
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +0200806 * @pdata: pointer to the private data of the LPSS device
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300807 *
808 * Most LPSS devices have private registers which may loose their context when
809 * the device is powered down. acpi_lpss_save_ctx() saves those registers into
810 * prv_reg_ctx array.
811 */
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +0200812static void acpi_lpss_save_ctx(struct device *dev,
813 struct lpss_private_data *pdata)
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300814{
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300815 unsigned int i;
816
817 for (i = 0; i < LPSS_PRV_REG_COUNT; i++) {
818 unsigned long offset = i * sizeof(u32);
819
820 pdata->prv_reg_ctx[i] = __lpss_reg_read(pdata, offset);
821 dev_dbg(dev, "saving 0x%08x from LPSS reg at offset 0x%02lx\n",
822 pdata->prv_reg_ctx[i], offset);
823 }
824}
825
826/**
827 * acpi_lpss_restore_ctx() - Restore the private registers of LPSS device
828 * @dev: LPSS device
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +0200829 * @pdata: pointer to the private data of the LPSS device
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300830 *
831 * Restores the registers that were previously stored with acpi_lpss_save_ctx().
832 */
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +0200833static void acpi_lpss_restore_ctx(struct device *dev,
834 struct lpss_private_data *pdata)
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300835{
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300836 unsigned int i;
837
Andy Shevchenko02b98542015-12-04 23:49:21 +0200838 for (i = 0; i < LPSS_PRV_REG_COUNT; i++) {
839 unsigned long offset = i * sizeof(u32);
840
841 __lpss_reg_write(pdata->prv_reg_ctx[i], pdata, offset);
842 dev_dbg(dev, "restoring 0x%08x to LPSS reg at offset 0x%02lx\n",
843 pdata->prv_reg_ctx[i], offset);
844 }
845}
846
847static void acpi_lpss_d3_to_d0_delay(struct lpss_private_data *pdata)
848{
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300849 /*
850 * The following delay is needed or the subsequent write operations may
851 * fail. The LPSS devices are actually PCI devices and the PCI spec
852 * expects 10ms delay before the device can be accessed after D3 to D0
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530853 * transition. However some platforms like BSW does not need this delay.
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300854 */
Srinidhi Kasagarb00855a2015-08-27 21:30:55 +0530855 unsigned int delay = 10; /* default 10ms delay */
856
857 if (pdata->dev_desc->flags & LPSS_NO_D3_DELAY)
858 delay = 0;
859
860 msleep(delay);
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300861}
862
Andy Shevchenkoc3a49cf2015-12-04 23:49:20 +0200863static int acpi_lpss_activate(struct device *dev)
864{
865 struct lpss_private_data *pdata = acpi_driver_data(ACPI_COMPANION(dev));
866 int ret;
867
Rafael J. Wysocki63705c42017-10-10 18:49:22 +0200868 ret = acpi_dev_resume(dev);
Andy Shevchenkoc3a49cf2015-12-04 23:49:20 +0200869 if (ret)
870 return ret;
871
872 acpi_lpss_d3_to_d0_delay(pdata);
873
874 /*
875 * This is called only on ->probe() stage where a device is either in
876 * known state defined by BIOS or most likely powered off. Due to this
877 * we have to deassert reset line to be sure that ->probe() will
878 * recognize the device.
879 */
880 if (pdata->dev_desc->flags & LPSS_SAVE_CTX)
881 lpss_deassert_reset(pdata);
882
883 return 0;
884}
885
886static void acpi_lpss_dismiss(struct device *dev)
887{
Rafael J. Wysockicbe25ce2017-10-14 17:43:15 +0200888 acpi_dev_suspend(dev, false);
Andy Shevchenkoc3a49cf2015-12-04 23:49:20 +0200889}
890
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100891/* IOSF SB for LPSS island */
892#define LPSS_IOSF_UNIT_LPIOEP 0xA0
893#define LPSS_IOSF_UNIT_LPIO1 0xAB
894#define LPSS_IOSF_UNIT_LPIO2 0xAC
895
896#define LPSS_IOSF_PMCSR 0x84
897#define LPSS_PMCSR_D0 0
898#define LPSS_PMCSR_D3hot 3
899#define LPSS_PMCSR_Dx_MASK GENMASK(1, 0)
900
901#define LPSS_IOSF_GPIODEF0 0x154
902#define LPSS_GPIODEF0_DMA1_D3 BIT(2)
903#define LPSS_GPIODEF0_DMA2_D3 BIT(3)
904#define LPSS_GPIODEF0_DMA_D3_MASK GENMASK(3, 2)
Andy Shevchenkod132d6d2016-11-17 16:30:06 +0200905#define LPSS_GPIODEF0_DMA_LLP BIT(13)
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100906
907static DEFINE_MUTEX(lpss_iosf_mutex);
Zhang Ruif11fc4b2018-09-03 10:00:07 +0800908static bool lpss_iosf_d3_entered = true;
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100909
910static void lpss_iosf_enter_d3_state(void)
911{
912 u32 value1 = 0;
Andy Shevchenkod132d6d2016-11-17 16:30:06 +0200913 u32 mask1 = LPSS_GPIODEF0_DMA_D3_MASK | LPSS_GPIODEF0_DMA_LLP;
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100914 u32 value2 = LPSS_PMCSR_D3hot;
915 u32 mask2 = LPSS_PMCSR_Dx_MASK;
916 /*
917 * PMC provides an information about actual status of the LPSS devices.
918 * Here we read the values related to LPSS power island, i.e. LPSS
919 * devices, excluding both LPSS DMA controllers, along with SCC domain.
920 */
Hans de Goede86b62e52018-09-08 20:08:13 +0200921 u32 func_dis, d3_sts_0, pmc_status;
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100922 int ret;
923
924 ret = pmc_atom_read(PMC_FUNC_DIS, &func_dis);
925 if (ret)
926 return;
927
928 mutex_lock(&lpss_iosf_mutex);
929
930 ret = pmc_atom_read(PMC_D3_STS_0, &d3_sts_0);
931 if (ret)
932 goto exit;
933
934 /*
935 * Get the status of entire LPSS power island per device basis.
936 * Shutdown both LPSS DMA controllers if and only if all other devices
937 * are already in D3hot.
938 */
Hans de Goede86b62e52018-09-08 20:08:13 +0200939 pmc_status = (~(d3_sts_0 | func_dis)) & pmc_atom_d3_mask;
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100940 if (pmc_status)
941 goto exit;
942
943 iosf_mbi_modify(LPSS_IOSF_UNIT_LPIO1, MBI_CFG_WRITE,
944 LPSS_IOSF_PMCSR, value2, mask2);
945
946 iosf_mbi_modify(LPSS_IOSF_UNIT_LPIO2, MBI_CFG_WRITE,
947 LPSS_IOSF_PMCSR, value2, mask2);
948
949 iosf_mbi_modify(LPSS_IOSF_UNIT_LPIOEP, MBI_CR_WRITE,
950 LPSS_IOSF_GPIODEF0, value1, mask1);
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +0200951
952 lpss_iosf_d3_entered = true;
953
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100954exit:
955 mutex_unlock(&lpss_iosf_mutex);
956}
957
958static void lpss_iosf_exit_d3_state(void)
959{
Andy Shevchenkod132d6d2016-11-17 16:30:06 +0200960 u32 value1 = LPSS_GPIODEF0_DMA1_D3 | LPSS_GPIODEF0_DMA2_D3 |
961 LPSS_GPIODEF0_DMA_LLP;
962 u32 mask1 = LPSS_GPIODEF0_DMA_D3_MASK | LPSS_GPIODEF0_DMA_LLP;
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100963 u32 value2 = LPSS_PMCSR_D0;
964 u32 mask2 = LPSS_PMCSR_Dx_MASK;
965
966 mutex_lock(&lpss_iosf_mutex);
967
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +0200968 if (!lpss_iosf_d3_entered)
969 goto exit;
970
971 lpss_iosf_d3_entered = false;
972
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100973 iosf_mbi_modify(LPSS_IOSF_UNIT_LPIOEP, MBI_CR_WRITE,
974 LPSS_IOSF_GPIODEF0, value1, mask1);
975
976 iosf_mbi_modify(LPSS_IOSF_UNIT_LPIO2, MBI_CFG_WRITE,
977 LPSS_IOSF_PMCSR, value2, mask2);
978
979 iosf_mbi_modify(LPSS_IOSF_UNIT_LPIO1, MBI_CFG_WRITE,
980 LPSS_IOSF_PMCSR, value2, mask2);
981
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +0200982exit:
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100983 mutex_unlock(&lpss_iosf_mutex);
984}
985
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +0200986static int acpi_lpss_suspend(struct device *dev, bool wakeup)
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300987{
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +0200988 struct lpss_private_data *pdata = acpi_driver_data(ACPI_COMPANION(dev));
989 int ret;
Heikki Krogerusc78b0832014-05-23 16:15:09 +0300990
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +0200991 if (pdata->dev_desc->flags & LPSS_SAVE_CTX)
992 acpi_lpss_save_ctx(dev, pdata);
993
Rafael J. Wysockia192aa92017-10-16 03:29:55 +0200994 ret = acpi_dev_suspend(dev, wakeup);
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +0100995
996 /*
997 * This call must be last in the sequence, otherwise PMC will return
998 * wrong status for devices being about to be powered off. See
999 * lpss_iosf_enter_d3_state() for further information.
1000 */
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +02001001 if (acpi_target_system_state() == ACPI_STATE_S0 &&
Rafael J. Wysockia09c5912018-06-13 13:17:26 +02001002 lpss_quirks & LPSS_QUIRK_ALWAYS_POWER_ON && iosf_mbi_available())
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +01001003 lpss_iosf_enter_d3_state();
1004
1005 return ret;
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001006}
1007
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +02001008static int acpi_lpss_resume(struct device *dev)
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001009{
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +02001010 struct lpss_private_data *pdata = acpi_driver_data(ACPI_COMPANION(dev));
1011 int ret;
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001012
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +01001013 /*
1014 * This call is kept first to be in symmetry with
1015 * acpi_lpss_runtime_suspend() one.
1016 */
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +02001017 if (lpss_quirks & LPSS_QUIRK_ALWAYS_POWER_ON && iosf_mbi_available())
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +01001018 lpss_iosf_exit_d3_state();
1019
Rafael J. Wysocki63705c42017-10-10 18:49:22 +02001020 ret = acpi_dev_resume(dev);
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001021 if (ret)
1022 return ret;
1023
Andy Shevchenko02b98542015-12-04 23:49:21 +02001024 acpi_lpss_d3_to_d0_delay(pdata);
1025
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +02001026 if (pdata->dev_desc->flags & LPSS_SAVE_CTX)
1027 acpi_lpss_restore_ctx(dev, pdata);
1028
Rafael J. Wysockia192aa92017-10-16 03:29:55 +02001029 return 0;
1030}
1031
1032#ifdef CONFIG_PM_SLEEP
1033static int acpi_lpss_suspend_late(struct device *dev)
1034{
Rafael J. Wysocki05087362017-10-27 10:10:16 +02001035 int ret;
Rafael J. Wysockia192aa92017-10-16 03:29:55 +02001036
Rafael J. Wysocki05087362017-10-27 10:10:16 +02001037 if (dev_pm_smart_suspend_and_suspended(dev))
1038 return 0;
1039
1040 ret = pm_generic_suspend_late(dev);
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +02001041 return ret ? ret : acpi_lpss_suspend(dev, device_may_wakeup(dev));
Rafael J. Wysockia192aa92017-10-16 03:29:55 +02001042}
1043
1044static int acpi_lpss_resume_early(struct device *dev)
1045{
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +02001046 int ret = acpi_lpss_resume(dev);
Rafael J. Wysockia192aa92017-10-16 03:29:55 +02001047
1048 return ret ? ret : pm_generic_resume_early(dev);
1049}
1050#endif /* CONFIG_PM_SLEEP */
1051
1052static int acpi_lpss_runtime_suspend(struct device *dev)
1053{
1054 int ret = pm_generic_runtime_suspend(dev);
1055
1056 return ret ? ret : acpi_lpss_suspend(dev, true);
1057}
1058
1059static int acpi_lpss_runtime_resume(struct device *dev)
1060{
Rafael J. Wysocki12864ff2018-07-26 10:58:20 +02001061 int ret = acpi_lpss_resume(dev);
Rafael J. Wysockia192aa92017-10-16 03:29:55 +02001062
1063 return ret ? ret : pm_generic_runtime_resume(dev);
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001064}
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001065#endif /* CONFIG_PM */
1066
1067static struct dev_pm_domain acpi_lpss_pm_domain = {
Andy Shevchenkoc3a49cf2015-12-04 23:49:20 +02001068#ifdef CONFIG_PM
1069 .activate = acpi_lpss_activate,
1070 .dismiss = acpi_lpss_dismiss,
1071#endif
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001072 .ops = {
Rafael J. Wysocki5de21bb92014-11-27 22:38:23 +01001073#ifdef CONFIG_PM
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001074#ifdef CONFIG_PM_SLEEP
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001075 .prepare = acpi_subsys_prepare,
Ulf Hanssone4da8172017-10-03 09:11:06 +02001076 .complete = acpi_subsys_complete,
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001077 .suspend = acpi_subsys_suspend,
Fu Zhonghuif4168b62014-09-09 16:30:06 +02001078 .suspend_late = acpi_lpss_suspend_late,
Rafael J. Wysocki05087362017-10-27 10:10:16 +02001079 .suspend_noirq = acpi_subsys_suspend_noirq,
1080 .resume_noirq = acpi_subsys_resume_noirq,
Fu Zhonghuif4168b62014-09-09 16:30:06 +02001081 .resume_early = acpi_lpss_resume_early,
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001082 .freeze = acpi_subsys_freeze,
Rafael J. Wysocki05087362017-10-27 10:10:16 +02001083 .freeze_late = acpi_subsys_freeze_late,
1084 .freeze_noirq = acpi_subsys_freeze_noirq,
1085 .thaw_noirq = acpi_subsys_thaw_noirq,
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001086 .poweroff = acpi_subsys_suspend,
Fu Zhonghuif4168b62014-09-09 16:30:06 +02001087 .poweroff_late = acpi_lpss_suspend_late,
Rafael J. Wysocki05087362017-10-27 10:10:16 +02001088 .poweroff_noirq = acpi_subsys_suspend_noirq,
1089 .restore_noirq = acpi_subsys_resume_noirq,
Fu Zhonghuif4168b62014-09-09 16:30:06 +02001090 .restore_early = acpi_lpss_resume_early,
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001091#endif
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001092 .runtime_suspend = acpi_lpss_runtime_suspend,
1093 .runtime_resume = acpi_lpss_runtime_resume,
1094#endif
1095 },
1096};
1097
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +01001098static int acpi_lpss_platform_notify(struct notifier_block *nb,
1099 unsigned long action, void *data)
1100{
1101 struct platform_device *pdev = to_platform_device(data);
1102 struct lpss_private_data *pdata;
1103 struct acpi_device *adev;
1104 const struct acpi_device_id *id;
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +01001105
1106 id = acpi_match_device(acpi_lpss_device_ids, &pdev->dev);
1107 if (!id || !id->driver_data)
1108 return 0;
1109
1110 if (acpi_bus_get_device(ACPI_HANDLE(&pdev->dev), &adev))
1111 return 0;
1112
1113 pdata = acpi_driver_data(adev);
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +02001114 if (!pdata)
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +01001115 return 0;
1116
Andy Shevchenkocb39dcd2014-11-05 18:34:45 +02001117 if (pdata->mmio_base &&
1118 pdata->mmio_size < pdata->dev_desc->prv_offset + LPSS_LTR_SIZE) {
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +01001119 dev_err(&pdev->dev, "MMIO size insufficient to access LTR\n");
1120 return 0;
1121 }
1122
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001123 switch (action) {
Andy Shevchenkode16d552015-12-04 23:49:19 +02001124 case BUS_NOTIFY_BIND_DRIVER:
Tomeu Vizoso989561d2016-01-07 16:46:13 +01001125 dev_pm_domain_set(&pdev->dev, &acpi_lpss_pm_domain);
Andy Shevchenkob5f88dd2015-12-04 23:49:18 +02001126 break;
Andy Shevchenkode16d552015-12-04 23:49:19 +02001127 case BUS_NOTIFY_DRIVER_NOT_BOUND:
Andy Shevchenkob5f88dd2015-12-04 23:49:18 +02001128 case BUS_NOTIFY_UNBOUND_DRIVER:
Andy Shevchenko5be6ada2016-02-01 16:17:38 +02001129 dev_pm_domain_set(&pdev->dev, NULL);
Andy Shevchenkob5f88dd2015-12-04 23:49:18 +02001130 break;
1131 case BUS_NOTIFY_ADD_DEVICE:
Tomeu Vizoso989561d2016-01-07 16:46:13 +01001132 dev_pm_domain_set(&pdev->dev, &acpi_lpss_pm_domain);
Heikki Krogerusff8c1af2014-09-02 10:55:07 +03001133 if (pdata->dev_desc->flags & LPSS_LTR)
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001134 return sysfs_create_group(&pdev->dev.kobj,
1135 &lpss_attr_group);
Andy Shevchenko01ac1702014-11-05 18:34:46 +02001136 break;
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001137 case BUS_NOTIFY_DEL_DEVICE:
Heikki Krogerusff8c1af2014-09-02 10:55:07 +03001138 if (pdata->dev_desc->flags & LPSS_LTR)
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001139 sysfs_remove_group(&pdev->dev.kobj, &lpss_attr_group);
Tomeu Vizoso989561d2016-01-07 16:46:13 +01001140 dev_pm_domain_set(&pdev->dev, NULL);
Andy Shevchenko01ac1702014-11-05 18:34:46 +02001141 break;
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001142 default:
1143 break;
1144 }
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +01001145
Heikki Krogerusc78b0832014-05-23 16:15:09 +03001146 return 0;
Rafael J. Wysocki2e0f8822013-03-06 23:46:28 +01001147}
1148
1149static struct notifier_block acpi_lpss_nb = {
1150 .notifier_call = acpi_lpss_platform_notify,
1151};
1152
Rafael J. Wysocki1a8f8352014-02-11 00:35:53 +01001153static void acpi_lpss_bind(struct device *dev)
1154{
1155 struct lpss_private_data *pdata = acpi_driver_data(ACPI_COMPANION(dev));
1156
Heikki Krogerusff8c1af2014-09-02 10:55:07 +03001157 if (!pdata || !pdata->mmio_base || !(pdata->dev_desc->flags & LPSS_LTR))
Rafael J. Wysocki1a8f8352014-02-11 00:35:53 +01001158 return;
1159
1160 if (pdata->mmio_size >= pdata->dev_desc->prv_offset + LPSS_LTR_SIZE)
1161 dev->power.set_latency_tolerance = acpi_lpss_set_ltr;
1162 else
1163 dev_err(dev, "MMIO size insufficient to access LTR\n");
1164}
1165
1166static void acpi_lpss_unbind(struct device *dev)
1167{
1168 dev->power.set_latency_tolerance = NULL;
1169}
1170
Rafael J. Wysockif58b0822013-03-06 23:46:20 +01001171static struct acpi_scan_handler lpss_handler = {
1172 .ids = acpi_lpss_device_ids,
1173 .attach = acpi_lpss_create_device,
Rafael J. Wysocki1a8f8352014-02-11 00:35:53 +01001174 .bind = acpi_lpss_bind,
1175 .unbind = acpi_lpss_unbind,
Rafael J. Wysockif58b0822013-03-06 23:46:20 +01001176};
1177
1178void __init acpi_lpss_init(void)
1179{
Andy Shevchenkoeebb3e82015-12-12 02:45:06 +01001180 const struct x86_cpu_id *id;
1181 int ret;
1182
1183 ret = lpt_clk_init();
1184 if (ret)
1185 return;
1186
1187 id = x86_match_cpu(lpss_cpu_ids);
1188 if (id)
1189 lpss_quirks |= LPSS_QUIRK_ALWAYS_POWER_ON;
1190
1191 bus_register_notifier(&platform_bus_type, &acpi_lpss_nb);
1192 acpi_scan_add_handler(&lpss_handler);
Rafael J. Wysockif58b0822013-03-06 23:46:20 +01001193}
Rafael J. Wysockid6ddaaa2014-05-30 14:34:05 +02001194
1195#else
1196
1197static struct acpi_scan_handler lpss_handler = {
1198 .ids = acpi_lpss_device_ids,
1199};
1200
1201void __init acpi_lpss_init(void)
1202{
1203 acpi_scan_add_handler(&lpss_handler);
1204}
1205
1206#endif /* CONFIG_X86_INTEL_LPSS */