xref: /openbmc/linux/drivers/pinctrl/pinctrl-sx150x.c (revision f0fbe7bce733561b76a5b55c5f4625888acd3792)
19e80f906SNeil Armstrong /*
29e80f906SNeil Armstrong  * Copyright (c) 2016, BayLibre, SAS. All rights reserved.
39e80f906SNeil Armstrong  * Author: Neil Armstrong <narmstrong@baylibre.com>
49e80f906SNeil Armstrong  *
59e80f906SNeil Armstrong  * Copyright (c) 2010, Code Aurora Forum. All rights reserved.
69e80f906SNeil Armstrong  *
79e80f906SNeil Armstrong  * Driver for Semtech SX150X I2C GPIO Expanders
86c4ef627SPeter Rosin  * The handling of the 4-bit chips (SX1501/SX1504/SX1507) is untested.
99e80f906SNeil Armstrong  *
109e80f906SNeil Armstrong  * Author: Gregory Bean <gbean@codeaurora.org>
119e80f906SNeil Armstrong  *
129e80f906SNeil Armstrong  * This program is free software; you can redistribute it and/or modify
139e80f906SNeil Armstrong  * it under the terms of the GNU General Public License version 2 and
149e80f906SNeil Armstrong  * only version 2 as published by the Free Software Foundation.
159e80f906SNeil Armstrong  *
169e80f906SNeil Armstrong  * This program is distributed in the hope that it will be useful,
179e80f906SNeil Armstrong  * but WITHOUT ANY WARRANTY; without even the implied warranty of
189e80f906SNeil Armstrong  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
199e80f906SNeil Armstrong  * GNU General Public License for more details.
209e80f906SNeil Armstrong  */
219e80f906SNeil Armstrong 
220db0f26cSAndrey Smirnov #include <linux/regmap.h>
239e80f906SNeil Armstrong #include <linux/i2c.h>
249e80f906SNeil Armstrong #include <linux/init.h>
259e80f906SNeil Armstrong #include <linux/interrupt.h>
269e80f906SNeil Armstrong #include <linux/irq.h>
279e80f906SNeil Armstrong #include <linux/mutex.h>
289e80f906SNeil Armstrong #include <linux/slab.h>
299e80f906SNeil Armstrong #include <linux/of.h>
30e3ba8120SAndrey Smirnov #include <linux/of_device.h>
31fc669d13SLinus Walleij #include <linux/gpio/driver.h>
329e80f906SNeil Armstrong #include <linux/pinctrl/pinconf.h>
339e80f906SNeil Armstrong #include <linux/pinctrl/pinctrl.h>
349e80f906SNeil Armstrong #include <linux/pinctrl/pinmux.h>
359e80f906SNeil Armstrong #include <linux/pinctrl/pinconf-generic.h>
369e80f906SNeil Armstrong 
379e80f906SNeil Armstrong #include "core.h"
389e80f906SNeil Armstrong #include "pinconf.h"
399e80f906SNeil Armstrong #include "pinctrl-utils.h"
409e80f906SNeil Armstrong 
419e80f906SNeil Armstrong /* The chip models of sx150x */
429e80f906SNeil Armstrong enum {
439e80f906SNeil Armstrong 	SX150X_123 = 0,
449e80f906SNeil Armstrong 	SX150X_456,
459e80f906SNeil Armstrong 	SX150X_789,
469e80f906SNeil Armstrong };
477d68a79aSAndrey Smirnov enum {
487d68a79aSAndrey Smirnov 	SX150X_789_REG_MISC_AUTOCLEAR_OFF = 1 << 0,
490db0f26cSAndrey Smirnov 	SX150X_MAX_REGISTER = 0xad,
50fd931f23SAndrey Smirnov 	SX150X_IRQ_TYPE_EDGE_RISING = 0x1,
51fd931f23SAndrey Smirnov 	SX150X_IRQ_TYPE_EDGE_FALLING = 0x2,
52f9038d60SAndrey Smirnov 	SX150X_789_RESET_KEY1 = 0x12,
53f9038d60SAndrey Smirnov 	SX150X_789_RESET_KEY2 = 0x34,
547d68a79aSAndrey Smirnov };
559e80f906SNeil Armstrong 
569e80f906SNeil Armstrong struct sx150x_123_pri {
579e80f906SNeil Armstrong 	u8 reg_pld_mode;
589e80f906SNeil Armstrong 	u8 reg_pld_table0;
599e80f906SNeil Armstrong 	u8 reg_pld_table1;
609e80f906SNeil Armstrong 	u8 reg_pld_table2;
619e80f906SNeil Armstrong 	u8 reg_pld_table3;
629e80f906SNeil Armstrong 	u8 reg_pld_table4;
63c9d26f1aSPeter Rosin 	u8 reg_advanced;
649e80f906SNeil Armstrong };
659e80f906SNeil Armstrong 
669e80f906SNeil Armstrong struct sx150x_456_pri {
679e80f906SNeil Armstrong 	u8 reg_pld_mode;
689e80f906SNeil Armstrong 	u8 reg_pld_table0;
699e80f906SNeil Armstrong 	u8 reg_pld_table1;
709e80f906SNeil Armstrong 	u8 reg_pld_table2;
719e80f906SNeil Armstrong 	u8 reg_pld_table3;
729e80f906SNeil Armstrong 	u8 reg_pld_table4;
73c9d26f1aSPeter Rosin 	u8 reg_advanced;
749e80f906SNeil Armstrong };
759e80f906SNeil Armstrong 
769e80f906SNeil Armstrong struct sx150x_789_pri {
779e80f906SNeil Armstrong 	u8 reg_drain;
789e80f906SNeil Armstrong 	u8 reg_polarity;
799e80f906SNeil Armstrong 	u8 reg_clock;
809e80f906SNeil Armstrong 	u8 reg_misc;
819e80f906SNeil Armstrong 	u8 reg_reset;
829e80f906SNeil Armstrong 	u8 ngpios;
839e80f906SNeil Armstrong };
849e80f906SNeil Armstrong 
859e80f906SNeil Armstrong struct sx150x_device_data {
869e80f906SNeil Armstrong 	u8 model;
879e80f906SNeil Armstrong 	u8 reg_pullup;
889e80f906SNeil Armstrong 	u8 reg_pulldn;
899e80f906SNeil Armstrong 	u8 reg_dir;
909e80f906SNeil Armstrong 	u8 reg_data;
919e80f906SNeil Armstrong 	u8 reg_irq_mask;
929e80f906SNeil Armstrong 	u8 reg_irq_src;
939e80f906SNeil Armstrong 	u8 reg_sense;
949e80f906SNeil Armstrong 	u8 ngpios;
959e80f906SNeil Armstrong 	union {
969e80f906SNeil Armstrong 		struct sx150x_123_pri x123;
979e80f906SNeil Armstrong 		struct sx150x_456_pri x456;
989e80f906SNeil Armstrong 		struct sx150x_789_pri x789;
999e80f906SNeil Armstrong 	} pri;
1009e80f906SNeil Armstrong 	const struct pinctrl_pin_desc *pins;
1019e80f906SNeil Armstrong 	unsigned int npins;
1029e80f906SNeil Armstrong };
1039e80f906SNeil Armstrong 
1049e80f906SNeil Armstrong struct sx150x_pinctrl {
1059e80f906SNeil Armstrong 	struct device *dev;
1069e80f906SNeil Armstrong 	struct i2c_client *client;
1079e80f906SNeil Armstrong 	struct pinctrl_dev *pctldev;
1089e80f906SNeil Armstrong 	struct pinctrl_desc pinctrl_desc;
1099e80f906SNeil Armstrong 	struct gpio_chip gpio;
1109e80f906SNeil Armstrong 	struct irq_chip irq_chip;
1110db0f26cSAndrey Smirnov 	struct regmap *regmap;
1129e80f906SNeil Armstrong 	struct {
1139e80f906SNeil Armstrong 		u32 sense;
1149e80f906SNeil Armstrong 		u32 masked;
1159e80f906SNeil Armstrong 	} irq;
1169e80f906SNeil Armstrong 	struct mutex lock;
1179e80f906SNeil Armstrong 	const struct sx150x_device_data *data;
1189e80f906SNeil Armstrong };
1199e80f906SNeil Armstrong 
1204f5ac8cfSPeter Rosin static const struct pinctrl_pin_desc sx150x_4_pins[] = {
1214f5ac8cfSPeter Rosin 	PINCTRL_PIN(0, "gpio0"),
1224f5ac8cfSPeter Rosin 	PINCTRL_PIN(1, "gpio1"),
1234f5ac8cfSPeter Rosin 	PINCTRL_PIN(2, "gpio2"),
1244f5ac8cfSPeter Rosin 	PINCTRL_PIN(3, "gpio3"),
1254f5ac8cfSPeter Rosin 	PINCTRL_PIN(4, "oscio"),
1264f5ac8cfSPeter Rosin };
1274f5ac8cfSPeter Rosin 
1289e80f906SNeil Armstrong static const struct pinctrl_pin_desc sx150x_8_pins[] = {
1299e80f906SNeil Armstrong 	PINCTRL_PIN(0, "gpio0"),
1309e80f906SNeil Armstrong 	PINCTRL_PIN(1, "gpio1"),
1319e80f906SNeil Armstrong 	PINCTRL_PIN(2, "gpio2"),
1329e80f906SNeil Armstrong 	PINCTRL_PIN(3, "gpio3"),
1339e80f906SNeil Armstrong 	PINCTRL_PIN(4, "gpio4"),
1349e80f906SNeil Armstrong 	PINCTRL_PIN(5, "gpio5"),
1359e80f906SNeil Armstrong 	PINCTRL_PIN(6, "gpio6"),
1369e80f906SNeil Armstrong 	PINCTRL_PIN(7, "gpio7"),
1379e80f906SNeil Armstrong 	PINCTRL_PIN(8, "oscio"),
1389e80f906SNeil Armstrong };
1399e80f906SNeil Armstrong 
1409e80f906SNeil Armstrong static const struct pinctrl_pin_desc sx150x_16_pins[] = {
1419e80f906SNeil Armstrong 	PINCTRL_PIN(0, "gpio0"),
1429e80f906SNeil Armstrong 	PINCTRL_PIN(1, "gpio1"),
1439e80f906SNeil Armstrong 	PINCTRL_PIN(2, "gpio2"),
1449e80f906SNeil Armstrong 	PINCTRL_PIN(3, "gpio3"),
1459e80f906SNeil Armstrong 	PINCTRL_PIN(4, "gpio4"),
1469e80f906SNeil Armstrong 	PINCTRL_PIN(5, "gpio5"),
1479e80f906SNeil Armstrong 	PINCTRL_PIN(6, "gpio6"),
1489e80f906SNeil Armstrong 	PINCTRL_PIN(7, "gpio7"),
1499e80f906SNeil Armstrong 	PINCTRL_PIN(8, "gpio8"),
1509e80f906SNeil Armstrong 	PINCTRL_PIN(9, "gpio9"),
1519e80f906SNeil Armstrong 	PINCTRL_PIN(10, "gpio10"),
1529e80f906SNeil Armstrong 	PINCTRL_PIN(11, "gpio11"),
1539e80f906SNeil Armstrong 	PINCTRL_PIN(12, "gpio12"),
1549e80f906SNeil Armstrong 	PINCTRL_PIN(13, "gpio13"),
1559e80f906SNeil Armstrong 	PINCTRL_PIN(14, "gpio14"),
1569e80f906SNeil Armstrong 	PINCTRL_PIN(15, "gpio15"),
1579e80f906SNeil Armstrong 	PINCTRL_PIN(16, "oscio"),
1589e80f906SNeil Armstrong };
1599e80f906SNeil Armstrong 
1604f5ac8cfSPeter Rosin static const struct sx150x_device_data sx1501q_device_data = {
1614f5ac8cfSPeter Rosin 	.model = SX150X_123,
1624f5ac8cfSPeter Rosin 	.reg_pullup	= 0x02,
1634f5ac8cfSPeter Rosin 	.reg_pulldn	= 0x03,
1644f5ac8cfSPeter Rosin 	.reg_dir	= 0x01,
1654f5ac8cfSPeter Rosin 	.reg_data	= 0x00,
1664f5ac8cfSPeter Rosin 	.reg_irq_mask	= 0x05,
1674f5ac8cfSPeter Rosin 	.reg_irq_src	= 0x08,
1684f5ac8cfSPeter Rosin 	.reg_sense	= 0x07,
1694f5ac8cfSPeter Rosin 	.pri.x123 = {
1704f5ac8cfSPeter Rosin 		.reg_pld_mode	= 0x10,
1714f5ac8cfSPeter Rosin 		.reg_pld_table0	= 0x11,
1724f5ac8cfSPeter Rosin 		.reg_pld_table2	= 0x13,
173c9d26f1aSPeter Rosin 		.reg_advanced	= 0xad,
1744f5ac8cfSPeter Rosin 	},
1754f5ac8cfSPeter Rosin 	.ngpios	= 4,
1764f5ac8cfSPeter Rosin 	.pins = sx150x_4_pins,
1774f5ac8cfSPeter Rosin 	.npins = 4, /* oscio not available */
1784f5ac8cfSPeter Rosin };
1794f5ac8cfSPeter Rosin 
1809e80f906SNeil Armstrong static const struct sx150x_device_data sx1502q_device_data = {
1819e80f906SNeil Armstrong 	.model = SX150X_123,
1829e80f906SNeil Armstrong 	.reg_pullup	= 0x02,
1839e80f906SNeil Armstrong 	.reg_pulldn	= 0x03,
1849e80f906SNeil Armstrong 	.reg_dir	= 0x01,
1859e80f906SNeil Armstrong 	.reg_data	= 0x00,
1869e80f906SNeil Armstrong 	.reg_irq_mask	= 0x05,
1879e80f906SNeil Armstrong 	.reg_irq_src	= 0x08,
1881663682cSPeter Rosin 	.reg_sense	= 0x06,
1899e80f906SNeil Armstrong 	.pri.x123 = {
1909e80f906SNeil Armstrong 		.reg_pld_mode	= 0x10,
1919e80f906SNeil Armstrong 		.reg_pld_table0	= 0x11,
1929e80f906SNeil Armstrong 		.reg_pld_table1	= 0x12,
1939e80f906SNeil Armstrong 		.reg_pld_table2	= 0x13,
1949e80f906SNeil Armstrong 		.reg_pld_table3	= 0x14,
1959e80f906SNeil Armstrong 		.reg_pld_table4	= 0x15,
196c9d26f1aSPeter Rosin 		.reg_advanced	= 0xad,
1979e80f906SNeil Armstrong 	},
1989e80f906SNeil Armstrong 	.ngpios	= 8,
1999e80f906SNeil Armstrong 	.pins = sx150x_8_pins,
2009e80f906SNeil Armstrong 	.npins = 8, /* oscio not available */
2019e80f906SNeil Armstrong };
2029e80f906SNeil Armstrong 
2036697546dSAndrey Smirnov static const struct sx150x_device_data sx1503q_device_data = {
2046697546dSAndrey Smirnov 	.model = SX150X_123,
2056489677fSAndrey Smirnov 	.reg_pullup	= 0x04,
2066489677fSAndrey Smirnov 	.reg_pulldn	= 0x06,
2076489677fSAndrey Smirnov 	.reg_dir	= 0x02,
2086489677fSAndrey Smirnov 	.reg_data	= 0x00,
2096489677fSAndrey Smirnov 	.reg_irq_mask	= 0x08,
2106489677fSAndrey Smirnov 	.reg_irq_src	= 0x0e,
2116489677fSAndrey Smirnov 	.reg_sense	= 0x0a,
2126697546dSAndrey Smirnov 	.pri.x123 = {
2136489677fSAndrey Smirnov 		.reg_pld_mode	= 0x20,
2146489677fSAndrey Smirnov 		.reg_pld_table0	= 0x22,
2156489677fSAndrey Smirnov 		.reg_pld_table1	= 0x24,
2166489677fSAndrey Smirnov 		.reg_pld_table2	= 0x26,
2176489677fSAndrey Smirnov 		.reg_pld_table3	= 0x28,
2186489677fSAndrey Smirnov 		.reg_pld_table4	= 0x2a,
219c9d26f1aSPeter Rosin 		.reg_advanced	= 0xad,
2206697546dSAndrey Smirnov 	},
2216697546dSAndrey Smirnov 	.ngpios	= 16,
2226697546dSAndrey Smirnov 	.pins = sx150x_16_pins,
2236697546dSAndrey Smirnov 	.npins  = 16, /* oscio not available */
2246697546dSAndrey Smirnov };
2256697546dSAndrey Smirnov 
2264f5ac8cfSPeter Rosin static const struct sx150x_device_data sx1504q_device_data = {
2274f5ac8cfSPeter Rosin 	.model = SX150X_456,
2284f5ac8cfSPeter Rosin 	.reg_pullup	= 0x02,
2294f5ac8cfSPeter Rosin 	.reg_pulldn	= 0x03,
2304f5ac8cfSPeter Rosin 	.reg_dir	= 0x01,
2314f5ac8cfSPeter Rosin 	.reg_data	= 0x00,
2324f5ac8cfSPeter Rosin 	.reg_irq_mask	= 0x05,
2334f5ac8cfSPeter Rosin 	.reg_irq_src	= 0x08,
2344f5ac8cfSPeter Rosin 	.reg_sense	= 0x07,
2354f5ac8cfSPeter Rosin 	.pri.x456 = {
2364f5ac8cfSPeter Rosin 		.reg_pld_mode	= 0x10,
2374f5ac8cfSPeter Rosin 		.reg_pld_table0	= 0x11,
2384f5ac8cfSPeter Rosin 		.reg_pld_table2	= 0x13,
2394f5ac8cfSPeter Rosin 	},
2404f5ac8cfSPeter Rosin 	.ngpios	= 4,
2414f5ac8cfSPeter Rosin 	.pins = sx150x_4_pins,
2424f5ac8cfSPeter Rosin 	.npins = 4, /* oscio not available */
2434f5ac8cfSPeter Rosin };
2444f5ac8cfSPeter Rosin 
2454f5ac8cfSPeter Rosin static const struct sx150x_device_data sx1505q_device_data = {
2464f5ac8cfSPeter Rosin 	.model = SX150X_456,
2474f5ac8cfSPeter Rosin 	.reg_pullup	= 0x02,
2484f5ac8cfSPeter Rosin 	.reg_pulldn	= 0x03,
2494f5ac8cfSPeter Rosin 	.reg_dir	= 0x01,
2504f5ac8cfSPeter Rosin 	.reg_data	= 0x00,
2514f5ac8cfSPeter Rosin 	.reg_irq_mask	= 0x05,
2524f5ac8cfSPeter Rosin 	.reg_irq_src	= 0x08,
2534f5ac8cfSPeter Rosin 	.reg_sense	= 0x06,
2544f5ac8cfSPeter Rosin 	.pri.x456 = {
2554f5ac8cfSPeter Rosin 		.reg_pld_mode	= 0x10,
2564f5ac8cfSPeter Rosin 		.reg_pld_table0	= 0x11,
2574f5ac8cfSPeter Rosin 		.reg_pld_table1	= 0x12,
2584f5ac8cfSPeter Rosin 		.reg_pld_table2	= 0x13,
2594f5ac8cfSPeter Rosin 		.reg_pld_table3	= 0x14,
2604f5ac8cfSPeter Rosin 		.reg_pld_table4	= 0x15,
2614f5ac8cfSPeter Rosin 	},
2624f5ac8cfSPeter Rosin 	.ngpios	= 8,
2634f5ac8cfSPeter Rosin 	.pins = sx150x_8_pins,
2644f5ac8cfSPeter Rosin 	.npins = 8, /* oscio not available */
2654f5ac8cfSPeter Rosin };
2664f5ac8cfSPeter Rosin 
267bba709bdSPeter Rosin static const struct sx150x_device_data sx1506q_device_data = {
268bba709bdSPeter Rosin 	.model = SX150X_456,
269bba709bdSPeter Rosin 	.reg_pullup	= 0x04,
270bba709bdSPeter Rosin 	.reg_pulldn	= 0x06,
271bba709bdSPeter Rosin 	.reg_dir	= 0x02,
272bba709bdSPeter Rosin 	.reg_data	= 0x00,
273bba709bdSPeter Rosin 	.reg_irq_mask	= 0x08,
274bba709bdSPeter Rosin 	.reg_irq_src	= 0x0e,
275bba709bdSPeter Rosin 	.reg_sense	= 0x0a,
276bba709bdSPeter Rosin 	.pri.x456 = {
277bba709bdSPeter Rosin 		.reg_pld_mode	= 0x20,
278bba709bdSPeter Rosin 		.reg_pld_table0	= 0x22,
279bba709bdSPeter Rosin 		.reg_pld_table1	= 0x24,
280bba709bdSPeter Rosin 		.reg_pld_table2	= 0x26,
281bba709bdSPeter Rosin 		.reg_pld_table3	= 0x28,
282bba709bdSPeter Rosin 		.reg_pld_table4	= 0x2a,
283c9d26f1aSPeter Rosin 		.reg_advanced	= 0xad,
284bba709bdSPeter Rosin 	},
285bba709bdSPeter Rosin 	.ngpios	= 16,
286bba709bdSPeter Rosin 	.pins = sx150x_16_pins,
287bba709bdSPeter Rosin 	.npins = 16, /* oscio not available */
288bba709bdSPeter Rosin };
289bba709bdSPeter Rosin 
2904f5ac8cfSPeter Rosin static const struct sx150x_device_data sx1507q_device_data = {
2914f5ac8cfSPeter Rosin 	.model = SX150X_789,
2924f5ac8cfSPeter Rosin 	.reg_pullup	= 0x03,
2934f5ac8cfSPeter Rosin 	.reg_pulldn	= 0x04,
2944f5ac8cfSPeter Rosin 	.reg_dir	= 0x07,
2954f5ac8cfSPeter Rosin 	.reg_data	= 0x08,
2964f5ac8cfSPeter Rosin 	.reg_irq_mask	= 0x09,
2974f5ac8cfSPeter Rosin 	.reg_irq_src	= 0x0b,
2984f5ac8cfSPeter Rosin 	.reg_sense	= 0x0a,
2994f5ac8cfSPeter Rosin 	.pri.x789 = {
3004f5ac8cfSPeter Rosin 		.reg_drain	= 0x05,
3014f5ac8cfSPeter Rosin 		.reg_polarity	= 0x06,
3024f5ac8cfSPeter Rosin 		.reg_clock	= 0x0d,
3034f5ac8cfSPeter Rosin 		.reg_misc	= 0x0e,
3044f5ac8cfSPeter Rosin 		.reg_reset	= 0x7d,
3054f5ac8cfSPeter Rosin 	},
3064f5ac8cfSPeter Rosin 	.ngpios = 4,
3074f5ac8cfSPeter Rosin 	.pins = sx150x_4_pins,
3084f5ac8cfSPeter Rosin 	.npins = ARRAY_SIZE(sx150x_4_pins),
3094f5ac8cfSPeter Rosin };
3104f5ac8cfSPeter Rosin 
311bba709bdSPeter Rosin static const struct sx150x_device_data sx1508q_device_data = {
312bba709bdSPeter Rosin 	.model = SX150X_789,
313bba709bdSPeter Rosin 	.reg_pullup	= 0x03,
314bba709bdSPeter Rosin 	.reg_pulldn	= 0x04,
315bba709bdSPeter Rosin 	.reg_dir	= 0x07,
316bba709bdSPeter Rosin 	.reg_data	= 0x08,
317bba709bdSPeter Rosin 	.reg_irq_mask	= 0x09,
318bba709bdSPeter Rosin 	.reg_irq_src	= 0x0c,
319bba709bdSPeter Rosin 	.reg_sense	= 0x0a,
320bba709bdSPeter Rosin 	.pri.x789 = {
321bba709bdSPeter Rosin 		.reg_drain	= 0x05,
322bba709bdSPeter Rosin 		.reg_polarity	= 0x06,
323bba709bdSPeter Rosin 		.reg_clock	= 0x0f,
324bba709bdSPeter Rosin 		.reg_misc	= 0x10,
325bba709bdSPeter Rosin 		.reg_reset	= 0x7d,
326bba709bdSPeter Rosin 	},
327bba709bdSPeter Rosin 	.ngpios = 8,
328bba709bdSPeter Rosin 	.pins = sx150x_8_pins,
329bba709bdSPeter Rosin 	.npins = ARRAY_SIZE(sx150x_8_pins),
330bba709bdSPeter Rosin };
331bba709bdSPeter Rosin 
332bba709bdSPeter Rosin static const struct sx150x_device_data sx1509q_device_data = {
333bba709bdSPeter Rosin 	.model = SX150X_789,
334bba709bdSPeter Rosin 	.reg_pullup	= 0x06,
335bba709bdSPeter Rosin 	.reg_pulldn	= 0x08,
336bba709bdSPeter Rosin 	.reg_dir	= 0x0e,
337bba709bdSPeter Rosin 	.reg_data	= 0x10,
338bba709bdSPeter Rosin 	.reg_irq_mask	= 0x12,
339bba709bdSPeter Rosin 	.reg_irq_src	= 0x18,
340bba709bdSPeter Rosin 	.reg_sense	= 0x14,
341bba709bdSPeter Rosin 	.pri.x789 = {
342bba709bdSPeter Rosin 		.reg_drain	= 0x0a,
343bba709bdSPeter Rosin 		.reg_polarity	= 0x0c,
344bba709bdSPeter Rosin 		.reg_clock	= 0x1e,
345bba709bdSPeter Rosin 		.reg_misc	= 0x1f,
346bba709bdSPeter Rosin 		.reg_reset	= 0x7d,
347bba709bdSPeter Rosin 	},
348bba709bdSPeter Rosin 	.ngpios	= 16,
349bba709bdSPeter Rosin 	.pins = sx150x_16_pins,
350bba709bdSPeter Rosin 	.npins = ARRAY_SIZE(sx150x_16_pins),
351bba709bdSPeter Rosin };
352bba709bdSPeter Rosin 
3539e80f906SNeil Armstrong static int sx150x_pinctrl_get_groups_count(struct pinctrl_dev *pctldev)
3549e80f906SNeil Armstrong {
3559e80f906SNeil Armstrong 	return 0;
3569e80f906SNeil Armstrong }
3579e80f906SNeil Armstrong 
3589e80f906SNeil Armstrong static const char *sx150x_pinctrl_get_group_name(struct pinctrl_dev *pctldev,
3599e80f906SNeil Armstrong 						unsigned int group)
3609e80f906SNeil Armstrong {
3619e80f906SNeil Armstrong 	return NULL;
3629e80f906SNeil Armstrong }
3639e80f906SNeil Armstrong 
3649e80f906SNeil Armstrong static int sx150x_pinctrl_get_group_pins(struct pinctrl_dev *pctldev,
3659e80f906SNeil Armstrong 					unsigned int group,
3669e80f906SNeil Armstrong 					const unsigned int **pins,
3679e80f906SNeil Armstrong 					unsigned int *num_pins)
3689e80f906SNeil Armstrong {
3699e80f906SNeil Armstrong 	return -ENOTSUPP;
3709e80f906SNeil Armstrong }
3719e80f906SNeil Armstrong 
3729e80f906SNeil Armstrong static const struct pinctrl_ops sx150x_pinctrl_ops = {
3739e80f906SNeil Armstrong 	.get_groups_count = sx150x_pinctrl_get_groups_count,
3749e80f906SNeil Armstrong 	.get_group_name = sx150x_pinctrl_get_group_name,
3759e80f906SNeil Armstrong 	.get_group_pins = sx150x_pinctrl_get_group_pins,
3769e80f906SNeil Armstrong #ifdef CONFIG_OF
3779e80f906SNeil Armstrong 	.dt_node_to_map = pinconf_generic_dt_node_to_map_pin,
3789e80f906SNeil Armstrong 	.dt_free_map = pinctrl_utils_free_map,
3799e80f906SNeil Armstrong #endif
3809e80f906SNeil Armstrong };
3819e80f906SNeil Armstrong 
3829e80f906SNeil Armstrong static bool sx150x_pin_is_oscio(struct sx150x_pinctrl *pctl, unsigned int pin)
3839e80f906SNeil Armstrong {
3849e80f906SNeil Armstrong 	if (pin >= pctl->data->npins)
3859e80f906SNeil Armstrong 		return false;
3869e80f906SNeil Armstrong 
3879e80f906SNeil Armstrong 	/* OSCIO pin is only present in 789 devices */
3889e80f906SNeil Armstrong 	if (pctl->data->model != SX150X_789)
3899e80f906SNeil Armstrong 		return false;
3909e80f906SNeil Armstrong 
3919e80f906SNeil Armstrong 	return !strcmp(pctl->data->pins[pin].name, "oscio");
3929e80f906SNeil Armstrong }
3939e80f906SNeil Armstrong 
3949e80f906SNeil Armstrong static int sx150x_gpio_get_direction(struct gpio_chip *chip,
3959e80f906SNeil Armstrong 				      unsigned int offset)
3969e80f906SNeil Armstrong {
3979e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl = gpiochip_get_data(chip);
3986489677fSAndrey Smirnov 	unsigned int value;
3996489677fSAndrey Smirnov 	int ret;
4009e80f906SNeil Armstrong 
4019e80f906SNeil Armstrong 	if (sx150x_pin_is_oscio(pctl, offset))
4029e80f906SNeil Armstrong 		return false;
4039e80f906SNeil Armstrong 
4046489677fSAndrey Smirnov 	ret = regmap_read(pctl->regmap, pctl->data->reg_dir, &value);
4056489677fSAndrey Smirnov 	if (ret < 0)
4066489677fSAndrey Smirnov 		return ret;
4079e80f906SNeil Armstrong 
4086489677fSAndrey Smirnov 	return !!(value & BIT(offset));
4099e80f906SNeil Armstrong }
4109e80f906SNeil Armstrong 
4119e80f906SNeil Armstrong static int sx150x_gpio_get(struct gpio_chip *chip, unsigned int offset)
4129e80f906SNeil Armstrong {
4139e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl = gpiochip_get_data(chip);
4146489677fSAndrey Smirnov 	unsigned int value;
4156489677fSAndrey Smirnov 	int ret;
4169e80f906SNeil Armstrong 
4179e80f906SNeil Armstrong 	if (sx150x_pin_is_oscio(pctl, offset))
4189e80f906SNeil Armstrong 		return -EINVAL;
4199e80f906SNeil Armstrong 
4206489677fSAndrey Smirnov 	ret = regmap_read(pctl->regmap, pctl->data->reg_data, &value);
4216489677fSAndrey Smirnov 	if (ret < 0)
4226489677fSAndrey Smirnov 		return ret;
4239e80f906SNeil Armstrong 
4246489677fSAndrey Smirnov 	return !!(value & BIT(offset));
4259e80f906SNeil Armstrong }
4269e80f906SNeil Armstrong 
4276489677fSAndrey Smirnov static int __sx150x_gpio_set(struct sx150x_pinctrl *pctl, unsigned int offset,
4286489677fSAndrey Smirnov 			     int value)
4296489677fSAndrey Smirnov {
4306489677fSAndrey Smirnov 	return regmap_write_bits(pctl->regmap, pctl->data->reg_data,
4316489677fSAndrey Smirnov 				 BIT(offset), value ? BIT(offset) : 0);
4326489677fSAndrey Smirnov }
4336489677fSAndrey Smirnov 
434ab5bd035SAndrey Smirnov static int sx150x_gpio_oscio_set(struct sx150x_pinctrl *pctl,
435ab5bd035SAndrey Smirnov 				 int value)
436ab5bd035SAndrey Smirnov {
437ab5bd035SAndrey Smirnov 	return regmap_write(pctl->regmap,
438ab5bd035SAndrey Smirnov 			    pctl->data->pri.x789.reg_clock,
439ab5bd035SAndrey Smirnov 			    (value ? 0x1f : 0x10));
440ab5bd035SAndrey Smirnov }
441ab5bd035SAndrey Smirnov 
4429e80f906SNeil Armstrong static void sx150x_gpio_set(struct gpio_chip *chip, unsigned int offset,
4439e80f906SNeil Armstrong 			    int value)
4449e80f906SNeil Armstrong {
4459e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl = gpiochip_get_data(chip);
4469e80f906SNeil Armstrong 
447d977a876SAndrey Smirnov 	if (sx150x_pin_is_oscio(pctl, offset))
448ab5bd035SAndrey Smirnov 		sx150x_gpio_oscio_set(pctl, value);
449d977a876SAndrey Smirnov 	else
4506489677fSAndrey Smirnov 		__sx150x_gpio_set(pctl, offset, value);
451d977a876SAndrey Smirnov 
4529e80f906SNeil Armstrong }
4539e80f906SNeil Armstrong 
454ec61168bSPeter Rosin static void sx150x_gpio_set_multiple(struct gpio_chip *chip,
455ec61168bSPeter Rosin 				     unsigned long *mask,
456ec61168bSPeter Rosin 				     unsigned long *bits)
457ec61168bSPeter Rosin {
458ec61168bSPeter Rosin 	struct sx150x_pinctrl *pctl = gpiochip_get_data(chip);
459ec61168bSPeter Rosin 
460ec61168bSPeter Rosin 	regmap_write_bits(pctl->regmap, pctl->data->reg_data, *mask, *bits);
461ec61168bSPeter Rosin }
462ec61168bSPeter Rosin 
4639e80f906SNeil Armstrong static int sx150x_gpio_direction_input(struct gpio_chip *chip,
4649e80f906SNeil Armstrong 				       unsigned int offset)
4659e80f906SNeil Armstrong {
4669e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl = gpiochip_get_data(chip);
4679e80f906SNeil Armstrong 
4689e80f906SNeil Armstrong 	if (sx150x_pin_is_oscio(pctl, offset))
4699e80f906SNeil Armstrong 		return -EINVAL;
4709e80f906SNeil Armstrong 
471d977a876SAndrey Smirnov 	return regmap_write_bits(pctl->regmap,
4726489677fSAndrey Smirnov 				 pctl->data->reg_dir,
4736489677fSAndrey Smirnov 				 BIT(offset), BIT(offset));
4749e80f906SNeil Armstrong }
4759e80f906SNeil Armstrong 
4769e80f906SNeil Armstrong static int sx150x_gpio_direction_output(struct gpio_chip *chip,
4779e80f906SNeil Armstrong 					unsigned int offset, int value)
4789e80f906SNeil Armstrong {
4799e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl = gpiochip_get_data(chip);
480d977a876SAndrey Smirnov 	int ret;
4819e80f906SNeil Armstrong 
482ab5bd035SAndrey Smirnov 	if (sx150x_pin_is_oscio(pctl, offset))
483ab5bd035SAndrey Smirnov 		return sx150x_gpio_oscio_set(pctl, value);
4849e80f906SNeil Armstrong 
485d977a876SAndrey Smirnov 	ret = __sx150x_gpio_set(pctl, offset, value);
486d977a876SAndrey Smirnov 	if (ret < 0)
487d977a876SAndrey Smirnov 		return ret;
488d977a876SAndrey Smirnov 
489d977a876SAndrey Smirnov 	return regmap_write_bits(pctl->regmap,
4906489677fSAndrey Smirnov 				 pctl->data->reg_dir,
4916489677fSAndrey Smirnov 				 BIT(offset), 0);
4929e80f906SNeil Armstrong }
4939e80f906SNeil Armstrong 
4949e80f906SNeil Armstrong static void sx150x_irq_mask(struct irq_data *d)
4959e80f906SNeil Armstrong {
4969e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl =
4979e80f906SNeil Armstrong 			gpiochip_get_data(irq_data_get_irq_chip_data(d));
4989e80f906SNeil Armstrong 	unsigned int n = d->hwirq;
4999e80f906SNeil Armstrong 
5006489677fSAndrey Smirnov 	pctl->irq.masked |= BIT(n);
5019e80f906SNeil Armstrong }
5029e80f906SNeil Armstrong 
5039e80f906SNeil Armstrong static void sx150x_irq_unmask(struct irq_data *d)
5049e80f906SNeil Armstrong {
5059e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl =
5069e80f906SNeil Armstrong 			gpiochip_get_data(irq_data_get_irq_chip_data(d));
5079e80f906SNeil Armstrong 	unsigned int n = d->hwirq;
5089e80f906SNeil Armstrong 
5096489677fSAndrey Smirnov 	pctl->irq.masked &= ~BIT(n);
5109e80f906SNeil Armstrong }
5119e80f906SNeil Armstrong 
512fd931f23SAndrey Smirnov static void sx150x_irq_set_sense(struct sx150x_pinctrl *pctl,
513fd931f23SAndrey Smirnov 				 unsigned int line, unsigned int sense)
514fd931f23SAndrey Smirnov {
515fd931f23SAndrey Smirnov 	/*
516fd931f23SAndrey Smirnov 	 * Every interrupt line is represented by two bits shifted
517fd931f23SAndrey Smirnov 	 * proportionally to the line number
518fd931f23SAndrey Smirnov 	 */
519fd931f23SAndrey Smirnov 	const unsigned int n = line * 2;
520fd931f23SAndrey Smirnov 	const unsigned int mask = ~((SX150X_IRQ_TYPE_EDGE_RISING |
521fd931f23SAndrey Smirnov 				     SX150X_IRQ_TYPE_EDGE_FALLING) << n);
522fd931f23SAndrey Smirnov 
523fd931f23SAndrey Smirnov 	pctl->irq.sense &= mask;
524fd931f23SAndrey Smirnov 	pctl->irq.sense |= sense << n;
525fd931f23SAndrey Smirnov }
526fd931f23SAndrey Smirnov 
5279e80f906SNeil Armstrong static int sx150x_irq_set_type(struct irq_data *d, unsigned int flow_type)
5289e80f906SNeil Armstrong {
5299e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl =
5309e80f906SNeil Armstrong 			gpiochip_get_data(irq_data_get_irq_chip_data(d));
5319e80f906SNeil Armstrong 	unsigned int n, val = 0;
5329e80f906SNeil Armstrong 
5339e80f906SNeil Armstrong 	if (flow_type & (IRQ_TYPE_LEVEL_HIGH | IRQ_TYPE_LEVEL_LOW))
5349e80f906SNeil Armstrong 		return -EINVAL;
5359e80f906SNeil Armstrong 
5369e80f906SNeil Armstrong 	n = d->hwirq;
5379e80f906SNeil Armstrong 
5389e80f906SNeil Armstrong 	if (flow_type & IRQ_TYPE_EDGE_RISING)
539fd931f23SAndrey Smirnov 		val |= SX150X_IRQ_TYPE_EDGE_RISING;
5409e80f906SNeil Armstrong 	if (flow_type & IRQ_TYPE_EDGE_FALLING)
541fd931f23SAndrey Smirnov 		val |= SX150X_IRQ_TYPE_EDGE_FALLING;
5429e80f906SNeil Armstrong 
543fd931f23SAndrey Smirnov 	sx150x_irq_set_sense(pctl, n, val);
5449e80f906SNeil Armstrong 	return 0;
5459e80f906SNeil Armstrong }
5469e80f906SNeil Armstrong 
5479e80f906SNeil Armstrong static irqreturn_t sx150x_irq_thread_fn(int irq, void *dev_id)
5489e80f906SNeil Armstrong {
5499e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl = (struct sx150x_pinctrl *)dev_id;
55005a90cc7SAndrey Smirnov 	unsigned long n, status;
5510db0f26cSAndrey Smirnov 	unsigned int val;
55205a90cc7SAndrey Smirnov 	int err;
5539e80f906SNeil Armstrong 
5546489677fSAndrey Smirnov 	err = regmap_read(pctl->regmap, pctl->data->reg_irq_src, &val);
5559e80f906SNeil Armstrong 	if (err < 0)
5566489677fSAndrey Smirnov 		return IRQ_NONE;
5579e80f906SNeil Armstrong 
5586489677fSAndrey Smirnov 	err = regmap_write(pctl->regmap, pctl->data->reg_irq_src, val);
5599e80f906SNeil Armstrong 	if (err < 0)
5606489677fSAndrey Smirnov 		return IRQ_NONE;
5619e80f906SNeil Armstrong 
56205a90cc7SAndrey Smirnov 	status = val;
56305a90cc7SAndrey Smirnov 	for_each_set_bit(n, &status, pctl->data->ngpios)
564*f0fbe7bcSThierry Reding 		handle_nested_irq(irq_find_mapping(pctl->gpio.irq.domain, n));
5659e80f906SNeil Armstrong 
56605a90cc7SAndrey Smirnov 	return IRQ_HANDLED;
5679e80f906SNeil Armstrong }
5689e80f906SNeil Armstrong 
5699e80f906SNeil Armstrong static void sx150x_irq_bus_lock(struct irq_data *d)
5709e80f906SNeil Armstrong {
5719e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl =
5729e80f906SNeil Armstrong 			gpiochip_get_data(irq_data_get_irq_chip_data(d));
5739e80f906SNeil Armstrong 
5749e80f906SNeil Armstrong 	mutex_lock(&pctl->lock);
5759e80f906SNeil Armstrong }
5769e80f906SNeil Armstrong 
5779e80f906SNeil Armstrong static void sx150x_irq_bus_sync_unlock(struct irq_data *d)
5789e80f906SNeil Armstrong {
5799e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl =
5809e80f906SNeil Armstrong 			gpiochip_get_data(irq_data_get_irq_chip_data(d));
5819e80f906SNeil Armstrong 
5826489677fSAndrey Smirnov 	regmap_write(pctl->regmap, pctl->data->reg_irq_mask, pctl->irq.masked);
5836489677fSAndrey Smirnov 	regmap_write(pctl->regmap, pctl->data->reg_sense, pctl->irq.sense);
5849e80f906SNeil Armstrong 	mutex_unlock(&pctl->lock);
5859e80f906SNeil Armstrong }
5869e80f906SNeil Armstrong 
5879e80f906SNeil Armstrong static int sx150x_pinconf_get(struct pinctrl_dev *pctldev, unsigned int pin,
5889e80f906SNeil Armstrong 			      unsigned long *config)
5899e80f906SNeil Armstrong {
5909e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl = pinctrl_dev_get_drvdata(pctldev);
5919e80f906SNeil Armstrong 	unsigned int param = pinconf_to_config_param(*config);
5929e80f906SNeil Armstrong 	int ret;
5939e80f906SNeil Armstrong 	u32 arg;
5940db0f26cSAndrey Smirnov 	unsigned int data;
5959e80f906SNeil Armstrong 
5966489677fSAndrey Smirnov 	if (sx150x_pin_is_oscio(pctl, pin)) {
5979e80f906SNeil Armstrong 		switch (param) {
5989e80f906SNeil Armstrong 		case PIN_CONFIG_DRIVE_PUSH_PULL:
5999e80f906SNeil Armstrong 		case PIN_CONFIG_OUTPUT:
6000db0f26cSAndrey Smirnov 			ret = regmap_read(pctl->regmap,
6019e80f906SNeil Armstrong 					  pctl->data->pri.x789.reg_clock,
6029e80f906SNeil Armstrong 					  &data);
6039e80f906SNeil Armstrong 			if (ret < 0)
6049e80f906SNeil Armstrong 				return ret;
6059e80f906SNeil Armstrong 
6069e80f906SNeil Armstrong 			if (param == PIN_CONFIG_DRIVE_PUSH_PULL)
6079e80f906SNeil Armstrong 				arg = (data & 0x1f) ? 1 : 0;
6089e80f906SNeil Armstrong 			else {
6099e80f906SNeil Armstrong 				if ((data & 0x1f) == 0x1f)
6109e80f906SNeil Armstrong 					arg = 1;
6119e80f906SNeil Armstrong 				else if ((data & 0x1f) == 0x10)
6129e80f906SNeil Armstrong 					arg = 0;
6139e80f906SNeil Armstrong 				else
6149e80f906SNeil Armstrong 					return -EINVAL;
6159e80f906SNeil Armstrong 			}
6169e80f906SNeil Armstrong 
6179e80f906SNeil Armstrong 			break;
6189e80f906SNeil Armstrong 		default:
6199e80f906SNeil Armstrong 			return -ENOTSUPP;
6209e80f906SNeil Armstrong 		}
6219e80f906SNeil Armstrong 
6229e80f906SNeil Armstrong 		goto out;
6239e80f906SNeil Armstrong 	}
6249e80f906SNeil Armstrong 
6259e80f906SNeil Armstrong 	switch (param) {
6269e80f906SNeil Armstrong 	case PIN_CONFIG_BIAS_PULL_DOWN:
6276489677fSAndrey Smirnov 		ret = regmap_read(pctl->regmap,
6286489677fSAndrey Smirnov 				  pctl->data->reg_pulldn,
6296489677fSAndrey Smirnov 				  &data);
6306489677fSAndrey Smirnov 		data &= BIT(pin);
6319e80f906SNeil Armstrong 
6329e80f906SNeil Armstrong 		if (ret < 0)
6339e80f906SNeil Armstrong 			return ret;
6349e80f906SNeil Armstrong 
6359e80f906SNeil Armstrong 		if (!ret)
6369e80f906SNeil Armstrong 			return -EINVAL;
6379e80f906SNeil Armstrong 
6389e80f906SNeil Armstrong 		arg = 1;
6399e80f906SNeil Armstrong 		break;
6409e80f906SNeil Armstrong 
6419e80f906SNeil Armstrong 	case PIN_CONFIG_BIAS_PULL_UP:
6426489677fSAndrey Smirnov 		ret = regmap_read(pctl->regmap,
6436489677fSAndrey Smirnov 				  pctl->data->reg_pullup,
6446489677fSAndrey Smirnov 				  &data);
6456489677fSAndrey Smirnov 		data &= BIT(pin);
6469e80f906SNeil Armstrong 
6479e80f906SNeil Armstrong 		if (ret < 0)
6489e80f906SNeil Armstrong 			return ret;
6499e80f906SNeil Armstrong 
6509e80f906SNeil Armstrong 		if (!ret)
6519e80f906SNeil Armstrong 			return -EINVAL;
6529e80f906SNeil Armstrong 
6539e80f906SNeil Armstrong 		arg = 1;
6549e80f906SNeil Armstrong 		break;
6559e80f906SNeil Armstrong 
6569e80f906SNeil Armstrong 	case PIN_CONFIG_DRIVE_OPEN_DRAIN:
6579e80f906SNeil Armstrong 		if (pctl->data->model != SX150X_789)
6589e80f906SNeil Armstrong 			return -ENOTSUPP;
6599e80f906SNeil Armstrong 
6606489677fSAndrey Smirnov 		ret = regmap_read(pctl->regmap,
6616489677fSAndrey Smirnov 				  pctl->data->pri.x789.reg_drain,
6626489677fSAndrey Smirnov 				  &data);
6636489677fSAndrey Smirnov 		data &= BIT(pin);
6649e80f906SNeil Armstrong 
6659e80f906SNeil Armstrong 		if (ret < 0)
6669e80f906SNeil Armstrong 			return ret;
6679e80f906SNeil Armstrong 
6686489677fSAndrey Smirnov 		if (!data)
6699e80f906SNeil Armstrong 			return -EINVAL;
6709e80f906SNeil Armstrong 
6719e80f906SNeil Armstrong 		arg = 1;
6729e80f906SNeil Armstrong 		break;
6739e80f906SNeil Armstrong 
6749e80f906SNeil Armstrong 	case PIN_CONFIG_DRIVE_PUSH_PULL:
6759e80f906SNeil Armstrong 		if (pctl->data->model != SX150X_789)
6769e80f906SNeil Armstrong 			arg = true;
6779e80f906SNeil Armstrong 		else {
6786489677fSAndrey Smirnov 			ret = regmap_read(pctl->regmap,
6796489677fSAndrey Smirnov 					  pctl->data->pri.x789.reg_drain,
6806489677fSAndrey Smirnov 					  &data);
6816489677fSAndrey Smirnov 			data &= BIT(pin);
6829e80f906SNeil Armstrong 
6839e80f906SNeil Armstrong 			if (ret < 0)
6849e80f906SNeil Armstrong 				return ret;
6859e80f906SNeil Armstrong 
6866489677fSAndrey Smirnov 			if (data)
6879e80f906SNeil Armstrong 				return -EINVAL;
6889e80f906SNeil Armstrong 
6899e80f906SNeil Armstrong 			arg = 1;
6909e80f906SNeil Armstrong 		}
6919e80f906SNeil Armstrong 		break;
6929e80f906SNeil Armstrong 
6939e80f906SNeil Armstrong 	case PIN_CONFIG_OUTPUT:
6949e80f906SNeil Armstrong 		ret = sx150x_gpio_get_direction(&pctl->gpio, pin);
6959e80f906SNeil Armstrong 		if (ret < 0)
6969e80f906SNeil Armstrong 			return ret;
6979e80f906SNeil Armstrong 
6989e80f906SNeil Armstrong 		if (ret)
6999e80f906SNeil Armstrong 			return -EINVAL;
7009e80f906SNeil Armstrong 
7019e80f906SNeil Armstrong 		ret = sx150x_gpio_get(&pctl->gpio, pin);
7029e80f906SNeil Armstrong 		if (ret < 0)
7039e80f906SNeil Armstrong 			return ret;
7049e80f906SNeil Armstrong 
7059e80f906SNeil Armstrong 		arg = ret;
7069e80f906SNeil Armstrong 		break;
7079e80f906SNeil Armstrong 
7089e80f906SNeil Armstrong 	default:
7099e80f906SNeil Armstrong 		return -ENOTSUPP;
7109e80f906SNeil Armstrong 	}
7119e80f906SNeil Armstrong 
7129e80f906SNeil Armstrong out:
7139e80f906SNeil Armstrong 	*config = pinconf_to_config_packed(param, arg);
7149e80f906SNeil Armstrong 
7159e80f906SNeil Armstrong 	return 0;
7169e80f906SNeil Armstrong }
7179e80f906SNeil Armstrong 
7189e80f906SNeil Armstrong static int sx150x_pinconf_set(struct pinctrl_dev *pctldev, unsigned int pin,
7199e80f906SNeil Armstrong 			      unsigned long *configs, unsigned int num_configs)
7209e80f906SNeil Armstrong {
7219e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl = pinctrl_dev_get_drvdata(pctldev);
7229e80f906SNeil Armstrong 	enum pin_config_param param;
7239e80f906SNeil Armstrong 	u32 arg;
7249e80f906SNeil Armstrong 	int i;
7259e80f906SNeil Armstrong 	int ret;
7269e80f906SNeil Armstrong 
7279e80f906SNeil Armstrong 	for (i = 0; i < num_configs; i++) {
7289e80f906SNeil Armstrong 		param = pinconf_to_config_param(configs[i]);
7299e80f906SNeil Armstrong 		arg = pinconf_to_config_argument(configs[i]);
7309e80f906SNeil Armstrong 
7319e80f906SNeil Armstrong 		if (sx150x_pin_is_oscio(pctl, pin)) {
7329e80f906SNeil Armstrong 			if (param == PIN_CONFIG_OUTPUT) {
7339e80f906SNeil Armstrong 				ret = sx150x_gpio_direction_output(&pctl->gpio,
7349e80f906SNeil Armstrong 								   pin, arg);
7359e80f906SNeil Armstrong 				if (ret < 0)
7369e80f906SNeil Armstrong 					return ret;
7379e80f906SNeil Armstrong 
7389e80f906SNeil Armstrong 				continue;
7399e80f906SNeil Armstrong 			} else
7409e80f906SNeil Armstrong 				return -ENOTSUPP;
7419e80f906SNeil Armstrong 		}
7429e80f906SNeil Armstrong 
7439e80f906SNeil Armstrong 		switch (param) {
7449e80f906SNeil Armstrong 		case PIN_CONFIG_BIAS_PULL_PIN_DEFAULT:
7459e80f906SNeil Armstrong 		case PIN_CONFIG_BIAS_DISABLE:
7466489677fSAndrey Smirnov 			ret = regmap_write_bits(pctl->regmap,
7476489677fSAndrey Smirnov 						pctl->data->reg_pulldn,
7486489677fSAndrey Smirnov 						BIT(pin), 0);
7499e80f906SNeil Armstrong 			if (ret < 0)
7509e80f906SNeil Armstrong 				return ret;
7519e80f906SNeil Armstrong 
7526489677fSAndrey Smirnov 			ret = regmap_write_bits(pctl->regmap,
7536489677fSAndrey Smirnov 						pctl->data->reg_pullup,
7546489677fSAndrey Smirnov 						BIT(pin), 0);
7559e80f906SNeil Armstrong 			if (ret < 0)
7569e80f906SNeil Armstrong 				return ret;
7579e80f906SNeil Armstrong 
7589e80f906SNeil Armstrong 			break;
7599e80f906SNeil Armstrong 
7609e80f906SNeil Armstrong 		case PIN_CONFIG_BIAS_PULL_UP:
7616489677fSAndrey Smirnov 			ret = regmap_write_bits(pctl->regmap,
7629e80f906SNeil Armstrong 						pctl->data->reg_pullup,
7636489677fSAndrey Smirnov 						BIT(pin), BIT(pin));
7649e80f906SNeil Armstrong 			if (ret < 0)
7659e80f906SNeil Armstrong 				return ret;
7669e80f906SNeil Armstrong 
7679e80f906SNeil Armstrong 			break;
7689e80f906SNeil Armstrong 
7699e80f906SNeil Armstrong 		case PIN_CONFIG_BIAS_PULL_DOWN:
7706489677fSAndrey Smirnov 			ret = regmap_write_bits(pctl->regmap,
7719e80f906SNeil Armstrong 						pctl->data->reg_pulldn,
7726489677fSAndrey Smirnov 						BIT(pin), BIT(pin));
7739e80f906SNeil Armstrong 			if (ret < 0)
7749e80f906SNeil Armstrong 				return ret;
7759e80f906SNeil Armstrong 
7769e80f906SNeil Armstrong 			break;
7779e80f906SNeil Armstrong 
7789e80f906SNeil Armstrong 		case PIN_CONFIG_DRIVE_OPEN_DRAIN:
7792956b5d9SMika Westerberg 			if (pctl->data->model != SX150X_789 ||
7802956b5d9SMika Westerberg 			    sx150x_pin_is_oscio(pctl, pin))
7812956b5d9SMika Westerberg 				return -ENOTSUPP;
7822956b5d9SMika Westerberg 
7832956b5d9SMika Westerberg 			ret = regmap_write_bits(pctl->regmap,
7842956b5d9SMika Westerberg 						pctl->data->pri.x789.reg_drain,
7852956b5d9SMika Westerberg 						BIT(pin), BIT(pin));
7869e80f906SNeil Armstrong 			if (ret < 0)
7879e80f906SNeil Armstrong 				return ret;
7889e80f906SNeil Armstrong 
7899e80f906SNeil Armstrong 			break;
7909e80f906SNeil Armstrong 
7919e80f906SNeil Armstrong 		case PIN_CONFIG_DRIVE_PUSH_PULL:
7922956b5d9SMika Westerberg 			if (pctl->data->model != SX150X_789 ||
7932956b5d9SMika Westerberg 			    sx150x_pin_is_oscio(pctl, pin))
7942956b5d9SMika Westerberg 				return 0;
7952956b5d9SMika Westerberg 
7962956b5d9SMika Westerberg 			ret = regmap_write_bits(pctl->regmap,
7972956b5d9SMika Westerberg 						pctl->data->pri.x789.reg_drain,
7982956b5d9SMika Westerberg 						BIT(pin), 0);
7999e80f906SNeil Armstrong 			if (ret < 0)
8009e80f906SNeil Armstrong 				return ret;
8019e80f906SNeil Armstrong 
8029e80f906SNeil Armstrong 			break;
8039e80f906SNeil Armstrong 
8049e80f906SNeil Armstrong 		case PIN_CONFIG_OUTPUT:
8059e80f906SNeil Armstrong 			ret = sx150x_gpio_direction_output(&pctl->gpio,
8069e80f906SNeil Armstrong 							   pin, arg);
8079e80f906SNeil Armstrong 			if (ret < 0)
8089e80f906SNeil Armstrong 				return ret;
8099e80f906SNeil Armstrong 
8109e80f906SNeil Armstrong 			break;
8119e80f906SNeil Armstrong 
8129e80f906SNeil Armstrong 		default:
8139e80f906SNeil Armstrong 			return -ENOTSUPP;
8149e80f906SNeil Armstrong 		}
8159e80f906SNeil Armstrong 	} /* for each config */
8169e80f906SNeil Armstrong 
8179e80f906SNeil Armstrong 	return 0;
8189e80f906SNeil Armstrong }
8199e80f906SNeil Armstrong 
8209e80f906SNeil Armstrong static const struct pinconf_ops sx150x_pinconf_ops = {
8219e80f906SNeil Armstrong 	.pin_config_get = sx150x_pinconf_get,
8229e80f906SNeil Armstrong 	.pin_config_set = sx150x_pinconf_set,
8239e80f906SNeil Armstrong 	.is_generic = true,
8249e80f906SNeil Armstrong };
8259e80f906SNeil Armstrong 
8269e80f906SNeil Armstrong static const struct i2c_device_id sx150x_id[] = {
8274f5ac8cfSPeter Rosin 	{"sx1501q", (kernel_ulong_t) &sx1501q_device_data },
8289e80f906SNeil Armstrong 	{"sx1502q", (kernel_ulong_t) &sx1502q_device_data },
8296697546dSAndrey Smirnov 	{"sx1503q", (kernel_ulong_t) &sx1503q_device_data },
8304f5ac8cfSPeter Rosin 	{"sx1504q", (kernel_ulong_t) &sx1504q_device_data },
8314f5ac8cfSPeter Rosin 	{"sx1505q", (kernel_ulong_t) &sx1505q_device_data },
832bba709bdSPeter Rosin 	{"sx1506q", (kernel_ulong_t) &sx1506q_device_data },
8334f5ac8cfSPeter Rosin 	{"sx1507q", (kernel_ulong_t) &sx1507q_device_data },
834bba709bdSPeter Rosin 	{"sx1508q", (kernel_ulong_t) &sx1508q_device_data },
835bba709bdSPeter Rosin 	{"sx1509q", (kernel_ulong_t) &sx1509q_device_data },
8369e80f906SNeil Armstrong 	{}
8379e80f906SNeil Armstrong };
8389e80f906SNeil Armstrong 
8399e80f906SNeil Armstrong static const struct of_device_id sx150x_of_match[] = {
8404f5ac8cfSPeter Rosin 	{ .compatible = "semtech,sx1501q", .data = &sx1501q_device_data },
841e3ba8120SAndrey Smirnov 	{ .compatible = "semtech,sx1502q", .data = &sx1502q_device_data },
8426697546dSAndrey Smirnov 	{ .compatible = "semtech,sx1503q", .data = &sx1503q_device_data },
8434f5ac8cfSPeter Rosin 	{ .compatible = "semtech,sx1504q", .data = &sx1504q_device_data },
8444f5ac8cfSPeter Rosin 	{ .compatible = "semtech,sx1505q", .data = &sx1505q_device_data },
845bba709bdSPeter Rosin 	{ .compatible = "semtech,sx1506q", .data = &sx1506q_device_data },
8464f5ac8cfSPeter Rosin 	{ .compatible = "semtech,sx1507q", .data = &sx1507q_device_data },
847bba709bdSPeter Rosin 	{ .compatible = "semtech,sx1508q", .data = &sx1508q_device_data },
848bba709bdSPeter Rosin 	{ .compatible = "semtech,sx1509q", .data = &sx1509q_device_data },
8499e80f906SNeil Armstrong 	{},
8509e80f906SNeil Armstrong };
8519e80f906SNeil Armstrong 
8529e80f906SNeil Armstrong static int sx150x_reset(struct sx150x_pinctrl *pctl)
8539e80f906SNeil Armstrong {
8549e80f906SNeil Armstrong 	int err;
8559e80f906SNeil Armstrong 
8569e80f906SNeil Armstrong 	err = i2c_smbus_write_byte_data(pctl->client,
8579e80f906SNeil Armstrong 					pctl->data->pri.x789.reg_reset,
858f9038d60SAndrey Smirnov 					SX150X_789_RESET_KEY1);
8599e80f906SNeil Armstrong 	if (err < 0)
8609e80f906SNeil Armstrong 		return err;
8619e80f906SNeil Armstrong 
8629e80f906SNeil Armstrong 	err = i2c_smbus_write_byte_data(pctl->client,
8639e80f906SNeil Armstrong 					pctl->data->pri.x789.reg_reset,
864f9038d60SAndrey Smirnov 					SX150X_789_RESET_KEY2);
8659e80f906SNeil Armstrong 	return err;
8669e80f906SNeil Armstrong }
8679e80f906SNeil Armstrong 
868310cdfa0SAndrey Smirnov static int sx150x_init_misc(struct sx150x_pinctrl *pctl)
869310cdfa0SAndrey Smirnov {
870310cdfa0SAndrey Smirnov 	u8 reg, value;
871310cdfa0SAndrey Smirnov 
872310cdfa0SAndrey Smirnov 	switch (pctl->data->model) {
873310cdfa0SAndrey Smirnov 	case SX150X_789:
874310cdfa0SAndrey Smirnov 		reg   = pctl->data->pri.x789.reg_misc;
875310cdfa0SAndrey Smirnov 		value = SX150X_789_REG_MISC_AUTOCLEAR_OFF;
876310cdfa0SAndrey Smirnov 		break;
877310cdfa0SAndrey Smirnov 	case SX150X_456:
878c9d26f1aSPeter Rosin 		reg   = pctl->data->pri.x456.reg_advanced;
879310cdfa0SAndrey Smirnov 		value = 0x00;
880b30d31e4SAndrey Smirnov 
881b30d31e4SAndrey Smirnov 		/*
882b30d31e4SAndrey Smirnov 		 * Only SX1506 has RegAdvanced, SX1504/5 are expected
883b30d31e4SAndrey Smirnov 		 * to initialize this offset to zero
884b30d31e4SAndrey Smirnov 		 */
885b30d31e4SAndrey Smirnov 		if (!reg)
886b30d31e4SAndrey Smirnov 			return 0;
887310cdfa0SAndrey Smirnov 		break;
888310cdfa0SAndrey Smirnov 	case SX150X_123:
889c9d26f1aSPeter Rosin 		reg   = pctl->data->pri.x123.reg_advanced;
890310cdfa0SAndrey Smirnov 		value = 0x00;
891310cdfa0SAndrey Smirnov 		break;
892310cdfa0SAndrey Smirnov 	default:
893310cdfa0SAndrey Smirnov 		WARN(1, "Unknown chip model %d\n", pctl->data->model);
894310cdfa0SAndrey Smirnov 		return -EINVAL;
895310cdfa0SAndrey Smirnov 	}
896310cdfa0SAndrey Smirnov 
8976489677fSAndrey Smirnov 	return regmap_write(pctl->regmap, reg, value);
898310cdfa0SAndrey Smirnov }
899310cdfa0SAndrey Smirnov 
9009e80f906SNeil Armstrong static int sx150x_init_hw(struct sx150x_pinctrl *pctl)
9019e80f906SNeil Armstrong {
9026489677fSAndrey Smirnov 	const u8 reg[] = {
9036489677fSAndrey Smirnov 		[SX150X_789] = pctl->data->pri.x789.reg_polarity,
9046489677fSAndrey Smirnov 		[SX150X_456] = pctl->data->pri.x456.reg_pld_mode,
9056489677fSAndrey Smirnov 		[SX150X_123] = pctl->data->pri.x123.reg_pld_mode,
9066489677fSAndrey Smirnov 	};
9079e80f906SNeil Armstrong 	int err;
9089e80f906SNeil Armstrong 
9099e80f906SNeil Armstrong 	if (pctl->data->model == SX150X_789 &&
9109e80f906SNeil Armstrong 	    of_property_read_bool(pctl->dev->of_node, "semtech,probe-reset")) {
9119e80f906SNeil Armstrong 		err = sx150x_reset(pctl);
9129e80f906SNeil Armstrong 		if (err < 0)
9139e80f906SNeil Armstrong 			return err;
9149e80f906SNeil Armstrong 	}
9159e80f906SNeil Armstrong 
916310cdfa0SAndrey Smirnov 	err = sx150x_init_misc(pctl);
9179e80f906SNeil Armstrong 	if (err < 0)
9189e80f906SNeil Armstrong 		return err;
9199e80f906SNeil Armstrong 
9209e80f906SNeil Armstrong 	/* Set all pins to work in normal mode */
9216489677fSAndrey Smirnov 	return regmap_write(pctl->regmap, reg[pctl->data->model], 0);
9229e80f906SNeil Armstrong }
9239e80f906SNeil Armstrong 
9246489677fSAndrey Smirnov static int sx150x_regmap_reg_width(struct sx150x_pinctrl *pctl,
9256489677fSAndrey Smirnov 				   unsigned int reg)
9266489677fSAndrey Smirnov {
9276489677fSAndrey Smirnov 	const struct sx150x_device_data *data = pctl->data;
9286489677fSAndrey Smirnov 
9296489677fSAndrey Smirnov 	if (reg == data->reg_sense) {
9306489677fSAndrey Smirnov 		/*
9316489677fSAndrey Smirnov 		 * RegSense packs two bits of configuration per GPIO,
9326489677fSAndrey Smirnov 		 * so we'd need to read twice as many bits as there
9336489677fSAndrey Smirnov 		 * are GPIO in our chip
9346489677fSAndrey Smirnov 		 */
9356489677fSAndrey Smirnov 		return 2 * data->ngpios;
9366489677fSAndrey Smirnov 	} else if ((data->model == SX150X_789 &&
9376489677fSAndrey Smirnov 		    (reg == data->pri.x789.reg_misc ||
9386489677fSAndrey Smirnov 		     reg == data->pri.x789.reg_clock ||
9396489677fSAndrey Smirnov 		     reg == data->pri.x789.reg_reset))
9406489677fSAndrey Smirnov 		   ||
9416489677fSAndrey Smirnov 		   (data->model == SX150X_123 &&
942c9d26f1aSPeter Rosin 		    reg == data->pri.x123.reg_advanced)
9436489677fSAndrey Smirnov 		   ||
9446489677fSAndrey Smirnov 		   (data->model == SX150X_456 &&
945283dc0beSPeter Rosin 		    data->pri.x456.reg_advanced &&
946c9d26f1aSPeter Rosin 		    reg == data->pri.x456.reg_advanced)) {
9476489677fSAndrey Smirnov 		return 8;
9486489677fSAndrey Smirnov 	} else {
9496489677fSAndrey Smirnov 		return data->ngpios;
9506489677fSAndrey Smirnov 	}
9516489677fSAndrey Smirnov }
9526489677fSAndrey Smirnov 
9536489677fSAndrey Smirnov static unsigned int sx150x_maybe_swizzle(struct sx150x_pinctrl *pctl,
9546489677fSAndrey Smirnov 					 unsigned int reg, unsigned int val)
9556489677fSAndrey Smirnov {
9566489677fSAndrey Smirnov 	unsigned int a, b;
9576489677fSAndrey Smirnov 	const struct sx150x_device_data *data = pctl->data;
9586489677fSAndrey Smirnov 
9596489677fSAndrey Smirnov 	/*
9606489677fSAndrey Smirnov 	 * Whereas SX1509 presents RegSense in a simple layout as such:
9616489677fSAndrey Smirnov 	 *	reg     [ f f e e d d c c ]
9626489677fSAndrey Smirnov 	 *	reg + 1 [ b b a a 9 9 8 8 ]
9636489677fSAndrey Smirnov 	 *	reg + 2 [ 7 7 6 6 5 5 4 4 ]
9646489677fSAndrey Smirnov 	 *	reg + 3 [ 3 3 2 2 1 1 0 0 ]
9656489677fSAndrey Smirnov 	 *
9666489677fSAndrey Smirnov 	 * SX1503 and SX1506 deviate from that data layout, instead storing
9677bd47496SPeter Rosin 	 * their contents as follows:
9686489677fSAndrey Smirnov 	 *
9696489677fSAndrey Smirnov 	 *	reg     [ f f e e d d c c ]
9706489677fSAndrey Smirnov 	 *	reg + 1 [ 7 7 6 6 5 5 4 4 ]
9716489677fSAndrey Smirnov 	 *	reg + 2 [ b b a a 9 9 8 8 ]
9726489677fSAndrey Smirnov 	 *	reg + 3 [ 3 3 2 2 1 1 0 0 ]
9736489677fSAndrey Smirnov 	 *
9746489677fSAndrey Smirnov 	 * so, taking that into account, we swap two
9756489677fSAndrey Smirnov 	 * inner bytes of a 4-byte result
9766489677fSAndrey Smirnov 	 */
9776489677fSAndrey Smirnov 
9786489677fSAndrey Smirnov 	if (reg == data->reg_sense &&
9796489677fSAndrey Smirnov 	    data->ngpios == 16 &&
9806489677fSAndrey Smirnov 	    (data->model == SX150X_123 ||
9816489677fSAndrey Smirnov 	     data->model == SX150X_456)) {
9826489677fSAndrey Smirnov 		a = val & 0x00ff0000;
9836489677fSAndrey Smirnov 		b = val & 0x0000ff00;
9846489677fSAndrey Smirnov 
9856489677fSAndrey Smirnov 		val &= 0xff0000ff;
9866489677fSAndrey Smirnov 		val |= b << 8;
9876489677fSAndrey Smirnov 		val |= a >> 8;
9886489677fSAndrey Smirnov 	}
9896489677fSAndrey Smirnov 
9906489677fSAndrey Smirnov 	return val;
9916489677fSAndrey Smirnov }
9926489677fSAndrey Smirnov 
9936489677fSAndrey Smirnov /*
9946489677fSAndrey Smirnov  * In order to mask the differences between 16 and 8 bit expander
9956489677fSAndrey Smirnov  * devices we set up a sligthly ficticious regmap that pretends to be
9966489677fSAndrey Smirnov  * a set of 32-bit (to accomodate RegSenseLow/RegSenseHigh
9976489677fSAndrey Smirnov  * pair/quartet) registers and transparently reconstructs those
9986489677fSAndrey Smirnov  * registers via multiple I2C/SMBus reads
9996489677fSAndrey Smirnov  *
10006489677fSAndrey Smirnov  * This way the rest of the driver code, interfacing with the chip via
10016489677fSAndrey Smirnov  * regmap API, can work assuming that each GPIO pin is represented by
10027bd47496SPeter Rosin  * a group of bits at an offset proportional to GPIO number within a
10036489677fSAndrey Smirnov  * given register.
10046489677fSAndrey Smirnov  */
10056489677fSAndrey Smirnov static int sx150x_regmap_reg_read(void *context, unsigned int reg,
10066489677fSAndrey Smirnov 				  unsigned int *result)
10076489677fSAndrey Smirnov {
10086489677fSAndrey Smirnov 	int ret, n;
10096489677fSAndrey Smirnov 	struct sx150x_pinctrl *pctl = context;
10106489677fSAndrey Smirnov 	struct i2c_client *i2c = pctl->client;
10116489677fSAndrey Smirnov 	const int width = sx150x_regmap_reg_width(pctl, reg);
10126489677fSAndrey Smirnov 	unsigned int idx, val;
10136489677fSAndrey Smirnov 
10146489677fSAndrey Smirnov 	/*
10157bd47496SPeter Rosin 	 * There are four potential cases covered by this function:
10166489677fSAndrey Smirnov 	 *
10176489677fSAndrey Smirnov 	 * 1) 8-pin chip, single configuration bit register
10186489677fSAndrey Smirnov 	 *
10196489677fSAndrey Smirnov 	 *	This is trivial the code below just needs to read:
10206489677fSAndrey Smirnov 	 *		reg  [ 7 6 5 4 3 2 1 0 ]
10216489677fSAndrey Smirnov 	 *
10226489677fSAndrey Smirnov 	 * 2) 8-pin chip, double configuration bit register (RegSense)
10236489677fSAndrey Smirnov 	 *
10246489677fSAndrey Smirnov 	 *	The read will be done as follows:
10256489677fSAndrey Smirnov 	 *		reg      [ 7 7 6 6 5 5 4 4 ]
10266489677fSAndrey Smirnov 	 *		reg + 1  [ 3 3 2 2 1 1 0 0 ]
10276489677fSAndrey Smirnov 	 *
10286489677fSAndrey Smirnov 	 * 3) 16-pin chip, single configuration bit register
10296489677fSAndrey Smirnov 	 *
10306489677fSAndrey Smirnov 	 *	The read will be done as follows:
10316489677fSAndrey Smirnov 	 *		reg     [ f e d c b a 9 8 ]
10326489677fSAndrey Smirnov 	 *		reg + 1 [ 7 6 5 4 3 2 1 0 ]
10336489677fSAndrey Smirnov 	 *
10346489677fSAndrey Smirnov 	 * 4) 16-pin chip, double configuration bit register (RegSense)
10356489677fSAndrey Smirnov 	 *
10366489677fSAndrey Smirnov 	 *	The read will be done as follows:
10376489677fSAndrey Smirnov 	 *		reg     [ f f e e d d c c ]
10386489677fSAndrey Smirnov 	 *		reg + 1 [ b b a a 9 9 8 8 ]
10396489677fSAndrey Smirnov 	 *		reg + 2 [ 7 7 6 6 5 5 4 4 ]
10406489677fSAndrey Smirnov 	 *		reg + 3 [ 3 3 2 2 1 1 0 0 ]
10416489677fSAndrey Smirnov 	 */
10426489677fSAndrey Smirnov 
10436489677fSAndrey Smirnov 	for (n = width, val = 0, idx = reg; n > 0; n -= 8, idx++) {
10446489677fSAndrey Smirnov 		val <<= 8;
10456489677fSAndrey Smirnov 
10466489677fSAndrey Smirnov 		ret = i2c_smbus_read_byte_data(i2c, idx);
10476489677fSAndrey Smirnov 		if (ret < 0)
10486489677fSAndrey Smirnov 			return ret;
10496489677fSAndrey Smirnov 
10506489677fSAndrey Smirnov 		val |= ret;
10516489677fSAndrey Smirnov 	}
10526489677fSAndrey Smirnov 
10536489677fSAndrey Smirnov 	*result = sx150x_maybe_swizzle(pctl, reg, val);
10546489677fSAndrey Smirnov 
10556489677fSAndrey Smirnov 	return 0;
10566489677fSAndrey Smirnov }
10576489677fSAndrey Smirnov 
10586489677fSAndrey Smirnov static int sx150x_regmap_reg_write(void *context, unsigned int reg,
10596489677fSAndrey Smirnov 				   unsigned int val)
10606489677fSAndrey Smirnov {
10616489677fSAndrey Smirnov 	int ret, n;
10626489677fSAndrey Smirnov 	struct sx150x_pinctrl *pctl = context;
10636489677fSAndrey Smirnov 	struct i2c_client *i2c = pctl->client;
10646489677fSAndrey Smirnov 	const int width = sx150x_regmap_reg_width(pctl, reg);
10656489677fSAndrey Smirnov 
10666489677fSAndrey Smirnov 	val = sx150x_maybe_swizzle(pctl, reg, val);
10676489677fSAndrey Smirnov 
10686c4ef627SPeter Rosin 	n = (width - 1) & ~7;
10696489677fSAndrey Smirnov 	do {
10706489677fSAndrey Smirnov 		const u8 byte = (val >> n) & 0xff;
10716489677fSAndrey Smirnov 
10726489677fSAndrey Smirnov 		ret = i2c_smbus_write_byte_data(i2c, reg, byte);
10736489677fSAndrey Smirnov 		if (ret < 0)
10746489677fSAndrey Smirnov 			return ret;
10756489677fSAndrey Smirnov 
10766489677fSAndrey Smirnov 		reg++;
10776489677fSAndrey Smirnov 		n -= 8;
10786489677fSAndrey Smirnov 	} while (n >= 0);
10796489677fSAndrey Smirnov 
10809e80f906SNeil Armstrong 	return 0;
10819e80f906SNeil Armstrong }
10829e80f906SNeil Armstrong 
10830db0f26cSAndrey Smirnov static bool sx150x_reg_volatile(struct device *dev, unsigned int reg)
10840db0f26cSAndrey Smirnov {
10850db0f26cSAndrey Smirnov 	struct sx150x_pinctrl *pctl = i2c_get_clientdata(to_i2c_client(dev));
10860db0f26cSAndrey Smirnov 
10876489677fSAndrey Smirnov 	return reg == pctl->data->reg_irq_src || reg == pctl->data->reg_data;
10880db0f26cSAndrey Smirnov }
10890db0f26cSAndrey Smirnov 
10900db0f26cSAndrey Smirnov const struct regmap_config sx150x_regmap_config = {
10910db0f26cSAndrey Smirnov 	.reg_bits = 8,
10926489677fSAndrey Smirnov 	.val_bits = 32,
10930db0f26cSAndrey Smirnov 
10940db0f26cSAndrey Smirnov 	.cache_type = REGCACHE_RBTREE,
10950db0f26cSAndrey Smirnov 
10966489677fSAndrey Smirnov 	.reg_read = sx150x_regmap_reg_read,
10976489677fSAndrey Smirnov 	.reg_write = sx150x_regmap_reg_write,
10986489677fSAndrey Smirnov 
10990db0f26cSAndrey Smirnov 	.max_register = SX150X_MAX_REGISTER,
11000db0f26cSAndrey Smirnov 	.volatile_reg = sx150x_reg_volatile,
11010db0f26cSAndrey Smirnov };
11020db0f26cSAndrey Smirnov 
11039e80f906SNeil Armstrong static int sx150x_probe(struct i2c_client *client,
11049e80f906SNeil Armstrong 			const struct i2c_device_id *id)
11059e80f906SNeil Armstrong {
11069e80f906SNeil Armstrong 	static const u32 i2c_funcs = I2C_FUNC_SMBUS_BYTE_DATA |
11079e80f906SNeil Armstrong 				     I2C_FUNC_SMBUS_WRITE_WORD_DATA;
11089e80f906SNeil Armstrong 	struct device *dev = &client->dev;
11099e80f906SNeil Armstrong 	struct sx150x_pinctrl *pctl;
11109e80f906SNeil Armstrong 	int ret;
11119e80f906SNeil Armstrong 
11129e80f906SNeil Armstrong 	if (!i2c_check_functionality(client->adapter, i2c_funcs))
11139e80f906SNeil Armstrong 		return -ENOSYS;
11149e80f906SNeil Armstrong 
11159e80f906SNeil Armstrong 	pctl = devm_kzalloc(dev, sizeof(*pctl), GFP_KERNEL);
11169e80f906SNeil Armstrong 	if (!pctl)
11179e80f906SNeil Armstrong 		return -ENOMEM;
11189e80f906SNeil Armstrong 
11190db0f26cSAndrey Smirnov 	i2c_set_clientdata(client, pctl);
11200db0f26cSAndrey Smirnov 
11219e80f906SNeil Armstrong 	pctl->dev = dev;
11229e80f906SNeil Armstrong 	pctl->client = client;
1123e3ba8120SAndrey Smirnov 
1124e3ba8120SAndrey Smirnov 	if (dev->of_node)
1125e3ba8120SAndrey Smirnov 		pctl->data = of_device_get_match_data(dev);
1126e3ba8120SAndrey Smirnov 	else
1127e3ba8120SAndrey Smirnov 		pctl->data = (struct sx150x_device_data *)id->driver_data;
1128e3ba8120SAndrey Smirnov 
1129e3ba8120SAndrey Smirnov 	if (!pctl->data)
1130e3ba8120SAndrey Smirnov 		return -EINVAL;
11319e80f906SNeil Armstrong 
11326489677fSAndrey Smirnov 	pctl->regmap = devm_regmap_init(dev, NULL, pctl,
11336489677fSAndrey Smirnov 					&sx150x_regmap_config);
11340db0f26cSAndrey Smirnov 	if (IS_ERR(pctl->regmap)) {
11350db0f26cSAndrey Smirnov 		ret = PTR_ERR(pctl->regmap);
11360db0f26cSAndrey Smirnov 		dev_err(dev, "Failed to allocate register map: %d\n",
11370db0f26cSAndrey Smirnov 			ret);
11380db0f26cSAndrey Smirnov 		return ret;
11390db0f26cSAndrey Smirnov 	}
11400db0f26cSAndrey Smirnov 
11419e80f906SNeil Armstrong 	mutex_init(&pctl->lock);
11429e80f906SNeil Armstrong 
11439e80f906SNeil Armstrong 	ret = sx150x_init_hw(pctl);
11449e80f906SNeil Armstrong 	if (ret)
11459e80f906SNeil Armstrong 		return ret;
11469e80f906SNeil Armstrong 
11479e80f906SNeil Armstrong 	/* Register GPIO controller */
11489e80f906SNeil Armstrong 	pctl->gpio.label = devm_kstrdup(dev, client->name, GFP_KERNEL);
11499e80f906SNeil Armstrong 	pctl->gpio.base = -1;
11509e80f906SNeil Armstrong 	pctl->gpio.ngpio = pctl->data->npins;
11519e80f906SNeil Armstrong 	pctl->gpio.get_direction = sx150x_gpio_get_direction;
11529e80f906SNeil Armstrong 	pctl->gpio.direction_input = sx150x_gpio_direction_input;
11539e80f906SNeil Armstrong 	pctl->gpio.direction_output = sx150x_gpio_direction_output;
11549e80f906SNeil Armstrong 	pctl->gpio.get = sx150x_gpio_get;
11559e80f906SNeil Armstrong 	pctl->gpio.set = sx150x_gpio_set;
11562956b5d9SMika Westerberg 	pctl->gpio.set_config = gpiochip_generic_config;
11579e80f906SNeil Armstrong 	pctl->gpio.parent = dev;
11589e80f906SNeil Armstrong #ifdef CONFIG_OF_GPIO
11599e80f906SNeil Armstrong 	pctl->gpio.of_node = dev->of_node;
11609e80f906SNeil Armstrong #endif
11619e80f906SNeil Armstrong 	pctl->gpio.can_sleep = true;
1162ec61168bSPeter Rosin 	/*
1163ec61168bSPeter Rosin 	 * Setting multiple pins is not safe when all pins are not
1164ec61168bSPeter Rosin 	 * handled by the same regmap register. The oscio pin (present
1165ec61168bSPeter Rosin 	 * on the SX150X_789 chips) lives in its own register, so
1166ec61168bSPeter Rosin 	 * would require locking that is not in place at this time.
1167ec61168bSPeter Rosin 	 */
1168ec61168bSPeter Rosin 	if (pctl->data->model != SX150X_789)
1169ec61168bSPeter Rosin 		pctl->gpio.set_multiple = sx150x_gpio_set_multiple;
11709e80f906SNeil Armstrong 
11719e80f906SNeil Armstrong 	ret = devm_gpiochip_add_data(dev, &pctl->gpio, pctl);
11729e80f906SNeil Armstrong 	if (ret)
11739e80f906SNeil Armstrong 		return ret;
11749e80f906SNeil Armstrong 
11759e80f906SNeil Armstrong 	/* Add Interrupt support if an irq is specified */
11769e80f906SNeil Armstrong 	if (client->irq > 0) {
11779e80f906SNeil Armstrong 		pctl->irq_chip.name = devm_kstrdup(dev, client->name,
11789e80f906SNeil Armstrong 						   GFP_KERNEL);
11799e80f906SNeil Armstrong 		pctl->irq_chip.irq_mask = sx150x_irq_mask;
11809e80f906SNeil Armstrong 		pctl->irq_chip.irq_unmask = sx150x_irq_unmask;
11819e80f906SNeil Armstrong 		pctl->irq_chip.irq_set_type = sx150x_irq_set_type;
11829e80f906SNeil Armstrong 		pctl->irq_chip.irq_bus_lock = sx150x_irq_bus_lock;
11839e80f906SNeil Armstrong 		pctl->irq_chip.irq_bus_sync_unlock = sx150x_irq_bus_sync_unlock;
11849e80f906SNeil Armstrong 
11859e80f906SNeil Armstrong 		pctl->irq.masked = ~0;
11869e80f906SNeil Armstrong 		pctl->irq.sense = 0;
11879e80f906SNeil Armstrong 
1188080c489dSAndrey Smirnov 		/*
1189080c489dSAndrey Smirnov 		 * Because sx150x_irq_threaded_fn invokes all of the
1190080c489dSAndrey Smirnov 		 * nested interrrupt handlers via handle_nested_irq,
1191080c489dSAndrey Smirnov 		 * any "handler" passed to gpiochip_irqchip_add()
1192080c489dSAndrey Smirnov 		 * below is going to be ignored, so the choice of the
1193080c489dSAndrey Smirnov 		 * function does not matter that much.
1194080c489dSAndrey Smirnov 		 *
1195080c489dSAndrey Smirnov 		 * We set it to handle_bad_irq to avoid confusion,
1196080c489dSAndrey Smirnov 		 * plus it will be instantly noticeable if it is ever
1197080c489dSAndrey Smirnov 		 * called (should not happen)
1198080c489dSAndrey Smirnov 		 */
1199f8214445SLinus Walleij 		ret = gpiochip_irqchip_add_nested(&pctl->gpio,
12009e80f906SNeil Armstrong 					&pctl->irq_chip, 0,
1201080c489dSAndrey Smirnov 					handle_bad_irq, IRQ_TYPE_NONE);
12029e80f906SNeil Armstrong 		if (ret) {
12039e80f906SNeil Armstrong 			dev_err(dev, "could not connect irqchip to gpiochip\n");
12049e80f906SNeil Armstrong 			return ret;
12059e80f906SNeil Armstrong 		}
12069e80f906SNeil Armstrong 
12079e80f906SNeil Armstrong 		ret = devm_request_threaded_irq(dev, client->irq, NULL,
12089e80f906SNeil Armstrong 						sx150x_irq_thread_fn,
12099e80f906SNeil Armstrong 						IRQF_ONESHOT | IRQF_SHARED |
12109e80f906SNeil Armstrong 						IRQF_TRIGGER_FALLING,
12119e80f906SNeil Armstrong 						pctl->irq_chip.name, pctl);
12129e80f906SNeil Armstrong 		if (ret < 0)
12139e80f906SNeil Armstrong 			return ret;
1214f8214445SLinus Walleij 
1215f8214445SLinus Walleij 		gpiochip_set_nested_irqchip(&pctl->gpio,
1216f8214445SLinus Walleij 					    &pctl->irq_chip,
1217f8214445SLinus Walleij 					    client->irq);
12189e80f906SNeil Armstrong 	}
12199e80f906SNeil Armstrong 
12209e80f906SNeil Armstrong 	/* Pinctrl_desc */
12219e80f906SNeil Armstrong 	pctl->pinctrl_desc.name = "sx150x-pinctrl";
12229e80f906SNeil Armstrong 	pctl->pinctrl_desc.pctlops = &sx150x_pinctrl_ops;
12239e80f906SNeil Armstrong 	pctl->pinctrl_desc.confops = &sx150x_pinconf_ops;
12249e80f906SNeil Armstrong 	pctl->pinctrl_desc.pins = pctl->data->pins;
12259e80f906SNeil Armstrong 	pctl->pinctrl_desc.npins = pctl->data->npins;
12269e80f906SNeil Armstrong 	pctl->pinctrl_desc.owner = THIS_MODULE;
12279e80f906SNeil Armstrong 
12289e80f906SNeil Armstrong 	pctl->pctldev = pinctrl_register(&pctl->pinctrl_desc, dev, pctl);
12299e80f906SNeil Armstrong 	if (IS_ERR(pctl->pctldev)) {
12309e80f906SNeil Armstrong 		dev_err(dev, "Failed to register pinctrl device\n");
12319e80f906SNeil Armstrong 		return PTR_ERR(pctl->pctldev);
12329e80f906SNeil Armstrong 	}
12339e80f906SNeil Armstrong 
12349e80f906SNeil Armstrong 	return 0;
12359e80f906SNeil Armstrong }
12369e80f906SNeil Armstrong 
12379e80f906SNeil Armstrong static struct i2c_driver sx150x_driver = {
12389e80f906SNeil Armstrong 	.driver = {
12399e80f906SNeil Armstrong 		.name = "sx150x-pinctrl",
12409e80f906SNeil Armstrong 		.of_match_table = of_match_ptr(sx150x_of_match),
12419e80f906SNeil Armstrong 	},
12429e80f906SNeil Armstrong 	.probe    = sx150x_probe,
12439e80f906SNeil Armstrong 	.id_table = sx150x_id,
12449e80f906SNeil Armstrong };
12459e80f906SNeil Armstrong 
12469e80f906SNeil Armstrong static int __init sx150x_init(void)
12479e80f906SNeil Armstrong {
12489e80f906SNeil Armstrong 	return i2c_add_driver(&sx150x_driver);
12499e80f906SNeil Armstrong }
12509e80f906SNeil Armstrong subsys_initcall(sx150x_init);
1251