xref: /openbmc/linux/drivers/gpio/gpio-xra1403.c (revision 5704520d)
15704520dSNandor Han /*
25704520dSNandor Han  * GPIO driver for EXAR XRA1403 16-bit GPIO expander
35704520dSNandor Han  *
45704520dSNandor Han  * Copyright (c) 2017, General Electric Company
55704520dSNandor Han  *
65704520dSNandor Han  * This program is free software; you can redistribute it and/or modify it
75704520dSNandor Han  * under the terms and conditions of the GNU General Public License,
85704520dSNandor Han  * version 2, as published by the Free Software Foundation.
95704520dSNandor Han  *
105704520dSNandor Han  * This program is distributed in the hope it will be useful, but WITHOUT
115704520dSNandor Han  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
125704520dSNandor Han  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
135704520dSNandor Han  * more details.
145704520dSNandor Han  *
155704520dSNandor Han  * You should have received a copy of the GNU General Public License
165704520dSNandor Han  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
175704520dSNandor Han  */
185704520dSNandor Han 
195704520dSNandor Han #include <linux/bitops.h>
205704520dSNandor Han #include <linux/gpio/driver.h>
215704520dSNandor Han #include <linux/kernel.h>
225704520dSNandor Han #include <linux/module.h>
235704520dSNandor Han #include <linux/mutex.h>
245704520dSNandor Han #include <linux/of_device.h>
255704520dSNandor Han #include <linux/of_gpio.h>
265704520dSNandor Han #include <linux/seq_file.h>
275704520dSNandor Han #include <linux/spi/spi.h>
285704520dSNandor Han #include <linux/regmap.h>
295704520dSNandor Han 
305704520dSNandor Han /* XRA1403 registers */
315704520dSNandor Han #define XRA_GSR   0x00 /* GPIO State */
325704520dSNandor Han #define XRA_OCR   0x02 /* Output Control */
335704520dSNandor Han #define XRA_PIR   0x04 /* Input Polarity Inversion */
345704520dSNandor Han #define XRA_GCR   0x06 /* GPIO Configuration */
355704520dSNandor Han #define XRA_PUR   0x08 /* Input Internal Pull-up Resistor Enable/Disable */
365704520dSNandor Han #define XRA_IER   0x0A /* Input Interrupt Enable */
375704520dSNandor Han #define XRA_TSCR  0x0C /* Output Three-State Control */
385704520dSNandor Han #define XRA_ISR   0x0E /* Input Interrupt Status */
395704520dSNandor Han #define XRA_REIR  0x10 /* Input Rising Edge Interrupt Enable */
405704520dSNandor Han #define XRA_FEIR  0x12 /* Input Falling Edge Interrupt Enable */
415704520dSNandor Han #define XRA_IFR   0x14 /* Input Filter Enable/Disable */
425704520dSNandor Han 
435704520dSNandor Han struct xra1403 {
445704520dSNandor Han 	struct gpio_chip  chip;
455704520dSNandor Han 	struct regmap     *regmap;
465704520dSNandor Han };
475704520dSNandor Han 
485704520dSNandor Han static const struct regmap_config xra1403_regmap_cfg = {
495704520dSNandor Han 		.reg_bits = 7,
505704520dSNandor Han 		.pad_bits = 1,
515704520dSNandor Han 		.val_bits = 8,
525704520dSNandor Han 
535704520dSNandor Han 		.max_register = XRA_IFR | 0x01,
545704520dSNandor Han };
555704520dSNandor Han 
565704520dSNandor Han static unsigned int to_reg(unsigned int reg, unsigned int offset)
575704520dSNandor Han {
585704520dSNandor Han 	return reg + (offset > 7);
595704520dSNandor Han }
605704520dSNandor Han 
615704520dSNandor Han static int xra1403_direction_input(struct gpio_chip *chip, unsigned int offset)
625704520dSNandor Han {
635704520dSNandor Han 	struct xra1403 *xra = gpiochip_get_data(chip);
645704520dSNandor Han 
655704520dSNandor Han 	return regmap_update_bits(xra->regmap, to_reg(XRA_GCR, offset),
665704520dSNandor Han 			BIT(offset % 8), BIT(offset % 8));
675704520dSNandor Han }
685704520dSNandor Han 
695704520dSNandor Han static int xra1403_direction_output(struct gpio_chip *chip, unsigned int offset,
705704520dSNandor Han 				    int value)
715704520dSNandor Han {
725704520dSNandor Han 	int ret;
735704520dSNandor Han 	struct xra1403 *xra = gpiochip_get_data(chip);
745704520dSNandor Han 
755704520dSNandor Han 	ret = regmap_update_bits(xra->regmap, to_reg(XRA_GCR, offset),
765704520dSNandor Han 			BIT(offset % 8), 0);
775704520dSNandor Han 	if (ret)
785704520dSNandor Han 		return ret;
795704520dSNandor Han 
805704520dSNandor Han 	ret = regmap_update_bits(xra->regmap, to_reg(XRA_OCR, offset),
815704520dSNandor Han 			BIT(offset % 8), value ? BIT(offset % 8) : 0);
825704520dSNandor Han 
835704520dSNandor Han 	return ret;
845704520dSNandor Han }
855704520dSNandor Han 
865704520dSNandor Han static int xra1403_get_direction(struct gpio_chip *chip, unsigned int offset)
875704520dSNandor Han {
885704520dSNandor Han 	int ret;
895704520dSNandor Han 	unsigned int val;
905704520dSNandor Han 	struct xra1403 *xra = gpiochip_get_data(chip);
915704520dSNandor Han 
925704520dSNandor Han 	ret = regmap_read(xra->regmap, to_reg(XRA_GCR, offset), &val);
935704520dSNandor Han 	if (ret)
945704520dSNandor Han 		return ret;
955704520dSNandor Han 
965704520dSNandor Han 	return !!(val & BIT(offset % 8));
975704520dSNandor Han }
985704520dSNandor Han 
995704520dSNandor Han static int xra1403_get(struct gpio_chip *chip, unsigned int offset)
1005704520dSNandor Han {
1015704520dSNandor Han 	int ret;
1025704520dSNandor Han 	unsigned int val;
1035704520dSNandor Han 	struct xra1403 *xra = gpiochip_get_data(chip);
1045704520dSNandor Han 
1055704520dSNandor Han 	ret = regmap_read(xra->regmap, to_reg(XRA_GSR, offset), &val);
1065704520dSNandor Han 	if (ret)
1075704520dSNandor Han 		return ret;
1085704520dSNandor Han 
1095704520dSNandor Han 	return !!(val & BIT(offset % 8));
1105704520dSNandor Han }
1115704520dSNandor Han 
1125704520dSNandor Han static void xra1403_set(struct gpio_chip *chip, unsigned int offset, int value)
1135704520dSNandor Han {
1145704520dSNandor Han 	int ret;
1155704520dSNandor Han 	struct xra1403 *xra = gpiochip_get_data(chip);
1165704520dSNandor Han 
1175704520dSNandor Han 	ret = regmap_update_bits(xra->regmap, to_reg(XRA_OCR, offset),
1185704520dSNandor Han 			BIT(offset % 8), value ? BIT(offset % 8) : 0);
1195704520dSNandor Han 	if (ret)
1205704520dSNandor Han 		dev_err(chip->parent, "Failed to set pin: %d, ret: %d\n",
1215704520dSNandor Han 				offset, ret);
1225704520dSNandor Han }
1235704520dSNandor Han 
1245704520dSNandor Han #ifdef CONFIG_DEBUG_FS
1255704520dSNandor Han static void xra1403_dbg_show(struct seq_file *s, struct gpio_chip *chip)
1265704520dSNandor Han {
1275704520dSNandor Han 	int reg;
1285704520dSNandor Han 	struct xra1403 *xra = gpiochip_get_data(chip);
1295704520dSNandor Han 	int value[xra1403_regmap_cfg.max_register];
1305704520dSNandor Han 	int i;
1315704520dSNandor Han 	unsigned int gcr;
1325704520dSNandor Han 	unsigned int gsr;
1335704520dSNandor Han 
1345704520dSNandor Han 	seq_puts(s, "xra reg:");
1355704520dSNandor Han 	for (reg = 0; reg <= xra1403_regmap_cfg.max_register; reg++)
1365704520dSNandor Han 		seq_printf(s, " %2.2x", reg);
1375704520dSNandor Han 	seq_puts(s, "\n  value:");
1385704520dSNandor Han 	for (reg = 0; reg < xra1403_regmap_cfg.max_register; reg++) {
1395704520dSNandor Han 		regmap_read(xra->regmap, reg, &value[reg]);
1405704520dSNandor Han 		seq_printf(s, " %2.2x", value[reg]);
1415704520dSNandor Han 	}
1425704520dSNandor Han 	seq_puts(s, "\n");
1435704520dSNandor Han 
1445704520dSNandor Han 	gcr = value[XRA_GCR + 1] << 8 | value[XRA_GCR];
1455704520dSNandor Han 	gsr = value[XRA_GSR + 1] << 8 | value[XRA_GSR];
1465704520dSNandor Han 	for (i = 0; i < chip->ngpio; i++) {
1475704520dSNandor Han 		const char *label = gpiochip_is_requested(chip, i);
1485704520dSNandor Han 
1495704520dSNandor Han 		if (!label)
1505704520dSNandor Han 			continue;
1515704520dSNandor Han 
1525704520dSNandor Han 		seq_printf(s, " gpio-%-3d (%-12s) %s %s\n",
1535704520dSNandor Han 			   chip->base + i, label,
1545704520dSNandor Han 			   (gcr & BIT(i)) ? "in" : "out",
1555704520dSNandor Han 			   (gsr & BIT(i)) ? "hi" : "lo");
1565704520dSNandor Han 	}
1575704520dSNandor Han }
1585704520dSNandor Han #else
1595704520dSNandor Han #define xra1403_dbg_show NULL
1605704520dSNandor Han #endif
1615704520dSNandor Han 
1625704520dSNandor Han static int xra1403_probe(struct spi_device *spi)
1635704520dSNandor Han {
1645704520dSNandor Han 	struct xra1403 *xra;
1655704520dSNandor Han 	struct gpio_desc *reset_gpio;
1665704520dSNandor Han 	int ret;
1675704520dSNandor Han 
1685704520dSNandor Han 	xra = devm_kzalloc(&spi->dev, sizeof(*xra), GFP_KERNEL);
1695704520dSNandor Han 	if (!xra)
1705704520dSNandor Han 		return -ENOMEM;
1715704520dSNandor Han 
1725704520dSNandor Han 	/* bring the chip out of reset if reset pin is provided*/
1735704520dSNandor Han 	reset_gpio = devm_gpiod_get_optional(&spi->dev, "reset", GPIOD_OUT_LOW);
1745704520dSNandor Han 	if (IS_ERR(reset_gpio))
1755704520dSNandor Han 		dev_warn(&spi->dev, "Could not get reset-gpios\n");
1765704520dSNandor Han 
1775704520dSNandor Han 	xra->chip.direction_input = xra1403_direction_input;
1785704520dSNandor Han 	xra->chip.direction_output = xra1403_direction_output;
1795704520dSNandor Han 	xra->chip.get_direction = xra1403_get_direction;
1805704520dSNandor Han 	xra->chip.get = xra1403_get;
1815704520dSNandor Han 	xra->chip.set = xra1403_set;
1825704520dSNandor Han 
1835704520dSNandor Han 	xra->chip.dbg_show = xra1403_dbg_show;
1845704520dSNandor Han 
1855704520dSNandor Han 	xra->chip.ngpio = 16;
1865704520dSNandor Han 	xra->chip.label = "xra1403";
1875704520dSNandor Han 
1885704520dSNandor Han 	xra->chip.base = -1;
1895704520dSNandor Han 	xra->chip.can_sleep = true;
1905704520dSNandor Han 	xra->chip.parent = &spi->dev;
1915704520dSNandor Han 	xra->chip.owner = THIS_MODULE;
1925704520dSNandor Han 
1935704520dSNandor Han 	xra->regmap = devm_regmap_init_spi(spi, &xra1403_regmap_cfg);
1945704520dSNandor Han 	if (IS_ERR(xra->regmap)) {
1955704520dSNandor Han 		ret = PTR_ERR(xra->regmap);
1965704520dSNandor Han 		dev_err(&spi->dev, "Failed to allocate regmap: %d\n", ret);
1975704520dSNandor Han 		return ret;
1985704520dSNandor Han 	}
1995704520dSNandor Han 
2005704520dSNandor Han 	ret = devm_gpiochip_add_data(&spi->dev, &xra->chip, xra);
2015704520dSNandor Han 	if (ret < 0) {
2025704520dSNandor Han 		dev_err(&spi->dev, "Unable to register gpiochip\n");
2035704520dSNandor Han 		return ret;
2045704520dSNandor Han 	}
2055704520dSNandor Han 
2065704520dSNandor Han 	spi_set_drvdata(spi, xra);
2075704520dSNandor Han 
2085704520dSNandor Han 	return 0;
2095704520dSNandor Han }
2105704520dSNandor Han 
2115704520dSNandor Han static const struct spi_device_id xra1403_ids[] = {
2125704520dSNandor Han 	{ "xra1403" },
2135704520dSNandor Han 	{},
2145704520dSNandor Han };
2155704520dSNandor Han MODULE_DEVICE_TABLE(spi, xra1403_ids);
2165704520dSNandor Han 
2175704520dSNandor Han static const struct of_device_id xra1403_spi_of_match[] = {
2185704520dSNandor Han 	{ .compatible = "exar,xra1403" },
2195704520dSNandor Han 	{},
2205704520dSNandor Han };
2215704520dSNandor Han MODULE_DEVICE_TABLE(of, xra1403_spi_of_match);
2225704520dSNandor Han 
2235704520dSNandor Han static struct spi_driver xra1403_driver = {
2245704520dSNandor Han 	.probe    = xra1403_probe,
2255704520dSNandor Han 	.id_table = xra1403_ids,
2265704520dSNandor Han 	.driver   = {
2275704520dSNandor Han 		.name           = "xra1403",
2285704520dSNandor Han 		.of_match_table = of_match_ptr(xra1403_spi_of_match),
2295704520dSNandor Han 	},
2305704520dSNandor Han };
2315704520dSNandor Han 
2325704520dSNandor Han module_spi_driver(xra1403_driver);
2335704520dSNandor Han 
2345704520dSNandor Han MODULE_AUTHOR("Nandor Han <nandor.han@ge.com>");
2355704520dSNandor Han MODULE_AUTHOR("Semi Malinen <semi.malinen@ge.com>");
2365704520dSNandor Han MODULE_DESCRIPTION("GPIO expander driver for EXAR XRA1403");
2375704520dSNandor Han MODULE_LICENSE("GPL v2");
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