18c2ecf20Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0-only
28c2ecf20Sopenharmony_ci/* MCP23S08 SPI GPIO driver */
38c2ecf20Sopenharmony_ci
48c2ecf20Sopenharmony_ci#include <linux/mod_devicetable.h>
58c2ecf20Sopenharmony_ci#include <linux/module.h>
68c2ecf20Sopenharmony_ci#include <linux/property.h>
78c2ecf20Sopenharmony_ci#include <linux/regmap.h>
88c2ecf20Sopenharmony_ci#include <linux/spi/spi.h>
98c2ecf20Sopenharmony_ci
108c2ecf20Sopenharmony_ci#include "pinctrl-mcp23s08.h"
118c2ecf20Sopenharmony_ci
128c2ecf20Sopenharmony_ci#define MCP_MAX_DEV_PER_CS	8
138c2ecf20Sopenharmony_ci
148c2ecf20Sopenharmony_ci/*
158c2ecf20Sopenharmony_ci * A given spi_device can represent up to eight mcp23sxx chips
168c2ecf20Sopenharmony_ci * sharing the same chipselect but using different addresses
178c2ecf20Sopenharmony_ci * (e.g. chips #0 and #3 might be populated, but not #1 or #2).
188c2ecf20Sopenharmony_ci * Driver data holds all the per-chip data.
198c2ecf20Sopenharmony_ci */
208c2ecf20Sopenharmony_cistruct mcp23s08_driver_data {
218c2ecf20Sopenharmony_ci	unsigned		ngpio;
228c2ecf20Sopenharmony_ci	struct mcp23s08		*mcp[8];
238c2ecf20Sopenharmony_ci	struct mcp23s08		chip[];
248c2ecf20Sopenharmony_ci};
258c2ecf20Sopenharmony_ci
268c2ecf20Sopenharmony_cistatic int mcp23sxx_spi_write(void *context, const void *data, size_t count)
278c2ecf20Sopenharmony_ci{
288c2ecf20Sopenharmony_ci	struct mcp23s08 *mcp = context;
298c2ecf20Sopenharmony_ci	struct spi_device *spi = to_spi_device(mcp->dev);
308c2ecf20Sopenharmony_ci	struct spi_message m;
318c2ecf20Sopenharmony_ci	struct spi_transfer t[2] = { { .tx_buf = &mcp->addr, .len = 1, },
328c2ecf20Sopenharmony_ci				     { .tx_buf = data, .len = count, }, };
338c2ecf20Sopenharmony_ci
348c2ecf20Sopenharmony_ci	spi_message_init(&m);
358c2ecf20Sopenharmony_ci	spi_message_add_tail(&t[0], &m);
368c2ecf20Sopenharmony_ci	spi_message_add_tail(&t[1], &m);
378c2ecf20Sopenharmony_ci
388c2ecf20Sopenharmony_ci	return spi_sync(spi, &m);
398c2ecf20Sopenharmony_ci}
408c2ecf20Sopenharmony_ci
418c2ecf20Sopenharmony_cistatic int mcp23sxx_spi_gather_write(void *context,
428c2ecf20Sopenharmony_ci				const void *reg, size_t reg_size,
438c2ecf20Sopenharmony_ci				const void *val, size_t val_size)
448c2ecf20Sopenharmony_ci{
458c2ecf20Sopenharmony_ci	struct mcp23s08 *mcp = context;
468c2ecf20Sopenharmony_ci	struct spi_device *spi = to_spi_device(mcp->dev);
478c2ecf20Sopenharmony_ci	struct spi_message m;
488c2ecf20Sopenharmony_ci	struct spi_transfer t[3] = { { .tx_buf = &mcp->addr, .len = 1, },
498c2ecf20Sopenharmony_ci				     { .tx_buf = reg, .len = reg_size, },
508c2ecf20Sopenharmony_ci				     { .tx_buf = val, .len = val_size, }, };
518c2ecf20Sopenharmony_ci
528c2ecf20Sopenharmony_ci	spi_message_init(&m);
538c2ecf20Sopenharmony_ci	spi_message_add_tail(&t[0], &m);
548c2ecf20Sopenharmony_ci	spi_message_add_tail(&t[1], &m);
558c2ecf20Sopenharmony_ci	spi_message_add_tail(&t[2], &m);
568c2ecf20Sopenharmony_ci
578c2ecf20Sopenharmony_ci	return spi_sync(spi, &m);
588c2ecf20Sopenharmony_ci}
598c2ecf20Sopenharmony_ci
608c2ecf20Sopenharmony_cistatic int mcp23sxx_spi_read(void *context, const void *reg, size_t reg_size,
618c2ecf20Sopenharmony_ci				void *val, size_t val_size)
628c2ecf20Sopenharmony_ci{
638c2ecf20Sopenharmony_ci	struct mcp23s08 *mcp = context;
648c2ecf20Sopenharmony_ci	struct spi_device *spi = to_spi_device(mcp->dev);
658c2ecf20Sopenharmony_ci	u8 tx[2];
668c2ecf20Sopenharmony_ci
678c2ecf20Sopenharmony_ci	if (reg_size != 1)
688c2ecf20Sopenharmony_ci		return -EINVAL;
698c2ecf20Sopenharmony_ci
708c2ecf20Sopenharmony_ci	tx[0] = mcp->addr | 0x01;
718c2ecf20Sopenharmony_ci	tx[1] = *((u8 *) reg);
728c2ecf20Sopenharmony_ci
738c2ecf20Sopenharmony_ci	return spi_write_then_read(spi, tx, sizeof(tx), val, val_size);
748c2ecf20Sopenharmony_ci}
758c2ecf20Sopenharmony_ci
768c2ecf20Sopenharmony_cistatic const struct regmap_bus mcp23sxx_spi_regmap = {
778c2ecf20Sopenharmony_ci	.write = mcp23sxx_spi_write,
788c2ecf20Sopenharmony_ci	.gather_write = mcp23sxx_spi_gather_write,
798c2ecf20Sopenharmony_ci	.read = mcp23sxx_spi_read,
808c2ecf20Sopenharmony_ci};
818c2ecf20Sopenharmony_ci
828c2ecf20Sopenharmony_cistatic int mcp23s08_spi_regmap_init(struct mcp23s08 *mcp, struct device *dev,
838c2ecf20Sopenharmony_ci				    unsigned int addr, unsigned int type)
848c2ecf20Sopenharmony_ci{
858c2ecf20Sopenharmony_ci	const struct regmap_config *config;
868c2ecf20Sopenharmony_ci	struct regmap_config *copy;
878c2ecf20Sopenharmony_ci	const char *name;
888c2ecf20Sopenharmony_ci
898c2ecf20Sopenharmony_ci	switch (type) {
908c2ecf20Sopenharmony_ci	case MCP_TYPE_S08:
918c2ecf20Sopenharmony_ci		mcp->reg_shift = 0;
928c2ecf20Sopenharmony_ci		mcp->chip.ngpio = 8;
938c2ecf20Sopenharmony_ci		mcp->chip.label = devm_kasprintf(dev, GFP_KERNEL, "mcp23s08.%d", addr);
948c2ecf20Sopenharmony_ci		if (!mcp->chip.label)
958c2ecf20Sopenharmony_ci			return -ENOMEM;
968c2ecf20Sopenharmony_ci
978c2ecf20Sopenharmony_ci		config = &mcp23x08_regmap;
988c2ecf20Sopenharmony_ci		name = devm_kasprintf(dev, GFP_KERNEL, "%d", addr);
998c2ecf20Sopenharmony_ci		if (!name)
1008c2ecf20Sopenharmony_ci			return -ENOMEM;
1018c2ecf20Sopenharmony_ci
1028c2ecf20Sopenharmony_ci		break;
1038c2ecf20Sopenharmony_ci
1048c2ecf20Sopenharmony_ci	case MCP_TYPE_S17:
1058c2ecf20Sopenharmony_ci		mcp->reg_shift = 1;
1068c2ecf20Sopenharmony_ci		mcp->chip.ngpio = 16;
1078c2ecf20Sopenharmony_ci		mcp->chip.label = devm_kasprintf(dev, GFP_KERNEL, "mcp23s17.%d", addr);
1088c2ecf20Sopenharmony_ci		if (!mcp->chip.label)
1098c2ecf20Sopenharmony_ci			return -ENOMEM;
1108c2ecf20Sopenharmony_ci
1118c2ecf20Sopenharmony_ci		config = &mcp23x17_regmap;
1128c2ecf20Sopenharmony_ci		name = devm_kasprintf(dev, GFP_KERNEL, "%d", addr);
1138c2ecf20Sopenharmony_ci		if (!name)
1148c2ecf20Sopenharmony_ci			return -ENOMEM;
1158c2ecf20Sopenharmony_ci
1168c2ecf20Sopenharmony_ci		break;
1178c2ecf20Sopenharmony_ci
1188c2ecf20Sopenharmony_ci	case MCP_TYPE_S18:
1198c2ecf20Sopenharmony_ci		mcp->reg_shift = 1;
1208c2ecf20Sopenharmony_ci		mcp->chip.ngpio = 16;
1218c2ecf20Sopenharmony_ci		mcp->chip.label = "mcp23s18";
1228c2ecf20Sopenharmony_ci
1238c2ecf20Sopenharmony_ci		config = &mcp23x17_regmap;
1248c2ecf20Sopenharmony_ci		name = config->name;
1258c2ecf20Sopenharmony_ci		break;
1268c2ecf20Sopenharmony_ci
1278c2ecf20Sopenharmony_ci	default:
1288c2ecf20Sopenharmony_ci		dev_err(dev, "invalid device type (%d)\n", type);
1298c2ecf20Sopenharmony_ci		return -EINVAL;
1308c2ecf20Sopenharmony_ci	}
1318c2ecf20Sopenharmony_ci
1328c2ecf20Sopenharmony_ci	copy = devm_kmemdup(dev, config, sizeof(*config), GFP_KERNEL);
1338c2ecf20Sopenharmony_ci	if (!copy)
1348c2ecf20Sopenharmony_ci		return -ENOMEM;
1358c2ecf20Sopenharmony_ci
1368c2ecf20Sopenharmony_ci	copy->name = name;
1378c2ecf20Sopenharmony_ci
1388c2ecf20Sopenharmony_ci	mcp->regmap = devm_regmap_init(dev, &mcp23sxx_spi_regmap, mcp, copy);
1398c2ecf20Sopenharmony_ci	if (IS_ERR(mcp->regmap))
1408c2ecf20Sopenharmony_ci		dev_err(dev, "regmap init failed for %s\n", mcp->chip.label);
1418c2ecf20Sopenharmony_ci	return PTR_ERR_OR_ZERO(mcp->regmap);
1428c2ecf20Sopenharmony_ci}
1438c2ecf20Sopenharmony_ci
1448c2ecf20Sopenharmony_cistatic int mcp23s08_probe(struct spi_device *spi)
1458c2ecf20Sopenharmony_ci{
1468c2ecf20Sopenharmony_ci	struct device *dev = &spi->dev;
1478c2ecf20Sopenharmony_ci	struct mcp23s08_driver_data *data;
1488c2ecf20Sopenharmony_ci	unsigned long spi_present_mask;
1498c2ecf20Sopenharmony_ci	const void *match;
1508c2ecf20Sopenharmony_ci	unsigned int addr;
1518c2ecf20Sopenharmony_ci	unsigned int ngpio = 0;
1528c2ecf20Sopenharmony_ci	int chips;
1538c2ecf20Sopenharmony_ci	int type;
1548c2ecf20Sopenharmony_ci	int ret;
1558c2ecf20Sopenharmony_ci	u32 v;
1568c2ecf20Sopenharmony_ci
1578c2ecf20Sopenharmony_ci	match = device_get_match_data(dev);
1588c2ecf20Sopenharmony_ci	if (match)
1598c2ecf20Sopenharmony_ci		type = (int)(uintptr_t)match;
1608c2ecf20Sopenharmony_ci	else
1618c2ecf20Sopenharmony_ci		type = spi_get_device_id(spi)->driver_data;
1628c2ecf20Sopenharmony_ci
1638c2ecf20Sopenharmony_ci	ret = device_property_read_u32(dev, "microchip,spi-present-mask", &v);
1648c2ecf20Sopenharmony_ci	if (ret) {
1658c2ecf20Sopenharmony_ci		ret = device_property_read_u32(dev, "mcp,spi-present-mask", &v);
1668c2ecf20Sopenharmony_ci		if (ret) {
1678c2ecf20Sopenharmony_ci			dev_err(dev, "missing spi-present-mask");
1688c2ecf20Sopenharmony_ci			return ret;
1698c2ecf20Sopenharmony_ci		}
1708c2ecf20Sopenharmony_ci	}
1718c2ecf20Sopenharmony_ci	spi_present_mask = v;
1728c2ecf20Sopenharmony_ci
1738c2ecf20Sopenharmony_ci	if (!spi_present_mask || spi_present_mask >= BIT(MCP_MAX_DEV_PER_CS)) {
1748c2ecf20Sopenharmony_ci		dev_err(dev, "invalid spi-present-mask");
1758c2ecf20Sopenharmony_ci		return -ENODEV;
1768c2ecf20Sopenharmony_ci	}
1778c2ecf20Sopenharmony_ci
1788c2ecf20Sopenharmony_ci	chips = hweight_long(spi_present_mask);
1798c2ecf20Sopenharmony_ci
1808c2ecf20Sopenharmony_ci	data = devm_kzalloc(dev, struct_size(data, chip, chips), GFP_KERNEL);
1818c2ecf20Sopenharmony_ci	if (!data)
1828c2ecf20Sopenharmony_ci		return -ENOMEM;
1838c2ecf20Sopenharmony_ci
1848c2ecf20Sopenharmony_ci	spi_set_drvdata(spi, data);
1858c2ecf20Sopenharmony_ci
1868c2ecf20Sopenharmony_ci	for_each_set_bit(addr, &spi_present_mask, MCP_MAX_DEV_PER_CS) {
1878c2ecf20Sopenharmony_ci		data->mcp[addr] = &data->chip[--chips];
1888c2ecf20Sopenharmony_ci		data->mcp[addr]->irq = spi->irq;
1898c2ecf20Sopenharmony_ci
1908c2ecf20Sopenharmony_ci		ret = mcp23s08_spi_regmap_init(data->mcp[addr], dev, addr, type);
1918c2ecf20Sopenharmony_ci		if (ret)
1928c2ecf20Sopenharmony_ci			return ret;
1938c2ecf20Sopenharmony_ci
1948c2ecf20Sopenharmony_ci		data->mcp[addr]->pinctrl_desc.name = devm_kasprintf(dev, GFP_KERNEL,
1958c2ecf20Sopenharmony_ci								    "mcp23xxx-pinctrl.%d",
1968c2ecf20Sopenharmony_ci								    addr);
1978c2ecf20Sopenharmony_ci		if (!data->mcp[addr]->pinctrl_desc.name)
1988c2ecf20Sopenharmony_ci			return -ENOMEM;
1998c2ecf20Sopenharmony_ci
2008c2ecf20Sopenharmony_ci		ret = mcp23s08_probe_one(data->mcp[addr], dev, 0x40 | (addr << 1), type, -1);
2018c2ecf20Sopenharmony_ci		if (ret < 0)
2028c2ecf20Sopenharmony_ci			return ret;
2038c2ecf20Sopenharmony_ci
2048c2ecf20Sopenharmony_ci		ngpio += data->mcp[addr]->chip.ngpio;
2058c2ecf20Sopenharmony_ci	}
2068c2ecf20Sopenharmony_ci	data->ngpio = ngpio;
2078c2ecf20Sopenharmony_ci
2088c2ecf20Sopenharmony_ci	return 0;
2098c2ecf20Sopenharmony_ci}
2108c2ecf20Sopenharmony_ci
2118c2ecf20Sopenharmony_cistatic const struct spi_device_id mcp23s08_ids[] = {
2128c2ecf20Sopenharmony_ci	{ "mcp23s08", MCP_TYPE_S08 },
2138c2ecf20Sopenharmony_ci	{ "mcp23s17", MCP_TYPE_S17 },
2148c2ecf20Sopenharmony_ci	{ "mcp23s18", MCP_TYPE_S18 },
2158c2ecf20Sopenharmony_ci	{ }
2168c2ecf20Sopenharmony_ci};
2178c2ecf20Sopenharmony_ciMODULE_DEVICE_TABLE(spi, mcp23s08_ids);
2188c2ecf20Sopenharmony_ci
2198c2ecf20Sopenharmony_cistatic const struct of_device_id mcp23s08_spi_of_match[] = {
2208c2ecf20Sopenharmony_ci	{
2218c2ecf20Sopenharmony_ci		.compatible = "microchip,mcp23s08",
2228c2ecf20Sopenharmony_ci		.data = (void *) MCP_TYPE_S08,
2238c2ecf20Sopenharmony_ci	},
2248c2ecf20Sopenharmony_ci	{
2258c2ecf20Sopenharmony_ci		.compatible = "microchip,mcp23s17",
2268c2ecf20Sopenharmony_ci		.data = (void *) MCP_TYPE_S17,
2278c2ecf20Sopenharmony_ci	},
2288c2ecf20Sopenharmony_ci	{
2298c2ecf20Sopenharmony_ci		.compatible = "microchip,mcp23s18",
2308c2ecf20Sopenharmony_ci		.data = (void *) MCP_TYPE_S18,
2318c2ecf20Sopenharmony_ci	},
2328c2ecf20Sopenharmony_ci/* NOTE: The use of the mcp prefix is deprecated and will be removed. */
2338c2ecf20Sopenharmony_ci	{
2348c2ecf20Sopenharmony_ci		.compatible = "mcp,mcp23s08",
2358c2ecf20Sopenharmony_ci		.data = (void *) MCP_TYPE_S08,
2368c2ecf20Sopenharmony_ci	},
2378c2ecf20Sopenharmony_ci	{
2388c2ecf20Sopenharmony_ci		.compatible = "mcp,mcp23s17",
2398c2ecf20Sopenharmony_ci		.data = (void *) MCP_TYPE_S17,
2408c2ecf20Sopenharmony_ci	},
2418c2ecf20Sopenharmony_ci	{ }
2428c2ecf20Sopenharmony_ci};
2438c2ecf20Sopenharmony_ciMODULE_DEVICE_TABLE(of, mcp23s08_spi_of_match);
2448c2ecf20Sopenharmony_ci
2458c2ecf20Sopenharmony_cistatic struct spi_driver mcp23s08_driver = {
2468c2ecf20Sopenharmony_ci	.probe		= mcp23s08_probe,
2478c2ecf20Sopenharmony_ci	.id_table	= mcp23s08_ids,
2488c2ecf20Sopenharmony_ci	.driver = {
2498c2ecf20Sopenharmony_ci		.name	= "mcp23s08",
2508c2ecf20Sopenharmony_ci		.of_match_table = mcp23s08_spi_of_match,
2518c2ecf20Sopenharmony_ci	},
2528c2ecf20Sopenharmony_ci};
2538c2ecf20Sopenharmony_ci
2548c2ecf20Sopenharmony_cistatic int __init mcp23s08_spi_init(void)
2558c2ecf20Sopenharmony_ci{
2568c2ecf20Sopenharmony_ci	return spi_register_driver(&mcp23s08_driver);
2578c2ecf20Sopenharmony_ci}
2588c2ecf20Sopenharmony_ci
2598c2ecf20Sopenharmony_ci/*
2608c2ecf20Sopenharmony_ci * Register after SPI postcore initcall and before
2618c2ecf20Sopenharmony_ci * subsys initcalls that may rely on these GPIOs.
2628c2ecf20Sopenharmony_ci */
2638c2ecf20Sopenharmony_cisubsys_initcall(mcp23s08_spi_init);
2648c2ecf20Sopenharmony_ci
2658c2ecf20Sopenharmony_cistatic void mcp23s08_spi_exit(void)
2668c2ecf20Sopenharmony_ci{
2678c2ecf20Sopenharmony_ci	spi_unregister_driver(&mcp23s08_driver);
2688c2ecf20Sopenharmony_ci}
2698c2ecf20Sopenharmony_cimodule_exit(mcp23s08_spi_exit);
2708c2ecf20Sopenharmony_ci
2718c2ecf20Sopenharmony_ciMODULE_LICENSE("GPL");
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