xref: /openbmc/linux/drivers/mfd/sprd-sc27xx-spi.c (revision dc0c386e)
19c92ab61SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
225ca4ae4SBaolin Wang /*
325ca4ae4SBaolin Wang  * Copyright (C) 2017 Spreadtrum Communications Inc.
425ca4ae4SBaolin Wang  */
525ca4ae4SBaolin Wang 
625ca4ae4SBaolin Wang #include <linux/interrupt.h>
725ca4ae4SBaolin Wang #include <linux/kernel.h>
825ca4ae4SBaolin Wang #include <linux/module.h>
925ca4ae4SBaolin Wang #include <linux/mfd/core.h>
103d4a8757SLee Jones #include <linux/mfd/sc27xx-pmic.h>
11*dc0c386eSRob Herring #include <linux/of.h>
12c61e1658SChunyan Zhang #include <linux/of_platform.h>
1325ca4ae4SBaolin Wang #include <linux/regmap.h>
1425ca4ae4SBaolin Wang #include <linux/spi/spi.h>
152a7e7274SBaolin Wang #include <uapi/linux/usb/charger.h>
1625ca4ae4SBaolin Wang 
1725ca4ae4SBaolin Wang #define SPRD_PMIC_INT_MASK_STATUS	0x0
1825ca4ae4SBaolin Wang #define SPRD_PMIC_INT_RAW_STATUS	0x4
1925ca4ae4SBaolin Wang #define SPRD_PMIC_INT_EN		0x8
2025ca4ae4SBaolin Wang 
21fcd8d92fSChunyan Zhang #define SPRD_SC2730_IRQ_BASE		0x80
22fcd8d92fSChunyan Zhang #define SPRD_SC2730_IRQ_NUMS		10
23fcd8d92fSChunyan Zhang #define SPRD_SC2730_CHG_DET		0x1b9c
2425ca4ae4SBaolin Wang #define SPRD_SC2731_IRQ_BASE		0x140
2525ca4ae4SBaolin Wang #define SPRD_SC2731_IRQ_NUMS		16
262a7e7274SBaolin Wang #define SPRD_SC2731_CHG_DET		0xedc
272a7e7274SBaolin Wang 
282a7e7274SBaolin Wang /* PMIC charger detection definition */
292a7e7274SBaolin Wang #define SPRD_PMIC_CHG_DET_DELAY_US	200000
302a7e7274SBaolin Wang #define SPRD_PMIC_CHG_DET_TIMEOUT	2000000
312a7e7274SBaolin Wang #define SPRD_PMIC_CHG_DET_DONE		BIT(11)
322a7e7274SBaolin Wang #define SPRD_PMIC_SDP_TYPE		BIT(7)
332a7e7274SBaolin Wang #define SPRD_PMIC_DCP_TYPE		BIT(6)
342a7e7274SBaolin Wang #define SPRD_PMIC_CDP_TYPE		BIT(5)
352a7e7274SBaolin Wang #define SPRD_PMIC_CHG_TYPE_MASK		GENMASK(7, 5)
3625ca4ae4SBaolin Wang 
3725ca4ae4SBaolin Wang struct sprd_pmic {
3825ca4ae4SBaolin Wang 	struct regmap *regmap;
3925ca4ae4SBaolin Wang 	struct device *dev;
4025ca4ae4SBaolin Wang 	struct regmap_irq *irqs;
4125ca4ae4SBaolin Wang 	struct regmap_irq_chip irq_chip;
4225ca4ae4SBaolin Wang 	struct regmap_irq_chip_data *irq_data;
432a7e7274SBaolin Wang 	const struct sprd_pmic_data *pdata;
4425ca4ae4SBaolin Wang 	int irq;
4525ca4ae4SBaolin Wang };
4625ca4ae4SBaolin Wang 
4725ca4ae4SBaolin Wang struct sprd_pmic_data {
4825ca4ae4SBaolin Wang 	u32 irq_base;
4925ca4ae4SBaolin Wang 	u32 num_irqs;
502a7e7274SBaolin Wang 	u32 charger_det;
5125ca4ae4SBaolin Wang };
5225ca4ae4SBaolin Wang 
5325ca4ae4SBaolin Wang /*
5425ca4ae4SBaolin Wang  * Since different PMICs of SC27xx series can have different interrupt
5525ca4ae4SBaolin Wang  * base address and irq number, we should save irq number and irq base
5625ca4ae4SBaolin Wang  * in the device data structure.
5725ca4ae4SBaolin Wang  */
58fcd8d92fSChunyan Zhang static const struct sprd_pmic_data sc2730_data = {
59fcd8d92fSChunyan Zhang 	.irq_base = SPRD_SC2730_IRQ_BASE,
60fcd8d92fSChunyan Zhang 	.num_irqs = SPRD_SC2730_IRQ_NUMS,
61fcd8d92fSChunyan Zhang 	.charger_det = SPRD_SC2730_CHG_DET,
62fcd8d92fSChunyan Zhang };
63fcd8d92fSChunyan Zhang 
6425ca4ae4SBaolin Wang static const struct sprd_pmic_data sc2731_data = {
6525ca4ae4SBaolin Wang 	.irq_base = SPRD_SC2731_IRQ_BASE,
6625ca4ae4SBaolin Wang 	.num_irqs = SPRD_SC2731_IRQ_NUMS,
672a7e7274SBaolin Wang 	.charger_det = SPRD_SC2731_CHG_DET,
6825ca4ae4SBaolin Wang };
6925ca4ae4SBaolin Wang 
sprd_pmic_detect_charger_type(struct device * dev)702a7e7274SBaolin Wang enum usb_charger_type sprd_pmic_detect_charger_type(struct device *dev)
712a7e7274SBaolin Wang {
722a7e7274SBaolin Wang 	struct spi_device *spi = to_spi_device(dev);
732a7e7274SBaolin Wang 	struct sprd_pmic *ddata = spi_get_drvdata(spi);
742a7e7274SBaolin Wang 	const struct sprd_pmic_data *pdata = ddata->pdata;
752a7e7274SBaolin Wang 	enum usb_charger_type type;
762a7e7274SBaolin Wang 	u32 val;
772a7e7274SBaolin Wang 	int ret;
782a7e7274SBaolin Wang 
792a7e7274SBaolin Wang 	ret = regmap_read_poll_timeout(ddata->regmap, pdata->charger_det, val,
802a7e7274SBaolin Wang 				       (val & SPRD_PMIC_CHG_DET_DONE),
812a7e7274SBaolin Wang 				       SPRD_PMIC_CHG_DET_DELAY_US,
822a7e7274SBaolin Wang 				       SPRD_PMIC_CHG_DET_TIMEOUT);
832a7e7274SBaolin Wang 	if (ret) {
842a7e7274SBaolin Wang 		dev_err(&spi->dev, "failed to detect charger type\n");
852a7e7274SBaolin Wang 		return UNKNOWN_TYPE;
862a7e7274SBaolin Wang 	}
872a7e7274SBaolin Wang 
882a7e7274SBaolin Wang 	switch (val & SPRD_PMIC_CHG_TYPE_MASK) {
892a7e7274SBaolin Wang 	case SPRD_PMIC_CDP_TYPE:
902a7e7274SBaolin Wang 		type = CDP_TYPE;
912a7e7274SBaolin Wang 		break;
922a7e7274SBaolin Wang 	case SPRD_PMIC_DCP_TYPE:
932a7e7274SBaolin Wang 		type = DCP_TYPE;
942a7e7274SBaolin Wang 		break;
952a7e7274SBaolin Wang 	case SPRD_PMIC_SDP_TYPE:
962a7e7274SBaolin Wang 		type = SDP_TYPE;
972a7e7274SBaolin Wang 		break;
982a7e7274SBaolin Wang 	default:
992a7e7274SBaolin Wang 		type = UNKNOWN_TYPE;
1002a7e7274SBaolin Wang 		break;
1012a7e7274SBaolin Wang 	}
1022a7e7274SBaolin Wang 
1032a7e7274SBaolin Wang 	return type;
1042a7e7274SBaolin Wang }
1052a7e7274SBaolin Wang EXPORT_SYMBOL_GPL(sprd_pmic_detect_charger_type);
1062a7e7274SBaolin Wang 
sprd_pmic_spi_write(void * context,const void * data,size_t count)10725ca4ae4SBaolin Wang static int sprd_pmic_spi_write(void *context, const void *data, size_t count)
10825ca4ae4SBaolin Wang {
10925ca4ae4SBaolin Wang 	struct device *dev = context;
11025ca4ae4SBaolin Wang 	struct spi_device *spi = to_spi_device(dev);
11125ca4ae4SBaolin Wang 
11225ca4ae4SBaolin Wang 	return spi_write(spi, data, count);
11325ca4ae4SBaolin Wang }
11425ca4ae4SBaolin Wang 
sprd_pmic_spi_read(void * context,const void * reg,size_t reg_size,void * val,size_t val_size)11525ca4ae4SBaolin Wang static int sprd_pmic_spi_read(void *context,
11625ca4ae4SBaolin Wang 			      const void *reg, size_t reg_size,
11725ca4ae4SBaolin Wang 			      void *val, size_t val_size)
11825ca4ae4SBaolin Wang {
11925ca4ae4SBaolin Wang 	struct device *dev = context;
12025ca4ae4SBaolin Wang 	struct spi_device *spi = to_spi_device(dev);
12125ca4ae4SBaolin Wang 	u32 rx_buf[2] = { 0 };
12225ca4ae4SBaolin Wang 	int ret;
12325ca4ae4SBaolin Wang 
12425ca4ae4SBaolin Wang 	/* Now we only support one PMIC register to read every time. */
12525ca4ae4SBaolin Wang 	if (reg_size != sizeof(u32) || val_size != sizeof(u32))
12625ca4ae4SBaolin Wang 		return -EINVAL;
12725ca4ae4SBaolin Wang 
12825ca4ae4SBaolin Wang 	/* Copy address to read from into first element of SPI buffer. */
12925ca4ae4SBaolin Wang 	memcpy(rx_buf, reg, sizeof(u32));
13025ca4ae4SBaolin Wang 	ret = spi_read(spi, rx_buf, 1);
13125ca4ae4SBaolin Wang 	if (ret < 0)
13225ca4ae4SBaolin Wang 		return ret;
13325ca4ae4SBaolin Wang 
13425ca4ae4SBaolin Wang 	memcpy(val, rx_buf, val_size);
13525ca4ae4SBaolin Wang 	return 0;
13625ca4ae4SBaolin Wang }
13725ca4ae4SBaolin Wang 
13825ca4ae4SBaolin Wang static struct regmap_bus sprd_pmic_regmap = {
13925ca4ae4SBaolin Wang 	.write = sprd_pmic_spi_write,
14025ca4ae4SBaolin Wang 	.read = sprd_pmic_spi_read,
14125ca4ae4SBaolin Wang 	.reg_format_endian_default = REGMAP_ENDIAN_NATIVE,
14225ca4ae4SBaolin Wang 	.val_format_endian_default = REGMAP_ENDIAN_NATIVE,
14325ca4ae4SBaolin Wang };
14425ca4ae4SBaolin Wang 
14525ca4ae4SBaolin Wang static const struct regmap_config sprd_pmic_config = {
14625ca4ae4SBaolin Wang 	.reg_bits = 32,
14725ca4ae4SBaolin Wang 	.val_bits = 32,
14825ca4ae4SBaolin Wang 	.reg_stride = 4,
14925ca4ae4SBaolin Wang 	.max_register = 0xffff,
15025ca4ae4SBaolin Wang };
15125ca4ae4SBaolin Wang 
sprd_pmic_probe(struct spi_device * spi)15225ca4ae4SBaolin Wang static int sprd_pmic_probe(struct spi_device *spi)
15325ca4ae4SBaolin Wang {
15425ca4ae4SBaolin Wang 	struct sprd_pmic *ddata;
15525ca4ae4SBaolin Wang 	const struct sprd_pmic_data *pdata;
15625ca4ae4SBaolin Wang 	int ret, i;
15725ca4ae4SBaolin Wang 
15825ca4ae4SBaolin Wang 	pdata = of_device_get_match_data(&spi->dev);
15925ca4ae4SBaolin Wang 	if (!pdata) {
16025ca4ae4SBaolin Wang 		dev_err(&spi->dev, "No matching driver data found\n");
16125ca4ae4SBaolin Wang 		return -EINVAL;
16225ca4ae4SBaolin Wang 	}
16325ca4ae4SBaolin Wang 
16425ca4ae4SBaolin Wang 	ddata = devm_kzalloc(&spi->dev, sizeof(*ddata), GFP_KERNEL);
16525ca4ae4SBaolin Wang 	if (!ddata)
16625ca4ae4SBaolin Wang 		return -ENOMEM;
16725ca4ae4SBaolin Wang 
16825ca4ae4SBaolin Wang 	ddata->regmap = devm_regmap_init(&spi->dev, &sprd_pmic_regmap,
16925ca4ae4SBaolin Wang 					 &spi->dev, &sprd_pmic_config);
17025ca4ae4SBaolin Wang 	if (IS_ERR(ddata->regmap)) {
17125ca4ae4SBaolin Wang 		ret = PTR_ERR(ddata->regmap);
17225ca4ae4SBaolin Wang 		dev_err(&spi->dev, "Failed to allocate register map %d\n", ret);
17325ca4ae4SBaolin Wang 		return ret;
17425ca4ae4SBaolin Wang 	}
17525ca4ae4SBaolin Wang 
17625ca4ae4SBaolin Wang 	spi_set_drvdata(spi, ddata);
17725ca4ae4SBaolin Wang 	ddata->dev = &spi->dev;
17825ca4ae4SBaolin Wang 	ddata->irq = spi->irq;
1792a7e7274SBaolin Wang 	ddata->pdata = pdata;
18025ca4ae4SBaolin Wang 
18125ca4ae4SBaolin Wang 	ddata->irq_chip.name = dev_name(&spi->dev);
18225ca4ae4SBaolin Wang 	ddata->irq_chip.status_base =
18325ca4ae4SBaolin Wang 		pdata->irq_base + SPRD_PMIC_INT_MASK_STATUS;
184963cd957SAidan MacDonald 	ddata->irq_chip.unmask_base = pdata->irq_base + SPRD_PMIC_INT_EN;
18525ca4ae4SBaolin Wang 	ddata->irq_chip.ack_base = 0;
18625ca4ae4SBaolin Wang 	ddata->irq_chip.num_regs = 1;
18725ca4ae4SBaolin Wang 	ddata->irq_chip.num_irqs = pdata->num_irqs;
18825ca4ae4SBaolin Wang 
189a86854d0SKees Cook 	ddata->irqs = devm_kcalloc(&spi->dev,
190a86854d0SKees Cook 				   pdata->num_irqs, sizeof(struct regmap_irq),
191a86854d0SKees Cook 				   GFP_KERNEL);
19225ca4ae4SBaolin Wang 	if (!ddata->irqs)
19325ca4ae4SBaolin Wang 		return -ENOMEM;
19425ca4ae4SBaolin Wang 
19525ca4ae4SBaolin Wang 	ddata->irq_chip.irqs = ddata->irqs;
196ec46855dSLee Jones 	for (i = 0; i < pdata->num_irqs; i++)
197ec46855dSLee Jones 		ddata->irqs[i].mask = BIT(i);
19825ca4ae4SBaolin Wang 
19925ca4ae4SBaolin Wang 	ret = devm_regmap_add_irq_chip(&spi->dev, ddata->regmap, ddata->irq,
200a75bfc82SBaolin Wang 				       IRQF_ONESHOT, 0,
20125ca4ae4SBaolin Wang 				       &ddata->irq_chip, &ddata->irq_data);
20225ca4ae4SBaolin Wang 	if (ret) {
20325ca4ae4SBaolin Wang 		dev_err(&spi->dev, "Failed to add PMIC irq chip %d\n", ret);
20425ca4ae4SBaolin Wang 		return ret;
20525ca4ae4SBaolin Wang 	}
20625ca4ae4SBaolin Wang 
207c61e1658SChunyan Zhang 	ret = devm_of_platform_populate(&spi->dev);
20825ca4ae4SBaolin Wang 	if (ret) {
209c61e1658SChunyan Zhang 		dev_err(&spi->dev, "Failed to populate sub-devices %d\n", ret);
21025ca4ae4SBaolin Wang 		return ret;
21125ca4ae4SBaolin Wang 	}
21225ca4ae4SBaolin Wang 
213a75bfc82SBaolin Wang 	device_init_wakeup(&spi->dev, true);
21425ca4ae4SBaolin Wang 	return 0;
21525ca4ae4SBaolin Wang }
21625ca4ae4SBaolin Wang 
sprd_pmic_suspend(struct device * dev)217a75bfc82SBaolin Wang static int sprd_pmic_suspend(struct device *dev)
218a75bfc82SBaolin Wang {
219a75bfc82SBaolin Wang 	struct sprd_pmic *ddata = dev_get_drvdata(dev);
220a75bfc82SBaolin Wang 
221a75bfc82SBaolin Wang 	if (device_may_wakeup(dev))
222a75bfc82SBaolin Wang 		enable_irq_wake(ddata->irq);
223a75bfc82SBaolin Wang 
224a75bfc82SBaolin Wang 	return 0;
225a75bfc82SBaolin Wang }
226a75bfc82SBaolin Wang 
sprd_pmic_resume(struct device * dev)227a75bfc82SBaolin Wang static int sprd_pmic_resume(struct device *dev)
228a75bfc82SBaolin Wang {
229a75bfc82SBaolin Wang 	struct sprd_pmic *ddata = dev_get_drvdata(dev);
230a75bfc82SBaolin Wang 
231a75bfc82SBaolin Wang 	if (device_may_wakeup(dev))
232a75bfc82SBaolin Wang 		disable_irq_wake(ddata->irq);
233a75bfc82SBaolin Wang 
234a75bfc82SBaolin Wang 	return 0;
235a75bfc82SBaolin Wang }
236a75bfc82SBaolin Wang 
23769bbab91SPaul Cercueil static DEFINE_SIMPLE_DEV_PM_OPS(sprd_pmic_pm_ops,
23869bbab91SPaul Cercueil 				sprd_pmic_suspend, sprd_pmic_resume);
239a75bfc82SBaolin Wang 
24025ca4ae4SBaolin Wang static const struct of_device_id sprd_pmic_match[] = {
241fcd8d92fSChunyan Zhang 	{ .compatible = "sprd,sc2730", .data = &sc2730_data },
242d95ab6d2SCixi Geng 	{ .compatible = "sprd,sc2731", .data = &sc2731_data },
24325ca4ae4SBaolin Wang 	{},
24425ca4ae4SBaolin Wang };
24525ca4ae4SBaolin Wang MODULE_DEVICE_TABLE(of, sprd_pmic_match);
24625ca4ae4SBaolin Wang 
247c5c7f067SMark Brown static const struct spi_device_id sprd_pmic_spi_ids[] = {
248875709f9SCixi Geng 	{ .name = "sc2730", .driver_data = (unsigned long)&sc2730_data },
249d95ab6d2SCixi Geng 	{ .name = "sc2731", .driver_data = (unsigned long)&sc2731_data },
250c5c7f067SMark Brown 	{},
251c5c7f067SMark Brown };
252c5c7f067SMark Brown MODULE_DEVICE_TABLE(spi, sprd_pmic_spi_ids);
253c5c7f067SMark Brown 
25425ca4ae4SBaolin Wang static struct spi_driver sprd_pmic_driver = {
25525ca4ae4SBaolin Wang 	.driver = {
25625ca4ae4SBaolin Wang 		.name = "sc27xx-pmic",
25725ca4ae4SBaolin Wang 		.of_match_table = sprd_pmic_match,
25869bbab91SPaul Cercueil 		.pm = pm_sleep_ptr(&sprd_pmic_pm_ops),
25925ca4ae4SBaolin Wang 	},
26025ca4ae4SBaolin Wang 	.probe = sprd_pmic_probe,
261c5c7f067SMark Brown 	.id_table = sprd_pmic_spi_ids,
26225ca4ae4SBaolin Wang };
26325ca4ae4SBaolin Wang 
sprd_pmic_init(void)26425ca4ae4SBaolin Wang static int __init sprd_pmic_init(void)
26525ca4ae4SBaolin Wang {
26625ca4ae4SBaolin Wang 	return spi_register_driver(&sprd_pmic_driver);
26725ca4ae4SBaolin Wang }
26825ca4ae4SBaolin Wang subsys_initcall(sprd_pmic_init);
26925ca4ae4SBaolin Wang 
sprd_pmic_exit(void)27025ca4ae4SBaolin Wang static void __exit sprd_pmic_exit(void)
27125ca4ae4SBaolin Wang {
27225ca4ae4SBaolin Wang 	spi_unregister_driver(&sprd_pmic_driver);
27325ca4ae4SBaolin Wang }
27425ca4ae4SBaolin Wang module_exit(sprd_pmic_exit);
27525ca4ae4SBaolin Wang 
27625ca4ae4SBaolin Wang MODULE_LICENSE("GPL v2");
27725ca4ae4SBaolin Wang MODULE_DESCRIPTION("Spreadtrum SC27xx PMICs driver");
27825ca4ae4SBaolin Wang MODULE_AUTHOR("Baolin Wang <baolin.wang@spreadtrum.com>");
279