xref: /linux/drivers/regulator/pf530x-regulator.c (revision 4f38da1f027ea2c9f01bb71daa7a299c191b6940)
1*b497e1a1SWoodrow Douglass // SPDX-License-Identifier: GPL-2.0+
2*b497e1a1SWoodrow Douglass 
3*b497e1a1SWoodrow Douglass // documentation of this device is available at
4*b497e1a1SWoodrow Douglass // https://www.nxp.com/docs/en/data-sheet/PF5300.pdf
5*b497e1a1SWoodrow Douglass 
6*b497e1a1SWoodrow Douglass #include <linux/delay.h>
7*b497e1a1SWoodrow Douglass #include <linux/err.h>
8*b497e1a1SWoodrow Douglass #include <linux/gpio/consumer.h>
9*b497e1a1SWoodrow Douglass #include <linux/i2c.h>
10*b497e1a1SWoodrow Douglass #include <linux/module.h>
11*b497e1a1SWoodrow Douglass #include <linux/regmap.h>
12*b497e1a1SWoodrow Douglass #include <linux/regulator/driver.h>
13*b497e1a1SWoodrow Douglass #include <linux/regulator/consumer.h>
14*b497e1a1SWoodrow Douglass #include <linux/regulator/machine.h>
15*b497e1a1SWoodrow Douglass #include <linux/regulator/of_regulator.h>
16*b497e1a1SWoodrow Douglass 
17*b497e1a1SWoodrow Douglass /* registers */
18*b497e1a1SWoodrow Douglass #define PF530X_DEVICEID			0x00
19*b497e1a1SWoodrow Douglass #define PF530X_REV				0x01
20*b497e1a1SWoodrow Douglass #define PF530X_EMREV			0x02
21*b497e1a1SWoodrow Douglass #define PF530X_PROGID			0x03
22*b497e1a1SWoodrow Douglass #define PF530X_CONFIG1			0x04
23*b497e1a1SWoodrow Douglass #define PF530X_INT_STATUS1		0x05
24*b497e1a1SWoodrow Douglass #define PF530X_INT_SENSE1		0x06
25*b497e1a1SWoodrow Douglass #define PF530X_INT_STATUS2		0x07
26*b497e1a1SWoodrow Douglass #define PF530X_INT_SENSE2		0x08
27*b497e1a1SWoodrow Douglass #define PF530X_BIST_STAT1		0x09
28*b497e1a1SWoodrow Douglass #define PF530X_BIST_CTRL		0x0a
29*b497e1a1SWoodrow Douglass #define PF530X_STATE			0x0b
30*b497e1a1SWoodrow Douglass #define PF530X_STATE_CTRL		0x0c
31*b497e1a1SWoodrow Douglass #define PF530X_SW1_VOLT			0x0d
32*b497e1a1SWoodrow Douglass #define PF530X_SW1_STBY_VOLT	0x0e
33*b497e1a1SWoodrow Douglass #define PF530X_SW1_CTRL1		0x0f
34*b497e1a1SWoodrow Douglass #define PF530X_SW1_CTRL2		0x10
35*b497e1a1SWoodrow Douglass #define PF530X_CLK_CTRL			0x11
36*b497e1a1SWoodrow Douglass #define PF530X_SEQ_CTRL1		0x12
37*b497e1a1SWoodrow Douglass #define PF530X_SEQ_CTRL2		0x13
38*b497e1a1SWoodrow Douglass #define PF530X_RANDOM_CHK		0x14
39*b497e1a1SWoodrow Douglass #define PF530X_RANDOM_GEN		0x15
40*b497e1a1SWoodrow Douglass #define PF530X_WD_CTRL1			0x16
41*b497e1a1SWoodrow Douglass #define PF530X_WD_SEED			0x17
42*b497e1a1SWoodrow Douglass #define PF530X_WD_ANSWER		0x18
43*b497e1a1SWoodrow Douglass #define PF530X_FLT_CNT1			0x19
44*b497e1a1SWoodrow Douglass #define PF530X_FLT_CNT2			0x1a
45*b497e1a1SWoodrow Douglass #define PF530X_OTP_MODE			0x2f
46*b497e1a1SWoodrow Douglass 
47*b497e1a1SWoodrow Douglass enum pf530x_states {
48*b497e1a1SWoodrow Douglass 	PF530X_STATE_POF,
49*b497e1a1SWoodrow Douglass 	PF530X_STATE_FUSE_LOAD,
50*b497e1a1SWoodrow Douglass 	PF530X_STATE_LP_OFF,
51*b497e1a1SWoodrow Douglass 	PF530X_STATE_SELF_TEST,
52*b497e1a1SWoodrow Douglass 	PF530X_STATE_POWER_UP,
53*b497e1a1SWoodrow Douglass 	PF530X_STATE_INIT,
54*b497e1a1SWoodrow Douglass 	PF530X_STATE_IO_RELEASE,
55*b497e1a1SWoodrow Douglass 	PF530X_STATE_RUN,
56*b497e1a1SWoodrow Douglass 	PF530X_STATE_STANDBY,
57*b497e1a1SWoodrow Douglass 	PF530X_STATE_FAULT,
58*b497e1a1SWoodrow Douglass 	PF530X_STATE_FAILSAFE,
59*b497e1a1SWoodrow Douglass 	PF530X_STATE_POWER_DOWN,
60*b497e1a1SWoodrow Douglass 	PF530X_STATE_2MS_SELFTEST_RETRY,
61*b497e1a1SWoodrow Douglass 	PF530X_STATE_OFF_DLY,
62*b497e1a1SWoodrow Douglass };
63*b497e1a1SWoodrow Douglass 
64*b497e1a1SWoodrow Douglass #define PF530_FAM			0x50
65*b497e1a1SWoodrow Douglass enum pf530x_devid {
66*b497e1a1SWoodrow Douglass 	PF5300			= 0x3,
67*b497e1a1SWoodrow Douglass 	PF5301			= 0x4,
68*b497e1a1SWoodrow Douglass 	PF5302			= 0x5,
69*b497e1a1SWoodrow Douglass };
70*b497e1a1SWoodrow Douglass 
71*b497e1a1SWoodrow Douglass #define PF530x_FAM			0x50
72*b497e1a1SWoodrow Douglass #define PF530x_DEVICE_FAM_MASK		GENMASK(7, 4)
73*b497e1a1SWoodrow Douglass #define PF530x_DEVICE_ID_MASK		GENMASK(3, 0)
74*b497e1a1SWoodrow Douglass 
75*b497e1a1SWoodrow Douglass #define PF530x_STATE_MASK		GENMASK(3, 0)
76*b497e1a1SWoodrow Douglass #define PF530x_STATE_RUN		0x07
77*b497e1a1SWoodrow Douglass #define PF530x_STATE_STANDBY	0x08
78*b497e1a1SWoodrow Douglass #define PF530x_STATE_LP_OFF		0x02
79*b497e1a1SWoodrow Douglass 
80*b497e1a1SWoodrow Douglass #define PF530X_OTP_STBY_MODE	GENMASK(3, 2)
81*b497e1a1SWoodrow Douglass #define PF530X_OTP_RUN_MODE		GENMASK(1, 0)
82*b497e1a1SWoodrow Douglass 
83*b497e1a1SWoodrow Douglass #define PF530X_INT_STATUS_OV	BIT(1)
84*b497e1a1SWoodrow Douglass #define PF530X_INT_STATUS_UV	BIT(2)
85*b497e1a1SWoodrow Douglass #define PF530X_INT_STATUS_ILIM	BIT(3)
86*b497e1a1SWoodrow Douglass 
87*b497e1a1SWoodrow Douglass #define SW1_ILIM_S	BIT(0)
88*b497e1a1SWoodrow Douglass #define VMON_UV_S	BIT(1)
89*b497e1a1SWoodrow Douglass #define VMON_OV_S	BIT(2)
90*b497e1a1SWoodrow Douglass #define VIN_OVLO_S	BIT(3)
91*b497e1a1SWoodrow Douglass #define BG_ERR_S	BIT(6)
92*b497e1a1SWoodrow Douglass 
93*b497e1a1SWoodrow Douglass #define THERM_155_S	BIT(3)
94*b497e1a1SWoodrow Douglass #define THERM_140_S	BIT(2)
95*b497e1a1SWoodrow Douglass #define THERM_125_S	BIT(1)
96*b497e1a1SWoodrow Douglass #define THERM_110_S	BIT(0)
97*b497e1a1SWoodrow Douglass 
98*b497e1a1SWoodrow Douglass struct pf530x_chip {
99*b497e1a1SWoodrow Douglass 	struct regmap *regmap;
100*b497e1a1SWoodrow Douglass 	struct device *dev;
101*b497e1a1SWoodrow Douglass };
102*b497e1a1SWoodrow Douglass 
103*b497e1a1SWoodrow Douglass static const struct regmap_config pf530x_regmap_config = {
104*b497e1a1SWoodrow Douglass 	.reg_bits = 8,
105*b497e1a1SWoodrow Douglass 	.val_bits = 8,
106*b497e1a1SWoodrow Douglass 	.max_register = PF530X_OTP_MODE,
107*b497e1a1SWoodrow Douglass 	.cache_type = REGCACHE_MAPLE,
108*b497e1a1SWoodrow Douglass };
109*b497e1a1SWoodrow Douglass 
110*b497e1a1SWoodrow Douglass static int pf530x_get_status(struct regulator_dev *rdev)
111*b497e1a1SWoodrow Douglass {
112*b497e1a1SWoodrow Douglass 	unsigned int state;
113*b497e1a1SWoodrow Douglass 	int ret;
114*b497e1a1SWoodrow Douglass 
115*b497e1a1SWoodrow Douglass 	ret = regmap_read(rdev->regmap, PF530X_INT_SENSE1, &state);
116*b497e1a1SWoodrow Douglass 	if (ret != 0)
117*b497e1a1SWoodrow Douglass 		return ret;
118*b497e1a1SWoodrow Douglass 
119*b497e1a1SWoodrow Douglass 	if ((state & (BG_ERR_S | SW1_ILIM_S | VMON_UV_S | VMON_OV_S | VIN_OVLO_S))
120*b497e1a1SWoodrow Douglass 			!= 0)
121*b497e1a1SWoodrow Douglass 		return REGULATOR_STATUS_ERROR;
122*b497e1a1SWoodrow Douglass 
123*b497e1a1SWoodrow Douglass 	// no errors, check if what non-error state we're in
124*b497e1a1SWoodrow Douglass 	ret = regmap_read(rdev->regmap, PF530X_STATE, &state);
125*b497e1a1SWoodrow Douglass 	if (ret != 0)
126*b497e1a1SWoodrow Douglass 		return ret;
127*b497e1a1SWoodrow Douglass 
128*b497e1a1SWoodrow Douglass 	state &= PF530x_STATE_MASK;
129*b497e1a1SWoodrow Douglass 
130*b497e1a1SWoodrow Douglass 	switch (state) {
131*b497e1a1SWoodrow Douglass 	case PF530x_STATE_RUN:
132*b497e1a1SWoodrow Douglass 		ret = REGULATOR_STATUS_NORMAL;
133*b497e1a1SWoodrow Douglass 		break;
134*b497e1a1SWoodrow Douglass 	case PF530x_STATE_STANDBY:
135*b497e1a1SWoodrow Douglass 		ret = REGULATOR_STATUS_STANDBY;
136*b497e1a1SWoodrow Douglass 		break;
137*b497e1a1SWoodrow Douglass 	case PF530x_STATE_LP_OFF:
138*b497e1a1SWoodrow Douglass 		ret = REGULATOR_STATUS_OFF;
139*b497e1a1SWoodrow Douglass 		break;
140*b497e1a1SWoodrow Douglass 	default:
141*b497e1a1SWoodrow Douglass 		ret = REGULATOR_STATUS_ERROR;
142*b497e1a1SWoodrow Douglass 		break;
143*b497e1a1SWoodrow Douglass 	}
144*b497e1a1SWoodrow Douglass 	return ret;
145*b497e1a1SWoodrow Douglass }
146*b497e1a1SWoodrow Douglass 
147*b497e1a1SWoodrow Douglass static int pf530x_get_error_flags(struct regulator_dev *rdev, unsigned int *flags)
148*b497e1a1SWoodrow Douglass {
149*b497e1a1SWoodrow Douglass 	unsigned int status;
150*b497e1a1SWoodrow Douglass 	int ret;
151*b497e1a1SWoodrow Douglass 
152*b497e1a1SWoodrow Douglass 	ret = regmap_read(rdev->regmap, PF530X_INT_STATUS1, &status);
153*b497e1a1SWoodrow Douglass 
154*b497e1a1SWoodrow Douglass 	if (ret != 0)
155*b497e1a1SWoodrow Douglass 		return ret;
156*b497e1a1SWoodrow Douglass 
157*b497e1a1SWoodrow Douglass 	*flags = 0;
158*b497e1a1SWoodrow Douglass 
159*b497e1a1SWoodrow Douglass 	if (status & PF530X_INT_STATUS_OV)
160*b497e1a1SWoodrow Douglass 		*flags |= REGULATOR_ERROR_OVER_VOLTAGE_WARN;
161*b497e1a1SWoodrow Douglass 
162*b497e1a1SWoodrow Douglass 	if (status & PF530X_INT_STATUS_UV)
163*b497e1a1SWoodrow Douglass 		*flags |= REGULATOR_ERROR_UNDER_VOLTAGE;
164*b497e1a1SWoodrow Douglass 
165*b497e1a1SWoodrow Douglass 	if (status & PF530X_INT_STATUS_ILIM)
166*b497e1a1SWoodrow Douglass 		*flags |= REGULATOR_ERROR_OVER_CURRENT;
167*b497e1a1SWoodrow Douglass 
168*b497e1a1SWoodrow Douglass 	ret = regmap_read(rdev->regmap, PF530X_INT_SENSE2, &status);
169*b497e1a1SWoodrow Douglass 
170*b497e1a1SWoodrow Douglass 	if (ret != 0)
171*b497e1a1SWoodrow Douglass 		return ret;
172*b497e1a1SWoodrow Douglass 
173*b497e1a1SWoodrow Douglass 	if ((status & (THERM_155_S |
174*b497e1a1SWoodrow Douglass 		       THERM_140_S |
175*b497e1a1SWoodrow Douglass 		       THERM_125_S |
176*b497e1a1SWoodrow Douglass 		       THERM_110_S)) != 0)
177*b497e1a1SWoodrow Douglass 		*flags |= REGULATOR_ERROR_OVER_TEMP_WARN;
178*b497e1a1SWoodrow Douglass 
179*b497e1a1SWoodrow Douglass 	return 0;
180*b497e1a1SWoodrow Douglass }
181*b497e1a1SWoodrow Douglass 
182*b497e1a1SWoodrow Douglass static const struct regulator_ops pf530x_regulator_ops = {
183*b497e1a1SWoodrow Douglass 	.enable = regulator_enable_regmap,
184*b497e1a1SWoodrow Douglass 	.disable = regulator_disable_regmap,
185*b497e1a1SWoodrow Douglass 	.is_enabled = regulator_is_enabled_regmap,
186*b497e1a1SWoodrow Douglass 	.map_voltage = regulator_map_voltage_linear_range,
187*b497e1a1SWoodrow Douglass 	.list_voltage = regulator_list_voltage_linear_range,
188*b497e1a1SWoodrow Douglass 	.set_voltage_sel = regulator_set_voltage_sel_regmap,
189*b497e1a1SWoodrow Douglass 	.get_voltage_sel = regulator_get_voltage_sel_regmap,
190*b497e1a1SWoodrow Douglass 	.get_status = pf530x_get_status,
191*b497e1a1SWoodrow Douglass 	.get_error_flags = pf530x_get_error_flags,
192*b497e1a1SWoodrow Douglass 	.set_bypass = regulator_set_bypass_regmap,
193*b497e1a1SWoodrow Douglass 	.get_bypass = regulator_get_bypass_regmap,
194*b497e1a1SWoodrow Douglass };
195*b497e1a1SWoodrow Douglass 
196*b497e1a1SWoodrow Douglass static const struct linear_range vrange = REGULATOR_LINEAR_RANGE(500000, 0, 140, 5000);
197*b497e1a1SWoodrow Douglass 
198*b497e1a1SWoodrow Douglass static const struct regulator_desc pf530x_reg_desc = {
199*b497e1a1SWoodrow Douglass 	.name = "SW1",
200*b497e1a1SWoodrow Douglass 	.ops = &pf530x_regulator_ops,
201*b497e1a1SWoodrow Douglass 	.linear_ranges = &vrange,
202*b497e1a1SWoodrow Douglass 	.n_linear_ranges = 1,
203*b497e1a1SWoodrow Douglass 	.type = REGULATOR_VOLTAGE,
204*b497e1a1SWoodrow Douglass 	.id = 0,
205*b497e1a1SWoodrow Douglass 	.owner = THIS_MODULE,
206*b497e1a1SWoodrow Douglass 	.vsel_reg = PF530X_SW1_VOLT,
207*b497e1a1SWoodrow Douglass 	.vsel_mask = 0xFF,
208*b497e1a1SWoodrow Douglass 	.bypass_reg = PF530X_SW1_CTRL2,
209*b497e1a1SWoodrow Douglass 	.bypass_mask = 0x07,
210*b497e1a1SWoodrow Douglass 	.bypass_val_on = 0x07,
211*b497e1a1SWoodrow Douglass 	.bypass_val_off = 0x00,
212*b497e1a1SWoodrow Douglass 	.enable_reg = PF530X_SW1_CTRL1,
213*b497e1a1SWoodrow Douglass 	.enable_mask = GENMASK(5, 2),
214*b497e1a1SWoodrow Douglass 	.enable_val = GENMASK(5, 2),
215*b497e1a1SWoodrow Douglass 	.disable_val = 0,
216*b497e1a1SWoodrow Douglass };
217*b497e1a1SWoodrow Douglass 
218*b497e1a1SWoodrow Douglass static int pf530x_identify(struct pf530x_chip *chip)
219*b497e1a1SWoodrow Douglass {
220*b497e1a1SWoodrow Douglass 	unsigned int value;
221*b497e1a1SWoodrow Douglass 	u8 dev_fam, dev_id, full_layer_rev, metal_layer_rev, prog_idh, prog_idl, emrev;
222*b497e1a1SWoodrow Douglass 	const char *name = NULL;
223*b497e1a1SWoodrow Douglass 	int ret;
224*b497e1a1SWoodrow Douglass 
225*b497e1a1SWoodrow Douglass 	ret = regmap_read(chip->regmap, PF530X_DEVICEID, &value);
226*b497e1a1SWoodrow Douglass 	if (ret) {
227*b497e1a1SWoodrow Douglass 		dev_err(chip->dev, "failed to read chip family\n");
228*b497e1a1SWoodrow Douglass 		return ret;
229*b497e1a1SWoodrow Douglass 	}
230*b497e1a1SWoodrow Douglass 
231*b497e1a1SWoodrow Douglass 	dev_fam = value & PF530x_DEVICE_FAM_MASK;
232*b497e1a1SWoodrow Douglass 	switch (dev_fam) {
233*b497e1a1SWoodrow Douglass 	case PF530x_FAM:
234*b497e1a1SWoodrow Douglass 		break;
235*b497e1a1SWoodrow Douglass 	default:
236*b497e1a1SWoodrow Douglass 		dev_err(chip->dev,
237*b497e1a1SWoodrow Douglass 			"Chip 0x%x is not from PF530X family\n", dev_fam);
238*b497e1a1SWoodrow Douglass 		return ret;
239*b497e1a1SWoodrow Douglass 	}
240*b497e1a1SWoodrow Douglass 
241*b497e1a1SWoodrow Douglass 	dev_id = value & PF530x_DEVICE_ID_MASK;
242*b497e1a1SWoodrow Douglass 	switch (dev_id) {
243*b497e1a1SWoodrow Douglass 	case PF5300:
244*b497e1a1SWoodrow Douglass 		name = "PF5300";
245*b497e1a1SWoodrow Douglass 		break;
246*b497e1a1SWoodrow Douglass 	case PF5301:
247*b497e1a1SWoodrow Douglass 		name = "PF5301";
248*b497e1a1SWoodrow Douglass 		break;
249*b497e1a1SWoodrow Douglass 	case PF5302:
250*b497e1a1SWoodrow Douglass 		name = "PF5302";
251*b497e1a1SWoodrow Douglass 		break;
252*b497e1a1SWoodrow Douglass 	default:
253*b497e1a1SWoodrow Douglass 		dev_err(chip->dev, "Unknown pf530x device id 0x%x\n", dev_id);
254*b497e1a1SWoodrow Douglass 		return -ENODEV;
255*b497e1a1SWoodrow Douglass 	}
256*b497e1a1SWoodrow Douglass 
257*b497e1a1SWoodrow Douglass 	ret = regmap_read(chip->regmap, PF530X_REV, &value);
258*b497e1a1SWoodrow Douglass 	if (ret) {
259*b497e1a1SWoodrow Douglass 		dev_err(chip->dev, "failed to read chip rev\n");
260*b497e1a1SWoodrow Douglass 		return ret;
261*b497e1a1SWoodrow Douglass 	}
262*b497e1a1SWoodrow Douglass 
263*b497e1a1SWoodrow Douglass 	full_layer_rev = ((value & 0xF0) == 0) ? '0' : ((((value & 0xF0) >> 4) - 1) + 'A');
264*b497e1a1SWoodrow Douglass 	metal_layer_rev = value & 0xF;
265*b497e1a1SWoodrow Douglass 
266*b497e1a1SWoodrow Douglass 	ret = regmap_read(chip->regmap, PF530X_EMREV, &value);
267*b497e1a1SWoodrow Douglass 	if (ret) {
268*b497e1a1SWoodrow Douglass 		dev_err(chip->dev, "failed to read chip emrev register\n");
269*b497e1a1SWoodrow Douglass 		return ret;
270*b497e1a1SWoodrow Douglass 	}
271*b497e1a1SWoodrow Douglass 
272*b497e1a1SWoodrow Douglass 	prog_idh = (value >> 4) + 'A';
273*b497e1a1SWoodrow Douglass 	// prog_idh skips 'O', per page 96 of the datasheet
274*b497e1a1SWoodrow Douglass 	if (prog_idh >= 'O')
275*b497e1a1SWoodrow Douglass 		prog_idh += 1;
276*b497e1a1SWoodrow Douglass 
277*b497e1a1SWoodrow Douglass 	emrev = value & 0x7;
278*b497e1a1SWoodrow Douglass 
279*b497e1a1SWoodrow Douglass 	ret = regmap_read(chip->regmap, PF530X_PROGID, &value);
280*b497e1a1SWoodrow Douglass 	if (ret) {
281*b497e1a1SWoodrow Douglass 		dev_err(chip->dev, "failed to read chip progid register\n");
282*b497e1a1SWoodrow Douglass 		return ret;
283*b497e1a1SWoodrow Douglass 	}
284*b497e1a1SWoodrow Douglass 
285*b497e1a1SWoodrow Douglass 	if (value >= 0x22) {
286*b497e1a1SWoodrow Douglass 		dev_err(chip->dev, "invalid value for progid register\n");
287*b497e1a1SWoodrow Douglass 		return -ENODEV;
288*b497e1a1SWoodrow Douglass 	} else if (value < 10) {
289*b497e1a1SWoodrow Douglass 		prog_idl = value + '0';
290*b497e1a1SWoodrow Douglass 	} else {
291*b497e1a1SWoodrow Douglass 		prog_idl = (value - 10) + 'A';
292*b497e1a1SWoodrow Douglass 		// prog_idh skips 'O', per page 97 of the datasheet
293*b497e1a1SWoodrow Douglass 		if (prog_idl >= 'O')
294*b497e1a1SWoodrow Douglass 			prog_idl += 1;
295*b497e1a1SWoodrow Douglass 	}
296*b497e1a1SWoodrow Douglass 
297*b497e1a1SWoodrow Douglass 	dev_info(chip->dev, "%s Regulator found (Rev %c%d ProgID %c%c EMREV %x).\n",
298*b497e1a1SWoodrow Douglass 		 name, full_layer_rev, metal_layer_rev, prog_idh, prog_idl, emrev);
299*b497e1a1SWoodrow Douglass 
300*b497e1a1SWoodrow Douglass 	return 0;
301*b497e1a1SWoodrow Douglass }
302*b497e1a1SWoodrow Douglass 
303*b497e1a1SWoodrow Douglass static int pf530x_i2c_probe(struct i2c_client *client)
304*b497e1a1SWoodrow Douglass {
305*b497e1a1SWoodrow Douglass 	struct regulator_config config = { NULL, };
306*b497e1a1SWoodrow Douglass 	struct pf530x_chip *chip;
307*b497e1a1SWoodrow Douglass 	int ret;
308*b497e1a1SWoodrow Douglass 	struct regulator_dev *rdev;
309*b497e1a1SWoodrow Douglass 	struct regulator_init_data *init_data;
310*b497e1a1SWoodrow Douglass 
311*b497e1a1SWoodrow Douglass 	chip = devm_kzalloc(&client->dev, sizeof(*chip), GFP_KERNEL);
312*b497e1a1SWoodrow Douglass 	if (!chip)
313*b497e1a1SWoodrow Douglass 		return -ENOMEM;
314*b497e1a1SWoodrow Douglass 
315*b497e1a1SWoodrow Douglass 	i2c_set_clientdata(client, chip);
316*b497e1a1SWoodrow Douglass 	chip->dev = &client->dev;
317*b497e1a1SWoodrow Douglass 
318*b497e1a1SWoodrow Douglass 	chip->regmap = devm_regmap_init_i2c(client, &pf530x_regmap_config);
319*b497e1a1SWoodrow Douglass 	if (IS_ERR(chip->regmap)) {
320*b497e1a1SWoodrow Douglass 		ret = PTR_ERR(chip->regmap);
321*b497e1a1SWoodrow Douglass 		dev_err(&client->dev,
322*b497e1a1SWoodrow Douglass 			"regmap allocation failed with err %d\n", ret);
323*b497e1a1SWoodrow Douglass 		return ret;
324*b497e1a1SWoodrow Douglass 	}
325*b497e1a1SWoodrow Douglass 
326*b497e1a1SWoodrow Douglass 	ret = pf530x_identify(chip);
327*b497e1a1SWoodrow Douglass 	if (ret)
328*b497e1a1SWoodrow Douglass 		return ret;
329*b497e1a1SWoodrow Douglass 
330*b497e1a1SWoodrow Douglass 	init_data = of_get_regulator_init_data(chip->dev, chip->dev->of_node, &pf530x_reg_desc);
331*b497e1a1SWoodrow Douglass 	if (!init_data)
332*b497e1a1SWoodrow Douglass 		return -ENODATA;
333*b497e1a1SWoodrow Douglass 
334*b497e1a1SWoodrow Douglass 	config.dev = chip->dev;
335*b497e1a1SWoodrow Douglass 	config.of_node = chip->dev->of_node;
336*b497e1a1SWoodrow Douglass 	config.regmap = chip->regmap;
337*b497e1a1SWoodrow Douglass 	config.init_data = init_data;
338*b497e1a1SWoodrow Douglass 
339*b497e1a1SWoodrow Douglass 	// the config parameter gets copied, it's ok to pass a pointer on the stack here
340*b497e1a1SWoodrow Douglass 	rdev = devm_regulator_register(&client->dev, &pf530x_reg_desc, &config);
341*b497e1a1SWoodrow Douglass 	if (IS_ERR(rdev)) {
342*b497e1a1SWoodrow Douglass 		dev_err(&client->dev, "failed to register %s regulator\n", pf530x_reg_desc.name);
343*b497e1a1SWoodrow Douglass 		return PTR_ERR(rdev);
344*b497e1a1SWoodrow Douglass 	}
345*b497e1a1SWoodrow Douglass 
346*b497e1a1SWoodrow Douglass 	return 0;
347*b497e1a1SWoodrow Douglass }
348*b497e1a1SWoodrow Douglass 
349*b497e1a1SWoodrow Douglass static const struct of_device_id pf530x_dt_ids[] = {
350*b497e1a1SWoodrow Douglass 	{ .compatible = "nxp,pf5300",},
351*b497e1a1SWoodrow Douglass 	{ }
352*b497e1a1SWoodrow Douglass };
353*b497e1a1SWoodrow Douglass MODULE_DEVICE_TABLE(of, pf530x_dt_ids);
354*b497e1a1SWoodrow Douglass 
355*b497e1a1SWoodrow Douglass static const struct i2c_device_id pf530x_i2c_id[] = {
356*b497e1a1SWoodrow Douglass 	{ "pf5300", 0 },
357*b497e1a1SWoodrow Douglass 	{ "pf5301", 0 },
358*b497e1a1SWoodrow Douglass 	{ "pf5302", 0 },
359*b497e1a1SWoodrow Douglass 	{},
360*b497e1a1SWoodrow Douglass };
361*b497e1a1SWoodrow Douglass MODULE_DEVICE_TABLE(i2c, pf530x_i2c_id);
362*b497e1a1SWoodrow Douglass 
363*b497e1a1SWoodrow Douglass static struct i2c_driver pf530x_regulator_driver = {
364*b497e1a1SWoodrow Douglass 	.id_table = pf530x_i2c_id,
365*b497e1a1SWoodrow Douglass 	.driver = {
366*b497e1a1SWoodrow Douglass 		.name = "pf530x",
367*b497e1a1SWoodrow Douglass 		.of_match_table = pf530x_dt_ids,
368*b497e1a1SWoodrow Douglass 	},
369*b497e1a1SWoodrow Douglass 	.probe = pf530x_i2c_probe,
370*b497e1a1SWoodrow Douglass };
371*b497e1a1SWoodrow Douglass module_i2c_driver(pf530x_regulator_driver);
372*b497e1a1SWoodrow Douglass 
373*b497e1a1SWoodrow Douglass MODULE_AUTHOR("Woodrow Douglass <wdouglass@carnegierobotics.com>");
374*b497e1a1SWoodrow Douglass MODULE_DESCRIPTION("Regulator Driver for NXP's PF5300/PF5301/PF5302 PMIC");
375*b497e1a1SWoodrow Douglass MODULE_LICENSE("GPL");
376