1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * MFD core driver for the X-Powers' Power Management ICs
4  *
5  * AXP20x typically comprises an adaptive USB-Compatible PWM charger, BUCK DC-DC
6  * converters, LDOs, multiple 12-bit ADCs of voltage, current and temperature
7  * as well as configurable GPIOs.
8  *
9  * This file contains the interface independent core functions.
10  *
11  * Copyright (C) 2014 Carlo Caione
12  *
13  * Author: Carlo Caione <carlo@caione.org>
14  */
15 
16 #include <linux/acpi.h>
17 #include <linux/bitops.h>
18 #include <linux/delay.h>
19 #include <linux/err.h>
20 #include <linux/interrupt.h>
21 #include <linux/kernel.h>
22 #include <linux/mfd/axp20x.h>
23 #include <linux/mfd/core.h>
24 #include <linux/module.h>
25 #include <linux/of.h>
26 #include <linux/property.h>
27 #include <linux/reboot.h>
28 #include <linux/regmap.h>
29 #include <linux/regulator/consumer.h>
30 
31 #define AXP20X_OFF	BIT(7)
32 
33 #define AXP806_REG_ADDR_EXT_ADDR_MASTER_MODE	0
34 #define AXP806_REG_ADDR_EXT_ADDR_SLAVE_MODE	BIT(4)
35 
36 static const char * const axp20x_model_names[] = {
37 	[AXP152_ID] = "AXP152",
38 	[AXP192_ID] = "AXP192",
39 	[AXP202_ID] = "AXP202",
40 	[AXP209_ID] = "AXP209",
41 	[AXP221_ID] = "AXP221",
42 	[AXP223_ID] = "AXP223",
43 	[AXP288_ID] = "AXP288",
44 	[AXP313A_ID] = "AXP313a",
45 	[AXP323_ID] = "AXP323",
46 	[AXP717_ID] = "AXP717",
47 	[AXP803_ID] = "AXP803",
48 	[AXP806_ID] = "AXP806",
49 	[AXP809_ID] = "AXP809",
50 	[AXP813_ID] = "AXP813",
51 	[AXP15060_ID] = "AXP15060",
52 };
53 
54 static const struct regmap_range axp152_writeable_ranges[] = {
55 	regmap_reg_range(AXP152_LDO3456_DC1234_CTRL, AXP152_IRQ3_STATE),
56 	regmap_reg_range(AXP152_DCDC_MODE, AXP152_PWM1_DUTY_CYCLE),
57 };
58 
59 static const struct regmap_range axp152_volatile_ranges[] = {
60 	regmap_reg_range(AXP152_PWR_OP_MODE, AXP152_PWR_OP_MODE),
61 	regmap_reg_range(AXP152_IRQ1_EN, AXP152_IRQ3_STATE),
62 	regmap_reg_range(AXP152_GPIO_INPUT, AXP152_GPIO_INPUT),
63 };
64 
65 static const struct regmap_access_table axp152_writeable_table = {
66 	.yes_ranges	= axp152_writeable_ranges,
67 	.n_yes_ranges	= ARRAY_SIZE(axp152_writeable_ranges),
68 };
69 
70 static const struct regmap_access_table axp152_volatile_table = {
71 	.yes_ranges	= axp152_volatile_ranges,
72 	.n_yes_ranges	= ARRAY_SIZE(axp152_volatile_ranges),
73 };
74 
75 static const struct regmap_range axp20x_writeable_ranges[] = {
76 	regmap_reg_range(AXP20X_DATACACHE(0), AXP20X_IRQ5_STATE),
77 	regmap_reg_range(AXP20X_CHRG_CTRL1, AXP20X_CHRG_CTRL2),
78 	regmap_reg_range(AXP20X_DCDC_MODE, AXP20X_FG_RES),
79 	regmap_reg_range(AXP20X_RDC_H, AXP20X_OCV(AXP20X_OCV_MAX)),
80 };
81 
82 static const struct regmap_range axp20x_volatile_ranges[] = {
83 	regmap_reg_range(AXP20X_PWR_INPUT_STATUS, AXP20X_USB_OTG_STATUS),
84 	regmap_reg_range(AXP20X_CHRG_CTRL1, AXP20X_CHRG_CTRL2),
85 	regmap_reg_range(AXP20X_IRQ1_EN, AXP20X_IRQ5_STATE),
86 	regmap_reg_range(AXP20X_ACIN_V_ADC_H, AXP20X_IPSOUT_V_HIGH_L),
87 	regmap_reg_range(AXP20X_GPIO20_SS, AXP20X_GPIO3_CTRL),
88 	regmap_reg_range(AXP20X_FG_RES, AXP20X_RDC_L),
89 };
90 
91 static const struct regmap_access_table axp20x_writeable_table = {
92 	.yes_ranges	= axp20x_writeable_ranges,
93 	.n_yes_ranges	= ARRAY_SIZE(axp20x_writeable_ranges),
94 };
95 
96 static const struct regmap_access_table axp20x_volatile_table = {
97 	.yes_ranges	= axp20x_volatile_ranges,
98 	.n_yes_ranges	= ARRAY_SIZE(axp20x_volatile_ranges),
99 };
100 
101 static const struct regmap_range axp192_writeable_ranges[] = {
102 	regmap_reg_range(AXP192_DATACACHE(0), AXP192_DATACACHE(5)),
103 	regmap_reg_range(AXP192_PWR_OUT_CTRL, AXP192_IRQ5_STATE),
104 	regmap_reg_range(AXP20X_DCDC_MODE, AXP192_N_RSTO_CTRL),
105 	regmap_reg_range(AXP20X_CC_CTRL, AXP20X_CC_CTRL),
106 };
107 
108 static const struct regmap_range axp192_volatile_ranges[] = {
109 	regmap_reg_range(AXP20X_PWR_INPUT_STATUS, AXP192_USB_OTG_STATUS),
110 	regmap_reg_range(AXP192_IRQ1_STATE, AXP192_IRQ4_STATE),
111 	regmap_reg_range(AXP192_IRQ5_STATE, AXP192_IRQ5_STATE),
112 	regmap_reg_range(AXP20X_ACIN_V_ADC_H, AXP20X_IPSOUT_V_HIGH_L),
113 	regmap_reg_range(AXP20X_TIMER_CTRL, AXP20X_TIMER_CTRL),
114 	regmap_reg_range(AXP192_GPIO2_0_STATE, AXP192_GPIO2_0_STATE),
115 	regmap_reg_range(AXP192_GPIO4_3_STATE, AXP192_GPIO4_3_STATE),
116 	regmap_reg_range(AXP192_N_RSTO_CTRL, AXP192_N_RSTO_CTRL),
117 	regmap_reg_range(AXP20X_CHRG_CC_31_24, AXP20X_CC_CTRL),
118 };
119 
120 static const struct regmap_access_table axp192_writeable_table = {
121 	.yes_ranges	= axp192_writeable_ranges,
122 	.n_yes_ranges	= ARRAY_SIZE(axp192_writeable_ranges),
123 };
124 
125 static const struct regmap_access_table axp192_volatile_table = {
126 	.yes_ranges	= axp192_volatile_ranges,
127 	.n_yes_ranges	= ARRAY_SIZE(axp192_volatile_ranges),
128 };
129 
130 /* AXP22x ranges are shared with the AXP809, as they cover the same range */
131 static const struct regmap_range axp22x_writeable_ranges[] = {
132 	regmap_reg_range(AXP20X_DATACACHE(0), AXP20X_IRQ5_STATE),
133 	regmap_reg_range(AXP20X_CHRG_CTRL1, AXP22X_CHRG_CTRL3),
134 	regmap_reg_range(AXP20X_DCDC_MODE, AXP22X_BATLOW_THRES1),
135 };
136 
137 static const struct regmap_range axp22x_volatile_ranges[] = {
138 	regmap_reg_range(AXP20X_PWR_INPUT_STATUS, AXP20X_PWR_OP_MODE),
139 	regmap_reg_range(AXP20X_IRQ1_EN, AXP20X_IRQ5_STATE),
140 	regmap_reg_range(AXP22X_GPIO_STATE, AXP22X_GPIO_STATE),
141 	regmap_reg_range(AXP22X_PMIC_TEMP_H, AXP20X_IPSOUT_V_HIGH_L),
142 	regmap_reg_range(AXP20X_FG_RES, AXP20X_FG_RES),
143 };
144 
145 static const struct regmap_access_table axp22x_writeable_table = {
146 	.yes_ranges	= axp22x_writeable_ranges,
147 	.n_yes_ranges	= ARRAY_SIZE(axp22x_writeable_ranges),
148 };
149 
150 static const struct regmap_access_table axp22x_volatile_table = {
151 	.yes_ranges	= axp22x_volatile_ranges,
152 	.n_yes_ranges	= ARRAY_SIZE(axp22x_volatile_ranges),
153 };
154 
155 /* AXP288 ranges are shared with the AXP803, as they cover the same range */
156 static const struct regmap_range axp288_writeable_ranges[] = {
157 	regmap_reg_range(AXP288_POWER_REASON, AXP288_POWER_REASON),
158 	regmap_reg_range(AXP20X_DATACACHE(0), AXP20X_IRQ6_STATE),
159 	regmap_reg_range(AXP20X_DCDC_MODE, AXP288_FG_TUNE5),
160 };
161 
162 static const struct regmap_range axp288_volatile_ranges[] = {
163 	regmap_reg_range(AXP20X_PWR_INPUT_STATUS, AXP288_POWER_REASON),
164 	regmap_reg_range(AXP22X_PWR_OUT_CTRL1, AXP22X_ALDO3_V_OUT),
165 	regmap_reg_range(AXP288_BC_GLOBAL, AXP288_BC_GLOBAL),
166 	regmap_reg_range(AXP288_BC_DET_STAT, AXP20X_VBUS_IPSOUT_MGMT),
167 	regmap_reg_range(AXP20X_CHRG_BAK_CTRL, AXP20X_CHRG_BAK_CTRL),
168 	regmap_reg_range(AXP20X_IRQ1_EN, AXP20X_IPSOUT_V_HIGH_L),
169 	regmap_reg_range(AXP20X_TIMER_CTRL, AXP20X_TIMER_CTRL),
170 	regmap_reg_range(AXP20X_GPIO1_CTRL, AXP22X_GPIO_STATE),
171 	regmap_reg_range(AXP288_RT_BATT_V_H, AXP288_RT_BATT_V_L),
172 	regmap_reg_range(AXP20X_FG_RES, AXP288_FG_CC_CAP_REG),
173 };
174 
175 static const struct regmap_access_table axp288_writeable_table = {
176 	.yes_ranges	= axp288_writeable_ranges,
177 	.n_yes_ranges	= ARRAY_SIZE(axp288_writeable_ranges),
178 };
179 
180 static const struct regmap_access_table axp288_volatile_table = {
181 	.yes_ranges	= axp288_volatile_ranges,
182 	.n_yes_ranges	= ARRAY_SIZE(axp288_volatile_ranges),
183 };
184 
185 static const struct regmap_range axp806_writeable_ranges[] = {
186 	regmap_reg_range(AXP20X_DATACACHE(0), AXP20X_DATACACHE(3)),
187 	regmap_reg_range(AXP806_PWR_OUT_CTRL1, AXP806_CLDO3_V_CTRL),
188 	regmap_reg_range(AXP20X_IRQ1_EN, AXP20X_IRQ2_EN),
189 	regmap_reg_range(AXP20X_IRQ1_STATE, AXP20X_IRQ2_STATE),
190 	regmap_reg_range(AXP806_REG_ADDR_EXT, AXP806_REG_ADDR_EXT),
191 };
192 
193 static const struct regmap_range axp313a_writeable_ranges[] = {
194 	regmap_reg_range(AXP313A_ON_INDICATE, AXP313A_IRQ_STATE),
195 };
196 
197 static const struct regmap_range axp323_writeable_ranges[] = {
198 	regmap_reg_range(AXP313A_ON_INDICATE, AXP323_DCDC_MODE_CTRL2),
199 };
200 
201 static const struct regmap_range axp313a_volatile_ranges[] = {
202 	regmap_reg_range(AXP313A_SHUTDOWN_CTRL, AXP313A_SHUTDOWN_CTRL),
203 	regmap_reg_range(AXP313A_IRQ_STATE, AXP313A_IRQ_STATE),
204 };
205 
206 static const struct regmap_access_table axp313a_writeable_table = {
207 	.yes_ranges = axp313a_writeable_ranges,
208 	.n_yes_ranges = ARRAY_SIZE(axp313a_writeable_ranges),
209 };
210 
211 static const struct regmap_access_table axp323_writeable_table = {
212 	.yes_ranges = axp323_writeable_ranges,
213 	.n_yes_ranges = ARRAY_SIZE(axp323_writeable_ranges),
214 };
215 
216 static const struct regmap_access_table axp313a_volatile_table = {
217 	.yes_ranges = axp313a_volatile_ranges,
218 	.n_yes_ranges = ARRAY_SIZE(axp313a_volatile_ranges),
219 };
220 
221 static const struct regmap_range axp717_writeable_ranges[] = {
222 	regmap_reg_range(AXP717_PMU_FAULT, AXP717_MODULE_EN_CONTROL_1),
223 	regmap_reg_range(AXP717_MIN_SYS_V_CONTROL, AXP717_BOOST_CONTROL),
224 	regmap_reg_range(AXP717_VSYS_V_POWEROFF, AXP717_VSYS_V_POWEROFF),
225 	regmap_reg_range(AXP717_IRQ0_EN, AXP717_IRQ4_EN),
226 	regmap_reg_range(AXP717_IRQ0_STATE, AXP717_IRQ4_STATE),
227 	regmap_reg_range(AXP717_TS_PIN_CFG, AXP717_TS_PIN_CFG),
228 	regmap_reg_range(AXP717_ICC_CHG_SET, AXP717_CV_CHG_SET),
229 	regmap_reg_range(AXP717_DCDC_OUTPUT_CONTROL, AXP717_CPUSLDO_CONTROL),
230 	regmap_reg_range(AXP717_ADC_CH_EN_CONTROL, AXP717_ADC_CH_EN_CONTROL),
231 	regmap_reg_range(AXP717_ADC_DATA_SEL, AXP717_ADC_DATA_SEL),
232 };
233 
234 static const struct regmap_range axp717_volatile_ranges[] = {
235 	regmap_reg_range(AXP717_ON_INDICATE, AXP717_PMU_FAULT),
236 	regmap_reg_range(AXP717_IRQ0_STATE, AXP717_IRQ4_STATE),
237 	regmap_reg_range(AXP717_BATT_PERCENT_DATA, AXP717_BATT_PERCENT_DATA),
238 	regmap_reg_range(AXP717_BATT_V_H, AXP717_BATT_CHRG_I_L),
239 	regmap_reg_range(AXP717_ADC_DATA_H, AXP717_ADC_DATA_L),
240 };
241 
242 static const struct regmap_access_table axp717_writeable_table = {
243 	.yes_ranges = axp717_writeable_ranges,
244 	.n_yes_ranges = ARRAY_SIZE(axp717_writeable_ranges),
245 };
246 
247 static const struct regmap_access_table axp717_volatile_table = {
248 	.yes_ranges = axp717_volatile_ranges,
249 	.n_yes_ranges = ARRAY_SIZE(axp717_volatile_ranges),
250 };
251 
252 static const struct regmap_range axp806_volatile_ranges[] = {
253 	regmap_reg_range(AXP20X_IRQ1_STATE, AXP20X_IRQ2_STATE),
254 };
255 
256 static const struct regmap_access_table axp806_writeable_table = {
257 	.yes_ranges	= axp806_writeable_ranges,
258 	.n_yes_ranges	= ARRAY_SIZE(axp806_writeable_ranges),
259 };
260 
261 static const struct regmap_access_table axp806_volatile_table = {
262 	.yes_ranges	= axp806_volatile_ranges,
263 	.n_yes_ranges	= ARRAY_SIZE(axp806_volatile_ranges),
264 };
265 
266 static const struct regmap_range axp15060_writeable_ranges[] = {
267 	regmap_reg_range(AXP15060_PWR_OUT_CTRL1, AXP15060_DCDC_MODE_CTRL2),
268 	regmap_reg_range(AXP15060_OUTPUT_MONITOR_DISCHARGE, AXP15060_CPUSLDO_V_CTRL),
269 	regmap_reg_range(AXP15060_PWR_WAKEUP_CTRL, AXP15060_PWR_DISABLE_DOWN_SEQ),
270 	regmap_reg_range(AXP15060_PEK_KEY, AXP15060_PEK_KEY),
271 	regmap_reg_range(AXP15060_IRQ1_EN, AXP15060_IRQ2_EN),
272 	regmap_reg_range(AXP15060_IRQ1_STATE, AXP15060_IRQ2_STATE),
273 };
274 
275 static const struct regmap_range axp15060_volatile_ranges[] = {
276 	regmap_reg_range(AXP15060_STARTUP_SRC, AXP15060_STARTUP_SRC),
277 	regmap_reg_range(AXP15060_PWR_WAKEUP_CTRL, AXP15060_PWR_DISABLE_DOWN_SEQ),
278 	regmap_reg_range(AXP15060_IRQ1_STATE, AXP15060_IRQ2_STATE),
279 };
280 
281 static const struct regmap_access_table axp15060_writeable_table = {
282 	.yes_ranges	= axp15060_writeable_ranges,
283 	.n_yes_ranges	= ARRAY_SIZE(axp15060_writeable_ranges),
284 };
285 
286 static const struct regmap_access_table axp15060_volatile_table = {
287 	.yes_ranges	= axp15060_volatile_ranges,
288 	.n_yes_ranges	= ARRAY_SIZE(axp15060_volatile_ranges),
289 };
290 
291 static const struct resource axp152_pek_resources[] = {
292 	DEFINE_RES_IRQ_NAMED(AXP152_IRQ_PEK_RIS_EDGE, "PEK_DBR"),
293 	DEFINE_RES_IRQ_NAMED(AXP152_IRQ_PEK_FAL_EDGE, "PEK_DBF"),
294 };
295 
296 static const struct resource axp192_ac_power_supply_resources[] = {
297 	DEFINE_RES_IRQ_NAMED(AXP192_IRQ_ACIN_PLUGIN, "ACIN_PLUGIN"),
298 	DEFINE_RES_IRQ_NAMED(AXP192_IRQ_ACIN_REMOVAL, "ACIN_REMOVAL"),
299 	DEFINE_RES_IRQ_NAMED(AXP192_IRQ_ACIN_OVER_V, "ACIN_OVER_V"),
300 };
301 
302 static const struct resource axp192_usb_power_supply_resources[] = {
303 	DEFINE_RES_IRQ_NAMED(AXP192_IRQ_VBUS_PLUGIN, "VBUS_PLUGIN"),
304 	DEFINE_RES_IRQ_NAMED(AXP192_IRQ_VBUS_REMOVAL, "VBUS_REMOVAL"),
305 	DEFINE_RES_IRQ_NAMED(AXP192_IRQ_VBUS_VALID, "VBUS_VALID"),
306 	DEFINE_RES_IRQ_NAMED(AXP192_IRQ_VBUS_NOT_VALID, "VBUS_NOT_VALID"),
307 };
308 
309 static const struct resource axp20x_ac_power_supply_resources[] = {
310 	DEFINE_RES_IRQ_NAMED(AXP20X_IRQ_ACIN_PLUGIN, "ACIN_PLUGIN"),
311 	DEFINE_RES_IRQ_NAMED(AXP20X_IRQ_ACIN_REMOVAL, "ACIN_REMOVAL"),
312 	DEFINE_RES_IRQ_NAMED(AXP20X_IRQ_ACIN_OVER_V, "ACIN_OVER_V"),
313 };
314 
315 static const struct resource axp20x_pek_resources[] = {
316 	DEFINE_RES_IRQ_NAMED(AXP20X_IRQ_PEK_RIS_EDGE, "PEK_DBR"),
317 	DEFINE_RES_IRQ_NAMED(AXP20X_IRQ_PEK_FAL_EDGE, "PEK_DBF"),
318 };
319 
320 static const struct resource axp20x_usb_power_supply_resources[] = {
321 	DEFINE_RES_IRQ_NAMED(AXP20X_IRQ_VBUS_PLUGIN, "VBUS_PLUGIN"),
322 	DEFINE_RES_IRQ_NAMED(AXP20X_IRQ_VBUS_REMOVAL, "VBUS_REMOVAL"),
323 	DEFINE_RES_IRQ_NAMED(AXP20X_IRQ_VBUS_VALID, "VBUS_VALID"),
324 	DEFINE_RES_IRQ_NAMED(AXP20X_IRQ_VBUS_NOT_VALID, "VBUS_NOT_VALID"),
325 };
326 
327 static const struct resource axp22x_usb_power_supply_resources[] = {
328 	DEFINE_RES_IRQ_NAMED(AXP22X_IRQ_VBUS_PLUGIN, "VBUS_PLUGIN"),
329 	DEFINE_RES_IRQ_NAMED(AXP22X_IRQ_VBUS_REMOVAL, "VBUS_REMOVAL"),
330 };
331 
332 static const struct resource axp717_usb_power_supply_resources[] = {
333 	DEFINE_RES_IRQ_NAMED(AXP717_IRQ_VBUS_OVER_V, "VBUS_OVER_V"),
334 	DEFINE_RES_IRQ_NAMED(AXP717_IRQ_VBUS_PLUGIN, "VBUS_PLUGIN"),
335 	DEFINE_RES_IRQ_NAMED(AXP717_IRQ_VBUS_REMOVAL, "VBUS_REMOVAL"),
336 };
337 
338 /* AXP803 and AXP813/AXP818 share the same interrupts */
339 static const struct resource axp803_usb_power_supply_resources[] = {
340 	DEFINE_RES_IRQ_NAMED(AXP803_IRQ_VBUS_PLUGIN, "VBUS_PLUGIN"),
341 	DEFINE_RES_IRQ_NAMED(AXP803_IRQ_VBUS_REMOVAL, "VBUS_REMOVAL"),
342 };
343 
344 static const struct resource axp22x_pek_resources[] = {
345 	DEFINE_RES_IRQ_NAMED(AXP22X_IRQ_PEK_RIS_EDGE, "PEK_DBR"),
346 	DEFINE_RES_IRQ_NAMED(AXP22X_IRQ_PEK_FAL_EDGE, "PEK_DBF"),
347 };
348 
349 static const struct resource axp288_power_button_resources[] = {
350 	DEFINE_RES_IRQ_NAMED(AXP288_IRQ_POKP, "PEK_DBR"),
351 	DEFINE_RES_IRQ_NAMED(AXP288_IRQ_POKN, "PEK_DBF"),
352 };
353 
354 static const struct resource axp288_fuel_gauge_resources[] = {
355 	DEFINE_RES_IRQ(AXP288_IRQ_QWBTU),
356 	DEFINE_RES_IRQ(AXP288_IRQ_WBTU),
357 	DEFINE_RES_IRQ(AXP288_IRQ_QWBTO),
358 	DEFINE_RES_IRQ(AXP288_IRQ_WBTO),
359 	DEFINE_RES_IRQ(AXP288_IRQ_WL2),
360 	DEFINE_RES_IRQ(AXP288_IRQ_WL1),
361 };
362 
363 static const struct resource axp313a_pek_resources[] = {
364 	DEFINE_RES_IRQ_NAMED(AXP313A_IRQ_PEK_RIS_EDGE, "PEK_DBR"),
365 	DEFINE_RES_IRQ_NAMED(AXP313A_IRQ_PEK_FAL_EDGE, "PEK_DBF"),
366 };
367 
368 static const struct resource axp717_pek_resources[] = {
369 	DEFINE_RES_IRQ_NAMED(AXP717_IRQ_PEK_RIS_EDGE, "PEK_DBR"),
370 	DEFINE_RES_IRQ_NAMED(AXP717_IRQ_PEK_FAL_EDGE, "PEK_DBF"),
371 };
372 
373 static const struct resource axp803_pek_resources[] = {
374 	DEFINE_RES_IRQ_NAMED(AXP803_IRQ_PEK_RIS_EDGE, "PEK_DBR"),
375 	DEFINE_RES_IRQ_NAMED(AXP803_IRQ_PEK_FAL_EDGE, "PEK_DBF"),
376 };
377 
378 static const struct resource axp806_pek_resources[] = {
379 	DEFINE_RES_IRQ_NAMED(AXP806_IRQ_POK_RISE, "PEK_DBR"),
380 	DEFINE_RES_IRQ_NAMED(AXP806_IRQ_POK_FALL, "PEK_DBF"),
381 };
382 
383 static const struct resource axp809_pek_resources[] = {
384 	DEFINE_RES_IRQ_NAMED(AXP809_IRQ_PEK_RIS_EDGE, "PEK_DBR"),
385 	DEFINE_RES_IRQ_NAMED(AXP809_IRQ_PEK_FAL_EDGE, "PEK_DBF"),
386 };
387 
388 static const struct resource axp15060_pek_resources[] = {
389 	DEFINE_RES_IRQ_NAMED(AXP15060_IRQ_PEK_RIS_EDGE, "PEK_DBR"),
390 	DEFINE_RES_IRQ_NAMED(AXP15060_IRQ_PEK_FAL_EDGE, "PEK_DBF"),
391 };
392 
393 static const struct regmap_config axp152_regmap_config = {
394 	.reg_bits	= 8,
395 	.val_bits	= 8,
396 	.wr_table	= &axp152_writeable_table,
397 	.volatile_table	= &axp152_volatile_table,
398 	.max_register	= AXP152_PWM1_DUTY_CYCLE,
399 	.cache_type	= REGCACHE_MAPLE,
400 };
401 
402 static const struct regmap_config axp192_regmap_config = {
403 	.reg_bits	= 8,
404 	.val_bits	= 8,
405 	.wr_table	= &axp192_writeable_table,
406 	.volatile_table	= &axp192_volatile_table,
407 	.max_register	= AXP20X_CC_CTRL,
408 	.cache_type	= REGCACHE_MAPLE,
409 };
410 
411 static const struct regmap_config axp20x_regmap_config = {
412 	.reg_bits	= 8,
413 	.val_bits	= 8,
414 	.wr_table	= &axp20x_writeable_table,
415 	.volatile_table	= &axp20x_volatile_table,
416 	.max_register	= AXP20X_OCV(AXP20X_OCV_MAX),
417 	.cache_type	= REGCACHE_MAPLE,
418 };
419 
420 static const struct regmap_config axp22x_regmap_config = {
421 	.reg_bits	= 8,
422 	.val_bits	= 8,
423 	.wr_table	= &axp22x_writeable_table,
424 	.volatile_table	= &axp22x_volatile_table,
425 	.max_register	= AXP22X_BATLOW_THRES1,
426 	.cache_type	= REGCACHE_MAPLE,
427 };
428 
429 static const struct regmap_config axp288_regmap_config = {
430 	.reg_bits	= 8,
431 	.val_bits	= 8,
432 	.wr_table	= &axp288_writeable_table,
433 	.volatile_table	= &axp288_volatile_table,
434 	.max_register	= AXP288_FG_TUNE5,
435 	.cache_type	= REGCACHE_MAPLE,
436 };
437 
438 static const struct regmap_config axp313a_regmap_config = {
439 	.reg_bits = 8,
440 	.val_bits = 8,
441 	.wr_table = &axp313a_writeable_table,
442 	.volatile_table = &axp313a_volatile_table,
443 	.max_register = AXP313A_IRQ_STATE,
444 	.cache_type = REGCACHE_MAPLE,
445 };
446 
447 static const struct regmap_config axp323_regmap_config = {
448 	.reg_bits = 8,
449 	.val_bits = 8,
450 	.wr_table = &axp323_writeable_table,
451 	.volatile_table = &axp313a_volatile_table,
452 	.max_register = AXP323_DCDC_MODE_CTRL2,
453 	.cache_type = REGCACHE_MAPLE,
454 };
455 
456 static const struct regmap_config axp717_regmap_config = {
457 	.reg_bits = 8,
458 	.val_bits = 8,
459 	.wr_table = &axp717_writeable_table,
460 	.volatile_table = &axp717_volatile_table,
461 	.max_register = AXP717_ADC_DATA_L,
462 	.cache_type = REGCACHE_MAPLE,
463 };
464 
465 static const struct regmap_config axp806_regmap_config = {
466 	.reg_bits	= 8,
467 	.val_bits	= 8,
468 	.wr_table	= &axp806_writeable_table,
469 	.volatile_table	= &axp806_volatile_table,
470 	.max_register	= AXP806_REG_ADDR_EXT,
471 	.cache_type	= REGCACHE_MAPLE,
472 };
473 
474 static const struct regmap_config axp15060_regmap_config = {
475 	.reg_bits	= 8,
476 	.val_bits	= 8,
477 	.wr_table	= &axp15060_writeable_table,
478 	.volatile_table	= &axp15060_volatile_table,
479 	.max_register	= AXP15060_IRQ2_STATE,
480 	.cache_type	= REGCACHE_MAPLE,
481 };
482 
483 #define INIT_REGMAP_IRQ(_variant, _irq, _off, _mask)			\
484 	[_variant##_IRQ_##_irq] = { .reg_offset = (_off), .mask = BIT(_mask) }
485 
486 static const struct regmap_irq axp152_regmap_irqs[] = {
487 	INIT_REGMAP_IRQ(AXP152, LDO0IN_CONNECT,		0, 6),
488 	INIT_REGMAP_IRQ(AXP152, LDO0IN_REMOVAL,		0, 5),
489 	INIT_REGMAP_IRQ(AXP152, ALDO0IN_CONNECT,	0, 3),
490 	INIT_REGMAP_IRQ(AXP152, ALDO0IN_REMOVAL,	0, 2),
491 	INIT_REGMAP_IRQ(AXP152, DCDC1_V_LOW,		1, 5),
492 	INIT_REGMAP_IRQ(AXP152, DCDC2_V_LOW,		1, 4),
493 	INIT_REGMAP_IRQ(AXP152, DCDC3_V_LOW,		1, 3),
494 	INIT_REGMAP_IRQ(AXP152, DCDC4_V_LOW,		1, 2),
495 	INIT_REGMAP_IRQ(AXP152, PEK_SHORT,		1, 1),
496 	INIT_REGMAP_IRQ(AXP152, PEK_LONG,		1, 0),
497 	INIT_REGMAP_IRQ(AXP152, TIMER,			2, 7),
498 	INIT_REGMAP_IRQ(AXP152, PEK_RIS_EDGE,		2, 6),
499 	INIT_REGMAP_IRQ(AXP152, PEK_FAL_EDGE,		2, 5),
500 	INIT_REGMAP_IRQ(AXP152, GPIO3_INPUT,		2, 3),
501 	INIT_REGMAP_IRQ(AXP152, GPIO2_INPUT,		2, 2),
502 	INIT_REGMAP_IRQ(AXP152, GPIO1_INPUT,		2, 1),
503 	INIT_REGMAP_IRQ(AXP152, GPIO0_INPUT,		2, 0),
504 };
505 
506 static const struct regmap_irq axp192_regmap_irqs[] = {
507 	INIT_REGMAP_IRQ(AXP192, ACIN_OVER_V,		0, 7),
508 	INIT_REGMAP_IRQ(AXP192, ACIN_PLUGIN,		0, 6),
509 	INIT_REGMAP_IRQ(AXP192, ACIN_REMOVAL,		0, 5),
510 	INIT_REGMAP_IRQ(AXP192, VBUS_OVER_V,		0, 4),
511 	INIT_REGMAP_IRQ(AXP192, VBUS_PLUGIN,		0, 3),
512 	INIT_REGMAP_IRQ(AXP192, VBUS_REMOVAL,		0, 2),
513 	INIT_REGMAP_IRQ(AXP192, VBUS_V_LOW,		0, 1),
514 	INIT_REGMAP_IRQ(AXP192, BATT_PLUGIN,		1, 7),
515 	INIT_REGMAP_IRQ(AXP192, BATT_REMOVAL,	        1, 6),
516 	INIT_REGMAP_IRQ(AXP192, BATT_ENT_ACT_MODE,	1, 5),
517 	INIT_REGMAP_IRQ(AXP192, BATT_EXIT_ACT_MODE,	1, 4),
518 	INIT_REGMAP_IRQ(AXP192, CHARG,		        1, 3),
519 	INIT_REGMAP_IRQ(AXP192, CHARG_DONE,		1, 2),
520 	INIT_REGMAP_IRQ(AXP192, BATT_TEMP_HIGH,	        1, 1),
521 	INIT_REGMAP_IRQ(AXP192, BATT_TEMP_LOW,	        1, 0),
522 	INIT_REGMAP_IRQ(AXP192, DIE_TEMP_HIGH,	        2, 7),
523 	INIT_REGMAP_IRQ(AXP192, CHARG_I_LOW,		2, 6),
524 	INIT_REGMAP_IRQ(AXP192, DCDC1_V_LONG,	        2, 5),
525 	INIT_REGMAP_IRQ(AXP192, DCDC2_V_LONG,	        2, 4),
526 	INIT_REGMAP_IRQ(AXP192, DCDC3_V_LONG,	        2, 3),
527 	INIT_REGMAP_IRQ(AXP192, PEK_SHORT,		2, 1),
528 	INIT_REGMAP_IRQ(AXP192, PEK_LONG,		2, 0),
529 	INIT_REGMAP_IRQ(AXP192, N_OE_PWR_ON,		3, 7),
530 	INIT_REGMAP_IRQ(AXP192, N_OE_PWR_OFF,	        3, 6),
531 	INIT_REGMAP_IRQ(AXP192, VBUS_VALID,		3, 5),
532 	INIT_REGMAP_IRQ(AXP192, VBUS_NOT_VALID,	        3, 4),
533 	INIT_REGMAP_IRQ(AXP192, VBUS_SESS_VALID,	3, 3),
534 	INIT_REGMAP_IRQ(AXP192, VBUS_SESS_END,	        3, 2),
535 	INIT_REGMAP_IRQ(AXP192, LOW_PWR_LVL,	        3, 0),
536 	INIT_REGMAP_IRQ(AXP192, TIMER,			4, 7),
537 	INIT_REGMAP_IRQ(AXP192, GPIO2_INPUT,		4, 2),
538 	INIT_REGMAP_IRQ(AXP192, GPIO1_INPUT,		4, 1),
539 	INIT_REGMAP_IRQ(AXP192, GPIO0_INPUT,		4, 0),
540 };
541 
542 static const struct regmap_irq axp20x_regmap_irqs[] = {
543 	INIT_REGMAP_IRQ(AXP20X, ACIN_OVER_V,		0, 7),
544 	INIT_REGMAP_IRQ(AXP20X, ACIN_PLUGIN,		0, 6),
545 	INIT_REGMAP_IRQ(AXP20X, ACIN_REMOVAL,	        0, 5),
546 	INIT_REGMAP_IRQ(AXP20X, VBUS_OVER_V,		0, 4),
547 	INIT_REGMAP_IRQ(AXP20X, VBUS_PLUGIN,		0, 3),
548 	INIT_REGMAP_IRQ(AXP20X, VBUS_REMOVAL,	        0, 2),
549 	INIT_REGMAP_IRQ(AXP20X, VBUS_V_LOW,		0, 1),
550 	INIT_REGMAP_IRQ(AXP20X, BATT_PLUGIN,		1, 7),
551 	INIT_REGMAP_IRQ(AXP20X, BATT_REMOVAL,	        1, 6),
552 	INIT_REGMAP_IRQ(AXP20X, BATT_ENT_ACT_MODE,	1, 5),
553 	INIT_REGMAP_IRQ(AXP20X, BATT_EXIT_ACT_MODE,	1, 4),
554 	INIT_REGMAP_IRQ(AXP20X, CHARG,		        1, 3),
555 	INIT_REGMAP_IRQ(AXP20X, CHARG_DONE,		1, 2),
556 	INIT_REGMAP_IRQ(AXP20X, BATT_TEMP_HIGH,	        1, 1),
557 	INIT_REGMAP_IRQ(AXP20X, BATT_TEMP_LOW,	        1, 0),
558 	INIT_REGMAP_IRQ(AXP20X, DIE_TEMP_HIGH,	        2, 7),
559 	INIT_REGMAP_IRQ(AXP20X, CHARG_I_LOW,		2, 6),
560 	INIT_REGMAP_IRQ(AXP20X, DCDC1_V_LONG,	        2, 5),
561 	INIT_REGMAP_IRQ(AXP20X, DCDC2_V_LONG,	        2, 4),
562 	INIT_REGMAP_IRQ(AXP20X, DCDC3_V_LONG,	        2, 3),
563 	INIT_REGMAP_IRQ(AXP20X, PEK_SHORT,		2, 1),
564 	INIT_REGMAP_IRQ(AXP20X, PEK_LONG,		2, 0),
565 	INIT_REGMAP_IRQ(AXP20X, N_OE_PWR_ON,		3, 7),
566 	INIT_REGMAP_IRQ(AXP20X, N_OE_PWR_OFF,	        3, 6),
567 	INIT_REGMAP_IRQ(AXP20X, VBUS_VALID,		3, 5),
568 	INIT_REGMAP_IRQ(AXP20X, VBUS_NOT_VALID,	        3, 4),
569 	INIT_REGMAP_IRQ(AXP20X, VBUS_SESS_VALID,	3, 3),
570 	INIT_REGMAP_IRQ(AXP20X, VBUS_SESS_END,	        3, 2),
571 	INIT_REGMAP_IRQ(AXP20X, LOW_PWR_LVL1,	        3, 1),
572 	INIT_REGMAP_IRQ(AXP20X, LOW_PWR_LVL2,	        3, 0),
573 	INIT_REGMAP_IRQ(AXP20X, TIMER,		        4, 7),
574 	INIT_REGMAP_IRQ(AXP20X, PEK_RIS_EDGE,	        4, 6),
575 	INIT_REGMAP_IRQ(AXP20X, PEK_FAL_EDGE,	        4, 5),
576 	INIT_REGMAP_IRQ(AXP20X, GPIO3_INPUT,		4, 3),
577 	INIT_REGMAP_IRQ(AXP20X, GPIO2_INPUT,		4, 2),
578 	INIT_REGMAP_IRQ(AXP20X, GPIO1_INPUT,		4, 1),
579 	INIT_REGMAP_IRQ(AXP20X, GPIO0_INPUT,		4, 0),
580 };
581 
582 static const struct regmap_irq axp22x_regmap_irqs[] = {
583 	INIT_REGMAP_IRQ(AXP22X, ACIN_OVER_V,		0, 7),
584 	INIT_REGMAP_IRQ(AXP22X, ACIN_PLUGIN,		0, 6),
585 	INIT_REGMAP_IRQ(AXP22X, ACIN_REMOVAL,	        0, 5),
586 	INIT_REGMAP_IRQ(AXP22X, VBUS_OVER_V,		0, 4),
587 	INIT_REGMAP_IRQ(AXP22X, VBUS_PLUGIN,		0, 3),
588 	INIT_REGMAP_IRQ(AXP22X, VBUS_REMOVAL,	        0, 2),
589 	INIT_REGMAP_IRQ(AXP22X, VBUS_V_LOW,		0, 1),
590 	INIT_REGMAP_IRQ(AXP22X, BATT_PLUGIN,		1, 7),
591 	INIT_REGMAP_IRQ(AXP22X, BATT_REMOVAL,	        1, 6),
592 	INIT_REGMAP_IRQ(AXP22X, BATT_ENT_ACT_MODE,	1, 5),
593 	INIT_REGMAP_IRQ(AXP22X, BATT_EXIT_ACT_MODE,	1, 4),
594 	INIT_REGMAP_IRQ(AXP22X, CHARG,		        1, 3),
595 	INIT_REGMAP_IRQ(AXP22X, CHARG_DONE,		1, 2),
596 	INIT_REGMAP_IRQ(AXP22X, BATT_TEMP_HIGH,	        1, 1),
597 	INIT_REGMAP_IRQ(AXP22X, BATT_TEMP_LOW,	        1, 0),
598 	INIT_REGMAP_IRQ(AXP22X, DIE_TEMP_HIGH,	        2, 7),
599 	INIT_REGMAP_IRQ(AXP22X, PEK_SHORT,		2, 1),
600 	INIT_REGMAP_IRQ(AXP22X, PEK_LONG,		2, 0),
601 	INIT_REGMAP_IRQ(AXP22X, LOW_PWR_LVL1,	        3, 1),
602 	INIT_REGMAP_IRQ(AXP22X, LOW_PWR_LVL2,	        3, 0),
603 	INIT_REGMAP_IRQ(AXP22X, TIMER,		        4, 7),
604 	INIT_REGMAP_IRQ(AXP22X, PEK_RIS_EDGE,	        4, 6),
605 	INIT_REGMAP_IRQ(AXP22X, PEK_FAL_EDGE,	        4, 5),
606 	INIT_REGMAP_IRQ(AXP22X, GPIO1_INPUT,		4, 1),
607 	INIT_REGMAP_IRQ(AXP22X, GPIO0_INPUT,		4, 0),
608 };
609 
610 /* some IRQs are compatible with axp20x models */
611 static const struct regmap_irq axp288_regmap_irqs[] = {
612 	INIT_REGMAP_IRQ(AXP288, VBUS_FALL,              0, 2),
613 	INIT_REGMAP_IRQ(AXP288, VBUS_RISE,              0, 3),
614 	INIT_REGMAP_IRQ(AXP288, OV,                     0, 4),
615 	INIT_REGMAP_IRQ(AXP288, FALLING_ALT,            0, 5),
616 	INIT_REGMAP_IRQ(AXP288, RISING_ALT,             0, 6),
617 	INIT_REGMAP_IRQ(AXP288, OV_ALT,                 0, 7),
618 
619 	INIT_REGMAP_IRQ(AXP288, DONE,                   1, 2),
620 	INIT_REGMAP_IRQ(AXP288, CHARGING,               1, 3),
621 	INIT_REGMAP_IRQ(AXP288, SAFE_QUIT,              1, 4),
622 	INIT_REGMAP_IRQ(AXP288, SAFE_ENTER,             1, 5),
623 	INIT_REGMAP_IRQ(AXP288, ABSENT,                 1, 6),
624 	INIT_REGMAP_IRQ(AXP288, APPEND,                 1, 7),
625 
626 	INIT_REGMAP_IRQ(AXP288, QWBTU,                  2, 0),
627 	INIT_REGMAP_IRQ(AXP288, WBTU,                   2, 1),
628 	INIT_REGMAP_IRQ(AXP288, QWBTO,                  2, 2),
629 	INIT_REGMAP_IRQ(AXP288, WBTO,                   2, 3),
630 	INIT_REGMAP_IRQ(AXP288, QCBTU,                  2, 4),
631 	INIT_REGMAP_IRQ(AXP288, CBTU,                   2, 5),
632 	INIT_REGMAP_IRQ(AXP288, QCBTO,                  2, 6),
633 	INIT_REGMAP_IRQ(AXP288, CBTO,                   2, 7),
634 
635 	INIT_REGMAP_IRQ(AXP288, WL2,                    3, 0),
636 	INIT_REGMAP_IRQ(AXP288, WL1,                    3, 1),
637 	INIT_REGMAP_IRQ(AXP288, GPADC,                  3, 2),
638 	INIT_REGMAP_IRQ(AXP288, OT,                     3, 7),
639 
640 	INIT_REGMAP_IRQ(AXP288, GPIO0,                  4, 0),
641 	INIT_REGMAP_IRQ(AXP288, GPIO1,                  4, 1),
642 	INIT_REGMAP_IRQ(AXP288, POKO,                   4, 2),
643 	INIT_REGMAP_IRQ(AXP288, POKL,                   4, 3),
644 	INIT_REGMAP_IRQ(AXP288, POKS,                   4, 4),
645 	INIT_REGMAP_IRQ(AXP288, POKN,                   4, 5),
646 	INIT_REGMAP_IRQ(AXP288, POKP,                   4, 6),
647 	INIT_REGMAP_IRQ(AXP288, TIMER,                  4, 7),
648 
649 	INIT_REGMAP_IRQ(AXP288, MV_CHNG,                5, 0),
650 	INIT_REGMAP_IRQ(AXP288, BC_USB_CHNG,            5, 1),
651 };
652 
653 static const struct regmap_irq axp313a_regmap_irqs[] = {
654 	INIT_REGMAP_IRQ(AXP313A, PEK_RIS_EDGE,		0, 7),
655 	INIT_REGMAP_IRQ(AXP313A, PEK_FAL_EDGE,		0, 6),
656 	INIT_REGMAP_IRQ(AXP313A, PEK_SHORT,		0, 5),
657 	INIT_REGMAP_IRQ(AXP313A, PEK_LONG,		0, 4),
658 	INIT_REGMAP_IRQ(AXP313A, DCDC3_V_LOW,		0, 3),
659 	INIT_REGMAP_IRQ(AXP313A, DCDC2_V_LOW,		0, 2),
660 	INIT_REGMAP_IRQ(AXP313A, DIE_TEMP_HIGH,		0, 0),
661 };
662 
663 static const struct regmap_irq axp717_regmap_irqs[] = {
664 	INIT_REGMAP_IRQ(AXP717, SOC_DROP_LVL2,		0, 7),
665 	INIT_REGMAP_IRQ(AXP717, SOC_DROP_LVL1,		0, 6),
666 	INIT_REGMAP_IRQ(AXP717, GAUGE_NEW_SOC,		0, 4),
667 	INIT_REGMAP_IRQ(AXP717, BOOST_OVER_V,		0, 2),
668 	INIT_REGMAP_IRQ(AXP717, VBUS_OVER_V,		0, 1),
669 	INIT_REGMAP_IRQ(AXP717, VBUS_FAULT,		0, 0),
670 	INIT_REGMAP_IRQ(AXP717, VBUS_PLUGIN,		1, 7),
671 	INIT_REGMAP_IRQ(AXP717, VBUS_REMOVAL,		1, 6),
672 	INIT_REGMAP_IRQ(AXP717, BATT_PLUGIN,		1, 5),
673 	INIT_REGMAP_IRQ(AXP717, BATT_REMOVAL,		1, 4),
674 	INIT_REGMAP_IRQ(AXP717, PEK_SHORT,		1, 3),
675 	INIT_REGMAP_IRQ(AXP717, PEK_LONG,		1, 2),
676 	INIT_REGMAP_IRQ(AXP717, PEK_FAL_EDGE,		1, 1),
677 	INIT_REGMAP_IRQ(AXP717, PEK_RIS_EDGE,		1, 0),
678 	INIT_REGMAP_IRQ(AXP717, WDOG_EXPIRE,		2, 7),
679 	INIT_REGMAP_IRQ(AXP717, LDO_OVER_CURR,		2, 6),
680 	INIT_REGMAP_IRQ(AXP717, BATT_OVER_CURR,		2, 5),
681 	INIT_REGMAP_IRQ(AXP717, CHARG_DONE,		2, 4),
682 	INIT_REGMAP_IRQ(AXP717, CHARG,			2, 3),
683 	INIT_REGMAP_IRQ(AXP717, DIE_TEMP_HIGH,		2, 2),
684 	INIT_REGMAP_IRQ(AXP717, CHARG_TIMER,		2, 1),
685 	INIT_REGMAP_IRQ(AXP717, BATT_OVER_V,		2, 0),
686 	INIT_REGMAP_IRQ(AXP717, BC_USB_DONE,		3, 7),
687 	INIT_REGMAP_IRQ(AXP717, BC_USB_CHNG,		3, 6),
688 	INIT_REGMAP_IRQ(AXP717, BATT_QUIT_TEMP_HIGH,	3, 4),
689 	INIT_REGMAP_IRQ(AXP717, BATT_CHG_TEMP_HIGH,	3, 3),
690 	INIT_REGMAP_IRQ(AXP717, BATT_CHG_TEMP_LOW,	3, 2),
691 	INIT_REGMAP_IRQ(AXP717, BATT_ACT_TEMP_HIGH,	3, 1),
692 	INIT_REGMAP_IRQ(AXP717, BATT_ACT_TEMP_LOW,	3, 0),
693 	INIT_REGMAP_IRQ(AXP717, TYPEC_REMOVE,		4, 6),
694 	INIT_REGMAP_IRQ(AXP717, TYPEC_PLUGIN,		4, 5),
695 };
696 
697 static const struct regmap_irq axp803_regmap_irqs[] = {
698 	INIT_REGMAP_IRQ(AXP803, ACIN_OVER_V,		0, 7),
699 	INIT_REGMAP_IRQ(AXP803, ACIN_PLUGIN,		0, 6),
700 	INIT_REGMAP_IRQ(AXP803, ACIN_REMOVAL,	        0, 5),
701 	INIT_REGMAP_IRQ(AXP803, VBUS_OVER_V,		0, 4),
702 	INIT_REGMAP_IRQ(AXP803, VBUS_PLUGIN,		0, 3),
703 	INIT_REGMAP_IRQ(AXP803, VBUS_REMOVAL,	        0, 2),
704 	INIT_REGMAP_IRQ(AXP803, BATT_PLUGIN,		1, 7),
705 	INIT_REGMAP_IRQ(AXP803, BATT_REMOVAL,	        1, 6),
706 	INIT_REGMAP_IRQ(AXP803, BATT_ENT_ACT_MODE,	1, 5),
707 	INIT_REGMAP_IRQ(AXP803, BATT_EXIT_ACT_MODE,	1, 4),
708 	INIT_REGMAP_IRQ(AXP803, CHARG,		        1, 3),
709 	INIT_REGMAP_IRQ(AXP803, CHARG_DONE,		1, 2),
710 	INIT_REGMAP_IRQ(AXP803, BATT_CHG_TEMP_HIGH,	2, 7),
711 	INIT_REGMAP_IRQ(AXP803, BATT_CHG_TEMP_HIGH_END,	2, 6),
712 	INIT_REGMAP_IRQ(AXP803, BATT_CHG_TEMP_LOW,	2, 5),
713 	INIT_REGMAP_IRQ(AXP803, BATT_CHG_TEMP_LOW_END,	2, 4),
714 	INIT_REGMAP_IRQ(AXP803, BATT_ACT_TEMP_HIGH,	2, 3),
715 	INIT_REGMAP_IRQ(AXP803, BATT_ACT_TEMP_HIGH_END,	2, 2),
716 	INIT_REGMAP_IRQ(AXP803, BATT_ACT_TEMP_LOW,	2, 1),
717 	INIT_REGMAP_IRQ(AXP803, BATT_ACT_TEMP_LOW_END,	2, 0),
718 	INIT_REGMAP_IRQ(AXP803, DIE_TEMP_HIGH,	        3, 7),
719 	INIT_REGMAP_IRQ(AXP803, GPADC,		        3, 2),
720 	INIT_REGMAP_IRQ(AXP803, LOW_PWR_LVL1,	        3, 1),
721 	INIT_REGMAP_IRQ(AXP803, LOW_PWR_LVL2,	        3, 0),
722 	INIT_REGMAP_IRQ(AXP803, TIMER,		        4, 7),
723 	INIT_REGMAP_IRQ(AXP803, PEK_RIS_EDGE,	        4, 6),
724 	INIT_REGMAP_IRQ(AXP803, PEK_FAL_EDGE,	        4, 5),
725 	INIT_REGMAP_IRQ(AXP803, PEK_SHORT,		4, 4),
726 	INIT_REGMAP_IRQ(AXP803, PEK_LONG,		4, 3),
727 	INIT_REGMAP_IRQ(AXP803, PEK_OVER_OFF,		4, 2),
728 	INIT_REGMAP_IRQ(AXP803, GPIO1_INPUT,		4, 1),
729 	INIT_REGMAP_IRQ(AXP803, GPIO0_INPUT,		4, 0),
730 	INIT_REGMAP_IRQ(AXP803, BC_USB_CHNG,            5, 1),
731 	INIT_REGMAP_IRQ(AXP803, MV_CHNG,                5, 0),
732 };
733 
734 static const struct regmap_irq axp806_regmap_irqs[] = {
735 	INIT_REGMAP_IRQ(AXP806, DIE_TEMP_HIGH_LV1,	0, 0),
736 	INIT_REGMAP_IRQ(AXP806, DIE_TEMP_HIGH_LV2,	0, 1),
737 	INIT_REGMAP_IRQ(AXP806, DCDCA_V_LOW,		0, 3),
738 	INIT_REGMAP_IRQ(AXP806, DCDCB_V_LOW,		0, 4),
739 	INIT_REGMAP_IRQ(AXP806, DCDCC_V_LOW,		0, 5),
740 	INIT_REGMAP_IRQ(AXP806, DCDCD_V_LOW,		0, 6),
741 	INIT_REGMAP_IRQ(AXP806, DCDCE_V_LOW,		0, 7),
742 	INIT_REGMAP_IRQ(AXP806, POK_LONG,		1, 0),
743 	INIT_REGMAP_IRQ(AXP806, POK_SHORT,		1, 1),
744 	INIT_REGMAP_IRQ(AXP806, WAKEUP,			1, 4),
745 	INIT_REGMAP_IRQ(AXP806, POK_FALL,		1, 5),
746 	INIT_REGMAP_IRQ(AXP806, POK_RISE,		1, 6),
747 };
748 
749 static const struct regmap_irq axp809_regmap_irqs[] = {
750 	INIT_REGMAP_IRQ(AXP809, ACIN_OVER_V,		0, 7),
751 	INIT_REGMAP_IRQ(AXP809, ACIN_PLUGIN,		0, 6),
752 	INIT_REGMAP_IRQ(AXP809, ACIN_REMOVAL,	        0, 5),
753 	INIT_REGMAP_IRQ(AXP809, VBUS_OVER_V,		0, 4),
754 	INIT_REGMAP_IRQ(AXP809, VBUS_PLUGIN,		0, 3),
755 	INIT_REGMAP_IRQ(AXP809, VBUS_REMOVAL,	        0, 2),
756 	INIT_REGMAP_IRQ(AXP809, VBUS_V_LOW,		0, 1),
757 	INIT_REGMAP_IRQ(AXP809, BATT_PLUGIN,		1, 7),
758 	INIT_REGMAP_IRQ(AXP809, BATT_REMOVAL,	        1, 6),
759 	INIT_REGMAP_IRQ(AXP809, BATT_ENT_ACT_MODE,	1, 5),
760 	INIT_REGMAP_IRQ(AXP809, BATT_EXIT_ACT_MODE,	1, 4),
761 	INIT_REGMAP_IRQ(AXP809, CHARG,		        1, 3),
762 	INIT_REGMAP_IRQ(AXP809, CHARG_DONE,		1, 2),
763 	INIT_REGMAP_IRQ(AXP809, BATT_CHG_TEMP_HIGH,	2, 7),
764 	INIT_REGMAP_IRQ(AXP809, BATT_CHG_TEMP_HIGH_END,	2, 6),
765 	INIT_REGMAP_IRQ(AXP809, BATT_CHG_TEMP_LOW,	2, 5),
766 	INIT_REGMAP_IRQ(AXP809, BATT_CHG_TEMP_LOW_END,	2, 4),
767 	INIT_REGMAP_IRQ(AXP809, BATT_ACT_TEMP_HIGH,	2, 3),
768 	INIT_REGMAP_IRQ(AXP809, BATT_ACT_TEMP_HIGH_END,	2, 2),
769 	INIT_REGMAP_IRQ(AXP809, BATT_ACT_TEMP_LOW,	2, 1),
770 	INIT_REGMAP_IRQ(AXP809, BATT_ACT_TEMP_LOW_END,	2, 0),
771 	INIT_REGMAP_IRQ(AXP809, DIE_TEMP_HIGH,	        3, 7),
772 	INIT_REGMAP_IRQ(AXP809, LOW_PWR_LVL1,	        3, 1),
773 	INIT_REGMAP_IRQ(AXP809, LOW_PWR_LVL2,	        3, 0),
774 	INIT_REGMAP_IRQ(AXP809, TIMER,		        4, 7),
775 	INIT_REGMAP_IRQ(AXP809, PEK_RIS_EDGE,	        4, 6),
776 	INIT_REGMAP_IRQ(AXP809, PEK_FAL_EDGE,	        4, 5),
777 	INIT_REGMAP_IRQ(AXP809, PEK_SHORT,		4, 4),
778 	INIT_REGMAP_IRQ(AXP809, PEK_LONG,		4, 3),
779 	INIT_REGMAP_IRQ(AXP809, PEK_OVER_OFF,		4, 2),
780 	INIT_REGMAP_IRQ(AXP809, GPIO1_INPUT,		4, 1),
781 	INIT_REGMAP_IRQ(AXP809, GPIO0_INPUT,		4, 0),
782 };
783 
784 static const struct regmap_irq axp15060_regmap_irqs[] = {
785 	INIT_REGMAP_IRQ(AXP15060, DIE_TEMP_HIGH_LV1,	0, 0),
786 	INIT_REGMAP_IRQ(AXP15060, DIE_TEMP_HIGH_LV2,	0, 1),
787 	INIT_REGMAP_IRQ(AXP15060, DCDC1_V_LOW,		0, 2),
788 	INIT_REGMAP_IRQ(AXP15060, DCDC2_V_LOW,		0, 3),
789 	INIT_REGMAP_IRQ(AXP15060, DCDC3_V_LOW,		0, 4),
790 	INIT_REGMAP_IRQ(AXP15060, DCDC4_V_LOW,		0, 5),
791 	INIT_REGMAP_IRQ(AXP15060, DCDC5_V_LOW,		0, 6),
792 	INIT_REGMAP_IRQ(AXP15060, DCDC6_V_LOW,		0, 7),
793 	INIT_REGMAP_IRQ(AXP15060, PEK_LONG,			1, 0),
794 	INIT_REGMAP_IRQ(AXP15060, PEK_SHORT,			1, 1),
795 	INIT_REGMAP_IRQ(AXP15060, GPIO1_INPUT,		1, 2),
796 	INIT_REGMAP_IRQ(AXP15060, PEK_FAL_EDGE,			1, 3),
797 	INIT_REGMAP_IRQ(AXP15060, PEK_RIS_EDGE,			1, 4),
798 	INIT_REGMAP_IRQ(AXP15060, GPIO2_INPUT,		1, 5),
799 };
800 
801 static const struct regmap_irq_chip axp152_regmap_irq_chip = {
802 	.name			= "axp152_irq_chip",
803 	.status_base		= AXP152_IRQ1_STATE,
804 	.ack_base		= AXP152_IRQ1_STATE,
805 	.unmask_base		= AXP152_IRQ1_EN,
806 	.init_ack_masked	= true,
807 	.irqs			= axp152_regmap_irqs,
808 	.num_irqs		= ARRAY_SIZE(axp152_regmap_irqs),
809 	.num_regs		= 3,
810 };
811 
axp192_get_irq_reg(struct regmap_irq_chip_data * data,unsigned int base,int index)812 static unsigned int axp192_get_irq_reg(struct regmap_irq_chip_data *data,
813 				       unsigned int base, int index)
814 {
815 	/* linear mapping for IRQ1 to IRQ4 */
816 	if (index < 4)
817 		return base + index;
818 
819 	/* handle IRQ5 separately */
820 	if (base == AXP192_IRQ1_EN)
821 		return AXP192_IRQ5_EN;
822 
823 	return AXP192_IRQ5_STATE;
824 }
825 
826 static const struct regmap_irq_chip axp192_regmap_irq_chip = {
827 	.name			= "axp192_irq_chip",
828 	.status_base		= AXP192_IRQ1_STATE,
829 	.ack_base		= AXP192_IRQ1_STATE,
830 	.unmask_base		= AXP192_IRQ1_EN,
831 	.init_ack_masked	= true,
832 	.irqs			= axp192_regmap_irqs,
833 	.num_irqs		= ARRAY_SIZE(axp192_regmap_irqs),
834 	.num_regs		= 5,
835 	.get_irq_reg		= axp192_get_irq_reg,
836 };
837 
838 static const struct regmap_irq_chip axp20x_regmap_irq_chip = {
839 	.name			= "axp20x_irq_chip",
840 	.status_base		= AXP20X_IRQ1_STATE,
841 	.ack_base		= AXP20X_IRQ1_STATE,
842 	.unmask_base		= AXP20X_IRQ1_EN,
843 	.init_ack_masked	= true,
844 	.irqs			= axp20x_regmap_irqs,
845 	.num_irqs		= ARRAY_SIZE(axp20x_regmap_irqs),
846 	.num_regs		= 5,
847 
848 };
849 
850 static const struct regmap_irq_chip axp22x_regmap_irq_chip = {
851 	.name			= "axp22x_irq_chip",
852 	.status_base		= AXP20X_IRQ1_STATE,
853 	.ack_base		= AXP20X_IRQ1_STATE,
854 	.unmask_base		= AXP20X_IRQ1_EN,
855 	.init_ack_masked	= true,
856 	.irqs			= axp22x_regmap_irqs,
857 	.num_irqs		= ARRAY_SIZE(axp22x_regmap_irqs),
858 	.num_regs		= 5,
859 };
860 
861 static const struct regmap_irq_chip axp288_regmap_irq_chip = {
862 	.name			= "axp288_irq_chip",
863 	.status_base		= AXP20X_IRQ1_STATE,
864 	.ack_base		= AXP20X_IRQ1_STATE,
865 	.unmask_base		= AXP20X_IRQ1_EN,
866 	.init_ack_masked	= true,
867 	.irqs			= axp288_regmap_irqs,
868 	.num_irqs		= ARRAY_SIZE(axp288_regmap_irqs),
869 	.num_regs		= 6,
870 
871 };
872 
873 static const struct regmap_irq_chip axp313a_regmap_irq_chip = {
874 	.name			= "axp313a_irq_chip",
875 	.status_base		= AXP313A_IRQ_STATE,
876 	.ack_base		= AXP313A_IRQ_STATE,
877 	.unmask_base		= AXP313A_IRQ_EN,
878 	.init_ack_masked	= true,
879 	.irqs			= axp313a_regmap_irqs,
880 	.num_irqs		= ARRAY_SIZE(axp313a_regmap_irqs),
881 	.num_regs		= 1,
882 };
883 
884 static const struct regmap_irq_chip axp717_regmap_irq_chip = {
885 	.name			= "axp717_irq_chip",
886 	.status_base		= AXP717_IRQ0_STATE,
887 	.ack_base		= AXP717_IRQ0_STATE,
888 	.unmask_base		= AXP717_IRQ0_EN,
889 	.init_ack_masked	= true,
890 	.irqs			= axp717_regmap_irqs,
891 	.num_irqs		= ARRAY_SIZE(axp717_regmap_irqs),
892 	.num_regs		= 5,
893 };
894 
895 static const struct regmap_irq_chip axp803_regmap_irq_chip = {
896 	.name			= "axp803",
897 	.status_base		= AXP20X_IRQ1_STATE,
898 	.ack_base		= AXP20X_IRQ1_STATE,
899 	.unmask_base		= AXP20X_IRQ1_EN,
900 	.init_ack_masked	= true,
901 	.irqs			= axp803_regmap_irqs,
902 	.num_irqs		= ARRAY_SIZE(axp803_regmap_irqs),
903 	.num_regs		= 6,
904 };
905 
906 static const struct regmap_irq_chip axp806_regmap_irq_chip = {
907 	.name			= "axp806",
908 	.status_base		= AXP20X_IRQ1_STATE,
909 	.ack_base		= AXP20X_IRQ1_STATE,
910 	.unmask_base		= AXP20X_IRQ1_EN,
911 	.init_ack_masked	= true,
912 	.irqs			= axp806_regmap_irqs,
913 	.num_irqs		= ARRAY_SIZE(axp806_regmap_irqs),
914 	.num_regs		= 2,
915 };
916 
917 static const struct regmap_irq_chip axp809_regmap_irq_chip = {
918 	.name			= "axp809",
919 	.status_base		= AXP20X_IRQ1_STATE,
920 	.ack_base		= AXP20X_IRQ1_STATE,
921 	.unmask_base		= AXP20X_IRQ1_EN,
922 	.init_ack_masked	= true,
923 	.irqs			= axp809_regmap_irqs,
924 	.num_irqs		= ARRAY_SIZE(axp809_regmap_irqs),
925 	.num_regs		= 5,
926 };
927 
928 static const struct regmap_irq_chip axp15060_regmap_irq_chip = {
929 	.name			= "axp15060",
930 	.status_base		= AXP15060_IRQ1_STATE,
931 	.ack_base		= AXP15060_IRQ1_STATE,
932 	.unmask_base		= AXP15060_IRQ1_EN,
933 	.init_ack_masked	= true,
934 	.irqs			= axp15060_regmap_irqs,
935 	.num_irqs		= ARRAY_SIZE(axp15060_regmap_irqs),
936 	.num_regs		= 2,
937 };
938 
939 static const struct mfd_cell axp192_cells[] = {
940 	{
941 		.name		= "axp192-adc",
942 		.of_compatible	= "x-powers,axp192-adc",
943 	}, {
944 		.name		= "axp20x-battery-power-supply",
945 		.of_compatible	= "x-powers,axp192-battery-power-supply",
946 	}, {
947 		.name		= "axp20x-ac-power-supply",
948 		.of_compatible	= "x-powers,axp202-ac-power-supply",
949 		.num_resources	= ARRAY_SIZE(axp192_ac_power_supply_resources),
950 		.resources	= axp192_ac_power_supply_resources,
951 	}, {
952 		.name		= "axp20x-usb-power-supply",
953 		.of_compatible	= "x-powers,axp192-usb-power-supply",
954 		.num_resources	= ARRAY_SIZE(axp192_usb_power_supply_resources),
955 		.resources	= axp192_usb_power_supply_resources,
956 	},
957 	{	.name		= "axp20x-regulator" },
958 };
959 
960 static const struct mfd_cell axp20x_cells[] = {
961 	{
962 		.name		= "axp20x-gpio",
963 		.of_compatible	= "x-powers,axp209-gpio",
964 	}, {
965 		.name		= "axp20x-pek",
966 		.num_resources	= ARRAY_SIZE(axp20x_pek_resources),
967 		.resources	= axp20x_pek_resources,
968 	}, {
969 		.name		= "axp20x-regulator",
970 	}, {
971 		.name		= "axp20x-adc",
972 		.of_compatible	= "x-powers,axp209-adc",
973 	}, {
974 		.name		= "axp20x-battery-power-supply",
975 		.of_compatible	= "x-powers,axp209-battery-power-supply",
976 	}, {
977 		.name		= "axp20x-ac-power-supply",
978 		.of_compatible	= "x-powers,axp202-ac-power-supply",
979 		.num_resources	= ARRAY_SIZE(axp20x_ac_power_supply_resources),
980 		.resources	= axp20x_ac_power_supply_resources,
981 	}, {
982 		.name		= "axp20x-usb-power-supply",
983 		.of_compatible	= "x-powers,axp202-usb-power-supply",
984 		.num_resources	= ARRAY_SIZE(axp20x_usb_power_supply_resources),
985 		.resources	= axp20x_usb_power_supply_resources,
986 	},
987 };
988 
989 static const struct mfd_cell axp221_cells[] = {
990 	{
991 		.name		= "axp20x-gpio",
992 		.of_compatible	= "x-powers,axp221-gpio",
993 	}, {
994 		.name		= "axp221-pek",
995 		.num_resources	= ARRAY_SIZE(axp22x_pek_resources),
996 		.resources	= axp22x_pek_resources,
997 	}, {
998 		.name		= "axp20x-regulator",
999 	}, {
1000 		.name		= "axp22x-adc",
1001 		.of_compatible	= "x-powers,axp221-adc",
1002 	}, {
1003 		.name		= "axp20x-ac-power-supply",
1004 		.of_compatible	= "x-powers,axp221-ac-power-supply",
1005 		.num_resources	= ARRAY_SIZE(axp20x_ac_power_supply_resources),
1006 		.resources	= axp20x_ac_power_supply_resources,
1007 	}, {
1008 		.name		= "axp20x-battery-power-supply",
1009 		.of_compatible	= "x-powers,axp221-battery-power-supply",
1010 	}, {
1011 		.name		= "axp20x-usb-power-supply",
1012 		.of_compatible	= "x-powers,axp221-usb-power-supply",
1013 		.num_resources	= ARRAY_SIZE(axp22x_usb_power_supply_resources),
1014 		.resources	= axp22x_usb_power_supply_resources,
1015 	},
1016 };
1017 
1018 static const struct mfd_cell axp223_cells[] = {
1019 	{
1020 		.name		= "axp20x-gpio",
1021 		.of_compatible	= "x-powers,axp221-gpio",
1022 	}, {
1023 		.name		= "axp221-pek",
1024 		.num_resources	= ARRAY_SIZE(axp22x_pek_resources),
1025 		.resources	= axp22x_pek_resources,
1026 	}, {
1027 		.name		= "axp22x-adc",
1028 		.of_compatible	= "x-powers,axp221-adc",
1029 	}, {
1030 		.name		= "axp20x-battery-power-supply",
1031 		.of_compatible	= "x-powers,axp221-battery-power-supply",
1032 	}, {
1033 		.name		= "axp20x-regulator",
1034 	}, {
1035 		.name		= "axp20x-ac-power-supply",
1036 		.of_compatible	= "x-powers,axp221-ac-power-supply",
1037 		.num_resources	= ARRAY_SIZE(axp20x_ac_power_supply_resources),
1038 		.resources	= axp20x_ac_power_supply_resources,
1039 	}, {
1040 		.name		= "axp20x-usb-power-supply",
1041 		.of_compatible	= "x-powers,axp223-usb-power-supply",
1042 		.num_resources	= ARRAY_SIZE(axp22x_usb_power_supply_resources),
1043 		.resources	= axp22x_usb_power_supply_resources,
1044 	},
1045 };
1046 
1047 static const struct mfd_cell axp152_cells[] = {
1048 	{
1049 		.name		= "axp20x-pek",
1050 		.num_resources	= ARRAY_SIZE(axp152_pek_resources),
1051 		.resources	= axp152_pek_resources,
1052 	},
1053 };
1054 
1055 static struct mfd_cell axp313a_cells[] = {
1056 	MFD_CELL_NAME("axp20x-regulator"),
1057 	MFD_CELL_RES("axp313a-pek", axp313a_pek_resources),
1058 };
1059 
1060 static struct mfd_cell axp717_cells[] = {
1061 	MFD_CELL_NAME("axp20x-regulator"),
1062 	MFD_CELL_RES("axp20x-pek", axp717_pek_resources),
1063 	MFD_CELL_OF("axp717-adc",
1064 		    NULL, NULL, 0, 0, "x-powers,axp717-adc"),
1065 	MFD_CELL_OF("axp20x-usb-power-supply",
1066 		    axp717_usb_power_supply_resources, NULL, 0, 0,
1067 		    "x-powers,axp717-usb-power-supply"),
1068 	MFD_CELL_OF("axp20x-battery-power-supply",
1069 		    NULL, NULL, 0, 0, "x-powers,axp717-battery-power-supply"),
1070 };
1071 
1072 static const struct resource axp288_adc_resources[] = {
1073 	DEFINE_RES_IRQ_NAMED(AXP288_IRQ_GPADC, "GPADC"),
1074 };
1075 
1076 static const struct resource axp288_extcon_resources[] = {
1077 	DEFINE_RES_IRQ(AXP288_IRQ_VBUS_FALL),
1078 	DEFINE_RES_IRQ(AXP288_IRQ_VBUS_RISE),
1079 	DEFINE_RES_IRQ(AXP288_IRQ_MV_CHNG),
1080 	DEFINE_RES_IRQ(AXP288_IRQ_BC_USB_CHNG),
1081 };
1082 
1083 static const struct resource axp288_charger_resources[] = {
1084 	DEFINE_RES_IRQ(AXP288_IRQ_OV),
1085 	DEFINE_RES_IRQ(AXP288_IRQ_DONE),
1086 	DEFINE_RES_IRQ(AXP288_IRQ_CHARGING),
1087 	DEFINE_RES_IRQ(AXP288_IRQ_SAFE_QUIT),
1088 	DEFINE_RES_IRQ(AXP288_IRQ_SAFE_ENTER),
1089 	DEFINE_RES_IRQ(AXP288_IRQ_QCBTU),
1090 	DEFINE_RES_IRQ(AXP288_IRQ_CBTU),
1091 	DEFINE_RES_IRQ(AXP288_IRQ_QCBTO),
1092 	DEFINE_RES_IRQ(AXP288_IRQ_CBTO),
1093 };
1094 
1095 static const char * const axp288_fuel_gauge_suppliers[] = { "axp288_charger" };
1096 
1097 static const struct property_entry axp288_fuel_gauge_properties[] = {
1098 	PROPERTY_ENTRY_STRING_ARRAY("supplied-from", axp288_fuel_gauge_suppliers),
1099 	{ }
1100 };
1101 
1102 static const struct software_node axp288_fuel_gauge_sw_node = {
1103 	.name = "axp288_fuel_gauge",
1104 	.properties = axp288_fuel_gauge_properties,
1105 };
1106 
1107 static const struct mfd_cell axp288_cells[] = {
1108 	{
1109 		.name		= "axp288_adc",
1110 		.num_resources	= ARRAY_SIZE(axp288_adc_resources),
1111 		.resources	= axp288_adc_resources,
1112 	}, {
1113 		.name		= "axp288_extcon",
1114 		.num_resources	= ARRAY_SIZE(axp288_extcon_resources),
1115 		.resources	= axp288_extcon_resources,
1116 	}, {
1117 		.name		= "axp288_charger",
1118 		.num_resources	= ARRAY_SIZE(axp288_charger_resources),
1119 		.resources	= axp288_charger_resources,
1120 	}, {
1121 		.name		= "axp288_fuel_gauge",
1122 		.num_resources	= ARRAY_SIZE(axp288_fuel_gauge_resources),
1123 		.resources	= axp288_fuel_gauge_resources,
1124 		.swnode		= &axp288_fuel_gauge_sw_node,
1125 	}, {
1126 		.name		= "axp221-pek",
1127 		.num_resources	= ARRAY_SIZE(axp288_power_button_resources),
1128 		.resources	= axp288_power_button_resources,
1129 	}, {
1130 		.name		= "axp288_pmic_acpi",
1131 	},
1132 };
1133 
1134 static const struct mfd_cell axp803_cells[] = {
1135 	{
1136 		.name		= "axp221-pek",
1137 		.num_resources	= ARRAY_SIZE(axp803_pek_resources),
1138 		.resources	= axp803_pek_resources,
1139 	}, {
1140 		.name		= "axp20x-gpio",
1141 		.of_compatible	= "x-powers,axp813-gpio",
1142 	}, {
1143 		.name		= "axp813-adc",
1144 		.of_compatible	= "x-powers,axp813-adc",
1145 	}, {
1146 		.name		= "axp20x-battery-power-supply",
1147 		.of_compatible	= "x-powers,axp813-battery-power-supply",
1148 	}, {
1149 		.name		= "axp20x-ac-power-supply",
1150 		.of_compatible	= "x-powers,axp813-ac-power-supply",
1151 		.num_resources	= ARRAY_SIZE(axp20x_ac_power_supply_resources),
1152 		.resources	= axp20x_ac_power_supply_resources,
1153 	}, {
1154 		.name		= "axp20x-usb-power-supply",
1155 		.num_resources	= ARRAY_SIZE(axp803_usb_power_supply_resources),
1156 		.resources	= axp803_usb_power_supply_resources,
1157 		.of_compatible	= "x-powers,axp813-usb-power-supply",
1158 	},
1159 	{	.name		= "axp20x-regulator" },
1160 };
1161 
1162 static const struct mfd_cell axp806_self_working_cells[] = {
1163 	{
1164 		.name		= "axp221-pek",
1165 		.num_resources	= ARRAY_SIZE(axp806_pek_resources),
1166 		.resources	= axp806_pek_resources,
1167 	},
1168 	{	.name		= "axp20x-regulator" },
1169 };
1170 
1171 static const struct mfd_cell axp806_cells[] = {
1172 	{
1173 		.id		= 2,
1174 		.name		= "axp20x-regulator",
1175 	},
1176 };
1177 
1178 static const struct mfd_cell axp809_cells[] = {
1179 	{
1180 		.name		= "axp20x-gpio",
1181 		.of_compatible	= "x-powers,axp221-gpio",
1182 	}, {
1183 		.name		= "axp221-pek",
1184 		.num_resources	= ARRAY_SIZE(axp809_pek_resources),
1185 		.resources	= axp809_pek_resources,
1186 	}, {
1187 		.id		= 1,
1188 		.name		= "axp20x-regulator",
1189 	},
1190 };
1191 
1192 static const struct mfd_cell axp813_cells[] = {
1193 	{
1194 		.name		= "axp221-pek",
1195 		.num_resources	= ARRAY_SIZE(axp803_pek_resources),
1196 		.resources	= axp803_pek_resources,
1197 	}, {
1198 		.name		= "axp20x-regulator",
1199 	}, {
1200 		.name		= "axp20x-gpio",
1201 		.of_compatible	= "x-powers,axp813-gpio",
1202 	}, {
1203 		.name		= "axp813-adc",
1204 		.of_compatible	= "x-powers,axp813-adc",
1205 	}, {
1206 		.name		= "axp20x-battery-power-supply",
1207 		.of_compatible	= "x-powers,axp813-battery-power-supply",
1208 	}, {
1209 		.name		= "axp20x-ac-power-supply",
1210 		.of_compatible	= "x-powers,axp813-ac-power-supply",
1211 		.num_resources	= ARRAY_SIZE(axp20x_ac_power_supply_resources),
1212 		.resources	= axp20x_ac_power_supply_resources,
1213 	}, {
1214 		.name		= "axp20x-usb-power-supply",
1215 		.num_resources	= ARRAY_SIZE(axp803_usb_power_supply_resources),
1216 		.resources	= axp803_usb_power_supply_resources,
1217 		.of_compatible	= "x-powers,axp813-usb-power-supply",
1218 	},
1219 };
1220 
1221 static const struct mfd_cell axp15060_cells[] = {
1222 	{
1223 		.name		= "axp221-pek",
1224 		.num_resources	= ARRAY_SIZE(axp15060_pek_resources),
1225 		.resources	= axp15060_pek_resources,
1226 	}, {
1227 		.name		= "axp20x-regulator",
1228 	},
1229 };
1230 
1231 /* For boards that don't have IRQ line connected to SOC. */
1232 static const struct mfd_cell axp_regulator_only_cells[] = {
1233 	{
1234 		.name		= "axp20x-regulator",
1235 	},
1236 };
1237 
axp20x_power_off(struct sys_off_data * data)1238 static int axp20x_power_off(struct sys_off_data *data)
1239 {
1240 	struct axp20x_dev *axp20x = data->cb_data;
1241 	unsigned int shutdown_reg;
1242 
1243 	switch (axp20x->variant) {
1244 	case AXP323_ID:
1245 	case AXP313A_ID:
1246 		shutdown_reg = AXP313A_SHUTDOWN_CTRL;
1247 		break;
1248 	default:
1249 		shutdown_reg = AXP20X_OFF_CTRL;
1250 		break;
1251 	}
1252 
1253 	regmap_write(axp20x->regmap, shutdown_reg, AXP20X_OFF);
1254 
1255 	/* Give capacitors etc. time to drain to avoid kernel panic msg. */
1256 	mdelay(500);
1257 
1258 	return NOTIFY_DONE;
1259 }
1260 
axp20x_match_device(struct axp20x_dev * axp20x)1261 int axp20x_match_device(struct axp20x_dev *axp20x)
1262 {
1263 	struct device *dev = axp20x->dev;
1264 	const struct mfd_cell *cells_no_irq = NULL;
1265 	int nr_cells_no_irq = 0;
1266 
1267 	axp20x->variant = (long)device_get_match_data(dev);
1268 	switch (axp20x->variant) {
1269 	case AXP152_ID:
1270 		axp20x->nr_cells = ARRAY_SIZE(axp152_cells);
1271 		axp20x->cells = axp152_cells;
1272 		axp20x->regmap_cfg = &axp152_regmap_config;
1273 		axp20x->regmap_irq_chip = &axp152_regmap_irq_chip;
1274 		break;
1275 	case AXP192_ID:
1276 		axp20x->nr_cells = ARRAY_SIZE(axp192_cells);
1277 		axp20x->cells = axp192_cells;
1278 		axp20x->regmap_cfg = &axp192_regmap_config;
1279 		axp20x->regmap_irq_chip = &axp192_regmap_irq_chip;
1280 		break;
1281 	case AXP202_ID:
1282 	case AXP209_ID:
1283 		axp20x->nr_cells = ARRAY_SIZE(axp20x_cells);
1284 		axp20x->cells = axp20x_cells;
1285 		axp20x->regmap_cfg = &axp20x_regmap_config;
1286 		axp20x->regmap_irq_chip = &axp20x_regmap_irq_chip;
1287 		break;
1288 	case AXP221_ID:
1289 		axp20x->nr_cells = ARRAY_SIZE(axp221_cells);
1290 		axp20x->cells = axp221_cells;
1291 		axp20x->regmap_cfg = &axp22x_regmap_config;
1292 		axp20x->regmap_irq_chip = &axp22x_regmap_irq_chip;
1293 		break;
1294 	case AXP223_ID:
1295 		axp20x->nr_cells = ARRAY_SIZE(axp223_cells);
1296 		axp20x->cells = axp223_cells;
1297 		axp20x->regmap_cfg = &axp22x_regmap_config;
1298 		axp20x->regmap_irq_chip = &axp22x_regmap_irq_chip;
1299 		break;
1300 	case AXP288_ID:
1301 		axp20x->cells = axp288_cells;
1302 		axp20x->nr_cells = ARRAY_SIZE(axp288_cells);
1303 		axp20x->regmap_cfg = &axp288_regmap_config;
1304 		axp20x->regmap_irq_chip = &axp288_regmap_irq_chip;
1305 		axp20x->irq_flags = IRQF_TRIGGER_LOW;
1306 		break;
1307 	case AXP313A_ID:
1308 		axp20x->nr_cells = ARRAY_SIZE(axp313a_cells);
1309 		axp20x->cells = axp313a_cells;
1310 		axp20x->regmap_cfg = &axp313a_regmap_config;
1311 		axp20x->regmap_irq_chip = &axp313a_regmap_irq_chip;
1312 		break;
1313 	case AXP323_ID:
1314 		axp20x->nr_cells = ARRAY_SIZE(axp313a_cells);
1315 		axp20x->cells = axp313a_cells;
1316 		axp20x->regmap_cfg = &axp323_regmap_config;
1317 		axp20x->regmap_irq_chip = &axp313a_regmap_irq_chip;
1318 		break;
1319 	case AXP717_ID:
1320 		axp20x->nr_cells = ARRAY_SIZE(axp717_cells);
1321 		axp20x->cells = axp717_cells;
1322 		axp20x->regmap_cfg = &axp717_regmap_config;
1323 		axp20x->regmap_irq_chip = &axp717_regmap_irq_chip;
1324 		break;
1325 	case AXP803_ID:
1326 		axp20x->nr_cells = ARRAY_SIZE(axp803_cells);
1327 		axp20x->cells = axp803_cells;
1328 		axp20x->regmap_cfg = &axp288_regmap_config;
1329 		axp20x->regmap_irq_chip = &axp803_regmap_irq_chip;
1330 		break;
1331 	case AXP806_ID:
1332 		/*
1333 		 * Don't register the power key part if in slave mode or
1334 		 * if there is no interrupt line.
1335 		 */
1336 		if (of_property_read_bool(axp20x->dev->of_node,
1337 					  "x-powers,self-working-mode")) {
1338 			axp20x->nr_cells = ARRAY_SIZE(axp806_self_working_cells);
1339 			axp20x->cells = axp806_self_working_cells;
1340 		} else {
1341 			axp20x->nr_cells = ARRAY_SIZE(axp806_cells);
1342 			axp20x->cells = axp806_cells;
1343 		}
1344 		nr_cells_no_irq = ARRAY_SIZE(axp806_cells);
1345 		cells_no_irq = axp806_cells;
1346 		axp20x->regmap_cfg = &axp806_regmap_config;
1347 		axp20x->regmap_irq_chip = &axp806_regmap_irq_chip;
1348 		break;
1349 	case AXP809_ID:
1350 		axp20x->nr_cells = ARRAY_SIZE(axp809_cells);
1351 		axp20x->cells = axp809_cells;
1352 		axp20x->regmap_cfg = &axp22x_regmap_config;
1353 		axp20x->regmap_irq_chip = &axp809_regmap_irq_chip;
1354 		break;
1355 	case AXP813_ID:
1356 		axp20x->nr_cells = ARRAY_SIZE(axp813_cells);
1357 		axp20x->cells = axp813_cells;
1358 		axp20x->regmap_cfg = &axp288_regmap_config;
1359 		/*
1360 		 * The IRQ table given in the datasheet is incorrect.
1361 		 * In IRQ enable/status registers 1, there are separate
1362 		 * IRQs for ACIN and VBUS, instead of bits [7:5] being
1363 		 * the same as bits [4:2]. So it shares the same IRQs
1364 		 * as the AXP803, rather than the AXP288.
1365 		 */
1366 		axp20x->regmap_irq_chip = &axp803_regmap_irq_chip;
1367 		break;
1368 	case AXP15060_ID:
1369 		axp20x->nr_cells = ARRAY_SIZE(axp15060_cells);
1370 		axp20x->cells = axp15060_cells;
1371 		axp20x->regmap_cfg = &axp15060_regmap_config;
1372 		axp20x->regmap_irq_chip = &axp15060_regmap_irq_chip;
1373 		break;
1374 	default:
1375 		dev_err(dev, "unsupported AXP20X ID %u\n", axp20x->variant);
1376 		return -EINVAL;
1377 	}
1378 
1379 	/*
1380 	 * Use an alternative cell array when no interrupt line is connected,
1381 	 * since IRQs are required by some drivers.
1382 	 * The default is the safe "regulator-only", as this works fine without
1383 	 * an interrupt specified.
1384 	 */
1385 	if (axp20x->irq <= 0) {
1386 		if (cells_no_irq) {
1387 			axp20x->nr_cells = nr_cells_no_irq;
1388 			axp20x->cells = cells_no_irq;
1389 		} else {
1390 			axp20x->nr_cells = ARRAY_SIZE(axp_regulator_only_cells);
1391 			axp20x->cells = axp_regulator_only_cells;
1392 		}
1393 	}
1394 
1395 	dev_info(dev, "AXP20x variant %s found\n",
1396 		 axp20x_model_names[axp20x->variant]);
1397 
1398 	return 0;
1399 }
1400 EXPORT_SYMBOL(axp20x_match_device);
1401 
axp20x_device_probe(struct axp20x_dev * axp20x)1402 int axp20x_device_probe(struct axp20x_dev *axp20x)
1403 {
1404 	int ret;
1405 
1406 	/*
1407 	 * The AXP806 supports either master/standalone or slave mode.
1408 	 * Slave mode allows sharing the serial bus, even with multiple
1409 	 * AXP806 which all have the same hardware address.
1410 	 *
1411 	 * This is done with extra "serial interface address extension",
1412 	 * or AXP806_BUS_ADDR_EXT, and "register address extension", or
1413 	 * AXP806_REG_ADDR_EXT, registers. The former is read-only, with
1414 	 * 1 bit customizable at the factory, and 1 bit depending on the
1415 	 * state of an external pin. The latter is writable. The device
1416 	 * will only respond to operations to its other registers when
1417 	 * the these device addressing bits (in the upper 4 bits of the
1418 	 * registers) match.
1419 	 *
1420 	 * By default we support an AXP806 chained to an AXP809 in slave
1421 	 * mode. Boards which use an AXP806 in master mode can set the
1422 	 * property "x-powers,master-mode" to override the default.
1423 	 */
1424 	if (axp20x->variant == AXP806_ID) {
1425 		if (of_property_read_bool(axp20x->dev->of_node,
1426 					  "x-powers,master-mode") ||
1427 		    of_property_read_bool(axp20x->dev->of_node,
1428 					  "x-powers,self-working-mode"))
1429 			regmap_write(axp20x->regmap, AXP806_REG_ADDR_EXT,
1430 				     AXP806_REG_ADDR_EXT_ADDR_MASTER_MODE);
1431 		else
1432 			regmap_write(axp20x->regmap, AXP806_REG_ADDR_EXT,
1433 				     AXP806_REG_ADDR_EXT_ADDR_SLAVE_MODE);
1434 	}
1435 
1436 	/* Only if there is an interrupt line connected towards the CPU. */
1437 	if (axp20x->irq > 0) {
1438 		ret = regmap_add_irq_chip(axp20x->regmap, axp20x->irq,
1439 				IRQF_ONESHOT | IRQF_SHARED | axp20x->irq_flags,
1440 				-1, axp20x->regmap_irq_chip,
1441 				&axp20x->regmap_irqc);
1442 		if (ret) {
1443 			dev_err(axp20x->dev, "failed to add irq chip: %d\n",
1444 				ret);
1445 			return ret;
1446 		}
1447 	}
1448 
1449 	ret = mfd_add_devices(axp20x->dev, PLATFORM_DEVID_NONE, axp20x->cells,
1450 			      axp20x->nr_cells, NULL, 0, NULL);
1451 
1452 	if (ret) {
1453 		dev_err(axp20x->dev, "failed to add MFD devices: %d\n", ret);
1454 		regmap_del_irq_chip(axp20x->irq, axp20x->regmap_irqc);
1455 		return ret;
1456 	}
1457 
1458 	if (axp20x->variant != AXP288_ID)
1459 		devm_register_power_off_handler(axp20x->dev, axp20x_power_off, axp20x);
1460 
1461 	dev_info(axp20x->dev, "AXP20X driver loaded\n");
1462 
1463 	return 0;
1464 }
1465 EXPORT_SYMBOL(axp20x_device_probe);
1466 
axp20x_device_remove(struct axp20x_dev * axp20x)1467 void axp20x_device_remove(struct axp20x_dev *axp20x)
1468 {
1469 	mfd_remove_devices(axp20x->dev);
1470 	regmap_del_irq_chip(axp20x->irq, axp20x->regmap_irqc);
1471 }
1472 EXPORT_SYMBOL(axp20x_device_remove);
1473 
1474 MODULE_DESCRIPTION("PMIC MFD core driver for AXP20X");
1475 MODULE_AUTHOR("Carlo Caione <carlo@caione.org>");
1476 MODULE_LICENSE("GPL");
1477