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v6.13.7
   1// SPDX-License-Identifier: GPL-2.0
   2// Copyright (C) 2018 ROHM Semiconductors
   3// bd71837-regulator.c ROHM BD71837MWV/BD71847MWV regulator driver
   4
   5#include <linux/cleanup.h>
   6#include <linux/delay.h>
   7#include <linux/err.h>
   8#include <linux/interrupt.h>
   9#include <linux/kernel.h>
  10#include <linux/mfd/rohm-bd718x7.h>
  11#include <linux/module.h>
  12#include <linux/of.h>
  13#include <linux/platform_device.h>
  14#include <linux/regulator/driver.h>
  15#include <linux/regulator/machine.h>
  16#include <linux/regulator/of_regulator.h>
  17#include <linux/slab.h>
  18
  19/* Typical regulator startup times as per data sheet in uS */
  20#define BD71847_BUCK1_STARTUP_TIME 144
  21#define BD71847_BUCK2_STARTUP_TIME 162
  22#define BD71847_BUCK3_STARTUP_TIME 162
  23#define BD71847_BUCK4_STARTUP_TIME 240
  24#define BD71847_BUCK5_STARTUP_TIME 270
  25#define BD71847_BUCK6_STARTUP_TIME 200
  26#define BD71847_LDO1_STARTUP_TIME  440
  27#define BD71847_LDO2_STARTUP_TIME  370
  28#define BD71847_LDO3_STARTUP_TIME  310
  29#define BD71847_LDO4_STARTUP_TIME  400
  30#define BD71847_LDO5_STARTUP_TIME  530
  31#define BD71847_LDO6_STARTUP_TIME  400
  32
  33#define BD71837_BUCK1_STARTUP_TIME 160
  34#define BD71837_BUCK2_STARTUP_TIME 180
  35#define BD71837_BUCK3_STARTUP_TIME 180
  36#define BD71837_BUCK4_STARTUP_TIME 180
  37#define BD71837_BUCK5_STARTUP_TIME 160
  38#define BD71837_BUCK6_STARTUP_TIME 240
  39#define BD71837_BUCK7_STARTUP_TIME 220
  40#define BD71837_BUCK8_STARTUP_TIME 200
  41#define BD71837_LDO1_STARTUP_TIME  440
  42#define BD71837_LDO2_STARTUP_TIME  370
  43#define BD71837_LDO3_STARTUP_TIME  310
  44#define BD71837_LDO4_STARTUP_TIME  400
  45#define BD71837_LDO5_STARTUP_TIME  310
  46#define BD71837_LDO6_STARTUP_TIME  400
  47#define BD71837_LDO7_STARTUP_TIME  530
  48
  49/*
  50 * BD718(37/47/50) have two "enable control modes". ON/OFF can either be
  51 * controlled by software - or by PMIC internal HW state machine. Whether
  52 * regulator should be under SW or HW control can be defined from device-tree.
  53 * Let's provide separate ops for regulators to use depending on the "enable
  54 * control mode".
  55 */
  56#define BD718XX_HWOPNAME(swopname) swopname##_hwcontrol
  57
  58#define BD718XX_OPS(name, _list_voltage, _map_voltage, _set_voltage_sel, \
  59		   _get_voltage_sel, _set_voltage_time_sel, _set_ramp_delay, \
  60		   _set_uvp, _set_ovp)				\
  61static const struct regulator_ops name = {			\
  62	.enable = regulator_enable_regmap,			\
  63	.disable = regulator_disable_regmap,			\
  64	.is_enabled = regulator_is_enabled_regmap,		\
  65	.list_voltage = (_list_voltage),			\
  66	.map_voltage = (_map_voltage),				\
  67	.set_voltage_sel = (_set_voltage_sel),			\
  68	.get_voltage_sel = (_get_voltage_sel),			\
  69	.set_voltage_time_sel = (_set_voltage_time_sel),	\
  70	.set_ramp_delay = (_set_ramp_delay),			\
  71	.set_under_voltage_protection = (_set_uvp),		\
  72	.set_over_voltage_protection = (_set_ovp),		\
  73};								\
  74								\
  75static const struct regulator_ops BD718XX_HWOPNAME(name) = {	\
  76	.is_enabled = always_enabled_by_hwstate,		\
  77	.list_voltage = (_list_voltage),			\
  78	.map_voltage = (_map_voltage),				\
  79	.set_voltage_sel = (_set_voltage_sel),			\
  80	.get_voltage_sel = (_get_voltage_sel),			\
  81	.set_voltage_time_sel = (_set_voltage_time_sel),	\
  82	.set_ramp_delay = (_set_ramp_delay),			\
  83	.set_under_voltage_protection = (_set_uvp),		\
  84	.set_over_voltage_protection = (_set_ovp),		\
  85}								\
  86
  87/*
  88 * BUCK1/2/3/4
  89 * BUCK1RAMPRATE[1:0] BUCK1 DVS ramp rate setting
  90 * 00: 10.00mV/usec 10mV 1uS
  91 * 01: 5.00mV/usec	10mV 2uS
  92 * 10: 2.50mV/usec	10mV 4uS
  93 * 11: 1.25mV/usec	10mV 8uS
  94 */
  95static const unsigned int bd718xx_ramp_delay[] = { 10000, 5000, 2500, 1250 };
  96
  97/* These functions are used when regulators are under HW state machine control.
  98 * We assume PMIC is in RUN state because SW running and able to query the
  99 * status. Most of the regulators have fixed ON or OFF state at RUN/IDLE so for
 100 * them we just return a constant. BD71837 BUCK3 and BUCK4 are exceptions as
 101 * they support configuring the ON/OFF state for RUN.
 102 *
 103 * Note for next hacker - these PMICs have a register where the HW state can be
 104 * read. If assuming RUN appears to be false in your use-case - you can
 105 * implement state reading (although that is not going to be atomic) before
 106 * returning the enable state.
 107 */
 108static int always_enabled_by_hwstate(struct regulator_dev *rdev)
 109{
 110	return 1;
 111}
 112
 113static int never_enabled_by_hwstate(struct regulator_dev *rdev)
 114{
 115	return 0;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 116}
 117
 118static int bd71837_get_buck34_enable_hwctrl(struct regulator_dev *rdev)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 119{
 120	int ret;
 121	unsigned int val;
 122
 123	ret = regmap_read(rdev->regmap, rdev->desc->enable_reg, &val);
 124	if (ret)
 125		return ret;
 126
 127	return !!(BD718XX_BUCK_RUN_ON & val);
 128}
 129
 130static void voltage_change_done(struct regulator_dev *rdev, unsigned int sel,
 131				unsigned int *mask)
 132{
 133	int ret;
 134
 135	if (*mask) {
 136		/*
 137		 * Let's allow scheduling as we use I2C anyways. We just need to
 138		 * guarantee minimum of 1ms sleep - it shouldn't matter if we
 139		 * exceed it due to the scheduling.
 140		 */
 141		msleep(1);
 142
 143		ret = regmap_clear_bits(rdev->regmap, BD718XX_REG_MVRFLTMASK2,
 144					 *mask);
 
 
 
 
 
 
 
 
 145		if (ret)
 146			dev_err(&rdev->dev,
 147				"Failed to re-enable voltage monitoring (%d)\n",
 148				ret);
 149	}
 150}
 151
 152static int voltage_change_prepare(struct regulator_dev *rdev, unsigned int sel,
 153				  unsigned int *mask)
 154{
 155	int ret;
 156
 157	*mask = 0;
 158	if (rdev->desc->ops->is_enabled(rdev)) {
 159		int now, new;
 160
 161		now = rdev->desc->ops->get_voltage_sel(rdev);
 162		if (now < 0)
 163			return now;
 164
 165		now = rdev->desc->ops->list_voltage(rdev, now);
 166		if (now < 0)
 167			return now;
 168
 169		new = rdev->desc->ops->list_voltage(rdev, sel);
 170		if (new < 0)
 171			return new;
 172
 173		/*
 174		 * If we increase LDO voltage when LDO is enabled we need to
 175		 * disable the power-good detection until voltage has reached
 176		 * the new level. According to HW colleagues the maximum time
 177		 * it takes is 1000us. I assume that on systems with light load
 178		 * this might be less - and we could probably use DT to give
 179		 * system specific delay value if performance matters.
 180		 *
 181		 * Well, knowing we use I2C here and can add scheduling delays
 182		 * I don't think it is worth the hassle and I just add fixed
 183		 * 1ms sleep here (and allow scheduling). If this turns out to
 184		 * be a problem we can change it to delay and make the delay
 185		 * time configurable.
 186		 */
 187		if (new > now) {
 188			int tmp;
 189			int prot_bit;
 190			int ldo_offset = rdev->desc->id - BD718XX_LDO1;
 191
 192			prot_bit = BD718XX_LDO1_VRMON80 << ldo_offset;
 193			ret = regmap_read(rdev->regmap, BD718XX_REG_MVRFLTMASK2,
 194					  &tmp);
 195			if (ret) {
 196				dev_err(&rdev->dev,
 197					"Failed to read voltage monitoring state\n");
 198				return ret;
 199			}
 200
 201			if (!(tmp & prot_bit)) {
 202				/* We disable protection if it was enabled... */
 203				ret = regmap_set_bits(rdev->regmap,
 204						      BD718XX_REG_MVRFLTMASK2,
 205						      prot_bit);
 206				/* ...and we also want to re-enable it */
 207				*mask = prot_bit;
 208			}
 209			if (ret) {
 210				dev_err(&rdev->dev,
 211					"Failed to stop voltage monitoring\n");
 212				return ret;
 213			}
 214		}
 215	}
 216
 217	return 0;
 218}
 219
 220static int bd718xx_set_voltage_sel_restricted(struct regulator_dev *rdev,
 221						    unsigned int sel)
 222{
 223	int ret;
 224	int mask;
 225
 226	ret = voltage_change_prepare(rdev, sel, &mask);
 227	if (ret)
 228		return ret;
 229
 230	ret = regulator_set_voltage_sel_regmap(rdev, sel);
 231	voltage_change_done(rdev, sel, &mask);
 232
 233	return ret;
 234}
 235
 236static int bd718xx_set_voltage_sel_pickable_restricted(
 237		struct regulator_dev *rdev, unsigned int sel)
 238{
 239	int ret;
 240	int mask;
 241
 242	ret = voltage_change_prepare(rdev, sel, &mask);
 243	if (ret)
 244		return ret;
 245
 246	ret = regulator_set_voltage_sel_pickable_regmap(rdev, sel);
 247	voltage_change_done(rdev, sel, &mask);
 248
 249	return ret;
 250}
 251
 252static int bd71837_set_voltage_sel_pickable_restricted(
 253		struct regulator_dev *rdev, unsigned int sel)
 254{
 255	if (rdev->desc->ops->is_enabled(rdev))
 256		return -EBUSY;
 257
 258	return regulator_set_voltage_sel_pickable_regmap(rdev, sel);
 259}
 260
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 261/*
 262 * BD71837 BUCK1/2/3/4
 263 * BD71847 BUCK1/2
 264 * 0.70 to 1.30V (10mV step)
 265 */
 266static const struct linear_range bd718xx_dvs_buck_volts[] = {
 267	REGULATOR_LINEAR_RANGE(700000, 0x00, 0x3C, 10000),
 268	REGULATOR_LINEAR_RANGE(1300000, 0x3D, 0x3F, 0),
 269};
 270
 271/*
 272 * BD71837 BUCK5
 273 * 0.7V to 1.35V  (range 0)
 274 * and
 275 * 0.675 to 1.325 (range 1)
 276 */
 277static const struct linear_range bd71837_buck5_volts[] = {
 278	/* Ranges when VOLT_SEL bit is 0 */
 279	REGULATOR_LINEAR_RANGE(700000, 0x00, 0x03, 100000),
 280	REGULATOR_LINEAR_RANGE(1050000, 0x04, 0x05, 50000),
 281	REGULATOR_LINEAR_RANGE(1200000, 0x06, 0x07, 150000),
 282	/* Ranges when VOLT_SEL bit is 1  */
 283	REGULATOR_LINEAR_RANGE(675000, 0x0, 0x3, 100000),
 284	REGULATOR_LINEAR_RANGE(1025000, 0x4, 0x5, 50000),
 285	REGULATOR_LINEAR_RANGE(1175000, 0x6, 0x7, 150000),
 286};
 287
 288/*
 289 * Range selector for first 3 linear ranges is 0x0
 290 * and 0x1 for last 3 ranges.
 291 */
 292static const unsigned int bd71837_buck5_volt_range_sel[] = {
 293	0x0, 0x0, 0x0, 0x1, 0x1, 0x1
 294};
 295
 296/*
 297 * BD71847 BUCK3
 298 */
 299static const struct linear_range bd71847_buck3_volts[] = {
 300	/* Ranges when VOLT_SEL bits are 00 */
 301	REGULATOR_LINEAR_RANGE(700000, 0x00, 0x03, 100000),
 302	REGULATOR_LINEAR_RANGE(1050000, 0x04, 0x05, 50000),
 303	REGULATOR_LINEAR_RANGE(1200000, 0x06, 0x07, 150000),
 304	/* Ranges when VOLT_SEL bits are 01 */
 305	REGULATOR_LINEAR_RANGE(550000, 0x0, 0x7, 50000),
 306	/* Ranges when VOLT_SEL bits are 11 */
 307	REGULATOR_LINEAR_RANGE(675000, 0x0, 0x3, 100000),
 308	REGULATOR_LINEAR_RANGE(1025000, 0x4, 0x5, 50000),
 309	REGULATOR_LINEAR_RANGE(1175000, 0x6, 0x7, 150000),
 310};
 311
 312static const unsigned int bd71847_buck3_volt_range_sel[] = {
 313	0x0, 0x0, 0x0, 0x1, 0x2, 0x2, 0x2
 314};
 315
 316static const struct linear_range bd71847_buck4_volts[] = {
 317	REGULATOR_LINEAR_RANGE(3000000, 0x00, 0x03, 100000),
 318	REGULATOR_LINEAR_RANGE(2600000, 0x00, 0x03, 100000),
 319};
 320
 321static const unsigned int bd71847_buck4_volt_range_sel[] = { 0x0, 0x1 };
 322
 323/*
 324 * BUCK6
 325 * 3.0V to 3.3V (step 100mV)
 326 */
 327static const struct linear_range bd71837_buck6_volts[] = {
 328	REGULATOR_LINEAR_RANGE(3000000, 0x00, 0x03, 100000),
 329};
 330
 331/*
 332 * BD71837 BUCK7
 333 * BD71847 BUCK5
 334 * 000 = 1.605V
 335 * 001 = 1.695V
 336 * 010 = 1.755V
 337 * 011 = 1.8V (Initial)
 338 * 100 = 1.845V
 339 * 101 = 1.905V
 340 * 110 = 1.95V
 341 * 111 = 1.995V
 342 */
 343static const unsigned int bd718xx_3rd_nodvs_buck_volts[] = {
 344	1605000, 1695000, 1755000, 1800000, 1845000, 1905000, 1950000, 1995000
 345};
 346
 347/*
 348 * BUCK8
 349 * 0.8V to 1.40V (step 10mV)
 350 */
 351static const struct linear_range bd718xx_4th_nodvs_buck_volts[] = {
 352	REGULATOR_LINEAR_RANGE(800000, 0x00, 0x3C, 10000),
 353};
 354
 355/*
 356 * LDO1
 357 * 3.0 to 3.3V (100mV step)
 358 */
 359static const struct linear_range bd718xx_ldo1_volts[] = {
 360	REGULATOR_LINEAR_RANGE(3000000, 0x00, 0x03, 100000),
 361	REGULATOR_LINEAR_RANGE(1600000, 0x00, 0x03, 100000),
 362};
 363
 364static const unsigned int bd718xx_ldo1_volt_range_sel[] = { 0x0, 0x1 };
 365
 366/*
 367 * LDO2
 368 * 0.8 or 0.9V
 369 */
 370static const unsigned int ldo_2_volts[] = {
 371	900000, 800000
 372};
 373
 374/*
 375 * LDO3
 376 * 1.8 to 3.3V (100mV step)
 377 */
 378static const struct linear_range bd718xx_ldo3_volts[] = {
 379	REGULATOR_LINEAR_RANGE(1800000, 0x00, 0x0F, 100000),
 380};
 381
 382/*
 383 * LDO4
 384 * 0.9 to 1.8V (100mV step)
 385 */
 386static const struct linear_range bd718xx_ldo4_volts[] = {
 387	REGULATOR_LINEAR_RANGE(900000, 0x00, 0x09, 100000),
 388};
 389
 390/*
 391 * LDO5 for BD71837
 392 * 1.8 to 3.3V (100mV step)
 393 */
 394static const struct linear_range bd71837_ldo5_volts[] = {
 395	REGULATOR_LINEAR_RANGE(1800000, 0x00, 0x0F, 100000),
 396};
 397
 398/*
 399 * LDO5 for BD71837
 400 * 1.8 to 3.3V (100mV step)
 401 */
 402static const struct linear_range bd71847_ldo5_volts[] = {
 403	REGULATOR_LINEAR_RANGE(1800000, 0x00, 0x0F, 100000),
 404	REGULATOR_LINEAR_RANGE(800000, 0x00, 0x0F, 100000),
 405};
 406
 407static const unsigned int bd71847_ldo5_volt_range_sel[] = { 0x0, 0x1 };
 408
 409/*
 410 * LDO6
 411 * 0.9 to 1.8V (100mV step)
 412 */
 413static const struct linear_range bd718xx_ldo6_volts[] = {
 414	REGULATOR_LINEAR_RANGE(900000, 0x00, 0x09, 100000),
 415};
 416
 417/*
 418 * LDO7
 419 * 1.8 to 3.3V (100mV step)
 420 */
 421static const struct linear_range bd71837_ldo7_volts[] = {
 422	REGULATOR_LINEAR_RANGE(1800000, 0x00, 0x0F, 100000),
 423};
 424
 425struct reg_init {
 426	unsigned int reg;
 427	unsigned int mask;
 428	unsigned int val;
 429};
 430struct bd718xx_regulator_data {
 431	struct regulator_desc desc;
 432	const struct rohm_dvs_config dvs;
 433	const struct reg_init init;
 434	const struct reg_init *additional_inits;
 435	int additional_init_amnt;
 436};
 437
 438static int bd718x7_xvp_sanity_check(struct regulator_dev *rdev, int lim_uV,
 439				    int severity)
 440{
 441	/*
 442	 * BD71837/47/50 ... (ICs supported by this driver) do not provide
 443	 * warnings, only protection
 444	 */
 445	if (severity != REGULATOR_SEVERITY_PROT) {
 446		dev_err(&rdev->dev,
 447			"Unsupported Under Voltage protection level\n");
 448		return -EINVAL;
 449	}
 450
 451	/*
 452	 * And protection limit is not changeable. It can only be enabled
 453	 * or disabled
 454	 */
 455	if (lim_uV)
 456		return -EINVAL;
 457
 458	return 0;
 459}
 460
 461static int bd718x7_set_ldo_uvp(struct regulator_dev *rdev, int lim_uV,
 462			       int severity, bool enable)
 463{
 464	int ldo_offset = rdev->desc->id - BD718XX_LDO1;
 465	int prot_bit, ret;
 466
 467	ret = bd718x7_xvp_sanity_check(rdev, lim_uV, severity);
 468	if (ret)
 469		return ret;
 470
 471	prot_bit = BD718XX_LDO1_VRMON80 << ldo_offset;
 472
 473	if (enable)
 474		return regmap_clear_bits(rdev->regmap, BD718XX_REG_MVRFLTMASK2,
 475					 prot_bit);
 476
 477	return regmap_set_bits(rdev->regmap, BD718XX_REG_MVRFLTMASK2,
 478			       prot_bit);
 479}
 480
 481static int bd718x7_get_buck_prot_reg(int id, int *reg)
 482{
 483
 484	if (id > BD718XX_BUCK8) {
 485		WARN_ON(id > BD718XX_BUCK8);
 486		return -EINVAL;
 487	}
 488
 489	if (id > BD718XX_BUCK4)
 490		*reg = BD718XX_REG_MVRFLTMASK0;
 491	else
 492		*reg = BD718XX_REG_MVRFLTMASK1;
 493
 494	return 0;
 495}
 496
 497static int bd718x7_get_buck_ovp_info(int id, int *reg, int *bit)
 498{
 499	int ret;
 500
 501	ret = bd718x7_get_buck_prot_reg(id, reg);
 502	if (ret)
 503		return ret;
 504
 505	*bit = BIT((id % 4) * 2 + 1);
 506
 507	return 0;
 508}
 509
 510static int bd718x7_get_buck_uvp_info(int id, int *reg, int *bit)
 511{
 512	int ret;
 513
 514	ret = bd718x7_get_buck_prot_reg(id, reg);
 515	if (ret)
 516		return ret;
 517
 518	*bit = BIT((id % 4) * 2);
 519
 520	return 0;
 521}
 522
 523static int bd718x7_set_buck_uvp(struct regulator_dev *rdev, int lim_uV,
 524				int severity, bool enable)
 525{
 526	int bit, reg, ret;
 527
 528	ret = bd718x7_xvp_sanity_check(rdev, lim_uV, severity);
 529	if (ret)
 530		return ret;
 531
 532	ret = bd718x7_get_buck_uvp_info(rdev->desc->id, &reg, &bit);
 533	if (ret)
 534		return ret;
 535
 536	if (enable)
 537		return regmap_clear_bits(rdev->regmap, reg, bit);
 538
 539	return regmap_set_bits(rdev->regmap, reg, bit);
 540
 541}
 542
 543static int bd718x7_set_buck_ovp(struct regulator_dev *rdev, int lim_uV,
 544				int severity,
 545				bool enable)
 546{
 547	int bit, reg, ret;
 548
 549	ret = bd718x7_xvp_sanity_check(rdev, lim_uV, severity);
 550	if (ret)
 551		return ret;
 552
 553	ret = bd718x7_get_buck_ovp_info(rdev->desc->id, &reg, &bit);
 554	if (ret)
 555		return ret;
 556
 557	if (enable)
 558		return regmap_clear_bits(rdev->regmap, reg, bit);
 559
 560	return regmap_set_bits(rdev->regmap, reg, bit);
 561}
 562
 563/*
 564 * OPS common for BD71847 and BD71850
 565 */
 566BD718XX_OPS(bd718xx_pickable_range_ldo_ops,
 567	    regulator_list_voltage_pickable_linear_range, NULL,
 568	    bd718xx_set_voltage_sel_pickable_restricted,
 569	    regulator_get_voltage_sel_pickable_regmap, NULL, NULL,
 570	    bd718x7_set_ldo_uvp, NULL);
 571
 572/* BD71847 and BD71850 LDO 5 is by default OFF at RUN state */
 573static const struct regulator_ops bd718xx_ldo5_ops_hwstate = {
 574	.is_enabled = never_enabled_by_hwstate,
 575	.list_voltage = regulator_list_voltage_pickable_linear_range,
 576	.set_voltage_sel = bd718xx_set_voltage_sel_pickable_restricted,
 577	.get_voltage_sel = regulator_get_voltage_sel_pickable_regmap,
 578	.set_under_voltage_protection = bd718x7_set_ldo_uvp,
 579};
 580
 581BD718XX_OPS(bd718xx_pickable_range_buck_ops,
 582	    regulator_list_voltage_pickable_linear_range, NULL,
 583	    regulator_set_voltage_sel_pickable_regmap,
 584	    regulator_get_voltage_sel_pickable_regmap,
 585	    regulator_set_voltage_time_sel, NULL, bd718x7_set_buck_uvp,
 586	    bd718x7_set_buck_ovp);
 587
 588BD718XX_OPS(bd718xx_ldo_regulator_ops, regulator_list_voltage_linear_range,
 589	    NULL, bd718xx_set_voltage_sel_restricted,
 590	    regulator_get_voltage_sel_regmap, NULL, NULL, bd718x7_set_ldo_uvp,
 591	    NULL);
 592
 593BD718XX_OPS(bd718xx_ldo_regulator_nolinear_ops, regulator_list_voltage_table,
 594	    NULL, bd718xx_set_voltage_sel_restricted,
 595	    regulator_get_voltage_sel_regmap, NULL, NULL, bd718x7_set_ldo_uvp,
 596	    NULL);
 597
 598BD718XX_OPS(bd718xx_buck_regulator_ops, regulator_list_voltage_linear_range,
 599	    NULL, regulator_set_voltage_sel_regmap,
 600	    regulator_get_voltage_sel_regmap, regulator_set_voltage_time_sel,
 601	    NULL, bd718x7_set_buck_uvp, bd718x7_set_buck_ovp);
 602
 603BD718XX_OPS(bd718xx_buck_regulator_nolinear_ops, regulator_list_voltage_table,
 604	    regulator_map_voltage_ascend, regulator_set_voltage_sel_regmap,
 605	    regulator_get_voltage_sel_regmap, regulator_set_voltage_time_sel,
 606	    NULL, bd718x7_set_buck_uvp, bd718x7_set_buck_ovp);
 607
 608/*
 609 * OPS for BD71837
 610 */
 611BD718XX_OPS(bd71837_pickable_range_ldo_ops,
 612	    regulator_list_voltage_pickable_linear_range, NULL,
 613	    bd71837_set_voltage_sel_pickable_restricted,
 614	    regulator_get_voltage_sel_pickable_regmap, NULL, NULL,
 615	    bd718x7_set_ldo_uvp, NULL);
 616
 617BD718XX_OPS(bd71837_pickable_range_buck_ops,
 618	    regulator_list_voltage_pickable_linear_range, NULL,
 619	    bd71837_set_voltage_sel_pickable_restricted,
 620	    regulator_get_voltage_sel_pickable_regmap,
 621	    regulator_set_voltage_time_sel, NULL, bd718x7_set_buck_uvp,
 622	    bd718x7_set_buck_ovp);
 623
 624BD718XX_OPS(bd71837_ldo_regulator_ops, regulator_list_voltage_linear_range,
 625	    NULL, rohm_regulator_set_voltage_sel_restricted,
 626	    regulator_get_voltage_sel_regmap, NULL, NULL, bd718x7_set_ldo_uvp,
 627	    NULL);
 628
 629BD718XX_OPS(bd71837_ldo_regulator_nolinear_ops, regulator_list_voltage_table,
 630	    NULL, rohm_regulator_set_voltage_sel_restricted,
 631	    regulator_get_voltage_sel_regmap, NULL, NULL, bd718x7_set_ldo_uvp,
 632	    NULL);
 633
 634BD718XX_OPS(bd71837_buck_regulator_ops, regulator_list_voltage_linear_range,
 635	    NULL, rohm_regulator_set_voltage_sel_restricted,
 636	    regulator_get_voltage_sel_regmap, regulator_set_voltage_time_sel,
 637	    NULL, bd718x7_set_buck_uvp, bd718x7_set_buck_ovp);
 638
 639BD718XX_OPS(bd71837_buck_regulator_nolinear_ops, regulator_list_voltage_table,
 640	    regulator_map_voltage_ascend, rohm_regulator_set_voltage_sel_restricted,
 641	    regulator_get_voltage_sel_regmap, regulator_set_voltage_time_sel,
 642	    NULL, bd718x7_set_buck_uvp, bd718x7_set_buck_ovp);
 643/*
 644 * BD71837 bucks 3 and 4 support defining their enable/disable state also
 645 * when buck enable state is under HW state machine control. In that case the
 646 * bit [2] in CTRL register is used to indicate if regulator should be ON.
 647 */
 648static const struct regulator_ops bd71837_buck34_ops_hwctrl = {
 649	.is_enabled = bd71837_get_buck34_enable_hwctrl,
 650	.list_voltage = regulator_list_voltage_linear_range,
 651	.set_voltage_sel = regulator_set_voltage_sel_regmap,
 652	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 653	.set_voltage_time_sel = regulator_set_voltage_time_sel,
 654	.set_ramp_delay = regulator_set_ramp_delay_regmap,
 655	.set_under_voltage_protection = bd718x7_set_buck_uvp,
 656	.set_over_voltage_protection = bd718x7_set_buck_ovp,
 657};
 658
 659/*
 660 * OPS for all of the ICs - BD718(37/47/50)
 661 */
 662BD718XX_OPS(bd718xx_dvs_buck_regulator_ops, regulator_list_voltage_linear_range,
 663	    NULL, regulator_set_voltage_sel_regmap,
 664	    regulator_get_voltage_sel_regmap, regulator_set_voltage_time_sel,
 665	    regulator_set_ramp_delay_regmap, bd718x7_set_buck_uvp,
 666	    bd718x7_set_buck_ovp);
 667
 668
 669
 670/*
 671 * There is a HW quirk in BD71837. The shutdown sequence timings for
 672 * bucks/LDOs which are controlled via register interface are changed.
 673 * At PMIC poweroff the voltage for BUCK6/7 is cut immediately at the
 674 * beginning of shut-down sequence. As bucks 6 and 7 are parent
 675 * supplies for LDO5 and LDO6 - this causes LDO5/6 voltage
 676 * monitoring to errorneously detect under voltage and force PMIC to
 677 * emergency state instead of poweroff. In order to avoid this we
 678 * disable voltage monitoring for LDO5 and LDO6
 679 */
 680static const struct reg_init bd71837_ldo5_inits[] = {
 681	{
 682		.reg = BD718XX_REG_MVRFLTMASK2,
 683		.mask = BD718XX_LDO5_VRMON80,
 684		.val = BD718XX_LDO5_VRMON80,
 685	},
 686};
 687
 688static const struct reg_init bd71837_ldo6_inits[] = {
 689	{
 690		.reg = BD718XX_REG_MVRFLTMASK2,
 691		.mask = BD718XX_LDO6_VRMON80,
 692		.val = BD718XX_LDO6_VRMON80,
 693	},
 694};
 695
 696static int buck_set_hw_dvs_levels(struct device_node *np,
 697			    const struct regulator_desc *desc,
 698			    struct regulator_config *cfg)
 699{
 700	struct bd718xx_regulator_data *data;
 701
 702	data = container_of(desc, struct bd718xx_regulator_data, desc);
 703
 704	return rohm_regulator_set_dvs_levels(&data->dvs, np, desc, cfg->regmap);
 705}
 706
 707static const struct regulator_ops *bd71847_swcontrol_ops[] = {
 708	&bd718xx_dvs_buck_regulator_ops, &bd718xx_dvs_buck_regulator_ops,
 709	&bd718xx_pickable_range_buck_ops, &bd718xx_pickable_range_buck_ops,
 710	&bd718xx_buck_regulator_nolinear_ops, &bd718xx_buck_regulator_ops,
 711	&bd718xx_pickable_range_ldo_ops, &bd718xx_ldo_regulator_nolinear_ops,
 712	&bd718xx_ldo_regulator_ops, &bd718xx_ldo_regulator_ops,
 713	&bd718xx_pickable_range_ldo_ops, &bd718xx_ldo_regulator_ops,
 714};
 715
 716static const struct regulator_ops *bd71847_hwcontrol_ops[] = {
 717	&BD718XX_HWOPNAME(bd718xx_dvs_buck_regulator_ops),
 718	&BD718XX_HWOPNAME(bd718xx_dvs_buck_regulator_ops),
 719	&BD718XX_HWOPNAME(bd718xx_pickable_range_buck_ops),
 720	&BD718XX_HWOPNAME(bd718xx_pickable_range_buck_ops),
 721	&BD718XX_HWOPNAME(bd718xx_buck_regulator_nolinear_ops),
 722	&BD718XX_HWOPNAME(bd718xx_buck_regulator_ops),
 723	&BD718XX_HWOPNAME(bd718xx_pickable_range_ldo_ops),
 724	&BD718XX_HWOPNAME(bd718xx_ldo_regulator_nolinear_ops),
 725	&BD718XX_HWOPNAME(bd718xx_ldo_regulator_ops),
 726	&BD718XX_HWOPNAME(bd718xx_ldo_regulator_ops),
 727	&bd718xx_ldo5_ops_hwstate,
 728	&BD718XX_HWOPNAME(bd718xx_ldo_regulator_ops),
 729};
 730
 731static struct bd718xx_regulator_data bd71847_regulators[] = {
 732	{
 733		.desc = {
 734			.name = "buck1",
 735			.of_match = of_match_ptr("BUCK1"),
 736			.regulators_node = of_match_ptr("regulators"),
 737			.id = BD718XX_BUCK1,
 
 738			.type = REGULATOR_VOLTAGE,
 739			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
 740			.linear_ranges = bd718xx_dvs_buck_volts,
 741			.n_linear_ranges =
 742				ARRAY_SIZE(bd718xx_dvs_buck_volts),
 743			.vsel_reg = BD718XX_REG_BUCK1_VOLT_RUN,
 744			.vsel_mask = DVS_BUCK_RUN_MASK,
 745			.enable_reg = BD718XX_REG_BUCK1_CTRL,
 746			.enable_mask = BD718XX_BUCK_EN,
 747			.enable_time = BD71847_BUCK1_STARTUP_TIME,
 748			.owner = THIS_MODULE,
 749			.ramp_delay_table = bd718xx_ramp_delay,
 750			.n_ramp_values = ARRAY_SIZE(bd718xx_ramp_delay),
 751			.ramp_reg = BD718XX_REG_BUCK1_CTRL,
 752			.ramp_mask = BUCK_RAMPRATE_MASK,
 753			.of_parse_cb = buck_set_hw_dvs_levels,
 754		},
 755		.dvs = {
 756			.level_map = ROHM_DVS_LEVEL_RUN | ROHM_DVS_LEVEL_IDLE |
 757				     ROHM_DVS_LEVEL_SUSPEND,
 758			.run_reg = BD718XX_REG_BUCK1_VOLT_RUN,
 759			.run_mask = DVS_BUCK_RUN_MASK,
 760			.idle_reg = BD718XX_REG_BUCK1_VOLT_IDLE,
 761			.idle_mask = DVS_BUCK_RUN_MASK,
 762			.suspend_reg = BD718XX_REG_BUCK1_VOLT_SUSP,
 763			.suspend_mask = DVS_BUCK_RUN_MASK,
 764		},
 765		.init = {
 766			.reg = BD718XX_REG_BUCK1_CTRL,
 767			.mask = BD718XX_BUCK_SEL,
 768			.val = BD718XX_BUCK_SEL,
 769		},
 770	},
 771	{
 772		.desc = {
 773			.name = "buck2",
 774			.of_match = of_match_ptr("BUCK2"),
 775			.regulators_node = of_match_ptr("regulators"),
 776			.id = BD718XX_BUCK2,
 
 777			.type = REGULATOR_VOLTAGE,
 778			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
 779			.linear_ranges = bd718xx_dvs_buck_volts,
 780			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
 781			.vsel_reg = BD718XX_REG_BUCK2_VOLT_RUN,
 782			.vsel_mask = DVS_BUCK_RUN_MASK,
 783			.enable_reg = BD718XX_REG_BUCK2_CTRL,
 784			.enable_mask = BD718XX_BUCK_EN,
 785			.enable_time = BD71847_BUCK2_STARTUP_TIME,
 786			.ramp_delay_table = bd718xx_ramp_delay,
 787			.n_ramp_values = ARRAY_SIZE(bd718xx_ramp_delay),
 788			.ramp_reg = BD718XX_REG_BUCK2_CTRL,
 789			.ramp_mask = BUCK_RAMPRATE_MASK,
 790			.owner = THIS_MODULE,
 791			.of_parse_cb = buck_set_hw_dvs_levels,
 792		},
 793		.dvs = {
 794			.level_map = ROHM_DVS_LEVEL_RUN | ROHM_DVS_LEVEL_IDLE,
 795			.run_reg = BD718XX_REG_BUCK2_VOLT_RUN,
 796			.run_mask = DVS_BUCK_RUN_MASK,
 797			.idle_reg = BD718XX_REG_BUCK2_VOLT_IDLE,
 798			.idle_mask = DVS_BUCK_RUN_MASK,
 799		},
 800		.init = {
 801			.reg = BD718XX_REG_BUCK2_CTRL,
 802			.mask = BD718XX_BUCK_SEL,
 803			.val = BD718XX_BUCK_SEL,
 804		},
 805	},
 806	{
 807		.desc = {
 808			.name = "buck3",
 809			.of_match = of_match_ptr("BUCK3"),
 810			.regulators_node = of_match_ptr("regulators"),
 811			.id = BD718XX_BUCK3,
 
 812			.type = REGULATOR_VOLTAGE,
 813			.n_voltages = BD71847_BUCK3_VOLTAGE_NUM,
 814			.linear_ranges = bd71847_buck3_volts,
 815			.n_linear_ranges =
 816				ARRAY_SIZE(bd71847_buck3_volts),
 817			.vsel_reg = BD718XX_REG_1ST_NODVS_BUCK_VOLT,
 818			.vsel_mask = BD718XX_1ST_NODVS_BUCK_MASK,
 819			.vsel_range_reg = BD718XX_REG_1ST_NODVS_BUCK_VOLT,
 820			.vsel_range_mask = BD71847_BUCK3_RANGE_MASK,
 821			.linear_range_selectors_bitfield = bd71847_buck3_volt_range_sel,
 822			.enable_reg = BD718XX_REG_1ST_NODVS_BUCK_CTRL,
 823			.enable_mask = BD718XX_BUCK_EN,
 824			.enable_time = BD71847_BUCK3_STARTUP_TIME,
 825			.owner = THIS_MODULE,
 826		},
 827		.init = {
 828			.reg = BD718XX_REG_1ST_NODVS_BUCK_CTRL,
 829			.mask = BD718XX_BUCK_SEL,
 830			.val = BD718XX_BUCK_SEL,
 831		},
 832	},
 833	{
 834		.desc = {
 835			.name = "buck4",
 836			.of_match = of_match_ptr("BUCK4"),
 837			.regulators_node = of_match_ptr("regulators"),
 838			.id = BD718XX_BUCK4,
 
 839			.type = REGULATOR_VOLTAGE,
 840			.n_voltages = BD71847_BUCK4_VOLTAGE_NUM,
 841			.linear_ranges = bd71847_buck4_volts,
 842			.n_linear_ranges =
 843				ARRAY_SIZE(bd71847_buck4_volts),
 844			.enable_reg = BD718XX_REG_2ND_NODVS_BUCK_CTRL,
 845			.vsel_reg = BD718XX_REG_2ND_NODVS_BUCK_VOLT,
 846			.vsel_mask = BD71847_BUCK4_MASK,
 847			.vsel_range_reg = BD718XX_REG_2ND_NODVS_BUCK_VOLT,
 848			.vsel_range_mask = BD71847_BUCK4_RANGE_MASK,
 849			.linear_range_selectors_bitfield = bd71847_buck4_volt_range_sel,
 850			.enable_mask = BD718XX_BUCK_EN,
 851			.enable_time = BD71847_BUCK4_STARTUP_TIME,
 852			.owner = THIS_MODULE,
 853		},
 854		.init = {
 855			.reg = BD718XX_REG_2ND_NODVS_BUCK_CTRL,
 856			.mask = BD718XX_BUCK_SEL,
 857			.val = BD718XX_BUCK_SEL,
 858		},
 859	},
 860	{
 861		.desc = {
 862			.name = "buck5",
 863			.of_match = of_match_ptr("BUCK5"),
 864			.regulators_node = of_match_ptr("regulators"),
 865			.id = BD718XX_BUCK5,
 
 866			.type = REGULATOR_VOLTAGE,
 867			.volt_table = &bd718xx_3rd_nodvs_buck_volts[0],
 868			.n_voltages = ARRAY_SIZE(bd718xx_3rd_nodvs_buck_volts),
 869			.vsel_reg = BD718XX_REG_3RD_NODVS_BUCK_VOLT,
 870			.vsel_mask = BD718XX_3RD_NODVS_BUCK_MASK,
 871			.enable_reg = BD718XX_REG_3RD_NODVS_BUCK_CTRL,
 872			.enable_mask = BD718XX_BUCK_EN,
 873			.enable_time = BD71847_BUCK5_STARTUP_TIME,
 874			.owner = THIS_MODULE,
 875		},
 876		.init = {
 877			.reg = BD718XX_REG_3RD_NODVS_BUCK_CTRL,
 878			.mask = BD718XX_BUCK_SEL,
 879			.val = BD718XX_BUCK_SEL,
 880		},
 881	},
 882	{
 883		.desc = {
 884			.name = "buck6",
 885			.of_match = of_match_ptr("BUCK6"),
 886			.regulators_node = of_match_ptr("regulators"),
 887			.id = BD718XX_BUCK6,
 
 888			.type = REGULATOR_VOLTAGE,
 889			.n_voltages = BD718XX_4TH_NODVS_BUCK_VOLTAGE_NUM,
 890			.linear_ranges = bd718xx_4th_nodvs_buck_volts,
 891			.n_linear_ranges =
 892				ARRAY_SIZE(bd718xx_4th_nodvs_buck_volts),
 893			.vsel_reg = BD718XX_REG_4TH_NODVS_BUCK_VOLT,
 894			.vsel_mask = BD718XX_4TH_NODVS_BUCK_MASK,
 895			.enable_reg = BD718XX_REG_4TH_NODVS_BUCK_CTRL,
 896			.enable_mask = BD718XX_BUCK_EN,
 897			.enable_time = BD71847_BUCK6_STARTUP_TIME,
 898			.owner = THIS_MODULE,
 899		},
 900		.init = {
 901			.reg = BD718XX_REG_4TH_NODVS_BUCK_CTRL,
 902			.mask = BD718XX_BUCK_SEL,
 903			.val = BD718XX_BUCK_SEL,
 904		},
 905	},
 906	{
 907		.desc = {
 908			.name = "ldo1",
 909			.of_match = of_match_ptr("LDO1"),
 910			.regulators_node = of_match_ptr("regulators"),
 911			.id = BD718XX_LDO1,
 
 912			.type = REGULATOR_VOLTAGE,
 913			.n_voltages = BD718XX_LDO1_VOLTAGE_NUM,
 914			.linear_ranges = bd718xx_ldo1_volts,
 915			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo1_volts),
 916			.vsel_reg = BD718XX_REG_LDO1_VOLT,
 917			.vsel_mask = BD718XX_LDO1_MASK,
 918			.vsel_range_reg = BD718XX_REG_LDO1_VOLT,
 919			.vsel_range_mask = BD718XX_LDO1_RANGE_MASK,
 920			.linear_range_selectors_bitfield = bd718xx_ldo1_volt_range_sel,
 921			.enable_reg = BD718XX_REG_LDO1_VOLT,
 922			.enable_mask = BD718XX_LDO_EN,
 923			.enable_time = BD71847_LDO1_STARTUP_TIME,
 924			.owner = THIS_MODULE,
 925		},
 926		.init = {
 927			.reg = BD718XX_REG_LDO1_VOLT,
 928			.mask = BD718XX_LDO_SEL,
 929			.val = BD718XX_LDO_SEL,
 930		},
 931	},
 932	{
 933		.desc = {
 934			.name = "ldo2",
 935			.of_match = of_match_ptr("LDO2"),
 936			.regulators_node = of_match_ptr("regulators"),
 937			.id = BD718XX_LDO2,
 
 938			.type = REGULATOR_VOLTAGE,
 939			.volt_table = &ldo_2_volts[0],
 940			.vsel_reg = BD718XX_REG_LDO2_VOLT,
 941			.vsel_mask = BD718XX_LDO2_MASK,
 942			.n_voltages = ARRAY_SIZE(ldo_2_volts),
 943			.enable_reg = BD718XX_REG_LDO2_VOLT,
 944			.enable_mask = BD718XX_LDO_EN,
 945			.enable_time = BD71847_LDO2_STARTUP_TIME,
 946			.owner = THIS_MODULE,
 947		},
 948		.init = {
 949			.reg = BD718XX_REG_LDO2_VOLT,
 950			.mask = BD718XX_LDO_SEL,
 951			.val = BD718XX_LDO_SEL,
 952		},
 953	},
 954	{
 955		.desc = {
 956			.name = "ldo3",
 957			.of_match = of_match_ptr("LDO3"),
 958			.regulators_node = of_match_ptr("regulators"),
 959			.id = BD718XX_LDO3,
 
 960			.type = REGULATOR_VOLTAGE,
 961			.n_voltages = BD718XX_LDO3_VOLTAGE_NUM,
 962			.linear_ranges = bd718xx_ldo3_volts,
 963			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo3_volts),
 964			.vsel_reg = BD718XX_REG_LDO3_VOLT,
 965			.vsel_mask = BD718XX_LDO3_MASK,
 966			.enable_reg = BD718XX_REG_LDO3_VOLT,
 967			.enable_mask = BD718XX_LDO_EN,
 968			.enable_time = BD71847_LDO3_STARTUP_TIME,
 969			.owner = THIS_MODULE,
 970		},
 971		.init = {
 972			.reg = BD718XX_REG_LDO3_VOLT,
 973			.mask = BD718XX_LDO_SEL,
 974			.val = BD718XX_LDO_SEL,
 975		},
 976	},
 977	{
 978		.desc = {
 979			.name = "ldo4",
 980			.of_match = of_match_ptr("LDO4"),
 981			.regulators_node = of_match_ptr("regulators"),
 982			.id = BD718XX_LDO4,
 
 983			.type = REGULATOR_VOLTAGE,
 984			.n_voltages = BD718XX_LDO4_VOLTAGE_NUM,
 985			.linear_ranges = bd718xx_ldo4_volts,
 986			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo4_volts),
 987			.vsel_reg = BD718XX_REG_LDO4_VOLT,
 988			.vsel_mask = BD718XX_LDO4_MASK,
 989			.enable_reg = BD718XX_REG_LDO4_VOLT,
 990			.enable_mask = BD718XX_LDO_EN,
 991			.enable_time = BD71847_LDO4_STARTUP_TIME,
 992			.owner = THIS_MODULE,
 993		},
 994		.init = {
 995			.reg = BD718XX_REG_LDO4_VOLT,
 996			.mask = BD718XX_LDO_SEL,
 997			.val = BD718XX_LDO_SEL,
 998		},
 999	},
1000	{
1001		.desc = {
1002			.name = "ldo5",
1003			.of_match = of_match_ptr("LDO5"),
1004			.regulators_node = of_match_ptr("regulators"),
1005			.id = BD718XX_LDO5,
 
1006			.type = REGULATOR_VOLTAGE,
1007			.n_voltages = BD71847_LDO5_VOLTAGE_NUM,
1008			.linear_ranges = bd71847_ldo5_volts,
1009			.n_linear_ranges = ARRAY_SIZE(bd71847_ldo5_volts),
1010			.vsel_reg = BD718XX_REG_LDO5_VOLT,
1011			.vsel_mask = BD71847_LDO5_MASK,
1012			.vsel_range_reg = BD718XX_REG_LDO5_VOLT,
1013			.vsel_range_mask = BD71847_LDO5_RANGE_MASK,
1014			.linear_range_selectors_bitfield = bd71847_ldo5_volt_range_sel,
1015			.enable_reg = BD718XX_REG_LDO5_VOLT,
1016			.enable_mask = BD718XX_LDO_EN,
1017			.enable_time = BD71847_LDO5_STARTUP_TIME,
1018			.owner = THIS_MODULE,
1019		},
1020		.init = {
1021			.reg = BD718XX_REG_LDO5_VOLT,
1022			.mask = BD718XX_LDO_SEL,
1023			.val = BD718XX_LDO_SEL,
1024		},
1025	},
1026	{
1027		.desc = {
1028			.name = "ldo6",
1029			.of_match = of_match_ptr("LDO6"),
1030			.regulators_node = of_match_ptr("regulators"),
1031			.id = BD718XX_LDO6,
 
1032			.type = REGULATOR_VOLTAGE,
1033			.n_voltages = BD718XX_LDO6_VOLTAGE_NUM,
1034			.linear_ranges = bd718xx_ldo6_volts,
1035			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo6_volts),
1036			/* LDO6 is supplied by buck5 */
1037			.supply_name = "buck5",
1038			.vsel_reg = BD718XX_REG_LDO6_VOLT,
1039			.vsel_mask = BD718XX_LDO6_MASK,
1040			.enable_reg = BD718XX_REG_LDO6_VOLT,
1041			.enable_mask = BD718XX_LDO_EN,
1042			.enable_time = BD71847_LDO6_STARTUP_TIME,
1043			.owner = THIS_MODULE,
1044		},
1045		.init = {
1046			.reg = BD718XX_REG_LDO6_VOLT,
1047			.mask = BD718XX_LDO_SEL,
1048			.val = BD718XX_LDO_SEL,
1049		},
1050	},
1051};
1052
1053static const struct regulator_ops *bd71837_swcontrol_ops[] = {
1054	&bd718xx_dvs_buck_regulator_ops, &bd718xx_dvs_buck_regulator_ops,
1055	&bd718xx_dvs_buck_regulator_ops, &bd718xx_dvs_buck_regulator_ops,
1056	&bd71837_pickable_range_buck_ops, &bd71837_buck_regulator_ops,
1057	&bd71837_buck_regulator_nolinear_ops, &bd71837_buck_regulator_ops,
1058	&bd71837_pickable_range_ldo_ops, &bd71837_ldo_regulator_nolinear_ops,
1059	&bd71837_ldo_regulator_ops, &bd71837_ldo_regulator_ops,
1060	&bd71837_ldo_regulator_ops, &bd71837_ldo_regulator_ops,
1061	&bd71837_ldo_regulator_ops,
1062};
1063
1064static const struct regulator_ops *bd71837_hwcontrol_ops[] = {
1065	&BD718XX_HWOPNAME(bd718xx_dvs_buck_regulator_ops),
1066	&BD718XX_HWOPNAME(bd718xx_dvs_buck_regulator_ops),
1067	&bd71837_buck34_ops_hwctrl, &bd71837_buck34_ops_hwctrl,
1068	&BD718XX_HWOPNAME(bd71837_pickable_range_buck_ops),
1069	&BD718XX_HWOPNAME(bd71837_buck_regulator_ops),
1070	&BD718XX_HWOPNAME(bd71837_buck_regulator_nolinear_ops),
1071	&BD718XX_HWOPNAME(bd71837_buck_regulator_ops),
1072	&BD718XX_HWOPNAME(bd71837_pickable_range_ldo_ops),
1073	&BD718XX_HWOPNAME(bd71837_ldo_regulator_nolinear_ops),
1074	&BD718XX_HWOPNAME(bd71837_ldo_regulator_ops),
1075	&BD718XX_HWOPNAME(bd71837_ldo_regulator_ops),
1076	&BD718XX_HWOPNAME(bd71837_ldo_regulator_ops),
1077	&BD718XX_HWOPNAME(bd71837_ldo_regulator_ops),
1078	&BD718XX_HWOPNAME(bd71837_ldo_regulator_ops),
1079};
1080
1081static struct bd718xx_regulator_data bd71837_regulators[] = {
1082	{
1083		.desc = {
1084			.name = "buck1",
1085			.of_match = of_match_ptr("BUCK1"),
1086			.regulators_node = of_match_ptr("regulators"),
1087			.id = BD718XX_BUCK1,
 
1088			.type = REGULATOR_VOLTAGE,
1089			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
1090			.linear_ranges = bd718xx_dvs_buck_volts,
1091			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
1092			.vsel_reg = BD718XX_REG_BUCK1_VOLT_RUN,
1093			.vsel_mask = DVS_BUCK_RUN_MASK,
1094			.enable_reg = BD718XX_REG_BUCK1_CTRL,
1095			.enable_mask = BD718XX_BUCK_EN,
1096			.enable_time = BD71837_BUCK1_STARTUP_TIME,
1097			.ramp_delay_table = bd718xx_ramp_delay,
1098			.n_ramp_values = ARRAY_SIZE(bd718xx_ramp_delay),
1099			.ramp_reg = BD718XX_REG_BUCK1_CTRL,
1100			.ramp_mask = BUCK_RAMPRATE_MASK,
1101			.owner = THIS_MODULE,
1102			.of_parse_cb = buck_set_hw_dvs_levels,
1103		},
1104		.dvs = {
1105			.level_map = ROHM_DVS_LEVEL_RUN | ROHM_DVS_LEVEL_IDLE |
1106				     ROHM_DVS_LEVEL_SUSPEND,
1107			.run_reg = BD718XX_REG_BUCK1_VOLT_RUN,
1108			.run_mask = DVS_BUCK_RUN_MASK,
1109			.idle_reg = BD718XX_REG_BUCK1_VOLT_IDLE,
1110			.idle_mask = DVS_BUCK_RUN_MASK,
1111			.suspend_reg = BD718XX_REG_BUCK1_VOLT_SUSP,
1112			.suspend_mask = DVS_BUCK_RUN_MASK,
1113		},
1114		.init = {
1115			.reg = BD718XX_REG_BUCK1_CTRL,
1116			.mask = BD718XX_BUCK_SEL,
1117			.val = BD718XX_BUCK_SEL,
1118		},
1119	},
1120	{
1121		.desc = {
1122			.name = "buck2",
1123			.of_match = of_match_ptr("BUCK2"),
1124			.regulators_node = of_match_ptr("regulators"),
1125			.id = BD718XX_BUCK2,
 
1126			.type = REGULATOR_VOLTAGE,
1127			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
1128			.linear_ranges = bd718xx_dvs_buck_volts,
1129			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
1130			.vsel_reg = BD718XX_REG_BUCK2_VOLT_RUN,
1131			.vsel_mask = DVS_BUCK_RUN_MASK,
1132			.enable_reg = BD718XX_REG_BUCK2_CTRL,
1133			.enable_mask = BD718XX_BUCK_EN,
1134			.enable_time = BD71837_BUCK2_STARTUP_TIME,
1135			.ramp_delay_table = bd718xx_ramp_delay,
1136			.n_ramp_values = ARRAY_SIZE(bd718xx_ramp_delay),
1137			.ramp_reg = BD718XX_REG_BUCK2_CTRL,
1138			.ramp_mask = BUCK_RAMPRATE_MASK,
1139			.owner = THIS_MODULE,
1140			.of_parse_cb = buck_set_hw_dvs_levels,
1141		},
1142		.dvs = {
1143			.level_map = ROHM_DVS_LEVEL_RUN | ROHM_DVS_LEVEL_IDLE,
1144			.run_reg = BD718XX_REG_BUCK2_VOLT_RUN,
1145			.run_mask = DVS_BUCK_RUN_MASK,
1146			.idle_reg = BD718XX_REG_BUCK2_VOLT_IDLE,
1147			.idle_mask = DVS_BUCK_RUN_MASK,
1148		},
1149		.init = {
1150			.reg = BD718XX_REG_BUCK2_CTRL,
1151			.mask = BD718XX_BUCK_SEL,
1152			.val = BD718XX_BUCK_SEL,
1153		},
1154	},
1155	{
1156		.desc = {
1157			.name = "buck3",
1158			.of_match = of_match_ptr("BUCK3"),
1159			.regulators_node = of_match_ptr("regulators"),
1160			.id = BD718XX_BUCK3,
 
1161			.type = REGULATOR_VOLTAGE,
1162			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
1163			.linear_ranges = bd718xx_dvs_buck_volts,
1164			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
1165			.vsel_reg = BD71837_REG_BUCK3_VOLT_RUN,
1166			.vsel_mask = DVS_BUCK_RUN_MASK,
1167			.enable_reg = BD71837_REG_BUCK3_CTRL,
1168			.enable_mask = BD718XX_BUCK_EN,
1169			.enable_time = BD71837_BUCK3_STARTUP_TIME,
1170			.ramp_delay_table = bd718xx_ramp_delay,
1171			.n_ramp_values = ARRAY_SIZE(bd718xx_ramp_delay),
1172			.ramp_reg = BD71837_REG_BUCK3_CTRL,
1173			.ramp_mask = BUCK_RAMPRATE_MASK,
1174			.owner = THIS_MODULE,
1175			.of_parse_cb = buck_set_hw_dvs_levels,
1176		},
1177		.dvs = {
1178			.level_map = ROHM_DVS_LEVEL_RUN,
1179			.run_reg = BD71837_REG_BUCK3_VOLT_RUN,
1180			.run_mask = DVS_BUCK_RUN_MASK,
1181		},
1182		.init = {
1183			.reg = BD71837_REG_BUCK3_CTRL,
1184			.mask = BD718XX_BUCK_SEL,
1185			.val = BD718XX_BUCK_SEL,
1186		},
1187	},
1188	{
1189		.desc = {
1190			.name = "buck4",
1191			.of_match = of_match_ptr("BUCK4"),
1192			.regulators_node = of_match_ptr("regulators"),
1193			.id = BD718XX_BUCK4,
 
1194			.type = REGULATOR_VOLTAGE,
1195			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
1196			.linear_ranges = bd718xx_dvs_buck_volts,
1197			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
1198			.vsel_reg = BD71837_REG_BUCK4_VOLT_RUN,
1199			.vsel_mask = DVS_BUCK_RUN_MASK,
1200			.enable_reg = BD71837_REG_BUCK4_CTRL,
1201			.enable_mask = BD718XX_BUCK_EN,
1202			.enable_time = BD71837_BUCK4_STARTUP_TIME,
1203			.ramp_delay_table = bd718xx_ramp_delay,
1204			.n_ramp_values = ARRAY_SIZE(bd718xx_ramp_delay),
1205			.ramp_reg = BD71837_REG_BUCK4_CTRL,
1206			.ramp_mask = BUCK_RAMPRATE_MASK,
1207			.owner = THIS_MODULE,
1208			.of_parse_cb = buck_set_hw_dvs_levels,
1209		},
1210		.dvs = {
1211			.level_map = ROHM_DVS_LEVEL_RUN,
1212			.run_reg = BD71837_REG_BUCK4_VOLT_RUN,
1213			.run_mask = DVS_BUCK_RUN_MASK,
1214		},
1215		.init = {
1216			.reg = BD71837_REG_BUCK4_CTRL,
1217			.mask = BD718XX_BUCK_SEL,
1218			.val = BD718XX_BUCK_SEL,
1219		},
1220	},
1221	{
1222		.desc = {
1223			.name = "buck5",
1224			.of_match = of_match_ptr("BUCK5"),
1225			.regulators_node = of_match_ptr("regulators"),
1226			.id = BD718XX_BUCK5,
 
1227			.type = REGULATOR_VOLTAGE,
1228			.n_voltages = BD71837_BUCK5_VOLTAGE_NUM,
1229			.linear_ranges = bd71837_buck5_volts,
1230			.n_linear_ranges =
1231				ARRAY_SIZE(bd71837_buck5_volts),
1232			.vsel_reg = BD718XX_REG_1ST_NODVS_BUCK_VOLT,
1233			.vsel_mask = BD71837_BUCK5_MASK,
1234			.vsel_range_reg = BD718XX_REG_1ST_NODVS_BUCK_VOLT,
1235			.vsel_range_mask = BD71837_BUCK5_RANGE_MASK,
1236			.linear_range_selectors_bitfield = bd71837_buck5_volt_range_sel,
1237			.enable_reg = BD718XX_REG_1ST_NODVS_BUCK_CTRL,
1238			.enable_mask = BD718XX_BUCK_EN,
1239			.enable_time = BD71837_BUCK5_STARTUP_TIME,
1240			.owner = THIS_MODULE,
1241		},
1242		.init = {
1243			.reg = BD718XX_REG_1ST_NODVS_BUCK_CTRL,
1244			.mask = BD718XX_BUCK_SEL,
1245			.val = BD718XX_BUCK_SEL,
1246		},
1247	},
1248	{
1249		.desc = {
1250			.name = "buck6",
1251			.of_match = of_match_ptr("BUCK6"),
1252			.regulators_node = of_match_ptr("regulators"),
1253			.id = BD718XX_BUCK6,
 
1254			.type = REGULATOR_VOLTAGE,
1255			.n_voltages = BD71837_BUCK6_VOLTAGE_NUM,
1256			.linear_ranges = bd71837_buck6_volts,
1257			.n_linear_ranges =
1258				ARRAY_SIZE(bd71837_buck6_volts),
1259			.vsel_reg = BD718XX_REG_2ND_NODVS_BUCK_VOLT,
1260			.vsel_mask = BD71837_BUCK6_MASK,
1261			.enable_reg = BD718XX_REG_2ND_NODVS_BUCK_CTRL,
1262			.enable_mask = BD718XX_BUCK_EN,
1263			.enable_time = BD71837_BUCK6_STARTUP_TIME,
1264			.owner = THIS_MODULE,
1265		},
1266		.init = {
1267			.reg = BD718XX_REG_2ND_NODVS_BUCK_CTRL,
1268			.mask = BD718XX_BUCK_SEL,
1269			.val = BD718XX_BUCK_SEL,
1270		},
1271	},
1272	{
1273		.desc = {
1274			.name = "buck7",
1275			.of_match = of_match_ptr("BUCK7"),
1276			.regulators_node = of_match_ptr("regulators"),
1277			.id = BD718XX_BUCK7,
 
1278			.type = REGULATOR_VOLTAGE,
1279			.volt_table = &bd718xx_3rd_nodvs_buck_volts[0],
1280			.n_voltages = ARRAY_SIZE(bd718xx_3rd_nodvs_buck_volts),
1281			.vsel_reg = BD718XX_REG_3RD_NODVS_BUCK_VOLT,
1282			.vsel_mask = BD718XX_3RD_NODVS_BUCK_MASK,
1283			.enable_reg = BD718XX_REG_3RD_NODVS_BUCK_CTRL,
1284			.enable_mask = BD718XX_BUCK_EN,
1285			.enable_time = BD71837_BUCK7_STARTUP_TIME,
1286			.owner = THIS_MODULE,
1287		},
1288		.init = {
1289			.reg = BD718XX_REG_3RD_NODVS_BUCK_CTRL,
1290			.mask = BD718XX_BUCK_SEL,
1291			.val = BD718XX_BUCK_SEL,
1292		},
1293	},
1294	{
1295		.desc = {
1296			.name = "buck8",
1297			.of_match = of_match_ptr("BUCK8"),
1298			.regulators_node = of_match_ptr("regulators"),
1299			.id = BD718XX_BUCK8,
 
1300			.type = REGULATOR_VOLTAGE,
1301			.n_voltages = BD718XX_4TH_NODVS_BUCK_VOLTAGE_NUM,
1302			.linear_ranges = bd718xx_4th_nodvs_buck_volts,
1303			.n_linear_ranges =
1304				ARRAY_SIZE(bd718xx_4th_nodvs_buck_volts),
1305			.vsel_reg = BD718XX_REG_4TH_NODVS_BUCK_VOLT,
1306			.vsel_mask = BD718XX_4TH_NODVS_BUCK_MASK,
1307			.enable_reg = BD718XX_REG_4TH_NODVS_BUCK_CTRL,
1308			.enable_mask = BD718XX_BUCK_EN,
1309			.enable_time = BD71837_BUCK8_STARTUP_TIME,
1310			.owner = THIS_MODULE,
1311		},
1312		.init = {
1313			.reg = BD718XX_REG_4TH_NODVS_BUCK_CTRL,
1314			.mask = BD718XX_BUCK_SEL,
1315			.val = BD718XX_BUCK_SEL,
1316		},
1317	},
1318	{
1319		.desc = {
1320			.name = "ldo1",
1321			.of_match = of_match_ptr("LDO1"),
1322			.regulators_node = of_match_ptr("regulators"),
1323			.id = BD718XX_LDO1,
 
1324			.type = REGULATOR_VOLTAGE,
1325			.n_voltages = BD718XX_LDO1_VOLTAGE_NUM,
1326			.linear_ranges = bd718xx_ldo1_volts,
1327			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo1_volts),
1328			.vsel_reg = BD718XX_REG_LDO1_VOLT,
1329			.vsel_mask = BD718XX_LDO1_MASK,
1330			.vsel_range_reg = BD718XX_REG_LDO1_VOLT,
1331			.vsel_range_mask = BD718XX_LDO1_RANGE_MASK,
1332			.linear_range_selectors_bitfield = bd718xx_ldo1_volt_range_sel,
1333			.enable_reg = BD718XX_REG_LDO1_VOLT,
1334			.enable_mask = BD718XX_LDO_EN,
1335			.enable_time = BD71837_LDO1_STARTUP_TIME,
1336			.owner = THIS_MODULE,
1337		},
1338		.init = {
1339			.reg = BD718XX_REG_LDO1_VOLT,
1340			.mask = BD718XX_LDO_SEL,
1341			.val = BD718XX_LDO_SEL,
1342		},
1343	},
1344	{
1345		.desc = {
1346			.name = "ldo2",
1347			.of_match = of_match_ptr("LDO2"),
1348			.regulators_node = of_match_ptr("regulators"),
1349			.id = BD718XX_LDO2,
 
1350			.type = REGULATOR_VOLTAGE,
1351			.volt_table = &ldo_2_volts[0],
1352			.vsel_reg = BD718XX_REG_LDO2_VOLT,
1353			.vsel_mask = BD718XX_LDO2_MASK,
1354			.n_voltages = ARRAY_SIZE(ldo_2_volts),
1355			.enable_reg = BD718XX_REG_LDO2_VOLT,
1356			.enable_mask = BD718XX_LDO_EN,
1357			.enable_time = BD71837_LDO2_STARTUP_TIME,
1358			.owner = THIS_MODULE,
1359		},
1360		.init = {
1361			.reg = BD718XX_REG_LDO2_VOLT,
1362			.mask = BD718XX_LDO_SEL,
1363			.val = BD718XX_LDO_SEL,
1364		},
1365	},
1366	{
1367		.desc = {
1368			.name = "ldo3",
1369			.of_match = of_match_ptr("LDO3"),
1370			.regulators_node = of_match_ptr("regulators"),
1371			.id = BD718XX_LDO3,
 
1372			.type = REGULATOR_VOLTAGE,
1373			.n_voltages = BD718XX_LDO3_VOLTAGE_NUM,
1374			.linear_ranges = bd718xx_ldo3_volts,
1375			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo3_volts),
1376			.vsel_reg = BD718XX_REG_LDO3_VOLT,
1377			.vsel_mask = BD718XX_LDO3_MASK,
1378			.enable_reg = BD718XX_REG_LDO3_VOLT,
1379			.enable_mask = BD718XX_LDO_EN,
1380			.enable_time = BD71837_LDO3_STARTUP_TIME,
1381			.owner = THIS_MODULE,
1382		},
1383		.init = {
1384			.reg = BD718XX_REG_LDO3_VOLT,
1385			.mask = BD718XX_LDO_SEL,
1386			.val = BD718XX_LDO_SEL,
1387		},
1388	},
1389	{
1390		.desc = {
1391			.name = "ldo4",
1392			.of_match = of_match_ptr("LDO4"),
1393			.regulators_node = of_match_ptr("regulators"),
1394			.id = BD718XX_LDO4,
 
1395			.type = REGULATOR_VOLTAGE,
1396			.n_voltages = BD718XX_LDO4_VOLTAGE_NUM,
1397			.linear_ranges = bd718xx_ldo4_volts,
1398			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo4_volts),
1399			.vsel_reg = BD718XX_REG_LDO4_VOLT,
1400			.vsel_mask = BD718XX_LDO4_MASK,
1401			.enable_reg = BD718XX_REG_LDO4_VOLT,
1402			.enable_mask = BD718XX_LDO_EN,
1403			.enable_time = BD71837_LDO4_STARTUP_TIME,
1404			.owner = THIS_MODULE,
1405		},
1406		.init = {
1407			.reg = BD718XX_REG_LDO4_VOLT,
1408			.mask = BD718XX_LDO_SEL,
1409			.val = BD718XX_LDO_SEL,
1410		},
1411	},
1412	{
1413		.desc = {
1414			.name = "ldo5",
1415			.of_match = of_match_ptr("LDO5"),
1416			.regulators_node = of_match_ptr("regulators"),
1417			.id = BD718XX_LDO5,
 
1418			.type = REGULATOR_VOLTAGE,
1419			.n_voltages = BD71837_LDO5_VOLTAGE_NUM,
1420			.linear_ranges = bd71837_ldo5_volts,
1421			.n_linear_ranges = ARRAY_SIZE(bd71837_ldo5_volts),
1422			/* LDO5 is supplied by buck6 */
1423			.supply_name = "buck6",
1424			.vsel_reg = BD718XX_REG_LDO5_VOLT,
1425			.vsel_mask = BD71837_LDO5_MASK,
1426			.enable_reg = BD718XX_REG_LDO5_VOLT,
1427			.enable_mask = BD718XX_LDO_EN,
1428			.enable_time = BD71837_LDO5_STARTUP_TIME,
1429			.owner = THIS_MODULE,
1430		},
1431		.init = {
1432			.reg = BD718XX_REG_LDO5_VOLT,
1433			.mask = BD718XX_LDO_SEL,
1434			.val = BD718XX_LDO_SEL,
1435		},
1436		.additional_inits = bd71837_ldo5_inits,
1437		.additional_init_amnt = ARRAY_SIZE(bd71837_ldo5_inits),
1438	},
1439	{
1440		.desc = {
1441			.name = "ldo6",
1442			.of_match = of_match_ptr("LDO6"),
1443			.regulators_node = of_match_ptr("regulators"),
1444			.id = BD718XX_LDO6,
 
1445			.type = REGULATOR_VOLTAGE,
1446			.n_voltages = BD718XX_LDO6_VOLTAGE_NUM,
1447			.linear_ranges = bd718xx_ldo6_volts,
1448			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo6_volts),
1449			/* LDO6 is supplied by buck7 */
1450			.supply_name = "buck7",
1451			.vsel_reg = BD718XX_REG_LDO6_VOLT,
1452			.vsel_mask = BD718XX_LDO6_MASK,
1453			.enable_reg = BD718XX_REG_LDO6_VOLT,
1454			.enable_mask = BD718XX_LDO_EN,
1455			.enable_time = BD71837_LDO6_STARTUP_TIME,
1456			.owner = THIS_MODULE,
1457		},
1458		.init = {
1459			.reg = BD718XX_REG_LDO6_VOLT,
1460			.mask = BD718XX_LDO_SEL,
1461			.val = BD718XX_LDO_SEL,
1462		},
1463		.additional_inits = bd71837_ldo6_inits,
1464		.additional_init_amnt = ARRAY_SIZE(bd71837_ldo6_inits),
1465	},
1466	{
1467		.desc = {
1468			.name = "ldo7",
1469			.of_match = of_match_ptr("LDO7"),
1470			.regulators_node = of_match_ptr("regulators"),
1471			.id = BD718XX_LDO7,
 
1472			.type = REGULATOR_VOLTAGE,
1473			.n_voltages = BD71837_LDO7_VOLTAGE_NUM,
1474			.linear_ranges = bd71837_ldo7_volts,
1475			.n_linear_ranges = ARRAY_SIZE(bd71837_ldo7_volts),
1476			.vsel_reg = BD71837_REG_LDO7_VOLT,
1477			.vsel_mask = BD71837_LDO7_MASK,
1478			.enable_reg = BD71837_REG_LDO7_VOLT,
1479			.enable_mask = BD718XX_LDO_EN,
1480			.enable_time = BD71837_LDO7_STARTUP_TIME,
1481			.owner = THIS_MODULE,
1482		},
1483		.init = {
1484			.reg = BD71837_REG_LDO7_VOLT,
1485			.mask = BD718XX_LDO_SEL,
1486			.val = BD718XX_LDO_SEL,
1487		},
1488	},
1489};
1490
1491static void mark_hw_controlled(struct device *dev, struct device_node *np,
1492			       struct bd718xx_regulator_data *reg_data,
1493			       unsigned int num_reg_data, int *info)
1494{
1495	int i;
1496
1497	for (i = 1; i <= num_reg_data; i++) {
1498		if (!of_node_name_eq(np, reg_data[i-1].desc.of_match))
1499			continue;
1500
1501		*info |= 1 << (i - 1);
1502		dev_dbg(dev, "regulator %d runlevel controlled\n", i);
1503		return;
1504	}
1505	dev_warn(dev, "Bad regulator node\n");
1506}
1507
1508/*
1509 * Setups where regulator (especially the buck8) output voltage is scaled
1510 * by adding external connection where some other regulator output is connected
1511 * to feedback-pin (over suitable resistors) is getting popular amongst users
1512 * of BD71837. (This allows for example scaling down the buck8 voltages to suit
1513 * lover GPU voltages for projects where buck8 is (ab)used to supply power
1514 * for GPU. Additionally some setups do allow DVS for buck8 but as this do
1515 * produce voltage spikes the HW must be evaluated to be able to survive this
1516 * - hence I keep the DVS disabled for non DVS bucks by default. I don't want
1517 * to help you burn your proto board)
1518 *
1519 * So we allow describing this external connection from DT and scale the
1520 * voltages accordingly. This is what the connection should look like:
1521 *
1522 * |------------|
1523 * |	buck 8  |-------+----->Vout
1524 * |		|	|
1525 * |------------|	|
1526 *	| FB pin	|
1527 *	|		|
1528 *	+-------+--R2---+
1529 *		|
1530 *		R1
1531 *		|
1532 *	V FB-pull-up
1533 *
1534 *	Here the buck output is sifted according to formula:
1535 *
1536 * Vout_o = Vo - (Vpu - Vo)*R2/R1
1537 * Linear_step = step_orig*(R1+R2)/R1
1538 *
1539 * where:
1540 * Vout_o is adjusted voltage output at vsel reg value 0
1541 * Vo is original voltage output at vsel reg value 0
1542 * Vpu is the pull-up voltage V FB-pull-up in the picture
1543 * R1 and R2 are resistor values.
1544 *
1545 * As a real world example for buck8 and a specific GPU:
1546 * VLDO = 1.6V (used as FB-pull-up)
1547 * R1 = 1000ohms
1548 * R2 = 150ohms
1549 * VSEL 0x0 => 0.8V – (VLDO – 0.8) * R2 / R1 = 0.68V
1550 * Linear Step = 10mV * (R1 + R2) / R1 = 11.5mV
1551 */
1552static int setup_feedback_loop(struct device *dev, struct device_node *np,
1553			       struct bd718xx_regulator_data *reg_data,
1554			       unsigned int num_reg_data, int fb_uv)
1555{
1556	int i, r1, r2, ret;
1557
1558	/*
1559	 * We do adjust the values in the global desc based on DT settings.
1560	 * This may not be best approach as it can cause problems if more than
1561	 * one PMIC is controlled from same processor. I don't see such use-case
1562	 * for BD718x7 now - so we spare some bits.
1563	 *
1564	 * If this will point out to be a problem - then we can allocate new
1565	 * bd718xx_regulator_data array at probe and just use the global
1566	 * array as a template where we copy initial values. Then we can
1567	 * use allocated descs for regultor registration and do IC specific
1568	 * modifications to this copy while leaving other PMICs untouched. But
1569	 * that means allocating new array for each PMIC - and currently I see
1570	 * no need for that.
1571	 */
1572
1573	for (i = 0; i < num_reg_data; i++) {
1574		struct regulator_desc *desc = &reg_data[i].desc;
1575		int j;
1576
1577		if (!of_node_name_eq(np, desc->of_match))
1578			continue;
1579
1580		/* The feedback loop connection does not make sense for LDOs */
1581		if (desc->id >= BD718XX_LDO1)
1582			return -EINVAL;
1583
1584		ret = of_property_read_u32(np, "rohm,feedback-pull-up-r1-ohms",
1585					   &r1);
1586		if (ret)
1587			return ret;
1588
1589		if (!r1)
1590			return -EINVAL;
1591
1592		ret = of_property_read_u32(np, "rohm,feedback-pull-up-r2-ohms",
1593					   &r2);
1594		if (ret)
1595			return ret;
1596
1597		if (desc->n_linear_ranges && desc->linear_ranges) {
1598			struct linear_range *new;
1599
1600			new = devm_kzalloc(dev, desc->n_linear_ranges *
1601					   sizeof(struct linear_range),
1602					   GFP_KERNEL);
1603			if (!new)
1604				return -ENOMEM;
1605
1606			for (j = 0; j < desc->n_linear_ranges; j++) {
1607				int min = desc->linear_ranges[j].min;
1608				int step = desc->linear_ranges[j].step;
1609
1610				min -= (fb_uv - min)*r2/r1;
1611				step = step * (r1 + r2);
1612				step /= r1;
1613
1614				new[j].min = min;
1615				new[j].step = step;
1616
1617				dev_dbg(dev, "%s: old range min %d, step %d\n",
1618					desc->name, desc->linear_ranges[j].min,
1619					desc->linear_ranges[j].step);
1620				dev_dbg(dev, "new range min %d, step %d\n", min,
1621					step);
1622			}
1623			desc->linear_ranges = new;
1624		}
1625		dev_dbg(dev, "regulator '%s' has FB pull-up configured\n",
1626			desc->name);
1627
1628		return 0;
1629	}
1630
1631	return -ENODEV;
1632}
1633
1634static int get_special_regulators(struct device *dev,
1635				  struct bd718xx_regulator_data *reg_data,
1636				  unsigned int num_reg_data, int *info)
1637{
1638	int ret;
1639	int uv;
1640
1641	*info = 0;
1642
1643	struct device_node *nproot __free(device_node) = of_get_child_by_name(dev->of_node,
1644									      "regulators");
1645	if (!nproot) {
1646		dev_err(dev, "failed to find regulators node\n");
1647		return -ENODEV;
1648	}
1649	for_each_child_of_node_scoped(nproot, np) {
1650		if (of_property_read_bool(np, "rohm,no-regulator-enable-control"))
1651			mark_hw_controlled(dev, np, reg_data, num_reg_data,
1652					   info);
1653		ret = of_property_read_u32(np, "rohm,fb-pull-up-microvolt",
1654					   &uv);
1655		if (ret) {
1656			if (ret == -EINVAL)
1657				continue;
1658			else
1659				return ret;
1660		}
1661
1662		ret = setup_feedback_loop(dev, np, reg_data, num_reg_data, uv);
1663		if (ret)
1664			return ret;
1665	}
1666
1667	return 0;
1668}
1669
1670static int bd718xx_probe(struct platform_device *pdev)
1671{
1672	struct regmap *regmap;
1673	struct regulator_config config = { 0 };
1674	int i, j, err, omit_enable;
1675	bool use_snvs;
1676	struct bd718xx_regulator_data *reg_data;
1677	unsigned int num_reg_data;
1678	enum rohm_chip_type chip = platform_get_device_id(pdev)->driver_data;
1679	const struct regulator_ops **swops, **hwops;
1680
1681	regmap = dev_get_regmap(pdev->dev.parent, NULL);
1682	if (!regmap) {
1683		dev_err(&pdev->dev, "No MFD driver data\n");
1684		return -EINVAL;
 
1685	}
1686
1687	switch (chip) {
1688	case ROHM_CHIP_TYPE_BD71837:
1689		reg_data = bd71837_regulators;
1690		num_reg_data = ARRAY_SIZE(bd71837_regulators);
1691		swops = &bd71837_swcontrol_ops[0];
1692		hwops = &bd71837_hwcontrol_ops[0];
1693		break;
1694	case ROHM_CHIP_TYPE_BD71847:
1695		reg_data = bd71847_regulators;
1696		num_reg_data = ARRAY_SIZE(bd71847_regulators);
1697		swops = &bd71847_swcontrol_ops[0];
1698		hwops = &bd71847_hwcontrol_ops[0];
1699		break;
1700	default:
1701		dev_err(&pdev->dev, "Unsupported chip type\n");
1702		return -EINVAL;
 
1703	}
1704
1705	/* Register LOCK release */
1706	err = regmap_update_bits(regmap, BD718XX_REG_REGLOCK,
1707				 (REGLOCK_PWRSEQ | REGLOCK_VREG), 0);
1708	if (err)
1709		return dev_err_probe(&pdev->dev, err, "Failed to unlock PMIC\n");
1710
1711	dev_dbg(&pdev->dev, "Unlocked lock register 0x%x\n",
1712		BD718XX_REG_REGLOCK);
 
 
1713
1714	use_snvs = of_property_read_bool(pdev->dev.parent->of_node,
1715					 "rohm,reset-snvs-powered");
1716
1717	/*
1718	 * Change the next stage from poweroff to be READY instead of SNVS
1719	 * for all reset types because OTP loading at READY will clear SEL
1720	 * bit allowing HW defaults for power rails to be used
1721	 */
1722	if (!use_snvs) {
1723		err = regmap_update_bits(regmap, BD718XX_REG_TRANS_COND1,
 
1724					 BD718XX_ON_REQ_POWEROFF_MASK |
1725					 BD718XX_SWRESET_POWEROFF_MASK |
1726					 BD718XX_WDOG_POWEROFF_MASK |
1727					 BD718XX_KEY_L_POWEROFF_MASK,
1728					 BD718XX_POWOFF_TO_RDY);
1729		if (err)
1730			return dev_err_probe(&pdev->dev, err,
1731					     "Failed to change reset target\n");
1732
1733		dev_dbg(&pdev->dev, "Changed all resets from SVNS to READY\n");
 
 
1734	}
1735
1736	config.dev = pdev->dev.parent;
1737	config.regmap = regmap;
1738	/*
1739	 * There are cases when we want to leave the enable-control for
1740	 * the HW state machine and use this driver only for voltage control.
1741	 * One special case is when we use PMIC_STBY_REQ line from SoC to PMIC
1742	 * in order to set the system to SUSPEND state.
1743	 *
1744	 * If regulator is taken under SW control the regulator state will not
1745	 * be affected by PMIC state machine - Eg. regulator is likely to stay
1746	 * on even in SUSPEND
1747	 */
1748	err = get_special_regulators(pdev->dev.parent, reg_data, num_reg_data,
1749				     &omit_enable);
1750	if (err)
1751		return err;
1752
1753	for (i = 0; i < num_reg_data; i++) {
1754
1755		struct regulator_desc *desc;
1756		struct regulator_dev *rdev;
1757		struct bd718xx_regulator_data *r;
1758		int no_enable_control = omit_enable & (1 << i);
1759
1760		r = &reg_data[i];
1761		desc = &r->desc;
1762
1763		if (no_enable_control)
1764			desc->ops = hwops[i];
1765		else
1766			desc->ops = swops[i];
1767
1768		rdev = devm_regulator_register(&pdev->dev, desc, &config);
1769		if (IS_ERR(rdev))
1770			return dev_err_probe(&pdev->dev, PTR_ERR(rdev),
1771					     "failed to register %s regulator\n",
1772					     desc->name);
 
 
 
1773
1774		/*
1775		 * Regulator register gets the regulator constraints and
1776		 * applies them (set_machine_constraints). This should have
1777		 * turned the control register(s) to correct values and we
1778		 * can now switch the control from PMIC state machine to the
1779		 * register interface
1780		 *
1781		 * At poweroff transition PMIC HW disables EN bit for
1782		 * regulators but leaves SEL bit untouched. So if state
1783		 * transition from POWEROFF is done to SNVS - then all power
1784		 * rails controlled by SW (having SEL bit set) stay disabled
1785		 * as EN is cleared. This will result boot failure if any
1786		 * crucial systems are powered by these rails. We don't
1787		 * enable SW control for crucial regulators if snvs state is
1788		 * used
1789		 */
1790		if (!no_enable_control && (!use_snvs ||
1791		    !rdev->constraints->always_on ||
1792		    !rdev->constraints->boot_on)) {
1793			err = regmap_update_bits(regmap, r->init.reg,
1794						 r->init.mask, r->init.val);
1795			if (err)
1796				return dev_err_probe(&pdev->dev, err,
1797					"Failed to take control for (%s)\n",
1798					desc->name);
 
 
1799		}
1800		for (j = 0; j < r->additional_init_amnt; j++) {
1801			err = regmap_update_bits(regmap,
1802						 r->additional_inits[j].reg,
1803						 r->additional_inits[j].mask,
1804						 r->additional_inits[j].val);
1805			if (err)
1806				return dev_err_probe(&pdev->dev, err,
1807					"Buck (%s) initialization failed\n",
1808					desc->name);
 
 
1809		}
1810	}
1811
 
1812	return err;
1813}
1814
1815static const struct platform_device_id bd718x7_pmic_id[] = {
1816	{ "bd71837-pmic", ROHM_CHIP_TYPE_BD71837 },
1817	{ "bd71847-pmic", ROHM_CHIP_TYPE_BD71847 },
1818	{ },
1819};
1820MODULE_DEVICE_TABLE(platform, bd718x7_pmic_id);
1821
1822static struct platform_driver bd718xx_regulator = {
1823	.driver = {
1824		.name = "bd718xx-pmic",
1825		.probe_type = PROBE_PREFER_ASYNCHRONOUS,
1826	},
1827	.probe = bd718xx_probe,
1828	.id_table = bd718x7_pmic_id,
1829};
1830
1831module_platform_driver(bd718xx_regulator);
1832
1833MODULE_AUTHOR("Matti Vaittinen <matti.vaittinen@fi.rohmeurope.com>");
1834MODULE_DESCRIPTION("BD71837/BD71847 voltage regulator driver");
1835MODULE_LICENSE("GPL");
1836MODULE_ALIAS("platform:bd718xx-pmic");
v5.9
   1// SPDX-License-Identifier: GPL-2.0
   2// Copyright (C) 2018 ROHM Semiconductors
   3// bd71837-regulator.c ROHM BD71837MWV/BD71847MWV regulator driver
   4
 
   5#include <linux/delay.h>
   6#include <linux/err.h>
   7#include <linux/interrupt.h>
   8#include <linux/kernel.h>
   9#include <linux/mfd/rohm-bd718x7.h>
  10#include <linux/module.h>
  11#include <linux/of.h>
  12#include <linux/platform_device.h>
  13#include <linux/regulator/driver.h>
  14#include <linux/regulator/machine.h>
  15#include <linux/regulator/of_regulator.h>
  16#include <linux/slab.h>
  17
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  18/*
  19 * BUCK1/2/3/4
  20 * BUCK1RAMPRATE[1:0] BUCK1 DVS ramp rate setting
  21 * 00: 10.00mV/usec 10mV 1uS
  22 * 01: 5.00mV/usec	10mV 2uS
  23 * 10: 2.50mV/usec	10mV 4uS
  24 * 11: 1.25mV/usec	10mV 8uS
  25 */
  26static int bd718xx_buck1234_set_ramp_delay(struct regulator_dev *rdev,
  27					   int ramp_delay)
 
 
 
 
 
 
 
 
 
 
 
 
  28{
  29	int id = rdev_get_id(rdev);
  30	unsigned int ramp_value;
  31
  32	dev_dbg(&rdev->dev, "Buck[%d] Set Ramp = %d\n", id + 1,
  33		ramp_delay);
  34	switch (ramp_delay) {
  35	case 1 ... 1250:
  36		ramp_value = BUCK_RAMPRATE_1P25MV;
  37		break;
  38	case 1251 ... 2500:
  39		ramp_value = BUCK_RAMPRATE_2P50MV;
  40		break;
  41	case 2501 ... 5000:
  42		ramp_value = BUCK_RAMPRATE_5P00MV;
  43		break;
  44	case 5001 ... 10000:
  45		ramp_value = BUCK_RAMPRATE_10P00MV;
  46		break;
  47	default:
  48		ramp_value = BUCK_RAMPRATE_10P00MV;
  49		dev_err(&rdev->dev,
  50			"%s: ramp_delay: %d not supported, setting 10000mV//us\n",
  51			rdev->desc->name, ramp_delay);
  52	}
  53
  54	return regmap_update_bits(rdev->regmap, BD718XX_REG_BUCK1_CTRL + id,
  55				  BUCK_RAMPRATE_MASK, ramp_value << 6);
  56}
  57
  58/*
  59 * On BD71837 (not on BD71847, BD71850, ...)
  60 * Bucks 1 to 4 support DVS. PWM mode is used when voltage is changed.
  61 * Bucks 5 to 8 and LDOs can use PFM and must be disabled when voltage
  62 * is changed. Hence we return -EBUSY for these if voltage is changed
  63 * when BUCK/LDO is enabled.
  64 *
  65 * On BD71847, BD71850, ... The LDO voltage can be changed when LDO is
  66 * enabled. But if voltage is increased the LDO power-good monitoring
  67 * must be disabled for the duration of changing + 1mS to ensure voltage
  68 * has reached the higher level before HW does next under voltage detection
  69 * cycle.
  70 */
  71static int bd71837_set_voltage_sel_restricted(struct regulator_dev *rdev,
  72						    unsigned int sel)
  73{
  74	if (regulator_is_enabled_regmap(rdev))
  75		return -EBUSY;
 
 
 
 
  76
  77	return regulator_set_voltage_sel_regmap(rdev, sel);
  78}
  79
  80static void voltage_change_done(struct regulator_dev *rdev, unsigned int sel,
  81				unsigned int *mask)
  82{
  83	int ret;
  84
  85	if (*mask) {
  86		/*
  87		 * Let's allow scheduling as we use I2C anyways. We just need to
  88		 * guarantee minimum of 1ms sleep - it shouldn't matter if we
  89		 * exceed it due to the scheduling.
  90		 */
  91		msleep(1);
  92		/*
  93		 * Note for next hacker. The PWRGOOD should not be masked on
  94		 * BD71847 so we will just unconditionally enable detection
  95		 * when voltage is set.
  96		 * If someone want's to disable PWRGOOD he must implement
  97		 * caching and restoring the old value here. I am not
  98		 * aware of such use-cases so for the sake of the simplicity
  99		 * we just always enable PWRGOOD here.
 100		 */
 101		ret = regmap_update_bits(rdev->regmap, BD718XX_REG_MVRFLTMASK2,
 102					 *mask, 0);
 103		if (ret)
 104			dev_err(&rdev->dev,
 105				"Failed to re-enable voltage monitoring (%d)\n",
 106				ret);
 107	}
 108}
 109
 110static int voltage_change_prepare(struct regulator_dev *rdev, unsigned int sel,
 111				  unsigned int *mask)
 112{
 113	int ret;
 114
 115	*mask = 0;
 116	if (regulator_is_enabled_regmap(rdev)) {
 117		int now, new;
 118
 119		now = rdev->desc->ops->get_voltage_sel(rdev);
 120		if (now < 0)
 121			return now;
 122
 123		now = rdev->desc->ops->list_voltage(rdev, now);
 124		if (now < 0)
 125			return now;
 126
 127		new = rdev->desc->ops->list_voltage(rdev, sel);
 128		if (new < 0)
 129			return new;
 130
 131		/*
 132		 * If we increase LDO voltage when LDO is enabled we need to
 133		 * disable the power-good detection until voltage has reached
 134		 * the new level. According to HW colleagues the maximum time
 135		 * it takes is 1000us. I assume that on systems with light load
 136		 * this might be less - and we could probably use DT to give
 137		 * system specific delay value if performance matters.
 138		 *
 139		 * Well, knowing we use I2C here and can add scheduling delays
 140		 * I don't think it is worth the hassle and I just add fixed
 141		 * 1ms sleep here (and allow scheduling). If this turns out to
 142		 * be a problem we can change it to delay and make the delay
 143		 * time configurable.
 144		 */
 145		if (new > now) {
 
 
 146			int ldo_offset = rdev->desc->id - BD718XX_LDO1;
 147
 148			*mask = BD718XX_LDO1_VRMON80 << ldo_offset;
 149			ret = regmap_update_bits(rdev->regmap,
 150						 BD718XX_REG_MVRFLTMASK2,
 151						 *mask, *mask);
 
 
 
 
 
 
 
 
 
 
 
 
 
 152			if (ret) {
 153				dev_err(&rdev->dev,
 154					"Failed to stop voltage monitoring\n");
 155				return ret;
 156			}
 157		}
 158	}
 159
 160	return 0;
 161}
 162
 163static int bd718xx_set_voltage_sel_restricted(struct regulator_dev *rdev,
 164						    unsigned int sel)
 165{
 166	int ret;
 167	int mask;
 168
 169	ret = voltage_change_prepare(rdev, sel, &mask);
 170	if (ret)
 171		return ret;
 172
 173	ret = regulator_set_voltage_sel_regmap(rdev, sel);
 174	voltage_change_done(rdev, sel, &mask);
 175
 176	return ret;
 177}
 178
 179static int bd718xx_set_voltage_sel_pickable_restricted(
 180		struct regulator_dev *rdev, unsigned int sel)
 181{
 182	int ret;
 183	int mask;
 184
 185	ret = voltage_change_prepare(rdev, sel, &mask);
 186	if (ret)
 187		return ret;
 188
 189	ret = regulator_set_voltage_sel_pickable_regmap(rdev, sel);
 190	voltage_change_done(rdev, sel, &mask);
 191
 192	return ret;
 193}
 194
 195static int bd71837_set_voltage_sel_pickable_restricted(
 196		struct regulator_dev *rdev, unsigned int sel)
 197{
 198	if (regulator_is_enabled_regmap(rdev))
 199		return -EBUSY;
 200
 201	return regulator_set_voltage_sel_pickable_regmap(rdev, sel);
 202}
 203
 204static const struct regulator_ops bd718xx_pickable_range_ldo_ops = {
 205	.enable = regulator_enable_regmap,
 206	.disable = regulator_disable_regmap,
 207	.is_enabled = regulator_is_enabled_regmap,
 208	.list_voltage = regulator_list_voltage_pickable_linear_range,
 209	.set_voltage_sel = bd718xx_set_voltage_sel_pickable_restricted,
 210	.get_voltage_sel = regulator_get_voltage_sel_pickable_regmap,
 211
 212};
 213
 214static const struct regulator_ops bd71837_pickable_range_ldo_ops = {
 215	.enable = regulator_enable_regmap,
 216	.disable = regulator_disable_regmap,
 217	.is_enabled = regulator_is_enabled_regmap,
 218	.list_voltage = regulator_list_voltage_pickable_linear_range,
 219	.set_voltage_sel = bd71837_set_voltage_sel_pickable_restricted,
 220	.get_voltage_sel = regulator_get_voltage_sel_pickable_regmap,
 221};
 222
 223static const struct regulator_ops bd718xx_pickable_range_buck_ops = {
 224	.enable = regulator_enable_regmap,
 225	.disable = regulator_disable_regmap,
 226	.is_enabled = regulator_is_enabled_regmap,
 227	.list_voltage = regulator_list_voltage_pickable_linear_range,
 228	.set_voltage_sel = regulator_set_voltage_sel_pickable_regmap,
 229	.get_voltage_sel = regulator_get_voltage_sel_pickable_regmap,
 230	.set_voltage_time_sel = regulator_set_voltage_time_sel,
 231};
 232
 233static const struct regulator_ops bd71837_pickable_range_buck_ops = {
 234	.enable = regulator_enable_regmap,
 235	.disable = regulator_disable_regmap,
 236	.is_enabled = regulator_is_enabled_regmap,
 237	.list_voltage = regulator_list_voltage_pickable_linear_range,
 238	.set_voltage_sel = bd71837_set_voltage_sel_pickable_restricted,
 239	.get_voltage_sel = regulator_get_voltage_sel_pickable_regmap,
 240	.set_voltage_time_sel = regulator_set_voltage_time_sel,
 241};
 242
 243static const struct regulator_ops bd71837_ldo_regulator_ops = {
 244	.enable = regulator_enable_regmap,
 245	.disable = regulator_disable_regmap,
 246	.is_enabled = regulator_is_enabled_regmap,
 247	.list_voltage = regulator_list_voltage_linear_range,
 248	.set_voltage_sel = bd71837_set_voltage_sel_restricted,
 249	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 250};
 251
 252static const struct regulator_ops bd718xx_ldo_regulator_ops = {
 253	.enable = regulator_enable_regmap,
 254	.disable = regulator_disable_regmap,
 255	.is_enabled = regulator_is_enabled_regmap,
 256	.list_voltage = regulator_list_voltage_linear_range,
 257	.set_voltage_sel = bd718xx_set_voltage_sel_restricted,
 258	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 259};
 260
 261static const struct regulator_ops bd71837_ldo_regulator_nolinear_ops = {
 262	.enable = regulator_enable_regmap,
 263	.disable = regulator_disable_regmap,
 264	.is_enabled = regulator_is_enabled_regmap,
 265	.list_voltage = regulator_list_voltage_table,
 266	.set_voltage_sel = bd71837_set_voltage_sel_restricted,
 267	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 268};
 269
 270static const struct regulator_ops bd718xx_ldo_regulator_nolinear_ops = {
 271	.enable = regulator_enable_regmap,
 272	.disable = regulator_disable_regmap,
 273	.is_enabled = regulator_is_enabled_regmap,
 274	.list_voltage = regulator_list_voltage_table,
 275	.set_voltage_sel = bd718xx_set_voltage_sel_restricted,
 276	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 277};
 278
 279static const struct regulator_ops bd718xx_buck_regulator_ops = {
 280	.enable = regulator_enable_regmap,
 281	.disable = regulator_disable_regmap,
 282	.is_enabled = regulator_is_enabled_regmap,
 283	.list_voltage = regulator_list_voltage_linear_range,
 284	.set_voltage_sel = regulator_set_voltage_sel_regmap,
 285	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 286	.set_voltage_time_sel = regulator_set_voltage_time_sel,
 287};
 288
 289static const struct regulator_ops bd71837_buck_regulator_ops = {
 290	.enable = regulator_enable_regmap,
 291	.disable = regulator_disable_regmap,
 292	.is_enabled = regulator_is_enabled_regmap,
 293	.list_voltage = regulator_list_voltage_linear_range,
 294	.set_voltage_sel = bd71837_set_voltage_sel_restricted,
 295	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 296	.set_voltage_time_sel = regulator_set_voltage_time_sel,
 297};
 298
 299static const struct regulator_ops bd718xx_buck_regulator_nolinear_ops = {
 300	.enable = regulator_enable_regmap,
 301	.disable = regulator_disable_regmap,
 302	.is_enabled = regulator_is_enabled_regmap,
 303	.list_voltage = regulator_list_voltage_table,
 304	.map_voltage = regulator_map_voltage_ascend,
 305	.set_voltage_sel = regulator_set_voltage_sel_regmap,
 306	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 307	.set_voltage_time_sel = regulator_set_voltage_time_sel,
 308};
 309
 310static const struct regulator_ops bd71837_buck_regulator_nolinear_ops = {
 311	.enable = regulator_enable_regmap,
 312	.disable = regulator_disable_regmap,
 313	.is_enabled = regulator_is_enabled_regmap,
 314	.list_voltage = regulator_list_voltage_table,
 315	.map_voltage = regulator_map_voltage_ascend,
 316	.set_voltage_sel = bd718xx_set_voltage_sel_restricted,
 317	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 318	.set_voltage_time_sel = regulator_set_voltage_time_sel,
 319};
 320
 321static const struct regulator_ops bd718xx_dvs_buck_regulator_ops = {
 322	.enable = regulator_enable_regmap,
 323	.disable = regulator_disable_regmap,
 324	.is_enabled = regulator_is_enabled_regmap,
 325	.list_voltage = regulator_list_voltage_linear_range,
 326	.set_voltage_sel = regulator_set_voltage_sel_regmap,
 327	.get_voltage_sel = regulator_get_voltage_sel_regmap,
 328	.set_voltage_time_sel = regulator_set_voltage_time_sel,
 329	.set_ramp_delay = bd718xx_buck1234_set_ramp_delay,
 330};
 331
 332/*
 333 * BD71837 BUCK1/2/3/4
 334 * BD71847 BUCK1/2
 335 * 0.70 to 1.30V (10mV step)
 336 */
 337static const struct linear_range bd718xx_dvs_buck_volts[] = {
 338	REGULATOR_LINEAR_RANGE(700000, 0x00, 0x3C, 10000),
 339	REGULATOR_LINEAR_RANGE(1300000, 0x3D, 0x3F, 0),
 340};
 341
 342/*
 343 * BD71837 BUCK5
 344 * 0.7V to 1.35V  (range 0)
 345 * and
 346 * 0.675 to 1.325 (range 1)
 347 */
 348static const struct linear_range bd71837_buck5_volts[] = {
 349	/* Ranges when VOLT_SEL bit is 0 */
 350	REGULATOR_LINEAR_RANGE(700000, 0x00, 0x03, 100000),
 351	REGULATOR_LINEAR_RANGE(1050000, 0x04, 0x05, 50000),
 352	REGULATOR_LINEAR_RANGE(1200000, 0x06, 0x07, 150000),
 353	/* Ranges when VOLT_SEL bit is 1  */
 354	REGULATOR_LINEAR_RANGE(675000, 0x0, 0x3, 100000),
 355	REGULATOR_LINEAR_RANGE(1025000, 0x4, 0x5, 50000),
 356	REGULATOR_LINEAR_RANGE(1175000, 0x6, 0x7, 150000),
 357};
 358
 359/*
 360 * Range selector for first 3 linear ranges is 0x0
 361 * and 0x1 for last 3 ranges.
 362 */
 363static const unsigned int bd71837_buck5_volt_range_sel[] = {
 364	0x0, 0x0, 0x0, 0x80, 0x80, 0x80
 365};
 366
 367/*
 368 * BD71847 BUCK3
 369 */
 370static const struct linear_range bd71847_buck3_volts[] = {
 371	/* Ranges when VOLT_SEL bits are 00 */
 372	REGULATOR_LINEAR_RANGE(700000, 0x00, 0x03, 100000),
 373	REGULATOR_LINEAR_RANGE(1050000, 0x04, 0x05, 50000),
 374	REGULATOR_LINEAR_RANGE(1200000, 0x06, 0x07, 150000),
 375	/* Ranges when VOLT_SEL bits are 01 */
 376	REGULATOR_LINEAR_RANGE(550000, 0x0, 0x7, 50000),
 377	/* Ranges when VOLT_SEL bits are 11 */
 378	REGULATOR_LINEAR_RANGE(675000, 0x0, 0x3, 100000),
 379	REGULATOR_LINEAR_RANGE(1025000, 0x4, 0x5, 50000),
 380	REGULATOR_LINEAR_RANGE(1175000, 0x6, 0x7, 150000),
 381};
 382
 383static const unsigned int bd71847_buck3_volt_range_sel[] = {
 384	0x0, 0x0, 0x0, 0x40, 0x80, 0x80, 0x80
 385};
 386
 387static const struct linear_range bd71847_buck4_volts[] = {
 388	REGULATOR_LINEAR_RANGE(3000000, 0x00, 0x03, 100000),
 389	REGULATOR_LINEAR_RANGE(2600000, 0x00, 0x03, 100000),
 390};
 391
 392static const unsigned int bd71847_buck4_volt_range_sel[] = { 0x0, 0x40 };
 393
 394/*
 395 * BUCK6
 396 * 3.0V to 3.3V (step 100mV)
 397 */
 398static const struct linear_range bd71837_buck6_volts[] = {
 399	REGULATOR_LINEAR_RANGE(3000000, 0x00, 0x03, 100000),
 400};
 401
 402/*
 403 * BD71837 BUCK7
 404 * BD71847 BUCK5
 405 * 000 = 1.605V
 406 * 001 = 1.695V
 407 * 010 = 1.755V
 408 * 011 = 1.8V (Initial)
 409 * 100 = 1.845V
 410 * 101 = 1.905V
 411 * 110 = 1.95V
 412 * 111 = 1.995V
 413 */
 414static const unsigned int bd718xx_3rd_nodvs_buck_volts[] = {
 415	1605000, 1695000, 1755000, 1800000, 1845000, 1905000, 1950000, 1995000
 416};
 417
 418/*
 419 * BUCK8
 420 * 0.8V to 1.40V (step 10mV)
 421 */
 422static const struct linear_range bd718xx_4th_nodvs_buck_volts[] = {
 423	REGULATOR_LINEAR_RANGE(800000, 0x00, 0x3C, 10000),
 424};
 425
 426/*
 427 * LDO1
 428 * 3.0 to 3.3V (100mV step)
 429 */
 430static const struct linear_range bd718xx_ldo1_volts[] = {
 431	REGULATOR_LINEAR_RANGE(3000000, 0x00, 0x03, 100000),
 432	REGULATOR_LINEAR_RANGE(1600000, 0x00, 0x03, 100000),
 433};
 434
 435static const unsigned int bd718xx_ldo1_volt_range_sel[] = { 0x0, 0x20 };
 436
 437/*
 438 * LDO2
 439 * 0.8 or 0.9V
 440 */
 441static const unsigned int ldo_2_volts[] = {
 442	900000, 800000
 443};
 444
 445/*
 446 * LDO3
 447 * 1.8 to 3.3V (100mV step)
 448 */
 449static const struct linear_range bd718xx_ldo3_volts[] = {
 450	REGULATOR_LINEAR_RANGE(1800000, 0x00, 0x0F, 100000),
 451};
 452
 453/*
 454 * LDO4
 455 * 0.9 to 1.8V (100mV step)
 456 */
 457static const struct linear_range bd718xx_ldo4_volts[] = {
 458	REGULATOR_LINEAR_RANGE(900000, 0x00, 0x09, 100000),
 459};
 460
 461/*
 462 * LDO5 for BD71837
 463 * 1.8 to 3.3V (100mV step)
 464 */
 465static const struct linear_range bd71837_ldo5_volts[] = {
 466	REGULATOR_LINEAR_RANGE(1800000, 0x00, 0x0F, 100000),
 467};
 468
 469/*
 470 * LDO5 for BD71837
 471 * 1.8 to 3.3V (100mV step)
 472 */
 473static const struct linear_range bd71847_ldo5_volts[] = {
 474	REGULATOR_LINEAR_RANGE(1800000, 0x00, 0x0F, 100000),
 475	REGULATOR_LINEAR_RANGE(800000, 0x00, 0x0F, 100000),
 476};
 477
 478static const unsigned int bd71847_ldo5_volt_range_sel[] = { 0x0, 0x20 };
 479
 480/*
 481 * LDO6
 482 * 0.9 to 1.8V (100mV step)
 483 */
 484static const struct linear_range bd718xx_ldo6_volts[] = {
 485	REGULATOR_LINEAR_RANGE(900000, 0x00, 0x09, 100000),
 486};
 487
 488/*
 489 * LDO7
 490 * 1.8 to 3.3V (100mV step)
 491 */
 492static const struct linear_range bd71837_ldo7_volts[] = {
 493	REGULATOR_LINEAR_RANGE(1800000, 0x00, 0x0F, 100000),
 494};
 495
 496struct reg_init {
 497	unsigned int reg;
 498	unsigned int mask;
 499	unsigned int val;
 500};
 501struct bd718xx_regulator_data {
 502	struct regulator_desc desc;
 503	const struct rohm_dvs_config dvs;
 504	const struct reg_init init;
 505	const struct reg_init *additional_inits;
 506	int additional_init_amnt;
 507};
 508
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 509/*
 510 * There is a HW quirk in BD71837. The shutdown sequence timings for
 511 * bucks/LDOs which are controlled via register interface are changed.
 512 * At PMIC poweroff the voltage for BUCK6/7 is cut immediately at the
 513 * beginning of shut-down sequence. As bucks 6 and 7 are parent
 514 * supplies for LDO5 and LDO6 - this causes LDO5/6 voltage
 515 * monitoring to errorneously detect under voltage and force PMIC to
 516 * emergency state instead of poweroff. In order to avoid this we
 517 * disable voltage monitoring for LDO5 and LDO6
 518 */
 519static const struct reg_init bd71837_ldo5_inits[] = {
 520	{
 521		.reg = BD718XX_REG_MVRFLTMASK2,
 522		.mask = BD718XX_LDO5_VRMON80,
 523		.val = BD718XX_LDO5_VRMON80,
 524	},
 525};
 526
 527static const struct reg_init bd71837_ldo6_inits[] = {
 528	{
 529		.reg = BD718XX_REG_MVRFLTMASK2,
 530		.mask = BD718XX_LDO6_VRMON80,
 531		.val = BD718XX_LDO6_VRMON80,
 532	},
 533};
 534
 535static int buck_set_hw_dvs_levels(struct device_node *np,
 536			    const struct regulator_desc *desc,
 537			    struct regulator_config *cfg)
 538{
 539	struct bd718xx_regulator_data *data;
 540
 541	data = container_of(desc, struct bd718xx_regulator_data, desc);
 542
 543	return rohm_regulator_set_dvs_levels(&data->dvs, np, desc, cfg->regmap);
 544}
 545
 546static const struct bd718xx_regulator_data bd71847_regulators[] = {
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 547	{
 548		.desc = {
 549			.name = "buck1",
 550			.of_match = of_match_ptr("BUCK1"),
 551			.regulators_node = of_match_ptr("regulators"),
 552			.id = BD718XX_BUCK1,
 553			.ops = &bd718xx_dvs_buck_regulator_ops,
 554			.type = REGULATOR_VOLTAGE,
 555			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
 556			.linear_ranges = bd718xx_dvs_buck_volts,
 557			.n_linear_ranges =
 558				ARRAY_SIZE(bd718xx_dvs_buck_volts),
 559			.vsel_reg = BD718XX_REG_BUCK1_VOLT_RUN,
 560			.vsel_mask = DVS_BUCK_RUN_MASK,
 561			.enable_reg = BD718XX_REG_BUCK1_CTRL,
 562			.enable_mask = BD718XX_BUCK_EN,
 
 563			.owner = THIS_MODULE,
 
 
 
 
 564			.of_parse_cb = buck_set_hw_dvs_levels,
 565		},
 566		.dvs = {
 567			.level_map = ROHM_DVS_LEVEL_RUN | ROHM_DVS_LEVEL_IDLE |
 568				     ROHM_DVS_LEVEL_SUSPEND,
 569			.run_reg = BD718XX_REG_BUCK1_VOLT_RUN,
 570			.run_mask = DVS_BUCK_RUN_MASK,
 571			.idle_reg = BD718XX_REG_BUCK1_VOLT_IDLE,
 572			.idle_mask = DVS_BUCK_RUN_MASK,
 573			.suspend_reg = BD718XX_REG_BUCK1_VOLT_SUSP,
 574			.suspend_mask = DVS_BUCK_RUN_MASK,
 575		},
 576		.init = {
 577			.reg = BD718XX_REG_BUCK1_CTRL,
 578			.mask = BD718XX_BUCK_SEL,
 579			.val = BD718XX_BUCK_SEL,
 580		},
 581	},
 582	{
 583		.desc = {
 584			.name = "buck2",
 585			.of_match = of_match_ptr("BUCK2"),
 586			.regulators_node = of_match_ptr("regulators"),
 587			.id = BD718XX_BUCK2,
 588			.ops = &bd718xx_dvs_buck_regulator_ops,
 589			.type = REGULATOR_VOLTAGE,
 590			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
 591			.linear_ranges = bd718xx_dvs_buck_volts,
 592			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
 593			.vsel_reg = BD718XX_REG_BUCK2_VOLT_RUN,
 594			.vsel_mask = DVS_BUCK_RUN_MASK,
 595			.enable_reg = BD718XX_REG_BUCK2_CTRL,
 596			.enable_mask = BD718XX_BUCK_EN,
 
 
 
 
 
 597			.owner = THIS_MODULE,
 598			.of_parse_cb = buck_set_hw_dvs_levels,
 599		},
 600		.dvs = {
 601			.level_map = ROHM_DVS_LEVEL_RUN | ROHM_DVS_LEVEL_IDLE,
 602			.run_reg = BD718XX_REG_BUCK2_VOLT_RUN,
 603			.run_mask = DVS_BUCK_RUN_MASK,
 604			.idle_reg = BD718XX_REG_BUCK2_VOLT_IDLE,
 605			.idle_mask = DVS_BUCK_RUN_MASK,
 606		},
 607		.init = {
 608			.reg = BD718XX_REG_BUCK2_CTRL,
 609			.mask = BD718XX_BUCK_SEL,
 610			.val = BD718XX_BUCK_SEL,
 611		},
 612	},
 613	{
 614		.desc = {
 615			.name = "buck3",
 616			.of_match = of_match_ptr("BUCK3"),
 617			.regulators_node = of_match_ptr("regulators"),
 618			.id = BD718XX_BUCK3,
 619			.ops = &bd718xx_pickable_range_buck_ops,
 620			.type = REGULATOR_VOLTAGE,
 621			.n_voltages = BD71847_BUCK3_VOLTAGE_NUM,
 622			.linear_ranges = bd71847_buck3_volts,
 623			.n_linear_ranges =
 624				ARRAY_SIZE(bd71847_buck3_volts),
 625			.vsel_reg = BD718XX_REG_1ST_NODVS_BUCK_VOLT,
 626			.vsel_mask = BD718XX_1ST_NODVS_BUCK_MASK,
 627			.vsel_range_reg = BD718XX_REG_1ST_NODVS_BUCK_VOLT,
 628			.vsel_range_mask = BD71847_BUCK3_RANGE_MASK,
 629			.linear_range_selectors = bd71847_buck3_volt_range_sel,
 630			.enable_reg = BD718XX_REG_1ST_NODVS_BUCK_CTRL,
 631			.enable_mask = BD718XX_BUCK_EN,
 
 632			.owner = THIS_MODULE,
 633		},
 634		.init = {
 635			.reg = BD718XX_REG_1ST_NODVS_BUCK_CTRL,
 636			.mask = BD718XX_BUCK_SEL,
 637			.val = BD718XX_BUCK_SEL,
 638		},
 639	},
 640	{
 641		.desc = {
 642			.name = "buck4",
 643			.of_match = of_match_ptr("BUCK4"),
 644			.regulators_node = of_match_ptr("regulators"),
 645			.id = BD718XX_BUCK4,
 646			.ops = &bd718xx_pickable_range_buck_ops,
 647			.type = REGULATOR_VOLTAGE,
 648			.n_voltages = BD71847_BUCK4_VOLTAGE_NUM,
 649			.linear_ranges = bd71847_buck4_volts,
 650			.n_linear_ranges =
 651				ARRAY_SIZE(bd71847_buck4_volts),
 652			.enable_reg = BD718XX_REG_2ND_NODVS_BUCK_CTRL,
 653			.vsel_reg = BD718XX_REG_2ND_NODVS_BUCK_VOLT,
 654			.vsel_mask = BD71847_BUCK4_MASK,
 655			.vsel_range_reg = BD718XX_REG_2ND_NODVS_BUCK_VOLT,
 656			.vsel_range_mask = BD71847_BUCK4_RANGE_MASK,
 657			.linear_range_selectors = bd71847_buck4_volt_range_sel,
 658			.enable_mask = BD718XX_BUCK_EN,
 
 659			.owner = THIS_MODULE,
 660		},
 661		.init = {
 662			.reg = BD718XX_REG_2ND_NODVS_BUCK_CTRL,
 663			.mask = BD718XX_BUCK_SEL,
 664			.val = BD718XX_BUCK_SEL,
 665		},
 666	},
 667	{
 668		.desc = {
 669			.name = "buck5",
 670			.of_match = of_match_ptr("BUCK5"),
 671			.regulators_node = of_match_ptr("regulators"),
 672			.id = BD718XX_BUCK5,
 673			.ops = &bd718xx_buck_regulator_nolinear_ops,
 674			.type = REGULATOR_VOLTAGE,
 675			.volt_table = &bd718xx_3rd_nodvs_buck_volts[0],
 676			.n_voltages = ARRAY_SIZE(bd718xx_3rd_nodvs_buck_volts),
 677			.vsel_reg = BD718XX_REG_3RD_NODVS_BUCK_VOLT,
 678			.vsel_mask = BD718XX_3RD_NODVS_BUCK_MASK,
 679			.enable_reg = BD718XX_REG_3RD_NODVS_BUCK_CTRL,
 680			.enable_mask = BD718XX_BUCK_EN,
 
 681			.owner = THIS_MODULE,
 682		},
 683		.init = {
 684			.reg = BD718XX_REG_3RD_NODVS_BUCK_CTRL,
 685			.mask = BD718XX_BUCK_SEL,
 686			.val = BD718XX_BUCK_SEL,
 687		},
 688	},
 689	{
 690		.desc = {
 691			.name = "buck6",
 692			.of_match = of_match_ptr("BUCK6"),
 693			.regulators_node = of_match_ptr("regulators"),
 694			.id = BD718XX_BUCK6,
 695			.ops = &bd718xx_buck_regulator_ops,
 696			.type = REGULATOR_VOLTAGE,
 697			.n_voltages = BD718XX_4TH_NODVS_BUCK_VOLTAGE_NUM,
 698			.linear_ranges = bd718xx_4th_nodvs_buck_volts,
 699			.n_linear_ranges =
 700				ARRAY_SIZE(bd718xx_4th_nodvs_buck_volts),
 701			.vsel_reg = BD718XX_REG_4TH_NODVS_BUCK_VOLT,
 702			.vsel_mask = BD718XX_4TH_NODVS_BUCK_MASK,
 703			.enable_reg = BD718XX_REG_4TH_NODVS_BUCK_CTRL,
 704			.enable_mask = BD718XX_BUCK_EN,
 
 705			.owner = THIS_MODULE,
 706		},
 707		.init = {
 708			.reg = BD718XX_REG_4TH_NODVS_BUCK_CTRL,
 709			.mask = BD718XX_BUCK_SEL,
 710			.val = BD718XX_BUCK_SEL,
 711		},
 712	},
 713	{
 714		.desc = {
 715			.name = "ldo1",
 716			.of_match = of_match_ptr("LDO1"),
 717			.regulators_node = of_match_ptr("regulators"),
 718			.id = BD718XX_LDO1,
 719			.ops = &bd718xx_pickable_range_ldo_ops,
 720			.type = REGULATOR_VOLTAGE,
 721			.n_voltages = BD718XX_LDO1_VOLTAGE_NUM,
 722			.linear_ranges = bd718xx_ldo1_volts,
 723			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo1_volts),
 724			.vsel_reg = BD718XX_REG_LDO1_VOLT,
 725			.vsel_mask = BD718XX_LDO1_MASK,
 726			.vsel_range_reg = BD718XX_REG_LDO1_VOLT,
 727			.vsel_range_mask = BD718XX_LDO1_RANGE_MASK,
 728			.linear_range_selectors = bd718xx_ldo1_volt_range_sel,
 729			.enable_reg = BD718XX_REG_LDO1_VOLT,
 730			.enable_mask = BD718XX_LDO_EN,
 
 731			.owner = THIS_MODULE,
 732		},
 733		.init = {
 734			.reg = BD718XX_REG_LDO1_VOLT,
 735			.mask = BD718XX_LDO_SEL,
 736			.val = BD718XX_LDO_SEL,
 737		},
 738	},
 739	{
 740		.desc = {
 741			.name = "ldo2",
 742			.of_match = of_match_ptr("LDO2"),
 743			.regulators_node = of_match_ptr("regulators"),
 744			.id = BD718XX_LDO2,
 745			.ops = &bd718xx_ldo_regulator_nolinear_ops,
 746			.type = REGULATOR_VOLTAGE,
 747			.volt_table = &ldo_2_volts[0],
 748			.vsel_reg = BD718XX_REG_LDO2_VOLT,
 749			.vsel_mask = BD718XX_LDO2_MASK,
 750			.n_voltages = ARRAY_SIZE(ldo_2_volts),
 751			.enable_reg = BD718XX_REG_LDO2_VOLT,
 752			.enable_mask = BD718XX_LDO_EN,
 
 753			.owner = THIS_MODULE,
 754		},
 755		.init = {
 756			.reg = BD718XX_REG_LDO2_VOLT,
 757			.mask = BD718XX_LDO_SEL,
 758			.val = BD718XX_LDO_SEL,
 759		},
 760	},
 761	{
 762		.desc = {
 763			.name = "ldo3",
 764			.of_match = of_match_ptr("LDO3"),
 765			.regulators_node = of_match_ptr("regulators"),
 766			.id = BD718XX_LDO3,
 767			.ops = &bd718xx_ldo_regulator_ops,
 768			.type = REGULATOR_VOLTAGE,
 769			.n_voltages = BD718XX_LDO3_VOLTAGE_NUM,
 770			.linear_ranges = bd718xx_ldo3_volts,
 771			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo3_volts),
 772			.vsel_reg = BD718XX_REG_LDO3_VOLT,
 773			.vsel_mask = BD718XX_LDO3_MASK,
 774			.enable_reg = BD718XX_REG_LDO3_VOLT,
 775			.enable_mask = BD718XX_LDO_EN,
 
 776			.owner = THIS_MODULE,
 777		},
 778		.init = {
 779			.reg = BD718XX_REG_LDO3_VOLT,
 780			.mask = BD718XX_LDO_SEL,
 781			.val = BD718XX_LDO_SEL,
 782		},
 783	},
 784	{
 785		.desc = {
 786			.name = "ldo4",
 787			.of_match = of_match_ptr("LDO4"),
 788			.regulators_node = of_match_ptr("regulators"),
 789			.id = BD718XX_LDO4,
 790			.ops = &bd718xx_ldo_regulator_ops,
 791			.type = REGULATOR_VOLTAGE,
 792			.n_voltages = BD718XX_LDO4_VOLTAGE_NUM,
 793			.linear_ranges = bd718xx_ldo4_volts,
 794			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo4_volts),
 795			.vsel_reg = BD718XX_REG_LDO4_VOLT,
 796			.vsel_mask = BD718XX_LDO4_MASK,
 797			.enable_reg = BD718XX_REG_LDO4_VOLT,
 798			.enable_mask = BD718XX_LDO_EN,
 
 799			.owner = THIS_MODULE,
 800		},
 801		.init = {
 802			.reg = BD718XX_REG_LDO4_VOLT,
 803			.mask = BD718XX_LDO_SEL,
 804			.val = BD718XX_LDO_SEL,
 805		},
 806	},
 807	{
 808		.desc = {
 809			.name = "ldo5",
 810			.of_match = of_match_ptr("LDO5"),
 811			.regulators_node = of_match_ptr("regulators"),
 812			.id = BD718XX_LDO5,
 813			.ops = &bd718xx_pickable_range_ldo_ops,
 814			.type = REGULATOR_VOLTAGE,
 815			.n_voltages = BD71847_LDO5_VOLTAGE_NUM,
 816			.linear_ranges = bd71847_ldo5_volts,
 817			.n_linear_ranges = ARRAY_SIZE(bd71847_ldo5_volts),
 818			.vsel_reg = BD718XX_REG_LDO5_VOLT,
 819			.vsel_mask = BD71847_LDO5_MASK,
 820			.vsel_range_reg = BD718XX_REG_LDO5_VOLT,
 821			.vsel_range_mask = BD71847_LDO5_RANGE_MASK,
 822			.linear_range_selectors = bd71847_ldo5_volt_range_sel,
 823			.enable_reg = BD718XX_REG_LDO5_VOLT,
 824			.enable_mask = BD718XX_LDO_EN,
 
 825			.owner = THIS_MODULE,
 826		},
 827		.init = {
 828			.reg = BD718XX_REG_LDO5_VOLT,
 829			.mask = BD718XX_LDO_SEL,
 830			.val = BD718XX_LDO_SEL,
 831		},
 832	},
 833	{
 834		.desc = {
 835			.name = "ldo6",
 836			.of_match = of_match_ptr("LDO6"),
 837			.regulators_node = of_match_ptr("regulators"),
 838			.id = BD718XX_LDO6,
 839			.ops = &bd718xx_ldo_regulator_ops,
 840			.type = REGULATOR_VOLTAGE,
 841			.n_voltages = BD718XX_LDO6_VOLTAGE_NUM,
 842			.linear_ranges = bd718xx_ldo6_volts,
 843			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo6_volts),
 844			/* LDO6 is supplied by buck5 */
 845			.supply_name = "buck5",
 846			.vsel_reg = BD718XX_REG_LDO6_VOLT,
 847			.vsel_mask = BD718XX_LDO6_MASK,
 848			.enable_reg = BD718XX_REG_LDO6_VOLT,
 849			.enable_mask = BD718XX_LDO_EN,
 
 850			.owner = THIS_MODULE,
 851		},
 852		.init = {
 853			.reg = BD718XX_REG_LDO6_VOLT,
 854			.mask = BD718XX_LDO_SEL,
 855			.val = BD718XX_LDO_SEL,
 856		},
 857	},
 858};
 859
 860static const struct bd718xx_regulator_data bd71837_regulators[] = {
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 861	{
 862		.desc = {
 863			.name = "buck1",
 864			.of_match = of_match_ptr("BUCK1"),
 865			.regulators_node = of_match_ptr("regulators"),
 866			.id = BD718XX_BUCK1,
 867			.ops = &bd718xx_dvs_buck_regulator_ops,
 868			.type = REGULATOR_VOLTAGE,
 869			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
 870			.linear_ranges = bd718xx_dvs_buck_volts,
 871			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
 872			.vsel_reg = BD718XX_REG_BUCK1_VOLT_RUN,
 873			.vsel_mask = DVS_BUCK_RUN_MASK,
 874			.enable_reg = BD718XX_REG_BUCK1_CTRL,
 875			.enable_mask = BD718XX_BUCK_EN,
 
 
 
 
 
 876			.owner = THIS_MODULE,
 877			.of_parse_cb = buck_set_hw_dvs_levels,
 878		},
 879		.dvs = {
 880			.level_map = ROHM_DVS_LEVEL_RUN | ROHM_DVS_LEVEL_IDLE |
 881				     ROHM_DVS_LEVEL_SUSPEND,
 882			.run_reg = BD718XX_REG_BUCK1_VOLT_RUN,
 883			.run_mask = DVS_BUCK_RUN_MASK,
 884			.idle_reg = BD718XX_REG_BUCK1_VOLT_IDLE,
 885			.idle_mask = DVS_BUCK_RUN_MASK,
 886			.suspend_reg = BD718XX_REG_BUCK1_VOLT_SUSP,
 887			.suspend_mask = DVS_BUCK_RUN_MASK,
 888		},
 889		.init = {
 890			.reg = BD718XX_REG_BUCK1_CTRL,
 891			.mask = BD718XX_BUCK_SEL,
 892			.val = BD718XX_BUCK_SEL,
 893		},
 894	},
 895	{
 896		.desc = {
 897			.name = "buck2",
 898			.of_match = of_match_ptr("BUCK2"),
 899			.regulators_node = of_match_ptr("regulators"),
 900			.id = BD718XX_BUCK2,
 901			.ops = &bd718xx_dvs_buck_regulator_ops,
 902			.type = REGULATOR_VOLTAGE,
 903			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
 904			.linear_ranges = bd718xx_dvs_buck_volts,
 905			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
 906			.vsel_reg = BD718XX_REG_BUCK2_VOLT_RUN,
 907			.vsel_mask = DVS_BUCK_RUN_MASK,
 908			.enable_reg = BD718XX_REG_BUCK2_CTRL,
 909			.enable_mask = BD718XX_BUCK_EN,
 
 
 
 
 
 910			.owner = THIS_MODULE,
 911			.of_parse_cb = buck_set_hw_dvs_levels,
 912		},
 913		.dvs = {
 914			.level_map = ROHM_DVS_LEVEL_RUN | ROHM_DVS_LEVEL_IDLE,
 915			.run_reg = BD718XX_REG_BUCK2_VOLT_RUN,
 916			.run_mask = DVS_BUCK_RUN_MASK,
 917			.idle_reg = BD718XX_REG_BUCK2_VOLT_IDLE,
 918			.idle_mask = DVS_BUCK_RUN_MASK,
 919		},
 920		.init = {
 921			.reg = BD718XX_REG_BUCK2_CTRL,
 922			.mask = BD718XX_BUCK_SEL,
 923			.val = BD718XX_BUCK_SEL,
 924		},
 925	},
 926	{
 927		.desc = {
 928			.name = "buck3",
 929			.of_match = of_match_ptr("BUCK3"),
 930			.regulators_node = of_match_ptr("regulators"),
 931			.id = BD718XX_BUCK3,
 932			.ops = &bd718xx_dvs_buck_regulator_ops,
 933			.type = REGULATOR_VOLTAGE,
 934			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
 935			.linear_ranges = bd718xx_dvs_buck_volts,
 936			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
 937			.vsel_reg = BD71837_REG_BUCK3_VOLT_RUN,
 938			.vsel_mask = DVS_BUCK_RUN_MASK,
 939			.enable_reg = BD71837_REG_BUCK3_CTRL,
 940			.enable_mask = BD718XX_BUCK_EN,
 
 
 
 
 
 941			.owner = THIS_MODULE,
 942			.of_parse_cb = buck_set_hw_dvs_levels,
 943		},
 944		.dvs = {
 945			.level_map = ROHM_DVS_LEVEL_RUN,
 946			.run_reg = BD71837_REG_BUCK3_VOLT_RUN,
 947			.run_mask = DVS_BUCK_RUN_MASK,
 948		},
 949		.init = {
 950			.reg = BD71837_REG_BUCK3_CTRL,
 951			.mask = BD718XX_BUCK_SEL,
 952			.val = BD718XX_BUCK_SEL,
 953		},
 954	},
 955	{
 956		.desc = {
 957			.name = "buck4",
 958			.of_match = of_match_ptr("BUCK4"),
 959			.regulators_node = of_match_ptr("regulators"),
 960			.id = BD718XX_BUCK4,
 961			.ops = &bd718xx_dvs_buck_regulator_ops,
 962			.type = REGULATOR_VOLTAGE,
 963			.n_voltages = BD718XX_DVS_BUCK_VOLTAGE_NUM,
 964			.linear_ranges = bd718xx_dvs_buck_volts,
 965			.n_linear_ranges = ARRAY_SIZE(bd718xx_dvs_buck_volts),
 966			.vsel_reg = BD71837_REG_BUCK4_VOLT_RUN,
 967			.vsel_mask = DVS_BUCK_RUN_MASK,
 968			.enable_reg = BD71837_REG_BUCK4_CTRL,
 969			.enable_mask = BD718XX_BUCK_EN,
 
 
 
 
 
 970			.owner = THIS_MODULE,
 971			.of_parse_cb = buck_set_hw_dvs_levels,
 972		},
 973		.dvs = {
 974			.level_map = ROHM_DVS_LEVEL_RUN,
 975			.run_reg = BD71837_REG_BUCK4_VOLT_RUN,
 976			.run_mask = DVS_BUCK_RUN_MASK,
 977		},
 978		.init = {
 979			.reg = BD71837_REG_BUCK4_CTRL,
 980			.mask = BD718XX_BUCK_SEL,
 981			.val = BD718XX_BUCK_SEL,
 982		},
 983	},
 984	{
 985		.desc = {
 986			.name = "buck5",
 987			.of_match = of_match_ptr("BUCK5"),
 988			.regulators_node = of_match_ptr("regulators"),
 989			.id = BD718XX_BUCK5,
 990			.ops = &bd71837_pickable_range_buck_ops,
 991			.type = REGULATOR_VOLTAGE,
 992			.n_voltages = BD71837_BUCK5_VOLTAGE_NUM,
 993			.linear_ranges = bd71837_buck5_volts,
 994			.n_linear_ranges =
 995				ARRAY_SIZE(bd71837_buck5_volts),
 996			.vsel_reg = BD718XX_REG_1ST_NODVS_BUCK_VOLT,
 997			.vsel_mask = BD71837_BUCK5_MASK,
 998			.vsel_range_reg = BD718XX_REG_1ST_NODVS_BUCK_VOLT,
 999			.vsel_range_mask = BD71837_BUCK5_RANGE_MASK,
1000			.linear_range_selectors = bd71837_buck5_volt_range_sel,
1001			.enable_reg = BD718XX_REG_1ST_NODVS_BUCK_CTRL,
1002			.enable_mask = BD718XX_BUCK_EN,
 
1003			.owner = THIS_MODULE,
1004		},
1005		.init = {
1006			.reg = BD718XX_REG_1ST_NODVS_BUCK_CTRL,
1007			.mask = BD718XX_BUCK_SEL,
1008			.val = BD718XX_BUCK_SEL,
1009		},
1010	},
1011	{
1012		.desc = {
1013			.name = "buck6",
1014			.of_match = of_match_ptr("BUCK6"),
1015			.regulators_node = of_match_ptr("regulators"),
1016			.id = BD718XX_BUCK6,
1017			.ops = &bd71837_buck_regulator_ops,
1018			.type = REGULATOR_VOLTAGE,
1019			.n_voltages = BD71837_BUCK6_VOLTAGE_NUM,
1020			.linear_ranges = bd71837_buck6_volts,
1021			.n_linear_ranges =
1022				ARRAY_SIZE(bd71837_buck6_volts),
1023			.vsel_reg = BD718XX_REG_2ND_NODVS_BUCK_VOLT,
1024			.vsel_mask = BD71837_BUCK6_MASK,
1025			.enable_reg = BD718XX_REG_2ND_NODVS_BUCK_CTRL,
1026			.enable_mask = BD718XX_BUCK_EN,
 
1027			.owner = THIS_MODULE,
1028		},
1029		.init = {
1030			.reg = BD718XX_REG_2ND_NODVS_BUCK_CTRL,
1031			.mask = BD718XX_BUCK_SEL,
1032			.val = BD718XX_BUCK_SEL,
1033		},
1034	},
1035	{
1036		.desc = {
1037			.name = "buck7",
1038			.of_match = of_match_ptr("BUCK7"),
1039			.regulators_node = of_match_ptr("regulators"),
1040			.id = BD718XX_BUCK7,
1041			.ops = &bd71837_buck_regulator_nolinear_ops,
1042			.type = REGULATOR_VOLTAGE,
1043			.volt_table = &bd718xx_3rd_nodvs_buck_volts[0],
1044			.n_voltages = ARRAY_SIZE(bd718xx_3rd_nodvs_buck_volts),
1045			.vsel_reg = BD718XX_REG_3RD_NODVS_BUCK_VOLT,
1046			.vsel_mask = BD718XX_3RD_NODVS_BUCK_MASK,
1047			.enable_reg = BD718XX_REG_3RD_NODVS_BUCK_CTRL,
1048			.enable_mask = BD718XX_BUCK_EN,
 
1049			.owner = THIS_MODULE,
1050		},
1051		.init = {
1052			.reg = BD718XX_REG_3RD_NODVS_BUCK_CTRL,
1053			.mask = BD718XX_BUCK_SEL,
1054			.val = BD718XX_BUCK_SEL,
1055		},
1056	},
1057	{
1058		.desc = {
1059			.name = "buck8",
1060			.of_match = of_match_ptr("BUCK8"),
1061			.regulators_node = of_match_ptr("regulators"),
1062			.id = BD718XX_BUCK8,
1063			.ops = &bd71837_buck_regulator_ops,
1064			.type = REGULATOR_VOLTAGE,
1065			.n_voltages = BD718XX_4TH_NODVS_BUCK_VOLTAGE_NUM,
1066			.linear_ranges = bd718xx_4th_nodvs_buck_volts,
1067			.n_linear_ranges =
1068				ARRAY_SIZE(bd718xx_4th_nodvs_buck_volts),
1069			.vsel_reg = BD718XX_REG_4TH_NODVS_BUCK_VOLT,
1070			.vsel_mask = BD718XX_4TH_NODVS_BUCK_MASK,
1071			.enable_reg = BD718XX_REG_4TH_NODVS_BUCK_CTRL,
1072			.enable_mask = BD718XX_BUCK_EN,
 
1073			.owner = THIS_MODULE,
1074		},
1075		.init = {
1076			.reg = BD718XX_REG_4TH_NODVS_BUCK_CTRL,
1077			.mask = BD718XX_BUCK_SEL,
1078			.val = BD718XX_BUCK_SEL,
1079		},
1080	},
1081	{
1082		.desc = {
1083			.name = "ldo1",
1084			.of_match = of_match_ptr("LDO1"),
1085			.regulators_node = of_match_ptr("regulators"),
1086			.id = BD718XX_LDO1,
1087			.ops = &bd71837_pickable_range_ldo_ops,
1088			.type = REGULATOR_VOLTAGE,
1089			.n_voltages = BD718XX_LDO1_VOLTAGE_NUM,
1090			.linear_ranges = bd718xx_ldo1_volts,
1091			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo1_volts),
1092			.vsel_reg = BD718XX_REG_LDO1_VOLT,
1093			.vsel_mask = BD718XX_LDO1_MASK,
1094			.vsel_range_reg = BD718XX_REG_LDO1_VOLT,
1095			.vsel_range_mask = BD718XX_LDO1_RANGE_MASK,
1096			.linear_range_selectors = bd718xx_ldo1_volt_range_sel,
1097			.enable_reg = BD718XX_REG_LDO1_VOLT,
1098			.enable_mask = BD718XX_LDO_EN,
 
1099			.owner = THIS_MODULE,
1100		},
1101		.init = {
1102			.reg = BD718XX_REG_LDO1_VOLT,
1103			.mask = BD718XX_LDO_SEL,
1104			.val = BD718XX_LDO_SEL,
1105		},
1106	},
1107	{
1108		.desc = {
1109			.name = "ldo2",
1110			.of_match = of_match_ptr("LDO2"),
1111			.regulators_node = of_match_ptr("regulators"),
1112			.id = BD718XX_LDO2,
1113			.ops = &bd71837_ldo_regulator_nolinear_ops,
1114			.type = REGULATOR_VOLTAGE,
1115			.volt_table = &ldo_2_volts[0],
1116			.vsel_reg = BD718XX_REG_LDO2_VOLT,
1117			.vsel_mask = BD718XX_LDO2_MASK,
1118			.n_voltages = ARRAY_SIZE(ldo_2_volts),
1119			.enable_reg = BD718XX_REG_LDO2_VOLT,
1120			.enable_mask = BD718XX_LDO_EN,
 
1121			.owner = THIS_MODULE,
1122		},
1123		.init = {
1124			.reg = BD718XX_REG_LDO2_VOLT,
1125			.mask = BD718XX_LDO_SEL,
1126			.val = BD718XX_LDO_SEL,
1127		},
1128	},
1129	{
1130		.desc = {
1131			.name = "ldo3",
1132			.of_match = of_match_ptr("LDO3"),
1133			.regulators_node = of_match_ptr("regulators"),
1134			.id = BD718XX_LDO3,
1135			.ops = &bd71837_ldo_regulator_ops,
1136			.type = REGULATOR_VOLTAGE,
1137			.n_voltages = BD718XX_LDO3_VOLTAGE_NUM,
1138			.linear_ranges = bd718xx_ldo3_volts,
1139			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo3_volts),
1140			.vsel_reg = BD718XX_REG_LDO3_VOLT,
1141			.vsel_mask = BD718XX_LDO3_MASK,
1142			.enable_reg = BD718XX_REG_LDO3_VOLT,
1143			.enable_mask = BD718XX_LDO_EN,
 
1144			.owner = THIS_MODULE,
1145		},
1146		.init = {
1147			.reg = BD718XX_REG_LDO3_VOLT,
1148			.mask = BD718XX_LDO_SEL,
1149			.val = BD718XX_LDO_SEL,
1150		},
1151	},
1152	{
1153		.desc = {
1154			.name = "ldo4",
1155			.of_match = of_match_ptr("LDO4"),
1156			.regulators_node = of_match_ptr("regulators"),
1157			.id = BD718XX_LDO4,
1158			.ops = &bd71837_ldo_regulator_ops,
1159			.type = REGULATOR_VOLTAGE,
1160			.n_voltages = BD718XX_LDO4_VOLTAGE_NUM,
1161			.linear_ranges = bd718xx_ldo4_volts,
1162			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo4_volts),
1163			.vsel_reg = BD718XX_REG_LDO4_VOLT,
1164			.vsel_mask = BD718XX_LDO4_MASK,
1165			.enable_reg = BD718XX_REG_LDO4_VOLT,
1166			.enable_mask = BD718XX_LDO_EN,
 
1167			.owner = THIS_MODULE,
1168		},
1169		.init = {
1170			.reg = BD718XX_REG_LDO4_VOLT,
1171			.mask = BD718XX_LDO_SEL,
1172			.val = BD718XX_LDO_SEL,
1173		},
1174	},
1175	{
1176		.desc = {
1177			.name = "ldo5",
1178			.of_match = of_match_ptr("LDO5"),
1179			.regulators_node = of_match_ptr("regulators"),
1180			.id = BD718XX_LDO5,
1181			.ops = &bd71837_ldo_regulator_ops,
1182			.type = REGULATOR_VOLTAGE,
1183			.n_voltages = BD71837_LDO5_VOLTAGE_NUM,
1184			.linear_ranges = bd71837_ldo5_volts,
1185			.n_linear_ranges = ARRAY_SIZE(bd71837_ldo5_volts),
1186			/* LDO5 is supplied by buck6 */
1187			.supply_name = "buck6",
1188			.vsel_reg = BD718XX_REG_LDO5_VOLT,
1189			.vsel_mask = BD71837_LDO5_MASK,
1190			.enable_reg = BD718XX_REG_LDO5_VOLT,
1191			.enable_mask = BD718XX_LDO_EN,
 
1192			.owner = THIS_MODULE,
1193		},
1194		.init = {
1195			.reg = BD718XX_REG_LDO5_VOLT,
1196			.mask = BD718XX_LDO_SEL,
1197			.val = BD718XX_LDO_SEL,
1198		},
1199		.additional_inits = bd71837_ldo5_inits,
1200		.additional_init_amnt = ARRAY_SIZE(bd71837_ldo5_inits),
1201	},
1202	{
1203		.desc = {
1204			.name = "ldo6",
1205			.of_match = of_match_ptr("LDO6"),
1206			.regulators_node = of_match_ptr("regulators"),
1207			.id = BD718XX_LDO6,
1208			.ops = &bd71837_ldo_regulator_ops,
1209			.type = REGULATOR_VOLTAGE,
1210			.n_voltages = BD718XX_LDO6_VOLTAGE_NUM,
1211			.linear_ranges = bd718xx_ldo6_volts,
1212			.n_linear_ranges = ARRAY_SIZE(bd718xx_ldo6_volts),
1213			/* LDO6 is supplied by buck7 */
1214			.supply_name = "buck7",
1215			.vsel_reg = BD718XX_REG_LDO6_VOLT,
1216			.vsel_mask = BD718XX_LDO6_MASK,
1217			.enable_reg = BD718XX_REG_LDO6_VOLT,
1218			.enable_mask = BD718XX_LDO_EN,
 
1219			.owner = THIS_MODULE,
1220		},
1221		.init = {
1222			.reg = BD718XX_REG_LDO6_VOLT,
1223			.mask = BD718XX_LDO_SEL,
1224			.val = BD718XX_LDO_SEL,
1225		},
1226		.additional_inits = bd71837_ldo6_inits,
1227		.additional_init_amnt = ARRAY_SIZE(bd71837_ldo6_inits),
1228	},
1229	{
1230		.desc = {
1231			.name = "ldo7",
1232			.of_match = of_match_ptr("LDO7"),
1233			.regulators_node = of_match_ptr("regulators"),
1234			.id = BD718XX_LDO7,
1235			.ops = &bd71837_ldo_regulator_ops,
1236			.type = REGULATOR_VOLTAGE,
1237			.n_voltages = BD71837_LDO7_VOLTAGE_NUM,
1238			.linear_ranges = bd71837_ldo7_volts,
1239			.n_linear_ranges = ARRAY_SIZE(bd71837_ldo7_volts),
1240			.vsel_reg = BD71837_REG_LDO7_VOLT,
1241			.vsel_mask = BD71837_LDO7_MASK,
1242			.enable_reg = BD71837_REG_LDO7_VOLT,
1243			.enable_mask = BD718XX_LDO_EN,
 
1244			.owner = THIS_MODULE,
1245		},
1246		.init = {
1247			.reg = BD71837_REG_LDO7_VOLT,
1248			.mask = BD718XX_LDO_SEL,
1249			.val = BD718XX_LDO_SEL,
1250		},
1251	},
1252};
1253
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1254static int bd718xx_probe(struct platform_device *pdev)
1255{
1256	struct bd718xx *mfd;
1257	struct regulator_config config = { 0 };
1258	int i, j, err;
1259	bool use_snvs;
1260	const struct bd718xx_regulator_data *reg_data;
1261	unsigned int num_reg_data;
1262	enum rohm_chip_type chip = platform_get_device_id(pdev)->driver_data;
 
1263
1264	mfd = dev_get_drvdata(pdev->dev.parent);
1265	if (!mfd) {
1266		dev_err(&pdev->dev, "No MFD driver data\n");
1267		err = -EINVAL;
1268		goto err;
1269	}
1270
1271	switch (chip) {
1272	case ROHM_CHIP_TYPE_BD71837:
1273		reg_data = bd71837_regulators;
1274		num_reg_data = ARRAY_SIZE(bd71837_regulators);
 
 
1275		break;
1276	case ROHM_CHIP_TYPE_BD71847:
1277		reg_data = bd71847_regulators;
1278		num_reg_data = ARRAY_SIZE(bd71847_regulators);
 
 
1279		break;
1280	default:
1281		dev_err(&pdev->dev, "Unsupported chip type\n");
1282		err = -EINVAL;
1283		goto err;
1284	}
1285
1286	/* Register LOCK release */
1287	err = regmap_update_bits(mfd->chip.regmap, BD718XX_REG_REGLOCK,
1288				 (REGLOCK_PWRSEQ | REGLOCK_VREG), 0);
1289	if (err) {
1290		dev_err(&pdev->dev, "Failed to unlock PMIC (%d)\n", err);
1291		goto err;
1292	} else {
1293		dev_dbg(&pdev->dev, "Unlocked lock register 0x%x\n",
1294			BD718XX_REG_REGLOCK);
1295	}
1296
1297	use_snvs = of_property_read_bool(pdev->dev.parent->of_node,
1298					 "rohm,reset-snvs-powered");
1299
1300	/*
1301	 * Change the next stage from poweroff to be READY instead of SNVS
1302	 * for all reset types because OTP loading at READY will clear SEL
1303	 * bit allowing HW defaults for power rails to be used
1304	 */
1305	if (!use_snvs) {
1306		err = regmap_update_bits(mfd->chip.regmap,
1307					 BD718XX_REG_TRANS_COND1,
1308					 BD718XX_ON_REQ_POWEROFF_MASK |
1309					 BD718XX_SWRESET_POWEROFF_MASK |
1310					 BD718XX_WDOG_POWEROFF_MASK |
1311					 BD718XX_KEY_L_POWEROFF_MASK,
1312					 BD718XX_POWOFF_TO_RDY);
1313		if (err) {
1314			dev_err(&pdev->dev, "Failed to change reset target\n");
1315			goto err;
1316		} else {
1317			dev_dbg(&pdev->dev,
1318				"Changed all resets from SVNS to READY\n");
1319		}
1320	}
1321
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1322	for (i = 0; i < num_reg_data; i++) {
1323
1324		const struct regulator_desc *desc;
1325		struct regulator_dev *rdev;
1326		const struct bd718xx_regulator_data *r;
 
1327
1328		r = &reg_data[i];
1329		desc = &r->desc;
1330
1331		config.dev = pdev->dev.parent;
1332		config.regmap = mfd->chip.regmap;
 
 
1333
1334		rdev = devm_regulator_register(&pdev->dev, desc, &config);
1335		if (IS_ERR(rdev)) {
1336			dev_err(&pdev->dev,
1337				"failed to register %s regulator\n",
1338				desc->name);
1339			err = PTR_ERR(rdev);
1340			goto err;
1341		}
1342
1343		/*
1344		 * Regulator register gets the regulator constraints and
1345		 * applies them (set_machine_constraints). This should have
1346		 * turned the control register(s) to correct values and we
1347		 * can now switch the control from PMIC state machine to the
1348		 * register interface
1349		 *
1350		 * At poweroff transition PMIC HW disables EN bit for
1351		 * regulators but leaves SEL bit untouched. So if state
1352		 * transition from POWEROFF is done to SNVS - then all power
1353		 * rails controlled by SW (having SEL bit set) stay disabled
1354		 * as EN is cleared. This will result boot failure if any
1355		 * crucial systems are powered by these rails. We don't
1356		 * enable SW control for crucial regulators if snvs state is
1357		 * used
1358		 */
1359		if (!use_snvs || !rdev->constraints->always_on ||
1360		    !rdev->constraints->boot_on) {
1361			err = regmap_update_bits(mfd->chip.regmap, r->init.reg,
 
1362						 r->init.mask, r->init.val);
1363			if (err) {
1364				dev_err(&pdev->dev,
1365					"Failed to take control for (%s)\n",
1366					desc->name);
1367				goto err;
1368			}
1369		}
1370		for (j = 0; j < r->additional_init_amnt; j++) {
1371			err = regmap_update_bits(mfd->chip.regmap,
1372						 r->additional_inits[j].reg,
1373						 r->additional_inits[j].mask,
1374						 r->additional_inits[j].val);
1375			if (err) {
1376				dev_err(&pdev->dev,
1377					"Buck (%s) initialization failed\n",
1378					desc->name);
1379				goto err;
1380			}
1381		}
1382	}
1383
1384err:
1385	return err;
1386}
1387
1388static const struct platform_device_id bd718x7_pmic_id[] = {
1389	{ "bd71837-pmic", ROHM_CHIP_TYPE_BD71837 },
1390	{ "bd71847-pmic", ROHM_CHIP_TYPE_BD71847 },
1391	{ },
1392};
1393MODULE_DEVICE_TABLE(platform, bd718x7_pmic_id);
1394
1395static struct platform_driver bd718xx_regulator = {
1396	.driver = {
1397		.name = "bd718xx-pmic",
 
1398	},
1399	.probe = bd718xx_probe,
1400	.id_table = bd718x7_pmic_id,
1401};
1402
1403module_platform_driver(bd718xx_regulator);
1404
1405MODULE_AUTHOR("Matti Vaittinen <matti.vaittinen@fi.rohmeurope.com>");
1406MODULE_DESCRIPTION("BD71837/BD71847 voltage regulator driver");
1407MODULE_LICENSE("GPL");
1408MODULE_ALIAS("platform:bd718xx-pmic");