2 * tps65910.c -- TI tps65910
4 * Copyright 2010 Texas Instruments Inc.
6 * Author: Graeme Gregory <gg@slimlogic.co.uk>
7 * Author: Jorge Eduardo Candelaria <jedu@slimlogic.co.uk>
9 * This program is free software; you can redistribute it and/or modify it
10 * under the terms of the GNU General Public License as published by the
11 * Free Software Foundation; either version 2 of the License, or (at your
12 * option) any later version.
16 #include <linux/kernel.h>
17 #include <linux/module.h>
18 #include <linux/init.h>
19 #include <linux/err.h>
20 #include <linux/platform_device.h>
21 #include <linux/regulator/driver.h>
22 #include <linux/regulator/machine.h>
23 #include <linux/slab.h>
24 #include <linux/gpio.h>
25 #include <linux/mfd/tps65910.h>
26 #include <linux/regulator/of_regulator.h>
28 #define TPS65910_SUPPLY_STATE_ENABLED 0x1
29 #define EXT_SLEEP_CONTROL (TPS65910_SLEEP_CONTROL_EXT_INPUT_EN1 | \
30 TPS65910_SLEEP_CONTROL_EXT_INPUT_EN2 | \
31 TPS65910_SLEEP_CONTROL_EXT_INPUT_EN3 | \
32 TPS65911_SLEEP_CONTROL_EXT_INPUT_SLEEP)
34 /* supported VIO voltages in millivolts */
35 static const u16 VIO_VSEL_table[] = {
36 1500, 1800, 2500, 3300,
39 /* VSEL tables for TPS65910 specific LDOs and dcdc's */
41 /* supported VDD3 voltages in millivolts */
42 static const u16 VDD3_VSEL_table[] = {
46 /* supported VDIG1 voltages in millivolts */
47 static const u16 VDIG1_VSEL_table[] = {
48 1200, 1500, 1800, 2700,
51 /* supported VDIG2 voltages in millivolts */
52 static const u16 VDIG2_VSEL_table[] = {
53 1000, 1100, 1200, 1800,
56 /* supported VPLL voltages in millivolts */
57 static const u16 VPLL_VSEL_table[] = {
58 1000, 1100, 1800, 2500,
61 /* supported VDAC voltages in millivolts */
62 static const u16 VDAC_VSEL_table[] = {
63 1800, 2600, 2800, 2850,
66 /* supported VAUX1 voltages in millivolts */
67 static const u16 VAUX1_VSEL_table[] = {
68 1800, 2500, 2800, 2850,
71 /* supported VAUX2 voltages in millivolts */
72 static const u16 VAUX2_VSEL_table[] = {
73 1800, 2800, 2900, 3300,
76 /* supported VAUX33 voltages in millivolts */
77 static const u16 VAUX33_VSEL_table[] = {
78 1800, 2000, 2800, 3300,
81 /* supported VMMC voltages in millivolts */
82 static const u16 VMMC_VSEL_table[] = {
83 1800, 2800, 3000, 3300,
91 const u16 *voltage_table;
95 static struct tps_info tps65910_regs[] = {
98 .enable_time_us = 2200,
104 .n_voltages = ARRAY_SIZE(VIO_VSEL_table),
105 .voltage_table = VIO_VSEL_table,
106 .enable_time_us = 350,
112 .enable_time_us = 350,
118 .enable_time_us = 350,
124 .n_voltages = ARRAY_SIZE(VDD3_VSEL_table),
125 .voltage_table = VDD3_VSEL_table,
126 .enable_time_us = 200,
132 .n_voltages = ARRAY_SIZE(VDIG1_VSEL_table),
133 .voltage_table = VDIG1_VSEL_table,
134 .enable_time_us = 100,
140 .n_voltages = ARRAY_SIZE(VDIG2_VSEL_table),
141 .voltage_table = VDIG2_VSEL_table,
142 .enable_time_us = 100,
148 .n_voltages = ARRAY_SIZE(VPLL_VSEL_table),
149 .voltage_table = VPLL_VSEL_table,
150 .enable_time_us = 100,
156 .n_voltages = ARRAY_SIZE(VDAC_VSEL_table),
157 .voltage_table = VDAC_VSEL_table,
158 .enable_time_us = 100,
164 .n_voltages = ARRAY_SIZE(VAUX1_VSEL_table),
165 .voltage_table = VAUX1_VSEL_table,
166 .enable_time_us = 100,
172 .n_voltages = ARRAY_SIZE(VAUX2_VSEL_table),
173 .voltage_table = VAUX2_VSEL_table,
174 .enable_time_us = 100,
180 .n_voltages = ARRAY_SIZE(VAUX33_VSEL_table),
181 .voltage_table = VAUX33_VSEL_table,
182 .enable_time_us = 100,
188 .n_voltages = ARRAY_SIZE(VMMC_VSEL_table),
189 .voltage_table = VMMC_VSEL_table,
190 .enable_time_us = 100,
194 static struct tps_info tps65911_regs[] = {
197 .enable_time_us = 2200,
203 .n_voltages = ARRAY_SIZE(VIO_VSEL_table),
204 .voltage_table = VIO_VSEL_table,
205 .enable_time_us = 350,
212 .enable_time_us = 350,
219 .enable_time_us = 350,
226 .enable_time_us = 900,
233 .enable_time_us = 420,
240 .enable_time_us = 420,
247 .enable_time_us = 230,
254 .enable_time_us = 230,
261 .enable_time_us = 230,
268 .enable_time_us = 230,
275 .enable_time_us = 230,
282 .enable_time_us = 230,
286 #define EXT_CONTROL_REG_BITS(id, regs_offs, bits) (((regs_offs) << 8) | (bits))
287 static unsigned int tps65910_ext_sleep_control[] = {
289 EXT_CONTROL_REG_BITS(VIO, 1, 0),
290 EXT_CONTROL_REG_BITS(VDD1, 1, 1),
291 EXT_CONTROL_REG_BITS(VDD2, 1, 2),
292 EXT_CONTROL_REG_BITS(VDD3, 1, 3),
293 EXT_CONTROL_REG_BITS(VDIG1, 0, 1),
294 EXT_CONTROL_REG_BITS(VDIG2, 0, 2),
295 EXT_CONTROL_REG_BITS(VPLL, 0, 6),
296 EXT_CONTROL_REG_BITS(VDAC, 0, 7),
297 EXT_CONTROL_REG_BITS(VAUX1, 0, 3),
298 EXT_CONTROL_REG_BITS(VAUX2, 0, 4),
299 EXT_CONTROL_REG_BITS(VAUX33, 0, 5),
300 EXT_CONTROL_REG_BITS(VMMC, 0, 0),
303 static unsigned int tps65911_ext_sleep_control[] = {
305 EXT_CONTROL_REG_BITS(VIO, 1, 0),
306 EXT_CONTROL_REG_BITS(VDD1, 1, 1),
307 EXT_CONTROL_REG_BITS(VDD2, 1, 2),
308 EXT_CONTROL_REG_BITS(VDDCTRL, 1, 3),
309 EXT_CONTROL_REG_BITS(LDO1, 0, 1),
310 EXT_CONTROL_REG_BITS(LDO2, 0, 2),
311 EXT_CONTROL_REG_BITS(LDO3, 0, 7),
312 EXT_CONTROL_REG_BITS(LDO4, 0, 6),
313 EXT_CONTROL_REG_BITS(LDO5, 0, 3),
314 EXT_CONTROL_REG_BITS(LDO6, 0, 0),
315 EXT_CONTROL_REG_BITS(LDO7, 0, 5),
316 EXT_CONTROL_REG_BITS(LDO8, 0, 4),
319 struct tps65910_reg {
320 struct regulator_desc *desc;
321 struct tps65910 *mfd;
322 struct regulator_dev **rdev;
323 struct tps_info **info;
327 int (*get_ctrl_reg)(int);
328 unsigned int *ext_sleep_control;
329 unsigned int board_ext_control[TPS65910_NUM_REGS];
332 static inline int tps65910_read(struct tps65910_reg *pmic, u8 reg)
337 err = tps65910_reg_read(pmic->mfd, reg, &val);
344 static int tps65910_modify_bits(struct tps65910_reg *pmic, u8 reg,
345 u8 set_mask, u8 clear_mask)
349 mutex_lock(&pmic->mutex);
351 data = tps65910_read(pmic, reg);
353 dev_err(pmic->mfd->dev, "Read from reg 0x%x failed\n", reg);
360 err = tps65910_reg_write(pmic->mfd, reg, data);
362 dev_err(pmic->mfd->dev, "Write for reg 0x%x failed\n", reg);
365 mutex_unlock(&pmic->mutex);
369 static int tps65910_reg_read_locked(struct tps65910_reg *pmic, u8 reg)
373 mutex_lock(&pmic->mutex);
375 data = tps65910_read(pmic, reg);
377 dev_err(pmic->mfd->dev, "Read from reg 0x%x failed\n", reg);
379 mutex_unlock(&pmic->mutex);
383 static int tps65910_reg_write_locked(struct tps65910_reg *pmic, u8 reg, u8 val)
387 mutex_lock(&pmic->mutex);
389 err = tps65910_reg_write(pmic->mfd, reg, val);
391 dev_err(pmic->mfd->dev, "Write for reg 0x%x failed\n", reg);
393 mutex_unlock(&pmic->mutex);
397 static int tps65910_get_ctrl_register(int id)
400 case TPS65910_REG_VRTC:
401 return TPS65910_VRTC;
402 case TPS65910_REG_VIO:
404 case TPS65910_REG_VDD1:
405 return TPS65910_VDD1;
406 case TPS65910_REG_VDD2:
407 return TPS65910_VDD2;
408 case TPS65910_REG_VDD3:
409 return TPS65910_VDD3;
410 case TPS65910_REG_VDIG1:
411 return TPS65910_VDIG1;
412 case TPS65910_REG_VDIG2:
413 return TPS65910_VDIG2;
414 case TPS65910_REG_VPLL:
415 return TPS65910_VPLL;
416 case TPS65910_REG_VDAC:
417 return TPS65910_VDAC;
418 case TPS65910_REG_VAUX1:
419 return TPS65910_VAUX1;
420 case TPS65910_REG_VAUX2:
421 return TPS65910_VAUX2;
422 case TPS65910_REG_VAUX33:
423 return TPS65910_VAUX33;
424 case TPS65910_REG_VMMC:
425 return TPS65910_VMMC;
431 static int tps65911_get_ctrl_register(int id)
434 case TPS65910_REG_VRTC:
435 return TPS65910_VRTC;
436 case TPS65910_REG_VIO:
438 case TPS65910_REG_VDD1:
439 return TPS65910_VDD1;
440 case TPS65910_REG_VDD2:
441 return TPS65910_VDD2;
442 case TPS65911_REG_VDDCTRL:
443 return TPS65911_VDDCTRL;
444 case TPS65911_REG_LDO1:
445 return TPS65911_LDO1;
446 case TPS65911_REG_LDO2:
447 return TPS65911_LDO2;
448 case TPS65911_REG_LDO3:
449 return TPS65911_LDO3;
450 case TPS65911_REG_LDO4:
451 return TPS65911_LDO4;
452 case TPS65911_REG_LDO5:
453 return TPS65911_LDO5;
454 case TPS65911_REG_LDO6:
455 return TPS65911_LDO6;
456 case TPS65911_REG_LDO7:
457 return TPS65911_LDO7;
458 case TPS65911_REG_LDO8:
459 return TPS65911_LDO8;
465 static int tps65910_enable_time(struct regulator_dev *dev)
467 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
468 int id = rdev_get_id(dev);
469 return pmic->info[id]->enable_time_us;
472 static int tps65910_set_mode(struct regulator_dev *dev, unsigned int mode)
474 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
475 struct tps65910 *mfd = pmic->mfd;
476 int reg, value, id = rdev_get_id(dev);
478 reg = pmic->get_ctrl_reg(id);
483 case REGULATOR_MODE_NORMAL:
484 return tps65910_modify_bits(pmic, reg, LDO_ST_ON_BIT,
486 case REGULATOR_MODE_IDLE:
487 value = LDO_ST_ON_BIT | LDO_ST_MODE_BIT;
488 return tps65910_reg_set_bits(mfd, reg, value);
489 case REGULATOR_MODE_STANDBY:
490 return tps65910_reg_clear_bits(mfd, reg, LDO_ST_ON_BIT);
496 static unsigned int tps65910_get_mode(struct regulator_dev *dev)
498 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
499 int reg, value, id = rdev_get_id(dev);
501 reg = pmic->get_ctrl_reg(id);
505 value = tps65910_reg_read_locked(pmic, reg);
509 if (!(value & LDO_ST_ON_BIT))
510 return REGULATOR_MODE_STANDBY;
511 else if (value & LDO_ST_MODE_BIT)
512 return REGULATOR_MODE_IDLE;
514 return REGULATOR_MODE_NORMAL;
517 static int tps65910_get_voltage_dcdc_sel(struct regulator_dev *dev)
519 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
520 int id = rdev_get_id(dev);
521 int opvsel = 0, srvsel = 0, vselmax = 0, mult = 0, sr = 0;
524 case TPS65910_REG_VDD1:
525 opvsel = tps65910_reg_read_locked(pmic, TPS65910_VDD1_OP);
526 mult = tps65910_reg_read_locked(pmic, TPS65910_VDD1);
527 mult = (mult & VDD1_VGAIN_SEL_MASK) >> VDD1_VGAIN_SEL_SHIFT;
528 srvsel = tps65910_reg_read_locked(pmic, TPS65910_VDD1_SR);
529 sr = opvsel & VDD1_OP_CMD_MASK;
530 opvsel &= VDD1_OP_SEL_MASK;
531 srvsel &= VDD1_SR_SEL_MASK;
534 case TPS65910_REG_VDD2:
535 opvsel = tps65910_reg_read_locked(pmic, TPS65910_VDD2_OP);
536 mult = tps65910_reg_read_locked(pmic, TPS65910_VDD2);
537 mult = (mult & VDD2_VGAIN_SEL_MASK) >> VDD2_VGAIN_SEL_SHIFT;
538 srvsel = tps65910_reg_read_locked(pmic, TPS65910_VDD2_SR);
539 sr = opvsel & VDD2_OP_CMD_MASK;
540 opvsel &= VDD2_OP_SEL_MASK;
541 srvsel &= VDD2_SR_SEL_MASK;
544 case TPS65911_REG_VDDCTRL:
545 opvsel = tps65910_reg_read_locked(pmic, TPS65911_VDDCTRL_OP);
546 srvsel = tps65910_reg_read_locked(pmic, TPS65911_VDDCTRL_SR);
547 sr = opvsel & VDDCTRL_OP_CMD_MASK;
548 opvsel &= VDDCTRL_OP_SEL_MASK;
549 srvsel &= VDDCTRL_SR_SEL_MASK;
554 /* multiplier 0 == 1 but 2,3 normal */
559 /* normalise to valid range */
562 if (srvsel > vselmax)
567 /* normalise to valid range*/
570 if (opvsel > vselmax)
577 static int tps65910_get_voltage_sel(struct regulator_dev *dev)
579 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
580 int reg, value, id = rdev_get_id(dev);
582 reg = pmic->get_ctrl_reg(id);
586 value = tps65910_reg_read_locked(pmic, reg);
591 case TPS65910_REG_VIO:
592 case TPS65910_REG_VDIG1:
593 case TPS65910_REG_VDIG2:
594 case TPS65910_REG_VPLL:
595 case TPS65910_REG_VDAC:
596 case TPS65910_REG_VAUX1:
597 case TPS65910_REG_VAUX2:
598 case TPS65910_REG_VAUX33:
599 case TPS65910_REG_VMMC:
600 value &= LDO_SEL_MASK;
601 value >>= LDO_SEL_SHIFT;
610 static int tps65910_get_voltage_vdd3(struct regulator_dev *dev)
612 return 5 * 1000 * 1000;
615 static int tps65911_get_voltage_sel(struct regulator_dev *dev)
617 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
618 int id = rdev_get_id(dev);
621 reg = pmic->get_ctrl_reg(id);
623 value = tps65910_reg_read_locked(pmic, reg);
626 case TPS65911_REG_LDO1:
627 case TPS65911_REG_LDO2:
628 case TPS65911_REG_LDO4:
629 value &= LDO1_SEL_MASK;
630 value >>= LDO_SEL_SHIFT;
632 case TPS65911_REG_LDO3:
633 case TPS65911_REG_LDO5:
634 case TPS65911_REG_LDO6:
635 case TPS65911_REG_LDO7:
636 case TPS65911_REG_LDO8:
637 value &= LDO3_SEL_MASK;
638 value >>= LDO_SEL_SHIFT;
640 case TPS65910_REG_VIO:
641 value &= LDO_SEL_MASK;
642 value >>= LDO_SEL_SHIFT;
651 static int tps65910_set_voltage_dcdc_sel(struct regulator_dev *dev,
654 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
655 int id = rdev_get_id(dev), vsel;
659 case TPS65910_REG_VDD1:
660 dcdc_mult = (selector / VDD1_2_NUM_VOLT_FINE) + 1;
663 vsel = (selector % VDD1_2_NUM_VOLT_FINE) + 3;
665 tps65910_modify_bits(pmic, TPS65910_VDD1,
666 (dcdc_mult << VDD1_VGAIN_SEL_SHIFT),
667 VDD1_VGAIN_SEL_MASK);
668 tps65910_reg_write_locked(pmic, TPS65910_VDD1_OP, vsel);
670 case TPS65910_REG_VDD2:
671 dcdc_mult = (selector / VDD1_2_NUM_VOLT_FINE) + 1;
674 vsel = (selector % VDD1_2_NUM_VOLT_FINE) + 3;
676 tps65910_modify_bits(pmic, TPS65910_VDD2,
677 (dcdc_mult << VDD2_VGAIN_SEL_SHIFT),
678 VDD1_VGAIN_SEL_MASK);
679 tps65910_reg_write_locked(pmic, TPS65910_VDD2_OP, vsel);
681 case TPS65911_REG_VDDCTRL:
683 tps65910_reg_write_locked(pmic, TPS65911_VDDCTRL_OP, vsel);
689 static int tps65910_set_voltage_sel(struct regulator_dev *dev,
692 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
693 int reg, id = rdev_get_id(dev);
695 reg = pmic->get_ctrl_reg(id);
700 case TPS65910_REG_VIO:
701 case TPS65910_REG_VDIG1:
702 case TPS65910_REG_VDIG2:
703 case TPS65910_REG_VPLL:
704 case TPS65910_REG_VDAC:
705 case TPS65910_REG_VAUX1:
706 case TPS65910_REG_VAUX2:
707 case TPS65910_REG_VAUX33:
708 case TPS65910_REG_VMMC:
709 return tps65910_modify_bits(pmic, reg,
710 (selector << LDO_SEL_SHIFT), LDO_SEL_MASK);
716 static int tps65911_set_voltage_sel(struct regulator_dev *dev,
719 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
720 int reg, id = rdev_get_id(dev);
722 reg = pmic->get_ctrl_reg(id);
727 case TPS65911_REG_LDO1:
728 case TPS65911_REG_LDO2:
729 case TPS65911_REG_LDO4:
730 return tps65910_modify_bits(pmic, reg,
731 (selector << LDO_SEL_SHIFT), LDO1_SEL_MASK);
732 case TPS65911_REG_LDO3:
733 case TPS65911_REG_LDO5:
734 case TPS65911_REG_LDO6:
735 case TPS65911_REG_LDO7:
736 case TPS65911_REG_LDO8:
737 return tps65910_modify_bits(pmic, reg,
738 (selector << LDO_SEL_SHIFT), LDO3_SEL_MASK);
739 case TPS65910_REG_VIO:
740 return tps65910_modify_bits(pmic, reg,
741 (selector << LDO_SEL_SHIFT), LDO_SEL_MASK);
748 static int tps65910_list_voltage_dcdc(struct regulator_dev *dev,
751 int volt, mult = 1, id = rdev_get_id(dev);
754 case TPS65910_REG_VDD1:
755 case TPS65910_REG_VDD2:
756 mult = (selector / VDD1_2_NUM_VOLT_FINE) + 1;
757 volt = VDD1_2_MIN_VOLT +
758 (selector % VDD1_2_NUM_VOLT_FINE) * VDD1_2_OFFSET;
760 case TPS65911_REG_VDDCTRL:
761 volt = VDDCTRL_MIN_VOLT + (selector * VDDCTRL_OFFSET);
768 return volt * 100 * mult;
771 static int tps65910_list_voltage(struct regulator_dev *dev,
774 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
775 int id = rdev_get_id(dev), voltage;
777 if (id < TPS65910_REG_VIO || id > TPS65910_REG_VMMC)
780 if (selector >= pmic->info[id]->n_voltages)
783 voltage = pmic->info[id]->voltage_table[selector] * 1000;
788 static int tps65911_list_voltage(struct regulator_dev *dev, unsigned selector)
790 struct tps65910_reg *pmic = rdev_get_drvdata(dev);
791 int step_mv = 0, id = rdev_get_id(dev);
794 case TPS65911_REG_LDO1:
795 case TPS65911_REG_LDO2:
796 case TPS65911_REG_LDO4:
797 /* The first 5 values of the selector correspond to 1V */
805 case TPS65911_REG_LDO3:
806 case TPS65911_REG_LDO5:
807 case TPS65911_REG_LDO6:
808 case TPS65911_REG_LDO7:
809 case TPS65911_REG_LDO8:
810 /* The first 3 values of the selector correspond to 1V */
818 case TPS65910_REG_VIO:
819 return pmic->info[id]->voltage_table[selector] * 1000;
824 return (LDO_MIN_VOLT + selector * step_mv) * 1000;
827 static int tps65910_set_voltage_dcdc_time_sel(struct regulator_dev *dev,
828 unsigned int old_selector, unsigned int new_selector)
830 int id = rdev_get_id(dev);
831 int old_volt, new_volt;
833 old_volt = tps65910_list_voltage_dcdc(dev, old_selector);
837 new_volt = tps65910_list_voltage_dcdc(dev, new_selector);
841 /* VDD1 and VDD2 are 12.5mV/us, VDDCTRL is 100mV/20us */
843 case TPS65910_REG_VDD1:
844 case TPS65910_REG_VDD2:
845 return DIV_ROUND_UP(abs(old_volt - new_volt), 12500);
846 case TPS65911_REG_VDDCTRL:
847 return DIV_ROUND_UP(abs(old_volt - new_volt), 5000);
852 /* Regulator ops (except VRTC) */
853 static struct regulator_ops tps65910_ops_dcdc = {
854 .is_enabled = regulator_is_enabled_regmap,
855 .enable = regulator_enable_regmap,
856 .disable = regulator_disable_regmap,
857 .enable_time = tps65910_enable_time,
858 .set_mode = tps65910_set_mode,
859 .get_mode = tps65910_get_mode,
860 .get_voltage_sel = tps65910_get_voltage_dcdc_sel,
861 .set_voltage_sel = tps65910_set_voltage_dcdc_sel,
862 .set_voltage_time_sel = tps65910_set_voltage_dcdc_time_sel,
863 .list_voltage = tps65910_list_voltage_dcdc,
866 static struct regulator_ops tps65910_ops_vdd3 = {
867 .is_enabled = regulator_is_enabled_regmap,
868 .enable = regulator_enable_regmap,
869 .disable = regulator_disable_regmap,
870 .enable_time = tps65910_enable_time,
871 .set_mode = tps65910_set_mode,
872 .get_mode = tps65910_get_mode,
873 .get_voltage = tps65910_get_voltage_vdd3,
874 .list_voltage = tps65910_list_voltage,
877 static struct regulator_ops tps65910_ops = {
878 .is_enabled = regulator_is_enabled_regmap,
879 .enable = regulator_enable_regmap,
880 .disable = regulator_disable_regmap,
881 .enable_time = tps65910_enable_time,
882 .set_mode = tps65910_set_mode,
883 .get_mode = tps65910_get_mode,
884 .get_voltage_sel = tps65910_get_voltage_sel,
885 .set_voltage_sel = tps65910_set_voltage_sel,
886 .list_voltage = tps65910_list_voltage,
889 static struct regulator_ops tps65911_ops = {
890 .is_enabled = regulator_is_enabled_regmap,
891 .enable = regulator_enable_regmap,
892 .disable = regulator_disable_regmap,
893 .enable_time = tps65910_enable_time,
894 .set_mode = tps65910_set_mode,
895 .get_mode = tps65910_get_mode,
896 .get_voltage_sel = tps65911_get_voltage_sel,
897 .set_voltage_sel = tps65911_set_voltage_sel,
898 .list_voltage = tps65911_list_voltage,
901 static int tps65910_set_ext_sleep_config(struct tps65910_reg *pmic,
902 int id, int ext_sleep_config)
904 struct tps65910 *mfd = pmic->mfd;
905 u8 regoffs = (pmic->ext_sleep_control[id] >> 8) & 0xFF;
906 u8 bit_pos = (1 << pmic->ext_sleep_control[id] & 0xFF);
910 * Regulator can not be control from multiple external input EN1, EN2
913 if (ext_sleep_config & EXT_SLEEP_CONTROL) {
915 en_count = ((ext_sleep_config &
916 TPS65910_SLEEP_CONTROL_EXT_INPUT_EN1) != 0);
917 en_count += ((ext_sleep_config &
918 TPS65910_SLEEP_CONTROL_EXT_INPUT_EN2) != 0);
919 en_count += ((ext_sleep_config &
920 TPS65910_SLEEP_CONTROL_EXT_INPUT_EN3) != 0);
921 en_count += ((ext_sleep_config &
922 TPS65911_SLEEP_CONTROL_EXT_INPUT_SLEEP) != 0);
925 "External sleep control flag is not proper\n");
930 pmic->board_ext_control[id] = ext_sleep_config;
932 /* External EN1 control */
933 if (ext_sleep_config & TPS65910_SLEEP_CONTROL_EXT_INPUT_EN1)
934 ret = tps65910_reg_set_bits(mfd,
935 TPS65910_EN1_LDO_ASS + regoffs, bit_pos);
937 ret = tps65910_reg_clear_bits(mfd,
938 TPS65910_EN1_LDO_ASS + regoffs, bit_pos);
941 "Error in configuring external control EN1\n");
945 /* External EN2 control */
946 if (ext_sleep_config & TPS65910_SLEEP_CONTROL_EXT_INPUT_EN2)
947 ret = tps65910_reg_set_bits(mfd,
948 TPS65910_EN2_LDO_ASS + regoffs, bit_pos);
950 ret = tps65910_reg_clear_bits(mfd,
951 TPS65910_EN2_LDO_ASS + regoffs, bit_pos);
954 "Error in configuring external control EN2\n");
958 /* External EN3 control for TPS65910 LDO only */
959 if ((tps65910_chip_id(mfd) == TPS65910) &&
960 (id >= TPS65910_REG_VDIG1)) {
961 if (ext_sleep_config & TPS65910_SLEEP_CONTROL_EXT_INPUT_EN3)
962 ret = tps65910_reg_set_bits(mfd,
963 TPS65910_EN3_LDO_ASS + regoffs, bit_pos);
965 ret = tps65910_reg_clear_bits(mfd,
966 TPS65910_EN3_LDO_ASS + regoffs, bit_pos);
969 "Error in configuring external control EN3\n");
974 /* Return if no external control is selected */
975 if (!(ext_sleep_config & EXT_SLEEP_CONTROL)) {
976 /* Clear all sleep controls */
977 ret = tps65910_reg_clear_bits(mfd,
978 TPS65910_SLEEP_KEEP_LDO_ON + regoffs, bit_pos);
980 ret = tps65910_reg_clear_bits(mfd,
981 TPS65910_SLEEP_SET_LDO_OFF + regoffs, bit_pos);
984 "Error in configuring SLEEP register\n");
989 * For regulator that has separate operational and sleep register make
990 * sure that operational is used and clear sleep register to turn
991 * regulator off when external control is inactive
993 if ((id == TPS65910_REG_VDD1) ||
994 (id == TPS65910_REG_VDD2) ||
995 ((id == TPS65911_REG_VDDCTRL) &&
996 (tps65910_chip_id(mfd) == TPS65911))) {
997 int op_reg_add = pmic->get_ctrl_reg(id) + 1;
998 int sr_reg_add = pmic->get_ctrl_reg(id) + 2;
999 int opvsel = tps65910_reg_read_locked(pmic, op_reg_add);
1000 int srvsel = tps65910_reg_read_locked(pmic, sr_reg_add);
1001 if (opvsel & VDD1_OP_CMD_MASK) {
1002 u8 reg_val = srvsel & VDD1_OP_SEL_MASK;
1003 ret = tps65910_reg_write_locked(pmic, op_reg_add,
1007 "Error in configuring op register\n");
1011 ret = tps65910_reg_write_locked(pmic, sr_reg_add, 0);
1013 dev_err(mfd->dev, "Error in settting sr register\n");
1018 ret = tps65910_reg_clear_bits(mfd,
1019 TPS65910_SLEEP_KEEP_LDO_ON + regoffs, bit_pos);
1021 if (ext_sleep_config & TPS65911_SLEEP_CONTROL_EXT_INPUT_SLEEP)
1022 ret = tps65910_reg_set_bits(mfd,
1023 TPS65910_SLEEP_SET_LDO_OFF + regoffs, bit_pos);
1025 ret = tps65910_reg_clear_bits(mfd,
1026 TPS65910_SLEEP_SET_LDO_OFF + regoffs, bit_pos);
1030 "Error in configuring SLEEP register\n");
1037 static struct of_regulator_match tps65910_matches[] = {
1038 { .name = "vrtc", .driver_data = (void *) &tps65910_regs[0] },
1039 { .name = "vio", .driver_data = (void *) &tps65910_regs[1] },
1040 { .name = "vdd1", .driver_data = (void *) &tps65910_regs[2] },
1041 { .name = "vdd2", .driver_data = (void *) &tps65910_regs[3] },
1042 { .name = "vdd3", .driver_data = (void *) &tps65910_regs[4] },
1043 { .name = "vdig1", .driver_data = (void *) &tps65910_regs[5] },
1044 { .name = "vdig2", .driver_data = (void *) &tps65910_regs[6] },
1045 { .name = "vpll", .driver_data = (void *) &tps65910_regs[7] },
1046 { .name = "vdac", .driver_data = (void *) &tps65910_regs[8] },
1047 { .name = "vaux1", .driver_data = (void *) &tps65910_regs[9] },
1048 { .name = "vaux2", .driver_data = (void *) &tps65910_regs[10] },
1049 { .name = "vaux33", .driver_data = (void *) &tps65910_regs[11] },
1050 { .name = "vmmc", .driver_data = (void *) &tps65910_regs[12] },
1053 static struct of_regulator_match tps65911_matches[] = {
1054 { .name = "vrtc", .driver_data = (void *) &tps65911_regs[0] },
1055 { .name = "vio", .driver_data = (void *) &tps65911_regs[1] },
1056 { .name = "vdd1", .driver_data = (void *) &tps65911_regs[2] },
1057 { .name = "vdd2", .driver_data = (void *) &tps65911_regs[3] },
1058 { .name = "vddctrl", .driver_data = (void *) &tps65911_regs[4] },
1059 { .name = "ldo1", .driver_data = (void *) &tps65911_regs[5] },
1060 { .name = "ldo2", .driver_data = (void *) &tps65911_regs[6] },
1061 { .name = "ldo3", .driver_data = (void *) &tps65911_regs[7] },
1062 { .name = "ldo4", .driver_data = (void *) &tps65911_regs[8] },
1063 { .name = "ldo5", .driver_data = (void *) &tps65911_regs[9] },
1064 { .name = "ldo6", .driver_data = (void *) &tps65911_regs[10] },
1065 { .name = "ldo7", .driver_data = (void *) &tps65911_regs[11] },
1066 { .name = "ldo8", .driver_data = (void *) &tps65911_regs[12] },
1069 static struct tps65910_board *tps65910_parse_dt_reg_data(
1070 struct platform_device *pdev,
1071 struct of_regulator_match **tps65910_reg_matches)
1073 struct tps65910_board *pmic_plat_data;
1074 struct tps65910 *tps65910 = dev_get_drvdata(pdev->dev.parent);
1075 struct device_node *np = pdev->dev.parent->of_node;
1076 struct device_node *regulators;
1077 struct of_regulator_match *matches;
1079 int idx = 0, ret, count;
1081 pmic_plat_data = devm_kzalloc(&pdev->dev, sizeof(*pmic_plat_data),
1084 if (!pmic_plat_data) {
1085 dev_err(&pdev->dev, "Failure to alloc pdata for regulators.\n");
1089 regulators = of_find_node_by_name(np, "regulators");
1091 dev_err(&pdev->dev, "regulator node not found\n");
1095 switch (tps65910_chip_id(tps65910)) {
1097 count = ARRAY_SIZE(tps65910_matches);
1098 matches = tps65910_matches;
1101 count = ARRAY_SIZE(tps65911_matches);
1102 matches = tps65911_matches;
1105 dev_err(&pdev->dev, "Invalid tps chip version\n");
1109 ret = of_regulator_match(pdev->dev.parent, regulators, matches, count);
1111 dev_err(&pdev->dev, "Error parsing regulator init data: %d\n",
1116 *tps65910_reg_matches = matches;
1118 for (idx = 0; idx < count; idx++) {
1119 if (!matches[idx].init_data || !matches[idx].of_node)
1122 pmic_plat_data->tps65910_pmic_init_data[idx] =
1123 matches[idx].init_data;
1125 ret = of_property_read_u32(matches[idx].of_node,
1126 "ti,regulator-ext-sleep-control", &prop);
1128 pmic_plat_data->regulator_ext_sleep_control[idx] = prop;
1131 return pmic_plat_data;
1134 static inline struct tps65910_board *tps65910_parse_dt_reg_data(
1135 struct platform_device *pdev,
1136 struct of_regulator_match **tps65910_reg_matches)
1138 *tps65910_reg_matches = NULL;
1143 static __devinit int tps65910_probe(struct platform_device *pdev)
1145 struct tps65910 *tps65910 = dev_get_drvdata(pdev->dev.parent);
1146 struct regulator_config config = { };
1147 struct tps_info *info;
1148 struct regulator_init_data *reg_data;
1149 struct regulator_dev *rdev;
1150 struct tps65910_reg *pmic;
1151 struct tps65910_board *pmic_plat_data;
1152 struct of_regulator_match *tps65910_reg_matches = NULL;
1155 pmic_plat_data = dev_get_platdata(tps65910->dev);
1156 if (!pmic_plat_data && tps65910->dev->of_node)
1157 pmic_plat_data = tps65910_parse_dt_reg_data(pdev,
1158 &tps65910_reg_matches);
1160 if (!pmic_plat_data) {
1161 dev_err(&pdev->dev, "Platform data not found\n");
1165 pmic = devm_kzalloc(&pdev->dev, sizeof(*pmic), GFP_KERNEL);
1167 dev_err(&pdev->dev, "Memory allocation failed for pmic\n");
1171 mutex_init(&pmic->mutex);
1172 pmic->mfd = tps65910;
1173 platform_set_drvdata(pdev, pmic);
1175 /* Give control of all register to control port */
1176 tps65910_reg_set_bits(pmic->mfd, TPS65910_DEVCTRL,
1177 DEVCTRL_SR_CTL_I2C_SEL_MASK);
1179 switch(tps65910_chip_id(tps65910)) {
1181 pmic->get_ctrl_reg = &tps65910_get_ctrl_register;
1182 pmic->num_regulators = ARRAY_SIZE(tps65910_regs);
1183 pmic->ext_sleep_control = tps65910_ext_sleep_control;
1184 info = tps65910_regs;
1187 pmic->get_ctrl_reg = &tps65911_get_ctrl_register;
1188 pmic->num_regulators = ARRAY_SIZE(tps65911_regs);
1189 pmic->ext_sleep_control = tps65911_ext_sleep_control;
1190 info = tps65911_regs;
1193 dev_err(&pdev->dev, "Invalid tps chip version\n");
1197 pmic->desc = devm_kzalloc(&pdev->dev, pmic->num_regulators *
1198 sizeof(struct regulator_desc), GFP_KERNEL);
1200 dev_err(&pdev->dev, "Memory alloc fails for desc\n");
1204 pmic->info = devm_kzalloc(&pdev->dev, pmic->num_regulators *
1205 sizeof(struct tps_info *), GFP_KERNEL);
1207 dev_err(&pdev->dev, "Memory alloc fails for info\n");
1211 pmic->rdev = devm_kzalloc(&pdev->dev, pmic->num_regulators *
1212 sizeof(struct regulator_dev *), GFP_KERNEL);
1214 dev_err(&pdev->dev, "Memory alloc fails for rdev\n");
1218 for (i = 0; i < pmic->num_regulators && i < TPS65910_NUM_REGS;
1221 reg_data = pmic_plat_data->tps65910_pmic_init_data[i];
1223 /* Regulator API handles empty constraints but not NULL
1228 /* Register the regulators */
1229 pmic->info[i] = info;
1231 pmic->desc[i].name = info->name;
1232 pmic->desc[i].id = i;
1233 pmic->desc[i].n_voltages = info->n_voltages;
1235 if (i == TPS65910_REG_VDD1 || i == TPS65910_REG_VDD2) {
1236 pmic->desc[i].ops = &tps65910_ops_dcdc;
1237 pmic->desc[i].n_voltages = VDD1_2_NUM_VOLT_FINE *
1238 VDD1_2_NUM_VOLT_COARSE;
1239 } else if (i == TPS65910_REG_VDD3) {
1240 if (tps65910_chip_id(tps65910) == TPS65910)
1241 pmic->desc[i].ops = &tps65910_ops_vdd3;
1243 pmic->desc[i].ops = &tps65910_ops_dcdc;
1245 if (tps65910_chip_id(tps65910) == TPS65910)
1246 pmic->desc[i].ops = &tps65910_ops;
1248 pmic->desc[i].ops = &tps65911_ops;
1251 err = tps65910_set_ext_sleep_config(pmic, i,
1252 pmic_plat_data->regulator_ext_sleep_control[i]);
1254 * Failing on regulator for configuring externally control
1255 * is not a serious issue, just throw warning.
1258 dev_warn(tps65910->dev,
1259 "Failed to initialise ext control config\n");
1261 pmic->desc[i].type = REGULATOR_VOLTAGE;
1262 pmic->desc[i].owner = THIS_MODULE;
1263 pmic->desc[i].enable_reg = pmic->get_ctrl_reg(i);
1264 pmic->desc[i].enable_mask = TPS65910_SUPPLY_STATE_ENABLED;
1266 config.dev = tps65910->dev;
1267 config.init_data = reg_data;
1268 config.driver_data = pmic;
1269 config.regmap = tps65910->regmap;
1271 if (tps65910_reg_matches)
1272 config.of_node = tps65910_reg_matches[i].of_node;
1274 rdev = regulator_register(&pmic->desc[i], &config);
1276 dev_err(tps65910->dev,
1277 "failed to register %s regulator\n",
1279 err = PTR_ERR(rdev);
1280 goto err_unregister_regulator;
1283 /* Save regulator for cleanup */
1284 pmic->rdev[i] = rdev;
1288 err_unregister_regulator:
1290 regulator_unregister(pmic->rdev[i]);
1294 static int __devexit tps65910_remove(struct platform_device *pdev)
1296 struct tps65910_reg *pmic = platform_get_drvdata(pdev);
1299 for (i = 0; i < pmic->num_regulators; i++)
1300 regulator_unregister(pmic->rdev[i]);
1305 static void tps65910_shutdown(struct platform_device *pdev)
1307 struct tps65910_reg *pmic = platform_get_drvdata(pdev);
1311 * Before bootloader jumps to kernel, it makes sure that required
1312 * external control signals are in desired state so that given rails
1313 * can be configure accordingly.
1314 * If rails are configured to be controlled from external control
1315 * then before shutting down/rebooting the system, the external
1316 * control configuration need to be remove from the rails so that
1317 * its output will be available as per register programming even
1318 * if external controls are removed. This is require when the POR
1319 * value of the control signals are not in active state and before
1320 * bootloader initializes it, the system requires the rail output
1321 * to be active for booting.
1323 for (i = 0; i < pmic->num_regulators; i++) {
1328 err = tps65910_set_ext_sleep_config(pmic, i, 0);
1331 "Error in clearing external control\n");
1335 static struct platform_driver tps65910_driver = {
1337 .name = "tps65910-pmic",
1338 .owner = THIS_MODULE,
1340 .probe = tps65910_probe,
1341 .remove = __devexit_p(tps65910_remove),
1342 .shutdown = tps65910_shutdown,
1345 static int __init tps65910_init(void)
1347 return platform_driver_register(&tps65910_driver);
1349 subsys_initcall(tps65910_init);
1351 static void __exit tps65910_cleanup(void)
1353 platform_driver_unregister(&tps65910_driver);
1355 module_exit(tps65910_cleanup);
1357 MODULE_AUTHOR("Graeme Gregory <gg@slimlogic.co.uk>");
1358 MODULE_DESCRIPTION("TPS65910/TPS65911 voltage regulator driver");
1359 MODULE_LICENSE("GPL v2");
1360 MODULE_ALIAS("platform:tps65910-pmic");