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3f1a9e630b
LDO9 and LDO10 were listed with the same enable bits. That looks insane and there are no provisions in the code for handling such a special case. Also other out-of-tree drivers use a separate bit to enable it. Example: https://github.com/brunotl/kernel-kobo-mx6sl-ntx/blob/master/drivers/regulator/ricoh619-regulator.c So it seems to be clearly a bug. I cannot fully check it on my board without schematics and just discovered this during code analysis for another problem. Signed-off-by: Andreas Kemnade <andreas@kemnade.info> Link: https://lore.kernel.org/r/20191113182643.23885-1-andreas@kemnade.info Signed-off-by: Mark Brown <broonie@kernel.org>
154 lines
5.4 KiB
C
154 lines
5.4 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Regulator driver for Ricoh RN5T618 PMIC
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*
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* Copyright (C) 2014 Beniamino Galvani <b.galvani@gmail.com>
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*/
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#include <linux/mfd/rn5t618.h>
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#include <linux/module.h>
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#include <linux/of.h>
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#include <linux/platform_device.h>
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#include <linux/regmap.h>
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#include <linux/regulator/driver.h>
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#include <linux/regulator/of_regulator.h>
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static const struct regulator_ops rn5t618_reg_ops = {
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.enable = regulator_enable_regmap,
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.disable = regulator_disable_regmap,
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.is_enabled = regulator_is_enabled_regmap,
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.set_voltage_sel = regulator_set_voltage_sel_regmap,
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.get_voltage_sel = regulator_get_voltage_sel_regmap,
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.list_voltage = regulator_list_voltage_linear,
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};
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#define REG(rid, ereg, emask, vreg, vmask, min, max, step) \
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{ \
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.name = #rid, \
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.of_match = of_match_ptr(#rid), \
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.regulators_node = of_match_ptr("regulators"), \
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.id = RN5T618_##rid, \
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.type = REGULATOR_VOLTAGE, \
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.owner = THIS_MODULE, \
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.ops = &rn5t618_reg_ops, \
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.n_voltages = ((max) - (min)) / (step) + 1, \
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.min_uV = (min), \
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.uV_step = (step), \
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.enable_reg = RN5T618_##ereg, \
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.enable_mask = (emask), \
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.vsel_reg = RN5T618_##vreg, \
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.vsel_mask = (vmask), \
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}
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static const struct regulator_desc rn5t567_regulators[] = {
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/* DCDC */
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REG(DCDC1, DC1CTL, BIT(0), DC1DAC, 0xff, 600000, 3500000, 12500),
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REG(DCDC2, DC2CTL, BIT(0), DC2DAC, 0xff, 600000, 3500000, 12500),
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REG(DCDC3, DC3CTL, BIT(0), DC3DAC, 0xff, 600000, 3500000, 12500),
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REG(DCDC4, DC4CTL, BIT(0), DC4DAC, 0xff, 600000, 3500000, 12500),
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/* LDO */
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REG(LDO1, LDOEN1, BIT(0), LDO1DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO2, LDOEN1, BIT(1), LDO2DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO3, LDOEN1, BIT(2), LDO3DAC, 0x7f, 600000, 3500000, 25000),
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REG(LDO4, LDOEN1, BIT(3), LDO4DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO5, LDOEN1, BIT(4), LDO5DAC, 0x7f, 900000, 3500000, 25000),
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/* LDO RTC */
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REG(LDORTC1, LDOEN2, BIT(4), LDORTCDAC, 0x7f, 1200000, 3500000, 25000),
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REG(LDORTC2, LDOEN2, BIT(5), LDORTC2DAC, 0x7f, 900000, 3500000, 25000),
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};
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static const struct regulator_desc rn5t618_regulators[] = {
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/* DCDC */
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REG(DCDC1, DC1CTL, BIT(0), DC1DAC, 0xff, 600000, 3500000, 12500),
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REG(DCDC2, DC2CTL, BIT(0), DC2DAC, 0xff, 600000, 3500000, 12500),
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REG(DCDC3, DC3CTL, BIT(0), DC3DAC, 0xff, 600000, 3500000, 12500),
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/* LDO */
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REG(LDO1, LDOEN1, BIT(0), LDO1DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO2, LDOEN1, BIT(1), LDO2DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO3, LDOEN1, BIT(2), LDO3DAC, 0x7f, 600000, 3500000, 25000),
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REG(LDO4, LDOEN1, BIT(3), LDO4DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO5, LDOEN1, BIT(4), LDO5DAC, 0x7f, 900000, 3500000, 25000),
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/* LDO RTC */
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REG(LDORTC1, LDOEN2, BIT(4), LDORTCDAC, 0x7f, 1700000, 3500000, 25000),
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REG(LDORTC2, LDOEN2, BIT(5), LDORTC2DAC, 0x7f, 900000, 3500000, 25000),
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};
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static const struct regulator_desc rc5t619_regulators[] = {
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/* DCDC */
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REG(DCDC1, DC1CTL, BIT(0), DC1DAC, 0xff, 600000, 3500000, 12500),
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REG(DCDC2, DC2CTL, BIT(0), DC2DAC, 0xff, 600000, 3500000, 12500),
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REG(DCDC3, DC3CTL, BIT(0), DC3DAC, 0xff, 600000, 3500000, 12500),
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REG(DCDC4, DC4CTL, BIT(0), DC4DAC, 0xff, 600000, 3500000, 12500),
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REG(DCDC5, DC5CTL, BIT(0), DC5DAC, 0xff, 600000, 3500000, 12500),
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/* LDO */
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REG(LDO1, LDOEN1, BIT(0), LDO1DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO2, LDOEN1, BIT(1), LDO2DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO3, LDOEN1, BIT(2), LDO3DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO4, LDOEN1, BIT(3), LDO4DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO5, LDOEN1, BIT(4), LDO5DAC, 0x7f, 600000, 3500000, 25000),
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REG(LDO6, LDOEN1, BIT(5), LDO6DAC, 0x7f, 600000, 3500000, 25000),
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REG(LDO7, LDOEN1, BIT(6), LDO7DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO8, LDOEN1, BIT(7), LDO8DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO9, LDOEN2, BIT(0), LDO9DAC, 0x7f, 900000, 3500000, 25000),
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REG(LDO10, LDOEN2, BIT(1), LDO10DAC, 0x7f, 900000, 3500000, 25000),
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/* LDO RTC */
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REG(LDORTC1, LDOEN2, BIT(4), LDORTCDAC, 0x7f, 1700000, 3500000, 25000),
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REG(LDORTC2, LDOEN2, BIT(5), LDORTC2DAC, 0x7f, 900000, 3500000, 25000),
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};
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static int rn5t618_regulator_probe(struct platform_device *pdev)
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{
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struct rn5t618 *rn5t618 = dev_get_drvdata(pdev->dev.parent);
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struct regulator_config config = { };
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struct regulator_dev *rdev;
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const struct regulator_desc *regulators;
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int i;
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int num_regulators = 0;
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switch (rn5t618->variant) {
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case RN5T567:
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regulators = rn5t567_regulators;
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num_regulators = ARRAY_SIZE(rn5t567_regulators);
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break;
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case RN5T618:
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regulators = rn5t618_regulators;
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num_regulators = ARRAY_SIZE(rn5t618_regulators);
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break;
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case RC5T619:
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regulators = rc5t619_regulators;
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num_regulators = ARRAY_SIZE(rc5t619_regulators);
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break;
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default:
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return -EINVAL;
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}
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config.dev = pdev->dev.parent;
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config.regmap = rn5t618->regmap;
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for (i = 0; i < num_regulators; i++) {
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rdev = devm_regulator_register(&pdev->dev,
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®ulators[i],
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&config);
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if (IS_ERR(rdev)) {
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dev_err(&pdev->dev, "failed to register %s regulator\n",
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regulators[i].name);
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return PTR_ERR(rdev);
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}
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}
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return 0;
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}
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static struct platform_driver rn5t618_regulator_driver = {
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.probe = rn5t618_regulator_probe,
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.driver = {
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.name = "rn5t618-regulator",
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},
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};
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module_platform_driver(rn5t618_regulator_driver);
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MODULE_AUTHOR("Beniamino Galvani <b.galvani@gmail.com>");
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MODULE_DESCRIPTION("RN5T618 regulator driver");
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MODULE_LICENSE("GPL v2");
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