forked from Minki/linux
regulator: qcom_spmi: add PMS405 SPMI regulator
The PMS405 has 5 HFSMPS and 13 LDO regulators, This commit adds support for one of the 5 HFSMPS regulators (s3) to the spmi regulator driver. The PMIC HFSMPS 430 regulators have 8 mV step size and a voltage control scheme consisting of two 8-bit registers defining a 16-bit voltage set point in units of millivolts S3 controls the cpu voltages (s3 is a buck regulator of type HFS430); it is therefore required so we can enable voltage scaling for safely running cpufreq. Signed-off-by: Jorge Ramirez-Ortiz <jorge.ramirez-ortiz@linaro.org> Signed-off-by: Jeffrey Hugo <jeffrey.l.hugo@gmail.com> Signed-off-by: Mark Brown <broonie@kernel.org>
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@ -97,6 +97,7 @@ enum spmi_regulator_logical_type {
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SPMI_REGULATOR_LOGICAL_TYPE_ULT_HO_SMPS,
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SPMI_REGULATOR_LOGICAL_TYPE_ULT_LDO,
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SPMI_REGULATOR_LOGICAL_TYPE_FTSMPS426,
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SPMI_REGULATOR_LOGICAL_TYPE_HFS430,
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};
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enum spmi_regulator_type {
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@ -149,6 +150,7 @@ enum spmi_regulator_subtype {
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SPMI_REGULATOR_SUBTYPE_ULT_HF_CTL2 = 0x0e,
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SPMI_REGULATOR_SUBTYPE_ULT_HF_CTL3 = 0x0f,
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SPMI_REGULATOR_SUBTYPE_ULT_HF_CTL4 = 0x10,
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SPMI_REGULATOR_SUBTYPE_HFS430 = 0x0a,
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};
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enum spmi_common_regulator_registers {
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@ -294,6 +296,8 @@ enum spmi_common_control_register_index {
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/* Clock rate in kHz of the FTSMPS426 regulator reference clock. */
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#define SPMI_FTSMPS426_CLOCK_RATE 4800
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#define SPMI_HFS430_CLOCK_RATE 1600
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/* Minimum voltage stepper delay for each step. */
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#define SPMI_FTSMPS426_STEP_DELAY 2
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@ -507,6 +511,10 @@ static struct spmi_voltage_range ult_pldo_ranges[] = {
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SPMI_VOLTAGE_RANGE(0, 1750000, 1750000, 3337500, 3337500, 12500),
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};
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static struct spmi_voltage_range hfs430_ranges[] = {
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SPMI_VOLTAGE_RANGE(0, 320000, 320000, 2040000, 2040000, 8000),
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};
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static DEFINE_SPMI_SET_POINTS(pldo);
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static DEFINE_SPMI_SET_POINTS(nldo1);
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static DEFINE_SPMI_SET_POINTS(nldo2);
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@ -522,6 +530,7 @@ static DEFINE_SPMI_SET_POINTS(ult_lo_smps);
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static DEFINE_SPMI_SET_POINTS(ult_ho_smps);
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static DEFINE_SPMI_SET_POINTS(ult_nldo);
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static DEFINE_SPMI_SET_POINTS(ult_pldo);
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static DEFINE_SPMI_SET_POINTS(hfs430);
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static inline int spmi_vreg_read(struct spmi_regulator *vreg, u16 addr, u8 *buf,
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int len)
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@ -1398,12 +1407,26 @@ static struct regulator_ops spmi_ftsmps426_ops = {
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.set_pull_down = spmi_regulator_common_set_pull_down,
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};
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static struct regulator_ops spmi_hfs430_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 = spmi_regulator_ftsmps426_set_voltage,
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.set_voltage_time_sel = spmi_regulator_set_voltage_time_sel,
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.get_voltage_sel = spmi_regulator_ftsmps426_get_voltage,
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.map_voltage = spmi_regulator_single_map_voltage,
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.list_voltage = spmi_regulator_common_list_voltage,
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.set_mode = spmi_regulator_ftsmps426_set_mode,
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.get_mode = spmi_regulator_ftsmps426_get_mode,
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};
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/* Maximum possible digital major revision value */
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#define INF 0xFF
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static const struct spmi_regulator_mapping supported_regulators[] = {
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/* type subtype dig_min dig_max ltype ops setpoints hpm_min */
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SPMI_VREG(BUCK, GP_CTL, 0, INF, SMPS, smps, smps, 100000),
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SPMI_VREG(BUCK, HFS430, 0, INF, HFS430, hfs430, hfs430, 10000),
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SPMI_VREG(LDO, N300, 0, INF, LDO, ldo, nldo1, 10000),
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SPMI_VREG(LDO, N600, 0, 0, LDO, ldo, nldo2, 10000),
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SPMI_VREG(LDO, N1200, 0, 0, LDO, ldo, nldo2, 10000),
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@ -1571,7 +1594,8 @@ static int spmi_regulator_init_slew_rate(struct spmi_regulator *vreg)
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return ret;
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}
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static int spmi_regulator_init_slew_rate_ftsmps426(struct spmi_regulator *vreg)
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static int spmi_regulator_init_slew_rate_ftsmps426(struct spmi_regulator *vreg,
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int clock_rate)
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{
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int ret;
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u8 reg = 0;
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@ -1588,7 +1612,7 @@ static int spmi_regulator_init_slew_rate_ftsmps426(struct spmi_regulator *vreg)
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delay >>= SPMI_FTSMPS426_STEP_CTRL_DELAY_SHIFT;
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/* slew_rate has units of uV/us */
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slew_rate = SPMI_FTSMPS426_CLOCK_RATE * range->step_uV;
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slew_rate = clock_rate * range->step_uV;
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slew_rate /= 1000 * (SPMI_FTSMPS426_STEP_DELAY << delay);
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slew_rate *= SPMI_FTSMPS426_STEP_MARGIN_NUM;
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slew_rate /= SPMI_FTSMPS426_STEP_MARGIN_DEN;
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@ -1740,7 +1764,14 @@ static int spmi_regulator_of_parse(struct device_node *node,
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return ret;
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break;
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case SPMI_REGULATOR_LOGICAL_TYPE_FTSMPS426:
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ret = spmi_regulator_init_slew_rate_ftsmps426(vreg);
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ret = spmi_regulator_init_slew_rate_ftsmps426(vreg,
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SPMI_FTSMPS426_CLOCK_RATE);
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if (ret)
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return ret;
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break;
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case SPMI_REGULATOR_LOGICAL_TYPE_HFS430:
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ret = spmi_regulator_init_slew_rate_ftsmps426(vreg,
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SPMI_HFS430_CLOCK_RATE);
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if (ret)
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return ret;
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break;
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@ -1908,6 +1939,11 @@ static const struct spmi_regulator_data pm8005_regulators[] = {
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{ }
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};
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static const struct spmi_regulator_data pms405_regulators[] = {
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{ "s3", 0x1a00, "vdd_s3"},
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{ }
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};
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static const struct of_device_id qcom_spmi_regulator_match[] = {
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{ .compatible = "qcom,pm8005-regulators", .data = &pm8005_regulators },
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{ .compatible = "qcom,pm8841-regulators", .data = &pm8841_regulators },
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@ -1915,6 +1951,7 @@ static const struct of_device_id qcom_spmi_regulator_match[] = {
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{ .compatible = "qcom,pm8941-regulators", .data = &pm8941_regulators },
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{ .compatible = "qcom,pm8994-regulators", .data = &pm8994_regulators },
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{ .compatible = "qcom,pmi8994-regulators", .data = &pmi8994_regulators },
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{ .compatible = "qcom,pms405-regulators", .data = &pms405_regulators },
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{ }
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};
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MODULE_DEVICE_TABLE(of, qcom_spmi_regulator_match);
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