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hwmon: (tmp513) Use SI constants from units.h
MILLI and MICRO may be used in the driver to make code more robust against possible miscalculations. Signed-off-by: Andy Shevchenko <andriy.shevchenko@linux.intel.com> Link: https://lore.kernel.org/r/20231128180654.395692-4-andriy.shevchenko@linux.intel.com Signed-off-by: Guenter Roeck <linux@roeck-us.net>
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@ -32,6 +32,7 @@
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#include <linux/regmap.h>
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#include <linux/slab.h>
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#include <linux/types.h>
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#include <linux/units.h>
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// Common register definition
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#define TMP51X_SHUNT_CONFIG 0x00
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@ -101,8 +102,8 @@
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#define TMP51X_REMOTE_TEMP_LIMIT_2_POS 8
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#define TMP513_REMOTE_TEMP_LIMIT_3_POS 7
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#define TMP51X_VBUS_RANGE_32V 32000000
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#define TMP51X_VBUS_RANGE_16V 16000000
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#define TMP51X_VBUS_RANGE_32V (32 * MICRO)
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#define TMP51X_VBUS_RANGE_16V (16 * MICRO)
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// Max and Min value
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#define MAX_BUS_VOLTAGE_32_LIMIT 32764
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@ -204,7 +205,7 @@ static int tmp51x_get_value(struct tmp51x_data *data, u8 reg, u8 pos,
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* on the pga gain setting. 1lsb = 10uV
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*/
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*val = sign_extend32(regval, 17 - tmp51x_get_pga_shift(data));
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*val = DIV_ROUND_CLOSEST(*val * 10000, data->shunt_uohms);
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*val = DIV_ROUND_CLOSEST(*val * 10 * MILLI, data->shunt_uohms);
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break;
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case TMP51X_BUS_VOLTAGE_RESULT:
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case TMP51X_BUS_VOLTAGE_H_LIMIT:
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@ -220,7 +221,7 @@ static int tmp51x_get_value(struct tmp51x_data *data, u8 reg, u8 pos,
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case TMP51X_BUS_CURRENT_RESULT:
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// Current = (ShuntVoltage * CalibrationRegister) / 4096
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*val = sign_extend32(regval, 16) * data->curr_lsb_ua;
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*val = DIV_ROUND_CLOSEST(*val, 1000);
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*val = DIV_ROUND_CLOSEST(*val, MILLI);
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break;
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case TMP51X_LOCAL_TEMP_RESULT:
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case TMP51X_REMOTE_TEMP_RESULT_1:
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@ -260,7 +261,7 @@ static int tmp51x_set_value(struct tmp51x_data *data, u8 reg, long val)
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* The user enter current value and we convert it to
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* voltage. 1lsb = 10uV
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*/
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val = DIV_ROUND_CLOSEST(val * data->shunt_uohms, 10000);
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val = DIV_ROUND_CLOSEST(val * data->shunt_uohms, 10 * MILLI);
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max_val = U16_MAX >> tmp51x_get_pga_shift(data);
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regval = clamp_val(val, -max_val, max_val);
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break;
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@ -550,18 +551,16 @@ static int tmp51x_calibrate(struct tmp51x_data *data)
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if (data->shunt_uohms == 0)
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return regmap_write(data->regmap, TMP51X_SHUNT_CALIBRATION, 0);
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max_curr_ma = DIV_ROUND_CLOSEST_ULL(vshunt_max * 1000 * 1000,
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data->shunt_uohms);
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max_curr_ma = DIV_ROUND_CLOSEST_ULL(vshunt_max * MICRO, data->shunt_uohms);
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/*
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* Calculate the minimal bit resolution for the current and the power.
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* Those values will be used during register interpretation.
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*/
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data->curr_lsb_ua = DIV_ROUND_CLOSEST_ULL(max_curr_ma * 1000, 32767);
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data->curr_lsb_ua = DIV_ROUND_CLOSEST_ULL(max_curr_ma * MILLI, 32767);
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data->pwr_lsb_uw = 20 * data->curr_lsb_ua;
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div = DIV_ROUND_CLOSEST_ULL(data->curr_lsb_ua * data->shunt_uohms,
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1000 * 1000);
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div = DIV_ROUND_CLOSEST_ULL(data->curr_lsb_ua * data->shunt_uohms, MICRO);
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return regmap_write(data->regmap, TMP51X_SHUNT_CALIBRATION,
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DIV_ROUND_CLOSEST(40960, div));
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@ -678,7 +677,7 @@ static int tmp51x_read_properties(struct device *dev, struct tmp51x_data *data)
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data->max_channels - 1);
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// Check if shunt value is compatible with pga-gain
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if (data->shunt_uohms > data->pga_gain * 40 * 1000 * 1000) {
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if (data->shunt_uohms > data->pga_gain * 40 * MICRO) {
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return dev_err_probe(dev, -EINVAL,
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"shunt-resistor: %u too big for pga_gain: %u\n",
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data->shunt_uohms, data->pga_gain);
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