iio: adc: qcom-vadc-common: Re-use generic struct u32_fract
Instead of custom data type re-use generic struct u32_fract. No changes intended. Signed-off-by: Andy Shevchenko <andriy.shevchenko@linux.intel.com> Link: https://lore.kernel.org/r/20220126135353.24007-4-andriy.shevchenko@linux.intel.com Signed-off-by: Jonathan Cameron <Jonathan.Cameron@huawei.com>
This commit is contained in:
committed by
Jonathan Cameron
parent
8f2abd48b5
commit
a5e9b2ddbb
@@ -175,7 +175,7 @@ struct xoadc_channel {
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const char *datasheet_name;
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u8 pre_scale_mux:2;
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u8 amux_channel:4;
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const struct vadc_prescale_ratio prescale;
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const struct u32_fract prescale;
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enum iio_chan_type type;
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enum vadc_scale_fn_type scale_fn_type;
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u8 amux_ip_rsv:3;
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@@ -218,7 +218,9 @@ struct xoadc_variant {
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.datasheet_name = __stringify(_dname), \
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.pre_scale_mux = _presmux, \
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.amux_channel = _amux, \
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.prescale = { .num = _prenum, .den = _preden }, \
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.prescale = { \
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.numerator = _prenum, .denominator = _preden, \
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}, \
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.type = _type, \
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.scale_fn_type = _scale, \
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.amux_ip_rsv = _amip, \
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@@ -809,12 +811,11 @@ static int pm8xxx_xoadc_parse_channel(struct device *dev,
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BIT(IIO_CHAN_INFO_PROCESSED);
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iio_chan->indexed = 1;
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dev_dbg(dev, "channel [PRESCALE/MUX: %02x AMUX: %02x] \"%s\" "
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"ref voltage: %d, decimation %d "
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"prescale %d/%d, scale function %d\n",
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dev_dbg(dev,
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"channel [PRESCALE/MUX: %02x AMUX: %02x] \"%s\" ref voltage: %d, decimation %d prescale %d/%d, scale function %d\n",
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hwchan->pre_scale_mux, hwchan->amux_channel, ch->name,
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ch->amux_ip_rsv, ch->decimation, hwchan->prescale.num,
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hwchan->prescale.den, hwchan->scale_fn_type);
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ch->amux_ip_rsv, ch->decimation, hwchan->prescale.numerator,
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hwchan->prescale.denominator, hwchan->scale_fn_type);
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return 0;
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}
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@@ -122,15 +122,15 @@ struct vadc_priv {
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struct mutex lock;
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};
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static const struct vadc_prescale_ratio vadc_prescale_ratios[] = {
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{.num = 1, .den = 1},
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{.num = 1, .den = 3},
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{.num = 1, .den = 4},
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{.num = 1, .den = 6},
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{.num = 1, .den = 20},
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{.num = 1, .den = 8},
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{.num = 10, .den = 81},
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{.num = 1, .den = 10}
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static const struct u32_fract vadc_prescale_ratios[] = {
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{ .numerator = 1, .denominator = 1 },
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{ .numerator = 1, .denominator = 3 },
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{ .numerator = 1, .denominator = 4 },
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{ .numerator = 1, .denominator = 6 },
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{ .numerator = 1, .denominator = 20 },
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{ .numerator = 1, .denominator = 8 },
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{ .numerator = 10, .denominator = 81 },
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{ .numerator = 1, .denominator = 10 },
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};
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static int vadc_read(struct vadc_priv *vadc, u16 offset, u8 *data)
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@@ -404,13 +404,13 @@ err:
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return ret;
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}
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static int vadc_prescaling_from_dt(u32 num, u32 den)
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static int vadc_prescaling_from_dt(u32 numerator, u32 denominator)
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{
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unsigned int pre;
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for (pre = 0; pre < ARRAY_SIZE(vadc_prescale_ratios); pre++)
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if (vadc_prescale_ratios[pre].num == num &&
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vadc_prescale_ratios[pre].den == den)
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if (vadc_prescale_ratios[pre].numerator == numerator &&
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vadc_prescale_ratios[pre].denominator == denominator)
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break;
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if (pre == ARRAY_SIZE(vadc_prescale_ratios))
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@@ -289,44 +289,44 @@ static const struct vadc_map_pt adcmap7_100k[] = {
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{ 2420, 130048 }
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};
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static const struct vadc_prescale_ratio adc5_prescale_ratios[] = {
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{.num = 1, .den = 1},
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{.num = 1, .den = 3},
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{.num = 1, .den = 4},
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{.num = 1, .den = 6},
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{.num = 1, .den = 20},
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{.num = 1, .den = 8},
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{.num = 10, .den = 81},
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{.num = 1, .den = 10},
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{.num = 1, .den = 16}
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static const struct u32_fract adc5_prescale_ratios[] = {
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{ .numerator = 1, .denominator = 1 },
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{ .numerator = 1, .denominator = 3 },
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{ .numerator = 1, .denominator = 4 },
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{ .numerator = 1, .denominator = 6 },
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{ .numerator = 1, .denominator = 20 },
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{ .numerator = 1, .denominator = 8 },
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{ .numerator = 10, .denominator = 81 },
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{ .numerator = 1, .denominator = 10 },
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{ .numerator = 1, .denominator = 16 },
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};
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static int qcom_vadc_scale_hw_calib_volt(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_uv);
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static int qcom_vadc_scale_hw_calib_therm(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec);
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static int qcom_vadc7_scale_hw_calib_therm(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec);
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static int qcom_vadc_scale_hw_smb_temp(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec);
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static int qcom_vadc_scale_hw_chg5_temp(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec);
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static int qcom_vadc_scale_hw_calib_die_temp(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec);
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static int qcom_vadc7_scale_hw_calib_die_temp(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec);
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@@ -406,7 +406,7 @@ static void qcom_vadc_scale_calib(const struct vadc_linear_graph *calib_graph,
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}
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static int qcom_vadc_scale_volt(const struct vadc_linear_graph *calib_graph,
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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bool absolute, u16 adc_code,
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int *result_uv)
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{
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@@ -414,15 +414,15 @@ static int qcom_vadc_scale_volt(const struct vadc_linear_graph *calib_graph,
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qcom_vadc_scale_calib(calib_graph, adc_code, absolute, &voltage);
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voltage = voltage * prescale->den;
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result = div64_s64(voltage, prescale->num);
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voltage *= prescale->denominator;
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result = div64_s64(voltage, prescale->numerator);
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*result_uv = result;
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return 0;
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}
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static int qcom_vadc_scale_therm(const struct vadc_linear_graph *calib_graph,
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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bool absolute, u16 adc_code,
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int *result_mdec)
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{
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@@ -444,7 +444,7 @@ static int qcom_vadc_scale_therm(const struct vadc_linear_graph *calib_graph,
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}
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static int qcom_vadc_scale_die_temp(const struct vadc_linear_graph *calib_graph,
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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bool absolute,
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u16 adc_code, int *result_mdec)
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{
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@@ -454,8 +454,8 @@ static int qcom_vadc_scale_die_temp(const struct vadc_linear_graph *calib_graph,
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qcom_vadc_scale_calib(calib_graph, adc_code, absolute, &voltage);
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if (voltage > 0) {
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temp = voltage * prescale->den;
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do_div(temp, prescale->num * 2);
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temp = voltage * prescale->denominator;
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do_div(temp, prescale->numerator * 2);
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voltage = temp;
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} else {
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voltage = 0;
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@@ -467,7 +467,7 @@ static int qcom_vadc_scale_die_temp(const struct vadc_linear_graph *calib_graph,
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}
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static int qcom_vadc_scale_chg_temp(const struct vadc_linear_graph *calib_graph,
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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bool absolute,
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u16 adc_code, int *result_mdec)
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{
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@@ -475,8 +475,8 @@ static int qcom_vadc_scale_chg_temp(const struct vadc_linear_graph *calib_graph,
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qcom_vadc_scale_calib(calib_graph, adc_code, absolute, &voltage);
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voltage = voltage * prescale->den;
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voltage = div64_s64(voltage, prescale->num);
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voltage *= prescale->denominator;
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voltage = div64_s64(voltage, prescale->numerator);
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voltage = ((PMI_CHG_SCALE_1) * (voltage * 2));
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voltage = (voltage + PMI_CHG_SCALE_2);
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result = div64_s64(voltage, 1000000);
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@@ -487,21 +487,21 @@ static int qcom_vadc_scale_chg_temp(const struct vadc_linear_graph *calib_graph,
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/* convert voltage to ADC code, using 1.875V reference */
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static u16 qcom_vadc_scale_voltage_code(s32 voltage,
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const u32 full_scale_code_volt,
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unsigned int factor)
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{
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s64 volt = voltage;
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s64 adc_vdd_ref_mv = 1875; /* reference voltage */
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volt *= prescale->num * factor * full_scale_code_volt;
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volt = div64_s64(volt, (s64)prescale->den * adc_vdd_ref_mv * 1000);
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volt *= prescale->numerator * factor * full_scale_code_volt;
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volt = div64_s64(volt, (s64)prescale->denominator * adc_vdd_ref_mv * 1000);
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return volt;
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}
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static int qcom_vadc_scale_code_voltage_factor(u16 adc_code,
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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unsigned int factor)
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{
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@@ -520,8 +520,8 @@ static int qcom_vadc_scale_code_voltage_factor(u16 adc_code,
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voltage = (s64) adc_code * adc_vdd_ref_mv * 1000;
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voltage = div64_s64(voltage, data->full_scale_code_volt);
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if (voltage > 0) {
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voltage *= prescale->den;
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temp = prescale->num * factor;
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voltage *= prescale->denominator;
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temp = prescale->numerator * factor;
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voltage = div64_s64(voltage, temp);
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} else {
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voltage = 0;
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@@ -531,7 +531,7 @@ static int qcom_vadc_scale_code_voltage_factor(u16 adc_code,
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}
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static int qcom_vadc7_scale_hw_calib_therm(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec)
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{
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@@ -557,7 +557,7 @@ static int qcom_vadc7_scale_hw_calib_therm(
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}
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static int qcom_vadc_scale_hw_calib_volt(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_uv)
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{
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@@ -568,7 +568,7 @@ static int qcom_vadc_scale_hw_calib_volt(
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}
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static int qcom_vadc_scale_hw_calib_therm(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec)
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{
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@@ -584,7 +584,7 @@ static int qcom_vadc_scale_hw_calib_therm(
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}
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static int qcom_vadc_scale_hw_calib_die_temp(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec)
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{
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@@ -596,7 +596,7 @@ static int qcom_vadc_scale_hw_calib_die_temp(
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}
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static int qcom_vadc7_scale_hw_calib_die_temp(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec)
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{
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@@ -611,7 +611,7 @@ static int qcom_vadc7_scale_hw_calib_die_temp(
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}
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static int qcom_vadc_scale_hw_smb_temp(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec)
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{
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@@ -623,7 +623,7 @@ static int qcom_vadc_scale_hw_smb_temp(
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}
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static int qcom_vadc_scale_hw_chg5_temp(
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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const struct adc5_data *data,
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u16 adc_code, int *result_mdec)
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{
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@@ -636,7 +636,7 @@ static int qcom_vadc_scale_hw_chg5_temp(
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int qcom_vadc_scale(enum vadc_scale_fn_type scaletype,
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const struct vadc_linear_graph *calib_graph,
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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bool absolute,
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u16 adc_code, int *result)
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{
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@@ -667,7 +667,7 @@ EXPORT_SYMBOL(qcom_vadc_scale);
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u16 qcom_adc_tm5_temp_volt_scale(unsigned int prescale_ratio,
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u32 full_scale_code_volt, int temp)
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{
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const struct vadc_prescale_ratio *prescale = &adc5_prescale_ratios[prescale_ratio];
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const struct u32_fract *prescale = &adc5_prescale_ratios[prescale_ratio];
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s32 voltage;
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voltage = qcom_vadc_map_temp_voltage(adcmap_100k_104ef_104fb_1875_vref,
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@@ -682,7 +682,7 @@ int qcom_adc5_hw_scale(enum vadc_scale_fn_type scaletype,
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const struct adc5_data *data,
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u16 adc_code, int *result)
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{
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const struct vadc_prescale_ratio *prescale = &adc5_prescale_ratios[prescale_ratio];
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const struct u32_fract *prescale = &adc5_prescale_ratios[prescale_ratio];
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if (!(scaletype >= SCALE_HW_CALIB_DEFAULT &&
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scaletype < SCALE_HW_CALIB_INVALID)) {
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@@ -695,13 +695,13 @@ int qcom_adc5_hw_scale(enum vadc_scale_fn_type scaletype,
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}
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EXPORT_SYMBOL(qcom_adc5_hw_scale);
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int qcom_adc5_prescaling_from_dt(u32 num, u32 den)
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int qcom_adc5_prescaling_from_dt(u32 numerator, u32 denominator)
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{
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unsigned int pre;
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for (pre = 0; pre < ARRAY_SIZE(adc5_prescale_ratios); pre++)
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if (adc5_prescale_ratios[pre].num == num &&
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adc5_prescale_ratios[pre].den == den)
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if (adc5_prescale_ratios[pre].numerator == numerator &&
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adc5_prescale_ratios[pre].denominator == denominator)
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break;
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if (pre == ARRAY_SIZE(adc5_prescale_ratios))
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@@ -6,6 +6,7 @@
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#ifndef QCOM_VADC_COMMON_H
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#define QCOM_VADC_COMMON_H
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#include <linux/math.h>
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#include <linux/types.h>
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#define VADC_CONV_TIME_MIN_US 2000
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@@ -79,16 +80,6 @@ struct vadc_linear_graph {
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s32 gnd;
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};
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/**
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* struct vadc_prescale_ratio - Represent scaling ratio for ADC input.
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* @num: the inverse numerator of the gain applied to the input channel.
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* @den: the inverse denominator of the gain applied to the input channel.
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*/
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struct vadc_prescale_ratio {
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u32 num;
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u32 den;
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};
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/**
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* enum vadc_scale_fn_type - Scaling function to convert ADC code to
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* physical scaled units for the channel.
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@@ -144,12 +135,12 @@ struct adc5_data {
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int qcom_vadc_scale(enum vadc_scale_fn_type scaletype,
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const struct vadc_linear_graph *calib_graph,
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const struct vadc_prescale_ratio *prescale,
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const struct u32_fract *prescale,
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bool absolute,
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u16 adc_code, int *result_mdec);
|
||||
|
||||
struct qcom_adc5_scale_type {
|
||||
int (*scale_fn)(const struct vadc_prescale_ratio *prescale,
|
||||
int (*scale_fn)(const struct u32_fract *prescale,
|
||||
const struct adc5_data *data, u16 adc_code, int *result);
|
||||
};
|
||||
|
||||
|
||||
Reference in New Issue
Block a user