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@@ -71,8 +71,8 @@ struct isl29018_chip {
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struct regmap *regmap;
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struct mutex lock;
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int type;
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- unsigned int lux_scale;
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- unsigned int lux_uscale;
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+ unsigned int calibscale;
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+ unsigned int ucalibscale;
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unsigned int range;
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unsigned int adc_bit;
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int prox_scheme;
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@@ -165,12 +165,12 @@ static int isl29018_read_lux(struct isl29018_chip *chip, int *lux)
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/* To support fractional scaling, separate the unshifted lux
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* into two calculations: int scaling and micro-scaling.
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- * lux_uscale ranges from 0-999999, so about 20 bits. Split
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+ * ucalibscale ranges from 0-999999, so about 20 bits. Split
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* the /1,000,000 in two to reduce the risk of over/underflow.
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*/
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data_x_range = lux_data * chip->range;
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- lux_unshifted = data_x_range * chip->lux_scale;
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- lux_unshifted += data_x_range / 1000 * chip->lux_uscale / 1000;
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+ lux_unshifted = data_x_range * chip->calibscale;
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+ lux_unshifted += data_x_range / 1000 * chip->ucalibscale / 1000;
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*lux = lux_unshifted >> chip->adc_bit;
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return 0;
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@@ -277,9 +277,9 @@ static int isl29018_write_raw(struct iio_dev *indio_dev,
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mutex_lock(&chip->lock);
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if (mask == IIO_CHAN_INFO_CALIBSCALE && chan->type == IIO_LIGHT) {
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- chip->lux_scale = val;
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+ chip->calibscale = val;
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/* With no write_raw_get_fmt(), val2 is a MICRO fraction. */
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- chip->lux_uscale = val2;
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+ chip->ucalibscale = val2;
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ret = 0;
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}
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mutex_unlock(&chip->lock);
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@@ -323,8 +323,8 @@ static int isl29018_read_raw(struct iio_dev *indio_dev,
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break;
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case IIO_CHAN_INFO_CALIBSCALE:
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if (chan->type == IIO_LIGHT) {
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- *val = chip->lux_scale;
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- *val2 = chip->lux_uscale;
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+ *val = chip->calibscale;
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+ *val2 = chip->ucalibscale;
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ret = IIO_VAL_INT_PLUS_MICRO;
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}
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break;
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@@ -607,8 +607,8 @@ static int isl29018_probe(struct i2c_client *client,
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mutex_init(&chip->lock);
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chip->type = dev_id;
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- chip->lux_scale = 1;
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- chip->lux_uscale = 0;
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+ chip->calibscale = 1;
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+ chip->ucalibscale = 0;
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chip->range = 1000;
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chip->adc_bit = 16;
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chip->suspended = false;
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