Re: [PATCH v3 1/2] iio: mmc35240: minor change to improve code readibility

From: Jonathan Cameron
Date: Sun Aug 02 2015 - 12:35:53 EST


On 31/07/15 15:27, Teodora Baluta wrote:
> This patch changes two variables to arrays to improve code readibility.
>
> Signed-off-by: Teodora Baluta <teodora.baluta@xxxxxxxxx>
After a brief argument with myself (see inline).
Applied to the togreg branch of iio.git

Thanks,

Jonathan
> ---
> drivers/iio/magnetometer/mmc35240.c | 26 +++++++++++++-------------
> 1 file changed, 13 insertions(+), 13 deletions(-)
>
> diff --git a/drivers/iio/magnetometer/mmc35240.c b/drivers/iio/magnetometer/mmc35240.c
> index 66d8364..a4259bf 100644
> --- a/drivers/iio/magnetometer/mmc35240.c
> +++ b/drivers/iio/magnetometer/mmc35240.c
> @@ -315,31 +315,31 @@ static int mmc35240_read_measurement(struct mmc35240_data *data, __le16 buf[3])
> static int mmc35240_raw_to_mgauss(struct mmc35240_data *data, int index,
> __le16 buf[], int *val)
> {
> - int raw_x, raw_y, raw_z;
> - int sens_x, sens_y, sens_z;
> + int raw[3];
> + int sens[3];
> int nfo;
>
> - raw_x = le16_to_cpu(buf[AXIS_X]);
> - raw_y = le16_to_cpu(buf[AXIS_Y]);
> - raw_z = le16_to_cpu(buf[AXIS_Z]);
A loop perhaps would make it even cleaner? Maybe not given it would obscure the
enum entries... Hmm. Perhaps best as is.
> + raw[AXIS_X] = le16_to_cpu(buf[AXIS_X]);
> + raw[AXIS_Y] = le16_to_cpu(buf[AXIS_Y]);
> + raw[AXIS_Z] = le16_to_cpu(buf[AXIS_Z]);
>
> - sens_x = mmc35240_props_table[data->res].sens[AXIS_X];
> - sens_y = mmc35240_props_table[data->res].sens[AXIS_Y];
> - sens_z = mmc35240_props_table[data->res].sens[AXIS_Z];
> + sens[AXIS_X] = mmc35240_props_table[data->res].sens[AXIS_X];
> + sens[AXIS_Y] = mmc35240_props_table[data->res].sens[AXIS_Y];
> + sens[AXIS_Z] = mmc35240_props_table[data->res].sens[AXIS_Z];
>
> nfo = mmc35240_props_table[data->res].nfo;
>
> switch (index) {
> case AXIS_X:
> - *val = (raw_x - nfo) * 1000 / sens_x;
> + *val = (raw[AXIS_X] - nfo) * 1000 / sens[AXIS_X];
> break;
> case AXIS_Y:
> - *val = (raw_y - nfo) * 1000 / sens_y -
> - (raw_z - nfo) * 1000 / sens_z;
> + *val = (raw[AXIS_Y] - nfo) * 1000 / sens[AXIS_Y] -
> + (raw[AXIS_Z] - nfo) * 1000 / sens[AXIS_Z];
> break;
> case AXIS_Z:
> - *val = (raw_y - nfo) * 1000 / sens_y +
> - (raw_z - nfo) * 1000 / sens_z;
> + *val = (raw[AXIS_Y] - nfo) * 1000 / sens[AXIS_Y] +
> + (raw[AXIS_Z] - nfo) * 1000 / sens[AXIS_Z];
> break;
> default:
> return -EINVAL;
>

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