On Tue, 10 Jul 2018 20:19:03 +0200
Andreas Klinger <a...@it-klinger.de> wrote:

> On a system with parasitic capacitance it turned out that DOUT is not ready
> after 100 ns after PD_SCK has raised. A measurement showed almost 1000 ns
> until DOUT has reached its correct value.
> 
> With this patch its now possible to wait until data is ready.
> 
> The wait time should not be higher than the maximum PD_SCK high time which
> is corresponding to the datasheet 50000 ns.
> 
> Signed-off-by: Andreas Klinger <a...@it-klinger.de>
Applied, thanks.

Jonathan

> ---
>  drivers/iio/adc/hx711.c | 39 +++++++++++++++++++++++++++++++++++++++
>  1 file changed, 39 insertions(+)
> 
> diff --git a/drivers/iio/adc/hx711.c b/drivers/iio/adc/hx711.c
> index 9430b54121e0..36b59d8957fb 100644
> --- a/drivers/iio/adc/hx711.c
> +++ b/drivers/iio/adc/hx711.c
> @@ -97,6 +97,14 @@ struct hx711_data {
>        * 2x32-bit channel + 64-bit timestamp
>        */
>       u32                     buffer[4];
> +     /*
> +      * delay after a rising edge on SCK until the data is ready DOUT
> +      * this is dependent on the hx711 where the datasheet tells a
> +      * maximum value of 100 ns
> +      * but also on potential parasitic capacities on the wiring
> +      */
> +     u32                     data_ready_delay_ns;
> +     u32                     clock_frequency;
>  };
>  
>  static int hx711_cycle(struct hx711_data *hx711_data)
> @@ -110,6 +118,14 @@ static int hx711_cycle(struct hx711_data *hx711_data)
>        */
>       preempt_disable();
>       gpiod_set_value(hx711_data->gpiod_pd_sck, 1);
> +
> +     /*
> +      * wait until DOUT is ready
> +      * it turned out that parasitic capacities are extending the time
> +      * until DOUT has reached it's value
> +      */
> +     ndelay(hx711_data->data_ready_delay_ns);
> +
>       val = gpiod_get_value(hx711_data->gpiod_dout);
>       /*
>        * here we are not waiting for 0.2 us as suggested by the datasheet,
> @@ -120,6 +136,12 @@ static int hx711_cycle(struct hx711_data *hx711_data)
>       gpiod_set_value(hx711_data->gpiod_pd_sck, 0);
>       preempt_enable();
>  
> +     /*
> +      * make it a square wave for addressing cases with capacitance on
> +      * PC_SCK
> +      */
> +     ndelay(hx711_data->data_ready_delay_ns);
> +
>       return val;
>  }
>  
> @@ -458,6 +480,7 @@ static const struct iio_chan_spec hx711_chan_spec[] = {
>  static int hx711_probe(struct platform_device *pdev)
>  {
>       struct device *dev = &pdev->dev;
> +     struct device_node *np = dev->of_node;
>       struct hx711_data *hx711_data;
>       struct iio_dev *indio_dev;
>       int ret;
> @@ -530,6 +553,22 @@ static int hx711_probe(struct platform_device *pdev)
>       hx711_data->gain_set = 128;
>       hx711_data->gain_chan_a = 128;
>  
> +     hx711_data->clock_frequency = 400000;
> +     ret = of_property_read_u32(np, "clock-frequency",
> +                                     &hx711_data->clock_frequency);
> +
> +     /*
> +      * datasheet says the high level of PD_SCK has a maximum duration
> +      * of 50 microseconds
> +      */
> +     if (hx711_data->clock_frequency < 20000) {
> +             dev_warn(dev, "clock-frequency too low - assuming 400 kHz\n");
> +             hx711_data->clock_frequency = 400000;
> +     }
> +
> +     hx711_data->data_ready_delay_ns =
> +                             1000000000 / hx711_data->clock_frequency;
> +
>       platform_set_drvdata(pdev, indio_dev);
>  
>       indio_dev->name = "hx711";

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