forked from luck/tmp_suning_uos_patched
iio: adc: stm32-dfsdm: add fast mode support
The use of fast mode allows to get a larger set of solution for filter parameters. This can be useful to reach a better output sample resolution, when fast mode can be used. Fast mode is selected at startup if it is relevant. The startup is performed in postenable callback context, where there are too tight time constraints for filter parameters computation. For this reason both fast and non fast filter parameters are pre-computed previously. Signed-off-by: Olivier Moysan <olivier.moysan@st.com> Acked-by: Fabrice Gasnier <fabrice.gasnier@st.com> Signed-off-by: Jonathan Cameron <Jonathan.Cameron@huawei.com>
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102afde629
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d716204fd5
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@ -196,7 +196,7 @@ static int stm32_dfsdm_compute_osrs(struct stm32_dfsdm_filter *fl,
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int bits, shift;
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unsigned int m = 1; /* multiplication factor */
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unsigned int p = fl->ford; /* filter order (ford) */
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struct stm32_dfsdm_filter_osr *flo = &fl->flo;
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struct stm32_dfsdm_filter_osr *flo = &fl->flo[fast];
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pr_debug("%s: Requested oversampling: %d\n", __func__, oversamp);
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/*
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@ -217,7 +217,6 @@ static int stm32_dfsdm_compute_osrs(struct stm32_dfsdm_filter *fl,
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* Look for filter and integrator oversampling ratios which allows
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* to maximize data output resolution.
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*/
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flo->res = 0;
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for (fosr = 1; fosr <= DFSDM_MAX_FL_OVERSAMPLING; fosr++) {
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for (iosr = 1; iosr <= DFSDM_MAX_INT_OVERSAMPLING; iosr++) {
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if (fast)
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@ -309,6 +308,28 @@ static int stm32_dfsdm_compute_osrs(struct stm32_dfsdm_filter *fl,
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return 0;
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}
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static int stm32_dfsdm_compute_all_osrs(struct iio_dev *indio_dev,
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unsigned int oversamp)
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{
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struct stm32_dfsdm_adc *adc = iio_priv(indio_dev);
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struct stm32_dfsdm_filter *fl = &adc->dfsdm->fl_list[adc->fl_id];
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int ret0, ret1;
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memset(&fl->flo[0], 0, sizeof(fl->flo[0]));
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memset(&fl->flo[1], 0, sizeof(fl->flo[1]));
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ret0 = stm32_dfsdm_compute_osrs(fl, 0, oversamp);
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ret1 = stm32_dfsdm_compute_osrs(fl, 1, oversamp);
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if (ret0 < 0 && ret1 < 0) {
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dev_err(&indio_dev->dev,
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"Filter parameters not found: errors %d/%d\n",
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ret0, ret1);
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return -EINVAL;
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}
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return 0;
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}
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static int stm32_dfsdm_start_channel(struct stm32_dfsdm_adc *adc)
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{
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struct iio_dev *indio_dev = iio_priv_to_dev(adc);
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@ -433,11 +454,25 @@ static int stm32_dfsdm_channels_configure(struct stm32_dfsdm_adc *adc,
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struct iio_dev *indio_dev = iio_priv_to_dev(adc);
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struct regmap *regmap = adc->dfsdm->regmap;
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struct stm32_dfsdm_filter *fl = &adc->dfsdm->fl_list[fl_id];
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struct stm32_dfsdm_filter_osr *flo = &fl->flo;
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struct stm32_dfsdm_filter_osr *flo = &fl->flo[0];
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const struct iio_chan_spec *chan;
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unsigned int bit;
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int ret;
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fl->fast = 0;
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/*
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* In continuous mode, use fast mode configuration,
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* if it provides a better resolution.
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*/
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if (adc->nconv == 1 && !trig &&
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(indio_dev->currentmode & INDIO_BUFFER_SOFTWARE)) {
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if (fl->flo[1].res >= fl->flo[0].res) {
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fl->fast = 1;
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flo = &fl->flo[1];
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}
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}
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if (!flo->res)
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return -EINVAL;
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@ -463,7 +498,7 @@ static int stm32_dfsdm_filter_configure(struct stm32_dfsdm_adc *adc,
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struct iio_dev *indio_dev = iio_priv_to_dev(adc);
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struct regmap *regmap = adc->dfsdm->regmap;
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struct stm32_dfsdm_filter *fl = &adc->dfsdm->fl_list[fl_id];
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struct stm32_dfsdm_filter_osr *flo = &fl->flo;
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struct stm32_dfsdm_filter_osr *flo = &fl->flo[fl->fast];
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u32 cr1;
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const struct iio_chan_spec *chan;
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unsigned int bit, jchg = 0;
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@ -490,6 +525,12 @@ static int stm32_dfsdm_filter_configure(struct stm32_dfsdm_adc *adc,
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if (ret)
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return ret;
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ret = regmap_update_bits(regmap, DFSDM_CR1(fl_id),
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DFSDM_CR1_FAST_MASK,
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DFSDM_CR1_FAST(fl->fast));
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if (ret)
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return ret;
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/*
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* DFSDM modes configuration W.R.T audio/iio type modes
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* ----------------------------------------------------------------
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@ -636,7 +677,6 @@ static int dfsdm_adc_set_samp_freq(struct iio_dev *indio_dev,
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unsigned int spi_freq)
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{
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struct stm32_dfsdm_adc *adc = iio_priv(indio_dev);
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struct stm32_dfsdm_filter *fl = &adc->dfsdm->fl_list[adc->fl_id];
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unsigned int oversamp;
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int ret;
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@ -646,11 +686,10 @@ static int dfsdm_adc_set_samp_freq(struct iio_dev *indio_dev,
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"Rate not accurate. requested (%u), actual (%u)\n",
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sample_freq, spi_freq / oversamp);
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ret = stm32_dfsdm_compute_osrs(fl, 0, oversamp);
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if (ret < 0) {
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dev_err(&indio_dev->dev, "No filter parameters that match!\n");
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ret = stm32_dfsdm_compute_all_osrs(indio_dev, oversamp);
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if (ret < 0)
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return ret;
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}
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adc->sample_freq = spi_freq / oversamp;
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adc->oversamp = oversamp;
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@ -783,7 +822,7 @@ static inline void stm32_dfsdm_process_data(struct stm32_dfsdm_adc *adc,
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s32 *buffer)
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{
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struct stm32_dfsdm_filter *fl = &adc->dfsdm->fl_list[adc->fl_id];
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struct stm32_dfsdm_filter_osr *flo = &fl->flo;
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struct stm32_dfsdm_filter_osr *flo = &fl->flo[fl->fast];
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unsigned int i = adc->nconv;
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s32 *ptr = buffer;
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@ -1171,7 +1210,6 @@ static int stm32_dfsdm_write_raw(struct iio_dev *indio_dev,
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int val, int val2, long mask)
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{
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struct stm32_dfsdm_adc *adc = iio_priv(indio_dev);
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struct stm32_dfsdm_filter *fl = &adc->dfsdm->fl_list[adc->fl_id];
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struct stm32_dfsdm_channel *ch = &adc->dfsdm->ch_list[chan->channel];
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unsigned int spi_freq;
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int ret = -EINVAL;
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@ -1181,7 +1219,7 @@ static int stm32_dfsdm_write_raw(struct iio_dev *indio_dev,
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ret = iio_device_claim_direct_mode(indio_dev);
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if (ret)
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return ret;
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ret = stm32_dfsdm_compute_osrs(fl, 0, val);
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ret = stm32_dfsdm_compute_all_osrs(indio_dev, val);
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if (!ret)
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adc->oversamp = val;
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iio_device_release_direct_mode(indio_dev);
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@ -1430,8 +1468,7 @@ static int stm32_dfsdm_adc_init(struct iio_dev *indio_dev)
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int ret, chan_idx;
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adc->oversamp = DFSDM_DEFAULT_OVERSAMPLING;
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ret = stm32_dfsdm_compute_osrs(&adc->dfsdm->fl_list[adc->fl_id], 0,
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adc->oversamp);
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ret = stm32_dfsdm_compute_all_osrs(indio_dev, adc->oversamp);
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if (ret < 0)
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return ret;
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@ -263,13 +263,13 @@ struct stm32_dfsdm_filter_osr {
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/**
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* struct stm32_dfsdm_filter - structure relative to stm32 FDSDM filter
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* @ford: filter order
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* @flo: filter oversampling structure
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* @flo: filter oversampling data table indexed by fast mode flag
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* @sync_mode: filter synchronized with filter 0
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* @fast: filter fast mode
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*/
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struct stm32_dfsdm_filter {
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enum stm32_dfsdm_sinc_order ford;
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struct stm32_dfsdm_filter_osr flo;
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struct stm32_dfsdm_filter_osr flo[2];
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unsigned int sync_mode;
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unsigned int fast;
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};
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