iio: imu: st_lsm6dsx: add FIFO ops data structure
Introduce FIFO ops data structure to contain FIFO related parameters in order to properly support more devices in st_lsm6dsx driver Signed-off-by: Lorenzo Bianconi <lorenzo.bianconi@st.com> Signed-off-by: Jonathan Cameron <Jonathan.Cameron@huawei.com>
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@ -29,8 +29,6 @@ enum st_lsm6dsx_hw_id {
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#define ST_LSM6DSX_CHAN_SIZE 2
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#define ST_LSM6DSX_SAMPLE_SIZE 6
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#define ST_LSM6DSX_SAMPLE_DEPTH (ST_LSM6DSX_SAMPLE_SIZE / \
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ST_LSM6DSX_CHAN_SIZE)
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#if defined(CONFIG_SPI_MASTER)
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#define ST_LSM6DSX_RX_MAX_LENGTH 256
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@ -52,18 +50,38 @@ struct st_lsm6dsx_reg {
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u8 mask;
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};
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/**
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* struct st_lsm6dsx_fifo_ops - ST IMU FIFO settings
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* @fifo_th: FIFO threshold register info (addr + mask).
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* @fifo_diff: FIFO diff status register info (addr + mask).
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* @th_wl: FIFO threshold word length.
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*/
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struct st_lsm6dsx_fifo_ops {
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struct {
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u8 addr;
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u16 mask;
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} fifo_th;
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struct {
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u8 addr;
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u16 mask;
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} fifo_diff;
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u8 th_wl;
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};
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/**
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* struct st_lsm6dsx_settings - ST IMU sensor settings
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* @wai: Sensor WhoAmI default value.
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* @max_fifo_size: Sensor max fifo length in FIFO words.
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* @id: List of hw id supported by the driver configuration.
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* @decimator: List of decimator register info (addr + mask).
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* @fifo_ops: Sensor hw FIFO parameters.
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*/
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struct st_lsm6dsx_settings {
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u8 wai;
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u16 max_fifo_size;
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enum st_lsm6dsx_hw_id id[ST_LSM6DSX_MAX_ID];
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struct st_lsm6dsx_reg decimator[ST_LSM6DSX_MAX_ID];
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struct st_lsm6dsx_fifo_ops fifo_ops;
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};
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enum st_lsm6dsx_sensor_id {
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@ -35,9 +35,6 @@
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#include "st_lsm6dsx.h"
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#define ST_LSM6DSX_REG_FIFO_THL_ADDR 0x06
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#define ST_LSM6DSX_REG_FIFO_THH_ADDR 0x07
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#define ST_LSM6DSX_FIFO_TH_MASK GENMASK(11, 0)
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#define ST_LSM6DSX_REG_HLACTIVE_ADDR 0x12
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#define ST_LSM6DSX_REG_HLACTIVE_MASK BIT(5)
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#define ST_LSM6DSX_REG_PP_OD_ADDR 0x12
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@ -45,8 +42,6 @@
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#define ST_LSM6DSX_REG_FIFO_MODE_ADDR 0x0a
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#define ST_LSM6DSX_FIFO_MODE_MASK GENMASK(2, 0)
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#define ST_LSM6DSX_FIFO_ODR_MASK GENMASK(6, 3)
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#define ST_LSM6DSX_REG_FIFO_DIFFL_ADDR 0x3a
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#define ST_LSM6DSX_FIFO_DIFF_MASK GENMASK(11, 0)
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#define ST_LSM6DSX_FIFO_EMPTY_MASK BIT(12)
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#define ST_LSM6DSX_REG_FIFO_OUTL_ADDR 0x3e
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@ -165,7 +160,7 @@ static int st_lsm6dsx_set_fifo_odr(struct st_lsm6dsx_sensor *sensor,
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int st_lsm6dsx_update_watermark(struct st_lsm6dsx_sensor *sensor, u16 watermark)
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{
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u16 fifo_watermark = ~0, cur_watermark, sip = 0;
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u16 fifo_watermark = ~0, cur_watermark, sip = 0, fifo_th_mask;
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struct st_lsm6dsx_hw *hw = sensor->hw;
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struct st_lsm6dsx_sensor *cur_sensor;
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__le16 wdata;
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@ -190,20 +185,21 @@ int st_lsm6dsx_update_watermark(struct st_lsm6dsx_sensor *sensor, u16 watermark)
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fifo_watermark = max_t(u16, fifo_watermark, sip);
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fifo_watermark = (fifo_watermark / sip) * sip;
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fifo_watermark = fifo_watermark * ST_LSM6DSX_SAMPLE_DEPTH;
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fifo_watermark = fifo_watermark * hw->settings->fifo_ops.th_wl;
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mutex_lock(&hw->lock);
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err = hw->tf->read(hw->dev, ST_LSM6DSX_REG_FIFO_THH_ADDR,
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err = hw->tf->read(hw->dev, hw->settings->fifo_ops.fifo_th.addr + 1,
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sizeof(data), &data);
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if (err < 0)
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goto out;
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fifo_watermark = ((data << 8) & ~ST_LSM6DSX_FIFO_TH_MASK) |
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(fifo_watermark & ST_LSM6DSX_FIFO_TH_MASK);
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fifo_th_mask = hw->settings->fifo_ops.fifo_th.mask;
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fifo_watermark = ((data << 8) & ~fifo_th_mask) |
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(fifo_watermark & fifo_th_mask);
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wdata = cpu_to_le16(fifo_watermark);
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err = hw->tf->write(hw->dev, ST_LSM6DSX_REG_FIFO_THL_ADDR,
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err = hw->tf->write(hw->dev, hw->settings->fifo_ops.fifo_th.addr,
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sizeof(wdata), (u8 *)&wdata);
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out:
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mutex_unlock(&hw->lock);
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@ -222,6 +218,7 @@ out:
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static int st_lsm6dsx_read_fifo(struct st_lsm6dsx_hw *hw)
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{
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u16 fifo_len, pattern_len = hw->sip * ST_LSM6DSX_SAMPLE_SIZE;
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u16 fifo_diff_mask = hw->settings->fifo_ops.fifo_diff.mask;
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int err, acc_sip, gyro_sip, read_len, samples, offset;
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struct st_lsm6dsx_sensor *acc_sensor, *gyro_sensor;
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s64 acc_ts, acc_delta_ts, gyro_ts, gyro_delta_ts;
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@ -229,7 +226,7 @@ static int st_lsm6dsx_read_fifo(struct st_lsm6dsx_hw *hw)
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u8 buff[pattern_len];
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__le16 fifo_status;
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err = hw->tf->read(hw->dev, ST_LSM6DSX_REG_FIFO_DIFFL_ADDR,
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err = hw->tf->read(hw->dev, hw->settings->fifo_ops.fifo_diff.addr,
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sizeof(fifo_status), (u8 *)&fifo_status);
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if (err < 0)
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return err;
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@ -237,7 +234,7 @@ static int st_lsm6dsx_read_fifo(struct st_lsm6dsx_hw *hw)
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if (fifo_status & cpu_to_le16(ST_LSM6DSX_FIFO_EMPTY_MASK))
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return 0;
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fifo_len = (le16_to_cpu(fifo_status) & ST_LSM6DSX_FIFO_DIFF_MASK) *
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fifo_len = (le16_to_cpu(fifo_status) & fifo_diff_mask) *
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ST_LSM6DSX_CHAN_SIZE;
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samples = fifo_len / ST_LSM6DSX_SAMPLE_SIZE;
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fifo_len = (fifo_len / pattern_len) * pattern_len;
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@ -168,6 +168,17 @@ static const struct st_lsm6dsx_settings st_lsm6dsx_sensor_settings[] = {
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.mask = GENMASK(5, 3),
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},
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},
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.fifo_ops = {
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.fifo_th = {
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.addr = 0x06,
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.mask = GENMASK(11, 0),
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},
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.fifo_diff = {
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.addr = 0x3a,
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.mask = GENMASK(11, 0),
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},
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.th_wl = 3, /* 1LSB = 2B */
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},
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},
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{
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.wai = 0x69,
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@ -185,6 +196,17 @@ static const struct st_lsm6dsx_settings st_lsm6dsx_sensor_settings[] = {
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.mask = GENMASK(5, 3),
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},
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},
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.fifo_ops = {
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.fifo_th = {
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.addr = 0x06,
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.mask = GENMASK(11, 0),
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},
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.fifo_diff = {
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.addr = 0x3a,
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.mask = GENMASK(11, 0),
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},
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.th_wl = 3, /* 1LSB = 2B */
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},
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},
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{
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.wai = 0x6a,
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@ -203,6 +225,17 @@ static const struct st_lsm6dsx_settings st_lsm6dsx_sensor_settings[] = {
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.mask = GENMASK(5, 3),
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},
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},
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.fifo_ops = {
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.fifo_th = {
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.addr = 0x06,
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.mask = GENMASK(11, 0),
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},
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.fifo_diff = {
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.addr = 0x3a,
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.mask = GENMASK(11, 0),
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},
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.th_wl = 3, /* 1LSB = 2B */
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},
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},
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};
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