Commit a1c6d631 authored by Lorenzo Bianconi's avatar Lorenzo Bianconi Committed by Jonathan Cameron

iio: imu: st_lsm6dsx: add support to LSM6DSV

Add support to STM LSM6DSV (accelerometer and gyroscope)
Mems sensor.

Datasheet: https://www.st.com/resource/en/datasheet/lsm6dsv.pdfSigned-off-by: default avatarLorenzo Bianconi <lorenzo@kernel.org>
Link: https://lore.kernel.org/r/aad879e7af0fe583bbf043a2b93e32fade79fa19.1667216004.git.lorenzo@kernel.orgSigned-off-by: default avatarJonathan Cameron <Jonathan.Cameron@huawei.com>
parent 2cfb2180
...@@ -13,7 +13,7 @@ config IIO_ST_LSM6DSX ...@@ -13,7 +13,7 @@ config IIO_ST_LSM6DSX
sensor. Supported devices: lsm6ds3, lsm6ds3h, lsm6dsl, lsm6dsm, sensor. Supported devices: lsm6ds3, lsm6ds3h, lsm6dsl, lsm6dsm,
ism330dlc, lsm6dso, lsm6dsox, asm330lhh, asm330lhhx, lsm6dsr, ism330dlc, lsm6dso, lsm6dsox, asm330lhh, asm330lhhx, lsm6dsr,
lsm6ds3tr-c, ism330dhcx, lsm6dsrx, lsm6ds0, lsm6dsop, lsm6dstx, lsm6ds3tr-c, ism330dhcx, lsm6dsrx, lsm6ds0, lsm6dsop, lsm6dstx,
the accelerometer/gyroscope of lsm9ds1 and lsm6dst. lsm6dsv, the accelerometer/gyroscope of lsm9ds1 and lsm6dst.
To compile this driver as a module, choose M here: the module To compile this driver as a module, choose M here: the module
will be called st_lsm6dsx. will be called st_lsm6dsx.
......
...@@ -33,6 +33,7 @@ ...@@ -33,6 +33,7 @@
#define ST_LSM6DSOP_DEV_NAME "lsm6dsop" #define ST_LSM6DSOP_DEV_NAME "lsm6dsop"
#define ST_ASM330LHHX_DEV_NAME "asm330lhhx" #define ST_ASM330LHHX_DEV_NAME "asm330lhhx"
#define ST_LSM6DSTX_DEV_NAME "lsm6dstx" #define ST_LSM6DSTX_DEV_NAME "lsm6dstx"
#define ST_LSM6DSV_DEV_NAME "lsm6dsv"
enum st_lsm6dsx_hw_id { enum st_lsm6dsx_hw_id {
ST_LSM6DS3_ID, ST_LSM6DS3_ID,
...@@ -53,6 +54,7 @@ enum st_lsm6dsx_hw_id { ...@@ -53,6 +54,7 @@ enum st_lsm6dsx_hw_id {
ST_LSM6DSOP_ID, ST_LSM6DSOP_ID,
ST_ASM330LHHX_ID, ST_ASM330LHHX_ID,
ST_LSM6DSTX_ID, ST_LSM6DSTX_ID,
ST_LSM6DSV_ID,
ST_LSM6DSX_MAX_ID, ST_LSM6DSX_MAX_ID,
}; };
......
...@@ -15,7 +15,7 @@ ...@@ -15,7 +15,7 @@
* value of the decimation factor and ODR set for each FIFO data set. * value of the decimation factor and ODR set for each FIFO data set.
* *
* LSM6DSO/LSM6DSOX/ASM330LHH/ASM330LHHX/LSM6DSR/LSM6DSRX/ISM330DHCX/ * LSM6DSO/LSM6DSOX/ASM330LHH/ASM330LHHX/LSM6DSR/LSM6DSRX/ISM330DHCX/
* LSM6DST/LSM6DSOP/LSM6DSTX: * LSM6DST/LSM6DSOP/LSM6DSTX/LSM6DSV:
* The FIFO buffer can be configured to store data from gyroscope and * The FIFO buffer can be configured to store data from gyroscope and
* accelerometer. Each sample is queued with a tag (1B) indicating data * accelerometer. Each sample is queued with a tag (1B) indicating data
* source (gyroscope, accelerometer, hw timer). * source (gyroscope, accelerometer, hw timer).
......
...@@ -1162,6 +1162,208 @@ static const struct st_lsm6dsx_settings st_lsm6dsx_sensor_settings[] = { ...@@ -1162,6 +1162,208 @@ static const struct st_lsm6dsx_settings st_lsm6dsx_sensor_settings[] = {
.wakeup_src_x_mask = BIT(2), .wakeup_src_x_mask = BIT(2),
}, },
}, },
{
.reset = {
.addr = 0x12,
.mask = BIT(0),
},
.boot = {
.addr = 0x12,
.mask = BIT(7),
},
.bdu = {
.addr = 0x12,
.mask = BIT(6),
},
.id = {
{
.hw_id = ST_LSM6DSV_ID,
.name = ST_LSM6DSV_DEV_NAME,
.wai = 0x70,
},
},
.channels = {
[ST_LSM6DSX_ID_ACC] = {
.chan = st_lsm6dsx_acc_channels,
.len = ARRAY_SIZE(st_lsm6dsx_acc_channels),
},
[ST_LSM6DSX_ID_GYRO] = {
.chan = st_lsm6dsx_gyro_channels,
.len = ARRAY_SIZE(st_lsm6dsx_gyro_channels),
},
},
.drdy_mask = {
.addr = 0x13,
.mask = BIT(3),
},
.odr_table = {
[ST_LSM6DSX_ID_ACC] = {
.reg = {
.addr = 0x10,
.mask = GENMASK(3, 0),
},
.odr_avl[0] = { 7500, 0x02 },
.odr_avl[1] = { 15000, 0x03 },
.odr_avl[2] = { 30000, 0x04 },
.odr_avl[3] = { 60000, 0x05 },
.odr_avl[4] = { 120000, 0x06 },
.odr_avl[5] = { 240000, 0x07 },
.odr_avl[6] = { 480000, 0x08 },
.odr_avl[7] = { 960000, 0x09 },
.odr_len = 8,
},
[ST_LSM6DSX_ID_GYRO] = {
.reg = {
.addr = 0x11,
.mask = GENMASK(3, 0),
},
.odr_avl[0] = { 7500, 0x02 },
.odr_avl[1] = { 15000, 0x03 },
.odr_avl[2] = { 30000, 0x04 },
.odr_avl[3] = { 60000, 0x05 },
.odr_avl[4] = { 120000, 0x06 },
.odr_avl[5] = { 240000, 0x07 },
.odr_avl[6] = { 480000, 0x08 },
.odr_avl[7] = { 960000, 0x09 },
.odr_len = 8,
},
},
.fs_table = {
[ST_LSM6DSX_ID_ACC] = {
.reg = {
.addr = 0x17,
.mask = GENMASK(1, 0),
},
.fs_avl[0] = { IIO_G_TO_M_S_2(61000), 0x0 },
.fs_avl[1] = { IIO_G_TO_M_S_2(122000), 0x1 },
.fs_avl[2] = { IIO_G_TO_M_S_2(244000), 0x2 },
.fs_avl[3] = { IIO_G_TO_M_S_2(488000), 0x3 },
.fs_len = 4,
},
[ST_LSM6DSX_ID_GYRO] = {
.reg = {
.addr = 0x15,
.mask = GENMASK(3, 0),
},
.fs_avl[0] = { IIO_DEGREE_TO_RAD(8750000), 0x1 },
.fs_avl[1] = { IIO_DEGREE_TO_RAD(17500000), 0x2 },
.fs_avl[2] = { IIO_DEGREE_TO_RAD(35000000), 0x3 },
.fs_avl[3] = { IIO_DEGREE_TO_RAD(70000000), 0x4 },
.fs_len = 4,
},
},
.irq_config = {
.irq1 = {
.addr = 0x0d,
.mask = BIT(3),
},
.irq2 = {
.addr = 0x0e,
.mask = BIT(3),
},
.lir = {
.addr = 0x56,
.mask = BIT(0),
},
.irq1_func = {
.addr = 0x5e,
.mask = BIT(5),
},
.irq2_func = {
.addr = 0x5f,
.mask = BIT(5),
},
.hla = {
.addr = 0x03,
.mask = BIT(4),
},
.od = {
.addr = 0x03,
.mask = BIT(3),
},
},
.batch = {
[ST_LSM6DSX_ID_ACC] = {
.addr = 0x09,
.mask = GENMASK(3, 0),
},
[ST_LSM6DSX_ID_GYRO] = {
.addr = 0x09,
.mask = GENMASK(7, 4),
},
},
.fifo_ops = {
.update_fifo = st_lsm6dsx_update_fifo,
.read_fifo = st_lsm6dsx_read_tagged_fifo,
.fifo_th = {
.addr = 0x07,
.mask = GENMASK(7, 0),
},
.fifo_diff = {
.addr = 0x1b,
.mask = GENMASK(8, 0),
},
.max_size = 512,
.th_wl = 1,
},
.ts_settings = {
.timer_en = {
.addr = 0x50,
.mask = BIT(6),
},
.decimator = {
.addr = 0x0a,
.mask = GENMASK(7, 6),
},
.freq_fine = 0x4f,
},
.shub_settings = {
.page_mux = {
.addr = 0x01,
.mask = BIT(6),
},
.master_en = {
.sec_page = true,
.addr = 0x14,
.mask = BIT(2),
},
.pullup_en = {
.addr = 0x03,
.mask = BIT(6),
},
.aux_sens = {
.addr = 0x14,
.mask = GENMASK(1, 0),
},
.wr_once = {
.addr = 0x14,
.mask = BIT(6),
},
.num_ext_dev = 3,
.shub_out = {
.sec_page = true,
.addr = 0x02,
},
.slv0_addr = 0x15,
.dw_slv0_addr = 0x21,
.batch_en = BIT(3),
},
.event_settings = {
.enable_reg = {
.addr = 0x50,
.mask = BIT(7),
},
.wakeup_reg = {
.addr = 0x5b,
.mask = GENMASK(5, 0),
},
.wakeup_src_reg = 0x45,
.wakeup_src_status_mask = BIT(3),
.wakeup_src_z_mask = BIT(0),
.wakeup_src_y_mask = BIT(1),
.wakeup_src_x_mask = BIT(2),
},
},
}; };
int st_lsm6dsx_set_page(struct st_lsm6dsx_hw *hw, bool enable) int st_lsm6dsx_set_page(struct st_lsm6dsx_hw *hw, bool enable)
......
...@@ -109,6 +109,10 @@ static const struct of_device_id st_lsm6dsx_i2c_of_match[] = { ...@@ -109,6 +109,10 @@ static const struct of_device_id st_lsm6dsx_i2c_of_match[] = {
.compatible = "st,lsm6dstx", .compatible = "st,lsm6dstx",
.data = (void *)ST_LSM6DSTX_ID, .data = (void *)ST_LSM6DSTX_ID,
}, },
{
.compatible = "st,lsm6dsv",
.data = (void *)ST_LSM6DSV_ID,
},
{}, {},
}; };
MODULE_DEVICE_TABLE(of, st_lsm6dsx_i2c_of_match); MODULE_DEVICE_TABLE(of, st_lsm6dsx_i2c_of_match);
...@@ -132,6 +136,7 @@ static const struct i2c_device_id st_lsm6dsx_i2c_id_table[] = { ...@@ -132,6 +136,7 @@ static const struct i2c_device_id st_lsm6dsx_i2c_id_table[] = {
{ ST_LSM6DSOP_DEV_NAME, ST_LSM6DSOP_ID }, { ST_LSM6DSOP_DEV_NAME, ST_LSM6DSOP_ID },
{ ST_ASM330LHHX_DEV_NAME, ST_ASM330LHHX_ID }, { ST_ASM330LHHX_DEV_NAME, ST_ASM330LHHX_ID },
{ ST_LSM6DSTX_DEV_NAME, ST_LSM6DSTX_ID }, { ST_LSM6DSTX_DEV_NAME, ST_LSM6DSTX_ID },
{ ST_LSM6DSV_DEV_NAME, ST_LSM6DSV_ID },
{}, {},
}; };
MODULE_DEVICE_TABLE(i2c, st_lsm6dsx_i2c_id_table); MODULE_DEVICE_TABLE(i2c, st_lsm6dsx_i2c_id_table);
......
...@@ -109,6 +109,10 @@ static const struct of_device_id st_lsm6dsx_spi_of_match[] = { ...@@ -109,6 +109,10 @@ static const struct of_device_id st_lsm6dsx_spi_of_match[] = {
.compatible = "st,lsm6dstx", .compatible = "st,lsm6dstx",
.data = (void *)ST_LSM6DSTX_ID, .data = (void *)ST_LSM6DSTX_ID,
}, },
{
.compatible = "st,lsm6dsv",
.data = (void *)ST_LSM6DSV_ID,
},
{}, {},
}; };
MODULE_DEVICE_TABLE(of, st_lsm6dsx_spi_of_match); MODULE_DEVICE_TABLE(of, st_lsm6dsx_spi_of_match);
...@@ -132,6 +136,7 @@ static const struct spi_device_id st_lsm6dsx_spi_id_table[] = { ...@@ -132,6 +136,7 @@ static const struct spi_device_id st_lsm6dsx_spi_id_table[] = {
{ ST_LSM6DSOP_DEV_NAME, ST_LSM6DSOP_ID }, { ST_LSM6DSOP_DEV_NAME, ST_LSM6DSOP_ID },
{ ST_ASM330LHHX_DEV_NAME, ST_ASM330LHHX_ID }, { ST_ASM330LHHX_DEV_NAME, ST_ASM330LHHX_ID },
{ ST_LSM6DSTX_DEV_NAME, ST_LSM6DSTX_ID }, { ST_LSM6DSTX_DEV_NAME, ST_LSM6DSTX_ID },
{ ST_LSM6DSV_DEV_NAME, ST_LSM6DSV_ID },
{}, {},
}; };
MODULE_DEVICE_TABLE(spi, st_lsm6dsx_spi_id_table); MODULE_DEVICE_TABLE(spi, st_lsm6dsx_spi_id_table);
......
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