iio: DAC extension for ltc2634-12/10/8
This patch add support for Analog Devices (Linear Technology) LTC2634 Quad 12-/10-/8-Bit Rail-to-Rail DAC. The SPI functionality based on them from LTC2632 therefor add the definitions only and update the Kconfig. Signed-off-by: Chris Ruehl <chris.ruehl@gtsys.com.hk> Acked-by: Uwe Kleine-König <u.kleine-koenig@pengutronix.de> Signed-off-by: Jonathan Cameron <Jonathan.Cameron@huawei.com>
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Родитель
aefa5bc87c
Коммит
6f1c9e0da9
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@ -1,4 +1,4 @@
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Linear Technology LTC2632/2636 DAC
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Linear Technology LTC2632/2634/2636 DAC
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Required properties:
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- compatible: Has to contain one of the following:
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@ -8,6 +8,12 @@ Required properties:
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lltc,ltc2632-h12
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lltc,ltc2632-h10
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lltc,ltc2632-h8
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lltc,ltc2634-l12
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lltc,ltc2634-l10
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lltc,ltc2634-l8
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lltc,ltc2634-h12
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lltc,ltc2634-h10
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lltc,ltc2634-h8
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lltc,ltc2636-l12
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lltc,ltc2636-l10
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lltc,ltc2636-l8
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@ -279,12 +279,12 @@ config LTC1660
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module will be called ltc1660.
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config LTC2632
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tristate "Linear Technology LTC2632-12/10/8 and LTC2636-12/10/8 DAC spi driver"
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tristate "Linear Technology LTC2632-12/10/8 and similar DAC spi driver"
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depends on SPI
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help
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Say yes here to build support for Linear Technology
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LTC2632-12, LTC2632-10, LTC2632-8, LTC2636-12, LTC2636-10 and
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LTC2636-8 converters (DAC).
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LTC2632, LTC2634 and LTC2636 DAC resolution 12/10/8 bit
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low 0-2.5V and high 0-4.096V range converters.
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To compile this driver as a module, choose M here: the
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module will be called ltc2632.
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@ -56,6 +56,12 @@ enum ltc2632_supported_device_ids {
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ID_LTC2632H12,
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ID_LTC2632H10,
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ID_LTC2632H8,
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ID_LTC2634L12,
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ID_LTC2634L10,
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ID_LTC2634L8,
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ID_LTC2634H12,
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ID_LTC2634H10,
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ID_LTC2634H8,
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ID_LTC2636L12,
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ID_LTC2636L10,
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ID_LTC2636L8,
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@ -236,6 +242,36 @@ static const struct ltc2632_chip_info ltc2632_chip_info_tbl[] = {
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.num_channels = 2,
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.vref_mv = 4096,
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},
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[ID_LTC2634L12] = {
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.channels = ltc2632x12_channels,
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.num_channels = 4,
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.vref_mv = 2500,
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},
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[ID_LTC2634L10] = {
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.channels = ltc2632x10_channels,
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.num_channels = 4,
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.vref_mv = 2500,
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},
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[ID_LTC2634L8] = {
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.channels = ltc2632x8_channels,
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.num_channels = 4,
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.vref_mv = 2500,
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},
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[ID_LTC2634H12] = {
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.channels = ltc2632x12_channels,
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.num_channels = 4,
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.vref_mv = 4096,
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},
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[ID_LTC2634H10] = {
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.channels = ltc2632x10_channels,
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.num_channels = 4,
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.vref_mv = 4096,
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},
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[ID_LTC2634H8] = {
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.channels = ltc2632x8_channels,
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.num_channels = 4,
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.vref_mv = 4096,
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},
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[ID_LTC2636L12] = {
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.channels = ltc2632x12_channels,
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.num_channels = 8,
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@ -357,6 +393,12 @@ static const struct spi_device_id ltc2632_id[] = {
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{ "ltc2632-h12", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2632H12] },
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{ "ltc2632-h10", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2632H10] },
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{ "ltc2632-h8", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2632H8] },
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{ "ltc2634-l12", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2634L12] },
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{ "ltc2634-l10", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2634L10] },
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{ "ltc2634-l8", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2634L8] },
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{ "ltc2634-h12", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2634H12] },
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{ "ltc2634-h10", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2634H10] },
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{ "ltc2634-h8", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2634H8] },
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{ "ltc2636-l12", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2636L12] },
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{ "ltc2636-l10", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2636L10] },
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{ "ltc2636-l8", (kernel_ulong_t)<c2632_chip_info_tbl[ID_LTC2636L8] },
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@ -386,6 +428,24 @@ static const struct of_device_id ltc2632_of_match[] = {
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}, {
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.compatible = "lltc,ltc2632-h8",
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.data = <c2632_chip_info_tbl[ID_LTC2632H8]
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}, {
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.compatible = "lltc,ltc2634-l12",
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.data = <c2632_chip_info_tbl[ID_LTC2634L12]
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}, {
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.compatible = "lltc,ltc2634-l10",
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.data = <c2632_chip_info_tbl[ID_LTC2634L10]
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}, {
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.compatible = "lltc,ltc2634-l8",
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.data = <c2632_chip_info_tbl[ID_LTC2634L8]
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}, {
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.compatible = "lltc,ltc2634-h12",
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.data = <c2632_chip_info_tbl[ID_LTC2634H12]
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}, {
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.compatible = "lltc,ltc2634-h10",
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.data = <c2632_chip_info_tbl[ID_LTC2634H10]
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}, {
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.compatible = "lltc,ltc2634-h8",
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.data = <c2632_chip_info_tbl[ID_LTC2634H8]
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}, {
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.compatible = "lltc,ltc2636-l12",
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.data = <c2632_chip_info_tbl[ID_LTC2636L12]
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