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iio:core: mounting matrix support
Expose a rotation matrix to indicate userspace the chip placement with respect to the overall hardware system. This is needed to adjust coordinates sampled from a sensor chip when its position deviates from the main hardware system. Final coordinates computation is delegated to userspace since: * computation may involve floating point arithmetics ; * it allows an application to combine adjustments with arbitrary transformations. This 3 dimentional space rotation matrix is expressed as 3x3 array of strings to support floating point numbers. It may be retrieved from a "[<dir>_][<type>_]mount_matrix" sysfs attribute file. It is declared into a device / driver specific DTS property or platform data. Signed-off-by: Gregor Boirie <gregor.boirie@parrot.com> Signed-off-by: Jonathan Cameron <jic23@kernel.org>
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@ -1512,3 +1512,54 @@ Contact: linux-iio@vger.kernel.org
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Description:
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Raw (unscaled no offset etc.) pH reading of a substance as a negative
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base-10 logarithm of hydrodium ions in a litre of water.
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What: /sys/bus/iio/devices/iio:deviceX/mount_matrix
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What: /sys/bus/iio/devices/iio:deviceX/in_mount_matrix
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What: /sys/bus/iio/devices/iio:deviceX/out_mount_matrix
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KernelVersion: 4.6
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Contact: linux-iio@vger.kernel.org
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Description:
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Mounting matrix for IIO sensors. This is a rotation matrix which
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informs userspace about sensor chip's placement relative to the
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main hardware it is mounted on.
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Main hardware placement is defined according to the local
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reference frame related to the physical quantity the sensor
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measures.
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Given that the rotation matrix is defined in a board specific
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way (platform data and / or device-tree), the main hardware
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reference frame definition is left to the implementor's choice
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(see below for a magnetometer example).
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Applications should apply this rotation matrix to samples so
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that when main hardware reference frame is aligned onto local
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reference frame, then sensor chip reference frame is also
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perfectly aligned with it.
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Matrix is a 3x3 unitary matrix and typically looks like
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[0, 1, 0; 1, 0, 0; 0, 0, -1]. Identity matrix
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[1, 0, 0; 0, 1, 0; 0, 0, 1] means sensor chip and main hardware
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are perfectly aligned with each other.
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For example, a mounting matrix for a magnetometer sensor informs
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userspace about sensor chip's ORIENTATION relative to the main
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hardware.
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More specifically, main hardware orientation is defined with
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respect to the LOCAL EARTH GEOMAGNETIC REFERENCE FRAME where :
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* Y is in the ground plane and positive towards magnetic North ;
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* X is in the ground plane, perpendicular to the North axis and
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positive towards the East ;
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* Z is perpendicular to the ground plane and positive upwards.
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An implementor might consider that for a hand-held device, a
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'natural' orientation would be 'front facing camera at the top'.
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The main hardware reference frame could then be described as :
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* Y is in the plane of the screen and is positive towards the
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top of the screen ;
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* X is in the plane of the screen, perpendicular to Y axis, and
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positive towards the right hand side of the screen ;
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* Z is perpendicular to the screen plane and positive out of the
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screen.
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Another example for a quadrotor UAV might be :
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* Y is in the plane of the propellers and positive towards the
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front-view camera;
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* X is in the plane of the propellers, perpendicular to Y axis,
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and positive towards the starboard side of the UAV ;
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* Z is perpendicular to propellers plane and positive upwards.
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@ -412,6 +412,88 @@ ssize_t iio_enum_write(struct iio_dev *indio_dev,
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}
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EXPORT_SYMBOL_GPL(iio_enum_write);
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static const struct iio_mount_matrix iio_mount_idmatrix = {
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.rotation = {
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"1", "0", "0",
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"0", "1", "0",
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"0", "0", "1"
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}
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};
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static int iio_setup_mount_idmatrix(const struct device *dev,
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struct iio_mount_matrix *matrix)
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{
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*matrix = iio_mount_idmatrix;
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dev_info(dev, "mounting matrix not found: using identity...\n");
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return 0;
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}
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ssize_t iio_show_mount_matrix(struct iio_dev *indio_dev, uintptr_t priv,
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const struct iio_chan_spec *chan, char *buf)
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{
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const struct iio_mount_matrix *mtx = ((iio_get_mount_matrix_t *)
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priv)(indio_dev, chan);
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if (IS_ERR(mtx))
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return PTR_ERR(mtx);
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if (!mtx)
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mtx = &iio_mount_idmatrix;
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return snprintf(buf, PAGE_SIZE, "%s, %s, %s; %s, %s, %s; %s, %s, %s\n",
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mtx->rotation[0], mtx->rotation[1], mtx->rotation[2],
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mtx->rotation[3], mtx->rotation[4], mtx->rotation[5],
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mtx->rotation[6], mtx->rotation[7], mtx->rotation[8]);
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}
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EXPORT_SYMBOL_GPL(iio_show_mount_matrix);
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/**
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* of_iio_read_mount_matrix() - retrieve iio device mounting matrix from
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* device-tree "mount-matrix" property
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* @dev: device the mounting matrix property is assigned to
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* @propname: device specific mounting matrix property name
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* @matrix: where to store retrieved matrix
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*
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* If device is assigned no mounting matrix property, a default 3x3 identity
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* matrix will be filled in.
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*
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* Return: 0 if success, or a negative error code on failure.
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*/
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#ifdef CONFIG_OF
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int of_iio_read_mount_matrix(const struct device *dev,
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const char *propname,
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struct iio_mount_matrix *matrix)
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{
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if (dev->of_node) {
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int err = of_property_read_string_array(dev->of_node,
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propname, matrix->rotation,
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ARRAY_SIZE(iio_mount_idmatrix.rotation));
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if (err == ARRAY_SIZE(iio_mount_idmatrix.rotation))
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return 0;
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if (err >= 0)
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/* Invalid number of matrix entries. */
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return -EINVAL;
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if (err != -EINVAL)
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/* Invalid matrix declaration format. */
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return err;
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}
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/* Matrix was not declared at all: fallback to identity. */
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return iio_setup_mount_idmatrix(dev, matrix);
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}
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#else
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int of_iio_read_mount_matrix(const struct device *dev,
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const char *propname,
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struct iio_mount_matrix *matrix)
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{
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return iio_setup_mount_idmatrix(dev, matrix);
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}
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#endif
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EXPORT_SYMBOL(of_iio_read_mount_matrix);
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/**
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* iio_format_value() - Formats a IIO value into its string representation
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* @buf: The buffer to which the formatted value gets written
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@ -147,6 +147,37 @@ ssize_t iio_enum_write(struct iio_dev *indio_dev,
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.private = (uintptr_t)(_e), \
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}
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/**
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* struct iio_mount_matrix - iio mounting matrix
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* @rotation: 3 dimensional space rotation matrix defining sensor alignment with
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* main hardware
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*/
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struct iio_mount_matrix {
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const char *rotation[9];
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};
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ssize_t iio_show_mount_matrix(struct iio_dev *indio_dev, uintptr_t priv,
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const struct iio_chan_spec *chan, char *buf);
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int of_iio_read_mount_matrix(const struct device *dev, const char *propname,
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struct iio_mount_matrix *matrix);
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typedef const struct iio_mount_matrix *
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(iio_get_mount_matrix_t)(const struct iio_dev *indio_dev,
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const struct iio_chan_spec *chan);
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/**
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* IIO_MOUNT_MATRIX() - Initialize mount matrix extended channel attribute
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* @_shared: Whether the attribute is shared between all channels
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* @_get: Pointer to an iio_get_mount_matrix_t accessor
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*/
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#define IIO_MOUNT_MATRIX(_shared, _get) \
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{ \
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.name = "mount_matrix", \
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.shared = (_shared), \
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.read = iio_show_mount_matrix, \
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.private = (uintptr_t)(_get), \
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}
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/**
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* struct iio_event_spec - specification for a channel event
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* @type: Type of the event
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