Commit 089a4198 authored by Barry Song's avatar Barry Song Committed by Greg Kroah-Hartman

staging: iio: adis16260 digital gyro driver

Signed-off-by: default avatarBarry Song <Barry.Song@analog.com>
Signed-off-by: default avatarJonathan Cameron <jic23@cam.ac.uk>
Signed-off-by: default avatarGreg Kroah-Hartman <gregkh@suse.de>
parent 935e99fb
......@@ -41,6 +41,7 @@ config IIO_TRIGGER
source "drivers/staging/iio/accel/Kconfig"
source "drivers/staging/iio/adc/Kconfig"
source "drivers/staging/iio/gyro/Kconfig"
source "drivers/staging/iio/imu/Kconfig"
source "drivers/staging/iio/light/Kconfig"
......
......@@ -11,6 +11,7 @@ obj-$(CONFIG_IIO_SW_RING) += ring_sw.o
obj-y += accel/
obj-y += adc/
obj-y += gyro/
obj-y += imu/
obj-y += light/
......
#
# IIO Digital Gyroscope Sensor drivers configuration
#
comment "Digital gyroscope sensors"
config ADIS16260
tristate "Analog Devices ADIS16260/5 Digital Gyroscope Sensor SPI driver"
depends on SPI
select IIO_TRIGGER if IIO_RING_BUFFER
select IIO_SW_RING if IIO_RING_BUFFER
help
Say yes here to build support for Analog Devices adis16260/5
programmable digital gyroscope sensor.
# Makefile for digital gyroscope sensor drivers
#
adis16260-y := adis16260_core.o
adis16260-$(CONFIG_IIO_RING_BUFFER) += adis16260_ring.o adis16260_trigger.o
obj-$(CONFIG_ADIS16260) += adis16260.o
#ifndef SPI_ADIS16260_H_
#define SPI_ADIS16260_H_
#define ADIS16260_STARTUP_DELAY 220 /* ms */
#define ADIS16260_READ_REG(a) a
#define ADIS16260_WRITE_REG(a) ((a) | 0x80)
#define ADIS16260_FLASH_CNT 0x00 /* Flash memory write count */
#define ADIS16260_SUPPLY_OUT 0x02 /* Power supply measurement */
#define ADIS16260_GYRO_OUT 0x04 /* X-axis gyroscope output */
#define ADIS16260_AUX_ADC 0x0A /* analog input channel measurement */
#define ADIS16260_TEMP_OUT 0x0C /* internal temperature measurement */
#define ADIS16260_ANGL_OUT 0x0E /* angle displacement */
#define ADIS16260_GYRO_OFF 0x14 /* Calibration, offset/bias adjustment */
#define ADIS16260_GYRO_SCALE 0x16 /* Calibration, scale adjustment */
#define ADIS16260_ALM_MAG1 0x20 /* Alarm 1 magnitude/polarity setting */
#define ADIS16260_ALM_MAG2 0x22 /* Alarm 2 magnitude/polarity setting */
#define ADIS16260_ALM_SMPL1 0x24 /* Alarm 1 dynamic rate of change setting */
#define ADIS16260_ALM_SMPL2 0x26 /* Alarm 2 dynamic rate of change setting */
#define ADIS16260_ALM_CTRL 0x28 /* Alarm control */
#define ADIS16260_AUX_DAC 0x30 /* Auxiliary DAC data */
#define ADIS16260_GPIO_CTRL 0x32 /* Control, digital I/O line */
#define ADIS16260_MSC_CTRL 0x34 /* Control, data ready, self-test settings */
#define ADIS16260_SMPL_PRD 0x36 /* Control, internal sample rate */
#define ADIS16260_SENS_AVG 0x38 /* Control, dynamic range, filtering */
#define ADIS16260_SLP_CNT 0x3A /* Control, sleep mode initiation */
#define ADIS16260_DIAG_STAT 0x3C /* Diagnostic, error flags */
#define ADIS16260_GLOB_CMD 0x3E /* Control, global commands */
#define ADIS16260_LOT_ID1 0x52 /* Lot Identification Code 1 */
#define ADIS16260_LOT_ID2 0x54 /* Lot Identification Code 2 */
#define ADIS16260_PROD_ID 0x56 /* Product identifier;
* convert to decimal = 16,265/16,260 */
#define ADIS16260_SERIAL_NUM 0x58 /* Serial number */
#define ADIS16260_OUTPUTS 5
#define ADIS16260_ERROR_ACTIVE (1<<14)
#define ADIS16260_NEW_DATA (1<<15)
/* MSC_CTRL */
#define ADIS16260_MSC_CTRL_MEM_TEST (1<<11)
/* Internal self-test enable */
#define ADIS16260_MSC_CTRL_INT_SELF_TEST (1<<10)
#define ADIS16260_MSC_CTRL_NEG_SELF_TEST (1<<9)
#define ADIS16260_MSC_CTRL_POS_SELF_TEST (1<<8)
#define ADIS16260_MSC_CTRL_DATA_RDY_EN (1<<2)
#define ADIS16260_MSC_CTRL_DATA_RDY_POL_HIGH (1<<1)
#define ADIS16260_MSC_CTRL_DATA_RDY_DIO2 (1<<0)
/* SMPL_PRD */
/* Time base (tB): 0 = 1.953 ms, 1 = 60.54 ms */
#define ADIS16260_SMPL_PRD_TIME_BASE (1<<7)
#define ADIS16260_SMPL_PRD_DIV_MASK 0x7F
/* SLP_CNT */
#define ADIS16260_SLP_CNT_POWER_OFF 0x80
/* DIAG_STAT */
#define ADIS16260_DIAG_STAT_ALARM2 (1<<9)
#define ADIS16260_DIAG_STAT_ALARM1 (1<<8)
#define ADIS16260_DIAG_STAT_FLASH_CHK (1<<6)
#define ADIS16260_DIAG_STAT_SELF_TEST (1<<5)
#define ADIS16260_DIAG_STAT_OVERFLOW (1<<4)
#define ADIS16260_DIAG_STAT_SPI_FAIL (1<<3)
#define ADIS16260_DIAG_STAT_FLASH_UPT (1<<2)
#define ADIS16260_DIAG_STAT_POWER_HIGH (1<<1)
#define ADIS16260_DIAG_STAT_POWER_LOW (1<<0)
/* GLOB_CMD */
#define ADIS16260_GLOB_CMD_SW_RESET (1<<7)
#define ADIS16260_GLOB_CMD_FLASH_UPD (1<<3)
#define ADIS16260_GLOB_CMD_DAC_LATCH (1<<2)
#define ADIS16260_GLOB_CMD_FAC_CALIB (1<<1)
#define ADIS16260_GLOB_CMD_AUTO_NULL (1<<0)
#define ADIS16260_MAX_TX 24
#define ADIS16260_MAX_RX 24
#define ADIS16260_SPI_SLOW (u32)(300 * 1000)
#define ADIS16260_SPI_BURST (u32)(1000 * 1000)
#define ADIS16260_SPI_FAST (u32)(2000 * 1000)
/**
* struct adis16260_state - device instance specific data
* @us: actual spi_device
* @work_trigger_to_ring: bh for triggered event handling
* @work_cont_thresh: CLEAN
* @inter: used to check if new interrupt has been triggered
* @last_timestamp: passing timestamp from th to bh of interrupt handler
* @indio_dev: industrial I/O device structure
* @trig: data ready trigger registered with iio
* @tx: transmit buffer
* @rx: recieve buffer
* @buf_lock: mutex to protect tx and rx
**/
struct adis16260_state {
struct spi_device *us;
struct work_struct work_trigger_to_ring;
struct iio_work_cont work_cont_thresh;
s64 last_timestamp;
struct iio_dev *indio_dev;
struct iio_trigger *trig;
u8 *tx;
u8 *rx;
struct mutex buf_lock;
};
int adis16260_set_irq(struct device *dev, bool enable);
#ifdef CONFIG_IIO_RING_BUFFER
/* At the moment triggers are only used for ring buffer
* filling. This may change!
*/
enum adis16260_scan {
ADIS16260_SCAN_SUPPLY,
ADIS16260_SCAN_GYRO,
ADIS16260_SCAN_AUX_ADC,
ADIS16260_SCAN_TEMP,
ADIS16260_SCAN_ANGL,
};
void adis16260_remove_trigger(struct iio_dev *indio_dev);
int adis16260_probe_trigger(struct iio_dev *indio_dev);
ssize_t adis16260_read_data_from_ring(struct device *dev,
struct device_attribute *attr,
char *buf);
int adis16260_configure_ring(struct iio_dev *indio_dev);
void adis16260_unconfigure_ring(struct iio_dev *indio_dev);
int adis16260_initialize_ring(struct iio_ring_buffer *ring);
void adis16260_uninitialize_ring(struct iio_ring_buffer *ring);
#else /* CONFIG_IIO_RING_BUFFER */
static inline void adis16260_remove_trigger(struct iio_dev *indio_dev)
{
}
static inline int adis16260_probe_trigger(struct iio_dev *indio_dev)
{
return 0;
}
static inline ssize_t
adis16260_read_data_from_ring(struct device *dev,
struct device_attribute *attr,
char *buf)
{
return 0;
}
static int adis16260_configure_ring(struct iio_dev *indio_dev)
{
return 0;
}
static inline void adis16260_unconfigure_ring(struct iio_dev *indio_dev)
{
}
static inline int adis16260_initialize_ring(struct iio_ring_buffer *ring)
{
return 0;
}
static inline void adis16260_uninitialize_ring(struct iio_ring_buffer *ring)
{
}
#endif /* CONFIG_IIO_RING_BUFFER */
#endif /* SPI_ADIS16260_H_ */
This diff is collapsed.
#include <linux/interrupt.h>
#include <linux/irq.h>
#include <linux/gpio.h>
#include <linux/workqueue.h>
#include <linux/mutex.h>
#include <linux/device.h>
#include <linux/kernel.h>
#include <linux/spi/spi.h>
#include <linux/sysfs.h>
#include <linux/list.h>
#include "../iio.h"
#include "../sysfs.h"
#include "../ring_sw.h"
#include "../accel/accel.h"
#include "../trigger.h"
#include "adis16260.h"
/**
* combine_8_to_16() utility function to munge to u8s into u16
**/
static inline u16 combine_8_to_16(u8 lower, u8 upper)
{
u16 _lower = lower;
u16 _upper = upper;
return _lower | (_upper << 8);
}
static IIO_SCAN_EL_C(supply, ADIS16260_SCAN_SUPPLY, IIO_UNSIGNED(12),
ADIS16260_SUPPLY_OUT, NULL);
static IIO_SCAN_EL_C(gyro, ADIS16260_SCAN_GYRO, IIO_SIGNED(14),
ADIS16260_GYRO_OUT, NULL);
static IIO_SCAN_EL_C(aux_adc, ADIS16260_SCAN_AUX_ADC, IIO_SIGNED(14),
ADIS16260_AUX_ADC, NULL);
static IIO_SCAN_EL_C(temp, ADIS16260_SCAN_TEMP, IIO_UNSIGNED(12),
ADIS16260_TEMP_OUT, NULL);
static IIO_SCAN_EL_C(angl, ADIS16260_SCAN_ANGL, IIO_UNSIGNED(12),
ADIS16260_ANGL_OUT, NULL);
static IIO_SCAN_EL_TIMESTAMP(5);
static struct attribute *adis16260_scan_el_attrs[] = {
&iio_scan_el_supply.dev_attr.attr,
&iio_scan_el_gyro.dev_attr.attr,
&iio_scan_el_aux_adc.dev_attr.attr,
&iio_scan_el_temp.dev_attr.attr,
&iio_scan_el_angl.dev_attr.attr,
&iio_scan_el_timestamp.dev_attr.attr,
NULL,
};
static struct attribute_group adis16260_scan_el_group = {
.attrs = adis16260_scan_el_attrs,
.name = "scan_elements",
};
/**
* adis16260_poll_func_th() top half interrupt handler called by trigger
* @private_data: iio_dev
**/
static void adis16260_poll_func_th(struct iio_dev *indio_dev)
{
struct adis16260_state *st = iio_dev_get_devdata(indio_dev);
st->last_timestamp = indio_dev->trig->timestamp;
schedule_work(&st->work_trigger_to_ring);
}
/**
* adis16260_read_ring_data() read data registers which will be placed into ring
* @dev: device associated with child of actual device (iio_dev or iio_trig)
* @rx: somewhere to pass back the value read
**/
static int adis16260_read_ring_data(struct device *dev, u8 *rx)
{
struct spi_message msg;
struct iio_dev *indio_dev = dev_get_drvdata(dev);
struct adis16260_state *st = iio_dev_get_devdata(indio_dev);
struct spi_transfer xfers[ADIS16260_OUTPUTS + 1];
int ret;
int i;
mutex_lock(&st->buf_lock);
spi_message_init(&msg);
memset(xfers, 0, sizeof(xfers));
for (i = 0; i <= ADIS16260_OUTPUTS; i++) {
xfers[i].bits_per_word = 8;
xfers[i].cs_change = 1;
xfers[i].len = 2;
xfers[i].delay_usecs = 30;
xfers[i].tx_buf = st->tx + 2 * i;
if (i < 2) /* SUPPLY_OUT:0x02 GYRO_OUT:0x04 */
st->tx[2 * i]
= ADIS16260_READ_REG(ADIS16260_SUPPLY_OUT
+ 2 * i);
else /* 0x06 to 0x09 is reserved */
st->tx[2 * i]
= ADIS16260_READ_REG(ADIS16260_SUPPLY_OUT
+ 2 * i + 4);
st->tx[2 * i + 1] = 0;
if (i >= 1)
xfers[i].rx_buf = rx + 2 * (i - 1);
spi_message_add_tail(&xfers[i], &msg);
}
ret = spi_sync(st->us, &msg);
if (ret)
dev_err(&st->us->dev, "problem when burst reading");
mutex_unlock(&st->buf_lock);
return ret;
}
static void adis16260_trigger_bh_to_ring(struct work_struct *work_s)
{
struct adis16260_state *st
= container_of(work_s, struct adis16260_state,
work_trigger_to_ring);
int i = 0;
s16 *data;
size_t datasize = st->indio_dev
->ring->access.get_bpd(st->indio_dev->ring);
data = kmalloc(datasize , GFP_KERNEL);
if (data == NULL) {
dev_err(&st->us->dev, "memory alloc failed in ring bh");
return;
}
if (st->indio_dev->scan_count)
if (adis16260_read_ring_data(&st->indio_dev->dev, st->rx) >= 0)
for (; i < st->indio_dev->scan_count; i++) {
data[i] = combine_8_to_16(st->rx[i*2+1],
st->rx[i*2]);
}
/* Guaranteed to be aligned with 8 byte boundary */
if (st->indio_dev->scan_timestamp)
*((s64 *)(data + ((i + 3)/4)*4)) = st->last_timestamp;
st->indio_dev->ring->access.store_to(st->indio_dev->ring,
(u8 *)data,
st->last_timestamp);
iio_trigger_notify_done(st->indio_dev->trig);
kfree(data);
return;
}
static int adis16260_data_rdy_ring_preenable(struct iio_dev *indio_dev)
{
size_t size;
dev_dbg(&indio_dev->dev, "%s\n", __func__);
/* Check if there are any scan elements enabled, if not fail*/
if (!(indio_dev->scan_count || indio_dev->scan_timestamp))
return -EINVAL;
if (indio_dev->ring->access.set_bpd) {
if (indio_dev->scan_timestamp)
if (indio_dev->scan_count)
/* Timestamp (aligned s64) and data */
size = (((indio_dev->scan_count * sizeof(s16))
+ sizeof(s64) - 1)
& ~(sizeof(s64) - 1))
+ sizeof(s64);
else /* Timestamp only */
size = sizeof(s64);
else /* Data only */
size = indio_dev->scan_count*sizeof(s16);
indio_dev->ring->access.set_bpd(indio_dev->ring, size);
}
return 0;
}
static int adis16260_data_rdy_ring_postenable(struct iio_dev *indio_dev)
{
return indio_dev->trig
? iio_trigger_attach_poll_func(indio_dev->trig,
indio_dev->pollfunc)
: 0;
}
static int adis16260_data_rdy_ring_predisable(struct iio_dev *indio_dev)
{
return indio_dev->trig
? iio_trigger_dettach_poll_func(indio_dev->trig,
indio_dev->pollfunc)
: 0;
}
void adis16260_unconfigure_ring(struct iio_dev *indio_dev)
{
kfree(indio_dev->pollfunc);
iio_sw_rb_free(indio_dev->ring);
}
int adis16260_configure_ring(struct iio_dev *indio_dev)
{
int ret = 0;
struct adis16260_state *st = indio_dev->dev_data;
struct iio_ring_buffer *ring;
INIT_WORK(&st->work_trigger_to_ring, adis16260_trigger_bh_to_ring);
/* Set default scan mode */
iio_scan_mask_set(indio_dev, iio_scan_el_supply.number);
iio_scan_mask_set(indio_dev, iio_scan_el_gyro.number);
iio_scan_mask_set(indio_dev, iio_scan_el_aux_adc.number);
iio_scan_mask_set(indio_dev, iio_scan_el_temp.number);
iio_scan_mask_set(indio_dev, iio_scan_el_angl.number);
indio_dev->scan_timestamp = true;
indio_dev->scan_el_attrs = &adis16260_scan_el_group;
ring = iio_sw_rb_allocate(indio_dev);
if (!ring) {
ret = -ENOMEM;
return ret;
}
indio_dev->ring = ring;
/* Effectively select the ring buffer implementation */
iio_ring_sw_register_funcs(&ring->access);
ring->preenable = &adis16260_data_rdy_ring_preenable;
ring->postenable = &adis16260_data_rdy_ring_postenable;
ring->predisable = &adis16260_data_rdy_ring_predisable;
ring->owner = THIS_MODULE;
indio_dev->pollfunc = kzalloc(sizeof(*indio_dev->pollfunc), GFP_KERNEL);
if (indio_dev->pollfunc == NULL) {
ret = -ENOMEM;
goto error_iio_sw_rb_free;;
}
indio_dev->pollfunc->poll_func_main = &adis16260_poll_func_th;
indio_dev->pollfunc->private_data = indio_dev;
indio_dev->modes |= INDIO_RING_TRIGGERED;
return 0;
error_iio_sw_rb_free:
iio_sw_rb_free(indio_dev->ring);
return ret;
}
int adis16260_initialize_ring(struct iio_ring_buffer *ring)
{
return iio_ring_buffer_register(ring, 0);
}
void adis16260_uninitialize_ring(struct iio_ring_buffer *ring)
{
iio_ring_buffer_unregister(ring);
}
#include <linux/interrupt.h>
#include <linux/irq.h>
#include <linux/mutex.h>
#include <linux/device.h>
#include <linux/kernel.h>
#include <linux/sysfs.h>
#include <linux/list.h>
#include <linux/spi/spi.h>
#include "../iio.h"
#include "../sysfs.h"
#include "../trigger.h"
#include "adis16260.h"
/**
* adis16260_data_rdy_trig_poll() the event handler for the data rdy trig
**/
static int adis16260_data_rdy_trig_poll(struct iio_dev *dev_info,
int index,
s64 timestamp,
int no_test)
{
struct adis16260_state *st = iio_dev_get_devdata(dev_info);
struct iio_trigger *trig = st->trig;
trig->timestamp = timestamp;
iio_trigger_poll(trig);
return IRQ_HANDLED;
}
IIO_EVENT_SH(data_rdy_trig, &adis16260_data_rdy_trig_poll);
static DEVICE_ATTR(name, S_IRUGO, iio_trigger_read_name, NULL);
static struct attribute *adis16260_trigger_attrs[] = {
&dev_attr_name.attr,
NULL,
};
static const struct attribute_group adis16260_trigger_attr_group = {
.attrs = adis16260_trigger_attrs,
};
/**
* adis16260_data_rdy_trigger_set_state() set datardy interrupt state
**/
static int adis16260_data_rdy_trigger_set_state(struct iio_trigger *trig,
bool state)
{
struct adis16260_state *st = trig->private_data;
struct iio_dev *indio_dev = st->indio_dev;
int ret = 0;
dev_dbg(&indio_dev->dev, "%s (%d)\n", __func__, state);
ret = adis16260_set_irq(&st->indio_dev->dev, state);
if (state == false) {
iio_remove_event_from_list(&iio_event_data_rdy_trig,
&indio_dev->interrupts[0]
->ev_list);
flush_scheduled_work();
} else {
iio_add_event_to_list(&iio_event_data_rdy_trig,
&indio_dev->interrupts[0]->ev_list);
}
return ret;
}
/**
* adis16260_trig_try_reen() try renabling irq for data rdy trigger
* @trig: the datardy trigger
**/
static int adis16260_trig_try_reen(struct iio_trigger *trig)
{
struct adis16260_state *st = trig->private_data;
enable_irq(st->us->irq);
return 0;
}
int adis16260_probe_trigger(struct iio_dev *indio_dev)
{
int ret;
struct adis16260_state *st = indio_dev->dev_data;
st->trig = iio_allocate_trigger();
st->trig->name = kmalloc(IIO_TRIGGER_NAME_LENGTH, GFP_KERNEL);
if (!st->trig->name) {
ret = -ENOMEM;
goto error_free_trig;
}
snprintf((char *)st->trig->name,
IIO_TRIGGER_NAME_LENGTH,
"adis16260-dev%d", indio_dev->id);
st->trig->dev.parent = &st->us->dev;
st->trig->owner = THIS_MODULE;
st->trig->private_data = st;
st->trig->set_trigger_state = &adis16260_data_rdy_trigger_set_state;
st->trig->try_reenable = &adis16260_trig_try_reen;
st->trig->control_attrs = &adis16260_trigger_attr_group;
ret = iio_trigger_register(st->trig);
/* select default trigger */
indio_dev->trig = st->trig;
if (ret)
goto error_free_trig_name;
return 0;
error_free_trig_name:
kfree(st->trig->name);
error_free_trig:
iio_free_trigger(st->trig);
return ret;
}
void adis16260_remove_trigger(struct iio_dev *indio_dev)
{
struct adis16260_state *state = indio_dev->dev_data;
iio_trigger_unregister(state->trig);
kfree(state->trig->name);
iio_free_trigger(state->trig);
}
......@@ -39,3 +39,5 @@
#define IIO_DEV_ATTR_GYRO_Z(_show, _addr) \
IIO_DEVICE_ATTR(gyro_z_raw, S_IRUGO, _show, NULL, _addr)
#define IIO_DEV_ATTR_ANGL(_show, _addr) \
IIO_DEVICE_ATTR(angl_raw, S_IRUGO, _show, NULL, _addr)
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