ISSDK  1.7
IoT Sensing Software Development Kit
fxas21002_interrupt.c
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34 
35 /**
36  * @file fxas21002_interrupt.c
37  * @brief The fxas21002_interrupt.c file implements the ISSDK FXAS21002 sensor
38  * driver example demonstration with interrupt mode.
39  */
40 
41 //-----------------------------------------------------------------------
42 // SDK Includes
43 //-----------------------------------------------------------------------
44 #include "board.h"
45 #include "pin_mux.h"
46 #include "clock_config.h"
47 #include "fsl_debug_console.h"
48 
49 //-----------------------------------------------------------------------
50 // CMSIS Includes
51 //-----------------------------------------------------------------------
52 #include "Driver_I2C.h"
53 
54 //-----------------------------------------------------------------------
55 // ISSDK Includes
56 //-----------------------------------------------------------------------
57 #include "issdk_hal.h"
58 #include "gpio_driver.h"
59 #include "fxas21002_drv.h"
60 
61 //-----------------------------------------------------------------------
62 // Constants
63 //-----------------------------------------------------------------------
64 /*! Prepare the register write list to configure FXAS21002 in non-FIFO mode. */
66  /*! Configure CTRL_REG1 register to put FXAS21002 to 12.5Hz sampling rate. */
68  /*! Configure CTRL_REG2 register to set interrupt configuration settings. */
73 
74 /*! Prepare the register read list to read FXAS21002 DataReady status. */
76 
77 /*! Prepare the register read list to read the raw gyro data from the FXAS21002. */
80 //-----------------------------------------------------------------------
81 // Global Variables
82 //-----------------------------------------------------------------------
83 volatile bool fxas21002Interrupt = false;
84 
85 //-----------------------------------------------------------------------
86 // Functions
87 //-----------------------------------------------------------------------
88 /*! -----------------------------------------------------------------------
89  * @brief This is the Sensor Data Ready ISR implementation.
90  * @details This function sets the flag which indicates if a new sample(s) is available for reading.
91  * @param[in] pUserData This is a void pointer to the instance of the user specific data structure for the ISR.
92  * @return void There is no return value.
93  * @constraints None
94  * @reeentrant Yes
95  * -----------------------------------------------------------------------*/
96 void fxas21002_isr(void *pUserData)
97 { /*! @brief Set flag to indicate Sensor has signalled data ready. */
98  fxas21002Interrupt = true;
99 }
100 
101 /*! -----------------------------------------------------------------------
102  * @brief This is the The main function implementation.
103  * @details This function invokes board initializes routines, then then brings up the sensor and
104  * finally enters an endless loop to continuously read available samples.
105  * @param[in] void This is no input parameter.
106  * @return void There is no return value.
107  * @constraints None
108  * @reeentrant No
109  * -----------------------------------------------------------------------*/
110 int main(void)
111 {
112  int32_t status;
115 
116  ARM_DRIVER_I2C *I2Cdrv = &I2C_S_DRIVER; // Now using the shield.h value!!!
117  fxas21002_i2c_sensorhandle_t FXAS21002drv;
118  GENERIC_DRIVER_GPIO *gpioDriver = &Driver_GPIO_KSDK;
119 
120  /*! Initialize the MCU hardware. */
121  BOARD_InitPins();
124 
125  PRINTF("\r\n ISSDK FXAS21002 sensor driver example demonstration with interrupt mode.\r\n");
126 
127  /*! Initialize INT1_FXAS21002 pin used by FRDM board */
128  gpioDriver->pin_init(&FXAS21002_INT1, GPIO_DIRECTION_IN, NULL, &fxas21002_isr, NULL);
129 
130  /*! Initialize RGB LED pin used by FRDM board */
131  gpioDriver->pin_init(&GREEN_LED, GPIO_DIRECTION_OUT, NULL, NULL, NULL);
132 
133  /*! Initialize the I2C driver. */
134  status = I2Cdrv->Initialize(I2C_S_SIGNAL_EVENT);
135  if (ARM_DRIVER_OK != status)
136  {
137  PRINTF("\r\n I2C Initialization Failed\r\n");
138  return -1;
139  }
140 
141  /*! Set the I2C Power mode. */
142  status = I2Cdrv->PowerControl(ARM_POWER_FULL);
143  if (ARM_DRIVER_OK != status)
144  {
145  PRINTF("\r\n I2C Power Mode setting Failed\r\n");
146  return -1;
147  }
148 
149  /*! Set the I2C bus speed. */
150  status = I2Cdrv->Control(ARM_I2C_BUS_SPEED, ARM_I2C_BUS_SPEED_FAST);
151  if (ARM_DRIVER_OK != status)
152  {
153  PRINTF("\r\n I2C Control Mode setting Failed\r\n");
154  return -1;
155  }
156 
157  /*! Initialize the FXAS21002 sensor driver. */
160  if (SENSOR_ERROR_NONE != status)
161  {
162  PRINTF("\r\n Sensor Initialization Failed\r\n");
163  return -1;
164  }
165  PRINTF("\r\n Successfully Initiliazed Sensor\r\n");
166 
167  /*! Set the task to be executed while waiting for I2C transactions to complete. */
169 
170  /*! Configure the FXAS21002 sensor driver. */
171  status = FXAS21002_I2C_Configure(&FXAS21002drv, fxas21002_Config_Isr);
172  if (SENSOR_ERROR_NONE != status)
173  {
174  PRINTF("\r\n FXAS21002 Sensor Configuration Failed, Err = %d\r\n", status);
175  return -1;
176  }
177  PRINTF("\r\n Successfully Applied FXAS21002 Sensor Configuration\r\n");
178 
179  for (;;) /* Forever loop */
180  { /* In ISR Mode we do not need to check Data Ready Register.
181  * The receipt of interrupt will indicate data is ready. */
182  if (false == fxas21002Interrupt)
183  { /* Loop, if new sample is not available. */
185  continue;
186  }
187  else
188  { /*! Clear the data ready flag, it will be set again by the ISR. */
189  fxas21002Interrupt = false;
190  gpioDriver->toggle_pin(&GREEN_LED);
191  }
192 
193  /*! Read the raw sensor data from the FXAS21002. */
194  status = FXAS21002_I2C_ReadData(&FXAS21002drv, fxas21002_Output_Values, data);
195  if (ARM_DRIVER_OK != status)
196  {
197  PRINTF("\r\n Read Failed. \r\n");
198  return -1;
199  }
200 
201  /*! Convert the raw sensor data to signed 16-bit container for display to the debug port. */
202  rawData.gyro[0] = ((int16_t)data[0] << 8) | data[1];
203  rawData.gyro[1] = ((int16_t)data[2] << 8) | data[3];
204  rawData.gyro[2] = ((int16_t)data[4] << 8) | data[5];
205 
206  /* NOTE: PRINTF is relatively expensive in terms of CPU time, specially when used with-in execution loop. */
207  PRINTF("\r\n Gyro X = %d Y = %d Z = %d\r\n", rawData.gyro[0], rawData.gyro[1], rawData.gyro[2]);
208  ASK_USER_TO_RESUME(100); /* Ask for user input after processing 100 samples. */
209  }
210 }
#define FXAS21002_CTRL_REG2_INT_EN_DRDY_MASK
Definition: fxas21002.h:783
int main(void)
This is the The main function implementation.
#define FXAS21002_CTRL_REG2_INT_CFG_DRDY_INT1
Definition: fxas21002.h:812
#define FXAS21002_CTRL_REG2_IPOL_MASK
Definition: fxas21002.h:780
#define __END_WRITE_DATA__
Definition: sensor_drv.h:71
void(* pin_init)(pinID_t aPinId, gpio_direction_t dir, void *apPinConfig, gpio_isr_handler_t aIsrHandler, void *apUserData)
Definition: Driver_GPIO.h:67
#define BOARD_BootClockRUN
Definition: clock_config.h:45
#define FXAS21002_CTRL_REG1_DR_MASK
Definition: fxas21002.h:710
uint8_t data[FXLS8962_DATA_SIZE]
int32_t status
#define FXAS21002_CTRL_REG2_INT_EN_DRDY_ENABLE
Definition: fxas21002.h:809
void(* toggle_pin)(pinID_t aPinId)
Definition: Driver_GPIO.h:74
void BOARD_InitDebugConsole(void)
Definition: board.c:41
void(* registeridlefunction_t)(void *userParam)
This is the register idle function type.
Definition: sensor_drv.h:123
The fxas21002_drv.h file describes the fxas21002 driver interface and structures. ...
const registerreadlist_t fxas21002_Output_Values[]
#define __END_READ_DATA__
Definition: sensor_drv.h:77
#define FXAS21002_CTRL_REG2_INT_CFG_DRDY_MASK
Definition: fxas21002.h:786
gpioHandleKSDK_t GREEN_LED
Definition: frdm_k64f.c:214
This structure defines the fxas21002 raw data buffer.
Definition: fxas21002_drv.h:79
This defines the sensor specific information for I2C.
Definition: fxas21002_drv.h:70
#define ASK_USER_TO_RESUME(x)
Definition: frdm_k64f.h:132
volatile bool fxas21002Interrupt
int32_t FXAS21002_I2C_ReadData(fxas21002_i2c_sensorhandle_t *pSensorHandle, const registerreadlist_t *pReadList, uint8_t *pBuffer)
The interface function to read the sensor data.
#define FXAS21002_INT1
#define I2C_S_DEVICE_INDEX
Definition: issdk_hal.h:61
void fxas21002_isr(void *pUserData)
This is the Sensor Data Ready ISR implementation.
#define FXAS21002_WHO_AM_I_WHOAMI_PROD_VALUE
Definition: fxas21002.h:428
#define FXAS21002_I2C_ADDR
int32_t FXAS21002_I2C_Configure(fxas21002_i2c_sensorhandle_t *pSensorHandle, const registerwritelist_t *pRegWriteList)
The interface function to configure he sensor.
#define I2C_S_DRIVER
Definition: issdk_hal.h:59
GENERIC_DRIVER_GPIO Driver_GPIO_KSDK
Definition: gpio_driver.c:203
typedef int32_t(DATA_FORMAT_Append_t))(void *pData
The interface function to append the data on the formated stream.
void FXAS21002_I2C_SetIdleTask(fxas21002_i2c_sensorhandle_t *pSensorHandle, registeridlefunction_t idleTask, void *userParam)
: The interface function to set the I2C Idle Task.
Access structure of the GPIO Driver.
Definition: Driver_GPIO.h:64
fxls8962_acceldataUser_t rawData
This structure defines the Write command List.
Definition: sensor_drv.h:94
This structure defines the Read command List.
Definition: sensor_drv.h:104
#define SMC
Definition: lpc54114.h:144
const registerreadlist_t fxas21002_DRDY[]
#define FXAS21002_GYRO_DATA_SIZE
The size of the FXAS21002 gyro data.
Definition: fxas21002_drv.h:87
status_t SMC_SetPowerModeWait(void *arg)
Configures the system to WAIT power mode. API name used from Kinetis family to maintain compatibility...
Definition: lpc54114.c:181
const registerwritelist_t fxas21002_Config_Isr[]
void BOARD_InitPins(void)
Configures pin routing and optionally pin electrical features.
Definition: pin_mux.c:73
#define FXAS21002_CTRL_REG2_IPOL_ACTIVE_HIGH
Definition: fxas21002.h:808
#define FXAS21002_CTRL_REG1_DR_12_5HZ
Definition: fxas21002.h:736
#define I2C_S_SIGNAL_EVENT
Definition: issdk_hal.h:60
int32_t FXAS21002_I2C_Initialize(fxas21002_i2c_sensorhandle_t *pSensorHandle, ARM_DRIVER_I2C *pBus, uint8_t index, uint16_t sAddress, uint8_t whoAmi)
The interface function to initialize the sensor.