ISSDK  1.7
IoT Sensing Software Development Kit
mag3110_poll_demo.c
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1 /*
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34 
35 /**
36  * @file mag3110_poll_demo.c
37  * @brief The mag3110_poll_demo.c file implements the ISSDK MAG3110 sensor
38  * demo example demonstration with poll mode.
39  */
40 
41 //-----------------------------------------------------------------------
42 // SDK Includes
43 //-----------------------------------------------------------------------
44 #include "board.h"
45 #include "pin_mux.h"
46 #include "clock_config.h"
47 
48 //-----------------------------------------------------------------------
49 // CMSIS Includes
50 //-----------------------------------------------------------------------
51 #include "Driver_I2C.h"
52 #include "Driver_USART.h"
53 
54 //-----------------------------------------------------------------------
55 // ISSDK Includes
56 //-----------------------------------------------------------------------
57 #include "issdk_hal.h"
58 #include "gpio_driver.h"
59 #include "mag3110_drv.h"
60 #include "host_io_uart.h"
61 #include "systick_utils.h"
62 #include "auto_detection_service.h"
63 
64 //-----------------------------------------------------------------------
65 // Macros
66 //-----------------------------------------------------------------------
67 #define MAG3110_DATA_SIZE 6 /* 2 byte X,Y,Z Axis Data each. */
68 #define MAG3110_STREAM_DATA_SIZE 12 /* 6 byte Data */
69 
70 /*! @brief Unique Name for this application which should match the target GUI pkg name. */
71 #define APPLICATION_NAME "MAG3110 Magnetometer Demo"
72 /*! @brief Version to distinguish between instances the same application based on target Shield and updates. */
73 #define APPLICATION_VERSION "2.5"
74 
75 /*! @brief This structure defines the mag3110 data buffer.*/
76 typedef struct
77 {
78  uint32_t timestamp; /*!< Time stamp value in micro-seconds. */
79  int16_t mag[3]; /*!< Sensor Magnetic Strength output: signed 16-bits. */
80  int16_t temp; /*!< The INTSRC data */
82 
83 //-----------------------------------------------------------------------
84 // Constants
85 //-----------------------------------------------------------------------
86 /*! @brief Register settings for Normal (non buffered) mode. */
88  /* Set Ouput Rate @10HZ (ODR = 2 and OSR = 32). */
91  /* Set Auto Magnetic Sensor Reset. */
95 
96 /*! @brief Address of Status Register. */
98 
99 /*! @brief Address and size of Raw Pressure+Temperature Data in Normal Mode. */
102 /*! @brief Address and size of Temperature Data in Normal Mode. */
105 
106 //-----------------------------------------------------------------------
107 // Global Variables
108 //-----------------------------------------------------------------------
111 volatile bool bStreamingEnabled = false, bMag3110Ready = false;
112 uint8_t gStreamID; /* The auto assigned Stream ID. */
115 
116 //-----------------------------------------------------------------------
117 // Functions
118 //-----------------------------------------------------------------------
119 /* Handler for Device Info and Streaming Control Commands. */
121  uint8_t tag, uint8_t *hostCommand, uint8_t *hostResponse, size_t *hostMsgSize, size_t respBufferSize)
122 {
123  bool success = false;
124 
125  /* If it is Host requesting Device Info, send Board Name and Shield Name. */
126  if (tag == HOST_PRO_INT_DEV_TAG)
127  { /* Byte 1 : Payload - Length of APPLICATION_NAME (b)
128  * Bytes=b : Payload Application Name
129  * Byte b+1 : Payload - Length of BOARD_NAME (s)
130  * Bytes=s : Payload Board Name
131  * Byte b+s+2 : Payload - Length of SHIELD_NAME (v)
132  * Bytes=v : Payload Shield Name */
133 
134  size_t appNameLen = strlen(embAppName);
135  size_t boardNameLen = strlen(boardString);
136  size_t shieldNameLen = strlen(shieldString);
137 
138  if (respBufferSize >= boardNameLen + shieldNameLen + appNameLen + 3)
139  { /* We have sufficient buffer. */
140  *hostMsgSize = 0;
141  }
142  else
143  {
144  return false;
145  }
146 
147  hostResponse[*hostMsgSize] = appNameLen;
148  *hostMsgSize += 1;
149 
150  memcpy(hostResponse + *hostMsgSize, embAppName, appNameLen);
151  *hostMsgSize += appNameLen;
152 
153  hostResponse[*hostMsgSize] = boardNameLen;
154  *hostMsgSize += 1;
155 
156  memcpy(hostResponse + *hostMsgSize, boardString, boardNameLen);
157  *hostMsgSize += boardNameLen;
158 
159  hostResponse[*hostMsgSize] = shieldNameLen;
160  *hostMsgSize += 1;
161 
162  memcpy(hostResponse + *hostMsgSize, shieldString, shieldNameLen);
163  *hostMsgSize += shieldNameLen;
164 
165  return true;
166  }
167 
168  /* If it is Host sending Streaming Commands, take necessary actions. */
169  if ((tag == (HOST_PRO_INT_CMD_TAG | HOST_PRO_CMD_W_CFG_TAG)) &&
171  { /* Byte 1 : Payload - Operation Code (Start/Stop Operation Code)
172  * Byte 2 : Payload - Stream ID (Target Stream for carrying out operation) */
173  switch (hostCommand[0]) /* Execute desired operation (Start/Stop) on the requested Stream. */
174  {
175  case HOST_CMD_START:
176  if (hostCommand[1] == gStreamID && bMag3110Ready && bStreamingEnabled == false)
177  {
179  bStreamingEnabled = true;
180  success = true;
181  }
182  break;
183  case HOST_CMD_STOP:
184  if (hostCommand[1] == gStreamID && bMag3110Ready && bStreamingEnabled == true)
185  {
186  pGpioDriver->clr_pin(&GREEN_LED);
187  bStreamingEnabled = false;
188  success = true;
189  }
190  break;
191  default:
192  break;
193  }
194  *hostMsgSize = 0; /* Zero payload in response. */
195  }
196 
197  return success;
198 }
199 
200 /*!
201  * @brief Main function
202  */
203 int main(void)
204 {
205  int32_t status;
207 
208  mag3110_i2c_sensorhandle_t mag3110Driver;
210 
211  ARM_DRIVER_I2C *pI2cDriver = &I2C_S_DRIVER;
212  ARM_DRIVER_USART *pUartDriver = &HOST_S_DRIVER;
213 
214  /*! Initialize the MCU hardware. */
217 
218  /* Create the Short Application Name String for ADS. */
219  sprintf(embAppName, "%s:%s", APPLICATION_NAME, APPLICATION_VERSION);
220 
221  /* Run ADS. */
223 
224  /* Create the Full Application Name String for Device Info Response. */
226 
227  /*! Initialize GREEN LED pin used by FRDM board */
228  pGpioDriver->pin_init(&GREEN_LED, GPIO_DIRECTION_OUT, NULL, NULL, NULL);
229 
230  /*! Initialize the I2C driver. */
231  status = pI2cDriver->Initialize(I2C_S_SIGNAL_EVENT);
232  if (ARM_DRIVER_OK != status)
233  {
234  return -1;
235  }
236 
237  /*! Set the I2C Power mode. */
238  status = pI2cDriver->PowerControl(ARM_POWER_FULL);
239  if (ARM_DRIVER_OK != status)
240  {
241  return -1;
242  }
243 
244  /*! Set the I2C bus speed. */
245  status = pI2cDriver->Control(ARM_I2C_BUS_SPEED, ARM_I2C_BUS_SPEED_FAST);
246  if (ARM_DRIVER_OK != status)
247  {
248  return -1;
249  }
250 
251  /*! Initialize the UART driver. */
252  status = pUartDriver->Initialize(HOST_S_SIGNAL_EVENT);
253  if (ARM_DRIVER_OK != status)
254  {
255  return -1;
256  }
257 
258  /*! Set the UART Power mode. */
259  status = pUartDriver->PowerControl(ARM_POWER_FULL);
260  if (ARM_DRIVER_OK != status)
261  {
262  return -1;
263  }
264 
265  /*! Set UART Baud Rate. */
266  status = pUartDriver->Control(ARM_USART_MODE_ASYNCHRONOUS, BOARD_DEBUG_UART_BAUDRATE);
267  if (ARM_DRIVER_OK != status)
268  {
269  return -1;
270  }
271 
272  /*! Initialize the MAG3110 sensor driver. */
275  if (SENSOR_ERROR_NONE == status)
276  {
277  /*! Set the task to be executed while waiting for I2C transactions to complete. */
279 
280  /*! Configure the MAG3110 sensor driver. */
281  status = MAG3110_I2C_Configure(&mag3110Driver, cMag3110ConfigNormal);
282  if (SENSOR_ERROR_NONE == status)
283  {
284  bMag3110Ready = true;
285  }
286  }
287 
288  /*! Initialize streaming and assign a Stream ID. */
289  gStreamID =
290  Host_IO_Init(pUartDriver, (void *)mag3110Driver.pCommDrv, &mag3110Driver.deviceInfo, NULL, MAG3110_I2C_ADDR);
291  /* Confirm if a valid Stream ID has been allocated for this stream. */
292  if (0 == gStreamID)
293  {
294  bMag3110Ready = false;
295  }
296  else
297  {
298  /*! Populate streaming header. */
300  pGpioDriver->clr_pin(&GREEN_LED); /* Set LED to indicate application is ready. */
301  }
302 
303  for (;;) /* Forever loop */
304  { /* Call UART Non-Blocking Receive. */
306 
307  /* Process packets only if streaming has been enabled by Host. */
308  if (false == bStreamingEnabled)
309  {
310  SMC_SetPowerModeWait(SMC); /* Power save, wait if nothing to do. */
311  continue;
312  }
313  else
314  {
315  /*! Wait for data ready from the MAG3110. */
316  status = MAG3110_I2C_ReadData(&mag3110Driver, cMag3110Status, &dataReady);
317  if (0 == (dataReady & MAG3110_DR_STATUS_ZYXDR_MASK))
318  { /* Loop, if new sample is not available. */
319  continue;
320  }
321  pGpioDriver->toggle_pin(&GREEN_LED);
322  }
323 
324  /*! Read raw sensor data from the MAG3110. */
325  status = MAG3110_I2C_ReadData(&mag3110Driver, cMag3110OutputNormal, data);
326  if (ARM_DRIVER_OK != status)
327  { /* Loop, if sample read failed. */
328  continue;
329  }
330 
331  /* Update timestamp from Systick framework. */
333 
334  /*! Convert the raw sensor data to signed 32-bit and 16-bit containers for display to the debug port. */
335  rawData.mag[0] = ((int16_t)data[0] << 8) | data[1];
336  rawData.mag[1] = ((int16_t)data[2] << 8) | data[3];
337  rawData.mag[2] = ((int16_t)data[4] << 8) | data[5];
338 
339  MAG3110_CalibrateHardIronOffset(&rawData.mag[0], &rawData.mag[1], &rawData.mag[2]);
340  /*! Read TEMP_SRC 0x0F from MAG3110. */
341  status = MAG3110_I2C_ReadData(&mag3110Driver, cMag3110TempOut, &tempdata);
342  rawData.temp = tempdata;
343 
344  /* Copy Raw samples to Streaming Buffer. */
345  memcpy(streamingPacket + STREAMING_HEADER_LEN, &rawData, MAG3110_STREAM_DATA_SIZE);
346  /* Send streaming packet to Host. */
347  Host_IO_Send(streamingPacket, sizeof(streamingPacket), HOST_FORMAT_HDLC);
348  }
349 }
uint8_t gStreamID
uint32_t BOARD_SystickElapsedTime_us(int32_t *pStart)
Function to compute the Elapsed Time.
Definition: systick_utils.c:99
volatile bool bStreamingEnabled
int32_t MAG3110_I2C_Initialize(mag3110_i2c_sensorhandle_t *pSensorHandle, ARM_DRIVER_I2C *pBus, uint8_t index, uint16_t sAddress, uint8_t whoAmi)
The interface function to initialize the sensor.
Definition: mag3110_drv.c:48
#define __END_WRITE_DATA__
Definition: sensor_drv.h:71
char boardString[ADS_MAX_STRING_LENGTH]
#define HOST_PRO_CMD_W_CFG_TAG
Definition: host_io_uart.h:89
#define MAG3110_CTRL_REG1_DR_ODR_2
Definition: mag3110.h:423
#define HOST_S_SIGNAL_EVENT
Definition: frdm_k64f.h:120
#define MAG3110_CTRL_REG2_MAG_RST_EN
Definition: mag3110.h:471
void Host_IO_Receive(host_cmd_proc_fn_t process_host_command, uint8_t encoding)
Definition: host_io_uart.c:233
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
const registerwritelist_t cMag3110ConfigNormal[]
Register settings for Normal (non buffered) mode.
int32_t MAG3110_I2C_Configure(mag3110_i2c_sensorhandle_t *pSensorHandle, const registerwritelist_t *pRegWriteList)
The interface function to configure he sensor.
Definition: mag3110_drv.c:87
The mag3110_drv.h file describes the MAG3110 driver interface and structures.
#define MAG3110_STREAM_DATA_SIZE
This defines the sensor specific information.
Definition: mag3110_drv.h:55
uint8_t data[FXLS8962_DATA_SIZE]
int main(void)
Main function.
char shieldString[ADS_MAX_STRING_LENGTH]
int32_t status
void(* toggle_pin)(pinID_t aPinId)
Definition: Driver_GPIO.h:74
This structure defines the mag3110 data buffer.
Definition: mag3110_demo.c:76
#define SHIELD_NAME
ARM_DRIVER_I2C * pCommDrv
Definition: mag3110_drv.h:58
char embAppName[ADS_MAX_STRING_LENGTH]
#define ADS_MAX_STRING_LENGTH
#define MAG3110_CTRL_REG1_OS_OSR_32
Definition: mag3110.h:418
#define HOST_PRO_INT_DEV_TAG
Definition: host_io_uart.h:85
uint8_t streamingPacket[STREAMING_HEADER_LEN+FXLS8962_STREAM_DATA_SIZE]
void(* registeridlefunction_t)(void *userParam)
This is the register idle function type.
Definition: sensor_drv.h:123
#define MAG3110_CTRL_REG1_OS_MASK
Definition: mag3110.h:401
#define HOST_PRO_INT_CMD_TAG
Bit aligned values for Host Protocol Interface IDs (Bits 5-6).
Definition: host_io_uart.h:83
#define MAG3110_CTRL_REG2_RAW_RAW
Definition: mag3110.h:474
#define __END_READ_DATA__
Definition: sensor_drv.h:77
#define APPLICATION_VERSION
Version to distinguish between instances the same application based on target Shield and updates...
void MAG3110_I2C_SetIdleTask(mag3110_i2c_sensorhandle_t *pSensorHandle, registeridlefunction_t idleTask, void *userParam)
: The interface function to set the I2C Idle Task.
Definition: mag3110_drv.c:79
gpioHandleKSDK_t GREEN_LED
Definition: frdm_k64f.c:214
int32_t gSystick
#define MAG3110_DR_STATUS_ZYXDR_MASK
Definition: mag3110.h:82
#define MAG3110_DATA_SIZE
void MAG3110_CalibrateHardIronOffset(int16_t *xValue, int16_t *yValue, int16_t *zValue)
Calibrates the magnetometer reading by determining the current hard iron offset.
Definition: mag3110_drv.c:190
#define MAG3110_CTRL_REG1_DR_MASK
Definition: mag3110.h:404
#define MAG3110_CTRL_REG2_MAG_RST_MASK
Definition: mag3110.h:458
const registerreadlist_t cMag3110Status[]
Address of Status Register.
#define MAG3110_CTRL_REG2_RAW_MASK
Definition: mag3110.h:461
void Host_IO_Add_ISO_Header(uint8_t streamID, uint8_t *pStreamingPacket, size_t sizePayload)
Definition: host_io_uart.c:112
void Host_IO_Send(uint8_t *pMsg, size_t size, uint8_t encoding)
Definition: host_io_uart.c:162
#define APPLICATION_NAME
Unique Name for this application which should match the target GUI pkg name.
void(* clr_pin)(pinID_t aPinId)
Definition: Driver_GPIO.h:73
void BOARD_SystickEnable(void)
Function to enable systicks framework.
Definition: systick_utils.c:70
#define MAG3110_CTRL_REG2_AUTO_MSRT_EN_EN
Definition: mag3110.h:477
#define I2C_S_DEVICE_INDEX
Definition: issdk_hal.h:61
GENERIC_DRIVER_GPIO * pGpioDriver
#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.
#define BOARD_DEBUG_UART_BAUDRATE
Definition: board.h:57
bool process_host_command(uint8_t tag, uint8_t *hostCommand, uint8_t *hostResponse, size_t *hostMsgSize, size_t respBufferSize)
registerDeviceInfo_t deviceInfo
Definition: mag3110_drv.h:57
Access structure of the GPIO Driver.
Definition: Driver_GPIO.h:64
void BOARD_SystickStart(int32_t *pStart)
Function to Record the Start systick.
Definition: systick_utils.c:79
ARM Systick Utilities.
void BOARD_RunADS(const char *appName, char *boardString, char *shieldString, size_t bufferLength)
The function to register Application Name and initialte ADS.
volatile bool bMag3110Ready
fxls8962_acceldataUser_t rawData
const registerreadlist_t cMag3110TempOut[]
Address and size of Temperature Data in Normal Mode.
uint8_t Host_IO_Init(ARM_DRIVER_USART *pDrv, void *pBus, void *pDevInfo, void *spiSlaveParams, uint16_t slaveAddress)
Definition: host_io_uart.c:126
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
#define MAG3110_WHOAMI_VALUE
Definition: mag3110.h:37
The host_io_uart.h file contains the Host Protocol interface definitions and configuration.
#define STREAMING_HEADER_LEN
Definition: host_io_uart.h:51
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
int32_t MAG3110_I2C_ReadData(mag3110_i2c_sensorhandle_t *pSensorHandle, const registerreadlist_t *pReadList, uint8_t *pBuffer)
The interface function to read the sensor data.
Definition: mag3110_drv.c:130
#define MAG3110_CTRL_REG2_AUTO_MSRT_EN_MASK
Definition: mag3110.h:464
#define MAG3110_I2C_ADDR
#define I2C_S_SIGNAL_EVENT
Definition: issdk_hal.h:60
#define HOST_S_DRIVER
Definition: frdm_k64f.h:119
const registerreadlist_t cMag3110OutputNormal[]
Address and size of Raw Pressure+Temperature Data in Normal Mode.