//***************************************************************************** // // lsm303d.h - Driver for the ST LSM303D accelerometer/magnetometer. // // Copyright (c) 2013-2014 Texas Instruments Incorporated. All rights reserved. // Software License Agreement // // Texas Instruments (TI) is supplying this software for use solely and // exclusively on TI's microcontroller products. The software is owned by // TI and/or its suppliers, and is protected under applicable copyright // laws. You may not combine this software with "viral" open-source // software in order to form a larger program. // // THIS SOFTWARE IS PROVIDED "AS IS" AND WITH ALL FAULTS. // NO WARRANTIES, WHETHER EXPRESS, IMPLIED OR STATUTORY, INCLUDING, BUT // NOT LIMITED TO, IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR // A PARTICULAR PURPOSE APPLY TO THIS SOFTWARE. TI SHALL NOT, UNDER ANY // CIRCUMSTANCES, BE LIABLE FOR SPECIAL, INCIDENTAL, OR CONSEQUENTIAL // DAMAGES, FOR ANY REASON WHATSOEVER. // // This is part of revision 2.1.0.12573 of the Tiva Firmware Development Package. // //***************************************************************************** #ifndef __SENSORLIB_LSM303D_H__ #define __SENSORLIB_LSM303D_H__ //***************************************************************************** // // If building with a C++ compiler, make all of the definitions in this header // have a C binding. // //***************************************************************************** #ifdef __cplusplus extern "C" { #endif //***************************************************************************** // // The structure that defines the internal state of the LSM303DLHC driver. // //***************************************************************************** typedef struct { // // The pointer to the I2C master interface instance used to communicate // with the LSM303DLHC. // tI2CMInstance *psI2CInst; // // The I2C address of the LSM303DLHC. // uint8_t ui8Addr; // // The state of the state machine used while accessing the LSM303DLHC. // uint8_t ui8State; // // The current accelerometer afs_sel setting. // uint8_t ui8AccelFSSel; // // The new accelerometer afs_sel setting, which is used when a register // write succeeds. // uint8_t ui8NewAccelFSSel; // // The current accelerometer afs_sel setting. // uint8_t ui8MagFSSel; // // The new accelerometer afs_sel setting, which is used when a register // write succeeds. // uint8_t ui8NewMagFSSel; // // The data buffers used for sending/receiving data to/from the LSM303DLHC. // uint8_t pui8DataMag[8]; // // The data buffers used for sending/receiving data to/from the LSM303DLHC. // uint8_t pui8DataAccel[8]; // // The function that is called when the current request has completed // processing. // tSensorCallback *pfnCallback; // // The callback data provided to the callback function. // void *pvCallbackData; // // A union of structures that are used for read, write and // read-modify-write operations. Since only one operation can be active at // a time, it is safe to re-use the memory in this manner. // union { // // A buffer used to store the write portion of a register read. // uint8_t pui8Buffer[2]; // // The write state used to write register values. // tI2CMWrite8 sWriteState; // // The read-modify-write state used to modify register values. // tI2CMReadModifyWrite8 sReadModifyWriteState; } uCommand; } tLSM303D; //***************************************************************************** // // Function prototypes. // //***************************************************************************** extern uint_fast8_t LSM303DInit(tLSM303D *psInst, tI2CMInstance *psI2CInst, uint_fast8_t ui8I2CAddr, tSensorCallback *pfnCallback, void *pvCallbackData); extern uint_fast8_t LSM303DRead(tLSM303D *psInst, uint_fast8_t ui8Reg, uint8_t *pui8Data, uint_fast16_t ui16Count, tSensorCallback *pfnCallback, void *pvCallbackData); extern uint_fast8_t LSM303DWrite(tLSM303D *psInst, uint_fast8_t ui8Reg, const uint8_t *pui8Data, uint_fast16_t ui16Count, tSensorCallback *pfnCallback, void *pvCallbackData); extern uint_fast8_t LSM303DReadModifyWrite(tLSM303D *psInst, uint_fast8_t ui8Reg, uint_fast8_t ui8Mask, uint_fast8_t ui8Value, tSensorCallback *pfnCallbak, void *pvCallbackData); extern uint_fast8_t LSM303DDataRead(tLSM303D *psInst, tSensorCallback *pfnCallback, void *pvCallbackData); extern void LSM303DDataAccelGetRaw(tLSM303D *psInst, uint_fast16_t *pui16AccelX, uint_fast16_t *pui16AccelY, uint_fast16_t *pui16AccelZ); extern void LSM303DDataAccelGetFloat(tLSM303D *psInst, float *pfAccelX, float *pfAccelY, float *pfAccelZ); extern void LSM303DDataMagnetoGetRaw(tLSM303D *psInst, uint_fast16_t *pui16MagX, uint_fast16_t *pui16MagY, uint_fast16_t *pui16MagZ); extern void LSM303DDataMagnetoGetFloat(tLSM303D *psInst, float *pfMagX, float *pfMagY, float *pfMagZ); //***************************************************************************** // // Mark the end of the C bindings section for C++ compilers. // //***************************************************************************** #ifdef __cplusplus } #endif #endif // __SENSORLIB_LSM303D_H__