2020-2021 Sunseeker Telemetry and Lighting System
eusci_b_i2c_ex4_masterTxSingle.c
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32 #include "driverlib.h"
33 
34 //*****************************************************************************
69 //
70 //*****************************************************************************
71 //*****************************************************************************
72 //
73 //Set the address for slave module. This is a 7-bit address sent in the
74 //following format:
75 //[A6:A5:A4:A3:A2:A1:A0:RS]
76 //
77 //A zero in the "RS" position of the first byte means that the master
78 //transmits (sends) data to the selected slave, and a one in this position
79 //means that the master receives data from the slave.
80 //
81 //*****************************************************************************
82 #define SLAVE_ADDRESS 0x48
83 
84 uint8_t transmitData;
85 
86 void main (void)
87 {
88  WDT_A_hold(WDT_A_BASE);
89 
90  //Set DCO frequency to 8MHz
91  CS_setDCOFreq(CS_DCORSEL_0,CS_DCOFSEL_3);
92  //Set ACLK = DCO with frequency divider of 8
93  CS_initClockSignal(CS_ACLK,CS_DCOCLK_SELECT,CS_CLOCK_DIVIDER_8);
94  //Set SMCLK = DCO with frequency divider of 8
95  CS_initClockSignal(CS_SMCLK,CS_DCOCLK_SELECT,CS_CLOCK_DIVIDER_8);
96  //Set MCLK = DCO with frequency divider of 8
97  CS_initClockSignal(CS_MCLK,CS_DCOCLK_SELECT,CS_CLOCK_DIVIDER_8);
98 
99  // Configure Pins for I2C
100  //Set P1.6 and P1.7 as Secondary Module Function Input.
101  /*
102 
103  * Select Port 1
104  * Set Pin 6, 7 to input Secondary Module Function, (UCB0SIMO/UCB0SDA, UCB0SOMI/UCB0SCL).
105  */
106  GPIO_setAsPeripheralModuleFunctionInputPin(
107  GPIO_PORT_P1,
108  GPIO_PIN6 + GPIO_PIN7,
109  GPIO_SECONDARY_MODULE_FUNCTION
110  );
111 
112  //Initialize transmit data packet
113  transmitData = 0x01;
114 
115  //Initialize Master
116  EUSCI_B_I2C_initMasterParam param = {0};
117  param.selectClockSource = EUSCI_B_I2C_CLOCKSOURCE_SMCLK;
118  param.i2cClk = CS_getSMCLK();
119  param.dataRate = EUSCI_B_I2C_SET_DATA_RATE_400KBPS;
120  param.byteCounterThreshold = 1;
121  param.autoSTOPGeneration = EUSCI_B_I2C_NO_AUTO_STOP;
122  EUSCI_B_I2C_initMaster(EUSCI_B0_BASE, &param);
123 
124  //Specify slave address
125  EUSCI_B_I2C_setSlaveAddress(EUSCI_B0_BASE,
127  );
128 
129  //Set in transmit mode
130  EUSCI_B_I2C_setMode(EUSCI_B0_BASE,
131  EUSCI_B_I2C_TRANSMIT_MODE
132  );
133 
134  //Enable I2C Module to start operations
135  EUSCI_B_I2C_enable(EUSCI_B0_BASE);
136 
137  while (1)
138  {
139  //Send single byte data.
140  EUSCI_B_I2C_masterSendSingleByte(EUSCI_B0_BASE,
142  );
143 
144  //Delay until transmission completes
145  while (EUSCI_B_I2C_isBusBusy(EUSCI_B0_BASE)) ;
146 
147  //Delay between each transaction
148  __delay_cycles(50);
149 
150  //Increment transmit data counter
151  transmitData++;
152  }
153 }
154 
155 
void main(void)
uint8_t transmitData
#define SLAVE_ADDRESS
MPU_initThreeSegmentsParam param
__delay_cycles(500000)