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#include "defines.h"
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#include "SPI.h"
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static SPI_DATA *spi_data_p;
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void SPI_Init(SPI_DATA *data, uint8_t speed) {
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spi_data_p = data;
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SPI_MOSI_TRIS = 0;
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SPI_CLK_TRIS = 0;
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#ifndef SPI_WRITE_ONLY
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SPI_MISO_TRIS = 1;
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#endif
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// SPI_SLAVE_SELECT_TRIS = 0; // SPI2 slave select
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// SPI_SLAVE_SELECT_LAT = 1; // SPI2 SS high (Idle)
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// SPI_RESET_TRIS = 0; // SPI2 reset
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// SPI_RESET_LAT = 1; // SPI2 reset active low
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SPI_DC_SELECT_TRIS = 0; // SPI2 D/C select
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SPI_DC_SELECT_LAT = 0;
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SSP1STATbits.SMP = 0; // Input is sampled in the middle of data output time
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SSP1STATbits.CKE = 0; // Transmit occurs on transition from Idle to active clock state
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SSP1CON1bits.SSPM = speed;
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SSP1CON1bits.CKP = 1; // Idle state for clock is a high level
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SSP1CON1bits.SSPEN = 1; // Enable MSSP module
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PIE1bits.SSP1IE = 0; // Disable MSSP interrupt
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#ifndef SPI_WRITE_ONLY
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spi_data_p->buffer_in_len = 0;
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spi_data_p->buffer_in_read_ind = 0;
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spi_data_p->buffer_in_write_ind = 0;
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#endif
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spi_data_p->buffer_out_ind = 0;
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spi_data_p->buffer_out_len = 0;
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}
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void SPI_Write(uint8_t *msg, uint16_t length) {
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uint16_t i = 0;
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// SPI_SLAVE_SELECT_LAT = 0;
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while (i != length) {
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SSP1BUF = msg[i];
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i++;
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while (!SSP1STATbits.BF);
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#ifndef SPI_WRITE_ONLY
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spi_data_p->buffer_in[spi_data_p->buffer_in_write_ind] = SSP2BUF;
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if (spi_data_p->buffer_in_write_ind == MAXSPIBUF - 1) {
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spi_data_p->buffer_in_write_ind = 0;
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} else {
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spi_data_p->buffer_in_write_ind++;
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}
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spi_data_p->buffer_in_len++;
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#else
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// Read data in buffer to clear it
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uint8_t tmp = SSP1BUF;
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#endif
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}
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// SPI_SLAVE_SELECT_LAT = 1;
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}
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void SPI2_Write_Repeat(uint8_t c, uint16_t length) {
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uint16_t i = 0;
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// SPI_SLAVE_SELECT_LAT = 0;
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while (i != length) {
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SSP1BUF = c;
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i++;
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while (!SSP1STATbits.BF);
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#ifndef SPI_WRITE_ONLY
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spi_data_p->buffer_in[spi_data_p->buffer_in_write_ind] = SSP2BUF;
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if (spi_data_p->buffer_in_write_ind == MAXSPIBUF - 1) {
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spi_data_p->buffer_in_write_ind = 0;
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} else {
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spi_data_p->buffer_in_write_ind++;
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}
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spi_data_p->buffer_in_len++;
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#else
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// Read data in buffer to clear it
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uint8_t tmp = SSP1BUF;
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#endif
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}
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// SPI_SLAVE_SELECT_LAT = 1;
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}
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#ifndef SPI_WRITE_ONLY
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void SPI_Recv_Interrupt_Handler() {
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uint8_t c;
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if (SSP1STATbits.BF) { // Check if data receive flag is set
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if (spi_data_p->buffer_in_len == MAX_SPI_BUFFER - 1) {
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c = SSP1BUF; // Read SSP2BUF to clear it
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} else {
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// Save received data into buffer
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spi_data_p->buffer_in[spi_data_p->buffer_in_write_ind] = SSP1BUF;
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if (spi_data_p->buffer_in_write_ind == MAX_SPI_BUFFER - 1) {
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spi_data_p->buffer_in_write_ind = 0;
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} else {
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spi_data_p->buffer_in_write_ind++;
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}
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spi_data_p->buffer_in_len++;
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// Put next byte in SSP2BUF for transmit
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if (spi_data_p->buffer_out_ind != spi_data_p->buffer_out_len) {
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SSP1BUF = spi_data_p->buffer_out[spi_data_p->buffer_out_ind];
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spi_data_p->buffer_out_ind++;
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} else {
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// SPI_SLAVE_SELECT_LAT = 1; // Bring SS line high
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spi_data_p->buffer_out_ind = 0;
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spi_data_p->buffer_out_len = 0;
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}
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}
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}
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}
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void SPI_Read(char length) {
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// SPI_SLAVE_SELECT_LAT = 0;
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for (uint8_t i = 0; i < length; i++) {
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SSP1BUF = 0x0;
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while (!SSP1STATbits.BF);
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spi_data_p->buffer_in[spi_data_p->buffer_in_write_ind] = SSP1BUF;
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if (spi_data_p->buffer_in_write_ind == MAX_SPI_BUFFER - 1) {
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spi_data_p->buffer_in_write_ind = 0;
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} else {
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spi_data_p->buffer_in_write_ind++;
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}
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spi_data_p->buffer_in_len++;
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}
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// SPI_SLAVE_SELECT_LAT = 1;
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}
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uint8_t SPI_Buffer_Len() {
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return spi_data_p->buffer_in_len;
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}
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uint8_t SPI_Read_Buffer(uint8_t* buffer) {
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uint8_t i = 0;
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while (spi_data_p->buffer_in_len != 0) {
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buffer[i] = spi_data_p->buffer_in[spi_data_p->buffer_in_read_ind];
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i++;
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if (spi_data_p->buffer_in_read_ind == MAX_SPI_BUFFER - 1) {
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spi_data_p->buffer_in_read_ind = 0;
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} else {
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spi_data_p->buffer_in_read_ind++;
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}
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spi_data_p->buffer_in_len--;
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}
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return i;
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}
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#endif
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