2014-03-01 18:03:19 +01:00
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/*
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* ----------------------------------------------------------------------------
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* "THE BEER-WARE LICENSE" (Revision 42):
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* <struppi@struppi.name> wrote this file. As long as you retain this notice you
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* can do whatever you want with this stuff. If we meet some day, and you think
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* this stuff is worth it, you can buy me a beer in return.
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* (c) 2013,2014 Stefan Rupp
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* ----------------------------------------------------------------------------
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*/
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#include "spi.h"
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#include "ringbuffer.h"
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#include "crc.h"
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#include <stdlib.h>
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#include <string.h>
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#include <avr/interrupt.h>
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#define COMM_OBJECT_SIZE (16)
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#define NUM_COMM_OBJECTS (4)
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#define RB_SIZE (NUM_COMM_OBJECTS)
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#define SPI_COMM_PADDING (0x00)
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#define LEN_SIZE (1) // LEN is 1 byte long
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static uint8_t rbuff_used_rx[RB_BUFSIZE(RB_SIZE)];
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static uint8_t rbuff_used_tx[RB_BUFSIZE(RB_SIZE)];
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static uint8_t rbuff_unused[RB_BUFSIZE(RB_SIZE)];
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static uint8_t comm_objects[NUM_COMM_OBJECTS][COMM_OBJECT_SIZE];
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struct spi_comm_t {
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uint8_t txout_buf[COMM_OBJECT_SIZE];
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uint8_t rxin_buf[COMM_OBJECT_SIZE];
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uint16_t crc;
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uint8_t count;
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};
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static struct spi_comm_t spi_comm;
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static inline void set_ack_miso(uint8_t ack)
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{
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2014-03-01 18:11:34 +01:00
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if (ack) PORTC |= (1<<PC3);
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else PORTC &= ~(1<<PC3);
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2014-03-01 18:03:19 +01:00
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}
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static void set_crc(void* const buf)
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{
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uint8_t* const data = buf;
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uint8_t len = data[0];
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uint16_t crc = CRC_INIT_VALUE;
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uint16_t *crc_ptr;
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for (int i=1; i<=len; ++i) {
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crc = crc_step(crc, data[i]);
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}
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crc_ptr = buf + len + 1;
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*crc_ptr = crc;
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len += 2;
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data[0] = len;
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}
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static inline uint8_t get_ack_mosi(void)
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{
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#if 0
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return (PINB & (1<<PB5))?1:0;
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#else
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return 1;
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#endif
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}
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ISR(SPI_STC_vect)
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{
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SPDR = spi_comm.txout_buf[spi_comm.count+1];
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spi_comm.rxin_buf[spi_comm.count] = SPDR;
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spi_comm.crc = crc_step(spi_comm.crc, spi_comm.rxin_buf[spi_comm.count]);
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spi_comm.count++;
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}
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// This is the interrupt handler for the CS line.
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// in case of a falling edge, we prepare for the
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// SPI transfer that is about to come in in 100uS.
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// in case of an rising edge, we do some cleanup.
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ISR(PCINT1_vect)
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{
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uint8_t tx_obj, rx_obj;
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2014-03-01 18:11:34 +01:00
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if (PINB & (1<<PB4)) {
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2014-03-01 18:03:19 +01:00
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// rising edge
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if ( spi_comm.rxin_buf[0] != SPI_COMM_PADDING ) {
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uint8_t len = spi_comm.rxin_buf[0];
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uint8_t data_valid = (spi_comm.crc == 0x0000);
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data_valid = 1; // FIXME: CRC not implemented on python side, so ignore for now
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set_ack_miso(data_valid);
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if (data_valid && ringbuf_get_nb(rbuff_unused, &rx_obj)) {
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spi_comm.rxin_buf[0] = len-2; // strip CRC from data
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if (len > COMM_OBJECT_SIZE) {len = COMM_OBJECT_SIZE;}
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memcpy(comm_objects[rx_obj], spi_comm.rxin_buf, len);
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ringbuf_put_nb(rbuff_used_rx, rx_obj);
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}
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}
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}
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else {
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// falling edge
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spi_comm.crc = CRC_INIT_VALUE;
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spi_comm.count = 0;
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uint8_t ack_mosi = get_ack_mosi();
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if (ack_mosi) {
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if ( ringbuf_get_nb(rbuff_used_tx, &tx_obj) ) {
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uint8_t len = comm_objects[tx_obj][0];
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if (len > COMM_OBJECT_SIZE) {len = COMM_OBJECT_SIZE;}
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memcpy(spi_comm.txout_buf, comm_objects[tx_obj], len);
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SPDR = comm_objects[tx_obj][0];
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ringbuf_put_nb(rbuff_unused, tx_obj); // there ought always be enough space in this ringbuffer
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}
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else {
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memset(spi_comm.txout_buf, SPI_COMM_PADDING, COMM_OBJECT_SIZE-1);
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SPDR = SPI_COMM_PADDING;
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}
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}
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else { // no ACK from master, so retransmit same frame once more. no need to copy anything, as txbuf wasn't touched.
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SPDR = spi_comm.txout_buf[0];
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}
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}
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}
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int8_t spi_slave_init()
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{
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ringbuf_init(rbuff_used_rx, RB_SIZE, NULL);
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ringbuf_init(rbuff_used_tx, RB_SIZE, NULL);
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ringbuf_init(rbuff_unused, RB_SIZE, NULL);
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for (uint8_t i=0; i<NUM_COMM_OBJECTS; i++) {
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ringbuf_put_nb(rbuff_unused, i);
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}
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2014-03-01 18:11:34 +01:00
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PCMSK1 |= (1<<PCINT12);
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2014-03-01 18:03:19 +01:00
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PCICR |= (1<<PCIE1);
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/* Set MISO output, all others input */
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2014-03-01 18:11:34 +01:00
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DDRB |= (1<<PB6);
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DDRB &= ~((1<<PB7)|(1<<PB5)|(1<<PB4));
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2014-03-01 18:03:19 +01:00
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/* Enable SPI */
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SPCR = (1<<SPE) | (1<<SPIE); // enable SPI
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2014-03-01 18:11:34 +01:00
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DDRC &= ~(1<<PC4); // ACK_MOSI
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PORTC &= ~(1<<PC4);
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2014-03-01 18:03:19 +01:00
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2014-03-01 18:11:34 +01:00
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DDRC |= (1<<PC3); // ACK_MISO
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2014-03-01 18:03:19 +01:00
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set_ack_miso(0);
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return 1;
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}
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int8_t spi_prepare_to_send(void *data)
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{
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uint8_t tx_object;
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uint8_t len = ((uint8_t *)data)[0];
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if ((len + LEN_SIZE + CRC_LEN) > COMM_OBJECT_SIZE) {
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return -1;
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}
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if ( ringbuf_get_nb(rbuff_unused, &tx_object) ) {
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set_crc(data);
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memcpy(comm_objects[tx_object], data, len);
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if ( ringbuf_put_nb(rbuff_used_tx, tx_object) ) {
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return tx_object;
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}
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else {
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return -tx_object;
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}
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}
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else {
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return (-127);
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}
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}
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int8_t spi_receive(void *data)
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{
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uint8_t rx_object;
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if ( ringbuf_get_nb(rbuff_used_rx, &rx_object) ) {
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memcpy(data, comm_objects[rx_object], COMM_OBJECT_SIZE);
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if ( ringbuf_put_nb(rbuff_unused, rx_object) ) {
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return rx_object;
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}
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else {
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return (-rx_object);
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}
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}
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else {
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return -127;
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}
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}
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