193 lines
3.5 KiB
C
193 lines
3.5 KiB
C
#include <stdint.h>
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#include "bd3491.h" // to manipulate the chip further than the normal system ui does
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#include "i2c.h" // for the i2c handle
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#include "main.h" // to enable control of the system
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struct {
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char buffer[1000];
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volatile uint16_t begin, end;
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volatile uint16_t len;
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} serial_buffer = {};
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void serial_buffer_push(char data) {
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if (serial_buffer.len && serial_buffer.end == serial_buffer.begin)
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return; // OVF
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serial_buffer.buffer[serial_buffer.end] = data;
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serial_buffer.end = (serial_buffer.end + 1)%(sizeof(serial_buffer.buffer));
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serial_buffer.len++;
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}
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char serial_buffer_peek() {
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if (serial_buffer.len)
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return serial_buffer.buffer[serial_buffer.begin];
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return 0;
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}
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char serial_buffer_pop() {
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if (!serial_buffer.len)
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return 0; // UF
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char result = serial_buffer_peek();
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serial_buffer.begin = (serial_buffer.begin + 1)%(sizeof(serial_buffer.buffer));
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serial_buffer.len--;
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return result;
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}
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int serial_buffer_len() {
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return serial_buffer.len;
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}
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void CDC_Receive_callback(uint8_t * data, uint32_t len) {
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while(len--) {
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serial_buffer_push(*(data++));
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}
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}
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int skip_white() {
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while(serial_buffer_peek() == ' ' || serial_buffer_peek() == '\t')
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serial_buffer_pop();
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return !serial_buffer_len();
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}
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int iswhite(char in) {
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return in == ' ' || in == '\t' || in == '\n';
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}
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int skip_non_white() {
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while(serial_buffer_len() && !iswhite(serial_buffer_peek()))
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serial_buffer_pop();
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return !serial_buffer_len();
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}
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int skip_line() {
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while(serial_buffer_len() && serial_buffer_peek() != '\n') serial_buffer_pop();
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if (serial_buffer_peek() == '\n') serial_buffer_pop();
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return !serial_buffer_len();
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}
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int next_arg_signed(int16_t * arg) {
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*arg = 0;
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if (skip_white())
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return 1;
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int neg = 0;
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while(serial_buffer_len() && (serial_buffer_peek() == '-' || serial_buffer_peek() == '+')) {
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if(serial_buffer_pop() == '-')
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neg = !neg;
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}
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int count = 0;
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while(serial_buffer_len() && serial_buffer_peek() >= '0' && serial_buffer_peek() <= '9') {
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*arg *= 10;
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*arg += serial_buffer_pop() - '0';
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++count;
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}
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if (neg) {
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*arg *= -1;
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}
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return !count;
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}
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int next_arg_unsigned(uint16_t * arg) {
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*arg = 0;
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if (skip_white())
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return 1;
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int count = 0;
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while(serial_buffer_len() && serial_buffer_peek() >= '0' && serial_buffer_peek() <= '9') {
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*arg *= 10;
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*arg += serial_buffer_pop() - '0';
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++count;
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}
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return !count;
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}
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#include <ctype.h>
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int parse_buffer() {
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if (skip_white()) {
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return 1;
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}
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char temp;
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switch((temp = toupper(serial_buffer_pop()))) {
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case 'C':
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// change channel
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{
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uint16_t channel;
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if (next_arg_unsigned(&channel))
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break;
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set_input(channel);
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}
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break;
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case 'G':
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// set gain
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{
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uint16_t gain;
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if (next_arg_unsigned(&gain)) break;
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printf("G%d\n", bd_set_gain(&hi2c1, gain));
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}
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break;
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case 'L':
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case 'R':
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{
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uint16_t att;
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if (next_arg_unsigned(&att)) break;
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printf("%c%d\n", temp, bd_set_attenuation(&hi2c1, temp == 'R', att&0xFF));
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}
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break;
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case 'M':
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{
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uint16_t mute;
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if (next_arg_unsigned(&mute)) break;
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set_mute(mute);
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printf("M%d\n", is_muted());
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}
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break;
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case 'S':
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{
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uint16_t shorted;
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if (next_arg_unsigned(&shorted)) break;
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set_short(shorted);
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printf("S%d\n", is_shorted());
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}
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break;
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case 'B':
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{
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uint16_t boost;
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if (next_arg_unsigned(&boost)) break;
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printf("B%d\n", bd_set_bass_boost(&hi2c1, boost));
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}
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break;
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case 'T':
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{
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uint16_t boost;
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if (next_arg_unsigned(&boost)) break;
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printf("T%d\n", bd_set_treble_boost(&hi2c1, boost));
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}
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break;
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default:
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printf("E\n");
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}
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return skip_line();
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}
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