commit
2eced29675
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@ -1,4 +1,6 @@
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#include "api_sysex.h"
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#include "api_sysex.h"
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#include "sysex_tools.h"
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#include "print.h"
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void send_bytes_sysex(uint8_t message_type, uint8_t data_type, uint8_t * bytes, uint16_t length) {
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void send_bytes_sysex(uint8_t message_type, uint8_t data_type, uint8_t * bytes, uint16_t length) {
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// SEND_STRING("\nTX: ");
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// SEND_STRING("\nTX: ");
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@ -6,24 +8,50 @@ void send_bytes_sysex(uint8_t message_type, uint8_t data_type, uint8_t * bytes,
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// send_byte(bytes[i]);
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// send_byte(bytes[i]);
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// SEND_STRING(" ");
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// SEND_STRING(" ");
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// }
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// }
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uint8_t * precode = malloc(sizeof(uint8_t) * (length + 2));
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if (length > API_SYSEX_MAX_SIZE) {
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precode[0] = message_type;
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xprintf("Sysex msg too big %d %d %d", message_type, data_type, length);
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precode[1] = data_type;
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return;
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memcpy(precode + 2, bytes, length);
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}
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uint8_t * encoded = malloc(sizeof(uint8_t) * (sysex_encoded_length(length + 2)));
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uint16_t encoded_length = sysex_encode(encoded, precode, length + 2);
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uint8_t * array = malloc(sizeof(uint8_t) * (encoded_length + 5));
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// The buffer size required is calculated as the following
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array[0] = 0xF0;
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// API_SYSEX_MAX_SIZE is the maximum length
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array[1] = 0x00;
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// In addition to that we have a two byte message header consisting of the message_type and data_type
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array[2] = 0x00;
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// This has to be encoded with an additional overhead of one byte for every starting 7 bytes
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array[3] = 0x00;
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// We just add one extra byte in case it's not divisible by 7
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array[encoded_length + 4] = 0xF7;
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// Then we have an unencoded header consisting of 4 bytes
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memcpy(array + 4, encoded, encoded_length);
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// Plus a one byte terminator
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midi_send_array(&midi_device, encoded_length + 5, array);
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const unsigned message_header = 2;
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const unsigned unencoded_message = API_SYSEX_MAX_SIZE + message_header;
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const unsigned encoding_overhead = unencoded_message / 7 + 1;
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const unsigned encoded_size = unencoded_message + encoding_overhead;
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const unsigned unencoded_header = 4;
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const unsigned terminator = 1;
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const unsigned buffer_size = encoded_size + unencoded_header + terminator;
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uint8_t buffer[encoded_size + unencoded_header + terminator];
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// The unencoded header
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buffer[0] = 0xF0;
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buffer[1] = 0x00;
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buffer[2] = 0x00;
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buffer[3] = 0x00;
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// We copy the message to the end of the array, this way we can do an inplace encoding, using the same
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// buffer for both input and output
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const unsigned message_size = length + message_header;
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uint8_t* unencoded_start = buffer + buffer_size - message_size;
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uint8_t* ptr = unencoded_start;
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*(ptr++) = message_type;
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*(ptr++) = data_type;
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memcpy(ptr, bytes, length);
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unsigned encoded_length = sysex_encode(buffer + unencoded_header, unencoded_start, message_size);
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unsigned final_size = unencoded_header + encoded_length + terminator;
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buffer[final_size - 1] = 0xF7;
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midi_send_array(&midi_device, final_size, buffer);
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// SEND_STRING("\nTD: ");
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// SEND_STRING("\nTD: ");
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// for (uint8_t i = 0; i < encoded_length + 5; i++) {
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// for (uint8_t i = 0; i < encoded_length + 5; i++) {
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// send_byte(array[i]);
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// send_byte(buffer[i]);
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// SEND_STRING(" ");
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// SEND_STRING(" ");
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// }
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// }
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}
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}
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@ -80,4 +80,6 @@
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# endif
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# endif
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#endif
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#endif
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#define API_SYSEX_MAX_SIZE 32
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#endif
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#endif
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@ -1252,28 +1252,40 @@ void cc_callback(MidiDevice * device,
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// midi_send_cc(device, (chan + 1) % 16, num, val);
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// midi_send_cc(device, (chan + 1) % 16, num, val);
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}
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}
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#ifdef API_SYSEX_ENABLE
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uint8_t midi_buffer[MIDI_SYSEX_BUFFER] = {0};
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uint8_t midi_buffer[MIDI_SYSEX_BUFFER] = {0};
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#endif
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void sysex_callback(MidiDevice * device, uint16_t start, uint8_t length, uint8_t * data) {
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void sysex_callback(MidiDevice * device, uint16_t start, uint8_t length, uint8_t * data) {
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#ifdef API_SYSEX_ENABLE
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#ifdef API_SYSEX_ENABLE
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// SEND_STRING("\n");
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// SEND_STRING("\n");
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// send_word(start);
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// send_word(start);
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// SEND_STRING(": ");
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// SEND_STRING(": ");
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// Don't store the header
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int16_t pos = start - 4;
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for (uint8_t place = 0; place < length; place++) {
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for (uint8_t place = 0; place < length; place++) {
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// send_byte(*data);
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// send_byte(*data);
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midi_buffer[start + place] = *data;
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if (pos >= 0) {
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if (*data == 0xF7) {
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if (*data == 0xF7) {
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// SEND_STRING("\nRD: ");
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// SEND_STRING("\nRD: ");
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// for (uint8_t i = 0; i < start + place + 1; i++){
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// for (uint8_t i = 0; i < start + place + 1; i++){
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// send_byte(midi_buffer[i]);
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// send_byte(midi_buffer[i]);
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// SEND_STRING(" ");
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// SEND_STRING(" ");
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// }
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// }
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uint8_t * decoded = malloc(sizeof(uint8_t) * (sysex_decoded_length(start + place - 4)));
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const unsigned decoded_length = sysex_decoded_length(pos);
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uint16_t decode_length = sysex_decode(decoded, midi_buffer + 4, start + place - 4);
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uint8_t decoded[API_SYSEX_MAX_SIZE];
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process_api(decode_length, decoded);
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sysex_decode(decoded, midi_buffer, pos);
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process_api(decoded_length, decoded);
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return;
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}
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else if (pos >= MIDI_SYSEX_BUFFER) {
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return;
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}
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midi_buffer[pos] = *data;
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}
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}
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// SEND_STRING(" ");
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// SEND_STRING(" ");
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data++;
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data++;
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pos++;
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}
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}
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#endif
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#endif
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}
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}
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@ -70,7 +70,6 @@ typedef struct {
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#ifdef MIDI_ENABLE
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#ifdef MIDI_ENABLE
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void MIDI_Task(void);
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void MIDI_Task(void);
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MidiDevice midi_device;
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MidiDevice midi_device;
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#define MIDI_SYSEX_BUFFER 32
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#endif
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#endif
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#ifdef API_ENABLE
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#ifdef API_ENABLE
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@ -79,6 +78,9 @@ typedef struct {
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#ifdef API_SYSEX_ENABLE
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#ifdef API_SYSEX_ENABLE
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#include "api_sysex.h"
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#include "api_sysex.h"
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// Allocate space for encoding overhead.
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//The header and terminator are not stored to save a few bytes of precious ram
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#define MIDI_SYSEX_BUFFER (API_SYSEX_MAX_SIZE + API_SYSEX_MAX_SIZE / 7 + (API_SYSEX_MAX_SIZE % 7 ? 1 : 0))
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#endif
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#endif
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// #if LUFA_VERSION_INTEGER < 0x120730
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// #if LUFA_VERSION_INTEGER < 0x120730
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