Immediate commands take precedence
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@ -789,8 +789,48 @@ extern "C" {
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extern void digipot_i2c_init();
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extern void digipot_i2c_init();
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#endif
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#endif
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inline void echo_command(char * const cmd) {
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SERIAL_ECHO_START;
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SERIAL_ECHOPAIR(MSG_ENQUEUEING, cmd);
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SERIAL_CHAR('"');
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SERIAL_EOL;
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}
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/**
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/**
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* Inject the next "immediate" command, when possible.
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* Shove a command in RAM to the front of the main command queue.
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* Return true if the command is successfully added.
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*/
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inline bool _shovecommand(const char* cmd, bool say_ok=false) {
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if (*cmd == ';' || commands_in_queue >= BUFSIZE) return false;
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cmd_queue_index_r = (cmd_queue_index_r + BUFSIZE - 1) % BUFSIZE; // Index of the previous slot
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commands_in_queue++;
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strcpy(command_queue[cmd_queue_index_r], cmd);
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send_ok[cmd_queue_index_r] = say_ok;
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return true;
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}
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/**
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* Shove a command to the front of the queue with Serial Echo
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* Return true if the command is successfully added.
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*/
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bool shove_and_echo_command(const char* cmd, bool say_ok=false) {
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if (_shovecommand(cmd, say_ok)) {
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echo_command(cmd);
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return true;
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}
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return false;
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}
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/**
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* Shove a command onto the front of the queue,
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* and don't return until successful.
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*/
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void shove_and_echo_command_now(const char* cmd) {
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while (!shove_and_echo_command(cmd)) idle();
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}
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/**
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* Inject the next "immediate" command, when possible, onto the front of the queue.
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* Return true if any immediate commands remain to inject.
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* Return true if any immediate commands remain to inject.
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*/
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*/
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static bool drain_injected_commands_P() {
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static bool drain_injected_commands_P() {
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@ -801,14 +841,14 @@ static bool drain_injected_commands_P() {
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cmd[sizeof(cmd) - 1] = '\0';
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cmd[sizeof(cmd) - 1] = '\0';
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while ((c = cmd[i]) && c != '\n') i++; // find the end of this gcode command
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while ((c = cmd[i]) && c != '\n') i++; // find the end of this gcode command
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cmd[i] = '\0';
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cmd[i] = '\0';
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if (enqueue_and_echo_command(cmd)) { // success?
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if (shove_and_echo_command(cmd)) { // success?
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if (c) // newline char?
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if (c) // newline char?
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injected_commands_P += i + 1; // advance to the next command
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injected_commands_P += i + 1; // advance to the next command
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else
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else
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injected_commands_P = NULL; // nul char? no more commands
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injected_commands_P = NULL; // nul char? no more commands
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}
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}
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}
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}
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return (injected_commands_P != NULL); // return whether any more remain
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return (injected_commands_P != NULL); // return whether any more remain
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}
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}
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/**
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/**
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@ -821,6 +861,9 @@ void enqueue_and_echo_commands_P(const char* pgcode) {
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drain_injected_commands_P(); // first command executed asap (when possible)
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drain_injected_commands_P(); // first command executed asap (when possible)
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}
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}
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/**
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* Clear the Marlin command queue
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*/
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void clear_command_queue() {
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void clear_command_queue() {
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cmd_queue_index_r = cmd_queue_index_w;
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cmd_queue_index_r = cmd_queue_index_w;
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commands_in_queue = 0;
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commands_in_queue = 0;
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@ -836,8 +879,9 @@ inline void _commit_command(bool say_ok) {
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}
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}
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/**
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/**
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* Copy a command directly into the main command buffer, from RAM.
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* Copy a command from RAM into the main command buffer.
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* Returns true if successfully adds the command
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* Return true if the command was successfully added.
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* Return false for a full buffer, or if the 'command' is a comment.
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*/
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*/
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inline bool _enqueuecommand(const char* cmd, bool say_ok=false) {
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inline bool _enqueuecommand(const char* cmd, bool say_ok=false) {
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if (*cmd == ';' || commands_in_queue >= BUFSIZE) return false;
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if (*cmd == ';' || commands_in_queue >= BUFSIZE) return false;
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@ -846,24 +890,21 @@ inline bool _enqueuecommand(const char* cmd, bool say_ok=false) {
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return true;
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return true;
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}
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}
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void enqueue_and_echo_command_now(const char* cmd) {
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while (!enqueue_and_echo_command(cmd)) idle();
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}
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/**
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/**
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* Enqueue with Serial Echo
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* Enqueue with Serial Echo
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*/
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*/
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bool enqueue_and_echo_command(const char* cmd, bool say_ok/*=false*/) {
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bool enqueue_and_echo_command(const char* cmd, bool say_ok/*=false*/) {
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if (_enqueuecommand(cmd, say_ok)) {
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if (_enqueuecommand(cmd, say_ok)) {
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SERIAL_ECHO_START;
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echo_command(cmd);
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SERIAL_ECHOPAIR(MSG_Enqueueing, cmd);
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SERIAL_CHAR('"');
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SERIAL_EOL;
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return true;
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return true;
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}
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}
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return false;
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return false;
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}
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}
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void enqueue_and_echo_command_now(const char* cmd) {
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while (!enqueue_and_echo_command(cmd)) idle();
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}
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void setup_killpin() {
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void setup_killpin() {
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#if HAS_KILL
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#if HAS_KILL
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SET_INPUT_PULLUP(KILL_PIN);
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SET_INPUT_PULLUP(KILL_PIN);
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@ -882,7 +923,6 @@ void setup_killpin() {
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#endif
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#endif
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// Set home pin
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void setup_homepin(void) {
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void setup_homepin(void) {
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#if HAS_HOME
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#if HAS_HOME
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SET_INPUT_PULLUP(HOME_PIN);
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SET_INPUT_PULLUP(HOME_PIN);
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@ -971,6 +1011,11 @@ void gcode_line_error(const char* err, bool doFlush = true) {
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serial_count = 0;
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serial_count = 0;
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}
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}
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/**
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* Get all commands waiting on the serial port and queue them.
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* Exit when the buffer is full or when no more characters are
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* left on the serial port.
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*/
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inline void get_serial_commands() {
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inline void get_serial_commands() {
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static char serial_line_buffer[MAX_CMD_SIZE];
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static char serial_line_buffer[MAX_CMD_SIZE];
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static bool serial_comment_mode = false;
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static bool serial_comment_mode = false;
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@ -1108,6 +1153,11 @@ inline void get_serial_commands() {
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#if ENABLED(SDSUPPORT)
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#if ENABLED(SDSUPPORT)
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/**
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* Get commands from the SD Card until the command buffer is full
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* or until the end of the file is reached. The special character '#'
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* can also interrupt buffering.
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*/
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inline void get_sdcard_commands() {
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inline void get_sdcard_commands() {
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static bool stop_buffering = false,
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static bool stop_buffering = false,
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sd_comment_mode = false;
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sd_comment_mode = false;
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@ -1126,7 +1176,7 @@ inline void get_serial_commands() {
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uint16_t sd_count = 0;
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uint16_t sd_count = 0;
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bool card_eof = card.eof();
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bool card_eof = card.eof();
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while (commands_in_queue < BUFSIZE && !card_eof && !stop_buffering) {
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while (commands_in_queue < BUFSIZE && !card_eof && !stop_buffering) {
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int16_t n = card.get();
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const int16_t n = card.get();
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char sd_char = (char)n;
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char sd_char = (char)n;
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card_eof = card.eof();
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card_eof = card.eof();
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if (card_eof || n == -1
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if (card_eof || n == -1
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@ -1144,12 +1194,12 @@ inline void get_serial_commands() {
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}
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}
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if (sd_char == '#') stop_buffering = true;
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if (sd_char == '#') stop_buffering = true;
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sd_comment_mode = false; //for new command
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sd_comment_mode = false; // for new command
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if (!sd_count) continue; //skip empty lines
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if (!sd_count) continue; // skip empty lines (and comment lines)
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command_queue[cmd_queue_index_w][sd_count] = '\0'; //terminate string
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command_queue[cmd_queue_index_w][sd_count] = '\0'; // terminate string
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sd_count = 0; //clear buffer
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sd_count = 0; // clear sd line buffer
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_commit_command(false);
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_commit_command(false);
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}
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}
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@ -108,7 +108,7 @@
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// Serial Console Messages (do not translate those!)
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// Serial Console Messages (do not translate those!)
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#define MSG_Enqueueing "enqueueing \""
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#define MSG_ENQUEUEING "enqueueing \""
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#define MSG_POWERUP "PowerUp"
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#define MSG_POWERUP "PowerUp"
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#define MSG_EXTERNAL_RESET " External Reset"
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#define MSG_EXTERNAL_RESET " External Reset"
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#define MSG_BROWNOUT_RESET " Brown out Reset"
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#define MSG_BROWNOUT_RESET " Brown out Reset"
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