Fix Anycubic Chiron "Ready" detection (#19880)
Co-authored-by: Scott Lahteine <thinkyhead@users.noreply.github.com>
This commit is contained in:
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e44a97a096
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676354f1d1
@ -40,6 +40,7 @@
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#include "../../../../sd/cardreader.h"
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#include "../../../../libs/numtostr.h"
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#include "../../../../MarlinCore.h"
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namespace Anycubic {
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printer_state_t ChironTFT::printer_state;
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@ -87,7 +88,7 @@ namespace Anycubic {
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// Enable levelling and Disable end stops during print
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// as Z home places nozzle above the bed so we need to allow it past the end stops
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injectCommands_P(AC_cmnd_enable_levelling); //M211 S0\n"));
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injectCommands_P(AC_cmnd_enable_levelling);
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// Startup tunes are defined in Tunes.h
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//PlayTune(BEEPER_PIN, Anycubic_PowerOn, 1);
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@ -179,7 +180,7 @@ namespace Anycubic {
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#endif
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switch (printer_state) {
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case AC_printer_pausing: {
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if ( (strcmp_P(msg, MARLIN_msg_print_paused) == 0 ) || (strcmp_P(msg, MARLIN_msg_nozzle_parked) == 0 ) ) {
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if (strcmp_P(msg, MARLIN_msg_print_paused) == 0 || strcmp_P(msg, MARLIN_msg_nozzle_parked) == 0) {
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SendtoTFTLN(AC_msg_paused); // enable continue button
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printer_state = AC_printer_paused;
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}
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@ -189,18 +190,18 @@ namespace Anycubic {
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case AC_printer_printing:
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case AC_printer_paused: {
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// Heater timout, send acknowledgement
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if (strcmp_P(msg, MARLIN_msg_heater_timeout) == 0 ) {
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if (strcmp_P(msg, MARLIN_msg_heater_timeout) == 0) {
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pause_state = AC_paused_heater_timed_out;
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SendtoTFTLN(AC_msg_paused); // enable continue button
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PlayTune(BEEPER_PIN,Heater_Timedout,1);
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}
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// Reheat finished, send acknowledgement
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else if (strcmp_P(msg, MARLIN_msg_reheat_done) == 0 ) {
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else if (strcmp_P(msg, MARLIN_msg_reheat_done) == 0) {
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pause_state = AC_paused_idle;
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SendtoTFTLN(AC_msg_paused); // enable continue button
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}
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// Filament Purging, send acknowledgement enter run mode
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else if (strcmp_P(msg, MARLIN_msg_filament_purging) == 0 ) {
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else if (strcmp_P(msg, MARLIN_msg_filament_purging) == 0) {
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pause_state = AC_paused_purging_filament;
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SendtoTFTLN(AC_msg_paused); // enable continue button
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}
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@ -221,14 +222,15 @@ namespace Anycubic {
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switch (printer_state) {
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case AC_printer_probing: {
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// If probing completes ok save the mesh and park
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if (strcmp_P(msg, MARLIN_msg_ready) == 0 ) {
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// Ignore the custom machine name
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if (strcmp_P(msg + strlen(CUSTOM_MACHINE_NAME), MARLIN_msg_ready) == 0) {
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injectCommands_P(PSTR("M500\nG27"));
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SendtoTFTLN(AC_msg_probing_complete);
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printer_state = AC_printer_idle;
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msg_matched = true;
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}
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// If probing fails dont save the mesh raise the probe above the bad point
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if (strcmp_P(msg, MARLIN_msg_probing_failed) == 0 ) {
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if (strcmp_P(msg, MARLIN_msg_probing_failed) == 0) {
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PlayTune(BEEPER_PIN, BeepBeepBeeep, 1);
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injectCommands_P(PSTR("G1 Z50 F500"));
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SendtoTFTLN(AC_msg_probing_complete);
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@ -238,14 +240,14 @@ namespace Anycubic {
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} break;
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case AC_printer_printing: {
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if (strcmp_P(msg, MARLIN_msg_reheating) == 0 ) {
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if (strcmp_P(msg, MARLIN_msg_reheating) == 0) {
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SendtoTFTLN(AC_msg_paused); // enable continue button
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msg_matched = true;
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}
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} break;
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case AC_printer_pausing: {
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if (strcmp_P(msg, MARLIN_msg_print_paused) == 0 ) {
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if (strcmp_P(msg, MARLIN_msg_print_paused) == 0) {
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SendtoTFTLN(AC_msg_paused);
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printer_state = AC_printer_paused;
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pause_state = AC_paused_idle;
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@ -254,7 +256,7 @@ namespace Anycubic {
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} break;
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case AC_printer_stopping: {
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if (strcmp_P(msg, MARLIN_msg_print_aborted) == 0 ) {
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if (strcmp_P(msg, MARLIN_msg_print_aborted) == 0) {
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SendtoTFTLN(AC_msg_stop);
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printer_state = AC_printer_idle;
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msg_matched = true;
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@ -289,7 +291,7 @@ namespace Anycubic {
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serialprintPGM(str);
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#endif
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while (const char c = pgm_read_byte(str++)) TFTSer.print(c);
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}
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}
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void ChironTFT::SendtoTFTLN(PGM_P str = nullptr) {
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if (str != nullptr) {
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@ -300,22 +302,22 @@ namespace Anycubic {
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#if ACDEBUG(AC_SOME)
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SERIAL_EOL();
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#endif
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}
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TFTSer.println("");
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}
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TFTSer.println("");
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}
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bool ChironTFT::ReadTFTCommand() {
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bool command_ready = false;
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while( (TFTSer.available() > 0) && (command_len < MAX_CMND_LEN) ) {
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while(TFTSer.available() > 0 && command_len < MAX_CMND_LEN) {
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panel_command[command_len] = TFTSer.read();
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if(panel_command[command_len] == '\n') {
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if (panel_command[command_len] == '\n') {
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command_ready = true;
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break;
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}
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command_len++;
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}
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if(command_ready) {
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if (command_ready) {
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panel_command[command_len] = 0x00;
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#if ACDEBUG(AC_ALL)
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SERIAL_ECHOLNPAIR("< ", panel_command);
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@ -333,56 +335,45 @@ namespace Anycubic {
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}
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int8_t ChironTFT::Findcmndpos(const char * buff, char q) {
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bool found = false;
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int8_t pos = 0;
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do {
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if (buff[pos] == q) {
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found = true;
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break;
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}
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pos ++;
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} while(pos < MAX_CMND_LEN);
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if (found) return pos;
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do { if (buff[pos] == q) return pos; } while(++pos < MAX_CMND_LEN);
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return -1;
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}
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void ChironTFT::CheckHeaters() {
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uint8_t faultDuration = 0; float temp = 0;
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uint8_t faultDuration = 0;
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float temp = 0;
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// if the hotend temp is abnormal, confirm state before signalling panel
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temp = getActualTemp_celsius(E0);
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if ( (temp <= HEATER_0_MINTEMP) || (temp >= HEATER_0_MAXTEMP) ) {
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do {
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faultDuration ++;
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if (faultDuration >= AC_HEATER_FAULT_VALIDATION_TIME) {
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SendtoTFTLN(AC_msg_nozzle_temp_abnormal);
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SERIAL_ECHOLNPAIR("Extruder temp abnormal! : ", temp);
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break;
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}
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delay_ms(500);
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temp = getActualTemp_celsius(E0);
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} while ((temp <= HEATER_0_MINTEMP) || (temp >= HEATER_0_MAXTEMP) );
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while (!WITHIN(temp, HEATER_0_MINTEMP, HEATER_0_MAXTEMP)) {
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faultDuration++;
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if (faultDuration >= AC_HEATER_FAULT_VALIDATION_TIME) {
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SendtoTFTLN(AC_msg_nozzle_temp_abnormal);
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SERIAL_ECHOLNPAIR("Extruder temp abnormal! : ", temp);
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break;
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}
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delay_ms(500);
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temp = getActualTemp_celsius(E0);
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}
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// if the hotbed temp is abnormal, confirm state before signalling panel
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// If the hotbed temp is abnormal, confirm state before signaling panel
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faultDuration = 0;
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temp = getActualTemp_celsius(BED);
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if ( (temp <= BED_MINTEMP) || (temp >= BED_MAXTEMP) ) {
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do {
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faultDuration ++;
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if (faultDuration >= AC_HEATER_FAULT_VALIDATION_TIME) {
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SendtoTFTLN(AC_msg_nozzle_temp_abnormal);
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SERIAL_ECHOLNPAIR_P("Bed temp abnormal! : ", temp);
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while (!WITHIN(temp, BED_MINTEMP, BED_MAXTEMP)) {
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faultDuration++;
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if (faultDuration >= AC_HEATER_FAULT_VALIDATION_TIME) {
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SendtoTFTLN(AC_msg_nozzle_temp_abnormal);
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SERIAL_ECHOLNPAIR_P("Bed temp abnormal! : ", temp);
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break;
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}
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delay_ms(500);
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temp = getActualTemp_celsius(E0);
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} while ((temp <= BED_MINTEMP) || (temp >= BED_MAXTEMP) );
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}
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delay_ms(500);
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temp = getActualTemp_celsius(E0);
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}
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// Update panel with hotend heater status
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if (hotend_state != AC_heater_temp_reached) {
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if ( WITHIN( getActualTemp_celsius(E0) - getTargetTemp_celsius(E0), -1, 1 ) ) {
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if (WITHIN(getActualTemp_celsius(E0) - getTargetTemp_celsius(E0), -1, 1)) {
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SendtoTFTLN(AC_msg_nozzle_heating_done);
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hotend_state = AC_heater_temp_reached;
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}
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@ -390,7 +381,7 @@ namespace Anycubic {
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// Update panel with bed heater status
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if (hotbed_state != AC_heater_temp_reached) {
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if ( WITHIN( getActualTemp_celsius(BED) - getTargetTemp_celsius(BED), -0.5, 0.5 ) ) {
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if (WITHIN(getActualTemp_celsius(BED) - getTargetTemp_celsius(BED), -0.5, 0.5)) {
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SendtoTFTLN(AC_msg_bed_heating_done);
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hotbed_state = AC_heater_temp_reached;
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}
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@ -398,7 +389,7 @@ namespace Anycubic {
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}
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void ChironTFT::SendFileList(int8_t startindex) {
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// respond to panel request for 4 files starting at index
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// Respond to panel request for 4 files starting at index
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#if ACDEBUG(AC_INFO)
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SERIAL_ECHOLNPAIR("## SendFileList ## ", startindex);
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#endif
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@ -408,8 +399,8 @@ namespace Anycubic {
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}
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void ChironTFT::SelectFile() {
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strncpy(selectedfile,panel_command+4,command_len-4);
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selectedfile[command_len-5] = '\0';
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strncpy(selectedfile, panel_command + 4, command_len - 4);
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selectedfile[command_len - 5] = '\0';
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#if ACDEBUG(AC_FILE)
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SERIAL_ECHOLNPAIR_F(" Selected File: ",selectedfile);
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#endif
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@ -493,7 +484,6 @@ namespace Anycubic {
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if (isPrintingFromMedia()) {
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SendtoTFT(PSTR("A6V "));
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TFTSer.println(ui8tostr2(getProgress_percent()));
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}
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else
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SendtoTFTLN(PSTR("A6V ---"));
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@ -552,7 +542,7 @@ namespace Anycubic {
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}
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else {
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if (printer_state == AC_printer_resuming_from_power_outage)
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injectCommands_P(PSTR("M1000 C\n")); // Cancel recovery
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injectCommands_P(PSTR("M1000 C")); // Cancel recovery
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SendtoTFTLN(AC_msg_stop);
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printer_state = AC_printer_idle;
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}
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@ -569,7 +559,7 @@ namespace Anycubic {
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case 14: { // A14 Start Printing
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// Allows printer to restart the job if we dont want to recover
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if (printer_state == AC_printer_resuming_from_power_outage) {
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injectCommands_P(PSTR("M1000 C\n")); // Cancel recovery
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injectCommands_P(PSTR("M1000 C")); // Cancel recovery
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printer_state = AC_printer_idle;
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}
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#if ACDebugLevel >= 1
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@ -587,8 +577,7 @@ namespace Anycubic {
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if (printer_state == AC_printer_resuming_from_power_outage)
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// Need to home here to restore the Z position
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injectCommands_P(AC_cmnd_power_loss_recovery);
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injectCommands_P(PSTR("M1000\n")); // home and start recovery
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injectCommands_P(PSTR("M1000")); // home and start recovery
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break;
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case 16: { // A16 Set HotEnd temp A17 S170
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@ -631,10 +620,10 @@ namespace Anycubic {
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case 21: // A21 Home Axis A21 X
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if (!isPrinting()) {
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switch ((char)panel_command[4]) {
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case 'X': injectCommands_P(PSTR("G28 X\n")); break;
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case 'Y': injectCommands_P(PSTR("G28 Y\n")); break;
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case 'Z': injectCommands_P(PSTR("G28 Z\n")); break;
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case 'C': injectCommands_P(PSTR("G28\n")); break;
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case 'X': injectCommands_P(PSTR("G28 X")); break;
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case 'Y': injectCommands_P(PSTR("G28 Y")); break;
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case 'Z': injectCommands_P(PSTR("G28 Z")); break;
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case 'C': injectCommands_P(PSTR("G28")); break;
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}
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}
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break;
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@ -729,7 +718,7 @@ namespace Anycubic {
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// If the same meshpoint is selected twice in a row, move the head to that ready for adjustment
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if ((selectedmeshpoint.x == pos.x) && (selectedmeshpoint.y == pos.y)) {
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if (!isPositionKnown())
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injectCommands_P(PSTR("G28\n")); // home
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injectCommands_P(PSTR("G28")); // home
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if (isPositionKnown()) {
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#if ACDEBUG(AC_INFO)
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@ -769,17 +758,15 @@ namespace Anycubic {
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switch (panel_command[3]) {
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case 'C': // Restore and apply original offsets
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if (!isPrinting()) {
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injectCommands_P(PSTR("M501\nM420 S1\n"));
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selectedmeshpoint.x = 99;
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selectedmeshpoint.y = 99;
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injectCommands_P(PSTR("M501\nM420 S1"));
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selectedmeshpoint.x = selectedmeshpoint.y = 99;
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}
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break;
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case 'D': // Save Z Offset tables and restore levelling state
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if (!isPrinting()) {
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setAxisPosition_mm(1.0,Z);
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injectCommands_P(PSTR("M500\n"));
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selectedmeshpoint.x = 99;
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selectedmeshpoint.y = 99;
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injectCommands_P(PSTR("M500"));
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selectedmeshpoint.x = selectedmeshpoint.y = 99;
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}
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break;
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case 'G': // Get current offset
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@ -790,8 +777,7 @@ namespace Anycubic {
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TFTSer.println(live_Zoffset);
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else {
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TFTSer.println(getZOffset_mm());
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selectedmeshpoint.x = 99;
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selectedmeshpoint.y = 99;
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selectedmeshpoint.x = selectedmeshpoint.y = 99;
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}
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break;
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case 'S': { // Set offset (adjusts all points by value)
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@ -859,8 +845,7 @@ namespace Anycubic {
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case 34: { // A34 Adjust single mesh point A34 C/S X1 Y1 V123
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if (panel_command[3] == 'C') { // Restore original offsets
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injectCommands_P(PSTR("M501\nM420 S1"));
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selectedmeshpoint.x = 99;
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selectedmeshpoint.y = 99;
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selectedmeshpoint.x = selectedmeshpoint.y = 99;
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//printer_state = AC_printer_idle;
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}
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else {
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@ -876,9 +861,10 @@ namespace Anycubic {
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#endif
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// Update Meshpoint
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setMeshPoint(pos,newval);
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if ( (printer_state == AC_printer_idle) || (printer_state == AC_printer_probing) ) {//!isPrinting()) {
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// if we are at the current mesh point indicated on the panel Move Z pos +/- 0.05mm ( The panel changes the mesh value by +/- 0.05mm on each button press)
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if ((selectedmeshpoint.x == pos.x) && (selectedmeshpoint.y == pos.y)) {
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if (printer_state == AC_printer_idle || printer_state == AC_printer_probing /*!isPrinting()*/) {
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// if we are at the current mesh point indicated on the panel Move Z pos +/- 0.05mm
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// (The panel changes the mesh value by +/- 0.05mm on each button press)
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if (selectedmeshpoint.x == pos.x && selectedmeshpoint.y == pos.y) {
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setSoftEndstopState(false);
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float currZpos = getAxisPosition_mm(Z);
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#if ACDEBUG(AC_INFO)
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@ -88,7 +88,7 @@
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#define MARLIN_msg_start_probing PSTR("Probing Point 1/25")
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#define MARLIN_msg_probing_failed PSTR("Probing Failed")
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#define MARLIN_msg_ready PSTR("3D Printer Ready.")
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#define MARLIN_msg_ready PSTR(" Ready.")
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#define MARLIN_msg_print_paused PSTR("Print Paused")
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#define MARLIN_msg_print_aborted PSTR("Print Aborted")
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#define MARLIN_msg_extruder_heating PSTR("E Heating...")
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