/** * Marlin 3D Printer Firmware * Copyright (c) 2021 MarlinFirmware [https://github.com/MarlinFirmware/Marlin] * * Based on Sprinter and grbl. * Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm * * This program is free software: you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation, either version 3 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program. If not, see . * */ /** * lcd/e3v2/jyersui/dwin.cpp * JYERSUI Author: Jacob Myers * * JYERSUI Enhanced by LCH-77 * Version: 1.9 * Date: Jun 16, 2022 */ #include "../../../inc/MarlinConfigPre.h" #if ENABLED(DWIN_CREALITY_LCD_JYERSUI) #include "dwin_defines.h" #include "dwin.h" #include "dwinui.h" #include "../../marlinui.h" #include "../../../MarlinCore.h" #include "../../../gcode/gcode.h" #include "../../../module/temperature.h" #include "../../../module/planner.h" #include "../../../module/settings.h" #include "../../../libs/buzzer.h" #include "../../../inc/Conditionals_post.h" #include "../common/encoder.h" //#define DEBUG_OUT 1 #include "../../../core/debug_out.h" #if ENABLED(ADVANCED_PAUSE_FEATURE) #include "../../../feature/pause.h" #endif #if ENABLED(FILAMENT_RUNOUT_SENSOR) #include "../../../feature/runout.h" #endif #if ENABLED(HOST_ACTION_COMMANDS) #include "../../../feature/host_actions.h" #endif #if ANY(BABYSTEPPING, HAS_BED_PROBE, HAS_WORKSPACE_OFFSET) #define HAS_ZOFFSET_ITEM 1 #endif #ifndef strcasecmp_P #define strcasecmp_P(a, b) strcasecmp((a), (b)) #endif #if HAS_LEVELING #include "../../../feature/bedlevel/bedlevel.h" #endif #ifdef BLTOUCH_HS_MODE #include "../../../feature/bltouch.h" #endif #if ENABLED(AUTO_BED_LEVELING_UBL) #include "../../../libs/least_squares_fit.h" #include "../../../libs/vector_3.h" #endif #if HAS_BED_PROBE #include "../../../module/probe.h" #endif #if ENABLED(POWER_LOSS_RECOVERY) #include "../../../feature/powerloss.h" #endif #if HAS_ESDIAG #include "endstop_diag.h" #endif #if HAS_LOCKSCREEN #include "lockscreen.h" #endif #if ENABLED(CASE_LIGHT_MENU) #include "../../../feature/caselight.h" #endif #if ENABLED(LED_CONTROL_MENU) #include "../../../feature/leds/leds.h" #endif #if HAS_PIDPLOT #include "plot.h" #endif #if HAS_GCODE_PREVIEW #include "gcode_preview.h" #endif #define MACHINE_SIZE STRINGIFY(X_BED_SIZE) "x" STRINGIFY(Y_BED_SIZE) "x" STRINGIFY(Z_MAX_POS) #define MENU_CHAR_LIMIT 24 #define STATUS_CHAR_LIMIT 30 #define MAX_PRINT_SPEED 500 #define MIN_PRINT_SPEED 10 #if HAS_FAN #define MAX_FAN_SPEED 255 #define MIN_FAN_SPEED 0 #endif #define MAX_XY_OFFSET 100 #if HAS_ZOFFSET_ITEM #define MAX_Z_OFFSET 9.99 #if HAS_BED_PROBE #define MIN_Z_OFFSET -9.99 #else #define MIN_Z_OFFSET -1 #endif #endif #if HAS_HOTEND #define MAX_FLOW_RATE 200 #define MIN_FLOW_RATE 10 #define MAX_E_TEMP (HEATER_0_MAXTEMP - HOTEND_OVERSHOOT) #define MIN_E_TEMP 0 #endif #if HAS_HEATED_BED #define MAX_BED_TEMP BED_MAXTEMP #define MIN_BED_TEMP 0 #endif #if HAS_JUNCTION_DEVIATION #define MIN_JD_MM 0.01 #define MAX_JD_MM 0.3 #endif /** * Custom menu items with jyersLCD */ #if ENABLED(CUSTOM_MENU_CONFIG) #ifdef CONFIG_MENU_ITEM_5_DESC #define CUSTOM_MENU_COUNT 5 #elif defined(CONFIG_MENU_ITEM_4_DESC) #define CUSTOM_MENU_COUNT 4 #elif defined(CONFIG_MENU_ITEM_3_DESC) #define CUSTOM_MENU_COUNT 3 #elif defined(CONFIG_MENU_ITEM_2_DESC) #define CUSTOM_MENU_COUNT 2 #elif defined(CONFIG_MENU_ITEM_1_DESC) #define CUSTOM_MENU_COUNT 1 #endif #if CUSTOM_MENU_COUNT #define HAS_CUSTOM_MENU 1 #endif #endif constexpr float default_max_feedrate[] = DEFAULT_MAX_FEEDRATE; constexpr float default_max_acceleration[] = DEFAULT_MAX_ACCELERATION; constexpr float default_steps[] = DEFAULT_AXIS_STEPS_PER_UNIT; #if HAS_CLASSIC_JERK constexpr float default_max_jerk[] = { DEFAULT_XJERK, DEFAULT_YJERK, DEFAULT_ZJERK, DEFAULT_EJERK }; #endif enum SelectItem : uint8_t { PAGE_PRINT = 0, PAGE_PREPARE, PAGE_CONTROL, PAGE_INFO_LEVELING, PAGE_COUNT, PRINT_SETUP = 0, PRINT_PAUSE_RESUME, PRINT_STOP, PRINT_COUNT }; eeprom_settings_t eeprom_settings = {0}; temp_val_t temp_val = {0}; uint8_t active_menu = MainMenu, last_menu = MainMenu; uint8_t selection = 0, last_selection = 0, last_pos_selection = 0; uint8_t scrollpos = 0; uint8_t process = Main, last_process = Main; PopupID popup, last_popup; void (*funcpointer)() = nullptr; void *valuepointer = nullptr; float tempvalue; float valuemin; float valuemax; uint8_t valueunit; uint8_t valuetype; char cmd[MAX_CMD_SIZE + 16], str_1[16], str_2[16], str_3[16]; char statusmsg[64]; char filename[LONG_FILENAME_LENGTH]; #if HAS_HOSTACTION_MENUS #define KEY_WIDTH 26 #define KEY_HEIGHT 30 #define KEY_INSET 5 #define KEY_PADDING 3 #define KEY_Y_START DWIN_HEIGHT - (4 * (KEY_HEIGHT) + 2 * (KEY_INSET + 1)) bool keyboard_restrict, reset_keyboard, numeric_keyboard = false; uint8_t maxstringlen; char *stringpointer = nullptr; char action1[9], action2[9], action3[9]; #endif CrealityDWINClass CrealityDWIN; #if HAS_MESH struct Mesh_Settings { bool viewer_asymmetric_range = false; bool viewer_print_value = false; bool goto_mesh_value = false; bool drawing_mesh = false; uint8_t mesh_x = 0; uint8_t mesh_y = 0; #if ENABLED(AUTO_BED_LEVELING_UBL) uint8_t tilt_grid = 1; void manual_value_update(bool undefined=false) { sprintf_P(cmd, PSTR("M421 I%i J%i Z%s %s"), mesh_x, mesh_y, dtostrf(current_position.z, 1, 3, str_1), undefined ? "N" : ""); gcode.process_subcommands_now(cmd); planner.synchronize(); } bool create_plane_from_mesh() { struct linear_fit_data lsf_results; incremental_LSF_reset(&lsf_results); GRID_LOOP(x, y) { if (!isnan(bedlevel.z_values[x][y])) { xy_pos_t rpos = { bedlevel.get_mesh_x(x), bedlevel.get_mesh_y(y) }; incremental_LSF(&lsf_results, rpos, bedlevel.z_values[x][y]); } } if (finish_incremental_LSF(&lsf_results)) { SERIAL_ECHOPGM("Could not complete LSF!"); return true; } bedlevel.set_all_mesh_points_to_value(0); matrix_3x3 rotation = matrix_3x3::create_look_at(vector_3(lsf_results.A, lsf_results.B, 1)); GRID_LOOP(i, j) { float mx = bedlevel.get_mesh_x(i), my = bedlevel.get_mesh_y(j), mz = bedlevel.z_values[i][j]; if (DEBUGGING(LEVELING)) { DEBUG_ECHOPAIR_F("before rotation = [", mx, 7); DEBUG_CHAR(','); DEBUG_ECHO_F(my, 7); DEBUG_CHAR(','); DEBUG_ECHO_F(mz, 7); DEBUG_ECHOPGM("] ---> "); DEBUG_DELAY(20); } rotation.apply_rotation_xyz(mx, my, mz); if (DEBUGGING(LEVELING)) { DEBUG_ECHOPAIR_F("after rotation = [", mx, 7); DEBUG_CHAR(','); DEBUG_ECHO_F(my, 7); DEBUG_CHAR(','); DEBUG_ECHO_F(mz, 7); DEBUG_ECHOLNPGM("]"); DEBUG_DELAY(20); } bedlevel.z_values[i][j] = mz - lsf_results.D; } return false; } #else void manual_value_update() { sprintf_P(cmd, PSTR("G29 I%i J%i Z%s"), mesh_x, mesh_y, dtostrf(current_position.z, 1, 3, str_1)); gcode.process_subcommands_now(cmd); planner.synchronize(); } #endif void manual_mesh_move(const bool zmove=false) { if (zmove) { planner.synchronize(); current_position.z = goto_mesh_value ? bedlevel.z_values[mesh_x][mesh_y] : Z_CLEARANCE_BETWEEN_PROBES; planner.buffer_line(current_position, homing_feedrate(Z_AXIS), active_extruder); planner.synchronize(); } else { CrealityDWIN.Popup_Handler(MoveWait); sprintf_P(cmd, PSTR("G0 F300 Z%s"), dtostrf(Z_CLEARANCE_BETWEEN_PROBES, 1, 3, str_1)); gcode.process_subcommands_now(cmd); sprintf_P(cmd, PSTR("G42 F4000 I%i J%i"), mesh_x, mesh_y); gcode.process_subcommands_now(cmd); planner.synchronize(); current_position.z = goto_mesh_value ? bedlevel.z_values[mesh_x][mesh_y] : Z_CLEARANCE_BETWEEN_PROBES; planner.buffer_line(current_position, homing_feedrate(Z_AXIS), active_extruder); planner.synchronize(); CrealityDWIN.Redraw_Menu(); } } float get_max_value() { float max = __FLT_MIN__; GRID_LOOP(x, y) { if (!isnan(bedlevel.z_values[x][y]) && bedlevel.z_values[x][y] > max) max = bedlevel.z_values[x][y]; } return max; } float get_min_value() { float min = __FLT_MAX__; GRID_LOOP(x, y) { if (!isnan(bedlevel.z_values[x][y]) && bedlevel.z_values[x][y] < min) min = bedlevel.z_values[x][y]; } return min; } void Draw_Bed_Mesh(int16_t selected = -1, uint8_t gridline_width = 1, uint16_t padding_x = 8, uint16_t padding_y_top = 40 + 53 - 7) { drawing_mesh = true; const uint16_t total_width_px = DWIN_WIDTH - padding_x - padding_x, cell_width_px = total_width_px / (GRID_MAX_POINTS_X), cell_height_px = total_width_px / (GRID_MAX_POINTS_Y); const float v_max = abs(get_max_value()), v_min = abs(get_min_value()), range = _MAX(v_min, v_max); // Clear background from previous selection and select new square DWIN_Draw_Rectangle(1, Def_Background_Color, _MAX(0, padding_x - gridline_width), _MAX(0, padding_y_top - gridline_width), padding_x + total_width_px, padding_y_top + total_width_px); if (selected >= 0) { const auto selected_y = selected / (GRID_MAX_POINTS_X); const auto selected_x = selected - (GRID_MAX_POINTS_X) * selected_y; const auto start_y_px = padding_y_top + selected_y * cell_height_px; const auto start_x_px = padding_x + selected_x * cell_width_px; DWIN_Draw_Rectangle(1, Def_Highlight_Color, _MAX(0, start_x_px - gridline_width), _MAX(0, start_y_px - gridline_width), start_x_px + cell_width_px, start_y_px + cell_height_px); } // Draw value square grid char buf[8]; GRID_LOOP(x, y) { const auto start_x_px = padding_x + x * cell_width_px; const auto end_x_px = start_x_px + cell_width_px - 1 - gridline_width; const auto start_y_px = padding_y_top + (GRID_MAX_POINTS_Y - y - 1) * cell_height_px; const auto end_y_px = start_y_px + cell_height_px - 1 - gridline_width; DWIN_Draw_Rectangle(1, // RGB565 colors: http://www.barth-dev.de/online/rgb565-color-picker/ isnan(bedlevel.z_values[x][y]) ? Color_Grey : ( // gray if undefined (bedlevel.z_values[x][y] < 0 ? (uint16_t)round(0x1F * -bedlevel.z_values[x][y] / (!viewer_asymmetric_range ? range : v_min)) << 11 : // red if mesh point value is negative (uint16_t)round(0x3F * bedlevel.z_values[x][y] / (!viewer_asymmetric_range ? range : v_max)) << 5) | // green if mesh point value is positive _MIN(0x1F, (((uint8_t)abs(bedlevel.z_values[x][y]) / 10) * 4))), // + blue stepping for every mm start_x_px, start_y_px, end_x_px, end_y_px ); safe_delay(10); LCD_SERIAL.flushTX(); // Draw value text on if (viewer_print_value) { int8_t offset_x, offset_y = cell_height_px / 2 - 6; if (isnan(bedlevel.z_values[x][y])) { // undefined DWINUI::Draw_String(font6x12, Def_Text_Color, Color_Bg_Blue, start_x_px + cell_width_px / 2 - 5, start_y_px + offset_y, F("X")); } else { // has value if (GRID_MAX_POINTS_X < 10) sprintf_P(buf, PSTR("%s"), dtostrf(abs(bedlevel.z_values[x][y]), 1, 2, str_1)); else sprintf_P(buf, PSTR("%02i"), (uint16_t)(abs(bedlevel.z_values[x][y] - (int16_t)bedlevel.z_values[x][y]) * 100)); offset_x = cell_width_px / 2 - 3 * (strlen(buf)) - 2; if (!(GRID_MAX_POINTS_X < 10)) DWINUI::Draw_String(font6x12, Def_Text_Color, Color_Bg_Blue, start_x_px - 2 + offset_x, start_y_px + offset_y /*+ square / 2 - 6*/, F(".")); DWINUI::Draw_String(font6x12, Def_Text_Color, Color_Bg_Blue, start_x_px + 1 + offset_x, start_y_px + offset_y /*+ square / 2 - 6*/, buf); } safe_delay(10); LCD_SERIAL.flushTX(); } } } void Set_Mesh_Viewer_Status() { // TODO: draw gradient with values as a legend instead float v_max = abs(get_max_value()), v_min = abs(get_min_value()), range = _MAX(v_min, v_max); if (v_min > 3e+10F) v_min = 0.0000001; if (v_max > 3e+10F) v_max = 0.0000001; if (range > 3e+10F) range = 0.0000001; char msg[46]; if (viewer_asymmetric_range) { dtostrf(-v_min, 1, 3, str_1); dtostrf( v_max, 1, 3, str_2); } else { dtostrf(-range, 1, 3, str_1); dtostrf( range, 1, 3, str_2); } sprintf_P(msg, PSTR("Red %s..0..%s Green"), str_1, str_2); CrealityDWIN.Update_Status(msg); drawing_mesh = false; } }; Mesh_Settings mesh_conf; #endif // HAS_MESH /* General Display Functions */ constexpr const char * const CrealityDWINClass::color_names[11]; constexpr const char * const CrealityDWINClass::preheat_modes[3]; constexpr const char * const CrealityDWINClass::zoffset_modes[3]; #if ENABLED(PREHEAT_BEFORE_LEVELING) constexpr const char * const CrealityDWINClass::preheat_levmodes[4]; #endif // Clear a part of the screen // 4=Entire screen // 3=Title bar and Menu area (default) // 2=Menu area // 1=Title bar void CrealityDWINClass::Clear_Screen(uint8_t e/*=3*/) { if (e == 1 || e == 3 || e == 4) DWIN_Draw_Rectangle(1, GetColor(eeprom_settings.menu_top_bg, Def_TitleBg_color, false), 0, 0, DWIN_WIDTH, TITLE_HEIGHT); // Clear Title Bar if (e == 2 || e == 3) DWIN_Draw_Rectangle(1, Def_Background_Color, 0, 31, DWIN_WIDTH, STATUS_Y); // Clear Menu Area if (e == 4) DWIN_Draw_Rectangle(1, Def_Background_Color, 0, 31, DWIN_WIDTH, DWIN_HEIGHT); // Clear Popup Area } void CrealityDWINClass::Draw_Float(float value, uint8_t row, bool selected/*=false*/, uint8_t minunit/*=10*/) { const uint8_t digits = (uint8_t)floor(log10(abs(value))) + log10(minunit) + (minunit > 1); const uint16_t bColor = (selected) ? Def_Selected_Color : Def_Background_Color; const uint16_t xpos = 240 - (digits * 8); DWIN_Draw_Rectangle(1, Def_Background_Color, 194, MBASE(row), 234 - (digits * 8), MBASE(row) + 16); if (isnan(value)) DWINUI::Draw_String(Def_Text_Color, bColor, xpos - 8, MBASE(row), F(" NaN")); else { DWIN_Draw_FloatValue(true, true, 0, DWIN_FONT_MENU, Def_Text_Color, bColor, digits - log10(minunit) + 1, log10(minunit), xpos, MBASE(row), (value < 0 ? -value : value)); DWINUI::Draw_String(Def_Text_Color, bColor, xpos - 8, MBASE(row), value < 0 ? F("-") : F(" ")); } } void CrealityDWINClass::Draw_Option(uint8_t value, const char * const * options, uint8_t row, bool selected/*=false*/, bool color/*=false*/) { uint16_t bColor = (selected) ? Def_Selected_Color : Def_Background_Color, tColor = (color) ? GetColor(value, Def_Text_Color, false) : Def_Text_Color; DWIN_Draw_Rectangle(1, bColor, 202, MBASE(row) + 14, 258, MBASE(row) - 2); DWINUI::Draw_String(tColor, bColor, 202, MBASE(row) - 1, options[value]); } #if HAS_HOSTACTION_MENUS void CrealityDWINClass::Draw_String(char * string, uint8_t row, bool selected/*=false*/, bool below/*=false*/) { if (!string) string[0] = '\0'; const uint8_t offset_x = DWIN_WIDTH - strlen(string) * 8 - 20; const uint8_t offset_y = (below) ? MENU_CHR_H * 3 / 5 : 0; DWIN_Draw_Rectangle(1, Def_Background_Color, offset_x - 10, MBASE(row) + offset_y - 1, offset_x, MBASE(row) + 16 + offset_y); DWINUI::Draw_String(Def_Text_Color, (selected) ? Def_Selected_Color : Def_Background_Color, offset_x, MBASE(row) - 1 + offset_y, string); } const uint64_t CrealityDWINClass::Encode_String(const char * string) { const char table[65] = "-0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ_abcdefghijklmnopqrstuvwxyz"; uint64_t output = 0; LOOP_L_N(i, strlen(string)) { uint8_t upper_bound = 63, lower_bound = 0; uint8_t midpoint; LOOP_L_N(x, 6) { midpoint = (uint8_t)(0.5 * (upper_bound + lower_bound)); if (string[i] == table[midpoint]) break; if (string[i] > table[midpoint]) lower_bound = midpoint; else upper_bound = midpoint; } output += midpoint * pow(64, i); } return output; } void CrealityDWINClass::Decode_String(uint64_t num, char * string) { const char table[65] = "-0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ_abcdefghijklmnopqrstuvwxyz"; LOOP_L_N(i, 30) { string[i] = table[num % 64]; num /= 64; if (num == 0) { string[i + 1] = '\0'; break; } } } #endif // HAS_HOSTACTION_MENUS uint16_t CrealityDWINClass::GetColor(uint8_t color, uint16_t original, bool light/*=false*/) { switch (color) { case Default: return original; case White: return (light) ? Color_Light_White : Color_White; case Green: return (light) ? Color_Light_Green : Color_Green; case Cyan: return (light) ? Color_Light_Cyan : Color_Cyan; case Blue: return (light) ? Color_Light_Blue : Color_Blue; case Magenta: return (light) ? Color_Light_Magenta : Color_Magenta; case Red: return (light) ? Color_Light_Red : Color_Red; case Orange: return (light) ? Color_Light_Orange : Color_Orange; case Yellow: return (light) ? Color_Light_Yellow : Color_Yellow; case Brown: return (light) ? Color_Light_Brown : Color_Brown; case Black: return Color_Black; } return Color_White; } void CrealityDWINClass::Draw_Title(const char * ctitle) { DWINUI::Draw_CenteredString((uint8_t)DWIN_FONT_HEAD, GetColor(eeprom_settings.menu_top_txt, Def_TitleTxt_color, false), 5, ctitle); } void CrealityDWINClass::Draw_Title(FSTR_P const ftitle) { DWINUI::Draw_CenteredString((uint8_t)DWIN_FONT_HEAD, GetColor(eeprom_settings.menu_top_txt, Def_TitleTxt_color, false), 5, ftitle); } void _Decorate_Menu_Item(uint8_t row, uint8_t icon, bool more) { if (icon) DWIN_ICON_Show(ICON, icon, 26, MBASE(row) - 3); //Draw Menu Icon if (more) DWIN_ICON_Show(ICON, ICON_More, 226, MBASE(row) - 3); // Draw More Arrow DWIN_Draw_HLine(CrealityDWIN.GetColor(eeprom_settings.menu_split_line, Def_SplitLine_Color, true), 16, MBASE(row) + 33, 240); // Draw Menu Line } void CrealityDWINClass::Draw_Menu_Item(uint8_t row, uint8_t icon/*=0*/, const char * label1, const char * label2, bool more/*=false*/, bool centered/*=false*/) { const uint8_t label_offset_y = (label1 && label2) ? MENU_CHR_H * 3 / 5 : 0, label1_offset_x = !centered ? LBLX : LBLX * 4/5 + _MAX(LBLX * 1/5U, (DWIN_WIDTH - LBLX - (label1 ? strlen(label1) : 0) * MENU_CHR_W) / 2), label2_offset_x = !centered ? LBLX : LBLX * 4/5 + _MAX(LBLX * 1/5U, (DWIN_WIDTH - LBLX - (label2 ? strlen(label2) : 0) * MENU_CHR_W) / 2); if (label1) DWINUI::Draw_String(label1_offset_x, MBASE(row) - 1 - label_offset_y, label1); // Draw Label if (label2) DWINUI::Draw_String(label2_offset_x, MBASE(row) - 1 + label_offset_y, label2); // Draw Label _Decorate_Menu_Item(row, icon, more); } void CrealityDWINClass::Draw_Menu_Item(uint8_t row, uint8_t icon/*=0*/, FSTR_P const flabel1, FSTR_P const flabel2, bool more/*=false*/, bool centered/*=false*/) { const uint8_t label_offset_y = (flabel1 && flabel2) ? MENU_CHR_H * 3 / 5 : 0, label1_offset_x = !centered ? LBLX : LBLX * 4/5 + _MAX(LBLX * 1/5U, (DWIN_WIDTH - LBLX - (flabel1 ? strlen_P(FTOP(flabel1)) : 0) * MENU_CHR_W) / 2), label2_offset_x = !centered ? LBLX : LBLX * 4/5 + _MAX(LBLX * 1/5U, (DWIN_WIDTH - LBLX - (flabel2 ? strlen_P(FTOP(flabel2)) : 0) * MENU_CHR_W) / 2); if (flabel1) DWINUI::Draw_String(label1_offset_x, MBASE(row) - 1 - label_offset_y, flabel1); // Draw Label if (flabel2) DWINUI::Draw_String(label2_offset_x, MBASE(row) - 1 + label_offset_y, flabel2); // Draw Label _Decorate_Menu_Item(row, icon, more); } void CrealityDWINClass::Draw_Checkbox(uint8_t row, bool value) { #if ENABLED(DWIN_CREALITY_LCD_CUSTOM_ICONS) // Draw appropriate checkbox icon DWIN_ICON_Show(ICON, (value ? ICON_Checkbox_T : ICON_Checkbox_F), 226, MBASE(row) - 3); #else // Draw a basic checkbox using rectangles and lines DWIN_Draw_Rectangle(1, Def_Background_Color, 226, MBASE(row) - 3, 226 + 20, MBASE(row) - 3 + 20); DWIN_Draw_Rectangle(0, Def_Text_Color, 226, MBASE(row) - 3, 226 + 20, MBASE(row) - 3 + 20); if (value) { DWIN_Draw_Line(Check_Color, 227, MBASE(row) - 3 + 11, 226 + 8, MBASE(row) - 3 + 17); DWIN_Draw_Line(Check_Color, 227 + 8, MBASE(row) - 3 + 17, 226 + 19, MBASE(row) - 3 + 1); DWIN_Draw_Line(Check_Color, 227, MBASE(row) - 3 + 12, 226 + 8, MBASE(row) - 3 + 18); DWIN_Draw_Line(Check_Color, 227 + 8, MBASE(row) - 3 + 18, 226 + 19, MBASE(row) - 3 + 2); DWIN_Draw_Line(Check_Color, 227, MBASE(row) - 3 + 13, 226 + 8, MBASE(row) - 3 + 19); DWIN_Draw_Line(Check_Color, 227 + 8, MBASE(row) - 3 + 19, 226 + 19, MBASE(row) - 3 + 3); } #endif } void CrealityDWINClass::Draw_Menu(uint8_t menu, uint8_t select/*=0*/, uint8_t scroll/*=0*/) { if (active_menu != menu) { last_menu = active_menu; if (process == Menu) last_selection = selection; } selection = _MIN(select, Get_Menu_Size(menu)); scrollpos = scroll; if (selection - scrollpos > MROWS) scrollpos = selection - MROWS; process = Menu; active_menu = menu; Clear_Screen(); Draw_Title(Get_Menu_Title(menu)); LOOP_L_N(i, TROWS) Menu_Item_Handler(menu, i + scrollpos); DWIN_Draw_Rectangle(1, GetColor(eeprom_settings.cursor_color, Def_Cursor_color), 0, MBASE(selection - scrollpos) - 18, 14, MBASE(selection - scrollpos) + 33); } void CrealityDWINClass::Redraw_Menu(bool lastprocess/*=true*/, bool lastselection/*=false*/, bool lastmenu/*=false*/) { switch ((lastprocess) ? last_process : process) { case Menu: Draw_Menu((lastmenu) ? last_menu : active_menu, (lastselection) ? last_selection : selection, (lastmenu) ? 0 : scrollpos); break; case Main: Draw_Main_Menu((lastselection) ? last_selection : selection); break; case Print: Draw_Print_Screen(); break; case File: Draw_SD_List(); break; default: break; } } void CrealityDWINClass::Redraw_Screen() { if (printingIsActive()) Draw_Print_Screen(); else Redraw_Menu(false); Draw_Status_Area(true); Update_Status_Bar(true); } /* Primary Menus and Screen Elements */ void CrealityDWINClass::Main_Menu_Icons() { if (selection == 0) { DWINUI::DRAW_IconWB(ICON, ICON_Print_1, 17, 110); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 17, 110, 126, 209); } else DWINUI::DRAW_IconWB(ICON, ICON_Print_0, 17, 110); DWINUI::Draw_String(52, 180, GET_TEXT_F(MSG_BUTTON_PRINT)); if (selection == 1) { DWINUI::DRAW_IconWB(ICON, ICON_Prepare_1, 145, 110); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 145, 110, 254, 209); } else DWINUI::DRAW_IconWB(ICON, ICON_Prepare_0, 145, 110); DWINUI::Draw_String(170, 180, GET_TEXT_F(MSG_PREPARE)); if (selection == 2) { DWINUI::DRAW_IconWB(ICON, ICON_Control_1, 17, 226); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 17, 226, 126, 325); } else DWINUI::DRAW_IconWB(ICON, ICON_Control_0, 17, 226); DWINUI::Draw_String(43, 297, GET_TEXT_F(MSG_CONTROL)); #if HAS_ABL_OR_UBL if (selection == 3) { DWINUI::DRAW_IconWB(ICON, ICON_Leveling_1, 145, 226); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 145, 226, 254, 325); } else DWINUI::DRAW_IconWB(ICON, ICON_Leveling_0, 145, 226); DWINUI::Draw_String(179, 297, GET_TEXT_F(MSG_BUTTON_LEVEL)); #else if (selection == 3) { DWINUI::DRAW_IconWB(ICON, ICON_Info_1, 145, 226); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 145, 226, 254, 325); } else DWINUI::DRAW_IconWB(ICON, ICON_Info_0, 145, 226); DWINUI::Draw_String(181, 297, GET_TEXT_F(MSG_BUTTON_INFO)); #endif } void CrealityDWINClass::Draw_Main_Menu(uint8_t select/*=0*/) { process = Main; active_menu = MainMenu; selection = select; Clear_Screen(); Draw_Title(Get_Menu_Title(MainMenu)); SERIAL_ECHOPGM("\nDWIN handshake "); DWIN_ICON_Show(ICON, ICON_LOGO, 71, 62); Main_Menu_Icons(); } void CrealityDWINClass::Print_Screen_Icons() { if (selection == 0) { DWINUI::DRAW_IconWB(ICON, ICON_Setup_1, 8, 252); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 8, 252, 87, 351); } else DWINUI::DRAW_IconWB(ICON, ICON_Setup_0, 8, 252); DWINUI::Draw_String(30, 322, GET_TEXT_F(MSG_TUNE)); if (selection == 2) { DWINUI::DRAW_IconWB(ICON, ICON_Stop_1, 184, 252); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 184, 252, 263, 351); } else DWINUI::DRAW_IconWB(ICON, ICON_Stop_0, 184, 252); DWINUI::Draw_String(205, 322, GET_TEXT_F(MSG_BUTTON_STOP)); if (temp_val.paused) { if (selection == 1) { DWINUI::DRAW_IconWB(ICON, ICON_Continue_1, 96, 252); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 96, 252, 175, 351); } else DWINUI::DRAW_IconWB(ICON, ICON_Continue_0, 96, 252); DWINUI::Draw_String(114, 322, GET_TEXT_F(MSG_BUTTON_RESUME)); } else { if (selection == 1) { DWINUI::DRAW_IconWB(ICON, ICON_Pause_1, 96, 252); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 96, 252, 175, 351); } else DWINUI::DRAW_IconWB(ICON, ICON_Pause_0, 96, 252); DWINUI::Draw_String(114, 322, GET_TEXT_F(MSG_BUTTON_PAUSE)); } } void CrealityDWINClass::Draw_Print_Screen() { process = Print; selection = 0; Clear_Screen(); DWIN_Draw_Rectangle(1, Def_Background_Color, 8, 352, DWIN_WIDTH - 8, 376); Draw_Title(GET_TEXT(MSG_PRINTING)); Print_Screen_Icons(); DWIN_ICON_Show(ICON, ICON_PrintTime, 14, 171); DWIN_ICON_Show(ICON, ICON_RemainTime, 147, 169); DWINUI::Draw_String(Def_PercentTxt_Color, 41, 163, GET_TEXT_F(MSG_INFO_PRINT_TIME)); DWINUI::Draw_String(Def_PercentTxt_Color, 176, 163, GET_TEXT_F(MSG_REMAINING_TIME)); Update_Status_Bar(true); Draw_Print_ProgressBar(); Draw_Print_ProgressElapsed(); TERN_(USE_M73_REMAINING_TIME, Draw_Print_ProgressRemain()); Draw_Print_Filename(true); } void CrealityDWINClass::Draw_Print_Filename(const bool reset/*=false*/) { static uint8_t namescrl = 0; if (reset) namescrl = 0; if (process == Print) { size_t len = strlen(filename); int8_t pos = len; if (pos > STATUS_CHAR_LIMIT) { pos -= namescrl; len = _MIN((size_t)pos, (size_t)STATUS_CHAR_LIMIT); char dispname[len + 1]; if (pos >= 0) { LOOP_L_N(i, len) dispname[i] = filename[i + namescrl]; } else { LOOP_L_N(i, STATUS_CHAR_LIMIT + pos) dispname[i] = ' '; LOOP_S_L_N(i, STATUS_CHAR_LIMIT + pos, STATUS_CHAR_LIMIT) dispname[i] = filename[i - (STATUS_CHAR_LIMIT + pos)]; } dispname[len] = '\0'; DWIN_Draw_Rectangle(1, Def_Background_Color, 8, 50, DWIN_WIDTH - 8, 80); const int8_t npos = (DWIN_WIDTH - STATUS_CHAR_LIMIT * MENU_CHR_W) / 2; DWINUI::Draw_String(npos, 60, dispname); if (-pos >= STATUS_CHAR_LIMIT) namescrl = 0; namescrl++; } else { DWIN_Draw_Rectangle(1, Def_Background_Color, 8, 50, DWIN_WIDTH - 8, 80); const int8_t npos = (DWIN_WIDTH - strlen(filename) * MENU_CHR_W) / 2; DWINUI::Draw_String(npos, 60, filename); } } } void CrealityDWINClass::Draw_Print_ProgressBar() { uint8_t printpercent = temp_val.sdprint ? card.percentDone() : (ui._get_progress() / 100); DWINUI::DRAW_IconWB(ICON, ICON_Bar, 15, 93); DWIN_Draw_Rectangle(1, Def_Barfill_Color, 16 + printpercent * 240 / 100, 93, 256, 113); DWIN_Draw_IntValue(true, true, 0, DWIN_FONT_MENU, GetColor(eeprom_settings.progress_percent, Def_PercentTxt_Color), Def_Background_Color, 3, 109, 133, printpercent); DWINUI::Draw_String(GetColor(eeprom_settings.progress_percent, Def_PercentTxt_Color), Def_Background_Color, 134, 133, F("%")); } #if ENABLED(USE_M73_REMAINING_TIME) void CrealityDWINClass::Draw_Print_ProgressRemain() { uint16_t remainingtime = ui.get_remaining_time(); DWIN_Draw_IntValue(true, true, 1, DWIN_FONT_MENU, GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 2, 176, 187, remainingtime / 3600); DWIN_Draw_IntValue(true, true, 1, DWIN_FONT_MENU, GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 2, 201, 187, (remainingtime % 3600) / 60); if (eeprom_settings.time_format_textual) { DWINUI::Draw_String(GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 193, 187, F("h")); DWINUI::Draw_String(GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 217, 187, F("m")); } else DWINUI::Draw_String(GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 193, 187, F(":")); } #endif void CrealityDWINClass::Draw_Print_ProgressElapsed() { duration_t elapsed = print_job_timer.duration(); DWIN_Draw_IntValue(true, true, 1, DWIN_FONT_MENU, GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 2, 42, 187, elapsed.value / 3600); DWIN_Draw_IntValue(true, true, 1, DWIN_FONT_MENU, GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 2, 67, 187, (elapsed.value % 3600) / 60); if (eeprom_settings.time_format_textual) { DWINUI::Draw_String(GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 59, 187, F("h")); DWINUI::Draw_String(GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 83, 187, F("m")); } else DWINUI::Draw_String(GetColor(eeprom_settings.progress_time, Def_PercentTxt_Color), Def_Background_Color, 59, 187, F(":")); } void CrealityDWINClass::Draw_PrintDone_confirm() { process = Confirm; popup = Complete; if (TERN0(HAS_GCODE_PREVIEW, Preview_Valid())) { Clear_Screen(); Draw_Title(GET_TEXT(MSG_PRINT_DONE)); DWIN_ICON_Show(0, 0, 1, 21, 100, 0x00); DWINUI::Draw_Button(BTN_Continue, 87, 300); } else { Draw_Print_Screen(); DWIN_Draw_Rectangle(1, Def_Background_Color, 8, 252, 263, 351); DWINUI::Draw_Button(BTN_Continue, 87, 283); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 86, 282, 187, 321); DWIN_Draw_Rectangle(0, GetColor(eeprom_settings.highlight_box, Def_Highlight_Color), 85, 281, 188, 322); } } void CrealityDWINClass::Draw_SD_Item(uint8_t item, uint8_t row) { if (item == 0) Draw_Menu_Item(0, ICON_Back, card.flag.workDirIsRoot ? GET_TEXT_F(MSG_BACK) : F("..")); else { card.getfilename_sorted(SD_ORDER(item - 1, card.get_num_Files())); char * const filename = card.longest_filename(); size_t max = MENU_CHAR_LIMIT; size_t pos = strlen(filename), len = pos; if (!card.flag.filenameIsDir) while (pos && filename[pos] != '.') pos--; len = pos; NOMORE(len, max); char name[len + 1]; memcpy(name, filename, len); if (pos > max) LOOP_S_L_N(i, len - 3, len) name[i] = '.'; name[len] = '\0'; Draw_Menu_Item(row, card.flag.filenameIsDir ? ICON_More : ICON_File, name); } } void CrealityDWINClass::Draw_SD_List(bool removed/*=false*/) { Clear_Screen(); Draw_Title("Select File"); selection = 0; scrollpos = 0; process = File; if (card.isMounted() && !removed) { LOOP_L_N(i, _MIN(card.get_num_Files() + 1, TROWS)) Draw_SD_Item(i, i); } else { Draw_Menu_Item(0, ICON_Back, GET_TEXT_F(MSG_BACK)); DWIN_Draw_Rectangle(1, Def_AlertBg_Color, 10, MBASE(3) - 10, DWIN_WIDTH - 10, MBASE(4)); DWINUI::Draw_String(font16x32, Def_AlertTxt_Color, Def_AlertBg_Color, ((DWIN_WIDTH) - 8 * 16) / 2, MBASE(3), GET_TEXT_F(MSG_NO_MEDIA)); } DWIN_Draw_Rectangle(1, GetColor(eeprom_settings.cursor_color, Def_Cursor_color), 0, MBASE(0) - 18, 14, MBASE(0) + 33); } void CrealityDWINClass::Draw_Status_Area(bool icons/*=false*/) { if (icons) DWIN_Draw_Rectangle(1, Def_Background_Color, 0, STATUS_Y, DWIN_WIDTH, DWIN_HEIGHT - 1); #if HAS_HOTEND static float hotend = -1; static int16_t hotendtarget = -1, flow = -1; if (icons) { hotend = -1; hotendtarget = -1; DWIN_ICON_Show(ICON, ICON_HotendTemp, 10, 383); DWINUI::Draw_String(DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 25 + 3 * STAT_CHR_W + 5, 384, F("/")); } if (thermalManager.temp_hotend[0].celsius != hotend) { hotend = thermalManager.temp_hotend[0].celsius; DWIN_Draw_IntValue(true, true, 0, DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 3, 28, 384, thermalManager.temp_hotend[0].celsius); DWIN_Draw_DegreeSymbol(GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), 25 + 3 * STAT_CHR_W + 5, 386); } if (thermalManager.temp_hotend[0].target != hotendtarget) { hotendtarget = thermalManager.temp_hotend[0].target; DWIN_Draw_IntValue(true, true, 0, DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 3, 25 + 4 * STAT_CHR_W + 6, 384, thermalManager.temp_hotend[0].target); DWIN_Draw_DegreeSymbol(GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), 25 + 4 * STAT_CHR_W + 39, 386); } if (icons) { flow = -1; DWIN_ICON_Show(ICON, ICON_StepE, 112, 417); DWINUI::Draw_String(DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 116 + 5 * STAT_CHR_W + 2, 417, F("%")); } if (planner.flow_percentage[0] != flow) { flow = planner.flow_percentage[0]; DWIN_Draw_IntValue(true, true, 0, DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 3, 116 + 2 * STAT_CHR_W, 417, planner.flow_percentage[0]); } #endif #if HAS_HEATED_BED static float bed = -1; static int16_t bedtarget = -1; if (icons) { bed = -1; bedtarget = -1; DWIN_ICON_Show(ICON, ICON_BedTemp, 10, 416); DWINUI::Draw_String(DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 25 + 3 * STAT_CHR_W + 5, 417, F("/")); } if (thermalManager.temp_bed.celsius != bed) { bed = thermalManager.temp_bed.celsius; DWIN_Draw_IntValue(true, true, 0, DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 3, 28, 417, thermalManager.temp_bed.celsius); DWIN_Draw_DegreeSymbol(GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), 25 + 3 * STAT_CHR_W + 5, 419); } if (thermalManager.temp_bed.target != bedtarget) { bedtarget = thermalManager.temp_bed.target; DWIN_Draw_IntValue(true, true, 0, DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 3, 25 + 4 * STAT_CHR_W + 6, 417, thermalManager.temp_bed.target); DWIN_Draw_DegreeSymbol(GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), 25 + 4 * STAT_CHR_W + 39, 419); } #endif #if HAS_FAN static uint8_t fan = -1; if (icons) { fan = -1; DWIN_ICON_Show(ICON, ICON_FanSpeed, 187, 383); } if (thermalManager.fan_speed[0] != fan) { fan = thermalManager.fan_speed[0]; DWIN_Draw_IntValue(true, true, 0, DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 3, 195 + 2 * STAT_CHR_W, 384, thermalManager.fan_speed[0]); } #endif #if HAS_ZOFFSET_ITEM static float offset = -1; #if HAS_MESH static bool _leveling_active = false, _printing_leveling_active = false; if (printingIsActive()) { _printing_leveling_active = ((planner.leveling_active && planner.leveling_active_at_z(current_position.z)) || _printing_leveling_active ); if ((_printing_leveling_active = (planner.leveling_active && planner.leveling_active_at_z(current_position.z)) && ui.get_blink())) DWIN_Draw_Rectangle(1, Def_SplitLine_Color, 186, 415, 205, 436); else DWIN_Draw_Rectangle(1, Def_Background_Color, 186, 415, 205, 436); } else { _leveling_active = (planner.leveling_active || _leveling_active); if ((_leveling_active = planner.leveling_active && ui.get_blink())) DWIN_Draw_Rectangle(1, Def_SplitLine_Color, 186, 415, 205, 436); else DWIN_Draw_Rectangle(1, Def_Background_Color, 186, 415, 205, 436); } DWIN_ICON_Show(ICON, ICON_Zoffset, 187, 416); #else if (icons) DWIN_ICON_Show(ICON, ICON_Zoffset, 187, 416); #endif if (temp_val.zoffsetvalue != offset || icons) { offset = temp_val.zoffsetvalue; DWINUI::Draw_Signed_Float(DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color),Def_Background_Color, 1, 2, 202, 417, temp_val.zoffsetvalue); } #endif static int16_t feedrate = -1; if (icons) { feedrate = -1; DWIN_ICON_Show(ICON, ICON_Speed, 113, 383); DWINUI::Draw_String(DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 116 + 5 * STAT_CHR_W + 2, 384, F("%")); } if (feedrate_percentage != feedrate) { feedrate = feedrate_percentage; DWIN_Draw_IntValue(true, true, 0, DWIN_FONT_STAT, GetColor(eeprom_settings.status_area_text, Def_Indicator_Color), Def_Background_Color, 3, 116 + 2 * STAT_CHR_W, 384, feedrate_percentage); } static float x = -1, y = -1, z = -1; static bool update_x = false, update_y = false, update_z = false; update_x = (current_position.x != x || axis_should_home(X_AXIS) || update_x); update_y = (current_position.y != y || axis_should_home(Y_AXIS) || update_y); update_z = (current_position.z != z || axis_should_home(Z_AXIS) || update_z); if (icons) { x = y = z = -1; DWIN_Draw_Line(GetColor(eeprom_settings.coordinates_split_line, Def_SplitLine_Color, true), 16, 450, 256, 450); DWIN_ICON_Show(ICON, ICON_MaxSpeedX, 10, 456); DWIN_ICON_Show(ICON, ICON_MaxSpeedY, 95, 456); DWIN_ICON_Show(ICON, ICON_MaxSpeedZ, 180, 456); } if (update_x) { x = current_position.x; if ((update_x = axis_should_home(X_AXIS) && ui.get_blink())) DWINUI::Draw_String(GetColor(eeprom_settings.coordinates_text, Def_Coordinate_Color), Def_Background_Color, 39, 459, F(" -?- ")); else DWINUI::Draw_Signed_Float(DWIN_FONT_MENU, GetColor(eeprom_settings.coordinates_text, Def_Coordinate_Color), Def_Background_Color, 3, 1, 31, 459, current_position.x); } if (update_y) { y = current_position.y; if ((update_y = axis_should_home(Y_AXIS) && ui.get_blink())) DWINUI::Draw_String(GetColor(eeprom_settings.coordinates_text, Def_Coordinate_Color), Def_Background_Color, 124, 459, F(" -?- ")); else DWINUI::Draw_Signed_Float(DWIN_FONT_MENU, GetColor(eeprom_settings.coordinates_text, Def_Coordinate_Color), Def_Background_Color, 3, 1, 116, 459, current_position.y); } if (update_z) { z = current_position.z; if ((update_z = axis_should_home(Z_AXIS) && ui.get_blink())) DWINUI::Draw_String(GetColor(eeprom_settings.coordinates_text, Def_Coordinate_Color), Def_Background_Color, 205, 459, F(" -?- ")); else DWINUI::Draw_Signed_Float(DWIN_FONT_MENU, GetColor(eeprom_settings.coordinates_text, Def_Coordinate_Color), Def_Background_Color, 3, 2, 197, 459, current_position.z); } DWIN_UpdateLCD(); } void CrealityDWINClass::Draw_Popup(FSTR_P const line1, FSTR_P const line2, FSTR_P const line3, uint8_t mode, uint8_t icon/*=0*/) { if (process != Confirm && process != Popup && process != Wait && process != Cancel) last_process = process; if ((process == Menu || process == Wait) && mode == Popup) last_selection = selection; process = mode; if (popup != PrintConfirm) { Clear_Screen(); DWIN_Draw_Rectangle(0, Def_Highlight_Color, 13, 59, 259, 346); DWIN_Draw_Rectangle(1, Def_PopupBg_color, 14, 60, 258, 345); } else DWIN_Draw_Rectangle(1, Def_Background_Color, 0, 0, DWIN_WIDTH, STATUS_Y - 1); const uint8_t ypos = (mode == Popup || mode == Confirm) ? 150 : (mode == Cancel) ? 200 : 230; if (icon > 0) DWIN_ICON_Show(ICON, icon, 101, 105); if (line1) DWINUI::Draw_String(Def_PopupTxt_Color, (272 - 8 * strlen_P(FTOP(line1))) / 2, ypos, line1); if (line2) DWINUI::Draw_String(Def_PopupTxt_Color, (272 - 8 * strlen_P(FTOP(line2))) / 2, ypos + 30, line2); if (line3) DWINUI::Draw_String(Def_PopupTxt_Color, (272 - 8 * strlen_P(FTOP(line3))) / 2, ypos + 60, line3); if (mode == Popup) { selection = 0; DWINUI::Draw_Button(BTN_Confirm, 26, 280); DWINUI::Draw_Button(BTN_Cancel, 146, 280); Popup_Select(); } else if (mode == Confirm) DWINUI::Draw_Button(BTN_Continue, 87, 280); else if (mode == Cancel) DWINUI::Draw_Button(BTN_Cancel, 87, 280); } void MarlinUI::kill_screen(FSTR_P const error, FSTR_P const) { CrealityDWIN.Draw_Popup(GET_TEXT_F(MSG_KILLED), error, GET_TEXT_F(MSG_SWITCH_PS_OFF), Wait, ICON_BLTouch); } void CrealityDWINClass::Popup_Select() { const uint16_t c1 = (selection == 0) ? GetColor(eeprom_settings.highlight_box, Def_Highlight_Color) : Def_Background_Color, c2 = (selection == 0) ? Def_Background_Color : GetColor(eeprom_settings.highlight_box, Def_Highlight_Color); DWIN_Draw_Rectangle(0, c1, 25, 279, 126, 318); DWIN_Draw_Rectangle(0, c1, 24, 278, 127, 319); DWIN_Draw_Rectangle(0, c2, 145, 279, 246, 318); DWIN_Draw_Rectangle(0, c2, 144, 278, 247, 319); } void CrealityDWINClass::Update_Status_Bar(bool refresh/*=false*/) { static bool new_msg; static uint8_t msgscrl = 0; static char lastmsg[128]; if (strcmp(lastmsg, statusmsg) != 0 || refresh) { strcpy(lastmsg, statusmsg); msgscrl = 0; new_msg = true; } size_t len = strlen(statusmsg); int8_t pos = len; if (pos > STATUS_CHAR_LIMIT) { pos -= msgscrl; len = _MIN((size_t)pos, (size_t)STATUS_CHAR_LIMIT); char dispmsg[len + 1]; if (pos >= 0) { LOOP_L_N(i, len) dispmsg[i] = statusmsg[i + msgscrl]; } else { LOOP_L_N(i, STATUS_CHAR_LIMIT + pos) dispmsg[i] = ' '; LOOP_S_L_N(i, STATUS_CHAR_LIMIT + pos, STATUS_CHAR_LIMIT) dispmsg[i] = statusmsg[i - (STATUS_CHAR_LIMIT + pos)]; } dispmsg[len] = '\0'; if (process == Print) { DWIN_Draw_Rectangle(1, Def_StatusBg_Color, 8, 214, DWIN_WIDTH - 8, 238); const int8_t npos = (DWIN_WIDTH - STATUS_CHAR_LIMIT * MENU_CHR_W) / 2; DWINUI::Draw_String(GetColor(eeprom_settings.status_bar_text, Def_StatusTxt_Color), Def_StatusBg_Color, npos, 219, dispmsg); } else { DWIN_Draw_Rectangle(1, Def_StatusBg_Color, 8, 352, DWIN_WIDTH - 8, 376); const int8_t npos = (DWIN_WIDTH - STATUS_CHAR_LIMIT * MENU_CHR_W) / 2; DWINUI::Draw_String(GetColor(eeprom_settings.status_bar_text, Def_StatusTxt_Color), Def_StatusBg_Color, npos, 357, dispmsg); } if (-pos >= STATUS_CHAR_LIMIT) msgscrl = 0; msgscrl++; } else { if (new_msg) { new_msg = false; if (process == Print) { DWIN_Draw_Rectangle(1, Def_StatusBg_Color, 8, 214, DWIN_WIDTH - 8, 238); const int8_t npos = (DWIN_WIDTH - strlen(statusmsg) * MENU_CHR_W) / 2; DWINUI::Draw_String(GetColor(eeprom_settings.status_bar_text, Def_StatusTxt_Color), Def_StatusBg_Color, npos, 219, statusmsg); } else { DWIN_Draw_Rectangle(1, Def_StatusBg_Color, 8, 352, DWIN_WIDTH - 8, 376); const int8_t npos = (DWIN_WIDTH - strlen(statusmsg) * MENU_CHR_W) / 2; DWINUI::Draw_String(GetColor(eeprom_settings.status_bar_text, Def_StatusTxt_Color), Def_StatusBg_Color, npos, 357, statusmsg); } } } } #if HAS_HOSTACTION_MENUS void CrealityDWINClass::Draw_Keyboard(bool restrict, bool numeric, uint8_t selected, bool uppercase/*=false*/, bool lock/*=false*/) { process = Keyboard; keyboard_restrict = restrict; numeric_keyboard = numeric; DWIN_Draw_Rectangle(0, Def_SplitLine_Color, 0, KEY_Y_START, DWIN_WIDTH-2, DWIN_HEIGHT-2); DWIN_Draw_Rectangle(1, Def_Background_Color, 1, KEY_Y_START+1, DWIN_WIDTH-3, DWIN_HEIGHT-3); LOOP_L_N(i, 36) Draw_Keys(i, (i == selected), uppercase, lock); } void CrealityDWINClass::Draw_Keys(uint8_t index, bool selected, bool uppercase/*=false*/, bool lock/*=false*/) { const char *keys; if (numeric_keyboard) keys = "1234567890&<>() {}[]*\"\':;!?"; else keys = (uppercase) ? "QWERTYUIOPASDFGHJKLZXCVBNM" : "qwertyuiopasdfghjklzxcvbnm"; #define KEY_X1(x) x*KEY_WIDTH+KEY_INSET+KEY_PADDING #define KEY_X2(x) (x+1) * KEY_WIDTH+KEY_INSET-KEY_PADDING #define KEY_Y1(y) KEY_Y_START+KEY_INSET+KEY_PADDING+y*KEY_HEIGHT #define KEY_Y2(y) KEY_Y_START+KEY_INSET-KEY_PADDING+(y+1) * KEY_HEIGHT const uint8_t rowCount[3] = { 10, 9, 7 }; const float xOffset[3] = { 0, 0.5f * KEY_WIDTH, 1.5f * KEY_WIDTH }; if (index < 28) { if (index == 19) { DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(0), KEY_Y1(2), KEY_X2(0) + xOffset[1], KEY_Y2(2)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(0) + 1, KEY_Y1(2) + 1, KEY_X2(0) + xOffset[1] - 1, KEY_Y2(2) - 1); if (!numeric_keyboard) { if (lock) { DWIN_Draw_Line(Def_Selected_Color, KEY_X1(0) + 17, KEY_Y1(2) + 16, KEY_X1(0) + 25, KEY_Y1(2) + 8); DWIN_Draw_Line(Def_Selected_Color, KEY_X1(0) + 17, KEY_Y1(2) + 16, KEY_X1(0) + 9, KEY_Y1(2) + 8); } else { DWIN_Draw_Line((uppercase) ? Def_Selected_Color : Def_Text_Color, KEY_X1(0) + 17, KEY_Y1(2) + 8, KEY_X1(0) + 25, KEY_Y1(2) + 16); DWIN_Draw_Line((uppercase) ? Def_Selected_Color : Def_Text_Color, KEY_X1(0) + 17, KEY_Y1(2) + 8, KEY_X1(0) + 9, KEY_Y1(2) + 16); } } } else if (index == 27) { DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(7) + xOffset[2], KEY_Y1(2), KEY_X2(9), KEY_Y2(2)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(7) + xOffset[2] + 1, KEY_Y1(2) + 1, KEY_X2(9) - 1, KEY_Y2(2) - 1); DWINUI::Draw_String(Color_Red, KEY_X1(7) + xOffset[2] + 3, KEY_Y1(2) + 5, F("<--")); } else { if (index > 19) index--; if (index > 27) index--; uint8_t y, x; if (index < rowCount[0]) y = 0, x = index; else if (index < (rowCount[0] + rowCount[1])) y = 1, x = index-rowCount[0]; else y = 2, x = index-(rowCount[0] + rowCount[1]); const char keyStr[2] = {keys[(y > 0) * rowCount[0] + (y > 1) * rowCount[1] + x], '\0'}; DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(x) + xOffset[y], KEY_Y1(y), KEY_X2(x) + xOffset[y], KEY_Y2(y)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(x) + xOffset[y] + 1, KEY_Y1(y) + 1, KEY_X2(x) + xOffset[y] - 1, KEY_Y2(y) - 1); DWINUI::Draw_String(KEY_X1(x) + xOffset[y] + 5, KEY_Y1(y) + 5, keyStr); if (keyboard_restrict && numeric_keyboard && index > 9) { DWIN_Draw_Line(Color_Light_Red, KEY_X1(x) + xOffset[y] + 1, KEY_Y1(y) + 1, KEY_X2(x) + xOffset[y] - 1, KEY_Y2(y) - 1); DWIN_Draw_Line(Color_Light_Red, KEY_X1(x) + xOffset[y] + 1, KEY_Y2(y) - 1, KEY_X2(x) + xOffset[y] - 1, KEY_Y1(y) + 1); } } } else { switch (index) { case 28: DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(0), KEY_Y1(3), KEY_X2(0) + xOffset[1], KEY_Y2(3)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(0) + 1, KEY_Y1(3) + 1, KEY_X2(0) + xOffset[1] - 1, KEY_Y2(3) - 1); DWINUI::Draw_String(KEY_X1(0) - 1, KEY_Y1(3) + 5, F("?123")); break; case 29: DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(1) + xOffset[1], KEY_Y1(3), KEY_X2(1) + xOffset[1], KEY_Y2(3)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(1) + xOffset[1] + 1, KEY_Y1(3) + 1, KEY_X2(1) + xOffset[1] - 1, KEY_Y2(3) - 1); DWINUI::Draw_String(KEY_X1(1) + xOffset[1] + 5, KEY_Y1(3) + 5, F("-")); break; case 30: DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(2) + xOffset[1], KEY_Y1(3), KEY_X2(2) + xOffset[1], KEY_Y2(3)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(2) + xOffset[1] + 1, KEY_Y1(3) + 1, KEY_X2(2) + xOffset[1] - 1, KEY_Y2(3) - 1); DWINUI::Draw_String(KEY_X1(2) + xOffset[1] + 5, KEY_Y1(3) + 5, F("_")); break; case 31: DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(3) + xOffset[1], KEY_Y1(3), KEY_X2(5) + xOffset[1], KEY_Y2(3)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(3) + xOffset[1] + 1, KEY_Y1(3) + 1, KEY_X2(5) + xOffset[1] - 1, KEY_Y2(3) - 1); DWINUI::Draw_String(KEY_X1(3) + xOffset[1] + 14, KEY_Y1(3) + 5, F("Space")); if (keyboard_restrict) { DWIN_Draw_Line(Color_Light_Red, KEY_X1(3) + xOffset[1] + 1, KEY_Y1(3) + 1, KEY_X2(5) + xOffset[1] - 1, KEY_Y2(3) - 1); DWIN_Draw_Line(Color_Light_Red, KEY_X1(3) + xOffset[1] + 1, KEY_Y2(3) - 1, KEY_X2(5) + xOffset[1] - 1, KEY_Y1(3) + 1); } break; case 32: DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(6) + xOffset[1], KEY_Y1(3), KEY_X2(6) + xOffset[1], KEY_Y2(3)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(6) + xOffset[1] + 1, KEY_Y1(3) + 1, KEY_X2(6) + xOffset[1] - 1, KEY_Y2(3) - 1); DWINUI::Draw_String(KEY_X1(6) + xOffset[1] + 7, KEY_Y1(3) + 5, F(".")); if (keyboard_restrict) { DWIN_Draw_Line(Color_Light_Red, KEY_X1(6) + xOffset[1] + 1, KEY_Y1(3) + 1, KEY_X2(6) + xOffset[1] - 1, KEY_Y2(3) - 1); DWIN_Draw_Line(Color_Light_Red, KEY_X1(6) + xOffset[1] + 1, KEY_Y2(3) - 1, KEY_X2(6) + xOffset[1] - 1, KEY_Y1(3) + 1); } break; case 33: DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(7) + xOffset[1], KEY_Y1(3), KEY_X2(7) + xOffset[1], KEY_Y2(3)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(7) + xOffset[1] + 1, KEY_Y1(3) + 1, KEY_X2(7) + xOffset[1] - 1, KEY_Y2(3) - 1); DWINUI::Draw_String(KEY_X1(7) + xOffset[1] + 4, KEY_Y1(3) + 5, F("/")); if (keyboard_restrict) { DWIN_Draw_Line(Color_Light_Red, KEY_X1(7) + xOffset[1] + 1, KEY_Y1(3) + 1, KEY_X2(7) + xOffset[1] - 1, KEY_Y2(3) - 1); DWIN_Draw_Line(Color_Light_Red, KEY_X1(7) + xOffset[1] + 1, KEY_Y2(3) - 1, KEY_X2(7) + xOffset[1] - 1, KEY_Y1(3) + 1); } break; case 34: DWIN_Draw_Rectangle(0, Color_Light_Blue, KEY_X1(7) + xOffset[2], KEY_Y1(3), KEY_X2(9), KEY_Y2(3)); DWIN_Draw_Rectangle(0, (selected) ? Def_Selected_Color : Def_Background_Color, KEY_X1(7) + xOffset[2] + 1, KEY_Y1(3) + 1, KEY_X2(9) - 1, KEY_Y2(3) - 1); DWINUI::Draw_String(Color_Cyan, KEY_X1(7) + xOffset[2] + 3, KEY_Y1(3) + 5, F("-->")); break; } } } #endif // HAS_HOSTACTION_MENUS /* Menu Item Config */ void CrealityDWINClass::Menu_Item_Handler(uint8_t menu, uint8_t item, bool draw/*=true*/) { const uint8_t row = item - scrollpos; #if HAS_LEVELING static bool level_state; #endif #if HAS_PREHEAT #define PREHEAT_BACK 0 #define PREHEAT_SUBMENU_HOTEND (PREHEAT_BACK + ENABLED(HAS_HOTEND)) #define PREHEAT_SUBMENU_BED (PREHEAT_SUBMENU_HOTEND + ENABLED(HAS_HEATED_BED)) #define PREHEAT_SUBMENU_FAN (PREHEAT_SUBMENU_BED + ENABLED(HAS_FAN)) #define PREHEAT_SUBMENU_TOTAL PREHEAT_SUBMENU_FAN auto preheat_submenu = [&](const int index, const uint8_t item, const uint8_t sel) { switch (item) { case PREHEAT_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(TempMenu, sel); break; #if HAS_HOTEND case PREHEAT_SUBMENU_HOTEND: if (draw) { Draw_Menu_Item(row, ICON_SetEndTemp, F("Hotend")); Draw_Float(ui.material_preset[index].hotend_temp, row, false, 1); } else Modify_Value(ui.material_preset[index].hotend_temp, MIN_E_TEMP, MAX_E_TEMP, 1); break; #endif #if HAS_HEATED_BED case PREHEAT_SUBMENU_BED: if (draw) { Draw_Menu_Item(row, ICON_SetBedTemp, F("Bed")); Draw_Float(ui.material_preset[index].bed_temp, row, false, 1); } else Modify_Value(ui.material_preset[index].bed_temp, MIN_BED_TEMP, MAX_BED_TEMP, 1); break; #endif #if HAS_FAN case PREHEAT_SUBMENU_FAN: if (draw) { Draw_Menu_Item(row, ICON_FanSpeed, GET_TEXT_F(MSG_FAN_SPEED)); Draw_Float(ui.material_preset[index].fan_speed, row, false, 1); } else Modify_Value(ui.material_preset[index].fan_speed, MIN_FAN_SPEED, MAX_FAN_SPEED, 1); break; #endif } }; #endif switch (menu) { case Prepare: #define PREPARE_BACK 0 #define PREPARE_MOVE (PREPARE_BACK + 1) #define PREPARE_DISABLE (PREPARE_MOVE + 1) #define PREPARE_HOME (PREPARE_DISABLE + 1) #define PREPARE_MANUALLEVEL (PREPARE_HOME + 1) #define PREPARE_ZOFFSET (PREPARE_MANUALLEVEL + ENABLED(HAS_ZOFFSET_ITEM)) #define PREPARE_PREHEAT (PREPARE_ZOFFSET + ENABLED(HAS_PREHEAT)) #define PREPARE_COOLDOWN (PREPARE_PREHEAT + EITHER(HAS_HOTEND, HAS_HEATED_BED)) #define PREPARE_CHANGEFIL (PREPARE_COOLDOWN + ENABLED(ADVANCED_PAUSE_FEATURE)) #define PREPARE_ACTIONCOMMANDS (PREPARE_CHANGEFIL + ENABLED(HAS_HOSTACTION_MENUS)) #define PREPARE_CUSTOM_MENU (PREPARE_ACTIONCOMMANDS + ENABLED(HAS_CUSTOM_MENU)) #define PREPARE_TOTAL PREPARE_ACTIONCOMMANDS switch (item) { case PREPARE_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Main_Menu(1); break; case PREPARE_MOVE: if (draw) Draw_Menu_Item(row, ICON_Axis, GET_TEXT_F(MSG_MOVE_AXIS), nullptr, true); else Draw_Menu(Move); break; case PREPARE_DISABLE: if (draw) Draw_Menu_Item(row, ICON_CloseMotor, GET_TEXT_F(MSG_DISABLE_STEPPERS)); else queue.inject(F("M84")); break; case PREPARE_HOME: if (draw) Draw_Menu_Item(row, ICON_SetHome, GET_TEXT_F(MSG_HOMING), nullptr, true); else Draw_Menu(HomeMenu); break; case PREPARE_MANUALLEVEL: if (draw) Draw_Menu_Item(row, ICON_PrintSize, GET_TEXT_F(MSG_BED_TRAMMING_MANUAL), nullptr, true); else { if (axes_should_home()) { Popup_Handler(Home); gcode.home_all_axes(true); } #if HAS_LEVELING level_state = planner.leveling_active; set_bed_leveling_enabled(false); #endif Draw_Menu(ManualLevel); } break; #if HAS_ZOFFSET_ITEM case PREPARE_ZOFFSET: if (draw) Draw_Menu_Item(row, ICON_Zoffset, F("Z-Offset"), nullptr, true); else { #if HAS_LEVELING level_state = planner.leveling_active; set_bed_leveling_enabled(false); #endif Draw_Menu(ZOffset); } break; #endif #if HAS_PREHEAT case PREPARE_PREHEAT: if (draw) Draw_Menu_Item(row, ICON_Temperature, F("Preheat"), nullptr, true); else Draw_Menu(Preheat); break; #endif #if HAS_HOTEND || HAS_HEATED_BED case PREPARE_COOLDOWN: if (draw) Draw_Menu_Item(row, ICON_Cool, GET_TEXT_F(MSG_COOLDOWN)); else { thermalManager.cooldown(); Update_Status(GET_TEXT(MSG_COOLDOWN)); } break; #endif #if HAS_HOSTACTION_MENUS case PREPARE_ACTIONCOMMANDS: if (draw) Draw_Menu_Item(row, ICON_SetHome, F("Host Actions"), nullptr, true); else Draw_Menu(HostActions); break; #endif #if HAS_CUSTOM_MENU case PREPARE_CUSTOM_MENU: #ifndef CUSTOM_MENU_CONFIG_TITLE #define CUSTOM_MENU_CONFIG_TITLE "Custom Commands" #endif if (draw) Draw_Menu_Item(row, ICON_Version, F(CUSTOM_MENU_CONFIG_TITLE)); else Draw_Menu(MenuCustom); break; #endif #if ENABLED(ADVANCED_PAUSE_FEATURE) case PREPARE_CHANGEFIL: if (draw) { Draw_Menu_Item(row, ICON_ResumeEEPROM, GET_TEXT_F(MSG_FILAMENTCHANGE) #if ENABLED(FILAMENT_LOAD_UNLOAD_GCODES) , nullptr, true #endif ); } else { #if ENABLED(FILAMENT_LOAD_UNLOAD_GCODES) Draw_Menu(ChangeFilament); #else if (thermalManager.temp_hotend[0].target < thermalManager.extrude_min_temp) Popup_Handler(ETemp); else { if (thermalManager.temp_hotend[0].is_below_target(-2)) { Popup_Handler(Heating); thermalManager.wait_for_hotend(0); } Popup_Handler(FilChange); sprintf_P(cmd, PSTR("M600 B1 R%i"), thermalManager.temp_hotend[0].target); gcode.process_subcommands_now(cmd); } #endif } break; #endif } break; case HomeMenu: #define HOME_BACK 0 #define HOME_ALL (HOME_BACK + 1) #define HOME_X (HOME_ALL + 1) #define HOME_Y (HOME_X + 1) #define HOME_Z (HOME_Y + 1) #define HOME_SET (HOME_Z + 1) #define HOME_TOTAL HOME_SET switch (item) { case HOME_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Prepare, PREPARE_HOME); break; case HOME_ALL: if (draw) Draw_Menu_Item(row, ICON_Homing, GET_TEXT_F(MSG_AUTO_HOME)); else { Popup_Handler(Home); gcode.home_all_axes(true); Redraw_Menu(); } break; case HOME_X: if (draw) Draw_Menu_Item(row, ICON_MoveX, GET_TEXT_F(MSG_AUTO_HOME_X)); else { Popup_Handler(Home); gcode.process_subcommands_now(F("G28 X")); planner.synchronize(); Redraw_Menu(); } break; case HOME_Y: if (draw) Draw_Menu_Item(row, ICON_MoveY, GET_TEXT_F(MSG_AUTO_HOME_Y)); else { Popup_Handler(Home); gcode.process_subcommands_now(F("G28 Y")); planner.synchronize(); Redraw_Menu(); } break; case HOME_Z: if (draw) Draw_Menu_Item(row, ICON_MoveZ, GET_TEXT_F(MSG_AUTO_HOME_Z)); else { Popup_Handler(Home); gcode.process_subcommands_now(F("G28 Z")); planner.synchronize(); Redraw_Menu(); } break; case HOME_SET: if (draw) Draw_Menu_Item(row, ICON_SetHome, GET_TEXT_F(MSG_SET_HOME_OFFSETS)); else { gcode.process_subcommands_now(F("G92X0Y0Z0")); AudioFeedback(); } break; } break; case Move: #define MOVE_BACK 0 #define MOVE_X (MOVE_BACK + 1) #define MOVE_Y (MOVE_X + 1) #define MOVE_Z (MOVE_Y + 1) #define MOVE_E (MOVE_Z + ENABLED(HAS_HOTEND)) #define MOVE_P (MOVE_E + ENABLED(HAS_BED_PROBE)) #define MOVE_LIVE (MOVE_P + 1) #define MOVE_TOTAL MOVE_LIVE switch (item) { case MOVE_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else { #if HAS_BED_PROBE temp_val.probe_deployed = false; probe.set_deployed(temp_val.probe_deployed); #endif Draw_Menu(Prepare, PREPARE_MOVE); } break; case MOVE_X: if (draw) { Draw_Menu_Item(row, ICON_MoveX, GET_TEXT_F(MSG_MOVE_X)); Draw_Float(current_position.x, row, false); } else Modify_Value(current_position.x, X_MIN_POS, X_MAX_POS, 10); break; case MOVE_Y: if (draw) { Draw_Menu_Item(row, ICON_MoveY, GET_TEXT_F(MSG_MOVE_Y)); Draw_Float(current_position.y, row); } else Modify_Value(current_position.y, Y_MIN_POS, Y_MAX_POS, 10); break; case MOVE_Z: if (draw) { Draw_Menu_Item(row, ICON_MoveZ, GET_TEXT_F(MSG_MOVE_Z)); Draw_Float(current_position.z, row); } else Modify_Value(current_position.z, Z_MIN_POS, Z_MAX_POS, 10); break; #if HAS_HOTEND case MOVE_E: if (draw) { Draw_Menu_Item(row, ICON_Extruder, GET_TEXT_F(MSG_MOVE_E)); current_position.e = 0; sync_plan_position(); Draw_Float(current_position.e, row); } else { if (thermalManager.temp_hotend[0].target < thermalManager.extrude_min_temp) Popup_Handler(ETemp); else { if (thermalManager.temp_hotend[0].is_below_target(-2)) { Popup_Handler(Heating); thermalManager.wait_for_hotend(0); Redraw_Menu(); } current_position.e = 0; sync_plan_position(); Modify_Value(current_position.e, -500, 500, 10); } } break; #endif // HAS_HOTEND #if HAS_BED_PROBE case MOVE_P: if (draw) { Draw_Menu_Item(row, ICON_ProbeDeploy, GET_TEXT_F(MSG_MANUAL_DEPLOY)); Draw_Checkbox(row, temp_val.probe_deployed); } else { temp_val.probe_deployed = !temp_val.probe_deployed; probe.set_deployed(temp_val.probe_deployed); Draw_Checkbox(row, temp_val.probe_deployed); } break; #endif case MOVE_LIVE: if (draw) { Draw_Menu_Item(row, ICON_Axis, F("Live Movement")); Draw_Checkbox(row, temp_val.livemove); } else { temp_val.livemove = !temp_val.livemove; Draw_Checkbox(row, temp_val.livemove); } break; } break; case ManualLevel: #define MLEVEL_BACK 0 #define MLEVEL_PROBE (MLEVEL_BACK + ENABLED(HAS_BED_PROBE)) #define MLEVEL_FL (MLEVEL_PROBE + 1) #define MLEVEL_BL (MLEVEL_FL + 1) #define MLEVEL_BR (MLEVEL_BL + 1) #define MLEVEL_FR (MLEVEL_BR + 1) #define MLEVEL_C (MLEVEL_FR + 1) #define MLEVEL_ZPOS (MLEVEL_C + 1) #define MLEVEL_TOTAL MLEVEL_ZPOS static float mlev_z_pos = 0; static bool use_probe = false; switch (item) { case MLEVEL_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else { TERN_(HAS_LEVELING, set_bed_leveling_enabled(level_state)); Draw_Menu(Prepare, PREPARE_MANUALLEVEL); } break; #if HAS_BED_PROBE case MLEVEL_PROBE: if (draw) { Draw_Menu_Item(row, ICON_Zoffset, F("Use Probe")); Draw_Checkbox(row, use_probe); } else { use_probe = !use_probe; Draw_Checkbox(row, use_probe); if (use_probe) { Popup_Handler(Level); do_z_clearance(Z_HOMING_HEIGHT); temp_val.corner_avg = 0; #define PROBE_X_MIN _MAX(temp_val.corner_pos, PROBING_MARGIN, MESH_MIN_X) - probe.offset.x #define PROBE_X_MAX _MIN(X_BED_SIZE - temp_val.corner_pos, X_BED_SIZE - PROBING_MARGIN, MESH_MAX_X) - probe.offset.x #define PROBE_Y_MIN _MAX(temp_val.corner_pos, PROBING_MARGIN, MESH_MIN_Y) - probe.offset.y #define PROBE_Y_MAX _MIN(Y_BED_SIZE - temp_val.corner_pos, Y_BED_SIZE - PROBING_MARGIN, MESH_MAX_Y) - probe.offset.y temp_val.zval = probe.probe_at_point(PROBE_X_MIN, PROBE_Y_MIN, PROBE_PT_RAISE, 0, false); const char * MSG_UNREACHABLE = "Position unreachable. Check Probe Offsets and Bed Screw Inset."; if (isnan(temp_val.zval)) { Update_Status(MSG_UNREACHABLE); Redraw_Menu(); } temp_val.corner_avg += temp_val.zval; temp_val.zval = probe.probe_at_point(PROBE_X_MIN, PROBE_Y_MAX, PROBE_PT_RAISE, 0, false); if (isnan(temp_val.zval)) { Update_Status(MSG_UNREACHABLE); Redraw_Menu(); } temp_val.corner_avg += temp_val.zval; temp_val.zval = probe.probe_at_point(PROBE_X_MAX, PROBE_Y_MAX, PROBE_PT_RAISE, 0, false); if (isnan(temp_val.zval)) { Update_Status(MSG_UNREACHABLE); Redraw_Menu(); } temp_val.corner_avg += temp_val.zval; temp_val.zval = probe.probe_at_point(PROBE_X_MAX, PROBE_Y_MIN, PROBE_PT_STOW, 0, false); if (isnan(temp_val.zval)) { Update_Status(MSG_UNREACHABLE); Redraw_Menu(); } temp_val.corner_avg += temp_val.zval; temp_val.corner_avg /= 4; Redraw_Menu(); } } break; #endif case MLEVEL_FL: if (draw) Draw_Menu_Item(row, ICON_AxisBL, GET_TEXT_F(MSG_LEVBED_FL)); else { Popup_Handler(MoveWait); if (use_probe) { #if HAS_BED_PROBE sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s"), dtostrf(PROBE_X_MIN, 1, 3, str_1), dtostrf(PROBE_Y_MIN, 1, 3, str_2)); gcode.process_subcommands_now(cmd); planner.synchronize(); Popup_Handler(ManualProbing); #endif } else { sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s\nG0 F300 Z%s"), dtostrf(temp_val.corner_pos, 1, 3, str_1), dtostrf(temp_val.corner_pos, 1, 3, str_2), dtostrf(mlev_z_pos, 1, 3, str_3)); gcode.process_subcommands_now(cmd); planner.synchronize(); Redraw_Menu(); } } break; case MLEVEL_BL: if (draw) Draw_Menu_Item(row, ICON_AxisTL, GET_TEXT_F(MSG_LEVBED_BL)); else { Popup_Handler(MoveWait); if (use_probe) { #if HAS_BED_PROBE sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s"), dtostrf(PROBE_X_MIN, 1, 3, str_1), dtostrf(PROBE_Y_MAX, 1, 3, str_2)); gcode.process_subcommands_now(cmd); planner.synchronize(); Popup_Handler(ManualProbing); #endif } else { sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s\nG0 F300 Z%s"), dtostrf(temp_val.corner_pos, 1, 3, str_1), dtostrf(Y_BED_SIZE - temp_val.corner_pos, 1, 3, str_2), dtostrf(mlev_z_pos, 1, 3, str_3)); gcode.process_subcommands_now(cmd); planner.synchronize(); Redraw_Menu(); } } break; case MLEVEL_BR: if (draw) Draw_Menu_Item(row, ICON_AxisTR, GET_TEXT_F(MSG_LEVBED_BR)); else { Popup_Handler(MoveWait); if (use_probe) { #if HAS_BED_PROBE sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s"), dtostrf(PROBE_X_MAX, 1, 3, str_1), dtostrf(PROBE_Y_MAX, 1, 3, str_2)); gcode.process_subcommands_now(cmd); planner.synchronize(); Popup_Handler(ManualProbing); #endif } else { sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s\nG0 F300 Z%s"), dtostrf(X_BED_SIZE - temp_val.corner_pos, 1, 3, str_1), dtostrf(Y_BED_SIZE - temp_val.corner_pos, 1, 3, str_2), dtostrf(mlev_z_pos, 1, 3, str_3)); gcode.process_subcommands_now(cmd); planner.synchronize(); Redraw_Menu(); } } break; case MLEVEL_FR: if (draw) Draw_Menu_Item(row, ICON_AxisBR, GET_TEXT_F(MSG_LEVBED_FR)); else { Popup_Handler(MoveWait); if (use_probe) { #if HAS_BED_PROBE sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s"), dtostrf(PROBE_X_MAX, 1, 3, str_1), dtostrf(PROBE_Y_MIN, 1, 3, str_2)); gcode.process_subcommands_now(cmd); planner.synchronize(); Popup_Handler(ManualProbing); #endif } else { sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s\nG0 F300 Z%s"), dtostrf(X_BED_SIZE - temp_val.corner_pos, 1, 3, str_1), dtostrf(temp_val.corner_pos, 1, 3, str_2), dtostrf(mlev_z_pos, 1, 3, str_3)); gcode.process_subcommands_now(cmd); planner.synchronize(); Redraw_Menu(); } } break; case MLEVEL_C: if (draw) Draw_Menu_Item(row, ICON_AxisC, GET_TEXT_F(MSG_LEVBED_C)); else { Popup_Handler(MoveWait); if (use_probe) { #if HAS_BED_PROBE sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s"), dtostrf((PROBE_X_MIN + PROBE_X_MAX) / 2.0f, 1, 3, str_1), dtostrf((PROBE_Y_MIN + PROBE_Y_MAX) / 2.0f, 1, 3, str_2)); gcode.process_subcommands_now(cmd); planner.synchronize(); Popup_Handler(ManualProbing); #endif } else { sprintf_P(cmd, PSTR("G0 F4000\nG0 Z10\nG0 X%s Y%s\nG0 F300 Z%s"), dtostrf(X_BED_SIZE / 2.0f, 1, 3, str_1), dtostrf(Y_BED_SIZE / 2.0f, 1, 3, str_2), dtostrf(mlev_z_pos, 1, 3, str_3)); gcode.process_subcommands_now(cmd); planner.synchronize(); Redraw_Menu(); } } break; case MLEVEL_ZPOS: if (draw) { Draw_Menu_Item(row, ICON_SetZOffset, GET_TEXT_F(MSG_MOVE_Z)); Draw_Float(mlev_z_pos, row, false, 100); } else Modify_Value(mlev_z_pos, 0, MAX_Z_OFFSET, 100); break; } break; #if HAS_ZOFFSET_ITEM case ZOffset: #define ZOFFSET_BACK 0 #define ZOFFSET_HOME (ZOFFSET_BACK + 1) #define ZOFFSET_MODE (ZOFFSET_HOME + 1) #define ZOFFSET_OFFSET (ZOFFSET_MODE + 1) #define ZOFFSET_UP (ZOFFSET_OFFSET + 1) #define ZOFFSET_DOWN (ZOFFSET_UP + 1) #define ZOFFSET_SAVE (ZOFFSET_DOWN + ENABLED(EEPROM_SETTINGS)) #define ZOFFSET_TOTAL ZOFFSET_SAVE switch (item) { case ZOFFSET_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else { temp_val.zoffsetmode = 0; #if !HAS_BED_PROBE gcode.process_subcommands_now(F("M211 S1")); // Soft end-stops #endif TERN_(HAS_LEVELING, set_bed_leveling_enabled(level_state)); Draw_Menu(Prepare, PREPARE_ZOFFSET); } break; case ZOFFSET_HOME: if (draw) Draw_Menu_Item(row, ICON_Homing, GET_TEXT_F(MSG_AUTO_HOME_Z)); else { Popup_Handler(Home); gcode.process_subcommands_now(F("G28 Z")); Popup_Handler(MoveWait); #if ENABLED(Z_SAFE_HOMING) planner.synchronize(); sprintf_P(cmd, PSTR("G0 F4000 X%s Y%s"), dtostrf(Z_SAFE_HOMING_X_POINT, 1, 3, str_1), dtostrf(Z_SAFE_HOMING_Y_POINT, 1, 3, str_2)); gcode.process_subcommands_now(cmd); #else sprintf_P(cmd, PSTR("G0 F4000 X%s Y%s"), dtostrf((X_BED_SIZE + X_MIN_POS) / 2.0f, 1, 3, str_1), dtostrf((Y_BED_SIZE + Y_MIN_POS) / 2.0f, 1, 3, str_2)); gcode.process_subcommands_now(cmd); #endif gcode.process_subcommands_now(F("G0 F300 Z0")); planner.synchronize(); Redraw_Menu(); } break; case ZOFFSET_MODE: if (draw) { Draw_Menu_Item(row, ICON_Zoffset, F("Live Adjustment")); Draw_Option(temp_val.zoffsetmode, zoffset_modes, row); } else Modify_Option(temp_val.zoffsetmode, zoffset_modes, 2); break; case ZOFFSET_OFFSET: if (draw) { Draw_Menu_Item(row, ICON_SetZOffset, F("Z Offset")); Draw_Float(temp_val.zoffsetvalue, row, false, 100); } else Modify_Value(temp_val.zoffsetvalue, MIN_Z_OFFSET, MAX_Z_OFFSET, 100); break; case ZOFFSET_UP: if (draw) Draw_Menu_Item(row, ICON_Axis, F("Microstep Up")); else { if (temp_val.zoffsetvalue < MAX_Z_OFFSET) { if (temp_val.zoffsetmode != 0) { gcode.process_subcommands_now(F("M290 Z0.01")); planner.synchronize(); } temp_val.zoffsetvalue += 0.01; Draw_Float(temp_val.zoffsetvalue, row - 1, false, 100); } } break; case ZOFFSET_DOWN: if (draw) Draw_Menu_Item(row, ICON_AxisD, F("Microstep Down")); else { if (temp_val.zoffsetvalue > MIN_Z_OFFSET) { if (temp_val.zoffsetmode != 0) { gcode.process_subcommands_now(F("M290 Z-0.01")); planner.synchronize(); } temp_val.zoffsetvalue -= 0.01; Draw_Float(temp_val.zoffsetvalue, row - 2, false, 100); } } break; #if ENABLED(EEPROM_SETTINGS) case ZOFFSET_SAVE: if (draw) Draw_Menu_Item(row, ICON_WriteEEPROM, GET_TEXT_F(MSG_BUTTON_SAVE)); else AudioFeedback(settings.save()); break; #endif } break; #endif #if HAS_PREHEAT case Preheat: { #define PREHEAT_MODE (PREHEAT_BACK + 1) #define PREHEAT_1 (PREHEAT_MODE + 1) #define PREHEAT_2 (PREHEAT_1 + (PREHEAT_COUNT >= 2)) #define PREHEAT_3 (PREHEAT_2 + (PREHEAT_COUNT >= 3)) #define PREHEAT_4 (PREHEAT_3 + (PREHEAT_COUNT >= 4)) #define PREHEAT_5 (PREHEAT_4 + (PREHEAT_COUNT >= 5)) #define PREHEAT_TOTAL PREHEAT_5 auto do_preheat = [](const uint8_t m) { thermalManager.cooldown(); if (temp_val.preheatmode == 0 || temp_val.preheatmode == 1) { ui.preheat_hotend_and_fan(m); } if (temp_val.preheatmode == 0 || temp_val.preheatmode == 2) ui.preheat_bed(m); }; switch (item) { case PREHEAT_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Prepare, PREPARE_PREHEAT); break; case PREHEAT_MODE: if (draw) { Draw_Menu_Item(row, ICON_Homing, GET_TEXT_F(MSG_CONFIGURATION)); Draw_Option(temp_val.preheatmode, preheat_modes, row); } else Modify_Option(temp_val.preheatmode, preheat_modes, 2); break; #define _PREHEAT_CASE(N) \ case PREHEAT_##N: { \ if (draw) Draw_Menu_Item(row, ICON_Temperature, F(PREHEAT_## N ##_LABEL)); \ else do_preheat(N - 1); \ } break; REPEAT_1(PREHEAT_COUNT, _PREHEAT_CASE) } } break; #endif // HAS_PREHEAT #if ENABLED(FILAMENT_LOAD_UNLOAD_GCODES) case ChangeFilament: #define CHANGEFIL_BACK 0 #define CHANGEFIL_PARKHEAD (CHANGEFIL_BACK + 1) #define CHANGEFIL_LOAD (CHANGEFIL_PARKHEAD + 1) #define CHANGEFIL_UNLOAD (CHANGEFIL_LOAD + 1) #define CHANGEFIL_CHANGE (CHANGEFIL_UNLOAD + 1) #define CHANGEFIL_TOTAL CHANGEFIL_CHANGE switch (item) { case CHANGEFIL_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Prepare, PREPARE_CHANGEFIL); break; case CHANGEFIL_PARKHEAD: if (draw) Draw_Menu_Item(row, ICON_Park, GET_TEXT_F(MSG_FILAMENT_PARK_ENABLED)); else { #if ENABLED(NOZZLE_PARK_FEATURE) queue.inject(F("G28O\nG27 P2")); #else sprintf_P(cmd, PSTR("G28O\nG0 F4000 X%i Y%i\nG0 F3000 Z%i"), 0 , 0, 20); queue.inject(cmd); #endif } break; case CHANGEFIL_LOAD: if (draw) Draw_Menu_Item(row, ICON_WriteEEPROM, GET_TEXT_F(MSG_FILAMENTLOAD)); else { if (thermalManager.temp_hotend[0].target < thermalManager.extrude_min_temp) Popup_Handler(ETemp); else { if (thermalManager.temp_hotend[0].is_below_target(-2)) { Popup_Handler(Heating); thermalManager.wait_for_hotend(0); } Popup_Handler(FilLoad); gcode.process_subcommands_now(F("M701")); planner.synchronize(); Redraw_Menu(); } } break; case CHANGEFIL_UNLOAD: if (draw) Draw_Menu_Item(row, ICON_ReadEEPROM, GET_TEXT_F(MSG_FILAMENTUNLOAD)); else { if (thermalManager.temp_hotend[0].target < thermalManager.extrude_min_temp) { Popup_Handler(ETemp); } else { if (thermalManager.temp_hotend[0].is_below_target(-2)) { Popup_Handler(Heating); thermalManager.wait_for_hotend(0); } Popup_Handler(FilLoad, true); gcode.process_subcommands_now(F("M702")); planner.synchronize(); Redraw_Menu(); } } break; case CHANGEFIL_CHANGE: if (draw) Draw_Menu_Item(row, ICON_ResumeEEPROM, GET_TEXT_F(MSG_FILAMENTCHANGE)); else { if (thermalManager.temp_hotend[0].target < thermalManager.extrude_min_temp) Popup_Handler(ETemp); else { if (thermalManager.temp_hotend[0].is_below_target(-2)) { Popup_Handler(Heating); thermalManager.wait_for_hotend(0); } Popup_Handler(FilChange); sprintf_P(cmd, PSTR("M600 B1 R%i"), thermalManager.temp_hotend[0].target); gcode.process_subcommands_now(cmd); } } break; } break; #endif // FILAMENT_LOAD_UNLOAD_GCODES #if HAS_HOSTACTION_MENUS case HostActions: #define HOSTACTIONS_BACK 0 #define HOSTACTIONS_1 (HOSTACTIONS_BACK + 1) #define HOSTACTIONS_2 (HOSTACTIONS_1 + 1) #define HOSTACTIONS_3 (HOSTACTIONS_2 + 1) #define HOSTACTIONS_TOTAL HOSTACTIONS_3 switch (item) { case HOSTACTIONS_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else { if (temp_val.flag_tune) { temp_val.flag_tune = false; Redraw_Menu(false, true, true); } else Draw_Menu(Prepare, PREPARE_ACTIONCOMMANDS); } break; case HOSTACTIONS_1: if (draw) Draw_Menu_Item(row, ICON_File, action1); else if (!strcmp(action1, "-") == 0) hostui.action(F(action1)); break; case HOSTACTIONS_2: if (draw) Draw_Menu_Item(row, ICON_File, action2); else if (!strcmp(action2, "-") == 0) hostui.action(F(action2)); break; case HOSTACTIONS_3: if (draw) Draw_Menu_Item(row, ICON_File, action3); else if (!strcmp(action3, "-") == 0) hostui.action(F(action3)); break; } break; #endif #if HAS_CUSTOM_MENU case MenuCustom: #define CUSTOM_MENU_BACK 0 #define CUSTOM_MENU_1 1 #define CUSTOM_MENU_2 2 #define CUSTOM_MENU_3 3 #define CUSTOM_MENU_4 4 #define CUSTOM_MENU_5 5 #define CUSTOM_MENU_TOTAL CUSTOM_MENU_COUNT switch (item) { case CUSTOM_MENU_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, F("Back")); else Draw_Menu(Prepare, PREPARE_CUSTOM_MENU); break; #if CUSTOM_MENU_COUNT >= 1 case CUSTOM_MENU_1: if (draw) Draw_Menu_Item(row, ICON_Info, F(CONFIG_MENU_ITEM_1_DESC)); else { Popup_Handler(Custom); //queue.inject(F(CONFIG_MENU_ITEM_1_GCODE)); // Old code gcode.process_subcommands_now(F(CONFIG_MENU_ITEM_1_GCODE)); planner.synchronize(); Redraw_Menu(); #if ENABLED(CUSTOM_MENU_CONFIG_SCRIPT_AUDIBLE_FEEDBACK) AudioFeedback(); #endif #ifdef CUSTOM_MENU_CONFIG_SCRIPT_RETURN queue.inject(F(CUSTOM_MENU_CONFIG_SCRIPT_DONE)); #endif } break; #endif #if CUSTOM_MENU_COUNT >= 2 case CUSTOM_MENU_2: if (draw) Draw_Menu_Item(row, ICON_Info, F(CONFIG_MENU_ITEM_2_DESC)); else { Popup_Handler(Custom); gcode.process_subcommands_now(F(CONFIG_MENU_ITEM_2_GCODE)); planner.synchronize(); Redraw_Menu(); #if ENABLED(CUSTOM_MENU_CONFIG_SCRIPT_AUDIBLE_FEEDBACK) AudioFeedback(); #endif #ifdef CUSTOM_MENU_CONFIG_SCRIPT_RETURN queue.inject(F(CUSTOM_MENU_CONFIG_SCRIPT_DONE)); #endif } break; #endif #if CUSTOM_MENU_COUNT >= 3 case CUSTOM_MENU_3: if (draw) Draw_Menu_Item(row, ICON_Info, F(CONFIG_MENU_ITEM_3_DESC)); else { Popup_Handler(Custom); gcode.process_subcommands_now(F(CONFIG_MENU_ITEM_3_GCODE)); planner.synchronize(); Redraw_Menu(); #if ENABLED(CUSTOM_MENU_CONFIG_SCRIPT_AUDIBLE_FEEDBACK) AudioFeedback(); #endif #ifdef CUSTOM_MENU_CONFIG_SCRIPT_RETURN queue.inject(F(CUSTOM_MENU_CONFIG_SCRIPT_DONE)); #endif } break; #endif #if CUSTOM_MENU_COUNT >= 4 case CUSTOM_MENU_4: if (draw) Draw_Menu_Item(row, ICON_Info, F(CONFIG_MENU_ITEM_4_DESC)); else { Popup_Handler(Custom); gcode.process_subcommands_now(F(CONFIG_MENU_ITEM_4_GCODE)); planner.synchronize(); Redraw_Menu(); #if ENABLED(CUSTOM_MENU_CONFIG_SCRIPT_AUDIBLE_FEEDBACK) AudioFeedback(); #endif #ifdef CUSTOM_MENU_CONFIG_SCRIPT_RETURN queue.inject(F(CUSTOM_MENU_CONFIG_SCRIPT_DONE)); #endif } break; #endif #if CUSTOM_MENU_COUNT >= 5 case CUSTOM_MENU_5: if (draw) Draw_Menu_Item(row, ICON_Info, F(CONFIG_MENU_ITEM_5_DESC)); else { Popup_Handler(Custom); gcode.process_subcommands_now(F(CONFIG_MENU_ITEM_5_GCODE)); planner.synchronize(); Redraw_Menu(); #if ENABLED(CUSTOM_MENU_CONFIG_SCRIPT_AUDIBLE_FEEDBACK) AudioFeedback(); #endif #ifdef CUSTOM_MENU_CONFIG_SCRIPT_RETURN queue.inject(F(CUSTOM_MENU_CONFIG_SCRIPT_DONE)); #endif } break; #endif // Custom Menu } break; #endif // HAS_CUSTOM_MENU case Control: #define CONTROL_BACK 0 #define CONTROL_TEMP (CONTROL_BACK + 1) #define CONTROL_MOTION (CONTROL_TEMP + 1) #define CONTROL_FWRETRACT (CONTROL_MOTION + ENABLED(FWRETRACT)) #define CONTROL_LEDS (CONTROL_FWRETRACT + ANY(CASE_LIGHT_MENU, LED_CONTROL_MENU)) #define CONTROL_VISUAL (CONTROL_LEDS + 1) #define CONTROL_HOSTSETTINGS (CONTROL_VISUAL + ENABLED(HAS_HOSTACTION_MENUS)) #define CONTROL_ADVANCED (CONTROL_HOSTSETTINGS + 1) #define CONTROL_SAVE (CONTROL_ADVANCED + ENABLED(EEPROM_SETTINGS)) #define CONTROL_RESTORE (CONTROL_SAVE + ENABLED(EEPROM_SETTINGS)) #define CONTROL_RESET (CONTROL_RESTORE + ENABLED(EEPROM_SETTINGS)) #define CONTROL_REBOOT (CONTROL_RESET + 1) #define CONTROL_INFO (CONTROL_REBOOT + 1) #define CONTROL_TOTAL CONTROL_INFO switch (item) { case CONTROL_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Main_Menu(2); break; case CONTROL_TEMP: if (draw) Draw_Menu_Item(row, ICON_Temperature, GET_TEXT_F(MSG_TEMPERATURE), nullptr, true); else Draw_Menu(TempMenu); break; case CONTROL_MOTION: if (draw) Draw_Menu_Item(row, ICON_Motion, GET_TEXT_F(MSG_MOTION), nullptr, true); else Draw_Menu(Motion); break; #if ENABLED(FWRETRACT) case CONTROL_FWRETRACT: if (draw) Draw_Menu_Item(row, ICON_StepE, GET_TEXT_F(MSG_AUTORETRACT), nullptr, true); else Draw_Menu(FwRetraction); break; #endif #if ANY(CASE_LIGHT_MENU, LED_CONTROL_MENU) case CONTROL_LEDS: if (draw) Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_LEDS), nullptr, true); else Draw_Menu(Ledsmenu); break; #endif case CONTROL_VISUAL: if (draw) Draw_Menu_Item(row, ICON_PrintSize, F("Visual"), nullptr, true); else Draw_Menu(Visual); break; #if HAS_HOSTACTION_MENUS case CONTROL_HOSTSETTINGS: if (draw) Draw_Menu_Item(row, ICON_Contact, F("Host Settings"), nullptr, true); else Draw_Menu(HostSettings); break; #endif case CONTROL_ADVANCED: if (draw) Draw_Menu_Item(row, ICON_Version, GET_TEXT_F(MSG_ADVANCED_SETTINGS), nullptr, true); else Draw_Menu(Advanced); break; #if ENABLED(EEPROM_SETTINGS) case CONTROL_SAVE: if (draw) Draw_Menu_Item(row, ICON_WriteEEPROM, GET_TEXT_F(MSG_STORE_EEPROM)); else AudioFeedback(settings.save()); break; case CONTROL_RESTORE: if (draw) Draw_Menu_Item(row, ICON_ReadEEPROM, GET_TEXT_F(MSG_LOAD_EEPROM)); else AudioFeedback(settings.load()); break; case CONTROL_RESET: if (draw) Draw_Menu_Item(row, ICON_Temperature, GET_TEXT_F(MSG_RESTORE_DEFAULTS)); else { settings.reset(); AudioFeedback(); } break; #endif case CONTROL_REBOOT: if (draw) Draw_Menu_Item(row, ICON_Reboot, GET_TEXT_F(MSG_RESET_PRINTER)); else RebootPrinter(); break; case CONTROL_INFO: if (draw) Draw_Menu_Item(row, ICON_Info, GET_TEXT_F(MSG_INFO_SCREEN)); else Draw_Menu(Info); break; } break; case TempMenu: #define TEMP_BACK 0 #define TEMP_HOTEND (TEMP_BACK + ENABLED(HAS_HOTEND)) #define TEMP_BED (TEMP_HOTEND + ENABLED(HAS_HEATED_BED)) #define TEMP_FAN (TEMP_BED + ENABLED(HAS_FAN)) #define TEMP_PID (TEMP_FAN + ANY(HAS_HOTEND, HAS_HEATED_BED)) #define TEMP_PREHEAT1 (TEMP_PID + (PREHEAT_COUNT >= 1)) #define TEMP_PREHEAT2 (TEMP_PREHEAT1 + (PREHEAT_COUNT >= 2)) #define TEMP_PREHEAT3 (TEMP_PREHEAT2 + (PREHEAT_COUNT >= 3)) #define TEMP_PREHEAT4 (TEMP_PREHEAT3 + (PREHEAT_COUNT >= 4)) #define TEMP_PREHEAT5 (TEMP_PREHEAT4 + (PREHEAT_COUNT >= 5)) #define TEMP_TOTAL TEMP_PREHEAT5 switch (item) { case TEMP_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Control, CONTROL_TEMP); break; #if HAS_HOTEND case TEMP_HOTEND: if (draw) { Draw_Menu_Item(row, ICON_SetEndTemp, F("Hotend")); Draw_Float(thermalManager.temp_hotend[0].target, row, false, 1); } else Modify_Value(thermalManager.temp_hotend[0].target, MIN_E_TEMP, MAX_E_TEMP, 1); break; #endif #if HAS_HEATED_BED case TEMP_BED: if (draw) { Draw_Menu_Item(row, ICON_SetBedTemp, F("Bed")); Draw_Float(thermalManager.temp_bed.target, row, false, 1); } else Modify_Value(thermalManager.temp_bed.target, MIN_BED_TEMP, MAX_BED_TEMP, 1); break; #endif #if HAS_FAN case TEMP_FAN: if (draw) { Draw_Menu_Item(row, ICON_FanSpeed, GET_TEXT_F(MSG_FAN_SPEED)); Draw_Float(thermalManager.fan_speed[0], row, false, 1); } else Modify_Value(thermalManager.fan_speed[0], MIN_FAN_SPEED, MAX_FAN_SPEED, 1); break; #endif #if HAS_HOTEND || HAS_HEATED_BED case TEMP_PID: if (draw) Draw_Menu_Item(row, ICON_Step, F("PID"), nullptr, true); else Draw_Menu(PID); break; #endif #define _TEMP_PREHEAT_CASE(N) \ case TEMP_PREHEAT##N: { \ if (draw) Draw_Menu_Item(row, ICON_Step, F(PREHEAT_## N ##_LABEL), nullptr, true); \ else Draw_Menu(Preheat##N); \ } break; REPEAT_1(PREHEAT_COUNT, _TEMP_PREHEAT_CASE) } break; #if HAS_HOTEND || HAS_HEATED_BED case PID: #define PID_BACK 0 #define PID_HOTEND (PID_BACK + ENABLED(HAS_HOTEND)) #define PID_BED (PID_HOTEND + ENABLED(HAS_HEATED_BED)) #define PID_CYCLES (PID_BED + 1) #define PID_TOTAL PID_CYCLES static uint8_t PID_cycles = 5; switch (item) { case PID_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(TempMenu, TEMP_PID); break; #if HAS_HOTEND case PID_HOTEND: if (draw) Draw_Menu_Item(row, ICON_HotendTemp, F(STR_HOTEND_PID), nullptr, true); else Draw_Menu(HotendPID); break; #endif #if HAS_HEATED_BED case PID_BED: if (draw) Draw_Menu_Item(row, ICON_BedTemp, F(STR_BED_PID), nullptr, true); else Draw_Menu(BedPID); break; #endif case PID_CYCLES: if (draw) { Draw_Menu_Item(row, ICON_FanSpeed, GET_TEXT_F(MSG_PID_CYCLE)); Draw_Float(PID_cycles, row, false, 1); } else Modify_Value(PID_cycles, 3, 50, 1); break; } break; #endif // HAS_HOTEND || HAS_HEATED_BED #if HAS_HOTEND case HotendPID: #define HOTENDPID_BACK 0 #define HOTENDPID_TUNE (HOTENDPID_BACK + 1) #define HOTENDPID_TEMP (HOTENDPID_TUNE + 1) #define HOTENDPID_KP (HOTENDPID_TEMP + 1) #define HOTENDPID_KI (HOTENDPID_KP + 1) #define HOTENDPID_KD (HOTENDPID_KI + 1) #define HOTENDPID_TOTAL HOTENDPID_KD switch (item) { case HOTENDPID_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(PID, PID_HOTEND); break; case HOTENDPID_TUNE: if (draw) Draw_Menu_Item(row, ICON_HotendTemp, GET_TEXT_F(MSG_PID_AUTOTUNE)); else { Popup_Handler(PIDWait); sprintf_P(cmd, PSTR("M303 E0 C%i S%i U1"), PID_cycles, temp_val.PID_e_temp); gcode.process_subcommands_now(cmd); planner.synchronize(); Redraw_Menu(); } break; case HOTENDPID_TEMP: if (draw) { Draw_Menu_Item(row, ICON_Temperature, GET_TEXT_F(MSG_TEMPERATURE)); Draw_Float(temp_val.PID_e_temp, row, false, 1); } else Modify_Value(temp_val.PID_e_temp, MIN_E_TEMP, MAX_E_TEMP, 1); break; case HOTENDPID_KP: if (draw) { Draw_Menu_Item(row, ICON_Version, F("Kp Value")); Draw_Float(thermalManager.temp_hotend[0].pid.Kp, row, false, 100); } else Modify_Value(thermalManager.temp_hotend[0].pid.Kp, 0, 5000, 100, thermalManager.updatePID); break; case HOTENDPID_KI: if (draw) { Draw_Menu_Item(row, ICON_Version, F("Ki Value")); Draw_Float(unscalePID_i(thermalManager.temp_hotend[0].pid.Ki), row, false, 100); } else Modify_Value(thermalManager.temp_hotend[0].pid.Ki, 0, 5000, 100, thermalManager.updatePID); break; case HOTENDPID_KD: if (draw) { Draw_Menu_Item(row, ICON_Version, F("Kd Value")); Draw_Float(unscalePID_d(thermalManager.temp_hotend[0].pid.Kd), row, false, 100); } else Modify_Value(thermalManager.temp_hotend[0].pid.Kd, 0, 5000, 100, thermalManager.updatePID); break; } break; #endif // HAS_HOTEND #if HAS_HEATED_BED case BedPID: #define BEDPID_BACK 0 #define BEDPID_TUNE (BEDPID_BACK + 1) #define BEDPID_TEMP (BEDPID_TUNE + 1) #define BEDPID_KP (BEDPID_TEMP + 1) #define BEDPID_KI (BEDPID_KP + 1) #define BEDPID_KD (BEDPID_KI + 1) #define BEDPID_TOTAL BEDPID_KD switch (item) { case BEDPID_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(PID, PID_BED); break; case BEDPID_TUNE: if (draw) Draw_Menu_Item(row, ICON_HotendTemp, GET_TEXT_F(MSG_PID_AUTOTUNE)); else { Popup_Handler(PIDWait); sprintf_P(cmd, PSTR("M303 E-1 C%i S%i U1"), PID_cycles, temp_val.PID_bed_temp); gcode.process_subcommands_now(cmd); planner.synchronize(); Redraw_Menu(); } break; case BEDPID_TEMP: if (draw) { Draw_Menu_Item(row, ICON_Temperature, GET_TEXT_F(MSG_TEMPERATURE)); Draw_Float(temp_val.PID_bed_temp, row, false, 1); } else Modify_Value(temp_val.PID_bed_temp, MIN_BED_TEMP, MAX_BED_TEMP, 1); break; case BEDPID_KP: if (draw) { Draw_Menu_Item(row, ICON_Version, F("Kp Value")); Draw_Float(thermalManager.temp_bed.pid.Kp, row, false, 100); } else Modify_Value(thermalManager.temp_bed.pid.Kp, 0, 5000, 100, thermalManager.updatePID); break; case BEDPID_KI: if (draw) { Draw_Menu_Item(row, ICON_Version, F("Ki Value")); Draw_Float(unscalePID_i(thermalManager.temp_bed.pid.Ki), row, false, 100); } else Modify_Value(thermalManager.temp_bed.pid.Ki, 0, 5000, 100, thermalManager.updatePID); break; case BEDPID_KD: if (draw) { Draw_Menu_Item(row, ICON_Version, F("Kd Value")); Draw_Float(unscalePID_d(thermalManager.temp_bed.pid.Kd), row, false, 100); } else Modify_Value(thermalManager.temp_bed.pid.Kd, 0, 5000, 100, thermalManager.updatePID); break; } break; #endif // HAS_HEATED_BED #if HAS_PREHEAT #define _PREHEAT_SUBMENU_CASE(N) case Preheat##N: preheat_submenu((N) - 1, item, TEMP_PREHEAT##N); break; REPEAT_1(PREHEAT_COUNT, _PREHEAT_SUBMENU_CASE) #endif case Motion: #define MOTION_BACK 0 #define MOTION_HOMEOFFSETS (MOTION_BACK + 1) #define MOTION_SPEED (MOTION_HOMEOFFSETS + 1) #define MOTION_ACCEL (MOTION_SPEED + 1) #define MOTION_JERK (MOTION_ACCEL + ENABLED(HAS_CLASSIC_JERK)) #define MOTION_JD (MOTION_JERK + ENABLED(HAS_JUNCTION_DEVIATION)) #define MOTION_STEPS (MOTION_JD + 1) #define MOTION_FLOW (MOTION_STEPS + ENABLED(HAS_HOTEND)) #define MOTION_TOTAL MOTION_FLOW switch (item) { case MOTION_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Control, CONTROL_MOTION); break; case MOTION_HOMEOFFSETS: if (draw) Draw_Menu_Item(row, ICON_SetHome, GET_TEXT_F(MSG_SET_HOME_OFFSETS), nullptr, true); else Draw_Menu(HomeOffsets); break; case MOTION_SPEED: if (draw) Draw_Menu_Item(row, ICON_MaxSpeed, GET_TEXT_F(MSG_MAX_SPEED), nullptr, true); else Draw_Menu(MaxSpeed); break; case MOTION_ACCEL: if (draw) Draw_Menu_Item(row, ICON_MaxAccelerated, GET_TEXT_F(MSG_AMAX_EN), nullptr, true); else Draw_Menu(MaxAcceleration); break; #if HAS_CLASSIC_JERK case MOTION_JERK: if (draw) Draw_Menu_Item(row, ICON_MaxJerk, GET_TEXT_F(MSG_JERK), nullptr, true); else Draw_Menu(MaxJerk); break; #endif #if HAS_JUNCTION_DEVIATION case MOTION_JD: if (draw) Draw_Menu_Item(row, ICON_MaxJerk, GET_TEXT_F(MSG_JUNCTION_DEVIATION), nullptr, true); else Draw_Menu(JDmenu); break; #endif case MOTION_STEPS: if (draw) Draw_Menu_Item(row, ICON_Step, GET_TEXT_F(MSG_STEPS_PER_MM), nullptr, true); else Draw_Menu(Steps); break; #if HAS_HOTEND case MOTION_FLOW: if (draw) { Draw_Menu_Item(row, ICON_Speed, GET_TEXT_F(MSG_FLOW)); Draw_Float(planner.flow_percentage[0], row, false, 1); } else Modify_Value(planner.flow_percentage[0], MIN_FLOW_RATE, MAX_FLOW_RATE, 1); break; #endif } break; #if ENABLED(FWRETRACT) case FwRetraction: #define FWR_BACK 0 #define FWR_RET_AUTO (FWR_BACK + 1) #define FWR_RET_LENGTH (FWR_RET_AUTO + 1) #define FWR_RET_SPEED (FWR_RET_LENGTH + 1) #define FWR_ZLIFT (FWR_RET_SPEED + 1) #define FWR_REC_EXT_LENGTH (FWR_ZLIFT + 1) #define FWR_REC_SPEED (FWR_REC_EXT_LENGTH + 1) #define FWR_RESET (FWR_REC_SPEED + 1) #define FWR_TOTAL FWR_RESET switch (item) { case FWR_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else { if (temp_val.flag_tune) { temp_val.flag_tune = false; Redraw_Menu(false, true, true); } else Draw_Menu(Control, CONTROL_FWRETRACT); } break; case FWR_RET_AUTO: if (draw) { temp_val.auto_fw_retract = fwretract.autoretract_enabled; Draw_Menu_Item(row, ICON_StepE, GET_TEXT_F(MSG_AUTORETRACT)); Draw_Checkbox(row, temp_val.auto_fw_retract); } else { if (MIN_AUTORETRACT <= MAX_AUTORETRACT) { temp_val.auto_fw_retract = !temp_val.auto_fw_retract; fwretract.enable_autoretract(temp_val.auto_fw_retract); Draw_Checkbox(row, temp_val.auto_fw_retract); } } break; case FWR_RET_LENGTH: if (draw) { Draw_Menu_Item(row, ICON_FWRetLength, GET_TEXT_F(MSG_CONTROL_RETRACT)); Draw_Float(fwretract.settings.retract_length, row, false, 10); } else Modify_Value(fwretract.settings.retract_length, 0, 10, 10); break; case FWR_RET_SPEED: if (draw) { Draw_Menu_Item(row, ICON_FWRetSpeed, GET_TEXT_F(MSG_SINGLENOZZLE_RETRACT_SPEED)); Draw_Float(fwretract.settings.retract_feedrate_mm_s, row, false, 10); } else Modify_Value(fwretract.settings.retract_feedrate_mm_s, 1, 90, 10); break; case FWR_ZLIFT: if (draw) { Draw_Menu_Item(row, ICON_FWRetZRaise, GET_TEXT_F(MSG_CONTROL_RETRACT_ZHOP)); Draw_Float(fwretract.settings.retract_zraise, row, false, 100); } else Modify_Value(fwretract.settings.retract_zraise, 0, 10, 100); break; case FWR_REC_EXT_LENGTH: if (draw) { Draw_Menu_Item(row, ICON_FWRecExtLength, GET_TEXT_F(MSG_CONTROL_RETRACT_RECOVER)); Draw_Float(fwretract.settings.retract_recover_extra, row, false, 10); } else Modify_Value(fwretract.settings.retract_recover_extra, -10, 10, 10); break; case FWR_REC_SPEED: if (draw) { Draw_Menu_Item(row, ICON_FWRecSpeed, GET_TEXT_F(MSG_SINGLENOZZLE_UNRETRACT_SPEED)); Draw_Float(fwretract.settings.retract_recover_feedrate_mm_s, row, false, 10); } else Modify_Value(fwretract.settings.retract_recover_feedrate_mm_s, 1, 90, 10); break; case FWR_RESET: if (draw) Draw_Menu_Item(row, ICON_StepE, GET_TEXT_F(MSG_BUTTON_RESET)); else { fwretract.reset(); Draw_Menu(FwRetraction); } break; } break; #endif case HomeOffsets: #define HOMEOFFSETS_BACK 0 #define HOMEOFFSETS_XOFFSET (HOMEOFFSETS_BACK + 1) #define HOMEOFFSETS_YOFFSET (HOMEOFFSETS_XOFFSET + 1) #define HOMEOFFSETS_TOTAL HOMEOFFSETS_YOFFSET switch (item) { case HOMEOFFSETS_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Motion, MOTION_HOMEOFFSETS); break; case HOMEOFFSETS_XOFFSET: if (draw) { Draw_Menu_Item(row, ICON_StepX, GET_TEXT_F(MSG_HOME_OFFSET_X)); Draw_Float(home_offset.x, row, false, 100); } else Modify_Value(home_offset.x, -MAX_XY_OFFSET, MAX_XY_OFFSET, 100); break; case HOMEOFFSETS_YOFFSET: if (draw) { Draw_Menu_Item(row, ICON_StepY, GET_TEXT_F(MSG_HOME_OFFSET_Y)); Draw_Float(home_offset.y, row, false, 100); } else Modify_Value(home_offset.y, -MAX_XY_OFFSET, MAX_XY_OFFSET, 100); break; } break; case MaxSpeed: #define SPEED_BACK 0 #define SPEED_X (SPEED_BACK + 1) #define SPEED_Y (SPEED_X + 1) #define SPEED_Z (SPEED_Y + 1) #define SPEED_E (SPEED_Z + ENABLED(HAS_HOTEND)) #define SPEED_TOTAL SPEED_E switch (item) { case SPEED_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Motion, MOTION_SPEED); break; case SPEED_X: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeedX, GET_TEXT_F(MSG_VMAX_A)); Draw_Float(planner.settings.max_feedrate_mm_s[X_AXIS], row, false, 1); } else Modify_Value(planner.settings.max_feedrate_mm_s[X_AXIS], 0, default_max_feedrate[X_AXIS] * 2, 1); break; #if HAS_Y_AXIS case SPEED_Y: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeedY, GET_TEXT_F(MSG_VMAX_B)); Draw_Float(planner.settings.max_feedrate_mm_s[Y_AXIS], row, false, 1); } else Modify_Value(planner.settings.max_feedrate_mm_s[Y_AXIS], 0, default_max_feedrate[Y_AXIS] * 2, 1); break; #endif #if HAS_Z_AXIS case SPEED_Z: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeedZ, GET_TEXT_F(MSG_VMAX_C)); Draw_Float(planner.settings.max_feedrate_mm_s[Z_AXIS], row, false, 1); } else Modify_Value(planner.settings.max_feedrate_mm_s[Z_AXIS], 0, default_max_feedrate[Z_AXIS] * 2, 1); break; #endif #if HAS_HOTEND case SPEED_E: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeedE, GET_TEXT_F(MSG_VMAX_E)); Draw_Float(planner.settings.max_feedrate_mm_s[E_AXIS], row, false, 1); } else Modify_Value(planner.settings.max_feedrate_mm_s[E_AXIS], 0, default_max_feedrate[E_AXIS] * 2, 1); break; #endif } break; case MaxAcceleration: #define ACCEL_BACK 0 #define ACCEL_X (ACCEL_BACK + 1) #define ACCEL_Y (ACCEL_X + 1) #define ACCEL_Z (ACCEL_Y + 1) #define ACCEL_E (ACCEL_Z + ENABLED(HAS_HOTEND)) #define ACCEL_TOTAL ACCEL_E switch (item) { case ACCEL_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Motion, MOTION_ACCEL); break; case ACCEL_X: if (draw) { Draw_Menu_Item(row, ICON_MaxAccX, GET_TEXT_F(MSG_AMAX_A)); Draw_Float(planner.settings.max_acceleration_mm_per_s2[X_AXIS], row, false, 1); } else Modify_Value(planner.settings.max_acceleration_mm_per_s2[X_AXIS], 0, default_max_acceleration[X_AXIS] * 2, 1); break; case ACCEL_Y: if (draw) { Draw_Menu_Item(row, ICON_MaxAccY, GET_TEXT_F(MSG_AMAX_B)); Draw_Float(planner.settings.max_acceleration_mm_per_s2[Y_AXIS], row, false, 1); } else Modify_Value(planner.settings.max_acceleration_mm_per_s2[Y_AXIS], 0, default_max_acceleration[Y_AXIS] * 2, 1); break; case ACCEL_Z: if (draw) { Draw_Menu_Item(row, ICON_MaxAccZ, GET_TEXT_F(MSG_AMAX_C)); Draw_Float(planner.settings.max_acceleration_mm_per_s2[Z_AXIS], row, false, 1); } else Modify_Value(planner.settings.max_acceleration_mm_per_s2[Z_AXIS], 0, default_max_acceleration[Z_AXIS] * 2, 1); break; #if HAS_HOTEND case ACCEL_E: if (draw) { Draw_Menu_Item(row, ICON_MaxAccE, GET_TEXT_F(MSG_AMAX_E)); Draw_Float(planner.settings.max_acceleration_mm_per_s2[E_AXIS], row, false, 1); } else Modify_Value(planner.settings.max_acceleration_mm_per_s2[E_AXIS], 0, default_max_acceleration[E_AXIS] * 2, 1); break; #endif } break; #if HAS_CLASSIC_JERK case MaxJerk: #define JERK_BACK 0 #define JERK_X (JERK_BACK + 1) #define JERK_Y (JERK_X + 1) #define JERK_Z (JERK_Y + 1) #define JERK_E (JERK_Z + ENABLED(HAS_HOTEND)) #define JERK_TOTAL JERK_E switch (item) { case JERK_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Motion, MOTION_JERK); break; case JERK_X: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeedJerkX, GET_TEXT_F(MSG_VA_JERK)); Draw_Float(planner.max_jerk[X_AXIS], row, false, 10); } else Modify_Value(planner.max_jerk[X_AXIS], 0, default_max_jerk[X_AXIS] * 2, 10); break; case JERK_Y: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeedJerkY, GET_TEXT_F(MSG_VB_JERK)); Draw_Float(planner.max_jerk[Y_AXIS], row, false, 10); } else Modify_Value(planner.max_jerk[Y_AXIS], 0, default_max_jerk[Y_AXIS] * 2, 10); break; case JERK_Z: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeedJerkZ, GET_TEXT_F(MSG_VC_JERK)); Draw_Float(planner.max_jerk[Z_AXIS], row, false, 10); } else Modify_Value(planner.max_jerk[Z_AXIS], 0, default_max_jerk[Z_AXIS] * 2, 10); break; #if HAS_HOTEND case JERK_E: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeedJerkE, GET_TEXT_F(MSG_VE_JERK)); Draw_Float(planner.max_jerk[E_AXIS], row, false, 10); } else Modify_Value(planner.max_jerk[E_AXIS], 0, default_max_jerk[E_AXIS] * 2, 10); break; #endif } break; #endif #if HAS_JUNCTION_DEVIATION case JDmenu: #define JD_BACK 0 #define JD_SETTING_JD_MM (JD_BACK + ENABLED(HAS_HOTEND)) #define JD_TOTAL JD_SETTING_JD_MM switch (item) { case JD_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Motion, MOTION_JD); break; #if HAS_HOTEND case JD_SETTING_JD_MM: if (draw) { Draw_Menu_Item(row, ICON_MaxJerk, GET_TEXT_F(MSG_JUNCTION_DEVIATION)); Draw_Float(planner.junction_deviation_mm, row, false, 100); } else Modify_Value(planner.junction_deviation_mm, MIN_JD_MM, MAX_JD_MM, 100); break; #endif } break; #endif case Steps: #define STEPS_BACK 0 #define STEPS_X (STEPS_BACK + 1) #define STEPS_Y (STEPS_X + 1) #define STEPS_Z (STEPS_Y + 1) #define STEPS_E (STEPS_Z + ENABLED(HAS_HOTEND)) #define STEPS_TOTAL STEPS_E switch (item) { case STEPS_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Motion, MOTION_STEPS); break; case STEPS_X: if (draw) { Draw_Menu_Item(row, ICON_StepX, GET_TEXT_F(MSG_A_STEPS)); Draw_Float(planner.settings.axis_steps_per_mm[X_AXIS], row, false, 10); } else Modify_Value(planner.settings.axis_steps_per_mm[X_AXIS], 0, default_steps[X_AXIS] * 2, 10); break; case STEPS_Y: if (draw) { Draw_Menu_Item(row, ICON_StepY, GET_TEXT_F(MSG_B_STEPS)); Draw_Float(planner.settings.axis_steps_per_mm[Y_AXIS], row, false, 10); } else Modify_Value(planner.settings.axis_steps_per_mm[Y_AXIS], 0, default_steps[Y_AXIS] * 2, 10); break; case STEPS_Z: if (draw) { Draw_Menu_Item(row, ICON_StepZ, GET_TEXT_F(MSG_C_STEPS)); Draw_Float(planner.settings.axis_steps_per_mm[Z_AXIS], row, false, 10); } else Modify_Value(planner.settings.axis_steps_per_mm[Z_AXIS], 0, default_steps[Z_AXIS] * 2, 10); break; #if HAS_HOTEND case STEPS_E: if (draw) { Draw_Menu_Item(row, ICON_StepE, GET_TEXT_F(MSG_E_STEPS)); Draw_Float(planner.settings.axis_steps_per_mm[E_AXIS], row, false, 10); } else Modify_Value(planner.settings.axis_steps_per_mm[E_AXIS], 0, 1000, 10); break; #endif } break; #if ANY(CASE_LIGHT_MENU, LED_CONTROL_MENU) case Ledsmenu: #define LEDS_BACK 0 #define LEDS_CASELIGHT (LEDS_BACK + ENABLED(CASE_LIGHT_MENU)) #define LEDS_LED_CONTROL_MENU (LEDS_CASELIGHT + ENABLED(LED_CONTROL_MENU)) #define LEDS_TOTAL LEDS_LED_CONTROL_MENU switch (item) { case LEDS_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Control, CONTROL_LEDS); break; #if ENABLED(CASE_LIGHT_MENU) case LEDS_CASELIGHT: if (draw) { #if ENABLED(CASELIGHT_USES_BRIGHTNESS) Draw_Menu_Item(row, ICON_CaseLight, GET_TEXT_F(MSG_CASE_LIGHT), nullptr, true); #else Draw_Menu_Item(row, ICON_CaseLight, GET_TEXT_F(MSG_CASE_LIGHT)); Draw_Checkbox(row, caselight.on); #endif } else { #if ENABLED(CASELIGHT_USES_BRIGHTNESS) Draw_Menu(CaseLightmenu); #else caselight.on = !caselight.on; caselight.update_enabled(); Draw_Checkbox(row, caselight.on); DWIN_UpdateLCD(); #endif } break; #endif #if ENABLED(LED_CONTROL_MENU) case LEDS_LED_CONTROL_MENU: if (draw) Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_LED_CONTROL), nullptr, true); else Draw_Menu(LedControlmenu); break; #endif } break; #endif #if ENABLED(CASE_LIGHT_MENU, CASELIGHT_USES_BRIGHTNESS) case CaseLightmenu: #define CASE_LIGHT_BACK 0 #define CASE_LIGHT_ON (CASE_LIGHT_BACK + 1) #define CASE_LIGHT_USES_BRIGHT (CASE_LIGHT_ON + 1) #define CASE_LIGHT_TOTAL CASE_LIGHT_USES_BRIGHT switch (item) { case CASE_LIGHT_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Ledsmenu, LEDS_CASELIGHT); break; case CASE_LIGHT_ON: if (draw) { Draw_Menu_Item(row, ICON_CaseLight, GET_TEXT_F(MSG_CASE_LIGHT)); Draw_Checkbox(row, caselight.on); } else { caselight.on = !caselight.on; caselight.update_enabled(); Draw_Checkbox(row, caselight.on); DWIN_UpdateLCD(); } break; case CASE_LIGHT_USES_BRIGHT: if (draw) { Draw_Menu_Item(row, ICON_Brightness, GET_TEXT_F(MSG_CASE_LIGHT_BRIGHTNESS)); Draw_Float(caselight.brightness, row); } else Modify_Value(caselight.brightness, 0, 255, 1); break; } break; #endif #if ENABLED(LED_CONTROL_MENU) case LedControlmenu: #define LEDCONTROL_BACK 0 #define LEDCONTROL_LIGHTON (LEDCONTROL_BACK + !BOTH(CASE_LIGHT_MENU, CASE_LIGHT_USE_NEOPIXEL)) #define LEDCONTROL_PRESETS_MENU (LEDCONTROL_LIGHTON + BOTH(HAS_COLOR_LEDS, LED_COLOR_PRESETS)) #define LEDCONTROL_CUSTOM_MENU (LEDCONTROL_PRESETS_MENU + ENABLED(HAS_COLOR_LEDS) - DISABLED(LED_COLOR_PRESETS)) #define LEDCONTROL_TOTAL LEDCONTROL_CUSTOM_MENU switch (item) { case LEDCONTROL_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Ledsmenu, LEDS_LED_CONTROL_MENU); break; #if !BOTH(CASE_LIGHT_MENU, CASE_LIGHT_USE_NEOPIXEL) case LEDCONTROL_LIGHTON: if (draw) { Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_LEDS)); Draw_Checkbox(row, leds.lights_on); } else { leds.toggle(); Draw_Checkbox(row, leds.lights_on); DWIN_UpdateLCD(); } break; #endif #if HAS_COLOR_LEDS #if ENABLED(LED_COLOR_PRESETS) case LEDCONTROL_PRESETS_MENU: if (draw) Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_LED_PRESETS)); else Draw_Menu(LedControlpresets); break; #else case LEDCONTROL_CUSTOM_MENU: if (draw) Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_CUSTOM_LEDS)); else Draw_Menu(LedControlcustom); break; #endif #endif } break; #if HAS_COLOR_LEDS #if ENABLED(LED_COLOR_PRESETS) case LedControlpresets: #define LEDCONTROL_PRESETS_BACK 0 #define LEDCONTROL_PRESETS_WHITE (LEDCONTROL_PRESETS_BACK + 1) #define LEDCONTROL_PRESETS_RED (LEDCONTROL_PRESETS_WHITE + 1) #define LEDCONTROL_PRESETS_ORANGE (LEDCONTROL_PRESETS_RED + 1) #define LEDCONTROL_PRESETS_YELLOW (LEDCONTROL_PRESETS_ORANGE + 1) #define LEDCONTROL_PRESETS_GREEN (LEDCONTROL_PRESETS_YELLOW + 1) #define LEDCONTROL_PRESETS_BLUE (LEDCONTROL_PRESETS_GREEN + 1) #define LEDCONTROL_PRESETS_INDIGO (LEDCONTROL_PRESETS_BLUE + 1) #define LEDCONTROL_PRESETS_VIOLET (LEDCONTROL_PRESETS_INDIGO + 1) #define LEDCONTROL_PRESETS_TOTAL LEDCONTROL_PRESETS_VIOLET #define LEDCOLORITEM(MSG,FUNC) if (draw) Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG)); else FUNC; break; switch (item) { case LEDCONTROL_PRESETS_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(LedControlmenu, LEDCONTROL_PRESETS_MENU); break; case LEDCONTROL_PRESETS_WHITE: LEDCOLORITEM(MSG_SET_LEDS_WHITE, leds.set_white()); case LEDCONTROL_PRESETS_RED: LEDCOLORITEM(MSG_SET_LEDS_RED, leds.set_red()); case LEDCONTROL_PRESETS_ORANGE: LEDCOLORITEM(MSG_SET_LEDS_ORANGE, leds.set_orange()); case LEDCONTROL_PRESETS_YELLOW: LEDCOLORITEM(MSG_SET_LEDS_YELLOW, leds.set_yellow()); case LEDCONTROL_PRESETS_GREEN: LEDCOLORITEM(MSG_SET_LEDS_GREEN, leds.set_green()); case LEDCONTROL_PRESETS_BLUE: LEDCOLORITEM(MSG_SET_LEDS_BLUE, leds.set_blue()); case LEDCONTROL_PRESETS_INDIGO: LEDCOLORITEM(MSG_SET_LEDS_INDIGO, leds.set_indigo()); case LEDCONTROL_PRESETS_VIOLET: LEDCOLORITEM(MSG_SET_LEDS_VIOLET, leds.set_violet()); } break; #else case LedControlcustom: #define LEDCONTROL_CUSTOM_BACK 0 #define LEDCONTROL_CUSTOM_RED (LEDCONTROL_CUSTOM_BACK + 1) #define LEDCONTROL_CUSTOM_GREEN (LEDCONTROL_CUSTOM_RED + 1) #define LEDCONTROL_CUSTOM_BLUE (LEDCONTROL_CUSTOM_GREEN + 1) #define LEDCONTROL_CUSTOM_WHITE (LEDCONTROL_CUSTOM_BLUE + ENABLED(HAS_WHITE_LED)) #define LEDCONTROL_CUSTOM_TOTAL LEDCONTROL_CUSTOM_WHITE switch (item) { case LEDCONTROL_PRESETS_BACK: Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(LedControlmenu, LEDCONTROL_CUSTOM_MENU); break; case LEDCONTROL_CUSTOM_RED: if (draw) { Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_INTENSITY_R)); Draw_Float(leds.color.r, row); } else Modify_Value(leds.color.r, 0, 255, 1); break; case LEDCONTROL_CUSTOM_GREEN: if (draw) { Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_INTENSITY_G)); Draw_Float(leds.color.g, row); } else Modify_Value(leds.color.g, 0, 255, 1); break; case LEDCONTROL_CUSTOM_BLUE: if (draw) { Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_INTENSITY_B)); Draw_Float(leds.color.b, row); } else Modify_Value(leds.color.b, 0, 255, 1); break; #if HAS_WHITE_LED case case LEDCONTROL_CUSTOM_WHITE: if (draw) { Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_INTENSITY_W)); Draw_Float(leds.color.w, row); } else Modify_Value(leds.color.w, 0, 255, 1); break; #endif } break; #endif #endif #endif case Visual: #define VISUAL_BACK 0 #define VISUAL_BACKLIGHT (VISUAL_BACK + 1) #define VISUAL_BRIGHTNESS (VISUAL_BACKLIGHT + 1) #define VISUAL_TIME_FORMAT (VISUAL_BRIGHTNESS + 1) #define VISUAL_COLOR_THEMES (VISUAL_TIME_FORMAT + 1) #define VISUAL_TOTAL VISUAL_COLOR_THEMES switch (item) { case VISUAL_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Control, CONTROL_VISUAL); break; case VISUAL_BACKLIGHT: if (draw) Draw_Menu_Item(row, ICON_Brightness, GET_TEXT_F(MSG_BRIGHTNESS_OFF)); else ui.set_brightness(0); break; case VISUAL_BRIGHTNESS: if (draw) { Draw_Menu_Item(row, ICON_Brightness, GET_TEXT_F(MSG_BRIGHTNESS)); Draw_Float(ui.brightness, row, false, 1); } else Modify_Value(ui.brightness, LCD_BRIGHTNESS_MIN, LCD_BRIGHTNESS_MAX, 1, ui.refresh_brightness); break; case VISUAL_TIME_FORMAT: if (draw) { Draw_Menu_Item(row, ICON_PrintTime, F("Progress as __h__m")); Draw_Checkbox(row, eeprom_settings.time_format_textual); } else { eeprom_settings.time_format_textual = !eeprom_settings.time_format_textual; Draw_Checkbox(row, eeprom_settings.time_format_textual); } break; case VISUAL_COLOR_THEMES: if (draw) Draw_Menu_Item(row, ICON_MaxSpeed, GET_TEXT_F(MSG_COLORS_SELECT), nullptr, true); else Draw_Menu(ColorSettings); break; } break; case ColorSettings: #define COLORSETTINGS_BACK 0 #define COLORSETTINGS_CURSOR (COLORSETTINGS_BACK + 1) #define COLORSETTINGS_SPLIT_LINE (COLORSETTINGS_CURSOR + 1) #define COLORSETTINGS_MENU_TOP_TXT (COLORSETTINGS_SPLIT_LINE + 1) #define COLORSETTINGS_MENU_TOP_BG (COLORSETTINGS_MENU_TOP_TXT + 1) #define COLORSETTINGS_HIGHLIGHT_BORDER (COLORSETTINGS_MENU_TOP_BG + 1) #define COLORSETTINGS_PROGRESS_PERCENT (COLORSETTINGS_HIGHLIGHT_BORDER + 1) #define COLORSETTINGS_PROGRESS_TIME (COLORSETTINGS_PROGRESS_PERCENT + 1) #define COLORSETTINGS_PROGRESS_STATUS_BAR (COLORSETTINGS_PROGRESS_TIME + 1) #define COLORSETTINGS_PROGRESS_STATUS_AREA (COLORSETTINGS_PROGRESS_STATUS_BAR + 1) #define COLORSETTINGS_PROGRESS_COORDINATES (COLORSETTINGS_PROGRESS_STATUS_AREA + 1) #define COLORSETTINGS_PROGRESS_COORDINATES_LINE (COLORSETTINGS_PROGRESS_COORDINATES + 1) #define COLORSETTINGS_TOTAL COLORSETTINGS_PROGRESS_COORDINATES_LINE switch (item) { case COLORSETTINGS_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Visual, VISUAL_COLOR_THEMES); break; case COLORSETTINGS_CURSOR: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Cursor")); Draw_Option(eeprom_settings.cursor_color, color_names, row, false, true); } else Modify_Option(eeprom_settings.cursor_color, color_names, Custom_Colors); break; case COLORSETTINGS_SPLIT_LINE: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Menu Split Line")); Draw_Option(eeprom_settings.menu_split_line, color_names, row, false, true); } else Modify_Option(eeprom_settings.menu_split_line, color_names, Custom_Colors); break; case COLORSETTINGS_MENU_TOP_TXT: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Menu Header Text")); Draw_Option(eeprom_settings.menu_top_txt, color_names, row, false, true); } else Modify_Option(eeprom_settings.menu_top_txt, color_names, Custom_Colors); break; case COLORSETTINGS_MENU_TOP_BG: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Menu Header Bg")); Draw_Option(eeprom_settings.menu_top_bg, color_names, row, false, true); } else Modify_Option(eeprom_settings.menu_top_bg, color_names, Custom_Colors); break; case COLORSETTINGS_HIGHLIGHT_BORDER: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Highlight Box")); Draw_Option(eeprom_settings.highlight_box, color_names, row, false, true); } else Modify_Option(eeprom_settings.highlight_box, color_names, Custom_Colors); break; case COLORSETTINGS_PROGRESS_PERCENT: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Progress Percent")); Draw_Option(eeprom_settings.progress_percent, color_names, row, false, true); } else Modify_Option(eeprom_settings.progress_percent, color_names, Custom_Colors); break; case COLORSETTINGS_PROGRESS_TIME: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Progress Time")); Draw_Option(eeprom_settings.progress_time, color_names, row, false, true); } else Modify_Option(eeprom_settings.progress_time, color_names, Custom_Colors); break; case COLORSETTINGS_PROGRESS_STATUS_BAR: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Status Bar Text")); Draw_Option(eeprom_settings.status_bar_text, color_names, row, false, true); } else Modify_Option(eeprom_settings.status_bar_text, color_names, Custom_Colors); break; case COLORSETTINGS_PROGRESS_STATUS_AREA: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Status Area Text")); Draw_Option(eeprom_settings.status_area_text, color_names, row, false, true); } else Modify_Option(eeprom_settings.status_area_text, color_names, Custom_Colors); break; case COLORSETTINGS_PROGRESS_COORDINATES: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Coordinates Text")); Draw_Option(eeprom_settings.coordinates_text, color_names, row, false, true); } else Modify_Option(eeprom_settings.coordinates_text, color_names, Custom_Colors); break; case COLORSETTINGS_PROGRESS_COORDINATES_LINE: if (draw) { Draw_Menu_Item(row, ICON_MaxSpeed, F("Coordinates Line")); Draw_Option(eeprom_settings.coordinates_split_line, color_names, row, false, true); } else Modify_Option(eeprom_settings.coordinates_split_line, color_names, Custom_Colors); break; } // switch (item) break; #if HAS_HOSTACTION_MENUS case HostSettings: #define HOSTSETTINGS_BACK 0 #define HOSTSETTINGS_ACTIONCOMMANDS (HOSTSETTINGS_BACK + 1) #define HOSTSETTINGS_TOTAL HOSTSETTINGS_ACTIONCOMMANDS switch (item) { case HOSTSETTINGS_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Control, CONTROL_HOSTSETTINGS); break; case HOSTSETTINGS_ACTIONCOMMANDS: if (draw) Draw_Menu_Item(row, ICON_File, F("Host Actions")); else Draw_Menu(ActionCommands); break; } break; case ActionCommands: #define ACTIONCOMMANDS_BACK 0 #define ACTIONCOMMANDS_1 (ACTIONCOMMANDS_BACK + 1) #define ACTIONCOMMANDS_2 (ACTIONCOMMANDS_1 + 1) #define ACTIONCOMMANDS_3 (ACTIONCOMMANDS_2 + 1) #define ACTIONCOMMANDS_TOTAL ACTIONCOMMANDS_3 switch (item) { case ACTIONCOMMANDS_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(HostSettings, HOSTSETTINGS_ACTIONCOMMANDS); break; case ACTIONCOMMANDS_1: if (draw) { Draw_Menu_Item(row, ICON_File, F("Action #1")); Draw_String(action1, row); } else Modify_String(action1, 8, true); break; case ACTIONCOMMANDS_2: if (draw) { Draw_Menu_Item(row, ICON_File, F("Action #2")); Draw_String(action2, row); } else Modify_String(action2, 8, true); break; case ACTIONCOMMANDS_3: if (draw) { Draw_Menu_Item(row, ICON_File, F("Action #3")); Draw_String(action3, row); } else Modify_String(action3, 8, true); break; } break; #endif case Advanced: #define ADVANCED_BACK 0 #define ADVANCED_BEEPER (ADVANCED_BACK + ENABLED(SOUND_MENU_ITEM)) #define ADVANCED_PROBE (ADVANCED_BEEPER + ENABLED(HAS_BED_PROBE)) #define ADVANCED_CORNER (ADVANCED_PROBE + 1) #define ADVANCED_LA (ADVANCED_CORNER + ENABLED(LIN_ADVANCE)) #define ADVANCED_LOAD (ADVANCED_LA + ENABLED(ADVANCED_PAUSE_FEATURE)) #define ADVANCED_UNLOAD (ADVANCED_LOAD + ENABLED(ADVANCED_PAUSE_FEATURE)) #define ADVANCED_COLD_EXTRUDE (ADVANCED_UNLOAD + ENABLED(PREVENT_COLD_EXTRUSION)) #define ADVANCED_FILSENSORENABLED (ADVANCED_COLD_EXTRUDE + ENABLED(FILAMENT_RUNOUT_SENSOR)) #define ADVANCED_FILSENSORDISTANCE (ADVANCED_FILSENSORENABLED + ENABLED(HAS_FILAMENT_RUNOUT_DISTANCE)) #define ADVANCED_POWER_LOSS (ADVANCED_FILSENSORDISTANCE + ENABLED(POWER_LOSS_RECOVERY)) #define ADVANCED_BAUDRATE_MODE (ADVANCED_POWER_LOSS + ENABLED(BAUD_RATE_GCODE)) #define ADVANCED_ESDIAG (ADVANCED_BAUDRATE_MODE + ENABLED(HAS_ESDIAG)) #define ADVANCED_LOCKSCREEN (ADVANCED_ESDIAG + ENABLED(HAS_LOCKSCREEN)) #define ADVANCED_TOTAL ADVANCED_LOCKSCREEN switch (item) { case ADVANCED_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Control, CONTROL_ADVANCED); break; #if ENABLED(SOUND_MENU_ITEM) case ADVANCED_BEEPER: if (draw) { Draw_Menu_Item(row, ICON_Sound, GET_TEXT_F(MSG_SOUND_ENABLE)); Draw_Checkbox(row, ui.sound_on); } else { ui.sound_on = !ui.sound_on; Draw_Checkbox(row, ui.sound_on); } break; #endif #if HAS_BED_PROBE case ADVANCED_PROBE: if (draw) Draw_Menu_Item(row, ICON_ProbeSet, GET_TEXT_F(MSG_ZPROBE_SETTINGS), nullptr, true); else Draw_Menu(ProbeMenu); break; #endif case ADVANCED_CORNER: if (draw) { Draw_Menu_Item(row, ICON_MaxAccelerated, F("Bed Screw Inset")); Draw_Float(temp_val.corner_pos, row, false, 10); } else Modify_Value(temp_val.corner_pos, 1, 100, 10); break; #if ENABLED(LIN_ADVANCE) case ADVANCED_LA: if (draw) { Draw_Menu_Item(row, ICON_MaxAccelerated, GET_TEXT_F(MSG_ADVANCE_K_E)); Draw_Float(planner.extruder_advance_K[0], row, false, 100); } else Modify_Value(planner.extruder_advance_K[0], 0, 10, 100); break; #endif #if ENABLED(ADVANCED_PAUSE_FEATURE) case ADVANCED_LOAD: if (draw) { Draw_Menu_Item(row, ICON_WriteEEPROM, GET_TEXT_F(MSG_FILAMENT_LOAD)); Draw_Float(fc_settings[0].load_length, row, false, 1); } else Modify_Value(fc_settings[0].load_length, 0, EXTRUDE_MAXLENGTH, 1); break; case ADVANCED_UNLOAD: if (draw) { Draw_Menu_Item(row, ICON_ReadEEPROM, GET_TEXT_F(MSG_FILAMENT_UNLOAD)); Draw_Float(fc_settings[0].unload_length, row, false, 1); } else Modify_Value(fc_settings[0].unload_length, 0, EXTRUDE_MAXLENGTH, 1); break; #endif // ADVANCED_PAUSE_FEATURE #if ENABLED(PREVENT_COLD_EXTRUSION) case ADVANCED_COLD_EXTRUDE: if (draw) { Draw_Menu_Item(row, ICON_Cool, F("Min Extrusion T")); Draw_Float(thermalManager.extrude_min_temp, row, false, 1); } else { Modify_Value(thermalManager.extrude_min_temp, 0, MAX_E_TEMP, 1); thermalManager.allow_cold_extrude = (thermalManager.extrude_min_temp == 0); } break; #endif #if ENABLED(FILAMENT_RUNOUT_SENSOR) case ADVANCED_FILSENSORENABLED: if (draw) { Draw_Menu_Item(row, ICON_Extruder, GET_TEXT_F(MSG_RUNOUT_ENABLE)); Draw_Checkbox(row, runout.enabled); } else { runout.enabled = !runout.enabled; Draw_Checkbox(row, runout.enabled); } break; #if ENABLED(HAS_FILAMENT_RUNOUT_DISTANCE) case ADVANCED_FILSENSORDISTANCE: if (draw) { Draw_Menu_Item(row, ICON_MaxAccE, GET_TEXT_F(MSG_RUNOUT_DISTANCE_MM)); Draw_Float(runout.runout_distance(), row, false, 10); } else Modify_Value(runout.runout_distance(), 0, 999, 10); break; #endif #endif // FILAMENT_RUNOUT_SENSOR #if ENABLED(POWER_LOSS_RECOVERY) case ADVANCED_POWER_LOSS: if (draw) { Draw_Menu_Item(row, ICON_Motion, GET_TEXT_F(MSG_OUTAGE_RECOVERY)); Draw_Checkbox(row, recovery.enabled); } else { recovery.enable(!recovery.enabled); Draw_Checkbox(row, recovery.enabled); } break; #endif #if ENABLED(BAUD_RATE_GCODE) case ADVANCED_BAUDRATE_MODE: if (draw) { Draw_Menu_Item(row, ICON_Setspeed, F("115k Baud")); Draw_Checkbox(row, eeprom_settings.Baud115k); } else { eeprom_settings.Baud115k = !eeprom_settings.Baud115k; queue.inject(eeprom_settings.Baud115k ? F("M575 P0 B115200") : F("M575 P0 B250000")); } break; #endif #if HAS_ESDIAG case ADVANCED_ESDIAG: if (draw) Draw_Menu_Item(row, ICON_ESDiag, F("End-stops diagnostic")); else DWIN_EndstopsDiag(); break; #endif #if HAS_LOCKSCREEN case ADVANCED_LOCKSCREEN: if (draw) Draw_Menu_Item(row, ICON_Lock, GET_TEXT_F(MSG_LOCKSCREEN)); else DWIN_LockScreen(); break; #endif } break; #if HAS_BED_PROBE case ProbeMenu: #define PROBE_BACK 0 #define PROBE_XOFFSET (PROBE_BACK + 1) #define PROBE_YOFFSET (PROBE_XOFFSET + 1) #define PROBE_ZOFFSET (PROBE_YOFFSET + 1) #define PROBE_HSMODE (PROBE_ZOFFSET + ENABLED(BLTOUCH)) #define PROBE_ALARMR (PROBE_HSMODE + ENABLED(BLTOUCH)) #define PROBE_SELFTEST (PROBE_ALARMR + ENABLED(BLTOUCH)) #define PROBE_MOVEP (PROBE_SELFTEST + ENABLED(BLTOUCH)) #define PROBE_TEST (PROBE_MOVEP + 1) #define PROBE_TEST_COUNT (PROBE_TEST + 1) #define PROBE_TOTAL PROBE_TEST_COUNT static uint8_t testcount = 4; switch (item) { case PROBE_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Advanced, ADVANCED_PROBE); break; case PROBE_XOFFSET: if (draw) { Draw_Menu_Item(row, ICON_StepX, GET_TEXT_F(MSG_ZPROBE_XOFFSET)); Draw_Float(probe.offset.x, row, false, 10); } else Modify_Value(probe.offset.x, -MAX_XY_OFFSET, MAX_XY_OFFSET, 10); break; case PROBE_YOFFSET: if (draw) { Draw_Menu_Item(row, ICON_StepY, GET_TEXT_F(MSG_ZPROBE_YOFFSET)); Draw_Float(probe.offset.y, row, false, 10); } else Modify_Value(probe.offset.y, -MAX_XY_OFFSET, MAX_XY_OFFSET, 10); break; case PROBE_ZOFFSET: if (draw) { Draw_Menu_Item(row, ICON_StepZ, GET_TEXT_F(MSG_ZPROBE_ZOFFSET)); Draw_Float(probe.offset.z, row, false, 100); } else Modify_Value(probe.offset.z, MIN_Z_OFFSET, MAX_Z_OFFSET, 100); break; #if ENABLED(BLTOUCH) case PROBE_HSMODE: if (draw) { Draw_Menu_Item(row, ICON_HSMode, GET_TEXT(MSG_BLTOUCH_SPEED_MODE)); Draw_Checkbox(row, bltouch.high_speed_mode); } else { bltouch.high_speed_mode = !bltouch.high_speed_mode; Draw_Checkbox(row, bltouch.high_speed_mode); } break; case PROBE_ALARMR: if (draw) Draw_Menu_Item(row, ICON_ProbeAlarm, GET_TEXT_F(MSG_BLTOUCH_RESET)); else { gcode.process_subcommands_now(F("M280 P0 S160")); AudioFeedback(); } break; case PROBE_SELFTEST: if (draw) Draw_Menu_Item(row, ICON_ProbeSelfTest, GET_TEXT_F(MSG_BLTOUCH_SELFTEST)); else { gcode.process_subcommands_now(F("M280 P0 S120\nG4 P1000\nM280 P0 S160")); planner.synchronize(); AudioFeedback(); } break; case PROBE_MOVEP: if (draw) { Draw_Menu_Item(row, ICON_ProbeDeploy, GET_TEXT_F(MSG_BLTOUCH_DEPLOY)); Draw_Checkbox(row, temp_val.probe_deployed); } else { temp_val.probe_deployed = !temp_val.probe_deployed; if (temp_val.probe_deployed == true) gcode.process_subcommands_now(F("M280 P0 S10")); else gcode.process_subcommands_now(F("M280 P0 S90")); Draw_Checkbox(row, temp_val.probe_deployed); } break; #endif case PROBE_TEST: if (draw) Draw_Menu_Item(row, ICON_ProbeTest, GET_TEXT_F(MSG_M48_TEST)); else { sprintf_P(cmd, PSTR("G28O\nM48 X%s Y%s P%i"), dtostrf((X_BED_SIZE + X_MIN_POS) / 2.0f, 1, 3, str_1), dtostrf((Y_BED_SIZE + Y_MIN_POS) / 2.0f, 1, 3, str_2), testcount); gcode.process_subcommands_now(cmd); } break; case PROBE_TEST_COUNT: if (draw) { Draw_Menu_Item(row, ICON_ProbeTestCount, F("Probe Test Count")); Draw_Float(testcount, row, false, 1); } else Modify_Value(testcount, 4, 50, 1); break; } break; #endif case InfoMain: case Info: #define INFO_BACK 0 #define INFO_PRINTCOUNT (INFO_BACK + ENABLED(PRINTCOUNTER)) #define INFO_PRINTTIME (INFO_PRINTCOUNT + ENABLED(PRINTCOUNTER)) #define INFO_SIZE (INFO_PRINTTIME + 1) #define INFO_VERSION (INFO_SIZE + 1) #define INFO_CONTACT (INFO_VERSION + 1) #define INFO_TOTAL INFO_BACK switch (item) { case INFO_BACK: if (draw) { Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); #if ENABLED(PRINTCOUNTER) char row1[50], row2[50], buf[32]; printStatistics ps = print_job_timer.getStats(); sprintf_P(row1, PSTR("%i prints, %i finished"), ps.totalPrints, ps.finishedPrints); sprintf_P(row2, PSTR("%s m filament used"), dtostrf(ps.filamentUsed / 1000, 1, 2, str_1)); Draw_Menu_Item(INFO_PRINTCOUNT, ICON_HotendTemp, row1, row2, false, true); duration_t(print_job_timer.getStats().printTime).toString(buf); sprintf_P(row1, PSTR("Printed: %s"), buf); duration_t(print_job_timer.getStats().longestPrint).toString(buf); sprintf_P(row2, PSTR("Longest: %s"), buf); Draw_Menu_Item(INFO_PRINTTIME, ICON_PrintTime, row1, row2, false, true); #endif Draw_Menu_Item(INFO_SIZE, ICON_PrintSize, F(MACHINE_SIZE), nullptr, false, true); Draw_Menu_Item(INFO_VERSION, ICON_Version, F(SHORT_BUILD_VERSION), nullptr, false, true); Draw_Menu_Item(INFO_CONTACT, ICON_Contact, F(CORP_WEBSITE), nullptr, false, true); } else { if (menu == Info) Draw_Menu(Control, CONTROL_INFO); else Draw_Main_Menu(3); } break; } break; #if HAS_MESH case Leveling: #define LEVELING_BACK 0 #define LEVELING_ACTIVE (LEVELING_BACK + 1) #define LEVELING_GET_TILT (LEVELING_ACTIVE + BOTH(HAS_BED_PROBE, AUTO_BED_LEVELING_UBL)) #define LEVELING_GET_MESH (LEVELING_GET_TILT + 1) #define LEVELING_MANUAL (LEVELING_GET_MESH + 1) #define LEVELING_VIEW (LEVELING_MANUAL + 1) #define LEVELING_SETTINGS (LEVELING_VIEW + 1) #define LEVELING_SLOT (LEVELING_SETTINGS + ENABLED(AUTO_BED_LEVELING_UBL)) #define LEVELING_LOAD (LEVELING_SLOT + ENABLED(AUTO_BED_LEVELING_UBL)) #define LEVELING_SAVE (LEVELING_LOAD + ENABLED(AUTO_BED_LEVELING_UBL)) #define LEVELING_TOTAL LEVELING_SAVE switch (item) { case LEVELING_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Main_Menu(3); break; case LEVELING_ACTIVE: if (draw) { Draw_Menu_Item(row, ICON_MeshActive, GET_TEXT_F(MSG_MESH_LEVELING)); Draw_Checkbox(row, planner.leveling_active); } else { if (!planner.leveling_active) { set_bed_leveling_enabled(!planner.leveling_active); if (!planner.leveling_active) { Confirm_Handler(LevelError); break; } } else set_bed_leveling_enabled(!planner.leveling_active); Draw_Checkbox(row, planner.leveling_active); } break; #if BOTH(HAS_BED_PROBE, AUTO_BED_LEVELING_UBL) case LEVELING_GET_TILT: if (draw) Draw_Menu_Item(row, ICON_Tilt, F("Autotilt Current Mesh")); else { if (bedlevel.storage_slot < 0) { Popup_Handler(MeshSlot); break; } PreheatBefore(); Popup_Handler(Home); gcode.home_all_axes(true); Popup_Handler(Level); if (mesh_conf.tilt_grid > 1) { sprintf_P(cmd, PSTR("G29 J%i"), mesh_conf.tilt_grid); gcode.process_subcommands_now(cmd); } else gcode.process_subcommands_now(F("G29 J")); planner.synchronize(); Redraw_Menu(); } break; #endif case LEVELING_GET_MESH: if (draw) Draw_Menu_Item(row, ICON_Mesh, GET_TEXT_F(MSG_UBL_BUILD_MESH_MENU)); else { #if ENABLED(AUTO_BED_LEVELING_UBL) if (bedlevel.storage_slot < 0) { Popup_Handler(MeshSlot, true); break; } #endif PreheatBefore(); Popup_Handler(Home); gcode.home_all_axes(true); #if ENABLED(AUTO_BED_LEVELING_UBL) #if HAS_BED_PROBE Popup_Handler(Level); gcode.process_subcommands_now(F("G29 P1")); gcode.process_subcommands_now(F("G29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nG29 P3\nM420 S1")); planner.synchronize(); Update_Status(GET_TEXT_F(MSG_MESH_DONE)); Popup_Handler(SaveLevel); #else level_state = planner.leveling_active; set_bed_leveling_enabled(false); mesh_conf.goto_mesh_value = true; mesh_conf.mesh_x = mesh_conf.mesh_y = 0; Popup_Handler(MoveWait); mesh_conf.manual_mesh_move(); Draw_Menu(UBLMesh); #endif #elif HAS_BED_PROBE Popup_Handler(Level); gcode.process_subcommands_now(F("G29")); planner.synchronize(); Update_Status(GET_TEXT_F(MSG_MESH_DONE)); Popup_Handler(SaveLevel); #else level_state = planner.leveling_active; set_bed_leveling_enabled(false); temp_val.gridpoint = 1; Popup_Handler(MoveWait); gcode.process_subcommands_now(F("M211 S0\nG29")); planner.synchronize(); Draw_Menu(ManualMesh); #endif } break; case LEVELING_MANUAL: if (draw) Draw_Menu_Item(row, ICON_Mesh, GET_TEXT_F(MSG_UBL_MESH_EDIT), nullptr, true); else { #if ENABLED(AUTO_BED_LEVELING_BILINEAR) if (!leveling_is_valid()) { Confirm_Handler(InvalidMesh); break; } #endif #if ENABLED(AUTO_BED_LEVELING_UBL) if (bedlevel.storage_slot < 0) { Popup_Handler(MeshSlot); break; } #endif PreheatBefore(); if (axes_should_home()) { Popup_Handler(Home); gcode.home_all_axes(true); } level_state = planner.leveling_active; set_bed_leveling_enabled(false); mesh_conf.goto_mesh_value = false; Popup_Handler(MoveWait); mesh_conf.manual_mesh_move(); gcode.process_subcommands_now(F("M211 S0")); Draw_Menu(LevelManual); } break; case LEVELING_VIEW: if (draw) Draw_Menu_Item(row, ICON_Mesh, GET_TEXT_F(MSG_MESH_VIEW), nullptr, true); else { #if ENABLED(AUTO_BED_LEVELING_UBL) if (bedlevel.storage_slot < 0) { Popup_Handler(MeshSlot); break; } #endif Draw_Menu(LevelView); } break; case LEVELING_SETTINGS: if (draw) Draw_Menu_Item(row, ICON_Step, GET_TEXT_F(MSG_ADVANCED_SETTINGS), nullptr, true); else Draw_Menu(LevelSettings); break; #if ENABLED(AUTO_BED_LEVELING_UBL) case LEVELING_SLOT: if (draw) { Draw_Menu_Item(row, ICON_PrintSize, GET_TEXT_F(MSG_UBL_STORAGE_SLOT)); Draw_Float(bedlevel.storage_slot, row, false, 1); } else Modify_Value(bedlevel.storage_slot, 0, settings.calc_num_meshes() - 1, 1); break; case LEVELING_LOAD: if (draw) Draw_Menu_Item(row, ICON_ReadEEPROM, GET_TEXT_F(MSG_UBL_LOAD_MESH)); else { if (bedlevel.storage_slot < 0) { Popup_Handler(MeshSlot); break; } gcode.process_subcommands_now(F("G29 L")); planner.synchronize(); AudioFeedback(true); } break; case LEVELING_SAVE: if (draw) Draw_Menu_Item(row, ICON_WriteEEPROM, GET_TEXT_F(MSG_UBL_SAVE_MESH)); else { if (bedlevel.storage_slot < 0) { Popup_Handler(MeshSlot); break; } gcode.process_subcommands_now(F("G29 S")); planner.synchronize(); AudioFeedback(true); } break; #endif } break; case LevelView: #define LEVELING_VIEW_BACK 0 #define LEVELING_VIEW_MESH (LEVELING_VIEW_BACK + 1) #define LEVELING_VIEW_TEXT (LEVELING_VIEW_MESH + 1) #define LEVELING_VIEW_ASYMMETRIC (LEVELING_VIEW_TEXT + 1) #define LEVELING_VIEW_TOTAL LEVELING_VIEW_ASYMMETRIC switch (item) { case LEVELING_VIEW_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Leveling, LEVELING_VIEW); break; case LEVELING_VIEW_MESH: if (draw) Draw_Menu_Item(row, ICON_PrintSize, GET_TEXT_F(MSG_MESH_VIEW), nullptr, true); else Draw_Menu(MeshViewer); break; case LEVELING_VIEW_TEXT: if (draw) { Draw_Menu_Item(row, ICON_Contact, F("Viewer Show Values")); Draw_Checkbox(row, mesh_conf.viewer_print_value); } else { mesh_conf.viewer_print_value = !mesh_conf.viewer_print_value; Draw_Checkbox(row, mesh_conf.viewer_print_value); } break; case LEVELING_VIEW_ASYMMETRIC: if (draw) { Draw_Menu_Item(row, ICON_Axis, F("Viewer Asymmetric")); Draw_Checkbox(row, mesh_conf.viewer_asymmetric_range); } else { mesh_conf.viewer_asymmetric_range = !mesh_conf.viewer_asymmetric_range; Draw_Checkbox(row, mesh_conf.viewer_asymmetric_range); } break; } break; case LevelSettings: #define LEVELING_SETTINGS_BACK 0 #define LEVELING_SETTINGS_LEVELTEMP_MODE (LEVELING_SETTINGS_BACK + ENABLED(PREHEAT_BEFORE_LEVELING)) #define LEVELING_SETTINGS_HOTENDTEMP (LEVELING_SETTINGS_LEVELTEMP_MODE + ENABLED(PREHEAT_BEFORE_LEVELING)) #define LEVELING_SETTINGS_BEDTEMP (LEVELING_SETTINGS_HOTENDTEMP + ENABLED(PREHEAT_BEFORE_LEVELING)) #define LEVELING_SETTINGS_FADE (LEVELING_SETTINGS_BEDTEMP + 1) #define LEVELING_SETTINGS_TILT (LEVELING_SETTINGS_FADE + ENABLED(AUTO_BED_LEVELING_UBL)) #define LEVELING_SETTINGS_PLANE (LEVELING_SETTINGS_TILT + ENABLED(AUTO_BED_LEVELING_UBL)) #define LEVELING_SETTINGS_ZERO (LEVELING_SETTINGS_PLANE + ENABLED(AUTO_BED_LEVELING_UBL)) #define LEVELING_SETTINGS_UNDEF (LEVELING_SETTINGS_ZERO + ENABLED(AUTO_BED_LEVELING_UBL)) #define LEVELING_SETTINGS_TOTAL LEVELING_SETTINGS_UNDEF switch (item) { case LEVELING_SETTINGS_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Menu(Leveling, LEVELING_SETTINGS); break; #if ENABLED(PREHEAT_BEFORE_LEVELING) case LEVELING_SETTINGS_LEVELTEMP_MODE: if (draw) { Draw_Menu_Item(row, ICON_Homing, F("Preheat Mode")); Draw_Option(temp_val.LevelingTempmode, preheat_levmodes, row); } else Modify_Option(temp_val.LevelingTempmode, preheat_levmodes, 3); break; case LEVELING_SETTINGS_HOTENDTEMP: if (draw) { Draw_Menu_Item(row, ICON_SetEndTemp, F("Preheat Hotend")); Draw_Float(eeprom_settings.hotend_levtemp, row, false, 1); } else Modify_Value(eeprom_settings.hotend_levtemp, MIN_E_TEMP, MAX_E_TEMP, 1); break; case LEVELING_SETTINGS_BEDTEMP: if (draw) { Draw_Menu_Item(row, ICON_SetBedTemp, F("Preheat Bed")); Draw_Float(eeprom_settings.bed_levtemp, row, false, 1); } else Modify_Value(eeprom_settings.bed_levtemp, MIN_BED_TEMP, MAX_BED_TEMP, 1); break; #endif case LEVELING_SETTINGS_FADE: if (draw) { Draw_Menu_Item(row, ICON_Fade, GET_TEXT_F(MSG_Z_FADE_HEIGHT)); Draw_Float(planner.z_fade_height, row, false, 1); } else { Modify_Value(planner.z_fade_height, 0, Z_MAX_POS, 1); planner.z_fade_height = -1; set_z_fade_height(planner.z_fade_height); } break; #if ENABLED(AUTO_BED_LEVELING_UBL) case LEVELING_SETTINGS_TILT: if (draw) { Draw_Menu_Item(row, ICON_Tilt, F("Tilting Grid")); Draw_Float(mesh_conf.tilt_grid, row, false, 1); } else Modify_Value(mesh_conf.tilt_grid, 1, 8, 1); break; case LEVELING_SETTINGS_PLANE: if (draw) Draw_Menu_Item(row, ICON_ResumeEEPROM, F("Convert Mesh to Plane")); else { if (mesh_conf.create_plane_from_mesh()) break; gcode.process_subcommands_now(F("M420 S1")); planner.synchronize(); AudioFeedback(true); } break; case LEVELING_SETTINGS_ZERO: if (draw) Draw_Menu_Item(row, ICON_Mesh, F("Zero Current Mesh")); else ZERO(bedlevel.z_values); break; case LEVELING_SETTINGS_UNDEF: if (draw) Draw_Menu_Item(row, ICON_Mesh, F("Clear Current Mesh")); else bedlevel.invalidate(); break; #endif // AUTO_BED_LEVELING_UBL } break; case MeshViewer: #define MESHVIEW_BACK 0 #define MESHVIEW_TOTAL MESHVIEW_BACK if (item == MESHVIEW_BACK) { if (draw) { Draw_Menu_Item(0, ICON_Back, GET_TEXT_F(MSG_BACK)); mesh_conf.Draw_Bed_Mesh(); mesh_conf.Set_Mesh_Viewer_Status(); } else if (!mesh_conf.drawing_mesh) { Draw_Menu(LevelView, LEVELING_VIEW_MESH); Update_Status(""); } } break; case LevelManual: #define LEVELING_M_BACK 0 #define LEVELING_M_X (LEVELING_M_BACK + 1) #define LEVELING_M_Y (LEVELING_M_X + 1) #define LEVELING_M_NEXT (LEVELING_M_Y + 1) #define LEVELING_M_OFFSET (LEVELING_M_NEXT + 1) #define LEVELING_M_UP (LEVELING_M_OFFSET + 1) #define LEVELING_M_DOWN (LEVELING_M_UP + 1) #define LEVELING_M_GOTO_VALUE (LEVELING_M_DOWN + 1) #define LEVELING_M_UNDEF (LEVELING_M_GOTO_VALUE + ENABLED(AUTO_BED_LEVELING_UBL)) #define LEVELING_M_TOTAL LEVELING_M_UNDEF switch (item) { case LEVELING_M_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else { set_bed_leveling_enabled(level_state); TERN_(AUTO_BED_LEVELING_BILINEAR, bedlevel.refresh_bed_level()); Draw_Menu(Leveling, LEVELING_MANUAL); } break; case LEVELING_M_X: if (draw) { Draw_Menu_Item(row, ICON_MoveX, GET_TEXT_F(MSG_MESH_X)); Draw_Float(mesh_conf.mesh_x, row, 0, 1); } else Modify_Value(mesh_conf.mesh_x, 0, GRID_MAX_POINTS_X - 1, 1); break; case LEVELING_M_Y: if (draw) { Draw_Menu_Item(row, ICON_MoveY, GET_TEXT_F(MSG_MESH_Y)); Draw_Float(mesh_conf.mesh_y, row, 0, 1); } else Modify_Value(mesh_conf.mesh_y, 0, GRID_MAX_POINTS_Y - 1, 1); break; case LEVELING_M_NEXT: if (draw) Draw_Menu_Item(row, ICON_More, GET_TEXT_F(MSG_LEVEL_BED_NEXT_POINT)); else { if (mesh_conf.mesh_x != (GRID_MAX_POINTS_X - 1) || mesh_conf.mesh_y != (GRID_MAX_POINTS_Y - 1)) { if ((mesh_conf.mesh_x == (GRID_MAX_POINTS_X - 1) && !(mesh_conf.mesh_y & 1)) || (!mesh_conf.mesh_x && (mesh_conf.mesh_y & 1))) mesh_conf.mesh_y++; else if (mesh_conf.mesh_y & 1) mesh_conf.mesh_x--; else mesh_conf.mesh_x++; mesh_conf.manual_mesh_move(); } } break; case LEVELING_M_OFFSET: if (draw) { Draw_Menu_Item(row, ICON_SetZOffset, F("Point Z Offset")); Draw_Float(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y], row, false, 100); } else { if (isnan(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y])) bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] = 0; Modify_Value(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y], MIN_Z_OFFSET, MAX_Z_OFFSET, 100); } break; case LEVELING_M_UP: if (draw) Draw_Menu_Item(row, ICON_Axis, F("Microstep Up")); else if (bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] < MAX_Z_OFFSET) { bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] += 0.01; gcode.process_subcommands_now(F("M290 Z0.01")); planner.synchronize(); current_position.z += 0.01f; sync_plan_position(); Draw_Float(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y], row - 1, false, 100); } break; case LEVELING_M_DOWN: if (draw) Draw_Menu_Item(row, ICON_AxisD, F("Microstep Down")); else if (bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] > MIN_Z_OFFSET) { bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] -= 0.01; gcode.process_subcommands_now(F("M290 Z-0.01")); planner.synchronize(); current_position.z -= 0.01f; sync_plan_position(); Draw_Float(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y], row - 2, false, 100); } break; case LEVELING_M_GOTO_VALUE: if (draw) { Draw_Menu_Item(row, ICON_StockConfiguration, F("Go to Mesh Z Value")); Draw_Checkbox(row, mesh_conf.goto_mesh_value); } else { mesh_conf.goto_mesh_value = !mesh_conf.goto_mesh_value; current_position.z = 0; mesh_conf.manual_mesh_move(true); Draw_Checkbox(row, mesh_conf.goto_mesh_value); } break; #if ENABLED(AUTO_BED_LEVELING_UBL) case LEVELING_M_UNDEF: if (draw) Draw_Menu_Item(row, ICON_ResumeEEPROM, F("Clear Point Value")); else { mesh_conf.manual_value_update(true); Redraw_Menu(false); } break; #endif } break; #endif // HAS_MESH #if ENABLED(AUTO_BED_LEVELING_UBL) && !HAS_BED_PROBE case UBLMesh: #define UBL_M_BACK 0 #define UBL_M_NEXT (UBL_M_BACK + 1) #define UBL_M_PREV (UBL_M_NEXT + 1) #define UBL_M_OFFSET (UBL_M_PREV + 1) #define UBL_M_UP (UBL_M_OFFSET + 1) #define UBL_M_DOWN (UBL_M_UP + 1) #define UBL_M_TOTAL UBL_M_DOWN switch (item) { case UBL_M_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else { set_bed_leveling_enabled(level_state); Draw_Menu(Leveling, LEVELING_GET_MESH); } break; case UBL_M_NEXT: if (draw) { if (mesh_conf.mesh_x != (GRID_MAX_POINTS_X - 1) || mesh_conf.mesh_y != (GRID_MAX_POINTS_Y - 1)) Draw_Menu_Item(row, ICON_More, GET_TEXT_F(MSG_LEVEL_BED_NEXT_POINT)); else Draw_Menu_Item(row, ICON_More, GET_TEXT_F(MSG_UBL_SAVE_MESH)); } else { if (mesh_conf.mesh_x != (GRID_MAX_POINTS_X - 1) || mesh_conf.mesh_y != (GRID_MAX_POINTS_Y - 1)) { if ((mesh_conf.mesh_x == (GRID_MAX_POINTS_X - 1) && !(mesh_conf.mesh_y & 1)) || (!mesh_conf.mesh_x && (mesh_conf.mesh_y & 1))) mesh_conf.mesh_y++; else if (mesh_conf.mesh_y & 1) mesh_conf.mesh_x--; else mesh_conf.mesh_x++; mesh_conf.manual_mesh_move(); } else { gcode.process_subcommands_now(F("G29 S")); planner.synchronize(); AudioFeedback(true); Draw_Menu(Leveling, LEVELING_GET_MESH); } } break; case UBL_M_PREV: if (draw) Draw_Menu_Item(row, ICON_More, F("Previous Point")); else { if (mesh_conf.mesh_x != 0 || mesh_conf.mesh_y != 0) { if ((mesh_conf.mesh_x == (GRID_MAX_POINTS_X - 1) && (mesh_conf.mesh_y & 1)) || (!mesh_conf.mesh_x && !(mesh_conf.mesh_y & 1))) mesh_conf.mesh_y--; else if (mesh_conf.mesh_y & 1) mesh_conf.mesh_x++; else mesh_conf.mesh_x--; mesh_conf.manual_mesh_move(); } } break; case UBL_M_OFFSET: if (draw) { Draw_Menu_Item(row, ICON_SetZOffset, F("Point Z Offset")); Draw_Float(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y], row, false, 100); } else { if (isnan(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y])) bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] = 0; Modify_Value(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y], MIN_Z_OFFSET, MAX_Z_OFFSET, 100); } break; case UBL_M_UP: if (draw) Draw_Menu_Item(row, ICON_Axis, F("Microstep Up")); else if (bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] < MAX_Z_OFFSET) { bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] += 0.01; gcode.process_subcommands_now(F("M290 Z0.01")); planner.synchronize(); current_position.z += 0.01f; sync_plan_position(); Draw_Float(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y], row - 1, false, 100); } break; case UBL_M_DOWN: if (draw) Draw_Menu_Item(row, ICON_Axis, F("Microstep Down")); else if (bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] > MIN_Z_OFFSET) { bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y] -= 0.01; gcode.process_subcommands_now(F("M290 Z-0.01")); planner.synchronize(); current_position.z -= 0.01f; sync_plan_position(); Draw_Float(bedlevel.z_values[mesh_conf.mesh_x][mesh_conf.mesh_y], row - 2, false, 100); } break; } break; #endif // AUTO_BED_LEVELING_UBL && !HAS_BED_PROBE #if ENABLED(PROBE_MANUALLY) case ManualMesh: #define MMESH_BACK 0 #define MMESH_NEXT (MMESH_BACK + 1) #define MMESH_OFFSET (MMESH_NEXT + 1) #define MMESH_UP (MMESH_OFFSET + 1) #define MMESH_DOWN (MMESH_UP + 1) #define MMESH_OLD (MMESH_DOWN + 1) #define MMESH_TOTAL MMESH_OLD switch (item) { case MMESH_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BUTTON_CANCEL)); else { gcode.process_subcommands_now(F("G29 A")); planner.synchronize(); set_bed_leveling_enabled(level_state); Draw_Menu(Leveling, LEVELING_GET_MESH); } break; case MMESH_NEXT: if (draw) { if (temp_val.gridpoint < GRID_MAX_POINTS) Draw_Menu_Item(row, ICON_More, GET_TEXT_F(MSG_LEVEL_BED_NEXT_POINT)); else Draw_Menu_Item(row, ICON_More, GET_TEXT_F(MSG_UBL_SAVE_MESH)); } else if (temp_val.gridpoint < GRID_MAX_POINTS) { Popup_Handler(MoveWait); gcode.process_subcommands_now(F("G29")); planner.synchronize(); temp_val.gridpoint++; Redraw_Menu(); } else { gcode.process_subcommands_now(F("G29")); planner.synchronize(); AudioFeedback(settings.save()); Draw_Menu(Leveling, LEVELING_GET_MESH); } break; case MMESH_OFFSET: if (draw) { Draw_Menu_Item(row, ICON_SetZOffset, F("Z Position")); current_position.z = MANUAL_PROBE_START_Z; Draw_Float(current_position.z, row, false, 100); } else Modify_Value(current_position.z, MIN_Z_OFFSET, MAX_Z_OFFSET, 100); break; case MMESH_UP: if (draw) Draw_Menu_Item(row, ICON_Axis, F("Microstep Up")); else if (current_position.z < MAX_Z_OFFSET) { gcode.process_subcommands_now(F("M290 Z0.01")); planner.synchronize(); current_position.z += 0.01f; sync_plan_position(); Draw_Float(current_position.z, row - 1, false, 100); } break; case MMESH_DOWN: if (draw) Draw_Menu_Item(row, ICON_AxisD, F("Microstep Down")); else if (current_position.z > MIN_Z_OFFSET) { gcode.process_subcommands_now(F("M290 Z-0.01")); planner.synchronize(); current_position.z -= 0.01f; sync_plan_position(); Draw_Float(current_position.z, row - 2, false, 100); } break; case MMESH_OLD: uint8_t mesh_x, mesh_y; // 0,0 -> 1,0 -> 2,0 -> 2,1 -> 1,1 -> 0,1 -> 0,2 -> 1,2 -> 2,2 mesh_y = (temp_val.gridpoint - 1) / (GRID_MAX_POINTS_Y); mesh_x = (temp_val.gridpoint - 1) % (GRID_MAX_POINTS_X); if (mesh_y & 1) mesh_x = (GRID_MAX_POINTS_X) - mesh_x - 1; const float currval = bedlevel.z_values[mesh_x][mesh_y]; if (draw) { Draw_Menu_Item(row, ICON_Zoffset, GET_TEXT_F(MSG_MESH_EDIT_Z)); Draw_Float(currval, row, false, 100); } else if (!isnan(currval)) { current_position.z = currval; planner.synchronize(); planner.buffer_line(current_position, homing_feedrate(Z_AXIS), active_extruder); planner.synchronize(); Draw_Float(current_position.z, row - 3, false, 100); } break; } break; #endif // PROBE_MANUALLY case Tune: #define TUNE_BACK 0 #define TUNE_SPEED (TUNE_BACK + 1) #define TUNE_FLOW (TUNE_SPEED + ENABLED(HAS_HOTEND)) #define TUNE_HOTEND (TUNE_FLOW + ENABLED(HAS_HOTEND)) #define TUNE_BED (TUNE_HOTEND + ENABLED(HAS_HEATED_BED)) #define TUNE_FAN (TUNE_BED + ENABLED(HAS_FAN)) #define TUNE_ZOFFSET (TUNE_FAN + ENABLED(HAS_ZOFFSET_ITEM)) #define TUNE_ZUP (TUNE_ZOFFSET + ENABLED(HAS_ZOFFSET_ITEM)) #define TUNE_ZDOWN (TUNE_ZUP + ENABLED(HAS_ZOFFSET_ITEM)) #define TUNE_FWRETRACT (TUNE_ZDOWN + ENABLED(FWRETRACT)) #define TUNE_HOSTACTIONS (TUNE_FWRETRACT + ENABLED(HAS_HOSTACTION_MENUS)) #define TUNE_CHANGEFIL (TUNE_HOSTACTIONS + ENABLED(FILAMENT_LOAD_UNLOAD_GCODES)) #define TUNE_FILSENSORENABLED (TUNE_CHANGEFIL + ENABLED(FILAMENT_RUNOUT_SENSOR)) #define TUNE_BACKLIGHT_OFF (TUNE_FILSENSORENABLED + 1) #define TUNE_BACKLIGHT (TUNE_BACKLIGHT_OFF + 1) #define TUNE_CASELIGHT (TUNE_BACKLIGHT + ENABLED(CASE_LIGHT_MENU)) #define TUNE_LEDCONTROL (TUNE_CASELIGHT + (ENABLED(LED_CONTROL_MENU) && DISABLED(CASE_LIGHT_USE_NEOPIXEL))) #define TUNE_LOCKSCREEN (TUNE_LEDCONTROL + ENABLED(HAS_LOCKSCREEN)) #define TUNE_TOTAL TUNE_LOCKSCREEN switch (item) { case TUNE_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BACK)); else Draw_Print_Screen(); break; case TUNE_SPEED: if (draw) { Draw_Menu_Item(row, ICON_Speed, GET_TEXT_F(MSG_SPEED)); Draw_Float(feedrate_percentage, row, false, 1); } else Modify_Value(feedrate_percentage, MIN_PRINT_SPEED, MAX_PRINT_SPEED, 1); break; #if HAS_HOTEND case TUNE_FLOW: if (draw) { Draw_Menu_Item(row, ICON_Speed, GET_TEXT_F(MSG_FLOW)); Draw_Float(planner.flow_percentage[0], row, false, 1); } else Modify_Value(planner.flow_percentage[0], MIN_FLOW_RATE, MAX_FLOW_RATE, 1); break; case TUNE_HOTEND: if (draw) { Draw_Menu_Item(row, ICON_SetEndTemp, F("Hotend")); Draw_Float(thermalManager.temp_hotend[0].target, row, false, 1); } else Modify_Value(thermalManager.temp_hotend[0].target, MIN_E_TEMP, MAX_E_TEMP, 1); break; #endif #if HAS_HEATED_BED case TUNE_BED: if (draw) { Draw_Menu_Item(row, ICON_SetBedTemp, F("Bed")); Draw_Float(thermalManager.temp_bed.target, row, false, 1); } else Modify_Value(thermalManager.temp_bed.target, MIN_BED_TEMP, MAX_BED_TEMP, 1); break; #endif #if HAS_FAN case TUNE_FAN: if (draw) { Draw_Menu_Item(row, ICON_FanSpeed, GET_TEXT_F(MSG_FAN_SPEED)); Draw_Float(thermalManager.fan_speed[0], row, false, 1); } else Modify_Value(thermalManager.fan_speed[0], MIN_FAN_SPEED, MAX_FAN_SPEED, 1); break; #endif #if HAS_ZOFFSET_ITEM case TUNE_ZOFFSET: if (draw) { Draw_Menu_Item(row, ICON_FanSpeed, F("Z-Offset")); Draw_Float(temp_val.zoffsetvalue, row, false, 100); } else Modify_Value(temp_val.zoffsetvalue, MIN_Z_OFFSET, MAX_Z_OFFSET, 100); break; case TUNE_ZUP: if (draw) Draw_Menu_Item(row, ICON_Axis, F("Z-Offset Up")); else if (temp_val.zoffsetvalue < MAX_Z_OFFSET) { gcode.process_subcommands_now(F("M290 Z0.01")); temp_val.zoffsetvalue += 0.01; Draw_Float(temp_val.zoffsetvalue, row - 1, false, 100); } break; case TUNE_ZDOWN: if (draw) Draw_Menu_Item(row, ICON_AxisD, F("Z-Offset Down")); else if (temp_val.zoffsetvalue > MIN_Z_OFFSET) { gcode.process_subcommands_now(F("M290 Z-0.01")); temp_val.zoffsetvalue -= 0.01; Draw_Float(temp_val.zoffsetvalue, row - 2, false, 100); } break; #endif #if ENABLED(FWRETRACT) case TUNE_FWRETRACT: if (draw) Draw_Menu_Item(row, ICON_StepE, GET_TEXT_F(MSG_AUTORETRACT), nullptr, true); else { temp_val.flag_tune = true; last_pos_selection = selection; Draw_Menu(FwRetraction); } break; #endif #if HAS_HOSTACTION_MENUS case TUNE_HOSTACTIONS: if (draw) Draw_Menu_Item(row, ICON_SetHome, F("Host Actions"), nullptr, true); else { temp_val.flag_tune = true; last_pos_selection = selection; Draw_Menu(HostActions); } break; #endif #if ENABLED(FILAMENT_LOAD_UNLOAD_GCODES) case TUNE_CHANGEFIL: if (draw) Draw_Menu_Item(row, ICON_ResumeEEPROM, GET_TEXT_F(MSG_FILAMENTCHANGE)); else Popup_Handler(ConfFilChange); break; #endif #if ENABLED(FILAMENT_RUNOUT_SENSOR) case TUNE_FILSENSORENABLED: if (draw) { Draw_Menu_Item(row, ICON_Extruder, GET_TEXT_F(MSG_RUNOUT_SENSOR)); Draw_Checkbox(row, runout.enabled); } else { runout.enabled = !runout.enabled; Draw_Checkbox(row, runout.enabled); } break; #endif case TUNE_BACKLIGHT_OFF: if (draw) Draw_Menu_Item(row, ICON_Brightness, GET_TEXT_F(MSG_BRIGHTNESS_OFF)); else ui.set_brightness(0); break; case TUNE_BACKLIGHT: if (draw) { Draw_Menu_Item(row, ICON_Brightness, GET_TEXT_F(MSG_BRIGHTNESS)); Draw_Float(ui.brightness, row, false, 1); } else Modify_Value(ui.brightness, LCD_BRIGHTNESS_MIN, LCD_BRIGHTNESS_MAX, 1, ui.refresh_brightness); break; #if ENABLED(CASE_LIGHT_MENU) case TUNE_CASELIGHT: if (draw) { Draw_Menu_Item(row, ICON_CaseLight, GET_TEXT_F(MSG_CASE_LIGHT)); Draw_Checkbox(row, caselight.on); } else { caselight.on = !caselight.on; caselight.update_enabled(); Draw_Checkbox(row, caselight.on); } break; #endif #if ENABLED(LED_CONTROL_MENU) && DISABLED(CASE_LIGHT_USE_NEOPIXEL) case TUNE_LEDCONTROL: if (draw) { Draw_Menu_Item(row, ICON_LedControl, GET_TEXT_F(MSG_LEDS)); Draw_Checkbox(row, leds.lights_on); } else { leds.toggle(); Draw_Checkbox(row, leds.lights_on); } break; #endif #if HAS_LOCKSCREEN case TUNE_LOCKSCREEN: if (draw) Draw_Menu_Item(row, ICON_Lock, GET_TEXT_F(MSG_LOCKSCREEN)); else DWIN_LockScreen(); break; #endif } break; #if HAS_PREHEAT && HAS_HOTEND case PreheatHotend: #define PREHEATHOTEND_BACK 0 #define PREHEATHOTEND_CONTINUE (PREHEATHOTEND_BACK + 1) #define PREHEATHOTEND_1 (PREHEATHOTEND_CONTINUE + (PREHEAT_COUNT >= 1)) #define PREHEATHOTEND_2 (PREHEATHOTEND_1 + (PREHEAT_COUNT >= 2)) #define PREHEATHOTEND_3 (PREHEATHOTEND_2 + (PREHEAT_COUNT >= 3)) #define PREHEATHOTEND_4 (PREHEATHOTEND_3 + (PREHEAT_COUNT >= 4)) #define PREHEATHOTEND_5 (PREHEATHOTEND_4 + (PREHEAT_COUNT >= 5)) #define PREHEATHOTEND_CUSTOM (PREHEATHOTEND_5 + 1) #define PREHEATHOTEND_TOTAL PREHEATHOTEND_CUSTOM switch (item) { case PREHEATHOTEND_BACK: if (draw) Draw_Menu_Item(row, ICON_Back, GET_TEXT_F(MSG_BUTTON_CANCEL)); else { thermalManager.setTargetHotend(0, 0); thermalManager.set_fan_speed(0, 0); Redraw_Menu(false, true, true); } break; case PREHEATHOTEND_CONTINUE: if (draw) Draw_Menu_Item(row, ICON_SetEndTemp, GET_TEXT_F(MSG_BUTTON_CONTINUE)); else { Popup_Handler(Heating); thermalManager.wait_for_hotend(0); switch (last_menu) { case Prepare: Popup_Handler(FilChange); sprintf_P(cmd, PSTR("M600 B1 R%i"), thermalManager.temp_hotend[0].target); gcode.process_subcommands_now(cmd); Draw_Menu(Prepare, PREPARE_CHANGEFIL); break; #if ENABLED(FILAMENT_LOAD_UNLOAD_GCODES) case ChangeFilament: switch (last_selection) { case CHANGEFIL_LOAD: Popup_Handler(FilLoad); Update_Status(GET_TEXT(MSG_FILAMENTLOAD)); gcode.process_subcommands_now(F("M701")); planner.synchronize(); Draw_Menu(ChangeFilament, CHANGEFIL_LOAD); break; case CHANGEFIL_UNLOAD: Popup_Handler(FilLoad, true); Update_Status(GET_TEXT(MSG_FILAMENTUNLOAD)); gcode.process_subcommands_now(F("M702")); planner.synchronize(); Draw_Menu(ChangeFilament, CHANGEFIL_UNLOAD); break; case CHANGEFIL_CHANGE: Popup_Handler(FilChange); Update_Status(GET_TEXT(MSG_FILAMENTCHANGE)); sprintf_P(cmd, PSTR("M600 B1 R%i"), thermalManager.temp_hotend[0].target); gcode.process_subcommands_now(cmd); Draw_Menu(ChangeFilament, CHANGEFIL_CHANGE); break; } break; #endif default: Redraw_Menu(true, true, true); break; } } break; #define _PREHEAT_HOTEND_CASE(N) \ case PREHEATHOTEND_##N: \ if (draw) Draw_Menu_Item(row, ICON_Temperature, F(PREHEAT_## N ##_LABEL)); \ else ui.preheat_hotend_and_fan((N) - 1); \ break; REPEAT_1(PREHEAT_COUNT, _PREHEAT_HOTEND_CASE) case PREHEATHOTEND_CUSTOM: if (draw) { Draw_Menu_Item(row, ICON_Temperature, GET_TEXT_F(MSG_PREHEAT_CUSTOM)); Draw_Float(thermalManager.temp_hotend[0].target, row, false, 1); } else Modify_Value(thermalManager.temp_hotend[0].target, EXTRUDE_MINTEMP, MAX_E_TEMP, 1); break; } break; #endif // HAS_PREHEAT && HAS_HOTEND } } FSTR_P CrealityDWINClass::Get_Menu_Title(uint8_t menu) { switch (menu) { case MainMenu: return GET_TEXT_F(MSG_MAIN); case Prepare: return GET_TEXT_F(MSG_PREPARE); case HomeMenu: return GET_TEXT_F(MSG_HOMING); case Move: return GET_TEXT_F(MSG_MOVE_AXIS); case ManualLevel: return GET_TEXT_F(MSG_BED_TRAMMING_MANUAL); #if HAS_ZOFFSET_ITEM case ZOffset: return F("Z Offset"); #endif #if HAS_PREHEAT case Preheat: return F("Preheat"); #endif #if ENABLED(FILAMENT_LOAD_UNLOAD_GCODES) case ChangeFilament: return GET_TEXT_F(MSG_FILAMENTCHANGE); #endif #if HAS_HOSTACTION_MENUS case HostActions: return F("Host Actions"); #endif #if HAS_CUSTOM_MENU case MenuCustom: #ifdef CUSTOM_MENU_CONFIG_TITLE return F(CUSTOM_MENU_CONFIG_TITLE); #else return F("Custom Commands"); #endif #endif case Control: return GET_TEXT_F(MSG_CONTROL); case TempMenu: return GET_TEXT_F(MSG_TEMPERATURE); #if HAS_HOTEND || HAS_HEATED_BED case PID: return F("PID Menu"); #endif #if HAS_HOTEND case HotendPID: return F("Hotend PID Settings"); #endif #if HAS_HEATED_BED case BedPID: return F("Bed PID Settings"); #endif #if HAS_PREHEAT #define _PREHEAT_TITLE_CASE(N) case Preheat##N: return F(PREHEAT_## N ##_LABEL " Settings"); REPEAT_1(PREHEAT_COUNT, _PREHEAT_TITLE_CASE) #endif case Motion: return F("Motion Settings"); #if ENABLED(FWRETRACT) case FwRetraction: return F("Firmware Retract"); #endif case HomeOffsets: return GET_TEXT_F(MSG_SET_HOME_OFFSETS); case MaxSpeed: return GET_TEXT_F(MSG_SPEED); case MaxAcceleration: return GET_TEXT_F(MSG_ACCELERATION); #if HAS_CLASSIC_JERK case MaxJerk: return GET_TEXT_F(MSG_JERK); #endif #if HAS_JUNCTION_DEVIATION case JDmenu: return GET_TEXT_F(MSG_JUNCTION_DEVIATION); #endif case Steps: return GET_TEXT_F(MSG_STEPS_PER_MM); case Visual: return F("Visual Settings"); #if HAS_HOSTACTION_MENUS case HostSettings: return F("Host Settings"); case ActionCommands: return F("Host Actions"); #endif case Advanced: return GET_TEXT_F(MSG_ADVANCED_SETTINGS); #if HAS_BED_PROBE case ProbeMenu: return GET_TEXT_F(MSG_ZPROBE_SETTINGS); #endif case ColorSettings: return F("UI Color Settings"); case Info: case InfoMain: return GET_TEXT_F(MSG_INFO_SCREEN); #if HAS_MESH case Leveling: return GET_TEXT_F(MSG_BED_LEVELING); case LevelView: return GET_TEXT_F(MSG_MESH_VIEW); case LevelSettings: return F("Leveling Settings"); case MeshViewer: return GET_TEXT_F(MSG_MESH_VIEW); case LevelManual: return GET_TEXT_F(MSG_UBL_FINE_TUNE_MESH); #endif #if ENABLED(AUTO_BED_LEVELING_UBL) && !HAS_BED_PROBE case UBLMesh: return GET_TEXT_F(MSG_UBL_LEVEL_BED); #endif #if ENABLED(PROBE_MANUALLY) case ManualMesh: return GET_TEXT_F(MSG_MESH_LEVELING); #endif case Tune: return GET_TEXT_F(MSG_TUNE); case PreheatHotend: return F("Preheat Hotend"); #if ANY(CASE_LIGHT_MENU, LED_CONTROL_MENU) case Ledsmenu: return F("Light Settings"); #if ENABLED(CASE_LIGHT_MENU, CASELIGHT_USES_BRIGHTNESS) case CaseLightmenu: return GET_TEXT_F(MSG_CASE_LIGHT); #endif #if ENABLED(LED_CONTROL_MENU) case LedControlmenu: return GET_TEXT_F(MSG_LED_CONTROL); #if HAS_COLOR_LEDS #if ENABLED(LED_COLOR_PRESETS) case LedControlpresets: return GET_TEXT_F(MSG_LED_PRESETS); #else case LedControlcustom: return GET_TEXT_F(MSG_CUSTOM_LEDS); #endif #endif #endif #endif } return F(""); } uint8_t CrealityDWINClass::Get_Menu_Size(uint8_t menu) { switch (menu) { case Prepare: return PREPARE_TOTAL; case HomeMenu: return HOME_TOTAL; case Move: return MOVE_TOTAL; case ManualLevel: return MLEVEL_TOTAL; #if HAS_ZOFFSET_ITEM case ZOffset: return ZOFFSET_TOTAL; #endif #if HAS_PREHEAT case Preheat: return PREHEAT_TOTAL; #endif #if ENABLED(FILAMENT_LOAD_UNLOAD_GCODES) case ChangeFilament: return CHANGEFIL_TOTAL; #endif #if HAS_HOSTACTION_MENUS case HostActions: return HOSTACTIONS_TOTAL; #endif #if HAS_CUSTOM_MENU case MenuCustom: return CUSTOM_MENU_TOTAL; #endif case Control: return CONTROL_TOTAL; case TempMenu: return TEMP_TOTAL; #if HAS_HOTEND || HAS_HEATED_BED case PID: return PID_TOTAL; #endif #if HAS_HOTEND case HotendPID: return HOTENDPID_TOTAL; #endif #if HAS_HEATED_BED case BedPID: return BEDPID_TOTAL; #endif #if HAS_PREHEAT case Preheat1 ... CAT(Preheat, PREHEAT_COUNT): return PREHEAT_SUBMENU_TOTAL; #endif case Motion: return MOTION_TOTAL; #if ENABLED(FWRETRACT) case FwRetraction: return FWR_TOTAL; #endif case HomeOffsets: return HOMEOFFSETS_TOTAL; case MaxSpeed: return SPEED_TOTAL; case MaxAcceleration: return ACCEL_TOTAL; #if HAS_CLASSIC_JERK case MaxJerk: return JERK_TOTAL; #endif #if HAS_JUNCTION_DEVIATION case JDmenu: return JD_TOTAL; #endif case Steps: return STEPS_TOTAL; case Visual: return VISUAL_TOTAL; #if HAS_HOSTACTION_MENUS case HostSettings: return HOSTSETTINGS_TOTAL; case ActionCommands: return ACTIONCOMMANDS_TOTAL; #endif case Advanced: return ADVANCED_TOTAL; #if HAS_BED_PROBE case ProbeMenu: return PROBE_TOTAL; #endif case Info: return INFO_TOTAL; case InfoMain: return INFO_TOTAL; #if ENABLED(AUTO_BED_LEVELING_UBL) && !HAS_BED_PROBE case UBLMesh: return UBL_M_TOTAL; #endif #if ENABLED(PROBE_MANUALLY) case ManualMesh: return MMESH_TOTAL; #endif #if HAS_MESH case Leveling: return LEVELING_TOTAL; case LevelView: return LEVELING_VIEW_TOTAL; case LevelSettings: return LEVELING_SETTINGS_TOTAL; case MeshViewer: return MESHVIEW_TOTAL; case LevelManual: return LEVELING_M_TOTAL; #endif case Tune: return TUNE_TOTAL; #if HAS_PREHEAT && HAS_HOTEND case PreheatHotend: return PREHEATHOTEND_TOTAL; #endif case ColorSettings: return COLORSETTINGS_TOTAL; #if ANY(CASE_LIGHT_MENU, LED_CONTROL_MENU) case Ledsmenu: return LEDS_TOTAL; #if ENABLED(CASE_LIGHT_MENU, CASELIGHT_USES_BRIGHTNESS) case CaseLightmenu: return CASE_LIGHT_TOTAL; #endif #if ENABLED(LED_CONTROL_MENU) case LedControlmenu: return LEDCONTROL_TOTAL; #if HAS_COLOR_LEDS #if ENABLED(LED_COLOR_PRESETS) case LedControlpresets: return LEDCONTROL_PRESETS_TOTAL; #else case LedControlcustom: return LEDCONTROL_CUSTOM_TOTAL; #endif #endif #endif #endif } return 0; } /* Popup Config */ void CrealityDWINClass::Popup_Handler(PopupID popupid, bool option/*=false*/) { popup = last_popup = popupid; switch (popupid) { case Pause: Draw_Popup(GET_TEXT_F(MSG_PAUSE_PRINT), F(""), F(""), Popup); break; case Stop: Draw_Popup(GET_TEXT_F(MSG_STOP_PRINT), F(""), F(""), Popup); break; case Resume: Draw_Popup(GET_TEXT_F(MSG_RESUME_PRINT), F("Looks Like the last"), F("print was interrupted."), Popup); break; case ConfFilChange: Draw_Popup(F("Confirm Filament Change"), F(""), F(""), Popup); break; case PurgeMore: Draw_Popup(F("Purge more filament?"), F("(Cancel to finish process)"), F(""), Popup); break; case SaveLevel: Draw_Popup(F("Leveling Complete"), F("Save to EEPROM?"), F(""), Popup); break; case MeshSlot: Draw_Popup(F("Mesh slot not selected"), F("(Confirm to select slot 0)"), F(""), Popup); break; case ETemp: Draw_Popup(GET_TEXT_F(MSG_HOTEND_TOO_COLD), GET_TEXT_F(MSG_PLEASE_PREHEAT), F(""), Popup); break; case ManualProbing: Draw_Popup(F("Manual Probing"), F("(Confirm to probe)"), F("(cancel to exit)"), Popup); break; case Level: Draw_Popup(F("Auto Bed Leveling"), GET_TEXT_F(MSG_PLEASE_WAIT), F(""), Wait, ICON_AutoLeveling); break; case Home: Draw_Popup(option ? GET_TEXT_F(MSG_PAUSE_PRINT_PARKING) : GET_TEXT_F(MSG_HOMING), GET_TEXT_F(MSG_PLEASE_WAIT), F(""), Wait, ICON_BLTouch); break; case MoveWait: Draw_Popup(GET_TEXT_F(MSG_MOVING), GET_TEXT_F(MSG_PLEASE_WAIT), F(""), Wait, ICON_BLTouch); break; case Heating: Draw_Popup(GET_TEXT_F(MSG_HEATING), GET_TEXT_F(MSG_PLEASE_WAIT), F(""), Wait, ICON_BLTouch); break; case FilLoad: Draw_Popup(option ? F("Unloading Filament") : F("Loading Filament"), GET_TEXT_F(MSG_PLEASE_WAIT), F(""), Wait, ICON_BLTouch); break; case FilChange: Draw_Popup(F("Filament Change"), F("Please wait for prompt."), F(""), Wait, ICON_BLTouch); break; case TempWarn: Draw_Popup(option ? GET_TEXT_F(MSG_HOTEND_TOO_COLD) : F("Nozzle temp too high!"), F(""), F(""), Wait, option ? ICON_TempTooLow : ICON_TempTooHigh); break; case Runout: Draw_Popup(F("Filament Runout"), F(""), F(""), Wait, ICON_BLTouch); break; #if !HAS_PIDPLOT case PIDWait: Draw_Popup(F("PID Autotune"), F("in process"), GET_TEXT_F(MSG_PLEASE_WAIT), Wait, ICON_BLTouch); break; #endif case Resuming: Draw_Popup(F("Resuming Print"), GET_TEXT_F(MSG_PLEASE_WAIT), F(""), Wait, ICON_BLTouch); break; #if HAS_CUSTOM_MENU case Custom: Draw_Popup(F("Running Custom GCode"), GET_TEXT_F(MSG_PLEASE_WAIT), F(""), Wait, ICON_BLTouch); break; #endif case PrintConfirm: Draw_Popup(option ? F("") : F("Print file?"), F(""), F(""), Popup); break; default: break; } } void CrealityDWINClass::Confirm_Handler(PopupID popupid, bool option/*=false*/) { popup = popupid; switch (popupid) { case FilInsert: Draw_Popup(F("Insert Filament"), F("Press to Continue"), F(""), Confirm); break; case HeaterTime: Draw_Popup(GET_TEXT_F(MSG_HEATER_TIMEOUT), GET_TEXT_F(MSG_FILAMENT_CHANGE_HEAT), F(""), Confirm); break; case UserInput: Draw_Popup(option ? GET_TEXT_F(MSG_STOPPED) : F("Waiting for Input"), GET_TEXT_F(MSG_ADVANCED_PAUSE_WAITING), F(""), Confirm); break; case Level: Draw_Popup(F("Bed Leveling"), GET_TEXT_F(MSG_PLEASE_WAIT), F(""), Cancel, ICON_AutoLeveling); break; case LevelError: Draw_Popup(F("Couldn't enable Leveling"), F("(Valid mesh must exist)"), F(""), Confirm); break; case InvalidMesh: Draw_Popup(F("Valid mesh must exist"), F("before tuning can be"), F("performed"), Confirm); break; default: break; } } /* Navigation and Control */ void CrealityDWINClass::Main_Menu_Control() { EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); if (encoder_diffState == ENCODER_DIFF_NO) return; if (encoder_diffState == ENCODER_DIFF_CW && selection < PAGE_COUNT - 1) { selection++; // Select Down Main_Menu_Icons(); } else if (encoder_diffState == ENCODER_DIFF_CCW && selection > 0) { selection--; // Select Up Main_Menu_Icons(); } else if (encoder_diffState == ENCODER_DIFF_ENTER) switch (selection) { case PAGE_PRINT: card.mount(); Draw_SD_List(); break; case PAGE_PREPARE: Draw_Menu(Prepare); break; case PAGE_CONTROL: Draw_Menu(Control); break; case PAGE_INFO_LEVELING: Draw_Menu(TERN(HAS_MESH, Leveling, InfoMain)); break; } DWIN_UpdateLCD(); } void CrealityDWINClass::Menu_Control() { EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); if (encoder_diffState == ENCODER_DIFF_NO) return; if (encoder_diffState == ENCODER_DIFF_CW && selection < Get_Menu_Size(active_menu)) { DWIN_Draw_Rectangle(1, Def_Background_Color, 0, MBASE(selection - scrollpos) - 18, 14, MBASE(selection - scrollpos) + 33); selection++; // Select Down if (selection > scrollpos+MROWS) { scrollpos++; DWIN_Frame_AreaMove(1, 2, MLINE, Def_Background_Color, 0, 31, DWIN_WIDTH, 349); Menu_Item_Handler(active_menu, selection); } DWIN_Draw_Rectangle(1, GetColor(eeprom_settings.cursor_color, Def_Cursor_color), 0, MBASE(selection - scrollpos) - 18, 14, MBASE(selection - scrollpos) + 33); } else if (encoder_diffState == ENCODER_DIFF_CCW && selection > 0) { DWIN_Draw_Rectangle(1, Def_Background_Color, 0, MBASE(selection - scrollpos) - 18, 14, MBASE(selection - scrollpos) + 33); selection--; // Select Up if (selection < scrollpos) { scrollpos--; DWIN_Frame_AreaMove(1, 3, MLINE, Def_Background_Color, 0, 31, DWIN_WIDTH, 349); Menu_Item_Handler(active_menu, selection); } DWIN_Draw_Rectangle(1, GetColor(eeprom_settings.cursor_color, Def_Cursor_color), 0, MBASE(selection - scrollpos) - 18, 14, MBASE(selection - scrollpos) + 33); } else if (encoder_diffState == ENCODER_DIFF_ENTER) Menu_Item_Handler(active_menu, selection, false); DWIN_UpdateLCD(); } void CrealityDWINClass::Value_Control() { EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); float difvalue = 0; if (encoder_diffState == ENCODER_DIFF_NO) return; if (encoder_diffState == ENCODER_DIFF_CW) { tempvalue += EncoderRate.encoderMoveValue; difvalue = EncoderRate.encoderMoveValue; } else if (encoder_diffState == ENCODER_DIFF_CCW) { tempvalue -= EncoderRate.encoderMoveValue; difvalue = - EncoderRate.encoderMoveValue; } else if (encoder_diffState == ENCODER_DIFF_ENTER) { process = Menu; EncoderRate.enabled = false; Draw_Float(tempvalue / valueunit, selection - scrollpos, false, valueunit); DWIN_UpdateLCD(); if (active_menu == ZOffset && temp_val.zoffsetmode != 0) { planner.synchronize(); if (temp_val.zoffsetmode == 1) { current_position.z += (tempvalue / valueunit - temp_val.zoffsetvalue); planner.buffer_line(current_position, homing_feedrate(Z_AXIS), active_extruder); } current_position.z = 0; sync_plan_position(); } else if (active_menu == Tune && selection == TUNE_ZOFFSET) { sprintf_P(cmd, PSTR("M290 Z%s"), dtostrf((tempvalue / valueunit - temp_val.zoffsetvalue), 1, 3, str_1)); gcode.process_subcommands_now(cmd); } if (TERN0(HAS_HOTEND, valuepointer == &thermalManager.temp_hotend[0].pid.Ki) || TERN0(HAS_HEATED_BED, valuepointer == &thermalManager.temp_bed.pid.Ki)) tempvalue = scalePID_i(tempvalue); if (TERN0(HAS_HOTEND, valuepointer == &thermalManager.temp_hotend[0].pid.Kd) || TERN0(HAS_HEATED_BED, valuepointer == &thermalManager.temp_bed.pid.Kd)) tempvalue = scalePID_d(tempvalue); switch (valuetype) { case 0: *(float*)valuepointer = tempvalue / valueunit; break; case 1: *(uint8_t*)valuepointer = tempvalue / valueunit; break; case 2: *(uint16_t*)valuepointer = tempvalue / valueunit; break; case 3: *(int16_t*)valuepointer = tempvalue / valueunit; break; case 4: *(uint32_t*)valuepointer = tempvalue / valueunit; break; case 5: *(int8_t*)valuepointer = tempvalue / valueunit; break; } switch (active_menu) { case Move: planner.synchronize(); planner.buffer_line(current_position, manual_feedrate_mm_s[selection - 1], active_extruder); break; #if HAS_MESH #if ENABLED(PROBE_MANUALLY) case ManualMesh: planner.synchronize(); planner.buffer_line(current_position, homing_feedrate(Z_AXIS), active_extruder); planner.synchronize(); break; #endif #if ENABLED(AUTO_BED_LEVELING_UBL) && !HAS_BED_PROBE case UBLMesh: mesh_conf.manual_mesh_move(true); break; #endif case LevelManual: mesh_conf.manual_mesh_move(selection == LEVELING_M_OFFSET); break; #endif } if (valuepointer == &planner.flow_percentage[0]) planner.refresh_e_factor(0); #if ENABLED(CASE_LIGHT_MENU, CASELIGHT_USES_BRIGHTNESS) if (valuepointer == &caselight.brightness) caselight.update_brightness(); #endif #if HAS_COLOR_LEDS if ((valuepointer == &leds.color.r) || (valuepointer == &leds.color.g) || (valuepointer == &leds.color.b)) ApplyLEDColor(); #if HAS_WHITE_LED if (valuepointer == &leds.color.w) ApplyLEDColor(); #endif #endif if (funcpointer) funcpointer(); return; } NOLESS(tempvalue, (valuemin * valueunit)); NOMORE(tempvalue, (valuemax * valueunit)); Draw_Float(tempvalue / valueunit, selection - scrollpos, true, valueunit); DWIN_UpdateLCD(); if (valuepointer == &ui.brightness) { *(uint8_t*)valuepointer = tempvalue / valueunit; ui.refresh_brightness(); } switch (active_menu) { case Move: if (temp_val.livemove) { *(float*)valuepointer = tempvalue / valueunit; planner.buffer_line(current_position, manual_feedrate_mm_s[selection - 1], active_extruder); } break; case ZOffset: if (temp_val.zoffsetmode == 2) { planner.synchronize(); sprintf_P(cmd, PSTR("M290 Z%s"), dtostrf((difvalue / valueunit), 1, 3, str_1)); gcode.process_subcommands_now(cmd); planner.synchronize(); } break; case Tune: if (selection == TUNE_ZOFFSET) { planner.synchronize(); sprintf_P(cmd, PSTR("M290 Z%s"), dtostrf((difvalue / valueunit), 1, 3, str_1)); gcode.process_subcommands_now(cmd); planner.synchronize(); } break; #if ENABLED(CASE_LIGHT_MENU, CASELIGHT_USES_BRIGHTNESS) case CaseLightmenu: *(uint8_t*)valuepointer = tempvalue / valueunit; caselight.update_brightness(); break; #endif #if ENABLED(LED_CONTROL_MENU, HAS_COLOR_LEDS) case LedControlmenu: *(uint8_t*)valuepointer = tempvalue / valueunit; leds.update(); break; #endif default : break; } } void CrealityDWINClass::Option_Control() { EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); if (encoder_diffState == ENCODER_DIFF_NO) return; if (encoder_diffState == ENCODER_DIFF_CW) tempvalue += EncoderRate.encoderMoveValue; else if (encoder_diffState == ENCODER_DIFF_CCW) tempvalue -= EncoderRate.encoderMoveValue; else if (encoder_diffState == ENCODER_DIFF_ENTER) { process = Menu; EncoderRate.enabled = false; if (valuepointer == &color_names) { switch (selection) { case COLORSETTINGS_CURSOR: eeprom_settings.cursor_color = tempvalue; break; case COLORSETTINGS_SPLIT_LINE: eeprom_settings.menu_split_line = tempvalue; break; case COLORSETTINGS_MENU_TOP_BG: eeprom_settings.menu_top_bg = tempvalue; break; case COLORSETTINGS_MENU_TOP_TXT: eeprom_settings.menu_top_txt = tempvalue; break; case COLORSETTINGS_HIGHLIGHT_BORDER: eeprom_settings.highlight_box = tempvalue; break; case COLORSETTINGS_PROGRESS_PERCENT: eeprom_settings.progress_percent = tempvalue; break; case COLORSETTINGS_PROGRESS_TIME: eeprom_settings.progress_time = tempvalue; break; case COLORSETTINGS_PROGRESS_STATUS_BAR: eeprom_settings.status_bar_text = tempvalue; break; case COLORSETTINGS_PROGRESS_STATUS_AREA: eeprom_settings.status_area_text = tempvalue; break; case COLORSETTINGS_PROGRESS_COORDINATES: eeprom_settings.coordinates_text = tempvalue; break; case COLORSETTINGS_PROGRESS_COORDINATES_LINE: eeprom_settings.coordinates_split_line = tempvalue; break; } Redraw_Screen(); } else if (valuepointer == &preheat_modes) temp_val.preheatmode = tempvalue; #if ENABLED(PREHEAT_BEFORE_LEVELING) else if (valuepointer == &preheat_levmodes) { temp_val.LevelingTempmode = tempvalue; eeprom_settings.ena_hotend_levtemp = false; eeprom_settings.ena_bed_levtemp = false; if (temp_val.LevelingTempmode == 0 || temp_val.LevelingTempmode == 1) eeprom_settings.ena_hotend_levtemp = true; if (temp_val.LevelingTempmode == 0 || temp_val.LevelingTempmode == 2) eeprom_settings.ena_bed_levtemp = true; } #endif else if (valuepointer == &zoffset_modes) { temp_val.zoffsetmode = tempvalue; if (temp_val.zoffsetmode == 1 || temp_val.zoffsetmode == 2) { if (axes_should_home()) { Popup_Handler(Home); gcode.home_all_axes(true); } Popup_Handler(MoveWait); #if ENABLED(Z_SAFE_HOMING) planner.synchronize(); sprintf_P(cmd, PSTR("G0 F4000 X%s Y%s"), dtostrf(Z_SAFE_HOMING_X_POINT, 1, 3, str_1), dtostrf(Z_SAFE_HOMING_Y_POINT, 1, 3, str_2)); gcode.process_subcommands_now(cmd); #else sprintf_P(cmd, PSTR("G0 F4000 X%s Y%s"), dtostrf((X_BED_SIZE + X_MIN_POS) / 2.0f, 1, 3, str_1), dtostrf((Y_BED_SIZE + Y_MIN_POS) / 2.0f, 1, 3, str_2)); gcode.process_subcommands_now(cmd); #endif gcode.process_subcommands_now(F("G0 F300 Z0")); planner.synchronize(); Redraw_Menu(); } } Draw_Option(tempvalue, static_cast(valuepointer), selection - scrollpos, false, (valuepointer == &color_names)); DWIN_UpdateLCD(); return; } NOLESS(tempvalue, valuemin); NOMORE(tempvalue, valuemax); Draw_Option(tempvalue, static_cast(valuepointer), selection - scrollpos, true); DWIN_UpdateLCD(); } void CrealityDWINClass::File_Control() { EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); static uint8_t filescrl = 0; if (encoder_diffState == ENCODER_DIFF_NO) { if (selection > 0) { card.getfilename_sorted(SD_ORDER(selection - 1, card.get_num_Files())); char * const filename = card.longest_filename(); size_t len = strlen(filename); int8_t pos = len; if (!card.flag.filenameIsDir) while (pos && filename[pos] != '.') pos--; if (pos > MENU_CHAR_LIMIT) { static millis_t time = 0; if (PENDING(millis(), time)) return; time = millis() + 200; pos -= filescrl; len = _MIN(pos, MENU_CHAR_LIMIT); char name[len + 1]; if (pos >= 0) { LOOP_L_N(i, len) name[i] = filename[i + filescrl]; } else { LOOP_L_N(i, MENU_CHAR_LIMIT + pos) name[i] = ' '; LOOP_S_L_N(i, MENU_CHAR_LIMIT + pos, MENU_CHAR_LIMIT) name[i] = filename[i - (MENU_CHAR_LIMIT + pos)]; } name[len] = '\0'; DWIN_Draw_Rectangle(1, Def_Background_Color, LBLX, MBASE(selection - scrollpos) - 14, 271, MBASE(selection - scrollpos) + 28); Draw_Menu_Item(selection - scrollpos, card.flag.filenameIsDir ? ICON_More : ICON_File, name); if (-pos >= MENU_CHAR_LIMIT) filescrl = 0; filescrl++; DWIN_UpdateLCD(); } } return; } if (encoder_diffState == ENCODER_DIFF_CW && selection < card.get_num_Files()) { DWIN_Draw_Rectangle(1, Def_Background_Color, 0, MBASE(selection - scrollpos) - 18, 14, MBASE(selection - scrollpos) + 33); if (selection > 0) { DWIN_Draw_Rectangle(1, Def_Background_Color, LBLX, MBASE(selection - scrollpos) - 14, 271, MBASE(selection - scrollpos) + 28); Draw_SD_Item(selection, selection - scrollpos); } filescrl = 0; selection++; // Select Down if (selection > scrollpos + MROWS) { scrollpos++; DWIN_Frame_AreaMove(1, 2, MLINE, Def_Background_Color, 0, 31, DWIN_WIDTH, 349); Draw_SD_Item(selection, selection - scrollpos); } DWIN_Draw_Rectangle(1, GetColor(eeprom_settings.cursor_color, Def_Cursor_color), 0, MBASE(selection - scrollpos) - 18, 14, MBASE(selection - scrollpos) + 33); } else if (encoder_diffState == ENCODER_DIFF_CCW && selection > 0) { DWIN_Draw_Rectangle(1, Def_Background_Color, 0, MBASE(selection - scrollpos) - 18, 14, MBASE(selection - scrollpos) + 33); DWIN_Draw_Rectangle(1, Def_Background_Color, LBLX, MBASE(selection - scrollpos) - 14, 271, MBASE(selection - scrollpos) + 28); Draw_SD_Item(selection, selection - scrollpos); filescrl = 0; selection--; // Select Up if (selection < scrollpos) { scrollpos--; DWIN_Frame_AreaMove(1, 3, MLINE, Def_Background_Color, 0, 31, DWIN_WIDTH, 349); Draw_SD_Item(selection, selection - scrollpos); } DWIN_Draw_Rectangle(1, GetColor(eeprom_settings.cursor_color, Def_Cursor_color), 0, MBASE(selection - scrollpos) - 18, 14, MBASE(selection - scrollpos) + 33); } else if (encoder_diffState == ENCODER_DIFF_ENTER) { if (selection == 0) { if (card.flag.workDirIsRoot) { process = Main; Draw_Main_Menu(); } else { card.cdup(); Draw_SD_List(); } } else { card.getfilename_sorted(SD_ORDER(selection - 1, card.get_num_Files())); if (card.flag.filenameIsDir) { card.cd(card.filename); Draw_SD_List(); } else { #if HAS_GCODE_PREVIEW Preview_DrawFromSD(); #else card.openAndPrintFile(card.filename); #endif } } } DWIN_UpdateLCD(); } void CrealityDWINClass::Print_Screen_Control() { EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); if (encoder_diffState == ENCODER_DIFF_NO) return; if (encoder_diffState == ENCODER_DIFF_CW && selection < PRINT_COUNT - 1) { selection++; // Select Down Print_Screen_Icons(); } else if (encoder_diffState == ENCODER_DIFF_CCW && selection > 0) { selection--; // Select Up Print_Screen_Icons(); } else if (encoder_diffState == ENCODER_DIFF_ENTER) { switch (selection) { case PRINT_SETUP: Draw_Menu(Tune); Update_Status_Bar(true); break; case PRINT_PAUSE_RESUME: if (temp_val.paused) { if (temp_val.sdprint) { wait_for_user = false; #if ENABLED(PARK_HEAD_ON_PAUSE) card.startOrResumeFilePrinting(); TERN_(POWER_LOSS_RECOVERY, recovery.prepare()); #else char cmd[20]; #if HAS_HEATED_BED sprintf_P(cmd, PSTR("M140 S%i"), temp_val.pausebed); gcode.process_subcommands_now(cmd); #endif #if HAS_EXTRUDERS sprintf_P(cmd, PSTR("M109 S%i"), temp_val.pausetemp); gcode.process_subcommands_now(cmd); #endif TERN_(HAS_FAN, thermalManager.fan_speed[0] = temp_val.pausefan); planner.synchronize(); TERN_(SDSUPPORT, queue.inject(F("M24"))); #endif } else { TERN_(HOST_ACTION_COMMANDS, hostui.resume()); } Draw_Print_Screen(); } else Popup_Handler(Pause); break; case PRINT_STOP: Popup_Handler(Stop); break; } } DWIN_UpdateLCD(); } void CrealityDWINClass::Popup_Control() { EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); if (encoder_diffState == ENCODER_DIFF_NO) return; if (encoder_diffState == ENCODER_DIFF_CW && selection < 1) { selection++; Popup_Select(); } else if (encoder_diffState == ENCODER_DIFF_CCW && selection > 0) { selection--; Popup_Select(); } else if (encoder_diffState == ENCODER_DIFF_ENTER) { switch (popup) { case Pause: if (selection == 0) { if (temp_val.sdprint) { #if ENABLED(POWER_LOSS_RECOVERY) if (recovery.enabled) recovery.save(true); #endif #if ENABLED(PARK_HEAD_ON_PAUSE) Popup_Handler(Home, true); #if ENABLED(SDSUPPORT) if (IS_SD_PRINTING()) card.pauseSDPrint(); #endif planner.synchronize(); queue.inject(F("M125")); planner.synchronize(); #else queue.inject(F("M25")); TERN_(HAS_HOTEND, temp_val.pausetemp = thermalManager.temp_hotend[0].target); TERN_(HAS_HEATED_BED, temp_val.pausebed = thermalManager.temp_bed.target); TERN_(HAS_FAN, temp_val.pausefan = thermalManager.fan_speed[0]); thermalManager.cooldown(); #endif } else { TERN_(HOST_ACTION_COMMANDS, hostui.pause()); } } Draw_Print_Screen(); break; case Stop: if (selection == 0) { if (temp_val.sdprint) { ui.abort_print(); thermalManager.cooldown(); } else { TERN_(HOST_ACTION_COMMANDS, hostui.cancel()); } } else Draw_Print_Screen(); break; case Resume: if (selection == 0) queue.inject(F("M1000")); else { queue.inject(F("M1000 C")); Draw_Main_Menu(); } break; #if HAS_HOTEND case ETemp: if (selection == 0) { thermalManager.setTargetHotend(EXTRUDE_MINTEMP, 0); thermalManager.set_fan_speed(0, MAX_FAN_SPEED); Draw_Menu(PreheatHotend); } else Redraw_Menu(true, true, false); break; #endif #if HAS_BED_PROBE case ManualProbing: if (selection == 0) { char buf[80]; const float dif = probe.probe_at_point(current_position.x, current_position.y, PROBE_PT_STOW, 0, false) - temp_val.corner_avg; sprintf_P(buf, dif > 0 ? PSTR("Corner is %smm high") : PSTR("Corner is %smm low"), dtostrf(abs(dif), 1, 3, str_1)); Update_Status(buf); } else { Redraw_Menu(true, true, false); Update_Status(""); } break; #endif #if ENABLED(ADVANCED_PAUSE_FEATURE) case ConfFilChange: if (selection == 0) { if (thermalManager.temp_hotend[0].target < thermalManager.extrude_min_temp) Popup_Handler(ETemp); else { if (thermalManager.temp_hotend[0].is_below_target(-2)) { Popup_Handler(Heating); thermalManager.wait_for_hotend(0); } Popup_Handler(FilChange); sprintf_P(cmd, PSTR("M600 B1 R%i"), thermalManager.temp_hotend[0].target); gcode.process_subcommands_now(cmd); } } else Redraw_Menu(true, true, false); break; case PurgeMore: if (selection == 0) { pause_menu_response = PAUSE_RESPONSE_EXTRUDE_MORE; Popup_Handler(FilChange); } else { pause_menu_response = PAUSE_RESPONSE_RESUME_PRINT; if (temp_val.printing) Popup_Handler(Resuming); else Redraw_Menu(true, true, (active_menu==PreheatHotend)); } break; #endif // ADVANCED_PAUSE_FEATURE case PrintConfirm: if (selection==0) { card.openAndPrintFile(card.filename);} else{ Redraw_Menu(true, true, true); gcode.process_subcommands_now(F("M117"));} break; #if HAS_MESH case SaveLevel: if (selection == 0) { #if ENABLED(AUTO_BED_LEVELING_UBL) gcode.process_subcommands_now(F("G29 S")); planner.synchronize(); AudioFeedback(true); #else AudioFeedback(settings.save()); #endif } Draw_Menu(Leveling, LEVELING_GET_MESH); break; #endif #if ENABLED(AUTO_BED_LEVELING_UBL) case MeshSlot: if (selection == 0) bedlevel.storage_slot = 0; Redraw_Menu(true, true); break; #endif default: break; } } DWIN_UpdateLCD(); } void CrealityDWINClass::Confirm_Control() { EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); if (encoder_diffState == ENCODER_DIFF_NO) return; if (encoder_diffState == ENCODER_DIFF_ENTER) { switch (popup) { case Complete: Draw_Main_Menu(); break; case FilInsert: Popup_Handler(FilChange); wait_for_user = false; break; case HeaterTime: Popup_Handler(Heating); Update_Status(GET_TEXT_F(MSG_HEATING)); wait_for_user = false; break; #if HAS_ESDIAG case ESDiagPopup: wait_for_user = false; Redraw_Menu(true, true, false); break; #endif default: Redraw_Menu(true, true, false); wait_for_user = false; break; } } DWIN_UpdateLCD(); } #if HAS_HOSTACTION_MENUS void CrealityDWINClass::Keyboard_Control() { const uint8_t keyboard_size = 34; static uint8_t key_selection = 0, cursor = 0; static char string[31]; static bool uppercase = false, locked = false; if (reset_keyboard) { if (strcmp(stringpointer, "-") == 0) stringpointer[0] = '\0'; key_selection = 0, cursor = strlen(stringpointer); uppercase = false, locked = false; reset_keyboard = false; strcpy(string, stringpointer); } EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); if (encoder_diffState == ENCODER_DIFF_NO) return; if (encoder_diffState == ENCODER_DIFF_CW && key_selection < keyboard_size) { Draw_Keys(key_selection, false, uppercase, locked); key_selection++; Draw_Keys(key_selection, true, uppercase, locked); } else if (encoder_diffState == ENCODER_DIFF_CCW && key_selection > 0) { Draw_Keys(key_selection, false, uppercase, locked); key_selection--; Draw_Keys(key_selection, true, uppercase, locked); } else if (encoder_diffState == ENCODER_DIFF_ENTER) { if (key_selection < 28) { if (key_selection == 19) { if (!numeric_keyboard) { if (locked) { uppercase = false, locked = false; Draw_Keyboard(keyboard_restrict, false, key_selection, uppercase, locked); } else if (uppercase) { locked = true; Draw_Keyboard(keyboard_restrict, false, key_selection, uppercase, locked); } else { uppercase = true; Draw_Keyboard(keyboard_restrict, false, key_selection, uppercase, locked); } } } else if (key_selection == 27) { cursor--; string[cursor] = '\0'; } else { uint8_t index = key_selection; if (index > 19) index--; if (index > 27) index--; const char *keys; if (numeric_keyboard) keys = "1234567890&<>() {}[]*\"\':;!?"; else keys = (uppercase) ? "QWERTYUIOPASDFGHJKLZXCVBNM" : "qwertyuiopasdfghjklzxcvbnm"; if (!(keyboard_restrict && numeric_keyboard && index > 9)) { string[cursor] = keys[index]; cursor++; string[cursor] = '\0'; } if (!locked && uppercase) { uppercase = false; Draw_Keyboard(keyboard_restrict, false, key_selection, uppercase, locked); } } } else { switch (key_selection) { case 28: if (!numeric_keyboard) uppercase = false, locked = false; Draw_Keyboard(keyboard_restrict, !numeric_keyboard, key_selection, uppercase, locked); break; case 29: string[cursor] = '-'; cursor++; string[cursor] = '\0'; break; case 30: string[cursor] = '_'; cursor++; string[cursor] = '\0'; break; case 31: if (!keyboard_restrict) { string[cursor] = ' '; cursor++; string[cursor] = '\0'; } break; case 32: if (!keyboard_restrict) { string[cursor] = '.'; cursor++; string[cursor] = '\0'; } break; case 33: if (!keyboard_restrict) { string[cursor] = '/'; cursor++; string[cursor] = '\0'; } break; case 34: if (string[0] == '\0') strcpy(string, "-"); strcpy(stringpointer, string); process = Menu; DWIN_Draw_Rectangle(1, Def_Background_Color, 0, KEY_Y_START, DWIN_WIDTH-2, DWIN_HEIGHT-2); Draw_Status_Area(true); Update_Status_Bar(true); break; } } if (strlen(string) > maxstringlen) string[maxstringlen] = '\0', cursor = maxstringlen; Draw_String(string, selection, (process==Keyboard), (maxstringlen > 10)); } DWIN_UpdateLCD(); } #endif // HAS_HOSTACTION_MENUS /* In-Menu Value Modification */ void CrealityDWINClass::Setup_Value(float value, float min, float max, float unit, uint8_t type) { if (TERN0(HAS_HOTEND, valuepointer == &thermalManager.temp_hotend[0].pid.Ki) || TERN0(HAS_HEATED_BED, valuepointer == &thermalManager.temp_bed.pid.Ki)) tempvalue = unscalePID_i(value) * unit; else if (TERN0(HAS_HOTEND, valuepointer == &thermalManager.temp_hotend[0].pid.Kd) || TERN0(HAS_HEATED_BED, valuepointer == &thermalManager.temp_bed.pid.Kd)) tempvalue = unscalePID_d(value) * unit; else tempvalue = value * unit; valuemin = min; valuemax = max; valueunit = unit; valuetype = type; process = Value; EncoderRate.enabled = true; Draw_Float(tempvalue / unit, selection - scrollpos, true, valueunit); } void CrealityDWINClass::Modify_Value(float &value, float min, float max, float unit, void (*f)()/*=nullptr*/) { valuepointer = &value; funcpointer = f; Setup_Value((float)value, min, max, unit, 0); } void CrealityDWINClass::Modify_Value(uint8_t &value, float min, float max, float unit, void (*f)()/*=nullptr*/) { valuepointer = &value; funcpointer = f; Setup_Value((float)value, min, max, unit, 1); } void CrealityDWINClass::Modify_Value(uint16_t &value, float min, float max, float unit, void (*f)()/*=nullptr*/) { valuepointer = &value; funcpointer = f; Setup_Value((float)value, min, max, unit, 2); } void CrealityDWINClass::Modify_Value(int16_t &value, float min, float max, float unit, void (*f)()/*=nullptr*/) { valuepointer = &value; funcpointer = f; Setup_Value((float)value, min, max, unit, 3); } void CrealityDWINClass::Modify_Value(uint32_t &value, float min, float max, float unit, void (*f)()/*=nullptr*/) { valuepointer = &value; funcpointer = f; Setup_Value((float)value, min, max, unit, 4); } void CrealityDWINClass::Modify_Value(int8_t &value, float min, float max, float unit, void (*f)()/*=nullptr*/) { valuepointer = &value; funcpointer = f; Setup_Value((float)value, min, max, unit, 5); } void CrealityDWINClass::Modify_Option(uint8_t value, const char * const * options, uint8_t max) { tempvalue = value; valuepointer = const_cast(options); valuemin = 0; valuemax = max; process = Option; EncoderRate.enabled = true; Draw_Option(value, options, selection - scrollpos, true); } #if HAS_HOSTACTION_MENUS void CrealityDWINClass::Modify_String(char * string, uint8_t maxlength, bool restrict) { stringpointer = string; maxstringlen = maxlength; reset_keyboard = true; Draw_Keyboard(restrict, false); Draw_String(string, selection, true, (maxstringlen > 10)); } #endif /* Main Functions */ void CrealityDWINClass::Update_Print_Filename(const char * const text) { LOOP_L_N(i, _MIN((size_t)LONG_FILENAME_LENGTH, strlen(text))) filename[i] = text[i]; filename[_MIN((size_t)LONG_FILENAME_LENGTH - 1, strlen(text))] = '\0'; Draw_Print_Filename(true); } void CrealityDWINClass::Update_Status(const char * const text) { LOOP_L_N(i, _MIN((size_t)64, strlen(text))) statusmsg[i] = text[i]; statusmsg[_MIN((size_t)64, strlen(text))] = '\0'; } void CrealityDWINClass::Update_Status(FSTR_P text) { Update_Status(FTOP(text)); } void CrealityDWINClass::Start_Print(bool sd) { temp_val.sdprint = sd; if (!temp_val.printing) { temp_val.printing = true; statusmsg[0] = '\0'; if (sd) { #if ENABLED(POWER_LOSS_RECOVERY) if (recovery.valid()) { SdFile *diveDir = nullptr; const char * const fname = card.diveToFile(true, diveDir, recovery.info.sd_filename); card.selectFileByName(fname); } #endif strcpy(filename, card.longest_filename()); } TERN_(LCD_SET_PROGRESS_MANUALLY, ui.set_progress(0)); TERN_(USE_M73_REMAINING_TIME, ui.set_remaining_time(0)); Draw_Print_Screen(); } } void CrealityDWINClass::Stop_Print() { temp_val.printing = false; temp_val.sdprint = false; thermalManager.cooldown(); TERN_(LCD_SET_PROGRESS_MANUALLY, ui.set_progress(100 * (PROGRESS_SCALE))); TERN_(USE_M73_REMAINING_TIME, ui.set_remaining_time(0)); Draw_PrintDone_confirm(); filename[0] = '\0'; } void CrealityDWINClass::Update() { State_Update(); Screen_Update(); switch (process) { case Main: Main_Menu_Control(); break; case Menu: Menu_Control(); break; case Value: Value_Control(); break; case Option: Option_Control(); break; case File: File_Control(); break; case Print: Print_Screen_Control(); break; case Popup: Popup_Control(); break; case Confirm: Confirm_Control(); break; #if HAS_HOSTACTION_MENUS case Keyboard: Keyboard_Control(); break; #endif case Cancel: Confirm_Control(); break; #if HAS_LOCKSCREEN case Locked: HMI_LockScreen(); break; #endif } } void MarlinUI::update() { CrealityDWIN.Update(); } #if HAS_LCD_BRIGHTNESS void MarlinUI::_set_brightness() { DWIN_LCD_Brightness(backlight ? brightness : 0); } #endif void CrealityDWINClass::State_Update() { if ((print_job_timer.isRunning() || print_job_timer.isPaused()) != temp_val.printing) { if (!temp_val.printing) Start_Print(card.isFileOpen() || TERN0(POWER_LOSS_RECOVERY, recovery.valid())); else Stop_Print(); } if (print_job_timer.isPaused() != temp_val.paused) { temp_val.paused = print_job_timer.isPaused(); if (process == Print) Print_Screen_Icons(); if (process == Wait && !temp_val.paused) Redraw_Menu(true, true); } if (wait_for_user && !(process == Confirm) && !print_job_timer.isPaused()) Confirm_Handler(UserInput); #if ENABLED(ADVANCED_PAUSE_FEATURE) if (process == Popup && popup == PurgeMore) { if (pause_menu_response == PAUSE_RESPONSE_EXTRUDE_MORE) Popup_Handler(FilChange); else if (pause_menu_response == PAUSE_RESPONSE_RESUME_PRINT) { if (temp_val.printing) Popup_Handler(Resuming); else Redraw_Menu(true, true, (active_menu==PreheatHotend)); } } #endif #if ENABLED(FILAMENT_RUNOUT_SENSOR) static bool ranout = false; if (runout.filament_ran_out != ranout) { ranout = runout.filament_ran_out; if (ranout) Popup_Handler(Runout); } #endif } void CrealityDWINClass::Screen_Update() { const millis_t ms = millis(); static millis_t scrltime = 0; if (ELAPSED(ms, scrltime)) { scrltime = ms + 200; if (process != Keyboard) Update_Status_Bar(); if (process == Print) Draw_Print_Filename(); } static millis_t statustime = 0; if (ELAPSED(ms, statustime) && process != Keyboard) { statustime = ms + 500; Draw_Status_Area(); #if HAS_ESDIAG if (process == Confirm && popup == ESDiagPopup) ESDiag.Update(); #endif #if HAS_PIDPLOT if (process == Wait && (popup == PIDWaitH || popup == PIDWaitB)) Plot.Update((popup == PIDWaitH) ? thermalManager.wholeDegHotend(0) : thermalManager.wholeDegBed()); #endif } static millis_t printtime = 0; if (ELAPSED(ms, printtime)) { printtime = ms + 1000; if (process == Print) { Draw_Print_ProgressBar(); Draw_Print_ProgressElapsed(); TERN_(USE_M73_REMAINING_TIME, Draw_Print_ProgressRemain()); } } static bool mounted = card.isMounted(); if (mounted != card.isMounted()) { mounted = card.isMounted(); if (process == File) Draw_SD_List(); } #if HAS_HOTEND static int16_t hotendtarget = -1; #endif #if HAS_HEATED_BED static int16_t bedtarget = -1; #endif #if HAS_FAN static int16_t fanspeed = -1; #endif #if HAS_ZOFFSET_ITEM static float lastzoffset = temp_val.zoffsetvalue; if (temp_val.zoffsetvalue != lastzoffset) { lastzoffset = temp_val.zoffsetvalue; #if HAS_BED_PROBE probe.offset.z = temp_val.zoffsetvalue; #else set_home_offset(Z_AXIS, -temp_val.zoffsetvalue); #endif } #if HAS_BED_PROBE if (probe.offset.z != lastzoffset) temp_val.zoffsetvalue = lastzoffset = probe.offset.z; #else if (-home_offset.z != lastzoffset) temp_val.zoffsetvalue = lastzoffset = -home_offset.z; #endif #endif // HAS_ZOFFSET_ITEM if (process == Menu || process == Value) { switch (active_menu) { case TempMenu: #if HAS_HOTEND if (thermalManager.temp_hotend[0].target != hotendtarget) { hotendtarget = thermalManager.temp_hotend[0].target; if (scrollpos <= TEMP_HOTEND && TEMP_HOTEND <= scrollpos + MROWS) { if (process != Value || selection != TEMP_HOTEND - scrollpos) Draw_Float(thermalManager.temp_hotend[0].target, TEMP_HOTEND - scrollpos, false, 1); } } #endif #if HAS_HEATED_BED if (thermalManager.temp_bed.target != bedtarget) { bedtarget = thermalManager.temp_bed.target; if (scrollpos <= TEMP_BED && TEMP_BED <= scrollpos + MROWS) { if (process != Value || selection != TEMP_HOTEND - scrollpos) Draw_Float(thermalManager.temp_bed.target, TEMP_BED - scrollpos, false, 1); } } #endif #if HAS_FAN if (thermalManager.fan_speed[0] != fanspeed) { fanspeed = thermalManager.fan_speed[0]; if (scrollpos <= TEMP_FAN && TEMP_FAN <= scrollpos + MROWS) { if (process != Value || selection != TEMP_HOTEND - scrollpos) Draw_Float(thermalManager.fan_speed[0], TEMP_FAN - scrollpos, false, 1); } } #endif break; case Tune: #if HAS_HOTEND if (thermalManager.temp_hotend[0].target != hotendtarget) { hotendtarget = thermalManager.temp_hotend[0].target; if (scrollpos <= TUNE_HOTEND && TUNE_HOTEND <= scrollpos + MROWS) { if (process != Value || selection != TEMP_HOTEND - scrollpos) Draw_Float(thermalManager.temp_hotend[0].target, TUNE_HOTEND - scrollpos, false, 1); } } #endif #if HAS_HEATED_BED if (thermalManager.temp_bed.target != bedtarget) { bedtarget = thermalManager.temp_bed.target; if (scrollpos <= TUNE_BED && TUNE_BED <= scrollpos + MROWS) { if (process != Value || selection != TEMP_HOTEND - scrollpos) Draw_Float(thermalManager.temp_bed.target, TUNE_BED - scrollpos, false, 1); } } #endif #if HAS_FAN if (thermalManager.fan_speed[0] != fanspeed) { fanspeed = thermalManager.fan_speed[0]; if (scrollpos <= TUNE_FAN && TUNE_FAN <= scrollpos + MROWS) { if (process != Value || selection != TEMP_HOTEND - scrollpos) Draw_Float(thermalManager.fan_speed[0], TUNE_FAN - scrollpos, false, 1); } } #endif break; } } } void CrealityDWINClass::AudioFeedback(const bool success/*=true*/) { if (ui.sound_on) DONE_BUZZ(success); else Update_Status(success ? "Success" : "Failed"); } void CrealityDWINClass::Save_Settings(char *buff) { TERN_(DEBUG_DWIN, SERIAL_ECHOLNPGM("Save_Settings")); TERN_(AUTO_BED_LEVELING_UBL, eeprom_settings.tilt_grid_size = mesh_conf.tilt_grid - 1); eeprom_settings.corner_pos = temp_val.corner_pos * 10; #if HAS_HOSTACTION_MENUS eeprom_settings.host_action_label_1 = Encode_String(action1); eeprom_settings.host_action_label_2 = Encode_String(action2); eeprom_settings.host_action_label_3 = Encode_String(action3); #endif TERN_(DEBUG_DWIN, SERIAL_ECHOLNPGM("eeprom_settings size: ", sizeof(eeprom_settings_t))); memcpy(buff, &eeprom_settings, _MIN(sizeof(eeprom_settings), eeprom_data_size)); } void CrealityDWINClass::Load_Settings(const char *buff) { memcpy(&eeprom_settings, buff, _MIN(sizeof(eeprom_settings), eeprom_data_size)); TERN_(AUTO_BED_LEVELING_UBL, mesh_conf.tilt_grid = eeprom_settings.tilt_grid_size + 1); if (eeprom_settings.corner_pos == 0) eeprom_settings.corner_pos = 325; temp_val.corner_pos = eeprom_settings.corner_pos / 10.0f; #if ENABLED(BAUD_RATE_GCODE) if (eeprom_settings.Baud115k) queue.inject(F("M575 P0 B115200")); #endif #if ENABLED(FWRETRACT) temp_val.auto_fw_retract = fwretract.autoretract_enabled; #endif #if ENABLED(PREHEAT_BEFORE_LEVELING) temp_val.LevelingTempmode = 2 * !eeprom_settings.ena_hotend_levtemp + !eeprom_settings.ena_bed_levtemp; #endif #if ENABLED(LED_CONTROL_MENU, HAS_COLOR_LEDS) leds.set_color( (temp_val.LED_Color >> 16) & 0xFF, (temp_val.LED_Color >> 8) & 0xFF, (temp_val.LED_Color >> 0) & 0xFF OPTARG(HAS_WHITE_LED, (temp_val.LED_Color >> 24) & 0xFF) ); #endif #if HAS_HOSTACTION_MENUS Decode_String(eeprom_settings.host_action_label_1, action1); Decode_String(eeprom_settings.host_action_label_2, action2); Decode_String(eeprom_settings.host_action_label_3, action3); #endif Redraw_Screen(); #if ENABLED(POWER_LOSS_RECOVERY) static bool init = true; if (init) { init = false; queue.inject(F("M1000 S")); } #endif } void CrealityDWINClass::Reset_Settings() { eeprom_settings.time_format_textual = false; TERN_(AUTO_BED_LEVELING_UBL, eeprom_settings.tilt_grid_size = 0); eeprom_settings.corner_pos = 325; eeprom_settings.cursor_color = 0; eeprom_settings.menu_split_line = 0; eeprom_settings.menu_top_bg = 0; eeprom_settings.menu_top_txt = 0; eeprom_settings.highlight_box = 0; eeprom_settings.progress_percent = 0; eeprom_settings.progress_time = 0; eeprom_settings.status_bar_text = 0; eeprom_settings.status_area_text = 0; eeprom_settings.coordinates_text = 0; eeprom_settings.coordinates_split_line = 0; TERN_(AUTO_BED_LEVELING_UBL, mesh_conf.tilt_grid = eeprom_settings.tilt_grid_size + 1); temp_val.corner_pos = eeprom_settings.corner_pos / 10.0f; TERN_(SOUND_MENU_ITEM, ui.sound_on = ENABLED(SOUND_ON_DEFAULT)); TERN_(BAUD_RATE_GCODE, eeprom_settings.Baud115k = false); TERN_(FWRETRACT, temp_val.auto_fw_retract = fwretract.autoretract_enabled); #if ENABLED(PREHEAT_BEFORE_LEVELING) eeprom_settings.ena_hotend_levtemp = true; eeprom_settings.ena_bed_levtemp = true; eeprom_settings.hotend_levtemp = LEVELING_NOZZLE_TEMP; eeprom_settings.bed_levtemp = LEVELING_BED_TEMP; #endif #if ENABLED(LED_CONTROL_MENU, HAS_COLOR_LEDS) leds.setup(); #if ENABLED(LED_COLOR_PRESETS) leds.set_default(); #endif temp_val.LED_Color = Def_Leds_Color; leds.set_color( (temp_val.LED_Color >> 16) & 0xFF, (temp_val.LED_Color >> 8) & 0xFF, (temp_val.LED_Color >> 0) & 0xFF OPTARG(HAS_WHITE_LED, (temp_val.LED_Color >> 24) & 0xFF) ); #endif #if HAS_HOSTACTION_MENUS eeprom_settings.host_action_label_1 = 0; eeprom_settings.host_action_label_2 = 0; eeprom_settings.host_action_label_3 = 0; action1[0] = action2[0] = action3[0] = '-'; #endif Redraw_Screen(); } void CrealityDWINClass::PreheatBefore() { #if ENABLED(PREHEAT_BEFORE_LEVELING) Popup_Handler(Heating); #if HAS_BED_PROBE probe.preheat_for_probing(eeprom_settings.ena_hotend_levtemp, eeprom_settings.ena_bed_levtemp); #else #if HAS_HOTEND if (thermalManager.degTargetHotend(0) < eeprom_settings.hotend_levtemp && (eeprom_settings.ena_hotend_levtemp)) thermalManager.setTargetHotend(eeprom_settings.hotend_levtemp, 0); #endif #if HAS_HEATED_BED if (thermalManager.degTargetBed() < eeprom_settings.bed_levtemp && (eeprom_settings.ena_bed_levtemp)) thermalManager.setTargetBed(eeprom_settings.bed_levtemp); #endif TERN_(HAS_HOTEND, if (eeprom_settings.ena_hotend_levtemp) thermalManager.wait_for_hotend(0)); TERN_(HAS_HEATED_BED, if (eeprom_settings.ena_bed_levtemp) thermalManager.wait_for_bed_heating()); #endif Update_Status(""); #endif } void MarlinUI::init_lcd() { DWINUI::init(); Encoder_Configuration(); DWIN_JPG_ShowAndCache(0); for (uint16_t t = 0; t <= 100; t += 2) { DWINUI::DRAW_IconWB(ICON, ICON_Bar, 15, 260); DWIN_Draw_Rectangle(1, Def_Background_Color, 15 + t * 242 / 100, 260, 257, 280); DWIN_UpdateLCD(); delay(20); } DWIN_JPG_CacheTo1(Language_English); CrealityDWIN.Redraw_Screen(); } #if ENABLED(ADVANCED_PAUSE_FEATURE) void MarlinUI::pause_show_message(const PauseMessage message, const PauseMode mode/*=PAUSE_MODE_SAME*/, const uint8_t extruder/*=active_extruder*/) { switch (message) { case PAUSE_MESSAGE_INSERT: CrealityDWIN.Confirm_Handler(FilInsert); break; case PAUSE_MESSAGE_PURGE: break; case PAUSE_MESSAGE_OPTION: pause_menu_response = PAUSE_RESPONSE_WAIT_FOR; CrealityDWIN.Popup_Handler(PurgeMore); break; case PAUSE_MESSAGE_HEAT: CrealityDWIN.Confirm_Handler(HeaterTime); break; case PAUSE_MESSAGE_WAITING: CrealityDWIN.Draw_Print_Screen(); break; default: break; } } #endif // End-stops diagnostic from DWIN PROUI #if HAS_ESDIAG void CrealityDWINClass::DWIN_EndstopsDiag() { last_process = process; last_selection = selection; process = Confirm; popup = ESDiagPopup; ESDiag.Draw(); } #endif // Lock screen from DWIN PROUI #if HAS_LOCKSCREEN void CrealityDWINClass::DWIN_LockScreen() { if (process != Locked) { lockScreen.rprocess = process; process = Locked; lockScreen.init(); } } void CrealityDWINClass::DWIN_UnLockScreen() { if (process == Locked) { process = lockScreen.rprocess; if (!temp_val.printing) Draw_Main_Menu(); else Draw_Print_Screen(); } } void CrealityDWINClass::HMI_LockScreen() { EncoderState encoder_diffState = Encoder_ReceiveAnalyze(); if (encoder_diffState == ENCODER_DIFF_NO) return; lockScreen.onEncoder(encoder_diffState); if (lockScreen.isUnlocked()) DWIN_UnLockScreen(); } #endif // Reboot screen from DWIN PROUI void CrealityDWINClass::DWIN_RebootScreen() { DWIN_Frame_Clear(Def_Background_Color); DWIN_JPG_ShowAndCache(0); DWINUI::Draw_CenteredString(Def_Text_Color, 220, GET_TEXT_F(MSG_PLEASE_WAIT_REBOOT)); DWIN_UpdateLCD(); delay(500); } // Reboot Printer from DWIN PROUI void CrealityDWINClass::RebootPrinter() { wait_for_heatup = wait_for_user = false; // Stop waiting for heating/user thermalManager.disable_all_heaters(); planner.finish_and_disable(); DWIN_RebootScreen(); hal.reboot(); } #if ENABLED(LED_CONTROL_MENU, HAS_COLOR_LEDS) void CrealityDWINClass::ApplyLEDColor() { temp_val.LED_Color = TERN0(HAS_WHITE_LED,(leds.color.w << 24)) | (leds.color.r << 16) | (leds.color.g << 8) | (leds.color.b); } #endif #if HAS_PIDPLOT void CrealityDWINClass::DWIN_Draw_PIDPopup(const pidresult_t pidresult) { frame_rect_t gfrm = {40, 160, DWIN_WIDTH - 80, 150}; DWINUI::ClearMainArea(); DWIN_Draw_Rectangle(1, Def_PopupBg_color, 14, 60, 258, 330); DWIN_Draw_Rectangle(0, Def_Highlight_Color, 14, 60, 258, 330); DWINUI::Draw_CenteredString(Def_PopupTxt_Color, 80, GET_TEXT_F(MSG_PID_AUTOTUNE)); DWINUI::Draw_String(Def_PopupTxt_Color, gfrm.x, gfrm.y - DWINUI::fontHeight() - 4, F("PID target: Celsius")); switch (pidresult) { case PID_EXTR_START: DWINUI::Draw_CenteredString(Def_PopupTxt_Color, 100, F("for Nozzle is running.")); Plot.Draw(gfrm, thermalManager.hotend_maxtemp[0], temp_val.PID_e_temp); DWINUI::Draw_Int(Def_PopupTxt_Color, 3, gfrm.x + 90, gfrm.y - DWINUI::fontHeight() - 4, temp_val.PID_e_temp); break; case PID_BED_START: DWINUI::Draw_CenteredString(Def_PopupTxt_Color, 100, F("for BED is running.")); Plot.Draw(gfrm, BED_MAXTEMP, temp_val.PID_bed_temp); DWINUI::Draw_Int(Def_PopupTxt_Color, 3, gfrm.x + 90, gfrm.y - DWINUI::fontHeight() - 4, temp_val.PID_bed_temp); break; default: break; } } #endif #if HAS_PID_HEATING void CrealityDWINClass::DWIN_PidTuning(const pidresult_t pidresult) { switch (pidresult) { case PID_STARTED: break; #if HAS_PIDPLOT case PID_EXTR_START: last_process = process; last_selection = selection; process = Wait; popup = PIDWaitH; DWIN_Draw_PIDPopup(pidresult); break; case PID_BED_START: last_process = process; last_selection = selection; process = Wait; popup = PIDWaitB; DWIN_Draw_PIDPopup(pidresult); break; #else case PID_EXTR_START: Popup_Handler(PIDWait); break; case PID_BED_START: Popup_Handler(PIDWait, true); break; #endif case PID_BAD_EXTRUDER_NUM: Confirm_Handler(BadextruderNumber); break; case PID_TEMP_TOO_HIGH: Confirm_Handler(TempTooHigh); break; case PID_TUNING_TIMEOUT: Confirm_Handler(PIDTimeout); break; case PID_DONE: Confirm_Handler(PIDDone); break; default: break; } } #endif #endif // DWIN_CREALITY_LCD_JYERSUI