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@ -2094,11 +2094,11 @@ void kill_screen(const char* lcd_msg) {
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/*********************************************************/
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/*********************************************************/
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/************ Scale the box pixels appropriately *********/
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/************ Scale the box pixels appropriately *********/
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/*********************************************************/
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/*********************************************************/
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x_map_pixels = ((MAP_MAX_PIXELS_X - 4) / GRID_MAX_POINTS_X) * GRID_MAX_POINTS_X;
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x_map_pixels = ((MAP_MAX_PIXELS_X - 4) / (GRID_MAX_POINTS_X)) * (GRID_MAX_POINTS_X);
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y_map_pixels = ((MAP_MAX_PIXELS_Y - 4) / GRID_MAX_POINTS_Y) * GRID_MAX_POINTS_Y;
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y_map_pixels = ((MAP_MAX_PIXELS_Y - 4) / (GRID_MAX_POINTS_Y)) * (GRID_MAX_POINTS_Y);
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pixels_per_X_mesh_pnt = x_map_pixels / GRID_MAX_POINTS_X;
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pixels_per_X_mesh_pnt = x_map_pixels / (GRID_MAX_POINTS_X);
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pixels_per_Y_mesh_pnt = y_map_pixels / GRID_MAX_POINTS_Y;
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pixels_per_Y_mesh_pnt = y_map_pixels / (GRID_MAX_POINTS_Y);
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x_offset = MAP_UPPER_LEFT_CORNER_X + 1 + (MAP_MAX_PIXELS_X - x_map_pixels - 2) / 2;
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x_offset = MAP_UPPER_LEFT_CORNER_X + 1 + (MAP_MAX_PIXELS_X - x_map_pixels - 2) / 2;
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y_offset = MAP_UPPER_LEFT_CORNER_Y + 1 + (MAP_MAX_PIXELS_Y - y_map_pixels - 2) / 2;
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y_offset = MAP_UPPER_LEFT_CORNER_Y + 1 + (MAP_MAX_PIXELS_Y - y_map_pixels - 2) / 2;
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@ -2184,7 +2184,7 @@ void kill_screen(const char* lcd_msg) {
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void sync_plan_position();
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void sync_plan_position();
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void _lcd_ubl_output_map_lcd() {
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void _lcd_ubl_output_map_lcd() {
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static int step_scaler=0;
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static int16_t step_scaler = 0;
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int32_t signed_enc_pos;
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int32_t signed_enc_pos;
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defer_return_to_status = true;
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defer_return_to_status = true;
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@ -2194,11 +2194,10 @@ void kill_screen(const char* lcd_msg) {
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if (lcd_clicked) { return _lcd_ubl_map_lcd_edit_cmd(); }
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if (lcd_clicked) { return _lcd_ubl_map_lcd_edit_cmd(); }
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ENCODER_DIRECTION_NORMAL();
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ENCODER_DIRECTION_NORMAL();
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if (encoderPosition != 0) {
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if (encoderPosition) {
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signed_enc_pos = (int32_t)encoderPosition;
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signed_enc_pos = (int32_t)encoderPosition;
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step_scaler += signed_enc_pos;
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step_scaler += signed_enc_pos;
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x_plot = (x_plot + step_scaler / ENCODER_STEPS_PER_MENU_ITEM);
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x_plot += step_scaler / (ENCODER_STEPS_PER_MENU_ITEM);
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if (abs(step_scaler) >= ENCODER_STEPS_PER_MENU_ITEM)
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if (abs(step_scaler) >= ENCODER_STEPS_PER_MENU_ITEM)
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step_scaler = 0;
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step_scaler = 0;
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refresh_cmd_timeout();
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refresh_cmd_timeout();
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@ -2240,7 +2239,7 @@ void kill_screen(const char* lcd_msg) {
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ubl_map_move_to_xy(); // Move to current location
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ubl_map_move_to_xy(); // Move to current location
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if (planner.movesplanned()>1) { // if the nozzle is moving, cancel the move. There is a new location
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if (planner.movesplanned() > 1) { // if the nozzle is moving, cancel the move. There is a new location
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#define ENABLE_STEPPER_DRIVER_INTERRUPT() SBI(TIMSK1, OCIE1A)
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#define ENABLE_STEPPER_DRIVER_INTERRUPT() SBI(TIMSK1, OCIE1A)
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#define DISABLE_STEPPER_DRIVER_INTERRUPT() CBI(TIMSK1, OCIE1A)
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#define DISABLE_STEPPER_DRIVER_INTERRUPT() CBI(TIMSK1, OCIE1A)
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DISABLE_STEPPER_DRIVER_INTERRUPT();
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DISABLE_STEPPER_DRIVER_INTERRUPT();
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@ -4393,11 +4392,11 @@ void pad_message_string() {
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// pad with spaces to fill up the line
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// pad with spaces to fill up the line
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while (j++ < LCD_WIDTH) lcd_status_message[i++] = ' ';
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while (j++ < LCD_WIDTH) lcd_status_message[i++] = ' ';
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// chop off at the edge
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// chop off at the edge
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lcd_status_message[--i] = '\0';
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lcd_status_message[i] = '\0';
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}
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}
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}
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}
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void lcd_finishstatus(bool persist=false) {
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void lcd_finishstatus(const bool persist=false) {
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pad_message_string();
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pad_message_string();
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