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@ -10097,15 +10097,14 @@ inline void gcode_M907() {
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#ifndef INVERT_CASE_LIGHT
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#ifndef INVERT_CASE_LIGHT
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#define INVERT_CASE_LIGHT false
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#define INVERT_CASE_LIGHT false
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#endif
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#endif
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int case_light_brightness; // LCD routine wants INT
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uint8_t case_light_brightness; // LCD routine wants INT
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bool case_light_on;
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bool case_light_on;
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void update_case_light() {
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void update_case_light() {
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pinMode(CASE_LIGHT_PIN, OUTPUT); // digitalWrite doesn't set the port mode
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pinMode(CASE_LIGHT_PIN, OUTPUT); // digitalWrite doesn't set the port mode
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uint8_t case_light_bright = (uint8_t)case_light_brightness;
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if (case_light_on) {
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if (case_light_on) {
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if (USEABLE_HARDWARE_PWM(CASE_LIGHT_PIN)) {
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if (USEABLE_HARDWARE_PWM(CASE_LIGHT_PIN)) {
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analogWrite(CASE_LIGHT_PIN, INVERT_CASE_LIGHT ? 255 - case_light_brightness : case_light_brightness );
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analogWrite(CASE_LIGHT_PIN, INVERT_CASE_LIGHT ? 255 - case_light_brightness : case_light_brightness);
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}
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}
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else WRITE(CASE_LIGHT_PIN, INVERT_CASE_LIGHT ? LOW : HIGH);
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else WRITE(CASE_LIGHT_PIN, INVERT_CASE_LIGHT ? LOW : HIGH);
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}
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}
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@ -10139,7 +10138,7 @@ inline void gcode_M355() {
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}
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}
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else {
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else {
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if (!USEABLE_HARDWARE_PWM(CASE_LIGHT_PIN)) SERIAL_ECHOLN("Case light: on");
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if (!USEABLE_HARDWARE_PWM(CASE_LIGHT_PIN)) SERIAL_ECHOLN("Case light: on");
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else SERIAL_ECHOLNPAIR("Case light: ", case_light_brightness);
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else SERIAL_ECHOLNPAIR("Case light: ", (int)case_light_brightness);
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}
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}
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#else
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#else
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