Format debug output by field
This commit is contained in:
+89
-42
@@ -515,7 +515,7 @@ void updateDebugOutput(unsigned long currentTime) {
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if (lastDebugPrintTime == 0 || currentTime - lastDebugPrintTime >= DEBUG_INTERVAL_MS) {
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lastDebugPrintTime = currentTime;
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printStatus(F("DEBUG"));
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printDebugLine();
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}
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}
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@@ -625,48 +625,63 @@ void printStatus(const __FlashStringHelper *tag) {
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printAutoCalibrationDelayStatus();
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}
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void printUptime() {
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unsigned long totalMs = millis();
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unsigned long hours = totalMs / 3600000UL;
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totalMs %= 3600000UL;
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unsigned long minutes = totalMs / 60000UL;
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totalMs %= 60000UL;
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unsigned long seconds = totalMs / 1000UL;
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unsigned long milliseconds = totalMs % 1000UL;
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Serial.print(F("uptime="));
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Serial.print(hours);
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Serial.print(F("h "));
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Serial.print(minutes);
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Serial.print(F("m "));
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Serial.print(seconds);
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Serial.print(F("s "));
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Serial.print(milliseconds);
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Serial.println(F("ms"));
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}
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void printAutoCalibrationDelayStatus() {
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if (useCount < USES_BEFORE_AUTO_CALIBRATION) {
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return;
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}
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Serial.print(F("autoCalOffTimer="));
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if (ignitionState == HIGH) {
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Serial.println(F("waiting_for_ig_off"));
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return;
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}
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unsigned long elapsedMs = millis() - ignitionOffStartTime;
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unsigned long remainingMs = 0;
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if (elapsedMs < AUTO_CALIBRATION_DELAY_MS) {
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remainingMs = AUTO_CALIBRATION_DELAY_MS - elapsedMs;
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}
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Serial.print(F("elapsed "));
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printDuration(elapsedMs);
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Serial.print(F(" remaining "));
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printDuration(remainingMs);
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void printDebugLine() {
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Serial.println();
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Serial.println(F("[DEBUG]"));
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printUptime();
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printNamedInt(F("raw"), parkingRawValue);
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printNamedBool(F("ig"), ignitionState == HIGH);
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printNamedBool(F("p"), parkingState == HIGH);
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printNamedBool(F("rawDrive"), getRawDriveMode() == HIGH);
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printNamedBool(F("confirmedDrive"), confirmedDriveMode == HIGH);
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printNamedLong(F("currentMs"), currentPosMs);
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printNamedLong(F("targetMs"), targetPosMs);
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printNamedInt(F("savedMs"), storedSeatPositionMs);
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printNamedInt(F("hardLimitMs"), SEAT_HARD_LIMIT_UP_MS);
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printNamedInt(F("requestedRelay"), requestedSeatAction);
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printNamedInt(F("actualRelay"), currentSeatAction);
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printNamedBool(F("manual"), manualMode);
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printNamedBool(F("stabilizing"), isStabilizing);
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Serial.print(F("useCount="));
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Serial.print(useCount);
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Serial.print(F("/"));
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Serial.println(USES_BEFORE_AUTO_CALIBRATION);
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printNamedBool(F("autoPending"), autoCalibrationPending);
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printNamedBool(F("forceCal"), forceCalibration);
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printNamedInt(F("autoCalState"), autoCalibrationState);
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printAutoCalibrationDelayStatus();
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}
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void printUptime() {
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Serial.print(F("uptime="));
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printDuration(millis());
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Serial.println();
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}
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void printUptimeInline() {
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Serial.print(F("uptime="));
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printDuration(millis());
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}
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void printBool(bool value) {
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Serial.print(value ? F("true") : F("false"));
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}
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void printNamedBool(const __FlashStringHelper *name, bool value) {
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Serial.print(name);
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Serial.print(F("="));
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printBool(value);
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Serial.println();
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}
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void printNamedInt(const __FlashStringHelper *name, long value) {
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Serial.print(name);
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Serial.print(F("="));
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Serial.println(value);
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}
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void printNamedLong(const __FlashStringHelper *name, long value) {
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printNamedInt(name, value);
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}
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void printDuration(unsigned long totalMs) {
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@@ -687,6 +702,38 @@ void printDuration(unsigned long totalMs) {
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Serial.print(F("ms"));
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}
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void printAutoCalibrationDelayStatusInline() {
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if (useCount < USES_BEFORE_AUTO_CALIBRATION) {
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return;
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}
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Serial.print(F(" autoCalOffTimer="));
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if (ignitionState == HIGH) {
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Serial.print(F("waiting_for_ig_off"));
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return;
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}
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unsigned long elapsedMs = millis() - ignitionOffStartTime;
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unsigned long remainingMs = 0;
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if (elapsedMs < AUTO_CALIBRATION_DELAY_MS) {
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remainingMs = AUTO_CALIBRATION_DELAY_MS - elapsedMs;
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}
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Serial.print(F("elapsed "));
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printDuration(elapsedMs);
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Serial.print(F(" remaining "));
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printDuration(remainingMs);
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}
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void printAutoCalibrationDelayStatus() {
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if (useCount < USES_BEFORE_AUTO_CALIBRATION) {
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return;
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}
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printAutoCalibrationDelayStatusInline();
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Serial.println();
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}
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void setRelay(int relayPin, boolean state) {
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digitalWrite(relayPin, state ? LOW : HIGH);
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}
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@@ -98,6 +98,29 @@ If IG1 is still ON:
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autoCalOffTimer=waiting_for_ig_off
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```
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Debug mode prints a readable block every second, one item per line. Boolean values are printed as `true` or `false`:
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```text
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[DEBUG]
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uptime=0h 0m 5s 123ms
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raw=1023
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ig=true
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p=true
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rawDrive=false
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confirmedDrive=false
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currentMs=0
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targetMs=0
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savedMs=6000
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requestedRelay=0
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actualRelay=0
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manual=false
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stabilizing=false
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useCount=0/10
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autoPending=false
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forceCal=false
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autoCalState=0
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```
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## Automatic Calibration
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- Each `IG1 HIGH -> LOW` transition increments the EEPROM use counter.
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@@ -226,6 +226,7 @@ when currentPosMs <= 0:
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<p><span class="warn">주의:</span> 명령은 한 글자만 받습니다. <code>debug</code>, <code>down</code>, <code>position 2000</code>처럼 긴 문자열은 실행하지 않습니다.</p>
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<p>모든 상태 출력에는 부팅 후 경과 시간이 <code>uptime=0h 2m 13s 457ms</code> 형식으로 포함됩니다. debug 출력에서도 1초마다 같은 형식으로 확인할 수 있습니다.</p>
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<p>사용 횟수가 10회에 도달한 경우에만 보정 대기 타이머가 <code>autoCalOffTimer=elapsed 0h 1m 20s 123ms remaining 0h 3m 39s 877ms</code> 형식으로 추가 출력됩니다. IG1 ON 상태에서는 <code>autoCalOffTimer=waiting_for_ig_off</code>로 표시됩니다.</p>
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<p>debug 출력은 1초마다 항목별 한 줄 형식으로 표시되며, <code>ig=true</code>, <code>p=false</code>, <code>autoPending=false</code>처럼 bool 값은 <code>true</code>/<code>false</code>로 출력됩니다.</p>
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<h2>5. 수동 위치 세팅 시뮬레이션</h2>
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<table>
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