commit
40e88d79ae
@ -45,7 +45,7 @@ description = Paxcounter is a device for metering passenger flows in realtime. I
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[common]
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; for release_version use max. 10 chars total, use any decimal format like "a.b.c"
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release_version = 1.9.91
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release_version = 1.9.92
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; DEBUG LEVEL: For production run set to 0, otherwise device will leak RAM while running!
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; 0=None, 1=Error, 2=Warn, 3=Info, 4=Debug, 5=Verbose
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debug_level = 3
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@ -120,8 +120,8 @@ void process_timesync_req(void *taskparameter) {
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// calculate time offset with millisecond precision using LMIC's time base,
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// since we use LMIC's ostime_t txEnd as tx timestamp.
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// Also apply calibration const to compensate processing time.
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time_offset_ms +=
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milliseconds(osticks2ms(os_getTime())) + milliseconds(TIME_SYNC_FIXUP);
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time_offset_ms += milliseconds(osticks2ms(os_getTime())) -
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milliseconds(millis()) + milliseconds(TIME_SYNC_FIXUP);
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// calculate absolute time in UTC epoch: convert to whole seconds, round to
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// ceil, and calculate fraction milliseconds
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@ -208,10 +208,9 @@ int recv_timesync_ans(const uint8_t buf[], const uint8_t buf_len) {
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uint16_t timestamp_msec = 4 * buf[0];
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// construct the timepoint when message was seen on gateway
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time_sync_rx[k] +=
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seconds(timestamp_sec) + milliseconds(timestamp_msec);
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time_sync_rx[k] += seconds(timestamp_sec) + milliseconds(timestamp_msec);
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// we guess timepoint is recent if it newer than code compile date
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// we guess timepoint is recent if it is newer than code compile date
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if (timeIsValid(myClock::to_time_t(time_sync_rx[k]))) {
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ESP_LOGD(TAG, "[%0.3f] Timesync request #%d of %d rcvd at %d.%03d",
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millis() / 1000.0, k + 1, TIME_SYNC_SAMPLES, timestamp_sec,
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