firmware/src/GPS.cpp

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#include "GPS.h"
#include "time.h"
#include <sys/time.h>
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// stuff that really should be in in the instance instead...
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HardwareSerial _serial_gps(GPS_SERIAL_NUM);
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uint32_t timeStartMsec; // Once we have a GPS lock, this is where we hold the initial msec clock that corresponds to that time
uint64_t zeroOffset; // GPS based time in millis since 1970 - only updated once on initial lock
bool timeSetFromGPS; // We only reset our time once per wake
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GPS gps;
GPS::GPS() : PeriodicTask(30 * 1000)
{
}
void GPS::setup()
{
struct timeval tv; /* btw settimeofday() is helpfull here too*/
if (!gettimeofday(&tv, NULL))
{
uint32_t now = millis();
DEBUG_MSG("Read RTC time as %ld (cur millis %u)\n", tv.tv_sec, now);
timeStartMsec = now;
zeroOffset = tv.tv_sec * 1000LL + tv.tv_usec / 1000LL;
}
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#ifdef GPS_RX_PIN
_serial_gps.begin(GPS_BAUDRATE, SERIAL_8N1, GPS_RX_PIN, GPS_TX_PIN);
#endif
}
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// for the time being we need to rapidly read from the serial port to prevent overruns
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void GPS::loop()
{
PeriodicTask::loop();
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#ifdef GPS_RX_PIN
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while (_serial_gps.available())
{
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encode(_serial_gps.read());
}
if (!timeSetFromGPS && time.isValid() && date.isValid())
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{
timeSetFromGPS = true;
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timeStartMsec = millis();
// FIXME, this is a shit not right version of the standard def of unix time!!!
zeroOffset = 1000LL * (time.second() + time.minute() * 60 + time.hour() * 60 * 60 +
24 * 60 * 60 * (date.month() * 31 + date.day() + 365 * (date.year() - 1970))) +
time.centisecond() * 10;
DEBUG_MSG("Setting time zero %lld\n", zeroOffset);
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}
#endif
}
uint64_t GPS::getTime()
{
return ((uint64_t)millis() - timeStartMsec) + zeroOffset;
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}
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void GPS::doTask()
{
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if (location.isValid() && location.isUpdated())
{ // we only notify if position has changed
// DEBUG_MSG("new gps pos\n");
notifyObservers();
}
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}
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String GPS::getTimeStr()
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{
static char t[12]; // used to sprintf for Serial output
snprintf(t, sizeof(t), "%02d:%02d:%02d", time.hour(), time.minute(), time.second());
return t;
}