add sleep mode code
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@ -144,6 +144,11 @@ bool g_fPrintedSleeping = false;
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static osjob_t iterationJob;
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static osjob_t sendJob;
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// the cycle time to use
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unsigned gTxCycle;
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// remaining before we reset to default
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unsigned gTxCycleCount;
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void setup(void)
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{
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gCatena.begin();
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@ -341,7 +346,7 @@ void setup_uplink(void)
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gCatena.SafePrintf("%010d - setup_uplink\n", millis());
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}
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LMIC_setClockError(1*65536/100);
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LMIC_setClockError(1 * 65536 / 100);
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/* figure out when to reboot */
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gRebootMs = (CATCFG_T_REBOOT + os_getRndU2() - 32768) * 1000;
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@ -894,6 +899,8 @@ static void txNotProvisionedCb(
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static void settleDoneCb(
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osjob_t* pSendJob)
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{
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const bool fDeepSleep = checkDeepSleep();
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if (config_data.debug_level > 0) {
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gCatena.SafePrintf("%010d - settleDoneCb\n", millis());
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}
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@ -914,7 +921,186 @@ static void settleDoneCb(
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NVIC_SystemReset();
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}
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sleepDoneCb(pSendJob);
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if (! g_fPrintedSleeping)
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doSleepAlert(fDeepSleep);
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/* count what we're up to */
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updateSleepCounters();
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if (fDeepSleep)
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doDeepSleep(pSendJob);
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else
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doLightSleep(pSendJob);
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}
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bool checkDeepSleep(void)
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{
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bool const fDeepSleepTest = gCatena.GetOperatingFlags() &
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static_cast<uint32_t>(gCatena.OPERATING_FLAGS::fDeepSleepTest);
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bool fDeepSleep;
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if (fDeepSleepTest)
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{
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fDeepSleep = true;
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}
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#ifdef USBCON
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else if (Serial.dtr())
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{
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fDeepSleep = false;
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}
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#endif
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else if (gCatena.GetOperatingFlags() &
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static_cast<uint32_t>(gCatena.OPERATING_FLAGS::fDisableDeepSleep))
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{
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fDeepSleep = false;
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}
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else if ((gCatena.GetOperatingFlags() &
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static_cast<uint32_t>(gCatena.OPERATING_FLAGS::fUnattended)) != 0)
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{
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fDeepSleep = true;
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}
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else
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{
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fDeepSleep = false;
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}
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return fDeepSleep;
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}
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void doSleepAlert(const bool fDeepSleep)
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{
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g_fPrintedSleeping = true;
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if (fDeepSleep)
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{
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bool const fDeepSleepTest = gCatena.GetOperatingFlags() &
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static_cast<uint32_t>(gCatena.OPERATING_FLAGS::fDeepSleepTest);
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const uint32_t deepSleepDelay = fDeepSleepTest ? 10 : 30;
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if (config_data.debug_level > 2) {
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gCatena.SafePrintf("using deep sleep in %u secs"
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#ifdef USBCON
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" (USB will disconnect while asleep)"
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#endif
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": ",
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deepSleepDelay
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);
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}
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// sleep and print
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if (config_data.debug_level > 2) {
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gLed.Set(LedPattern::TwoShort);
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}
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for (auto n = deepSleepDelay; n > 0; --n)
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{
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uint32_t tNow = millis();
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while (uint32_t(millis() - tNow) < 1000)
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{
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gCatena.poll();
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yield();
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}
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if (config_data.debug_level > 2) {
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gCatena.SafePrintf(".");
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}
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}
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if (config_data.debug_level > 2) {
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gCatena.SafePrintf("\nStarting deep sleep.\n");
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}
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uint32_t tNow = millis();
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while (uint32_t(millis() - tNow) < 100)
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{
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gCatena.poll();
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yield();
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}
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}
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else if (config_data.debug_level > 2) {
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gCatena.SafePrintf("using light sleep\n");
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}
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}
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void updateSleepCounters(void)
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{
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// update the sleep parameters
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if (gTxCycleCount > 1)
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{
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// values greater than one are decremented and ultimately reset to default.
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--gTxCycleCount;
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}
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else if (gTxCycleCount == 1)
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{
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// it's now one (otherwise we couldn't be here.)
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if (config_data.debug_level > 2) {
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gCatena.SafePrintf("resetting tx cycle to default: %u\n", CATCFG_T_CYCLE);
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}
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gTxCycleCount = 0;
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gTxCycle = CATCFG_T_CYCLE;
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}
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else
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{
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// it's zero. Leave it alone.
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}
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}
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void doDeepSleep(osjob_t *pJob)
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{
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bool const fDeepSleepTest = gCatena.GetOperatingFlags() &
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static_cast<uint32_t>(gCatena.OPERATING_FLAGS::fDeepSleepTest);
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uint32_t const sleepInterval = CATCFG_GetInterval(
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fDeepSleepTest ? CATCFG_T_CYCLE_TEST : gTxCycle
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);
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/* ok... now it's time for a deep sleep */
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gLed.Set(LedPattern::Off);
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deepSleepPrepare();
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/* sleep */
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gCatena.Sleep(sleepInterval);
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/* recover from sleep */
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deepSleepRecovery();
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/* and now... we're awake again. trigger another measurement */
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sleepDoneCb(pJob);
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}
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void deepSleepPrepare(void)
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{
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Serial.end();
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Wire.end();
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SPI.end();
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if (fFlash)
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gSPI2.end();
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}
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void deepSleepRecovery(void)
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{
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Serial.begin();
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Wire.begin();
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SPI.begin();
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if (fFlash)
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gSPI2.begin();
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}
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void doLightSleep(osjob_t *pJob)
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{
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uint32_t interval = sec2osticks(CATCFG_GetInterval(gTxCycle));
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gLed.Set(LedPattern::Sleeping);
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if (gCatena.GetOperatingFlags() &
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static_cast<uint32_t>(gCatena.OPERATING_FLAGS::fQuickLightSleep))
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{
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interval = 1;
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}
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gLed.Set(LedPattern::Sleeping);
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os_setTimedCallback(
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&iterationJob,
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os_getTime() + interval,
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sleepDoneCb
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);
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}
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static void sleepDoneCb(osjob_t* pJob)
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@ -56,7 +56,7 @@ enum {
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\****************************************************************************/
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static const int32_t fwVersion = 20200210;
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static const int32_t fwVersion = 20200211;
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static const byte INIT_PACKAGE_INTERVAL = 100; // send an init package every 100 packages;
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static const byte MAX_VALUES_TO_SEND = 8;
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