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https://github.com/meshtastic/firmware.git
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If display is on on the @BigCorvus board and we xmit the board browns out?
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@@ -1,6 +1,7 @@
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#include "RadioLibInterface.h"
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#include "MeshTypes.h"
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#include "NodeDB.h"
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#include "SPILock.h"
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#include "mesh-pb-constants.h"
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#include <configuration.h>
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#include <pb_decode.h>
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@@ -9,6 +10,13 @@
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// FIXME, we default to 4MHz SPI, SPI mode 0, check if the datasheet says it can really do that
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static SPISettings spiSettings(4000000, MSBFIRST, SPI_MODE0);
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void LockingModule::SPItransfer(uint8_t cmd, uint8_t reg, uint8_t *dataOut, uint8_t *dataIn, uint8_t numBytes)
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{
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concurrency::LockGuard g(spiLock);
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Module::SPItransfer(cmd, reg, dataOut, dataIn, numBytes);
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}
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RadioLibInterface::RadioLibInterface(RADIOLIB_PIN_TYPE cs, RADIOLIB_PIN_TYPE irq, RADIOLIB_PIN_TYPE rst, RADIOLIB_PIN_TYPE busy,
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SPIClass &spi, PhysicalLayer *_iface)
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: concurrency::PeriodicTask(0), module(cs, irq, rst, busy, spi, spiSettings), iface(_iface)
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@@ -126,6 +134,8 @@ bool RadioLibInterface::canSendImmediately()
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/// bluetooth comms code. If the txmit queue is empty it might return an error
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ErrorCode RadioLibInterface::send(MeshPacket *p)
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{
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// Sometimes when testing it is useful to be able to never turn on the xmitter
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#ifndef LORA_DISABLE_SENDING
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printPacket("enqueuing for send", p);
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DEBUG_MSG("txGood=%d,rxGood=%d,rxBad=%d\n", txGood, rxGood, rxBad);
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ErrorCode res = txQueue.enqueue(p, 0) ? ERRNO_OK : ERRNO_UNKNOWN;
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@@ -140,6 +150,10 @@ ErrorCode RadioLibInterface::send(MeshPacket *p)
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startTransmitTimer(true);
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return res;
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#else
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packetPool.release(p);
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return ERRNO_UNKNOWN;
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#endif
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}
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bool RadioLibInterface::canSleep()
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@@ -16,6 +16,49 @@
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#define INTERRUPT_ATTR
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#endif
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/**
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* A wrapper for the RadioLib Module class, that adds mutex for SPI bus access
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*/
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class LockingModule : public Module
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{
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public:
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/*!
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\brief Extended SPI-based module constructor.
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\param cs Arduino pin to be used as chip select.
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\param irq Arduino pin to be used as interrupt/GPIO.
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\param rst Arduino pin to be used as hardware reset for the module.
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\param gpio Arduino pin to be used as additional interrupt/GPIO.
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\param spi SPI interface to be used, can also use software SPI implementations.
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\param spiSettings SPI interface settings.
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*/
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LockingModule(RADIOLIB_PIN_TYPE cs, RADIOLIB_PIN_TYPE irq, RADIOLIB_PIN_TYPE rst, RADIOLIB_PIN_TYPE gpio, SPIClass &spi,
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SPISettings spiSettings)
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: Module(cs, irq, rst, gpio, spi, spiSettings)
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{
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}
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/*!
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\brief SPI single transfer method.
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\param cmd SPI access command (read/write/burst/...).
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\param reg Address of SPI register to transfer to/from.
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\param dataOut Data that will be transfered from master to slave.
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\param dataIn Data that was transfered from slave to master.
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\param numBytes Number of bytes to transfer.
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*/
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virtual void SPItransfer(uint8_t cmd, uint8_t reg, uint8_t *dataOut, uint8_t *dataIn, uint8_t numBytes);
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};
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class RadioLibInterface : public RadioInterface, private concurrency::PeriodicTask
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{
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/// Used as our notification from the ISR
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@@ -49,7 +92,7 @@ class RadioLibInterface : public RadioInterface, private concurrency::PeriodicTa
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float currentLimit = 100; // FIXME
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uint16_t preambleLength = 32; // 8 is default, but FIXME use longer to increase the amount of sleep time when receiving
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Module module; // The HW interface to the radio
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LockingModule module; // The HW interface to the radio
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/**
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* provides lowest common denominator RadioLib API
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