Update pushRawData to avoid single byte writes. Change len to uint16_t. Avoid compiler warning (#
This commit is contained in:
@@ -56,6 +56,8 @@ setI2CpollingWait KEYWORD2
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setSPIpollingWait KEYWORD2
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setSPIpollingWait KEYWORD2
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setI2CTransactionSize KEYWORD2
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setI2CTransactionSize KEYWORD2
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getI2CTransactionSize KEYWORD2
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getI2CTransactionSize KEYWORD2
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setI2cStopRestart KEYWORD2
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getI2cStopRestart KEYWORD2
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setSpiTransactionSize KEYWORD2
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setSpiTransactionSize KEYWORD2
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getSpiTransactionSize KEYWORD2
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getSpiTransactionSize KEYWORD2
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setMaxNMEAByteCount KEYWORD2
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setMaxNMEAByteCount KEYWORD2
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@@ -55,6 +55,7 @@ SFE_UBLOX_GNSS::SFE_UBLOX_GNSS(void)
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_processNMEA.all = SFE_UBLOX_FILTER_NMEA_ALL; // Default to passing all NMEA messages to processNMEA
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_processNMEA.all = SFE_UBLOX_FILTER_NMEA_ALL; // Default to passing all NMEA messages to processNMEA
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// Support for platforms like ESP32 which do not support multiple I2C restarts
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// Support for platforms like ESP32 which do not support multiple I2C restarts
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// If _i2cStopRestart is true, endTransmission will always use a stop. If false, a restart will be used where needed.
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#if defined(ARDUINO_ARCH_ESP32)
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#if defined(ARDUINO_ARCH_ESP32)
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_i2cStopRestart = true; // Always use a stop
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_i2cStopRestart = true; // Always use a stop
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#else
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#else
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@@ -725,7 +726,7 @@ boolean SFE_UBLOX_GNSS::checkUbloxI2C(ubxPacket *incomingUBX, uint8_t requestedC
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uint16_t bytesAvailable = 0;
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uint16_t bytesAvailable = 0;
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_i2cPort->beginTransmission(_gpsI2Caddress);
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_i2cPort->beginTransmission(_gpsI2Caddress);
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_i2cPort->write(0xFD); //0xFD (MSB) and 0xFE (LSB) are the registers that contain number of bytes available
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_i2cPort->write(0xFD); //0xFD (MSB) and 0xFE (LSB) are the registers that contain number of bytes available
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uint8_t i2cError = _i2cPort->endTransmission(false); //Always send a restart command. Do not release bus. ESP32 supports this.
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uint8_t i2cError = _i2cPort->endTransmission(false); //Always send a restart command. Do not release the bus. ESP32 supports this.
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if (i2cError != 0)
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if (i2cError != 0)
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{
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{
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if ((_printDebug == true) || (_printLimitedDebug == true)) // This is important. Print this if doing limited debugging
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if ((_printDebug == true) || (_printLimitedDebug == true)) // This is important. Print this if doing limited debugging
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@@ -736,7 +737,8 @@ boolean SFE_UBLOX_GNSS::checkUbloxI2C(ubxPacket *incomingUBX, uint8_t requestedC
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return (false); //Sensor did not ACK
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return (false); //Sensor did not ACK
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}
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}
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uint8_t bytesReturned = _i2cPort->requestFrom((uint8_t)_gpsI2Caddress, (uint8_t)2); // TO DO: add _i2cStopRestart here
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//Forcing requestFrom to use a restart would be unwise. If bytesAvailable is zero, we want to surrender the bus.
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uint8_t bytesReturned = _i2cPort->requestFrom((uint8_t)_gpsI2Caddress, static_cast<uint8_t>(2));
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if (bytesReturned != 2)
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if (bytesReturned != 2)
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{
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{
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if ((_printDebug == true) || (_printLimitedDebug == true)) // This is important. Print this if doing limited debugging
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if ((_printDebug == true) || (_printLimitedDebug == true)) // This is important. Print this if doing limited debugging
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@@ -746,7 +748,7 @@ boolean SFE_UBLOX_GNSS::checkUbloxI2C(ubxPacket *incomingUBX, uint8_t requestedC
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}
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}
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return (false); //Sensor did not return 2 bytes
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return (false); //Sensor did not return 2 bytes
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}
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}
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//if (_i2cPort->available())
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else //if (_i2cPort->available())
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{
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{
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uint8_t msb = _i2cPort->read();
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uint8_t msb = _i2cPort->read();
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uint8_t lsb = _i2cPort->read();
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uint8_t lsb = _i2cPort->read();
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@@ -859,21 +861,28 @@ boolean SFE_UBLOX_GNSS::checkUbloxI2C(ubxPacket *incomingUBX, uint8_t requestedC
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// return (false); //Sensor did not ACK
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// return (false); //Sensor did not ACK
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//Limit to 32 bytes or whatever the buffer limit is for given platform
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//Limit to 32 bytes or whatever the buffer limit is for given platform
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uint16_t bytesToRead = bytesAvailable;
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uint16_t bytesToRead = bytesAvailable; // 16-bit
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if (bytesToRead > i2cTransactionSize)
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if (bytesToRead > i2cTransactionSize) // Limit for i2cTransactionSize is 8-bit
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bytesToRead = i2cTransactionSize;
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bytesToRead = i2cTransactionSize;
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TRY_AGAIN:
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//TRY_AGAIN:
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_i2cPort->requestFrom((uint8_t)_gpsI2Caddress, (uint8_t)bytesToRead); // TO DO: add _i2cStopRestart here
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//Here it would be desireable to use a restart where possible / supported, but only if there will be multiple reads.
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if (_i2cPort->available())
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//However, if an individual requestFrom fails, we could end up leaving the bus hanging.
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//On balance, it is probably safest to not use restarts.
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uint8_t bytesReturned = _i2cPort->requestFrom((uint8_t)_gpsI2Caddress, (uint8_t)bytesToRead);
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if ((uint16_t)bytesReturned == bytesToRead)
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{
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{
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for (uint16_t x = 0; x < bytesToRead; x++)
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for (uint16_t x = 0; x < bytesToRead; x++)
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{
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{
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uint8_t incoming = _i2cPort->read(); //Grab the actual character
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uint8_t incoming = _i2cPort->read(); //Grab the actual character
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//Check to see if the first read is 0x7F. If it is, the module is not ready
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//Check to see if the first read is 0x7F. If it is, the module is not ready to respond. Stop, wait, and try again
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//to respond. Stop, wait, and try again
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//Note: the integration manual says:
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//"If there is no data awaiting transmission from the receiver, then this register will deliver the value 0xFF,
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// which cannot be the first byte of a valid message."
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//But it can be the first byte waiting to be read from the buffer if we have already read part of the message.
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//Therefore I think this check needs to be commented.
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// if (x == 0)
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// if (x == 0)
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// {
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// {
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// if ((incoming == 0x7F) && (ubx7FcheckDisabled == false))
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// if ((incoming == 0x7F) && (ubx7FcheckDisabled == false))
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@@ -2619,7 +2628,7 @@ void SFE_UBLOX_GNSS::processUBXpacket(ubxPacket *msg)
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{
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{
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packetUBXESFMEAS->data.data[i].data.all = extractLong(msg, 8 + (i * 4));
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packetUBXESFMEAS->data.data[i].data.all = extractLong(msg, 8 + (i * 4));
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}
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}
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if (msg->len > (8 + (packetUBXESFMEAS->data.flags.bits.numMeas * 4))) // IGNORE COMPILER WARNING comparison between signed and unsigned integer expressions
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if ((uint16_t)msg->len > (uint16_t)(8 + (packetUBXESFMEAS->data.flags.bits.numMeas * 4)))
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packetUBXESFMEAS->data.calibTtag = extractLong(msg, 8 + (packetUBXESFMEAS->data.flags.bits.numMeas * 4));
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packetUBXESFMEAS->data.calibTtag = extractLong(msg, 8 + (packetUBXESFMEAS->data.flags.bits.numMeas * 4));
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//Mark all datums as fresh (not read before)
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//Mark all datums as fresh (not read before)
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@@ -2863,11 +2872,13 @@ sfe_ublox_status_e SFE_UBLOX_GNSS::sendCommand(ubxPacket *outgoingUBX, uint16_t
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calcChecksum(outgoingUBX); //Sets checksum A and B bytes of the packet
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calcChecksum(outgoingUBX); //Sets checksum A and B bytes of the packet
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#ifndef SFE_UBLOX_REDUCED_PROG_MEM
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if (_printDebug == true)
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if (_printDebug == true)
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{
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{
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_debugSerial->print(F("\nSending: "));
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_debugSerial->print(F("\nSending: "));
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printPacket(outgoingUBX, true); // Always print payload
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printPacket(outgoingUBX, true); // Always print payload
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}
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}
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#endif
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if (commType == COMM_TYPE_I2C)
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if (commType == COMM_TYPE_I2C)
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{
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{
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@@ -2968,7 +2979,7 @@ sfe_ublox_status_e SFE_UBLOX_GNSS::sendI2cCommand(ubxPacket *outgoingUBX, uint16
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uint16_t startSpot = 0;
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uint16_t startSpot = 0;
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while (bytesLeftToSend > 0)
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while (bytesLeftToSend > 0)
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{
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{
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uint8_t len = bytesLeftToSend; // How many bytes should we actually write?
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uint16_t len = bytesLeftToSend; // How many bytes should we actually write?
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if (len > i2cTransactionSize) // Limit len to i2cTransactionSize
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if (len > i2cTransactionSize) // Limit len to i2cTransactionSize
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len = i2cTransactionSize;
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len = i2cTransactionSize;
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@@ -3799,6 +3810,10 @@ void SFE_UBLOX_GNSS::checkCallbacks(void)
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// On processors like the ESP32, you can use setI2CTransactionSize to increase the size of each transmission - to e.g. 128 bytes
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// On processors like the ESP32, you can use setI2CTransactionSize to increase the size of each transmission - to e.g. 128 bytes
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boolean SFE_UBLOX_GNSS::pushRawData(uint8_t *dataBytes, size_t numDataBytes, boolean stop)
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boolean SFE_UBLOX_GNSS::pushRawData(uint8_t *dataBytes, size_t numDataBytes, boolean stop)
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{
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{
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// Return now if numDataBytes is zero
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if (numDataBytes == 0)
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return (false); // Indicate to the user that there was no data to push
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if (commType == COMM_TYPE_SERIAL)
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if (commType == COMM_TYPE_SERIAL)
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{
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{
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// Serial: write all the bytes in one go
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// Serial: write all the bytes in one go
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@@ -3807,6 +3822,16 @@ boolean SFE_UBLOX_GNSS::pushRawData(uint8_t *dataBytes, size_t numDataBytes, boo
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}
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}
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else if (commType == COMM_TYPE_I2C)
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else if (commType == COMM_TYPE_I2C)
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{
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{
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// We can not write a single data byte to I2C as it would look like the address of a random read.
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// If numDataBytes is 1, we should probably just reject the data and return false.
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// But we'll be nice and store the byte until the next time pushRawData is called.
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if ((numDataBytes == 1) && (_pushSingleByte == false))
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{
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_pushThisSingleByte = *dataBytes;
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_pushSingleByte = true;
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return (false); // Indicate to the user that their data has not been pushed yet
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}
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// If stop is true then always use a stop
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// If stop is true then always use a stop
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// Else if _i2cStopRestart is true then always use a stop
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// Else if _i2cStopRestart is true then always use a stop
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// Else use a restart where needed
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// Else use a restart where needed
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@@ -3821,6 +3846,9 @@ boolean SFE_UBLOX_GNSS::pushRawData(uint8_t *dataBytes, size_t numDataBytes, boo
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size_t bytesLeftToWrite = numDataBytes;
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size_t bytesLeftToWrite = numDataBytes;
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size_t bytesWrittenTotal = 0;
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size_t bytesWrittenTotal = 0;
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if (_pushSingleByte == true) // Increment bytesLeftToWrite if we have a single byte waiting to be pushed
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bytesLeftToWrite++;
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while (bytesLeftToWrite > 0)
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while (bytesLeftToWrite > 0)
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{
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{
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size_t bytesToWrite; // Limit bytesToWrite to i2cTransactionSize
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size_t bytesToWrite; // Limit bytesToWrite to i2cTransactionSize
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@@ -3829,12 +3857,30 @@ boolean SFE_UBLOX_GNSS::pushRawData(uint8_t *dataBytes, size_t numDataBytes, boo
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else
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else
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bytesToWrite = bytesLeftToWrite;
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bytesToWrite = bytesLeftToWrite;
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//If there would be one byte left to be written next time, send one byte less now
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if ((bytesLeftToWrite - bytesToWrite) == 1)
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bytesToWrite--;
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_i2cPort->beginTransmission(_gpsI2Caddress);
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_i2cPort->beginTransmission(_gpsI2Caddress);
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size_t bytesWritten = _i2cPort->write(dataBytes, bytesToWrite); // Write the bytes
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size_t bytesWritten = 0;
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//If _pushSingleByte is true, push it now
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if (_pushSingleByte == true)
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{
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bytesWritten += _i2cPort->write(_pushThisSingleByte); // Write the single byte
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bytesWritten += _i2cPort->write(dataBytes, bytesToWrite - 1); // Write the bytes - but send one byte less
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dataBytes += bytesToWrite - 1; // Point to fresh data
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_pushSingleByte = false; // Clear the flag
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}
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else
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{
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bytesWritten += _i2cPort->write(dataBytes, bytesToWrite); // Write the bytes
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dataBytes += bytesToWrite; // Point to fresh data
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}
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bytesWrittenTotal += bytesWritten; // Update the totals
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bytesWrittenTotal += bytesWritten; // Update the totals
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bytesLeftToWrite -= bytesToWrite;
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bytesLeftToWrite -= bytesToWrite;
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dataBytes += bytesToWrite; // Point to fresh data
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if (bytesLeftToWrite > 0)
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if (bytesLeftToWrite > 0)
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{
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{
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@@ -3848,7 +3894,7 @@ boolean SFE_UBLOX_GNSS::pushRawData(uint8_t *dataBytes, size_t numDataBytes, boo
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}
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}
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}
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}
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return (bytesWrittenTotal == numDataBytes);
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return (bytesWrittenTotal == numDataBytes); //Return true if the correct number of bytes were written
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}
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}
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else // SPI
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else // SPI
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{
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{
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@@ -56,9 +56,14 @@
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#include "u-blox_config_keys.h"
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#include "u-blox_config_keys.h"
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#include "u-blox_structs.h"
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#include "u-blox_structs.h"
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//Unomment the next line (or add SFE_UBLOX_REDUCED_PROG_MEM as a compiler directive) to reduce the amount of program memory used by the library
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//Uncomment the next line (or add SFE_UBLOX_REDUCED_PROG_MEM as a compiler directive) to reduce the amount of program memory used by the library
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//#define SFE_UBLOX_REDUCED_PROG_MEM // Uncommenting this line will delete the minor debug messages to save memory
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//#define SFE_UBLOX_REDUCED_PROG_MEM // Uncommenting this line will delete the minor debug messages to save memory
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//The code just about fills the program memory on the ATmega328P (Arduino Uno), so let's delete the minor debug messages anyway
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#if !defined(SFE_UBLOX_REDUCED_PROG_MEM) && defined(ARDUINO_AVR_UNO)
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#define SFE_UBLOX_REDUCED_PROG_MEM
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#endif
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//-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=
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//-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=
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//Define a digital pin to aid debugging
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//Define a digital pin to aid debugging
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@@ -590,7 +595,9 @@ public:
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uint8_t getI2CTransactionSize(void);
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uint8_t getI2CTransactionSize(void);
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// Support for platforms like ESP32 which do not support multiple I2C restarts
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// Support for platforms like ESP32 which do not support multiple I2C restarts
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void i2cStopRestart(boolean stop) { _i2cStopRestart = stop; }; // If stop is true, endTransmission will always use a stop. If false, a restart will be used where needed.
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// If _i2cStopRestart is true, endTransmission will always use a stop. If false, a restart will be used where needed.
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// The default value for _i2cStopRestart is set in the class instantiation code.
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void setI2cStopRestart(boolean stop) { _i2cStopRestart = stop; };
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boolean getI2cStopRestart(void) { return (_i2cStopRestart); };
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boolean getI2cStopRestart(void) { return (_i2cStopRestart); };
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//Control the size of the spi buffer. If the buffer isn't big enough, we'll start to lose bytes
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//Control the size of the spi buffer. If the buffer isn't big enough, we'll start to lose bytes
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@@ -1400,8 +1407,14 @@ private:
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void writeToFileBuffer(uint8_t *theBytes, uint16_t numBytes); // Write theBytes to the file buffer
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void writeToFileBuffer(uint8_t *theBytes, uint16_t numBytes); // Write theBytes to the file buffer
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// Support for platforms like ESP32 which do not support multiple I2C restarts
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// Support for platforms like ESP32 which do not support multiple I2C restarts
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// If _i2cStopRestart is true, endTransmission will always use a stop. If false, a restart will be used where needed.
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// The default value for _i2cStopRestart is set in the class instantiation code.
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boolean _i2cStopRestart;
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boolean _i2cStopRestart;
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// Storage just in case the user tries to push a single byte using pushRawBytes
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boolean _pushSingleByte = false;
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uint8_t _pushThisSingleByte;
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};
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};
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#endif
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#endif
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Reference in New Issue
Block a user