adis handler continued
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@ -6,6 +6,8 @@
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#include "fsfw_hal/linux/spi/SpiComIF.h"
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#include "fsfw_hal/linux/spi/SpiComIF.h"
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#endif
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#endif
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#include <unistd.h>
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GyroADIS16507Handler::GyroADIS16507Handler(object_id_t objectId,
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GyroADIS16507Handler::GyroADIS16507Handler(object_id_t objectId,
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object_id_t deviceCommunication, CookieIF * comCookie):
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object_id_t deviceCommunication, CookieIF * comCookie):
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DeviceHandlerBase(objectId, deviceCommunication, comCookie), primaryDataset(this),
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DeviceHandlerBase(objectId, deviceCommunication, comCookie), primaryDataset(this),
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@ -79,6 +81,8 @@ ReturnValue_t GyroADIS16507Handler::buildCommandFromCommand(DeviceCommandId_t de
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}
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}
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void GyroADIS16507Handler::fillCommandAndReplyMap() {
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void GyroADIS16507Handler::fillCommandAndReplyMap() {
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insertInCommandAndReplyMap(ADIS16507::READ_SENSOR_DATA, 1, &primaryDataset);
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insertInCommandAndReplyMap(ADIS16507::READ_OUT_CONFIG, 1, &configDataset);
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}
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}
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ReturnValue_t GyroADIS16507Handler::scanForReply(const uint8_t *start, size_t remainingSize,
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ReturnValue_t GyroADIS16507Handler::scanForReply(const uint8_t *start, size_t remainingSize,
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@ -112,6 +116,35 @@ ReturnValue_t GyroADIS16507Handler::interpretDeviceReply(DeviceCommandId_t id,
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break;
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break;
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}
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}
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case(ADIS16507::READ_SENSOR_DATA): {
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case(ADIS16507::READ_SENSOR_DATA): {
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BurstModes burstMode = getBurstMode();
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switch(burstMode) {
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case(BurstModes::BURST_16_BURST_SEL_1):
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case(BurstModes::BURST_32_BURST_SEL_1): {
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sif::warning << "GyroADIS16507Handler::interpretDeviceReply: Analysis with BURST_SEL1"
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" not implemented!" << std::endl;
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return HasReturnvaluesIF::RETURN_OK;
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}
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case(BurstModes::BURST_16_BURST_SEL_0): {
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uint16_t checksum = packet[20] << 8 | packet[21];
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/* Now verify the read checksum with the expected checksum
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according to datasheet p. 20 */
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uint16_t calcChecksum = 0;
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for(size_t idx = 2; idx < 22; idx ++) {
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calcChecksum += packet[idx];
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}
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if(checksum != calcChecksum) {
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#if OBSW_VERBOSE_LEVEL >= 1
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sif::warning << "GyroADIS16507Handler::interpretDeviceReply: "
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"Invalid checksum detected!" << std::endl;
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#endif
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return HasReturnvaluesIF::RETURN_FAILED;
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}
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}
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case(BurstModes::BURST_32_BURST_SEL_0): {
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}
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}
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}
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}
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@ -147,6 +180,28 @@ ReturnValue_t GyroADIS16507Handler::initializeLocalDataPool(localpool::DataPool
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return HasReturnvaluesIF::RETURN_OK;
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return HasReturnvaluesIF::RETURN_OK;
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}
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}
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GyroADIS16507Handler::BurstModes GyroADIS16507Handler::getBurstMode() {
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configDataset.mscCtrlReg.read();
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uint16_t currentCtrlReg = configDataset.mscCtrlReg.value;
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configDataset.mscCtrlReg.commit();
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if((currentCtrlReg & ADIS16507::BURST_32_BIT) == ADIS16507::BURST_32_BIT) {
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if((currentCtrlReg & ADIS16507::BURST_SEL_BIT) == ADIS16507::BURST_SEL_BIT) {
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return BurstModes::BURST_32_BURST_SEL_1;
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}
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else {
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return BurstModes::BURST_32_BURST_SEL_0;
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}
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}
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else {
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if((currentCtrlReg & ADIS16507::BURST_SEL_BIT) == ADIS16507::BURST_SEL_BIT) {
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return BurstModes::BURST_16_BURST_SEL_1;
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}
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else {
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return BurstModes::BURST_16_BURST_SEL_0;
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}
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}
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}
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#if OBSW_ADIS16507_LINUX_COM_IF == 1
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#if OBSW_ADIS16507_LINUX_COM_IF == 1
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ReturnValue_t GyroADIS16507Handler::spiSendCallback(SpiComIF *comIf, SpiCookie *cookie,
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ReturnValue_t GyroADIS16507Handler::spiSendCallback(SpiComIF *comIf, SpiCookie *cookie,
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@ -163,7 +218,7 @@ ReturnValue_t GyroADIS16507Handler::spiSendCallback(SpiComIF *comIf, SpiCookie *
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return comIf->performRegularSendOperation(cookie, sendData, sendLen);
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return comIf->performRegularSendOperation(cookie, sendData, sendLen);
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}
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}
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case(ADIS16507::READ_OUT_CONFIG): {
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case(ADIS16507::READ_OUT_CONFIG): {
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usleep(ADIS16507::STALL_TIME_MICROSECONDS);
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}
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}
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}
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}
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return HasReturnvaluesIF::RETURN_OK;
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return HasReturnvaluesIF::RETURN_OK;
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@ -42,11 +42,20 @@ private:
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IDLE
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IDLE
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};
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};
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enum class BurstModes {
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BURST_16_BURST_SEL_0,
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BURST_16_BURST_SEL_1,
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BURST_32_BURST_SEL_0,
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BURST_32_BURST_SEL_1
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};
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InternalState internalState = InternalState::STARTUP;
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InternalState internalState = InternalState::STARTUP;
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bool commandExecuted = false;
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bool commandExecuted = false;
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void prepareReadCommand(uint8_t* regList, size_t len);
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void prepareReadCommand(uint8_t* regList, size_t len);
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BurstModes getBurstMode();
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#if OBSW_ADIS16507_LINUX_COM_IF == 1
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#if OBSW_ADIS16507_LINUX_COM_IF == 1
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static ReturnValue_t spiSendCallback(SpiComIF* comIf, SpiCookie *cookie,
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static ReturnValue_t spiSendCallback(SpiComIF* comIf, SpiCookie *cookie,
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const uint8_t *sendData, size_t sendLen, void* args);
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const uint8_t *sendData, size_t sendLen, void* args);
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@ -12,6 +12,8 @@ static constexpr size_t MAXIMUM_REPLY_SIZE = 64;
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static constexpr uint32_t GYRO_RANGE = 125;
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static constexpr uint32_t GYRO_RANGE = 125;
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static constexpr uint32_t ACCELEROMETER_RANGE = 392;
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static constexpr uint32_t ACCELEROMETER_RANGE = 392;
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static constexpr uint32_t STALL_TIME_MICROSECONDS = 16;
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static constexpr uint16_t PROD_ID = 16507;
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static constexpr uint16_t PROD_ID = 16507;
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static constexpr std::array<uint8_t, 2> BURST_READ_ENABLE = {0x68, 0x00};
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static constexpr std::array<uint8_t, 2> BURST_READ_ENABLE = {0x68, 0x00};
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@ -34,6 +36,11 @@ static constexpr DeviceCommandId_t RESET_SENSOR_CONFIGURATION = 30;
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static constexpr DeviceCommandId_t SW_RESET = 31;
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static constexpr DeviceCommandId_t SW_RESET = 31;
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static constexpr DeviceCommandId_t PRINT_CURRENT_CONFIGURATION = 32;
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static constexpr DeviceCommandId_t PRINT_CURRENT_CONFIGURATION = 32;
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static constexpr uint16_t BURST_32_BIT = 1 << 9;
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static constexpr uint16_t BURST_SEL_BIT = 1 << 8;
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static constexpr uint16_t LIN_ACCEL_COMPENSATION_BIT = 1 << 7;
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static constexpr uint16_t POINT_PERCUSSION_COMPENSATION_BIT = 1 << 6;
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static constexpr size_t CONFIG_READOUT_SIZE = 8;
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static constexpr size_t CONFIG_READOUT_SIZE = 8;
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static constexpr size_t SENSOR_READOUT_SIZE = 22;
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static constexpr size_t SENSOR_READOUT_SIZE = 22;
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