multi byte write support but does not work..
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@ -2,6 +2,7 @@
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#include <linux/ipcore/PapbVcInterface.h>
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#include <linux/ipcore/PapbVcInterface.h>
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#include <unistd.h>
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#include <unistd.h>
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#include <cstring>
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#include <ctime>
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#include <ctime>
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#include "fsfw/serviceinterface/ServiceInterface.h"
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#include "fsfw/serviceinterface/ServiceInterface.h"
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@ -28,11 +29,46 @@ ReturnValue_t PapbVcInterface::initialize() {
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}
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}
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ReturnValue_t PapbVcInterface::write(const uint8_t* data, size_t size) {
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ReturnValue_t PapbVcInterface::write(const uint8_t* data, size_t size) {
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// There are no packets smaller than 4, this is considered a configuration error.
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if (size < 4) {
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return returnvalue::FAILED;
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}
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if (pollPapbBusySignal(0) == returnvalue::OK) {
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if (pollPapbBusySignal(0) == returnvalue::OK) {
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startPacketTransfer();
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startPacketTransfer(ByteWidthCfg::ONE);
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} else {
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} else {
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return DirectTmSinkIF::IS_BUSY;
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return DirectTmSinkIF::IS_BUSY;
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}
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}
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// TODO: This should work but does not..
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// size_t idx = 0;
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// while (idx < size) {
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//
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// nanosleep(&BETWEEN_POLL_DELAY, &remDelay);
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// if ((size - idx) < 4) {
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// *vcBaseReg = CONFIG_DATA_INPUT | (size - idx - 1);
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// usleep(1);
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// }
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// if (pollPapbBusySignal(2) == returnvalue::OK) {
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// // vcBaseReg + DATA_REG_OFFSET + 3 = static_cast<uint8_t>(data + idx);
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// // vcBaseReg + DATA_REG_OFFSET + 2 = static_cast<uint8_t>(data + idx + 1);
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// // vcBaseReg + DATA_REG_OFFSET + 1 = static_cast<uint8_t>(data + idx + 2);
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// // vcBaseReg + DATA_REG_OFFSET = static_cast<uint8_t>(data + idx + 3);
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//
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// // std::memcpy((vcBaseReg + DATA_REG_OFFSET), data + idx , nextWriteSize);
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// *(vcBaseReg + DATA_REG_OFFSET) = *reinterpret_cast<const uint32_t*>(data + idx);
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// //uint8_t* byteReg = reinterpret_cast<uint8_t*>(vcBaseReg + DATA_REG_OFFSET);
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//
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// //byteReg[0] = data[idx];
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// //byteReg[1] = data[idx];
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// } else {
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// abortPacketTransfer();
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// return returnvalue::FAILED;
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// }
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// // TODO: Change this after the bugfix. Right now, the PAPB ignores the content of the byte
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// // width configuration.5
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// // It's okay to increment by a larger amount for the last segment here, loop will be over
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// // in any case.
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// idx += 4;
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// }
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for (size_t idx = 0; idx < size; idx++) {
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for (size_t idx = 0; idx < size; idx++) {
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// This delay is super-important, DO NOT REMOVE!
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// This delay is super-important, DO NOT REMOVE!
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// Polling the GPIO too often can mess up the scheduler.
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// Polling the GPIO too often can mess up the scheduler.
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@ -40,6 +76,7 @@ ReturnValue_t PapbVcInterface::write(const uint8_t* data, size_t size) {
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// FPGA module which can accept packets and then takes care of dumping that packet into
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// FPGA module which can accept packets and then takes care of dumping that packet into
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// the PTME. DMA would be an ideal solution for this.
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// the PTME. DMA would be an ideal solution for this.
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nanosleep(&BETWEEN_POLL_DELAY, &remDelay);
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nanosleep(&BETWEEN_POLL_DELAY, &remDelay);
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if (pollPapbBusySignal(2) == returnvalue::OK) {
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if (pollPapbBusySignal(2) == returnvalue::OK) {
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*(vcBaseReg + DATA_REG_OFFSET) = static_cast<uint32_t>(data[idx]);
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*(vcBaseReg + DATA_REG_OFFSET) = static_cast<uint32_t>(data[idx]);
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} else {
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} else {
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@ -57,7 +94,9 @@ ReturnValue_t PapbVcInterface::write(const uint8_t* data, size_t size) {
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return returnvalue::OK;
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return returnvalue::OK;
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}
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}
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void PapbVcInterface::startPacketTransfer() { *vcBaseReg = CONFIG_START; }
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void PapbVcInterface::startPacketTransfer(ByteWidthCfg initWidth) {
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*vcBaseReg = CONFIG_DATA_INPUT | initWidth;
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}
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void PapbVcInterface::completePacketTransfer() { *vcBaseReg = CONFIG_END; }
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void PapbVcInterface::completePacketTransfer() { *vcBaseReg = CONFIG_END; }
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@ -65,7 +104,7 @@ ReturnValue_t PapbVcInterface::pollPapbBusySignal(uint32_t maxPollRetries) const
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gpio::Levels papbBusyState = gpio::Levels::LOW;
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gpio::Levels papbBusyState = gpio::Levels::LOW;
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ReturnValue_t result;
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ReturnValue_t result;
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uint32_t busyIdx = 0;
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uint32_t busyIdx = 0;
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nextDelay.tv_nsec = FIRST_DELAY_PAPB_POLLING_NS;
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nextDelay.tv_nsec = 0;
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while (true) {
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while (true) {
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/** Check if PAPB interface is ready to receive data */
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/** Check if PAPB interface is ready to receive data */
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@ -50,13 +50,14 @@ class PapbVcInterface : public VirtualChannelIF {
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static const ReturnValue_t PAPB_BUSY = MAKE_RETURN_CODE(0xA0);
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static const ReturnValue_t PAPB_BUSY = MAKE_RETURN_CODE(0xA0);
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enum ByteWidthCfg : uint32_t { ONE = 0b00, TWO = 0b01, THREE = 0b10, FOUR = 0b11 };
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/**
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/**
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* Configuration bits:
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* Configuration bits:
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* bit[1:0]: Size of data (1,2,3 or 4 bytes). 1 Byte <=> b00
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* bit[1:0]: Size of data (1,2,3 or 4 bytes). 1 Byte <=> b00
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* bit[2]: Set this bit to 1 to abort a transferred packet
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* bit[2]: Set this bit to 1 to abort a transferred packet
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* bit[3]: Signals to VcInterface the start of a new telemetry packet
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* bit[3]: Signals to VcInterface the start of a new telemetry packet
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*/
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*/
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static constexpr uint32_t CONFIG_START = 0b00001000;
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static constexpr uint32_t CONFIG_DATA_INPUT = 0b00001000;
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/**
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/**
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* Abort a transferred packet.
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* Abort a transferred packet.
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@ -88,11 +89,12 @@ class PapbVcInterface : public VirtualChannelIF {
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std::string uioFile;
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std::string uioFile;
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int mapNum = 0;
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int mapNum = 0;
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volatile uint32_t dummy = 0;
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mutable struct timespec nextDelay = {.tv_sec = 0, .tv_nsec = 0};
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mutable struct timespec nextDelay = {.tv_sec = 0, .tv_nsec = 0};
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const struct timespec BETWEEN_POLL_DELAY = {.tv_sec = 0, .tv_nsec = 2};
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const struct timespec BETWEEN_POLL_DELAY = {.tv_sec = 0, .tv_nsec = 2};
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mutable struct timespec remDelay;
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mutable struct timespec remDelay;
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volatile uint32_t* vcBaseReg = nullptr;
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uint32_t* vcBaseReg = nullptr;
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uint32_t vcOffset = 0;
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uint32_t vcOffset = 0;
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@ -100,7 +102,7 @@ class PapbVcInterface : public VirtualChannelIF {
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* @brief This function sends the config byte to the virtual channel of the PTME IP Core
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* @brief This function sends the config byte to the virtual channel of the PTME IP Core
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* to initiate a packet transfer.
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* to initiate a packet transfer.
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*/
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*/
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void startPacketTransfer();
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void startPacketTransfer(ByteWidthCfg initWidth);
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void abortPacketTransfer();
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void abortPacketTransfer();
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