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amiro-os / components / bluetooth / checkutility.cpp @ f1d13b04

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#include <amiro/bluetooth/checkutility.hpp>
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#include <chprintf.h>
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#include <hal.h>
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#include <cstring>
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using namespace chibios_rt;
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using namespace amiro;
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WT12CheckUtility::WT12CheckUtility()
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{}
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WT12CheckUtility::~WT12CheckUtility()
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{}
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void
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WT12CheckUtility::reset()
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{
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  palWritePad(GPIOC, GPIOC_BT_RST, PAL_HIGH);
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  BaseThread::sleep(MS2ST(10));
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  palWritePad(GPIOC, GPIOC_BT_RST, PAL_LOW);
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  return;
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}
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bool
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WT12CheckUtility::waitForReady(const bool print)
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{
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  char buffer[8];
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  const uint16_t length = this->receiveMessage(buffer, 8);
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  if (print) {
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    msgPrint(buffer, length);
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  }
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  return (strcmp(buffer, "READY.\r\n") == 0);
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}
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uint8_t
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WT12CheckUtility::selftest()
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{
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  return 0;
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}
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void
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WT12CheckUtility::msgPrint(const char* message, const uint16_t length)
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{
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  if (length > 0)
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  {
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    chSequentialStreamWrite((BaseSequentialStream*)&global.sercanmux1, (uint8_t*)message, length);
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//    chprintf((BaseSequentialStream*) &global.sercanmux1, "[%d]\n", length);
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  }
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  return;
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}
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void
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WT12CheckUtility::msgPrintMulti(const char* message_buf, const uint16_t* length_buf, const uint16_t num_messages)
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{
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  uint16_t pos = 0;
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  for (uint16_t i = 0; i < num_messages; ++i)
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  {
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    this->msgPrint(&message_buf[pos], length_buf[i]);
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    pos += length_buf[i];
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  }
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  return;
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}
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void
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WT12CheckUtility::sendMessage(char* message, uint8_t link_id)
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{
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  const uint16_t length = strlen(message);
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  if (length >= 1 << 10) {
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    chprintf((BaseSequentialStream*) &global.sercanmux1, "%s(%d): ERROR: message too long!\n", __FILE__ , __LINE__);
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    return;
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  }
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  Message msg;
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  msg.head.start_of_frame = MUX_StartOfFrame;
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  msg.head.link_id = link_id;
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  msg.head.flags = 0x00u;
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  msg.head.length = length;
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  msg.message = message;
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  msg.n_link = ~link_id;
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  chSequentialStreamPut((BaseSequentialStream*)&SD3, msg.head.start_of_frame);
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  chSequentialStreamPut((BaseSequentialStream*)&SD3, msg.head.link_id);
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  chSequentialStreamPut((BaseSequentialStream*)&SD3, msg.head.flags | (msg.head.length >> 8));
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  chSequentialStreamPut((BaseSequentialStream*)&SD3, msg.head.length & 0xFFu);
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  chSequentialStreamWrite((BaseSequentialStream*)&SD3, (uint8_t*)msg.message, msg.head.length);
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  chSequentialStreamPut((BaseSequentialStream*)&SD3, msg.n_link);
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  return;
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}
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void
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WT12CheckUtility::sendMessageRaw(const char* message)
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{
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  chSequentialStreamWrite((BaseSequentialStream*)&SD3, (uint8_t*)message, strlen(message));
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  return;
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}
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uint16_t
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WT12CheckUtility::receiveMessage(char* message, const uint16_t max_length)
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{
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  Message msg;
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  msg.message = message;
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  msg.head.start_of_frame = chSequentialStreamGet((BaseSequentialStream*)&SD3);
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  msg.head.link_id = chSequentialStreamGet((BaseSequentialStream*)&SD3);
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  msg.head.flags = chSequentialStreamGet((BaseSequentialStream*)&SD3);
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  msg.head.length = (msg.head.flags & 0x03u) << 8;
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  msg.head.flags = msg.head.flags >> 2;
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  msg.head.length += uint8_t(chSequentialStreamGet((BaseSequentialStream*)&SD3));
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  if (msg.head.length > max_length)
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  {
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    chprintf((BaseSequentialStream*) &global.sercanmux1, "%s(%d): ERROR: message too long (%d of max %d bytes)!\n", __FILE__ , __LINE__, msg.head.length, max_length);
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    for (uint16_t i = 0; i < msg.head.length; ++i) {
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      chSequentialStreamGet((BaseSequentialStream*)&SD3);
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    }
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    msg.head.length = 0;
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  }
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  else
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  {
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    chSequentialStreamRead((BaseSequentialStream*)&SD3, (uint8_t*)msg.message, msg.head.length);
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  }
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  msg.n_link = chSequentialStreamGet((BaseSequentialStream*)&SD3);
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  if (uint8_t(msg.head.link_id ^ msg.n_link) != 0xFFu)
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  {
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    chprintf((BaseSequentialStream*) &global.sercanmux1, "%s(%d): ERROR: message link id does not match (0x%02X vs 0x%02X)!\n", __FILE__ , __LINE__, msg.head.link_id, msg.n_link);
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  }
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  return msg.head.length;
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}
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uint16_t
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WT12CheckUtility::receiveMessages(char* message_buf, const uint16_t msg_buf_size, uint16_t* length_buf, const uint16_t len_buf_size, const char* last_msg, const char* filter_in, const char* filter_out)
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{
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  if (msg_buf_size == 0 || len_buf_size == 0) {
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    return 0;
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  }
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  for (uint16_t i = 0; i < len_buf_size; ++i) {
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    length_buf[i] = 0;
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  }
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  uint16_t msg_pos = 0;
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  uint16_t msg_count = 0;
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  while (true)
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  {
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    length_buf[msg_count] = this->receiveMessage(&message_buf[msg_pos], msg_buf_size-msg_pos);
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//    if (msg_count >= 0) {
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//      msgPrint(&message_buf[msg_pos], length_buf[msg_count]);
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//    }
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    if (length_buf[msg_count] == 0) {
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      chprintf((BaseSequentialStream*) &global.sercanmux1, "%s(%d): WARNING: receiving aborted after %d messages (%d bytes)\n", __FILE__ , __LINE__, msg_count, msg_pos);
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      return msg_count;
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    }
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    if (strncmp(&message_buf[msg_pos], last_msg, strlen(last_msg)) == 0) {
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      return msg_count+1;
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    }
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    if (strncmp(&message_buf[msg_pos], filter_in, strlen(filter_in)) == 0)
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    {
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      if (filter_out == NULL || strncmp(&message_buf[msg_pos], filter_out, strlen(filter_out)) != 0)
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      {
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        msg_pos += length_buf[msg_count];
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        ++msg_count;
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      }
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    }
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    if (msg_count > len_buf_size) {
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      chprintf((BaseSequentialStream*) &global.sercanmux1, "%s(%d): ERROR: maximum messages received (%d)!\n", __FILE__ , __LINE__, len_buf_size);
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      return len_buf_size;
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    }
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  }
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  return 0xFFFFu; // unreachable
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}
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void
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WT12CheckUtility::receiveRaw(uint8_t* buffer, uint16_t num_bytes, const bool print)
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{
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  uint16_t i;
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  for (i = 0; i < num_bytes; ++i)
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  {
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    buffer[i] = chSequentialStreamGet((BaseSequentialStream*)&SD3);
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  }
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  if (print)
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  {
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    for (i = 0; i < num_bytes; ++i)
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    {
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      chprintf((BaseSequentialStream*) &global.sercanmux1, "%02X ", buffer[i]);
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    }
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    chprintf((BaseSequentialStream*) &global.sercanmux1, "\n");
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  }
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  return;
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}
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void
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WT12CheckUtility::receiveRawLine(const bool print)
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{
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  uint8_t byte = 0;;
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  while (byte != '\n')
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  {
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    byte = chSequentialStreamGet((BaseSequentialStream*) &SD3);
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    if (print) {
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      chprintf((BaseSequentialStream*) &global.sercanmux1, "%c", byte);
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    }
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  }
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  return;
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}
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void
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WT12CheckUtility::clearMessageBuffer(const bool print)
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{
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  uint8_t byte;
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  while (!sdGetWouldBlock(&SD3))
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  {
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    byte = sdGet(&SD3);
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    //byte = chSequentialStreamGet((BaseSequentialStream*) &SD3);
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    if (print) {
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      chprintf((BaseSequentialStream*) &global.sercanmux1, "0x%02X <%c>\n", byte, byte);
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    }
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    BaseThread::sleep(MS2ST(1));
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  }
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  return;
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}