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							377 lines
						
					
					
						
							9.0 KiB
						
					
					
				
			
		
		
	
	
							377 lines
						
					
					
						
							9.0 KiB
						
					
					
				#ifndef __APPLE__
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#include <sys/file.h>
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#include <sys/ioctl.h>
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#include <linux/spi/spidev.h>
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#include <cassert>
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#include <cmath>
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#include <cstring>
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#include <iomanip>
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#include <sstream>
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#include "common/util.h"
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#include "common/timing.h"
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#include "common/swaglog.h"
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#include "panda/board/comms_definitions.h"
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#include "selfdrive/boardd/panda_comms.h"
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#define SPI_SYNC 0x5AU
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#define SPI_HACK 0x79U
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#define SPI_DACK 0x85U
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#define SPI_NACK 0x1FU
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#define SPI_CHECKSUM_START 0xABU
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enum SpiError {
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  NACK = -2,
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  ACK_TIMEOUT = -3,
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};
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struct __attribute__((packed)) spi_header {
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  uint8_t sync;
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  uint8_t endpoint;
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  uint16_t tx_len;
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  uint16_t max_rx_len;
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};
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const unsigned int SPI_ACK_TIMEOUT = 500; // milliseconds
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const std::string SPI_DEVICE = "/dev/spidev0.0";
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class LockEx {
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public:
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  LockEx(int fd, std::recursive_mutex &m) : fd(fd), m(m) {
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    m.lock();
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    flock(fd, LOCK_EX);
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  };
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  ~LockEx() {
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    flock(fd, LOCK_UN);
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    m.unlock();
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  }
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private:
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  int fd;
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  std::recursive_mutex &m;
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};
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PandaSpiHandle::PandaSpiHandle(std::string serial) : PandaCommsHandle(serial) {
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  int ret;
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  const int uid_len = 12;
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  uint8_t uid[uid_len] = {0};
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  uint32_t spi_mode = SPI_MODE_0;
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  uint8_t spi_bits_per_word = 8;
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  // 50MHz is the max of the 845. note that some older
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  // revs of the comma three may not support this speed
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  uint32_t spi_speed = 50000000;
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  if (!util::file_exists(SPI_DEVICE)) {
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    goto fail;
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  }
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  spi_fd = open(SPI_DEVICE.c_str(), O_RDWR);
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  if (spi_fd < 0) {
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    LOGE("failed opening SPI device %d", spi_fd);
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    goto fail;
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  }
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  // SPI settings
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  ret = util::safe_ioctl(spi_fd, SPI_IOC_WR_MODE, &spi_mode);
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  if (ret < 0) {
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    LOGE("failed setting SPI mode %d", ret);
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    goto fail;
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  }
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  ret = util::safe_ioctl(spi_fd, SPI_IOC_WR_MAX_SPEED_HZ, &spi_speed);
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  if (ret < 0) {
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    LOGE("failed setting SPI speed");
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    goto fail;
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  }
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  ret = util::safe_ioctl(spi_fd, SPI_IOC_WR_BITS_PER_WORD, &spi_bits_per_word);
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  if (ret < 0) {
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    LOGE("failed setting SPI bits per word");
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    goto fail;
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  }
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  // get hw UID/serial
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  ret = control_read(0xc3, 0, 0, uid, uid_len, 100);
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  if (ret == uid_len) {
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    std::stringstream stream;
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    for (int i = 0; i < uid_len; i++) {
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      stream << std::hex << std::setw(2) << std::setfill('0') << int(uid[i]);
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    }
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    hw_serial = stream.str();
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  } else {
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    LOGD("failed to get serial %d", ret);
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    goto fail;
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  }
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  if (!serial.empty() && (serial != hw_serial)) {
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    goto fail;
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  }
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  return;
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fail:
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  cleanup();
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  throw std::runtime_error("Error connecting to panda");
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}
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PandaSpiHandle::~PandaSpiHandle() {
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  std::lock_guard lk(hw_lock);
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  cleanup();
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}
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void PandaSpiHandle::cleanup() {
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  if (spi_fd != -1) {
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    close(spi_fd);
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    spi_fd = -1;
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  }
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}
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int PandaSpiHandle::control_write(uint8_t request, uint16_t param1, uint16_t param2, unsigned int timeout) {
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  ControlPacket_t packet = {
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    .request = request,
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    .param1 = param1,
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    .param2 = param2,
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    .length = 0
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  };
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  return spi_transfer_retry(0, (uint8_t *) &packet, sizeof(packet), NULL, 0, timeout);
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}
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int PandaSpiHandle::control_read(uint8_t request, uint16_t param1, uint16_t param2, unsigned char *data, uint16_t length, unsigned int timeout) {
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  ControlPacket_t packet = {
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    .request = request,
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    .param1 = param1,
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    .param2 = param2,
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    .length = length
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  };
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  return spi_transfer_retry(0, (uint8_t *) &packet, sizeof(packet), data, length, timeout);
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}
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int PandaSpiHandle::bulk_write(unsigned char endpoint, unsigned char* data, int length, unsigned int timeout) {
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  return bulk_transfer(endpoint, data, length, NULL, 0, timeout);
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}
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int PandaSpiHandle::bulk_read(unsigned char endpoint, unsigned char* data, int length, unsigned int timeout) {
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  return bulk_transfer(endpoint, NULL, 0, data, length, timeout);
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}
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int PandaSpiHandle::bulk_transfer(uint8_t endpoint, uint8_t *tx_data, uint16_t tx_len, uint8_t *rx_data, uint16_t rx_len, unsigned int timeout) {
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  const int xfer_size = SPI_BUF_SIZE - 0x40;
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  int ret = 0;
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  uint16_t length = (tx_data != NULL) ? tx_len : rx_len;
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  for (int i = 0; i < (int)std::ceil((float)length / xfer_size); i++) {
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    int d;
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    if (tx_data != NULL) {
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      int len = std::min(xfer_size, tx_len - (xfer_size * i));
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      d = spi_transfer_retry(endpoint, tx_data + (xfer_size * i), len, NULL, 0, timeout);
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    } else {
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      uint16_t to_read = std::min(xfer_size, rx_len - ret);
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      d = spi_transfer_retry(endpoint, NULL, 0, rx_data + (xfer_size * i), to_read, timeout);
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    }
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    if (d < 0) {
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      LOGE("SPI: bulk transfer failed with %d", d);
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      comms_healthy = false;
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      return d;
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    }
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    ret += d;
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    if ((rx_data != NULL) && d < xfer_size) {
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      break;
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    }
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  }
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  return ret;
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}
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std::vector<std::string> PandaSpiHandle::list() {
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  try {
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    PandaSpiHandle sh("");
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    return {sh.hw_serial};
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  } catch (std::exception &e) {
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    // no panda on SPI
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  }
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  return {};
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}
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void add_checksum(uint8_t *data, int data_len) {
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  data[data_len] = SPI_CHECKSUM_START;
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  for (int i=0; i < data_len; i++) {
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    data[data_len] ^= data[i];
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  }
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}
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bool check_checksum(uint8_t *data, int data_len) {
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  uint8_t checksum = SPI_CHECKSUM_START;
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  for (uint16_t i = 0U; i < data_len; i++) {
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    checksum ^= data[i];
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  }
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  return checksum == 0U;
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}
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int PandaSpiHandle::spi_transfer_retry(uint8_t endpoint, uint8_t *tx_data, uint16_t tx_len, uint8_t *rx_data, uint16_t max_rx_len, unsigned int timeout) {
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  int ret;
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  int nack_count = 0;
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  int timeout_count = 0;
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  bool timed_out = false;
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  double start_time = millis_since_boot();
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  do {
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    ret = spi_transfer(endpoint, tx_data, tx_len, rx_data, max_rx_len, timeout);
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    if (ret < 0) {
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      timed_out = (timeout != 0) && (timeout_count > 5);
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      timeout_count += ret == SpiError::ACK_TIMEOUT;
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      // give other threads a chance to run
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      std::this_thread::yield();
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      if (ret == SpiError::NACK) {
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        // prevent busy waiting while the panda is NACK'ing
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        // due to full TX buffers
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        nack_count += 1;
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        if (nack_count > 3) {
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          usleep(std::clamp(nack_count*10, 200, 2000));
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        }
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      }
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    }
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  } while (ret < 0 && connected && !timed_out);
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  if (ret < 0) {
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    LOGE("transfer failed, after %d tries, %.2fms", timeout_count, millis_since_boot() - start_time);
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  }
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  return ret;
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}
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int PandaSpiHandle::wait_for_ack(uint8_t ack, uint8_t tx, unsigned int timeout, unsigned int length) {
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  double start_millis = millis_since_boot();
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  if (timeout == 0) {
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    timeout = SPI_ACK_TIMEOUT;
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  }
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  timeout = std::clamp(timeout, 100U, SPI_ACK_TIMEOUT);
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  spi_ioc_transfer transfer = {
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    .tx_buf = (uint64_t)tx_buf,
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    .rx_buf = (uint64_t)rx_buf,
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    .len = length
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  };
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  tx_buf[0] = tx;
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  while (true) {
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    int ret = util::safe_ioctl(spi_fd, SPI_IOC_MESSAGE(1), &transfer);
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    if (ret < 0) {
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      LOGE("SPI: failed to send ACK request");
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      return ret;
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    }
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    if (rx_buf[0] == ack) {
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      break;
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    } else if (rx_buf[0] == SPI_NACK) {
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      LOGD("SPI: got NACK");
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      return SpiError::NACK;
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    }
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    // handle timeout
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    if (millis_since_boot() - start_millis > timeout) {
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      LOGD("SPI: timed out waiting for ACK");
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      return SpiError::ACK_TIMEOUT;
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    }
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  }
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  return 0;
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}
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int PandaSpiHandle::spi_transfer(uint8_t endpoint, uint8_t *tx_data, uint16_t tx_len, uint8_t *rx_data, uint16_t max_rx_len, unsigned int timeout) {
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  int ret;
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  uint16_t rx_data_len;
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  LockEx lock(spi_fd, hw_lock);
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  // needs to be less, since we need to have space for the checksum
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  assert(tx_len < SPI_BUF_SIZE);
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  assert(max_rx_len < SPI_BUF_SIZE);
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  spi_header header = {
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    .sync = SPI_SYNC,
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    .endpoint = endpoint,
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    .tx_len = tx_len,
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    .max_rx_len = max_rx_len
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  };
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  spi_ioc_transfer transfer = {
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    .tx_buf = (uint64_t)tx_buf,
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    .rx_buf = (uint64_t)rx_buf
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  };
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  // Send header
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  memcpy(tx_buf, &header, sizeof(header));
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  add_checksum(tx_buf, sizeof(header));
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  transfer.len = sizeof(header) + 1;
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  ret = util::safe_ioctl(spi_fd, SPI_IOC_MESSAGE(1), &transfer);
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  if (ret < 0) {
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    LOGE("SPI: failed to send header");
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    goto transfer_fail;
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  }
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  // Wait for (N)ACK
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  ret = wait_for_ack(SPI_HACK, 0x11, timeout, 1);
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  if (ret < 0) {
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    goto transfer_fail;
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  }
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  // Send data
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  if (tx_data != NULL) {
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    memcpy(tx_buf, tx_data, tx_len);
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  }
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  add_checksum(tx_buf, tx_len);
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  transfer.len = tx_len + 1;
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  ret = util::safe_ioctl(spi_fd, SPI_IOC_MESSAGE(1), &transfer);
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  if (ret < 0) {
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    LOGE("SPI: failed to send data");
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    goto transfer_fail;
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  }
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  // Wait for (N)ACK
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  ret = wait_for_ack(SPI_DACK, 0x13, timeout, 3);
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  if (ret < 0) {
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    goto transfer_fail;
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  }
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  // Read data
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  rx_data_len = *(uint16_t *)(rx_buf+1);
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  if (rx_data_len >= SPI_BUF_SIZE) {
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    LOGE("SPI: RX data len larger than buf size %d", rx_data_len);
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    goto transfer_fail;
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  }
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  transfer.len = rx_data_len + 1;
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  transfer.rx_buf = (uint64_t)(rx_buf + 2 + 1);
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  ret = util::safe_ioctl(spi_fd, SPI_IOC_MESSAGE(1), &transfer);
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  if (ret < 0) {
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    LOGE("SPI: failed to read rx data");
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    goto transfer_fail;
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  }
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  if (!check_checksum(rx_buf, rx_data_len + 4)) {
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    LOGE("SPI: bad checksum");
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    goto transfer_fail;
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  }
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  if (rx_data != NULL) {
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    memcpy(rx_data, rx_buf + 3, rx_data_len);
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  }
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  return rx_data_len;
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transfer_fail:
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  return ret;
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}
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#endif
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