ElVit-esphome_components/components/panasonic_heatpump/helpers.cpp

56 lines
1.7 KiB
C++

#include "helpers.h"
namespace esphome {
namespace panasonic_heatpump {
static const char* const TAG = "panasonic_heatpump";
void PanasonicHelpers::log_uart_hex(UartLogDirection direction, const std::vector<uint8_t>& data,
const char separator) {
PanasonicHelpers::log_uart_hex(direction, &data[0], data.size(), separator);
}
void PanasonicHelpers::log_uart_hex(UartLogDirection direction, const uint8_t* data, const size_t length,
const char separator) {
std::string logStr = "";
std::string msgDir = direction == UART_LOG_TX ? ">>>" : "<<<";
std::string msgType = direction == UART_LOG_TX ? "request" : "response";
switch (data[0]) {
case 0x31:
msgType = "initial_" + msgType;
break;
case 0x71:
msgType = "polling_" + msgType;
if (data[3] == 0x21)
msgType = "extra_" + msgType;
break;
case 0xF1:
msgType = "command_" + msgType;
break;
};
ESP_LOGI(TAG, "%s %s[%i]", msgDir.c_str(), msgType.c_str(), length);
delay(10);
logStr += byte_array_to_hex_string(data, length, separator);
ESP_LOGI(TAG, "%s %s", msgDir.c_str(), logStr.c_str());
}
std::string PanasonicHelpers::byte_array_to_hex_string(const std::vector<uint8_t>& data, const char separator) {
return PanasonicHelpers::byte_array_to_hex_string(&data[0], data.size(), separator);
}
std::string PanasonicHelpers::byte_array_to_hex_string(const uint8_t* data, const size_t length, const char separator) {
std::string hexStr = "";
char buffer[5];
for (size_t i = 0; i < length; i++) {
if (i > 0)
hexStr += separator;
sprintf(buffer, "%02X", data[i]);
hexStr += buffer;
}
return hexStr;
}
} // namespace panasonic_heatpump
} // namespace esphome