mirror of https://github.com/arendst/Tasmota.git
214 lines
6.1 KiB
C++
214 lines
6.1 KiB
C++
#include <Adafruit_I2CDevice.h>
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#include <Arduino.h>
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//#define DEBUG_SERIAL Serial
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/*!
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* @brief Create an I2C device at a given address
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* @param addr The 7-bit I2C address for the device
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* @param theWire The I2C bus to use, defaults to &Wire
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*/
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Adafruit_I2CDevice::Adafruit_I2CDevice(uint8_t addr, TwoWire *theWire) {
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_addr = addr;
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_wire = theWire;
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_begun = false;
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#ifdef ARDUINO_ARCH_SAMD
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_maxBufferSize = 250; // as defined in Wire.h's RingBuffer
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#else
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_maxBufferSize = 32;
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#endif
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}
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/*!
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* @brief Initializes and does basic address detection
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* @param addr_detect Whether we should attempt to detect the I2C address with a scan.
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* 99% of sensors/devices don't mind but once in a while, they spaz on a scan!
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* @return True if I2C initialized and a device with the addr found
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*/
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bool Adafruit_I2CDevice::begin(bool addr_detect) {
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_wire->begin();
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_begun = true;
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if (addr_detect) {
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return detected();
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}
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return true;
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}
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/*!
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* @brief Scans I2C for the address - note will give a false-positive
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* if there's no pullups on I2C
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* @return True if I2C initialized and a device with the addr found
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*/
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bool Adafruit_I2CDevice::detected(void) {
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// Init I2C if not done yet
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if (!_begun && !begin()) {
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return false;
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}
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// A basic scanner, see if it ACK's
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_wire->beginTransmission(_addr);
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if (_wire->endTransmission () == 0) {
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return true;
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}
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return false;
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}
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/*!
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* @brief Write a buffer or two to the I2C device. Cannot be more than maxBufferSize() bytes.
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* @param buffer Pointer to buffer of data to write
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* @param len Number of bytes from buffer to write
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* @param prefix_buffer Pointer to optional array of data to write before buffer.
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* Cannot be more than maxBufferSize() bytes.
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* @param prefix_len Number of bytes from prefix buffer to write
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* @param stop Whether to send an I2C STOP signal on write
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* @return True if write was successful, otherwise false.
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*/
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bool Adafruit_I2CDevice::write(uint8_t *buffer, size_t len, bool stop, uint8_t *prefix_buffer, size_t prefix_len) {
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if ((len+prefix_len) > maxBufferSize()) {
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// currently not guaranteed to work if more than 32 bytes!
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// we will need to find out if some platforms have larger
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// I2C buffer sizes :/
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.println(F("\tI2CDevice could not write such a large buffer"));
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#endif
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return false;
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}
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_wire->beginTransmission(_addr);
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// Write the prefix data (usually an address)
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if ((prefix_len != 0) && (prefix_buffer != NULL)) {
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if (_wire->write(prefix_buffer, prefix_len) != prefix_len) {
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.println(F("\tI2CDevice failed to write"));
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#endif
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return false;
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}
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}
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// Write the data itself
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if (_wire->write(buffer, len) != len) {
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.println(F("\tI2CDevice failed to write"));
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#endif
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return false;
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}
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.print(F("\tI2CDevice Wrote: "));
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if ((prefix_len != 0) && (prefix_buffer != NULL)) {
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for (uint16_t i=0; i<prefix_len; i++) {
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DEBUG_SERIAL.print(F("0x"));
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DEBUG_SERIAL.print(prefix_buffer[i], HEX);
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DEBUG_SERIAL.print(F(", "));
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}
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}
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for (uint16_t i=0; i<len; i++) {
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DEBUG_SERIAL.print(F("0x"));
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DEBUG_SERIAL.print(buffer[i], HEX);
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DEBUG_SERIAL.print(F(", "));
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if (len % 32 == 31) {
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DEBUG_SERIAL.println();
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}
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}
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DEBUG_SERIAL.println();
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#endif
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.print("Stop: "); DEBUG_SERIAL.println(stop);
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#endif
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if (_wire->endTransmission(stop) == 0) {
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.println("Sent!");
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#endif
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return true;
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} else {
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.println("Failed to send!");
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#endif
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return false;
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}
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}
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/*!
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* @brief Read from I2C into a buffer from the I2C device.
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* Cannot be more than maxBufferSize() bytes.
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* @param buffer Pointer to buffer of data to read into
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* @param len Number of bytes from buffer to read.
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* @param stop Whether to send an I2C STOP signal on read
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* @return True if read was successful, otherwise false.
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*/
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bool Adafruit_I2CDevice::read(uint8_t *buffer, size_t len, bool stop) {
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if (len > maxBufferSize()) {
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// currently not guaranteed to work if more than 32 bytes!
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// we will need to find out if some platforms have larger
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// I2C buffer sizes :/
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.println(F("\tI2CDevice could not read such a large buffer"));
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#endif
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return false;
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}
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size_t recv = _wire->requestFrom((uint8_t)_addr, (uint8_t)len, (uint8_t)stop);
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if (recv != len) {
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// Not enough data available to fulfill our obligation!
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.print(F("\tI2CDevice did not receive enough data: "));
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DEBUG_SERIAL.println(recv);
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#endif
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return false;
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}
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for (uint16_t i=0; i<len; i++) {
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buffer[i] = _wire->read();
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}
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#ifdef DEBUG_SERIAL
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DEBUG_SERIAL.print(F("\tI2CDevice Read: "));
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for (uint16_t i=0; i<len; i++) {
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DEBUG_SERIAL.print(F("0x"));
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DEBUG_SERIAL.print(buffer[i], HEX);
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DEBUG_SERIAL.print(F(", "));
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if (len % 32 == 31) {
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DEBUG_SERIAL.println();
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}
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}
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DEBUG_SERIAL.println();
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#endif
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return true;
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}
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/*!
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* @brief Write some data, then read some data from I2C into another buffer.
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* Cannot be more than maxBufferSize() bytes. The buffers can point to
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* same/overlapping locations.
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* @param write_buffer Pointer to buffer of data to write from
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* @param write_len Number of bytes from buffer to write.
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* @param read_buffer Pointer to buffer of data to read into.
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* @param read_len Number of bytes from buffer to read.
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* @param stop Whether to send an I2C STOP signal between the write and read
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* @return True if write & read was successful, otherwise false.
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*/
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bool Adafruit_I2CDevice::write_then_read(uint8_t *write_buffer, size_t write_len, uint8_t *read_buffer, size_t read_len, bool stop) {
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if (! write(write_buffer, write_len, stop)) {
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return false;
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}
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return read(read_buffer, read_len);
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}
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/*!
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* @brief Returns the 7-bit address of this device
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* @return The 7-bit address of this device
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*/
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uint8_t Adafruit_I2CDevice::address(void) {
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return _addr;
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}
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