1 """I2C Class for FT232H"""
2 from adafruit_blinka.microcontroller.ft232h.pin import Pin
3 from adafruit_blinka.microcontroller.ft232h.url import get_ftdi_url
7 """Custom I2C Class for FT232H"""
9 def __init__(self, *, frequency=400000):
10 # change GPIO controller to I2C
11 # pylint: disable=import-outside-toplevel
12 from pyftdi.i2c import I2cController
14 # pylint: enable=import-outside-toplevel
16 self._i2c = I2cController()
17 self._i2c.configure(get_ftdi_url(), frequency=frequency)
18 Pin.ft232h_gpio = self._i2c.get_gpio()
21 """Perform an I2C Device Scan"""
22 return [addr for addr in range(0x79) if self._i2c.poll(addr)]
24 def writeto(self, address, buffer, *, start=0, end=None, stop=True):
25 """Write data from the buffer to an address"""
26 end = end if end else len(buffer)
27 port = self._i2c.get_port(address)
28 port.write(buffer[start:end], relax=stop)
30 def readfrom_into(self, address, buffer, *, start=0, end=None, stop=True):
31 """Read data from an address and into the buffer"""
32 end = end if end else len(buffer)
33 port = self._i2c.get_port(address)
34 result = port.read(len(buffer[start:end]), relax=stop)
35 for i, b in enumerate(result):
38 # pylint: disable=unused-argument
39 def writeto_then_readfrom(
51 """Write data from buffer_out to an address and then
52 read data from an address and into buffer_in
54 out_end = out_end if out_end else len(buffer_out)
55 in_end = in_end if in_end else len(buffer_in)
56 port = self._i2c.get_port(address)
57 result = port.exchange(
58 buffer_out[out_start:out_end], in_end - in_start, relax=True
60 for i, b in enumerate(result):
61 buffer_in[in_start + i] = b
63 # pylint: enable=unused-argument