def __init__(self, data):
self.data = data
def probe(self, probe):
- s = ord(self.data[probe / 8]) & (1 << (probe % 8))
+ s = ord(self.data[int(probe / 8)]) & (1 << (probe % 8))
return True if s else False
def sampleiter(data, unitsize):
def start(self, metadata):
self.unitsize = metadata['unitsize']
- self.output_protocol = self.output_new(2)
+ # self.output_protocol = self.output_new(2)
self.output_annotation = self.output_new(1)
def report(self):
return 'SPI: %d bytes received' % self.bytesreceived
- def decode(self, data):
+ def decode(self, timeoffset, duration, data):
# We should accept a list of samples and iterate...
- for sample in sampleiter(data['data'], self.unitsize):
+ for sample in sampleiter(data, self.unitsize):
sck = sample.probe(self.probes['sck'])
# Sample SDATA on rising SCK
# If this is first bit, save timestamp
if self.rxcount == 0:
- self.time = data['time']
+ self.time = timeoffset # FIXME
# Receive bit into our shift register
sdata = sample.probe(self.probes['sdata'])
if sdata:
continue
# Received a byte, pass up to sigrok
outdata = {'time':self.time,
- 'duration':data['time'] + data['duration'] - self.time,
+ 'duration':timeoffset + duration - self.time,
'data':self.rxdata,
'display':('%02X' % self.rxdata),
'type':'spi',
}
- self.put(outdata)
+ # self.put(self.output_protocol, 0, 0, out_proto)
+ self.put(self.output_annotation, 0, 0, outdata)
# Reset decoder state
self.rxdata = 0
self.rxcount = 0