options = (
{'id': 'polarity', 'desc': 'Polarity', 'default': 'active-high',
'values': ('active-low', 'active-high')},
- {'id': 'datarate' , 'desc': 'Data rate', 'default': '64',
- 'values': ('64', '32', '16')},
+ {'id': 'datarate' , 'desc': 'Data rate', 'default': 64,
+ 'values': (64, 32, 16)},
# {'id': 'coding', 'desc': 'Bit coding', 'default': 'biphase',
# 'values': ('biphase', 'manchester', 'psk')},
- {'id': 'coilfreq', 'desc': 'Coil frequency', 'default': '125000'},
+ {'id': 'coilfreq', 'desc': 'Coil frequency', 'default': 125000},
)
annotations = (
('bit', 'Bit'),
def metadata(self, key, value):
if key == srd.SRD_CONF_SAMPLERATE:
self.samplerate = value
- self.bit_width = (self.samplerate / (int(self.options['coilfreq']))) * int(self.options['datarate'])
+ self.bit_width = (self.samplerate / self.options['coilfreq']) * self.options['datarate']
self.halfbit_limit = self.bit_width/2 + self.bit_width/4
self.polarity = 0 if self.options['polarity'] == 'active-low' else 1
if self.first_one > 0:
self.first_one += 1
if self.first_one == 9:
- self.put(int(self.first_start), int(bit_stop), self.out_ann,
+ self.put(self.first_start, bit_stop, self.out_ann,
[1, ['Header', 'Head', 'He', 'H']])
self.first_one = 0
self.state = 'PAYLOAD'
if self.data_bits == 5:
s = 'Version/customer' if self.payload_cnt <= 10 else 'Data'
c = 2 if self.payload_cnt <= 10 else 3
- self.put(int(self.data_start), int(bit_start), self.out_ann,
+ self.put(self.data_start, bit_start, self.out_ann,
[c, [s + ': %X' % self.data, '%X' % self.data]])
s = 'OK' if self.data_parity == bit else 'ERROR'
c = 4 if s == 'OK' else 5
if s == 'ERROR':
self.all_row_parity_ok = False
- self.put(int(bit_start), int(bit_stop), self.out_ann,
+ self.put(bit_start, bit_stop, self.out_ann,
[c, ['Row parity: ' + s, 'RP: ' + s, 'RP', 'R']])
self.tag = (self.tag << 4) | self.data
self.data_bits = 0
self.data_parity = 0
self.data_bits += 1
self.col_parity[self.data_bits] = bit
- self.col_parity_pos.append([int(bit_start), int(bit_stop)])
+ self.col_parity_pos.append([bit_start, bit_stop])
if self.data_bits == 5:
- self.put(int(bit_start), int(bit_stop), self.out_ann,
+ self.put(bit_start, bit_stop, self.out_ann,
[8, ['Stop bit', 'SB', 'S']])
for i in range(1, 5):
# Emit an annotation for valid-looking tags.
all_col_parity_ok = (self.data_col_parity[1:5] == self.col_parity[1:5])
if all_col_parity_ok and self.all_row_parity_ok:
- self.put(int(self.first_start), int(bit_stop), self.out_ann,
+ self.put(self.first_start, bit_stop, self.out_ann,
[9, ['Tag: %010X' % self.tag, 'Tag', 'T']])
self.tag = 0
self.all_row_parity_ok = True
def putbit(self, bit, bit_start, bit_stop):
- self.put(int(bit_start), int(bit_stop), self.out_ann,
- [0, [str(bit)]])
+ self.put(bit_start, bit_stop, self.out_ann, [0, [str(bit)]])
self.add_bit(bit, bit_start, bit_stop)
def manchester_decode(self, samplenum, pl, pp, pin):
t = samples / self.samplerate
if self.oldpl > self.halfbit_limit:
- bit_start = self.oldsamplenum - self.oldpl/2
+ bit_start = int(self.oldsamplenum - self.oldpl/2)
bit_stop = int(samplenum)
self.putbit(bit, bit_start, bit_stop)
self.last_bit_pos = int(samplenum)
if self.oldpl <= self.halfbit_limit:
if self.last_bit_pos <= self.oldsamplenum - self.oldpl:
- bit_start = self.oldsamplenum - self.oldpl
+ bit_start = int(self.oldsamplenum - self.oldpl)
bit_stop = int(samplenum)
self.putbit(bit, bit_start, bit_stop)
self.last_bit_pos = int(samplenum)