iii
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parent
940fd3ca3a
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220
iconsole.py
220
iconsole.py
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@ -1,62 +1,3 @@
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import serial,struct
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from time import sleep
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from binascii import hexlify
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want = struct.pack('BBBBB', 0xf0, 0xb0, 0x01, 0x01, 0xa2)
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port = serial.Serial('/dev/rfcomm0')
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print "OK"
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got = None
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while got != want:
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port.write(struct.pack('BBBBB', 0xf0, 0xa0, 0x01, 0x01, 0x92))
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sleep(0.5)
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got = port.read_all()
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print hexlify(got)
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print "init done"
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port.write(struct.pack('BBBBB', 0xf0, 0xa1, 0x01, 0x01, 0x93))
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sleep(0.5)
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print hexlify(port.read_all())
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port.write(struct.pack('BBBBB', 0xf0, 0xa0, 0x01, 0x01, 0x92))
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sleep(0.5)
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print hexlify(port.read_all())
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port.write(struct.pack('BBBBB', 0xf0, 0xa0, 0x01, 0x01, 0x92))
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sleep(0.5)
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print hexlify(port.read_all())
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port.write(struct.pack('BBBBB', 0xf0, 0xa0, 0x01, 0x01, 0x92))
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sleep(0.5)
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print hexlify(port.read_all())
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port.write(struct.pack('BBBBB', 0xf0, 0xa0, 0x01, 0x01, 0x92))
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sleep(0.5)
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print hexlify(port.read_all())
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port.write(struct.pack('BBBBB', 0xf0, 0xa0, 0x01, 0x01, 0x92))
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sleep(0.5)
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print hexlify(port.read_all())
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port.write(struct.pack('BBBBBB', 0xf0, 0xa3, 0x01, 0x01, 0x01, 0x96))
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sleep(0.5)
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print hexlify(port.read_all())
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port.write(struct.pack('BBBBBBBBBBBBBBB', 0xf0, 0xa4, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0xa0))
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sleep(0.5)
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print hexlify(port.read_all())
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port.write(struct.pack('BBBBBB', 0xf0, 0xa5, 0x01, 0x01, 0x02, 0x99))
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sleep(0.5)
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print hexlify(port.read_all())
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while True:
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port.write(struct.pack('BBBBB', 0xf0, 0xa2, 0x01, 0x01, 0x94))
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sleep(0.5)
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got = port.read_all()
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if len(got) == 21:
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gota = struct.unpack('BBBBBBBBBBBBBBBBBBBBB', got)
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time = "%02d:%02d:%02d:%02d" % (gota[2]-1, gota[3]-1, gota[4]-1, gota[5]-1)
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speed = "V: % 3.1f km/h" % ((100*(gota[6]-1) + gota[7] -1) / 10.0)
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rpm = "RPM: % 3d" % ((100*(gota[8]-1) + gota[9] -1))
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distance = "D: % 3.1f km" % ((100*(gota[10]-1) + gota[11] -1) / 10.0)
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calories = "% 3d kcal" % ((100*(gota[12]-1) + gota[13] -1))
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hf = "HF % 3d" % ((100*(gota[14]-1) + gota[15] -1))
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watt = "% 3.1f W" % ((100*(gota[16]-1) + gota[17] -1) / 10.0)
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lvl = "L: %d" % (gota[18] -1)
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print "%s - %s - %s - %s - %s - %s - %s - %s" % (time, speed, rpm, distance, calories, hf, watt, lvl)
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port.close()
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# f0:b2 01:01:04:06 03:11 01:3b 01:07 01:0d 01:01 0f:33 09 02
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# f0:b2 01:01:04:06 03:11 01:3b 01:07 01:0d 01:01 0f:33 09 02
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# T: 3:05 21.0km/h RPM58 D:0.6 cal 12 HF 0 W:1450 LVL8
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# T: 3:05 21.0km/h RPM58 D:0.6 cal 12 HF 0 W:1450 LVL8
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#
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#
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@ -84,8 +25,167 @@ port.close()
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# f0:a6:01:01:02:9a - C: LEVEL 1
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# f0:a6:01:01:02:9a - C: LEVEL 1
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# f0:a5:01:01:02:99 - C: START
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# f0:a5:01:01:02:99 - C: START
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# f0:b5:01:01:02:a9 - M: STOPPED
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# f0:b5:01:01:02:a9 - M: STARTED
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# f0:a5:01:01:04:9b - C: STOP
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# f0:a5:01:01:04:9b - C: STOP
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# f0:b5:01:01:04:ab - M: STOPPED
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# f0:b5:01:01:04:ab - M: STOPPED
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# 93 rpm - 100 W - lvl 1 1.075
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# 77 rpm - 100 W - lvl 2 1.3
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# 48 rpm - 143.4 W - lvl 12 2.98
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# 23.5 W pro Stufe auf 81
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# 12 - 350.8 - 82
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# 357.7 83
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# 364.6 84 6.9 pro rpm
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import serial,struct
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from time import sleep
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from binascii import hexlify
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INIT_A0 = struct.pack('BBBBB', 0xf0, 0xa0, 0x02, 0x02, 0x94)
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PING = struct.pack('BBBBB', 0xf0, 0xa0, 0x01, 0x01, 0x92)
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PONG = struct.pack('BBBBB', 0xf0, 0xb0, 0x01, 0x01, 0xa2)
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STATUS = struct.pack('BBBBB', 0xf0, 0xa1, 0x01, 0x01, 0x93)
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INIT_A3 = struct.pack('BBBBBB', 0xf0, 0xa3, 0x01, 0x01, 0x01, 0x96)
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INIT_A4 = struct.pack('BBBBBBBBBBBBBBB', 0xf0, 0xa4, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0xa0)
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START = struct.pack('BBBBBB', 0xf0, 0xa5, 0x01, 0x01, 0x02, 0x99)
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STOP = struct.pack('BBBBBB', 0xf0, 0xa5, 0x01, 0x01, 0x04, 0x9b)
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READ = struct.pack('BBBBB', 0xf0, 0xa2, 0x01, 0x01, 0x94)
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port = serial.Serial('/dev/rfcomm3')
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print "OK"
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import signal
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class GracefulInterruptHandler(object):
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def __init__(self, sig=signal.SIGINT):
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self.sig = sig
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def __enter__(self):
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self.interrupted = False
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self.released = False
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self.original_handler = signal.getsignal(self.sig)
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def handler(signum, frame):
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self.release()
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self.interrupted = True
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signal.signal(self.sig, handler)
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return self
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def __exit__(self, type, value, tb):
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self.release()
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def release(self):
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if self.released:
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return False
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signal.signal(self.sig, self.original_handler)
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self.released = True
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return True
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def send_ack(packet, expect=None, plen=0):
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if expect == None:
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expect = 0xb0 | (ord(packet[1]) & 0xF)
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if plen == 0:
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plen = len(packet)
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got = None
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while got == None:
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sleep(0.1)
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port.read_all()
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port.write(packet)
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port.flush()
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#print "->" + hexlify(packet)
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i = 0
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while got == None and i < 6:
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i+=1
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sleep(0.1)
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got = port.read_all()
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if len(got) == plen:
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#print "<-" + hexlify(got)
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pass
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else:
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if len(got) > 0:
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#print "Got len == %d" % len(got)
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pass
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got = None
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if got and len(got) >= 3 and got[0] == packet[0] and ord(got[1]) == expect:
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break
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got = None
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return got
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def send_level(lvl):
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packet = struct.pack('BBBBBB', 0xf0, 0xa6, 0x01, 0x01, lvl+1, (0xf0+0xa6+3+lvl) & 0xFF)
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got = send_ack(packet)
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return got
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#send_level(10)
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i = 0
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with GracefulInterruptHandler() as h:
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send_ack(PING)
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print "ping done"
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send_ack(INIT_A0, expect=0xb7, plen=6)
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print "A0 done"
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for i in range(0, 5):
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send_ack(PING)
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print "ping done"
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send_ack(STATUS, plen=6)
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print "status done"
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send_ack(PING)
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print "ping done"
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send_ack(INIT_A3)
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print "A3 done"
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send_ack(INIT_A4)
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print "A4 done"
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send_ack(START)
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print "START done"
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while True:
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if h.interrupted:
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break
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sleep(0.4)
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i+=1
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# if i % 20 == 2:
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# send_level((i/20) +1)
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got = send_ack(READ, plen=21)
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if len(got) == 21:
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gota = struct.unpack('BBBBBBBBBBBBBBBBBBBBB', got)
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time = "%02d:%02d:%02d:%02d" % (gota[2]-1, gota[3]-1, gota[4]-1, gota[5]-1)
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speed = "V: % 3.1f km/h" % ((100*(gota[6]-1) + gota[7] -1) / 10.0)
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rpm = "% 3d RPM" % ((100*(gota[8]-1) + gota[9] -1))
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distance = "D: % 3.1f km" % ((100*(gota[10]-1) + gota[11] -1) / 10.0)
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calories = "% 3d kcal" % ((100*(gota[12]-1) + gota[13] -1))
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hf = "HF % 3d" % ((100*(gota[14]-1) + gota[15] -1))
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watt = "% 3.1f W" % ((100*(gota[16]-1) + gota[17] -1) / 10.0)
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lvl = "L: %d" % (gota[18] -1)
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print "%s - %s - %s - %s - %s - %s - %s - %s" % (time, speed, rpm, distance, calories, hf, watt, lvl)
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send_ack(STOP)
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print "STOP done"
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for i in range(0, 5):
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send_ack(PING)
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print "ping done"
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port.close()
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