chiark / gitweb /
Added feature #201 - fixed #201
[cura.git] / Cura / util / machineCom.py
1 from __future__ import absolute_import
2 import __init__
3
4 import os, glob, sys, time, math, re, traceback, threading
5 import Queue as queue
6
7 from serial import Serial
8
9 from avr_isp import stk500v2
10 from avr_isp import ispBase
11 from avr_isp import intelHex
12
13 from util import profile
14
15 try:
16         import _winreg
17 except:
18         pass
19
20 def serialList():
21         baselist=[]
22         if os.name=="nt":
23                 try:
24                         key=_winreg.OpenKey(_winreg.HKEY_LOCAL_MACHINE,"HARDWARE\\DEVICEMAP\\SERIALCOMM")
25                         i=0
26                         while(1):
27                                 baselist+=[_winreg.EnumValue(key,i)[1]]
28                                 i+=1
29                 except:
30                         pass
31         baselist = baselist + glob.glob('/dev/ttyUSB*') + glob.glob('/dev/ttyACM*') + glob.glob("/dev/tty.usb*") + glob.glob("/dev/cu.*") + glob.glob("/dev/rfcomm*")
32         prev = profile.getPreference('serial_port_auto')
33         if prev in baselist:
34                 baselist.remove(prev)
35                 baselist.insert(0, prev)
36         return baselist
37
38 def baudrateList():
39         ret = [250000, 230400, 115200, 57600, 38400, 19200, 9600]
40         if profile.getPreference('serial_baud_auto') != '':
41                 prev = int(profile.getPreference('serial_baud_auto'))
42                 if prev in ret:
43                         ret.remove(prev)
44                         ret.insert(0, prev)
45         return ret
46
47 class VirtualPrinter():
48         def __init__(self):
49                 self.readList = ['start\n', 'Marlin: Virtual Marlin!\n', '\x80\n']
50                 self.temp = 0.0
51                 self.targetTemp = 0.0
52                 self.lastTempAt = time.time()
53                 self.bedTemp = 1.0
54                 self.bedTargetTemp = 1.0
55         
56         def write(self, data):
57                 if self.readList == None:
58                         return
59                 #print "Send: %s" % (data.rstrip())
60                 if 'M104' in data or 'M109' in data:
61                         try:
62                                 self.targetTemp = float(data[data.find('S')+1:])
63                         except:
64                                 pass
65                 if 'M140' in data or 'M190' in data:
66                         try:
67                                 self.bedTargetTemp = float(data[data.find('S')+1:])
68                         except:
69                                 pass
70                 if 'M105' in data:
71                         self.readList.append("ok T:%.2f /%.2f B:%.2f /%.2f @:64\n" % (self.temp, self.targetTemp, self.bedTemp, self.bedTargetTemp))
72                 elif len(data.strip()) > 0:
73                         self.readList.append("ok\n")
74
75         def readline(self):
76                 if self.readList == None:
77                         return ''
78                 n = 0
79                 timeDiff = self.lastTempAt - time.time()
80                 self.lastTempAt = time.time()
81                 if abs(self.temp - self.targetTemp) > 1:
82                         self.temp += math.copysign(timeDiff, self.targetTemp - self.temp)
83                 if abs(self.bedTemp - self.bedTargetTemp) > 1:
84                         self.bedTemp += math.copysign(timeDiff, self.bedTargetTemp - self.bedTemp)
85                 while len(self.readList) < 1:
86                         time.sleep(0.1)
87                         n += 1
88                         if n == 20:
89                                 return ''
90                         if self.readList == None:
91                                 return ''
92                 time.sleep(0.01)
93                 #print "Recv: %s" % (self.readList[0].rstrip())
94                 return self.readList.pop(0)
95         
96         def close(self):
97                 self.readList = None
98
99 class MachineComPrintCallback(object):
100         def mcLog(self, message):
101                 print(message)
102         
103         def mcTempUpdate(self, temp, bedTemp):
104                 pass
105         
106         def mcStateChange(self, state):
107                 pass
108         
109         def mcMessage(self, message):
110                 pass
111         
112         def mcProgress(self, lineNr):
113                 pass
114         
115         def mcZChange(self, newZ):
116                 pass
117
118 class MachineCom(object):
119         STATE_NONE = 0
120         STATE_DETECT_BAUDRATE = 1
121         STATE_CONNECTING = 2
122         STATE_OPERATIONAL = 3
123         STATE_PRINTING = 4
124         STATE_PAUSED = 5
125         STATE_CLOSED = 6
126         STATE_ERROR = 7
127         STATE_CLOSED_WITH_ERROR = 8
128         
129         def __init__(self, port = None, baudrate = None, callbackObject = None):
130                 if port == None:
131                         port = profile.getPreference('serial_port')
132                 if baudrate == None:
133                         if profile.getPreference('serial_baud') == 'AUTO':
134                                 baudrate = 0
135                         else:
136                                 baudrate = int(profile.getPreference('serial_baud'))
137                 if callbackObject == None:
138                         callbackObject = MachineComPrintCallback()
139
140                 self._callback = callbackObject
141                 self._state = self.STATE_NONE
142                 self._serial = None
143                 self._baudrateDetectList = baudrateList()
144                 self._baudrateDetectRetry = 0
145                 self._temp = 0
146                 self._bedTemp = 0
147                 self._gcodeList = None
148                 self._gcodePos = 0
149                 self._commandQueue = queue.Queue()
150                 self._logQueue = queue.Queue(256)
151                 self._feedRateModifier = {}
152                 self._currentZ = -1
153                 
154                 if port == 'AUTO':
155                         programmer = stk500v2.Stk500v2()
156                         self._log("Serial port list: %s" % (str(serialList())))
157                         for port in serialList():
158                                 try:
159                                         self._log("Connecting to: %s" % (port))
160                                         programmer.connect(port)
161                                         self._serial = programmer.leaveISP()
162                                         profile.putPreference('serial_port_auto', port)
163                                         break
164                                 except ispBase.IspError as (e):
165                                         self._log("Error while connecting to %s: %s" % (port, str(e)))
166                                         pass
167                                 except:
168                                         self._log("Unexpected error while connecting to serial port: %s %s" % (port, getExceptionString()))
169                                 programmer.close()
170                 elif port == 'VIRTUAL':
171                         self._serial = VirtualPrinter()
172                 else:
173                         try:
174                                 self._log("Connecting to: %s" % (port))
175                                 if baudrate == 0:
176                                         self._serial = Serial(port, 115200, timeout=0.1)
177                                 else:
178                                         self._serial = Serial(port, baudrate, timeout=2)
179                         except:
180                                 self._log("Unexpected error while connecting to serial port: %s %s" % (port, getExceptionString()))
181                 self._log("Connected to: %s, starting monitor" % (self._serial))
182                 if baudrate == 0:
183                         self._changeState(self.STATE_DETECT_BAUDRATE)
184                 else:
185                         self._changeState(self.STATE_CONNECTING)
186                 self.thread = threading.Thread(target=self._monitor)
187                 self.thread.daemon = True
188                 self.thread.start()
189         
190         def _changeState(self, newState):
191                 if self._state == newState:
192                         return
193                 oldState = self.getStateString()
194                 self._state = newState
195                 self._log('Changing monitoring state from \'%s\' to \'%s\'' % (oldState, self.getStateString()))
196                 self._callback.mcStateChange(newState)
197         
198         def getState(self):
199                 return self._state
200         
201         def getStateString(self):
202                 if self._state == self.STATE_NONE:
203                         return "Offline"
204                 if self._state == self.STATE_DETECT_BAUDRATE:
205                         return "Detect baudrate"
206                 if self._state == self.STATE_CONNECTING:
207                         return "Connecting"
208                 if self._state == self.STATE_OPERATIONAL:
209                         return "Operational"
210                 if self._state == self.STATE_PRINTING:
211                         return "Printing"
212                 if self._state == self.STATE_PAUSED:
213                         return "Paused"
214                 if self._state == self.STATE_CLOSED:
215                         return "Closed"
216                 if self._state == self.STATE_ERROR:
217                         return "Error: %s" % (self._errorValue)
218                 if self._state == self.STATE_CLOSED_WITH_ERROR:
219                         return "Error: %s" % (self._errorValue)
220                 return "?%d?" % (self._state)
221         
222         def isClosedOrError(self):
223                 return self._state == self.STATE_ERROR or self._state == self.STATE_CLOSED_WITH_ERROR or self._state == self.STATE_CLOSED
224         
225         def isOperational(self):
226                 return self._state == self.STATE_OPERATIONAL or self._state == self.STATE_PRINTING or self._state == self.STATE_PAUSED
227         
228         def isPrinting(self):
229                 return self._state == self.STATE_PRINTING
230         
231         def getPrintPos(self):
232                 return self._gcodePos
233         
234         def isPaused(self):
235                 return self._state == self.STATE_PAUSED
236         
237         def getTemp(self):
238                 return self._temp
239         
240         def getBedTemp(self):
241                 return self._bedTemp
242         
243         def _monitor(self):
244                 timeout = time.time() + 5
245                 while True:
246                         line = self._readline()
247                         if line == None:
248                                 break
249                         
250                         #No matter the state, if we see an error, goto the error state and store the error for reference.
251                         if line.startswith('Error: '):
252                                 #Oh YEAH, consistency.
253                                 # Marlin reports an MIN/MAX temp error as "Error: x\n: Extruder switched off. MAXTEMP triggered !\n"
254                                 #       But a bed temp error is reported as "Error: Temperature heated bed switched off. MAXTEMP triggered !!"
255                                 #       So we can have an extra newline in the most common case. Awesome work people.
256                                 if re.match('Error: [0-9]\n', line):
257                                         line = line.rstrip() + self._readline()
258                                 self._errorValue = line
259                                 self._changeState(self.STATE_ERROR)
260                         if 'T:' in line:
261                                 self._temp = float(re.search("[0-9\.]*", line.split('T:')[1]).group(0))
262                                 if 'B:' in line:
263                                         self._bedTemp = float(re.search("[0-9\.]*", line.split('B:')[1]).group(0))
264                                 self._callback.mcTempUpdate(self._temp, self._bedTemp)
265                         elif line.strip() != 'ok':
266                                 self._callback.mcMessage(line)
267
268                         if self._state == self.STATE_DETECT_BAUDRATE:
269                                 if line == '' or time.time() > timeout:
270                                         if len(self._baudrateDetectList) < 1:
271                                                 self._log("No more baudrates to test, and no suitable baudrate found.")
272                                                 self.close()
273                                         elif self._baudrateDetectRetry > 0:
274                                                 self._baudrateDetectRetry -= 1
275                                                 self._serial.write('\n')
276                                                 self._sendCommand("M105")
277                                         else:
278                                                 baudrate = self._baudrateDetectList.pop(0)
279                                                 try:
280                                                         self._serial.baudrate = baudrate
281                                                         self._serial.timeout = 0.5
282                                                         self._log("Trying baudrate: %d" % (baudrate))
283                                                         self._baudrateDetectRetry = 5
284                                                         timeout = time.time() + 5
285                                                         self._serial.write('\n')
286                                                         self._sendCommand("M105")
287                                                 except:
288                                                         self._log("Unexpected error while setting baudrate: %d %s" % (baudrate, getExceptionString()))
289                                 elif 'ok' in line:
290                                         self._serial.timeout = 2
291                                         profile.putPreference('serial_baud_auto', self._serial.baudrate)
292                                         self._changeState(self.STATE_OPERATIONAL)
293                         elif self._state == self.STATE_CONNECTING:
294                                 if line == '':
295                                         self._sendCommand("M105")
296                                 elif 'ok' in line:
297                                         self._changeState(self.STATE_OPERATIONAL)
298                                 if time.time() > timeout:
299                                         self.close()
300                         elif self._state == self.STATE_OPERATIONAL:
301                                 #Request the temperature on comm timeout (every 2 seconds) when we are not printing.
302                                 if line == '':
303                                         self._sendCommand("M105")
304                                         tempRequestTimeout = time.time() + 5
305                         elif self._state == self.STATE_PRINTING:
306                                 if line == '' and time.time() > timeout:
307                                         self._log("Communication timeout during printing, forcing a line")
308                                         line = 'ok'
309                                 #Even when printing request the temperture every 5 seconds.
310                                 if time.time() > tempRequestTimeout:
311                                         self._commandQueue.put("M105")
312                                         tempRequestTimeout = time.time() + 5
313                                 if 'ok' in line:
314                                         timeout = time.time() + 5
315                                         if not self._commandQueue.empty():
316                                                 self._sendCommand(self._commandQueue.get())
317                                         else:
318                                                 self._sendNext()
319                                 elif "resend" in line.lower() or "rs" in line:
320                                         try:
321                                                 self._gcodePos = int(line.replace("N:"," ").replace("N"," ").replace(":"," ").split()[-1])
322                                         except:
323                                                 if "rs" in line:
324                                                         self._gcodePos = int(line.split()[1])
325                 self._log("Connection closed, closing down monitor")
326         
327         def _log(self, message):
328                 self._callback.mcLog(message)
329                 try:
330                         self._logQueue.put(message, False)
331                 except:
332                         #If the log queue is full, remove the first message and append the new message again
333                         self._logQueue.get()
334                         self._logQueue.put(message, False)
335
336         def _readline(self):
337                 if self._serial == None:
338                         return None
339                 try:
340                         ret = self._serial.readline()
341                 except:
342                         self._log("Unexpected error while reading serial port: %s" % (getExceptionString()))
343                         self._errorValue = getExceptionString()
344                         self.close(True)
345                         return None
346                 if ret == '':
347                         #self._log("Recv: TIMEOUT")
348                         return ''
349                 self._log("Recv: %s" % (unicode(ret, 'ascii', 'replace').encode('ascii', 'replace').rstrip()))
350                 return ret
351         
352         def close(self, isError = False):
353                 if self._serial != None:
354                         self._serial.close()
355                         if isError:
356                                 self._changeState(self.STATE_CLOSED_WITH_ERROR)
357                         else:
358                                 self._changeState(self.STATE_CLOSED)
359                 self._serial = None
360         
361         def __del__(self):
362                 self.close()
363         
364         def _sendCommand(self, cmd):
365                 if self._serial == None:
366                         return
367                 self._log('Send: %s' % (cmd))
368                 try:
369                         self._serial.write(cmd)
370                         self._serial.write('\n')
371                 except:
372                         self._log("Unexpected error while writing serial port: %s" % (getExceptionString()))
373                         self._errorValue = getExceptionString()
374                         self.close(True)
375         
376         def _sendNext(self):
377                 if self._gcodePos >= len(self._gcodeList):
378                         self._changeState(self.STATE_OPERATIONAL)
379                         return
380                 line = self._gcodeList[self._gcodePos]
381                 if type(line) is tuple:
382                         self._printSection = line[1]
383                         line = line[0]
384                 try:
385                         if line == 'M0' or line == 'M1':
386                                 self.setPause(True)
387                                 line = 'M105'   #Don't send the M0 or M1 to the machine, as M0 and M1 are handled as an LCD menu pause.
388                         if self._printSection in self._feedRateModifier:
389                                 line = re.sub('F([0-9]*)', lambda m: 'F' + str(int(int(m.group(1)) * self._feedRateModifier[self._printSection])), line)
390                         if ('G0' in line or 'G1' in line) and 'Z' in line:
391                                 z = float(re.search('Z([0-9\.]*)', line).group(1))
392                                 if self._currentZ != z:
393                                         self._currentZ = z
394                                         self._callback.mcZChange(z)
395                 except:
396                         self._log("Unexpected error: %s" % (getExceptionString()))
397                 checksum = reduce(lambda x,y:x^y, map(ord, "N%d%s" % (self._gcodePos, line)))
398                 self._sendCommand("N%d%s*%d" % (self._gcodePos, line, checksum))
399                 self._gcodePos += 1
400                 self._callback.mcProgress(self._gcodePos)
401         
402         def sendCommand(self, cmd):
403                 cmd = cmd.encode('ascii', 'replace')
404                 if self.isPrinting():
405                         self._commandQueue.put(cmd)
406                 elif self.isOperational():
407                         self._sendCommand(cmd)
408         
409         def printGCode(self, gcodeList):
410                 if not self.isOperational() or self.isPrinting():
411                         return
412                 self._gcodeList = gcodeList
413                 self._gcodePos = 0
414                 self._printSection = 'CUSTOM'
415                 self._changeState(self.STATE_PRINTING)
416                 for i in xrange(0, 6):
417                         self._sendNext()
418         
419         def cancelPrint(self):
420                 if self.isOperational():
421                         self._changeState(self.STATE_OPERATIONAL)
422         
423         def setPause(self, pause):
424                 if not pause and self.isPaused():
425                         self._changeState(self.STATE_PRINTING)
426                         for i in xrange(0, 6):
427                                 self._sendNext()
428                 if pause and self.isPrinting():
429                         self._changeState(self.STATE_PAUSED)
430         
431         def setFeedrateModifier(self, type, value):
432                 self._feedRateModifier[type] = value
433
434 def getExceptionString():
435         locationInfo = traceback.extract_tb(sys.exc_info()[2])[0]
436         return "%s: '%s' @ %s:%s:%d" % (str(sys.exc_info()[0].__name__), str(sys.exc_info()[1]), os.path.basename(locationInfo[0]), locationInfo[2], locationInfo[1])
437