self.pokebysym("TEST1",0x31);
self.pokebysym("TEST0",0x09);
- #self.pokebysym("PA_TABLE0" , 0x60); #above mid
#self.pokebysym("FSCAL2" , 0x2A); #above mid
self.pokebysym("FSCAL2" , 0x0A); #beneath mid
hz=freq*396.728515625;
return hz;
+ lastshellcode="none";
def shellcodefile(self,filename,wait=1):
"""Run a fragment of shellcode by name."""
#FIXME: should identify chip model number, use shellcode for that chip.
- file=__file__;
- file=file.replace("GoodFETCC.pyc","GoodFETCC.py");
- path=file.replace("client/GoodFETCC.py","shellcode/chipcon/cc1110/");
- #print "File\t%s" % file;
- #print "Path\t%s" % path;
- filename=path+filename;
- #print "Loading shelcode from %s" % filename;
-
- #Load the shellcode.
- h=IntelHex(filename);
- for i in h._buf.keys():
- self.CCpokedatabyte(i,h[i]);
+
+ if self.lastshellcode!=filename:
+ self.lastshellcode=filename;
+ file=__file__;
+ file=file.replace("GoodFETCC.pyc","GoodFETCC.py");
+ path=file.replace("GoodFETCC.py","shellcode/chipcon/cc1110/");
+ filename=path+filename;
+
+ #Load the shellcode.
+ h=IntelHex(filename);
+ for i in h._buf.keys():
+ self.CCpokedatabyte(i,h[i]);
#Execute it.
self.CCdebuginstr([0x02, 0xf0, 0x00]); #ljmp 0xF000
RFST=0xDFE1
self.pokebyte(RFST,state); #Return to idle state.
return;
+ def config_dash7(self,band="lf"):
+ #These settings came from the OpenTag project's GIT repo on 18 Dec, 2010.
+ #Waiting for official confirmation of the accuracy.
+
+ self.pokebysym("FSCTRL1" , 0x08) # Frequency synthesizer control.
+ self.pokebysym("FSCTRL0" , 0x00) # Frequency synthesizer control.
+
+ #Don't change these while the radio is active.
+ self.pokebysym("FSCAL3" , 0xEA) # Frequency synthesizer calibration.
+ self.pokebysym("FSCAL2" , 0x2A) # Frequency synthesizer calibration.
+ self.pokebysym("FSCAL1" , 0x00) # Frequency synthesizer calibration.
+ self.pokebysym("FSCAL0" , 0x1F) # Frequency synthesizer calibration.
+
+ if band=="ismeu" or band=="eu":
+ print "There is no official eu band for dash7."
+ self.pokebysym("FREQ2" , 0x21) # Frequency control word, high byte.
+ self.pokebysym("FREQ1" , 0x71) # Frequency control word, middle byte.
+ self.pokebysym("FREQ0" , 0x7a) # Frequency control word, low byte.
+ elif band=="ismus" or band=="us":
+ print "There is no official us band for dash7."
+ self.pokebysym("FREQ2" , 0x22) # Frequency control word, high byte.
+ self.pokebysym("FREQ1" , 0xB1) # Frequency control word, middle byte.
+ self.pokebysym("FREQ0" , 0x3B) # Frequency control word, low byte.
+ elif band=="ismlf" or band=="lf":
+ # 433.9198 MHz, same as Simpliciti.
+ self.pokebysym("FREQ2" , 0x10) # Frequency control word, high byte.
+ self.pokebysym("FREQ1" , 0xB0) # Frequency control word, middle byte.
+ self.pokebysym("FREQ0" , 0x71) # Frequency control word, low byte.
+ elif band=="none":
+ pass;
+ else:
+ #Got a frequency, not a band.
+ self.RF_setfreq(eval(band));
+ self.pokebysym("MDMCFG4" , 0x8B) # 62.5 kbps w/ 200 kHz filter
+ self.pokebysym("MDMCFG3" , 0x3B)
+ self.pokebysym("MDMCFG2" , 0x11)
+ self.pokebysym("MDMCFG1" , 0x02)
+ self.pokebysym("MDMCFG0" , 0x53)
+ self.pokebysym("CHANNR" , 0x00) # Channel zero.
+ self.pokebysym("DEVIATN" , 0x50) # 50 kHz deviation
+
+ self.pokebysym("FREND1" , 0xB6) # Front end RX configuration.
+ self.pokebysym("FREND0" , 0x10) # Front end RX configuration.
+ self.pokebysym("MCSM2" , 0x1E)
+ self.pokebysym("MCSM1" , 0x3F)
+ self.pokebysym("MCSM0" , 0x30)
+ self.pokebysym("FOCCFG" , 0x1D) # Frequency Offset Compensation Configuration.
+ self.pokebysym("BSCFG" , 0x1E) # 6.25% data error rate
+
+ self.pokebysym("AGCCTRL2" , 0xC7) # AGC control.
+ self.pokebysym("AGCCTRL1" , 0x00) # AGC control.
+ self.pokebysym("AGCCTRL0" , 0xB2) # AGC control.
+ self.pokebysym("TEST2" , 0x81) # Various test settings.
+ self.pokebysym("TEST1" , 0x35) # Various test settings.
+ self.pokebysym("TEST0" , 0x09) # Various test settings.
+ self.pokebysym("PA_TABLE0", 0xc0) # Max output power.
+ self.pokebysym("PKTCTRL1" , 0x04) # Packet automation control, w/ lqi
+ #self.pokebysym("PKTCTRL1" , 0x00) # Packet automation control. w/o lqi
+ self.pokebysym("PKTCTRL0" , 0x05) # Packet automation control, w/ checksum.
+ #self.pokebysym("PKTCTRL0" , 0x00) # Packet automation control, w/o checksum, fixed length
+ self.pokebysym("ADDR" , 0x01) # Device address.
+ self.pokebysym("PKTLEN" , 0xFF) # Packet length.
+
+ self.pokebysym("SYNC1",0xD3);
+ self.pokebysym("SYNC0",0x91);
+ return;
def config_simpliciti(self,band="none"):
- self.pokebysym("FSCTRL1" , 0x08) # Frequency synthesizer control.
+ self.pokebysym("FSCTRL1" , 0x0C) #08 # Frequency synthesizer control.
self.pokebysym("FSCTRL0" , 0x00) # Frequency synthesizer control.
#Don't change these while the radio is active.
self.pokebysym("TEST2" , 0x81) # Various test settings.
self.pokebysym("TEST1" , 0x35) # Various test settings.
self.pokebysym("TEST0" , 0x09) # Various test settings.
- self.pokebysym("PA_TABLE0", 0xC0) # PA output power setting.
+ self.pokebysym("PA_TABLE0", 0xc0) # Max output power.
self.pokebysym("PKTCTRL1" , 0x04) # Packet automation control, w/ lqi
#self.pokebysym("PKTCTRL1" , 0x00) # Packet automation control. w/o lqi
self.pokebysym("PKTCTRL0" , 0x05) # Packet automation control, w/ checksum.
"""Get a packet from the radio. Returns None if none is waiting."""
self.shellcodefile("rxpacket.ihx");
len=self.peek8(0xFE00,"xdata");
- return self.peekblock(0xFE00,len+1,"data");
+ return self.peekblock(0xFE00,len+3,"data");
def RF_txpacket(self,packet):
"""Transmit a packet. Untested."""
self.pokeblock(0xFE00,packet,"data");
self.shellcodefile("txrxpacket.ihx");
len=self.peek8(0xFE00,"xdata");
- return self.peekblock(0xFE00,len+1,"data");
+ return self.peekblock(0xFE00,len+3,"data");
def RF_getrssi(self):
"""Returns the received signal strenght, with a weird offset."""
"""Start debugging."""
self.setup();
self.writecmd(self.APP,0x20,0,self.data);
- ident=self.CCidentstr();
+ ident=self.CCident();
+ if ident==0xFFFF or ident==0x0000:
+ self.writecmd(self.APP,0x20,0,self.data);
+ ident=self.CCident();
+
+
#print "Target identifies as %s." % ident;
#print "Status: %s." % self.status();
self.CCreleasecpu();