X-Git-Url: http://git.rot13.org/?p=goodfet;a=blobdiff_plain;f=client%2FGoodFET.py;h=f80a46ded7691923542e5ec8be4a6ae67788d253;hp=f2a673b124166acc7d74602cc3d1ca5d0cec3a23;hb=da2dad53f6596dbb3049ad14044b9b754dbf4245;hpb=f13d84c954960084c69440ad035e68b6017572dc diff --git a/client/GoodFET.py b/client/GoodFET.py index f2a673b..f80a46d 100755 --- a/client/GoodFET.py +++ b/client/GoodFET.py @@ -6,18 +6,31 @@ # This code is ugly as sin, for bootstrapping the firmware only. # Rewrite cleanly as soon as is convenient. -import sys, time, string, cStringIO, struct -#sys.path.append("/usr/lib/tinyos") -import serial +import sys, time, string, cStringIO, struct, glob, serial, os; class GoodFET: + """GoodFET Client Library""" def __init__(self, *args, **kargs): self.data=[0]; def timeout(self): - print "timout\n"; - def serInit(self, port): + print "timeout\n"; + def serInit(self, port=None): """Open the serial port""" + + if port is None and os.environ.get("GOODFET")!=None: + glob_list = glob.glob(os.environ.get("GOODFET")); + if len(glob_list) > 0: + port = glob_list[0]; + if port is None: + glob_list = glob.glob("/dev/tty.usbserial*"); + if len(glob_list) > 0: + port = glob_list[0]; + if port is None: + glob_list = glob.glob("/dev/ttyUSB*"); + if len(glob_list) > 0: + port = glob_list[0]; + self.serialport = serial.Serial( port, #9600, @@ -33,9 +46,9 @@ class GoodFET: #time.sleep(1); self.readcmd(); #Read the first command. if(self.verb!=0x7F): - print "Verb is wrong. Incorrect firmware?"; - - def writecmd(self, app, verb, count, data): + print "Verb %02x is wrong. Incorrect firmware?" % self.verb; + #print "Connected." + def writecmd(self, app, verb, count=0, data=[], blocks=1): """Write a command and some data to the GoodFET.""" self.serialport.write(chr(app)); self.serialport.write(chr(verb)); @@ -44,14 +57,15 @@ class GoodFET: if count!=0: for d in data: self.serialport.write(chr(d)); - self.readcmd(); #Uncomment this later, to ensure a response. - def readcmd(self): + + self.readcmd(blocks); #Uncomment this later, to ensure a response. + def readcmd(self,blocks=1): """Read a reply from the GoodFET.""" self.app=ord(self.serialport.read(1)); self.verb=ord(self.serialport.read(1)); self.count=ord(self.serialport.read(1)); - if self.count>0: - self.data=self.serialport.read(self.count); + self.data=self.serialport.read(self.count*blocks); + return self.data; #print "READ %02x %02x %02x " % (self.app, self.verb, self.count); #Monitor stuff @@ -69,8 +83,30 @@ class GoodFET: self.data=[address&0xff,address>>8,value]; self.writecmd(0,0x03,3,self.data); return ord(self.data[0]); + def dumpmem(self,begin,end): + i=begin; + while i>16, (adr&0xFF00)>>8, - adr&0xFF]; + adr&0xFF, + blocks]; - self.writecmd(0x01,0x02,3,data); + self.writecmd(0x01,0x02,4,data,blocks); return self.data; + def SPIpokebyte(self,adr,val): - self.SPIwriteenable(); - data=[0x02, - (adr&0xFF0000)>>16, + self.SPIpokebytes(adr,[val]); + def SPIpokebytes(self,adr,data): + #self.SPIwriteenable(); + adranddata=[(adr&0xFF0000)>>16, (adr&0xFF00)>>8, - adr&0xFF, - val]; - self.SPItrans(data); + adr&0xFF + ]+data; + self.writecmd(0x01,0x03, + len(adranddata),adranddata); + def SPIchiperase(self): """Mass erase an SPI Flash ROM.""" - self.SPIwriteenable(); - #Chip Erase - data=[0xC7]; - self.SPItrans(data); + self.writecmd(0x01,0x81,0,[]); def SPIwriteenable(self): """SPI Flash Write Enable""" data=[0x06]; @@ -188,16 +252,32 @@ class GoodFET: if device==0: device="???" return "%s %s" % (man,device); + def MSP430setup(self): """Move the FET into the MSP430 JTAG application.""" print "Initializing MSP430."; self.writecmd(0x11,0x10,0,self.data); - - + def I2Csetup(self): + """Move the FET into the I2C application.""" + self.writecmd(0x02,0x10,0,self.data); #SPI/SETUP + def I2Cstart(self): + """Start an I2C transaction.""" + self.writecmd(0x02,0x20,0,self.data); #SPI/SETUP + def I2Cstop(self): + """Stop an I2C transaction.""" + self.writecmd(0x02,0x21,0,self.data); #SPI/SETUP + def I2Cread(self,len=1): + """Read len bytes by I2C.""" + self.writecmd(0x02,0x00,1,[len]); #SPI/SETUP + return self.data; + def I2Cwrite(self,bytes): + """Write bytes by I2C.""" + self.writecmd(0x02,0x01,len(bytes),bytes); #SPI/SETUP + return ord(self.data[0]); def CCsetup(self): """Move the FET into the CC2430/CC2530 application.""" - print "Initializing Chipcon."; + #print "Initializing Chipcon."; self.writecmd(0x30,0x10,0,self.data); def CCrd_config(self): """Read the config register of a Chipcon.""" @@ -215,7 +295,7 @@ class GoodFET: 0xFF00:"CCmissing"}; def CCidentstr(self): ident=self.CCident(); - chip=self.CCversions[ident&0xFF00]; + chip=self.CCversions.get(ident&0xFF00); return "%s/r%02x" % (chip, ident&0xFF); def CCident(self): """Get a chipcon's ID.""" @@ -293,10 +373,11 @@ class GoodFET: self.writecmd(0x30,0x20,0,self.data); ident=self.CCidentstr(); print "Target identifies as %s." % ident; - print "Status: %s." % self.CCstatusstr(); + #print "Status: %s." % self.CCstatusstr(); self.CCreleasecpu(); self.CChaltcpu(); - print "Status: %s." % self.CCstatusstr(); + #print "Status: %s." % self.CCstatusstr(); + def CCstop(self): """Stop debugging.""" self.writecmd(0x30,0x21,0,self.data); @@ -380,7 +461,7 @@ class GoodFET: def CCtest(self): self.CCreleasecpu(); self.CChaltcpu(); - print "Status: %s" % self.CCstatusstr(); + #print "Status: %s" % self.CCstatusstr(); #Grab ident three times, should be equal. ident1=self.CCident(); @@ -391,26 +472,22 @@ class GoodFET: print "%04x, %04x, %04x" % (ident1, ident2, ident3); #Single step, printing PC. - #print "Tracing execution at startup." + print "Tracing execution at startup." for i in range(1,15): pc=self.CCgetPC(); byte=self.CCpeekcodebyte(i); - print "PC=%04x, %02x" % (pc, byte); + #print "PC=%04x, %02x" % (pc, byte); self.CCstep_instr(); - #print "Verifying that debugging a NOP doesn't affect the PC." + print "Verifying that debugging a NOP doesn't affect the PC." for i in range(1,15): pc=self.CCgetPC(); self.CCdebuginstr([0x00]); if(pc!=self.CCgetPC()): print "ERROR: PC changed during CCdebuginstr([NOP])!"; - for i in range(0xE500,0xE600): - byte=self.CCpeekdatabyte(i); - print "data %04x: %02x" % (i,byte); - self.CCpokedatabyte(i,i&0xFF); - byte=self.CCpeekdatabyte(i); - print "data %04x: %02x" % (i,byte); - print "Status: %s." % self.CCstatusstr(); + + + #print "Status: %s." % self.CCstatusstr(); #Exit debugger self.CCstop(); print "Done.";