AVR support for setting lock bits.
[goodfet] / client / GoodFETAVR.py
index 46efed7..ee5b180 100644 (file)
@@ -23,7 +23,9 @@ class GoodFETAVR(GoodFET):
         0x9005: "tiny12",
         0x9006: "tiny15",
         0x9007: "tiny13",
         0x9005: "tiny12",
         0x9006: "tiny15",
         0x9007: "tiny13",
+        0x9108: "tiny25",
         0x930B: "tiny85",
         0x930B: "tiny85",
+        0x9206: "tiny45",
         
         0x9001: "S1200",
         
         
         0x9001: "S1200",
         
@@ -33,16 +35,22 @@ class GoodFETAVR(GoodFET):
         0x9103: "S2343",
         
         0x9201: "S4414",
         0x9103: "S2343",
         
         0x9201: "S4414",
-                0x9203: "S4433",
+        0x9203: "S4433",
         0x9202: "S4434",
         
         0x9301: "S8515",
         0x9303: "S8535",
         
         0x9305: "mega83",
         0x9202: "S4434",
         
         0x9301: "S8515",
         0x9303: "S8535",
         
         0x9305: "mega83",
+        0x930a: "mega88",
         0x9701: "mega103",
         0x9401: "mega161",
         0x9402: "mega163",
         0x9701: "mega103",
         0x9401: "mega161",
         0x9402: "mega163",
+        0x9406: "mega168",
+        
+        0x950f: "mega328",
+        0x950d: "mega325",
+        0x9508: "mega32"
         };
     
     def setup(self):
         };
     
     def setup(self):
@@ -66,12 +74,30 @@ class GoodFETAVR(GoodFET):
         """Read the target's lockbits."""
         self.writecmd(self.AVRAPP,0x82,0,None);
         return ord(self.data[0]);
         """Read the target's lockbits."""
         self.writecmd(self.AVRAPP,0x82,0,None);
         return ord(self.data[0]);
+    def setlockbits(self,bits=0x00):
+        """Read the target's lockbits."""
+        self.writecmd(self.AVRAPP,0x92,1,[bits]);
+        return self.lockbits();
+    
     def eeprompeek(self, adr):
         """Read a byte of the target's EEPROM."""
         self.writecmd(self.AVRAPP,0x81 ,2,
                       [ (adr&0xFF), (adr>>8)]
                       );#little-endian address
         return ord(self.data[0]);
     def eeprompeek(self, adr):
         """Read a byte of the target's EEPROM."""
         self.writecmd(self.AVRAPP,0x81 ,2,
                       [ (adr&0xFF), (adr>>8)]
                       );#little-endian address
         return ord(self.data[0]);
+    def flashpeek(self, adr):
+        """Read a byte of the target's EEPROM."""
+        self.writecmd(self.AVRAPP,0x02 ,2,
+                      [ (adr&0xFF), (adr>>8)]
+                      );#little-endian address
+        return ord(self.data[0]);
+    def flashpeekblock(self, adr):
+        """Read a byte of the target's EEPROM."""
+        self.writecmd(self.AVRAPP,0x02 ,4,
+                      [ (adr&0xFF), (adr>>8) &0xFF, 0x80, 0x00]
+                      );
+        return self.data;
+    
     def eeprompoke(self, adr, val):
         """Write a byte of the target's EEPROM."""
         self.writecmd(self.AVRAPP,0x91 ,3,
     def eeprompoke(self, adr, val):
         """Write a byte of the target's EEPROM."""
         self.writecmd(self.AVRAPP,0x91 ,3,
@@ -91,4 +117,4 @@ class GoodFETAVR(GoodFET):
         if device==None:
             device=("0x%04x" % deviceid);
         
         if device==None:
             device=("0x%04x" % deviceid);
         
-        return device;
+        return "%s %s" % (vendor,device);