opr = e[ 'operands' ]
for i in range(len(opr)):
if not (opr[i] in self.OperandDict.keys()):
- print "error: invalid operand declaration: %s\n" % opr[i]
+ print("error: invalid operand declaration: %s\n" % opr[i])
opr_c[i] = "O_" + opr[i]
opr = "%s %s %s" % (opr_c[0] + ",", opr_c[1] + ",", opr_c[2])
for p in e['prefixes']:
if not ( p in self.PrefixDict.keys() ):
- print "error: invalid prefix specification: %s \n" % pfx
+ print("error: invalid prefix specification: %s \n" % pfx)
pfx_c.append( self.PrefixDict[p] )
if len(e['prefixes']) == 0:
pfx_c.append( "P_none" )
elif def_node.localName == 'vendor':
ven = ( def_node.firstChild.data );
else:
- print "warning: invalid node - %s" % def_node.localName
+ print("warning: invalid node - %s" % def_node.localName)
continue
return ( pfx, opc, opr, ven )
if not insnNode.localName:
continue
if insnNode.localName != "instruction":
- print "warning: invalid insn node - %s" % insnNode.localName
+ print("warning: invalid insn node - %s" % insnNode.localName)
continue
mnemonic = insnNode.getElementsByTagName( 'mnemonic' )[ 0 ].firstChild.data
def printFn( pfx, mnm, opc, opr, ven ):
- print 'def: ',
+ print('def: ', end='')
if len( pfx ):
- print ' '.join( pfx ),
- print "%s %s %s %s" % \
- ( mnm, ' '.join( opc ), ' '.join( opr ), ven )
+ print(' '.join( pfx ), end='')
+ print("%s %s %s %s" % \
+ ( mnm, ' '.join( opc ), ' '.join( opr ), ven ))
def parse( xml, callback ):