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sinclairrf |
#!/usr/bin/python2.7
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################################################################################
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#
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# Copyright 2012, Sinclair R.F., Inc.
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#
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# Assembler for SSBCC 9x8 processor
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#
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################################################################################
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# global modules
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import argparse
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import re
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import sys
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# User defined modules
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import asmDef
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################################################################################
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#
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# Surround the program with a try ... except clause
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#
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################################################################################
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try:
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################################################################################
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#
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# The main loop:
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#
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# - Process the command line arguments.
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#
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################################################################################
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#
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# Construct the command-line argument list parser
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#
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def validateFile(filename):
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try:
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return file(filename,'r');
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except:
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raise asmDef.AsmException('Error opening "%s"' % filename);
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argListParser = argparse.ArgumentParser(description='SSBCC 9x8 assembler');
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argListParser.add_argument('-C', metavar='CONSTANT=value', action='append', help='Constant definition');
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argListParser.add_argument('-D', metavar='define', type=str, action='append', help='Define symbol (must start with "D_")');
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argListParser.add_argument('-G', metavar='parametername', action='append', help='parameter names');
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argListParser.add_argument('-I', metavar='PORT=index', action='append', help='Input port names');
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argListParser.add_argument('-L', metavar='librarypath', action='append', help='Library search path');
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argListParser.add_argument('-M', metavar='macropath', action='append', help='Macro search path');
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argListParser.add_argument('-O', metavar='PORT=index', action='append', help='Output port names');
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argListParser.add_argument('-R', metavar='PORT=index', action='append', help='Strobe-only output port names');
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argListParser.add_argument('-S', metavar='MEMORY=length', action='append', help='Memory length');
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argListParser.add_argument('-i', action='store_true', help='enable/require interrupt');
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argListParser.add_argument('-o', metavar='outfile', type=argparse.FileType('w'), required =True, help='output metafile');
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argListParser.add_argument('-s', metavar='STACK_NAME=length', action='append', help='Stack length');
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argListParser.add_argument('filename', metavar='filename', nargs='+', type=validateFile, help='required list of files');
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argList = argListParser.parse_args();
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# Construct the keyword parser
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from asmDef_9x8 import asmDef_9x8
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ad = asmDef_9x8();
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# Record the constants in the program symbol table.
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if argList.C:
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for constant in argList.C:
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a=re.findall(r'^(C_\w+)=(-?[1-9]\d*|\w+)$',constant);
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if not a:
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raise asmDef.AsmException('Malformed -C argument: "%s"' % constant);
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a = list(a[0]);
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try:
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a[1] = eval(a[1]);
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except:
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raise asmDef.AsmException('Cannot evaluate "%s"' % a[1]);
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if ad.IsSymbol(a[0]):
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raise asmDef.AsmException('Command line constant "%s" already defined' % a[0]);
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ad.AddSymbol(a[0], 'constant', body=[a[1]]);
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# Record the defines.
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if argList.D:
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for name in argList.D:
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if not re.match('D_',name):
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raise SSBCCException('Bad define name "%s" should start with "D_"' % name);
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ad.AddSymbol(name, 'define');
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# Record the input names and values in the appropriate record type
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if argList.G:
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for parameter in argList.G:
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a = re.findall(r'^([LG]_\w+)$',parameter);
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if not a:
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raise asmDef.AsmException('Malformed -G argument: "%s"' % parameter);
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if ad.IsSymbol(a[0]):
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raise asmDef.AsmException('Program Bug -- repeated symbol "%s"' % a[0]);
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ad.RegisterParameterName(a[0]);
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if argList.I:
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for inport in argList.I:
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a=re.findall(r'^(I_\w+)=(0|[1-9]\d*)$',inport);
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if not a:
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raise asmDef.AsmException('Malformed -I argument: "%s"' % inport);
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a = a[0];
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if ad.IsSymbol(a[0]):
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raise Exception('Program Bug -- repeated symbol "%s"' % a[0]);
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ix = int(a[1]);
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if not (0 <= ix < 256):
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raise asmDef.AsmException('Out-of-range inport index: "%s"' % inport);
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ad.RegisterInport(a[0],ix);
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if argList.O:
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for outport in argList.O:
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a=re.findall(r'^(O_\w+)=(0|[1-9]\d*)$',outport);
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if not a:
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raise asmDef.AsmException('Malformed -O argument: "%s"' % outport);
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a = a[0];
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if ad.IsSymbol(a[0]):
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raise asmDef.AsmException('Program Bug -- repeated symbol "%s"' % a[0]);
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ix = int(a[1]);
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if not (0 <= ix < 256):
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raise asmDef.AsmException('Out-of-range outport index: "%s"' % outport);
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ad.RegisterOutport(a[0],ix);
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if argList.R:
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for outstrobe in argList.R:
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a=re.findall(r'^(O_\w+)=(0|[1-9]\d*)$',outstrobe);
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if not a:
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raise asmDef.AsmException('Malformed -R argument: "%s"' % outstrobe);
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a = a[0];
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if ad.IsSymbol(a[0]):
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raise asmDef.AsmException('Program Bug -- repeated symbol "%s"' % a[0]);
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ix = int(a[1]);
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if not (0 <= ix < 256):
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raise asmDef.AsmException('Out-of-range strobe-only outport index: "%s"' % outstrobe);
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ad.RegisterOutstrobe(a[0],ix);
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if argList.S:
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for memory in argList.S:
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a=re.findall(r'^(\w+)=(0|[1-9]\d*)$',memory);
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if not a:
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raise asmDef.AsmException('Malformed -S argument: "%s"' % memory);
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a=a[0];
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length = int(a[1]);
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if not (0 < length <= 256):
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raise asmDef.AsmException('Out-of-range memory length: "%s"' % outport);
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ad.RegisterMemoryLength(a[0],length);
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if argList.s:
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for stack in argList.s:
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a=re.findall(r'^(\w+)=(0|[1-9]\d*)$',stack);
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if not a:
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raise asmDef.AsmException('Malformed -s argument: "%s"' % stack);
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a = a[0];
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ad.RegisterStackLength(a[0],int(a[1]));
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# Construct the iterator that loops through the code bodies.
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fbi = asmDef.FileBodyIterator(argList.filename,ad);
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# Add paths for the ".include" directive.
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if argList.L:
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for path in argList.L:
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fbi.AddSearchPath(path);
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# Add paths for the ".macro" directive.
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if argList.M:
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for path in argList.M:
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ad.AddMacroSearchPath(path);
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################################################################################
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#
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# Stage 1: Parse the files.
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#
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# Read the entire file, doing the following while reading the file:
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# - Store the raw content of each line or group of lines for output to the
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# assembled memory initialization.
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# Note: A group of lines consists the comment lines preceding a directive and
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# the body of the directive.
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# - Convert group of lines into an array of the raw tokens.
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# - Check the integrity of the bodies defined by the list of raw tokens.
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# - For each array of raw tokens, incorporate already-defined symbols and update
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# the assembler dictionaries.
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# Note: At this point the space required for the function or main program
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# is fully computed.
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#
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################################################################################
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#
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# Loop through the directive bodies in the input files (including ".include"d
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# files).
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#
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ifstackStack = list();
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ifstack = None;
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for bl in fbi:
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filename = bl[0];
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startLine = bl[1];
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body = bl[2:];
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flc_loc = filename + ' at line ' + str(startLine+len(body)-1);
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# Start-of-file processing.
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if startLine == 0:
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if ifstack != None:
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ifstackStack.append(ifstack);
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ifstack = list();
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# End-of-file processing.
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elif startLine == -1:
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if len(ifstack) != 0:
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raise asmDef.AsmException('%d unmatched .IFDEF/.IFNDEF(s) at the end of %s' % (len(ifstack),filename,));
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if ifstackStack:
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ifstack = ifstackStack.pop();
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else:
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ifstack = None;
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# Handle conditional compilation directives.
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elif re.match(r'\s*\.ELSE\b',body[-1]):
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if not re.match(r'\s*\.ELSE\s*(;.*)?$',body[-1]):
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raise asmDef.AsmException('Malformed ".ELSE" in %s' % flc_loc);
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if not ifstack:
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raise asmDef.AsmException('Unmatched ".ELSE" in %s' % flc_loc);
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ifstack[-1] ^= True;
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elif re.match(r'\s*\.ENDIF\b',body[-1]):
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if not re.match(r'\s*\.ENDIF\s*(;.*)?$',body[-1]):
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raise asmDef.AsmException('Malformed ".ENDIF" in %s' % flc_loc);
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if not ifstack:
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raise asmDef.AsmException('Unmatched ".ENDIF" in %s' % flc_loc);
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ifstack.pop();
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elif re.match(r'\s*\.IFN?DEF\b',body[-1]):
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a = re.findall(r'\s*(\.IFN?DEF)\s*(\S+)\b\s*(;.*)?$',body[-1]);
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if not a:
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raise asmDef.AsmException('Malformed .IFDEF or .IFNDEF in %s' % flc_loc);
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a = a[0];
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ifstack.append(ad.IsSymbol(a[1]));
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if a[0] == '.IFNDEF':
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ifstack[-1] ^= True;
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# Ignore bodies rejected by conditional compilation.
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elif ifstack and not ifstack[-1]:
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pass;
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# ".include" directives don't have an associated body
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elif re.match(r'\s*\.include\s',body[-1]):
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a = re.findall(r'\s*\.include\s+(\S+)(\s*|\s*;.*)$',body[-1]);
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if not a:
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raise asmDef.AsmException('Malformed .include directive in %s' % flc_loc);
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a = a[0];
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fbi.Include(a[0]);
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# Parse the body of all other directives and ensure that only one ".main"
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# and one ".interrupt" are defined.
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else:
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rawTokens = asmDef.RawTokens(ad,filename,startLine,body);
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if not rawTokens:
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continue;
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ad.CheckRawTokens(rawTokens);
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ad.FillRawTokens(rawTokens);
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#
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# Ensure a ".main" body was declared.
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#
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if not ad.Main():
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raise asmDef.AsmException('Required ".main" body not provided');
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#
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# Enforce consistency between the command-line "-i" flag and whether or not an
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# ".interrupt" body was declared.
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#
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if argList.i and not ad.Interrupt():
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raise asmDef.AsmException('Required ".interrupt" body not provided');
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if not argList.i and ad.Interrupt():
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raise asmDef.AsmException('".interrupt" body not allowed near %s' % ad.Interrupt()[0]['loc']);
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################################################################################
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#
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# Stage 2: Identify the required functions, compute their addresses, and set
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# the addresses for all "jump" and "call" macros.
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#
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################################################################################
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ad.EvaluateMemoryTree();
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ad.EvaluateFunctionTree();
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################################################################################
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#
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# Stage 3: Emit the program
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#
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# Do the following:
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# - If interrupts are enabled, then set the first 4 instructions to be a "dis"
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# and a ".jump" instruction to the ".interrupt" function.
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# - Write the instructions for the ".main" body.
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# - Loop through the ".function" list in the order in which they were defined
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# and write their instructions.
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# - Print the memory and instruction usage statistics.
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#
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################################################################################
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ad.EmitMemories(argList.o);
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ad.EmitProgram(argList.o);
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argList.o.close();
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################################################################################
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#
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# Terminating except clause -- print fatal error message and indicate failure to
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# the invoking program.
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#
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################################################################################
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except asmDef.AsmException, msg:
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print >> sys.stderr, 'FATAL ERROR: ' + str(msg);
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exit(1);
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