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816 lines
26 KiB
Nim
816 lines
26 KiB
Nim
#
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#
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# The Nimrod Compiler
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# (c) Copyright 2014 Andreas Rumpf
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#
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# See the file "copying.txt", included in this
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# distribution, for details about the copyright.
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#
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# This scanner is handwritten for efficiency. I used an elegant buffering
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# scheme which I have not seen anywhere else:
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# We guarantee that a whole line is in the buffer. Thus only when scanning
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# the \n or \r character we have to check wether we need to read in the next
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# chunk. (\n or \r already need special handling for incrementing the line
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# counter; choosing both \n and \r allows the scanner to properly read Unix,
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# DOS or Macintosh text files, even when it is not the native format.
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import
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hashes, options, msgs, strutils, platform, idents, nimlexbase, llstream,
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wordrecg
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const
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MaxLineLength* = 80 # lines longer than this lead to a warning
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numChars*: TCharSet = {'0'..'9', 'a'..'z', 'A'..'Z'}
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SymChars*: TCharSet = {'a'..'z', 'A'..'Z', '0'..'9', '\x80'..'\xFF'}
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SymStartChars*: TCharSet = {'a'..'z', 'A'..'Z', '\x80'..'\xFF'}
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OpChars*: TCharSet = {'+', '-', '*', '/', '\\', '<', '>', '!', '?', '^', '.',
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'|', '=', '%', '&', '$', '@', '~', ':', '\x80'..'\xFF'}
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# don't forget to update the 'highlite' module if these charsets should change
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type
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TTokType* = enum
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tkInvalid, tkEof, # order is important here!
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tkSymbol, # keywords:
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tkAddr, tkAnd, tkAs, tkAsm, tkAtomic,
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tkBind, tkBlock, tkBreak, tkCase, tkCast,
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tkConst, tkContinue, tkConverter, tkDiscard, tkDistinct, tkDiv, tkDo,
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tkElif, tkElse, tkEnd, tkEnum, tkExcept, tkExport,
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tkFinally, tkFor, tkFrom,
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tkGeneric, tkIf, tkImport, tkIn, tkInclude, tkInterface,
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tkIs, tkIsnot, tkIterator,
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tkLambda, tkLet,
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tkMacro, tkMethod, tkMixin, tkMod, tkNil, tkNot, tkNotin,
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tkObject, tkOf, tkOr, tkOut,
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tkProc, tkPtr, tkRaise, tkRef, tkReturn, tkShared, tkShl, tkShr, tkStatic,
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tkTemplate,
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tkTry, tkTuple, tkType, tkUsing,
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tkVar, tkWhen, tkWhile, tkWith, tkWithout, tkXor,
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tkYield, # end of keywords
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tkIntLit, tkInt8Lit, tkInt16Lit, tkInt32Lit, tkInt64Lit,
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tkUIntLit, tkUInt8Lit, tkUInt16Lit, tkUInt32Lit, tkUInt64Lit,
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tkFloatLit, tkFloat32Lit, tkFloat64Lit, tkFloat128Lit,
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tkStrLit, tkRStrLit, tkTripleStrLit,
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tkGStrLit, tkGTripleStrLit, tkCharLit, tkParLe, tkParRi, tkBracketLe,
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tkBracketRi, tkCurlyLe, tkCurlyRi,
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tkBracketDotLe, tkBracketDotRi, # [. and .]
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tkCurlyDotLe, tkCurlyDotRi, # {. and .}
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tkParDotLe, tkParDotRi, # (. and .)
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tkComma, tkSemiColon,
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tkColon, tkColonColon, tkEquals, tkDot, tkDotDot,
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tkOpr, tkComment, tkAccent,
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tkSpaces, tkInfixOpr, tkPrefixOpr, tkPostfixOpr,
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TTokTypes* = set[TTokType]
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const
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tokKeywordLow* = succ(tkSymbol)
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tokKeywordHigh* = pred(tkIntLit)
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TokTypeToStr*: array[TTokType, string] = ["tkInvalid", "[EOF]",
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"tkSymbol",
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"addr", "and", "as", "asm", "atomic",
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"bind", "block", "break", "case", "cast",
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"const", "continue", "converter", "discard", "distinct", "div", "do",
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"elif", "else", "end", "enum", "except", "export",
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"finally", "for", "from", "generic", "if",
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"import", "in", "include", "interface", "is", "isnot", "iterator",
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"lambda", "let",
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"macro", "method", "mixin", "mod",
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"nil", "not", "notin", "object", "of", "or",
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"out", "proc", "ptr", "raise", "ref", "return",
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"shared", "shl", "shr", "static",
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"template",
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"try", "tuple", "type", "using",
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"var", "when", "while", "with", "without", "xor",
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"yield",
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"tkIntLit", "tkInt8Lit", "tkInt16Lit", "tkInt32Lit", "tkInt64Lit",
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"tkUIntLit", "tkUInt8Lit", "tkUInt16Lit", "tkUInt32Lit", "tkUInt64Lit",
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"tkFloatLit", "tkFloat32Lit", "tkFloat64Lit", "tkFloat128Lit",
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"tkStrLit", "tkRStrLit",
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"tkTripleStrLit", "tkGStrLit", "tkGTripleStrLit", "tkCharLit", "(",
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")", "[", "]", "{", "}", "[.", ".]", "{.", ".}", "(.", ".)",
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",", ";",
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":", "::", "=", ".", "..",
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"tkOpr", "tkComment", "`",
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"tkSpaces", "tkInfixOpr",
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"tkPrefixOpr", "tkPostfixOpr"]
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type
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TNumericalBase* = enum
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base10, # base10 is listed as the first element,
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# so that it is the correct default value
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base2, base8, base16
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TToken* = object # a Nimrod token
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tokType*: TTokType # the type of the token
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indent*: int # the indentation; != -1 if the token has been
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# preceeded with indentation
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ident*: PIdent # the parsed identifier
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iNumber*: BiggestInt # the parsed integer literal
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fNumber*: BiggestFloat # the parsed floating point literal
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base*: TNumericalBase # the numerical base; only valid for int
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# or float literals
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literal*: string # the parsed (string) literal; and
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# documentation comments are here too
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line*, col*: int
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TLexer* = object of TBaseLexer
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fileIdx*: int32
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indentAhead*: int # if > 0 an indendation has already been read
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# this is needed because scanning comments
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# needs so much look-ahead
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var gLinesCompiled*: int # all lines that have been compiled
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proc isKeyword*(kind: TTokType): bool
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proc openLexer*(lex: var TLexer, fileidx: int32, inputstream: PLLStream)
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proc rawGetTok*(L: var TLexer, tok: var TToken)
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# reads in the next token into tok and skips it
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proc getLineInfo*(L: TLexer, tok: TToken): TLineInfo {.inline.} =
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newLineInfo(L.fileIdx, tok.line, tok.col)
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proc closeLexer*(lex: var TLexer)
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proc printTok*(tok: TToken)
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proc tokToStr*(tok: TToken): string
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proc openLexer*(lex: var TLexer, filename: string, inputstream: PLLStream) =
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openLexer(lex, filename.fileInfoIdx, inputstream)
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proc lexMessage*(L: TLexer, msg: TMsgKind, arg = "")
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proc isKeyword(kind: TTokType): bool =
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result = (kind >= tokKeywordLow) and (kind <= tokKeywordHigh)
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proc isNimrodIdentifier*(s: string): bool =
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if s[0] in SymStartChars:
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var i = 1
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while i < s.len:
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if s[i] == '_':
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inc(i)
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if s[i] notin SymChars: return
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if s[i] notin SymChars: return
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inc(i)
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result = true
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proc tokToStr*(tok: TToken): string =
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case tok.tokType
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of tkIntLit..tkInt64Lit: result = $tok.iNumber
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of tkFloatLit..tkFloat64Lit: result = $tok.fNumber
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of tkInvalid, tkStrLit..tkCharLit, tkComment: result = tok.literal
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of tkParLe..tkColon, tkEof, tkAccent:
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result = TokTypeToStr[tok.tokType]
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else:
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if tok.ident != nil:
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result = tok.ident.s
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else:
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internalError("tokToStr")
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result = ""
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proc prettyTok*(tok: TToken): string =
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if isKeyword(tok.tokType): result = "keyword " & tok.ident.s
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else: result = tokToStr(tok)
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proc printTok*(tok: TToken) =
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write(stdout, TokTypeToStr[tok.tokType])
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write(stdout, " ")
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writeln(stdout, tokToStr(tok))
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var dummyIdent: PIdent
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proc initToken*(L: var TToken) =
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L.tokType = tkInvalid
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L.iNumber = 0
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L.indent = 0
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L.literal = ""
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L.fNumber = 0.0
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L.base = base10
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L.ident = dummyIdent
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proc fillToken(L: var TToken) =
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L.tokType = tkInvalid
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L.iNumber = 0
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L.indent = 0
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setLen(L.literal, 0)
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L.fNumber = 0.0
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L.base = base10
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L.ident = dummyIdent
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proc openLexer(lex: var TLexer, fileIdx: int32, inputstream: PLLStream) =
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openBaseLexer(lex, inputstream)
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lex.fileIdx = fileidx
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lex.indentAhead = - 1
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inc(lex.lineNumber, inputstream.lineOffset)
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proc closeLexer(lex: var TLexer) =
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inc(gLinesCompiled, lex.lineNumber)
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closeBaseLexer(lex)
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proc getColumn(L: TLexer): int =
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result = getColNumber(L, L.bufpos)
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proc getLineInfo(L: TLexer): TLineInfo =
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result = newLineInfo(L.fileIdx, L.lineNumber, getColNumber(L, L.bufpos))
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proc lexMessage(L: TLexer, msg: TMsgKind, arg = "") =
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msgs.message(getLineInfo(L), msg, arg)
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proc lexMessagePos(L: var TLexer, msg: TMsgKind, pos: int, arg = "") =
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var info = newLineInfo(L.fileIdx, L.lineNumber, pos - L.lineStart)
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msgs.message(info, msg, arg)
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proc matchUnderscoreChars(L: var TLexer, tok: var TToken, chars: TCharSet) =
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var pos = L.bufpos # use registers for pos, buf
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var buf = L.buf
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while true:
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if buf[pos] in chars:
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add(tok.literal, buf[pos])
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inc(pos)
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else:
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break
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if buf[pos] == '_':
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if buf[pos+1] notin chars:
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lexMessage(L, errInvalidToken, "_")
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break
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add(tok.literal, '_')
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inc(pos)
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L.bufpos = pos
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proc matchTwoChars(L: TLexer, first: char, second: TCharSet): bool =
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result = (L.buf[L.bufpos] == first) and (L.buf[L.bufpos + 1] in second)
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proc isFloatLiteral(s: string): bool =
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for i in countup(0, len(s) - 1):
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if s[i] in {'.', 'e', 'E'}:
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return true
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result = false
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proc getNumber(L: var TLexer): TToken =
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var
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pos, endpos: int
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xi: BiggestInt
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# get the base:
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result.tokType = tkIntLit # int literal until we know better
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result.literal = ""
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result.base = base10 # BUGFIX
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pos = L.bufpos # make sure the literal is correct for error messages:
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var eallowed = false
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if L.buf[pos] == '0' and L.buf[pos+1] in {'X', 'x'}:
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matchUnderscoreChars(L, result, {'A'..'F', 'a'..'f', '0'..'9', 'X', 'x'})
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else:
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matchUnderscoreChars(L, result, {'0'..'9', 'b', 'B', 'o', 'c', 'C'})
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eallowed = true
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if (L.buf[L.bufpos] == '.') and (L.buf[L.bufpos + 1] in {'0'..'9'}):
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add(result.literal, '.')
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inc(L.bufpos)
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matchUnderscoreChars(L, result, {'0'..'9'})
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eallowed = true
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if eallowed and L.buf[L.bufpos] in {'e', 'E'}:
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add(result.literal, 'e')
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inc(L.bufpos)
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if L.buf[L.bufpos] in {'+', '-'}:
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add(result.literal, L.buf[L.bufpos])
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inc(L.bufpos)
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matchUnderscoreChars(L, result, {'0'..'9'})
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endpos = L.bufpos
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if L.buf[endpos] in {'\'', 'f', 'F', 'i', 'I', 'u', 'U'}:
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if L.buf[endpos] == '\'': inc(endpos)
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L.bufpos = pos # restore position
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case L.buf[endpos]
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of 'f', 'F':
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inc(endpos)
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if (L.buf[endpos] == '3') and (L.buf[endpos + 1] == '2'):
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result.tokType = tkFloat32Lit
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inc(endpos, 2)
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elif (L.buf[endpos] == '6') and (L.buf[endpos + 1] == '4'):
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result.tokType = tkFloat64Lit
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inc(endpos, 2)
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elif (L.buf[endpos] == '1') and
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(L.buf[endpos + 1] == '2') and
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(L.buf[endpos + 2] == '8'):
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result.tokType = tkFloat128Lit
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inc(endpos, 3)
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else:
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lexMessage(L, errInvalidNumber, result.literal & "'f" & L.buf[endpos])
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of 'i', 'I':
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inc(endpos)
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if (L.buf[endpos] == '6') and (L.buf[endpos + 1] == '4'):
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result.tokType = tkInt64Lit
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inc(endpos, 2)
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elif (L.buf[endpos] == '3') and (L.buf[endpos + 1] == '2'):
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result.tokType = tkInt32Lit
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inc(endpos, 2)
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elif (L.buf[endpos] == '1') and (L.buf[endpos + 1] == '6'):
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result.tokType = tkInt16Lit
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inc(endpos, 2)
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elif (L.buf[endpos] == '8'):
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result.tokType = tkInt8Lit
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inc(endpos)
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else:
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lexMessage(L, errInvalidNumber, result.literal & "'i" & L.buf[endpos])
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of 'u', 'U':
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inc(endpos)
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if (L.buf[endpos] == '6') and (L.buf[endpos + 1] == '4'):
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result.tokType = tkUInt64Lit
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inc(endpos, 2)
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elif (L.buf[endpos] == '3') and (L.buf[endpos + 1] == '2'):
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result.tokType = tkUInt32Lit
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inc(endpos, 2)
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elif (L.buf[endpos] == '1') and (L.buf[endpos + 1] == '6'):
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result.tokType = tkUInt16Lit
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inc(endpos, 2)
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elif (L.buf[endpos] == '8'):
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result.tokType = tkUInt8Lit
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inc(endpos)
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else:
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result.tokType = tkUIntLit
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else: lexMessage(L, errInvalidNumber, result.literal & "'" & L.buf[endpos])
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else:
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L.bufpos = pos # restore position
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try:
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if (L.buf[pos] == '0') and
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(L.buf[pos + 1] in {'x', 'X', 'b', 'B', 'o', 'O', 'c', 'C'}):
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inc(pos, 2)
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xi = 0 # it may be a base prefix
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case L.buf[pos - 1] # now look at the optional type suffix:
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of 'b', 'B':
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result.base = base2
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while true:
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case L.buf[pos]
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of 'A'..'Z', 'a'..'z', '2'..'9', '.':
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lexMessage(L, errInvalidNumber, result.literal)
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inc(pos)
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of '_':
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if L.buf[pos+1] notin {'0'..'1'}:
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lexMessage(L, errInvalidToken, "_")
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break
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inc(pos)
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of '0', '1':
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xi = `shl`(xi, 1) or (ord(L.buf[pos]) - ord('0'))
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inc(pos)
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else: break
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of 'o', 'c', 'C':
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result.base = base8
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while true:
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case L.buf[pos]
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of 'A'..'Z', 'a'..'z', '8'..'9', '.':
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lexMessage(L, errInvalidNumber, result.literal)
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inc(pos)
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of '_':
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if L.buf[pos+1] notin {'0'..'7'}:
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lexMessage(L, errInvalidToken, "_")
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break
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inc(pos)
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of '0'..'7':
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xi = `shl`(xi, 3) or (ord(L.buf[pos]) - ord('0'))
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inc(pos)
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else: break
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of 'O':
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lexMessage(L, errInvalidNumber, result.literal)
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of 'x', 'X':
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result.base = base16
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while true:
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case L.buf[pos]
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of 'G'..'Z', 'g'..'z':
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lexMessage(L, errInvalidNumber, result.literal)
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inc(pos)
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of '_':
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if L.buf[pos+1] notin {'0'..'9', 'a'..'f', 'A'..'F'}:
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lexMessage(L, errInvalidToken, "_")
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break
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inc(pos)
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of '0'..'9':
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xi = `shl`(xi, 4) or (ord(L.buf[pos]) - ord('0'))
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inc(pos)
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of 'a'..'f':
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xi = `shl`(xi, 4) or (ord(L.buf[pos]) - ord('a') + 10)
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inc(pos)
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of 'A'..'F':
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xi = `shl`(xi, 4) or (ord(L.buf[pos]) - ord('A') + 10)
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inc(pos)
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else: break
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else: internalError(getLineInfo(L), "getNumber")
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case result.tokType
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of tkIntLit, tkInt64Lit: result.iNumber = xi
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of tkInt8Lit: result.iNumber = BiggestInt(int8(toU8(int(xi))))
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of tkInt16Lit: result.iNumber = BiggestInt(toU16(int(xi)))
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of tkInt32Lit: result.iNumber = BiggestInt(toU32(xi))
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of tkUIntLit, tkUInt64Lit: result.iNumber = xi
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of tkUInt8Lit: result.iNumber = BiggestInt(int8(toU8(int(xi))))
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of tkUInt16Lit: result.iNumber = BiggestInt(toU16(int(xi)))
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of tkUInt32Lit: result.iNumber = BiggestInt(toU32(xi))
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of tkFloat32Lit:
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result.fNumber = (cast[PFloat32](addr(xi)))[]
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# note: this code is endian neutral!
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# XXX: Test this on big endian machine!
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of tkFloat64Lit: result.fNumber = (cast[PFloat64](addr(xi)))[]
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else: internalError(getLineInfo(L), "getNumber")
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elif isFloatLiteral(result.literal) or (result.tokType == tkFloat32Lit) or
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(result.tokType == tkFloat64Lit):
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result.fNumber = parseFloat(result.literal)
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if result.tokType == tkIntLit: result.tokType = tkFloatLit
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else:
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result.iNumber = parseBiggestInt(result.literal)
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if (result.iNumber < low(int32)) or (result.iNumber > high(int32)):
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if result.tokType == tkIntLit:
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result.tokType = tkInt64Lit
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|
elif result.tokType in {tkInt8Lit, tkInt16Lit}:
|
|
lexMessage(L, errInvalidNumber, result.literal)
|
|
except EInvalidValue:
|
|
lexMessage(L, errInvalidNumber, result.literal)
|
|
except EOverflow, EOutOfRange:
|
|
lexMessage(L, errNumberOutOfRange, result.literal)
|
|
L.bufpos = endpos
|
|
|
|
proc handleHexChar(L: var TLexer, xi: var int) =
|
|
case L.buf[L.bufpos]
|
|
of '0'..'9':
|
|
xi = (xi shl 4) or (ord(L.buf[L.bufpos]) - ord('0'))
|
|
inc(L.bufpos)
|
|
of 'a'..'f':
|
|
xi = (xi shl 4) or (ord(L.buf[L.bufpos]) - ord('a') + 10)
|
|
inc(L.bufpos)
|
|
of 'A'..'F':
|
|
xi = (xi shl 4) or (ord(L.buf[L.bufpos]) - ord('A') + 10)
|
|
inc(L.bufpos)
|
|
else: discard
|
|
|
|
proc handleDecChars(L: var TLexer, xi: var int) =
|
|
while L.buf[L.bufpos] in {'0'..'9'}:
|
|
xi = (xi * 10) + (ord(L.buf[L.bufpos]) - ord('0'))
|
|
inc(L.bufpos)
|
|
|
|
proc getEscapedChar(L: var TLexer, tok: var TToken) =
|
|
inc(L.bufpos) # skip '\'
|
|
case L.buf[L.bufpos]
|
|
of 'n', 'N':
|
|
if tok.tokType == tkCharLit: lexMessage(L, errNnotAllowedInCharacter)
|
|
add(tok.literal, tnl)
|
|
inc(L.bufpos)
|
|
of 'r', 'R', 'c', 'C':
|
|
add(tok.literal, CR)
|
|
inc(L.bufpos)
|
|
of 'l', 'L':
|
|
add(tok.literal, LF)
|
|
inc(L.bufpos)
|
|
of 'f', 'F':
|
|
add(tok.literal, FF)
|
|
inc(L.bufpos)
|
|
of 'e', 'E':
|
|
add(tok.literal, ESC)
|
|
inc(L.bufpos)
|
|
of 'a', 'A':
|
|
add(tok.literal, BEL)
|
|
inc(L.bufpos)
|
|
of 'b', 'B':
|
|
add(tok.literal, BACKSPACE)
|
|
inc(L.bufpos)
|
|
of 'v', 'V':
|
|
add(tok.literal, VT)
|
|
inc(L.bufpos)
|
|
of 't', 'T':
|
|
add(tok.literal, Tabulator)
|
|
inc(L.bufpos)
|
|
of '\'', '\"':
|
|
add(tok.literal, L.buf[L.bufpos])
|
|
inc(L.bufpos)
|
|
of '\\':
|
|
add(tok.literal, '\\')
|
|
inc(L.bufpos)
|
|
of 'x', 'X':
|
|
inc(L.bufpos)
|
|
var xi = 0
|
|
handleHexChar(L, xi)
|
|
handleHexChar(L, xi)
|
|
add(tok.literal, chr(xi))
|
|
of '0'..'9':
|
|
if matchTwoChars(L, '0', {'0'..'9'}):
|
|
lexMessage(L, warnOctalEscape)
|
|
var xi = 0
|
|
handleDecChars(L, xi)
|
|
if (xi <= 255): add(tok.literal, chr(xi))
|
|
else: lexMessage(L, errInvalidCharacterConstant)
|
|
else: lexMessage(L, errInvalidCharacterConstant)
|
|
|
|
proc newString(s: cstring, len: int): string =
|
|
## XXX, how come there is no support for this?
|
|
result = newString(len)
|
|
for i in 0 .. <len:
|
|
result[i] = s[i]
|
|
|
|
proc handleCRLF(L: var TLexer, pos: int): int =
|
|
template registerLine =
|
|
let col = L.getColNumber(pos)
|
|
|
|
if col > MaxLineLength:
|
|
lexMessagePos(L, hintLineTooLong, pos)
|
|
|
|
if optEmbedOrigSrc in gGlobalOptions:
|
|
let lineStart = cast[TAddress](L.buf) + L.lineStart
|
|
let line = newString(cast[cstring](lineStart), col)
|
|
addSourceLine(L.fileIdx, line)
|
|
|
|
case L.buf[pos]
|
|
of CR:
|
|
registerLine()
|
|
result = nimlexbase.handleCR(L, pos)
|
|
of LF:
|
|
registerLine()
|
|
result = nimlexbase.handleLF(L, pos)
|
|
else: result = pos
|
|
|
|
proc getString(L: var TLexer, tok: var TToken, rawMode: bool) =
|
|
var pos = L.bufpos + 1 # skip "
|
|
var buf = L.buf # put `buf` in a register
|
|
var line = L.lineNumber # save linenumber for better error message
|
|
if buf[pos] == '\"' and buf[pos+1] == '\"':
|
|
tok.tokType = tkTripleStrLit # long string literal:
|
|
inc(pos, 2) # skip ""
|
|
# skip leading newline:
|
|
pos = handleCRLF(L, pos)
|
|
buf = L.buf
|
|
while true:
|
|
case buf[pos]
|
|
of '\"':
|
|
if buf[pos+1] == '\"' and buf[pos+2] == '\"' and
|
|
buf[pos+3] != '\"':
|
|
L.bufpos = pos + 3 # skip the three """
|
|
break
|
|
add(tok.literal, '\"')
|
|
inc(pos)
|
|
of CR, LF:
|
|
pos = handleCRLF(L, pos)
|
|
buf = L.buf
|
|
add(tok.literal, tnl)
|
|
of nimlexbase.EndOfFile:
|
|
var line2 = L.lineNumber
|
|
L.lineNumber = line
|
|
lexMessagePos(L, errClosingTripleQuoteExpected, L.lineStart)
|
|
L.lineNumber = line2
|
|
break
|
|
else:
|
|
add(tok.literal, buf[pos])
|
|
inc(pos)
|
|
else:
|
|
# ordinary string literal
|
|
if rawMode: tok.tokType = tkRStrLit
|
|
else: tok.tokType = tkStrLit
|
|
while true:
|
|
var c = buf[pos]
|
|
if c == '\"':
|
|
if rawMode and buf[pos+1] == '\"':
|
|
inc(pos, 2)
|
|
add(tok.literal, '"')
|
|
else:
|
|
inc(pos) # skip '"'
|
|
break
|
|
elif c in {CR, LF, nimlexbase.EndOfFile}:
|
|
lexMessage(L, errClosingQuoteExpected)
|
|
break
|
|
elif (c == '\\') and not rawMode:
|
|
L.bufpos = pos
|
|
getEscapedChar(L, tok)
|
|
pos = L.bufpos
|
|
else:
|
|
add(tok.literal, c)
|
|
inc(pos)
|
|
L.bufpos = pos
|
|
|
|
proc getCharacter(L: var TLexer, tok: var TToken) =
|
|
inc(L.bufpos) # skip '
|
|
var c = L.buf[L.bufpos]
|
|
case c
|
|
of '\0'..pred(' '), '\'': lexMessage(L, errInvalidCharacterConstant)
|
|
of '\\': getEscapedChar(L, tok)
|
|
else:
|
|
tok.literal = $c
|
|
inc(L.bufpos)
|
|
if L.buf[L.bufpos] != '\'': lexMessage(L, errMissingFinalQuote)
|
|
inc(L.bufpos) # skip '
|
|
|
|
proc getSymbol(L: var TLexer, tok: var TToken) =
|
|
var h: THash = 0
|
|
var pos = L.bufpos
|
|
var buf = L.buf
|
|
while true:
|
|
var c = buf[pos]
|
|
case c
|
|
of 'a'..'z', '0'..'9', '\x80'..'\xFF':
|
|
h = h !& ord(c)
|
|
of 'A'..'Z':
|
|
c = chr(ord(c) + (ord('a') - ord('A'))) # toLower()
|
|
h = h !& ord(c)
|
|
of '_':
|
|
if buf[pos+1] notin SymChars:
|
|
lexMessage(L, errInvalidToken, "_")
|
|
break
|
|
else: break
|
|
inc(pos)
|
|
h = !$h
|
|
tok.ident = getIdent(addr(L.buf[L.bufpos]), pos - L.bufpos, h)
|
|
L.bufpos = pos
|
|
if (tok.ident.id < ord(tokKeywordLow) - ord(tkSymbol)) or
|
|
(tok.ident.id > ord(tokKeywordHigh) - ord(tkSymbol)):
|
|
tok.tokType = tkSymbol
|
|
else:
|
|
tok.tokType = TTokType(tok.ident.id + ord(tkSymbol))
|
|
|
|
proc endOperator(L: var TLexer, tok: var TToken, pos: int,
|
|
hash: THash) {.inline.} =
|
|
var h = !$hash
|
|
tok.ident = getIdent(addr(L.buf[L.bufpos]), pos - L.bufpos, h)
|
|
if (tok.ident.id < oprLow) or (tok.ident.id > oprHigh): tok.tokType = tkOpr
|
|
else: tok.tokType = TTokType(tok.ident.id - oprLow + ord(tkColon))
|
|
L.bufpos = pos
|
|
|
|
proc getOperator(L: var TLexer, tok: var TToken) =
|
|
var pos = L.bufpos
|
|
var buf = L.buf
|
|
var h: THash = 0
|
|
while true:
|
|
var c = buf[pos]
|
|
if c notin OpChars: break
|
|
h = h !& ord(c)
|
|
inc(pos)
|
|
endOperator(L, tok, pos, h)
|
|
|
|
proc scanComment(L: var TLexer, tok: var TToken) =
|
|
var pos = L.bufpos
|
|
var buf = L.buf
|
|
# a comment ends if the next line does not start with the # on the same
|
|
# column after only whitespace
|
|
tok.tokType = tkComment
|
|
# iNumber contains the number of '\n' in the token
|
|
tok.iNumber = 0
|
|
var col = getColNumber(L, pos)
|
|
while true:
|
|
var lastBackslash = -1
|
|
while buf[pos] notin {CR, LF, nimlexbase.EndOfFile}:
|
|
if buf[pos] == '\\': lastBackslash = pos+1
|
|
add(tok.literal, buf[pos])
|
|
inc(pos)
|
|
if lastBackslash > 0:
|
|
# a backslash is a continuation character if only followed by spaces
|
|
# plus a newline:
|
|
while buf[lastBackslash] == ' ': inc(lastBackslash)
|
|
if buf[lastBackslash] notin {CR, LF, nimlexbase.EndOfFile}:
|
|
# false positive:
|
|
lastBackslash = -1
|
|
|
|
pos = handleCRLF(L, pos)
|
|
buf = L.buf
|
|
var indent = 0
|
|
while buf[pos] == ' ':
|
|
inc(pos)
|
|
inc(indent)
|
|
if buf[pos] == '#' and (col == indent or lastBackslash > 0):
|
|
tok.literal.add "\n"
|
|
col = indent
|
|
inc tok.iNumber
|
|
else:
|
|
if buf[pos] > ' ':
|
|
L.indentAhead = indent
|
|
break
|
|
L.bufpos = pos
|
|
|
|
proc skip(L: var TLexer, tok: var TToken) =
|
|
var pos = L.bufpos
|
|
var buf = L.buf
|
|
while true:
|
|
case buf[pos]
|
|
of ' ':
|
|
inc(pos)
|
|
of Tabulator:
|
|
lexMessagePos(L, errTabulatorsAreNotAllowed, pos)
|
|
inc(pos)
|
|
of CR, LF:
|
|
pos = handleCRLF(L, pos)
|
|
buf = L.buf
|
|
var indent = 0
|
|
while buf[pos] == ' ':
|
|
inc(pos)
|
|
inc(indent)
|
|
if buf[pos] > ' ':
|
|
tok.indent = indent
|
|
break
|
|
else:
|
|
break # EndOfFile also leaves the loop
|
|
L.bufpos = pos
|
|
|
|
proc rawGetTok(L: var TLexer, tok: var TToken) =
|
|
fillToken(tok)
|
|
if L.indentAhead >= 0:
|
|
tok.indent = L.indentAhead
|
|
L.indentAhead = -1
|
|
else:
|
|
tok.indent = -1
|
|
skip(L, tok)
|
|
var c = L.buf[L.bufpos]
|
|
tok.line = L.lineNumber
|
|
tok.col = getColNumber(L, L.bufpos)
|
|
if c in SymStartChars - {'r', 'R', 'l'}:
|
|
getSymbol(L, tok)
|
|
else:
|
|
case c
|
|
of '#':
|
|
scanComment(L, tok)
|
|
of '*':
|
|
# '*:' is unfortunately a special case, because it is two tokens in
|
|
# 'var v*: int'.
|
|
if L.buf[L.bufpos+1] == ':' and L.buf[L.bufpos+2] notin OpChars:
|
|
var h = 0 !& ord('*')
|
|
endOperator(L, tok, L.bufpos+1, h)
|
|
else:
|
|
getOperator(L, tok)
|
|
of ',':
|
|
tok.tokType = tkComma
|
|
inc(L.bufpos)
|
|
of 'l':
|
|
# if we parsed exactly one character and its a small L (l), this
|
|
# is treated as a warning because it may be confused with the number 1
|
|
if L.buf[L.bufpos+1] notin (SymChars + {'_'}):
|
|
lexMessage(L, warnSmallLshouldNotBeUsed)
|
|
getSymbol(L, tok)
|
|
of 'r', 'R':
|
|
if L.buf[L.bufpos + 1] == '\"':
|
|
inc(L.bufpos)
|
|
getString(L, tok, true)
|
|
else:
|
|
getSymbol(L, tok)
|
|
of '(':
|
|
inc(L.bufpos)
|
|
if L.buf[L.bufpos] == '.' and L.buf[L.bufpos+1] != '.':
|
|
tok.tokType = tkParDotLe
|
|
inc(L.bufpos)
|
|
else:
|
|
tok.tokType = tkParLe
|
|
of ')':
|
|
tok.tokType = tkParRi
|
|
inc(L.bufpos)
|
|
of '[':
|
|
inc(L.bufpos)
|
|
if L.buf[L.bufpos] == '.' and L.buf[L.bufpos+1] != '.':
|
|
tok.tokType = tkBracketDotLe
|
|
inc(L.bufpos)
|
|
else:
|
|
tok.tokType = tkBracketLe
|
|
of ']':
|
|
tok.tokType = tkBracketRi
|
|
inc(L.bufpos)
|
|
of '.':
|
|
if L.buf[L.bufpos+1] == ']':
|
|
tok.tokType = tkBracketDotRi
|
|
inc(L.bufpos, 2)
|
|
elif L.buf[L.bufpos+1] == '}':
|
|
tok.tokType = tkCurlyDotRi
|
|
inc(L.bufpos, 2)
|
|
elif L.buf[L.bufpos+1] == ')':
|
|
tok.tokType = tkParDotRi
|
|
inc(L.bufpos, 2)
|
|
else:
|
|
getOperator(L, tok)
|
|
of '{':
|
|
inc(L.bufpos)
|
|
if L.buf[L.bufpos] == '.' and L.buf[L.bufpos+1] != '.':
|
|
tok.tokType = tkCurlyDotLe
|
|
inc(L.bufpos)
|
|
else:
|
|
tok.tokType = tkCurlyLe
|
|
of '}':
|
|
tok.tokType = tkCurlyRi
|
|
inc(L.bufpos)
|
|
of ';':
|
|
tok.tokType = tkSemiColon
|
|
inc(L.bufpos)
|
|
of '`':
|
|
tok.tokType = tkAccent
|
|
inc(L.bufpos)
|
|
of '\"':
|
|
# check for extended raw string literal:
|
|
var rawMode = L.bufpos > 0 and L.buf[L.bufpos-1] in SymChars
|
|
getString(L, tok, rawMode)
|
|
if rawMode:
|
|
# tkRStrLit -> tkGStrLit
|
|
# tkTripleStrLit -> tkGTripleStrLit
|
|
inc(tok.tokType, 2)
|
|
of '\'':
|
|
tok.tokType = tkCharLit
|
|
getCharacter(L, tok)
|
|
tok.tokType = tkCharLit
|
|
of '0'..'9':
|
|
tok = getNumber(L)
|
|
else:
|
|
if c in OpChars:
|
|
getOperator(L, tok)
|
|
elif c == nimlexbase.EndOfFile:
|
|
tok.tokType = tkEof
|
|
tok.indent = 0
|
|
else:
|
|
tok.literal = $c
|
|
tok.tokType = tkInvalid
|
|
lexMessage(L, errInvalidToken, c & " (\\" & $(ord(c)) & ')')
|
|
inc(L.bufpos)
|
|
|
|
dummyIdent = getIdent("")
|