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176
lib/macros.nim
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176
lib/macros.nim
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#
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#
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# Nimrod's Runtime Library
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# (c) Copyright 2008 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 module contains the interface to the compiler's abstract syntax tree.
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## Abstract syntax trees should be modified in macros.
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#[[[cog
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#def toEnum(name, elems, prefix):
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# body = ""
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# counter = 0
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# for e in elems:
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# if counter % 4 == 0: p = "\n "
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# else: p = ""
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# body += p + prefix + e[2:] + ', '
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# counter += 1
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#
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# return " TNimrod%s* = enum%s\n TNim%ss* = set[TNimrod%s]\n" \
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# % (name, body.rstrip(", "), name, name)
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#
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#enums = eval(file("data/ast.yml").read())
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#cog.out("type\n")
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#i = 0
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#for key, val in enums.iteritems():
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# if key.endswith("Flag"): continue
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# cog.out(toEnum(key, val, ["nnk", "nty", "nsk"][i]))
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# i += 1
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#]]]
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type
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TNimrodNodeKind* = enum
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nnkNone, nnkEmpty, nnkIdent, nnkSym,
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nnkType, nnkCharLit, nnkIntLit, nnkInt8Lit,
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nnkInt16Lit, nnkInt32Lit, nnkInt64Lit, nnkFloatLit,
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nnkFloat32Lit, nnkFloat64Lit, nnkStrLit, nnkRStrLit,
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nnkTripleStrLit, nnkMetaNode, nnkNilLit, nnkDotCall,
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nnkCommand, nnkCall, nnkGenericCall, nnkExplicitTypeListCall,
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nnkExprEqExpr, nnkExprColonExpr, nnkIdentDefs, nnkInfix,
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nnkPrefix, nnkPostfix, nnkPar, nnkCurly,
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nnkBracket, nnkBracketExpr, nnkPragmaExpr, nnkRange,
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nnkDotExpr, nnkCheckedFieldExpr, nnkDerefExpr, nnkIfExpr,
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nnkElifExpr, nnkElseExpr, nnkLambda, nnkAccQuoted,
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nnkHeaderQuoted, nnkTableConstr, nnkQualified, nnkHiddenStdConv,
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nnkHiddenSubConv, nnkHiddenCallConv, nnkConv, nnkCast,
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nnkAddr, nnkHiddenAddr, nnkHiddenDeref, nnkObjDownConv,
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nnkObjUpConv, nnkChckRangeF, nnkChckRange64, nnkChckRange,
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nnkStringToCString, nnkCStringToString, nnkPassAsOpenArray, nnkAsgn,
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nnkDefaultTypeParam, nnkGenericParams, nnkFormalParams, nnkOfInherit,
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nnkModule, nnkProcDef, nnkConverterDef, nnkMacroDef,
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nnkTemplateDef, nnkIteratorDef, nnkOfBranch, nnkElifBranch,
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nnkExceptBranch, nnkElse, nnkMacroStmt, nnkAsmStmt,
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nnkPragma, nnkIfStmt, nnkWhenStmt, nnkForStmt,
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nnkWhileStmt, nnkCaseStmt, nnkVarSection, nnkConstSection,
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nnkConstDef, nnkTypeSection, nnkTypeDef, nnkYieldStmt,
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nnkTryStmt, nnkFinally, nnkRaiseStmt, nnkReturnStmt,
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nnkBreakStmt, nnkContinueStmt, nnkBlockStmt, nnkDiscardStmt,
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nnkStmtList, nnkImportStmt, nnkFromStmt, nnkImportAs,
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nnkIncludeStmt, nnkAccessStmt, nnkCommentStmt, nnkStmtListExpr,
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nnkBlockExpr, nnkVm, nnkTypeOfExpr, nnkObjectTy,
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nnkTupleTy, nnkRecList, nnkRecCase, nnkRecWhen,
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nnkRefTy, nnkPtrTy, nnkVarTy, nnkProcTy,
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nnkEnumTy, nnkEnumFieldDef, nnkReturnToken
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TNimNodeKinds* = set[TNimrodNodeKind]
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TNimrodTypeKind* = enum
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ntyNone, ntyBool, ntyChar, ntyEmptySet,
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ntyArrayConstr, ntyNil, ntyGeneric, ntyGenericInst,
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ntyGenericParam, ntyEnum, ntyAnyEnum, ntyArray,
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ntyObject, ntyTuple, ntySet, ntyRange,
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ntyPtr, ntyRef, ntyVar, ntySequence,
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ntyProc, ntyPointer, ntyOpenArray, ntyString,
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ntyCString, ntyForward, ntyInt, ntyInt8,
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ntyInt16, ntyInt32, ntyInt64, ntyFloat,
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ntyFloat32, ntyFloat64, ntyFloat128
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TNimTypeKinds* = set[TNimrodTypeKind]
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TNimrodSymKind* = enum
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nskUnknownSym, nskConditional, nskDynLib, nskParam,
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nskTypeParam, nskTemp, nskType, nskConst,
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nskVar, nskProc, nskIterator, nskConverter,
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nskMacro, nskTemplate, nskField, nskEnumField,
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nskForVar, nskModule, nskLabel
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TNimSymKinds* = set[TNimrodSymKind]
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#[[[end]]]
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type
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TNimrodNode {.final.} = object # hidden
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TNimrodSymbol {.final.} = object # hidden
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TNimrodType {.final.} = object # hidden
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PNimrodType* {.compilerproc.} = ref TNimrodType
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PNimrodSymbol* {.compilerproc.} = ref TNimrodSymbol
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PNimrodNode* {.compilerproc.} = ref TNimrodNode
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expr* = PNimrodNode
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stmt* = PNimrodNode
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# Nodes should be reference counted to make the `copy` operation very fast!
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# However, this is difficult to achieve: modify(n[0][1]) should propagate to
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# its father. How to do this without back references?
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proc `[]`* (n: PNimrodNode, i: int): PNimrodNode {.magic: "NChild".}
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proc `[]=`* (n: PNimrodNode, i: int, child: PNimrodNode) {.magic: "NSetChild".}
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## provide access to `n`'s children
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type
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TNimrodIdent = object of TObject
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converter StrToIdent*(s: string): TNimrodIdent {.magic: "StrToIdent".}
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proc `$`*(i: TNimrodIdent): string {.magic: "IdentToStr".}
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proc `==`* (a, b: TNimrodIdent): bool {.magic: "EqIdent".}
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proc len*(n: PNimrodNode): int {.magic: "NLen".}
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## returns the number of children that a node has
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proc add*(father, child: PNimrodNode) {.magic: "NAdd".}
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proc add*(father: PNimrodNode, child: openArray[PNimrodNode]) {.magic: "NAddMultiple".}
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proc del*(father: PNimrodNode, idx = 0, n = 1) {.magic: "NDel".}
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proc kind*(n: PNimrodNode): TNimrodNodeKind {.magic: "NKind".}
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proc intVal*(n: PNimrodNode): biggestInt {.magic: "NIntVal".}
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proc floatVal*(n: PNimrodNode): biggestFloat {.magic: "NFloatVal".}
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proc symbol*(n: PNimrodNode): PNimrodSymbol {.magic: "NSymbol".}
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proc ident*(n: PNimrodNode): TNimrodIdent {.magic: "NIdent".}
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proc typ*(n: PNimrodNode): PNimrodType {.magic: "NGetType".}
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proc strVal*(n: PNimrodNode): string {.magic: "NStrVal".}
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proc `intVal=`*(n: PNimrodNode, val: biggestInt) {.magic: "NSetIntVal".}
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proc `floatVal=`*(n: PNimrodNode, val: biggestFloat) {.magic: "NSetFloatVal".}
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proc `symbol=`*(n: PNimrodNode, val: PNimrodSymbol) {.magic: "NSetSymbol".}
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proc `ident=`*(n: PNimrodNode, val: TNimrodIdent) {.magic: "NSetIdent".}
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proc `typ=`*(n: PNimrodNode, typ: PNimrodType) {.magic: "NSetType".}
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proc `strVal=`*(n: PNimrodNode, val: string) {.magic: "NSetStrVal".}
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proc newNimNode*(kind: TNimrodNodeKind,
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n: PNimrodNode=nil): PNimrodNode {.magic: "NNewNimNode".}
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proc copyNimNode*(n: PNimrodNode): PNimrodNode {.magic: "NCopyNimNode".}
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proc copyNimTree*(n: PNimrodNode): PNimrodNode {.magic: "NCopyNimTree".}
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proc error*(msg: string) {.magic: "NError".}
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proc warning*(msg: string) {.magic: "NWarning".}
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proc hint*(msg: string) {.magic: "NHint".}
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proc newStrLitNode*(s: string): PNimrodNode {.nodecl.} =
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result = newNimNode(nnkStrLit)
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result.strVal = s
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proc newIntLitNode*(i: biggestInt): PNimrodNode {.nodecl.} =
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result = newNimNode(nnkIntLit)
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result.intVal = i
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proc newIntLitNode*(f: biggestFloat): PNimrodNode {.nodecl.} =
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result = newNimNode(nnkFloatLit)
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result.floatVal = f
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proc newIdentNode*(i: TNimrodIdent): PNimrodNode {.nodecl.} =
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result = newNimNode(nnkIdent)
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result.ident = i
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proc toStrLit*(n: PNimrodNode): PNimrodNode {.nodecl.} =
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return newStrLitNode(repr(n))
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proc expectKind*(n: PNimrodNode, k: TNimrodNodeKind) {.nodecl.} =
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if n.kind != k: error("macro expects a node of kind: " & repr(k))
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proc expectMinLen*(n: PNimrodNode, min: int) {.nodecl.} =
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if n.len < min: error("macro expects a node with " & $min & " children")
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proc newCall*(theProc: TNimrodIdent,
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args: openArray[PNimrodNode]): PNimrodNode {.nodecl.} =
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## produces a new call node. `theProc` is the proc that is called with
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## the arguments ``args[0..]``.
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result = newNimNode(nnkCall)
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result.add(newIdentNode(theProc))
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result.add(args)
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