Types
CompilesId = int
- id that is used for the caching logic within system.compiles. See the seminst module. Source Edit
IdGenerator = ref object module*: int32 symId*: int32 typeId*: int32 sealed*: bool
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TCallingConvention = enum ccNimCall = "nimcall", ccStdCall = "stdcall", ccCDecl = "cdecl", ccSafeCall = "safecall", ccSysCall = "syscall", ccInline = "inline", ccNoInline = "noinline", ccFastCall = "fastcall", ccThisCall = "thiscall", ccClosure = "closure", ccNoConvention = "noconv"
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TIdNodePair = object key*: PIdObj val*: PNode
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TIdNodePairSeq = seq[TIdNodePair]
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TIdNodeTable = object counter*: int data*: TIdNodePairSeq
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TIdPairSeq = seq[TIdPair]
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TIdTable = object counter*: int data*: TIdPairSeq
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TImplication = enum impUnknown, impNo, impYes
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TInstantiation = object sym*: PSym concreteTypes*: seq[PType] compilesId*: CompilesId
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TLib = object kind*: TLibKind generated*: bool isOverriden*: bool name*: Rope path*: PNode
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TLoc = object k*: TLocKind storage*: TStorageLoc flags*: TLocFlags lode*: PNode r*: Rope
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TLocFlag = enum lfIndirect, lfFullExternalName, lfNoDeepCopy, lfNoDecl, lfDynamicLib, lfExportLib, lfHeader, lfImportCompilerProc, lfSingleUse, lfEnforceDeref, lfPrepareForMutation
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TLocKind = enum locNone, locTemp, locLocalVar, locGlobalVar, locParam, locField, locExpr, locProc, locData, locCall, locOther
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TLockLevel = distinct int16
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TMagic = enum mNone, mDefined, mDeclared, mDeclaredInScope, mCompiles, mArrGet, mArrPut, mAsgn, mLow, mHigh, mSizeOf, mAlignOf, mOffsetOf, mTypeTrait, mIs, mOf, mAddr, mType, mTypeOf, mPlugin, mEcho, mShallowCopy, mSlurp, mStaticExec, mStatic, mParseExprToAst, mParseStmtToAst, mExpandToAst, mQuoteAst, mInc, mDec, mOrd, mNew, mNewFinalize, mNewSeq, mNewSeqOfCap, mLengthOpenArray, mLengthStr, mLengthArray, mLengthSeq, mIncl, mExcl, mCard, mChr, mGCref, mGCunref, mAddI, mSubI, mMulI, mDivI, mModI, mSucc, mPred, mAddF64, mSubF64, mMulF64, mDivF64, mShrI, mShlI, mAshrI, mBitandI, mBitorI, mBitxorI, mMinI, mMaxI, mAddU, mSubU, mMulU, mDivU, mModU, mEqI, mLeI, mLtI, mEqF64, mLeF64, mLtF64, mLeU, mLtU, mEqEnum, mLeEnum, mLtEnum, mEqCh, mLeCh, mLtCh, mEqB, mLeB, mLtB, mEqRef, mLePtr, mLtPtr, mXor, mEqCString, mEqProc, mUnaryMinusI, mUnaryMinusI64, mAbsI, mNot, mUnaryPlusI, mBitnotI, mUnaryPlusF64, mUnaryMinusF64, mCharToStr, mBoolToStr, mIntToStr, mInt64ToStr, mFloatToStr, mCStrToStr, mStrToStr, mEnumToStr, mAnd, mOr, mImplies, mIff, mExists, mForall, mOld, mEqStr, mLeStr, mLtStr, mEqSet, mLeSet, mLtSet, mMulSet, mPlusSet, mMinusSet, mConStrStr, mSlice, mDotDot, mFields, mFieldPairs, mOmpParFor, mAppendStrCh, mAppendStrStr, mAppendSeqElem, mInSet, mRepr, mExit, mSetLengthStr, mSetLengthSeq, mIsPartOf, mAstToStr, mParallel, mSwap, mIsNil, mArrToSeq, mNewString, mNewStringOfCap, mParseBiggestFloat, mMove, mWasMoved, mDestroy, mTrace, mDefault, mUnown, mFinished, mIsolate, mAccessEnv, mReset, mArray, mOpenArray, mRange, mSet, mSeq, mVarargs, mRef, mPtr, mVar, mDistinct, mVoid, mTuple, mOrdinal, mIterableType, mInt, mInt8, mInt16, mInt32, mInt64, mUInt, mUInt8, mUInt16, mUInt32, mUInt64, mFloat, mFloat32, mFloat64, mFloat128, mBool, mChar, mString, mCstring, mPointer, mNil, mExpr, mStmt, mTypeDesc, mVoidType, mPNimrodNode, mSpawn, mDeepCopy, mIsMainModule, mCompileDate, mCompileTime, mProcCall, mCpuEndian, mHostOS, mHostCPU, mBuildOS, mBuildCPU, mAppType, mCompileOption, mCompileOptionArg, mNLen, mNChild, mNSetChild, mNAdd, mNAddMultiple, mNDel, mNKind, mNSymKind, mNccValue, mNccInc, mNcsAdd, mNcsIncl, mNcsLen, mNcsAt, mNctPut, mNctLen, mNctGet, mNctHasNext, mNctNext, mNIntVal, mNFloatVal, mNSymbol, mNIdent, mNGetType, mNStrVal, mNSetIntVal, mNSetFloatVal, mNSetSymbol, mNSetIdent, mNSetType, mNSetStrVal, mNLineInfo, mNNewNimNode, mNCopyNimNode, mNCopyNimTree, mStrToIdent, mNSigHash, mNSizeOf, mNBindSym, mNCallSite, mEqIdent, mEqNimrodNode, mSameNodeType, mGetImpl, mNGenSym, mNHint, mNWarning, mNError, mInstantiationInfo, mGetTypeInfo, mGetTypeInfoV2, mNimvm, mIntDefine, mStrDefine, mBoolDefine, mRunnableExamples, mException, mBuiltinType, mSymOwner, mUncheckedArray, mGetImplTransf, mSymIsInstantiationOf, mNodeId, mPrivateAccess
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TNode {.final, acyclic.} = object when defined(useNodeIds): id*: int typ*: PType info*: TLineInfo flags*: TNodeFlags case kind*: TNodeKind of nkCharLit .. nkUInt64Lit: intVal*: BiggestInt of nkFloatLit .. nkFloat128Lit: floatVal*: BiggestFloat of nkStrLit .. nkTripleStrLit: strVal*: string of nkSym: sym*: PSym of nkIdent: ident*: PIdent else: sons*: TNodeSeq
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TNodeFlag = enum nfNone, nfBase2, nfBase8, nfBase16, nfAllConst, nfTransf, nfNoRewrite, nfSem, nfLL, nfDotField, nfDotSetter, nfExplicitCall, nfExprCall, nfIsRef, nfIsPtr, nfPreventCg, nfBlockArg, nfFromTemplate, nfDefaultParam, nfDefaultRefsParam, nfExecuteOnReload, nfLastRead, nfFirstWrite, nfHasComment
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TNodeFlags = set[TNodeFlag]
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TNodeKind = enum nkNone, nkEmpty, nkIdent, nkSym, nkType, nkCharLit, nkIntLit, nkInt8Lit, nkInt16Lit, nkInt32Lit, nkInt64Lit, nkUIntLit, nkUInt8Lit, nkUInt16Lit, nkUInt32Lit, nkUInt64Lit, nkFloatLit, nkFloat32Lit, nkFloat64Lit, nkFloat128Lit, nkStrLit, nkRStrLit, nkTripleStrLit, nkNilLit, nkComesFrom, nkDotCall, nkCommand, nkCall, nkCallStrLit, nkInfix, nkPrefix, nkPostfix, nkHiddenCallConv, nkExprEqExpr, nkExprColonExpr, nkIdentDefs, nkVarTuple, nkPar, nkObjConstr, nkCurly, nkCurlyExpr, nkBracket, nkBracketExpr, nkPragmaExpr, nkRange, nkDotExpr, nkCheckedFieldExpr, nkDerefExpr, nkIfExpr, nkElifExpr, nkElseExpr, nkLambda, nkDo, nkAccQuoted, nkTableConstr, nkBind, nkClosedSymChoice, nkOpenSymChoice, nkHiddenStdConv, nkHiddenSubConv, nkConv, nkCast, nkStaticExpr, nkAddr, nkHiddenAddr, nkHiddenDeref, nkObjDownConv, nkObjUpConv, nkChckRangeF, nkChckRange64, nkChckRange, nkStringToCString, nkCStringToString, nkAsgn, nkFastAsgn, nkGenericParams, nkFormalParams, nkOfInherit, nkImportAs, nkProcDef, nkMethodDef, nkConverterDef, nkMacroDef, nkTemplateDef, nkIteratorDef, nkOfBranch, nkElifBranch, nkExceptBranch, nkElse, nkAsmStmt, nkPragma, nkPragmaBlock, nkIfStmt, nkWhenStmt, nkForStmt, nkParForStmt, nkWhileStmt, nkCaseStmt, nkTypeSection, nkVarSection, nkLetSection, nkConstSection, nkConstDef, nkTypeDef, nkYieldStmt, nkDefer, nkTryStmt, nkFinally, nkRaiseStmt, nkReturnStmt, nkBreakStmt, nkContinueStmt, nkBlockStmt, nkStaticStmt, nkDiscardStmt, nkStmtList, nkImportStmt, nkImportExceptStmt, nkExportStmt, nkExportExceptStmt, nkFromStmt, nkIncludeStmt, nkBindStmt, nkMixinStmt, nkUsingStmt, nkCommentStmt, nkStmtListExpr, nkBlockExpr, nkStmtListType, nkBlockType, nkWith, nkWithout, nkTypeOfExpr, nkObjectTy, nkTupleTy, nkTupleClassTy, nkTypeClassTy, nkStaticTy, nkRecList, nkRecCase, nkRecWhen, nkRefTy, nkPtrTy, nkVarTy, nkConstTy, nkMutableTy, nkDistinctTy, nkProcTy, nkIteratorTy, nkSharedTy, nkEnumTy, nkEnumFieldDef, nkArgList, nkPattern, nkHiddenTryStmt, nkClosure, nkGotoState, nkState, nkBreakState, nkFuncDef, nkTupleConstr, nkError, nkModuleRef, nkReplayAction, nkNilRodNode
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TNodeKinds = set[TNodeKind]
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TNodePairSeq = seq[TNodePair]
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TNodeTable = object counter*: int data*: TNodePairSeq
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TObjectSeq = seq[RootRef]
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TObjectSet = object counter*: int data*: TObjectSeq
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TScope {.acyclic.} = object depthLevel*: int symbols*: TStrTable parent*: PScope allowPrivateAccess*: seq[PSym]
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TStorageLoc = enum OnUnknown, OnStatic, OnStack, OnHeap
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TSym {.acyclic.} = object of TIdObj case kind*: TSymKind of routineKinds: gcUnsafetyReason*: PSym transformedBody*: PNode of skLet, skVar, skField, skForVar: guard*: PSym bitsize*: int alignment*: int else: nil magic*: TMagic typ*: PType name*: PIdent info*: TLineInfo owner*: PSym flags*: TSymFlags ast*: PNode options*: TOptions position*: int offset*: int loc*: TLoc annex*: PLib when hasFFI: cname*: string constraint*: PNode when defined(nimsuggest): allUsages*: seq[TLineInfo]
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TSymFlag = enum sfUsed, sfExported, sfFromGeneric, sfGlobal, sfForward, sfWasForwarded, sfImportc, sfExportc, sfMangleCpp, sfVolatile, sfRegister, sfPure, sfNoSideEffect, sfSideEffect, sfMainModule, sfSystemModule, sfNoReturn, sfAddrTaken, sfCompilerProc, sfProcvar, sfDiscriminant, sfRequiresInit, sfDeprecated, sfExplain, sfError, sfShadowed, sfThread, sfCppNonPod, sfCompileTime, sfConstructor, sfDispatcher, sfBorrow, sfInfixCall, sfNamedParamCall, sfDiscardable, sfOverriden, sfCallsite, sfGenSym, sfNonReloadable, sfGeneratedOp, sfTemplateParam, sfCursor, sfInjectDestructors, sfNeverRaises, sfUsedInFinallyOrExcept, sfSingleUsedTemp, sfNoalias, sfEffectsDelayed
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TSymKind = enum skUnknown, skConditional, skDynLib, skParam, skGenericParam, skTemp, skModule, skType, skVar, skLet, skConst, skResult, skProc, skFunc, skMethod, skIterator, skConverter, skMacro, skTemplate, skField, skEnumField, skForVar, skLabel, skStub, skPackage, skAlias
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TType {.acyclic.} = object of TIdObj kind*: TTypeKind callConv*: TCallingConvention flags*: TTypeFlags sons*: TTypeSeq n*: PNode owner*: PSym sym*: PSym size*: BiggestInt align*: int16 paddingAtEnd*: int16 lockLevel*: TLockLevel loc*: TLoc typeInst*: PType uniqueId*: ItemId
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TTypeAttachedOp = enum attachedDestructor, attachedAsgn, attachedSink, attachedTrace, attachedDeepCopy
- as usual, order is important here Source Edit
TTypeFlag = enum tfVarargs, tfNoSideEffect, tfFinal, tfInheritable, tfHasOwned, tfEnumHasHoles, tfShallow, tfThread, tfFromGeneric, tfUnresolved, tfResolved, tfRetType, tfCapturesEnv, tfByCopy, tfByRef, tfIterator, tfPartial, tfNotNil, tfRequiresInit, tfNeedsFullInit, tfVarIsPtr, tfHasMeta, tfHasGCedMem, tfPacked, tfHasStatic, tfGenericTypeParam, tfImplicitTypeParam, tfInferrableStatic, tfConceptMatchedTypeSym, tfExplicit, tfWildcard, tfHasAsgn, tfBorrowDot, tfTriggersCompileTime, tfRefsAnonObj, tfCovariant, tfWeakCovariant, tfContravariant, tfCheckedForDestructor, tfAcyclic, tfIncompleteStruct, tfCompleteStruct, tfExplicitCallConv, tfIsConstructor, tfEffectSystemWorkaround
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TTypeFlags = set[TTypeFlag]
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TTypeKind = enum tyNone, tyBool, tyChar, tyEmpty, tyAlias, tyNil, tyUntyped, tyTyped, tyTypeDesc, tyGenericInvocation, tyGenericBody, tyGenericInst, tyGenericParam, tyDistinct, tyEnum, tyOrdinal, tyArray, tyObject, tyTuple, tySet, tyRange, tyPtr, tyRef, tyVar, tySequence, tyProc, tyPointer, tyOpenArray, tyString, tyCstring, tyForward, tyInt, tyInt8, tyInt16, tyInt32, tyInt64, tyFloat, tyFloat32, tyFloat64, tyFloat128, tyUInt, tyUInt8, tyUInt16, tyUInt32, tyUInt64, tyOwned, tySink, tyLent, tyVarargs, tyUncheckedArray, tyProxy, tyBuiltInTypeClass, tyUserTypeClass, tyUserTypeClassInst, tyCompositeTypeClass, tyInferred, tyAnd, tyOr, tyNot, tyAnything, tyStatic, tyFromExpr, tyConcept, tyVoid, tyIterable
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TTypeKinds = set[TTypeKind]
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Vars
eqTypeFlags = {tfIterator, tfNotNil, tfVarIsPtr, tfGcSafe, tfNoSideEffect}
- type flags that are essential for type equality. This is now a variable because for emulation of version:1.0 we might exclude {tfGcSafe, tfNoSideEffect}. Source Edit
Consts
abstractInst = {tyGenericInst, tyDistinct, tyOrdinal, tyTypeDesc, tyAlias, tyInferred, tySink, tyOwned}
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abstractVarRange = {tyGenericInst, tyRange, tyVar, tyDistinct, tyOrdinal, tyTypeDesc, tyAlias, tyInferred, tySink, tyOwned}
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AttachedOpToStr: array[TTypeAttachedOp, string] = ["=destroy", "=copy", "=sink", "=trace", "=deepcopy"]
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callableDefs = {nkLambda..nkDo, nkProcDef..nkIteratorDef, nkFuncDef}
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ConcreteTypes: TTypeKinds = {tyBool, tyChar, tyEnum, tyArray, tyObject, tySet, tyTuple, tyRange, tyPtr, tyRef, tyVar, tyLent, tySequence, tyProc, tyPointer, tyOpenArray, tyString, tyCstring, tyInt..tyInt64, tyFloat..tyFloat128, tyUInt..tyUInt64}
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ConstantDataTypes: TTypeKinds = {tyArray, tySet, tyTuple, tySequence}
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ctfeWhitelist = {mNone, mSucc, mPred, mInc, mDec, mOrd, mLengthOpenArray, mLengthStr, mLengthArray, mLengthSeq, mArrGet, mArrPut, mAsgn, mDestroy, mIncl, mExcl, mCard, mChr, mAddI, mSubI, mMulI, mDivI, mModI, mAddF64, mSubF64, mMulF64, mDivF64, mShrI, mShlI, mBitandI, mBitorI, mBitxorI, mMinI, mMaxI, mAddU, mSubU, mMulU, mDivU, mModU, mEqI, mLeI, mLtI, mEqF64, mLeF64, mLtF64, mLeU, mLtU, mEqEnum, mLeEnum, mLtEnum, mEqCh, mLeCh, mLtCh, mEqB, mLeB, mLtB, mEqRef, mEqProc, mLePtr, mLtPtr, mEqCString, mXor, mUnaryMinusI, mUnaryMinusI64, mAbsI, mNot, mUnaryPlusI, mBitnotI, mUnaryPlusF64, mUnaryMinusF64, mCharToStr, mBoolToStr, mIntToStr, mInt64ToStr, mFloatToStr, mCStrToStr, mStrToStr, mEnumToStr, mAnd, mOr, mEqStr, mLeStr, mLtStr, mEqSet, mLeSet, mLtSet, mMulSet, mPlusSet, mMinusSet, mConStrStr, mAppendStrCh, mAppendStrStr, mAppendSeqElem, mInSet, mRepr}
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declarativeDefs = {nkProcDef, nkFuncDef, nkMethodDef, nkIteratorDef, nkConverterDef}
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defaultOffset = -1
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dispatcherPos = 8
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effectListLen = 5
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ensuresEffects = 2
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ExportableSymKinds = {skType..skConst, skProc..skTemplate, skEnumField, skStub, skAlias}
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GcTypeKinds = {tyRef, tySequence, tyString}
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GenericTypes: TTypeKinds = {tyGenericInvocation, tyGenericBody, tyGenericParam}
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GrowthFactor = 2
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IntegralTypes = {tyBool, tyChar, tyEnum, tyInt..tyInt64, tyFloat..tyFloat128, tyUInt..tyUInt64}
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MaxLockLevel = 1000'i16
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nfAllFieldsSet = nfBase2
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NilableTypes: TTypeKinds = {tyPointer, tyCstring, tyRef, tyPtr, tyProc, tyProxy}
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nkCallKinds = {nkCall, nkInfix, nkPrefix, nkPostfix, nkCommand, nkCallStrLit, nkHiddenCallConv}
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nkEffectList = nkArgList
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nkFloatLiterals = {nkFloatLit..nkFloat128Lit}
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nkIdentKinds = {nkIdent, nkSym, nkAccQuoted, nkOpenSymChoice, nkClosedSymChoice}
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nkLambdaKinds = {nkLambda, nkDo}
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nkLastBlockStmts = {nkRaiseStmt, nkReturnStmt, nkBreakStmt, nkContinueStmt}
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nkLiterals = {nkCharLit..nkTripleStrLit}
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nkPragmaCallKinds = {nkExprColonExpr, nkCall, nkCallStrLit}
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nkStrKinds = {nkStrLit..nkTripleStrLit}
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nkSymChoices = {nkClosedSymChoice, nkOpenSymChoice}
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nkWhenExpr = nkWhenStmt
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OverloadableSyms = {skProc, skFunc, skMethod, skIterator, skConverter, skModule, skTemplate, skMacro, skEnumField}
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PackageModuleId = -3'i32
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patternPos = 1
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PersistentNodeFlags: TNodeFlags = {nfBase2, nfBase8, nfBase16, nfDotSetter, nfDotField, nfIsRef, nfIsPtr, nfPreventCg, nfLL, nfFromTemplate, nfDefaultRefsParam, nfExecuteOnReload, nfLastRead, nfFirstWrite}
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pragmasEffects = 4
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pragmasPos = 4
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PtrLikeKinds: TTypeKinds = {tyPointer, tyPtr}
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routineDefs = {nkProcDef..nkIteratorDef, nkFuncDef}
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routineKinds = {skProc, skFunc, skMethod, skIterator, skConverter, skMacro, skTemplate}
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sfAllUntyped = sfVolatile
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sfCompileToCpp = sfInfixCall
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sfCompileToObjc = sfNamedParamCall
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sfCustomPragma = sfRegister
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sfExperimental = sfOverriden
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sfNoForward = sfRegister
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sfWrittenTo = sfBorrow
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skLocalVars = {skVar, skLet, skForVar, skParam, skResult}
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skProcKinds = {skProc, skFunc, skTemplate, skMacro, skIterator, skMethod, skConverter}
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StructuralEquivTypes: TTypeKinds = {tyNil, tyTuple, tyArray, tySet, tyRange, tyPtr, tyRef, tyVar, tyLent, tySequence, tyProc, tyOpenArray, tyVarargs}
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tagEffects = 3
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tfObjHasKids = tfEnumHasHoles
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tfReturnsNew = tfInheritable
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tyMetaTypes = {tyUntyped, tyTypeDesc, tyGenericParam, tyBuiltInTypeClass..tyCompositeTypeClass, tyAnd..tyAnything}
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tyPureObject = tyTuple
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tyTypeClasses = {tyBuiltInTypeClass, tyCompositeTypeClass, tyUserTypeClass, tyUserTypeClassInst, tyAnd, tyOr, tyNot, tyAnything}
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tyUnknownTypes = {tyProxy, tyFromExpr}
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tyUserTypeClasses = {tyUserTypeClass, tyUserTypeClassInst}
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UnknownLockLevel = 1001'i16
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UnspecifiedLockLevel = -1'i16
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Procs
proc `$`(x: TLockLevel): string {....raises: [], tags: [].}
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proc addAllowNil(father, son: Indexable) {.inline.}
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proc addSonNilAllowed(father, son: PNode) {....raises: [], tags: [].}
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proc appendToModule(m: PSym; n: PNode) {....raises: [], tags: [].}
- The compiler will use this internally to add nodes that will be appended to the module after the sem pass Source Edit
proc assignType(dest, src: PType) {....raises: [], tags: [].}
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proc canRaiseConservative(fn: PNode): bool {....raises: [], tags: [].}
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proc containsNode(n: PNode; kinds: TNodeKinds): bool {....raises: [], tags: [].}
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proc copyIdTable(dest: var TIdTable; src: TIdTable) {....raises: [], tags: [].}
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proc copyObjectSet(dest: var TObjectSet; src: TObjectSet) {....raises: [], tags: [].}
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proc copyStrTable(dest: var TStrTable; src: TStrTable) {....raises: [], tags: [].}
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proc copyTreeWithoutNode(src, skippedNode: PNode): PNode {....raises: [KeyError], tags: [].}
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proc createModuleAlias(s: PSym; id: ItemId; newIdent: PIdent; info: TLineInfo; options: TOptions): PSym {....raises: [], tags: [].}
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proc discardSons(father: PNode) {....raises: [], tags: [].}
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proc exactReplica(t: PType): PType {....raises: [], tags: [].}
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proc findUnresolvedStatic(n: PNode): PNode {....raises: [], tags: [].}
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proc getDeclPragma(n: PNode): PNode {....raises: [], tags: [].}
- return the nkPragma node for declaration n, or nil if no pragma was found. Currently only supports routineDefs + {nkTypeDef}. Source Edit
proc getInt64(a: PNode): int64 {....deprecated: "use getInt", raises: [ERecoverableError], tags: [].}
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proc getnimblePkg(a: PSym): PSym {....raises: [], tags: [].}
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proc getnimblePkgId(a: PSym): int {....raises: [], tags: [].}
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proc getPIdent(a: PNode): PIdent {.inline, ...raises: [], tags: [].}
- Returns underlying PIdent for {nkSym, nkIdent}, or nil. Source Edit
proc getStrOrChar(a: PNode): string {....raises: [ERecoverableError], tags: [].}
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proc hasPattern(s: PSym): bool {.inline, ...raises: [], tags: [].}
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proc hasSonWith(n: PNode; kind: TNodeKind): bool {....raises: [], tags: [].}
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proc hasSubnodeWith(n: PNode; kind: TNodeKind): bool {....raises: [], tags: [].}
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proc idGeneratorFromModule(m: PSym): IdGenerator {....raises: [], tags: [].}
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proc initIdNodeTable(x: var TIdNodeTable) {....raises: [], tags: [].}
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proc initIdTable(x: var TIdTable) {....raises: [], tags: [].}
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proc initNodeTable(x: var TNodeTable) {....raises: [], tags: [].}
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proc initObjectSet(x: var TObjectSet) {....raises: [], tags: [].}
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proc initStrTable(x: var TStrTable) {....raises: [], tags: [].}
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proc isCallExpr(n: PNode): bool {....raises: [], tags: [].}
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proc isClosureIterator(typ: PType): bool {.inline, ...raises: [], tags: [].}
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proc isCompileTimeProc(s: PSym): bool {.inline, ...raises: [], tags: [].}
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proc isEmptyType(t: PType): bool {.inline, ...raises: [], tags: [].}
- 'void' and 'typed' types are often equivalent to 'nil' these days: Source Edit
proc isGenericParams(n: PNode): bool {.inline, ...raises: [], tags: [].}
- used to judge whether a node is generic params. Source Edit
proc isGenericRoutine(n: PNode): bool {.inline, ...raises: [], tags: [].}
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proc isGenericRoutine(s: PSym): bool {.inline, ...raises: [], tags: [].}
-
determines if this symbol represents a generic routine or an instance of one. This should be renamed accordingly and isGenericRoutineStrict should take this name instead.
Warning/XXX: Unfortunately, it considers a proc kind symbol flagged with sfFromGeneric as a generic routine. Instead this should likely not be the case and the concepts should be teased apart:
- generic definition
- generic instance
- either generic definition or instance
proc isGenericRoutineStrict(s: PSym): bool {.inline, ...raises: [], tags: [].}
- determines if this symbol represents a generic routine the unusual name is so it doesn't collide and eventually replaces isGenericRoutine Source Edit
proc isImportedException(t: PType; conf: ConfigRef): bool {....raises: [], tags: [].}
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proc isInlineIterator(typ: PType): bool {.inline, ...raises: [], tags: [].}
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proc isMetaType(t: PType): bool {....raises: [], tags: [].}
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proc isNewStyleConcept(n: PNode): bool {.inline, ...raises: [], tags: [].}
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proc isRunnableExamples(n: PNode): bool {....raises: [], tags: [].}
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proc isSinkParam(s: PSym): bool {.inline, ...raises: [], tags: [].}
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proc isSinkType(t: PType): bool {.inline, ...raises: [], tags: [].}
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proc isUnresolvedStatic(t: PType): bool {....raises: [], tags: [].}
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proc makeStmtList(n: PNode): PNode {....raises: [], tags: [].}
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proc newFloatNode(kind: TNodeKind; floatVal: BiggestFloat): PNode {....raises: [], tags: [].}
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proc newIdTable(): TIdTable {....raises: [], tags: [].}
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proc newIntNode(kind: TNodeKind; intVal: BiggestInt): PNode {....raises: [], tags: [].}
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proc newIntTypeNode(intVal: BiggestInt; typ: PType): PNode {....raises: [], tags: [].}
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proc newNode(kind: TNodeKind): PNode {....raises: [], tags: [].}
- new node with unknown line info, no type, and no children Source Edit
proc newNodeI(kind: TNodeKind; info: TLineInfo): PNode {....raises: [], tags: [].}
- new node with line info, no type, and no children Source Edit
proc newNodeI(kind: TNodeKind; info: TLineInfo; children: int): PNode {. ...raises: [], tags: [].}
- new node with line info, type, and children Source Edit
proc newNodeIT(kind: TNodeKind; info: TLineInfo; typ: PType): PNode {. ...raises: [], tags: [].}
- new node with line info, type, and no children Source Edit
proc newProcNode(kind: TNodeKind; info: TLineInfo; body: PNode; params, name, pattern, genericParams, pragmas, exceptions: PNode): PNode {....raises: [], tags: [].}
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proc newProcType(info: TLineInfo; id: ItemId; owner: PSym): PType {....raises: [], tags: [].}
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proc newStrNode(kind: TNodeKind; strVal: string): PNode {....raises: [], tags: [].}
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proc newStrNode(strVal: string; info: TLineInfo): PNode {....raises: [], tags: [].}
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proc newStrTable(): TStrTable {....raises: [], tags: [].}
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proc newSym(symKind: TSymKind; name: PIdent; id: ItemId; owner: PSym; info: TLineInfo; options: TOptions = {}): PSym {....raises: [], tags: [].}
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proc newSymNode(sym: PSym): PNode {....raises: [], tags: [].}
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proc newTree(kind: TNodeKind; children: varargs[PNode]): PNode {....raises: [], tags: [].}
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proc newTreeI(kind: TNodeKind; info: TLineInfo; children: varargs[PNode]): PNode {. ...raises: [], tags: [].}
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proc newTreeIT(kind: TNodeKind; info: TLineInfo; typ: PType; children: varargs[PNode]): PNode {....raises: [], tags: [].}
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proc newType(kind: TTypeKind; id: ItemId; owner: PSym): PType {....raises: [], tags: [].}
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proc nextSymId(x: IdGenerator): ItemId {.inline, ...raises: [], tags: [].}
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proc nextTypeId(x: IdGenerator): ItemId {.inline, ...raises: [], tags: [].}
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proc originatingModule(s: PSym): PSym {....raises: [], tags: [].}
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proc propagateToOwner(owner, elem: PType; propagateHasAsgn = true) {....raises: [], tags: [].}
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proc rawAddSonNoPropagationOfTypeFlags(father, son: PType) {....raises: [], tags: [].}
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proc requiredParams(s: PSym): int {....raises: [], tags: [].}
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proc resetIdTable(x: var TIdTable) {....raises: [], tags: [].}
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proc safeArrLen(n: PNode): int {.inline, ...raises: [], tags: [].}
- works for array-like objects (strings passed as openArray in VM). Source Edit
proc shallowCopy(src: PNode): PNode {....raises: [KeyError], tags: [].}
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proc skipGenericOwner(s: PSym): PSym {....raises: [], tags: [].}
- Generic instantiations are owned by their originating generic symbol. This proc skips such owners and goes straight to the owner of the generic itself (the module or the enclosing proc). Source Edit
proc skipStmtList(n: PNode): PNode {....raises: [], tags: [].}
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proc skipTypes(t: PType; kinds: TTypeKinds): PType {....raises: [], tags: [].}
- Used throughout the compiler code to test whether a type tree contains or doesn't contain a specific type/types - it is often the case that only the last child nodes of a type tree need to be searched. This is a really hot path within the compiler! Source Edit
proc skipTypes(t: PType; kinds: TTypeKinds; maxIters: int): PType {....raises: [], tags: [].}
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proc skipTypesOrNil(t: PType; kinds: TTypeKinds): PType {....raises: [], tags: [].}
- same as skipTypes but handles 'nil' Source Edit
proc toHumanStr(kind: TSymKind): string {....raises: [], tags: [].}
- strips leading sk Source Edit
proc toHumanStr(kind: TTypeKind): string {....raises: [], tags: [].}
- strips leading tk Source Edit
proc toObject(typ: PType): PType {....raises: [], tags: [].}
- If typ is a tyRef then its immediate son is returned (which in many cases should be a tyObject). Otherwise typ is simply returned as-is. Source Edit
proc toObjectFromRefPtrGeneric(typ: PType): PType {....raises: [], tags: [].}
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proc toRef(typ: PType; idgen: IdGenerator): PType {....raises: [], tags: [].}
- If typ is a tyObject then it is converted into a ref <typ> and returned. Otherwise typ is simply returned as-is. Source Edit
proc toVar(typ: PType; kind: TTypeKind; idgen: IdGenerator): PType {....raises: [], tags: [].}
- If typ is not a tyVar then it is converted into a var <typ> and returned. Otherwise typ is simply returned as-is. Source Edit
proc transitionGenericParamToType(s: PSym) {....raises: [], tags: [].}
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proc transitionIntKind(n: PNode; kind: range[nkCharLit .. nkUInt64Lit]) {. ...raises: [], tags: [].}
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proc transitionNoneToSym(n: PNode) {....raises: [], tags: [].}
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proc transitionRoutineSymKind(s: PSym; kind: range[skProc .. skTemplate]) {. ...raises: [], tags: [].}
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proc transitionSonsKind(n: PNode; kind: range[nkComesFrom .. nkTupleConstr]) {. ...raises: [], tags: [].}
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proc transitionToLet(s: PSym) {....raises: [], tags: [].}
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Templates
template detailedInfo(sym: PSym): string
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template hasDestructor(t: PType): bool
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template incompleteType(t: PType): bool
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template previouslyInferred(t: PType): PType
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template transitionSymKindCommon(k: TSymKind)
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template typeCompleted(s: PSym)
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Exports
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bitxor, maskUInt16, <, <=, high, castToUInt64, shr, toHex, ==, +, addInt128, abs, One, <=, maskUInt64, $, toUInt8, inc, <, +=, maskBytes, Ten, -, -, *=, Zero, toInt32, ==, -=, toInt64Checked, +, parseDecimalInt128, toInt8, toUInt16, mod, toInt128, shl, maskUInt32, toUInt32, fastLog2, toUInt, Int128, <, bitor, <=, toFloat64, -, ==, *=, bitnot, toInt64, NegOne, div, +, *, toUInt64, low, addToHex, -, maskUInt8, divMod, bitand, toInt128, cmp, *, toInt16, toInt, castToInt64