more uint related fixes
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308cfc49b8
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12 changed files with 151 additions and 139 deletions
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@ -329,7 +329,8 @@ type
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tfEnumHasHoles, # enum cannot be mapped into a range
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tfEnumHasHoles, # enum cannot be mapped into a range
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tfShallow, # type can be shallow copied on assignment
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tfShallow, # type can be shallow copied on assignment
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tfThread, # proc type is marked as ``thread``
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tfThread, # proc type is marked as ``thread``
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tfLiteral # type represents literal value
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tfUniIntLit # type represents literal value that could be either
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# singed or unsigned integer (e.g. 100)
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tfFromGeneric # type is an instantiation of a generic; this is needed
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tfFromGeneric # type is an instantiation of a generic; this is needed
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# because for instantiations of objects, structural
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# because for instantiations of objects, structural
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# type equality has to be used
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# type equality has to be used
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@ -19,8 +19,9 @@ proc AccessThreadLocalVar(p: BProc, s: PSym) =
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if emulatedThreadVars() and not p.ThreadVarAccessed:
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if emulatedThreadVars() and not p.ThreadVarAccessed:
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p.ThreadVarAccessed = true
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p.ThreadVarAccessed = true
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p.module.usesThreadVars = true
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p.module.usesThreadVars = true
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lineF(p, cpsLocals, "NimThreadVars* NimTV;$n")
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appf(p.procSec(cpsLocals), "\tNimThreadVars* NimTV;$n")
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lineCg(p, cpsInit, "NimTV = (NimThreadVars*) #GetThreadLocalVars();$n")
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app(p.procSec(cpsInit),
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ropecg(p.module, "\tNimTV = (NimThreadVars*) #GetThreadLocalVars();$n"))
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var
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var
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nimtv: PRope # nimrod thread vars; the struct body
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nimtv: PRope # nimrod thread vars; the struct body
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@ -403,6 +403,10 @@ proc GetNumber(L: var TLexer): TToken =
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of tkInt8Lit: result.iNumber = biggestInt(int8(toU8(int(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 tkInt16Lit: result.iNumber = biggestInt(toU16(int(xi)))
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of tkInt32Lit: result.iNumber = biggestInt(toU32(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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of tkFloat32Lit:
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result.fNumber = (cast[PFloat32](addr(xi)))[]
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result.fNumber = (cast[PFloat32](addr(xi)))[]
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# note: this code is endian neutral!
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# note: this code is endian neutral!
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@ -1283,9 +1283,9 @@ proc semMacroStmt(c: PContext, n: PNode, semCheck = true): PNode =
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GlobalError(n.info, errInvalidExpressionX,
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GlobalError(n.info, errInvalidExpressionX,
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renderTree(a, {renderNoComments}))
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renderTree(a, {renderNoComments}))
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proc litIntType(kind: TTypeKind): PType =
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proc uniIntType(kind: TTypeKind): PType =
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result = getSysType(kind).copyType(getCurrOwner(), true)
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result = getSysType(kind).copyType(getCurrOwner(), true)
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result.flags.incl(tfLiteral)
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result.flags.incl(tfUniIntLit)
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template memoize(e: expr): expr =
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template memoize(e: expr): expr =
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var `*guard` {.global.} = false
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var `*guard` {.global.} = false
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@ -1317,9 +1317,15 @@ proc semExpr(c: PContext, n: PNode, flags: TExprFlags = {}): PNode =
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if result.typ == nil:
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if result.typ == nil:
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let i = result.intVal
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let i = result.intVal
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if i >= low(int32) and i <= high(int32):
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if i >= low(int32) and i <= high(int32):
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result.typ = litIntType(tyInt).memoize
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if i >= 0:
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result.typ = uniIntType(tyInt).memoize
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else:
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result.typ = getSysType(tyInt)
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else:
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else:
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result.typ = litIntType(tyInt64).memoize
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if i >= 0:
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result.typ = uniIntType(tyInt64).memoize
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else:
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result.typ = getSysType(tyInt64)
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of nkInt8Lit:
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of nkInt8Lit:
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if result.typ == nil: result.typ = getSysType(tyInt8)
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if result.typ == nil: result.typ = getSysType(tyInt8)
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of nkInt16Lit:
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of nkInt16Lit:
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@ -164,7 +164,7 @@ proc handleRange(f, a: PType, min, max: TTypeKind): TTypeRelation =
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if k == f.kind: result = isSubtype
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if k == f.kind: result = isSubtype
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elif f.kind == tyInt and k in {tyInt..tyInt32}: result = isIntConv
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elif f.kind == tyInt and k in {tyInt..tyInt32}: result = isIntConv
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elif f.kind == tyUInt and k in {tyUInt..tyUInt32}: result = isIntConv
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elif f.kind == tyUInt and k in {tyUInt..tyUInt32}: result = isIntConv
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elif f.kind in {tyUInt..tyUInt64} and k == tyInt and tfLiteral in a.flags:
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elif f.kind in {tyUInt..tyUInt64} and k == tyInt and tfUniIntLit in a.flags:
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result = isIntConv
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result = isIntConv
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elif k >= min and k <= max: result = isConvertible
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elif k >= min and k <= max: result = isConvertible
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else: result = isNone
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else: result = isNone
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@ -43,7 +43,12 @@ type
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akFloat = 36, ## any represents a float
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akFloat = 36, ## any represents a float
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akFloat32 = 37, ## any represents a float32
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akFloat32 = 37, ## any represents a float32
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akFloat64 = 38, ## any represents a float64
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akFloat64 = 38, ## any represents a float64
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akFloat128 = 39 ## any represents a float128
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akFloat128 = 39, ## any represents a float128
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akUInt = 40, ## any represents an unsigned int
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akUInt8 = 41, ## any represents an unsigned int8
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akUInt16 = 42, ## any represents an unsigned in16
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akUInt32 = 43, ## any represents an unsigned int32
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akUInt64 = 44, ## any represents an unsigned int64
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TAny* = object {.pure.} ## can represent any nimrod value; NOTE: the wrapped
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TAny* = object {.pure.} ## can represent any nimrod value; NOTE: the wrapped
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## value can be modified with its wrapper! This means
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## value can be modified with its wrapper! This means
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@ -86,7 +86,7 @@ proc storeAny(s: PStream, a: TAny, stored: var TIntSet) =
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var x = getString(a)
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var x = getString(a)
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if IsNil(x): s.write("null")
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if IsNil(x): s.write("null")
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else: s.write(escapeJson(x))
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else: s.write(escapeJson(x))
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of akInt..akInt64: s.write($getBiggestInt(a))
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of akInt..akInt64, akUInt..akUInt64: s.write($getBiggestInt(a))
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of akFloat..akFloat128: s.write($getBiggestFloat(a))
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of akFloat..akFloat128: s.write($getBiggestFloat(a))
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proc loadAny(p: var TJsonParser, a: TAny, t: var TTable[biggestInt, pointer]) =
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proc loadAny(p: var TJsonParser, a: TAny, t: var TTable[biggestInt, pointer]) =
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@ -197,7 +197,7 @@ proc loadAny(p: var TJsonParser, a: TAny, t: var TTable[biggestInt, pointer]) =
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setString(a, p.str)
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setString(a, p.str)
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next(p)
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next(p)
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else: raiseParseErr(p, "string expected")
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else: raiseParseErr(p, "string expected")
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of akInt..akInt64:
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of akInt..akInt64, akUInt..akUInt64:
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if p.kind == jsonInt:
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if p.kind == jsonInt:
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setBiggestInt(a, getInt(p))
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setBiggestInt(a, getInt(p))
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next(p)
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next(p)
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@ -18,9 +18,9 @@ type
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TRune* = distinct irune ## type that can hold any Unicode character
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TRune* = distinct irune ## type that can hold any Unicode character
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TRune16* = distinct int16 ## 16 bit Unicode character
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TRune16* = distinct int16 ## 16 bit Unicode character
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proc `<=%`*(a, b: TRune): bool {.borrow.}
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proc `<=%`*(a, b: TRune): bool = return int(a) <=% int(b)
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proc `<%`*(a, b: TRune): bool {.borrow.}
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proc `<%`*(a, b: TRune): bool = return int(a) <% int(b)
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proc `==`*(a, b: TRune): bool {.borrow.}
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proc `==`*(a, b: TRune): bool = return int(a) == int(b)
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template ones(n: expr): expr = ((1 shl n)-1)
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template ones(n: expr): expr = ((1 shl n)-1)
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@ -37,7 +37,9 @@ type # This should be he same as ast.TTypeKind
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tyPointer, tyOpenArray,
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tyPointer, tyOpenArray,
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tyString, tyCString, tyForward,
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tyString, tyCString, tyForward,
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tyInt, tyInt8, tyInt16, tyInt32, tyInt64,
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tyInt, tyInt8, tyInt16, tyInt32, tyInt64,
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tyFloat, tyFloat32, tyFloat64, tyFloat128
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tyFloat, tyFloat32, tyFloat64, tyFloat128,
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tyUInt, tyUInt8, tyUInt16, tyUInt32, tyUInt64,
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tyBigNum,
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TNimNodeKind = enum nkNone, nkSlot, nkList, nkCase
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TNimNodeKind = enum nkNone, nkSlot, nkList, nkCase
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TNimNode {.codegenType, final.} = object
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TNimNode {.codegenType, final.} = object
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@ -41,10 +41,6 @@ type # WinNT.h -- Defines the 32-Bit Windows types and constants
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type # BaseTsd.h -- Type definitions for the basic sized types
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type # BaseTsd.h -- Type definitions for the basic sized types
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# Give here only the bare minimum, to be expanded as needs arise
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# Give here only the bare minimum, to be expanded as needs arise
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UINT8* = int8
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UINT16* = int16
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UINT32* = int32
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UINT64* = int64
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LONG32* = int32
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LONG32* = int32
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ULONG32* = int32
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ULONG32* = int32
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DWORD32* = int32
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DWORD32* = int32
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@ -95,7 +91,6 @@ type # WinDef.h -- Basic Windows Type Definitions
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LPCVOID* = pointer
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LPCVOID* = pointer
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# INT* = int # Cannot work and not necessary anyway
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# INT* = int # Cannot work and not necessary anyway
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UINT* = int
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PUINT* = ptr int
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PUINT* = ptr int
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WPARAM* = LONG_PTR
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WPARAM* = LONG_PTR
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@ -18518,9 +18513,9 @@ proc DisableThreadLibraryCalls*(hLibModule: HMODULE): WINBOOL{.stdcall,
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proc GetProcAddress*(hModule: HINST, lpProcName: LPCSTR): FARPROC{.stdcall,
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proc GetProcAddress*(hModule: HINST, lpProcName: LPCSTR): FARPROC{.stdcall,
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dynlib: "kernel32", importc: "GetProcAddress".}
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dynlib: "kernel32", importc: "GetProcAddress".}
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proc GetVersion*(): DWORD{.stdcall, dynlib: "kernel32", importc: "GetVersion".}
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proc GetVersion*(): DWORD{.stdcall, dynlib: "kernel32", importc: "GetVersion".}
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proc GlobalAlloc*(uFlags: UINT, dwBytes: DWORD): HGLOBAL{.stdcall,
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proc GlobalAlloc*(uFlags: INT, dwBytes: DWORD): HGLOBAL{.stdcall,
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dynlib: "kernel32", importc: "GlobalAlloc".}
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dynlib: "kernel32", importc: "GlobalAlloc".}
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proc GlobalReAlloc*(hMem: HGLOBAL, dwBytes: DWORD, uFlags: UINT): HGLOBAL{.
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proc GlobalReAlloc*(hMem: HGLOBAL, dwBytes: DWORD, uFlags: INT): HGLOBAL{.
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stdcall, dynlib: "kernel32", importc: "GlobalReAlloc".}
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stdcall, dynlib: "kernel32", importc: "GlobalReAlloc".}
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proc GlobalSize*(hMem: HGLOBAL): DWORD{.stdcall, dynlib: "kernel32",
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proc GlobalSize*(hMem: HGLOBAL): DWORD{.stdcall, dynlib: "kernel32",
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importc: "GlobalSize".}
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importc: "GlobalSize".}
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@ -23620,8 +23615,8 @@ proc ListView_SetItemPosition32(hwndLV: HWND, i, x, y: int32): LRESULT =
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proc ListView_SetItemState(hwndLV: HWND, i, data, mask: int32): LRESULT =
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proc ListView_SetItemState(hwndLV: HWND, i, data, mask: int32): LRESULT =
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var gnu_lvi: LV_ITEM
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var gnu_lvi: LV_ITEM
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gnu_lvi.stateMask = mask
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gnu_lvi.stateMask = uint(mask)
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gnu_lvi.state = data
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gnu_lvi.state = uint(data)
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result = SendMessage(hwndLV, LVM_SETITEMSTATE, WPARAM(i),
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result = SendMessage(hwndLV, LVM_SETITEMSTATE, WPARAM(i),
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cast[LPARAM](addr(gnu_lvi)))
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cast[LPARAM](addr(gnu_lvi)))
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@ -756,9 +756,7 @@ type
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PUInt8Array* = ptr TUInt8Array
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PUInt8Array* = ptr TUInt8Array
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TUInt8Array* = array[0..high(int) shr 1, byte]
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TUInt8Array* = array[0..high(int) shr 1, byte]
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PUInt16* = ptr UInt16
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PUInt16* = ptr UInt16
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UInt16* = int16
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PUInt32* = ptr UInt32
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PUInt32* = ptr int32
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UInt32* = int32
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PUInt64* = ptr UInt64
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PUInt64* = ptr UInt64
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UInt64*{.final.} = object
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UInt64*{.final.} = object
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hi*: int32
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hi*: int32
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@ -1,6 +1,6 @@
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discard """
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discard """
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file: "system.nim"
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file: "system.nim"
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line: 640
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line: 678
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errormsg: "type mismatch"
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errormsg: "type mismatch"
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"""
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"""
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