split the inline and closure iterators into different symbol kinds for easier discrimination between them
This commit is contained in:
parent
5324c9ebba
commit
862c0ef83d
26 changed files with 110 additions and 84 deletions
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@ -469,7 +469,8 @@ type
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skResult, # special 'result' variable
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skResult, # special 'result' variable
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skProc, # a proc
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skProc, # a proc
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skMethod, # a method
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skMethod, # a method
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skIterator, # an iterator
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skIterator, # an inline iterator
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skClosureIterator, # a resumable closure iterator
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skConverter, # a type converter
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skConverter, # a type converter
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skMacro, # a macro
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skMacro, # a macro
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skTemplate, # a template; currently also misused for user-defined
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skTemplate, # a template; currently also misused for user-defined
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@ -485,8 +486,8 @@ type
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TSymKinds* = set[TSymKind]
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TSymKinds* = set[TSymKind]
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const
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const
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routineKinds* = {skProc, skMethod, skIterator, skConverter,
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routineKinds* = {skProc, skMethod, skIterator, skClosureIterator,
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skMacro, skTemplate}
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skConverter, skMacro, skTemplate}
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tfIncompleteStruct* = tfVarargs
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tfIncompleteStruct* = tfVarargs
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skError* = skUnknown
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skError* = skUnknown
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@ -820,8 +821,8 @@ type
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# the poor naming choices in the standard library.
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# the poor naming choices in the standard library.
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const
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const
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OverloadableSyms* = {skProc, skMethod, skIterator, skConverter,
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OverloadableSyms* = {skProc, skMethod, skIterator, skClosureIterator,
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skModule, skTemplate, skMacro}
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skConverter, skModule, skTemplate, skMacro}
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GenericTypes*: TTypeKinds = {tyGenericInvokation, tyGenericBody,
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GenericTypes*: TTypeKinds = {tyGenericInvokation, tyGenericBody,
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tyGenericParam}
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tyGenericParam}
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@ -843,7 +844,8 @@ const
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tyTuple, tySequence}
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tyTuple, tySequence}
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NilableTypes*: TTypeKinds = {tyPointer, tyCString, tyRef, tyPtr, tySequence,
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NilableTypes*: TTypeKinds = {tyPointer, tyCString, tyRef, tyPtr, tySequence,
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tyProc, tyString, tyError}
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tyProc, tyString, tyError}
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ExportableSymKinds* = {skVar, skConst, skProc, skMethod, skType, skIterator,
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ExportableSymKinds* = {skVar, skConst, skProc, skMethod, skType,
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skIterator, skClosureIterator,
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skMacro, skTemplate, skConverter, skEnumField, skLet, skStub}
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skMacro, skTemplate, skConverter, skEnumField, skLet, skStub}
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PersistentNodeFlags*: TNodeFlags = {nfBase2, nfBase8, nfBase16,
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PersistentNodeFlags*: TNodeFlags = {nfBase2, nfBase8, nfBase16,
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nfDotSetter, nfDotField,
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nfDotSetter, nfDotField,
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@ -869,7 +871,10 @@ const
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nkStrKinds* = {nkStrLit..nkTripleStrLit}
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nkStrKinds* = {nkStrLit..nkTripleStrLit}
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skLocalVars* = {skVar, skLet, skForVar, skParam, skResult}
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skLocalVars* = {skVar, skLet, skForVar, skParam, skResult}
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skProcKinds* = {skProc, skTemplate, skMacro, skIterator, skMethod, skConverter}
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skProcKinds* = {skProc, skTemplate, skMacro, skIterator, skClosureIterator,
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skMethod, skConverter}
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skIterators* = {skIterator, skClosureIterator}
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lfFullExternalName* = lfParamCopy # \
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lfFullExternalName* = lfParamCopy # \
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# only used when 'gCmd == cmdPretty': Indicates that the symbol has been
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# only used when 'gCmd == cmdPretty': Indicates that the symbol has been
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@ -1479,8 +1484,7 @@ proc originatingModule*(s: PSym): PSym =
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while result.kind != skModule: result = result.owner
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while result.kind != skModule: result = result.owner
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proc isRoutine*(s: PSym): bool {.inline.} =
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proc isRoutine*(s: PSym): bool {.inline.} =
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result = s.kind in {skProc, skTemplate, skMacro, skIterator, skMethod,
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result = s.kind in skProcKinds
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skConverter}
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proc hasPattern*(s: PSym): bool {.inline.} =
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proc hasPattern*(s: PSym): bool {.inline.} =
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result = isRoutine(s) and s.ast.sons[patternPos].kind != nkEmpty
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result = isRoutine(s) and s.ast.sons[patternPos].kind != nkEmpty
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@ -1803,7 +1803,7 @@ proc expr(p: BProc, n: PNode, d: var TLoc) =
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else:
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else:
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genProc(p.module, sym)
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genProc(p.module, sym)
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putLocIntoDest(p, d, sym.loc)
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putLocIntoDest(p, d, sym.loc)
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of skProc, skConverter, skIterator:
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of skProc, skConverter, skIterators:
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genProc(p.module, sym)
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genProc(p.module, sym)
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if sym.loc.r == nil or sym.loc.t == nil:
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if sym.loc.r == nil or sym.loc.t == nil:
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internalError(n.info, "expr: proc not init " & sym.name.s)
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internalError(n.info, "expr: proc not init " & sym.name.s)
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@ -863,7 +863,7 @@ proc genAsmOrEmitStmt(p: BProc, t: PNode, isAsmStmt=false): PRope =
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res.add(t.sons[i].strVal)
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res.add(t.sons[i].strVal)
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of nkSym:
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of nkSym:
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var sym = t.sons[i].sym
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var sym = t.sons[i].sym
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if sym.kind in {skProc, skIterator, skMethod}:
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if sym.kind in {skProc, skIterator, skClosureIterator, skMethod}:
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var a: TLoc
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var a: TLoc
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initLocExpr(p, t.sons[i], a)
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initLocExpr(p, t.sons[i], a)
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res.add(rdLoc(a).ropeToStr)
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res.add(rdLoc(a).ropeToStr)
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@ -69,7 +69,7 @@ proc mangleName(s: PSym): PRope =
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if result == nil:
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if result == nil:
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if gCmd == cmdCompileToLLVM:
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if gCmd == cmdCompileToLLVM:
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case s.kind
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case s.kind
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of skProc, skMethod, skConverter, skConst, skIterator:
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of skProc, skMethod, skConverter, skConst, skIterators:
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result = ~"@"
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result = ~"@"
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of skVar, skForVar, skResult, skLet:
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of skVar, skForVar, skResult, skLet:
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if sfGlobal in s.flags: result = ~"@"
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if sfGlobal in s.flags: result = ~"@"
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@ -705,7 +705,7 @@ proc cgsym(m: BModule, name: string): PRope =
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var sym = magicsys.getCompilerProc(name)
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var sym = magicsys.getCompilerProc(name)
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if sym != nil:
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if sym != nil:
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case sym.kind
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case sym.kind
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of skProc, skMethod, skConverter, skIterator: genProc(m, sym)
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of skProc, skMethod, skConverter, skIterators: genProc(m, sym)
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of skVar, skResult, skLet: genVarPrototype(m, sym)
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of skVar, skResult, skLet: genVarPrototype(m, sym)
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of skType: discard getTypeDesc(m, sym.typ)
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of skType: discard getTypeDesc(m, sym.typ)
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else: internalError("cgsym: " & name)
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else: internalError("cgsym: " & name)
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@ -366,7 +366,7 @@ proc generateJson(d: PDoc, n: PNode, jArray: PJsonNode = nil): PJsonNode =
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proc genSection(d: PDoc, kind: TSymKind) =
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proc genSection(d: PDoc, kind: TSymKind) =
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const sectionNames: array[skModule..skTemplate, string] = [
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const sectionNames: array[skModule..skTemplate, string] = [
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"Imports", "Types", "Vars", "Lets", "Consts", "Vars", "Procs", "Methods",
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"Imports", "Types", "Vars", "Lets", "Consts", "Vars", "Procs", "Methods",
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"Iterators", "Converters", "Macros", "Templates"
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"Iterators", "Iterators", "Converters", "Macros", "Templates"
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]
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]
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if d.section[kind] == nil: return
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if d.section[kind] == nil: return
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var title = sectionNames[kind].toRope
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var title = sectionNames[kind].toRope
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@ -103,7 +103,7 @@ proc importSymbol(c: PContext, n: PNode, fromMod: PSym) =
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internalError(n.info, "importSymbol: 2")
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internalError(n.info, "importSymbol: 2")
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# for an enumeration we have to add all identifiers
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# for an enumeration we have to add all identifiers
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case s.kind
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case s.kind
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of skProc, skMethod, skIterator, skMacro, skTemplate, skConverter:
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of skProcKinds:
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# for a overloadable syms add all overloaded routines
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# for a overloadable syms add all overloaded routines
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var it: TIdentIter
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var it: TIdentIter
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var e = initIdentIter(it, fromMod.tab, s.name)
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var e = initIdentIter(it, fromMod.tab, s.name)
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@ -1154,7 +1154,7 @@ proc createVar(p: PProc, typ: PType, indirect: bool): PRope =
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proc isIndirect(v: PSym): bool =
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proc isIndirect(v: PSym): bool =
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result = (sfAddrTaken in v.flags) and (mapType(v.typ) != etyObject) and
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result = (sfAddrTaken in v.flags) and (mapType(v.typ) != etyObject) and
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v.kind notin {skProc, skConverter, skMethod, skIterator}
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v.kind notin {skProc, skConverter, skMethod, skIterator, skClosureIterator}
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proc genVarInit(p: PProc, v: PSym, n: PNode) =
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proc genVarInit(p: PProc, v: PSym, n: PNode) =
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var
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var
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@ -232,7 +232,7 @@ proc newOuterContext(fn: PSym, up: POuterContext = nil): POuterContext =
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initIdNodeTable(result.localsToAccess)
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initIdNodeTable(result.localsToAccess)
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initIdTable(result.localsToEnv)
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initIdTable(result.localsToEnv)
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initIdTable(result.lambdasToEnv)
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initIdTable(result.lambdasToEnv)
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result.isIter = fn.kind == skIterator and fn.typ.callConv == ccClosure
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result.isIter = fn.kind == skClosureIterator
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if result.isIter: initIterContext(result, fn)
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if result.isIter: initIterContext(result, fn)
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proc newInnerContext(fn: PSym): PInnerContext =
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proc newInnerContext(fn: PSym): PInnerContext =
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@ -292,8 +292,7 @@ proc newCall(a, b: PSym): PNode =
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result.add newSymNode(b)
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result.add newSymNode(b)
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proc isInnerProc(s, outerProc: PSym): bool {.inline.} =
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proc isInnerProc(s, outerProc: PSym): bool {.inline.} =
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result = (s.kind in {skProc, skMethod, skConverter} or
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result = s.kind in {skProc, skMethod, skConverter, skClosureIterator} and
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s.kind == skIterator and s.typ.callConv == ccClosure) and
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s.skipGenericOwner == outerProc
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s.skipGenericOwner == outerProc
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#s.typ.callConv == ccClosure
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#s.typ.callConv == ccClosure
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@ -653,7 +652,7 @@ proc outerProcSons(o: POuterContext, n: PNode) =
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proc liftIterSym*(n: PNode): PNode =
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proc liftIterSym*(n: PNode): PNode =
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# transforms (iter) to (let env = newClosure[iter](); (iter, env))
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# transforms (iter) to (let env = newClosure[iter](); (iter, env))
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let iter = n.sym
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let iter = n.sym
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assert iter.kind == skIterator
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assert iter.kind == skClosureIterator
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result = newNodeIT(nkStmtListExpr, n.info, n.typ)
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result = newNodeIT(nkStmtListExpr, n.info, n.typ)
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@ -679,7 +678,7 @@ proc transformOuterProc(o: POuterContext, n: PNode): PNode =
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var closure = PEnv(idTableGet(o.lambdasToEnv, local))
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var closure = PEnv(idTableGet(o.lambdasToEnv, local))
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if local.kind == skIterator and local.typ.callConv == ccClosure:
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if local.kind == skClosureIterator:
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# consider: [i1, i2, i1] Since we merged the iterator's closure
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# consider: [i1, i2, i1] Since we merged the iterator's closure
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# with the captured owning variables, we need to generate the
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# with the captured owning variables, we need to generate the
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# closure generation code again:
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# closure generation code again:
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@ -843,10 +842,10 @@ proc liftForLoop*(body: PNode): PNode =
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# static binding?
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# static binding?
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var env: PSym
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var env: PSym
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if call[0].kind == nkSym and call[0].sym.kind == skIterator:
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if call[0].kind == nkSym and call[0].sym.kind == skClosureIterator:
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# createClosure()
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# createClosure()
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let iter = call[0].sym
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let iter = call[0].sym
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assert iter.kind == skIterator
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assert iter.kind == skClosureIterator
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env = copySym(getHiddenParam(iter))
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env = copySym(getHiddenParam(iter))
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var v = newNodeI(nkVarSection, body.info)
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var v = newNodeI(nkVarSection, body.info)
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@ -109,7 +109,7 @@ type
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proc getSymRepr*(s: PSym): string =
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proc getSymRepr*(s: PSym): string =
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case s.kind
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case s.kind
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of skProc, skMethod, skConverter, skIterator: result = getProcHeader(s)
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of skProc, skMethod, skConverter, skIterators: result = getProcHeader(s)
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else: result = s.name.s
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else: result = s.name.s
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proc ensureNoMissingOrUnusedSymbols(scope: PScope) =
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proc ensureNoMissingOrUnusedSymbols(scope: PScope) =
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@ -772,6 +772,17 @@ proc implictPragmas*(c: PContext, sym: PSym, n: PNode,
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addToLib(lib, sym)
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addToLib(lib, sym)
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if sym.loc.r == nil: sym.loc.r = toRope(sym.name.s)
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if sym.loc.r == nil: sym.loc.r = toRope(sym.name.s)
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proc hasPragma*(n: PNode, pragma: TSpecialWord): bool =
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if n == nil or n.sons == nil:
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return false
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for p in n.sons:
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var key = if p.kind == nkExprColonExpr: p[0] else: p
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if key.kind == nkIdent and whichKeyword(key.ident) == pragma:
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return true
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return false
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proc pragma(c: PContext, sym: PSym, n: PNode, validPragmas: TSpecialWords) =
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proc pragma(c: PContext, sym: PSym, n: PNode, validPragmas: TSpecialWords) =
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if n == nil: return
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if n == nil: return
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for i in countup(0, sonsLen(n) - 1):
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for i in countup(0, sonsLen(n) - 1):
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@ -64,7 +64,7 @@ proc pickBestCandidate(c: PContext, headSymbol: PNode,
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errors[errors.len - 1].add("\n " & err)
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errors[errors.len - 1].add("\n " & err)
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if z.state == csMatch:
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if z.state == csMatch:
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# little hack so that iterators are preferred over everything else:
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# little hack so that iterators are preferred over everything else:
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if sym.kind == skIterator: inc(z.exactMatches, 200)
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if sym.kind in skIterators: inc(z.exactMatches, 200)
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case best.state
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case best.state
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of csEmpty, csNoMatch: best = z
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of csEmpty, csNoMatch: best = z
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of csMatch:
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of csMatch:
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@ -289,8 +289,9 @@ proc explicitGenericInstantiation(c: PContext, n: PNode, s: PSym): PNode =
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result = newNodeI(a.kind, n.info)
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result = newNodeI(a.kind, n.info)
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for i in countup(0, len(a)-1):
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for i in countup(0, len(a)-1):
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var candidate = a.sons[i].sym
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var candidate = a.sons[i].sym
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if candidate.kind in {skProc, skMethod, skConverter, skIterator}:
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if candidate.kind in {skProc, skMethod, skConverter,
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# if suffices that the candidate has the proper number of generic
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skIterator, skClosureIterator}:
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# it suffices that the candidate has the proper number of generic
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# type parameters:
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# type parameters:
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if safeLen(candidate.ast.sons[genericParamsPos]) == n.len-1:
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if safeLen(candidate.ast.sons[genericParamsPos]) == n.len-1:
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result.add(explicitGenericSym(c, n, candidate))
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result.add(explicitGenericSym(c, n, candidate))
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@ -274,7 +274,7 @@ proc makeRangeType*(c: PContext; first, last: BiggestInt;
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addSonSkipIntLit(result, intType) # basetype of range
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addSonSkipIntLit(result, intType) # basetype of range
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proc markIndirect*(c: PContext, s: PSym) {.inline.} =
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proc markIndirect*(c: PContext, s: PSym) {.inline.} =
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if s.kind in {skProc, skConverter, skMethod, skIterator}:
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if s.kind in {skProc, skConverter, skMethod, skIterator, skClosureIterator}:
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incl(s.flags, sfAddrTaken)
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incl(s.flags, sfAddrTaken)
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# XXX add to 'c' for global analysis
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# XXX add to 'c' for global analysis
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@ -662,11 +662,11 @@ proc semOverloadedCallAnalyseEffects(c: PContext, n: PNode, nOrig: PNode,
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flags: TExprFlags): PNode =
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flags: TExprFlags): PNode =
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if flags*{efInTypeof, efWantIterator} != {}:
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if flags*{efInTypeof, efWantIterator} != {}:
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# consider: 'for x in pReturningArray()' --> we don't want the restriction
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# consider: 'for x in pReturningArray()' --> we don't want the restriction
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# to 'skIterator' anymore; skIterator is preferred in sigmatch already for
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# to 'skIterators' anymore; skIterators are preferred in sigmatch already
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# typeof support.
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# for typeof support.
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# for ``type(countup(1,3))``, see ``tests/ttoseq``.
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# for ``type(countup(1,3))``, see ``tests/ttoseq``.
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result = semOverloadedCall(c, n, nOrig,
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result = semOverloadedCall(c, n, nOrig,
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{skProc, skMethod, skConverter, skMacro, skTemplate, skIterator})
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{skProc, skMethod, skConverter, skMacro, skTemplate}+skIterators)
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else:
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else:
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result = semOverloadedCall(c, n, nOrig,
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result = semOverloadedCall(c, n, nOrig,
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{skProc, skMethod, skConverter, skMacro, skTemplate})
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{skProc, skMethod, skConverter, skMacro, skTemplate})
|
||||||
|
|
@ -679,7 +679,7 @@ proc semOverloadedCallAnalyseEffects(c: PContext, n: PNode, nOrig: PNode,
|
||||||
case callee.kind
|
case callee.kind
|
||||||
of skMacro, skTemplate: discard
|
of skMacro, skTemplate: discard
|
||||||
else:
|
else:
|
||||||
if (callee.kind == skIterator) and (callee.id == c.p.owner.id):
|
if (callee.kind in skIterators) and (callee.id == c.p.owner.id):
|
||||||
localError(n.info, errRecursiveDependencyX, callee.name.s)
|
localError(n.info, errRecursiveDependencyX, callee.name.s)
|
||||||
if sfNoSideEffect notin callee.flags:
|
if sfNoSideEffect notin callee.flags:
|
||||||
if {sfImportc, sfSideEffect} * callee.flags != {}:
|
if {sfImportc, sfSideEffect} * callee.flags != {}:
|
||||||
|
|
@ -1193,7 +1193,7 @@ proc semReturn(c: PContext, n: PNode): PNode =
|
||||||
result = n
|
result = n
|
||||||
checkSonsLen(n, 1)
|
checkSonsLen(n, 1)
|
||||||
if c.p.owner.kind in {skConverter, skMethod, skProc, skMacro} or
|
if c.p.owner.kind in {skConverter, skMethod, skProc, skMacro} or
|
||||||
(c.p.owner.kind == skIterator and c.p.owner.typ.callConv == ccClosure):
|
c.p.owner.kind == skClosureIterator:
|
||||||
if n.sons[0].kind != nkEmpty:
|
if n.sons[0].kind != nkEmpty:
|
||||||
# transform ``return expr`` to ``result = expr; return``
|
# transform ``return expr`` to ``result = expr; return``
|
||||||
if c.p.resultSym != nil:
|
if c.p.resultSym != nil:
|
||||||
|
|
@ -1258,7 +1258,7 @@ proc semYieldVarResult(c: PContext, n: PNode, restype: PType) =
|
||||||
proc semYield(c: PContext, n: PNode): PNode =
|
proc semYield(c: PContext, n: PNode): PNode =
|
||||||
result = n
|
result = n
|
||||||
checkSonsLen(n, 1)
|
checkSonsLen(n, 1)
|
||||||
if c.p.owner == nil or c.p.owner.kind != skIterator:
|
if c.p.owner == nil or c.p.owner.kind notin skIterators:
|
||||||
localError(n.info, errYieldNotAllowedHere)
|
localError(n.info, errYieldNotAllowedHere)
|
||||||
elif c.p.inTryStmt > 0 and c.p.owner.typ.callConv != ccInline:
|
elif c.p.inTryStmt > 0 and c.p.owner.typ.callConv != ccInline:
|
||||||
localError(n.info, errYieldNotAllowedInTryStmt)
|
localError(n.info, errYieldNotAllowedInTryStmt)
|
||||||
|
|
@ -1266,9 +1266,11 @@ proc semYield(c: PContext, n: PNode): PNode =
|
||||||
n.sons[0] = semExprWithType(c, n.sons[0]) # check for type compatibility:
|
n.sons[0] = semExprWithType(c, n.sons[0]) # check for type compatibility:
|
||||||
var restype = c.p.owner.typ.sons[0]
|
var restype = c.p.owner.typ.sons[0]
|
||||||
if restype != nil:
|
if restype != nil:
|
||||||
n.sons[0] = fitNode(c, restype.base, n.sons[0])
|
let adjustedRes = if c.p.owner.kind == skIterator: restype.base
|
||||||
|
else: restype
|
||||||
|
n.sons[0] = fitNode(c, adjustedRes, n.sons[0])
|
||||||
if n.sons[0].typ == nil: internalError(n.info, "semYield")
|
if n.sons[0].typ == nil: internalError(n.info, "semYield")
|
||||||
semYieldVarResult(c, n, restype)
|
semYieldVarResult(c, n, adjustedRes)
|
||||||
else:
|
else:
|
||||||
localError(n.info, errCannotReturnExpr)
|
localError(n.info, errCannotReturnExpr)
|
||||||
elif c.p.owner.typ.sons[0] != nil:
|
elif c.p.owner.typ.sons[0] != nil:
|
||||||
|
|
@ -1828,7 +1830,7 @@ proc semExpr(c: PContext, n: PNode, flags: TExprFlags = {}): PNode =
|
||||||
var s = lookUp(c, n)
|
var s = lookUp(c, n)
|
||||||
semCaptureSym(s, c.p.owner)
|
semCaptureSym(s, c.p.owner)
|
||||||
result = semSym(c, n, s, flags)
|
result = semSym(c, n, s, flags)
|
||||||
if s.kind in {skProc, skMethod, skIterator, skConverter}:
|
if s.kind in {skProc, skMethod, skConverter}+skIterators:
|
||||||
#performProcvarCheck(c, n, s)
|
#performProcvarCheck(c, n, s)
|
||||||
result = symChoice(c, n, s, scClosed)
|
result = symChoice(c, n, s, scClosed)
|
||||||
if result.kind == nkSym:
|
if result.kind == nkSym:
|
||||||
|
|
@ -1918,7 +1920,7 @@ proc semExpr(c: PContext, n: PNode, flags: TExprFlags = {}): PNode =
|
||||||
localError(n.info, errUseQualifier, s.name.s)
|
localError(n.info, errUseQualifier, s.name.s)
|
||||||
elif s.magic == mNone: result = semDirectOp(c, n, flags)
|
elif s.magic == mNone: result = semDirectOp(c, n, flags)
|
||||||
else: result = semMagic(c, n, s, flags)
|
else: result = semMagic(c, n, s, flags)
|
||||||
of skProc, skMethod, skConverter, skIterator:
|
of skProc, skMethod, skConverter, skIterators:
|
||||||
if s.magic == mNone: result = semDirectOp(c, n, flags)
|
if s.magic == mNone: result = semDirectOp(c, n, flags)
|
||||||
else: result = semMagic(c, n, s, flags)
|
else: result = semMagic(c, n, s, flags)
|
||||||
else:
|
else:
|
||||||
|
|
@ -1942,7 +1944,7 @@ proc semExpr(c: PContext, n: PNode, flags: TExprFlags = {}): PNode =
|
||||||
of nkBracketExpr:
|
of nkBracketExpr:
|
||||||
checkMinSonsLen(n, 1)
|
checkMinSonsLen(n, 1)
|
||||||
var s = qualifiedLookUp(c, n.sons[0], {checkUndeclared})
|
var s = qualifiedLookUp(c, n.sons[0], {checkUndeclared})
|
||||||
if s != nil and s.kind in {skProc, skMethod, skConverter, skIterator}:
|
if s != nil and s.kind in {skProc, skMethod, skConverter}+skIterators:
|
||||||
# type parameters: partial generic specialization
|
# type parameters: partial generic specialization
|
||||||
n.sons[0] = semSymGenericInstantiation(c, n.sons[0], s)
|
n.sons[0] = semSymGenericInstantiation(c, n.sons[0], s)
|
||||||
result = explicitGenericInstantiation(c, n, s)
|
result = explicitGenericInstantiation(c, n, s)
|
||||||
|
|
|
||||||
|
|
@ -42,7 +42,7 @@ proc semGenericStmtSymbol(c: PContext, n: PNode, s: PSym): PNode =
|
||||||
of skUnknown:
|
of skUnknown:
|
||||||
# Introduced in this pass! Leave it as an identifier.
|
# Introduced in this pass! Leave it as an identifier.
|
||||||
result = n
|
result = n
|
||||||
of skProc, skMethod, skIterator, skConverter:
|
of skProc, skMethod, skIterators, skConverter:
|
||||||
result = symChoice(c, n, s, scOpen)
|
result = symChoice(c, n, s, scOpen)
|
||||||
of skTemplate:
|
of skTemplate:
|
||||||
if macroToExpand(s):
|
if macroToExpand(s):
|
||||||
|
|
@ -141,7 +141,7 @@ proc semGenericStmt(c: PContext, n: PNode,
|
||||||
# symbol lookup ...
|
# symbol lookup ...
|
||||||
of skUnknown, skParam:
|
of skUnknown, skParam:
|
||||||
# Leave it as an identifier.
|
# Leave it as an identifier.
|
||||||
of skProc, skMethod, skIterator, skConverter:
|
of skProc, skMethod, skIterators, skConverter:
|
||||||
result.sons[0] = symChoice(c, n.sons[0], s, scOption)
|
result.sons[0] = symChoice(c, n.sons[0], s, scOption)
|
||||||
first = 1
|
first = 1
|
||||||
of skGenericParam:
|
of skGenericParam:
|
||||||
|
|
|
||||||
|
|
@ -76,8 +76,8 @@ proc performProcvarCheck(c: PContext, n: PNode, s: PSym) =
|
||||||
|
|
||||||
proc semProcvarCheck(c: PContext, n: PNode) =
|
proc semProcvarCheck(c: PContext, n: PNode) =
|
||||||
let n = n.skipConv
|
let n = n.skipConv
|
||||||
if n.kind == nkSym and n.sym.kind in {skProc, skMethod, skIterator,
|
if n.kind == nkSym and n.sym.kind in {skProc, skMethod, skConverter,
|
||||||
skConverter}:
|
skIterator, skClosureIterator}:
|
||||||
performProcvarCheck(c, n, n.sym)
|
performProcvarCheck(c, n, n.sym)
|
||||||
|
|
||||||
proc semProc(c: PContext, n: PNode): PNode
|
proc semProc(c: PContext, n: PNode): PNode
|
||||||
|
|
@ -665,7 +665,7 @@ proc semFor(c: PContext, n: PNode): PNode =
|
||||||
# first class iterator:
|
# first class iterator:
|
||||||
result = semForVars(c, n)
|
result = semForVars(c, n)
|
||||||
elif call.kind notin nkCallKinds or call.sons[0].kind != nkSym or
|
elif call.kind notin nkCallKinds or call.sons[0].kind != nkSym or
|
||||||
call.sons[0].sym.kind != skIterator:
|
call.sons[0].sym.kind notin skIterators:
|
||||||
if length == 3:
|
if length == 3:
|
||||||
n.sons[length-2] = implicitIterator(c, "items", n.sons[length-2])
|
n.sons[length-2] = implicitIterator(c, "items", n.sons[length-2])
|
||||||
elif length == 4:
|
elif length == 4:
|
||||||
|
|
@ -998,8 +998,7 @@ proc activate(c: PContext, n: PNode) =
|
||||||
discard
|
discard
|
||||||
|
|
||||||
proc maybeAddResult(c: PContext, s: PSym, n: PNode) =
|
proc maybeAddResult(c: PContext, s: PSym, n: PNode) =
|
||||||
if s.typ.sons[0] != nil and
|
if s.typ.sons[0] != nil and s.kind != skIterator:
|
||||||
(s.kind != skIterator or s.typ.callConv == ccClosure):
|
|
||||||
addResult(c, s.typ.sons[0], n.info, s.kind)
|
addResult(c, s.typ.sons[0], n.info, s.kind)
|
||||||
addResultNode(c, n)
|
addResultNode(c, n)
|
||||||
|
|
||||||
|
|
@ -1074,12 +1073,12 @@ proc semProcAux(c: PContext, n: PNode, kind: TSymKind,
|
||||||
rawAddSon(s.typ, nil)
|
rawAddSon(s.typ, nil)
|
||||||
if n.sons[patternPos].kind != nkEmpty:
|
if n.sons[patternPos].kind != nkEmpty:
|
||||||
n.sons[patternPos] = semPattern(c, n.sons[patternPos])
|
n.sons[patternPos] = semPattern(c, n.sons[patternPos])
|
||||||
if s.kind == skIterator:
|
if s.kind in skIterators:
|
||||||
s.typ.flags.incl(tfIterator)
|
s.typ.flags.incl(tfIterator)
|
||||||
|
|
||||||
var proto = searchForProc(c, s.scope, s)
|
var proto = searchForProc(c, s.scope, s)
|
||||||
if proto == nil:
|
if proto == nil:
|
||||||
if s.kind == skIterator and isAnon: s.typ.callConv = ccClosure
|
if s.kind == skClosureIterator: s.typ.callConv = ccClosure
|
||||||
else: s.typ.callConv = lastOptionEntry(c).defaultCC
|
else: s.typ.callConv = lastOptionEntry(c).defaultCC
|
||||||
# add it here, so that recursive procs are possible:
|
# add it here, so that recursive procs are possible:
|
||||||
if sfGenSym in s.flags: discard
|
if sfGenSym in s.flags: discard
|
||||||
|
|
@ -1139,7 +1138,7 @@ proc semProcAux(c: PContext, n: PNode, kind: TSymKind,
|
||||||
n.sons[bodyPos] = transformBody(c.module, semBody, s)
|
n.sons[bodyPos] = transformBody(c.module, semBody, s)
|
||||||
popProcCon(c)
|
popProcCon(c)
|
||||||
else:
|
else:
|
||||||
if s.typ.sons[0] != nil and kind != skIterator:
|
if s.typ.sons[0] != nil and kind notin skIterators:
|
||||||
addDecl(c, newSym(skUnknown, getIdent"result", nil, n.info))
|
addDecl(c, newSym(skUnknown, getIdent"result", nil, n.info))
|
||||||
var toBind = initIntSet()
|
var toBind = initIntSet()
|
||||||
n.sons[bodyPos] = semGenericStmtScope(c, n.sons[bodyPos], {}, toBind)
|
n.sons[bodyPos] = semGenericStmtScope(c, n.sons[bodyPos], {}, toBind)
|
||||||
|
|
@ -1166,7 +1165,10 @@ proc determineType(c: PContext, s: PSym) =
|
||||||
discard semProcAux(c, s.ast, s.kind, {}, stepDetermineType)
|
discard semProcAux(c, s.ast, s.kind, {}, stepDetermineType)
|
||||||
|
|
||||||
proc semIterator(c: PContext, n: PNode): PNode =
|
proc semIterator(c: PContext, n: PNode): PNode =
|
||||||
result = semProcAux(c, n, skIterator, iteratorPragmas)
|
let kind = if hasPragma(n[pragmasPos], wClosure) or
|
||||||
|
n[namePos].kind == nkEmpty: skClosureIterator
|
||||||
|
else: skIterator
|
||||||
|
result = semProcAux(c, n, kind, iteratorPragmas)
|
||||||
var s = result.sons[namePos].sym
|
var s = result.sons[namePos].sym
|
||||||
var t = s.typ
|
var t = s.typ
|
||||||
if t.sons[0] == nil and s.typ.callConv != ccClosure:
|
if t.sons[0] == nil and s.typ.callConv != ccClosure:
|
||||||
|
|
|
||||||
|
|
@ -171,7 +171,7 @@ proc semTemplSymbol(c: PContext, n: PNode, s: PSym): PNode =
|
||||||
of skUnknown:
|
of skUnknown:
|
||||||
# Introduced in this pass! Leave it as an identifier.
|
# Introduced in this pass! Leave it as an identifier.
|
||||||
result = n
|
result = n
|
||||||
of skProc, skMethod, skIterator, skConverter, skTemplate, skMacro:
|
of OverloadableSyms:
|
||||||
result = symChoice(c, n, s, scOpen)
|
result = symChoice(c, n, s, scOpen)
|
||||||
of skGenericParam:
|
of skGenericParam:
|
||||||
result = newSymNodeTypeDesc(s, n.info)
|
result = newSymNodeTypeDesc(s, n.info)
|
||||||
|
|
@ -348,7 +348,7 @@ proc semTemplBody(c: var TemplCtx, n: PNode): PNode =
|
||||||
of nkMethodDef:
|
of nkMethodDef:
|
||||||
result = semRoutineInTemplBody(c, n, skMethod)
|
result = semRoutineInTemplBody(c, n, skMethod)
|
||||||
of nkIteratorDef:
|
of nkIteratorDef:
|
||||||
result = semRoutineInTemplBody(c, n, skIterator)
|
result = semRoutineInTemplBody(c, n, n[namePos].sym.kind)
|
||||||
of nkTemplateDef:
|
of nkTemplateDef:
|
||||||
result = semRoutineInTemplBody(c, n, skTemplate)
|
result = semRoutineInTemplBody(c, n, skTemplate)
|
||||||
of nkMacroDef:
|
of nkMacroDef:
|
||||||
|
|
|
||||||
|
|
@ -953,6 +953,23 @@ proc semTypeClass(c: PContext, n: PNode, prev: PType): PType =
|
||||||
let typ = semTypeNode(c, n, nil)
|
let typ = semTypeNode(c, n, nil)
|
||||||
result.sons.safeAdd(typ)
|
result.sons.safeAdd(typ)
|
||||||
|
|
||||||
|
proc semProcTypeWithScope(c: PContext, n: PNode,
|
||||||
|
prev: PType, kind: TSymKind): PType =
|
||||||
|
checkSonsLen(n, 2)
|
||||||
|
openScope(c)
|
||||||
|
result = semProcTypeNode(c, n.sons[0], nil, prev, kind)
|
||||||
|
# dummy symbol for `pragma`:
|
||||||
|
var s = newSymS(kind, newIdentNode(getIdent("dummy"), n.info), c)
|
||||||
|
s.typ = result
|
||||||
|
if n.sons[1].kind == nkEmpty or n.sons[1].len == 0:
|
||||||
|
if result.callConv == ccDefault:
|
||||||
|
result.callConv = ccClosure
|
||||||
|
#Message(n.info, warnImplicitClosure, renderTree(n))
|
||||||
|
else:
|
||||||
|
pragma(c, s, n.sons[1], procTypePragmas)
|
||||||
|
when useEffectSystem: setEffectsForProcType(result, n.sons[1])
|
||||||
|
closeScope(c)
|
||||||
|
|
||||||
proc semTypeNode(c: PContext, n: PNode, prev: PType): PType =
|
proc semTypeNode(c: PContext, n: PNode, prev: PType): PType =
|
||||||
result = nil
|
result = nil
|
||||||
if gCmd == cmdIdeTools: suggestExpr(c, n)
|
if gCmd == cmdIdeTools: suggestExpr(c, n)
|
||||||
|
|
@ -1075,27 +1092,18 @@ proc semTypeNode(c: PContext, n: PNode, prev: PType): PType =
|
||||||
var base = semTypeNode(c, n.sons[0], nil)
|
var base = semTypeNode(c, n.sons[0], nil)
|
||||||
result.rawAddSon(base)
|
result.rawAddSon(base)
|
||||||
result.flags.incl tfHasStatic
|
result.flags.incl tfHasStatic
|
||||||
of nkProcTy, nkIteratorTy:
|
of nkIteratorTy:
|
||||||
|
if n.sonsLen == 0:
|
||||||
|
result = newConstraint(c, tyIter)
|
||||||
|
else:
|
||||||
|
result = semProcTypeWithScope(c, n, prev, skClosureIterator)
|
||||||
|
result.flags.incl(tfIterator)
|
||||||
|
result.callConv = ccClosure
|
||||||
|
of nkProcTy:
|
||||||
if n.sonsLen == 0:
|
if n.sonsLen == 0:
|
||||||
result = newConstraint(c, tyProc)
|
result = newConstraint(c, tyProc)
|
||||||
else:
|
else:
|
||||||
checkSonsLen(n, 2)
|
result = semProcTypeWithScope(c, n, prev, skProc)
|
||||||
openScope(c)
|
|
||||||
result = semProcTypeNode(c, n.sons[0], nil, prev, skProc)
|
|
||||||
# dummy symbol for `pragma`:
|
|
||||||
var s = newSymS(skProc, newIdentNode(getIdent("dummy"), n.info), c)
|
|
||||||
s.typ = result
|
|
||||||
if n.sons[1].kind == nkEmpty or n.sons[1].len == 0:
|
|
||||||
if result.callConv == ccDefault:
|
|
||||||
result.callConv = ccClosure
|
|
||||||
#Message(n.info, warnImplicitClosure, renderTree(n))
|
|
||||||
else:
|
|
||||||
pragma(c, s, n.sons[1], procTypePragmas)
|
|
||||||
when useEffectSystem: setEffectsForProcType(result, n.sons[1])
|
|
||||||
closeScope(c)
|
|
||||||
if n.kind == nkIteratorTy:
|
|
||||||
result.flags.incl(tfIterator)
|
|
||||||
result.callConv = ccClosure
|
|
||||||
of nkEnumTy: result = semEnum(c, n, prev)
|
of nkEnumTy: result = semEnum(c, n, prev)
|
||||||
of nkType: result = n.typ
|
of nkType: result = n.typ
|
||||||
of nkStmtListType: result = semStmtListType(c, n, prev)
|
of nkStmtListType: result = semStmtListType(c, n, prev)
|
||||||
|
|
|
||||||
|
|
@ -1142,7 +1142,7 @@ proc paramTypesMatch*(m: var TCandidate, f, a: PType,
|
||||||
z.calleeSym = m.calleeSym
|
z.calleeSym = m.calleeSym
|
||||||
var best = -1
|
var best = -1
|
||||||
for i in countup(0, sonsLen(arg) - 1):
|
for i in countup(0, sonsLen(arg) - 1):
|
||||||
if arg.sons[i].sym.kind in {skProc, skIterator, skMethod, skConverter}:
|
if arg.sons[i].sym.kind in {skProc, skMethod, skConverter}+skIterators:
|
||||||
copyCandidate(z, m)
|
copyCandidate(z, m)
|
||||||
var r = typeRel(z, f, arg.sons[i].typ)
|
var r = typeRel(z, f, arg.sons[i].typ)
|
||||||
if r != isNone:
|
if r != isNone:
|
||||||
|
|
|
||||||
|
|
@ -113,7 +113,7 @@ proc newAsgnStmt(c: PTransf, le: PNode, ri: PTransNode): PTransNode =
|
||||||
result[1] = ri
|
result[1] = ri
|
||||||
|
|
||||||
proc transformSymAux(c: PTransf, n: PNode): PNode =
|
proc transformSymAux(c: PTransf, n: PNode): PNode =
|
||||||
#if n.sym.kind == skIterator and n.sym.typ.callConv == ccClosure:
|
#if n.sym.kind == skClosureIterator:
|
||||||
# return liftIterSym(n)
|
# return liftIterSym(n)
|
||||||
var b: PNode
|
var b: PNode
|
||||||
var tc = c.transCon
|
var tc = c.transCon
|
||||||
|
|
@ -434,7 +434,6 @@ proc transformFor(c: PTransf, n: PNode): PTransNode =
|
||||||
var length = sonsLen(n)
|
var length = sonsLen(n)
|
||||||
var call = n.sons[length - 2]
|
var call = n.sons[length - 2]
|
||||||
if call.kind notin nkCallKinds or call.sons[0].kind != nkSym or
|
if call.kind notin nkCallKinds or call.sons[0].kind != nkSym or
|
||||||
call.sons[0].typ.callConv == ccClosure or
|
|
||||||
call.sons[0].sym.kind != skIterator:
|
call.sons[0].sym.kind != skIterator:
|
||||||
n.sons[length-1] = transformLoopBody(c, n.sons[length-1]).PNode
|
n.sons[length-1] = transformLoopBody(c, n.sons[length-1]).PNode
|
||||||
return lambdalifting.liftForLoop(n).PTransNode
|
return lambdalifting.liftForLoop(n).PTransNode
|
||||||
|
|
@ -454,7 +453,7 @@ proc transformFor(c: PTransf, n: PNode): PTransNode =
|
||||||
var newC = newTransCon(getCurrOwner(c))
|
var newC = newTransCon(getCurrOwner(c))
|
||||||
newC.forStmt = n
|
newC.forStmt = n
|
||||||
newC.forLoopBody = loopBody
|
newC.forLoopBody = loopBody
|
||||||
if iter.kind != skIterator: internalError(call.info, "transformFor")
|
internalAssert iter.kind == skIterator
|
||||||
# generate access statements for the parameters (unless they are constant)
|
# generate access statements for the parameters (unless they are constant)
|
||||||
pushTransCon(c, newC)
|
pushTransCon(c, newC)
|
||||||
for i in countup(1, sonsLen(call) - 1):
|
for i in countup(1, sonsLen(call) - 1):
|
||||||
|
|
@ -741,7 +740,7 @@ proc transformBody*(module: PSym, n: PNode, prc: PSym): PNode =
|
||||||
var c = openTransf(module, "")
|
var c = openTransf(module, "")
|
||||||
result = processTransf(c, n, prc)
|
result = processTransf(c, n, prc)
|
||||||
result = liftLambdas(prc, result)
|
result = liftLambdas(prc, result)
|
||||||
#if prc.kind == skIterator and prc.typ.callConv == ccClosure:
|
#if prc.kind == skClosureIterator:
|
||||||
# result = lambdalifting.liftIterator(prc, result)
|
# result = lambdalifting.liftIterator(prc, result)
|
||||||
incl(result.flags, nfTransf)
|
incl(result.flags, nfTransf)
|
||||||
when useEffectSystem: trackProc(prc, result)
|
when useEffectSystem: trackProc(prc, result)
|
||||||
|
|
|
||||||
|
|
@ -1247,7 +1247,7 @@ proc computeSize(typ: PType): BiggestInt =
|
||||||
|
|
||||||
proc getReturnType*(s: PSym): PType =
|
proc getReturnType*(s: PSym): PType =
|
||||||
# Obtains the return type of a iterator/proc/macro/template
|
# Obtains the return type of a iterator/proc/macro/template
|
||||||
assert s.kind in {skProc, skTemplate, skMacro, skIterator}
|
assert s.kind in skProcKinds
|
||||||
result = s.typ.sons[0]
|
result = s.typ.sons[0]
|
||||||
|
|
||||||
proc getSize(typ: PType): BiggestInt =
|
proc getSize(typ: PType): BiggestInt =
|
||||||
|
|
|
||||||
|
|
@ -1311,7 +1311,7 @@ proc gen(c: PCtx; n: PNode; dest: var TDest; flags: TGenFlags = {}) =
|
||||||
case s.kind
|
case s.kind
|
||||||
of skVar, skForVar, skTemp, skLet, skParam, skResult:
|
of skVar, skForVar, skTemp, skLet, skParam, skResult:
|
||||||
genRdVar(c, n, dest, flags)
|
genRdVar(c, n, dest, flags)
|
||||||
of skProc, skConverter, skMacro, skTemplate, skMethod, skIterator:
|
of skProc, skConverter, skMacro, skTemplate, skMethod, skIterators:
|
||||||
# 'skTemplate' is only allowed for 'getAst' support:
|
# 'skTemplate' is only allowed for 'getAst' support:
|
||||||
if sfImportc in s.flags: c.importcSym(n.info, s)
|
if sfImportc in s.flags: c.importcSym(n.info, s)
|
||||||
genLit(c, n, dest)
|
genLit(c, n, dest)
|
||||||
|
|
|
||||||
|
|
@ -279,8 +279,8 @@ skForVar
|
||||||
col 7: ""
|
col 7: ""
|
||||||
|
|
||||||
|
|
||||||
skIterator
|
skIterator, skClosureIterator
|
||||||
----------
|
-----------------------------
|
||||||
|
|
||||||
The fourth column will be the empty string if the iterator is being
|
The fourth column will be the empty string if the iterator is being
|
||||||
defined, since at that point in the file the parser hasn't processed
|
defined, since at that point in the file the parser hasn't processed
|
||||||
|
|
|
||||||
|
|
@ -88,7 +88,7 @@ type
|
||||||
nskUnknown, nskConditional, nskDynLib, nskParam,
|
nskUnknown, nskConditional, nskDynLib, nskParam,
|
||||||
nskGenericParam, nskTemp, nskModule, nskType, nskVar, nskLet,
|
nskGenericParam, nskTemp, nskModule, nskType, nskVar, nskLet,
|
||||||
nskConst, nskResult,
|
nskConst, nskResult,
|
||||||
nskProc, nskMethod, nskIterator,
|
nskProc, nskMethod, nskIterator, nskClosureIterator,
|
||||||
nskConverter, nskMacro, nskTemplate, nskField,
|
nskConverter, nskMacro, nskTemplate, nskField,
|
||||||
nskEnumField, nskForVar, nskLabel,
|
nskEnumField, nskForVar, nskLabel,
|
||||||
nskStub
|
nskStub
|
||||||
|
|
|
||||||
|
|
@ -1,6 +1,6 @@
|
||||||
discard """
|
discard """
|
||||||
line: 10
|
line: 10
|
||||||
errormsg: "value returned by statement has to be discarded"
|
errormsg: "value of type 'string' has to be discarded"
|
||||||
"""
|
"""
|
||||||
|
|
||||||
# bug #578
|
# bug #578
|
||||||
|
|
|
||||||
|
|
@ -8,7 +8,7 @@ discard """
|
||||||
"""
|
"""
|
||||||
|
|
||||||
proc factory(a, b: int): iterator (): int =
|
proc factory(a, b: int): iterator (): int =
|
||||||
iterator foo(): int =
|
iterator foo(): int {.closure.} =
|
||||||
var x = a
|
var x = a
|
||||||
while x <= b:
|
while x <= b:
|
||||||
yield x
|
yield x
|
||||||
|
|
|
||||||
Loading…
Add table
Add a link
Reference in a new issue