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446 lines
16 KiB
Nim
446 lines
16 KiB
Nim
#
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#
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# The Nim Compiler
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# (c) Copyright 2015 Andreas Rumpf
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#
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# See the file "copying.txt", included in this
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# distribution, for details about the copyright.
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#
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# This implements the first pass over the generic body; it resolves some
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# symbols. Thus for generics there is a two-phase symbol lookup just like
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# in C++.
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# A problem is that it cannot be detected if the symbol is introduced
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# as in ``var x = ...`` or used because macros/templates can hide this!
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# So we have to eval templates/macros right here so that symbol
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# lookup can be accurate.
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# included from sem.nim
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proc getIdentNode(n: PNode): PNode =
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case n.kind
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of nkPostfix: result = getIdentNode(n.sons[1])
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of nkPragmaExpr: result = getIdentNode(n.sons[0])
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of nkIdent, nkAccQuoted, nkSym: result = n
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else:
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illFormedAst(n)
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result = n
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type
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GenericCtx = object
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toMixin: IntSet
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cursorInBody: bool # only for nimsuggest
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bracketExpr: PNode
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type
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TSemGenericFlag = enum
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withinBind, withinTypeDesc, withinMixin
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TSemGenericFlags = set[TSemGenericFlag]
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proc semGenericStmt(c: PContext, n: PNode,
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flags: TSemGenericFlags, ctx: var GenericCtx): PNode
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proc semGenericStmtScope(c: PContext, n: PNode,
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flags: TSemGenericFlags,
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ctx: var GenericCtx): PNode =
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openScope(c)
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result = semGenericStmt(c, n, flags, ctx)
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closeScope(c)
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template macroToExpand(s: expr): expr =
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s.kind in {skMacro, skTemplate} and (s.typ.len == 1 or sfImmediate in s.flags)
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proc semGenericStmtSymbol(c: PContext, n: PNode, s: PSym,
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ctx: var GenericCtx): PNode =
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semIdeForTemplateOrGenericCheck(n, ctx.cursorInBody)
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incl(s.flags, sfUsed)
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case s.kind
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of skUnknown:
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# Introduced in this pass! Leave it as an identifier.
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result = n
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of skProc, skMethod, skIterators, skConverter, skModule:
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result = symChoice(c, n, s, scOpen)
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of skTemplate:
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if macroToExpand(s):
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styleCheckUse(n.info, s)
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result = semTemplateExpr(c, n, s, {efNoSemCheck})
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result = semGenericStmt(c, result, {}, ctx)
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else:
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result = symChoice(c, n, s, scOpen)
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of skMacro:
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if macroToExpand(s):
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styleCheckUse(n.info, s)
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result = semMacroExpr(c, n, n, s, {efNoSemCheck})
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result = semGenericStmt(c, result, {}, ctx)
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else:
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result = symChoice(c, n, s, scOpen)
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of skGenericParam:
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if s.typ != nil and s.typ.kind == tyStatic:
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if s.typ.n != nil:
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result = s.typ.n
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else:
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result = n
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else:
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result = newSymNodeTypeDesc(s, n.info)
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styleCheckUse(n.info, s)
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of skParam:
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result = n
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styleCheckUse(n.info, s)
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of skType:
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if (s.typ != nil) and
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(s.typ.flags * {tfGenericTypeParam, tfImplicitTypeParam} == {}):
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result = newSymNodeTypeDesc(s, n.info)
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else:
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result = n
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styleCheckUse(n.info, s)
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else:
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result = newSymNode(s, n.info)
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styleCheckUse(n.info, s)
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proc lookup(c: PContext, n: PNode, flags: TSemGenericFlags,
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ctx: var GenericCtx): PNode =
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result = n
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let ident = considerQuotedIdent(n)
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var s = searchInScopes(c, ident).skipAlias(n)
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if s == nil:
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if ident.id notin ctx.toMixin and withinMixin notin flags:
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localError(n.info, errUndeclaredIdentifier, ident.s)
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else:
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if withinBind in flags:
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result = symChoice(c, n, s, scClosed)
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elif s.name.id in ctx.toMixin:
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result = symChoice(c, n, s, scForceOpen)
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else:
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result = semGenericStmtSymbol(c, n, s, ctx)
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# else: leave as nkIdent
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proc newDot(n, b: PNode): PNode =
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result = newNodeI(nkDotExpr, n.info)
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result.add(n.sons[0])
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result.add(b)
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proc fuzzyLookup(c: PContext, n: PNode, flags: TSemGenericFlags,
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ctx: var GenericCtx; isMacro: var bool): PNode =
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assert n.kind == nkDotExpr
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semIdeForTemplateOrGenericCheck(n, ctx.cursorInBody)
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let luf = if withinMixin notin flags: {checkUndeclared} else: {}
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var s = qualifiedLookUp(c, n, luf)
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if s != nil:
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result = semGenericStmtSymbol(c, n, s, ctx)
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else:
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n.sons[0] = semGenericStmt(c, n.sons[0], flags, ctx)
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result = n
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let n = n[1]
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let ident = considerQuotedIdent(n)
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var s = searchInScopes(c, ident).skipAlias(n)
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if s != nil and s.kind in routineKinds:
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isMacro = s.kind in {skTemplate, skMacro}
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if withinBind in flags:
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result = newDot(result, symChoice(c, n, s, scClosed))
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elif s.name.id in ctx.toMixin:
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result = newDot(result, symChoice(c, n, s, scForceOpen))
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else:
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let syms = semGenericStmtSymbol(c, n, s, ctx)
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if syms.kind == nkSym:
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let choice = symChoice(c, n, s, scForceOpen)
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choice.kind = nkClosedSymChoice
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result = newDot(result, choice)
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else:
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result = newDot(result, syms)
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proc addTempDecl(c: PContext; n: PNode; kind: TSymKind) =
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let s = newSymS(skUnknown, getIdentNode(n), c)
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addPrelimDecl(c, s)
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styleCheckDef(n.info, s, kind)
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proc semGenericStmt(c: PContext, n: PNode,
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flags: TSemGenericFlags, ctx: var GenericCtx): PNode =
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result = n
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#if gCmd == cmdIdeTools: suggestStmt(c, n)
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semIdeForTemplateOrGenericCheck(n, ctx.cursorInBody)
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case n.kind
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of nkIdent, nkAccQuoted:
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result = lookup(c, n, flags, ctx)
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of nkDotExpr:
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#let luf = if withinMixin notin flags: {checkUndeclared} else: {}
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#var s = qualifiedLookUp(c, n, luf)
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#if s != nil: result = semGenericStmtSymbol(c, n, s)
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# XXX for example: ``result.add`` -- ``add`` needs to be looked up here...
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var dummy: bool
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result = fuzzyLookup(c, n, flags, ctx, dummy)
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of nkEmpty, nkSym..nkNilLit:
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# see tests/compile/tgensymgeneric.nim:
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# We need to open the gensym'ed symbol again so that the instantiation
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# creates a fresh copy; but this is wrong the very first reason for gensym
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# is that scope rules cannot be used! So simply removing 'sfGenSym' does
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# not work. Copying the symbol does not work either because we're already
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# the owner of the symbol! What we need to do is to copy the symbol
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# in the generic instantiation process...
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discard
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of nkBind:
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result = semGenericStmt(c, n.sons[0], flags+{withinBind}, ctx)
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of nkMixinStmt:
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result = semMixinStmt(c, n, ctx.toMixin)
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of nkCall, nkHiddenCallConv, nkInfix, nkPrefix, nkCommand, nkCallStrLit:
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# check if it is an expression macro:
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checkMinSonsLen(n, 1)
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let fn = n.sons[0]
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var s = qualifiedLookUp(c, fn, {})
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if s == nil and withinMixin notin flags and
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fn.kind in {nkIdent, nkAccQuoted} and
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considerQuotedIdent(fn).id notin ctx.toMixin:
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localError(n.info, errUndeclaredIdentifier, fn.renderTree)
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var first = 0
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var mixinContext = false
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if s != nil:
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incl(s.flags, sfUsed)
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mixinContext = s.magic in {mDefined, mDefinedInScope, mCompiles}
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let scOption = if s.name.id in ctx.toMixin: scForceOpen else: scOpen
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case s.kind
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of skMacro:
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if macroToExpand(s):
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styleCheckUse(fn.info, s)
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result = semMacroExpr(c, n, n, s, {efNoSemCheck})
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result = semGenericStmt(c, result, {}, ctx)
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else:
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n.sons[0] = symChoice(c, fn, s, scOption)
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result = n
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mixinContext = true
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of skTemplate:
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if macroToExpand(s):
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styleCheckUse(fn.info, s)
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result = semTemplateExpr(c, n, s, {efNoSemCheck})
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result = semGenericStmt(c, result, {}, ctx)
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else:
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n.sons[0] = symChoice(c, fn, s, scOption)
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result = n
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# BUGFIX: we must not return here, we need to do first phase of
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# symbol lookup. Also since templates and macros can do scope injections
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# we need to put the ``c`` in ``t(c)`` in a mixin context to prevent
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# the famous "undeclared identifier: it" bug:
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mixinContext = true
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of skUnknown, skParam:
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# Leave it as an identifier.
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discard
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of skProc, skMethod, skIterators, skConverter, skModule:
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result.sons[0] = symChoice(c, fn, s, scOption)
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# do not check of 's.magic==mRoof' here because it might be some
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# other '^' but after overload resolution the proper one:
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if ctx.bracketExpr != nil and n.len == 2 and s.name.s == "^":
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result.add ctx.bracketExpr
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first = 1
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of skGenericParam:
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result.sons[0] = newSymNodeTypeDesc(s, fn.info)
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styleCheckUse(fn.info, s)
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first = 1
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of skType:
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# bad hack for generics:
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if (s.typ != nil) and (s.typ.kind != tyGenericParam):
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result.sons[0] = newSymNodeTypeDesc(s, fn.info)
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styleCheckUse(fn.info, s)
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first = 1
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else:
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result.sons[0] = newSymNode(s, fn.info)
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styleCheckUse(fn.info, s)
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first = 1
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elif fn.kind == nkDotExpr:
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result.sons[0] = fuzzyLookup(c, fn, flags, ctx, mixinContext)
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first = 1
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# Consider 'when declared(globalsSlot): ThreadVarSetValue(globalsSlot, ...)'
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# in threads.nim: the subtle preprocessing here binds 'globalsSlot' which
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# is not exported and yet the generic 'threadProcWrapper' works correctly.
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let flags = if mixinContext: flags+{withinMixin} else: flags
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for i in countup(first, sonsLen(result) - 1):
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result.sons[i] = semGenericStmt(c, result.sons[i], flags, ctx)
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of nkCurlyExpr:
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result = newNodeI(nkCall, n.info)
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result.add newIdentNode(getIdent("{}"), n.info)
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for i in 0 ..< n.len: result.add(n[i])
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result = semGenericStmt(c, result, flags, ctx)
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of nkBracketExpr:
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result = newNodeI(nkCall, n.info)
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result.add newIdentNode(getIdent("[]"), n.info)
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for i in 0 ..< n.len: result.add(n[i])
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withBracketExpr ctx, n.sons[0]:
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result = semGenericStmt(c, result, flags, ctx)
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of nkAsgn, nkFastAsgn:
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checkSonsLen(n, 2)
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let a = n.sons[0]
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let b = n.sons[1]
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let k = a.kind
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case k
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of nkCurlyExpr:
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result = newNodeI(nkCall, n.info)
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result.add newIdentNode(getIdent("{}="), n.info)
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for i in 0 ..< a.len: result.add(a[i])
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result.add(b)
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result = semGenericStmt(c, result, flags, ctx)
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of nkBracketExpr:
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result = newNodeI(nkCall, n.info)
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result.add newIdentNode(getIdent("[]="), n.info)
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for i in 0 ..< a.len: result.add(a[i])
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result.add(b)
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withBracketExpr ctx, a.sons[0]:
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result = semGenericStmt(c, result, flags, ctx)
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else:
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for i in countup(0, sonsLen(n) - 1):
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result.sons[i] = semGenericStmt(c, n.sons[i], flags, ctx)
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of nkIfStmt:
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for i in countup(0, sonsLen(n)-1):
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n.sons[i] = semGenericStmtScope(c, n.sons[i], flags, ctx)
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of nkWhenStmt:
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for i in countup(0, sonsLen(n)-1):
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n.sons[i] = semGenericStmt(c, n.sons[i], flags+{withinMixin}, ctx)
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of nkWhileStmt:
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openScope(c)
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for i in countup(0, sonsLen(n)-1):
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n.sons[i] = semGenericStmt(c, n.sons[i], flags, ctx)
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closeScope(c)
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of nkCaseStmt:
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openScope(c)
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n.sons[0] = semGenericStmt(c, n.sons[0], flags, ctx)
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for i in countup(1, sonsLen(n)-1):
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var a = n.sons[i]
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checkMinSonsLen(a, 1)
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var L = sonsLen(a)
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for j in countup(0, L-2):
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a.sons[j] = semGenericStmt(c, a.sons[j], flags, ctx)
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a.sons[L - 1] = semGenericStmtScope(c, a.sons[L-1], flags, ctx)
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closeScope(c)
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of nkForStmt, nkParForStmt:
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var L = sonsLen(n)
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openScope(c)
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n.sons[L - 2] = semGenericStmt(c, n.sons[L-2], flags, ctx)
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for i in countup(0, L - 3):
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addTempDecl(c, n.sons[i], skForVar)
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n.sons[L - 1] = semGenericStmt(c, n.sons[L-1], flags, ctx)
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closeScope(c)
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of nkBlockStmt, nkBlockExpr, nkBlockType:
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checkSonsLen(n, 2)
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openScope(c)
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if n.sons[0].kind != nkEmpty:
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addTempDecl(c, n.sons[0], skLabel)
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n.sons[1] = semGenericStmt(c, n.sons[1], flags, ctx)
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closeScope(c)
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of nkTryStmt:
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checkMinSonsLen(n, 2)
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n.sons[0] = semGenericStmtScope(c, n.sons[0], flags, ctx)
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for i in countup(1, sonsLen(n)-1):
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var a = n.sons[i]
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checkMinSonsLen(a, 1)
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var L = sonsLen(a)
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for j in countup(0, L-2):
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a.sons[j] = semGenericStmt(c, a.sons[j], flags+{withinTypeDesc}, ctx)
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a.sons[L-1] = semGenericStmtScope(c, a.sons[L-1], flags, ctx)
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of nkVarSection, nkLetSection:
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for i in countup(0, sonsLen(n) - 1):
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var a = n.sons[i]
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if a.kind == nkCommentStmt: continue
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if (a.kind != nkIdentDefs) and (a.kind != nkVarTuple): illFormedAst(a)
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checkMinSonsLen(a, 3)
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var L = sonsLen(a)
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a.sons[L-2] = semGenericStmt(c, a.sons[L-2], flags+{withinTypeDesc}, ctx)
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a.sons[L-1] = semGenericStmt(c, a.sons[L-1], flags, ctx)
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for j in countup(0, L-3):
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addTempDecl(c, getIdentNode(a.sons[j]), skVar)
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of nkGenericParams:
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for i in countup(0, sonsLen(n) - 1):
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var a = n.sons[i]
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if (a.kind != nkIdentDefs): illFormedAst(a)
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checkMinSonsLen(a, 3)
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var L = sonsLen(a)
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a.sons[L-2] = semGenericStmt(c, a.sons[L-2], flags+{withinTypeDesc}, ctx)
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# do not perform symbol lookup for default expressions
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for j in countup(0, L-3):
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addTempDecl(c, getIdentNode(a.sons[j]), skType)
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of nkConstSection:
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for i in countup(0, sonsLen(n) - 1):
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var a = n.sons[i]
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if a.kind == nkCommentStmt: continue
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if (a.kind != nkConstDef): illFormedAst(a)
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checkSonsLen(a, 3)
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addTempDecl(c, getIdentNode(a.sons[0]), skConst)
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a.sons[1] = semGenericStmt(c, a.sons[1], flags+{withinTypeDesc}, ctx)
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a.sons[2] = semGenericStmt(c, a.sons[2], flags, ctx)
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of nkTypeSection:
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for i in countup(0, sonsLen(n) - 1):
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var a = n.sons[i]
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if a.kind == nkCommentStmt: continue
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if (a.kind != nkTypeDef): illFormedAst(a)
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checkSonsLen(a, 3)
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addTempDecl(c, getIdentNode(a.sons[0]), skType)
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for i in countup(0, sonsLen(n) - 1):
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var a = n.sons[i]
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if a.kind == nkCommentStmt: continue
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if (a.kind != nkTypeDef): illFormedAst(a)
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checkSonsLen(a, 3)
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if a.sons[1].kind != nkEmpty:
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openScope(c)
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a.sons[1] = semGenericStmt(c, a.sons[1], flags, ctx)
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a.sons[2] = semGenericStmt(c, a.sons[2], flags+{withinTypeDesc}, ctx)
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closeScope(c)
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else:
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a.sons[2] = semGenericStmt(c, a.sons[2], flags+{withinTypeDesc}, ctx)
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of nkEnumTy:
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if n.sonsLen > 0:
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if n.sons[0].kind != nkEmpty:
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n.sons[0] = semGenericStmt(c, n.sons[0], flags+{withinTypeDesc}, ctx)
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for i in countup(1, sonsLen(n) - 1):
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var a: PNode
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case n.sons[i].kind
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of nkEnumFieldDef: a = n.sons[i].sons[0]
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of nkIdent: a = n.sons[i]
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else: illFormedAst(n)
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addDecl(c, newSymS(skUnknown, getIdentNode(a), c))
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of nkObjectTy, nkTupleTy, nkTupleClassTy:
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discard
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of nkFormalParams:
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checkMinSonsLen(n, 1)
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if n.sons[0].kind != nkEmpty:
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n.sons[0] = semGenericStmt(c, n.sons[0], flags+{withinTypeDesc}, ctx)
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for i in countup(1, sonsLen(n) - 1):
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var a = n.sons[i]
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if (a.kind != nkIdentDefs): illFormedAst(a)
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checkMinSonsLen(a, 3)
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var L = sonsLen(a)
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a.sons[L-2] = semGenericStmt(c, a.sons[L-2], flags+{withinTypeDesc}, ctx)
|
|
a.sons[L-1] = semGenericStmt(c, a.sons[L-1], flags, ctx)
|
|
for j in countup(0, L-3):
|
|
addTempDecl(c, getIdentNode(a.sons[j]), skParam)
|
|
of nkProcDef, nkMethodDef, nkConverterDef, nkMacroDef, nkTemplateDef,
|
|
nkIteratorDef, nkLambdaKinds:
|
|
checkSonsLen(n, bodyPos + 1)
|
|
if n.sons[namePos].kind != nkEmpty:
|
|
addTempDecl(c, getIdentNode(n.sons[0]), skProc)
|
|
openScope(c)
|
|
n.sons[genericParamsPos] = semGenericStmt(c, n.sons[genericParamsPos],
|
|
flags, ctx)
|
|
if n.sons[paramsPos].kind != nkEmpty:
|
|
if n.sons[paramsPos].sons[0].kind != nkEmpty:
|
|
addPrelimDecl(c, newSym(skUnknown, getIdent("result"), nil, n.info))
|
|
n.sons[paramsPos] = semGenericStmt(c, n.sons[paramsPos], flags, ctx)
|
|
n.sons[pragmasPos] = semGenericStmt(c, n.sons[pragmasPos], flags, ctx)
|
|
var body: PNode
|
|
if n.sons[namePos].kind == nkSym: body = n.sons[namePos].sym.getBody
|
|
else: body = n.sons[bodyPos]
|
|
n.sons[bodyPos] = semGenericStmtScope(c, body, flags, ctx)
|
|
closeScope(c)
|
|
of nkPragma, nkPragmaExpr: discard
|
|
of nkExprColonExpr, nkExprEqExpr:
|
|
checkMinSonsLen(n, 2)
|
|
result.sons[1] = semGenericStmt(c, n.sons[1], flags, ctx)
|
|
else:
|
|
for i in countup(0, sonsLen(n) - 1):
|
|
result.sons[i] = semGenericStmt(c, n.sons[i], flags, ctx)
|
|
|
|
proc semGenericStmt(c: PContext, n: PNode): PNode =
|
|
var ctx: GenericCtx
|
|
ctx.toMixin = initIntset()
|
|
result = semGenericStmt(c, n, {}, ctx)
|
|
semIdeForTemplateOrGeneric(c, result, ctx.cursorInBody)
|