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871 lines
30 KiB
Nim
871 lines
30 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 module implements lookup helpers.
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import std/[algorithm, strutils, tables]
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when defined(nimPreviewSlimSystem):
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import std/assertions
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import
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ast, astalgo, idents, semdata, types, msgs, options,
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renderer, lineinfos, modulegraphs, astmsgs, wordrecg
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import std/[intsets, sets]
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proc ensureNoMissingOrUnusedSymbols(c: PContext; scope: PScope)
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proc noidentError(conf: ConfigRef; n, origin: PNode) =
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var m = ""
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if origin != nil:
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m.add "in expression '" & origin.renderTree & "': "
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m.add "identifier expected, but found '" & n.renderTree & "'"
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localError(conf, n.info, m)
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proc considerQuotedIdent*(c: PContext; n: PNode, origin: PNode = nil): PIdent =
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## Retrieve a PIdent from a PNode, taking into account accent nodes.
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## ``origin`` can be nil. If it is not nil, it is used for a better
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## error message.
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template handleError(n, origin: PNode) =
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noidentError(c.config, n, origin)
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result = getIdent(c.cache, "<Error>")
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case n.kind
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of nkIdent: result = n.ident
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of nkSym: result = n.sym.name
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of nkAccQuoted:
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case n.len
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of 0: handleError(n, origin)
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of 1: result = considerQuotedIdent(c, n[0], origin)
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else:
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var id = ""
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for i in 0..<n.len:
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let x = n[i]
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case x.kind
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of nkIdent: id.add(x.ident.s)
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of nkSym: id.add(x.sym.name.s)
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of nkSymChoices:
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if x[0].kind == nkSym:
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id.add(x[0].sym.name.s)
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else:
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handleError(n, origin)
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of nkLiterals - nkFloatLiterals: id.add(x.renderTree)
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else: handleError(n, origin)
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result = getIdent(c.cache, id)
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of nkOpenSymChoice, nkClosedSymChoice:
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if n[0].kind == nkSym:
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result = n[0].sym.name
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else:
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handleError(n, origin)
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else:
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handleError(n, origin)
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template addSym*(scope: PScope, s: PSym) =
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strTableAdd(scope.symbols, s)
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proc addUniqueSym*(scope: PScope, s: PSym): PSym =
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result = strTableInclReportConflict(scope.symbols, s)
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proc openScope*(c: PContext): PScope {.discardable.} =
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result = PScope(parent: c.currentScope,
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symbols: initStrTable(),
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depthLevel: c.scopeDepth + 1)
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c.currentScope = result
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proc rawCloseScope*(c: PContext) =
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c.currentScope = c.currentScope.parent
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proc closeScope*(c: PContext) =
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ensureNoMissingOrUnusedSymbols(c, c.currentScope)
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rawCloseScope(c)
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iterator allScopes*(scope: PScope): PScope =
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var current = scope
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while current != nil:
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yield current
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current = current.parent
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iterator localScopesFrom*(c: PContext; scope: PScope): PScope =
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for s in allScopes(scope):
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if s == c.topLevelScope: break
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yield s
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proc isShadowScope*(s: PScope): bool {.inline.} =
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s.parent != nil and s.parent.depthLevel == s.depthLevel
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proc localSearchInScope*(c: PContext, s: PIdent): PSym =
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var scope = c.currentScope
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result = strTableGet(scope.symbols, s)
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while result == nil and scope.isShadowScope:
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# We are in a shadow scope, check in the parent too
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scope = scope.parent
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result = strTableGet(scope.symbols, s)
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proc initIdentIter(ti: var ModuleIter; marked: var IntSet; im: ImportedModule; name: PIdent;
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g: ModuleGraph): PSym =
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result = initModuleIter(ti, g, im.m, name)
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while result != nil:
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let b =
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case im.mode
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of importAll: true
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of importSet: result.id in im.imported
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of importExcept: name.id notin im.exceptSet
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if b and not containsOrIncl(marked, result.id):
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return result
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result = nextModuleIter(ti, g)
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proc nextIdentIter(ti: var ModuleIter; marked: var IntSet; im: ImportedModule;
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g: ModuleGraph): PSym =
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while true:
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result = nextModuleIter(ti, g)
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if result == nil: return nil
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case im.mode
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of importAll:
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if not containsOrIncl(marked, result.id):
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return result
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of importSet:
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if result.id in im.imported and not containsOrIncl(marked, result.id):
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return result
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of importExcept:
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if result.name.id notin im.exceptSet and not containsOrIncl(marked, result.id):
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return result
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iterator symbols(im: ImportedModule; marked: var IntSet; name: PIdent; g: ModuleGraph): PSym =
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var ti: ModuleIter
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var candidate = initIdentIter(ti, marked, im, name, g)
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while candidate != nil:
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yield candidate
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candidate = nextIdentIter(ti, marked, im, g)
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iterator importedItems*(c: PContext; name: PIdent): PSym =
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var marked = initIntSet()
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for im in c.imports.mitems:
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for s in symbols(im, marked, name, c.graph):
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yield s
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proc allPureEnumFields(c: PContext; name: PIdent): seq[PSym] =
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var ti: TIdentIter
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result = @[]
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var res = initIdentIter(ti, c.pureEnumFields, name)
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while res != nil:
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result.add res
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res = nextIdentIter(ti, c.pureEnumFields)
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iterator allSyms*(c: PContext): (PSym, int, bool) =
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# really iterate over all symbols in all the scopes. This is expensive
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# and only used by suggest.nim.
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var isLocal = true
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var scopeN = 0
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for scope in allScopes(c.currentScope):
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if scope == c.topLevelScope: isLocal = false
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dec scopeN
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for item in scope.symbols:
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yield (item, scopeN, isLocal)
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dec scopeN
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isLocal = false
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for im in c.imports.mitems:
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for s in modulegraphs.allSyms(c.graph, im.m):
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assert s != nil
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yield (s, scopeN, isLocal)
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iterator uniqueSyms*(c: PContext): (PSym, int, bool) =
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## Like [allSyms] except only returns unique symbols (Uniqueness determined by line + name)
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# Track seen symbols so we don't duplicate them.
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# The int is for the symbols name, and line info is
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# to be able to tell apart symbols with same name but on different lines
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var seen = initHashSet[(TLineInfo, int)]()
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for res in allSyms(c):
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if not seen.containsOrIncl((res[0].info, res[0].name.id)):
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yield res
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proc someSymFromImportTable*(c: PContext; name: PIdent; ambiguous: var bool): PSym =
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var marked = initIntSet()
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var symSet = OverloadableSyms
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result = nil
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block outer:
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for im in c.imports.mitems:
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for s in symbols(im, marked, name, c.graph):
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if result == nil:
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result = s
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elif s.kind notin symSet or result.kind notin symSet:
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ambiguous = true
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break outer
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proc searchInScopes*(c: PContext, s: PIdent; ambiguous: var bool): PSym =
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for scope in allScopes(c.currentScope):
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result = strTableGet(scope.symbols, s)
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if result != nil: return result
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result = someSymFromImportTable(c, s, ambiguous)
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proc debugScopes*(c: PContext; limit=0, max = int.high) {.deprecated.} =
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var i = 0
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var count = 0
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for scope in allScopes(c.currentScope):
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echo "scope ", i
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for h in 0..high(scope.symbols.data):
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if scope.symbols.data[h] != nil:
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if count >= max: return
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echo count, ": ", scope.symbols.data[h].name.s
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count.inc
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if i == limit: return
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inc i
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proc searchInScopesAllCandidatesFilterBy*(c: PContext, s: PIdent, filter: TSymKinds): seq[PSym] =
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result = @[]
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for scope in allScopes(c.currentScope):
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var ti: TIdentIter
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var candidate = initIdentIter(ti, scope.symbols, s)
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while candidate != nil:
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if candidate.kind in filter:
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result.add candidate
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candidate = nextIdentIter(ti, scope.symbols)
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if result.len == 0:
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var marked = initIntSet()
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for im in c.imports.mitems:
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for s in symbols(im, marked, s, c.graph):
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if s.kind in filter:
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result.add s
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proc searchInScopesFilterBy*(c: PContext, s: PIdent, filter: TSymKinds): seq[PSym] =
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result = @[]
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block outer:
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for scope in allScopes(c.currentScope):
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var ti: TIdentIter
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var candidate = initIdentIter(ti, scope.symbols, s)
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while candidate != nil:
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if candidate.kind in filter:
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result.add candidate
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# Break here, because further symbols encountered would be shadowed
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break outer
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candidate = nextIdentIter(ti, scope.symbols)
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if result.len == 0:
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var marked = initIntSet()
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for im in c.imports.mitems:
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for s in symbols(im, marked, s, c.graph):
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if s.kind in filter:
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result.add s
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proc isAmbiguous*(c: PContext, s: PIdent, filter: TSymKinds, sym: var PSym): bool =
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result = false
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block outer:
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for scope in allScopes(c.currentScope):
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var ti: TIdentIter
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var candidate = initIdentIter(ti, scope.symbols, s)
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var scopeHasCandidate = false
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while candidate != nil:
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if candidate.kind in filter:
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if scopeHasCandidate:
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# 2 candidates in same scope, ambiguous
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return true
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else:
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scopeHasCandidate = true
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sym = candidate
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candidate = nextIdentIter(ti, scope.symbols)
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if scopeHasCandidate:
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# scope had a candidate but wasn't ambiguous
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return false
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var importsHaveCandidate = false
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var marked = initIntSet()
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for im in c.imports.mitems:
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for s in symbols(im, marked, s, c.graph):
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if s.kind in filter:
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if importsHaveCandidate:
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# 2 candidates among imports, ambiguous
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return true
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else:
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importsHaveCandidate = true
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sym = s
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if importsHaveCandidate:
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# imports had a candidate but wasn't ambiguous
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return false
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proc errorSym*(c: PContext, n: PNode): PSym =
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## creates an error symbol to avoid cascading errors (for IDE support)
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var m = n
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# ensure that 'considerQuotedIdent' can't fail:
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if m.kind == nkDotExpr: m = m[1]
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let ident = if m.kind in {nkIdent, nkSym, nkAccQuoted}:
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considerQuotedIdent(c, m)
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else:
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getIdent(c.cache, "err:" & renderTree(m))
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result = newSym(skError, ident, c.idgen, getCurrOwner(c), n.info, {})
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result.typ = errorType(c)
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incl(result.flags, sfDiscardable)
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# pretend it's from the top level scope to prevent cascading errors:
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if c.config.cmd != cmdInteractive and c.compilesContextId == 0:
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c.moduleScope.addSym(result)
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type
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TOverloadIterMode* = enum
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oimDone, oimNoQualifier, oimSelfModule, oimOtherModule, oimSymChoice,
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oimSymChoiceLocalLookup
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TOverloadIter* = object
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it*: TIdentIter
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mit*: ModuleIter
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m*: PSym
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mode*: TOverloadIterMode
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symChoiceIndex*: int
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currentScope: PScope
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importIdx: int
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marked: IntSet
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proc getSymRepr*(conf: ConfigRef; s: PSym, getDeclarationPath = true): string =
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case s.kind
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of routineKinds, skType:
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result = getProcHeader(conf, s, getDeclarationPath = getDeclarationPath)
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else:
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result = "'$1'" % s.name.s
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if getDeclarationPath:
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result.addDeclaredLoc(conf, s)
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proc ensureNoMissingOrUnusedSymbols(c: PContext; scope: PScope) =
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# check if all symbols have been used and defined:
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var it: TTabIter
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var s = initTabIter(it, scope.symbols)
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var missingImpls = 0
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var unusedSyms: seq[tuple[sym: PSym, key: string]] = @[]
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while s != nil:
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if sfForward in s.flags and s.kind notin {skType, skModule}:
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# too many 'implementation of X' errors are annoying
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# and slow 'suggest' down:
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if missingImpls == 0:
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localError(c.config, s.info, "implementation of '$1' expected" %
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getSymRepr(c.config, s, getDeclarationPath=false))
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inc missingImpls
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elif {sfUsed, sfExported} * s.flags == {}:
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if s.kind notin {skForVar, skParam, skMethod, skUnknown, skGenericParam, skEnumField}:
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# XXX: implicit type params are currently skTypes
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# maybe they can be made skGenericParam as well.
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if s.typ != nil and tfImplicitTypeParam notin s.typ.flags and
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s.typ.kind != tyGenericParam:
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unusedSyms.add (s, toFileLineCol(c.config, s.info))
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s = nextIter(it, scope.symbols)
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for (s, _) in sortedByIt(unusedSyms, it.key):
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message(c.config, s.info, hintXDeclaredButNotUsed, s.name.s)
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proc wrongRedefinition*(c: PContext; info: TLineInfo, s: string;
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conflictsWith: TLineInfo, note = errGenerated) =
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## Emit a redefinition error if in non-interactive mode
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if c.config.cmd != cmdInteractive:
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localError(c.config, info, note,
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"redefinition of '$1'; previous declaration here: $2" %
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[s, c.config $ conflictsWith])
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# xxx pending bootstrap >= 1.4, replace all those overloads with a single one:
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# proc addDecl*(c: PContext, sym: PSym, info = sym.info, scope = c.currentScope) {.inline.} =
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proc addDeclAt*(c: PContext; scope: PScope, sym: PSym, info: TLineInfo) =
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if sym.name.id == ord(wUnderscore): return
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let conflict = scope.addUniqueSym(sym)
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if conflict != nil:
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if sym.kind == skModule and conflict.kind == skModule:
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# e.g.: import foo; import foo
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# xxx we could refine this by issuing a different hint for the case
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# where a duplicate import happens inside an include.
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if c.importModuleMap[sym.id] == c.importModuleMap[conflict.id]:
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#only hints if the conflict is the actual module not just a shared name
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localError(c.config, info, hintDuplicateModuleImport,
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"duplicate import of '$1'; previous import here: $2" %
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[sym.name.s, c.config $ conflict.info])
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else:
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wrongRedefinition(c, info, sym.name.s, conflict.info, errGenerated)
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proc addDeclAt*(c: PContext; scope: PScope, sym: PSym) {.inline.} =
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addDeclAt(c, scope, sym, sym.info)
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proc addDecl*(c: PContext, sym: PSym, info: TLineInfo) {.inline.} =
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addDeclAt(c, c.currentScope, sym, info)
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proc addDecl*(c: PContext, sym: PSym) {.inline.} =
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addDeclAt(c, c.currentScope, sym)
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proc addPrelimDecl*(c: PContext, sym: PSym) =
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discard c.currentScope.addUniqueSym(sym)
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from ic / ic import addHidden
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proc addInterfaceDeclAux(c: PContext, sym: PSym) =
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## adds symbol to the module for either private or public access.
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if sfExported in sym.flags:
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# add to interface:
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if c.module != nil: exportSym(c, sym)
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else: internalError(c.config, sym.info, "addInterfaceDeclAux")
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elif sym.kind in ExportableSymKinds and c.module != nil and isTopLevelInsideDeclaration(c, sym):
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strTableAdd(semtabAll(c.graph, c.module), sym)
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if c.config.symbolFiles != disabledSf:
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addHidden(c.encoder, c.packedRepr, sym)
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proc addInterfaceDeclAt*(c: PContext, scope: PScope, sym: PSym) =
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## adds a symbol on the scope and the interface if appropriate
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addDeclAt(c, scope, sym)
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if not scope.isShadowScope:
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# adding into a non-shadow scope, we need to handle exports, etc
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addInterfaceDeclAux(c, sym)
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proc addInterfaceDecl*(c: PContext, sym: PSym) {.inline.} =
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## adds a decl and the interface if appropriate
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addInterfaceDeclAt(c, c.currentScope, sym)
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proc addOverloadableSymAt*(c: PContext; scope: PScope, fn: PSym) =
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## adds an symbol to the given scope, will check for and raise errors if it's
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## a redefinition as opposed to an overload.
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if fn.kind notin OverloadableSyms:
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internalError(c.config, fn.info, "addOverloadableSymAt")
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return
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if fn.name.id != ord(wUnderscore):
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let check = strTableGet(scope.symbols, fn.name)
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if check != nil and check.kind notin OverloadableSyms:
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wrongRedefinition(c, fn.info, fn.name.s, check.info)
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else:
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scope.addSym(fn)
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proc addInterfaceOverloadableSymAt*(c: PContext, scope: PScope, sym: PSym) =
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## adds an overloadable symbol on the scope and the interface if appropriate
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addOverloadableSymAt(c, scope, sym)
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if not scope.isShadowScope:
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# adding into a non-shadow scope, we need to handle exports, etc
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addInterfaceDeclAux(c, sym)
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proc openShadowScope*(c: PContext) =
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## opens a shadow scope, just like any other scope except the depth is the
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## same as the parent -- see `isShadowScope`.
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c.currentScope = PScope(parent: c.currentScope,
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symbols: initStrTable(),
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depthLevel: c.scopeDepth)
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proc closeShadowScope*(c: PContext) =
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## closes the shadow scope, but doesn't merge any of the symbols
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## Does not check for unused symbols or missing forward decls since a macro
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## or template consumes this AST
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rawCloseScope(c)
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proc mergeShadowScope*(c: PContext) =
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## close the existing scope and merge in all defined symbols, this will also
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## trigger any export related code if this is into a non-shadow scope.
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##
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## Merges:
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## shadow -> shadow: add symbols to the parent but check for redefinitions etc
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## shadow -> non-shadow: the above, but also handle exports and all that
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let shadowScope = c.currentScope
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c.rawCloseScope
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for sym in shadowScope.symbols:
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if sym.kind in OverloadableSyms:
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c.addInterfaceOverloadableSymAt(c.currentScope, sym)
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else:
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c.addInterfaceDecl(sym)
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import std/[editdistance, heapqueue]
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type SpellCandidate = object
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dist: int
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depth: int
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msg: string
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sym: PSym
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template toOrderTup(a: SpellCandidate): (int, int, string) =
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# `dist` is first, to favor nearby matches
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# `depth` is next, to favor nearby enclosing scopes among ties
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# `sym.name.s` is last, to make the list ordered and deterministic among ties
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(a.dist, a.depth, a.msg)
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proc `<`(a, b: SpellCandidate): bool =
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a.toOrderTup < b.toOrderTup
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proc mustFixSpelling(c: PContext): bool {.inline.} =
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result = c.config.spellSuggestMax != 0 and c.compilesContextId == 0
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# don't slowdown inside compiles()
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proc fixSpelling(c: PContext, n: PNode, ident: PIdent, result: var string) =
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## when we cannot find the identifier, suggest nearby spellings
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var list = initHeapQueue[SpellCandidate]()
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let name0 = ident.s.nimIdentNormalize
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for (sym, depth, isLocal) in allSyms(c):
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let depth = -depth - 1
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let dist = editDistance(name0, sym.name.s.nimIdentNormalize)
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var msg: string = ""
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msg.add "\n ($1, $2): '$3'" % [$dist, $depth, sym.name.s]
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list.push SpellCandidate(dist: dist, depth: depth, msg: msg, sym: sym)
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if list.len == 0: return
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let e0 = list[0]
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var
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count = 0
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last: PIdent = nil
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while true:
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# pending https://github.com/timotheecour/Nim/issues/373 use more efficient `itemsSorted`.
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if list.len == 0: break
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let e = list.pop()
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if c.config.spellSuggestMax == spellSuggestSecretSauce:
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const
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minLengthForSuggestion = 4
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maxCount = 3 # avoids ton of matches; three counts for equal distances
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if e.dist > e0.dist or count >= maxCount or name0.len < minLengthForSuggestion: break
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elif count >= c.config.spellSuggestMax: break
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if count == 0:
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result.add "\ncandidates (edit distance, scope distance); see '--spellSuggest': "
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if e.sym.name != last:
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result.add e.msg
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count.inc
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last = e.sym.name
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proc errorUseQualifier(c: PContext; info: TLineInfo; s: PSym; amb: var bool): PSym =
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var err = "ambiguous identifier: '" & s.name.s & "'"
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var i = 0
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var ignoredModules = 0
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result = nil
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for candidate in importedItems(c, s.name):
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if i == 0: err.add " -- use one of the following:\n"
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else: err.add "\n"
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err.add " " & candidate.owner.name.s & "." & candidate.name.s
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err.add ": " & typeToString(candidate.typ)
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if candidate.kind == skModule:
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inc ignoredModules
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else:
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result = candidate
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inc i
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if ignoredModules != i-1:
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localError(c.config, info, errGenerated, err)
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result = nil
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else:
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amb = false
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proc errorUseQualifier*(c: PContext; info: TLineInfo; s: PSym) =
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var amb: bool
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discard errorUseQualifier(c, info, s, amb)
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proc errorUseQualifier(c: PContext; info: TLineInfo; candidates: seq[PSym]; prefix = "use one of") =
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var err = "ambiguous identifier: '" & candidates[0].name.s & "'"
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var i = 0
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for candidate in candidates:
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if i == 0: err.add " -- $1 the following:\n" % prefix
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else: err.add "\n"
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err.add " " & candidate.owner.name.s & "." & candidate.name.s
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err.add ": " & typeToString(candidate.typ)
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inc i
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localError(c.config, info, errGenerated, err)
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proc errorUseQualifier*(c: PContext; info:TLineInfo; choices: PNode) =
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var candidates = newSeq[PSym](choices.len)
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let prefix = if choices[0].typ.kind != tyProc: "use one of" else: "you need a helper proc to disambiguate"
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for i, n in choices:
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candidates[i] = n.sym
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errorUseQualifier(c, info, candidates, prefix)
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proc errorUndeclaredIdentifier*(c: PContext; info: TLineInfo; name: string, extra = "") =
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var err: string
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if name == "_":
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err = "the special identifier '_' is ignored in declarations and cannot be used"
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else:
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err = "undeclared identifier: '" & name & "'" & extra
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if c.recursiveDep.len > 0:
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err.add "\nThis might be caused by a recursive module dependency:\n"
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err.add c.recursiveDep
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# prevent excessive errors for 'nim check'
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c.recursiveDep = ""
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localError(c.config, info, errGenerated, err)
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proc errorUndeclaredIdentifierHint*(c: PContext; n: PNode, ident: PIdent): PSym =
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var extra = ""
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if c.mustFixSpelling: fixSpelling(c, n, ident, extra)
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errorUndeclaredIdentifier(c, n.info, ident.s, extra)
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result = errorSym(c, n)
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proc lookUp*(c: PContext, n: PNode): PSym =
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# Looks up a symbol. Generates an error in case of nil.
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var amb = false
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case n.kind
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of nkIdent:
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result = searchInScopes(c, n.ident, amb)
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if result == nil: result = errorUndeclaredIdentifierHint(c, n, n.ident)
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of nkSym:
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result = n.sym
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of nkAccQuoted:
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var ident = considerQuotedIdent(c, n)
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result = searchInScopes(c, ident, amb)
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if result == nil: result = errorUndeclaredIdentifierHint(c, n, ident)
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else:
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internalError(c.config, n.info, "lookUp")
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return nil
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if amb:
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#contains(c.ambiguousSymbols, result.id):
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result = errorUseQualifier(c, n.info, result, amb)
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when false:
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if result.kind == skStub: loadStub(result)
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type
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TLookupFlag* = enum
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checkAmbiguity, checkUndeclared, checkModule, checkPureEnumFields
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proc qualifiedLookUp*(c: PContext, n: PNode, flags: set[TLookupFlag]): PSym =
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const allExceptModule = {low(TSymKind)..high(TSymKind)} - {skModule, skPackage}
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case n.kind
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of nkIdent, nkAccQuoted:
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var amb = false
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var ident = considerQuotedIdent(c, n)
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if checkModule in flags:
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result = searchInScopes(c, ident, amb)
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else:
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let candidates = searchInScopesFilterBy(c, ident, allExceptModule)
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if candidates.len > 0:
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result = candidates[0]
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amb = candidates.len > 1
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if amb and checkAmbiguity in flags:
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errorUseQualifier(c, n.info, candidates)
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else:
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result = nil
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if result == nil:
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let candidates = allPureEnumFields(c, ident)
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if candidates.len > 0:
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result = candidates[0]
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amb = candidates.len > 1
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if amb and checkAmbiguity in flags:
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errorUseQualifier(c, n.info, candidates)
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if result == nil and checkUndeclared in flags:
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result = errorUndeclaredIdentifierHint(c, n, ident)
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elif checkAmbiguity in flags and result != nil and amb:
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result = errorUseQualifier(c, n.info, result, amb)
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c.isAmbiguous = amb
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of nkSym:
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result = n.sym
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of nkDotExpr:
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result = nil
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var m = qualifiedLookUp(c, n[0], (flags * {checkUndeclared}) + {checkModule})
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if m != nil and m.kind == skModule:
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var ident: PIdent = nil
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if n[1].kind == nkIdent:
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ident = n[1].ident
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elif n[1].kind == nkAccQuoted:
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ident = considerQuotedIdent(c, n[1])
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if ident != nil:
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if m == c.module:
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result = strTableGet(c.topLevelScope.symbols, ident)
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else:
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if c.importModuleLookup.getOrDefault(m.name.id).len > 1:
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var amb: bool
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result = errorUseQualifier(c, n.info, m, amb)
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else:
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result = someSym(c.graph, m, ident)
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if result == nil and checkUndeclared in flags:
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result = errorUndeclaredIdentifierHint(c, n[1], ident)
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elif n[1].kind == nkSym:
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result = n[1].sym
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if result.owner != nil and result.owner != m and checkUndeclared in flags:
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# dotExpr in templates can end up here
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result = errorUndeclaredIdentifierHint(c, n[1], considerQuotedIdent(c, n[1]))
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elif checkUndeclared in flags and
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n[1].kind notin {nkOpenSymChoice, nkClosedSymChoice}:
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localError(c.config, n[1].info, "identifier expected, but got: " &
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renderTree(n[1]))
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result = errorSym(c, n[1])
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else:
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result = nil
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when false:
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if result != nil and result.kind == skStub: loadStub(result)
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proc initOverloadIter*(o: var TOverloadIter, c: PContext, n: PNode): PSym =
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o.importIdx = -1
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o.marked = initIntSet()
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case n.kind
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of nkIdent, nkAccQuoted:
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result = nil
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var ident = considerQuotedIdent(c, n)
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var scope = c.currentScope
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o.mode = oimNoQualifier
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while true:
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result = initIdentIter(o.it, scope.symbols, ident)
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if result != nil:
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o.currentScope = scope
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break
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else:
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scope = scope.parent
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if scope == nil:
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for i in 0..c.imports.high:
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result = initIdentIter(o.mit, o.marked, c.imports[i], ident, c.graph)
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if result != nil:
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o.currentScope = nil
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o.importIdx = i
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return result
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return nil
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of nkSym:
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result = n.sym
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o.mode = oimDone
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of nkDotExpr:
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result = nil
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o.mode = oimOtherModule
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o.m = qualifiedLookUp(c, n[0], {checkUndeclared, checkModule})
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if o.m != nil and o.m.kind == skModule:
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var ident: PIdent = nil
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if n[1].kind == nkIdent:
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ident = n[1].ident
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elif n[1].kind == nkAccQuoted:
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ident = considerQuotedIdent(c, n[1], n)
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if ident != nil:
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if o.m == c.module:
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# a module may access its private members:
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result = initIdentIter(o.it, c.topLevelScope.symbols,
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ident)
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o.mode = oimSelfModule
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else:
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result = initModuleIter(o.mit, c.graph, o.m, ident)
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else:
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noidentError(c.config, n[1], n)
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result = errorSym(c, n[1])
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of nkClosedSymChoice, nkOpenSymChoice:
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o.mode = oimSymChoice
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if n[0].kind == nkSym:
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result = n[0].sym
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else:
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o.mode = oimDone
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return nil
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o.symChoiceIndex = 1
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o.marked = initIntSet()
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incl(o.marked, result.id)
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else: result = nil
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when false:
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if result != nil and result.kind == skStub: loadStub(result)
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proc lastOverloadScope*(o: TOverloadIter): int =
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case o.mode
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of oimNoQualifier:
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result = if o.importIdx >= 0: 0
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elif o.currentScope.isNil: -1
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else: o.currentScope.depthLevel
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of oimSelfModule: result = 1
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of oimOtherModule: result = 0
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else: result = -1
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proc nextOverloadIterImports(o: var TOverloadIter, c: PContext, n: PNode): PSym =
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result = nil
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assert o.currentScope == nil
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var idx = o.importIdx+1
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o.importIdx = c.imports.len # assume the other imported modules lack this symbol too
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while idx < c.imports.len:
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result = initIdentIter(o.mit, o.marked, c.imports[idx], o.it.name, c.graph)
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if result != nil:
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# oh, we were wrong, some other module had the symbol, so remember that:
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o.importIdx = idx
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break
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inc idx
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proc symChoiceExtension(o: var TOverloadIter; c: PContext; n: PNode): PSym =
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result = nil
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assert o.currentScope == nil
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while o.importIdx < c.imports.len:
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result = initIdentIter(o.mit, o.marked, c.imports[o.importIdx], o.it.name, c.graph)
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#while result != nil and result.id in o.marked:
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# result = nextIdentIter(o.it, o.marked, c.imports[o.importIdx])
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if result != nil:
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#assert result.id notin o.marked
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return result
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inc o.importIdx
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proc nextOverloadIter*(o: var TOverloadIter, c: PContext, n: PNode): PSym =
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case o.mode
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of oimDone:
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result = nil
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of oimNoQualifier:
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if o.currentScope != nil:
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assert o.importIdx < 0
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result = nextIdentIter(o.it, o.currentScope.symbols)
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while result == nil:
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o.currentScope = o.currentScope.parent
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if o.currentScope != nil:
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result = initIdentIter(o.it, o.currentScope.symbols, o.it.name)
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# BUGFIX: o.it.name <-> n.ident
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else:
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o.importIdx = 0
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if c.imports.len > 0:
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result = initIdentIter(o.mit, o.marked, c.imports[o.importIdx], o.it.name, c.graph)
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if result == nil:
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result = nextOverloadIterImports(o, c, n)
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break
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elif o.importIdx < c.imports.len:
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result = nextIdentIter(o.mit, o.marked, c.imports[o.importIdx], c.graph)
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if result == nil:
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result = nextOverloadIterImports(o, c, n)
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else:
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result = nil
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of oimSelfModule:
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result = nextIdentIter(o.it, c.topLevelScope.symbols)
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of oimOtherModule:
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result = nextModuleIter(o.mit, c.graph)
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of oimSymChoice:
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if o.symChoiceIndex < n.len:
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result = n[o.symChoiceIndex].sym
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incl(o.marked, result.id)
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inc o.symChoiceIndex
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elif n.kind == nkOpenSymChoice:
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# try 'local' symbols too for Koenig's lookup:
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o.mode = oimSymChoiceLocalLookup
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o.currentScope = c.currentScope
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result = firstIdentExcluding(o.it, o.currentScope.symbols,
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n[0].sym.name, o.marked)
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while result == nil:
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o.currentScope = o.currentScope.parent
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if o.currentScope != nil:
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result = firstIdentExcluding(o.it, o.currentScope.symbols,
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n[0].sym.name, o.marked)
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else:
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o.importIdx = 0
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result = symChoiceExtension(o, c, n)
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break
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if result != nil:
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incl o.marked, result.id
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else:
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result = nil
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of oimSymChoiceLocalLookup:
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if o.currentScope != nil:
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result = nextIdentExcluding(o.it, o.currentScope.symbols, o.marked)
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while result == nil:
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o.currentScope = o.currentScope.parent
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if o.currentScope != nil:
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result = firstIdentExcluding(o.it, o.currentScope.symbols,
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n[0].sym.name, o.marked)
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else:
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o.importIdx = 0
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result = symChoiceExtension(o, c, n)
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break
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if result != nil:
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incl o.marked, result.id
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elif o.importIdx < c.imports.len:
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result = nextIdentIter(o.mit, o.marked, c.imports[o.importIdx], c.graph)
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#assert result.id notin o.marked
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#while result != nil and result.id in o.marked:
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# result = nextIdentIter(o.it, c.imports[o.importIdx])
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if result == nil:
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inc o.importIdx
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result = symChoiceExtension(o, c, n)
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else:
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result = nil
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when false:
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if result != nil and result.kind == skStub: loadStub(result)
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proc pickSym*(c: PContext, n: PNode; kinds: set[TSymKind];
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flags: TSymFlags = {}): PSym =
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result = nil
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var o: TOverloadIter = default(TOverloadIter)
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var a = initOverloadIter(o, c, n)
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while a != nil:
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if a.kind in kinds and flags <= a.flags:
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if result == nil: result = a
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else: return nil # ambiguous
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a = nextOverloadIter(o, c, n)
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