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jeremybenn |
// Copyright 2011 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// This file implements NewPackage.
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package ast
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import (
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"fmt"
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"go/scanner"
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"go/token"
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"strconv"
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)
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type pkgBuilder struct {
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scanner.ErrorVector
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fset *token.FileSet
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}
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func (p *pkgBuilder) error(pos token.Pos, msg string) {
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p.Error(p.fset.Position(pos), msg)
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}
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func (p *pkgBuilder) errorf(pos token.Pos, format string, args ...interface{}) {
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p.error(pos, fmt.Sprintf(format, args...))
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}
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func (p *pkgBuilder) declare(scope, altScope *Scope, obj *Object) {
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alt := scope.Insert(obj)
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if alt == nil && altScope != nil {
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// see if there is a conflicting declaration in altScope
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alt = altScope.Lookup(obj.Name)
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}
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if alt != nil {
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prevDecl := ""
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if pos := alt.Pos(); pos.IsValid() {
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prevDecl = fmt.Sprintf("\n\tprevious declaration at %s", p.fset.Position(pos))
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}
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p.error(obj.Pos(), fmt.Sprintf("%s redeclared in this block%s", obj.Name, prevDecl))
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}
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}
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func resolve(scope *Scope, ident *Ident) bool {
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for ; scope != nil; scope = scope.Outer {
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if obj := scope.Lookup(ident.Name); obj != nil {
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ident.Obj = obj
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return true
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}
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}
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return false
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}
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// An Importer resolves import paths to package Objects.
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// The imports map records the packages already imported,
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// indexed by package id (canonical import path).
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// An Importer must determine the canonical import path and
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// check the map to see if it is already present in the imports map.
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// If so, the Importer can return the map entry. Otherwise, the
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// Importer should load the package data for the given path into
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// a new *Object (pkg), record pkg in the imports map, and then
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// return pkg.
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type Importer func(imports map[string]*Object, path string) (pkg *Object, err error)
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// NewPackage creates a new Package node from a set of File nodes. It resolves
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// unresolved identifiers across files and updates each file's Unresolved list
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// accordingly. If a non-nil importer and universe scope are provided, they are
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// used to resolve identifiers not declared in any of the package files. Any
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// remaining unresolved identifiers are reported as undeclared. If the files
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// belong to different packages, one package name is selected and files with
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// different package names are reported and then ignored.
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// The result is a package node and a scanner.ErrorList if there were errors.
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//
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func NewPackage(fset *token.FileSet, files map[string]*File, importer Importer, universe *Scope) (*Package, error) {
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var p pkgBuilder
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p.fset = fset
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// complete package scope
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pkgName := ""
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pkgScope := NewScope(universe)
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for _, file := range files {
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// package names must match
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switch name := file.Name.Name; {
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case pkgName == "":
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pkgName = name
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case name != pkgName:
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p.errorf(file.Package, "package %s; expected %s", name, pkgName)
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continue // ignore this file
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}
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// collect top-level file objects in package scope
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for _, obj := range file.Scope.Objects {
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p.declare(pkgScope, nil, obj)
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}
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}
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// package global mapping of imported package ids to package objects
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imports := make(map[string]*Object)
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// complete file scopes with imports and resolve identifiers
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for _, file := range files {
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// ignore file if it belongs to a different package
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// (error has already been reported)
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if file.Name.Name != pkgName {
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continue
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}
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// build file scope by processing all imports
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importErrors := false
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fileScope := NewScope(pkgScope)
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for _, spec := range file.Imports {
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if importer == nil {
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importErrors = true
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continue
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}
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path, _ := strconv.Unquote(spec.Path.Value)
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pkg, err := importer(imports, path)
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if err != nil {
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p.errorf(spec.Path.Pos(), "could not import %s (%s)", path, err)
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importErrors = true
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continue
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}
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// TODO(gri) If a local package name != "." is provided,
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// global identifier resolution could proceed even if the
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// import failed. Consider adjusting the logic here a bit.
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// local name overrides imported package name
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name := pkg.Name
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if spec.Name != nil {
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name = spec.Name.Name
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}
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// add import to file scope
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if name == "." {
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// merge imported scope with file scope
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for _, obj := range pkg.Data.(*Scope).Objects {
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p.declare(fileScope, pkgScope, obj)
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}
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} else {
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// declare imported package object in file scope
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// (do not re-use pkg in the file scope but create
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// a new object instead; the Decl field is different
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// for different files)
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obj := NewObj(Pkg, name)
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obj.Decl = spec
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obj.Data = pkg.Data
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p.declare(fileScope, pkgScope, obj)
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}
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}
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// resolve identifiers
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if importErrors {
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// don't use the universe scope without correct imports
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// (objects in the universe may be shadowed by imports;
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// with missing imports, identifiers might get resolved
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// incorrectly to universe objects)
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pkgScope.Outer = nil
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}
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i := 0
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for _, ident := range file.Unresolved {
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if !resolve(fileScope, ident) {
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p.errorf(ident.Pos(), "undeclared name: %s", ident.Name)
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file.Unresolved[i] = ident
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i++
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}
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}
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file.Unresolved = file.Unresolved[0:i]
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pkgScope.Outer = universe // reset universe scope
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}
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return &Package{pkgName, pkgScope, imports, files}, p.GetError(scanner.Sorted)
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}
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