196 lines
5.8 KiB
Go
196 lines
5.8 KiB
Go
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// Copyright 2013 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 LinkifyText which introduces
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// links for identifiers pointing to their declarations.
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// The approach does not cover all cases because godoc
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// doesn't have complete type information, but it's
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// reasonably good for browsing.
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package godoc
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import (
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"fmt"
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"go/ast"
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"go/doc"
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"go/token"
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"io"
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"strconv"
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)
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// LinkifyText HTML-escapes source text and writes it to w.
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// Identifiers that are in a "use" position (i.e., that are
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// not being declared), are wrapped with HTML links pointing
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// to the respective declaration, if possible. Comments are
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// formatted the same way as with FormatText.
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//
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func LinkifyText(w io.Writer, text []byte, n ast.Node) {
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links := linksFor(n)
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i := 0 // links index
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prev := "" // prev HTML tag
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linkWriter := func(w io.Writer, _ int, start bool) {
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// end tag
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if !start {
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if prev != "" {
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fmt.Fprintf(w, `</%s>`, prev)
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prev = ""
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}
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return
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}
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// start tag
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prev = ""
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if i < len(links) {
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switch info := links[i]; {
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case info.path != "" && info.name == "":
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// package path
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fmt.Fprintf(w, `<a href="/pkg/%s/">`, info.path)
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prev = "a"
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case info.path != "" && info.name != "":
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// qualified identifier
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fmt.Fprintf(w, `<a href="/pkg/%s/#%s">`, info.path, info.name)
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prev = "a"
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case info.path == "" && info.name != "":
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// local identifier
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if info.isVal {
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fmt.Fprintf(w, `<span id="%s">`, info.name)
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prev = "span"
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} else if ast.IsExported(info.name) {
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fmt.Fprintf(w, `<a href="#%s">`, info.name)
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prev = "a"
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}
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}
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i++
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}
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}
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idents := tokenSelection(text, token.IDENT)
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comments := tokenSelection(text, token.COMMENT)
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FormatSelections(w, text, linkWriter, idents, selectionTag, comments)
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}
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// A link describes the (HTML) link information for an identifier.
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// The zero value of a link represents "no link".
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//
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type link struct {
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path, name string // package path, identifier name
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isVal bool // identifier is defined in a const or var declaration
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}
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// linksFor returns the list of links for the identifiers used
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// by node in the same order as they appear in the source.
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//
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func linksFor(node ast.Node) (links []link) {
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// linkMap tracks link information for each ast.Ident node. Entries may
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// be created out of source order (for example, when we visit a parent
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// definition node). These links are appended to the returned slice when
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// their ast.Ident nodes are visited.
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linkMap := make(map[*ast.Ident]link)
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ast.Inspect(node, func(node ast.Node) bool {
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switch n := node.(type) {
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case *ast.Field:
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for _, n := range n.Names {
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linkMap[n] = link{}
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}
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case *ast.ImportSpec:
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if name := n.Name; name != nil {
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linkMap[name] = link{}
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}
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case *ast.ValueSpec:
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for _, n := range n.Names {
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linkMap[n] = link{name: n.Name, isVal: true}
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}
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case *ast.FuncDecl:
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linkMap[n.Name] = link{}
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case *ast.TypeSpec:
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linkMap[n.Name] = link{}
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case *ast.AssignStmt:
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// Short variable declarations only show up if we apply
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// this code to all source code (as opposed to exported
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// declarations only).
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if n.Tok == token.DEFINE {
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// Some of the lhs variables may be re-declared,
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// so technically they are not defs. We don't
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// care for now.
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for _, x := range n.Lhs {
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// Each lhs expression should be an
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// ident, but we are conservative and check.
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if n, _ := x.(*ast.Ident); n != nil {
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linkMap[n] = link{isVal: true}
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}
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}
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}
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case *ast.SelectorExpr:
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// Detect qualified identifiers of the form pkg.ident.
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// If anything fails we return true and collect individual
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// identifiers instead.
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if x, _ := n.X.(*ast.Ident); x != nil {
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// Create links only if x is a qualified identifier.
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if obj := x.Obj; obj != nil && obj.Kind == ast.Pkg {
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if spec, _ := obj.Decl.(*ast.ImportSpec); spec != nil {
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// spec.Path.Value is the import path
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if path, err := strconv.Unquote(spec.Path.Value); err == nil {
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// Register two links, one for the package
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// and one for the qualified identifier.
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linkMap[x] = link{path: path}
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linkMap[n.Sel] = link{path: path, name: n.Sel.Name}
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}
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}
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}
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}
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case *ast.CompositeLit:
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// Detect field names within composite literals. These links should
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// be prefixed by the type name.
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fieldPath := ""
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prefix := ""
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switch typ := n.Type.(type) {
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case *ast.Ident:
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prefix = typ.Name + "."
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case *ast.SelectorExpr:
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if x, _ := typ.X.(*ast.Ident); x != nil {
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// Create links only if x is a qualified identifier.
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if obj := x.Obj; obj != nil && obj.Kind == ast.Pkg {
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if spec, _ := obj.Decl.(*ast.ImportSpec); spec != nil {
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// spec.Path.Value is the import path
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if path, err := strconv.Unquote(spec.Path.Value); err == nil {
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// Register two links, one for the package
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// and one for the qualified identifier.
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linkMap[x] = link{path: path}
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linkMap[typ.Sel] = link{path: path, name: typ.Sel.Name}
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fieldPath = path
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prefix = typ.Sel.Name + "."
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}
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}
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}
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}
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}
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for _, e := range n.Elts {
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if kv, ok := e.(*ast.KeyValueExpr); ok {
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if k, ok := kv.Key.(*ast.Ident); ok {
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// Note: there is some syntactic ambiguity here. We cannot determine
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// if this is a struct literal or a map literal without type
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// information. We assume struct literal.
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name := prefix + k.Name
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linkMap[k] = link{path: fieldPath, name: name}
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}
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}
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}
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case *ast.Ident:
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if l, ok := linkMap[n]; ok {
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links = append(links, l)
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} else {
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l := link{name: n.Name}
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if n.Obj == nil && doc.IsPredeclared(n.Name) {
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l.path = builtinPkgPath
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}
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links = append(links, l)
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}
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}
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return true
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})
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return
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}
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