mirror of
https://github.com/moby/moby.git
synced 2022-11-09 12:21:53 -05:00
0e025b4bb1
Signed-off-by: Jessica Frazelle <acidburn@docker.com>
161 lines
4.7 KiB
Go
161 lines
4.7 KiB
Go
// Package parser implements a parser and parse tree dumper for Dockerfiles.
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package parser
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import (
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"bufio"
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"io"
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"regexp"
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"strings"
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"unicode"
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"github.com/docker/docker/builder/dockerfile/command"
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)
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// Node is a structure used to represent a parse tree.
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//
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// In the node there are three fields, Value, Next, and Children. Value is the
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// current token's string value. Next is always the next non-child token, and
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// children contains all the children. Here's an example:
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//
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// (value next (child child-next child-next-next) next-next)
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//
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// This data structure is frankly pretty lousy for handling complex languages,
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// but lucky for us the Dockerfile isn't very complicated. This structure
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// works a little more effectively than a "proper" parse tree for our needs.
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//
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type Node struct {
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Value string // actual content
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Next *Node // the next item in the current sexp
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Children []*Node // the children of this sexp
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Attributes map[string]bool // special attributes for this node
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Original string // original line used before parsing
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Flags []string // only top Node should have this set
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StartLine int // the line in the original dockerfile where the node begins
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EndLine int // the line in the original dockerfile where the node ends
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}
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var (
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dispatch map[string]func(string) (*Node, map[string]bool, error)
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tokenWhitespace = regexp.MustCompile(`[\t\v\f\r ]+`)
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tokenLineContinuation = regexp.MustCompile(`\\[ \t]*$`)
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tokenComment = regexp.MustCompile(`^#.*$`)
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)
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func init() {
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// Dispatch Table. see line_parsers.go for the parse functions.
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// The command is parsed and mapped to the line parser. The line parser
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// receives the arguments but not the command, and returns an AST after
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// reformulating the arguments according to the rules in the parser
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// functions. Errors are propagated up by Parse() and the resulting AST can
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// be incorporated directly into the existing AST as a next.
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dispatch = map[string]func(string) (*Node, map[string]bool, error){
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command.User: parseString,
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command.Onbuild: parseSubCommand,
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command.Workdir: parseString,
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command.Env: parseEnv,
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command.Label: parseLabel,
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command.Maintainer: parseString,
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command.From: parseString,
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command.Add: parseMaybeJSONToList,
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command.Copy: parseMaybeJSONToList,
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command.Run: parseMaybeJSON,
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command.Cmd: parseMaybeJSON,
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command.Entrypoint: parseMaybeJSON,
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command.Expose: parseStringsWhitespaceDelimited,
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command.Volume: parseMaybeJSONToList,
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command.StopSignal: parseString,
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command.Arg: parseNameOrNameVal,
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}
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}
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// parse a line and return the remainder.
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func parseLine(line string) (string, *Node, error) {
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if line = stripComments(line); line == "" {
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return "", nil, nil
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}
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if tokenLineContinuation.MatchString(line) {
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line = tokenLineContinuation.ReplaceAllString(line, "")
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return line, nil, nil
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}
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cmd, flags, args, err := splitCommand(line)
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if err != nil {
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return "", nil, err
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}
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node := &Node{}
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node.Value = cmd
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sexp, attrs, err := fullDispatch(cmd, args)
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if err != nil {
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return "", nil, err
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}
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node.Next = sexp
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node.Attributes = attrs
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node.Original = line
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node.Flags = flags
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return "", node, nil
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}
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// Parse is the main parse routine.
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// It handles an io.ReadWriteCloser and returns the root of the AST.
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func Parse(rwc io.Reader) (*Node, error) {
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currentLine := 0
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root := &Node{}
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root.StartLine = -1
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scanner := bufio.NewScanner(rwc)
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for scanner.Scan() {
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scannedLine := strings.TrimLeftFunc(scanner.Text(), unicode.IsSpace)
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currentLine++
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line, child, err := parseLine(scannedLine)
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if err != nil {
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return nil, err
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}
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startLine := currentLine
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if line != "" && child == nil {
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for scanner.Scan() {
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newline := scanner.Text()
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currentLine++
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if stripComments(strings.TrimSpace(newline)) == "" {
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continue
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}
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line, child, err = parseLine(line + newline)
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if err != nil {
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return nil, err
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}
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if child != nil {
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break
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}
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}
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if child == nil && line != "" {
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_, child, err = parseLine(line)
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if err != nil {
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return nil, err
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}
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}
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}
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if child != nil {
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// Update the line information for the current child.
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child.StartLine = startLine
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child.EndLine = currentLine
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// Update the line information for the root. The starting line of the root is always the
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// starting line of the first child and the ending line is the ending line of the last child.
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if root.StartLine < 0 {
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root.StartLine = currentLine
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}
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root.EndLine = currentLine
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root.Children = append(root.Children, child)
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}
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}
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return root, nil
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}
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