mirror of
https://github.com/wavetermdev/waveterm.git
synced 2024-12-29 17:58:54 +01:00
694 lines
17 KiB
Go
694 lines
17 KiB
Go
package shparse
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import (
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"bytes"
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"fmt"
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"github.com/scripthaus-dev/sh2-server/pkg/utilfn"
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)
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//
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// cmds := cmd (sep cmd)*
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// sep := ';' | '&' | '&&' | '||' | '|' | '\n'
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// cmd := simple-cmd | compound-command redirect-list?
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// compound-command := brace-group | subshell | for-clause | case-clause | if-clause | while-clause | until-clause
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// brace-group := '{' cmds '}'
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// subshell := '(' cmds ')'
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// simple-command := cmd-prefix cmd-word (io-redirect)*
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// cmd-prefix := (io-redirect | assignment)*
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// cmd-suffix := (io-redirect | word)*
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// cmd-name := word
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// cmd-word := word
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// io-redirect := (io-number? io-file) | (io-number? io-here)
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// io-file := ('<' | '<&' | '>' | '>&' | '>>' | '>|' ) filename
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// io-here := ('<<' | '<<-') here_end
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// here-end := word
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// if-clause := 'if' compound-list 'then' compound-list else-part 'fi'
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// else-part := 'elif' compound-list 'then' compound-list
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// | 'elif' compount-list 'then' compound-list else-part
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// | 'else' compound-list
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// compound-list := linebreak term sep?
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//
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//
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//
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// A correctly-formed brace expansion must contain unquoted opening and closing braces, and at least one unquoted comma or a valid sequence expression
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// Any incorrectly formed brace expansion is left unchanged.
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//
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// ambiguity between $((...)) and $((ls); ls)
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// ambiguity between foo=([0]=hell) and foo=([abc)
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// tokenization https://pubs.opengroup.org/onlinepubs/7908799/xcu/chap2.html#tag_001_003
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// can-extend: WordTypeLit, WordTypeSimpleVar, WordTypeVarBrace, WordTypeDQ, WordTypeDDQ, WordTypeSQ, WordTypeDSQ
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const (
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WordTypeRaw = "raw"
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WordTypeLit = "lit" // (can-extend)
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WordTypeOp = "op" // single: & ; | ( ) < > \n multi(2): && || ;; << >> <& >& <> >| (( multi(3): <<- ('((' requires special processing)
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WordTypeKey = "key" // if then else elif fi do done case esac while until for in { } ! (( [[
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WordTypeGroup = "grp" // contains other words e.g. "hello"foo'bar'$x (has-subs) (can-extend)
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WordTypeSimpleVar = "svar" // simplevar $ (can-extend)
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WordTypeDQ = "dq" // " (quote-context) (can-extend) (has-subs)
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WordTypeDDQ = "ddq" // $" (quote-context) (can-extend) (has-subs)
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WordTypeVarBrace = "varb" // ${ (quote-context) (can-extend) (internals not parsed)
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WordTypeDP = "dp" // $( (quote-context) (has-subs)
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WordTypeBQ = "bq" // ` (quote-context) (has-subs)
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WordTypeSQ = "sq" // ' (can-extend)
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WordTypeDSQ = "dsq" // $' (can-extend)
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WordTypeDPP = "dpp" // $(( (internals not parsed)
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WordTypePP = "pp" // (( (internals not parsed)
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WordTypeDB = "db" // $[ (internals not parsed)
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)
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const (
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CmdTypeNone = "none" // holds control structures: '(' ')' 'for' 'while' etc.
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CmdTypeSimple = "simple" // holds real commands
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)
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type WordType struct {
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Type string
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Offset int
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QC QuoteContext
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Raw []rune
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Complete bool
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Prefix []rune
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Subs []*WordType
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}
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type CmdType struct {
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Type string
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AssignmentWords []*WordType
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Words []*WordType
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NoneComplete bool // set to true when last-word is a "separator"
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}
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type QuoteContext []string
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var wordMetaMap map[string]wordMeta
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// same order as https://www.gnu.org/software/bash/manual/html_node/Reserved-Words.html
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var bashReservedWords = []string{
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"if", "then", "elif", "else", "fi", "time",
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"for", "in", "until", "while", "do", "done",
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"case", "esac", "coproc", "select", "function",
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"{", "}", "[[", "]]", "!",
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}
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// special reserved words: "for", "in", "case", "select", "function", "[[", and "]]"
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var bashNoneRW = []string{
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"if", "then",
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"elif", "else", "fi", "time",
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"until", "while", "do", "done",
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"esac", "coproc",
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"{", "}", "!",
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}
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type wordMeta struct {
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Type string
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EmptyWord []rune
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PrefixLen int
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SuffixLen int
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CanExtend bool
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QuoteContext bool
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}
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func (m wordMeta) getSuffix() string {
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if m.SuffixLen == 0 {
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return ""
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}
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return string(m.EmptyWord[len(m.EmptyWord)-m.SuffixLen:])
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}
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func (m wordMeta) getPrefix() string {
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if m.PrefixLen == 0 {
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return ""
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}
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return string(m.EmptyWord[:m.PrefixLen])
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}
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func makeWordMeta(wtype string, emptyWord string, prefixLen int, suffixLen int, canExtend bool, quoteContext bool) {
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if len(emptyWord) != prefixLen+suffixLen {
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panic(fmt.Sprintf("invalid empty word %s %d %d", emptyWord, prefixLen, suffixLen))
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}
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wordMetaMap[wtype] = wordMeta{wtype, []rune(emptyWord), prefixLen, suffixLen, canExtend, quoteContext}
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}
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func init() {
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wordMetaMap = make(map[string]wordMeta)
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makeWordMeta(WordTypeRaw, "", 0, 0, false, false)
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makeWordMeta(WordTypeLit, "", 0, 0, true, false)
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makeWordMeta(WordTypeOp, "", 0, 0, false, false)
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makeWordMeta(WordTypeKey, "", 0, 0, false, false)
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makeWordMeta(WordTypeGroup, "", 0, 0, false, false)
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makeWordMeta(WordTypeSimpleVar, "$", 1, 0, true, false)
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makeWordMeta(WordTypeVarBrace, "${}", 2, 1, true, true)
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makeWordMeta(WordTypeDQ, `""`, 1, 1, true, true)
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makeWordMeta(WordTypeDDQ, `$""`, 2, 1, true, true)
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makeWordMeta(WordTypeDP, "$()", 2, 1, false, false)
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makeWordMeta(WordTypeBQ, "``", 1, 1, false, false)
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makeWordMeta(WordTypeSQ, "''", 1, 1, true, false)
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makeWordMeta(WordTypeDSQ, "$''", 2, 1, true, false)
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makeWordMeta(WordTypeDPP, "$(())", 3, 2, false, false)
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makeWordMeta(WordTypePP, "(())", 2, 2, false, false)
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makeWordMeta(WordTypeDB, "$[]", 2, 1, false, false)
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}
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func MakeEmptyWord(wtype string, qc QuoteContext, offset int, complete bool) *WordType {
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meta := wordMetaMap[wtype]
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if meta.Type == "" {
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meta = wordMetaMap[WordTypeRaw]
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}
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rtn := &WordType{Type: meta.Type, QC: qc, Offset: offset, Complete: complete}
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if len(meta.EmptyWord) > 0 {
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if complete {
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rtn.Raw = append([]rune(nil), meta.EmptyWord...)
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} else {
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rtn.Raw = append([]rune(nil), []rune(meta.getPrefix())...)
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}
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}
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return rtn
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}
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func (qc QuoteContext) push(q string) QuoteContext {
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rtn := make([]string, 0, len(qc)+1)
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rtn = append(rtn, qc...)
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rtn = append(rtn, q)
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return rtn
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}
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func (qc QuoteContext) cur() string {
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if len(qc) == 0 {
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return ""
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}
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return qc[len(qc)-1]
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}
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func (qc QuoteContext) clone() QuoteContext {
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if len(qc) == 0 {
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return nil
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}
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return append([]string(nil), qc...)
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}
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func makeRepeatStr(ch byte, slen int) string {
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if slen == 0 {
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return ""
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}
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rtn := make([]byte, slen)
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for i := 0; i < slen; i++ {
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rtn[i] = ch
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}
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return string(rtn)
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}
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func (w *WordType) isBlank() bool {
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return w.Type == WordTypeLit && len(w.Raw) == 0
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}
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func (w *WordType) contentEndPos() int {
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if !w.Complete {
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return len(w.Raw)
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}
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wmeta := wordMetaMap[w.Type]
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return len(w.Raw) - wmeta.SuffixLen
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}
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func (w *WordType) contentStartPos() int {
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wmeta := wordMetaMap[w.Type]
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return wmeta.PrefixLen
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}
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func (w *WordType) canHaveSubs() bool {
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switch w.Type {
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case WordTypeGroup, WordTypeDQ, WordTypeDDQ, WordTypeDP, WordTypeBQ:
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return true
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default:
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return false
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}
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}
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func (w *WordType) uncompletable() bool {
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switch w.Type {
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case WordTypeRaw, WordTypeOp, WordTypeKey, WordTypeDPP, WordTypePP, WordTypeDB, WordTypeBQ, WordTypeDP:
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return true
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default:
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return false
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}
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}
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func (w *WordType) stringWithPos(pos int) string {
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notCompleteFlag := " "
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if !w.Complete {
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notCompleteFlag = "*"
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}
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str := string(w.Raw)
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if pos != -1 {
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str = utilfn.StrWithPos{Str: str, Pos: pos}.String()
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}
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return fmt.Sprintf("%-4s[%3d]%s %s%q", w.Type, w.Offset, notCompleteFlag, makeRepeatStr('_', len(w.Prefix)), str)
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}
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func (w *WordType) String() string {
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notCompleteFlag := " "
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if !w.Complete {
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notCompleteFlag = "*"
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}
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return fmt.Sprintf("%-4s[%3d]%s %s%q", w.Type, w.Offset, notCompleteFlag, makeRepeatStr('_', len(w.Prefix)), string(w.Raw))
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}
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// offset = -1 for don't show
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func dumpWords(words []*WordType, indentStr string, offset int) {
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wrotePos := false
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for _, word := range words {
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posInWord := false
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if !wrotePos && offset != -1 && offset <= word.Offset {
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fmt.Printf("%s* [%3d] [*]\n", indentStr, offset)
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wrotePos = true
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}
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if !wrotePos && offset != -1 && offset < word.Offset+len(word.Raw) {
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fmt.Printf("%s%s\n", indentStr, word.stringWithPos(offset-word.Offset))
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wrotePos = true
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posInWord = true
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} else {
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fmt.Printf("%s%s\n", indentStr, word.String())
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}
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if len(word.Subs) > 0 {
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if posInWord {
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wmeta := wordMetaMap[word.Type]
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dumpWords(word.Subs, indentStr+" ", offset-word.Offset-wmeta.PrefixLen)
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} else {
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dumpWords(word.Subs, indentStr+" ", -1)
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}
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}
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}
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}
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func dumpCommands(cmds []*CmdType, indentStr string, pos int) {
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for _, cmd := range cmds {
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fmt.Printf("%sCMD: %s [%d] pos:%d\n", indentStr, cmd.Type, len(cmd.Words), pos)
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dumpWords(cmd.AssignmentWords, indentStr+" *", pos)
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dumpWords(cmd.Words, indentStr+" ", pos)
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}
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}
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func wordsToStr(words []*WordType) string {
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var buf bytes.Buffer
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for _, word := range words {
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if len(word.Prefix) > 0 {
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buf.WriteString(string(word.Prefix))
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}
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buf.WriteString(string(word.Raw))
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}
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return buf.String()
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}
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// recognizes reserved words in first position
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func convertToAnyReservedWord(w *WordType) bool {
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if w == nil || w.Type != WordTypeLit {
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return false
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}
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rawVal := string(w.Raw)
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for _, rw := range bashReservedWords {
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if rawVal == rw {
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w.Type = WordTypeKey
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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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// recognizes the specific reserved-word given only ('in' and 'do' in 'for', 'case', and 'select' commands)
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func convertToReservedWord(w *WordType, reservedWord string) {
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if w == nil || w.Type != WordTypeLit {
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return
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}
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if string(w.Raw) == reservedWord {
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w.Type = WordTypeKey
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}
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}
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func isNoneReservedWord(w *WordType) bool {
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if w.Type != WordTypeKey {
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return false
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}
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rawVal := string(w.Raw)
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for _, rw := range bashNoneRW {
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if rawVal == rw {
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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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type parseCmdState struct {
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Input []*WordType
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InputPos int
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Rtn []*CmdType
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Cur *CmdType
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}
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func (state *parseCmdState) isEof() bool {
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return state.InputPos >= len(state.Input)
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}
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func (state *parseCmdState) curWord() *WordType {
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if state.isEof() {
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return nil
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}
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return state.Input[state.InputPos]
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}
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func (state *parseCmdState) lastCmd() *CmdType {
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if len(state.Rtn) == 0 {
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return nil
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}
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return state.Rtn[len(state.Rtn)-1]
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}
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func (state *parseCmdState) makeNoneCmd(sep bool) {
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if state.Cur == nil || state.Cur.Type != CmdTypeNone {
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state.Cur = &CmdType{Type: CmdTypeNone}
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state.Rtn = append(state.Rtn, state.Cur)
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}
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state.Cur.Words = append(state.Cur.Words, state.curWord())
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if sep {
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state.Cur.NoneComplete = true
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state.Cur = nil
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}
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state.InputPos++
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}
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func (state *parseCmdState) handleKeyword(word *WordType) bool {
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if word.Type != WordTypeKey {
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return false
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}
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if isNoneReservedWord(word) {
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state.makeNoneCmd(true)
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return true
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}
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rw := string(word.Raw)
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if rw == "[[" {
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// just ignore everything between [[ and ]]
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for !state.isEof() {
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curWord := state.curWord()
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if curWord.Type == WordTypeLit && string(curWord.Raw) == "]]" {
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convertToReservedWord(curWord, "]]")
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state.makeNoneCmd(false)
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break
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}
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state.makeNoneCmd(false)
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}
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return true
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}
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if rw == "case" {
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// ignore everything between "case" and "esac"
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for !state.isEof() {
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curWord := state.curWord()
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if curWord.Type == WordTypeKey && string(curWord.Raw) == "esac" {
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state.makeNoneCmd(false)
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break
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}
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state.makeNoneCmd(false)
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}
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return true
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}
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if rw == "for" || rw == "select" {
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// ignore until a "do"
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for !state.isEof() {
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curWord := state.curWord()
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if curWord.Type == WordTypeKey && string(curWord.Raw) == "do" {
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state.makeNoneCmd(true)
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break
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}
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state.makeNoneCmd(false)
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}
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return true
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}
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if rw == "in" {
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// the "for" and "case" clauses should skip "in". so encountering an "in" here is a syntax error.
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// just treat it as a none and allow a new command after.
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state.makeNoneCmd(false)
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return true
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}
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if rw == "function" {
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// ignore until '{'
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for !state.isEof() {
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curWord := state.curWord()
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if curWord.Type == WordTypeKey && string(curWord.Raw) == "{" {
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state.makeNoneCmd(true)
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break
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}
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state.makeNoneCmd(false)
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}
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return true
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}
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state.makeNoneCmd(true)
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return true
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}
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func isCmdSeparatorOp(word *WordType) bool {
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if word.Type != WordTypeOp {
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return false
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}
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opVal := string(word.Raw)
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return opVal == ";" || opVal == "\n" || opVal == "&" || opVal == "|" || opVal == "|&" || opVal == "&&" || opVal == "||" || opVal == "(" || opVal == ")"
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}
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func (state *parseCmdState) handleOp(word *WordType) bool {
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opVal := string(word.Raw)
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// sequential separators
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if opVal == ";" || opVal == "\n" {
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state.makeNoneCmd(true)
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return true
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}
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// separator
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if opVal == "&" {
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state.makeNoneCmd(true)
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return true
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}
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// pipelines
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if opVal == "|" || opVal == "|&" {
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state.makeNoneCmd(true)
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return true
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}
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// lists
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if opVal == "&&" || opVal == "||" {
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state.makeNoneCmd(true)
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return true
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}
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// subshell
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if opVal == "(" || opVal == ")" {
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state.makeNoneCmd(true)
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return true
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}
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return false
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}
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func wordSliceBoundedIdx(words []*WordType, idx int) *WordType {
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if idx >= len(words) {
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return nil
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}
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return words[idx]
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}
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// note that a newline "op" can appear in the third position of "for" or "case". the "in" keyword is still converted because of wordNum == 0
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func identifyReservedWords(words []*WordType) {
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wordNum := 0
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lastReserved := false
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for idx, word := range words {
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if wordNum == 0 || lastReserved {
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convertToAnyReservedWord(word)
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}
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if word.Type == WordTypeKey {
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rwVal := string(word.Raw)
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|
switch rwVal {
|
|
case "for":
|
|
lastReserved = false
|
|
third := wordSliceBoundedIdx(words, idx+2)
|
|
convertToReservedWord(third, "in")
|
|
convertToReservedWord(third, "do")
|
|
|
|
case "case":
|
|
lastReserved = false
|
|
third := wordSliceBoundedIdx(words, idx+2)
|
|
convertToReservedWord(third, "in")
|
|
|
|
case "in":
|
|
lastReserved = false
|
|
|
|
default:
|
|
lastReserved = true
|
|
}
|
|
continue
|
|
}
|
|
lastReserved = false
|
|
if isCmdSeparatorOp(word) {
|
|
wordNum = 0
|
|
continue
|
|
}
|
|
wordNum++
|
|
}
|
|
}
|
|
|
|
func ResetWordOffsets(words []*WordType, startIdx int) {
|
|
pos := startIdx
|
|
for _, word := range words {
|
|
pos += len(word.Prefix)
|
|
word.Offset = pos
|
|
if len(word.Subs) > 0 {
|
|
ResetWordOffsets(word.Subs, 0)
|
|
}
|
|
pos += len(word.Raw)
|
|
}
|
|
}
|
|
|
|
func CommandsToWords(cmds []*CmdType) []*WordType {
|
|
var rtn []*WordType
|
|
for _, cmd := range cmds {
|
|
rtn = append(rtn, cmd.Words...)
|
|
}
|
|
return rtn
|
|
}
|
|
|
|
func (c *CmdType) stripPrefix() []rune {
|
|
if len(c.AssignmentWords) > 0 {
|
|
w := c.AssignmentWords[0]
|
|
prefix := w.Prefix
|
|
if len(prefix) == 0 {
|
|
return nil
|
|
}
|
|
newWord := *w
|
|
newWord.Prefix = nil
|
|
c.AssignmentWords[0] = &newWord
|
|
return prefix
|
|
}
|
|
if len(c.Words) > 0 {
|
|
w := c.Words[0]
|
|
prefix := w.Prefix
|
|
if len(prefix) == 0 {
|
|
return nil
|
|
}
|
|
newWord := *w
|
|
newWord.Prefix = nil
|
|
c.Words[0] = &newWord
|
|
return prefix
|
|
}
|
|
return nil
|
|
}
|
|
|
|
func (c *CmdType) isEmpty() bool {
|
|
return len(c.AssignmentWords) == 0 && len(c.Words) == 0
|
|
}
|
|
|
|
func (c *CmdType) lastWord() *WordType {
|
|
if len(c.Words) > 0 {
|
|
return c.Words[len(c.Words)-1]
|
|
}
|
|
if len(c.AssignmentWords) > 0 {
|
|
return c.AssignmentWords[len(c.AssignmentWords)-1]
|
|
}
|
|
return nil
|
|
}
|
|
|
|
func (c *CmdType) firstWord() *WordType {
|
|
if len(c.AssignmentWords) > 0 {
|
|
return c.AssignmentWords[0]
|
|
}
|
|
if len(c.Words) > 0 {
|
|
return c.Words[0]
|
|
}
|
|
return nil
|
|
}
|
|
|
|
func (c *CmdType) offset() int {
|
|
firstWord := c.firstWord()
|
|
if firstWord == nil {
|
|
return 0
|
|
}
|
|
return firstWord.Offset
|
|
}
|
|
|
|
func (c *CmdType) endOffset() int {
|
|
lastWord := c.lastWord()
|
|
if lastWord == nil {
|
|
return 0
|
|
}
|
|
return lastWord.Offset + len(lastWord.Raw)
|
|
}
|
|
|
|
func indexInRunes(arr []rune, ch rune) int {
|
|
for idx, r := range arr {
|
|
if r == ch {
|
|
return idx
|
|
}
|
|
}
|
|
return -1
|
|
}
|
|
|
|
func isAssignmentWord(w *WordType) bool {
|
|
if w.Type == WordTypeLit || w.Type == WordTypeGroup {
|
|
eqIdx := indexInRunes(w.Raw, '=')
|
|
if eqIdx == -1 {
|
|
return false
|
|
}
|
|
prefix := w.Raw[0:eqIdx]
|
|
return isSimpleVarName(prefix)
|
|
}
|
|
return false
|
|
}
|
|
|
|
// simple commands steal whitespace from subsequent commands
|
|
func cmdWhitespaceFixup(cmds []*CmdType) {
|
|
for idx := 0; idx < len(cmds)-1; idx++ {
|
|
cmd := cmds[idx]
|
|
if cmd.Type != CmdTypeSimple || cmd.isEmpty() {
|
|
continue
|
|
}
|
|
nextCmd := cmds[idx+1]
|
|
nextPrefix := nextCmd.stripPrefix()
|
|
if len(nextPrefix) > 0 {
|
|
blankWord := &WordType{Type: WordTypeLit, QC: cmd.lastWord().QC, Offset: cmd.endOffset() + len(nextPrefix), Prefix: nextPrefix, Complete: true}
|
|
cmd.Words = append(cmd.Words, blankWord)
|
|
}
|
|
}
|
|
}
|
|
|
|
func ParseCommands(words []*WordType) []*CmdType {
|
|
identifyReservedWords(words)
|
|
state := parseCmdState{Input: words}
|
|
for {
|
|
if state.isEof() {
|
|
break
|
|
}
|
|
word := state.curWord()
|
|
if word.Type == WordTypeKey {
|
|
done := state.handleKeyword(word)
|
|
if done {
|
|
continue
|
|
}
|
|
}
|
|
if word.Type == WordTypeOp {
|
|
done := state.handleOp(word)
|
|
if done {
|
|
continue
|
|
}
|
|
}
|
|
if state.Cur == nil || state.Cur.Type != CmdTypeSimple {
|
|
state.Cur = &CmdType{Type: CmdTypeSimple}
|
|
state.Rtn = append(state.Rtn, state.Cur)
|
|
}
|
|
if len(state.Cur.Words) == 0 && isAssignmentWord(word) {
|
|
state.Cur.AssignmentWords = append(state.Cur.AssignmentWords, word)
|
|
} else {
|
|
state.Cur.Words = append(state.Cur.Words, word)
|
|
}
|
|
state.InputPos++
|
|
}
|
|
cmdWhitespaceFixup(state.Rtn)
|
|
return state.Rtn
|
|
}
|