Bump github.com/gookit/config/v2 from 2.1.8 to 2.2.2
Bumps [github.com/gookit/config/v2](https://github.com/gookit/config) from 2.1.8 to 2.2.2. - [Release notes](https://github.com/gookit/config/releases) - [Commits](https://github.com/gookit/config/compare/v2.1.8...v2.2.2) --- updated-dependencies: - dependency-name: github.com/gookit/config/v2 dependency-type: direct:production update-type: version-update:semver-minor ... Signed-off-by: dependabot[bot] <support@github.com>
This commit is contained in:
committed by
Ralf Haferkamp
parent
03045c5ccc
commit
5ebc596352
+84
-54
@@ -2,6 +2,7 @@ package toml
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import (
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"fmt"
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"os"
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"strconv"
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"strings"
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"time"
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@@ -15,6 +16,7 @@ type parser struct {
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context Key // Full key for the current hash in scope.
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currentKey string // Base key name for everything except hashes.
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pos Position // Current position in the TOML file.
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tomlNext bool
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ordered []Key // List of keys in the order that they appear in the TOML data.
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@@ -29,6 +31,8 @@ type keyInfo struct {
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}
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func parse(data string) (p *parser, err error) {
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_, tomlNext := os.LookupEnv("BURNTSUSHI_TOML_110")
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defer func() {
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if r := recover(); r != nil {
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if pErr, ok := r.(ParseError); ok {
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@@ -41,9 +45,12 @@ func parse(data string) (p *parser, err error) {
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}()
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// Read over BOM; do this here as the lexer calls utf8.DecodeRuneInString()
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// which mangles stuff.
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if strings.HasPrefix(data, "\xff\xfe") || strings.HasPrefix(data, "\xfe\xff") {
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// which mangles stuff. UTF-16 BOM isn't strictly valid, but some tools add
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// it anyway.
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if strings.HasPrefix(data, "\xff\xfe") || strings.HasPrefix(data, "\xfe\xff") { // UTF-16
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data = data[2:]
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} else if strings.HasPrefix(data, "\xef\xbb\xbf") { // UTF-8
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data = data[3:]
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}
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// Examine first few bytes for NULL bytes; this probably means it's a UTF-16
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@@ -65,9 +72,10 @@ func parse(data string) (p *parser, err error) {
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p = &parser{
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keyInfo: make(map[string]keyInfo),
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mapping: make(map[string]interface{}),
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lx: lex(data),
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lx: lex(data, tomlNext),
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ordered: make([]Key, 0),
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implicits: make(map[string]struct{}),
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tomlNext: tomlNext,
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}
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for {
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item := p.next()
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@@ -194,12 +202,12 @@ func (p *parser) topLevel(item item) {
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for i := range context {
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p.addImplicitContext(append(p.context, context[i:i+1]...))
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}
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p.ordered = append(p.ordered, p.context.add(p.currentKey))
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/// Set value.
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vItem := p.next()
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val, typ := p.value(vItem, false)
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p.set(p.currentKey, val, typ, vItem.pos)
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p.ordered = append(p.ordered, p.context.add(p.currentKey))
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/// Remove the context we added (preserving any context from [tbl] lines).
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p.context = outerContext
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@@ -236,7 +244,7 @@ func (p *parser) value(it item, parentIsArray bool) (interface{}, tomlType) {
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case itemString:
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return p.replaceEscapes(it, it.val), p.typeOfPrimitive(it)
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case itemMultilineString:
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return p.replaceEscapes(it, stripFirstNewline(p.stripEscapedNewlines(it.val))), p.typeOfPrimitive(it)
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return p.replaceEscapes(it, p.stripEscapedNewlines(stripFirstNewline(it.val))), p.typeOfPrimitive(it)
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case itemRawString:
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return it.val, p.typeOfPrimitive(it)
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case itemRawMultilineString:
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@@ -331,11 +339,17 @@ func (p *parser) valueFloat(it item) (interface{}, tomlType) {
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var dtTypes = []struct {
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fmt string
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zone *time.Location
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next bool
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}{
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{time.RFC3339Nano, time.Local},
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{"2006-01-02T15:04:05.999999999", internal.LocalDatetime},
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{"2006-01-02", internal.LocalDate},
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{"15:04:05.999999999", internal.LocalTime},
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{time.RFC3339Nano, time.Local, false},
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{"2006-01-02T15:04:05.999999999", internal.LocalDatetime, false},
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{"2006-01-02", internal.LocalDate, false},
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{"15:04:05.999999999", internal.LocalTime, false},
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// tomlNext
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{"2006-01-02T15:04Z07:00", time.Local, true},
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{"2006-01-02T15:04", internal.LocalDatetime, true},
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{"15:04", internal.LocalTime, true},
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}
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func (p *parser) valueDatetime(it item) (interface{}, tomlType) {
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@@ -346,6 +360,9 @@ func (p *parser) valueDatetime(it item) (interface{}, tomlType) {
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err error
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)
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for _, dt := range dtTypes {
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if dt.next && !p.tomlNext {
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continue
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}
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t, err = time.ParseInLocation(dt.fmt, it.val, dt.zone)
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if err == nil {
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ok = true
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@@ -384,6 +401,7 @@ func (p *parser) valueArray(it item) (interface{}, tomlType) {
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//
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// Not entirely sure how to best store this; could use "key[0]",
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// "key[1]" notation, or maybe store it on the Array type?
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_ = types
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}
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return array, tomlArray
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}
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@@ -426,11 +444,11 @@ func (p *parser) valueInlineTable(it item, parentIsArray bool) (interface{}, tom
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for i := range context {
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p.addImplicitContext(append(p.context, context[i:i+1]...))
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}
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p.ordered = append(p.ordered, p.context.add(p.currentKey))
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/// Set the value.
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val, typ := p.value(p.next(), false)
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p.set(p.currentKey, val, typ, it.pos)
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p.ordered = append(p.ordered, p.context.add(p.currentKey))
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hash[p.currentKey] = val
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/// Restore context.
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@@ -551,7 +569,6 @@ func (p *parser) addContext(key Key, array bool) {
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func (p *parser) set(key string, val interface{}, typ tomlType, pos Position) {
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p.setValue(key, val)
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p.setType(key, typ, pos)
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}
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// setValue sets the given key to the given value in the current context.
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@@ -632,14 +649,11 @@ func (p *parser) setType(key string, typ tomlType, pos Position) {
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// Implicit keys need to be created when tables are implied in "a.b.c.d = 1" and
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// "[a.b.c]" (the "a", "b", and "c" hashes are never created explicitly).
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func (p *parser) addImplicit(key Key) { p.implicits[key.String()] = struct{}{} }
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func (p *parser) removeImplicit(key Key) { delete(p.implicits, key.String()) }
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func (p *parser) isImplicit(key Key) bool { _, ok := p.implicits[key.String()]; return ok }
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func (p *parser) isArray(key Key) bool { return p.keyInfo[key.String()].tomlType == tomlArray }
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func (p *parser) addImplicitContext(key Key) {
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p.addImplicit(key)
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p.addContext(key, false)
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}
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func (p *parser) addImplicit(key Key) { p.implicits[key.String()] = struct{}{} }
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func (p *parser) removeImplicit(key Key) { delete(p.implicits, key.String()) }
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func (p *parser) isImplicit(key Key) bool { _, ok := p.implicits[key.String()]; return ok }
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func (p *parser) isArray(key Key) bool { return p.keyInfo[key.String()].tomlType == tomlArray }
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func (p *parser) addImplicitContext(key Key) { p.addImplicit(key); p.addContext(key, false) }
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// current returns the full key name of the current context.
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func (p *parser) current() string {
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@@ -662,49 +676,54 @@ func stripFirstNewline(s string) string {
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return s
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}
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// Remove newlines inside triple-quoted strings if a line ends with "\".
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// stripEscapedNewlines removes whitespace after line-ending backslashes in
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// multiline strings.
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//
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// A line-ending backslash is an unescaped \ followed only by whitespace until
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// the next newline. After a line-ending backslash, all whitespace is removed
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// until the next non-whitespace character.
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func (p *parser) stripEscapedNewlines(s string) string {
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split := strings.Split(s, "\n")
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if len(split) < 1 {
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return s
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}
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var b strings.Builder
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var i int
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for {
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ix := strings.Index(s[i:], `\`)
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if ix < 0 {
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b.WriteString(s)
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return b.String()
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}
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i += ix
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escNL := false // Keep track of the last non-blank line was escaped.
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for i, line := range split {
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line = strings.TrimRight(line, " \t\r")
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if len(line) == 0 || line[len(line)-1] != '\\' {
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split[i] = strings.TrimRight(split[i], "\r")
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if !escNL && i != len(split)-1 {
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split[i] += "\n"
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if len(s) > i+1 && s[i+1] == '\\' {
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// Escaped backslash.
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i += 2
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continue
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}
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// Scan until the next non-whitespace.
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j := i + 1
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whitespaceLoop:
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for ; j < len(s); j++ {
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switch s[j] {
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case ' ', '\t', '\r', '\n':
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default:
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break whitespaceLoop
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}
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}
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if j == i+1 {
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// Not a whitespace escape.
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i++
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continue
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}
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escBS := true
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for j := len(line) - 1; j >= 0 && line[j] == '\\'; j-- {
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escBS = !escBS
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}
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if escNL {
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line = strings.TrimLeft(line, " \t\r")
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}
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escNL = !escBS
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if escBS {
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split[i] += "\n"
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if !strings.Contains(s[i:j], "\n") {
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// This is not a line-ending backslash.
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// (It's a bad escape sequence, but we can let
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// replaceEscapes catch it.)
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i++
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continue
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}
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if i == len(split)-1 {
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p.panicf("invalid escape: '\\ '")
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}
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split[i] = line[:len(line)-1] // Remove \
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if len(split)-1 > i {
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split[i+1] = strings.TrimLeft(split[i+1], " \t\r")
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}
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b.WriteString(s[:i])
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s = s[j:]
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i = 0
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}
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return strings.Join(split, "")
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}
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func (p *parser) replaceEscapes(it item, str string) string {
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@@ -743,12 +762,23 @@ func (p *parser) replaceEscapes(it item, str string) string {
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case 'r':
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replaced = append(replaced, rune(0x000D))
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r += 1
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case 'e':
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if p.tomlNext {
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replaced = append(replaced, rune(0x001B))
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r += 1
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}
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case '"':
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replaced = append(replaced, rune(0x0022))
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r += 1
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case '\\':
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replaced = append(replaced, rune(0x005C))
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r += 1
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case 'x':
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if p.tomlNext {
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escaped := p.asciiEscapeToUnicode(it, s[r+1:r+3])
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replaced = append(replaced, escaped)
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r += 3
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}
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case 'u':
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// At this point, we know we have a Unicode escape of the form
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// `uXXXX` at [r, r+5). (Because the lexer guarantees this
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