6c4344623b
The main HCL package is more visible this way, and so it's easier than having to pick it out from dozens of other package directories.
251 lines
5.8 KiB
Go
251 lines
5.8 KiB
Go
package hclwrite
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import (
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"fmt"
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"unicode"
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"unicode/utf8"
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"github.com/hashicorp/hcl/v2"
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"github.com/hashicorp/hcl/v2/hclsyntax"
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"github.com/zclconf/go-cty/cty"
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)
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// TokensForValue returns a sequence of tokens that represents the given
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// constant value.
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//
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// This function only supports types that are used by HCL. In particular, it
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// does not support capsule types and will panic if given one.
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//
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// It is not possible to express an unknown value in source code, so this
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// function will panic if the given value is unknown or contains any unknown
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// values. A caller can call the value's IsWhollyKnown method to verify that
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// no unknown values are present before calling TokensForValue.
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func TokensForValue(val cty.Value) Tokens {
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toks := appendTokensForValue(val, nil)
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format(toks) // fiddle with the SpacesBefore field to get canonical spacing
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return toks
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}
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// TokensForTraversal returns a sequence of tokens that represents the given
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// traversal.
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//
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// If the traversal is absolute then the result is a self-contained, valid
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// reference expression. If the traversal is relative then the returned tokens
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// could be appended to some other expression tokens to traverse into the
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// represented expression.
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func TokensForTraversal(traversal hcl.Traversal) Tokens {
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toks := appendTokensForTraversal(traversal, nil)
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format(toks) // fiddle with the SpacesBefore field to get canonical spacing
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return toks
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}
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func appendTokensForValue(val cty.Value, toks Tokens) Tokens {
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switch {
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case !val.IsKnown():
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panic("cannot produce tokens for unknown value")
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case val.IsNull():
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toks = append(toks, &Token{
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Type: hclsyntax.TokenIdent,
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Bytes: []byte(`null`),
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})
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case val.Type() == cty.Bool:
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var src []byte
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if val.True() {
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src = []byte(`true`)
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} else {
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src = []byte(`false`)
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}
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toks = append(toks, &Token{
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Type: hclsyntax.TokenIdent,
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Bytes: src,
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})
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case val.Type() == cty.Number:
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bf := val.AsBigFloat()
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srcStr := bf.Text('f', -1)
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toks = append(toks, &Token{
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Type: hclsyntax.TokenNumberLit,
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Bytes: []byte(srcStr),
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})
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case val.Type() == cty.String:
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// TODO: If it's a multi-line string ending in a newline, format
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// it as a HEREDOC instead.
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src := escapeQuotedStringLit(val.AsString())
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toks = append(toks, &Token{
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Type: hclsyntax.TokenOQuote,
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Bytes: []byte{'"'},
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})
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if len(src) > 0 {
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toks = append(toks, &Token{
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Type: hclsyntax.TokenQuotedLit,
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Bytes: src,
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})
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}
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toks = append(toks, &Token{
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Type: hclsyntax.TokenCQuote,
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Bytes: []byte{'"'},
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})
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case val.Type().IsListType() || val.Type().IsSetType() || val.Type().IsTupleType():
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toks = append(toks, &Token{
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Type: hclsyntax.TokenOBrack,
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Bytes: []byte{'['},
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})
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i := 0
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for it := val.ElementIterator(); it.Next(); {
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if i > 0 {
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toks = append(toks, &Token{
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Type: hclsyntax.TokenComma,
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Bytes: []byte{','},
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})
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}
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_, eVal := it.Element()
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toks = appendTokensForValue(eVal, toks)
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i++
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}
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toks = append(toks, &Token{
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Type: hclsyntax.TokenCBrack,
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Bytes: []byte{']'},
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})
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case val.Type().IsMapType() || val.Type().IsObjectType():
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toks = append(toks, &Token{
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Type: hclsyntax.TokenOBrace,
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Bytes: []byte{'{'},
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})
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i := 0
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for it := val.ElementIterator(); it.Next(); {
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if i > 0 {
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toks = append(toks, &Token{
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Type: hclsyntax.TokenComma,
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Bytes: []byte{','},
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})
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}
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eKey, eVal := it.Element()
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if hclsyntax.ValidIdentifier(eKey.AsString()) {
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toks = append(toks, &Token{
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Type: hclsyntax.TokenIdent,
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Bytes: []byte(eKey.AsString()),
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})
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} else {
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toks = appendTokensForValue(eKey, toks)
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}
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toks = append(toks, &Token{
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Type: hclsyntax.TokenEqual,
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Bytes: []byte{'='},
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})
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toks = appendTokensForValue(eVal, toks)
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i++
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}
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toks = append(toks, &Token{
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Type: hclsyntax.TokenCBrace,
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Bytes: []byte{'}'},
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})
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default:
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panic(fmt.Sprintf("cannot produce tokens for %#v", val))
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}
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return toks
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}
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func appendTokensForTraversal(traversal hcl.Traversal, toks Tokens) Tokens {
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for _, step := range traversal {
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appendTokensForTraversalStep(step, toks)
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}
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return toks
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}
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func appendTokensForTraversalStep(step hcl.Traverser, toks Tokens) {
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switch ts := step.(type) {
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case hcl.TraverseRoot:
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toks = append(toks, &Token{
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Type: hclsyntax.TokenIdent,
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Bytes: []byte(ts.Name),
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})
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case hcl.TraverseAttr:
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toks = append(
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toks,
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&Token{
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Type: hclsyntax.TokenDot,
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Bytes: []byte{'.'},
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},
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&Token{
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Type: hclsyntax.TokenIdent,
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Bytes: []byte(ts.Name),
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},
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)
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case hcl.TraverseIndex:
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toks = append(toks, &Token{
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Type: hclsyntax.TokenOBrack,
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Bytes: []byte{'['},
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})
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appendTokensForValue(ts.Key, toks)
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toks = append(toks, &Token{
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Type: hclsyntax.TokenCBrack,
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Bytes: []byte{']'},
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})
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default:
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panic(fmt.Sprintf("unsupported traversal step type %T", step))
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}
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}
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func escapeQuotedStringLit(s string) []byte {
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if len(s) == 0 {
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return nil
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}
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buf := make([]byte, 0, len(s))
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for i, r := range s {
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switch r {
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case '\n':
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buf = append(buf, '\\', 'n')
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case '\r':
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buf = append(buf, '\\', 'r')
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case '\t':
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buf = append(buf, '\\', 't')
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case '"':
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buf = append(buf, '\\', '"')
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case '\\':
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buf = append(buf, '\\', '\\')
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case '$', '%':
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buf = appendRune(buf, r)
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remain := s[i+1:]
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if len(remain) > 0 && remain[0] == '{' {
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// Double up our template introducer symbol to escape it.
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buf = appendRune(buf, r)
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}
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default:
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if !unicode.IsPrint(r) {
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var fmted string
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if r < 65536 {
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fmted = fmt.Sprintf("\\u%04x", r)
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} else {
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fmted = fmt.Sprintf("\\U%08x", r)
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}
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buf = append(buf, fmted...)
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} else {
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buf = appendRune(buf, r)
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}
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}
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}
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return buf
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}
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func appendRune(b []byte, r rune) []byte {
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l := utf8.RuneLen(r)
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for i := 0; i < l; i++ {
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b = append(b, 0) // make room at the end of our buffer
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}
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ch := b[len(b)-l:]
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utf8.EncodeRune(ch, r)
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return b
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}
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