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template: support string, int and float literals
This enables customizing the behavior of formatters with logic such as {"template"|import} or even {Field1 Field2 "%.2f 0x%X"|printf} Thanks to Roger Peppe for some debate on this. R=golang-dev, r, r CC=golang-dev https://golang.org/cl/4536059
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@ -76,6 +76,10 @@
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executed sequentially, with each formatter receiving the bytes
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emitted by the one to its left.
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As well as field names, one may use literals with Go syntax.
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Integer, floating-point, and string literals are supported.
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Raw strings may not span newlines.
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The delimiter strings get their default value, "{" and "}", from
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JSON-template. They may be set to any non-empty, space-free
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string using the SetDelims method. Their value can be printed
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@ -91,6 +95,7 @@ import (
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"io/ioutil"
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"os"
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"reflect"
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"strconv"
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"strings"
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"unicode"
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"utf8"
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@ -151,10 +156,13 @@ type literalElement struct {
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// A variable invocation to be evaluated
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type variableElement struct {
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linenum int
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word []string // The fields in the invocation.
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fmts []string // Names of formatters to apply. len(fmts) > 0
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args []interface{} // The fields and literals in the invocation.
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fmts []string // Names of formatters to apply. len(fmts) > 0
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}
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// A variableElement arg to be evaluated as a field name
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type fieldName string
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// A .section block, possibly with a .or
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type sectionElement struct {
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linenum int // of .section itself
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@ -245,6 +253,31 @@ func equal(s []byte, n int, t []byte) bool {
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return true
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}
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// isQuote returns true if c is a string- or character-delimiting quote character.
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func isQuote(c byte) bool {
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return c == '"' || c == '`' || c == '\''
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}
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// endQuote returns the end quote index for the quoted string that
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// starts at n, or -1 if no matching end quote is found before the end
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// of the line.
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func endQuote(s []byte, n int) int {
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quote := s[n]
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for n++; n < len(s); n++ {
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switch s[n] {
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case '\\':
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if quote == '"' || quote == '\'' {
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n++
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}
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case '\n':
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return -1
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case quote:
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return n
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}
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}
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return -1
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}
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// nextItem returns the next item from the input buffer. If the returned
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// item is empty, we are at EOF. The item will be either a
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// delimited string or a non-empty string between delimited
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@ -282,6 +315,14 @@ func (t *Template) nextItem() []byte {
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if t.buf[i] == '\n' {
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break
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}
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if isQuote(t.buf[i]) {
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i = endQuote(t.buf, i)
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if i == -1 {
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t.parseError("unmatched quote")
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return nil
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}
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continue
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}
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if equal(t.buf, i, t.rdelim) {
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i += len(t.rdelim)
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right = i
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@ -333,23 +374,33 @@ func (t *Template) nextItem() []byte {
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return item
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}
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// Turn a byte array into a white-space-split array of strings.
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// Turn a byte array into a white-space-split array of strings,
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// taking into account quoted strings.
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func words(buf []byte) []string {
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s := make([]string, 0, 5)
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p := 0 // position in buf
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// one word per loop
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for i := 0; ; i++ {
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// skip white space
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for ; p < len(buf) && white(buf[p]); p++ {
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for i := 0; i < len(buf); {
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// One word per loop
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for i < len(buf) && white(buf[i]) {
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i++
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}
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// grab word
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start := p
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for ; p < len(buf) && !white(buf[p]); p++ {
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}
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if start == p { // no text left
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if i == len(buf) {
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break
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}
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s = append(s, string(buf[start:p]))
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// Got a word
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start := i
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if isQuote(buf[i]) {
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i = endQuote(buf, i)
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if i < 0 {
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i = len(buf)
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} else {
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i++
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}
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} else {
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for i < len(buf) && !white(buf[i]) {
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i++
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}
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}
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s = append(s, string(buf[start:i]))
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}
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return s
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}
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@ -381,11 +432,17 @@ func (t *Template) analyze(item []byte) (tok int, w []string) {
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t.parseError("empty directive")
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return
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}
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if len(w) > 0 && w[0][0] != '.' {
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first := w[0]
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if first[0] != '.' {
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tok = tokVariable
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return
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}
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switch w[0] {
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if len(first) > 1 && first[1] >= '0' && first[1] <= '9' {
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// Must be a float.
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tok = tokVariable
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return
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}
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switch first {
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case ".meta-left", ".meta-right", ".space", ".tab":
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tok = tokLiteral
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return
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@ -447,6 +504,37 @@ func (t *Template) newVariable(words []string) *variableElement {
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formatters = strings.Split(lastWord[bar+1:], "|", -1)
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}
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args := make([]interface{}, len(words))
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// Build argument list, processing any literals
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for i, word := range words {
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var lerr os.Error
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switch word[0] {
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case '"', '`', '\'':
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v, err := strconv.Unquote(word)
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if err == nil && word[0] == '\'' {
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args[i] = []int(v)[0]
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} else {
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args[i], lerr = v, err
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}
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case '.', '+', '-', '0', '1', '2', '3', '4', '5', '6', '7', '8', '9':
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v, err := strconv.Btoi64(word, 0)
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if err == nil {
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args[i] = v
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} else {
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v, err := strconv.Atof64(word)
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args[i], lerr = v, err
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}
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default:
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args[i] = fieldName(word)
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}
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if lerr != nil {
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t.parseError("invalid literal: %q: %s", word, lerr)
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}
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}
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// We could remember the function address here and avoid the lookup later,
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// but it's more dynamic to let the user change the map contents underfoot.
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// We do require the name to be present, though.
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@ -457,7 +545,8 @@ func (t *Template) newVariable(words []string) *variableElement {
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t.parseError("unknown formatter: %q", f)
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}
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}
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return &variableElement{t.linenum, words, formatters}
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return &variableElement{t.linenum, args, formatters}
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}
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// Grab the next item. If it's simple, just append it to the template.
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@ -753,7 +842,7 @@ func (t *Template) varValue(name string, st *state) reflect.Value {
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func (t *Template) format(wr io.Writer, fmt string, val []interface{}, v *variableElement, st *state) {
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fn := t.formatter(fmt)
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if fn == nil {
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t.execError(st, v.linenum, "missing formatter %s for variable %s", fmt, v.word[0])
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t.execError(st, v.linenum, "missing formatter %s for variable", fmt)
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}
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fn(wr, fmt, val...)
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}
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@ -761,12 +850,15 @@ func (t *Template) format(wr io.Writer, fmt string, val []interface{}, v *variab
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// Evaluate a variable, looking up through the parent if necessary.
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// If it has a formatter attached ({var|formatter}) run that too.
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func (t *Template) writeVariable(v *variableElement, st *state) {
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// Turn the words of the invocation into values.
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val := make([]interface{}, len(v.word))
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for i, word := range v.word {
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val[i] = t.varValue(word, st).Interface()
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// Resolve field names
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val := make([]interface{}, len(v.args))
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for i, arg := range v.args {
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if name, ok := arg.(fieldName); ok {
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val[i] = t.varValue(string(name), st).Interface()
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} else {
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val[i] = arg
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}
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}
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for i, fmt := range v.fmts[:len(v.fmts)-1] {
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b := &st.buf[i&1]
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b.Reset()
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@ -94,10 +94,15 @@ func multiword(w io.Writer, format string, value ...interface{}) {
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}
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}
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func printf(w io.Writer, format string, v ...interface{}) {
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io.WriteString(w, fmt.Sprintf(v[0].(string), v[1:]...))
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}
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var formatters = FormatterMap{
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"uppercase": writer(uppercase),
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"+1": writer(plus1),
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"multiword": multiword,
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"printf": printf,
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}
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var tests = []*Test{
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@ -138,6 +143,36 @@ var tests = []*Test{
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out: "nil pointer: <nil>=77\n",
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},
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&Test{
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in: `{"Strings" ":"} {""} {"\t\u0123 \x23\\"} {"\"}{\\"}`,
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out: "Strings: \t\u0123 \x23\\ \"}{\\",
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},
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&Test{
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in: "{`Raw strings` `:`} {``} {`\\t\\u0123 \\x23\\`} {`}{\\`}",
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out: "Raw strings: \\t\\u0123 \\x23\\ }{\\",
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},
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&Test{
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in: "Characters: {'a'} {'\\u0123'} {' '} {'}'} {'{'}",
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out: "Characters: 97 291 32 125 123",
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},
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&Test{
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in: "Integers: {1} {-2} {+42} {0777} {0x0a}",
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out: "Integers: 1 -2 42 511 10",
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},
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&Test{
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in: "Floats: {.5} {-.5} {1.1} {-2.2} {+42.1} {1e10} {1.2e-3} {1.2e3} {-1.2e3}",
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out: "Floats: 0.5 -0.5 1.1 -2.2 42.1 1e+10 0.0012 1200 -1200",
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},
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// Method at top level
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&Test{
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in: "ptrmethod={PointerMethod}\n",
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@ -723,6 +758,10 @@ var formatterTests = []Test{
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in: "{Integer|||||}", // empty string is a valid formatter
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out: "77",
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},
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{
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in: `{"%.02f 0x%02X" 1.1 10|printf}`,
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out: "1.10 0x0A",
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},
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}
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func TestFormatters(t *testing.T) {
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