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fmt: add %U format for standard Unicode representation of integer values.
fmt.Printf("%U", 1) yields "U+0001" It's essentially "U+%.4x" but lets you override the precision works in scan, too. R=rsc CC=golang-dev https://golang.org/cl/3423043
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@ -26,6 +26,7 @@
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%o base 8
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%x base 16, with lower-case letters for a-f
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%X base 16, with upper-case letters for A-F
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%U unicode format: U+1234; same as "U+%x" with 4 digits default
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Floating-point and complex constituents:
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%e scientific notation, e.g. -1234.456e+78
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%E scientific notation, e.g. -1234.456E+78
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@ -161,6 +161,14 @@ var fmttests = []fmtTest{
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{"% d", 0, " 0"},
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{"% d", 12345, " 12345"},
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// unicode format
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{"%U", 0x1, "U+0001"},
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{"%.8U", 0x2, "U+00000002"},
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{"%U", 0x1234, "U+1234"},
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{"%U", 0x12345, "U+12345"},
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{"%10.6U", 0xABC, " U+000ABC"},
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{"%-10.6U", 0xABC, "U+000ABC "},
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// floats
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{"%+.3e", 0.0, "+0.000e+00"},
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{"%+.3e", 1.0, "+1.000e+00"},
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@ -49,6 +49,7 @@ type fmt struct {
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plus bool
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sharp bool
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space bool
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unicode bool
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zero bool
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}
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@ -61,6 +62,7 @@ func (f *fmt) clearflags() {
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f.plus = false
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f.sharp = false
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f.space = false
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f.unicode = false
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f.zero = false
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}
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@ -213,6 +215,12 @@ func (f *fmt) integer(a int64, base uint64, signedness bool, digits string) {
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buf[i] = '0'
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}
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}
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if f.unicode {
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i--
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buf[i] = '+'
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i--
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buf[i] = 'U'
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}
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if negative {
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i--
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@ -316,6 +316,8 @@ func (p *pp) fmtInt64(v int64, verb int, value interface{}) {
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p.fmt.integer(v, 8, signed, ldigits)
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case 'x':
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p.fmt.integer(v, 16, signed, ldigits)
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case 'U':
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p.fmtUnicode(v)
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case 'X':
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p.fmt.integer(v, 16, signed, udigits)
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default:
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@ -323,7 +325,7 @@ func (p *pp) fmtInt64(v int64, verb int, value interface{}) {
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}
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}
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// fmt_sharpHex64 formats a uint64 in hexadecimal and prefixes it with 0x by
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// fmt0x64 formats a uint64 in hexadecimal and prefixes it with 0x by
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// temporarily turning on the sharp flag.
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func (p *pp) fmt0x64(v uint64) {
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sharp := p.fmt.sharp
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@ -332,6 +334,23 @@ func (p *pp) fmt0x64(v uint64) {
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p.fmt.sharp = sharp
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}
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// fmtUnicode formats a uint64 in U+1234 form by
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// temporarily turning on the unicode flag and tweaking the precision.
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func (p *pp) fmtUnicode(v int64) {
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precPresent := p.fmt.precPresent
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prec := p.fmt.prec
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if !precPresent {
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// If prec is already set, leave it alone; otherwise 4 is minimum.
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p.fmt.prec = 4
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p.fmt.precPresent = true
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}
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p.fmt.unicode = true // turn on U+
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p.fmt.integer(int64(v), 16, unsigned, udigits)
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p.fmt.unicode = false
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p.fmt.prec = prec
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p.fmt.precPresent = precPresent
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}
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func (p *pp) fmtUint64(v uint64, verb int, goSyntax bool, value interface{}) {
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switch verb {
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case 'b':
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@ -388,9 +388,9 @@ func (s *ss) typeError(field interface{}, expected string) {
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var complexError = os.ErrorString("syntax error scanning complex number")
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var boolError = os.ErrorString("syntax error scanning boolean")
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// accepts checks the next rune in the input. If it's a byte (sic) in the string, it puts it in the
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// buffer and returns true. Otherwise it return false.
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func (s *ss) accept(ok string) bool {
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// consume reads the next rune in the input and reports whether it is in the ok string.
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// If accept is true, it puts the character into the input token.
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func (s *ss) consume(ok string, accept bool) bool {
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if s.wid >= s.maxWid {
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return false
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}
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@ -400,17 +400,25 @@ func (s *ss) accept(ok string) bool {
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}
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for i := 0; i < len(ok); i++ {
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if int(ok[i]) == rune {
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s.buf.WriteRune(rune)
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s.wid++
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if accept {
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s.buf.WriteRune(rune)
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s.wid++
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}
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return true
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}
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}
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if rune != EOF {
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if rune != EOF && accept {
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s.UngetRune()
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}
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return false
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}
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// accept checks the next rune in the input. If it's a byte (sic) in the string, it puts it in the
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// buffer and returns true. Otherwise it return false.
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func (s *ss) accept(ok string) bool {
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return s.consume(ok, true)
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}
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// okVerb verifies that the verb is present in the list, setting s.err appropriately if not.
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func (s *ss) okVerb(verb int, okVerbs, typ string) bool {
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for _, v := range okVerbs {
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@ -460,7 +468,7 @@ const (
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// getBase returns the numeric base represented by the verb and its digit string.
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func (s *ss) getBase(verb int) (base int, digits string) {
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s.okVerb(verb, "bdoxXv", "integer") // sets s.err
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s.okVerb(verb, "bdoUxXv", "integer") // sets s.err
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base = 10
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digits = decimalDigits
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switch verb {
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@ -470,7 +478,7 @@ func (s *ss) getBase(verb int) (base int, digits string) {
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case 'o':
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base = 8
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digits = octalDigits
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case 'x', 'X':
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case 'x', 'X', 'U':
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base = 16
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digits = hexadecimalDigits
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}
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@ -506,7 +514,13 @@ func (s *ss) scanInt(verb int, bitSize int) int64 {
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}
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base, digits := s.getBase(verb)
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s.skipSpace(false)
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s.accept(sign) // If there's a sign, it will be left in the token buffer.
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if verb == 'U' {
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if !s.consume("U", false) || !s.consume("+", false) {
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s.errorString("bad unicode format ")
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}
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} else {
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s.accept(sign) // If there's a sign, it will be left in the token buffer.
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}
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tok := s.scanNumber(digits)
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i, err := strconv.Btoi64(tok, base)
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if err != nil {
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@ -528,6 +542,11 @@ func (s *ss) scanUint(verb int, bitSize int) uint64 {
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}
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base, digits := s.getBase(verb)
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s.skipSpace(false)
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if verb == 'U' {
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if !s.consume("U", false) || !s.consume("+", false) {
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s.errorString("bad unicode format ")
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}
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}
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tok := s.scanNumber(digits)
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i, err := strconv.Btoui64(tok, base)
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if err != nil {
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@ -222,6 +222,8 @@ var scanfTests = []ScanfTest{
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{"%o", "075\n", &uintVal, uint(075)},
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{"%x", "a75\n", &uintVal, uint(0xa75)},
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{"%x", "A75\n", &uintVal, uint(0xa75)},
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{"%U", "U+1234\n", &intVal, int(0x1234)},
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{"%U", "U+4567\n", &uintVal, uint(0x4567)},
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// Strings
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{"%s", "using-%s\n", &stringVal, "using-%s"},
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