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| package strconv |
|
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| const ( |
| lowerhex = "0123456789abcdef" |
| upperhex = "0123456789ABCDEF" |
| ) |
|
|
| type floatInfo struct { |
| mantbits uint |
| expbits uint |
| bias int |
| } |
|
|
| const ( |
| float32MantBits = 23 |
| float32ExpBits = 8 |
| float32Bias = -127 |
| float64MantBits = 52 |
| float64ExpBits = 11 |
| float64Bias = -1023 |
| ) |
|
|
| var ( |
| float32info = floatInfo{float32MantBits, float32ExpBits, float32Bias} |
| float64info = floatInfo{float64MantBits, float64ExpBits, float64Bias} |
| ) |
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| |
| func FormatFloat(f float64, fmt byte, prec, bitSize int) string { |
| return string(genericFtoa(make([]byte, 0, max(prec+4, 24)), f, fmt, prec, bitSize)) |
| } |
|
|
| |
| |
| func AppendFloat(dst []byte, f float64, fmt byte, prec, bitSize int) []byte { |
| return genericFtoa(dst, f, fmt, prec, bitSize) |
| } |
|
|
| func genericFtoa(dst []byte, val float64, fmt byte, prec, bitSize int) []byte { |
| var bits uint64 |
| var flt *floatInfo |
| switch bitSize { |
| case 32: |
| bits = uint64(float32bits(float32(val))) |
| flt = &float32info |
| case 64: |
| bits = float64bits(val) |
| flt = &float64info |
| default: |
| panic("strconv: illegal AppendFloat/FormatFloat bitSize") |
| } |
|
|
| neg := bits>>(flt.expbits+flt.mantbits) != 0 |
| exp := int(bits>>flt.mantbits) & (1<<flt.expbits - 1) |
| mant := bits & (uint64(1)<<flt.mantbits - 1) |
| denorm := false |
|
|
| switch exp { |
| case 1<<flt.expbits - 1: |
| |
| var s string |
| switch { |
| case mant != 0: |
| s = "NaN" |
| case neg: |
| s = "-Inf" |
| default: |
| s = "+Inf" |
| } |
| return append(dst, s...) |
|
|
| case 0: |
| |
| exp++ |
| denorm = true |
|
|
| default: |
| |
| mant |= uint64(1) << flt.mantbits |
| } |
| exp += flt.bias |
|
|
| |
| if fmt == 'b' { |
| return fmtB(dst, neg, mant, exp, flt) |
| } |
| if fmt == 'x' || fmt == 'X' { |
| return fmtX(dst, prec, fmt, neg, mant, exp, flt) |
| } |
|
|
| if !optimize { |
| return bigFtoa(dst, prec, fmt, neg, mant, exp, flt) |
| } |
|
|
| |
| shortest := prec < 0 |
| var digs decimalSlice |
| if mant == 0 { |
| return formatDigits(dst, shortest, neg, digs, prec, fmt) |
| } |
| if shortest { |
| |
| var buf [32]byte |
| digs.d = buf[:] |
| dboxFtoa(&digs, mant, exp-int(flt.mantbits), denorm, bitSize) |
| |
| switch fmt { |
| case 'e', 'E': |
| prec = max(digs.nd-1, 0) |
| case 'f': |
| prec = max(digs.nd-digs.dp, 0) |
| case 'g', 'G': |
| prec = digs.nd |
| } |
| return formatDigits(dst, shortest, neg, digs, prec, fmt) |
| } |
|
|
| |
| digits := prec |
| switch fmt { |
| case 'f': |
| |
| |
| |
| if exp >= 0 { |
| digits = 1 + mulLog10_2(1+exp) + prec |
| } else { |
| digits = 1 + prec - mulLog10_2(-exp) |
| } |
| case 'e', 'E': |
| digits++ |
| case 'g', 'G': |
| if prec == 0 { |
| prec = 1 |
| } |
| digits = prec |
| default: |
| |
| digits = 1 |
| } |
| if digits <= 18 { |
| |
| |
| if digits > 0 { |
| var buf [24]byte |
| digs.d = buf[:] |
| fixedFtoa(&digs, mant, exp-int(flt.mantbits), digits, prec, fmt) |
| } |
| return formatDigits(dst, false, neg, digs, prec, fmt) |
| } |
|
|
| return bigFtoa(dst, prec, fmt, neg, mant, exp, flt) |
| } |
|
|
| |
| func bigFtoa(dst []byte, prec int, fmt byte, neg bool, mant uint64, exp int, flt *floatInfo) []byte { |
| d := new(decimal) |
| d.Assign(mant) |
| d.Shift(exp - int(flt.mantbits)) |
| var digs decimalSlice |
| shortest := prec < 0 |
| if shortest { |
| roundShortest(d, mant, exp, flt) |
| digs = decimalSlice{d: d.d[:], nd: d.nd, dp: d.dp} |
| |
| switch fmt { |
| case 'e', 'E': |
| prec = digs.nd - 1 |
| case 'f': |
| prec = max(digs.nd-digs.dp, 0) |
| case 'g', 'G': |
| prec = digs.nd |
| } |
| } else { |
| |
| switch fmt { |
| case 'e', 'E': |
| d.Round(prec + 1) |
| case 'f': |
| d.Round(d.dp + prec) |
| case 'g', 'G': |
| if prec == 0 { |
| prec = 1 |
| } |
| d.Round(prec) |
| } |
| digs = decimalSlice{d: d.d[:], nd: d.nd, dp: d.dp} |
| } |
| return formatDigits(dst, shortest, neg, digs, prec, fmt) |
| } |
|
|
| func formatDigits(dst []byte, shortest bool, neg bool, digs decimalSlice, prec int, fmt byte) []byte { |
| switch fmt { |
| case 'e', 'E': |
| return fmtE(dst, neg, digs, prec, fmt) |
| case 'f': |
| return fmtF(dst, neg, digs, prec) |
| case 'g', 'G': |
| |
| eprec := prec |
| if eprec > digs.nd && digs.nd >= digs.dp { |
| eprec = digs.nd |
| } |
| |
| |
| |
| if shortest { |
| eprec = 6 |
| } |
| exp := digs.dp - 1 |
| if exp < -4 || exp >= eprec { |
| if prec > digs.nd { |
| prec = digs.nd |
| } |
| return fmtE(dst, neg, digs, prec-1, fmt+'e'-'g') |
| } |
| if prec > digs.dp { |
| prec = digs.nd |
| } |
| return fmtF(dst, neg, digs, max(prec-digs.dp, 0)) |
| } |
|
|
| |
| return append(dst, '%', fmt) |
| } |
|
|
| |
| |
| func roundShortest(d *decimal, mant uint64, exp int, flt *floatInfo) { |
| |
| if mant == 0 { |
| d.nd = 0 |
| return |
| } |
|
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| |
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| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| minexp := flt.bias + 1 |
| if exp > minexp && 332*(d.dp-d.nd) >= 100*(exp-int(flt.mantbits)) { |
| |
| return |
| } |
|
|
| |
| |
| |
| upper := new(decimal) |
| upper.Assign(mant*2 + 1) |
| upper.Shift(exp - int(flt.mantbits) - 1) |
|
|
| |
| |
| |
| |
| |
| |
| var mantlo uint64 |
| var explo int |
| if mant > 1<<flt.mantbits || exp == minexp { |
| mantlo = mant - 1 |
| explo = exp |
| } else { |
| mantlo = mant*2 - 1 |
| explo = exp - 1 |
| } |
| lower := new(decimal) |
| lower.Assign(mantlo*2 + 1) |
| lower.Shift(explo - int(flt.mantbits) - 1) |
|
|
| |
| |
| |
| inclusive := mant%2 == 0 |
|
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| |
| |
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| |
| |
| |
| |
| |
| var upperdelta uint8 |
|
|
| |
| |
| for ui := 0; ; ui++ { |
| |
| |
| |
| mi := ui - upper.dp + d.dp |
| if mi >= d.nd { |
| break |
| } |
| li := ui - upper.dp + lower.dp |
| l := byte('0') |
| if li >= 0 && li < lower.nd { |
| l = lower.d[li] |
| } |
| m := byte('0') |
| if mi >= 0 { |
| m = d.d[mi] |
| } |
| u := byte('0') |
| if ui < upper.nd { |
| u = upper.d[ui] |
| } |
|
|
| |
| |
| |
| okdown := l != m || inclusive && li+1 == lower.nd |
|
|
| switch { |
| case upperdelta == 0 && m+1 < u: |
| |
| |
| |
| upperdelta = 2 |
| case upperdelta == 0 && m != u: |
| |
| |
| |
| upperdelta = 1 |
| case upperdelta == 1 && (m != '9' || u != '0'): |
| |
| |
| |
| upperdelta = 2 |
| } |
| |
| |
| okup := upperdelta > 0 && (inclusive || upperdelta > 1 || ui+1 < upper.nd) |
|
|
| |
| |
| switch { |
| case okdown && okup: |
| d.Round(mi + 1) |
| return |
| case okdown: |
| d.RoundDown(mi + 1) |
| return |
| case okup: |
| d.RoundUp(mi + 1) |
| return |
| } |
| } |
| } |
|
|
| type decimalSlice struct { |
| d []byte |
| nd, dp int |
| } |
|
|
| |
| func fmtE(dst []byte, neg bool, d decimalSlice, prec int, fmt byte) []byte { |
| |
| if neg { |
| dst = append(dst, '-') |
| } |
|
|
| |
| ch := byte('0') |
| if d.nd != 0 { |
| ch = d.d[0] |
| } |
| dst = append(dst, ch) |
|
|
| |
| if prec > 0 { |
| dst = append(dst, '.') |
| i := 1 |
| m := min(d.nd, prec+1) |
| if i < m { |
| dst = append(dst, d.d[i:m]...) |
| i = m |
| } |
| for ; i <= prec; i++ { |
| dst = append(dst, '0') |
| } |
| } |
|
|
| |
| dst = append(dst, fmt) |
| exp := d.dp - 1 |
| if d.nd == 0 { |
| exp = 0 |
| } |
| if exp < 0 { |
| ch = '-' |
| exp = -exp |
| } else { |
| ch = '+' |
| } |
| dst = append(dst, ch) |
|
|
| |
| switch { |
| case exp < 10: |
| dst = append(dst, '0', byte(exp)+'0') |
| case exp < 100: |
| dst = append(dst, byte(exp/10)+'0', byte(exp%10)+'0') |
| default: |
| dst = append(dst, byte(exp/100)+'0', byte(exp/10)%10+'0', byte(exp%10)+'0') |
| } |
|
|
| return dst |
| } |
|
|
| |
| func fmtF(dst []byte, neg bool, d decimalSlice, prec int) []byte { |
| |
| if neg { |
| dst = append(dst, '-') |
| } |
|
|
| |
| if d.dp > 0 { |
| m := min(d.nd, d.dp) |
| dst = append(dst, d.d[:m]...) |
| for ; m < d.dp; m++ { |
| dst = append(dst, '0') |
| } |
| } else { |
| dst = append(dst, '0') |
| } |
|
|
| |
| if prec > 0 { |
| dst = append(dst, '.') |
| for i := 0; i < prec; i++ { |
| ch := byte('0') |
| if j := d.dp + i; 0 <= j && j < d.nd { |
| ch = d.d[j] |
| } |
| dst = append(dst, ch) |
| } |
| } |
|
|
| return dst |
| } |
|
|
| |
| func fmtB(dst []byte, neg bool, mant uint64, exp int, flt *floatInfo) []byte { |
| |
| if neg { |
| dst = append(dst, '-') |
| } |
|
|
| |
| dst = AppendUint(dst, mant, 10) |
|
|
| |
| dst = append(dst, 'p') |
|
|
| |
| exp -= int(flt.mantbits) |
| if exp >= 0 { |
| dst = append(dst, '+') |
| } |
| dst = AppendInt(dst, int64(exp), 10) |
|
|
| return dst |
| } |
|
|
| |
| func fmtX(dst []byte, prec int, fmt byte, neg bool, mant uint64, exp int, flt *floatInfo) []byte { |
| if mant == 0 { |
| exp = 0 |
| } |
|
|
| |
| mant <<= 60 - flt.mantbits |
| for mant != 0 && mant&(1<<60) == 0 { |
| mant <<= 1 |
| exp-- |
| } |
|
|
| |
| if prec >= 0 && prec < 15 { |
| shift := uint(prec * 4) |
| extra := (mant << shift) & (1<<60 - 1) |
| mant >>= 60 - shift |
| if extra|(mant&1) > 1<<59 { |
| mant++ |
| } |
| mant <<= 60 - shift |
| if mant&(1<<61) != 0 { |
| |
| mant >>= 1 |
| exp++ |
| } |
| } |
|
|
| hex := lowerhex |
| if fmt == 'X' { |
| hex = upperhex |
| } |
|
|
| |
| if neg { |
| dst = append(dst, '-') |
| } |
| dst = append(dst, '0', fmt, '0'+byte((mant>>60)&1)) |
|
|
| |
| mant <<= 4 |
| if prec < 0 && mant != 0 { |
| dst = append(dst, '.') |
| for mant != 0 { |
| dst = append(dst, hex[(mant>>60)&15]) |
| mant <<= 4 |
| } |
| } else if prec > 0 { |
| dst = append(dst, '.') |
| for i := 0; i < prec; i++ { |
| dst = append(dst, hex[(mant>>60)&15]) |
| mant <<= 4 |
| } |
| } |
|
|
| |
| ch := byte('P') |
| if fmt == lower(fmt) { |
| ch = 'p' |
| } |
| dst = append(dst, ch) |
| if exp < 0 { |
| ch = '-' |
| exp = -exp |
| } else { |
| ch = '+' |
| } |
| dst = append(dst, ch) |
|
|
| |
| switch { |
| case exp < 100: |
| dst = append(dst, byte(exp/10)+'0', byte(exp%10)+'0') |
| case exp < 1000: |
| dst = append(dst, byte(exp/100)+'0', byte((exp/10)%10)+'0', byte(exp%10)+'0') |
| default: |
| dst = append(dst, byte(exp/1000)+'0', byte(exp/100)%10+'0', byte((exp/10)%10)+'0', byte(exp%10)+'0') |
| } |
|
|
| return dst |
| } |
|
|