mirror of
https://github.com/odin-lang/Odin.git
synced 2025-12-29 17:34:34 +00:00
282 lines
5.7 KiB
Odin
282 lines
5.7 KiB
Odin
package strconv
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import "decimal"
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Decimal_Slice :: struct {
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digits: []byte,
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count: int,
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decimal_point: int,
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neg: bool,
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}
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Float_Info :: struct {
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mantbits: uint,
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expbits: uint,
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bias: int,
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}
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_f16_info := Float_Info{10, 5, -15};
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_f32_info := Float_Info{23, 8, -127};
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_f64_info := Float_Info{52, 11, -1023};
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generic_ftoa :: proc(buf: []byte, val: f64, fmt: byte, precision, bit_size: int) -> []byte {
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bits: u64;
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flt: ^Float_Info;
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switch bit_size {
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case 32:
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bits = u64(transmute(u32)f32(val));
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flt = &_f32_info;
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case 64:
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bits = transmute(u64)val;
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flt = &_f64_info;
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case:
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panic("strconv: invalid bit_size");
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}
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neg := bits>>(flt.expbits+flt.mantbits) != 0;
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exp := int(bits>>flt.mantbits) & (1<<flt.expbits - 1);
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mant := bits & (u64(1) << flt.mantbits - 1);
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switch exp {
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case 1<<flt.expbits - 1:
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s: string;
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if mant != 0 {
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s = "NaN";
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} else if neg {
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s = "-Inf";
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} else {
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s = "+Inf";
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}
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n := copy(buf, s);
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return buf[:n];
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case 0: // denormalized
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exp += 1;
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case:
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mant |= u64(1) << flt.mantbits;
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}
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exp += flt.bias;
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d_: decimal.Decimal;
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d := &d_;
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decimal.assign(d, mant);
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decimal.shift(d, exp - int(flt.mantbits));
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digs: Decimal_Slice;
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prec := precision;
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shortest := prec < 0;
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if shortest {
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round_shortest(d, mant, exp, flt);
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digs = Decimal_Slice{digits = d.digits[:], count = d.count, decimal_point = d.decimal_point};
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switch fmt {
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case 'e', 'E': prec = digs.count-1;
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case 'f', 'F': prec = max(digs.count-digs.decimal_point, 0);
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case 'g', 'G': prec = digs.count;
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}
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} else {
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switch fmt {
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case 'e', 'E': decimal.round(d, prec+1);
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case 'f', 'F': decimal.round(d, d.decimal_point+prec);
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case 'g', 'G':
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if prec == 0 {
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prec = 1;
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}
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decimal.round(d, prec);
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}
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digs = Decimal_Slice{digits = d.digits[:], count = d.count, decimal_point = d.decimal_point};
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}
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return format_digits(buf, shortest, neg, digs, prec, fmt);
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}
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format_digits :: proc(buf: []byte, shortest: bool, neg: bool, digs: Decimal_Slice, precision: int, fmt: byte) -> []byte {
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Buffer :: struct {
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b: []byte,
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n: int,
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};
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to_bytes :: proc(b: Buffer) -> []byte do return b.b[:b.n];
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add_bytes :: proc(buf: ^Buffer, bytes: ..byte) {
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buf.n += copy(buf.b[buf.n:], bytes);
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}
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b := Buffer{b = buf};
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prec := precision;
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switch fmt {
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case 'f', 'F':
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add_bytes(&b, '-' if neg else '+');
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// integer, padded with zeros when needed
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if digs.decimal_point > 0 {
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m := min(digs.count, digs.decimal_point);
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add_bytes(&b, ..digs.digits[0:m]);
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for ; m < digs.decimal_point; m += 1 {
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add_bytes(&b, '0');
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}
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} else {
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add_bytes(&b, '0');
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}
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// fractional part
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if prec > 0 {
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add_bytes(&b, '.');
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for i in 0..<prec {
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c: byte = '0';
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if j := digs.decimal_point + i; 0 <= j && j < digs.count {
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c = digs.digits[j];
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}
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add_bytes(&b, c);
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}
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}
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return to_bytes(b);
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case 'e', 'E':
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add_bytes(&b, '-' if neg else '+');
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ch := byte('0');
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if digs.count != 0 {
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ch = digs.digits[0];
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}
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add_bytes(&b, ch);
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if prec > 0 {
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add_bytes(&b, '.');
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i := 1;
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m := min(digs.count, prec+1);
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if i < m {
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add_bytes(&b, ..digs.digits[i:m]);
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i = m;
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}
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for ; i <= prec; i += 1 {
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add_bytes(&b, '0');
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}
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}
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add_bytes(&b, fmt);
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exp := digs.decimal_point-1;
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if digs.count == 0 {
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// Zero has exponent of 0
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exp = 0;
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}
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ch = '+';
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if exp < 0 {
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ch = '-';
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exp = -exp;
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}
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add_bytes(&b, ch);
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switch {
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case exp < 10: add_bytes(&b, '0', byte(exp)+'0'); // add prefix 0
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case exp < 100: add_bytes(&b, byte(exp/10)+'0', byte(exp%10)+'0');
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case: add_bytes(&b, byte(exp/100)+'0', byte(exp/10)%10+'0', byte(exp%10)+'0');
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}
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return to_bytes(b);
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case 'g', 'G':
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eprec := prec;
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if eprec > digs.count && digs.count >= digs.decimal_point {
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eprec = digs.count;
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}
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if shortest {
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eprec = 6;
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}
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exp := digs.decimal_point - 1;
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if exp < -4 || exp >= eprec {
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if prec > digs.count {
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prec = digs.count;
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}
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return format_digits(buf, shortest, neg, digs, prec-1, fmt+'e'-'g'); // keep the same case
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}
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if prec > digs.decimal_point {
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prec = digs.count;
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}
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return format_digits(buf, shortest, neg, digs, max(prec-digs.decimal_point, 0), 'f');
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case:
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add_bytes(&b, '%', fmt);
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return to_bytes(b);
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}
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}
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round_shortest :: proc(d: ^decimal.Decimal, mant: u64, exp: int, flt: ^Float_Info) {
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if mant == 0 { // If mantissa is zero, the number is zero
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d.count = 0;
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return;
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}
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/*
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10^(dp-nd) > 2^(exp-mantbits)
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log2(10) * (dp-nd) > exp-mantbits
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log(2) >~ 0.332
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332*(dp-nd) >= 100*(exp-mantbits)
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*/
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minexp := flt.bias+1;
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if exp > minexp && 332*(d.decimal_point-d.count) >= 100*(exp - int(flt.mantbits)) {
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// Number is already its shortest
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return;
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}
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upper_: decimal.Decimal; upper := &upper_;
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decimal.assign(upper, 2*mant - 1);
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decimal.shift(upper, exp - int(flt.mantbits) - 1);
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mantlo: u64;
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explo: int;
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if mant > 1<<flt.mantbits || exp == minexp {
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mantlo = mant-1;
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explo = exp;
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} else {
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mantlo = 2*mant - 1;
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explo = exp-1;
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}
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lower_: decimal.Decimal; lower := &lower_;
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decimal.assign(lower, 2*mantlo + 1);
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decimal.shift(lower, explo - int(flt.mantbits) - 1);
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inclusive := mant%2 == 0;
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for i in 0..<d.count {
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l: byte = '0'; // lower digit
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if i < lower.count {
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l = lower.digits[i];
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}
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m := d.digits[i]; // middle digit
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u: byte = '0'; // upper digit
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if i < upper.count {
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u = upper.digits[i];
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}
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ok_round_down := l != m || inclusive && i+1 == lower.count;
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ok_round_up := m != u && (inclusive || m+1 < u || i+1 < upper.count);
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if ok_round_down && ok_round_up {
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decimal.round(d, i+1);
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return;
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}
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if ok_round_down {
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decimal.round_down(d, i+1);
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return;
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}
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if ok_round_up {
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decimal.round_up(d, i+1);
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return;
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}
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}
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}
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