Add engineering format mode
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1ccc950afe
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src/main.rs
76
src/main.rs
@ -403,62 +403,42 @@ fn fmt_scientific(f: f64, precision: usize) -> String {
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let sign = if !ret.starts_with('-') { " " } else { "" };
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format!("{}{}E{}{:0>pad$}", sign, ret, exp_sign, exp, pad = 2)
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}
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// (a)E(c)
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// E power = f.log10().div_euclid(3) * 3
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// left portion = f.log10().rem_euclid(3) + 1
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// .0001 - 100E-6 - 1E-4
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// .001 - 1E-3 - 1E-3 => -3
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// .01 - 10E-3 - 1E-2
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// .1 - 100E-3 - 1E-1
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// 1 - 1E+0 - 1E+0 => 0
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// 10 - 10E+0 - 1E+1
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// 100 - 100E+0 - 1E+2
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// 1000 - 1E+3 - 1E+3 => 3
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// 10000 - 10E+3 - 1E+4
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// fn fmt_engineering(i: usize, f: f64, precision: usize) -> String {
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// // TODO: There is probably a more efficent way to do this using slices or something
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// let mut all = format!("{:.precision$e}", f, precision = precision + 2).replacen(".", "", 1);
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// // The left 1, 2, or 3 digits
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// let left = all.split_off(f.log10().rem_euclid(3) + 1);
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// // The length of ret will always be at least 5 -- 2 leading spaces, integer portion, and precision + 2
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// let exp = ret.split_off(ret.find('E').unwrap_or(0));
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// let left = ret[()..()]
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// let first_three = match exp {
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// }
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// let (pow_sign, exp) = if exp.starts_with("E-") {
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// ('-', &exp[2..])
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// } else {
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// ('+', &exp[1..])
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// };
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// let sign = if !ret.starts_with('-') { " " } else { "" };
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// format!(
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// "{:>2}: {}{}e{}{:0>pad$}",
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// i,
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// sign,
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// ret,
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// pow_sign,
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// exp,
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// pad = 2
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// )
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// }
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fn fmt_engineering(f: f64, precision: usize) -> String {
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// Format the string so the first digit is always in the first column, and remove '.'. Requested precision + 2 to account for using 1, 2, or 3 digits for the whole portion of the string
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// 1,000 => 1000E3
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let all = format!("{:.precision$E}", f, precision = precision + 2).replacen(".", "", 1);
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let (mantissa_str, pow_str) = all.split_at(all.find('E').unwrap_or(0));
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let pow = pow_str[1..].parse::<isize>().unwrap();
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let display_pow_sign = if let Some(stripped) = pow_str.strip_prefix("E-") {
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// Extract mantissa and the string representation of the exponent. Unwrap should be safe as formatter will insert E
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// 1000E3 => (1000, E3)
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let (num_str, exp_str) = all.split_at(all.find('E').unwrap());
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// Extract the exponent as an isize. This should always be true because f64 max will be ~400
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// E3 => 3 as isize
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let exp = exp_str[1..].parse::<isize>().unwrap();
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// Sign of the exponent. If string representation starts with E-, then negative
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let display_exp_sign = if let Some(stripped) = exp_str.strip_prefix("E-") {
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'-'
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} else {
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'+'
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};
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let display_pow = (pow.div_euclid(3) * 3).abs();
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let num_digits = pow.rem_euclid(3) as usize + 1;
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let whole = &mantissa_str[0..num_digits];
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let decimal = &mantissa_str[num_digits..];
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// The exponent to display. Always a multiple of 3 in engineering mode. Always positive because sign is added with display_exp_sign above
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// 100 => 0, 1000 => 3, .1 => 3 (but will show as -3)
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let display_exp = (exp.div_euclid(3) * 3).abs();
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// Number of whole digits. Always 1, 2, or 3 depending on exponent divisibility
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let num_whole_digits = exp.rem_euclid(3) as usize + 1;
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// Whole portion of number. Slice is safe because the num_whole_digits is always 3 and the num_str will always have length >= 3 since precision in all=2 (+original whole digit)
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// Original number is 1,000 => whole will be 1, if original is 0.01, whole will be 10
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let whole = &num_str[0..num_whole_digits];
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// Decimal portion of the number. Sliced from the number of whole digits to the *requested* precision. Precision generated in all will be requested precision + 2
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let decimal = &num_str[num_whole_digits..(precision + num_whole_digits)];
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// Right align whole portion, always have decimal point
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format!(
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"{: >3}.{} * 10 ^ {}{}",
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whole, decimal, display_pow_sign, display_pow
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"{: >3}.{} E{}{:0>pad$}",
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whole,
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decimal,
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display_exp_sign,
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display_exp,
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pad = 2
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)
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}
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