// Copyright (c) Microsoft Corporation. // Licensed under the MIT License. use crate::ast::{Expr, Ref}; use crate::builtins; use crate::builtins::utils::{ensure_args_count, ensure_string}; use crate::lexer::Span; use crate::number::Number; use crate::value::Value; use crate::*; use anyhow::{bail, Result}; pub fn register(m: &mut builtins::BuiltinsMap<&'static str, builtins::BuiltinFcn>) { m.insert("units.parse", (parse, 1)); m.insert("units.parse_bytes", (parse_bytes, 1)); } fn ten_exp(suffix: &str) -> Option { Some(match suffix { "E" | "e" => 18, "P" | "p" => 15, "T" | "t" => 12, "G" | "g" => 9, "M" => 6, "K" | "k" => 3, "m" => -3, // The following are not supported by OPA "Q" => 30, "R" => 27, "Y" => 24, "Z" => 21, "h" => 2, "da" => 1, "d" => -1, "c" => -2, "μ" => -6, "n" => -9, "f" => -15, "a" => -18, "z" => -21, "y" => -24, "r" => -27, "q" => -30, // No suffix specified. "" => 0, _ => return None, }) } fn two_exp(suffix: &str) -> Option { Some(match suffix.to_ascii_lowercase().as_str() { "ki" => 10, "mi" => 20, "gi" => 30, "ti" => 40, "pi" => 50, "ei" => 60, "zi" => 70, "yi" => 80, _ => return None, }) } fn parse(span: &Span, params: &[Ref], args: &[Value], _strict: bool) -> Result { let name = "units.parse"; ensure_args_count(span, name, params, args, 1)?; let string = ensure_string(name, ¶ms[0], &args[0])?; let string = string.as_ref(); // Remove quotes. let string = if string.starts_with('"') && string.ends_with('"') && string.len() >= 2 { &string[1..string.len() - 1] } else { string }; // Disallow whitespace. if string.chars().any(char::is_whitespace) { bail!(span.error("spaces not allowed in resource strings")); } let (number_part, suffix) = match string.rfind(|c: char| c.is_ascii_digit()) { Some(p) => (&string[0..p + 1], &string[p + 1..]), _ => (string, ""), }; // Propagating the underlying error is not useful here. let v: Value = if number_part.starts_with('.') { serde_json::from_str(format!("0{number_part}").as_str()) } else { serde_json::from_str(number_part) } .map_err(|_| params[0].span().error("could not parse number"))?; let mut n = match v { Value::Number(n) => n.clone(), _ => bail!(span.error("could not parse number")), }; if let Some(e) = ten_exp(suffix) { n.mul_assign(&Number::ten_pow(e)?)?; Ok(Value::from(n)) } else if let Some(e) = two_exp(suffix) { n.mul_assign(&Number::two_pow(e)?)?; Ok(Value::from(n)) } else { return Ok(Value::Undefined); } } fn twob_exp(suffix: &str) -> Option { Some(match suffix.to_ascii_lowercase().as_str() { "yi" | "yib" => 80, "zi" | "zib" => 70, "ei" | "eib" => 60, "pi" | "pib" => 50, "ti" | "tib" => 40, "gi" | "gib" => 30, "mi" | "mib" => 20, "ki" | "kib" => 10, "" => 0, _ => return None, }) } fn tenb_exp(suffix: &str) -> Option { Some(match suffix.to_ascii_lowercase().as_str() { "q" | "qb" => 30, "r" | "rb" => 27, "y" | "yb" => 24, "z" | "zb" => 21, "e" | "eb" => 18, "p" | "pb" => 15, "t" | "tb" => 12, "g" | "gb" => 9, "m" | "mb" => 6, "k" | "kb" => 3, _ => return None, }) } fn parse_bytes(span: &Span, params: &[Ref], args: &[Value], strict: bool) -> Result { let name = "units.parse_bytes"; ensure_args_count(span, name, params, args, 1)?; let string = ensure_string(name, ¶ms[0], &args[0])?; let string = string.as_ref(); // Remove quotes. let string = if string.starts_with('"') && string.ends_with('"') && string.len() >= 2 { &string[1..string.len() - 1] } else { string }; // Disallow whitespace. if string.chars().any(char::is_whitespace) { bail!(span.error("spaces not allowed in resource strings")); } let (number_part, suffix) = match string.rfind(|c: char| c.is_ascii_digit()) { Some(p) => (&string[0..p + 1], &string[p + 1..]), _ => (string, ""), }; let v: Value = match if number_part.starts_with('.') { serde_json::from_str(format!("0{number_part}").as_str()) } else { serde_json::from_str(number_part) } { Ok(v) => v, Err(_) if strict => bail!(span.error("could not parse number")), _ => return Ok(Value::Undefined), }; let mut n = match v { Value::Number(n) => n.clone(), _ => bail!(span.error("could not parse number")), }; if let Some(e) = twob_exp(suffix) { n.mul_assign(&Number::two_pow(e)?)?; Ok(Value::from(n.round())) } else if let Some(e) = tenb_exp(suffix) { n.mul_assign(&Number::ten_pow(e)?)?; Ok(Value::from(n.round())) } else { Ok(Value::Undefined) } }