856 lines
33 KiB
Rust
856 lines
33 KiB
Rust
//! Built-in implementations for common operators.
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use super::call::FnCallArgs;
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use super::native::FnBuiltin;
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use crate::engine::OP_CONTAINS;
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use crate::{Dynamic, ExclusiveRange, ImmutableString, InclusiveRange, INT};
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use std::any::TypeId;
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#[cfg(feature = "no_std")]
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use std::prelude::v1::*;
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#[cfg(not(feature = "no_float"))]
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use crate::FLOAT;
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#[cfg(not(feature = "no_float"))]
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#[cfg(feature = "no_std")]
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use num_traits::Float;
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#[cfg(feature = "decimal")]
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use rust_decimal::Decimal;
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/// The message: data type was checked
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const BUILTIN: &str = "data type was checked";
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/// Is the type a numeric type?
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#[inline]
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#[must_use]
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fn is_numeric(type_id: TypeId) -> bool {
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let result = false;
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#[cfg(not(feature = "only_i64"))]
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#[cfg(not(feature = "only_i32"))]
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let result = result
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|| type_id == TypeId::of::<u8>()
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|| type_id == TypeId::of::<u16>()
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|| type_id == TypeId::of::<u32>()
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|| type_id == TypeId::of::<u64>()
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|| type_id == TypeId::of::<i8>()
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|| type_id == TypeId::of::<i16>()
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|| type_id == TypeId::of::<i32>()
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|| type_id == TypeId::of::<i64>();
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#[cfg(not(feature = "only_i64"))]
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#[cfg(not(feature = "only_i32"))]
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#[cfg(not(target_family = "wasm"))]
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let result = result || type_id == TypeId::of::<u128>() || type_id == TypeId::of::<i128>();
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#[cfg(not(feature = "no_float"))]
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let result = result || type_id == TypeId::of::<f32>() || type_id == TypeId::of::<f64>();
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#[cfg(feature = "decimal")]
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let result = result || type_id == TypeId::of::<rust_decimal::Decimal>();
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result
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}
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/// Build in common binary operator implementations to avoid the cost of calling a registered function.
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///
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/// The return function will be registered as a _method_, so the first parameter cannot be consumed.
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#[must_use]
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pub fn get_builtin_binary_op_fn(op: &str, x: &Dynamic, y: &Dynamic) -> Option<FnBuiltin> {
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let type1 = x.type_id();
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let type2 = y.type_id();
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let types_pair = (type1, type2);
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macro_rules! impl_op {
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($xx:ident $op:tt $yy:ident) => { |_, args| {
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let x = &*args[0].read_lock::<$xx>().expect(BUILTIN);
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let y = &*args[1].read_lock::<$yy>().expect(BUILTIN);
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Ok((x $op y).into())
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} };
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($xx:ident . $func:ident ( $yy:ty )) => { |_, args| {
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let x = &*args[0].read_lock::<$xx>().expect(BUILTIN);
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let y = &*args[1].read_lock::<$yy>().expect(BUILTIN);
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Ok(x.$func(y).into())
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} };
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($xx:ident . $func:ident ( $yy:ident . $yyy:ident () )) => { |_, args| {
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let x = &*args[0].read_lock::<$xx>().expect(BUILTIN);
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let y = &*args[1].read_lock::<$yy>().expect(BUILTIN);
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Ok(x.$func(y.$yyy()).into())
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} };
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($func:ident ( $op:tt )) => { |_, args| {
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let (x, y) = $func(args);
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Ok((x $op y).into())
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} };
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($base:ty => $xx:ident $op:tt $yy:ident) => { |_, args| {
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let x = args[0].$xx().expect(BUILTIN) as $base;
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let y = args[1].$yy().expect(BUILTIN) as $base;
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Ok((x $op y).into())
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} };
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($base:ty => $xx:ident . $func:ident ( $yy:ident as $yyy:ty)) => { |_, args| {
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let x = args[0].$xx().expect(BUILTIN) as $base;
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let y = args[1].$yy().expect(BUILTIN) as $base;
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Ok(x.$func(y as $yyy).into())
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} };
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($base:ty => $func:ident ( $xx:ident, $yy:ident )) => { |_, args| {
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let x = args[0].$xx().expect(BUILTIN) as $base;
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let y = args[1].$yy().expect(BUILTIN) as $base;
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$func(x, y).map(Into::into)
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} };
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(from $base:ty => $xx:ident $op:tt $yy:ident) => { |_, args| {
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let x = <$base>::from(args[0].$xx().expect(BUILTIN));
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let y = <$base>::from(args[1].$yy().expect(BUILTIN));
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Ok((x $op y).into())
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} };
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(from $base:ty => $xx:ident . $func:ident ( $yy:ident )) => { |_, args| {
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let x = <$base>::from(args[0].$xx().expect(BUILTIN));
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let y = <$base>::from(args[1].$yy().expect(BUILTIN));
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Ok(x.$func(y).into())
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} };
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(from $base:ty => $func:ident ( $xx:ident, $yy:ident )) => { |_, args| {
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let x = <$base>::from(args[0].$xx().expect(BUILTIN));
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let y = <$base>::from(args[1].$yy().expect(BUILTIN));
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$func(x, y).map(Into::into)
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} };
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}
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#[cfg(not(feature = "no_float"))]
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macro_rules! impl_float {
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($x:ty, $xx:ident, $y:ty, $yy:ident) => {
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if types_pair == (TypeId::of::<$x>(), TypeId::of::<$y>()) {
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return match op {
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"+" => Some(impl_op!(FLOAT => $xx + $yy)),
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"-" => Some(impl_op!(FLOAT => $xx - $yy)),
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"*" => Some(impl_op!(FLOAT => $xx * $yy)),
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"/" => Some(impl_op!(FLOAT => $xx / $yy)),
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"%" => Some(impl_op!(FLOAT => $xx % $yy)),
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"**" => Some(impl_op!(FLOAT => $xx.powf($yy as FLOAT))),
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"==" => Some(impl_op!(FLOAT => $xx == $yy)),
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"!=" => Some(impl_op!(FLOAT => $xx != $yy)),
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">" => Some(impl_op!(FLOAT => $xx > $yy)),
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">=" => Some(impl_op!(FLOAT => $xx >= $yy)),
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"<" => Some(impl_op!(FLOAT => $xx < $yy)),
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"<=" => Some(impl_op!(FLOAT => $xx <= $yy)),
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_ => None,
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};
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}
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};
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}
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#[cfg(not(feature = "no_float"))]
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{
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impl_float!(FLOAT, as_float, FLOAT, as_float);
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impl_float!(FLOAT, as_float, INT, as_int);
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impl_float!(INT, as_int, FLOAT, as_float);
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}
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#[cfg(feature = "decimal")]
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macro_rules! impl_decimal {
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($x:ty, $xx:ident, $y:ty, $yy:ident) => {
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if types_pair == (TypeId::of::<$x>(), TypeId::of::<$y>()) {
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#[cfg(not(feature = "unchecked"))]
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use crate::packages::arithmetic::decimal_functions::*;
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#[cfg(not(feature = "unchecked"))]
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match op {
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"+" => return Some(impl_op!(from Decimal => add($xx, $yy))),
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"-" => return Some(impl_op!(from Decimal => subtract($xx, $yy))),
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"*" => return Some(impl_op!(from Decimal => multiply($xx, $yy))),
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"/" => return Some(impl_op!(from Decimal => divide($xx, $yy))),
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"%" => return Some(impl_op!(from Decimal => modulo($xx, $yy))),
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"**" => return Some(impl_op!(from Decimal => power($xx, $yy))),
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_ => ()
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}
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#[cfg(feature = "unchecked")]
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use rust_decimal::MathematicalOps;
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#[cfg(feature = "unchecked")]
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match op {
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"+" => return Some(impl_op!(from Decimal => $xx + $yy)),
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"-" => return Some(impl_op!(from Decimal => $xx - $yy)),
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"*" => return Some(impl_op!(from Decimal => $xx * $yy)),
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"/" => return Some(impl_op!(from Decimal => $xx / $yy)),
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"%" => return Some(impl_op!(from Decimal => $xx % $yy)),
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"**" => return Some(impl_op!(from Decimal => $xx.powd($yy))),
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_ => ()
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}
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return match op {
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"==" => Some(impl_op!(from Decimal => $xx == $yy)),
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"!=" => Some(impl_op!(from Decimal => $xx != $yy)),
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">" => Some(impl_op!(from Decimal => $xx > $yy)),
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">=" => Some(impl_op!(from Decimal => $xx >= $yy)),
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"<" => Some(impl_op!(from Decimal => $xx < $yy)),
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"<=" => Some(impl_op!(from Decimal => $xx <= $yy)),
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_ => None
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};
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}
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};
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}
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#[cfg(feature = "decimal")]
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{
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impl_decimal!(Decimal, as_decimal, Decimal, as_decimal);
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impl_decimal!(Decimal, as_decimal, INT, as_int);
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impl_decimal!(INT, as_int, Decimal, as_decimal);
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}
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// char op string
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if types_pair == (TypeId::of::<char>(), TypeId::of::<ImmutableString>()) {
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fn get_s1s2(args: &FnCallArgs) -> ([char; 2], [char; 2]) {
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let x = args[0].as_char().expect(BUILTIN);
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let y = &*args[1].read_lock::<ImmutableString>().expect(BUILTIN);
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let s1 = [x, '\0'];
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let mut y = y.chars();
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let s2 = [y.next().unwrap_or('\0'), y.next().unwrap_or('\0')];
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(s1, s2)
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}
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return match op {
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"+" => Some(|_, args| {
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let x = args[0].as_char().expect(BUILTIN);
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let y = &*args[1].read_lock::<ImmutableString>().expect(BUILTIN);
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Ok(format!("{}{}", x, y).into())
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}),
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"==" => Some(impl_op!(get_s1s2(==))),
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"!=" => Some(impl_op!(get_s1s2(!=))),
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">" => Some(impl_op!(get_s1s2(>))),
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">=" => Some(impl_op!(get_s1s2(>=))),
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"<" => Some(impl_op!(get_s1s2(<))),
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"<=" => Some(impl_op!(get_s1s2(<=))),
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_ => None,
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};
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}
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// string op char
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if types_pair == (TypeId::of::<ImmutableString>(), TypeId::of::<char>()) {
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fn get_s1s2(args: &FnCallArgs) -> ([char; 2], [char; 2]) {
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let x = &*args[0].read_lock::<ImmutableString>().expect(BUILTIN);
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let y = args[1].as_char().expect(BUILTIN);
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let mut x = x.chars();
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let s1 = [x.next().unwrap_or('\0'), x.next().unwrap_or('\0')];
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let s2 = [y, '\0'];
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(s1, s2)
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}
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return match op {
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"+" => Some(|_, args| {
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let x = &*args[0].read_lock::<ImmutableString>().expect(BUILTIN);
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let y = args[1].as_char().expect(BUILTIN);
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Ok((x + y).into())
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}),
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"-" => Some(|_, args| {
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let x = &*args[0].read_lock::<ImmutableString>().expect(BUILTIN);
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let y = args[1].as_char().expect(BUILTIN);
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Ok((x - y).into())
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}),
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"==" => Some(impl_op!(get_s1s2(==))),
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"!=" => Some(impl_op!(get_s1s2(!=))),
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">" => Some(impl_op!(get_s1s2(>))),
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">=" => Some(impl_op!(get_s1s2(>=))),
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"<" => Some(impl_op!(get_s1s2(<))),
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"<=" => Some(impl_op!(get_s1s2(<=))),
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OP_CONTAINS => Some(|_, args| {
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let s = &*args[0].read_lock::<ImmutableString>().expect(BUILTIN);
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let c = args[1].as_char().expect(BUILTIN);
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Ok(s.contains(c).into())
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}),
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_ => None,
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};
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}
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// () op string
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if types_pair == (TypeId::of::<()>(), TypeId::of::<ImmutableString>()) {
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return match op {
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"+" => Some(|_, args| Ok(args[1].clone())),
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"==" | ">" | ">=" | "<" | "<=" => Some(|_, _| Ok(Dynamic::FALSE)),
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"!=" => Some(|_, _| Ok(Dynamic::TRUE)),
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_ => None,
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};
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}
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// string op ()
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if types_pair == (TypeId::of::<ImmutableString>(), TypeId::of::<()>()) {
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return match op {
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"+" => Some(|_, args| Ok(args[0].clone())),
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"==" | ">" | ">=" | "<" | "<=" => Some(|_, _| Ok(Dynamic::FALSE)),
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"!=" => Some(|_, _| Ok(Dynamic::TRUE)),
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_ => None,
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};
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}
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// blob
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#[cfg(not(feature = "no_index"))]
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if type1 == TypeId::of::<crate::Blob>() {
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use crate::Blob;
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if type2 == TypeId::of::<INT>() {
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return match op {
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OP_CONTAINS => Some(|_, args| {
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let blob = &*args[0].read_lock::<Blob>().expect(BUILTIN);
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let x = (args[1].as_int().expect("`INT`") & 0x000000ff) as u8;
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Ok((!blob.is_empty() && blob.contains(&x)).into())
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}),
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_ => None,
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};
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}
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if type1 == type2 {
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return match op {
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"==" => Some(impl_op!(Blob == Blob)),
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"!=" => Some(impl_op!(Blob != Blob)),
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_ => None,
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};
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}
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}
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// map op string
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#[cfg(not(feature = "no_object"))]
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if types_pair == (TypeId::of::<crate::Map>(), TypeId::of::<ImmutableString>()) {
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use crate::Map;
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return match op {
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OP_CONTAINS => Some(impl_op!(Map.contains_key(ImmutableString.as_str()))),
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_ => None,
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};
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}
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// Non-compatible ranges
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if types_pair
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== (
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TypeId::of::<ExclusiveRange>(),
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TypeId::of::<InclusiveRange>(),
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)
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|| types_pair
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== (
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TypeId::of::<InclusiveRange>(),
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TypeId::of::<ExclusiveRange>(),
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)
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{
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return match op {
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"!=" => Some(|_, _| Ok(Dynamic::TRUE)),
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"==" => Some(|_, _| Ok(Dynamic::FALSE)),
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_ => None,
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};
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}
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// Handle ranges here because ranges are implemented as custom type
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if type1 == TypeId::of::<ExclusiveRange>() {
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if type2 == TypeId::of::<INT>() {
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return match op {
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OP_CONTAINS => Some(|_, args| {
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let range = &*args[0].read_lock::<ExclusiveRange>().expect(BUILTIN);
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let x = args[1].as_int().expect("`INT`");
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Ok(range.contains(&x).into())
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}),
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_ => None,
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};
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}
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if type1 == type2 {
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return match op {
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"==" => Some(impl_op!(ExclusiveRange == ExclusiveRange)),
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"!=" => Some(impl_op!(ExclusiveRange != ExclusiveRange)),
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_ => None,
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};
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}
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}
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if type1 == TypeId::of::<InclusiveRange>() {
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if type2 == TypeId::of::<INT>() {
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return match op {
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OP_CONTAINS => Some(|_, args| {
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let range = &*args[0].read_lock::<InclusiveRange>().expect(BUILTIN);
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let x = args[1].as_int().expect("`INT`");
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Ok(range.contains(&x).into())
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}),
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_ => None,
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};
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}
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if type1 == type2 {
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return match op {
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"==" => Some(impl_op!(InclusiveRange == InclusiveRange)),
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"!=" => Some(impl_op!(InclusiveRange != InclusiveRange)),
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_ => None,
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};
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}
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}
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// One of the operands is a custom type, so it is never built-in
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if x.is_variant() || y.is_variant() {
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return if is_numeric(type1) && is_numeric(type2) {
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// Disallow comparisons between different numeric types
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None
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} else if type1 != type2 {
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// If the types are not the same, default to not compare
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match op {
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"!=" => Some(|_, _| Ok(Dynamic::TRUE)),
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"==" | ">" | ">=" | "<" | "<=" => Some(|_, _| Ok(Dynamic::FALSE)),
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_ => None,
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}
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} else {
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// Disallow comparisons between the same type
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None
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};
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}
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// Default comparison operators for different types
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if type2 != type1 {
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return match op {
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"!=" => Some(|_, _| Ok(Dynamic::TRUE)),
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"==" | ">" | ">=" | "<" | "<=" => Some(|_, _| Ok(Dynamic::FALSE)),
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_ => None,
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};
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}
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// Beyond here, type1 == type2
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if type1 == TypeId::of::<INT>() {
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#[cfg(not(feature = "unchecked"))]
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use crate::packages::arithmetic::arith_basic::INT::functions::*;
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#[cfg(not(feature = "unchecked"))]
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match op {
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"+" => return Some(impl_op!(INT => add(as_int, as_int))),
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"-" => return Some(impl_op!(INT => subtract(as_int, as_int))),
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"*" => return Some(impl_op!(INT => multiply(as_int, as_int))),
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"/" => return Some(impl_op!(INT => divide(as_int, as_int))),
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"%" => return Some(impl_op!(INT => modulo(as_int, as_int))),
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"**" => return Some(impl_op!(INT => power(as_int, as_int))),
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">>" => return Some(impl_op!(INT => shift_right(as_int, as_int))),
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"<<" => return Some(impl_op!(INT => shift_left(as_int, as_int))),
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_ => (),
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}
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#[cfg(feature = "unchecked")]
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match op {
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"+" => return Some(impl_op!(INT => as_int + as_int)),
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"-" => return Some(impl_op!(INT => as_int - as_int)),
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"*" => return Some(impl_op!(INT => as_int * as_int)),
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"/" => return Some(impl_op!(INT => as_int / as_int)),
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"%" => return Some(impl_op!(INT => as_int % as_int)),
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"**" => return Some(impl_op!(INT => as_int.pow(as_int as u32))),
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">>" => return Some(impl_op!(INT => as_int >> as_int)),
|
|
"<<" => return Some(impl_op!(INT => as_int << as_int)),
|
|
_ => (),
|
|
}
|
|
|
|
return match op {
|
|
"==" => Some(impl_op!(INT => as_int == as_int)),
|
|
"!=" => Some(impl_op!(INT => as_int != as_int)),
|
|
">" => Some(impl_op!(INT => as_int > as_int)),
|
|
">=" => Some(impl_op!(INT => as_int >= as_int)),
|
|
"<" => Some(impl_op!(INT => as_int < as_int)),
|
|
"<=" => Some(impl_op!(INT => as_int <= as_int)),
|
|
"&" => Some(impl_op!(INT => as_int & as_int)),
|
|
"|" => Some(impl_op!(INT => as_int | as_int)),
|
|
"^" => Some(impl_op!(INT => as_int ^ as_int)),
|
|
".." => Some(|_, args| {
|
|
let x = args[0].as_int().expect(BUILTIN);
|
|
let y = args[1].as_int().expect(BUILTIN);
|
|
Ok((x..y).into())
|
|
}),
|
|
"..=" => Some(|_, args| {
|
|
let x = args[0].as_int().expect(BUILTIN);
|
|
let y = args[1].as_int().expect(BUILTIN);
|
|
Ok((x..=y).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
if type1 == TypeId::of::<bool>() {
|
|
return match op {
|
|
"==" => Some(impl_op!(bool => as_bool == as_bool)),
|
|
"!=" => Some(impl_op!(bool => as_bool != as_bool)),
|
|
">" => Some(impl_op!(bool => as_bool > as_bool)),
|
|
">=" => Some(impl_op!(bool => as_bool >= as_bool)),
|
|
"<" => Some(impl_op!(bool => as_bool < as_bool)),
|
|
"<=" => Some(impl_op!(bool => as_bool <= as_bool)),
|
|
"&" => Some(impl_op!(bool => as_bool & as_bool)),
|
|
"|" => Some(impl_op!(bool => as_bool | as_bool)),
|
|
"^" => Some(impl_op!(bool => as_bool ^ as_bool)),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
if type1 == TypeId::of::<ImmutableString>() {
|
|
return match op {
|
|
"+" => Some(impl_op!(ImmutableString + ImmutableString)),
|
|
"-" => Some(impl_op!(ImmutableString - ImmutableString)),
|
|
"==" => Some(impl_op!(ImmutableString == ImmutableString)),
|
|
"!=" => Some(impl_op!(ImmutableString != ImmutableString)),
|
|
">" => Some(impl_op!(ImmutableString > ImmutableString)),
|
|
">=" => Some(impl_op!(ImmutableString >= ImmutableString)),
|
|
"<" => Some(impl_op!(ImmutableString < ImmutableString)),
|
|
"<=" => Some(impl_op!(ImmutableString <= ImmutableString)),
|
|
OP_CONTAINS => Some(impl_op!(ImmutableString.contains(ImmutableString.as_str()))),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
if type1 == TypeId::of::<char>() {
|
|
return match op {
|
|
"+" => Some(|_, args| {
|
|
let x = args[0].as_char().expect(BUILTIN);
|
|
let y = args[1].as_char().expect(BUILTIN);
|
|
Ok(format!("{}{}", x, y).into())
|
|
}),
|
|
"==" => Some(impl_op!(char => as_char == as_char)),
|
|
"!=" => Some(impl_op!(char => as_char != as_char)),
|
|
">" => Some(impl_op!(char => as_char > as_char)),
|
|
">=" => Some(impl_op!(char => as_char >= as_char)),
|
|
"<" => Some(impl_op!(char => as_char < as_char)),
|
|
"<=" => Some(impl_op!(char => as_char <= as_char)),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
if type1 == TypeId::of::<()>() {
|
|
return match op {
|
|
"==" => Some(|_, _| Ok(Dynamic::TRUE)),
|
|
"!=" | ">" | ">=" | "<" | "<=" => Some(|_, _| Ok(Dynamic::FALSE)),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
None
|
|
}
|
|
|
|
/// Build in common operator assignment implementations to avoid the cost of calling a registered function.
|
|
///
|
|
/// The return function is registered as a _method_, so the first parameter cannot be consumed.
|
|
#[must_use]
|
|
pub fn get_builtin_op_assignment_fn(op: &str, x: &Dynamic, y: &Dynamic) -> Option<FnBuiltin> {
|
|
let type1 = x.type_id();
|
|
let type2 = y.type_id();
|
|
|
|
let types_pair = (type1, type2);
|
|
|
|
macro_rules! impl_op {
|
|
($x:ty = x $op:tt $yy:ident) => { |_, args| {
|
|
let x = args[0].$yy().expect(BUILTIN);
|
|
let y = args[1].$yy().expect(BUILTIN) as $x;
|
|
Ok((*args[0].write_lock::<$x>().expect(BUILTIN) = x $op y).into())
|
|
} };
|
|
($x:ident $op:tt $yy:ident) => { |_, args| {
|
|
let y = args[1].$yy().expect(BUILTIN) as $x;
|
|
Ok((*args[0].write_lock::<$x>().expect(BUILTIN) $op y).into())
|
|
} };
|
|
($x:ident $op:tt $yy:ident as $yyy:ty) => { |_, args| {
|
|
let y = args[1].$yy().expect(BUILTIN) as $yyy;
|
|
Ok((*args[0].write_lock::<$x>().expect(BUILTIN) $op y).into())
|
|
} };
|
|
($x:ty => $xx:ident . $func:ident ( $yy:ident as $yyy:ty )) => { |_, args| {
|
|
let x = args[0].$xx().expect(BUILTIN);
|
|
let y = args[1].$yy().expect(BUILTIN) as $x;
|
|
Ok((*args[0].write_lock::<$x>().expect(BUILTIN) = x.$func(y as $yyy)).into())
|
|
} };
|
|
($x:ty => $func:ident ( $xx:ident, $yy:ident )) => { |_, args| {
|
|
let x = args[0].$xx().expect(BUILTIN);
|
|
let y = args[1].$yy().expect(BUILTIN) as $x;
|
|
Ok((*args[0].write_lock().expect(BUILTIN) = $func(x, y)?).into())
|
|
} };
|
|
(from $x:ident $op:tt $yy:ident) => { |_, args| {
|
|
let y = <$x>::from(args[1].$yy().expect(BUILTIN));
|
|
Ok((*args[0].write_lock::<$x>().expect(BUILTIN) $op y).into())
|
|
} };
|
|
(from $x:ty => $xx:ident . $func:ident ( $yy:ident )) => { |_, args| {
|
|
let x = args[0].$xx().expect(BUILTIN);
|
|
let y = <$x>::from(args[1].$yy().expect(BUILTIN));
|
|
Ok((*args[0].write_lock::<$x>().expect(BUILTIN) = x.$func(y)).into())
|
|
} };
|
|
(from $x:ty => $func:ident ( $xx:ident, $yy:ident )) => { |_, args| {
|
|
let x = args[0].$xx().expect(BUILTIN);
|
|
let y = <$x>::from(args[1].$yy().expect(BUILTIN));
|
|
Ok((*args[0].write_lock().expect(BUILTIN) = $func(x, y)?).into())
|
|
} };
|
|
}
|
|
|
|
#[cfg(not(feature = "no_float"))]
|
|
macro_rules! impl_float {
|
|
($x:ident, $xx:ident, $y:ty, $yy:ident) => {
|
|
if types_pair == (TypeId::of::<$x>(), TypeId::of::<$y>()) {
|
|
return match op {
|
|
"+=" => Some(impl_op!($x += $yy)),
|
|
"-=" => Some(impl_op!($x -= $yy)),
|
|
"*=" => Some(impl_op!($x *= $yy)),
|
|
"/=" => Some(impl_op!($x /= $yy)),
|
|
"%=" => Some(impl_op!($x %= $yy)),
|
|
"**=" => Some(impl_op!($x => $xx.powf($yy as $x))),
|
|
_ => None,
|
|
};
|
|
}
|
|
}
|
|
}
|
|
|
|
#[cfg(not(feature = "no_float"))]
|
|
{
|
|
impl_float!(FLOAT, as_float, FLOAT, as_float);
|
|
impl_float!(FLOAT, as_float, INT, as_int);
|
|
}
|
|
|
|
#[cfg(feature = "decimal")]
|
|
macro_rules! impl_decimal {
|
|
($x:ident, $xx:ident, $y:ty, $yy:ident) => {
|
|
if types_pair == (TypeId::of::<$x>(), TypeId::of::<$y>()) {
|
|
#[cfg(not(feature = "unchecked"))]
|
|
use crate::packages::arithmetic::decimal_functions::*;
|
|
|
|
#[cfg(not(feature = "unchecked"))]
|
|
return match op {
|
|
"+=" => Some(impl_op!(from $x => add($xx, $yy))),
|
|
"-=" => Some(impl_op!(from $x => subtract($xx, $yy))),
|
|
"*=" => Some(impl_op!(from $x => multiply($xx, $yy))),
|
|
"/=" => Some(impl_op!(from $x => divide($xx, $yy))),
|
|
"%=" => Some(impl_op!(from $x => modulo($xx, $yy))),
|
|
"**=" => Some(impl_op!(from $x => power($xx, $yy))),
|
|
_ => None,
|
|
};
|
|
|
|
#[cfg(feature = "unchecked")]
|
|
use rust_decimal::MathematicalOps;
|
|
|
|
#[cfg(feature = "unchecked")]
|
|
return match op {
|
|
"+=" => Some(impl_op!(from $x += $yy)),
|
|
"-=" => Some(impl_op!(from $x -= $yy)),
|
|
"*=" => Some(impl_op!(from $x *= $yy)),
|
|
"/=" => Some(impl_op!(from $x /= $yy)),
|
|
"%=" => Some(impl_op!(from $x %= $yy)),
|
|
"**=" => Some(impl_op!(from $x => $xx.powd($yy))),
|
|
_ => None,
|
|
};
|
|
}
|
|
};
|
|
}
|
|
|
|
#[cfg(feature = "decimal")]
|
|
{
|
|
impl_decimal!(Decimal, as_decimal, Decimal, as_decimal);
|
|
impl_decimal!(Decimal, as_decimal, INT, as_int);
|
|
}
|
|
|
|
// string op= char
|
|
if types_pair == (TypeId::of::<ImmutableString>(), TypeId::of::<char>()) {
|
|
return match op {
|
|
"+=" => Some(impl_op!(ImmutableString += as_char as char)),
|
|
"-=" => Some(impl_op!(ImmutableString -= as_char as char)),
|
|
_ => None,
|
|
};
|
|
}
|
|
// char op= string
|
|
if types_pair == (TypeId::of::<char>(), TypeId::of::<ImmutableString>()) {
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let mut ch = args[0].as_char().expect(BUILTIN).to_string();
|
|
ch.push_str(
|
|
args[1]
|
|
.read_lock::<ImmutableString>()
|
|
.expect(BUILTIN)
|
|
.as_str(),
|
|
);
|
|
|
|
let mut x = args[0].write_lock::<Dynamic>().expect(BUILTIN);
|
|
Ok((*x = ch.into()).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
// array op= any
|
|
#[cfg(not(feature = "no_index"))]
|
|
if type1 == TypeId::of::<crate::Array>() {
|
|
use crate::packages::array_basic::array_functions::*;
|
|
use crate::Array;
|
|
|
|
if type2 == TypeId::of::<crate::Array>() {
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let array2 = std::mem::take(args[1]).cast::<Array>();
|
|
let array1 = &mut *args[0].write_lock::<Array>().expect(BUILTIN);
|
|
Ok(append(array1, array2).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
} else {
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let x = std::mem::take(args[1]);
|
|
let array = &mut *args[0].write_lock::<Array>().expect(BUILTIN);
|
|
Ok(push(array, x).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
}
|
|
|
|
#[cfg(not(feature = "no_index"))]
|
|
{
|
|
// string op= blob
|
|
if types_pair == (TypeId::of::<ImmutableString>(), TypeId::of::<crate::Blob>()) {
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let buf = {
|
|
let x = args[1].read_lock::<crate::Blob>().expect(BUILTIN);
|
|
if x.is_empty() {
|
|
return Ok(Dynamic::UNIT);
|
|
}
|
|
let s = args[0].read_lock::<ImmutableString>().expect(BUILTIN);
|
|
let mut buf = crate::SmartString::from(s.as_str());
|
|
buf.push_str(&String::from_utf8_lossy(&x));
|
|
buf
|
|
};
|
|
let mut s = args[0].write_lock::<ImmutableString>().expect(BUILTIN);
|
|
*s = buf.into();
|
|
Ok(Dynamic::UNIT)
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
// blob op= int
|
|
if types_pair == (TypeId::of::<crate::Blob>(), TypeId::of::<INT>()) {
|
|
use crate::Blob;
|
|
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let x = (args[1].as_int().expect("`INT`") & 0x000000ff) as u8;
|
|
let mut blob = args[0].write_lock::<Blob>().expect(BUILTIN);
|
|
Ok(blob.push(x).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
// blob op= char
|
|
if types_pair == (TypeId::of::<crate::Blob>(), TypeId::of::<char>()) {
|
|
use crate::Blob;
|
|
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let mut buf = [0_u8; 4];
|
|
let x = args[1].as_char().expect("`char`").encode_utf8(&mut buf);
|
|
let mut blob = args[0].write_lock::<Blob>().expect(BUILTIN);
|
|
Ok(blob.extend(x.as_bytes()).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
// blob op= string
|
|
if types_pair == (TypeId::of::<crate::Blob>(), TypeId::of::<ImmutableString>()) {
|
|
use crate::Blob;
|
|
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let s: crate::Blob = {
|
|
let s = args[1].read_lock::<ImmutableString>().expect(BUILTIN);
|
|
if s.is_empty() {
|
|
return Ok(Dynamic::UNIT);
|
|
}
|
|
s.as_bytes().into()
|
|
};
|
|
let mut blob = args[0].write_lock::<Blob>().expect(BUILTIN);
|
|
Ok(blob.extend(s).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
}
|
|
|
|
// No built-in op-assignments for different types.
|
|
if type2 != type1 {
|
|
return None;
|
|
}
|
|
|
|
// Beyond here, type1 == type2
|
|
if type1 == TypeId::of::<INT>() {
|
|
#[cfg(not(feature = "unchecked"))]
|
|
use crate::packages::arithmetic::arith_basic::INT::functions::*;
|
|
|
|
#[cfg(not(feature = "unchecked"))]
|
|
match op {
|
|
"+=" => return Some(impl_op!(INT => add(as_int, as_int))),
|
|
"-=" => return Some(impl_op!(INT => subtract(as_int, as_int))),
|
|
"*=" => return Some(impl_op!(INT => multiply(as_int, as_int))),
|
|
"/=" => return Some(impl_op!(INT => divide(as_int, as_int))),
|
|
"%=" => return Some(impl_op!(INT => modulo(as_int, as_int))),
|
|
"**=" => return Some(impl_op!(INT => power(as_int, as_int))),
|
|
">>=" => return Some(impl_op!(INT => shift_right(as_int, as_int))),
|
|
"<<=" => return Some(impl_op!(INT => shift_left(as_int, as_int))),
|
|
_ => (),
|
|
}
|
|
|
|
#[cfg(feature = "unchecked")]
|
|
match op {
|
|
"+=" => return Some(impl_op!(INT += as_int)),
|
|
"-=" => return Some(impl_op!(INT -= as_int)),
|
|
"*=" => return Some(impl_op!(INT *= as_int)),
|
|
"/=" => return Some(impl_op!(INT /= as_int)),
|
|
"%=" => return Some(impl_op!(INT %= as_int)),
|
|
"**=" => return Some(impl_op!(INT => as_int.pow(as_int as u32))),
|
|
">>=" => return Some(impl_op!(INT >>= as_int)),
|
|
"<<=" => return Some(impl_op!(INT <<= as_int)),
|
|
_ => (),
|
|
}
|
|
|
|
return match op {
|
|
"&=" => Some(impl_op!(INT &= as_int)),
|
|
"|=" => Some(impl_op!(INT |= as_int)),
|
|
"^=" => Some(impl_op!(INT ^= as_int)),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
if type1 == TypeId::of::<bool>() {
|
|
return match op {
|
|
"&=" => Some(impl_op!(bool = x && as_bool)),
|
|
"|=" => Some(impl_op!(bool = x || as_bool)),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
if type1 == TypeId::of::<char>() {
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let y = args[1].as_char().expect(BUILTIN);
|
|
let mut x = args[0].write_lock::<Dynamic>().expect(BUILTIN);
|
|
Ok((*x = format!("{}{}", *x, y).into()).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
if type1 == TypeId::of::<ImmutableString>() {
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let (first, second) = args.split_first_mut().expect(BUILTIN);
|
|
let mut x = first.write_lock::<ImmutableString>().expect(BUILTIN);
|
|
let y = &*second[0].read_lock::<ImmutableString>().expect(BUILTIN);
|
|
Ok((*x += y).into())
|
|
}),
|
|
"-=" => Some(|_, args| {
|
|
let (first, second) = args.split_first_mut().expect(BUILTIN);
|
|
let mut x = first.write_lock::<ImmutableString>().expect(BUILTIN);
|
|
let y = &*second[0].read_lock::<ImmutableString>().expect(BUILTIN);
|
|
Ok((*x -= y).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
#[cfg(not(feature = "no_index"))]
|
|
if type1 == TypeId::of::<crate::Blob>() {
|
|
use crate::packages::blob_basic::blob_functions::*;
|
|
use crate::Blob;
|
|
|
|
return match op {
|
|
"+=" => Some(|_, args| {
|
|
let blob2 = std::mem::take(args[1]).cast::<Blob>();
|
|
let blob1 = &mut *args[0].write_lock::<Blob>().expect(BUILTIN);
|
|
Ok(append(blob1, blob2).into())
|
|
}),
|
|
_ => None,
|
|
};
|
|
}
|
|
|
|
None
|
|
}
|