forked from extern/nushell
# Description Our `ShellError` at the moment has a `std::mem::size_of<ShellError>` of 136 bytes (on AMD64). As a result `Value` directly storing the struct also required 136 bytes (thanks to alignment requirements). This change stores the `Value::Error` `ShellError` on the heap. Pro: - Value now needs just 80 bytes - Should be 1 cacheline less (still at least 2 cachelines) Con: - More small heap allocations when dealing with `Value::Error` - More heap fragmentation - Potential for additional required memcopies # Further code changes Includes a small refactor of `try` due to a type mismatch in its large match. # User-Facing Changes None for regular users. Plugin authors may have to update their matches on `Value` if they use `nu-protocol` Needs benchmarking to see if there is a benefit in real world workloads. **Update** small improvements in runtime for workloads with high volume of values. Significant reduction in maximum resident set size, when many values are held in memory. # Tests + Formatting
119 lines
3.5 KiB
Rust
119 lines
3.5 KiB
Rust
use nu_engine::CallExt;
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use nu_protocol::ast::Call;
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use nu_protocol::engine::{Command, EngineState, Stack};
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use nu_protocol::{
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Category, Example, PipelineData, ShellError, Signature, Span, SyntaxShape, Type, Value,
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};
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#[derive(Clone)]
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pub struct SubCommand;
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impl Command for SubCommand {
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fn name(&self) -> &str {
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"math round"
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}
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fn signature(&self) -> Signature {
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Signature::build("math round")
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.input_output_types(vec![(Type::Number, Type::Number)])
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.vectorizes_over_list(true)
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.named(
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"precision",
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SyntaxShape::Number,
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"digits of precision",
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Some('p'),
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)
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.category(Category::Math)
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}
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fn usage(&self) -> &str {
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"Returns the input number rounded to the specified precision."
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}
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fn search_terms(&self) -> Vec<&str> {
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vec!["approx", "closest", "nearest"]
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}
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fn run(
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&self,
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engine_state: &EngineState,
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stack: &mut Stack,
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call: &Call,
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input: PipelineData,
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) -> Result<PipelineData, ShellError> {
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let precision_param: Option<i64> = call.get_flag(engine_state, stack, "precision")?;
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let head = call.head;
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// This doesn't match explicit nulls
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if matches!(input, PipelineData::Empty) {
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return Err(ShellError::PipelineEmpty { dst_span: head });
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}
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input.map(
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move |value| operate(value, head, precision_param),
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engine_state.ctrlc.clone(),
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)
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}
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fn examples(&self) -> Vec<Example> {
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vec![
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Example {
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description: "Apply the round function to a list of numbers",
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example: "[1.5 2.3 -3.1] | math round",
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result: Some(Value::List {
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vals: vec![Value::test_int(2), Value::test_int(2), Value::test_int(-3)],
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span: Span::test_data(),
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}),
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},
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Example {
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description: "Apply the round function with precision specified",
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example: "[1.555 2.333 -3.111] | math round -p 2",
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result: Some(Value::List {
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vals: vec![
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Value::test_float(1.56),
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Value::test_float(2.33),
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Value::test_float(-3.11),
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],
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span: Span::test_data(),
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}),
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},
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]
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}
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}
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fn operate(value: Value, head: Span, precision: Option<i64>) -> Value {
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match value {
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Value::Float { val, span } => match precision {
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Some(precision_number) => Value::Float {
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val: ((val * ((10_f64).powf(precision_number as f64))).round()
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/ (10_f64).powf(precision_number as f64)),
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span,
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},
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None => Value::Int {
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val: val.round() as i64,
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span,
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},
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},
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Value::Int { .. } => value,
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Value::Error { .. } => value,
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other => Value::Error {
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error: Box::new(ShellError::OnlySupportsThisInputType {
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exp_input_type: "numeric".into(),
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wrong_type: other.get_type().to_string(),
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dst_span: head,
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src_span: other.expect_span(),
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}),
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},
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}
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}
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#[cfg(test)]
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mod test {
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use super::*;
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#[test]
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fn test_examples() {
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use crate::test_examples;
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test_examples(SubCommand {})
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}
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}
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