nushell/crates/nu-command/src/math/sin.rs
Stefan Holderbach 438062d7fc
Document and critically review ShellError variants - Ep. 1 (#8229)
# Description

The `ShellError` enum at the moment is kind of messy. 

Many variants are basic tuple structs where you always have to reference
the implementation with its macro invocation to know which field serves
which purpose.
Furthermore we have both variants that are kind of redundant or either
overly broad to be useful for the user to match on or overly specific
with few uses.

So I set out to start fixing the lacking documentation and naming to
make it feasible to critically review the individual usages and fix
those.
Furthermore we can decide to join or split up variants that don't seem
to be fit for purpose.

Feel free to add review comments if you spot inconsistent use of
`ShellError` variants.

- Name fields on `ShellError::OperatorOverflow`
- Name fields on `ShellError::PipelineMismatch`
- Add doc to `ShellError::OnlySupportsThisInputType`
- Name `ShellError::OnlySupportsThisInputType`
- Name field on `ShellError::PipelineEmpty`
- Comment about issues with `TypeMismatch*`
- Fix a few `exp_input_type`s
- Name fields on `ShellError::InvalidRange`

# User-Facing Changes

(None now, end goal more explicit and consistent error messages)

# Tests + Formatting

(No additional tests needed so far)
2023-03-01 20:34:48 +01:00

112 lines
3.2 KiB
Rust

use nu_protocol::ast::Call;
use nu_protocol::engine::{Command, EngineState, Stack};
use nu_protocol::{Category, Example, PipelineData, ShellError, Signature, Span, Type, Value};
#[derive(Clone)]
pub struct SubCommand;
impl Command for SubCommand {
fn name(&self) -> &str {
"math sin"
}
fn signature(&self) -> Signature {
Signature::build("math sin")
.switch("degrees", "Use degrees instead of radians", Some('d'))
.input_output_types(vec![(Type::Number, Type::Float)])
.vectorizes_over_list(true)
.category(Category::Math)
}
fn usage(&self) -> &str {
"Returns the sine of the number."
}
fn search_terms(&self) -> Vec<&str> {
vec!["trigonometry"]
}
fn run(
&self,
engine_state: &EngineState,
_stack: &mut Stack,
call: &Call,
input: PipelineData,
) -> Result<PipelineData, ShellError> {
let head = call.head;
let use_degrees = call.has_flag("degrees");
// This doesn't match explicit nulls
if matches!(input, PipelineData::Empty) {
return Err(ShellError::PipelineEmpty { dst_span: head });
}
input.map(
move |value| operate(value, head, use_degrees),
engine_state.ctrlc.clone(),
)
}
fn examples(&self) -> Vec<Example> {
vec![
Example {
description: "Apply the sine to π/2",
example: "(math pi) / 2 | math sin",
result: Some(Value::test_float(1f64)),
},
Example {
description: "Apply the sine to a list of angles in degrees",
example: "[0 90 180 270 360] | math sin -d | math round --precision 4",
result: Some(Value::List {
vals: vec![
Value::test_float(0f64),
Value::test_float(1f64),
Value::test_float(0f64),
Value::test_float(-1f64),
Value::test_float(0f64),
],
span: Span::test_data(),
}),
},
]
}
}
fn operate(value: Value, head: Span, use_degrees: bool) -> Value {
match value {
numeric @ (Value::Int { .. } | Value::Float { .. }) => {
let (val, span) = match numeric {
Value::Int { val, span } => (val as f64, span),
Value::Float { val, span } => (val, span),
_ => unreachable!(),
};
let val = if use_degrees { val.to_radians() } else { val };
Value::Float {
val: val.sin(),
span,
}
}
Value::Error { .. } => value,
other => Value::Error {
error: ShellError::OnlySupportsThisInputType {
exp_input_type: "numeric".into(),
wrong_type: other.get_type().to_string(),
dst_span: head,
src_span: other.expect_span(),
},
},
}
}
#[cfg(test)]
mod test {
use super::*;
#[test]
fn test_examples() {
use crate::test_examples;
test_examples(SubCommand {})
}
}