use crate::input_handler::{operate, CmdArgument}; use nu_engine::CallExt; use nu_protocol::ast::{Call, CellPath}; use nu_protocol::engine::{Command, EngineState, Stack}; use nu_protocol::Span; use nu_protocol::{Example, PipelineData, ShellError, Signature, SyntaxShape, Type, Value}; use std::marker::PhantomData; pub trait HashDigest: digest::Digest + Clone { fn name() -> &'static str; fn examples() -> Vec; } #[derive(Clone)] pub struct GenericDigest { name: String, usage: String, phantom: PhantomData, } impl Default for GenericDigest { fn default() -> Self { Self { name: format!("hash {}", D::name()), usage: format!("Hash a value using the {} hash algorithm", D::name()), phantom: PhantomData, } } } pub(super) struct Arguments { pub(super) cell_paths: Option>, pub(super) binary: bool, } impl CmdArgument for Arguments { fn take_cell_paths(&mut self) -> Option> { self.cell_paths.take() } } impl Command for GenericDigest where D: HashDigest + Send + Sync + 'static, digest::Output: core::fmt::LowerHex, { fn name(&self) -> &str { &self.name } fn signature(&self) -> Signature { Signature::build(self.name()) .input_output_types(vec![ (Type::String, Type::String), (Type::String, Type::Binary), ]) .switch( "binary", "Output binary instead of hexadecimal representation", Some('b'), ) .rest( "rest", SyntaxShape::CellPath, format!("optionally {} hash data by cell path", D::name()), ) } fn usage(&self) -> &str { &self.usage } fn examples(&self) -> Vec { D::examples() } fn run( &self, engine_state: &EngineState, stack: &mut Stack, call: &Call, input: PipelineData, ) -> Result { let binary = call.has_flag("binary"); let cell_paths: Vec = call.rest(engine_state, stack, 0)?; let cell_paths = (!cell_paths.is_empty()).then_some(cell_paths); let args = Arguments { binary, cell_paths }; operate( action::, args, input, call.head, engine_state.ctrlc.clone(), ) } } pub(super) fn action(input: &Value, args: &Arguments, _span: Span) -> Value where D: HashDigest, digest::Output: core::fmt::LowerHex, { let (bytes, span) = match input { Value::String { val, span } => (val.as_bytes(), *span), Value::Binary { val, span } => (val.as_slice(), *span), // Propagate existing errors Value::Error { .. } => return input.clone(), other => { let span = match input.span() { Ok(span) => span, Err(error) => return Value::Error { error }, }; return Value::Error { error: ShellError::OnlySupportsThisInputType( "string or binary".into(), other.get_type().to_string(), span, other.expect_span(), ), }; } }; let digest = D::digest(bytes); if args.binary { Value::Binary { val: digest.to_vec(), span, } } else { Value::String { val: format!("{:x}", digest), span, } } }