snix/tvix/eval/src/eval.rs
Vincent Ambo 07e03498f2 feat(tvix/eval): add method for emitting runtime warnings
This lets the VM emit warnings when it encounters situations that
should only be warned about at runtime.

For starters, this is used to pass through compilation warnings that
come up when `import` is used.

Change-Id: I0c4bc8c534d699999887c430d93629fadfa662c4
Reviewed-on: https://cl.tvl.fyi/c/depot/+/6868
Reviewed-by: sterni <sternenseemann@systemli.org>
Tested-by: BuildkiteCI
2022-10-07 14:24:36 +00:00

125 lines
3.4 KiB
Rust

use std::{cell::RefCell, path::PathBuf, rc::Rc};
use crate::{
builtins::global_builtins,
errors::{Error, ErrorKind, EvalResult},
observer::{DisassemblingObserver, NoOpObserver, TracingObserver},
value::Value,
SourceCode,
};
/// Runtime options for the Tvix interpreter
#[derive(Debug, Clone, Copy, Default)]
#[cfg_attr(feature = "repl", derive(clap::Parser))]
pub struct Options {
/// Dump the raw AST to stdout before interpreting
#[cfg_attr(feature = "repl", clap(long, env = "TVIX_DISPLAY_AST"))]
display_ast: bool,
/// Dump the bytecode to stdout before evaluating
#[cfg_attr(feature = "repl", clap(long, env = "TVIX_DUMP_BYTECODE"))]
dump_bytecode: bool,
/// Trace the runtime of the VM
#[cfg_attr(feature = "repl", clap(long, env = "TVIX_TRACE_RUNTIME"))]
trace_runtime: bool,
}
pub fn interpret(code: &str, location: Option<PathBuf>, options: Options) -> EvalResult<Value> {
let source = SourceCode::new();
let file = source.add_file(
location
.as_ref()
.map(|p| p.to_string_lossy().to_string())
.unwrap_or_else(|| "[tvix-repl]".into()),
code.into(),
);
let parsed = rnix::ast::Root::parse(code);
let errors = parsed.errors();
if !errors.is_empty() {
for err in errors {
eprintln!("parse error: {}", err);
}
return Err(Error {
kind: ErrorKind::ParseErrors(errors.to_vec()),
span: file.span,
});
}
// If we've reached this point, there are no errors.
let root_expr = parsed
.tree()
.expr()
.expect("expression should exist if no errors occured");
if options.display_ast {
println!("{:?}", root_expr);
}
// TODO: encapsulate this import weirdness in builtins
let builtins = Rc::new(RefCell::new(global_builtins()));
#[cfg(feature = "impure")]
{
// We need to insert import into the builtins, but the
// builtins passed to import must have import *in it*.
let import = Value::Builtin(crate::builtins::impure::builtins_import(
builtins.clone(),
source.clone(),
));
builtins.borrow_mut().insert("import", import);
// TODO: also add it into the inner builtins set
};
let result = if options.dump_bytecode {
crate::compiler::compile(
&root_expr,
location,
file.clone(),
builtins,
&mut DisassemblingObserver::new(source.clone(), std::io::stderr()),
)
} else {
crate::compiler::compile(
&root_expr,
location,
file.clone(),
builtins,
&mut NoOpObserver::default(),
)
}?;
for warning in result.warnings {
warning.fancy_format_stderr(&source);
}
for error in &result.errors {
error.fancy_format_stderr(&source);
}
if let Some(err) = result.errors.last() {
return Err(err.clone());
}
let result = if options.trace_runtime {
crate::vm::run_lambda(&mut TracingObserver::new(std::io::stderr()), result.lambda)
} else {
crate::vm::run_lambda(&mut NoOpObserver::default(), result.lambda)
};
if let Err(err) = &result {
err.fancy_format_stderr(&source);
}
result.map(|r| {
for warning in r.warnings {
warning.fancy_format_stderr(&source);
}
r.value
})
}