Replace the runner stub with the Runtime seam and RunSpec

Implemented-By: OpenCode session (model recorded in docs/implementer-log.md)
This commit is contained in:
2026-09-19 16:43:56 -07:00
parent ded7eb8c50
commit 57734ebb9a
4 changed files with 378 additions and 6 deletions
+132 -6
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@@ -1,12 +1,138 @@
//! Tool runner stub. Real tool execution arrives in M3.
//! The runner seam: an allowed call becomes a `RunSpec` and is handed to a `Runtime`.
//!
//! A `RunSpec` can only be built here, from a `Decision`, so a runtime never sees a call policy
//! did not allow.
//!
//! ```compile_fail
//! let _ = brokerd::runner::RunSpec {
//! tool: brokerd::args::ToolName::Shell,
//! arguments: todo!(),
//! mounts: Vec::new(),
//! egress: None,
//! };
//! ```
//!
//! ```
//! fn tool_of(spec: &brokerd::runner::RunSpec) -> brokerd::args::ToolName {
//! spec.tool()
//! }
//! ```
use crate::args::{ToolArgs, ToolName};
use crate::policy::Decision;
use proto::ToolResponse;
/// Takes the Decision by value, so one decision cannot run a tool twice.
pub fn run(decision: Decision) -> ToolResponse {
let _ = decision;
ToolResponse::Failed {
message: "no tool runner until M3".to_string(),
/// A directory mounted for one call: a path and whether the runtime may write to it.
#[derive(Debug, Clone, PartialEq, Eq)]
pub struct Mount {
pub path: String,
pub writable: bool,
}
/// What one call was turned into before it reached a `Runtime`: the tool, its arguments, the
/// directories mounted and the hosts it may reach. Built only here, from a `Decision`.
#[derive(Debug)]
pub struct RunSpec {
tool: ToolName,
arguments: ToolArgs,
mounts: Vec<Mount>,
egress: Option<Vec<String>>,
}
impl RunSpec {
pub fn tool(&self) -> ToolName {
self.tool
}
pub fn arguments(&self) -> &ToolArgs {
&self.arguments
}
pub fn mounts(&self) -> &[Mount] {
&self.mounts
}
pub fn egress(&self) -> Option<&[String]> {
self.egress.as_deref()
}
}
/// A `Runtime`'s answer to one call. Its text reaches the model as a `failed` result labelled
/// public and trusted, so a runtime may only put a fixed sentence in it.
#[derive(Debug, Clone, PartialEq, Eq)]
pub enum RunError {
Failed(String),
Unavailable(String),
}
/// What a `Runtime` produced for one call.
#[derive(Debug, Clone, PartialEq, Eq)]
pub struct RunOutput {
pub content: String,
pub truncated: bool,
}
/// Runs one call. `Send + Sync` so one `Runtime` can serve several brokers at once.
pub trait Runtime: Send + Sync {
fn run(&self, spec: &RunSpec) -> Result<RunOutput, RunError>;
}
/// The production runtime for M3a. It runs nothing; every call is `Unavailable`.
pub struct Refusing;
impl Runtime for Refusing {
fn run(&self, _spec: &RunSpec) -> Result<RunOutput, RunError> {
Err(RunError::Unavailable(REFUSING.to_string()))
}
}
/// The sentence `Refusing` puts in every `Unavailable`: fixed, because it reaches the model.
pub const REFUSING: &str = "the runner arrives in M3b";
/// Turn an allowed call into a `RunSpec`, run it, and answer. A `RunError`'s text reaches the
/// model unchanged, so a runtime may only put a fixed sentence in it.
pub fn run(decision: Decision, runtime: &dyn Runtime) -> proto::ToolResponse {
let label = decision.label();
let args = decision.args();
let (mounts, egress) = match args {
ToolArgs::ReadFile { .. } => (matched_mount(decision.matched_path(), false), None),
ToolArgs::WriteFile { .. } => (matched_mount(decision.matched_path(), true), None),
ToolArgs::Shell { .. } => (
decision
.paths()
.iter()
.map(|path| Mount {
path: path.clone(),
writable: true,
})
.collect(),
None,
),
ToolArgs::HttpFetch { .. } => (Vec::new(), Some(decision.hosts().to_vec())),
};
let spec = RunSpec {
tool: args.tool(),
arguments: args.clone(),
mounts,
egress,
};
match runtime.run(&spec) {
Ok(output) => ToolResponse::Result {
content: output.content,
class: label.class,
untrusted: label.untrusted,
truncated: output.truncated,
},
Err(RunError::Failed(message) | RunError::Unavailable(message)) => {
ToolResponse::Failed { message }
}
}
}
/// The matched path as one mount, or none when the call matched no path.
fn matched_mount(path: Option<&str>, writable: bool) -> Vec<Mount> {
match path {
Some(at) => vec![Mount {
path: at.to_string(),
writable,
}],
None => Vec::new(),
}
}
+175
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//! The runner seam: what `run` puts in the `RunSpec` for each tool, and what it answers. Do not
//! edit.
#[path = "support/build.rs"]
mod build;
#[path = "support/runtime.rs"]
mod runtime;
use brokerd::args::{ToolArgs, ToolName};
use brokerd::policy::{Decision, Outcome, SessionState, decide};
use brokerd::runner::{Mount, REFUSING, Refusing, RunError, RunOutput, run};
use build::{grant, now, read, request, set};
use proto::{DataClass, Mode, ToolRequest, ToolResponse};
use runtime::Recording;
fn allowed(grants: Vec<build::Build>, request: ToolRequest) -> Decision {
match decide(request, &set(grants), SessionState::default(), now()) {
Outcome::Allowed(decision) => decision,
other => panic!("the test's call is not allowed: {other:?}"),
}
}
fn mount(path: &str, writable: bool) -> Mount {
Mount {
path: path.to_string(),
writable,
}
}
#[test]
fn read_file_mounts_the_matched_path_read_only_and_has_no_network() {
let d = allowed(
vec![grant("notes", "read_file", Mode::Auto).paths(&["/h/notes", "/h/notes/deep"])],
read("/h/notes/deep/a.md"),
);
let rt = Recording::answering("text");
run(d, rt.as_ref());
let seen = rt.seen();
assert_eq!(seen.len(), 1);
assert_eq!(seen[0].tool, ToolName::ReadFile);
assert_eq!(
seen[0].arguments,
ToolArgs::ReadFile {
path: "/h/notes/deep/a.md".to_string()
}
);
// The longest path that holds the argument, and only that one.
assert_eq!(seen[0].mounts, [mount("/h/notes/deep", false)]);
assert_eq!(seen[0].egress, None);
}
#[test]
fn write_file_mounts_the_matched_path_writable() {
// A grant path equal to the argument does not count, so `/s/out` is written through `/s`.
let d = allowed(
vec![grant("s", "write_file", Mode::Auto).paths(&["/s", "/s/out"])],
request("write_file", r#"{"path":"/s/out","content":"x"}"#),
);
let rt = Recording::answering("");
run(d, rt.as_ref());
let seen = rt.seen();
assert_eq!(seen[0].tool, ToolName::WriteFile);
assert_eq!(seen[0].mounts, [mount("/s", true)]);
assert_eq!(seen[0].egress, None);
}
#[test]
fn shell_mounts_every_path_of_the_grant_writable() {
let d = allowed(
vec![grant("sh", "shell", Mode::Auto).paths(&["/a", "/b/c"])],
request("shell", r#"{"command":"ls","cwd":"/b/c/d"}"#),
);
let rt = Recording::answering("");
run(d, rt.as_ref());
let seen = rt.seen();
assert_eq!(seen[0].tool, ToolName::Shell);
assert_eq!(seen[0].mounts, [mount("/a", true), mount("/b/c", true)]);
assert_eq!(seen[0].egress, None);
}
#[test]
fn shell_without_paths_mounts_nothing() {
let d = allowed(
vec![grant("sh", "shell", Mode::Auto)],
request("shell", r#"{"command":"date"}"#),
);
let rt = Recording::answering("");
run(d, rt.as_ref());
let seen = rt.seen();
assert_eq!(seen[0].mounts, []);
assert_eq!(seen[0].egress, None);
}
#[test]
fn http_fetch_mounts_nothing_and_may_reach_the_grants_hosts_only() {
let d = allowed(
vec![grant("web", "http_fetch", Mode::Auto).hosts(&["example.com", "*.example.org"])],
request("http_fetch", r#"{"url":"https://www.example.org/x"}"#),
);
let rt = Recording::answering("");
run(d, rt.as_ref());
let seen = rt.seen();
assert_eq!(seen[0].tool, ToolName::HttpFetch);
assert_eq!(seen[0].mounts, []);
assert_eq!(
seen[0].egress,
Some(vec!["example.com".to_string(), "*.example.org".to_string()])
);
}
#[test]
fn a_result_carries_the_label_combined_over_every_matching_grant() {
// `b-keys` has the longer path and wins the mount; the label is the highest class of both
// grants, and untrusted because `a-home` says so.
let d = allowed(
vec![
grant("a-home", "read_file", Mode::Auto)
.paths(&["/home/kyle"])
.class(DataClass::Private),
grant("b-keys", "read_file", Mode::Auto)
.paths(&["/home/kyle/keys"])
.class(DataClass::Secret)
.trusted(),
],
read("/home/kyle/keys/id"),
);
let rt = Recording::with(Ok(RunOutput {
content: "key".to_string(),
truncated: true,
}));
let answer = run(d, rt.as_ref());
assert_eq!(
answer,
ToolResponse::Result {
content: "key".to_string(),
class: DataClass::Secret,
untrusted: true,
truncated: true,
}
);
assert_eq!(rt.seen()[0].mounts, [mount("/home/kyle/keys", false)]);
}
#[test]
fn a_run_error_is_a_failure_with_the_runtimes_sentence() {
for error in [
RunError::Failed("the tool timed out".to_string()),
RunError::Unavailable("the container could not start".to_string()),
] {
let d = allowed(
vec![grant("n", "read_file", Mode::Auto).paths(&["/n"])],
read("/n/a"),
);
let text = match &error {
RunError::Failed(t) | RunError::Unavailable(t) => t.clone(),
};
let rt = Recording::with(Err(error));
assert_eq!(run(d, rt.as_ref()), ToolResponse::Failed { message: text });
}
}
#[test]
fn the_production_runtime_refuses_every_call() {
assert_eq!(REFUSING, "the runner arrives in M3b");
let d = allowed(
vec![grant("n", "read_file", Mode::Auto).paths(&["/n"])],
read("/n/a"),
);
assert_eq!(
run(d, &Refusing),
ToolResponse::Failed {
message: REFUSING.to_string()
}
);
}
+70
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//! A runtime that records what it is asked to run, for the runner and broker tests. Do not edit.
//!
//! Included with `#[path = "support/runtime.rs"] mod runtime;`.
#![allow(dead_code)] // each test file uses a different part of this module
use std::sync::{Arc, Mutex};
use brokerd::args::{ToolArgs, ToolName};
use brokerd::runner::{Mount, RunError, RunOutput, RunSpec, Runtime};
/// What one `run` was given, copied out of the `RunSpec`.
#[derive(Debug, Clone, PartialEq, Eq)]
pub struct Seen {
pub tool: ToolName,
pub arguments: ToolArgs,
pub mounts: Vec<Mount>,
pub egress: Option<Vec<String>>,
}
pub struct Recording {
seen: Mutex<Vec<Seen>>,
answer: Result<RunOutput, RunError>,
}
impl Recording {
/// Answers every call with `content`, not truncated.
pub fn answering(content: &str) -> Arc<Recording> {
Recording::with(Ok(RunOutput {
content: content.to_string(),
truncated: false,
}))
}
pub fn with(answer: Result<RunOutput, RunError>) -> Arc<Recording> {
Arc::new(Recording {
seen: Mutex::new(Vec::new()),
answer,
})
}
pub fn seen(&self) -> Vec<Seen> {
self.seen.lock().unwrap().clone()
}
pub fn count(&self) -> usize {
self.seen.lock().unwrap().len()
}
}
impl Runtime for Recording {
fn run(&self, spec: &RunSpec) -> Result<RunOutput, RunError> {
self.seen.lock().unwrap().push(Seen {
tool: spec.tool(),
arguments: spec.arguments().clone(),
mounts: spec.mounts().to_vec(),
egress: spec.egress().map(<[String]>::to_vec),
});
self.answer.clone()
}
}
/// Lets a test keep its `Arc<Recording>` while the broker owns a `Box<dyn Runtime>`.
pub struct Shared(pub Arc<Recording>);
impl Runtime for Shared {
fn run(&self, spec: &RunSpec) -> Result<RunOutput, RunError> {
self.0.run(spec)
}
}