use std::path::{Path, PathBuf};
use std::sync::Arc;
use std::sync::atomic::{AtomicBool, Ordering};
use fallow_config::WorkspaceInfo;
use fallow_engine::workspace_scope::{WorkspaceScopeError, WorkspaceScopeMode};
use fallow_output::{DiffIndex, MAX_DIFF_BYTES};
use fallow_types::path_util::is_absolute_path_any_platform;
use rustc_hash::FxHashSet;
use crate::{AnalysisOptions, ProgrammaticError};
type ProgrammaticResult<T> = Result<T, ProgrammaticError>;
pub struct ProgrammaticAnalysisContext {
pub(crate) root: PathBuf,
pub(crate) config_path: Option<PathBuf>,
pub(crate) allow_remote_extends: bool,
pub(crate) no_cache: bool,
pub(crate) threads: usize,
pub(crate) pool: rayon::ThreadPool,
pub(crate) diff: Option<DiffIndex>,
pub(crate) production_override: Option<bool>,
pub(crate) changed_since: Option<String>,
pub(crate) workspace: Option<Vec<String>>,
pub(crate) changed_workspaces: Option<String>,
pub(crate) workspace_roots: Option<Vec<PathBuf>>,
pub(crate) explain: bool,
pub(crate) cancellation: Option<Arc<AtomicBool>>,
}
pub fn resolve_programmatic_analysis_context(
options: &AnalysisOptions,
) -> ProgrammaticResult<ProgrammaticAnalysisContext> {
resolve_programmatic_analysis_context_inner(options, true)
}
pub fn resolve_programmatic_analysis_context_deferred_workspace(
options: &AnalysisOptions,
) -> ProgrammaticResult<ProgrammaticAnalysisContext> {
resolve_programmatic_analysis_context_inner(options, false)
}
fn resolve_programmatic_analysis_context_inner(
options: &AnalysisOptions,
resolve_workspace: bool,
) -> ProgrammaticResult<ProgrammaticAnalysisContext> {
validate_analysis_option_shape(options)?;
let root = resolve_analysis_root(options.root.as_deref())?;
validate_analysis_config_path(options.config_path.as_deref())?;
let threads = options.threads.unwrap_or_else(default_threads);
let pool = fallow_engine::thread_pool::worker_pool_builder(threads)
.build()
.map_err(|err| {
ProgrammaticError::new(format!("failed to build analysis thread pool: {err}"), 2)
.with_code("FALLOW_THREAD_POOL_INIT_FAILED")
.with_context("analysis.threads")
})?;
let diff = options
.diff_file
.as_deref()
.map(|path| load_explicit_diff_file(path, &root))
.transpose()?;
let workspace_roots = if resolve_workspace {
resolve_workspace_scope(
&root,
options.workspace.as_deref(),
options.changed_workspaces.as_deref(),
)?
} else {
None
};
Ok(ProgrammaticAnalysisContext {
root,
config_path: options.config_path.clone(),
allow_remote_extends: options.allow_remote_extends,
no_cache: options.no_cache,
threads,
pool,
diff,
production_override: options
.production_override
.or_else(|| options.production.then_some(true)),
changed_since: options.changed_since.clone(),
workspace: options.workspace.clone(),
changed_workspaces: options.changed_workspaces.clone(),
workspace_roots,
explain: options.explain,
cancellation: options.cancellation.clone(),
})
}
fn validate_analysis_option_shape(options: &AnalysisOptions) -> ProgrammaticResult<()> {
if options.threads == Some(0) {
return Err(
ProgrammaticError::new("`threads` must be greater than 0", 2)
.with_code("FALLOW_INVALID_THREADS")
.with_context("analysis.threads"),
);
}
if options.workspace.is_some() && options.changed_workspaces.is_some() {
return Err(ProgrammaticError::new(
"`workspace` and `changed_workspaces` are mutually exclusive",
2,
)
.with_code("FALLOW_MUTUALLY_EXCLUSIVE_SCOPE")
.with_context("analysis.workspace"));
}
Ok(())
}
pub fn resolve_analysis_root(root: Option<&Path>) -> ProgrammaticResult<PathBuf> {
let root = match root {
Some(root) => root.to_path_buf(),
None => std::env::current_dir().map_err(|err| {
ProgrammaticError::new(
format!("failed to resolve current working directory: {err}"),
2,
)
.with_code("FALLOW_CWD_UNAVAILABLE")
.with_context("analysis.root")
})?,
};
fallow_engine::validate::validate_root(&root).map_err(|err| {
ProgrammaticError::new(err, 2)
.with_code("FALLOW_INVALID_ROOT")
.with_context("analysis.root")
})
}
pub fn validate_analysis_config_path(config_path: Option<&Path>) -> ProgrammaticResult<()> {
if let Some(config_path) = config_path
&& !config_path.exists()
{
return Err(ProgrammaticError::new(
format!("config file does not exist: {}", config_path.display()),
2,
)
.with_code("FALLOW_INVALID_CONFIG_PATH")
.with_context("analysis.configPath"));
}
Ok(())
}
impl ProgrammaticAnalysisContext {
pub fn install<R: Send>(&self, f: impl FnOnce() -> R + Send) -> R {
self.pool.install(f)
}
#[must_use]
pub fn root(&self) -> &Path {
&self.root
}
#[must_use]
pub fn config_path(&self) -> &Option<PathBuf> {
&self.config_path
}
#[must_use]
pub const fn allow_remote_extends(&self) -> bool {
self.allow_remote_extends
}
#[must_use]
pub const fn no_cache(&self) -> bool {
self.no_cache
}
#[must_use]
pub const fn threads(&self) -> usize {
self.threads
}
#[must_use]
pub const fn diff_index(&self) -> Option<&DiffIndex> {
self.diff.as_ref()
}
#[must_use]
pub const fn production_override(&self) -> Option<bool> {
self.production_override
}
#[must_use]
pub fn changed_since(&self) -> Option<&str> {
self.changed_since.as_deref()
}
#[must_use]
pub fn workspace(&self) -> Option<&[String]> {
self.workspace.as_deref()
}
#[must_use]
pub fn changed_workspaces(&self) -> Option<&str> {
self.changed_workspaces.as_deref()
}
#[must_use]
pub const fn explain_enabled(&self) -> bool {
self.explain
}
#[must_use]
pub fn cancellation(&self) -> Option<&Arc<AtomicBool>> {
self.cancellation.as_ref()
}
#[must_use]
pub fn is_cancelled(&self) -> bool {
self.cancellation
.as_ref()
.is_some_and(|cancelled| cancelled.load(Ordering::SeqCst))
}
pub fn ensure_not_cancelled(&self, stage: &str) -> ProgrammaticResult<()> {
if self.is_cancelled() {
return Err(cancelled_error(stage));
}
Ok(())
}
}
pub fn ensure_options_not_cancelled(
options: &AnalysisOptions,
stage: &str,
) -> ProgrammaticResult<()> {
if options
.cancellation
.as_ref()
.is_some_and(|cancelled| cancelled.load(Ordering::SeqCst))
{
return Err(cancelled_error(stage));
}
Ok(())
}
#[must_use]
pub fn cancelled_error(stage: &str) -> ProgrammaticError {
cancelled_error_message(&format!("analysis was cancelled before {stage}"))
}
#[must_use]
pub fn cancelled_error_message(message: &str) -> ProgrammaticError {
ProgrammaticError::new(message, 2)
.with_code("FALLOW_CANCELLED")
.with_context("analysis.cancellation")
}
fn default_threads() -> usize {
std::thread::available_parallelism().map_or(1, std::num::NonZeroUsize::get)
}
fn load_explicit_diff_file(path: &Path, root: &Path) -> ProgrammaticResult<DiffIndex> {
if path == Path::new("-") {
return Err(ProgrammaticError::new(
"`diff_file` does not support stdin; pass a file path",
2,
)
.with_code("FALLOW_INVALID_DIFF_FILE")
.with_context("analysis.diffFile"));
}
let abs = if is_absolute_path_any_platform(path) {
path.to_path_buf()
} else {
root.join(path)
};
let meta = std::fs::metadata(&abs).map_err(|err| {
ProgrammaticError::new(
format!(
"diff file does not exist or cannot be read: {} ({err})",
abs.display()
),
2,
)
.with_code("FALLOW_INVALID_DIFF_FILE")
.with_context("analysis.diffFile")
})?;
if !meta.is_file() {
return Err(ProgrammaticError::new(
format!("diff path is not a file: {}", abs.display()),
2,
)
.with_code("FALLOW_INVALID_DIFF_FILE")
.with_context("analysis.diffFile"));
}
if meta.len() > MAX_DIFF_BYTES {
return Err(ProgrammaticError::new(
format!(
"diff file is {} bytes, above the {MAX_DIFF_BYTES} byte limit: {}",
meta.len(),
abs.display()
),
2,
)
.with_code("FALLOW_INVALID_DIFF_FILE")
.with_context("analysis.diffFile"));
}
let text = std::fs::read_to_string(&abs).map_err(|err| {
ProgrammaticError::new(
format!("failed to read diff file {}: {err}", abs.display()),
2,
)
.with_code("FALLOW_INVALID_DIFF_FILE")
.with_context("analysis.diffFile")
})?;
Ok(DiffIndex::from_unified_diff(&text))
}
pub fn changed_files_for_run(
resolved: &ProgrammaticAnalysisContext,
) -> ProgrammaticResult<Option<FxHashSet<PathBuf>>> {
let Some(git_ref) = resolved.changed_since.as_deref() else {
return Ok(None);
};
fallow_engine::changed_files::changed_files(&resolved.root, git_ref)
.map(Some)
.map_err(|err| {
ProgrammaticError::new(
format!(
"failed to resolve changed files for ref `{git_ref}`: {}",
err.describe()
),
2,
)
.with_code("FALLOW_CHANGED_FILES_FAILED")
.with_context("analysis.changedSince")
})
}
pub fn workspace_roots_for_session(
resolved: &ProgrammaticAnalysisContext,
workspaces: &[WorkspaceInfo],
) -> ProgrammaticResult<Option<Vec<PathBuf>>> {
resolve_workspace_scope_from_workspaces(
&resolved.root,
resolved.workspace.as_deref(),
resolved.changed_workspaces.as_deref(),
workspaces,
)
}
fn resolve_workspace_scope(
root: &Path,
workspace: Option<&[String]>,
changed_workspaces: Option<&str>,
) -> ProgrammaticResult<Option<Vec<PathBuf>>> {
fallow_engine::workspace_scope::resolve_workspace_scope_roots_for_project(
root,
workspace,
changed_workspaces,
)
.map_err(map_workspace_scope_error)
}
fn resolve_workspace_scope_from_workspaces(
root: &Path,
workspace: Option<&[String]>,
changed_workspaces: Option<&str>,
workspaces: &[WorkspaceInfo],
) -> ProgrammaticResult<Option<Vec<PathBuf>>> {
fallow_engine::workspace_scope::resolve_workspace_scope_roots(
root,
workspace,
changed_workspaces,
workspaces,
)
.map_err(map_workspace_scope_error)
}
#[cfg(test)]
pub fn resolve_workspace_filters(
root: &Path,
patterns: &[String],
) -> ProgrammaticResult<Vec<PathBuf>> {
fallow_engine::workspace_scope::resolve_workspace_filter_roots_for_project(root, patterns)
.map_err(map_workspace_scope_error)
}
fn map_workspace_scope_error(err: WorkspaceScopeError) -> ProgrammaticError {
match err {
WorkspaceScopeError::NoWorkspaces {
mode,
patterns,
git_ref,
} => map_no_workspaces_error(mode, &patterns, git_ref.as_deref()),
WorkspaceScopeError::InvalidPattern { pattern, message } => ProgrammaticError::new(
format!("invalid `workspace` pattern '{pattern}': {message}"),
2,
)
.with_code("FALLOW_INVALID_WORKSPACE_PATTERN")
.with_context("analysis.workspace"),
WorkspaceScopeError::UnmatchedPatterns {
patterns,
available,
} => ProgrammaticError::new(
format!(
"`workspace` matched no workspace for pattern{}: {}. Available: {available}",
if patterns.len() == 1 { "" } else { "s" },
quote_owned_patterns(&patterns),
),
2,
)
.with_code("FALLOW_WORKSPACE_PATTERN_UNMATCHED")
.with_context("analysis.workspace"),
WorkspaceScopeError::EmptyAfterExclusions { .. } => {
ProgrammaticError::new("`workspace` excluded every discovered workspace", 2)
.with_code("FALLOW_WORKSPACE_SCOPE_EMPTY")
.with_context("analysis.workspace")
}
WorkspaceScopeError::ChangedWorkspacesFailed { git_ref, message } => {
ProgrammaticError::new(
format!("failed to resolve changed workspaces for ref `{git_ref}`: {message}"),
2,
)
.with_code("FALLOW_CHANGED_WORKSPACES_FAILED")
.with_context("analysis.changedWorkspaces")
}
WorkspaceScopeError::MutuallyExclusive => ProgrammaticError::new(
"`workspace` and `changed_workspaces` are mutually exclusive",
2,
)
.with_code("FALLOW_MUTUALLY_EXCLUSIVE_SCOPE")
.with_context("analysis.workspace"),
}
}
fn map_no_workspaces_error(
mode: WorkspaceScopeMode,
patterns: &[String],
git_ref: Option<&str>,
) -> ProgrammaticError {
match mode {
WorkspaceScopeMode::Workspace => ProgrammaticError::new(
format!(
"`workspace` {} specified but no workspaces found. Ensure root package.json has a \"workspaces\" field, pnpm-workspace.yaml exists, or tsconfig.json has \"references\".",
quote_owned_patterns(patterns)
),
2,
)
.with_code("FALLOW_WORKSPACES_NOT_FOUND")
.with_context("analysis.workspace"),
WorkspaceScopeMode::ChangedWorkspaces => {
let git_ref = git_ref.unwrap_or_default();
ProgrammaticError::new(
format!(
"`changed_workspaces` '{git_ref}' specified but no workspaces found. Ensure root package.json has a \"workspaces\" field, pnpm-workspace.yaml exists, or tsconfig.json has \"references\"."
),
2,
)
.with_code("FALLOW_WORKSPACES_NOT_FOUND")
.with_context("analysis.changedWorkspaces")
}
}
}
fn quote_owned_patterns(patterns: &[String]) -> String {
patterns
.iter()
.map(|pattern| format!("'{pattern}'"))
.collect::<Vec<_>>()
.join(", ")
}
#[cfg(test)]
mod tests {
use std::process::Command;
use crate::AnalysisOptions;
const STACK_PROBE_ENV: &str = "FALLOW_API_STACK_PROBE_CHILD";
const STACK_PROBE_TEST: &str =
"analysis_context::tests::programmatic_pool_survives_deep_worker_stack_probe";
#[test]
fn programmatic_pool_survives_deep_worker_stack_probe() {
if std::env::var_os(STACK_PROBE_ENV).is_some() {
run_stack_probe_child();
return;
}
let current_exe = std::env::current_exe().expect("current test binary should be known");
let output = Command::new(current_exe)
.arg("--exact")
.arg(STACK_PROBE_TEST)
.arg("--nocapture")
.env(STACK_PROBE_ENV, "1")
.env_remove("RUST_MIN_STACK")
.output()
.expect("stack probe child should start");
assert!(
output.status.success(),
"stack probe child failed with status {:?}\nstdout:\n{}\nstderr:\n{}",
output.status.code(),
String::from_utf8_lossy(&output.stdout),
String::from_utf8_lossy(&output.stderr)
);
}
fn run_stack_probe_child() {
let root = tempfile::tempdir().expect("stack probe needs a temp analysis root");
let options = AnalysisOptions {
root: Some(root.path().to_path_buf()),
threads: Some(1),
..AnalysisOptions::default()
};
let context = super::resolve_programmatic_analysis_context(&options)
.expect("stack probe context should resolve");
assert_eq!(context.install(|| consume_stack(5_000)), 5_000);
}
#[inline(never)]
fn consume_stack(depth: usize) -> usize {
let frame = [0_u8; 2048];
std::hint::black_box(&frame);
if depth == 0 {
usize::from(frame[0])
} else {
1 + consume_stack(depth - 1)
}
}
}