mirror of
https://github.com/denoland/deno.git
synced 2024-10-31 09:14:20 -04:00
618 lines
19 KiB
Rust
618 lines
19 KiB
Rust
// Copyright 2018-2022 the Deno authors. All rights reserved. MIT license.
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use super::definitions::TestDefinition;
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use deno_ast::swc::ast;
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use deno_ast::swc::common::Span;
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use deno_ast::swc::visit::Visit;
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use deno_ast::swc::visit::VisitWith;
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use deno_core::ModuleSpecifier;
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use std::collections::HashSet;
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/// Parse an arrow expression for any test steps and return them.
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fn arrow_to_steps(
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parent: &str,
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level: usize,
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arrow_expr: &ast::ArrowExpr,
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) -> Option<Vec<TestDefinition>> {
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if let Some((maybe_test_context, maybe_step_var)) =
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parse_test_context_param(arrow_expr.params.get(0))
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{
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let mut collector = TestStepCollector::new(
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parent.to_string(),
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level,
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maybe_test_context,
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maybe_step_var,
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);
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arrow_expr.body.visit_with(&mut collector);
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let steps = collector.take();
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if !steps.is_empty() {
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Some(steps)
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} else {
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None
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}
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} else {
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None
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}
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}
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/// Parse a function for any test steps and return them.
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fn fn_to_steps(
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parent: &str,
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level: usize,
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function: &ast::Function,
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) -> Option<Vec<TestDefinition>> {
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if let Some((maybe_test_context, maybe_step_var)) =
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parse_test_context_param(function.params.get(0).map(|p| &p.pat))
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{
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let mut collector = TestStepCollector::new(
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parent.to_string(),
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level,
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maybe_test_context,
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maybe_step_var,
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);
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function.body.visit_with(&mut collector);
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let steps = collector.take();
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if !steps.is_empty() {
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Some(steps)
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} else {
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None
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}
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} else {
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None
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}
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}
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/// Parse a param of a test function for the test context binding, or any
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/// destructuring of a `steps` method from the test context.
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fn parse_test_context_param(
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param: Option<&ast::Pat>,
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) -> Option<(Option<String>, Option<String>)> {
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let mut maybe_test_context = None;
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let mut maybe_step_var = None;
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match param {
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// handles `(testContext)`
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Some(ast::Pat::Ident(binding_ident)) => {
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maybe_test_context = Some(binding_ident.id.sym.to_string());
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}
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Some(ast::Pat::Object(object_pattern)) => {
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for prop in &object_pattern.props {
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match prop {
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ast::ObjectPatProp::KeyValue(key_value_pat_prop) => {
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match &key_value_pat_prop.key {
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// handles `({ step: s })`
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ast::PropName::Ident(ident) => {
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if ident.sym.eq("step") {
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if let ast::Pat::Ident(ident) =
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key_value_pat_prop.value.as_ref()
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{
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maybe_step_var = Some(ident.id.sym.to_string());
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}
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break;
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}
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}
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// handles `({ "step": s })`
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ast::PropName::Str(string) => {
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if string.value.eq("step") {
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if let ast::Pat::Ident(ident) =
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key_value_pat_prop.value.as_ref()
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{
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maybe_step_var = Some(ident.id.sym.to_string());
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}
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break;
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}
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}
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_ => (),
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}
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}
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// handles `({ step = something })`
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ast::ObjectPatProp::Assign(assign_pat_prop)
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if assign_pat_prop.key.sym.eq("step") =>
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{
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maybe_step_var = Some("step".to_string());
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break;
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}
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// handles `({ ...ctx })`
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ast::ObjectPatProp::Rest(rest_pat) => {
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if let ast::Pat::Ident(ident) = rest_pat.arg.as_ref() {
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maybe_test_context = Some(ident.id.sym.to_string());
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}
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break;
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}
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_ => (),
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}
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}
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}
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_ => return None,
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}
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if maybe_test_context.is_none() && maybe_step_var.is_none() {
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None
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} else {
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Some((maybe_test_context, maybe_step_var))
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}
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}
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/// Check a call expression of a test or test step to determine the name of the
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/// test or test step as well as any sub steps.
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fn check_call_expr(
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parent: &str,
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node: &ast::CallExpr,
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level: usize,
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) -> Option<(String, Option<Vec<TestDefinition>>)> {
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if let Some(expr) = node.args.get(0).map(|es| es.expr.as_ref()) {
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match expr {
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ast::Expr::Object(obj_lit) => {
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let mut maybe_name = None;
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let mut steps = None;
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for prop in &obj_lit.props {
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if let ast::PropOrSpread::Prop(prop) = prop {
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match prop.as_ref() {
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ast::Prop::KeyValue(key_value_prop) => {
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if let ast::PropName::Ident(ast::Ident { sym, .. }) =
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&key_value_prop.key
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{
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match sym.to_string().as_str() {
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"name" => match key_value_prop.value.as_ref() {
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// matches string literals (e.g. "test name" or
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// 'test name')
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ast::Expr::Lit(ast::Lit::Str(lit_str)) => {
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maybe_name = Some(lit_str.value.to_string());
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}
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// matches template literals with only a single quasis
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// (e.g. `test name`)
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ast::Expr::Tpl(tpl) => {
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if tpl.quasis.len() == 1 {
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if let Some(tpl_element) = tpl.quasis.get(0) {
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maybe_name = Some(tpl_element.raw.to_string());
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}
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}
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}
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_ => (),
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},
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"fn" => match key_value_prop.value.as_ref() {
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ast::Expr::Arrow(arrow_expr) => {
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steps = arrow_to_steps(parent, level, arrow_expr);
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}
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ast::Expr::Fn(fn_expr) => {
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steps = fn_to_steps(parent, level, &fn_expr.function);
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}
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_ => (),
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},
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_ => (),
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}
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}
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}
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ast::Prop::Method(method_prop) => {
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steps = fn_to_steps(parent, level, &method_prop.function);
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}
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_ => (),
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}
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}
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}
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maybe_name.map(|name| (name, steps))
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}
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ast::Expr::Fn(fn_expr) => {
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if let Some(ast::Ident { sym, .. }) = fn_expr.ident.as_ref() {
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let name = sym.to_string();
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let steps = fn_to_steps(parent, level, &fn_expr.function);
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Some((name, steps))
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} else {
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None
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}
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}
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ast::Expr::Lit(ast::Lit::Str(lit_str)) => {
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let name = lit_str.value.to_string();
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let mut steps = None;
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match node.args.get(1).map(|es| es.expr.as_ref()) {
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Some(ast::Expr::Fn(fn_expr)) => {
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steps = fn_to_steps(parent, level, &fn_expr.function);
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}
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Some(ast::Expr::Arrow(arrow_expr)) => {
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steps = arrow_to_steps(parent, level, arrow_expr);
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}
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_ => (),
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}
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Some((name, steps))
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}
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_ => None,
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}
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} else {
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None
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}
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}
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/// A structure which can be used to walk a branch of AST determining if the
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/// branch contains any testing steps.
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struct TestStepCollector {
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steps: Vec<TestDefinition>,
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level: usize,
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parent: String,
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maybe_test_context: Option<String>,
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vars: HashSet<String>,
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}
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impl TestStepCollector {
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fn new(
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parent: String,
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level: usize,
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maybe_test_context: Option<String>,
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maybe_step_var: Option<String>,
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) -> Self {
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let mut vars = HashSet::new();
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if let Some(var) = maybe_step_var {
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vars.insert(var);
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}
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Self {
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steps: Vec::default(),
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level,
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parent,
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maybe_test_context,
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vars,
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}
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}
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fn add_step<N: AsRef<str>>(
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&mut self,
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name: N,
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span: &Span,
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steps: Option<Vec<TestDefinition>>,
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) {
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let step = TestDefinition::new_step(
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name.as_ref().to_string(),
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*span,
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self.parent.clone(),
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self.level,
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steps,
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);
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self.steps.push(step);
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}
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fn check_call_expr(&mut self, node: &ast::CallExpr, span: &Span) {
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if let Some((name, steps)) =
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check_call_expr(&self.parent, node, self.level + 1)
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{
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self.add_step(name, span, steps);
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}
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}
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/// Move out the test definitions
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pub fn take(self) -> Vec<TestDefinition> {
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self.steps
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}
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}
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impl Visit for TestStepCollector {
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fn visit_call_expr(&mut self, node: &ast::CallExpr) {
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if let ast::Callee::Expr(callee_expr) = &node.callee {
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match callee_expr.as_ref() {
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// Identify calls to identified variables
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ast::Expr::Ident(ident) => {
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if self.vars.contains(&ident.sym.to_string()) {
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self.check_call_expr(node, &ident.span);
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}
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}
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// Identify calls to `test.step()`
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ast::Expr::Member(member_expr) => {
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if let Some(test_context) = &self.maybe_test_context {
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if let ast::MemberProp::Ident(ns_prop_ident) = &member_expr.prop {
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if ns_prop_ident.sym.eq("step") {
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if let ast::Expr::Ident(ident) = member_expr.obj.as_ref() {
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if ident.sym == *test_context {
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self.check_call_expr(node, &ns_prop_ident.span);
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}
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}
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}
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}
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}
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}
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_ => (),
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}
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}
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}
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fn visit_var_decl(&mut self, node: &ast::VarDecl) {
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if let Some(test_context) = &self.maybe_test_context {
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for decl in &node.decls {
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if let Some(init) = &decl.init {
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match init.as_ref() {
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// Identify destructured assignments of `step` from test context
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ast::Expr::Ident(ident) => {
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if ident.sym == *test_context {
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if let ast::Pat::Object(object_pat) = &decl.name {
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for prop in &object_pat.props {
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match prop {
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ast::ObjectPatProp::Assign(prop) => {
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if prop.key.sym.eq("step") {
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self.vars.insert(prop.key.sym.to_string());
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}
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}
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ast::ObjectPatProp::KeyValue(prop) => {
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if let ast::PropName::Ident(key_ident) = &prop.key {
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if key_ident.sym.eq("step") {
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if let ast::Pat::Ident(value_ident) =
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&prop.value.as_ref()
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{
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self.vars.insert(value_ident.id.sym.to_string());
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}
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}
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}
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}
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_ => (),
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}
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}
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}
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}
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}
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// Identify variable assignments where the init is test context
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// `.step`
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ast::Expr::Member(member_expr) => {
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if let ast::Expr::Ident(obj_ident) = member_expr.obj.as_ref() {
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if obj_ident.sym == *test_context {
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if let ast::MemberProp::Ident(prop_ident) = &member_expr.prop
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{
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if prop_ident.sym.eq("step") {
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if let ast::Pat::Ident(binding_ident) = &decl.name {
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self.vars.insert(binding_ident.id.sym.to_string());
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}
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}
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}
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}
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}
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}
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_ => (),
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}
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}
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}
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}
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}
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}
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/// Walk an AST and determine if it contains any `Deno.test` tests.
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pub struct TestCollector {
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definitions: Vec<TestDefinition>,
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specifier: ModuleSpecifier,
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vars: HashSet<String>,
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}
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impl TestCollector {
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pub fn new(specifier: ModuleSpecifier) -> Self {
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Self {
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definitions: Vec::new(),
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specifier,
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vars: HashSet::new(),
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}
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}
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fn add_definition<N: AsRef<str>>(
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&mut self,
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name: N,
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span: &Span,
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steps: Option<Vec<TestDefinition>>,
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) {
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let definition = TestDefinition::new(
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&self.specifier,
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name.as_ref().to_string(),
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*span,
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steps,
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);
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self.definitions.push(definition);
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}
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fn check_call_expr(&mut self, node: &ast::CallExpr, span: &Span) {
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if let Some((name, steps)) =
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check_call_expr(self.specifier.as_str(), node, 1)
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{
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self.add_definition(name, span, steps);
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}
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}
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/// Move out the test definitions
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pub fn take(self) -> Vec<TestDefinition> {
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self.definitions
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}
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}
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impl Visit for TestCollector {
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fn visit_call_expr(&mut self, node: &ast::CallExpr) {
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if let ast::Callee::Expr(callee_expr) = &node.callee {
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match callee_expr.as_ref() {
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ast::Expr::Ident(ident) => {
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if self.vars.contains(&ident.sym.to_string()) {
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self.check_call_expr(node, &ident.span);
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}
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}
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ast::Expr::Member(member_expr) => {
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if let ast::MemberProp::Ident(ns_prop_ident) = &member_expr.prop {
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if ns_prop_ident.sym.to_string() == "test" {
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if let ast::Expr::Ident(ident) = member_expr.obj.as_ref() {
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if ident.sym.to_string() == "Deno" {
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self.check_call_expr(node, &ns_prop_ident.span);
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}
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}
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}
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}
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}
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_ => (),
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}
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}
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}
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fn visit_var_decl(&mut self, node: &ast::VarDecl) {
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for decl in &node.decls {
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if let Some(init) = &decl.init {
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match init.as_ref() {
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// Identify destructured assignments of `test` from `Deno`
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ast::Expr::Ident(ident) => {
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if ident.sym.to_string() == "Deno" {
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if let ast::Pat::Object(object_pat) = &decl.name {
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for prop in &object_pat.props {
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match prop {
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ast::ObjectPatProp::Assign(prop) => {
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let name = prop.key.sym.to_string();
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if name == "test" {
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self.vars.insert(name);
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}
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}
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ast::ObjectPatProp::KeyValue(prop) => {
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if let ast::PropName::Ident(key_ident) = &prop.key {
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if key_ident.sym.to_string() == "test" {
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if let ast::Pat::Ident(value_ident) =
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&prop.value.as_ref()
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{
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self.vars.insert(value_ident.id.sym.to_string());
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}
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}
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}
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}
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_ => (),
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}
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}
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}
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}
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}
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// Identify variable assignments where the init is `Deno.test`
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ast::Expr::Member(member_expr) => {
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if let ast::Expr::Ident(obj_ident) = member_expr.obj.as_ref() {
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if obj_ident.sym.to_string() == "Deno" {
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if let ast::MemberProp::Ident(prop_ident) = &member_expr.prop {
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if prop_ident.sym.to_string() == "test" {
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if let ast::Pat::Ident(binding_ident) = &decl.name {
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self.vars.insert(binding_ident.id.sym.to_string());
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}
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}
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}
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}
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}
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}
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_ => (),
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}
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}
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}
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}
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}
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#[cfg(test)]
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pub mod tests {
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use super::*;
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use deno_ast::swc::common::BytePos;
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use deno_ast::swc::common::SyntaxContext;
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use deno_core::resolve_url;
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use std::sync::Arc;
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pub fn new_span(lo: u32, hi: u32, ctxt: u32) -> Span {
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Span {
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lo: BytePos(lo),
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hi: BytePos(hi),
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ctxt: SyntaxContext::from_u32(ctxt),
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}
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}
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#[test]
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fn test_test_collector() {
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let specifier = resolve_url("file:///a/example.ts").unwrap();
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let source = Arc::new(
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r#"
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Deno.test({
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name: "test a",
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async fn(t) {
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await t.step("a step", ({ step }) => {
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await step({
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name: "sub step",
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fn() {}
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})
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});
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}
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});
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|
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Deno.test(async function useFnName({ step: s }) {
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await s("step c", () => {});
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});
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|
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Deno.test("test b", () => {});
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const { test } = Deno;
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test("test c", () => {});
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const t = Deno.test;
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t("test d", () => {});
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"#
|
|
.to_string(),
|
|
);
|
|
|
|
let parsed_module = deno_ast::parse_module(deno_ast::ParseParams {
|
|
specifier: specifier.to_string(),
|
|
source: deno_ast::SourceTextInfo::new(source),
|
|
media_type: deno_ast::MediaType::TypeScript,
|
|
capture_tokens: true,
|
|
scope_analysis: true,
|
|
maybe_syntax: None,
|
|
})
|
|
.unwrap();
|
|
let mut collector = TestCollector::new(specifier);
|
|
parsed_module.module().visit_with(&mut collector);
|
|
assert_eq!(
|
|
collector.take(),
|
|
vec![
|
|
TestDefinition {
|
|
id: "cf31850c831233526df427cdfd25b6b84b2af0d6ce5f8ee1d22c465234b46348".to_string(),
|
|
level: 0,
|
|
name: "test a".to_string(),
|
|
span: new_span(12, 16, 0),
|
|
steps: Some(vec![
|
|
TestDefinition {
|
|
id: "4c7333a1e47721631224408c467f32751fe34b876cab5ec1f6ac71980ff15ad3".to_string(),
|
|
level: 1,
|
|
name: "a step".to_string(),
|
|
span: new_span(83, 87, 0),
|
|
steps: Some(vec![
|
|
TestDefinition {
|
|
id: "abf356f59139b77574089615f896a6f501c010985d95b8a93abeb0069ccb2201".to_string(),
|
|
level: 2,
|
|
name: "sub step".to_string(),
|
|
span: new_span(132, 136, 3),
|
|
steps: None,
|
|
}
|
|
])
|
|
}
|
|
]),
|
|
},
|
|
TestDefinition {
|
|
id: "86b4c821900e38fc89f24bceb0e45193608ab3f9d2a6019c7b6a5aceff5d7df2".to_string(),
|
|
level: 0,
|
|
name: "useFnName".to_string(),
|
|
span: new_span(254, 258, 0),
|
|
steps: Some(vec![
|
|
TestDefinition {
|
|
id: "67a390d0084ae5fb88f3510c470a72a553581f1d0d5ba5fa89aee7a754f3953a".to_string(),
|
|
level: 1,
|
|
name: "step c".to_string(),
|
|
span: new_span(313, 314, 4),
|
|
steps: None,
|
|
}
|
|
])
|
|
},
|
|
TestDefinition {
|
|
id: "580eda89d7f5e619774c20e13b7d07a8e77c39cba101d60565144d48faa837cb".to_string(),
|
|
level: 0,
|
|
name: "test b".to_string(),
|
|
span: new_span(358, 362, 0),
|
|
steps: None,
|
|
},
|
|
TestDefinition {
|
|
id: "0b7c6bf3cd617018d33a1bf982a08fe088c5bb54fcd5eb9e802e7c137ec1af94".to_string(),
|
|
level: 0,
|
|
name: "test c".to_string(),
|
|
span: new_span(420, 424, 1),
|
|
steps: None,
|
|
},
|
|
TestDefinition {
|
|
id: "69d9fe87f64f5b66cb8b631d4fd2064e8224b8715a049be54276c42189ff8f9f".to_string(),
|
|
level: 0,
|
|
name: "test d".to_string(),
|
|
span: new_span(480, 481, 1),
|
|
steps: None,
|
|
}
|
|
]
|
|
);
|
|
}
|
|
}
|