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Make IntelliJ workaround compatible with 'run watch --crate' (#3355)
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parent
85c09e7414
commit
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23
build/run.js
23
build/run.js
@ -164,11 +164,8 @@ commands.build.rust = async function (argv) {
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args.push('--dev')
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}
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args.push('--')
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// Enable source-file and line number information in the data generated by the `#[profile]`
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// macro.
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//
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// The `profiler` library requires use of a Rust unstable feature, `proc_macro_span`, to be
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// able to obtain this information.
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// Enable a Rust unstable feature that the `#[profile]` macro uses to obtain source-file and line
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// number information to include in generated profile files.
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//
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// The IntelliJ Rust plugin does not support the `proc_macro_span` Rust feature; using it causes
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// JetBrains IDEs to become entirely unaware of the items produced by `#[profile]`.
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@ -177,11 +174,17 @@ commands.build.rust = async function (argv) {
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// In order to have line number information in actual usage, but keep everything understandable
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// by JetBrains IDEs, we need IntelliJ/CLion to build crates differently from how they are
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// built for the application to be run. This is accomplished by gating the use of the unstable
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// functionality by a Cargo feature. Cargo features are disabled by default, so when a Rust IDE
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// builds crates internally in order to determine macro expansions, it will do so without line
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// numbers. When this script is used to build the application, it is not for the purpose of IDE
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// macro expansion, so we can safely enable line numbers.
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args.push('--features=enso-profiler/line-numbers')
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// functionality by a `cfg` flag. A `cfg` flag is disabled by default, so when a Rust IDE builds
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// crates internally in order to determine macro expansions, it will do so without line numbers.
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// When this script is used to build the application, it is not for the purpose of IDE macro
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// expansion, so we can safely enable line numbers.
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//
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// The reason we don't use a Cargo feature for this is because this script can build different
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// crates, and we'd like to enable this feature when building any crate that depends on the
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// `profiler` crates. We cannot do something like '--feature=enso_profiler/line-numbers' without
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// causing build to fail when building a crate that doesn't have `enso_profiler` in its
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// dependency tree.
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process.env.ENSO_ENABLE_PROC_MACRO_SPAN = 1
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await run_cargo('wasm-pack', args)
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await patch_file(paths.wasm.glue, js_workaround_patcher)
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await fs.rename(paths.wasm.mainRaw, paths.wasm.main)
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@ -13,6 +13,3 @@ enso-web = { path = "../web" }
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[dev-dependencies]
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futures = "0.3"
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[features]
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line-numbers = ["enso-profiler-macros/lineno"]
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@ -12,6 +12,3 @@ proc-macro2 = "1.0"
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quote = "1.0"
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syn = { version = "1.0", features = [ "full", "visit-mut" ] }
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Inflector = "0.11"
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[features]
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lineno = []
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@ -1,7 +1,6 @@
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//! Build script for [`enso_profiler_macros`]. This is needed because `profiler_macros` has a
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//! profiling level controlled by the value of an environment variable at compile time, and cargo
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//! needs to be made aware that changes to the env can invalidate the result of compiling this
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//! crate and any dependents.
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//! Build script for [`enso_profiler_macros`]. This is needed to make cargo aware that
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//! the crate depends on the values of environment variables at compile time, and changes to those
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//! variables should result in recompiling this crate and its dependents.
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// === Non-Standard Linter Configuration ===
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#![warn(missing_copy_implementations)]
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@ -16,8 +15,23 @@
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fn main() {
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println!("cargo:rerun-if-env-changed=ENSO_MAX_PROFILING_LEVEL");
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// This is a no-op assignment, except it makes cargo aware that the output depends on the env.
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let value = std::env::var("ENSO_MAX_PROFILING_LEVEL").unwrap_or_default();
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println!("cargo:rustc-env=ENSO_MAX_PROFILING_LEVEL={}", value);
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declare_env_dependence("ENSO_MAX_PROFILING_LEVEL");
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declare_env_cfg_flag("ENSO_ENABLE_PROC_MACRO_SPAN", "enso_enable=\"proc_macro_span\"");
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}
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/// Make cargo aware that the result of compiling this crate depends on an environment variable.
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fn declare_env_dependence(env: &str) {
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println!("cargo:rerun-if-env-changed={}", env);
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// This is a no-op assignment, except it makes cargo aware that the output depends on the env.
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let value = std::env::var(env).unwrap_or_default();
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println!("cargo:rustc-env={}={}", env, value);
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}
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/// Make cargo aware that the result of compiling this crate depends on an environment variable;
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/// convert that variable to a `cfg` flag so that it can be used for conditional compilation.
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fn declare_env_cfg_flag(env: &str, cfg: &str) {
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println!("cargo:rerun-if-env-changed={}", env);
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if std::env::var(env).is_ok() {
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println!("cargo:rustc-cfg={}", cfg);
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}
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}
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@ -7,7 +7,7 @@
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//! implementing this without proc macros would be complex and repetitious.
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//! - To implement the [`#[profile]`](macro@profile) attribute macro.
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#![cfg_attr(feature = "lineno", feature(proc_macro_span))]
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#![cfg_attr(enso_enable = "proc_macro_span", feature(proc_macro_span))]
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// === Standard Linter Configuration ===
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#![deny(non_ascii_idents)]
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#![warn(unsafe_code)]
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@ -290,13 +290,13 @@ pub fn profile(
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func.into_token_stream().into()
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}
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#[cfg(not(feature = "lineno"))]
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#[cfg(not(enso_enable = "proc_macro_span"))]
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/// Decorate the input with file:line info determined by the proc_macro's call site.
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fn make_label<L: fmt::Display>(name: L) -> String {
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format!("{} (?:?)", name)
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}
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#[cfg(feature = "lineno")]
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#[cfg(enso_enable = "proc_macro_span")]
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/// Decorate the input with file:line info determined by the proc_macro's call site.
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fn make_label<L: fmt::Display>(name: L) -> String {
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let span = proc_macro::Span::call_site();
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