Vendor things
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202
third-party/vendor/proc-macro2/build.rs
vendored
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202
third-party/vendor/proc-macro2/build.rs
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// rustc-cfg emitted by the build script:
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//
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// "wrap_proc_macro"
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// Wrap types from libproc_macro rather than polyfilling the whole API.
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// Enabled on rustc 1.29+ as long as procmacro2_semver_exempt is not set,
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// because we can't emulate the unstable API without emulating everything
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// else. Also enabled unconditionally on nightly, in which case the
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// procmacro2_semver_exempt surface area is implemented by using the
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// nightly-only proc_macro API.
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//
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// "hygiene"
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// Enable Span::mixed_site() and non-dummy behavior of Span::resolved_at
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// and Span::located_at. Enabled on Rust 1.45+.
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//
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// "proc_macro_span"
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// Enable non-dummy behavior of Span::start and Span::end methods which
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// requires an unstable compiler feature. Enabled when building with
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// nightly, unless `-Z allow-feature` in RUSTFLAGS disallows unstable
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// features.
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//
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// "super_unstable"
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// Implement the semver exempt API in terms of the nightly-only proc_macro
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// API. Enabled when using procmacro2_semver_exempt on a nightly compiler.
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//
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// "span_locations"
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// Provide methods Span::start and Span::end which give the line/column
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// location of a token. Enabled by procmacro2_semver_exempt or the
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// "span-locations" Cargo cfg. This is behind a cfg because tracking
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// location inside spans is a performance hit.
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//
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// "is_available"
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// Use proc_macro::is_available() to detect if the proc macro API is
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// available or needs to be polyfilled instead of trying to use the proc
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// macro API and catching a panic if it isn't available. Enabled on Rust
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// 1.57+.
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use std::env;
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use std::ffi::OsString;
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use std::path::Path;
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use std::process::{self, Command, Stdio};
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use std::str;
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use std::u32;
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fn main() {
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let rustc = rustc_minor_version().unwrap_or(u32::MAX);
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let docs_rs = env::var_os("DOCS_RS").is_some();
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let semver_exempt = cfg!(procmacro2_semver_exempt) || docs_rs;
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if semver_exempt {
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// https://github.com/dtolnay/proc-macro2/issues/147
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println!("cargo:rustc-cfg=procmacro2_semver_exempt");
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}
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if semver_exempt || cfg!(feature = "span-locations") {
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println!("cargo:rustc-cfg=span_locations");
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}
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if rustc < 57 {
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println!("cargo:rustc-cfg=no_is_available");
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}
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if rustc < 66 {
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println!("cargo:rustc-cfg=no_source_text");
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}
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if !cfg!(feature = "proc-macro") {
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println!("cargo:rerun-if-changed=build.rs");
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return;
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}
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println!("cargo:rerun-if-changed=build/probe.rs");
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let proc_macro_span;
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let consider_rustc_bootstrap;
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if compile_probe(false) {
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// This is a nightly or dev compiler, so it supports unstable features
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// regardless of RUSTC_BOOTSTRAP. No need to rerun build script if
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// RUSTC_BOOTSTRAP is changed.
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proc_macro_span = true;
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consider_rustc_bootstrap = false;
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} else if let Some(rustc_bootstrap) = env::var_os("RUSTC_BOOTSTRAP") {
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if compile_probe(true) {
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// This is a stable or beta compiler for which the user has set
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// RUSTC_BOOTSTRAP to turn on unstable features. Rerun build script
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// if they change it.
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proc_macro_span = true;
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consider_rustc_bootstrap = true;
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} else if rustc_bootstrap == "1" {
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// This compiler does not support the proc macro Span API in the
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// form that proc-macro2 expects. No need to pay attention to
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// RUSTC_BOOTSTRAP.
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proc_macro_span = false;
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consider_rustc_bootstrap = false;
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} else {
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// This is a stable or beta compiler for which RUSTC_BOOTSTRAP is
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// set to restrict the use of unstable features by this crate.
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proc_macro_span = false;
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consider_rustc_bootstrap = true;
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}
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} else {
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// Without RUSTC_BOOTSTRAP, this compiler does not support the proc
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// macro Span API in the form that proc-macro2 expects, but try again if
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// the user turns on unstable features.
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proc_macro_span = false;
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consider_rustc_bootstrap = true;
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}
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if proc_macro_span || !semver_exempt {
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println!("cargo:rustc-cfg=wrap_proc_macro");
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}
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if proc_macro_span {
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println!("cargo:rustc-cfg=proc_macro_span");
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}
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if semver_exempt && proc_macro_span {
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println!("cargo:rustc-cfg=super_unstable");
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}
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if consider_rustc_bootstrap {
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println!("cargo:rerun-if-env-changed=RUSTC_BOOTSTRAP");
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}
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}
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fn compile_probe(rustc_bootstrap: bool) -> bool {
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if env::var_os("RUSTC_STAGE").is_some() {
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// We are running inside rustc bootstrap. This is a highly non-standard
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// environment with issues such as:
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//
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// https://github.com/rust-lang/cargo/issues/11138
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// https://github.com/rust-lang/rust/issues/114839
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//
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// Let's just not use nightly features here.
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return false;
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}
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let rustc = cargo_env_var("RUSTC");
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let out_dir = cargo_env_var("OUT_DIR");
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let probefile = Path::new("build").join("probe.rs");
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// Make sure to pick up Cargo rustc configuration.
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let mut cmd = if let Some(wrapper) = env::var_os("RUSTC_WRAPPER") {
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let mut cmd = Command::new(wrapper);
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// The wrapper's first argument is supposed to be the path to rustc.
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cmd.arg(rustc);
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cmd
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} else {
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Command::new(rustc)
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};
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if !rustc_bootstrap {
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cmd.env_remove("RUSTC_BOOTSTRAP");
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}
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cmd.stderr(Stdio::null())
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.arg("--edition=2021")
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.arg("--crate-name=proc_macro2")
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.arg("--crate-type=lib")
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.arg("--emit=dep-info,metadata")
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.arg("--out-dir")
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.arg(out_dir)
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.arg(probefile);
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if let Some(target) = env::var_os("TARGET") {
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cmd.arg("--target").arg(target);
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}
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// If Cargo wants to set RUSTFLAGS, use that.
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if let Ok(rustflags) = env::var("CARGO_ENCODED_RUSTFLAGS") {
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if !rustflags.is_empty() {
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for arg in rustflags.split('\x1f') {
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cmd.arg(arg);
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}
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}
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}
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match cmd.status() {
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Ok(status) => status.success(),
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Err(_) => false,
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}
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}
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fn rustc_minor_version() -> Option<u32> {
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let rustc = cargo_env_var("RUSTC");
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let output = Command::new(rustc).arg("--version").output().ok()?;
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let version = str::from_utf8(&output.stdout).ok()?;
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let mut pieces = version.split('.');
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if pieces.next() != Some("rustc 1") {
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return None;
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}
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pieces.next()?.parse().ok()
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}
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fn cargo_env_var(key: &str) -> OsString {
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env::var_os(key).unwrap_or_else(|| {
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eprintln!(
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"Environment variable ${} is not set during execution of build script",
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key,
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);
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process::exit(1);
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})
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}
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