Dactyloidae/third_party/rust/pkg-config/src/lib.rs

471 lines
15 KiB
Rust

//! A build dependency for Cargo libraries to find system artifacts through the
//! `pkg-config` utility.
//!
//! This library will shell out to `pkg-config` as part of build scripts and
//! probe the system to determine how to link to a specified library. The
//! `Config` structure serves as a method of configuring how `pkg-config` is
//! invoked in a builder style.
//!
//! A number of environment variables are available to globally configure how
//! this crate will invoke `pkg-config`:
//!
//! * `PKG_CONFIG_ALLOW_CROSS` - if this variable is not set, then `pkg-config`
//! will automatically be disabled for all cross compiles.
//! * `FOO_NO_PKG_CONFIG` - if set, this will disable running `pkg-config` when
//! probing for the library named `foo`.
//!
//! There are also a number of environment variables which can configure how a
//! library is linked to (dynamically vs statically). These variables control
//! whether the `--static` flag is passed. Note that this behavior can be
//! overridden by configuring explicitly on `Config`. The variables are checked
//! in the following order:
//!
//! * `FOO_STATIC` - pass `--static` for the library `foo`
//! * `FOO_DYNAMIC` - do not pass `--static` for the library `foo`
//! * `PKG_CONFIG_ALL_STATIC` - pass `--static` for all libraries
//! * `PKG_CONFIG_ALL_DYNAMIC` - do not pass `--static` for all libraries
//!
//! After running `pkg-config` all appropriate Cargo metadata will be printed on
//! stdout if the search was successful.
//!
//! # Example
//!
//! Find the system library named `foo`.
//!
//! ```no_run
//! extern crate pkg_config;
//!
//! fn main() {
//! pkg_config::probe_library("foo").unwrap();
//! }
//! ```
//!
//! Configure how library `foo` is linked to.
//!
//! ```no_run
//! extern crate pkg_config;
//!
//! fn main() {
//! pkg_config::Config::new().statik(true).probe("foo").unwrap();
//! }
//! ```
#![doc(html_root_url = "http://alexcrichton.com/pkg-config-rs")]
#![cfg_attr(test, deny(warnings))]
use std::ascii::AsciiExt;
use std::env;
use std::error;
use std::ffi::{OsStr, OsString};
use std::fmt;
use std::fs;
use std::io;
use std::path::{PathBuf, Path};
use std::process::{Command, Output};
use std::str;
pub fn target_supported() -> bool {
let target = env::var("TARGET").unwrap_or(String::new());
let host = env::var("HOST").unwrap_or(String::new());
// Only use pkg-config in host == target situations by default (allowing an
// override) and then also don't use pkg-config on MSVC as it's really not
// meant to work there but when building MSVC code in a MSYS shell we may be
// able to run pkg-config anyway.
(host == target || env::var_os("PKG_CONFIG_ALLOW_CROSS").is_some()) &&
!target.contains("msvc")
}
#[derive(Clone)]
pub struct Config {
statik: Option<bool>,
atleast_version: Option<String>,
extra_args: Vec<OsString>,
cargo_metadata: bool,
}
#[derive(Debug)]
pub struct Library {
pub libs: Vec<String>,
pub link_paths: Vec<PathBuf>,
pub frameworks: Vec<String>,
pub framework_paths: Vec<PathBuf>,
pub include_paths: Vec<PathBuf>,
pub version: String,
_priv: (),
}
/// Represents all reasons `pkg-config` might not succeed or be run at all.
pub enum Error {
/// Aborted because of `*_NO_PKG_CONFIG` environment variable.
///
/// Contains the name of the responsible environment variable.
EnvNoPkgConfig(String),
/// Cross compilation detected.
///
/// Override with `PKG_CONFIG_ALLOW_CROSS=1`.
CrossCompilation,
/// Failed to run `pkg-config`.
///
/// Contains the command and the cause.
Command { command: String, cause: io::Error },
/// `pkg-config` did not exit sucessfully.
///
/// Contains the command and output.
Failure { command: String, output: Output },
#[doc(hidden)]
// please don't match on this, we're likely to add more variants over time
__Nonexhaustive,
}
impl error::Error for Error {
fn description(&self) -> &str {
match *self {
Error::EnvNoPkgConfig(_) => "pkg-config requested to be aborted",
Error::CrossCompilation => {
"pkg-config doesn't handle cross compilation. \
Use PKG_CONFIG_ALLOW_CROSS=1 to override"
}
Error::Command { .. } => "failed to run pkg-config",
Error::Failure { .. } => "pkg-config did not exit sucessfully",
Error::__Nonexhaustive => panic!(),
}
}
fn cause(&self) -> Option<&error::Error> {
match *self {
Error::Command { ref cause, .. } => Some(cause),
_ => None,
}
}
}
// Workaround for temporary lack of impl Debug for Output in stable std
struct OutputDebugger<'a>(&'a Output);
// Lifted from 1.7 std
impl<'a> fmt::Debug for OutputDebugger<'a> {
fn fmt(&self, fmt: &mut fmt::Formatter) -> fmt::Result {
let stdout_utf8 = str::from_utf8(&self.0.stdout);
let stdout_debug: &fmt::Debug = match stdout_utf8 {
Ok(ref str) => str,
Err(_) => &self.0.stdout
};
let stderr_utf8 = str::from_utf8(&self.0.stderr);
let stderr_debug: &fmt::Debug = match stderr_utf8 {
Ok(ref str) => str,
Err(_) => &self.0.stderr
};
fmt.debug_struct("Output")
.field("status", &self.0.status)
.field("stdout", stdout_debug)
.field("stderr", stderr_debug)
.finish()
}
}
// Workaround for temporary lack of impl Debug for Output in stable std, continued
impl fmt::Debug for Error {
fn fmt(&self, f: &mut fmt::Formatter) -> Result<(), fmt::Error> {
match *self {
Error::EnvNoPkgConfig(ref name) => {
f.debug_tuple("EnvNoPkgConfig")
.field(name)
.finish()
}
Error::CrossCompilation => write!(f, "CrossCompilation"),
Error::Command { ref command, ref cause } => {
f.debug_struct("Command")
.field("command", command)
.field("cause", cause)
.finish()
}
Error::Failure { ref command, ref output } => {
f.debug_struct("Failure")
.field("command", command)
.field("output", &OutputDebugger(output))
.finish()
}
Error::__Nonexhaustive => panic!(),
}
}
}
impl fmt::Display for Error {
fn fmt(&self, f: &mut fmt::Formatter) -> Result<(), fmt::Error> {
match *self {
Error::EnvNoPkgConfig(ref name) => {
write!(f, "Aborted because {} is set", name)
}
Error::CrossCompilation => {
write!(f, "Cross compilation detected. \
Use PKG_CONFIG_ALLOW_CROSS=1 to override")
}
Error::Command { ref command, ref cause } => {
write!(f, "Failed to run `{}`: {}", command, cause)
}
Error::Failure { ref command, ref output } => {
let stdout = str::from_utf8(&output.stdout).unwrap();
let stderr = str::from_utf8(&output.stderr).unwrap();
try!(write!(f, "`{}` did not exit successfully: {}", command, output.status));
if !stdout.is_empty() {
try!(write!(f, "\n--- stdout\n{}", stdout));
}
if !stderr.is_empty() {
try!(write!(f, "\n--- stdout\n{}", stderr));
}
Ok(())
}
Error::__Nonexhaustive => panic!(),
}
}
}
/// Deprecated in favor of the probe_library function
#[doc(hidden)]
pub fn find_library(name: &str) -> Result<Library, String> {
probe_library(name).map_err(|e| e.to_string())
}
/// Simple shortcut for using all default options for finding a library.
pub fn probe_library(name: &str) -> Result<Library, Error> {
Config::new().probe(name)
}
/// Run `pkg-config` to get the value of a variable from a package using
/// --variable.
pub fn get_variable(package: &str, variable: &str) -> Result<String, Error> {
let arg = format!("--variable={}", variable);
let cfg = Config::new();
Ok(try!(run(cfg.command(package, &[&arg]))).trim_right().to_owned())
}
impl Config {
/// Creates a new set of configuration options which are all initially set
/// to "blank".
pub fn new() -> Config {
Config {
statik: None,
atleast_version: None,
extra_args: vec![],
cargo_metadata: true,
}
}
/// Indicate whether the `--static` flag should be passed.
///
/// This will override the inference from environment variables described in
/// the crate documentation.
pub fn statik(&mut self, statik: bool) -> &mut Config {
self.statik = Some(statik);
self
}
/// Indicate that the library must be at least version `vers`.
pub fn atleast_version(&mut self, vers: &str) -> &mut Config {
self.atleast_version = Some(vers.to_string());
self
}
/// Add an argument to pass to pkg-config.
///
/// It's placed after all of the arguments generated by this library.
pub fn arg<S: AsRef<OsStr>>(&mut self, arg: S) -> &mut Config {
self.extra_args.push(arg.as_ref().to_os_string());
self
}
/// Define whether metadata should be emitted for cargo allowing it to
/// automatically link the binary. Defaults to `true`.
pub fn cargo_metadata(&mut self, cargo_metadata: bool) -> &mut Config {
self.cargo_metadata = cargo_metadata;
self
}
/// Deprecated in favor fo the `probe` function
#[doc(hidden)]
pub fn find(&self, name: &str) -> Result<Library, String> {
self.probe(name).map_err(|e| e.to_string())
}
/// Run `pkg-config` to find the library `name`.
///
/// This will use all configuration previously set to specify how
/// `pkg-config` is run.
pub fn probe(&self, name: &str) -> Result<Library, Error> {
let abort_var_name = format!("{}_NO_PKG_CONFIG", envify(name));
if env::var_os(&abort_var_name).is_some() {
return Err(Error::EnvNoPkgConfig(abort_var_name))
} else if !target_supported() {
return Err(Error::CrossCompilation);
}
let mut library = Library::new();
let output = try!(run(self.command(name, &["--libs", "--cflags"])));
library.parse_libs_cflags(name, &output, self);
let output = try!(run(self.command(name, &["--modversion"])));
library.parse_modversion(&output);
Ok(library)
}
/// Deprecated in favor of the top level `get_variable` function
#[doc(hidden)]
pub fn get_variable(package: &str, variable: &str) -> Result<String, String> {
get_variable(package, variable).map_err(|e| e.to_string())
}
fn is_static(&self, name: &str) -> bool {
self.statik.unwrap_or_else(|| infer_static(name))
}
fn command(&self, name: &str, args: &[&str]) -> Command {
let exe = env::var("PKG_CONFIG").unwrap_or(String::from("pkg-config"));
let mut cmd = Command::new(exe);
if self.is_static(name) {
cmd.arg("--static");
}
cmd.args(args)
.args(&self.extra_args)
.env("PKG_CONFIG_ALLOW_SYSTEM_LIBS", "1");
if let Some(ref version) = self.atleast_version {
cmd.arg(&format!("{} >= {}", name, version));
} else {
cmd.arg(name);
}
cmd
}
fn print_metadata(&self, s: &str) {
if self.cargo_metadata {
println!("cargo:{}", s);
}
}
}
impl Library {
fn new() -> Library {
Library {
libs: Vec::new(),
link_paths: Vec::new(),
include_paths: Vec::new(),
frameworks: Vec::new(),
framework_paths: Vec::new(),
version: String::new(),
_priv: (),
}
}
fn parse_libs_cflags(&mut self, name: &str, output: &str, config: &Config) {
let parts = output.trim_right()
.split(' ')
.filter(|l| l.len() > 2)
.map(|arg| (&arg[0..2], &arg[2..]))
.collect::<Vec<_>>();
let mut dirs = Vec::new();
let statik = config.is_static(name);
for &(flag, val) in parts.iter() {
match flag {
"-L" => {
let meta = format!("rustc-link-search=native={}", val);
config.print_metadata(&meta);
dirs.push(PathBuf::from(val));
self.link_paths.push(PathBuf::from(val));
}
"-F" => {
let meta = format!("rustc-link-search=framework={}", val);
config.print_metadata(&meta);
self.framework_paths.push(PathBuf::from(val));
}
"-I" => {
self.include_paths.push(PathBuf::from(val));
}
"-l" => {
self.libs.push(val.to_string());
if statik && !is_system(val, &dirs) {
let meta = format!("rustc-link-lib=static={}", val);
config.print_metadata(&meta);
} else {
let meta = format!("rustc-link-lib={}", val);
config.print_metadata(&meta);
}
}
_ => {}
}
}
let mut iter = output.trim_right().split(' ');
while let Some(part) = iter.next() {
if part != "-framework" {
continue
}
if let Some(lib) = iter.next() {
let meta = format!("rustc-link-lib=framework={}", lib);
config.print_metadata(&meta);
self.frameworks.push(lib.to_string());
}
}
}
fn parse_modversion(&mut self, output: &str) {
self.version.push_str(output.trim());
}
}
fn infer_static(name: &str) -> bool {
let name = envify(name);
if env::var_os(&format!("{}_STATIC", name)).is_some() {
true
} else if env::var_os(&format!("{}_DYNAMIC", name)).is_some() {
false
} else if env::var_os("PKG_CONFIG_ALL_STATIC").is_some() {
true
} else if env::var_os("PKG_CONFIG_ALL_DYNAMIC").is_some() {
false
} else {
false
}
}
fn envify(name: &str) -> String {
name.chars().map(|c| c.to_ascii_uppercase()).map(|c| {
if c == '-' {'_'} else {c}
}).collect()
}
fn is_system(name: &str, dirs: &[PathBuf]) -> bool {
let libname = format!("lib{}.a", name);
let root = Path::new("/usr");
!dirs.iter().any(|d| {
!d.starts_with(root) && fs::metadata(&d.join(&libname)).is_ok()
})
}
fn run(mut cmd: Command) -> Result<String, Error> {
match cmd.output() {
Ok(output) => {
if output.status.success() {
let stdout = String::from_utf8(output.stdout).unwrap();
Ok(stdout)
} else {
Err(Error::Failure {
command: format!("{:?}", cmd),
output: output,
})
}
}
Err(cause) => Err(Error::Command {
command: format!("{:?}", cmd),
cause: cause,
}),
}
}