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options.rs
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options.rs
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use crate::config::*;
use crate::early_error;
use crate::lint;
use crate::search_paths::SearchPath;
use crate::utils::NativeLib;
use rustc_target::spec::{CodeModel, LinkerFlavor, MergeFunctions, PanicStrategy, SanitizerSet};
use rustc_target::spec::{
RelocModel, RelroLevel, SplitDebuginfo, StackProtector, TargetTriple, TlsModel,
};
use rustc_feature::UnstableFeatures;
use rustc_span::edition::Edition;
use rustc_span::RealFileName;
use rustc_span::SourceFileHashAlgorithm;
use std::collections::BTreeMap;
use std::collections::hash_map::DefaultHasher;
use std::hash::Hasher;
use std::num::NonZeroUsize;
use std::path::PathBuf;
use std::str;
macro_rules! insert {
($opt_name:ident, $opt_expr:expr, $sub_hashes:expr) => {
if $sub_hashes
.insert(stringify!($opt_name), $opt_expr as &dyn dep_tracking::DepTrackingHash)
.is_some()
{
panic!("duplicate key in CLI DepTrackingHash: {}", stringify!($opt_name))
}
};
}
macro_rules! hash_opt {
($opt_name:ident, $opt_expr:expr, $sub_hashes:expr, $_for_crate_hash: ident, [UNTRACKED]) => {{}};
($opt_name:ident, $opt_expr:expr, $sub_hashes:expr, $_for_crate_hash: ident, [TRACKED]) => {{ insert!($opt_name, $opt_expr, $sub_hashes) }};
($opt_name:ident, $opt_expr:expr, $sub_hashes:expr, $for_crate_hash: ident, [TRACKED_NO_CRATE_HASH]) => {{
if !$for_crate_hash {
insert!($opt_name, $opt_expr, $sub_hashes)
}
}};
($opt_name:ident, $opt_expr:expr, $sub_hashes:expr, $_for_crate_hash: ident, [SUBSTRUCT]) => {{}};
}
macro_rules! hash_substruct {
($opt_name:ident, $opt_expr:expr, $error_format:expr, $for_crate_hash:expr, $hasher:expr, [UNTRACKED]) => {{}};
($opt_name:ident, $opt_expr:expr, $error_format:expr, $for_crate_hash:expr, $hasher:expr, [TRACKED]) => {{}};
($opt_name:ident, $opt_expr:expr, $error_format:expr, $for_crate_hash:expr, $hasher:expr, [TRACKED_NO_CRATE_HASH]) => {{}};
($opt_name:ident, $opt_expr:expr, $error_format:expr, $for_crate_hash:expr, $hasher:expr, [SUBSTRUCT]) => {
use crate::config::dep_tracking::DepTrackingHash;
$opt_expr.dep_tracking_hash($for_crate_hash, $error_format).hash(
$hasher,
$error_format,
$for_crate_hash,
);
};
}
macro_rules! top_level_options {
( $( #[$top_level_attr:meta] )* pub struct Options { $(
$( #[$attr:meta] )*
$opt:ident : $t:ty [$dep_tracking_marker:ident],
)* } ) => (
#[derive(Clone)]
$( #[$top_level_attr] )*
pub struct Options {
$(
$( #[$attr] )*
pub $opt: $t
),*
}
impl Options {
pub fn dep_tracking_hash(&self, for_crate_hash: bool) -> u64 {
let mut sub_hashes = BTreeMap::new();
$({
hash_opt!($opt,
&self.$opt,
&mut sub_hashes,
for_crate_hash,
[$dep_tracking_marker]);
})*
let mut hasher = DefaultHasher::new();
dep_tracking::stable_hash(sub_hashes,
&mut hasher,
self.error_format,
for_crate_hash);
$({
hash_substruct!($opt,
&self.$opt,
self.error_format,
for_crate_hash,
&mut hasher,
[$dep_tracking_marker]);
})*
hasher.finish()
}
}
);
}
impl Options {
pub fn mir_opt_level(&self) -> usize {
self.debugging_opts
.mir_opt_level
.unwrap_or_else(|| if self.optimize != OptLevel::No { 2 } else { 1 })
}
pub fn instrument_coverage(&self) -> bool {
self.debugging_opts.instrument_coverage.unwrap_or(InstrumentCoverage::Off)
!= InstrumentCoverage::Off
}
pub fn instrument_coverage_except_unused_generics(&self) -> bool {
self.debugging_opts.instrument_coverage.unwrap_or(InstrumentCoverage::Off)
== InstrumentCoverage::ExceptUnusedGenerics
}
pub fn instrument_coverage_except_unused_functions(&self) -> bool {
self.debugging_opts.instrument_coverage.unwrap_or(InstrumentCoverage::Off)
== InstrumentCoverage::ExceptUnusedFunctions
}
}
top_level_options!(
/// The top-level command-line options struct.
///
/// For each option, one has to specify how it behaves with regard to the
/// dependency tracking system of incremental compilation. This is done via the
/// square-bracketed directive after the field type. The options are:
///
/// - `[TRACKED]`
/// A change in the given field will cause the compiler to completely clear the
/// incremental compilation cache before proceeding.
///
/// - `[TRACKED_NO_CRATE_HASH]`
/// Same as `[TRACKED]`, but will not affect the crate hash. This is useful for options that only
/// affect the incremental cache.
///
/// - `[UNTRACKED]`
/// Incremental compilation is not influenced by this option.
///
/// - `[SUBSTRUCT]`
/// Second-level sub-structs containing more options.
///
/// If you add a new option to this struct or one of the sub-structs like
/// `CodegenOptions`, think about how it influences incremental compilation. If in
/// doubt, specify `[TRACKED]`, which is always "correct" but might lead to
/// unnecessary re-compilation.
pub struct Options {
/// The crate config requested for the session, which may be combined
/// with additional crate configurations during the compile process.
crate_types: Vec<CrateType> [TRACKED],
optimize: OptLevel [TRACKED],
/// Include the `debug_assertions` flag in dependency tracking, since it
/// can influence whether overflow checks are done or not.
debug_assertions: bool [TRACKED],
debuginfo: DebugInfo [TRACKED],
lint_opts: Vec<(String, lint::Level)> [TRACKED_NO_CRATE_HASH],
lint_cap: Option<lint::Level> [TRACKED_NO_CRATE_HASH],
describe_lints: bool [UNTRACKED],
output_types: OutputTypes [TRACKED],
search_paths: Vec<SearchPath> [UNTRACKED],
libs: Vec<NativeLib> [TRACKED],
maybe_sysroot: Option<PathBuf> [UNTRACKED],
target_triple: TargetTriple [TRACKED],
test: bool [TRACKED],
error_format: ErrorOutputType [UNTRACKED],
/// If `Some`, enable incremental compilation, using the given
/// directory to store intermediate results.
incremental: Option<PathBuf> [UNTRACKED],
assert_incr_state: Option<IncrementalStateAssertion> [UNTRACKED],
debugging_opts: DebuggingOptions [SUBSTRUCT],
prints: Vec<PrintRequest> [UNTRACKED],
/// Determines which borrow checker(s) to run. This is the parsed, sanitized
/// version of `debugging_opts.borrowck`, which is just a plain string.
borrowck_mode: BorrowckMode [UNTRACKED],
cg: CodegenOptions [SUBSTRUCT],
externs: Externs [UNTRACKED],
extern_dep_specs: ExternDepSpecs [UNTRACKED],
crate_name: Option<String> [TRACKED],
/// An optional name to use as the crate for std during std injection,
/// written `extern crate name as std`. Defaults to `std`. Used by
/// out-of-tree drivers.
alt_std_name: Option<String> [TRACKED],
/// Indicates how the compiler should treat unstable features.
unstable_features: UnstableFeatures [TRACKED],
/// Indicates whether this run of the compiler is actually rustdoc. This
/// is currently just a hack and will be removed eventually, so please
/// try to not rely on this too much.
actually_rustdoc: bool [TRACKED],
/// Control path trimming.
trimmed_def_paths: TrimmedDefPaths [TRACKED],
/// Specifications of codegen units / ThinLTO which are forced as a
/// result of parsing command line options. These are not necessarily
/// what rustc was invoked with, but massaged a bit to agree with
/// commands like `--emit llvm-ir` which they're often incompatible with
/// if we otherwise use the defaults of rustc.
cli_forced_codegen_units: Option<usize> [UNTRACKED],
cli_forced_thinlto_off: bool [UNTRACKED],
/// Remap source path prefixes in all output (messages, object files, debug, etc.).
remap_path_prefix: Vec<(PathBuf, PathBuf)> [TRACKED_NO_CRATE_HASH],
/// Base directory containing the `src/` for the Rust standard library, and
/// potentially `rustc` as well, if we can can find it. Right now it's always
/// `$sysroot/lib/rustlib/src/rust` (i.e. the `rustup` `rust-src` component).
///
/// This directory is what the virtual `/rustc/$hash` is translated back to,
/// if Rust was built with path remapping to `/rustc/$hash` enabled
/// (the `rust.remap-debuginfo` option in `config.toml`).
real_rust_source_base_dir: Option<PathBuf> [TRACKED_NO_CRATE_HASH],
edition: Edition [TRACKED],
/// `true` if we're emitting JSON blobs about each artifact produced
/// by the compiler.
json_artifact_notifications: bool [TRACKED],
/// `true` if we're emitting a JSON blob containing the unused externs
json_unused_externs: bool [UNTRACKED],
/// `true` if we're emitting a JSON job containg a future-incompat report for lints
json_future_incompat: bool [TRACKED],
pretty: Option<PpMode> [UNTRACKED],
/// The (potentially remapped) working directory
working_dir: RealFileName [TRACKED],
}
);
/// Defines all `CodegenOptions`/`DebuggingOptions` fields and parsers all at once. The goal of this
/// macro is to define an interface that can be programmatically used by the option parser
/// to initialize the struct without hardcoding field names all over the place.
///
/// The goal is to invoke this macro once with the correct fields, and then this macro generates all
/// necessary code. The main gotcha of this macro is the `cgsetters` module which is a bunch of
/// generated code to parse an option into its respective field in the struct. There are a few
/// hand-written parsers for parsing specific types of values in this module.
macro_rules! options {
($struct_name:ident, $stat:ident, $optmod:ident, $prefix:expr, $outputname:expr,
$($( #[$attr:meta] )* $opt:ident : $t:ty = (
$init:expr,
$parse:ident,
[$dep_tracking_marker:ident],
$desc:expr)
),* ,) =>
(
#[derive(Clone)]
pub struct $struct_name { $(pub $opt: $t),* }
impl Default for $struct_name {
fn default() -> $struct_name {
$struct_name { $( $( #[$attr] )* $opt: $init),* }
}
}
impl $struct_name {
pub fn build(
matches: &getopts::Matches,
error_format: ErrorOutputType,
) -> $struct_name {
build_options(matches, $stat, $prefix, $outputname, error_format)
}
fn dep_tracking_hash(&self, for_crate_hash: bool, error_format: ErrorOutputType) -> u64 {
let mut sub_hashes = BTreeMap::new();
$({
hash_opt!($opt,
&self.$opt,
&mut sub_hashes,
for_crate_hash,
[$dep_tracking_marker]);
})*
let mut hasher = DefaultHasher::new();
dep_tracking::stable_hash(sub_hashes,
&mut hasher,
error_format,
for_crate_hash
);
hasher.finish()
}
}
pub const $stat: OptionDescrs<$struct_name> =
&[ $( (stringify!($opt), $optmod::$opt, desc::$parse, $desc) ),* ];
mod $optmod {
$(
pub(super) fn $opt(cg: &mut super::$struct_name, v: Option<&str>) -> bool {
super::parse::$parse(&mut redirect_field!(cg.$opt), v)
}
)*
}
) }
// Sometimes different options need to build a common structure.
// That structure can be kept in one of the options' fields, the others become dummy.
macro_rules! redirect_field {
($cg:ident.link_arg) => {
$cg.link_args
};
($cg:ident.pre_link_arg) => {
$cg.pre_link_args
};
($cg:ident.$field:ident) => {
$cg.$field
};
}
type OptionSetter<O> = fn(&mut O, v: Option<&str>) -> bool;
type OptionDescrs<O> = &'static [(&'static str, OptionSetter<O>, &'static str, &'static str)];
fn build_options<O: Default>(
matches: &getopts::Matches,
descrs: OptionDescrs<O>,
prefix: &str,
outputname: &str,
error_format: ErrorOutputType,
) -> O {
let mut op = O::default();
for option in matches.opt_strs(prefix) {
let (key, value) = match option.split_once('=') {
None => (option, None),
Some((k, v)) => (k.to_string(), Some(v)),
};
let option_to_lookup = key.replace("-", "_");
match descrs.iter().find(|(name, ..)| *name == option_to_lookup) {
Some((_, setter, type_desc, _)) => {
if !setter(&mut op, value) {
match value {
None => early_error(
error_format,
&format!(
"{0} option `{1}` requires {2} ({3} {1}=<value>)",
outputname, key, type_desc, prefix
),
),
Some(value) => early_error(
error_format,
&format!(
"incorrect value `{}` for {} option `{}` - {} was expected",
value, outputname, key, type_desc
),
),
}
}
}
None => early_error(error_format, &format!("unknown {} option: `{}`", outputname, key)),
}
}
return op;
}
#[allow(non_upper_case_globals)]
mod desc {
pub const parse_no_flag: &str = "no value";
pub const parse_bool: &str = "one of: `y`, `yes`, `on`, `n`, `no`, or `off`";
pub const parse_opt_bool: &str = parse_bool;
pub const parse_string: &str = "a string";
pub const parse_opt_string: &str = parse_string;
pub const parse_string_push: &str = parse_string;
pub const parse_opt_pathbuf: &str = "a path";
pub const parse_list: &str = "a space-separated list of strings";
pub const parse_opt_comma_list: &str = "a comma-separated list of strings";
pub const parse_number: &str = "a number";
pub const parse_opt_number: &str = parse_number;
pub const parse_threads: &str = parse_number;
pub const parse_passes: &str = "a space-separated list of passes, or `all`";
pub const parse_panic_strategy: &str = "either `unwind` or `abort`";
pub const parse_opt_panic_strategy: &str = parse_panic_strategy;
pub const parse_relro_level: &str = "one of: `full`, `partial`, or `off`";
pub const parse_sanitizers: &str = "comma separated list of sanitizers: `address`, `cfi`, `hwaddress`, `leak`, `memory` or `thread`";
pub const parse_sanitizer_memory_track_origins: &str = "0, 1, or 2";
pub const parse_cfguard: &str =
"either a boolean (`yes`, `no`, `on`, `off`, etc), `checks`, or `nochecks`";
pub const parse_strip: &str = "either `none`, `debuginfo`, or `symbols`";
pub const parse_linker_flavor: &str = ::rustc_target::spec::LinkerFlavor::one_of();
pub const parse_optimization_fuel: &str = "crate=integer";
pub const parse_mir_spanview: &str = "`statement` (default), `terminator`, or `block`";
pub const parse_instrument_coverage: &str =
"`all` (default), `except-unused-generics`, `except-unused-functions`, or `off`";
pub const parse_unpretty: &str = "`string` or `string=string`";
pub const parse_treat_err_as_bug: &str = "either no value or a number bigger than 0";
pub const parse_lto: &str =
"either a boolean (`yes`, `no`, `on`, `off`, etc), `thin`, `fat`, or omitted";
pub const parse_linker_plugin_lto: &str =
"either a boolean (`yes`, `no`, `on`, `off`, etc), or the path to the linker plugin";
pub const parse_location_detail: &str =
"comma seperated list of location details to track: `file`, `line`, or `column`";
pub const parse_switch_with_opt_path: &str =
"an optional path to the profiling data output directory";
pub const parse_merge_functions: &str = "one of: `disabled`, `trampolines`, or `aliases`";
pub const parse_symbol_mangling_version: &str = "either `legacy` or `v0` (RFC 2603)";
pub const parse_src_file_hash: &str = "either `md5` or `sha1`";
pub const parse_relocation_model: &str =
"one of supported relocation models (`rustc --print relocation-models`)";
pub const parse_code_model: &str = "one of supported code models (`rustc --print code-models`)";
pub const parse_tls_model: &str = "one of supported TLS models (`rustc --print tls-models`)";
pub const parse_target_feature: &str = parse_string;
pub const parse_wasi_exec_model: &str = "either `command` or `reactor`";
pub const parse_split_debuginfo: &str =
"one of supported split-debuginfo modes (`off`, `packed`, or `unpacked`)";
pub const parse_gcc_ld: &str = "one of: no value, `lld`";
pub const parse_stack_protector: &str =
"one of (`none` (default), `basic`, `strong`, or `all`)";
}
mod parse {
crate use super::*;
use std::str::FromStr;
/// This is for boolean options that don't take a value and start with
/// `no-`. This style of option is deprecated.
crate fn parse_no_flag(slot: &mut bool, v: Option<&str>) -> bool {
match v {
None => {
*slot = true;
true
}
Some(_) => false,
}
}
/// Use this for any boolean option that has a static default.
crate fn parse_bool(slot: &mut bool, v: Option<&str>) -> bool {
match v {
Some("y") | Some("yes") | Some("on") | None => {
*slot = true;
true
}
Some("n") | Some("no") | Some("off") => {
*slot = false;
true
}
_ => false,
}
}
/// Use this for any boolean option that lacks a static default. (The
/// actions taken when such an option is not specified will depend on
/// other factors, such as other options, or target options.)
crate fn parse_opt_bool(slot: &mut Option<bool>, v: Option<&str>) -> bool {
match v {
Some("y") | Some("yes") | Some("on") | None => {
*slot = Some(true);
true
}
Some("n") | Some("no") | Some("off") => {
*slot = Some(false);
true
}
_ => false,
}
}
/// Use this for any string option that has a static default.
crate fn parse_string(slot: &mut String, v: Option<&str>) -> bool {
match v {
Some(s) => {
*slot = s.to_string();
true
}
None => false,
}
}
/// Use this for any string option that lacks a static default.
crate fn parse_opt_string(slot: &mut Option<String>, v: Option<&str>) -> bool {
match v {
Some(s) => {
*slot = Some(s.to_string());
true
}
None => false,
}
}
crate fn parse_opt_pathbuf(slot: &mut Option<PathBuf>, v: Option<&str>) -> bool {
match v {
Some(s) => {
*slot = Some(PathBuf::from(s));
true
}
None => false,
}
}
crate fn parse_string_push(slot: &mut Vec<String>, v: Option<&str>) -> bool {
match v {
Some(s) => {
slot.push(s.to_string());
true
}
None => false,
}
}
crate fn parse_list(slot: &mut Vec<String>, v: Option<&str>) -> bool {
match v {
Some(s) => {
slot.extend(s.split_whitespace().map(|s| s.to_string()));
true
}
None => false,
}
}
crate fn parse_location_detail(ld: &mut LocationDetail, v: Option<&str>) -> bool {
if let Some(v) = v {
ld.line = false;
ld.file = false;
ld.column = false;
for s in v.split(',') {
match s {
"file" => ld.file = true,
"line" => ld.line = true,
"column" => ld.column = true,
_ => return false,
}
}
true
} else {
false
}
}
crate fn parse_opt_comma_list(slot: &mut Option<Vec<String>>, v: Option<&str>) -> bool {
match v {
Some(s) => {
let mut v: Vec<_> = s.split(',').map(|s| s.to_string()).collect();
v.sort_unstable();
*slot = Some(v);
true
}
None => false,
}
}
crate fn parse_threads(slot: &mut usize, v: Option<&str>) -> bool {
match v.and_then(|s| s.parse().ok()) {
Some(0) => {
*slot = ::num_cpus::get();
true
}
Some(i) => {
*slot = i;
true
}
None => false,
}
}
/// Use this for any numeric option that has a static default.
crate fn parse_number<T: Copy + FromStr>(slot: &mut T, v: Option<&str>) -> bool {
match v.and_then(|s| s.parse().ok()) {
Some(i) => {
*slot = i;
true
}
None => false,
}
}
/// Use this for any numeric option that lacks a static default.
crate fn parse_opt_number<T: Copy + FromStr>(slot: &mut Option<T>, v: Option<&str>) -> bool {
match v {
Some(s) => {
*slot = s.parse().ok();
slot.is_some()
}
None => false,
}
}
crate fn parse_passes(slot: &mut Passes, v: Option<&str>) -> bool {
match v {
Some("all") => {
*slot = Passes::All;
true
}
v => {
let mut passes = vec![];
if parse_list(&mut passes, v) {
slot.extend(passes);
true
} else {
false
}
}
}
}
crate fn parse_opt_panic_strategy(slot: &mut Option<PanicStrategy>, v: Option<&str>) -> bool {
match v {
Some("unwind") => *slot = Some(PanicStrategy::Unwind),
Some("abort") => *slot = Some(PanicStrategy::Abort),
_ => return false,
}
true
}
crate fn parse_panic_strategy(slot: &mut PanicStrategy, v: Option<&str>) -> bool {
match v {
Some("unwind") => *slot = PanicStrategy::Unwind,
Some("abort") => *slot = PanicStrategy::Abort,
_ => return false,
}
true
}
crate fn parse_relro_level(slot: &mut Option<RelroLevel>, v: Option<&str>) -> bool {
match v {
Some(s) => match s.parse::<RelroLevel>() {
Ok(level) => *slot = Some(level),
_ => return false,
},
_ => return false,
}
true
}
crate fn parse_sanitizers(slot: &mut SanitizerSet, v: Option<&str>) -> bool {
if let Some(v) = v {
for s in v.split(',') {
*slot |= match s {
"address" => SanitizerSet::ADDRESS,
"cfi" => SanitizerSet::CFI,
"leak" => SanitizerSet::LEAK,
"memory" => SanitizerSet::MEMORY,
"thread" => SanitizerSet::THREAD,
"hwaddress" => SanitizerSet::HWADDRESS,
_ => return false,
}
}
true
} else {
false
}
}
crate fn parse_sanitizer_memory_track_origins(slot: &mut usize, v: Option<&str>) -> bool {
match v {
Some("2") | None => {
*slot = 2;
true
}
Some("1") => {
*slot = 1;
true
}
Some("0") => {
*slot = 0;
true
}
Some(_) => false,
}
}
crate fn parse_strip(slot: &mut Strip, v: Option<&str>) -> bool {
match v {
Some("none") => *slot = Strip::None,
Some("debuginfo") => *slot = Strip::Debuginfo,
Some("symbols") => *slot = Strip::Symbols,
_ => return false,
}
true
}
crate fn parse_cfguard(slot: &mut CFGuard, v: Option<&str>) -> bool {
if v.is_some() {
let mut bool_arg = None;
if parse_opt_bool(&mut bool_arg, v) {
*slot = if bool_arg.unwrap() { CFGuard::Checks } else { CFGuard::Disabled };
return true;
}
}
*slot = match v {
None => CFGuard::Checks,
Some("checks") => CFGuard::Checks,
Some("nochecks") => CFGuard::NoChecks,
Some(_) => return false,
};
true
}
crate fn parse_linker_flavor(slot: &mut Option<LinkerFlavor>, v: Option<&str>) -> bool {
match v.and_then(LinkerFlavor::from_str) {
Some(lf) => *slot = Some(lf),
_ => return false,
}
true
}
crate fn parse_optimization_fuel(slot: &mut Option<(String, u64)>, v: Option<&str>) -> bool {
match v {
None => false,
Some(s) => {
let parts = s.split('=').collect::<Vec<_>>();
if parts.len() != 2 {
return false;
}
let crate_name = parts[0].to_string();
let fuel = parts[1].parse::<u64>();
if fuel.is_err() {
return false;
}
*slot = Some((crate_name, fuel.unwrap()));
true
}
}
}
crate fn parse_unpretty(slot: &mut Option<String>, v: Option<&str>) -> bool {
match v {
None => false,
Some(s) if s.split('=').count() <= 2 => {
*slot = Some(s.to_string());
true
}
_ => false,
}
}
crate fn parse_mir_spanview(slot: &mut Option<MirSpanview>, v: Option<&str>) -> bool {
if v.is_some() {
let mut bool_arg = None;
if parse_opt_bool(&mut bool_arg, v) {
*slot = if bool_arg.unwrap() { Some(MirSpanview::Statement) } else { None };
return true;
}
}
let v = match v {
None => {
*slot = Some(MirSpanview::Statement);
return true;
}
Some(v) => v,
};
*slot = Some(match v.trim_end_matches('s') {
"statement" | "stmt" => MirSpanview::Statement,
"terminator" | "term" => MirSpanview::Terminator,
"block" | "basicblock" => MirSpanview::Block,
_ => return false,
});
true
}
crate fn parse_instrument_coverage(
slot: &mut Option<InstrumentCoverage>,
v: Option<&str>,
) -> bool {
if v.is_some() {
let mut bool_arg = None;
if parse_opt_bool(&mut bool_arg, v) {
*slot = if bool_arg.unwrap() { Some(InstrumentCoverage::All) } else { None };
return true;
}
}
let v = match v {
None => {
*slot = Some(InstrumentCoverage::All);
return true;
}
Some(v) => v,
};
*slot = Some(match v {
"all" => InstrumentCoverage::All,
"except-unused-generics" | "except_unused_generics" => {
InstrumentCoverage::ExceptUnusedGenerics
}
"except-unused-functions" | "except_unused_functions" => {
InstrumentCoverage::ExceptUnusedFunctions
}
"off" | "no" | "n" | "false" | "0" => InstrumentCoverage::Off,
_ => return false,
});
true
}
crate fn parse_treat_err_as_bug(slot: &mut Option<NonZeroUsize>, v: Option<&str>) -> bool {
match v {
Some(s) => {
*slot = s.parse().ok();
slot.is_some()
}
None => {
*slot = NonZeroUsize::new(1);
true
}
}
}
crate fn parse_lto(slot: &mut LtoCli, v: Option<&str>) -> bool {
if v.is_some() {
let mut bool_arg = None;
if parse_opt_bool(&mut bool_arg, v) {
*slot = if bool_arg.unwrap() { LtoCli::Yes } else { LtoCli::No };
return true;
}
}
*slot = match v {
None => LtoCli::NoParam,
Some("thin") => LtoCli::Thin,
Some("fat") => LtoCli::Fat,
Some(_) => return false,
};
true
}
crate fn parse_linker_plugin_lto(slot: &mut LinkerPluginLto, v: Option<&str>) -> bool {
if v.is_some() {
let mut bool_arg = None;
if parse_opt_bool(&mut bool_arg, v) {
*slot = if bool_arg.unwrap() {
LinkerPluginLto::LinkerPluginAuto
} else {
LinkerPluginLto::Disabled
};
return true;
}
}
*slot = match v {
None => LinkerPluginLto::LinkerPluginAuto,
Some(path) => LinkerPluginLto::LinkerPlugin(PathBuf::from(path)),
};
true
}
crate fn parse_switch_with_opt_path(slot: &mut SwitchWithOptPath, v: Option<&str>) -> bool {
*slot = match v {
None => SwitchWithOptPath::Enabled(None),
Some(path) => SwitchWithOptPath::Enabled(Some(PathBuf::from(path))),
};
true
}
crate fn parse_merge_functions(slot: &mut Option<MergeFunctions>, v: Option<&str>) -> bool {
match v.and_then(|s| MergeFunctions::from_str(s).ok()) {
Some(mergefunc) => *slot = Some(mergefunc),
_ => return false,
}
true
}
crate fn parse_relocation_model(slot: &mut Option<RelocModel>, v: Option<&str>) -> bool {
match v.and_then(|s| RelocModel::from_str(s).ok()) {
Some(relocation_model) => *slot = Some(relocation_model),
None if v == Some("default") => *slot = None,
_ => return false,
}
true
}
crate fn parse_code_model(slot: &mut Option<CodeModel>, v: Option<&str>) -> bool {
match v.and_then(|s| CodeModel::from_str(s).ok()) {
Some(code_model) => *slot = Some(code_model),
_ => return false,
}
true
}
crate fn parse_tls_model(slot: &mut Option<TlsModel>, v: Option<&str>) -> bool {
match v.and_then(|s| TlsModel::from_str(s).ok()) {
Some(tls_model) => *slot = Some(tls_model),
_ => return false,
}
true
}
crate fn parse_symbol_mangling_version(
slot: &mut Option<SymbolManglingVersion>,
v: Option<&str>,
) -> bool {
*slot = match v {
Some("legacy") => Some(SymbolManglingVersion::Legacy),
Some("v0") => Some(SymbolManglingVersion::V0),
_ => return false,
};
true
}
crate fn parse_src_file_hash(
slot: &mut Option<SourceFileHashAlgorithm>,
v: Option<&str>,
) -> bool {
match v.and_then(|s| SourceFileHashAlgorithm::from_str(s).ok()) {
Some(hash_kind) => *slot = Some(hash_kind),
_ => return false,
}
true
}
crate fn parse_target_feature(slot: &mut String, v: Option<&str>) -> bool {
match v {
Some(s) => {
if !slot.is_empty() {
slot.push(',');
}
slot.push_str(s);
true
}
None => false,
}
}
crate fn parse_wasi_exec_model(slot: &mut Option<WasiExecModel>, v: Option<&str>) -> bool {
match v {
Some("command") => *slot = Some(WasiExecModel::Command),
Some("reactor") => *slot = Some(WasiExecModel::Reactor),
_ => return false,
}
true
}
crate fn parse_split_debuginfo(slot: &mut Option<SplitDebuginfo>, v: Option<&str>) -> bool {
match v.and_then(|s| SplitDebuginfo::from_str(s).ok()) {
Some(e) => *slot = Some(e),
_ => return false,
}
true
}
crate fn parse_gcc_ld(slot: &mut Option<LdImpl>, v: Option<&str>) -> bool {
match v {
None => *slot = None,
Some("lld") => *slot = Some(LdImpl::Lld),
_ => return false,
}
true
}
crate fn parse_stack_protector(slot: &mut StackProtector, v: Option<&str>) -> bool {
match v.and_then(|s| StackProtector::from_str(s).ok()) {
Some(ssp) => *slot = ssp,
_ => return false,
}
true
}
}
options! {
CodegenOptions, CG_OPTIONS, cgopts, "C", "codegen",
// This list is in alphabetical order.
//
// If you add a new option, please update:
// - compiler/rustc_interface/src/tests.rs
// - src/doc/rustc/src/codegen-options/index.md
ar: String = (String::new(), parse_string, [UNTRACKED],
"this option is deprecated and does nothing"),
code_model: Option<CodeModel> = (None, parse_code_model, [TRACKED],
"choose the code model to use (`rustc --print code-models` for details)"),
codegen_units: Option<usize> = (None, parse_opt_number, [UNTRACKED],
"divide crate into N units to optimize in parallel"),
control_flow_guard: CFGuard = (CFGuard::Disabled, parse_cfguard, [TRACKED],
"use Windows Control Flow Guard (default: no)"),
debug_assertions: Option<bool> = (None, parse_opt_bool, [TRACKED],
"explicitly enable the `cfg(debug_assertions)` directive"),
debuginfo: usize = (0, parse_number, [TRACKED],
"debug info emission level (0 = no debug info, 1 = line tables only, \
2 = full debug info with variable and type information; default: 0)"),
default_linker_libraries: bool = (false, parse_bool, [UNTRACKED],
"allow the linker to link its default libraries (default: no)"),
embed_bitcode: bool = (true, parse_bool, [TRACKED],
"emit bitcode in rlibs (default: yes)"),
extra_filename: String = (String::new(), parse_string, [UNTRACKED],
"extra data to put in each output filename"),
force_frame_pointers: Option<bool> = (None, parse_opt_bool, [TRACKED],
"force use of the frame pointers"),
force_unwind_tables: Option<bool> = (None, parse_opt_bool, [TRACKED],
"force use of unwind tables"),
incremental: Option<String> = (None, parse_opt_string, [UNTRACKED],
"enable incremental compilation"),
inline_threshold: Option<u32> = (None, parse_opt_number, [TRACKED],
"set the threshold for inlining a function"),
link_arg: (/* redirected to link_args */) = ((), parse_string_push, [UNTRACKED],
"a single extra argument to append to the linker invocation (can be used several times)"),
link_args: Vec<String> = (Vec::new(), parse_list, [UNTRACKED],
"extra arguments to append to the linker invocation (space separated)"),
link_dead_code: Option<bool> = (None, parse_opt_bool, [TRACKED],