rucc_target/lib.rs
1//! Target descriptions: triples, and the facts about a target that the rest of the
2//! compiler reads rather than hard-codes.
3//!
4//! Design: `spec/12-abi-and-runtime.md`. Layer rank 1, see `spec/18-package-layout.md`.
5//!
6//! The rule from `spec/18-package-layout.md` section 18.2 is that there is no
7//! target-specific code outside this crate and the per-target rule sets. Everything a pass
8//! needs to know about a target is a field it can read here. That rule is what makes the
9//! claim in `spec/10-backend.md` testable, namely that a new target is a rule set and a few
10//! data files, and `M10` brings up a fourth target specifically to put a number on it.
11//!
12//! # Status
13//!
14//! Triple parsing and the basic data model are real, which is what `rucc --print-config`
15//! reports. Register files, machine models and the full ABI descriptions land in `M3`
16//! and `M6`.
17//!
18//! This crate is tier 3 in `spec/18-package-layout.md` section 18.5: its Rust API is
19//! explicitly unstable and will change without a major version bump.
20
21#![doc(html_root_url = "https://docs.rs/rucc-target/0.2.2")]
22
23use std::fmt;
24use std::str::FromStr;
25
26/// A target architecture.
27#[derive(Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord, Hash)]
28// Deliberately not `#[non_exhaustive]`. Adding a variant here has to break every
29// match that needs to change, in this workspace and in anyone else's code. That is
30// the property `spec/10-backend.md` section 10.8 is claiming when it says adding a
31// target is a data change: the compiler tells you every place the data is read.
32pub enum Arch {
33 /// x86-64, the first target and the one `M3` brings up.
34 X86_64,
35 /// AArch64, the second target, `M6`.
36 Aarch64,
37 /// 64-bit RISC-V. `spec/10-backend.md` calls this the middle-end canary, because it has
38 /// no condition codes and no complex addressing modes, so anything the middle end got
39 /// away with on x86-64 shows up here.
40 Riscv64,
41}
42
43impl Arch {
44 /// Pointer width in bits.
45 pub const fn pointer_width(self) -> u32 {
46 match self {
47 Arch::X86_64 | Arch::Aarch64 | Arch::Riscv64 => 64,
48 }
49 }
50
51 /// Whether the target is little-endian.
52 pub const fn is_little_endian(self) -> bool {
53 match self {
54 Arch::X86_64 | Arch::Aarch64 | Arch::Riscv64 => true,
55 }
56 }
57
58 /// The name as it appears in a triple.
59 pub const fn as_str(self) -> &'static str {
60 match self {
61 Arch::X86_64 => "x86_64",
62 Arch::Aarch64 => "aarch64",
63 Arch::Riscv64 => "riscv64",
64 }
65 }
66}
67
68/// The operating system a target runs on.
69#[derive(Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord, Hash)]
70// Deliberately not `#[non_exhaustive]`. Adding a variant here has to break every
71// match that needs to change, in this workspace and in anyone else's code. That is
72// the property `spec/10-backend.md` section 10.8 is claiming when it says adding a
73// target is a data change: the compiler tells you every place the data is read.
74pub enum Os {
75 /// Linux, hosted or freestanding.
76 Linux,
77 /// Apple platforms. `spec/12-abi-and-runtime.md` section 12.3 lists the four places
78 /// Apple diverges from AAPCS64, and every one of them is a real bug if missed.
79 Darwin,
80 /// Windows.
81 Windows,
82 /// No operating system, which is what `-ffreestanding` kernel work looks like.
83 None,
84}
85
86impl Os {
87 /// The name as it appears in a triple.
88 pub const fn as_str(self) -> &'static str {
89 match self {
90 Os::Linux => "linux",
91 Os::Darwin => "darwin",
92 Os::Windows => "windows",
93 Os::None => "none",
94 }
95 }
96
97 /// The object file format this operating system uses.
98 pub const fn object_format(self) -> ObjectFormat {
99 match self {
100 Os::Linux | Os::None => ObjectFormat::Elf,
101 Os::Darwin => ObjectFormat::MachO,
102 Os::Windows => ObjectFormat::Coff,
103 }
104 }
105}
106
107/// The C runtime and ABI variant.
108#[derive(Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord, Hash)]
109// Deliberately not `#[non_exhaustive]`. Adding a variant here has to break every
110// match that needs to change, in this workspace and in anyone else's code. That is
111// the property `spec/10-backend.md` section 10.8 is claiming when it says adding a
112// target is a data change: the compiler tells you every place the data is read.
113pub enum Env {
114 /// The default for the operating system.
115 None,
116 /// glibc.
117 Gnu,
118 /// musl.
119 Musl,
120 /// The MSVC ABI.
121 Msvc,
122}
123
124impl Env {
125 /// The name as it appears in a triple, if it appears at all.
126 pub const fn as_str(self) -> &'static str {
127 match self {
128 Env::None => "none",
129 Env::Gnu => "gnu",
130 Env::Musl => "musl",
131 Env::Msvc => "msvc",
132 }
133 }
134}
135
136/// The object file format to emit.
137#[derive(Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord, Hash)]
138// Deliberately not `#[non_exhaustive]`. Adding a variant here has to break every
139// match that needs to change, in this workspace and in anyone else's code. That is
140// the property `spec/10-backend.md` section 10.8 is claiming when it says adding a
141// target is a data change: the compiler tells you every place the data is read.
142pub enum ObjectFormat {
143 /// ELF.
144 Elf,
145 /// Mach-O.
146 MachO,
147 /// COFF.
148 Coff,
149}
150
151impl ObjectFormat {
152 /// The name used in diagnostics and in `--print-config`.
153 pub const fn as_str(self) -> &'static str {
154 match self {
155 ObjectFormat::Elf => "elf",
156 ObjectFormat::MachO => "macho",
157 ObjectFormat::Coff => "coff",
158 }
159 }
160}
161
162/// A target triple.
163///
164/// We accept the LLVM-style `arch-vendor-os-env` form because that is what build systems
165/// pass, and we normalise it to the three fields we actually branch on. The vendor field is
166/// parsed and discarded: no decision in the compiler depends on it, and keeping it would
167/// invite one.
168#[derive(Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord, Hash)]
169pub struct Triple {
170 /// The architecture.
171 pub arch: Arch,
172 /// The operating system.
173 pub os: Os,
174 /// The runtime and ABI variant.
175 pub env: Env,
176}
177
178impl Triple {
179 /// A triple from its three parts.
180 pub const fn new(arch: Arch, os: Os, env: Env) -> Self {
181 Self { arch, os, env }
182 }
183
184 /// The triple of the machine this compiler is running on.
185 ///
186 /// Used as the default target, which is what makes `rucc hello.c` work with no flags.
187 /// Unknown host combinations are not an error here: they are reported by the driver,
188 /// where there is somewhere to report them to.
189 pub fn host() -> Option<Self> {
190 let arch = match std::env::consts::ARCH {
191 "x86_64" => Arch::X86_64,
192 "aarch64" => Arch::Aarch64,
193 "riscv64" => Arch::Riscv64,
194 _ => return None,
195 };
196 // Which libc this is matters, and `std::env::consts` does not say. A compiler built on
197 // Alpine and defaulting to `x86_64-unknown-linux-gnu` describes a machine it is not
198 // running on: musl and glibc disagree about `int_fast16_t` among other things, and a
199 // header that is written out of the predefined type names picks the disagreement up.
200 // The libc rucc itself was linked against is the best evidence available about the one
201 // the code it compiles will be linked against, and it is right on every machine where
202 // rucc was built for the machine it runs on.
203 let linux = if cfg!(target_env = "musl") { Env::Musl } else { Env::Gnu };
204 let (os, env) = match std::env::consts::OS {
205 "linux" => (Os::Linux, linux),
206 "macos" => (Os::Darwin, Env::None),
207 "windows" => (Os::Windows, Env::Msvc),
208 _ => return None,
209 };
210 Some(Self::new(arch, os, env))
211 }
212}
213
214impl fmt::Display for Triple {
215 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
216 // Always four fields, always the same spelling, because this string ends up in
217 // `--print-config` output that people diff.
218 write!(f, "{}-unknown-{}-{}", self.arch.as_str(), self.os.as_str(), self.env.as_str())
219 }
220}
221
222/// Why a triple failed to parse.
223#[derive(Debug, Clone, PartialEq, Eq)]
224pub struct ParseTripleError {
225 /// The triple as given.
226 pub input: String,
227 /// What specifically was not recognised.
228 pub reason: &'static str,
229}
230
231impl fmt::Display for ParseTripleError {
232 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
233 write!(f, "unsupported target triple `{}`: {}", self.input, self.reason)
234 }
235}
236
237impl std::error::Error for ParseTripleError {}
238
239impl FromStr for Triple {
240 type Err = ParseTripleError;
241
242 fn from_str(s: &str) -> Result<Self, Self::Err> {
243 let err = |reason| ParseTripleError { input: s.to_owned(), reason };
244 let mut parts = s.split('-');
245
246 let arch = match parts.next() {
247 Some("x86_64" | "amd64") => Arch::X86_64,
248 Some("aarch64" | "arm64") => Arch::Aarch64,
249 Some("riscv64") => Arch::Riscv64,
250 _ => return Err(err("unknown architecture")),
251 };
252
253 // The vendor field is optional in practice. `x86_64-linux-gnu` and
254 // `x86_64-unknown-linux-gnu` both occur in the wild and mean the same thing, so the
255 // remaining fields are matched by content rather than by position.
256 let rest: Vec<&str> = parts.collect();
257 let mut os = None;
258 let mut env = None;
259 for part in &rest {
260 match *part {
261 "linux" => os = Some(Os::Linux),
262 "darwin" | "macos" | "macosx" | "ios" => os = Some(Os::Darwin),
263 "windows" | "win32" => os = Some(Os::Windows),
264 // `none` is the one token that means different things in the two positions.
265 // In `x86_64-unknown-none-elf` it is the operating system; in
266 // `aarch64-apple-darwin-none` it is the environment. Which one it is depends
267 // on whether an operating system has already been seen, and that rule is what
268 // makes `Display` round-trip through `FromStr`.
269 "none" if os.is_none() => os = Some(Os::None),
270 "none" => env = Some(Env::None),
271 "elf" => os = os.or(Some(Os::None)),
272 "gnu" | "gnueabi" | "gnueabihf" => env = Some(Env::Gnu),
273 "musl" | "musleabi" | "musleabihf" => env = Some(Env::Musl),
274 "msvc" => env = Some(Env::Msvc),
275 _ => {}
276 }
277 }
278
279 let os = os.ok_or_else(|| err("unknown operating system"))?;
280 let env = env.unwrap_or(match os {
281 Os::Linux => Env::Gnu,
282 Os::Windows => Env::Msvc,
283 Os::Darwin | Os::None => Env::None,
284 });
285 Ok(Self::new(arch, os, env))
286 }
287}
288
289/// The facts about a target that the compiler reads instead of hard-coding.
290///
291/// This is the whole of what a pass is allowed to know about where its output will run.
292/// It grows, and every field added here is one fewer `#[cfg]` somewhere it should not be.
293#[derive(Debug, Clone, PartialEq, Eq)]
294#[non_exhaustive]
295pub struct TargetInfo {
296 /// The triple this describes.
297 pub triple: Triple,
298 /// Width of a pointer in bits.
299 pub pointer_width: u32,
300 /// Whether bytes are ordered little end first.
301 pub little_endian: bool,
302 /// Whether a bare `char` is signed.
303 ///
304 /// Signed on x86-64 and unsigned on AArch64 Linux, which is the classic source of code
305 /// that works on one and not the other, so it is data rather than an assumption.
306 pub char_is_signed: bool,
307 /// Width of `long` in bits. This is the field that separates the LP64 world from
308 /// Windows LLP64.
309 pub long_width: u32,
310 /// Width of `long double` in bits: 80 bits of x87 stored in 128 on SysV x86-64,
311 /// 64 on Apple platforms, 64 on Windows.
312 pub long_double_width: u32,
313 /// The granule a `_BitInt` wider than 64 bits is laid out in, in bits.
314 ///
315 /// Above 64 bits the psABIs stop treating a `_BitInt` like a standard integer type and
316 /// start treating it like an array of these, so its size is rounded up to a multiple of
317 /// this and its alignment is this. It is 64 on x86-64 and RISC-V and 128 on AArch64, which
318 /// is why `_BitInt(65)` is sixteen bytes aligned to eight on one and sixteen bytes aligned
319 /// to sixteen on the other. Measured with clang 18 on x86-64 Linux and clang on AArch64
320 /// Darwin rather than read off the documents.
321 pub bit_int_granule: u32,
322 /// The object format to emit.
323 pub object_format: ObjectFormat,
324}
325
326impl TargetInfo {
327 /// The description of `triple`.
328 pub fn new(triple: Triple) -> Self {
329 let char_is_signed = match (triple.arch, triple.os) {
330 // The AArch64 and RISC-V psABIs make plain `char` unsigned, and x86-64 SysV
331 // makes it signed. Apple and Windows both override that back to signed on
332 // AArch64, which is the kind of divergence that only ever surfaces as a bug
333 // report from someone whose lexer compares a `char` against a negative value.
334 (Arch::Aarch64 | Arch::Riscv64, Os::Linux | Os::None) => false,
335 _ => true,
336 };
337 let long_width = match triple.os {
338 // Windows is LLP64: `long` stays 32 bits on a 64-bit target.
339 Os::Windows => 32,
340 _ => triple.arch.pointer_width(),
341 };
342 let long_double_width = match triple.os {
343 // Apple defines `long double` as `double`, per spec/12-abi-and-runtime.md
344 // section 12.3, and Windows does the same. On the SysV targets it is a distinct
345 // type: 80 bits of x87 stored in 128 on x86-64, and true quad precision on
346 // AArch64 and RISC-V.
347 Os::Darwin | Os::Windows => 64,
348 Os::Linux | Os::None => 128,
349 };
350 let bit_int_granule = match triple.arch {
351 Arch::Aarch64 => 128,
352 Arch::X86_64 | Arch::Riscv64 => 64,
353 };
354 Self {
355 triple,
356 pointer_width: triple.arch.pointer_width(),
357 little_endian: triple.arch.is_little_endian(),
358 char_is_signed,
359 long_width,
360 long_double_width,
361 bit_int_granule,
362 object_format: triple.os.object_format(),
363 }
364 }
365}
366
367#[cfg(test)]
368mod tests {
369 use super::*;
370
371 #[test]
372 fn parses_a_four_field_triple() {
373 let t: Triple = "x86_64-unknown-linux-gnu".parse().unwrap();
374 assert_eq!(t, Triple::new(Arch::X86_64, Os::Linux, Env::Gnu));
375 }
376
377 #[test]
378 fn parses_a_triple_with_no_vendor() {
379 let t: Triple = "aarch64-linux-musl".parse().unwrap();
380 assert_eq!(t, Triple::new(Arch::Aarch64, Os::Linux, Env::Musl));
381 }
382
383 #[test]
384 fn accepts_the_common_aliases() {
385 let a: Triple = "arm64-apple-darwin".parse().unwrap();
386 let b: Triple = "aarch64-apple-darwin".parse().unwrap();
387 assert_eq!(a, b);
388 assert_eq!(a.env, Env::None);
389 }
390
391 #[test]
392 fn fills_in_the_default_environment() {
393 let t: Triple = "x86_64-unknown-linux".parse().unwrap();
394 assert_eq!(t.env, Env::Gnu);
395 let w: Triple = "x86_64-pc-windows".parse().unwrap();
396 assert_eq!(w.env, Env::Msvc);
397 }
398
399 #[test]
400 fn rejects_what_it_does_not_support() {
401 let e = "sparc64-unknown-linux-gnu".parse::<Triple>().unwrap_err();
402 assert_eq!(e.reason, "unknown architecture");
403 let e = "x86_64-unknown-plan9".parse::<Triple>().unwrap_err();
404 assert_eq!(e.reason, "unknown operating system");
405 }
406
407 #[test]
408 fn displays_in_a_normalised_form() {
409 let t: Triple = "amd64-linux-gnu".parse().unwrap();
410 assert_eq!(t.to_string(), "x86_64-unknown-linux-gnu");
411 }
412
413 #[test]
414 fn display_round_trips_through_parse() {
415 for s in [
416 "x86_64-unknown-linux-gnu",
417 "aarch64-unknown-darwin-none",
418 "riscv64-unknown-linux-musl",
419 ] {
420 let t: Triple = s.parse().unwrap();
421 assert_eq!(t.to_string().parse::<Triple>().unwrap(), t);
422 }
423 }
424
425 #[test]
426 fn char_signedness_follows_the_psabi() {
427 let x86 = TargetInfo::new("x86_64-unknown-linux-gnu".parse().unwrap());
428 let arm = TargetInfo::new("aarch64-unknown-linux-gnu".parse().unwrap());
429 let mac = TargetInfo::new("aarch64-apple-darwin".parse().unwrap());
430 assert!(x86.char_is_signed);
431 assert!(!arm.char_is_signed);
432 assert!(mac.char_is_signed, "Apple overrides AAPCS64 back to a signed char");
433 }
434
435 #[test]
436 fn windows_is_llp64() {
437 let win = TargetInfo::new("x86_64-pc-windows-msvc".parse().unwrap());
438 assert_eq!(win.pointer_width, 64);
439 assert_eq!(win.long_width, 32);
440 }
441
442 #[test]
443 fn apple_long_double_is_double() {
444 let mac = TargetInfo::new("aarch64-apple-darwin".parse().unwrap());
445 assert_eq!(mac.long_double_width, 64);
446 let linux = TargetInfo::new("x86_64-unknown-linux-gnu".parse().unwrap());
447 assert_eq!(linux.long_double_width, 128);
448 }
449
450 #[test]
451 fn the_object_format_follows_the_operating_system() {
452 assert_eq!(Os::Linux.object_format(), ObjectFormat::Elf);
453 assert_eq!(Os::Darwin.object_format(), ObjectFormat::MachO);
454 assert_eq!(Os::Windows.object_format(), ObjectFormat::Coff);
455 }
456
457 #[test]
458 fn the_host_triple_is_one_we_support() {
459 // Every host in spec/15-testing.md section 15.7 must be recognised, and CI runs on
460 // all three, so a failure here means a host we claim support for stopped resolving.
461 let host = Triple::host().expect("the host must be a supported target");
462 assert_eq!(host.to_string().parse::<Triple>().unwrap(), host);
463 }
464}