Skip to main content

rucc_driver/
lib.rs

1//! The driver: command line parsing, the phase graph, job scheduling and the linker
2//! invocation.
3//!
4//! Design: `spec/04-driver-and-cli.md`. Layer rank 12, see `spec/18-package-layout.md`.
5//!
6//! This is the only crate that is allowed to know the process exists. It reads the command
7//! line, touches the file system, spawns the linker and writes to the terminal, and it hands
8//! everything below it a [`Session`]. The binary crate is a `main` that calls
9//! [`run`] and nothing else, so that the whole driver is reachable from a test.
10//!
11//! # Status
12//!
13//! `--help`, `--version` and `--print-config` are real, which is the `M0` exit criterion in
14//! `spec/17-milestones.md`. The phase graph is real and `-###` prints it, and the scheduler
15//! that will run it is real and tested.
16//!
17//! Two phases run. `-E` reads the file, runs phase 4 over it and writes the result, to `-o` or
18//! to standard output. `--emit=tast` carries on through phase 7, the parse and the checking,
19//! and writes the typed tree. The flags those two read are real with them, which is `-D`, `-U`,
20//! `-I`, `-iquote`, `-isystem`, `-idirafter`, `--sysroot=`, `-isysroot`, `-P`, `-std=`,
21//! `-fgnuc-version=`, `-ansi`, `-ffreestanding`, `-pedantic` and `-Werror`.
22//! The phases after them still say they are not implemented.
23//!
24//! This crate is tier 3 in `spec/18-package-layout.md` section 18.5: its Rust API is
25//! explicitly unstable and will change without a major version bump.
26
27#![doc(html_root_url = "https://docs.rs/rucc-driver/0.3.4")]
28
29pub mod compile;
30pub mod library;
31mod map;
32pub mod phase;
33pub mod preprocess;
34pub mod schedule;
35
36use std::fmt::Write as _;
37use std::io::Write as _;
38use std::path::PathBuf;
39
40use rucc_session::{Dumps, EmitKind, Options, Session, Std, runtime};
41use rucc_target::Triple;
42
43pub use crate::compile::{Compiled, compile, compile_ir};
44pub use crate::phase::{Input, InputKind, Job, LinkJob, Output, Phase, Plan};
45pub use crate::preprocess::{OsFileSystem, Preprocessed, preprocess};
46pub use crate::schedule::Jobs;
47
48/// The compiler's version, taken from the workspace manifest.
49pub const VERSION: &str = env!("CARGO_PKG_VERSION");
50
51/// What the command line asked for.
52#[derive(Debug, Clone, PartialEq, Eq)]
53pub enum Action {
54    /// Print usage and exit successfully.
55    Help,
56    /// Print the version and exit successfully.
57    Version,
58    /// Print the resolved configuration and exit successfully.
59    PrintConfig(Box<Options>),
60    /// Print the phase plan and exit successfully, which is what `-###` asks for.
61    PrintPlan(Box<Plan>),
62    /// Compile the given inputs.
63    Compile {
64        /// The resolved options.
65        opts: Box<Options>,
66        /// What to do to each input, and in what order.
67        plan: Box<Plan>,
68        /// How many translation units to compile at once.
69        jobs: Jobs,
70        /// Whether `-v` asked for the plan to be printed while it runs.
71        verbose: bool,
72    },
73}
74
75/// Why a command line was rejected.
76#[derive(Debug, Clone, PartialEq, Eq)]
77pub struct CliError {
78    /// The message, lowercase and without a trailing period, in the same shape as any other
79    /// diagnostic.
80    pub message: String,
81}
82
83impl std::fmt::Display for CliError {
84    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
85        f.write_str(&self.message)
86    }
87}
88
89impl std::error::Error for CliError {}
90
91fn err(message: impl Into<String>) -> CliError {
92    CliError { message: message.into() }
93}
94
95/// Usage text.
96///
97/// Deliberately short. `spec/04-driver-and-cli.md` puts the full flag reference in the
98/// manual page, because a `--help` nobody can read in one screen is a `--help` nobody reads.
99pub const USAGE: &str = "\
100rucc, an optimizing C compiler
101
102usage: rucc [options] file...
103
104options:
105  -c                     compile and assemble, do not link
106  -S                     compile only, emit assembly
107  -E                     preprocess only
108  -o <file>              write output to <file>, or to standard output for -
109  -D <name>[=<value>], -U <name>      define a macro, or undefine one after every -D
110  -I <dir>               add <dir> to the include search path
111  -iquote -isystem -idirafter <dir>   the other chains, -nostdinc drops ours
112  --sysroot=<dir>        look for the library's headers under <dir>, -isysroot too
113  -P, -dM                with -E: leave out the markers, or dump the macros
114  -std=<dialect>         c89 through c23, and the gnu spellings
115  -fgnuc-version=<v>     the GCC release to claim, default 7.0.0
116  -x <lang>              treat later inputs as <lang>, or none to stop
117  -O<level>              optimize: 0, 1, 2, 3, s, z
118  -g                     emit debug information
119  -Werror -pedantic      warnings are errors, diagnose what the standard forbids
120  -j[n]                  compile n translation units at once, default all
121  -v, -###               print each phase as it runs, or without running any
122  --target=<triple>      generate code for <triple>
123  --emit=<kind>          exe, obj, asm, preprocessed, tast, ir, mir-final
124  --print-config         print the resolved configuration and exit
125  --version              print the version and exit
126  -h, --help             print this message and exit
127
128See spec/04-driver-and-cli.md for the full flag reference.
129";
130
131/// The argument of a flag that may be joined to it or may be the next word.
132///
133/// `-DFOO` and `-D FOO` are the same thing, and `at` is where the flag's own letters end.
134fn joined_or_next(
135    arg: &str,
136    at: usize,
137    args: &[String],
138    i: &mut usize,
139) -> Result<String, CliError> {
140    if arg.len() > at {
141        return Ok(arg[at..].to_owned());
142    }
143    let next = args.get(*i).ok_or_else(|| err(format!("{arg} requires an argument")))?;
144    *i += 1;
145    Ok(next.clone())
146}
147
148/// Parses a command line, without the program name.
149///
150/// # Errors
151///
152/// Returns the message to print when the arguments do not name a compilation this compiler
153/// can attempt.
154pub fn parse_args(args: &[String]) -> Result<Action, CliError> {
155    let host = Triple::host()
156        .ok_or_else(|| err("this host is not a supported target and no --target was given"))?;
157    let mut opts = Options::new(host);
158    let mut inputs: Vec<Input> = Vec::new();
159    let mut print_config = false;
160    let mut print_plan = false;
161    let mut verbose = false;
162    let mut jobs = Jobs::default();
163    let mut nostdinc = false;
164    let mut sysroot: Option<PathBuf> = None;
165    let mut output = None;
166    // `-x` applies to inputs that come after it and stays in effect until the next one, which
167    // is why it is tracked across the loop rather than attached to a single argument.
168    let mut forced: Option<InputKind> = None;
169
170    let mut i = 0;
171    while i < args.len() {
172        let arg = args[i].as_str();
173        i += 1;
174        match arg {
175            "-h" | "--help" => return Ok(Action::Help),
176            "--version" => return Ok(Action::Version),
177            "--print-config" => print_config = true,
178            "-###" => print_plan = true,
179            "-v" => verbose = true,
180            "-c" => opts.emit = EmitKind::Object,
181            "-S" => opts.emit = EmitKind::Asm,
182            "-E" => opts.emit = EmitKind::Preprocessed,
183            "-g" => opts.debug_info = true,
184            "-Werror" => opts.warnings_are_errors = true,
185            "-P" => opts.line_markers = false,
186            "-ansi" => {
187                opts.std = Std::C89;
188                opts.gnu_extensions = false;
189            }
190            // `-Wpedantic` is the same flag under the name the `-W` family gives it, which is
191            // the spelling a build system that groups its warning flags tends to write.
192            "-pedantic" | "-Wpedantic" => opts.pedantic = true,
193            "-ffreestanding" => opts.hosted = false,
194            "-fhosted" => opts.hosted = true,
195            // GCC drops its own include directory along with the system ones, because its
196            // headers are half of a pair with the library's and half a pair is worse than
197            // none. A build that passes this is supplying the whole set itself.
198            "-nostdinc" => nostdinc = true,
199            "-o" => {
200                output = Some(args.get(i).ok_or_else(|| err("-o requires an argument"))?.clone());
201                i += 1;
202            }
203            // The flags that take a directory only in the separated form. GCC spells them
204            // this way and nothing writes `-iquotedir`, so accepting the joined form would
205            // mean guessing at a path that starts with the flag's own letters.
206            // Apple's spelling of `--sysroot`, and the one its own build systems pass. The
207            // two mean the same thing here: the configured directories are under there rather
208            // than under the root.
209            "-isysroot" => {
210                let dir = args.get(i).ok_or_else(|| err("-isysroot requires an argument"))?;
211                i += 1;
212                sysroot = Some(PathBuf::from(dir));
213            }
214            "-iquote" | "-isystem" | "-idirafter" => {
215                let dir = args.get(i).ok_or_else(|| err(format!("{arg} requires an argument")))?;
216                i += 1;
217                match arg {
218                    "-iquote" => opts.search.push_quote(dir.clone()),
219                    "-isystem" => opts.search.push_system(dir.clone()),
220                    _ => opts.search.push_after(dir.clone()),
221                }
222            }
223            "-x" => {
224                let lang = args.get(i).ok_or_else(|| err("-x requires an argument"))?;
225                i += 1;
226                forced = if lang == "none" {
227                    None
228                } else {
229                    Some(InputKind::from_x_arg(lang).map_err(|e| err(format!("{e}")))?)
230                };
231            }
232            // Not a GCC flag. spec/03-architecture.md section 3.5 compiles several
233            // translation units in one process rather than making the build system fork, and
234            // section 3.8's determinism check compares `-j1` against `-j16`, so the knob has
235            // to exist and has to be spelled the way `make` spells it.
236            // `-DFOO`, `-D FOO` and the same for `-U` and `-I`. Both forms are in wide use
237            // and a build system may produce either, so both are read here rather than
238            // being normalised by whatever generated the command line.
239            _ if arg.starts_with("-D") => {
240                let value = joined_or_next(arg, 2, args, &mut i)?;
241                opts.defines.push(value);
242            }
243            _ if arg.starts_with("-U") => {
244                let value = joined_or_next(arg, 2, args, &mut i)?;
245                opts.undefines.push(value);
246            }
247            _ if arg.starts_with("-I") => {
248                let dir = joined_or_next(arg, 2, args, &mut i)?;
249                opts.search.push_bracket(dir);
250            }
251            _ if arg.starts_with("-std=") => {
252                let name = &arg["-std=".len()..];
253                let (std, gnu) = Std::from_flag(name)
254                    .ok_or_else(|| err(format!("unknown dialect `{name}`, see --help")))?;
255                opts.std = std;
256                opts.gnu_extensions = gnu;
257            }
258            // Section 4.5. The claim decides which half of glibc's `sys/cdefs.h` we are
259            // handed, so a differential run that does not set it is comparing two compilers
260            // that believe they are different compilers.
261            // GCC packs these into one flag, so `-dDI` is two of them. Letters in the family
262            // that we have not written yet are accepted and ignored, because a dump is a
263            // debugging aid and a build that asks for one should still compile. A letter
264            // outside the family falls through to the unknown option error, which is what
265            // keeps `-dumpversion` from being read as a dump of nothing.
266            _ if Dumps::is_family(arg) => {
267                opts.dumps.add(&arg[2..]);
268            }
269            _ if arg.starts_with("-fgnuc-version=") => {
270                let v = &arg["-fgnuc-version=".len()..];
271                opts.gnuc = v.parse().map_err(err)?;
272            }
273            // spec/13-gnu-compat.md section 13.3 promises this flag an error that says why rather
274            // than the unknown option one, because a build reaching for it is asking for a feature
275            // and deserves to be told it is not coming rather than told the spelling is wrong.
276            // The negative form is what this compiler does anyway, so it is taken and dropped.
277            "-fnested-functions" => {
278                return Err(err(
279                    "nested functions are not supported: a call to one goes through a trampoline \
280                     written on the stack, which no target that enforces an unexecutable stack \
281                     allows",
282                ));
283            }
284            "-fno-nested-functions" => {}
285            _ if arg.starts_with("-j") => {
286                jobs = Jobs::parse(&arg[2..]).map_err(err)?;
287            }
288            _ if arg.starts_with("--sysroot=") => {
289                sysroot = Some(PathBuf::from(&arg["--sysroot=".len()..]));
290            }
291            _ if arg.starts_with("--target=") => {
292                let t = &arg["--target=".len()..];
293                opts.target = t.parse().map_err(|e| err(format!("{e}")))?;
294            }
295            _ if arg.starts_with("--emit=") => {
296                let k = &arg["--emit=".len()..];
297                opts.emit = k
298                    .parse()
299                    .map_err(|()| err(format!("unknown --emit kind `{k}`, see --help")))?;
300            }
301            _ if arg.starts_with("-O") => {
302                opts.opt_level = arg[2..]
303                    .parse()
304                    .map_err(|()| err(format!("unknown optimization level `{arg}`")))?;
305            }
306            _ if arg.starts_with('-') && arg.len() > 1 => {
307                // Silently ignoring an unknown flag is how a build ends up not doing what
308                // its author asked. spec/13-gnu-compat.md section 13.4 makes this an error
309                // for the flags that change code generation, and the safe default until the
310                // flag table is populated is to reject everything we do not know.
311                return Err(err(format!("unknown option `{arg}`")));
312            }
313            _ => inputs.push(Input { path: arg.to_owned(), forced }),
314        }
315    }
316
317    // Last, so that it lands after every `-isystem` the command line gave. That is GCC's
318    // order: a directory the user names outranks the compiler's own, and the compiler's own
319    // outranks the library's. It is pushed after the loop rather than before it because
320    // `SearchPath` appends within a group and the position is what the order is.
321    if !nostdinc {
322        opts.search.push_system(runtime::DIR);
323        // And the library's after ours, which is the other half of the same order. They go on
324        // here rather than at the point `--target=` or `--sysroot=` was read because either
325        // one changes the answer and the last word on both is the end of the loop.
326        for dir in library::system_dirs(opts.target, sysroot.as_deref()) {
327            opts.search.push_system(dir);
328        }
329    }
330    // Once, here, rather than as each directory is pushed. A `-I` that names a system
331    // directory has to lose to the system entry and the system entry is added last, so the
332    // question cannot be answered until the whole path is known.
333    opts.search.remove_duplicates();
334
335    // The target has to be resolved before the configuration is printed, so this check comes
336    // after the loop rather than at the point `--print-config` was seen.
337    if print_config {
338        return Ok(Action::PrintConfig(Box::new(opts)));
339    }
340    let plan = Plan::new(&opts, &inputs, output.as_deref()).map_err(|e| err(e.message))?;
341    if print_plan {
342        return Ok(Action::PrintPlan(Box::new(plan)));
343    }
344    Ok(Action::Compile { opts: Box::new(opts), plan: Box::new(plan), jobs, verbose })
345}
346
347/// Renders the resolved configuration.
348///
349/// One `key: value` per line, sorted by nothing in particular but fixed in order, because
350/// this output is diffed across hosts in CI and a reordering would read as a change.
351#[must_use]
352pub fn print_config(opts: &Options) -> String {
353    let sess = Session::new(opts.clone());
354    let t = &sess.target;
355    let mut out = String::new();
356    let _ = writeln!(out, "version: {VERSION}");
357    let _ = writeln!(out, "target: {}", t.triple);
358    let _ = writeln!(out, "arch: {}", t.triple.arch.as_str());
359    let _ = writeln!(out, "os: {}", t.triple.os.as_str());
360    let _ = writeln!(out, "env: {}", t.triple.env.as_str());
361    let _ = writeln!(out, "object-format: {}", t.object_format.as_str());
362    let _ = writeln!(out, "pointer-width: {}", t.pointer_width);
363    let _ = writeln!(out, "long-width: {}", t.long_width);
364    let _ = writeln!(out, "long-double-width: {}", t.long_double_width);
365    let _ = writeln!(out, "endian: {}", if t.little_endian { "little" } else { "big" });
366    let _ = writeln!(out, "char-signed: {}", t.char_is_signed);
367    let _ = writeln!(out, "va-list: {}", t.va_list.as_str());
368    // The register file as a count per class, which is enough to tell a target whose registers
369    // are described from one whose are not without printing sixteen names nobody asked for.
370    let regs: Vec<String> = t
371        .regs
372        .classes()
373        .map(|(class, info)| format!("{} {}", info.name, t.regs.len(class)))
374        .collect();
375    let _ = writeln!(
376        out,
377        "registers: {}",
378        if regs.is_empty() { "none".to_string() } else { regs.join(", ") }
379    );
380    let _ = writeln!(out, "opt-level: {}", sess.opts.opt_level);
381    let _ = writeln!(out, "emit: {}", sess.opts.emit.as_str());
382    let _ = writeln!(out, "debug-info: {}", sess.opts.debug_info);
383    // Last because it is the one key with more than one line under it, and the only one
384    // whose value is a property of the machine rather than of the command line.
385    for dir in sess.opts.search.dirs() {
386        let system = if dir.is_system { " (system)" } else { "" };
387        let _ = writeln!(out, "include: {}{system}", dir.path.display());
388    }
389    out
390}
391
392/// Runs phase 4 over every input that has one, and writes what came out.
393///
394/// One input that fails does not stop the others. A build that reports every file it could
395/// not preprocess in one run is worth more than one that stops at the first, and the exit
396/// status is still a failure either way.
397fn preprocess_all(opts: &Options, plan: &Plan) -> i32 {
398    let fs = OsFileSystem::new();
399    let mut stderr = std::io::stderr().lock();
400    let mut failed = false;
401    for job in &plan.jobs {
402        if !job.phases.first().is_some_and(|p| *p == Phase::Preprocess) {
403            // An input that is already preprocessed, or an object file. GCC passes these
404            // through untouched, and the plan has already said so in its notes.
405            continue;
406        }
407        let result = preprocess(opts, &job.input, &fs);
408        for message in &result.messages {
409            let _ = writeln!(stderr, "{message}");
410        }
411        if result.failed() {
412            failed = true;
413            continue;
414        }
415        if let Err(e) = write_out(&job.output, result.text.as_bytes()) {
416            let _ = writeln!(stderr, "rucc: error: {e}");
417            failed = true;
418        }
419    }
420    i32::from(failed)
421}
422
423/// Runs the front end over every input that has a compile phase, and writes what came out.
424///
425/// The same rule as [`preprocess_all`]: one input that fails does not stop the others, and the
426/// exit status is a failure either way. An input that is already assembly or an object has no
427/// compile phase and is passed over here, which the plan has already said in its notes.
428fn compile_all(opts: &Options, plan: &Plan) -> i32 {
429    let fs = OsFileSystem::new();
430    let mut stderr = std::io::stderr().lock();
431    let mut failed = false;
432    for job in &plan.jobs {
433        if !job.phases.contains(&Phase::Compile) {
434            continue;
435        }
436        // An input of IR is read back rather than compiled, since the C it came from is not
437        // here any more. Everything after this is the same, so the two paths meet again at the
438        // messages and the file the result is written to.
439        let result = if job.kind == InputKind::Ir {
440            compile_ir(opts, &job.input, &fs)
441        } else {
442            compile(opts, &job.input, &fs)
443        };
444        for message in &result.messages {
445            let _ = writeln!(stderr, "{message}");
446        }
447        if result.failed() {
448            failed = true;
449            continue;
450        }
451        if let Err(e) = write_out(&job.output, result.text.as_bytes()) {
452            let _ = writeln!(stderr, "rucc: error: {e}");
453            failed = true;
454        }
455    }
456    i32::from(failed)
457}
458
459/// Writes one job's result where the plan said it goes.
460///
461/// # Errors
462///
463/// Returns the message to print, which names the file when there is one, because "permission
464/// denied" on its own does not say which file was refused.
465fn write_out(output: &Output, bytes: &[u8]) -> Result<(), String> {
466    match output {
467        Output::Stdout => {
468            let mut stdout = std::io::stdout().lock();
469            stdout.write_all(bytes).map_err(|e| format!("writing to standard output: {e}"))
470        }
471        Output::File(path) | Output::Temporary(path) => {
472            std::fs::write(path, bytes).map_err(|e| format!("{path}: {e}"))
473        }
474    }
475}
476
477/// Runs the driver and returns the process exit code.
478///
479/// `args` excludes the program name. Output goes to `stdout` and errors to `stderr`, which
480/// is the one place in the compiler that is true.
481pub fn run(args: &[String]) -> i32 {
482    match parse_args(args) {
483        Ok(Action::Help) => {
484            print!("{USAGE}");
485            0
486        }
487        Ok(Action::Version) => {
488            println!("rucc {VERSION}");
489            0
490        }
491        Ok(Action::PrintConfig(opts)) => {
492            print!("{}", print_config(&opts));
493            0
494        }
495        Ok(Action::PrintPlan(plan)) => {
496            print!("{}", plan.render());
497            0
498        }
499        Ok(Action::Compile { opts, plan, jobs, verbose }) => {
500            {
501                let mut stderr = std::io::stderr().lock();
502                if verbose {
503                    let _ = write!(stderr, "{}", plan.render());
504                    let _ = writeln!(stderr, "workers: {}", jobs.count());
505                }
506            }
507            if opts.emit == EmitKind::Preprocessed {
508                return preprocess_all(&opts, &plan);
509            }
510            if matches!(opts.emit, EmitKind::Tast | EmitKind::Ir) {
511                return compile_all(&opts, &plan);
512            }
513            let mut stderr = std::io::stderr().lock();
514            // Everything after phase 4 is M2 and M3 in spec/17-milestones.md. The plan above
515            // is real and can be inspected with `-###`. Saying so is better than a panic, and
516            // better than pretending to have produced an object.
517            let _ = writeln!(
518                stderr,
519                "rucc: error: running the {} phase is not implemented yet; \
520                 use -E for preprocessed output, and see spec/17-milestones.md for the rest",
521                opts.emit.as_str()
522            );
523            1
524        }
525        Err(e) => {
526            let mut stderr = std::io::stderr().lock();
527            let _ = writeln!(stderr, "rucc: error: {e}");
528            let _ = writeln!(stderr, "rucc: note: run `rucc --help` for usage");
529            1
530        }
531    }
532}
533
534#[cfg(test)]
535mod tests {
536    use rucc_session::{GnucVersion, OptLevel};
537
538    use super::*;
539
540    fn args(s: &[&str]) -> Vec<String> {
541        s.iter().map(|x| (*x).to_owned()).collect()
542    }
543
544    #[test]
545    fn help_and_version_win_over_everything_else() {
546        assert_eq!(parse_args(&args(&["-c", "--help", "x.c"])).unwrap(), Action::Help);
547        assert_eq!(parse_args(&args(&["--version"])).unwrap(), Action::Version);
548    }
549
550    fn compile(s: &[&str]) -> (Box<Options>, Box<Plan>) {
551        match parse_args(&args(s)).expect("expected a compilation") {
552            Action::Compile { opts, plan, .. } => (opts, plan),
553            other => panic!("expected a compilation, got {other:?}"),
554        }
555    }
556
557    #[test]
558    fn collects_inputs_and_flags() {
559        let (opts, plan) = compile(&["-c", "-O2", "-g", "a.c", "b.c"]);
560        let paths: Vec<&str> = plan.jobs.iter().map(|j| j.input.as_str()).collect();
561        assert_eq!(paths, vec!["a.c", "b.c"]);
562        assert_eq!(opts.opt_level, OptLevel::O2);
563        assert_eq!(opts.emit, EmitKind::Object);
564        assert!(opts.debug_info);
565    }
566
567    #[test]
568    fn a_bare_dash_o_means_o1_the_way_gcc_reads_it() {
569        let (opts, _) = compile(&["-O", "a.c"]);
570        assert_eq!(opts.opt_level, OptLevel::O1);
571    }
572
573    #[test]
574    fn dash_x_applies_to_later_inputs_only_and_none_stops_it() {
575        let (_, plan) = compile(&["a.o", "-x", "c", "b.txt", "-x", "none", "c.o"]);
576        assert_eq!(plan.jobs[0].kind, InputKind::LinkerInput);
577        assert_eq!(plan.jobs[1].kind, InputKind::C);
578        assert_eq!(plan.jobs[2].kind, InputKind::LinkerInput);
579    }
580
581    #[test]
582    fn dash_j_reaches_the_scheduler_and_defaults_to_the_machine() {
583        let (_, _, jobs) = match parse_args(&args(&["-j4", "a.c"])).unwrap() {
584            Action::Compile { opts, plan, jobs, .. } => (opts, plan, jobs),
585            other => panic!("expected a compilation, got {other:?}"),
586        };
587        assert_eq!(jobs.count(), 4);
588
589        let default = match parse_args(&args(&["a.c"])).unwrap() {
590            Action::Compile { jobs, .. } => jobs,
591            other => panic!("expected a compilation, got {other:?}"),
592        };
593        assert_eq!(default, Jobs::available());
594        assert!(parse_args(&args(&["-j0", "a.c"])).is_err());
595    }
596
597    #[test]
598    fn triple_hash_prints_the_plan_and_runs_nothing() {
599        let a = parse_args(&args(&["-###", "-c", "a.c"])).unwrap();
600        let Action::PrintPlan(plan) = a else { panic!("expected a plan dump") };
601        assert!(plan.render().contains("a.c: preprocess, compile, assemble -> a.o"));
602    }
603
604    #[test]
605    fn dash_x_names_what_it_accepts_when_it_does_not_know_a_language() {
606        let e = parse_args(&args(&["-x", "fortran", "a.c"])).unwrap_err();
607        assert!(e.message.contains("assembler-with-cpp"), "{}", e.message);
608    }
609
610    #[test]
611    fn an_unknown_flag_is_an_error_rather_than_a_shrug() {
612        let e = parse_args(&args(&["-fno-such-thing", "a.c"])).unwrap_err();
613        assert!(e.message.contains("unknown option"), "{}", e.message);
614    }
615
616    #[test]
617    fn asking_for_nested_functions_is_told_why_it_is_not_coming() {
618        let e = parse_args(&args(&["-fnested-functions", "a.c"])).unwrap_err();
619        assert!(e.message.contains("trampoline"), "{}", e.message);
620        assert!(parse_args(&args(&["-fno-nested-functions", "a.c"])).is_ok());
621    }
622
623    #[test]
624    fn an_unsupported_target_names_itself() {
625        let e = parse_args(&args(&["--target=sparc64-linux-gnu", "a.c"])).unwrap_err();
626        assert!(e.message.contains("sparc64"), "{}", e.message);
627    }
628
629    #[test]
630    fn no_inputs_is_an_error_but_print_config_needs_none() {
631        assert!(parse_args(&args(&[])).is_err());
632        assert!(matches!(parse_args(&args(&["--print-config"])), Ok(Action::PrintConfig(_))));
633    }
634
635    #[test]
636    fn print_config_reports_the_target_it_was_given_not_the_host() {
637        let a = parse_args(&args(&["--print-config", "--target=riscv64-linux-musl"])).unwrap();
638        let Action::PrintConfig(opts) = a else { panic!("expected a configuration dump") };
639        let text = print_config(&opts);
640        assert!(text.contains("target: riscv64-unknown-linux-musl"), "{text}");
641        assert!(text.contains("char-signed: false"), "{text}");
642        assert!(text.contains("object-format: elf"), "{text}");
643        assert!(text.contains("va-list: void-pointer"), "{text}");
644        // RISC-V has a register file and this compiler has not written it down yet, and the
645        // dump says which of those two it is rather than leaving the line out.
646        assert!(text.contains("registers: none"), "{text}");
647    }
648
649    #[test]
650    fn print_config_has_one_key_per_line_and_a_fixed_order() {
651        let opts = Options::new("x86_64-unknown-linux-gnu".parse().unwrap());
652        let text = print_config(&opts);
653        let keys: Vec<&str> =
654            text.lines().map(|l| l.split(':').next().unwrap_or_default()).collect();
655        assert_eq!(keys[0], "version");
656        assert_eq!(keys[1], "target");
657        assert_eq!(keys.len(), 16);
658        assert!(text.ends_with('\n'));
659    }
660
661    #[test]
662    fn dash_o_needs_an_argument() {
663        let e = parse_args(&args(&["a.c", "-o"])).unwrap_err();
664        assert_eq!(e.message, "-o requires an argument");
665    }
666
667    #[test]
668    fn dash_d_and_dash_u_are_read_joined_or_separated_and_keep_their_order() {
669        let (opts, _) = compile(&["-DFOO=1", "-D", "BAR", "-UBAZ", "-U", "QUX", "a.c"]);
670        assert_eq!(opts.defines, ["FOO=1", "BAR"]);
671        assert_eq!(opts.undefines, ["BAZ", "QUX"]);
672    }
673
674    #[test]
675    fn the_include_flags_land_on_the_chain_each_one_names() {
676        // A sysroot with nothing under it, so that the library's own directories are the
677        // same on every machine this test runs on, which is none of them.
678        let (opts, _) = compile(&[
679            "-Ii",
680            "-iquote",
681            "q",
682            "-isystem",
683            "sys",
684            "-idirafter",
685            "after",
686            "--sysroot=/nowhere-at-all",
687            "a.c",
688        ]);
689        let dirs: Vec<&str> = opts.search.dirs().iter().filter_map(|d| d.path.to_str()).collect();
690        // The compiler's own headers sit after every `-isystem` and before `-idirafter`,
691        // which is where GCC puts its own: a directory the user named outranks ours.
692        assert_eq!(dirs, ["q", "i", "sys", runtime::DIR, "after"]);
693        assert!(!opts.search.dirs()[1].is_system);
694        assert!(opts.search.dirs()[2].is_system);
695    }
696
697    #[test]
698    fn the_librarys_headers_come_after_the_compilers_own_and_go_away_with_them() {
699        // Which machine this runs on decides what is on the path, so the test is about the
700        // order rather than about the names: ours is on it, the library's follow it, and
701        // `-nostdinc` is the one flag that takes both halves of the pair off at once.
702        let (opts, _) = compile(&["a.c"]);
703        let dirs = opts.search.dirs();
704        let ours = dirs.iter().position(|d| d.path.to_str() == Some(runtime::DIR));
705        assert_eq!(ours, Some(0), "{dirs:?}");
706        assert!(dirs[1..].iter().all(|d| d.is_system), "{dirs:?}");
707        let (bare, _) = compile(&["-nostdinc", "a.c"]);
708        assert!(bare.search.dirs().is_empty(), "{:?}", bare.search.dirs());
709    }
710
711    #[test]
712    fn a_sysroot_moves_the_librarys_directories_and_nothing_else() {
713        let (opts, _) = compile(&["-isystem", "sys", "--sysroot=/nowhere-at-all", "a.c"]);
714        let dirs: Vec<&str> = opts.search.dirs().iter().filter_map(|d| d.path.to_str()).collect();
715        assert_eq!(dirs, ["sys", runtime::DIR]);
716    }
717
718    #[test]
719    fn nostdinc_takes_the_compilers_own_headers_off_the_path() {
720        let (opts, _) = compile(&["-Ii", "-nostdinc", "a.c"]);
721        let dirs: Vec<&str> = opts.search.dirs().iter().filter_map(|d| d.path.to_str()).collect();
722        assert_eq!(dirs, ["i"]);
723    }
724
725    #[test]
726    fn the_dialect_flags_set_the_language_and_the_extensions_separately() {
727        let (opts, _) = compile(&["-std=gnu11", "a.c"]);
728        assert_eq!(opts.std, Std::C11);
729        assert!(opts.gnu_extensions);
730
731        let (opts, _) = compile(&["-std=iso9899:1999", "a.c"]);
732        assert_eq!(opts.std, Std::C99);
733        assert!(!opts.gnu_extensions);
734
735        let (opts, _) = compile(&["-ansi", "a.c"]);
736        assert_eq!(opts.std, Std::C89);
737        assert!(!opts.gnu_extensions);
738
739        let e = parse_args(&args(&["-std=c94jr", "a.c"])).unwrap_err();
740        assert!(e.message.contains("unknown dialect"), "{}", e.message);
741    }
742
743    #[test]
744    fn the_dump_letters_are_a_family_and_everything_else_beginning_with_d_is_not() {
745        let (opts, _) = compile(&["-dM", "a.c"]);
746        assert!(opts.dumps.macros);
747
748        // Packed, the way GCC takes them, and a letter in the family we have not written yet
749        // is accepted and does nothing rather than failing a build.
750        let (opts, _) = compile(&["-dDM", "a.c"]);
751        assert!(opts.dumps.macros);
752        let (opts, _) = compile(&["-dD", "a.c"]);
753        assert!(!opts.dumps.macros);
754
755        let (opts, _) = compile(&["a.c"]);
756        assert!(!opts.dumps.any());
757
758        // `-dumpversion` is a different flag that happens to start the same way. We have not
759        // written it, and saying so beats reading it as a dump of nothing.
760        let e = parse_args(&args(&["-dumpversion", "a.c"])).unwrap_err();
761        assert!(e.message.contains("unknown option"), "{}", e.message);
762    }
763
764    #[test]
765    fn the_gcc_version_claimed_is_a_flag_and_the_short_spellings_are_the_ones_people_write() {
766        let (opts, _) = compile(&["a.c"]);
767        assert_eq!(
768            opts.gnuc,
769            GnucVersion { major: 7, minor: 0, patch: 0 },
770            "the lowest claim a modern glibc gives its own declarations to"
771        );
772
773        let (opts, _) = compile(&["-fgnuc-version=15.1.0", "a.c"]);
774        assert_eq!(opts.gnuc, GnucVersion { major: 15, minor: 1, patch: 0 });
775
776        // A missing component is zero. `gcc -dumpversion` says `15` on a release with no
777        // patchlevel and a harness that pastes that back has to be understood.
778        let (opts, _) = compile(&["-fgnuc-version=15", "a.c"]);
779        assert_eq!(opts.gnuc, GnucVersion { major: 15, minor: 0, patch: 0 });
780
781        let (opts, _) = compile(&["-fgnuc-version=13.2", "a.c"]);
782        assert_eq!(opts.gnuc, GnucVersion { major: 13, minor: 2, patch: 0 });
783
784        let e = parse_args(&args(&["-fgnuc-version=15.x", "a.c"])).unwrap_err();
785        assert!(e.message.contains("minor that is not a number"), "{}", e.message);
786
787        let e = parse_args(&args(&["-fgnuc-version=1.2.3.4", "a.c"])).unwrap_err();
788        assert!(e.message.contains("more than three"), "{}", e.message);
789    }
790
791    #[test]
792    fn pedantic_has_two_spellings_and_is_not_the_same_knob_as_the_dialect() {
793        let (opts, _) = compile(&["-std=c17", "-pedantic", "a.c"]);
794        assert!(opts.pedantic);
795        assert_eq!(opts.std, Std::C17);
796
797        // The `-W` family's name for it, which is what a build that groups its warning flags
798        // tends to write.
799        let (opts, _) = compile(&["-Wpedantic", "a.c"]);
800        assert!(opts.pedantic);
801
802        let (opts, _) = compile(&["-std=c17", "a.c"]);
803        assert!(!opts.pedantic, "a dialect on its own does not diagnose an extension");
804    }
805
806    #[test]
807    fn dash_p_and_dash_ffreestanding_reach_the_options() {
808        let (opts, _) = compile(&["-E", "-P", "-ffreestanding", "a.c"]);
809        assert!(!opts.line_markers);
810        assert!(!opts.hosted);
811        assert_eq!(opts.emit, EmitKind::Preprocessed);
812    }
813
814    #[test]
815    fn usage_fits_on_a_screen() {
816        // Not a style preference. A help text that scrolls is one nobody reads, and this is
817        // the cheapest way to keep it honest as flags accumulate.
818        assert!(USAGE.lines().count() < 30, "usage text has grown past one screen");
819    }
820}