use std::{ffi::OsString, path::PathBuf, sync::Arc};
use clap::{builder::ArgPredicate, Parser};
use midenc_session::{
diagnostics::{DefaultSourceManager, Emitter},
ColorChoice, DebugInfo, InputFile, LinkLibrary, OptLevel, Options, OutputFile, OutputType,
OutputTypeSpec, OutputTypes, ProjectType, Session, TargetEnv, Verbosity, Warnings,
};
#[derive(Debug, Parser)]
#[command(name = "midenc")]
pub struct Compiler {
#[arg(
long,
value_name = "DIR",
env = "MIDENC_TARGET_DIR",
default_value = "target/midenc",
help_heading = "Output"
)]
pub target_dir: PathBuf,
#[arg(long, value_name = "DIR", help_heading = "Output")]
pub working_dir: Option<PathBuf>,
#[arg(
long,
value_name = "DIR",
env = "MIDENC_SYSROOT",
help_heading = "Compiler"
)]
pub sysroot: Option<PathBuf>,
#[arg(
long,
short = 'O',
value_name = "DIR",
env = "MIDENC_OUT_DIR",
help_heading = "Output"
)]
pub output_dir: Option<PathBuf>,
#[arg(long, short = 'o', value_name = "FILENAME", help_heading = "Output")]
pub output_file: Option<PathBuf>,
#[arg(long, conflicts_with("output_file"), help_heading = "Output")]
pub stdout: bool,
#[arg(
long,
short = 'n',
value_name = "NAME",
default_value = None,
help_heading = "Diagnostics"
)]
pub name: Option<String>,
#[arg(
long = "verbose",
short = 'v',
value_enum,
value_name = "LEVEL",
default_value_t = Verbosity::Info,
default_missing_value = "debug",
num_args(0..=1),
help_heading = "Diagnostics"
)]
pub verbosity: Verbosity,
#[arg(
long,
short = 'W',
value_enum,
value_name = "LEVEL",
default_value_t = Warnings::All,
default_missing_value = "all",
num_args(0..=1),
help_heading = "Diagnostics"
)]
pub warn: Warnings,
#[arg(
long,
value_enum,
default_value_t = ColorChoice::Auto,
default_missing_value = "auto",
num_args(0..=1),
help_heading = "Diagnostics"
)]
pub color: ColorChoice,
#[arg(
long,
value_name = "TARGET",
default_value_t = TargetEnv::Base,
help_heading = "Compiler"
)]
pub target: TargetEnv,
#[arg(long, help_heading = "Compiler", hide(true))]
pub entrypoint: Option<String>,
#[arg(
long = "exe",
default_value_t = true,
default_value_ifs([
("target", "rollup".into(), Some("false")),
("entrypoint", ArgPredicate::IsPresent, Some("true")),
]),
help_heading = "Linker"
)]
pub is_program: bool,
#[arg(
long = "lib",
conflicts_with("is_program"),
conflicts_with("entrypoint"),
default_value_t = false,
default_value_ifs([
("entrypoint", ArgPredicate::IsPresent, Some("false")),
("target", "rollup".into(), Some("true")),
]),
help_heading = "Linker"
)]
pub is_library: bool,
#[arg(
long = "search-path",
short = 'L',
value_name = "PATH",
help_heading = "Linker"
)]
pub search_path: Vec<PathBuf>,
#[arg(
long = "link-library",
short = 'l',
value_name = "[KIND=]NAME",
value_delimiter = ',',
default_value_ifs([
("target", "base", "std"),
("target", "rollup", "std,base"),
]),
next_line_help(true),
help_heading = "Linker"
)]
pub link_libraries: Vec<LinkLibrary>,
#[arg(
long = "emit",
value_name = "SPEC",
value_delimiter = ',',
next_line_help(true),
help_heading = "Output"
)]
pub output_types: Vec<OutputTypeSpec>,
#[arg(
long,
value_enum,
value_name = "LEVEL",
next_line_help(true),
default_value_t = DebugInfo::Full,
default_missing_value = "full",
num_args(0..=1),
help_heading = "Output"
)]
pub debug: DebugInfo,
#[arg(
long = "optimize",
value_enum,
value_name = "LEVEL",
next_line_help(true),
default_value_t = OptLevel::None,
default_missing_value = "balanced",
num_args(0..=1),
help_heading = "Output"
)]
pub opt_level: OptLevel,
#[arg(
long,
short = 'C',
value_name = "OPT[=VALUE]",
help_heading = "Compiler"
)]
pub codegen: Vec<String>,
#[arg(
long,
short = 'Z',
value_name = "OPT[=VALUE]",
help_heading = "Compiler"
)]
pub unstable: Vec<String>,
}
#[derive(Debug, Clone, Parser)]
#[command(name = "-C")]
pub struct CodegenOptions {
#[arg(
long,
conflicts_with_all(["analyze_only", "link_only"]),
default_value_t = false,
)]
pub parse_only: bool,
#[arg(
long,
conflicts_with_all(["parse_only", "link_only"]),
default_value_t = false,
)]
pub analyze_only: bool,
#[arg(
long,
conflicts_with_all(["no_link"]),
default_value_t = false,
)]
pub link_only: bool,
#[arg(long, default_value_t = false)]
pub no_link: bool,
}
#[derive(Debug, Clone, Parser)]
#[command(name = "-Z")]
pub struct UnstableOptions {
#[arg(long, default_value_t = false, help_heading = "Passes")]
pub print_cfg_after_all: bool,
#[arg(
long,
value_name = "PASS",
value_delimiter = ',',
help_heading = "Passes"
)]
pub print_cfg_after_pass: Vec<String>,
#[arg(long, default_value_t = false, help_heading = "Passes")]
pub print_ir_after_all: bool,
#[arg(
long,
value_name = "PASS",
value_delimiter = ',',
help_heading = "Passes"
)]
pub print_ir_after_pass: Vec<String>,
}
impl CodegenOptions {
fn parse_argv(argv: Vec<String>) -> Self {
let command = <CodegenOptions as clap::CommandFactory>::command()
.no_binary_name(true)
.arg_required_else_help(false)
.help_template(
"\
Available codegen options:
Usage: midenc compile -C <opt>
{all-args}{after-help}
NOTE: When specifying these options, strip the leading '--'",
);
let argv = if argv.iter().any(|arg| matches!(arg.as_str(), "--help" | "-h" | "help")) {
vec!["--help".to_string()]
} else {
argv.into_iter()
.flat_map(|arg| match arg.split_once('=') {
None => vec![format!("--{arg}")],
Some((opt, value)) => {
vec![format!("--{opt}"), value.to_string()]
}
})
.collect::<Vec<_>>()
};
let mut matches = command.try_get_matches_from(argv).unwrap_or_else(|err| err.exit());
<CodegenOptions as clap::FromArgMatches>::from_arg_matches_mut(&mut matches)
.map_err(format_error::<CodegenOptions>)
.unwrap_or_else(|err| err.exit())
}
}
impl UnstableOptions {
fn parse_argv(argv: Vec<String>) -> Self {
let command = <UnstableOptions as clap::CommandFactory>::command()
.no_binary_name(true)
.arg_required_else_help(false)
.help_template(
"\
Available unstable options:
Usage: midenc compile -Z <opt>
{all-args}{after-help}
NOTE: When specifying these options, strip the leading '--'",
);
let argv = if argv.iter().any(|arg| matches!(arg.as_str(), "--help" | "-h" | "help")) {
vec!["--help".to_string()]
} else {
argv.into_iter()
.flat_map(|arg| match arg.split_once('=') {
None => vec![format!("--{arg}")],
Some((opt, value)) => {
vec![format!("--{opt}"), value.to_string()]
}
})
.collect::<Vec<_>>()
};
let mut matches = command.try_get_matches_from(argv).unwrap_or_else(|err| err.exit());
<UnstableOptions as clap::FromArgMatches>::from_arg_matches_mut(&mut matches)
.map_err(format_error::<UnstableOptions>)
.unwrap_or_else(|err| err.exit())
}
}
impl Compiler {
pub fn new_session<I, A, S>(inputs: I, emitter: Option<Arc<dyn Emitter>>, argv: A) -> Session
where
I: IntoIterator<Item = InputFile>,
A: IntoIterator<Item = S>,
S: Into<OsString> + Clone,
{
let argv = [OsString::from("midenc")]
.into_iter()
.chain(argv.into_iter().map(|arg| arg.into()));
let command = <Self as clap::CommandFactory>::command();
let command = midenc_session::flags::register_flags(command);
let mut matches = command.try_get_matches_from(argv).unwrap_or_else(|err| err.exit());
let compile_matches = matches.clone();
let opts = <Self as clap::FromArgMatches>::from_arg_matches_mut(&mut matches)
.map_err(format_error::<Self>)
.unwrap_or_else(|err| err.exit());
let inputs = inputs.into_iter().collect();
opts.into_session(inputs, emitter).with_extra_flags(compile_matches.into())
}
pub fn into_session(
self,
inputs: Vec<InputFile>,
emitter: Option<Arc<dyn Emitter>>,
) -> Session {
let cwd = self
.working_dir
.unwrap_or_else(|| std::env::current_dir().expect("no working directory available"));
let output_file = match self.output_file {
Some(path) => Some(OutputFile::Real(path)),
None if self.stdout => Some(OutputFile::Stdout),
None => None,
};
let mut output_types = OutputTypes::new(self.output_types).unwrap_or_else(|err| err.exit());
if output_types.is_empty() {
output_types.insert(OutputType::Masp, output_file.clone());
} else if output_file.is_some() && output_types.get(&OutputType::Masp).is_some() {
output_types.insert(OutputType::Masp, output_file.clone());
}
let project_type = if self.is_program {
ProjectType::Program
} else {
ProjectType::Library
};
let codegen = CodegenOptions::parse_argv(self.codegen);
let unstable = UnstableOptions::parse_argv(self.unstable);
let mut options = Options::new(self.name, self.target, project_type, cwd, self.sysroot)
.with_color(self.color)
.with_verbosity(self.verbosity)
.with_warnings(self.warn)
.with_debug_info(self.debug)
.with_optimization(self.opt_level)
.with_output_types(output_types);
options.search_paths = self.search_path;
options.link_libraries = self.link_libraries;
options.entrypoint = self.entrypoint;
options.parse_only = codegen.parse_only;
options.analyze_only = codegen.analyze_only;
options.link_only = codegen.link_only;
options.no_link = codegen.no_link;
options.print_cfg_after_all = unstable.print_cfg_after_all;
options.print_cfg_after_pass = unstable.print_cfg_after_pass;
options.print_ir_after_all = unstable.print_ir_after_all;
options.print_ir_after_pass = unstable.print_ir_after_pass;
let target_dir = if self.target_dir.is_absolute() {
self.target_dir
} else {
options.current_dir.join(&self.target_dir)
};
std::fs::create_dir_all(&target_dir).unwrap_or_else(|err| {
panic!("unable to create --target-dir '{}': {err}", target_dir.display())
});
let source_manager = Arc::new(DefaultSourceManager::default());
Session::new(
inputs,
self.output_dir,
output_file,
target_dir,
options,
emitter,
source_manager,
)
}
}
fn format_error<I: clap::CommandFactory>(err: clap::Error) -> clap::Error {
let mut cmd = I::command();
err.format(&mut cmd)
}