1 //! Instruction Set Architectures. 2 //! 3 //! The `isa` module provides a `TargetIsa` trait which provides the behavior specialization needed 4 //! by the ISA-independent code generator. The sub-modules of this module provide definitions for 5 //! the instruction sets that Cranelift can target. Each sub-module has it's own implementation of 6 //! `TargetIsa`. 7 //! 8 //! # Constructing a `TargetIsa` instance 9 //! 10 //! The target ISA is built from the following information: 11 //! 12 //! - The name of the target ISA as a string. Cranelift is a cross-compiler, so the ISA to target 13 //! can be selected dynamically. Individual ISAs can be left out when Cranelift is compiled, so a 14 //! string is used to identify the proper sub-module. 15 //! - Values for settings that apply to all ISAs. This is represented by a `settings::Flags` 16 //! instance. 17 //! - Values for ISA-specific settings. 18 //! 19 //! The `isa::lookup()` function is the main entry point which returns an `isa::Builder` 20 //! appropriate for the requested ISA: 21 //! 22 //! ``` 23 //! # #[macro_use] extern crate target_lexicon; 24 //! use cranelift_codegen::isa; 25 //! use cranelift_codegen::settings::{self, Configurable}; 26 //! use std::str::FromStr; 27 //! use target_lexicon::Triple; 28 //! 29 //! let shared_builder = settings::builder(); 30 //! let shared_flags = settings::Flags::new(shared_builder); 31 //! 32 //! match isa::lookup(triple!("x86_64")) { 33 //! Err(_) => { 34 //! // The x86_64 target ISA is not available. 35 //! } 36 //! Ok(mut isa_builder) => { 37 //! isa_builder.set("use_popcnt", "on"); 38 //! let isa = isa_builder.finish(shared_flags); 39 //! } 40 //! } 41 //! ``` 42 //! 43 //! The configured target ISA trait object is a `Box<TargetIsa>` which can be used for multiple 44 //! concurrent function compilations. 45 46 use crate::dominator_tree::DominatorTree; 47 pub use crate::isa::call_conv::CallConv; 48 49 use crate::flowgraph; 50 use crate::ir::{self, Function, Type}; 51 #[cfg(feature = "unwind")] 52 use crate::isa::unwind::{systemv::RegisterMappingError, UnwindInfoKind}; 53 use crate::machinst::{CompiledCode, CompiledCodeStencil, TextSectionBuilder}; 54 use crate::settings; 55 use crate::settings::Configurable; 56 use crate::settings::SetResult; 57 use crate::CodegenResult; 58 use alloc::{boxed::Box, sync::Arc, vec::Vec}; 59 use core::fmt; 60 use core::fmt::{Debug, Formatter}; 61 use cranelift_control::ControlPlane; 62 use target_lexicon::{triple, Architecture, PointerWidth, Triple}; 63 64 // This module is made public here for benchmarking purposes. No guarantees are 65 // made regarding API stability. 66 #[cfg(feature = "x86")] 67 pub mod x64; 68 69 #[cfg(feature = "arm64")] 70 pub mod aarch64; 71 72 #[cfg(feature = "riscv64")] 73 pub mod riscv64; 74 75 #[cfg(feature = "s390x")] 76 mod s390x; 77 78 pub mod unwind; 79 80 mod call_conv; 81 82 /// Returns a builder that can create a corresponding `TargetIsa` 83 /// or `Err(LookupError::SupportDisabled)` if not enabled. 84 macro_rules! isa_builder { 85 ($name: ident, $cfg_terms: tt, $triple: ident) => {{ 86 #[cfg $cfg_terms] 87 { 88 Ok($name::isa_builder($triple)) 89 } 90 #[cfg(not $cfg_terms)] 91 { 92 Err(LookupError::SupportDisabled) 93 } 94 }}; 95 } 96 97 /// Look for an ISA for the given `triple`. 98 /// Return a builder that can create a corresponding `TargetIsa`. 99 pub fn lookup(triple: Triple) -> Result<Builder, LookupError> { 100 match triple.architecture { 101 Architecture::X86_64 => { 102 isa_builder!(x64, (feature = "x86"), triple) 103 } 104 Architecture::Aarch64 { .. } => isa_builder!(aarch64, (feature = "arm64"), triple), 105 Architecture::S390x { .. } => isa_builder!(s390x, (feature = "s390x"), triple), 106 Architecture::Riscv64 { .. } => isa_builder!(riscv64, (feature = "riscv64"), triple), 107 _ => Err(LookupError::Unsupported), 108 } 109 } 110 111 /// The string names of all the supported, but possibly not enabled, architectures. The elements of 112 /// this slice are suitable to be passed to the [lookup_by_name] function to obtain the default 113 /// configuration for that architecture. 114 pub const ALL_ARCHITECTURES: &[&str] = &["x86_64", "aarch64", "s390x", "riscv64"]; 115 116 /// Look for a supported ISA with the given `name`. 117 /// Return a builder that can create a corresponding `TargetIsa`. 118 pub fn lookup_by_name(name: &str) -> Result<Builder, LookupError> { 119 lookup(triple!(name)) 120 } 121 122 /// Describes reason for target lookup failure 123 #[derive(PartialEq, Eq, Copy, Clone, Debug)] 124 pub enum LookupError { 125 /// Support for this target was disabled in the current build. 126 SupportDisabled, 127 128 /// Support for this target has not yet been implemented. 129 Unsupported, 130 } 131 132 // This is manually implementing Error and Display instead of using thiserror to reduce the amount 133 // of dependencies used by Cranelift. 134 impl std::error::Error for LookupError {} 135 136 impl fmt::Display for LookupError { 137 fn fmt(&self, f: &mut Formatter) -> fmt::Result { 138 match self { 139 LookupError::SupportDisabled => write!(f, "Support for this target is disabled"), 140 LookupError::Unsupported => { 141 write!(f, "Support for this target has not been implemented yet") 142 } 143 } 144 } 145 } 146 147 /// The type of a polymorphic TargetISA object which is 'static. 148 pub type OwnedTargetIsa = Arc<dyn TargetIsa>; 149 150 /// Type alias of `IsaBuilder` used for building Cranelift's ISAs. 151 pub type Builder = IsaBuilder<CodegenResult<OwnedTargetIsa>>; 152 153 /// Builder for a `TargetIsa`. 154 /// Modify the ISA-specific settings before creating the `TargetIsa` trait object with `finish`. 155 #[derive(Clone)] 156 pub struct IsaBuilder<T> { 157 triple: Triple, 158 setup: settings::Builder, 159 constructor: fn(Triple, settings::Flags, &settings::Builder) -> T, 160 } 161 162 impl<T> IsaBuilder<T> { 163 /// Creates a new ISA-builder from its components, namely the `triple` for 164 /// the ISA, the ISA-specific settings builder, and a final constructor 165 /// function to generate the ISA from its components. 166 pub fn new( 167 triple: Triple, 168 setup: settings::Builder, 169 constructor: fn(Triple, settings::Flags, &settings::Builder) -> T, 170 ) -> Self { 171 IsaBuilder { 172 triple, 173 setup, 174 constructor, 175 } 176 } 177 178 /// Creates a new [Builder] from a [TargetIsa], copying all flags in the 179 /// process. 180 pub fn from_target_isa(target_isa: &dyn TargetIsa) -> Builder { 181 // We should always be able to find the builder for the TargetISA, since presumably we 182 // also generated the previous TargetISA at some point 183 let triple = target_isa.triple().clone(); 184 let mut builder = self::lookup(triple).expect("Could not find triple for target ISA"); 185 186 // Copy ISA Flags 187 for flag in target_isa.isa_flags() { 188 builder.set(&flag.name, &flag.value_string()).unwrap(); 189 } 190 191 builder 192 } 193 194 /// Gets the triple for the builder. 195 pub fn triple(&self) -> &Triple { 196 &self.triple 197 } 198 199 /// Iterates the available settings in the builder. 200 pub fn iter(&self) -> impl Iterator<Item = settings::Setting> { 201 self.setup.iter() 202 } 203 204 /// Combine the ISA-specific settings with the provided 205 /// ISA-independent settings and allocate a fully configured 206 /// `TargetIsa` trait object. May return an error if some of the 207 /// flags are inconsistent or incompatible: for example, some 208 /// platform-independent features, like general SIMD support, may 209 /// need certain ISA extensions to be enabled. 210 pub fn finish(&self, shared_flags: settings::Flags) -> T { 211 (self.constructor)(self.triple.clone(), shared_flags, &self.setup) 212 } 213 } 214 215 impl<T> settings::Configurable for IsaBuilder<T> { 216 fn set(&mut self, name: &str, value: &str) -> SetResult<()> { 217 self.setup.set(name, value) 218 } 219 220 fn enable(&mut self, name: &str) -> SetResult<()> { 221 self.setup.enable(name) 222 } 223 } 224 225 /// After determining that an instruction doesn't have an encoding, how should we proceed to 226 /// legalize it? 227 /// 228 /// The `Encodings` iterator returns a legalization function to call. 229 pub type Legalize = 230 fn(ir::Inst, &mut ir::Function, &mut flowgraph::ControlFlowGraph, &dyn TargetIsa) -> bool; 231 232 /// This struct provides information that a frontend may need to know about a target to 233 /// produce Cranelift IR for the target. 234 #[derive(Clone, Copy, Hash)] 235 pub struct TargetFrontendConfig { 236 /// The default calling convention of the target. 237 pub default_call_conv: CallConv, 238 239 /// The pointer width of the target. 240 pub pointer_width: PointerWidth, 241 } 242 243 impl TargetFrontendConfig { 244 /// Get the pointer type of this target. 245 pub fn pointer_type(self) -> ir::Type { 246 ir::Type::int(self.pointer_bits() as u16).unwrap() 247 } 248 249 /// Get the width of pointers on this target, in units of bits. 250 pub fn pointer_bits(self) -> u8 { 251 self.pointer_width.bits() 252 } 253 254 /// Get the width of pointers on this target, in units of bytes. 255 pub fn pointer_bytes(self) -> u8 { 256 self.pointer_width.bytes() 257 } 258 } 259 260 /// Methods that are specialized to a target ISA. 261 /// 262 /// Implies a Display trait that shows the shared flags, as well as any ISA-specific flags. 263 pub trait TargetIsa: fmt::Display + Send + Sync { 264 /// Get the name of this ISA. 265 fn name(&self) -> &'static str; 266 267 /// Get the target triple that was used to make this trait object. 268 fn triple(&self) -> &Triple; 269 270 /// Get the ISA-independent flags that were used to make this trait object. 271 fn flags(&self) -> &settings::Flags; 272 273 /// Get the ISA-dependent flag values that were used to make this trait object. 274 fn isa_flags(&self) -> Vec<settings::Value>; 275 276 /// Get a flag indicating whether branch protection is enabled. 277 fn is_branch_protection_enabled(&self) -> bool { 278 false 279 } 280 281 /// Get the ISA-dependent maximum vector register size, in bytes. 282 fn dynamic_vector_bytes(&self, dynamic_ty: ir::Type) -> u32; 283 284 /// Compile the given function. 285 fn compile_function( 286 &self, 287 func: &Function, 288 domtree: &DominatorTree, 289 want_disasm: bool, 290 ctrl_plane: &mut ControlPlane, 291 ) -> CodegenResult<CompiledCodeStencil>; 292 293 #[cfg(feature = "unwind")] 294 /// Map a regalloc::Reg to its corresponding DWARF register. 295 fn map_regalloc_reg_to_dwarf( 296 &self, 297 _: crate::machinst::Reg, 298 ) -> Result<u16, RegisterMappingError> { 299 Err(RegisterMappingError::UnsupportedArchitecture) 300 } 301 302 /// Creates unwind information for the function. 303 /// 304 /// Returns `None` if there is no unwind information for the function. 305 #[cfg(feature = "unwind")] 306 fn emit_unwind_info( 307 &self, 308 result: &CompiledCode, 309 kind: UnwindInfoKind, 310 ) -> CodegenResult<Option<crate::isa::unwind::UnwindInfo>>; 311 312 /// Creates a new System V Common Information Entry for the ISA. 313 /// 314 /// Returns `None` if the ISA does not support System V unwind information. 315 #[cfg(feature = "unwind")] 316 fn create_systemv_cie(&self) -> Option<gimli::write::CommonInformationEntry> { 317 // By default, an ISA cannot create a System V CIE 318 None 319 } 320 321 /// Returns an object that can be used to build the text section of an 322 /// executable. 323 /// 324 /// This object will internally attempt to handle as many relocations as 325 /// possible using relative calls/jumps/etc between functions. 326 /// 327 /// The `num_labeled_funcs` argument here is the number of functions which 328 /// will be "labeled" or might have calls between them, typically the number 329 /// of defined functions in the object file. 330 fn text_section_builder(&self, num_labeled_funcs: usize) -> Box<dyn TextSectionBuilder>; 331 332 /// Returns the minimum function alignment and the preferred function 333 /// alignment, for performance, required by this ISA. 334 fn function_alignment(&self) -> FunctionAlignment; 335 336 /// Create a polymorphic TargetIsa from this specific implementation. 337 fn wrapped(self) -> OwnedTargetIsa 338 where 339 Self: Sized + 'static, 340 { 341 Arc::new(self) 342 } 343 344 /// Generate a `Capstone` context for disassembling bytecode for this architecture. 345 #[cfg(feature = "disas")] 346 fn to_capstone(&self) -> Result<capstone::Capstone, capstone::Error> { 347 Err(capstone::Error::UnsupportedArch) 348 } 349 350 /// Returns whether this ISA has a native fused-multiply-and-add instruction 351 /// for floats. 352 /// 353 /// Currently this only returns false on x86 when some native features are 354 /// not detected. 355 fn has_native_fma(&self) -> bool; 356 357 /// Returns whether the CLIF `x86_blendv` instruction is implemented for 358 /// this ISA for the specified type. 359 fn has_x86_blendv_lowering(&self, ty: Type) -> bool; 360 361 /// Returns whether the CLIF `x86_pshufb` instruction is implemented for 362 /// this ISA. 363 fn has_x86_pshufb_lowering(&self) -> bool; 364 365 /// Returns whether the CLIF `x86_pmulhrsw` instruction is implemented for 366 /// this ISA. 367 fn has_x86_pmulhrsw_lowering(&self) -> bool; 368 369 /// Returns whether the CLIF `x86_pmaddubsw` instruction is implemented for 370 /// this ISA. 371 fn has_x86_pmaddubsw_lowering(&self) -> bool; 372 } 373 374 /// Function alignment specifications as required by an ISA, returned by 375 /// [`TargetIsa::function_alignment`]. 376 #[derive(Copy, Clone)] 377 pub struct FunctionAlignment { 378 /// The minimum alignment required by an ISA, where all functions must be 379 /// aligned to at least this amount. 380 pub minimum: u32, 381 /// A "preferred" alignment which should be used for more 382 /// performance-sensitive situations. This can involve cache-line-aligning 383 /// for example to get more of a small function into fewer cache lines. 384 pub preferred: u32, 385 } 386 387 /// Methods implemented for free for target ISA! 388 impl<'a> dyn TargetIsa + 'a { 389 /// Get the default calling convention of this target. 390 pub fn default_call_conv(&self) -> CallConv { 391 CallConv::triple_default(self.triple()) 392 } 393 394 /// Get the endianness of this ISA. 395 pub fn endianness(&self) -> ir::Endianness { 396 match self.triple().endianness().unwrap() { 397 target_lexicon::Endianness::Little => ir::Endianness::Little, 398 target_lexicon::Endianness::Big => ir::Endianness::Big, 399 } 400 } 401 402 /// Returns the minimum symbol alignment for this ISA. 403 pub fn symbol_alignment(&self) -> u64 { 404 match self.triple().architecture { 405 // All symbols need to be aligned to at least 2 on s390x. 406 Architecture::S390x => 2, 407 _ => 1, 408 } 409 } 410 411 /// Get the pointer type of this ISA. 412 pub fn pointer_type(&self) -> ir::Type { 413 ir::Type::int(self.pointer_bits() as u16).unwrap() 414 } 415 416 /// Get the width of pointers on this ISA. 417 pub(crate) fn pointer_width(&self) -> PointerWidth { 418 self.triple().pointer_width().unwrap() 419 } 420 421 /// Get the width of pointers on this ISA, in units of bits. 422 pub fn pointer_bits(&self) -> u8 { 423 self.pointer_width().bits() 424 } 425 426 /// Get the width of pointers on this ISA, in units of bytes. 427 pub fn pointer_bytes(&self) -> u8 { 428 self.pointer_width().bytes() 429 } 430 431 /// Get the information needed by frontends producing Cranelift IR. 432 pub fn frontend_config(&self) -> TargetFrontendConfig { 433 TargetFrontendConfig { 434 default_call_conv: self.default_call_conv(), 435 pointer_width: self.pointer_width(), 436 } 437 } 438 } 439 440 impl Debug for &dyn TargetIsa { 441 fn fmt(&self, f: &mut Formatter<'_>) -> fmt::Result { 442 write!( 443 f, 444 "TargetIsa {{ triple: {:?}, pointer_width: {:?}}}", 445 self.triple(), 446 self.pointer_width() 447 ) 448 } 449 } 450