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			603 lines
		
	
	
		
			23 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			603 lines
		
	
	
		
			23 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
| use crate::attributes;
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| use crate::builder::Builder;
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| use crate::context::CodegenCx;
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| use crate::llvm::{self, Attribute, AttributePlace};
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| use crate::type_::Type;
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| use crate::type_of::LayoutLlvmExt;
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| use crate::value::Value;
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| 
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| use rustc_codegen_ssa::mir::operand::OperandValue;
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| use rustc_codegen_ssa::mir::place::PlaceRef;
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| use rustc_codegen_ssa::traits::*;
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| use rustc_codegen_ssa::MemFlags;
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| use rustc_middle::bug;
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| use rustc_middle::ty::layout::LayoutOf;
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| pub use rustc_middle::ty::layout::{FAT_PTR_ADDR, FAT_PTR_EXTRA};
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| use rustc_middle::ty::Ty;
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| use rustc_session::config;
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| use rustc_target::abi::call::ArgAbi;
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| pub use rustc_target::abi::call::*;
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| use rustc_target::abi::{self, HasDataLayout, Int};
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| pub use rustc_target::spec::abi::Abi;
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| use rustc_target::spec::SanitizerSet;
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| 
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| use libc::c_uint;
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| use smallvec::SmallVec;
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| 
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| pub trait ArgAttributesExt {
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|     fn apply_attrs_to_llfn(&self, idx: AttributePlace, cx: &CodegenCx<'_, '_>, llfn: &Value);
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|     fn apply_attrs_to_callsite(
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|         &self,
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|         idx: AttributePlace,
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|         cx: &CodegenCx<'_, '_>,
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|         callsite: &Value,
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|     );
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| }
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| 
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| fn should_use_mutable_noalias(cx: &CodegenCx<'_, '_>) -> bool {
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|     // LLVM prior to version 12 had known miscompiles in the presence of
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|     // noalias attributes (see #54878), but we don't support earlier
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|     // versions at all anymore. We now enable mutable noalias by default.
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|     cx.tcx.sess.opts.unstable_opts.mutable_noalias.unwrap_or(true)
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| }
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| 
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| const ABI_AFFECTING_ATTRIBUTES: [(ArgAttribute, llvm::AttributeKind); 1] =
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|     [(ArgAttribute::InReg, llvm::AttributeKind::InReg)];
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| 
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| const OPTIMIZATION_ATTRIBUTES: [(ArgAttribute, llvm::AttributeKind); 5] = [
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|     (ArgAttribute::NoAlias, llvm::AttributeKind::NoAlias),
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|     (ArgAttribute::NoCapture, llvm::AttributeKind::NoCapture),
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|     (ArgAttribute::NonNull, llvm::AttributeKind::NonNull),
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|     (ArgAttribute::ReadOnly, llvm::AttributeKind::ReadOnly),
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|     (ArgAttribute::NoUndef, llvm::AttributeKind::NoUndef),
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| ];
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| 
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| fn get_attrs<'ll>(this: &ArgAttributes, cx: &CodegenCx<'ll, '_>) -> SmallVec<[&'ll Attribute; 8]> {
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|     let mut regular = this.regular;
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| 
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|     let mut attrs = SmallVec::new();
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| 
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|     // ABI-affecting attributes must always be applied
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|     for (attr, llattr) in ABI_AFFECTING_ATTRIBUTES {
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|         if regular.contains(attr) {
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|             attrs.push(llattr.create_attr(cx.llcx));
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|         }
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|     }
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|     if let Some(align) = this.pointee_align {
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|         attrs.push(llvm::CreateAlignmentAttr(cx.llcx, align.bytes()));
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|     }
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|     match this.arg_ext {
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|         ArgExtension::None => {}
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|         ArgExtension::Zext => attrs.push(llvm::AttributeKind::ZExt.create_attr(cx.llcx)),
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|         ArgExtension::Sext => attrs.push(llvm::AttributeKind::SExt.create_attr(cx.llcx)),
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|     }
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| 
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|     // Only apply remaining attributes when optimizing
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|     if cx.sess().opts.optimize != config::OptLevel::No {
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|         let deref = this.pointee_size.bytes();
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|         if deref != 0 {
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|             if regular.contains(ArgAttribute::NonNull) {
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|                 attrs.push(llvm::CreateDereferenceableAttr(cx.llcx, deref));
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|             } else {
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|                 attrs.push(llvm::CreateDereferenceableOrNullAttr(cx.llcx, deref));
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|             }
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|             regular -= ArgAttribute::NonNull;
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|         }
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|         for (attr, llattr) in OPTIMIZATION_ATTRIBUTES {
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|             if regular.contains(attr) {
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|                 attrs.push(llattr.create_attr(cx.llcx));
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|             }
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|         }
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|         if regular.contains(ArgAttribute::NoAliasMutRef) && should_use_mutable_noalias(cx) {
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|             attrs.push(llvm::AttributeKind::NoAlias.create_attr(cx.llcx));
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|         }
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|     } else if cx.tcx.sess.opts.unstable_opts.sanitizer.contains(SanitizerSet::MEMORY) {
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|         // If we're not optimising, *but* memory sanitizer is on, emit noundef, since it affects
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|         // memory sanitizer's behavior.
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| 
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|         if regular.contains(ArgAttribute::NoUndef) {
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|             attrs.push(llvm::AttributeKind::NoUndef.create_attr(cx.llcx));
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|         }
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|     }
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| 
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|     attrs
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| }
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| 
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| impl ArgAttributesExt for ArgAttributes {
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|     fn apply_attrs_to_llfn(&self, idx: AttributePlace, cx: &CodegenCx<'_, '_>, llfn: &Value) {
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|         let attrs = get_attrs(self, cx);
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|         attributes::apply_to_llfn(llfn, idx, &attrs);
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|     }
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| 
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|     fn apply_attrs_to_callsite(
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|         &self,
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|         idx: AttributePlace,
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|         cx: &CodegenCx<'_, '_>,
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|         callsite: &Value,
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|     ) {
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|         let attrs = get_attrs(self, cx);
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|         attributes::apply_to_callsite(callsite, idx, &attrs);
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|     }
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| }
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| 
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| pub trait LlvmType {
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|     fn llvm_type<'ll>(&self, cx: &CodegenCx<'ll, '_>) -> &'ll Type;
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| }
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| 
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| impl LlvmType for Reg {
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|     fn llvm_type<'ll>(&self, cx: &CodegenCx<'ll, '_>) -> &'ll Type {
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|         match self.kind {
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|             RegKind::Integer => cx.type_ix(self.size.bits()),
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|             RegKind::Float => match self.size.bits() {
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|                 32 => cx.type_f32(),
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|                 64 => cx.type_f64(),
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|                 _ => bug!("unsupported float: {:?}", self),
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|             },
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|             RegKind::Vector => cx.type_vector(cx.type_i8(), self.size.bytes()),
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|         }
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|     }
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| }
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| 
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| impl LlvmType for CastTarget {
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|     fn llvm_type<'ll>(&self, cx: &CodegenCx<'ll, '_>) -> &'ll Type {
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|         let rest_ll_unit = self.rest.unit.llvm_type(cx);
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|         let (rest_count, rem_bytes) = if self.rest.unit.size.bytes() == 0 {
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|             (0, 0)
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|         } else {
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|             (
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|                 self.rest.total.bytes() / self.rest.unit.size.bytes(),
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|                 self.rest.total.bytes() % self.rest.unit.size.bytes(),
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|             )
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|         };
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| 
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|         if self.prefix.iter().all(|x| x.is_none()) {
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|             // Simplify to a single unit when there is no prefix and size <= unit size
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|             if self.rest.total <= self.rest.unit.size {
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|                 return rest_ll_unit;
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|             }
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| 
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|             // Simplify to array when all chunks are the same size and type
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|             if rem_bytes == 0 {
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|                 return cx.type_array(rest_ll_unit, rest_count);
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|             }
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|         }
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| 
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|         // Create list of fields in the main structure
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|         let mut args: Vec<_> = self
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|             .prefix
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|             .iter()
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|             .flat_map(|option_reg| option_reg.map(|reg| reg.llvm_type(cx)))
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|             .chain((0..rest_count).map(|_| rest_ll_unit))
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|             .collect();
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| 
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|         // Append final integer
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|         if rem_bytes != 0 {
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|             // Only integers can be really split further.
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|             assert_eq!(self.rest.unit.kind, RegKind::Integer);
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|             args.push(cx.type_ix(rem_bytes * 8));
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|         }
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| 
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|         cx.type_struct(&args, false)
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|     }
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| }
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| 
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| pub trait ArgAbiExt<'ll, 'tcx> {
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|     fn memory_ty(&self, cx: &CodegenCx<'ll, 'tcx>) -> &'ll Type;
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|     fn store(
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|         &self,
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|         bx: &mut Builder<'_, 'll, 'tcx>,
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|         val: &'ll Value,
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|         dst: PlaceRef<'tcx, &'ll Value>,
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|     );
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|     fn store_fn_arg(
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|         &self,
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|         bx: &mut Builder<'_, 'll, 'tcx>,
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|         idx: &mut usize,
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|         dst: PlaceRef<'tcx, &'ll Value>,
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|     );
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| }
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| 
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| impl<'ll, 'tcx> ArgAbiExt<'ll, 'tcx> for ArgAbi<'tcx, Ty<'tcx>> {
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|     /// Gets the LLVM type for a place of the original Rust type of
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|     /// this argument/return, i.e., the result of `type_of::type_of`.
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|     fn memory_ty(&self, cx: &CodegenCx<'ll, 'tcx>) -> &'ll Type {
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|         self.layout.llvm_type(cx)
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|     }
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| 
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|     /// Stores a direct/indirect value described by this ArgAbi into a
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|     /// place for the original Rust type of this argument/return.
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|     /// Can be used for both storing formal arguments into Rust variables
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|     /// or results of call/invoke instructions into their destinations.
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|     fn store(
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|         &self,
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|         bx: &mut Builder<'_, 'll, 'tcx>,
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|         val: &'ll Value,
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|         dst: PlaceRef<'tcx, &'ll Value>,
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|     ) {
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|         if self.is_ignore() {
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|             return;
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|         }
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|         if self.is_sized_indirect() {
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|             OperandValue::Ref(val, None, self.layout.align.abi).store(bx, dst)
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|         } else if self.is_unsized_indirect() {
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|             bug!("unsized `ArgAbi` must be handled through `store_fn_arg`");
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|         } else if let PassMode::Cast(cast, _) = &self.mode {
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|             // FIXME(eddyb): Figure out when the simpler Store is safe, clang
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|             // uses it for i16 -> {i8, i8}, but not for i24 -> {i8, i8, i8}.
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|             let can_store_through_cast_ptr = false;
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|             if can_store_through_cast_ptr {
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|                 let cast_ptr_llty = bx.type_ptr_to(cast.llvm_type(bx));
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|                 let cast_dst = bx.pointercast(dst.llval, cast_ptr_llty);
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|                 bx.store(val, cast_dst, self.layout.align.abi);
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|             } else {
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|                 // The actual return type is a struct, but the ABI
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|                 // adaptation code has cast it into some scalar type.  The
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|                 // code that follows is the only reliable way I have
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|                 // found to do a transform like i64 -> {i32,i32}.
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|                 // Basically we dump the data onto the stack then memcpy it.
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|                 //
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|                 // Other approaches I tried:
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|                 // - Casting rust ret pointer to the foreign type and using Store
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|                 //   is (a) unsafe if size of foreign type > size of rust type and
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|                 //   (b) runs afoul of strict aliasing rules, yielding invalid
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|                 //   assembly under -O (specifically, the store gets removed).
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|                 // - Truncating foreign type to correct integral type and then
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|                 //   bitcasting to the struct type yields invalid cast errors.
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| 
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|                 // We instead thus allocate some scratch space...
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|                 let scratch_size = cast.size(bx);
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|                 let scratch_align = cast.align(bx);
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|                 let llscratch = bx.alloca(cast.llvm_type(bx), scratch_align);
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|                 bx.lifetime_start(llscratch, scratch_size);
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| 
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|                 // ... where we first store the value...
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|                 bx.store(val, llscratch, scratch_align);
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| 
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|                 // ... and then memcpy it to the intended destination.
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|                 bx.memcpy(
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|                     dst.llval,
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|                     self.layout.align.abi,
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|                     llscratch,
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|                     scratch_align,
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|                     bx.const_usize(self.layout.size.bytes()),
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|                     MemFlags::empty(),
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|                 );
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| 
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|                 bx.lifetime_end(llscratch, scratch_size);
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|             }
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|         } else {
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|             OperandValue::Immediate(val).store(bx, dst);
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|         }
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|     }
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| 
 | |
|     fn store_fn_arg(
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|         &self,
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|         bx: &mut Builder<'_, 'll, 'tcx>,
 | |
|         idx: &mut usize,
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|         dst: PlaceRef<'tcx, &'ll Value>,
 | |
|     ) {
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|         let mut next = || {
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|             let val = llvm::get_param(bx.llfn(), *idx as c_uint);
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|             *idx += 1;
 | |
|             val
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|         };
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|         match self.mode {
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|             PassMode::Ignore => {}
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|             PassMode::Pair(..) => {
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|                 OperandValue::Pair(next(), next()).store(bx, dst);
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|             }
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|             PassMode::Indirect { attrs: _, extra_attrs: Some(_), on_stack: _ } => {
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|                 OperandValue::Ref(next(), Some(next()), self.layout.align.abi).store(bx, dst);
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|             }
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|             PassMode::Direct(_)
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|             | PassMode::Indirect { attrs: _, extra_attrs: None, on_stack: _ }
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|             | PassMode::Cast(..) => {
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|                 let next_arg = next();
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|                 self.store(bx, next_arg, dst);
 | |
|             }
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|         }
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|     }
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| }
 | |
| 
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| impl<'ll, 'tcx> ArgAbiMethods<'tcx> for Builder<'_, 'll, 'tcx> {
 | |
|     fn store_fn_arg(
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|         &mut self,
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|         arg_abi: &ArgAbi<'tcx, Ty<'tcx>>,
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|         idx: &mut usize,
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|         dst: PlaceRef<'tcx, Self::Value>,
 | |
|     ) {
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|         arg_abi.store_fn_arg(self, idx, dst)
 | |
|     }
 | |
|     fn store_arg(
 | |
|         &mut self,
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|         arg_abi: &ArgAbi<'tcx, Ty<'tcx>>,
 | |
|         val: &'ll Value,
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|         dst: PlaceRef<'tcx, &'ll Value>,
 | |
|     ) {
 | |
|         arg_abi.store(self, val, dst)
 | |
|     }
 | |
|     fn arg_memory_ty(&self, arg_abi: &ArgAbi<'tcx, Ty<'tcx>>) -> &'ll Type {
 | |
|         arg_abi.memory_ty(self)
 | |
|     }
 | |
| }
 | |
| 
 | |
| pub trait FnAbiLlvmExt<'ll, 'tcx> {
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|     fn llvm_type(&self, cx: &CodegenCx<'ll, 'tcx>) -> &'ll Type;
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|     fn ptr_to_llvm_type(&self, cx: &CodegenCx<'ll, 'tcx>) -> &'ll Type;
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|     fn llvm_cconv(&self) -> llvm::CallConv;
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|     fn apply_attrs_llfn(&self, cx: &CodegenCx<'ll, 'tcx>, llfn: &'ll Value);
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|     fn apply_attrs_callsite(&self, bx: &mut Builder<'_, 'll, 'tcx>, callsite: &'ll Value);
 | |
| }
 | |
| 
 | |
| impl<'ll, 'tcx> FnAbiLlvmExt<'ll, 'tcx> for FnAbi<'tcx, Ty<'tcx>> {
 | |
|     fn llvm_type(&self, cx: &CodegenCx<'ll, 'tcx>) -> &'ll Type {
 | |
|         // Ignore "extra" args from the call site for C variadic functions.
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|         // Only the "fixed" args are part of the LLVM function signature.
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|         let args =
 | |
|             if self.c_variadic { &self.args[..self.fixed_count as usize] } else { &self.args };
 | |
| 
 | |
|         // This capacity calculation is approximate.
 | |
|         let mut llargument_tys = Vec::with_capacity(
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|             self.args.len() + if let PassMode::Indirect { .. } = self.ret.mode { 1 } else { 0 },
 | |
|         );
 | |
| 
 | |
|         let llreturn_ty = match &self.ret.mode {
 | |
|             PassMode::Ignore => cx.type_void(),
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|             PassMode::Direct(_) | PassMode::Pair(..) => self.ret.layout.immediate_llvm_type(cx),
 | |
|             PassMode::Cast(cast, _) => cast.llvm_type(cx),
 | |
|             PassMode::Indirect { .. } => {
 | |
|                 llargument_tys.push(cx.type_ptr_to(self.ret.memory_ty(cx)));
 | |
|                 cx.type_void()
 | |
|             }
 | |
|         };
 | |
| 
 | |
|         for arg in args {
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|             let llarg_ty = match &arg.mode {
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|                 PassMode::Ignore => continue,
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|                 PassMode::Direct(_) => arg.layout.immediate_llvm_type(cx),
 | |
|                 PassMode::Pair(..) => {
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|                     llargument_tys.push(arg.layout.scalar_pair_element_llvm_type(cx, 0, true));
 | |
|                     llargument_tys.push(arg.layout.scalar_pair_element_llvm_type(cx, 1, true));
 | |
|                     continue;
 | |
|                 }
 | |
|                 PassMode::Indirect { attrs: _, extra_attrs: Some(_), on_stack: _ } => {
 | |
|                     let ptr_ty = cx.tcx.mk_mut_ptr(arg.layout.ty);
 | |
|                     let ptr_layout = cx.layout_of(ptr_ty);
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|                     llargument_tys.push(ptr_layout.scalar_pair_element_llvm_type(cx, 0, true));
 | |
|                     llargument_tys.push(ptr_layout.scalar_pair_element_llvm_type(cx, 1, true));
 | |
|                     continue;
 | |
|                 }
 | |
|                 PassMode::Cast(cast, pad_i32) => {
 | |
|                     // add padding
 | |
|                     if *pad_i32 {
 | |
|                         llargument_tys.push(Reg::i32().llvm_type(cx));
 | |
|                     }
 | |
|                     cast.llvm_type(cx)
 | |
|                 }
 | |
|                 PassMode::Indirect { attrs: _, extra_attrs: None, on_stack: _ } => {
 | |
|                     cx.type_ptr_to(arg.memory_ty(cx))
 | |
|                 }
 | |
|             };
 | |
|             llargument_tys.push(llarg_ty);
 | |
|         }
 | |
| 
 | |
|         if self.c_variadic {
 | |
|             cx.type_variadic_func(&llargument_tys, llreturn_ty)
 | |
|         } else {
 | |
|             cx.type_func(&llargument_tys, llreturn_ty)
 | |
|         }
 | |
|     }
 | |
| 
 | |
|     fn ptr_to_llvm_type(&self, cx: &CodegenCx<'ll, 'tcx>) -> &'ll Type {
 | |
|         unsafe {
 | |
|             llvm::LLVMPointerType(
 | |
|                 self.llvm_type(cx),
 | |
|                 cx.data_layout().instruction_address_space.0 as c_uint,
 | |
|             )
 | |
|         }
 | |
|     }
 | |
| 
 | |
|     fn llvm_cconv(&self) -> llvm::CallConv {
 | |
|         match self.conv {
 | |
|             Conv::C | Conv::Rust | Conv::CCmseNonSecureCall => llvm::CCallConv,
 | |
|             Conv::RustCold => llvm::ColdCallConv,
 | |
|             Conv::AmdGpuKernel => llvm::AmdGpuKernel,
 | |
|             Conv::AvrInterrupt => llvm::AvrInterrupt,
 | |
|             Conv::AvrNonBlockingInterrupt => llvm::AvrNonBlockingInterrupt,
 | |
|             Conv::ArmAapcs => llvm::ArmAapcsCallConv,
 | |
|             Conv::Msp430Intr => llvm::Msp430Intr,
 | |
|             Conv::PtxKernel => llvm::PtxKernel,
 | |
|             Conv::X86Fastcall => llvm::X86FastcallCallConv,
 | |
|             Conv::X86Intr => llvm::X86_Intr,
 | |
|             Conv::X86Stdcall => llvm::X86StdcallCallConv,
 | |
|             Conv::X86ThisCall => llvm::X86_ThisCall,
 | |
|             Conv::X86VectorCall => llvm::X86_VectorCall,
 | |
|             Conv::X86_64SysV => llvm::X86_64_SysV,
 | |
|             Conv::X86_64Win64 => llvm::X86_64_Win64,
 | |
|         }
 | |
|     }
 | |
| 
 | |
|     fn apply_attrs_llfn(&self, cx: &CodegenCx<'ll, 'tcx>, llfn: &'ll Value) {
 | |
|         let mut func_attrs = SmallVec::<[_; 2]>::new();
 | |
|         if self.ret.layout.abi.is_uninhabited() {
 | |
|             func_attrs.push(llvm::AttributeKind::NoReturn.create_attr(cx.llcx));
 | |
|         }
 | |
|         if !self.can_unwind {
 | |
|             func_attrs.push(llvm::AttributeKind::NoUnwind.create_attr(cx.llcx));
 | |
|         }
 | |
|         attributes::apply_to_llfn(llfn, llvm::AttributePlace::Function, &{ func_attrs });
 | |
| 
 | |
|         let mut i = 0;
 | |
|         let mut apply = |attrs: &ArgAttributes| {
 | |
|             attrs.apply_attrs_to_llfn(llvm::AttributePlace::Argument(i), cx, llfn);
 | |
|             i += 1;
 | |
|             i - 1
 | |
|         };
 | |
|         match &self.ret.mode {
 | |
|             PassMode::Direct(attrs) => {
 | |
|                 attrs.apply_attrs_to_llfn(llvm::AttributePlace::ReturnValue, cx, llfn);
 | |
|             }
 | |
|             PassMode::Indirect { attrs, extra_attrs: _, on_stack } => {
 | |
|                 assert!(!on_stack);
 | |
|                 let i = apply(attrs);
 | |
|                 let sret = llvm::CreateStructRetAttr(cx.llcx, self.ret.layout.llvm_type(cx));
 | |
|                 attributes::apply_to_llfn(llfn, llvm::AttributePlace::Argument(i), &[sret]);
 | |
|             }
 | |
|             PassMode::Cast(cast, _) => {
 | |
|                 cast.attrs.apply_attrs_to_llfn(llvm::AttributePlace::ReturnValue, cx, llfn);
 | |
|             }
 | |
|             _ => {}
 | |
|         }
 | |
|         for arg in self.args.iter() {
 | |
|             match &arg.mode {
 | |
|                 PassMode::Ignore => {}
 | |
|                 PassMode::Indirect { attrs, extra_attrs: None, on_stack: true } => {
 | |
|                     let i = apply(attrs);
 | |
|                     let byval = llvm::CreateByValAttr(cx.llcx, arg.layout.llvm_type(cx));
 | |
|                     attributes::apply_to_llfn(llfn, llvm::AttributePlace::Argument(i), &[byval]);
 | |
|                 }
 | |
|                 PassMode::Direct(attrs)
 | |
|                 | PassMode::Indirect { attrs, extra_attrs: None, on_stack: false } => {
 | |
|                     apply(attrs);
 | |
|                 }
 | |
|                 PassMode::Indirect { attrs, extra_attrs: Some(extra_attrs), on_stack } => {
 | |
|                     assert!(!on_stack);
 | |
|                     apply(attrs);
 | |
|                     apply(extra_attrs);
 | |
|                 }
 | |
|                 PassMode::Pair(a, b) => {
 | |
|                     apply(a);
 | |
|                     apply(b);
 | |
|                 }
 | |
|                 PassMode::Cast(cast, pad_i32) => {
 | |
|                     if *pad_i32 {
 | |
|                         apply(&ArgAttributes::new());
 | |
|                     }
 | |
|                     apply(&cast.attrs);
 | |
|                 }
 | |
|             }
 | |
|         }
 | |
|     }
 | |
| 
 | |
|     fn apply_attrs_callsite(&self, bx: &mut Builder<'_, 'll, 'tcx>, callsite: &'ll Value) {
 | |
|         let mut func_attrs = SmallVec::<[_; 2]>::new();
 | |
|         if self.ret.layout.abi.is_uninhabited() {
 | |
|             func_attrs.push(llvm::AttributeKind::NoReturn.create_attr(bx.cx.llcx));
 | |
|         }
 | |
|         if !self.can_unwind {
 | |
|             func_attrs.push(llvm::AttributeKind::NoUnwind.create_attr(bx.cx.llcx));
 | |
|         }
 | |
|         attributes::apply_to_callsite(callsite, llvm::AttributePlace::Function, &{ func_attrs });
 | |
| 
 | |
|         let mut i = 0;
 | |
|         let mut apply = |cx: &CodegenCx<'_, '_>, attrs: &ArgAttributes| {
 | |
|             attrs.apply_attrs_to_callsite(llvm::AttributePlace::Argument(i), cx, callsite);
 | |
|             i += 1;
 | |
|             i - 1
 | |
|         };
 | |
|         match &self.ret.mode {
 | |
|             PassMode::Direct(attrs) => {
 | |
|                 attrs.apply_attrs_to_callsite(llvm::AttributePlace::ReturnValue, bx.cx, callsite);
 | |
|             }
 | |
|             PassMode::Indirect { attrs, extra_attrs: _, on_stack } => {
 | |
|                 assert!(!on_stack);
 | |
|                 let i = apply(bx.cx, attrs);
 | |
|                 let sret = llvm::CreateStructRetAttr(bx.cx.llcx, self.ret.layout.llvm_type(bx));
 | |
|                 attributes::apply_to_callsite(callsite, llvm::AttributePlace::Argument(i), &[sret]);
 | |
|             }
 | |
|             PassMode::Cast(cast, _) => {
 | |
|                 cast.attrs.apply_attrs_to_callsite(
 | |
|                     llvm::AttributePlace::ReturnValue,
 | |
|                     &bx.cx,
 | |
|                     callsite,
 | |
|                 );
 | |
|             }
 | |
|             _ => {}
 | |
|         }
 | |
|         if let abi::Abi::Scalar(scalar) = self.ret.layout.abi {
 | |
|             // If the value is a boolean, the range is 0..2 and that ultimately
 | |
|             // become 0..0 when the type becomes i1, which would be rejected
 | |
|             // by the LLVM verifier.
 | |
|             if let Int(..) = scalar.primitive() {
 | |
|                 if !scalar.is_bool() && !scalar.is_always_valid(bx) {
 | |
|                     bx.range_metadata(callsite, scalar.valid_range(bx));
 | |
|                 }
 | |
|             }
 | |
|         }
 | |
|         for arg in self.args.iter() {
 | |
|             match &arg.mode {
 | |
|                 PassMode::Ignore => {}
 | |
|                 PassMode::Indirect { attrs, extra_attrs: None, on_stack: true } => {
 | |
|                     let i = apply(bx.cx, attrs);
 | |
|                     let byval = llvm::CreateByValAttr(bx.cx.llcx, arg.layout.llvm_type(bx));
 | |
|                     attributes::apply_to_callsite(
 | |
|                         callsite,
 | |
|                         llvm::AttributePlace::Argument(i),
 | |
|                         &[byval],
 | |
|                     );
 | |
|                 }
 | |
|                 PassMode::Direct(attrs)
 | |
|                 | PassMode::Indirect { attrs, extra_attrs: None, on_stack: false } => {
 | |
|                     apply(bx.cx, attrs);
 | |
|                 }
 | |
|                 PassMode::Indirect { attrs, extra_attrs: Some(extra_attrs), on_stack: _ } => {
 | |
|                     apply(bx.cx, attrs);
 | |
|                     apply(bx.cx, extra_attrs);
 | |
|                 }
 | |
|                 PassMode::Pair(a, b) => {
 | |
|                     apply(bx.cx, a);
 | |
|                     apply(bx.cx, b);
 | |
|                 }
 | |
|                 PassMode::Cast(cast, pad_i32) => {
 | |
|                     if *pad_i32 {
 | |
|                         apply(bx.cx, &ArgAttributes::new());
 | |
|                     }
 | |
|                     apply(bx.cx, &cast.attrs);
 | |
|                 }
 | |
|             }
 | |
|         }
 | |
| 
 | |
|         let cconv = self.llvm_cconv();
 | |
|         if cconv != llvm::CCallConv {
 | |
|             llvm::SetInstructionCallConv(callsite, cconv);
 | |
|         }
 | |
| 
 | |
|         if self.conv == Conv::CCmseNonSecureCall {
 | |
|             // This will probably get ignored on all targets but those supporting the TrustZone-M
 | |
|             // extension (thumbv8m targets).
 | |
|             let cmse_nonsecure_call = llvm::CreateAttrString(bx.cx.llcx, "cmse_nonsecure_call");
 | |
|             attributes::apply_to_callsite(
 | |
|                 callsite,
 | |
|                 llvm::AttributePlace::Function,
 | |
|                 &[cmse_nonsecure_call],
 | |
|             );
 | |
|         }
 | |
| 
 | |
|         // Some intrinsics require that an elementtype attribute (with the pointee type of a
 | |
|         // pointer argument) is added to the callsite.
 | |
|         let element_type_index = unsafe { llvm::LLVMRustGetElementTypeArgIndex(callsite) };
 | |
|         if element_type_index >= 0 {
 | |
|             let arg_ty = self.args[element_type_index as usize].layout.ty;
 | |
|             let pointee_ty = arg_ty.builtin_deref(true).expect("Must be pointer argument").ty;
 | |
|             let element_type_attr = unsafe {
 | |
|                 llvm::LLVMRustCreateElementTypeAttr(bx.llcx, bx.layout_of(pointee_ty).llvm_type(bx))
 | |
|             };
 | |
|             attributes::apply_to_callsite(
 | |
|                 callsite,
 | |
|                 llvm::AttributePlace::Argument(element_type_index as u32),
 | |
|                 &[element_type_attr],
 | |
|             );
 | |
|         }
 | |
|     }
 | |
| }
 | |
| 
 | |
| impl<'tcx> AbiBuilderMethods<'tcx> for Builder<'_, '_, 'tcx> {
 | |
|     fn apply_attrs_callsite(&mut self, fn_abi: &FnAbi<'tcx, Ty<'tcx>>, callsite: Self::Value) {
 | |
|         fn_abi.apply_attrs_callsite(self, callsite)
 | |
|     }
 | |
| 
 | |
|     fn get_param(&mut self, index: usize) -> Self::Value {
 | |
|         llvm::get_param(self.llfn(), index as c_uint)
 | |
|     }
 | |
| }
 | 
