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			445 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			445 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
| use rustc_index::vec::IndexVec;
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| use rustc_target::abi::{Integer, Primitive};
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| use rustc_target::spec::{HasTargetSpec, Target};
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| 
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| use cranelift_codegen::ir::{InstructionData, Opcode, ValueDef};
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| 
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| use crate::prelude::*;
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| 
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| pub(crate) fn pointer_ty(tcx: TyCtxt<'_>) -> types::Type {
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|     match tcx.data_layout.pointer_size.bits() {
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|         16 => types::I16,
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|         32 => types::I32,
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|         64 => types::I64,
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|         bits => bug!("ptr_sized_integer: unknown pointer bit size {}", bits),
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|     }
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| }
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| 
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| pub(crate) fn scalar_to_clif_type(tcx: TyCtxt<'_>, scalar: Scalar) -> Type {
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|     match scalar.value {
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|         Primitive::Int(int, _sign) => match int {
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|             Integer::I8 => types::I8,
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|             Integer::I16 => types::I16,
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|             Integer::I32 => types::I32,
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|             Integer::I64 => types::I64,
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|             Integer::I128 => types::I128,
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|         },
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|         Primitive::F32 => types::F32,
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|         Primitive::F64 => types::F64,
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|         Primitive::Pointer => pointer_ty(tcx),
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|     }
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| }
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| 
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| fn clif_type_from_ty<'tcx>(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> Option<types::Type> {
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|     Some(match ty.kind() {
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|         ty::Bool => types::I8,
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|         ty::Uint(size) => match size {
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|             UintTy::U8 => types::I8,
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|             UintTy::U16 => types::I16,
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|             UintTy::U32 => types::I32,
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|             UintTy::U64 => types::I64,
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|             UintTy::U128 => types::I128,
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|             UintTy::Usize => pointer_ty(tcx),
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|         },
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|         ty::Int(size) => match size {
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|             IntTy::I8 => types::I8,
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|             IntTy::I16 => types::I16,
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|             IntTy::I32 => types::I32,
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|             IntTy::I64 => types::I64,
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|             IntTy::I128 => types::I128,
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|             IntTy::Isize => pointer_ty(tcx),
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|         },
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|         ty::Char => types::I32,
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|         ty::Float(size) => match size {
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|             FloatTy::F32 => types::F32,
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|             FloatTy::F64 => types::F64,
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|         },
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|         ty::FnPtr(_) => pointer_ty(tcx),
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|         ty::RawPtr(TypeAndMut {
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|             ty: pointee_ty,
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|             mutbl: _,
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|         })
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|         | ty::Ref(_, pointee_ty, _) => {
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|             if has_ptr_meta(tcx, pointee_ty) {
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|                 return None;
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|             } else {
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|                 pointer_ty(tcx)
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|             }
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|         }
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|         ty::Adt(adt_def, _) if adt_def.repr.simd() => {
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|             let (element, count) = match &tcx.layout_of(ParamEnv::reveal_all().and(ty)).unwrap().abi
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|             {
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|                 Abi::Vector { element, count } => (element.clone(), *count),
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|                 _ => unreachable!(),
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|             };
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| 
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|             match scalar_to_clif_type(tcx, element).by(u16::try_from(count).unwrap()) {
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|                 // Cranelift currently only implements icmp for 128bit vectors.
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|                 Some(vector_ty) if vector_ty.bits() == 128 => vector_ty,
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|                 _ => return None,
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|             }
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|         }
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|         ty::Param(_) => bug!("ty param {:?}", ty),
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|         _ => return None,
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|     })
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| }
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| 
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| fn clif_pair_type_from_ty<'tcx>(
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|     tcx: TyCtxt<'tcx>,
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|     ty: Ty<'tcx>,
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| ) -> Option<(types::Type, types::Type)> {
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|     Some(match ty.kind() {
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|         ty::Tuple(substs) if substs.len() == 2 => {
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|             let mut types = substs.types();
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|             let a = clif_type_from_ty(tcx, types.next().unwrap())?;
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|             let b = clif_type_from_ty(tcx, types.next().unwrap())?;
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|             if a.is_vector() || b.is_vector() {
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|                 return None;
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|             }
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|             (a, b)
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|         }
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|         ty::RawPtr(TypeAndMut {
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|             ty: pointee_ty,
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|             mutbl: _,
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|         })
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|         | ty::Ref(_, pointee_ty, _) => {
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|             if has_ptr_meta(tcx, pointee_ty) {
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|                 (pointer_ty(tcx), pointer_ty(tcx))
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|             } else {
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|                 return None;
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|             }
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|         }
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|         _ => return None,
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|     })
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| }
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| 
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| /// Is a pointer to this type a fat ptr?
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| pub(crate) fn has_ptr_meta<'tcx>(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> bool {
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|     let ptr_ty = tcx.mk_ptr(TypeAndMut {
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|         ty,
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|         mutbl: rustc_hir::Mutability::Not,
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|     });
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|     match &tcx
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|         .layout_of(ParamEnv::reveal_all().and(ptr_ty))
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|         .unwrap()
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|         .abi
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|     {
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|         Abi::Scalar(_) => false,
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|         Abi::ScalarPair(_, _) => true,
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|         abi => unreachable!("Abi of ptr to {:?} is {:?}???", ty, abi),
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|     }
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| }
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| 
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| pub(crate) fn codegen_icmp_imm(
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|     fx: &mut FunctionCx<'_, '_, impl Module>,
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|     intcc: IntCC,
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|     lhs: Value,
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|     rhs: i128,
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| ) -> Value {
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|     let lhs_ty = fx.bcx.func.dfg.value_type(lhs);
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|     if lhs_ty == types::I128 {
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|         // FIXME legalize `icmp_imm.i128` in Cranelift
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| 
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|         let (lhs_lsb, lhs_msb) = fx.bcx.ins().isplit(lhs);
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|         let (rhs_lsb, rhs_msb) = (rhs as u128 as u64 as i64, (rhs as u128 >> 64) as u64 as i64);
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| 
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|         match intcc {
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|             IntCC::Equal => {
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|                 let lsb_eq = fx.bcx.ins().icmp_imm(IntCC::Equal, lhs_lsb, rhs_lsb);
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|                 let msb_eq = fx.bcx.ins().icmp_imm(IntCC::Equal, lhs_msb, rhs_msb);
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|                 fx.bcx.ins().band(lsb_eq, msb_eq)
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|             }
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|             IntCC::NotEqual => {
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|                 let lsb_ne = fx.bcx.ins().icmp_imm(IntCC::NotEqual, lhs_lsb, rhs_lsb);
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|                 let msb_ne = fx.bcx.ins().icmp_imm(IntCC::NotEqual, lhs_msb, rhs_msb);
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|                 fx.bcx.ins().bor(lsb_ne, msb_ne)
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|             }
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|             _ => {
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|                 // if msb_eq {
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|                 //     lsb_cc
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|                 // } else {
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|                 //     msb_cc
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|                 // }
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| 
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|                 let msb_eq = fx.bcx.ins().icmp_imm(IntCC::Equal, lhs_msb, rhs_msb);
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|                 let lsb_cc = fx.bcx.ins().icmp_imm(intcc, lhs_lsb, rhs_lsb);
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|                 let msb_cc = fx.bcx.ins().icmp_imm(intcc, lhs_msb, rhs_msb);
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| 
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|                 fx.bcx.ins().select(msb_eq, lsb_cc, msb_cc)
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|             }
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|         }
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|     } else {
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|         let rhs = i64::try_from(rhs).expect("codegen_icmp_imm rhs out of range for <128bit int");
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|         fx.bcx.ins().icmp_imm(intcc, lhs, rhs)
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|     }
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| }
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| 
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| fn resolve_normal_value_imm(func: &Function, val: Value) -> Option<i64> {
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|     if let ValueDef::Result(inst, 0 /*param*/) = func.dfg.value_def(val) {
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|         if let InstructionData::UnaryImm {
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|             opcode: Opcode::Iconst,
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|             imm,
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|         } = func.dfg[inst]
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|         {
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|             Some(imm.into())
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|         } else {
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|             None
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|         }
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|     } else {
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|         None
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|     }
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| }
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| 
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| fn resolve_128bit_value_imm(func: &Function, val: Value) -> Option<u128> {
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|     let (lsb, msb) = if let ValueDef::Result(inst, 0 /*param*/) = func.dfg.value_def(val) {
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|         if let InstructionData::Binary {
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|             opcode: Opcode::Iconcat,
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|             args: [lsb, msb],
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|         } = func.dfg[inst]
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|         {
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|             (lsb, msb)
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|         } else {
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|             return None;
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|         }
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|     } else {
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|         return None;
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|     };
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| 
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|     let lsb = u128::from(resolve_normal_value_imm(func, lsb)? as u64);
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|     let msb = u128::from(resolve_normal_value_imm(func, msb)? as u64);
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| 
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|     Some(msb << 64 | lsb)
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| }
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| 
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| pub(crate) fn resolve_value_imm(func: &Function, val: Value) -> Option<u128> {
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|     if func.dfg.value_type(val) == types::I128 {
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|         resolve_128bit_value_imm(func, val)
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|     } else {
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|         resolve_normal_value_imm(func, val).map(|imm| u128::from(imm as u64))
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|     }
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| }
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| 
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| pub(crate) fn type_min_max_value(
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|     bcx: &mut FunctionBuilder<'_>,
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|     ty: Type,
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|     signed: bool,
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| ) -> (Value, Value) {
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|     assert!(ty.is_int());
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| 
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|     if ty == types::I128 {
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|         if signed {
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|             let min = i128::MIN as u128;
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|             let min_lsb = bcx.ins().iconst(types::I64, min as u64 as i64);
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|             let min_msb = bcx.ins().iconst(types::I64, (min >> 64) as u64 as i64);
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|             let min = bcx.ins().iconcat(min_lsb, min_msb);
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| 
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|             let max = i128::MIN as u128;
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|             let max_lsb = bcx.ins().iconst(types::I64, max as u64 as i64);
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|             let max_msb = bcx.ins().iconst(types::I64, (max >> 64) as u64 as i64);
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|             let max = bcx.ins().iconcat(max_lsb, max_msb);
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| 
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|             return (min, max);
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|         } else {
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|             let min_half = bcx.ins().iconst(types::I64, 0);
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|             let min = bcx.ins().iconcat(min_half, min_half);
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| 
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|             let max_half = bcx.ins().iconst(types::I64, u64::MAX as i64);
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|             let max = bcx.ins().iconcat(max_half, max_half);
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| 
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|             return (min, max);
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|         }
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|     }
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| 
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|     let min = match (ty, signed) {
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|         (types::I8, false) | (types::I16, false) | (types::I32, false) | (types::I64, false) => {
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|             0i64
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|         }
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|         (types::I8, true) => i64::from(i8::MIN),
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|         (types::I16, true) => i64::from(i16::MIN),
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|         (types::I32, true) => i64::from(i32::MIN),
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|         (types::I64, true) => i64::MIN,
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|         _ => unreachable!(),
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|     };
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| 
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|     let max = match (ty, signed) {
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|         (types::I8, false) => i64::from(u8::MAX),
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|         (types::I16, false) => i64::from(u16::MAX),
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|         (types::I32, false) => i64::from(u32::MAX),
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|         (types::I64, false) => u64::MAX as i64,
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|         (types::I8, true) => i64::from(i8::MAX),
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|         (types::I16, true) => i64::from(i16::MAX),
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|         (types::I32, true) => i64::from(i32::MAX),
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|         (types::I64, true) => i64::MAX,
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|         _ => unreachable!(),
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|     };
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| 
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|     let (min, max) = (bcx.ins().iconst(ty, min), bcx.ins().iconst(ty, max));
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| 
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|     (min, max)
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| }
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| 
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| pub(crate) fn type_sign(ty: Ty<'_>) -> bool {
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|     match ty.kind() {
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|         ty::Ref(..) | ty::RawPtr(..) | ty::FnPtr(..) | ty::Char | ty::Uint(..) | ty::Bool => false,
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|         ty::Int(..) => true,
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|         ty::Float(..) => false, // `signed` is unused for floats
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|         _ => panic!("{}", ty),
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|     }
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| }
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| 
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| pub(crate) struct FunctionCx<'clif, 'tcx, M: Module> {
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|     pub(crate) cx: &'clif mut crate::CodegenCx<'tcx, M>,
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|     pub(crate) tcx: TyCtxt<'tcx>,
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|     pub(crate) pointer_type: Type, // Cached from module
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| 
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|     pub(crate) instance: Instance<'tcx>,
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|     pub(crate) mir: &'tcx Body<'tcx>,
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| 
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|     pub(crate) bcx: FunctionBuilder<'clif>,
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|     pub(crate) block_map: IndexVec<BasicBlock, Block>,
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|     pub(crate) local_map: IndexVec<Local, CPlace<'tcx>>,
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| 
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|     /// When `#[track_caller]` is used, the implicit caller location is stored in this variable.
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|     pub(crate) caller_location: Option<CValue<'tcx>>,
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| 
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|     /// See [`crate::optimize::code_layout`] for more information.
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|     pub(crate) cold_blocks: EntitySet<Block>,
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| 
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|     pub(crate) clif_comments: crate::pretty_clif::CommentWriter,
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|     pub(crate) source_info_set: indexmap::IndexSet<SourceInfo>,
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| 
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|     /// This should only be accessed by `CPlace::new_var`.
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|     pub(crate) next_ssa_var: u32,
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| 
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|     pub(crate) inline_asm_index: u32,
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| }
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| 
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| impl<'tcx, M: Module> LayoutOf for FunctionCx<'_, 'tcx, M> {
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|     type Ty = Ty<'tcx>;
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|     type TyAndLayout = TyAndLayout<'tcx>;
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| 
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|     fn layout_of(&self, ty: Ty<'tcx>) -> TyAndLayout<'tcx> {
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|         assert!(!ty.still_further_specializable());
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|         self.tcx
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|             .layout_of(ParamEnv::reveal_all().and(&ty))
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|             .unwrap_or_else(|e| {
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|                 if let layout::LayoutError::SizeOverflow(_) = e {
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|                     self.tcx.sess.fatal(&e.to_string())
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|                 } else {
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|                     bug!("failed to get layout for `{}`: {}", ty, e)
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|                 }
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|             })
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|     }
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| }
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| 
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| impl<'tcx, M: Module> layout::HasTyCtxt<'tcx> for FunctionCx<'_, 'tcx, M> {
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|     fn tcx<'b>(&'b self) -> TyCtxt<'tcx> {
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|         self.tcx
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|     }
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| }
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| 
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| impl<'tcx, M: Module> rustc_target::abi::HasDataLayout for FunctionCx<'_, 'tcx, M> {
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|     fn data_layout(&self) -> &rustc_target::abi::TargetDataLayout {
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|         &self.tcx.data_layout
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|     }
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| }
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| 
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| impl<'tcx, M: Module> layout::HasParamEnv<'tcx> for FunctionCx<'_, 'tcx, M> {
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|     fn param_env(&self) -> ParamEnv<'tcx> {
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|         ParamEnv::reveal_all()
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|     }
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| }
 | |
| 
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| impl<'tcx, M: Module> HasTargetSpec for FunctionCx<'_, 'tcx, M> {
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|     fn target_spec(&self) -> &Target {
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|         &self.tcx.sess.target
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|     }
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| }
 | |
| 
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| impl<'tcx, M: Module> FunctionCx<'_, 'tcx, M> {
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|     pub(crate) fn monomorphize<T>(&self, value: T) -> T
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|     where
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|         T: TypeFoldable<'tcx> + Copy,
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|     {
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|         self.instance.subst_mir_and_normalize_erasing_regions(
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|             self.tcx,
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|             ty::ParamEnv::reveal_all(),
 | |
|             value
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|         )
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|     }
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| 
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|     pub(crate) fn clif_type(&self, ty: Ty<'tcx>) -> Option<Type> {
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|         clif_type_from_ty(self.tcx, ty)
 | |
|     }
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| 
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|     pub(crate) fn clif_pair_type(&self, ty: Ty<'tcx>) -> Option<(Type, Type)> {
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|         clif_pair_type_from_ty(self.tcx, ty)
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|     }
 | |
| 
 | |
|     pub(crate) fn get_block(&self, bb: BasicBlock) -> Block {
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|         *self.block_map.get(bb).unwrap()
 | |
|     }
 | |
| 
 | |
|     pub(crate) fn get_local_place(&mut self, local: Local) -> CPlace<'tcx> {
 | |
|         *self.local_map.get(local).unwrap_or_else(|| {
 | |
|             panic!("Local {:?} doesn't exist", local);
 | |
|         })
 | |
|     }
 | |
| 
 | |
|     pub(crate) fn set_debug_loc(&mut self, source_info: mir::SourceInfo) {
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|         let (index, _) = self.source_info_set.insert_full(source_info);
 | |
|         self.bcx.set_srcloc(SourceLoc::new(index as u32));
 | |
|     }
 | |
| 
 | |
|     pub(crate) fn get_caller_location(&mut self, span: Span) -> CValue<'tcx> {
 | |
|         if let Some(loc) = self.caller_location {
 | |
|             // `#[track_caller]` is used; return caller location instead of current location.
 | |
|             return loc;
 | |
|         }
 | |
| 
 | |
|         let topmost = span.ctxt().outer_expn().expansion_cause().unwrap_or(span);
 | |
|         let caller = self.tcx.sess.source_map().lookup_char_pos(topmost.lo());
 | |
|         let const_loc = self.tcx.const_caller_location((
 | |
|             rustc_span::symbol::Symbol::intern(&caller.file.name.to_string()),
 | |
|             caller.line as u32,
 | |
|             caller.col_display as u32 + 1,
 | |
|         ));
 | |
|         crate::constant::codegen_const_value(self, const_loc, self.tcx.caller_location_ty())
 | |
|     }
 | |
| 
 | |
|     pub(crate) fn triple(&self) -> &target_lexicon::Triple {
 | |
|         self.cx.module.isa().triple()
 | |
|     }
 | |
| 
 | |
|     pub(crate) fn anonymous_str(&mut self, prefix: &str, msg: &str) -> Value {
 | |
|         use std::collections::hash_map::DefaultHasher;
 | |
|         use std::hash::{Hash, Hasher};
 | |
| 
 | |
|         let mut hasher = DefaultHasher::new();
 | |
|         msg.hash(&mut hasher);
 | |
|         let msg_hash = hasher.finish();
 | |
|         let mut data_ctx = DataContext::new();
 | |
|         data_ctx.define(msg.as_bytes().to_vec().into_boxed_slice());
 | |
|         let msg_id = self
 | |
|             .cx
 | |
|             .module
 | |
|             .declare_data(
 | |
|                 &format!("__{}_{:08x}", prefix, msg_hash),
 | |
|                 Linkage::Local,
 | |
|                 false,
 | |
|                 false,
 | |
|             )
 | |
|             .unwrap();
 | |
| 
 | |
|         // Ignore DuplicateDefinition error, as the data will be the same
 | |
|         let _ = self.cx.module.define_data(msg_id, &data_ctx);
 | |
| 
 | |
|         let local_msg_id = self.cx.module.declare_data_in_func(msg_id, self.bcx.func);
 | |
|         #[cfg(debug_assertions)]
 | |
|         {
 | |
|             self.add_comment(local_msg_id, msg);
 | |
|         }
 | |
|         self.bcx.ins().global_value(self.pointer_type, local_msg_id)
 | |
|     }
 | |
| }
 | 
