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			405 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			405 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
| use gccjit::{GlobalKind, LValue, RValue, ToRValue, Type};
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| use rustc_codegen_ssa::traits::{BaseTypeMethods, ConstMethods, DerivedTypeMethods, StaticMethods};
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| use rustc_hir as hir;
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| use rustc_hir::Node;
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| use rustc_middle::{bug, span_bug};
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| use rustc_middle::middle::codegen_fn_attrs::{CodegenFnAttrFlags, CodegenFnAttrs};
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| use rustc_middle::mir::mono::MonoItem;
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| use rustc_middle::ty::{self, Instance, Ty};
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| use rustc_middle::ty::layout::LayoutOf;
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| use rustc_middle::mir::interpret::{self, ConstAllocation, ErrorHandled, Scalar as InterpScalar, read_target_uint};
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| use rustc_span::Span;
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| use rustc_span::def_id::DefId;
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| use rustc_target::abi::{self, Align, HasDataLayout, Primitive, Size, WrappingRange};
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| 
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| use crate::base;
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| use crate::context::CodegenCx;
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| use crate::type_of::LayoutGccExt;
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| 
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| impl<'gcc, 'tcx> CodegenCx<'gcc, 'tcx> {
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|     pub fn const_bitcast(&self, value: RValue<'gcc>, typ: Type<'gcc>) -> RValue<'gcc> {
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|         if value.get_type() == self.bool_type.make_pointer() {
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|             if let Some(pointee) = typ.get_pointee() {
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|                 if pointee.dyncast_vector().is_some() {
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|                     panic!()
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|                 }
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|             }
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|         }
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|         self.context.new_bitcast(None, value, typ)
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|     }
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| }
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| 
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| impl<'gcc, 'tcx> StaticMethods for CodegenCx<'gcc, 'tcx> {
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|     fn static_addr_of(&self, cv: RValue<'gcc>, align: Align, kind: Option<&str>) -> RValue<'gcc> {
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|         // TODO(antoyo): implement a proper rvalue comparison in libgccjit instead of doing the
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|         // following:
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|         for (value, variable) in &*self.const_globals.borrow() {
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|             if format!("{:?}", value) == format!("{:?}", cv) {
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|                 if let Some(global_variable) = self.global_lvalues.borrow().get(variable) {
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|                     let alignment = align.bits() as i32;
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|                     if alignment > global_variable.get_alignment() {
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|                         global_variable.set_alignment(alignment);
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|                     }
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|                 }
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|                 return *variable;
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|             }
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|         }
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|         let global_value = self.static_addr_of_mut(cv, align, kind);
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|         // TODO(antoyo): set global constant.
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|         self.const_globals.borrow_mut().insert(cv, global_value);
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|         global_value
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|     }
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| 
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|     fn codegen_static(&self, def_id: DefId, is_mutable: bool) {
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|         let attrs = self.tcx.codegen_fn_attrs(def_id);
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| 
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|         let value =
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|             match codegen_static_initializer(&self, def_id) {
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|                 Ok((value, _)) => value,
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|                 // Error has already been reported
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|                 Err(_) => return,
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|             };
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| 
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|         let global = self.get_static(def_id);
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| 
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|         // boolean SSA values are i1, but they have to be stored in i8 slots,
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|         // otherwise some LLVM optimization passes don't work as expected
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|         let val_llty = self.val_ty(value);
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|         let value =
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|             if val_llty == self.type_i1() {
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|                 unimplemented!();
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|             }
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|             else {
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|                 value
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|             };
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| 
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|         let instance = Instance::mono(self.tcx, def_id);
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|         let ty = instance.ty(self.tcx, ty::ParamEnv::reveal_all());
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|         let gcc_type = self.layout_of(ty).gcc_type(self, true);
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| 
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|         // TODO(antoyo): set alignment.
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| 
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|         let value =
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|             if value.get_type() != gcc_type {
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|                 self.context.new_bitcast(None, value, gcc_type)
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|             }
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|             else {
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|                 value
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|             };
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|         global.global_set_initializer_rvalue(value);
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| 
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|         // As an optimization, all shared statics which do not have interior
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|         // mutability are placed into read-only memory.
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|         if !is_mutable {
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|             if self.type_is_freeze(ty) {
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|                 // TODO(antoyo): set global constant.
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|             }
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|         }
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| 
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|         if attrs.flags.contains(CodegenFnAttrFlags::THREAD_LOCAL) {
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|             // Do not allow LLVM to change the alignment of a TLS on macOS.
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|             //
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|             // By default a global's alignment can be freely increased.
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|             // This allows LLVM to generate more performant instructions
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|             // e.g., using load-aligned into a SIMD register.
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|             //
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|             // However, on macOS 10.10 or below, the dynamic linker does not
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|             // respect any alignment given on the TLS (radar 24221680).
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|             // This will violate the alignment assumption, and causing segfault at runtime.
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|             //
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|             // This bug is very easy to trigger. In `println!` and `panic!`,
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|             // the `LOCAL_STDOUT`/`LOCAL_STDERR` handles are stored in a TLS,
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|             // which the values would be `mem::replace`d on initialization.
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|             // The implementation of `mem::replace` will use SIMD
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|             // whenever the size is 32 bytes or higher. LLVM notices SIMD is used
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|             // and tries to align `LOCAL_STDOUT`/`LOCAL_STDERR` to a 32-byte boundary,
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|             // which macOS's dyld disregarded and causing crashes
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|             // (see issues #51794, #51758, #50867, #48866 and #44056).
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|             //
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|             // To workaround the bug, we trick LLVM into not increasing
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|             // the global's alignment by explicitly assigning a section to it
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|             // (equivalent to automatically generating a `#[link_section]` attribute).
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|             // See the comment in the `GlobalValue::canIncreaseAlignment()` function
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|             // of `lib/IR/Globals.cpp` for why this works.
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|             //
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|             // When the alignment is not increased, the optimized `mem::replace`
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|             // will use load-unaligned instructions instead, and thus avoiding the crash.
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|             //
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|             // We could remove this hack whenever we decide to drop macOS 10.10 support.
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|             if self.tcx.sess.target.options.is_like_osx {
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|                 // The `inspect` method is okay here because we checked relocations, and
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|                 // because we are doing this access to inspect the final interpreter state
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|                 // (not as part of the interpreter execution).
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|                 //
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|                 // FIXME: This check requires that the (arbitrary) value of undefined bytes
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|                 // happens to be zero. Instead, we should only check the value of defined bytes
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|                 // and set all undefined bytes to zero if this allocation is headed for the
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|                 // BSS.
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|                 unimplemented!();
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|             }
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|         }
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| 
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|         // Wasm statics with custom link sections get special treatment as they
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|         // go into custom sections of the wasm executable.
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|         if self.tcx.sess.opts.target_triple.triple().starts_with("wasm32") {
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|             if let Some(_section) = attrs.link_section {
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|                 unimplemented!();
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|             }
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|         } else {
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|             // TODO(antoyo): set link section.
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|         }
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| 
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|         if attrs.flags.contains(CodegenFnAttrFlags::USED) || attrs.flags.contains(CodegenFnAttrFlags::USED_LINKER) {
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|             self.add_used_global(global.to_rvalue());
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|         }
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|     }
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| 
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|     /// Add a global value to a list to be stored in the `llvm.used` variable, an array of i8*.
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|     fn add_used_global(&self, _global: RValue<'gcc>) {
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|         // TODO(antoyo)
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|     }
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| 
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|     fn add_compiler_used_global(&self, _global: RValue<'gcc>) {
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|         // TODO(antoyo)
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|     }
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| }
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| 
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| impl<'gcc, 'tcx> CodegenCx<'gcc, 'tcx> {
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|     pub fn static_addr_of_mut(&self, cv: RValue<'gcc>, align: Align, kind: Option<&str>) -> RValue<'gcc> {
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|         let global =
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|             match kind {
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|                 Some(kind) if !self.tcx.sess.fewer_names() => {
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|                     let name = self.generate_local_symbol_name(kind);
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|                     // TODO(antoyo): check if it's okay that no link_section is set.
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|                     // TODO(antoyo): set alignment here as well.
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|                     let global = self.declare_private_global(&name[..], self.val_ty(cv));
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|                     global
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|                 }
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|                 _ => {
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|                     let typ = self.val_ty(cv).get_aligned(align.bytes());
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|                     let global = self.declare_unnamed_global(typ);
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|                     global
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|                 },
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|             };
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|         global.global_set_initializer_rvalue(cv);
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|         // TODO(antoyo): set unnamed address.
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|         let rvalue = global.get_address(None);
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|         self.global_lvalues.borrow_mut().insert(rvalue, global);
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|         rvalue
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|     }
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| 
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|     pub fn get_static(&self, def_id: DefId) -> LValue<'gcc> {
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|         let instance = Instance::mono(self.tcx, def_id);
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|         let fn_attrs = self.tcx.codegen_fn_attrs(def_id);
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|         if let Some(&global) = self.instances.borrow().get(&instance) {
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|             return global;
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|         }
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| 
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|         let defined_in_current_codegen_unit =
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|             self.codegen_unit.items().contains_key(&MonoItem::Static(def_id));
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|         assert!(
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|             !defined_in_current_codegen_unit,
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|             "consts::get_static() should always hit the cache for \
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|                  statics defined in the same CGU, but did not for `{:?}`",
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|             def_id
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|         );
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| 
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|         let ty = instance.ty(self.tcx, ty::ParamEnv::reveal_all());
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|         let sym = self.tcx.symbol_name(instance).name;
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| 
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|         let global =
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|             if let Some(def_id) = def_id.as_local() {
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|                 let id = self.tcx.hir().local_def_id_to_hir_id(def_id);
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|                 let llty = self.layout_of(ty).gcc_type(self, true);
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|                 // FIXME: refactor this to work without accessing the HIR
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|                 let global = match self.tcx.hir().get(id) {
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|                     Node::Item(&hir::Item { span, kind: hir::ItemKind::Static(..), .. }) => {
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|                         if let Some(global) = self.get_declared_value(&sym) {
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|                             if self.val_ty(global) != self.type_ptr_to(llty) {
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|                                 span_bug!(span, "Conflicting types for static");
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|                             }
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|                         }
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| 
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|                         let is_tls = fn_attrs.flags.contains(CodegenFnAttrFlags::THREAD_LOCAL);
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|                         let global = self.declare_global(
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|                             &sym,
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|                             llty,
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|                             GlobalKind::Exported,
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|                             is_tls,
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|                             fn_attrs.link_section,
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|                         );
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| 
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|                         if !self.tcx.is_reachable_non_generic(def_id) {
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|                             // TODO(antoyo): set visibility.
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|                         }
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| 
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|                         global
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|                     }
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| 
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|                     Node::ForeignItem(&hir::ForeignItem {
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|                         span,
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|                         kind: hir::ForeignItemKind::Static(..),
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|                         ..
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|                     }) => {
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|                         let fn_attrs = self.tcx.codegen_fn_attrs(def_id);
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|                         check_and_apply_linkage(&self, &fn_attrs, ty, sym, span)
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|                     }
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| 
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|                     item => bug!("get_static: expected static, found {:?}", item),
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|                 };
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| 
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|                 global
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|             }
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|             else {
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|                 // FIXME(nagisa): perhaps the map of externs could be offloaded to llvm somehow?
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|                 //debug!("get_static: sym={} item_attr={:?}", sym, self.tcx.item_attrs(def_id));
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| 
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|                 let attrs = self.tcx.codegen_fn_attrs(def_id);
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|                 let span = self.tcx.def_span(def_id);
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|                 let global = check_and_apply_linkage(&self, &attrs, ty, sym, span);
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| 
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|                 let needs_dll_storage_attr = false; // TODO(antoyo)
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| 
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|                 // If this assertion triggers, there's something wrong with commandline
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|                 // argument validation.
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|                 debug_assert!(
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|                     !(self.tcx.sess.opts.cg.linker_plugin_lto.enabled()
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|                         && self.tcx.sess.target.options.is_like_msvc
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|                         && self.tcx.sess.opts.cg.prefer_dynamic)
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|                 );
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| 
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|                 if needs_dll_storage_attr {
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|                     // This item is external but not foreign, i.e., it originates from an external Rust
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|                     // crate. Since we don't know whether this crate will be linked dynamically or
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|                     // statically in the final application, we always mark such symbols as 'dllimport'.
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|                     // If final linkage happens to be static, we rely on compiler-emitted __imp_ stubs
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|                     // to make things work.
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|                     //
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|                     // However, in some scenarios we defer emission of statics to downstream
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|                     // crates, so there are cases where a static with an upstream DefId
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|                     // is actually present in the current crate. We can find out via the
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|                     // is_codegened_item query.
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|                     if !self.tcx.is_codegened_item(def_id) {
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|                         unimplemented!();
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|                     }
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|                 }
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|                 global
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|             };
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| 
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|         // TODO(antoyo): set dll storage class.
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| 
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|         self.instances.borrow_mut().insert(instance, global);
 | |
|         global
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|     }
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| }
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| 
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| pub fn const_alloc_to_gcc<'gcc, 'tcx>(cx: &CodegenCx<'gcc, 'tcx>, alloc: ConstAllocation<'tcx>) -> RValue<'gcc> {
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|     let alloc = alloc.inner();
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|     let mut llvals = Vec::with_capacity(alloc.relocations().len() + 1);
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|     let dl = cx.data_layout();
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|     let pointer_size = dl.pointer_size.bytes() as usize;
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| 
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|     let mut next_offset = 0;
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|     for &(offset, alloc_id) in alloc.relocations().iter() {
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|         let offset = offset.bytes();
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|         assert_eq!(offset as usize as u64, offset);
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|         let offset = offset as usize;
 | |
|         if offset > next_offset {
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|             // This `inspect` is okay since we have checked that it is not within a relocation, it
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|             // is within the bounds of the allocation, and it doesn't affect interpreter execution
 | |
|             // (we inspect the result after interpreter execution). Any undef byte is replaced with
 | |
|             // some arbitrary byte value.
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|             //
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|             // FIXME: relay undef bytes to codegen as undef const bytes
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|             let bytes = alloc.inspect_with_uninit_and_ptr_outside_interpreter(next_offset..offset);
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|             llvals.push(cx.const_bytes(bytes));
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|         }
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|         let ptr_offset =
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|             read_target_uint( dl.endian,
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|                 // This `inspect` is okay since it is within the bounds of the allocation, it doesn't
 | |
|                 // affect interpreter execution (we inspect the result after interpreter execution),
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|                 // and we properly interpret the relocation as a relocation pointer offset.
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|                 alloc.inspect_with_uninit_and_ptr_outside_interpreter(offset..(offset + pointer_size)),
 | |
|             )
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|             .expect("const_alloc_to_llvm: could not read relocation pointer")
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|             as u64;
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|         llvals.push(cx.scalar_to_backend(
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|             InterpScalar::from_pointer(
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|                 interpret::Pointer::new(alloc_id, Size::from_bytes(ptr_offset)),
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|                 &cx.tcx,
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|             ),
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|             abi::Scalar { value: Primitive::Pointer, valid_range: WrappingRange { start: 0, end: !0 } },
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|             cx.type_i8p(),
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|         ));
 | |
|         next_offset = offset + pointer_size;
 | |
|     }
 | |
|     if alloc.len() >= next_offset {
 | |
|         let range = next_offset..alloc.len();
 | |
|         // This `inspect` is okay since we have check that it is after all relocations, it is
 | |
|         // within the bounds of the allocation, and it doesn't affect interpreter execution (we
 | |
|         // inspect the result after interpreter execution). Any undef byte is replaced with some
 | |
|         // arbitrary byte value.
 | |
|         //
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|         // FIXME: relay undef bytes to codegen as undef const bytes
 | |
|         let bytes = alloc.inspect_with_uninit_and_ptr_outside_interpreter(range);
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|         llvals.push(cx.const_bytes(bytes));
 | |
|     }
 | |
| 
 | |
|     cx.const_struct(&llvals, true)
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| }
 | |
| 
 | |
| pub fn codegen_static_initializer<'gcc, 'tcx>(cx: &CodegenCx<'gcc, 'tcx>, def_id: DefId) -> Result<(RValue<'gcc>, ConstAllocation<'tcx>), ErrorHandled> {
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|     let alloc = cx.tcx.eval_static_initializer(def_id)?;
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|     Ok((const_alloc_to_gcc(cx, alloc), alloc))
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| }
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| 
 | |
| fn check_and_apply_linkage<'gcc, 'tcx>(cx: &CodegenCx<'gcc, 'tcx>, attrs: &CodegenFnAttrs, ty: Ty<'tcx>, sym: &str, span: Span) -> LValue<'gcc> {
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|     let is_tls = attrs.flags.contains(CodegenFnAttrFlags::THREAD_LOCAL);
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|     let llty = cx.layout_of(ty).gcc_type(cx, true);
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|     if let Some(linkage) = attrs.linkage {
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|         // If this is a static with a linkage specified, then we need to handle
 | |
|         // it a little specially. The typesystem prevents things like &T and
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|         // extern "C" fn() from being non-null, so we can't just declare a
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|         // static and call it a day. Some linkages (like weak) will make it such
 | |
|         // that the static actually has a null value.
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|         let llty2 =
 | |
|             if let ty::RawPtr(ref mt) = ty.kind() {
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|                 cx.layout_of(mt.ty).gcc_type(cx, true)
 | |
|             }
 | |
|             else {
 | |
|                 cx.sess().span_fatal(
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|                     span,
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|                     "must have type `*const T` or `*mut T` due to `#[linkage]` attribute",
 | |
|                 )
 | |
|             };
 | |
|         // Declare a symbol `foo` with the desired linkage.
 | |
|         let global1 = cx.declare_global_with_linkage(&sym, llty2, base::global_linkage_to_gcc(linkage));
 | |
| 
 | |
|         // Declare an internal global `extern_with_linkage_foo` which
 | |
|         // is initialized with the address of `foo`.  If `foo` is
 | |
|         // discarded during linking (for example, if `foo` has weak
 | |
|         // linkage and there are no definitions), then
 | |
|         // `extern_with_linkage_foo` will instead be initialized to
 | |
|         // zero.
 | |
|         let mut real_name = "_rust_extern_with_linkage_".to_string();
 | |
|         real_name.push_str(&sym);
 | |
|         let global2 = cx.define_global(&real_name, llty, is_tls, attrs.link_section);
 | |
|         // TODO(antoyo): set linkage.
 | |
|         global2.global_set_initializer_rvalue(global1.get_address(None));
 | |
|         // TODO(antoyo): use global_set_initializer() when it will work.
 | |
|         global2
 | |
|     }
 | |
|     else {
 | |
|         // Generate an external declaration.
 | |
|         // FIXME(nagisa): investigate whether it can be changed into define_global
 | |
| 
 | |
|         // Thread-local statics in some other crate need to *always* be linked
 | |
|         // against in a thread-local fashion, so we need to be sure to apply the
 | |
|         // thread-local attribute locally if it was present remotely. If we
 | |
|         // don't do this then linker errors can be generated where the linker
 | |
|         // complains that one object files has a thread local version of the
 | |
|         // symbol and another one doesn't.
 | |
|         cx.declare_global(&sym, llty, GlobalKind::Imported, is_tls, attrs.link_section)
 | |
|     }
 | |
| }
 | 
