64b6b5b6ce
The query accept arbitrary DefIds, not just owner DefIds. The return can be an `Option` because if there are no nodes, then it doesn't matter whether it's due to NonOwner or Phantom. Also rename the query to `opt_hir_owner_nodes`.
333 lines
10 KiB
Rust
333 lines
10 KiB
Rust
// This test case tests the incremental compilation hash (ICH) implementation
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// for struct definitions.
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// The general pattern followed here is: Change one thing between rev1 and rev2
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// and make sure that the hash has changed, then change nothing between rev2 and
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// rev3 and make sure that the hash has not changed.
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// We also test the ICH for struct definitions exported in metadata. Same as
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// above, we want to make sure that the change between rev1 and rev2 also
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// results in a change of the ICH for the struct's metadata, and that it stays
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// the same between rev2 and rev3.
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// build-pass (FIXME(62277): could be check-pass?)
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// revisions: cfail1 cfail2 cfail3 cfail4 cfail5 cfail6
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// compile-flags: -Z query-dep-graph -O
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// [cfail1]compile-flags: -Zincremental-ignore-spans
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// [cfail2]compile-flags: -Zincremental-ignore-spans
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// [cfail3]compile-flags: -Zincremental-ignore-spans
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#![allow(warnings)]
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#![feature(rustc_attrs)]
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#![crate_type="rlib"]
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// Layout ----------------------------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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pub struct LayoutPacked;
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="type_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="type_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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#[repr(packed)]
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pub struct LayoutPacked;
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#[cfg(any(cfail1,cfail4))]
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struct LayoutC;
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="type_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="type_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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#[repr(C)]
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struct LayoutC;
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// Tuple Struct Change Field Type ----------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct TupleStructFieldType(i32);
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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// Note that changing the type of a field does not change the type of the struct or enum, but
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// adding/removing fields or changing a fields name or visibility does.
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struct TupleStructFieldType(
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u32
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);
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// Tuple Struct Add Field ------------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct TupleStructAddField(i32);
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct TupleStructAddField(
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i32,
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u32
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);
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// Tuple Struct Field Visibility -----------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct TupleStructFieldVisibility( char);
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(cfg="cfail2", except="type_of")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(cfg="cfail5", except="opt_hir_owner_nodes,type_of")]
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#[rustc_clean(cfg="cfail6")]
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struct TupleStructFieldVisibility(pub char);
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// Record Struct Field Type ----------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct RecordStructFieldType { x: f32 }
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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// Note that changing the type of a field does not change the type of the struct or enum, but
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// adding/removing fields or changing a fields name or visibility does.
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struct RecordStructFieldType {
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x: u64
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}
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// Record Struct Field Name ----------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct RecordStructFieldName { x: f32 }
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct RecordStructFieldName { y: f32 }
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// Record Struct Add Field -----------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct RecordStructAddField { x: f32 }
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct RecordStructAddField {
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x: f32,
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y: () }
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// Record Struct Field Visibility ----------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct RecordStructFieldVisibility { x: f32 }
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(cfg="cfail2", except="type_of")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(cfg="cfail5", except="opt_hir_owner_nodes,type_of")]
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#[rustc_clean(cfg="cfail6")]
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struct RecordStructFieldVisibility { pub x: f32 }
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// Add Lifetime Parameter ------------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct AddLifetimeParameter<'a>(&'a f32, &'a f64);
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of,generics_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of,generics_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct AddLifetimeParameter<'a, 'b>(&'a f32, &'b f64);
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// Add Lifetime Parameter Bound ------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct AddLifetimeParameterBound<'a, 'b>(&'a f32, &'b f64);
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct AddLifetimeParameterBound<'a, 'b: 'a>(
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&'a f32,
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&'b f64
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);
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#[cfg(any(cfail1,cfail4))]
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struct AddLifetimeParameterBoundWhereClause<'a, 'b>(&'a f32, &'b f64);
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct AddLifetimeParameterBoundWhereClause<'a, 'b>(
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&'a f32,
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&'b f64)
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where 'b: 'a;
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// Add Type Parameter ----------------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct AddTypeParameter<T1>(T1, T1);
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of,generics_of,predicates_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,type_of,generics_of,predicates_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct AddTypeParameter<T1, T2>(
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// The field contains the parent's Generics, so it's dirty even though its
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// type hasn't changed.
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T1,
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T2
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);
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// Add Type Parameter Bound ----------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct AddTypeParameterBound<T>(T);
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct AddTypeParameterBound<T: Send>(
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T
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);
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#[cfg(any(cfail1,cfail4))]
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struct AddTypeParameterBoundWhereClause<T>(T);
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct AddTypeParameterBoundWhereClause<T>(
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T
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) where T: Sync;
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// Empty struct ----------------------------------------------------------------
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// Since we cannot change anything in this case, we just make sure that the
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// fingerprint is stable (i.e., that there are no random influences like memory
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// addresses taken into account by the hashing algorithm).
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// Note: there is no #[cfg(...)], so this is ALWAYS compiled
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#[rustc_clean(cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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pub struct EmptyStruct;
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// Visibility ------------------------------------------------------------------
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#[cfg(any(cfail1,cfail4))]
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struct Visibility;
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#[cfg(not(any(cfail1,cfail4)))]
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#[rustc_clean(cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(cfg="cfail5", except="opt_hir_owner_nodes")]
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#[rustc_clean(cfg="cfail6")]
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pub struct Visibility;
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struct ReferencedType1;
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struct ReferencedType2;
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// Tuple Struct Change Field Type Indirectly -----------------------------------
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mod tuple_struct_change_field_type_indirectly {
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#[cfg(any(cfail1,cfail4))]
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use super::ReferencedType1 as FieldType;
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#[cfg(not(any(cfail1,cfail4)))]
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use super::ReferencedType2 as FieldType;
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#[rustc_clean(except="opt_hir_owner_nodes", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct TupleStruct(
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FieldType
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);
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}
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// Record Struct Change Field Type Indirectly -----------------------------------
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mod record_struct_change_field_type_indirectly {
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#[cfg(any(cfail1,cfail4))]
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use super::ReferencedType1 as FieldType;
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#[cfg(not(any(cfail1,cfail4)))]
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use super::ReferencedType2 as FieldType;
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#[rustc_clean(except="opt_hir_owner_nodes", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct RecordStruct {
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_x: FieldType
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}
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}
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trait ReferencedTrait1 {}
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trait ReferencedTrait2 {}
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// Change Trait Bound Indirectly -----------------------------------------------
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mod change_trait_bound_indirectly {
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#[cfg(any(cfail1,cfail4))]
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use super::ReferencedTrait1 as Trait;
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#[cfg(not(any(cfail1,cfail4)))]
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use super::ReferencedTrait2 as Trait;
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct Struct<T: Trait>(T);
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}
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// Change Trait Bound Indirectly In Where Clause -------------------------------
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mod change_trait_bound_indirectly_in_where_clause {
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#[cfg(any(cfail1,cfail4))]
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use super::ReferencedTrait1 as Trait;
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#[cfg(not(any(cfail1,cfail4)))]
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use super::ReferencedTrait2 as Trait;
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail2")]
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#[rustc_clean(cfg="cfail3")]
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#[rustc_clean(except="opt_hir_owner_nodes,predicates_of", cfg="cfail5")]
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#[rustc_clean(cfg="cfail6")]
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struct Struct<T>(T) where T : Trait;
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}
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