Merge remote-tracking branch 'origin/master' into frewsxcv-san
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commit
d482de30ea
1600 changed files with 29527 additions and 21534 deletions
16
src/test/codegen/slice-ref-equality.rs
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16
src/test/codegen/slice-ref-equality.rs
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// compile-flags: -C opt-level=3
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#![crate_type = "lib"]
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// #71602: check that slice equality just generates a single bcmp
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// CHECK-LABEL: @is_zero_slice
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#[no_mangle]
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pub fn is_zero_slice(data: &[u8; 4]) -> bool {
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// CHECK: start:
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// CHECK-NEXT: %{{.+}} = getelementptr {{.+}}
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// CHECK-NEXT: %[[BCMP:.+]] = tail call i32 @{{bcmp|memcmp}}({{.+}})
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// CHECK-NEXT: %[[EQ:.+]] = icmp eq i32 %[[BCMP]], 0
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// CHECK-NEXT: ret i1 %[[EQ]]
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*data == [0; 4]
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}
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85
src/test/codegen/transmute-scalar.rs
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src/test/codegen/transmute-scalar.rs
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// compile-flags: -O -C no-prepopulate-passes
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#![crate_type = "lib"]
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// FIXME(eddyb) all of these tests show memory stores and loads, even after a
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// scalar `bitcast`, more special-casing is required to remove `alloca` usage.
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// CHECK: define i32 @f32_to_bits(float %x)
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// CHECK: %2 = bitcast float %x to i32
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// CHECK-NEXT: store i32 %2, i32* %0
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// CHECK-NEXT: %3 = load i32, i32* %0
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// CHECK: ret i32 %3
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#[no_mangle]
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pub fn f32_to_bits(x: f32) -> u32 {
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unsafe { std::mem::transmute(x) }
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}
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// CHECK: define i8 @bool_to_byte(i1 zeroext %b)
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// CHECK: %1 = zext i1 %b to i8
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// CHECK-NEXT: store i8 %1, i8* %0
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// CHECK-NEXT: %2 = load i8, i8* %0
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// CHECK: ret i8 %2
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#[no_mangle]
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pub fn bool_to_byte(b: bool) -> u8 {
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unsafe { std::mem::transmute(b) }
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}
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// CHECK: define zeroext i1 @byte_to_bool(i8 %byte)
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// CHECK: %1 = trunc i8 %byte to i1
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// CHECK-NEXT: %2 = zext i1 %1 to i8
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// CHECK-NEXT: store i8 %2, i8* %0
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// CHECK-NEXT: %3 = load i8, i8* %0
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// CHECK-NEXT: %4 = trunc i8 %3 to i1
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// CHECK: ret i1 %4
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#[no_mangle]
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pub unsafe fn byte_to_bool(byte: u8) -> bool {
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std::mem::transmute(byte)
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}
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// CHECK: define i8* @ptr_to_ptr(i16* %p)
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// CHECK: %2 = bitcast i16* %p to i8*
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// CHECK-NEXT: store i8* %2, i8** %0
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// CHECK-NEXT: %3 = load i8*, i8** %0
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// CHECK: ret i8* %3
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#[no_mangle]
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pub fn ptr_to_ptr(p: *mut u16) -> *mut u8 {
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unsafe { std::mem::transmute(p) }
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}
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// HACK(eddyb) scalar `transmute`s between pointers and non-pointers are
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// currently not special-cased like other scalar `transmute`s, because
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// LLVM requires specifically `ptrtoint`/`inttoptr` instead of `bitcast`.
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//
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// Tests below show the non-special-cased behavior (with the possible
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// future special-cased instructions in the "NOTE(eddyb)" comments).
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// CHECK: define [[USIZE:i[0-9]+]] @ptr_to_int(i16* %p)
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// NOTE(eddyb) see above, the following two CHECK lines should ideally be this:
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// %2 = ptrtoint i16* %p to [[USIZE]]
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// store [[USIZE]] %2, [[USIZE]]* %0
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// CHECK: %2 = bitcast [[USIZE]]* %0 to i16**
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// CHECK-NEXT: store i16* %p, i16** %2
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// CHECK-NEXT: %3 = load [[USIZE]], [[USIZE]]* %0
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// CHECK: ret [[USIZE]] %3
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#[no_mangle]
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pub fn ptr_to_int(p: *mut u16) -> usize {
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unsafe { std::mem::transmute(p) }
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}
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// CHECK: define i16* @int_to_ptr([[USIZE]] %i)
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// NOTE(eddyb) see above, the following two CHECK lines should ideally be this:
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// %2 = inttoptr [[USIZE]] %i to i16*
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// store i16* %2, i16** %0
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// CHECK: %2 = bitcast i16** %0 to [[USIZE]]*
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// CHECK-NEXT: store [[USIZE]] %i, [[USIZE]]* %2
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// CHECK-NEXT: %3 = load i16*, i16** %0
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// CHECK: ret i16* %3
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#[no_mangle]
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pub fn int_to_ptr(i: usize) -> *mut u16 {
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unsafe { std::mem::transmute(i) }
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}
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