| //@ compile-flags: -Copt-level=3 |
| //@ needs-deterministic-layouts (opposite scalar pair orders breaks it) |
| #![crate_type = "lib"] |
| |
| type Demo = [u8; 3]; |
| |
| // CHECK-LABEL: @slice_iter_len_eq_zero |
| #[no_mangle] |
| pub fn slice_iter_len_eq_zero(y: std::slice::Iter<'_, Demo>) -> bool { |
| // CHECK-NOT: sub |
| // CHECK: %[[RET:.+]] = icmp eq ptr {{%y.0, %y.1|%y.1, %y.0}} |
| // CHECK: ret i1 %[[RET]] |
| y.len() == 0 |
| } |
| |
| // CHECK-LABEL: @slice_iter_len_eq_zero_ref |
| #[no_mangle] |
| pub fn slice_iter_len_eq_zero_ref(y: &mut std::slice::Iter<'_, Demo>) -> bool { |
| // CHECK-NOT: sub |
| // CHECK: %[[A:.+]] = load ptr |
| // CHECK-SAME: !nonnull |
| // CHECK: %[[B:.+]] = load ptr |
| // CHECK-SAME: !nonnull |
| // CHECK: %[[RET:.+]] = icmp eq ptr %[[A]], %[[B]] |
| // CHECK: ret i1 %[[RET]] |
| y.len() == 0 |
| } |
| |
| struct MyZST; |
| |
| // CHECK-LABEL: @slice_zst_iter_len_eq_zero |
| #[no_mangle] |
| pub fn slice_zst_iter_len_eq_zero(y: std::slice::Iter<'_, MyZST>) -> bool { |
| // CHECK: %[[RET:.+]] = icmp eq ptr %y.1, null |
| // CHECK: ret i1 %[[RET]] |
| y.len() == 0 |
| } |
| |
| // CHECK-LABEL: @slice_zst_iter_len_eq_zero_ref |
| #[no_mangle] |
| pub fn slice_zst_iter_len_eq_zero_ref(y: &mut std::slice::Iter<'_, MyZST>) -> bool { |
| // CHECK: %[[LEN:.+]] = load ptr |
| // CHECK-NOT: !nonnull |
| // CHECK: %[[RET:.+]] = icmp eq ptr %[[LEN]], null |
| // CHECK: ret i1 %[[RET]] |
| y.len() == 0 |
| } |
| |
| // CHECK-LABEL: @array_into_iter_len_eq_zero |
| #[no_mangle] |
| pub fn array_into_iter_len_eq_zero(y: std::array::IntoIter<Demo, 123>) -> bool { |
| // This should be able to just check that the indexes are equal, and not |
| // need any subtractions or comparisons to handle `start > end`. |
| |
| // CHECK-NOT: icmp |
| // CHECK-NOT: sub |
| // CHECK: %_0 = icmp eq {{i16|i32|i64}} |
| // CHECK: ret i1 %_0 |
| y.len() == 0 |
| } |