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7 | 7 | #![unstable(feature = "panic_abort", issue = "32837")] |
8 | 8 | #![doc(issue_tracker_base_url = "https://github.com/rust-lang/rust/issues/")] |
9 | 9 | #![panic_runtime] |
10 | | -#![allow(unused_features)] |
11 | | -#![feature(asm_experimental_arch)] |
12 | | -#![feature(core_intrinsics)] |
13 | 10 | #![feature(panic_runtime)] |
14 | 11 | #![feature(std_internals)] |
15 | 12 | #![feature(staged_api)] |
16 | 13 | #![feature(rustc_attrs)] |
17 | 14 | #![allow(internal_features)] |
18 | | -#![deny(unsafe_op_in_unsafe_fn)] |
19 | 15 |
|
20 | 16 | #[cfg(target_os = "android")] |
21 | 17 | mod android; |
@@ -45,75 +41,13 @@ pub unsafe fn __rust_start_panic(_payload: &mut dyn PanicPayload) -> u32 { |
45 | 41 | zkvm::zkvm_set_abort_message(_payload); |
46 | 42 | } |
47 | 43 |
|
48 | | - unsafe { |
49 | | - abort(); |
| 44 | + unsafe extern "Rust" { |
| 45 | + // This is defined in std::rt. |
| 46 | + #[rustc_std_internal_symbol] |
| 47 | + safe fn __rust_abort() -> !; |
50 | 48 | } |
51 | 49 |
|
52 | | - cfg_if::cfg_if! { |
53 | | - if #[cfg(any(unix, target_os = "solid_asp3"))] { |
54 | | - unsafe fn abort() -> ! { |
55 | | - unsafe { libc::abort(); } |
56 | | - } |
57 | | - } else if #[cfg(any(target_os = "hermit", |
58 | | - all(target_vendor = "fortanix", target_env = "sgx"), |
59 | | - target_os = "xous", |
60 | | - target_os = "uefi", |
61 | | - ))] { |
62 | | - unsafe fn abort() -> ! { |
63 | | - // call std::sys::abort_internal |
64 | | - unsafe extern "C" { |
65 | | - pub fn __rust_abort() -> !; |
66 | | - } |
67 | | - unsafe { __rust_abort(); } |
68 | | - } |
69 | | - } else if #[cfg(all(windows, not(miri)))] { |
70 | | - // On Windows, use the processor-specific __fastfail mechanism. In Windows 8 |
71 | | - // and later, this will terminate the process immediately without running any |
72 | | - // in-process exception handlers. In earlier versions of Windows, this |
73 | | - // sequence of instructions will be treated as an access violation, |
74 | | - // terminating the process but without necessarily bypassing all exception |
75 | | - // handlers. |
76 | | - // |
77 | | - // https://docs.microsoft.com/en-us/cpp/intrinsics/fastfail |
78 | | - // |
79 | | - // Note: this is the same implementation as in std's `abort_internal` |
80 | | - unsafe fn abort() -> ! { |
81 | | - #[allow(unused)] |
82 | | - const FAST_FAIL_FATAL_APP_EXIT: usize = 7; |
83 | | - cfg_if::cfg_if! { |
84 | | - if #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] { |
85 | | - unsafe { |
86 | | - core::arch::asm!("int $$0x29", in("ecx") FAST_FAIL_FATAL_APP_EXIT, options(noreturn, nostack)); |
87 | | - } |
88 | | - } else if #[cfg(all(target_arch = "arm", target_feature = "thumb-mode"))] { |
89 | | - unsafe { |
90 | | - core::arch::asm!(".inst 0xDEFB", in("r0") FAST_FAIL_FATAL_APP_EXIT, options(noreturn, nostack)); |
91 | | - } |
92 | | - } else if #[cfg(any(target_arch = "aarch64", target_arch = "arm64ec"))] { |
93 | | - unsafe { |
94 | | - core::arch::asm!("brk 0xF003", in("x0") FAST_FAIL_FATAL_APP_EXIT, options(noreturn, nostack)); |
95 | | - } |
96 | | - } else { |
97 | | - core::intrinsics::abort(); |
98 | | - } |
99 | | - } |
100 | | - } |
101 | | - } else if #[cfg(target_os = "teeos")] { |
102 | | - mod teeos { |
103 | | - unsafe extern "C" { |
104 | | - pub fn TEE_Panic(code: u32) -> !; |
105 | | - } |
106 | | - } |
107 | | - |
108 | | - unsafe fn abort() -> ! { |
109 | | - unsafe { teeos::TEE_Panic(1); } |
110 | | - } |
111 | | - } else { |
112 | | - unsafe fn abort() -> ! { |
113 | | - core::intrinsics::abort(); |
114 | | - } |
115 | | - } |
116 | | - } |
| 50 | + __rust_abort() |
117 | 51 | } |
118 | 52 |
|
119 | 53 | // This... is a bit of an oddity. The tl;dr; is that this is required to link |
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