2018-08-29 08:21:01 -05:00
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#![allow(missing_docs, nonstandard_style)]
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2014-09-30 17:03:56 -07:00
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2023-07-04 19:45:58 +02:00
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use crate::ffi::{CStr, OsStr, OsString};
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2019-02-11 04:23:21 +09:00
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use crate::io::ErrorKind;
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2022-08-18 14:51:10 -07:00
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use crate::mem::MaybeUninit;
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2019-02-11 04:23:21 +09:00
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use crate::os::windows::ffi::{OsStrExt, OsStringExt};
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use crate::path::PathBuf;
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use crate::time::Duration;
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2014-09-30 17:03:56 -07:00
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2017-11-01 12:32:13 -07:00
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pub use self::rand::hashmap_random_keys;
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2015-06-26 09:30:35 -07:00
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#[macro_use]
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pub mod compat;
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2018-11-03 11:15:48 -07:00
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pub mod alloc;
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2016-09-29 22:00:44 +00:00
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pub mod args;
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2014-10-10 10:11:49 -07:00
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pub mod c;
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2017-11-01 12:59:40 -07:00
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pub mod cmath;
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2016-09-21 19:50:30 +00:00
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pub mod env;
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2015-05-05 16:35:15 -07:00
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pub mod fs;
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2015-01-27 12:20:58 -08:00
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pub mod handle;
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2019-02-08 20:42:34 +01:00
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pub mod io;
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2022-03-21 15:45:51 +01:00
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pub mod locks;
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2016-09-22 00:10:37 +00:00
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pub mod memchr;
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2015-02-05 16:50:11 -08:00
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pub mod net;
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2014-09-30 17:03:56 -07:00
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pub mod os;
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2015-01-21 15:55:31 -08:00
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pub mod os_str;
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2016-09-21 19:11:39 +00:00
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pub mod path;
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2015-05-05 16:35:15 -07:00
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pub mod pipe;
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pub mod process;
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2016-02-17 13:56:16 -08:00
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pub mod rand;
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2022-10-27 16:49:59 +01:00
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pub mod stdio;
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2014-11-23 19:21:17 -08:00
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pub mod thread;
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2020-07-12 11:37:11 +02:00
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pub mod thread_local_dtor;
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2020-07-12 11:45:04 +02:00
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pub mod thread_local_key;
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2022-12-19 15:59:00 +01:00
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pub mod thread_parking;
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2015-01-27 12:20:58 -08:00
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pub mod time;
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2019-05-27 17:15:27 +02:00
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cfg_if::cfg_if! {
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if #[cfg(not(target_vendor = "uwp"))] {
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2019-05-27 17:16:20 +02:00
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pub mod stack_overflow;
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2019-05-27 17:15:27 +02:00
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} else {
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2019-05-27 17:16:20 +02:00
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pub mod stack_overflow_uwp;
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pub use self::stack_overflow_uwp as stack_overflow;
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2019-05-27 17:15:27 +02:00
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}
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}
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2014-10-10 10:11:49 -07:00
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2021-04-11 07:05:39 +02:00
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// SAFETY: must be called only once during runtime initialization.
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2021-04-18 07:19:39 +02:00
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// NOTE: this is not guaranteed to run, for example when Rust code is called externally.
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2022-07-05 19:56:22 +02:00
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pub unsafe fn init(_argc: isize, _argv: *const *const u8, _sigpipe: u8) {
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2021-04-11 23:48:10 +02:00
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stack_overflow::init();
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2022-05-19 17:21:20 -04:00
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// Normally, `thread::spawn` will call `Thread::set_name` but since this thread already
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// exists, we have to call it ourselves.
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2023-07-04 19:45:58 +02:00
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thread::Thread::set_name(&CStr::from_bytes_with_nul_unchecked(b"main\0"));
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2021-04-11 23:48:10 +02:00
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}
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2021-04-11 07:05:39 +02:00
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// SAFETY: must be called only once during runtime cleanup.
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2021-04-18 07:19:39 +02:00
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// NOTE: this is not guaranteed to run, for example when the program aborts.
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2021-04-11 07:05:39 +02:00
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pub unsafe fn cleanup() {
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net::cleanup();
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}
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2015-09-08 15:53:46 -07:00
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2015-01-31 20:24:36 -08:00
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pub fn decode_error_kind(errno: i32) -> ErrorKind {
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2021-06-18 17:51:50 +01:00
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use ErrorKind::*;
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2015-11-02 16:23:22 -08:00
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match errno as c::DWORD {
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2021-06-18 17:51:50 +01:00
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c::ERROR_ACCESS_DENIED => return PermissionDenied,
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c::ERROR_ALREADY_EXISTS => return AlreadyExists,
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c::ERROR_FILE_EXISTS => return AlreadyExists,
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c::ERROR_BROKEN_PIPE => return BrokenPipe,
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2023-04-16 23:42:59 +01:00
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c::ERROR_FILE_NOT_FOUND
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| c::ERROR_PATH_NOT_FOUND
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| c::ERROR_INVALID_DRIVE
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| c::ERROR_BAD_NETPATH
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| c::ERROR_BAD_NET_NAME => return NotFound,
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2021-06-18 17:51:50 +01:00
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c::ERROR_NO_DATA => return BrokenPipe,
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2023-04-16 23:42:59 +01:00
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c::ERROR_INVALID_NAME | c::ERROR_BAD_PATHNAME => return InvalidFilename,
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2022-01-31 17:28:05 +09:00
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c::ERROR_INVALID_PARAMETER => return InvalidInput,
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2021-06-18 17:51:50 +01:00
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c::ERROR_NOT_ENOUGH_MEMORY | c::ERROR_OUTOFMEMORY => return OutOfMemory,
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2020-05-02 14:05:56 +02:00
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c::ERROR_SEM_TIMEOUT
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| c::WAIT_TIMEOUT
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| c::ERROR_DRIVER_CANCEL_TIMEOUT
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| c::ERROR_OPERATION_ABORTED
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| c::ERROR_SERVICE_REQUEST_TIMEOUT
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| c::ERROR_COUNTER_TIMEOUT
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| c::ERROR_TIMEOUT
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| c::ERROR_RESOURCE_CALL_TIMED_OUT
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| c::ERROR_CTX_MODEM_RESPONSE_TIMEOUT
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| c::ERROR_CTX_CLIENT_QUERY_TIMEOUT
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| c::FRS_ERR_SYSVOL_POPULATE_TIMEOUT
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| c::ERROR_DS_TIMELIMIT_EXCEEDED
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| c::DNS_ERROR_RECORD_TIMED_OUT
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| c::ERROR_IPSEC_IKE_TIMED_OUT
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| c::ERROR_RUNLEVEL_SWITCH_TIMEOUT
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2021-06-18 17:51:50 +01:00
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| c::ERROR_RUNLEVEL_SWITCH_AGENT_TIMEOUT => return TimedOut,
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c::ERROR_CALL_NOT_IMPLEMENTED => return Unsupported,
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2021-04-30 17:05:01 +01:00
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c::ERROR_HOST_UNREACHABLE => return HostUnreachable,
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c::ERROR_NETWORK_UNREACHABLE => return NetworkUnreachable,
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c::ERROR_DIRECTORY => return NotADirectory,
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c::ERROR_DIRECTORY_NOT_SUPPORTED => return IsADirectory,
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c::ERROR_DIR_NOT_EMPTY => return DirectoryNotEmpty,
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c::ERROR_WRITE_PROTECT => return ReadOnlyFilesystem,
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2021-06-18 19:30:55 +01:00
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c::ERROR_DISK_FULL | c::ERROR_HANDLE_DISK_FULL => return StorageFull,
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2021-04-30 17:05:01 +01:00
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c::ERROR_SEEK_ON_DEVICE => return NotSeekable,
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c::ERROR_DISK_QUOTA_EXCEEDED => return FilesystemQuotaExceeded,
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c::ERROR_FILE_TOO_LARGE => return FileTooLarge,
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c::ERROR_BUSY => return ResourceBusy,
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c::ERROR_POSSIBLE_DEADLOCK => return Deadlock,
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c::ERROR_NOT_SAME_DEVICE => return CrossesDevices,
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c::ERROR_TOO_MANY_LINKS => return TooManyLinks,
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2022-02-10 23:49:27 +09:00
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c::ERROR_FILENAME_EXCED_RANGE => return InvalidFilename,
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2015-11-02 16:23:22 -08:00
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_ => {}
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}
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match errno {
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2021-06-18 17:51:50 +01:00
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c::WSAEACCES => PermissionDenied,
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c::WSAEADDRINUSE => AddrInUse,
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c::WSAEADDRNOTAVAIL => AddrNotAvailable,
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c::WSAECONNABORTED => ConnectionAborted,
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c::WSAECONNREFUSED => ConnectionRefused,
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c::WSAECONNRESET => ConnectionReset,
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c::WSAEINVAL => InvalidInput,
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c::WSAENOTCONN => NotConnected,
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c::WSAEWOULDBLOCK => WouldBlock,
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c::WSAETIMEDOUT => TimedOut,
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2021-04-30 17:05:01 +01:00
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c::WSAEHOSTUNREACH => HostUnreachable,
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c::WSAENETDOWN => NetworkDown,
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c::WSAENETUNREACH => NetworkUnreachable,
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2015-01-31 20:24:36 -08:00
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2021-06-18 17:51:50 +01:00
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_ => Uncategorized,
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2015-01-31 20:24:36 -08:00
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}
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}
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2020-04-02 02:43:23 +00:00
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pub fn unrolled_find_u16s(needle: u16, haystack: &[u16]) -> Option<usize> {
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2019-12-29 15:47:13 +00:00
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let ptr = haystack.as_ptr();
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2020-04-02 02:43:23 +00:00
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let mut start = &haystack[..];
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// For performance reasons unfold the loop eight times.
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2020-07-13 09:34:34 +00:00
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while start.len() >= 8 {
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2020-07-13 09:35:10 +00:00
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macro_rules! if_return {
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($($n:literal,)+) => {
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$(
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if start[$n] == needle {
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2022-03-22 01:24:55 -04:00
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return Some(((&start[$n] as *const u16).addr() - ptr.addr()) / 2);
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2020-07-13 09:35:10 +00:00
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}
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)+
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}
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2020-04-02 02:43:23 +00:00
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}
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2020-07-13 09:35:10 +00:00
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if_return!(0, 1, 2, 3, 4, 5, 6, 7,);
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2020-04-02 02:43:23 +00:00
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start = &start[8..];
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}
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2020-07-13 09:35:51 +00:00
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for c in start {
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2020-04-02 02:43:23 +00:00
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if *c == needle {
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2022-03-22 01:24:55 -04:00
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return Some(((c as *const u16).addr() - ptr.addr()) / 2);
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2020-04-02 02:43:23 +00:00
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}
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}
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None
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2019-12-29 15:47:13 +00:00
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}
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2019-02-11 04:23:21 +09:00
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pub fn to_u16s<S: AsRef<OsStr>>(s: S) -> crate::io::Result<Vec<u16>> {
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fn inner(s: &OsStr) -> crate::io::Result<Vec<u16>> {
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2022-04-22 11:02:04 +02:00
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// Most paths are ASCII, so reserve capacity for as much as there are bytes
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// in the OsStr plus one for the null-terminating character. We are not
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// wasting bytes here as paths created by this function are primarily used
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// in an ephemeral fashion.
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2022-04-22 11:42:53 +02:00
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let mut maybe_result = Vec::with_capacity(s.len() + 1);
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2022-04-22 11:02:04 +02:00
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maybe_result.extend(s.encode_wide());
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2020-04-02 02:43:23 +00:00
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if unrolled_find_u16s(0, &maybe_result).is_some() {
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2021-08-08 01:04:33 -07:00
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return Err(crate::io::const_io_error!(
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2019-02-11 04:23:21 +09:00
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ErrorKind::InvalidInput,
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2021-08-08 01:04:33 -07:00
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"strings passed to WinAPI cannot contain NULs",
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2019-02-08 20:42:34 +01:00
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));
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2015-11-19 18:01:11 +00:00
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}
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maybe_result.push(0);
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Ok(maybe_result)
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}
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inner(s.as_ref())
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2015-01-27 12:20:58 -08:00
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}
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2015-10-07 23:11:25 +01:00
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// Many Windows APIs follow a pattern of where we hand a buffer and then they
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// will report back to us how large the buffer should be or how many bytes
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2015-01-27 12:20:58 -08:00
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// currently reside in the buffer. This function is an abstraction over these
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// functions by making them easier to call.
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//
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// The first callback, `f1`, is yielded a (pointer, len) pair which can be
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// passed to a syscall. The `ptr` is valid for `len` items (u16 in this case).
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// The closure is expected to return what the syscall returns which will be
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// interpreted by this function to determine if the syscall needs to be invoked
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// again (with more buffer space).
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//
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// Once the syscall has completed (errors bail out early) the second closure is
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// yielded the data which has been read from the syscall. The return value
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// from this closure is then the return value of the function.
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2019-02-11 04:23:21 +09:00
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fn fill_utf16_buf<F1, F2, T>(mut f1: F1, f2: F2) -> crate::io::Result<T>
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2015-11-02 16:23:22 -08:00
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where
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F1: FnMut(*mut u16, c::DWORD) -> c::DWORD,
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2015-01-27 12:20:58 -08:00
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F2: FnOnce(&[u16]) -> T,
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{
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// Start off with a stack buf but then spill over to the heap if we end up
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// needing more space.
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2022-03-19 10:30:34 -04:00
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//
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// This initial size also works around `GetFullPathNameW` returning
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// incorrect size hints for some short paths:
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// https://github.com/dylni/normpath/issues/5
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2022-08-18 14:51:10 -07:00
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let mut stack_buf: [MaybeUninit<u16>; 512] = MaybeUninit::uninit_array();
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let mut heap_buf: Vec<MaybeUninit<u16>> = Vec::new();
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2015-01-27 12:20:58 -08:00
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unsafe {
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let mut n = stack_buf.len();
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loop {
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let buf = if n <= stack_buf.len() {
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2015-02-18 14:48:57 -05:00
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&mut stack_buf[..]
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2015-01-27 12:20:58 -08:00
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} else {
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let extra = n - heap_buf.len();
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heap_buf.reserve(extra);
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2022-08-18 14:51:10 -07:00
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// We used `reserve` and not `reserve_exact`, so in theory we
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// may have gotten more than requested. If so, we'd like to use
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// it... so long as we won't cause overflow.
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n = heap_buf.capacity().min(c::DWORD::MAX as usize);
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// Safety: MaybeUninit<u16> does not need initialization
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2015-01-27 12:20:58 -08:00
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heap_buf.set_len(n);
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2015-02-18 14:48:57 -05:00
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&mut heap_buf[..]
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2015-01-27 12:20:58 -08:00
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};
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// This function is typically called on windows API functions which
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// will return the correct length of the string, but these functions
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// also return the `0` on error. In some cases, however, the
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// returned "correct length" may actually be 0!
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//
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// To handle this case we call `SetLastError` to reset it to 0 and
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// then check it again if we get the "0 error value". If the "last
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// error" is still 0 then we interpret it as a 0 length buffer and
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// not an actual error.
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c::SetLastError(0);
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2022-08-18 14:51:10 -07:00
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let k = match f1(buf.as_mut_ptr().cast::<u16>(), n as c::DWORD) {
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2015-11-02 16:23:22 -08:00
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0 if c::GetLastError() == 0 => 0,
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2019-02-11 04:23:21 +09:00
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0 => return Err(crate::io::Error::last_os_error()),
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2015-01-27 12:20:58 -08:00
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n => n,
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} as usize;
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2015-11-02 16:23:22 -08:00
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if k == n && c::GetLastError() == c::ERROR_INSUFFICIENT_BUFFER {
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2022-08-18 14:51:10 -07:00
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n = n.saturating_mul(2).min(c::DWORD::MAX as usize);
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2022-03-09 00:47:24 +00:00
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|
} else if k > n {
|
2015-01-27 12:20:58 -08:00
|
|
|
n = k;
|
2022-03-09 00:47:24 +00:00
|
|
|
} else if k == n {
|
|
|
|
|
// It is impossible to reach this point.
|
|
|
|
|
// On success, k is the returned string length excluding the null.
|
|
|
|
|
// On failure, k is the required buffer length including the null.
|
|
|
|
|
// Therefore k never equals n.
|
|
|
|
|
unreachable!();
|
2015-01-27 12:20:58 -08:00
|
|
|
} else {
|
2022-08-19 08:45:21 -07:00
|
|
|
// Safety: First `k` values are initialized.
|
2022-08-18 14:51:10 -07:00
|
|
|
let slice: &[u16] = MaybeUninit::slice_assume_init_ref(&buf[..k]);
|
|
|
|
|
return Ok(f2(slice));
|
2015-01-27 12:20:58 -08:00
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
2015-02-23 10:59:17 -08:00
|
|
|
fn os2path(s: &[u16]) -> PathBuf {
|
2015-03-23 15:54:39 -07:00
|
|
|
PathBuf::from(OsString::from_wide(s))
|
2015-01-27 12:20:58 -08:00
|
|
|
}
|
|
|
|
|
|
2019-06-25 19:43:18 +02:00
|
|
|
pub fn truncate_utf16_at_nul(v: &[u16]) -> &[u16] {
|
2020-04-02 02:43:23 +00:00
|
|
|
match unrolled_find_u16s(0, v) {
|
2015-01-27 12:20:58 -08:00
|
|
|
// don't include the 0
|
|
|
|
|
Some(i) => &v[..i],
|
|
|
|
|
None => v,
|
2014-09-30 17:03:56 -07:00
|
|
|
}
|
|
|
|
|
}
|
2015-02-02 21:39:14 -08:00
|
|
|
|
2016-09-30 22:11:46 +00:00
|
|
|
pub trait IsZero {
|
2016-06-28 08:56:56 -07:00
|
|
|
fn is_zero(&self) -> bool;
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
macro_rules! impl_is_zero {
|
|
|
|
|
($($t:ident)*) => ($(impl IsZero for $t {
|
|
|
|
|
fn is_zero(&self) -> bool {
|
|
|
|
|
*self == 0
|
|
|
|
|
}
|
|
|
|
|
})*)
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
impl_is_zero! { i8 i16 i32 i64 isize u8 u16 u32 u64 usize }
|
|
|
|
|
|
2019-02-11 04:23:21 +09:00
|
|
|
pub fn cvt<I: IsZero>(i: I) -> crate::io::Result<I> {
|
2020-08-10 18:04:44 +02:00
|
|
|
if i.is_zero() { Err(crate::io::Error::last_os_error()) } else { Ok(i) }
|
2015-02-02 21:39:14 -08:00
|
|
|
}
|
|
|
|
|
|
2016-09-30 22:11:46 +00:00
|
|
|
pub fn dur2timeout(dur: Duration) -> c::DWORD {
|
2015-04-28 11:40:04 -07:00
|
|
|
// Note that a duration is a (u64, u32) (seconds, nanoseconds) pair, and the
|
|
|
|
|
// timeouts in windows APIs are typically u32 milliseconds. To translate, we
|
|
|
|
|
// have two pieces to take care of:
|
|
|
|
|
//
|
|
|
|
|
// * Nanosecond precision is rounded up
|
|
|
|
|
// * Greater than u32::MAX milliseconds (50 days) is rounded up to INFINITE
|
|
|
|
|
// (never time out).
|
2015-07-05 23:20:00 -07:00
|
|
|
dur.as_secs()
|
|
|
|
|
.checked_mul(1000)
|
|
|
|
|
.and_then(|ms| ms.checked_add((dur.subsec_nanos() as u64) / 1_000_000))
|
|
|
|
|
.and_then(|ms| ms.checked_add(if dur.subsec_nanos() % 1_000_000 > 0 { 1 } else { 0 }))
|
2020-06-02 07:59:11 +00:00
|
|
|
.map(|ms| if ms > <c::DWORD>::MAX as u64 { c::INFINITE } else { ms as c::DWORD })
|
2015-11-02 16:23:22 -08:00
|
|
|
.unwrap_or(c::INFINITE)
|
2015-04-28 11:40:04 -07:00
|
|
|
}
|
2016-09-30 23:07:04 +00:00
|
|
|
|
2020-08-10 17:39:06 +02:00
|
|
|
/// Use `__fastfail` to abort the process
|
|
|
|
|
///
|
|
|
|
|
/// This is the same implementation as in libpanic_abort's `__rust_start_panic`. See
|
|
|
|
|
/// that function for more information on `__fastfail`
|
2018-07-16 16:38:56 -07:00
|
|
|
#[allow(unreachable_code)]
|
2020-05-17 19:37:44 +02:00
|
|
|
pub fn abort_internal() -> ! {
|
2022-04-08 08:36:43 -04:00
|
|
|
#[allow(unused)]
|
2020-08-27 19:11:48 +02:00
|
|
|
const FAST_FAIL_FATAL_APP_EXIT: usize = 7;
|
2022-01-25 12:41:26 -05:00
|
|
|
#[cfg(not(miri))] // inline assembly does not work in Miri
|
2020-05-17 19:37:44 +02:00
|
|
|
unsafe {
|
2020-08-27 19:11:48 +02:00
|
|
|
cfg_if::cfg_if! {
|
|
|
|
|
if #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] {
|
2021-12-10 00:15:33 +00:00
|
|
|
core::arch::asm!("int $$0x29", in("ecx") FAST_FAIL_FATAL_APP_EXIT);
|
2020-08-27 19:11:48 +02:00
|
|
|
crate::intrinsics::unreachable();
|
2020-08-29 12:30:49 +02:00
|
|
|
} else if #[cfg(all(target_arch = "arm", target_feature = "thumb-mode"))] {
|
2021-12-10 00:15:33 +00:00
|
|
|
core::arch::asm!(".inst 0xDEFB", in("r0") FAST_FAIL_FATAL_APP_EXIT);
|
2020-08-27 19:11:48 +02:00
|
|
|
crate::intrinsics::unreachable();
|
|
|
|
|
} else if #[cfg(target_arch = "aarch64")] {
|
2021-12-10 00:15:33 +00:00
|
|
|
core::arch::asm!("brk 0xF003", in("x0") FAST_FAIL_FATAL_APP_EXIT);
|
2020-08-27 19:11:48 +02:00
|
|
|
crate::intrinsics::unreachable();
|
|
|
|
|
}
|
|
|
|
|
}
|
2018-07-16 16:38:56 -07:00
|
|
|
}
|
2020-06-03 15:15:53 -04:00
|
|
|
crate::intrinsics::abort();
|
2016-09-30 23:07:04 +00:00
|
|
|
}
|
2022-08-29 15:36:01 -07:00
|
|
|
|
2022-08-30 01:15:59 -07:00
|
|
|
/// Align the inner value to 8 bytes.
|
|
|
|
|
///
|
|
|
|
|
/// This is enough for almost all of the buffers we're likely to work with in
|
|
|
|
|
/// the Windows APIs we use.
|
|
|
|
|
#[repr(C, align(8))]
|
2022-08-29 15:36:01 -07:00
|
|
|
#[derive(Copy, Clone)]
|
2022-08-30 01:15:59 -07:00
|
|
|
pub(crate) struct Align8<T: ?Sized>(pub T);
|