signal

package
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Published: Aug 26, 2020 License: BSD-3-Clause Imports: 3 Imported by: 0

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Constants

View Source
const (
	//	/usr/include/asm-generic/signal-defs.h:24:#define SIG_DFL	((__sighandler_t)0)	/* default signal handling */
	SIG_DFL = 0
	//	/usr/include/asm-generic/signal-defs.h:25:#define SIG_IGN	((__sighandler_t)1)	/* ignore signal */
	SIG_IGN = 1
)
View Source
const (
	FP_XSTATE_MAGIC1             = 0x46505853
	FP_XSTATE_MAGIC2             = 0x46505845
	MINSIGSTKSZ                  = 2048
	NGREG                        = 23
	NSIG                         = 65
	SA_INTERRUPT                 = 0x20000000
	SA_NOCLDSTOP                 = 1
	SA_NOCLDWAIT                 = 2
	SA_NODEFER                   = 0x40000000
	SA_NOMASK                    = 1073741824
	SA_ONESHOT                   = 2147483648
	SA_ONSTACK                   = 0x08000000
	SA_RESETHAND                 = 0x80000000
	SA_RESTART                   = 0x10000000
	SA_SIGINFO                   = 4
	SA_STACK                     = 134217728
	SIGABRT                      = 6
	SIGALRM                      = 14
	SIGBUS                       = 7
	SIGCHLD                      = 17
	SIGCLD                       = 17
	SIGCONT                      = 18
	SIGFPE                       = 8
	SIGHUP                       = 1
	SIGILL                       = 4
	SIGINT                       = 2
	SIGIO                        = 29
	SIGIOT                       = 6
	SIGKILL                      = 9
	SIGPIPE                      = 13
	SIGPOLL                      = 29
	SIGPROF                      = 27
	SIGPWR                       = 30
	SIGQUIT                      = 3
	SIGSEGV                      = 11
	SIGSTKFLT                    = 16
	SIGSTKSZ                     = 8192
	SIGSTOP                      = 19
	SIGSYS                       = 31
	SIGTERM                      = 15
	SIGTRAP                      = 5
	SIGTSTP                      = 20
	SIGTTIN                      = 21
	SIGTTOU                      = 22
	SIGURG                       = 23
	SIGUSR1                      = 10
	SIGUSR2                      = 12
	SIGVTALRM                    = 26
	SIGWINCH                     = 28
	SIGXCPU                      = 24
	SIGXFSZ                      = 25
	SIG_BLOCK                    = 0
	SIG_SETMASK                  = 2
	SIG_UNBLOCK                  = 1
	X_ATFILE_SOURCE              = 1
	X_BITS_PTHREADTYPES_ARCH_H   = 1
	X_BITS_PTHREADTYPES_COMMON_H = 1
	X_BITS_SIGACTION_H           = 1
	X_BITS_SIGCONTEXT_H          = 1
	X_BITS_SIGEVENT_CONSTS_H     = 1
	X_BITS_SIGINFO_ARCH_H        = 1
	X_BITS_SIGINFO_CONSTS_H      = 1
	X_BITS_SIGNUM_GENERIC_H      = 1
	X_BITS_SIGNUM_H              = 1
	X_BITS_SIGSTACK_H            = 1
	X_BITS_SIGTHREAD_H           = 1
	X_BITS_SS_FLAGS_H            = 1
	X_BITS_TYPESIZES_H           = 1
	X_BITS_TYPES_H               = 1
	X_BSD_SIZE_T_                = 0
	X_BSD_SIZE_T_DEFINED_        = 0
	X_DEFAULT_SOURCE             = 1
	X_FEATURES_H                 = 1
	X_GCC_SIZE_T                 = 0
	X_LP64                       = 1
	X_NSIG                       = 65
	X_POSIX_C_SOURCE             = 200809
	X_POSIX_SOURCE               = 1
	X_SIGNAL_H                   = 0
	X_SIZET_                     = 0
	X_SIZE_T                     = 0
	X_SIZE_T_                    = 0
	X_SIZE_T_DECLARED            = 0
	X_SIZE_T_DEFINED             = 0
	X_SIZE_T_DEFINED_            = 0
	X_STDC_PREDEF_H              = 1
	X_STRUCT_TIMESPEC            = 1
	X_SYS_CDEFS_H                = 1
	X_SYS_SIZE_T_H               = 0
	X_SYS_UCONTEXT_H             = 1
	X_THREAD_SHARED_TYPES_H      = 1
	X_T_SIZE                     = 0
	X_T_SIZE_                    = 0
	Linux                        = 1
	Unix                         = 1
)
View Source
const (
	SIGEV_SIGNAL = 0 // Notify via signal.
	SIGEV_NONE   = 1 // Other notification: meaningless.
	SIGEV_THREAD = 2 // Deliver via thread creation.

	SIGEV_THREAD_ID = 4
)

`sigev_notify' values.

View Source
const (
	SEGV_MAPERR = 1 // Address not mapped to object.
	SEGV_ACCERR = 2 // Invalid permissions for mapped object.
	SEGV_BNDERR = 3 // Bounds checking failure.
	SEGV_PKUERR = 4
)

`si_code' values for SIGSEGV signal.

View Source
const (
	BUS_ADRALN    = 1 // Invalid address alignment.
	BUS_ADRERR    = 2 // Non-existant physical address.
	BUS_OBJERR    = 3 // Object specific hardware error.
	BUS_MCEERR_AR = 4 // Hardware memory error: action required.
	BUS_MCEERR_AO = 5
)

`si_code' values for SIGBUS signal.

View Source
const (
	CLD_EXITED    = 1 // Child has exited.
	CLD_KILLED    = 2 // Child was killed.
	CLD_DUMPED    = 3 // Child terminated abnormally.
	CLD_TRAPPED   = 4 // Traced child has trapped.
	CLD_STOPPED   = 5 // Child has stopped.
	CLD_CONTINUED = 6
)

`si_code' values for SIGCHLD signal.

View Source
const (
	POLL_IN  = 1 // Data input available.
	POLL_OUT = 2 // Output buffers available.
	POLL_MSG = 3 // Input message available.
	POLL_ERR = 4 // I/O error.
	POLL_PRI = 5 // High priority input available.
	POLL_HUP = 6
)

`si_code' values for SIGPOLL signal.

View Source
const (
	SI_ASYNCNL = -60 // Sent by asynch name lookup completion.
	SI_TKILL   = -6  // Sent by tkill.
	SI_SIGIO   = -5  // Sent by queued SIGIO.
	SI_ASYNCIO = -4  // Sent by AIO completion.
	SI_MESGQ   = -3  // Sent by real time mesq state change.
	SI_TIMER   = -2  // Sent by timer expiration.
	SI_QUEUE   = -1  // Sent by sigqueue.
	SI_USER    = 0   // Sent by kill, sigsend.
	SI_KERNEL  = 128
)

Values for `si_code'. Positive values are reserved for kernel-generated

signals.
View Source
const (
	ILL_ILLOPC = 1 // Illegal opcode.
	ILL_ILLOPN = 2 // Illegal operand.
	ILL_ILLADR = 3 // Illegal addressing mode.
	ILL_ILLTRP = 4 // Illegal trap.
	ILL_PRVOPC = 5 // Privileged opcode.
	ILL_PRVREG = 6 // Privileged register.
	ILL_COPROC = 7 // Coprocessor error.
	ILL_BADSTK = 8
)

`si_code' values for SIGILL signal.

View Source
const (
	FPE_INTDIV = 1 // Integer divide by zero.
	FPE_INTOVF = 2 // Integer overflow.
	FPE_FLTDIV = 3 // Floating point divide by zero.
	FPE_FLTOVF = 4 // Floating point overflow.
	FPE_FLTUND = 5 // Floating point underflow.
	FPE_FLTRES = 6 // Floating point inexact result.
	FPE_FLTINV = 7 // Floating point invalid operation.
	FPE_FLTSUB = 8
)

`si_code' values for SIGFPE signal.

View Source
const (
	SS_ONSTACK = 1
	SS_DISABLE = 2
)

Possible values for `ss_flags'.

Variables

View Source
var CAPI = map[string]struct{}{}

Functions

This section is empty.

Types

type Fpregset_t

type Fpregset_t = uintptr /* ucontext.h:130:30 */

Structure to describe FPU registers.

type Greg_t

type Greg_t = int64 /* ucontext.h:37:37 */

Type for general register.

type Gregset_t

type Gregset_t = [23]Greg_t /* ucontext.h:46:16 */

Container for all general registers.

type Mcontext_t

type Mcontext_t = struct {
	Fgregs       Gregset_t
	Ffpregs      Fpregset_t
	F__reserved1 [8]uint64

} /* ucontext.h:139:3 */

Context to describe whole processor state.

type Pid_t

type Pid_t = X__pid_t /* signal.h:40:17 */

type Pthread_attr_t

type Pthread_attr_t = Pthread_attr_t1 /* sigevent_t.h:17:30 */

Forward declaration.

type Pthread_attr_t1

type Pthread_attr_t1 = struct {
	F__size [56]int8
	// contains filtered or unexported fields
}

Forward declaration.

type Pthread_barrier_t

type Pthread_barrier_t = struct {
	F__size [32]int8
	// contains filtered or unexported fields

} /* pthreadtypes.h:112:3 */

POSIX barriers data type. The structure of the type is

deliberately not exposed.

type Pthread_barrierattr_t

type Pthread_barrierattr_t = struct {
	F__size [4]int8
	// contains filtered or unexported fields

} /* pthreadtypes.h:118:3 */

type Pthread_cond_t

type Pthread_cond_t = struct{ F__data X__pthread_cond_s } /* pthreadtypes.h:80:3 */

type Pthread_condattr_t

type Pthread_condattr_t = struct {
	F__size [4]int8
	// contains filtered or unexported fields

} /* pthreadtypes.h:45:3 */

Data structure for condition variable handling. The structure of

the attribute type is not exposed on purpose.

type Pthread_key_t

type Pthread_key_t = uint32 /* pthreadtypes.h:49:22 */

Keys for thread-specific data

type Pthread_mutex_t

type Pthread_mutex_t = struct{ F__data X__pthread_mutex_s } /* pthreadtypes.h:72:3 */

type Pthread_mutexattr_t

type Pthread_mutexattr_t = struct {
	F__size [4]int8
	// contains filtered or unexported fields

} /* pthreadtypes.h:36:3 */

Data structures for mutex handling. The structure of the attribute

type is not exposed on purpose.

type Pthread_once_t

type Pthread_once_t = int32 /* pthreadtypes.h:53:30 */

Once-only execution

type Pthread_rwlock_t

type Pthread_rwlock_t = struct{ F__data X__pthread_rwlock_arch_t } /* pthreadtypes.h:91:3 */

Data structure for reader-writer lock variable handling. The

structure of the attribute type is deliberately not exposed.

type Pthread_rwlockattr_t

type Pthread_rwlockattr_t = struct {
	F__size [8]int8
	// contains filtered or unexported fields

} /* pthreadtypes.h:97:3 */

type Pthread_spinlock_t

type Pthread_spinlock_t = int32 /* pthreadtypes.h:103:22 */

POSIX spinlock data type.

type Pthread_t

type Pthread_t = uint64 /* pthreadtypes.h:27:27 */

Thread identifiers. The structure of the attribute type is not

exposed on purpose.

type Ptrdiff_t

type Ptrdiff_t = int64 /* <builtin>:3:26 */

type Sig_atomic_t

type Sig_atomic_t = X__sig_atomic_t /* sig_atomic_t.h:8:24 */

An integral type that can be modified atomically, without the

possibility of a signal arriving in the middle of the operation.

type Sig_t

type Sig_t = X__sighandler_t /* signal.h:190:24 */

4.4 BSD uses the name `sig_t' for this.

type Sigaction

type Sigaction = struct {
	F__sigaction_handler struct{ Fsa_handler X__sighandler_t }
	Fsa_mask             X__sigset_t
	Fsa_flags            int32
	Fsa_restorer         uintptr
}

Structure describing the action to be taken when a signal arrives.

type Sigcontext

type Sigcontext = struct {
	Fr8          X__uint64_t
	Fr9          X__uint64_t
	Fr10         X__uint64_t
	Fr11         X__uint64_t
	Fr12         X__uint64_t
	Fr13         X__uint64_t
	Fr14         X__uint64_t
	Fr15         X__uint64_t
	Frdi         X__uint64_t
	Frsi         X__uint64_t
	Frbp         X__uint64_t
	Frbx         X__uint64_t
	Frdx         X__uint64_t
	Frax         X__uint64_t
	Frcx         X__uint64_t
	Frsp         X__uint64_t
	Frip         X__uint64_t
	Feflags      X__uint64_t
	Fcs          uint16
	Fgs          uint16
	Ffs          uint16
	F__pad0      uint16
	Ferr         X__uint64_t
	Ftrapno      X__uint64_t
	Foldmask     X__uint64_t
	Fcr2         X__uint64_t
	F__184       struct{ Ffpstate uintptr }
	F__reserved1 [8]X__uint64_t
}

type Sigevent

type Sigevent = struct {
	Fsigev_value  X__sigval_t
	Fsigev_signo  int32
	Fsigev_notify int32
	F_sigev_un    struct {
		F_pad [12]int32
		// contains filtered or unexported fields
	}
}

Structure to transport application-defined values with signals.

type Sigevent_t

type Sigevent_t = Sigevent /* sigevent_t.h:42:5 */

Structure to transport application-defined values with signals.

type Siginfo_t

type Siginfo_t = struct {
	Fsi_signo  int32
	Fsi_errno  int32
	Fsi_code   int32
	F__pad0    int32
	F_sifields struct {
		F_pad [28]int32
		// contains filtered or unexported fields
	}

} /* siginfo_t.h:124:5 */

type Sigset_t

type Sigset_t = X__sigset_t /* sigset_t.h:7:20 */

A set of signals to be blocked, unblocked, or waited for.

type Sigstack

type Sigstack = struct {
	Fss_sp      uintptr
	Fss_onstack int32
	// contains filtered or unexported fields
}

Structure describing a signal stack (obsolete).

type Sigval

type Sigval = struct {
	Fsival_int int32
	// contains filtered or unexported fields
}

Type for data associated with a signal.

type Sigval_t

type Sigval_t = X__sigval_t /* sigval_t.h:16:20 */

type Size_t

type Size_t = uint64 /* <builtin>:9:23 */

type Stack_t

type Stack_t = struct {
	Fss_sp    uintptr
	Fss_flags int32
	Fss_size  Size_t

} /* stack_t.h:31:5 */

Structure describing a signal stack.

type Timespec

type Timespec = struct {
	Ftv_sec  X__time_t
	Ftv_nsec X__syscall_slong_t
}

POSIX.1b structure for a time value. This is like a `struct timeval' but

has nanoseconds instead of microseconds.

type Ucontext_t

type Ucontext_t = Ucontext_t1 /* ucontext.h:151:5 */

Userlevel context.

type Ucontext_t1

type Ucontext_t1 = struct {
	Fuc_flags     uint64
	Fuc_link      uintptr
	Fuc_stack     Stack_t
	Fuc_mcontext  Mcontext_t
	Fuc_sigmask   Sigset_t
	F__fpregs_mem struct {
		Fcwd       X__uint16_t
		Fswd       X__uint16_t
		Fftw       X__uint16_t
		Ffop       X__uint16_t
		Frip       X__uint64_t
		Frdp       X__uint64_t
		Fmxcsr     X__uint32_t
		Fmxcr_mask X__uint32_t
		F_st       [8]struct {
			Fsignificand       [4]uint16
			Fexponent          uint16
			F__glibc_reserved1 [3]uint16
		}
		F_xmm              [16]struct{ Felement [4]X__uint32_t }
		F__glibc_reserved1 [24]X__uint32_t
	}
	F__ssp [4]uint64
}

Userlevel context.

type Uid_t

type Uid_t = X__uid_t /* signal.h:46:17 */

type Wchar_t

type Wchar_t = int32 /* <builtin>:15:24 */

type X__blkcnt64_t

type X__blkcnt64_t = int64 /* types.h:178:30 */

type X__blkcnt_t

type X__blkcnt_t = int64 /* types.h:177:28 */

Type to count number of disk blocks.

type X__blksize_t

type X__blksize_t = int64 /* types.h:172:29 */

Type to represent block size.

type X__builtin_va_list

type X__builtin_va_list = uintptr /* <builtin>:28:14 */

type X__caddr_t

type X__caddr_t = uintptr /* types.h:201:14 */

type X__clock_t

type X__clock_t = int64 /* types.h:154:27 */ // Type of CPU usage counts.

type X__clockid_t

type X__clockid_t = int32 /* types.h:166:29 */

Clock ID used in clock and timer functions.

type X__daddr_t

type X__daddr_t = int32 /* types.h:162:27 */ // The type of a disk address.

type X__dev_t

type X__dev_t = uint64 /* types.h:143:25 */ // Type of device numbers.

type X__float128

type X__float128 = float64 /* <builtin>:29:21 */

type X__fsblkcnt64_t

type X__fsblkcnt64_t = uint64 /* types.h:182:32 */

type X__fsblkcnt_t

type X__fsblkcnt_t = uint64 /* types.h:181:30 */

Type to count file system blocks.

type X__fsfilcnt64_t

type X__fsfilcnt64_t = uint64 /* types.h:186:32 */

type X__fsfilcnt_t

type X__fsfilcnt_t = uint64 /* types.h:185:30 */

Type to count file system nodes.

type X__fsid_t

type X__fsid_t = struct{ F__val [2]int32 } /* types.h:153:26 */ // Type of file system IDs.

type X__fsword_t

type X__fsword_t = int64 /* types.h:189:28 */

Type of miscellaneous file system fields.

type X__gid_t

type X__gid_t = uint32 /* types.h:145:25 */ // Type of group identifications.

type X__id_t

type X__id_t = uint32 /* types.h:157:24 */ // General type for IDs.

type X__ino64_t

type X__ino64_t = uint64 /* types.h:147:27 */ // Type of file serial numbers (LFS).

type X__ino_t

type X__ino_t = uint64 /* types.h:146:25 */ // Type of file serial numbers.

type X__int16_t

type X__int16_t = int16 /* types.h:38:26 */

type X__int32_t

type X__int32_t = int32 /* types.h:40:20 */

type X__int64_t

type X__int64_t = int64 /* types.h:43:25 */

type X__int8_t

type X__int8_t = int8 /* types.h:36:21 */

Fixed-size types, underlying types depend on word size and compiler.

type X__int_least16_t

type X__int_least16_t = X__int16_t /* types.h:53:19 */

type X__int_least32_t

type X__int_least32_t = X__int32_t /* types.h:55:19 */

type X__int_least64_t

type X__int_least64_t = X__int64_t /* types.h:57:19 */

type X__int_least8_t

type X__int_least8_t = X__int8_t /* types.h:51:18 */

Smallest types with at least a given width.

type X__intmax_t

type X__intmax_t = int64 /* types.h:71:18 */

Largest integral types.

type X__intptr_t

type X__intptr_t = int64 /* types.h:204:25 */

Duplicates info from stdint.h but this is used in unistd.h.

type X__key_t

type X__key_t = int32 /* types.h:163:25 */ // Type of an IPC key.

type X__loff_t

type X__loff_t = X__off64_t /* types.h:200:19 */ // Type of file sizes and offsets (LFS).

These few don't really vary by system, they always correspond

to one of the other defined types.

type X__mode_t

type X__mode_t = uint32 /* types.h:148:26 */ // Type of file attribute bitmasks.
type X__nlink_t = uint64 /* types.h:149:27 */ // Type of file link counts.

type X__off64_t

type X__off64_t = int64 /* types.h:151:27 */ // Type of file sizes and offsets (LFS).

type X__off_t

type X__off_t = int64 /* types.h:150:25 */ // Type of file sizes and offsets.

type X__pid_t

type X__pid_t = int32 /* types.h:152:25 */ // Type of process identifications.

type X__pthread_cond_s

type X__pthread_cond_s = struct {
	F__0            struct{ F__wseq uint64 }
	F__8            struct{ F__g1_start uint64 }
	F__g_refs       [2]uint32
	F__g_size       [2]uint32
	F__g1_orig_size uint32
	F__wrefs        uint32
	F__g_signals    [2]uint32
}

type X__pthread_internal_list

type X__pthread_internal_list = struct {
	F__prev uintptr
	F__next uintptr
}

type X__pthread_list_t

type X__pthread_list_t = X__pthread_internal_list /* thread-shared-types.h:86:3 */

type X__pthread_mutex_s

type X__pthread_mutex_s = struct {
	F__lock    int32
	F__count   uint32
	F__owner   int32
	F__nusers  uint32
	F__kind    int32
	F__spins   int16
	F__elision int16
	F__list    X__pthread_list_t
}

type X__pthread_rwlock_arch_t

type X__pthread_rwlock_arch_t = struct {
	F__readers       uint32
	F__writers       uint32
	F__wrphase_futex uint32
	F__writers_futex uint32
	F__pad3          uint32
	F__pad4          uint32
	F__cur_writer    int32
	F__shared        int32
	F__rwelision     int8
	F__pad1          [7]uint8
	F__pad2          uint64
	F__flags         uint32
	// contains filtered or unexported fields
}

type X__quad_t

type X__quad_t = int64 /* types.h:62:18 */

quad_t is also 64 bits.

type X__rlim64_t

type X__rlim64_t = uint64 /* types.h:156:28 */ // Type for resource measurement (LFS).

type X__rlim_t

type X__rlim_t = uint64 /* types.h:155:26 */ // Type for resource measurement.

type X__sig_atomic_t

type X__sig_atomic_t = int32 /* types.h:212:13 */

C99: An integer type that can be accessed as an atomic entity,

even in the presence of asynchronous interrupts.
It is not currently necessary for this to be machine-specific.

type X__sighandler_t

type X__sighandler_t = uintptr /* signal.h:72:14 */

Type of a signal handler.

type X__sigset_t

type X__sigset_t = struct{ F__val [16]uint64 } /* __sigset_t.h:8:3 */

type X__sigval_t

type X__sigval_t = Sigval /* __sigval_t.h:30:22 */

type X__socklen_t

type X__socklen_t = uint32 /* types.h:207:23 */

Duplicate info from sys/socket.h.

type X__ssize_t

type X__ssize_t = int64 /* types.h:191:27 */ // Type of a byte count, or error.

type X__suseconds_t

type X__suseconds_t = int64 /* types.h:160:31 */ // Signed count of microseconds.

type X__syscall_slong_t

type X__syscall_slong_t = int64 /* types.h:194:33 */

Signed long type used in system calls.

type X__syscall_ulong_t

type X__syscall_ulong_t = uint64 /* types.h:196:33 */

Unsigned long type used in system calls.

type X__time_t

type X__time_t = int64 /* types.h:158:26 */ // Seconds since the Epoch.

type X__timer_t

type X__timer_t = uintptr /* types.h:169:12 */

Timer ID returned by `timer_create'.

type X__u_char

type X__u_char = uint8 /* types.h:30:23 */

Convenience types.

type X__u_int

type X__u_int = uint32 /* types.h:32:22 */

type X__u_long

type X__u_long = uint64 /* types.h:33:27 */

type X__u_quad_t

type X__u_quad_t = uint64 /* types.h:63:27 */

type X__u_short

type X__u_short = uint16 /* types.h:31:28 */

type X__uid_t

type X__uid_t = uint32 /* types.h:144:25 */ // Type of user identifications.

type X__uint16_t

type X__uint16_t = uint16 /* types.h:39:28 */

type X__uint32_t

type X__uint32_t = uint32 /* types.h:41:22 */

type X__uint64_t

type X__uint64_t = uint64 /* types.h:44:27 */

type X__uint8_t

type X__uint8_t = uint8 /* types.h:37:23 */

type X__uint_least16_t

type X__uint_least16_t = X__uint16_t /* types.h:54:20 */

type X__uint_least32_t

type X__uint_least32_t = X__uint32_t /* types.h:56:20 */

type X__uint_least64_t

type X__uint_least64_t = X__uint64_t /* types.h:58:20 */

type X__uint_least8_t

type X__uint_least8_t = X__uint8_t /* types.h:52:19 */

type X__uintmax_t

type X__uintmax_t = uint64 /* types.h:72:27 */

type X__useconds_t

type X__useconds_t = uint32 /* types.h:159:30 */ // Count of microseconds.

type X_fpreg

type X_fpreg = struct {
	Fsignificand [4]uint16
	Fexponent    uint16
}

type X_fpstate

type X_fpstate = struct {
	Fcwd       X__uint16_t
	Fswd       X__uint16_t
	Fftw       X__uint16_t
	Ffop       X__uint16_t
	Frip       X__uint64_t
	Frdp       X__uint64_t
	Fmxcsr     X__uint32_t
	Fmxcr_mask X__uint32_t
	F_st       [8]struct {
		Fsignificand       [4]uint16
		Fexponent          uint16
		F__glibc_reserved1 [3]uint16
	}
	F_xmm              [16]struct{ Felement [4]X__uint32_t }
	F__glibc_reserved1 [24]X__uint32_t
}

type X_fpx_sw_bytes

type X_fpx_sw_bytes = struct {
	Fmagic1            X__uint32_t
	Fextended_size     X__uint32_t
	Fxstate_bv         X__uint64_t
	Fxstate_size       X__uint32_t
	F__glibc_reserved1 [7]X__uint32_t
}

type X_fpxreg

type X_fpxreg = struct {
	Fsignificand       [4]uint16
	Fexponent          uint16
	F__glibc_reserved1 [3]uint16
}

type X_libc_fpstate

type X_libc_fpstate = struct {
	Fcwd       X__uint16_t
	Fswd       X__uint16_t
	Fftw       X__uint16_t
	Ffop       X__uint16_t
	Frip       X__uint64_t
	Frdp       X__uint64_t
	Fmxcsr     X__uint32_t
	Fmxcr_mask X__uint32_t
	F_st       [8]struct {
		Fsignificand       [4]uint16
		Fexponent          uint16
		F__glibc_reserved1 [3]uint16
	}
	F_xmm              [16]struct{ Felement [4]X__uint32_t }
	F__glibc_reserved1 [24]X__uint32_t
}

type X_libc_fpxreg

type X_libc_fpxreg = struct {
	Fsignificand       [4]uint16
	Fexponent          uint16
	F__glibc_reserved1 [3]uint16
}

type X_libc_xmmreg

type X_libc_xmmreg = struct{ Felement [4]X__uint32_t }

type X_xmmreg

type X_xmmreg = struct{ Felement [4]X__uint32_t }

type X_xsave_hdr

type X_xsave_hdr = struct {
	Fxstate_bv         X__uint64_t
	F__glibc_reserved1 [2]X__uint64_t
	F__glibc_reserved2 [5]X__uint64_t
}

type X_xstate

type X_xstate = struct {
	Ffpstate struct {
		Fcwd       X__uint16_t
		Fswd       X__uint16_t
		Fftw       X__uint16_t
		Ffop       X__uint16_t
		Frip       X__uint64_t
		Frdp       X__uint64_t
		Fmxcsr     X__uint32_t
		Fmxcr_mask X__uint32_t
		F_st       [8]struct {
			Fsignificand       [4]uint16
			Fexponent          uint16
			F__glibc_reserved1 [3]uint16
		}
		F_xmm              [16]struct{ Felement [4]X__uint32_t }
		F__glibc_reserved1 [24]X__uint32_t
	}
	Fxstate_hdr struct {
		Fxstate_bv         X__uint64_t
		F__glibc_reserved1 [2]X__uint64_t
		F__glibc_reserved2 [5]X__uint64_t
	}
	Fymmh struct{ Fymmh_space [64]X__uint32_t }
}

type X_ymmh_state

type X_ymmh_state = struct{ Fymmh_space [64]X__uint32_t }

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