mirror of
https://github.com/netbirdio/gvisor.git
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162 lines
4.4 KiB
Go
162 lines
4.4 KiB
Go
// Copyright 2019 The gVisor Authors.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package linux
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import (
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"fmt"
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)
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// Options for waitpid(2), wait4(2), and/or waitid(2), from
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// include/uapi/linux/wait.h.
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const (
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WNOHANG = 0x00000001
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WUNTRACED = 0x00000002
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WSTOPPED = WUNTRACED
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WEXITED = 0x00000004
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WCONTINUED = 0x00000008
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WNOWAIT = 0x01000000
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WNOTHREAD = 0x20000000
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WALL = 0x40000000
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WCLONE = 0x80000000
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)
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// ID types for waitid(2), from include/uapi/linux/wait.h.
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const (
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P_ALL = 0x0
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P_PID = 0x1
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P_PGID = 0x2
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)
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// WaitStatus represents a thread status, as returned by the wait* family of
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// syscalls.
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type WaitStatus uint32
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// WaitStatusExit returns a WaitStatus representing the given exit status.
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func WaitStatusExit(status int32) WaitStatus {
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return WaitStatus(uint32(status) << 8)
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}
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// WaitStatusTerminationSignal returns a WaitStatus representing termination by
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// the given signal.
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func WaitStatusTerminationSignal(sig Signal) WaitStatus {
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return WaitStatus(uint32(sig))
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}
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// WaitStatusStopped returns a WaitStatus representing stoppage by the given
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// signal or ptrace trap code.
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func WaitStatusStopped(code uint32) WaitStatus {
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return WaitStatus(code<<8 | 0x7f)
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}
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// WaitStatusContinued returns a WaitStatus representing continuation by
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// SIGCONT.
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func WaitStatusContinued() WaitStatus {
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return WaitStatus(0xffff)
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}
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// WithCoreDump returns a copy of ws that indicates that a core dump was
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// generated.
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//
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// Preconditions: ws.Signaled().
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func (ws WaitStatus) WithCoreDump() WaitStatus {
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return ws | 0x80
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}
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// Exited returns true if ws represents an exit status, consistent with
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// WIFEXITED.
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func (ws WaitStatus) Exited() bool {
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return ws&0x7f == 0
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}
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// Signaled returns true if ws represents a termination by signal, consistent
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// with WIFSIGNALED.
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func (ws WaitStatus) Signaled() bool {
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// ws&0x7f != 0 (exited) and ws&0x7f != 0x7f (stopped or continued)
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return ((ws&0x7f)+1)>>1 != 0
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}
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// CoreDumped returns true if ws indicates that a core dump was produced,
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// consistent with WCOREDUMP.
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//
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// Preconditions: ws.Signaled().
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func (ws WaitStatus) CoreDumped() bool {
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return ws&0x80 != 0
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}
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// Stopped returns true if ws represents a stoppage, consistent with
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// WIFSTOPPED.
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func (ws WaitStatus) Stopped() bool {
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return ws&0xff == 0x7f
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}
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// Continued returns true if ws represents a continuation by SIGCONT,
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// consistent with WIFCONTINUED.
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func (ws WaitStatus) Continued() bool {
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return ws == 0xffff
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}
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// ExitStatus returns the lower 8 bits of the exit status represented by ws,
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// consistent with WEXITSTATUS.
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//
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// Preconditions: ws.Exited().
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func (ws WaitStatus) ExitStatus() uint32 {
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return uint32((ws & 0xff00) >> 8)
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}
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// TerminationSignal returns the termination signal represented by ws,
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// consistent with WTERMSIG.
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//
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// Preconditions: ws.Signaled().
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func (ws WaitStatus) TerminationSignal() Signal {
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return Signal(ws & 0x7f)
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}
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// StopSignal returns the stop signal represented by ws, consistent with
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// WSTOPSIG.
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//
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// Preconditions: ws.Stopped().
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func (ws WaitStatus) StopSignal() Signal {
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return Signal((ws & 0xff00) >> 8)
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}
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// PtraceEvent returns the PTRACE_EVENT_* field in ws.
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//
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// Preconditions: ws.Stopped().
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func (ws WaitStatus) PtraceEvent() uint32 {
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return uint32(ws >> 16)
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}
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// String implements fmt.Stringer.String.
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func (ws WaitStatus) String() string {
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switch {
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case ws.Exited():
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return fmt.Sprintf("exit status %d", ws.ExitStatus())
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case ws.Signaled():
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if ws.CoreDumped() {
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return fmt.Sprintf("killed by signal %d (core dumped)", ws.TerminationSignal())
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}
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return fmt.Sprintf("killed by signal %d", ws.TerminationSignal())
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case ws.Stopped():
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if ev := ws.PtraceEvent(); ev != 0 {
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return fmt.Sprintf("stopped by signal %d (PTRACE_EVENT %d)", ws.StopSignal(), ev)
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}
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return fmt.Sprintf("stopped by signal %d", ws.StopSignal())
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case ws.Continued():
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return "continued"
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default:
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return fmt.Sprintf("unknown status %#x", uint32(ws))
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}
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}
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