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This is useful as package "syscall" does not provide such a wrapper. This change also improves error handling to fully conform to the manpage. Signed-off-by: Ophestra <cat@gensokyo.uk>
59 lines
1.4 KiB
Go
59 lines
1.4 KiB
Go
package container
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import (
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"syscall"
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"unsafe"
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)
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const (
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_LINUX_CAPABILITY_VERSION_3 = 0x20080522
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PR_CAP_AMBIENT = 0x2f
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PR_CAP_AMBIENT_RAISE = 0x2
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PR_CAP_AMBIENT_CLEAR_ALL = 0x4
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CAP_SYS_ADMIN = 0x15
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CAP_SETPCAP = 0x8
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CAP_DAC_OVERRIDE = 0x1
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)
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type (
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capHeader struct {
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version uint32
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pid int32
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}
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capData struct {
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effective uint32
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permitted uint32
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inheritable uint32
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}
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)
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// See CAP_TO_INDEX in linux/capability.h:
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func capToIndex(cap uintptr) uintptr { return cap >> 5 }
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// See CAP_TO_MASK in linux/capability.h:
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func capToMask(cap uintptr) uint32 { return 1 << uint(cap&31) }
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func capset(hdrp *capHeader, datap *[2]capData) error {
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r, _, errno := syscall.Syscall(
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syscall.SYS_CAPSET,
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uintptr(unsafe.Pointer(hdrp)),
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uintptr(unsafe.Pointer(&datap[0])), 0,
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)
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if r != 0 {
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return errno
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}
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return nil
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}
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// capBoundingSetDrop drops a capability from the calling thread's capability bounding set.
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func capBoundingSetDrop(cap uintptr) error { return Prctl(syscall.PR_CAPBSET_DROP, cap, 0) }
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// capAmbientClearAll clears the ambient capability set of the calling thread.
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func capAmbientClearAll() error { return Prctl(PR_CAP_AMBIENT, PR_CAP_AMBIENT_CLEAR_ALL, 0) }
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// capAmbientRaise adds to the ambient capability set of the calling thread.
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func capAmbientRaise(cap uintptr) error { return Prctl(PR_CAP_AMBIENT, PR_CAP_AMBIENT_RAISE, cap) }
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