mirror of https://github.com/k3s-io/k3s
572 lines
14 KiB
Go
572 lines
14 KiB
Go
// +build linux
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// Internal functions for libseccomp Go bindings
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// No exported functions
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package seccomp
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import (
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"fmt"
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"syscall"
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)
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// Unexported C wrapping code - provides the C-Golang interface
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// Get the seccomp header in scope
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// Need stdlib.h for free() on cstrings
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// #cgo pkg-config: libseccomp
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/*
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#include <errno.h>
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#include <stdlib.h>
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#include <seccomp.h>
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#if SCMP_VER_MAJOR < 2
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#error Minimum supported version of Libseccomp is v2.2.0
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#elif SCMP_VER_MAJOR == 2 && SCMP_VER_MINOR < 2
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#error Minimum supported version of Libseccomp is v2.2.0
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#endif
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#define ARCH_BAD ~0
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const uint32_t C_ARCH_BAD = ARCH_BAD;
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#ifndef SCMP_ARCH_PPC
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#define SCMP_ARCH_PPC ARCH_BAD
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#endif
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#ifndef SCMP_ARCH_PPC64
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#define SCMP_ARCH_PPC64 ARCH_BAD
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#endif
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#ifndef SCMP_ARCH_PPC64LE
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#define SCMP_ARCH_PPC64LE ARCH_BAD
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#endif
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#ifndef SCMP_ARCH_S390
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#define SCMP_ARCH_S390 ARCH_BAD
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#endif
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#ifndef SCMP_ARCH_S390X
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#define SCMP_ARCH_S390X ARCH_BAD
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#endif
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const uint32_t C_ARCH_NATIVE = SCMP_ARCH_NATIVE;
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const uint32_t C_ARCH_X86 = SCMP_ARCH_X86;
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const uint32_t C_ARCH_X86_64 = SCMP_ARCH_X86_64;
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const uint32_t C_ARCH_X32 = SCMP_ARCH_X32;
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const uint32_t C_ARCH_ARM = SCMP_ARCH_ARM;
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const uint32_t C_ARCH_AARCH64 = SCMP_ARCH_AARCH64;
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const uint32_t C_ARCH_MIPS = SCMP_ARCH_MIPS;
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const uint32_t C_ARCH_MIPS64 = SCMP_ARCH_MIPS64;
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const uint32_t C_ARCH_MIPS64N32 = SCMP_ARCH_MIPS64N32;
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const uint32_t C_ARCH_MIPSEL = SCMP_ARCH_MIPSEL;
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const uint32_t C_ARCH_MIPSEL64 = SCMP_ARCH_MIPSEL64;
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const uint32_t C_ARCH_MIPSEL64N32 = SCMP_ARCH_MIPSEL64N32;
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const uint32_t C_ARCH_PPC = SCMP_ARCH_PPC;
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const uint32_t C_ARCH_PPC64 = SCMP_ARCH_PPC64;
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const uint32_t C_ARCH_PPC64LE = SCMP_ARCH_PPC64LE;
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const uint32_t C_ARCH_S390 = SCMP_ARCH_S390;
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const uint32_t C_ARCH_S390X = SCMP_ARCH_S390X;
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#ifndef SCMP_ACT_LOG
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#define SCMP_ACT_LOG 0x7ffc0000U
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#endif
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const uint32_t C_ACT_KILL = SCMP_ACT_KILL;
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const uint32_t C_ACT_TRAP = SCMP_ACT_TRAP;
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const uint32_t C_ACT_ERRNO = SCMP_ACT_ERRNO(0);
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const uint32_t C_ACT_TRACE = SCMP_ACT_TRACE(0);
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const uint32_t C_ACT_LOG = SCMP_ACT_LOG;
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const uint32_t C_ACT_ALLOW = SCMP_ACT_ALLOW;
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// The libseccomp SCMP_FLTATR_CTL_LOG member of the scmp_filter_attr enum was
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// added in v2.4.0
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#if (SCMP_VER_MAJOR < 2) || \
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(SCMP_VER_MAJOR == 2 && SCMP_VER_MINOR < 4)
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#define SCMP_FLTATR_CTL_LOG _SCMP_FLTATR_MIN
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#endif
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const uint32_t C_ATTRIBUTE_DEFAULT = (uint32_t)SCMP_FLTATR_ACT_DEFAULT;
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const uint32_t C_ATTRIBUTE_BADARCH = (uint32_t)SCMP_FLTATR_ACT_BADARCH;
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const uint32_t C_ATTRIBUTE_NNP = (uint32_t)SCMP_FLTATR_CTL_NNP;
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const uint32_t C_ATTRIBUTE_TSYNC = (uint32_t)SCMP_FLTATR_CTL_TSYNC;
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const uint32_t C_ATTRIBUTE_LOG = (uint32_t)SCMP_FLTATR_CTL_LOG;
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const int C_CMP_NE = (int)SCMP_CMP_NE;
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const int C_CMP_LT = (int)SCMP_CMP_LT;
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const int C_CMP_LE = (int)SCMP_CMP_LE;
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const int C_CMP_EQ = (int)SCMP_CMP_EQ;
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const int C_CMP_GE = (int)SCMP_CMP_GE;
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const int C_CMP_GT = (int)SCMP_CMP_GT;
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const int C_CMP_MASKED_EQ = (int)SCMP_CMP_MASKED_EQ;
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const int C_VERSION_MAJOR = SCMP_VER_MAJOR;
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const int C_VERSION_MINOR = SCMP_VER_MINOR;
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const int C_VERSION_MICRO = SCMP_VER_MICRO;
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#if SCMP_VER_MAJOR == 2 && SCMP_VER_MINOR >= 3
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unsigned int get_major_version()
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{
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return seccomp_version()->major;
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}
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unsigned int get_minor_version()
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{
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return seccomp_version()->minor;
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}
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unsigned int get_micro_version()
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{
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return seccomp_version()->micro;
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}
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#else
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unsigned int get_major_version()
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{
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return (unsigned int)C_VERSION_MAJOR;
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}
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unsigned int get_minor_version()
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{
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return (unsigned int)C_VERSION_MINOR;
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}
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unsigned int get_micro_version()
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{
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return (unsigned int)C_VERSION_MICRO;
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}
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#endif
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// The libseccomp API level functions were added in v2.4.0
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#if (SCMP_VER_MAJOR < 2) || \
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(SCMP_VER_MAJOR == 2 && SCMP_VER_MINOR < 4)
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const unsigned int seccomp_api_get(void)
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{
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// libseccomp-golang requires libseccomp v2.2.0, at a minimum, which
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// supported API level 2. However, the kernel may not support API level
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// 2 constructs which are the seccomp() system call and the TSYNC
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// filter flag. Return the "reserved" value of 0 here to indicate that
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// proper API level support is not available in libseccomp.
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return 0;
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}
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int seccomp_api_set(unsigned int level)
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{
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return -EOPNOTSUPP;
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}
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#endif
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typedef struct scmp_arg_cmp* scmp_cast_t;
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void* make_arg_cmp_array(unsigned int length)
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{
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return calloc(length, sizeof(struct scmp_arg_cmp));
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}
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// Wrapper to add an scmp_arg_cmp struct to an existing arg_cmp array
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void add_struct_arg_cmp(
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struct scmp_arg_cmp* arr,
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unsigned int pos,
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unsigned int arg,
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int compare,
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uint64_t a,
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uint64_t b
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)
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{
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arr[pos].arg = arg;
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arr[pos].op = compare;
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arr[pos].datum_a = a;
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arr[pos].datum_b = b;
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return;
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}
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*/
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import "C"
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// Nonexported types
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type scmpFilterAttr uint32
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// Nonexported constants
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const (
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filterAttrActDefault scmpFilterAttr = iota
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filterAttrActBadArch scmpFilterAttr = iota
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filterAttrNNP scmpFilterAttr = iota
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filterAttrTsync scmpFilterAttr = iota
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filterAttrLog scmpFilterAttr = iota
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)
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const (
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// An error return from certain libseccomp functions
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scmpError C.int = -1
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// Comparison boundaries to check for architecture validity
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archStart ScmpArch = ArchNative
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archEnd ScmpArch = ArchS390X
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// Comparison boundaries to check for action validity
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actionStart ScmpAction = ActKill
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actionEnd ScmpAction = ActLog
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// Comparison boundaries to check for comparison operator validity
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compareOpStart ScmpCompareOp = CompareNotEqual
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compareOpEnd ScmpCompareOp = CompareMaskedEqual
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)
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var (
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// Error thrown on bad filter context
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errBadFilter = fmt.Errorf("filter is invalid or uninitialized")
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// Constants representing library major, minor, and micro versions
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verMajor = uint(C.get_major_version())
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verMinor = uint(C.get_minor_version())
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verMicro = uint(C.get_micro_version())
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)
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// Nonexported functions
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// Check if library version is greater than or equal to the given one
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func checkVersionAbove(major, minor, micro uint) bool {
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return (verMajor > major) ||
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(verMajor == major && verMinor > minor) ||
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(verMajor == major && verMinor == minor && verMicro >= micro)
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}
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// Ensure that the library is supported, i.e. >= 2.2.0.
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func ensureSupportedVersion() error {
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if !checkVersionAbove(2, 2, 0) {
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return VersionError{}
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}
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return nil
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}
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// Get the API level
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func getApi() (uint, error) {
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api := C.seccomp_api_get()
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if api == 0 {
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return 0, fmt.Errorf("API level operations are not supported")
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}
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return uint(api), nil
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}
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// Set the API level
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func setApi(api uint) error {
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if retCode := C.seccomp_api_set(C.uint(api)); retCode != 0 {
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if syscall.Errno(-1*retCode) == syscall.EOPNOTSUPP {
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return fmt.Errorf("API level operations are not supported")
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}
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return fmt.Errorf("could not set API level: %v", retCode)
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}
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return nil
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}
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// Filter helpers
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// Filter finalizer - ensure that kernel context for filters is freed
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func filterFinalizer(f *ScmpFilter) {
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f.Release()
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}
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// Get a raw filter attribute
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func (f *ScmpFilter) getFilterAttr(attr scmpFilterAttr) (C.uint32_t, error) {
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f.lock.Lock()
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defer f.lock.Unlock()
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if !f.valid {
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return 0x0, errBadFilter
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}
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var attribute C.uint32_t
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retCode := C.seccomp_attr_get(f.filterCtx, attr.toNative(), &attribute)
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if retCode != 0 {
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return 0x0, syscall.Errno(-1 * retCode)
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}
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return attribute, nil
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}
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// Set a raw filter attribute
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func (f *ScmpFilter) setFilterAttr(attr scmpFilterAttr, value C.uint32_t) error {
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f.lock.Lock()
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defer f.lock.Unlock()
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if !f.valid {
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return errBadFilter
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}
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retCode := C.seccomp_attr_set(f.filterCtx, attr.toNative(), value)
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if retCode != 0 {
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return syscall.Errno(-1 * retCode)
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}
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return nil
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}
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// DOES NOT LOCK OR CHECK VALIDITY
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// Assumes caller has already done this
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// Wrapper for seccomp_rule_add_... functions
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func (f *ScmpFilter) addRuleWrapper(call ScmpSyscall, action ScmpAction, exact bool, length C.uint, cond C.scmp_cast_t) error {
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if length != 0 && cond == nil {
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return fmt.Errorf("null conditions list, but length is nonzero")
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}
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var retCode C.int
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if exact {
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retCode = C.seccomp_rule_add_exact_array(f.filterCtx, action.toNative(), C.int(call), length, cond)
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} else {
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retCode = C.seccomp_rule_add_array(f.filterCtx, action.toNative(), C.int(call), length, cond)
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}
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if syscall.Errno(-1*retCode) == syscall.EFAULT {
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return fmt.Errorf("unrecognized syscall %#x", int32(call))
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} else if syscall.Errno(-1*retCode) == syscall.EPERM {
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return fmt.Errorf("requested action matches default action of filter")
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} else if syscall.Errno(-1*retCode) == syscall.EINVAL {
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return fmt.Errorf("two checks on same syscall argument")
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} else if retCode != 0 {
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return syscall.Errno(-1 * retCode)
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}
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return nil
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}
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// Generic add function for filter rules
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func (f *ScmpFilter) addRuleGeneric(call ScmpSyscall, action ScmpAction, exact bool, conds []ScmpCondition) error {
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f.lock.Lock()
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defer f.lock.Unlock()
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if !f.valid {
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return errBadFilter
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}
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if len(conds) == 0 {
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if err := f.addRuleWrapper(call, action, exact, 0, nil); err != nil {
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return err
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}
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} else {
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// We don't support conditional filtering in library version v2.1
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if !checkVersionAbove(2, 2, 1) {
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return VersionError{
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message: "conditional filtering is not supported",
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minimum: "2.2.1",
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}
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}
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argsArr := C.make_arg_cmp_array(C.uint(len(conds)))
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if argsArr == nil {
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return fmt.Errorf("error allocating memory for conditions")
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}
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defer C.free(argsArr)
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for i, cond := range conds {
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C.add_struct_arg_cmp(C.scmp_cast_t(argsArr), C.uint(i),
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C.uint(cond.Argument), cond.Op.toNative(),
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C.uint64_t(cond.Operand1), C.uint64_t(cond.Operand2))
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}
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if err := f.addRuleWrapper(call, action, exact, C.uint(len(conds)), C.scmp_cast_t(argsArr)); err != nil {
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return err
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}
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}
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return nil
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}
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// Generic Helpers
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// Helper - Sanitize Arch token input
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func sanitizeArch(in ScmpArch) error {
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if in < archStart || in > archEnd {
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return fmt.Errorf("unrecognized architecture %#x", uint(in))
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}
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if in.toNative() == C.C_ARCH_BAD {
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return fmt.Errorf("architecture %v is not supported on this version of the library", in)
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}
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return nil
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}
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func sanitizeAction(in ScmpAction) error {
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inTmp := in & 0x0000FFFF
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if inTmp < actionStart || inTmp > actionEnd {
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return fmt.Errorf("unrecognized action %#x", uint(inTmp))
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}
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if inTmp != ActTrace && inTmp != ActErrno && (in&0xFFFF0000) != 0 {
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return fmt.Errorf("highest 16 bits must be zeroed except for Trace and Errno")
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}
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return nil
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}
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func sanitizeCompareOp(in ScmpCompareOp) error {
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if in < compareOpStart || in > compareOpEnd {
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return fmt.Errorf("unrecognized comparison operator %#x", uint(in))
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}
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return nil
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}
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func archFromNative(a C.uint32_t) (ScmpArch, error) {
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switch a {
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case C.C_ARCH_X86:
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return ArchX86, nil
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case C.C_ARCH_X86_64:
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return ArchAMD64, nil
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case C.C_ARCH_X32:
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return ArchX32, nil
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case C.C_ARCH_ARM:
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return ArchARM, nil
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case C.C_ARCH_NATIVE:
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return ArchNative, nil
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case C.C_ARCH_AARCH64:
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return ArchARM64, nil
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case C.C_ARCH_MIPS:
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return ArchMIPS, nil
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case C.C_ARCH_MIPS64:
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return ArchMIPS64, nil
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case C.C_ARCH_MIPS64N32:
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return ArchMIPS64N32, nil
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case C.C_ARCH_MIPSEL:
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return ArchMIPSEL, nil
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case C.C_ARCH_MIPSEL64:
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return ArchMIPSEL64, nil
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case C.C_ARCH_MIPSEL64N32:
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return ArchMIPSEL64N32, nil
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case C.C_ARCH_PPC:
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return ArchPPC, nil
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case C.C_ARCH_PPC64:
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return ArchPPC64, nil
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case C.C_ARCH_PPC64LE:
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return ArchPPC64LE, nil
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case C.C_ARCH_S390:
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return ArchS390, nil
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case C.C_ARCH_S390X:
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return ArchS390X, nil
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default:
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return 0x0, fmt.Errorf("unrecognized architecture %#x", uint32(a))
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}
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}
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// Only use with sanitized arches, no error handling
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func (a ScmpArch) toNative() C.uint32_t {
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switch a {
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case ArchX86:
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return C.C_ARCH_X86
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case ArchAMD64:
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return C.C_ARCH_X86_64
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case ArchX32:
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return C.C_ARCH_X32
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case ArchARM:
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return C.C_ARCH_ARM
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case ArchARM64:
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return C.C_ARCH_AARCH64
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case ArchMIPS:
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return C.C_ARCH_MIPS
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case ArchMIPS64:
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return C.C_ARCH_MIPS64
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case ArchMIPS64N32:
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return C.C_ARCH_MIPS64N32
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case ArchMIPSEL:
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return C.C_ARCH_MIPSEL
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case ArchMIPSEL64:
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return C.C_ARCH_MIPSEL64
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case ArchMIPSEL64N32:
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return C.C_ARCH_MIPSEL64N32
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case ArchPPC:
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return C.C_ARCH_PPC
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case ArchPPC64:
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return C.C_ARCH_PPC64
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case ArchPPC64LE:
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return C.C_ARCH_PPC64LE
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case ArchS390:
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return C.C_ARCH_S390
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case ArchS390X:
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return C.C_ARCH_S390X
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case ArchNative:
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return C.C_ARCH_NATIVE
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default:
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return 0x0
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}
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}
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// Only use with sanitized ops, no error handling
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func (a ScmpCompareOp) toNative() C.int {
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switch a {
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case CompareNotEqual:
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return C.C_CMP_NE
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case CompareLess:
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return C.C_CMP_LT
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case CompareLessOrEqual:
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return C.C_CMP_LE
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case CompareEqual:
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return C.C_CMP_EQ
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case CompareGreaterEqual:
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return C.C_CMP_GE
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case CompareGreater:
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return C.C_CMP_GT
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case CompareMaskedEqual:
|
|
return C.C_CMP_MASKED_EQ
|
|
default:
|
|
return 0x0
|
|
}
|
|
}
|
|
|
|
func actionFromNative(a C.uint32_t) (ScmpAction, error) {
|
|
aTmp := a & 0xFFFF
|
|
switch a & 0xFFFF0000 {
|
|
case C.C_ACT_KILL:
|
|
return ActKill, nil
|
|
case C.C_ACT_TRAP:
|
|
return ActTrap, nil
|
|
case C.C_ACT_ERRNO:
|
|
return ActErrno.SetReturnCode(int16(aTmp)), nil
|
|
case C.C_ACT_TRACE:
|
|
return ActTrace.SetReturnCode(int16(aTmp)), nil
|
|
case C.C_ACT_LOG:
|
|
return ActLog, nil
|
|
case C.C_ACT_ALLOW:
|
|
return ActAllow, nil
|
|
default:
|
|
return 0x0, fmt.Errorf("unrecognized action %#x", uint32(a))
|
|
}
|
|
}
|
|
|
|
// Only use with sanitized actions, no error handling
|
|
func (a ScmpAction) toNative() C.uint32_t {
|
|
switch a & 0xFFFF {
|
|
case ActKill:
|
|
return C.C_ACT_KILL
|
|
case ActTrap:
|
|
return C.C_ACT_TRAP
|
|
case ActErrno:
|
|
return C.C_ACT_ERRNO | (C.uint32_t(a) >> 16)
|
|
case ActTrace:
|
|
return C.C_ACT_TRACE | (C.uint32_t(a) >> 16)
|
|
case ActLog:
|
|
return C.C_ACT_LOG
|
|
case ActAllow:
|
|
return C.C_ACT_ALLOW
|
|
default:
|
|
return 0x0
|
|
}
|
|
}
|
|
|
|
// Internal only, assumes safe attribute
|
|
func (a scmpFilterAttr) toNative() uint32 {
|
|
switch a {
|
|
case filterAttrActDefault:
|
|
return uint32(C.C_ATTRIBUTE_DEFAULT)
|
|
case filterAttrActBadArch:
|
|
return uint32(C.C_ATTRIBUTE_BADARCH)
|
|
case filterAttrNNP:
|
|
return uint32(C.C_ATTRIBUTE_NNP)
|
|
case filterAttrTsync:
|
|
return uint32(C.C_ATTRIBUTE_TSYNC)
|
|
case filterAttrLog:
|
|
return uint32(C.C_ATTRIBUTE_LOG)
|
|
default:
|
|
return 0x0
|
|
}
|
|
}
|