dbb8670dfd
blacklist and whitelist are replaced with blocklist and allowlist respectively. Test: CtsSeccompHostTestCases Change-Id: I39d9eda89038d1addbdaed59284a254a34cea1c6
287 lines
9.9 KiB
C++
287 lines
9.9 KiB
C++
/*
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* Copyright (C) 2017 The Android Open Source Project
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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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*/
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#include "seccomp_policy.h"
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#include <assert.h>
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#include <linux/audit.h>
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#include <linux/seccomp.h>
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#include <sys/prctl.h>
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#include <sys/syscall.h>
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#include <vector>
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#include <android-base/logging.h>
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#include "func_to_syscall_nrs.h"
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#include "seccomp_bpfs.h"
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#if defined __arm__ || defined __aarch64__
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#define DUAL_ARCH
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#define PRIMARY_ARCH AUDIT_ARCH_AARCH64
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static const struct sock_filter* primary_app_filter = arm64_app_filter;
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static const size_t primary_app_filter_size = arm64_app_filter_size;
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static const struct sock_filter* primary_app_zygote_filter = arm64_app_zygote_filter;
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static const size_t primary_app_zygote_filter_size = arm64_app_zygote_filter_size;
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static const struct sock_filter* primary_system_filter = arm64_system_filter;
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static const size_t primary_system_filter_size = arm64_system_filter_size;
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static const long primary_setresgid = __arm64_setresgid;
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static const long primary_setresuid = __arm64_setresuid;
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#define SECONDARY_ARCH AUDIT_ARCH_ARM
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static const struct sock_filter* secondary_app_filter = arm_app_filter;
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static const size_t secondary_app_filter_size = arm_app_filter_size;
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static const struct sock_filter* secondary_app_zygote_filter = arm_app_zygote_filter;
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static const size_t secondary_app_zygote_filter_size = arm_app_zygote_filter_size;
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static const struct sock_filter* secondary_system_filter = arm_system_filter;
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static const size_t secondary_system_filter_size = arm_system_filter_size;
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static const long secondary_setresgid = __arm_setresgid;
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static const long secondary_setresuid = __arm_setresuid;
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#elif defined __i386__ || defined __x86_64__
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#define DUAL_ARCH
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#define PRIMARY_ARCH AUDIT_ARCH_X86_64
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static const struct sock_filter* primary_app_filter = x86_64_app_filter;
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static const size_t primary_app_filter_size = x86_64_app_filter_size;
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static const struct sock_filter* primary_app_zygote_filter = x86_64_app_zygote_filter;
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static const size_t primary_app_zygote_filter_size = x86_64_app_zygote_filter_size;
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static const struct sock_filter* primary_system_filter = x86_64_system_filter;
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static const size_t primary_system_filter_size = x86_64_system_filter_size;
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static const long primary_setresgid = __x86_64_setresgid;
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static const long primary_setresuid = __x86_64_setresuid;
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#define SECONDARY_ARCH AUDIT_ARCH_I386
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static const struct sock_filter* secondary_app_filter = x86_app_filter;
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static const size_t secondary_app_filter_size = x86_app_filter_size;
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static const struct sock_filter* secondary_app_zygote_filter = x86_app_zygote_filter;
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static const size_t secondary_app_zygote_filter_size = x86_app_zygote_filter_size;
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static const struct sock_filter* secondary_system_filter = x86_system_filter;
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static const size_t secondary_system_filter_size = x86_system_filter_size;
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static const long secondary_setresgid = __x86_setresgid;
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static const long secondary_setresuid = __x86_setresuid;
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#else
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#error No architecture was defined!
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#endif
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#define syscall_nr (offsetof(struct seccomp_data, nr))
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#define syscall_arg(_n) (offsetof(struct seccomp_data, args[_n]))
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#define arch_nr (offsetof(struct seccomp_data, arch))
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typedef std::vector<sock_filter> filter;
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inline void Allow(filter& f) {
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f.push_back(BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW));
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}
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inline void Disallow(filter& f) {
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f.push_back(BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRAP));
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}
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static void ExamineSyscall(filter& f) {
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f.push_back(BPF_STMT(BPF_LD|BPF_W|BPF_ABS, syscall_nr));
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}
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#ifdef DUAL_ARCH
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static bool SetValidateArchitectureJumpTarget(size_t offset, filter& f) {
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size_t jump_length = f.size() - offset - 1;
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auto u8_jump_length = (__u8) jump_length;
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if (u8_jump_length != jump_length) {
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LOG(FATAL)
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<< "Can't set jump greater than 255 - actual jump is " << jump_length;
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return false;
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}
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f[offset] = BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, SECONDARY_ARCH, u8_jump_length, 0);
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return true;
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}
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static size_t ValidateArchitectureAndJumpIfNeeded(filter& f) {
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f.push_back(BPF_STMT(BPF_LD|BPF_W|BPF_ABS, arch_nr));
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f.push_back(BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, PRIMARY_ARCH, 2, 0));
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f.push_back(BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, SECONDARY_ARCH, 1, 0));
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Disallow(f);
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return f.size() - 2;
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}
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#else
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static void ValidateArchitecture(filter& f) {
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f.push_back(BPF_STMT(BPF_LD|BPF_W|BPF_ABS, arch_nr));
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f.push_back(BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, PRIMARY_ARCH, 1, 0));
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Disallow(f);
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}
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#endif
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static void ValidateSyscallArgInRange(filter& f, __u32 arg_num, __u32 range_min, __u32 range_max) {
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const __u32 syscall_arg = syscall_arg(arg_num);
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if (range_max == UINT32_MAX) {
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LOG(FATAL) << "range_max exceeds maximum argument range.";
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return;
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}
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f.push_back(BPF_STMT(BPF_LD|BPF_W|BPF_ABS, syscall_arg));
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f.push_back(BPF_JUMP(BPF_JMP|BPF_JGE|BPF_K, range_min, 0, 1));
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f.push_back(BPF_JUMP(BPF_JMP|BPF_JGE|BPF_K, range_max + 1, 0, 1));
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Disallow(f);
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}
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// This filter is meant to be installed in addition to a regular allowlist filter.
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// Therefore, it's default action has to be Allow, except when the evaluated
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// system call matches setresuid/setresgid and the arguments don't fall within the
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// passed in range.
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//
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// The regular allowlist only allows setresuid/setresgid for UID/GID changes, so
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// that's the only system call we need to check here. A CTS test ensures the other
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// calls will remain blocked.
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static void ValidateSetUidGid(filter& f, uint32_t uid_gid_min, uint32_t uid_gid_max, bool primary) {
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// Check setresuid(ruid, euid, sguid) fall within range
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ExamineSyscall(f);
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__u32 setresuid_nr = primary ? primary_setresuid : secondary_setresuid;
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f.push_back(BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, setresuid_nr, 0, 12));
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for (int arg = 0; arg < 3; arg++) {
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ValidateSyscallArgInRange(f, arg, uid_gid_min, uid_gid_max);
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}
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// Check setresgid(rgid, egid, sgid) fall within range
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ExamineSyscall(f);
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__u32 setresgid_nr = primary ? primary_setresgid : secondary_setresgid;
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f.push_back(BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, setresgid_nr, 0, 12));
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for (int arg = 0; arg < 3; arg++) {
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ValidateSyscallArgInRange(f, arg, uid_gid_min, uid_gid_max);
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}
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// Default is to allow; other filters may still reject this call.
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Allow(f);
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}
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static bool install_filter(filter const& f) {
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struct sock_fprog prog = {
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static_cast<unsigned short>(f.size()),
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const_cast<struct sock_filter*>(&f[0]),
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};
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// This assumes either the current process has CAP_SYS_ADMIN, or PR_SET_NO_NEW_PRIVS bit is set.
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if (prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog) < 0) {
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PLOG(FATAL) << "Could not set seccomp filter of size " << f.size();
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return false;
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}
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return true;
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}
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bool _install_setuidgid_filter(uint32_t uid_gid_min, uint32_t uid_gid_max) {
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filter f;
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#ifdef DUAL_ARCH
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// Note that for mixed 64/32 bit architectures, ValidateArchitecture inserts a
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// jump that must be changed to point to the start of the 32-bit policy
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// 32 bit syscalls will not hit the policy between here and the call to SetJump
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auto offset_to_secondary_filter = ValidateArchitectureAndJumpIfNeeded(f);
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#else
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ValidateArchitecture(f);
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#endif
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ValidateSetUidGid(f, uid_gid_min, uid_gid_max, true /* primary */);
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#ifdef DUAL_ARCH
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if (!SetValidateArchitectureJumpTarget(offset_to_secondary_filter, f)) {
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return false;
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}
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ValidateSetUidGid(f, uid_gid_min, uid_gid_max, false /* primary */);
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#endif
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return install_filter(f);
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}
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enum FilterType {
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APP,
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APP_ZYGOTE,
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SYSTEM,
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};
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bool _set_seccomp_filter(FilterType type) {
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const sock_filter *p, *s;
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size_t p_size, s_size;
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filter f;
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switch (type) {
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case APP:
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p = primary_app_filter;
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p_size = primary_app_filter_size;
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s = secondary_app_filter;
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s_size = secondary_app_filter_size;
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break;
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case APP_ZYGOTE:
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p = primary_app_zygote_filter;
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p_size = primary_app_zygote_filter_size;
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s = secondary_app_zygote_filter;
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s_size = secondary_app_zygote_filter_size;
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break;
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case SYSTEM:
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p = primary_system_filter;
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p_size = primary_system_filter_size;
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s = secondary_system_filter;
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s_size = secondary_system_filter_size;
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break;
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}
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#ifdef DUAL_ARCH
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// Note that for mixed 64/32 bit architectures, ValidateArchitecture inserts a
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// jump that must be changed to point to the start of the 32-bit policy
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// 32 bit syscalls will not hit the policy between here and the call to SetJump
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auto offset_to_secondary_filter = ValidateArchitectureAndJumpIfNeeded(f);
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#else
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ValidateArchitecture(f);
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#endif
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ExamineSyscall(f);
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for (size_t i = 0; i < p_size; ++i) {
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f.push_back(p[i]);
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}
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Disallow(f);
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#ifdef DUAL_ARCH
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if (!SetValidateArchitectureJumpTarget(offset_to_secondary_filter, f)) {
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return false;
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}
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ExamineSyscall(f);
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for (size_t i = 0; i < s_size; ++i) {
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f.push_back(s[i]);
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}
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Disallow(f);
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#endif
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return install_filter(f);
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}
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bool set_app_seccomp_filter() {
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return _set_seccomp_filter(FilterType::APP);
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}
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bool set_app_zygote_seccomp_filter() {
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return _set_seccomp_filter(FilterType::APP_ZYGOTE);
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}
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bool set_system_seccomp_filter() {
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return _set_seccomp_filter(FilterType::SYSTEM);
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}
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bool install_setuidgid_seccomp_filter(uint32_t uid_gid_min, uint32_t uid_gid_max) {
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return _install_setuidgid_filter(uid_gid_min, uid_gid_max);
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}
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