992 lines
30 KiB
C
992 lines
30 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/* Copyright (c) 2020 Facebook */
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#include <vmlinux.h>
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#include <bpf/bpf_core_read.h>
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#include <bpf/bpf_helpers.h>
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#include <bpf/bpf_tracing.h>
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#include "profiler.h"
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#ifndef NULL
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#define NULL 0
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#endif
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#define O_WRONLY 00000001
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#define O_RDWR 00000002
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#define O_DIRECTORY 00200000
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#define __O_TMPFILE 020000000
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#define O_TMPFILE (__O_TMPFILE | O_DIRECTORY)
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#define MAX_ERRNO 4095
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#define S_IFMT 00170000
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#define S_IFSOCK 0140000
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#define S_IFLNK 0120000
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#define S_IFREG 0100000
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#define S_IFBLK 0060000
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#define S_IFDIR 0040000
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#define S_IFCHR 0020000
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#define S_IFIFO 0010000
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#define S_ISUID 0004000
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#define S_ISGID 0002000
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#define S_ISVTX 0001000
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#define S_ISLNK(m) (((m)&S_IFMT) == S_IFLNK)
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#define S_ISDIR(m) (((m)&S_IFMT) == S_IFDIR)
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#define S_ISCHR(m) (((m)&S_IFMT) == S_IFCHR)
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#define S_ISBLK(m) (((m)&S_IFMT) == S_IFBLK)
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#define S_ISFIFO(m) (((m)&S_IFMT) == S_IFIFO)
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#define S_ISSOCK(m) (((m)&S_IFMT) == S_IFSOCK)
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#define IS_ERR_VALUE(x) (unsigned long)(void*)(x) >= (unsigned long)-MAX_ERRNO
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#define KILL_DATA_ARRAY_SIZE 8
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struct var_kill_data_arr_t {
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struct var_kill_data_t array[KILL_DATA_ARRAY_SIZE];
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};
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union any_profiler_data_t {
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struct var_exec_data_t var_exec;
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struct var_kill_data_t var_kill;
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struct var_sysctl_data_t var_sysctl;
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struct var_filemod_data_t var_filemod;
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struct var_fork_data_t var_fork;
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struct var_kill_data_arr_t var_kill_data_arr;
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};
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volatile struct profiler_config_struct bpf_config = {};
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#define FETCH_CGROUPS_FROM_BPF (bpf_config.fetch_cgroups_from_bpf)
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#define CGROUP_FS_INODE (bpf_config.cgroup_fs_inode)
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#define CGROUP_LOGIN_SESSION_INODE \
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(bpf_config.cgroup_login_session_inode)
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#define KILL_SIGNALS (bpf_config.kill_signals_mask)
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#define STALE_INFO (bpf_config.stale_info_secs)
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#define INODE_FILTER (bpf_config.inode_filter)
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#define READ_ENVIRON_FROM_EXEC (bpf_config.read_environ_from_exec)
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#define ENABLE_CGROUP_V1_RESOLVER (bpf_config.enable_cgroup_v1_resolver)
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struct kernfs_iattrs___52 {
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struct iattr ia_iattr;
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};
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struct kernfs_node___52 {
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union /* kernfs_node_id */ {
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struct {
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u32 ino;
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u32 generation;
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};
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u64 id;
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} id;
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};
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struct {
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__uint(type, BPF_MAP_TYPE_PERCPU_ARRAY);
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__uint(max_entries, 1);
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__type(key, u32);
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__type(value, union any_profiler_data_t);
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} data_heap SEC(".maps");
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struct {
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__uint(type, BPF_MAP_TYPE_PERF_EVENT_ARRAY);
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__uint(key_size, sizeof(int));
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__uint(value_size, sizeof(int));
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} events SEC(".maps");
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struct {
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__uint(type, BPF_MAP_TYPE_HASH);
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__uint(max_entries, KILL_DATA_ARRAY_SIZE);
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__type(key, u32);
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__type(value, struct var_kill_data_arr_t);
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} var_tpid_to_data SEC(".maps");
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struct {
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__uint(type, BPF_MAP_TYPE_PERCPU_ARRAY);
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__uint(max_entries, profiler_bpf_max_function_id);
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__type(key, u32);
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__type(value, struct bpf_func_stats_data);
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} bpf_func_stats SEC(".maps");
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struct {
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__uint(type, BPF_MAP_TYPE_HASH);
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__type(key, u32);
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__type(value, bool);
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__uint(max_entries, 16);
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} allowed_devices SEC(".maps");
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struct {
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__uint(type, BPF_MAP_TYPE_HASH);
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__type(key, u64);
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__type(value, bool);
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__uint(max_entries, 1024);
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} allowed_file_inodes SEC(".maps");
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struct {
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__uint(type, BPF_MAP_TYPE_HASH);
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__type(key, u64);
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__type(value, bool);
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__uint(max_entries, 1024);
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} allowed_directory_inodes SEC(".maps");
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struct {
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__uint(type, BPF_MAP_TYPE_HASH);
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__type(key, u32);
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__type(value, bool);
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__uint(max_entries, 16);
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} disallowed_exec_inodes SEC(".maps");
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#ifndef ARRAY_SIZE
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#define ARRAY_SIZE(arr) (sizeof(arr) / sizeof(arr[0]))
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#endif
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static INLINE bool IS_ERR(const void* ptr)
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{
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return IS_ERR_VALUE((unsigned long)ptr);
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}
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static INLINE u32 get_userspace_pid()
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{
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return bpf_get_current_pid_tgid() >> 32;
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}
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static INLINE bool is_init_process(u32 tgid)
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{
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return tgid == 1 || tgid == 0;
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}
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static INLINE unsigned long
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probe_read_lim(void* dst, void* src, unsigned long len, unsigned long max)
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{
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len = len < max ? len : max;
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if (len > 1) {
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if (bpf_probe_read_kernel(dst, len, src))
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return 0;
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} else if (len == 1) {
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if (bpf_probe_read_kernel(dst, 1, src))
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return 0;
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}
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return len;
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}
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static INLINE int get_var_spid_index(struct var_kill_data_arr_t* arr_struct,
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int spid)
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{
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#ifdef UNROLL
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#pragma unroll
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#endif
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for (int i = 0; i < ARRAY_SIZE(arr_struct->array); i++)
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if (arr_struct->array[i].meta.pid == spid)
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return i;
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return -1;
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}
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static INLINE void populate_ancestors(struct task_struct* task,
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struct ancestors_data_t* ancestors_data)
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{
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struct task_struct* parent = task;
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u32 num_ancestors, ppid;
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ancestors_data->num_ancestors = 0;
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#ifdef UNROLL
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#pragma unroll
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#endif
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for (num_ancestors = 0; num_ancestors < MAX_ANCESTORS; num_ancestors++) {
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parent = BPF_CORE_READ(parent, real_parent);
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if (parent == NULL)
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break;
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ppid = BPF_CORE_READ(parent, tgid);
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if (is_init_process(ppid))
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break;
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ancestors_data->ancestor_pids[num_ancestors] = ppid;
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ancestors_data->ancestor_exec_ids[num_ancestors] =
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BPF_CORE_READ(parent, self_exec_id);
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ancestors_data->ancestor_start_times[num_ancestors] =
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BPF_CORE_READ(parent, start_time);
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ancestors_data->num_ancestors = num_ancestors;
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}
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}
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static INLINE void* read_full_cgroup_path(struct kernfs_node* cgroup_node,
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struct kernfs_node* cgroup_root_node,
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void* payload,
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int* root_pos)
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{
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void* payload_start = payload;
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size_t filepart_length;
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#ifdef UNROLL
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#pragma unroll
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#endif
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for (int i = 0; i < MAX_CGROUPS_PATH_DEPTH; i++) {
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filepart_length =
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bpf_probe_read_kernel_str(payload, MAX_PATH,
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BPF_CORE_READ(cgroup_node, name));
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if (!cgroup_node)
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return payload;
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if (cgroup_node == cgroup_root_node)
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*root_pos = payload - payload_start;
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if (filepart_length <= MAX_PATH) {
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barrier_var(filepart_length);
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payload += filepart_length;
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}
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cgroup_node = BPF_CORE_READ(cgroup_node, parent);
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}
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return payload;
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}
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static ino_t get_inode_from_kernfs(struct kernfs_node* node)
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{
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struct kernfs_node___52* node52 = (void*)node;
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if (bpf_core_field_exists(node52->id.ino)) {
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barrier_var(node52);
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return BPF_CORE_READ(node52, id.ino);
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} else {
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barrier_var(node);
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return (u64)BPF_CORE_READ(node, id);
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}
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}
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extern bool CONFIG_CGROUP_PIDS __kconfig __weak;
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enum cgroup_subsys_id___local {
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pids_cgrp_id___local = 123, /* value doesn't matter */
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};
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static INLINE void* populate_cgroup_info(struct cgroup_data_t* cgroup_data,
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struct task_struct* task,
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void* payload)
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{
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struct kernfs_node* root_kernfs =
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BPF_CORE_READ(task, nsproxy, cgroup_ns, root_cset, dfl_cgrp, kn);
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struct kernfs_node* proc_kernfs = BPF_CORE_READ(task, cgroups, dfl_cgrp, kn);
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#if __has_builtin(__builtin_preserve_enum_value)
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if (ENABLE_CGROUP_V1_RESOLVER && CONFIG_CGROUP_PIDS) {
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int cgrp_id = bpf_core_enum_value(enum cgroup_subsys_id___local,
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pids_cgrp_id___local);
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#ifdef UNROLL
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#pragma unroll
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#endif
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for (int i = 0; i < CGROUP_SUBSYS_COUNT; i++) {
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struct cgroup_subsys_state* subsys =
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BPF_CORE_READ(task, cgroups, subsys[i]);
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if (subsys != NULL) {
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int subsys_id = BPF_CORE_READ(subsys, ss, id);
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if (subsys_id == cgrp_id) {
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proc_kernfs = BPF_CORE_READ(subsys, cgroup, kn);
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root_kernfs = BPF_CORE_READ(subsys, ss, root, kf_root, kn);
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break;
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}
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}
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}
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}
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#endif
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cgroup_data->cgroup_root_inode = get_inode_from_kernfs(root_kernfs);
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cgroup_data->cgroup_proc_inode = get_inode_from_kernfs(proc_kernfs);
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if (bpf_core_field_exists(root_kernfs->iattr->ia_mtime)) {
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cgroup_data->cgroup_root_mtime =
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BPF_CORE_READ(root_kernfs, iattr, ia_mtime.tv_nsec);
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cgroup_data->cgroup_proc_mtime =
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BPF_CORE_READ(proc_kernfs, iattr, ia_mtime.tv_nsec);
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} else {
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struct kernfs_iattrs___52* root_iattr =
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(struct kernfs_iattrs___52*)BPF_CORE_READ(root_kernfs, iattr);
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cgroup_data->cgroup_root_mtime =
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BPF_CORE_READ(root_iattr, ia_iattr.ia_mtime.tv_nsec);
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struct kernfs_iattrs___52* proc_iattr =
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(struct kernfs_iattrs___52*)BPF_CORE_READ(proc_kernfs, iattr);
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cgroup_data->cgroup_proc_mtime =
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BPF_CORE_READ(proc_iattr, ia_iattr.ia_mtime.tv_nsec);
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}
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cgroup_data->cgroup_root_length = 0;
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cgroup_data->cgroup_proc_length = 0;
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cgroup_data->cgroup_full_length = 0;
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size_t cgroup_root_length =
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bpf_probe_read_kernel_str(payload, MAX_PATH,
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BPF_CORE_READ(root_kernfs, name));
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barrier_var(cgroup_root_length);
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if (cgroup_root_length <= MAX_PATH) {
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barrier_var(cgroup_root_length);
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cgroup_data->cgroup_root_length = cgroup_root_length;
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payload += cgroup_root_length;
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}
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size_t cgroup_proc_length =
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bpf_probe_read_kernel_str(payload, MAX_PATH,
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BPF_CORE_READ(proc_kernfs, name));
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barrier_var(cgroup_proc_length);
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if (cgroup_proc_length <= MAX_PATH) {
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barrier_var(cgroup_proc_length);
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cgroup_data->cgroup_proc_length = cgroup_proc_length;
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payload += cgroup_proc_length;
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}
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if (FETCH_CGROUPS_FROM_BPF) {
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cgroup_data->cgroup_full_path_root_pos = -1;
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void* payload_end_pos = read_full_cgroup_path(proc_kernfs, root_kernfs, payload,
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&cgroup_data->cgroup_full_path_root_pos);
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cgroup_data->cgroup_full_length = payload_end_pos - payload;
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payload = payload_end_pos;
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}
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return (void*)payload;
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}
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static INLINE void* populate_var_metadata(struct var_metadata_t* metadata,
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struct task_struct* task,
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u32 pid, void* payload)
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{
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u64 uid_gid = bpf_get_current_uid_gid();
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metadata->uid = (u32)uid_gid;
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metadata->gid = uid_gid >> 32;
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metadata->pid = pid;
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metadata->exec_id = BPF_CORE_READ(task, self_exec_id);
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metadata->start_time = BPF_CORE_READ(task, start_time);
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metadata->comm_length = 0;
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size_t comm_length = bpf_core_read_str(payload, TASK_COMM_LEN, &task->comm);
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barrier_var(comm_length);
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if (comm_length <= TASK_COMM_LEN) {
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barrier_var(comm_length);
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metadata->comm_length = comm_length;
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payload += comm_length;
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}
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return (void*)payload;
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}
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static INLINE struct var_kill_data_t*
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get_var_kill_data(struct pt_regs* ctx, int spid, int tpid, int sig)
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{
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int zero = 0;
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struct var_kill_data_t* kill_data = bpf_map_lookup_elem(&data_heap, &zero);
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if (kill_data == NULL)
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return NULL;
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struct task_struct* task = (struct task_struct*)bpf_get_current_task();
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void* payload = populate_var_metadata(&kill_data->meta, task, spid, kill_data->payload);
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payload = populate_cgroup_info(&kill_data->cgroup_data, task, payload);
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size_t payload_length = payload - (void*)kill_data->payload;
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kill_data->payload_length = payload_length;
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populate_ancestors(task, &kill_data->ancestors_info);
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kill_data->meta.type = KILL_EVENT;
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kill_data->kill_target_pid = tpid;
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kill_data->kill_sig = sig;
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kill_data->kill_count = 1;
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kill_data->last_kill_time = bpf_ktime_get_ns();
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return kill_data;
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}
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static INLINE int trace_var_sys_kill(void* ctx, int tpid, int sig)
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{
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if ((KILL_SIGNALS & (1ULL << sig)) == 0)
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return 0;
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u32 spid = get_userspace_pid();
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struct var_kill_data_arr_t* arr_struct = bpf_map_lookup_elem(&var_tpid_to_data, &tpid);
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if (arr_struct == NULL) {
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struct var_kill_data_t* kill_data = get_var_kill_data(ctx, spid, tpid, sig);
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int zero = 0;
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if (kill_data == NULL)
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return 0;
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arr_struct = bpf_map_lookup_elem(&data_heap, &zero);
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if (arr_struct == NULL)
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return 0;
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bpf_probe_read_kernel(&arr_struct->array[0],
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sizeof(arr_struct->array[0]), kill_data);
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} else {
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int index = get_var_spid_index(arr_struct, spid);
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if (index == -1) {
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struct var_kill_data_t* kill_data =
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get_var_kill_data(ctx, spid, tpid, sig);
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if (kill_data == NULL)
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return 0;
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#ifdef UNROLL
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#pragma unroll
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#endif
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for (int i = 0; i < ARRAY_SIZE(arr_struct->array); i++)
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if (arr_struct->array[i].meta.pid == 0) {
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bpf_probe_read_kernel(&arr_struct->array[i],
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sizeof(arr_struct->array[i]),
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kill_data);
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bpf_map_update_elem(&var_tpid_to_data, &tpid,
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arr_struct, 0);
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return 0;
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}
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return 0;
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}
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struct var_kill_data_t* kill_data = &arr_struct->array[index];
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u64 delta_sec =
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(bpf_ktime_get_ns() - kill_data->last_kill_time) / 1000000000;
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if (delta_sec < STALE_INFO) {
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kill_data->kill_count++;
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kill_data->last_kill_time = bpf_ktime_get_ns();
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bpf_probe_read_kernel(&arr_struct->array[index],
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sizeof(arr_struct->array[index]),
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kill_data);
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} else {
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struct var_kill_data_t* kill_data =
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get_var_kill_data(ctx, spid, tpid, sig);
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if (kill_data == NULL)
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return 0;
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bpf_probe_read_kernel(&arr_struct->array[index],
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sizeof(arr_struct->array[index]),
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kill_data);
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}
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}
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bpf_map_update_elem(&var_tpid_to_data, &tpid, arr_struct, 0);
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return 0;
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}
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static INLINE void bpf_stats_enter(struct bpf_func_stats_ctx* bpf_stat_ctx,
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enum bpf_function_id func_id)
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{
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int func_id_key = func_id;
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bpf_stat_ctx->start_time_ns = bpf_ktime_get_ns();
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bpf_stat_ctx->bpf_func_stats_data_val =
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bpf_map_lookup_elem(&bpf_func_stats, &func_id_key);
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if (bpf_stat_ctx->bpf_func_stats_data_val)
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bpf_stat_ctx->bpf_func_stats_data_val->num_executions++;
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}
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static INLINE void bpf_stats_exit(struct bpf_func_stats_ctx* bpf_stat_ctx)
|
|
{
|
|
if (bpf_stat_ctx->bpf_func_stats_data_val)
|
|
bpf_stat_ctx->bpf_func_stats_data_val->time_elapsed_ns +=
|
|
bpf_ktime_get_ns() - bpf_stat_ctx->start_time_ns;
|
|
}
|
|
|
|
static INLINE void
|
|
bpf_stats_pre_submit_var_perf_event(struct bpf_func_stats_ctx* bpf_stat_ctx,
|
|
struct var_metadata_t* meta)
|
|
{
|
|
if (bpf_stat_ctx->bpf_func_stats_data_val) {
|
|
bpf_stat_ctx->bpf_func_stats_data_val->num_perf_events++;
|
|
meta->bpf_stats_num_perf_events =
|
|
bpf_stat_ctx->bpf_func_stats_data_val->num_perf_events;
|
|
}
|
|
meta->bpf_stats_start_ktime_ns = bpf_stat_ctx->start_time_ns;
|
|
meta->cpu_id = bpf_get_smp_processor_id();
|
|
}
|
|
|
|
static INLINE size_t
|
|
read_absolute_file_path_from_dentry(struct dentry* filp_dentry, void* payload)
|
|
{
|
|
size_t length = 0;
|
|
size_t filepart_length;
|
|
struct dentry* parent_dentry;
|
|
|
|
#ifdef UNROLL
|
|
#pragma unroll
|
|
#endif
|
|
for (int i = 0; i < MAX_PATH_DEPTH; i++) {
|
|
filepart_length =
|
|
bpf_probe_read_kernel_str(payload, MAX_PATH,
|
|
BPF_CORE_READ(filp_dentry, d_name.name));
|
|
barrier_var(filepart_length);
|
|
if (filepart_length > MAX_PATH)
|
|
break;
|
|
barrier_var(filepart_length);
|
|
payload += filepart_length;
|
|
length += filepart_length;
|
|
|
|
parent_dentry = BPF_CORE_READ(filp_dentry, d_parent);
|
|
if (filp_dentry == parent_dentry)
|
|
break;
|
|
filp_dentry = parent_dentry;
|
|
}
|
|
|
|
return length;
|
|
}
|
|
|
|
static INLINE bool
|
|
is_ancestor_in_allowed_inodes(struct dentry* filp_dentry)
|
|
{
|
|
struct dentry* parent_dentry;
|
|
#ifdef UNROLL
|
|
#pragma unroll
|
|
#endif
|
|
for (int i = 0; i < MAX_PATH_DEPTH; i++) {
|
|
u64 dir_ino = BPF_CORE_READ(filp_dentry, d_inode, i_ino);
|
|
bool* allowed_dir = bpf_map_lookup_elem(&allowed_directory_inodes, &dir_ino);
|
|
|
|
if (allowed_dir != NULL)
|
|
return true;
|
|
parent_dentry = BPF_CORE_READ(filp_dentry, d_parent);
|
|
if (filp_dentry == parent_dentry)
|
|
break;
|
|
filp_dentry = parent_dentry;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
static INLINE bool is_dentry_allowed_for_filemod(struct dentry* file_dentry,
|
|
u32* device_id,
|
|
u64* file_ino)
|
|
{
|
|
u32 dev_id = BPF_CORE_READ(file_dentry, d_sb, s_dev);
|
|
*device_id = dev_id;
|
|
bool* allowed_device = bpf_map_lookup_elem(&allowed_devices, &dev_id);
|
|
|
|
if (allowed_device == NULL)
|
|
return false;
|
|
|
|
u64 ino = BPF_CORE_READ(file_dentry, d_inode, i_ino);
|
|
*file_ino = ino;
|
|
bool* allowed_file = bpf_map_lookup_elem(&allowed_file_inodes, &ino);
|
|
|
|
if (allowed_file == NULL)
|
|
if (!is_ancestor_in_allowed_inodes(BPF_CORE_READ(file_dentry, d_parent)))
|
|
return false;
|
|
return true;
|
|
}
|
|
|
|
SEC("kprobe/proc_sys_write")
|
|
ssize_t BPF_KPROBE(kprobe__proc_sys_write,
|
|
struct file* filp, const char* buf,
|
|
size_t count, loff_t* ppos)
|
|
{
|
|
struct bpf_func_stats_ctx stats_ctx;
|
|
bpf_stats_enter(&stats_ctx, profiler_bpf_proc_sys_write);
|
|
|
|
u32 pid = get_userspace_pid();
|
|
int zero = 0;
|
|
struct var_sysctl_data_t* sysctl_data =
|
|
bpf_map_lookup_elem(&data_heap, &zero);
|
|
if (!sysctl_data)
|
|
goto out;
|
|
|
|
struct task_struct* task = (struct task_struct*)bpf_get_current_task();
|
|
sysctl_data->meta.type = SYSCTL_EVENT;
|
|
void* payload = populate_var_metadata(&sysctl_data->meta, task, pid, sysctl_data->payload);
|
|
payload = populate_cgroup_info(&sysctl_data->cgroup_data, task, payload);
|
|
|
|
populate_ancestors(task, &sysctl_data->ancestors_info);
|
|
|
|
sysctl_data->sysctl_val_length = 0;
|
|
sysctl_data->sysctl_path_length = 0;
|
|
|
|
size_t sysctl_val_length = bpf_probe_read_kernel_str(payload,
|
|
CTL_MAXNAME, buf);
|
|
barrier_var(sysctl_val_length);
|
|
if (sysctl_val_length <= CTL_MAXNAME) {
|
|
barrier_var(sysctl_val_length);
|
|
sysctl_data->sysctl_val_length = sysctl_val_length;
|
|
payload += sysctl_val_length;
|
|
}
|
|
|
|
size_t sysctl_path_length =
|
|
bpf_probe_read_kernel_str(payload, MAX_PATH,
|
|
BPF_CORE_READ(filp, f_path.dentry,
|
|
d_name.name));
|
|
barrier_var(sysctl_path_length);
|
|
if (sysctl_path_length <= MAX_PATH) {
|
|
barrier_var(sysctl_path_length);
|
|
sysctl_data->sysctl_path_length = sysctl_path_length;
|
|
payload += sysctl_path_length;
|
|
}
|
|
|
|
bpf_stats_pre_submit_var_perf_event(&stats_ctx, &sysctl_data->meta);
|
|
unsigned long data_len = payload - (void*)sysctl_data;
|
|
data_len = data_len > sizeof(struct var_sysctl_data_t)
|
|
? sizeof(struct var_sysctl_data_t)
|
|
: data_len;
|
|
bpf_perf_event_output(ctx, &events, BPF_F_CURRENT_CPU, sysctl_data, data_len);
|
|
out:
|
|
bpf_stats_exit(&stats_ctx);
|
|
return 0;
|
|
}
|
|
|
|
SEC("tracepoint/syscalls/sys_enter_kill")
|
|
int tracepoint__syscalls__sys_enter_kill(struct trace_event_raw_sys_enter* ctx)
|
|
{
|
|
struct bpf_func_stats_ctx stats_ctx;
|
|
|
|
bpf_stats_enter(&stats_ctx, profiler_bpf_sys_enter_kill);
|
|
int pid = ctx->args[0];
|
|
int sig = ctx->args[1];
|
|
int ret = trace_var_sys_kill(ctx, pid, sig);
|
|
bpf_stats_exit(&stats_ctx);
|
|
return ret;
|
|
};
|
|
|
|
SEC("raw_tracepoint/sched_process_exit")
|
|
int raw_tracepoint__sched_process_exit(void* ctx)
|
|
{
|
|
int zero = 0;
|
|
struct bpf_func_stats_ctx stats_ctx;
|
|
bpf_stats_enter(&stats_ctx, profiler_bpf_sched_process_exit);
|
|
|
|
u32 tpid = get_userspace_pid();
|
|
|
|
struct var_kill_data_arr_t* arr_struct = bpf_map_lookup_elem(&var_tpid_to_data, &tpid);
|
|
struct var_kill_data_t* kill_data = bpf_map_lookup_elem(&data_heap, &zero);
|
|
|
|
if (arr_struct == NULL || kill_data == NULL)
|
|
goto out;
|
|
|
|
struct task_struct* task = (struct task_struct*)bpf_get_current_task();
|
|
struct kernfs_node* proc_kernfs = BPF_CORE_READ(task, cgroups, dfl_cgrp, kn);
|
|
|
|
#ifdef UNROLL
|
|
#pragma unroll
|
|
#endif
|
|
for (int i = 0; i < ARRAY_SIZE(arr_struct->array); i++) {
|
|
struct var_kill_data_t* past_kill_data = &arr_struct->array[i];
|
|
|
|
if (past_kill_data != NULL && past_kill_data->kill_target_pid == tpid) {
|
|
bpf_probe_read_kernel(kill_data, sizeof(*past_kill_data),
|
|
past_kill_data);
|
|
void* payload = kill_data->payload;
|
|
size_t offset = kill_data->payload_length;
|
|
if (offset >= MAX_METADATA_PAYLOAD_LEN + MAX_CGROUP_PAYLOAD_LEN)
|
|
return 0;
|
|
payload += offset;
|
|
|
|
kill_data->kill_target_name_length = 0;
|
|
kill_data->kill_target_cgroup_proc_length = 0;
|
|
|
|
size_t comm_length = bpf_core_read_str(payload, TASK_COMM_LEN, &task->comm);
|
|
barrier_var(comm_length);
|
|
if (comm_length <= TASK_COMM_LEN) {
|
|
barrier_var(comm_length);
|
|
kill_data->kill_target_name_length = comm_length;
|
|
payload += comm_length;
|
|
}
|
|
|
|
size_t cgroup_proc_length =
|
|
bpf_probe_read_kernel_str(payload,
|
|
KILL_TARGET_LEN,
|
|
BPF_CORE_READ(proc_kernfs, name));
|
|
barrier_var(cgroup_proc_length);
|
|
if (cgroup_proc_length <= KILL_TARGET_LEN) {
|
|
barrier_var(cgroup_proc_length);
|
|
kill_data->kill_target_cgroup_proc_length = cgroup_proc_length;
|
|
payload += cgroup_proc_length;
|
|
}
|
|
|
|
bpf_stats_pre_submit_var_perf_event(&stats_ctx, &kill_data->meta);
|
|
unsigned long data_len = (void*)payload - (void*)kill_data;
|
|
data_len = data_len > sizeof(struct var_kill_data_t)
|
|
? sizeof(struct var_kill_data_t)
|
|
: data_len;
|
|
bpf_perf_event_output(ctx, &events, BPF_F_CURRENT_CPU, kill_data, data_len);
|
|
}
|
|
}
|
|
bpf_map_delete_elem(&var_tpid_to_data, &tpid);
|
|
out:
|
|
bpf_stats_exit(&stats_ctx);
|
|
return 0;
|
|
}
|
|
|
|
SEC("raw_tracepoint/sched_process_exec")
|
|
int raw_tracepoint__sched_process_exec(struct bpf_raw_tracepoint_args* ctx)
|
|
{
|
|
struct bpf_func_stats_ctx stats_ctx;
|
|
bpf_stats_enter(&stats_ctx, profiler_bpf_sched_process_exec);
|
|
|
|
struct linux_binprm* bprm = (struct linux_binprm*)ctx->args[2];
|
|
u64 inode = BPF_CORE_READ(bprm, file, f_inode, i_ino);
|
|
|
|
bool* should_filter_binprm = bpf_map_lookup_elem(&disallowed_exec_inodes, &inode);
|
|
if (should_filter_binprm != NULL)
|
|
goto out;
|
|
|
|
int zero = 0;
|
|
struct var_exec_data_t* proc_exec_data = bpf_map_lookup_elem(&data_heap, &zero);
|
|
if (!proc_exec_data)
|
|
goto out;
|
|
|
|
if (INODE_FILTER && inode != INODE_FILTER)
|
|
return 0;
|
|
|
|
u32 pid = get_userspace_pid();
|
|
struct task_struct* task = (struct task_struct*)bpf_get_current_task();
|
|
|
|
proc_exec_data->meta.type = EXEC_EVENT;
|
|
proc_exec_data->bin_path_length = 0;
|
|
proc_exec_data->cmdline_length = 0;
|
|
proc_exec_data->environment_length = 0;
|
|
void* payload = populate_var_metadata(&proc_exec_data->meta, task, pid,
|
|
proc_exec_data->payload);
|
|
payload = populate_cgroup_info(&proc_exec_data->cgroup_data, task, payload);
|
|
|
|
struct task_struct* parent_task = BPF_CORE_READ(task, real_parent);
|
|
proc_exec_data->parent_pid = BPF_CORE_READ(parent_task, tgid);
|
|
proc_exec_data->parent_uid = BPF_CORE_READ(parent_task, real_cred, uid.val);
|
|
proc_exec_data->parent_exec_id = BPF_CORE_READ(parent_task, self_exec_id);
|
|
proc_exec_data->parent_start_time = BPF_CORE_READ(parent_task, start_time);
|
|
|
|
const char* filename = BPF_CORE_READ(bprm, filename);
|
|
size_t bin_path_length =
|
|
bpf_probe_read_kernel_str(payload, MAX_FILENAME_LEN, filename);
|
|
barrier_var(bin_path_length);
|
|
if (bin_path_length <= MAX_FILENAME_LEN) {
|
|
barrier_var(bin_path_length);
|
|
proc_exec_data->bin_path_length = bin_path_length;
|
|
payload += bin_path_length;
|
|
}
|
|
|
|
void* arg_start = (void*)BPF_CORE_READ(task, mm, arg_start);
|
|
void* arg_end = (void*)BPF_CORE_READ(task, mm, arg_end);
|
|
unsigned int cmdline_length = probe_read_lim(payload, arg_start,
|
|
arg_end - arg_start, MAX_ARGS_LEN);
|
|
|
|
if (cmdline_length <= MAX_ARGS_LEN) {
|
|
barrier_var(cmdline_length);
|
|
proc_exec_data->cmdline_length = cmdline_length;
|
|
payload += cmdline_length;
|
|
}
|
|
|
|
if (READ_ENVIRON_FROM_EXEC) {
|
|
void* env_start = (void*)BPF_CORE_READ(task, mm, env_start);
|
|
void* env_end = (void*)BPF_CORE_READ(task, mm, env_end);
|
|
unsigned long env_len = probe_read_lim(payload, env_start,
|
|
env_end - env_start, MAX_ENVIRON_LEN);
|
|
if (cmdline_length <= MAX_ENVIRON_LEN) {
|
|
proc_exec_data->environment_length = env_len;
|
|
payload += env_len;
|
|
}
|
|
}
|
|
|
|
bpf_stats_pre_submit_var_perf_event(&stats_ctx, &proc_exec_data->meta);
|
|
unsigned long data_len = payload - (void*)proc_exec_data;
|
|
data_len = data_len > sizeof(struct var_exec_data_t)
|
|
? sizeof(struct var_exec_data_t)
|
|
: data_len;
|
|
bpf_perf_event_output(ctx, &events, BPF_F_CURRENT_CPU, proc_exec_data, data_len);
|
|
out:
|
|
bpf_stats_exit(&stats_ctx);
|
|
return 0;
|
|
}
|
|
|
|
SEC("kretprobe/do_filp_open")
|
|
int kprobe_ret__do_filp_open(struct pt_regs* ctx)
|
|
{
|
|
struct bpf_func_stats_ctx stats_ctx;
|
|
bpf_stats_enter(&stats_ctx, profiler_bpf_do_filp_open_ret);
|
|
|
|
struct file* filp = (struct file*)PT_REGS_RC_CORE(ctx);
|
|
|
|
if (filp == NULL || IS_ERR(filp))
|
|
goto out;
|
|
unsigned int flags = BPF_CORE_READ(filp, f_flags);
|
|
if ((flags & (O_RDWR | O_WRONLY)) == 0)
|
|
goto out;
|
|
if ((flags & O_TMPFILE) > 0)
|
|
goto out;
|
|
struct inode* file_inode = BPF_CORE_READ(filp, f_inode);
|
|
umode_t mode = BPF_CORE_READ(file_inode, i_mode);
|
|
if (S_ISDIR(mode) || S_ISCHR(mode) || S_ISBLK(mode) || S_ISFIFO(mode) ||
|
|
S_ISSOCK(mode))
|
|
goto out;
|
|
|
|
struct dentry* filp_dentry = BPF_CORE_READ(filp, f_path.dentry);
|
|
u32 device_id = 0;
|
|
u64 file_ino = 0;
|
|
if (!is_dentry_allowed_for_filemod(filp_dentry, &device_id, &file_ino))
|
|
goto out;
|
|
|
|
int zero = 0;
|
|
struct var_filemod_data_t* filemod_data = bpf_map_lookup_elem(&data_heap, &zero);
|
|
if (!filemod_data)
|
|
goto out;
|
|
|
|
u32 pid = get_userspace_pid();
|
|
struct task_struct* task = (struct task_struct*)bpf_get_current_task();
|
|
|
|
filemod_data->meta.type = FILEMOD_EVENT;
|
|
filemod_data->fmod_type = FMOD_OPEN;
|
|
filemod_data->dst_flags = flags;
|
|
filemod_data->src_inode = 0;
|
|
filemod_data->dst_inode = file_ino;
|
|
filemod_data->src_device_id = 0;
|
|
filemod_data->dst_device_id = device_id;
|
|
filemod_data->src_filepath_length = 0;
|
|
filemod_data->dst_filepath_length = 0;
|
|
|
|
void* payload = populate_var_metadata(&filemod_data->meta, task, pid,
|
|
filemod_data->payload);
|
|
payload = populate_cgroup_info(&filemod_data->cgroup_data, task, payload);
|
|
|
|
size_t len = read_absolute_file_path_from_dentry(filp_dentry, payload);
|
|
barrier_var(len);
|
|
if (len <= MAX_FILEPATH_LENGTH) {
|
|
barrier_var(len);
|
|
payload += len;
|
|
filemod_data->dst_filepath_length = len;
|
|
}
|
|
bpf_stats_pre_submit_var_perf_event(&stats_ctx, &filemod_data->meta);
|
|
unsigned long data_len = payload - (void*)filemod_data;
|
|
data_len = data_len > sizeof(*filemod_data) ? sizeof(*filemod_data) : data_len;
|
|
bpf_perf_event_output(ctx, &events, BPF_F_CURRENT_CPU, filemod_data, data_len);
|
|
out:
|
|
bpf_stats_exit(&stats_ctx);
|
|
return 0;
|
|
}
|
|
|
|
SEC("kprobe/vfs_link")
|
|
int BPF_KPROBE(kprobe__vfs_link,
|
|
struct dentry* old_dentry, struct mnt_idmap *idmap,
|
|
struct inode* dir, struct dentry* new_dentry,
|
|
struct inode** delegated_inode)
|
|
{
|
|
struct bpf_func_stats_ctx stats_ctx;
|
|
bpf_stats_enter(&stats_ctx, profiler_bpf_vfs_link);
|
|
|
|
u32 src_device_id = 0;
|
|
u64 src_file_ino = 0;
|
|
u32 dst_device_id = 0;
|
|
u64 dst_file_ino = 0;
|
|
if (!is_dentry_allowed_for_filemod(old_dentry, &src_device_id, &src_file_ino) &&
|
|
!is_dentry_allowed_for_filemod(new_dentry, &dst_device_id, &dst_file_ino))
|
|
goto out;
|
|
|
|
int zero = 0;
|
|
struct var_filemod_data_t* filemod_data = bpf_map_lookup_elem(&data_heap, &zero);
|
|
if (!filemod_data)
|
|
goto out;
|
|
|
|
u32 pid = get_userspace_pid();
|
|
struct task_struct* task = (struct task_struct*)bpf_get_current_task();
|
|
|
|
filemod_data->meta.type = FILEMOD_EVENT;
|
|
filemod_data->fmod_type = FMOD_LINK;
|
|
filemod_data->dst_flags = 0;
|
|
filemod_data->src_inode = src_file_ino;
|
|
filemod_data->dst_inode = dst_file_ino;
|
|
filemod_data->src_device_id = src_device_id;
|
|
filemod_data->dst_device_id = dst_device_id;
|
|
filemod_data->src_filepath_length = 0;
|
|
filemod_data->dst_filepath_length = 0;
|
|
|
|
void* payload = populate_var_metadata(&filemod_data->meta, task, pid,
|
|
filemod_data->payload);
|
|
payload = populate_cgroup_info(&filemod_data->cgroup_data, task, payload);
|
|
|
|
size_t len = read_absolute_file_path_from_dentry(old_dentry, payload);
|
|
barrier_var(len);
|
|
if (len <= MAX_FILEPATH_LENGTH) {
|
|
barrier_var(len);
|
|
payload += len;
|
|
filemod_data->src_filepath_length = len;
|
|
}
|
|
|
|
len = read_absolute_file_path_from_dentry(new_dentry, payload);
|
|
barrier_var(len);
|
|
if (len <= MAX_FILEPATH_LENGTH) {
|
|
barrier_var(len);
|
|
payload += len;
|
|
filemod_data->dst_filepath_length = len;
|
|
}
|
|
|
|
bpf_stats_pre_submit_var_perf_event(&stats_ctx, &filemod_data->meta);
|
|
unsigned long data_len = payload - (void*)filemod_data;
|
|
data_len = data_len > sizeof(*filemod_data) ? sizeof(*filemod_data) : data_len;
|
|
bpf_perf_event_output(ctx, &events, BPF_F_CURRENT_CPU, filemod_data, data_len);
|
|
out:
|
|
bpf_stats_exit(&stats_ctx);
|
|
return 0;
|
|
}
|
|
|
|
SEC("kprobe/vfs_symlink")
|
|
int BPF_KPROBE(kprobe__vfs_symlink, struct inode* dir, struct dentry* dentry,
|
|
const char* oldname)
|
|
{
|
|
struct bpf_func_stats_ctx stats_ctx;
|
|
bpf_stats_enter(&stats_ctx, profiler_bpf_vfs_symlink);
|
|
|
|
u32 dst_device_id = 0;
|
|
u64 dst_file_ino = 0;
|
|
if (!is_dentry_allowed_for_filemod(dentry, &dst_device_id, &dst_file_ino))
|
|
goto out;
|
|
|
|
int zero = 0;
|
|
struct var_filemod_data_t* filemod_data = bpf_map_lookup_elem(&data_heap, &zero);
|
|
if (!filemod_data)
|
|
goto out;
|
|
|
|
u32 pid = get_userspace_pid();
|
|
struct task_struct* task = (struct task_struct*)bpf_get_current_task();
|
|
|
|
filemod_data->meta.type = FILEMOD_EVENT;
|
|
filemod_data->fmod_type = FMOD_SYMLINK;
|
|
filemod_data->dst_flags = 0;
|
|
filemod_data->src_inode = 0;
|
|
filemod_data->dst_inode = dst_file_ino;
|
|
filemod_data->src_device_id = 0;
|
|
filemod_data->dst_device_id = dst_device_id;
|
|
filemod_data->src_filepath_length = 0;
|
|
filemod_data->dst_filepath_length = 0;
|
|
|
|
void* payload = populate_var_metadata(&filemod_data->meta, task, pid,
|
|
filemod_data->payload);
|
|
payload = populate_cgroup_info(&filemod_data->cgroup_data, task, payload);
|
|
|
|
size_t len = bpf_probe_read_kernel_str(payload, MAX_FILEPATH_LENGTH,
|
|
oldname);
|
|
barrier_var(len);
|
|
if (len <= MAX_FILEPATH_LENGTH) {
|
|
barrier_var(len);
|
|
payload += len;
|
|
filemod_data->src_filepath_length = len;
|
|
}
|
|
len = read_absolute_file_path_from_dentry(dentry, payload);
|
|
barrier_var(len);
|
|
if (len <= MAX_FILEPATH_LENGTH) {
|
|
barrier_var(len);
|
|
payload += len;
|
|
filemod_data->dst_filepath_length = len;
|
|
}
|
|
bpf_stats_pre_submit_var_perf_event(&stats_ctx, &filemod_data->meta);
|
|
unsigned long data_len = payload - (void*)filemod_data;
|
|
data_len = data_len > sizeof(*filemod_data) ? sizeof(*filemod_data) : data_len;
|
|
bpf_perf_event_output(ctx, &events, BPF_F_CURRENT_CPU, filemod_data, data_len);
|
|
out:
|
|
bpf_stats_exit(&stats_ctx);
|
|
return 0;
|
|
}
|
|
|
|
SEC("raw_tracepoint/sched_process_fork")
|
|
int raw_tracepoint__sched_process_fork(struct bpf_raw_tracepoint_args* ctx)
|
|
{
|
|
struct bpf_func_stats_ctx stats_ctx;
|
|
bpf_stats_enter(&stats_ctx, profiler_bpf_sched_process_fork);
|
|
|
|
int zero = 0;
|
|
struct var_fork_data_t* fork_data = bpf_map_lookup_elem(&data_heap, &zero);
|
|
if (!fork_data)
|
|
goto out;
|
|
|
|
struct task_struct* parent = (struct task_struct*)ctx->args[0];
|
|
struct task_struct* child = (struct task_struct*)ctx->args[1];
|
|
fork_data->meta.type = FORK_EVENT;
|
|
|
|
void* payload = populate_var_metadata(&fork_data->meta, child,
|
|
BPF_CORE_READ(child, pid), fork_data->payload);
|
|
fork_data->parent_pid = BPF_CORE_READ(parent, pid);
|
|
fork_data->parent_exec_id = BPF_CORE_READ(parent, self_exec_id);
|
|
fork_data->parent_start_time = BPF_CORE_READ(parent, start_time);
|
|
bpf_stats_pre_submit_var_perf_event(&stats_ctx, &fork_data->meta);
|
|
|
|
unsigned long data_len = payload - (void*)fork_data;
|
|
data_len = data_len > sizeof(*fork_data) ? sizeof(*fork_data) : data_len;
|
|
bpf_perf_event_output(ctx, &events, BPF_F_CURRENT_CPU, fork_data, data_len);
|
|
out:
|
|
bpf_stats_exit(&stats_ctx);
|
|
return 0;
|
|
}
|
|
char _license[] SEC("license") = "GPL";
|