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<ol class="chapter"><li class="chapter-item expanded affix "><a href="../https://github.com/eunomia-bpf/bpf-developer-tutorial.html">https://github.com/eunomia-bpf/bpf-developer-tutorial</a></li><li class="chapter-item expanded affix "><li class="part-title">目录</li><li class="chapter-item expanded "><a href="../0-introduce/index.html"><strong aria-hidden="true">1.</strong> 介绍 eBPF 的基本概念、常见的开发工具</a></li><li class="chapter-item expanded "><a href="../1-helloworld/index.html"><strong aria-hidden="true">2.</strong> eBPF Hello World,基本框架和开发流程</a></li><li class="chapter-item expanded "><a href="../2-kprobe-unlink/index.html"><strong aria-hidden="true">3.</strong> 使用 kprobe 监测捕获 unlink 系统调用</a></li><li class="chapter-item expanded "><a href="../3-fentry-unlink/index.html"><strong aria-hidden="true">4.</strong> 使用 fentry 监测捕获 unlink 系统调用</a></li><li class="chapter-item expanded "><a href="../4-opensnoop/index.html"><strong aria-hidden="true">5.</strong> 捕获进程打开文件的系统调用集合,使用全局变量过滤进程 pid</a></li><li class="chapter-item expanded "><a href="../5-uprobe-bashreadline/index.html"><strong aria-hidden="true">6.</strong> 使用 uprobe 捕获 bash 的 readline 函数调用</a></li><li class="chapter-item expanded "><a href="../6-sigsnoop/index.html"><strong aria-hidden="true">7.</strong> 捕获进程发送信号的系统调用集合,使用 hash map 保存状态</a></li><li class="chapter-item expanded "><a href="../7-execsnoop/index.html" class="active"><strong aria-hidden="true">8.</strong> 捕获进程执行/退出时间,通过 perf event array 向用户态打印输出</a></li><li class="chapter-item expanded "><a href="../8-exitsnoop/index.html"><strong aria-hidden="true">9.</strong> 使用 exitsnoop 监控进程退出事件,使用 ring buffer 向用户态打印输出</a></li><li class="chapter-item expanded "><a href="../9-runqlat/index.html"><strong aria-hidden="true">10.</strong> 一个 Linux 内核 BPF 程序,通过柱状图来总结调度程序运行队列延迟,显示任务等待运行在 CPU 上的时间长度</a></li><li class="chapter-item expanded "><a href="../10-hardirqs/index.html"><strong aria-hidden="true">11.</strong> 使用 hardirqs 或 softirqs 捕获中断事件</a></li><li class="chapter-item expanded "><a href="../11-bootstrap/index.html"><strong aria-hidden="true">12.</strong> 使用 bootstrap 开发用户态程序并跟踪 exec() 和 exit() 系统调用</a></li><li class="chapter-item expanded "><a href="../13-tcpconnlat/index.html"><strong aria-hidden="true">13.</strong> 使用 libbpf-bootstrap 开发程序统计 TCP 连接延时</a></li><li class="chapter-item expanded "><a href="../14-tcpstates/index.html"><strong aria-hidden="true">14.</strong> 使用 libbpf-bootstrap 记录 TCP 连接状态与 TCP RTT</a></li><li class="chapter-item expanded "><a href="../15-javagc/index.html"><strong aria-hidden="true">15.</strong> 使用 USDT 捕获用户态 Java GC 事件耗时</a></li><li class="chapter-item expanded "><a href="../16-memleak/index.html"><strong aria-hidden="true">16.</strong> 编写 eBPF 程序 Memleak 监控内存泄漏</a></li><li class="chapter-item expanded "><a href="../17-biopattern/index.html"><strong aria-hidden="true">17.</strong> 编写 eBPF 程序 Biopattern 统计随机/顺序磁盘 I/O</a></li><li class="chapter-item expanded "><a href="../18-further-reading/index.html"><strong aria-hidden="true">18.</strong> 更多的参考资料</a></li><li class="chapter-item expanded "><a href="../19-lsm-connect/index.html"><strong aria-hidden="true">19.</strong> 使用 LSM 进行安全检测防御</a></li><li class="chapter-item expanded "><a href="../20-tc/index.html"><strong aria-hidden="true">20.</strong> 使用 eBPF 进行 tc 流量控制</a></li><li class="chapter-item expanded affix "><li class="part-title">eBPF 高级特性与进阶主题</li><li class="chapter-item expanded "><a href="../22-android/index.html"><strong aria-hidden="true">21.</strong> 在 Android 上使用 eBPF 程序</a></li><li class="chapter-item expanded "><a href="../23-http/index.html"><strong aria-hidden="true">22.</strong> 使用 eBPF 追踪 HTTP 请求或其他七层协议</a></li><li class="chapter-item expanded "><a href="../30-sslsniff/index.html"><strong aria-hidden="true">23.</strong> 使用 uprobe 捕获多种库的 SSL/TLS 明文数据</a></li><li class="chapter-item expanded "><a href="../29-sockops/index.html"><strong aria-hidden="true">24.</strong> 使用 sockops 加速网络请求转发</a></li><li class="chapter-item expanded "><a href="../24-hide/index.html"><strong aria-hidden="true">25.</strong> 使用 eBPF 隐藏进程或文件信息</a></li><li class="chapter-item expanded "><a href="../25-signal/index.html"><strong aria-hidden="true">26.</strong> 使用 bpf_send_signal 发送信号终止进程</a></li><li class="chapter-item expanded "><a href="../26-sudo/index.html"><strong aria-hidden="true">27.</strong> 使用 eBPF 添加 sudo 用户</a></li><li class="chapter-item expanded "><a href="../27-replace/index.html"><strong aria-hidden="true">28.</strong> 使用 eBPF 替换任意程序读取或写入的文本</a></li><li class="chapter-item expanded "><a href="../28-detach/index.html"><strong aria-hidden="true">29.</strong> BPF的生命周期:使用 Detached 模式在用户态应用退出后持续运行 eBPF 程序</a></li><li class="chapter-item expanded "><a href="../30-sslsniff/index.html"><strong aria-hidden="true">30.</strong> 使用 eBPF 用户态捕获多种库的 SSL/TLS 明文数据</a></li><li class="chapter-item expanded affix "><li class="part-title">bcc 教程与文档</li><li class="chapter-item expanded "><a href="../bcc-documents/kernel-versions.html"><strong aria-hidden="true">31.</strong> BPF Features by Linux Kernel Version</a></li><li class="chapter-item expanded "><a href="../bcc-documents/kernel_config.html"><strong aria-hidden="true">32.</strong> Kernel Configuration for BPF Features</a></li><li class="chapter-item expanded "><a href="../bcc-documents/reference_guide.html"><strong aria-hidden="true">33.</strong> bcc Reference Guide</a></li><li class="chapter-item expanded "><a href="../bcc-documents/special_filtering.html"><strong aria-hidden="true">34.</strong> Special Filtering</a></li><li class="chapter-item expanded "><a href="../bcc-documents/tutorial.html"><strong aria-hidden="true">35.</strong> bcc Tutorial</a></li><li class="chapter-item expanded "><a href="../bcc-documents/tutorial_bcc_python_developer.html"><strong aria-hidden="true">36.</strong> bcc Python Developer Tutorial</a></li></ol>
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<h1 id="ebpf-入门实践教程七捕获进程执行事件通过-perf-event-array-向用户态打印输出"><a class="header" href="#ebpf-入门实践教程七捕获进程执行事件通过-perf-event-array-向用户态打印输出">eBPF 入门实践教程七:捕获进程执行事件,通过 perf event array 向用户态打印输出</a></h1>
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<p>eBPF (Extended Berkeley Packet Filter) 是 Linux 内核上的一个强大的网络和性能分析工具,它允许开发者在内核运行时动态加载、更新和运行用户定义的代码。</p>
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<p>本文是 eBPF 入门开发实践教程的第七篇,主要介绍如何捕获 Linux 内核中进程执行的事件,并且通过 perf event array 向用户态命令行打印输出,不需要再通过查看 /sys/kernel/debug/tracing/trace_pipe 文件来查看 eBPF 程序的输出。通过 perf event array 向用户态发送信息之后,可以进行复杂的数据处理和分析。</p>
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<h2 id="perf-buffer"><a class="header" href="#perf-buffer">perf buffer</a></h2>
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<p>eBPF 提供了两个环形缓冲区,可以用来将信息从 eBPF 程序传输到用户区控制器。第一个是perf环形缓冲区,,它至少从内核v4.15开始就存在了。第二个是后来引入的 BPF 环形缓冲区。本文只考虑perf环形缓冲区。</p>
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<h2 id="execsnoop"><a class="header" href="#execsnoop">execsnoop</a></h2>
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<p>通过 perf event array 向用户态命令行打印输出,需要编写一个头文件,一个 C 源文件。示例代码如下:</p>
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<p>头文件:execsnoop.h</p>
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<pre><code class="language-c">#ifndef __EXECSNOOP_H
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#define __EXECSNOOP_H
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#define TASK_COMM_LEN 16
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struct event {
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int pid;
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int ppid;
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int uid;
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int retval;
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bool is_exit;
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char comm[TASK_COMM_LEN];
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};
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#endif /* __EXECSNOOP_H */
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</code></pre>
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<p>源文件:execsnoop.bpf.c</p>
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<pre><code class="language-c">// SPDX-License-Identifier: (LGPL-2.1 OR BSD-2-Clause)
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#include <vmlinux.h>
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#include <bpf/bpf_helpers.h>
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#include <bpf/bpf_core_read.h>
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#include "execsnoop.h"
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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(u32));
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__uint(value_size, sizeof(u32));
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} events SEC(".maps");
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SEC("tracepoint/syscalls/sys_enter_execve")
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int tracepoint__syscalls__sys_enter_execve(struct trace_event_raw_sys_enter* ctx)
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{
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u64 id;
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pid_t pid, tgid;
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struct event event={0};
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struct task_struct *task;
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uid_t uid = (u32)bpf_get_current_uid_gid();
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id = bpf_get_current_pid_tgid();
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tgid = id >> 32;
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event.pid = tgid;
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event.uid = uid;
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task = (struct task_struct*)bpf_get_current_task();
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event.ppid = BPF_CORE_READ(task, real_parent, tgid);
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char *cmd_ptr = (char *) BPF_CORE_READ(ctx, args[0]);
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bpf_probe_read_str(&event.comm, sizeof(event.comm), cmd_ptr);
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bpf_perf_event_output(ctx, &events, BPF_F_CURRENT_CPU, &event, sizeof(event));
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return 0;
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}
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char LICENSE[] SEC("license") = "GPL";
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</code></pre>
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<p>这段代码定义了个 eBPF 程序,用于捕获进程执行 execve 系统调用的入口。</p>
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<p>在入口程序中,我们首先获取了当前进程的进程 ID 和用户 ID,然后通过 bpf_get_current_task 函数获取了当前进程的 task_struct 结构体,并通过 bpf_probe_read_str 函数读取了进程名称。最后,我们通过 bpf_perf_event_output 函数将进程执行事件输出到 perf buffer。</p>
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<p>使用这段代码,我们就可以捕获 Linux 内核中进程执行的事件, 并分析进程的执行情况。</p>
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<p>eunomia-bpf 是一个结合 Wasm 的开源 eBPF 动态加载运行时和开发工具链,它的目的是简化 eBPF 程序的开发、构建、分发、运行。可以参考 <a href="https://github.com/eunomia-bpf/eunomia-bpf">https://github.com/eunomia-bpf/eunomia-bpf</a> 下载和安装 ecc 编译工具链和 ecli 运行时。我们使用 eunomia-bpf 编译运行这个例子。</p>
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<p>使用容器编译:</p>
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<pre><code class="language-shell">docker run -it -v `pwd`/:/src/ ghcr.io/eunomia-bpf/ecc-`uname -m`:latest
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</code></pre>
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<p>或者使用 ecc 编译:</p>
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<pre><code class="language-shell">ecc execsnoop.bpf.c execsnoop.h
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</code></pre>
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<p>运行</p>
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<pre><code class="language-console">$ sudo ./ecli run package.json
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TIME PID PPID UID COMM
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21:28:30 40747 3517 1000 node
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21:28:30 40748 40747 1000 sh
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21:28:30 40749 3517 1000 node
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21:28:30 40750 40749 1000 sh
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21:28:30 40751 3517 1000 node
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21:28:30 40752 40751 1000 sh
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21:28:30 40753 40752 1000 cpuUsage.sh
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</code></pre>
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<h2 id="总结"><a class="header" href="#总结">总结</a></h2>
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<p>本文介绍了如何捕获 Linux 内核中进程执行的事件,并且通过 perf event array 向用户态命令行打印输出,通过 perf event array 向用户态发送信息之后,可以进行复杂的数据处理和分析。在 libbpf 对应的内核态代码中,定义这样一个结构体和对应的头文件:</p>
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<pre><code class="language-c">struct {
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__uint(type, BPF_MAP_TYPE_PERF_EVENT_ARRAY);
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__uint(key_size, sizeof(u32));
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__uint(value_size, sizeof(u32));
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} events SEC(".maps");
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</code></pre>
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<p>就可以往用户态直接发送信息。</p>
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<p>更多的例子和详细的开发指南,请参考 eunomia-bpf 的官方文档:<a href="https://github.com/eunomia-bpf/eunomia-bpf">https://github.com/eunomia-bpf/eunomia-bpf</a></p>
|
||
<p>如果您希望学习更多关于 eBPF 的知识和实践,可以访问我们的教程代码仓库 <a href="https://github.com/eunomia-bpf/bpf-developer-tutorial">https://github.com/eunomia-bpf/bpf-developer-tutorial</a> 或网站 <a href="https://eunomia.dev/zh/tutorials/">https://eunomia.dev/zh/tutorials/</a> 以获取更多示例和完整的教程。</p>
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