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182 lines
4.8 KiB
182 lines
4.8 KiB
#!/usr/bin/python |
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# @lint-avoid-python-3-compatibility-imports |
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# |
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# statsnoop Trace stat() syscalls. |
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# For Linux, uses BCC, eBPF. Embedded C. |
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# |
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# USAGE: statsnoop [-h] [-t] [-x] [-p PID] |
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# |
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# Copyright 2016 Netflix, Inc. |
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# Licensed under the Apache License, Version 2.0 (the "License") |
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# |
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# 08-Feb-2016 Brendan Gregg Created this. |
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# 17-Feb-2016 Allan McAleavy updated for BPF_PERF_OUTPUT |
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from __future__ import print_function |
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from bcc import BPF |
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import argparse |
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import ctypes as ct |
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# arguments |
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examples = """examples: |
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./statsnoop # trace all stat() syscalls |
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./statsnoop -t # include timestamps |
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./statsnoop -x # only show failed stats |
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./statsnoop -p 181 # only trace PID 181 |
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""" |
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parser = argparse.ArgumentParser( |
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description="Trace stat() syscalls", |
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formatter_class=argparse.RawDescriptionHelpFormatter, |
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epilog=examples) |
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parser.add_argument("-t", "--timestamp", action="store_true", |
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help="include timestamp on output") |
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parser.add_argument("-x", "--failed", action="store_true", |
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help="only show failed stats") |
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parser.add_argument("-p", "--pid", |
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help="trace this PID only") |
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parser.add_argument("--ebpf", action="store_true", |
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help=argparse.SUPPRESS) |
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args = parser.parse_args() |
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debug = 0 |
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# define BPF program |
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bpf_text = """ |
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#include <uapi/linux/ptrace.h> |
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#include <uapi/linux/limits.h> |
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#include <linux/sched.h> |
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struct val_t { |
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const char *fname; |
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}; |
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struct data_t { |
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u32 pid; |
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u64 ts_ns; |
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int ret; |
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char comm[TASK_COMM_LEN]; |
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char fname[NAME_MAX]; |
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}; |
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BPF_HASH(args_filename, u32, const char *); |
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BPF_HASH(infotmp, u32, struct val_t); |
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BPF_PERF_OUTPUT(events); |
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int syscall__entry(struct pt_regs *ctx, const char __user *filename) |
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{ |
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struct val_t val = {}; |
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u32 pid = bpf_get_current_pid_tgid(); |
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FILTER |
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val.fname = filename; |
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infotmp.update(&pid, &val); |
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return 0; |
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}; |
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int trace_return(struct pt_regs *ctx) |
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{ |
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u32 pid = bpf_get_current_pid_tgid(); |
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struct val_t *valp; |
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valp = infotmp.lookup(&pid); |
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if (valp == 0) { |
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// missed entry |
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return 0; |
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} |
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struct data_t data = {.pid = pid}; |
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bpf_probe_read(&data.fname, sizeof(data.fname), (void *)valp->fname); |
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bpf_get_current_comm(&data.comm, sizeof(data.comm)); |
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data.ts_ns = bpf_ktime_get_ns(); |
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data.ret = PT_REGS_RC(ctx); |
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events.perf_submit(ctx, &data, sizeof(data)); |
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infotmp.delete(&pid); |
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args_filename.delete(&pid); |
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return 0; |
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} |
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""" |
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if args.pid: |
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bpf_text = bpf_text.replace('FILTER', |
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'if (pid != %s) { return 0; }' % args.pid) |
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else: |
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bpf_text = bpf_text.replace('FILTER', '') |
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if debug or args.ebpf: |
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print(bpf_text) |
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if args.ebpf: |
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exit() |
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# initialize BPF |
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b = BPF(text=bpf_text) |
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# for POSIX compliance, all architectures implement these |
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# system calls but the name of the actual entry point may |
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# be different for which we must check if the entry points |
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# actually exist before attaching the probes |
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syscall_fnname = b.get_syscall_fnname("stat") |
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if BPF.ksymname(syscall_fnname) != -1: |
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b.attach_kprobe(event=syscall_fnname, fn_name="syscall__entry") |
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b.attach_kretprobe(event=syscall_fnname, fn_name="trace_return") |
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syscall_fnname = b.get_syscall_fnname("statfs") |
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if BPF.ksymname(syscall_fnname) != -1: |
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b.attach_kprobe(event=syscall_fnname, fn_name="syscall__entry") |
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b.attach_kretprobe(event=syscall_fnname, fn_name="trace_return") |
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syscall_fnname = b.get_syscall_fnname("newstat") |
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if BPF.ksymname(syscall_fnname) != -1: |
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b.attach_kprobe(event=syscall_fnname, fn_name="syscall__entry") |
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b.attach_kretprobe(event=syscall_fnname, fn_name="trace_return") |
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TASK_COMM_LEN = 16 # linux/sched.h |
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NAME_MAX = 255 # linux/limits.h |
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class Data(ct.Structure): |
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_fields_ = [ |
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("pid", ct.c_ulonglong), |
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("ts_ns", ct.c_ulonglong), |
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("ret", ct.c_int), |
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("comm", ct.c_char * TASK_COMM_LEN), |
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("fname", ct.c_char * NAME_MAX) |
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] |
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start_ts = 0 |
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prev_ts = 0 |
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delta = 0 |
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# header |
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if args.timestamp: |
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print("%-14s" % ("TIME(s)"), end="") |
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print("%-6s %-16s %4s %3s %s" % ("PID", "COMM", "FD", "ERR", "PATH")) |
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# process event |
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def print_event(cpu, data, size): |
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event = ct.cast(data, ct.POINTER(Data)).contents |
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global start_ts |
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global prev_ts |
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global delta |
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global cont |
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# split return value into FD and errno columns |
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if event.ret >= 0: |
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fd_s = event.ret |
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err = 0 |
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else: |
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fd_s = -1 |
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err = - event.ret |
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if start_ts == 0: |
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start_ts = event.ts_ns |
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if args.timestamp: |
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print("%-14.9f" % (float(event.ts_ns - start_ts) / 1000000000), end="") |
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print("%-6d %-16s %4d %3d %s" % (event.pid, |
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event.comm.decode('utf-8', 'replace'), fd_s, err, |
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event.fname.decode('utf-8', 'replace'))) |
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# loop with callback to print_event |
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b["events"].open_perf_buffer(print_event, page_cnt=64) |
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while 1: |
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b.perf_buffer_poll()
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