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306 lines
8.1 KiB
306 lines
8.1 KiB
#!/usr/bin/python |
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# @lint-avoid-python-3-compatibility-imports |
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# |
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# xfsslower Trace slow XFS operations. |
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# For Linux, uses BCC, eBPF. |
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# |
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# USAGE: xfsslower [-h] [-j] [-p PID] [min_ms] |
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# |
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# This script traces common XFS file operations: reads, writes, opens, and |
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# syncs. It measures the time spent in these operations, and prints details |
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# for each that exceeded a threshold. |
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# |
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# WARNING: This adds low-overhead instrumentation to these XFS operations, |
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# including reads and writes from the file system cache. Such reads and writes |
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# can be very frequent (depending on the workload; eg, 1M/sec), at which |
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# point the overhead of this tool (even if it prints no "slower" events) can |
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# begin to become significant. |
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# |
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# By default, a minimum millisecond threshold of 10 is used. |
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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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# 11-Feb-2016 Brendan Gregg Created this. |
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# 16-Oct-2016 Dina Goldshtein -p to filter by process ID. |
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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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from time import strftime |
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import ctypes as ct |
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# arguments |
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examples = """examples: |
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./xfsslower # trace operations slower than 10 ms (default) |
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./xfsslower 1 # trace operations slower than 1 ms |
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./xfsslower -j 1 # ... 1 ms, parsable output (csv) |
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./xfsslower 0 # trace all operations (warning: verbose) |
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./xfsslower -p 185 # trace PID 185 only |
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""" |
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parser = argparse.ArgumentParser( |
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description="Trace common XFS file operations slower than a threshold", |
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formatter_class=argparse.RawDescriptionHelpFormatter, |
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epilog=examples) |
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parser.add_argument("-j", "--csv", action="store_true", |
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help="just print fields: comma-separated values") |
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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("min_ms", nargs="?", default='10', |
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help="minimum I/O duration to trace, in ms (default 10)") |
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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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min_ms = int(args.min_ms) |
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pid = args.pid |
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csv = args.csv |
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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 <linux/fs.h> |
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#include <linux/sched.h> |
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#include <linux/dcache.h> |
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// XXX: switch these to char's when supported |
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#define TRACE_READ 0 |
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#define TRACE_WRITE 1 |
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#define TRACE_OPEN 2 |
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#define TRACE_FSYNC 3 |
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struct val_t { |
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u64 ts; |
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u64 offset; |
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struct file *fp; |
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}; |
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struct data_t { |
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// XXX: switch some to u32's when supported |
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u64 ts_us; |
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u64 type; |
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u64 size; |
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u64 offset; |
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u64 delta_us; |
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u64 pid; |
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char task[TASK_COMM_LEN]; |
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char file[DNAME_INLINE_LEN]; |
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}; |
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BPF_HASH(entryinfo, u64, struct val_t); |
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BPF_PERF_OUTPUT(events); |
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// |
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// Store timestamp and size on entry |
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// |
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// xfs_file_read_iter(), xfs_file_write_iter(): |
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int trace_rw_entry(struct pt_regs *ctx, struct kiocb *iocb) |
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{ |
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u64 id = bpf_get_current_pid_tgid(); |
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u32 pid = id >> 32; // PID is higher part |
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if (FILTER_PID) |
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return 0; |
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// store filep and timestamp by id |
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struct val_t val = {}; |
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val.ts = bpf_ktime_get_ns(); |
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val.fp = iocb->ki_filp; |
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val.offset = iocb->ki_pos; |
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if (val.fp) |
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entryinfo.update(&id, &val); |
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return 0; |
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} |
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// xfs_file_open(): |
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int trace_open_entry(struct pt_regs *ctx, struct inode *inode, |
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struct file *file) |
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{ |
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u64 id = bpf_get_current_pid_tgid(); |
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u32 pid = id >> 32; // PID is higher part |
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if (FILTER_PID) |
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return 0; |
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// store filep and timestamp by id |
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struct val_t val = {}; |
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val.ts = bpf_ktime_get_ns(); |
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val.fp = file; |
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val.offset = 0; |
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if (val.fp) |
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entryinfo.update(&id, &val); |
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return 0; |
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} |
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// xfs_file_fsync(): |
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int trace_fsync_entry(struct pt_regs *ctx, struct file *file) |
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{ |
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u64 id = bpf_get_current_pid_tgid(); |
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u32 pid = id >> 32; // PID is higher part |
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if (FILTER_PID) |
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return 0; |
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// store filep and timestamp by id |
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struct val_t val = {}; |
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val.ts = bpf_ktime_get_ns(); |
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val.fp = file; |
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val.offset = 0; |
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if (val.fp) |
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entryinfo.update(&id, &val); |
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return 0; |
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} |
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// |
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// Output |
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// |
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static int trace_return(struct pt_regs *ctx, int type) |
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{ |
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struct val_t *valp; |
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u64 id = bpf_get_current_pid_tgid(); |
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u32 pid = id >> 32; // PID is higher part |
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valp = entryinfo.lookup(&id); |
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if (valp == 0) { |
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// missed tracing issue or filtered |
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return 0; |
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} |
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// calculate delta |
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u64 ts = bpf_ktime_get_ns(); |
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u64 delta_us = ts - valp->ts; |
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entryinfo.delete(&id); |
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// Skip entries with backwards time: temp workaround for #728 |
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if ((s64) delta_us < 0) |
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return 0; |
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delta_us /= 1000; |
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if (FILTER_US) |
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return 0; |
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// populate output struct |
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u32 size = PT_REGS_RC(ctx); |
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struct data_t data = {.type = type, .size = size, .delta_us = delta_us, |
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.pid = pid}; |
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data.ts_us = ts / 1000; |
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data.offset = valp->offset; |
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bpf_get_current_comm(&data.task, sizeof(data.task)); |
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// workaround (rewriter should handle file to d_name in one step): |
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struct qstr qs = valp->fp->f_path.dentry->d_name; |
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if (qs.len == 0) |
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return 0; |
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bpf_probe_read(&data.file, sizeof(data.file), (void *)qs.name); |
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// output |
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events.perf_submit(ctx, &data, sizeof(data)); |
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return 0; |
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} |
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int trace_read_return(struct pt_regs *ctx) |
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{ |
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return trace_return(ctx, TRACE_READ); |
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} |
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int trace_write_return(struct pt_regs *ctx) |
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{ |
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return trace_return(ctx, TRACE_WRITE); |
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} |
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int trace_open_return(struct pt_regs *ctx) |
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{ |
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return trace_return(ctx, TRACE_OPEN); |
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} |
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int trace_fsync_return(struct pt_regs *ctx) |
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{ |
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return trace_return(ctx, TRACE_FSYNC); |
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} |
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""" |
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if min_ms == 0: |
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bpf_text = bpf_text.replace('FILTER_US', '0') |
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else: |
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bpf_text = bpf_text.replace('FILTER_US', |
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'delta_us <= %s' % str(min_ms * 1000)) |
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if args.pid: |
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bpf_text = bpf_text.replace('FILTER_PID', 'pid != %s' % pid) |
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else: |
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bpf_text = bpf_text.replace('FILTER_PID', '0') |
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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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# kernel->user event data: struct data_t |
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DNAME_INLINE_LEN = 32 # linux/dcache.h |
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TASK_COMM_LEN = 16 # linux/sched.h |
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class Data(ct.Structure): |
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_fields_ = [ |
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("ts_us", ct.c_ulonglong), |
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("type", ct.c_ulonglong), |
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("size", ct.c_ulonglong), |
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("offset", ct.c_ulonglong), |
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("delta_us", ct.c_ulonglong), |
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("pid", ct.c_ulonglong), |
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("task", ct.c_char * TASK_COMM_LEN), |
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("file", ct.c_char * DNAME_INLINE_LEN) |
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] |
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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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type = 'R' |
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if event.type == 1: |
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type = 'W' |
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elif event.type == 2: |
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type = 'O' |
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elif event.type == 3: |
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type = 'S' |
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if (csv): |
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print("%d,%s,%d,%s,%d,%d,%d,%s" % ( |
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event.ts_us, event.task, event.pid, type, event.size, |
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event.offset, event.delta_us, event.file)) |
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return |
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print("%-8s %-14.14s %-6s %1s %-7s %-8d %7.2f %s" % (strftime("%H:%M:%S"), |
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event.task, event.pid, type, event.size, event.offset / 1024, |
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float(event.delta_us) / 1000, event.file)) |
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# initialize BPF |
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b = BPF(text=bpf_text) |
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# common file functions |
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b.attach_kprobe(event="xfs_file_read_iter", fn_name="trace_rw_entry") |
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b.attach_kprobe(event="xfs_file_write_iter", fn_name="trace_rw_entry") |
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b.attach_kprobe(event="xfs_file_open", fn_name="trace_open_entry") |
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b.attach_kprobe(event="xfs_file_fsync", fn_name="trace_fsync_entry") |
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b.attach_kretprobe(event="xfs_file_read_iter", fn_name="trace_read_return") |
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b.attach_kretprobe(event="xfs_file_write_iter", fn_name="trace_write_return") |
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b.attach_kretprobe(event="xfs_file_open", fn_name="trace_open_return") |
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b.attach_kretprobe(event="xfs_file_fsync", fn_name="trace_fsync_return") |
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# header |
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if (csv): |
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print("ENDTIME_us,TASK,PID,TYPE,BYTES,OFFSET_b,LATENCY_us,FILE") |
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else: |
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if min_ms == 0: |
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print("Tracing XFS operations") |
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else: |
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print("Tracing XFS operations slower than %d ms" % min_ms) |
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print("%-8s %-14s %-6s %1s %-7s %-8s %7s %s" % ("TIME", "COMM", "PID", "T", |
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"BYTES", "OFF_KB", "LAT(ms)", "FILENAME")) |
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# read events |
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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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