revert Update PTPLogger/PTPLogger.sh
This commit is contained in:
2026-06-17 18:33:02 +10:00
parent 5ed6586125
commit 71ab73a3f8
+55 -157
View File
@@ -1,175 +1,73 @@
import re
import datetime as dt
import matplotlib.pyplot as plt
import matplotlib.dates as mdates
from matplotlib.lines import Line2D
#!/bin/bash
import tkinter as tk
from tkinter import filedialog, messagebox, scrolledtext
#### Tested running on a 1232
SOCK="/var/run/ptp4l_media1"
HOST=$(hostname)
LOGFILE="ptp_media1.log"
WINDOW=60
def parse_log(file_path):
t, rms, freq = [], [], []
state_events = []
master_events = []
offsets=()
delays=()
freqs=()
last_timestamp = None
prev_offset=""
prev_time=""
with open(file_path, encoding='utf-8', errors='ignore') as f:
for line in f:
while true; do
now_fmt=$(date +"%b %d %T")
uptime=$(awk '{print $1}' /proc/uptime)
now_ns=$(date +%s%N)
ts_match = re.match(r'^(\w+ \d+ \d+:\d+:\d+)', line)
if ts_match:
try:
timestr = ts_match.group(1) + " 2026"
last_timestamp = dt.datetime.strptime(timestr, "%b %d %H:%M:%S %Y")
except:
pass
# --- get offset ---
ts_np=$(pmc -u -s $SOCK "GET TIME_STATUS_NP")
offset=$(echo "$ts_np" | awk '/master_offset/ {print $2}')
timestamp = last_timestamp
# --- get delay ---
cds=$(pmc -u -s $SOCK "GET CURRENT_DATA_SET")
delay=$(echo "$cds" | awk '/meanPathDelay/ {print $2}')
if not timestamp:
continue
# --- compute freq (ns/sec ≈ ppb-like behaviour) ---
if [[ -n "$prev_offset" ]]; then
dt=$((now_ns - prev_time))
doffset=$((offset - prev_offset))
freq=$(awk -v d="$doffset" -v t="$dt" 'BEGIN {printf "%.0f", (d / t) * 1e9}')
else
freq=0
fi
m = re.search(r'rms\s+(\d+).*freq\s+([+-]?\d+)', line)
if m:
t.append(timestamp)
rms.append(int(m.group(1)))
freq.append(int(m.group(2)))
prev_offset=$offset
prev_time=$now_ns
m = re.search(r'port \d+: (\w+) to (\w+)', line)
if m:
state_events.append((timestamp, f"{m.group(1)}→{m.group(2)}"))
# store
offsets+=("$offset")
delays+=("$delay")
freqs+=("$freq")
m = re.search(
r'(selected best master clock|new foreign master)\s+([0-9a-fA-F\.:]+)',
line
)
if m:
master_events.append((timestamp, m.group(2)))
# trim window
if [ ${#offsets[@]} -gt $WINDOW ]; then
offsets=("${offsets[@]:1}")
delays=("${delays[@]:1}")
freqs=("${freqs[@]:1}")
fi
return t, rms, freq, state_events, master_events
# --- stats ---
rms=$(printf "%s\n" "${offsets[@]}" | awk '{s+=$1*$1} END {printf "%.0f", sqrt(s/NR)}')
max=$(printf "%s\n" "${offsets[@]}" | \
awk 'BEGIN{m=0}{if($1>m)m=$1;if(-$1>m)m=-$1}END{print m}')
def plot_data(t, rms, freq, state_events, master_events, detail):
freq_avg=$(printf "%s\n" "${freqs[@]}" | awk '{s+=$1} END {printf "%.0f", s/NR}')
freq_std=$(printf "%s\n" "${freqs[@]}" | \
awk '{s+=$1; ss+=$1*$1} END {m=s/NR; printf "%.0f", sqrt(ss/NR - m*m)}')
if not t:
messagebox.showerror("Error", "No valid RMS/freq data found.")
return
delay_avg=$(printf "%s\n" "${delays[@]}" | awk '{s+=$1} END {printf "%.0f", s/NR}')
delay_std=$(printf "%s\n" "${delays[@]}" | \
awk '{s+=$1; ss+=$1*$1} END {m=s/NR; printf "%.0f", sqrt(ss/NR - m*m)}')
fig, (ax1, ax2) = plt.subplots(2, 1, sharex=True)
line="$now_fmt $HOST ptp4l@media1[$$]: [$uptime] rms $rms max $max freq $freq_avg +/- $freq_std delay $delay_avg +/- $delay_std"
ax1.plot(t, rms, color='black')
ax1.set_ylabel("RMS (ns)")
ax1.grid()
echo "$line" | tee -a "$LOGFILE"
ax2.plot(t, freq, color='black')
ax2.set_ylabel("Frequency deviation")
ax2.set_xlabel("Time")
ax2.grid()
# event lines
for ts, _ in state_events:
ax1.axvline(ts, color='blue', linestyle='--', alpha=0.7)
ax2.axvline(ts, color='blue', linestyle='--', alpha=0.7)
for ts, _ in master_events:
ax1.axvline(ts, color='red', linestyle='--', alpha=0.7)
ax2.axvline(ts, color='red', linestyle='--', alpha=0.7)
legend = [
Line2D([0], [0], color='black', label='RMS/Freq'),
Line2D([0], [0], color='blue', linestyle='--', label='State'),
Line2D([0], [0], color='red', linestyle='--', label='Master'),
]
ax1.legend(handles=legend)
multi_day = any(d.date() != t[0].date() for d in t)
if multi_day:
formatter = mdates.DateFormatter('%d %H:%M')
else:
formatter = mdates.DateFormatter('%H:%M:%S')
if detail == "Seconds":
locator = mdates.SecondLocator(interval=1)
elif detail == "5 sec":
locator = mdates.SecondLocator(interval=5)
elif detail == "10 sec":
locator = mdates.SecondLocator(interval=10)
elif detail == "30 sec":
locator = mdates.SecondLocator(interval=30)
elif detail == "1 min":
locator = mdates.MinuteLocator(interval=1)
else:
locator = mdates.AutoDateLocator(maxticks=20)
ax2.xaxis.set_major_locator(locator)
ax2.xaxis.set_major_formatter(formatter)
plt.xticks(rotation=45)
plt.tight_layout()
plt.show()
def open_file():
file_path = filedialog.askopenfilename(
title="Select log",
filetypes=[("Log files", "*.log *.txt"), ("All files", "*.*")]
)
if not file_path:
return
detail = detail_var.get()
t, rms, freq, state_events, master_events = parse_log(file_path)
plot_data(t, rms, freq, state_events, master_events, detail)
event_box.delete(1.0, tk.END)
events = []
for ts, label in state_events:
events.append((ts, f"{ts} | STATE {label}"))
for ts, label in master_events:
events.append((ts, f"{ts} | MASTER {label}"))
events.sort(key=lambda x: x[0])
if events:
for _, line in events:
event_box.insert(tk.END, line + "\n")
else:
event_box.insert(tk.END, "No events found.\n")
# GUI
root = tk.Tk()
root.title("PTP Log Viewer")
root.geometry("750x550")
frame = tk.Frame(root)
frame.pack(pady=5)
tk.Button(frame, text="Open Log", command=open_file).pack(side=tk.LEFT, padx=10)
detail_var = tk.StringVar(value="Auto")
tk.OptionMenu(
frame,
detail_var,
"Auto",
"Seconds",
"5 sec",
"10 sec",
"30 sec",
"1 min"
).pack(side=tk.LEFT)
event_box = scrolledtext.ScrolledText(root)
event_box.pack(fill=tk.BOTH, expand=True)
root.mainloop()
sleep 1
done