5d83348db3
- core/monitor.py: add fast metrics script (0.3s vs 1.4s sleep), collect() now defaults to fast=True for responsive UI - ui/workers.py: MonitorWorker changed from loop mode to single-shot (QTimer re-arms next cycle on finished signal, avoids paramiko blocking in infinite loop) - ui/widgets.py: remove debug print from _kick_one_sample - test_monitor_nonblock.py: fix sample counting by wrapping _on_sample instead of disconnecting signals (old approach missed new workers) - test_process_monitor.py: assertions account for MAX_RENDER_ROWS=200, fix MEM% column index (4 not 3) in sort test
289 lines
12 KiB
Python
289 lines
12 KiB
Python
"""
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远程主机系统监控模块
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通过 SSH 一次性采集 CPU/内存/磁盘/网络/负载指标。
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Linux 用 /proc 和常用命令;macOS/BSD 走兼容路径。
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"""
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import re
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import time
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from typing import Optional
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from .ssh_client import SSHConnection
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class SystemMonitor:
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"""远程主机的资源监控器(数据全部从 SSH 通道采集,不依赖 agent)"""
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# 慢脚本:CPU 差分需要 sleep 1(约 1.4 秒)
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_LINUX_METRICS_SCRIPT = r"""
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echo "===CPU==="
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# 第一次采样 1 秒间隔,用来计算差分
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awk 'NR==1 {gsub("cpu ",""); print}' /proc/stat > /tmp/.cpu1.$$
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sleep 1
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awk 'NR==1 {gsub("cpu ",""); print}' /proc/stat > /tmp/.cpu2.$$
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read cpu_user cpu_nice cpu_system cpu_idle cpu_iowait cpu_irq cpu_softirq cpu_steal cpu_guest cpu_gnice < /tmp/.cpu1.$$
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read cpu_user2 cpu_nice2 cpu_system2 cpu_idle2 cpu_iowait2 cpu_irq2 cpu_softirq2 cpu_steal2 cpu_guest2 cpu_gnice2 < /tmp/.cpu2.$$
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rm -f /tmp/.cpu1.$$ /tmp/.cpu2.$$
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total1=$((cpu_user+cpu_nice+cpu_system+cpu_idle+cpu_iowait+cpu_irq+cpu_softirq+cpu_steal))
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total2=$((cpu_user2+cpu_nice2+cpu_system2+cpu_idle2+cpu_iowait2+cpu_irq2+cpu_softirq2+cpu_steal2))
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idle1=$cpu_idle; idle2=$cpu_idle2
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dt=$((total2-total1)); di=$((idle2-idle1))
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if [ $dt -gt 0 ]; then usage=$(( (1000*(dt-di)/dt+5)/10 )); else usage=0; fi
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echo "CPU_USAGE=$usage"
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echo "CPU_CORES=$(nproc 2>/dev/null || echo 1)"
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echo "LOAD=$(cat /proc/loadavg | awk '{print $1,$2,$3}')"
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echo "UPTIME=$(awk '{printf "%.0f",$1}' /proc/uptime)"
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echo "===MEM==="
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mem_total=$(awk '/MemTotal/{print $2}' /proc/meminfo)
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mem_avail=$(awk '/MemAvailable/{print $2}' /proc/meminfo)
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swap_total=$(awk '/SwapTotal/{print $2}' /proc/meminfo)
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swap_free=$(awk '/SwapFree/{print $2}' /proc/meminfo)
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if [ -z "$mem_avail" ]; then mem_avail=$((mem_total - $(awk '/^(Buffers|Cached|SReclaimable):/{s+=$2} END{print s}' /proc/meminfo))); fi
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used=$((mem_total - mem_avail))
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echo "MEM_TOTAL=$mem_total"
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echo "MEM_USED=$used"
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echo "MEM_AVAIL=$mem_avail"
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echo "SWAP_TOTAL=$swap_total"
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echo "SWAP_USED=$((swap_total-swap_free))"
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echo "===DISK==="
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df -PB1 -x tmpfs -x devtmpfs 2>/dev/null | awk 'NR>1 {printf "DISK|%s|%d|%d|%s\n",$NF,$2,$3,$5}'
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echo "===NET==="
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for iface in $(ls /sys/class/net/ 2>/dev/null | grep -v lo); do
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rx=$(cat /sys/class/net/$iface/statistics/rx_bytes 2>/dev/null || echo 0)
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tx=$(cat /sys/class/net/$iface/statistics/tx_bytes 2>/dev/null || echo 0)
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echo "NET|$iface|$rx|$tx"
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done
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echo "===PROC==="
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# 进程统计
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ps -e -o stat= 2>/dev/null | awk '{r+=($1~/^R/); s+=($1~/^S/); d+=($1~/^D/); z+=($1~/^Z/); t++} END{printf "PROC_TOTAL=%d\nPROC_RUNNING=%d\nPROC_SLEEP=%d\nPROC_DISK=%d\nPROC_ZOMBIE=%d\n", t, r, s, d, z}'
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# 进程列表:etimes/times 都是纯数字,避免 start 字段含 "Jul 21" 多列错位
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# comm 字段可能含空格,前 9 列用 \t 拼,comm 用换行做记录结束
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# 字段:pid ppid user pcpu pmem vsz rss stat pri nice etimes times args
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ps -eo pid,ppid,user,pcpu,pmem,vsz,rss,stat,pri,nice,etimes,times,args --sort=-pcpu --no-headers 2>/dev/null \
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| head -500 \
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| awk '{
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out="PROC\t";
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for(i=1;i<=12;i++) out=out $i "\t";
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rest="";
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for(i=13;i<=NF;i++) rest=(i==13?$i:rest " " $i);
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print out rest
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}'
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echo "===HOST==="
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echo "HOSTNAME=$(hostname)"
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echo "KERNEL=$(uname -r)"
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echo "OS=$(. /etc/os-release 2>/dev/null && echo "$PRETTY_NAME" || uname -s)"
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"""
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# 快脚本:不含 sleep 1,但 CPU 数字用即时 busy%(基于 /proc/stat 当前总样本,
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# 加上 -1 让服务端快速 grep 两次间隔 0.3s 算差分,~0.4s 总耗时)
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# 用 usleep 微秒精度,0.3s 差分窗口 + awk 算 CPU%
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_FAST_METRICS_SCRIPT = r"""
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echo "===CPU==="
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# 快速差分:0.3 秒间隔(避免 1.5s 阻塞)。误差 ±5% 但响应快
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# awk 解析 /proc/stat 第一行(cpu 总览),两次采样做差分
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awk 'NR==1 {gsub("cpu ",""); print}' /proc/stat > /tmp/.cpu1.$$
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sleep 0.3 2>/dev/null || sleep 1
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awk 'NR==1 {gsub("cpu ",""); print}' /proc/stat > /tmp/.cpu2.$$
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read u1 n1 s1 i1 io1 irq1 si1 st1 g1 gn1 < /tmp/.cpu1.$$
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read u2 n2 s2 i2 io2 irq2 si2 st2 g2 gn2 < /tmp/.cpu2.$$
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rm -f /tmp/.cpu1.$$ /tmp/.cpu2.$$
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t1=$((u1+n1+s1+i1+io1+irq1+si1+st1))
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t2=$((u2+n2+s2+i2+io2+irq2+si2+st2))
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di=$((i2-i1))
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dt=$((t2-t1))
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if [ $dt -gt 0 ]; then usage=$(( (1000*(dt-di)/dt+5)/10 )); else usage=0; fi
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echo "CPU_USAGE=$usage"
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echo "CPU_CORES=$(nproc 2>/dev/null || echo 1)"
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echo "LOAD=$(cat /proc/loadavg | awk '{print $1,$2,$3}')"
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echo "UPTIME=$(awk '{printf "%.0f",$1}' /proc/uptime)"
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echo "===MEM==="
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mem_total=$(awk '/MemTotal/{print $2}' /proc/meminfo)
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mem_avail=$(awk '/MemAvailable/{print $2}' /proc/meminfo)
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swap_total=$(awk '/SwapTotal/{print $2}' /proc/meminfo)
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swap_free=$(awk '/SwapFree/{print $2}' /proc/meminfo)
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if [ -z "$mem_avail" ]; then mem_avail=$((mem_total - $(awk '/^(Buffers|Cached|SReclaimable):/{s+=$2} END{print s}' /proc/meminfo))); fi
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used=$((mem_total - mem_avail))
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echo "MEM_TOTAL=$mem_total"
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echo "MEM_USED=$used"
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echo "MEM_AVAIL=$mem_avail"
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echo "SWAP_TOTAL=$swap_total"
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echo "SWAP_USED=$((swap_total-swap_free))"
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echo "===DISK==="
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df -PB1 -x tmpfs -x devtmpfs 2>/dev/null | awk 'NR>1 {printf "DISK|%s|%d|%d|%s\n",$NF,$2,$3,$5}'
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echo "===NET==="
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for iface in $(ls /sys/class/net/ 2>/dev/null | grep -v lo); do
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rx=$(cat /sys/class/net/$iface/statistics/rx_bytes 2>/dev/null || echo 0)
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tx=$(cat /sys/class/net/$iface/statistics/tx_bytes 2>/dev/null || echo 0)
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echo "NET|$iface|$rx|$tx"
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done
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echo "===PROC==="
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ps -e -o stat= 2>/dev/null | awk '{r+=($1~/^R/); s+=($1~/^S/); d+=($1~/^D/); z+=($1~/^Z/); t++} END{printf "PROC_TOTAL=%d\nPROC_RUNNING=%d\nPROC_SLEEP=%d\nPROC_DISK=%d\nPROC_ZOMBIE=%d\n", t, r, s, d, z}'
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ps -eo pid,ppid,user,pcpu,pmem,vsz,rss,stat,pri,nice,etimes,times,args --sort=-pcpu --no-headers 2>/dev/null \
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| head -500 \
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| awk '{
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out="PROC\t";
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for(i=1;i<=12;i++) out=out $i "\t";
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rest="";
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for(i=13;i<=NF;i++) rest=(i==13?$i:rest " " $i);
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print out rest
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}'
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echo "===HOST==="
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echo "HOSTNAME=$(hostname)"
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echo "KERNEL=$(uname -r)"
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echo "OS=$(. /etc/os-release 2>/dev/null && echo "$PRETTY_NAME" || uname -s)"
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"""
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@staticmethod
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def _parse_kv(text: str, key: str, default: str = "0") -> str:
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"""从 KEY=VALUE 行中取值"""
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m = re.search(rf"^{re.escape(key)}=(.+)$", text, re.MULTILINE)
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return m.group(1).strip() if m else default
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@classmethod
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def collect(cls, conn: SSHConnection, fast: bool = True) -> dict:
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"""采集一次指标;返回 dict"""
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empty = {
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"cpu": 0.0, "cores": 1, "load1": 0, "load5": 0, "load15": 0,
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"uptime": 0, "hostname": "", "kernel": "", "os": "",
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"mem_total": 0, "mem_used": 0, "mem_percent": 0.0,
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"swap_total": 0, "swap_used": 0,
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"disks": [], "net": [],
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"proc_total": 0, "proc_running": 0, "proc_sleep": 0,
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"proc_disk": 0, "proc_zombie": 0, "processes": [],
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"ts": time.time(),
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}
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if not conn or not conn.connected:
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return empty
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script = cls._FAST_METRICS_SCRIPT if fast else cls._LINUX_METRICS_SCRIPT
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code, out, err = conn.exec_command(script, timeout=10)
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if code != 0 or not out:
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empty["error"] = err or "采集失败"
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return empty
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result = dict(empty)
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result["hostname"] = cls._parse_kv(out, "HOSTNAME")
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result["kernel"] = cls._parse_kv(out, "KERNEL")
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result["os"] = cls._parse_kv(out, "OS")
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try:
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result["cpu"] = float(cls._parse_kv(out, "CPU_USAGE"))
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except ValueError:
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pass
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try:
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result["cores"] = int(cls._parse_kv(out, "CPU_CORES", "1"))
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except ValueError:
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pass
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load = cls._parse_kv(out, "LOAD", "0 0 0").split()
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try:
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result["load1"] = float(load[0])
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result["load5"] = float(load[1]) if len(load) > 1 else 0
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result["load15"] = float(load[2]) if len(load) > 2 else 0
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except (ValueError, IndexError):
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pass
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try:
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result["uptime"] = int(cls._parse_kv(out, "UPTIME"))
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except ValueError:
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pass
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try:
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mt = int(cls._parse_kv(out, "MEM_TOTAL"))
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mu = int(cls._parse_kv(out, "MEM_USED"))
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result["mem_total"] = mt
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result["mem_used"] = mu
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result["mem_percent"] = (mu / mt * 100) if mt > 0 else 0.0
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result["swap_total"] = int(cls._parse_kv(out, "SWAP_TOTAL"))
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result["swap_used"] = int(cls._parse_kv(out, "SWAP_USED"))
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except ValueError:
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pass
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result["disks"] = []
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for line in out.splitlines():
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if line.startswith("DISK|"):
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_, mount, total, used, percent = line.split("|", 4)
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try:
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result["disks"].append({
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"mount": mount, "total": int(total),
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"used": int(used), "percent": int(percent.rstrip("%")),
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})
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except ValueError:
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continue
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result["net"] = []
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for line in out.splitlines():
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if line.startswith("NET|"):
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_, name, rx, tx = line.split("|", 3)
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try:
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result["net"].append({
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"iface": name, "rx": int(rx), "tx": int(tx),
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})
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except ValueError:
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continue
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# 进程统计
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try:
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result["proc_total"] = int(cls._parse_kv(out, "PROC_TOTAL"))
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result["proc_running"] = int(cls._parse_kv(out, "PROC_RUNNING"))
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result["proc_sleep"] = int(cls._parse_kv(out, "PROC_SLEEP"))
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result["proc_disk"] = int(cls._parse_kv(out, "PROC_DISK"))
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result["proc_zombie"] = int(cls._parse_kv(out, "PROC_ZOMBIE"))
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except ValueError:
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result["proc_total"] = 0
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result["proc_running"] = 0
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result["proc_sleep"] = 0
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result["proc_disk"] = 0
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result["proc_zombie"] = 0
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# 进程列表(远程用 \t 分隔前 12 列,第 13 列开始是 args/comm,可能含空格)
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result["processes"] = []
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for line in out.splitlines():
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if not line.startswith("PROC\t"):
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continue
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payload = line[5:] # 去掉 "PROC\t" 前缀
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fields = payload.split("\t", 12) # 只切前 12 次
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if len(fields) < 13:
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continue
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try:
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result["processes"].append({
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"pid": int(fields[0]),
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"ppid": int(fields[1]) if fields[1].isdigit() else 0,
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"user": fields[2],
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"pcpu": float(fields[3]),
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"pmem": float(fields[4]),
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"vsz": int(fields[5]),
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"rss": int(fields[6]),
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"stat": fields[7],
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"pri": int(fields[8]) if fields[8].lstrip("-").isdigit() else 0,
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"nice": int(fields[9]) if fields[9].lstrip("-").isdigit() else 0,
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# etimes: 自启动以来的秒数(整数)
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"etime": int(fields[10]) if fields[10].isdigit() else 0,
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# times: 累计 CPU 时间秒数
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"time": int(fields[11]) if fields[11].isdigit() else 0,
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"comm": fields[12].strip(),
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})
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except (ValueError, IndexError):
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continue
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return result
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@staticmethod
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def format_bytes(n: int) -> str:
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"""人类可读字节数"""
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n = float(n)
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for unit in ("B", "KB", "MB", "GB", "TB", "PB"):
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if n < 1024:
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return f"{n:.1f}{unit}"
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n /= 1024
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return f"{n:.1f}EB"
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@staticmethod
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def format_uptime(seconds: int) -> str:
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seconds = int(seconds)
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d, rem = divmod(seconds, 86400)
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h, rem = divmod(rem, 3600)
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m, s = divmod(rem, 60)
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if d:
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return f"{d}天{h}小时"
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if h:
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return f"{h}小时{m}分"
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if m:
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return f"{m}分{s}秒"
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return f"{s}秒"
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