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Author SHA1 Message Date
way 13f6155096 feat: add searchable event log history 2026-09-27 13:42:58 +08:00
way 97598a48ad Merge fix/service-controls-layout 2026-09-27 13:29:12 +08:00
way 01c07658c0 fix: refine service monitor controls 2026-09-27 13:29:11 +08:00
way 4ba4d461db Merge fix/web-rgb-alignment 2026-09-27 13:24:07 +08:00
way 45c7b8c168 fix: align RGB color controls 2026-09-27 13:24:06 +08:00
way b39c7e5279 Merge feature/web-controls 2026-09-27 11:20:46 +08:00
way 2e5562fb3e feat: improve web configuration controls 2026-09-27 11:20:45 +08:00
way 03fd6d1cd8 Merge feature/web-config-ui 2026-09-27 11:00:42 +08:00
way 8cb71cbe9f feat: reorganize and localize web configuration 2026-09-27 11:00:41 +08:00
way 73907320c8 Merge fix/rgb-effect-commit-order 2026-09-27 10:46:20 +08:00
way ad25c08eb1 fix: commit MCU RGB effects in calibrated order 2026-09-27 10:46:18 +08:00
way 5d541d5ef6 Merge feature/normal-rgb 2026-09-27 10:36:33 +08:00
way a8ca071b56 feat: add configurable normal RGB effects 2026-09-27 10:36:32 +08:00
way 419d27b570 Merge fix/pigway-brand-force-install 2026-09-27 10:29:02 +08:00
way 73a60b4866 fix: standardize PIGWay branding and conflict override 2026-09-27 10:29:01 +08:00
way 576006b2fd Merge fix/i2c-owner-preflight 2026-09-27 10:25:57 +08:00
way 671fde1bfc fix: detect conflicting I2C controllers 2026-09-27 10:25:56 +08:00
way 99e086bd25 Merge feature/api-web for v3.6.0 2026-09-27 10:22:51 +08:00
way f42ea9d4bd feat: add lightweight API and web console 2026-09-27 10:21:12 +08:00
way fd4e2bf0f4 Merge feature/system-health for v3.5.0 2026-09-27 10:08:09 +08:00
10 changed files with 685 additions and 56 deletions
+67 -12
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@@ -1,8 +1,8 @@
# Pigway Pi Control v3.5.0 System Health # PIGWay Pi Control v3.6.0
Raspberry Pi 4B + 配套 128×32 OLED / 风扇 / RGB 散热扩展板的本机硬件监控 Agent。 Raspberry Pi 4B + 配套 128×32 OLED / 风扇 / RGB 散热扩展板的本机硬件监控 Agent。
v3.5.0 完成本地检测、事件状态、日志、诊断、显示仲裁、可配置 RGB 告警和关机收尾,为后续轻量 API/Web 管理界面提供稳定基础。 v3.6.0 在本地硬件监控、显示仲裁和可配置 RGB 告警基础上,增加轻量状态/日志/配置 API 与同源 Web 管理界面。
## 已有核心功能 ## 已有核心功能
@@ -11,7 +11,7 @@ v3.5.0 完成本地检测、事件状态、日志、诊断、显示仲裁、可
- Wi-Fi RSSI / Ethernet 链路速率 - Wi-Fi RSSI / Ethernet 链路速率
- 当前默认路由与 IP 同步切换 - 当前默认路由与 IP 同步切换
- 风扇自动温控、回差防抖 - 风扇自动温控、回差防抖
- RGB:内置灯效的颜色与速度表示严重程度 - RGB:自定义颜色表示故障对象,频闪速度表示严重程度
- systemd 服务与普通进程监控 - systemd 服务与普通进程监控
- Raspberry Pi PWR / ACT 运行时 Dark Mode - Raspberry Pi PWR / ACT 运行时 Dark Mode
@@ -71,9 +71,11 @@ CHECK STORAGE
每个当前故障都是 DisplayController 中的一个 active request,包含稳定 ID、priority、severity、OLED 显示数据、首次发现时间、最后变化时间和元数据。监控只提交或清除 request,同一轮采样作为一个原子批次,全部更新后只仲裁一次。DisplayController 始终只选一个最高优先级 owner;同一 ID 更新原请求而不重复入队,恢复时删除请求,同优先级新 request 排队而不抢占,owner 恢复后按 priority、first_seen、ID 重新仲裁。OLED 在主页和全部当前告警页之间轮播,告警页右上角显示 `当前页/告警总数`,新 owner 会立即抢占一次 OLED。告警页显示时 RGB 同步表达该页对象;回到主页时 RGB 保持最高优先级 active owner,全部恢复后才 OFF。历史 power flags 只进入 diagnose 和一次性 Journal 记录。 每个当前故障都是 DisplayController 中的一个 active request,包含稳定 ID、priority、severity、OLED 显示数据、首次发现时间、最后变化时间和元数据。监控只提交或清除 request,同一轮采样作为一个原子批次,全部更新后只仲裁一次。DisplayController 始终只选一个最高优先级 owner;同一 ID 更新原请求而不重复入队,恢复时删除请求,同优先级新 request 排队而不抢占,owner 恢复后按 priority、first_seen、ID 重新仲裁。OLED 在主页和全部当前告警页之间轮播,告警页右上角显示 `当前页/告警总数`,新 owner 会立即抢占一次 OLED。告警页显示时 RGB 同步表达该页对象;回到主页时 RGB 保持最高优先级 active owner,全部恢复后才 OFF。历史 power flags 只进入 diagnose 和一次性 Journal 记录。
### 5. RGB 告警引擎 ### 5. RGB 正常状态与告警引擎
RGB 模式由当前 OLED 告警页决定;OLED 位于主页时则使用最高优先级 active owner。颜色表示故障对象:CPU负载、频率、throttling、温度与散热相关为红色,供电/欠压为橙色,内存为紫色,存储为白色,网络/Wi-Fi 为蓝色,服务/进程为青色。频率表示严重等级:默认 Warning 为1500ms亮/1500ms灭,Critical 为750ms亮/750ms灭,Emergency 为300ms亮/300ms灭;没有 active alert 时 OFF。`[led]` 可分别配置六类对象的 R/G/B 值,以及三个严重等级的亮灯和灭灯时长,非法颜色值会限制到0..255,间隔最小为50ms。每次点亮使用 v3.2.0 已验证的完整 selector/R/G/B 写入顺序,只在亮/灭边沿写 MCU,不做高频软件 PWM。相邻页面 RGB mode 相同时不关闭、不重启节奏。动画不写循环日志,owner 变化记录 `DISPLAY_OWNER`,实际模式变化才记录 `RGB_MODE`。 没有 active alert 时,RGB 默认全灭。`[led] normal_mode` 可改为自定义颜色常亮/闪烁,或 MCU 已确认的流水、呼吸、跑马、彩虹和炫彩效果。常亮与闪烁使用 0..255 的自定义 R/G/B;内置流水/呼吸使用 MCU 固定的红、绿、蓝、黄、紫、青、白七色和慢/中/快三档速度,跑马/彩虹/炫彩由 MCU 自行配色。内置效果只在模式切换时按 speed → color → effect 的实机校准顺序写一次寄存器,不循环刷 I²C。
任何 active alert 都会立即抢占正常效果。RGB 告警模式由当前 OLED 告警页决定;OLED 位于主页时则使用最高优先级 active owner。颜色表示故障对象:CPU负载、频率、throttling、温度与散热相关为红色,供电/欠压为橙色,内存为紫色,存储为白色,网络/Wi-Fi 为蓝色,服务/进程为青色。频率表示严重等级:默认 Warning 为1500ms亮/1500ms灭,Critical 为750ms亮/750ms灭,Emergency 为300ms亮/300ms灭。`[led]` 可分别配置六类对象的 R/G/B 值,以及三个严重等级的亮灯和灭灯时长,非法颜色值会限制到0..255,间隔最小为50ms。每次点亮使用 v3.2.0 已验证的完整 selector/R/G/B 写入顺序,只在亮/灭边沿写 MCU,不做高频软件 PWM。相邻页面 RGB mode 相同时不关闭、不重启节奏。动画不写循环日志,owner 变化记录 `DISPLAY_OWNER`,实际模式变化才记录 `RGB_MODE`。
### 6. 结构化事件日志 ### 6. 结构化事件日志
@@ -82,7 +84,7 @@ RGB 模式由当前 OLED 告警页决定;OLED 位于主页时则使用最高
只在 **状态发生变化** 时记录关键事件,避免每秒刷屏。例如: 只在 **状态发生变化** 时记录关键事件,避免每秒刷屏。例如:
```text ```text
level=INFO event=START version=3.3.0 level=INFO event=START version=3.6.0
level=INFO event=NET_SWITCH old_if=eth0 new_if=wlan0 ... level=INFO event=NET_SWITCH old_if=eth0 new_if=wlan0 ...
level=WARN event=NETWORK_DOWN ... level=WARN event=NETWORK_DOWN ...
level=INFO event=NETWORK_RECOVERED ... level=INFO event=NETWORK_RECOVERED ...
@@ -136,6 +138,55 @@ RGB 保留卖家 MCU 0x0D 寄存器协议。实机校准确认静态自定义颜
Pi 红色 PWR 灯关机后恢复硬件默认亮起的行为不强行修改,可作为“系统已关机但 UPS 仍供电”的直观提示。 Pi 红色 PWR 灯关机后恢复硬件默认亮起的行为不强行修改,可作为“系统已关机但 UPS 仍供电”的直观提示。
## v3.6.0 API 与 Web
安装后访问:
```text
http://树莓派IP:6001/
```
Web 与 JSON API 由独立的 `pigway-pi-control-api.service` 提供。API 服务不访问 I²C;硬件 Agent 每秒原子更新 `/run/pigway-pi-control/status.json`,API 只读取该快照。默认监听地址和端口可在 `[api]` 中修改:
```ini
[api]
bind = 0.0.0.0
port = 6001
log_limit = 200
```
只读接口:
```text
GET /api/v1/health
GET /api/v1/status
GET /api/v1/logs?limit=200
GET /api/v1/config
GET /api/v1/services
```
日志接口支持 `since`、`until` Unix 时间戳,`severity`、`event`、`search` 筛选,`timestamp` / `severity` / `event` / `message` 排序,以及 `limit` / `offset` 分页。Web 提供今天、昨天、本周、本月和全部快捷范围。日志直接读取 systemd journal 的现有保留数据,不建立重复的 SQLite 日志副本。
配置写入接口:
```text
PUT /api/v1/config
Authorization: Bearer <token>
Content-Type: application/json
{"updates":{"led":{"service_b":"96"},"api":{"port":"6001"}}}
```
服务监控页面会列出本机 systemd 服务,并标识“已监控/未监控”。添加、编辑或删除监控使用 `PUT /api/v1/services`;启动或停止服务使用 `PUT /api/v1/services/control`,两者均要求 Bearer Token。API 服务不能通过自己的请求停止自身,其他服务由用户自行管理。监控备注保存在配置文件的 `[service_notes]`,不会参与硬件 Agent 的监控判断。
读取 token:
```bash
sudo cat /etc/pigway-pi-control-api.token
```
配置更新仅允许 `[services]`、`[processes]`、`[alerts]`、`[fan]`、`[led]`、`[timing]`、`[dark_mode]`、`[display]` 和 `[api]`。每次写入先生成时间戳备份,再原地更新目标键并重启硬件 Agent;修改 `[api]` 时 API 服务也会自动重启。
## 用户配置 ## 用户配置
正式配置只有一个: 正式配置只有一个:
@@ -162,24 +213,28 @@ sudo ./install.sh
安装器会: 安装器会:
- 安装必要依赖 - 安装必要依赖
- 检查 I²C - 检查 I²C,并在安装前检测 `/dev/i2c-1` 是否被其他 OLED/LED 控制进程占用
- 禁用旧 `temp-control.service` - 发现冲突时列出进程并退出,由用户决定如何处理;安装器不会停止、禁用或杀死其他服务
- 确认需要多个进程共用 I²C 时,可用 `sudo ./install.sh --force-i2c-conflict` 强制继续;冲突进程仍由用户自行管理
- 安装字体、程序、配置和 systemd unit - 安装字体、程序、配置和 systemd unit
- 完整保留用户现有配置(包括所有 section、用户值和注释),仅向 `[led]` 补入缺失的 RGB 颜色与频闪选项,已有用户值优先 - 完整保留用户现有配置(包括所有 section、用户值和注释),仅补入缺失的 `[led]` 和 `[api]` 选项,已有用户值优先
- 启动服务 - 生成只读 root token,安装 API/Web 文件
- 启动硬件 Agent 与 API/Web 服务
- 执行版本、OLED、UI、P0健康监控和诊断入口自检 - 执行版本、OLED、UI、P0健康监控和诊断入口自检
## 常用命令 ## 常用命令
```bash ```bash
systemctl status pigway-pi-control --no-pager -l systemctl status pigway-pi-control --no-pager -l
journalctl -u pigway-pi-control-api -f
journalctl -u pigway-pi-control -f journalctl -u pigway-pi-control -f
sudo systemctl restart pigway-pi-control sudo systemctl restart pigway-pi-control
sudo systemctl restart pigway-pi-control-api
sudo /usr/local/sbin/pigway-pi-control --diagnose sudo /usr/local/sbin/pigway-pi-control --diagnose
``` ```
## 版本路线 ## 版本路线
- v3.2.0:主网络接口 / Wi-Fi RSSI / ETH速率 / 双网切换 - v3.2.0:主网络接口 / Wi-Fi RSSI / ETH速率 / 双网切换
- **v3.5.0:System Health、显示仲裁与可配置 RGB 告警** - v3.5.0:System Health、显示仲裁与可配置 RGB 告警
- 后续:只读 `/api/v1/...` Agent API,再由 NAS 统一汇总多台设备 - **v3.6.0:轻量状态/日志/配置 API 与同源 Web 管理界面**
+9 -6
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@@ -1,7 +1,10 @@
dfe901d5f7e3a8ef897203c38cf9e4d47eca63e0d718f74b99102c874edfc3b3 README.md ce6123a9d39b1c552774a4b02062abbf4e223ff8f4c93212c9ea6e0bef412c85 README.md
72c46162c33f9587c6ccb01ad53fbaaf4ecec8cd21014b909e87e8707e253e36 app/oled_font_5x7.bin 72c46162c33f9587c6ccb01ad53fbaaf4ecec8cd21014b909e87e8707e253e36 app/oled_font_5x7.bin
43aca7bda6e8edb59734e06ccd373a9426c73fbf359727a906b6e2ca405fc344 app/pigway_pi_control.py d71d949643d31461f2e62ded3818e1a0f1711d1420756ad0cc32eb04cde0fad3 app/pigway_pi_control.py
02e67b147ae68378bed1dcb88245b636c72fba3dabe4c119aab61219eee89995 config/pigway-pi-control.conf 93aff38477658c1517eac6a2d6a0bdf23b9fb372fa0b1b578ab32b649be1f1f2 app/pigway_pi_control_api.py
d84774f2fe2bfe380b7b29d83d42ddc17938fb03f78a746df07fc2e49f635e64 install.sh 75fa662ed21138a8e394de83e46281dab039433cc0d7a8f787e1a049f4b47ec8 config/pigway-pi-control.conf
81aea0a89b298b2512fcb9bf6418618ba7a66474d425390cf95a0128c4093474 systemd/pigway-pi-control.service f34eac1df180a3da3a6998d650c06435fd89728c10b090f6162df82e53986dd0 install.sh
a3d74973cafbabaf58a660a8c83d28347d1c06d9fd2dab3ecfce5b7607f6fee2 uninstall.sh 4f6e8db3698a62f57823d3298a0e6814593de6fa3d31e4751b7ea4a76e553e35 systemd/pigway-pi-control.service
aa21cef9a06593371ccff005335b6c0c826fbf4b5c48e4255b5f4b75ce6e9217 systemd/pigway-pi-control-api.service
9f59e7313ee58e687ae6dd29d175c67082674254ac5c5f54168b2735b64c20a4 uninstall.sh
63a5e7a21d16f7f0e72845798be3b858b641f9d886dc06a013821100ccb1f3f4 web/index.html
+90 -7
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@@ -1,13 +1,14 @@
#!/usr/bin/env python3 #!/usr/bin/env python3
import time,socket,subprocess,configparser,signal,re,errno,threading,argparse import time,socket,subprocess,configparser,signal,re,errno,threading,argparse,json
from pathlib import Path from pathlib import Path
APP_VERSION="3.5.0" APP_VERSION="3.6.0"
from smbus2 import SMBus from smbus2 import SMBus
from PIL import Image from PIL import Image
from shutil import disk_usage from shutil import disk_usage
OLED=0x3C; MCU=0x0D; W,H=128,32 OLED=0x3C; MCU=0x0D; W,H=128,32
CFG="/etc/pigway-pi-control.conf" CFG="/etc/pigway-pi-control.conf"
STATUS_PATH="/run/pigway-pi-control/status.json"
running=True running=True
def stop(*_): def stop(*_):
@@ -252,6 +253,20 @@ RGB_WRITE_DELAY_MS=max(1,cf("led","write_delay_ms",10,int))
WARNING_FLASH=(max(50,cf("led","warning_flash_on_ms",1500,int)),max(50,cf("led","warning_flash_off_ms",1500,int))) WARNING_FLASH=(max(50,cf("led","warning_flash_on_ms",1500,int)),max(50,cf("led","warning_flash_off_ms",1500,int)))
CRITICAL_FLASH=(max(50,cf("led","critical_flash_on_ms",750,int)),max(50,cf("led","critical_flash_off_ms",750,int))) CRITICAL_FLASH=(max(50,cf("led","critical_flash_on_ms",750,int)),max(50,cf("led","critical_flash_off_ms",750,int)))
EMERGENCY_FLASH=(max(50,cf("led","emergency_flash_on_ms",300,int)),max(50,cf("led","emergency_flash_off_ms",300,int))) EMERGENCY_FLASH=(max(50,cf("led","emergency_flash_on_ms",300,int)),max(50,cf("led","emergency_flash_off_ms",300,int)))
NORMAL_MODE=cf("led","normal_mode","off",str).strip().lower()
NORMAL_MODES={"off","solid","flash","flow","breathe","marquee","rainbow","colorful"}
if NORMAL_MODE not in NORMAL_MODES: NORMAL_MODE="off"
NORMAL_COLOR=tuple(max(0,min(255,cf("led",f"normal_{channel}",value,int)))
for channel,value in zip(("r","g","b"),(0,0,0)))
NORMAL_FLASH=(max(50,cf("led","normal_flash_on_ms",1000,int)),
max(50,cf("led","normal_flash_off_ms",1000,int)))
NORMAL_EFFECT_SPEED=max(1,min(3,cf("led","normal_effect_speed",2,int)))
NORMAL_EFFECT_COLOR=cf("led","normal_effect_color","green",str).strip().lower()
RGB_EFFECT_COLORS={"red":0,"green":1,"blue":2,"yellow":3,"purple":4,"cyan":5,"white":6}
if NORMAL_EFFECT_COLOR not in RGB_EFFECT_COLORS: NORMAL_EFFECT_COLOR="green"
RGB_EFFECTS={"flow":0,"breathe":1,"marquee":2,"rainbow":3,"colorful":4}
NORMAL_RGB_MODE={"off":"OFF","solid":"NORMAL_SOLID","flash":"NORMAL_FLASH",
**{name:f"NORMAL_{name.upper()}" for name in RGB_EFFECTS}}[NORMAL_MODE]
def rgb_cfg(name,default): def rgb_cfg(name,default):
return tuple(max(0,min(255,cf("led",f"{name}_{channel}",value,int))) return tuple(max(0,min(255,cf("led",f"{name}_{channel}",value,int)))
@@ -440,6 +455,29 @@ def rgb_flash(mode,on):
mcu(0x03,channels[2]) mcu(0x03,channels[2])
_last_rgb=state _last_rgb=state
def rgb_static(channels,state_name):
global _last_rgb
state=(state_name,channels)
if _last_rgb==state: return
mcu(0x07,0x00); time.sleep(RGB_WRITE_DELAY_MS/1000.0)
mcu(0x00,0xff); time.sleep(RGB_WRITE_DELAY_MS/1000.0)
mcu(0x01,channels[0]); time.sleep(RGB_WRITE_DELAY_MS/1000.0)
mcu(0x02,channels[1]); time.sleep(RGB_WRITE_DELAY_MS/1000.0)
mcu(0x03,channels[2])
_last_rgb=state
def rgb_normal_effect(mode):
global _last_rgb
effect_name=mode.removeprefix("NORMAL_").lower()
state=("effect",effect_name,NORMAL_EFFECT_SPEED,NORMAL_EFFECT_COLOR)
if _last_rgb==state: return
# Hardware-calibrated order: speed and color are parameters; the final
# effect register write commits and starts the selected MCU animation.
mcu(0x05,NORMAL_EFFECT_SPEED); time.sleep(RGB_WRITE_DELAY_MS/1000.0)
mcu(0x06,RGB_EFFECT_COLORS[NORMAL_EFFECT_COLOR]); time.sleep(RGB_WRITE_DELAY_MS/1000.0)
mcu(0x04,RGB_EFFECTS[effect_name])
_last_rgb=state
def render_home(cpu,temp,mem,disk): def render_home(cpu,temp,mem,disk):
# 128x32 fixed columns. Both columns are LEFT-aligned. # 128x32 fixed columns. Both columns are LEFT-aligned.
# Seller 5x7 font has 6px character pitch; right column starts at x=72. # Seller 5x7 font has 6px character pitch; right column starts at x=72.
@@ -484,7 +522,7 @@ class DisplayController:
now=time.monotonic() now=time.monotonic()
self.lock=threading.RLock() self.lock=threading.RLock()
self.requests={"NORMAL_HOME":{ self.requests={"NORMAL_HOME":{
"id":"NORMAL_HOME","priority":0,"severity":0,"rgb_mode":"OFF", "id":"NORMAL_HOME","priority":0,"severity":0,"rgb_mode":NORMAL_RGB_MODE,
"title":"","l2":"","l3":"","l4":"","active":True, "title":"","l2":"","l3":"","l4":"","active":True,
"first_seen":now,"last_changed":now,"metadata":{"home":(0.0,0.0,0.0,0.0)}, "first_seen":now,"last_changed":now,"metadata":{"home":(0.0,0.0,0.0,0.0)},
}} }}
@@ -616,6 +654,17 @@ class DisplayController:
def owner_snapshot(self): def owner_snapshot(self):
with self.lock: return dict(self.requests[self.current_owner_id]) with self.lock: return dict(self.requests[self.current_owner_id])
def status_snapshot(self):
with self.lock:
alerts=self._ordered_alerts_locked()
return {
"owner":self.current_owner_id,
"oled_page":self.current_oled_page_id,
"rgb_mode":self.current_rgb_mode,
"alerts":[{k:a[k] for k in ("id","priority","severity","title","l2","l3","l4","first_seen","last_changed")}
for a in alerts],
}
def _rgb_worker(self): def _rgb_worker(self):
previous_error=None; applied_mode="OFF"; applied_flash=False; animation_started=time.monotonic() previous_error=None; applied_mode="OFF"; applied_flash=False; animation_started=time.monotonic()
while not self.stop_event.is_set(): while not self.stop_event.is_set():
@@ -625,18 +674,27 @@ class DisplayController:
if wanted_mode!=applied_mode: if wanted_mode!=applied_mode:
with bus_lock: with bus_lock:
if wanted_mode=="OFF": rgb_off() if wanted_mode=="OFF": rgb_off()
elif wanted_flash: rgb_flash(wanted_mode,True) elif wanted_mode=="NORMAL_SOLID": rgb_static(NORMAL_COLOR,"normal_solid")
elif wanted_mode=="NORMAL_FLASH": rgb_static(NORMAL_COLOR,"normal_flash_on")
elif wanted_mode.startswith("NORMAL_"): rgb_normal_effect(wanted_mode)
elif wanted_flash:
rgb_off()
rgb_flash(wanted_mode,True)
else: raise ValueError(f"unsupported RGB mode: {wanted_mode}") else: raise ValueError(f"unsupported RGB mode: {wanted_mode}")
log("INFO","RGB_MODE",old=applied_mode,new=wanted_mode) log("INFO","RGB_MODE",old=applied_mode,new=wanted_mode)
applied_mode=wanted_mode; animation_started=time.monotonic() applied_mode=wanted_mode; animation_started=time.monotonic()
applied_flash=applied_mode.endswith("_FLASH") applied_flash=applied_mode.endswith("_FLASH")
if applied_flash: if applied_flash:
elapsed_ms=(time.monotonic()-animation_started)*1000.0 elapsed_ms=(time.monotonic()-animation_started)*1000.0
if "_EMERGENCY_" in applied_mode: on_ms,off_ms=EMERGENCY_FLASH if applied_mode=="NORMAL_FLASH": on_ms,off_ms=NORMAL_FLASH
elif "_EMERGENCY_" in applied_mode: on_ms,off_ms=EMERGENCY_FLASH
elif "_CRITICAL_" in applied_mode: on_ms,off_ms=CRITICAL_FLASH elif "_CRITICAL_" in applied_mode: on_ms,off_ms=CRITICAL_FLASH
else: on_ms,off_ms=WARNING_FLASH else: on_ms,off_ms=WARNING_FLASH
on=elapsed_ms%(on_ms+off_ms)<on_ms on=elapsed_ms%(on_ms+off_ms)<on_ms
with bus_lock: rgb_flash(applied_mode,on) with bus_lock:
if applied_mode=="NORMAL_FLASH":
rgb_static(NORMAL_COLOR,"normal_flash_on") if on else rgb_off()
else: rgb_flash(applied_mode,on)
if previous_error is not None: log("INFO","RGB_RECOVERED") if previous_error is not None: log("INFO","RGB_RECOVERED")
previous_error=None previous_error=None
except Exception as e: except Exception as e:
@@ -660,6 +718,29 @@ def cleanup():
for name,action in (("fan",lambda:mcu(0x08,0x00)),("bus_close",bus.close)): for name,action in (("fan",lambda:mcu(0x08,0x00)),("bus_close",bus.close)):
try: action() try: action()
except Exception as e: log("ERROR","SHUTDOWN_CLEANUP",step=name,error=repr(e)) except Exception as e: log("ERROR","SHUTDOWN_CLEANUP",step=name,error=repr(e))
try: Path(STATUS_PATH).unlink(missing_ok=True)
except Exception as e: log("ERROR","SHUTDOWN_CLEANUP",step="status_file",error=repr(e))
def write_status(cpu,temp,mem,disk):
display_state=display.status_snapshot()
state={
"version":APP_VERSION,"timestamp":int(time.time()),"uptime_seconds":uptime_seconds(),
"system":{"load_average":load_average(),"cpu_percent":round(cpu,1),
"cpu_freq_mhz":round(cpu_freq_mhz()),"temperature_c":round(temp,1),
"memory_percent":round(mem,1),"disk_percent":round(disk,1),
"root_readonly":bool(fs_readonly),"fan_level":fan_level,"fan_name":FAN_NAME[fan_level]},
"power":health,
"network":{"interface":net_iface,"kind":net_kind,"metric":net_metric,
"ip_label":ip_label,"ip":ip,"link":bool(link_ok),"internet":bool(net_ok)},
"watches":[{"type":w[0],"name":w[1],"target":w[2],"up":bool(ok)}
for w,ok in zip(watches,watch_state)],
"display":display_state,
"agent":{"loop_errors":agent["loop_errors"],"i2c_errors":agent["i2c_errors"]},
}
path=Path(STATUS_PATH); path.parent.mkdir(mode=0o755,parents=True,exist_ok=True)
temporary=path.with_suffix(".tmp")
temporary.write_text(json.dumps(state,ensure_ascii=False,separators=(",",":")))
temporary.chmod(0o644); temporary.replace(path)
# Dispatch only after all shared checks and configuration have been initialized. # Dispatch only after all shared checks and configuration have been initialized.
parser=argparse.ArgumentParser() parser=argparse.ArgumentParser()
@@ -668,7 +749,7 @@ args=parser.parse_args()
if args.diagnose: raise SystemExit(diagnose()) if args.diagnose: raise SystemExit(diagnose())
watch_state=[] watch_state=[]
last_sensor=last_render=0.0 last_sensor=last_render=last_status=0.0
last_net=last_watch=last_health=0.0 last_net=last_watch=last_health=0.0
health={}; fs_readonly=False health={}; fs_readonly=False
agent={"last_sensor_ok":0.0,"last_network_ok":0.0,"last_watch_ok":0.0,"last_health_ok":0.0,"loop_errors":0,"i2c_errors":0} agent={"last_sensor_ok":0.0,"last_network_ok":0.0,"last_watch_ok":0.0,"last_health_ok":0.0,"loop_errors":0,"i2c_errors":0}
@@ -731,6 +812,8 @@ try:
if now-last_render >= OLED_REFRESH: if now-last_render >= OLED_REFRESH:
display.refresh() display.refresh()
last_render=now last_render=now
if now-last_status >= 1.0:
write_status(c,t,m,d); last_status=now
time.sleep(0.20) time.sleep(0.20)
except Exception as e: except Exception as e:
+293
View File
@@ -0,0 +1,293 @@
#!/usr/bin/env python3
import configparser,ipaddress,json,re,secrets,shutil,subprocess,threading,time
from http import HTTPStatus
from http.server import BaseHTTPRequestHandler,ThreadingHTTPServer
from pathlib import Path
from urllib.parse import parse_qs,urlparse
APP_VERSION="3.6.0"
CFG=Path("/etc/pigway-pi-control.conf")
STATUS=Path("/run/pigway-pi-control/status.json")
TOKEN=Path("/etc/pigway-pi-control-api.token")
WEB=Path("/usr/local/share/pigway-pi-control/web/index.html")
ALLOWED_SECTIONS={"services","processes","alerts","fan","led","timing","dark_mode","display","api"}
NAME_RE=re.compile(r"^[A-Za-z0-9_.-]{1,64}$")
UNIT_RE=re.compile(r"^[A-Za-z0-9_.@:-]{1,128}\.service$")
RGB_KEY_RE=re.compile(r"^(cpu|power|memory|storage|network|service|normal)_[rgb]$")
FLASH_KEY_RE=re.compile(r"^(warning|critical|emergency|normal)_flash_(on|off)_ms$")
NORMAL_MODES={"off","solid","flash","flow","breathe","marquee","rainbow","colorful"}
EFFECT_COLORS={"red","green","blue","yellow","purple","cyan","white"}
PROTECTED_UNITS={"pigway-pi-control-api.service"}
def load_cfg():
cfg=configparser.ConfigParser(); cfg.read(CFG)
return cfg
def api_setting(key,default,cast=str):
try:return cast(load_cfg().get("api",key))
except Exception:return default
def config_json():
cfg=load_cfg()
return {section:dict(cfg.items(section)) for section in cfg.sections() if section in ALLOWED_SECTIONS}
def validate_value(section,key,value,existing):
if section not in {"services","processes"} and key not in existing.get(section,set()):
raise ValueError(f"unsupported option: {section}.{key}")
if RGB_KEY_RE.fullmatch(key):
number=int(value)
if not 0<=number<=255: raise ValueError(f"{key} must be 0..255")
elif FLASH_KEY_RE.fullmatch(key):
number=int(value)
if not 50<=number<=60000: raise ValueError(f"{key} must be 50..60000")
elif section=="led" and key=="normal_mode":
if value.lower() not in NORMAL_MODES: raise ValueError("normal_mode must be off, solid, flash, flow, breathe, marquee, rainbow or colorful")
elif section=="led" and key=="normal_effect_speed":
if int(value) not in (1,2,3): raise ValueError("normal_effect_speed must be 1, 2 or 3")
elif section=="led" and key=="normal_effect_color":
if value.lower() not in EFFECT_COLORS: raise ValueError("normal_effect_color must be red, green, blue, yellow, purple, cyan or white")
elif section=="api" and key=="port":
number=int(value)
if not 1<=number<=65535: raise ValueError("api.port must be 1..65535")
elif section=="api" and key=="log_limit":
number=int(value)
if not 1<=number<=1000: raise ValueError("api.log_limit must be 1..1000")
elif section=="api" and key=="bind":
ipaddress.ip_address(value)
def update_ini(updates):
if not isinstance(updates,dict): raise ValueError("updates must be an object")
text=CFG.read_text()
current=load_cfg(); existing={section:set(current.options(section)) for section in current.sections()}
for section,values in updates.items():
if section not in ALLOWED_SECTIONS or not isinstance(values,dict):
raise ValueError(f"unsupported section: {section}")
for key,value in values.items():
if not NAME_RE.fullmatch(str(key)): raise ValueError(f"invalid key: {key}")
if value is None:
raise ValueError(f"null is not allowed: {section}.{key}")
value=str(value).strip()
if not value or len(value)>256 or any(c in value for c in "\r\n\x00"):
raise ValueError(f"invalid value: {section}.{key}")
validate_value(section,str(key),value,existing)
section_match=re.search(rf"(?mi)^\[{re.escape(section)}\]\s*$",text)
if not section_match:
text=text.rstrip()+f"\n\n[{section}]\n{key} = {value}\n"
continue
next_section=re.search(r"(?m)^\[.+\]\s*$",text[section_match.end():])
end=section_match.end()+(next_section.start() if next_section else len(text)-section_match.end())
chunk=text[section_match.end():end]
key_match=re.search(rf"(?mi)^(\s*{re.escape(str(key))}\s*=\s*).*$",chunk)
if key_match:
start=section_match.end()+key_match.start(); stop=section_match.end()+key_match.end()
replacement=key_match.group(1)+value
text=text[:start]+replacement+text[stop:]
else:
text=text[:end].rstrip()+f"\n{key} = {value}\n\n"+text[end:].lstrip("\n")
parsed=configparser.ConfigParser(); parsed.read_string(text)
backup=CFG.with_name(f"{CFG.name}.bak.api-{time.strftime('%Y%m%d-%H%M%S')}")
shutil.copy2(CFG,backup)
temporary=CFG.with_suffix(".tmp")
temporary.write_text(text); temporary.chmod(0o644); temporary.replace(CFG)
return str(backup)
def journal_query(since=None,until=None,severity="",event="",search="",sort="timestamp",order="desc",limit=100,offset=0):
command=["journalctl","-u","pigway-pi-control.service","--no-pager","-o","json"]
if since is not None: command.extend(["--since",f"@{since}"])
if until is not None: command.extend(["--until",f"@{until}"])
result=subprocess.run(command,capture_output=True,text=True,timeout=15)
if result.returncode: raise RuntimeError(result.stderr.strip() or "journalctl failed")
rows=[]
for line in result.stdout.splitlines():
try:
item=json.loads(line)
message=item.get("MESSAGE","")
level_match=re.search(r"(?:^|\s)level=([A-Z]+)(?:\s|$)",message)
event_match=re.search(r"(?:^|\s)event=([^ ]+)",message)
priority=str(item.get("PRIORITY","6"))
level=(level_match.group(1) if level_match else
{"0":"EMERGENCY","1":"ALERT","2":"CRITICAL","3":"ERROR","4":"WARN","5":"NOTICE","6":"INFO","7":"DEBUG"}.get(priority,"INFO"))
rows.append({"timestamp":int(item.get("__REALTIME_TIMESTAMP",0)),"priority":priority,
"severity":level,"event":event_match.group(1) if event_match else "SYSTEM",
"message":message})
except json.JSONDecodeError: pass
severities={x.strip().upper() for x in severity.split(",") if x.strip()}
if severities: rows=[x for x in rows if x["severity"] in severities]
event_types=sorted({x["event"] for x in rows})
if event: rows=[x for x in rows if x["event"]==event]
if search:
needle=search.casefold(); rows=[x for x in rows if needle in x["message"].casefold()]
severity_rank={"EMERGENCY":0,"ALERT":1,"CRITICAL":2,"ERROR":3,"WARN":4,"NOTICE":5,"INFO":6,"DEBUG":7}
keys={"timestamp":lambda x:x["timestamp"],"severity":lambda x:severity_rank.get(x["severity"],99),
"event":lambda x:x["event"],"message":lambda x:x["message"]}
rows.sort(key=keys[sort],reverse=order=="desc")
total=len(rows)
return {"logs":rows[offset:offset+limit],"total":total,"offset":offset,"limit":limit,
"event_types":event_types,"retention":"systemd-journal"}
def service_inventory():
cfg=load_cfg()
monitored={target.lower():(name,target) for name,target in cfg.items("services")} if cfg.has_section("services") else {}
notes=dict(cfg.items("service_notes")) if cfg.has_section("service_notes") else {}
files=subprocess.run(["systemctl","list-unit-files","--type=service","--no-legend","--no-pager"],
capture_output=True,text=True,timeout=10,check=True)
units={}
for line in files.stdout.splitlines():
parts=line.split()
if len(parts)>=2 and UNIT_RE.fullmatch(parts[0]):
units[parts[0]]={"unit":parts[0],"enabled":parts[1],"active":"inactive","description":""}
states=subprocess.run(["systemctl","list-units","--all","--type=service","--no-legend","--no-pager","--plain"],
capture_output=True,text=True,timeout=10,check=True)
for line in states.stdout.splitlines():
parts=line.split(None,4)
if len(parts)>=4 and UNIT_RE.fullmatch(parts[0]):
item=units.setdefault(parts[0],{"unit":parts[0],"enabled":"unknown"})
item.update({"active":parts[2],"description":parts[4] if len(parts)>4 else ""})
for name,target in monitored.values():
item=units.setdefault(target,{"unit":target,"enabled":"not-found","active":"inactive","description":""})
item.update({"monitored":True,"monitor_name":name.upper(),"note":notes.get(name,"")})
for item in units.values():
item.setdefault("monitored",False); item.setdefault("monitor_name",""); item.setdefault("note","")
item["protected"]=item["unit"] in PROTECTED_UNITS
return sorted(units.values(),key=lambda x:(not x["monitored"],x["unit"]))
def edit_service_monitor(operation,name,target,note="",previous_name=""):
if operation not in {"save","delete"}: raise ValueError("operation must be save or delete")
if not NAME_RE.fullmatch(name): raise ValueError("invalid monitor name")
if not UNIT_RE.fullmatch(target): raise ValueError("invalid systemd service name")
if len(note)>120 or any(c in note for c in "\r\n\x00"): raise ValueError("invalid note")
if previous_name and not NAME_RE.fullmatch(previous_name): raise ValueError("invalid previous monitor name")
cfg=load_cfg(); old_target=cfg.get("services",name,fallback=None)
text=CFG.read_text()
def change(section,key,value):
nonlocal text
section_match=re.search(rf"(?mi)^\[{re.escape(section)}\]\s*$",text)
if not section_match:
if value is not None: text=text.rstrip()+f"\n\n[{section}]\n{key} = {value}\n"
return
next_section=re.search(r"(?m)^\[.+\]\s*$",text[section_match.end():])
end=section_match.end()+(next_section.start() if next_section else len(text)-section_match.end())
chunk=text[section_match.end():end]
key_match=re.search(rf"(?mi)^\s*{re.escape(key)}\s*=.*(?:\n|$)",chunk)
if key_match:
start=section_match.end()+key_match.start(); stop=section_match.end()+key_match.end()
text=text[:start]+((f"{key} = {value}\n") if value is not None else "")+text[stop:]
elif value is not None:
text=text[:end].rstrip()+f"\n{key} = {value}\n\n"+text[end:].lstrip("\n")
if operation=="delete":
if old_target is None: raise ValueError("monitor not found")
change("services",name,None); change("service_notes",name,None)
else:
if previous_name and previous_name.lower()!=name.lower():
change("services",previous_name,None); change("service_notes",previous_name,None)
change("services",name,target); change("service_notes",name,note or None)
parsed=configparser.ConfigParser(); parsed.read_string(text)
backup=CFG.with_name(f"{CFG.name}.bak.api-{time.strftime('%Y%m%d-%H%M%S')}")
shutil.copy2(CFG,backup)
temporary=CFG.with_suffix(".tmp"); temporary.write_text(text); temporary.chmod(0o644); temporary.replace(CFG)
subprocess.run(["systemctl","restart","pigway-pi-control.service"],check=True,timeout=10)
return str(backup)
def control_service(unit,action):
if not UNIT_RE.fullmatch(unit): raise ValueError("invalid systemd service name")
if action not in {"start","stop"}: raise ValueError("action must be start or stop")
if unit in PROTECTED_UNITS and action=="stop": raise ValueError("protected remote-management service cannot be stopped here")
result=subprocess.run(["systemctl",action,unit],capture_output=True,text=True,timeout=20)
if result.returncode: raise RuntimeError(result.stderr.strip() or f"systemctl {action} failed")
class Handler(BaseHTTPRequestHandler):
server_version="PIGWayAPI/3.6"
def log_message(self,fmt,*args):
return
def send_json(self,status,payload):
data=json.dumps(payload,ensure_ascii=False,separators=(",",":")).encode()
self.send_response(status); self.send_header("Content-Type","application/json; charset=utf-8")
self.send_header("Content-Length",str(len(data))); self.security_headers(); self.end_headers(); self.wfile.write(data)
def security_headers(self):
self.send_header("Cache-Control","no-store")
self.send_header("X-Content-Type-Options","nosniff")
self.send_header("X-Frame-Options","DENY")
self.send_header("Content-Security-Policy","default-src 'self'; style-src 'self' 'unsafe-inline'; script-src 'self' 'unsafe-inline'")
def authorized(self):
try: expected=TOKEN.read_text().strip()
except OSError: return False
supplied=self.headers.get("Authorization","")
return supplied.startswith("Bearer ") and secrets.compare_digest(supplied[7:],expected)
def read_json(self):
length=int(self.headers.get("Content-Length","0"))
if length<=0 or length>65536: raise ValueError("invalid request size")
return json.loads(self.rfile.read(length))
def do_GET(self):
parsed=urlparse(self.path)
try:
if parsed.path=="/":
data=WEB.read_bytes(); self.send_response(200); self.send_header("Content-Type","text/html; charset=utf-8")
self.send_header("Content-Length",str(len(data))); self.security_headers(); self.end_headers(); self.wfile.write(data); return
if parsed.path=="/api/v1/health":
self.send_json(200,{"ok":True,"version":APP_VERSION,"status_available":STATUS.exists()}); return
if parsed.path=="/api/v1/status":
if not STATUS.exists(): self.send_json(503,{"error":"agent status unavailable"}); return
self.send_json(200,json.loads(STATUS.read_text())); return
if parsed.path=="/api/v1/logs":
query=parse_qs(parsed.query)
value=lambda key,default="":query.get(key,[default])[0]
limit=min(max(int(value("limit",api_setting("log_limit",200,int))),1),500)
offset=max(int(value("offset",0)),0)
since=int(value("since")) if value("since") else None
until=int(value("until")) if value("until") else None
if since is not None and until is not None and since>until: raise ValueError("since must not be after until")
sort=value("sort","timestamp"); order=value("order","desc")
if sort not in {"timestamp","severity","event","message"}: raise ValueError("invalid log sort")
if order not in {"asc","desc"}: raise ValueError("invalid log order")
severity=value("severity").upper(); event=value("event"); search=value("search")
if len(event)>80 or len(search)>120: raise ValueError("log filter is too long")
self.send_json(200,journal_query(since,until,severity,event,search,sort,order,limit,offset)); return
if parsed.path=="/api/v1/config":
self.send_json(200,{"config":config_json(),"write_requires_token":True}); return
if parsed.path=="/api/v1/services":
self.send_json(200,{"services":service_inventory()}); return
self.send_json(404,{"error":"not found"})
except ValueError as e: self.send_json(400,{"error":str(e)})
except Exception as e: self.send_json(500,{"error":str(e)})
def do_PUT(self):
path=urlparse(self.path).path
if path not in {"/api/v1/config","/api/v1/services","/api/v1/services/control"}: self.send_json(404,{"error":"not found"}); return
if not self.authorized(): self.send_json(401,{"error":"bearer token required"}); return
try:
body=self.read_json()
if path=="/api/v1/services/control":
control_service(str(body.get("unit","")),str(body.get("action","")))
print(f"SERVICE_CONTROL action={body.get('action')} unit={body.get('unit')}",flush=True)
self.send_json(200,{"ok":True}); return
if path=="/api/v1/services":
backup=edit_service_monitor(str(body.get("operation","")),str(body.get("name","")),
str(body.get("target","")),str(body.get("note","")),
str(body.get("previous_name","")))
print(f"SERVICE_MONITOR_UPDATED operation={body.get('operation')} target={body.get('target')} backup={backup}",flush=True)
self.send_json(200,{"ok":True,"backup":backup}); return
updates=body.get("updates")
backup=update_ini(updates)
subprocess.run(["systemctl","restart","pigway-pi-control.service"],check=True,timeout=10)
restart_api="api" in updates
print(f"CONFIG_UPDATED sections={','.join(sorted(updates))} backup={backup}",flush=True)
self.send_json(200,{"ok":True,"backup":backup,"api_restart":restart_api})
if restart_api: threading.Timer(0.2,self.server.shutdown).start()
except (ValueError,json.JSONDecodeError) as e: self.send_json(400,{"error":str(e)})
except Exception as e: self.send_json(500,{"error":str(e)})
def main():
host=api_setting("bind","0.0.0.0")
port=api_setting("port",6001,int)
server=ThreadingHTTPServer((host,port),Handler)
print(f"API_START version={APP_VERSION} bind={host} port={port}",flush=True)
try: server.serve_forever()
finally: server.server_close()
if __name__=="__main__": main()
+38 -4
View File
@@ -1,5 +1,5 @@
# ============================================================================= # =============================================================================
# Pigway Pi Control v3.5.0 - 用户配置文件 # PIGWay Pi Control v3.6.0 - 用户配置文件
# ============================================================================= # =============================================================================
# #
# 正式安装后的配置路径: # 正式安装后的配置路径:
@@ -25,6 +25,14 @@
# ============================================================================= # =============================================================================
[api]
# API 与 Web 使用同一监听地址和端口。0.0.0.0 允许局域网访问;
# 如只允许本机访问可改为 127.0.0.1。修改后重启 API 服务生效。
bind = 0.0.0.0
port = 6001
log_limit = 200
[timing] [timing]
# 传感器采样周期,单位:秒。 # 传感器采样周期,单位:秒。
# CPU / 内存 / 温度 / 磁盘以及风扇控制按此周期更新。 # CPU / 内存 / 温度 / 磁盘以及风扇控制按此周期更新。
@@ -139,6 +147,34 @@ wifi_weak_seconds = 30
[led] [led]
# 正常运行、没有任何 active alert 时的 RGB 表现:
# off = 全灭(默认,最安静且 I2C 写入最少)
# solid = 三灯使用 normal_r/g/b 自定义颜色常亮
# flash = 三灯使用 normal_r/g/b 和 normal_flash_*_ms 自定义颜色闪烁
# flow = MCU 内置流水灯;使用有限颜色和速度
# breathe = MCU 内置呼吸灯;使用有限颜色和速度
# marquee = MCU 内置跑马灯;MCU 自行决定颜色变化
# rainbow = MCU 内置彩虹灯;MCU 自行决定颜色变化
# colorful = MCU 内置炫彩灯;MCU 自行决定颜色变化
# 任何 active alert 都会立即抢占正常效果;全部恢复后才重新应用这里的模式。
normal_mode = off
# solid / flash 自定义颜色,三通道范围均为 0..255。
normal_r = 0
normal_g = 0
normal_b = 0
# flash 亮灯/灭灯时间,单位毫秒;范围 50..60000。
normal_flash_on_ms = 1000
normal_flash_off_ms = 1000
# MCU 内置效果速度:1=慢,2=中(默认),3=快。
normal_effect_speed = 2
# flow / breathe 可使用的 MCU 内置有限颜色:
# red / green / blue / yellow / purple / cyan / white
# marquee / rainbow / colorful 会忽略该颜色值。
normal_effect_color = green
# DisplayController 按集中定义的 priority 仲裁 owner。告警页显示时 RGB 同步显示 # DisplayController 按集中定义的 priority 仲裁 owner。告警页显示时 RGB 同步显示
# 该页对象;主页使用最高优先级 active owner。颜色表示对象,速度表示严重等级: # 该页对象;主页使用最高优先级 active owner。颜色表示对象,速度表示严重等级:
# CPU/频率/温度/散热 = 红色 # CPU/频率/温度/散热 = 红色
@@ -175,8 +211,6 @@ critical_flash_on_ms = 750
critical_flash_off_ms = 750 critical_flash_off_ms = 750
emergency_flash_on_ms = 300 emergency_flash_on_ms = 300
emergency_flash_off_ms = 300 emergency_flash_off_ms = 300
# NORMAL_HOME 为 owner 时 RGB OFF。
#
# 每次点亮使用 v3.2.0 已验证的 selector -> R -> G -> B 完整写入顺序, # 每次点亮使用 v3.2.0 已验证的 selector -> R -> G -> B 完整写入顺序,
# 只在亮/灭边沿访问 MCU,不做高频软件 PWM。 # 只在亮/灭边沿访问 MCU,不做高频软件 PWM。
write_delay_ms = 10 write_delay_ms = 10
@@ -191,7 +225,7 @@ write_delay_ms = 10
# Raspberry Pi 4 板载 PWR / ACT LED。 # Raspberry Pi 4 板载 PWR / ACT LED。
# 本机硬件只支持开/关,不支持真正的 PWM 调暗。 # 本机硬件只支持开/关,不支持真正的 PWM 调暗。
# #
# off = Pigway Pi Control 启动时关闭该灯。 # off = PIGWay Pi Control 启动时关闭该灯。
# 若不希望程序干预,可改为 on。 # 若不希望程序干预,可改为 on。
# #
# 注意: # 注意:
+105 -24
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@@ -2,7 +2,20 @@
set -euo pipefail set -euo pipefail
cd "$(dirname "$0")" cd "$(dirname "$0")"
for required in app/pigway_pi_control.py app/oled_font_5x7.bin config/pigway-pi-control.conf systemd/pigway-pi-control.service; do FORCE_I2C_CONFLICT=0
for arg in "$@"; do
case "$arg" in
--force-i2c-conflict) FORCE_I2C_CONFLICT=1 ;;
-h|--help)
echo "Usage: sudo ./install.sh [--force-i2c-conflict]"
echo " --force-i2c-conflict Continue even when another process owns /dev/i2c-1."
exit 0
;;
*) echo "ERROR: unknown option: $arg" >&2; exit 2 ;;
esac
done
for required in app/pigway_pi_control.py app/pigway_pi_control_api.py app/oled_font_5x7.bin web/index.html config/pigway-pi-control.conf systemd/pigway-pi-control.service systemd/pigway-pi-control-api.service; do
if [ ! -f "$required" ]; then if [ ! -f "$required" ]; then
echo "ERROR: required file missing: $required" >&2 echo "ERROR: required file missing: $required" >&2
exit 1 exit 1
@@ -12,6 +25,41 @@ done
echo "[1/8] 检查 Raspberry Pi I2C..." echo "[1/8] 检查 Raspberry Pi I2C..."
[ -e /dev/i2c-1 ] || { echo "错误:/dev/i2c-1 不存在。先 sudo raspi-config -> Interface Options -> I2C -> Enable,然后重启。"; exit 1; } [ -e /dev/i2c-1 ] || { echo "错误:/dev/i2c-1 不存在。先 sudo raspi-config -> Interface Options -> I2C -> Enable,然后重启。"; exit 1; }
# A running copy of this project is expected during an upgrade. Any other
# process holding the shared bus could race OLED/MCU writes, so report it and
# let the user decide how that process should be managed.
i2c_conflict_pids() {
local allowed_pid pid
allowed_pid="$(systemctl show -p MainPID --value pigway-pi-control.service 2>/dev/null || true)"
for pid in $(fuser /dev/i2c-1 2>/dev/null || true); do
case "$pid" in
''|*[!0-9]*) continue ;;
esac
[ "$pid" = "$$" ] && continue
[ "$pid" = "$allowed_pid" ] && continue
kill -0 "$pid" 2>/dev/null && echo "$pid"
done
}
I2C_CONFLICTS="$(i2c_conflict_pids)"
if [ -n "$I2C_CONFLICTS" ]; then
if [ "$FORCE_I2C_CONFLICT" -eq 1 ]; then
echo "WARNING: /dev/i2c-1 is already in use by another process:" >&2
else
echo "ERROR: /dev/i2c-1 is already in use by another process:" >&2
fi
while read -r pid; do
ps -p "$pid" -o pid=,user=,comm=,args= >&2 || true
done <<< "$I2C_CONFLICTS"
if [ "$FORCE_I2C_CONFLICT" -eq 1 ]; then
echo "WARNING: continuing because --force-i2c-conflict was specified; no conflicting process will be stopped." >&2
else
echo "Stop or reconfigure the conflicting OLED/LED controller, then run the installer again." >&2
echo "If concurrent control is intentional, rerun with --force-i2c-conflict." >&2
exit 1
fi
fi
echo "[2/8] 等待 APT/DPKG..." echo "[2/8] 等待 APT/DPKG..."
for i in $(seq 1 60); do for i in $(seq 1 60); do
if ! fuser /var/lib/dpkg/lock-frontend /var/lib/apt/lists/lock /var/cache/apt/archives/lock >/dev/null 2>&1; then break; fi if ! fuser /var/lib/dpkg/lock-frontend /var/lib/apt/lists/lock /var/cache/apt/archives/lock >/dev/null 2>&1; then break; fi
@@ -30,33 +78,36 @@ echo "$SCAN" | grep -qi '3c' || echo "警告:未扫描到 OLED 0x3C"
echo "$SCAN" | grep -qi '0d' || echo "警告:未扫描到控制 MCU 0x0D" echo "$SCAN" | grep -qi '0d' || echo "警告:未扫描到控制 MCU 0x0D"
echo "[5/8] 安装程序与配置..." echo "[5/8] 安装程序与配置..."
if systemctl list-unit-files 2>/dev/null | grep '^temp-control.service' >/dev/null; then
echo "检测到旧 temp-control.service,正在停止并禁用..."
systemctl disable --now temp-control.service 2>/dev/null || true
fi
pkill -f '/temp_control/temp_control' 2>/dev/null || true
mkdir -p /usr/local/share/pigway-pi-control mkdir -p /usr/local/share/pigway-pi-control
install -m 0644 app/oled_font_5x7.bin /usr/local/share/pigway-pi-control/oled_font_5x7.bin install -m 0644 app/oled_font_5x7.bin /usr/local/share/pigway-pi-control/oled_font_5x7.bin
mkdir -p /usr/local/share/pigway-pi-control/web
install -m 0644 web/index.html /usr/local/share/pigway-pi-control/web/index.html
install -m 0755 app/pigway_pi_control.py /usr/local/sbin/pigway-pi-control install -m 0755 app/pigway_pi_control.py /usr/local/sbin/pigway-pi-control
install -m 0755 app/pigway_pi_control_api.py /usr/local/sbin/pigway-pi-control-api
# Keep the complete existing configuration, including comments and custom sections. # Keep the complete existing configuration, including comments and custom sections.
# New options use runtime defaults until the user chooses to add them. # The merge below adds only missing documented options.
if [ -f /etc/pigway-pi-control.conf ]; then if [ -f /etc/pigway-pi-control.conf ]; then
cp /etc/pigway-pi-control.conf "/etc/pigway-pi-control.conf.bak.$(date +%Y%m%d-%H%M%S)" cp /etc/pigway-pi-control.conf "/etc/pigway-pi-control.conf.bak.$(date +%Y%m%d-%H%M%S)"
else else
install -m 0644 config/pigway-pi-control.conf /etc/pigway-pi-control.conf install -m 0644 config/pigway-pi-control.conf /etc/pigway-pi-control.conf
fi fi
# Preserve the existing file verbatim while exposing newly configurable RGB # Preserve the existing file while exposing new defaults. Existing values win.
# defaults. Missing keys are inserted into [led]; existing user values win.
python3 - /etc/pigway-pi-control.conf <<'PY' python3 - /etc/pigway-pi-control.conf <<'PY'
import re,sys import re,sys
from pathlib import Path from pathlib import Path
path=Path(sys.argv[1]) path=Path(sys.argv[1])
text=path.read_text() text=path.read_text()
defaults=( sections={
"led":(
("normal_mode","off"),
("normal_r",0),("normal_g",0),("normal_b",0),
("normal_flash_on_ms",1000),("normal_flash_off_ms",1000),
("normal_effect_speed",2),("normal_effect_color","green"),
("write_delay_ms",10),
("cpu_r",255),("cpu_g",0),("cpu_b",0), ("cpu_r",255),("cpu_g",0),("cpu_b",0),
("power_r",255),("power_g",40),("power_b",0), ("power_r",255),("power_g",40),("power_b",0),
("memory_r",255),("memory_g",0),("memory_b",255), ("memory_r",255),("memory_g",0),("memory_b",255),
@@ -66,42 +117,69 @@ defaults=(
("warning_flash_on_ms",1500),("warning_flash_off_ms",1500), ("warning_flash_on_ms",1500),("warning_flash_off_ms",1500),
("critical_flash_on_ms",750),("critical_flash_off_ms",750), ("critical_flash_on_ms",750),("critical_flash_off_ms",750),
("emergency_flash_on_ms",300),("emergency_flash_off_ms",300), ("emergency_flash_on_ms",300),("emergency_flash_off_ms",300),
) ),
missing=[(key,value) for key,value in defaults "api":(("bind","0.0.0.0"),("port",6001),("log_limit",200)),
if not re.search(rf"(?m)^\s*{re.escape(key)}\s*=",text)] }
if missing: for section,defaults in sections.items():
block="\n# RGB object colors (0..255) and flash timing (milliseconds).\n" match=re.search(rf"(?m)^\[{re.escape(section)}\]\s*$",text)
block+="".join(f"{key} = {value}\n" for key,value in missing)
match=re.search(r"(?m)^\[led\]\s*$",text)
if match: if match:
next_section=re.search(r"(?m)^\[.+\]\s*$",text[match.end():]) next_section=re.search(r"(?m)^\[.+\]\s*$",text[match.end():])
pos=match.end()+(next_section.start() if next_section else len(text)-match.end()) end=match.end()+(next_section.start() if next_section else len(text)-match.end())
text=text[:pos].rstrip()+"\n"+block+"\n"+text[pos:].lstrip("\n") chunk=text[match.end():end]
else: else:
text=text.rstrip()+"\n\n[led]\n"+block text=text.rstrip()+f"\n\n[{section}]\n"
match=re.search(rf"(?m)^\[{re.escape(section)}\]\s*$",text)
end=len(text); chunk=""
missing=[(key,value) for key,value in defaults
if not re.search(rf"(?m)^\s*{re.escape(key)}\s*=",chunk)]
if missing:
note="# Added by installer; existing user values are preserved.\n"
if section=="led" and any(key.startswith("normal_") for key,_ in missing):
note+=("# Normal RGB: normal_mode = off/solid/flash/flow/breathe/marquee/rainbow/colorful.\n"
"# normal_r/g/b = 0..255; normal_flash_*_ms = 50..60000; effect speed = 1..3.\n"
"# Effect color = red/green/blue/yellow/purple/cyan/white (flow/breathe only).\n")
block=note+"".join(f"{key} = {value}\n" for key,value in missing)
text=text[:end].rstrip()+"\n"+block+"\n\n"+text[end:].lstrip("\n")
path.write_text(text) path.write_text(text)
PY PY
if [ ! -s /etc/pigway-pi-control-api.token ]; then
umask 077
python3 - <<'PY' > /etc/pigway-pi-control-api.token
import secrets
print(secrets.token_urlsafe(32))
PY
fi
chmod 0600 /etc/pigway-pi-control-api.token
install -m 0644 systemd/pigway-pi-control.service /etc/systemd/system/pigway-pi-control.service install -m 0644 systemd/pigway-pi-control.service /etc/systemd/system/pigway-pi-control.service
install -m 0644 systemd/pigway-pi-control-api.service /etc/systemd/system/pigway-pi-control-api.service
echo "[6/8] 启用/重启服务..." echo "[6/8] 启用/重启服务..."
systemctl daemon-reload systemctl daemon-reload
systemctl enable pigway-pi-control.service >/dev/null systemctl enable pigway-pi-control.service pigway-pi-control-api.service >/dev/null
systemctl restart pigway-pi-control.service systemctl restart pigway-pi-control.service
systemctl restart pigway-pi-control-api.service
echo "[7/8] 安装后自检..." echo "[7/8] 安装后自检..."
FAIL=0 FAIL=0
check() { local label="$1"; shift; if "$@"; then printf " %-30s PASS\n" "$label"; else printf " %-30s FAIL\n" "$label"; FAIL=1; fi; } check() { local label="$1"; shift; if "$@"; then printf " %-30s PASS\n" "$label"; else printf " %-30s FAIL\n" "$label"; FAIL=1; fi; }
APP=/usr/local/sbin/pigway-pi-control APP=/usr/local/sbin/pigway-pi-control
check "Version 3.5.0" grep -Fq 'APP_VERSION="3.5.0"' "$APP" check "Version 3.6.0" grep -Fq 'APP_VERSION="3.6.0"' "$APP"
check "OLED physical 128x32" grep -Fq 'W,H=128,32' "$APP" check "OLED physical 128x32" grep -Fq 'W,H=128,32' "$APP"
check "OLED MUX 0x1F" grep -Fq '0xA8,0x1F' "$APP" check "OLED MUX 0x1F" grep -Fq '0xA8,0x1F' "$APP"
check "OLED pages 0..3" grep -Fq 'cmd(0x22);cmd(0);cmd(3)' "$APP" check "OLED pages 0..3" grep -Fq 'cmd(0x22);cmd(0);cmd(3)' "$APP"
check "UI CPU/TMP/DSK" grep -Fq 'f"TMP {temp:.1f}C"' "$APP" check "UI CPU/TMP/DSK" grep -Fq 'f"TMP {temp:.1f}C"' "$APP"
check "UI IP4/IP6" grep -Fq 'ip_label' "$APP" check "UI IP4/IP6" grep -Fq 'ip_label' "$APP"
check "UI right column x=72" grep -Fq 'draw_text_5x7(pix,72,y,right[row])' "$APP" check "UI right column x=72" grep -Fq 'draw_text_5x7(pix,72,y,right[row])' "$APP"
legacy_stopped() { ! systemctl is-active --quiet temp-control.service; } if [ "$FORCE_I2C_CONFLICT" -eq 1 ]; then
check "Legacy service stopped" legacy_stopped printf " %-30s WARN (forced)\n" "I2C owner conflict"
else
no_other_i2c_owner() { [ -z "$(i2c_conflict_pids)" ]; }
check "No other I2C owner" no_other_i2c_owner
fi
check "Service running" systemctl is-active --quiet pigway-pi-control.service check "Service running" systemctl is-active --quiet pigway-pi-control.service
check "API/Web service running" systemctl is-active --quiet pigway-pi-control-api.service
check "API/Web version 3.6.0" grep -Fq 'APP_VERSION="3.6.0"' /usr/local/sbin/pigway-pi-control-api
check "Web UI installed" test -s /usr/local/share/pigway-pi-control/web/index.html
check "P0 health monitor" grep -Fq 'throttled_state' "$APP" check "P0 health monitor" grep -Fq 'throttled_state' "$APP"
check "Diagnostic command" grep -Fq -- '--diagnose' "$APP" check "Diagnostic command" grep -Fq -- '--diagnose' "$APP"
if [ "$FAIL" -ne 0 ]; then echo "错误:安装后自检未全部通过。"; exit 1; fi if [ "$FAIL" -ne 0 ]; then echo "错误:安装后自检未全部通过。"; exit 1; fi
@@ -109,6 +187,9 @@ echo "[8/8] 状态..."
systemctl --no-pager --full status pigway-pi-control.service || true systemctl --no-pager --full status pigway-pi-control.service || true
systemctl --no-pager --full status pigway-pi-control-api.service || true
echo echo
echo "完成。程序:/usr/local/sbin/pigway-pi-control" echo "完成。程序:/usr/local/sbin/pigway-pi-control"
echo "配置:/etc/pigway-pi-control.conf" echo "配置:/etc/pigway-pi-control.conf"
echo "Web/API:http://$(hostname -I | awk '{print $1}'):$(awk -F= '/^port[[:space:]]*=/{gsub(/[[:space:]]/,"",$2);print $2;exit}' /etc/pigway-pi-control.conf)"
echo "配置写入 token:sudo cat /etc/pigway-pi-control-api.token"
+17
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@@ -0,0 +1,17 @@
[Unit]
Description=PIGWay Pi Control API and Web
After=network.target pigway-pi-control.service
Wants=network.target pigway-pi-control.service
[Service]
Type=simple
ExecStart=/usr/local/sbin/pigway-pi-control-api
Restart=always
RestartSec=2
User=root
NoNewPrivileges=true
PrivateTmp=true
ProtectHome=true
[Install]
WantedBy=multi-user.target
+1 -1
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@@ -1,5 +1,5 @@
[Unit] [Unit]
Description=Pigway Raspberry Pi OLED/Fan/RGB Monitor Description=PIGWay Raspberry Pi OLED/Fan/RGB Monitor
After=multi-user.target network.target After=multi-user.target network.target
Wants=network.target Wants=network.target
+4 -1
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@@ -1,8 +1,11 @@
#!/bin/bash #!/bin/bash
set -euo pipefail set -euo pipefail
systemctl disable --now pigway-pi-control.service 2>/dev/null || true systemctl disable --now pigway-pi-control-api.service pigway-pi-control.service 2>/dev/null || true
rm -f /etc/systemd/system/pigway-pi-control-api.service
rm -f /etc/systemd/system/pigway-pi-control.service rm -f /etc/systemd/system/pigway-pi-control.service
rm -f /usr/local/sbin/pigway-pi-control rm -f /usr/local/sbin/pigway-pi-control
rm -f /usr/local/sbin/pigway-pi-control-api
rm -f /etc/pigway-pi-control-api.token
rm -rf /usr/local/share/pigway-pi-control rm -rf /usr/local/share/pigway-pi-control
systemctl daemon-reload systemctl daemon-reload
echo "程序已卸载。为防误删自定义内容,配置 /etc/pigway-pi-control.conf 已保留。" echo "程序已卸载。为防误删自定义内容,配置 /etc/pigway-pi-control.conf 已保留。"
+60
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