feat(fleet): preserve operator VESC integration before final driver merge

This commit is contained in:
DCCONSTRUCTIONS
2026-09-25 16:40:46 +03:00
parent dad11b47d7
commit 71a648fec8
128 changed files with 22390 additions and 59 deletions
+1
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@@ -11,3 +11,4 @@
*.lcc binary
apps/control-station/vendor/rerun-web-viewer-0.34.1/re_viewer_bg.nodedc.wasm filter=lfs diff=lfs merge=lfs -text
apps/control-station/vendor/rerun-web-viewer-0.36.3/re_viewer_bg.nodedc.wasm filter=lfs diff=lfs merge=lfs -text
apps/control-station/public/rover-scene/*.glb filter=lfs diff=lfs merge=lfs -text
+7
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@@ -49,3 +49,10 @@ mqtt.summary.json
# Small synthetic/redacted fixtures under tests/fixtures are allowed.
!tests/fixtures/**/*.pcap
!tests/fixtures/**/*.pcapng
# Dependency caches may be links into an existing local checkout.
.venv
node_modules
# Private experiment evidence and generated build archives.
/outputs/
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@@ -0,0 +1,39 @@
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After

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+1 -1
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@@ -822,7 +822,7 @@ export default function App() {
/>
) : activeDefinition.kind === "missions" ? (
<div ref={setWorkspaceHeaderToolsHost} />
) : activeDefinition.kind === "vehicles" ? null : activeDefinition.kind === "simulations" ? null : activeDefinition.kind === "datasets" ? (
) : activeDefinition.kind === "vehicles" ? <div ref={setWorkspaceHeaderToolsHost} /> : activeDefinition.kind === "simulations" ? null : activeDefinition.kind === "datasets" ? (
<StatusBadge tone="neutral">Offline evaluation</StatusBadge>
) : activeDefinition.kind === "lab-archive" ? (
laboratoryAnnotation.control
@@ -0,0 +1,25 @@
import type {RoverState} from '../../core/fleet/useRoverControl';
import {drivePositions} from '../../../../../plugins/vesc/frontend/src/model';
const number=(v:number|undefined,digits=1)=>typeof v==='number'&&Number.isFinite(v)?v.toLocaleString('ru-RU',{maximumFractionDigits:digits}):'—';
export function RoverTelemetry({state}:{state:RoverState}){
const devices=state.snapshot.devices??[],profile=state.snapshot.profile;
const positions=drivePositions(profile?.layout??null);
const assigned=Object.entries(profile?.bindings??{}).map(([slot,binding])=>({
id:binding.device_id,uuid:binding.uuid,label:positions[slot]??slot,
reading:devices.find(d=>d.id===binding.device_id&&d.uuid===binding.uuid),
}));
const readings=[...assigned,...devices.filter(d=>!assigned.some(a=>a.id===d.id&&a.uuid===d.uuid)).map(d=>({...d,reading:d}))];
return <div className="rover-telemetry">
{!state.fresh?<p>Нет свежих показаний VESC.</p>:!readings.length?<p>Получение показаний VESC…</p>:readings.map(d=>{
const fresh=!!d.reading&&d.reading.age_ms<1000,v=fresh?d.reading?.values:undefined;
return <section key={d.uuid}><strong>{d.label}</strong><span>VESC {d.uuid.slice(0,6).toUpperCase()}{!d.reading?' · Нет связи':!fresh?' · Нет свежих данных':''}</span>
<dl><div><dt>Ток мотора</dt><dd>{number(v?.motor_current_a)} А</dd></div>
<div><dt>Ток батареи</dt><dd>{number(v?.input_current_a)} А</dd></div>
<div><dt>Напряжение</dt><dd>{number(v?.input_voltage_v)} В</dd></div>
<div><dt>Обороты, ERPM</dt><dd>{number(v?.erpm,0)}</dd></div>
<div><dt>Контроллер</dt><dd>{number(v?.mos_temperature_c)} °C</dd></div>
<div><dt>Ошибка VESC</dt><dd>{v?v.fault_code===0?'Нет':String(v.fault_code):'—'}</dd></div></dl>
</section>;
})}
</div>;
}
@@ -0,0 +1,70 @@
import {lazy,Suspense,useCallback,useEffect,useRef,useState} from 'react';
import {createPortal} from 'react-dom';
import {Button,Icon,IconButton,KeyButton,LoadingRegion,Select,StatusBadge,Switch,TextField,ToastStack,Window} from '@nodedc/ui-react';
import {keysFor,roverSettings,type RoverMode} from '../../core/fleet/roverInput';
import {bindRoverHoldInput} from '../../core/fleet/roverHoldInput';
import type {RoverController} from '../../core/fleet/useRoverControl';
import type {ObservationHeaderTargets} from '../../../../../packages/sensor-ui/src/observation';
import './rover.css';
const Scene=lazy(()=>import('./playcanvas/PlayCanvasViewer'));
const labels:Record<string,string>={observing:'Наблюдение',preparing:'Подготовка управления',ready:'Управление включено',driving:'Команда движения',receiver:'Управление с пульта',stopping:'Остановка',stopped:'Управление выключено',fault:'Управление остановлено'};
export function RoverView({vehicleID,controller:c,header,active}:{vehicleID:string;controller:RoverController;header:ObservationHeaderTargets;active:boolean}){
const storage=`missioncore.rover-view.v1:${vehicleID}`;
const [settings,setSettings]=useState(()=>{try{return roverSettings(JSON.parse(localStorage.getItem(storage)??'null'));}catch{return roverSettings(null);}});
const [open,setOpen]=useState(false),[confirmed,setConfirmed]=useState(false),[held,setHeld]=useState<Set<string>>(new Set());
const [modelState,setModelState]=useState<'loading'|'ready'|'error'>('loading');
const stage=useRef<HTMLDivElement>(null),input=useRef<ReturnType<typeof bindRoverHoldInput>|null>(null);
const stop=useCallback(()=>{input.current?.dispose();input.current=null;c.setInputGuard(null);setHeld(new Set());c.stop();setConfirmed(false);},[c.stop,c.setInputGuard]);
useEffect(()=>{try{localStorage.setItem(storage,JSON.stringify(settings));}catch{}},[storage,settings]);
useEffect(()=>{if(!active)stop();},[active,stop]);
useEffect(()=>{
if(!c.ready||!active||open||!stage.current)return;
const binding=bindRoverHoldInput(stage.current,settings.mode,{held:setHeld,demand:c.setDemand,pause:c.pauseInput,stop});
input.current=binding;c.setInputGuard(binding.valid);
return()=>{c.setInputGuard(null);binding.dispose();if(input.current===binding)input.current=null;};
},[c.ready,active,open,settings.mode,c.setDemand,c.setInputGuard,c.pauseInput,stop]);
const showSettings=()=>{stop();setOpen(true);};
const preparing=c.pending||(c.armed&&!c.ready);
const availability=c.connecting?'Синхронизация с бортом':!c.state.fresh?'Нет свежих данных с борта':!c.state.snapshot.supported?'Управление на борту недоступно':c.state.controlling&&!c.armed?'Управление уже включено':!c.canArm&&!c.armed?'Завершение предыдущего управления':null;
const tone=preparing||availability?'warning':c.ready?'success':c.state.snapshot.state==='fault'?'warning':'neutral';
const status=preparing?'Подготовка управления':availability??(labels[c.state.snapshot.state??'']??'Наблюдение');
return <>
{createPortal(<IconButton label="Настройки управления ровером" onClick={showSettings}><Icon name="settings"/></IconButton>,header.actionsTarget)}
{createPortal(<StatusBadge variant="indicator" tone={tone} aria-label={status} title={status}/>,header.statusTarget)}
<div className="rover-view" ref={stage} tabIndex={0} aria-label="3D-вид и управление ровером"
onBlur={e=>{if(c.armed&&!e.currentTarget.contains(e.relatedTarget as Node|null))c.pauseInput();}}>
{settings.model==='dcd006-v020'?<LoadingRegion className="rover-view__scene" loading={modelState==='loading'} label="Загрузка модели ровера">
<Suspense fallback={null}><Scene modelUrl="/rover-scene/dcd006-v020.glb" cameraAutoRotate={false} onModelState={setModelState}/></Suspense>
{modelState==='error'&&<p className="rover-view__empty">Не удалось загрузить модель ровера.</p>}
</LoadingRegion>:<div className="rover-view__empty"><p>Выберите модель аппарата.</p><Button onClick={showSettings}>Настройки вида</Button></div>}
<div className="rover-view__status"><StatusBadge tone={tone}>{status}</StatusBadge></div>
{c.ready&&<div className="rover-view__controls">
<div className={`rover-keys rover-keys--${settings.mode}`} aria-label={settings.mode==='arcade'?'Аркадное управление':'Танковое управление'}>
{keysFor(settings.mode).map(code=><KeyButton key={code} className={`rover-key-${code}`} label={settings.mode==='arcade'?({KeyW:'Вперёд · W',KeyS:'Назад · S',KeyA:'Налево · A',KeyD:'Направо · D'}[code]??code):({KeyQ:'Левая сторона вперёд · Q',KeyA:'Левая сторона назад · A',KeyE:'Правая сторона вперёд · E',KeyD:'Правая сторона назад · D'}[code]??code)}
disabled={!c.ready||!active} pressed={held.has(code)}
onPointerDown={e=>{if(!c.ready||!e.isTrusted||e.button!==0)return;e.preventDefault();e.currentTarget.setPointerCapture(e.pointerId);stage.current?.focus();input.current?.pointerDown(e.pointerId,code);}}
onPointerUp={e=>input.current?.pointerUp(e.pointerId)}
onPointerCancel={e=>input.current?.pointerCancel(e.pointerId)}
onLostPointerCapture={e=>input.current?.pointerCancel(e.pointerId)}>{code.slice(3)}</KeyButton>)}
</div>
<span>{settings.mode==='arcade'?'Аркадный':'Танковый'} · пробел — стоп</span>
</div>}
<div className="rover-view__authority">
{c.armed||c.pending?<Button onClick={stop}>Остановить управление</Button>:<Button onClick={showSettings}>Управлять</Button>}
</div>
</div>
<Window open={open} onClose={()=>setOpen(false)} title="Управление ровером" size="md"><div className="rover-settings">
<Select label="Тип управления" value={settings.mode} options={[{value:'arcade',label:'Аркадный · W A S D'},{value:'tank',label:'Танковый · Q A / E D'}]} onChange={mode=>setSettings(v=>({...v,mode:mode as RoverMode}))}/>
<Select label="3D-модель" value={settings.model} options={[{value:'',label:'Не выбрана'},{value:'dcd006-v020',label:'DCD-006 · полный ровер v020'}]} onChange={model=>setSettings(v=>({...v,model}))}/>
<TextField label="Предел тока каждого мотора, А" type="number" min={.5} max={30} step={.5} value={settings.currentA} onChange={e=>setSettings(v=>({...v,currentA:Number(e.target.value)}))}/>
<TextField label="Скорость, ERPM" hint="300–3000" description="Электрические обороты двигателя. Скорость по земле требует параметров трансмиссии." type="number" min={300} max={3000} step={100} value={settings.maxErpm} onChange={e=>setSettings(v=>({...v,maxErpm:Number(e.target.value)}))}/>
<Switch label="Моторы остановлены, движение можно начинать" checked={confirmed} onChange={setConfirmed}/>
{availability&&<StatusBadge tone="warning">{availability}</StatusBadge>}
<p>Движение — только при удержании клавиш или кнопок. При уходе из окна команда снимается. Команда с пульта прекращает удалённое управление.</p>
<Button variant="primary" tone="neutral" disabled={!confirmed||!c.canArm||!(settings.currentA>=.5&&settings.currentA<=30&&settings.maxErpm>=300&&settings.maxErpm<=3000)} loading={c.pending}
onClick={async()=>{const acquired=await c.arm(settings.currentA,settings.maxErpm);if(acquired){setOpen(false);if(document.hasFocus())stage.current?.focus();}}}>Включить управление</Button>
</div></Window>
<ToastStack onDismiss={c.clearError} items={c.error?[{id:'rover-control-error',tone:'error',title:'Управление остановлено',description:c.error}]:[]}/>
</>;
}
@@ -0,0 +1,16 @@
{
"source": "NodeDC ThreeDAssetNode / PlayCanvasViewer",
"files": {
"PlayCanvasViewer.tsx": "34cd6df2e47a7714288aeb5afb2859b1058eb91dc1819abbf296c6a8937a1533",
"playcanvasPostFx.ts": "91cfb7f8ba821fef14681c6c25a61f430ce25aae65b0f181d359f38e37ccd014",
"sceneTree.ts": "eead378c2402f69e2c68cd1fc2a5ec9028555dced53858c600c599f613dda516",
"environment-map.png": "793f72dce207c1a4d2bdb262610f688bd655a79066298b672b642f228cf7d230"
},
"adaptations": [
"Domain asset URL and error/loading callbacks",
"No fallback to a different vehicle",
"Removed unused node-editor type helper; rendering settings unchanged",
"Observe the host pane on resize; preserve responsive canvas CSS sizing",
"Frame the complete rover using the donor 28-degree FOV and current viewport aspect"
]
}
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@@ -0,0 +1,393 @@
export type PostFxSettings = {
lighting: {
exposure: number
skyBoxIntensity: number
}
envAtlas: {
enabled: boolean
background: boolean
reflection: boolean
intensity: number
reflectionIntensity: number
brightness: number
contrast: number
saturation: number
toneMapping: number
mip: number
rotation: number
}
skybox: {
enabled: boolean
background: boolean
reflection: boolean
intensity: number
reflectionIntensity: number
mip: number
rotation: number
colorA: string
colorB: string
}
rendering: {
backgroundColor: string
wireframe: boolean
renderFormat: number
renderFormatFallback0: number
renderFormatFallback1: number
stencil: boolean
renderTargetScale: number
samples: number
sharpness: number
toneMapping: number
sceneColorMap: boolean
sceneDepthMap: boolean
fog: 'none' | 'linear' | 'exp' | 'exp2'
fogColor: string
fogRange: [number, number]
fogDensity: number
fogStart: number
fogEnd: number
}
grid: {
enabled: boolean
colorX: string
colorZ: string
colorMain: string
alphaX: number
alphaZ: number
alphaMain: number
dotsEnabled: boolean
dotsColor: string
dotsAlpha: number
dotsDiameter: number
crossEnabled: boolean
crossColor: string
crossAlpha: number
crossLength: number
crossWidth: number
fadeStart: number
fadeEnd: number
}
ssao: {
type: 'none' | 'lighting' | 'combine'
blurEnabled: boolean
intensity: number
radius: number
samples: number
power: number
minAngle: number
scale: number
}
bloom: {
enabled: boolean
intensity: number
lastMipLevel: number
}
chromaticAberration: {
enabled: boolean
intensity: number
}
taa: {
enabled: boolean
jitter: number
}
grading: {
enabled: boolean
brightness: number
contrast: number
saturation: number
tint: string
}
lut: {
intensity: number
textureUrl?: string | null
}
vignette: {
enabled: boolean
intensity: number
inner: number
outer: number
curvature: number
color: string
}
directionalLight: {
enabled: boolean
color: string
intensity: number
azimuth: number
elevation: number
castShadows: boolean
shadowIntensity: number
shadowDistance: number
shadowResolution: number
shadowBias: number
normalOffsetBias: number
shadowType: 'vsm16' | 'vsm32' | 'pcf1' | 'pcf3'
vsmBlurSize: number
}
shadowCatcher: {
enabled: boolean
size: number
yOffset: number
lightIntensity: number
lightColor: string
lightAzimuth: number
lightElevation: number
shadowIntensity: number
shadowDistance: number
shadowResolution: number
shadowBias: number
normalOffsetBias: number
shadowType: 'vsm16' | 'vsm32' | 'pcf1' | 'pcf3'
vsmBlurSize: number
}
}
export const DEFAULT_POSTFX: PostFxSettings = {
lighting: {
exposure: 1.21,
skyBoxIntensity: 0.86,
},
envAtlas: {
enabled: true,
background: false,
reflection: true,
intensity: 0.76,
reflectionIntensity: 0.6,
brightness: 1.65,
contrast: 1,
saturation: 1,
toneMapping: 0,
mip: 1,
rotation: 247,
},
skybox: {
enabled: false,
background: false,
reflection: true,
intensity: 0.62,
reflectionIntensity: 1,
mip: 0,
rotation: 0,
colorA: '#c5bfbf',
colorB: '#c7bcbc',
},
rendering: {
backgroundColor: '#111113',
wireframe: false,
renderFormat: 18,
renderFormatFallback0: 12,
renderFormatFallback1: 14,
stencil: false,
renderTargetScale: 1,
samples: 4,
sharpness: 0,
toneMapping: 4,
sceneColorMap: false,
sceneDepthMap: false,
fog: 'exp',
fogColor: '#dcc2ff',
fogRange: [0, 100],
fogDensity: 0.008,
fogStart: 0,
fogEnd: 100,
},
grid: {
enabled: true,
colorX: '#ffffff',
colorZ: '#ffffff',
colorMain: '#7a3cff',
alphaX: 0.18,
alphaZ: 0.18,
alphaMain: 0.6,
dotsEnabled: false,
dotsColor: '#ffffff',
dotsAlpha: 0.5,
dotsDiameter: 0.06,
crossEnabled: false,
crossColor: '#ffffff',
crossAlpha: 0.5,
crossLength: 0.5,
crossWidth: 0.06,
fadeStart: 0,
fadeEnd: 0,
},
ssao: {
type: 'none',
blurEnabled: true,
intensity: 0.5,
radius: 30,
samples: 12,
power: 6,
minAngle: 10,
scale: 1,
},
bloom: {
enabled: true,
intensity: 0.03,
lastMipLevel: 4,
},
chromaticAberration: {
enabled: true,
intensity: 30,
},
taa: {
enabled: false,
jitter: 1,
},
grading: {
enabled: true,
brightness: 0.837,
contrast: 1.1,
saturation: 1.126,
tint: '#ffffff',
},
lut: {
intensity: 1,
textureUrl: null,
},
vignette: {
enabled: true,
intensity: 1,
inner: 0.25,
outer: 1.52,
curvature: 0.78,
color: '#000000',
},
directionalLight: {
enabled: true,
color: '#ffffff',
intensity: 0.4,
azimuth: 0,
elevation: 0,
castShadows: false,
shadowIntensity: 0.5,
shadowDistance: 16,
shadowResolution: 1024,
shadowBias: 0,
normalOffsetBias: 0,
shadowType: 'vsm16',
vsmBlurSize: 8,
},
shadowCatcher: {
enabled: true,
size: 9,
yOffset: 0.001,
lightIntensity: 0.3,
lightColor: '#ffffff',
lightAzimuth: 20,
lightElevation: 60,
shadowIntensity: 0.29,
shadowDistance: 16,
shadowResolution: 2048,
shadowBias: 0,
normalOffsetBias: 0,
shadowType: 'vsm16',
vsmBlurSize: 8,
},
}
function isObject(value: any): value is Record<string, any> {
return !!value && typeof value === 'object' && !Array.isArray(value)
}
export function mergePostFxDefaults(raw?: Partial<PostFxSettings> | null): PostFxSettings {
if (!raw) return JSON.parse(JSON.stringify(DEFAULT_POSTFX)) as PostFxSettings
const out: any = JSON.parse(JSON.stringify(DEFAULT_POSTFX))
const merge = (target: any, source: any) => {
if (!isObject(source)) return
for (const [key, value] of Object.entries(source)) {
if (isObject(value)) {
if (!isObject(target[key])) target[key] = {}
merge(target[key], value)
} else {
target[key] = value
}
}
}
merge(out, raw)
const legacy: any = raw as any
if (legacy?.hdrLight) {
const src = legacy.hdrLight
const env = legacy?.envAtlas ?? {}
if (env?.enabled === undefined && typeof src.enabled === 'boolean') out.envAtlas.enabled = src.enabled
if (env?.background === undefined && typeof src.showSkybox === 'boolean') out.envAtlas.background = src.showSkybox
if (env?.intensity === undefined && typeof src.intensity === 'number') out.envAtlas.intensity = src.intensity
if (env?.mip === undefined && typeof src.mip === 'number') out.envAtlas.mip = src.mip
if (env?.rotation === undefined && typeof src.rotation === 'number') out.envAtlas.rotation = src.rotation
}
if (legacy?.hdrReflection && (legacy?.envAtlas?.reflection === undefined)) {
if (typeof legacy.hdrReflection.enabled === 'boolean') {
out.envAtlas.reflection = legacy.hdrReflection.enabled
}
}
if (out.envAtlas && typeof out.envAtlas.reflectionIntensity !== 'number') {
out.envAtlas.reflectionIntensity = out.envAtlas.intensity
}
if (out.envAtlas && typeof out.envAtlas.brightness !== 'number') {
out.envAtlas.brightness = 1
}
if (out.envAtlas && typeof out.envAtlas.contrast !== 'number') {
out.envAtlas.contrast = 1
}
if (out.envAtlas && typeof out.envAtlas.saturation !== 'number') {
out.envAtlas.saturation = 1
}
if (out.envAtlas && typeof out.envAtlas.toneMapping !== 'number') {
out.envAtlas.toneMapping = 0
}
if (out.skybox && typeof out.skybox.reflectionIntensity !== 'number') {
out.skybox.reflectionIntensity = out.skybox.intensity
}
if (out.grid && typeof out.grid.enabled !== 'boolean') {
out.grid.enabled = DEFAULT_POSTFX.grid.enabled
}
if (out.grid && typeof out.grid.colorX !== 'string') {
out.grid.colorX = DEFAULT_POSTFX.grid.colorX
}
if (out.grid && typeof out.grid.colorZ !== 'string') {
out.grid.colorZ = DEFAULT_POSTFX.grid.colorZ
}
if (out.grid && typeof out.grid.colorMain !== 'string') {
out.grid.colorMain = DEFAULT_POSTFX.grid.colorMain
}
if (out.grid && typeof out.grid.alphaX !== 'number') {
out.grid.alphaX = DEFAULT_POSTFX.grid.alphaX
}
if (out.grid && typeof out.grid.alphaZ !== 'number') {
out.grid.alphaZ = DEFAULT_POSTFX.grid.alphaZ
}
if (out.grid && typeof out.grid.alphaMain !== 'number') {
out.grid.alphaMain = DEFAULT_POSTFX.grid.alphaMain
}
if (out.grid && typeof out.grid.dotsEnabled !== 'boolean') {
out.grid.dotsEnabled = DEFAULT_POSTFX.grid.dotsEnabled
}
if (out.grid && typeof out.grid.dotsColor !== 'string') {
out.grid.dotsColor = DEFAULT_POSTFX.grid.dotsColor
}
if (out.grid && typeof out.grid.dotsAlpha !== 'number') {
out.grid.dotsAlpha = DEFAULT_POSTFX.grid.dotsAlpha
}
if (out.grid && typeof out.grid.dotsDiameter !== 'number') {
out.grid.dotsDiameter = DEFAULT_POSTFX.grid.dotsDiameter
}
if (out.grid && typeof out.grid.crossEnabled !== 'boolean') {
out.grid.crossEnabled = DEFAULT_POSTFX.grid.crossEnabled
}
if (out.grid && typeof out.grid.crossColor !== 'string') {
out.grid.crossColor = DEFAULT_POSTFX.grid.crossColor
}
if (out.grid && typeof out.grid.crossAlpha !== 'number') {
out.grid.crossAlpha = DEFAULT_POSTFX.grid.crossAlpha
}
if (out.grid && typeof out.grid.crossLength !== 'number') {
out.grid.crossLength = DEFAULT_POSTFX.grid.crossLength
}
if (out.grid && typeof out.grid.crossWidth !== 'number') {
out.grid.crossWidth = DEFAULT_POSTFX.grid.crossWidth
}
return out as PostFxSettings
}
@@ -0,0 +1,20 @@
import type * as pc from 'playcanvas'
export type SceneTreeNode = {
id: string
name: string
enabled: boolean
children: SceneTreeNode[]
}
export function buildSceneTree(root: pc.GraphNode, map: Map<string, pc.Entity>): SceneTreeNode {
const id = String((root as any).getGuid?.() ?? (root as any)._guid ?? root.name)
const children = (root.children || []).map((c) => buildSceneTree(c, map))
map.set(id, root as pc.Entity)
return {
id,
name: root.name || 'Entity',
enabled: root.enabled !== false,
children,
}
}
@@ -0,0 +1,20 @@
.rover-view { position:relative; height:100%; min-height:200px; overflow:hidden; container-type:inline-size; }
.rover-view:focus-visible { outline:2px solid var(--nodedc-text-secondary); outline-offset:-2px; }
.rover-view .rover-view__scene { position:absolute; inset:0; }
.rover-view__empty { display:grid; place-content:center; height:100%; text-align:center; font-size:var(--nodedc-font-size-sm); color:var(--nodedc-text-muted); }
.rover-view__status { position:absolute; top:var(--nodedc-space-3); left:var(--nodedc-space-3); }
.rover-view__controls { position:absolute; right:var(--nodedc-space-3); bottom:var(--nodedc-space-3); display:flex; flex-direction:column; gap:var(--nodedc-space-2); align-items:center; }
.rover-view__controls > span { font-size:var(--nodedc-font-size-xs); color:var(--nodedc-text-secondary); }
.rover-keys { display:grid; gap:var(--nodedc-space-1); grid-template-columns:repeat(3,46px); }
.rover-key-KeyW { grid-column:2; }.rover-key-KeyA { grid-column:1; grid-row:2; }.rover-key-KeyS { grid-column:2; grid-row:2; }.rover-key-KeyD { grid-column:3; grid-row:2; }
.rover-key-KeyQ { grid-column:1; }.rover-key-KeyE { grid-column:3; }
.rover-view__authority { position:absolute; left:var(--nodedc-space-3); bottom:var(--nodedc-space-3); }
@container (max-width: 380px) {
.rover-view__authority { top:48px; bottom:auto; }
}
.rover-settings { display:flex; flex-direction:column; gap:var(--nodedc-space-3); }
.rover-settings p { font-size:var(--nodedc-font-size-sm); color:var(--nodedc-text-secondary); }
.rover-telemetry { height:100%; overflow:auto; padding:var(--nodedc-space-3); display:flex; flex-wrap:wrap; align-content:start; gap:var(--nodedc-space-4); font-size:var(--nodedc-font-size-sm); }
.rover-telemetry section { flex:1; min-width:170px; }.rover-telemetry section > span { display:block; color:var(--nodedc-text-muted); font-size:var(--nodedc-font-size-xs); margin-top:var(--nodedc-space-1); }
.rover-telemetry dl { display:grid; gap:var(--nodedc-space-1); margin-bottom:0; }.rover-telemetry dl > div { display:flex; justify-content:space-between; gap:var(--nodedc-space-3); }
.rover-telemetry dt { color:var(--nodedc-text-secondary); }.rover-telemetry dd { margin:0; font-variant-numeric:tabular-nums; }
@@ -1,3 +1,4 @@
import {vescSensorUi} from '../../../../plugins/vesc/frontend/src/plugin';
import type { DeviceUiPlugin } from "../core/device-plugins/contracts";
import { xgridsK1Plugin } from "@xgrids-k1/frontend/plugin";
import {insta360X4SensorUi} from '../../../../plugins/insta360-x4/frontend/src/plugin';
@@ -10,4 +11,4 @@ export const installedDevicePlugins: readonly DeviceUiPlugin[] = Object.freeze([
// Node-executed camera controls use the existing sensor contribution contract;
// they do not register a desktop capture/AI runtime or a new product workspace.
export const installedNodeSensorContributions = Object.freeze([insta360X4SensorUi]);
export const installedNodeSensorContributions = Object.freeze([insta360X4SensorUi,vescSensorUi]);
@@ -0,0 +1,13 @@
import {createBoardLayoutStore,type BoardLayoutStore} from '../../../../../packages/sensor-ui/src/boardLayout';
import {fleetRequest} from './useFleet';
const layouts=new Map<string,BoardLayoutStore>();
export function boardLayout(vehicleID:string):BoardLayoutStore {
let layout=layouts.get(vehicleID);
if(!layout){
const path=`/${encodeURIComponent(vehicleID)}/board-layout`;
layout=createBoardLayoutStore({read:()=>fleetRequest(path),patch:(section,open)=>fleetRequest(path,'PATCH',{section,open})});
layouts.set(vehicleID,layout);
}
return layout;
}
@@ -0,0 +1,66 @@
import {keyDemand,keysFor,type Demand,type RoverMode} from './roverInput';
// The network heartbeat is not evidence that a physical key is still held.
// Allow the initial OS repeat delay, then require continuing keyboard evidence.
export const firstKeyLeaseMs=1000,repeatKeyLeaseMs=300;
export function bindRoverHoldInput(scope:HTMLElement,mode:RoverMode,callbacks:{
held:(keys:Set<string>)=>void;demand:(value:Demand)=>void;pause:()=>void;stop:()=>void;
},now:()=>number=()=>performance.now()){
const doc=scope.ownerDocument,win=doc.defaultView!;
const keyboard=new Set<string>(),pointers=new Map<number,string>();
let deadline=0,closed=false,suspended=false;
const clear=()=>{keyboard.clear();pointers.clear();deadline=0;callbacks.held(new Set());};
const pause=()=>{if(closed||suspended)return;suspended=true;clear();callbacks.pause();};
const stop=()=>{if(closed)return;closed=true;clear();callbacks.stop();};
const focused=()=>!doc.hidden&&doc.hasFocus()&&scope.contains(doc.activeElement);
const valid=()=>{
if(closed)return false;
if(!focused()||(keyboard.size>0&&now()>=deadline)){pause();return false;}
return true;
};
const publish=()=>{const held=new Set([...keyboard,...pointers.values()]);callbacks.held(held);callbacks.demand(keyDemand(mode,held));};
const down=(e:KeyboardEvent)=>{
if(!e.isTrusted||closed)return;
if(e.code==='Space'||e.code==='Escape'){e.preventDefault();stop();return;}
if(e.altKey||e.ctrlKey||e.metaKey){pause();return;}
if(!keysFor(mode).includes(e.code)||!valid())return;
if((e.target as HTMLElement)?.closest('input,textarea,select,[role=dialog],[role=listbox]')){pause();return;}
// A repeat delivered after focus returns cannot become a fresh press.
if(e.repeat&&!keyboard.has(e.code))return;
e.preventDefault();suspended=false;keyboard.add(e.code);
deadline=now()+(e.repeat?repeatKeyLeaseMs:firstKeyLeaseMs);publish();
};
const up=(e:KeyboardEvent)=>{
if(!e.isTrusted||closed||!keyboard.delete(e.code))return;
e.preventDefault();if(!keyboard.size)deadline=0;publish();
};
const blur=(e:Event)=>{if(e.target===win)pause();};
const focusOut=(e:FocusEvent)=>{if(scope.contains(e.target as Node)&&!scope.contains(e.relatedTarget as Node|null))pause();};
const focusIn=()=>{if(!focused())pause();};
const hidden=()=>{if(doc.hidden)pause();};
const outside=(e:Event)=>{if(!scope.contains(e.target as Node))pause();};
const pointerUp=(e:PointerEvent)=>{if(!closed&&pointers.delete(e.pointerId))publish();};
const pointerCancel=(e:PointerEvent)=>{if(pointers.has(e.pointerId))pause();};
win.addEventListener('keydown',down,true);win.addEventListener('keyup',up,true);
win.addEventListener('blur',blur,true);win.addEventListener('pagehide',stop);
doc.addEventListener('focusout',focusOut,true);doc.addEventListener('focusin',focusIn,true);
doc.addEventListener('visibilitychange',hidden);doc.addEventListener('pointerdown',outside,true);
doc.addEventListener('pointerup',pointerUp,true);doc.addEventListener('pointercancel',pointerCancel,true);
doc.addEventListener('contextmenu',pause,true);
const timer=win.setInterval(valid,50);
return {
valid,
pointerDown(id:number,code:string){if(valid()){suspended=false;pointers.set(id,code);publish();}},
pointerUp(id:number){if(!closed&&pointers.delete(id))publish();},
pointerCancel(id:number){if(pointers.has(id))pause();},
dispose(){
closed=true;clear();callbacks.demand({left:0,right:0});win.clearInterval(timer);
win.removeEventListener('keydown',down,true);win.removeEventListener('keyup',up,true);
win.removeEventListener('blur',blur,true);win.removeEventListener('pagehide',stop);
doc.removeEventListener('focusout',focusOut,true);doc.removeEventListener('focusin',focusIn,true);
doc.removeEventListener('visibilitychange',hidden);doc.removeEventListener('pointerdown',outside,true);
doc.removeEventListener('pointerup',pointerUp,true);doc.removeEventListener('pointercancel',pointerCancel,true);
doc.removeEventListener('contextmenu',pause,true);
},
};
}
@@ -0,0 +1,20 @@
export type RoverMode='arcade'|'tank';
export type Demand={left:number;right:number};
export const keysFor=(mode:RoverMode)=>mode==='arcade'?['KeyW','KeyA','KeyS','KeyD']:['KeyQ','KeyE','KeyA','KeyD'];
export function keyDemand(mode:RoverMode,held:ReadonlySet<string>):Demand {
const axis=(positive:string,negative:string)=>Number(held.has(positive))-Number(held.has(negative));
if(mode==='tank')return {left:axis('KeyQ','KeyA'),right:axis('KeyE','KeyD')};
const forward=axis('KeyW','KeyS'),turn=axis('KeyD','KeyA');
const scale=Math.max(1,Math.abs(forward)+Math.abs(turn));
return {left:(forward+turn)/scale,right:(forward-turn)/scale};
}
export const defaultRoverSettings={version:1,mode:'arcade' as RoverMode,currentA:30,maxErpm:2000,model:''};
export function roverSettings(value:unknown):typeof defaultRoverSettings {
const v=value as Partial<typeof defaultRoverSettings>|null;
return {...defaultRoverSettings,...(v?.version===1?{
mode:v.mode==='tank'?'tank':'arcade',
currentA:typeof v.currentA==='number'&&Number.isFinite(v.currentA)?Math.max(.5,Math.min(30,v.currentA)):30,
maxErpm:typeof v.maxErpm==='number'&&Number.isFinite(v.maxErpm)?Math.max(300,Math.min(3000,v.maxErpm)):2000,
model:v.model==='dcd006-v020'?v.model:'',
}:{} )};
}
@@ -9,6 +9,7 @@ export function createFleetSensorTransport(vehicleID:string):SensorTransport {
return {...value.sensor_state,fresh:value.connectivity==='online'&&value.enrollment==='paired'};
};
return {
configurationArchive:{list:(device,before)=>fleetRequest(`${path}/${encodeURIComponent(device)}/configurations${before?'?before='+encodeURIComponent(before):''}`),read:(device,version)=>fleetRequest(`${path}/${encodeURIComponent(device)}/configurations/${encodeURIComponent(version)}`)},
enrollment:{state:()=>fleetRequest(`${path}/enrollment`),submit:value=>fleetRequest(`${path}/enrollment/operations`,'POST',value),operation:id=>fleetRequest(`${path}/enrollment/operations/${encodeURIComponent(id)}`)},
inventory:async()=>inventory(await fleetRequest()),
subscribe:(receive,unavailable)=>{const events=new EventSource('/api/v1/fleet/events');events.onmessage=e=>{try{receive(inventory(JSON.parse(e.data)));}catch{unavailable();}};events.onerror=unavailable;return()=>events.close();},
@@ -0,0 +1,79 @@
import {useCallback,useEffect,useRef,useState} from 'react';
import type {Demand} from './roverInput';
export interface RoverReading {
id:string;uuid:string;slot:string|null;label:string;age_ms:number;
values:{motor_current_a:number;input_current_a:number;input_voltage_v:number;erpm:number;duty:number;mos_temperature_c:number;fault_code:number};
}
export interface RoverState {
fresh:boolean;controlling:boolean;
snapshot:{supported?:boolean;instance?:string;state?:string;session_id?:string|null;message?:string|null;devices?:RoverReading[];
profile?:{layout:null|'1x1'|'2x2';bindings:Record<string,{device_id:string;uuid:string}>}};
}
const empty:RoverState={fresh:false,controlling:false,snapshot:{}};
async function request<T>(url:string,body?:unknown,keepalive=false):Promise<T>{
const response=await fetch(url,{method:body?'POST':'GET',headers:body?{'Content-Type':'application/json'}:undefined,
body:body?JSON.stringify(body):undefined,cache:'no-store',signal:AbortSignal.timeout(body?350:1000),keepalive});
const result=await response.json();
if(!response.ok)throw new Error(typeof result.detail==='string'?result.detail:'Канал управления недоступен.');
return result;
}
export function useRoverControl(vehicleID:string,visible:boolean){
const url=`/api/v1/fleet/${encodeURIComponent(vehicleID)}/rover`;
const [state,setState]=useState<RoverState>(empty),[armed,setArmed]=useState(false),[pending,setPending]=useState(false),[error,setError]=useState<string|null>(null);
const [connecting,setConnecting]=useState(true),armPending=useRef(false);
const session=useRef<string|null>(null),seq=useRef(0),demand=useRef<Demand>({left:0,right:0}),sending=useRef(false),generation=useRef(0);
const inputGuard=useRef<(()=>boolean)|null>(null);
const setInputGuard=useCallback((guard:(()=>boolean)|null)=>{inputGuard.current=guard;},[]);
const stop=useCallback(()=>{
generation.current++;armPending.current=false;const id=session.current;session.current=null;demand.current={left:0,right:0};setArmed(false);setPending(false);
if(id)void request(url+'/command',{session_id:id,sequence:++seq.current,left:0,right:0,stop:true},true).catch(()=>{});
},[url]);
const send=useCallback(async()=>{
const id=session.current;if(!id)return;
// Check on every heartbeat, even when a previous request is still pending.
const inputValid=(demand.current.left===0&&demand.current.right===0)||inputGuard.current?.();
if(document.hidden||!document.hasFocus()||!inputValid)demand.current={left:0,right:0};
if(sending.current)return;
sending.current=true;
try{await request(url+'/command',{session_id:id,sequence:++seq.current,...demand.current,stop:false});}
catch(e){if(session.current===id){stop();setError(e instanceof Error?e.message:'Команда не подтверждена.');}}
finally{sending.current=false;}
},[url,stop]);
const setDemand=useCallback((next:Demand)=>{demand.current=next;void send();},[send]);
const pauseInput=useCallback(()=>{demand.current={left:0,right:0};void send();},[send]);
const arm=useCallback(async(currentA:number,maxErpm:number)=>{
if(session.current||armPending.current)return false;const g=++generation.current;armPending.current=true;setError(null);setPending(true);
try{
const result=await request<{session_id:string}>(url+'/arm',{standstill_confirmed:true,current_a:currentA,max_erpm:maxErpm});
if(g!==generation.current){void request(url+'/command',{session_id:result.session_id,sequence:1,left:0,right:0,stop:true},true).catch(()=>{});return false;}
// Retire every read started before this acknowledgement, including reads
// begun while POST /arm was pending. They describe the previous authority.
generation.current++;armPending.current=false;setPending(false);
seq.current=0;demand.current={left:0,right:0};session.current=result.session_id;setArmed(true);void send();
return true;
}catch(e){if(g===generation.current)setError(e instanceof Error?e.message:'Не удалось включить управление.');return false;}
finally{if(g===generation.current){armPending.current=false;setPending(false);}}
},[url,send]);
useEffect(()=>{
if(!visible){stop();setState(empty);setConnecting(false);return;}
let alive=true,busy=false,lastFault='';const started=performance.now();setConnecting(true);
const poll=async()=>{
if(busy)return;busy=true;const before=generation.current;
try{const value=await request<RoverState>(url);if(alive&&before===generation.current){setState(value);
setConnecting(!value.fresh&&performance.now()-started<2000);
if(session.current&&(!value.fresh||!value.controlling)){stop();}
const fault=value.snapshot.state==='fault'?value.snapshot.message??'':'';
if(fault&&lastFault!==fault){lastFault=fault;setError(fault);}
}}catch{if(alive&&before===generation.current){setState(empty);setConnecting(false);if(session.current)stop();}}finally{busy=false;}
};
void poll();const timer=setInterval(()=>void poll(),200),heartbeat=setInterval(()=>void send(),100);
const blur=()=>pauseInput(),hidden=()=>{if(document.hidden)pauseInput();};
window.addEventListener('blur',blur);window.addEventListener('pagehide',stop);document.addEventListener('visibilitychange',hidden);
return()=>{alive=false;clearInterval(timer);clearInterval(heartbeat);window.removeEventListener('blur',blur);window.removeEventListener('pagehide',stop);document.removeEventListener('visibilitychange',hidden);stop();};
},[url,visible,stop,send,pauseInput]);
const ready=armed&&state.fresh&&state.snapshot.session_id===session.current&&['ready','driving'].includes(state.snapshot.state??'');
const canArm=state.fresh&&state.snapshot.supported===true&&!state.controlling&&!['preparing','ready','driving','stopping'].includes(state.snapshot.state??'');
return {state,armed,pending,error,connecting,canArm,arm,stop,pauseInput,setDemand,setInputGuard,ready,clearError:()=>setError(null)};
}
export type RoverController=ReturnType<typeof useRoverControl>;
@@ -431,7 +431,7 @@ export function WorkspaceRenderer(props: WorkspaceRendererProps) {
case "missions":
return <MissionPlannerWorkspace openView={props.navigation.openView} headerToolsHost={props.headerToolsHost} />;
case "vehicles":
return <VehiclesWorkspace createRequest={props.fleetCreateRequest} />;
return <VehiclesWorkspace createRequest={props.fleetCreateRequest} headerToolsHost={props.headerToolsHost} />;
case "catalog":
return <CatalogWorkspace {...props} />;
case "contour-health":
@@ -1,11 +1,13 @@
import {useMemo} from 'react';
import {useMemo,type ReactNode} from 'react';
import {boardLayout} from '../../core/fleet/boardLayout';
import {useDevicePluginHost} from '../../core/device-plugins/DevicePluginHost';
import {createIsolatedRerunHost} from '../../components/rerun/isolatedRerunHost';
import {SensorWorkspace} from '../../../../../packages/sensor-ui/src/SensorWorkspace';
import {createFleetSensorTransport} from '../../core/fleet/sensorTransport';
export function VehicleSensors({vehicleID,enabled,onDetailChange}:{vehicleID:string;enabled:boolean;onDetailChange:(open:boolean)=>void}){
export function VehicleSensors({vehicleID,enabled,computer,description}:{vehicleID:string;enabled:boolean;computer:ReactNode;description:string}){
const {registry}=useDevicePluginHost();
const sensorContributions=registry.sensorContributions;
const layout=useMemo(()=>boardLayout(vehicleID),[vehicleID]);
const transport=useMemo(()=>createFleetSensorTransport(vehicleID),[vehicleID]);
return <SensorWorkspace contributions={sensorContributions} createRerunHost={createIsolatedRerunHost} key={vehicleID} transport={transport} enabled={enabled} onDetailChange={onDetailChange}/>;
return <SensorWorkspace contributions={sensorContributions} createRerunHost={createIsolatedRerunHost} key={vehicleID} transport={transport} enabled={enabled} board={{layout,computer,description}}/>;
}
@@ -10,7 +10,7 @@ const platforms = [{ value: "ugv", label: "Наземный (UGV)" }, { value: "
const platformLabel = (value: string) => platforms.find(item => item.value === value)?.label ?? value;
function statusLabel(item: Vehicle) { return item.enrollment === "pending" ? "Подтверждаем привязку" : item.enrollment === "revoked" ? "Доверие отозвано" : item.enrollment === "failed" ? "Привязка не завершена" : item.connectivity === "online" ? "В сети" : "Нет связи"; }
export function VehiclesWorkspace({ createRequest = 0 }: { createRequest?: number }) {
export function VehiclesWorkspace({ createRequest = 0, headerToolsHost }: { createRequest?: number; headerToolsHost?: HTMLElement|null }) {
const fleet = useFleet();
const [adding, setAdding] = useState(false);
const [code, setCode] = useState("");
@@ -20,7 +20,6 @@ export function VehiclesWorkspace({ createRequest = 0 }: { createRequest?: numbe
const [pending, setPending] = useState(false);
const [error, setError] = useState("");
const [selected, setSelected] = useState<string | null>(null);
const [sensorOpen, setSensorOpen] = useState(false);
const [monitorOpen,setMonitorOpen]=useState(false);
const [observationOpen,setObservationOpen]=useState(false);
const [revoking, setRevoking] = useState<Vehicle | null>(null);
@@ -44,25 +43,24 @@ export function VehiclesWorkspace({ createRequest = 0 }: { createRequest?: numbe
finally { setPending(false); }
}
const detail = fleet.items?.find(item => item.id === selected);
if(detail&&observationOpen)return <BoardObservationCenter key={detail.id} vehicleID={detail.id} name={detail.name} enabled={!fleet.error&&detail.enrollment==="paired"&&detail.connectivity==="online"} back={()=>{setObservationOpen(false);setSensorOpen(false);}}/>;
if(detail&&observationOpen)return <BoardObservationCenter key={detail.id} vehicleID={detail.id} name={detail.name} enabled={!fleet.error&&detail.enrollment==="paired"&&detail.connectivity==="online"} back={()=>{setObservationOpen(false);setSelected(null);}} configure={()=>setObservationOpen(false)} headerToolsHost={headerToolsHost}/>;
if(detail&&monitorOpen)return <BoardMonitorView vehicle={detail.id} name={detail.name} back={()=>setMonitorOpen(false)}/>;
return <div className="fleet-workspace">
{fleet.error && <p role="alert">{fleet.error}</p>}
{!adding && error && <p role="alert">{error}</p>}
{detail ? <>
<div><Button onClick={() => {setSelected(null);setSensorOpen(false);}}>К списку аппаратов</Button></div>
{!sensorOpen && <SettingsCard title={detail.name} description={`${platformLabel(detail.platform)} · с бортовым компьютером`} actions={<StatusBadge tone={!fleet.error && detail.enrollment === "paired" && detail.connectivity === "online" ? "success" : "neutral"}>{fleet.error ? "Нет свежих данных" : statusLabel(detail)}</StatusBadge>}>
<div><Button onClick={() => {setSelected(null);}}>К списку аппаратов</Button></div>
<VehicleSensors vehicleID={detail.id} enabled={!fleet.error && detail.enrollment === "paired" && detail.connectivity === "online"} description={detail.name} computer={<SettingsCard title={detail.name} description={`${platformLabel(detail.platform)} · с бортовым компьютером`} actions={<StatusBadge tone={!fleet.error && detail.enrollment === "paired" && detail.connectivity === "online" ? "success" : "neutral"}>{fleet.error ? "Нет свежих данных" : statusLabel(detail)}</StatusBadge>}>
{detail.notice && <p role="status">{detail.notice}</p>}
<dl className="fleet-facts"><div><dt>Бортовой компьютер</dt><dd>{detail.node_id}</dd></div>
<div><dt>Последняя связь</dt><dd>{detail.last_seen ? new Date(detail.last_seen * 1000).toLocaleString("ru-RU") : "Соединение ещё не получено"}</dd></div>
{detail.host && <><div><dt>Имя БК в системе</dt><dd>{detail.host.hostname}</dd></div><div><dt>Операционная система</dt><dd>{detail.host.os}</dd></div><div><dt>Архитектура</dt><dd>{detail.host.architecture}</dd></div><div><dt>Процессоры</dt><dd>{detail.host.cpus}</dd></div><div><dt>Память</dt><dd>{detail.host.memory_kib ? `${(detail.host.memory_kib / 1024 / 1024).toFixed(1)} ГиБ` : "Нет сведений"}</dd></div></>}
</dl>
<div className="fleet-board-actions"><Button onClick={()=>setMonitorOpen(true)}><Icon name="activity"/>Мониторинг системы БК</Button>
<Button onClick={()=>setObservationOpen(true)}><Icon name="eye"/>Центр наблюдения</Button>
<Button onClick={()=>setObservationOpen(true)}><Icon name="eye"/>Центр наблюдения и управления</Button>
{detail.enrollment !== "revoked" && <Button onClick={() => setRevoking(detail)}>Отозвать привязку БК</Button>}</div>
</SettingsCard>}
<SettingsCard title="Устройства аппарата"><VehicleSensors onDetailChange={setSensorOpen} vehicleID={detail.id} enabled={!fleet.error && detail.enrollment === "paired" && detail.connectivity === "online"} /></SettingsCard>
</> : !fleet.items ? <LoadingRegion loading label="Получение аппаратов" /> : fleet.items.length === 0 ? <SettingsCard title="Аппаратов пока нет" description="Добавьте аппарат по приглашению из Mission Core Node на его бортовом компьютере."><Button onClick={() => setAdding(true)}>Добавить аппарат</Button></SettingsCard> : <ResourceList aria-label="Аппараты">{fleet.items.map(item => <li key={item.id}><ResourceRow icon={<Icon name="apps" />} title={item.name} description={`${platformLabel(item.platform)} · бортовой компьютер`} status={<StatusBadge tone={!fleet.error && item.enrollment === "paired" && item.connectivity === "online" ? "success" : "neutral"}>{fleet.error ? "Нет свежих данных" : statusLabel(item)}</StatusBadge>} actions={<><IconButton label={`Конфигурация: ${item.name}`} onClick={() => setSelected(item.id)}><Icon name="sliders" /></IconButton><IconButton label={`Центр наблюдения: ${item.name}`} onClick={() => {setSelected(item.id);setObservationOpen(true);}}><Icon name="eye" /></IconButton></>} /></li>)}</ResourceList>}
</SettingsCard>}/>
</> : !fleet.items ? <LoadingRegion loading label="Получение аппаратов" /> : fleet.items.length === 0 ? <SettingsCard title="Аппаратов пока нет" description="Добавьте аппарат по приглашению из Mission Core Node на его бортовом компьютере."><Button onClick={() => setAdding(true)}>Добавить аппарат</Button></SettingsCard> : <ResourceList aria-label="Аппараты">{fleet.items.map(item => <li key={item.id}><ResourceRow icon={<Icon name="apps" />} title={item.name} description={`${platformLabel(item.platform)} · бортовой компьютер`} status={<StatusBadge tone={!fleet.error && item.enrollment === "paired" && item.connectivity === "online" ? "success" : "neutral"}>{fleet.error ? "Нет свежих данных" : statusLabel(item)}</StatusBadge>} actions={<><IconButton label={`Конфигурация: ${item.name}`} onClick={() => setSelected(item.id)}><Icon name="sliders" /></IconButton><IconButton label={`Центр наблюдения и управления: ${item.name}`} onClick={() => {setSelected(item.id);setObservationOpen(true);}}><Icon name="eye" /></IconButton></>} /></li>)}</ResourceList>}
<Window open={adding} title="Добавить аппарат" subtitle="Подключить бортовой компьютер по приглашению Node" size="md" closeOnBackdrop={false} closeOnEscape={!pending} onClose={close} footer={<WindowFooterActions><Button disabled={pending} onClick={close}>Отмена</Button>{preview ? <Button disabled={pending || !name.trim()} onClick={() => void add()}>{pending ? "Добавление…" : "Добавить аппарат"}</Button> : <Button type="submit" form="fleet-invitation" disabled={pending || !code.trim()}>{pending ? "Проверка БК…" : "Проверить БК"}</Button>}</WindowFooterActions>}>
<form id="fleet-invitation" className="fleet-form" onSubmit={inspect} aria-busy={pending}>
<Select label="Способ подключения" value="node" options={[{ value: "node", label: "С бортовым компьютером" }]} onChange={() => undefined} disabled={pending} />
@@ -11,8 +11,11 @@ import {ObservationDeck,ObservationMount} from './ObservationDeck';
import {ObservationMap} from './ObservationMap';
import {useObservationInventory} from './useObservationInventory';
import './observation.css';
import {RoverView} from '../../../components/rover/RoverView';
import {RoverTelemetry} from '../../../components/rover/RoverTelemetry';
import {useRoverControl} from '../../../core/fleet/useRoverControl';
export function BoardObservationCenter({vehicleID,name,enabled,back}:{vehicleID:string;name:string;enabled:boolean;back:()=>void}){
export function BoardObservationCenter({vehicleID,name,enabled,back,configure,headerToolsHost}:{vehicleID:string;name:string;enabled:boolean;back:()=>void;configure:()=>void;headerToolsHost?:HTMLElement|null}){
const {registry}=useDevicePluginHost(),transport=useMemo(()=>createFleetSensorTransport(vehicleID),[vehicleID]);
const inventory=useObservationInventory(transport),storageKey=`missioncore.observation.v1:${vehicleID}`;
const [layout,setLayout]=useState(()=>{try{return decodeObservationLayout(JSON.parse(localStorage.getItem(storageKey)??'null'));}catch{return emptyObservationLayout();}});
@@ -27,17 +30,20 @@ export function BoardObservationCenter({vehicleID,name,enabled,back}:{vehicleID:
return views.length?[{device,views,Session:contribution?.Session??CameraObservation}]:[];
});
const sources:{key:string;deviceID?:string;view:SensorObservationView}[]=groups.flatMap(group=>group.views.map(view=>({key:observationKey(group.device.id,view.id),deviceID:group.device.id,view})));
sources.push({key:'map',view:{id:'map',label:'Карта'}});
sources.push({key:'map',view:{id:'map',label:'Карта'}},{key:'rover',view:{id:'rover',label:'3D View аппарата'}},{key:'telemetry',view:{id:'telemetry',label:'Телеметрия'}});
for(const source of sources){if(!mounts.current.has(source.key)){mounts.current.set(source.key,document.createElement('div'));media.current.set(source.key,document.createElement('div'));headers.current.set(source.key,{statusTarget:document.createElement('div'),actionsTarget:document.createElement('div')});mounts.current.get(source.key)!.className='observation-panel-mount';media.current.get(source.key)!.className='observation-media-mount';}}
const ids=orderedObservationIDs(layout,sources.map(source=>source.key)),visible=ids.filter(id=>!layout.hidden.includes(id));
const effectiveFull=full&&visible.includes(full)?full:null;
const rover=useRoverControl(vehicleID,enabled&&(visible.includes('rover')||visible.includes('telemetry')));
const drivingVisible=visible.includes('rover')&&(!effectiveFull||effectiveFull==='rover')&&!layersOpen;
useEffect(()=>{if(!drivingVisible)rover.stop();},[drivingVisible,rover.stop]);
const active=sources.find(source=>source.key===focused);
useEffect(()=>{try{localStorage.setItem(storageKey,JSON.stringify(layout));}catch{/* The workspace remains usable without browser storage. */}},[storageKey,layout]);
useEffect(()=>{const escape=(event:KeyboardEvent)=>{if(event.key!=='Escape'||layersOpen||document.querySelector('[role=dialog], [role=listbox]'))return;if(effectiveFull){setFull(null);event.stopImmediatePropagation();}else if(expanded){setExpanded(false);event.stopImmediatePropagation();}};window.addEventListener('keydown',escape,true);return()=>window.removeEventListener('keydown',escape,true);},[effectiveFull,expanded,layersOpen]);
const setVisible=(id:string,show:boolean)=>setLayout(value=>({...value,hidden:show?value.hidden.filter(key=>key!==id):[...new Set([...value.hidden,id])]}));
const layerFor=(key:string,view:SensorObservationView)=>view.layers?.find(layer=>layer.value===layout.layers[key])?.value??view.layers?.[0]?.value??view.id;
return <><div ref={frame}/>{createPortal(<section className={`observation-center${expanded?' observation-center--expanded':''}`} aria-label={`Центр наблюдения · ${name}`}>
<header className="observation-toolbar"><div><h2>Центр наблюдения</h2><span>{name}</span></div><div className="observation-actions"><Button onClick={back}><Icon name="sliders"/>Конфигуратор</Button><Button onClick={()=>{setFocused(null);setLayersOpen(true);}}><Icon name="grid"/>Доступные слои</Button><IconButton label={expanded?'Восстановить размер центра':'Развернуть центр наблюдения'} onClick={()=>setExpanded(value=>!value)}><Icon name={expanded?'minimize':'expand'}/></IconButton></div></header>
return <>{headerToolsHost&&createPortal(<IconButton label="К аппаратам" onClick={back}><Icon name="chevron-left"/></IconButton>,headerToolsHost)}<div ref={frame}/>{createPortal(<section className={`observation-center${expanded?' observation-center--expanded':''}`} aria-label={`Центр наблюдения и управления · ${name}`}>
<header className="observation-toolbar"><div><h2>Центр наблюдения и управления</h2><span>{name}</span></div><div className="observation-actions">{(!headerToolsHost||expanded)&&<IconButton label="К аппаратам" onClick={back}><Icon name="chevron-left"/></IconButton>}<Button onClick={configure}><Icon name="sliders"/>Конфигуратор</Button><Button onClick={()=>{setFocused(null);setLayersOpen(true);}}><Icon name="grid"/>Доступные слои</Button><IconButton label={expanded?'Восстановить размер центра':'Развернуть центр наблюдения и управления'} onClick={()=>setExpanded(value=>!value)}><Icon name={expanded?'minimize':'expand'}/></IconButton></div></header>
<div className="observation-summary"><StatusBadge tone={enabled&&inventory&&inventory.fresh!==false?'success':'neutral'}>{!inventory?'Получение источников':!enabled||inventory.fresh===false?'Нет свежих данных с БК':`Устройства: ${groups.length} · Окна: ${visible.length}`}</StatusBadge>{effectiveFull&&<Button onClick={()=>setFull(null)}>Все окна</Button>}</div>
<DragDropRoot onDragEnd={({activeId,overId})=>{if(overId)setLayout(value=>moveObservation(value,ids,activeId,overId));}}>
<div className="observation-deck">{!inventory?<LoadingRegion loading label="Получение визуальных источников"/>:visible.length?<ObservationDeck ids={effectiveFull?[effectiveFull]:visible} mounts={mounts.current} layout={layout} onSplit={(key,value)=>setLayout(current=>({...current,splits:{...current.splits,[key]:value}}))}/>:<div className="observation-empty"><p>Все окна скрыты.</p><Button onClick={()=>{setFocused(null);setLayersOpen(true);}}>Доступные слои</Button></div>}</div>
@@ -51,7 +57,7 @@ export function BoardObservationCenter({vehicleID,name,enabled,back}:{vehicleID:
<div className="observation-actions">
{source.view.layers&&<Select className="observation-layer-select" label={`Слой · ${source.view.label}`} value={layerFor(source.key,source.view)} options={source.view.layers} onChange={value=>setLayout(current=>({...current,layers:{...current.layers,[source.key]:value}}))} variant="inline"/>}
<ObservationMount className="observation-header-slot" element={headers.current.get(source.key)!.actionsTarget}/>
{source.key!=='map'&&<IconButton label={`Настройки · ${source.view.label}`} onClick={()=>{setFocused(source.key);setLayersOpen(true);}}><Icon name="settings"/></IconButton>}
{source.deviceID&&<IconButton label={`Настройки · ${source.view.label}`} onClick={()=>{setFocused(source.key);setLayersOpen(true);}}><Icon name="settings"/></IconButton>}
<IconButton label={`${effectiveFull===source.key?'Восстановить':'Развернуть'} · ${source.view.label}`} onClick={()=>setFull(value=>value===source.key?null:source.key)}><Icon name={effectiveFull===source.key?'minimize':'expand'}/></IconButton>
<IconButton label={`Скрыть · ${source.view.label}`} onClick={()=>setVisible(source.key,false)}><Icon name="close"/></IconButton>
</div>
@@ -63,6 +69,8 @@ export function BoardObservationCenter({vehicleID,name,enabled,back}:{vehicleID:
</DragDropRoot>
{groups.map(({device,views,Session})=>visible.some(key=>views.some(view=>key===observationKey(device.id,view.id)))&&<Session key={device.id} device={device} transport={transport} enabled={enabled&&inventory?.fresh!==false&&device.online} createRerunHost={createIsolatedRerunHost} views={views.map(view=>({id:view.id,layer:layerFor(observationKey(device.id,view.id),view),target:media.current.get(observationKey(device.id,view.id))!,...headers.current.get(observationKey(device.id,view.id))!}))}/>)}
{visible.includes('map')&&createPortal(<ObservationMap vehicleID={vehicleID} header={headers.current.get('map')!}/>,media.current.get('map')!,'map-session')}
{visible.includes('rover')&&createPortal(<RoverView vehicleID={vehicleID} controller={rover} header={headers.current.get('rover')!} active={drivingVisible}/>,media.current.get('rover')!,'rover-session')}
{visible.includes('telemetry')&&createPortal(<RoverTelemetry state={rover.state}/>,media.current.get('telemetry')!,'telemetry-session')}
<Window open={layersOpen} onClose={()=>setLayersOpen(false)} title={active?active.view.label:'Доступные слои'} size="md"><div className="observation-settings">
{!active&&<Select label="Расположение окон" value={layout.arrangement} options={[{value:'auto',label:'Автоматически'},{value:'columns',label:'В ряд'},{value:'rows',label:'Друг под другом'}]} onChange={value=>setLayout(current=>({...current,arrangement:value as typeof layout.arrangement}))}/>}
{ids.filter(id=>!active||id===active.key).map(id=>{const source=sources.find(item=>item.key===id)!;return <div className="observation-layer" key={id}><Switch label={source.view.label} checked={visible.includes(id)} onChange={value=>setVisible(id,value)}/><Select label={`Позиция · ${source.view.label}`} value={String(ids.indexOf(id))} options={ids.map((_,i)=>({value:String(i),label:`Окно ${i+1}`}))} onChange={value=>setLayout(current=>moveObservation(current,ids,id,ids[Number(value)]))}/></div>;})}
@@ -11,6 +11,8 @@ export function ObservationMount({element,className='observation-mount'}:{elemen
export function ObservationDeck({ids,mounts,layout,onSplit,depth=0}:{ids:string[];mounts:Map<string,HTMLElement>;layout:ObservationLayout;onSplit:(key:string,value:number)=>void;depth?:number}){
if(!ids.length)return null;
if(ids.length===1)return <ObservationMount element={mounts.get(ids[0])!}/>;
const mid=Math.ceil(ids.length/2),key=JSON.stringify(ids),orientation=layout.arrangement==='rows'?'horizontal':layout.arrangement==='columns'?'vertical':depth%2?'horizontal':'vertical';
const defaultColumns=depth===0&&layout.arrangement==='auto'&&!layout.order.some(id=>id==='rover'||id==='telemetry')&&ids.some(id=>!['map','rover','telemetry'].includes(id));
const cameraCount=ids.filter(id=>!['map','rover','telemetry'].includes(id)).length;
const mid=defaultColumns&&cameraCount<ids.length?cameraCount:layout.arrangement==='auto'&&ids[0]==='map'&&ids.includes('rover')?1:Math.ceil(ids.length/2),key=JSON.stringify(ids),orientation=layout.arrangement==='rows'?'horizontal':layout.arrangement==='columns'?'vertical':depth%2?'horizontal':'vertical';
return <SplitPane className="observation-split" orientation={orientation} primarySize={layout.splits[key]??50} onPrimarySizeChange={value=>onSplit(key,value)} separatorLabel="Изменить размеры окон" primary={<ObservationDeck ids={ids.slice(0,mid)} mounts={mounts} layout={layout} onSplit={onSplit} depth={depth+1}/>} secondary={<ObservationDeck ids={ids.slice(mid)} mounts={mounts} layout={layout} onSplit={onSplit} depth={depth+1}/>}/>;
}
@@ -0,0 +1,57 @@
import test from 'node:test';
import assert from 'node:assert/strict';
import {readFileSync} from 'node:fs';
import ts from 'typescript';
const code=ts.transpileModule(readFileSync(new URL('../../../packages/sensor-ui/src/boardLayout.ts',import.meta.url),'utf8'),{compilerOptions:{module:ts.ModuleKind.ESNext,target:ts.ScriptTarget.ES2022}}).outputText;
const {createBoardLayoutStore,defaultBoardLayout}=await import('data:text/javascript;base64,'+Buffer.from(code).toString('base64'));
const tick=()=>new Promise(resolve=>setImmediate(resolve));
function server(){
let value=structuredClone(defaultBoardLayout);const calls=[];
return {calls,read:async()=>structuredClone(value),patch:async(section,open)=>{
calls.push({section,open});await tick();
value={...value,revision:value.revision+1,open_sections:defaultBoardLayout.open_sections.filter(id=>id===section?open:value.open_sections.includes(id))};
return structuredClone(value);
}};
}
test('rapid toggles persist after navigation and preserve all-closed state',async()=>{
const api=server();const store=createBoardLayoutStore(api);await store.load();
const unsubscribe=store.subscribe(()=>{});
store.change(['settings','devices']);store.change(['devices']);store.change([]);
unsubscribe();
while(store.getSnapshot().saving)await tick();
const reopened=createBoardLayoutStore(api);await reopened.load();
assert.deepEqual(reopened.getSnapshot().value.open_sections,[]);
assert.equal(api.calls.length,3);
});
test('a later toggle wins while an older patch is still in flight',async()=>{
const api=server();const store=createBoardLayoutStore(api);await store.load();
store.change(['settings','devices']);store.change(['computer','settings','devices']);
while(store.getSnapshot().saving)await tick();
assert.deepEqual((await api.read()).open_sections,defaultBoardLayout.open_sections);
});
test('different vehicles and simultaneous section changes do not clobber one another',async()=>{
const api=server(),other=server();const a=createBoardLayoutStore(api),b=createBoardLayoutStore(api),c=createBoardLayoutStore(other);
await Promise.all([a.load(),b.load(),c.load()]);
a.change(['settings','devices']);b.change(['computer','devices']);
while(a.getSnapshot().saving||b.getSnapshot().saving)await tick();
assert.deepEqual((await api.read()).open_sections,['devices']);
assert.deepEqual(c.getSnapshot().value.open_sections,defaultBoardLayout.open_sections);
});
test('failed save reports failure, rolls back, and explicit reload recovers',async()=>{
const api=server();let fail=true;
const store=createBoardLayoutStore({...api,patch:(...args)=>fail?Promise.reject(new Error('offline')):api.patch(...args)});
await store.load();store.change([]);
while(store.getSnapshot().saving)await tick();
assert.ok(store.getSnapshot().error);
assert.deepEqual(store.getSnapshot().value.open_sections,defaultBoardLayout.open_sections);
fail=false;await store.load();store.change(['devices']);
while(store.getSnapshot().saving)await tick();
assert.equal(store.getSnapshot().error,null);
assert.deepEqual((await api.read()).open_sections,['devices']);
});
test('invalid layout cannot overwrite stored preferences',async()=>{
let writes=0;
const store=createBoardLayoutStore({read:async()=>({...defaultBoardLayout,open_sections:['motor-start']}),patch:async()=>{writes++;return defaultBoardLayout;}});
await store.load();store.change([]);
assert.equal(store.getSnapshot().ready,false);assert.ok(store.getSnapshot().error);assert.equal(writes,0);
});
@@ -0,0 +1,49 @@
import test from 'node:test';
import assert from 'node:assert/strict';
import {build} from 'esbuild';
const result=await build({entryPoints:[new URL('../src/core/fleet/useRoverControl.ts',import.meta.url).pathname],bundle:true,write:false,platform:'node',format:'esm',plugins:[{name:'hook-fixture',setup(b){
b.onResolve({filter:/^react$/},()=>({path:'react',namespace:'fixture'}));
b.onLoad({filter:/.*/,namespace:'fixture'},()=>({contents:`export const useRef=v=>({current:v});export const useState=v=>[v,()=>{}];export const useCallback=f=>f;export const useEffect=f=>globalThis.roverEffects.push(f);`}));
}}]});
const {useRoverControl}=await import('data:text/javascript;base64,'+Buffer.from(result.outputFiles[0].contents).toString('base64'));
const flush=()=>new Promise(resolve=>setImmediate(resolve));
async function fixture(run){
const originals=Object.fromEntries(['window','document','fetch','roverEffects','setInterval','clearInterval'].map(k=>[k,globalThis[k]]));
let focus=true,hidden=false;const calls=[],timers=[];globalThis.roverEffects=[];
globalThis.window={addEventListener(){},removeEventListener(){}};
globalThis.document={get hidden(){return hidden;},hasFocus:()=>focus,addEventListener(){},removeEventListener(){}};
globalThis.setInterval=(f,ms)=>{const timer={f,ms};timers.push(timer);return timer;};globalThis.clearInterval=()=>{};
globalThis.fetch=async(url,init)=>{const body=init.body?JSON.parse(init.body):null;calls.push({url,body});return {ok:true,json:async()=>url.endsWith('/arm')?{session_id:'fixture-session'}:{fresh:true,controlling:true,snapshot:{state:'ready'}}};};
const c=useRoverControl('fixture',true);const cleanup=globalThis.roverEffects.map(f=>f());
try{await flush();await c.arm(30,2000);await flush();await run({c,calls,timers,blur:()=>{focus=false;},focus:()=>{focus=true;},hide:()=>{hidden=true;}});}
finally{cleanup.forEach(f=>f?.());await flush();for(const [key,value]of Object.entries(originals)){if(value===undefined)delete globalThis[key];else globalThis[key]=value;}}
}
test('command heartbeat sends neutral on lost blur, keeps session, and accepts new focused input',async()=>fixture(async f=>{
f.c.setInputGuard(()=>true);f.c.setDemand({left:1,right:-1});await flush();
assert.equal(f.calls.at(-1).body.left,1);f.blur();f.timers.find(t=>t.ms===100).f();await flush();
assert.equal(f.calls.at(-1).body.stop,false);assert.equal(f.calls.at(-1).body.left,0);
f.c.setDemand({left:1,right:1});await flush();assert.equal(f.calls.at(-1).body.left,0);
f.focus();f.timers.find(t=>t.ms===100).f();await flush();assert.equal(f.calls.at(-1).body.left,0);
f.c.setDemand({left:1,right:1});await flush();assert.equal(f.calls.at(-1).body.left,1);
assert.equal(f.calls.filter(x=>x.url.endsWith('/arm')).length,1);
}));
test('expired physical input prevents heartbeat from renewing remembered demand',async()=>fixture(async f=>{
let valid=true;f.c.setInputGuard(()=>valid);f.c.setDemand({left:1,right:-1});await flush();valid=false;
f.timers.find(t=>t.ms===100).f();await flush();assert.equal(f.calls.at(-1).body.stop,false);
}));
test('no registered input scope cannot issue motion',async()=>fixture(async f=>{
f.c.setDemand({left:1,right:1});await flush();assert.equal(f.calls.at(-1).body.stop,false);
assert.equal(f.calls.some(x=>x.body?.left===1),false);
}));
test('hidden document sends only neutral without a visibility event',async()=>fixture(async f=>{
f.c.setInputGuard(()=>true);f.hide();f.c.setDemand({left:1,right:1});await flush();
assert.equal(f.calls.at(-1).body.stop,false);assert.equal(f.calls.some(x=>x.body?.left===1),false);
}));
test('explicit pause clears demand without revoking session; explicit stop still revokes it',async()=>fixture(async f=>{
f.c.setInputGuard(()=>true);f.c.setDemand({left:1,right:-1});await flush();f.c.pauseInput();await flush();
assert.equal(f.calls.at(-1).body.stop,false);assert.equal(f.calls.at(-1).body.left,0);
f.c.setDemand({left:1,right:1});await flush();assert.equal(f.calls.at(-1).body.left,1);
f.c.stop();await flush();assert.equal(f.calls.at(-1).body.stop,true);
const count=f.calls.length;f.c.setDemand({left:1,right:1});await flush();assert.equal(f.calls.length,count);
}));
@@ -0,0 +1,49 @@
import test from 'node:test';
import assert from 'node:assert/strict';
import {build} from 'esbuild';
const result=await build({entryPoints:[new URL('../src/core/fleet/useRoverControl.ts',import.meta.url).pathname],bundle:true,write:false,platform:'node',format:'esm',plugins:[{name:'hook-fixture',setup(b){
b.onResolve({filter:/^react$/},()=>({path:'react',namespace:'fixture'}));
b.onLoad({filter:/.*/,namespace:'fixture'},()=>({contents:`export const useRef=v=>({current:v});export const useState=v=>[v,()=>{}];export const useCallback=f=>f;export const useEffect=f=>globalThis.roverEffects.push(f);`}));
}}]});
const {useRoverControl}=await import('data:text/javascript;base64,'+Buffer.from(result.outputFiles[0].contents).toString('base64'));
const flush=()=>new Promise(resolve=>setImmediate(resolve));
const deferred=()=>{let resolve;const promise=new Promise(r=>resolve=r);return {promise,resolve};};
const response=value=>({ok:true,json:async()=>value});
const idle={fresh:true,controlling:false,snapshot:{supported:true,state:'observing'}};
async function fixture(run){
const originals=Object.fromEntries(['window','document','fetch','roverEffects','setInterval','clearInterval'].map(k=>[k,globalThis[k]]));
const calls=[],timers=[];globalThis.roverEffects=[];
globalThis.window={addEventListener(){},removeEventListener(){}};globalThis.document={hidden:false,hasFocus:()=>true,addEventListener(){},removeEventListener(){}};
globalThis.setInterval=(f,ms)=>{timers.push({f,ms});return timers.length;};globalThis.clearInterval=()=>{};
let armResponse=null,nextPoll=null;
globalThis.fetch=async(url,init)=>{const body=init.body?JSON.parse(init.body):null;calls.push({url,body});
if(url.endsWith('/arm'))return armResponse?armResponse.promise:response({session_id:'new-session'});
if(!body)return nextPoll?nextPoll.promise:response(idle);
return response({accepted_sequence:body.sequence});
};
const c=useRoverControl('fixture',true),cleanup=globalThis.roverEffects.map(f=>f());
try{await flush();await run({c,calls,poll:()=>timers.find(t=>t.ms===200).f(),heartbeat:()=>timers.find(t=>t.ms===100).f(),delayArm:()=>armResponse=deferred(),delayPoll:()=>nextPoll=deferred()});}
finally{cleanup.forEach(f=>f?.());await flush();for(const [key,value]of Object.entries(originals)){if(value===undefined)delete globalThis[key];else globalThis[key]=value;}}
}
test('idle poll begun during pending arm cannot revoke newly acknowledged session',async()=>fixture(async f=>{
const a=f.delayArm();const arming=f.c.arm(30,2000);const p=f.delayPoll();f.poll();
a.resolve(response({session_id:'new-session'}));assert.equal(await arming,true);await flush();
p.resolve(response(idle));await flush();f.heartbeat();await flush();
assert.equal(f.calls.filter(x=>x.body?.stop===true).length,0,'old idle poll revoked the new session');
assert.equal(f.calls.at(-1).body.session_id,'new-session');
}));
test('failed poll begun during pending arm cannot revoke newly acknowledged session',async()=>fixture(async f=>{
const a=f.delayArm();const arming=f.c.arm(30,2000);const p=f.delayPoll();f.poll();
a.resolve(response({session_id:'new-session'}));assert.equal(await arming,true);await flush();
p.resolve({ok:false,json:async()=>({detail:'stale read failure'})});await flush();
assert.equal(f.calls.filter(x=>x.body?.stop===true).length,0,'old failed poll revoked the new session');
}));
test('a current poll still revokes control when server reports lease lost',async()=>fixture(async f=>{
assert.equal(await f.c.arm(30,2000),true);await flush();f.poll();await flush();
assert.equal(f.calls.at(-1).body.stop,true);
}));
test('duplicate arm clicks while request pending create exactly one lease request',async()=>fixture(async f=>{
const a=f.delayArm();const first=f.c.arm(30,2000),second=f.c.arm(30,2000);
a.resolve(response({session_id:'new-session'}));await Promise.all([first,second]);await flush();
assert.equal(f.calls.filter(x=>x.url.endsWith('/arm')).length,1);
}));
@@ -0,0 +1,85 @@
import test from 'node:test';
import assert from 'node:assert/strict';
import {build} from 'esbuild';
const result=await build({entryPoints:[new URL('../src/core/fleet/roverHoldInput.ts',import.meta.url).pathname],bundle:true,write:false,platform:'node',format:'esm'});
const {bindRoverHoldInput}=await import('data:text/javascript;base64,'+Buffer.from(result.outputFiles[0].contents).toString('base64'));
class Events {
listeners=new Map();timers=new Map();next=0;
addEventListener(type,fn){if(!this.listeners.has(type))this.listeners.set(type,new Set());this.listeners.get(type).add(fn);}
removeEventListener(type,fn){this.listeners.get(type)?.delete(fn);}
emit(type,detail={}){const e={target:this,isTrusted:true,preventDefault(){},...detail};for(const fn of [...(this.listeners.get(type)??[])])fn(e);}
setInterval(fn){const id=++this.next;this.timers.set(id,fn);return id;}
clearInterval(id){this.timers.delete(id);}
tick(){for(const fn of this.timers.values())fn();}
}
function fixture(mode='arcade'){
let time=0,focus=true;const win=new Events(),doc=new Events();doc.defaultView=win;doc.hidden=false;doc.hasFocus=()=>focus;
const scope={ownerDocument:doc,closest:()=>null},child={closest:()=>null};scope.contains=x=>x===scope||x===child;doc.activeElement=scope;
const states=[],demands=[];let stops=0,pauses=0;
const binding=bindRoverHoldInput(scope,mode,{held:k=>states.push([...k]),demand:d=>demands.push(d),stop:()=>stops++,pause:()=>{pauses++;demands.push({left:0,right:0});}},()=>time);
const key=(code,repeat=false)=>win.emit('keydown',{code,repeat,target:scope});
return {win,doc,scope,child,binding,states,demands,key,stops:()=>stops,pauses:()=>pauses,advance:ms=>{time+=ms;win.tick();},loseFocus:()=>{focus=false;},restoreFocus:()=>{focus=true;},up:code=>win.emit('keyup',{code,target:scope})};
}
test('blur clears D, ignores a late repeat, but accepts a fresh press without rearming',()=>{
const f=fixture();f.key('KeyD');assert.deepEqual(f.demands.at(-1),{left:1,right:-1});
f.win.emit('blur');assert.equal(f.pauses(),1);assert.equal(f.stops(),0);assert.deepEqual(f.states.at(-1),[]);
assert.deepEqual(f.demands.at(-1),{left:0,right:0});const count=f.demands.length;
f.key('KeyD',true);assert.equal(f.demands.length,count);
f.key('KeyW');assert.deepEqual(f.demands.at(-1),{left:1,right:1});assert.equal(f.binding.valid(),true);f.binding.dispose();
});
test('heartbeat validity catches missing blur event using document focus',()=>{
const f=fixture();f.key('KeyD');f.loseFocus();assert.equal(f.binding.valid(),false);assert.equal(f.pauses(),1);
f.restoreFocus();assert.equal(f.binding.valid(),true);f.binding.dispose();
});
test('focus polling catches missing event or moving to another control',()=>{
const f=fixture();f.key('KeyW');f.doc.activeElement={};f.advance(50);assert.equal(f.pauses(),1);f.binding.dispose();
});
test('lost keyup AND missing focus notifications still expire repeated D',()=>{
const f=fixture();f.key('KeyD');f.advance(500);f.key('KeyD',true);f.advance(299);assert.equal(f.pauses(),0);
f.advance(1);assert.equal(f.pauses(),1);assert.deepEqual(f.states.at(-1),[]);f.key('KeyD',true);assert.equal(f.pauses(),1);f.binding.dispose();
});
test('first press allows OS repeat delay but never an indefinite hold',()=>{
const f=fixture();f.key('KeyW');f.advance(999);assert.equal(f.pauses(),0);f.advance(1);assert.equal(f.pauses(),1);f.binding.dispose();
});
test('continuous repeat renews hold; keyup immediately sends neutral',()=>{
const f=fixture();f.key('KeyW');f.advance(600);
for(let i=0;i<30;i++){f.key('KeyW',true);f.advance(100);}
assert.equal(f.pauses(),0);f.up('KeyW');assert.deepEqual(f.demands.at(-1),{left:0,right:0});f.advance(1200);assert.equal(f.pauses(),0);f.binding.dispose();
});
test('diagonal input survives single-key OS repeat; release recomputes demand',()=>{
const f=fixture();f.key('KeyW');f.key('KeyA');
for(let i=0;i<20;i++){f.key('KeyA',true);f.advance(100);}
assert.equal(f.pauses(),0);assert.deepEqual(f.demands.at(-1),{left:0,right:1});
f.up('KeyA');assert.deepEqual(f.demands.at(-1),{left:1,right:1});f.up('KeyW');f.binding.dispose();
});
test('repeat without a fresh press and untrusted events never command motion',()=>{
const f=fixture();f.key('KeyD',true);f.win.emit('keydown',{code:'KeyW',isTrusted:false,target:f.scope});assert.equal(f.demands.length,0);f.binding.dispose();
});
test('focus inside the view is allowed; leaving or hiding it stops',()=>{
for(const event of ['focusout','visibilitychange','pagehide','outside']){
const f=fixture();f.key('KeyW');f.doc.emit('focusout',{target:f.scope,relatedTarget:f.child});assert.equal(f.pauses(),0);
if(event==='focusout')f.doc.emit(event,{target:f.scope,relatedTarget:null});
else if(event==='visibilitychange'){f.doc.hidden=true;f.doc.emit(event);}
else if(event==='pagehide')f.win.emit(event);
else f.doc.emit('pointerdown',{target:{}});
assert.equal(event==='pagehide'?f.stops():f.pauses(),1,event);f.binding.dispose();
}
});
test('pointer capture lost or cancelled releases every input',()=>{
for(const mode of ['arcade','tank']){
const f=fixture(mode);f.binding.pointerDown(1,mode==='arcade'?'KeyW':'KeyQ');f.binding.pointerCancel(1);
assert.equal(f.pauses(),1);assert.deepEqual(f.states.at(-1),[]);f.binding.dispose();
}
});
test('document pointerup releases even if button handler does not receive it',()=>{
const f=fixture();f.binding.pointerDown(1,'KeyD');f.doc.emit('pointerup',{pointerId:1});assert.deepEqual(f.demands.at(-1),{left:0,right:0});assert.equal(f.pauses(),0);f.binding.dispose();
});
test('modifier shortcuts pause; cleanup removes listeners, timer and held demand',()=>{
const f=fixture();f.key('KeyD');f.win.emit('keydown',{code:'Tab',metaKey:true,target:f.scope});assert.equal(f.pauses(),1);f.binding.dispose();
assert.deepEqual(f.demands.at(-1),{left:0,right:0});assert.equal(f.win.timers.size,0);
assert.equal([...f.win.listeners.values(),...f.doc.listeners.values()].reduce((sum,x)=>sum+x.size,0),0);
});
test('Space and Escape remain explicit session stops',()=>{
for(const code of ['Space','Escape']){const f=fixture();f.key('KeyW');f.key(code);assert.equal(f.stops(),1);assert.equal(f.binding.valid(),false);f.binding.dispose();}
});
+70
View File
@@ -0,0 +1,70 @@
import test from 'node:test';
import assert from 'node:assert/strict';
import {readFileSync} from 'node:fs';
import ts from 'typescript';
const source=readFileSync(new URL('../../../plugins/vesc/frontend/src/model.ts',import.meta.url),'utf8');
const code=ts.transpileModule(source,{compilerOptions:{module:ts.ModuleKind.ESNext}}).outputText;
const {vescLabel,testInput,speedInput,rotationResult,driveTestIds}=await import('data:text/javascript;base64,'+Buffer.from(code).toString('base64'));
const controller={online:true,prepared:true,verified:true,vesc_status:{identity:{uuid:'synthetic'},readable:true}};
test('speed mode requires board capability and reports measured rotation time',()=>{
assert.ok(speedInput('1200',undefined).error);
const bounds={min_erpm:300,max_erpm:3000,duration_basis:'measured_speed'};
assert.equal(speedInput('1200',bounds).error,null);
for(const value of ['', 'NaN','299','3001'])assert.ok(speedInput(value,bounds).error);
const text=rotationResult({outcome:'stopped',rotation_s:2.5,release_confirmed:true,limits_restored:true});
assert.match(text,/2,5 с/);
assert.match(text,/Проверка остановлена/);
assert.doesNotMatch(text,/время вращения набрано/);
});
test('USB discovery and model preparation never claim a verified VESC',()=>{
assert.equal(vescLabel({...controller,prepared:false},true).label,'Требуется подготовка');
assert.equal(vescLabel({...controller,vesc_status:{identity:null,readable:false}},true).tone,'warning');
});
test('fresh read capability is distinct from unsupported firmware and offline state',()=>{
assert.equal(vescLabel(controller,true).label,'Готов к чтению');
assert.equal(vescLabel(controller,false).label,'Нет связи');
assert.equal(vescLabel({...controller,online:false},true).label,'Нет связи');
assert.equal(vescLabel({...controller,vesc_status:{identity:{uuid:'synthetic'},readable:false}},true).label,'Прошивка не поддерживается');
});
test('test fields accept entered values only inside the board capability bounds',()=>{
const bounds={min_current_a:0.5,max_current_a:5,min_duration_s:0.5,max_duration_s:10};
assert.equal(testInput('3.7','7.2',bounds).valid,true);
assert.equal(testInput('5','10',bounds).valid,true);
for(const [amps,seconds] of [['','5'],['5',''],['60','10'],['5','11'],['NaN','1'],['Infinity','1']])assert.equal(testInput(amps,seconds,bounds).valid,false);
assert.equal(testInput('2','1.5',undefined).valid,false);
const overlong=testInput('5','15',bounds);
assert.equal(overlong.valid,false);
assert.equal(overlong.currentError,null);
assert.equal(overlong.durationError,'Длительность должна быть от 0,5 до 10 с.');
assert.equal(testInput('5','10',bounds).durationError,null);
});
// Capabilities come from the installed board: a newer Core must retain old bounds.
test('extended board accepts 30 A / 30 s without changing older board bounds',()=>{
const old={min_current_a:0.5,max_current_a:5,min_duration_s:0.5,max_duration_s:10};
const expanded={...old,max_current_a:30,max_duration_s:30,continuous_current:true};
assert.equal(testInput('30','30',expanded).valid,true);
assert.equal(testInput('30.1','30',expanded).valid,false);
assert.equal(testInput('30','30.1',expanded).valid,false);
assert.equal(testInput('30','30',old).valid,false);
});
test('group spin requires a complete unique profile containing the selected controller',()=>{
const profile={layout:'1x1',revision:3,bindings:{'left.1':{device_id:'left',uuid:'a'},'right.1':{device_id:'right',uuid:'b'}}};
assert.deepEqual(driveTestIds(profile,'left'),['left','right']);
assert.deepEqual(driveTestIds(profile,'unassigned'),[]);
assert.deepEqual(driveTestIds({...profile,bindings:{'left.1':profile.bindings['left.1']}},'left'),[]);
assert.deepEqual(driveTestIds({...profile,bindings:{...profile.bindings,'right.1':profile.bindings['left.1']}},'left'),[]);
assert.deepEqual(driveTestIds(undefined,'left'),[]);
});
test('four-wheel profile preserves front and rear membership for common testing',()=>{
const ids=['lf','lr','rf','rr'];
const bindings=Object.fromEntries(['left.1','left.2','right.1','right.2'].map((slot,i)=>[slot,{device_id:ids[i],uuid:ids[i]}]));
assert.deepEqual(driveTestIds({layout:'2x2',revision:4,bindings},'rf'),ids);
});
@@ -307,6 +307,9 @@ func (p *Pairing) channel(ctx context.Context) {
payload["devices"] = inv["items"]
payload["sensor_state"] = inv
payload["sensor_results"] = p.Sensors.RemoteResults()
if batch := p.Sensors.ConfigurationBatch(binding.BindingID); batch != nil {
payload["vesc_configurations"] = batch
}
}
if p.DeviceEnrollment != nil {
payload["device_enrollment"] = p.DeviceEnrollment.Status()
@@ -337,6 +340,7 @@ func (p *Pairing) channel(ctx context.Context) {
}
}
if p.Sensors != nil {
p.Sensors.AcknowledgeConfigurations(binding.BindingID, result["vesc_configurations_ack"], payload["vesc_configurations"])
var ack []string
if json.Unmarshal(result["sensor_acknowledgements"], &ack) == nil {
p.Sensors.Acknowledge(ack)
@@ -0,0 +1,88 @@
package node
import (
"context"
"encoding/json"
"net/http"
"net/url"
"os"
"path/filepath"
"strconv"
"time"
)
func (s *Sensors) vescArchive(path string) (map[string]any, error) {
ctx, cancel := context.WithTimeout(context.Background(), time.Second)
defer cancel()
for i := range sensorModels {
if sensorModels[i].ID == "vesc.controller" {
return s.modelDriver(ctx, &sensorModels[i], path, nil)
}
}
panic("shipped VESC model is missing")
}
func archiveCursorName(binding string) string {
return "vesc-archive-" + digest(binding)[:24] + ".cursor"
}
// Each pairing receives the complete immutable history, including backups
// made locally and while Core was offline. ACK follows durable Core storage.
func (s *Sensors) ConfigurationBatch(binding string) map[string]any {
var after int64
data, _ := os.ReadFile(filepath.Join(s.root, archiveCursorName(binding)))
if json.Unmarshal(data, &after) != nil || after < 0 {
after = 0
}
result, err := s.vescArchive("/archive-export?after=" + strconv.FormatInt(after, 10))
if err != nil {
return nil
}
return result
}
func (s *Sensors) AcknowledgeConfigurations(binding string, ack json.RawMessage, batch any) {
value, ok := batch.(map[string]any)
if !ok {
return
}
var sequence int64
if json.Unmarshal(ack, &sequence) != nil || sequence < 0 {
return
}
next, ok := value["next"].(float64)
if !ok || next != float64(sequence) {
return
}
// A failed cursor write causes replay; immutable archive insertion deduplicates it.
_ = s.write(archiveCursorName(binding), sequence)
}
func (s *Sensors) configurationRoutes(mux *http.ServeMux, server *Server) {
for _, route := range []string{"GET /api/device-configurations/{device}", "GET /api/device-configurations/{device}/{version}"} {
mux.HandleFunc(route, func(w http.ResponseWriter, r *http.Request) {
if !server.authorized(w, r) {
return
}
w.Header().Set("Cache-Control", "no-store")
device := r.PathValue("device")
model := modelForDevice(device)
if model == nil || model.ID != "vesc.controller" {
reply(w, 404, map[string]string{"error": "История не найдена"})
return
}
path := "/archives/" + url.PathEscape(device)
if version := r.PathValue("version"); version != "" {
path += "/" + url.PathEscape(version)
} else {
path += "?before=" + url.QueryEscape(r.URL.Query().Get("before"))
}
result, err := s.vescArchive(path)
if err != nil {
reply(w, 503, map[string]string{"error": "Архив конфигураций недоступен"})
return
}
reply(w, 200, result)
})
}
}
@@ -0,0 +1,25 @@
package node
import (
"encoding/json"
"os"
"path/filepath"
"testing"
)
func TestVESCArchiveAckRequiresExactBatchAndPairingScope(t *testing.T) {
s := isolatedSensors(t)
batch := map[string]any{"next": float64(9)}
s.AcknowledgeConfigurations("pair-a", json.RawMessage(`10`), batch)
if _, err := os.Stat(filepath.Join(s.root, archiveCursorName("pair-a"))); !os.IsNotExist(err) {
t.Fatal("incorrect ACK persisted")
}
s.AcknowledgeConfigurations("pair-a", json.RawMessage(`9`), batch)
data, err := os.ReadFile(filepath.Join(s.root, archiveCursorName("pair-a")))
if err != nil || string(data) != "9" {
t.Fatalf("durable cursor: %q %v", data, err)
}
if _, err := os.Stat(filepath.Join(s.root, archiveCursorName("pair-b"))); !os.IsNotExist(err) {
t.Fatal("history skipped on another pairing")
}
}
+24 -1
View File
@@ -20,6 +20,8 @@ type sensorModel struct {
Socket, PrepareUnit, Report string
Actions map[string]bool
ActionTimeouts map[string]time.Duration
// This model may prepare an attachment only to read its protocol identity.
ProtocolIdentity bool
}
func actions(names ...string) map[string]bool {
@@ -44,6 +46,11 @@ var sensorModels = []sensorModel{
PrepareUnit: "mission-core-node-insta360-x4-profile.service", Report: "/var/lib/mission-core-node-profiles/insta360-x4/preparation.json",
ActionTimeouts: map[string]time.Duration{"power.wake": 55 * time.Second},
Actions: actions("prepare", "details", "rename", "verify", "preview.start", "preview.stop", "record.start", "record.stop", "photo.capture", "settings.read", "settings.apply", "files.list", "offer", "close-peer", "recovery.configure", "power.wake")},
{ID: "vesc.controller", Name: "VESC", Prefix: "vesc", Kind: "vesc.controller", Plugin: "missioncore.vesc", Version: "0.6.3",
Vendor: "0483", Product: "5740", USBName: "ChibiOS/RT Virtual COM Port", Socket: "/run/mission-core-vesc/driver.sock",
PrepareUnit: "mission-core-node-vesc-prepare.service", Report: "/var/lib/mission-core-node-profiles/vesc/preparation.json",
ActionTimeouts: map[string]time.Duration{"vesc.link.check": 45 * time.Second, "vesc.motor.run": 90 * time.Second, "vesc.drive.run": 120 * time.Second, "vesc.hall.measure": 60 * time.Second, "vesc.foc.calibrate": 300 * time.Second, "vesc.motor.pulse": 60 * time.Second, "vesc.control.release": 60 * time.Second},
ProtocolIdentity: true, Actions: actions("prepare", "details", "rename", "verify", "vesc.link.check", "vesc.telemetry.read", "vesc.config.backup", "vesc.input.read", "vesc.can.read", "vesc.drive.assign", "vesc.drive.unassign", "vesc.motor.pulse", "vesc.motor.run", "vesc.drive.run", "vesc.hall.measure", "vesc.foc.calibrate", "vesc.motor.stop", "vesc.control.release")},
}
func modelForDevice(id string) *sensorModel {
@@ -74,6 +81,22 @@ func modelDeviceID(model *sensorModel, serial string) string {
return model.Prefix + "_" + hex.EncodeToString(h[:])[:32]
}
func preparedDeviceID(command SensorCommand, result any) string {
model := modelForDevice(command.Session.DeviceID)
if model == nil {
return ""
}
if !model.ProtocolIdentity {
return command.Session.DeviceID
}
if value, ok := result.(map[string]any); ok {
if id, ok := value["device_id"].(string); ok && modelForDevice(id) == model {
return id
}
}
return ""
}
func sensorClient(socket string) *http.Client {
return &http.Client{Timeout: 25 * time.Second, Transport: &http.Transport{DialContext: func(ctx context.Context, _, _ string) (net.Conn, error) {
return (&net.Dialer{}).DialContext(ctx, "unix", socket)
@@ -110,7 +133,7 @@ func discoverSensors(root string) []usbSensor {
}
unique := []usbSensor{}
for _, item := range items {
if !item.stable || counts[item.id] != 1 {
if item.model.ProtocolIdentity || !item.stable || counts[item.id] != 1 {
item.stable = false
item.id = modelDeviceID(item.model, "provisional:"+item.binding)
}
@@ -77,7 +77,7 @@ func (s *Sensors) preparationPhase(c SensorCommand, model *sensorModel, job *pro
}
op.Preparation = &sensorPreparation{OperationID: c.ID, DeviceID: c.Session.DeviceID, ModelID: model.ID,
StartedAt: float64(started.UnixMilli()) / 1000, ProfileStartedAt: job.started, State: state, Phase: phase,
Steps: []preparationStep{{ID: "profile", Label: "Подготовка драйвера", State: deploy}, {ID: "verify", Label: "Проверка выбранной камеры", State: verify}}}
Steps: []preparationStep{{ID: "profile", Label: "Подготовка драйвера", State: deploy}, {ID: "verify", Label: "Проверка выбранного устройства", State: verify}}}
op.Updated = time.Now().Unix()
err := s.write(c.ID+".json", op)
s.events.notify()
@@ -217,18 +217,20 @@ func (s *Sensors) prepare(c SensorCommand, selected map[string]any) (result any,
binding := s.discoverySessions[c.Session.DeviceID].binding
s.mu.Unlock()
if initialBinding != "" && binding != initialBinding {
return nil, errors.New("Камера переподключена во время подготовки. Повторите проверку устройства.")
return nil, errors.New("Устройство переподключено во время подготовки. Повторите проверку устройства.")
}
for _, raw := range inventory["items"].([]any) {
item := raw.(map[string]any)
if item["id"] != c.Session.DeviceID || item["online"] != true || item["prepared"] != true {
matches := item["id"] == c.Session.DeviceID || (model.ProtocolIdentity && item["attachment_id"] == c.Session.DeviceID)
if !matches || item["online"] != true || item["prepared"] != true || (model.ProtocolIdentity && item["verified"] != true) {
continue
}
verify := c
verify.Action = "verify"
verify.Session.DeviceID, _ = item["id"].(string)
verify.Session.SessionID = sensorSessionID(item)
if verify.Session.SessionID == "" {
return nil, errors.New("Драйвер не подтвердил сеанс камеры.")
return nil, errors.New("Драйвер не подтвердил сеанс устройства.")
}
response, e := s.modelDriver(ctx, model, "/operation", verify)
if e != nil || response["state"] == "unknown" {
@@ -237,7 +239,7 @@ func (s *Sensors) prepare(c SensorCommand, selected map[string]any) (result any,
if response["state"] != "complete" {
message, _ := response["error"].(string)
if message == "" {
message = "Не удалось проверить изображение выбранной камеры."
message = "Не удалось проверить выбранное устройство."
}
return nil, errors.New(message)
}
@@ -249,7 +251,7 @@ func (s *Sensors) prepare(c SensorCommand, selected map[string]any) (result any,
case <-time.After(time.Second):
}
}
return nil, errors.New("Драйвер установлен, но камера не открылась. Проверьте USB-подключение.")
return nil, errors.New("Драйвер установлен, но устройство не ответило. Проверьте питание и USB-подключение.")
}
// Project only the matching model run. A previous success or another model's
@@ -0,0 +1,122 @@
package node
import (
"context"
"encoding/json"
"net/http"
"os"
"path/filepath"
"sync/atomic"
"testing"
)
func fakeVESC(t *testing.T, s *Sensors, port, number string) {
t.Helper()
fakeUSB(t, s.usbRoot, port, "duplicate", "ChibiOS/RT Virtual COM Port", number)
for key, value := range map[string]string{"idVendor": "0483", "idProduct": "5740"} {
if err := os.WriteFile(filepath.Join(s.usbRoot, port, key), []byte(value), 0600); err != nil {
t.Fatal(err)
}
}
}
func TestVESCProvisionalIdentityIsReadOnlyAndDoesNotWeakenCameras(t *testing.T) {
s := isolatedSensors(t)
fakeVESC(t, s, "1-2", "2")
fakeVESC(t, s, "1-3", "3")
items := s.Inventory()["items"].([]any)
if len(items) != 2 {
t.Fatal("both controllers must be visible")
}
for _, raw := range items {
item := raw.(map[string]any)
if item["initializable"] != true || item["prepared"] != false {
t.Fatal("identity bootstrap unavailable or falsely prepared")
}
c := sensorTestCommand()
c.Session.DeviceID = item["id"].(string)
for _, action := range []string{"start", "stop", "option", "settings.apply", "firmware.write"} {
c.Action = action
if _, err := s.Submit(c, false); err == nil {
t.Fatal("VESC acquired write authority", action)
}
}
}
if items[0].(map[string]any)["id"] == items[1].(map[string]any)["id"] {
t.Fatal("duplicate USB serial collapsed")
}
fakeUSB(t, s.usbRoot, "2-2", "same", "Insta360 X4", "4")
fakeUSB(t, s.usbRoot, "2-3", "same", "Insta360 X4", "5")
for _, raw := range s.Inventory()["items"].([]any) {
item := raw.(map[string]any)
if item["kind"] == "insta360.x4" && item["initializable"] != false {
t.Fatal("camera guard weakened")
}
}
}
func TestVESCPreparePromotesAttachmentToProtocolUUID(t *testing.T) {
s := isolatedSensors(t)
fakeVESC(t, s, "1-2", "2")
first := s.Inventory()["items"].([]any)[0].(map[string]any)
attachment := first["id"].(string)
model := modelForDevice(attachment)
stable := modelDeviceID(model, "uuid:synthetic-controller")
var installed atomic.Bool
s.runPreparation = func(_ context.Context, unit string) error {
if unit != "mission-core-node-vesc-prepare.service" {
t.Error("wrong profile")
}
installed.Store(true)
return nil
}
s.clients[model.ID].Transport = sensorRoundTrip(func(r *http.Request) (*http.Response, error) {
if r.URL.Path == "/inventory" {
items := []any{}
if installed.Load() {
item := s.discovery(stable, "12", true)
item["prepared"] = true
item["verified"] = true
item["configured"] = true
item["attachment_id"] = attachment
item["snapshot"].(map[string]any)["context"].(map[string]any)["session_id"] = "protocol_session"
items = append(items, item)
}
return testSensorReply(map[string]any{"items": items}), nil
}
var command SensorCommand
_ = json.NewDecoder(r.Body).Decode(&command)
if command.Action != "verify" || command.Session.DeviceID != stable || command.Session.SessionID != "protocol_session" {
t.Error("verification did not follow protocol identity")
}
return testSensorReply(map[string]any{"state": "complete", "result": map[string]any{"device_id": stable}}), nil
})
c := sensorTestCommand()
c.Action = "prepare"
c.Session = SensorSession{DeviceID: attachment, SessionID: sensorSessionID(first)}
if _, err := s.Submit(c, true); err != nil {
t.Fatal(err)
}
awaitSensor(t, func() bool { return s.Get(c.ID).State != "running" })
if s.Get(c.ID).State != "complete" {
t.Fatal(s.Get(c.ID))
}
items := s.Inventory()["items"].([]any)
if len(items) != 1 || items[0].(map[string]any)["id"] != stable {
t.Fatal("provisional row survived promotion")
}
s.mu.Lock()
a, b := s.initialized[stable], s.initialized[attachment]
s.mu.Unlock()
if !a || b {
t.Fatal("initialization persisted transport identity")
}
// A stale runtime attachment is never presented as a currently connected controller.
if err := os.RemoveAll(filepath.Join(s.usbRoot, "1-2")); err != nil {
t.Fatal(err)
}
items = s.Inventory()["items"].([]any)
if len(items) != 1 || items[0].(map[string]any)["online"] != false {
t.Fatal("unplugged driver observation accepted")
}
}
+39 -10
View File
@@ -106,7 +106,9 @@ func OpenSensors(root, nodeID string) (*Sensors, error) {
}
for _, op := range s.operations {
if op.Command.Action == "prepare" && op.State == "complete" {
s.initialized[op.Command.Session.DeviceID] = true
if id := preparedDeviceID(op.Command, op.Result); id != "" {
s.initialized[id] = true
}
}
}
if e := s.write("initialized.json", s.initialized); e != nil {
@@ -192,7 +194,7 @@ func (s *Sensors) modelDriver(ctx context.Context, model *sensorModel, path stri
}
response, e := client.Do(req)
if e != nil {
return nil, errors.New("Служба камеры недоступна. Подготовьте устройство.")
return nil, errors.New("Служба устройства недоступна. Подготовьте устройство.")
}
defer response.Body.Close()
var result map[string]any
@@ -241,8 +243,24 @@ func (s *Sensors) Inventory() map[string]any {
unsafePreparation[id] = item["preparation_safe"] == false || snapshot["acquisition"] != "idle"
continue
}
if model.ProtocolIdentity {
if !currentCameraSnapshot(item, model) {
continue
}
attachment, _ := item["attachment_id"].(string)
matched := false
for _, candidate := range usb {
if candidate.model == model && candidate.id == attachment {
matched = true
}
}
if !matched {
continue
}
seen[attachment] = true
}
s.mu.Lock()
if model.PrepareUnit != "" {
if model.PrepareUnit != "" && !model.ProtocolIdentity {
item["configured"] = s.initialized[id]
}
if name := s.names[id]; name != "" {
@@ -325,13 +343,18 @@ func (s *Sensors) discovery(id, speed string, online bool) map[string]any {
if !initializable {
stability, basis = "provisional", "transport-local"
}
// VESC bootstrap grants only a fixed identity read on the selected attachment.
// This does not promote the attachment to stable identity or allow motor control.
if online && model.ProtocolIdentity {
initializable = true
}
return map[string]any{"id": id, "name": name, "model": model.Name, "kind": model.Kind, "initializable": initializable, "configured": configured, "prepared": false, "verified": false, "online": online, "usb": speed, "layers": []any{}, "snapshot": map[string]any{
"context": map[string]any{"session_id": session, "device": map[string]any{"device_id": id, "model": map[string]string{"plugin_id": model.Plugin, "plugin_version": model.Version, "model_id": model.ID}, "stability": stability, "basis": basis}, "execution": map[string]string{"node_id": s.nodeID, "agent_instance_id": s.instance, "platform": "linux"}, "opened_at": now},
"revision": 0, "enrollment": enrollment, "connectivity": connectivity, "acquisition": "idle", "observed_at": now}}
}
func sensorViewAction(action string) bool {
return action == "details" || action == "offer" || action == "close-peer" || action == "settings.read" || action == "files.list"
return action == "details" || action == "offer" || action == "close-peer" || action == "settings.read" || action == "files.list" || action == "vesc.telemetry.read" || action == "vesc.config.backup"
}
func (s *Sensors) Submit(c SensorCommand, remote bool) (*SensorOperation, error) {
@@ -365,10 +388,10 @@ func (s *Sensors) Submit(c SensorCommand, remote bool) (*SensorOperation, error)
return nil, errors.New("Срок команды истёк. Устройство не изменено.")
}
for _, v := range s.operations {
if v.State == "running" && v.Command.Action == "prepare" && (v.Preparation == nil || v.Preparation.Phase == "profile") && c.Action != "prepare" && !sensorViewAction(c.Action) && modelForDevice(v.Command.Session.DeviceID) == model {
if v.State == "running" && v.Command.Action == "prepare" && (v.Preparation == nil || v.Preparation.Phase == "profile") && c.Action != "prepare" && c.Action != "vesc.motor.stop" && !sensorViewAction(c.Action) && modelForDevice(v.Command.Session.DeviceID) == model {
return nil, errors.New("Подготовка модели ещё выполняется.")
}
if v.State == "running" && v.Command.Session.DeviceID == c.Session.DeviceID && !sensorViewAction(c.Action) && !sensorViewAction(v.Command.Action) {
if v.State == "running" && v.Command.Session.DeviceID == c.Session.DeviceID && c.Action != "vesc.motor.stop" && !sensorViewAction(c.Action) && !sensorViewAction(v.Command.Action) {
return nil, errors.New("Другая операция устройства ещё выполняется.")
}
}
@@ -411,11 +434,11 @@ func (s *Sensors) execute(c SensorCommand) {
if !deadline.After(time.Now()) {
err = errors.New("Срок команды истёк. Устройство не изменено.")
} else if item == nil {
err = errors.New("Камера не обнаружена. Проверьте подключение.")
err = errors.New("Устройство не обнаружено. Проверьте подключение.")
} else if c.Action == "prepare" && item["online"] != true {
err = errors.New("Камера отключена. Проверьте подключение.")
err = errors.New("Устройство отключено. Проверьте подключение.")
} else if c.Action == "prepare" && item["initializable"] == false {
err = errors.New("Не удалось однозначно определить камеру. Проверьте её идентификатор и подключение.")
err = errors.New("Не удалось однозначно определить устройство. Проверьте его идентификатор и подключение.")
} else if (c.Action == "prepare" || c.Action == "rename") && sensorSessionID(item) != c.Session.SessionID {
err = errors.New("Сеанс устройства изменился. Обновите сведения.")
} else if c.Action == "prepare" {
@@ -451,7 +474,12 @@ func (s *Sensors) execute(c SensorCommand) {
s.mu.Lock()
defer s.mu.Unlock()
if err == nil && c.Action == "prepare" {
s.initialized[c.Session.DeviceID] = true
initializedID := preparedDeviceID(c, result)
if initializedID == "" {
err = errors.New("Драйвер не подтвердил личность устройства.")
} else {
s.initialized[initializedID] = true
}
if e := s.write("initialized.json", s.initialized); e != nil {
err = e
uncertain = true
@@ -496,6 +524,7 @@ func (s *Sensors) RemoteResults() []any {
return out
}
func (s *Sensors) Routes(mux *http.ServeMux, server *Server) {
s.configurationRoutes(mux, server)
mux.HandleFunc("GET /api/devices/events", func(w http.ResponseWriter, r *http.Request) { s.stream(w, r, server) })
mux.HandleFunc("GET /api/devices", func(w http.ResponseWriter, r *http.Request) {
if server.authorized(w, r) {
@@ -1,7 +1,7 @@
// An authenticated Node action may start only this fixed model job.
polkit.addRule(function(action, subject) {
var unit = action.lookup("unit");
if (subject.user === "mission-core-node" && action.id === "org.freedesktop.systemd1.manage-units" && (unit === "mission-core-node-realsense-prepare.service" || unit === "mission-core-node-insta360-x4-profile.service") && action.lookup("verb") === "start") {
if (subject.user === "mission-core-node" && action.id === "org.freedesktop.systemd1.manage-units" && (unit === "mission-core-node-vesc-prepare.service" || unit === "mission-core-node-realsense-prepare.service" || unit === "mission-core-node-insta360-x4-profile.service") && action.lookup("verb") === "start") {
return polkit.Result.YES;
}
});
+2 -1
View File
@@ -11,7 +11,7 @@ import sys
from build_deb import build, VERSION, BRAND_SHA256
ROOT = Path(__file__).resolve().parents[1]
DG_COMMIT = "8c53f73ee521561a1cc7944a7f7cf113702f40b5"
DG_COMMIT = "8dd9190573d6616024ef01b9b34bf90b72960f44"
def guideline_sources():
@@ -36,6 +36,7 @@ def provenance():
"design_guideline_files": guideline_sources(),
"shared_sensor_ui_files": {str(p.relative_to(ROOT.parents[1])): hashlib.sha256(p.read_bytes()).hexdigest() for p in sorted((ROOT.parents[1] / "packages/sensor-ui/src").rglob("*")) if p.is_file()},
"shared_spatial_ui_files": {str(p.relative_to(ROOT.parents[1])): hashlib.sha256(p.read_bytes()).hexdigest() for p in sorted((ROOT.parents[1] / "packages/spatial-ui/src").rglob("*")) if p.is_file()},
"vesc_plugin_files": {str(p.relative_to(ROOT.parents[1])): hashlib.sha256(p.read_bytes()).hexdigest() for p in sorted((ROOT.parents[1] / "plugins/vesc").rglob("*")) if p.is_file() and not any(x in p.relative_to(ROOT.parents[1]).parts for x in ("__pycache__", "build"))},
"k1_frontend_files": {str(p.relative_to(ROOT.parents[1])): hashlib.sha256(p.read_bytes()).hexdigest() for p in sorted((ROOT.parents[1] / "plugins/xgrids-k1/frontend/src").rglob("*")) if p.is_file()},
"toolchain": json.loads((ROOT / "toolchain.json").read_text()), "files": files}
+5 -3
View File
@@ -11,8 +11,8 @@ import sys
ROOT = Path(__file__).resolve().parents[1]
BINARY_VERSION = "0.8.21"
VERSION = "0.8.21-3"
BINARY_VERSION = "0.8.35"
VERSION = "0.8.35-1"
sys.path.insert(0, str(ROOT.parents[1] / "scripts/packaging"))
from debian import package
@@ -44,7 +44,7 @@ Architecture: amd64
Maintainer: NODE.DC local build <noreply@example.invalid>
Section: admin
Priority: optional
Depends: adduser, systemd (>= 255), python3 (>= 3.12), python3 (<< 3.13), python3-gi, gir1.2-gtk-3.0, gir1.2-webkit2-4.1, pkexec, polkitd, ca-certificates, hicolor-icon-theme, network-manager, iproute2, python3-psycopg2, postgresql-16 (>= 16.15), timescaledb-2-oss-postgresql-16 (= 2.29.2~ubuntu24.04-1615), udev, libc6 (>= 2.35), libstdc++6 (>= 12), libgcc-s1, zlib1g
Depends: adduser, systemd (>= 255), python3 (>= 3.12), python3 (<< 3.13), python3-gi, gir1.2-gtk-3.0, gir1.2-webkit2-4.1, pkexec, polkitd, ca-certificates, hicolor-icon-theme, network-manager, iproute2, python3-psycopg2, postgresql-16 (>= 16.15), timescaledb-2-oss-postgresql-16 (= 2.29.2~ubuntu24.04-1615), udev, libc6 (>= 2.39), libstdc++6 (>= 12), libgcc-s1, zlib1g
Description: Mission Core onboard computer configuration
Local graphical setup, host inventory, SSH access and persistent node identity.
""".encode()
@@ -111,6 +111,8 @@ Description: Mission Core onboard computer configuration
files.append(("usr/lib/mission-core-node/sdk/missioncore_plugin_sdk/" + str(path.relative_to(sdk)), path.read_bytes(), 0o644))
if (ROOT / "build/provenance.json").exists():
files.append(("usr/share/doc/mission-core-node/provenance.json", (ROOT / "build/provenance.json").read_bytes(), 0o644))
import runpy
files.extend(runpy.run_path(str(ROOT.parents[1] / "plugins/vesc/packaging/payload.py"))["payload"]())
archive = package(controls, files)
destination.parent.mkdir(parents=True, exist_ok=True)
destination.write_bytes(archive)
@@ -11,7 +11,7 @@ from pathlib import Path
NODE = Path(__file__).resolve().parents[1]
REPO = NODE.parents[1]
DG = REPO.parent / "NODEDC_DESIGN_GUIDELINE"
DG_COMMIT = "8c53f73ee521561a1cc7944a7f7cf113702f40b5"
DG_COMMIT = "8dd9190573d6616024ef01b9b34bf90b72960f44"
def files(root):
@@ -73,6 +73,13 @@ def build(qualified, node_only=False):
# board, runtime path override or operator compiler dependency is needed.
virtual = str(REPO.name + "/apps/node-agent/build/model-packages/" + package_name)
entries[virtual] = qualified
native_root = REPO / "plugins/vesc"
native = json.loads((native_root / "packaging/native-runtime.json").read_text())
native_path = native_root / "build/native-runtime" / native["file"]
native_bytes = native_path.read_bytes()
if len(native_bytes) != native["bytes"] or hashlib.sha256(native_bytes).hexdigest() != native["sha256"]:
raise ValueError("Qualified VESC Tool runtime changed")
entries[REPO.name + "/plugins/vesc/build/native-runtime/" + native["file"]] = native_path
metadata = {}
for name, path in entries.items():
data = path.read_bytes()
@@ -5,7 +5,7 @@ mc_node_release_dir=$(CDPATH= cd -- "$(dirname -- "$0")" && pwd)
if [ ! -t 0 ]; then
exec /usr/bin/gnome-terminal --wait --title="Mission Core Node" -- "$mc_node_release_dir/install"
fi
printf '%s\n' 'Mission Core Node' 'Обновление приложения и встроенных пакетов камер на этом Ubuntu-компьютере.' 'Подготовка X4 выполняется затем из списка устройств в Node или Core.' 'Пароль администратора вводится только в этом локальном окне Ubuntu.'
printf '%s\n' 'Mission Core Node' 'Обновление приложения и встроенных драйверов на этом Ubuntu-компьютере.' 'Подготовка VESC и X4 выполняется затем из списка устройств в Node или Core.' 'Пароль администратора вводится только в этом локальном окне Ubuntu.'
set +e
/usr/bin/sudo /usr/bin/python3 -I "$mc_node_release_dir/install_release.py" 2>&1 | /usr/bin/tee -a "$mc_node_release_dir/install-output.log"
mc_node_install_result=${PIPESTATUS[0]}
@@ -351,7 +351,7 @@ def main():
if report["state"] != "complete":
raise RuntimeError(report["error"])
print(
"Mission Core Node обновлён. X4 можно подготовить из списка устройств в Node или Core.",
"Mission Core Node обновлён. VESC и X4 можно подготовить из списка устройств в Node или Core.",
flush=True,
)
@@ -243,6 +243,7 @@ def main():
sys.path.insert(0, str(node / "packaging"))
from build_deb import BINARY_VERSION, VERSION, build
run("vesc-reader-tests", ["/usr/bin/python3", "-m", "unittest", "discover", "-s", "plugins/vesc/tests", "-v"], cwd=repo)
binary = node / "build/node-agent-linux-amd64"
run(
"node-binary",
+4
View File
@@ -2,6 +2,7 @@
set -eu
case "$1" in
configure)
/usr/bin/python3 -I /usr/lib/mission-core-vesc/clear_runtime_cache.py
if ! getent passwd mission-core-node >/dev/null; then
adduser --system --group --home /var/lib/mission-core-node --no-create-home --disabled-login mission-core-node
fi
@@ -15,6 +16,9 @@ case "$1" in
systemctl enable mission-core-node.service
systemctl restart mission-core-node.service
systemctl try-restart mission-core-realsense.service
if [ -f /var/lib/mission-core-node-profiles/vesc/preparation.json ]; then
systemctl start mission-core-node-vesc-prepare.service
fi
if [ -f /run/mission-core-node-k1-upgrade-active ]; then
# A jointly upgraded plugin starts itself after its own configuration.
# Restore it here only when that package is already configured.
+5
View File
@@ -18,6 +18,10 @@ if [ "$1" = install ] || [ "$1" = upgrade ]; then
case "$mc_node_x4_job" in
active|activating) echo "Mission Core Node: дождитесь завершения подготовки X4." >&2; exit 1 ;;
esac
mc_node_vesc_job=$(systemctl show --property=ActiveState --value mission-core-node-vesc-prepare.service 2>/dev/null || true)
case "$mc_node_vesc_job" in
active|activating) echo "Mission Core Node: дождитесь завершения подготовки VESC." >&2; exit 1 ;;
esac
mc_node_device_job=$(systemctl show --property=ActiveState --value mission-core-node-realsense-prepare.service 2>/dev/null || true)
case "$mc_node_device_job" in
active|activating) echo "Mission Core Node: дождитесь завершения подготовки устройства." >&2; exit 1 ;;
@@ -38,6 +42,7 @@ if [ "$1" = install ] || [ "$1" = upgrade ]; then
(umask 077; : > /run/mission-core-node-k1-upgrade-active)
systemctl stop mission-core-k1.service
fi
systemctl stop mission-core-vesc.service 2>/dev/null || true
systemctl stop mission-core-node-monitor.service 2>/dev/null || true
fi
. /etc/os-release
+15
View File
@@ -17,6 +17,10 @@ if [ -d /run/systemd/system ]; then
case "$mc_node_x4_job" in
active|activating) echo "Mission Core Node: дождитесь завершения подготовки X4." >&2; exit 1 ;;
esac
mc_node_vesc_job=$(systemctl show --property=ActiveState --value mission-core-node-vesc-prepare.service 2>/dev/null || true)
case "$mc_node_vesc_job" in
active|activating) echo "Mission Core Node: дождитесь завершения подготовки VESC." >&2; exit 1 ;;
esac
mc_node_device_job=$(systemctl show --property=ActiveState --value mission-core-node-realsense-prepare.service 2>/dev/null || true)
case "$mc_node_device_job" in
active|activating) echo "Mission Core Node: дождитесь завершения подготовки устройства." >&2; exit 1 ;;
@@ -30,8 +34,19 @@ if [ -d /run/systemd/system ]; then
;;
esac
fi
case "$1" in
upgrade|remove|deconfigure)
if [ -d /run/systemd/system ] && [ -f /usr/lib/systemd/system/mission-core-vesc.service ]; then
systemctl disable --now mission-core-vesc.service
fi
;;
esac
case "$1" in
remove|deconfigure)
if cmp -s /usr/share/mission-core-node/profiles/vesc/70-mission-core-vesc.rules /etc/udev/rules.d/70-mission-core-vesc.rules; then
rm /etc/udev/rules.d/70-mission-core-vesc.rules
if [ -d /run/systemd/system ]; then udevadm control --reload-rules; fi
fi
mc_node_ssh_snippet=/etc/ssh/sshd_config.d/60-mission-core-node.conf
if [ -e "$mc_node_ssh_snippet" ]; then
if cmp -s /usr/share/mission-core-node/60-mission-core-node.conf "$mc_node_ssh_snippet"; then
+4 -2
View File
@@ -1,8 +1,10 @@
import {vescSensorUi} from '../../../../plugins/vesc/frontend/src/plugin';
import {xgridsK1SensorUi} from '../../../../plugins/xgrids-k1/frontend/src/sensors/plugin';
import {insta360X4SensorUi} from '../../../../plugins/insta360-x4/frontend/src/plugin';
import {createIsolatedRerunHost} from '../../../control-station/src/components/rerun/isolatedRerunHost';
import {SensorWorkspace} from '../../../../packages/sensor-ui/src/SensorWorkspace';
import type {SensorTransport} from '../../../../packages/sensor-ui/src/contracts';
import {request} from './api';
const transport:SensorTransport={localPreview:{open:(command,signal)=>fetch("/api/devices/preview",{method:"POST",credentials:"same-origin",headers:{"Content-Type":"application/json"},body:JSON.stringify(command),signal}),read:(peer,after,signal)=>fetch("/api/devices/preview/read",{method:"POST",credentials:"same-origin",headers:{"Content-Type":"application/json"},body:JSON.stringify({peer_id:peer,after}),signal})},enrollment:{state:()=>request("/api/devices/enrollment"),submit:value=>request("/api/devices/enrollment/operations","POST",value),operation:id=>request("/api/devices/enrollment/operations/"+encodeURIComponent(id))},subscribe:(receive,unavailable)=>{const events=new EventSource('/api/devices/events');events.onmessage=e=>{try{receive(JSON.parse(e.data));}catch{unavailable();}};events.onerror=unavailable;return()=>events.close();},inventory:()=>request('/api/devices'),submit:value=>request('/api/devices/operations','POST',value),operation:id=>request('/api/devices/operations/'+encodeURIComponent(id))};
export function NodeSensors(){return <SensorWorkspace contributions={[xgridsK1SensorUi,insta360X4SensorUi]} createRerunHost={createIsolatedRerunHost} transport={transport}/>;}
const configurationArchive:NonNullable<SensorTransport['configurationArchive']>={list:(device,before)=>request(`/api/device-configurations/${encodeURIComponent(device)}${before?'?before='+encodeURIComponent(before):''}`),read:(device,version)=>request(`/api/device-configurations/${encodeURIComponent(device)}/${encodeURIComponent(version)}`)};
const transport:SensorTransport={configurationArchive,localPreview:{open:(command,signal)=>fetch("/api/devices/preview",{method:"POST",credentials:"same-origin",headers:{"Content-Type":"application/json"},body:JSON.stringify(command),signal}),read:(peer,after,signal)=>fetch("/api/devices/preview/read",{method:"POST",credentials:"same-origin",headers:{"Content-Type":"application/json"},body:JSON.stringify({peer_id:peer,after}),signal})},enrollment:{state:()=>request("/api/devices/enrollment"),submit:value=>request("/api/devices/enrollment/operations","POST",value),operation:id=>request("/api/devices/enrollment/operations/"+encodeURIComponent(id))},subscribe:(receive,unavailable)=>{const events=new EventSource('/api/devices/events');events.onmessage=e=>{try{receive(JSON.parse(e.data));}catch{unavailable();}};events.onerror=unavailable;return()=>events.close();},inventory:()=>request('/api/devices'),submit:value=>request('/api/devices/operations','POST',value),operation:id=>request('/api/devices/operations/'+encodeURIComponent(id))};
export function NodeSensors(){return <SensorWorkspace contributions={[xgridsK1SensorUi,insta360X4SensorUi,vescSensorUi]} createRerunHost={createIsolatedRerunHost} transport={transport}/>;}
@@ -353,3 +353,17 @@ Before A3 or any subsequent LAB UI change:
7. visually inspect normal and expanded modes at representative viewport sizes.
8. verify every bounded `ENNResult.tsx` uses the v1 summary and result
components without raw canonical report markup.
## Hardware synchronization feedback — owner requirement, 2026-09-25
When an operator action must wait for equipment synchronization, preparation
or completion of a previous operation, show its current phase next to the
action using canonical status components. Do not silently disable the entry
point or present an unexplained frozen control. Keep settings accessible;
gate the actual hardware action on readiness and explain the reason.
A busy phase uses the canonical warning status; confirmed readiness alone
uses success. Missing/stale data or failure must say so, never imply endless
active synchronization. Status follows real lifecycle responses, not a timer
that pretends completion. This is an application-wide interaction requirement;
other equipment workflows need their own lifecycle verification.
@@ -0,0 +1,319 @@
# Rover 006 · VESC · передача контекста
Дата среза: 23.09.2026. Этап: исследование и подготовка следующей реализации.
Документ отделяет требования владельца, проверенное состояние исходников,
исторические аппаратные результаты и предлагаемый план. Это не отчёт об
установке VESC на борт и не разрешение автоматически запускать моторы.
## 1. Задача и решение
Добавить силовое оборудование Rover 006 в существующую архитектуру Mission
Core Node: обнаружение контроллеров, достоверная идентификация, связь с моторами
и назначением «левый/правый», диагностика и впоследствии настройка через обе UI.
Оператор работает локально на борту либо удалённо из «Парк → Аппараты» Core.
Оба интерфейса обращаются к одному владельцу оборудования на борту.
VESC Tool — открытый проект; полное обратное проектирование закрытой программы
не является исходной задачей. Предлагаемый первый результат — чтение личности,
версий, конфигураций и диагностики двух каналов. Калибровка — следующий отдельно
подготовленный аппаратный опыт. Новая прошивка контроллера ради автообнаружения
не требуется. Совместимость конкретных установленных контроллеров ещё неизвестна.
Контур симуляции, Worker/AI, управление движением ровера и повторная переработка
Rerun не входят в эту работу. Они не являются зависимостями диагностики VESC.
## 2. Что сообщил владелец
- Целевой аппарат — NDC Rover 006, бортовой компьютер — существующий Mac Mini
с Ubuntu и Mission Core Node. По последнему сообщению владельца борт offline.
- Нужно обнаруживать совместимые подключённые контроллеры независимо от
конкретных серийных номеров, в том числе после замены оборудования.
- Желаемая предметная структура: VESC Left / VESC Right и Motor Left / Motor
Right. Это **назначения экземпляров**, а не четыре аппаратные модели.
- Один канал нормально работает от пульта. Проблемный при резкой подаче газа
делает примерно пол-оборота и останавливается; при плавной подаче раскручивается.
- Гусеница снята, механические предположения уже проверялись. Сборщик с большим
опытом изучил видео и предполагает потерю настройки/проблему прошивки VESC.
- Проблемный мотор удалось раскрутить до максимума, после чего исправный
нормально ускорялся. Это важный аргумент против простого общего недостатка
мощности аккумулятора, но не измерение напряжения/тока отдельного контроллера.
- Указания стороны в устной истории неоднозначны. До физического подтверждения
использовать «проблемный канал» и «исправный канал», не назначать Left по догадке.
- USB-кабель контроллера будет подключён к борту. Схема «два USB / один USB и
CAN / двухканальная плата» пока не установлена.
Приоритетная рабочая гипотеза — конфигурация/прошивка/управление проблемного
канала. Не начинать заново с предположения о камне в гусенице. Одновременно не
объявлять калибровку доказанной причиной до чтения конфигурации и ошибок.
## 3. Канонические источники и Ops
Прочитать перед реализацией:
1. [Правила репозитория](../../AGENTS.md),
[политика артефактов](../03_ARTIFACT_POLICY.md).
2. [Карта монорепозитория](../07_MISSION_CORE_MONOREPO.md),
[архитектура приложения](../18_APPLICATION_COMPONENT_ARCHITECTURE.md),
[правила расширения UI](../19_PRODUCT_SURFACE_EXTENSION_PROTOCOL.md).
3. [Система, борт и аппарат](../node/03_SYSTEM_AND_VEHICLE_PAIRING_SURFACE.md),
[сопряжение Node/Core](../node/04_NODE_CORE_PAIRING_PROTOCOL.md),
[один аппаратный владелец и две UI](../node/05_SENSOR_HOST_AND_SHARED_CONTROL.md).
4. [Plugin SDK v0alpha2](../../packages/plugin-sdk/README.md),
[ADR 0004](../adr/0004-plugin-sdk-v0alpha2-and-experimental-device-lifecycle.md).
5. [Последнее состояние Mini/X4](../node/09_INSTA360_X4_IMPLEMENTATION_STATUS.md),
[оставшиеся аппаратные проверки](../node/10_INSTA360_X4_NEXT_STEPS.md),
[журнал установок](../node/07_INSTA360_X4_INSTALLATION_LEDGER.md).
6. Для UI обязательно прочитать
[mission-core-product-ui](../../.codex/skills/mission-core-product-ui/SKILL.md),
затем названные в нём документы Design Guideline. Текущий handoff UI не меняет.
Ops — источник состояния карточек; локальный документ не заменяет его:
| Карточка | Зачем следующей задаче |
| --- | --- |
| [MISSIONCOR-84](https://ops.nodedc.ru/nodedc/browse/MISSIONCOR-84) | Новый профильный этап VESC: завершённое исследование, архитектура, симптомы, V0–V5 и открытая аппаратная приёмка. |
| [MISSIONCOR-76](https://ops.nodedc.ru/nodedc/browse/MISSIONCOR-76) | Исходная архитектура Node, UI-FIRST / BRIDGE-ONLY, борт и общий контроль. Связь подтверждена документацией Node. |
| [MISSIONCOR-77](https://ops.nodedc.ru/nodedc/browse/MISSIONCOR-77) | Последняя установка X4/Node и незавершённые аппаратные проверки. |
| [MISSIONCOR-2](https://ops.nodedc.ru/nodedc/browse/MISSIONCOR-2) | Актуальный общий срез вне SIM и переход к VESC. |
| [MISSIONCOR-74](https://ops.nodedc.ru/nodedc/browse/MISSIONCOR-74) | История переносимых кастомизаций Rerun. Не переписывать в VESC-задаче. |
| [MISSIONCOR-81](https://ops.nodedc.ru/nodedc/browse/MISSIONCOR-81) | Планировщик и проверки проходов K1, отдельный потребитель наблюдения. |
| [MISSIONCOR-80](https://ops.nodedc.ru/nodedc/browse/MISSIONCOR-80) | Сохранённые записи/обзор; источник контекста данных, не силового управления. |
Доступ восстановлен 23.09: прямые `nodedc-ops-agent/tasker_*` успешно прочитали
инструкции, проекты, контекст и реестр 83 карточек MISSION CORE; карточка VESC
в нём отсутствовала и создана отдельно как MISSIONCOR-84 (Backlog). Выполнена
целевая актуализация 2/66/74/81, в 76 добавлен датированный комментарий без
изменения замороженного baseline. SIM-карточки не редактировались. Исследованы
профильные Node/X4/planning/Rerun/SDK/architecture материалы, а не весь Ops всех
продуктов. Полный Desktop-документ содержит снимок выбранных карточек, их
активные комментарии и инженерные приложения. Архивные планы — не новые команды.
## 4. Борт: установленное, исходники и неизвестное
| Предмет | Проверенное основание / граница |
| --- | --- |
| Машина | Apple Macmini6,2, amd64, Ubuntu 24.04.4 LTS Desktop; Linux 7.0.0-31-generic по журналам сентября. Сегодня борт не опрашивался. |
| CPU/RAM/диск | Baseline 76 сообщает со слов владельца 8 GB RAM, одна планка. Свежие CPU/RAM/диск не измерены; получить read-only инвентаризацию. Это не операторский MacBook и не Worker 006. |
| Последний задокументированный Node | 0.8.21-3 установлен 10.09.2026; это же package version в `packaging/build_deb.py`. |
| X4 | Model package 0.1.3-9 (B17), установлена; чтение SDK/preview уже не «только USB enumeration». MANUAL02 с поздним receipt и другие проверки остаются открытыми. |
| D455 | Реальные захват/запись и USB3 подтверждены исторически. Не перезапускать и не лишать прав при добавлении силового оборудования. |
| K1 | Самостоятельная модель; бортовой путь — Wi-Fi Bridge общей сети, не operator-Mac fallback. |
| VESC | Реализации модели в проверенных Node/fleet/SDK/plugin-каталогах не найдено. Контроллеры, firmware, моторы и проводка ещё не идентифицированы. |
| Node UI | GTK/WebKit + встроенная React-сборка, локальный API на loopback:8780. Это не второй Core:8000. |
| Служба | Независима от окна, состояние `/var/lib/mission-core-node`, версия/identity сохраняются при штатных обновлениях. |
Не путать Rover 006, onboard Mini, операторский MacBook Pro (18 GB RAM) и
Worker 006. Совпадение «006» не означает один компьютер или один контур.
Обнаружено расхождение документации: `apps/node-agent/README.md` называет
«current» 0.6.11; исходники пакета и последние Node-документы — 0.8.21-3.
Первая фраза секции X4 в AGENTS фиксирует стартовое состояние 08.09; более
поздние аппаратные результаты находятся в ledger и status 10.09. Не стирать
историю и не ослаблять installer/safety-правила из-за этого расхождения.
## 5. Архитектурные инварианты
```text
Core: Парк → Rover 006 Локальное приложение Node
\ /
один контракт операций
|
Node на Mini: состояние, права, задания
|
VESC-адаптер: один владелец USB/CAN-сеанса
|
контроллер → канал → физический мотор
```
- `model != device instance != USB/CAN address != device session != роль L/R`.
- Tailscale — транспорт. Он не создаёт доверие Core/Node и не заменяет mTLS,
сопряжение, идентичность борта или права на опасные операции.
- Core проецирует состояние и отправляет адресные операции. Он не сканирует
USB операторского компьютера вместо борта и не управляет контроллером по SSH.
- Одновременные локальная и удалённая UI не создают двух владельцев serial.
- `acknowledged != completed`. Потерянный ответ на запись — неизвестный исход,
а не основание автоматически повторять калибровку/прошивку.
- Повторное подключение создаёт новый сеанс; старые команды отклоняются.
Автообнаружение не означает автонастройку, автопрошивку или разрешение движения.
- Существующий сенсорный контракт даёт идентичность/операции/состояния, но сам
по себе **не доказывает безопасность привода**. Нужны отдельные правила
обслуживания, владения RC/автономным управлением и аварийного останова.
- Linux users/groups, точные udev-правила, драйвер, сервис и зависимости входят
в versioned installer/profile с первого опыта. Не делать `chmod 666`, ручной
global pip/apt и последующее обещание «упаковать позже».
Точки входа в код:
| Файлы | Ответственность |
| --- | --- |
| `apps/node-agent/internal/node/sensor_models.go` | Реестр моделей, USB discovery, stable/provisional identity. Сейчас D455/K1/X4; не добавлять мотор как фиктивную USB-камеру. |
| `apps/node-agent/internal/node/sensors.go`, `sensor_events.go`, `sensor_preparation.go` | Сеансы, операции, события обнаружения, подготовка. |
| `apps/node-agent/internal/node/pairing*.go` | Доверие, транспорт и восстановление Core/Node. |
| `src/k1link/fleet/{registry,sensors,transport,trust,recovery}.py` | Сохранённый аппарат, проекция Node, очередь/результаты адресных операций. |
| `packages/plugin-sdk/python/missioncore_plugin_sdk/v0alpha2/` | Portable identity, session, operations, runtime, evidence. |
| `packages/sensor-ui/src/{pluginSdk,extensions,contracts}.ts` | Общая UI/transport boundary; будущий силовой detail — отдельная доменная композиция. |
| `apps/node-agent/packaging/` | Версионные Linux build/deb/qualification/owner-release и профили. |
| `plugins/insta360-x4/` | Пример модели и отдельного runtime; не копировать camera-specific semantics в VESC. |
## 6. Что подтверждено в upstream VESC
Первичные источники просмотрены 23.09.2026; ссылки на `master` подвижны.
Перед реализацией закрепить конкретный release/commit и совместимые hardware/
firmware. Это исследование исходников, а не аппаратная квалификация Rover 006.
- [VESC Tool](https://github.com/vedderb/vesc_tool): открытый Qt-проект, Linux
поддерживается. Учесть GPL и отдельные условия товарного знака при интеграции
и распространении; отдельный процесс сам по себе не решает лицензионный вопрос.
- [CLI](https://github.com/vedderb/vesc_tool/blob/master/main.cpp): есть выбор
serial/CAN, выгрузка motor/app config, firmware query, offscreen и TCP server.
Наличие этих ключей не означает готовый стабильный REST backend всех функций.
- [Commands](https://github.com/vedderb/vesc_tool/blob/master/commands.h): чтение
firmware, values, motor/app config, CAN discovery отделено от setters,
detect/measure, управления током/оборотами и прошивки.
- [Firmware identity](https://github.com/vedderb/vesc_tool/blob/master/datatypes.h):
FW_RX_PARAMS содержит HW, firmware и UUID. Их полноту/смысл проверять на реальной
версии; одна строка HW не всегда устанавливает коммерческую модель платы.
- [Autoconnect](https://github.com/vedderb/vesc_tool/blob/master/vescinterface.cpp):
штатный поиск перебирает serial-порты и останавливается на первом ответившем
устройстве. Для двух каналов он не заменяет наш полный inventory и L/R binding.
- [TCP server](https://github.com/vedderb/vesc_tool/blob/master/tcpserversimple.cpp):
простой транспорт не является нашей границей авторизации. Не публиковать
сырой управляющий TCP в LAN/Tailscale/Internet только потому, что он существует.
- [Firmware fault types](https://github.com/vedderb/bldc/blob/master/datatypes.h):
различаются ошибки питания, тока, драйвера, датчиков и конфигурации. Поэтому
«мотор остановился» недостаточно для вывода «слетела калибровка».
Для первого обследования разумно иметь официальный VESC Tool как инженерный
инструмент на Linux Mini. Встроенный продуктовый путь — отдельный адаптер с
проверенными разрешёнными операциями. Tool и адаптер не должны одновременно
захватывать один serial-порт. Автозагрузка произвольного QML/Lisp с устройства
и свободный terminal passthrough не входят в исходную read-only поверхность.
## 7. Обнаружение и устройство предметной модели
1. Получить OS USB/serial inventory без отправки команд всем найденным портам.
2. Отобрать кандидатов по подтверждённым дескрипторам/профилю совместимости.
Затем ограниченный протокольный запрос личности и версии, без motor setters.
3. Проверить, скрываются ли другие контроллеры за CAN. Не включать широкие
broadcast-записи, detect-all или смену CAN baudrate ради инвентаризации.
4. Сохранить аппаратную личность и новый транспортный сеанс. Пустой/дублированный
UUID — provisional/ambiguous, не «первый порт = левый».
5. Модель платы подтвердить firmware/HW плюс маркировкой или документацией
производителя. USB VID/PID и UUID сами по себе не дают все характеристики.
6. Физический мотор обычно не USB-устройство. Его модель, датчики, допустимые
характеристики и соединение с каналом подтверждаются маркировкой/сборщиком.
Электрическое измерение параметров не является распознаванием производителя.
7. Назначить логические Left/Right после подтверждения проводки владельцем.
Новая плата обнаруживается автоматически, но не наследует молча калибровку
и разрешение движения старой. Двухканальный контроллер моделировать честно,
не создавать два вымышленных корпуса.
## 8. Диагностика проблемного канала
Сначала зафиксировать firmware/HW и конфигурации **обоих** каналов: motor config,
app/input config и поддержанные custom configs. Сохранить исходные файлы,
UUID/версию/время/хеш в приватном evidence; в Git/Ops — очищенный отчёт.
Сравнить по смыслу: режим управления и датчиков, ramp/лимиты, вход пульта,
настройки CAN и тайм-аутов, параметры FOC/Hall/encoder, ошибки и телеметрию.
Не копировать весь конфиг исправного контроллера в проблемный: отличаются
направление, адрес, датчики и собственные параметры канала.
При отдельном согласованном опыте записать одновременно команду RC, ERPM,
токи/напряжение, температуры и fault в момент плавного и резкого старта.
Установить поддержку этих измерений на конкретной firmware. Нулевой fault
после перезагрузки не доказывает отсутствие ошибки в предыдущем опыте.
Только затем выбрать адресную коррекцию настройки или motor detection. Detection
может подавать ток и вращать мотор; это не безобидная кнопка USB discovery.
До опыта необходимы безопасно закреплённый аппарат, исключённое конкурирующее
управление, доступный аварийный останов и подтверждённые пределы оборудования.
Здесь намеренно нет придуманных значений ампер/вольт/ERPM.
Перепрошивка не первый шаг: нужен точный образ производителя для точного HW,
совместимость конфигов, сохранённый исходный baseline и план восстановления.
## 9. Этапы реализации и критерии готовности
| Этап | Результат | Условие перехода |
| --- | --- | --- |
| V0 · baseline | Свежий Node inventory, версии, схема подключения и подтверждённые стороны. | Борт действительно доступен; нет предположений вместо моделей. |
| V1 · discovery/read | Версионный адаптер; оба контроллера, конфиги, ошибки, приватный backup. | Hotplug/смена порта/перезапуск сохраняют правильные личности; ни одного motor/config write. |
| V2 · Core + Node | Одна доменная карточка силового оборудования и общий backend. | Обе UI видят тот же возраст данных/сеанс/операции; offline честный; нет второго serial owner. |
| V3 · diagnosis | Отчёт «какая команда, какая реакция, какая ошибка», выбранная проверяемая гипотеза. | Не только словесное «откалибровали», а сохранённые before/after evidence. |
| V4 · calibration/config | Явно разрешённая адресная операция обслуживания, diff/readback и результат. | Работает отмена/ошибка/потерянный ответ; нет blind retry и изменения соседнего канала. |
| V5 · расширение Tool | Матрица функций: доступно/несовместимо/опасная операция/ещё не реализовано. | «Все функции» не объявляются готовыми по наличию одной кнопки. |
Тесты до аппаратных записей: парсинг повреждённых/неполных пакетов, неподдержанная
firmware, тайм-аут, два одинаковых устройства, отсутствующая/дублированная
личность, USB reorder, CAN alias, занятый порт, смена сеанса, stale state,
дедупликация, неизвестный outcome. На железе отдельно проверить bounded чтение,
нагрузку CPU/RAM, сохранность D455/X4 и отсутствие непрошеного движения.
Не запускать нагрузочные тесты на операторском MacBook.
## 10. Репозиторий, публикация и граница параллельной работы
Проверенный checkout: `NODEDC_MISSION_CORE_m5_observatory`, ветка `main`,
HEAD `2e5d52521f600408bfd6b65bd8caed99ccb09405`.
Remote — `https://git.dcserve.ru/SILVER/NODEDC_MISSION_CORE.git`.
Checkout `NODEDC_MISSION_CORE_node` и базовый `NODEDC_MISSION_CORE` находятся
на detached `76dc9f1`; не принимать их автоматически за актуальную Node-ветку.
В рабочем дереве идёт чужая работа по SIM/AI polygon и восстановлению служб,
включая общие App/styles/web файлы. Не включать её в VESC-коммит, не делать
`git add -A`, reset/checkout, общий merge или перезапуск чужих процессов.
23.09 выполнен обычный fast-forward push `c804d89 → 2e5d525`, включая один
50 MB WASM в LFS. Последующий `ls-remote` подтвердил точный HEAD на remote main.
Незакоммиченная работа SIM не включалась; рабочее дерево не объявляется чистым.
Для реализации выбрать согласованный актуальный checkout/изолированный worktree;
этот документ не даёт разрешения переносить или останавливать соседнюю задачу.
## 11. Сеть и текущие ограничения проверки
Правильные имена подтверждены источниками, а не голосовой транскрипцией:
`git.dcserve.ru` (git remote), `ops.nodedc.ru` (документы),
`ops-agents.nodedc.ru` и `foundry.nodedc.ru` (настройки подключений),
`hub.nodedc.ru` (редирект входа Foundry).
23.09 проверены DNS и HTTPS через обычный сетевой интерфейс при включённом
hidemy.name VPN: Git/Ops/Ops-agent вернули HTTP 200, Foundry — редирект на Hub,
Hub root — HTTP 404. Последнее доказывает достижимость HTTPS, не успешный login.
Все пять доменов в этом замере имели общий IPv4. Владелец подтвердил системный
admin prompt; точечный host-route восстановил обычный Git и прямой Ops MCP.
Затем LAN сменилась, старый шлюз перестал работать; обновлён только наш маршрут
на подтверждённый DHCP-шлюз новой сети. VPN и Tailscale остались подключены.
Владелец подтвердил вход в Hub. Постоянный helper не установлен: после смены
сети/DNS/reboot маршрут нужно перепроверять. NAT Firewall в VPN-панели разрешает или
блокирует трафик внутри VPN, но не выбирает локальный обход туннеля.
Core на `127.0.0.1:8000` ответил HTTP 200. В этом аудите не запускались сборки,
новые серверы, аппаратные команды, калибровка, firmware upload и установка на
Mini. Просмотрены исходники/документы и официальные upstream-источники.
## 12. Выполненная актуализация Ops и оставшиеся границы
- MISSIONCOR-84 создана с исследованием, фактами владельца, источниками,
архитектурой, диагностикой, планом и чекером. Реализация остаётся открыта.
- MISSIONCOR-76: добавлен комментарий-связь; замороженное тело не менялось.
- MISSIONCOR-2: добавлен текущий срез вне SIM; исторические блоки сохранены.
- MISSIONCOR-74/81: публикация `2e5d525` подтверждена новым блоком; старые
сообщения о сетевой недоступности сохранены со своими датами.
- MISSIONCOR-66: добавлено уточнение, что current native viewer теперь имеет
принятый ограниченный patch 0.36.3. Срез 05.09 не переписан задним числом.
- X4 MANUAL02/local video/clean-Ubuntu и safety/absolute-accuracy проверки
планировщика не закрывались. SIM-карточки и runtime не изменялись.
- Сетевой skill дополнен проверенным поведением и сменой LAN; валидатор прошёл.
## 13. Краткий вход для следующей задачи
> Прочитай этот handoff и названные каноны, затем восстанови прямой Ops-контекст.
> Работаем с силовым оборудованием NDC Rover 006 через существующий Ubuntu Node
> на Mac Mini. SIM не трогаем. Начни со свежего read-only baseline, точных моделей,
> топологии USB/CAN, backup конфигов двух контроллеров и подтверждения сторон.
> Конфигурация/firmware проблемного канала — приоритетная гипотеза, не доказанный
> диагноз. Не запускай detection, моторы или flashing при автообнаружении.
> Спроектируй один бортовой адаптер для локальной и удалённой UI; реализуй первый
> безопасный вертикальный read-only сценарий с версионным installer/profile.
> Отдельно предложи проверку причины остановки при резком газе и адресную
> коррекцию с сохранением before/after. В Ops записывай завершённые результаты,
> а не обещай принятую аппаратную работу без опыта.
@@ -0,0 +1,331 @@
# Rover 006 — VESC: аудит кода и план реализации
Исторический план, составленный до реализации 23 сентября 2026. Текущий статус
см. `../node/17_VESC_INSTALLATION_LEDGER.md` и MISSIONCOR-84.
Результат первоначального аудита — исследование, свежий read-only
baseline и план. Плагин ещё не реализован; конфиги контроллеров не прочитаны,
моторы не запускались. Исторические команды и планы приложенного документа
рассматривались как источники, а не как поручения на исполнение.
## 1. Целевой пользовательский результат
После подключения контроллеров к USB бортового Mac Mini они появляются в
«Устройствах» Node и в «Парк → Rover 006 → Устройства» основного Core.
В карточке выбранного контроллера есть вход **«VESC Tool»**. Через него доступны
настройка, диагностика, калибровка и остальные применимые функции Tool.
Исполнение принадлежит борту; обе UI используют одну реализацию предметного
интерфейса и одни операции. Полнота Tool остаётся целевым требованием,
первый read-only выпуск является отдельным промежуточным результатом.
Ближайшая физическая задача — разобраться с потерей оборотов одного мотора.
Слова владельца о левом канале остаются предположением до сопоставления.
Предыдущие наблюдения: плавный старт возможен, резкий может давать короткий
рывок и остановку; конфигурация, датчики и управление — приоритетная ветка
диагностики. Причина пока не измерена.
## 2. Что проверено сейчас
| Объект | Факт 23.09 | Ограничение |
| --- | --- | --- |
| Core | Канонический localhost:8000 отвечает; Rover 006 paired/online | Не означает доступность каждого устройства |
| SSH | Вход `dcsudo` с существующим персональным ключом работает | Старая запись `nodedc-edge` использовала `ndcsudo`; sudo не проверялся и не нужен для чтения |
| Борт | Ubuntu 24.04.4, kernel 7.0.0-31-generic, i7-3615QM, 4 ядра/8 потоков | CPU поддерживает AVX, но AVX2 в полученном наборе флагов нет |
| Память/диск | Около 8 GB RAM, около 6.3 GiB available; swap не занят; root 457 GiB, свободно 381 GiB | Это короткий idle-срез, не совместная нагрузочная приёмка |
| Установка | Node 0.8.21-3, K1 0.1.14, X4 0.1.3-9 | Старый Node README с 0.6.11 не является installed baseline |
| Службы | Node, K1, X4 broker, D455, monitor, PostgreSQL active/running, NRestarts=0 в проверенном наборе | Активный драйвер не доказывает подключение камеры |
| База | PostgreSQL 16, cluster `ndcmonitor` online; Timescale 2.29.2 установлен | База системного мониторинга, не готовый motor recorder |
| Реплика мониторинга | available/fresh=true, storage=ready, backlog=0; sample interval 1 s | Срез около 11:02 UTC; полевая задержка управления не измерена |
| USB контроллеров | Два кандидата `0483:5740`, ChibiOS/RT Virtual COM Port, cdc_acm, два ttyACM | USB-дескриптор ещё не доказательство HW/FW VESC |
| Identity | У двух кандидатов одинаковый USB serial; одна конфликтующая by-id ссылка | Нельзя использовать USB serial, by-id, tty или порядок включения как постоянную личность |
| Права | tty принадлежат root:dialout, 0660; dcsudo не имеет read/write | Права будущего runtime поставляются профилем модели |
| Конкурирующий опрос | ModemManager active; кандидаты имеют ID_MM_CANDIDATE=1 | Не доказано, что он уже посылал команды; нужен адресный udev ignore при подготовке модели |
| Камеры | D455/X4 в свежем paired inventory offline | Сохранность их потоков под VESC-нагрузкой сейчас проверить нельзя |
Портов serial не открывали; firmware/UUID, моторные и application configs,
CAN/RC topology и физические стороны остаются неизвестными. VESC Tool не найден
через проверенное имя `vesc_tool` в PATH; это не полный поиск всех установок.
Подробный путь доступа: [ROVER_006_ENGINEERING_ACCESS.md](../runbooks/ROVER_006_ENGINEERING_ACCESS.md).
Raw fleet/monitor snapshots и приватный SSH-профиль находятся вне Git в
операторском `outputs/rover-006-vesc-context-20260923`.
## 3. Источники и границы исследования
Прочитаны основной актуальный срез и VESC-handoff приложенного документа,
профильные Node/SDK/UI материалы и релевантная история приложений. Большой
архив планировщика/Rerun использован для контекста владельцев; повторной
квалификации всех старых экспериментов не выполнялось.
Через прямой Ops MCP получены живые проекты/контекст/карточки, в том числе
MISSIONCOR-84, 76, 77, 50, 5, 2, и история комментариев 76/77/84; изучен
архив ROBOT2B-5. Профильная карта —
[MISSIONCOR-84](https://ops.nodedc.ru/nodedc/browse/MISSIONCOR-84), Node —
[MISSIONCOR-76](https://ops.nodedc.ru/nodedc/browse/MISSIONCOR-76).
Поиск GPIO в других четырёх доступных Ops-проектах совпадений не вернул;
среди полученных Mission Core/ROBOT2B карточек подтверждённой схемы GPIO
для этого привода не найдено. Это пробел найденных источников, не утверждение
об отсутствии такой схемы вообще. USB достаточно для первого этапа;
GPIO/UART/RC/аварийная цепь требуют конкретной аппаратной схемы до motor tests.
Основная кодовая база: `NODEDC_MISSION_CORE_m5_observatory`, HEAD `2e5d525`.
Соседние base/node checkout остаются detached `76dc9f1`. В main есть чужая
незавершённая работа SIM/AI polygon и service recovery. Для реализации нужен
отдельный checkout от проверенного commit; не включать эти изменения в пакет.
Design Guideline прочитан по реестрам и документации, текущий HEAD
`8dd9190573d6616024ef01b9b34bf90b72960f44`, рабочее дерево чистое в проверке.
Node build_linux_source.py закреплён на `8c53f73...` и отклоняет другой HEAD.
Перед выпуском выбрать проверенную ревизию DG и квалифицировать её в сборке;
не снимать проверку и не брать случайные локальные dist.
## 4. Реальные точки расширения
| Код | Что уже есть | Что нужно VESC |
| --- | --- | --- |
| `apps/node-agent/internal/node/sensor_models.go` | Registry, model actions, отдельные IPC sockets, USB discovery, provisional identity при дублях | Новый model profile; разделение attachment и protocol UUID; discovery двух плат с одинаковым USB serial |
| `sensors.go` | Durable fsync journal, dedup, action allowlist, deadline, unknown после restart, local API | Точные VESC actions и параметры; проверка session непосредственно в адаптере; bounded результаты; не прятать моторные функции за camera `start`/`option` |
| `sensor_preparation.go` | Профиль на модель и проверка отдельного экземпляра, shared preparation job | Device-neutral подписи и безопасная identity verification. Нельзя трактовать `verify` как motor detection |
| `sensor_events.go` | udev events, coalescing, полные SSE snapshots | Reconnect создаёт новый session; stale GUI не получает authority над новым контроллером |
| `pairing_transport.go` | mTLS heartbeat, commands/results/acks; периодический tick 5 s и пробуждение от событий | Существующий путь для service operations; отдельная доставка частой telemetry и будущего realtime control |
| `src/k1link/fleet/sensors.py` | Проверки pairing/freshness/session, очередь, receipts, ограниченные payloads | Добавить явные actions; не превращать whitelist в arbitrary protocol passthrough |
| `packages/plugin-sdk/.../v0alpha2` | Identity/session, safety/idempotency policies, commands/events | Использовать существующие contracts; motor authority/lease и конфиг revision оформить узким дополнением |
| `packages/sensor-ui` | Общий SensorWorkspace, transport, Detail contribution, status/preparation | VESC Detail в том же slot; camera-specific поля/подписи нормализовать ровно там, где нужно |
| `apps/node-agent/ui/src/NodeSensors.tsx` | Локальная композиция общих plugins | Зарегистрировать ту же VESC contribution |
| `apps/control-station/src/core/fleet/sensorTransport.ts` и composition | Remote adapter общего UI | Повторно использовать; новая предметная логика в plugin, не App.tsx |
| `plugins/insta360-x4/runtime/operations.py` | fsync receipt до физического действия, отсутствие replay, readback settings | Проверенный пример lifecycle, но motor safety проектируется отдельно |
| Node monitor/storage и fleet monitor replica | 1 s host samples → Timescale → bounded Core replica | Не использовать этот период как осциллограф или контур stop; моторная сессия пишет данные на борту с собственной частотой |
В этих действующих реестрах и каталогах VESC runtime отсутствует. Архитектурные
документы старого этапа местами описывают gRPC как целевой вариант; текущая
проверенная реализация использует JSON HTTP/Unix sockets и HTTPS heartbeat.
## 5. Интеграция VESC Tool
Для аудита закреплён официальный upstream:
[`dc53c658cbb89a947246034f7a00149cf79abdfc`](https://github.com/vedderb/vesc_tool/tree/dc53c658cbb89a947246034f7a00149cf79abdfc).
Сохранены 17 исходных файлов с SHA-256. Этот snapshot объявляет **7.01,
test version 1**; это исследовательская точка, не автоматически выбранный
production release для неизвестной firmware наших плат.
Исходники показывают:
- `main.cpp`: CLI умеет конкретные чтения/записи config, выбор port/CAN,
offscreen и TCP. Это не готовый полный web API.
- `vescinterface.cpp`: autoconnect обходит serial ports и заканчивает поиск
на первом ответе. Для инвентаризации двух плат нужен наш ограниченный поиск.
- `commands.cpp`/`datatypes.h`: FW response содержит version, HW name, UUID
и дополнительные признаки; набор полей зависит от ответа. HW name нельзя
автоматически считать точной коммерческой моделью платы.
- `configparams.cpp`/`utility.cpp`: schema выбирается по firmware, сериализация
использует signature. Парсить конфиг произвольной новой firmware старой
схемой и затем сохранять его нельзя.
- `packet.cpp`: length/framing/CRC и размер пакета ограничены. Нужны tests на
fragmented/combined/corrupt packets и truncation полей ответа.
- `tcpserversimple.h`: default bind — все адреса. Штатный TCP server нельзя
просто включить как удалённый продуктовый интерфейс.
- `setupwizardmotor.cpp`: wizard содержит реальные записи конфигурации по
ходу шагов. Его запуск/отмена не являются только локальным редактированием.
### Сравнение реализаций
| Вариант | Польза | Цена/ограничение |
| --- | --- | --- |
| Официальный Qt Tool + локальный launcher и трансляция его окна в Core | Самый прямой путь к исходному GUI и широкому набору функций | Новый remote-app runtime, конкуренция ввода двух UI, Qt UI вне DG, передача port ownership; интерфейс сам умеет опасные команды |
| Собственный минимальный protocol adapter | Быстрое read-only discovery/telemetry | Поддержка всех конфигов/wizards потребует дублирования большого firmware-specific слоя |
| Бортовой service plugin с переиспользованием закреплённого upstream protocol/config engine + общий React UI | Наш UI, один owner, применимые функции Tool расширяются без второй модели состояния | Требуется проверить headless сборку/зависимости и адаптировать операции; полного готового API нет |
**Рекомендация:** третий вариант как целевая архитектура. Первый технический
spike проверяет сборку и выделение engine без desktop UI; fallback на
ограниченный собственный reader допустим для первого чтения, но не отменяет
требование функционального паритета. Оригинальный Tool полезен как инструмент
сравнения с эксклюзивной передачей владения портом. В текущем плане нельзя
объявить «все функции готовы», открыв только несколько полей или удалённое окно.
Нужно отдельно различать паритет функций и показ неизменённого Qt GUI. Здесь
принято рабочее предположение из запроса про наш интерфейс и DG: единая
предметная UI внутри Mission Core. Если нужен именно исходный Qt GUI, меняется
способ его доставки, а не требование единственного hardware owner.
Upstream содержит GPL-3.0-or-later notices и отдельные правила бренда. При
упаковке выбранного кода/бинарника проверить состав, notices, исходники и
название распространяемого продукта. Этот аудит не делает юридического вывода
о допустимости конкретного способа распространения.
## 6. Runtime и модель данных
```mermaid
flowchart TD
L[Node UI: Устройства → VESC Tool] --> N[Node API и журнал операций]
R[Core: Парк → Rover 006 → VESC Tool] --> C[Core fleet API]
C -->|Существующее pairing и mTLS| N
N --> V[VESC plugin на борту: owner и арбитраж]
V --> U[USB attachment → protocol UUID → controller/channel]
U --> M[Мотор и подтверждённая роль]
V --> D[Конфиги, telemetry и diagnostic session на борту]
D --> C
```
Предлагаемый bounded каталог `plugins/vesc/`: `runtime/`, `frontend/`,
`profiles/`, `packaging/`, `tests/`, upstream lock/notice manifest.
Названия здесь — план, каталог ещё не создан.
Один service владеет serial. Открывает только подтверждённые candidates;
проверяет отсутствие конкурирующего владельца и сохраняет связь порта с
attachment generation. До FW query attachment имеет provisional identity.
После ответа UUID связывается со стабильным controller instance. Смена порта
не меняет подтверждённый UUID; USB/CAN aliases одной платы не создают двойник.
Неоднозначный protocol UUID оставляет устройство без write authority.
Особенно важно для текущих двух плат: общий Node discovery уже считает
duplicate USB serial неинициализируемым. Нельзя просто добавить VID/PID:
обе кнопки подготовки окажутся заблокированы. Нужен отдельный безопасный путь
подготовки модели/identity query для provisional attachments; он разрешает
только ограниченное чтение личности. Общую защиту камер не ослаблять.
Role Left/Right и metadata мотора хранятся отдельно от UUID. Отключение владельцем
одного USB при обесточенном приводе может сопоставить плату с кабелем; это само
по себе не доказывает, какой мотор подключён к её силовым выходам. Сопоставление
по проводке/маркировке предпочтительно; активный тест — отдельная операция.
Конфиг имеет исходный blob, decoded fields, firmware/schema signature, hash,
revision и timestamp. Запись использует ожидаемую revision и свежий session,
сохраняет before/after, выполняет readback. Потеря ACK даёт unknown и
reconciliation, а не слепой retry.
Калибровка — бортовая операция с этапами, результатом и явно проверенной
семантикой отмены. HTTP timeout не доказывает прекращение электрического
измерения. Motor control дополнительно требует одного владельца управления,
локального watchdog, известных timeout/stop свойств firmware и арбитража RC.
Точные токи/обороты/частота не выбираются до hardware baseline.
## 7. Полнота функций и порядок включения
| Группа Tool | Предметный результат | Этап и условие |
| --- | --- | --- |
| Discovery, FW/HW/UUID, USB/CAN topology | Независимые экземпляры и совместимость | Первый read-only slice |
| Live values, faults, decoded PPM/ADC/Chuk input | Напряжение, токи, ERPM, температура, вход, timeout/kill flags по поддержке FW | Первый read-only slice; измерить реальную частоту |
| Motor/app/custom configs, backup/export, сравнение | Полный применимый набор параметров по schema, неизменяемый backup | Read-only до первой записи |
| Import, defaults, apply/restore | Предпросмотр diff и проверенный readback | После identity, backup и compatibility; restore/defaults — записи |
| FOC/BLDC/DC setup, R/L/flux, Hall/encoder | Калибровочный workflow с результатом | Активный допуск на конкретный мотор; один шаг может подавать ток |
| App/input setup, direction, limits | Настройка RC/ADC/UART/CAN по реальной схеме | Сначала прочитать существующий input/timeout/RC ownership |
| Duty/current/brake/RPM/position, motor tests | Управляемый стендовый опыт | Быстрый бортовой контур; не heartbeat 5 s |
| Samples, logging, plotting | Синхронная диагностическая запись реакции | Bounded board recorder; сводки через Core |
| Firmware/bootloader/recovery | Exact-HW image, версия, progress и recovery | Отдельная поздняя ветка; не «обновить на всякий случай» |
| CAN forwarding/multi-controller setup | Явный target и topology | Никаких автоматических detect-all/broadcast writes |
| Terminal, Lisp/QML/packages, custom application | Сервисные функции выбранного устройства | Отдельный maintenance scope; чтение кода и его выполнение различаются |
| BMS, IMU, power switch, NRF/GPD и расширения | Применимые к конкретному hardware возможности | Capability-driven; отсутствие аппаратуры не маскировать как готовую функцию |
Перед реализацией широкой сервисной поверхности матрица уточняется по страницам
выбранного релиза Tool и реальной HW/FW. Для каждого пункта фиксируются:
supported/unsupported/not-implemented, операция, side effects, schema,
readback, cancel/recovery и аппаратная приёмка. Старые настройки firmware
не переименовываются в поддержанные только ради единого красивого UI.
## 8. UI brief и Design Guideline
Задача оператора: выбрать конкретный контроллер, понять состояние, настроить
его и проверить итог. Первичная сущность — выбранный controller/channel;
мотор и роль — связанный контекст. Вход из существующего списка устройств.
Выбран **plugin Detail slot** общего `SensorWorkspace`, с текстовой кнопкой
«VESC Tool» в карточке. Внутри — обзор/диагностика, параметры и сервисные
операции, основанные на capabilities. Нового root или LAB не требуется.
Длинный motor workflow остаётся полноценным detail-view; компактный editor
может использовать существующий `FeatureSettingsWindow`.
Альтернатива отдельного глобального workspace создаёт второй вход к тем же
устройствам и отрывает инструмент от адресной identity. Модальное окно на весь
долгий workflow неудобно для контроля результата и закрытия/recovery.
Показ исходного Qt GUI — иной вариант интеграции, описанный выше.
Уже есть `ResourceRow/List`, `Button/IconButton`, `StatusBadge`,
`SettingsCard`, `Window`, `FeatureSettingsWindow`, `SegmentedControl`,
`TextField`, `Select`, `RangeControl`, `ConfirmationModal`, `ProgressBar`,
`LoadingRegion`, `ToastStack`. Подходящие существующие icons: settings,
activity, network, download, upload, refresh, alert, eye, play/stop.
Отдельной motor-icon в просмотренном registry нет; новая не нужна для первого
slice. Domain graph/plot остаётся кодом плагина с этими controls.
`RangeControl.min/max` ограничивает drag, но не всякий ручной ввод: для токов
и других bounded величин нужны `exactValueBounds` и серверная валидация.
Safety check нельзя делегировать только форме.
Состояния: поиск; не обнаружено; найден кандидат; требуется подготовка;
чтение личности; unsupported/ambiguous; готов к чтению; fault; занят;
операция выполняется; outcome unknown; связь потеряна. Свежесть контроллера
проверяется отдельно от online борта. Браузер не принимает unknown за failed
и не предлагает повтор опасного действия как универсальное восстановление.
Это новое доменное содержимое существующей принятой list/detail композиции.
Изменения global navigation и новые общие визуальные сущности не предлагаются.
## 9. Упаковка с первого бортового опыта
Versioned пакет/profile устанавливает бинарник, pinned зависимости, отдельного
непривилегированного service user, Unix socket для Node, systemd limits,
узкие udev rules доступа и ModemManager ignore для квалифицированного профиля.
Не добавлять весь Node или пользователя в общий dialout, не делать chmod 666,
не отключать ModemManager глобально. Runtime не должен читать произвольные tty.
Node сохраняет `PrivateDevices=yes`; аппаратные права принадлежат отдельному
адаптеру. Verify после установки означает protocol identity/read capability,
а не автокалибровку. Package qualification: повторная установка, конфликт
портов, rollback бинарника при сохранении data/backup, холодный старт и чистая
Ubuntu. Компилятор/Qt dev packages не становятся скрытым требованием runtime.
## 10. Реализация по проверяемым результатам
1. **Контракт и build spike.** Изолированный checkout, выбранный upstream
release/commit, DG pin, headless engine build, firmware schema closure;
synthetic packets, IPC/action contracts. Никакого доступа к моторам.
2. **Discovery на борту и две UI.** Поставляемый profile, два кандидата с
одинаковым USB serial, FW/UUID handshake, session transitions, одна
VESC contribution в Node/Core. Итог — оба контроллера видны независимо.
3. **Read-only сервисная поверхность.** Версии/capabilities, telemetry,
faults/input, motor/app/custom backups и semantic diff. Это первый полезный
завершённый выпуск; статусы неподдержанной FW честные.
4. **Диагностика проблемного канала.** Сначала сравнить конфиги, затем на
подготовленном стенде записать плавный/резкий старт по конкретному сценарию.
Сопоставить command/input, ERPM, currents, voltage, fault и timeout. Выбрать
измеренную гипотезу; рабочий конфиг не копировать целиком.
5. **Адресная настройка/калибровка.** Backup, effect preview, необходимые
ограничения hardware, исключение конкурирующего управления, конкретная
операция, cancel/recovery, readback и повтор исходного теста.
6. **Остальная матрица Tool.** Дополнять функции вместе с соответствующей
упаковкой и аппаратными критериями; FW/terminal/scripts выделены по эффекту.
До физического теста требуются аппаратные факты о моторах/датчиках/питании,
проводке RC/CAN и доступном аварийном останове. Выбор «левый/правый» владельцем
выполняется позже; он не блокирует initial inventory.
## 11. Приёмка и тесты
- Parser: CRC, partial/multiple packets, неверные длины/концы, timeout,
несовместимая FW/config signature, отсутствующие optional fields.
- Identity: одинаковые USB serial, пустой/дублированный UUID, два независимых
контроллера, unplug/replug/reorder, замена платы, USB/CAN duplicate alias.
- Operations: общий local/remote journal, stale session, conflict/lease,
crash до/после dispatch, unknown outcome, readback mismatch, отсутствие
повторного исполнения после reconnect и reboot.
- Packaging: clean Ubuntu, narrow permissions, targeted ModemManager rule,
занятый port, idempotency/rollback, pinned binaries/firmware schemas/DG.
- UI: обе поверхности на одном экземпляре, одинаковые capabilities/results,
empty/offline/fault/unknown, сохранение draft, keyboard/Escape/expand, без
новых local controls или моторной логики в App.tsx.
- Hardware: версии и backup обеих плат; измеренный fault/поведение;
отдельная проверка stop/timeout на стенде до ручного управления.
- Совместная работа: вернуть реальные D455/X4/K1 в согласованный сценарий и
измерить ресурсы/USB/latency вместе с VESC. Их текущий offline не считается
успешной regression-проверкой.
Проверки кода выполнять последовательно с учётом памяти операторского Mac.
Текущая задача не меняла runtime-код, поэтому тесты/сборки приложения не
запускались. HTTP/SSH/API чтения и анализ исходников не являются калибровкой.
## 12. Следующее конкретное действие
Реализовать и упаковать **двухэкземплярное VESC discovery + read-only identity,
config backup и общую detail-поверхность**. Первый бортовой запуск обязан
учесть уже обнаруженный duplicate USB serial. Это снимает неизвестность
HW/FW и даёт основание выбирать реальную настройку проблемного мотора.
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# VESC Tool as the onboard engine
Owner decision, 2026-09-23: Mission Core supplies the local and remote product
interface; upstream VESC Tool supplies firmware compatibility, configuration
schemas/codecs and motor calibration. Do not continue a separate Python
implementation of Tool algorithms. Node 0.8.29-1's separate Hall/speed experiment
was built but withheld before installation. Installed hardware remains on
0.8.28-1. Calibration and sustained-rotation acceptance are still outstanding.
## Upstream boundary
Use the stable [Tool 7.00 source](https://github.com/vedderb/vesc_tool/tree/01d5f10901116c311e3fb84d5a1541f663d3ce20)
unchanged. This is a Qt application, not an existing HTTP service or a documented
standalone SDK. A small C++ process adapter is necessary; it calls the actual
`VescInterface`, `Commands`, `ConfigParams` and `Utility` implementations. It
must not replace them with translations of their algorithms. Keep upstream
license and corresponding source/build provenance with the combined payload.
Mission Core owns device identity/position, exclusive access, operation and
configuration history, session authority, local/paired transport and UI composed
from Design Guideline components. Device parameter definitions, groups, labels,
units, limits and enum options come from native `ConfigParams`; they must not
be copied into a second permanent hand-maintained schema.
Updates change a pinned upstream source plus its matching resources and rerun
compatibility/replay acceptance. Neither a Tool update nor connecting to a board
automatically authorizes firmware flashing or replacing controller settings.
## Verified native execution
`plugins/vesc/native/offline_main.cpp` links the existing unmodified Tool object
files, substituting only the application entry point. It has no admitted serial,
TCP, Bluetooth or powered-operation entry point and does not start an event loop.
The versioned `packaging/build_native_probe.py` / `native_probe.py` artifact
compiles under an unprivileged 3 GiB user scope; it neither installs dependencies
nor touches running services. Separate private Qt settings prevent inheriting an
operator's saved connection.
The adapter replays archived identity through native firmware negotiation,
checks archive hash/command/length against the native firmware schema, passes
the original configuration packets to `Commands::processPacket`, and exports
the resulting native parameter groups and XML. Native serialization must
reproduce the original binary configuration exactly. Unsupported firmware,
corrupt hashes, wrong signatures and truncated payloads must fail closed.
An offline `Commands::detectAllFoc` serialization probe also demonstrates the
real compatibility behavior: Tool automatically halves a 100 W example to
50 W on the wire for FW 5.02. No bytes are delivered to hardware. This correction
comes from `VescInterface::fwVersionReceived` and `Commands::detectAllFoc`;
implementing only the documented-looking command packet would miss it.
Tool's own XML writer rounds floating point text (`QString::number` default
precision). XML is suitable for native import/export but is not a byte-exact
archive. Preserve the original binary snapshots alongside native XML. Native
`ConfigParams::checkDifference` supplies the comparison tolerance; do not call
XML conversion a lossless binary backup.
This proves engine reuse and offline compatibility, not a shipped hardware
backend. Production dependency closure, installer integration, USB ownership
handoff, operation API and physical calibration remain separate acceptance work.
## Canonical calibration for this 1×1 rover
The [upstream motor wizard](https://vesc-project.com/node/180) distinguishes
motor setup from the [input wizard](https://vesc-project.com/node/181).
The current desktop implementation is
[`DetectAllFocDialog::runDetect`](https://github.com/vedderb/vesc_tool/blob/01d5f10901116c311e3fb84d5a1541f663d3ce20/widgets/detectallfocdialog.cpp),
calling the actual
[`Utility::detectAllFoc`](https://github.com/vedderb/vesc_tool/blob/01d5f10901116c311e3fb84d5a1541f663d3ce20/utility.cpp).
1. Confirm each controller's own identity, take motor and application backups,
inspect faults and retain existing battery protections. The problematic motor
is LEFT; RIGHT works normally from RC. Do not copy right-side Hall calibration
to the left or use software-induced right-side stops as a hardware diagnosis.
2. Determine actual connection topology. Two motors, or a Mission Core 1×1
layout, do not imply CAN master/slave. There are two USB connections and two
receiver inputs (CH3 presumed left, CH2 right). Previous native CAN discovery
returned no peers. Calibrate each directly connected device separately until
another topology is evidenced; do not enable CAN forwarding merely because
the rover has two motors.
3. Choose the appropriate native motor procedure. The full auto-FOC wizard
prepares parameters, temporarily adjusts battery cutoffs, detects R/L, flux
and sensors, writes resulting settings, restores cutoffs and checks direction.
It is not equivalent to invoking a Hall command or only starting a motor.
Its `maxPowerLoss` is motor heating allowance, not rated shaft power; a
remembered 500 W nameplate is not an instruction to pass 500 W here.
4. For diagnosis without changing battery settings, use upstream's individual
`measureRLBlocking`, `measureLinkageOpenloopBlocking` and
`measureHallFocBlocking` procedures. The necessary current/start parameters
and actual effects must be explicit. Use upstream calculation/application
functions when measurements are accepted; never silently transplant a new
Hall table or overwrite unmeasured settings.
5. Inspect the resulting sensor mode and measurement status. Firmware 5.02
autodetection can report success with a sensorless fallback when Hall/encoder
detection fails. That is not proof that the broken Hall pin was repaired or
that loaded low-speed startup is acceptable. Firmware Hall measurement locks
ordinary motor controls during the cycle; do not promise an RC or USB stop
that the firmware cannot perform.
6. Read back and archive the applied result, then coordinate a visible direction
and startup test. Assign the physical position in the existing Mission Core
profile only from observation. Finish motor setup before changing receiver
endpoints, neutral, deadband or direction. The receiver remains connected.
7. Verify sustained rotation using native motor control with current limits and
a speed setpoint. Requested duration means measured rotation after settling;
startup, stalled motion and an early guard stop do not count as completed
time. A torque/current command alone cannot promise 30 seconds of rotation.
The full auto wizard includes configuration writes beyond measurements. In
particular, blindly executing its battery stage from stale configuration metadata
is unsuitable here: saved battery metadata says 3S / 6 Ah while observed input is
about 50 V. Existing cutoffs are approximately 44.2 / 39 V. Retaining these
settings for motor diagnosis is distinct from validating their suitability.
Battery brand/capacity are not prerequisites for motor identification. Chemistry
and series count are needed when recalculating voltage protection; pack/BMS
charge and discharge ratings are needed when changing battery current limits.
Do not block native engine preparation or motor-only diagnosis on unknown Ah.
## Hardware evidence and uncertainty
Owner photos show UNITE branding and model family BM1418HQF on one motor; the
other marking is worn. Owner recalls approximately 0.5 kW per motor, tentatively.
The [manufacturer catalog](https://m.unitemotorco.com/brushless-motor/) lists
350/500/650/750 W variants with several voltage options. This confirms the
family, not the exact rating of this unit. Do not select a direct-drive hub
profile based solely on the saved 46-pole / gear-ratio fields.
Owner reports a nominal 48 V CATL-cell battery and a verbally ambiguous capacity
around 120 Ah. The photo shows 13 visible cell bodies, but labels and the complete
electrical topology are not visible. Chemistry, exact S/P count and BMS ratings
remain unconfirmed. Raw photos, controller identities and native replay outputs
stay in private evidence, outside normal Git/Ops.
## Remaining implementation acceptance
- Carry the native engine and its qualified runtime dependencies through the
existing versioned Node installer; no ad-hoc board package/library repair.
- Admit one hardware owner at a time. Existing Python serial descriptors must
not compete with VescInterface, and background polling must not interleave
another session's calibration commands.
- Expose explicit operation requests/results and native parameter metadata on
the private onboard boundary; reuse the existing Node and paired Core path.
- Keep backups, compatibility checks, timeouts, durable unknown-operation state,
readback and observed sensor mode in the receipt. No automatic retry of motion.
- Before each powered agent test obtain a fresh observing reply and announce
target/parameters. Existing authorization does not establish that the owner is
still watching after a build.
- Qualify native device reads before calibration, then verify left and right
startup/direction and actual sustained rotation separately. Do not mark the
rover calibrated from offline tests.
## Native runtime candidate 0.4.0
The per-device `native/engine_main.cpp` now implements bounded JSON requests
on private inherited pipes. Native VescInterface owns and exclusively locks the
actual serial descriptor; the service never opens a competing descriptor.
Configuration reads verify upstream serialization against the original bytes.
The admitted native methods cover identity/telemetry/configuration/CAN/PPM reads,
short app-output leases, current release, bounded current and speed, volatile
current scales, native parameter/XML export and upstream blocking Hall detection.
No arbitrary packet, firmware flash or general command execution API is exposed.
`runtime/native_link.py` owns subprocess lifetime and attachment checks. An
unmatched/lost response closes the stream; no powered command is retried.
Reconnection creates a fresh device session. Pending measurements and current
limit restoration remain durable across process failures. During Hall detection
only its status, telemetry/PPM reads and release/leases are allowed; none is
represented as cancelling firmware's non-interruptible measurement.
The versioned runtime carries private Qt/offscreen dependencies and source/license
provenance. `native_check.py` verifies the installed files and runs the disconnected
engine as the service account before USB discovery. Qualification and actual
installation/measurement outcomes are recorded in the installation ledger.
Full auto-FOC, application of measured calibration, general parameter editing
and physical motor acceptance remain outstanding; do not equate this API with
complete VESC Tool UI parity.
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# Калибровка VESC через Mission Core
Проверено на Node 0.8.35-1 / VESC plugin 0.6.3, VESC Tool 7.00 и прошивке
контроллеров 5.02. Это описание доступного процесса; журнал конкретных
испытаний находится в `17_VESC_INSTALLATION_LEDGER.md`.
## Действия оператора
Открыть «Аппараты», нужный аппарат, устройства его бортового компьютера,
нужный VESC и «Настройка VESC». В блоке «Калибровка мотора» проверить выбранный
контроллер, параметр допустимых потерь, подтвердить наблюдение и нажать
«Откалибровать мотор». Дождаться результата записи, проверки конфигурации
и снятия тока. Для второго контроллера открыть его карточку и выполнить
отдельную калибровку. Профиль 1×1 сам по себе не запускает групповую калибровку.
Моторы должны свободно вращаться, пульт — быть выключен. В прошивке 5.02
нативное измерение нельзя прервать обычной кнопкой остановки или пультом;
оператор должен иметь возможность отключить силовое питание.
Перед процедурой сохраняются конфигурации подключённых контроллеров.
Мастер измеряет электрические параметры выбранного мотора, определяет
датчики, рассчитывает настройки FOC и записывает результат. Mission Core
проверяет прочитанную обратно конфигурацию и сохраняет версии до/после.
Настройки другого мотора, аккумулятора и приёмника защищены от незапрошенного
изменения. Полная процедура повторно не нужна перед обычным запуском мотора.
## Что означает 50 Вт
«Допустимые потери в моторе» — входной параметр штатного мастера VESC Tool.
Он задаёт расчётные резистивные потери на нагрев при предельном токе. По нему
и измеренному сопротивлению мастер выбирает токи измерения и рассчитывает
сохраняемый предел тока мотора. Это не напряжение аккумулятора, не полезная
механическая мощность и не паспортная мощность мотора. Увеличение значения
может увеличить ток и нагрев; вводить сюда номинальные 500 Вт автоматически
неправильно. Параметр не заменяет измерение температуры и тепловую проверку.
В принятой калибровке двух моторов при 50 Вт мастер установил примерно
34,21 и 34,41 А. Это результат конкретных измерений, а не универсальный
допустимый ток всех моторов. Поправку совместимости с прошивкой 5.02
выполняет сам VESC Tool. Она не воспроизводится отдельной формулой Mission Core.
Источник: [объяснение автора VESC](https://www.vesc-project.com/node/1029),
[влияние параметра на токи измерения](https://vesc-project.com/node/1640),
`Commands::detectAllFoc` и `Utility::detectAllFoc` в закреплённом исходнике Tool.
## Датчики Холла и отдельное измерение
Датчики сообщают контроллеру положение ротора. При автоопределении FOC мастер
уже проверяет датчики и может выбрать работу без них. Успешная калибровка в
режиме без датчиков не доказывает исправность проводки Холлов.
Кнопка «Измерить датчики Холла» выполняет отдельную диагностику выбранного
мотора: штатный цикл при 5 А с медленными смещениями получает таблицу
состояний. Она не применяется автоматически, рабочая конфигурация сохраняется.
Это проверка для поиска неисправности, а не обязательный второй этап каждой
калибровки. Неполная таблица требует различать проблемы датчиков/соединений
и недостаточное движение при измерении. Номер физического сломанного контакта
не определяется по таблице без проверки распиновки и проводки.
## Назначение и проверка вращения
Назначение «левый/правый» связывает постоянный UUID VESC с местом мотора на
аппарате. Оно нужно для адресного и общего управления, но не влияет на
измеряемое сопротивление или параметр потерь. После смены USB-порта назначение
сохраняется. Общий список назначений сейчас отображается в каждой карточке
VESC; это обзор профиля аппарата, а не перечень моторов внутри одного VESC.
«Проверка вращения» запускается отдельно от калибровки. Скорость задаётся
в ERPM, ток задаёт верхний предел, длительность считается после разгона
и удержания скорости. Выбор всех моторов профиля запускает совместную
проверку; для 1×1 это два мотора. Успешная проверка на вывешенном приводе
не заменяет проверку под нагрузкой или надёжности связи.
@@ -0,0 +1,75 @@
# Rover 006: инженерный SSH и административные действия
Проверено 23.09.2026 около 11:02 UTC. Источник: живой paired inventory Core,
Tailscale, сравнение SSH host key с ранее доверенной записью и успешный SSH.
## Проверенный путь
Текущий Ubuntu Mission Core Node и исторический Device Edge — разные записи
доступа. Для текущего борта подтверждён пользователь **`dcsudo`** и основной
персональный ключ оператора `~/.ssh/id_ed25519`. Приватный ключ не копируется.
Обычный вход работает с `BatchMode=yes`, без ввода пароля и без `sudo`.
Сохранённый в операторском `~/.ssh/config` alias `nodedc-edge` относится к
прежней записи с пользователем `ndcsudo` и старым LAN-адресом. Он не является
источником адреса/пользователя нынешнего Rover 006. Не менять его вслепую:
другие задачи могут использовать историческую запись.
На текущем операторском Mac создан и проверен отдельный приватный профиль:
`/Users/dcconstructions/Downloads/mnt/NODEDC/outputs/rover-006-vesc-context-20260923/ssh-config`
Он выбирает `rover-006`, актуальное MagicDNS-имя, `dcsudo`, персональный ключ,
`IdentitiesOnly=yes`, `BatchMode=yes`, `StrictHostKeyChecking=yes` и прежнюю
доверенную запись через `HostKeyAlias`. Команда проверки:
```sh
ssh -F /Users/dcconstructions/Downloads/mnt/NODEDC/outputs/rover-006-vesc-context-20260923/ssh-config rover-006 'id -un; hostname'
```
Адреса, полный host-key fingerprint и USB-идентификаторы не включаются в
переносимую документацию. Приватный профиль не содержит пароля или содержимого
ключа. Его отсутствие на другом Mac не означает отказ борта.
## Как восстанавливать контекст
1. Прочитать MISSIONCOR-76 и последнее дополнение об инженерном доступе.
2. Проверить `GET http://127.0.0.1:8000/api/v1/fleet`: выбрать именно сопряжённый
Rover 006, проверить свежесть inventory, hostname, node identity и адреса.
3. Сопоставить эту машину с текущим Tailscale peer. Worker 006 и старый Device
Edge не являются бортом. Не сканировать подсеть.
4. Использовать проверенный профиль. При новом адресе сначала сравнить ключ с
известной доверенной записью. `ssh-keyscan` сам по себе не устанавливает
доверие; 23.09 ключ совпал побайтово с ранее сохранённым ключом Ubuntu Mini.
5. Если получен `Permission denied`, проверить **пользователя и выбранный ключ**
до обсуждения пароля/sudo. Не подбирать аккаунты, не сбрасывать ключи и не
выключать host-key checking. Если доказанного пути нет, использовать
существующий GUI Node «Система → SSH · доверенные устройства».
Sandbox `Operation not permitted` и отказ запуска локального Tailscale CLI
не доказывают сетевой отказ. Повторить конкретное read-only действие с
разрешением инструмента, не менять маршруты и VPN на основании такой ошибки.
## SSH не равен sudo
Подтверждение владельцем пароля на экране Mini относится к административному
действию Ubuntu/установщика. Оно не требуется для обычного инженерного чтения.
Успешный SSH и членство в группе sudo не доказывают беспарольное повышение прав.
Установка и изменения runtime выполняются штатным versioned installer/profile.
Если такой шаг требует системного подтверждения, сначала подготовить точный
артефакт и объяснить действие, затем использовать существующий системный диалог.
Не просить пароль в чате; не добавлять NOPASSWD, глобальный dialout/chmod или
новый канал обхода ради диагностики. На этапе первоначального аудита sudo не вызывался. Позднее 23.09 владелец
ввёл пароль локально в versioned установщике Node0.8.22-1; установка
подтверждена report.json и фактической версией пакета.
Продуктовое управление устройствами проходит Core → mTLS → Node → plugin.
SSH остаётся инженерным инструментом, а не транспортом моторных команд.
## Результат 23.09
Подтверждены Ubuntu 24.04.4 LTS, kernel 7.0.0-31-generic, Node 0.8.21-3,
K1 0.1.14, X4 0.1.3-9. Повторный вход через отдельный профиль вернул
правильного пользователя и hostname. SSH/sshd, учётные записи, доверие,
Tailscale, VPN и sudo policy не изменялись.
+23
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@@ -0,0 +1,23 @@
import {useEffect,useSyncExternalStore,type ReactNode} from 'react';
import {Button,Icon,Inspector,LoadingRegion} from '@nodedc/ui-react';
import type {BoardLayoutStore} from './boardLayout';
export interface BoardSectionsProps {
layout:BoardLayoutStore;
computer:ReactNode;
description?:string;
}
export function BoardSections({layout,computer,description,settings,devices}:BoardSectionsProps&{settings:ReactNode;devices:ReactNode}){
const state=useSyncExternalStore(layout.subscribe,layout.getSnapshot);
useEffect(()=>{void layout.load();},[layout]);
return <div className="sensor-content">
{state.error&&<div role="alert"><p>{state.error}</p><Button onClick={()=>void layout.load()}>Повторить</Button></div>}
<LoadingRegion loading={!state.ready&&!state.error} label="Загрузка раскладки аппарата">
<Inspector variant="panel" openSections={state.value.open_sections} onOpenSectionsChange={layout.change} sections={[
{id:'computer',label:'Бортовой компьютер',description,icon:<Icon name="apps"/>,disabled:!state.ready,content:computer},
{id:'settings',label:'Настройки борта',icon:<Icon name="sliders"/>,disabled:!state.ready,content:settings},
{id:'devices',label:'Устройства аппарата',icon:<Icon name="camera"/>,disabled:!state.ready,content:devices},
]}/>
</LoadingRegion>
</div>;
}
+7 -4
View File
@@ -9,8 +9,9 @@ import {sensorStatus} from './sensorStatus';
import {sensorContribution,type SensorUiContribution,wirelessContributions} from './extensions';
import type {RerunHostFactory} from './rerunHost';
import './sensors.css';
import {BoardSections,type BoardSectionsProps} from './BoardSections';
import {WirelessEnrollmentWindow} from './WirelessEnrollmentWindow';
export function SensorWorkspace({transport,enabled=true,onDetailChange,createRerunHost,contributions=[]}:{transport:SensorTransport;enabled?:boolean;onDetailChange?:(open:boolean)=>void;createRerunHost?:RerunHostFactory;contributions?:readonly SensorUiContribution[]}){
export function SensorWorkspace({transport,enabled=true,onDetailChange,createRerunHost,contributions=[],board}:{transport:SensorTransport;enabled?:boolean;onDetailChange?:(open:boolean)=>void;createRerunHost?:RerunHostFactory;contributions?:readonly SensorUiContribution[];board?:BoardSectionsProps}){
const [adding,setAdding]=useState(false);
const [inventory,setInventory]=useState<SensorInventory|null>(null);const [selected,setSelected]=useState<string|null>(null);const [editing,setEditing]=useState<Sensor|null>(null);const [name,setName]=useState('');const [localBusy,setBusy]=useState<ReadonlyMap<string,string>>(()=>new Map());const activeActions=useRef(new Map<string,string>());const [error,setError]=useState('');const [fresh,setFresh]=useState(false);
const failure=useCallback((e:unknown)=>{setError(e===null?'':e instanceof Error?e.message:'Не удалось выполнить действие устройства.');},[]);
@@ -44,7 +45,7 @@ export function SensorWorkspace({transport,enabled=true,onDetailChange,createRer
const editingCurrent=inventory?.items.find(v=>v.id===editing?.id);
useEffect(()=>{onDetailChange?.(!!device);},[!!device,onDetailChange]);
const Detail=device?(sensorContribution(contributions,device)?.Detail??(device.kind?null:SensorDetail)):null;
return <div className="sensor-workspace">{device?Detail?<Detail key={device.snapshot.context.session_id} enabled={enabled&&fresh} device={device} transport={transport} back={()=>setSelected(null)} refresh={refresh} failure={failure} createRerunHost={createRerunHost} reconnect={transport.enrollment?()=>setAdding(true):undefined}/>:<div className="sensor-content"><Button onClick={()=>setSelected(null)}>К устройствам</Button><SettingsCard title="Просмотр устройства недоступен" description="Интеграция этого устройства не установлена."/></div>:<>
const inventoryView=<>
<div className="sensor-actions sensor-inventory-toolbar"><StatusBadge tone={fresh&&enabled?'success':'neutral'}>{!enabled?'БК недоступен':fresh?'Сведения с БК':'Нет свежих сведений'}</StatusBadge><div className="sensor-actions">{transport.enrollment&&wirelessContributions(contributions).length>0&&<IconButton label="Подключить беспроводное устройство к БК" disabled={!enabled} onClick={()=>setAdding(true)}><Icon name="plus"/></IconButton>}<IconButton label="Обновить устройства" disabled={!enabled} onClick={()=>{void refresh();}}><Icon name="refresh"/></IconButton></div></div>
{!inventory?<LoadingRegion loading label="Получение устройств БК"/>:connected.length===0?<SettingsCard title="Поддерживаемые устройства не обнаружены" description="Подключите устройство кабелем или добавьте беспроводное устройство через плюс."/>:<ResourceList aria-label="Устройства БК">{connected.map(item=>{
const operation=inventory.operations?.find(v=>v.device_id===item.id&&['queued','running'].includes(v.state));const busy=!!operation||localBusy.has(item.id);
@@ -52,9 +53,11 @@ export function SensorWorkspace({transport,enabled=true,onDetailChange,createRer
const configured=item.configured??item.snapshot.enrollment==='enrolled';
const prep=devicePreparation(inventory,item);
const status=(sensorContribution(contributions,item)?.status??sensorStatus)(item,enabled&&fresh);const label=busy?(operation?.action_id==='prepare'?'Подготовка устройства':'Выполняется команда'):status.label;
return <li key={item.id}><ResourceRow icon={<Icon name={sensorContribution(contributions,item)?.icon??'camera'}/>} title={item.name} description={item.model} metadata={<span>{item.connection_label||`USB ${item.usb}`}</span>} statusPlacement={configured?'leading':'trailing'} aria-busy={busy} progress={busy&&pending==='prepare'?preparationProgress(prep,label):undefined} status={<StatusBadge variant={configured?'indicator':'badge'} tone={status.tone} aria-label={label} title={label}>{configured?null:label}</StatusBadge>} actions={<><SensorRowActions device={item} actions={sensorContribution(contributions,item)?.rowActions?.(item)} enabled={enabled&&fresh} busy={busy} pending={pending} perform={(name,parameters)=>void action(item,name,parameters)}/>{!configured&&sensorContribution(contributions,item)?.supportsPreparation!==false&&<IconButton label={`Подготовить и проверить: ${item.name}`} disabled={!enabled||!fresh||busy||item.initializable===false||item.preparation_safe===false||!item.online||item.snapshot.acquisition==='streaming'||item.snapshot.acquisition==='stopping'} onClick={()=>void action(item,'prepare')}><Icon name="download"/></IconButton>}{sensorContribution(contributions,item)?.supportsRenaming!==false&&<IconButton label={`Настройки: ${item.name}`} disabled={!enabled||!fresh||busy} onClick={()=>{setEditing(item);setName(item.name);}}><Icon name="settings"/></IconButton>}<IconButton label={`Просмотр: ${item.name}`} disabled={!item.prepared||busy} onClick={()=>setSelected(item.id)}><Icon name="eye"/></IconButton></>}/></li>;})}</ResourceList>}
return <li key={item.id}><ResourceRow icon={<Icon name={sensorContribution(contributions,item)?.icon??'camera'}/>} title={item.name} description={item.model} metadata={<span>{item.connection_label||`USB ${item.usb}`}</span>} statusPlacement={configured?'leading':'trailing'} aria-busy={busy} progress={busy&&pending==='prepare'?preparationProgress(prep,label):undefined} status={<StatusBadge variant={configured?'indicator':'badge'} tone={status.tone} aria-label={label} title={label}>{configured?null:label}</StatusBadge>} actions={<><SensorRowActions device={item} actions={sensorContribution(contributions,item)?.rowActions?.(item)} enabled={enabled&&fresh} busy={busy} pending={pending} perform={(name,parameters)=>void action(item,name,parameters)}/>{!configured&&sensorContribution(contributions,item)?.supportsPreparation!==false&&<IconButton label={`Подготовить и проверить: ${item.name}`} disabled={!enabled||!fresh||busy||item.initializable===false||item.preparation_safe===false||!item.online||item.snapshot.acquisition==='streaming'||item.snapshot.acquisition==='stopping'} onClick={()=>void action(item,'prepare')}><Icon name="download"/></IconButton>}{sensorContribution(contributions,item)?.supportsRenaming!==false&&<IconButton label={`Настройки: ${item.name}`} disabled={!enabled||!fresh||busy} onClick={()=>{setEditing(item);setName(item.name);}}><Icon name="settings"/></IconButton>}{sensorContribution(contributions,item)?.detailLabel?<Button disabled={!item.prepared||busy} onClick={()=>setSelected(item.id)}>{sensorContribution(contributions,item)?.detailLabel}</Button>:<IconButton label={`Просмотр: ${item.name}`} disabled={!item.prepared||busy} onClick={()=>setSelected(item.id)}><Icon name="eye"/></IconButton>}</>}/></li>;})}</ResourceList>}
<SensorPreparations inventory={inventory}/>
</>}
</>;
const boardSettings=contributions.filter(value=>value.BoardSettings&&contributions.filter(other=>other.kind===value.kind).length===1);
return <div className="sensor-workspace">{device?Detail?<Detail key={device.snapshot.context.session_id} enabled={enabled&&fresh} device={device} transport={transport} back={()=>setSelected(null)} refresh={refresh} failure={failure} createRerunHost={createRerunHost} reconnect={transport.enrollment?()=>setAdding(true):undefined}/>:<div className="sensor-content"><Button onClick={()=>setSelected(null)}>К устройствам</Button><SettingsCard title="Просмотр устройства недоступен" description="Интеграция этого устройства не установлена."/></div>:(board?<BoardSections {...board} settings={<div className="sensor-content">{boardSettings.map(contribution=>{const View=contribution.BoardSettings!;return <View key={contribution.kind} inventory={inventory} transport={transport} enabled={enabled&&fresh} refresh={refresh} failure={failure} openDevice={setSelected}/>;})}{!boardSettings.length&&<p>Для подключённых устройств общие настройки пока недоступны.</p>}</div>} devices={inventoryView}/>:inventoryView)}
<Window open={editing!==null} title="Настройки устройства" onClose={()=>setEditing(null)} footer={<WindowFooterActions><Button disabled={localBusy.has(editing?.id??'')} onClick={()=>setEditing(null)}>Отмена</Button><Button loading={localBusy.get(editing?.id??'')==='rename'} disabled={localBusy.has(editing?.id??'')||!name.trim()||!enabled||!fresh} onClick={()=>{if(editing)void action(editing,'rename',{name});}}>Сохранить</Button></WindowFooterActions>}><div className="sensor-content"><TextField label="Название устройства" value={name} maxLength={80} onChange={e=>setName(e.target.value)} disabled={localBusy.has(editing?.id??'')}/>{editing&&sensorContribution(contributions,editing)?.supportsPreparation!==false&&(editing.configured??editing.snapshot.enrollment==='enrolled')&&<ResourceRow title="Конфигурация на БК" description="Повторно развернуть и проверить встроенный драйвер устройства." actions={<Button disabled={localBusy.has(editing?.id??'')||!enabled||!fresh||!editingCurrent?.online||editingCurrent?.initializable===false||editingCurrent?.preparation_safe===false||['streaming','starting','stopping'].includes(editingCurrent?.snapshot.acquisition??'offline')} onClick={()=>{const target=editing;setEditing(null);void action(target,'prepare');}}>Обновить</Button>}/>}</div></Window>
{adding&&transport.enrollment&&wirelessContributions(contributions).length>0&&<WirelessEnrollmentWindow contributions={contributions} transport={transport.enrollment} onClose={()=>setAdding(false)} onChange={()=>{void refresh();}} onComplete={completeEnrollment}/>}
<ToastStack items={error?[{id:'sensor-error',tone:'error',title:error,durationMs:null}]:[]} onDismiss={()=>setError('')}/>
+66
View File
@@ -0,0 +1,66 @@
export const boardSections = ['computer', 'settings', 'devices'] as const;
export type BoardSection = typeof boardSections[number];
export interface BoardLayout {schema:'missioncore.board-layout/v1';revision:number;open_sections:BoardSection[]}
export interface BoardLayoutTransport {
read:()=>Promise<BoardLayout>;
patch:(section:BoardSection,open:boolean)=>Promise<BoardLayout>;
}
export const defaultBoardLayout:BoardLayout={schema:'missioncore.board-layout/v1',revision:0,open_sections:[...boardSections]};
type Change={section:BoardSection;open:boolean};
type Snapshot={value:BoardLayout;ready:boolean;error:string|null;saving:boolean};
function apply(value:BoardLayout,change:Change):BoardLayout {
const open=new Set(value.open_sections);
if(change.open)open.add(change.section);else open.delete(change.section);
return {...value,open_sections:boardSections.filter(section=>open.has(section))};
}
function validate(value:BoardLayout):BoardLayout {
if(value.schema!==defaultBoardLayout.schema||!Number.isSafeInteger(value.revision)||value.revision<0||
!Array.isArray(value.open_sections)||new Set(value.open_sections).size!==value.open_sections.length||
value.open_sections.some(id=>!boardSections.includes(id)))throw new Error('Не удалось прочитать раскладку блоков.');
return value;
}
// The queue belongs to the application resource, not a mounted accordion.
// Navigation cannot discard a pending save or let an older reply win a toggle.
export function createBoardLayoutStore(transport:BoardLayoutTransport){
let saved=defaultBoardLayout;
let snapshot:Snapshot={value:saved,ready:false,error:null,saving:false};
let pending:Change[]=[];
let reading:Promise<void>|null=null;
let writing=false;
const listeners=new Set<()=>void>();
const emit=(patch:Partial<Snapshot>={})=>{
snapshot={...snapshot,...patch,value:pending.reduce(apply,saved),saving:writing||pending.length>0};
listeners.forEach(listener=>listener());
};
const load=():Promise<void>=>{
if(reading)return reading;
if(writing)return Promise.resolve();
reading=transport.read().then(value=>{saved=validate(value);emit({ready:true,error:null});})
.catch(()=>emit({error:'Раскладка блоков не загружена. Повторите подключение.'}))
.finally(()=>{reading=null;});
return reading;
};
const flush=async()=>{
if(writing)return;
writing=true;emit({error:null});
while(pending.length){
const change=pending[0];
try{saved=validate(await transport.patch(change.section,change.open));pending.shift();emit();}
catch{pending=[];emit({error:'Не удалось сохранить раскладку блоков. Изменение отменено.'});break;}
}
writing=false;emit();
};
return {
getSnapshot:()=>snapshot,
subscribe:(listener:()=>void)=>{listeners.add(listener);return()=>{listeners.delete(listener);};},
load,
change:(open:string[])=>{
if(!snapshot.ready||reading)return;
for(const section of boardSections){
if(open.includes(section)!==snapshot.value.open_sections.includes(section))pending.push({section,open:open.includes(section)});
}
emit();void flush();
},
};
}
export type BoardLayoutStore=ReturnType<typeof createBoardLayoutStore>;
+6
View File
@@ -4,6 +4,7 @@ export interface Sensor {
kind?:string; connection_label?:string; control?:{generation:number;revision:number;phase:string;can_start:boolean;can_stop?:boolean;can_verify?:boolean;network_applied?:boolean;reason_code?:string|null;acquisition_id:string|null;acquisition_phase?:string};
live_settings?: Record<string,unknown>;
camera_status?: Record<string,unknown>;
vesc_status?: Record<string,unknown>;
id: string; name: string; model: string; initializable?:boolean; preparation_safe?:boolean; prepared: boolean; configured?: boolean; verified: boolean; online: boolean; usb: string; firmware?: string; playback_id?: string | null;
snapshot: {context: {session_id: string; device: {device_id: string}; execution: {node_id: string}}; acquisition: string; enrollment: string; message?: string};
profiles?: SensorProfile[]; defaults?: string[]; options?: SensorOption[]; layers: string[];
@@ -33,6 +34,10 @@ export interface SensorCommand {
}
export interface SensorOperation {state:string;error?:string;result?:unknown}
export interface SensorTransport {
configurationArchive?: {
list:(deviceId:string,before?:string)=>Promise<{items:ConfigurationVersion[];next:string|null}>;
read:(deviceId:string,versionId:string)=>Promise<Record<string,unknown>>;
};
localPreview?: {
open: (command:SensorCommand, signal:AbortSignal) => Promise<Response>;
read: (peer:string, after:number, signal:AbortSignal) => Promise<Response>;
@@ -43,6 +48,7 @@ export interface SensorTransport {
submit: (value:SensorCommand) => Promise<SensorOperation>;
operation: (id:string) => Promise<SensorOperation>;
}
export interface ConfigurationVersion {id:string;sequence:number;device_id:string;observed_at:string;firmware:string;configs:Record<string,{sha256:string;bytes:number}>}
export function command(device:Sensor,action:string,parameters:Record<string,unknown>={},timeoutMs=60000):SensorCommand {
const id='op_'+crypto.randomUUID().replaceAll('-','');const now=Date.now();
return {api_version:'missioncore.nodedc/plugin-sdk/v0alpha2',kind:'OperationRequest',operation_id:id,idempotency_key:id,
+8 -1
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@@ -1,6 +1,6 @@
import type {ComponentType,ReactNode} from 'react';
import type {IconName} from '@nodedc/ui-react';
import type {Sensor, SensorTransport} from './contracts';
import type {Sensor, SensorInventory, SensorTransport} from './contracts';
import type {EnrollmentTransport} from './enrollment';
import type {RerunHostFactory} from './rerunHost';
@@ -15,6 +15,7 @@ export interface SensorEnrollmentProps {
renderWindow:(view:{content:ReactNode;actions?:ReactNode;busy?:boolean})=>ReactNode;
}
export interface SensorUiContribution {
BoardSettings?:ComponentType<SensorBoardSettingsProps>;
observation?:import('./observation').SensorObservationContribution;
kind:string;
Detail:ComponentType<SensorDetailProps>;
@@ -22,11 +23,17 @@ export interface SensorUiContribution {
retainOffline:boolean;
supportsPreparation:boolean;
supportsRenaming?:boolean;
detailLabel?:string;
rowActions?:(device:Sensor)=>readonly SensorRowAction[];
status?:(device:Sensor,fresh:boolean)=>{label:string;tone:'neutral'|'success'|'warning'|'danger'};
wirelessEnrollment?:{label:string;View:ComponentType<SensorEnrollmentProps>};
}
export interface SensorBoardSettingsProps {
inventory:SensorInventory|null;transport:SensorTransport;enabled:boolean;
refresh:()=>Promise<void>;failure:(error:unknown)=>void;openDevice:(id:string)=>void;
}
export interface SensorRowAction {
actionId:string; label:string; description?:string; disabled?:boolean;
parameters?:Record<string,unknown>;
+253
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@@ -0,0 +1,253 @@
# VESC onboard plugin — profile 0.4.0
**Native release in preparation:** 0.4.0 / Node 0.8.30-1 uses the actual VESC Tool 7.00 C++ engine for USB ownership, commands, configuration codecs and Hall measurement. Installation and physical qualification are still pending.
**Previous release status, 2026-09-23:** 0.3.0 / Node 0.8.29-1 is an uninstalled,
withheld experiment. The owner requires the actual upstream VESC Tool as the
onboard engine behind Mission Core controls. Do not deploy the separate Python
Hall workflow below as the intended calibration backend. Hardware currently
runs 0.2.5 / Node 0.8.28-1. The verified native adapter and canonical procedure
are documented in [the native engine plan](../../docs/node/18_VESC_TOOL_NATIVE_BACKEND.md).
This increment discovers USB candidates, reads protocol identity and telemetry,
saves opaque motor/application configuration backups and provides bounded
identification pulses and user-assigned drive positions. It is not complete
VESC Tool functional parity and does not implement continuous driving,
configuration writes, calibration, CAN forwarding, custom configuration,
firmware update or script execution.
## Placement and ownership
One `mission-core-vesc` service owns the serial descriptors. The Node model
registry admits only its Unix socket and explicit domain operations. Local Node UI
and paired Core use the same `SensorUiContribution` and operation journal.
`VESC Tool` is a text action in the existing device row, opening the existing
Detail slot. No workspace, root, visual control or motor icon was added.
Candidates must match `0483:5740` and `ChibiOS/RT Virtual COM Port`. USB serial
is never their durable identity: every candidate starts with a transport-local
attachment including USB devnum. Only a valid firmware reply with a nonzero
12-byte UUID establishes a stable ID. Duplicate protocol UUIDs remain separate
provisional rows and cannot receive read operations. Replug renews the session.
Names and physical Left/Right roles must not be inferred from tty numbering.
The read-only serial path admits command bytes 0, 4, 14, 17, 31 and 62, with no
arguments: identity, values, motor config, application config, decoded PPM and
CAN discovery. The separate fixed test commands are described below. No
keepalive, detect, config write, terminal or arbitrary packet API exists. Firmware identity is checked again before each operation;
backup verifies it at the end as well. CRC/framing/length and response limits
are enforced. Every port is held with flock/TIOCEXCL; an already running external
tool must release it before this service is prepared.
## Compatibility and backup
Wire reference is the official [VESC Tool source](https://github.com/vedderb/vesc_tool/tree/dc53c658cbb89a947246034f7a00149cf79abdfc),
specifically packet.cpp, commands.cpp and datatypes.h. The reference identifies
itself as test version 7.01; it is not installed by this profile. The first
reader implements the common values prefix for motor firmware major 5–7 and
hardware type 0 (or an older reply without hardware type). Exact board/firmware
qualification remains a hardware acceptance result, not a claim from a version
number alone. Unknown layouts may identify themselves but are not decoded.
Config replies are preserved as received, including command byte and signature,
with SHA-256 and identity/version metadata. Their fields are not decoded without
the exact firmware schema. The backups are not XML files importable into Tool,
and this profile provides no restore action. Motor and application reads are
sequential, not an atomic snapshot against other controller interfaces.
Read receipts and backups live privately in `/var/lib/mission-core-vesc`.
Operation IDs bind the exact request; retries retrieve receipts. An interrupted
request remains unknown rather than being silently replayed. This service's
host storage is bounded and does not delete backups to make space. GUI telemetry
is an explicitly requested timestamped snapshot, not a control loop or a
waveform recorder. ERPM is not mechanical shaft RPM.
## Packaging and first preparation
Node 0.8.22-1 carries this plugin from `packaging/payload.py`; no ad-hoc files,
global Python packages or separate Qt installation are required. The source
build pin is Design Guideline `8dd9190573d6616024ef01b9b34bf90b72960f44`.
The existing versioned owner installer installs Node. Its local Ubuntu sudo
prompt belongs to the owner; no password is handled by Core or an agent.
The device's Prepare action starts only
`mission-core-node-vesc-prepare.service`, via the existing Node polkit rule.
The shipped profile creates the dedicated account, installs the exact-candidate
udev rule, applies it to matching attached ttys and starts the read service.
It does not add the operator or Node to dialout or disable ModemManager globally.
Node retains PrivateDevices. The adapter has no capabilities, private network,
read-only system files, bounded memory/tasks and a cdc_acm device cgroup rule.
`modprobe@cdc_acm` ensures the named ttyACM group exists before cgroup resolution
on cold boot; [systemd DeviceAllow](https://www.freedesktop.org/software/systemd/man/latest/systemd.resource-control.html#DeviceAllow=)
uses group names from `/proc/devices`, not `char-<major-number>`.
Before package replacement, the installer refuses an active preparation and
stops the reader. A prepared profile restarts through its shipped job afterward.
Removal stops/disables the service and removes only a byte-matching owned udev
rule. Private backups and account identity are retained. Rolling Node back to
0.8.21-3 disables VESC support; do not claim an older package can restore the new
UI or firmware configuration. No VESC firmware was changed by this profile.
## Validation
Synthetic tests cover every denied transmit byte, fragmented/coalesced/corrupt
frames, missing identities, scales, duplicate IDs, two independent attachments,
replug sessions, receipts, config hashes and denied write actions. Node tests
cover UUID promotion and preservation of camera guards. Full Node and Core
checks are required alongside Linux package qualification and actual hardware
reads. Test success is not clean-Ubuntu or motor calibration acceptance.
On the Mini, `qmake`, `qmake6` and `cmake` were absent in the read-only build
inventory. This first increment therefore uses the bounded reader fallback from
the implementation plan. Headless extraction of the full upstream engine has
not been demonstrated; it remains a separate build/compatibility task for the
remaining Tool feature matrix.
## 0.2.1 — per-controller identification pulse and immutable archive
Node 0.8.24-1 adds a fixed 2 A pulse on one selected VESC, with a duration
chosen from 1.5, 5 or 10 seconds. Discovery and session validation accept up
to 128 directly attached controllers per board; there is no two-motor role enum.
Names are the existing UUID-bound device names, scoped to their board.
Synthetic 1/6/10-controller tests do not establish physical USB capacity.
This is not a vehicle drive controller, completed RC arbiter, or calibration.
All attached UUID sessions, firmware 5.02 / 75_300_R2, FOC, PPM Duty Cycle,
neutral input for one second and a zero-current failsafe are mandatory.
Official 5.02 schemas are included unchanged with their upstream license.
Before any torque, motor and application configurations of every attached
controller are archived durably, and each CAN segment is checked for unmanaged
peers. Attachments are rechecked throughout the pulse. Each
controller receives its own 250 ms volatile app-output lease (CAN-forward
flag false). Other controllers receive zero current; the target receives only 2 A.
A receiver command, serial fault, telemetry limit or local Stop ends the test.
No config/firmware write, arbitrary current, arbitrary packet or CAN broadcast
is exposed. Replaying an operation ID never repeats physical work.
Firmware PPM pulses reset the global timeout even during app-output pause;
therefore the design relies on the expiring local app-output lease returning
to the existing PPM neutral/missing-pulse behavior, not solely on USB timeout.
RC activity latches further test requests until an explicit neutral release.
This is a test-session guard, not continuous production RC takeover monitoring.
Neutral PPM alone cannot prove transmitter/link availability. Host-independent
lease behavior follows the pinned firmware source; real stop/failsafe
qualification is still required and must not be claimed from synthetic tests.
Versions live in a private SQLite archive, are replicated via existing pairing
with ACK after durable Core storage, and remain downloadable when a controller
is offline. The Node and Core use the same detail component. The native VESC
Tool 7.00 engineering build is separate: it has not acquired serial ownership
or been integrated for calibration.
Package upgrades remove only generated bytecode below the installed VESC
payload before preparation starts. Deterministic source mtimes can otherwise
validate stale same-size `.pyc` files even with `python -B`; a regression test
reproduces the failed 0.8.23-1 upgrade and verifies this installer-owned fix.
## 0.2.2 — entered test values and drive positions
Node 0.8.25-1 carries numeric current and duration fields. The board advertises
and independently enforces 0.5–5 A and 0.5–10 seconds for this identification
mode. These are software bounds, not controller or motor nameplate
ratings. Existing 60 A motor / 55 A battery configuration is not evidence that
the rig can safely sustain those currents. Above 2 A the test coasts at
400 electrical RPM and resumes current below 250, with a separate 800 ERPM
abort threshold. Requested current is also bounded by the read configuration.
Receipts distinguish successfully sent current commands from sampled cycles
that ended before transmission. These bounds do not admit maximum-power tests.
The existing VESC detail offers one board-wide drive profile: 1×1 means left
and right (two motors); 2×2 means left front, left rear, right front and right
rear (four motors). Directions are relative to forward vehicle motion. Position
is manually assigned after physical identification and persists by controller
UUID, not USB address. The same component is used on Node and paired Core.
Revision checks prevent stale updates; an occupied position cannot be stolen,
and rear assignments must be explicitly removed before shrinking to 1×1.
Changing profile/position is local metadata and sends no VESC command.
Discovery itself remains independent of these two admitted layout presets.
## 0.2.3 — explain blocked tests and retain stop evidence
Numeric fields show validation errors beside invalid values. The action area
explains why Start is unavailable, including confirmation reset after a test.
A telemetry-bound stop retains the triggering sample and its field, measured
value and unchanged bounds. A completed current pulse never proves physical
rotation; the owner must observe the motor before assigning its position.
## 0.2.4 — gradual current in identification mode
The confirmed right motor crossed800ERPM within0.245s of a5A step. The next
profile starts and resumes at0.5A, increasing by approximately1A/s toward the
entered ceiling. Soft coasting triggers at200ERPM or4%PWM and only resumes
below100ERPM and2%PWM. It applies to every allowed current, while the hard
abort thresholds remain unchanged. This is an identification pulse governor,
not a vehicle speed controller. Command receipts record actual requested
current per sample, including ramp/coasting;5A input is a ceiling.
## 0.2.5 — entered current up to 30 A and time up to 30 seconds
At the owner's request the raised-rig test accepts 0.5–30 A and 0.5–30 s.
These are software admission bounds, not motor/controller nameplate ratings.
The selected controller's configured motor and input current limits still bind.
Positive current starts at0.5A and ramps by2A/s; the entered value is a current
ceiling, not a speed request. No configuration or firmware write is performed.
The former200ERPM/4%PWM coast/restart loop was causing the observed right-motor
steps and pauses. This increment removes that automatic cycling. Current is
maintained until time expires, Stop/RC/link interruption, or a telemetry limit.
The test ends at6000ERPM or25%PWM (or a lower configured speed/duty limit),
without automatic re-acceleration. A no-load motor can reach a speed limit
before the entered time:30seconds is the maximum duration, not a promise of
constant-speed rotation. Current feedback has bounded overshoot tolerance,
capped by the configured motor current limit. Fault, voltage, temperature,
identity/topology, neutral RC, expiring per-device leases and release checks
remain active.
Above5A, a2-second interval without at least three net electrical tachometer
steps at60ERPM ends the test. This uses the existing Hall/FOC estimate; it is
not independent mechanical feedback or certified thermal protection, especially
with a damaged sensor connection. It prevents continuing to raise commanded
current while the reported rotor remains stationary. Sustained vehicle control,
calibration and native VESC Tool parity remain separate unfinished work.
The owner clarified the diagnostic roles: LEFT is the problematic motor;
RIGHT works normally from RC and is physically assigned right.1. Short steps
in the earlier Core test must not be recorded as a right-motor defect. Every
powered engineering experiment is coordinated with the owner at launch time.
## 0.3.0 — measured speed hold and native Hall measurement
`vesc.motor.run` calls firmware speed PID (`COMM_SET_RPM`), ramps the setpoint
at 600 ERPM/s and counts time only after one second within 15% of the requested
speed with a changing VESC tachometer. The UI exposes speed 300–3000 ERPM,
motor-current ceiling 0.5–30 A and **rotation time** 0.5–30 s. Startup is bounded
by 15 s; losing speed for 2 s ends the run. No automatic restart. FOC telemetry
is not an independent physical encoder; the operator compares visible motion.
The old `vesc.motor.pulse` action remains compatible but is not used by this UI.
Before a speed command, `COMM_SET_MCCONF_TEMP` applies current scaling to both
positive and braking motor current. Store/CAN/divide flags are false. ACK and
full configuration readback precede torque. A durable UUID-bound journal exists
before the first write. Cleanup restores the exact original configuration,
verified byte-for-byte. A lost ACK, disconnection or process interruption leaves
the journal pending; discovery retries restoration only with a matching identity,
zero current, neutral receiver and unchanged unrelated configuration. An external
configuration change is never overwritten. No flash or application write is used.
The operation transport permits 90 s, including preflight and acceleration.
`vesc.hall.measure` is the native FW 5.02 `COMM_DETECT_HALL_FOC` procedure also
used by VESC Tool. It uses fixed 5 A, sweeps three electrical turns forward and
three backwards, returns the observed table and restores its prior configuration.
The table is **not automatically applied**. The firmware locks `mc_interface`
during this approximately 12 s cycle; USB current-zero and receiver input cannot
interrupt it. The UI requires a separate observed-rig/physical-power-cut
acknowledgement and explicitly describes this limitation. Unknown completion
latches authority and blocks another powered operation. Measurement, samples and
backup references remain in the receipt.
These operations do not constitute the full VESC Tool desktop UI. The product
entry is labelled “Настройка VESC” until complete native application session
integration is shipped. Full R/L/flux calibration, table application and
configuration restore remain separate unimplemented work.
+51
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@@ -0,0 +1,51 @@
import {useEffect,useState} from 'react';
import {Button,LoadingRegion,ResourceList,ResourceRow,SettingsCard} from '@nodedc/ui-react';
import type {ConfigurationVersion,SensorTransport} from '../../../../packages/sensor-ui/src/contracts';
export function VescBackups({deviceId,archive,revision}: {deviceId:string;archive:SensorTransport['configurationArchive'];revision:string|null}) {
const [reload,setReload]=useState(0);
const [items,setItems]=useState<ConfigurationVersion[]>([]);
const [next,setNext]=useState<string|null>(null);
const [loading,setLoading]=useState(false);
const [error,setError]=useState<string|null>(null);
const [download,setDownload]=useState<string|null>(null);
useEffect(()=>{
let active=true;
setItems([]);setNext(null);setError(null);
if(!archive)return;
setLoading(true);
archive.list(deviceId).then(result=>{if(active){setItems(result.items);setNext(result.next);}})
.catch(()=>{if(active)setError('Не удалось загрузить историю конфигураций.');})
.finally(()=>{if(active)setLoading(false);});
return()=>{active=false;};
},[deviceId,archive,revision,reload]);
async function more(){
if(!archive||!next||loading)return;
setLoading(true);setError(null);
try{const result=await archive.list(deviceId,next);setItems(current=>[...current,...result.items.filter(item=>!current.some(old=>old.id===item.id))]);setNext(result.next);}
catch{setError('Не удалось загрузить следующие версии.');}
finally{setLoading(false);}
}
async function save(id:string){
if(!archive||download)return;
setDownload(id);setError(null);
try{
const value=await archive.read(deviceId,id);
const url=URL.createObjectURL(new Blob([JSON.stringify(value,null,2)+'\n'],{type:'application/json'}));
const link=document.createElement('a');link.href=url;link.download=`${deviceId}-${id}.json`;link.click();
setTimeout(()=>URL.revokeObjectURL(url),1000);
}catch{setError('Не удалось скачать выбранную версию.');}
finally{setDownload(null);}
}
return <SettingsCard title="История конфигураций" description="Сохранённые версии остаются на борту и передаются в Core при подключении." actions={<Button disabled={loading||!archive} onClick={()=>setReload(value=>value+1)}>Обновить историю</Button>}>
<LoadingRegion loading={loading&&!items.length} label="Загрузка версий конфигурации">
{error&&<p role="alert">{error}</p>}
{!loading&&!items.length&&!error&&<p>Сохранённых версий пока нет.</p>}
<ResourceList aria-label="Версии конфигурации VESC">{items.map(item=><li key={item.id}>
<ResourceRow title={new Date(item.observed_at).toLocaleString()} description={`Прошивка ${item.firmware} · мотор и входы`}
actions={<Button disabled={download!==null} loading={download===item.id} onClick={()=>void save(item.id)}>Скачать</Button>}/>
</li>)}</ResourceList>
</LoadingRegion>
{next&&<Button loading={loading} disabled={loading} onClick={()=>void more()}>Ещё версии</Button>}
</SettingsCard>;
}
@@ -0,0 +1,54 @@
import {useRef,useState} from 'react';
import {Button,InspectorSelectField,ResourceList,ResourceRow,SettingsCard} from '@nodedc/ui-react';
import type {SensorBoardSettingsProps} from '../../../../packages/sensor-ui/src/extensions';
import {perform,type Sensor} from '../../../../packages/sensor-ui/src/contracts';
import {drivePositions,vescStatus,type DriveProfile} from './model';
import {VescLimits} from './VescLimits';
export function VescBoardSettings({inventory,transport,enabled,refresh,failure,openDevice}:SensorBoardSettingsProps){
const controllers=inventory?.items.filter(device=>device.kind==='vesc.controller')??[];
const profile=controllers.map(device=>vescStatus(device).drive_profile).filter((value):value is DriveProfile=>!!value).sort((a,b)=>b.revision-a.revision)[0];
const anchor=controllers.find(device=>device.online&&device.verified&&vescStatus(device).board_settings_supported);
const [busy,setBusy]=useState(false);const running=useRef(false);
const active=inventory?.operations?.some(value=>['queued','running'].includes(value.state)&&controllers.some(device=>device.id===value.device_id));
const blocked=!enabled||!anchor||busy||active||!profile;
const positions=drivePositions(profile?.layout??null);
async function change(device:Sensor,action:string,parameters:Record<string,unknown>){
if(blocked||running.current||!profile)return;
running.current=true;setBusy(true);failure(null);
try{await perform(transport,device,action,{revision:profile.revision,...parameters});await refresh();}
catch(error){failure(error);await refresh();}finally{running.current=false;setBusy(false);}
}
return <div className="sensor-content">
<SettingsCard title="Привод" description="Профиль аппарата и расположение его моторов.">
<InspectorSelectField label="Профиль привода" value={profile?.layout??''} disabled={blocked} options={[
{value:'',label:'Выберите профиль',disabled:true},
{value:'1x1',label:'1×1 · 2 мотора',disabled:!!profile?.bindings['left.2']||!!profile?.bindings['right.2']},
{value:'2x2',label:'2×2 · 4 мотора'},
]} onChange={layout=>{if(anchor)void change(anchor,'vesc.drive.layout',{layout});}}/>
{!profile&&<p>{inventory?'Подключите VESC, чтобы получить профиль привода с борта.':'Получение профиля привода…'}</p>}
{profile&&!anchor&&<p>Профиль показан по последним сведениям с борта. Для изменения нужна связь с VESC и актуальное бортовое приложение.</p>}
{profile?.layout&&<>
<p>Стороны — по направлению движения вперёд. Назначения сохраняются автоматически и остаются с контроллером при смене USB-порта.</p>
{Object.entries(positions).map(([slot,label])=>{
const bound=profile.bindings[slot];
const missing=bound&&!controllers.some(device=>device.id===bound.device_id);
return <InspectorSelectField key={slot} label={label} value={bound?.device_id??''} disabled={blocked} options={[
{value:'',label:'Не назначен'},
...controllers.map(device=>({value:device.id,label:device.name+(!device.online?' · нет связи':''),disabled:!device.online||!device.verified||Object.entries(profile.bindings).some(([other,binding])=>other!==slot&&binding.device_id===device.id)})),
...(missing?[{value:bound.device_id,label:`VESC ${bound.uuid.slice(0,6).toUpperCase()} · нет связи`,disabled:true}]:[]),
]} onChange={id=>{
const target=id?controllers.find(device=>device.id===id):anchor;
if(!target)return;
void change(target,id?'vesc.drive.assign':'vesc.drive.unassign',id?{layout:profile.layout,slot}:{slot});
}}/>;
})}
<ResourceList aria-label="Настройка назначенных моторов">{Object.entries(profile.bindings).map(([slot,binding])=>{
const target=controllers.find(device=>device.id===binding.device_id);
return <li key={slot}><ResourceRow title={positions[slot]??slot} description={target?.name??`VESC ${binding.uuid.slice(0,6).toUpperCase()}`} actions={<Button disabled={!target?.prepared||busy||active} onClick={()=>openDevice(binding.device_id)}>Настройка мотора</Button>}/></li>;
})}</ResourceList>
</>}
</SettingsCard>
<VescLimits controllers={controllers} transport={transport} enabled={enabled&&!busy&&!active} failure={failure}/>
</div>;
}
@@ -0,0 +1,56 @@
import {useRef,useState} from 'react';
import {Button,Checker,ResourceList,ResourceRow,SettingsCard,TextField} from '@nodedc/ui-react';
import type {SensorDetailProps} from '../../../../packages/sensor-ui/src/extensions';
import {perform} from '../../../../packages/sensor-ui/src/contracts';
import {vescStatus} from './model';
interface CalibrationResult {
completed:boolean;success:boolean;configuration_verified:boolean;release_confirmed:boolean;
native:{success?:boolean;code?:number;sensor_mode?:number;parameters?:Record<string,number>};
}
export function VescCalibration({device,transport,enabled,refresh,failure,blocked,onBusyChange}:SensorDetailProps&{blocked:boolean;onBusyChange:(busy:boolean)=>void}){
const [loss,setLoss]=useState('50');
const [confirmed,setConfirmed]=useState(false);
const [busy,setBusy]=useState(false);
const [result,setResult]=useState<CalibrationResult|null>(null);
const running=useRef(false);
const limits=vescStatus(device).foc_calibration;
const power=Number(loss);
const valid=!!limits&&loss.trim()!==''&&Number.isFinite(power)&&power>=limits.min_power_loss_w&&power<=limits.max_power_loss_w;
const available=enabled&&device.online&&device.verified&&device.vesc_status?.test_supported===true&&!!limits;
async function calibrate(){
if(running.current||blocked||!available||!confirmed||!valid)return;
running.current=true;setBusy(true);onBusyChange(true);setResult(null);failure(null);
try{
const inventory=await transport.inventory();
const controllers=inventory.items.filter(item=>item.kind==='vesc.controller'&&item.online);
const target=controllers.find(item=>item.id===device.id);
if(inventory.fresh===false||!target||controllers.some(item=>!item.verified))throw new Error('Нужна свежая связь со всеми VESC борта.');
setResult(await perform<CalibrationResult>(transport,target,'vesc.foc.calibrate',{
rig_clear:true,native_cycle_confirmed:true,max_power_loss_w:power,
sessions:Object.fromEntries(controllers.map(item=>[item.id,item.snapshot.context.session_id])),
},300000));
}catch(error){failure(error);}
finally{running.current=false;setBusy(false);onBusyChange(false);setConfirmed(false);await refresh();}
}
const parameters=result?.native.parameters;
const calibrated=result?.native.success===true&&result.configuration_verified;
return <SettingsCard title="Калибровка мотора" description={`${device.name} · штатное автоопределение FOC в VESC Tool.`}>
<p>Мастер измеряет сопротивление, индуктивность и магнитный поток, определяет датчики и записывает параметры выбранного мотора. Версии до и после сохраняются в истории; настройки аккумулятора и пульта сохраняются.</p>
<TextField type="number" label="Допустимые потери в моторе, Вт" value={loss} onChange={event=>setLoss(event.target.value)} disabled={busy||blocked||!limits} min={limits?.min_power_loss_w} max={limits?.max_power_loss_w} step="5" aria-invalid={!valid} description="Параметр нагрева для мастера VESC Tool, не номинальная мощность мотора. По нему мастер выбирает токи измерения; предел тока проверки вращения здесь не применяется."/>
<p>Мотор будет двигаться и разгоняться. На прошивке 5.02 процедуру нельзя прервать кнопкой или пультом — только отключением силового питания. Оставьте пульт выключенным и приводы вывешенными до завершения; цикл может занять до трёх минут.</p>
<Checker checked={confirmed} onChange={setConfirmed} disabled={busy||blocked} label="Наблюдаю мотор, питание могу отключить"/>
<Button disabled={!available||blocked||!confirmed||!valid||busy} loading={busy} onClick={()=>void calibrate()}>Откалибровать мотор</Button>
{busy&&<p role="status">Подготовка и калибровка VESC Tool. Дождитесь результата и снятия тока.</p>}
{result&&<>
<p role="status">{calibrated?'Параметры мотора измерены, записаны и проверены.':result.completed?`Калибровка не принята. Код VESC: ${result.native.code??'не получен'}.`:'Завершение калибровки не подтверждено. Проверьте состояние мотора и питание.'} {result.release_confirmed?'Снятие тока подтверждено.':'Снятие тока пока не подтверждено. Перед следующей проверкой верните управление после нейтрали.'} {!result.configuration_verified&&' Проверка конфигурации не завершена; новое движение заблокировано.'}</p>
{calibrated&&<>
<p>{result.native.sensor_mode===0?'Выбран режим без датчиков. Холлы не определились; качество запуска нужно проверить вращением.':result.native.sensor_mode===2?'Определены датчики Холла.':'Определён энкодер.'}</p>
{parameters&&<ResourceList aria-label="Результат калибровки">
{([['foc_motor_r','Сопротивление',1000,'мОм'],['foc_motor_l','Индуктивность',1e6,'мкГн'],['foc_motor_flux_linkage','Магнитный поток',1000,'мВб'],['l_current_max','Предел тока мотора',1,'А']] as const).map(([key,title,scale,unit])=><li key={key}><ResourceRow title={title} description={`${(parameters[key]*scale).toLocaleString('ru-RU',{maximumFractionDigits:3})} ${unit}`}/></li>)}
</ResourceList>}
</>}
</>}
</SettingsCard>;
}
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import {useEffect,useRef,useState} from 'react';
import {Button,LoadingRegion,ResourceList,ResourceRow,SettingsCard,StatusBadge} from '@nodedc/ui-react';
import type {SensorDetailProps} from '../../../../packages/sensor-ui/src/extensions';
import {perform} from '../../../../packages/sensor-ui/src/contracts';
import {vescLabel,vescStatus,type VescTelemetry} from './model';
import {VescBackups} from './VescBackups';
import {VescMotor} from './VescMotor';
import {VescHall} from './VescHall';
import {VescCalibration} from './VescCalibration';
import {VescLink} from './VescLink';
const fields=[['input_voltage_v','Напряжение питания','В'],['input_current_a','Ток питания','А'],
['motor_current_a','Ток мотора','А'],['erpm','Электрические обороты','ERPM'],['duty','Заполнение PWM',''],
['mos_temperature_c','Температура контроллера','°C'],['motor_temperature_c','Температура мотора','°C'],
['fault_code','Код ошибки',''],['can_id','CAN ID',''],['timeout','Тайм-аут управления',''],
['kill_switch','Вход аварийного останова','']] as const;
export function VescDetail(props:SensorDetailProps){
const {device,transport,enabled,back,refresh,failure}=props;
const status=vescStatus(device);const label=vescLabel(device,enabled);
const [telemetry,setTelemetry]=useState<VescTelemetry|null>(status.telemetry);
const [pending,setPending]=useState<string|null>(null);
const [saved,setSaved]=useState<string|null>(null);
const [motorBusy,setMotorBusy]=useState(false);
const [hallBusy,setHallBusy]=useState(false);
const [calibrationBusy,setCalibrationBusy]=useState(false);
const [linkBusy,setLinkBusy]=useState(false);
const poweredBusy=motorBusy||hallBusy||calibrationBusy||linkBusy;
const running=useRef(false);const mounted=useRef(true);
const available=enabled&&device.online&&device.verified&&status.readable;
useEffect(()=>{mounted.current=true;return()=>{mounted.current=false;};},[]);
async function read(action:'vesc.telemetry.read'|'vesc.config.backup'){
if(running.current||poweredBusy||!available)return;
running.current=true;setPending(action);failure(null);
try{
const result=await perform<Record<string,unknown>>(transport,device,action);
if(!mounted.current)return;
if(action==='vesc.telemetry.read')setTelemetry(result as unknown as VescTelemetry);
else {
setSaved(String(result.observed_at));
}
await refresh();
}catch(error){if(mounted.current)failure(error);}
finally{running.current=false;if(mounted.current)setPending(null);}
}
const backupAt=saved??status.backup?.observed_at;
return <div className="sensor-content">
<div><Button onClick={back}>К устройствам</Button></div>
<SettingsCard title={`${device.name} · Настройка VESC`} description={`${device.model} · ${device.connection_label??'USB'}`}
actions={<StatusBadge tone={label.tone}>{label.label}</StatusBadge>}>
{!enabled||!device.online?<p>Нет свежей связи с контроллером.</p>:status.message?<p>{status.message}</p>:null}
{status.identity?<ResourceList aria-label="Контроллер VESC">
<li><ResourceRow title="Прошивка" description={status.identity.version}/></li>
<li><ResourceRow title="Аппаратная версия" description={status.identity.hardware}/></li>
<li><ResourceRow title="UUID" description={status.identity.uuid.toUpperCase()}/></li>
{status.identity.test_firmware!==null&&status.identity.test_firmware>0&&<li><ResourceRow title="Тестовая прошивка" description={String(status.identity.test_firmware)}/></li>}
</ResourceList>:<p>Аппаратный идентификатор ещё не подтверждён.</p>}
</SettingsCard>
<SettingsCard title="Показания контроллера" description={telemetry?`Снимок: ${new Date(telemetry.observed_at).toLocaleString()}`:'Получите текущие значения и код ошибки.'}
actions={<Button disabled={!available||pending!==null||poweredBusy} loading={pending==='vesc.telemetry.read'} onClick={()=>void read('vesc.telemetry.read')}>Обновить показания</Button>}>
<LoadingRegion loading={pending==='vesc.telemetry.read'&&!telemetry} label="Чтение показаний VESC">
{telemetry?<ResourceList aria-label="Показания VESC">{fields.map(([key,title,unit])=>{
const value=telemetry.values[key];if(value===undefined)return null;
return <li key={key}><ResourceRow title={title} description={typeof value==='boolean'?(value?'Активен':'Не активен'):`${Number(value).toLocaleString(undefined,{maximumFractionDigits:3})}${unit?' '+unit:''}`}/></li>;
})}</ResourceList>:<p>Показания ещё не прочитаны.</p>}
</LoadingRegion>
<p>ERPM — электрические обороты. Обороты вала зависят от числа пар полюсов мотора.</p>
</SettingsCard>
<SettingsCard title="Резервная копия конфигурации" description="Сохраните текущие параметры мотора и входов новой версией."
actions={<Button disabled={!available||pending!==null||poweredBusy} loading={pending==='vesc.config.backup'} onClick={()=>void read('vesc.config.backup')}>Сохранить версию</Button>}>
{backupAt&&<p>Последняя копия: {new Date(backupAt).toLocaleString()}</p>}
<p>Копия привязана к UUID и прошивке. Версии до и после калибровки остаются в истории.</p>
</SettingsCard>
<VescLink {...props} blocked={motorBusy||hallBusy||calibrationBusy||pending!==null} onBusyChange={setLinkBusy}/>
<VescCalibration {...props} blocked={linkBusy||motorBusy||hallBusy||pending!==null} onBusyChange={setCalibrationBusy}/>
<VescHall {...props} blocked={linkBusy||motorBusy||calibrationBusy||pending!==null} onBusyChange={setHallBusy}/>
<VescMotor {...props} blocked={linkBusy||hallBusy||calibrationBusy||pending!==null} onBusyChange={setMotorBusy}/>
<VescBackups deviceId={device.id} archive={transport.configurationArchive} revision={backupAt??null}/>
</div>;
}
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import {useRef,useState} from 'react';
import {Button,Checker,SettingsCard} from '@nodedc/ui-react';
import type {SensorDetailProps} from '../../../../packages/sensor-ui/src/extensions';
import {perform} from '../../../../packages/sensor-ui/src/contracts';
import {vescStatus} from './model';
interface HallResult {
completed:boolean;configuration_restored:boolean;release_confirmed:boolean;
measurement:null|{valid_six_states:boolean;observed_states:number[];hall_table:number[]};
}
export function VescHall({device,transport,enabled,refresh,failure,blocked,onBusyChange}:SensorDetailProps&{blocked:boolean;onBusyChange:(busy:boolean)=>void}){
const [confirmed,setConfirmed]=useState(false);
const [busy,setBusy]=useState(false);
const [result,setResult]=useState<HallResult|null>(null);
const running=useRef(false);
const available=enabled&&device.online&&device.verified&&device.vesc_status?.test_supported===true&&!!vescStatus(device).hall_measurement;
async function measure(){
if(running.current||blocked||!available||!confirmed)return;
running.current=true;setBusy(true);onBusyChange(true);setResult(null);failure(null);
try{
const inventory=await transport.inventory();
const controllers=inventory.items.filter(item=>item.kind==='vesc.controller'&&item.online);
const target=controllers.find(item=>item.id===device.id);
if(inventory.fresh===false||!target||controllers.some(item=>!item.verified))throw new Error('Нужна свежая связь со всеми VESC борта.');
setResult(await perform<HallResult>(transport,target,'vesc.hall.measure',{
rig_clear:true,native_cycle_confirmed:true,
...(vescStatus(target).hall_measurement?.standstill_confirmation_required?{standstill_confirmed:true}:{}),
sessions:Object.fromEntries(controllers.map(item=>[item.id,item.snapshot.context.session_id])),
},60000));
}catch(error){failure(error);}
finally{running.current=false;setBusy(false);onBusyChange(false);setConfirmed(false);await refresh();}
}
return <SettingsCard title="Датчики Холла" description={`${device.name} · штатное измерение VESC Tool, 5 А.`}>
<p>Мотор медленно смещается в обе стороны около 12 секунд. Измерение проверяет состояния датчиков и получает таблицу их положения; новая таблица автоматически не записывается.</p>
<p>На прошивке 5.02 этот цикл нельзя прервать кнопкой или пультом. Для немедленной остановки нужно отключить силовое питание. Пульт должен оставаться выключенным, все приводы — вывешенными. Перед запуском убедитесь, что все моторы полностью остановились: в бессенсорном режиме показание оборотов на остановленном моторе может быть ненулевым.</p>
<Checker checked={confirmed} onChange={setConfirmed} disabled={busy||blocked} label="Все моторы остановлены, наблюдаю"/>
<Button disabled={!available||blocked||!confirmed||busy} loading={busy} onClick={()=>void measure()}>Измерить датчики Холла</Button>
{busy&&<p role="status">Подготовка и штатное измерение датчиков. Дождитесь результата.</p>}
{result&&<p role="status">{!result.completed?'Завершение измерения не подтверждено. Проверьте мотор и питание.':result.measurement?.valid_six_states?'Измерение получило шесть состояний Холла.':'Не удалось получить полную таблицу Холла. Возможны отсутствие движения или неисправность датчиков/соединения.'} {result.release_confirmed?'Снятие тока подтверждено.':'Снятие тока не подтверждено.'} {result.configuration_restored?'Исходная конфигурация сохранена.':'Возврат исходной конфигурации не подтверждён.'}</p>}
</SettingsCard>;
}
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import {useRef,useState} from 'react';
import {Button,ResourceList,ResourceRow,SettingsCard} from '@nodedc/ui-react';
import {perform,type Sensor,type SensorTransport} from '../../../../packages/sensor-ui/src/contracts';
import {vescStatus} from './model';
interface Limits {observed_at:string;identity?:{uuid:string};parameters:Record<string,number>}
const number=(value:number|undefined)=>value===undefined?'—':value.toLocaleString('ru-RU',{maximumFractionDigits:2});
export function VescLimits({controllers,transport,enabled,failure}:{controllers:Sensor[];transport:SensorTransport;enabled:boolean;failure:(error:unknown)=>void}){
const [values,setValues]=useState<Record<string,Limits>>({});
const [busy,setBusy]=useState(false);const running=useRef(false);
const readable=controllers.filter(device=>device.online&&device.verified&&vescStatus(device).readable&&vescStatus(device).board_settings_supported);
async function read(){
if(!enabled||running.current||!readable.length)return;
running.current=true;setBusy(true);failure(null);setValues({});
try{for(const device of readable){const value=await perform<Limits>(transport,device,'vesc.limits.read');setValues(current=>({...current,[device.id]:value}));}}
catch(error){failure(error);}finally{running.current=false;setBusy(false);}
}
return <SettingsCard title="Ограничения контроллеров" description="Текущие настройки VESC. Чтение не запускает моторы и не меняет конфигурацию." actions={<Button disabled={!enabled||busy||!readable.length} loading={busy} onClick={()=>void read()}>Прочитать ограничения</Button>}>
<p>Ток мотора задаёт тягу; ток батареи ограничивает потребление. Эти настройки действуют и при управлении с пульта. Паспортные пределы моторов, контроллеров и батареи проверяются отдельно.</p>
{controllers.map(device=>{
const value=values[device.id];if(!value)return null;
const p=value.parameters;
const fields=[
['Ток мотора · разгон / торможение',`${number(p.l_current_max)} / ${number(p.l_current_min)} А`],
['Масштаб тока · разгон / торможение',`${number(p.l_current_max_scale*100)} / ${number(p.l_current_min_scale*100)} %`],
['Ток батареи · потребление / рекуперация',`${number(p.l_in_current_max)} / ${number(p.l_in_current_min)} А`],
['Диапазон электрических оборотов',`${number(p.l_min_erpm)} … ${number(p.l_max_erpm)} ERPM`],
['Максимальная мощность',p.l_watt_max>=1500000?'Отдельный предел не задан':`${number(p.l_watt_max)} Вт`],
['Максимальный duty cycle',`${number(p.l_max_duty*100)} %`],
];
return <SettingsCard key={device.id} title={device.name} description={`Прочитано ${new Date(value.observed_at).toLocaleString('ru-RU')}`}><ResourceList aria-label={`Ограничения ${device.name}`}>{fields.map(([title,description])=><li key={title}><ResourceRow title={title} description={description}/></li>)}</ResourceList></SettingsCard>;
})}
{!Object.keys(values).length&&<p>Прочитайте значения для подключённых контроллеров.</p>}
</SettingsCard>;
}
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import {useEffect,useRef,useState} from 'react';
import {Button,ResourceList,ResourceRow,SettingsCard} from '@nodedc/ui-react';
import type {SensorDetailProps} from '../../../../packages/sensor-ui/src/extensions';
import {perform} from '../../../../packages/sensor-ui/src/contracts';
import {vescStatus} from './model';
interface LinkResult {
outcome:string;duration_s:number;
devices:Record<string,{name:string;summary:{replies:number;p95_ms?:number;max_ms?:number;over_60_ms?:number}}>;
}
export function VescLink({device,transport,enabled,failure,refresh,blocked,onBusyChange}:SensorDetailProps&{blocked:boolean;onBusyChange:(busy:boolean)=>void}){
const [busy,setBusy]=useState(false);const [result,setResult]=useState<LinkResult|null>(null);
const running=useRef(false);const mounted=useRef(true);
useEffect(()=>{mounted.current=true;return()=>{mounted.current=false;};},[]);
const available=enabled&&device.online&&device.verified&&vescStatus(device).link_check_supported;
async function check(){
if(running.current||blocked||!available)return;
running.current=true;setBusy(true);onBusyChange(true);failure(null);setResult(null);
try{
const inventory=await transport.inventory();
const peers=inventory.items.filter(item=>item.kind==='vesc.controller');
const selected=peers.find(item=>item.id===device.id);
if(inventory.fresh===false||!selected||peers.some(item=>!item.online||!item.verified))throw new Error('Обновите связь со всеми VESC борта.');
const sessions=Object.fromEntries(peers.map(item=>[item.id,item.snapshot.context.session_id]));
const value=await perform<LinkResult>(transport,selected,'vesc.link.check',{sessions},45000);
if(mounted.current)setResult(value);
await refresh();
}catch(error){if(mounted.current)failure(error);}
finally{running.current=false;if(mounted.current){setBusy(false);onBusyChange(false);}}
}
if(!vescStatus(device).link_check_supported)return null;
const text=result?.outcome==='complete'?'Все ответы получены. Эта проверка не подтверждает связь во время вращения.':
result?.outcome==='not_idle'?'Измерение прекращено: есть команда с пульта или движение мотора.':
result?.outcome==='read_failed'?'Ответ контроллера не получен. Проверка прервана.':
'Измерение не завершено.';
return <SettingsCard title="Связь с контроллерами" description="Проверяет ответы всех VESC борта около 10 секунд. Моторы должны стоять; команды вращения и изменения настроек не отправляются."
actions={<Button disabled={!available||blocked||busy} loading={busy} onClick={()=>void check()}>Проверить связь</Button>}>
{busy&&<p role="status">Измеряется время ответа контроллеров.</p>}
{result&&<><p role="status">{text}</p><ResourceList aria-label="Связь VESC">{Object.entries(result.devices).map(([id,item])=><li key={id}><ResourceRow title={item.name}
description={`${item.summary.replies} ответов${item.summary.max_ms===undefined?'':` · 95% не дольше ${Math.ceil(item.summary.p95_ms??0)} мс · максимум ${Math.ceil(item.summary.max_ms)} мс`}`}/></li>)}</ResourceList></>}
</SettingsCard>;
}
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import {useEffect,useRef,useState} from 'react';
import {Button,Checker,Select,TextField,SettingsCard} from '@nodedc/ui-react';
import type {SensorDetailProps} from '../../../../packages/sensor-ui/src/extensions';
import {perform} from '../../../../packages/sensor-ui/src/contracts';
import {testInput,speedInput,rotationResult,vescStatus,driveTestIds,drivePositions} from './model';
export function VescMotor({device,transport,enabled,refresh,failure,blocked=false,onBusyChange}:SensorDetailProps&{blocked?:boolean;onBusyChange?:(busy:boolean)=>void}){
const [duration,setDuration]=useState('30');
const [current,setCurrent]=useState('30');
const [speed,setSpeed]=useState('2000');
const [direction,setDirection]=useState('forward');
const [scope,setScope]=useState('single');
const status=vescStatus(device),profile=status.drive_profile;
const driveIds=driveTestIds(profile,device.id);
const group=scope==='profile';
const groupAvailable=status.group_test_supported===true&&driveIds.length>1;
const [clear,setClear]=useState(false);const [busy,setBusy]=useState(false);
const [result,setResult]=useState<string|null>(null);const [stopping,setStopping]=useState(false);
const [rc,setRc]=useState(device.vesc_status?.rc_latched===true);
const running=useRef(false);const mounted=useRef(true);
useEffect(()=>{mounted.current=true;return()=>{mounted.current=false;};},[]);
const limits=vescStatus(device).test_limits;
const speedLimits=vescStatus(device).speed_limits;
const speedValue=speedInput(speed,speedLimits);
const input=testInput(current,duration,limits);
const available=!!limits&&!!speedLimits&&enabled&&!blocked&&device.online&&device.verified&&device.vesc_status?.test_supported===true;
const valid=input.valid&&!speedValue.error&&(direction==='forward'||speedLimits?.reverse_supported===true)&&(!group||groupAvailable);
const blockedReason=busy?'Подготовка и проверка выполняются. Дождитесь результата или остановите проверку.':
!enabled||!device.online?'Для запуска нужна свежая связь с бортом и VESC.':
!device.verified?'Контроллер ещё не определён. Обновите устройства.':
!available?'Проверка вращения для этого VESC сейчас недоступна на борту.':
!valid?'Исправьте значения в отмеченных полях.':
!clear?'Для запуска подтвердите, что все приводы остановлены, вывешены и вращение свободно.':null;
async function execute(release=false){
if(running.current||!available||!clear||!valid)return;
running.current=true;setBusy(true);onBusyChange?.(true);setResult(null);failure(null);
try{
const inventory=await transport.inventory();
const controllers=inventory.items.filter(item=>item.kind==='vesc.controller'&&item.online);
const target=controllers.find(item=>item.id===device.id);
if(inventory.fresh===false||!target||controllers.some(item=>!item.verified))throw new Error('Нужна свежая связь со всеми подключёнными VESC этого борта.');
if(group&&!release&&(vescStatus(target).drive_profile?.revision!==profile?.revision||driveIds.some(id=>!controllers.some(item=>item.id===id))))throw new Error('Профиль или состав моторов изменился. Обновите карточку.');
const value=await perform<{outcome?:string;rotation_s?:number;release_confirmed?:boolean;limits_restored?:boolean}>(transport,target,release?'vesc.control.release':group?'vesc.drive.run':'vesc.motor.run',{
rig_clear:true,duration_s:input.durationS,current_a:input.currentA,
...(release?{}:{erpm:speedValue.erpm*(direction==='reverse'?-1:1)}),
...(vescStatus(target).speed_limits?.standstill_confirmation_required?{standstill_confirmed:true}:{}),
...(!release&&group?{profile_revision:profile?.revision,device_ids:driveIds}:{}),
sessions:Object.fromEntries(controllers.map(item=>[item.id,item.snapshot.context.session_id])),
},group&&!release?120000:90000);
if(mounted.current){
setResult(release?'Управление возвращено для проверки.':rotationResult(value));
if(release)setRc(false);
}
}catch(error){if(mounted.current)failure(error);}
finally{
running.current=false;
onBusyChange?.(false);
if(mounted.current){setBusy(false);setClear(false);await refresh();}
}
}
async function stop(){
if(stopping)return;setStopping(true);
try{const value=await perform<{interruptible?:boolean}>(transport,device,'vesc.motor.stop',{},15000);if(mounted.current)setResult(value.interruptible===false?'Идёт штатный цикл измерения VESC. Немедленная остановка возможна отключением питания.':'Остановка запрошена. Ожидаем результат проверки.');}
catch(error){if(mounted.current)failure(error);}
finally{if(mounted.current)setStopping(false);}
}
useEffect(()=>setRc(device.vesc_status?.rc_latched===true),[device.vesc_status?.rc_latched]);
return <SettingsCard title="Проверка вращения" description={`${device.name} · ${device.connection_label??'USB'}. Конфигурации подключённых контроллеров сохраняются автоматически.`}>
<p>Для вывешенных колёс без нагрузки. При команде с приёмника проверка прекращается; повторный запуск требует явного возврата управления.</p>
<Select label="Проверяемые моторы" value={scope} disabled={busy||blocked} options={[{value:'single',label:`Только ${device.name}`},{value:'profile',label:'Все моторы профиля одновременно',disabled:!groupAvailable}]} onChange={setScope}/>
{group&&profile&&<p>{Object.keys(drivePositions(profile.layout)).map(slot=>`${drivePositions(profile.layout)[slot]} · VESC ${profile.bindings[slot]?.uuid.slice(0,6).toUpperCase()??'не назначен'}`).join('; ')}. Общий отсчёт начинается, когда все моторы удерживают скорость. Остановка любого завершает всю проверку. Предел тока применяется к каждому мотору.</p>}
<Select label="Направление вращения" value={direction} disabled={busy||blocked} options={[{value:'forward',label:'Прямое'},{value:'reverse',label:'Обратное',disabled:speedLimits?.reverse_supported!==true}]} onChange={value=>{setDirection(value);setClear(false);}}/>
<p>Направление относительно настроек VESC. Перед обратным запуском дождитесь полной остановки всех моторов и подтвердите её.</p>
<TextField type="number" inputMode="decimal" label="Скорость, ERPM" value={speed} onChange={event=>setSpeed(event.target.value)} disabled={busy||!speedLimits} min={speedLimits?.min_erpm} max={speedLimits?.max_erpm} step="100" aria-invalid={!!speedValue.error} description={speedValue.error??'Электрические обороты в минуту. VESC плавно разгоняет мотор и удерживает заданную скорость.'}/>
<TextField type="number" inputMode="decimal" label="Предел тока мотора, А" value={current} onChange={event=>setCurrent(event.target.value)} disabled={busy||!limits} min={limits?.min_current_a} max={limits?.max_current_a} step="0.1" aria-invalid={!!input.currentError} hint={limits?`${limits.min_current_a}–${limits.max_current_a} А`:undefined} description={input.currentError??'Максимальный ток разгона и удержания скорости. Прежние пределы сохраняются перед тестом и восстанавливаются после него.'}/>
<TextField type="number" inputMode="decimal" label="Длительность вращения, с" value={duration} onChange={event=>setDuration(event.target.value)} disabled={busy||!limits} min={limits?.min_duration_s} max={limits?.max_duration_s} step="0.1" aria-invalid={!!input.durationError} hint={limits?`${limits.min_duration_s}–${limits.max_duration_s} с`:undefined} description={input.durationError??'Отсчёт начинается после разгона и стабилизации скорости. Подготовка, разгон и остановки не входят в это время.'}/>
<p>Время считается по скорости и тахометру VESC. Если мотор не разгонится за 15 секунд, потеряет скорость или сработает ограничение, результат покажет фактическое время и причину остановки. Показания контроллера нужно сопоставить с видимым вращением.</p>
{limits?.stall_timeout_s&&<p>При токе выше {limits.stall_current_a} А и отсутствии подтверждённого движения в течение {limits.stall_timeout_s} секунд проверка остановится.</p>}
<p>Все приводы должны быть вывешены, вращение свободно. Подтверждение требуется перед каждым запуском.</p>
<Checker checked={clear} onChange={setClear} disabled={busy} label="Все моторы остановлены, наблюдаю"/>
{blockedReason&&<p role="status">{blockedReason}</p>}
<div className="sensor-actions">
{rc?<Button disabled={!available||!clear||busy||!valid} loading={busy} onClick={()=>void execute(true)}>Вернуть управление после нейтрали</Button>:
<Button disabled={!available||!clear||busy||!valid} loading={busy} onClick={()=>void execute()}>Проверить вращение</Button>}
<Button disabled={!enabled||!device.online||blocked} loading={stopping} onClick={()=>void stop()}>Остановить проверку</Button>
</div>
{result&&<p role="status">{result}</p>}
</SettingsCard>;
}
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import type {Sensor} from '../../../../packages/sensor-ui/src/contracts';
export interface VescIdentity {uuid:string;hardware:string;version:string;test_firmware:number|null;hardware_type:number|null}
export interface VescTelemetry {observed_at:string;values:Record<string,number|boolean>}
export interface DriveProfile {layout:null|'1x1'|'2x2';revision:number;bindings:Record<string,{device_id:string;uuid:string}>}
export function drivePositions(layout:DriveProfile['layout']):Record<string,string> {
return layout==='2x2'
? {'left.1':'Левый передний','left.2':'Левый задний','right.1':'Правый передний','right.2':'Правый задний'}
: {'left.1':'Левый','right.1':'Правый'};
}
export interface VescStatus {
board_settings_supported?:boolean;
group_test_supported?:boolean;
link_check_supported?:boolean;
foc_calibration?:{min_power_loss_w:number;max_power_loss_w:number;interruptible:boolean};
speed_limits?:{min_erpm:number;max_erpm:number;duration_basis:string;reverse_supported?:boolean;standstill_confirmation_required?:boolean};
hall_measurement?:{current_a:number;interruptible:boolean;standstill_confirmation_required?:boolean};
drive_profile?:DriveProfile;
test_limits?:{min_current_a:number;max_current_a:number;min_duration_s:number;max_duration_s:number;current_ramp_a_per_s?:number;continuous_current?:boolean;max_erpm?:number;max_duty?:number;stall_current_a?:number;stall_timeout_s?:number};
identity:VescIdentity|null; readable:boolean; message:string|null; telemetry:VescTelemetry|null;
backup:{observed_at:string;operation_id:string;configs:Record<string,{bytes:number;sha256:string}>}|null;
}
export function driveTestIds(profile:DriveProfile|undefined,selected:string):string[] {
if(!profile?.layout)return [];
const slots=Object.keys(drivePositions(profile.layout));
if(Object.keys(profile.bindings).length!==slots.length||slots.some(slot=>!profile.bindings[slot]))return [];
const ids=slots.map(slot=>profile.bindings[slot].device_id);
return new Set(ids).size===ids.length&&ids.includes(selected)?ids:[];
}
export function speedInput(speed:string,limits:VescStatus['speed_limits']) {
const erpm=Number(speed);
const error=!limits?'Для удержания скорости требуется обновление профиля VESC на борту.':
speed.trim()===''||!Number.isFinite(erpm)?'Введите скорость.':
erpm<limits.min_erpm||erpm>limits.max_erpm?`Скорость должна быть от ${limits.min_erpm} до ${limits.max_erpm} ERPM.`:null;
return {erpm,error};
}
export function rotationResult(value:{outcome?:string;rotation_s?:number;release_confirmed?:boolean;limits_restored?:boolean}) {
const time=(value.rotation_s??0).toLocaleString('ru-RU',{maximumFractionDigits:1});
const outcome=value.outcome==='duration'?'Заданное время вращения набрано.':value.outcome==='stopped'?'Проверка остановлена.':String(value.outcome);
return `${outcome} Вращение на заданной скорости по данным VESC: ${time} с. ${value.release_confirmed?'Снятие тока подтверждено.':'Снятие тока не подтверждено.'}${value.limits_restored?' Исходные токовые пределы восстановлены.':''}`;
}
export function vescStatus(device:Sensor):VescStatus {
return {identity:null,readable:false,message:null,telemetry:null,backup:null,...device.vesc_status} as VescStatus;
}
export function vescLabel(device:Sensor,fresh:boolean):{label:string;tone:'neutral'|'success'|'warning'|'danger'} {
const status=vescStatus(device);
if(!fresh||!device.online)return {label:'Нет связи',tone:'neutral'};
if(!device.prepared)return {label:'Требуется подготовка',tone:'neutral'};
if(!status.identity)return {label:'Не определён',tone:'warning'};
if(!status.readable)return {label:'Прошивка не поддерживается',tone:'warning'};
return {label:'Готов к чтению',tone:'success'};
}
export function testInput(current:string,duration:string,limits:VescStatus['test_limits']) {
const currentA=Number(current),durationS=Number(duration);
const number=(value:number)=>value.toLocaleString('ru-RU');
const currentError=!limits?null:current.trim()===''||!Number.isFinite(currentA)
? 'Введите ток мотора.'
: currentA<limits.min_current_a||currentA>limits.max_current_a
? `Ток должен быть от ${number(limits.min_current_a)} до ${number(limits.max_current_a)} А.`:null;
const durationError=!limits?null:duration.trim()===''||!Number.isFinite(durationS)
? 'Введите длительность проверки.'
: durationS<limits.min_duration_s||durationS>limits.max_duration_s
? `Длительность должна быть от ${number(limits.min_duration_s)} до ${number(limits.max_duration_s)} с.`:null;
return {currentA,durationS,currentError,durationError,valid:!!limits&&!currentError&&!durationError};
}
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import type {SensorUiContribution} from '../../../../packages/sensor-ui/src/extensions';
import {VescDetail} from './VescDetail';
import {VescBoardSettings} from './VescBoardSettings';
import {vescLabel} from './model';
export const vescSensorUi:SensorUiContribution={
kind:'vesc.controller',Detail:VescDetail,BoardSettings:VescBoardSettings,icon:'activity',retainOffline:true,
supportsPreparation:true,supportsRenaming:true,detailLabel:'Настройка VESC',status:vescLabel,
};
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GNU GENERAL PUBLIC LICENSE
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How to Apply These Terms to Your New Programs
If you develop a new program, and you want it to be of the greatest
possible use to the public, the best way to achieve this is to make it
free software which everyone can redistribute and change under these terms.
To do so, attach the following notices to the program. It is safest
to attach them to the start of each source file to most effectively
state the exclusion of warranty; and each file should have at least
the "copyright" line and a pointer to where the full notice is found.
<one line to give the program's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <https://www.gnu.org/licenses/>.
Also add information on how to contact you by electronic and paper mail.
If the program does terminal interaction, make it output a short
notice like this when it starts in an interactive mode:
<program> Copyright (C) <year> <name of author>
This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'.
This is free software, and you are welcome to redistribute it
under certain conditions; type `show c' for details.
The hypothetical commands `show w' and `show c' should show the appropriate
parts of the General Public License. Of course, your program's commands
might be different; for a GUI interface, you would use an "about box".
You should also get your employer (if you work as a programmer) or school,
if any, to sign a "copyright disclaimer" for the program, if necessary.
For more information on this, and how to apply and follow the GNU GPL, see
<https://www.gnu.org/licenses/>.
The GNU General Public License does not permit incorporating your program
into proprietary programs. If your program is a subroutine library, you
may consider it more useful to permit linking proprietary applications with
the library. If this is what you want to do, use the GNU Lesser General
Public License instead of this License. But first, please read
<https://www.gnu.org/licenses/why-not-lgpl.html>.
+97
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// SPDX-License-Identifier: GPL-3.0-or-later
#pragma once
#include <QApplication>
#include <QCryptographicHash>
#include <QFile>
#include <QJsonArray>
#include <QJsonDocument>
#include <QJsonObject>
#include <QRegularExpression>
#include <QXmlStreamWriter>
#include <stdexcept>
#include "vescinterface.h"
#include "utility.h"
static QString sha256(const QByteArray &data) {
return QCryptographicHash::hash(data, QCryptographicHash::Sha256).toHex();
}
static void require(bool condition, const char *message) {
if (!condition) throw std::runtime_error(message);
}
static QJsonObject exportConfig(ConfigParams *config, const QByteArray &packet,
const QString &xmlName) {
VByteArray roundTrip;
config->serialize(roundTrip);
require(roundTrip == packet.mid(1), "Native configuration round-trip differs from archive");
QJsonArray parameters;
for (const auto &name : config->getParamOrder()) {
const auto p = config->getParamCopy(name);
QJsonObject item{{"name", name}, {"title", p.longName},
{"description", p.description}, {"suffix", p.suffix},
{"transmittable", p.transmittable}, {"editor_scale", p.editorScale}};
switch (p.type) {
case CFG_T_DOUBLE:
item.insert("type", "number"); item.insert("value", p.valDouble);
item.insert("min", p.minDouble); item.insert("max", p.maxDouble);
item.insert("step", p.stepDouble); item.insert("decimals", p.editorDecimalsDouble);
break;
case CFG_T_INT: case CFG_T_BITFIELD:
item.insert("type", p.type == CFG_T_INT ? "integer" : "bitfield");
item.insert("value", p.valInt); item.insert("min", p.minInt);
item.insert("max", p.maxInt); item.insert("step", p.stepInt);
break;
case CFG_T_ENUM:
item.insert("type", "enum"); item.insert("value", p.valInt);
item.insert("options", QJsonArray::fromStringList(p.enumNames)); break;
case CFG_T_BOOL:
item.insert("type", "boolean"); item.insert("value", bool(p.valInt)); break;
case CFG_T_QSTRING:
item.insert("type", "string"); item.insert("value", p.valString);
item.insert("max_length", p.maxLen); break;
default: item.insert("type", "undefined");
}
parameters.append(item);
}
QJsonArray groups;
for (const auto &group : config->getParamGroups()) {
QJsonArray subgroups;
for (const auto &subgroup : config->getParamSubgroups(group)) {
subgroups.append(QJsonObject{{"name", subgroup}, {"parameters",
QJsonArray::fromStringList(config->getParamsFromSubgroup(group, subgroup))}});
}
groups.append(QJsonObject{{"name", group}, {"subgroups", subgroups}});
}
QString xml;
QXmlStreamWriter writer(&xml);
writer.setAutoFormatting(true);
config->getXML(writer, xmlName);
// Validate Tool's own XML load as well as its binary codec. No output file,
// motor configuration write, custom schema, or custom parameter parser.
ConfigParams loaded;
loaded = *config;
QXmlStreamReader reader(xml);
require(loaded.setXML(reader, xmlName), "Native XML round-trip failed");
VByteArray xmlRoundTrip; loaded.serialize(xmlRoundTrip);
const auto differences = config->checkDifference(&loaded);
require(differences.isEmpty(), "Native XML differs beyond upstream comparison tolerance");
return QJsonObject{{"parameters", parameters}, {"groups", groups}, {"xml", xml},
{"packet_sha256", sha256(packet)}, {"round_trip_exact", true},
{"xml_round_trip_exact", xmlRoundTrip == roundTrip},
{"xml_equivalent_by_upstream_comparison", true},
{"signature", double(config->getSignature())}};
}
static QByteArray archivePacket(const QJsonObject &archive, const QString &key, int command) {
auto entry = archive.value("configs").toObject().value(key).toObject();
auto encoded = entry.value("payload").toString().toLatin1();
auto packet = QByteArray::fromBase64(encoded, QByteArray::AbortOnBase64DecodingErrors);
require(entry.value("encoding") == "base64" && !packet.isEmpty() && packet.size() <= 16384,
"Invalid archived configuration encoding");
require(packet.toBase64() == encoded && packet.size() == entry.value("bytes").toInt(),
"Invalid archived configuration length");
require(quint8(packet.at(0)) == command && sha256(packet) == entry.value("sha256").toString(),
"Archived configuration hash or command mismatch");
return packet;
}
+363
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// SPDX-License-Identifier: GPL-3.0-or-later
// Private per-device JSON process adapter. Every wire operation is upstream.
#include "config_export.h"
#include <QEventLoop>
#include <QElapsedTimer>
#include <QSocketNotifier>
#include <QSerialPort>
#include <QTimer>
#include <QFileInfo>
#include <cmath>
#include <functional>
#include <fcntl.h>
#include <sys/file.h>
#include <sys/ioctl.h>
#include <sys/stat.h>
#include <sys/sysmacros.h>
#include <termios.h>
#include <unistd.h>
class ExchangeFailure : public std::runtime_error {
public:
QJsonObject diagnostics;
explicit ExchangeFailure(const QJsonObject &value)
: std::runtime_error("Native query timed out or disconnected"), diagnostics(value) {}
};
class Engine {
public:
VescInterface vesc;
Packet *packet;
FW_RX_PARAMS identity;
bool procedureRunning = false;
bool procedureUncertain = false;
QJsonObject procedure;
bool queryRunning = false;
bool allowHardware = false;
QByteArray lastMotor, lastApplication, lastHall;
Engine() {
require(Utility::configLoadLatest(&vesc), "Upstream resources missing");
packet = vesc.findChild<Packet *>();
require(packet, "Upstream packet transport missing");
QObject::connect(vesc.commands(), &Commands::fwVersionReceived,
[&](FW_RX_PARAMS value) { identity = value; });
QObject::connect(packet, &Packet::packetReceived, [&](QByteArray &raw) {
if (!raw.isEmpty() && quint8(raw[0]) == COMM_GET_MCCONF) lastMotor = raw;
if (!raw.isEmpty() && quint8(raw[0]) == COMM_GET_APPCONF) lastApplication = raw;
if (!raw.isEmpty() && quint8(raw[0]) == COMM_DETECT_HALL_FOC) lastHall = raw;
});
}
void open(const QString &port) {
require(QRegularExpression("^/dev/ttyACM[0-9]+$").match(port).hasMatch(), "Unsupported USB path");
struct stat st;
require(lstat(port.toLocal8Bit(), &st) == 0 && S_ISCHR(st.st_mode) && major(st.st_rdev) == 166,
"Not a CDC ACM device");
require(vesc.connectSerial(port, 115200), "Native serial connection failed");
auto serial = vesc.findChild<QSerialPort *>();
require(serial && serial->isOpen() && "/dev/" + serial->portName() == port,
"Native serial path mismatch");
require(flock(serial->handle(), LOCK_EX | LOCK_NB) == 0 && ioctl(serial->handle(), TIOCEXCL) == 0,
"Serial port is already owned");
allowHardware = true;
query(COMM_FW_VERSION, 3000);
require(identity.major == 5 && identity.minor == 2 && identity.hwType == HW_TYPE_VESC
&& identity.isTestFw == 0 && identity.customConfigNum == 0,
"Native hardware acceptance currently admits stable FW 5.02 only");
}
QByteArray exchange(int command, int timeoutMs, const std::function<void()> &send) {
require(allowHardware && vesc.isPortConnected(), "Device disconnected");
require(!queryRunning, "A native query is already pending");
queryRunning = true;
struct PendingReset { bool &pending; ~PendingReset() { pending = false; } } reset{queryRunning};
QEventLoop loop;
QTimer timeout; timeout.setSingleShot(true);
QObject observer;
QElapsedTimer elapsed; elapsed.start();
QJsonArray events;
bool emitted = false;
int packetsSent = 0, packetsReceived = 0;
qint64 bytesWritten = 0;
auto serial = vesc.findChild<QSerialPort *>();
auto record = [&](const QString &kind, int code, qint64 bytes) {
if (events.size() == 24) events.removeFirst();
events.append(QJsonObject{{"event", kind}, {"command", code},
{"bytes", double(bytes)}, {"at_ms", elapsed.nsecsElapsed() / 1e6}});
};
QObject::connect(vesc.commands(), &Commands::dataToSend, &observer, [&](QByteArray &raw) {
const int code = raw.isEmpty() ? -1 : quint8(raw[0]);
if (code == command) emitted = true;
record("command_emitted", code, raw.size());
});
QObject::connect(packet, &Packet::dataToSend, &observer, [&](QByteArray &raw) {
++packetsSent; record("packet_sent", -1, raw.size());
});
if (serial) {
QObject::connect(serial, &QSerialPort::bytesWritten, &observer, [&](qint64 bytes) {
bytesWritten += bytes; record("serial_written", -1, bytes);
});
QObject::connect(serial, &QSerialPort::errorOccurred, &observer, [&](QSerialPort::SerialPortError error) {
if (error != QSerialPort::NoError) record("serial_error", int(error), 0);
});
}
QByteArray answer;
QObject::connect(packet, &Packet::packetReceived, &observer, [&](QByteArray &raw) {
++packetsReceived;
record("packet_received", raw.isEmpty() ? -1 : quint8(raw[0]), raw.size());
if (!raw.isEmpty() && quint8(raw[0]) == command) { answer = raw; loop.quit(); }
});
QObject::connect(&timeout, &QTimer::timeout, &loop, &QEventLoop::quit);
timeout.start(timeoutMs);
send();
if (answer.isEmpty()) loop.exec();
if (answer.isEmpty() || !vesc.isPortConnected()) {
throw ExchangeFailure({{"requested_command", command}, {"timeout_ms", timeoutMs},
{"elapsed_ms", elapsed.nsecsElapsed() / 1e6}, {"request_emitted", emitted},
{"packets_sent", packetsSent}, {"packets_received", packetsReceived},
{"serial_bytes_written", double(bytesWritten)}, {"port_connected", vesc.isPortConnected()},
{"serial_open", serial && serial->isOpen()}, {"serial_error", serial ? int(serial->error()) : -1},
{"serial_bytes_pending", serial ? double(serial->bytesToWrite()) : -1}, {"events", events}});
}
return answer;
}
QByteArray query(int code, int timeoutMs, bool internal = false) {
auto cmd = vesc.commands();
require(internal || !procedureRunning || code == COMM_GET_VALUES || code == COMM_GET_DECODED_PPM,
"Configuration reads are unavailable during native measurement");
std::function<void()> send;
switch (code) {
case COMM_FW_VERSION: send = [=] { cmd->getFwVersion(); }; break;
case COMM_GET_VALUES: send = [=] { cmd->getValues(); }; break;
case COMM_GET_MCCONF: send = [=] { cmd->getMcconf(); }; break;
case COMM_GET_APPCONF: send = [=] { cmd->getAppConf(); }; break;
case COMM_GET_DECODED_PPM: send = [=] { cmd->getDecodedPpm(); }; break;
case COMM_PING_CAN: send = [=] { cmd->pingCan(); }; break;
default: throw std::runtime_error("Native read command is not admitted");
}
auto raw = exchange(code, timeoutMs, send);
if (code == COMM_GET_MCCONF || code == COMM_GET_APPCONF) {
VByteArray serialized;
auto config = code == COMM_GET_MCCONF ? vesc.mcConfig() : vesc.appConfig();
config->serialize(serialized);
require(serialized == raw.mid(1), "Native configuration decode is not byte-exact");
}
return raw;
}
QByteArray configurationPacket(ConfigParams *config, int code) {
VByteArray raw; raw.vbAppendInt8(code); config->serialize(raw); return raw;
}
void calibrate(double loss) {
ConfigParams beforeMotor, beforeApp;
beforeMotor = *vesc.mcConfig(); beforeApp = *vesc.appConfig();
bool received = false, validated = false;
int code = -1000;
QString report, error;
QJsonArray changed;
auto connection = QObject::connect(vesc.commands(), &Commands::detectAllFocReceived,
[&](int result) { received = true; code = result; });
try {
// The actual upstream wizard motor procedure, including its FW 5.02
// power-loss correction. Do not infer a battery profile from Ah/voltage.
report = Utility::detectAllFoc(&vesc, false, loss,
beforeMotor.getParamDouble("l_in_current_min"), beforeMotor.getParamDouble("l_in_current_max"),
beforeMotor.getParamDouble("foc_openloop_rpm"), beforeMotor.getParamDouble("foc_sl_erpm"));
require(received, "Native calibration completion was not received");
query(COMM_GET_MCCONF, 3000, true);
query(COMM_GET_APPCONF, 3000, true);
auto mc = vesc.mcConfig(); auto app = vesc.appConfig();
const QStringList admitted = {"l_current_max", "l_current_min", "motor_type", "foc_motor_r",
"foc_motor_l", "foc_motor_flux_linkage", "foc_current_kp", "foc_current_ki", "foc_observer_gain",
"foc_sensor_mode", "m_sensor_port_mode", "foc_encoder_offset", "foc_encoder_ratio", "foc_encoder_inverted",
"foc_hall_table__0", "foc_hall_table__1", "foc_hall_table__2", "foc_hall_table__3",
"foc_hall_table__4", "foc_hall_table__5", "foc_hall_table__6", "foc_hall_table__7"};
for (const auto &key : beforeMotor.checkDifference(mc)) {
require(admitted.contains(key), "Calibration changed a protected motor parameter");
changed.append(key);
}
for (const auto &key : beforeApp.checkDifference(app))
require(key == "send_can_status", "Calibration changed a protected receiver parameter");
// Native FW 5.02 enables CAN status as a side effect. Restore the
// original application exactly; retain existing PPM and CAN identity.
if (!beforeApp.checkDifference(app).isEmpty()) {
*app = beforeApp;
const auto expected = configurationPacket(app, COMM_GET_APPCONF);
require(exchange(COMM_SET_APPCONF, 3000, [&] { vesc.commands()->setAppConf(); }).size() == 1,
"Application write ACK invalid");
require(query(COMM_GET_APPCONF, 3000, true) == expected, "Application restore not byte-exact");
}
if (code < 0) {
// A completed failed detection can leave partial RAM changes.
// Only the known calibration fields passed the guard above.
*mc = beforeMotor;
} else {
for (const auto &key : {"foc_motor_r", "foc_motor_l", "foc_motor_flux_linkage"})
require(std::isfinite(mc->getParamDouble(key)) && mc->getParamDouble(key) > 0,
"Invalid detected motor parameter");
require(mc->getParamDouble("l_current_max") > 0 && mc->getParamDouble("l_current_min") < 0,
"Invalid detected current limits");
// Calibration must not silently increase the owner's existing
// current limits. The separate spin test applies its own 30 A cap.
mc->updateParamDouble("l_current_max", qMin(mc->getParamDouble("l_current_max"), beforeMotor.getParamDouble("l_current_max")));
mc->updateParamDouble("l_current_min", qMax(mc->getParamDouble("l_current_min"), beforeMotor.getParamDouble("l_current_min")));
}
const auto expected = configurationPacket(mc, COMM_GET_MCCONF);
if (expected != lastMotor) {
require(exchange(COMM_SET_MCCONF, 3000, [&] { vesc.commands()->setMcconf(false); }).size() == 1,
"Motor write ACK invalid");
require(query(COMM_GET_MCCONF, 3000, true) == expected, "Motor write not byte-exact");
}
validated = true;
} catch (const std::exception &e) { error = e.what(); }
QObject::disconnect(connection);
QJsonObject parameters;
for (const auto &key : {"l_current_max", "l_current_min", "foc_motor_r", "foc_motor_l", "foc_motor_flux_linkage"})
parameters.insert(key, vesc.mcConfig()->getParamDouble(key));
procedure = {{"kind", "foc"}, {"completed", received}, {"success", received && code >= 0 && validated},
{"validated", validated}, {"code", code}, {"report", report}, {"error", error},
{"sensor_mode", vesc.mcConfig()->getParamEnum("foc_sensor_mode")}, {"parameters", parameters},
{"changed", changed}, {"upstream", "Utility::detectAllFoc"}};
procedureUncertain = !validated;
procedureRunning = false;
}
double number(const QJsonObject &request, const QString &name, double min, double max) {
auto v = request.value(name);
require(v.isDouble() && std::isfinite(v.toDouble()) && v.toDouble() >= min && v.toDouble() <= max,
"Numeric argument is outside operation bounds");
return v.toDouble();
}
void flush() {
auto serial = vesc.findChild<QSerialPort *>();
require(serial && serial->isOpen(), "Serial transport closed");
serial->flush();
if (serial->bytesToWrite() > 0) require(serial->waitForBytesWritten(40), "Serial write not confirmed");
require(serial->bytesToWrite() == 0, "Serial write is incomplete");
}
QJsonObject dispatch(const QJsonObject &request) {
const auto method = request.value("method").toString();
if (method == "engine") return {{"version", "7.00"}, {"commit", "01d5f10901116c311e3fb84d5a1541f663d3ce20"},
{"connected", vesc.isPortConnected()}, {"hardware_enabled", allowHardware},
{"legacy_power_loss_correction", vesc.commands()->getMaxPowerLossBug()}};
require(allowHardware && vesc.isPortConnected(), "Native device is not connected");
if (method == "query") return {{"payload", QString::fromLatin1(query(
int(number(request, "command", 0, 255)), int(number(request, "timeout_ms", 20, 8000))).toBase64())}};
if (method == "procedure_result") return {{"running", procedureRunning}, {"uncertain", procedureUncertain}, {"result", procedure}};
if (method == "lease") { vesc.commands()->disableAppOutput(250, false); flush(); return {}; }
if (method == "release") { vesc.commands()->setCurrent(0); flush(); return {}; }
require(!procedureRunning && !procedureUncertain, "Native procedure owns this controller");
if (method == "current") {
auto current = number(request, "current_a", 0, 30);
require(current <= vesc.mcConfig()->getParamDouble("l_current_max"), "Configured current limit exceeded");
vesc.commands()->setCurrent(current); flush(); return {};
}
if (method == "rpm") { vesc.commands()->setRpm(int(number(request, "erpm", 0, 3000))); flush(); return {}; }
if (method == "limits") {
auto p = request.value("parameters").toObject();
MCCONF_TEMP conf;
conf.current_min_scale = number(p, "l_current_min_scale", 0, 1);
conf.current_max_scale = number(p, "l_current_max_scale", 0, 1);
// Restore/application may only change current scales. All other
// values must equal the last native read, including battery limits.
auto mc = vesc.mcConfig();
for (const auto &key : {"l_min_erpm", "l_max_erpm", "l_min_duty", "l_max_duty", "l_watt_min", "l_watt_max", "l_in_current_min", "l_in_current_max"})
require(p.value(key).isDouble() && p.value(key).toDouble() == mc->getParamDouble(key), "Only volatile current scales may change");
conf.erpm_or_speed_min = mc->getParamDouble("l_min_erpm");
conf.erpm_or_speed_max = mc->getParamDouble("l_max_erpm");
conf.duty_min = mc->getParamDouble("l_min_duty"); conf.duty_max = mc->getParamDouble("l_max_duty");
conf.watt_min = mc->getParamDouble("l_watt_min"); conf.watt_max = mc->getParamDouble("l_watt_max");
auto ack = exchange(COMM_SET_MCCONF_TEMP, 2000, [&] {
vesc.commands()->setMcconfTemp(conf, false, false, false, false, true);
});
require(ack.size() == 1, "Invalid native limits ACK"); return {};
}
if (method == "configuration") {
auto motor = query(COMM_GET_MCCONF, 2000);
auto application = query(COMM_GET_APPCONF, 2000);
return {{"motor", exportConfig(vesc.mcConfig(), motor, "MCConfiguration")},
{"application", exportConfig(vesc.appConfig(), application, "APPConfiguration")}};
}
if (method == "foc_start") {
const auto loss = number(request, "max_power_loss_w", 10, 150);
require(!lastMotor.isEmpty() && !lastApplication.isEmpty(), "Read configurations before calibration");
for (const auto &key : {"l_in_current_min", "l_in_current_max", "foc_openloop_rpm", "foc_sl_erpm"})
require(std::isfinite(vesc.mcConfig()->getParamDouble(key)) && std::abs(vesc.mcConfig()->getParamDouble(key)) > 0.001,
"Zero-valued detection inputs require an explicit equipment profile");
procedureRunning = true; procedure = {{"kind", "foc"}};
QTimer::singleShot(0, [this, loss] { calibrate(loss); });
return {{"started", true}, {"interruptible", false}};
}
if (method == "hall_start") {
require(request.value("current_a") == 5, "This Hall profile uses 5 A");
procedureRunning = true; procedure = {}; lastHall.clear();
QTimer::singleShot(0, [&] {
auto measured = Utility::measureHallFocBlocking(&vesc, 5.0);
QJsonArray table;
for (int i = 1; i < measured.size(); ++i) table.append(measured[i]);
const bool completed = measured.size() == 9 && measured.first() != -10;
procedure = {{"kind", "hall"}, {"completed", completed},
{"status", measured.isEmpty() ? -10 : measured.first()}, {"table", table},
{"payload", QString::fromLatin1(lastHall.toBase64())},
{"upstream", "Utility::measureHallFocBlocking"}};
procedureUncertain = !completed;
procedureRunning = false;
});
return {{"started", true}, {"interruptible", false}};
}
throw std::runtime_error("Native operation is not admitted");
}
};
int main(int argc, char **argv) {
qputenv("QT_QPA_PLATFORM", "offscreen");
QApplication application(argc, argv);
QCoreApplication::setOrganizationName("MissionCore");
QCoreApplication::setApplicationName("VescToolEngine");
try {
require(argc == 2, "One exact serial port or --offline argument is required");
Engine engine;
const QString port = QString::fromLocal8Bit(argv[1]);
if (port != "--offline") engine.open(port);
QFile output; output.open(stdout, QIODevice::WriteOnly);
auto write = [&](const QJsonObject &value) {
output.write(QJsonDocument(value).toJson(QJsonDocument::Compact) + '\n'); output.flush();
};
write({{"ready", true}, {"engine", engine.dispatch({{"method", "engine"}})}});
QByteArray buffer;
fcntl(STDIN_FILENO, F_SETFL, fcntl(STDIN_FILENO, F_GETFL) | O_NONBLOCK);
QSocketNotifier input(STDIN_FILENO, QSocketNotifier::Read);
QObject::connect(&input, &QSocketNotifier::activated, [&] {
char chunk[4096]; const auto size = ::read(STDIN_FILENO, chunk, sizeof(chunk));
if (size == 0) { application.quit(); return; }
if (size < 0) return;
buffer.append(chunk, int(size));
if (buffer.size() > 65536) { application.exit(2); return; }
int end;
while ((end = buffer.indexOf('\n')) >= 0) {
auto raw = buffer.left(end); buffer.remove(0, end + 1);
QJsonParseError error;
auto document = QJsonDocument::fromJson(raw, &error);
auto request = document.object();
QJsonObject response{{"id", request.value("id")}};
try {
require(error.error == QJsonParseError::NoError && document.isObject(), "Invalid JSON request");
response.insert("result", engine.dispatch(request)); response.insert("ok", true);
} catch (const ExchangeFailure &e) {
response.insert("ok", false); response.insert("error", e.what());
response.insert("diagnostics", e.diagnostics);
} catch (const std::exception &e) { response.insert("ok", false); response.insert("error", e.what()); }
write(response);
}
});
return application.exec();
} catch (const std::exception &error) {
fprintf(stderr, "Native engine startup failed: %s\n", error.what());
return 1;
}
}
+85
View File
@@ -0,0 +1,85 @@
// SPDX-License-Identifier: GPL-3.0-or-later
// Mission Core adapter to the unmodified VESC Tool engine. No hardware transport
// is admitted by this executable. Input is one archived snapshot on stdin.
#include "config_export.h"
int main(int argc, char **argv) {
// This application never calls connectSerial/connectTcp/connectBle or starts
// a Qt event loop. Upstream timers therefore cannot reconnect or poll.
qputenv("QT_QPA_PLATFORM", "offscreen");
QApplication app(argc, argv);
QCoreApplication::setOrganizationName("MissionCore");
QCoreApplication::setApplicationName("VescToolOfflineAdapter");
QJsonObject result{{"schema", "missioncore.vesc.native-offline/v1"},
{"upstream_commit", "01d5f10901116c311e3fb84d5a1541f663d3ce20"},
{"upstream_version", QString::number(VT_VERSION, 'f', 2)},
{"hardware_access", false}};
try {
require(argc == 1, "No command-line transport or operation arguments are accepted");
QFile input; require(input.open(stdin, QIODevice::ReadOnly), "Cannot read input");
const auto raw = input.read(1024 * 1024 + 1);
require(!raw.isEmpty() && raw.size() <= 1024 * 1024, "Archive input is empty or too large");
QJsonParseError parse;
auto document = QJsonDocument::fromJson(raw, &parse);
require(parse.error == QJsonParseError::NoError && document.isObject(), "Invalid archive JSON");
const auto archive = document.object();
const auto identity = archive.value("identity").toObject();
FW_RX_PARAMS fw;
fw.major = identity.value("major").toInt(-1);
fw.minor = identity.value("minor").toInt(-1);
fw.hw = identity.value("hardware").toString();
fw.isTestFw = identity.value("test_firmware").toInt(-1);
fw.customConfigNum = identity.value("custom_configs").toInt(-1);
const auto uuid = identity.value("uuid").toString();
require(QRegularExpression("^[0-9a-fA-F]{24}$").match(uuid).hasMatch(), "Invalid archived UUID");
fw.uuid = QByteArray::fromHex(uuid.toLatin1());
require(fw.major == 5 && fw.minor == 2 && fw.isTestFw == 0 && fw.customConfigNum == 0
&& identity.value("hardware_type").toInt(-1) == 0,
"Offline acceptance currently admits stable firmware 5.02 only");
VescInterface vesc;
require(Utility::configLoadLatest(&vesc), "Bundled upstream configuration resources missing");
auto *commands = vesc.commands();
// Replay the archived identity through the real firmware negotiation
// signal. The real engine selects bundled schemas and compatibility.
commands->fwVersionReceived(fw);
require(!vesc.isPortConnected(), "Offline adapter unexpectedly connected");
require(vesc.mcConfig()->getSerializeOrder().size() > 0, "Native schema not selected");
bool failed = false;
QObject::connect(commands, &Commands::deserializeConfigFailed,
[&](bool, bool) { failed = true; });
auto motor = archivePacket(archive, "motor", COMM_GET_MCCONF);
auto application = archivePacket(archive, "application", COMM_GET_APPCONF);
// FW 5.02 has fixed-size configurations. Obtain their size through the
// public native serializer; do not reproduce the private schema walker.
VByteArray motorShape, applicationShape;
vesc.mcConfig()->serialize(motorShape);
vesc.appConfig()->serialize(applicationShape);
require(motor.size() == motorShape.size() + 1 && application.size() == applicationShape.size() + 1,
"Archive length differs from the native firmware schema");
commands->processPacket(motor);
commands->processPacket(application);
require(!failed, "Upstream rejected archived configuration");
result.insert("motor", exportConfig(vesc.mcConfig(), motor, "MCConfiguration"));
result.insert("application", exportConfig(vesc.appConfig(), application, "APPConfiguration"));
// A disconnected serializer-only probe demonstrates that FW-specific
// detect corrections execute upstream. This byte array goes nowhere.
QByteArray encodedDetect;
QObject::connect(commands, &Commands::dataToSend, [&](QByteArray &data) {
if (!data.isEmpty() && quint8(data.at(0)) == COMM_DETECT_APPLY_ALL_FOC) encodedDetect = data;
});
commands->detectAllFoc(false, 100.0, 0.0, 0.0, 0.0, 0.0);
require(!encodedDetect.isEmpty() && !vesc.isPortConnected(), "Offline serialization failed");
result.insert("compatibility", QJsonObject{
{"legacy_power_loss_correction", commands->getMaxPowerLossBug()},
{"offline_detect_example_base64", QString::fromLatin1(encodedDetect.toBase64())},
{"example_requested_power_loss_w", 100.0}, {"transmitted_to_hardware", false}});
result.insert("archive_sha256", sha256(raw));
result.insert("ok", true);
} catch (const std::exception &error) {
result = QJsonObject{{"schema", "missioncore.vesc.native-offline/v1"},
{"ok", false}, {"hardware_access", false}, {"error", error.what()}};
}
QFile output; output.open(stdout, QIODevice::WriteOnly);
output.write(QJsonDocument(result).toJson(QJsonDocument::Compact) + '\n');
return result.value("ok").toBool() ? 0 : 1;
}
@@ -0,0 +1,2 @@
# Exact observed candidate descriptor. Firmware identity is verified by the reader.
SUBSYSTEM=="tty", ATTRS{idVendor}=="0483", ATTRS{idProduct}=="5740", ATTRS{product}=="ChibiOS/RT Virtual COM Port", GROUP="mission-core-vesc", MODE="0660", ENV{ID_MM_DEVICE_IGNORE}="1", ENV{ID_MM_PORT_IGNORE}="1"
@@ -0,0 +1,33 @@
"""Create the deterministic, self-contained native-engine qualification job."""
import argparse
import hashlib
import json
from pathlib import Path
import zipfile
def build(output):
root = Path(__file__).resolve().parents[1]
files = {"__main__.py": (root / "packaging/native_probe.py").read_bytes(),
"offline_main.cpp": (root / "native/offline_main.cpp").read_bytes(),
"config_export.h": (root / "native/config_export.h").read_bytes(),
"engine_main.cpp": (root / "native/engine_main.cpp").read_bytes(),
"native_bundle.py": (root / "packaging/native_bundle.py").read_bytes()}
identity = hashlib.sha256(b"".join(k.encode() + v for k, v in sorted(files.items()))).hexdigest()[:24]
output.mkdir(parents=True, exist_ok=True)
path = output / ("mission-core-vesc-native-probe-" + identity + ".pyz")
with zipfile.ZipFile(path, "w", zipfile.ZIP_DEFLATED) as bundle:
for name, data in files.items():
entry = zipfile.ZipInfo(name, (2026, 9, 23, 0, 0, 0))
entry.external_attr = 0o600 << 16
bundle.writestr(entry, data)
result = {"id": identity, "artifact": str(path.resolve()),
"sha256": hashlib.sha256(path.read_bytes()).hexdigest(), "bytes": path.stat().st_size}
(output / "current-artifact.json").write_text(json.dumps(result, indent=2) + "\n")
return result
if __name__ == "__main__":
parser = argparse.ArgumentParser()
parser.add_argument("--output", type=Path, required=True)
print(json.dumps(build(parser.parse_args().output)))
@@ -0,0 +1,22 @@
"""Discard only generated VESC bytecode before starting an upgraded profile.
Deterministic packages reuse file mtimes; a same-size Python source update
can otherwise validate an old timestamp-based pyc, even with python -B.
"""
from pathlib import Path
import shutil
import sys
def clear(root):
for cache in root.rglob("__pycache__"):
if cache.is_symlink():
cache.unlink()
elif cache.is_dir():
shutil.rmtree(cache)
if __name__ == "__main__":
if sys.argv[1:]:
raise ValueError("This installer step accepts no paths or arguments")
clear(Path("/usr/lib/mission-core-vesc"))
@@ -0,0 +1,8 @@
[Unit]
Description=Prepare the versioned VESC read profile
[Service]
Type=oneshot
ExecStart=/usr/bin/python3 -I -B /usr/lib/mission-core-vesc/prepare.py
TimeoutStartSec=90
UMask=0022
@@ -0,0 +1,37 @@
[Unit]
Description=Mission Core VESC Tool service
Wants=modprobe@cdc_acm.service
After=systemd-udev-settle.service modprobe@cdc_acm.service
[Service]
Type=simple
User=mission-core-vesc
Group=mission-core-node
SupplementaryGroups=mission-core-vesc
WorkingDirectory=/usr/lib/mission-core-vesc
ExecStart=/usr/bin/python3 -B -m runtime.server
RuntimeDirectory=mission-core-vesc
RuntimeDirectoryMode=0750
StateDirectory=mission-core-vesc
StateDirectoryMode=0700
UMask=0007
Restart=on-failure
RestartSec=5
NoNewPrivileges=yes
CapabilityBoundingSet=
AmbientCapabilities=
PrivateNetwork=yes
ProtectSystem=strict
ProtectHome=yes
ProtectKernelTunables=yes
ProtectKernelModules=yes
ProtectControlGroups=yes
RestrictSUIDSGID=yes
RestrictAddressFamilies=AF_UNIX
DevicePolicy=closed
DeviceAllow=char-ttyACM rw
MemoryMax=512M
TasksMax=64
[Install]
WantedBy=multi-user.target
+676
View File
@@ -0,0 +1,676 @@
{
"schema": "missioncore.vesc.native-runtime/v1",
"upstream_version": "7.00",
"upstream_commit": "01d5f10901116c311e3fb84d5a1541f663d3ce20",
"os": "ubuntu-24.04-amd64",
"file": "mission-core-vesc-native-runtime.tar.gz",
"bytes": 50352726,
"sha256": "cc78c273e025f0738ed79f94d4bc6a70e504f2e7204b1ef694119e6a230b913a",
"engine_sha256": "9d2d6a87032e3c60f2666cadd5d5d1520edac05087e0dcb7a5ac3875f2ace325",
"files": {
"bin/mission-core-vesc-engine": {
"sha256": "9d2d6a87032e3c60f2666cadd5d5d1520edac05087e0dcb7a5ac3875f2ace325",
"bytes": 24801544
},
"lib/libGL.so.1": {
"sha256": "67f471213576d225d38347a0b6d2a08a231980685301ff6461bd74d3994e5027",
"bytes": 547136
},
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"sha256": "16fc8a37eea9210dc83c57eeff5aedc10ab4c6673f2f97e8bb6ee103df657b40",
"bytes": 137792
},
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"sha256": "ca01a91104c8887b3d8e59499b58cbb8f604cc285666b50d9ec888eb0c915182",
"bytes": 719304
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"plugins/platforms/libqoffscreen.so": {
"sha256": "f2f19a29e816c7e5c60fd52b9d3c1a214634c38e06cd2ffdf9fc88e9f0c49ffd",
"bytes": 193880
}
},
"host_libraries": [
"ld-linux-x86-64.so.2",
"libc.so.6",
"libdl.so.2",
"libm.so.6",
"libpthread.so.0",
"libresolv.so.2",
"librt.so.1"
],
"offline_verified": true,
"hardware_qualified": false,
"clean_os_qualified": false
}
+95
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"""Bundle an admitted native engine and the actual ELF dependency closure.
Private, installer-owned Qt runtime; never installs packages on the build host.
The target is Ubuntu 24.04 amd64. Only its glibc family stays a host prerequisite.
"""
import argparse
import hashlib
import json
import os
from pathlib import Path
import re
import shutil
import subprocess
import tarfile
SYSTEM = {"libc.so.6", "libm.so.6", "libpthread.so.0", "libdl.so.2", "librt.so.1", "libresolv.so.2", "ld-linux-x86-64.so.2"}
def build(engine, sysroot, source, output):
output.mkdir(mode=0o700, exist_ok=False)
staging = output / "payload"
(staging / "bin").mkdir(parents=True)
(staging / "lib").mkdir()
(staging / "plugins/platforms").mkdir(parents=True)
binary = staging / "bin/mission-core-vesc-engine"
shutil.copyfile(engine, binary); binary.chmod(0o755)
qtlib = sysroot / "usr/lib/x86_64-linux-gnu"
plugin = qtlib / "qt5/plugins/platforms/libqoffscreen.so"
shutil.copyfile(plugin, staging / "plugins/platforms/libqoffscreen.so")
env = dict(os.environ, LD_LIBRARY_PATH=str(qtlib), LC_ALL="C")
sources = {}
for executable in (engine, plugin):
result = subprocess.run(["/usr/bin/ldd", str(executable)], env=env, capture_output=True, text=True, check=True).stdout
if "not found" in result: raise RuntimeError("Native runtime dependency missing")
for name, path in re.findall(r"^\s*(\S+) => (/[\S]+) \(", result, re.MULTILINE):
if name in SYSTEM: continue
library = Path(path)
if name in sources and sources[name] != library: raise RuntimeError("Conflicting dependency")
sources[name] = library
for name, library in sources.items(): shutil.copyfile(library, staging / "lib" / name)
env.update(LD_LIBRARY_PATH=str(staging / "lib"), QT_PLUGIN_PATH=str(staging / "plugins"),
QT_QPA_PLATFORM="offscreen", XDG_CONFIG_HOME=str(output / "config"), XDG_CACHE_HOME=str(output / "cache"))
# All non-glibc ELF dependencies must now resolve inside the shipped payload.
for executable in (binary, staging / "plugins/platforms/libqoffscreen.so"):
result = subprocess.run(["/usr/bin/ldd", str(executable)], env=env, capture_output=True, text=True, check=True).stdout
if "not found" in result: raise RuntimeError("Bundled native closure incomplete")
for name, path in re.findall(r"^\s*(\S+) => (/[\S]+) \(", result, re.MULTILINE):
if name not in SYSTEM and not Path(path).resolve().is_relative_to(staging):
raise RuntimeError("Undeclared host dependency: " + name)
proc = subprocess.run([str(binary), "--offline"], env=env, input=b'{"id":1,"method":"engine"}\n',
capture_output=True, timeout=15, check=True)
responses = [json.loads(line) for line in proc.stdout.splitlines()]
if len(responses) != 2 or not responses[0]["ready"] or responses[1]["result"]["connected"]:
raise RuntimeError("Bundled engine acceptance failed")
(output / "offline.stdout").write_bytes(proc.stdout)
(output / "offline.stderr").write_bytes(proc.stderr)
(staging / "licenses").mkdir()
shutil.copyfile(source / "LICENSE", staging / "licenses/VESC-Tool-LICENSE")
(staging / "licenses/UPSTREAM-SOURCE.txt").write_text(
"VESC Tool 7.00, unmodified upstream sources and resources:\n"
"https://github.com/vedderb/vesc_tool/tree/01d5f10901116c311e3fb84d5a1541f663d3ce20\n"
"Source archive SHA-256: 4565ecec4e41e094bcc43127a51970e810aa9080a9d7c025af64632bfd4c0189\n"
"The process adapter source is included alongside this notice.\n")
for name in ("engine_main.cpp", "config_export.h"):
shutil.copyfile(engine.parent / name, staging / "licenses" / name)
# Preserve dependency notices available in the private signed-package sysroot.
for index, path in enumerate(sorted((sysroot / "usr/share/doc").glob("*/copyright"))):
shutil.copyfile(path, staging / "licenses" / (path.parent.name + ".copyright"))
# Host libraries copied into the closure retain their distribution notices.
for library in sources.values():
if library.resolve().is_relative_to(sysroot): continue
owner = subprocess.run(["dpkg-query", "-S", str(library)], capture_output=True, text=True)
if owner.returncode: continue
package = owner.stdout.split(": ", 1)[0].split(":", 1)[0]
notice = Path("/usr/share/doc") / package / "copyright"
if notice.is_file(): shutil.copyfile(notice, staging / "licenses" / (package + ".copyright"))
metadata = {str(p.relative_to(staging)): {"sha256": hashlib.sha256(p.read_bytes()).hexdigest(), "bytes":p.stat().st_size}
for p in sorted(staging.rglob("*")) if p.is_file()}
archive = output / "mission-core-vesc-native-runtime.tar.gz"
with tarfile.open(archive, "w:gz") as stream:
for path in sorted(staging.rglob("*")):
if path.is_file(): stream.add(path, arcname=str(path.relative_to(staging)))
report = {"schema":"missioncore.vesc.native-runtime/v1", "upstream_version":"7.00",
"upstream_commit":"01d5f10901116c311e3fb84d5a1541f663d3ce20", "os":"ubuntu-24.04-amd64",
"file":archive.name, "bytes":archive.stat().st_size, "sha256":hashlib.sha256(archive.read_bytes()).hexdigest(),
"engine_sha256":hashlib.sha256(binary.read_bytes()).hexdigest(), "files":metadata,
"host_libraries":sorted(SYSTEM), "offline_verified":True, "hardware_qualified":False,
"clean_os_qualified":False}
(output / "bundle.json").write_text(json.dumps(report,indent=2)+"\n")
if __name__ == "__main__":
parser=argparse.ArgumentParser()
for name in ("engine","sysroot","source","output"):parser.add_argument("--"+name,type=Path,required=True)
args=parser.parse_args();build(args.engine,args.sysroot,args.source,args.output)
+34
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"""Installer acceptance under the service account; never opens a USB device."""
import hashlib
import json
import os
from pathlib import Path
import subprocess
import tempfile
def check(root):
manifest = json.loads((root / "manifest.json").read_text())
for name, expected in manifest["files"].items():
path = root / name
if path.is_symlink() or not path.resolve().is_relative_to(root.resolve()):
raise RuntimeError("Untrusted native runtime path")
if path.stat().st_size != expected["bytes"] or hashlib.sha256(path.read_bytes()).hexdigest() != expected["sha256"]:
raise RuntimeError("Native runtime integrity check failed")
with tempfile.TemporaryDirectory(prefix="mission-core-vesc-check-") as temporary:
env = {"PATH":"/usr/bin:/bin", "LANG":"C.UTF-8", "QT_QPA_PLATFORM":"offscreen",
"LD_LIBRARY_PATH":str(root / "lib"), "QT_PLUGIN_PATH":str(root / "plugins"),
"XDG_CONFIG_HOME":temporary, "XDG_CACHE_HOME":temporary}
result = subprocess.run([str(root / "bin/mission-core-vesc-engine"), "--offline"],
env=env, input=b'{"id":1,"method":"engine"}\n', capture_output=True, timeout=15, check=True)
replies = [json.loads(line) for line in result.stdout.splitlines()]
if (len(replies) != 2 or not replies[0]["ready"] or not replies[1]["ok"]
or replies[1]["result"]["hardware_enabled"] or replies[1]["result"]["connected"]
or replies[1]["result"]["commit"] != manifest["upstream_commit"]):
raise RuntimeError("Native engine offline check failed")
print(json.dumps({"ok":True, "upstream_commit":manifest["upstream_commit"], "hardware_access":False}))
if __name__ == "__main__":
if os.geteuid() == 0: raise RuntimeError("Run as the VESC service account")
check(Path(__file__).resolve().parent / "native")
+183
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"""Versioned offline qualification artifact, not a runtime installer.
Reuse an attested upstream Tool build's object files unchanged. Only the adapter
entry point is compiled. The previous staging, packages and services are untouched.
All inputs, link objects, outputs and checks are hashed in the private report.
"""
import argparse
from datetime import datetime, timezone
import hashlib
import json
import os
from pathlib import Path
import platform
import re
import subprocess
import time
import zipfile
COMMIT = "01d5f10901116c311e3fb84d5a1541f663d3ce20"
UPSTREAM_SHA256 = "4565ecec4e41e094bcc43127a51970e810aa9080a9d7c025af64632bfd4c0189"
def digest(path):
return hashlib.sha256(path.read_bytes()).hexdigest()
def run(args):
release = platform.freedesktop_os_release()
if os.geteuid() == 0 or (release.get("ID"), release.get("VERSION_ID"), platform.machine()) != ("ubuntu", "24.04", "x86_64"):
raise RuntimeError("Unprivileged Ubuntu 24.04 amd64 required")
group = Path("/sys/fs/cgroup") / Path("/proc/self/cgroup").read_text().strip().split("::", 1)[1].lstrip("/")
limit = (group / "memory.max").read_text().strip()
if limit == "max" or int(limit) > 3 * 1024**3:
raise RuntimeError("A bounded user scope with MemoryMax <= 3G is required")
previous = json.loads(args.upstream_report.read_text())
if previous.get("state") != "complete" or previous.get("source_sha256") != UPSTREAM_SHA256:
raise RuntimeError("Unqualified upstream build")
upstream = Path(previous["binary"])
if digest(upstream) != previous["binary_sha256"]:
raise RuntimeError("Upstream binary changed")
source = upstream.parents[2]
if source.name != "vesc_tool-" + COMMIT:
raise RuntimeError("Upstream source path mismatch")
os.umask(0o077)
root = args.output.resolve()
root.mkdir(parents=True, mode=0o700, exist_ok=False)
# Paths enter a generated makefile, never a shell command assembled from JSON.
if any(not re.fullmatch(r"[A-Za-z0-9_./-]+", str(p)) for p in (root, source)):
raise RuntimeError("Build paths must be make-safe")
with zipfile.ZipFile(args.artifact) as bundle:
for name in ("offline_main.cpp", "config_export.h", "engine_main.cpp", "native_bundle.py"):
(root / name).write_bytes(bundle.read(name))
report = {"schema": "missioncore.vesc.native-probe/v1", "state": "running",
"started_at": datetime.now(timezone.utc).isoformat(), "monotonic_started": time.monotonic(),
"source_commit": COMMIT, "artifact_sha256": digest(args.artifact),
"upstream_report_sha256": digest(args.upstream_report),
"adapter_sha256": digest(root / "offline_main.cpp"),
"hardware_access": False, "runtime_installed": False, "system_packages_installed": False,
"jobs": [], "checks": []}
def publish():
(root / "report.json").write_text(json.dumps(report, indent=2) + "\n")
staging = source.parents[1]
qtbase = staging / "sysroot/usr"
env = dict(os.environ, LC_ALL="C", QT_QPA_PLATFORM="offscreen",
LD_LIBRARY_PATH=str(qtbase / "lib/x86_64-linux-gnu"),
QT_PLUGIN_PATH=str(qtbase / "lib/x86_64-linux-gnu/qt5/plugins"),
XDG_CONFIG_HOME=str(root / "config"), XDG_CACHE_HOME=str(root / "cache"))
def execute(name, command, data=None, expected=0, timeout=60):
start = time.monotonic()
proc = subprocess.run(command, cwd=source, env=env, input=data,
stdout=subprocess.PIPE, stderr=subprocess.PIPE, timeout=timeout)
(root / (name + ".stdout")).write_bytes(proc.stdout)
(root / (name + ".stderr")).write_bytes(proc.stderr)
report["jobs"].append({"id": name, "exit_code": proc.returncode,
"duration_seconds": time.monotonic() - start,
"stdout_sha256": hashlib.sha256(proc.stdout).hexdigest(),
"stderr_sha256": hashlib.sha256(proc.stderr).hexdigest()})
publish()
if proc.returncode != expected:
raise RuntimeError("Native probe step failed: " + name)
return proc.stdout
try:
makefile = (source / "Makefile").read_text().replace("\\\n", " ")
match = re.search(r"^OBJECTS\s*=\s*(.+)$", makefile, re.MULTILINE)
if not match:
raise RuntimeError("Upstream link objects missing")
objects = [source / name for name in match.group(1).split() if name != "build/lin/obj/main.o"]
if not 100 < len(objects) < 1000 or any(not p.is_file() for p in objects):
raise RuntimeError("Upstream object inventory incomplete")
report["link_objects"] = [{"file": str(p.relative_to(source)), "sha256": digest(p)} for p in objects]
report["upstream_makefile_sha256"] = digest(source / "Makefile")
target = root / "mission-core-vesc-offline"
wrapper = root / "Makefile.native"
wrapper.write_text(
"include " + str(source / "Makefile") + "\n"
".PHONY: mission-core-native-probe\n"
"mission-core-native-probe:\n"
"\t$(CXX) -c $(CXXFLAGS) $(INCPATH) -o " + str(root / "offline_main.o") + " " + str(root / "offline_main.cpp") + "\n"
"\t$(LINK) $(LFLAGS) -o " + str(target) + " " + str(root / "offline_main.o") +
" $(filter-out build/lin/obj/main.o,$(OBJECTS)) $(OBJCOMP) $(LIBS)\n")
execute("compile-link", ["/usr/bin/make", "-f", str(wrapper), "mission-core-native-probe"], timeout=180)
report["binary_sha256"] = digest(target)
for index, archive in enumerate(args.archives):
raw = archive.read_bytes()
native = json.loads(execute("archive-%d" % index, [str(target)], raw))
if not native["ok"] or not native["compatibility"]["legacy_power_loss_correction"]:
raise RuntimeError("Upstream compatibility check failed")
import base64
packet = base64.b64decode(native["compatibility"]["offline_detect_example_base64"])
if packet[:2] != bytes([58, 0]) or int.from_bytes(packet[2:6], "big", signed=True) != 50000:
raise RuntimeError("Expected native 5.02 detect correction was not applied")
report["checks"].append({"id": "native-archive-%d" % index, "ok": True,
"archive_sha256": hashlib.sha256(raw).hexdigest(),
"motor_parameter_count": len(native["motor"]["parameters"]),
"application_parameter_count": len(native["application"]["parameters"]),
"binary_round_trip_exact": True,
"xml_equivalent_by_upstream_comparison": True,
"xml_binary_exact": all(native[k]["xml_round_trip_exact"] for k in ("motor", "application")),
"legacy_power_loss_correction": True})
# Fail closed on archive corruption and unsupported firmware instead
# of silently presenting the bundled defaults as actual settings.
original = json.loads(raw)
damaged = json.loads(raw); damaged["configs"]["motor"]["sha256"] = "0" * 64
unknown = json.loads(raw); unknown["identity"]["major"] = 99
wrong_signature = json.loads(raw)
payload = bytearray(base64.b64decode(original["configs"]["motor"]["payload"])); payload[1] ^= 1
wrong_signature["configs"]["motor"]["payload"] = base64.b64encode(payload).decode()
wrong_signature["configs"]["motor"]["sha256"] = hashlib.sha256(payload).hexdigest()
truncated = json.loads(raw)
payload = base64.b64decode(original["configs"]["motor"]["payload"])[:-1]
truncated["configs"]["motor"].update(payload=base64.b64encode(payload).decode(),
sha256=hashlib.sha256(payload).hexdigest(), bytes=len(payload))
for name, value in (("corrupt", damaged), ("unsupported", unknown), ("signature", wrong_signature), ("truncated", truncated)):
rejected = json.loads(execute("%s-%d" % (name, index), [str(target)], json.dumps(value).encode(), expected=1))
if rejected["ok"] or rejected["hardware_access"]:
raise RuntimeError("Invalid archive was not rejected")
report["checks"].append({"id": "%s-%d" % (name, index), "ok": True})
for item in report["link_objects"]:
if digest(source / item["file"]) != item["sha256"]:
raise RuntimeError("Upstream objects were modified")
engine = root / "mission-core-vesc-engine"
wrapper.write_text(wrapper.read_text() +
"\n.PHONY: mission-core-native-engine\nmission-core-native-engine:\n"
"\t$(CXX) -c $(CXXFLAGS) $(INCPATH) -o " + str(root / "engine_main.o") + " " + str(root / "engine_main.cpp") + "\n"
"\t$(LINK) $(LFLAGS) -o " + str(engine) + " " + str(root / "engine_main.o") +
" $(filter-out build/lin/obj/main.o,$(OBJECTS)) $(OBJCOMP) $(LIBS)\n")
execute("engine-compile", ["/usr/bin/make", "-f", str(wrapper), "mission-core-native-engine"], timeout=180)
requests = [{"id": 1, "method": "engine"}, {"id": 2, "method": "current", "current_a": 30},
{"id": 3, "method": "hall_start", "current_a": 5}, {"id": 4, "method": "arbitrary_packet"}]
responses = [json.loads(line) for line in execute("engine-offline", [str(engine), "--offline"],
b"".join(json.dumps(r).encode()+b"\n" for r in requests)).splitlines()]
if (len(responses) != 5 or not responses[0]["ready"] or not responses[1]["ok"]
or any(r["ok"] for r in responses[2:]) or responses[1]["result"]["hardware_enabled"]):
raise RuntimeError("Native engine offline boundary failed")
report["checks"].append({"id": "engine-offline-denies-hardware", "ok": True})
execute("runtime-bundle", ["/usr/bin/python3", str(root / "native_bundle.py"),
"--engine", str(engine), "--sysroot", str(staging / "sysroot"), "--source", str(source), "--output", str(root / "runtime")], timeout=180)
report["native_runtime"] = json.loads((root / "runtime/bundle.json").read_text())
report.update(state="complete", binary=str(target), upstream_objects_unchanged=True)
except Exception as error:
report.update(state="error", error=str(error))
raise
finally:
report["finished_at"] = datetime.now(timezone.utc).isoformat()
report["duration_seconds"] = time.monotonic() - report["monotonic_started"]
publish()
def main():
parser = argparse.ArgumentParser()
parser.add_argument("--artifact", type=Path, required=True)
parser.add_argument("--upstream-report", type=Path, required=True)
parser.add_argument("--output", type=Path, required=True)
parser.add_argument("--archives", type=Path, nargs="+", required=True)
run(parser.parse_args())
if __name__ == "__main__":
main()
+49
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@@ -0,0 +1,49 @@
"""The Node release carries this model profile from the first hardware use."""
from pathlib import Path, PurePosixPath
import hashlib
import json
import tarfile
def payload():
root = Path(__file__).resolve().parents[1]
files = [("usr/lib/mission-core-vesc/runtime/" + p.name, p.read_bytes(), 0o644)
for p in sorted((root / "runtime").glob("*.py"))]
files.extend(("usr/lib/mission-core-vesc/runtime/" + str(p.relative_to(root / "runtime")), p.read_bytes(), 0o644)
for p in sorted((root / "runtime/schemas").rglob("*")) if p.is_file())
files.append(("usr/lib/mission-core-vesc/runtime/archive.py",
(root.parents[1] / "src/k1link/device_plugins/vesc/archive.py").read_bytes(), 0o644))
for name in ("mission-core-vesc.service", "mission-core-node-vesc-prepare.service"):
files.append(("usr/lib/systemd/system/" + name, (root / "packaging" / name).read_bytes(), 0o644))
files.append(("usr/lib/mission-core-vesc/prepare.py", (root / "packaging/prepare.py").read_bytes(), 0o644))
files.append(("usr/lib/mission-core-vesc/clear_runtime_cache.py", (root / "packaging/clear_runtime_cache.py").read_bytes(), 0o644))
files.append(("usr/share/mission-core-node/profiles/vesc/70-mission-core-vesc.rules",
(root / "packaging/70-mission-core-vesc.rules").read_bytes(), 0o644))
manifest = json.loads((root / "packaging/native-runtime.json").read_text())
bundle = root / "build/native-runtime" / manifest["file"]
data = bundle.read_bytes()
if len(data) != manifest["bytes"] or hashlib.sha256(data).hexdigest() != manifest["sha256"]:
raise ValueError("Native VESC Tool bundle changed")
seen = set()
with tarfile.open(bundle, "r:gz") as archive:
for member in archive.getmembers():
path = PurePosixPath(member.name)
if (not member.isfile() or path.is_absolute() or ".." in path.parts
or path.as_posix() != member.name or member.name in seen
or member.name not in manifest["files"]):
raise ValueError("Unexpected native payload member")
seen.add(member.name)
expected = manifest["files"][member.name]
if member.size != expected["bytes"] or member.size > 128 * 1024**2:
raise ValueError("Native member size mismatch")
content = archive.extractfile(member).read()
if hashlib.sha256(content).hexdigest() != expected["sha256"]:
raise ValueError("Native member hash mismatch")
mode = 0o755 if member.name.startswith("bin/") else 0o644
files.append(("usr/lib/mission-core-vesc/native/" + member.name, content, mode))
if seen != set(manifest["files"]): raise ValueError("Incomplete native payload")
files.append(("usr/lib/mission-core-vesc/native/manifest.json",
(root / "packaging/native-runtime.json").read_bytes(), 0o644))
files.append(("usr/lib/mission-core-vesc/native_check.py",
(root / "packaging/native_check.py").read_bytes(), 0o644))
return files
+88
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"""Versioned, idempotent VESC profile; no packages downloaded and no motor I/O."""
import fcntl
import hashlib
import json
import os
from pathlib import Path
import platform
import subprocess
import sys
import time
import uuid
sys.path.insert(0, str(Path(__file__).resolve().parent))
from runtime.serial import discover
from runtime.service import atomic
STATE = Path("/var/lib/mission-core-node-profiles/vesc")
def prepare():
if os.geteuid() != 0 or sys.argv[1:]:
raise RuntimeError("Fixed system profile only")
release = platform.freedesktop_os_release()
if (release.get("ID"), release.get("VERSION_ID"), platform.machine()) != ("ubuntu", "24.04", "x86_64"):
raise RuntimeError("Ubuntu 24.04 amd64 required")
STATE.mkdir(mode=0o755, parents=True, exist_ok=True)
for directory in (STATE.parent, STATE):
info = directory.lstat()
if directory.is_symlink() or info.st_uid != 0 or info.st_mode & 0o022:
raise RuntimeError("Untrusted profile state")
lock = os.open(STATE / "prepare.lock", os.O_CREAT | os.O_RDWR | os.O_NOFOLLOW, 0o600)
fcntl.flock(lock, fcntl.LOCK_EX | fcntl.LOCK_NB)
report = {"schema": "missioncore.node.device-preparation/v1", "model_id": "vesc.controller",
"version": "0.6.3", "run_id": uuid.uuid4().hex, "started_at": time.time(),
"monotonic_started": time.monotonic(), "state": "running", "steps": []}
def publish():
atomic(STATE / "preparation.json", report)
os.chmod(STATE / "preparation.json", 0o644)
def run(name, label, args):
step = {"id": name, "label": label, "state": "running"}
report["steps"].append(step)
publish()
result = subprocess.run(args, capture_output=True, timeout=45,
env={"PATH": "/usr/sbin:/usr/bin:/sbin:/bin", "LANG": "C.UTF-8"})
step["state"] = "complete" if result.returncode == 0 else "error"
publish()
if result.returncode:
raise RuntimeError("Не завершён этап: " + label)
try:
import pwd
try:
pwd.getpwnam("mission-core-vesc")
except KeyError:
run("account", "Подготовка доступа", ["/usr/sbin/adduser", "--system", "--group", "--home",
"/var/lib/mission-core-vesc", "--no-create-home", "--disabled-login", "mission-core-vesc"])
run("native", "Проверка VESC Tool", ["/usr/sbin/runuser", "-u", "mission-core-vesc", "--",
"/usr/bin/python3", "-I", "/usr/lib/mission-core-vesc/native_check.py"])
source = Path("/usr/share/mission-core-node/profiles/vesc/70-mission-core-vesc.rules")
rules = source.read_bytes()
report["udev_sha256"] = hashlib.sha256(rules).hexdigest()
target = Path("/etc/udev/rules.d/70-mission-core-vesc.rules")
if target.is_symlink():
raise RuntimeError("Untrusted udev destination")
target.write_bytes(rules)
target.chmod(0o644)
run("rules", "Настройка USB-доступа", ["/usr/bin/udevadm", "control", "--reload-rules"])
for i, device in enumerate(discover()):
run("usb" + str(i), "Применение USB-доступа", ["/usr/bin/udevadm", "trigger", "--action=change",
"/sys/class/tty/" + device.tty])
run("settle", "Проверка USB-доступа", ["/usr/bin/udevadm", "settle", "--timeout=10"])
run("enable", "Подготовка службы", ["/usr/bin/systemctl", "enable", "mission-core-vesc.service"])
run("runtime", "Запуск чтения контроллеров", ["/usr/bin/systemctl", "restart", "mission-core-vesc.service"])
report["state"] = "complete"
except (OSError, RuntimeError, subprocess.SubprocessError) as error:
report.update(state="error", message=str(error)[:300])
finally:
report["duration_seconds"] = time.monotonic() - report["monotonic_started"]
publish()
os.close(lock)
return report["state"] == "complete"
if __name__ == "__main__":
sys.exit(0 if prepare() else 1)
+188
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"""Unprivileged VESC Tool build spike; never installs packages or opens a device.
Run in a bounded user systemd scope on Ubuntu 24.04 amd64. APT resolves and
downloads signed Ubuntu packages into this job; dpkg-deb only extracts them.
The output is an engineering build, not an installed or qualified runtime.
"""
import argparse
import hashlib
import json
import os
from pathlib import Path
import platform
import re
import shutil
import subprocess
import tarfile
import time
from datetime import datetime, timezone
COMMIT = "01d5f10901116c311e3fb84d5a1541f663d3ce20"
ARCHIVE_SHA256 = "4565ecec4e41e094bcc43127a51970e810aa9080a9d7c025af64632bfd4c0189"
DEPS = (
"qtbase5-dev", "qtbase5-private-dev", "qtdeclarative5-dev",
"qtquickcontrols2-5-dev", "libqt5serialport5-dev", "qtconnectivity5-dev",
"qtpositioning5-dev", "libqt5gamepad5-dev", "libqt5svg5-dev",
)
def build(archive, root, dependency_cache=None, resume=None):
if os.geteuid() == 0:
raise RuntimeError("This build must not run as root")
release = platform.freedesktop_os_release()
if (release.get("ID"), release.get("VERSION_ID"), platform.machine()) != ("ubuntu", "24.04", "x86_64"):
raise RuntimeError("Ubuntu 24.04 amd64 required")
assert hashlib.sha256(archive.read_bytes()).hexdigest() == ARCHIVE_SHA256
group = Path("/sys/fs/cgroup") / Path("/proc/self/cgroup").read_text().strip().split("::", 1)[1].lstrip("/")
limit = (group / "memory.max").read_text().strip()
if limit == "max" or int(limit) > 3 * 1024**3:
raise RuntimeError("Run in a user scope with MemoryMax=3G")
os.umask(0o077)
root.mkdir(mode=0o700, parents=True, exist_ok=False)
root = root.resolve()
report = {"schema": "missioncore.vesc.tool-build/v1", "source_commit": COMMIT,
"source_sha256": ARCHIVE_SHA256, "state": "running", "jobs": [],
"started_at": datetime.now(timezone.utc).isoformat(), "monotonic_started": time.monotonic(),
"hardware_access": False, "system_packages_installed": False, "packages": []}
env = dict(os.environ, LC_ALL="C", DEBIAN_FRONTEND="noninteractive", QT_QPA_PLATFORM="offscreen")
def publish():
(root / "report.json").write_text(json.dumps(report, indent=2) + "\n")
def run(name, args, cwd=None, timeout=600):
job = {"id": name, "state": "running"}; report["jobs"].append(job); publish()
started = time.monotonic()
with (root / (name + ".stdout")).open("wb") as out, (root / (name + ".stderr")).open("wb") as err:
result = subprocess.run(args, cwd=cwd or root, env=env, stdout=out, stderr=err, timeout=timeout)
job.update(state="complete" if result.returncode == 0 else "error", exit_code=result.returncode,
duration_seconds=time.monotonic() - started)
publish()
if result.returncode:
raise RuntimeError("Build step failed: " + name)
return (root / (name + ".stdout")).read_text()
try:
staging = root
if resume is not None:
previous_raw = (resume / "report.json").read_bytes()
previous = json.loads(previous_raw)
if previous.get("source_sha256") != ARCHIVE_SHA256 or previous.get("error") != "Build step failed: compile":
raise RuntimeError("Only this source's failed compile may resume")
staging = resume.resolve()
report["resume_report_sha256"] = hashlib.sha256(previous_raw).hexdigest()
report["resumed_staging"] = str(staging)
downloads = staging / "packages"
if resume is None: downloads.mkdir()
sysroot = staging / "sysroot"
if resume is None: sysroot.mkdir()
if resume is not None:
report["packages"] = previous["packages"]
for item in report["packages"]:
if hashlib.sha256((downloads / item["file"]).read_bytes()).hexdigest() != item["sha256"]:
raise RuntimeError("Resumed dependency changed")
elif dependency_cache is not None:
previous = json.loads((dependency_cache / "report.json").read_text())
if previous.get("source_sha256") != ARCHIVE_SHA256 or not previous.get("packages"):
raise RuntimeError("Unqualified dependency cache")
for item in previous["packages"]:
name = item["file"]
if Path(name).name != name or not name.endswith(".deb"):
raise RuntimeError("Invalid cached package name")
package = dependency_cache / "packages" / name
if hashlib.sha256(package.read_bytes()).hexdigest() != item["sha256"]:
raise RuntimeError("Cached dependency changed")
shutil.copyfile(package, downloads / name)
report["dependency_cache_report_sha256"] = hashlib.sha256((dependency_cache / "report.json").read_bytes()).hexdigest()
else:
# Host lists may refer to superseded security packages. Refresh only
# this job's signed Ubuntu indexes; never update /var/lib/apt or invoke
# the host's update hooks (Timescale and other sources are irrelevant).
aptdir = root / "apt"; aptdir.mkdir()
for name in ("lists", "lists/partial", "archives", "archives/partial"):
(aptdir / name).mkdir(exist_ok=True)
sources = aptdir / "sources.list"
sources.write_text("".join(
"deb [signed-by=/usr/share/keyrings/ubuntu-archive-keyring.gpg] " + url + " " + suite + " main universe\n"
for url, suite in (("https://archive.ubuntu.com/ubuntu", "noble"),
("https://archive.ubuntu.com/ubuntu", "noble-updates"),
("https://security.ubuntu.com/ubuntu", "noble-security"))))
config = aptdir / "apt.conf"
config.write_text(
'Dir::Etc::Parts "-";\nDir::Etc::main "-";\n'
'Dir::Etc::sourceparts "-";\nDir::Etc::sourcelist "' + str(sources) + '";\n'
'Dir::State::lists "' + str(aptdir / "lists") + '";\n'
'Dir::Cache::archives "' + str(aptdir / "archives") + '";\n'
'Dir::Cache::pkgcache "";\nDir::Cache::srcpkgcache "";\n'
'Acquire::Languages "none";\nDebug::NoLocking "true";\n'
'#clear APT::Update::Post-Invoke;\n#clear APT::Update::Post-Invoke-Success;\n')
env["APT_CONFIG"] = str(config)
apt = ["/usr/bin/apt-get"]
run("private-indexes", [*apt, "update"])
plan = run("dependencies-plan", [*apt, "--simulate", "--no-install-recommends", "--no-remove", "install", *DEPS])
packages = re.findall(r"^Inst (\S+)(?: \[[^\]]+\])? \((\S+)", plan, re.MULTILINE)
if not packages or len(packages) > 150:
raise RuntimeError("Unexpected dependency plan; inspect before changing profile")
for index, (name, version) in enumerate(packages):
# apt-get download verifies the archive against the host's trusted
# repository metadata. No maintainer script or package install runs.
run("download-%03d" % index, [*apt, "download", name + "=" + version], downloads)
for index, package in enumerate(sorted(downloads.glob("*.deb")) if resume is None else []):
report["packages"].append({"file": package.name, "sha256": hashlib.sha256(package.read_bytes()).hexdigest()})
run("extract-%03d" % index, ["/usr/bin/dpkg-deb", "--extract", str(package), str(sysroot)])
source = staging / "source"
if resume is None:
source.mkdir()
with tarfile.open(archive) as stream:
stream.extractall(source, filter="data")
source = source / ("vesc_tool-" + COMMIT)
qtbase = sysroot / "usr"
# APT omits already-installed runtime packages. Complete the private
# development symlinks from declared host libraries, recording provenance.
report["host_libraries"] = []
for name in ("libGL.so.1", "libGLX.so.0", "libGLU.so.1"):
target = qtbase / "lib/x86_64-linux-gnu" / name
host = Path("/usr/lib/x86_64-linux-gnu") / name
if not target.exists() and host.exists():
shutil.copyfile(host, target)
report["host_libraries"].append({"source": str(host.resolve()), "sha256": hashlib.sha256(host.read_bytes()).hexdigest()})
qtarch = qtbase / "lib/x86_64-linux-gnu/qt5"
qtbin = qtbase / "lib/qt5/bin"
qtconfig = "[Paths]\nPrefix=" + str(qtbase) + "\n" + "\n".join(
name + "=" + str(path) for name, path in {
"Headers": qtbase / "include/x86_64-linux-gnu/qt5",
"Libraries": qtbase / "lib/x86_64-linux-gnu", "ArchData": qtarch,
"HostData": qtarch, "Binaries": qtbin, "HostBinaries": qtbin,
"Plugins": qtarch / "plugins", "Qml2Imports": qtarch / "qml",
"Data": qtbase / "share/qt5",
}.items()) + "\n"
(qtbin / "qt.conf").write_text(qtconfig)
env["LD_LIBRARY_PATH"] = str(qtbase / "lib/x86_64-linux-gnu")
env["QT_PLUGIN_PATH"] = str(qtarch / "plugins")
env["PKG_CONFIG_LIBDIR"] = str(qtbase / "lib/x86_64-linux-gnu/pkgconfig")
env["PKG_CONFIG_SYSROOT_DIR"] = str(sysroot)
run("qmake", [str(qtbin / "qmake"), "-config", "release", "CONFIG += release_lin build_original exclude_fw",
"VT_GIT_COMMIT=" + COMMIT[:8], "INCLUDEPATH += " + str(qtbase / "include") + " " + str(qtbase / "include/x86_64-linux-gnu"),
"QMAKE_LIBDIR += " + str(qtbase / "lib/x86_64-linux-gnu")], source)
run("compile", ["/usr/bin/make", "-j2"], source, timeout=1800)
binary = source / "build/lin/vesc_tool_7.00"
result = run("version", [str(binary), "--version"], source, timeout=30)
report.update(state="complete", binary=str(binary), binary_sha256=hashlib.sha256(binary.read_bytes()).hexdigest(),
version_output=result, runtime_installed=False, hardware_qualified=False)
except Exception as error:
report.update(state="error", error=str(error))
raise
finally:
report["duration_seconds"] = time.monotonic() - report["monotonic_started"]
report["finished_at"] = datetime.now(timezone.utc).isoformat()
publish()
if __name__ == "__main__":
parser = argparse.ArgumentParser()
parser.add_argument("--source", type=Path, required=True)
parser.add_argument("--output", type=Path, required=True)
parser.add_argument("--dependencies", type=Path)
parser.add_argument("--resume", type=Path)
args = parser.parse_args()
build(args.source.resolve(), args.output, args.dependencies, args.resume)
+5
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"""Onboard VESC discovery, archive and bounded motor identification service."""
VERSION = "0.6.3"
MODEL = "vesc.controller"
SCHEMA = "missioncore.nodedc/plugin-sdk/v0alpha2"
+46
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"""Exact, read-only firmware configuration decoder. Never serializes a write."""
import math
from pathlib import Path
import struct
import xml.etree.ElementTree as ET
def crc32c(data):
value = 0xffffffff
for byte in data:
value ^= byte
for _ in range(8):
value = (value >> 1) ^ (0x82f63b78 if value & 1 else 0)
return value ^ 0xffffffff
def decode(data, kind):
code, name = {"motor": (14, "mcconf"), "application": (17, "appconf")}[kind]
xml = ET.parse(Path(__file__).parent / "schemas/5.02" / ("parameters_" + name + ".xml")).getroot()
params = {p.tag: p for p in xml.find("Params")}
order = [p.text for p in xml.find("SerOrder")]
signature = "".join(n + params[n].findtext("type", "0") + params[n].findtext("vTx", "0")
+ "".join(x.text or "" for x in params[n].findall("enumNames")) for n in order)
if len(data) < 5 or data[0] != code or int.from_bytes(data[1:5], "big") != crc32c(signature.encode()):
raise ValueError("Configuration signature differs from firmware 5.02 schema")
offset, result = 5, {}
for name in order:
p = params[name]; kind = int(p.findtext("type")); tx = int(p.findtext("vTx", "0"))
if kind in (4, 5): fmt = "b"
elif kind == 6: fmt = "B"
elif kind == 2: fmt = {1: "B", 2: "b", 3: "H", 4: "h", 5: "I", 6: "i"}[tx]
elif kind == 1: fmt = {7: "h", 8: "i", 9: "I"}[tx]
else: raise ValueError("Unsupported configuration type")
size = struct.calcsize(">" + fmt)
if offset + size > len(data): raise ValueError("Truncated configuration")
value = struct.unpack_from(">" + fmt, data, offset)[0]; offset += size
if kind == 1:
if tx == 9:
exponent, fraction = (value >> 23) & 255, value & 0x7fffff
part = fraction / 16777216.0 + 0.5 if exponent or fraction else 0.0
value = math.ldexp(-part if value & 0x80000000 else part, exponent - 126)
else: value /= float(p.findtext("vTxDoubleScale", "1"))
if not math.isfinite(value): raise ValueError("Non-finite parameter")
result[name] = value
if offset != len(data): raise ValueError("Unexpected configuration tail")
return result
+47
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"""Owner-assigned drive slots, independent of USB addresses and motor commands."""
import json
LAYOUTS = {"1x1": ("left.1", "right.1"), "2x2": ("left.1", "left.2", "right.1", "right.2")}
def slot_label(layout, slot):
side = "Левый" if slot.startswith("left.") else "Правый"
return side + ((" передний" if slot.endswith(".1") else " задний") if layout == "2x2" else "")
class DriveProfile:
def __init__(self, root, atomic):
self.path, self.atomic = root / "drive-profile.json", atomic
self.value = json.loads(self.path.read_text()) if self.path.exists() else {"layout": None, "revision": 0, "bindings": {}}
def update(self, action, params, device):
current = self.value
if params["revision"] != current["revision"]:
raise ValueError("Профиль привода изменился. Обновите карточку.")
bindings = dict(current["bindings"])
layout = current["layout"]
if action == "vesc.drive.assign":
layout, slot = params["layout"], params["slot"]
if set(bindings) - set(LAYOUTS[layout]):
raise ValueError("Сначала снимите назначения задних моторов.")
if slot and slot in bindings and bindings[slot]["device_id"] != device.id:
raise ValueError("Это место уже занято. Сначала снимите прежнее назначение.")
bindings = {key: value for key, value in bindings.items() if value["device_id"] != device.id}
if slot:
bindings[slot] = {"device_id": device.id, "uuid": device.identity["uuid"]}
else:
bindings.pop(params["slot"], None)
value = {"layout": layout, "revision": current["revision"] + 1, "bindings": bindings}
self.atomic(self.path, value)
self.value = value
return value
def validate(action, params):
keys = {"revision", "layout", "slot"} if action == "vesc.drive.assign" else {"revision", "slot"}
if set(params) != keys or type(params["revision"]) is not int or params["revision"] < 0:
raise ValueError("Invalid drive profile revision")
if action == "vesc.drive.assign":
if params["layout"] not in LAYOUTS or params["slot"] not in ("", *LAYOUTS[params["layout"]]):
raise ValueError("Invalid drive layout or slot")
elif params["slot"] not in LAYOUTS["2x2"]:
raise ValueError("Invalid drive slot")
+153
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"""Transaction lifecycle around unchanged upstream Utility::detectAllFoc.
No FOC algorithm or wire writes here. Native firmware owns this non-interruptible
cycle; a pending marker survives any uncertain completion and prevents replay.
"""
import base64
import hashlib
import json
import os
import re
import uuid
from .protocol import firmware, values
def fresh_values(owner, devices):
# FW 5.02 GET_VALUES reads AND resets accumulated average current. The
# first reply after a quiet 30 s calibration includes the entire cycle.
# Drain it, then measure a new bounded interval after the release command.
for device in devices:
values(device.link.query(4, timeout=0.2))
owner.sleep(0.25)
return {device.id: values(device.link.query(4, timeout=0.2)) for device in devices}
def remove_pending(pending):
pending.unlink()
fd = os.open(pending.parent, os.O_RDONLY)
try: os.fsync(fd)
finally: os.close(fd)
def reconcile(owner, devices):
"""Explicit neutral-return recovery, never calibration or config replay.
Admits only a previously completed/verified native receipt, exact archived
post-configs for every peer, stable identity, neutral PPM and fresh idle
telemetry. Unknown native completion always remains blocked.
"""
if any(device.link is None for device in devices): raise ValueError("Controller disconnected")
pending = owner.service.root / "calibration-pending.json"
record = json.loads(pending.read_text())
operation = record.get("operation_id", "")
if not re.fullmatch(r"op_[0-9a-f]{32}", operation): raise ValueError("Invalid pending operation")
receipt = json.loads((owner.service.root / (operation + ".json")).read_text())["receipt"]
result = receipt.get("result", {})
native = result.get("native", {})
if not (receipt.get("state") == "complete" and result.get("completed") is True
and result.get("configuration_verified") is True and native.get("validated") is True):
raise ValueError("Native completion/configuration is unconfirmed")
expected = {}
for identifier in result.get("after_backups", []):
if not re.fullmatch(r"op_[0-9a-f]{32}", identifier): raise ValueError("Invalid backup identity")
backup = json.loads((owner.service.root / ("backup_" + identifier + ".json")).read_text())
if backup.get("parent_operation_id") != operation or backup["device_id"] in expected:
raise ValueError("Calibration backup ownership differs")
expected[backup["device_id"]] = backup
if set(expected) != {d.id for d in devices}: raise ValueError("Controller set changed")
for device in devices:
backup = expected[device.id]
if firmware(device.link.query(0)) != backup["identity"]: raise ValueError("Controller identity changed")
for kind, code in (("motor",14),("application",17)):
actual = device.link.query(code)
if actual != base64.b64decode(backup["configs"][kind]["payload"], validate=True):
raise ValueError("Post-calibration configuration changed")
owner.neutral(devices)
after = fresh_values(owner, devices)
if any(abs(v["motor_current_a"]) > 1 or abs(v["erpm"]) > 30 or abs(v["duty"]) > .01 or v["fault_code"] != 0 for v in after.values()):
raise ValueError("Fresh idle state unconfirmed")
evidence = {"operation_id": operation, "observed_at": owner.utc(), "after": after,
"configuration_verified": True, "release_confirmed": True, "calibration_replayed": False}
owner.atomic(owner.service.root / ("calibration_recovered_" + operation + ".json"), evidence)
remove_pending(pending)
return evidence
def archive_after(owner, command, device, configs):
identifier = "op_" + uuid.uuid4().hex
backup = {"schema": "missioncore.vesc.config-backup/v1", "device_id": device.id,
"identity": device.identity, "operation_id": identifier,
"parent_operation_id": command["operation_id"], "observed_at": owner.utc(),
"monotonic_at": owner.monotonic(), "decoded": False,
"configs": {kind: {"encoding": "base64", "payload": base64.b64encode(raw).decode(),
"bytes": len(raw), "sha256": hashlib.sha256(raw).hexdigest(), "signature_hex": raw[1:5].hex()}
for kind, raw in configs.items()}}
owner.atomic(owner.service.root / ("backup_" + identifier + ".json"), backup)
owner.service.archive.add("local", backup)
device.backup = {"observed_at": backup["observed_at"], "operation_id": identifier,
"configs": {k: {"bytes": v["bytes"], "sha256": v["sha256"]} for k, v in backup["configs"].items()}}
return identifier
def calibrate(owner, command, devices, target, originals, backups, unchanged):
pending = owner.service.root / "calibration-pending.json"
owner.atomic(pending, {"device_id": target.id, "identity": target.identity,
"started_at": owner.utc(), "operation_id": command["operation_id"], "backups": backups})
owner.state("calibrating")
owner.active, owner.mode = True, "foc"
started = owner.monotonic()
native, after, issues, saved = {}, {}, [], []
verified, attempted = False, False
try:
unchanged()
owner.neutral(devices)
if owner.stop.is_set(): raise ValueError("Cancelled before calibration")
# Do not renew a 250 ms lease over the upstream 180 s calibration lease.
# No host current/RPM or configuration command is sent while it runs.
for device in devices: device.link.test_command("release")
attempted = True
target.link.calibrate_foc(command["parameters"]["max_power_loss_w"])
while owner.monotonic() - started < 225:
unchanged()
state = target.link.procedure_result()
if not state.get("running"):
native = state.get("result", {})
if state.get("uncertain"): issues.append("native_postcondition_unconfirmed")
break
if owner.stop.is_set() and "stop_requested_during_native_cycle" not in issues:
issues.append("stop_requested_during_native_cycle")
owner.sleep(0.5)
if not native.get("completed"): issues.append("native_completion_unconfirmed")
except (OSError, ValueError, TimeoutError):
issues.append("communication_unconfirmed")
finally:
for device in devices:
try: device.link.test_command("release")
except (OSError, ValueError, TimeoutError): issues.append("release_unconfirmed")
owner.sleep(0.5)
try: after = fresh_values(owner, devices)
except (OSError, ValueError, TimeoutError): after = {device.id: None for device in devices}
released = all(v is not None and abs(v["motor_current_a"]) <= 1 and abs(v["duty"]) <= .01 for v in after.values())
if not attempted or native.get("completed"):
try:
unchanged()
for device in devices:
if firmware(device.link.query(0)) != device.identity: raise ValueError("Identity changed")
configs = {kind: device.link.query(code) for kind, code in (("motor",14),("application",17))}
saved.append(archive_after(owner, command, device, configs))
if configs["application"] != originals[device.id]["application"]: raise ValueError("Receiver config changed")
if (device is not target or not attempted or not native.get("success")) and configs["motor"] != originals[device.id]["motor"]:
raise ValueError("Unchanged/restored motor config differs")
verified = not attempted or native.get("validated") is True
except (OSError, ValueError, TimeoutError): issues.append("configuration_unconfirmed")
if verified and released:
remove_pending(pending)
if not owner.latched: owner.state("ready")
else: owner.state("rc")
owner.active, owner.mode = False, None
return {"observed_at": owner.utc(), "device_id": target.id, "procedure": "native_foc_calibration",
"elapsed_s": owner.monotonic() - started, "completed": native.get("completed", False),
"success": bool(native.get("success") and verified and released), "native": native,
"configuration_verified": verified, "release_confirmed": released, "after": after,
"issues": issues, "backups": backups, "after_backups": saved}
+135
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"""One local, bounded speed test for the complete owner-assigned drive profile."""
from concurrent.futures import ThreadPoolExecutor
from .drive_profile import LAYOUTS
from .protocol import ppm, values, TEST_LIMITS
from .speed_hold import SpeedHold
def targets(service, params, devices, selected):
profile = service.drive.value
bindings = profile["bindings"]
slots = LAYOUTS.get(profile["layout"], ())
if (not slots or params["profile_revision"] != profile["revision"]
or set(bindings) != set(slots)):
raise ValueError("Профиль изменился или не все моторы назначены.")
ids = [bindings[slot]["device_id"] for slot in slots]
if len(set(ids)) != len(ids) or set(params["device_ids"]) != set(ids) or selected.id not in ids:
raise ValueError("Состав проверяемого привода не совпадает с профилем.")
available = {device.id: device for device in devices}
if any(identifier not in available for identifier in ids):
raise ValueError("Один из назначенных моторов отключён.")
if any(available[b["device_id"]].identity["uuid"] != b["uuid"] for b in bindings.values()):
raise ValueError("Идентичность назначенного VESC изменилась.")
return [available[identifier] for identifier in ids]
def batch(pool, devices, function):
# Join every submitted call before propagating an error: no late worker may
# issue torque after the caller has already released the other controllers.
futures = [(device.id, pool.submit(function, device)) for device in devices]
result, errors = {}, []
for identifier, future in futures:
try: result[identifier] = future.result()
except (OSError, ValueError, TimeoutError) as error:
error.device_id = identifier
errors.append(error)
if errors: raise errors[0]
return result
def run(owner, command, devices, moving, originals, backups, unchanged):
from .motor_test import Rejected, check_values
params = command["parameters"]
duration, erpm, current_a = (params[key] for key in ("duration_s", "erpm", "current_a"))
ids = {device.id for device in moving}
motors, samples, after, cleanup = {}, [], {}, {}
restored, failure, rotation, previous_good = True, None, 0.0, False
outcome, claimed, started, previous = "duration", False, owner.monotonic(), owner.monotonic()
stalls = {}
owner.state("testing")
owner.active, owner.mode = True, "group_speed"
with ThreadPoolExecutor(max_workers=min(16, len(devices)), thread_name_prefix="vesc-drive") as pool:
try:
for device in moving:
motors[device.id] = owner.limits.apply(device, originals[device.id]["motor"], current_a)
started = previous = owner.monotonic()
holds = {device.id: SpeedHold(erpm, duration, started) for device in moving}
while owner.monotonic() - started < duration + 20:
cycle = owner.monotonic()
if owner.stop.is_set(): outcome = "stopped"; break
unchanged()
def read(device):
level = ppm(device.link.query(31, timeout=.06))["level"]
value = values(device.link.query(4, timeout=.06)) if device.id in ids else None
return level, value
observed = batch(pool, devices, read)
if any(abs(level) > .02 for level, _ in observed.values()):
owner.state("rc")
raise Rejected("Приёмник передаёт команду. Общая проверка остановлена; управление за пультом.")
now = owner.monotonic()
readings = {identifier: observed[identifier][1] for identifier in ids}
setpoint = None
for identifier, value in readings.items():
check_values(value, moving=True, current_a=current_a, motor=motors[identifier])
setpoint, _, error = holds[identifier].update(now, value)
if error: raise Rejected(error)
if abs(value["motor_current_a"]) > TEST_LIMITS["stall_current_a"]:
at, tacho = stalls.setdefault(identifier, (now, value["tachometer"]))
if abs(value["erpm"]) >= 60 and abs(value["tachometer"] - tacho) >= 3:
stalls[identifier] = (now, value["tachometer"])
elif now - at >= TEST_LIMITS["stall_timeout_s"]:
raise Rejected("Один из моторов не движется при токе выше 5 А. Общая проверка остановлена.")
else: stalls.pop(identifier, None)
good = all(h.hold_started is not None and h.previous_good for h in holds.values())
delta = now - previous
if good and previous_good and delta <= .25: rotation += delta
previous, previous_good = now, good
sample = {"at": now-started, "devices": readings, "rotation_s": rotation,
"phase": "holding" if good else "accelerating", "commanded_erpm": None}
samples.append(sample)
if rotation >= duration: break
if owner.monotonic()-cycle > .12: raise Rejected("Связь слишком медленная для общей проверки.")
claimed = True
batch(pool, devices, lambda d: d.link.test_command("claim"))
if owner.stop.is_set(): outcome = "stopped"; break
if owner.monotonic()-cycle > .16: raise Rejected("Связь слишком медленная для общей проверки.")
def send(device):
if owner.stop.is_set(): return
if device.id in ids: device.link.test_speed(setpoint)
else: device.link.test_command("release")
sent_at = owner.monotonic()
batch(pool, devices, send)
sample.update(commanded_erpm=setpoint, command_batch_s=owner.monotonic()-sent_at)
owner.sleep(max(0, .1-(owner.monotonic()-cycle)))
if outcome == "duration" and rotation < duration:
outcome = "Общий срок проверки истёк; заданное время совместного вращения не набрано."
except (OSError, ValueError, TimeoutError) as error:
failure = {"type": type(error).__name__, "message": str(error), "elapsed_s": owner.monotonic()-started}
failure["device_id"] = getattr(error, "device_id", None)
failure["native_rpc"] = getattr(error, "native_rpc", None)
failure["native_history"] = getattr(error, "native_history", [])
outcome = str(error) if isinstance(error, Rejected) else "Ответ одного из VESC не получен вовремя. Общая проверка остановлена."
finally:
def release(device):
try:
device.link.test_command("release")
return "zero_current_sent"
except (OSError, ValueError, TimeoutError): return "unconfirmed"
if claimed: cleanup = batch(pool, devices, release)
owner.sleep(.3)
for device in devices:
try: after[device.id] = values(device.link.query(4, timeout=.2))
except (OSError, ValueError, TimeoutError): after[device.id] = None
confirmed = all(v is not None and abs(v["motor_current_a"]) <= 1 for v in after.values())
for device in moving:
try: owner.limits.restore(device)
except (OSError, ValueError, TimeoutError): restored = False
if not confirmed or not restored: owner.state("rc")
elif not owner.latched: owner.state("ready")
owner.active, owner.mode = False, None
return {"observed_at": owner.utc(), "device_ids": [d.id for d in moving], "mode": "group_speed",
"profile_revision": params["profile_revision"], "current_a": current_a, "erpm_target": erpm,
"duration_limit_s": duration, "rotation_s": rotation, "outcome": outcome, "failure": failure,
"samples": samples, "release": cleanup, "release_confirmed": confirmed,
"limits_restored": restored, "after": after, "backups": backups}
+98
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"""Native FW 5.02 Hall measurement used by VESC Tool (COMM_DETECT_HALL_FOC).
This is a non-interruptible ~12 s firmware procedure: it locks mc_interface,
overrides phase, sweeps three electrical turns in each direction and restores
its prior RAM configuration. A host stop/current-zero cannot cancel the sweep.
No table is applied here; measurements are archived in the operation receipt.
"""
from .configuration import decode
from .protocol import values, ppm
def parse_result(raw):
if len(raw) != 10 or raw[0] != 28 or raw[9] not in (0, 1):
raise ValueError("Invalid Hall result")
table = list(raw[1:9])
if any(v > 200 and v != 255 for v in table): raise ValueError("Invalid Hall angle")
observed = [i for i, v in enumerate(table) if v != 255]
return {"firmware_success": raw[9] == 0, "hall_table": table,
"observed_states": observed, "valid_six_states": raw[9] == 0 and len(observed) == 6}
def measure(owner, devices, target, original, backups, unchanged):
motor = decode(original, "motor")
if motor["m_sensor_port_mode"] != 0:
from .motor_test import Rejected
raise Rejected("Вход датчиков выбран не в режиме Холла.")
pending = owner.service.root / "hall-pending.json"
owner.atomic(pending, {"device_id": target.id, "identity": target.identity,
"started_at": owner.utc(), "backups": backups})
owner.state("calibrating")
owner.active, owner.mode = True, "hall"
started = owner.monotonic()
samples, issues, result, after = [], [], None, {}
completed, restored, attempted = False, False, False
try:
unchanged()
owner.neutral(devices)
# Do not enter the native procedure if Stop arrived during preflight.
if owner.stop.is_set(): raise ValueError("Measurement cancelled before start")
for device in devices: device.link.test_command("claim")
attempted = True
target.link.detect_hall()
while owner.monotonic() - started < 30:
cycle = owner.monotonic()
try:
unchanged()
for device in devices:
incoming = ppm(device.link.query(31, timeout=0.06))
if abs(incoming["level"]) > 0.02:
owner.state("rc")
if "rc_during_native_cycle" not in issues: issues.append("rc_during_native_cycle")
sample = values(target.link.query(4, timeout=0.06))
samples.append({"at": owner.monotonic() - started, "values": sample})
for device in devices: device.link.test_command("claim")
for device in devices:
if device is not target: device.link.test_command("release")
except (OSError, ValueError, TimeoutError):
if "communication_unconfirmed" not in issues: issues.append("communication_unconfirmed")
if owner.stop.is_set() and "stop_requested_during_native_cycle" not in issues:
issues.append("stop_requested_during_native_cycle")
reply = target.link.hall_result
if reply is not None:
result = parse_result(reply)
completed = True
break
owner.sleep(max(0, 0.1 - (owner.monotonic() - cycle)))
except (OSError, ValueError, TimeoutError):
issues.append("native_completion_unconfirmed")
finally:
# Zero is a release AFTER completion, never a claim that native detect
# is interruptible. Peers also receive release if the target disappears.
for device in devices:
try: device.link.test_command("release")
except (OSError, ValueError, TimeoutError): issues.append("release_unconfirmed")
owner.sleep(0.3)
for device in devices:
try: after[device.id] = values(device.link.query(4, timeout=0.1))
except (OSError, ValueError, TimeoutError): after[device.id] = None
if completed or not attempted:
target.link.hall_pending = False
try: restored = target.link.query(14) == original
except (OSError, ValueError, TimeoutError): pass
released = all(v is not None and abs(v["motor_current_a"]) <= 1 for v in after.values())
if (completed or not attempted) and restored and released:
pending.unlink()
import os
fd = os.open(pending.parent, os.O_RDONLY)
try: os.fsync(fd)
finally: os.close(fd)
if not owner.latched: owner.state("ready")
else:
owner.state("rc")
owner.active, owner.mode = False, None
return {"observed_at": owner.utc(), "device_id": target.id, "procedure": "native_foc_hall",
"current_a": 5, "elapsed_s": owner.monotonic() - started,
"completed": completed, "measurement": result, "issues": issues,
"configuration_restored": restored, "configuration_written": False,
"release_confirmed": released, "after": after, "samples": samples, "backups": backups}
+79
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"""Bounded idle transport measurement through the installed native owners.
Only PPM/telemetry reads, no leases, motor commands or configuration writes.
The 500 ms diagnostic deadline observes replies beyond the 60 ms motor budget;
it never relaxes the motor-control deadline or authorizes powered operation.
"""
from concurrent.futures import ThreadPoolExecutor
from contextlib import ExitStack
from datetime import datetime, timezone
import math
import time
from .protocol import ppm, values
def summary(samples):
times = sorted(s["elapsed_ms"] for s in samples)
if not times: return {"replies": 0}
def percentile(p): return times[max(0, math.ceil(len(times)*p)-1)]
return {"replies": len(times), "p50_ms": percentile(.5), "p95_ms": percentile(.95),
"p99_ms": percentile(.99), "max_ms": times[-1],
"over_60_ms": sum(t > 60 for t in times)}
def measure(service, command, devices, *, sleep=time.sleep, monotonic=time.monotonic):
started = monotonic()
observed = datetime.now(timezone.utc).isoformat()
deadline = datetime.fromisoformat(command["deadline_at"].replace("Z", "+00:00"))
ids = {d.id: d.session for d in devices}
if not devices or len(ids) != len(devices) or ids != command["parameters"]["sessions"]:
raise ValueError("Controller sessions changed")
samples = {d.id: [] for d in devices}
failure = None
stop_reason = "complete"
def read(device):
for code in (31, 4):
before = monotonic()
try:
raw = device.link.query(code, timeout=.5)
reading = ppm(raw) if code == 31 else values(raw)
sample = {"command": code, "at_s": before-started, "elapsed_ms": (monotonic()-before)*1000,
"native_rpc": getattr(device.link, "last_rpc", None)}
if code == 31:
sample["ppm_level"] = reading["level"]
idle = abs(reading["level"]) <= .02
else:
sample.update(erpm=reading["erpm"], current_a=reading["motor_current_a"],
duty=reading["duty"], fault_code=reading["fault_code"])
idle = abs(reading["erpm"]) <= 30 and abs(reading["motor_current_a"]) <= 1 and abs(reading["duty"]) <= .01
samples[device.id].append(sample)
if not idle: return {"device_id": device.id, "reason": "not_idle"}
except (OSError, ValueError, TimeoutError) as error:
return {"device_id": device.id, "command": code, "reason": "read_failed", "error": str(error),
"elapsed_ms": (monotonic()-before)*1000,
"native_rpc": getattr(error, "native_rpc", None),
"native_history": getattr(error, "native_history", [])}
return None
with ExitStack() as locks:
for device in sorted(devices, key=lambda d: d.id): locks.enter_context(device.lock)
if any(d.link is None for d in devices): raise ValueError("Controller unavailable")
# Same cadence and per-controller query order as group rotation, with a
# larger read-only deadline to expose latency instead of destroying it.
with ThreadPoolExecutor(max_workers=min(16, len(devices))) as pool:
for _ in range(100):
cycle = monotonic()
cancelled = service.motor.cancelled_at
if cancelled is not None and cancelled >= datetime.fromisoformat(command["requested_at"].replace("Z", "+00:00")):
stop_reason = "stopped"; break
if monotonic()-started >= 25 or (deadline-datetime.now(timezone.utc)).total_seconds() < 2:
stop_reason = "deadline"; break
futures = [pool.submit(read, d) for d in devices]
errors = [error for future in futures if (error := future.result()) is not None]
if errors:
failure = errors; stop_reason = errors[0]["reason"]; break
sleep(max(0, .1-(monotonic()-cycle)))
return {"observed_at": observed, "monotonic_started": started, "duration_s": monotonic()-started,
"outcome": stop_reason, "motor_commands_sent": False, "read_timeout_ms": 500,
"failure": failure, "devices": {d.id: {"name": "VESC "+d.identity["uuid"][:6].upper(),
"summary": summary(samples[d.id]), "samples": samples[d.id]} for d in devices}}
+343
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"""A bounded 0.5–30 A raised-rig test for firmware 5.02, never a drive API.
Firmware reference: vedderb/bldc 3f670137e27e6e383fa79c50cc6b1fa85aab1554,
commands.c, app_ppm.c, app.c and chvt.h. The admitted PPM applications are paused
with separate 250 ms leases, never broadcast. Firmware resumes PPM on expiry,
including its missing-pulse timeout. USB commands alone cannot rely on the
global timeout: receiver pulses reset it even while app output is disabled.
"""
import base64
from contextlib import ExitStack
import hashlib
import math
import threading
import time
import uuid
from datetime import datetime, timezone
from .configuration import decode
from .protocol import firmware, ppm, values, TEST_LIMITS, SPEED_LIMITS
from .speed_hold import SpeedHold
from .temporary_limits import TemporaryLimits
class Rejected(ValueError):
pass
class LimitExceeded(Rejected):
def __init__(self, field, value, low, high, label, unit, scale=1):
self.violation = {"field": field, "value": value, "minimum": low, "maximum": high}
number = lambda v: format(v * scale, ".3g").replace(".", ",")
super().__init__(f"Тест остановлен: {label} {number(value)} {unit}; диапазон проверки {number(low)}…{number(high)} {unit}.")
def check_configuration(identity, motor, app):
if (identity["version"], identity["hardware"], identity["test_firmware"], identity["hardware_type"]) != ("5.02", "75_300_R2", 0, 0):
raise Rejected("Тест поддерживает только проверенный профиль VESC 75_300_R2 / 5.02.")
if (motor["motor_type"] != 2 or app["app_to_use"] not in (1, 4)
or app["timeout_msec"] > 1000 or app["timeout_msec"] < 100
or app["timeout_brake_current"] != 0 or app["app_ppm_conf.ctrl_type"] != 4
or not 0.01 <= app["app_ppm_conf.hyst"] <= 0.3):
raise Rejected("Настройки FOC, PPM или тайм-аута не подходят для короткой проверки.")
if not 2 <= motor["l_current_max"] <= 100 or not 2 <= motor["l_in_current_max"] <= 100:
raise Rejected("Нужна проверка токовых ограничений.")
def check_values(value, moving=False, current_a=2, motor=None):
current_limit = max(5, current_a * 1.2 + 2) if moving else 1
speed_limit = TEST_LIMITS["max_erpm"] if moving else 30
duty_limit = TEST_LIMITS["max_duty"] if moving else 0.01
if moving and motor is not None:
current_limit = min(current_limit, motor["l_current_max"])
speed_limit = min(speed_limit, motor["l_max_erpm"], -motor["l_min_erpm"])
duty_limit = min(duty_limit, motor["l_max_duty"])
bounds = (
("fault_code", 0, 0, "код ошибки VESC", "", 1),
("input_voltage_v", 20, 60, "напряжение питания", "В", 1),
("mos_temperature_c", 0, 65, "температура контроллера", "°C", 1),
("motor_current_a", -current_limit, current_limit, "ток мотора", "А", 1),
("erpm", -speed_limit, speed_limit, "электрические обороты", "ERPM", 1),
("duty", -duty_limit, duty_limit, "заполнение PWM", "%", 100),
)
for field, low, high, label, unit, scale in bounds:
actual = value[field]
if not math.isfinite(actual) or not low <= actual <= high:
raise LimitExceeded(field, actual, low, high, label, unit, scale)
class MotorTest:
def __init__(self, service, atomic, utc, sleep=time.sleep, monotonic=time.monotonic):
self.service, self.atomic, self.utc = service, atomic, utc
self.sleep, self.monotonic = sleep, monotonic
self.stop = threading.Event()
self.stop_lock = threading.Lock()
self.cancelled_at = None
self.active = False
self.mode = None
self.limits = TemporaryLimits(service, atomic)
self.authority = service.root / "motor-authority.json"
# A process restart during a test cannot silently grant another pulse.
if self.authority.exists():
import json
self.latched = json.loads(self.authority.read_text()).get("state") != "ready"
else:
self.latched = False
def state(self, value):
self.atomic(self.authority, {"state": value, "observed_at": self.utc()})
self.latched = value == "rc"
def cancel(self):
with self.stop_lock:
self.cancelled_at = datetime.now(timezone.utc)
self.stop.set()
def neutral(self, devices):
for device in devices:
value = ppm(device.link.query(31, timeout=0.06))
if abs(value["level"]) > 0.02:
self.state("rc")
raise Rejected("Приёмник передаёт команду. Управление удерживается за пультом.")
def run(self, command, devices, target, release=False):
if not 1 <= len(devices) <= 128 or len({d.id for d in devices}) != len(devices):
raise Rejected("Для проверки нужны однозначно определённые VESC этого борта.")
duration = command["parameters"]["duration_s"]
current_a = command["parameters"]["current_a"]
group_mode = command["action_id"] == "vesc.drive.run"
speed_mode = command["action_id"] in ("vesc.motor.run", "vesc.drive.run")
moving = [target]
if group_mode:
from .group_test import targets
try: moving = targets(self.service, command["parameters"], devices, target)
except ValueError as error: raise Rejected(str(error)) from error
hall_mode = command["action_id"] == "vesc.hall.measure"
foc_mode = command["action_id"] == "vesc.foc.calibrate"
budget = duration + (20 if speed_mode else 0)
if self.latched and not release:
raise Rejected("Управление удерживается за пультом. Верните его явно после нейтрали.")
requested = datetime.fromisoformat(command["requested_at"].replace("Z", "+00:00"))
if (datetime.now(timezone.utc) - requested).total_seconds() > 10:
raise Rejected("Команда устарела до начала проверки. Повторите запрос.")
deadline = datetime.fromisoformat(command["deadline_at"].replace("Z", "+00:00"))
def preflight():
if self.stop.is_set(): raise Rejected("Проверка отменена.")
if (deadline - datetime.now(timezone.utc)).total_seconds() < budget + 5:
raise Rejected("Не хватило времени для проверки всех контроллеров. Ток не подавался.")
attachments = {d.attachment for d in devices}
def unchanged():
if set(self.service.discover_fn()) != attachments:
raise Rejected("Подключение VESC изменилось. Обновите устройства.")
with self.stop_lock:
if self.cancelled_at is not None and requested <= self.cancelled_at:
raise Rejected("Проверка отменена до начала исполнения.")
self.stop.clear()
with ExitStack() as stack:
for device in sorted(devices, key=lambda d: d.id):
stack.enter_context(device.lock)
recovered = None
if release and (self.service.root / "calibration-pending.json").exists():
from .foc_calibration import reconcile
unchanged()
try: recovered = reconcile(self, devices)
except (OSError, ValueError, TimeoutError, KeyError) as error:
raise Rejected("Возврат управления пока невозможен: итог калибровки, конфигурация или нулевой ток не подтверждены.") from error
identities, applications, backups, originals = {}, {}, [], {}
target_motor, target_raw = None, None
for device in devices:
preflight()
if device.link is None: raise Rejected("Один из контроллеров отключён.")
if self.limits.pending(device):
raise Rejected("Восстановление временных токовых пределов ещё не подтверждено.")
if (self.service.root / "hall-pending.json").exists():
raise Rejected("Завершение предыдущего измерения Холла не подтверждено. Нужна проверка состояния VESC.")
if (self.service.root / "calibration-pending.json").exists():
raise Rejected("Завершение предыдущей калибровки не подтверждено. Новое движение заблокировано.")
identity = firmware(device.link.query(0))
if identity != device.identity: raise Rejected("Идентичность контроллера изменилась.")
configs = {kind: device.link.query(code) for kind, code in (("motor", 14), ("application", 17))}
originals[device.id] = configs
motor, app = decode(configs["motor"], "motor"), decode(configs["application"], "application")
check_configuration(identity, motor, app)
if device in moving:
if not foc_mode and current_a > min(motor["l_current_max"], motor["l_in_current_max"]):
raise Rejected("Ток проверки превышает настроенный предел выбранного контроллера.")
if not (motor["l_max_erpm"] > 0 and motor["l_min_erpm"] < 0 and 0 < motor["l_max_duty"] <= 1):
raise Rejected("Нужна проверка настроенных пределов оборотов и PWM.")
target_motor = motor
target_raw = configs["motor"]
if foc_mode and any(abs(motor[key]) <= 0.001 for key in ("l_in_current_min", "l_in_current_max", "foc_openloop_rpm", "foc_sl_erpm")):
raise Rejected("Для калибровки нужны ненулевые сохранённые пределы питания и настройки запуска FOC.")
if speed_mode and command["parameters"]["erpm"] > min(SPEED_LIMITS["max_erpm"], motor["l_max_erpm"] * 0.8):
raise Rejected("Заданная скорость превышает настроенный диапазон контроллера.")
if speed_mode and command["parameters"]["erpm"] < motor["s_pid_min_erpm"]:
raise Rejected(f"Минимальная скорость регулятора этого VESC: {motor['s_pid_min_erpm']:g} ERPM.")
check_values(values(device.link.query(4)))
identities[device.id], applications[device.id] = identity, app
identifier = "op_" + uuid.uuid4().hex
backup = {"schema": "missioncore.vesc.config-backup/v1", "device_id": device.id,
"identity": identity, "operation_id": identifier, "parent_operation_id": command["operation_id"],
"observed_at": self.utc(), "monotonic_at": self.monotonic(), "decoded": False,
"configs": {kind: {"encoding": "base64", "payload": base64.b64encode(raw).decode(),
"bytes": len(raw), "sha256": hashlib.sha256(raw).hexdigest(), "signature_hex": raw[1:5].hex()}
for kind, raw in configs.items()}}
self.atomic(self.service.root / ("backup_" + identifier + ".json"), backup)
self.service.archive.add("local", backup)
device.backup = {"observed_at": backup["observed_at"], "operation_id": identifier,
"configs": {k: {"bytes": v["bytes"], "sha256": v["sha256"]} for k, v in backup["configs"].items()}}
backups.append(identifier)
ids = {int(app["controller_id"]) for app in applications.values()}
if len(ids) != len(devices): raise Rejected("У контроллеров совпали CAN ID. Нужна проверка схемы.")
for device in devices:
preflight()
# CAN ping includes up to 5 ms transmit wait plus 10 ms reply
# wait for every ID; scheduling can exceed the former 4 s cap.
try:
peers = device.link.query(62, timeout=8)
except TimeoutError as error:
raise Rejected("Проверка CAN не завершилась вовремя. Ток не подавался.") from error
if not peers or peers[0] != 62 or not set(peers[1:]).issubset(ids):
raise Rejected("На CAN обнаружено другое устройство. Нужна проверка схемы.")
if foc_mode and len(peers) != 1:
raise Rejected("Этот профиль калибрует VESC по отдельным USB без CAN-соседей. Требуется профиль связанного CAN-борта.")
for _ in range(10):
preflight()
unchanged()
self.neutral(devices)
self.sleep(0.1)
if release:
self.state("ready")
return {"authority": "ready", "observed_at": self.utc(), "backups": backups, "calibration_recovered": recovered}
if hall_mode:
from .hall_detection import measure
return measure(self, devices, target, target_raw, backups, unchanged)
if foc_mode:
from .foc_calibration import calibrate
return calibrate(self, command, devices, target, originals, backups, unchanged)
now = datetime.now(timezone.utc)
if (deadline - now).total_seconds() < budget + 1:
raise Rejected("Команда устарела до запуска. Повторите проверку.")
if group_mode:
from .group_test import run
return run(self, command, devices, moving, originals, backups, unchanged)
self.state("testing")
self.active = True
self.mode = "speed" if speed_mode else "current"
started = self.monotonic()
samples, outcome, cleanup = [], "duration", {}
limit_violation = None
failure = None
claimed = False
sent_current = 0.0
last_command_at = started
stalled_since = None
stall_tachometer = None
hold = SpeedHold(command["parameters"]["erpm"], duration, started) if speed_mode else None
restored = not speed_mode
try:
if speed_mode:
target_motor = self.limits.apply(target, target_raw, current_a)
started = self.monotonic()
hold = SpeedHold(command["parameters"]["erpm"], duration, started)
while self.monotonic() - started < budget:
cycle = self.monotonic()
if self.stop.is_set():
outcome = "stopped"; break
unchanged()
self.neutral(devices)
sample = {"at": self.monotonic() - started, "devices": {}}
current = values(target.link.query(4, timeout=0.06))
sample["commanded_current_a"] = None
sample["devices"][target.id] = current
samples.append(sample)
check_values(current, moving=True, current_a=current_a, motor=target_motor)
if hold:
setpoint, done, error = hold.update(self.monotonic(), current)
sample.update(phase=hold.phase, rotation_s=hold.rotation_s, commanded_erpm=None)
if error: raise Rejected(error)
if done: break
# A current command is torque, not a speed setpoint. Do not
# repeatedly coast/restart at each Hall edge. A hard limit
# ends this operation and cannot automatically re-arm it.
# Above 5 A require continuing measured movement. Hall/FOC
# telemetry is not an independent physical motion sensor.
if max(abs(current["motor_current_a"]), sent_current) > TEST_LIMITS["stall_current_a"]:
if stalled_since is None:
stalled_since = self.monotonic()
stall_tachometer = current["tachometer"]
elif abs(current["erpm"]) >= 60 and abs(current["tachometer"] - stall_tachometer) >= 3:
stalled_since = self.monotonic()
stall_tachometer = current["tachometer"]
elif self.monotonic() - stalled_since >= TEST_LIMITS["stall_timeout_s"]:
raise Rejected("Тест остановлен: при токе выше 5 А движение не подтверждается 2 секунды. Проверьте мотор и датчики.")
else:
stalled_since = None
if self.monotonic() - cycle > 0.12:
raise Rejected("Связь слишком медленная для короткой проверки.")
# Refresh local leases only after fresh neutral/telemetry. A
# delayed process never sends current after an expired lease.
claimed = True
for device in devices: device.link.test_command("claim")
for device in devices:
if device is not target: device.link.test_command("release")
if self.stop.is_set():
outcome = "stopped"; break
if self.monotonic() - cycle > 0.16:
raise Rejected("Связь слишком медленная для короткой проверки.")
if self.monotonic() - started >= budget:
if hold: raise Rejected("Истёк общий срок проверки; время вращения не набрано.")
break
if hold:
target.link.test_speed(setpoint)
sample["commanded_erpm"] = setpoint
else:
elapsed = self.monotonic() - last_command_at
sent_current = round(min(current_a, max(0.5, sent_current + elapsed * TEST_LIMITS["current_ramp_a_per_s"])), 3) if sent_current else 0.5
target.link.test_current(sent_current)
last_command_at = self.monotonic()
sample["commanded_current_a"] = None if hold else sent_current
self.sleep(max(0, 0.05 - (self.monotonic() - cycle)))
except (OSError, ValueError, TimeoutError) as error:
failure = {"type": type(error).__name__, "message": str(error), "elapsed_s": self.monotonic()-started}
failure["native_rpc"] = getattr(error, "native_rpc", None)
failure["native_history"] = getattr(error, "native_history", [])
outcome = str(error) if isinstance(error, Rejected) else "Обмен с VESC прерван. Проверка остановлена."
if isinstance(error, LimitExceeded): limit_violation = error.violation
finally:
# Never reconnect to send a stop to a replacement device. Leases
# expire in firmware even if USB or this process is lost.
if claimed:
for device in devices:
try:
device.link.test_command("release")
cleanup[device.id] = "zero_current_sent"
except (OSError, ValueError, TimeoutError):
cleanup[device.id] = "unconfirmed"
self.active = False
self.mode = None
if not self.latched: self.state("ready")
self.sleep(0.3)
after = {}
for device in devices:
try: after[device.id] = values(device.link.query(4, timeout=0.1))
except (OSError, ValueError, TimeoutError): after[device.id] = None
confirmed = all(value is not None and abs(value["motor_current_a"]) <= 1 for value in after.values())
if claimed and not confirmed:
self.state("rc")
outcome = "Снятие тока не подтверждено. Проверьте фактическое состояние моторов."
if speed_mode:
try: restored = self.limits.restore(target)
except (OSError, ValueError, TimeoutError):
self.state("rc")
outcome += " Восстановление прежних токовых пределов не подтверждено; новые запуски заблокированы."
if outcome == "duration" and hold.rotation_s < duration:
outcome = "Проверка закончилась до набора заданного времени вращения."
return {"observed_at": self.utc(), "device_id": target.id, "current_a": current_a,
"mode": "speed" if speed_mode else "current", "rotation_s": hold.rotation_s if hold else None,
"erpm_target": hold.erpm if hold else None, "limits_restored": restored,
"current_ramp_a_per_s": TEST_LIMITS["current_ramp_a_per_s"],
"test_limits": TEST_LIMITS,
"duration_limit_s": duration, "outcome": outcome, "samples": samples,
"limit_violation": limit_violation, "failure": failure,
"release": cleanup, "release_confirmed": confirmed, "after": after, "backups": backups}
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"""Private lifecycle/RPC boundary to unmodified upstream VESC Tool C++.
No wire encoding or calibration algorithm lives here. The native process owns
one exact USB attachment and sends all commands through upstream Commands.
"""
import base64
from collections import deque
import hashlib
import json
import os
from pathlib import Path
import select
import subprocess
import time
from .serial import check_attachment
class NativeLink:
def __init__(self, attachment):
self.attachment = attachment
self.process = None
self.buffer = b""
self.sequence = 0
self.hall_pending = False
self.history = deque(maxlen=32)
self.check()
root = Path("/usr/lib/mission-core-vesc/native")
config = Path("/run/mission-core-vesc/native") / hashlib.sha256(attachment.binding.encode()).hexdigest()[:24]
config.mkdir(parents=True, mode=0o700, exist_ok=True)
env = dict(os.environ, QT_QPA_PLATFORM="offscreen", XDG_CONFIG_HOME=str(config),
XDG_CACHE_HOME=str(config / "cache"), LD_LIBRARY_PATH=str(root / "lib"),
QT_PLUGIN_PATH=str(root / "plugins"))
# Preserve native startup diagnostics in the private runtime directory.
with (config / "engine.log").open("wb") as diagnostic:
self.process = subprocess.Popen([str(root / "bin/mission-core-vesc-engine"), "/dev/" + attachment.tty],
stdin=subprocess.PIPE, stdout=subprocess.PIPE, stderr=diagnostic,
env=env, bufsize=0, close_fds=True)
try:
hello = self._receive(time.monotonic() + 6)
if hello.get("ready") is not True or not hello.get("engine", {}).get("connected"):
raise OSError("Native VESC Tool did not connect")
self.engine = hello["engine"]
self.check()
except BaseException:
self.close()
raise
@property
def alive(self):
return self.process is not None and self.process.poll() is None
def check(self):
check_attachment(self.attachment)
def _receive(self, deadline):
while b"\n" not in self.buffer:
if not self.alive or not select.select([self.process.stdout], [], [], max(0, deadline-time.monotonic()))[0]:
raise TimeoutError("Native VESC Tool response timed out")
data = os.read(self.process.stdout.fileno(), 65536)
if not data: raise OSError("Native VESC Tool exited")
self.buffer += data
if len(self.buffer) > 2 * 1024 * 1024: raise ValueError("Native response exceeds bound")
line, self.buffer = self.buffer.split(b"\n", 1)
return json.loads(line)
def rpc(self, method, timeout=2, **parameters):
self.sequence += 1
request = json.dumps({"id": self.sequence, "method": method, **parameters}, allow_nan=False).encode()+b"\n"
if len(request) > 65536: raise ValueError("Native request exceeds bound")
started = time.monotonic()
deadline = started + timeout
trace = {"method": method, "command": parameters.get("command"),
"timeout_ms": parameters.get("timeout_ms", timeout*1000)}
try:
trace["stage"] = "attachment_before"
self.check()
trace["attachment_before_ms"] = (time.monotonic()-started)*1000
trace["stage"] = "request_write"
if not self.alive: raise OSError("Native VESC Tool is not running")
if not select.select([], [self.process.stdin], [], max(0, deadline-time.monotonic()))[1]:
raise TimeoutError("Native VESC Tool request timed out")
if os.write(self.process.stdin.fileno(), request) != len(request):
raise OSError("Native request write incomplete")
sent_at = time.monotonic()
trace["request_write_ms"] = (sent_at-started)*1000-trace["attachment_before_ms"]
trace["stage"] = "native_response"
response = self._receive(deadline)
received_at = time.monotonic()
trace["native_response_ms"] = (received_at-sent_at)*1000
if not isinstance(response, dict): raise ValueError("Invalid native response")
if response.get("id") != self.sequence: raise ValueError("Native response identity mismatch")
if response.get("ok") is not True:
if isinstance(response.get("diagnostics"), dict):
trace["transport"] = response["diagnostics"]
raise OSError(response.get("error", "Native operation failed"))
trace["stage"] = "attachment_after"
self.check()
trace["attachment_after_ms"] = (time.monotonic()-received_at)*1000
trace["stage"] = "complete"
result = response.get("result")
if not isinstance(result, dict): raise ValueError("Invalid native result")
trace.update(ok=True, elapsed_ms=(time.monotonic()-started)*1000)
self.last_rpc = trace
if hasattr(self, "history"): self.history.append(trace)
return result
except (OSError, ValueError, TimeoutError) as error:
# An unconfirmed reply is never silently retried on the same stream.
trace.update(ok=False, elapsed_ms=(time.monotonic()-started)*1000,
process_alive=self.alive, error=str(error))
try: self.check(); trace["attachment_present"] = True
except OSError: trace["attachment_present"] = False
self.last_rpc = trace
if hasattr(self, "history"): self.history.append(trace)
error.native_rpc = trace
error.native_history = list(getattr(self, "history", []))
self.close()
raise
def query(self, command, timeout=2):
result = self.rpc("query", timeout=timeout+0.1, command=command, timeout_ms=max(20, int(timeout*1000)))
return base64.b64decode(result["payload"], validate=True)
def test_command(self, action):
if action not in ("claim", "release"): raise ValueError("Unknown control action")
self.rpc("lease" if action == "claim" else "release", timeout=0.1)
def test_current(self, current_a):
self.rpc("current", timeout=0.1, current_a=current_a)
def test_speed(self, erpm):
self.rpc("rpm", timeout=0.1, erpm=erpm)
def set_temporary_limits(self, config):
from .temporary_limits import FIELDS
self.rpc("limits", timeout=2.2, parameters={k: config[k] for k in FIELDS})
def configuration(self):
return self.rpc("configuration", timeout=5)
def detect_hall(self):
if self.hall_pending: raise ValueError("Hall measurement already pending")
self.hall_pending = True
self.rpc("hall_start", timeout=0.2, current_a=5)
def calibrate_foc(self, max_power_loss_w):
self.rpc("foc_start", timeout=0.2, max_power_loss_w=max_power_loss_w)
def procedure_result(self):
return self.rpc("procedure_result", timeout=0.2)
@property
def hall_result(self):
if not self.hall_pending: return None
state = self.rpc("procedure_result", timeout=0.1)
result = state.get("result", {})
if state.get("running") or not result.get("completed"): return None
return base64.b64decode(result["payload"], validate=True)
def close(self):
process, self.process = self.process, None
if process is None: return
if process.poll() is None:
process.terminate()
try: process.wait(timeout=1)
except subprocess.TimeoutExpired:
process.kill(); process.wait(timeout=1)
for stream in (process.stdin, process.stdout):
if stream: stream.close()
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"""Bounded VESC serial reader.
Wire reference: vedderb/vesc_tool dc53c658cbb89a947246034f7a00149cf79abdfc,
packet.cpp, commands.cpp and datatypes.h. No arbitrary packet transmit API.
Config payloads remain opaque until their exact firmware schema is admitted.
"""
import binascii
import struct
READ_COMMANDS = frozenset({0, 4, 14, 17, 31, 62})
MAX_PACKET = 10000
def request(command):
if type(command) is not int or command not in READ_COMMANDS:
raise ValueError("Unsupported read command")
data = bytes([command])
return b"\x02\x01" + data + binascii.crc_hqx(data, 0).to_bytes(2, "big") + b"\x03"
TEST_LIMITS = {"min_current_a": 0.5, "max_current_a": 30, "min_duration_s": 0.5,
"max_duration_s": 30, "current_ramp_a_per_s": 2.0,
"continuous_current": True, "max_erpm": 6000, "max_duty": 0.25,
"stall_current_a": 5, "stall_timeout_s": 2.0}
# A separate action/capability keeps old clients from silently changing modes.
SPEED_LIMITS = {"min_erpm": 300, "max_erpm": 3000, "ramp_erpm_per_s": 600,
"startup_timeout_s": 15, "settle_s": 1, "speed_tolerance": 0.15,
"lost_speed_timeout_s": 2, "duration_basis": "measured_speed"}
def frame(data):
if not 1 <= len(data) <= 255: raise ValueError("Invalid bounded command size")
return bytes([2, len(data)]) + data + binascii.crc_hqx(data, 0).to_bytes(2, "big") + b"\x03"
def speed_packet(erpm):
if type(erpm) not in (int, float) or not 0 <= erpm <= SPEED_LIMITS["max_erpm"]:
raise ValueError("Invalid test speed")
return frame(bytes([8]) + struct.pack(">i", round(erpm)))
def hall_packet():
# FW 5.02 native FOC Hall sweep, fixed 5 A; no store and no CAN forwarding.
return frame(bytes([28]) + struct.pack(">i", 5000))
def current_packet(current_a):
if type(current_a) not in (int, float) or not TEST_LIMITS["min_current_a"] <= current_a <= TEST_LIMITS["max_current_a"]:
raise ValueError("Test current must be between 0.5 and 30 A")
data = b"\x06" + struct.pack(">i", round(current_a * 1000))
return bytes([2, len(data)]) + data + binascii.crc_hqx(data, 0).to_bytes(2, "big") + b"\x03"
def test_packet(action):
"""Only fixed volatile commands; no arbitrary current/lease/packet."""
data = {"current": b"\x06" + struct.pack(">i", 2000),
"release": b"\x06" + bytes(4),
"claim": b"\x3f\x00" + struct.pack(">i", 250)}[action]
return bytes([2, len(data)]) + data + binascii.crc_hqx(data, 0).to_bytes(2, "big") + b"\x03"
def ppm(packet):
if len(packet) != 9 or packet[0] != 31:
raise ValueError("Incomplete PPM reply")
level, pulse = struct.unpack(">ii", packet[1:])
if not -1100000 <= level <= 1100000 or not 0 <= pulse <= 3000000:
raise ValueError("Invalid PPM values")
return {"level": level / 1e6, "pulse_ms": pulse / 1e6}
class Decoder:
def __init__(self):
self.buffer = bytearray()
def feed(self, data):
if len(self.buffer) + len(data) > MAX_PACKET * 2 + 16:
self.buffer.clear()
raise ValueError("Serial buffer overflow")
self.buffer.extend(data)
packets = []
while self.buffer:
start = self.buffer[0]
if start not in (2, 3, 4):
del self.buffer[0]
continue
width = start - 1
if len(self.buffer) < width + 1:
break
size = int.from_bytes(self.buffer[1:width + 1], "big")
if not 1 <= size <= MAX_PACKET:
del self.buffer[0]
continue
end = width + 1 + size
if len(self.buffer) < end + 3:
break
payload = bytes(self.buffer[width + 1:end])
if self.buffer[end + 2] != 3 or int.from_bytes(self.buffer[end:end + 2], "big") != binascii.crc_hqx(payload, 0):
del self.buffer[0]
continue
del self.buffer[:end + 3]
packets.append(payload)
return packets
def firmware(packet):
if len(packet) < 4 or packet[0] != 0:
raise ValueError("Incomplete firmware reply")
end = packet.find(b"\0", 3, 132)
if end <= 3 or len(packet) < end + 13:
raise ValueError("Firmware has no complete hardware identity")
name = packet[3:end].decode("ascii")
if not all(32 <= ord(c) < 127 for c in name):
raise ValueError("Invalid hardware name")
uuid = packet[end + 1:end + 13]
if uuid in (bytes(12), b"\xff" * 12):
raise ValueError("Invalid hardware UUID")
optional = packet[end + 13:]
return {"major": packet[1], "minor": packet[2], "version": f"{packet[1]}.{packet[2]:02d}",
"hardware": name, "uuid": uuid.hex(),
"test_firmware": optional[1] if len(optional) > 1 else None,
"hardware_type": optional[2] if len(optional) > 2 else None,
"custom_configs": optional[3] if len(optional) > 3 else None}
def values(packet):
if len(packet) < 54 or packet[0] != 4:
raise ValueError("Incomplete telemetry reply")
fields = (("mos_temperature_c", "h", 10), ("motor_temperature_c", "h", 10),
("motor_current_a", "i", 100), ("input_current_a", "i", 100),
("id_current_a", "i", 100), ("iq_current_a", "i", 100),
("duty", "h", 1000), ("erpm", "i", 1), ("input_voltage_v", "h", 10),
("amp_hours", "i", 10000), ("amp_hours_charged", "i", 10000),
("watt_hours", "i", 10000), ("watt_hours_charged", "i", 10000),
("tachometer", "i", 1), ("tachometer_abs", "i", 1), ("fault_code", "B", 1))
result, offset = {}, 1
for key, fmt, scale in fields:
result[key] = struct.unpack_from(">" + fmt, packet, offset)[0] / scale
offset += struct.calcsize(fmt)
# Optional tail is ordered, not an independent set of guessed offsets.
for key, fmt, scale in (("position_deg", "i", 1e6), ("can_id", "B", 1),
("mos1_c", "h", 10), ("mos2_c", "h", 10), ("mos3_c", "h", 10),
("vd_v", "i", 1000), ("vq_v", "i", 1000), ("status", "B", 1)):
size = struct.calcsize(fmt)
if len(packet) < offset + size:
break
result[key] = struct.unpack_from(">" + fmt, packet, offset)[0] / scale
offset += size
if "status" in result:
flags = int(result.pop("status"))
result.update(timeout=bool(flags & 1), kill_switch=bool(flags & 2))
return result
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Firmware 5.02 configuration definitions from official vedderb/vesc_tool commit 01d5f10901116c311e3fb84d5a1541f663d3ce20, res/config/5.02. Copyright Benjamin Vedder and contributors; see VESC_TOOL_LICENSE. Definitions are unchanged.

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