AI_UIAutomation/tests/ceiling_light/eave_light_control.test.ts

348 lines
18 KiB
TypeScript

import { describe, it, beforeAll, afterAll, beforeEach, afterEach, expect } from 'vitest';
import { DeviceDriver } from '../../drivers/types';
import { createDriver } from '../../drivers/factory';
import { TestReporter } from '../../utils/test-reporter';
import { sleep, waitForSource, getAddedDevice } from '../../utils/common';
import * as dotenv from 'dotenv';
import * as path from 'path';
dotenv.config({ path: path.resolve(__dirname, '../../.env') });
// 灯类首页卡片控制(以屋檐灯 Permanent Outdoor Lights 为样板,卡片关键词可配,可复用到同款浮层滑条灯)。
// 浮层:状态字(Off / "On | NN% | Color") + **无文案电源圆键** + **亮度滑条** + More。流程同加湿器2/空净。
// 实测 1080x2400:电源键中心 (540,1455)=(w/2,h*0.606);滑条 track x[48..1032] y1737(h*0.724)。
// 亮度可由副标题 "On | NN%" 直接读出,拖滑条后校验 % 变化。ONES 控制号待补,先 [P0] 占位。
// 灯卡片关键词:**优先按添加时注册的实际名**(LIGHT_REG=注册 key,如 'stripLight'→"Strip Light SB"),
// 不写死;LIGHT_CARD 作兜底(注册表无该 key 时用)。方案A:8 个灯各注册独立 key。
const LIGHT_REG = process.env.LIGHT_REG;
const CARD_KEYWORD = (LIGHT_REG && getAddedDevice(LIGHT_REG)) || process.env.LIGHT_CARD || 'Permanent Outdoor Lights';
const ADD_ANCHOR = '[P0]'; // TODO: 待补 屋檐灯/灯类 控制 ONES 编号
describe('Light Card - 首页卡片控制(电源+亮度滑条)', () => {
let driver: DeviceDriver;
let reporter: TestReporter;
let W = 1080, H = 2400;
beforeAll(async () => {
driver = createDriver();
await driver.createSession();
// suite 带卡名 → 每个灯记录可区分(合并报告按 suite+用例名去重,否则多灯会塌缩成一个)。
// 形如 "Light_Color Bulb":产品=Light,模块=灯名。
reporter = new TestReporter(`Light_${CARD_KEYWORD}`, driver.platform.toUpperCase());
try { const s = await driver.getWindowSize(); if (s?.width) { W = s.width; H = s.height; } } catch { /* 默认 1080x2400 */ }
});
beforeEach(async () => {
// iOS 浮层是底部 bottom sheet:android back(33,69)关不掉 → 点顶部**暗区**收起。注意 H*0.05 太高(状态栏)关不掉,实测 H*0.12 才在暗区内。
if (driver.platform === 'ios') { await driver.tap(Math.round(W * 0.5), Math.round(H * 0.12)).catch(() => {}); await sleep(700); }
await driver.dismissPopupIfPresent();
await driver.goBackToHomepage();
await sleep(500);
await driver.dismissPopupIfPresent();
});
afterAll(async () => {
reporter.generate();
await driver.destroySession();
});
// 每个用例结束都收起底部弹层(iOS sheet 不会自动关,残留会污染下一用例/下一设备的控制测试)。Android back 已能关,无害。
afterEach(async () => {
if (driver.platform === 'ios') { await driver.tap(Math.round(W * 0.5), Math.round(H * 0.12)).catch(() => {}); await sleep(600); }
await driver.dismissPopupIfPresent().catch(() => {});
});
const isIOS = () => driver.platform === 'ios';
async function findCardEl(): Promise<string | null> {
return isIOS()
? (await driver.findElementRaw('predicate string', `name CONTAINS "${CARD_KEYWORD}" OR label CONTAINS "${CARD_KEYWORD}"`).catch(() => null))
: (await driver.findElementRaw('-android uiautomator', `new UiSelector().textContains("${CARD_KEYWORD}")`).catch(() => null));
}
async function findCard(): Promise<string> {
// 用 driver.scrollDown(实测稳定滚动、不误点卡片);自定义 swipe 起手在卡片上会被当成点击(误开摄像头)。
// 复位到顶:beforeEach 的 goBackToHomepage 已回首页顶部。
for (let r = 0; r < 12; r++) {
const el = await findCardEl();
if (el) {
const rect = await driver.getElementRect(el).catch(() => null);
if (rect && rect.width > 0 && rect.y > 50 && rect.y < H - 80) return el; // 在可视区内才用(避免贴边/视窗外)
}
await driver.scrollDown(500);
await sleep(800);
}
throw new Error(`找不到${CARD_KEYWORD}卡片`);
}
async function openCardPopup(): Promise<void> {
// 点卡片中心应弹"快捷控制浮层"(含 More + 滑条);但灯类有时会误进**功能页**(整页设备详情) → 检测不到浮层就回首页重试。
for (let attempt = 0; attempt < 3; attempt++) {
const cardId = await findCard();
const rect = await driver.getElementRect(cardId);
await driver.tap(rect.x + rect.width / 2, rect.y + rect.height / 2);
await sleep(2000);
if (await waitForSource(driver, 'More', 5000)) return; // 浮层弹出成功
console.log(`未弹快捷浮层(疑误进功能页),回首页重试(第 ${attempt + 1}/3)`);
await driver.dismissPopupIfPresent().catch(() => {});
await driver.goBackToHomepage();
await sleep(800);
}
throw new Error('卡片快捷控制浮层未弹出(多次重试后仍误进功能页)');
}
// 动态找电源键:浮层里近正方形(150-300px)、水平居中的可点节点。找不到回退比例点。
// iOS 找电源键 Button(居中圆键,~50-120px,y>H*0.4);返回中心,找不到返回 null。两类灯(单/双滑条)位置不同,必须动态找。
async function findPowerBtnIOS(): Promise<{ cx: number; cy: number } | null> {
const btns = await driver.findElementsRaw('predicate string', 'type == "XCUIElementTypeButton"').catch(() => [] as string[]);
const cands: { cx: number; cy: number }[] = [];
for (const b of btns as string[]) {
const r = await driver.getElementRect(b).catch(() => null);
if (!r) continue;
// 电源圆键:近正方形(|w-h|小)、~50-120px、水平居中、在浮层区(y>H*0.4)。定时按钮(1hr等)不居中/更小,背景卡片按钮偏侧 → 排除。
if (r.width >= 45 && r.width <= 120 && Math.abs(r.width - r.height) < 24 && Math.abs(r.x + r.width / 2 - W / 2) < W * 0.16 && r.y > H * 0.4 && r.y < H * 0.78) {
cands.push({ cx: Math.round(r.x + r.width / 2), cy: Math.round(r.y + r.height / 2) });
}
}
if (!cands.length) return null;
cands.sort((a, b) => a.cy - b.cy); // 取最靠上的(电源键在滑条/定时之上)
return cands[0];
}
async function tapPower(): Promise<void> {
if (isIOS()) {
const p = await findPowerBtnIOS();
const px = p ? p.cx : Math.round(W * 0.5);
const py = p ? p.cy : Math.round(H * 0.5);
console.log(`点电源键(iOS) ${px},${py}${p ? '' : ' [回退]'}`);
return driver.tap(px, py);
}
const src = await driver.getSource();
const cands = Array.from(src.matchAll(/clickable="true"[^>]*?bounds="\[(\d+),(\d+)\]\[(\d+),(\d+)\]"/g))
.map((m) => { const x1 = +m[1], y1 = +m[2], x2 = +m[3], y2 = +m[4]; return { w: x2 - x1, h: y2 - y1, cx: (x1 + x2) / 2, cy: (y1 + y2) / 2 }; })
.filter((b) => b.w >= 150 && b.w <= 320 && b.h >= 150 && b.h <= 320 && Math.abs(b.cx - W / 2) < W * 0.15 && b.cy > H * 0.4);
const px = cands.length ? Math.round(cands[0].cx) : Math.round(W * 0.5);
const py = cands.length ? Math.round(cands[0].cy) : Math.round(H * 0.606);
console.log(`点电源键 (${px}, ${py})${cands.length ? '' : ' [回退默认]'}`);
return driver.tap(px, py);
}
// 读副标题:首个含设备名后的状态字。关="Off";开="On | NN% | Color"。(iOS 属性是 name/label/value,非 text)
const ATTR = /(?:text|name|label|value)="([^"]+)"/g;
async function readStatus(): Promise<string> {
const src = await driver.getSource();
const vals = Array.from(src.matchAll(ATTR)).map((m) => m[1]);
if (isIOS()) {
// 浮层(bottom sheet)状态是**独立元素、以 On/Off 开头**(如 "On | 21% | White" / "Off");
// 背景首页卡片是"卡名+状态"拼接(以卡名开头)。优先取浮层状态(拖动时浮层实时、背景卡片会滞后读串)。
const overlay = vals.map((t) => t.trim()).find((t) => /^(On|Off)\b/.test(t));
if (overlay) return overlay;
for (let i = 0; i < vals.length; i++) {
if (vals[i].includes(CARD_KEYWORD)) {
const combined = `${vals[i]} ${vals[i + 1] || ''}`.trim();
if (/On|Off/.test(combined)) return combined;
}
}
return vals.find((t) => t.includes(CARD_KEYWORD)) || '';
}
const i = vals.findIndex((t) => t.includes(CARD_KEYWORD));
return i >= 0 ? (vals[i + 1] || '') : '';
}
async function isOff(): Promise<boolean> {
const s = await readStatus();
console.log(`状态字="${s}"`);
return /Off|Offline/.test(s);
}
// 当前亮度%:从**含卡名的状态串**取 NN%(iOS 浮层是 bottom sheet,背景首页其它卡片的% 会污染全局扫描)。
async function readBrightness(retries = 4): Promise<number> {
for (let i = 0; i < retries; i++) {
if (isIOS()) {
const mm = (await readStatus()).match(/(\d+)\s*%/);
if (mm) return Number(mm[1]);
} else {
const src = await driver.getSource();
for (const m of src.matchAll(ATTR)) { const mm = m[1].match(/(\d+)\s*%/); if (mm) return Number(mm[1]); }
}
await sleep(600);
}
return -1;
}
async function pollState(wantOff: boolean, ms = 15000): Promise<boolean> {
await sleep(3000); // 控制(开/关)后等待 ~3s 让设备状态回写同步,再开始校验(灯卡片状态有延迟,直接读易误判)
const deadline = Date.now() + ms;
while (Date.now() < deadline) {
if ((await isOff()) === wantOff) return true;
await sleep(1500);
}
return (await isOff()) === wantOff;
}
// 动态找滑条 track:浮层里宽 View(w>屏宽80%、高<280)。排除屏幕底部(y1<H*0.88,滤掉 nav/home indicator 误检)。
// 按 y 升序返回(可能多条,如彩灯有亮度+色温)。
async function findSliderTracks(): Promise<Array<{ left: number; right: number; y: number }>> {
if (isIOS()) {
// 对齐 Android:**数实际滑条 track 元素**(iOS 是 XCUIElementTypeOther,w≈W*0.9、h≈56,在浮层滑条区)。
// 实测 Color Bulb(双) 有 2 条(y≈486 亮度 / y≈566 色温);单滑条灯只 1 条 → 色温用例自动 SKIP。按 y 去重(同条会有 track+填充两个元素)。
const src = await driver.getSource();
const seen = new Set<number>();
const tracks: Array<{ left: number; right: number; y: number }> = [];
for (const node of src.split('<')) {
if (!/XCUIElementTypeOther/.test(node)) continue;
const b = node.match(/x="(-?\d+)"\s+y="(-?\d+)"\s+width="(\d+)"\s+height="(\d+)"/);
if (!b) continue;
const x = +b[1], y = +b[2], w = +b[3], h = +b[4];
if (w > W * 0.8 && h >= 40 && h <= 90 && y > H * 0.45 && y < H * 0.85) {
const cy = Math.round(y + h / 2);
const key = Math.round(cy / 30);
if (!seen.has(key)) { seen.add(key); tracks.push({ left: x + 12, right: x + w - 12, y: cy }); }
}
}
tracks.sort((a, b) => a.y - b.y);
return tracks; // 1 条=单滑条(无色温) / 2 条=双滑条(含色温),同 Android 数 track
}
const src = await driver.getSource();
const tracks = Array.from(src.matchAll(/class="android\.view\.View"[^>]*?bounds="\[(\d+),(\d+)\]\[(\d+),(\d+)\]"/g))
.map((m) => { const x1 = +m[1], y1 = +m[2], x2 = +m[3], y2 = +m[4]; return { x1, y1, w: x2 - x1, h: y2 - y1, left: x1 + 10, right: x2 - 10, y: Math.round((y1 + y2) / 2) }; })
.filter((b) => b.w > W * 0.8 && b.h > 40 && b.h < 280 && b.y1 > H * 0.4 && b.y1 < H * 0.88);
return tracks.sort((a, b) => a.y - b.y);
}
// 缓存亮度滑条。多滑条时用「幅度+方向」判定:真亮度条=拖低读低%、拖高读高%、且高-低≥25(色温条拖动时亮度%基本不变,被排除;反向条 高<低 也排除)。
let brightnessTrack: { left: number; right: number; y: number } | null = null;
// 触点 x 夹紧到远离屏幕左右边缘(避免 Android 边缘返回手势把浮层划掉 —— 亮度100%时滑块在最右端尤甚)
const clampX = (x: number) => Math.max(Math.round(W * 0.085), Math.min(Math.round(W * 0.915), x));
async function dragOnTrack(tr: { left: number; right: number; y: number }, toF: number): Promise<void> {
const cur = await readBrightness();
const curF = cur >= 0 ? cur / 100 : 0.5;
const sx = clampX(Math.round(tr.left + curF * (tr.right - tr.left))); // 从当前滑块(按亮度%反算)起拖
const tx = clampX(Math.round(tr.left + toF * (tr.right - tr.left)));
await driver.swipe(sx, tr.y, tx, tr.y, 0.8);
await sleep(2000);
}
async function ensureBrightnessTrack(): Promise<void> {
if (brightnessTrack) return;
const tracks = await findSliderTracks();
if (isIOS()) { brightnessTrack = tracks[0]; console.log(`iOS 亮度条=y${tracks[0].y}(固定首条,不试探避免污染状态)`); return; }
for (const tr of tracks) {
await dragOnTrack(tr, 0.25); const lo = await readBrightness();
await dragOnTrack(tr, 0.8); const hi = await readBrightness();
console.log(`试探滑条 y=${tr.y}: 拖低→${lo}% 拖高→${hi}%`);
if (hi > 0 && lo > 0 && hi > lo && hi - lo >= 25) { brightnessTrack = tr; console.log(`→ 亮度条=y${tr.y}`); return; }
}
brightnessTrack = tracks[0] || { left: Math.round(W * 0.0444), right: Math.round(W * 0.9556), y: Math.round(H * 0.7237) };
console.log(`亮度条=y${brightnessTrack.y}(回退,未明确检出)`);
}
// 拖亮度滑条到占比 f(0..1):起点落在当前滑块(按当前亮度% 反算),拖到目标。
async function setBrightness(f: number): Promise<void> {
await ensureBrightnessTrack();
const tr = brightnessTrack!;
const cur = await readBrightness();
const startF = cur >= 0 ? cur / 100 : 0.5;
const startX = clampX(Math.round(tr.left + startF * (tr.right - tr.left)));
const targetX = clampX(Math.round(tr.left + f * (tr.right - tr.left)));
console.log(`拖亮度 ${cur}%→${Math.round(f * 100)}% (track y=${tr.y}, x ${startX}${targetX})`);
if (isIOS()) {
// iOS 自绘滑块:0.8s swipe 抓不住 → 用更长按住时长(1.5s)的拖动让其 grab 再移;拖完亮度% 回写有延迟,多等再读。
await driver.swipe(startX, tr.y, targetX, tr.y, 1.5);
await sleep(5000);
} else {
await driver.swipe(startX, tr.y, targetX, tr.y, 0.8);
await sleep(2500);
}
}
it(`${ADD_ANCHOR} 首页找到灯卡片`, async () => {
const start = Date.now();
try {
const cardId = await findCard();
const rect = await driver.getElementRect(cardId);
const detail = `位置: (${rect.x}, ${rect.y}) 尺寸: ${rect.width}x${rect.height}`;
console.log(`${CARD_KEYWORD} ${detail}`);
expect(rect.width).toBeGreaterThan(0);
reporter.record(`${ADD_ANCHOR} 首页找到灯卡片`, 'PASS', Date.now() - start, detail);
} catch (e: any) {
const ss = await driver.screenshot().catch(() => '');
reporter.record(`${ADD_ANCHOR} 首页找到灯卡片`, 'FAIL', Date.now() - start, e.message, ss);
throw e;
}
});
it(`${ADD_ANCHOR} 首页卡片开灯`, async () => {
const start = Date.now();
try {
await openCardPopup();
if (!(await isOff())) { await tapPower(); await pollState(true); }
await tapPower();
const on = await pollState(false);
expect(on).toBe(true);
reporter.record(`${ADD_ANCHOR} 首页卡片开灯`, 'PASS', Date.now() - start, '电源键开灯成功(状态→On)');
} catch (e: any) {
const ss = await driver.screenshot().catch(() => '');
reporter.record(`${ADD_ANCHOR} 首页卡片开灯`, 'FAIL', Date.now() - start, e.message, ss);
throw e;
}
});
it(`${ADD_ANCHOR} 首页卡片拖动滑条调亮度`, async () => {
const start = Date.now();
try {
await openCardPopup();
if (await isOff()) { await tapPower(); await pollState(false); }
await setBrightness(0.8); // 调亮到 ~80%
const hi = await readBrightness();
await setBrightness(0.2); // 调暗到 ~20%
const lo = await readBrightness();
console.log(`亮度: 调亮后=${hi}% 调暗后=${lo}%`);
expect(hi).toBeGreaterThan(0);
expect(lo).toBeGreaterThan(0);
expect(hi).toBeGreaterThan(lo); // 拖动确实改变了亮度(亮>暗)
reporter.record(`${ADD_ANCHOR} 首页卡片拖动滑条调亮度`, 'PASS', Date.now() - start, `滑条拖动生效: 调亮${hi}% > 调暗${lo}%`);
} catch (e: any) {
const ss = await driver.screenshot().catch(() => '');
reporter.record(`${ADD_ANCHOR} 首页卡片拖动滑条调亮度`, 'FAIL', Date.now() - start, e.message, ss);
throw e;
}
});
it(`${ADD_ANCHOR} 首页卡片拖动色温滑条`, async () => {
const start = Date.now();
try {
await openCardPopup();
if (await isOff()) { await tapPower(); await pollState(false); }
await ensureBrightnessTrack(); // 先确定哪条是亮度,色温=另一条
const tracks = await findSliderTracks();
const ct = tracks.find((t) => Math.abs(t.y - brightnessTrack!.y) > 50);
if (!ct) { // 单滑条灯(屋檐灯/灯带等)无独立色温条
reporter.record(`${ADD_ANCHOR} 首页卡片拖动色温滑条`, 'SKIP', Date.now() - start, '该灯无独立色温滑条(单滑条)');
return;
}
// 拖动色温条覆盖(不校验设备值):从中点抓,拖到右端再拖回左端(x 夹紧避免边缘手势)
const mid = clampX(Math.round((ct.left + ct.right) / 2));
const rx = clampX(ct.right), lx = clampX(ct.left);
console.log(`拖色温条 y=${ct.y} (mid=${mid}${lx}/${rx})`);
await driver.swipe(mid, ct.y, rx, ct.y, 0.8); await sleep(1800);
await driver.swipe(rx, ct.y, lx, ct.y, 0.8); await sleep(1800);
reporter.record(`${ADD_ANCHOR} 首页卡片拖动色温滑条`, 'PASS', Date.now() - start, `色温滑条(y=${ct.y})拖动完成(仅覆盖,不校验设备)`);
} catch (e: any) {
const ss = await driver.screenshot().catch(() => '');
reporter.record(`${ADD_ANCHOR} 首页卡片拖动色温滑条`, 'FAIL', Date.now() - start, e.message, ss);
throw e;
}
});
it(`${ADD_ANCHOR} 首页卡片关灯`, async () => {
const start = Date.now();
try {
await openCardPopup();
if (await isOff()) { await tapPower(); await pollState(false); }
await tapPower();
const off = await pollState(true);
expect(off).toBe(true);
reporter.record(`${ADD_ANCHOR} 首页卡片关灯`, 'PASS', Date.now() - start, '电源键关灯成功(状态→Off)');
} catch (e: any) {
const ss = await driver.screenshot().catch(() => '');
reporter.record(`${ADD_ANCHOR} 首页卡片关灯`, 'FAIL', Date.now() - start, e.message, ss);
throw e;
}
});
});