核心功能:支持离线的数据流
使用 React Query 构建主数据流并实现离线持久化,实现下拉刷新和分页,添加创建与删除变更操作,并为列表项进入页面添加动画。
核心功能:支持离线的数据流 是 CoddyKit 上的免费 React Native Academy 课时。 这是第 3 节课,共 4 节。 你可以在下方免费阅读本课时的完整内容 — 然后在浏览器中使用内置代码编辑器和全天候 AI 导师进行实践。 这是 React Native Academy 学习路径的一部分,你的进度在网页和 CoddyKit 应用中同步。 React Native Academy 课程共包含 4 节课。
本课时的部分内容尚未翻译,以英文显示。
What Is Offline-First Design
Offline-first design means the app works correctly without an internet connection — users can view cached data, perform mutations that queue for sync, and experience no error messages just because the network is unavailable. Mobile users frequently move in and out of connectivity. A React Native app that breaks without a network feels fragile; one that keeps working feels polished and reliable.
Setting Up the QueryClient
React Query's QueryClient is the backbone of the data layer. Configure it with sensible defaults: a staleTime that avoids unnecessary refetches (e.g., 5 minutes for data that changes infrequently), and a gcTime (garbage collection time) that keeps unused data in the cache long enough to serve it from cache on reconnect. Pass this client to QueryClientProvider at the app root.
// src/services/queryClient.ts
import { QueryClient } from '@tanstack/react-query';
export const queryClient = new QueryClient({
defaultOptions: {
queries: {
staleTime: 1000 * 60 * 5, // 5 minutes — don't refetch too often
gcTime: 1000 * 60 * 60, // Keep in cache 1 hour after unmount
retry: 2,
retryDelay: (attempt) => Math.min(1000 * 2 ** attempt, 30000),
refetchOnWindowFocus: false, // Not needed on mobile
refetchOnReconnect: true, // Sync when network returns
},
},
});Persisting the Query Cache with AsyncStorage
To make data available when offline, persist the React Query cache to AsyncStorage. Use @tanstack/react-query-persist-client with an AsyncStorage persister. On app startup, the persisted cache is restored before the first network request — so users see their habits list immediately, even before the fetch completes. The cache is hydrated asynchronously, so show cached data optimistically and update when the fresh data arrives.
// App.tsx
import { PersistQueryClientProvider } from '@tanstack/react-query-persist-client';
import { createAsyncStoragePersister } from '@tanstack/query-async-storage-persister';
import AsyncStorage from '@react-native-async-storage/async-storage';
import { queryClient } from './src/services/queryClient';
const asyncStoragePersister = createAsyncStoragePersister({
storage: AsyncStorage,
key: 'REACT_QUERY_CACHE',
});
export default function App() {
return (
<PersistQueryClientProvider
client={queryClient}
persistOptions={{ persister: asyncStoragePersister }}
>
<AuthProvider>
<RootNavigator />
</AuthProvider>
</PersistQueryClientProvider>
);
}Fetching the Habits List with useQuery
Build a custom hook useHabits that encapsulates the Supabase query inside useQuery. The query key ['habits', userId] scopes the cache to the current user, preventing data from leaking between accounts. React Query returns data, isLoading, and error — pass all three to the screen to show the correct UI state at each point.
// src/hooks/useHabits.ts
import { useQuery } from '@tanstack/react-query';
import { supabase } from '../services/supabase';
import { useAuth } from '../context/AuthContext';
import { Habit } from '../types';
async function fetchHabits(userId: string): Promise<Habit[]> {
const { data, error } = await supabase
.from('habits')
.select('*')
.eq('user_id', userId)
.order('created_at', { ascending: true });
if (error) throw error;
return data;
}
export function useHabits() {
const { session } = useAuth();
const userId = session!.user.id;
return useQuery({
queryKey: ['habits', userId],
queryFn: () => fetchHabits(userId),
enabled: !!userId,
});
}Rendering the FlatList with Cached Data
Use the useHabits hook in the HabitList screen. Show a skeleton loader or spinner for the initial load, use the data array directly as the FlatList source, and handle the error state with a retry button. Because the cache is persisted, on subsequent app launches data is immediately available (no loading flash) while React Query fetches a fresh version in the background.
// src/screens/habits/HabitListScreen.tsx
import { FlatList, ActivityIndicator, View, Text } from 'react-native';
import { useHabits } from '../../hooks/useHabits';
import { HabitCard } from '../../components/HabitCard';
export function HabitListScreen() {
const { data: habits, isLoading, error, refetch } = useHabits();
if (isLoading && !habits) {
return <ActivityIndicator style={{ flex: 1 }} />;
}
if (error) {
return (
<View>
<Text>Failed to load habits.</Text>
<Button title='Retry' onPress={() => refetch()} />
</View>
);
}
return (
<FlatList
data={habits}
keyExtractor={(item) => item.id}
renderItem={({ item }) => <HabitCard habit={item} />}
onRefresh={refetch}
refreshing={isLoading}
/>
);
}Creating Habits with useMutation
useMutation handles the insert operation. On onSuccess, call queryClient.invalidateQueries(['habits', userId]) to trigger a fresh fetch of the habits list. This ensures the newly created habit appears in the list immediately after creation without manually updating the cache. Set onError to show the user an error message if the insert fails.
// src/hooks/useCreateHabit.ts
import { useMutation, useQueryClient } from '@tanstack/react-query';
import { supabase } from '../services/supabase';
import { useAuth } from '../context/AuthContext';
export function useCreateHabit() {
const queryClient = useQueryClient();
const { session } = useAuth();
const userId = session!.user.id;
return useMutation({
mutationFn: async ({ name, icon, color }) => {
const { error } = await supabase.from('habits').insert({
user_id: userId,
name,
icon,
color,
});
if (error) throw error;
},
onSuccess: () => {
queryClient.invalidateQueries({ queryKey: ['habits', userId] });
},
onError: (error) => {
Alert.alert('Error', error.message);
},
});
}Optimistic Updates for Check-In
For the daily check-in (marking a habit as done), use optimistic updates to update the UI instantly before the network request completes. When the user taps the check-in button, immediately update the cache with the assumed result. If the request fails, roll back the cache to the previous state. This makes the app feel instant even on slow networks.
// Optimistic update pattern with useMutation
const toggleCompletion = useMutation({
mutationFn: (habitId) => insertCompletion(habitId, today),
onMutate: async (habitId) => {
// Cancel in-flight refetches
await queryClient.cancelQueries({ queryKey: ['completions', userId] });
// Save snapshot for rollback
const previous = queryClient.getQueryData(['completions', userId]);
// Optimistically add completion
queryClient.setQueryData(['completions', userId], (old) => [
...old,
{ habit_id: habitId, completed_date: today }
]);
return { previous }; // Pass snapshot to onError
},
onError: (_err, _habitId, context) => {
// Roll back on failure
queryClient.setQueryData(['completions', userId], context.previous);
},
onSettled: () => {
queryClient.invalidateQueries({ queryKey: ['completions', userId] });
},
});Network Status and Offline Banner
Show users a subtle offline banner when the device has no internet connection so they understand why their changes haven't synced. Use @react-native-community/netinfo to listen for connectivity changes. React Query automatically pauses mutations when offline and retries them when connectivity returns — the banner simply makes this behavior visible to the user.
import NetInfo from '@react-native-community/netinfo';
import { useEffect, useState } from 'react';
export function OfflineBanner() {
const [isOffline, setIsOffline] = useState(false);
useEffect(() => {
const unsubscribe = NetInfo.addEventListener((state) => {
setIsOffline(!state.isConnected);
});
return unsubscribe;
}, []);
if (!isOffline) return null;
return (
<View style={{
backgroundColor: '#FF3B30',
padding: 8,
alignItems: 'center'
}}>
<Text style={{ color: 'white', fontWeight: 'bold' }}>
No internet connection — changes will sync when online
</Text>
</View>
);
}Pagination with FlatList and useInfiniteQuery
For feeds with many items, implement pagination using useInfiniteQuery. It fetches pages of data and appends them to a running list. Pass fetchNextPage to FlatList's onEndReached handler so the next page loads automatically as the user scrolls. Use getNextPageParam to derive the next page cursor from the last page's response.
import { useInfiniteQuery } from '@tanstack/react-query';
export function useHabitsPaginated() {
return useInfiniteQuery({
queryKey: ['habits', 'paginated'],
queryFn: ({ pageParam = 0 }) =>
supabase.from('habits').select('*')
.range(pageParam, pageParam + 19), // 20 per page
getNextPageParam: (lastPage, allPages) => {
const nextOffset = allPages.length * 20;
return lastPage.data?.length === 20 ? nextOffset : undefined;
},
initialPageParam: 0,
});
}
// In screen:
const { data, fetchNextPage, hasNextPage } = useHabitsPaginated();
const habits = data?.pages.flatMap(p => p.data) ?? [];
<FlatList
data={habits}
onEndReached={() => hasNextPage && fetchNextPage()}
onEndReachedThreshold={0.3}
/>Animating List Item Entry
Make the feed feel dynamic by animating items as they appear. A simple fade-in + slide-up on mount using the Animated API adds polish without heavy libraries. Create a reusable AnimatedListItem wrapper that each item passes through. The animation runs once on mount — use useRef to prevent re-triggering on re-renders.
import { useRef, useEffect } from 'react';
import { Animated } from 'react-native';
export function AnimatedListItem({ children, index }) {
const opacity = useRef(new Animated.Value(0)).current;
const translateY = useRef(new Animated.Value(20)).current;
useEffect(() => {
Animated.parallel([
Animated.timing(opacity, {
toValue: 1,
duration: 300,
delay: index * 50, // Stagger by index
useNativeDriver: true,
}),
Animated.timing(translateY, {
toValue: 0,
duration: 300,
delay: index * 50,
useNativeDriver: true,
}),
]).start();
}, []);
return (
<Animated.View style={{ opacity, transform: [{ translateY }] }}>
{children}
</Animated.View>
);
}Streak Calculation Logic
The streak is the number of consecutive days a habit was completed up to and including today. Calculate it in JavaScript from the completions array. Sort completions by date descending, start from today and walk backwards, counting consecutive days. This logic is pure JavaScript — no network call needed if the completions are already in the React Query cache.
// src/utils/streaks.ts
export function calculateStreak(completedDates: string[]): number {
if (completedDates.length === 0) return 0;
const sorted = [...completedDates].sort().reverse();
const today = new Date().toISOString().split('T')[0];
let streak = 0;
let current = new Date(today);
for (const dateStr of sorted) {
const expected = current.toISOString().split('T')[0];
if (dateStr === expected) {
streak++;
current.setDate(current.getDate() - 1);
} else if (dateStr < expected) {
break; // Gap found
}
}
return streak;
}
// Usage:
const streak = calculateStreak(
completions
.filter(c => c.habit_id === habit.id)
.map(c => c.completed_date)
);Quick Check
Test your understanding of React Native Mobile Development concepts from this lesson.
Lesson Recap
In this lesson you learned: how to configure React Query with persistence to serve cached data while offline, how to build custom hooks with useQuery and useMutation for habits CRUD, and how to implement optimistic updates for immediate UI feedback. You also saw how to add pagination, entry animations, and streak calculation from cached data. Next up we polish, test, and ship to both stores.
常见问题解答
「核心功能:支持离线的数据流」课时是免费的吗?
是的 — 「核心功能:支持离线的数据流」的完整文本可在网页上免费阅读。要进行交互式练习(内置代码编辑器和全天候 AI 导师)并解锁 React Native Academy 课程的其余内容,请升级到 CoddyKit PRO。 React Native Academy 课程共包含 4 节课。
「核心功能:支持离线的数据流」这节课中我会学到什么?
使用 React Query 构建主数据流并实现离线持久化,实现下拉刷新和分页,添加创建与删除变更操作,并为列表项进入页面添加动画。 你通过在浏览器中直接运行的动手代码来练习 React Native Academy,全天候 AI 导师会在你学习这节课的过程中回答你的问题。
学习 React Native Academy 需要有经验吗?
无需任何先前经验。CoddyKit 上的 React Native Academy 课程适合初学者到高级学习者,你可以从这里开始或从头开始,按照自己的节奏学习。 这是第 3 节课,共 4 节。
「核心功能:支持离线的数据流」课时需要多长时间?
大多数 CoddyKit 课程大约需要 5–10 分钟。每节课都很精短且互动,所以你能稳步进步,并在网页和应用中从离开的地方继续。
我能在这节 React Native Academy 课中编写并运行代码吗?
能。每节 React Native Academy 课都包含内置代码编辑器,你可以在浏览器中直接编写并运行真实代码,并获得即时 AI 反馈 — 无需本地设置。
此课程中的所有课时
- 规划架构与技术栈
- 身份验证流程与受保护路由
- 核心功能:支持离线的数据流
- 完善、测试并发布到两大应用商店