Create model classes with `fromJson` and `toJson` methods using `dart:convert`. Use when manually mapping JSON keys to class properties for simple data structures.
npx skills add https://github.com/flutter/agent-plugins --skill flutter-implement-json-serialization
dart:convert: Utilize Flutter's built-in dart:convert library for manual JSON encoding (jsonEncode) and decoding (jsonDecode).dynamic result of jsonDecode() to the expected type, typically Map<String, dynamic> for objects or List<dynamic> for arrays.fromJson factory constructor and a toJson method within the model.compute() function to prevent UI jank.null.Use this checklist to implement manual JSON serialization for a data model.
Task Progress:
final properties.factory Model.fromJson(Map<String, dynamic> json) constructor.Map<String, dynamic> toJson() method.fromJson: Extract values from the Map and cast them to the appropriate Dart types. Use pattern matching or explicit casting.toJson: Return a Map<String, dynamic> mapping the class properties back to their JSON string keys.Use this conditional workflow when retrieving and parsing JSON from a network request.
Task Progress:
http package to perform the network call.response.statusCode == 200 (or 201 for POST), proceed to parsing.Exception.compute(parseFunction, response.body) to parse in a background isolate.fromJson constructor.import 'dart:convert';
class User {
final int id;
final String name;
final String email;
const User({
required this.id,
required this.name,
required this.email,
});
// Factory constructor for deserialization
factory User.fromJson(Map<String, dynamic> json) {
return switch (json) {
{
'id': int id,
'name': String name,
'email': String email,
} =>
User(
id: id,
name: name,
email: email,
),
_ => throw const FormatException('Failed to load User.'),
};
}
// Method for serialization
Map<String, dynamic> toJson() {
return {
'id': id,
'name': name,
'email': email,
};
}
}
import 'dart:convert';
import 'package:http/http.dart' as http;
Future<User> fetchUser(http.Client client, int userId) async {
final response = await client.get(
Uri.parse('https://api.example.com/users/$userId'),
headers: {'Accept': 'application/json'},
);
if (response.statusCode == 200) {
// Decode returns dynamic, cast to Map<String, dynamic>
final Map<String, dynamic> jsonMap = jsonDecode(response.body) as Map<String, dynamic>;
return User.fromJson(jsonMap);
} else {
throw Exception('Failed to load user');
}
}
import 'dart:convert';
import 'package:flutter/foundation.dart';
import 'package:http/http.dart' as http;
// Top-level function required for compute()
List<User> parseUsers(String responseBody) {
final parsed = (jsonDecode(responseBody) as List<dynamic>).cast<Map<String, dynamic>>();
return parsed.map<User>((json) => User.fromJson(json)).toList();
}
Future<List<User>> fetchUsers(http.Client client) async {
final response = await client.get(
Uri.parse('https://api.example.com/users'),
headers: {'Accept': 'application/json'},
);
if (response.statusCode == 200) {
// Offload expensive parsing to a background isolate
return compute(parseUsers, response.body);
} else {
throw Exception('Failed to load users');
}
}
Integration with protocols.io API for managing scientific protocols. This skill should be used when working with protocols.io to search, create, update, or publish protocols; manage protocol steps and materials; handle discussions and comments; organize workspaces; upload and manage files; or integrate protocols.io functionality into workflows. Applicable for protocol discovery, collaborative protocol development, experiment tracking, lab protocol management, and scientific documentation.
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Generate Excalidraw diagrams from natural language descriptions. Use when asked to "create a diagram", "make a flowchart", "visualize a process", "draw a system architecture", "create a mind map", or "generate an Excalidraw file". Supports flowcharts, relationship diagrams, mind maps, and system architecture diagrams. Outputs .excalidraw JSON files that can be opened directly in Excalidraw.
Build and distribute Expo development clients locally or via TestFlight
Use when you have a written implementation plan to execute in a separate session with review checkpoints
Data structure for annotated matrices in single-cell analysis. Use when working with .h5ad files or integrating with the scverse ecosystem. This is the data format skill—for analysis workflows use scanpy; for probabilistic models use scvi-tools; for population-scale queries use cellxgene-census.
Benchling R&D platform integration. Access registry (DNA, proteins), inventory, ELN entries, workflows via API, build Benchling Apps, query Data Warehouse, for lab data management automation.
Comprehensive molecular biology toolkit. Use for sequence manipulation, file parsing (FASTA/GenBank/PDB), phylogenetics, and programmatic NCBI/PubMed access (Bio.Entrez). Best for batch processing, custom bioinformatics pipelines, BLAST automation. For quick lookups use gget; for multi-service integration use bioservices.
Take flutter/flutter-implement-json-serialization from the repository into ~/.claude/skills for personal
use, or into .claude/skills inside a project.
The agent identifies a skill by the name field in its header. Two skills with the
same name cannot sit side by side — one of them will be ignored.