dart-use-ffigen
flutter/agent-plugins
Automatically generate FFI bindings for C/Objective-C/Swift libraries instead of writing them manually.
What is dart-use-ffigen?
package:ffigen automates the generation of Dart FFI bindings from native headers, eliminating error-prone hand-written code. Use this skill when integrating C libraries, extending native platform code, or replacing manual dart:ffi setups.
- Automatically generates FFI bindings from C/Objective-C/Swift header files
- Applies precise inclusion filters to minimize generated code size
- Generates bindings with proper license headers and preambles
- Supports recorded usage metadata for native asset tree shaking
- Validates generated code with static analysis and automatic formatting
- Handles compiler flags and transitive header imports
How to install dart-use-ffigen
npx skills add https://github.com/flutter/agent-plugins --skill dart-use-ffigen- package:ffigen added to dev_dependencies (e.g., ^20.1.1)
- Native header files (.h) located in third_party/ or src/ directory
- Dart SDK with FFI support
- Clang/libclang available for header parsing
How to use dart-use-ffigen
- 1.Add ffigen to your package's dev_dependencies using dart pub add dev:ffigen
- 2.Create a generator script at tool/ffigen.dart in your package root
- 3.Configure FfiGenerator with Headers, Functions, Structs, and Output settings
- 4.Use dynamic path resolution (Platform.script) to ensure portability
- 5.Run dart run tool/ffigen.dart to generate bindings
- 6.Execute dart analyze to verify the generated code and resolve any lint warnings
- 7.Commit the generated .g.dart files to version control
Use cases
- Binding a third-party C library (e.g., SQLite) to a Dart package
- Extending existing FFI integrations with new native functions
- Replacing hand-crafted dart:ffi code with auto-generated bindings
- Integrating platform-specific Objective-C or Swift code on iOS/macOS
- Setting up native asset compilation with tree-shaking support
- Dart/Flutter package developers integrating native libraries
- Teams maintaining FFI bindings for C/C++ dependencies
- Developers building cross-platform native integrations
- Package maintainers needing to standardize FFI code generation
dart-use-ffigen FAQ
Place third-party headers in third_party/ at the package root, or in src/ for internal headers. The skill will guide you to standardize locations if needed.
Generated FFI bindings must use the .g.dart extension (e.g., sqlite3.g.dart) and be placed under lib/src/third_party/ for third-party libraries.
No. Never hand-edit generated .g.dart files. If errors occur, update your generator script configuration and re-run dart run tool/ffigen.dart.
Add warning codes to the ignore_for_file: list in your generator script's preamble (e.g., camel_case_types, non_constant_identifier_names). Do not modify the package's global lint rules.
recordUse enables metadata generation for native asset tree shaking. Set recordUse: (_) => true and specify recordUseMapping in Output if your package uses native asset compilation.
Full instructions (SKILL.md)
Source of truth, from flutter/agent-plugins.
name: dart-use-ffigen
description: Guide agents to use package:ffigen to automatically generate FFI bindings instead of writing them manually. Use this skill when a task involves writing new FFI bindings, extending C/Objective-C/Swift integrations, or replacing hand-crafted dart:ffi setups.
metadata:
model: models/gemini-3.1-pro-preview
last_modified: Thu, 28 May 2026 07:21:07 GMT
Generating FFI Bindings using package:ffigen
Contents
- Introduction
- Constraints
- FFIgen Overview
- Step-by-Step Workflow
- Concrete Example: Binding a C Library
- Verification Checklist
Introduction
Automate and standardize the generation of FFI bindings using package:ffigen (FfiGenerator). Writing FFI bindings by hand is error-prone, brittle, and highly discouraged.
Constraints
- No Hand-Written FFI Bindings: If native headers (
.hfiles) exist or are generated by a build step, never write manualDynamicLibrary.lookup,@Nativeexternal functions, or raw struct classes. Always useFfiGeneratorto generate them. - Generator Location: The generator script should be located at
tool/ffigen.dartwithin the target package root. - Header Location: If the native header files are third-party, they should be located in
third_party/within the target package (otherwise placing them in asrc/directory at the package root is also acceptable). If the headers are not in one of these standard locations, notify the user that it would be cleaner to move the header files to the standard location (e.g.,third_party/). - Targeted Inclusion Filters: Avoid importing an entire native library unless specifically needed. Always apply precise inclusion lists using positive matches to minimize the size and cognitive load of the generated code (e.g., using
Functions.includeSetor filtering matches inincludeclosures). - Output Setup: If the generated FFI bindings interface with a third-party library (or reference third-party headers), the generated files must always be placed under
lib/src/third_party/. The primary generated FFI bindings file must strictly use the.g.dartextension (e.g.sqlite3.g.dart). - Preamble & License Headers: Always supply a premium
preamblein theOutputclass to specify the license. This must match the native third-party library's license, explicitly include the copyright header of the target native header file, and contain an automatic generation warning (e.g.// Generated by package:ffigen. Do not edit manually.). - No Unnecessary Commits of Stale Bindings: Ensure you run the generator script and check if the generated files have changed before finishing your task. Always verify the package by running
dart analyze. - Record Usage and Tree Shaking: If the package is integrated into standard runtime execution or compiles native assets via native hooks:
- Enable recorded usage on all functions by setting
recordUse: (_) => trueunderFunctions. - Specify the
recordUseMappingtarget inOutput(which must strictly be a.g.dartfile underlib/src/third_party/, e.g.lib/src/third_party/sqlite3.record_use_mapping.g.dart) to register bindings for symbol tree shaking.
- Enable recorded usage on all functions by setting
FFIgen Overview
To construct the programmatic generator, use the core configuration objects imported from package:ffigen/ffigen.dart:
1. FfiGenerator
The parent class that orchestrates the configuration, parsing, and code generation.
FfiGenerator({
Headers headers = const Headers(),
Enums enums = Enums.excludeAll,
Functions functions = Functions.excludeAll,
Globals globals = Globals.excludeAll,
Integers integers = const Integers(),
Macros macros = Macros.excludeAll,
Structs structs = Structs.excludeAll,
Typedefs typedefs = Typedefs.excludeAll,
Unions unions = Unions.excludeAll,
UnnamedEnums unnamedEnums = UnnamedEnums.excludeAll,
ObjectiveC? objectiveC,
required Output output,
}).generate();
2. Headers
Configures Clang header parsing targets and compiler flags.
entryPoints: A list of target headerUriinputs.include: A filter functionbool Function(Uri header)that handles transitive header imports.compilerOptions: Custom preprocessor/include compiler flags to pass directly to libclang.ignoreSourceErrors: Set totrueto silence errors occurring inside third-party headers during parsing.
3. Functions
Specifies which native C/C++ functions to expose in Dart.
include: A matcher function (e.g.(decl) => {'my_func'}.contains(decl.originalName)orFunctions.includeSet({'my_func'})).isLeaf: Declares functions as leaf functions ((decl) => true) if they do not call back into Dart or block thread execution.recordUse: Enables metadata generation for native asset tree shaking (essential indart-lang/native). Set to(_) => true.
4. Output
Configures target generated files.
dartFile: TargetUriwhere the primary FFI bindings will be written.recordUseMapping: TargetUrifor recorded usage metadata maps (crucial for linking-time tree shaking).preamble: Text inserted at the top of the generated file (licensing, annotations).format: Set totrueto run the Dart formatter automatically.
Step-by-Step Workflow
Step 1: Check/Add Dependencies
Open the package's pubspec.yaml and verify the dev_dependencies contains ffigen. Use the Dart MCP server or look up the latest version on pub.dev (e.g., ^20.1.1).
You can add it automatically using the CLI:
dart pub add dev:ffigen
Step 2: Formulate Paths Dynamically
Create a programmatic generator script under the package's tool/ directory (e.g., tool/ffigen.dart).
Resolve paths relative to Platform.script to make sure it runs successfully from any working directory:
final packageRoot = Platform.script.resolve('../');
final headerFile = packageRoot.resolve('third_party/library.h');
final targetBindings = packageRoot.resolve('lib/src/third_party/bindings.g.dart');
Step 3: Write the Script (tool/ffigen.dart)
Define void main() and run FfiGenerator with dynamic options (see complete example below).
Step 4: Run Code Generation
Execute the script from the terminal inside the target package folder:
dart run tool/ffigen.dart
Step 5: Static Analysis
Verify that the generated bindings are correct and resolve any analysis issues. FFIgen automatically runs the Dart formatter on the output file (via format: true configuration), so manual formatting is not required.
- Run the static analyzer inside the target package:
dart analyze - Addressing Warnings/Lints: If
dart analyzereports style or lint warnings inside the generated file, append the corresponding warning codes to theignore_for_file:list in your generator script'spreambleconfiguration (e.g., addingcamel_case_types,non_constant_identifier_names, etc.). Do not modify the package's global rules. - Addressing Compilation Errors: If
dart analyzereports actual compiler or analysis errors (not warnings) inside the generated file, do not attempt to edit the generated file manually. Report these error details directly to the user so they can file an issue on the repository at github.com/dart-lang/native.
Concrete Example: Binding a C Library
Let's assume we are working with the SQLite package under pkgs/code_assets/example/sqlite, which embeds SQLite C library sources inside third_party/sqlite/ and accesses it via FFI.
The C Header File (third_party/sqlite/sqlite3.h)
// The author disclaims copyright to this source code.
#ifndef SQLITE3_H_
#define SQLITE3_H_
const char *sqlite3_libversion(void);
#endif // SQLITE3_H_
BEFORE: Manual FFI Binding (The Anti-Pattern)
A developer might attempt to handcraft this integration. It is fragile, blocks tree-shaking metadata, and is highly prone to ABI and structural mapping issues:
// lib/src/sqlite3_manual.dart
import 'dart:ffi' as ffi;
import 'package:ffi/ffi.dart';
// Flaw 1: Hardcoded DynamicLibrary lookup blocks integration with modern native asset compilation.
final ffi.DynamicLibrary _dylib = ffi.DynamicLibrary.open('libsqlite3.so');
// Flaw 2: Manual function type matching requires writing redundant dynamic lookup boilerplate and lacks tree-shaking metadata.
typedef _sqlite3_libversion_C = ffi.Pointer<ffi.Char> Function();
typedef _sqlite3_libversion_Dart = ffi.Pointer<ffi.Char> Function();
final _sqlite3_libversion_Dart sqlite3LibVersion = _dylib
.lookup<ffi.NativeFunction<_sqlite3_libversion_C>>('sqlite3_libversion')
.asFunction();
AFTER: Generating via FFIgen (The Correct Pattern)
Create a programmatic script at tool/ffigen.dart:
// Copyright (c) 2025, the Dart project authors. Please see the AUTHORS file
// for details. All rights reserved. Use of this source code is governed by a
// BSD-style license that can be found in the LICENSE file.
import 'dart:io';
import 'package:ffigen/ffigen.dart';
void main() {
// Resolve paths dynamically relative to Platform.script
final packageRoot = Platform.script.resolve('../');
final entryHeader = packageRoot.resolve('third_party/sqlite/sqlite3.h');
final bindingsOutput = packageRoot.resolve('lib/src/third_party/sqlite3.g.dart');
final treeShakeMapping = packageRoot.resolve('lib/src/third_party/sqlite3.record_use_mapping.g.dart');
FfiGenerator(
headers: Headers(
entryPoints: [entryHeader],
),
functions: Functions(
include: (decl) => {'sqlite3_libversion'}.contains(decl.originalName),
// Essential for package optimization and tree-shaking
recordUse: (_) => true,
),
output: Output(
dartFile: bindingsOutput,
recordUseMapping: treeShakeMapping,
format: true,
preamble: '''
// AUTO-GENERATED FILE - DO NOT MODIFY.
// Generated via ffigen.
// To regenerate: dart run tool/ffigen.dart
// ignore_for_file: type=lint, unused_import, unused_element, deprecated_member_use_from_same_package, experimental_member_use
''',
),
).generate();
print('Successfully generated sqlite3 FFI bindings.');
}
Running the Generator script
Run this in the package root directory:
dart run tool/ffigen.dart
This will automatically create:
lib/src/third_party/sqlite3.g.dartlib/src/third_party/sqlite3.record_use_mapping.g.dart
Verification Checklist
Always perform the following verification before completing a binding generation task:
- Correct Setup: Verify the target generated files are inside
lib/src/third_party/(required for third-party licensed code) and the primary FFI bindings file strictly uses the.g.dartextension. - Static Analysis: Run
dart analyzeand ensure there are zero compiler/analyzer errors or warnings in the package.- If static warnings are reported in the generated bindings, suppress them by adding
ignore_for_filerules to the generator'spreambleconfiguration (do not modify global package rules). - If actual compiler or analyzer errors are reported in the generated bindings, do not edit the generated file manually. Report the details to the user and direct them to file an issue at github.com/dart-lang/native.
- If static warnings are reported in the generated bindings, suppress them by adding
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