Dolphin for iOS, reborn
Go to file
2024-01-19 15:03:13 -05:00
.github/workflows Actions: Build TrollStore configurations for the TrollStore ipa 2023-01-18 08:07:44 -05:00
.tx Update Transifex config for new client 2023-02-03 10:13:37 +01:00
CMake Merge pull request #10976 from TellowKrinkle/StackFrames 2023-06-12 05:00:08 +02:00
Data Merge branch 'master' of https://github.com/dolphin-emu/dolphin 2023-06-22 21:06:03 -04:00
docs docs/DSP: Trivial adjustment to BLOOP{,I} sub-operation order 2022-09-30 11:07:41 +00:00
Externals Merge branch 'master' of https://github.com/dolphin-emu/dolphin 2023-06-22 21:06:03 -04:00
Installer update nsis installer 2022-10-22 23:40:40 -07:00
Languages Translation resources sync with Transifex 2023-05-11 23:02:30 +02:00
LICENSES Revert "licenses: add vc++ redist license" 2022-09-16 10:33:47 +02:00
Source Project: Bump version to 4.0.0b7 2024-01-19 15:03:13 -05:00
Tools Update test-updater.py 2023-03-22 15:39:28 -07:00
.editorconfig Merge pull request #6152 from bb010g/patch-1 2020-01-08 15:52:26 +01:00
.git-blame-ignore-revs Add more line-ending commits to .git-blame-ignore-revs 2022-05-26 18:32:39 -07:00
.gitattributes gitattributes: set eol=clrf on *.sln 2023-01-23 06:12:42 -08:00
.gitignore Externals: Integrate mGBA as a submodule 2021-07-13 16:39:29 +02:00
.gitmodules Merge branch 'master' of https://github.com/dolphin-emu/dolphin 2023-06-22 21:06:03 -04:00
.mailmap Add a .mailmap file 2014-12-23 09:34:56 +01:00
AndroidSetup.md Bring Android documentation up-to-date 2022-12-20 20:29:48 -05:00
BuildMacOSUniversalBinary.py BuildMacOSUniversalBinary: Add support for setting the distributor 2023-03-14 15:10:39 -04:00
CMakeLists.txt CMakeLists: Don't use shared zstd on iOS 2024-01-16 16:41:30 -05:00
CMakeSettings.json Cmake/MSVC: Fix Qt6 discover for IDEs other than Visual Studio 2023-01-31 23:19:46 +13:00
CODE_OF_CONDUCT.md Adopt a Code of Conduct for Dolphin. 2022-12-29 06:41:51 +01:00
Contributing.md Enforce minimum supported versions of GCC and Clang 2023-02-23 15:18:38 +13:00
COPYING licensing: remove non-standard license.txt in favor of COPYING 2021-07-05 04:43:55 +02:00
Readme.md Merge branch 'master' of https://github.com/dolphin-emu/dolphin 2023-06-22 21:06:03 -04:00

DolphiniOS

DolphiniOS is a port of the Dolphin Emulator to iOS and iPadOS. For installation instructions and downloads, check our website.

This is the repository for the new DolphiniOS codebase.

Building

You will need the following:

  • A Mac capable of running macOS Big Sur 11.3 or later
  • Xcode 13 or later
  • Homebrew (or your favourite package manager)

First, install the necessary tools using Homebrew:

brew install cmake ninja bartycrouch

If you are using a different package manager, refer to its documentation.

Finally, use the following command to install polib using the Xcode-provided python3:

/path/to/Xcode.app/Contents/Developer/usr/bin/python3 -m pip install polib

Once all of the prerequisites are installed, you can open the Xcode project at Source/iOS/App/DolphiniOS.xcodeproj.

You must change the organization identifier and team ID before you can build!

To change the organization identifier, go to Project -> Config -> BundleIdentifier.xcconfig, and change use.your.own.organization.identifier to something unique.

To change the team ID, go to Project -> Config -> DevelopmentTeam.xcconfig, and replace your-team-id with your developer account's team ID.

Once this is complete, you are now able to build and run DolphiniOS.

Dolphin - A GameCube and Wii Emulator

Homepage | Project Site | Buildbot | Forums | Wiki | GitHub Wiki | Issue Tracker | Coding Style | Transifex Page

Dolphin is an emulator for running GameCube and Wii games on Windows, Linux, macOS, and recent Android devices. It's licensed under the terms of the GNU General Public License, version 2 or later (GPLv2+).

Please read the FAQ before using Dolphin.

System Requirements

Desktop

  • OS
    • Windows (10 or higher).
    • Linux.
    • macOS (10.15 Catalina or higher).
    • Unix-like systems other than Linux are not officially supported but might work.
  • Processor
    • A CPU with SSE2 support.
    • A modern CPU (3 GHz and Dual Core, not older than 2008) is highly recommended.
  • Graphics
    • A reasonably modern graphics card (Direct3D 11.1 / OpenGL 3.3).
    • A graphics card that supports Direct3D 11.1 / OpenGL 4.4 is recommended.

Android

  • OS
    • Android (5.0 Lollipop or higher).
  • Processor
    • A processor with support for 64-bit applications (either ARMv8 or x86-64).
  • Graphics
    • A graphics processor that supports OpenGL ES 3.0 or higher. Performance varies heavily with driver quality.
    • A graphics processor that supports standard desktop OpenGL features is recommended for best performance.

Dolphin can only be installed on devices that satisfy the above requirements. Attempting to install on an unsupported device will fail and display an error message.

Building for Windows

Use the solution file Source/dolphin-emu.sln to build Dolphin on Windows. Dolphin targets the latest MSVC shipped with Visual Studio or Build Tools. Other compilers might be able to build Dolphin on Windows but have not been tested and are not recommended to be used. Git and latest Windows SDK must be installed when building.

Make sure to pull submodules before building:

git submodule update --init

The "Release" solution configuration includes performance optimizations for the best user experience but complicates debugging Dolphin. The "Debug" solution configuration is significantly slower, more verbose and less permissive but makes debugging Dolphin easier.

Building for Linux and macOS

Dolphin requires CMake for systems other than Windows. You need a recent version of GCC or Clang with decent c++20 support. CMake will inform you if your compiler is too old. Many libraries are bundled with Dolphin and used if they're not installed on your system. CMake will inform you if a bundled library is used or if you need to install any missing packages yourself. You may refer to the wiki for more information.

Make sure to pull submodules before building:

git submodule update --init

macOS Build Steps:

A binary supporting a single architecture can be built using the following steps:

  1. mkdir build
  2. cd build
  3. cmake ..
  4. make -j $(sysctl -n hw.logicalcpu)

An application bundle will be created in ./Binaries.

A script is also provided to build universal binaries supporting both x64 and ARM in the same application bundle using the following steps:

  1. mkdir build
  2. cd build
  3. python ../BuildMacOSUniversalBinary.py
  4. Universal binaries will be available in the universal folder

Doing this is more complex as it requires installation of library dependencies for both x64 and ARM (or universal library equivalents) and may require specifying additional arguments to point to relevant library locations. Execute BuildMacOSUniversalBinary.py --help for more details.

Linux Global Build Steps:

To install to your system.

  1. mkdir build
  2. cd build
  3. cmake ..
  4. make -j $(nproc)
  5. sudo make install

Linux Local Build Steps:

Useful for development as root access is not required.

  1. mkdir Build
  2. cd Build
  3. cmake .. -DLINUX_LOCAL_DEV=true
  4. make -j $(nproc)
  5. ln -s ../../Data/Sys Binaries/

Linux Portable Build Steps:

Can be stored on external storage and used on different Linux systems. Or useful for having multiple distinct Dolphin setups for testing/development/TAS.

  1. mkdir Build
  2. cd Build
  3. cmake .. -DLINUX_LOCAL_DEV=true
  4. make -j $(nproc)
  5. cp -r ../Data/Sys/ Binaries/
  6. touch Binaries/portable.txt

Building for Android

These instructions assume familiarity with Android development. If you do not have an Android dev environment set up, see AndroidSetup.md.

Make sure to pull submodules before building:

git submodule update --init

If using Android Studio, import the Gradle project located in ./Source/Android.

Android apps are compiled using a build system called Gradle. Dolphin's native component, however, is compiled using CMake. The Gradle script will attempt to run a CMake build automatically while building the Java code.

Uninstalling

On Windows, simply remove the extracted directory, unless it was installed with the NSIS installer, in which case you can uninstall Dolphin like any other Windows application.

Linux users can run cat install_manifest.txt | xargs -d '\n' rm as root from the build directory to uninstall Dolphin from their system.

macOS users can simply delete Dolphin.app to uninstall it.

Additionally, you'll want to remove the global user directory if you don't plan on reinstalling Dolphin.

Command Line Usage

Usage: Dolphin.exe [options]... [FILE]...

Options:
  --version             show program's version number and exit
  -h, --help            show this help message and exit
  -u USER, --user=USER  User folder path
  -m MOVIE, --movie=MOVIE
                        Play a movie file
  -e <file>, --exec=<file>
                        Load the specified file
  -n <16-character ASCII title ID>, --nand_title=<16-character ASCII title ID>
                        Launch a NAND title
  -C <System>.<Section>.<Key>=<Value>, --config=<System>.<Section>.<Key>=<Value>
                        Set a configuration option
  -s <file>, --save_state=<file>
                        Load the initial save state
  -d, --debugger        Show the debugger pane and additional View menu options
  -l, --logger          Open the logger
  -b, --batch           Run Dolphin without the user interface (Requires
                        --exec or --nand-title)
  -c, --confirm         Set Confirm on Stop
  -v VIDEO_BACKEND, --video_backend=VIDEO_BACKEND
                        Specify a video backend
  -a AUDIO_EMULATION, --audio_emulation=AUDIO_EMULATION
                        Choose audio emulation from [HLE|LLE]

Available DSP emulation engines are HLE (High Level Emulation) and LLE (Low Level Emulation). HLE is faster but less accurate whereas LLE is slower but close to perfect. Note that LLE has two submodes (Interpreter and Recompiler) but they cannot be selected from the command line.

Available video backends are "D3D" and "D3D12" (they are only available on Windows), "OGL", and "Vulkan". There's also "Null", which will not render anything, and "Software Renderer", which uses the CPU for rendering and is intended for debugging purposes only.

DolphinTool Usage

usage: dolphin-tool COMMAND -h

commands supported: [convert, verify, header]
Usage: convert [options]... [FILE]...

Options:
  -h, --help            show this help message and exit
  -u USER, --user=USER  User folder path, required for temporary processing
                        files.Will be automatically created if this option is
                        not set.
  -i FILE, --input=FILE
                        Path to disc image FILE.
  -o FILE, --output=FILE
                        Path to the destination FILE.
  -f FORMAT, --format=FORMAT
                        Container format to use. Default is RVZ. [iso|gcz|wia|rvz]
  -s, --scrub           Scrub junk data as part of conversion.
  -b BLOCK_SIZE, --block_size=BLOCK_SIZE
                        Block size for GCZ/WIA/RVZ formats, as an integer.
                        Suggested value for RVZ: 131072 (128 KiB)
  -c COMPRESSION, --compression=COMPRESSION
                        Compression method to use when converting to WIA/RVZ.
                        Suggested value for RVZ: zstd [none|zstd|bzip|lzma|lzma2]
  -l COMPRESSION_LEVEL, --compression_level=COMPRESSION_LEVEL
                        Level of compression for the selected method. Ignored
                        if 'none'. Suggested value for zstd: 5
Usage: verify [options]...

Options:
  -h, --help            show this help message and exit
  -u USER, --user=USER  User folder path, required for temporary processing
                        files.Will be automatically created if this option is
                        not set.
  -i FILE, --input=FILE
                        Path to disc image FILE.
  -a ALGORITHM, --algorithm=ALGORITHM
                        Optional. Compute and print the digest using the
                        selected algorithm, then exit. [crc32|md5|sha1]
Usage: header [options]...

Options:
  -h, --help            show this help message and exit
  -i FILE, --input=FILE
                        Path to disc image FILE.
  -b, --block_size      Optional. Print the block size of GCZ/WIA/RVZ formats,
then exit.
  -c, --compression     Optional. Print the compression method of GCZ/WIA/RVZ
                        formats, then exit.
  -l, --compression_level
                        Optional. Print the level of compression for WIA/RVZ
                        formats, then exit.