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This PR resolves the spelling error in the "Contributing" section of the README. The sentence "Contribute the language design: feedback on design, new design proposal" has been corrected to "Contribute to the language design: feedback on design, new design proposal". This change enhances the clarity and accuracy of the contribution guidelines. Closes #3068 Co-authored-by: aroramrinaal <aroramrinaal@gmail.com>
352 lines
15 KiB
Markdown
352 lines
15 KiB
Markdown
# Carbon Language: <br/> An experimental successor to C++
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<!--
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Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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Exceptions. See /LICENSE for license information.
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SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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-->
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<p align="center">
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<a href="#why-build-carbon">Why?</a> |
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<a href="#language-goals">Goals</a> |
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<a href="#project-status">Status</a> |
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<a href="#getting-started">Getting started</a> |
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<a href="#join-us">Join us</a>
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</p>
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**See our [announcement video](https://youtu.be/omrY53kbVoA) from
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[CppNorth](https://cppnorth.ca/).** Note that Carbon is
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[not ready for use](#project-status).
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<a href="docs/images/snippets.md#quicksort">
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<!--
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Edit snippet in docs/images/snippets.md and:
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https://drive.google.com/drive/folders/1-rsUjiya7dSZ87L8kpZmu3MZghRVxzLA
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-->
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<img src="docs/images/quicksort_snippet.svg" align="right" width="575"
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alt="Quicksort code in Carbon. Follow the link to read more.">
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</a>
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<!--
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Don't let the text wrap too narrowly to the left of the above image.
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The `div` reduces the vertical height.
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GitHub will autolink `img`, but won't produce a link when `href="#"`.
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<div><a href="#"><img src="docs/images/bumper.png"></a></div>
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**Fast and works with C++**
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- Performance matching C++ using LLVM, with low-level access to bits and
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addresses
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- Interoperate with your existing C++ code, from inheritance to templates
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- Fast and scalable builds that work with your existing C++ build systems
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**Modern and evolving**
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- Solid language foundations that are easy to learn, especially if you have
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used C++
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- Easy, tool-based upgrades between Carbon versions
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- Safer fundamentals, and an incremental path towards a memory-safe subset
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**Welcoming open-source community**
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- Clear goals and priorities with robust governance
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- Community that works to be welcoming, inclusive, and friendly
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- Batteries-included approach: compiler, libraries, docs, tools, package
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manager, and more
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## Why build Carbon?
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C++ remains the dominant programming language for performance-critical software,
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with massive and growing codebases and investments. However, it is struggling to
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improve and meet developers' needs, as outlined above, in no small part due to
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accumulating decades of technical debt. Incrementally improving C++ is
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[extremely difficult](/docs/project/difficulties_improving_cpp.md), both due to
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the technical debt itself and challenges with its evolution process. The best
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way to address these problems is to avoid inheriting the legacy of C or C++
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directly, and instead start with solid language foundations like
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[modern generics system](#generics), modular code organization, and consistent,
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simple syntax.
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Existing modern languages already provide an excellent developer experience: Go,
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Swift, Kotlin, Rust, and many more. **Developers that _can_ use one of these
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existing languages _should_.** Unfortunately, the designs of these languages
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present significant barriers to adoption and migration from C++. These barriers
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range from changes in the idiomatic design of software to performance overhead.
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Carbon is fundamentally **a successor language approach**, rather than an
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attempt to incrementally evolve C++. It is designed around interoperability with
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C++ as well as large-scale adoption and migration for existing C++ codebases and
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developers. A successor language for C++ requires:
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- **Performance matching C++**, an essential property for our developers.
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- **Seamless, bidirectional interoperability with C++**, such that a library
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anywhere in an existing C++ stack can adopt Carbon without porting the rest.
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- **A gentle learning curve** with reasonable familiarity for C++ developers.
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- **Comparable expressivity** and support for existing software's design and
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architecture.
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- **Scalable migration**, with some level of source-to-source translation for
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idiomatic C++ code.
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With this approach, we can build on top of C++'s existing ecosystem, and bring
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along existing investments, codebases, and developer populations. There are a
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few languages that have followed this model for other ecosystems, and Carbon
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aims to fill an analogous role for C++:
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- JavaScript → TypeScript
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- Java → Kotlin
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- C++ → **_Carbon_**
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## Language Goals
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We are designing Carbon to support:
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- Performance-critical software
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- Software and language evolution
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- Code that is easy to read, understand, and write
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- Practical safety and testing mechanisms
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- Fast and scalable development
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- Modern OS platforms, hardware architectures, and environments
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- Interoperability with and migration from existing C++ code
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While many languages share subsets of these goals, what distinguishes Carbon is
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their combination.
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We also have explicit _non-goals_ for Carbon, notably including:
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- A stable
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[application binary interface](https://en.wikipedia.org/wiki/Application_binary_interface)
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(ABI) for the entire language and library
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- Perfect backwards or forwards compatibility
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Our detailed [goals](/docs/project/goals.md) document fleshes out these ideas
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and provides a deeper view into our goals for the Carbon project and language.
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## Project status
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Carbon Language is currently an experimental project. There is no working
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compiler or toolchain. You can see the demo interpreter for Carbon on
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[compiler-explorer.com](http://carbon.compiler-explorer.com/).
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We want to better understand whether we can build a language that meets our
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successor language criteria, and whether the resulting language can gather a
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critical mass of interest within the larger C++ industry and community.
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Currently, we have fleshed out several core aspects of both Carbon the project
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and the language:
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- The strategy of the Carbon Language and project.
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- An open-source project structure, governance model, and evolution process.
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- Critical and foundational aspects of the language design informed by our
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experience with C++ and the most difficult challenges we anticipate. This
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includes designs for:
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- Generics
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- Class types
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- Inheritance
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- Operator overloading
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- Lexical and syntactic structure
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- Code organization and modular structure
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- A prototype interpreter demo that can both run isolated examples and gives a
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detailed analysis of the specific semantic model and abstract machine of
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Carbon. We call this the [Carbon Explorer](/explorer/).
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If you're interested in contributing, we would love help
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[completing the 0.1 language designs](/docs/project/roadmap.md#complete-design-coverage-of-the-01-languages-necessary-features),
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and
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[completing the Carbon Explorer implementation of this design](/docs/project/roadmap.md#complete-01-language-implementation-coverage-in-the-carbon-explorer).
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We are also currently working to get more broad feedback and participation from
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the C++ community. Beyond that, we plan to prioritize C++ interoperability and a
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realistic toolchain that implements the 0.1 language and can be used to evaluate
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Carbon in more detail.
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You can see our [full roadmap](/docs/project/roadmap.md) for more details.
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## Carbon and C++
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If you're already a C++ developer, Carbon should have a gentle learning curve.
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It is built out of a consistent set of language constructs that should feel
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familiar and be easy to read and understand.
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C++ code like this:
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<a href="docs/images/snippets.md#c">
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<!--
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Edit snippet in docs/images/snippets.md and:
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https://drive.google.com/drive/folders/1QrBXiy_X74YsOueeC0IYlgyolWIhvusB
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-->
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<img src="docs/images/cpp_snippet.svg" width="600"
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alt="A snippet of C++ code. Follow the link to read it.">
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</a>
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corresponds to this Carbon code:
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<a href="docs/images/snippets.md#carbon">
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<!--
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Edit snippet in docs/images/snippets.md and:
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https://drive.google.com/drive/folders/1QrBXiy_X74YsOueeC0IYlgyolWIhvusB
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-->
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<img src="docs/images/carbon_snippet.svg" width="600"
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alt="A snippet of converted Carbon code. Follow the link to read it.">
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</a>
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You can call Carbon from C++ without overhead and the other way around. This
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means you migrate a single C++ library to Carbon within an application, or write
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new Carbon on top of your existing C++ investment. For example:
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<a href="docs/images/snippets.md#mixed">
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<!--
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Edit snippet in docs/images/snippets.md and:
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https://drive.google.com/drive/folders/1QrBXiy_X74YsOueeC0IYlgyolWIhvusB
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-->
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<img src="docs/images/mixed_snippet.svg" width="600"
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alt="A snippet of mixed Carbon and C++ code. Follow the link to read it.">
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</a>
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Read more about
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[C++ interop in Carbon](/docs/design/interoperability/philosophy_and_goals.md).
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Beyond interoperability between Carbon and C++, we're also planning to support
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migration tools that will mechanically translate idiomatic C++ code into Carbon
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code to help you switch an existing C++ codebase to Carbon.
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## Generics
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Carbon provides a
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**[modern generics system](/docs/design/generics/overview.md#what-are-generics)**
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with checked definitions, while still **supporting opt-in
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[templates](/docs/design/templates.md) for seamless C++ interop**. Checked
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generics provide several advantages compared to C++ templates:
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- **Generic definitions are fully type-checked**, removing the need to
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instantiate to check for errors and giving greater confidence in code.
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- Avoids the compile-time cost of re-checking the definition for every
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instantiation.
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- When using a definition-checked generic, usage error messages are
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clearer, directly showing which requirements are not met.
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- **Enables automatic, opt-in type erasure and dynamic dispatch** without a
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separate implementation. This can reduce the binary size and enables
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constructs like heterogeneous containers.
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- **Strong, checked interfaces** mean fewer accidental dependencies on
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implementation details and a clearer contract for consumers.
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Without sacrificing these advantages, **Carbon generics support
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specialization**, ensuring it can fully address performance-critical use cases
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of C++ templates. For more details about Carbon's generics, see their
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[design](/docs/design/generics).
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In addition to easy and powerful interop with C++, Carbon templates can be
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constrained and incrementally migrated to checked generics at a fine granularity
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and with a smooth evolutionary path.
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## Memory safety
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Safety, and especially
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[memory safety](https://en.wikipedia.org/wiki/Memory_safety), remains a key
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challenge for C++ and something a successor language needs to address. Our
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initial priority and focus is on immediately addressing important, low-hanging
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fruit in the safety space:
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- Tracking uninitialized states better, increased enforcement of
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initialization, and systematically providing hardening against
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initialization bugs when desired.
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- Designing fundamental APIs and idioms to support dynamic bounds checks in
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debug and hardened builds.
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- Having a default debug build mode that is both cheaper and more
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comprehensive than existing C++ build modes even when combined with
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[Address Sanitizer](https://github.com/google/sanitizers/wiki/AddressSanitizer).
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Once we can migrate code into Carbon, we will have a simplified language with
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room in the design space to add any necessary annotations or features, and
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infrastructure like [generics](#generics) to support safer design patterns.
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Longer term, we will build on this to introduce **a safe Carbon subset**. This
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will be a large and complex undertaking, and won't be in the 0.1 design.
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Meanwhile, we are closely watching and learning from efforts to add memory safe
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semantics onto C++ such as Rust-inspired
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[lifetime annotations](https://discourse.llvm.org/t/rfc-lifetime-annotations-for-c/61377).
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## Getting started
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As there is no compiler yet, to try out Carbon, you can use the Carbon explorer
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to interpret Carbon code and print its output. You can try it out immediately at
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[compiler-explorer.com](http://carbon.compiler-explorer.com/).
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To build the Carbon explorer yourself, you'll need to install dependencies
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(Bazel, Clang, libc++), and then you can run:
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```shell
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# Download Carbon's code.
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$ git clone https://github.com/carbon-language/carbon-lang
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$ cd carbon-lang
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# Build and run the explorer.
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$ bazel run //explorer -- ./explorer/testdata/print/format_only.carbon
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```
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For complete instructions, including installing dependencies, see our
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[contribution tools documentation](/docs/project/contribution_tools.md).
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Learn more about the Carbon project:
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- [Project goals](/docs/project/goals.md)
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- [Language design overview](/docs/design)
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- [Carbon Explorer](/explorer)
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- [FAQ](/docs/project/faq.md)
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## Conference talks
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Past Carbon focused talks from the community:
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### 2022
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- [Carbon Language: An experimental successor to C++](https://www.youtube.com/watch?v=omrY53kbVoA),
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CppNorth
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- [Carbon Language: Syntax and trade-offs](https://www.youtube.com/watch?v=9Y2ivB8VaIs),
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Core C++
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### 2023
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Press `S` when viewing slides to see speaker notes.
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- [Carbon’s Successor Strategy: From C++ interop to memory safety (Slides)](https://chandlerc.blog/slides/2023-cppnow-carbon-strategy/index.html#/),
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C++Now
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- Definition-Checked Generics
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[(Part 1, Slides)](https://chandlerc.blog/slides/2023-cppnow-generics-1/#/),
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[(Part 2, Slides)](https://chandlerc.blog/slides/2023-cppnow-generics-2/#/),
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C++Now
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- [Modernizing Compiler Design for Carbon’s Toolchain (Slides)](https://chandlerc.blog/slides/2023-cppnow-compiler/index.html#/),
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C++Now
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## Join us
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We'd love to have folks join us and contribute to the project. Carbon is
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committed to a welcoming and inclusive environment where everyone can
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contribute.
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- Most of Carbon's design discussions occur on
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[Discord](https://discord.gg/ZjVdShJDAs).
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- Carbon is a
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[Google Summer of Code 2023 organization](https://summerofcode.withgoogle.com/programs/2023/organizations/carbon-language).
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- To watch for major release announcements, subscribe to our
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[Carbon release post on GitHub](https://github.com/carbon-language/carbon-lang/discussions/1020)
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and [star carbon-lang](https://github.com/carbon-language/carbon-lang).
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- See our [code of conduct](CODE_OF_CONDUCT.md) and
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[contributing guidelines](CONTRIBUTING.md) for information about the Carbon
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development community.
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### Contributing
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You can also directly:
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- [Contribute to the language design](CONTRIBUTING.md#contributing-to-the-language-design):
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feedback on design, new design proposal
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- [Contribute to the language implementation](CONTRIBUTING.md#contributing-to-the-language-implementation)
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- [Carbon Explorer](/explorer/): bug report, bug fix, language feature
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implementation
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- [Carbon Toolchain](/toolchain/), and project infrastructure
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You can **check out some
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["good first issues"](https://github.com/carbon-language/carbon-lang/labels/good%20first%20issue)**,
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or join the `#contributing-help` channel on
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[Discord](https://discord.gg/ZjVdShJDAs). See our full
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[`CONTRIBUTING`](CONTRIBUTING.md) documentation for more details.
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