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Eclipse ThreadX GUIX

Eclipse ThreadX GUIX is a professional-quality package, created to meet the needs of embedded systems developers. Unlike alternative GUI solutions Eclipse ThreadX GUIX is small, fast, and easily ported to virtually any hardware configuration that’s capable of supporting graphical output. Eclipse ThreadX GUIX also delivers exceptional visual appeal and an intuitive and powerful API for application-level user interface development.

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) application design environment, facilitating the creation and maintenance of all graphical elements in the application’s GUI. Eclipse ThreadX GUIX Studio automatically generates C code that’s compatible with the Eclipse ThreadX GUIX library, ready to be compiled and run on the target.

The latest Eclipse ThreadX GUIX Studio installer is available here: https://github.com/eclipse-threadx/guix/releases/download/v6.5.1.202602a_rel/guix_studio_setup_version_6.5.1.202602a.exe

Here are the key features and modules of GUIX:

GUIX Key Features

Getting Started

GUIX as part of Eclipse ThreadX has been integrated to the semiconductor's SDKs and development environment. You can develop using the tools of choice from NXP, Renesas and Microchip.

We also samples using hero development boards from semiconductors you can build and test with.

See Overview of Eclipse ThreadX GUIX for the high-level overview.

Repository Structure and Usage

Directory layout

.
├── cmake # CMakeList files for building the project
├── common # Core GUIX files
├── fonts # Fonts required by GUIX
├── graphics # Graphic assets
├── ports # Architecture and compiler specific files
├── samples # Sample codes
├── tutorials # More sample codes
├── LICENSE.txt # License terms
├── LICENSE-HARDWARE.txt # Licensed hardware from semiconductors
├── CONTRIBUTING.md # Contribution guidance
└── SECURITY.md # Repo security guidance

Branches & Releases

The master branch has the most recent code with all new features and bug fixes. It does not represent the latest General Availability (GA) release of the library. Each official release (preview or GA) will be tagged to mark the commit and push it into the Github releases tab, e.g. v6.2-rel.

When you see xx-xx-xxxx, 6.x or x.x in function header, this means the file is not officially released yet. They will be updated in the next release. See example below.

/**************************************************************************/
/* */
/* FUNCTION RELEASE */
/* */
/* _tx_initialize_low_level Cortex-M23/GNU */
/* 6.x */
/* AUTHOR */
/* */
/* Scott Larson, Microsoft Corporation */
/* */
/* DESCRIPTION */
/* */
/* This function is responsible for any low-level processor */
/* initialization, including setting up interrupt vectors, setting */
/* up a periodic timer interrupt source, saving the system stack */
/* pointer for use in ISR processing later, and finding the first */
/* available RAM memory address for tx_application_define. */
/* */
/* INPUT */
/* */
/* None */
/* */
/* OUTPUT */
/* */
/* None */
/* */
/* CALLS */
/* */
/* None */
/* */
/* CALLED BY */
/* */
/* _tx_initialize_kernel_enter ThreadX entry function */
/* */
/* RELEASE HISTORY */
/* */
/* DATE NAME DESCRIPTION */
/* */
/* 09-30-2020 Scott Larson Initial Version 6.1 */
/* xx-xx-xxxx Scott Larson Include tx_user.h, */
/* resulting in version 6.x */
/* */
/**************************************************************************/ 

Component dependencies

The main components of Eclipse ThreadX are each provided in their own repository, but there are dependencies between them, as shown in the following graph. This is important to understand when setting up your builds.

dependency graph

You will have to take the dependency graph above into account when building anything other than ThreadX itself.

Building and using the library

Instruction for building the GUIX as static library using Arm GNU Toolchain and CMake. If you are using toolchain and IDE from semiconductor, you might follow its own instructions to use Eclipse ThreadX components as explained in the Getting Started section.

  1. Install the following tools:

  2. Build the ThreadX library as the dependency.

  3. Cloning the repo.

    $ git clone https://github.com/eclipse-threadx/guix.git
  4. Define the features and addons you need in gx_user.h and build together with the component source code. You can refer to gx_user_sample.h as an example.

  5. Building as a static library

    Each component of Eclipse ThreadX comes with a composable CMake-based build system that supports many different MCUs and host systems. Integrating any of these components into your device app code is as simple as adding a git submodule and then including it in your build using the CMake add_subdirectory().

    While the typical usage pattern is to include GUIX into your device code source tree to be built & linked with your code, you can compile this project as a standalone static library to confirm your build is set up correctly.

    An example of building the library for Cortex-M4:

    $ cmake -Bbuild -GNinja -DCMAKE_TOOLCHAIN_FILE=cmake/cortex_m4.cmake .
    $ cmake --build ./build

Licensing

License terms for using Eclipse ThreadX are defined in the LICENSE.txt file of this repo. Please refer to this file for all definitive licensing information for all content, incl. the history of this repo.

Resources

The following are references to additional Eclipse ThreadX resources:

You can also check previous questions or ask new ones on StackOverflow using the threadx and guix tags.

Security

Eclipse ThreadX provides OEMs with components to secure communication and to create code and data isolation using underlying MCU/MPU hardware protection mechanisms. It is ultimately the responsibility of the device builder to ensure the device fully meets the evolving security requirements associated with its specific use case.

Contribution

Please follow the instructions provided in the CONTRIBUTING.md for the corresponding repository.

About

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device.

Topics

Resources

Contributing

Security policy

Stars

405 stars

Watchers

31 watching

Forks

Releases

Packages

Used by

Contributors

Languages

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GitHub - eclipse-threadx/guix: Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device. · GitHub
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Eclipse ThreadX GUIX

Eclipse ThreadX GUIX is a professional-quality package, created to meet the needs of embedded systems developers. Unlike alternative GUI solutions Eclipse ThreadX GUIX is small, fast, and easily ported to virtually any hardware configuration that’s capable of supporting graphical output. Eclipse ThreadX GUIX also delivers exceptional visual appeal and an intuitive and powerful API for application-level user interface development.

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) application design environment, facilitating the creation and maintenance of all graphical elements in the application’s GUI. Eclipse ThreadX GUIX Studio automatically generates C code that’s compatible with the Eclipse ThreadX GUIX library, ready to be compiled and run on the target.

The latest Eclipse ThreadX GUIX Studio installer is available here: https://github.com/eclipse-threadx/guix/releases/download/v6.5.1.202602a_rel/guix_studio_setup_version_6.5.1.202602a.exe

Here are the key features and modules of GUIX:

GUIX Key Features

Getting Started

GUIX as part of Eclipse ThreadX has been integrated to the semiconductor's SDKs and development environment. You can develop using the tools of choice from NXP, Renesas and Microchip.

We also samples using hero development boards from semiconductors you can build and test with.

See Overview of Eclipse ThreadX GUIX for the high-level overview.

Repository Structure and Usage

Directory layout

.
├── cmake # CMakeList files for building the project
├── common # Core GUIX files
├── fonts # Fonts required by GUIX
├── graphics # Graphic assets
├── ports # Architecture and compiler specific files
├── samples # Sample codes
├── tutorials # More sample codes
├── LICENSE.txt # License terms
├── LICENSE-HARDWARE.txt # Licensed hardware from semiconductors
├── CONTRIBUTING.md # Contribution guidance
└── SECURITY.md # Repo security guidance

Branches & Releases

The master branch has the most recent code with all new features and bug fixes. It does not represent the latest General Availability (GA) release of the library. Each official release (preview or GA) will be tagged to mark the commit and push it into the Github releases tab, e.g. v6.2-rel.

When you see xx-xx-xxxx, 6.x or x.x in function header, this means the file is not officially released yet. They will be updated in the next release. See example below.

/**************************************************************************/
/* */
/* FUNCTION RELEASE */
/* */
/* _tx_initialize_low_level Cortex-M23/GNU */
/* 6.x */
/* AUTHOR */
/* */
/* Scott Larson, Microsoft Corporation */
/* */
/* DESCRIPTION */
/* */
/* This function is responsible for any low-level processor */
/* initialization, including setting up interrupt vectors, setting */
/* up a periodic timer interrupt source, saving the system stack */
/* pointer for use in ISR processing later, and finding the first */
/* available RAM memory address for tx_application_define. */
/* */
/* INPUT */
/* */
/* None */
/* */
/* OUTPUT */
/* */
/* None */
/* */
/* CALLS */
/* */
/* None */
/* */
/* CALLED BY */
/* */
/* _tx_initialize_kernel_enter ThreadX entry function */
/* */
/* RELEASE HISTORY */
/* */
/* DATE NAME DESCRIPTION */
/* */
/* 09-30-2020 Scott Larson Initial Version 6.1 */
/* xx-xx-xxxx Scott Larson Include tx_user.h, */
/* resulting in version 6.x */
/* */
/**************************************************************************/ 

Component dependencies

The main components of Eclipse ThreadX are each provided in their own repository, but there are dependencies between them, as shown in the following graph. This is important to understand when setting up your builds.

dependency graph

You will have to take the dependency graph above into account when building anything other than ThreadX itself.

Building and using the library

Instruction for building the GUIX as static library using Arm GNU Toolchain and CMake. If you are using toolchain and IDE from semiconductor, you might follow its own instructions to use Eclipse ThreadX components as explained in the Getting Started section.

  1. Install the following tools:

  2. Build the ThreadX library as the dependency.

  3. Cloning the repo.

    $ git clone https://github.com/eclipse-threadx/guix.git
  4. Define the features and addons you need in gx_user.h and build together with the component source code. You can refer to gx_user_sample.h as an example.

  5. Building as a static library

    Each component of Eclipse ThreadX comes with a composable CMake-based build system that supports many different MCUs and host systems. Integrating any of these components into your device app code is as simple as adding a git submodule and then including it in your build using the CMake add_subdirectory().

    While the typical usage pattern is to include GUIX into your device code source tree to be built & linked with your code, you can compile this project as a standalone static library to confirm your build is set up correctly.

    An example of building the library for Cortex-M4:

    $ cmake -Bbuild -GNinja -DCMAKE_TOOLCHAIN_FILE=cmake/cortex_m4.cmake .
    $ cmake --build ./build

Licensing

License terms for using Eclipse ThreadX are defined in the LICENSE.txt file of this repo. Please refer to this file for all definitive licensing information for all content, incl. the history of this repo.

Resources

The following are references to additional Eclipse ThreadX resources:

You can also check previous questions or ask new ones on StackOverflow using the threadx and guix tags.

Security

Eclipse ThreadX provides OEMs with components to secure communication and to create code and data isolation using underlying MCU/MPU hardware protection mechanisms. It is ultimately the responsibility of the device builder to ensure the device fully meets the evolving security requirements associated with its specific use case.

Contribution

Please follow the instructions provided in the CONTRIBUTING.md for the corresponding repository.

About

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device.

Topics

Resources

Contributing

Security policy

Stars

405 stars

Watchers

31 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { // Force GitHub README to respect dark mode (function() { var style = document.createElement('style'); style.textContent = ' .markdown-body { color-scheme: dark light; } .markdown-body pre { background: #161b22 !important; } .markdown-body code { background: rgba(110, 118, 129, 0.4) !important; } .markdown-body table th, .markdown-body table td { border-color: #30363d !important; } .markdown-body img { background: #0d1117; } .markdown-body blockquote { border-left-color: #8b949e; } .markdown-body hr { border-color: #30363d; } '; document.head.appendChild(style); })(); } } catch(__e) { console.warn('[Userscript:GitHub Dark Mode README Fix]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + ' GitHub - eclipse-threadx/guix: Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device. · GitHub
Skip to content

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Eclipse ThreadX GUIX

Eclipse ThreadX GUIX is a professional-quality package, created to meet the needs of embedded systems developers. Unlike alternative GUI solutions Eclipse ThreadX GUIX is small, fast, and easily ported to virtually any hardware configuration that’s capable of supporting graphical output. Eclipse ThreadX GUIX also delivers exceptional visual appeal and an intuitive and powerful API for application-level user interface development.

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) application design environment, facilitating the creation and maintenance of all graphical elements in the application’s GUI. Eclipse ThreadX GUIX Studio automatically generates C code that’s compatible with the Eclipse ThreadX GUIX library, ready to be compiled and run on the target.

The latest Eclipse ThreadX GUIX Studio installer is available here: https://github.com/eclipse-threadx/guix/releases/download/v6.5.1.202602a_rel/guix_studio_setup_version_6.5.1.202602a.exe

Here are the key features and modules of GUIX:

GUIX Key Features

Getting Started

GUIX as part of Eclipse ThreadX has been integrated to the semiconductor's SDKs and development environment. You can develop using the tools of choice from NXP, Renesas and Microchip.

We also samples using hero development boards from semiconductors you can build and test with.

See Overview of Eclipse ThreadX GUIX for the high-level overview.

Repository Structure and Usage

Directory layout

.
├── cmake # CMakeList files for building the project
├── common # Core GUIX files
├── fonts # Fonts required by GUIX
├── graphics # Graphic assets
├── ports # Architecture and compiler specific files
├── samples # Sample codes
├── tutorials # More sample codes
├── LICENSE.txt # License terms
├── LICENSE-HARDWARE.txt # Licensed hardware from semiconductors
├── CONTRIBUTING.md # Contribution guidance
└── SECURITY.md # Repo security guidance

Branches & Releases

The master branch has the most recent code with all new features and bug fixes. It does not represent the latest General Availability (GA) release of the library. Each official release (preview or GA) will be tagged to mark the commit and push it into the Github releases tab, e.g. v6.2-rel.

When you see xx-xx-xxxx, 6.x or x.x in function header, this means the file is not officially released yet. They will be updated in the next release. See example below.

/**************************************************************************/
/* */
/* FUNCTION RELEASE */
/* */
/* _tx_initialize_low_level Cortex-M23/GNU */
/* 6.x */
/* AUTHOR */
/* */
/* Scott Larson, Microsoft Corporation */
/* */
/* DESCRIPTION */
/* */
/* This function is responsible for any low-level processor */
/* initialization, including setting up interrupt vectors, setting */
/* up a periodic timer interrupt source, saving the system stack */
/* pointer for use in ISR processing later, and finding the first */
/* available RAM memory address for tx_application_define. */
/* */
/* INPUT */
/* */
/* None */
/* */
/* OUTPUT */
/* */
/* None */
/* */
/* CALLS */
/* */
/* None */
/* */
/* CALLED BY */
/* */
/* _tx_initialize_kernel_enter ThreadX entry function */
/* */
/* RELEASE HISTORY */
/* */
/* DATE NAME DESCRIPTION */
/* */
/* 09-30-2020 Scott Larson Initial Version 6.1 */
/* xx-xx-xxxx Scott Larson Include tx_user.h, */
/* resulting in version 6.x */
/* */
/**************************************************************************/ 

Component dependencies

The main components of Eclipse ThreadX are each provided in their own repository, but there are dependencies between them, as shown in the following graph. This is important to understand when setting up your builds.

dependency graph

You will have to take the dependency graph above into account when building anything other than ThreadX itself.

Building and using the library

Instruction for building the GUIX as static library using Arm GNU Toolchain and CMake. If you are using toolchain and IDE from semiconductor, you might follow its own instructions to use Eclipse ThreadX components as explained in the Getting Started section.

  1. Install the following tools:

  2. Build the ThreadX library as the dependency.

  3. Cloning the repo.

    $ git clone https://github.com/eclipse-threadx/guix.git
  4. Define the features and addons you need in gx_user.h and build together with the component source code. You can refer to gx_user_sample.h as an example.

  5. Building as a static library

    Each component of Eclipse ThreadX comes with a composable CMake-based build system that supports many different MCUs and host systems. Integrating any of these components into your device app code is as simple as adding a git submodule and then including it in your build using the CMake add_subdirectory().

    While the typical usage pattern is to include GUIX into your device code source tree to be built & linked with your code, you can compile this project as a standalone static library to confirm your build is set up correctly.

    An example of building the library for Cortex-M4:

    $ cmake -Bbuild -GNinja -DCMAKE_TOOLCHAIN_FILE=cmake/cortex_m4.cmake .
    $ cmake --build ./build

Licensing

License terms for using Eclipse ThreadX are defined in the LICENSE.txt file of this repo. Please refer to this file for all definitive licensing information for all content, incl. the history of this repo.

Resources

The following are references to additional Eclipse ThreadX resources:

You can also check previous questions or ask new ones on StackOverflow using the threadx and guix tags.

Security

Eclipse ThreadX provides OEMs with components to secure communication and to create code and data isolation using underlying MCU/MPU hardware protection mechanisms. It is ultimately the responsibility of the device builder to ensure the device fully meets the evolving security requirements associated with its specific use case.

Contribution

Please follow the instructions provided in the CONTRIBUTING.md for the corresponding repository.

About

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device.

Topics

Resources

Contributing

Security policy

Stars

405 stars

Watchers

31 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { // Highlight search terms from Google/DuckDuckGo/Bing referrer (function() { var ref = document.referrer; var terms = []; if (ref.includes('google.com') || ref.includes('duckduckgo.com') || ref.includes('bing.com')) { var url = new URL(ref); var q = url.searchParams.get('q') || url.searchParams.get('p'); if (q) { terms = q.split(/\s+/).filter(function(t) { return t.length > 2; }); } } if (terms.length === 0) return; var style = document.createElement('style'); style.textContent = '.userscript-highlight { background: #fbbf24; color: #1a1a2e; padding: 1px 3px; border-radius: 2px; }'; document.head.appendChild(style); function highlight(node) { if (node.nodeType === 3) { // text node var text = node.textContent; var found = false; terms.forEach(function(term) { var regex = new RegExp('(' + term.replace(/[.*+?^${}()|[\]\\]/g, '\\') + ')', 'gi'); if (regex.test(text)) { found = true; var frag = document.createDocumentFragment(); var parts = text.split(regex); parts.forEach(function(part, i) { if (i % 2 === 0) { frag.appendChild(document.createTextNode(part)); } else { var span = document.createElement('span'); span.className = 'userscript-highlight'; span.textContent = part; frag.appendChild(span); } }); node.parentNode.replaceChild(frag, node); } }); } else if (node.nodeType === 1 && node.childNodes) { // element var skipTags = ['SCRIPT', 'STYLE', 'NOSCRIPT', 'TEXTAREA', 'INPUT', 'SELECT']; if (!skipTags.includes(node.tagName)) { Array.from(node.childNodes).forEach(highlight); } } } highlight(document.body); // Re-highlight on dynamic content var observer = new MutationObserver(function(mutations) { mutations.forEach(function(m) { m.addedNodes.forEach(function(node) { if (node.nodeType === 1 || node.nodeType === 3) highlight(node); }); }); }); observer.observe(document.body, { childList: true, subtree: true }); })(); } } catch(__e) { console.warn('[Userscript:Highlight Search Terms]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + ' GitHub - eclipse-threadx/guix: Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device. · GitHub
Skip to content

Repository files navigation

Eclipse ThreadX GUIX

Eclipse ThreadX GUIX is a professional-quality package, created to meet the needs of embedded systems developers. Unlike alternative GUI solutions Eclipse ThreadX GUIX is small, fast, and easily ported to virtually any hardware configuration that’s capable of supporting graphical output. Eclipse ThreadX GUIX also delivers exceptional visual appeal and an intuitive and powerful API for application-level user interface development.

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) application design environment, facilitating the creation and maintenance of all graphical elements in the application’s GUI. Eclipse ThreadX GUIX Studio automatically generates C code that’s compatible with the Eclipse ThreadX GUIX library, ready to be compiled and run on the target.

The latest Eclipse ThreadX GUIX Studio installer is available here: https://github.com/eclipse-threadx/guix/releases/download/v6.5.1.202602a_rel/guix_studio_setup_version_6.5.1.202602a.exe

Here are the key features and modules of GUIX:

GUIX Key Features

Getting Started

GUIX as part of Eclipse ThreadX has been integrated to the semiconductor's SDKs and development environment. You can develop using the tools of choice from NXP, Renesas and Microchip.

We also samples using hero development boards from semiconductors you can build and test with.

See Overview of Eclipse ThreadX GUIX for the high-level overview.

Repository Structure and Usage

Directory layout

.
├── cmake # CMakeList files for building the project
├── common # Core GUIX files
├── fonts # Fonts required by GUIX
├── graphics # Graphic assets
├── ports # Architecture and compiler specific files
├── samples # Sample codes
├── tutorials # More sample codes
├── LICENSE.txt # License terms
├── LICENSE-HARDWARE.txt # Licensed hardware from semiconductors
├── CONTRIBUTING.md # Contribution guidance
└── SECURITY.md # Repo security guidance

Branches & Releases

The master branch has the most recent code with all new features and bug fixes. It does not represent the latest General Availability (GA) release of the library. Each official release (preview or GA) will be tagged to mark the commit and push it into the Github releases tab, e.g. v6.2-rel.

When you see xx-xx-xxxx, 6.x or x.x in function header, this means the file is not officially released yet. They will be updated in the next release. See example below.

/**************************************************************************/
/* */
/* FUNCTION RELEASE */
/* */
/* _tx_initialize_low_level Cortex-M23/GNU */
/* 6.x */
/* AUTHOR */
/* */
/* Scott Larson, Microsoft Corporation */
/* */
/* DESCRIPTION */
/* */
/* This function is responsible for any low-level processor */
/* initialization, including setting up interrupt vectors, setting */
/* up a periodic timer interrupt source, saving the system stack */
/* pointer for use in ISR processing later, and finding the first */
/* available RAM memory address for tx_application_define. */
/* */
/* INPUT */
/* */
/* None */
/* */
/* OUTPUT */
/* */
/* None */
/* */
/* CALLS */
/* */
/* None */
/* */
/* CALLED BY */
/* */
/* _tx_initialize_kernel_enter ThreadX entry function */
/* */
/* RELEASE HISTORY */
/* */
/* DATE NAME DESCRIPTION */
/* */
/* 09-30-2020 Scott Larson Initial Version 6.1 */
/* xx-xx-xxxx Scott Larson Include tx_user.h, */
/* resulting in version 6.x */
/* */
/**************************************************************************/ 

Component dependencies

The main components of Eclipse ThreadX are each provided in their own repository, but there are dependencies between them, as shown in the following graph. This is important to understand when setting up your builds.

dependency graph

You will have to take the dependency graph above into account when building anything other than ThreadX itself.

Building and using the library

Instruction for building the GUIX as static library using Arm GNU Toolchain and CMake. If you are using toolchain and IDE from semiconductor, you might follow its own instructions to use Eclipse ThreadX components as explained in the Getting Started section.

  1. Install the following tools:

  2. Build the ThreadX library as the dependency.

  3. Cloning the repo.

    $ git clone https://github.com/eclipse-threadx/guix.git
  4. Define the features and addons you need in gx_user.h and build together with the component source code. You can refer to gx_user_sample.h as an example.

  5. Building as a static library

    Each component of Eclipse ThreadX comes with a composable CMake-based build system that supports many different MCUs and host systems. Integrating any of these components into your device app code is as simple as adding a git submodule and then including it in your build using the CMake add_subdirectory().

    While the typical usage pattern is to include GUIX into your device code source tree to be built & linked with your code, you can compile this project as a standalone static library to confirm your build is set up correctly.

    An example of building the library for Cortex-M4:

    $ cmake -Bbuild -GNinja -DCMAKE_TOOLCHAIN_FILE=cmake/cortex_m4.cmake .
    $ cmake --build ./build

Licensing

License terms for using Eclipse ThreadX are defined in the LICENSE.txt file of this repo. Please refer to this file for all definitive licensing information for all content, incl. the history of this repo.

Resources

The following are references to additional Eclipse ThreadX resources:

You can also check previous questions or ask new ones on StackOverflow using the threadx and guix tags.

Security

Eclipse ThreadX provides OEMs with components to secure communication and to create code and data isolation using underlying MCU/MPU hardware protection mechanisms. It is ultimately the responsibility of the device builder to ensure the device fully meets the evolving security requirements associated with its specific use case.

Contribution

Please follow the instructions provided in the CONTRIBUTING.md for the corresponding repository.

About

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device.

Topics

Resources

Contributing

Security policy

Stars

405 stars

Watchers

31 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { // Strip utm_, fbclid, gclid, etc. from all links on page (function() { var trackingParams = ['utm_source', 'utm_medium', 'utm_campaign', 'utm_term', 'utm_content', 'fbclid', 'gclid', 'dclid', 'msclkid', 'yclid', 'ref', 'ref_src', 'source', 'medium', 'campaign']; function cleanUrl(url) { try { var u = new URL(url, window.location.origin); var changed = false; trackingParams.forEach(function(p) { if (u.searchParams.has(p)) { u.searchParams.delete(p); changed = true; } }); return changed ? u.toString() : url; } catch (e) { return url; } } function cleanLinks() { document.querySelectorAll('a[href]').forEach(function(a) { var clean = cleanUrl(a.href); if (clean !== a.href) a.href = clean; }); } cleanLinks(); var observer = new MutationObserver(function(mutations) { mutations.forEach(function(m) { m.addedNodes.forEach(function(node) { if (node.nodeType === 1) { if (node.tagName === 'A') cleanLinks(); node.querySelectorAll('a[href]').forEach(function(a) { var clean = cleanUrl(a.href); if (clean !== a.href) a.href = clean; }); } }); }); }); observer.observe(document.body, { childList: true, subtree: true }); })(); } } catch(__e) { console.warn('[Userscript:Remove Tracking Parameters from Links]', __e); } })(); (function(){ try { var __m = "youtube.com"; var __re = new RegExp('^' + "youtube\\.com" + ' GitHub - eclipse-threadx/guix: Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device. · GitHub
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Eclipse ThreadX GUIX

Eclipse ThreadX GUIX is a professional-quality package, created to meet the needs of embedded systems developers. Unlike alternative GUI solutions Eclipse ThreadX GUIX is small, fast, and easily ported to virtually any hardware configuration that’s capable of supporting graphical output. Eclipse ThreadX GUIX also delivers exceptional visual appeal and an intuitive and powerful API for application-level user interface development.

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) application design environment, facilitating the creation and maintenance of all graphical elements in the application’s GUI. Eclipse ThreadX GUIX Studio automatically generates C code that’s compatible with the Eclipse ThreadX GUIX library, ready to be compiled and run on the target.

The latest Eclipse ThreadX GUIX Studio installer is available here: https://github.com/eclipse-threadx/guix/releases/download/v6.5.1.202602a_rel/guix_studio_setup_version_6.5.1.202602a.exe

Here are the key features and modules of GUIX:

GUIX Key Features

Getting Started

GUIX as part of Eclipse ThreadX has been integrated to the semiconductor's SDKs and development environment. You can develop using the tools of choice from NXP, Renesas and Microchip.

We also samples using hero development boards from semiconductors you can build and test with.

See Overview of Eclipse ThreadX GUIX for the high-level overview.

Repository Structure and Usage

Directory layout

.
├── cmake # CMakeList files for building the project
├── common # Core GUIX files
├── fonts # Fonts required by GUIX
├── graphics # Graphic assets
├── ports # Architecture and compiler specific files
├── samples # Sample codes
├── tutorials # More sample codes
├── LICENSE.txt # License terms
├── LICENSE-HARDWARE.txt # Licensed hardware from semiconductors
├── CONTRIBUTING.md # Contribution guidance
└── SECURITY.md # Repo security guidance

Branches & Releases

The master branch has the most recent code with all new features and bug fixes. It does not represent the latest General Availability (GA) release of the library. Each official release (preview or GA) will be tagged to mark the commit and push it into the Github releases tab, e.g. v6.2-rel.

When you see xx-xx-xxxx, 6.x or x.x in function header, this means the file is not officially released yet. They will be updated in the next release. See example below.

/**************************************************************************/
/* */
/* FUNCTION RELEASE */
/* */
/* _tx_initialize_low_level Cortex-M23/GNU */
/* 6.x */
/* AUTHOR */
/* */
/* Scott Larson, Microsoft Corporation */
/* */
/* DESCRIPTION */
/* */
/* This function is responsible for any low-level processor */
/* initialization, including setting up interrupt vectors, setting */
/* up a periodic timer interrupt source, saving the system stack */
/* pointer for use in ISR processing later, and finding the first */
/* available RAM memory address for tx_application_define. */
/* */
/* INPUT */
/* */
/* None */
/* */
/* OUTPUT */
/* */
/* None */
/* */
/* CALLS */
/* */
/* None */
/* */
/* CALLED BY */
/* */
/* _tx_initialize_kernel_enter ThreadX entry function */
/* */
/* RELEASE HISTORY */
/* */
/* DATE NAME DESCRIPTION */
/* */
/* 09-30-2020 Scott Larson Initial Version 6.1 */
/* xx-xx-xxxx Scott Larson Include tx_user.h, */
/* resulting in version 6.x */
/* */
/**************************************************************************/ 

Component dependencies

The main components of Eclipse ThreadX are each provided in their own repository, but there are dependencies between them, as shown in the following graph. This is important to understand when setting up your builds.

dependency graph

You will have to take the dependency graph above into account when building anything other than ThreadX itself.

Building and using the library

Instruction for building the GUIX as static library using Arm GNU Toolchain and CMake. If you are using toolchain and IDE from semiconductor, you might follow its own instructions to use Eclipse ThreadX components as explained in the Getting Started section.

  1. Install the following tools:

  2. Build the ThreadX library as the dependency.

  3. Cloning the repo.

    $ git clone https://github.com/eclipse-threadx/guix.git
  4. Define the features and addons you need in gx_user.h and build together with the component source code. You can refer to gx_user_sample.h as an example.

  5. Building as a static library

    Each component of Eclipse ThreadX comes with a composable CMake-based build system that supports many different MCUs and host systems. Integrating any of these components into your device app code is as simple as adding a git submodule and then including it in your build using the CMake add_subdirectory().

    While the typical usage pattern is to include GUIX into your device code source tree to be built & linked with your code, you can compile this project as a standalone static library to confirm your build is set up correctly.

    An example of building the library for Cortex-M4:

    $ cmake -Bbuild -GNinja -DCMAKE_TOOLCHAIN_FILE=cmake/cortex_m4.cmake .
    $ cmake --build ./build

Licensing

License terms for using Eclipse ThreadX are defined in the LICENSE.txt file of this repo. Please refer to this file for all definitive licensing information for all content, incl. the history of this repo.

Resources

The following are references to additional Eclipse ThreadX resources:

You can also check previous questions or ask new ones on StackOverflow using the threadx and guix tags.

Security

Eclipse ThreadX provides OEMs with components to secure communication and to create code and data isolation using underlying MCU/MPU hardware protection mechanisms. It is ultimately the responsibility of the device builder to ensure the device fully meets the evolving security requirements associated with its specific use case.

Contribution

Please follow the instructions provided in the CONTRIBUTING.md for the corresponding repository.

About

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device.

Topics

Resources

Contributing

Security policy

Stars

405 stars

Watchers

31 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { // Auto-enable theater mode on YouTube (function() { function tryTheater() { var btn = document.querySelector('button[aria-label="Theater mode"], ytd-player #player button[title="Theater mode"]'); if (btn && !btn.classList.contains('activated')) { btn.click(); } } // Try immediately tryTheater(); // Try after navigation (SPA) var lastUrl = location.href; setInterval(function() { if (location.href !== lastUrl) { lastUrl = location.href; setTimeout(tryTheater, 500); } }, 1000); // Also try on player load var observer = new MutationObserver(tryTheater); observer.observe(document.body, { childList: true, subtree: true }); })(); } } catch(__e) { console.warn('[Userscript:YouTube Theater Mode Default]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + ' GitHub - eclipse-threadx/guix: Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device. · GitHub
Skip to content

Repository files navigation

Eclipse ThreadX GUIX

Eclipse ThreadX GUIX is a professional-quality package, created to meet the needs of embedded systems developers. Unlike alternative GUI solutions Eclipse ThreadX GUIX is small, fast, and easily ported to virtually any hardware configuration that’s capable of supporting graphical output. Eclipse ThreadX GUIX also delivers exceptional visual appeal and an intuitive and powerful API for application-level user interface development.

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) application design environment, facilitating the creation and maintenance of all graphical elements in the application’s GUI. Eclipse ThreadX GUIX Studio automatically generates C code that’s compatible with the Eclipse ThreadX GUIX library, ready to be compiled and run on the target.

The latest Eclipse ThreadX GUIX Studio installer is available here: https://github.com/eclipse-threadx/guix/releases/download/v6.5.1.202602a_rel/guix_studio_setup_version_6.5.1.202602a.exe

Here are the key features and modules of GUIX:

GUIX Key Features

Getting Started

GUIX as part of Eclipse ThreadX has been integrated to the semiconductor's SDKs and development environment. You can develop using the tools of choice from NXP, Renesas and Microchip.

We also samples using hero development boards from semiconductors you can build and test with.

See Overview of Eclipse ThreadX GUIX for the high-level overview.

Repository Structure and Usage

Directory layout

.
├── cmake # CMakeList files for building the project
├── common # Core GUIX files
├── fonts # Fonts required by GUIX
├── graphics # Graphic assets
├── ports # Architecture and compiler specific files
├── samples # Sample codes
├── tutorials # More sample codes
├── LICENSE.txt # License terms
├── LICENSE-HARDWARE.txt # Licensed hardware from semiconductors
├── CONTRIBUTING.md # Contribution guidance
└── SECURITY.md # Repo security guidance

Branches & Releases

The master branch has the most recent code with all new features and bug fixes. It does not represent the latest General Availability (GA) release of the library. Each official release (preview or GA) will be tagged to mark the commit and push it into the Github releases tab, e.g. v6.2-rel.

When you see xx-xx-xxxx, 6.x or x.x in function header, this means the file is not officially released yet. They will be updated in the next release. See example below.

/**************************************************************************/
/* */
/* FUNCTION RELEASE */
/* */
/* _tx_initialize_low_level Cortex-M23/GNU */
/* 6.x */
/* AUTHOR */
/* */
/* Scott Larson, Microsoft Corporation */
/* */
/* DESCRIPTION */
/* */
/* This function is responsible for any low-level processor */
/* initialization, including setting up interrupt vectors, setting */
/* up a periodic timer interrupt source, saving the system stack */
/* pointer for use in ISR processing later, and finding the first */
/* available RAM memory address for tx_application_define. */
/* */
/* INPUT */
/* */
/* None */
/* */
/* OUTPUT */
/* */
/* None */
/* */
/* CALLS */
/* */
/* None */
/* */
/* CALLED BY */
/* */
/* _tx_initialize_kernel_enter ThreadX entry function */
/* */
/* RELEASE HISTORY */
/* */
/* DATE NAME DESCRIPTION */
/* */
/* 09-30-2020 Scott Larson Initial Version 6.1 */
/* xx-xx-xxxx Scott Larson Include tx_user.h, */
/* resulting in version 6.x */
/* */
/**************************************************************************/ 

Component dependencies

The main components of Eclipse ThreadX are each provided in their own repository, but there are dependencies between them, as shown in the following graph. This is important to understand when setting up your builds.

dependency graph

You will have to take the dependency graph above into account when building anything other than ThreadX itself.

Building and using the library

Instruction for building the GUIX as static library using Arm GNU Toolchain and CMake. If you are using toolchain and IDE from semiconductor, you might follow its own instructions to use Eclipse ThreadX components as explained in the Getting Started section.

  1. Install the following tools:

  2. Build the ThreadX library as the dependency.

  3. Cloning the repo.

    $ git clone https://github.com/eclipse-threadx/guix.git
  4. Define the features and addons you need in gx_user.h and build together with the component source code. You can refer to gx_user_sample.h as an example.

  5. Building as a static library

    Each component of Eclipse ThreadX comes with a composable CMake-based build system that supports many different MCUs and host systems. Integrating any of these components into your device app code is as simple as adding a git submodule and then including it in your build using the CMake add_subdirectory().

    While the typical usage pattern is to include GUIX into your device code source tree to be built & linked with your code, you can compile this project as a standalone static library to confirm your build is set up correctly.

    An example of building the library for Cortex-M4:

    $ cmake -Bbuild -GNinja -DCMAKE_TOOLCHAIN_FILE=cmake/cortex_m4.cmake .
    $ cmake --build ./build

Licensing

License terms for using Eclipse ThreadX are defined in the LICENSE.txt file of this repo. Please refer to this file for all definitive licensing information for all content, incl. the history of this repo.

Resources

The following are references to additional Eclipse ThreadX resources:

You can also check previous questions or ask new ones on StackOverflow using the threadx and guix tags.

Security

Eclipse ThreadX provides OEMs with components to secure communication and to create code and data isolation using underlying MCU/MPU hardware protection mechanisms. It is ultimately the responsibility of the device builder to ensure the device fully meets the evolving security requirements associated with its specific use case.

Contribution

Please follow the instructions provided in the CONTRIBUTING.md for the corresponding repository.

About

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device.

Topics

Resources

Contributing

Security policy

Stars

405 stars

Watchers

31 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { // Remove or un-stick sticky/fixed headers that block content (function() { function unstick() { document.querySelectorAll('header, nav, [role="banner"], .header, .navbar, .sticky, .fixed-top, [style*="position: fixed"], [style*="position:sticky"]').forEach(function(el) { if (el.style.position === 'fixed' || el.style.position === 'sticky' || getComputedStyle(el).position === 'fixed' || getComputedStyle(el).position === 'sticky') { el.style.position = 'static'; el.style.top = 'auto'; el.style.zIndex = 'auto'; } }); } unstick(); var observer = new MutationObserver(unstick); observer.observe(document.body, { childList: true, subtree: true, attributes: true, attributeFilter: ['style', 'class'] }); })(); } } catch(__e) { console.warn('[Userscript:Kill Sticky Headers]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + ' GitHub - eclipse-threadx/guix: Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device. · GitHub
Skip to content

Repository files navigation

Eclipse ThreadX GUIX

Eclipse ThreadX GUIX is a professional-quality package, created to meet the needs of embedded systems developers. Unlike alternative GUI solutions Eclipse ThreadX GUIX is small, fast, and easily ported to virtually any hardware configuration that’s capable of supporting graphical output. Eclipse ThreadX GUIX also delivers exceptional visual appeal and an intuitive and powerful API for application-level user interface development.

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) application design environment, facilitating the creation and maintenance of all graphical elements in the application’s GUI. Eclipse ThreadX GUIX Studio automatically generates C code that’s compatible with the Eclipse ThreadX GUIX library, ready to be compiled and run on the target.

The latest Eclipse ThreadX GUIX Studio installer is available here: https://github.com/eclipse-threadx/guix/releases/download/v6.5.1.202602a_rel/guix_studio_setup_version_6.5.1.202602a.exe

Here are the key features and modules of GUIX:

GUIX Key Features

Getting Started

GUIX as part of Eclipse ThreadX has been integrated to the semiconductor's SDKs and development environment. You can develop using the tools of choice from NXP, Renesas and Microchip.

We also samples using hero development boards from semiconductors you can build and test with.

See Overview of Eclipse ThreadX GUIX for the high-level overview.

Repository Structure and Usage

Directory layout

.
├── cmake # CMakeList files for building the project
├── common # Core GUIX files
├── fonts # Fonts required by GUIX
├── graphics # Graphic assets
├── ports # Architecture and compiler specific files
├── samples # Sample codes
├── tutorials # More sample codes
├── LICENSE.txt # License terms
├── LICENSE-HARDWARE.txt # Licensed hardware from semiconductors
├── CONTRIBUTING.md # Contribution guidance
└── SECURITY.md # Repo security guidance

Branches & Releases

The master branch has the most recent code with all new features and bug fixes. It does not represent the latest General Availability (GA) release of the library. Each official release (preview or GA) will be tagged to mark the commit and push it into the Github releases tab, e.g. v6.2-rel.

When you see xx-xx-xxxx, 6.x or x.x in function header, this means the file is not officially released yet. They will be updated in the next release. See example below.

/**************************************************************************/
/* */
/* FUNCTION RELEASE */
/* */
/* _tx_initialize_low_level Cortex-M23/GNU */
/* 6.x */
/* AUTHOR */
/* */
/* Scott Larson, Microsoft Corporation */
/* */
/* DESCRIPTION */
/* */
/* This function is responsible for any low-level processor */
/* initialization, including setting up interrupt vectors, setting */
/* up a periodic timer interrupt source, saving the system stack */
/* pointer for use in ISR processing later, and finding the first */
/* available RAM memory address for tx_application_define. */
/* */
/* INPUT */
/* */
/* None */
/* */
/* OUTPUT */
/* */
/* None */
/* */
/* CALLS */
/* */
/* None */
/* */
/* CALLED BY */
/* */
/* _tx_initialize_kernel_enter ThreadX entry function */
/* */
/* RELEASE HISTORY */
/* */
/* DATE NAME DESCRIPTION */
/* */
/* 09-30-2020 Scott Larson Initial Version 6.1 */
/* xx-xx-xxxx Scott Larson Include tx_user.h, */
/* resulting in version 6.x */
/* */
/**************************************************************************/ 

Component dependencies

The main components of Eclipse ThreadX are each provided in their own repository, but there are dependencies between them, as shown in the following graph. This is important to understand when setting up your builds.

dependency graph

You will have to take the dependency graph above into account when building anything other than ThreadX itself.

Building and using the library

Instruction for building the GUIX as static library using Arm GNU Toolchain and CMake. If you are using toolchain and IDE from semiconductor, you might follow its own instructions to use Eclipse ThreadX components as explained in the Getting Started section.

  1. Install the following tools:

  2. Build the ThreadX library as the dependency.

  3. Cloning the repo.

    $ git clone https://github.com/eclipse-threadx/guix.git
  4. Define the features and addons you need in gx_user.h and build together with the component source code. You can refer to gx_user_sample.h as an example.

  5. Building as a static library

    Each component of Eclipse ThreadX comes with a composable CMake-based build system that supports many different MCUs and host systems. Integrating any of these components into your device app code is as simple as adding a git submodule and then including it in your build using the CMake add_subdirectory().

    While the typical usage pattern is to include GUIX into your device code source tree to be built & linked with your code, you can compile this project as a standalone static library to confirm your build is set up correctly.

    An example of building the library for Cortex-M4:

    $ cmake -Bbuild -GNinja -DCMAKE_TOOLCHAIN_FILE=cmake/cortex_m4.cmake .
    $ cmake --build ./build

Licensing

License terms for using Eclipse ThreadX are defined in the LICENSE.txt file of this repo. Please refer to this file for all definitive licensing information for all content, incl. the history of this repo.

Resources

The following are references to additional Eclipse ThreadX resources:

You can also check previous questions or ask new ones on StackOverflow using the threadx and guix tags.

Security

Eclipse ThreadX provides OEMs with components to secure communication and to create code and data isolation using underlying MCU/MPU hardware protection mechanisms. It is ultimately the responsibility of the device builder to ensure the device fully meets the evolving security requirements associated with its specific use case.

Contribution

Please follow the instructions provided in the CONTRIBUTING.md for the corresponding repository.

About

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device.

Topics

Resources

Contributing

Security policy

Stars

405 stars

Watchers

31 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { // Universal Dark Mode - works on any site (function() { var enabled = true; function applyDarkMode() { if (!enabled) return; // Create style element if it doesn't exist var style = document.getElementById('universal-dark-mode-style'); if (!style) { style = document.createElement('style'); style.id = 'universal-dark-mode-style'; document.head.appendChild(style); } // Dark mode CSS - inverts colors but preserves images/video style.textContent = ' /* Invert everything except media */ html { filter: invert(1) hue-rotate(180deg) !important; background: #1a1a2e !important; } /* Restore images, videos, iframes, canvas */ img, video, iframe, canvas, svg, picture, [style*="background-image"] { filter: invert(1) hue-rotate(180deg) !important; } /* Preserve specific elements that should not be inverted */ .no-dark-mode, .no-dark-mode *, [data-theme="light"], [data-theme="light"], .ace_editor, .ace_editor *, .CodeMirror, .CodeMirror *, .monaco-editor, .monaco-editor *, .markdown-body pre, .markdown-body pre *, .highlight, .highlight *, pre code, pre code * { filter: none !important; } /* Fix common UI elements */ .modal, .popup, .dropdown-menu, .tooltip, .popover { filter: invert(1) hue-rotate(180deg) !important; background: #2d2d44 !important; border-color: #444 !important; } /* Scrollbars */ ::-webkit-scrollbar { background: #1a1a2e !important; } ::-webkit-scrollbar-thumb { background: #444 !important; } ::-webkit-scrollbar-thumb:hover { background: #555 !important; } /* Selection */ ::selection { background: #4ecdc4 !important; color: #1a1a2e !important; } ::-moz-selection { background: #4ecdc4 !important; color: #1a1a2e !important; } '; } function removeDarkMode() { var style = document.getElementById('universal-dark-mode-style'); if (style) style.remove(); } // Toggle with Alt+Shift+D document.addEventListener('keydown', function(e) { if (e.altKey && e.shiftKey && e.key === 'D') { e.preventDefault(); enabled = !enabled; if (enabled) { applyDarkMode(); console.log('[Universal Dark Mode] Enabled'); } else { removeDarkMode(); console.log('[Universal Dark Mode] Disabled'); } } }); // Apply on load applyDarkMode(); // Re-apply on dynamic content var observer = new MutationObserver(function(mutations) { if (enabled && !document.getElementById('universal-dark-mode-style')) { applyDarkMode(); } }); observer.observe(document.head, { childList: true }); console.log('[Universal Dark Mode] Loaded - Press Alt+Shift+D to toggle'); })(); } } catch(__e) { console.warn('[Userscript:Universal Dark Mode]', __e); } })(); })(); GitHub - eclipse-threadx/guix: Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device. · GitHub
Skip to content

Repository files navigation

Eclipse ThreadX GUIX

Eclipse ThreadX GUIX is a professional-quality package, created to meet the needs of embedded systems developers. Unlike alternative GUI solutions Eclipse ThreadX GUIX is small, fast, and easily ported to virtually any hardware configuration that’s capable of supporting graphical output. Eclipse ThreadX GUIX also delivers exceptional visual appeal and an intuitive and powerful API for application-level user interface development.

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) application design environment, facilitating the creation and maintenance of all graphical elements in the application’s GUI. Eclipse ThreadX GUIX Studio automatically generates C code that’s compatible with the Eclipse ThreadX GUIX library, ready to be compiled and run on the target.

The latest Eclipse ThreadX GUIX Studio installer is available here: https://github.com/eclipse-threadx/guix/releases/download/v6.5.1.202602a_rel/guix_studio_setup_version_6.5.1.202602a.exe

Here are the key features and modules of GUIX:

GUIX Key Features

Getting Started

GUIX as part of Eclipse ThreadX has been integrated to the semiconductor's SDKs and development environment. You can develop using the tools of choice from NXP, Renesas and Microchip.

We also samples using hero development boards from semiconductors you can build and test with.

See Overview of Eclipse ThreadX GUIX for the high-level overview.

Repository Structure and Usage

Directory layout

.
├── cmake # CMakeList files for building the project
├── common # Core GUIX files
├── fonts # Fonts required by GUIX
├── graphics # Graphic assets
├── ports # Architecture and compiler specific files
├── samples # Sample codes
├── tutorials # More sample codes
├── LICENSE.txt # License terms
├── LICENSE-HARDWARE.txt # Licensed hardware from semiconductors
├── CONTRIBUTING.md # Contribution guidance
└── SECURITY.md # Repo security guidance

Branches & Releases

The master branch has the most recent code with all new features and bug fixes. It does not represent the latest General Availability (GA) release of the library. Each official release (preview or GA) will be tagged to mark the commit and push it into the Github releases tab, e.g. v6.2-rel.

When you see xx-xx-xxxx, 6.x or x.x in function header, this means the file is not officially released yet. They will be updated in the next release. See example below.

/**************************************************************************/
/* */
/* FUNCTION RELEASE */
/* */
/* _tx_initialize_low_level Cortex-M23/GNU */
/* 6.x */
/* AUTHOR */
/* */
/* Scott Larson, Microsoft Corporation */
/* */
/* DESCRIPTION */
/* */
/* This function is responsible for any low-level processor */
/* initialization, including setting up interrupt vectors, setting */
/* up a periodic timer interrupt source, saving the system stack */
/* pointer for use in ISR processing later, and finding the first */
/* available RAM memory address for tx_application_define. */
/* */
/* INPUT */
/* */
/* None */
/* */
/* OUTPUT */
/* */
/* None */
/* */
/* CALLS */
/* */
/* None */
/* */
/* CALLED BY */
/* */
/* _tx_initialize_kernel_enter ThreadX entry function */
/* */
/* RELEASE HISTORY */
/* */
/* DATE NAME DESCRIPTION */
/* */
/* 09-30-2020 Scott Larson Initial Version 6.1 */
/* xx-xx-xxxx Scott Larson Include tx_user.h, */
/* resulting in version 6.x */
/* */
/**************************************************************************/ 

Component dependencies

The main components of Eclipse ThreadX are each provided in their own repository, but there are dependencies between them, as shown in the following graph. This is important to understand when setting up your builds.

dependency graph

You will have to take the dependency graph above into account when building anything other than ThreadX itself.

Building and using the library

Instruction for building the GUIX as static library using Arm GNU Toolchain and CMake. If you are using toolchain and IDE from semiconductor, you might follow its own instructions to use Eclipse ThreadX components as explained in the Getting Started section.

  1. Install the following tools:

  2. Build the ThreadX library as the dependency.

  3. Cloning the repo.

    $ git clone https://github.com/eclipse-threadx/guix.git
  4. Define the features and addons you need in gx_user.h and build together with the component source code. You can refer to gx_user_sample.h as an example.

  5. Building as a static library

    Each component of Eclipse ThreadX comes with a composable CMake-based build system that supports many different MCUs and host systems. Integrating any of these components into your device app code is as simple as adding a git submodule and then including it in your build using the CMake add_subdirectory().

    While the typical usage pattern is to include GUIX into your device code source tree to be built & linked with your code, you can compile this project as a standalone static library to confirm your build is set up correctly.

    An example of building the library for Cortex-M4:

    $ cmake -Bbuild -GNinja -DCMAKE_TOOLCHAIN_FILE=cmake/cortex_m4.cmake .
    $ cmake --build ./build

Licensing

License terms for using Eclipse ThreadX are defined in the LICENSE.txt file of this repo. Please refer to this file for all definitive licensing information for all content, incl. the history of this repo.

Resources

The following are references to additional Eclipse ThreadX resources:

You can also check previous questions or ask new ones on StackOverflow using the threadx and guix tags.

Security

Eclipse ThreadX provides OEMs with components to secure communication and to create code and data isolation using underlying MCU/MPU hardware protection mechanisms. It is ultimately the responsibility of the device builder to ensure the device fully meets the evolving security requirements associated with its specific use case.

Contribution

Please follow the instructions provided in the CONTRIBUTING.md for the corresponding repository.

About

Eclipse ThreadX GUIX Studio provides a complete, embedded graphical user interface (GUI) library and design environment, facilitating the creation and maintenance of all graphical elements needed by your device.

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