6 Commits

Author SHA1 Message Date
Copilot
252ce67830 Add min_size and max_size options to ResizableSplit component (#1132)
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Co-authored-by: ArthurSonzogni <sonzogniarthur@gmail.com>



Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com>
Co-authored-by: ArthurSonzogni <sonzogniarthur@gmail.com>
Bug:https://github.com/ArthurSonzogni/FTXUI/issues/1131
Bug:https://github.com/ArthurSonzogni/FTXUI/discussions/1130
2025-10-18 11:17:59 +02:00
Tino
e858bf9809 Add 'typing-speed-test' to README.md (#1126)
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2025-10-08 10:15:39 +02:00
Hector Queiróz
e5652f11ec updated bazel build example section in README (#1128) 2025-10-08 10:15:25 +02:00
Arthur Sonzogni
412d8c14e4 Fix CMake 3.12 compatibility by adding required install destinations (#1127)
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The `install(TARGETS ...)` command in `cmake/ftxui_install.cmake` was missing required destination specifications that became mandatory in CMake 3.12+. This caused build failures when users tried to install FTXUI with the minimum supported CMake version.

The issue occurred because the install command:

```cmake
install(
  TARGETS screen dom component
  EXPORT ftxui-targets
  )
```

Was missing explicit destination specifications for different artifact types. CMake 3.12+ requires these destinations to be explicitly declared.

This PR adds the required destination specifications:

```cmake
install(
  TARGETS screen dom component
  EXPORT ftxui-targets
  ARCHIVE DESTINATION "${CMAKE_INSTALL_LIBDIR}"
  LIBRARY DESTINATION "${CMAKE_INSTALL_LIBDIR}"
  RUNTIME DESTINATION "${CMAKE_INSTALL_BINDIR}"
  )
```

The fix ensures that:
- Static libraries (`.a` files) are installed to the archive destination
- Shared libraries are installed to the library destination
- Executables are installed to the runtime destination

All destinations use CMake's standard directory variables for proper cross-platform compatibility. The change is backward compatible and maintains the same installation behavior while satisfying CMake 3.12+ requirements.

Fixes #1118.
2025-09-30 18:38:55 +02:00
meekee7
a3103f5cd4 Add missing include for std::max (#1124)
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2025-09-23 08:03:54 +02:00
Copilot
8249fcb41e Add comprehensive GitHub Copilot instructions for FTXUI development (#1121)
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2025-09-21 10:30:52 +02:00
12 changed files with 422 additions and 65 deletions

212
.github/copilot-instructions.md vendored Normal file
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@@ -0,0 +1,212 @@
# FTXUI - Functional Terminal (X) User Interface
FTXUI is a cross-platform C++ library for terminal-based user interfaces with a functional programming approach, inspired by React.
**ALWAYS reference these instructions first and fallback to search or bash commands only when you encounter unexpected information that does not match the information here.**
## Working Effectively
### Build System Setup and Commands
- Bootstrap and build the repository:
```bash
# Basic build (library only) - fast
cmake -S . -B build -DCMAKE_BUILD_TYPE=Release
cmake --build build --parallel $(nproc)
# Build time: ~30 seconds. NEVER CANCEL. Set timeout to 120+ seconds.
# Build with examples
cmake -S . -B build -DCMAKE_BUILD_TYPE=Release -DFTXUI_BUILD_EXAMPLES=ON
cmake --build build --parallel $(nproc)
# Build time: ~70 seconds. NEVER CANCEL. Set timeout to 180+ seconds.
# Build with examples and tests
cmake -S . -B build -DCMAKE_BUILD_TYPE=Release -DFTXUI_BUILD_EXAMPLES=ON -DFTXUI_BUILD_TESTS=ON
cmake --build build --parallel $(nproc)
# Build time: ~113 seconds (includes GoogleTest download). NEVER CANCEL. Set timeout to 300+ seconds.
```
- Alternative build with Ninja (faster):
```bash
cmake -S . -B build -G Ninja -DCMAKE_BUILD_TYPE=Release -DFTXUI_BUILD_EXAMPLES=ON
ninja -C build
# Build time: ~62 seconds. NEVER CANCEL. Set timeout to 180+ seconds.
```
- Run unit tests:
```bash
# Configure with tests enabled first, then:
cd build && ctest --output-on-failure
# Test time: ~4 seconds (302 tests). NEVER CANCEL. Set timeout to 60+ seconds.
```
### Bazel Support
- FTXUI also supports Bazel build system
- **WARNING**: Bazel may fail due to network connectivity issues in sandboxed environments
- If Bazel is available:
```bash
bazel build //... # Build everything
bazel test //... # Run tests
```
## Validation
### Manual Testing After Changes
- **ALWAYS manually validate changes by building and running examples after making code modifications**
- Run example applications to verify functionality:
```bash
# Build an example first
cmake --build build --target ftxui_example_border
# Run examples (they are interactive, use timeout to terminate)
timeout 2s build/examples/dom/ftxui_example_border
timeout 2s build/examples/dom/ftxui_example_color_gallery
timeout 2s build/examples/component/ftxui_example_button
```
- Examples should produce visual terminal output with borders, colors, and UI components
- **CRITICAL**: Always run at least one DOM example and one Component example to verify both modules work
### Code Quality and Formatting
- Always run formatting before committing:
```bash
./tools/format.sh
# Format time: ~7 seconds. NEVER CANCEL. Set timeout to 60+ seconds.
```
- The format script adds license headers and runs clang-format on all source files
- **Required**: Run formatting or the CI (.github/workflows/build.yaml) will fail
### Build Validation Requirements
- ALWAYS build with both `-DFTXUI_BUILD_EXAMPLES=ON` and `-DFTXUI_BUILD_TESTS=ON` when making changes
- Run the complete test suite with `ctest --output-on-failure`
- All 302 tests must pass
- **Scenario Testing**: Run at least these validation scenarios:
1. Build library only (basic validation)
2. Build with examples and run 2-3 different examples
3. Build with tests and run complete test suite
4. Run formatting tool to ensure code style compliance
## Project Structure
### Key Directories
```
/home/runner/work/FTXUI/FTXUI/
├── include/ftxui/ # Public header files
│ ├── component/ # Interactive component headers
│ ├── dom/ # DOM element headers
│ ├── screen/ # Screen and rendering headers
│ └── util/ # Utility headers
├── src/ftxui/ # Implementation files
│ ├── component/ # Interactive components (buttons, menus, etc.)
│ ├── dom/ # DOM elements (layout, styling, text)
│ ├── screen/ # Screen rendering and terminal handling
│ └── util/ # Utilities
├── examples/ # Example applications
│ ├── component/ # Interactive component examples
│ └── dom/ # DOM element examples
├── cmake/ # CMake configuration files
├── tools/ # Development tools (formatting, etc.)
└── .github/workflows/ # CI/CD configuration
```
### Core Library Modules
FTXUI is organized into three main modules that depend on each other:
```
┌component──┐ (Interactive UI components)
│┌dom──────┐│ (Layout and styling elements)
││┌screen─┐││ (Terminal rendering and input)
└┴┴───────┴┴┘
```
1. **screen**: Low-level terminal handling, colors, pixels, input
2. **dom**: Layout elements (hbox, vbox, text, borders, etc.)
3. **component**: Interactive components (buttons, menus, input fields)
### CMake Build Options
| Option | Description | Default |
|-----------------------------------|----------------------------------|---------|
| FTXUI_BUILD_EXAMPLES | Build example applications | OFF |
| FTXUI_BUILD_DOCS | Build documentation | OFF |
| FTXUI_BUILD_TESTS | Build and enable tests | OFF |
| FTXUI_BUILD_MODULES | Build C++20 modules | OFF |
| FTXUI_ENABLE_INSTALL | Generate install targets | ON |
| FTXUI_MICROSOFT_TERMINAL_FALLBACK | Windows terminal compatibility | ON/OFF |
## Common Tasks
### Building Examples
```bash
# Build specific examples
cmake --build build --target ftxui_example_border
cmake --build build --target ftxui_example_button
cmake --build build --target ftxui_example_menu
# List all available examples
find build -name "ftxui_example_*" -type f
```
### Running Tests
```bash
# Run all tests
cd build && ctest
# Run tests with verbose output
cd build && ctest --verbose
# Run specific test pattern
cd build && ctest -R "Button" --verbose
```
### Working with Source Code
- **Component Development**: Modify files in `src/ftxui/component/` for interactive elements
- **DOM Development**: Modify files in `src/ftxui/dom/` for layout and styling
- **Screen Development**: Modify files in `src/ftxui/screen/` for terminal rendering
- **Adding Examples**: Add new `.cpp` files in `examples/component/` or `examples/dom/`
- **Header Files**: Public APIs are in `include/ftxui/[module]/`
### Integration Patterns
When adding FTXUI to a project, use CMake FetchContent (recommended):
```cmake
include(FetchContent)
FetchContent_Declare(ftxui
GIT_REPOSITORY https://github.com/ArthurSonzogni/ftxui
GIT_TAG v6.1.9
)
FetchContent_MakeAvailable(ftxui)
target_link_libraries(your_target PRIVATE
ftxui::component # For interactive components
ftxui::dom # For layout elements
ftxui::screen # For basic rendering
)
```
## Troubleshooting
### Build Issues
- If CMake configuration fails, ensure C++20 support: `cmake --version` (need 3.12+)
- If Ninja build fails, fall back to Make: `cmake -S . -B build` (without `-G Ninja`)
- If tests fail to build, GoogleTest download might have failed - check network connectivity
- Build artifacts are in `build/` directory - delete with `rm -rf build` to clean
### Example Issues
- Examples are interactive terminal applications - use `timeout` to terminate them
- If examples don't display correctly, terminal might not support colors/Unicode
- Examples require terminal size of at least 80x24 for proper display
### Formatting Issues
- Format script requires clang-format to be installed
- If format script fails, check that source files are not read-only
- Format script modifies files in-place - commit changes afterwards
## Critical Reminders
- **NEVER CANCEL long-running builds** - they may take 2-3 minutes
- **ALWAYS run the formatting tool** before committing changes
- **ALWAYS build and test examples** when making component/dom changes
- **SET APPROPRIATE TIMEOUTS**: 300+ seconds for builds, 60+ seconds for tests
- **BUILD TIMING EXPECTATIONS**:
- Basic library: ~30 seconds
- With examples: ~70 seconds
- With examples + tests: ~113 seconds (first time, includes GoogleTest download)
- Subsequent builds: ~60-70 seconds
- Tests execution: ~4 seconds
- Formatting: ~7 seconds

2
.gitignore vendored
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@@ -28,6 +28,7 @@ out/
# .github directory:
!.github/**/*.yaml
!.github/**/*.yml
!.github/**/*.md
# cmake directory:
!cmake/**/*.in
@@ -70,3 +71,4 @@ out/
# tools directory:
!tools/**/*.sh
!tools/**/*.cpp
build/

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@@ -365,6 +365,7 @@ Feel free to add your projects here:
- [SHOOT!](https://github.com/ShingZhanho/ENGG1340-Project-25Spring)
- [VerifySN (Fast Hash Tool)](https://github.com/d06i/verifySN)
- [tic-tac-toe](https://github.com/birland/tic-tac-toe)
- [typing-speed-test](https://github.com/ymcx/typing-speed-test)
### [cpp-best-practices/game_jam](https://github.com/cpp-best-practices/game_jam)
@@ -416,9 +417,9 @@ cc_binary(
name = "your_target",
srcs = ["your_source.cc"],
deps = [
"@ftxui//:ftxui_component",
"@ftxui//:ftxui_dom",
"@ftxui//:ftxui_screen",
"@ftxui//:component",
"@ftxui//:dom",
"@ftxui//:screen",
],
)
```

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@@ -11,6 +11,9 @@ include(CMakePackageConfigHelpers)
install(
TARGETS screen dom component
EXPORT ftxui-targets
ARCHIVE DESTINATION "${CMAKE_INSTALL_LIBDIR}"
LIBRARY DESTINATION "${CMAKE_INSTALL_LIBDIR}"
RUNTIME DESTINATION "${CMAKE_INSTALL_BINDIR}"
)
install(

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@@ -39,6 +39,7 @@ example(radiobox)
example(radiobox_in_frame)
example(renderer)
example(resizable_split)
example(resizable_split_clamp)
example(scrollbar)
example(selection)
example(slider)

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@@ -3,7 +3,6 @@
// the LICENSE file.
#include <memory> // for shared_ptr, allocator, __shared_ptr_access
#include "ftxui/component/captured_mouse.hpp" // for ftxui
#include "ftxui/component/component.hpp" // for Renderer, ResizableSplitBottom, ResizableSplitLeft, ResizableSplitRight, ResizableSplitTop
#include "ftxui/component/component_base.hpp" // for ComponentBase
#include "ftxui/component/screen_interactive.hpp" // for ScreenInteractive
@@ -14,17 +13,24 @@ using namespace ftxui;
int main() {
auto screen = ScreenInteractive::Fullscreen();
auto middle = Renderer([] { return text("middle") | center; });
auto left = Renderer([] { return text("Left") | center; });
auto right = Renderer([] { return text("right") | center; });
auto top = Renderer([] { return text("top") | center; });
auto bottom = Renderer([] { return text("bottom") | center; });
// State:
int left_size = 20;
int right_size = 20;
int top_size = 10;
int bottom_size = 10;
// Renderers:
auto RendererInfo = [](const std::string& name, int* size) {
return Renderer([name, size] {
return text(name + ": " + std::to_string(*size)) | center;
});
};
auto middle = Renderer([] { return text("Middle") | center; });
auto left = RendererInfo("Left", &left_size);
auto right = RendererInfo("Right", &right_size);
auto top = RendererInfo("Top", &top_size);
auto bottom = RendererInfo("Bottom", &bottom_size);
auto container = middle;
container = ResizableSplitLeft(left, container, &left_size);
container = ResizableSplitRight(right, container, &right_size);

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@@ -0,0 +1,43 @@
// Copyright 2025 Arthur Sonzogni. All rights reserved.
// Use of this source code is governed by the MIT license that can be found in
// the LICENSE file.
#include <memory> // for shared_ptr, allocator, __shared_ptr_access
#include "ftxui/component/component.hpp" // for Renderer, ResizableSplitBottom, ResizableSplitLeft, ResizableSplitRight, ResizableSplitTop
#include "ftxui/component/component_base.hpp" // for ComponentBase
#include "ftxui/component/screen_interactive.hpp" // for ScreenInteractive
#include "ftxui/dom/elements.hpp" // for Element, operator|, text, center, border
using namespace ftxui;
int main() {
auto screen = ScreenInteractive::Fullscreen();
// State:
int size = 40;
int size_min = 10;
int size_max = 80;
// Renderers:
auto split = ResizableSplit({
.main = Renderer([] { return text("Left") | center; }),
.back = Renderer([] { return text("Right") | center; }),
.direction = Direction::Left,
.main_size = &size,
.min = &size_min,
.max = &size_max,
});
auto renderer = Renderer(split, [&] {
return window(text("Drag the separator with the mouse"),
vbox({
text("Min: " + std::to_string(size_min)),
text("Max: " + std::to_string(size_max)),
text("Size: " + std::to_string(size)),
separator(),
split->Render() | flex,
}));
});
screen.Loop(renderer);
}

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@@ -11,6 +11,7 @@
#include <ftxui/util/ref.hpp> // for Ref, ConstRef, StringRef
#include <ftxui/util/warn_windows_macro.hpp>
#include <functional> // for function
#include <limits> // for numeric_limits
#include <string> // for string
#include "ftxui/component/component_base.hpp" // for Component
@@ -217,6 +218,10 @@ struct ResizableSplitOption {
(direction() == Direction::Left || direction() == Direction::Right) ? 20
: 10;
std::function<Element()> separator_func = [] { return ::ftxui::separator(); };
// Constraints on main_size:
Ref<int> min = 0;
Ref<int> max = std::numeric_limits<int>::max();
};
// @brief Option for the `Slider` component.

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@@ -4,10 +4,10 @@
#ifndef FTXUI_COMPONENT_RECEIVER_HPP_
#define FTXUI_COMPONENT_RECEIVER_HPP_
#include <ftxui/util/warn_windows_macro.hpp>
#include <algorithm> // for copy, max
#include <atomic> // for atomic, __atomic_base
#include <condition_variable> // for condition_variable
#include <ftxui/util/warn_windows_macro.hpp>
#include <memory> // for unique_ptr, make_unique
#include <mutex> // for mutex, unique_lock
#include <queue> // for queue

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@@ -1,6 +1,7 @@
// Copyright 2021 Arthur Sonzogni. All rights reserved.
// Use of this source code is governed by the MIT license that can be found in
// the LICENSE file.
#include <algorithm> // for max
#include <ftxui/component/component_options.hpp> // for ResizableSplitOption
#include <ftxui/dom/direction.hpp> // for Direction, Direction::Down, Direction::Left, Direction::Right, Direction::Up
#include <ftxui/util/ref.hpp> // for Ref
@@ -18,34 +19,22 @@
namespace ftxui {
namespace {
class ResizableSplitBase : public ComponentBase {
class ResizableSplitBase : public ComponentBase, public ResizableSplitOption {
public:
explicit ResizableSplitBase(ResizableSplitOption options)
: options_(std::move(options)) {
switch (options_->direction()) {
: ResizableSplitOption(std::move(options)) {
switch (direction()) {
case Direction::Left:
Add(Container::Horizontal({
options_->main,
options_->back,
}));
Add(Container::Horizontal({main, back}));
break;
case Direction::Right:
Add(Container::Horizontal({
options_->back,
options_->main,
}));
Add(Container::Horizontal({back, main}));
break;
case Direction::Up:
Add(Container::Vertical({
options_->main,
options_->back,
}));
Add(Container::Vertical({main, back}));
break;
case Direction::Down:
Add(Container::Vertical({
options_->back,
options_->main,
}));
Add(Container::Vertical({back, main}));
break;
}
}
@@ -75,27 +64,27 @@ class ResizableSplitBase : public ComponentBase {
return ComponentBase::OnEvent(event);
}
switch (options_->direction()) {
switch (direction()) {
case Direction::Left:
options_->main_size() = std::max(0, event.mouse().x - box_.x_min);
return true;
main_size() = std::max(0, event.mouse().x - box_.x_min);
break;
case Direction::Right:
options_->main_size() = std::max(0, box_.x_max - event.mouse().x);
return true;
main_size() = std::max(0, box_.x_max - event.mouse().x);
break;
case Direction::Up:
options_->main_size() = std::max(0, event.mouse().y - box_.y_min);
return true;
main_size() = std::max(0, event.mouse().y - box_.y_min);
break;
case Direction::Down:
options_->main_size() = std::max(0, box_.y_max - event.mouse().y);
return true;
main_size() = std::max(0, box_.y_max - event.mouse().y);
break;
}
// NOTREACHED()
return false;
main_size() = std::clamp(main_size(), min(), max());
return true;
}
Element OnRender() final {
switch (options_->direction()) {
switch (direction()) {
case Direction::Left:
return RenderLeft();
case Direction::Right:
@@ -111,46 +100,41 @@ class ResizableSplitBase : public ComponentBase {
Element RenderLeft() {
return hbox({
options_->main->Render() |
size(WIDTH, EQUAL, options_->main_size()),
options_->separator_func() | reflect(separator_box_),
options_->back->Render() | xflex,
main->Render() | size(WIDTH, EQUAL, main_size()),
separator_func() | reflect(separator_box_),
back->Render() | xflex,
}) |
reflect(box_);
}
Element RenderRight() {
return hbox({
options_->back->Render() | xflex,
options_->separator_func() | reflect(separator_box_),
options_->main->Render() |
size(WIDTH, EQUAL, options_->main_size()),
back->Render() | xflex,
separator_func() | reflect(separator_box_),
main->Render() | size(WIDTH, EQUAL, main_size()),
}) |
reflect(box_);
}
Element RenderTop() {
return vbox({
options_->main->Render() |
size(HEIGHT, EQUAL, options_->main_size()),
options_->separator_func() | reflect(separator_box_),
options_->back->Render() | yflex,
main->Render() | size(HEIGHT, EQUAL, main_size()),
separator_func() | reflect(separator_box_),
back->Render() | yflex,
}) |
reflect(box_);
}
Element RenderBottom() {
return vbox({
options_->back->Render() | yflex,
options_->separator_func() | reflect(separator_box_),
options_->main->Render() |
size(HEIGHT, EQUAL, options_->main_size()),
back->Render() | yflex,
separator_func() | reflect(separator_box_),
main->Render() | size(HEIGHT, EQUAL, main_size()),
}) |
reflect(box_);
}
private:
Ref<ResizableSplitOption> options_;
CapturedMouse captured_mouse_;
Box separator_box_;
Box box_;

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@@ -233,5 +233,105 @@ TEST(ResizableSplit, NavigationVertical) {
EXPECT_FALSE(component_bottom->Active());
}
TEST(ResizableSplit, MinMaxSizeLeft) {
int position = 5;
auto component = ResizableSplit({
.main = BasicComponent(),
.back = BasicComponent(),
.direction = Direction::Left,
.main_size = &position,
.separator_func = [] { return separatorDouble(); },
.min = 3,
.max = 8,
});
auto screen = Screen(20, 20);
Render(screen, component->Render());
EXPECT_EQ(position, 5);
EXPECT_TRUE(component->OnEvent(MousePressed(5, 1)));
EXPECT_EQ(position, 5);
// Try to resize below min
EXPECT_TRUE(component->OnEvent(MousePressed(2, 1)));
EXPECT_EQ(position, 3); // Clamped to min
// Try to resize above max
EXPECT_TRUE(component->OnEvent(MousePressed(10, 1)));
EXPECT_EQ(position, 8); // Clamped to max
EXPECT_TRUE(component->OnEvent(MouseReleased(10, 1)));
EXPECT_EQ(position, 8);
}
TEST(ResizableSplit, MinMaxSizeRight) {
int position = 5;
auto component = ResizableSplit({
.main = BasicComponent(),
.back = BasicComponent(),
.direction = Direction::Right,
.main_size = &position,
.separator_func = [] { return separatorDouble(); },
.min = 3,
.max = 8,
});
auto screen = Screen(20, 20);
Render(screen, component->Render());
EXPECT_EQ(position, 5);
EXPECT_TRUE(component->OnEvent(MousePressed(14, 1)));
EXPECT_EQ(position, 5);
// Try to resize below min
EXPECT_TRUE(component->OnEvent(MousePressed(18, 1)));
EXPECT_EQ(position, 3); // Clamped to min
// Try to resize above max
EXPECT_TRUE(component->OnEvent(MousePressed(10, 1)));
EXPECT_EQ(position, 8); // Clamped to max
EXPECT_TRUE(component->OnEvent(MouseReleased(10, 1)));
EXPECT_EQ(position, 8);
}
TEST(ResizableSplit, MinMaxSizeTop) {
int position = 5;
auto component = ResizableSplit({
.main = BasicComponent(),
.back = BasicComponent(),
.direction = Direction::Up,
.main_size = &position,
.separator_func = [] { return separatorDouble(); },
.min = 2,
.max = 10,
});
auto screen = Screen(20, 20);
Render(screen, component->Render());
EXPECT_EQ(position, 5);
EXPECT_TRUE(component->OnEvent(MousePressed(1, 5)));
EXPECT_EQ(position, 5);
// Try to resize below min
EXPECT_TRUE(component->OnEvent(MousePressed(1, 1)));
EXPECT_EQ(position, 2); // Clamped to min
// Try to resize above max
EXPECT_TRUE(component->OnEvent(MousePressed(1, 15)));
EXPECT_EQ(position, 10); // Clamped to max
}
TEST(ResizableSplit, MinMaxSizeBottom) {
int position = 5;
auto component = ResizableSplit({
.main = BasicComponent(),
.back = BasicComponent(),
.direction = Direction::Down,
.main_size = &position,
.separator_func = [] { return separatorDouble(); },
.min = 3,
.max = 12,
});
auto screen = Screen(20, 20);
Render(screen, component->Render());
EXPECT_EQ(position, 5);
EXPECT_TRUE(component->OnEvent(MousePressed(1, 14)));
EXPECT_EQ(position, 5);
// Try to resize below min
EXPECT_TRUE(component->OnEvent(MousePressed(1, 18)));
EXPECT_EQ(position, 3); // Clamped to min
// Try to resize above max
EXPECT_TRUE(component->OnEvent(MousePressed(1, 5)));
EXPECT_EQ(position, 12); // Clamped to max
}
} // namespace ftxui
// NOLINTEND

View File

@@ -21,8 +21,8 @@ class TaskRunner {
auto PostTask(Task task) -> void;
/// Schedules a task to be executed after a certain duration.
auto PostDelayedTask(Task task, std::chrono::steady_clock::duration duration)
-> void;
auto PostDelayedTask(Task task,
std::chrono::steady_clock::duration duration) -> void;
/// Runs the tasks in the queue, return the delay until the next delayed task
/// can be executed.