Files
tactility/TactilityKernel/source/kernel_init.cpp
Ken Van Hoeylandt 643cbc3806 Implement posix app loading (#643)
- Added POSIX desktop support for SDK builds, application packaging, and integration testing.
- Added POSIX filesystem partitions and improved application path handling.
- Added simulator support for loading and running applications dynamically.
- Improved simulator task stack handling and display startup reliability.
- Improved simulator display scaling, resizing, high-DPI support, and pointer accuracy.
- Fixed LVGL timers and input polling on POSIX. (fixes simulator with Linux on some Intel graphics platforms)
- Standardized data paths across platforms.
- Logging now works via separate task: this allows apps to write to log without it affecting their stdout (for apps that output text as relevant date for other apps, like the File Selection app)
- Fixes for app stdio
2026-08-31 22:09:04 +02:00

93 lines
2.7 KiB
C++

#include <tactility/kernel_init.h>
#include <tactility/device.h>
#include <tactility/log.h>
#include <tactility/log_queue.h>
#ifdef __cplusplus
extern "C" {
#endif
#define TAG "kernel"
extern const ModuleSymbol KERNEL_SYMBOLS[];
extern Driver root_driver;
extern Driver battery_sense_driver;
extern Driver battery_sense_power_supply_driver;
extern Driver gpio_hog_driver;
extern Driver pwm_backlight_driver;
extern Driver gpio_backlight_driver;
extern Driver rgb_led_gpio_driver;
extern Driver rgb_led_pwm_driver;
/**
* @warning Because the drivers have no owning module, they cannot be unbound.
* This is fine for now because we never unload the kernel once it's loaded.
*/
static Driver* const KERNEL_DRIVERS[] = {
&root_driver,
&battery_sense_driver,
&battery_sense_power_supply_driver,
&gpio_hog_driver,
&pwm_backlight_driver,
&gpio_backlight_driver,
&rgb_led_gpio_driver,
&rgb_led_pwm_driver,
nullptr,
};
Module kernel_module = {
.name = "kernel",
.start = nullptr,
.stop = nullptr,
.drivers = KERNEL_DRIVERS,
.symbols = static_cast<const struct ModuleSymbol*>(KERNEL_SYMBOLS),
.internal = nullptr,
};
error_t kernel_init(Module* const dts_modules[], const DtsDevice dts_devices[]) {
log_queue_init();
LOG_I(TAG, "init");
if (module_construct_add_start(&kernel_module) != ERROR_NONE) {
LOG_E(TAG, "root module init failed");
return ERROR_RESOURCE;
}
Module* const* dts_module = dts_modules;
while (*dts_module != nullptr) {
if (module_construct_add_start(*dts_module) != ERROR_NONE) {
LOG_E(TAG, "dts module init failed: %s", (*dts_module)->name);
return ERROR_RESOURCE;
}
dts_module++;
}
const DtsDevice* dts_device = dts_devices;
while (dts_device->device != nullptr) {
if (dts_device->status == DTS_DEVICE_STATUS_OKAY) {
if (device_construct_add_start(dts_device->device, dts_device->compatible) != ERROR_NONE) {
LOG_E(TAG, "kernel_init failed to construct+add+start device: %s (%s)", dts_device->device->name, dts_device->compatible);
return ERROR_RESOURCE;
}
} else if (dts_device->status == DTS_DEVICE_STATUS_DISABLED) {
if (device_construct_add(dts_device->device, dts_device->compatible) != ERROR_NONE) {
LOG_E(TAG, "kernel_init failed to construct+add device: %s (%s)", dts_device->device->name, dts_device->compatible);
return ERROR_RESOURCE;
}
} else {
check(false, "DTS status not implemented");
}
dts_device++;
}
LOG_I(TAG, "init done");
return ERROR_NONE;
}
#ifdef __cplusplus
}
#endif