unleashed-firmware/applications/debug/direct_draw/direct_draw.c
あく aa06328516
Furi, FuriHal: remove FreeRTOS headers leaks (#3179)
* Furi: remove direct FreeRTOS timers use
* Furi: eliminate FreeRTOS headers leak. What did it cost? Everything...
* SubGhz: proper public api for protocols. Format Sources.
* Furi: slightly less redundant declarations
* Desktop: proper types in printf
* Sync API Symbols
* Furi: add timer reset and fix dolphin service, fix unit tests
* Furi: proper timer restart method naming and correct behavior in timer stopped state.

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Co-authored-by: hedger <hedger@nanode.su>
2023-11-01 11:24:11 +04:00

112 lines
3.1 KiB
C

#include <furi.h>
#include <gui/gui.h>
#include <gui/canvas_i.h>
#include <input/input.h>
#define BUFFER_SIZE (32U)
typedef struct {
FuriPubSub* input;
FuriPubSubSubscription* input_subscription;
Gui* gui;
Canvas* canvas;
bool stop;
uint32_t counter;
} DirectDraw;
static void gui_input_events_callback(const void* value, void* ctx) {
furi_assert(value);
furi_assert(ctx);
DirectDraw* instance = ctx;
const InputEvent* event = value;
if(event->key == InputKeyBack && event->type == InputTypeShort) {
instance->stop = true;
}
}
static DirectDraw* direct_draw_alloc() {
DirectDraw* instance = malloc(sizeof(DirectDraw));
instance->input = furi_record_open(RECORD_INPUT_EVENTS);
instance->gui = furi_record_open(RECORD_GUI);
instance->canvas = gui_direct_draw_acquire(instance->gui);
instance->input_subscription =
furi_pubsub_subscribe(instance->input, gui_input_events_callback, instance);
return instance;
}
static void direct_draw_free(DirectDraw* instance) {
furi_pubsub_unsubscribe(instance->input, instance->input_subscription);
instance->canvas = NULL;
gui_direct_draw_release(instance->gui);
furi_record_close(RECORD_GUI);
furi_record_close(RECORD_INPUT_EVENTS);
}
static void direct_draw_block(Canvas* canvas, uint32_t size, uint32_t counter) {
size += 16;
uint8_t width = canvas_width(canvas) - size;
uint8_t height = canvas_height(canvas) - size;
uint8_t x = counter % width;
if((counter / width) % 2) {
x = width - x;
}
uint8_t y = counter % height;
if((counter / height) % 2) {
y = height - y;
}
canvas_draw_box(canvas, x, y, size, size);
}
static void direct_draw_run(DirectDraw* instance) {
size_t start = DWT->CYCCNT;
size_t counter = 0;
float fps = 0;
furi_thread_set_current_priority(FuriThreadPriorityIdle);
do {
size_t elapsed = DWT->CYCCNT - start;
char buffer[BUFFER_SIZE] = {0};
if(elapsed >= 64000000) {
fps = (float)counter / ((float)elapsed / 64000000.0f);
start = DWT->CYCCNT;
counter = 0;
}
snprintf(buffer, BUFFER_SIZE, "FPS: %.1f", (double)fps);
canvas_reset(instance->canvas);
canvas_set_color(instance->canvas, ColorXOR);
direct_draw_block(instance->canvas, instance->counter % 16, instance->counter);
direct_draw_block(instance->canvas, instance->counter * 2 % 16, instance->counter * 2);
direct_draw_block(instance->canvas, instance->counter * 3 % 16, instance->counter * 3);
direct_draw_block(instance->canvas, instance->counter * 4 % 16, instance->counter * 4);
direct_draw_block(instance->canvas, instance->counter * 5 % 16, instance->counter * 5);
canvas_draw_str(instance->canvas, 10, 10, buffer);
canvas_commit(instance->canvas);
counter++;
instance->counter++;
furi_thread_yield();
} while(!instance->stop);
}
int32_t direct_draw_app(void* p) {
UNUSED(p);
DirectDraw* instance = direct_draw_alloc();
direct_draw_run(instance);
direct_draw_free(instance);
return 0;
}